version 1.6, 2018/09/28 08:20:28 |
version 1.30, 2020/07/03 03:37:59 |
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/* $OpenXM: OpenXM_contrib2/asir2018/engine/nd.c,v 1.5 2018/09/27 02:39:37 noro Exp $ */ |
/* $OpenXM: OpenXM_contrib2/asir2018/engine/nd.c,v 1.29 2020/07/02 09:24:17 noro Exp $ */ |
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#include "nd.h" |
#include "nd.h" |
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struct oEGT eg_search; |
int Nnd_add,Nf4_red; |
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struct oEGT eg_search,f4_symb,f4_conv,f4_elim1,f4_elim2; |
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int diag_period = 6; |
int diag_period = 6; |
int weight_check = 1; |
int weight_check = 1; |
int (*ndl_compare_function)(UINT *a1,UINT *a2); |
int (*ndl_compare_function)(UINT *a1,UINT *a2); |
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/* for general module order */ |
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int (*ndl_base_compare_function)(UINT *a1,UINT *a2); |
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int (*dl_base_compare_function)(int nv,DL a,DL b); |
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int nd_base_ordtype; |
int nd_dcomp; |
int nd_dcomp; |
int nd_rref2; |
int nd_rref2; |
NM _nm_free_list; |
NM _nm_free_list; |
ND _nd_free_list; |
ND _nd_free_list; |
ND_pairs _ndp_free_list; |
ND_pairs _ndp_free_list; |
NODE nd_hcf; |
NODE nd_hcf; |
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int Nsyz; |
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Obj nd_top_weight; |
Obj nd_top_weight; |
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Line 44 static NDV *nd_ps_trace; |
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Line 50 static NDV *nd_ps_trace; |
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static NDV *nd_ps_sym; |
static NDV *nd_ps_sym; |
static NDV *nd_ps_trace_sym; |
static NDV *nd_ps_trace_sym; |
static RHist *nd_psh; |
static RHist *nd_psh; |
static int nd_psn,nd_pslen; |
static int nd_psn,nd_pslen,nd_nbase; |
static RHist *nd_red; |
static RHist *nd_red; |
static int *nd_work_vector; |
static int *nd_work_vector; |
static int **nd_matrix; |
static int **nd_matrix; |
Line 54 static int nd_worb_len; |
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Line 60 static int nd_worb_len; |
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static int nd_found,nd_create,nd_notfirst; |
static int nd_found,nd_create,nd_notfirst; |
static int nmv_adv; |
static int nmv_adv; |
static int nd_demand; |
static int nd_demand; |
static int nd_module,nd_ispot,nd_mpos,nd_pot_nelim; |
static int nd_module,nd_module_ordtype,nd_mpos,nd_pot_nelim; |
static int nd_module_rank,nd_poly_weight_len; |
static int nd_module_rank,nd_poly_weight_len; |
static int *nd_poly_weight,*nd_module_weight; |
static int *nd_poly_weight,*nd_module_weight; |
static NODE nd_tracelist; |
static NODE nd_tracelist; |
Line 65 static NODE nd_nzlist,nd_check_splist; |
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Line 71 static NODE nd_nzlist,nd_check_splist; |
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static int nd_splist; |
static int nd_splist; |
static int *nd_sugarweight; |
static int *nd_sugarweight; |
static int nd_f4red,nd_rank0,nd_last_nonzero; |
static int nd_f4red,nd_rank0,nd_last_nonzero; |
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static DL *nd_sba_hm; |
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static NODE *nd_sba_pos; |
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NumberField get_numberfield(); |
NumberField get_numberfield(); |
UINT *nd_det_compute_bound(NDV **dm,int n,int j); |
UINT *nd_det_compute_bound(NDV **dm,int n,int j); |
Line 77 NDV pltondv(VL vl,VL dvl,LIST p); |
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Line 85 NDV pltondv(VL vl,VL dvl,LIST p); |
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void pltozpl(LIST l,Q *cont,LIST *pp); |
void pltozpl(LIST l,Q *cont,LIST *pp); |
void ndl_max(UINT *d1,unsigned *d2,UINT *d); |
void ndl_max(UINT *d1,unsigned *d2,UINT *d); |
void nmtodp(int mod,NM m,DP *r); |
void nmtodp(int mod,NM m,DP *r); |
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void ndltodp(UINT *d,DP *r); |
NODE reverse_node(NODE n); |
NODE reverse_node(NODE n); |
P ndc_div(int mod,union oNDC a,union oNDC b); |
P ndc_div(int mod,union oNDC a,union oNDC b); |
P ndctop(int mod,union oNDC c); |
P ndctop(int mod,union oNDC c); |
Line 86 void parse_nd_option(NODE opt); |
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Line 95 void parse_nd_option(NODE opt); |
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void dltondl(int n,DL dl,UINT *r); |
void dltondl(int n,DL dl,UINT *r); |
DP ndvtodp(int mod,NDV p); |
DP ndvtodp(int mod,NDV p); |
DP ndtodp(int mod,ND p); |
DP ndtodp(int mod,ND p); |
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DPM ndvtodpm(int mod,NDV p); |
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NDV dpmtondv(int mod,DPM p); |
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int dpm_getdeg(DPM p,int *rank); |
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void dpm_ptozp(DPM p,Z *cont,DPM *r); |
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int compdmm(int nv,DMM a,DMM b); |
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void Pdp_set_weight(NODE,VECT *); |
void Pdp_set_weight(NODE,VECT *); |
void Pox_cmo_rpc(NODE,Obj *); |
void Pox_cmo_rpc(NODE,Obj *); |
Line 469 int ndl_weight(UINT *d) |
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Line 483 int ndl_weight(UINT *d) |
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for ( j = 0; j < nd_epw; j++, u>>=nd_bpe ) |
for ( j = 0; j < nd_epw; j++, u>>=nd_bpe ) |
t += (u&nd_mask0); |
t += (u&nd_mask0); |
} |
} |
if ( nd_module && current_module_weight_vector && MPOS(d) ) |
if ( nd_module && nd_module_rank && MPOS(d) ) |
t += current_module_weight_vector[MPOS(d)]; |
t += nd_module_weight[MPOS(d)-1]; |
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for ( i = nd_exporigin; i < nd_wpd; i++ ) |
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if ( d[i] && !t ) |
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printf("afo\n"); |
return t; |
return t; |
} |
} |
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Line 485 int ndl_weight2(UINT *d) |
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Line 502 int ndl_weight2(UINT *d) |
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u = GET_EXP(d,i); |
u = GET_EXP(d,i); |
t += nd_sugarweight[i]*u; |
t += nd_sugarweight[i]*u; |
} |
} |
if ( nd_module && current_module_weight_vector && MPOS(d) ) |
if ( nd_module && nd_module_rank && MPOS(d) ) |
t += current_module_weight_vector[MPOS(d)]; |
t += nd_module_weight[MPOS(d)-1]; |
return t; |
return t; |
} |
} |
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Line 514 void ndl_weight_mask(UINT *d) |
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Line 531 void ndl_weight_mask(UINT *d) |
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} |
} |
} |
} |
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int ndl_glex_compare(UINT *d1,UINT *d2) |
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{ |
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if ( TD(d1) > TD(d2) ) return 1; |
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else if ( TD(d1) < TD(d2) ) return -1; |
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else return ndl_lex_compare(d1,d2); |
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} |
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int ndl_lex_compare(UINT *d1,UINT *d2) |
int ndl_lex_compare(UINT *d1,UINT *d2) |
{ |
{ |
int i; |
int i; |
Line 683 int ndl_ww_lex_compare(UINT *d1,UINT *d2) |
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Line 707 int ndl_ww_lex_compare(UINT *d1,UINT *d2) |
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return ndl_lex_compare(d1,d2); |
return ndl_lex_compare(d1,d2); |
} |
} |
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int ndl_module_weight_compare(UINT *d1,UINT *d2) |
// common function for module glex and grlex comparison |
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int ndl_module_glex_compare(UINT *d1,UINT *d2) |
{ |
{ |
int s,j; |
int c; |
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if ( nd_nvar != nd_poly_weight_len ) |
switch ( nd_module_ordtype ) { |
error("invalid module weight : the length of polynomial weight != the number of variables"); |
case 0: |
s = 0; |
if ( TD(d1) > TD(d2) ) return 1; |
for ( j = 0; j < nd_nvar; j++ ) |
else if ( TD(d1) < TD(d2) ) return -1; |
s += (GET_EXP(d1,j)-GET_EXP(d2,j))*nd_poly_weight[j]; |
else if ( (c = ndl_lex_compare(d1,d2)) != 0 ) return c; |
if ( MPOS(d1) >= 1 && MPOS(d2) >= 1 ) { |
else if ( MPOS(d1) < MPOS(d2) ) return 1; |
s += nd_module_weight[MPOS(d1)-1]-nd_module_weight[MPOS(d2)-1]; |
else if ( MPOS(d1) > MPOS(d2) ) return -1; |
} |
else return 0; |
if ( s > 0 ) return 1; |
break; |
else if ( s < 0 ) return -1; |
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else return 0; |
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} |
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int ndl_module_grlex_compare(UINT *d1,UINT *d2) |
case 1: |
{ |
if ( nd_pot_nelim && MPOS(d1)>=nd_pot_nelim+1 && MPOS(d2) >= nd_pot_nelim+1 ) { |
int i,c; |
if ( TD(d1) > TD(d2) ) return 1; |
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else if ( TD(d1) < TD(d2) ) return -1; |
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if ( (c = ndl_lex_compare(d1,d2)) != 0 ) return c; |
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if ( MPOS(d1) < MPOS(d2) ) return 1; |
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else if ( MPOS(d1) > MPOS(d2) ) return -1; |
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} |
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if ( MPOS(d1) < MPOS(d2) ) return 1; |
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else if ( MPOS(d1) > MPOS(d2) ) return -1; |
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else if ( TD(d1) > TD(d2) ) return 1; |
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else if ( TD(d1) < TD(d2) ) return -1; |
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else return ndl_lex_compare(d1,d2); |
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break; |
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if ( nd_module_rank && (c = ndl_module_weight_compare(d1,d2)) ) return c; |
case 2: // weight -> POT |
if ( nd_ispot ) { |
if ( TD(d1) > TD(d2) ) return 1; |
if ( nd_pot_nelim && MPOS(d1)>=nd_pot_nelim+1 && MPOS(d2) >= nd_pot_nelim+1 ) { |
else if ( TD(d1) < TD(d2) ) return -1; |
if ( TD(d1) > TD(d2) ) return 1; |
else if ( MPOS(d1) < MPOS(d2) ) return 1; |
else if ( TD(d1) < TD(d2) ) return -1; |
else if ( MPOS(d1) > MPOS(d2) ) return -1; |
if ( (c = ndl_lex_compare(d1,d2)) != 0 ) return c; |
else return ndl_lex_compare(d1,d2); |
if ( MPOS(d1) < MPOS(d2) ) return 1; |
break; |
else if ( MPOS(d1) > MPOS(d2) ) return -1; |
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return 0; |
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} |
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if ( MPOS(d1) < MPOS(d2) ) return 1; |
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else if ( MPOS(d1) > MPOS(d2) ) return -1; |
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} |
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if ( TD(d1) > TD(d2) ) return 1; |
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else if ( TD(d1) < TD(d2) ) return -1; |
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if ( (c = ndl_lex_compare(d1,d2)) != 0 ) return c; |
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if ( !nd_ispot ) { |
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if ( MPOS(d1) < MPOS(d2) ) return 1; |
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else if ( MPOS(d1) > MPOS(d2) ) return -1; |
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} |
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return 0; |
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} |
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int ndl_module_glex_compare(UINT *d1,UINT *d2) |
default: |
{ |
error("ndl_module_glex_compare : invalid module_ordtype"); |
int i,c; |
return 0; |
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} |
if ( nd_module_rank && (c = ndl_module_weight_compare(d1,d2)) ) return c; |
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if ( nd_ispot ) { |
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if ( MPOS(d1) < MPOS(d2) ) return 1; |
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else if ( MPOS(d1) > MPOS(d2) ) return -1; |
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} |
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if ( TD(d1) > TD(d2) ) return 1; |
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else if ( TD(d1) < TD(d2) ) return -1; |
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if ( (c = ndl_lex_compare(d1,d2)) != 0 ) return c; |
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if ( !nd_ispot ) { |
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if ( MPOS(d1) < MPOS(d2) ) return 1; |
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else if ( MPOS(d1) > MPOS(d2) ) return -1; |
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} |
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return 0; |
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} |
} |
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int ndl_module_lex_compare(UINT *d1,UINT *d2) |
// common for module comparison |
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int ndl_module_compare(UINT *d1,UINT *d2) |
{ |
{ |
int i,c; |
int c; |
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if ( nd_module_rank && (c = ndl_module_weight_compare(d1,d2)) ) return c; |
switch ( nd_module_ordtype ) { |
if ( nd_ispot ) { |
case 0: |
if ( MPOS(d1) < MPOS(d2) ) return 1; |
if ( (c = (*ndl_base_compare_function)(d1,d2)) != 0 ) return c; |
else if ( MPOS(d1) > MPOS(d2) ) return -1; |
else if ( MPOS(d1) > MPOS(d2) ) return -1; |
} |
else if ( MPOS(d1) < MPOS(d2) ) return 1; |
if ( (c = ndl_lex_compare(d1,d2)) != 0 ) return c; |
else return 0; |
if ( !nd_ispot ) { |
break; |
if ( MPOS(d1) < MPOS(d2) ) return 1; |
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else if ( MPOS(d1) > MPOS(d2) ) return -1; |
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} |
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return 0; |
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} |
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int ndl_module_block_compare(UINT *d1,UINT *d2) |
case 1: |
{ |
if ( MPOS(d1) < MPOS(d2) ) return 1; |
int i,c; |
else if ( MPOS(d1) > MPOS(d2) ) return -1; |
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else return (*ndl_base_compare_function)(d1,d2); |
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break; |
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if ( nd_module_rank && (c = ndl_module_weight_compare(d1,d2)) ) return c; |
case 2: // weight -> POT |
if ( nd_ispot ) { |
if ( TD(d1) > TD(d2) ) return 1; |
if ( MPOS(d1) < MPOS(d2) ) return 1; |
else if ( TD(d1) < TD(d2) ) return -1; |
else if ( MPOS(d1) > MPOS(d2) ) return -1; |
else if ( MPOS(d1) < MPOS(d2) ) return 1; |
} |
else if ( MPOS(d1) > MPOS(d2) ) return -1; |
if ( (c = ndl_block_compare(d1,d2)) != 0 ) return c; |
else return (*ndl_base_compare_function)(d1,d2); |
if ( !nd_ispot ) { |
break; |
if ( MPOS(d1) < MPOS(d2) ) return 1; |
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else if ( MPOS(d1) > MPOS(d2) ) return -1; |
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} |
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return 0; |
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} |
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int ndl_module_matrix_compare(UINT *d1,UINT *d2) |
default: |
{ |
error("ndl_module_compare : invalid module_ordtype"); |
int i,c; |
return 0; |
