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Guido van Rossum85a5fbb1990-10-14 12:07:46 +00001/* Math module -- standard C math library functions, pi and e */
2
Christian Heimes53876d92008-04-19 00:31:39 +00003/* Here are some comments from Tim Peters, extracted from the
4 discussion attached to http://bugs.python.org/issue1640. They
5 describe the general aims of the math module with respect to
6 special values, IEEE-754 floating-point exceptions, and Python
7 exceptions.
8
9These are the "spirit of 754" rules:
10
111. If the mathematical result is a real number, but of magnitude too
12large to approximate by a machine float, overflow is signaled and the
13result is an infinity (with the appropriate sign).
14
152. If the mathematical result is a real number, but of magnitude too
16small to approximate by a machine float, underflow is signaled and the
17result is a zero (with the appropriate sign).
18
193. At a singularity (a value x such that the limit of f(y) as y
20approaches x exists and is an infinity), "divide by zero" is signaled
21and the result is an infinity (with the appropriate sign). This is
22complicated a little by that the left-side and right-side limits may
23not be the same; e.g., 1/x approaches +inf or -inf as x approaches 0
24from the positive or negative directions. In that specific case, the
25sign of the zero determines the result of 1/0.
26
274. At a point where a function has no defined result in the extended
28reals (i.e., the reals plus an infinity or two), invalid operation is
29signaled and a NaN is returned.
30
31And these are what Python has historically /tried/ to do (but not
32always successfully, as platform libm behavior varies a lot):
33
34For #1, raise OverflowError.
35
36For #2, return a zero (with the appropriate sign if that happens by
37accident ;-)).
38
39For #3 and #4, raise ValueError. It may have made sense to raise
40Python's ZeroDivisionError in #3, but historically that's only been
41raised for division by zero and mod by zero.
42
43*/
44
45/*
46 In general, on an IEEE-754 platform the aim is to follow the C99
47 standard, including Annex 'F', whenever possible. Where the
48 standard recommends raising the 'divide-by-zero' or 'invalid'
49 floating-point exceptions, Python should raise a ValueError. Where
50 the standard recommends raising 'overflow', Python should raise an
51 OverflowError. In all other circumstances a value should be
52 returned.
53 */
54
Barry Warsaw8b43b191996-12-09 22:32:36 +000055#include "Python.h"
Michael W. Hudson9ef852c2005-04-06 13:05:18 +000056#include "longintrepr.h" /* just for SHIFT */
Guido van Rossum85a5fbb1990-10-14 12:07:46 +000057
Christian Heimes969fe572008-01-25 11:23:10 +000058#ifdef _OSF_SOURCE
59/* OSF1 5.1 doesn't make this available with XOPEN_SOURCE_EXTENDED defined */
60extern double copysign(double, double);
61#endif
62
Tim Peters1d120612000-10-12 06:10:25 +000063/* Call is_error when errno != 0, and where x is the result libm
64 * returned. is_error will usually set up an exception and return
65 * true (1), but may return false (0) without setting up an exception.
66 */
67static int
68is_error(double x)
Guido van Rossum8832b621991-12-16 15:44:24 +000069{
Tim Peters1d120612000-10-12 06:10:25 +000070 int result = 1; /* presumption of guilt */
Tim Peters2bf405a2000-10-12 19:42:00 +000071 assert(errno); /* non-zero errno is a precondition for calling */
Guido van Rossum8832b621991-12-16 15:44:24 +000072 if (errno == EDOM)
Barry Warsaw8b43b191996-12-09 22:32:36 +000073 PyErr_SetString(PyExc_ValueError, "math domain error");
Tim Petersa40c7932001-09-05 22:36:56 +000074
Tim Peters1d120612000-10-12 06:10:25 +000075 else if (errno == ERANGE) {
76 /* ANSI C generally requires libm functions to set ERANGE
77 * on overflow, but also generally *allows* them to set
78 * ERANGE on underflow too. There's no consistency about
Tim Petersa40c7932001-09-05 22:36:56 +000079 * the latter across platforms.
80 * Alas, C99 never requires that errno be set.
81 * Here we suppress the underflow errors (libm functions
82 * should return a zero on underflow, and +- HUGE_VAL on
83 * overflow, so testing the result for zero suffices to
84 * distinguish the cases).
Tim Peters1d120612000-10-12 06:10:25 +000085 */
86 if (x)
Tim Petersfe71f812001-08-07 22:10:00 +000087 PyErr_SetString(PyExc_OverflowError,
Tim Peters1d120612000-10-12 06:10:25 +000088 "math range error");
89 else
90 result = 0;
91 }
Guido van Rossum8832b621991-12-16 15:44:24 +000092 else
Barry Warsaw8b43b191996-12-09 22:32:36 +000093 /* Unexpected math error */
94 PyErr_SetFromErrno(PyExc_ValueError);
Tim Peters1d120612000-10-12 06:10:25 +000095 return result;
Guido van Rossum8832b621991-12-16 15:44:24 +000096}
97
Christian Heimes53876d92008-04-19 00:31:39 +000098/*
Christian Heimese57950f2008-04-21 13:08:03 +000099 wrapper for atan2 that deals directly with special cases before
100 delegating to the platform libm for the remaining cases. This
101 is necessary to get consistent behaviour across platforms.
102 Windows, FreeBSD and alpha Tru64 are amongst platforms that don't
103 always follow C99.
104*/
105
106static double
107m_atan2(double y, double x)
108{
109 if (Py_IS_NAN(x) || Py_IS_NAN(y))
110 return Py_NAN;
111 if (Py_IS_INFINITY(y)) {
112 if (Py_IS_INFINITY(x)) {
113 if (copysign(1., x) == 1.)
114 /* atan2(+-inf, +inf) == +-pi/4 */
115 return copysign(0.25*Py_MATH_PI, y);
116 else
117 /* atan2(+-inf, -inf) == +-pi*3/4 */
118 return copysign(0.75*Py_MATH_PI, y);
119 }
120 /* atan2(+-inf, x) == +-pi/2 for finite x */
121 return copysign(0.5*Py_MATH_PI, y);
122 }
123 if (Py_IS_INFINITY(x) || y == 0.) {
124 if (copysign(1., x) == 1.)
