(FPCore (d h l M D) :precision binary64 (* (* (pow (/ d h) (/ 1.0 2.0)) (pow (/ d l) (/ 1.0 2.0))) (- 1.0 (* (* (/ 1.0 2.0) (pow (/ (* M D) (* 2.0 d)) 2.0)) (/ h l)))))
double code(double d, double h, double l, double M, double D) {
return (pow((d / h), (1.0 / 2.0)) * pow((d / l), (1.0 / 2.0))) * (1.0 - (((1.0 / 2.0) * pow(((M * D) / (2.0 * d)), 2.0)) * (h / l)));
}
real(8) function code(d, h, l, m, d_1)
real(8), intent (in) :: d
real(8), intent (in) :: h
real(8), intent (in) :: l
real(8), intent (in) :: m
real(8), intent (in) :: d_1
code = (((d / h) ** (1.0d0 / 2.0d0)) * ((d / l) ** (1.0d0 / 2.0d0))) * (1.0d0 - (((1.0d0 / 2.0d0) * (((m * d_1) / (2.0d0 * d)) ** 2.0d0)) * (h / l)))
end function
public static double code(double d, double h, double l, double M, double D) {
return (Math.pow((d / h), (1.0 / 2.0)) * Math.pow((d / l), (1.0 / 2.0))) * (1.0 - (((1.0 / 2.0) * Math.pow(((M * D) / (2.0 * d)), 2.0)) * (h / l)));
}
def code(d, h, l, M, D): return (math.pow((d / h), (1.0 / 2.0)) * math.pow((d / l), (1.0 / 2.0))) * (1.0 - (((1.0 / 2.0) * math.pow(((M * D) / (2.0 * d)), 2.0)) * (h / l)))
function code(d, h, l, M, D) return Float64(Float64((Float64(d / h) ^ Float64(1.0 / 2.0)) * (Float64(d / l) ^ Float64(1.0 / 2.0))) * Float64(1.0 - Float64(Float64(Float64(1.0 / 2.0) * (Float64(Float64(M * D) / Float64(2.0 * d)) ^ 2.0)) * Float64(h / l)))) end
function tmp = code(d, h, l, M, D) tmp = (((d / h) ^ (1.0 / 2.0)) * ((d / l) ^ (1.0 / 2.0))) * (1.0 - (((1.0 / 2.0) * (((M * D) / (2.0 * d)) ^ 2.0)) * (h / l))); end
code[d_, h_, l_, M_, D_] := N[(N[(N[Power[N[(d / h), $MachinePrecision], N[(1.0 / 2.0), $MachinePrecision]], $MachinePrecision] * N[Power[N[(d / l), $MachinePrecision], N[(1.0 / 2.0), $MachinePrecision]], $MachinePrecision]), $MachinePrecision] * N[(1.0 - N[(N[(N[(1.0 / 2.0), $MachinePrecision] * N[Power[N[(N[(M * D), $MachinePrecision] / N[(2.0 * d), $MachinePrecision]), $MachinePrecision], 2.0], $MachinePrecision]), $MachinePrecision] * N[(h / l), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]
\left({\left(\frac{d}{h}\right)}^{\left(\frac{1}{2}\right)} \cdot {\left(\frac{d}{\ell}\right)}^{\left(\frac{1}{2}\right)}\right) \cdot \left(1 - \left(\frac{1}{2} \cdot {\left(\frac{M \cdot D}{2 \cdot d}\right)}^{2}\right) \cdot \frac{h}{\ell}\right)
Please include this information when filing a bug report:
herbie shell --seed 2022203
(FPCore (d h l M D)
:name "Henrywood and Agarwal, Equation (12)"
:precision binary64
(* (* (pow (/ d h) (/ 1.0 2.0)) (pow (/ d l) (/ 1.0 2.0))) (- 1.0 (* (* (/ 1.0 2.0) (pow (/ (* M D) (* 2.0 d)) 2.0)) (/ h l)))))
| hash-ref: no value found for key key: '~ | L | C | |
|---|---|---|---|
| get-parametric-operator | /data/pavpan/nightlies/herbie/enumo-rat/src/syntax/syntax.rkt | 218 | 0 |
| f336 | .../match/compiler.rkt | 548 | 40 |
| expand-parametric | /data/pavpan/nightlies/herbie/enumo-rat/src/syntax/sugar.rkt | 62 | 0 |
| (unnamed) | /data/pavpan/nightlies/herbie/enumo-rat/src/syntax/rules.rkt | 176 | 8 |
| generate-rules-for | /data/pavpan/nightlies/herbie/enumo-rat/src/syntax/rules.rkt | 161 | 0 |
| generate-missing-rules | /data/pavpan/nightlies/herbie/enumo-rat/src/syntax/rules.rkt | 187 | 0 |
| (unnamed) | /data/pavpan/nightlies/herbie/enumo-rat/src/syntax/rules.rkt | 29 | 26 |
| get-swaps | /data/pavpan/nightlies/herbie/enumo-rat/src/symmetry.rkt | 6 | 0 |
| connected-components | /data/pavpan/nightlies/herbie/enumo-rat/src/symmetry.rkt | 17 | 0 |
| run-improve! | /data/pavpan/nightlies/herbie/enumo-rat/src/mainloop.rkt | 296 | 0 |
| (unnamed) | /data/pavpan/nightlies/herbie/enumo-rat/src/sandbox.rkt | 55 | 6 |
| (unnamed) | /usr/share/racket/pkgs/profile-lib/main.rkt | 40 | 10 |
| profile-thunk | /usr/share/racket/pkgs/profile-lib/main.rkt | 9 | 0 |
| (unnamed) | /usr/share/racket/collects/racket/engine.rkt | 42 | 24 |