
(FPCore (x y z) :precision binary64 (+ (+ (+ (+ (+ x y) y) x) z) x))
double code(double x, double y, double z) {
return ((((x + y) + y) + x) + z) + x;
}
real(8) function code(x, y, z)
real(8), intent (in) :: x
real(8), intent (in) :: y
real(8), intent (in) :: z
code = ((((x + y) + y) + x) + z) + x
end function
public static double code(double x, double y, double z) {
return ((((x + y) + y) + x) + z) + x;
}
def code(x, y, z): return ((((x + y) + y) + x) + z) + x
function code(x, y, z) return Float64(Float64(Float64(Float64(Float64(x + y) + y) + x) + z) + x) end
function tmp = code(x, y, z) tmp = ((((x + y) + y) + x) + z) + x; end
code[x_, y_, z_] := N[(N[(N[(N[(N[(x + y), $MachinePrecision] + y), $MachinePrecision] + x), $MachinePrecision] + z), $MachinePrecision] + x), $MachinePrecision]
\begin{array}{l}
\\
\left(\left(\left(\left(x + y\right) + y\right) + x\right) + z\right) + x
\end{array}
Sampling outcomes in binary64 precision:
Herbie found 10 alternatives:
| Alternative | Accuracy | Speedup |
|---|
(FPCore (x y z) :precision binary64 (+ (+ (+ (+ (+ x y) y) x) z) x))
double code(double x, double y, double z) {
return ((((x + y) + y) + x) + z) + x;
}
real(8) function code(x, y, z)
real(8), intent (in) :: x
real(8), intent (in) :: y
real(8), intent (in) :: z
code = ((((x + y) + y) + x) + z) + x
end function
public static double code(double x, double y, double z) {
return ((((x + y) + y) + x) + z) + x;
}
def code(x, y, z): return ((((x + y) + y) + x) + z) + x
function code(x, y, z) return Float64(Float64(Float64(Float64(Float64(x + y) + y) + x) + z) + x) end
function tmp = code(x, y, z) tmp = ((((x + y) + y) + x) + z) + x; end
code[x_, y_, z_] := N[(N[(N[(N[(N[(x + y), $MachinePrecision] + y), $MachinePrecision] + x), $MachinePrecision] + z), $MachinePrecision] + x), $MachinePrecision]
\begin{array}{l}
\\
\left(\left(\left(\left(x + y\right) + y\right) + x\right) + z\right) + x
\end{array}
(FPCore (x y z) :precision binary64 (+ z (fma x 3.0 (* y 2.0))))
double code(double x, double y, double z) {
return z + fma(x, 3.0, (y * 2.0));
}
function code(x, y, z) return Float64(z + fma(x, 3.0, Float64(y * 2.0))) end
code[x_, y_, z_] := N[(z + N[(x * 3.0 + N[(y * 2.0), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]
\begin{array}{l}
\\
z + \mathsf{fma}\left(x, 3, y \cdot 2\right)
\end{array}
Initial program 99.9%
+-commutative99.9%
associate-+l+99.9%
+-commutative99.9%
+-commutative99.9%
associate-+l+99.9%
associate-+r+99.9%
associate-+r+99.9%
*-lft-identity99.9%
metadata-eval99.9%
count-299.9%
distribute-rgt-out99.9%
fma-define100.0%
metadata-eval100.0%
metadata-eval100.0%
count-2100.0%
*-commutative100.0%
Simplified100.0%
(FPCore (x y z) :precision binary64 (if (<= x -9.5e-64) (+ z (* x 3.0)) (if (<= x 1.4e+45) (+ z (* y 2.0)) (+ (* x 3.0) (* y 2.0)))))
double code(double x, double y, double z) {
double tmp;
if (x <= -9.5e-64) {
tmp = z + (x * 3.0);
} else if (x <= 1.4e+45) {
tmp = z + (y * 2.0);
} else {
tmp = (x * 3.0) + (y * 2.0);
}
return tmp;
}
real(8) function code(x, y, z)
real(8), intent (in) :: x
real(8), intent (in) :: y
real(8), intent (in) :: z
