source: git/kernel/ring.h @ f62996

spielwiese
Last change on this file since f62996 was f62996, checked in by Hans Schönemann <hannes@…>, 17 years ago
*hannes: rSamePolyRep git-svn-id: file:///usr/local/Singular/svn/trunk@10219 2c84dea3-7e68-4137-9b89-c4e89433aadc
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File size: 11.1 KB
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1#ifndef RING_H
2#define RING_H
3/****************************************
4*  Computer Algebra System SINGULAR     *
5****************************************/
6/*
7* ABSTRACT - the interpreter related ring operations
8*/
9/* $Id: ring.h,v 1.23 2007-07-19 11:54:50 Singular Exp $ */
10
11/* includes */
12#include "structs.h"
13#include "structs.h"  // we need ABS
14#include "polys-impl.h"
15
16#define SHORT_REAL_LENGTH 6 // use short reals for real <= 6 digits
17
18
19void   rChangeCurrRing(ring r);
20void   rSetHdl(idhdl h);
21ring   rInit(sleftv* pn, sleftv* rv, sleftv* ord);
22idhdl  rDefault(char *s);
23ring   rDefault(int ch, int N, char **n);
24#define rIsRingVar(A) r_IsRingVar(A,currRing)
25int    r_IsRingVar(const char *n, ring r);
26void   rWrite(ring r);
27void   rKill(idhdl h);
28void   rKill(ring r);
29ring   rCopy(ring r);
30ring rCopy0(ring r, BOOLEAN copy_qideal = TRUE, BOOLEAN copy_ordering = TRUE);
31void   rNameCheck(ring R);
32ring   rOpposite(ring r);
33ring   rEnvelope(ring r);
34
35// we must always have this test!
36inline bool rIsPluralRing(const ring r)
37{
38#ifdef HAVE_PLURAL
39  return (r != NULL) && (r->nc != NULL) && (r->nc->type != nc_error); 
40#else
41  return false;
42#endif
43}
44
45
46
47
48#ifdef PDEBUG
49#define rChangeSComps(c,s,l) rDBChangeSComps(c,s,l)
50#define rGetSComps(c,s,l) rDBGetSComps(c,s,l)
51void rDBChangeSComps(int* currComponents,
52                     long* currShiftedComponents,
53                     int length,
54                     ring r = currRing);
55void rDBGetSComps(int** currComponents,
56                  long** currShiftedComponents,
57                  int *length,
58                  ring r = currRing);
59#else
60#define rChangeSComps(c,s,l) rNChangeSComps(c,s)
61#define rGetSComps(c,s,l) rNGetSComps(c,s)
62#endif
63
64void rNChangeSComps(int* currComponents, long* currShiftedComponents, ring r = currRing);
65void rNGetSComps(int** currComponents, long** currShiftedComponents, ring r = currRing);
66
67idhdl  rFindHdl(ring r, idhdl n, idhdl w);
68idhdl rSimpleFindHdl(ring r, idhdl root, idhdl n);
69const char * rSimpleOrdStr(int ord);
70int rOrderName(char * ordername);
71char * rOrdStr(ring r);
72char * rVarStr(ring r);
73char * rCharStr(ring r);
74char * rString(ring r);
75int    rChar(ring r=currRing);
76#define rPar(r) (r->P)
77#define rVar(r) (r->N)
78char * rParStr(ring r);
79int    rIsExtension(ring r);
80int    rIsExtension();
81int    rSum(ring r1, ring r2, ring &sum);
82
83BOOLEAN rEqual(ring r1, ring r2, BOOLEAN qr = 1);
84BOOLEAN rSamePolyRep(ring r1, ring r2);
85void   rUnComplete(ring r);
86
87#define  rInternalChar(r) ((r)->ch)
88
89BOOLEAN rRing_is_Homog(ring r=currRing);
90BOOLEAN rRing_has_CompLastBlock(ring r=currRing);
91
92#ifdef HAVE_RING2TOM
93inline BOOLEAN rField_is_Ring_2toM(ring r=currRing)
94{ return (r->ringtype == 1); }
95#endif
96
97#ifdef HAVE_RINGMODN
98inline BOOLEAN rField_is_Ring_ModN(ring r=currRing)
99{ return (r->ringtype == 2); }
100#endif
101
102#ifdef HAVE_RINGPTOM
103inline BOOLEAN rField_is_Ring_PtoM(ring r=currRing)
104{ return (r->ringtype == 3); }
