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Georg Brandl8ec7f652007-08-15 14:28:01 +00001
2:mod:`math` --- Mathematical functions
3======================================
4
5.. module:: math
6 :synopsis: Mathematical functions (sin() etc.).
7
8
9This module is always available. It provides access to the mathematical
10functions defined by the C standard.
11
12These functions cannot be used with complex numbers; use the functions of the
13same name from the :mod:`cmath` module if you require support for complex
14numbers. The distinction between functions which support complex numbers and
15those which don't is made since most users do not want to learn quite as much
16mathematics as required to understand complex numbers. Receiving an exception
17instead of a complex result allows earlier detection of the unexpected complex
18number used as a parameter, so that the programmer can determine how and why it
19was generated in the first place.
20
21The following functions are provided by this module. Except when explicitly
22noted otherwise, all return values are floats.
23
24Number-theoretic and representation functions:
25
26
27.. function:: ceil(x)
28
Jeffrey Yasskin9871d8f2008-01-05 08:47:13 +000029 Return the ceiling of *x* as a float, the smallest integer value greater than or
30 equal to *x*.
Georg Brandl8ec7f652007-08-15 14:28:01 +000031
32
Christian Heimeseebb79c2008-01-03 22:32:26 +000033.. function:: copysign(x, y)
34
35 Return *x* with the sign of *y*. ``copysign`` copies the sign bit of an IEEE
36 754 float, ``copysign(1, -0.0)`` returns *-1.0*.
37
Andrew M. Kuchling54966a52008-01-04 18:25:05 +000038 .. versionadded:: 2.6
Christian Heimeseebb79c2008-01-03 22:32:26 +000039
40
Georg Brandl8ec7f652007-08-15 14:28:01 +000041.. function:: fabs(x)
42
43 Return the absolute value of *x*.
44
45
46.. function:: floor(x)
47
Jeffrey Yasskin9871d8f2008-01-05 08:47:13 +000048 Return the floor of *x* as a float, the largest integer value less than or equal
49 to *x*.
Georg Brandl8ec7f652007-08-15 14:28:01 +000050
Georg Brandl9749e152008-01-05 19:28:16 +000051 .. versionchanged:: 2.6
52 Added :meth:`__floor__` delegation.
53
Georg Brandl8ec7f652007-08-15 14:28:01 +000054
55.. function:: fmod(x, y)
56
57 Return ``fmod(x, y)``, as defined by the platform C library. Note that the
58 Python expression ``x % y`` may not return the same result. The intent of the C
59 standard is that ``fmod(x, y)`` be exactly (mathematically; to infinite
60 precision) equal to ``x - n*y`` for some integer *n* such that the result has
61 the same sign as *x* and magnitude less than ``abs(y)``. Python's ``x % y``
62 returns a result with the sign of *y* instead, and may not be exactly computable
63 for float arguments. For example, ``fmod(-1e-100, 1e100)`` is ``-1e-100``, but
64 the result of Python's ``-1e-100 % 1e100`` is ``1e100-1e-100``, which cannot be
65 represented exactly as a float, and rounds to the surprising ``1e100``. For
66 this reason, function :func:`fmod` is generally preferred when working with
67 floats, while Python's ``x % y`` is preferred when working with integers.
68
69
70.. function:: frexp(x)
71
72 Return the mantissa and exponent of *x* as the pair ``(m, e)``. *m* is a float
73 and *e* is an integer such that ``x == m * 2**e`` exactly. If *x* is zero,
74 returns ``(0.0, 0)``, otherwise ``0.5 <= abs(m) < 1``. This is used to "pick
75 apart" the internal representation of a float in a portable way.
