source: git/kernel/shiftgb.cc @ d90109

spielwiese
Last change on this file since d90109 was d90109, checked in by Hans Schoenemann <hannes@…>, 12 years ago
fix: memeory leak in pmLastVblock() (kernel/shiftgb.cc)
  • Property mode set to 100644
File size: 14.1 KB
Line 
1/****************************************
2*  Computer Algebra System SINGULAR     *
3****************************************/
4/* $Id$ */
5/*
6* ABSTRACT: kernel: utils for shift GB and free GB
7*/
8
9#include "config.h"
10#include <kernel/mod2.h>
11
12#ifdef HAVE_SHIFTBBA
13#include <kernel/febase.h>
14#include <polys/monomials/ring.h>
15#include <kernel/polys.h>
16#include <coeffs/numbers.h>
17#include <kernel/ideals.h>
18#include <polys/matpol.h>
19#include <polys/kbuckets.h>
20#include <kernel/kstd1.h>
21#include <polys/sbuckets.h>
22#include <polys/operations/p_Mult_q.h>
23#include <kernel/kutil.h>
24#include <kernel/structs.h>
25#include <omalloc/omalloc.h>
26#include <kernel/khstd.h>
27#include <polys/kbuckets.h>
28#include <polys/weight.h>
29#include <misc/intvec.h>
30#include <kernel/structs.h>
31#include <kernel/kInline.h>
32#include <kernel/stairc.h>
33#include <polys/weight.h>
34#include <misc/intvec.h>
35#include <kernel/timer.h>
36#include <kernel/shiftgb.h>
37#include <polys/nc/sca.h>
38
39
40#define freeT(A,v) omFreeSize((ADDRESS)A,(v+1)*sizeof(int))
41
42
43/* TODO: write p* stuff as instances of p_* for all the functions */
44/* p_* functions are new, p* are old */
45
46poly p_LPshiftT(poly p, int sh, int uptodeg, int lV, kStrategy strat, const ring r)
47{
48  /* assume shift takes place, shifts the poly p by sh */
49  /* p is like TObject: lm in currRing = r, tail in tailRing  */
50
51  if (p==NULL) return(p);
52
53  assume(p_LmCheckIsFromRing(p,r));
54  assume(p_CheckIsFromRing(pNext(p),strat->tailRing));
55
56  /* assume sh and uptodeg agree  TODO check */
57
58  if (sh == 0) return(p); /* the zero shift */
59
60  poly q   = NULL;
61  poly s   = p_mLPshift(p, sh, uptodeg, lV, r); // lm in currRing
62  poly pp = pNext(p);
63
64  while (pp != NULL)
65  {
66    q = p_Add_q(q, p_mLPshift(pp,sh,uptodeg,lV,strat->tailRing),strat->tailRing);
67    pIter(pp);
68  }
69  pNext(s) = q;
70  /* int version: returns TRUE if it was successful */
71  return(s);
72}
73
74
75poly p_LPshift(poly p, int sh, int uptodeg, int lV, const ring r)
76{
77  /* assume shift takes place */
78  /* shifts the poly p from the ring r by sh */
79
80  /* assume sh and uptodeg agree TODO check */
81
82  if (p==NULL) return(p);
83  if (sh == 0) return(p); /* the zero shift */
84
85  poly q  = NULL;
86  poly pp = p; // do not take copies
87  while (pp!=NULL)
88  {
89    q = p_Add_q(q, p_mLPshift(pp,sh,uptodeg,lV,r),r);
90    pIter(pp);
91  }
92  return(q);
93}
94
95poly p_mLPshift(poly p, int sh, int uptodeg, int lV, const ring r)
96{
97  /* p is a monomial from the ring r */
98
99  if (sh == 0) return(p); /* the zero shift */
100
101  if (sh < 0 )
102  {
103#ifdef PDEBUG
104    PrintS("pmLPshift: negative shift requested\n");
105#endif
106    return(NULL); /* violation, 2check */
107  }
108
109  int L = p_mLastVblock(p,lV,r);
110  if (L+sh-1 > uptodeg)
111  {
112#ifdef PDEBUG
113    PrintS("p_mLPshift: too big shift requested\n");
114#endif
115    return(NULL); /* violation, 2check */
116  }