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} |
if ( nd_module_rank && (c = ndl_module_weight_compare(d1,d2)) ) return c; |
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if ( nd_ispot ) { |
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if ( MPOS(d1) < MPOS(d2) ) return 1; |
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else if ( MPOS(d1) > MPOS(d2) ) return -1; |
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} |
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if ( (c = ndl_matrix_compare(d1,d2)) != 0 ) return c; |
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if ( !nd_ispot ) { |
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if ( MPOS(d1) < MPOS(d2) ) return 1; |
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else if ( MPOS(d1) > MPOS(d2) ) return -1; |
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} |
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return 0; |
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} |
} |
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int ndl_module_composite_compare(UINT *d1,UINT *d2) |
extern DMMstack dmm_stack; |
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void _addtodl(int n,DL d1,DL d2); |
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int _eqdl(int n,DL d1,DL d2); |
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int ndl_module_schreyer_compare(UINT *m1,UINT *m2) |
{ |
{ |
int i,c; |
int pos1,pos2,t,j; |
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DMM *in; |
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DMMstack s; |
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static DL d1=0; |
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static DL d2=0; |
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static int dlen=0; |
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if ( nd_module_rank && (c = ndl_module_weight_compare(d1,d2)) ) return c; |
pos1 = MPOS(m1); pos2 = MPOS(m2); |
if ( nd_ispot ) { |
if ( pos1 == pos2 ) return (*ndl_base_compare_function)(m1,m2); |
if ( MPOS(d1) > MPOS(d2) ) return 1; |
if ( nd_nvar > dlen ) { |
else if ( MPOS(d1) < MPOS(d2) ) return -1; |
NEWDL(d1,nd_nvar); |
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NEWDL(d2,nd_nvar); |
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dlen = nd_nvar; |
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} |
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d1->td = TD(m1); |
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for ( j = 0; j < nd_nvar; j++ ) d1->d[j] = GET_EXP(m1,j); |
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d2->td = TD(m2); |
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for ( j = 0; j < nd_nvar; j++ ) d2->d[j] = GET_EXP(m2,j); |
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for ( s = dmm_stack; s; s = NEXT(s) ) { |
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in = s->in; |
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_addtodl(nd_nvar,in[pos1]->dl,d1); |
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_addtodl(nd_nvar,in[pos2]->dl,d2); |
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if ( in[pos1]->pos == in[pos2]->pos && _eqdl(nd_nvar,d1,d2)) { |
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if ( pos1 < pos2 ) return 1; |
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else if ( pos1 > pos2 ) return -1; |
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else return 0; |
} |
} |
if ( (c = ndl_composite_compare(d1,d2)) != 0 ) return c; |
pos1 = in[pos1]->pos; |
if ( !nd_ispot ) { |
pos2 = in[pos2]->pos; |
if ( MPOS(d1) > MPOS(d2) ) return 1; |
if ( pos1 == pos2 ) return (*dl_base_compare_function)(nd_nvar,d1,d2); |
else if ( MPOS(d1) < MPOS(d2) ) return -1; |
} |
} |
// comparison by the bottom order |
return 0; |
LAST: |
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switch ( nd_base_ordtype ) { |
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case 0: |
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t = (*dl_base_compare_function)(nd_nvar,d1,d2); |
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if ( t ) return t; |
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else if ( pos1 < pos2 ) return 1; |
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else if ( pos1 > pos2 ) return -1; |
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else return 0; |
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break; |
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case 1: |
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if ( pos1 < pos2 ) return 1; |
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else if ( pos1 > pos2 ) return -1; |
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else return (*dl_base_compare_function)(nd_nvar,d1,d2); |
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break; |
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case 2: |
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if ( d1->td > d2->td ) return 1; |
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else if ( d1->td < d2->td ) return -1; |
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else if ( pos1 < pos2 ) return 1; |
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else if ( pos1 > pos2 ) return -1; |
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else return (*dl_base_compare_function)(nd_nvar,d1,d2); |
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break; |
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default: |
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error("ndl_schreyer_compare : invalid base ordtype"); |
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return 0; |
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} |
} |
} |
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INLINE int ndl_equal(UINT *d1,UINT *d2) |
INLINE int ndl_equal(UINT *d1,UINT *d2) |
Line 1125 int ndl_check_bound2(int index,UINT *d2) |
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Line 1160 int ndl_check_bound2(int index,UINT *d2) |
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INLINE int ndl_hash_value(UINT *d) |
INLINE int ndl_hash_value(UINT *d) |
{ |
{ |
int i; |
int i; |
int r; |
UINT r; |
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r = 0; |
r = 0; |
for ( i = 0; i < nd_wpd; i++ ) |
for ( i = 0; i < nd_wpd; i++ ) |
r = ((r<<16)+d[i])%REDTAB_LEN; |
r = (r*1511+d[i]); |
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r %= REDTAB_LEN; |
return r; |
return r; |
} |
} |
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Line 1167 INLINE int ndl_find_reducer(UINT *dg) |
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Line 1203 INLINE int ndl_find_reducer(UINT *dg) |
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return -1; |
return -1; |
} |
} |
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// ret=0,...,nd_psn-1 => reducer found |
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// ret=nd_psn => reducer not found |
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// ret=-1 => singular top reducible |
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int comp_sig(SIG s1,SIG s2); |
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void _ndltodl(UINT *ndl,DL dl); |
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void print_sig(SIG s) |
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{ |
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int i; |
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fprintf(asir_out,"<<"); |
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for ( i = 0; i < nd_nvar; i++ ) { |
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fprintf(asir_out,"%d",s->dl->d[i]); |
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if ( i != nd_nvar-1 ) fprintf(asir_out,","); |
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} |
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fprintf(asir_out,">>*e%d",s->pos); |
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} |
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INLINE int ndl_find_reducer_s(UINT *dg,SIG sig) |
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{ |
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RHist r; |
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int i,singular,ret,d,k; |
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static int wpd,nvar; |
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static SIG quo; |
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static UINT *tmp; |
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if ( !quo || nvar != nd_nvar ) NEWSIG(quo); |
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if ( wpd != nd_wpd ) { |
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wpd = nd_wpd; |
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tmp = (UINT *)MALLOC(wpd*sizeof(UINT)); |
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} |
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d = ndl_hash_value(dg); |
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for ( r = nd_red[d], k = 0; r; r = NEXT(r), k++ ) { |
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if ( ndl_equal(dg,DL(r)) ) { |
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return r->index; |
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} |
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} |
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singular = 0; |
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for ( i = 0; i < nd_psn; i++ ) { |
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r = nd_psh[i]; |
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if ( ndl_reducible(dg,DL(r)) ) { |
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ndl_sub(dg,DL(r),tmp); |
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_ndltodl(tmp,DL(quo)); |
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_addtodl(nd_nvar,DL(nd_psh[i]->sig),DL(quo)); |
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quo->pos = nd_psh[i]->sig->pos; |
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ret = comp_sig(sig,quo); |
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if ( ret > 0 ) { singular = 0; break; } |
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if ( ret == 0 ) { fprintf(asir_out,"s"); fflush(asir_out); singular = 1; } |
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} |
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} |
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if ( singular ) return -1; |
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else if ( i < nd_psn ) |
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nd_append_red(dg,i); |
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return i; |
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} |
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ND nd_merge(ND p1,ND p2) |
ND nd_merge(ND p1,ND p2) |
{ |
{ |
int n,c; |
int n,c; |
Line 1216 ND nd_add(int mod,ND p1,ND p2) |
|
Line 1309 ND nd_add(int mod,ND p1,ND p2) |
|
ND r; |
ND r; |
NM m1,m2,mr0,mr,s; |
NM m1,m2,mr0,mr,s; |
|
|
|
Nnd_add++; |
if ( !p1 ) return p2; |
if ( !p1 ) return p2; |
else if ( !p2 ) return p1; |
else if ( !p2 ) return p1; |
else if ( mod == -1 ) return nd_add_sf(p1,p2); |
else if ( mod == -1 ) return nd_add_sf(p1,p2); |
Line 1508 int nd_nf(int mod,ND d,ND g,NDV *ps,int full,ND *rp) |
|
Line 1602 int nd_nf(int mod,ND d,ND g,NDV *ps,int full,ND *rp) |
|
return 1; |
return 1; |
} |
} |
|
|
|
// ret=1 => success |
|
// ret=0 => overflow |
|
// ret=-1 => singular top reducible |
|
|
|
int nd_nf_s(int mod,ND d,ND g,NDV *ps,int full,ND *rp) |
|
{ |
|
NM m,mrd,tail; |
|
NM mul; |
|
int n,sugar,psugar,sugar0,stat,index; |
|
int c,c1,c2,dummy; |
|
RHist h; |
|
NDV p,red; |
|
Q cg,cred,gcd,tq,qq; |
|
Z iq; |
|
DP dmul; |
|
NODE node; |
|
LIST hist; |
|
double hmag; |
|
P tp,tp1; |
|
Obj tr,tr1,div; |
|
union oNDC hg; |
|
P cont; |
|
SIG sig; |
|
|
|
if ( !g ) { |
|
*rp = d; |
|
return 1; |
|
} |
|
if ( !mod ) hmag = ((double)p_mag(HCP(g)))*nd_scale; |
|
|
|
sugar0 = sugar = SG(g); |
|
n = NV(g); |
|
mul = (NM)MALLOC(sizeof(struct oNM)+(nd_wpd-1)*sizeof(UINT)); |
|
if ( d ) |
|
for ( tail = BDY(d); NEXT(tail); tail = NEXT(tail) ); |
|
sig = g->sig; |
|
for ( ; g; ) { |
|
index = ndl_find_reducer_s(HDL(g),sig); |
|
if ( index >= 0 && index < nd_psn ) { |
|
// reducer found |
|
h = nd_psh[index]; |
|
ndl_sub(HDL(g),DL(h),DL(mul)); |
|
if ( ndl_check_bound2(index,DL(mul)) ) { |
|
nd_free(g); nd_free(d); |
|
return 0; |
|
} |
|
p = ps[index]; |
|
/* d+g -> div*(d+g)+mul*p */ |
|
g = nd_reduce2(mod,d,g,p,mul,0,&div); |
|
sugar = MAX(sugar,SG(p)+TD(DL(mul))); |
|
if ( !mod && g && ((double)(p_mag(HCP(g))) > hmag) ) { |
|
hg = HCU(g); |
|
nd_removecont2(d,g); |
|
hmag = ((double)p_mag(HCP(g)))*nd_scale; |
|
} |
|
} else if ( index == -1 ) { |
|
// singular top reducible |
|
return -1; |
|
} else if ( !full ) { |
|
*rp = g; |
|
g->sig = sig; |
|
return 1; |
|
} else { |
|
m = BDY(g); |
|
if ( NEXT(m) ) { |
|
BDY(g) = NEXT(m); NEXT(m) = 0; LEN(g)--; |
|
} else { |
|
FREEND(g); g = 0; |
|
} |
|
if ( d ) { |
|
NEXT(tail)=m; tail=m; LEN(d)++; |
|
} else { |
|
MKND(n,m,1,d); tail = BDY(d); |
|
} |
|
} |
|
} |
|
if ( d ) { |
|
SG(d) = sugar; |
|
d->sig = sig; |
|
} |
|
*rp = d; |
|
return 1; |
|
} |
|
|
int nd_nf_pbucket(int mod,ND g,NDV *ps,int full,ND *rp) |
int nd_nf_pbucket(int mod,ND g,NDV *ps,int full,ND *rp) |
{ |
{ |
int hindex,index; |
int hindex,index; |
Line 1620 int nd_nf_pbucket(int mod,ND g,NDV *ps,int full,ND *rp |
|
Line 1798 int nd_nf_pbucket(int mod,ND g,NDV *ps,int full,ND *rp |
|
} |
} |
} |
} |
|
|
|
int nd_nf_pbucket_s(int mod,ND g,NDV *ps,int full,ND *rp) |
|
{ |
|
int hindex,index; |
|
NDV p; |
|
ND u,d,red; |
|
NODE l; |
|
NM mul,m,mrd,tail; |
|
int sugar,psugar,n,h_reducible; |
|
PGeoBucket bucket; |
|
int c,c1,c2; |
|
Z cg,cred,gcd,zzz; |
|
RHist h; |
|
double hmag,gmag; |
|
int count = 0; |
|
int hcount = 0; |
|
SIG sig; |
|
|
|
if ( !g ) { |
|
*rp = 0; |
|
return 1; |
|
} |
|
sugar = SG(g); |
|
n = NV(g); |
|
if ( !mod ) hmag = ((double)p_mag((P)HCZ(g)))*nd_scale; |
|
bucket = create_pbucket(); |
|
add_pbucket(mod,bucket,g); |
|
d = 0; |
|
mul = (NM)MALLOC(sizeof(struct oNM)+(nd_wpd-1)*sizeof(UINT)); |
|
sig = g->sig; |
|
while ( 1 ) { |
|
if ( mod > 0 || mod == -1 ) |
|
hindex = head_pbucket(mod,bucket); |
|
else if ( mod == -2 ) |
|
hindex = head_pbucket_lf(bucket); |
|
else |
|
hindex = head_pbucket_q(bucket); |
|
if ( hindex < 0 ) { |
|
if ( DP_Print > 3 ) printf("(%d %d)",count,hcount); |
|
if ( d ) { |
|
SG(d) = sugar; |
|
d->sig = sig; |
|
} |
|
*rp = d; |
|
return 1; |
|
} |
|
g = bucket->body[hindex]; |
|
index = ndl_find_reducer_s(HDL(g),sig); |
|
if ( index >= 0 && index < nd_psn ) { |
|
count++; |
|
if ( !d ) hcount++; |
|
h = nd_psh[index]; |
|
ndl_sub(HDL(g),DL(h),DL(mul)); |
|
if ( ndl_check_bound2(index,DL(mul)) ) { |
|
nd_free(d); |
|
free_pbucket(bucket); |
|
*rp = 0; |
|
return 0; |
|
} |
|
p = ps[index]; |
|
if ( mod == -1 ) |
|
CM(mul) = _mulsf(_invsf(HCM(p)),_chsgnsf(HCM(g))); |
|
else if ( mod == -2 ) { |
|
Z inv,t; |
|
divlf(ONE,HCZ(p),&inv); |
|
chsgnlf(HCZ(g),&t); |
|
mullf(inv,t,&CZ(mul)); |
|
} else if ( mod ) { |
|
c1 = invm(HCM(p),mod); c2 = mod-HCM(g); |
|
DMAR(c1,c2,0,mod,c); CM(mul) = c; |
|
} else { |
|
igcd_cofactor(HCZ(g),HCZ(p),&gcd,&cg,&cred); |
|
chsgnz(cg,&CZ(mul)); |
|
nd_mul_c_q(d,(P)cred); |
|
mulq_pbucket(bucket,cred); |
|
g = bucket->body[hindex]; |
|
gmag = (double)p_mag((P)HCZ(g)); |
|
} |
|
red = ndv_mul_nm(mod,mul,p); |
|
bucket->body[hindex] = nd_remove_head(g); |
|
red = nd_remove_head(red); |
|
add_pbucket(mod,bucket,red); |
|
psugar = SG(p)+TD(DL(mul)); |
|
sugar = MAX(sugar,psugar); |
|
if ( !mod && hmag && (gmag > hmag) ) { |
|
g = normalize_pbucket(mod,bucket); |
|
if ( !g ) { |
|
if ( d ) { |
|
SG(d) = sugar; |
|
d->sig = sig; |
|
} |
|
*rp = d; |
|
return 1; |
|
} |
|
nd_removecont2(d,g); |
|
hmag = ((double)p_mag((P)HCZ(g)))*nd_scale; |
|
add_pbucket(mod,bucket,g); |
|
} |
|
} else if ( index == -1 ) { |
|
// singular top reducible |
|
return -1; |
|
} else if ( !full ) { |
