
(FPCore (x) :precision binary64 (+ (* (/ 841.0 108.0) x) (/ 4.0 29.0)))
double code(double x) {
return ((841.0 / 108.0) * x) + (4.0 / 29.0);
}
real(8) function code(x)
real(8), intent (in) :: x
code = ((841.0d0 / 108.0d0) * x) + (4.0d0 / 29.0d0)
end function
public static double code(double x) {
return ((841.0 / 108.0) * x) + (4.0 / 29.0);
}
def code(x): return ((841.0 / 108.0) * x) + (4.0 / 29.0)
function code(x) return Float64(Float64(Float64(841.0 / 108.0) * x) + Float64(4.0 / 29.0)) end
function tmp = code(x) tmp = ((841.0 / 108.0) * x) + (4.0 / 29.0); end
code[x_] := N[(N[(N[(841.0 / 108.0), $MachinePrecision] * x), $MachinePrecision] + N[(4.0 / 29.0), $MachinePrecision]), $MachinePrecision]
\begin{array}{l}
\\
\frac{841}{108} \cdot x + \frac{4}{29}
\end{array}
Sampling outcomes in binary64 precision:
Herbie found 3 alternatives:
| Alternative | Accuracy | Speedup |
|---|
(FPCore (x) :precision binary64 (+ (* (/ 841.0 108.0) x) (/ 4.0 29.0)))
double code(double x) {
return ((841.0 / 108.0) * x) + (4.0 / 29.0);
}
real(8) function code(x)
real(8), intent (in) :: x
code = ((841.0d0 / 108.0d0) * x) + (4.0d0 / 29.0d0)
end function
public static double code(double x) {
return ((841.0 / 108.0) * x) + (4.0 / 29.0);
}
def code(x): return ((841.0 / 108.0) * x) + (4.0 / 29.0)
function code(x) return Float64(Float64(Float64(841.0 / 108.0) * x) + Float64(4.0 / 29.0)) end
function tmp = code(x) tmp = ((841.0 / 108.0) * x) + (4.0 / 29.0); end
code[x_] := N[(N[(N[(841.0 / 108.0), $MachinePrecision] * x), $MachinePrecision] + N[(4.0 / 29.0), $MachinePrecision]), $MachinePrecision]
\begin{array}{l}
\\
\frac{841}{108} \cdot x + \frac{4}{29}
\end{array}
(FPCore (x) :precision binary64 (fma 7.787037037037037 x 0.13793103448275862))
double code(double x) {
return fma(7.787037037037037, x, 0.13793103448275862);
}
function code(x) return fma(7.787037037037037, x, 0.13793103448275862) end
code[x_] := N[(7.787037037037037 * x + 0.13793103448275862), $MachinePrecision]
\begin{array}{l}
\\
\mathsf{fma}\left(7.787037037037037, x, 0.13793103448275862\right)
\end{array}
Initial program 99.9%
fma-def99.9%
metadata-eval99.9%
metadata-eval99.9%
Simplified99.9%
Final simplification99.9%
(FPCore (x) :precision binary64 (+ 0.13793103448275862 (* 7.787037037037037 x)))
double code(double x) {
return 0.13793103448275862 + (7.787037037037037 * x);
}
real(8) function code(x)
real(8), intent (in) :: x
code = 0.13793103448275862d0 + (7.787037037037037d0 * x)
end function
public static double code(double x) {
return 0.13793103448275862 + (7.787037037037037 * x);
}
def code(x): return 0.13793103448275862 + (7.787037037037037 * x)
function code(x) return Float64(0.13793103448275862 + Float64(7.787037037037037 * x)) end
function tmp = code(x) tmp = 0.13793103448275862 + (7.787037037037037 * x); end
code[x_] := N[(0.13793103448275862 + N[(7.787037037037037 * x), $MachinePrecision]), $MachinePrecision]
\begin{array}{l}
\\
0.13793103448275862 + 7.787037037037037 \cdot x
\end{array}
Initial program 99.9%
fma-def99.9%
metadata-eval99.9%
metadata-eval99.9%
Simplified99.9%
metadata-eval99.9%
fma-udef99.9%
metadata-eval99.9%
Applied egg-rr99.9%
Final simplification99.9%
(FPCore (x) :precision binary64 0.13793103448275862)
double code(double x) {
return 0.13793103448275862;
}
real(8) function code(x)
real(8), intent (in) :: x
code = 0.13793103448275862d0
end function
public static double code(double x) {
return 0.13793103448275862;
}
def code(x): return 0.13793103448275862
function code(x) return 0.13793103448275862 end
function tmp = code(x) tmp = 0.13793103448275862; end
code[x_] := 0.13793103448275862
\begin{array}{l}
\\
0.13793103448275862
\end{array}
Initial program 99.9%
fma-def99.9%
metadata-eval99.9%
metadata-eval99.9%
Simplified99.9%
Taylor expanded in x around 0 52.0%
Final simplification52.0%
herbie shell --seed 2024026
(FPCore (x)
:name "Data.Colour.CIE:cieLABView from colour-2.3.3, A"
:precision binary64
(+ (* (/ 841.0 108.0) x) (/ 4.0 29.0)))