real(8) :: tmp
if (x <= (-9.5d-64)) then
tmp = z + (x * 3.0d0)
else if (x <= 1.4d+45) then
tmp = z + (y * 2.0d0)
else
tmp = (x * 3.0d0) + (y * 2.0d0)
end if
code = tmp
end function
public static double code(double x, double y, double z) {
double tmp;
if (x <= -9.5e-64) {
tmp = z + (x * 3.0);
} else if (x <= 1.4e+45) {
tmp = z + (y * 2.0);
} else {
tmp = (x * 3.0) + (y * 2.0);
}
return tmp;
}
def code(x, y, z): tmp = 0 if x <= -9.5e-64: tmp = z + (x * 3.0) elif x <= 1.4e+45: tmp = z + (y * 2.0) else: tmp = (x * 3.0) + (y * 2.0) return tmp
function code(x, y, z) tmp = 0.0 if (x <= -9.5e-64) tmp = Float64(z + Float64(x * 3.0)); elseif (x <= 1.4e+45) tmp = Float64(z + Float64(y * 2.0)); else tmp = Float64(Float64(x * 3.0) + Float64(y * 2.0)); end return tmp end
function tmp_2 = code(x, y, z) tmp = 0.0; if (x <= -9.5e-64) tmp = z + (x * 3.0); elseif (x <= 1.4e+45) tmp = z + (y * 2.0); else tmp = (x * 3.0) + (y * 2.0); end tmp_2 = tmp; end
code[x_, y_, z_] := If[LessEqual[x, -9.5e-64], N[(z + N[(x * 3.0), $MachinePrecision]), $MachinePrecision], If[LessEqual[x, 1.4e+45], N[(z + N[(y * 2.0), $MachinePrecision]), $MachinePrecision], N[(N[(x * 3.0), $MachinePrecision] + N[(y * 2.0), $MachinePrecision]), $MachinePrecision]]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq -9.5 \cdot 10^{-64}:\\
\;\;\;\;z + x \cdot 3\\
\mathbf{elif}\;x \leq 1.4 \cdot 10^{+45}:\\
\;\;\;\;z + y \cdot 2\\
\mathbf{else}:\\
\;\;\;\;x \cdot 3 + y \cdot 2\\
\end{array}
\end{array}
if x < -9.50000000000000043e-64Initial program 99.9%
+-commutative99.9%
associate-+l+99.9%
+-commutative99.9%
+-commutative99.9%
associate-+l+99.9%
associate-+r+99.9%
associate-+r+99.9%
*-lft-identity99.9%
metadata-eval99.9%
count-299.9%
distribute-rgt-out99.9%
fma-define99.9%
metadata-eval99.9%
metadata-eval99.9%
count-299.9%
*-commutative99.9%
Simplified99.9%
Taylor expanded in x around inf 83.4%
if -9.50000000000000043e-64 < x < 1.4e45Initial program 99.9%
+-commutative99.9%
associate-+l+99.9%
+-commutative99.9%
+-commutative99.9%
associate-+l+99.9%
associate-+r+100.0%
associate-+r+99.9%
*-lft-identity99.9%
metadata-eval99.9%
count-299.9%
distribute-rgt-out99.9%
fma-define100.0%
metadata-eval100.0%
metadata-eval100.0%
count-2100.0%
*-commutative100.0%
Simplified100.0%
Taylor expanded in x around 0 93.3%
if 1.4e45 < x Initial program 99.7%
+-commutative99.7%
associate-+l+99.7%
+-commutative99.7%
+-commutative99.7%
associate-+l+99.6%
associate-+r+99.7%
associate-+r+99.8%
*-lft-identity99.8%
metadata-eval99.8%
count-299.8%
distribute-rgt-out99.8%
fma-define99.9%
metadata-eval99.9%
metadata-eval99.9%
count-299.9%
*-commutative99.9%
Simplified99.9%
Taylor expanded in y around inf 69.3%
Taylor expanded in x around inf 69.3%
associate-*r/69.3%
metadata-eval69.3%
associate-*r/69.4%
metadata-eval69.4%
Simplified69.4%
associate-*r*79.1%
+-commutative79.1%
distribute-rgt-in78.1%
Applied egg-rr78.1%
Taylor expanded in z around 0 91.7%
Final simplification90.5%
(FPCore (x y z) :precision binary64 (if (<= x -3.7e-63) (+ z (* x 3.0)) (if (<= x 1.2e+45) (+ z (* y 2.0)) (+ x (* 2.0 (+ x y))))))
double code(double x, double y, double z) {
