source: git/libpolys/coeffs/gnumpc.cc @ 0afa07

spielwiese
Last change on this file since 0afa07 was 0afa07, checked in by Frank Seelisch <seelisch@…>, 13 years ago
removed cfPar, cfParDeg, n_Par, n_ParDeg, ndPar, ndParDeg from coeffs
  • Property mode set to 100644
File size: 11.4 KB
Line 
1/****************************************
2*  Computer Algebra System SINGULAR     *
3****************************************/
4/* $Id$ */
5/*
6* ABSTRACT: computations with GMP complex floating-point numbers
7*
8* ngc == number gnu complex
9*/
10
11#include "config.h"
12
13#include <coeffs/coeffs.h>
14#include <coeffs/numbers.h>
15#include <coeffs/longrat.h>
16#include <coeffs/modulop.h>
17#include <coeffs/gnumpc.h>
18#include <coeffs/gnumpfl.h>
19#include <coeffs/mpr_complex.h>
20#include <reporter/reporter.h>
21#include <omalloc/omalloc.h>
22
23
24#include <coeffs/shortfl.h>
25
26/// Our Type!
27static const n_coeffType ID = n_long_C;
28
29
30#ifdef LDEBUG
31// not yet implemented
32BOOLEAN ngcDBTest(number, const char *, const int, const coeffs r)
33{
34  assume( getCoeffType(r) == ID );
35
36  return TRUE;
37}
38#endif
39
40/*
41number   ngcPar(int i, const coeffs r)
42{
43  assume( getCoeffType(r) == ID );
44  assume(i==1);
45
46  gmp_complex* n= new gmp_complex( (long)0, (long)1 );
47  return (number)n;
48}
49*/
50
51/*2
52* n := i
53*/
54number ngcInit (int i, const coeffs r)
55{
56  assume( getCoeffType(r) == ID );
57
58  gmp_complex* n= new gmp_complex( (long)i, (long)0 );
59
60  return (number)n;
61}
62
63/*2
64* convert number to int
65*/
66int ngcInt(number &i, const coeffs r)
67{
68  assume( getCoeffType(r) == ID );
69
70  return (int)((gmp_complex*)i)->real();
71}
72
73int ngcSize(number n, const coeffs R)
74{
75  int r = (int)((gmp_complex*)n)->real();
76  if (r < 0) r = -r;
77  int i = (int)((gmp_complex*)n)->imag();
78  if (i < 0) i = -i;
79  int oneNorm = r + i;
80  /* basically return the 1-norm of n;
81     only if this happens to be zero although n != 0,
82     return 1;
83     (this code ensures that zero has the size zero) */
84  if ((oneNorm == 0.0) & (ngcIsZero(n,R) == FALSE)) oneNorm = 1;
85  return oneNorm;
86}
87
88/*2
89* delete a
90*/
91void ngcDelete (number * a, const coeffs r)
92{
93  assume( getCoeffType(r) == ID );
94
95  if ( *a != NULL )
96  {
97    delete *(gmp_complex**)a;
98    *a=NULL;
99  }
100}
101
102/*2
103 * copy a to b
104*/
105number ngcCopy(number a, const coeffs r)
106{
107  assume( getCoeffType(r) == ID );
108
109  gmp_complex* b= new gmp_complex( *(gmp_complex*)a );
110  return (number)b;
111}
112
113
114/*2
115* za:= - za
116*/
117number ngcNeg (number a, const coeffs R)
118{
119  assume( getCoeffType(R) == ID );
120
121  gmp_complex* r=(gmp_complex*)a;
122  (*r).neg();
123  return (number)a;
124}
125
126/*
127* 1/a
128*/
129number ngcInvers(number a, const coeffs R)
130{
131  assume( getCoeffType(R) == ID );
132
133  gmp_complex* r = NULL;
134  if (((gmp_complex*)a)->isZero())
135  {
136    WerrorS(nDivBy0);
137  }
138  else
139  {
140    r = new gmp_complex( (gmp_complex)1 / (*(gmp_complex*)a) );
141  }
142  return (number)r;
143}
144
145/*2
146* u:= a + b
147*/
148number ngcAdd (number a, number b, const coeffs R)
149{
150  assume( getCoeffType(R) == ID );
151
152  gmp_complex* r= new gmp_complex( (*(gmp_complex*)a) + (*(gmp_complex*)b) );
153  return (number)r;
154}
155
156/*2
157* u:= a - b
158*/
159number ngcSub (number a, number b, const coeffs R)