|
g = normalize_pbucket(mod,bucket); |
|
if ( g ) { |
|
SG(g) = sugar; |
|
g->sig = sig; |
|
} |
|
*rp = g; |
|
return 1; |
|
} else { |
|
m = BDY(g); |
|
if ( NEXT(m) ) { |
|
BDY(g) = NEXT(m); NEXT(m) = 0; LEN(g)--; |
|
} else { |
|
FREEND(g); g = 0; |
|
} |
|
bucket->body[hindex] = g; |
|
NEXT(m) = 0; |
|
if ( d ) { |
|
NEXT(tail)=m; tail=m; LEN(d)++; |
|
} else { |
|
MKND(n,m,1,d); tail = BDY(d); |
|
} |
|
} |
|
} |
|
} |
|
|
/* input : list of NDV, cand : list of NDV */ |
/* input : list of NDV, cand : list of NDV */ |
|
|
int ndv_check_membership(int m,NODE input,int obpe,int oadv,EPOS oepos,NODE cand) |
int ndv_check_membership(int m,NODE input,int obpe,int oadv,EPOS oepos,NODE cand) |
Line 1632 int ndv_check_membership(int m,NODE input,int obpe,int |
|
Line 1936 int ndv_check_membership(int m,NODE input,int obpe,int |
|
Z q; |
Z q; |
LIST list; |
LIST list; |
|
|
ndv_setup(m,0,cand,nd_gentrace?1:0,1); |
ndv_setup(m,0,cand,nd_gentrace?1:0,1,0); |
n = length(cand); |
n = length(cand); |
|
|
if ( nd_gentrace ) { nd_alltracelist = 0; nd_tracelist = 0; } |
if ( nd_gentrace ) { nd_alltracelist = 0; nd_tracelist = 0; } |
Line 2080 NODE nd_gb(int m,int ishomo,int checkonly,int gensyz,i |
|
Line 2384 NODE nd_gb(int m,int ishomo,int checkonly,int gensyz,i |
|
int diag_count = 0; |
int diag_count = 0; |
P cont; |
P cont; |
LIST list; |
LIST list; |
|
struct oEGT eg1,eg2,eg_update; |
|
|
|
init_eg(&eg_update); |
|
Nnd_add = 0; |
g = 0; d = 0; |
g = 0; d = 0; |
for ( i = 0; i < nd_psn; i++ ) { |
for ( i = 0; i < nd_psn; i++ ) { |
d = update_pairs(d,g,i,gensyz); |
d = update_pairs(d,g,i,gensyz); |
|
|
} |
} |
} |
} |
nfv = ndtondv(m,nf); nd_free(nf); |
nfv = ndtondv(m,nf); nd_free(nf); |
nh = ndv_newps(m,nfv,0,0); |
nh = ndv_newps(m,nfv,0); |
if ( !m && (ishomo && ++diag_count == diag_period) ) { |
if ( !m && (ishomo && ++diag_count == diag_period) ) { |
diag_count = 0; |
diag_count = 0; |
stat = do_diagonalize(sugar,m); |
stat = do_diagonalize(sugar,m); |
|
|
goto again; |
goto again; |
} |
} |
} |
} |
|
get_eg(&eg1); |
d = update_pairs(d,g,nh,0); |
d = update_pairs(d,g,nh,0); |
|
get_eg(&eg2); add_eg(&eg_update,&eg1,&eg2); |
g = update_base(g,nh); |
g = update_base(g,nh); |
FREENDP(l); |
FREENDP(l); |
} else { |
} else { |
|
|
} |
} |
} |
} |
conv_ilist(nd_demand,0,g,indp); |
conv_ilist(nd_demand,0,g,indp); |
if ( !checkonly && DP_Print ) { printf("nd_gb done.\n"); fflush(stdout); } |
if ( !checkonly && DP_Print ) { printf("nd_gb done. Number of nd_add=%d\n",Nnd_add); fflush(stdout); } |
|
print_eg("update",&eg_update); |
return g; |
return g; |
} |
} |
|
|
|
ND_pairs update_pairs_s(ND_pairs d,int t,NODE *syz); |
|
ND_pairs nd_newpairs_s(int t ,NODE *syz); |
|
|
|
int nd_nf_pbucket_s(int mod,ND g,NDV *ps,int full,ND *nf); |
|
int nd_nf_s(int mod,ND d,ND g,NDV *ps,int full,ND *nf); |
|
|
|
void _copydl(int n,DL d1,DL d2); |
|
void _subfromdl(int n,DL d1,DL d2); |
|
extern int (*cmpdl)(int n,DL d1,DL d2); |
|
|
|
NODE insert_sig(NODE l,SIG s) |
|
{ |
|
int pos; |
|
DL sig; |
|
struct oNODE root; |
|
NODE p,prev,r; |
|
SIG t; |
|
|
|
pos = s->pos; sig = DL(s); |
|
root.next = l; prev = &root; |
|
for ( p = l; p; p = p->next ) { |
|
t = (SIG)p->body; |
|
if ( t->pos == pos ) { |
|
if ( _dl_redble(DL(t),sig,nd_nvar) ) |
|
return root.next; |
|
else if ( _dl_redble(sig,DL(t),nd_nvar) ) |
|
// remove p |
|
prev->next = p->next; |
|
} else |
|
prev = p; |
|
} |
|
NEWNODE(r); r->body = (pointer)s; r->next = 0; |
|
for ( p = &root; p->next; p = p->next ); |
|
p->next = r; |
|
// r->next = root.next; |
|
// return r; |
|
return root.next; |
|
} |
|
|
|
ND_pairs remove_spair_s(ND_pairs d,SIG sig) |
|
{ |
|
struct oND_pairs root; |
|
ND_pairs prev,p; |
|
SIG spsig; |
|
|
|
root.next = d; |
|
prev = &root; p = d; |
|
while ( p ) { |
|
spsig = p->sig; |
|
if ( sig->pos == spsig->pos && _dl_redble(DL(sig),DL(spsig),nd_nvar) ) { |
|
// remove p |
|
prev->next = p->next; |
|
Nsyz++; |
|
} else |
|
prev = p; |
|
p = p->next; |
|
} |
|
return (ND_pairs)root.next; |
|
} |
|
|
|
int _dl_redble_ext(DL,DL,DL,int); |
|
|
|
int small_lcm(ND_pairs l) |
|
{ |
|
SIG sig; |
|
int i; |
|
NODE t; |
|
static DL lcm,mul,quo; |
|
static int nvar; |
|
|
|
if ( nvar < nd_nvar ) { |
|
nvar = nd_nvar; NEWDL(lcm,nvar); NEWDL(quo,nvar); NEWDL(mul,nvar); |
|
} |
|
sig = l->sig; |
|
_ndltodl(l->lcm,lcm); |
|
#if 0 |
|
for ( i = 0; i < nd_psn; i++ ) { |
|
if ( sig->pos == nd_psh[i]->sig->pos && |
|
_dl_redble_ext(DL(nd_psh[i]->sig),DL(sig),quo,nd_nvar) ) { |
|
_ndltodl(DL(nd_psh[i]),mul); |
|
_addtodl(nd_nvar,quo,mul); |
|
if ( (*cmpdl)(nd_nvar,lcm,mul) > 0 ) |
|
break; |
|
} |
|
} |
|
if ( i < nd_psn ) return 1; |
|
else return 0; |
|
#else |
|
for ( t = nd_sba_pos[sig->pos]; t; t = t->next ) { |
|
i = (long)BDY(t); |
|
if ( _dl_redble_ext(DL(nd_psh[i]->sig),DL(sig),quo,nd_nvar) ) { |
|
_ndltodl(DL(nd_psh[i]),mul); |
|
_addtodl(nd_nvar,quo,mul); |
|
if ( (*cmpdl)(nd_nvar,lcm,mul) > 0 ) |
|
break; |
|
} |
|
} |
|
if ( t ) return 1; |
|
else return 0; |
|
#endif |
|
} |
|
|
|
ND_pairs remove_large_lcm(ND_pairs d) |
|
{ |
|
struct oND_pairs root; |
|
ND_pairs prev,p; |
|
|
|
root.next = d; |
|
prev = &root; p = d; |
|
while ( p ) { |
|
if ( small_lcm(p) ) { |
|
// remove p |
|
prev->next = p->next; |
|
} else |
|
prev = p; |
|
p = p->next; |
|
} |
|
return (ND_pairs)root.next; |
|
} |
|
|
|
struct oEGT eg_create,eg_newpairs,eg_merge; |
|
|
|
NODE conv_ilist_s(int demand,int trace,int **indp); |
|
|
|
NODE nd_sba_buch(int m,int ishomo,int **indp) |
|
{ |
|
int i,j,nh,sugar,stat; |
|
NODE r,t,g; |
|
ND_pairs d; |
|
ND_pairs l; |
|
ND h,nf,s,head,nf1; |
|
NDV nfv; |
|
Z q; |
|
union oNDC dn,hc; |
|
P cont; |
|
LIST list; |
|
SIG sig; |
|
NODE *syzlist; |
|
int Nredundant; |
|
DL lcm,quo,mul; |
|
struct oEGT eg1,eg2,eg_update,eg_remove,eg_large; |
|
|
|
init_eg(&eg_remove); |
|
syzlist = (NODE *)MALLOC(nd_psn*sizeof(NODE)); |
|
Nsyz = 0; |
|
Nnd_add = 0; |
|
Nredundant = 0; |
|
d = 0; |
|
for ( i = 0; i < nd_psn; i++ ) { |
|
d = update_pairs_s(d,i,syzlist); |
|
} |
|
for ( i = 0; i < nd_psn; i++ ) |
|
for ( j = i+1; j < nd_psn; j++ ) { |
|
NEWSIG(sig); sig->pos = j; |
|
_copydl(nd_nvar,nd_sba_hm[i],sig->dl); |
|
syzlist[sig->pos] = insert_sig(syzlist[sig->pos],sig); |
|
} |
|
sugar = 0; |
|
NEWDL(lcm,nd_nvar); NEWDL(quo,nd_nvar); NEWDL(mul,nd_nvar); |
|
init_eg(&eg_create); |
|
init_eg(&eg_merge); |
|
init_eg(&eg_large); |
|
while ( d ) { |
|
again: |
|
if ( DP_Print ) { |
|
int len; |
|
ND_pairs td; |
|
for ( td = d, len=0; td; td = td->next, len++) |
|
; |
|
if ( !(len%100) ) fprintf(asir_out,"(%d)",len); |
|
} |
|
l = d; d = d->next; |
|
if ( small_lcm(l) ) { |
|
if ( DP_Print ) fprintf(asir_out,"M"); |
|
Nredundant++; |
|
continue; |
|
} |
|
if ( SG(l) != sugar ) { |
|
sugar = SG(l); |
|
if ( DP_Print ) fprintf(asir_out,"%d",sugar); |
|
} |
|
sig = l->sig; |
|
stat = nd_sp(m,0,l,&h); |
|
if ( !stat ) { |
|
NEXT(l) = d; d = l; |
|
d = nd_reconstruct(0,d); |
|
goto again; |
|
} |
|
#if USE_GEOBUCKET |
|
stat = m?nd_nf_pbucket_s(m,h,nd_ps,!Top,&nf):nd_nf_s(m,0,h,nd_ps,!Top,&nf); |
|
#else |
|
stat = nd_nf_s(m,0,h,nd_ps,!Top,&nf); |
|
#endif |
|
if ( !stat ) { |
|
NEXT(l) = d; d = l; |
|
d = nd_reconstruct(0,d); |
|
goto again; |
|
} else if ( stat == -1 ) { |
|
if ( DP_Print ) { printf("S"); fflush(stdout); } |
|
FREENDP(l); |
|
} else if ( nf ) { |
|
if ( DP_Print ) { printf("+"); fflush(stdout); } |
|
hc = HCU(nf); |
|
nd_removecont(m,nf); |
|
nfv = ndtondv(m,nf); nd_free(nf); |
|
nh = ndv_newps(m,nfv,0); |
|
|
|
d = update_pairs_s(d,nh,syzlist); |
|
nd_sba_pos[sig->pos] = append_one(nd_sba_pos[sig->pos],nh); |
|
FREENDP(l); |
|
} else { |
|
// syzygy |
|
get_eg(&eg1); |
|
d = remove_spair_s(d,sig); |
|
get_eg(&eg2); add_eg(&eg_remove,&eg1,&eg2); |
|
syzlist[sig->pos] = insert_sig(syzlist[sig->pos],sig); |
|
if ( DP_Print ) { printf("."); fflush(stdout); } |
|
FREENDP(l); |
|
} |
|
} |
|
g = conv_ilist_s(nd_demand,0,indp); |
|
if ( DP_Print ) { |
|
printf("\nnd_sba done. nd_add=%d,Nsyz=%d,Nredundant=%d\n",Nnd_add,Nsyz,Nredundant); |
|
fflush(stdout); |
|
print_eg("create",&eg_create); |
|
print_eg("merge",&eg_merge); |
|
print_eg("remove",&eg_remove); |
|
printf("\n"); |
|
} |
|
return g; |
|
} |
|
|
/* splist = [[i1,i2],...] */ |
/* splist = [[i1,i2],...] */ |
|
|
int check_splist(int m,NODE splist) |
int check_splist(int m,NODE splist) |
|
|
nd_tracelist = t; |
nd_tracelist = t; |
} |
} |
} |
} |
nh = ndv_newps(0,nfv,nfqv,0); |
nh = ndv_newps(0,nfv,nfqv); |
if ( ishomo && ++diag_count == diag_period ) { |
if ( ishomo && ++diag_count == diag_period ) { |
diag_count = 0; |
diag_count = 0; |
if ( DP_Print > 2 ) fprintf(asir_out,"|"); |
if ( DP_Print > 2 ) fprintf(asir_out,"|"); |
Line 2497 NODE ndv_reduceall(int m,NODE f) |
|
Line 3039 NODE ndv_reduceall(int m,NODE f) |
|
|
|
if ( nd_nora ) return f; |
if ( nd_nora ) return f; |
n = length(f); |
n = length(f); |
ndv_setup(m,0,f,0,1); |
ndv_setup(m,0,f,0,1,0); |
perm = (int *)MALLOC(n*sizeof(int)); |
perm = (int *)MALLOC(n*sizeof(int)); |
if ( nd_gentrace ) { |
if ( nd_gentrace ) { |
for ( t = nd_tracelist, i = 0; i < n; i++, t = NEXT(t) ) |
for ( t = nd_tracelist, i = 0; i < n; i++, t = NEXT(t) ) |
Line 2591 ND_pairs update_pairs( ND_pairs d, NODE /* of index */ |
|
Line 3133 ND_pairs update_pairs( ND_pairs d, NODE /* of index */ |
|
} |
} |
} |
} |
|
|
|
ND_pairs merge_pairs_s(ND_pairs d,ND_pairs d1); |
|
|
|
ND_pairs update_pairs_s( ND_pairs d, int t,NODE *syz) |
|
{ |
|
ND_pairs d1; |
|
struct oEGT eg1,eg2,eg3; |
|
|
|
if ( !t ) return d; |
|
get_eg(&eg1); |
|
d1 = nd_newpairs_s(t,syz); |
|
get_eg(&eg2); add_eg(&eg_create,&eg1,&eg2); |
|
d = merge_pairs_s(d,d1); |
|
get_eg(&eg3); add_eg(&eg_merge,&eg2,&eg3); |
|
return d; |
|
} |
|
|
ND_pairs nd_newpairs( NODE g, int t ) |
ND_pairs nd_newpairs( NODE g, int t ) |
{ |
{ |
NODE h; |
NODE h; |
Line 2601 ND_pairs nd_newpairs( NODE g, int t ) |
|
Line 3158 ND_pairs nd_newpairs( NODE g, int t ) |
|
|
|
dl = DL(nd_psh[t]); |
dl = DL(nd_psh[t]); |
ts = SG(nd_psh[t]) - TD(dl); |
ts = SG(nd_psh[t]) - TD(dl); |
if ( nd_module && nd_intersect && (MPOS(dl) > 1) ) return 0; |
if ( nd_module && nd_intersect && (MPOS(dl) > nd_intersect) ) return 0; |
for ( r0 = 0, h = g; h; h = NEXT(h) ) { |
for ( r0 = 0, h = g; h; h = NEXT(h) ) { |
if ( nd_module && (MPOS(DL(nd_psh[(long)BDY(h)])) != MPOS(dl)) ) |
if ( nd_module && (MPOS(DL(nd_psh[(long)BDY(h)])) != MPOS(dl)) ) |
continue; |
continue; |
Line 2629 ND_pairs nd_newpairs( NODE g, int t ) |
|
Line 3186 ND_pairs nd_newpairs( NODE g, int t ) |
|
return r0; |
return r0; |
} |
} |
|
|
|
int comp_sig(SIG s1,SIG s2) |
|
{ |
|
#if 0 |
|
if ( s1->pos > s2->pos ) return 1; |
|
else if ( s1->pos < s2->pos ) return -1; |
|
else return (*cmpdl)(nd_nvar,s1->dl,s2->dl); |
|
#else |
|
static DL m1,m2; |
|
static int nvar; |
|
int ret; |
|
|
|
if ( nvar != nd_nvar ) { |
|
nvar = nd_nvar; NEWDL(m1,nvar); NEWDL(m2,nvar); |
|
} |
|
// _ndltodl(DL(nd_psh[s1->pos]),m1); |
|
// _ndltodl(DL(nd_psh[s2->pos]),m2); |
|
_copydl(nd_nvar,nd_sba_hm[s1->pos],m1); |
|
_copydl(nd_nvar,nd_sba_hm[s2->pos],m2); |
|
_addtodl(nd_nvar,s1->dl,m1); |
|
_addtodl(nd_nvar,s2->dl,m2); |
|
ret = (*cmpdl)(nd_nvar,m1,m2); |
|
if ( ret != 0 ) return ret; |
|
else if ( s1->pos > s2->pos ) return 1; |
|
else if ( s1->pos < s2->pos ) return -1; |
|
else return 0; |
|
#endif |
|
} |
|
|
|
int _create_spair_s(int i1,int i2,ND_pairs sp,SIG sig1,SIG sig2) |
|
{ |
|
int ret,s1,s2; |
|
RHist p1,p2; |
|
static int wpd; |
|
static UINT *lcm; |
|
|
|
sp->i1 = i1; |
|
sp->i2 = i2; |
|
p1 = nd_psh[i1]; |
|
p2 = nd_psh[i2]; |
|
ndl_lcm(DL(p1),DL(p2),sp->lcm); |
|
s1 = SG(p1)-TD(DL(p1)); |
|
s2 = SG(p2)-TD(DL(p2)); |
|
SG(sp) = MAX(s1,s2) + TD(sp->lcm); |
|
|
|
if ( wpd != nd_wpd ) { |
|
wpd = nd_wpd; |
|
lcm = (UINT *)MALLOC(wpd*sizeof(UINT)); |
|
} |
|
// DL(sig1) <- sp->lcm |
|
// DL(sig1) -= DL(p1) |
|
// DL(sig1) += DL(p1->sig) |
|
ndl_sub(sp->lcm,DL(p1),lcm); |
|
_ndltodl(lcm,DL(sig1)); |
|
_addtodl(nd_nvar,DL(p1->sig),DL(sig1)); |
|
sig1->pos = p1->sig->pos; |
|
|
|
// DL(sig2) <- sp->lcm |
|
// DL(sig2) -= DL(p2) |
|
// DL(sig2) += DL(p2->sig) |
|
ndl_sub(sp->lcm,DL(p2),lcm); |
|
_ndltodl(lcm,DL(sig2)); |
|
_addtodl(nd_nvar,DL(p2->sig),DL(sig2)); |
|
sig2->pos = p2->sig->pos; |
|
|
|
ret = comp_sig(sig1,sig2); |
|
if ( ret == 0 ) return 0; |
|
else if ( ret > 0 ) sp->sig = sig1; |
|
else sp->sig = sig2; |
|
return 1; |
|
} |
|
|
|
SIG dup_sig(SIG sig) |
|
{ |
|
SIG r; |
|
|
|
if ( !sig ) return 0; |
|
else { |
|
NEWSIG(r); |
|
_copydl(nd_nvar,DL(sig),DL(r)); |
|
r->pos = sig->pos; |
|
return r; |
|
} |
|
} |
|
|
|
void dup_ND_pairs(ND_pairs to,ND_pairs from) |
|
{ |
|
to->i1 = from->i1; |
|
to->i2 = from->i2; |
|
to->sugar = from->sugar; |
|
to->sugar2 = from->sugar2; |
|
ndl_copy(from->lcm,to->lcm); |
|
to->sig = dup_sig(from->sig); |
|
} |
|
|
|
ND_pairs merge_pairs_s(ND_pairs p1,ND_pairs p2) |
|
{ |
|
struct oND_pairs root; |
|
ND_pairs q1,q2,r0,r; |
|
int ret; |
|
|
|
r = &root; |
|
for ( q1 = p1, q2 = p2; q1 != 0 && q2 != 0; ) { |
|
ret = comp_sig(q1->sig,q2->sig); |
|
if ( ret < 0 ) { |
|
r->next = q1; r = q1; q1 = q1->next; |
|
} else if ( ret > 0 ) { |
|
r->next = q2; r = q2; q2 = q2->next; |
|
} else { |
|
ret = DL_COMPARE(q1->lcm,q2->lcm); |
|
if ( ret < 0 ) { |
|
r->next = q1; r = q1; q1 = q1->next; |
|
q2 = q2->next; |
|
} else { |
|
r->next = q2; r = q2; q2 = q2->next; |
|
q1 = q1->next; |
|
} |
|
} |
|
} |
|
if ( q1 ) { |
|
r->next = q1; |
|
} else { |
|
r->next = q2; |
|
} |
|
return root.next; |
|
} |
|
|
|
ND_pairs insert_pair_s(ND_pairs l,ND_pairs s) |
|
{ |
|
ND_pairs p,prev; |
|
int ret; |
|
|
|
for ( p = l, prev = 0; p != 0; prev = p, p = p->next ) { |
|
if ( (ret = comp_sig(s->sig,p->sig)) <= 0 ) |
|
break; |
|
} |
|
if ( ret == 0 ) { |
|
ret = DL_COMPARE(s->lcm,p->lcm); |
|
if ( ret < 0 ) { |
|
// replace p with s |
|
s->next = p->next; |
|
if ( prev == 0 ) { |
|
return s; |
|
} else { |
|
prev->next = s; |
|
return l; |
|
} |
|
} else |
|
return l; |
|
} else { |
|
// insert s between prev and p |
|
s->next = p; |
|
if ( prev == 0 ) { |
|
return s; |
|
} else { |
|
prev->next = s; |
|
return l; |
|
} |
|
} |
|
} |
|
|
|
INLINE int __dl_redble(DL d1,DL d2,int nvar) |
|
{ |
|
int i; |
|
|
|
if ( d1->td > d2->td ) |
|
return 0; |
|
for ( i = nvar-1; i >= 0; i-- ) |
|
if ( d1->d[i] > d2->d[i] ) |
|
break; |
|
if ( i >= 0 ) |
|
return 0; |
|
else |
|
return 1; |
|
} |
|
|
|
ND_pairs nd_newpairs_s(int t, NODE *syz) |
|
{ |
|
NODE h,s; |
|
UINT *dl; |
|
int ts,ret,i; |
|
ND_pairs r,r0,_sp,sp; |
|
SIG spsig,tsig; |
|
static int nvar; |
|
static SIG _sig1,_sig2; |
|
struct oEGT eg1,eg2,eg3,eg4; |
|
|
|
NEWND_pairs(_sp); |
|
if ( !_sig1 || nvar != nd_nvar ) { |
|
nvar = nd_nvar; NEWSIG(_sig1); NEWSIG(_sig2); |
|
} |
|
r0 = 0; |
|
for ( i = 0; i < t; i++ ) { |
|
ret = _create_spair_s(i,t,_sp,_sig1,_sig2); |
|
if ( ret ) { |
|
spsig = _sp->sig; |
|
for ( s = syz[spsig->pos]; s; s = s->next ) { |
|
tsig = (SIG)s->body; |
|
if ( _dl_redble(DL(tsig),DL(spsig),nd_nvar) ) |
|
break; |
|
} |
|
if ( s == 0 ) { |
|
NEWND_pairs(sp); |
|
dup_ND_pairs(sp,_sp); |
|
r0 = insert_pair_s(r0,sp); |
|
} else |
|
Nsyz++; |
|
} |
|
} |
|
return r0; |
|
} |
|
|
/* ipair = [i1,i2],[i1,i2],... */ |
/* ipair = [i1,i2],[i1,i2],... */ |
ND_pairs nd_ipairtospair(NODE ipair) |
ND_pairs nd_ipairtospair(NODE ipair) |
{ |
{ |
Line 2906 ND_pairs nd_minsugarp( ND_pairs d, ND_pairs *prest ) |
|
Line 3674 ND_pairs nd_minsugarp( ND_pairs d, ND_pairs *prest ) |
|
return dm0; |
return dm0; |
} |
} |
|
|
|
ND_pairs nd_minsugarp_s( ND_pairs d, ND_pairs *prest ) |
|
{ |
|
int msugar; |
|
ND_pairs t,last; |
|
|
|
#if 0 |
|
for ( msugar = SG(d), t = d; t; t = NEXT(t) ) |
|
if ( SG(t) == msugar ) last = t; |
|
#else |
|
msugar = (d->sig->dl->td)+nd_sba_hm[d->sig->pos]->td; |
|
for ( t = d; t; t = NEXT(t) ) |
|
if ( ((t->sig->dl->td)+nd_sba_hm[t->sig->pos]->td) == msugar ) last = t; |
|
#endif |
|
*prest = last->next; |
|
last->next = 0; |
|
return d; |
|
} |
|
|
int nd_tdeg(NDV c) |
int nd_tdeg(NDV c) |
{ |
{ |
int wmax = 0; |
int wmax = 0; |
Line 2918 int nd_tdeg(NDV c) |
|
Line 3704 int nd_tdeg(NDV c) |
|
return wmax; |
return wmax; |
} |
} |
|
|