125 /* atan2(+-y, +inf) = atan2(+-0, +x) = +-0. */
126 return copysign(0., y);
127 else
128 /* atan2(+-y, -inf) = atan2(+-0., -x) = +-pi. */
129 return copysign(Py_MATH_PI, y);
130 }
131 return atan2(y, x);
132}
133
134/*
Christian Heimes53876d92008-04-19 00:31:39 +0000135 math_1 is used to wrap a libm function f that takes a double
136 arguments and returns a double.
137
138 The error reporting follows these rules, which are designed to do
139 the right thing on C89/C99 platforms and IEEE 754/non IEEE 754
140 platforms.
141
142 - a NaN result from non-NaN inputs causes ValueError to be raised
143 - an infinite result from finite inputs causes OverflowError to be
144 raised if can_overflow is 1, or raises ValueError if can_overflow
145 is 0.
146 - if the result is finite and errno == EDOM then ValueError is
147 raised
148 - if the result is finite and nonzero and errno == ERANGE then
149 OverflowError is raised
150
151 The last rule is used to catch overflow on platforms which follow
152 C89 but for which HUGE_VAL is not an infinity.
153
154 For the majority of one-argument functions these rules are enough
155 to ensure that Python's functions behave as specified in 'Annex F'
156 of the C99 standard, with the 'invalid' and 'divide-by-zero'
157 floating-point exceptions mapping to Python's ValueError and the
158 'overflow' floating-point exception mapping to OverflowError.
159 math_1 only works for functions that don't have singularities *and*
160 the possibility of overflow; fortunately, that covers everything we
161 care about right now.
162*/
163
Barry Warsaw8b43b191996-12-09 22:32:36 +0000164static PyObject *
Jeffrey Yasskinc2155832008-01-05 20:03:11 +0000165math_1_to_whatever(PyObject *arg, double (*func) (double),
Christian Heimes53876d92008-04-19 00:31:39 +0000166 PyObject *(*from_double_func) (double),
167 int can_overflow)
Guido van Rossum85a5fbb1990-10-14 12:07:46 +0000168{
Christian Heimes53876d92008-04-19 00:31:39 +0000169 double x, r;
170 x = PyFloat_AsDouble(arg);
Thomas Wouters89f507f2006-12-13 04:49:30 +0000171 if (x == -1.0 && PyErr_Occurred())
Guido van Rossum85a5fbb1990-10-14 12:07:46 +0000172 return NULL;
173 errno = 0;
Christian Heimes53876d92008-04-19 00:31:39 +0000174 PyFPE_START_PROTECT("in math_1", return 0);
175 r = (*func)(x);
176 PyFPE_END_PROTECT(r);
Mark Dickinsona0de26c2008-04-30 23:30:57 +0000177 if (Py_IS_NAN(r) && !Py_IS_NAN(x)) {
178 PyErr_SetString(PyExc_ValueError,
179 "math domain error (invalid argument)");
180 return NULL;
Christian Heimes53876d92008-04-19 00:31:39 +0000181 }
Mark Dickinsona0de26c2008-04-30 23:30:57 +0000182 if (Py_IS_INFINITY(r) && Py_IS_FINITE(x)) {
183 if (can_overflow)
184 PyErr_SetString(PyExc_OverflowError,
185 "math range error (overflow)");
186 else
187 PyErr_SetString(PyExc_ValueError,
188 "math domain error (singularity)");
189 return NULL;
Christian Heimes53876d92008-04-19 00:31:39 +0000190 }
Mark Dickinsonde429622008-05-01 00:19:23 +0000191 if (Py_IS_FINITE(r) && errno && is_error(r))
192 /* this branch unnecessary on most platforms */
Tim Peters1d120612000-10-12 06:10:25 +0000193 return NULL;
Mark Dickinsonde429622008-05-01 00:19:23 +0000194
195 return (*from_double_func)(r);
Christian Heimes53876d92008-04-19 00:31:39 +0000196}
197
198/*
199 math_2 is used to wrap a libm function f that takes two double
200 arguments and returns a double.
201
202 The error reporting follows these rules, which are designed to do
203 the right thing on C89/C99 platforms and IEEE 754/non IEEE 754
204 platforms.
205
206 - a NaN result from non-NaN inputs causes ValueError to be raised
207 - an infinite result from finite inputs causes OverflowError to be
208 raised.
