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Diff for /OpenXM_contrib2/asir2018/engine/nd.h between version 1.8 and 1.12

version 1.8, 2020/06/19 10:18:13 version 1.12, 2021/11/29 09:19:33
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Line 1 
 /* $OpenXM: OpenXM_contrib2/asir2018/engine/nd.h,v 1.7 2019/08/21 00:37:47 noro Exp $ */  /* $OpenXM: OpenXM_contrib2/asir2018/engine/nd.h,v 1.11 2020/10/26 02:41:05 noro Exp $ */
 #include "ca.h"  #include "ca.h"
 #include "parse.h"  #include "parse.h"
 #include "ox.h"  #include "ox.h"
Line 30  typedef struct oPGeoBucket {
Line 30  typedef struct oPGeoBucket {
   
 typedef struct oSIG {  typedef struct oSIG {
   int pos;    int pos;
   DL dl;    DL dl,dl2;
 } *SIG;  } *SIG;
   
 /* distributed polynomial; linked list rep. */  /* distributed polynomial; linked list rep. */
Line 89  typedef struct oND_pairs {
Line 89  typedef struct oND_pairs {
   int sugar;    int sugar;
   int sugar2;    int sugar2;
   SIG sig;    SIG sig;
     int zero;
   UINT lcm[1];    UINT lcm[1];
 } *ND_pairs;  } *ND_pairs;
   
Line 114  typedef struct oNM_ind_pair
Line 115  typedef struct oNM_ind_pair
 {  {
   NM mul;    NM mul;
   int index,sugar;    int index,sugar;
     SIG sig;
 } *NM_ind_pair;  } *NM_ind_pair;
   
 typedef struct oIndArray  typedef struct oIndArray
Line 162  extern int *current_module_weight_vector;
Line 164  extern int *current_module_weight_vector;
 #define CP(x) ((x)->c.p)  #define CP(x) ((x)->c.p)
 #define CA(x) ((x)->c.a)  #define CA(x) ((x)->c.a)
 #define DL(x) ((x)->dl)  #define DL(x) ((x)->dl)
   #define DL2(x) ((x)->dl2)
 #define SG(x) ((x)->sugar)  #define SG(x) ((x)->sugar)
 #define LEN(x) ((x)->len)  #define LEN(x) ((x)->len)
 #define LCM(x) ((x)->lcm)  #define LCM(x) ((x)->lcm)
Line 195  extern int *current_module_weight_vector;
Line 198  extern int *current_module_weight_vector;
 ((r)=(RHist)MALLOC(sizeof(struct oRHist)+(nd_wpd-1)*sizeof(UINT)))  ((r)=(RHist)MALLOC(sizeof(struct oRHist)+(nd_wpd-1)*sizeof(UINT)))
 #define NEWND_pairs(m) \  #define NEWND_pairs(m) \
 if(!_ndp_free_list)_NDP_alloc();\  if(!_ndp_free_list)_NDP_alloc();\
 (m)=_ndp_free_list; _ndp_free_list = NEXT(_ndp_free_list)  (m)=_ndp_free_list; (m)->zero = 0; _ndp_free_list = NEXT(_ndp_free_list)
 #define NEWNM(m)\  #define NEWNM(m)\
 if(!_nm_free_list)_NM_alloc();\  if(!_nm_free_list)_NM_alloc();\
 (m)=_nm_free_list; _nm_free_list = NEXT(_nm_free_list)  (m)=_nm_free_list; _nm_free_list = NEXT(_nm_free_list)
Line 208  NV(d)=(n); LEN(d)=(len); BDY(d)=(m)
Line 211  NV(d)=(n); LEN(d)=(len); BDY(d)=(m)
 #define NEWNM_ind_pair(p)\  #define NEWNM_ind_pair(p)\
 ((p)=(NM_ind_pair)MALLOC(sizeof(struct oNM_ind_pair)))  ((p)=(NM_ind_pair)MALLOC(sizeof(struct oNM_ind_pair)))
 #define NEWSIG(r) \  #define NEWSIG(r) \
 ((r)=(SIG)MALLOC(sizeof(struct oSIG)),NEWDL((r)->dl,nd_nvar))  ((r)=(SIG)MALLOC(sizeof(struct oSIG)),NEWDL((r)->dl,nd_nvar),NEWDL((r)->dl2,nd_nvar))
   
