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1 | ///////////////////////////////////////////////////////////////////////////// | |
2 | // Name: wx/longlong.h | |
3 | // Purpose: declaration of wxLongLong class - best implementation of a 64 | |
4 | // bit integer for the current platform. | |
5 | // Author: Jeffrey C. Ollie <jeff@ollie.clive.ia.us>, Vadim Zeitlin | |
6 | // Remarks: this class is not public in wxWindows 2.0! It is intentionally | |
7 | // not documented and is for private use only. | |
8 | // Modified by: | |
9 | // Created: 10.02.99 | |
10 | // RCS-ID: $Id$ | |
11 | // Copyright: (c) 1998 Vadim Zeitlin <zeitlin@dptmaths.ens-cachan.fr> | |
12 | // Licence: wxWindows license | |
13 | ///////////////////////////////////////////////////////////////////////////// | |
14 | ||
15 | #ifndef _WX_LONGLONG_H | |
16 | #define _WX_LONGLONG_H | |
17 | ||
18 | #ifdef __GNUG__ | |
19 | #pragma interface "longlong.h" | |
20 | #endif | |
21 | ||
22 | #include "wx/defs.h" | |
23 | #include "wx/wxchar.h" | |
24 | #include "wx/debug.h" | |
25 | ||
26 | #include <limits.h> // for LONG_MAX | |
27 | ||
28 | // #define wxUSE_LONGLONG_WX 1 // for testing (VZ) | |
29 | ||
30 | // ---------------------------------------------------------------------------- | |
31 | // decide upon which class we will use | |
32 | // ---------------------------------------------------------------------------- | |
33 | ||
34 | // to avoid compilation problems on 64bit machines with ambiguous method calls | |
35 | // we will need to define this | |
36 | #undef wxLongLongIsLong | |
37 | ||
38 | // NB: we #define and not typedef wxLongLong_t because we want to be able to | |
39 | // use 'unsigned wxLongLong_t' as well and because we use "#ifdef | |
40 | // wxLongLong_t" below | |
41 | #if defined(SIZEOF_LONG) && (SIZEOF_LONG == 8) | |
42 | #define wxLongLong_t long | |
43 | #define wxLongLongIsLong | |
44 | #elif (defined(__VISUALC__) && defined(__WIN32__)) || defined( __VMS__ ) | |
45 | #define wxLongLong_t __int64 | |
46 | #elif defined(__BORLANDC__) && (__BORLANDC__ >= 0x530) | |
47 | #define wxLongLong_t __int64 | |
48 | #elif defined(__GNUG__) | |
49 | #define wxLongLong_t long long | |
50 | #elif defined(__MWERKS__) | |
51 | #if __option(longlong) | |
52 | #define wxLongLong_t long long | |
53 | #else | |
54 | #error "The 64 bit integer support in CodeWarrior has been disabled." | |
55 | #error "See the documentation on the 'longlong' pragma." | |
56 | #endif | |
57 | #else // no native long long type | |
58 | // both warning and pragma warning are not portable, but at least an | |
59 | // unknown pragma should never be an error | |
60 | #pragma warning "Your compiler does not appear to support 64 bit "\ | |
61 | "integers, using emulation class instead." | |
62 | ||
63 | #define wxUSE_LONGLONG_WX 1 | |
64 | #endif // compiler | |
65 | ||
66 | // the user may predefine wxUSE_LONGLONG_NATIVE and/or wxUSE_LONGLONG_NATIVE | |
67 | // to disable automatic testing (useful for the test program which defines | |
68 | // both classes) but by default we only use one class | |
69 | #if (defined(wxUSE_LONGLONG_WX) && wxUSE_LONGLONG_WX) || !defined(wxLongLong_t) | |
70 | #undef wxUSE_LONGLONG_NATIVE | |
71 | #define wxUSE_LONGLONG_NATIVE 0 | |
72 | class WXDLLEXPORT wxLongLongWx; | |
73 | typedef wxLongLongWx wxLongLong; | |
74 | #else | |
75 | // if nothing is defined, use native implementation by default, of course | |
76 | #ifndef wxUSE_LONGLONG_NATIVE | |
77 | #define wxUSE_LONGLONG_NATIVE 1 | |
