(FPCore (a b angle x-scale y-scale)
:precision binary64
(-
(*
(/
(/
(*
(* (* 2.0 (- (pow b 2.0) (pow a 2.0))) (sin (* (/ angle 180.0) PI)))
(cos (* (/ angle 180.0) PI)))
x-scale)
y-scale)
(/
(/
(*
(* (* 2.0 (- (pow b 2.0) (pow a 2.0))) (sin (* (/ angle 180.0) PI)))
(cos (* (/ angle 180.0) PI)))
x-scale)
y-scale))
(*
(*
4.0
(/
(/
(+
(pow (* a (sin (* (/ angle 180.0) PI))) 2.0)
(pow (* b (cos (* (/ angle 180.0) PI))) 2.0))
x-scale)
x-scale))
(/
(/
(+
(pow (* a (cos (* (/ angle 180.0) PI))) 2.0)
(pow (* b (sin (* (/ angle 180.0) PI))) 2.0))
y-scale)
y-scale))))(FPCore (a b angle x-scale y-scale)
:precision binary64
(if (<= a -8.4656445169403e-227)
(* -4.0 (pow (* b (/ a (* y-scale x-scale))) 2.0))
(if (<= a 8.904505747878003e-182)
(* -4.0 (pow (/ (* b (/ a x-scale)) y-scale) 2.0))
(if (<= a 2.5702775997100276e-123)
(* -4.0 (pow (/ (* b (- a)) (* y-scale (- x-scale))) 2.0))
(* -4.0 (pow (/ (/ (* a b) x-scale) y-scale) 2.0))))))double code(double a, double b, double angle, double x_45_scale, double y_45_scale) {
return ((((((2.0 * (pow(b, 2.0) - pow(a, 2.0))) * sin(((angle / 180.0) * ((double) M_PI)))) * cos(((angle / 180.0) * ((double) M_PI)))) / x_45_scale) / y_45_scale) * (((((2.0 * (pow(b, 2.0) - pow(a, 2.0))) * sin(((angle / 180.0) * ((double) M_PI)))) * cos(((angle / 180.0) * ((double) M_PI)))) / x_45_scale) / y_45_scale)) - ((4.0 * (((pow((a * sin(((angle / 180.0) * ((double) M_PI)))), 2.0) + pow((b * cos(((angle / 180.0) * ((double) M_PI)))), 2.0)) / x_45_scale) / x_45_scale)) * (((pow((a * cos(((angle / 180.0) * ((double) M_PI)))), 2.0) + pow((b * sin(((angle / 180.0) * ((double) M_PI)))), 2.0)) / y_45_scale) / y_45_scale));
}
double code(double a, double b, double angle, double x_45_scale, double y_45_scale) {
double tmp;
if (a <= -8.4656445169403e-227) {
tmp = -4.0 * pow((b * (a / (y_45_scale * x_45_scale))), 2.0);
} else if (a <= 8.904505747878003e-182) {
tmp = -4.0 * pow(((b * (a / x_45_scale)) / y_45_scale), 2.0);
} else if (a <= 2.5702775997100276e-123) {
tmp = -4.0 * pow(((b * -a) / (y_45_scale * -x_45_scale)), 2.0);
} else {
tmp = -4.0 * pow((((a * b) / x_45_scale) / y_45_scale), 2.0);
}
return tmp;
}
public static double code(double a, double b, double angle, double x_45_scale, double y_45_scale) {
return ((((((2.0 * (Math.pow(b, 2.0) - Math.pow(a, 2.0))) * Math.sin(((angle / 180.0) * Math.PI))) * Math.cos(((angle / 180.0) * Math.PI))) / x_45_scale) / y_45_scale) * (((((2.0 * (Math.pow(b, 2.0) - Math.pow(a, 2.0))) * Math.sin(((angle / 180.0) * Math.PI))) * Math.cos(((angle / 180.0) * Math.PI))) / x_45_scale) / y_45_scale)) - ((4.0 * (((Math.pow((a * Math.sin(((angle / 180.0) * Math.PI))), 2.0) + Math.pow((b * Math.cos(((angle / 180.0) * Math.PI))), 2.0)) / x_45_scale) / x_45_scale)) * (((Math.pow((a * Math.cos(((angle / 180.0) * Math.PI))), 2.0) + Math.pow((b * Math.sin(((angle / 180.0) * Math.PI))), 2.0)) / y_45_scale) / y_45_scale));
}
public static double code(double a, double b, double angle, double x_45_scale, double y_45_scale) {
double tmp;
if (a <= -8.4656445169403e-227) {
tmp = -4.0 * Math.pow((b * (a / (y_45_scale * x_45_scale))), 2.0);
} else if (a <= 8.904505747878003e-182) {
