diff -r 0fd72636de2b Objects/floatobject.c --- a/Objects/floatobject.c Fri Sep 20 23:28:27 2013 +0300 +++ b/Objects/floatobject.c Sun Sep 22 08:39:36 2013 +0200 @@ -1498,9 +1498,9 @@ PyDoc_STRVAR(float_as_integer_ratio_doc, "float.as_integer_ratio() -> (int, int)\n" "\n" -"Returns a pair of integers, whose ratio is exactly equal to the original\n" +"Return a pair of integers, whose ratio is exactly equal to the original\n" "float and with a positive denominator.\n" -"Raises OverflowError on infinities and a ValueError on NaNs.\n" +"Raise OverflowError on infinities and a ValueError on NaNs.\n" "\n" ">>> (10.0).as_integer_ratio()\n" "(10, 1)\n" @@ -1687,7 +1687,7 @@ "'IEEE, big-endian' or 'IEEE, little-endian', and in addition can only be\n" "one of the latter two if it appears to match the underlying C reality.\n" "\n" -"Overrides the automatic determination of C-level floating point type.\n" +"Override the automatic determination of C-level floating point type.\n" "This affects how floats are converted to and from binary strings."); static PyObject * @@ -1726,12 +1726,12 @@ static PyMethodDef float_methods[] = { {"conjugate", (PyCFunction)float_float, METH_NOARGS, - "Returns self, the complex conjugate of any float."}, + "Return self, the complex conjugate of any float."}, {"__trunc__", (PyCFunction)float_trunc, METH_NOARGS, - "Returns the Integral closest to x between 0 and x."}, + "Return the Integral closest to x between 0 and x."}, {"__round__", (PyCFunction)float_round, METH_VARARGS, - "Returns the Integral closest to x, rounding half toward even.\n" - "When an argument is passed, works like built-in round(x, ndigits)."}, + "Return the Integral closest to x, rounding half toward even.\n" + "When an argument is passed, work like built-in round(x, ndigits)."}, {"as_integer_ratio", (PyCFunction)float_as_integer_ratio, METH_NOARGS, float_as_integer_ratio_doc}, {"fromhex", (PyCFunction)float_fromhex, @@ -1739,14 +1739,14 @@ {"hex", (PyCFunction)float_hex, METH_NOARGS, float_hex_doc}, {"is_integer", (PyCFunction)float_is_integer, METH_NOARGS, - "Returns True if the float is an integer."}, + "Return True if the float is an integer."}, #if 0 {"is_inf", (PyCFunction)float_is_inf, METH_NOARGS, - "Returns True if the float is positive or negative infinite."}, + "Return True if the float is positive or negative infinite."}, {"is_finite", (PyCFunction)float_is_finite, METH_NOARGS, - "Returns True if the float is finite, neither infinite nor NaN."}, + "Return True if the float is finite, neither infinite nor NaN."}, {"is_nan", (PyCFunction)float_is_nan, METH_NOARGS, - "Returns True if the float is not a number (NaN)."}, + "Return True if the float is not a number (NaN)."}, #endif {"__getnewargs__", (PyCFunction)float_getnewargs, METH_NOARGS}, {"__getformat__", (PyCFunction)float_getformat,