int ndv_newps(int m,NDV a,NDV aq,int f4) |
int ndv_newps(int m,NDV a,NDV aq) |
{ |
{ |
int len; |
int len; |
RHist r; |
RHist r; |
Line 2954 int ndv_newps(int m,NDV a,NDV aq,int f4) |
|
Line 3740 int ndv_newps(int m,NDV a,NDV aq,int f4) |
|
SG(r) = nd_tdeg(aq); |
SG(r) = nd_tdeg(aq); |
#endif |
#endif |
ndl_copy(HDL(aq),DL(r)); |
ndl_copy(HDL(aq),DL(r)); |
|
r->sig = dup_sig(aq->sig); |
} else { |
} else { |
if ( !m ) register_hcf(a); |
if ( !m ) register_hcf(a); |
nd_bound[nd_psn] = ndv_compute_bound(a); |
nd_bound[nd_psn] = ndv_compute_bound(a); |
Line 2963 int ndv_newps(int m,NDV a,NDV aq,int f4) |
|
Line 3750 int ndv_newps(int m,NDV a,NDV aq,int f4) |
|
SG(r) = nd_tdeg(a); |
SG(r) = nd_tdeg(a); |
#endif |
#endif |
ndl_copy(HDL(a),DL(r)); |
ndl_copy(HDL(a),DL(r)); |
|
r->sig = dup_sig(a->sig); |
} |
} |
if ( nd_demand ) { |
if ( nd_demand ) { |
if ( aq ) { |
if ( aq ) { |
Line 2988 int ndv_newps(int m,NDV a,NDV aq,int f4) |
|
Line 3776 int ndv_newps(int m,NDV a,NDV aq,int f4) |
|
/* nd_tracelist = [[0,index,div],...,[nd_psn-1,index,div]] */ |
/* nd_tracelist = [[0,index,div],...,[nd_psn-1,index,div]] */ |
/* return 1 if success, 0 if failure (HC(a mod p)) */ |
/* return 1 if success, 0 if failure (HC(a mod p)) */ |
|
|
int ndv_setup(int mod,int trace,NODE f,int dont_sort,int dont_removecont) |
int ndv_setup(int mod,int trace,NODE f,int dont_sort,int dont_removecont,int sba) |
{ |
{ |
int i,j,td,len,max; |
int i,j,td,len,max; |
NODE s,s0,f0,tn; |
NODE s,s0,f0,tn; |
Line 3012 int ndv_setup(int mod,int trace,NODE f,int dont_sort,i |
|
Line 3800 int ndv_setup(int mod,int trace,NODE f,int dont_sort,i |
|
if ( BDY(s) ) { w[i].p = BDY(s); w[i].i = j; i++; } |
if ( BDY(s) ) { w[i].p = BDY(s); w[i].i = j; i++; } |
if ( !dont_sort ) { |
if ( !dont_sort ) { |
/* XXX heuristic */ |
/* XXX heuristic */ |
if ( !nd_ord->id && (nd_ord->ord.simple<2) ) |
if ( !sba && !nd_ord->id && (nd_ord->ord.simple<2) ) |
qsort(w,nd_psn,sizeof(struct oNDVI), |
qsort(w,nd_psn,sizeof(struct oNDVI), |
(int (*)(const void *,const void *))ndvi_compare_rev); |
(int (*)(const void *,const void *))ndvi_compare_rev); |
else |
else |
Line 3088 int ndv_setup(int mod,int trace,NODE f,int dont_sort,i |
|
Line 3876 int ndv_setup(int mod,int trace,NODE f,int dont_sort,i |
|
} |
} |
} |
} |
} |
} |
|
if ( sba ) { |
|
nd_sba_hm = (DL *)MALLOC(nd_psn*sizeof(DL)); |
|
// setup signatures |
|
for ( i = 0; i < nd_psn; i++ ) { |
|
SIG sig; |
|
|
|
NEWSIG(sig); sig->pos = i; |
|
nd_ps[i]->sig = sig; |
|
if ( nd_demand ) nd_ps_sym[i]->sig = sig; |
|
nd_psh[i]->sig = sig; |
|
if ( trace ) { |
|
nd_ps_trace[i]->sig = sig; |
|
if ( nd_demand ) nd_ps_trace_sym[i]->sig = sig; |
|
} |
|
NEWDL(nd_sba_hm[i],nd_nvar); |
|
_ndltodl(DL(nd_psh[i]),nd_sba_hm[i]); |
|
} |
|
nd_sba_pos = (NODE *)MALLOC(nd_psn*sizeof(NODE)); |
|
for ( i = 0; i < nd_psn; i++ ) { |
|
j = nd_psh[i]->sig->pos; |
|
nd_sba_pos[j] = append_one(nd_sba_pos[j],i); |
|
} |
|
} |
if ( nd_gentrace && nd_tracelist ) NEXT(tn) = 0; |
if ( nd_gentrace && nd_tracelist ) NEXT(tn) = 0; |
return 1; |
return 1; |
} |
} |
Line 3220 void nd_gr(LIST f,LIST v,int m,int homo,int retdp,int |
|
Line 4031 void nd_gr(LIST f,LIST v,int m,int homo,int retdp,int |
|
int *perm; |
int *perm; |
EPOS oepos; |
EPOS oepos; |
int obpe,oadv,ompos,cbpe; |
int obpe,oadv,ompos,cbpe; |
|
VECT hvect; |
|
|
nd_module = 0; |
nd_module = 0; |
if ( !m && Demand ) nd_demand = 1; |
if ( !m && Demand ) nd_demand = 1; |
Line 3263 void nd_gr(LIST f,LIST v,int m,int homo,int retdp,int |
|
Line 4075 void nd_gr(LIST f,LIST v,int m,int homo,int retdp,int |
|
for ( t = BDY(f), max = 1; t; t = NEXT(t) ) |
for ( t = BDY(f), max = 1; t; t = NEXT(t) ) |
for ( tv = vv; tv; tv = NEXT(tv) ) { |
for ( tv = vv; tv; tv = NEXT(tv) ) { |
if ( nd_module ) { |
if ( nd_module ) { |
s = BDY((LIST)BDY(t)); |
if ( OID(BDY(t)) == O_DPM ) { |
trank = length(s); |
e = dpm_getdeg((DPM)BDY(t),&trank); |
mrank = MAX(mrank,trank); |
max = MAX(e,max); |
for ( ; s; s = NEXT(s) ) { |
mrank = MAX(mrank,trank); |
e = getdeg(tv->v,(P)BDY(s)); |
} else { |
max = MAX(e,max); |
s = BDY((LIST)BDY(t)); |
|
trank = length(s); |
|
mrank = MAX(mrank,trank); |
|
for ( ; s; s = NEXT(s) ) { |
|
e = getdeg(tv->v,(P)BDY(s)); |
|
max = MAX(e,max); |
|
} |
} |
} |
} else { |
} else { |
e = getdeg(tv->v,(P)BDY(t)); |
e = getdeg(tv->v,(P)BDY(t)); |
Line 3280 void nd_gr(LIST f,LIST v,int m,int homo,int retdp,int |
|
Line 4098 void nd_gr(LIST f,LIST v,int m,int homo,int retdp,int |
|
ishomo = 1; |
ishomo = 1; |
for ( fd0 = 0, t = BDY(f); t; t = NEXT(t) ) { |
for ( fd0 = 0, t = BDY(f); t; t = NEXT(t) ) { |
if ( nd_module ) { |
if ( nd_module ) { |
if ( !m && !nd_gentrace ) pltozpl((LIST)BDY(t),&dmy,&zpl); |
if ( OID(BDY(t)) == O_DPM ) { |
else zpl = (LIST)BDY(t); |
Z cont; |
|
DPM zdpm; |
|
|
|
if ( !m && !nd_gentrace ) dpm_ptozp((DPM)BDY(t),&cont,&zdpm); |
|
else zdpm = (DPM)BDY(t); |
|
b = (pointer)dpmtondv(m,zdpm); |
|
} else { |
|
if ( !m && !nd_gentrace ) pltozpl((LIST)BDY(t),&dmy,&zpl); |
|
else zpl = (LIST)BDY(t); |
b = (pointer)pltondv(CO,vv,zpl); |
b = (pointer)pltondv(CO,vv,zpl); |
|
} |
} else { |
} else { |
if ( !m && !nd_gentrace ) ptozp((P)BDY(t),1,&dmy,&zp); |
if ( !m && !nd_gentrace ) ptozp((P)BDY(t),1,&dmy,&zp); |
else zp = (P)BDY(t); |
else zp = (P)BDY(t); |
Line 3308 void nd_gr(LIST f,LIST v,int m,int homo,int retdp,int |
|
Line 4135 void nd_gr(LIST f,LIST v,int m,int homo,int retdp,int |
|
ndv_homogenize((NDV)BDY(t),obpe,oadv,oepos,ompos); |
ndv_homogenize((NDV)BDY(t),obpe,oadv,oepos,ompos); |
} |
} |
|
|
ndv_setup(m,0,fd0,(nd_gbblock||nd_splist||nd_check_splist)?1:0,0); |
ndv_setup(m,0,fd0,(nd_gbblock||nd_splist||nd_check_splist)?1:0,0,0); |
if ( nd_gentrace ) { |
if ( nd_gentrace ) { |
MKLIST(l1,nd_tracelist); MKNODE(nd_alltracelist,l1,0); |
MKLIST(l1,nd_tracelist); MKNODE(nd_alltracelist,l1,0); |
} |
} |
Line 3330 void nd_gr(LIST f,LIST v,int m,int homo,int retdp,int |
|
Line 4157 void nd_gr(LIST f,LIST v,int m,int homo,int retdp,int |
|
if ( !x ) { |
if ( !x ) { |
*rp = 0; return; |
*rp = 0; return; |
} |
} |
|
if ( nd_gentrace ) { |
|
MKVECT(hvect,nd_psn); |
|
for ( i = 0; i < nd_psn; i++ ) |
|
ndltodp(nd_psh[i]->dl,(DP *)&BDY(hvect)[i]); |
|
} |
if ( !ishomo && homo ) { |
if ( !ishomo && homo ) { |
/* dehomogenization */ |
/* dehomogenization */ |
for ( t = x; t; t = NEXT(t) ) ndv_dehomogenize((NDV)BDY(t),ord); |
for ( t = x; t; t = NEXT(t) ) ndv_dehomogenize((NDV)BDY(t),ord); |
Line 3339 void nd_gr(LIST f,LIST v,int m,int homo,int retdp,int |
|
Line 4171 void nd_gr(LIST f,LIST v,int m,int homo,int retdp,int |
|
nd_demand = 0; |
nd_demand = 0; |
if ( nd_module && nd_intersect ) { |
if ( nd_module && nd_intersect ) { |
for ( j = nd_psn-1, x = 0; j >= 0; j-- ) |
for ( j = nd_psn-1, x = 0; j >= 0; j-- ) |
if ( MPOS(DL(nd_psh[j])) > 1 ) { |
if ( MPOS(DL(nd_psh[j])) > nd_intersect ) { |
MKNODE(xx,(pointer)((unsigned long)j),x); x = xx; |
MKNODE(xx,(pointer)((unsigned long)j),x); x = xx; |
} |
} |
conv_ilist(nd_demand,0,x,0); |
conv_ilist(nd_demand,0,x,0); |
Line 3363 void nd_gr(LIST f,LIST v,int m,int homo,int retdp,int |
|
Line 4195 void nd_gr(LIST f,LIST v,int m,int homo,int retdp,int |
|
nd_setup_parameters(nd_nvar,0); |
nd_setup_parameters(nd_nvar,0); |
FINAL: |
FINAL: |
for ( r0 = 0, t = x; t; t = NEXT(t) ) { |
for ( r0 = 0, t = x; t; t = NEXT(t) ) { |
NEXTNODE(r0,r); |
NEXTNODE(r0,r); |
if ( nd_module ) BDY(r) = ndvtopl(m,CO,vv,BDY(t),mrank); |
if ( nd_module ) { |
else if ( retdp ) BDY(r) = ndvtodp(m,BDY(t)); |
if ( retdp ) BDY(r) = ndvtodpm(m,BDY(t)); |
else BDY(r) = ndvtop(m,CO,vv,BDY(t)); |
else BDY(r) = ndvtopl(m,CO,vv,BDY(t),mrank); |
|
} else if ( retdp ) BDY(r) = ndvtodp(m,BDY(t)); |
|
else BDY(r) = ndvtop(m,CO,vv,BDY(t)); |
} |
} |
if ( r0 ) NEXT(r) = 0; |
if ( r0 ) NEXT(r) = 0; |
if ( !m && nd_nalg ) |
if ( !m && nd_nalg ) |
|
|
if ( f4 ) { |
if ( f4 ) { |
STOZ(16,bpe); |
STOZ(16,bpe); |
STOZ(nd_last_nonzero,last_nonzero); |
STOZ(nd_last_nonzero,last_nonzero); |
tr = mknode(5,*rp,(!ishomo&&homo)?ONE:0,BDY(nzlist),bpe,last_nonzero); MKLIST(*rp,tr); |
tr = mknode(6,*rp,(!ishomo&&homo)?ONE:0,BDY(nzlist),bpe,last_nonzero,hvect); MKLIST(*rp,tr); |
|
|
} else { |
} else { |
tl1 = reverse_node(tl1); tl2 = reverse_node(tl2); |
tl1 = reverse_node(tl1); tl2 = reverse_node(tl2); |
tl3 = reverse_node(tl3); |
tl3 = reverse_node(tl3); |
|
|
MKLIST(l1,tl1); MKLIST(l2,tl2); MKLIST(l3,t); MKLIST(l4,tl3); |
MKLIST(l1,tl1); MKLIST(l2,tl2); MKLIST(l3,t); MKLIST(l4,tl3); |
MKLIST(l5,tl4); |
MKLIST(l5,tl4); |
STOZ(nd_bpe,bpe); |
STOZ(nd_bpe,bpe); |
tr = mknode(8,*rp,(!ishomo&&homo)?ONE:0,l1,l2,l3,l4,l5,bpe); MKLIST(*rp,tr); |
tr = mknode(9,*rp,(!ishomo&&homo)?ONE:0,l1,l2,l3,l4,l5,bpe,hvect); MKLIST(*rp,tr); |
} |
} |
} |
} |
#if 0 |
#if 0 |
|
|
#endif |
#endif |
} |
} |
|
|
|
NODE nd_sba_f4(int m,int **indp); |
|
|
|
void nd_sba(LIST f,LIST v,int m,int homo,int retdp,int f4,struct order_spec *ord,LIST *rp) |
|
{ |
|
VL tv,fv,vv,vc,av; |
|
NODE fd,fd0,r,r0,t,x,s,xx; |
|
int e,max,nvar,i; |
|
NDV b; |
|
int ishomo,nalg,wmax,len; |
|
NMV a; |
|
P p,zp; |
|
Q dmy; |
|
struct order_spec *ord1; |
|
int j; |
|
int *perm; |
|
EPOS oepos; |
|
int obpe,oadv,ompos,cbpe; |
|
struct oEGT eg0,eg1,egconv; |
|
|
|
nd_module = 0; |
|
nd_demand = 0; |
|
parse_nd_option(current_option); |
|
|
|
if ( DP_Multiple ) |
|
nd_scale = ((double)DP_Multiple)/(double)(Denominator?Denominator:1); |
|
get_vars((Obj)f,&fv); pltovl(v,&vv); vlminus(fv,vv,&nd_vc); |
|
if ( m && nd_vc ) |
|
error("nd_sba : computation over Fp(X) is unsupported. Use dp_gr_mod_main()."); |
|
for ( nvar = 0, tv = vv; tv; tv = NEXT(tv), nvar++ ); |
|
switch ( ord->id ) { |
|
case 1: |
|
if ( ord->nv != nvar ) |
|
error("nd_sba : invalid order specification"); |
|
break; |
|
default: |
|
break; |
|
} |
|
nd_nalg = 0; |
|
nd_init_ord(ord); |
|
// for SIG comparison |
|
initd(ord); |
|
for ( t = BDY(f), max = 1; t; t = NEXT(t) ) { |
|
for ( tv = vv; tv; tv = NEXT(tv) ) { |
|
e = getdeg(tv->v,(P)BDY(t)); |
|
max = MAX(e,max); |
|
} |
|
} |
|
nd_setup_parameters(nvar,max); |
|
obpe = nd_bpe; oadv = nmv_adv; oepos = nd_epos; ompos = nd_mpos; |
|
ishomo = 1; |
|
for ( fd0 = 0, t = BDY(f); t; t = NEXT(t) ) { |
|
if ( !m ) ptozp((P)BDY(t),1,&dmy,&zp); |
|
else zp = (P)BDY(t); |
|
b = (pointer)ptondv(CO,vv,zp); |
|
if ( ishomo ) |
|
ishomo = ishomo && ndv_ishomo(b); |
|
if ( m ) ndv_mod(m,b); |
|
if ( b ) { NEXTNODE(fd0,fd); BDY(fd) = (pointer)b; } |
|
} |
|
if ( fd0 ) NEXT(fd) = 0; |
|
|
|
if ( !ishomo && homo ) { |
|
for ( t = fd0, wmax = max; t; t = NEXT(t) ) { |
|
b = (NDV)BDY(t); len = LEN(b); |
|
for ( a = BDY(b), i = 0; i < len; i++, NMV_ADV(a) ) |
|
wmax = MAX(TD(DL(a)),wmax); |
|
} |
|
homogenize_order(ord,nvar,&ord1); |
|
nd_init_ord(ord1); |
|
nd_setup_parameters(nvar+1,nd_nzlist?0:wmax); |
|
for ( t = fd0; t; t = NEXT(t) ) |
|
ndv_homogenize((NDV)BDY(t),obpe,oadv,oepos,ompos); |
|
} |
|
|
|
ndv_setup(m,0,fd0,0,0,1); |
|
x = f4 ? nd_sba_f4(m,&perm) : nd_sba_buch(m,ishomo || homo,&perm); |
|
if ( !x ) { |
|
*rp = 0; return; |
|
} |
|
if ( !ishomo && homo ) { |
|
/* dehomogenization */ |
|
for ( t = x; t; t = NEXT(t) ) ndv_dehomogenize((NDV)BDY(t),ord); |
|
nd_init_ord(ord); |
|
nd_setup_parameters(nvar,0); |
|
} |
|
nd_demand = 0; |
|
x = ndv_reducebase(x,perm); |
|
x = ndv_reduceall(m,x); |
|
nd_setup_parameters(nd_nvar,0); |
|
get_eg(&eg0); |
|
for ( r0 = 0, t = x; t; t = NEXT(t) ) { |
|
NEXTNODE(r0,r); |
|
if ( retdp ) BDY(r) = ndvtodp(m,BDY(t)); |
|
BDY(r) = ndvtop(m,CO,vv,BDY(t)); |
|
} |
|
if ( r0 ) NEXT(r) = 0; |
|
MKLIST(*rp,r0); |
|
get_eg(&eg1); init_eg(&egconv); add_eg(&egconv,&eg0,&eg1); |
|
print_eg("conv",&egconv); fprintf(asir_out,"\n"); |
|
} |
|
|
void nd_gr_postproc(LIST f,LIST v,int m,struct order_spec *ord,int do_check,LIST *rp) |
void nd_gr_postproc(LIST f,LIST v,int m,struct order_spec *ord,int do_check,LIST *rp) |
{ |
{ |
VL tv,fv,vv,vc,av; |
VL tv,fv,vv,vc,av; |
Line 3464 void nd_gr_postproc(LIST f,LIST v,int m,struct order_s |
|
Line 4398 void nd_gr_postproc(LIST f,LIST v,int m,struct order_s |
|
if ( b ) { NEXTNODE(fd0,fd); BDY(fd) = (pointer)b; } |
if ( b ) { NEXTNODE(fd0,fd); BDY(fd) = (pointer)b; } |
} |
} |
if ( fd0 ) NEXT(fd) = 0; |
if ( fd0 ) NEXT(fd) = 0; |
ndv_setup(m,0,fd0,0,1); |
ndv_setup(m,0,fd0,0,1,0); |
for ( x = 0, i = 0; i < nd_psn; i++ ) |
for ( x = 0, i = 0; i < nd_psn; i++ ) |
x = update_base(x,i); |
x = update_base(x,i); |
if ( do_check ) { |
if ( do_check ) { |
Line 3641 void nd_gr_recompute_trace(LIST f,LIST v,int m,struct |
|
Line 4575 void nd_gr_recompute_trace(LIST f,LIST v,int m,struct |
|
if ( DP_Print ) fprintf(asir_out,"\n"); |
if ( DP_Print ) fprintf(asir_out,"\n"); |
} |
} |
|
|
void nd_gr_trace(LIST f,LIST v,int trace,int homo,int f4,struct order_spec *ord,LIST *rp) |
void nd_gr_trace(LIST f,LIST v,int trace,int homo,int retdp,int f4,struct order_spec *ord,LIST *rp) |
{ |
{ |
VL tv,fv,vv,vc,av; |
VL tv,fv,vv,vc,av; |
NODE fd,fd0,in0,in,r,r0,t,s,cand,alist; |
NODE fd,fd0,in0,in,r,r0,t,s,cand,alist; |
Line 3664 void nd_gr_trace(LIST f,LIST v,int trace,int homo,int |
|
Line 4598 void nd_gr_trace(LIST f,LIST v,int trace,int homo,int |
|
int *perm; |
int *perm; |
int j,ret; |
int j,ret; |
Z jq,bpe; |
Z jq,bpe; |
|
VECT hvect; |
|
|
nd_module = 0; |
nd_module = 0; |
nd_lf = 0; |
nd_lf = 0; |
Line 3718 void nd_gr_trace(LIST f,LIST v,int trace,int homo,int |
|
Line 4653 void nd_gr_trace(LIST f,LIST v,int trace,int homo,int |
|
for ( t = BDY(f), max = 1; t; t = NEXT(t) ) |
for ( t = BDY(f), max = 1; t; t = NEXT(t) ) |
for ( tv = vv; tv; tv = NEXT(tv) ) { |
for ( tv = vv; tv; tv = NEXT(tv) ) { |
if ( nd_module ) { |
if ( nd_module ) { |
|
if ( OID(BDY(t)) == O_DPM ) { |
|
e = dpm_getdeg((DPM)BDY(t),&trank); |
|
max = MAX(e,max); |
|
mrank = MAX(mrank,trank); |
|
} else { |
s = BDY((LIST)BDY(t)); |
s = BDY((LIST)BDY(t)); |
trank = length(s); |
trank = length(s); |
mrank = MAX(mrank,trank); |
mrank = MAX(mrank,trank); |
Line 3725 void nd_gr_trace(LIST f,LIST v,int trace,int homo,int |
|
Line 4665 void nd_gr_trace(LIST f,LIST v,int trace,int homo,int |
|
e = getdeg(tv->v,(P)BDY(s)); |
e = getdeg(tv->v,(P)BDY(s)); |
max = MAX(e,max); |
max = MAX(e,max); |
} |
} |
|
} |
} else { |
} else { |
e = getdeg(tv->v,(P)BDY(t)); |
e = getdeg(tv->v,(P)BDY(t)); |
max = MAX(e,max); |
max = MAX(e,max); |
Line 3735 void nd_gr_trace(LIST f,LIST v,int trace,int homo,int |
|
Line 4676 void nd_gr_trace(LIST f,LIST v,int trace,int homo,int |
|
ishomo = 1; |
ishomo = 1; |
for ( in0 = 0, fd0 = 0, t = BDY(f); t; t = NEXT(t) ) { |
for ( in0 = 0, fd0 = 0, t = BDY(f); t; t = NEXT(t) ) { |
if ( nd_module ) { |
if ( nd_module ) { |
if ( !nd_gentrace ) pltozpl((LIST)BDY(t),&dmy,&zpl); |
if ( OID(BDY(t)) == O_DPM ) { |
else zpl = (LIST)BDY(t); |
Z cont; |
|
DPM zdpm; |
|
|
|
if ( !nd_gentrace ) dpm_ptozp((DPM)BDY(t),&cont,&zdpm); |
|
else zdpm = (DPM)BDY(t); |
|
c = (pointer)dpmtondv(m,zdpm); |
|
} else { |
|
if ( !nd_gentrace ) pltozpl((LIST)BDY(t),&dmy,&zpl); |
|
else zpl = (LIST)BDY(t); |
c = (pointer)pltondv(CO,vv,zpl); |
c = (pointer)pltondv(CO,vv,zpl); |
|
} |
} else { |
} else { |
if ( !nd_gentrace ) ptozp((P)BDY(t),1,&dmy,&zp); |
if ( !nd_gentrace ) ptozp((P)BDY(t),1,&dmy,&zp); |
else zp = (P)BDY(t); |
else zp = (P)BDY(t); |
c = (pointer)ptondv(CO,vv,zp); |
c = (pointer)ptondv(CO,vv,zp); |
} |
} |
if ( ishomo ) |
if ( ishomo ) |
ishomo = ishomo && ndv_ishomo(c); |
ishomo = ishomo && ndv_ishomo(c); |
Line 3769 void nd_gr_trace(LIST f,LIST v,int trace,int homo,int |
|
Line 4719 void nd_gr_trace(LIST f,LIST v,int trace,int homo,int |
|
tl1 = tl2 = tl3 = tl4 = 0; |
tl1 = tl2 = tl3 = tl4 = 0; |
if ( Demand ) |
if ( Demand ) |
nd_demand = 1; |
nd_demand = 1; |
ret = ndv_setup(m,1,fd0,nd_gbblock?1:0,0); |
ret = ndv_setup(m,1,fd0,nd_gbblock?1:0,0,0); |
if ( nd_gentrace ) { |
if ( nd_gentrace ) { |
MKLIST(l1,nd_tracelist); MKNODE(nd_alltracelist,l1,0); |
MKLIST(l1,nd_tracelist); MKNODE(nd_alltracelist,l1,0); |
} |
} |
Line 3781 void nd_gr_trace(LIST f,LIST v,int trace,int homo,int |
|
Line 4731 void nd_gr_trace(LIST f,LIST v,int trace,int homo,int |
|
else m = get_lprime(++mindex); |
else m = get_lprime(++mindex); |
continue; |
continue; |
} |
} |
|
if ( nd_gentrace ) { |