double tmp;
if (x <= -3.7e-63) {
tmp = z + (x * 3.0);
} else if (x <= 1.2e+45) {
tmp = z + (y * 2.0);
} else {
tmp = x + (2.0 * (x + y));
}
return tmp;
}
real(8) function code(x, y, z)
real(8), intent (in) :: x
real(8), intent (in) :: y
real(8), intent (in) :: z
real(8) :: tmp
if (x <= (-3.7d-63)) then
tmp = z + (x * 3.0d0)
else if (x <= 1.2d+45) then
tmp = z + (y * 2.0d0)
else
tmp = x + (2.0d0 * (x + y))
end if
code = tmp
end function
public static double code(double x, double y, double z) {
double tmp;
if (x <= -3.7e-63) {
tmp = z + (x * 3.0);
} else if (x <= 1.2e+45) {
tmp = z + (y * 2.0);
} else {
tmp = x + (2.0 * (x + y));
}
return tmp;
}
def code(x, y, z): tmp = 0 if x <= -3.7e-63: tmp = z + (x * 3.0) elif x <= 1.2e+45: tmp = z + (y * 2.0) else: tmp = x + (2.0 * (x + y)) return tmp
function code(x, y, z) tmp = 0.0 if (x <= -3.7e-63) tmp = Float64(z + Float64(x * 3.0)); elseif (x <= 1.2e+45) tmp = Float64(z + Float64(y * 2.0)); else tmp = Float64(x + Float64(2.0 * Float64(x + y))); end return tmp end
function tmp_2 = code(x, y, z) tmp = 0.0; if (x <= -3.7e-63) tmp = z + (x * 3.0); elseif (x <= 1.2e+45) tmp = z + (y * 2.0); else tmp = x + (2.0 * (x + y)); end tmp_2 = tmp; end
code[x_, y_, z_] := If[LessEqual[x, -3.7e-63], N[(z + N[(x * 3.0), $MachinePrecision]), $MachinePrecision], If[LessEqual[x, 1.2e+45], N[(z + N[(y * 2.0), $MachinePrecision]), $MachinePrecision], N[(x + N[(2.0 * N[(x + y), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq -3.7 \cdot 10^{-63}:\\
\;\;\;\;z + x \cdot 3\\
\mathbf{elif}\;x \leq 1.2 \cdot 10^{+45}:\\
\;\;\;\;z + y \cdot 2\\
\mathbf{else}:\\
\;\;\;\;x + 2 \cdot \left(x + y\right)\\
\end{array}
\end{array}
if x < -3.70000000000000012e-63Initial program 99.9%
+-commutative99.9%
associate-+l+99.9%
+-commutative99.9%
+-commutative99.9%
associate-+l+99.9%
associate-+r+99.9%
associate-+r+99.9%
*-lft-identity99.9%
metadata-eval99.9%
count-299.9%
distribute-rgt-out99.9%
fma-define99.9%
metadata-eval99.9%
metadata-eval99.9%
count-299.9%
*-commutative99.9%
Simplified99.9%
Taylor expanded in x around inf 83.4%
if -3.70000000000000012e-63 < x < 1.19999999999999995e45Initial program 99.9%
+-commutative99.9%
associate-+l+99.9%
+-commutative99.9%
+-commutative99.9%
associate-+l+99.9%
associate-+r+100.0%
associate-+r+99.9%
*-lft-identity99.9%
metadata-eval99.9%
count-299.9%
distribute-rgt-out99.9%
fma-define100.0%
metadata-eval100.0%
metadata-eval100.0%
count-2100.0%
*-commutative100.0%
Simplified100.0%
Taylor expanded in x around 0 93.3%
if 1.19999999999999995e45 < x Initial program 99.7%
associate-+l+99.7%
associate-+l+99.7%
+-commutative99.7%
count-299.7%
+-commutative99.7%
+-commutative99.7%
Simplified99.7%
Taylor expanded in z around 0 91.7%
Final simplification90.5%
(FPCore (x y z) :precision binary64 (if (or (<= x -1.6e-65) (not (<= x 5.9e+44))) (+ z (* x 3.0)) (+ z (* y 2.0))))
double code(double x, double y, double z) {
double tmp;
if ((x <= -1.6e-65) || !(x <= 5.9e+44)) {
tmp = z + (x * 3.0);
} else {
tmp = z + (y * 2.0);
}
return tmp;
}
real(8) function code(x, y, z)
real(8), intent (in) :: x
