| version 1.84, 2011/02/18 02:54:48 |
version 1.91, 2013/09/12 06:46:16 |
|
|
| * DEVELOPER SHALL HAVE NO LIABILITY IN CONNECTION WITH THE USE, |
* DEVELOPER SHALL HAVE NO LIABILITY IN CONNECTION WITH THE USE, |
| * PERFORMANCE OR NON-PERFORMANCE OF THE SOFTWARE. |
* PERFORMANCE OR NON-PERFORMANCE OF THE SOFTWARE. |
| * |
* |
| * $OpenXM: OpenXM_contrib2/asir2000/builtin/dp.c,v 1.83 2010/09/27 05:05:58 noro Exp $ |
* $OpenXM: OpenXM_contrib2/asir2000/builtin/dp.c,v 1.90 2013/09/09 09:47:09 noro Exp $ |
| */ |
*/ |
| #include "ca.h" |
#include "ca.h" |
| #include "base.h" |
#include "base.h" |
| Line 96 void Pdp_nf_f(),Pdp_weyl_nf_f(); |
|
| Line 96 void Pdp_nf_f(),Pdp_weyl_nf_f(); |
|
| void Pdp_lnf_f(); |
void Pdp_lnf_f(); |
| void Pnd_gr(),Pnd_gr_trace(),Pnd_f4(),Pnd_f4_trace(); |
void Pnd_gr(),Pnd_gr_trace(),Pnd_f4(),Pnd_f4_trace(); |
| void Pnd_gr_postproc(), Pnd_weyl_gr_postproc(); |
void Pnd_gr_postproc(), Pnd_weyl_gr_postproc(); |
| |
void Pnd_gr_recompute_trace(), Pnd_btog(); |
| void Pnd_weyl_gr(),Pnd_weyl_gr_trace(); |
void Pnd_weyl_gr(),Pnd_weyl_gr_trace(); |
| void Pnd_nf(),Pnd_weyl_nf(); |
void Pnd_nf(),Pnd_weyl_nf(); |
| void Pdp_initial_term(); |
void Pdp_initial_term(); |
| Line 113 LIST dp_initial_term(); |
|
| Line 114 LIST dp_initial_term(); |
|
| LIST dp_order(); |
LIST dp_order(); |
| void parse_gr_option(LIST f,NODE opt,LIST *v,Num *homo, |
void parse_gr_option(LIST f,NODE opt,LIST *v,Num *homo, |
| int *modular,struct order_spec **ord); |
int *modular,struct order_spec **ord); |
| |
NODE dp_inv_or_split(NODE gb,DP f,struct order_spec *spec, DP *inv); |
| |
|
| LIST remove_zero_from_list(LIST); |
LIST remove_zero_from_list(LIST); |
| |
|
| Line 163 struct ftab dp_tab[] = { |
|
| Line 165 struct ftab dp_tab[] = { |
|
| {"nd_gr_trace",Pnd_gr_trace,5}, |
{"nd_gr_trace",Pnd_gr_trace,5}, |
| {"nd_f4_trace",Pnd_f4_trace,5}, |
{"nd_f4_trace",Pnd_f4_trace,5}, |
| {"nd_gr_postproc",Pnd_gr_postproc,5}, |
{"nd_gr_postproc",Pnd_gr_postproc,5}, |
| |
{"nd_gr_recompute_trace",Pnd_gr_recompute_trace,5}, |
| |
{"nd_btog",Pnd_btog,-6}, |
| {"nd_weyl_gr_postproc",Pnd_weyl_gr_postproc,5}, |
{"nd_weyl_gr_postproc",Pnd_weyl_gr_postproc,5}, |
| {"nd_weyl_gr",Pnd_weyl_gr,4}, |
{"nd_weyl_gr",Pnd_weyl_gr,4}, |
| {"nd_weyl_gr_trace",Pnd_weyl_gr_trace,5}, |
{"nd_weyl_gr_trace",Pnd_weyl_gr_trace,5}, |