tmp = -4.0 * Math.pow(((b * (a / x_45_scale)) / y_45_scale), 2.0);
} else if (a <= 2.5702775997100276e-123) {
tmp = -4.0 * Math.pow(((b * -a) / (y_45_scale * -x_45_scale)), 2.0);
} else {
tmp = -4.0 * Math.pow((((a * b) / x_45_scale) / y_45_scale), 2.0);
}
return tmp;
}
def code(a, b, angle, x_45_scale, y_45_scale): return ((((((2.0 * (math.pow(b, 2.0) - math.pow(a, 2.0))) * math.sin(((angle / 180.0) * math.pi))) * math.cos(((angle / 180.0) * math.pi))) / x_45_scale) / y_45_scale) * (((((2.0 * (math.pow(b, 2.0) - math.pow(a, 2.0))) * math.sin(((angle / 180.0) * math.pi))) * math.cos(((angle / 180.0) * math.pi))) / x_45_scale) / y_45_scale)) - ((4.0 * (((math.pow((a * math.sin(((angle / 180.0) * math.pi))), 2.0) + math.pow((b * math.cos(((angle / 180.0) * math.pi))), 2.0)) / x_45_scale) / x_45_scale)) * (((math.pow((a * math.cos(((angle / 180.0) * math.pi))), 2.0) + math.pow((b * math.sin(((angle / 180.0) * math.pi))), 2.0)) / y_45_scale) / y_45_scale))
def code(a, b, angle, x_45_scale, y_45_scale): tmp = 0 if a <= -8.4656445169403e-227: tmp = -4.0 * math.pow((b * (a / (y_45_scale * x_45_scale))), 2.0) elif a <= 8.904505747878003e-182: tmp = -4.0 * math.pow(((b * (a / x_45_scale)) / y_45_scale), 2.0) elif a <= 2.5702775997100276e-123: tmp = -4.0 * math.pow(((b * -a) / (y_45_scale * -x_45_scale)), 2.0) else: tmp = -4.0 * math.pow((((a * b) / x_45_scale) / y_45_scale), 2.0) return tmp
function code(a, b, angle, x_45_scale, y_45_scale) return Float64(Float64(Float64(Float64(Float64(Float64(Float64(2.0 * Float64((b ^ 2.0) - (a ^ 2.0))) * sin(Float64(Float64(angle / 180.0) * pi))) * cos(Float64(Float64(angle / 180.0) * pi))) / x_45_scale) / y_45_scale) * Float64(Float64(Float64(Float64(Float64(2.0 * Float64((b ^ 2.0) - (a ^ 2.0))) * sin(Float64(Float64(angle / 180.0) * pi))) * cos(Float64(Float64(angle / 180.0) * pi))) / x_45_scale) / y_45_scale)) - Float64(Float64(4.0 * Float64(Float64(Float64((Float64(a * sin(Float64(Float64(angle / 180.0) * pi))) ^ 2.0) + (Float64(b * cos(Float64(Float64(angle / 180.0) * pi))) ^ 2.0)) / x_45_scale) / x_45_scale)) * Float64(Float64(Float64((Float64(a * cos(Float64(Float64(angle / 180.0) * pi))) ^ 2.0) + (Float64(b * sin(Float64(Float64(angle / 180.0) * pi))) ^ 2.0)) / y_45_scale) / y_45_scale))) end
function code(a, b, angle, x_45_scale, y_45_scale) tmp = 0.0 if (a <= -8.4656445169403e-227) tmp = Float64(-4.0 * (Float64(b * Float64(a / Float64(y_45_scale * x_45_scale))) ^ 2.0)); elseif (a <= 8.904505747878003e-182) tmp = Float64(-4.0 * (Float64(Float64(b * Float64(a / x_45_scale)) / y_45_scale) ^ 2.0)); elseif (a <= 2.5702775997100276e-123) tmp = Float64(-4.0 * (Float64(Float64(b * Float64(-a)) / Float64(y_45_scale * Float64(-x_45_scale))) ^ 2.0)); else tmp = Float64(-4.0 * (Float64(Float64(Float64(a * b) / x_45_scale) / y_45_scale) ^ 2.0)); end return tmp end