160{
161  assume( getCoeffType(R) == ID );
162
163  gmp_complex* r= new gmp_complex( (*(gmp_complex*)a) - (*(gmp_complex*)b) );
164  return (number)r;
165}
166
167/*2
168* u := a * b
169*/
170number ngcMult (number a, number b, const coeffs R)
171{
172  assume( getCoeffType(R) == ID );
173
174  gmp_complex* r= new gmp_complex( (*(gmp_complex*)a) * (*(gmp_complex*)b) );
175  return (number)r;
176}
177
178/*2
179* u := a / b
180*/
181number ngcDiv (number a, number b, const coeffs r)
182{
183  assume( getCoeffType(r) == ID );
184
185  if (((gmp_complex*)b)->isZero())
186  {
187    // a/0 = error
188    WerrorS(nDivBy0);
189    return NULL;
190  }
191  gmp_complex* res = new gmp_complex( (*(gmp_complex*)a) / (*(gmp_complex*)b) );
192  return (number)res;
193}
194
195/*2
196* u:= x ^ exp
197*/
198void ngcPower ( number x, int exp, number * u, const coeffs r)
199{
200  assume( getCoeffType(r) == ID );
201
202  if ( exp == 0 )
203  {
204    gmp_complex* n = new gmp_complex(1);
205    *u=(number)n;
206    return;
207  }
208  else if ( exp == 1 )
209  {
210    n_New(u, r);
211    gmp_complex* n = new gmp_complex();
212    *n= *(gmp_complex*)x;
213    *u=(number)n;
214    return;
215  }
216  else if (exp == 2)
217  {
218    n_New(u, r);
219    gmp_complex* n = new gmp_complex();
220    *n= *(gmp_complex*)x;
221    *u=(number)n;
222    *(gmp_complex*)(*u) *= *(gmp_complex*)n;
223    return;
224  }
225  if ( (exp & 1) == 1 )
226  {
227    ngcPower(x,exp-1,u, r);
228    gmp_complex *n = new gmp_complex();
229    *n=*(gmp_complex*)x;
230    *(gmp_complex*)(*u) *= *(gmp_complex*)n;
231    delete n;
232  }
233  else
234  {
235    number w;
236    n_New(&w, r);
237    ngcPower(x,exp/2,&w, r);
238    ngcPower(w,2,u, r);
239    n_Delete(&w, r);
240  }
241}
242
243BOOLEAN ngcIsZero (number a, const coeffs r)
244{
245  assume( getCoeffType(r) == ID );
246
247  return ( ((gmp_complex*)a)->real().isZero() && ((gmp_complex*)a)->imag().isZero());
248}
249
250number ngcRePart(number a, const coeffs r)
251{
252  assume( getCoeffType(r) == ID );
253
254  gmp_complex* n = new gmp_complex(((gmp_complex*)a)->real());
255  return (number)n;
256}
257
258number ngcImPart(number a, const coeffs r)
259{
260  assume( getCoeffType(r) == ID );
261
262  gmp_complex* n = new gmp_complex(((gmp_complex*)a)->imag());
263  return (number)n;
264}
265
266/*2
267* za >= 0 ?
268*/
269BOOLEAN ngcGreaterZero (number a, const coeffs r)
270{
271  assume( getCoeffType(r) == ID );
272
273  if ( ! ((gmp_complex*)a)->imag().isZero() )
274    return ( abs( *(gmp_complex*)a).sign() >= 0 );
275  else
276    return ( ((gmp_complex*)a)->real().sign() >= 0 );
277}
278
279/*2
280* a > b ?
281*/
282BOOLEAN ngcGreater (number a, number b, const coeffs r)
283{
284  assume( getCoeffType(r) == ID );
285
286  gmp_complex *aa=(gmp_complex*)a;
287  gmp_complex *bb=(gmp_complex*)b;
288  return (*aa) > (*bb);
289}
290
291/*2
292* a = b ?
293*/
294BOOLEAN ngcEqual (number a, number b, const coeffs r)
295{
296  assume( getCoeffType(r) == ID );
297
298  gmp_complex *aa=(gmp_complex*)a;
299  gmp_complex *bb=(gmp_complex*)b;
300  return (*aa) == (*bb);
301}
302
303/*2
304* a == 1 ?
305*/
306BOOLEAN ngcIsOne (number a, const coeffs r)
307{
308  assume( getCoeffType(r) == ID );
309
310  return (((gmp_complex*)a)->real().isOne() && ((gmp_complex*)a)->imag().isZero());
311  //return (((gmp_complex*)a)->real().isOne());
312}
313
314/*2
315* a == -1 ?