209 - if the result is finite and errno == EDOM then ValueError is
210 raised
211 - if the result is finite and nonzero and errno == ERANGE then
212 OverflowError is raised
213
214 The last rule is used to catch overflow on platforms which follow
215 C89 but for which HUGE_VAL is not an infinity.
216
217 For most two-argument functions (copysign, fmod, hypot, atan2)
218 these rules are enough to ensure that Python's functions behave as
219 specified in 'Annex F' of the C99 standard, with the 'invalid' and
220 'divide-by-zero' floating-point exceptions mapping to Python's
221 ValueError and the 'overflow' floating-point exception mapping to
222 OverflowError.
223*/
224
225static PyObject *
226math_1(PyObject *arg, double (*func) (double), int can_overflow)
227{
228 return math_1_to_whatever(arg, func, PyFloat_FromDouble, can_overflow);
Jeffrey Yasskinc2155832008-01-05 20:03:11 +0000229}
230
231static PyObject *
Christian Heimes53876d92008-04-19 00:31:39 +0000232math_1_to_int(PyObject *arg, double (*func) (double), int can_overflow)
Jeffrey Yasskinc2155832008-01-05 20:03:11 +0000233{
Christian Heimes53876d92008-04-19 00:31:39 +0000234 return math_1_to_whatever(arg, func, PyLong_FromDouble, can_overflow);
Guido van Rossum85a5fbb1990-10-14 12:07:46 +0000235}
236
Barry Warsaw8b43b191996-12-09 22:32:36 +0000237static PyObject *
Thomas Wouters89f507f2006-12-13 04:49:30 +0000238math_2(PyObject *args, double (*func) (double, double), char *funcname)
Guido van Rossum85a5fbb1990-10-14 12:07:46 +0000239{
Thomas Wouters89f507f2006-12-13 04:49:30 +0000240 PyObject *ox, *oy;
Christian Heimes53876d92008-04-19 00:31:39 +0000241 double x, y, r;
Thomas Wouters89f507f2006-12-13 04:49:30 +0000242 if (! PyArg_UnpackTuple(args, funcname, 2, 2, &ox, &oy))
243 return NULL;
244 x = PyFloat_AsDouble(ox);
245 y = PyFloat_AsDouble(oy);
246 if ((x == -1.0 || y == -1.0) && PyErr_Occurred())
Guido van Rossum85a5fbb1990-10-14 12:07:46 +0000247 return NULL;
248 errno = 0;
Christian Heimes53876d92008-04-19 00:31:39 +0000249 PyFPE_START_PROTECT("in math_2", return 0);
250 r = (*func)(x, y);
251 PyFPE_END_PROTECT(r);
252 if (Py_IS_NAN(r)) {
253 if (!Py_IS_NAN(x) && !Py_IS_NAN(y))
254 errno = EDOM;
255 else
256 errno = 0;
257 }
258 else if (Py_IS_INFINITY(r)) {
259 if (Py_IS_FINITE(x) && Py_IS_FINITE(y))
260 errno = ERANGE;
261 else
262 errno = 0;
263 }
264 if (errno && is_error(r))
Tim Peters1d120612000-10-12 06:10:25 +0000265 return NULL;
Guido van Rossum85a5fbb1990-10-14 12:07:46 +0000266 else
Christian Heimes53876d92008-04-19 00:31:39 +0000267 return PyFloat_FromDouble(r);
Guido van Rossum85a5fbb1990-10-14 12:07:46 +0000268}
269
Christian Heimes53876d92008-04-19 00:31:39 +0000270#define FUNC1(funcname, func, can_overflow, docstring) \
Fred Drake40c48682000-07-03 18:11:56 +0000271 static PyObject * math_##funcname(PyObject *self, PyObject *args) { \
Christian Heimes53876d92008-04-19 00:31:39 +0000272 return math_1(args, func, can_overflow); \
Guido van Rossumc6e22901998-12-04 19:26:43 +0000273 }\
Martin v. Löwis14f8b4c2002-06-13 20:33:02 +0000274 PyDoc_STRVAR(math_##funcname##_doc, docstring);
Guido van Rossum85a5fbb1990-10-14 12:07:46 +0000275
Fred Drake40c48682000-07-03 18:11:56 +0000276#define FUNC2(funcname, func, docstring) \
277 static PyObject * math_##funcname(PyObject *self, PyObject *args) { \
Thomas Wouters89f507f2006-12-13 04:49:30 +0000278 return math_2(args, func, #funcname); \
Guido van Rossumc6e22901998-12-04 19:26:43 +0000279 }\
Martin v. Löwis14f8b4c2002-06-13 20:33:02 +0000280 PyDoc_STRVAR(math_##funcname##_doc, docstring);
Guido van Rossum85a5fbb1990-10-14 12:07:46 +0000281
Christian Heimes53876d92008-04-19 00:31:39 +0000282FUNC1(acos, acos, 0,
Tim Petersfe71f812001-08-07 22:10:00 +0000283 "acos(x)\n\nReturn the arc cosine (measured in radians) of x.")
Christian Heimes53876d92008-04-19 00:31:39 +0000284FUNC1(acosh, acosh, 0,
285 "acosh(x)\n\nReturn the hyperbolic arc cosine (measured in radians) of x.")
286FUNC1(asin, asin, 0,
Tim Petersfe71f812001-08-07 22:10:00 +0000287 "asin(x)\n\nReturn the arc sine (measured in radians) of x.")
Christian Heimes53876d92008-04-19 00:31:39 +0000288FUNC1(asinh, asinh, 0,
289 "asinh(x)\n\nReturn the hyperbolic arc sine (measured in radians) of x.")
290FUNC1(atan, atan, 0,
Tim Petersfe71f812001-08-07 22:10:00 +0000291 "atan(x)\n\nReturn the arc tangent (measured in radians) of x.")
Christian Heimese57950f2008-04-21 13:08:03 +0000292FUNC2(atan2, m_atan2,
Tim Petersfe71f812001-08-07 22:10:00 +0000293 "atan2(y, x)\n\nReturn the arc tangent (measured in radians) of y/x.\n"
294 "Unlike atan(y/x), the signs of both x and y are considered.")
Christian Heimes53876d92008-04-19 00:31:39 +0000295FUNC1(atanh, atanh, 0,
296 "atanh(x)\n\nReturn the hyperbolic arc tangent (measured in radians) of x.")
Guido van Rossum13e05de2007-08-23 22:56:55 +0000297
298static PyObject * math_ceil(PyObject *self, PyObject *number) {
299 static PyObject *ceil_str = NULL;
300 PyObject *method;
301
302 if (ceil_str == NULL) {
Christian Heimesfe82e772008-01-28 02:38:20 +0000303 ceil_str = PyUnicode_InternFromString("__ceil__");
Guido van Rossum13e05de2007-08-23 22:56:55 +0000304 if (ceil_str == NULL)
305 return NULL;
306 }
307
Christian Heimes90aa7642007-12-19 02:45:37 +0000308 method = _PyType_Lookup(Py_TYPE(number), ceil_str);
Guido van Rossum13e05de2007-08-23 22:56:55 +0000309 if (method == NULL)
Christian Heimes53876d92008-04-19 00:31:39 +0000310 return math_1_to_int(number, ceil, 0);
Guido van Rossum13e05de2007-08-23 22:56:55 +0000311 else
312 return PyObject_CallFunction(method, "O", number);
313}
314
315PyDoc_STRVAR(math_ceil_doc,
Jeffrey Yasskinc2155832008-01-05 20:03:11 +0000316 "ceil(x)\n\nReturn the ceiling of x as an int.\n"
Guido van Rossum13e05de2007-08-23 22:56:55 +0000317 "This is the smallest integral value >= x.");
318
Christian Heimes072c0f12008-01-03 23:01:04 +0000319FUNC2(copysign, copysign,
Christian Heimes53876d92008-04-19 00:31:39 +0000320 "copysign(x,y)\n\nReturn x with the sign of y.")
