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Revision 1.6 - (hide annotations)
Wed Nov 17 21:22:09 1999 UTC (13 years, 7 months ago) by kreckel
Branch: MAIN
Changes since 1.5: +4 -0 lines
File MIME type: text/plain
- deleted add::printpair() since this has become obsolete
- revamped add::print() in order to fix all those output-bugs like
  this infamous one: x-2*y --> x(-2)*y

1 cbauer 1.1 /** @file numeric.h
2     *
3 cbauer 1.4 * Makes the interface to the underlying bignum package available. */
4    
5     /*
6 cbauer 1.2 * GiNaC Copyright (C) 1999 Johannes Gutenberg University Mainz, Germany
7     *
8     * This program is free software; you can redistribute it and/or modify
9     * it under the terms of the GNU General Public License as published by
10     * the Free Software Foundation; either version 2 of the License, or
11     * (at your option) any later version.
12     *
13     * This program is distributed in the hope that it will be useful,
14     * but WITHOUT ANY WARRANTY; without even the implied warranty of
15     * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16     * GNU General Public License for more details.
17     *
18     * You should have received a copy of the GNU General Public License
19     * along with this program; if not, write to the Free Software
20     * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
21     */
22 cbauer 1.1
23 cbauer 1.2 #ifndef __GINAC_NUMERIC_H__
24     #define __GINAC_NUMERIC_H__
25 cbauer 1.1
26     #include <strstream>
27 cbauer 1.3 #include <ginac/basic.h>
28 cbauer 1.5 #include <ginac/ex.h>
29 cbauer 1.1
30     class cl_N; // We want to include cln.h only in numeric.cpp in order to
31     // avoid namespace pollution and keep compile-time low.
32    
33 cbauer 1.5 namespace GiNaC {
34    
35     #define HASHVALUE_NUMERIC 0x80000001U
36    
37 cbauer 1.1 /** This class is used to instantiate a global object Digits which
38     * behaves just like Maple's Digits. We need an object rather than a
39     * dumber basic type since as a side-effect we let it change
40     * cl_default_float_format when it gets changed. The only other
41     * meaningful thing to do with it is converting it to an unsigned,
42     * for temprary storing its value e.g. The user must not create an
43     * own working object of this class! Since C++ forces us to make the
44     * class definition visible in order to use an object we put in a
45     * flag which prevents other objects of that class to be created. */
46     class _numeric_digits
47     {
48     // member functions
49     public:
50     _numeric_digits();
51     _numeric_digits& operator=(long prec);
52     operator long();
53     void print(ostream & os) const;
54     // member variables
55     private:
56     long digits;
57     static bool too_late;
58     };
59    
60     /** This class is a wrapper around CLN-numbers within the GiNaC class
61     * hierarchy. Objects of this type may directly be created by the user.*/
62     class numeric : public basic
63     {
64     // friends
65     friend numeric exp(numeric const & x);
66     friend numeric log(numeric const & x);
67     friend numeric sin(numeric const & x);
68     friend numeric cos(numeric const & x);
69     friend numeric tan(numeric const & x);
70     friend numeric asin(numeric const & x);
71     friend numeric acos(numeric const & x);
72     friend numeric atan(numeric const & x);
73     friend numeric atan(numeric const & y, numeric const & x);
74     friend numeric sinh(numeric const & x);
75     friend numeric cosh(numeric const & x);
76     friend numeric tanh(numeric const & x);
77     friend numeric asinh(numeric const & x);
78     friend numeric acosh(numeric const & x);
79     friend numeric atanh(numeric const & x);
80     friend numeric abs(numeric const & x);
81     friend numeric mod(numeric const & a, numeric const & b);
82     friend numeric smod(numeric const & a, numeric const & b);
83     friend numeric irem(numeric const & a, numeric const & b);
84     friend numeric irem(numeric const & a, numeric const & b, numeric & q);
85     friend numeric iquo(numeric const & a, numeric const & b);
86     friend numeric iquo(numeric const & a, numeric const & b, numeric & r);
87     friend numeric sqrt(numeric const & x);
88     friend numeric isqrt(numeric const & x);
89     friend numeric gcd(numeric const & a, numeric const & b);
90     friend numeric lcm(numeric const & a, numeric const & b);
91     friend numeric const & numZERO(void);
92     friend numeric const & numONE(void);