|
|
| LIST *rp; |
LIST *rp; |
| { |
{ |
| LIST f,v; |
LIST f,v; |
| int m,find; |
int m,homo,retdp; |
| Obj homo; |
Obj val; |
| struct order_spec *ord; |
struct order_spec *ord; |
| |
|
| do_weyl = 0; |
do_weyl = 0; |
|
|
| } |
} |
| m = QTOS((Q)ARG2(arg)); |
m = QTOS((Q)ARG2(arg)); |
| create_order_spec(0,ARG3(arg),&ord); |
create_order_spec(0,ARG3(arg),&ord); |
| find = get_opt("homo",&homo); |
homo = retdp = 0; |
| nd_gr(f,v,m,find&&homo,1,ord,rp); |
if ( get_opt("homo",&val) && val ) homo = 1; |
| |
if ( get_opt("dp",&val) && val ) retdp = 1; |
| |
nd_gr(f,v,m,homo,retdp,1,ord,rp); |
| } |
} |
| |
|
| void Pnd_gr(arg,rp) |
void Pnd_gr(arg,rp) |
|
|
| LIST *rp; |
LIST *rp; |
| { |
{ |
| LIST f,v; |
LIST f,v; |
| int m,find; |
int m,homo,retdp; |
| Obj homo; |
Obj val; |
| struct order_spec *ord; |
struct order_spec *ord; |
| |
|
| do_weyl = 0; |
do_weyl = 0; |
|
|
| } |
} |
| m = QTOS((Q)ARG2(arg)); |
m = QTOS((Q)ARG2(arg)); |
| create_order_spec(0,ARG3(arg),&ord); |
create_order_spec(0,ARG3(arg),&ord); |
| find = get_opt("homo",&homo); |
homo = retdp = 0; |
| nd_gr(f,v,m,find&&homo,0,ord,rp); |
if ( get_opt("homo",&val) && val ) homo = 1; |
| |
if ( get_opt("dp",&val) && val ) retdp = 1; |
| |
nd_gr(f,v,m,homo,retdp,0,ord,rp); |
| } |
} |
| |
|
| void Pnd_gr_postproc(arg,rp) |
void Pnd_gr_postproc(arg,rp) |
|
|
| nd_gr_postproc(f,v,m,ord,do_check,rp); |
nd_gr_postproc(f,v,m,ord,do_check,rp); |
| } |
} |
| |
|
| |
void Pnd_gr_recompute_trace(arg,rp) |
| |
NODE arg; |
| |
LIST *rp; |
| |
{ |
| |
LIST f,v,tlist; |
| |
int m; |
| |
struct order_spec *ord; |
| |
|
| |
do_weyl = 0; |
| |
asir_assert(ARG0(arg),O_LIST,"nd_gr_recompute_trace"); |
| |
asir_assert(ARG1(arg),O_LIST,"nd_gr_recompute_trace"); |
| |
asir_assert(ARG2(arg),O_N,"nd_gr_recompute_trace"); |
| |
f = (LIST)ARG0(arg); v = (LIST)ARG1(arg); |
| |
m = QTOS((Q)ARG2(arg)); |
| |
create_order_spec(0,ARG3(arg),&ord); |
| |
tlist = (LIST)ARG4(arg); |
| |
nd_gr_recompute_trace(f,v,m,ord,tlist,rp); |
| |
} |
| |
|
| |
Obj nd_btog_one(LIST f,LIST v,int m,struct order_spec *ord,LIST tlist,int pos); |
| |
Obj nd_btog(LIST f,LIST v,int m,struct order_spec *ord,LIST tlist); |
| |
|
| |
void Pnd_btog(arg,rp) |
| |
NODE arg; |
| |
Obj *rp; |
| |
{ |
| |
LIST f,v,tlist; |
| |
int m,ac,pos; |
| |
struct order_spec *ord; |