117  int *e=(int *)omAlloc0((r->N+1)*sizeof(int));
118  int *s=(int *)omAlloc0((r->N+1)*sizeof(int));
119  p_GetExpV(p,e,r);
120
121  int j;
122  //  for (j=1; j<=r->N; j++)
123  // L*lV gives the last position of the last block
124  for (j=1; j<= L*lV ; j++)
125  {
126    if (e[j]==1)
127    {
128      s[j + (sh*lV)] = e[j]; /* actually 1 */
129#ifdef PDEBUG
130      omCheckAddr(s);
131#endif
132    }
133#ifdef PDEBUG
134    else
135    {
136      if (e[j]!=0)
137      {
138         //         Print("p_mLPshift: ex[%d]=%d\n",j,e[j]);
139      }
140    }
141#endif
142  }
143  poly m = p_One(r);
144  p_SetExpV(m,s,r);
145  freeT(e, r->N);
146  freeT(s, r->N);
147  /*  pSetm(m); */ /* done in the pSetExpV */
148  /* think on the component and coefficient */
149  //  number c = pGetCoeff(p);
150  //  p_SetCoeff0(m,p_GetCoeff(p,r),r);
151  p_SetComp(m,p_GetComp(p,r),r); // component is preserved
152  p_SetCoeff0(m,p_GetCoeff(p,r),r);  // coeff is preserved
153  return(m);
154}
155
156poly pLPshift(poly p, int sh, int uptodeg, int lV)
157{
158  /* assume shift takes place */
159  /* shifts the poly p by sh */
160  /* deletes p */
161
162  /* assume sh and uptodeg agree */
163
164  if (sh == 0) return(p); /* the zero shift */
165
166  poly q  = NULL;
167  poly pp = p; // pCopy(p);
168  while (pp!=NULL)
169  {
170    q = p_Add_q(q, pmLPshift(pp,sh,uptodeg,lV),currRing);
171    pIter(pp);
172  }
173  /* delete pp? */
174  /* int version: returns TRUE if it was successful */
175  return(q);
176}
177
178poly pmLPshift(poly p, int sh, int uptodeg, int lV)
179{
180  /* TODO: use a shortcut with p_ version */
181  /* pm is a monomial */
182
183  if (sh == 0) return(p); /* the zero shift */
184
185  if (sh < 0 )
186  {
187#ifdef PDEBUG
188    PrintS("pmLPshift: negative shift requested\n");
189#endif
190    return(NULL); /* violation, 2check */
191  }
192
193  int L = pmLastVblock(p,lV);
194  if (L+sh-1 > uptodeg)
195  {
196#ifdef PDEBUG
197    PrintS("pmLPshift: too big shift requested\n");
198#endif
199    return(NULL); /* violation, 2check */
200  }
201  int *e=(int *)omAlloc0((currRing->N+1)*sizeof(int));
202  int *s=(int *)omAlloc0((currRing->N+1)*sizeof(int));
203  pGetExpV(p,e);
204  number c = pGetCoeff(p);
205  int j;
206  for (j=1; j<=currRing->N; j++)
207  {
208    if (e[j]==1)
209    {
210      s[j + (sh*lV)] = e[j]; /* actually 1 */
211    }
212  }
213  poly m = pOne();
214  pSetExpV(m,s);
215  /*  pSetm(m); */ /* done in the pSetExpV */
216  /* think on the component */
217  pSetCoeff0(m,c);
218  freeT(e, currRing->N);
219  freeT(s, currRing->N);
220  return(m);
221}
222
223int pLastVblock(poly p, int lV)
224{
225  /* returns the number of maximal block */
226  /* appearing among the monomials of p */
227  /* the 0th block is the 1st one */
228  poly q = p; //p_Copy(p,currRing); /* need it ? */
229  int ans = 0;
230  int ansnew = 0;
231  while (q!=NULL)
232  {
233    ansnew = pmLastVblock(q,lV);
234    ans    = si_max(ans,ansnew);
235    pIter(q);
236  }
237  /* do not need to delete q */
238  return(ans);
239}
240
241int pmLastVblock(poly p, int lV)
242{
243  /* for a monomial p, returns the number of the last block */
244  /* where a nonzero exponent is sitting */
245  if (pIsConstantPoly(p))
246  {
247    return(int(0));
248  }
