
(FPCore (d1 d2 d3) :precision binary64 (+ (+ (* d1 d2) (* (+ d3 5.0) d1)) (* d1 32.0)))
double code(double d1, double d2, double d3) {
return ((d1 * d2) + ((d3 + 5.0) * d1)) + (d1 * 32.0);
}
real(8) function code(d1, d2, d3)
real(8), intent (in) :: d1
real(8), intent (in) :: d2
real(8), intent (in) :: d3
code = ((d1 * d2) + ((d3 + 5.0d0) * d1)) + (d1 * 32.0d0)
end function
public static double code(double d1, double d2, double d3) {
return ((d1 * d2) + ((d3 + 5.0) * d1)) + (d1 * 32.0);
}
def code(d1, d2, d3): return ((d1 * d2) + ((d3 + 5.0) * d1)) + (d1 * 32.0)
function code(d1, d2, d3) return Float64(Float64(Float64(d1 * d2) + Float64(Float64(d3 + 5.0) * d1)) + Float64(d1 * 32.0)) end
function tmp = code(d1, d2, d3) tmp = ((d1 * d2) + ((d3 + 5.0) * d1)) + (d1 * 32.0); end
code[d1_, d2_, d3_] := N[(N[(N[(d1 * d2), $MachinePrecision] + N[(N[(d3 + 5.0), $MachinePrecision] * d1), $MachinePrecision]), $MachinePrecision] + N[(d1 * 32.0), $MachinePrecision]), $MachinePrecision]
\begin{array}{l}
\\
\left(d1 \cdot d2 + \left(d3 + 5\right) \cdot d1\right) + d1 \cdot 32
\end{array}
Sampling outcomes in binary64 precision:
Herbie found 7 alternatives:
| Alternative | Accuracy | Speedup |
|---|
(FPCore (d1 d2 d3) :precision binary64 (+ (+ (* d1 d2) (* (+ d3 5.0) d1)) (* d1 32.0)))
double code(double d1, double d2, double d3) {
return ((d1 * d2) + ((d3 + 5.0) * d1)) + (d1 * 32.0);
}
real(8) function code(d1, d2, d3)
real(8), intent (in) :: d1
real(8), intent (in) :: d2
real(8), intent (in) :: d3
code = ((d1 * d2) + ((d3 + 5.0d0) * d1)) + (d1 * 32.0d0)
end function
public static double code(double d1, double d2, double d3) {
return ((d1 * d2) + ((d3 + 5.0) * d1)) + (d1 * 32.0);
}
def code(d1, d2, d3): return ((d1 * d2) + ((d3 + 5.0) * d1)) + (d1 * 32.0)
function code(d1, d2, d3) return Float64(Float64(Float64(d1 * d2) + Float64(Float64(d3 + 5.0) * d1)) + Float64(d1 * 32.0)) end
function tmp = code(d1, d2, d3) tmp = ((d1 * d2) + ((d3 + 5.0) * d1)) + (d1 * 32.0); end
code[d1_, d2_, d3_] := N[(N[(N[(d1 * d2), $MachinePrecision] + N[(N[(d3 + 5.0), $MachinePrecision] * d1), $MachinePrecision]), $MachinePrecision] + N[(d1 * 32.0), $MachinePrecision]), $MachinePrecision]
\begin{array}{l}
\\
\left(d1 \cdot d2 + \left(d3 + 5\right) \cdot d1\right) + d1 \cdot 32
\end{array}
(FPCore (d1 d2 d3) :precision binary64 (* d1 (+ d3 (+ d2 37.0))))
double code(double d1, double d2, double d3) {
return d1 * (d3 + (d2 + 37.0));
}
real(8) function code(d1, d2, d3)
real(8), intent (in) :: d1
real(8), intent (in) :: d2
real(8), intent (in) :: d3
code = d1 * (d3 + (d2 + 37.0d0))
end function
public static double code(double d1, double d2, double d3) {
return d1 * (d3 + (d2 + 37.0));