|
MKVECT(hvect,nd_psn); |
|
for ( i = 0; i < nd_psn; i++ ) |
|
ndltodp(nd_psh[i]->dl,(DP *)&BDY(hvect)[i]); |
|
} |
if ( !ishomo && homo ) { |
if ( !ishomo && homo ) { |
/* dehomogenization */ |
/* dehomogenization */ |
for ( t = cand; t; t = NEXT(t) ) ndv_dehomogenize((NDV)BDY(t),ord); |
for ( t = cand; t; t = NEXT(t) ) ndv_dehomogenize((NDV)BDY(t),ord); |
Line 3833 void nd_gr_trace(LIST f,LIST v,int trace,int homo,int |
|
Line 4788 void nd_gr_trace(LIST f,LIST v,int trace,int homo,int |
|
nd_bpe = cbpe; |
nd_bpe = cbpe; |
nd_setup_parameters(nd_nvar,0); |
nd_setup_parameters(nd_nvar,0); |
for ( r = cand; r; r = NEXT(r) ) { |
for ( r = cand; r; r = NEXT(r) ) { |
if ( nd_module ) BDY(r) = ndvtopl(0,CO,vv,BDY(r),mrank); |
if ( nd_module ) { |
else BDY(r) = (pointer)ndvtop(0,CO,vv,BDY(r)); |
if ( retdp ) BDY(r) = ndvtodpm(0,BDY(r)); |
|
else BDY(r) = ndvtopl(0,CO,vv,BDY(r),mrank); |
|
} else if ( retdp ) BDY(r) = ndvtodp(0,BDY(r)); |
|
else BDY(r) = (pointer)ndvtop(0,CO,vv,BDY(r)); |
} |
} |
if ( nd_nalg ) |
if ( nd_nalg ) |
cand = postprocess_algcoef(av,alist,cand); |
cand = postprocess_algcoef(av,alist,cand); |
Line 3858 void nd_gr_trace(LIST f,LIST v,int trace,int homo,int |
|
Line 4816 void nd_gr_trace(LIST f,LIST v,int trace,int homo,int |
|
MKLIST(l1,tl1); MKLIST(l2,tl2); MKLIST(l3,t); MKLIST(l4,tl3); |
MKLIST(l1,tl1); MKLIST(l2,tl2); MKLIST(l3,t); MKLIST(l4,tl3); |
MKLIST(l5,tl4); |
MKLIST(l5,tl4); |
STOZ(nd_bpe,bpe); |
STOZ(nd_bpe,bpe); |
tr = mknode(8,*rp,(!ishomo&&homo)?ONE:0,l1,l2,l3,l4,l5,bpe); MKLIST(*rp,tr); |
tr = mknode(9,*rp,(!ishomo&&homo)?ONE:0,l1,l2,l3,l4,l5,bpe,hvect); MKLIST(*rp,tr); |
} |
} |
} |
} |
|
|
Line 3910 DL ndltodl(int n,UINT *ndl) |
|
Line 4868 DL ndltodl(int n,UINT *ndl) |
|
return dl; |
return dl; |
} |
} |
|
|
|
void _ndltodl(UINT *ndl,DL dl) |
|
{ |
|
int *d; |
|
int i,j,l,s,ord_l,n; |
|
struct order_pair *op; |
|
|
|
n = nd_nvar; |
|
dl->td = TD(ndl); |
|
d = dl->d; |
|
if ( nd_blockmask ) { |
|
l = nd_blockmask->n; |
|
op = nd_blockmask->order_pair; |
|
for ( j = 0, s = 0; j < l; j++ ) { |
|
ord_l = op[j].length; |
|
for ( i = 0; i < ord_l; i++, s++ ) d[s] = GET_EXP(ndl,s); |
|
} |
|
} else { |
|
for ( i = 0; i < n; i++ ) d[i] = GET_EXP(ndl,i); |
|
} |
|
} |
|
|
void nmtodp(int mod,NM m,DP *r) |
void nmtodp(int mod,NM m,DP *r) |
{ |
{ |
DP dp; |
DP dp; |
Line 3922 void nmtodp(int mod,NM m,DP *r) |
|
Line 4901 void nmtodp(int mod,NM m,DP *r) |
|
*r = dp; |
*r = dp; |
} |
} |
|
|
|
void ndltodp(UINT *d,DP *r) |
|
{ |
|
DP dp; |
|
MP mr; |
|
|
|
NEWMP(mr); |
|
mr->dl = ndltodl(nd_nvar,d); |
|
mr->c = (Obj)ONE; |
|
NEXT(mr) = 0; MKDP(nd_nvar,mr,dp); dp->sugar = mr->dl->td; |
|
*r = dp; |
|
} |
|
|
void ndl_print(UINT *dl) |
void ndl_print(UINT *dl) |
{ |
{ |
int n; |
int n; |
Line 3955 void nd_print(ND p) |
|
Line 4946 void nd_print(ND p) |
|
else { |
else { |
for ( m = BDY(p); m; m = NEXT(m) ) { |
for ( m = BDY(p); m; m = NEXT(m) ) { |
if ( CM(m) & 0x80000000 ) printf("+@_%d*",IFTOF(CM(m))); |
if ( CM(m) & 0x80000000 ) printf("+@_%d*",IFTOF(CM(m))); |
else printf("+%d*",CM(m)); |
else printf("+%ld*",CM(m)); |
ndl_print(DL(m)); |
ndl_print(DL(m)); |
} |
} |
printf("\n"); |
printf("\n"); |
Line 4086 void ndv_homogenize(NDV p,int obpe,int oadv,EPOS oepos |
|
Line 5077 void ndv_homogenize(NDV p,int obpe,int oadv,EPOS oepos |
|
NMV m,mr0,mr,t; |
NMV m,mr0,mr,t; |
|
|
len = p->len; |
len = p->len; |
for ( m = BDY(p), i = 0, max = 1; i < len; NMV_OADV(m), i++ ) |
for ( m = BDY(p), i = 0, max = 0; i < len; NMV_OADV(m), i++ ) |
max = MAX(max,TD(DL(m))); |
max = MAX(max,TD(DL(m))); |
mr0 = nmv_adv>oadv?(NMV)REALLOC(BDY(p),len*nmv_adv):BDY(p); |
mr0 = nmv_adv>oadv?(NMV)REALLOC(BDY(p),len*nmv_adv):BDY(p); |
m = (NMV)((char *)mr0+(len-1)*oadv); |
m = (NMV)((char *)mr0+(len-1)*oadv); |
Line 4231 void mpz_removecont_array(mpz_t *c,int n) |
|
Line 5222 void mpz_removecont_array(mpz_t *c,int n) |
|
{ |
{ |
mpz_t d0,a,u,u1,gcd; |
mpz_t d0,a,u,u1,gcd; |
int i,j; |
int i,j; |
mpz_t *q,*r; |
static mpz_t *q,*r; |
|
static int c_len = 0; |
|
|
for ( i = 0; i < n; i++ ) |
for ( i = 0; i < n; i++ ) |
if ( mpz_sgn(c[i]) ) break; |
if ( mpz_sgn(c[i]) ) break; |
if ( i == n ) return; |
if ( i == n ) return; |
gcdv_mpz_estimate(d0,c,n); |
gcdv_mpz_estimate(d0,c,n); |
q = (mpz_t *)MALLOC(n*sizeof(mpz_t)); |
if ( n > c_len ) { |
r = (mpz_t *)MALLOC(n*sizeof(mpz_t)); |
q = (mpz_t *)MALLOC(n*sizeof(mpz_t)); |
|
r = (mpz_t *)MALLOC(n*sizeof(mpz_t)); |
|
c_len = n; |
|
} |
for ( i = 0; i < n; i++ ) { |
for ( i = 0; i < n; i++ ) { |
mpz_init(q[i]); mpz_init(r[i]); |
mpz_init(q[i]); mpz_init(r[i]); |
mpz_fdiv_qr(q[i],r[i],c[i],d0); |
mpz_fdiv_qr(q[i],r[i],c[i],d0); |
Line 4410 UINT *nd_compute_bound(ND p) |
|
Line 5405 UINT *nd_compute_bound(ND p) |
|
int nd_get_exporigin(struct order_spec *ord) |
int nd_get_exporigin(struct order_spec *ord) |
{ |
{ |
switch ( ord->id ) { |
switch ( ord->id ) { |
case 0: case 2: case 256: case 258: |
case 0: case 2: case 256: case 258: case 300: |
return 1+nd_module; |
return 1+nd_module; |
case 1: case 257: |
case 1: case 257: |
/* block order */ |
/* block order */ |
Line 4546 ND_pairs nd_reconstruct(int trace,ND_pairs d) |
|
Line 5541 ND_pairs nd_reconstruct(int trace,ND_pairs d) |
|
NEXTND_pairs(s0,s); |
NEXTND_pairs(s0,s); |
s->i1 = t->i1; |
s->i1 = t->i1; |
s->i2 = t->i2; |
s->i2 = t->i2; |
|
s->sig = t->sig; |
SG(s) = SG(t); |
SG(s) = SG(t); |
ndl_reconstruct(LCM(t),LCM(s),obpe,oepos); |
ndl_reconstruct(LCM(t),LCM(s),obpe,oepos); |
} |
} |
Line 4564 ND_pairs nd_reconstruct(int trace,ND_pairs d) |
|
Line 5560 ND_pairs nd_reconstruct(int trace,ND_pairs d) |
|
h = ndl_hash_value(DL(mr)); |
h = ndl_hash_value(DL(mr)); |
NEXT(mr) = nd_red[h]; |
NEXT(mr) = nd_red[h]; |
nd_red[h] = mr; |
nd_red[h] = mr; |
|
mr->sig = r->sig; |
} |
} |
for ( i = 0; i < REDTAB_LEN; i++ ) old_red[i] = 0; |
for ( i = 0; i < REDTAB_LEN; i++ ) old_red[i] = 0; |
old_red = 0; |
old_red = 0; |
for ( i = 0; i < nd_psn; i++ ) { |
for ( i = 0; i < nd_psn; i++ ) { |
NEWRHist(r); SG(r) = SG(nd_psh[i]); |
NEWRHist(r); SG(r) = SG(nd_psh[i]); |
ndl_reconstruct(DL(nd_psh[i]),DL(r),obpe,oepos); |
ndl_reconstruct(DL(nd_psh[i]),DL(r),obpe,oepos); |
|
r->sig = nd_psh[i]->sig; |
nd_psh[i] = r; |
nd_psh[i] = r; |
} |
} |
if ( s0 ) NEXT(s) = 0; |
if ( s0 ) NEXT(s) = 0; |
Line 4581 ND_pairs nd_reconstruct(int trace,ND_pairs d) |
|
Line 5579 ND_pairs nd_reconstruct(int trace,ND_pairs d) |
|
return s0; |
return s0; |
} |
} |
|
|
|
void nd_reconstruct_s(int trace,ND_pairs *d) |
|
{ |
|
int i,obpe,oadv,h; |
|
static NM prev_nm_free_list; |
|
static ND_pairs prev_ndp_free_list; |
|
RHist mr0,mr; |
|
RHist r; |
|
RHist *old_red; |
|
ND_pairs s0,s,t; |
|
EPOS oepos; |
|
|
|
obpe = nd_bpe; |
|
oadv = nmv_adv; |
|
oepos = nd_epos; |
|
if ( obpe < 2 ) nd_bpe = 2; |
|
else if ( obpe < 3 ) nd_bpe = 3; |
|
else if ( obpe < 4 ) nd_bpe = 4; |
|
else if ( obpe < 5 ) nd_bpe = 5; |
|
else if ( obpe < 6 ) nd_bpe = 6; |
|
else if ( obpe < 8 ) nd_bpe = 8; |
|
else if ( obpe < 10 ) nd_bpe = 10; |
|
else if ( obpe < 16 ) nd_bpe = 16; |
|
else if ( obpe < 32 ) nd_bpe = 32; |
|
else error("nd_reconstruct_s : exponent too large"); |
|
|
|
nd_setup_parameters(nd_nvar,0); |
|
prev_nm_free_list = _nm_free_list; |
|
prev_ndp_free_list = _ndp_free_list; |
|
_nm_free_list = 0; |
|
_ndp_free_list = 0; |
|
for ( i = nd_psn-1; i >= 0; i-- ) { |
|
ndv_realloc(nd_ps[i],obpe,oadv,oepos); |
|
ndv_realloc(nd_ps_sym[i],obpe,oadv,oepos); |
|
} |
|
if ( trace ) |
|
for ( i = nd_psn-1; i >= 0; i-- ) { |
|
ndv_realloc(nd_ps_trace[i],obpe,oadv,oepos); |
|
ndv_realloc(nd_ps_trace_sym[i],obpe,oadv,oepos); |
|
} |
|
|
|
for ( i = 0; i < nd_nbase; i++ ) { |
|
s0 = 0; |
|
for ( t = d[i]; t; t = NEXT(t) ) { |
|
NEXTND_pairs(s0,s); |
|
s->i1 = t->i1; |
|
s->i2 = t->i2; |
|
s->sig = t->sig; |
|
SG(s) = SG(t); |
|
ndl_reconstruct(LCM(t),LCM(s),obpe,oepos); |
|
} |
|
d[i] = s0; |
|
} |
|
|
|
old_red = (RHist *)MALLOC(REDTAB_LEN*sizeof(RHist)); |
|
for ( i = 0; i < REDTAB_LEN; i++ ) { |
|
old_red[i] = nd_red[i]; |
|
nd_red[i] = 0; |
|
} |
|
for ( i = 0; i < REDTAB_LEN; i++ ) |
|
for ( r = old_red[i]; r; r = NEXT(r) ) { |
|
NEWRHist(mr); |
|
mr->index = r->index; |
|
SG(mr) = SG(r); |
|
ndl_reconstruct(DL(r),DL(mr),obpe,oepos); |
|
h = ndl_hash_value(DL(mr)); |
|
NEXT(mr) = nd_red[h]; |
|
nd_red[h] = mr; |
|
mr->sig = r->sig; |
|
} |
|
for ( i = 0; i < REDTAB_LEN; i++ ) old_red[i] = 0; |
|
old_red = 0; |
|
for ( i = 0; i < nd_psn; i++ ) { |
|
NEWRHist(r); SG(r) = SG(nd_psh[i]); |
|
ndl_reconstruct(DL(nd_psh[i]),DL(r),obpe,oepos); |
|
r->sig = nd_psh[i]->sig; |
|
nd_psh[i] = r; |
|
} |
|
if ( s0 ) NEXT(s) = 0; |
|
prev_nm_free_list = 0; |
|
prev_ndp_free_list = 0; |
|
#if 0 |
|
GC_gcollect(); |
|
#endif |
|
} |
|
|
void ndl_reconstruct(UINT *d,UINT *r,int obpe,EPOS oepos) |
void ndl_reconstruct(UINT *d,UINT *r,int obpe,EPOS oepos) |
{ |
{ |
int n,i,ei,oepw,omask0,j,s,ord_l,l; |
int n,i,ei,oepw,omask0,j,s,ord_l,l; |
Line 4689 int nd_sp(int mod,int trace,ND_pairs p,ND *rp) |
|
Line 5772 int nd_sp(int mod,int trace,ND_pairs p,ND *rp) |
|
MKLIST(hist,node); MKNODE(node,hist,nd_tracelist); |
MKLIST(hist,node); MKNODE(node,hist,nd_tracelist); |
nd_tracelist = node; |
nd_tracelist = node; |
} |
} |
|
if ( *rp ) |
|
(*rp)->sig = p->sig; |
FREENM(m1); FREENM(m2); |
FREENM(m1); FREENM(m2); |
return 1; |
return 1; |
} |
} |
Line 5067 NDV ndv_dup_realloc(NDV p,int obpe,int oadv,EPOS oepos |
|
Line 6152 NDV ndv_dup_realloc(NDV p,int obpe,int oadv,EPOS oepos |
|
} |
} |
MKNDV(NV(p),mr0,len,r); |
MKNDV(NV(p),mr0,len,r); |
SG(r) = SG(p); |
SG(r) = SG(p); |
|
r->sig = p->sig; |
return r; |
return r; |
} |
} |
|
|
Line 5188 NDV ptondv(VL vl,VL dvl,P p) |
|
Line 6274 NDV ptondv(VL vl,VL dvl,P p) |
|
|
|
void pltozpl(LIST l,Q *cont,LIST *pp) |
void pltozpl(LIST l,Q *cont,LIST *pp) |
{ |
{ |
NODE nd,nd1; |
NODE nd,nd1; |
int n; |
int n; |
P *pl; |
P *pl; |
Q *cl; |
Q *cl; |
int i; |
int i; |
P dmy; |
P dmy; |
Z dvr; |
Z dvr,inv; |
LIST r; |
LIST r; |
|
|
nd = BDY(l); n = length(nd); |
nd = BDY(l); n = length(nd); |
pl = (P *)MALLOC(n*sizeof(P)); |
pl = (P *)MALLOC(n*sizeof(P)); |
cl = (Q *)MALLOC(n*sizeof(P)); |
cl = (Q *)MALLOC(n*sizeof(Q)); |
for ( i = 0; i < n; i++, nd = NEXT(nd) ) |
for ( i = 0; i < n; i++, nd = NEXT(nd) ) { |
ptozp((P)BDY(nd),1,&cl[i],&dmy); |
ptozp((P)BDY(nd),1,&cl[i],&dmy); |
qltozl(cl,n,&dvr); |
} |
nd = BDY(l); |
qltozl(cl,n,&dvr); |
for ( i = 0; i < n; i++, nd = NEXT(nd) ) { |
divz(ONE,dvr,&inv); |
divsp(CO,(P)BDY(nd),(P)dvr,&pl[i]); |
nd = BDY(l); |
} |
for ( i = 0; i < n; i++, nd = NEXT(nd) ) |
nd = 0; |
divsp(CO,(P)BDY(nd),(P)dvr,&pl[i]); |
for ( i = n-1; i >= 0; i-- ) { |
nd = 0; |
MKNODE(nd1,pl[i],nd); nd = nd1; |
for ( i = n-1; i >= 0; i-- ) { |
} |
MKNODE(nd1,pl[i],nd); nd = nd1; |
MKLIST(r,nd); |
} |
*pp = r; |
MKLIST(r,nd); |
|
*pp = r; |
} |
} |
|
|
/* (a1,a2,...,an) -> a1*e(1)+...+an*e(n) */ |
/* (a1,a2,...,an) -> a1*e(1)+...+an*e(n) */ |
Line 5398 NDV ndtondv(int mod,ND p) |
|
Line 6485 NDV ndtondv(int mod,ND p) |
|
} |
} |
MKNDV(NV(p),m0,len,d); |
MKNDV(NV(p),m0,len,d); |
SG(d) = SG(p); |
SG(d) = SG(p); |
|
d->sig = p->sig; |
return d; |
return d; |
} |
} |
|
|
|
static int dmm_comp_nv; |
|
|
|
int dmm_comp(DMM *a,DMM *b) |
|
{ |
|
return -compdmm(dmm_comp_nv,*a,*b); |
|
} |
|
|
|
void dmm_sort_by_ord(DMM *a,int len,int nv) |
|
{ |
|
dmm_comp_nv = nv; |
|
qsort(a,len,sizeof(DMM),(int (*)(const void *,const void *))dmm_comp); |
|
} |
|
|
|
void dpm_sort(DPM p,DPM *rp) |
|
{ |
|
DMM t,t1; |
|
int len,i,n; |
|
DMM *a; |
|
DPM d; |
|
|
|
if ( !p ) *rp = 0; |
|
for ( t = BDY(p), len = 0; t; t = NEXT(t), len++ ); |
|
a = (DMM *)MALLOC(len*sizeof(DMM)); |
|
for ( i = 0, t = BDY(p); i < len; i++, t = NEXT(t) ) a[i] = t; |
|
n = p->nv; |
|
dmm_sort_by_ord(a,len,n); |
|
t = 0; |
|
for ( i = len-1; i >= 0; i-- ) { |
|
NEWDMM(t1); |
|
t1->c = a[i]->c; |
|
t1->dl = a[i]->dl; |
|
t1->pos = a[i]->pos; |
|
t1->next = t; |
|
t = t1; |
|
} |
|
MKDPM(n,t,d); |
|
SG(d) = SG(p); |
|
*rp = d; |
|
} |
|
|
|
int dpm_comp(DPM *a,DPM *b) |
|
{ |
|
return -compdpm(CO,*a,*b); |
|
} |
|
|
|
NODE dpm_sort_list(NODE l) |
|
{ |
|
int i,len; |
|
NODE t,t1; |
|
DPM *a; |
|
|
|
len = length(l); |
|
a = (DPM *)MALLOC(len*sizeof(DPM)); |
|
for ( t = l, i = 0; i < len; i++, t = NEXT(t) ) a[i] = (DPM)BDY(t); |
|
qsort(a,len,sizeof(DPM),(int (*)(const void *,const void *))dpm_comp); |
|
t = 0; |
|
for ( i = len-1; i >= 0; i-- ) { |
|
MKNODE(t1,(pointer)a[i],t); t = t1; |
|
} |
|
return t; |
|
} |
|
|
|
int nmv_comp(NMV a,NMV b) |
|
{ |
|
int t; |
|
t = DL_COMPARE(a->dl,b->dl); |
|
return -t; |
|
} |
|
|
|
NDV dpmtondv(int mod,DPM p) |
|
{ |
|
NDV d; |
|
NMV m,m0; |
|
DMM t; |
|
DMM *a; |
|
int i,len,n; |
|
|
|
if ( !p ) return 0; |
|
for ( t = BDY(p), len = 0; t; t = NEXT(t), len++ ); |
|
a = (DMM *)MALLOC(len*sizeof(DMM)); |
|
for ( i = 0, t = BDY(p); i < len; i++, t = NEXT(t) ) a[i] = t; |
|
n = p->nv; |
|
dmm_sort_by_ord(a,len,n); |
|
if ( mod > 0 || mod == -1 ) |
|
m0 = m = (NMV)MALLOC_ATOMIC_IGNORE_OFF_PAGE(len*nmv_adv); |
|
else |
|
m0 = m = MALLOC(len*nmv_adv); |
|
#if 0 |
|
ndv_alloc += nmv_adv*len; |
|
#endif |
|
for ( i = 0; i < len; i++, NMV_ADV(m) ) { |
|
dltondl(n,a[i]->dl,DL(m)); |
|
MPOS(DL(m)) = a[i]->pos; |
|
TD(DL(m)) = ndl_weight(DL(m)); |
|
CZ(m) = (Z)a[i]->c; |
|
} |
|
qsort(m0,len,nmv_adv,(int (*)(const void *,const void *))nmv_comp); |
|
MKNDV(NV(p),m0,len,d); |
|
SG(d) = SG(p); |
|
return d; |
|
} |
|
|
ND ndvtond(int mod,NDV p) |
ND ndvtond(int mod,NDV p) |
{ |
{ |
ND d; |
ND d; |
Line 5419 ND ndvtond(int mod,NDV p) |
|
Line 6609 ND ndvtond(int mod,NDV p) |
|
NEXT(m) = 0; |
NEXT(m) = 0; |
MKND(NV(p),m0,len,d); |
MKND(NV(p),m0,len,d); |
SG(d) = SG(p); |
SG(d) = SG(p); |
|
d->sig = p->sig; |
return d; |
return d; |
} |
} |
|
|
Line 5443 DP ndvtodp(int mod,NDV p) |
|
Line 6634 DP ndvtodp(int mod,NDV p) |
|
return d; |
return d; |
} |
} |
|
|
|
DPM ndvtodpm(int mod,NDV p) |
|
{ |
|
DMM m,m0; |
|
DPM d; |
|
NMV t; |
|
int i,len; |
|
|
|
if ( !p ) return 0; |
|
m0 = 0; |
|
len = p->len; |
|
for ( t = BDY(p), i = 0; i < len; NMV_ADV(t), i++ ) { |
|
NEXTDMM(m0,m); |
|
m->dl = ndltodl(nd_nvar,DL(t)); |
|
m->c = (Obj)ndctop(mod,t->c); |
|
m->pos = MPOS(DL(t)); |
|
} |
|
NEXT(m) = 0; |
|
MKDPM(nd_nvar,m0,d); |
|
SG(d) = SG(p); |
|
return d; |
|
} |
|
|
|
|
DP ndtodp(int mod,ND p) |
DP ndtodp(int mod,ND p) |
{ |
{ |
MP m,m0; |
MP m,m0; |
Line 5474 void ndv_print(NDV p) |
|
Line 6688 void ndv_print(NDV p) |
|
len = LEN(p); |
len = LEN(p); |
for ( m = BDY(p), i = 0; i < len; i++, NMV_ADV(m) ) { |
for ( m = BDY(p), i = 0; i < len; i++, NMV_ADV(m) ) { |
if ( CM(m) & 0x80000000 ) printf("+@_%d*",IFTOF(CM(m))); |
if ( CM(m) & 0x80000000 ) printf("+@_%d*",IFTOF(CM(m))); |
else printf("+%d*",CM(m)); |
else printf("+%ld*",CM(m)); |
ndl_print(DL(m)); |
ndl_print(DL(m)); |
} |
} |
printf("\n"); |
printf("\n"); |
Line 5530 NODE ndv_reducebase(NODE x,int *perm) |
|
Line 6744 NODE ndv_reducebase(NODE x,int *perm) |
|
|
|
/* XXX incomplete */ |
/* XXX incomplete */ |
|
|
|
extern DMMstack dmm_stack; |
|
int ndl_module_schreyer_compare(UINT *a,UINT *b); |
|
|
void nd_init_ord(struct order_spec *ord) |
void nd_init_ord(struct order_spec *ord) |
{ |
{ |
nd_module = (ord->id >= 256); |
nd_module = (ord->id >= 256); |
if ( nd_module ) { |
if ( nd_module ) { |
nd_dcomp = -1; |
nd_dcomp = -1; |
nd_ispot = ord->ispot; |
nd_module_ordtype = ord->module_ordtype; |
nd_pot_nelim = ord->pot_nelim; |
nd_pot_nelim = ord->pot_nelim; |
nd_poly_weight_len = ord->nv; |
nd_poly_weight_len = ord->nv; |
nd_poly_weight = ord->top_weight; |
nd_poly_weight = ord->top_weight; |
Line 5599 void nd_init_ord(struct order_spec *ord) |
|
Line 6816 void nd_init_ord(struct order_spec *ord) |
|
case 256: |
case 256: |
switch ( ord->ord.simple ) { |
switch ( ord->ord.simple ) { |
case 0: |
case 0: |
|
nd_dcomp = 0; |
nd_isrlex = 1; |
nd_isrlex = 1; |
ndl_compare_function = ndl_module_grlex_compare; |
ndl_compare_function = ndl_module_glex_compare; |
break; |
break; |
case 1: |
case 1: |
|
nd_dcomp = 0; |
nd_isrlex = 0; |
nd_isrlex = 0; |
ndl_compare_function = ndl_module_glex_compare; |
ndl_compare_function = ndl_module_glex_compare; |
break; |
break; |
case 2: |
