Implement mx for distributions
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@ -37,7 +37,7 @@ could be continuous, discrete or mixed.
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<Story
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<Story
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name="Discrete"
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name="Discrete"
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args={{
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args={{
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squiggleString: "mm(0, 1, 3, 5, 8, 10, [0.1, 0.8, 0.5, 0.3, 0.2, 0.1])",
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squiggleString: "mx(0, 1, 3, 5, 8, 10, [0.1, 0.8, 0.5, 0.3, 0.2, 0.1])",
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}}
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}}
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>
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>
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{Template.bind({})}
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{Template.bind({})}
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@ -51,7 +51,7 @@ could be continuous, discrete or mixed.
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name="Mixed"
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name="Mixed"
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args={{
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args={{
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squiggleString:
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squiggleString:
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"mm(0, 1, 3, 5, 8, normal(8, 1), [0.1, 0.3, 0.4, 0.35, 0.2, 0.8])",
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"mx(0, 1, 3, 5, 8, normal(8, 1), [0.1, 0.3, 0.4, 0.35, 0.2, 0.8])",
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}}
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}}
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>
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>
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{Template.bind({})}
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{Template.bind({})}
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@ -130,10 +130,6 @@
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},
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},
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"encode": {
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"encode": {
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"enter": {
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"enter": {
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"y2": {
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"scale": "yscale",
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"value": 0
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},
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"width": {
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"width": {
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"value": 1
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"value": 1
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}
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}
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@ -146,6 +142,10 @@
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"y": {
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"y": {
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"scale": "yscale",
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"scale": "yscale",
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"field": "y"
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"field": "y"
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},
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"y2": {
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"scale": "yscale",
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"value": 0
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}
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}
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}
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}
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}
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}
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@ -160,7 +160,7 @@
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"shape": {
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"shape": {
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"value": "circle"
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"value": "circle"
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},
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},
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"size": [{ "value": 30 }],
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"size": [{ "value": 100 }],
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"tooltip": {
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"tooltip": {
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"signal": "datum.y"
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"signal": "datum.y"
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}
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}
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@ -8,6 +8,7 @@ type error =
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| NotYetImplemented
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| NotYetImplemented
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| Unreachable
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| Unreachable
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| DistributionVerticalShiftIsInvalid
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| DistributionVerticalShiftIsInvalid
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| ArgumentError(string)
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| Other(string)
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| Other(string)
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@genType
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@genType
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@ -66,6 +66,38 @@ module Helpers = {
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dist1,
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dist1,
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)->runGenericOperation
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)->runGenericOperation
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}
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}
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let parseNumber = (args: expressionValue) : Belt.Result.t<float, string> =>
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switch args {
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| EvNumber(x) => Ok(x)
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| _ => Error("Not a number")
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}
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let parseNumberArray = (ags: array<expressionValue>) : Belt.Result.t<array<float>, string> => E.A.fmap(parseNumber, ags) |> E.A.R.firstErrorOrOpen
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let parseDist = (args: expressionValue): Belt.Result.t<GenericDist_Types.genericDist, string> =>
