Added lognormal fn definitions
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@ -95,13 +95,9 @@ module FnDefinition = {
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if E.A.length(f.inputs) !== E.A.length(args) {
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None
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} else {
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let foo = E.A.zip(inputTypes, args)
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->(e => {Js.log2("Here", e); e})
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E.A.zip(inputTypes, args)
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->E.A2.fmap(((input, arg)) => matchInput(input, arg))
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->(e => {Js.log2("Here2", e); e})
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->E.A.O.openIfAllSome
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->(e => {Js.log2("Here3", e); e});
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foo
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}
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}
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@ -121,9 +117,7 @@ module FnDefinition = {
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}
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let run = (f: fnDefinition, args: array<expressionValue>) => {
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Js.log3("Run", f, args)
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let argValues = getArgValues(f, args)
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Js.log2("RunArgValues", argValues)
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switch argValues {
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| Some(values) => f.run(values)
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| None => Error("Impossible")
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@ -233,16 +227,16 @@ module Registry = {
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let matchAndRun = (r: registry, fnName: string, args: array<expressionValue>) => {
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switch findMatches(r, fnName, args) {
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| Match.FullMatch(m) => fullMatchToDef(r, m)->E.O2.fmap(r => {
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| Match.FullMatch(m) =>
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fullMatchToDef(r, m)->E.O2.fmap(r => {
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FnDefinition.run(r, args)
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})
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})
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| _ => None
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}
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}
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}
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let twoNumberInputs = (inputs: array<value>) =>{
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Js.log2("HII",inputs);
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let twoNumberInputs = (inputs: array<value>) => {
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switch inputs {
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| [Number(n1), Number(n2)] => Ok(n1, n2)
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| _ => Error("Wrong inputs / Logically impossible")
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@ -279,9 +273,36 @@ let normal = Function.make(
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),
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),
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Function.makeDefinition("normal", [I_Record([("p5", I_Numeric), ("p95", I_Numeric)])], inputs =>
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twoNumberInputsRecord("p5", "p95", inputs)->E.R.bind(((mean, stdev)) =>
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Ok(p5and95(mean, stdev))
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)
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twoNumberInputsRecord("p5", "p95", inputs)->E.R.bind(((v1, v2)) => Ok(p5and95(v1, v2)))
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),
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],
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)
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let logNormal = Function.make(
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"Lognormal",
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[
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Function.makeDefinition("lognormal", [I_Numeric, I_Numeric], inputs =>
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twoNumberInputs(inputs)->E.R.bind(((mu, sigma)) =>
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SymbolicDist.Lognormal.make(mu, sigma)->E.R2.fmap(contain)
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)
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),
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Function.makeDefinition(
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"lognormal",
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[I_Record([("p5", I_Numeric), ("p95", I_Numeric)])],
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inputs =>
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twoNumberInputsRecord("p5", "p95", inputs)->E.R.bind(((p5, p95)) => Ok(
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contain(SymbolicDist.Lognormal.from90PercentCI(p5, p95)),
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)),
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),
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Function.makeDefinition(
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"lognormal",
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[I_Record([("mean", I_Numeric), ("stdev", I_Numeric)])],
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inputs =>
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twoNumberInputsRecord("mean", "stdev", inputs)->E.R.bind(((mean, stdev)) =>
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SymbolicDist.Lognormal.fromMeanAndStdev(mean, stdev)->E.R2.fmap(contain)
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),
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),
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],
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)
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let allFunctions = [normal, logNormal]
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@ -227,8 +227,7 @@ let dispatchToGenericOutput = (
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| ("delta", [EvNumber(f)]) =>
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SymbolicDist.Float.makeSafe(f)->SymbolicConstructors.symbolicResultToOutput
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| (
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(
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"uniform"
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("uniform"
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| "beta"
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| "lognormal"
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| "cauchy"
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@ -386,19 +385,20 @@ let genericOutputToReducerValue = (o: DistributionOperation.outputType): result<
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| GenDistError(err) => Error(REDistributionError(err))
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}
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let registered = [FunctionRegistry.normal]
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let registered = FunctionRegistry.allFunctions
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let tryRegistry = (call:ExpressionValue.functionCall) => {
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let (fnName, args) = call;
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let tryRegistry = (call: ExpressionValue.functionCall) => {
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let (fnName, args) = call
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let response = FunctionRegistry.Registry.matchAndRun(registered, fnName, args)
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let foo = response -> E.O2.fmap(r => r->E.R2.errMap(s => Reducer_ErrorValue.RETodo(s)))
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let foo = response->E.O2.fmap(r => r->E.R2.errMap(s => Reducer_ErrorValue.RETodo(s)))
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foo
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}
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let dispatch = (call:ExpressionValue.functionCall, environment) => {
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let regularDispatch = dispatchToGenericOutput(call, environment)->E.O2.fmap(genericOutputToReducerValue)
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switch(regularDispatch){
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| Some(x) => Some(x)
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| None => tryRegistry(call)
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let dispatch = (call: ExpressionValue.functionCall, environment) => {
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let regularDispatch =
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dispatchToGenericOutput(call, environment)->E.O2.fmap(genericOutputToReducerValue)
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switch regularDispatch {
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| Some(x) => Some(x)
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| None => tryRegistry(call)
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}
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}
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