}
def code(d1, d2, d3): return d1 * (d3 + (d2 + 37.0))
function code(d1, d2, d3) return Float64(d1 * Float64(d3 + Float64(d2 + 37.0))) end
function tmp = code(d1, d2, d3) tmp = d1 * (d3 + (d2 + 37.0)); end
code[d1_, d2_, d3_] := N[(d1 * N[(d3 + N[(d2 + 37.0), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]
\begin{array}{l}
\\
d1 \cdot \left(d3 + \left(d2 + 37\right)\right)
\end{array}
Initial program 98.0%
cancel-sign-sub98.0%
+-commutative98.0%
*-commutative98.0%
distribute-lft-out100.0%
distribute-lft-neg-out100.0%
distribute-rgt-neg-in100.0%
distribute-lft-out--100.0%
associate-+r+100.0%
+-commutative100.0%
associate--l+100.0%
sub-neg100.0%
metadata-eval100.0%
metadata-eval100.0%
associate-+l+100.0%
metadata-eval100.0%
Simplified100.0%
(FPCore (d1 d2 d3)
:precision binary64
(if (<= d2 -37.0)
(* d1 d2)
(if (or (<= d2 -5.5e-225) (and (not (<= d2 -9.8e-294)) (<= d2 5.4e-253)))
(* d1 37.0)
(* d1 d3))))
double code(double d1, double d2, double d3) {
double tmp;
if (d2 <= -37.0) {
tmp = d1 * d2;
} else if ((d2 <= -5.5e-225) || (!(d2 <= -9.8e-294) && (d2 <= 5.4e-253))) {
tmp = d1 * 37.0;
} else {
tmp = d1 * d3;
}
return tmp;
}
real(8) function code(d1, d2, d3)
real(8), intent (in) :: d1
real(8), intent (in) :: d2
real(8), intent (in) :: d3
real(8) :: tmp
if (d2 <= (-37.0d0)) then
tmp = d1 * d2
else if ((d2 <= (-5.5d-225)) .or. (.not. (d2 <= (-9.8d-294))) .and. (d2 <= 5.4d-253)) then
tmp = d1 * 37.0d0
else
tmp = d1 * d3
end if
code = tmp
end function
public static double code(double d1, double d2, double d3) {
double tmp;
if (d2 <= -37.0) {
tmp = d1 * d2;
} else if ((d2 <= -5.5e-225) || (!(d2 <= -9.8e-294) && (d2 <= 5.4e-253))) {
tmp = d1 * 37.0;
} else {
tmp = d1 * d3;
}
return tmp;
}
def code(d1, d2, d3): tmp = 0 if d2 <= -37.0: tmp = d1 * d2 elif (d2 <= -5.5e-225) or (not (d2 <= -9.8e-294) and (d2 <= 5.4e-253)): tmp = d1 * 37.0 else: tmp = d1 * d3 return tmp
function code(d1, d2, d3) tmp = 0.0 if (d2 <= -37.0) tmp = Float64(d1 * d2); elseif ((d2 <= -5.5e-225) || (!(d2 <= -9.8e-294) && (d2 <= 5.4e-253))) tmp = Float64(d1 * 37.0); else tmp = Float64(d1 * d3); end return tmp end
function tmp_2 = code(d1, d2, d3) tmp = 0.0; if (d2 <= -37.0) tmp = d1 * d2; elseif ((d2 <= -5.5e-225) || (~((d2 <= -9.8e-294)) && (d2 <= 5.4e-253))) tmp = d1 * 37.0; else tmp = d1 * d3; end tmp_2 = tmp; end
code[d1_, d2_, d3_] := If[LessEqual[d2, -37.0], N[(d1 * d2), $MachinePrecision], If[Or[LessEqual[d2, -5.5e-225], And[N[Not[LessEqual[d2, -9.8e-294]], $MachinePrecision], LessEqual[d2, 5.4e-253]]], N[(d1 * 37.0), $MachinePrecision], N[(d1 * d3), $MachinePrecision]]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;d2 \leq -37:\\