function tmp = code(a, b, angle, x_45_scale, y_45_scale) tmp = ((((((2.0 * ((b ^ 2.0) - (a ^ 2.0))) * sin(((angle / 180.0) * pi))) * cos(((angle / 180.0) * pi))) / x_45_scale) / y_45_scale) * (((((2.0 * ((b ^ 2.0) - (a ^ 2.0))) * sin(((angle / 180.0) * pi))) * cos(((angle / 180.0) * pi))) / x_45_scale) / y_45_scale)) - ((4.0 * (((((a * sin(((angle / 180.0) * pi))) ^ 2.0) + ((b * cos(((angle / 180.0) * pi))) ^ 2.0)) / x_45_scale) / x_45_scale)) * (((((a * cos(((angle / 180.0) * pi))) ^ 2.0) + ((b * sin(((angle / 180.0) * pi))) ^ 2.0)) / y_45_scale) / y_45_scale)); end
function tmp_2 = code(a, b, angle, x_45_scale, y_45_scale) tmp = 0.0; if (a <= -8.4656445169403e-227) tmp = -4.0 * ((b * (a / (y_45_scale * x_45_scale))) ^ 2.0); elseif (a <= 8.904505747878003e-182) tmp = -4.0 * (((b * (a / x_45_scale)) / y_45_scale) ^ 2.0); elseif (a <= 2.5702775997100276e-123) tmp = -4.0 * (((b * -a) / (y_45_scale * -x_45_scale)) ^ 2.0); else tmp = -4.0 * ((((a * b) / x_45_scale) / y_45_scale) ^ 2.0); end tmp_2 = tmp; end
code[a_, b_, angle_, x$45$scale_, y$45$scale_] := N[(N[(N[(N[(N[(N[(N[(2.0 * N[(N[Power[b, 2.0], $MachinePrecision] - N[Power[a, 2.0], $MachinePrecision]), $MachinePrecision]), $MachinePrecision] * N[Sin[N[(N[(angle / 180.0), $MachinePrecision] * Pi), $MachinePrecision]], $MachinePrecision]), $MachinePrecision] * N[Cos[N[(N[(angle / 180.0), $MachinePrecision] * Pi), $MachinePrecision]], $MachinePrecision]), $MachinePrecision] / x$45$scale), $MachinePrecision] / y$45$scale), $MachinePrecision] * N[(N[(N[(N[(N[(2.0 * N[(N[Power[b, 2.0], $MachinePrecision] - N[Power[a, 2.0], $MachinePrecision]), $MachinePrecision]), $MachinePrecision] * N[Sin[N[(N[(angle / 180.0), $MachinePrecision] * Pi), $MachinePrecision]], $MachinePrecision]), $MachinePrecision] * N[Cos[N[(N[(angle / 180.0), $MachinePrecision] * Pi), $MachinePrecision]], $MachinePrecision]), $MachinePrecision] / x$45$scale), $MachinePrecision] / y$45$scale), $MachinePrecision]), $MachinePrecision] - N[(N[(4.0 * N[(N[(N[(N[Power[N[(a * N[Sin[N[(N[(angle / 180.0), $MachinePrecision] * Pi), $MachinePrecision]], $MachinePrecision]), $MachinePrecision], 2.0], $MachinePrecision] + N[Power[N[(b * N[Cos[N[(N[(angle / 180.0), $MachinePrecision] * Pi), $MachinePrecision]], $MachinePrecision]), $MachinePrecision], 2.0], $MachinePrecision]), $MachinePrecision] / x$45$scale), $MachinePrecision] / x$45$scale), $MachinePrecision]), $MachinePrecision] * N[(N[(N[(N[Power[N[(a * N[Cos[N[(N[(angle / 180.0), $MachinePrecision] * Pi), $MachinePrecision]], $MachinePrecision]), $MachinePrecision], 2.0], $MachinePrecision] + N[Power[N[(b * N[Sin[N[(N[(angle / 180.0), $MachinePrecision] * Pi), $MachinePrecision]], $MachinePrecision]), $MachinePrecision], 2.0], $MachinePrecision]), $MachinePrecision] / y$45$scale), $MachinePrecision] / y$45$scale), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]
code[a_, b_, angle_, x$45$scale_, y$45$scale_] := If[LessEqual[a, -8.4656445169403e-227], N[(-4.0 * N[Power[N[(b * N[(a / N[(y$45$scale * x$45$scale), $MachinePrecision]), $MachinePrecision]), $MachinePrecision], 2.0], $MachinePrecision]), $MachinePrecision], If[LessEqual[a, 8.904505747878003e-182], N[(-4.0 * N[Power[N[(N[(b * N[(a / x$45$scale), $MachinePrecision]), $MachinePrecision] / y$45$scale), $MachinePrecision], 2.0], $MachinePrecision]), $MachinePrecision], If[LessEqual[a, 2.5702775997100276e-123], N[(-4.0 * N[Power[N[(N[(b * (-a)), $MachinePrecision] / N[(y$45$scale * (-x$45$scale)), $MachinePrecision]), $MachinePrecision], 2.0], $MachinePrecision]), $MachinePrecision], N[(-4.0 * N[Power[N[(N[(N[(a * b), $MachinePrecision] / x$45$scale), $MachinePrecision] / y$45$scale), $MachinePrecision], 2.0], $MachinePrecision]), $MachinePrecision]]]]