78 | #endif | |
79 | #endif | |
80 | ||
81 | #ifndef wxUSE_LONGLONG_WX | |
82 | #define wxUSE_LONGLONG_WX 0 | |
83 | class WXDLLEXPORT wxLongLongNative; | |
84 | typedef wxLongLongNative wxLongLong; | |
85 | #endif | |
86 | ||
87 | // NB: if both wxUSE_LONGLONG_WX and NATIVE are defined, the user code should | |
88 | // typedef wxLongLong as it wants, we don't do it | |
89 | ||
90 | // ---------------------------------------------------------------------------- | |
91 | // choose the appropriate class | |
92 | // ---------------------------------------------------------------------------- | |
93 | ||
94 | // we use iostream for wxLongLong output | |
95 | #include "wx/ioswrap.h" | |
96 | ||
97 | #if wxUSE_LONGLONG_NATIVE | |
98 | ||
99 | class WXDLLEXPORT wxLongLongNative | |
100 | { | |
101 | public: | |
102 | // ctors | |
103 | // default ctor initializes to 0 | |
104 | wxLongLongNative() { m_ll = 0; } | |
105 | // from long long | |
106 | wxLongLongNative(wxLongLong_t ll) { m_ll = ll; } | |
107 | // from 2 longs | |
108 | wxLongLongNative(long hi, unsigned long lo) | |
109 | { | |
110 | // assign first to avoid precision loss! | |
111 | m_ll = ((wxLongLong_t) hi) << 32; | |
112 | m_ll |= (wxLongLong_t) lo; | |
113 | } | |
114 | ||
115 | // default copy ctor is ok | |
116 | ||
117 | // no dtor | |
118 | ||
119 | // assignment operators | |
120 | // from native 64 bit integer | |
121 | wxLongLongNative& operator=(wxLongLong_t ll) | |
122 | { m_ll = ll; return *this; } | |
123 | ||
124 | // from double: this one has an explicit name because otherwise we | |
125 | // would have ambiguity with "ll = int" and also because we don't want | |
126 | // to have implicit conversions between doubles and wxLongLongs | |
127 | wxLongLongNative& Assign(double d) | |
128 | { m_ll = (wxLongLong_t)d; return *this; } | |
129 | ||
130 | // assignment operators from wxLongLongNative is ok | |
131 | ||
132 | // accessors | |
133 | // get high part | |
134 | long GetHi() const | |
135 | { return (long)(m_ll >> 32); } | |
136 | // get low part | |
137 | unsigned long GetLo() const | |
138 | { return (unsigned long)m_ll; } | |
139 | ||
140 | // get absolute value | |
141 | wxLongLongNative Abs() const { return wxLongLongNative(*this).Abs(); } | |
142 | wxLongLongNative& Abs() { if ( m_ll < 0 ) m_ll = -m_ll; return *this; } | |
143 | ||
144 | // convert to native long long | |
145 | wxLongLong_t GetValue() const { return m_ll; } | |
146 | ||
147 | // convert to long with range checking in the debug mode (only!) | |
148 | long ToLong() const | |
149 | { | |
150 | wxASSERT_MSG( (m_ll >= LONG_MIN) && (m_ll <= LONG_MAX), | |
151 | _T("wxLongLong to long conversion loss of precision") ); | |
152 | ||
153 | return (long)m_ll; | |
154 | } | |
155 | ||
156 | // don't provide implicit conversion to wxLongLong_t or we will have an | |
157 | // ambiguity for all arithmetic operations | |
158 | //operator wxLongLong_t() const { return m_ll; } | |
159 | ||
160 | // operations | |
161 | // addition | |
162 | wxLongLongNative operator+(const wxLongLongNative& ll) const | |
163 | { return wxLongLongNative(m_ll + ll.m_ll); } | |
164 | wxLongLongNative& operator+=(const wxLongLongNative& ll) | |
165 | { m_ll += ll.m_ll; return *this; } | |
166 | ||
167 | wxLongLongNative operator+(const wxLongLong_t ll) const | |
168 | { return wxLongLongNative(m_ll + ll); } | |
169 | wxLongLongNative& operator+=(const wxLongLong_t ll) | |
170 | { m_ll += ll; return *this; } | |
171 | ||
172 | // pre increment | |