105#endif
106
107#ifdef HAVE_RINGZ
108inline BOOLEAN rField_is_Ring_Z(ring r=currRing)
109{ return (r->ringtype == 4); }
110#endif
111
112#ifdef HAVE_RINGS
113inline BOOLEAN rField_is_Ring(ring r=currRing)
114{ return (r->ringtype != 0); }
115
116inline BOOLEAN rField_is_Domain(ring r=currRing)
117{ return (r->ringtype == 4 || r->ringtype == 0); }
118
119inline BOOLEAN rField_has_Units(ring r=currRing)
120{ return ((r->ringtype == 1) || (r->ringtype == 2) || (r->ringtype == 3)); }
121#endif
122
123#ifdef HAVE_RINGS
124inline BOOLEAN rField_is_Zp(ring r=currRing)
125{ return (r->ringtype == 0) && (r->ch > 1) && (r->parameter==NULL); }
126
127inline BOOLEAN rField_is_Zp(ring r, int p)
128{ return (r->ringtype == 0) && (r->ch > 1 && r->ch == ABS(p) && r->parameter==NULL); }
129
130inline BOOLEAN rField_is_Q(ring r=currRing)
131{ return (r->ringtype == 0) && (r->ch == 0) && (r->parameter==NULL); }
132
133inline BOOLEAN rField_is_numeric(ring r=currRing) /* R, long R, long C */
134{ return (r->ringtype == 0) && (r->ch ==  -1); }
135
136inline BOOLEAN rField_is_R(ring r=currRing)
137{
138  if (rField_is_numeric(r) && (r->float_len <= (short)SHORT_REAL_LENGTH))
139    return (r->ringtype == 0) && (r->parameter==NULL);
140  return FALSE;
141}
142
143inline BOOLEAN rField_is_GF(ring r=currRing)
144{ return (r->ringtype == 0) && (r->ch > 1) && (r->parameter!=NULL); }
145
146inline BOOLEAN rField_is_GF(ring r, int q)
147{ return (r->ringtype == 0) && (r->ch == q); }
148
149inline BOOLEAN rField_is_Zp_a(ring r=currRing)
150{ return (r->ringtype == 0) && (r->ch < -1); }
151
152inline BOOLEAN rField_is_Zp_a(ring r, int p)
153{ return (r->ringtype == 0) && (r->ch < -1 ) && (-(r->ch) == ABS(p)); }
154
155inline BOOLEAN rField_is_Q_a(ring r=currRing)
156{ return (r->ringtype == 0) && (r->ch == 1); }
157
158inline BOOLEAN rField_is_long_R(ring r=currRing)
159{
160  if (rField_is_numeric(r) && (r->float_len >(short)SHORT_REAL_LENGTH))
161    return (r->ringtype == 0) && (r->parameter==NULL);
162  return FALSE;
163}
164
165inline BOOLEAN rField_is_long_C(ring r=currRing)
166{
167  if (rField_is_numeric(r))
168    return (r->ringtype == 0) && (r->parameter!=NULL);
169  return FALSE;
170}
171#else
172inline BOOLEAN rField_is_Zp(ring r=currRing)
173{ return (r->ch > 1) && (r->parameter==NULL); }
174
175inline BOOLEAN rField_is_Zp(ring r, int p)
176{ return (r->ch > 1 && r->ch == ABS(p) && r->parameter==NULL); }
177
178inline BOOLEAN rField_is_Q(ring r=currRing)
179{ return (r->ch == 0) && (r->parameter==NULL); }
180
181inline BOOLEAN rField_is_numeric(ring r=currRing) /* R, long R, long C */
182{ return (r->ch ==  -1); }
183
184inline BOOLEAN rField_is_R(ring r=currRing)
185{
186  if (rField_is_numeric(r) && (r->float_len <= (short)SHORT_REAL_LENGTH))
187    return (r->parameter==NULL);
188  return FALSE;
189}
190
191inline BOOLEAN rField_is_GF(ring r=currRing)
192{ return (r->ch > 1) && (r->parameter!=NULL); }
193
194inline BOOLEAN rField_is_GF(ring r, int q)
195{ return (r->ch == q); }
196
197inline BOOLEAN rField_is_Zp_a(ring r=currRing)
198{ return (r->ch < -1); }
199
200inline BOOLEAN rField_is_Zp_a(ring r, int p)
201{ return (r->ch < -1 ) && (-(r->ch) == ABS(p)); }
202
203inline BOOLEAN rField_is_Q_a(ring r=currRing)
204{ return (r->ch == 1); }
205
206inline BOOLEAN rField_is_long_R(ring r=currRing)
207{
208  if (rField_is_numeric(r) && (r->float_len >(short)SHORT_REAL_LENGTH))
209    return (r->parameter==NULL);
210  return FALSE;
211}