\;\;\;\;d1 \cdot d2\\
\mathbf{elif}\;d2 \leq -5.5 \cdot 10^{-225} \lor \neg \left(d2 \leq -9.8 \cdot 10^{-294}\right) \land d2 \leq 5.4 \cdot 10^{-253}:\\
\;\;\;\;d1 \cdot 37\\
\mathbf{else}:\\
\;\;\;\;d1 \cdot d3\\
\end{array}
\end{array}
if d2 < -37Initial program 96.6%
cancel-sign-sub96.6%
+-commutative96.6%
*-commutative96.6%
distribute-lft-out99.9%
distribute-lft-neg-out99.9%
distribute-rgt-neg-in99.9%
distribute-lft-out--99.9%
associate-+r+99.9%
+-commutative99.9%
associate--l+99.9%
sub-neg99.9%
metadata-eval99.9%
metadata-eval99.9%
associate-+l+99.9%
metadata-eval99.9%
Simplified99.9%
Taylor expanded in d2 around inf 68.7%
if -37 < d2 < -5.5000000000000002e-225 or -9.7999999999999995e-294 < d2 < 5.39999999999999998e-253Initial program 99.9%
cancel-sign-sub99.9%
+-commutative99.9%
*-commutative99.9%
distribute-lft-out99.9%
distribute-lft-neg-out99.9%
distribute-rgt-neg-in99.9%
distribute-lft-out--99.9%
associate-+r+99.9%
+-commutative99.9%
associate--l+99.9%
sub-neg99.9%
metadata-eval99.9%
metadata-eval99.9%
associate-+l+99.9%
metadata-eval99.9%
Simplified99.9%
Taylor expanded in d3 around 0 54.4%
Taylor expanded in d2 around 0 53.0%
*-commutative53.0%
Simplified53.0%
if -5.5000000000000002e-225 < d2 < -9.7999999999999995e-294 or 5.39999999999999998e-253 < d2 Initial program 97.8%
cancel-sign-sub97.8%
+-commutative97.8%
*-commutative97.8%
distribute-lft-out100.0%
distribute-lft-neg-out100.0%
distribute-rgt-neg-in100.0%
distribute-lft-out--100.0%
associate-+r+100.0%
+-commutative100.0%
associate--l+100.0%
sub-neg100.0%
metadata-eval100.0%
metadata-eval100.0%
associate-+l+100.0%
metadata-eval100.0%
Simplified100.0%
Taylor expanded in d3 around inf 46.7%
Final simplification53.3%
(FPCore (d1 d2 d3) :precision binary64 (if (or (<= d3 1.22e+25) (and (not (<= d3 5.5e+47)) (<= d3 2.05e+77))) (* d1 (+ d2 37.0)) (* d1 d3)))
double code(double d1, double d2, double d3) {
double tmp;
if ((d3 <= 1.22e+25) || (!(d3 <= 5.5e+47) && (d3 <= 2.05e+77))) {
tmp = d1 * (d2 + 37.0);
} else {
tmp = d1 * d3;
}
return tmp;
}
real(8) function code(d1, d2, d3)
real(8), intent (in) :: d1
real(8), intent (in) :: d2
real(8), intent (in) :: d3
real(8) :: tmp
if ((d3 <= 1.22d+25) .or. (.not. (d3 <= 5.5d+47)) .and. (d3 <= 2.05d+77)) then
tmp = d1 * (d2 + 37.0d0)
else
tmp = d1 * d3
end if
code = tmp
end function
public static double code(double d1, double d2, double d3) {
double tmp;
if ((d3 <= 1.22e+25) || (!(d3 <= 5.5e+47) && (d3 <= 2.05e+77))) {
tmp = d1 * (d2 + 37.0);
} else {
tmp = d1 * d3;
}
return tmp;
}
def code(d1, d2, d3): tmp = 0 if (d3 <= 1.22e+25) or (not (d3 <= 5.5e+47) and (d3 <= 2.05e+77)): tmp = d1 * (d2 + 37.0) else: tmp = d1 * d3 return tmp