316*/
317BOOLEAN ngcIsMOne (number a, const coeffs r)
318{
319  assume( getCoeffType(r) == ID );
320
321  return (((gmp_complex*)a)->real().isMOne() && ((gmp_complex*)a)->imag().isZero());
322  //return (((gmp_complex*)a)->real().isMOne());
323}
324
325/*2
326* extracts the number a from s, returns the rest
327*/
328const char * ngcRead (const char * s, number * a, const coeffs r)
329{
330  assume( getCoeffType(r) == ID );
331  assume( r->complex_parameter != NULL );
332
333  if ((*s >= '0') && (*s <= '9'))
334  {
335    gmp_float *re=NULL;
336    s=ngfRead(s,(number *)&re, r);
337    gmp_complex *aa=new gmp_complex(*re);
338    *a=(number)aa;
339    delete re;
340  }
341  else if (strncmp(s, r->complex_parameter,strlen(r->complex_parameter))==0)
342  {
343    s+=strlen(r->complex_parameter);
344    gmp_complex *aa=new gmp_complex((long)0,(long)1);
345    *a=(number)aa;
346  }
347  else
348  {
349    *a=(number) new gmp_complex((long)1);
350  }
351  return s;
352}
353
354
355
356/*2
357* write a floating point number
358*/
359void ngcWrite (number &a, const coeffs r)
360{
361  assume( getCoeffType(r) == ID );
362
363  extern size_t gmp_output_digits; /// comes from mpr_complex.cc
364
365  if (a==NULL)
366    StringAppendS("0");
367  else
368  {
369    char *out;
370    out= complexToStr(*(gmp_complex*)a, gmp_output_digits, r);
371    StringAppendS(out);
372    //    omFreeSize((void *)out, (strlen(out)+1)* sizeof(char) );
373    omFree( (void *)out );
374  }
375}
376
377BOOLEAN ngcInitChar(coeffs n, void* p)
378{
379  assume( getCoeffType(n) == ID );
380  n->cfKillChar = ndKillChar; /* dummy */
381  n->ch = 0;
382
383  n->cfDelete  = ngcDelete;
384  n->cfNormalize=ndNormalize;
385  n->cfInit   = ngcInit;
386  n->cfInt    = ngcInt;
387  n->cfAdd     = ngcAdd;
388  n->cfSub     = ngcSub;
389  n->cfMult    = ngcMult;
390  n->cfDiv     = ngcDiv;
391  n->cfExactDiv= ngcDiv;
392  n->cfNeg     = ngcNeg;
393  n->cfInvers  = ngcInvers;
394  n->cfCopy   = ngcCopy;
395  n->cfGreater = ngcGreater;
396  n->cfEqual   = ngcEqual;
397  n->cfIsZero  = ngcIsZero;
398  n->cfIsOne   = ngcIsOne;
399  n->cfIsMOne  = ngcIsMOne;
400  n->cfGreaterZero = ngcGreaterZero;
401  n->cfWrite  = ngcWrite;
402  n->cfRead    = ngcRead;
403  n->cfPower   = ngcPower;
404  n->cfSetMap = ngcSetMap;
405  n->cfRePart  = ngcRePart;
406  n->cfImPart  = ngcImPart;
407  n->cfCoeffWrite = ngcCoeffWrite;
408    // cfSize  = ndSize;
409#ifdef LDEBUG
410  n->cfDBTest  = ndDBTest; // not yet implemented: ngcDBTest
411#endif
412
413  n->nCoeffIsEqual = ndCoeffIsEqual;
414
415
416
417/*
418  //r->cfInitChar=nlInitChar;
419  r->cfKillChar=NULL;
420  r->cfSetChar=NULL;
421  r->nCoeffIsEqual=nlCoeffsEqual;
422
423  r->cfMult  = nlMult;
424  r->cfSub   = nlSub;
425  r->cfAdd   = nlAdd;
426  r->cfDiv   = nlDiv;
427  r->cfIntDiv= nlIntDiv;
428  r->cfIntMod= nlIntMod;
429  r->cfExactDiv= nlExactDiv;
430  r->cfInit = nlInit;
431  r->cfSize  = nlSize;
432  r->cfInt  = nlInt;
433#ifdef HAVE_RINGS
434  r->cfDivComp = NULL; // only for ring stuff
435  r->cfIsUnit = NULL; // only for ring stuff
436  r->cfGetUnit = NULL; // only for ring stuff
437  r->cfExtGcd = NULL; // only for ring stuff
438#endif
439  r->cfNeg   = nlNeg;
440  r->cfInvers= nlInvers;
441  r->cfCopy  = nl_Copy;
442  r->cfRePart = nl_Copy;
443  r->cfImPart = ndReturn0;
444  r->cfWrite = nlWrite;
445  r->cfRead = nlRead;