real(8), intent (in) :: y
real(8), intent (in) :: z
real(8) :: tmp
if ((x <= (-1.6d-65)) .or. (.not. (x <= 5.9d+44))) then
tmp = z + (x * 3.0d0)
else
tmp = z + (y * 2.0d0)
end if
code = tmp
end function
public static double code(double x, double y, double z) {
double tmp;
if ((x <= -1.6e-65) || !(x <= 5.9e+44)) {
tmp = z + (x * 3.0);
} else {
tmp = z + (y * 2.0);
}
return tmp;
}
def code(x, y, z): tmp = 0 if (x <= -1.6e-65) or not (x <= 5.9e+44): tmp = z + (x * 3.0) else: tmp = z + (y * 2.0) return tmp
function code(x, y, z) tmp = 0.0 if ((x <= -1.6e-65) || !(x <= 5.9e+44)) tmp = Float64(z + Float64(x * 3.0)); else tmp = Float64(z + Float64(y * 2.0)); end return tmp end
function tmp_2 = code(x, y, z) tmp = 0.0; if ((x <= -1.6e-65) || ~((x <= 5.9e+44))) tmp = z + (x * 3.0); else tmp = z + (y * 2.0); end tmp_2 = tmp; end
code[x_, y_, z_] := If[Or[LessEqual[x, -1.6e-65], N[Not[LessEqual[x, 5.9e+44]], $MachinePrecision]], N[(z + N[(x * 3.0), $MachinePrecision]), $MachinePrecision], N[(z + N[(y * 2.0), $MachinePrecision]), $MachinePrecision]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq -1.6 \cdot 10^{-65} \lor \neg \left(x \leq 5.9 \cdot 10^{+44}\right):\\
\;\;\;\;z + x \cdot 3\\
\mathbf{else}:\\
\;\;\;\;z + y \cdot 2\\
\end{array}
\end{array}
if x < -1.6e-65 or 5.89999999999999965e44 < x Initial program 99.8%
+-commutative99.8%
associate-+l+99.8%
+-commutative99.8%
+-commutative99.8%
associate-+l+99.8%
associate-+r+99.8%
associate-+r+99.8%
*-lft-identity99.8%
metadata-eval99.8%
count-299.8%
distribute-rgt-out99.8%
fma-define99.9%
metadata-eval99.9%
metadata-eval99.9%
count-299.9%
*-commutative99.9%
Simplified99.9%
Taylor expanded in x around inf 83.8%
if -1.6e-65 < x < 5.89999999999999965e44Initial program 99.9%
+-commutative99.9%
associate-+l+99.9%
+-commutative99.9%
+-commutative99.9%
associate-+l+99.9%
associate-+r+100.0%
associate-+r+99.9%
*-lft-identity99.9%
metadata-eval99.9%
count-299.9%
distribute-rgt-out99.9%
fma-define100.0%
metadata-eval100.0%
metadata-eval100.0%
count-2100.0%
*-commutative100.0%
Simplified100.0%
Taylor expanded in x around 0 93.3%
Final simplification88.8%
(FPCore (x y z) :precision binary64 (if (<= z -7.5e-25) z (if (<= z 1.15e-12) (+ x (* y 2.0)) z)))
double code(double x, double y, double z) {
double tmp;
if (z <= -7.5e-25) {
tmp = z;
} else if (z <= 1.15e-12) {
tmp = x + (y * 2.0);
} else {
tmp = z;
}
return tmp;
}
real(8) function code(x, y, z)
real(8), intent (in) :: x
real(8), intent (in) :: y
real(8), intent (in) :: z
real(8) :: tmp
if (z <= (-7.5d-25)) then
tmp = z
else if (z <= 1.15d-12) then
tmp = x + (y * 2.0d0)
else
tmp = z
end if
code = tmp
end function
public static double code(double x, double y, double z) {
double tmp;
if (z <= -7.5e-25) {
tmp = z;
} else if (z <= 1.15e-12) {
tmp = x + (y * 2.0);
} else {
tmp = z;
}
return tmp;
}
def code(x, y, z): tmp = 0 if z <= -7.5e-25: tmp = z elif z <= 1.15e-12: tmp = x + (y * 2.0) else: tmp = z return tmp
function code(x, y, z) tmp = 0.0 if (z <= -7.5e-25) tmp = z; elseif (z <= 1.15e-12) tmp = Float64(x + Float64(y * 2.0)); else tmp = z; end return tmp end