\frac{\frac{\left(\left(2 \cdot \left({b}^{2} - {a}^{2}\right)\right) \cdot \sin \left(\frac{angle}{180} \cdot \pi\right)\right) \cdot \cos \left(\frac{angle}{180} \cdot \pi\right)}{x-scale}}{y-scale} \cdot \frac{\frac{\left(\left(2 \cdot \left({b}^{2} - {a}^{2}\right)\right) \cdot \sin \left(\frac{angle}{180} \cdot \pi\right)\right) \cdot \cos \left(\frac{angle}{180} \cdot \pi\right)}{x-scale}}{y-scale} - \left(4 \cdot \frac{\frac{{\left(a \cdot \sin \left(\frac{angle}{180} \cdot \pi\right)\right)}^{2} + {\left(b \cdot \cos \left(\frac{angle}{180} \cdot \pi\right)\right)}^{2}}{x-scale}}{x-scale}\right) \cdot \frac{\frac{{\left(a \cdot \cos \left(\frac{angle}{180} \cdot \pi\right)\right)}^{2} + {\left(b \cdot \sin \left(\frac{angle}{180} \cdot \pi\right)\right)}^{2}}{y-scale}}{y-scale}
\begin{array}{l}
\mathbf{if}\;a \leq -8.4656445169403 \cdot 10^{-227}:\\
\;\;\;\;-4 \cdot {\left(b \cdot \frac{a}{y-scale \cdot x-scale}\right)}^{2}\\
\mathbf{elif}\;a \leq 8.904505747878003 \cdot 10^{-182}:\\
\;\;\;\;-4 \cdot {\left(\frac{b \cdot \frac{a}{x-scale}}{y-scale}\right)}^{2}\\
\mathbf{elif}\;a \leq 2.5702775997100276 \cdot 10^{-123}:\\
\;\;\;\;-4 \cdot {\left(\frac{b \cdot \left(-a\right)}{y-scale \cdot \left(-x-scale\right)}\right)}^{2}\\
\mathbf{else}:\\
\;\;\;\;-4 \cdot {\left(\frac{\frac{a \cdot b}{x-scale}}{y-scale}\right)}^{2}\\
\end{array}



Bits error versus a



Bits error versus b



Bits error versus angle



Bits error versus x-scale



Bits error versus y-scale
Results
if a < -8.4656445169403004e-227Initial program 44.0
Taylor expanded in angle around 0 40.8
Simplified33.0
Applied egg-rr5.9
Taylor expanded in b around 0 5.7
Simplified5.9
if -8.4656445169403004e-227 < a < 8.90450574787800283e-182Initial program 33.5
Taylor expanded in angle around 0 37.0
Simplified29.7
Applied egg-rr6.4
Applied egg-rr4.6
if 8.90450574787800283e-182 < a < 2.5702775997100276e-123Initial program 30.8
Taylor expanded in angle around 0 34.0
Simplified23.6
Applied egg-rr4.8
Applied egg-rr5.0
if 2.5702775997100276e-123 < a Initial program 46.1
Taylor expanded in angle around 0 42.1
Simplified33.6
Applied egg-rr6.6
Applied egg-rr6.4
Final simplification5.7
herbie shell --seed 2022151
(FPCore (a b angle x-scale y-scale)
:name "Simplification of discriminant from scale-rotated-ellipse"
:precision binary64
(- (* (/ (/ (* (* (* 2.0 (- (pow b 2.0) (pow a 2.0))) (sin (* (/ angle 180.0) PI))) (cos (* (/ angle 180.0) PI))) x-scale) y-scale) (/ (/ (* (* (* 2.0 (- (pow b 2.0) (pow a 2.0))) (sin (* (/ angle 180.0) PI))) (cos (* (/ angle 180.0) PI))) x-scale) y-scale)) (* (* 4.0 (/ (/ (+ (pow (* a (sin (* (/ angle 180.0) PI))) 2.0) (pow (* b (cos (* (/ angle 180.0) PI))) 2.0)) x-scale) x-scale)) (/ (/ (+ (pow (* a (cos (* (/ angle 180.0) PI))) 2.0) (pow (* b (sin (* (/ angle 180.0) PI))) 2.0)) y-scale) y-scale))))