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math: add zpl stuff (#14543)
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@ -4,13 +4,21 @@
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module math
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pub const (
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epsilon = 2.2204460492503130808472633361816E-16
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e = 2.71828182845904523536028747135266249775724709369995957496696763
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pi = 3.14159265358979323846264338327950288419716939937510582097494459
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pi_2 = pi / 2.0
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pi_4 = pi / 4.0
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phi = 1.61803398874989484820458683436563811772030917980576286213544862
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tau = 6.28318530717958647692528676655900576839433879875021164194988918
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one_over_tau = 1.0 / tau
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one_over_pi = 1.0 / pi
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tau_over2 = tau / 2.0
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tau_over4 = tau / 4.0
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tau_over8 = tau / 8.0
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sqrt2 = 1.41421356237309504880168872420969807856967187537694807317667974
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sqrt_3 = 1.73205080756887729352744634150587236694280525381038062805580697
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sqrt_5 = 2.23606797749978969640917366873127623544061835961152572427089724
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sqrt_e = 1.64872127070012814684865078781416357165377610071014801157507931
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sqrt_pi = 1.77245385090551602729816748334114518279754945612238712821380779
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sqrt_tau = 2.50662827463100050241576528481104525300698674060993831662992357
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@ -19,6 +27,7 @@ pub const (
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log2_e = 1.0 / ln2
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ln10 = 2.30258509299404568401799145468436420760110148862877297603332790
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log10_e = 1.0 / ln10
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two_thirds = 0.66666666666666666666666666666666666666666666666666666666666667
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)
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// Floating-point limit values
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@ -42,6 +42,15 @@ pub fn degrees(radians f64) f64 {
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return radians * (180.0 / pi)
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}
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// angle_diff calculates the difference between angles in radians
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[inline]
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pub fn angle_diff(radian_a f64, radian_b f64) f64 {
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mut delta := fmod(radian_b - radian_a, tau)
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delta = fmod(delta + 1.5 * tau, tau)
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delta -= .5 * tau
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return delta
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}
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[params]
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pub struct DigitParams {
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base int = 10
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@ -222,6 +222,16 @@ fn test_nan() {
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assert nan_f32 != nan_f32
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}
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fn test_angle_diff() {
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for pair in [
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[pi, pi_2, -pi_2],
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[pi_2 * 3.0, pi_2, -pi],
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[pi / 6.0, two_thirds * pi, pi_2],
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] {
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assert angle_diff(pair[0], pair[1]) == pair[2]
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}
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}
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fn test_acos() {
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for i := 0; i < math.vf_.len; i++ {
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a := math.vf_[i] / 10
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