function tmp_2 = code(x, y, z) tmp = 0.0; if (z <= -7.5e-25) tmp = z; elseif (z <= 1.15e-12) tmp = x + (y * 2.0); else tmp = z; end tmp_2 = tmp; end
code[x_, y_, z_] := If[LessEqual[z, -7.5e-25], z, If[LessEqual[z, 1.15e-12], N[(x + N[(y * 2.0), $MachinePrecision]), $MachinePrecision], z]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;z \leq -7.5 \cdot 10^{-25}:\\
\;\;\;\;z\\
\mathbf{elif}\;z \leq 1.15 \cdot 10^{-12}:\\
\;\;\;\;x + y \cdot 2\\
\mathbf{else}:\\
\;\;\;\;z\\
\end{array}
\end{array}
if z < -7.49999999999999989e-25 or 1.14999999999999995e-12 < z Initial program 99.9%
+-commutative99.9%
associate-+l+99.9%
+-commutative99.9%
+-commutative99.9%
associate-+l+99.9%
associate-+r+99.9%
associate-+r+99.9%
*-lft-identity99.9%
metadata-eval99.9%
count-299.9%
distribute-rgt-out99.9%
fma-define99.9%
metadata-eval99.9%
metadata-eval99.9%
count-299.9%
*-commutative99.9%
Simplified99.9%
Taylor expanded in z around inf 60.1%
if -7.49999999999999989e-25 < z < 1.14999999999999995e-12Initial program 99.8%
associate-+l+99.8%
associate-+l+99.9%
+-commutative99.9%
count-299.9%
+-commutative99.9%
+-commutative99.9%
Simplified99.9%
Taylor expanded in z around 0 93.6%
Taylor expanded in x around 0 55.4%
Final simplification57.8%
(FPCore (x y z) :precision binary64 (+ (* 2.0 (+ x y)) (+ z x)))
double code(double x, double y, double z) {
return (2.0 * (x + y)) + (z + x);
}
real(8) function code(x, y, z)
real(8), intent (in) :: x
real(8), intent (in) :: y
real(8), intent (in) :: z
code = (2.0d0 * (x + y)) + (z + x)
end function
public static double code(double x, double y, double z) {
return (2.0 * (x + y)) + (z + x);
}
def code(x, y, z): return (2.0 * (x + y)) + (z + x)
function code(x, y, z) return Float64(Float64(2.0 * Float64(x + y)) + Float64(z + x)) end
function tmp = code(x, y, z) tmp = (2.0 * (x + y)) + (z + x); end
code[x_, y_, z_] := N[(N[(2.0 * N[(x + y), $MachinePrecision]), $MachinePrecision] + N[(z + x), $MachinePrecision]), $MachinePrecision]
\begin{array}{l}
\\
2 \cdot \left(x + y\right) + \left(z + x\right)
\end{array}
Initial program 99.9%
associate-+l+99.9%
associate-+l+99.9%
+-commutative99.9%
count-299.9%
+-commutative99.9%
+-commutative99.9%
Simplified99.9%
Final simplification99.9%
(FPCore (x y z) :precision binary64 (+ z (+ (* x 3.0) (* y 2.0))))
double code(double x, double y, double z) {
return z + ((x * 3.0) + (y * 2.0));
}
real(8) function code(x, y, z)
real(8), intent (in) :: x
real(8), intent (in) :: y
real(8), intent (in) :: z
code = z + ((x * 3.0d0) + (y * 2.0d0))
end function
public static double code(double x, double y, double z) {
return z + ((x * 3.0) + (y * 2.0));
}
def code(x, y, z): return z + ((x * 3.0) + (y * 2.0))
function code(x, y, z) return Float64(z + Float64(Float64(x * 3.0) + Float64(y * 2.0))) end
function tmp = code(x, y, z) tmp = z + ((x * 3.0) + (y * 2.0)); end
code[x_, y_, z_] := N[(z + N[(N[(x * 3.0), $MachinePrecision] + N[(y * 2.0), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]
\begin{array}{l}
\\
z + \left(x \cdot 3 + y \cdot 2\right)
\end{array}
Initial program 99.9%
+-commutative99.9%
associate-+l+99.9%
+-commutative99.9%
