Merge pull request #2 from foretold-app/Shape-manipulations
Shape manipulations
This commit is contained in:
commit
a40bd21eb9
26
__tests__/Foo/Foo__Test.re
Normal file
26
__tests__/Foo/Foo__Test.re
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@ -0,0 +1,26 @@
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open Jest;
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open Expect;
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let shape: DistributionTypes.xyShape = {
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xs: [|1., 4., 8.|],
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ys: [|8., 9., 2.|],
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};
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open Shape;
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describe("Shape", () =>
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describe("XYShape", () =>
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test("#ySum", ()
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=>
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expect(XYShape.ySum(shape)) |> toEqual(19.0)
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)
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// test("#both", () => {
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// let expected: DistributionTypes.xyShape = {
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// xs: [|1., 4., 8.|],
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// ys: [|8., 1., 1.|],
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// };
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// expect(shape |> XYShape.derivative |> XYShape.integral)
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// |> toEqual(shape);
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// });
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)
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);
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@ -11,6 +11,11 @@
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"dir": "showcase",
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"type": "dev",
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"subdirs": true
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},
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{
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"dir": "__tests__",
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"type": "dev",
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"subdirs": true
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}
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],
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"bsc-flags": ["-bs-super-errors", "-bs-no-version-header"],
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@ -21,6 +26,7 @@
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"suffix": ".bs.js",
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"namespace": true,
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"bs-dependencies": [
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"@glennsl/bs-jest",
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"@foretold/components",
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"bs-ant-design-alt",
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"reason-react",
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@ -13,7 +13,10 @@
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"server": "moduleserve ./ --port 8000",
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"predeploy": "parcel build ./src/index.html --no-source-maps --no-autoinstall",
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"deploy": "gh-pages -d dist",
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"test": "echo \"Error: no test specified\" && exit 1"
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"test": "jest",
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"test:ci": "yarn jest",
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"watch:test": "jest --watchAll",
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"watch:s": "yarn jest -- Converter_test --watch"
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},
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"keywords": [
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"BuckleScript",
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@ -26,13 +29,16 @@
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"@foretold/cdf": "^1.0.15",
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"@foretold/components": "^0.0.3",
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"@foretold/guesstimator": "^1.0.10",
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"@glennsl/bs-jest": "^0.4.9",
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"antd": "3.17.0",
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"autoprefixer": "^9.7.4",
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"babel-jest": "^25.1.0",
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"bs-ant-design-alt": "2.0.0-alpha.31",
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"bs-css": "^11.0.0",
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"bs-moment": "0.4.4",
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"bs-reform": "9.7.1",
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"d3": "^5.15.0",
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"jest": "^25.1.0",
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"lenses-ppx": "4.0.0",
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"less": "^3.10.3",
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"lodash": "^4.17.15",
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@ -8,7 +8,9 @@ let data: DistributionTypes.xyShape = {
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let mixedDist =
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GenericDistribution.make(
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~generationSource=
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GuesstimatorString("mm(uniform(10,12), normal(5,1), [.5,.5])"),
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GuesstimatorString(
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"mm(floor(uniform(20, 30)), normal(50,10), [.5,.5])",
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),
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~probabilityType=Pdf,
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~domain=Complete,
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~unit=Unspecified,
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@ -42,14 +44,14 @@ let distributions = () =>
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<h2> {"Basic Mixed Distribution" |> ReasonReact.string} </h2>
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<GenericDistributionChart dist=mixedDist />
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</div>
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<div>
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<h2> {"Time Distribution" |> ReasonReact.string} </h2>
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<GenericDistributionChart dist=timeDist />
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</div>
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<div>
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<h2> {"Domain Limited Distribution" |> ReasonReact.string} </h2>
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<GenericDistributionChart dist=domainLimitedDist />
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</div>
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</div>;
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// <div>
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// <h2> {"Time Distribution" |> ReasonReact.string} </h2>
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// <GenericDistributionChart dist=timeDist />
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// </div>
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// <div>
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// <h2> {"Domain Limited Distribution" |> ReasonReact.string} </h2>
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// <GenericDistributionChart dist=domainLimitedDist />
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// </div>