case 2: |
|
nd_dcomp = 0; |
nd_isrlex = 0; |
nd_isrlex = 0; |
ndl_compare_function = ndl_module_lex_compare; |
ndl_compare_function = ndl_module_compare; |
|
ndl_base_compare_function = ndl_lex_compare; |
break; |
break; |
default: |
default: |
error("nd_gr : unsupported order"); |
error("nd_init_ord : unsupported order"); |
} |
} |
break; |
break; |
case 257: |
case 257: |
/* block order */ |
/* block order */ |
nd_isrlex = 0; |
nd_isrlex = 0; |
ndl_compare_function = ndl_module_block_compare; |
ndl_compare_function = ndl_module_compare; |
|
ndl_base_compare_function = ndl_block_compare; |
break; |
break; |
case 258: |
case 258: |
/* matrix order */ |
/* matrix order */ |
nd_isrlex = 0; |
nd_isrlex = 0; |
nd_matrix_len = ord->ord.matrix.row; |
nd_matrix_len = ord->ord.matrix.row; |
nd_matrix = ord->ord.matrix.matrix; |
nd_matrix = ord->ord.matrix.matrix; |
ndl_compare_function = ndl_module_matrix_compare; |
ndl_compare_function = ndl_module_compare; |
|
ndl_base_compare_function = ndl_matrix_compare; |
break; |
break; |
case 259: |
case 259: |
/* composite order */ |
/* composite order */ |
nd_isrlex = 0; |
nd_isrlex = 0; |
nd_worb_len = ord->ord.composite.length; |
nd_worb_len = ord->ord.composite.length; |
nd_worb = ord->ord.composite.w_or_b; |
nd_worb = ord->ord.composite.w_or_b; |
ndl_compare_function = ndl_module_composite_compare; |
ndl_compare_function = ndl_module_compare; |
|
ndl_base_compare_function = ndl_composite_compare; |
break; |
break; |
|
case 300: |
|
/* schreyer order */ |
|
if ( ord->base->id != 256 ) |
|
error("nd_init_ord : unsupported base order"); |
|
ndl_compare_function = ndl_module_schreyer_compare; |
|
dmm_stack = ord->dmmstack; |
|
switch ( ord->base->ord.simple ) { |
|
case 0: |
|
nd_isrlex = 1; |
|
ndl_base_compare_function = ndl_glex_compare; |
|
dl_base_compare_function = cmpdl_revgradlex; |
|
break; |
|
case 1: |
|
nd_isrlex = 0; |
|
ndl_base_compare_function = ndl_glex_compare; |
|
dl_base_compare_function = cmpdl_gradlex; |
|
break; |
|
case 2: |
|
nd_isrlex = 0; |
|
ndl_base_compare_function = ndl_lex_compare; |
|
dl_base_compare_function = cmpdl_lex; |
|
break; |
|
default: |
|
error("nd_init_ord : unsupported order"); |
|
} |
|
break; |
} |
} |
nd_ord = ord; |
nd_ord = ord; |
} |
} |
Line 5668 EPOS nd_create_epos(struct order_spec *ord) |
|
Line 6918 EPOS nd_create_epos(struct order_spec *ord) |
|
|
|
epos = (EPOS)MALLOC_ATOMIC(nd_nvar*sizeof(struct oEPOS)); |
epos = (EPOS)MALLOC_ATOMIC(nd_nvar*sizeof(struct oEPOS)); |
switch ( ord->id ) { |
switch ( ord->id ) { |
case 0: case 256: |
case 0: case 256: case 300: |
if ( nd_isrlex ) { |
if ( nd_isrlex ) { |
for ( i = 0; i < nd_nvar; i++ ) { |
for ( i = 0; i < nd_nvar; i++ ) { |
epos[i].i = nd_exporigin + (nd_nvar-1-i)/nd_epw; |
epos[i].i = nd_exporigin + (nd_nvar-1-i)/nd_epw; |
Line 5771 void nd_nf_p(Obj f,LIST g,LIST v,int m,struct order_sp |
|
Line 7021 void nd_nf_p(Obj f,LIST g,LIST v,int m,struct order_sp |
|
ndf = (pointer)ndvtond(m,ndvf); |
ndf = (pointer)ndvtond(m,ndvf); |
|
|
/* dont sort, dont removecont */ |
/* dont sort, dont removecont */ |
ndv_setup(m,0,in0,1,1); |
ndv_setup(m,0,in0,1,1,0); |
nd_scale=2; |
nd_scale=2; |
stat = nd_nf(m,0,ndf,nd_ps,1,&nf); |
stat = nd_nf(m,0,ndf,nd_ps,1,&nf); |
if ( !stat ) |
if ( !stat ) |
Line 5796 int nd_to_vect(int mod,UINT *s0,int n,ND d,UINT *r) |
|
Line 7046 int nd_to_vect(int mod,UINT *s0,int n,ND d,UINT *r) |
|
return i; |
return i; |
} |
} |
|
|
#if defined(__GNUC__) && SIZEOF_LONG==8 |
|
|
|
#define MOD128(a,c,m) ((a)=(((c)!=0||((a)>=(m)))?(((((U128)(c))<<64)+(a))%(m)):(a))) |
|
|
|
int nd_to_vect64(int mod,UINT *s0,int n,ND d,U64 *r) |
|
{ |
|
NM m; |
|
UINT *t,*s; |
|
int i; |
|
|
|
for ( i = 0; i < n; i++ ) r[i] = 0; |
|
for ( i = 0, s = s0, m = BDY(d); m; m = NEXT(m) ) { |
|
t = DL(m); |
|
for ( ; !ndl_equal(t,s); s += nd_wpd, i++ ); |
|
r[i] = (U64)CM(m); |
|
} |
|
for ( i = 0; !r[i]; i++ ); |
|
return i; |
|
} |
|
#endif |
|
|
|
int nd_to_vect_q(UINT *s0,int n,ND d,Z *r) |
int nd_to_vect_q(UINT *s0,int n,ND d,Z *r) |
{ |
{ |
NM m; |
NM m; |
Line 5910 Z *nm_ind_pair_to_vect(int mod,UINT *s0,int n,NM_ind_p |
|
Line 7139 Z *nm_ind_pair_to_vect(int mod,UINT *s0,int n,NM_ind_p |
|
return r; |
return r; |
} |
} |
|
|
IndArray nm_ind_pair_to_vect_compress(int trace,UINT *s0,int n,int *s0hash,NM_ind_pair pair) |
IndArray nm_ind_pair_to_vect_compress(int trace,UINT *s0,int n,NM_ind_pair pair,int start) |
{ |
{ |
NM m; |
NM m; |
NMV mr; |
NMV mr; |
UINT *d,*t,*s; |
UINT *d,*t,*s,*u; |
NDV p; |
NDV p; |
unsigned char *ivc; |
unsigned char *ivc; |
unsigned short *ivs; |
unsigned short *ivs; |
UINT *v,*ivi,*s0v; |
UINT *v,*ivi,*s0v; |
int i,j,len,prev,diff,cdiff,h; |
int i,j,len,prev,diff,cdiff,h,st,ed,md,c; |
IndArray r; |
IndArray r; |
struct oEGT eg0,eg1; |
|
|
|
m = pair->mul; |
m = pair->mul; |
d = DL(m); |
d = DL(m); |
Line 5933 struct oEGT eg0,eg1; |
|
Line 7161 struct oEGT eg0,eg1; |
|
len = LEN(p); |
len = LEN(p); |
t = (UINT *)MALLOC(nd_wpd*sizeof(UINT)); |
t = (UINT *)MALLOC(nd_wpd*sizeof(UINT)); |
v = (unsigned int *)MALLOC(len*sizeof(unsigned int)); |
v = (unsigned int *)MALLOC(len*sizeof(unsigned int)); |
get_eg(&eg0); |
for ( prev = start, mr = BDY(p), j = 0; j < len; j++, NMV_ADV(mr) ) { |
for ( i = j = 0, s = s0, mr = BDY(p); j < len; j++, NMV_ADV(mr) ) { |
ndl_add(d,DL(mr),t); |
ndl_add(d,DL(mr),t); |
st = prev; |
h = ndl_hash_value(t); |
ed = n; |
for ( ; h != s0hash[i] || !ndl_equal(t,s); s += nd_wpd, i++ ); |
while ( ed > st ) { |
v[j] = i; |
md = (st+ed)/2; |
|
u = s0+md*nd_wpd; |
|
c = DL_COMPARE(u,t); |
|
if ( c == 0 ) break; |
|
else if ( c > 0 ) st = md; |
|
else ed = md; |
|
} |
|
prev = v[j] = md; |
} |
} |
get_eg(&eg1); add_eg(&eg_search,&eg0,&eg1); |
|
r = (IndArray)MALLOC(sizeof(struct oIndArray)); |
r = (IndArray)MALLOC(sizeof(struct oIndArray)); |
r->head = v[0]; |
r->head = v[0]; |
diff = 0; |
diff = 0; |
Line 5983 void expand_array(Z *svect,Z *cvect,int n) |
|
Line 7217 void expand_array(Z *svect,Z *cvect,int n) |
|
if ( svect[i] ) svect[i] = cvect[j++]; |
if ( svect[i] ) svect[i] = cvect[j++]; |
} |
} |
|
|
#if 1 |
#if 0 |
int ndv_reduce_vect_q(Z *svect,int trace,int col,IndArray *imat,NM_ind_pair *rp0,int nred) |
int ndv_reduce_vect_q(Z *svect,int trace,int col,IndArray *imat,NM_ind_pair *rp0,int nred) |
{ |
{ |
int i,j,k,len,pos,prev,nz; |
int i,j,k,len,pos,prev,nz; |
Line 6063 int ndv_reduce_vect_q(Z *svect,int trace,int col,IndAr |
|
Line 7297 int ndv_reduce_vect_q(Z *svect,int trace,int col,IndAr |
|
return maxrs; |
return maxrs; |
} |
} |
#else |
#else |
|
|
/* direct mpz version */ |
/* direct mpz version */ |
int ndv_reduce_vect_q(Z *svect0,int trace,int col,IndArray *imat,NM_ind_pair *rp0,int nred) |
int ndv_reduce_vect_q(Z *svect0,int trace,int col,IndArray *imat,NM_ind_pair *rp0,int nred) |
{ |
{ |
int i,j,k,len,pos,prev; |
int i,j,k,len,pos,prev; |
mpz_t *svect; |
|
mpz_t cs,cr,gcd; |
mpz_t cs,cr,gcd; |
IndArray ivect; |
IndArray ivect; |
unsigned char *ivc; |
unsigned char *ivc; |
Line 6079 int ndv_reduce_vect_q(Z *svect0,int trace,int col,IndA |
|
Line 7313 int ndv_reduce_vect_q(Z *svect0,int trace,int col,IndA |
|
int maxrs; |
int maxrs; |
double hmag; |
double hmag; |
int l; |
int l; |
|
static mpz_t *svect; |
|
static int svect_len=0; |
|
|
maxrs = 0; |
maxrs = 0; |
for ( i = 0; i < col && !svect0[i]; i++ ); |
for ( i = 0; i < col && !svect0[i]; i++ ); |
if ( i == col ) return maxrs; |
if ( i == col ) return maxrs; |
hmag = p_mag((P)svect0[i])*nd_scale; |
hmag = p_mag((P)svect0[i])*nd_scale; |
svect = (mpz_t *)MALLOC(col*sizeof(mpz_t)); |
if ( col > svect_len ) { |
|
svect = (mpz_t *)MALLOC(col*sizeof(mpz_t)); |
|
svect_len = col; |
|
} |
for ( i = 0; i < col; i++ ) { |
for ( i = 0; i < col; i++ ) { |
mpz_init(svect[i]); |
mpz_init(svect[i]); |
if ( svect0[i] ) |
if ( svect0[i] ) |
Line 6105 int ndv_reduce_vect_q(Z *svect0,int trace,int col,IndA |
|
Line 7344 int ndv_reduce_vect_q(Z *svect0,int trace,int col,IndA |
|
mpz_div(cs,svect[k],gcd); |
mpz_div(cs,svect[k],gcd); |
mpz_div(cr,BDY(CZ(mr)),gcd); |
mpz_div(cr,BDY(CZ(mr)),gcd); |
mpz_neg(cs,cs); |
mpz_neg(cs,cs); |
for ( j = 0; j < col; j++ ) |
if ( MUNIMPZ(cr) ) |
mpz_mul(svect[j],svect[j],cr); |
for ( j = 0; j < col; j++ ) mpz_neg(svect[j],svect[j]); |
|
else if ( !UNIMPZ(cr) ) |
|
for ( j = 0; j < col; j++ ) { |
|
if ( mpz_sgn(svect[j]) ) mpz_mul(svect[j],svect[j],cr); |
|
} |
mpz_set_ui(svect[k],0); |
mpz_set_ui(svect[k],0); |
prev = k; |
prev = k; |
switch ( ivect->width ) { |
switch ( ivect->width ) { |
Line 6220 int ndv_reduce_vect(int m,UINT *svect,int col,IndArray |
|
Line 7463 int ndv_reduce_vect(int m,UINT *svect,int col,IndArray |
|
return maxrs; |
return maxrs; |
} |
} |
|
|
#if defined(__GNUC__) && SIZEOF_LONG==8 |
|
|
|
int ndv_reduce_vect64(int m,U64 *svect,U64 *cvect,int col,IndArray *imat,NM_ind_pair *rp0,int nred) |
|
{ |
|
int i,j,k,len,pos,prev; |
|
U64 a,c,c1,c2; |
|
IndArray ivect; |
|
unsigned char *ivc; |
|
unsigned short *ivs; |
|
unsigned int *ivi; |
|
NDV redv; |
|
NMV mr; |
|
NODE rp; |
|
int maxrs; |
|
|
|
for ( i = 0; i < col; i++ ) cvect[i] = 0; |
|
maxrs = 0; |
|
for ( i = 0; i < nred; i++ ) { |
|
ivect = imat[i]; |
|
k = ivect->head; |
|
a = svect[k]; c = cvect[k]; |
|
MOD128(a,c,m); |
|
svect[k] = a; cvect[k] = 0; |
|
if ( (c = svect[k]) != 0 ) { |
|
maxrs = MAX(maxrs,rp0[i]->sugar); |
|
c = m-c; redv = nd_ps[rp0[i]->index]; |
|
len = LEN(redv); mr = BDY(redv); |
|
svect[k] = 0; prev = k; |
|
switch ( ivect->width ) { |
|
case 1: |
|
ivc = ivect->index.c; |
|
for ( j = 1, NMV_ADV(mr); j < len; j++, NMV_ADV(mr) ) { |
|
pos = prev+ivc[j]; c1 = CM(mr); prev = pos; |
|
if ( c1 ) { |
|
c2 = svect[pos]+c1*c; |
|
if ( c2 < svect[pos] ) cvect[pos]++; |
|
svect[pos] = c2; |
|
} |
|
} |
|
break; |
|
case 2: |
|
ivs = ivect->index.s; |
|
for ( j = 1, NMV_ADV(mr); j < len; j++, NMV_ADV(mr) ) { |
|
pos = prev+ivs[j]; c1 = CM(mr); prev = pos; |
|
if ( c1 ) { |
|
c2 = svect[pos]+c1*c; |
|
if ( c2 < svect[pos] ) cvect[pos]++; |
|
svect[pos] = c2; |
|
} |
|
} |
|
break; |
|
case 4: |
|
ivi = ivect->index.i; |
|
for ( j = 1, NMV_ADV(mr); j < len; j++, NMV_ADV(mr) ) { |
|
pos = prev+ivi[j]; c1 = CM(mr); prev = pos; |
|
if ( c1 ) { |
|
c2 = svect[pos]+c1*c; |
|
if ( c2 < svect[pos] ) cvect[pos]++; |
|
svect[pos] = c2; |
|
} |
|
} |
|
break; |
|
} |
|
} |
|
} |
|
for ( i = 0; i < col; i++ ) { |
|
a = svect[i]; c = cvect[i]; MOD128(a,c,m); svect[i] = a; |
|
} |
|
return maxrs; |
|
} |
|
#endif |
|
|
|
int ndv_reduce_vect_sf(int m,UINT *svect,int col,IndArray *imat,NM_ind_pair *rp0,int nred) |
int ndv_reduce_vect_sf(int m,UINT *svect,int col,IndArray *imat,NM_ind_pair *rp0,int nred) |
{ |
{ |
int i,j,k,len,pos,prev; |
int i,j,k,len,pos,prev; |
Line 6549 NDV vect_to_ndv(UINT *vect,int spcol,int col,int *rhea |
|
Line 7720 NDV vect_to_ndv(UINT *vect,int spcol,int col,int *rhea |
|
} |
} |
} |
} |
|
|
#if defined(__GNUC__) && SIZEOF_LONG==8 |
|
NDV vect64_to_ndv(U64 *vect,int spcol,int col,int *rhead,UINT *s0vect) |
|
{ |
|
int j,k,len; |
|
UINT *p; |
|
UINT c; |
|
NDV r; |
|
NMV mr0,mr; |
|
|
|
for ( j = 0, len = 0; j < spcol; j++ ) if ( vect[j] ) len++; |
|
if ( !len ) return 0; |
|
else { |
|
mr0 = (NMV)MALLOC_ATOMIC_IGNORE_OFF_PAGE(nmv_adv*len); |
|
#if 0 |
|
ndv_alloc += nmv_adv*len; |
|
#endif |
|
mr = mr0; |
|
p = s0vect; |
|
for ( j = k = 0; j < col; j++, p += nd_wpd ) |
|
if ( !rhead[j] ) { |
|
if ( (c = (UINT)vect[k++]) != 0 ) { |
|
ndl_copy(p,DL(mr)); CM(mr) = c; NMV_ADV(mr); |
|
} |
|
} |
|
MKNDV(nd_nvar,mr0,len,r); |
|
return r; |
|
} |
|
} |
|
#endif |
|
|
|
NDV vect_to_ndv_2(unsigned long *vect,int col,UINT *s0vect) |
NDV vect_to_ndv_2(unsigned long *vect,int col,UINT *s0vect) |
{ |
{ |
int j,k,len; |
int j,k,len; |
Line 6740 int nd_symbolic_preproc(PGeoBucket bucket,int trace,UI |
|
Line 7881 int nd_symbolic_preproc(PGeoBucket bucket,int trace,UI |
|
if ( ndl_check_bound2(index,DL(mul)) ) |
if ( ndl_check_bound2(index,DL(mul)) ) |
return 0; |
return 0; |
sugar = TD(DL(mul))+SG(ps[index]); |
sugar = TD(DL(mul))+SG(ps[index]); |
MKNM_ind_pair(pair,mul,index,sugar); |
MKNM_ind_pair(pair,mul,index,sugar,0); |
red = ndv_mul_nm_symbolic(mul,ps[index]); |
red = ndv_mul_nm_symbolic(mul,ps[index]); |
add_pbucket_symbolic(bucket,nd_remove_head(red)); |
add_pbucket_symbolic(bucket,nd_remove_head(red)); |
NEXTNODE(rp0,rp); BDY(rp) = (pointer)pair; |
NEXTNODE(rp0,rp); BDY(rp) = (pointer)pair; |
Line 6788 NODE nd_f4(int m,int checkonly,int **indp) |
|
Line 7929 NODE nd_f4(int m,int checkonly,int **indp) |
|
PGeoBucket bucket; |
PGeoBucket bucket; |
struct oEGT eg0,eg1,eg_f4; |
struct oEGT eg0,eg1,eg_f4; |
Z i1,i2,sugarq; |
Z i1,i2,sugarq; |
|
|
|
init_eg(&f4_symb); init_eg(&f4_conv); init_eg(&f4_conv); init_eg(&f4_elim1); init_eg(&f4_elim2); |
#if 0 |
#if 0 |
ndv_alloc = 0; |
ndv_alloc = 0; |
#endif |
#endif |
|
Nf4_red=0; |
g = 0; d = 0; |
g = 0; d = 0; |
for ( i = 0; i < nd_psn; i++ ) { |
for ( i = 0; i < nd_psn; i++ ) { |
d = update_pairs(d,g,i,0); |
d = update_pairs(d,g,i,0); |
Line 6832 NODE nd_f4(int m,int checkonly,int **indp) |
|
Line 7976 NODE nd_f4(int m,int checkonly,int **indp) |
|
d = nd_reconstruct(0,d); |
d = nd_reconstruct(0,d); |
continue; |
continue; |
} |
} |
get_eg(&eg1); init_eg(&eg_f4); add_eg(&eg_f4,&eg0,&eg1); |
get_eg(&eg1); init_eg(&eg_f4); add_eg(&eg_f4,&eg0,&eg1); add_eg(&f4_symb,&eg0,&eg1); |
if ( DP_Print ) |
if ( DP_Print ) |
fprintf(asir_out,"sugar=%d,symb=%.3fsec,", |
fprintf(asir_out,"sugar=%d,symb=%.3fsec,", |
sugar,eg_f4.exectime); |
sugar,eg_f4.exectime); |
Line 6851 NODE nd_f4(int m,int checkonly,int **indp) |
|
Line 7995 NODE nd_f4(int m,int checkonly,int **indp) |
|
nd_removecont(m,nf1); |
nd_removecont(m,nf1); |
nf = ndtondv(m,nf1); |
nf = ndtondv(m,nf1); |
} |
} |
nh = ndv_newps(m,nf,0,1); |
nh = ndv_newps(m,nf,0); |
d = update_pairs(d,g,nh,0); |
d = update_pairs(d,g,nh,0); |
g = update_base(g,nh); |
g = update_base(g,nh); |
} |
} |
Line 6881 NODE nd_f4(int m,int checkonly,int **indp) |
|
Line 8025 NODE nd_f4(int m,int checkonly,int **indp) |
|
#if 0 |
#if 0 |
fprintf(asir_out,"ndv_alloc=%d\n",ndv_alloc); |
fprintf(asir_out,"ndv_alloc=%d\n",ndv_alloc); |
#endif |
#endif |
|
if ( DP_Print ) { |
|
fprintf(asir_out,"number of red=%d,",Nf4_red); |
|
fprintf(asir_out,"symb=%.3fsec,conv=%.3fsec,elim1=%.3fsec,elim2=%.3fsec\n", |
|
f4_symb.exectime,f4_conv.exectime,f4_elim1.exectime,f4_elim2.exectime); |
|
} |
conv_ilist(nd_demand,0,g,indp); |
conv_ilist(nd_demand,0,g,indp); |
return g; |
return g; |
} |
} |
Line 6974 NODE nd_f4_trace(int m,int **indp) |
|
Line 8123 NODE nd_f4_trace(int m,int **indp) |
|
nfv = ndv_dup(0,nfqv); |
nfv = ndv_dup(0,nfqv); |
ndv_mod(m,nfv); |
ndv_mod(m,nfv); |
ndv_removecont(m,nfv); |
ndv_removecont(m,nfv); |
nh = ndv_newps(0,nfv,nfqv,1); |
nh = ndv_newps(0,nfv,nfqv); |
d = update_pairs(d,g,nh,0); |
d = update_pairs(d,g,nh,0); |
g = update_base(g,nh); |
g = update_base(g,nh); |
} |
} |
Line 7104 NODE nd_f4_red_2(ND_pairs sp0,UINT *s0vect,int col,NOD |
|
Line 8253 NODE nd_f4_red_2(ND_pairs sp0,UINT *s0vect,int col,NOD |
|
unsigned long *v; |
unsigned long *v; |
|
|
get_eg(&eg0); |
get_eg(&eg0); |
init_eg(&eg_search); |
|
for ( sp = sp0, nsp = 0; sp; sp = NEXT(sp), nsp++ ); |
for ( sp = sp0, nsp = 0; sp; sp = NEXT(sp), nsp++ ); |
nred = length(rp0); |
nred = length(rp0); |
mat = alloc_matrix(nsp,col); |
mat = alloc_matrix(nsp,col); |
Line 7159 init_eg(&eg_search); |
|
Line 8307 init_eg(&eg_search); |
|
NODE nd_f4_red(int m,ND_pairs sp0,int trace,UINT *s0vect,int col,NODE rp0,ND_pairs *nz) |
NODE nd_f4_red(int m,ND_pairs sp0,int trace,UINT *s0vect,int col,NODE rp0,ND_pairs *nz) |
{ |
{ |
IndArray *imat; |
IndArray *imat; |
int nsp,nred,i; |
int nsp,nred,i,start; |
int *rhead; |
int *rhead; |
NODE r0,rp; |
NODE r0,rp; |
ND_pairs sp; |
ND_pairs sp; |
NM_ind_pair *rvect; |
NM_ind_pair *rvect; |
UINT *s; |
UINT *s; |
int *s0hash; |
int *s0hash; |
|
struct oEGT eg0,eg1,eg_conv; |
|
|
if ( m == 2 && nd_rref2 ) |
if ( m == 2 && nd_rref2 ) |
return nd_f4_red_2(sp0,s0vect,col,rp0,nz); |
return nd_f4_red_2(sp0,s0vect,col,rp0,nz); |
|
|
init_eg(&eg_search); |
|
for ( sp = sp0, nsp = 0; sp; sp = NEXT(sp), nsp++ ); |
for ( sp = sp0, nsp = 0; sp; sp = NEXT(sp), nsp++ ); |
