\left(x \cdot \left(y \cdot z - t \cdot a\right) - b \cdot \left(c \cdot z - i \cdot a\right)\right) + j \cdot \left(c \cdot t - i \cdot y\right)
\begin{array}{l}
\mathbf{if}\;x \le -3.9545558799775763 \cdot 10^{-168}:\\
\;\;\;\;\left(x \cdot \left(y \cdot z - t \cdot a\right) - \left(\sqrt[3]{b} \cdot \sqrt[3]{b}\right) \cdot \left(\sqrt[3]{b} \cdot \left(c \cdot z - i \cdot a\right)\right)\right) + j \cdot \left(c \cdot t - i \cdot y\right)\\
\mathbf{elif}\;x \le 3.96976949142380485 \cdot 10^{-177}:\\
\;\;\;\;\left(0 - \left(\left(b \cdot c\right) \cdot z + b \cdot \left(-i \cdot a\right)\right)\right) + \left(\sqrt[3]{j \cdot \left(c \cdot t - i \cdot y\right)} \cdot \sqrt[3]{j \cdot \left(c \cdot t - i \cdot y\right)}\right) \cdot \sqrt[3]{j \cdot \left(c \cdot t - i \cdot y\right)}\\
\mathbf{else}:\\
\;\;\;\;\left(x \cdot \left(y \cdot z - t \cdot a\right) - \left(b \cdot \left(c \cdot z\right) + \left(-a \cdot \left(i \cdot b\right)\right)\right)\right) + j \cdot \left(c \cdot t - i \cdot y\right)\\
\end{array}double code(double x, double y, double z, double t, double a, double b, double c, double i, double j) {
return ((double) (((double) (((double) (x * ((double) (((double) (y * z)) - ((double) (t * a)))))) - ((double) (b * ((double) (((double) (c * z)) - ((double) (i * a)))))))) + ((double) (j * ((double) (((double) (c * t)) - ((double) (i * y))))))));
}
double code(double x, double y, double z, double t, double a, double b, double c, double i, double j) {
double VAR;
if ((x <= -3.9545558799775763e-168)) {
VAR = ((double) (((double) (((double) (x * ((double) (((double) (y * z)) - ((double) (t * a)))))) - ((double) (((double) (((double) cbrt(b)) * ((double) cbrt(b)))) * ((double) (((double) cbrt(b)) * ((double) (((double) (c * z)) - ((double) (i * a)))))))))) + ((double) (j * ((double) (((double) (c * t)) - ((double) (i * y))))))));
} else {
double VAR_1;
if ((x <= 3.969769491423805e-177)) {
VAR_1 = ((double) (((double) (0.0 - ((double) (((double) (((double) (b * c)) * z)) + ((double) (b * ((double) -(((double) (i * a)))))))))) + ((double) (((double) (((double) cbrt(((double) (j * ((double) (((double) (c * t)) - ((double) (i * y)))))))) * ((double) cbrt(((double) (j * ((double) (((double) (c * t)) - ((double) (i * y)))))))))) * ((double) cbrt(((double) (j * ((double) (((double) (c * t)) - ((double) (i * y))))))))))));
} else {
VAR_1 = ((double) (((double) (((double) (x * ((double) (((double) (y * z)) - ((double) (t * a)))))) - ((double) (((double) (b * ((double) (c * z)))) + ((double) -(((double) (a * ((double) (i * b)))))))))) + ((double) (j * ((double) (((double) (c * t)) - ((double) (i * y))))))));
}
VAR = VAR_1;
}
return VAR;
}




Bits error versus x




Bits error versus y




Bits error versus z




Bits error versus t




Bits error versus a




Bits error versus b




Bits error versus c




Bits error versus i




Bits error versus j
Results
| Original | 12.7 |
|---|---|
| Target | 16.3 |
| Herbie | 12.7 |
if x < -3.9545558799775763e-168Initial program 9.9
rmApplied add-cube-cbrt10.1
Applied associate-*l*10.1
if -3.9545558799775763e-168 < x < 3.969769491423805e-177Initial program 18.1
rmApplied sub-neg18.1
Applied distribute-lft-in18.1
rmApplied associate-*r*18.3
rmApplied add-cube-cbrt18.6
Taylor expanded around 0 18.0
if 3.969769491423805e-177 < x Initial program 11.2
rmApplied sub-neg11.2
Applied distribute-lft-in11.2
rmApplied distribute-rgt-neg-out11.2
Simplified11.1
Final simplification12.7
herbie shell --seed 2020120
(FPCore (x y z t a b c i j)
:name "Linear.Matrix:det33 from linear-1.19.1.3"
:precision binary64
:herbie-target
(if (< t -8.120978919195912e-33) (- (* x (- (* z y) (* a t))) (- (* b (- (* z c) (* a i))) (* (- (* c t) (* y i)) j))) (if (< t -4.712553818218485e-169) (+ (- (* x (- (* y z) (* t a))) (* b (- (* c z) (* i a)))) (/ (* j (- (pow (* c t) 2) (pow (* i y) 2))) (+ (* c t) (* i y)))) (if (< t -7.633533346031584e-308) (- (* x (- (* z y) (* a t))) (- (* b (- (* z c) (* a i))) (* (- (* c t) (* y i)) j))) (if (< t 1.0535888557455487e-139) (+ (- (* x (- (* y z) (* t a))) (* b (- (* c z) (* i a)))) (/ (* j (- (pow (* c t) 2) (pow (* i y) 2))) (+ (* c t) (* i y)))) (- (* x (- (* z y) (* a t))) (- (* b (- (* z c) (* a i))) (* (- (* c t) (* y i)) j)))))))
(+ (- (* x (- (* y z) (* t a))) (* b (- (* c z) (* i a)))) (* j (- (* c t) (* i y)))))