93     friend numeric const & numTWO(void);
94     friend numeric const & numTHREE(void);
95     friend numeric const & numMINUSONE(void);
96     friend numeric const & numHALF(void);
97    
98     // member functions
99    
100     // default constructor, destructor, copy constructor assignment
101     // operator and helpers
102     public:
103     numeric();
104     ~numeric();
105     numeric(numeric const & other);
106     numeric const & operator=(numeric const & other);
107     protected:
108     void copy(numeric const & other);
109     void destroy(bool call_parent);
110    
111     // other constructors
112     public:
113     explicit numeric(int i);
114     explicit numeric(unsigned int i);
115     explicit numeric(long i);
116     explicit numeric(unsigned long i);
117     explicit numeric(long numer, long denom);
118     explicit numeric(double d);
119     explicit numeric(char const *);
120     numeric(cl_N const & z);
121    
122     // functions overriding virtual functions from bases classes
123     public:
124     basic * duplicate() const;
125     void printraw(ostream & os) const;
126     void printtree(ostream & os, unsigned indent) const;
127     void print(ostream & os, unsigned precedence=0) const;
128     void printcsrc(ostream & os, unsigned type, unsigned precedence=0) const;
129     bool info(unsigned inf) const;
130     ex evalf(int level=0) const;
131     ex diff(symbol const & s) const;
132     ex normal(lst &sym_lst, lst &repl_lst, int level=0) const;
133     numeric integer_content(void) const;
134     ex smod(numeric const &xi) const;
135     numeric max_coefficient(void) const;
136     protected:
137     int compare_same_type(basic const & other) const;
138     bool is_equal_same_type(basic const & other) const;
139     unsigned calchash(void) const {
140     hashvalue=HASHVALUE_NUMERIC;
141     return HASHVALUE_NUMERIC;
142     }
143    
144     // new virtual functions which can be overridden by derived classes
145     // (none)
146    
147     // non-virtual functions in this class
148     public:
149     numeric add(numeric const & other) const;
150     numeric sub(numeric const & other) const;
151     numeric mul(numeric const & other) const;
152     numeric div(numeric const & other) const;
153     numeric power(numeric const & other) const;
154     numeric const & add_dyn(numeric const & other) const;
155     numeric const & sub_dyn(numeric const & other) const;
156     numeric const & mul_dyn(numeric const & other) const;
157     numeric const & div_dyn(numeric const & other) const;
158     numeric const & power_dyn(numeric const & other) const;
159     numeric const & operator=(int i);
160     numeric const & operator=(unsigned int i);
161     numeric const & operator=(long i);
162     numeric const & operator=(unsigned long i);
163     numeric const & operator=(double d);
164     numeric const & operator=(char const * s);
165     /*
166     numeric add_dyn(numeric const & other) const { return add(other); }
167     numeric sub_dyn(numeric const & other) const { return sub(other); }
168     numeric mul_dyn(numeric const & other) const { return mul(other); }
169     numeric div_dyn(numeric const & other) const { return div(other); }
170     numeric power_dyn(numeric const & other) const { return power(other); }
171     */
172     numeric inverse(void) const;
173 kreckel 1.6 int csgn(void) const;
174 cbauer 1.1 int compare(numeric const & other) const;
175     bool is_equal(numeric const & other) const;
176     bool is_zero(void) const;
177     bool is_positive(void) const;
178     bool is_negative(void) const;
179     bool is_integer(void) const;
180     bool is_pos_integer(void) const;
181     bool is_nonneg_integer(void) const;
182     bool is_even(void) const;
183     bool is_odd(void) const;
184     bool is_prime(void) const;
185     bool is_rational(void) const;
186     bool is_real(void) const;
187     bool operator==(numeric const & other) const;
188     bool operator!=(numeric const & other) const;
189     bool operator<(numeric const & other) const;
190     bool operator<=(numeric const & other) const;
191     bool operator>(numeric const & other) const;
192     bool operator>=(numeric const & other) const;
193     int to_int(void) const;
194     double to_double(void) const;
195     numeric real(void) const;
196     numeric imag(void) const;
197     numeric numer(void) const;
198     numeric denom(void) const;
199     int int_length(void) const;
200    
201     // member variables
202    
203     protected:
204     static unsigned precedence;