function code(d1, d2, d3) tmp = 0.0 if ((d3 <= 1.22e+25) || (!(d3 <= 5.5e+47) && (d3 <= 2.05e+77))) tmp = Float64(d1 * Float64(d2 + 37.0)); else tmp = Float64(d1 * d3); end return tmp end
function tmp_2 = code(d1, d2, d3) tmp = 0.0; if ((d3 <= 1.22e+25) || (~((d3 <= 5.5e+47)) && (d3 <= 2.05e+77))) tmp = d1 * (d2 + 37.0); else tmp = d1 * d3; end tmp_2 = tmp; end
code[d1_, d2_, d3_] := If[Or[LessEqual[d3, 1.22e+25], And[N[Not[LessEqual[d3, 5.5e+47]], $MachinePrecision], LessEqual[d3, 2.05e+77]]], N[(d1 * N[(d2 + 37.0), $MachinePrecision]), $MachinePrecision], N[(d1 * d3), $MachinePrecision]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;d3 \leq 1.22 \cdot 10^{+25} \lor \neg \left(d3 \leq 5.5 \cdot 10^{+47}\right) \land d3 \leq 2.05 \cdot 10^{+77}:\\
\;\;\;\;d1 \cdot \left(d2 + 37\right)\\
\mathbf{else}:\\
\;\;\;\;d1 \cdot d3\\
\end{array}
\end{array}
if d3 < 1.22000000000000001e25 or 5.4999999999999998e47 < d3 < 2.05e77Initial program 98.5%
cancel-sign-sub98.5%
+-commutative98.5%
*-commutative98.5%
distribute-lft-out100.0%
distribute-lft-neg-out100.0%
distribute-rgt-neg-in100.0%
distribute-lft-out--100.0%
associate-+r+100.0%
+-commutative100.0%
associate--l+100.0%
sub-neg100.0%
metadata-eval100.0%
metadata-eval100.0%
associate-+l+100.0%
metadata-eval100.0%
Simplified100.0%
Taylor expanded in d3 around 0 67.9%
if 1.22000000000000001e25 < d3 < 5.4999999999999998e47 or 2.05e77 < d3 Initial program 95.7%
cancel-sign-sub95.7%
+-commutative95.7%
*-commutative95.7%
distribute-lft-out100.0%
distribute-lft-neg-out100.0%
distribute-rgt-neg-in100.0%
distribute-lft-out--100.0%
associate-+r+100.0%
+-commutative100.0%
associate--l+100.0%
sub-neg100.0%
metadata-eval100.0%
metadata-eval100.0%
associate-+l+100.0%
metadata-eval100.0%
Simplified100.0%
Taylor expanded in d3 around inf 84.6%
Final simplification70.9%
(FPCore (d1 d2 d3) :precision binary64 (if (<= d3 5.0) (* d1 (+ d2 37.0)) (* d1 (+ d3 d2))))
double code(double d1, double d2, double d3) {
double tmp;
if (d3 <= 5.0) {
tmp = d1 * (d2 + 37.0);
} else {
tmp = d1 * (d3 + d2);
}
return tmp;
}
real(8) function code(d1, d2, d3)
real(8), intent (in) :: d1
real(8), intent (in) :: d2
real(8), intent (in) :: d3
real(8) :: tmp
if (d3 <= 5.0d0) then
tmp = d1 * (d2 + 37.0d0)
else
tmp = d1 * (d3 + d2)
end if
code = tmp
end function
public static double code(double d1, double d2, double d3) {
double tmp;
if (d3 <= 5.0) {
tmp = d1 * (d2 + 37.0);
} else {
tmp = d1 * (d3 + d2);
}
return tmp;
}
def code(d1, d2, d3): tmp = 0 if d3 <= 5.0: tmp = d1 * (d2 + 37.0) else: tmp = d1 * (d3 + d2) return tmp
function code(d1, d2, d3) tmp = 0.0 if (d3 <= 5.0) tmp = Float64(d1 * Float64(d2 + 37.0)); else tmp = Float64(d1 * Float64(d3 + d2)); end return tmp end
