?

Average Error: 15.8 → 0.0
Time: 2.9s
Precision: binary64
Cost: 448

?

\[\frac{x + y}{\left(x \cdot 2\right) \cdot y} \]
\[\frac{0.5}{x} + \frac{0.5}{y} \]
(FPCore (x y) :precision binary64 (/ (+ x y) (* (* x 2.0) y)))
(FPCore (x y) :precision binary64 (+ (/ 0.5 x) (/ 0.5 y)))
double code(double x, double y) {
	return (x + y) / ((x * 2.0) * y);
}
double code(double x, double y) {
	return (0.5 / x) + (0.5 / y);
}
real(8) function code(x, y)
    real(8), intent (in) :: x
    real(8), intent (in) :: y
    code = (x + y) / ((x * 2.0d0) * y)
end function
real(8) function code(x, y)
    real(8), intent (in) :: x
    real(8), intent (in) :: y
    code = (0.5d0 / x) + (0.5d0 / y)
end function
public static double code(double x, double y) {
	return (x + y) / ((x * 2.0) * y);
}
public static double code(double x, double y) {
	return (0.5 / x) + (0.5 / y);
}
def code(x, y):
	return (x + y) / ((x * 2.0) * y)
def code(x, y):
	return (0.5 / x) + (0.5 / y)
function code(x, y)
	return Float64(Float64(x + y) / Float64(Float64(x * 2.0) * y))
end
function code(x, y)
	return Float64(Float64(0.5 / x) + Float64(0.5 / y))
end
function tmp = code(x, y)
	tmp = (x + y) / ((x * 2.0) * y);
end
function tmp = code(x, y)
	tmp = (0.5 / x) + (0.5 / y);
end
code[x_, y_] := N[(N[(x + y), $MachinePrecision] / N[(N[(x * 2.0), $MachinePrecision] * y), $MachinePrecision]), $MachinePrecision]
code[x_, y_] := N[(N[(0.5 / x), $MachinePrecision] + N[(0.5 / y), $MachinePrecision]), $MachinePrecision]
\frac{x + y}{\left(x \cdot 2\right) \cdot y}
\frac{0.5}{x} + \frac{0.5}{y}

Error?

Try it out?

Your Program's Arguments

Results

Enter valid numbers for all inputs

Target

Original15.8
Target0.0
Herbie0.0
\[\frac{0.5}{x} + \frac{0.5}{y} \]

Derivation?

  1. Initial program 15.8

    \[\frac{x + y}{\left(x \cdot 2\right) \cdot y} \]
  2. Taylor expanded in x around 0 0.0

    \[\leadsto \color{blue}{0.5 \cdot \frac{1}{y} + 0.5 \cdot \frac{1}{x}} \]
  3. Simplified0.0

    \[\leadsto \color{blue}{\frac{0.5}{x} + \frac{0.5}{y}} \]
    Proof

    [Start]0.0

    \[ 0.5 \cdot \frac{1}{y} + 0.5 \cdot \frac{1}{x} \]

    rational.json-simplify-2 [=>]0.0

    \[ 0.5 \cdot \frac{1}{y} + \color{blue}{\frac{1}{x} \cdot 0.5} \]

    rational.json-simplify-51 [=>]0.0

    \[ \color{blue}{0.5 \cdot \left(\frac{1}{x} + \frac{1}{y}\right)} \]

    rational.json-simplify-28 [<=]15.8

    \[ 0.5 \cdot \color{blue}{\frac{x + y}{x \cdot y}} \]

    rational.json-simplify-46 [=>]8.1

    \[ 0.5 \cdot \color{blue}{\frac{\frac{x + y}{x}}{y}} \]

    rational.json-simplify-44 [=>]8.0

    \[ 0.5 \cdot \color{blue}{\frac{\frac{x + y}{y}}{x}} \]

    rational.json-simplify-6 [<=]8.0

    \[ 0.5 \cdot \frac{\color{blue}{1 \cdot \frac{x + y}{y}}}{x} \]

    rational.json-simplify-49 [=>]8.0

    \[ 0.5 \cdot \color{blue}{\left(\frac{x + y}{y} \cdot \frac{1}{x}\right)} \]

    rational.json-simplify-43 [<=]8.0

    \[ \color{blue}{\frac{1}{x} \cdot \left(0.5 \cdot \frac{x + y}{y}\right)} \]

    rational.json-simplify-2 [<=]8.0

    \[ \frac{1}{x} \cdot \color{blue}{\left(\frac{x + y}{y} \cdot 0.5\right)} \]

    rational.json-simplify-2 [<=]8.0

    \[ \color{blue}{\left(\frac{x + y}{y} \cdot 0.5\right) \cdot \frac{1}{x}} \]

    rational.json-simplify-35 [=>]8.1

    \[ \left(\frac{x + y}{y} \cdot 0.5\right) \cdot \color{blue}{\frac{1 + 1}{x + x}} \]

    metadata-eval [=>]8.1

    \[ \left(\frac{x + y}{y} \cdot 0.5\right) \cdot \frac{\color{blue}{2}}{x + x} \]

    rational.json-simplify-49 [<=]8.0

    \[ \color{blue}{\frac{2 \cdot \left(\frac{x + y}{y} \cdot 0.5\right)}{x + x}} \]

    rational.json-simplify-43 [=>]8.0

    \[ \frac{\color{blue}{\frac{x + y}{y} \cdot \left(0.5 \cdot 2\right)}}{x + x} \]

    metadata-eval [=>]8.0

    \[ \frac{\frac{x + y}{y} \cdot \color{blue}{1}}{x + x} \]

    rational.json-simplify-2 [<=]8.0

    \[ \frac{\color{blue}{1 \cdot \frac{x + y}{y}}}{x + x} \]

    rational.json-simplify-6 [=>]8.0

    \[ \frac{\color{blue}{\frac{x + y}{y}}}{x + x} \]

    rational.json-simplify-35 [=>]8.1

    \[ \frac{\color{blue}{\frac{\left(x + y\right) + \left(x + y\right)}{y + y}}}{x + x} \]

    rational.json-simplify-47 [=>]15.8

    \[ \color{blue}{\frac{\left(x + y\right) + \left(x + y\right)}{\left(y + y\right) \cdot \left(x + x\right)}} \]

    rational.json-simplify-2 [=>]15.8

    \[ \frac{\left(x + y\right) + \left(x + y\right)}{\color{blue}{\left(x + x\right) \cdot \left(y + y\right)}} \]
  4. Final simplification0.0

    \[\leadsto \frac{0.5}{x} + \frac{0.5}{y} \]

Alternatives

Alternative 1
Error24.3
Cost324
\[\begin{array}{l} \mathbf{if}\;y \leq 1.22 \cdot 10^{-73}:\\ \;\;\;\;\frac{0.5}{y}\\ \mathbf{else}:\\ \;\;\;\;\frac{0.5}{x}\\ \end{array} \]
Alternative 2
Error31.3
Cost192
\[\frac{0.5}{x} \]

Error

Reproduce?

herbie shell --seed 2023075 
(FPCore (x y)
  :name "Linear.Projection:inversePerspective from linear-1.19.1.3, C"
  :precision binary64

  :herbie-target
  (+ (/ 0.5 x) (/ 0.5 y))

  (/ (+ x y) (* (* x 2.0) y)))