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let entry = EntryTypes.(entry(~title="Pdf", ~render=distributions));
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@ -35,7 +35,11 @@ module Continuous = {
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|> ReasonReact.string}
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</th>
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<th className="px-4 py-2 border ">
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{Shape.Continuous.findY(x, Shape.XYShape.integral(data))
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{Shape.Continuous.findY(
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x,
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Shape.XYShape.Range.integrateWithTriangles(data)
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|> E.O.toExt(""),
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)
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|> E.Float.with2DigitsPrecision
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|> ReasonReact.string}
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</th>
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@ -47,6 +51,51 @@ module Continuous = {
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};
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};
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module Mixed = {
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[@react.component]
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let make = (~data: DistributionTypes.mixedShape) => {
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let (x, setX) = React.useState(() => 0.);
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let chart =
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React.useMemo1(
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() =>
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<CdfChart__Plain
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data={data.continuous}
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color={`hex("333")}
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onHover={r => setX(_ => r)}
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/>,
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[|data|],
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);
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<div>
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chart
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<table className="table-auto">
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<thead>
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<tr>
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<th className="px-4 py-2"> {"X Point" |> ReasonReact.string} </th>
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<th className="px-4 py-2"> {"Y Pount" |> ReasonReact.string} </th>
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<th className="px-4 py-2">
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{"Y Integral to Point" |> ReasonReact.string}
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</th>
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</tr>
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</thead>
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<tbody>
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<tr>
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<th className="px-4 py-2 border ">
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{x |> E.Float.toString |> ReasonReact.string}
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</th>
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<th className="px-4 py-2 border ">
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{Shape.Mixed.getYIntegral(x, data)
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|> E.O.fmap(E.Float.with2DigitsPrecision)
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|> E.O.default("")
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|> ReasonReact.string}
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</th>
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</tr>
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</tbody>
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</table>
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<div />
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</div>;
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};
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};
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[@react.component]
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let make = (~dist) => {
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switch ((dist: option(DistributionTypes.genericDistribution))) {
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@ -62,7 +111,38 @@ let make = (~dist) => {
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}) =>
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<div>
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<Continuous data=n />
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<Continuous data={n |> Shape.XYShape.integral} />
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<Continuous
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data={
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n
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|> Shape.XYShape.Range.integrateWithTriangles
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|> E.O.toExt("")
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|> Shape.XYShape.scaleCdfTo
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}
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/>
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<Mixed
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data={
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continuous:
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n
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|> Shape.Continuous.toCdf
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|> E.O.toExt("")
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|> Shape.XYShape.scaleCdfTo
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|> Shape.Continuous.toPdf
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|> E.O.toExt(""),
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discrete: d,
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discreteProbabilityMassFraction: f,
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}
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/>
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<Continuous
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data={
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n
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|> Shape.XYShape.Range.integrateWithTriangles
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|> E.O.toExt("")
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|> Shape.XYShape.Range.derivative
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|> E.O.toExt("")
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|> Shape.XYShape.Range.integrateWithTriangles
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|> E.O.toExt("")
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}
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/>
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{d |> Shape.Discrete.scaleYToTotal(f) |> Shape.Discrete.render}
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</div>
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| _ => <div />
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@ -19,50 +19,103 @@ module XYShape = {
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let fmap = (t: t, y): t => {xs: t.xs, ys: t.ys |> E.A.fmap(y)};
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let scaleCdfTo = (~scaleTo=1., t: t) =>
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switch (_lastElement(t.ys)) {
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| Some(n) =>
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let scaleBy = scaleTo /. n;
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fmap(t, r => r *. scaleBy);
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| None => t
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};
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let yFold = (fn, t: t) => {