249  int *e=(int *)omAlloc0((currRing->N+1)*sizeof(int));
250  pGetExpV(p,e);
251  int j,b;
252  j = currRing->N;
253  while ( (!e[j]) && (j>=1) ) j--;
254  freeT(e, currRing->N);
255  if (j==0)
256  {
257#ifdef PDEBUG
258    PrintS("pmLastVblock: unexpected zero exponent vector\n");
259#endif
260    return(j);
261  }
262  b = (int)(j/lV) + 1; /* the number of the block, >=1 */
263  return (b);
264}
265
266int p_LastVblockT(poly p, int lV, kStrategy strat, const ring r)
267{
268  /* returns the number of maximal block */
269  /* appearing among the monomials of p */
270  /* the 0th block is the 1st one */
271
272  /* p is like TObject: lm in currRing = r, tail in tailRing  */
273  assume(p_LmCheckIsFromRing(p,r));
274  assume(p_CheckIsFromRing(pNext(p),strat->tailRing));
275
276  int ans = p_mLastVblock(p, lV, r); // Block of LM
277  poly q = pNext(p);
278  int ansnew = 0;
279  while (q != NULL)
280  {
281    ansnew = p_mLastVblock(q, lV, strat->tailRing);
282    ans       = si_max(ans,ansnew);
283    pIter(q);
284  }
285  /* do not need to delete q */
286  return(ans);
287}
288
289int p_LastVblock(poly p, int lV, const ring r)
290{
291  /* returns the number of maximal block */
292  /* appearing among the monomials of p */
293  /* the 0th block is the 1st one */
294  poly q = p; //p_Copy(p,currRing); /* need it ? */
295  int ans = 0;
296  int ansnew = 0;
297  while (q!=NULL)
298  {
299    ansnew = p_mLastVblock(q, lV, r);
300    ans    = si_max(ans,ansnew);
301    pIter(q);
302  }
303  /* do not need to delete q */
304  return(ans);
305}
306
307int p_mLastVblock(poly p, int lV, const ring r)
308{
309  /* for a monomial p, returns the number of the last block */
310  /* where a nonzero exponent is sitting */
311  if (p_LmIsConstant(p,r))
312  {
313    return(0);
314  }
315  int *e=(int *)omAlloc0((r->N+1)*sizeof(int));
316  p_GetExpV(p,e,r);
317  int j,b;
318  j = r->N;
319  while ( (!e[j]) && (j>=1) ) j--;
320  if (j==0)
321  {
322#ifdef PDEBUG
323    PrintS("pmLastVblock: unexpected zero exponent vector\n");
324#endif
325    return(j);
326  }
327  b = (int)((j+lV-1)/lV); /* the number of the block, >=1 */
328  freeT(e,r->N);
329  return (b);
330}
331
332int pFirstVblock(poly p, int lV)
333{
334  /* returns the number of maximal block */
335  /* appearing among the monomials of p */
336  /* the 0th block is the 1st one */
337  poly q = p; //p_Copy(p,currRing); /* need it ? */
338  int ans = 0;
339  int ansnew = 0;
340  while (q!=NULL)
341  {
342    ansnew = pmFirstVblock(q,lV);
343    ans    = si_min(ans,ansnew);
344    pIter(q);
345  }
346  /* do not need to delete q */
347  return(ans);
348}
349
350int pmFirstVblock(poly p, int lV)
351{
352  if (pIsConstantPoly(p))
353  {
354    return(int(0));
355  }
356  /* for a monomial p, returns the number of the first block */
357  /* where a nonzero exponent is sitting */
358  int *e=(int *)omAlloc0((currRing->N+1)*sizeof(int));
359  pGetExpV(p,e);
360  int j,b;
361  j = 1;
362  while ( (!e[j]) && (j<=currRing->N-1) ) j++;
363  if (j==currRing->N + 1)
364  {
365#ifdef PDEBUG
366    PrintS("pmFirstVblock: unexpected zero exponent vector\n");
367#endif
368    return(j);
369  }
370  b = (int)(j/lV)+1; /* the number of the block, 1<= N <= currRing->N  */
371  return (b);
372}
373
374  /* there should be two routines: */