function tmp_2 = code(d1, d2, d3) tmp = 0.0; if (d3 <= 5.0) tmp = d1 * (d2 + 37.0); else tmp = d1 * (d3 + d2); end tmp_2 = tmp; end
code[d1_, d2_, d3_] := If[LessEqual[d3, 5.0], N[(d1 * N[(d2 + 37.0), $MachinePrecision]), $MachinePrecision], N[(d1 * N[(d3 + d2), $MachinePrecision]), $MachinePrecision]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;d3 \leq 5:\\
\;\;\;\;d1 \cdot \left(d2 + 37\right)\\
\mathbf{else}:\\
\;\;\;\;d1 \cdot \left(d3 + d2\right)\\
\end{array}
\end{array}
if d3 < 5Initial program 98.5%
cancel-sign-sub98.5%
+-commutative98.5%
*-commutative98.5%
distribute-lft-out100.0%
distribute-lft-neg-out100.0%
distribute-rgt-neg-in100.0%
distribute-lft-out--100.0%
associate-+r+100.0%
+-commutative100.0%
associate--l+100.0%
sub-neg100.0%
metadata-eval100.0%
metadata-eval100.0%
associate-+l+100.0%
metadata-eval100.0%
Simplified100.0%
Taylor expanded in d3 around 0 66.9%
if 5 < d3 Initial program 96.3%
cancel-sign-sub96.3%
+-commutative96.3%
*-commutative96.3%
distribute-lft-out100.0%
distribute-lft-neg-out100.0%
distribute-rgt-neg-in100.0%
distribute-lft-out--100.0%
associate-+r+100.0%
+-commutative100.0%
associate--l+100.0%
sub-neg100.0%
metadata-eval100.0%
metadata-eval100.0%
associate-+l+100.0%
metadata-eval100.0%
Simplified100.0%
Taylor expanded in d3 around inf 98.1%
+-commutative98.1%
+-commutative98.1%
associate-/l*99.9%
Simplified99.9%
Taylor expanded in d2 around inf 98.1%
associate-/l*99.9%
Simplified99.9%
Taylor expanded in d3 around 0 96.3%
distribute-lft-out100.0%
Simplified100.0%
Final simplification74.0%
(FPCore (d1 d2 d3) :precision binary64 (if (<= d2 -1.42e-8) (* d1 (+ d2 37.0)) (* d1 (+ d3 37.0))))
double code(double d1, double d2, double d3) {
double tmp;
if (d2 <= -1.42e-8) {
tmp = d1 * (d2 + 37.0);
} else {
tmp = d1 * (d3 + 37.0);
}
return tmp;
}
real(8) function code(d1, d2, d3)
real(8), intent (in) :: d1
real(8), intent (in) :: d2
real(8), intent (in) :: d3
real(8) :: tmp
if (d2 <= (-1.42d-8)) then
tmp = d1 * (d2 + 37.0d0)
else
tmp = d1 * (d3 + 37.0d0)
end if
code = tmp
end function
public static double code(double d1, double d2, double d3) {
double tmp;
if (d2 <= -1.42e-8) {
tmp = d1 * (d2 + 37.0);
} else {
tmp = d1 * (d3 + 37.0);
}
return tmp;
}
def code(d1, d2, d3): tmp = 0 if d2 <= -1.42e-8: tmp = d1 * (d2 + 37.0) else: tmp = d1 * (d3 + 37.0) return tmp
function code(d1, d2, d3) tmp = 0.0 if (d2 <= -1.42e-8) tmp = Float64(d1 * Float64(d2 + 37.0)); else tmp = Float64(d1 * Float64(d3 + 37.0)); end return tmp end
function tmp_2 = code(d1, d2, d3) tmp = 0.0; if (d2 <= -1.42e-8) tmp = d1 * (d2 + 37.0); else tmp = d1 * (d3 + 37.0); end tmp_2 = tmp; end