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E.A.fold_left(fn, 0., t.ys);
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};
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let ySum = yFold((a, b) => a +. b);
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let fromArray = ((xs, ys)): t => {xs, ys};
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let fromArrays = (xs, ys): t => {xs, ys};
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let transverse = (fn, p: t) => {
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let (xs, ys) =
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Belt.Array.zip(p.xs, p.ys)
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->Belt.Array.reduce([||], (items, (x, y)) =>
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let _transverse = fn =>
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Belt.Array.reduce(_, [||], (items, (x, y)) =>
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switch (_lastElement(items)) {
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| Some((_, yLast)) =>
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| Some((xLast, yLast)) =>
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Belt.Array.concat(items, [|(x, fn(y, yLast))|])
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| None => [|(x, y)|]
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}
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)
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|> Belt.Array.unzip;
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fromArrays(xs, ys);
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);
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let _transverseShape = (fn, p: t) => {
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Belt.Array.zip(p.xs, p.ys)
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|> _transverse(fn)
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|> Belt.Array.unzip
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|> fromArray;
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};
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let getY = (t: t, x: float) => x;
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let accumulateYs = _transverseShape((aCurrent, aLast) => aCurrent +. aLast);
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let subtractYs = _transverseShape((aCurrent, aLast) => aCurrent -. aLast);
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let integral = transverse((aCurrent, aLast) => aCurrent +. aLast);
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let derivative = transverse((aCurrent, aLast) => aCurrent -. aLast);
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module Range = {
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// ((lastX, lastY), (nextX, nextY))
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type zippedRange = ((float, float), (float, float));
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let massWithin = (t: t, left: pointInRange, right: pointInRange) => {
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switch (left, right) {
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| (Unbounded, Unbounded) => t |> ySum
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| (Unbounded, X(f)) => t |> integral |> getY(_, f)
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| (X(f), Unbounded) => ySum(t) -. getY(integral(t), f)
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| (X(l), X(r)) => getY(integral(t), r) -. getY(integral(t), l)
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let floatSum = Belt.Array.reduce(_, 0., (a, b) => a +. b);
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let toT = r => r |> Belt.Array.unzip |> fromArray;
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let nextX = ((_, (nextX, _)): zippedRange) => nextX;
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let rangeAreaAssumingSteps =
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(((lastX, lastY), (nextX, _)): zippedRange) =>
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(nextX -. lastX) *. lastY;
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let rangeAreaAssumingTriangles =
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(((lastX, lastY), (nextX, nextY)): zippedRange) =>
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(nextX -. lastX) *. (lastY +. nextY) /. 2.;
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let delta_y_over_delta_x =
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(((lastX, lastY), (nextX, nextY)): zippedRange) =>
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(nextY -. lastY) /. (nextX -. lastX);
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let inRanges = (mapper, reducer, t: t) => {
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Belt.Array.zip(t.xs, t.ys)
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|> E.A.toRanges
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|> E.R.toOption
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|> E.O.fmap(r => r |> Belt.Array.map(_, mapper) |> reducer);
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};
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let mapYsBasedOnRanges = fn => inRanges(r => (nextX(r), fn(r)), toT);
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let toStepFn = z => mapYsBasedOnRanges(rangeAreaAssumingSteps, z);
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let integrateWithSteps = z =>
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mapYsBasedOnRanges(rangeAreaAssumingSteps, z) |> E.O.fmap(accumulateYs);
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let integrateWithTriangles = z =>
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mapYsBasedOnRanges(rangeAreaAssumingTriangles, z)
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|> E.O.fmap(accumulateYs);
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let derivative = mapYsBasedOnRanges(delta_y_over_delta_x);
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};
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let findY = CdfLibrary.Distribution.findY;
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let findX = CdfLibrary.Distribution.findX;
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};
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// let massWithin = (t: t, left: pointInRange, right: pointInRange) => {
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// switch (left, right) {
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// | (Unbounded, Unbounded) => t |> ySum
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// | (Unbounded, X(f)) => t |> integral |> getY(t, 3.0)
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// | (X(f), Unbounded) => ySum(t) -. getY(integral(t), f)
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// | (X(l), X(r)) => getY(integral(t), r) -. getY(integral(t), l)
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// };
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// };
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module Continuous = {
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let fromArrays = XYShape.fromArrays;
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let toJs = XYShape.toJs;
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let toPdf = CdfLibrary.Distribution.toPdf;
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let toCdf = CdfLibrary.Distribution.toCdf;
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let toPdf = XYShape.Range.derivative;
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let toCdf = XYShape.Range.integrateWithTriangles;
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let findX = CdfLibrary.Distribution.findX;
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let findY = CdfLibrary.Distribution.findY;
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let findIntegralY = (f, r) => r |> toCdf |> E.O.fmap(findY(f));
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};
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module Discrete = {
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|
@ -94,6 +147,18 @@ module Discrete = {
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| Some((_, y)) => y
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| None => 0.
