\frac{2}{\left(\left(\frac{{t}^{3}}{\ell \cdot \ell} \cdot \sin k\right) \cdot \tan k\right) \cdot \left(\left(1 + {\left(\frac{k}{t}\right)}^{2}\right) - 1\right)}\begin{array}{l}
\mathbf{if}\;\ell \le -3.40021725979609416 \cdot 10^{-124}:\\
\;\;\;\;2 \cdot \left({\left(\frac{1}{{k}^{\left(\frac{2}{2}\right)}}\right)}^{1} \cdot \left(\left({\left(\frac{1}{{k}^{\left(\frac{2}{2}\right)} \cdot {t}^{1}}\right)}^{1} \cdot \frac{\cos k}{\sqrt{{\left(\sin k\right)}^{2}}}\right) \cdot \frac{{\ell}^{2}}{\sqrt{{\left(\sin k\right)}^{2}}}\right)\right)\\
\mathbf{elif}\;\ell \le 1.7324700882748721 \cdot 10^{-80}:\\
\;\;\;\;2 \cdot \left({\left(\frac{1}{{k}^{\left(\frac{2}{2}\right)} \cdot \left({k}^{\left(\frac{2}{2}\right)} \cdot {t}^{1}\right)}\right)}^{1} \cdot \frac{\frac{\cos k}{\frac{\frac{{\left(\sqrt[3]{\sin k}\right)}^{4}}{\ell}}{\ell}}}{{\left(\sqrt[3]{\sin k}\right)}^{2}}\right)\\
\mathbf{else}:\\
\;\;\;\;2 \cdot \left({\left(\frac{1}{{k}^{\left(\frac{2}{2}\right)}}\right)}^{1} \cdot \left({\left(\frac{1}{{k}^{\left(\frac{2}{2}\right)} \cdot {t}^{1}}\right)}^{1} \cdot \frac{\cos k}{\frac{{\left(\sin k\right)}^{2}}{{\ell}^{2}}}\right)\right)\\
\end{array}double code(double t, double l, double k) {
return ((double) (2.0 / ((double) (((double) (((double) (((double) (((double) pow(t, 3.0)) / ((double) (l * l)))) * ((double) sin(k)))) * ((double) tan(k)))) * ((double) (((double) (1.0 + ((double) pow(((double) (k / t)), 2.0)))) - 1.0))))));
}
double code(double t, double l, double k) {
double VAR;
if ((l <= -3.400217259796094e-124)) {
VAR = ((double) (2.0 * ((double) (((double) pow(((double) (1.0 / ((double) pow(k, ((double) (2.0 / 2.0)))))), 1.0)) * ((double) (((double) (((double) pow(((double) (1.0 / ((double) (((double) pow(k, ((double) (2.0 / 2.0)))) * ((double) pow(t, 1.0)))))), 1.0)) * ((double) (((double) cos(k)) / ((double) sqrt(((double) pow(((double) sin(k)), 2.0)))))))) * ((double) (((double) pow(l, 2.0)) / ((double) sqrt(((double) pow(((double) sin(k)), 2.0))))))))))));
} else {
double VAR_1;
if ((l <= 1.732470088274872e-80)) {
VAR_1 = ((double) (2.0 * ((double) (((double) pow(((double) (1.0 / ((double) (((double) pow(k, ((double) (2.0 / 2.0)))) * ((double) (((double) pow(k, ((double) (2.0 / 2.0)))) * ((double) pow(t, 1.0)))))))), 1.0)) * ((double) (((double) (((double) cos(k)) / ((double) (((double) (((double) pow(((double) cbrt(((double) sin(k)))), 4.0)) / l)) / l)))) / ((double) pow(((double) cbrt(((double) sin(k)))), 2.0))))))));
} else {
VAR_1 = ((double) (2.0 * ((double) (((double) pow(((double) (1.0 / ((double) pow(k, ((double) (2.0 / 2.0)))))), 1.0)) * ((double) (((double) pow(((double) (1.0 / ((double) (((double) pow(k, ((double) (2.0 / 2.0)))) * ((double) pow(t, 1.0)))))), 1.0)) * ((double) (((double) cos(k)) / ((double) (((double) pow(((double) sin(k)), 2.0)) / ((double) pow(l, 2.0))))))))))));
}
VAR = VAR_1;
}
return VAR;
}



Bits error versus t



Bits error versus l



Bits error versus k
Results
if l < -3.400217259796094e-124Initial program 49.5
Simplified42.5
Taylor expanded around inf 25.3
rmApplied sqr-pow25.3
Applied associate-*l*22.3
rmApplied *-un-lft-identity22.3
Applied times-frac22.0
Applied unpow-prod-down22.0
Applied associate-*l*19.6
rmApplied add-sqr-sqrt19.6
Applied times-frac19.7
Applied associate-*r*19.4
if -3.400217259796094e-124 < l < 1.732470088274872e-80Initial program 46.8
Simplified37.0
Taylor expanded around inf 16.8
rmApplied sqr-pow16.8
Applied associate-*l*16.7
rmApplied add-cube-cbrt16.9
Applied unpow-prod-down16.9
Applied associate-/r*16.3
Simplified11.4
if 1.732470088274872e-80 < l Initial program 50.2
Simplified43.8
Taylor expanded around inf 29.5
rmApplied sqr-pow29.5
Applied associate-*l*25.7
rmApplied *-un-lft-identity25.7
Applied times-frac25.4
Applied unpow-prod-down25.4
Applied associate-*l*22.6
rmApplied associate-/l*22.6
Final simplification16.7
herbie shell --seed 2020140
(FPCore (t l k)
:name "Toniolo and Linder, Equation (10-)"
:precision binary64
(/ 2.0 (* (* (* (/ (pow t 3.0) (* l l)) (sin k)) (tan k)) (- (+ 1.0 (pow (/ k t) 2.0)) 1.0))))