321FUNC1(cos, cos, 0,
322 "cos(x)\n\nReturn the cosine of x (measured in radians).")
323FUNC1(cosh, cosh, 1,
324 "cosh(x)\n\nReturn the hyperbolic cosine of x.")
325FUNC1(exp, exp, 1,
Guido van Rossumc6e22901998-12-04 19:26:43 +0000326 "exp(x)\n\nReturn e raised to the power of x.")
Christian Heimes53876d92008-04-19 00:31:39 +0000327FUNC1(fabs, fabs, 0,
Tim Petersfe71f812001-08-07 22:10:00 +0000328 "fabs(x)\n\nReturn the absolute value of the float x.")
Guido van Rossum13e05de2007-08-23 22:56:55 +0000329
330static PyObject * math_floor(PyObject *self, PyObject *number) {
331 static PyObject *floor_str = NULL;
332 PyObject *method;
333
334 if (floor_str == NULL) {
Christian Heimesfe82e772008-01-28 02:38:20 +0000335 floor_str = PyUnicode_InternFromString("__floor__");
Guido van Rossum13e05de2007-08-23 22:56:55 +0000336 if (floor_str == NULL)
337 return NULL;
338 }
339
Christian Heimes90aa7642007-12-19 02:45:37 +0000340 method = _PyType_Lookup(Py_TYPE(number), floor_str);
Guido van Rossum13e05de2007-08-23 22:56:55 +0000341 if (method == NULL)
Christian Heimes53876d92008-04-19 00:31:39 +0000342 return math_1_to_int(number, floor, 0);
Guido van Rossum13e05de2007-08-23 22:56:55 +0000343 else
344 return PyObject_CallFunction(method, "O", number);
345}
346
347PyDoc_STRVAR(math_floor_doc,
Jeffrey Yasskinc2155832008-01-05 20:03:11 +0000348 "floor(x)\n\nReturn the floor of x as an int.\n"
Guido van Rossum13e05de2007-08-23 22:56:55 +0000349 "This is the largest integral value <= x.");
350
Christian Heimes53876d92008-04-19 00:31:39 +0000351FUNC1(log1p, log1p, 1,
352 "log1p(x)\n\nReturn the natural logarithm of 1+x (base e).\n\
353 The result is computed in a way which is accurate for x near zero.")
354FUNC1(sin, sin, 0,
Tim Petersfe71f812001-08-07 22:10:00 +0000355 "sin(x)\n\nReturn the sine of x (measured in radians).")
Christian Heimes53876d92008-04-19 00:31:39 +0000356FUNC1(sinh, sinh, 1,
Guido van Rossumc6e22901998-12-04 19:26:43 +0000357 "sinh(x)\n\nReturn the hyperbolic sine of x.")
Christian Heimes53876d92008-04-19 00:31:39 +0000358FUNC1(sqrt, sqrt, 0,
Guido van Rossumc6e22901998-12-04 19:26:43 +0000359 "sqrt(x)\n\nReturn the square root of x.")
Christian Heimes53876d92008-04-19 00:31:39 +0000360FUNC1(tan, tan, 0,
Tim Petersfe71f812001-08-07 22:10:00 +0000361 "tan(x)\n\nReturn the tangent of x (measured in radians).")
Christian Heimes53876d92008-04-19 00:31:39 +0000362FUNC1(tanh, tanh, 0,
Guido van Rossumc6e22901998-12-04 19:26:43 +0000363 "tanh(x)\n\nReturn the hyperbolic tangent of x.")
Guido van Rossum85a5fbb1990-10-14 12:07:46 +0000364
Barry Warsaw8b43b191996-12-09 22:32:36 +0000365static PyObject *
Christian Heimes400adb02008-02-01 08:12:03 +0000366math_trunc(PyObject *self, PyObject *number)
367{
368 static PyObject *trunc_str = NULL;
369 PyObject *trunc;
370
371 if (Py_TYPE(number)->tp_dict == NULL) {
372 if (PyType_Ready(Py_TYPE(number)) < 0)
373 return NULL;
374 }
375
376 if (trunc_str == NULL) {
377 trunc_str = PyUnicode_InternFromString("__trunc__");
378 if (trunc_str == NULL)
379 return NULL;
380 }
381
382 trunc = _PyType_Lookup(Py_TYPE(number), trunc_str);
383 if (trunc == NULL) {
384 PyErr_Format(PyExc_TypeError,
385 "type %.100s doesn't define __trunc__ method",
386 Py_TYPE(number)->tp_name);
387 return NULL;
388 }
389 return PyObject_CallFunctionObjArgs(trunc, number, NULL);
390}
391
392PyDoc_STRVAR(math_trunc_doc,
393"trunc(x:Real) -> Integral\n"
394"\n"
Christian Heimes292d3512008-02-03 16:51:08 +0000395"Truncates x to the nearest Integral toward 0. Uses the __trunc__ magic method.");
Christian Heimes400adb02008-02-01 08:12:03 +0000396
397static PyObject *
Thomas Wouters89f507f2006-12-13 04:49:30 +0000398math_frexp(PyObject *self, PyObject *arg)
Guido van Rossumd18ad581991-10-24 14:57:21 +0000399{
Guido van Rossumd18ad581991-10-24 14:57:21 +0000400 int i;
Thomas Wouters89f507f2006-12-13 04:49:30 +0000401 double x = PyFloat_AsDouble(arg);
402 if (x == -1.0 && PyErr_Occurred())
Guido van Rossumd18ad581991-10-24 14:57:21 +0000403 return NULL;
Christian Heimes53876d92008-04-19 00:31:39 +0000404 /* deal with special cases directly, to sidestep platform
405 differences */
406 if (Py_IS_NAN(x) || Py_IS_INFINITY(x) || !x) {
407 i = 0;
408 }
409 else {
410 PyFPE_START_PROTECT("in math_frexp", return 0);
411 x = frexp(x, &i);
412 PyFPE_END_PROTECT(x);
413 }
414 return Py_BuildValue("(di)", x, i);
Guido van Rossumd18ad581991-10-24 14:57:21 +0000415}
416