212
213inline BOOLEAN rField_is_long_C(ring r=currRing)
214{
215  if (rField_is_numeric(r))
216    return (r->parameter!=NULL);
217  return FALSE;
218}
219#endif
220
221inline BOOLEAN rField_has_simple_inverse(ring r=currRing)
222/* { return (r->ch>1) || (r->ch== -1); } *//* Z/p, GF(p,n), R, long_R, long_C*/
223#ifdef HAVE_RINGS
224{ return (r->ringtype > 0) || (r->ch>1) || ((r->ch== -1) && (r->float_len < 10)); } /* Z/2^n, Z/p, GF(p,n), R, long_R, long_C*/
225#else
226{ return (r->ch>1) || ((r->ch== -1) && (r->float_len < 10)); } /* Z/p, GF(p,n), R, long_R, long_C*/
227#endif
228
229inline BOOLEAN rField_has_simple_Alloc(ring r=currRing)
230{ return (rField_is_Zp(r)
231       || rField_is_GF(r)
232#ifdef HAVE_RING2TOM
233       || rField_is_Ring_2toM(r)
234#endif
235#ifdef HAVE_RINGMODN
236       || rField_is_Ring_ModN(r)
237#endif
238       || rField_is_R(r)); }
239
240/* Z/p, GF(p,n), R: nCopy, nNew, nDelete are dummies*/
241inline BOOLEAN rField_is_Extension(ring r=currRing)
242{ return (rField_is_Q_a(r)) || (rField_is_Zp_a(r)); } /* Z/p(a) and Q(a)*/
243
244n_coeffType rFieldType(ring r);
245
246// this needs to be called whenever a new ring is created: new fields
247// in ring are created (like VarOffset), unless they already exist
248// with force == 1, new fields are _always_ created (overwritten),
249// even if they exist
250BOOLEAN rComplete(ring r, int force = 0);
251// use this to free fields created by rComplete
252
253BOOLEAN nc_rComplete(ring src, ring dest);
254
255void rUnComplete(ring r);
256inline int rBlocks(ring r)
257{
258  int i=0;
259  while (r->order[i]!=0) i++;
260  return i+1;
261}
262
263// misc things
264inline char* rRingVar(short i)
265{
266  return currRing->names[i];
267}
268inline char* rRingVar(short i, ring r)
269{
270  return r->names[i];
271}
272inline BOOLEAN rShortOut(ring r)
273{
274  return (r->ShortOut);
275}
276
277// order stuff
278typedef enum rRingOrder_t
279{
280  ringorder_no = 0,
281  ringorder_a,
282  ringorder_a64, // for int64 weights
283  ringorder_c,
284  ringorder_C,
285  ringorder_M,
286  ringorder_S,
287  ringorder_s,
288  ringorder_lp,
289  ringorder_dp,
290  ringorder_rp,
291  ringorder_Dp,
292  ringorder_wp,
293  ringorder_Wp,
294  ringorder_ls,
295  ringorder_ds,
296  ringorder_Ds,
297  ringorder_ws,
298  ringorder_Ws,
299  ringorder_L,
300  // the following are only used internally
301  ringorder_aa, // for idElimination, like a, except pFDeg, pWeigths ignore it
302  ringorder_rs,
303  ringorder_unspec
304} rRingOrder_t;
305
306typedef enum rOrderType_t
307{
308  rOrderType_General = 0, // non-simple ordering as specified by currRing
309  rOrderType_CompExp,     // simple ordering, component has priority
310  rOrderType_ExpComp,     // simple ordering, exponent vector has priority
311                          // component not compatible with exp-vector order
312  rOrderType_Exp,         // simple ordering, exponent vector has priority
313                          // component is compatible with exp-vector order
314  rOrderType_Syz,         // syzygy ordering
315  rOrderType_Schreyer,    // Schreyer ordering
316  rOrderType_Syz2dpc,     // syzcomp2dpc
317  rOrderType_ExpNoComp    // simple ordering, differences in component are
318                          // not considered
319} rOrderType_t;
320
321inline BOOLEAN rIsSyzIndexRing(ring r)
322{ return r->order[0] == ringorder_s;}
323
324inline int rGetCurrSyzLimit(ring r = currRing)
325{ return (r->order[0] == ringorder_s ?