76
77
Christian Heimese2ca4242008-01-03 20:23:15 +000078.. function:: isinf(x)
79
80 Checks if the float *x* is positive or negative infinite.
81
Andrew M. Kuchling54966a52008-01-04 18:25:05 +000082 .. versionadded:: 2.6
Christian Heimese2ca4242008-01-03 20:23:15 +000083
84
85.. function:: isnan(x)
86
87 Checks if the float *x* is a NaN (not a number). NaNs are part of the
88 IEEE 754 standards. Operation like but not limited to ``inf * 0``,
89 ``inf / inf`` or any operation involving a NaN, e.g. ``nan * 1``, return
90 a NaN.
91
Andrew M. Kuchling54966a52008-01-04 18:25:05 +000092 .. versionadded:: 2.6
Christian Heimese2ca4242008-01-03 20:23:15 +000093
94
Georg Brandl8ec7f652007-08-15 14:28:01 +000095.. function:: ldexp(x, i)
96
97 Return ``x * (2**i)``. This is essentially the inverse of function
98 :func:`frexp`.
99
100
101.. function:: modf(x)
102
103 Return the fractional and integer parts of *x*. Both results carry the sign of
104 *x*, and both are floats.
105
Jeffrey Yasskinca2b69f2008-02-01 06:22:46 +0000106
107.. function:: trunc(x)
108
109 Return the :class:`Real` value *x* truncated to an :class:`Integral` (usually
110 a long integer). Delegates to ``x.__trunc__()``.
111
112 .. versionadded:: 2.6
113
Georg Brandl8ec7f652007-08-15 14:28:01 +0000114Note that :func:`frexp` and :func:`modf` have a different call/return pattern
115than their C equivalents: they take a single argument and return a pair of
116values, rather than returning their second return value through an 'output
117parameter' (there is no such thing in Python).
118
119For the :func:`ceil`, :func:`floor`, and :func:`modf` functions, note that *all*
120floating-point numbers of sufficiently large magnitude are exact integers.
121Python floats typically carry no more than 53 bits of precision (the same as the
122platform C double type), in which case any float *x* with ``abs(x) >= 2**52``
123necessarily has no fractional bits.
124
125Power and logarithmic functions:
126
127
128.. function:: exp(x)
129
130 Return ``e**x``.
131
132
133.. function:: log(x[, base])
134
135 Return the logarithm of *x* to the given *base*. If the *base* is not specified,
136 return the natural logarithm of *x* (that is, the logarithm to base *e*).
137
138 .. versionchanged:: 2.3
139 *base* argument added.
140
141
Christian Heimes6f341092008-04-18 23:13:07 +0000142.. function:: log1p(x)
143
144 Return the natural logarithm of *1+x* (base *e*). The
145 result is calculated in a way which is accurate for *x* near zero.
146
147 .. versionadded:: 2.6
148
149
Georg Brandl8ec7f652007-08-15 14:28:01 +0000150.. function:: log10(x)
151
152 Return the base-10 logarithm of *x*.
153
154
155.. function:: pow(x, y)
156
Christian Heimes6f341092008-04-18 23:13:07 +0000157 Return ``x**y``. ``1.0**y`` returns *1.0*, even for ``1.0**nan``. ``0**y``
158 returns *0.* for all positive *y*, *0* and *NAN*.
159
160 .. versionchanged:: 2.6
161 The outcome of ``1**nan`` and ``0**nan`` was undefined.
Georg Brandl8ec7f652007-08-15 14:28:01 +0000162
163
164.. function:: sqrt(x)
165
166 Return the square root of *x*.
167
168Trigonometric functions:
169
170
171.. function:: acos(x)
172
173 Return the arc cosine of *x*, in radians.
174
175
176.. function:: asin(x)
177
178 Return the arc sine of *x*, in radians.
179
180
181.. function:: atan(x)
182
183 Return the arc tangent of *x*, in radians.
184
185
186.. function:: atan2(y, x)
187
188 Return ``atan(y / x)``, in radians. The result is between ``-pi`` and ``pi``.
189 The vector in the plane from the origin to point ``(x, y)`` makes this angle
190 with the positive X axis. The point of :func:`atan2` is that the signs of both
191 inputs are known to it, so it can compute the correct quadrant for the angle.