Martin v. Löwis14f8b4c2002-06-13 20:33:02 +0000417PyDoc_STRVAR(math_frexp_doc,
Tim Peters63c94532001-09-04 23:17:42 +0000418"frexp(x)\n"
419"\n"
420"Return the mantissa and exponent of x, as pair (m, e).\n"
421"m is a float and e is an int, such that x = m * 2.**e.\n"
Martin v. Löwis14f8b4c2002-06-13 20:33:02 +0000422"If x is 0, m and e are both 0. Else 0.5 <= abs(m) < 1.0.");
Guido van Rossumc6e22901998-12-04 19:26:43 +0000423
Barry Warsaw8b43b191996-12-09 22:32:36 +0000424static PyObject *
Fred Drake40c48682000-07-03 18:11:56 +0000425math_ldexp(PyObject *self, PyObject *args)
Guido van Rossumd18ad581991-10-24 14:57:21 +0000426{
Christian Heimes53876d92008-04-19 00:31:39 +0000427 double x, r;
Guido van Rossumc5545052000-05-08 14:29:38 +0000428 int exp;
Fred Drake40c48682000-07-03 18:11:56 +0000429 if (! PyArg_ParseTuple(args, "di:ldexp", &x, &exp))
Guido van Rossumd18ad581991-10-24 14:57:21 +0000430 return NULL;
431 errno = 0;
Christian Heimes53876d92008-04-19 00:31:39 +0000432 PyFPE_START_PROTECT("in math_ldexp", return 0)
433 r = ldexp(x, exp);
434 PyFPE_END_PROTECT(r)
435 if (Py_IS_FINITE(x) && Py_IS_INFINITY(r))
436 errno = ERANGE;
437 /* Windows MSVC8 sets errno = EDOM on ldexp(NaN, i);
438 we unset it to avoid raising a ValueError here. */
439 if (errno == EDOM)
440 errno = 0;
441 if (errno && is_error(r))
Tim Peters1d120612000-10-12 06:10:25 +0000442 return NULL;
Guido van Rossumd18ad581991-10-24 14:57:21 +0000443 else
Christian Heimes53876d92008-04-19 00:31:39 +0000444 return PyFloat_FromDouble(r);
Guido van Rossumd18ad581991-10-24 14:57:21 +0000445}
446
Martin v. Löwis14f8b4c2002-06-13 20:33:02 +0000447PyDoc_STRVAR(math_ldexp_doc,
448"ldexp(x, i) -> x * (2**i)");
Guido van Rossumc6e22901998-12-04 19:26:43 +0000449
Barry Warsaw8b43b191996-12-09 22:32:36 +0000450static PyObject *
Thomas Wouters89f507f2006-12-13 04:49:30 +0000451math_modf(PyObject *self, PyObject *arg)
Guido van Rossumd18ad581991-10-24 14:57:21 +0000452{
Thomas Wouters89f507f2006-12-13 04:49:30 +0000453 double y, x = PyFloat_AsDouble(arg);
454 if (x == -1.0 && PyErr_Occurred())
Guido van Rossumd18ad581991-10-24 14:57:21 +0000455 return NULL;
Christian Heimesa342c012008-04-20 21:01:16 +0000456 /* some platforms don't do the right thing for NaNs and
457 infinities, so we take care of special cases directly. */
458 if (!Py_IS_FINITE(x)) {
459 if (Py_IS_INFINITY(x))
460 return Py_BuildValue("(dd)", copysign(0., x), x);
461 else if (Py_IS_NAN(x))
462 return Py_BuildValue("(dd)", x, x);
463 }
464
Guido van Rossumd18ad581991-10-24 14:57:21 +0000465 errno = 0;
Christian Heimes53876d92008-04-19 00:31:39 +0000466 PyFPE_START_PROTECT("in math_modf", return 0);
Guido van Rossumd18ad581991-10-24 14:57:21 +0000467 x = modf(x, &y);
Christian Heimes53876d92008-04-19 00:31:39 +0000468 PyFPE_END_PROTECT(x);
469 return Py_BuildValue("(dd)", x, y);
Guido van Rossumd18ad581991-10-24 14:57:21 +0000470}
Guido van Rossum85a5fbb1990-10-14 12:07:46 +0000471
Martin v. Löwis14f8b4c2002-06-13 20:33:02 +0000472PyDoc_STRVAR(math_modf_doc,
Tim Peters63c94532001-09-04 23:17:42 +0000473"modf(x)\n"
474"\n"
475"Return the fractional and integer parts of x. Both results carry the sign\n"
Martin v. Löwis14f8b4c2002-06-13 20:33:02 +0000476"of x. The integer part is returned as a real.");
Guido van Rossumc6e22901998-12-04 19:26:43 +0000477
Tim Peters78526162001-09-05 00:53:45 +0000478/* A decent logarithm is easy to compute even for huge longs, but libm can't
479 do that by itself -- loghelper can. func is log or log10, and name is
480 "log" or "log10". Note that overflow isn't possible: a long can contain
481 no more than INT_MAX * SHIFT bits, so has value certainly less than
482 2**(2**64 * 2**16) == 2**2**80, and log2 of that is 2**80, which is
483 small enough to fit in an IEEE single. log and log10 are even smaller.
484*/
485
486static PyObject*
Thomas Wouters89f507f2006-12-13 04:49:30 +0000487loghelper(PyObject* arg, double (*func)(double), char *funcname)
Tim Peters78526162001-09-05 00:53:45 +0000488{
Tim Peters78526162001-09-05 00:53:45 +0000489 /* If it is long, do it ourselves. */
490 if (PyLong_Check(arg)) {
491 double x;
492 int e;
493 x = _PyLong_AsScaledDouble(arg, &e);
494 if (x <= 0.0) {
495 PyErr_SetString(PyExc_ValueError,
496 "math domain error");
497 return NULL;
498 }
Christian Heimesaf98da12008-01-27 15:18:18 +0000499 /* Value is ~= x * 2**(e*PyLong_SHIFT), so the log ~=
500 log(x) + log(2) * e * PyLong_SHIFT.