326          r->typ[0].data.syz.limit : 0);}
327
328// Ring Manipulations
329ring   rCurrRingAssure_SyzComp();
330void   rSetSyzComp(int k);
331ring   rCurrRingAssure_dp_S();
332ring   rCurrRingAssure_dp_C();
333ring   rCurrRingAssure_C_dp();
334// makes sure that c/C ordering is last ordering
335ring   rCurrRingAssure_CompLastBlock();
336// makes sure that c/C ordering is last ordering and SyzIndex is first
337ring   rCurrRingAssure_SyzComp_CompLastBlock();
338
339// return the max-comonent wchich has syzIndex i
340// Assume: i<= syzIndex_limit
341int rGetMaxSyzComp(int i);
342
343BOOLEAN rHasSimpleOrder(ring r);
344// returns TRUE, if simple lp or ls ordering
345BOOLEAN rHasSimpleLexOrder(ring r);
346// return TRUE if p->exp[r->pOrdIndex] holds total degree of p */
347BOOLEAN rOrd_is_Totaldegree_Ordering(ring r =currRing);
348// return TRUE if p_SetComp requires p_Setm
349BOOLEAN rOrd_SetCompRequiresSetm(ring r);
350rOrderType_t    rGetOrderType(ring r);
351/* returns TRUE if var(i) belongs to p-block */
352BOOLEAN rIsPolyVar(int i, ring r = currRing);
353
354inline BOOLEAN rOrd_is_Comp_dp(ring r)
355{
356  return ((r->order[0] == ringorder_c || r->order[0] == ringorder_C) &&
357          r->order[1] == ringorder_dp &&
358          r->order[2] == 0);
359}
360
361#ifdef RDEBUG
362#define rTest(r)    rDBTest(r, __FILE__, __LINE__)
363extern BOOLEAN rDBTest(ring r, char* fn, int l);
364#else
365#define rTest(r)
366#endif
367
368ring rModifyRing(ring r, BOOLEAN omit_degree,
369                         BOOLEAN omit_comp,
370                         unsigned long exp_limit);
371// construct Wp, C ring
372ring rModifyRing_Wp(ring r, int* weights);
373void rModify_a_to_A(ring r);
374
375void rKillModifiedRing(ring r);
376// also frees weights
377void rKillModified_Wp_Ring(ring r);
378
379ring rModifyRing_Simple(ring r, BOOLEAN omit_degree, BOOLEAN omit_comp, unsigned long exp_limit, BOOLEAN &simple);
380void rKillModifiedRing_Simple(ring r);
381
382void rDebugPrint(ring r);
383void pDebugPrint(poly p);
384
385int64 * rGetWeightVec(ring r);
386void rSetWeightVec(ring r, int64 *wv);
387
388lists rDecompose(const ring r);
389ring rCompose(const lists  L);
390/////////////////////////////
391// Auxillary functions
392//
393
394BOOLEAN rCheckIV(intvec *iv);
395int rTypeOfMatrixOrder(intvec * order);
396void rDelete(ring r);
397
398#endif
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