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gh-122681: remove m_atan2()/c_atan2() helpers (#122715)
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@ -23,42 +23,3 @@ _Py_log1p(double x)
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}
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#define m_log1p _Py_log1p
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/*
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wrapper for atan2 that deals directly with special cases before
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delegating to the platform libm for the remaining cases. This
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is necessary to get consistent behaviour across platforms.
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Windows, FreeBSD and alpha Tru64 are amongst platforms that don't
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always follow C99. Windows screws up atan2 for inf and nan, and
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alpha Tru64 5.1 doesn't follow C99 for atan2(0., 0.).
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*/
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static double
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_Py_atan2(double y, double x)
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{
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if (isnan(x) || isnan(y))
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return Py_NAN;
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if (isinf(y)) {
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if (isinf(x)) {
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if (copysign(1., x) == 1.)
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/* atan2(+-inf, +inf) == +-pi/4 */
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return copysign(0.25*Py_MATH_PI, y);
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else
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/* atan2(+-inf, -inf) == +-pi*3/4 */
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return copysign(0.75*Py_MATH_PI, y);
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}
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/* atan2(+-inf, x) == +-pi/2 for finite x */
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return copysign(0.5*Py_MATH_PI, y);
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}
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if (isinf(x) || y == 0.) {
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if (copysign(1., x) == 1.)
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/* atan2(+-y, +inf) = atan2(+-0, +x) = +-0. */
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return copysign(0., y);
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else
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/* atan2(+-y, -inf) = atan2(+-0., -x) = +-pi. */
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return copysign(Py_MATH_PI, y);
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}
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return atan2(y, x);
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}
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#define m_atan2 _Py_atan2
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@ -925,7 +925,7 @@ cmath_phase_impl(PyObject *module, Py_complex z)
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double phi;
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errno = 0;
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phi = m_atan2(z.imag, z.real); /* should not cause any exception */
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phi = atan2(z.imag, z.real); /* should not cause any exception */
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if (errno != 0)
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return math_error();
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else
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@ -950,7 +950,7 @@ cmath_polar_impl(PyObject *module, Py_complex z)
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double r, phi;
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errno = 0;
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phi = m_atan2(z.imag, z.real); /* should not cause any exception */
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phi = atan2(z.imag, z.real); /* should not cause any exception */
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r = _Py_c_abs(z); /* sets errno to ERANGE on overflow */
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if (errno != 0)
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return math_error();
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@ -1066,7 +1066,7 @@ FUNC1(atan, atan, 0,
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"atan($module, x, /)\n--\n\n"
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"Return the arc tangent (measured in radians) of x.\n\n"
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"The result is between -pi/2 and pi/2.")
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FUNC2(atan2, m_atan2,
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FUNC2(atan2, atan2,
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"atan2($module, y, x, /)\n--\n\n"
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"Return the arc tangent (measured in radians) of y/x.\n\n"
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"Unlike atan(y/x), the signs of both x and y are considered.")
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