501 CAUTION: e*PyLong_SHIFT may overflow using int arithmetic,
Tim Peters78526162001-09-05 00:53:45 +0000502 so force use of double. */
Martin v. Löwis9f2e3462007-07-21 17:22:18 +0000503 x = func(x) + (e * (double)PyLong_SHIFT) * func(2.0);
Tim Peters78526162001-09-05 00:53:45 +0000504 return PyFloat_FromDouble(x);
505 }
506
507 /* Else let libm handle it by itself. */
Christian Heimes53876d92008-04-19 00:31:39 +0000508 return math_1(arg, func, 0);
Tim Peters78526162001-09-05 00:53:45 +0000509}
510
511static PyObject *
512math_log(PyObject *self, PyObject *args)
513{
Raymond Hettinger866964c2002-12-14 19:51:34 +0000514 PyObject *arg;
515 PyObject *base = NULL;
516 PyObject *num, *den;
517 PyObject *ans;
Raymond Hettinger866964c2002-12-14 19:51:34 +0000518
Raymond Hettingerea3fdf42002-12-29 16:33:45 +0000519 if (!PyArg_UnpackTuple(args, "log", 1, 2, &arg, &base))
Raymond Hettinger866964c2002-12-14 19:51:34 +0000520 return NULL;
Raymond Hettinger866964c2002-12-14 19:51:34 +0000521
Thomas Wouters89f507f2006-12-13 04:49:30 +0000522 num = loghelper(arg, log, "log");
523 if (num == NULL || base == NULL)
524 return num;
Raymond Hettinger866964c2002-12-14 19:51:34 +0000525
Thomas Wouters89f507f2006-12-13 04:49:30 +0000526 den = loghelper(base, log, "log");
Raymond Hettinger866964c2002-12-14 19:51:34 +0000527 if (den == NULL) {
528 Py_DECREF(num);
529 return NULL;
530 }
531
Neal Norwitzbcc0db82006-03-24 08:14:36 +0000532 ans = PyNumber_TrueDivide(num, den);
Raymond Hettinger866964c2002-12-14 19:51:34 +0000533 Py_DECREF(num);
534 Py_DECREF(den);
535 return ans;
Tim Peters78526162001-09-05 00:53:45 +0000536}
537
Martin v. Löwis14f8b4c2002-06-13 20:33:02 +0000538PyDoc_STRVAR(math_log_doc,
Raymond Hettinger866964c2002-12-14 19:51:34 +0000539"log(x[, base]) -> the logarithm of x to the given base.\n\
540If the base not specified, returns the natural logarithm (base e) of x.");
Tim Peters78526162001-09-05 00:53:45 +0000541
542static PyObject *
Thomas Wouters89f507f2006-12-13 04:49:30 +0000543math_log10(PyObject *self, PyObject *arg)
Tim Peters78526162001-09-05 00:53:45 +0000544{
Thomas Wouters89f507f2006-12-13 04:49:30 +0000545 return loghelper(arg, log10, "log10");
Tim Peters78526162001-09-05 00:53:45 +0000546}
547
Martin v. Löwis14f8b4c2002-06-13 20:33:02 +0000548PyDoc_STRVAR(math_log10_doc,
549"log10(x) -> the base 10 logarithm of x.");
Tim Peters78526162001-09-05 00:53:45 +0000550
Christian Heimes53876d92008-04-19 00:31:39 +0000551static PyObject *
552math_fmod(PyObject *self, PyObject *args)
553{
554 PyObject *ox, *oy;
555 double r, x, y;
556 if (! PyArg_UnpackTuple(args, "fmod", 2, 2, &ox, &oy))
557 return NULL;
558 x = PyFloat_AsDouble(ox);
559 y = PyFloat_AsDouble(oy);
560 if ((x == -1.0 || y == -1.0) && PyErr_Occurred())
561 return NULL;
562 /* fmod(x, +/-Inf) returns x for finite x. */
563 if (Py_IS_INFINITY(y) && Py_IS_FINITE(x))
564 return PyFloat_FromDouble(x);
565 errno = 0;
566 PyFPE_START_PROTECT("in math_fmod", return 0);
567 r = fmod(x, y);
568 PyFPE_END_PROTECT(r);
569 if (Py_IS_NAN(r)) {
570 if (!Py_IS_NAN(x) && !Py_IS_NAN(y))
571 errno = EDOM;
572 else
573 errno = 0;
574 }
575 if (errno && is_error(r))
576 return NULL;
577 else
578 return PyFloat_FromDouble(r);
579}
580
581PyDoc_STRVAR(math_fmod_doc,
582"fmod(x,y)\n\nReturn fmod(x, y), according to platform C."
583" x % y may differ.");
584
585static PyObject *
586math_hypot(PyObject *self, PyObject *args)
587{
588 PyObject *ox, *oy;
589 double r, x, y;
590 if (! PyArg_UnpackTuple(args, "hypot", 2, 2, &ox, &oy))
591 return NULL;
592 x = PyFloat_AsDouble(ox);
593 y = PyFloat_AsDouble(oy);
594 if ((x == -1.0 || y == -1.0) && PyErr_Occurred())
595 return NULL;
596 /* hypot(x, +/-Inf) returns Inf, even if x is a NaN. */
597 if (Py_IS_INFINITY(x))
598 return PyFloat_FromDouble(fabs(x));
599 if (Py_IS_INFINITY(y))
600 return PyFloat_FromDouble(fabs(y));
601 errno = 0;
602 PyFPE_START_PROTECT("in math_hypot", return 0);
603 r = hypot(x, y);
604 PyFPE_END_PROTECT(r);
605 if (Py_IS_NAN(r)) {
606 if (!Py_IS_NAN(x) && !Py_IS_NAN(y))
607 errno = EDOM;
608 else
609 errno = 0;
610 }
611 else if (Py_IS_INFINITY(r)) {
612 if (Py_IS_FINITE(x) && Py_IS_FINITE(y))
613 errno = ERANGE;
614 else
615 errno = 0;
616 }
617 if (errno && is_error(r))
618 return NULL;
619 else
620 return PyFloat_FromDouble(r);
621}
622
623PyDoc_STRVAR(math_hypot_doc,
624"hypot(x,y)\n\nReturn the Euclidean distance, sqrt(x*x + y*y).");
625
626/* pow can't use math_2, but needs its own wrapper: the problem is
627 that an infinite result can arise either as a result of overflow
628 (in which case OverflowError should be raised) or as a result of
629 e.g. 0.**-5. (for which ValueError needs to be raised.)
