tweak: Move combinatorics functions to its own module
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@ -6,12 +6,59 @@ open FunctionRegistry_Helpers
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let nameSpace = "Danger"
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let nameSpace = "Danger"
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let requiresNamespace = true
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let requiresNamespace = true
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module Internals = {
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module Combinatorics = {
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// Probability functions
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module Helpers = {
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let laplace = ((successes, trials)) =>
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(successes +. 1.0) /. (trials +. 2.0)
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let factorial = Stdlib.Math.factorial
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let factorial = Stdlib.Math.factorial
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let choose = ((n, k)) => factorial(n) /. (factorial(n -. k) *. factorial(k))
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let choose = ((n, k)) => factorial(n) /. (factorial(n -. k) *. factorial(k))
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let pow = (base, exp) => Js.Math.pow_float(~base, ~exp)
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let pow = (base, exp) => Js.Math.pow_float(~base, ~exp)
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let binomial = ((n, k, p)) => choose((n, k)) *. pow(p, k) *. pow(1.0 -. p, n -. k)
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let binomial = ((n, k, p)) => choose((n, k)) *. pow(p, k) *. pow(1.0 -. p, n -. k)
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}
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module Lib = {
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let laplace = Function.make(
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~name="laplace",
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~nameSpace,
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~requiresNamespace,
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~output=EvtNumber,
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~examples=[`Danger.laplace(1, 20)`],
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~definitions=[
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DefineFn.Numbers.twoToOne("laplace", laplace),
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],
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(),
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)
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let factorial = Function.make(
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~name="factorial",
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~nameSpace,
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~requiresNamespace,
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~output=EvtNumber,
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~examples=[`Danger.factorial(20)`],
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~definitions=[DefineFn.Numbers.oneToOne("factorial", Combinatorics.factorial)],
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(),
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)
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let choose = Function.make(
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~name="choose",
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~nameSpace,
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~requiresNamespace,
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~output=EvtNumber,
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~examples=[`Danger.choose(1, 20)`],
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~definitions=[DefineFn.Numbers.twoToOne("choose", Combinatorics.choose)],
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(),
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)
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let binomial = Function.make(
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~name="binomial",
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~nameSpace,
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~requiresNamespace,
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~output=EvtNumber,
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~examples=[`Danger.binomial(1, 20, 0.5)`],
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~definitions=[DefineFn.Numbers.threeToOne("binomial", Combinatorics.binomial)],
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(),
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)
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}
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}
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module Internals = {
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// Probability functions
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let castArrayOfFloatsToInternalArrayOfInternals = xs =>
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let castArrayOfFloatsToInternalArrayOfInternals = xs =>
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xs
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xs
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@ -224,47 +271,12 @@ module Internals = {
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}
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}
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}
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}
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let library = [
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let library = [
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Function.make(
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Combinatorics.Lib.laplace,
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~name="laplace",
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Combinatorics.Lib.factorial,
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~nameSpace,
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Combinatorics.Lib.choose,
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~requiresNamespace,
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Combinatorics.Lib.binomial,
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~output=EvtNumber,
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~examples=[`Danger.laplace(1, 20)`],
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~definitions=[
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DefineFn.Numbers.twoToOne("laplace", ((successes, trials)) =>
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(successes +. 1.0) /. (trials +. 2.0)
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),
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],
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(),
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),
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Function.make(
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~name="factorial",
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~nameSpace,
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~requiresNamespace,
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~output=EvtNumber,
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~examples=[`Danger.factorial(20)`],
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~definitions=[DefineFn.Numbers.oneToOne("factorial", Internals.factorial)],
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(),
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),
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Function.make(
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~name="choose",
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~nameSpace,
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~requiresNamespace,
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~output=EvtNumber,
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~examples=[`Danger.choose(1, 20)`],
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~definitions=[DefineFn.Numbers.twoToOne("choose", Internals.choose)],
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(),
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),
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Function.make(
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~name="binomial",
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~nameSpace,
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~requiresNamespace,
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~output=EvtNumber,
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~examples=[`Danger.binomial(1, 20, 0.5)`],
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~definitions=[DefineFn.Numbers.threeToOne("binomial", Internals.binomial)],
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(),
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),
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// Integral in terms of function, min, max, num points
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// Integral in terms of function, min, max, num points
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// Note that execution time will be more predictable, because it
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// Note that execution time will be more predictable, because it
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// will only depend on num points and the complexity of the function
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// will only depend on num points and the complexity of the function
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