446  r->cfNormalize=nlNormalize;
447  r->cfGreater = nlGreater;
448#ifdef HAVE_RINGS
449  r->cfDivBy = NULL; // only for ring stuff
450#endif
451  r->cfEqual = nlEqual;
452  r->cfIsZero = nlIsZero;
453  r->cfIsOne = nlIsOne;
454  r->cfIsMOne = nlIsMOne;
455  r->cfGreaterZero = nlGreaterZero;
456  r->cfPower = nlPower;
457  r->cfGetDenom = nlGetDenom;
458  r->cfGetNumerator = nlGetNumerator;
459  r->cfGcd  = nlGcd;
460  r->cfLcm  = nlLcm;
461  r->cfDelete= nlDelete;
462  r->cfSetMap = nlSetMap;
463  r->cfName = ndName;
464  r->cfInpMult=nlInpMult;
465  r->cfInit_bigint=nlCopyMap;
466#ifdef LDEBUG
467  // debug stuff
468  r->cfDBTest=nlDBTest;
469#endif
470
471  // the variables:
472  r->nNULL = INT_TO_SR(0);
473  r->type = n_Q;
474  r->ch = 0;
475  r->has_simple_Alloc=FALSE;
476  r->has_simple_Inverse=FALSE;
477*/
478
479/// TODO: Any variables?
480  if( p == NULL )
481    n->complex_parameter = omStrDup((char*)"i");
482  else
483    n->complex_parameter = omStrDup( (char*) p );
484
485  return FALSE;
486}
487
488
489
490
491
492number ngcMapQ(number from, const coeffs aRing, const coeffs r)
493{
494  assume( getCoeffType(r) == ID );
495  assume( getCoeffType(aRing) == n_Q );
496
497  if ( from != NULL )
498  {
499    gmp_complex *res=new gmp_complex(numberFieldToFloat(from,QTOF,aRing));
500    return (number)res;
501  }
502  else
503    return NULL;
504}
505
506static number ngcMapLongR(number from, const coeffs aRing, const coeffs r)
507{
508  assume( getCoeffType(r) == ID );
509  assume( getCoeffType(aRing) == n_long_R );
510
511  if ( from != NULL )
512  {
513    gmp_complex *res=new gmp_complex(*((gmp_float *)from));
514    return (number)res;
515  }
516  else
517    return NULL;
518}
519
520static number ngcMapR(number from, const coeffs aRing, const coeffs r)
521{
522  assume( getCoeffType(r) == ID );
523  assume( getCoeffType(aRing) == n_R );
524
525  if ( from != NULL )
526  {
527    gmp_complex *res=new gmp_complex((double)nrFloat(from));
528    return (number)res;
529  }
530  else
531    return NULL;
532}
533
534static number ngcMapP(number from, const coeffs aRing, const coeffs r)
535{
536  assume( getCoeffType(r) == ID );
537  assume( getCoeffType(aRing) ==  n_Zp );
538
539  if ( from != NULL )
540    return ngcInit(npInt(from, aRing), r);
541  else
542    return NULL;
543}
544
545static number ngcCopyMap(number from, const coeffs aRing, const coeffs r)
546{
547  assume( getCoeffType(r) == ID );
548  assume( getCoeffType(aRing) ==  ID );
549
550  gmp_complex* b = NULL;
551
552  if ( from !=  NULL )
553  {
554    b = new gmp_complex( *(gmp_complex*)from );
555  }
556  return (number)b;
557}
558
559nMapFunc ngcSetMap(const coeffs src, const coeffs dst)
560{
561  assume( getCoeffType(dst) == ID );
562
563  if (nCoeff_is_Q(src))
564  {
565    return ngcMapQ;
566  }
567  if (nCoeff_is_long_R(src))
568  {
569    return ngcMapLongR;
570  }
571  if (nCoeff_is_long_C(src))
572  {
573    return ngcCopyMap;
574  }
575  if (nCoeff_is_R(src))
576  {
577    return ngcMapR;
578  }
579  if (nCoeff_is_Zp(src))
580  {
581    return ngcMapP;
582  }
583  return NULL;
584}
585
586void    ngcCoeffWrite  (const coeffs r)
587{
588  Print("//   characteristic : 0 (complex:%d digits, additional %d digits)\n",
589               r->float_len, r->float_len2);  /* long C */
590}
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