nred = length(rp0); |
nred = length(rp0); |
imat = (IndArray *)MALLOC(nred*sizeof(IndArray)); |
imat = (IndArray *)MALLOC(nred*sizeof(IndArray)); |
Line 7178 init_eg(&eg_search); |
|
Line 8326 init_eg(&eg_search); |
|
for ( i = 0; i < col; i++ ) rhead[i] = 0; |
for ( i = 0; i < col; i++ ) rhead[i] = 0; |
|
|
/* construction of index arrays */ |
/* construction of index arrays */ |
|
get_eg(&eg0); |
if ( DP_Print ) { |
if ( DP_Print ) { |
fprintf(asir_out,"%dx%d,",nsp+nred,col); |
fprintf(asir_out,"%dx%d,",nsp+nred,col); |
|
fflush(asir_out); |
} |
} |
rvect = (NM_ind_pair *)MALLOC(nred*sizeof(NM_ind_pair)); |
rvect = (NM_ind_pair *)MALLOC(nred*sizeof(NM_ind_pair)); |
s0hash = (int *)MALLOC(col*sizeof(int)); |
for ( start = 0, rp = rp0, i = 0; rp; i++, rp = NEXT(rp) ) { |
for ( i = 0, s = s0vect; i < col; i++, s += nd_wpd ) |
|
s0hash[i] = ndl_hash_value(s); |
|
for ( rp = rp0, i = 0; rp; i++, rp = NEXT(rp) ) { |
|
rvect[i] = (NM_ind_pair)BDY(rp); |
rvect[i] = (NM_ind_pair)BDY(rp); |
imat[i] = nm_ind_pair_to_vect_compress(trace,s0vect,col,s0hash,rvect[i]); |
imat[i] = nm_ind_pair_to_vect_compress(trace,s0vect,col,rvect[i],start); |
rhead[imat[i]->head] = 1; |
rhead[imat[i]->head] = 1; |
|
start = imat[i]->head; |
} |
} |
|
get_eg(&eg1); init_eg(&eg_conv); add_eg(&eg_conv,&eg0,&eg1); add_eg(&f4_conv,&eg0,&eg1); |
|
if ( DP_Print ) { |
|
fprintf(asir_out,"conv=%.3fsec,",eg_conv.exectime); |
|
fflush(asir_out); |
|
} |
if ( m > 0 ) |
if ( m > 0 ) |
#if defined(__GNUC__) && SIZEOF_LONG==8 |
#if SIZEOF_LONG==8 |
r0 = nd_f4_red_mod64_main(m,sp0,nsp,s0vect,col,rvect,rhead,imat,nred,nz); |
r0 = nd_f4_red_mod64_main(m,sp0,nsp,s0vect,col,rvect,rhead,imat,nred,nz); |
#else |
#else |
r0 = nd_f4_red_main(m,sp0,nsp,s0vect,col,rvect,rhead,imat,nred,nz); |
r0 = nd_f4_red_main(m,sp0,nsp,s0vect,col,rvect,rhead,imat,nred,nz); |
Line 7202 init_eg(&eg_search); |
|
Line 8355 init_eg(&eg_search); |
|
r0 = nd_f4_red_lf_main(m,sp0,nsp,trace,s0vect,col,rvect,rhead,imat,nred); |
r0 = nd_f4_red_lf_main(m,sp0,nsp,trace,s0vect,col,rvect,rhead,imat,nred); |
else |
else |
r0 = nd_f4_red_q_main(sp0,nsp,trace,s0vect,col,rvect,rhead,imat,nred); |
r0 = nd_f4_red_q_main(sp0,nsp,trace,s0vect,col,rvect,rhead,imat,nred); |
#if 0 |
|
if ( DP_Print ) print_eg("search",&eg_search); |
|
#endif |
|
return r0; |
return r0; |
} |
} |
|
|
Line 7296 NODE nd_f4_red_main(int m,ND_pairs sp0,int nsp,UINT *s |
|
Line 8446 NODE nd_f4_red_main(int m,ND_pairs sp0,int nsp,UINT *s |
|
return r0; |
return r0; |
} |
} |
|
|
#if defined(__GNUC__) && SIZEOF_LONG==8 |
|
/* for Fp, 2^15=<p<2^29 */ |
|
|
|
NODE nd_f4_red_mod64_main(int m,ND_pairs sp0,int nsp,UINT *s0vect,int col, |
|
NM_ind_pair *rvect,int *rhead,IndArray *imat,int nred,ND_pairs *nz) |
|
{ |
|
int spcol,sprow,a; |
|
int i,j,k,l,rank; |
|
NODE r0,r; |
|
ND_pairs sp; |
|
ND spol; |
|
U64 **spmat; |
|
U64 *svect,*cvect; |
|
U64 *v; |
|
int *colstat; |
|
struct oEGT eg0,eg1,eg2,eg_f4,eg_f4_1,eg_f4_2; |
|
int maxrs; |
|
int *spsugar; |
|
ND_pairs *spactive; |
|
|
|
spcol = col-nred; |
|
get_eg(&eg0); |
|
/* elimination (1st step) */ |
|
spmat = (U64 **)MALLOC(nsp*sizeof(U64 *)); |
|
svect = (U64 *)MALLOC(col*sizeof(U64)); |
|
cvect = (U64 *)MALLOC(col*sizeof(U64)); |
|
spsugar = (int *)MALLOC(nsp*sizeof(int)); |
|
spactive = !nz?0:(ND_pairs *)MALLOC(nsp*sizeof(ND_pairs)); |
|
for ( a = sprow = 0, sp = sp0; a < nsp; a++, sp = NEXT(sp) ) { |
|
nd_sp(m,0,sp,&spol); |
|
if ( !spol ) continue; |
|
nd_to_vect64(m,s0vect,col,spol,svect); |
|
maxrs = ndv_reduce_vect64(m,svect,cvect,col,imat,rvect,nred); |
|
for ( i = 0; i < col; i++ ) if ( svect[i] ) break; |
|
if ( i < col ) { |
|
spmat[sprow] = v = (U64 *)MALLOC_ATOMIC(spcol*sizeof(U64)); |
|
for ( j = k = 0; j < col; j++ ) |
|
if ( !rhead[j] ) v[k++] = (UINT)svect[j]; |
|
spsugar[sprow] = MAX(maxrs,SG(spol)); |
|
if ( nz ) |
|
spactive[sprow] = sp; |
|
sprow++; |
|
} |
|
nd_free(spol); |
|
} |
|
get_eg(&eg1); init_eg(&eg_f4_1); add_eg(&eg_f4_1,&eg0,&eg1); |
|
if ( DP_Print ) { |
|
fprintf(asir_out,"elim1=%.3fsec,",eg_f4_1.exectime); |
|
fflush(asir_out); |
|
} |
|
/* free index arrays */ |
|
for ( i = 0; i < nred; i++ ) GCFREE(imat[i]->index.c); |
|
|
|
/* elimination (2nd step) */ |
|
colstat = (int *)MALLOC(spcol*sizeof(int)); |
|
rank = nd_gauss_elim_mod64(spmat,spsugar,spactive,sprow,spcol,m,colstat); |
|
r0 = 0; |
|
for ( i = 0; i < rank; i++ ) { |
|
NEXTNODE(r0,r); BDY(r) = |
|
(pointer)vect64_to_ndv(spmat[i],spcol,col,rhead,s0vect); |
|
SG((NDV)BDY(r)) = spsugar[i]; |
|
GCFREE(spmat[i]); |
|
} |
|
if ( r0 ) NEXT(r) = 0; |
|
|
|
for ( ; i < sprow; i++ ) GCFREE(spmat[i]); |
|
get_eg(&eg2); init_eg(&eg_f4_2); add_eg(&eg_f4_2,&eg1,&eg2); |
|
init_eg(&eg_f4); add_eg(&eg_f4,&eg0,&eg2); |
|
if ( DP_Print ) { |
|
fprintf(asir_out,"elim2=%.3fsec,",eg_f4_2.exectime); |
|
fprintf(asir_out,"nsp=%d,nred=%d,spmat=(%d,%d),rank=%d ", |
|
nsp,nred,sprow,spcol,rank); |
|
fprintf(asir_out,"%.3fsec,",eg_f4.exectime); |
|
} |
|
if ( nz ) { |
|
for ( i = 0; i < rank-1; i++ ) NEXT(spactive[i]) = spactive[i+1]; |
|
if ( rank > 0 ) { |
|
NEXT(spactive[rank-1]) = 0; |
|
*nz = spactive[0]; |
|
} else |
|
*nz = 0; |
|
} |
|
return r0; |
|
} |
|
#endif |
|
|
|
/* for small finite fields */ |
/* for small finite fields */ |
|
|
NODE nd_f4_red_sf_main(int m,ND_pairs sp0,int nsp,UINT *s0vect,int col, |
NODE nd_f4_red_sf_main(int m,ND_pairs sp0,int nsp,UINT *s0vect,int col, |
Line 7793 int nd_gauss_elim_mod(UINT **mat0,int *sugar,ND_pairs |
|
Line 8858 int nd_gauss_elim_mod(UINT **mat0,int *sugar,ND_pairs |
|
return rank; |
return rank; |
} |
} |
|
|
#if defined(__GNUC__) && SIZEOF_LONG==8 |
|
|
|
int nd_gauss_elim_mod64(U64 **mat,int *sugar,ND_pairs *spactive,int row,int col,int md,int *colstat) |
|
{ |
|
int i,j,k,l,rank,s; |
|
U64 inv; |
|
U64 a; |
|
UINT c; |
|
U64 *t,*pivot,*pk; |
|
UINT *ck; |
|
UINT **cmat; |
|
UINT *ct; |
|
ND_pairs pair; |
|
|
|
cmat = (UINT **)MALLOC(row*sizeof(UINT *)); |
|
for ( i = 0; i < row; i++ ) { |
|
cmat[i] = MALLOC_ATOMIC(col*sizeof(UINT)); |
|
bzero(cmat[i],col*sizeof(UINT)); |
|
} |
|
|
|
for ( rank = 0, j = 0; j < col; j++ ) { |
|
for ( i = rank; i < row; i++ ) { |
|
a = mat[i][j]; c = cmat[i][j]; |
|
MOD128(a,c,md); |
|
mat[i][j] = a; cmat[i][j] = 0; |
|
} |
|
for ( i = rank; i < row; i++ ) |
|
if ( mat[i][j] ) |
|
break; |
|
if ( i == row ) { |
|
colstat[j] = 0; |
|
continue; |
|
} else |
|
colstat[j] = 1; |
|
if ( i != rank ) { |
|
t = mat[i]; mat[i] = mat[rank]; mat[rank] = t; |
|
ct = cmat[i]; cmat[i] = cmat[rank]; cmat[rank] = ct; |
|
s = sugar[i]; sugar[i] = sugar[rank]; sugar[rank] = s; |
|
if ( spactive ) { |
|
pair = spactive[i]; spactive[i] = spactive[rank]; |
|
spactive[rank] = pair; |
|
} |
|
} |
|
/* column j is normalized */ |
|
s = sugar[rank]; |
|
inv = invm((UINT)mat[rank][j],md); |
|
/* normalize pivot row */ |
|
for ( k = j, pk = mat[rank]+j, ck = cmat[rank]+j; k < col; k++, pk++, ck++ ) { |
|
a = *pk; c = *ck; MOD128(a,c,md); *pk = (a*inv)%md; *ck = 0; |
|
} |
|
for ( i = rank+1; i < row; i++ ) { |
|
if ( (a = mat[i][j]) != 0 ) { |
|
sugar[i] = MAX(sugar[i],s); |
|
red_by_vect64(md,mat[i]+j,cmat[i]+j,mat[rank]+j,(int)(md-a),col-j); |
|
} |
|
} |
|
rank++; |
|
} |
|
for ( j = col-1, l = rank-1; j >= 0; j-- ) |
|
if ( colstat[j] ) { |
|
for ( k = j, pk = mat[l]+j, ck = cmat[l]+j; k < col; k++, pk++, ck++ ) { |
|
a = *pk; c = *ck; MOD128(a,c,md); *pk = a; *ck = 0; |
|
} |
|
s = sugar[l]; |
|
for ( i = 0; i < l; i++ ) { |
|
a = mat[i][j]; c = cmat[i][j]; MOD128(a,c,md); mat[i][j] = a; cmat[i][j] = 0; |
|
if ( a ) { |
|
sugar[i] = MAX(sugar[i],s); |
|
red_by_vect64(md,mat[i]+j,cmat[i]+j,mat[l]+j,(int)(md-a),col-j); |
|
} |
|
} |
|
l--; |
|
} |
|
for ( i = 0; i < row; i++ ) GCFREE(cmat[i]); |
|
GCFREE(cmat); |
|
return rank; |
|
} |
|
#endif |
|
|
|
int nd_gauss_elim_sf(UINT **mat0,int *sugar,int row,int col,int md,int *colstat) |
int nd_gauss_elim_sf(UINT **mat0,int *sugar,int row,int col,int md,int *colstat) |
{ |
{ |
int i,j,k,l,inv,a,rank,s; |
int i,j,k,l,inv,a,rank,s; |
Line 7934 int ndv_ishomo(NDV p) |
|
Line 8921 int ndv_ishomo(NDV p) |
|
h = TD(DL(m)); |
h = TD(DL(m)); |
NMV_ADV(m); |
NMV_ADV(m); |
for ( len--; len; len--, NMV_ADV(m) ) |
for ( len--; len; len--, NMV_ADV(m) ) |
if ( TD(DL(m)) != h ) return 0; |
if ( TD(DL(m)) != h ) { |
|
return 0; |
|
} |
return 1; |
return 1; |
} |
} |
|
|
Line 8482 P ndc_div(int mod,union oNDC a,union oNDC b) |
|
Line 9471 P ndc_div(int mod,union oNDC a,union oNDC b) |
|
int inv,t; |
int inv,t; |
|
|
if ( mod == -1 ) c.m = _mulsf(a.m,_invsf(b.m)); |
if ( mod == -1 ) c.m = _mulsf(a.m,_invsf(b.m)); |
else if ( mod == -2 ) divlf(a.gz,b.gz,&c.gz); |
else if ( mod == -2 ) divlf(a.z,b.z,&c.z); |
else if ( mod ) { |
else if ( mod ) { |
inv = invm(b.m,mod); |
inv = invm(b.m,mod); |
DMAR(a.m,inv,0,mod,t); c.m = t; |
DMAR(a.m,inv,0,mod,t); c.m = t; |
Line 8502 P ndctop(int mod,union oNDC c) |
|
Line 9491 P ndctop(int mod,union oNDC c) |
|
if ( mod == -1 ) { |
if ( mod == -1 ) { |
e = IFTOF(c.m); MKGFS(e,gfs); return (P)gfs; |
e = IFTOF(c.m); MKGFS(e,gfs); return (P)gfs; |
} else if ( mod == -2 ) { |
} else if ( mod == -2 ) { |
q = c.gz; return (P)q; |
q = c.z; return (P)q; |
} else if ( mod > 0 ) { |
} else if ( mod > 0 ) { |
STOZ(c.m,q); return (P)q; |
STOZ(c.m,q); return (P)q; |
} else |
} else |
Line 8545 void conv_ilist(int demand,int trace,NODE g,int **indp |
|
Line 9534 void conv_ilist(int demand,int trace,NODE g,int **indp |
|
if ( indp ) *indp = ind; |
if ( indp ) *indp = ind; |
} |
} |
|
|
|
NODE conv_ilist_s(int demand,int trace,int **indp) |
|
{ |
|
int n,i,j; |
|
int *ind; |
|
NODE g0,g; |
|
|
|
n = nd_psn; |
|
ind = (int *)MALLOC(n*sizeof(int)); |
|
g0 = 0; |
|
for ( i = 0; i < n; i++ ) { |
|
ind[i] = i; |
|
NEXTNODE(g0,g); |
|
BDY(g) = (pointer)(demand?ndv_load(i):(trace?nd_ps_trace[i]:nd_ps[i])); |
|
} |
|
if ( g0 ) NEXT(g) = 0; |
|
if ( indp ) *indp = ind; |
|
return g0; |
|
} |
|
|
void parse_nd_option(NODE opt) |
void parse_nd_option(NODE opt) |
{ |
{ |
NODE t,p,u; |
NODE t,p,u; |
Line 8584 void parse_nd_option(NODE opt) |
|
Line 9592 void parse_nd_option(NODE opt) |
|
nd_newelim = value?1:0; |
nd_newelim = value?1:0; |
else if ( !strcmp(key,"intersect") ) |
else if ( !strcmp(key,"intersect") ) |
nd_intersect = value?1:0; |
nd_intersect = value?1:0; |
|
else if ( !strcmp(key,"syzgen") ) |
|
nd_intersect = ZTOS((Q)value); |
else if ( !strcmp(key,"lf") ) |
else if ( !strcmp(key,"lf") ) |
nd_lf = value?1:0; |
nd_lf = value?1:0; |
else if ( !strcmp(key,"trace") ) { |
else if ( !strcmp(key,"trace") ) { |
Line 9139 void nd_f4_lf_trace(LIST f,LIST v,int trace,int homo,s |
|
Line 10149 void nd_f4_lf_trace(LIST f,LIST v,int trace,int homo,s |
|
ndv_homogenize((NDV)BDY(t),obpe,oadv,oepos,ompos); |
ndv_homogenize((NDV)BDY(t),obpe,oadv,oepos,ompos); |
} |
} |
if ( MaxDeg > 0 ) nocheck = 1; |
if ( MaxDeg > 0 ) nocheck = 1; |
ret = ndv_setup(-2,m,fd0,nd_gbblock?1:0,0); |
ret = ndv_setup(-2,m,fd0,nd_gbblock?1:0,0,0); |
if ( ret ) |
if ( ret ) |
cand = nd_f4_lf_trace_main(m,&perm); |
cand = nd_f4_lf_trace_main(m,&perm); |
if ( !ret || !cand ) { |
if ( !ret || !cand ) { |
Line 9255 NODE nd_f4_lf_trace_main(int m,int **indp) |
|
Line 10265 NODE nd_f4_lf_trace_main(int m,int **indp) |
|
if ( DL_COMPARE(HDL(nfv),HDL(nfqv)) ) return 0; |
if ( DL_COMPARE(HDL(nfv),HDL(nfqv)) ) return 0; |
ndv_removecont(m,nfv); |
ndv_removecont(m,nfv); |
ndv_removecont(-2,nfqv); |
ndv_removecont(-2,nfqv); |
nh = ndv_newps(-2,nfv,nfqv,1); |
nh = ndv_newps(-2,nfv,nfqv); |
d = update_pairs(d,g,nh,0); |
d = update_pairs(d,g,nh,0); |
g = update_base(g,nh); |
g = update_base(g,nh); |
} |
} |
Line 9265 NODE nd_f4_lf_trace_main(int m,int **indp) |
|
Line 10275 NODE nd_f4_lf_trace_main(int m,int **indp) |
|
return g; |
return g; |
} |
} |
|
|
|
#if SIZEOF_LONG==8 |
|
|
|
NDV vect64_to_ndv(mp_limb_t *vect,int spcol,int col,int *rhead,UINT *s0vect) |
|
{ |
|
int j,k,len; |
|
UINT *p; |
|
UINT c; |
|
NDV r; |
|
NMV mr0,mr; |
|
|
|
for ( j = 0, len = 0; j < spcol; j++ ) if ( vect[j] ) len++; |
|
if ( !len ) return 0; |
|
else { |
|
mr0 = (NMV)MALLOC_ATOMIC_IGNORE_OFF_PAGE(nmv_adv*len); |
|
#if 0 |
|
ndv_alloc += nmv_adv*len; |
|
#endif |
|
mr = mr0; |
|
p = s0vect; |
|
for ( j = k = 0; j < col; j++, p += nd_wpd ) |
|
if ( !rhead[j] ) { |
|
if ( (c = (UINT)vect[k++]) != 0 ) { |
|
ndl_copy(p,DL(mr)); CM(mr) = c; NMV_ADV(mr); |
|
} |
|
} |
|
MKNDV(nd_nvar,mr0,len,r); |
|
return r; |
|
} |
|
} |
|
|
|
NDV vect64_to_ndv_s(mp_limb_t *vect,int col,UINT *s0vect) |
|
{ |
|
int j,k,len; |
|
UINT *p; |
|
UINT c; |
|
NDV r; |
|
NMV mr0,mr; |
|
|
|
for ( j = 0, len = 0; j < col; j++ ) if ( vect[j] ) len++; |
|
if ( !len ) return 0; |
|
else { |
|
mr0 = (NMV)MALLOC_ATOMIC_IGNORE_OFF_PAGE(nmv_adv*len); |
|
mr = mr0; |
|
p = s0vect; |
|
for ( j = k = 0; j < col; j++, p += nd_wpd ) |
|
if ( (c = (UINT)vect[k++]) != 0 ) { |
|
ndl_copy(p,DL(mr)); CM(mr) = c; NMV_ADV(mr); |
|
} |
|
MKNDV(nd_nvar,mr0,len,r); |
|
return r; |
|
} |
|
} |
|
|
|
int nd_to_vect64(int mod,UINT *s0,int n,ND d,mp_limb_t *r) |
|
{ |
|
NM m; |
|
UINT *t,*s,*u; |
|
int i,st,ed,md,prev,c; |
|
|
|
for ( i = 0; i < n; i++ ) r[i] = 0; |
|
prev = 0; |
|
for ( i = 0, m = BDY(d); m; m = NEXT(m) ) { |
|
t = DL(m); |
|
st = prev; |
|
ed = n; |
|
while ( ed > st ) { |
|
md = (st+ed)/2; |
|
u = s0+md*nd_wpd; |
|
c = DL_COMPARE(u,t); |
|
if ( c == 0 ) break; |
|
else if ( c > 0 ) st = md; |
|
else ed = md; |
|
} |
|
r[md] = (mp_limb_t)CM(m); |
|
prev = md; |
|
} |
|
for ( i = 0; !r[i]; i++ ); |
|
return i; |
|
} |
|
|
|
#define MOD128(a,c,m) ((a)=(((c)!=0||((a)>=(m)))?(((((U128)(c))<<64)+(a))%(m)):(a))) |
|
|
|
int ndv_reduce_vect64(int m,mp_limb_t *svect,mp_limb_t *cvect,int col,IndArray *imat,NM_ind_pair *rp0,int nred,SIG sig) |
|
{ |
|
int i,j,k,len,pos,prev; |
|
mp_limb_t a,c,c1,c2; |
|
IndArray ivect; |
|
unsigned char *ivc; |
|
unsigned short *ivs; |
|
unsigned int *ivi; |
|
NDV redv; |
|
NMV mr; |
|
NODE rp; |
|
int maxrs; |
|
|
|
for ( i = 0; i < col; i++ ) cvect[i] = 0; |
|
maxrs = 0; |
|
for ( i = 0; i < nred; i++ ) { |
|
ivect = imat[i]; |
|
k = ivect->head; |
|
a = svect[k]; c = cvect[k]; |
|
MOD128(a,c,m); |
|
svect[k] = a; cvect[k] = 0; |
|
if ( (c = svect[k]) != 0 && (sig == 0 || comp_sig(sig,rp0[i]->sig) > 0 ) ) { |
|
Nf4_red++; |
|
maxrs = MAX(maxrs,rp0[i]->sugar); |
|
c = m-c; redv = nd_ps[rp0[i]->index]; |
|
len = LEN(redv); mr = BDY(redv); |
|
svect[k] = 0; prev = k; |
|
switch ( ivect->width ) { |
|
case 1: |
|
ivc = ivect->index.c; |
|
for ( j = 1, NMV_ADV(mr); j < len; j++, NMV_ADV(mr) ) { |
|
pos = prev+ivc[j]; c1 = CM(mr); prev = pos; |
|
c2 = svect[pos]+c1*c; |
|
if ( c2 < svect[pos] ) cvect[pos]++; |
|
svect[pos] = c2; |
|
} |
|
break; |
|
case 2: |
|
ivs = ivect->index.s; |
|
for ( j = 1, NMV_ADV(mr); j < len; j++, NMV_ADV(mr) ) { |
|
pos = prev+ivs[j]; c1 = CM(mr); prev = pos; |
|
c2 = svect[pos]+c1*c; |
|
if ( c2 < svect[pos] ) cvect[pos]++; |
|
svect[pos] = c2; |
|
} |
|
break; |
|
case 4: |
|
ivi = ivect->index.i; |
|
for ( j = 1, NMV_ADV(mr); j < len; j++, NMV_ADV(mr) ) { |
|
pos = prev+ivi[j]; c1 = CM(mr); prev = pos; |
|
c2 = svect[pos]+c1*c; |
|
if ( c2 < svect[pos] ) cvect[pos]++; |
|
svect[pos] = c2; |
|
} |
|
break; |
|
} |
|
} |
|
} |
|
for ( i = 0; i < col; i++ ) { |
|
a = svect[i]; c = cvect[i]; MOD128(a,c,m); svect[i] = a; |
|
} |
|
return maxrs; |
|
} |
|
|
|
/* for Fp, 2^15=<p<2^29 */ |
|
|
|
NODE nd_f4_red_mod64_main(int m,ND_pairs sp0,int nsp,UINT *s0vect,int col, |
|
NM_ind_pair *rvect,int *rhead,IndArray *imat,int nred,ND_pairs *nz) |
|
{ |
|
int spcol,sprow,a; |
|
int i,j,k,l,rank; |
|
NODE r0,r; |
|
ND_pairs sp; |
|
ND spol; |
|
mp_limb_t **spmat; |
|
mp_limb_t *svect,*cvect; |
|
mp_limb_t *v; |
|
int *colstat; |
|
struct oEGT eg0,eg1,eg2,eg_f4,eg_f4_1,eg_f4_2; |
|
int maxrs; |
|
int *spsugar; |
|
ND_pairs *spactive; |
|
|
|
spcol = col-nred; |
|
get_eg(&eg0); |
|
/* elimination (1st step) */ |
|
spmat = (mp_limb_t **)MALLOC(nsp*sizeof(mp_limb_t *)); |
|
svect = (mp_limb_t *)MALLOC(col*sizeof(mp_limb_t)); |
|
cvect = (mp_limb_t *)MALLOC(col*sizeof(mp_limb_t)); |
|
spsugar = (int *)MALLOC(nsp*sizeof(int)); |
|
spactive = !nz?0:(ND_pairs *)MALLOC(nsp*sizeof(ND_pairs)); |