173 | wxLongLongNative& operator++() | |
174 | { m_ll++; return *this; } | |
175 | ||
176 | // post increment | |
177 | wxLongLongNative& operator++(int) | |
178 | { m_ll++; return *this; } | |
179 | ||
180 | // negation operator | |
181 | wxLongLongNative operator-() const | |
182 | { return wxLongLongNative(-m_ll); } | |
183 | ||
184 | // subtraction | |
185 | wxLongLongNative operator-(const wxLongLongNative& ll) const | |
186 | { return wxLongLongNative(m_ll - ll.m_ll); } | |
187 | wxLongLongNative& operator-=(const wxLongLongNative& ll) | |
188 | { m_ll -= ll.m_ll; return *this; } | |
189 | ||
190 | wxLongLongNative operator-(const wxLongLong_t ll) const | |
191 | { return wxLongLongNative(m_ll - ll); } | |
192 | wxLongLongNative& operator-=(const wxLongLong_t ll) | |
193 | { m_ll -= ll; return *this; } | |
194 | ||
195 | // pre decrement | |
196 | wxLongLongNative& operator--() | |
197 | { m_ll--; return *this; } | |
198 | ||
199 | // post decrement | |
200 | wxLongLongNative& operator--(int) | |
201 | { m_ll--; return *this; } | |
202 | ||
203 | // shifts | |
204 | // left shift | |
205 | wxLongLongNative operator<<(int shift) const | |
206 | { return wxLongLongNative(m_ll << shift);; } | |
207 | wxLongLongNative& operator<<=(int shift) | |
208 | { m_ll <<= shift; return *this; } | |
209 | ||
210 | // right shift | |
211 | wxLongLongNative operator>>(int shift) const | |
212 | { return wxLongLongNative(m_ll >> shift);; } | |
213 | wxLongLongNative& operator>>=(int shift) | |
214 | { m_ll >>= shift; return *this; } | |
215 | ||
216 | // bitwise operators | |
217 | wxLongLongNative operator&(const wxLongLongNative& ll) const | |
218 | { return wxLongLongNative(m_ll & ll.m_ll); } | |
219 | wxLongLongNative& operator&=(const wxLongLongNative& ll) | |
220 | { m_ll &= ll.m_ll; return *this; } | |
221 | ||
222 | wxLongLongNative operator|(const wxLongLongNative& ll) const | |
223 | { return wxLongLongNative(m_ll | ll.m_ll); } | |
224 | wxLongLongNative& operator|=(const wxLongLongNative& ll) | |
225 | { m_ll |= ll.m_ll; return *this; } | |
226 | ||
227 | wxLongLongNative operator^(const wxLongLongNative& ll) const | |
228 | { return wxLongLongNative(m_ll ^ ll.m_ll); } | |
229 | wxLongLongNative& operator^=(const wxLongLongNative& ll) | |
230 | { m_ll ^= ll.m_ll; return *this; } | |
231 | ||
232 | // multiplication/division | |
233 | wxLongLongNative operator*(const wxLongLongNative& ll) const | |
234 | { return wxLongLongNative(m_ll * ll.m_ll); } | |
235 | wxLongLongNative operator*(long l) const | |
236 | { return wxLongLongNative(m_ll * l); } | |
237 | wxLongLongNative& operator*=(const wxLongLongNative& ll) | |
238 | { m_ll *= ll.m_ll; return *this; } | |
239 | wxLongLongNative& operator*=(long l) | |
240 | { m_ll *= l; return *this; } | |
241 | ||
242 | wxLongLongNative operator/(const wxLongLongNative& ll) const | |
243 | { return wxLongLongNative(m_ll / ll.m_ll); } | |
244 | wxLongLongNative operator/(long l) const | |
245 | { return wxLongLongNative(m_ll / l); } | |
246 | wxLongLongNative& operator/=(const wxLongLongNative& ll) | |
247 | { m_ll /= ll.m_ll; return *this; } | |
248 | wxLongLongNative& operator/=(long l) | |
249 | { m_ll /= l; return *this; } | |
250 | ||
251 | wxLongLongNative operator%(const wxLongLongNative& ll) const | |
252 | { return wxLongLongNative(m_ll % ll.m_ll); } | |
253 | wxLongLongNative operator%(long l) const | |
254 | { return wxLongLongNative(m_ll % l); } | |
255 | ||
256 | // comparison | |
257 | bool operator==(const wxLongLongNative& ll) const | |