code[d1_, d2_, d3_] := If[LessEqual[d2, -1.42e-8], N[(d1 * N[(d2 + 37.0), $MachinePrecision]), $MachinePrecision], N[(d1 * N[(d3 + 37.0), $MachinePrecision]), $MachinePrecision]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;d2 \leq -1.42 \cdot 10^{-8}:\\
\;\;\;\;d1 \cdot \left(d2 + 37\right)\\
\mathbf{else}:\\
\;\;\;\;d1 \cdot \left(d3 + 37\right)\\
\end{array}
\end{array}
if d2 < -1.41999999999999998e-8Initial program 96.7%
cancel-sign-sub96.7%
+-commutative96.7%
*-commutative96.7%
distribute-lft-out100.0%
distribute-lft-neg-out100.0%
distribute-rgt-neg-in100.0%
distribute-lft-out--99.9%
associate-+r+99.9%
+-commutative99.9%
associate--l+99.9%
sub-neg99.9%
metadata-eval99.9%
metadata-eval99.9%
associate-+l+99.9%
metadata-eval99.9%
Simplified99.9%
Taylor expanded in d3 around 0 69.7%
if -1.41999999999999998e-8 < d2 Initial program 98.4%
cancel-sign-sub98.4%
+-commutative98.4%
*-commutative98.4%
distribute-lft-out100.0%
distribute-lft-neg-out100.0%
distribute-rgt-neg-in100.0%
distribute-lft-out--100.0%
associate-+r+100.0%
+-commutative100.0%
associate--l+100.0%
sub-neg100.0%
metadata-eval100.0%
metadata-eval100.0%
associate-+l+100.0%
metadata-eval100.0%
Simplified100.0%
Taylor expanded in d2 around 0 77.4%
Final simplification75.5%
(FPCore (d1 d2 d3) :precision binary64 (if (<= d2 -37.0) (* d1 d2) (* d1 37.0)))
double code(double d1, double d2, double d3) {
double tmp;
if (d2 <= -37.0) {
tmp = d1 * d2;
} else {
tmp = d1 * 37.0;
}
return tmp;
}
real(8) function code(d1, d2, d3)
real(8), intent (in) :: d1
real(8), intent (in) :: d2
real(8), intent (in) :: d3
real(8) :: tmp
if (d2 <= (-37.0d0)) then
tmp = d1 * d2
else
tmp = d1 * 37.0d0
end if
code = tmp
end function
public static double code(double d1, double d2, double d3) {
double tmp;
if (d2 <= -37.0) {
tmp = d1 * d2;
} else {
tmp = d1 * 37.0;
}
return tmp;
}
def code(d1, d2, d3): tmp = 0 if d2 <= -37.0: tmp = d1 * d2 else: tmp = d1 * 37.0 return tmp
function code(d1, d2, d3) tmp = 0.0 if (d2 <= -37.0) tmp = Float64(d1 * d2); else tmp = Float64(d1 * 37.0); end return tmp end
function tmp_2 = code(d1, d2, d3) tmp = 0.0; if (d2 <= -37.0) tmp = d1 * d2; else tmp = d1 * 37.0; end tmp_2 = tmp; end
code[d1_, d2_, d3_] := If[LessEqual[d2, -37.0], N[(d1 * d2), $MachinePrecision], N[(d1 * 37.0), $MachinePrecision]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;d2 \leq -37:\\
\;\;\;\;d1 \cdot d2\\
\mathbf{else}:\\
\;\;\;\;d1 \cdot 37\\
\end{array}
\end{array}
if d2 < -37Initial program 96.6%
cancel-sign-sub96.6%
+-commutative96.6%
*-commutative96.6%
distribute-lft-out99.9%
distribute-lft-neg-out99.9%
distribute-rgt-neg-in99.9%
distribute-lft-out--99.9%
associate-+r+99.9%
+-commutative99.9%
