Coverage Report

Created: 2025-12-10 06:35

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/rust/registry/src/index.crates.io-1949cf8c6b5b557f/libm-0.2.11/src/math/atanf.rs
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/* origin: FreeBSD /usr/src/lib/msun/src/s_atanf.c */
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/*
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 * Conversion to float by Ian Lance Taylor, Cygnus Support, ian@cygnus.com.
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 */
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/*
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 * ====================================================
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 * Copyright (C) 1993 by Sun Microsystems, Inc. All rights reserved.
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 *
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 * Developed at SunPro, a Sun Microsystems, Inc. business.
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 * Permission to use, copy, modify, and distribute this
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 * software is freely granted, provided that this notice
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 * is preserved.
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 * ====================================================
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 */
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use super::fabsf;
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const ATAN_HI: [f32; 4] = [
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    4.6364760399e-01, /* atan(0.5)hi 0x3eed6338 */
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    7.8539812565e-01, /* atan(1.0)hi 0x3f490fda */
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    9.8279368877e-01, /* atan(1.5)hi 0x3f7b985e */
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    1.5707962513e+00, /* atan(inf)hi 0x3fc90fda */
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];
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const ATAN_LO: [f32; 4] = [
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    5.0121582440e-09, /* atan(0.5)lo 0x31ac3769 */
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    3.7748947079e-08, /* atan(1.0)lo 0x33222168 */
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    3.4473217170e-08, /* atan(1.5)lo 0x33140fb4 */
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    7.5497894159e-08, /* atan(inf)lo 0x33a22168 */
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];
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const A_T: [f32; 5] =
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    [3.3333328366e-01, -1.9999158382e-01, 1.4253635705e-01, -1.0648017377e-01, 6.1687607318e-02];
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/// Arctangent (f32)
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///
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/// Computes the inverse tangent (arc tangent) of the input value.
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/// Returns a value in radians, in the range of -pi/2 to pi/2.
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#[cfg_attr(all(test, assert_no_panic), no_panic::no_panic)]
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0
pub fn atanf(mut x: f32) -> f32 {
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0
    let x1p_120 = f32::from_bits(0x03800000); // 0x1p-120 === 2 ^ (-120)
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    let z: f32;
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    let mut ix = x.to_bits();
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    let sign = (ix >> 31) != 0;
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0
    ix &= 0x7fffffff;
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    if ix >= 0x4c800000 {
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        /* if |x| >= 2**26 */
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0
        if x.is_nan() {
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0
            return x;
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0
        }
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        z = i!(ATAN_HI, 3) + x1p_120;
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        return if sign { -z } else { z };
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0
    }
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    let id = if ix < 0x3ee00000 {
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        /* |x| < 0.4375 */
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        if ix < 0x39800000 {
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            /* |x| < 2**-12 */
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            if ix < 0x00800000 {
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0
                /* raise underflow for subnormal x */
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                force_eval!(x * x);
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0
            }
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            return x;
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0
        }
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        -1
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    } else {
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0
        x = fabsf(x);
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0
        if ix < 0x3f980000 {
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            /* |x| < 1.1875 */
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            if ix < 0x3f300000 {
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                /*  7/16 <= |x| < 11/16 */
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                x = (2. * x - 1.) / (2. + x);
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0
                0
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            } else {
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                /* 11/16 <= |x| < 19/16 */
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                x = (x - 1.) / (x + 1.);
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                1
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            }
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0
        } else if ix < 0x401c0000 {
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            /* |x| < 2.4375 */
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            x = (x - 1.5) / (1. + 1.5 * x);
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            2
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        } else {
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            /* 2.4375 <= |x| < 2**26 */
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            x = -1. / x;
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            3
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        }
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    };
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    /* end of argument reduction */
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    z = x * x;
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    let w = z * z;
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    /* break sum from i=0 to 10 aT[i]z**(i+1) into odd and even poly */
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    let s1 = z * (i!(A_T, 0) + w * (i!(A_T, 2) + w * i!(A_T, 4)));
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    let s2 = w * (i!(A_T, 1) + w * i!(A_T, 3));
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    if id < 0 {
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        return x - x * (s1 + s2);
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    }
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    let id = id as usize;
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    let z = i!(ATAN_HI, id) - ((x * (s1 + s2) - i!(ATAN_LO, id)) - x);
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    if sign { -z } else { z }
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0
}