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};
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let integrate = XYShape.accumulateYs;
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let derivative = XYShape.subtractYs;
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let findIntegralY = (f, t: t) =>
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t
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|> XYShape.Range.toStepFn
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|> E.O.fmap(XYShape.accumulateYs)
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|> E.O.fmap(CdfLibrary.Distribution.findY(f));
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let findX = (f, t: t) =>
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t |> XYShape.Range.toStepFn |> E.O.fmap(CdfLibrary.Distribution.findX(f));
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};
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module Mixed = {
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|
@ -103,15 +168,41 @@ module Mixed = {
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discreteProbabilityMassFraction,
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};
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let mixedMultiply =
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(
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t: DistributionTypes.mixedShape,
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continuousComponent,
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discreteComponent,
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) => {
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let diffFn = t.discreteProbabilityMassFraction;
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continuousComponent *. (1.0 -. diffFn) +. discreteComponent *. diffFn;
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};
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type yPdfPoint = {
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continuous: float,
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discrete: float,
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continuous: option(float),
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discrete: option(float),
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discreteProbabilityMassFraction: float,
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};
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let getY = (t: DistributionTypes.mixedShape, x: float): yPdfPoint => {
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continuous: Continuous.findY(x, t.continuous),
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discrete: Discrete.findY(x, t.discrete),
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continuous: Continuous.findY(x, t.continuous) |> E.O.some,
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discrete: Discrete.findY(x, t.discrete) |> E.O.some,
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discreteProbabilityMassFraction: t.discreteProbabilityMassFraction,
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};
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let getYIntegral =
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(x: float, t: DistributionTypes.mixedShape): option(float) => {
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let c = t.continuous |> Continuous.findIntegralY(x);
|
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let d = Discrete.findIntegralY(x, t.discrete);
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switch (c, d) {
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| (Some(c), Some(d)) => Some(mixedMultiply(t, c, d))
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| _ => None
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};
|
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};
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//Do the math to add these distributions together
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// let integral =
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// (x: float, t: DistributionTypes.mixedShape): option(XYShape.t) => {
|
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// };
|
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};
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module Any = {
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|
@ -124,13 +215,6 @@ module Any = {
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| Continuous(continuousShape) =>
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`continuous(Continuous.findY(x, continuousShape))
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};
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let massInRange = (t: t, left: pointInRange, right: pointInRange) =>
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switch (t) {
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| Mixed(m) => 3.0
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| Discrete(discreteShape) => 2.0
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| Continuous(continuousShape) => 3.0
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};
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||||
};
|
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|
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module DomainMixed = {
|
||||
|
|
19
src/lib/E.re
19
src/lib/E.re
|
@ -114,6 +114,11 @@ module R = {
|
|||
let id = e => e |> result(U.id, U.id);
|
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let fmap = Rationale.Result.fmap;
|
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let bind = Rationale.Result.bind;
|
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let toOption = (e: Belt.Result.t('a, 'b)) =>
|
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switch (e) {
|
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| Ok(r) => Some(r)
|
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| Error(_) => None
|
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};
|
||||
};
|
||||
|
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let safe_fn_of_string = (fn, s: string): option('a) =>
|
||||
|
@ -217,6 +222,20 @@ module A = {
|
|||
let concatMany = Belt.Array.concatMany;
|
||||
let keepMap = Belt.Array.keepMap;
|
||||
let stableSortBy = Belt.SortArray.stableSortBy;
|
||||
let toRanges = (a: array('a)) =>
|
||||
switch (a |> Belt.Array.length) {
|
||||
| 0
|
||||
| 1 => Belt.Result.Error("Must be at least 2 elements")
|
||||
| n =>
|
||||
Belt.Array.makeBy(n - 1, r => r)
|
||||
|> Belt.Array.map(_, index =>
|
||||
(
|
||||
Belt.Array.getUnsafe(a, index),
|
||||
Belt.Array.getUnsafe(a, index + 1),
|
||||
)
|
||||
)
|
||||
|> Rationale.Result.return
|
||||
};
|
||||
|
||||
let asList = (f: list('a) => list('a), r: array('a)) =>
|
||||
r |> to_list |> f |> of_list;
|
||||
|
|
Loading…
Reference in New Issue
Block a user