630*/
631
632static PyObject *
633math_pow(PyObject *self, PyObject *args)
634{
635 PyObject *ox, *oy;
636 double r, x, y;
Christian Heimesa342c012008-04-20 21:01:16 +0000637 int odd_y;
Christian Heimes53876d92008-04-19 00:31:39 +0000638
639 if (! PyArg_UnpackTuple(args, "pow", 2, 2, &ox, &oy))
640 return NULL;
641 x = PyFloat_AsDouble(ox);
642 y = PyFloat_AsDouble(oy);
643 if ((x == -1.0 || y == -1.0) && PyErr_Occurred())
644 return NULL;
Christian Heimesa342c012008-04-20 21:01:16 +0000645
646 /* deal directly with IEEE specials, to cope with problems on various
647 platforms whose semantics don't exactly match C99 */
648 if (!Py_IS_FINITE(x) || !Py_IS_FINITE(y)) {
649 errno = 0;
650 if (Py_IS_NAN(x))
651 r = y == 0. ? 1. : x; /* NaN**0 = 1 */
652 else if (Py_IS_NAN(y))
653 r = x == 1. ? 1. : y; /* 1**NaN = 1 */
654 else if (Py_IS_INFINITY(x)) {
655 odd_y = Py_IS_FINITE(y) && fmod(fabs(y), 2.0) == 1.0;
656 if (y > 0.)
657 r = odd_y ? x : fabs(x);
658 else if (y == 0.)
659 r = 1.;
660 else /* y < 0. */
661 r = odd_y ? copysign(0., x) : 0.;
662 }
663 else if (Py_IS_INFINITY(y)) {
664 if (fabs(x) == 1.0)
665 r = 1.;
666 else if (y > 0. && fabs(x) > 1.0)
667 r = y;
668 else if (y < 0. && fabs(x) < 1.0) {
669 r = -y; /* result is +inf */
670 if (x == 0.) /* 0**-inf: divide-by-zero */
671 errno = EDOM;
672 }
673 else
674 r = 0.;
675 }
Christian Heimes53876d92008-04-19 00:31:39 +0000676 }
Christian Heimesa342c012008-04-20 21:01:16 +0000677 else {
678 /* let libm handle finite**finite */
679 errno = 0;
680 PyFPE_START_PROTECT("in math_pow", return 0);
681 r = pow(x, y);
682 PyFPE_END_PROTECT(r);
683 /* a NaN result should arise only from (-ve)**(finite
684 non-integer); in this case we want to raise ValueError. */
685 if (!Py_IS_FINITE(r)) {
686 if (Py_IS_NAN(r)) {
687 errno = EDOM;
688 }
689 /*
690 an infinite result here arises either from:
691 (A) (+/-0.)**negative (-> divide-by-zero)
692 (B) overflow of x**y with x and y finite
693 */
694 else if (Py_IS_INFINITY(r)) {
695 if (x == 0.)
696 errno = EDOM;
697 else
698 errno = ERANGE;
699 }
700 }
Christian Heimes53876d92008-04-19 00:31:39 +0000701 }
702
703 if (errno && is_error(r))
704 return NULL;
705 else
706 return PyFloat_FromDouble(r);
707}
708
709PyDoc_STRVAR(math_pow_doc,
710"pow(x,y)\n\nReturn x**y (x to the power of y).");
711
Christian Heimes072c0f12008-01-03 23:01:04 +0000712static const double degToRad = Py_MATH_PI / 180.0;
713static const double radToDeg = 180.0 / Py_MATH_PI;
Raymond Hettingerd6f22672002-05-13 03:56:10 +0000714
715static PyObject *
Thomas Wouters89f507f2006-12-13 04:49:30 +0000716math_degrees(PyObject *self, PyObject *arg)
Raymond Hettingerd6f22672002-05-13 03:56:10 +0000717{
Thomas Wouters89f507f2006-12-13 04:49:30 +0000718 double x = PyFloat_AsDouble(arg);
719 if (x == -1.0 && PyErr_Occurred())
Raymond Hettingerd6f22672002-05-13 03:56:10 +0000720 return NULL;
Christian Heimes072c0f12008-01-03 23:01:04 +0000721 return PyFloat_FromDouble(x * radToDeg);
Raymond Hettingerd6f22672002-05-13 03:56:10 +0000722}
723
Martin v. Löwis14f8b4c2002-06-13 20:33:02 +0000724PyDoc_STRVAR(math_degrees_doc,
725"degrees(x) -> converts angle x from radians to degrees");
Raymond Hettingerd6f22672002-05-13 03:56:10 +0000726
727static PyObject *
Thomas Wouters89f507f2006-12-13 04:49:30 +0000728math_radians(PyObject *self, PyObject *arg)
Raymond Hettingerd6f22672002-05-13 03:56:10 +0000729{
Thomas Wouters89f507f2006-12-13 04:49:30 +0000730 double x = PyFloat_AsDouble(arg);
731 if (x == -1.0 && PyErr_Occurred())
Raymond Hettingerd6f22672002-05-13 03:56:10 +0000732 return NULL;
733 return PyFloat_FromDouble(x * degToRad);
734}
735
Martin v. Löwis14f8b4c2002-06-13 20:33:02 +0000736PyDoc_STRVAR(math_radians_doc,
737"radians(x) -> converts angle x from degrees to radians");
Tim Peters78526162001-09-05 00:53:45 +0000738
Christian Heimes072c0f12008-01-03 23:01:04 +0000739static PyObject *
740math_isnan(PyObject *self, PyObject *arg)
741{
742 double x = PyFloat_AsDouble(arg);
743 if (x == -1.0 && PyErr_Occurred())
744 return NULL;
745 return PyBool_FromLong((long)Py_IS_NAN(x));
746}
747
748PyDoc_STRVAR(math_isnan_doc,
749"isnan(x) -> bool\n\
750Checks if float x is not a number (NaN)");
751
752static PyObject *
753math_isinf(PyObject *self, PyObject *arg)
754{
755 double x = PyFloat_AsDouble(arg);