258 | { return m_ll == ll.m_ll; } | |
259 | bool operator==(long l) const | |
260 | { return m_ll == l; } | |
261 | bool operator!=(const wxLongLongNative& ll) const | |
262 | { return m_ll != ll.m_ll; } | |
263 | bool operator!=(long l) const | |
264 | { return m_ll != l; } | |
265 | bool operator<(const wxLongLongNative& ll) const | |
266 | { return m_ll < ll.m_ll; } | |
267 | bool operator<(long l) const | |
268 | { return m_ll < l; } | |
269 | bool operator>(const wxLongLongNative& ll) const | |
270 | { return m_ll > ll.m_ll; } | |
271 | bool operator>(long l) const | |
272 | { return m_ll > l; } | |
273 | bool operator<=(const wxLongLongNative& ll) const | |
274 | { return m_ll <= ll.m_ll; } | |
275 | bool operator<=(long l) const | |
276 | { return m_ll <= l; } | |
277 | bool operator>=(const wxLongLongNative& ll) const | |
278 | { return m_ll >= ll.m_ll; } | |
279 | bool operator>=(long l) const | |
280 | { return m_ll >= l; } | |
281 | ||
282 | // miscellaneous | |
283 | // conversion to byte array: returns a pointer to static buffer! | |
284 | void *asArray() const; | |
285 | ||
286 | #if wxUSE_STD_IOSTREAM | |
287 | // input/output | |
288 | friend ostream& operator<<(ostream&, const wxLongLongNative&); | |
289 | #endif | |
290 | ||
291 | private: | |
292 | wxLongLong_t m_ll; | |
293 | }; | |
294 | ||
295 | #endif // wxUSE_LONGLONG_NATIVE | |
296 | ||
297 | #if wxUSE_LONGLONG_WX | |
298 | ||
299 | class WXDLLEXPORT wxLongLongWx | |
300 | { | |
301 | public: | |
302 | // ctors | |
303 | // default ctor initializes to 0 | |
304 | wxLongLongWx() { m_lo = m_hi = 0; } | |
305 | // from long | |
306 | wxLongLongWx(long l) | |
307 | { m_lo = l; m_hi = (l < 0 ? -1l : 0l); } | |
308 | // from 2 longs | |
309 | wxLongLongWx(long hi, unsigned long lo) | |
310 | { m_hi = hi; m_lo = lo; } | |
311 | ||
312 | // default copy ctor is ok in both cases | |
313 | ||
314 | // no dtor | |
315 | ||
316 | // assignment operators | |
317 | // from long | |
318 | wxLongLongWx& operator=(long l) | |
319 | { m_lo = l; m_hi = (l < 0 ? -1l : 0l); return *this; } | |
320 | // from double | |
321 | wxLongLongWx& Assign(double d); | |
322 | // can't have assignment operator from 2 longs | |
323 | ||
324 | // accessors | |
325 | // get high part | |
326 | long GetHi() const { return m_hi; } | |
327 | // get low part | |
328 | unsigned long GetLo() const { return m_lo; } | |
329 | ||
330 | // get absolute value | |
331 | wxLongLongWx Abs() const { return wxLongLongWx(*this).Abs(); } | |
332 | wxLongLongWx& Abs() { if ( m_hi < 0 ) m_hi = -m_hi; return *this; } | |
333 | ||
334 | // convert to long with range checking in the debug mode (only!) | |
335 | long ToLong() const | |
336 | { | |
337 | wxASSERT_MSG( m_hi == 0l, | |
338 | _T("wxLongLong to long conversion loss of precision") ); | |
339 | ||
340 | return (long)m_lo; | |
341 | } | |
342 | ||
343 | // operations | |
344 | // addition | |
345 | wxLongLongWx operator+(const wxLongLongWx& ll) const; | |
346 | wxLongLongWx& operator+=(const wxLongLongWx& ll); | |
347 | wxLongLongWx operator+(long l) const; | |
348 | wxLongLongWx& operator+=(long l); | |
349 | ||
350 | // pre increment operator | |
351 | wxLongLongWx& operator++(); | |
352 | ||
353 | // post increment operator | |
354 | wxLongLongWx& operator++(int); | |
355 | ||
356 | // negation operator | |
357 | wxLongLongWx operator-() const; | |
358 | ||
359 | // subraction | |
360 | wxLongLongWx operator-(const wxLongLongWx& ll) const; | |
361 | wxLongLongWx& operator-=(const wxLongLongWx& ll); | |