205     cl_N *value;
206     };
207    
208     // global constants
209    
210     extern const numeric some_numeric;
211     extern const numeric I;
212     extern type_info const & typeid_numeric;
213     extern _numeric_digits Digits;
214    
215     #define is_a_numeric_hash(x) ((x)==HASHVALUE_NUMERIC)
216     // may have to be changed to ((x)>=0x80000000U)
217    
218     // global functions
219    
220     numeric const & numZERO(void);
221     numeric const & numONE(void);
222     numeric const & numTWO(void);
223     numeric const & numMINUSONE(void);
224     numeric const & numHALF(void);
225    
226     numeric exp(numeric const & x);
227     numeric log(numeric const & x);
228     numeric sin(numeric const & x);
229     numeric cos(numeric const & x);
230     numeric tan(numeric const & x);
231     numeric asin(numeric const & x);
232     numeric acos(numeric const & x);
233     numeric atan(numeric const & x);
234     numeric atan(numeric const & y, numeric const & x);
235     numeric sinh(numeric const & x);
236     numeric cosh(numeric const & x);
237     numeric tanh(numeric const & x);
238     numeric asinh(numeric const & x);
239     numeric acosh(numeric const & x);
240     numeric atanh(numeric const & x);
241     numeric gamma(numeric const & x);
242     numeric factorial(numeric const & n);
243     numeric doublefactorial(numeric const & n);
244     numeric binomial(numeric const & n, numeric const & k);
245    
246     numeric abs(numeric const & x);
247     numeric mod(numeric const & a, numeric const & b);
248     numeric smod(numeric const & a, numeric const & b);
249     numeric irem(numeric const & a, numeric const & b);
250     numeric irem(numeric const & a, numeric const & b, numeric & q);
251     numeric iquo(numeric const & a, numeric const & b);
252     numeric iquo(numeric const & a, numeric const & b, numeric & r);
253     numeric sqrt(numeric const & x);
254     numeric isqrt(numeric const & x);
255    
256     numeric gcd(numeric const & a, numeric const & b);
257     numeric lcm(numeric const & a, numeric const & b);
258    
259     /** Exception thrown by numeric members to signal failure */
260     struct numeric_fail
261     {
262     int failval;
263     numeric_fail(int n) { failval = n; }
264     };
265    
266     // wrapper functions around member functions
267     inline numeric inverse(numeric const & x)
268     { return x.inverse(); }
269 kreckel 1.6
270     inline bool csgn(numeric const & x)
271     { return x.csgn(); }
272 cbauer 1.1
273     inline bool is_zero(numeric const & x)
274     { return x.is_zero(); }
275    
276     inline bool is_positive(numeric const & x)
277     { return x.is_positive(); }
278    
279     inline bool is_integer(numeric const & x)
280     { return x.is_integer(); }
281    
282     inline bool is_pos_integer(numeric const & x)
283     { return x.is_pos_integer(); }
284    
285     inline bool is_nonneg_integer(numeric const & x)
286     { return x.is_nonneg_integer(); }
287    
288     inline bool is_even(numeric const & x)
289     { return x.is_even(); }
290    
291     inline bool is_odd(numeric const & x)
292     { return x.is_odd(); }
293    
294     inline bool is_prime(numeric const & x)
295     { return x.is_prime(); }
296    
297     inline bool is_rational(numeric const & x)
298     { return x.is_rational(); }
299    
300     inline bool is_real(numeric const & x)
301     { return x.is_real(); }
302    
303     inline numeric real(numeric const & x)
304     { return x.real(); }
305    
306     inline numeric imag(numeric const & x)
307     { return x.imag(); }
308    
309     inline numeric numer(numeric const & x)
310     { return x.numer(); }
311    
312     inline numeric denom(numeric const & x)
313     { return x.denom(); }
314    
315     /* do we need this any more? */
316     //inline numeric factorial(int n)
317     //{ return factorial(numeric(n)); }
318    
319     /* do we need this any more? */
320     //inline numeric binomial(int n, int k)
321     //{ return binomial(numeric(n), numeric(k)); }
322    
323     ex IEvalf(void);
324     ex PiEvalf(void);
325     ex EulerGammaEvalf(void);
326     ex CatalanEvalf(void);
327    
328 cbauer 1.5 // utility functions
329     inline const numeric &ex_to_numeric(const ex &e)
330     {
331     return static_cast<const numeric &>(*e.bp);
332     }
333 cbauer 1.1
334 cbauer 1.5 } // namespace GiNaC
335 cbauer 1.1
336 cbauer 1.2 #endif // ndef __GINAC_NUMERIC_H__

Christian Bauer">Christian Bauer
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