associate--l+99.9%
sub-neg99.9%
metadata-eval99.9%
metadata-eval99.9%
associate-+l+99.9%
metadata-eval99.9%
Simplified99.9%
Taylor expanded in d2 around inf 68.7%
if -37 < d2 Initial program 98.4%
cancel-sign-sub98.4%
+-commutative98.4%
*-commutative98.4%
distribute-lft-out100.0%
distribute-lft-neg-out100.0%
distribute-rgt-neg-in100.0%
distribute-lft-out--100.0%
associate-+r+100.0%
+-commutative100.0%
associate--l+100.0%
sub-neg100.0%
metadata-eval100.0%
metadata-eval100.0%
associate-+l+100.0%
metadata-eval100.0%
Simplified100.0%
Taylor expanded in d3 around 0 57.3%
Taylor expanded in d2 around 0 33.1%
*-commutative33.1%
Simplified33.1%
(FPCore (d1 d2 d3) :precision binary64 (* d1 37.0))
double code(double d1, double d2, double d3) {
return d1 * 37.0;
}
real(8) function code(d1, d2, d3)
real(8), intent (in) :: d1
real(8), intent (in) :: d2
real(8), intent (in) :: d3
code = d1 * 37.0d0
end function
public static double code(double d1, double d2, double d3) {
return d1 * 37.0;
}
def code(d1, d2, d3): return d1 * 37.0
function code(d1, d2, d3) return Float64(d1 * 37.0) end
function tmp = code(d1, d2, d3) tmp = d1 * 37.0; end
code[d1_, d2_, d3_] := N[(d1 * 37.0), $MachinePrecision]
\begin{array}{l}
\\
d1 \cdot 37
\end{array}
Initial program 98.0%
cancel-sign-sub98.0%
+-commutative98.0%
*-commutative98.0%
distribute-lft-out100.0%
distribute-lft-neg-out100.0%
distribute-rgt-neg-in100.0%
distribute-lft-out--100.0%
associate-+r+100.0%
+-commutative100.0%
associate--l+100.0%
sub-neg100.0%
metadata-eval100.0%
metadata-eval100.0%
associate-+l+100.0%
metadata-eval100.0%
Simplified100.0%
Taylor expanded in d3 around 0 60.0%
Taylor expanded in d2 around 0 25.6%
*-commutative25.6%
Simplified25.6%
(FPCore (d1 d2 d3) :precision binary64 (* d1 (+ (+ 37.0 d3) d2)))
double code(double d1, double d2, double d3) {
return d1 * ((37.0 + d3) + d2);
}
real(8) function code(d1, d2, d3)
real(8), intent (in) :: d1
real(8), intent (in) :: d2
real(8), intent (in) :: d3
code = d1 * ((37.0d0 + d3) + d2)
end function
public static double code(double d1, double d2, double d3) {
return d1 * ((37.0 + d3) + d2);
}
def code(d1, d2, d3): return d1 * ((37.0 + d3) + d2)
function code(d1, d2, d3) return Float64(d1 * Float64(Float64(37.0 + d3) + d2)) end
function tmp = code(d1, d2, d3) tmp = d1 * ((37.0 + d3) + d2); end
code[d1_, d2_, d3_] := N[(d1 * N[(N[(37.0 + d3), $MachinePrecision] + d2), $MachinePrecision]), $MachinePrecision]
\begin{array}{l}
\\
d1 \cdot \left(\left(37 + d3\right) + d2\right)
\end{array}
herbie shell --seed 2024087
(FPCore (d1 d2 d3)
:name "FastMath dist3"
:precision binary64
:alt
(* d1 (+ (+ 37.0 d3) d2))
(+ (+ (* d1 d2) (* (+ d3 5.0) d1)) (* d1 32.0)))