362 | ||
363 | // pre decrement operator | |
364 | wxLongLongWx& operator--(); | |
365 | ||
366 | // post decrement operator | |
367 | wxLongLongWx& operator--(int); | |
368 | ||
369 | // shifts | |
370 | // left shift | |
371 | wxLongLongWx operator<<(int shift) const; | |
372 | wxLongLongWx& operator<<=(int shift); | |
373 | ||
374 | // right shift | |
375 | wxLongLongWx operator>>(int shift) const; | |
376 | wxLongLongWx& operator>>=(int shift); | |
377 | ||
378 | // bitwise operators | |
379 | wxLongLongWx operator&(const wxLongLongWx& ll) const; | |
380 | wxLongLongWx& operator&=(const wxLongLongWx& ll); | |
381 | wxLongLongWx operator|(const wxLongLongWx& ll) const; | |
382 | wxLongLongWx& operator|=(const wxLongLongWx& ll); | |
383 | wxLongLongWx operator^(const wxLongLongWx& ll) const; | |
384 | wxLongLongWx& operator^=(const wxLongLongWx& ll); | |
385 | wxLongLongWx operator~() const; | |
386 | ||
387 | // comparison | |
388 | bool operator==(const wxLongLongWx& ll) const | |
389 | { return m_lo == ll.m_lo && m_hi == ll.m_hi; } | |
390 | bool operator!=(const wxLongLongWx& ll) const | |
391 | { return !(*this == ll); } | |
392 | bool operator<(const wxLongLongWx& ll) const; | |
393 | bool operator>(const wxLongLongWx& ll) const; | |
394 | bool operator<=(const wxLongLongWx& ll) const | |
395 | { return *this < ll || *this == ll; } | |
396 | bool operator>=(const wxLongLongWx& ll) const | |
397 | { return *this > ll || *this == ll; } | |
398 | ||
399 | // multiplication | |
400 | wxLongLongWx operator*(const wxLongLongWx& ll) const; | |
401 | wxLongLongWx& operator*=(const wxLongLongWx& ll); | |
402 | ||
403 | // division | |
404 | wxLongLongWx operator/(const wxLongLongWx& ll) const; | |
405 | wxLongLongWx& operator/=(const wxLongLongWx& ll); | |
406 | ||
407 | wxLongLongWx operator%(const wxLongLongWx& ll) const; | |
408 | ||
409 | void Divide(const wxLongLongWx& divisor, | |
410 | wxLongLongWx& quotient, | |
411 | wxLongLongWx& remainder) const; | |
412 | ||
413 | // input/output | |
414 | #if wxUSE_STD_IOSTREAM | |
415 | friend ostream& operator<<(ostream&, const wxLongLongWx&); | |
416 | #endif // wxUSE_STD_IOSTREAM | |
417 | ||
418 | void *asArray(void) const; | |
419 | ||
420 | private: | |
421 | // long is at least 32 bits, so represent our 64bit number as 2 longs | |
422 | ||
423 | long m_hi; // signed bit is in the high part | |
424 | unsigned long m_lo; | |
425 | }; | |
426 | ||
427 | #endif // wxUSE_LONGLONG_WX | |
428 | ||
429 | // ---------------------------------------------------------------------------- | |
430 | // binary operators | |
431 | // ---------------------------------------------------------------------------- | |
432 | ||
433 | inline bool WXDLLEXPORT operator<(long l, const wxLongLong& ll) { return ll > l; } | |
434 | inline bool WXDLLEXPORT operator>(long l, const wxLongLong& ll) { return ll > l; } | |
435 | inline bool WXDLLEXPORT operator<=(long l, const wxLongLong& ll) { return ll > l; } | |
436 | inline bool WXDLLEXPORT operator>=(long l, const wxLongLong& ll) { return ll > l; } | |
437 | inline bool WXDLLEXPORT operator==(long l, const wxLongLong& ll) { return ll > l; } | |
438 | inline bool WXDLLEXPORT operator!=(long l, const wxLongLong& ll) { return ll > l; } | |
439 | ||
440 | inline wxLongLong WXDLLEXPORT operator+(long l, const wxLongLong& ll) { return ll + l; } | |
441 | inline wxLongLong WXDLLEXPORT operator-(long l, const wxLongLong& ll) { return ll - l; } | |
442 | ||
443 | #endif // _WX_LONGLONG_H |