+-commutative99.9%
associate-+l+99.9%
associate-+r+99.9%
associate-+r+99.9%
*-lft-identity99.9%
metadata-eval99.9%
count-299.9%
distribute-rgt-out99.9%
fma-define100.0%
metadata-eval100.0%
metadata-eval100.0%
count-2100.0%
*-commutative100.0%
Simplified100.0%
fma-undefine99.9%
+-commutative99.9%
Applied egg-rr99.9%
Final simplification99.9%
(FPCore (x y z) :precision binary64 (+ z (* y 2.0)))
double code(double x, double y, double z) {
return z + (y * 2.0);
}
real(8) function code(x, y, z)
real(8), intent (in) :: x
real(8), intent (in) :: y
real(8), intent (in) :: z
code = z + (y * 2.0d0)
end function
public static double code(double x, double y, double z) {
return z + (y * 2.0);
}
def code(x, y, z): return z + (y * 2.0)
function code(x, y, z) return Float64(z + Float64(y * 2.0)) end
function tmp = code(x, y, z) tmp = z + (y * 2.0); end
code[x_, y_, z_] := N[(z + N[(y * 2.0), $MachinePrecision]), $MachinePrecision]
\begin{array}{l}
\\
z + y \cdot 2
\end{array}
Initial program 99.9%
+-commutative99.9%
associate-+l+99.9%
+-commutative99.9%
+-commutative99.9%
associate-+l+99.9%
associate-+r+99.9%
associate-+r+99.9%
*-lft-identity99.9%
metadata-eval99.9%
count-299.9%
distribute-rgt-out99.9%
fma-define100.0%
metadata-eval100.0%
metadata-eval100.0%
count-2100.0%
*-commutative100.0%
Simplified100.0%
Taylor expanded in x around 0 64.9%
Final simplification64.9%
(FPCore (x y z) :precision binary64 z)
double code(double x, double y, double z) {
return z;
}
real(8) function code(x, y, z)
real(8), intent (in) :: x
real(8), intent (in) :: y
real(8), intent (in) :: z
code = z
end function
public static double code(double x, double y, double z) {
return z;
}
def code(x, y, z): return z
function code(x, y, z) return z end
function tmp = code(x, y, z) tmp = z; end
code[x_, y_, z_] := z
\begin{array}{l}
\\
z
\end{array}
Initial program 99.9%
+-commutative99.9%
associate-+l+99.9%
+-commutative99.9%
+-commutative99.9%
associate-+l+99.9%
associate-+r+99.9%
associate-+r+99.9%
*-lft-identity99.9%
metadata-eval99.9%
count-299.9%
distribute-rgt-out99.9%
fma-define100.0%
metadata-eval100.0%
metadata-eval100.0%
count-2100.0%
*-commutative100.0%
Simplified100.0%
Taylor expanded in z around inf 34.6%
(FPCore (x y z) :precision binary64 x)
double code(double x, double y, double z) {
return x;
}
real(8) function code(x, y, z)
real(8), intent (in) :: x
real(8), intent (in) :: y
real(8), intent (in) :: z
code = x
end function
public static double code(double x, double y, double z) {
return x;
}
def code(x, y, z): return x
function code(x, y, z) return x end
function tmp = code(x, y, z) tmp = x; end
code[x_, y_, z_] := x
\begin{array}{l}
\\
x
\end{array}
Initial program 99.9%
associate-+l+99.9%
associate-+l+99.9%
+-commutative99.9%
count-299.9%
+-commutative99.9%
+-commutative99.9%
Simplified99.9%
Taylor expanded in z around 0 66.9%
Taylor expanded in x around 0 37.4%
Taylor expanded in x around inf 8.1%
herbie shell --seed 2024170
(FPCore (x y z)
:name "Graphics.Rendering.Plot.Render.Plot.Legend:renderLegendInside from plot-0.2.3.4"
:precision binary64
(+ (+ (+ (+ (+ x y) y) x) z) x))