375  /* 1. test place-squarefreeness: in homog this suffices: isInV */
376  /* 2. test the presence of a hole -> in the tail??? */
377
378int isInV(poly p, int lV)
379{
380  /* investigate only the leading monomial of p in currRing */
381  if ( pIsConstant(p) ) return(1);
382  if (lV <= 0) return(0);
383  /* returns 1 iff p is in V */
384  /* that is in each block up to a certain one there is only one nonzero exponent */
385  /* lV = the length of V = the number of orig vars */
386  int *e = (int *)omAlloc0((currRing->N+1)*sizeof(int));
387  int  b = (int)((currRing->N +lV-1)/lV); /* the number of blocks */
388  //int b  = (int)(currRing->N)/lV;
389  int *B = (int *)omAlloc0((b+1)*sizeof(int)); /* the num of elements in a block */
390  pGetExpV(p,e);
391  int i,j;
392  for (j=1; j<=b; j++)
393  {
394    /* we go through all the vars */
395    /* by blocks in lV vars */
396    for (i=(j-1)*lV + 1; i<= j*lV; i++)
397    {
398      if (e[i]) B[j] = B[j]+1;
399    }
400  }
401  //  j = b;
402  //  while ( (!B[j]) && (j>=1)) j--;
403  for (j=b; j>=1; j--)
404  {
405    if (B[j]!=0) break;
406  }
407  /* do not need e anymore */
408  freeT(e, currRing->N);
409
410  if (j==0) goto ret_true;
411//   {
412//     /* it is a zero exp vector, which is in V */
413//     freeT(B, b);
414//     return(1);
415//   }
416  /* now B[j] != 0 and we test place-squarefreeness */
417  for (; j>=1; j--)
418  {
419    if (B[j]!=1)
420    {
421      freeT(B, b);
422      return(0);
423    }
424  }
425 ret_true:
426  freeT(B, b);
427  return(1);
428}
429
430int poly_isInV(poly p, int lV)
431{
432  /* tests whether the whole polynomial p in in V */
433  poly q = p;
434  while (q!=NULL)
435  {
436    if ( !isInV(q,lV) )
437    {
438      return(0);
439    }
440    q = pNext(q);
441  }
442  return(1);
443}
444
445int ideal_isInV(ideal I, int lV)
446{
447  /* tests whether each polynomial of an ideal I lies in in V */
448  int i;
449  int s    = IDELEMS(I)-1;
450  for(i = 0; i <= s; i++)
451  {
452    if ( !poly_isInV(I->m[i],lV) )
453    {
454      return(0);
455    }
456  }
457  return(1);
458}
459
460
461int itoInsert(poly p, int uptodeg, int lV, const ring r)
462{
463  /* for poly in lmCR/tailTR presentation */
464  /* the below situation (commented out) might happen! */
465//   if (r == currRing)
466//   {
467//     "Current ring is not expected in toInsert";
468//     return(0);
469//   }
470  /* compute the number of insertions */
471  int i = p_mLastVblock(p, lV, currRing);
472  if (pNext(p) != NULL)
473  {
474    i = si_max(i, p_LastVblock(pNext(p), lV, r) );
475  }
476  //  i = uptodeg  - i +1;
477  i = uptodeg  - i;
478  //  p_wrp(p,currRing,r); Print("----i:%d",i); PrintLn();
479  return(i);
480}
481
482poly p_ShrinkT(poly p, int lV, kStrategy strat, const ring r)
483//poly p_Shrink(poly p, int uptodeg, int lV, kStrategy strat, const ring r)
484{
485  /* p is like TObject: lm in currRing = r, tail in tailRing  */
486  /* proc shrinks the poly p in ring r */
487  /* lV = the length of V = the number of orig vars */
488  /* check assumes/exceptions */
489  /* r->N is a multiple of lV */
490
491  if (p==NULL) return(p);
492
493  assume(p_LmCheckIsFromRing(p,r));
494  assume(p_CheckIsFromRing(pNext(p),strat->tailRing));
495
496  poly q   = NULL;