| |
|
| |
do_weyl = 0; |
| |
asir_assert(ARG0(arg),O_LIST,"nd_btog"); |
| |
asir_assert(ARG1(arg),O_LIST,"nd_btog"); |
| |
asir_assert(ARG2(arg),O_N,"nd_btog"); |
| |
f = (LIST)ARG0(arg); v = (LIST)ARG1(arg); |
| |
m = QTOS((Q)ARG2(arg)); |
| |
create_order_spec(0,ARG3(arg),&ord); |
| |
tlist = (LIST)ARG4(arg); |
| |
if ( (ac = argc(arg)) == 6 ) { |
| |
asir_assert(ARG5(arg),O_N,"nd_btog"); |
| |
pos = QTOS((Q)ARG5(arg)); |
| |
*rp = nd_btog_one(f,v,m,ord,tlist,pos); |
| |
} else if ( ac == 5 ) |
| |
*rp = nd_btog(f,v,m,ord,tlist); |
| |
else |
| |
error("nd_btog : argument mismatch"); |
| |
} |
| |
|
| void Pnd_weyl_gr_postproc(arg,rp) |
void Pnd_weyl_gr_postproc(arg,rp) |
| NODE arg; |
NODE arg; |
| LIST *rp; |
LIST *rp; |
|
|
| LIST *rp; |
LIST *rp; |
| { |
{ |
| LIST f,v; |
LIST f,v; |
| int m,find; |
int m,homo,retdp; |
| Obj homo; |
Obj val; |
| struct order_spec *ord; |
struct order_spec *ord; |
| |
|
| do_weyl = 1; |
do_weyl = 1; |
|
|
| } |
} |
| m = QTOS((Q)ARG2(arg)); |
m = QTOS((Q)ARG2(arg)); |
| create_order_spec(0,ARG3(arg),&ord); |
create_order_spec(0,ARG3(arg),&ord); |
| find = get_opt("homo",&homo); |
homo = retdp = 0; |
| nd_gr(f,v,m,find&&homo,0,ord,rp); |
if ( get_opt("homo",&val) && val ) homo = 1; |
| |
if ( get_opt("dp",&val) && val ) retdp = 1; |
| |
nd_gr(f,v,m,homo,retdp,0,ord,rp); |
| do_weyl = 0; |
do_weyl = 0; |
| } |
} |
| |
|
|
|
| VECT *rp; |
VECT *rp; |
| { |
{ |
| VECT v; |
VECT v; |
| |
NODE node; |
| int i,n; |
int i,n; |
| |
|
| if ( !arg ) |
if ( !arg ) |
|
|
| current_weyl_weight_vector = 0; |
current_weyl_weight_vector = 0; |
| *rp = 0; |
*rp = 0; |
| } else { |
} else { |
| asir_assert(ARG0(arg),O_VECT,"dp_weyl_set_weight"); |
if ( OID(ARG0(arg)) != O_VECT && OID(ARG0(arg)) != O_LIST ) |
| v = (VECT)ARG0(arg); |
error("dp_weyl_set_weight : invalid argument"); |
| |
if ( OID(ARG0(arg)) == O_VECT ) |
| |
v = (VECT)ARG0(arg); |
| |
else { |
| |
node = (NODE)BDY((LIST)ARG0(arg)); |
| |
n = length(node); |
| |
MKVECT(v,n); |
| |
for ( i = 0; i < n; i++, node = NEXT(node) ) |
| |
BDY(v)[i] = BDY(node); |
| |
} |
| current_weyl_weight_vector_obj = v; |
current_weyl_weight_vector_obj = v; |
| n = v->len; |
n = v->len; |
| current_weyl_weight_vector = (int *)CALLOC(n,sizeof(int)); |
current_weyl_weight_vector = (int *)CALLOC(n,sizeof(int)); |