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switch args {
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| EvDistribution(x) => Ok(x)
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| EvNumber(x) => Ok(GenericDist.fromFloat(x))
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| _ => Error("Not a distribution")
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}
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let parseDistributionArray = (ags: array<expressionValue>) : Belt.Result.t<array<GenericDist_Types.genericDist>, string> => E.A.fmap(parseDist, ags) |> E.A.R.firstErrorOrOpen
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let mixture = (args : array<expressionValue>): DistributionOperation.outputType => {
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let givenWeights = E.A.last(args)
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let calculatedWeights =
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switch givenWeights {
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| Some(EvArray(b)) => parseNumberArray(b)
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| None =>
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Ok(Belt.Array.make(E.A.length(args), 1.0 /. Belt.Int.toFloat(E.A.length(args))))
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| _ => Error("Last argument of mx must be array")
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}
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switch (parseDistributionArray(Belt.Array.slice(args, ~offset=0, ~len=Belt.Array.length(args)-1)), calculatedWeights) {
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| (Ok(distArray), Ok(w)) => Mixture(Belt.Array.zip(distArray, w)) -> runGenericOperation
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| (Error(err), _) => GenDistError(ArgumentError(err))
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| (_, Error(err)) => GenDistError(ArgumentError(err))
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}
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}
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}
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}
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module SymbolicConstructors = {
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module SymbolicConstructors = {
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@ -145,6 +177,8 @@ let dispatchToGenericOutput = (call: ExpressionValue.functionCall): option<
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Helpers.toDistFn(Truncate(None, Some(float)), dist)
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Helpers.toDistFn(Truncate(None, Some(float)), dist)
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| ("truncate", [EvDistribution(dist), EvNumber(float1), EvNumber(float2)]) =>
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| ("truncate", [EvDistribution(dist), EvNumber(float1), EvNumber(float2)]) =>
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Helpers.toDistFn(Truncate(Some(float1), Some(float2)), dist)
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Helpers.toDistFn(Truncate(Some(float1), Some(float2)), dist)
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| ("mx", args) =>
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Helpers.mixture(args) -> Some
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| ("log", [EvDistribution(a)]) =>
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| ("log", [EvDistribution(a)]) =>
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Helpers.twoDiststoDistFn(Algebraic, "log", a, GenericDist.fromFloat(Math.e))->Some
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Helpers.twoDiststoDistFn(Algebraic, "log", a, GenericDist.fromFloat(Math.e))->Some
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| ("log10", [EvDistribution(a)]) =>
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| ("log10", [EvDistribution(a)]) =>
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@ -186,7 +220,9 @@ let genericOutputToReducerValue = (o: DistributionOperation.outputType): result<
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| GenDistError(NotYetImplemented) => Error(RETodo("Function not yet implemented"))
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| GenDistError(NotYetImplemented) => Error(RETodo("Function not yet implemented"))
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| GenDistError(Unreachable) => Error(RETodo("Unreachable"))
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| GenDistError(Unreachable) => Error(RETodo("Unreachable"))
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| GenDistError(DistributionVerticalShiftIsInvalid) =>
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| GenDistError(DistributionVerticalShiftIsInvalid) =>
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Error(RETodo("Distribution Vertical Shift is Invalid"))
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Error(RETodo("Distribution Vertical Shift Is Invalid"))
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| GenDistError(ArgumentError(err)) =>
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Error(RETodo("Argument Error: " ++ err))
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| GenDistError(Other(s)) => Error(RETodo(s))
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| GenDistError(Other(s)) => Error(RETodo(s))
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}
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}
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@ -68,15 +68,15 @@ combination of the two. The first positional arguments represent the distributio
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to be combined, and the last argument is how much to weigh every distribution in the
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to be combined, and the last argument is how much to weigh every distribution in the
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combination.
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combination.
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<SquiggleEditor initialSquiggleString="mm(uniform(0,1), normal(1,1), [0.5, 0.5])" />
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<SquiggleEditor initialSquiggleString="mx(uniform(0,1), normal(1,1), [0.5, 0.5])" />
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It's possible to create discrete distributions using this method.
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It's possible to create discrete distributions using this method.
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<SquiggleEditor initialSquiggleString="mm(0, 1, [0.2,0.8])" />
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<SquiggleEditor initialSquiggleString="mx(0, 1, [0.2,0.8])" />
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As well as mixed distributions:
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As well as mixed distributions:
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<SquiggleEditor initialSquiggleString="mm(3, 8, 1 to 10, [0.2, 0.3, 0.5])" />
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<SquiggleEditor initialSquiggleString="mx(3, 8, 1 to 10, [0.2, 0.3, 0.5])" />
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## Other Functions
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## Other Functions
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