 /* allocate and link a new object */  /* allocate and link a new object */
 #define NEXTRHist(r,c) \  #define NEXTRHist(r,c) \
Line 219  if(!(r)){NEWNM(r);(c)=(r);}else{NEWNM(NEXT(c));(c)=NEX
Line 222  if(!(r)){NEWNM(r);(c)=(r);}else{NEWNM(NEXT(c));(c)=NEX
 if(!(r)){(c)=(r)=(s);}else{NEXT(c)=(s);(c)=(s);}  if(!(r)){(c)=(r)=(s);}else{NEXT(c)=(s);(c)=(s);}
 #define NEXTND_pairs(r,c) \  #define NEXTND_pairs(r,c) \
 if(!(r)){NEWND_pairs(r);(c)=(r);}else{NEWND_pairs(NEXT(c));(c)=NEXT(c);}  if(!(r)){NEWND_pairs(r);(c)=(r);}else{NEWND_pairs(NEXT(c));(c)=NEXT(c);}
 #define MKNM_ind_pair(p,m,i,s) (NEWNM_ind_pair(p),(p)->mul=(m),(p)->index=(i),(p)->sugar = (s))  #define MKNM_ind_pair(p,m,i,s,sg)\
    (NEWNM_ind_pair(p),(p)->mul=(m),(p)->index=(i),(p)->sugar = (s),(p)->sig=(sg))
   
 /* deallocators */  /* deallocators */
 #define FREENM(m) NEXT(m)=_nm_free_list; _nm_free_list=(m)  #define FREENM(m) NEXT(m)=_nm_free_list; _nm_free_list=(m)
Line 277  NODE nd_f4(int m,int checkonly,int **indp);
Line 281  NODE nd_f4(int m,int checkonly,int **indp);
 NODE nd_gb(int m,int ishomo,int checkonly,int gensyz,int **indp);  NODE nd_gb(int m,int ishomo,int checkonly,int gensyz,int **indp);
 NODE nd_gb_trace(int m,int ishomo,int **indp);  NODE nd_gb_trace(int m,int ishomo,int **indp);
 NODE nd_f4_trace(int m,int **indp);  NODE nd_f4_trace(int m,int **indp);
 void nd_sba(LIST f,LIST v,int m,int homo,int retdp,struct order_spec *ord,LIST *rp);  void nd_sba(LIST f,LIST v,int m,int homo,int retdp,int f4,struct order_spec *ord,LIST *rp);
   
 /* ndl functions */  /* ndl functions */
 int ndl_weight(UINT *d);  int ndl_weight(UINT *d);
Line 326  void ndp_print(ND_pairs d);
Line 330  void ndp_print(ND_pairs d);
 /* setup, reconstruct */  /* setup, reconstruct */
 void nd_init_ord(struct order_spec *spec);  void nd_init_ord(struct order_spec *spec);
 ND_pairs nd_reconstruct(int trace,ND_pairs ndp);  ND_pairs nd_reconstruct(int trace,ND_pairs ndp);
   void nd_reconstruct_s(int trace,ND_pairs *ndp);
 int ndv_setup(int mod,int trace,NODE f,int dont_sort,int dont_removecont,int sba);  int ndv_setup(int mod,int trace,NODE f,int dont_sort,int dont_removecont,int sba);
 void nd_setup_parameters(int nvar,int max);  void nd_setup_parameters(int nvar,int max);
 BlockMask nd_create_blockmask(struct order_spec *ord);  BlockMask nd_create_blockmask(struct order_spec *ord);
Line 409  int ndl_ww_lex_compare(UINT *a1,UINT *a2);
Line 414  int ndl_ww_lex_compare(UINT *a1,UINT *a2);
   
 #if SIZEOF_LONG == 8  #if SIZEOF_LONG == 8
 int nd_to_vect64(int mod,UINT *s0,int n,ND d,mp_limb_t *r);  int nd_to_vect64(int mod,UINT *s0,int n,ND d,mp_limb_t *r);
 int ndv_reduce_vect64(int m,mp_limb_t *svect,mp_limb_t *cvect,int col,IndArray *imat,NM_ind_pair *rp0,int nred);  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);
 NDV vect64_to_ndv(mp_limb_t *vect,int spcol,int col,int *rhead,UINT *s0vect);  NDV vect64_to_ndv(mp_limb_t *vect,int spcol,int col,int *rhead,UINT *s0vect);
 void red_by_vect64(int m, mp_limb_t *p,unsigned int *c,mp_limb_t *r,unsigned int hc,int len);  void red_by_vect64(int m, mp_limb_t *p,unsigned int *c,mp_limb_t *r,unsigned int hc,int len);
 int nd_gauss_elim_mod64(mp_limb_t **mat,int *sugar,ND_pairs *spactive,int row,int col,int md,int *colstat);  int nd_gauss_elim_mod64(mp_limb_t **mat,int *sugar,ND_pairs *spactive,int row,int col,int md,int *colstat);

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  Added in v.1.12

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