Support calling KCL std KW fns, and move circle to KCL std
Signed-off-by: Nick Cameron <nrc@ncameron.org>
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@ -5,7 +5,7 @@
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/// ```
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/// circumference = 70
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///
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/// exampleSketch = startSketchOn("XZ")
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/// exampleSketch = startSketchOn(XZ)
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/// |> circle(center = [0, 0], radius = circumference/ (2 * PI))
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///
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/// example = extrude(exampleSketch, length = 5)
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@ -15,7 +15,7 @@ export PI = 3.14159265358979323846264338327950288_
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/// The value of Euler’s number `e`.
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///
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/// ```
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/// exampleSketch = startSketchOn("XZ")
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/// exampleSketch = startSketchOn(XZ)
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/// |> startProfileAt([0, 0], %)
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/// |> angledLine({
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/// angle = 30,
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@ -31,7 +31,7 @@ export E = 2.71828182845904523536028747135266250_
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/// The value of `tau`, the full circle constant (τ). Equal to 2π.
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///
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/// ```
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/// exampleSketch = startSketchOn("XZ")
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/// exampleSketch = startSketchOn(XZ)
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/// |> startProfileAt([0, 0], %)
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/// |> angledLine({
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/// angle = 50,
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@ -47,7 +47,7 @@ export TAU = 6.28318530717958647692528676655900577_
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/// Compute the cosine of a number (in radians).
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///
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/// ```
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/// exampleSketch = startSketchOn("XZ")
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/// exampleSketch = startSketchOn(XZ)
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/// |> startProfileAt([0, 0], %)
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/// |> angledLine({
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/// angle = 30,
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@ -59,12 +59,12 @@ export TAU = 6.28318530717958647692528676655900577_
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/// example = extrude(exampleSketch, length = 5)
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/// ```
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@(impl = std_rust)
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export fn cos(num: number(rad)): number(_) {}
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export fn cos(@num: number(rad)): number(_) {}
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/// Compute the sine of a number (in radians).
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///
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/// ```
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/// exampleSketch = startSketchOn("XZ")
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/// exampleSketch = startSketchOn(XZ)
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/// |> startProfileAt([0, 0], %)
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/// |> angledLine({
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/// angle = 50,
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@ -76,12 +76,12 @@ export fn cos(num: number(rad)): number(_) {}
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/// example = extrude(exampleSketch, length = 5)
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/// ```
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@(impl = std_rust)
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export fn sin(num: number(rad)): number(_) {}
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export fn sin(@num: number(rad)): number(_) {}
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/// Compute the tangent of a number (in radians).
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///
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/// ```
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/// exampleSketch = startSketchOn("XZ")
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/// exampleSketch = startSketchOn(XZ)
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/// |> startProfileAt([0, 0], %)
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/// |> angledLine({
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/// angle = 50,
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@ -93,4 +93,4 @@ export fn sin(num: number(rad)): number(_) {}
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/// example = extrude(exampleSketch, length = 5)
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/// ```
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@(impl = std_rust)
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export fn tan(num: number(rad)): number(_) {}
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export fn tan(@num: number(rad)): number(_) {}
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