|
for ( a = sprow = 0, sp = sp0; a < nsp; a++, sp = NEXT(sp) ) { |
|
nd_sp(m,0,sp,&spol); |
|
if ( !spol ) continue; |
|
nd_to_vect64(m,s0vect,col,spol,svect); |
|
maxrs = ndv_reduce_vect64(m,svect,cvect,col,imat,rvect,nred,0); |
|
for ( i = 0; i < col; i++ ) if ( svect[i] ) break; |
|
if ( i < col ) { |
|
spmat[sprow] = v = (mp_limb_t *)MALLOC_ATOMIC(spcol*sizeof(mp_limb_t)); |
|
for ( j = k = 0; j < col; j++ ) |
|
if ( !rhead[j] ) v[k++] = (UINT)svect[j]; |
|
spsugar[sprow] = MAX(maxrs,SG(spol)); |
|
if ( nz ) |
|
spactive[sprow] = sp; |
|
sprow++; |
|
} |
|
nd_free(spol); |
|
} |
|
get_eg(&eg1); init_eg(&eg_f4_1); add_eg(&eg_f4_1,&eg0,&eg1); add_eg(&f4_elim1,&eg0,&eg1); |
|
if ( DP_Print ) { |
|
fprintf(asir_out,"elim1=%.3fsec,",eg_f4_1.exectime); |
|
fflush(asir_out); |
|
} |
|
/* free index arrays */ |
|
for ( i = 0; i < nred; i++ ) GCFREE(imat[i]->index.c); |
|
|
|
/* elimination (2nd step) */ |
|
colstat = (int *)MALLOC(spcol*sizeof(int)); |
|
rank = nd_gauss_elim_mod64(spmat,spsugar,spactive,sprow,spcol,m,colstat); |
|
r0 = 0; |
|
for ( i = 0; i < rank; i++ ) { |
|
NEXTNODE(r0,r); BDY(r) = |
|
(pointer)vect64_to_ndv(spmat[i],spcol,col,rhead,s0vect); |
|
SG((NDV)BDY(r)) = spsugar[i]; |
|
GCFREE(spmat[i]); |
|
} |
|
if ( r0 ) NEXT(r) = 0; |
|
|
|
for ( ; i < sprow; i++ ) GCFREE(spmat[i]); |
|
get_eg(&eg2); init_eg(&eg_f4_2); add_eg(&eg_f4_2,&eg1,&eg2); add_eg(&f4_elim2,&eg1,&eg2); |
|
init_eg(&eg_f4); add_eg(&eg_f4,&eg0,&eg2); |
|
if ( DP_Print ) { |
|
fprintf(asir_out,"elim2=%.3fsec,",eg_f4_2.exectime); |
|
fprintf(asir_out,"nsp=%d,nred=%d,spmat=(%d,%d),rank=%d ", |
|
nsp,nred,sprow,spcol,rank); |
|
fprintf(asir_out,"%.3fsec,",eg_f4.exectime); |
|
} |
|
if ( nz ) { |
|
for ( i = 0; i < rank-1; i++ ) NEXT(spactive[i]) = spactive[i+1]; |
|
if ( rank > 0 ) { |
|
NEXT(spactive[rank-1]) = 0; |
|
*nz = spactive[0]; |
|
} else |
|
*nz = 0; |
|
} |
|
return r0; |
|
} |
|
|
|
int nd_gauss_elim_mod64(mp_limb_t **mat,int *sugar,ND_pairs *spactive,int row,int col,int md,int *colstat) |
|
{ |
|
int i,j,k,l,rank,s; |
|
mp_limb_t inv; |
|
mp_limb_t a; |
|
UINT c; |
|
mp_limb_t *t,*pivot,*pk; |
|
UINT *ck; |
|
UINT **cmat; |
|
UINT *ct; |
|
ND_pairs pair; |
|
|
|
cmat = (UINT **)MALLOC(row*sizeof(UINT *)); |
|
for ( i = 0; i < row; i++ ) { |
|
cmat[i] = MALLOC_ATOMIC(col*sizeof(UINT)); |
|
bzero(cmat[i],col*sizeof(UINT)); |
|
} |
|
|
|
for ( rank = 0, j = 0; j < col; j++ ) { |
|
for ( i = rank; i < row; i++ ) { |
|
a = mat[i][j]; c = cmat[i][j]; |
|
MOD128(a,c,md); |
|
mat[i][j] = a; cmat[i][j] = 0; |
|
} |
|
for ( i = rank; i < row; i++ ) |
|
if ( mat[i][j] ) |
|
break; |
|
if ( i == row ) { |
|
colstat[j] = 0; |
|
continue; |
|
} else |
|
colstat[j] = 1; |
|
if ( i != rank ) { |
|
t = mat[i]; mat[i] = mat[rank]; mat[rank] = t; |
|
ct = cmat[i]; cmat[i] = cmat[rank]; cmat[rank] = ct; |
|
s = sugar[i]; sugar[i] = sugar[rank]; sugar[rank] = s; |
|
if ( spactive ) { |
|
pair = spactive[i]; spactive[i] = spactive[rank]; |
|
spactive[rank] = pair; |
|
} |
|
} |
|
/* column j is normalized */ |
|
s = sugar[rank]; |
|
inv = invm((UINT)mat[rank][j],md); |
|
/* normalize pivot row */ |
|
for ( k = j, pk = mat[rank]+j, ck = cmat[rank]+j; k < col; k++, pk++, ck++ ) { |
|
a = *pk; c = *ck; MOD128(a,c,md); *pk = (a*inv)%md; *ck = 0; |
|
} |
|
for ( i = rank+1; i < row; i++ ) { |
|
if ( (a = mat[i][j]) != 0 ) { |
|
sugar[i] = MAX(sugar[i],s); |
|
red_by_vect64(md,mat[i]+j,cmat[i]+j,mat[rank]+j,(int)(md-a),col-j); |
|
Nf4_red++; |
|
} |
|
} |
|
rank++; |
|
} |
|
for ( j = col-1, l = rank-1; j >= 0; j-- ) |
|
if ( colstat[j] ) { |
|
for ( k = j, pk = mat[l]+j, ck = cmat[l]+j; k < col; k++, pk++, ck++ ) { |
|
a = *pk; c = *ck; MOD128(a,c,md); *pk = a; *ck = 0; |
|
} |
|
s = sugar[l]; |
|
for ( i = 0; i < l; i++ ) { |
|
a = mat[i][j]; c = cmat[i][j]; MOD128(a,c,md); mat[i][j] = a; cmat[i][j] = 0; |
|
if ( a ) { |
|
sugar[i] = MAX(sugar[i],s); |
|
red_by_vect64(md,mat[i]+j,cmat[i]+j,mat[l]+j,(int)(md-a),col-j); |
|
Nf4_red++; |
|
} |
|
} |
|
l--; |
|
} |
|
for ( i = 0; i < row; i++ ) GCFREE(cmat[i]); |
|
GCFREE(cmat); |
|
return rank; |
|
} |
|
#endif |
|
|
|
int nd_gauss_elim_mod64_s(mp_limb_t **mat,int *sugar,ND_pairs *spactive,int row,int col,int md,int *colstat,SIG *sig) |
|
{ |
|
int i,j,k,l,rank,s,imin; |
|
mp_limb_t inv; |
|
mp_limb_t a; |
|
UINT c; |
|
mp_limb_t *t,*pivot,*pk; |
|
UINT *ck; |
|
UINT **cmat; |
|
UINT *ct; |
|
ND_pairs pair; |
|
SIG sg; |
|
|
|
cmat = (UINT **)MALLOC(row*sizeof(UINT *)); |
|
for ( i = 0; i < row; i++ ) { |
|
cmat[i] = MALLOC_ATOMIC(col*sizeof(UINT)); |
|
bzero(cmat[i],col*sizeof(UINT)); |
|
} |
|
|
|
for ( rank = 0, j = 0; j < col; j++ ) { |
|
for ( i = rank; i < row; i++ ) { |
|
a = mat[i][j]; c = cmat[i][j]; |
|
MOD128(a,c,md); |
|
mat[i][j] = a; cmat[i][j] = 0; |
|
} |
|
imin = -1; |
|
for ( i = rank; i < row; i++ ) |
|
if ( mat[i][j] && (imin < 0 || comp_sig(sig[imin],sig[i]) > 0) ) imin = i; |
|
if ( imin == -1 ) { |
|
colstat[j] = 0; |
|
continue; |
|
} else |
|
colstat[j] = 1; |
|
if ( imin != rank ) { |
|
t = mat[imin]; mat[imin] = mat[rank]; mat[rank] = t; |
|
ct = cmat[imin]; cmat[imin] = cmat[rank]; cmat[rank] = ct; |
|
s = sugar[imin]; sugar[imin] = sugar[rank]; sugar[rank] = s; |
|
sg = sig[imin]; sig[imin] = sig[rank]; sig[rank] = sg; |
|
if ( spactive ) { |
|
pair = spactive[imin]; spactive[imin] = spactive[rank]; |
|
spactive[rank] = pair; |
|
} |
|
} |
|
/* column j is normalized */ |
|
s = sugar[rank]; |
|
inv = invm((UINT)mat[rank][j],md); |
|
/* normalize pivot row */ |
|
for ( k = j, pk = mat[rank]+j, ck = cmat[rank]+j; k < col; k++, pk++, ck++ ) { |
|
a = *pk; c = *ck; MOD128(a,c,md); *pk = (a*inv)%md; *ck = 0; |
|
} |
|
for ( i = rank+1; i < row; i++ ) { |
|
if ( (a = mat[i][j]) != 0 ) { |
|
sugar[i] = MAX(sugar[i],s); |
|
red_by_vect64(md,mat[i]+j,cmat[i]+j,mat[rank]+j,(int)(md-a),col-j); |
|
Nf4_red++; |
|
} |
|
} |
|
rank++; |
|
} |
|
#if 1 |
|
for ( j = col-1, l = rank-1; j >= 0; j-- ) |
|
if ( colstat[j] ) { |
|
for ( k = j, pk = mat[l]+j, ck = cmat[l]+j; k < col; k++, pk++, ck++ ) { |
|
a = *pk; c = *ck; MOD128(a,c,md); *pk = a; *ck = 0; |
|
} |
|
s = sugar[l]; |
|
for ( i = 0; i < l; i++ ) { |
|
a = mat[i][j]; c = cmat[i][j]; MOD128(a,c,md); mat[i][j] = a; cmat[i][j] = 0; |
|
if ( a && comp_sig(sig[i],sig[l]) > 0 ) { |
|
sugar[i] = MAX(sugar[i],s); |
|
red_by_vect64(md,mat[i]+j,cmat[i]+j,mat[l]+j,(int)(md-a),col-j); |
|
Nf4_red++; |
|
} |
|
} |
|
l--; |
|
} |
|
#endif |
|
for ( i = 0; i < row; i++ ) GCFREE(cmat[i]); |
|
GCFREE(cmat); |
|
return rank; |
|
} |
|
|
|
NODE nd_f4_red_mod64_main_s(int m,ND_pairs sp0,int nsp,UINT *s0vect,int col, |
|
NM_ind_pair *rvect,int *rhead,IndArray *imat,int nred,NODE *syzlistp) |
|
{ |
|
int spcol,sprow,a; |
|
int i,j,k,l,rank; |
|
NODE r0,r; |
|
ND_pairs sp; |
|
ND spol; |
|
mp_limb_t **spmat; |
|
mp_limb_t *svect,*cvect; |
|
mp_limb_t *v; |
|
int *colstat; |
|
struct oEGT eg0,eg1,eg2,eg_f4,eg_f4_1,eg_f4_2; |
|
int maxrs; |
|
int *spsugar; |
|
ND_pairs *spactive; |
|
SIG *spsig; |
|
|
|
get_eg(&eg0); |
|
/* elimination (1st step) */ |
|
spmat = (mp_limb_t **)MALLOC(nsp*sizeof(mp_limb_t *)); |
|
cvect = (mp_limb_t *)MALLOC(col*sizeof(mp_limb_t)); |
|
spsugar = (int *)MALLOC(nsp*sizeof(int)); |
|
spsig = (SIG *)MALLOC(nsp*sizeof(SIG)); |
|
for ( a = sprow = 0, sp = sp0; a < nsp; a++, sp = NEXT(sp) ) { |
|
nd_sp(m,0,sp,&spol); |
|
if ( !spol ) { |
|
syzlistp[sp->sig->pos] = insert_sig(syzlistp[sp->sig->pos],sp->sig); |
|
continue; |
|
} |
|
svect = (mp_limb_t *)MALLOC(col*sizeof(mp_limb_t)); |
|
nd_to_vect64(m,s0vect,col,spol,svect); |
|
maxrs = ndv_reduce_vect64(m,svect,cvect,col,imat,rvect,nred,spol->sig); |
|
for ( i = 0; i < col; i++ ) if ( svect[i] ) break; |
|
if ( i < col ) { |
|
spmat[sprow] = svect; |
|
spsugar[sprow] = MAX(maxrs,SG(spol)); |
|
spsig[sprow] = sp->sig; |
|
sprow++; |
|
} else { |
|
syzlistp[sp->sig->pos] = insert_sig(syzlistp[sp->sig->pos],sp->sig); |
|
} |
|
nd_free(spol); |
|
} |
|
get_eg(&eg1); init_eg(&eg_f4_1); add_eg(&eg_f4_1,&eg0,&eg1); add_eg(&f4_elim1,&eg0,&eg1); |
|
if ( DP_Print ) { |
|
fprintf(asir_out,"elim1=%.3fsec,",eg_f4_1.exectime); |
|
fflush(asir_out); |
|
} |
|
/* free index arrays */ |
|
for ( i = 0; i < nred; i++ ) GCFREE(imat[i]->index.c); |
|
|
|
/* elimination (2nd step) */ |
|
colstat = (int *)MALLOC(col*sizeof(int)); |
|
rank = nd_gauss_elim_mod64_s(spmat,spsugar,0,sprow,col,m,colstat,spsig); |
|
r0 = 0; |
|
for ( i = 0; i < rank; i++ ) { |
|
NEXTNODE(r0,r); |
|
BDY(r) = vect64_to_ndv_s(spmat[i],col,s0vect); |
|
SG((NDV)BDY(r)) = spsugar[i]; |
|
((NDV)BDY(r))->sig = spsig[i]; |
|
GCFREE(spmat[i]); |
|
} |
|
if ( r0 ) NEXT(r) = 0; |
|
|
|
for ( ; i < sprow; i++ ) { |
|
GCFREE(spmat[i]); |
|
syzlistp[spsig[i]->pos] = insert_sig(syzlistp[spsig[i]->pos],spsig[i]); |
|
} |
|
get_eg(&eg2); init_eg(&eg_f4_2); add_eg(&eg_f4_2,&eg1,&eg2); add_eg(&f4_elim2,&eg1,&eg2); |
|
init_eg(&eg_f4); add_eg(&eg_f4,&eg0,&eg2); |
|
if ( DP_Print ) { |
|
fprintf(asir_out,"elim2=%.3fsec,",eg_f4_2.exectime); |
|
fprintf(asir_out,"nsp=%d,nred=%d,spmat=(%d,%d),rank=%d ", |
|
nsp,nred,sprow,col,rank); |
|
fprintf(asir_out,"%.3fsec,",eg_f4.exectime); |
|
} |
|
return r0; |
|
} |
|
|
|
NODE nd_f4_red_s(int m,ND_pairs sp0,int trace,UINT *s0vect,int col,NODE rp0,NODE *syzlistp) |
|
{ |
|
IndArray *imat; |
|
int nsp,nred,i,start; |
|
int *rhead; |
|
NODE r0,rp; |
|
ND_pairs sp; |
|
NM_ind_pair *rvect; |
|
UINT *s; |
|
int *s0hash; |
|
struct oEGT eg0,eg1,eg_conv; |
|
|
|
for ( sp = sp0, nsp = 0; sp; sp = NEXT(sp), nsp++ ); |
|
nred = length(rp0); |
|
imat = (IndArray *)MALLOC(nred*sizeof(IndArray)); |
|
rhead = (int *)MALLOC(col*sizeof(int)); |
|
for ( i = 0; i < col; i++ ) rhead[i] = 0; |
|
|
|
/* construction of index arrays */ |
|
get_eg(&eg0); |
|
if ( DP_Print ) { |
|
fprintf(asir_out,"%dx%d,",nsp+nred,col); |
|
fflush(asir_out); |
|
} |
|
rvect = (NM_ind_pair *)MALLOC(nred*sizeof(NM_ind_pair)); |
|
for ( start = 0, rp = rp0, i = 0; rp; i++, rp = NEXT(rp) ) { |
|
rvect[i] = (NM_ind_pair)BDY(rp); |
|
imat[i] = nm_ind_pair_to_vect_compress(trace,s0vect,col,rvect[i],start); |
|
rhead[imat[i]->head] = 1; |
|
start = imat[i]->head; |
|
} |
|
get_eg(&eg1); init_eg(&eg_conv); add_eg(&eg_conv,&eg0,&eg1); add_eg(&f4_conv,&eg0,&eg1); |
|
if ( DP_Print ) { |
|
fprintf(asir_out,"conv=%.3fsec,",eg_conv.exectime); |
|
fflush(asir_out); |
|
} |
|
if ( m > 0 ) |
|
r0 = nd_f4_red_mod64_main_s(m,sp0,nsp,s0vect,col,rvect,rhead,imat,nred,syzlistp); |
|
else |
|
// r0 = nd_f4_red_q_main_s(sp0,nsp,trace,s0vect,col,rvect,rhead,imat,nred); |
|
error("nd_f4_red_q_main_s : not implemented yet"); |
|
return r0; |
|
} |
|
|
|
INLINE int ndl_find_reducer_minsig(UINT *dg) |
|
{ |
|
RHist r; |
|
int i,singular,ret,d,k,imin; |
|
SIG t; |
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static int wpd,nvar; |
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static SIG quo,quomin; |
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static UINT *tmp; |
|
|
|
if ( !quo || nvar != nd_nvar ) { NEWSIG(quo); NEWSIG(quomin); } |
|
if ( wpd != nd_wpd ) { |
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wpd = nd_wpd; |
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tmp = (UINT *)MALLOC(wpd*sizeof(UINT)); |
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} |
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#if 0 |
|
d = ndl_hash_value(dg); |
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for ( r = nd_red[d], k = 0; r; r = NEXT(r), k++ ) { |
|
if ( ndl_equal(dg,DL(r)) ) { |
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return r->index; |
|
} |
|
} |
|
#endif |
|
imin = -1; |
|
for ( i = 0; i < nd_psn; i++ ) { |
|
r = nd_psh[i]; |
|
if ( ndl_reducible(dg,DL(r)) ) { |
|
ndl_sub(dg,DL(r),tmp); |
|
_ndltodl(tmp,DL(quo)); |
|
_addtodl(nd_nvar,DL(nd_psh[i]->sig),DL(quo)); |
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quo->pos = nd_psh[i]->sig->pos; |
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if ( imin < 0 || comp_sig(quomin,quo) > 0 ) { |
|
t = quo; quo = quomin; quomin = t; |
|
imin = i; |
|
} |
|
} |
|
} |
|
if ( imin == -1 ) return nd_psn; |
|
else { |
|
#if 0 |
|
nd_append_red(dg,i); |
|
#endif |
|
return imin; |
|
} |
|
} |
|
|
|
int nd_symbolic_preproc_s(PGeoBucket bucket,int trace,UINT **s0vect,NODE *r) |
|
{ |
|
NODE rp0,rp; |
|
NM mul,head,s0,s; |
|
int index,col,i,sugar; |
|
RHist h; |
|
UINT *s0v,*p; |
|
NM_ind_pair pair; |
|
ND red; |
|
NDV *ps; |
|
SIG sig; |
|
|
|
s0 = 0; rp0 = 0; col = 0; |
|
if ( nd_demand ) |
|
ps = trace?nd_ps_trace_sym:nd_ps_sym; |
|
else |
|
ps = trace?nd_ps_trace:nd_ps; |
|
while ( 1 ) { |
|
head = remove_head_pbucket_symbolic(bucket); |
|
if ( !head ) break; |
|
if ( !s0 ) s0 = head; |
|
else NEXT(s) = head; |
|
s = head; |
|
index = ndl_find_reducer_minsig(DL(head)); |
|
if ( index >= 0 && index < nd_psn ) { |
|
h = nd_psh[index]; |
|
NEWNM(mul); |
|
ndl_sub(DL(head),DL(h),DL(mul)); |
|
if ( ndl_check_bound2(index,DL(mul)) ) |
|
return 0; |
|
sugar = TD(DL(mul))+SG(ps[index]); |
|
NEWSIG(sig); |
|
_ndltodl(DL(mul),DL(sig)); |
|
_addtodl(nd_nvar,DL(nd_psh[index]->sig),DL(sig)); |
|
sig->pos = nd_psh[index]->sig->pos; |
|
MKNM_ind_pair(pair,mul,index,sugar,sig); |
|
red = ndv_mul_nm_symbolic(mul,ps[index]); |
|
add_pbucket_symbolic(bucket,nd_remove_head(red)); |
|
NEXTNODE(rp0,rp); BDY(rp) = (pointer)pair; |
|
} |
|
col++; |
|
} |
|
if ( rp0 ) NEXT(rp) = 0; |
|
NEXT(s) = 0; |
|
s0v = (UINT *)MALLOC_ATOMIC(col*nd_wpd*sizeof(UINT)); |
|
for ( i = 0, p = s0v, s = s0; i < col; |
|
i++, p += nd_wpd, s = NEXT(s) ) ndl_copy(DL(s),p); |
|
*s0vect = s0v; |
|
*r = rp0; |
|
|
|
return col; |
|
} |
|
|
|
NODE nd_sba_f4(int m,int **indp) |
|
{ |
|
int i,nh,stat,index,f4red; |
|
NODE r,g,tn0,tn,node; |
|
ND_pairs d,l,t,ll0,ll,lh; |
|
LIST l0,l1; |
|
ND spol,red; |
|
NDV nf,redv; |
|
NM s0,s; |
|
NODE rp0,srp0,nflist; |
|
int nsp,nred,col,rank,len,k,j,a,i1s,i2s; |
|
UINT c; |
|
UINT **spmat; |
|
UINT *s0vect,*svect,*p,*v; |
|
int *colstat; |
|
IndArray *imat; |
|
int *rhead; |
|
int spcol,sprow; |
|
int sugar,sugarh; |
|
int nbase; |
|
PGeoBucket bucket; |
|
struct oEGT eg0,eg1,eg_f4; |
|
Z i1,i2,sugarq; |
|
NODE *syzlist; |
|
|
|
Nf4_red=0; |
|
d = 0; |
|
syzlist = (NODE *)MALLOC(nd_psn*sizeof(NODE)); |
|
for ( i = 0; i < nd_psn; i++ ) { |
|
d = update_pairs_s(d,i,syzlist); |
|
} |
|
nd_nbase = nd_psn; |
|
f4red = 1; |
|
while ( d ) { |
|
l = nd_minsugarp_s(d,&d); |
|
if ( !l ) continue; |
|
sugar = nd_sugarweight?l->sugar2:SG(l); |
|
if ( MaxDeg > 0 && sugar > MaxDeg ) break; |
|
bucket = create_pbucket(); |
|
stat = nd_sp_f4(m,0,l,bucket); |
|
if ( !stat ) { |
|
for ( t = l; NEXT(t); t = NEXT(t) ); |
|
NEXT(t) = d; d = l; |
|
d = nd_reconstruct(0,d); |
|
continue; |
|
} |
|
if ( bucket->m < 0 ) continue; |
|
col = nd_symbolic_preproc_s(bucket,0,&s0vect,&rp0); |
|
if ( !col ) { |
|
for ( t = l; NEXT(t); t = NEXT(t) ); |
|
NEXT(t) = d; d = l; |
|
d = nd_reconstruct(0,d); |
|
continue; |
|
} |
|
if ( DP_Print ) fprintf(asir_out,"sugar=%d,",sugar); |
|
l = remove_large_lcm(l); |
|
nflist = nd_f4_red_s(m,l,0,s0vect,col,rp0,syzlist); |
|
/* adding new bases */ |
|
for ( r = nflist; r; r = NEXT(r) ) { |
|
ND tmp,tmpred; |
|
SIG sig; |
|
|
|
nf = (NDV)BDY(r); |
|
sig = nf->sig; |
|
tmp = ndvtond(m,nf); |
|
stat = nd_nf_s(m,0,tmp,nd_ps,!Top,&tmpred); |
|
if ( stat < 0 ) { |
|
// top reducible |
|
if ( DP_Print ) { fprintf(asir_out,"S"); fflush(asir_out); } |
|
} else if ( tmpred ) { |
|
nf = ndtondv(m,tmpred); |
|
ndv_removecont(m,nf); |
|
nh = ndv_newps(m,nf,0); |
|
d = update_pairs_s(d,nh,syzlist); |
|
nd_sba_pos[sig->pos] = append_one(nd_sba_pos[sig->pos],nh); |
|
} else { |
|
syzlist[sig->pos] = insert_sig(syzlist[sig->pos],sig); |
|
} |
|
} |
|
for ( i = 0; i < nd_nbase; i++ ) |
|
for ( r = syzlist[i]; r; r = NEXT(r) ) |
|
d = remove_spair_s(d,(SIG)BDY(r)); |
|
if ( DP_Print ) { |
|
fprintf(asir_out,"f4red=%d,gblen=%d\n",f4red,length(g)); fflush(asir_out); |
|
} |
|
f4red++; |
|
if ( nd_f4red && f4red > nd_f4red ) break; |
|
if ( nd_rank0 && !nflist ) break; |
|
} |
|
if ( DP_Print ) { |
|
fprintf(asir_out,"number of red=%d,",Nf4_red); |
|
} |
|
g = conv_ilist_s(nd_demand,0,indp); |
|
return g; |
|
} |