756 if (x == -1.0 && PyErr_Occurred())
757 return NULL;
758 return PyBool_FromLong((long)Py_IS_INFINITY(x));
759}
760
761PyDoc_STRVAR(math_isinf_doc,
762"isinf(x) -> bool\n\
763Checks if float x is infinite (positive or negative)");
764
Barry Warsaw8b43b191996-12-09 22:32:36 +0000765static PyMethodDef math_methods[] = {
Thomas Wouters89f507f2006-12-13 04:49:30 +0000766 {"acos", math_acos, METH_O, math_acos_doc},
Christian Heimes53876d92008-04-19 00:31:39 +0000767 {"acosh", math_acosh, METH_O, math_acosh_doc},
Thomas Wouters89f507f2006-12-13 04:49:30 +0000768 {"asin", math_asin, METH_O, math_asin_doc},
Christian Heimes53876d92008-04-19 00:31:39 +0000769 {"asinh", math_asinh, METH_O, math_asinh_doc},
Thomas Wouters89f507f2006-12-13 04:49:30 +0000770 {"atan", math_atan, METH_O, math_atan_doc},
Fred Drake40c48682000-07-03 18:11:56 +0000771 {"atan2", math_atan2, METH_VARARGS, math_atan2_doc},
Christian Heimes53876d92008-04-19 00:31:39 +0000772 {"atanh", math_atanh, METH_O, math_atanh_doc},
Thomas Wouters89f507f2006-12-13 04:49:30 +0000773 {"ceil", math_ceil, METH_O, math_ceil_doc},
Christian Heimes072c0f12008-01-03 23:01:04 +0000774 {"copysign", math_copysign, METH_VARARGS, math_copysign_doc},
Thomas Wouters89f507f2006-12-13 04:49:30 +0000775 {"cos", math_cos, METH_O, math_cos_doc},
776 {"cosh", math_cosh, METH_O, math_cosh_doc},
777 {"degrees", math_degrees, METH_O, math_degrees_doc},
778 {"exp", math_exp, METH_O, math_exp_doc},
779 {"fabs", math_fabs, METH_O, math_fabs_doc},
780 {"floor", math_floor, METH_O, math_floor_doc},
Fred Drake40c48682000-07-03 18:11:56 +0000781 {"fmod", math_fmod, METH_VARARGS, math_fmod_doc},
Thomas Wouters89f507f2006-12-13 04:49:30 +0000782 {"frexp", math_frexp, METH_O, math_frexp_doc},
Fred Drake40c48682000-07-03 18:11:56 +0000783 {"hypot", math_hypot, METH_VARARGS, math_hypot_doc},
Christian Heimes072c0f12008-01-03 23:01:04 +0000784 {"isinf", math_isinf, METH_O, math_isinf_doc},
785 {"isnan", math_isnan, METH_O, math_isnan_doc},
Fred Drake40c48682000-07-03 18:11:56 +0000786 {"ldexp", math_ldexp, METH_VARARGS, math_ldexp_doc},
787 {"log", math_log, METH_VARARGS, math_log_doc},
Christian Heimes53876d92008-04-19 00:31:39 +0000788 {"log1p", math_log1p, METH_O, math_log1p_doc},
Thomas Wouters89f507f2006-12-13 04:49:30 +0000789 {"log10", math_log10, METH_O, math_log10_doc},
790 {"modf", math_modf, METH_O, math_modf_doc},
Fred Drake40c48682000-07-03 18:11:56 +0000791 {"pow", math_pow, METH_VARARGS, math_pow_doc},
Thomas Wouters89f507f2006-12-13 04:49:30 +0000792 {"radians", math_radians, METH_O, math_radians_doc},
793 {"sin", math_sin, METH_O, math_sin_doc},
794 {"sinh", math_sinh, METH_O, math_sinh_doc},
795 {"sqrt", math_sqrt, METH_O, math_sqrt_doc},
796 {"tan", math_tan, METH_O, math_tan_doc},
797 {"tanh", math_tanh, METH_O, math_tanh_doc},
Christian Heimes400adb02008-02-01 08:12:03 +0000798 {"trunc", math_trunc, METH_O, math_trunc_doc},
Guido van Rossum85a5fbb1990-10-14 12:07:46 +0000799 {NULL, NULL} /* sentinel */
800};
801
Guido van Rossumc6e22901998-12-04 19:26:43 +0000802
Martin v. Löwis14f8b4c2002-06-13 20:33:02 +0000803PyDoc_STRVAR(module_doc,
Tim Peters63c94532001-09-04 23:17:42 +0000804"This module is always available. It provides access to the\n"
Martin v. Löwis14f8b4c2002-06-13 20:33:02 +0000805"mathematical functions defined by the C standard.");
Guido van Rossumc6e22901998-12-04 19:26:43 +0000806
Mark Hammondfe51c6d2002-08-02 02:27:13 +0000807PyMODINIT_FUNC
Thomas Woutersf3f33dc2000-07-21 06:00:07 +0000808initmath(void)
Guido van Rossum85a5fbb1990-10-14 12:07:46 +0000809{
Christian Heimes53876d92008-04-19 00:31:39 +0000810 PyObject *m;
Tim Petersfe71f812001-08-07 22:10:00 +0000811
Guido van Rossumc6e22901998-12-04 19:26:43 +0000812 m = Py_InitModule3("math", math_methods, module_doc);
Neal Norwitz1ac754f2006-01-19 06:09:39 +0000813 if (m == NULL)
814 goto finally;
Barry Warsawfc93f751996-12-17 00:47:03 +0000815
Christian Heimes53876d92008-04-19 00:31:39 +0000816 PyModule_AddObject(m, "pi", PyFloat_FromDouble(Py_MATH_PI));
817 PyModule_AddObject(m, "e", PyFloat_FromDouble(Py_MATH_E));
Barry Warsawfc93f751996-12-17 00:47:03 +0000818
Christian Heimes53876d92008-04-19 00:31:39 +0000819 finally:
Barry Warsaw9bfd2bf2000-09-01 09:01:32 +0000820 return;
Guido van Rossum85a5fbb1990-10-14 12:07:46 +0000821}