192 For example, ``atan(1``) and ``atan2(1, 1)`` are both ``pi/4``, but ``atan2(-1,
193 -1)`` is ``-3*pi/4``.
194
195
196.. function:: cos(x)
197
198 Return the cosine of *x* radians.
199
200
201.. function:: hypot(x, y)
202
203 Return the Euclidean norm, ``sqrt(x*x + y*y)``. This is the length of the vector
204 from the origin to point ``(x, y)``.
205
206
207.. function:: sin(x)
208
209 Return the sine of *x* radians.
210
211
Christian Heimes6f341092008-04-18 23:13:07 +0000212.. function:: asinh(x)
213
214 Return the inverse hyperbolic sine of *x*, in radians.
215
216 .. versionadded:: 2.6
217
218
Georg Brandl8ec7f652007-08-15 14:28:01 +0000219.. function:: tan(x)
220
221 Return the tangent of *x* radians.
222
223Angular conversion:
224
225
226.. function:: degrees(x)
227
228 Converts angle *x* from radians to degrees.
229
230
231.. function:: radians(x)
232
233 Converts angle *x* from degrees to radians.
234
235Hyperbolic functions:
236
237
238.. function:: cosh(x)
239
240 Return the hyperbolic cosine of *x*.
241
242
Christian Heimes6f341092008-04-18 23:13:07 +0000243.. function:: acosh(x)
244
245 Return the inverse hyperbolic cosine of *x*, in radians.
246
247 .. versionadded:: 2.6
248
249
Georg Brandl8ec7f652007-08-15 14:28:01 +0000250.. function:: sinh(x)
251
252 Return the hyperbolic sine of *x*.
253
254
255.. function:: tanh(x)
256
257 Return the hyperbolic tangent of *x*.
258
Christian Heimes6f341092008-04-18 23:13:07 +0000259
260.. function:: atanh(x)
261
262 Return the inverse hyperbolic tangent of *x*, in radians.
263
264 .. versionadded:: 2.6
265
266
Georg Brandl8ec7f652007-08-15 14:28:01 +0000267The module also defines two mathematical constants:
268
269
270.. data:: pi
271
272 The mathematical constant *pi*.
273
274
275.. data:: e
276
277 The mathematical constant *e*.
278
Christian Heimes6f341092008-04-18 23:13:07 +0000279
Georg Brandl8ec7f652007-08-15 14:28:01 +0000280.. note::
281
282 The :mod:`math` module consists mostly of thin wrappers around the platform C
283 math library functions. Behavior in exceptional cases is loosely specified
284 by the C standards, and Python inherits much of its math-function
285 error-reporting behavior from the platform C implementation. As a result,
286 the specific exceptions raised in error cases (and even whether some
287 arguments are considered to be exceptional at all) are not defined in any
288 useful cross-platform or cross-release way. For example, whether
289 ``math.log(0)`` returns ``-Inf`` or raises :exc:`ValueError` or
290 :exc:`OverflowError` isn't defined, and in cases where ``math.log(0)`` raises
291 :exc:`OverflowError`, ``math.log(0L)`` may raise :exc:`ValueError` instead.
292
Christian Heimes6f341092008-04-18 23:13:07 +0000293 All functions return a quite *NaN* if at least one of the args is *NaN*.
294 Signaling *NaN*s raise an exception. The exception type still depends on the
295 platform and libm implementation. It's usually :exc:`ValueError` for *EDOM*
296 and :exc:`OverflowError` for errno *ERANGE*.
297
298 ..versionchanged:: 2.6
299 In earlier versions of Python the outcome of an operation with NaN as
300 input depended on platform and libm implementation.
301
Georg Brandl8ec7f652007-08-15 14:28:01 +0000302
303.. seealso::
304
305 Module :mod:`cmath`
306 Complex number versions of many of these functions.