497  poly s   = p_mShrink(p, lV, r); // lm in currRing
498  poly pp = pNext(p);
499
500  while (pp != NULL)
501  {
502    //    q = p_Add_q(q, p_mShrink(pp,uptodeg,lV,strat->tailRing),strat->tailRing);
503    q = p_Add_q(q, p_mShrink(pp,lV,strat->tailRing),strat->tailRing);
504    pIter(pp);
505  }
506  pNext(s) = q;
507  return(s);
508}
509
510poly p_Shrink(poly p, int lV, const ring r)
511{
512  /* proc shrinks the poly p in ring r */
513  /* lV = the length of V = the number of orig vars */
514  /* check assumes/exceptions */
515  /* r->N is a multiple of lV */
516
517  if (p==NULL) return(p);
518  assume(p_CheckIsFromRing(p,r));
519  poly q = NULL;
520  poly pp = p;
521
522  while (pp != NULL)
523  {
524    q = p_Add_q(q, p_mShrink(pp,lV,r),r);
525    pIter(pp);
526  }
527  return(q);
528}
529
530poly p_mShrink(poly p, int lV, const ring r)
531{
532  /* shrinks the monomial p in ring r */
533  /* lV = the length of V = the number of orig vars */
534
535  /* check assumes/exceptions */
536  /* r->N is a multiple of lV */
537
538  int *e = (int *)omAlloc0((r->N+1)*sizeof(int));
539  int  b = (int)((r->N +lV-1)/lV); /* the number of blocks */
540  //  int *B = (int *)omAlloc0((b+1)*sizeof(int)); /* the num of elements in a block */
541  int *S = (int *)omAlloc0((r->N+1)*sizeof(int)); /* the shrinked exponent */
542  p_GetExpV(p,e,r);
543  int i,j; int cnt = 1; //counter for blocks in S
544  for (j=1; j<=b; j++)
545  {
546    /* we go through all the vars */
547    /* by blocks in lV vars */
548    for (i=(j-1)*lV + 1; i<= j*lV; i++)
549    {
550      if (e[i]==1)
551      {
552         //      B[j] = B[j]+1; // for control in V?
553         S[(cnt-1)*lV + (i - (j-1)*lV)] = e[i];
554         /* assuming we are in V, can interrupt here */
555         cnt++;
556         //  break; //results in incomplete shrink!
557         i = j*lV; // manual break under assumption p is in V
558      }
559    }
560  }
561#ifdef PDEBUG
562  //  Print("p_mShrink: cnt = [%d], b = %d\n",cnt,b);
563#endif
564  // cnt -1 <= b  must hold!
565  //  freeT(B, b);
566  poly s = p_One(r);
567  p_SetExpV(s,S,r);
568  freeT(e, r->N);
569  freeT(S, r->N);
570  /*  p_Setm(s,r); // done by p_SetExpV */
571  p_SetComp(s,p_GetComp(p,r),r); // component is preserved
572  p_SetCoeff(s,p_GetCoeff(p,r),r);  // coeff is preserved
573#ifdef PDEBUG
574  //  Print("p_mShrink: from "); p_wrp(p,r); Print(" to "); p_wrp(s,r); PrintLn();
575#endif
576  return(s);
577}
578
579/* shiftgb stuff */
580
581
582/*2
583 *if the leading term of p
584 *divides the leading term of some T[i] it will be canceled
585 */
586// static inline void clearSShift (poly p, unsigned long p_sev,int l, int* at, int* k,
587//                            kStrategy strat)
588// {
589//   assume(p_sev == pGetShortExpVector(p));
590//   if (!pLmShortDivisibleBy(p,p_sev, strat->T[*at].p, ~ strat->sevT[*at])) return;
591//   //  if (l>=strat->lenS[*at]) return;
592//   if (TEST_OPT_PROT)
593//     PrintS("!");
594//   mflush();
595//   //pDelete(&strat->S[*at]);
596//   deleteInS((*at),strat);
597//   (*at)--;
598//   (*k)--;
599// //  assume(lenS_correct(strat));
600// }
601
602/* remarks: cleanT : just deletion
603enlargeT: just reallocation */
604
605#endif
Note: See TracBrowser for help on using the repository browser.