fix range on julia 1.0
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@ -74,7 +74,7 @@ function py_colormap(cg::ColorGradient)
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cm
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cm
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end
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end
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function py_colormap(cg::PlotUtils.CategoricalColorGradient)
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function py_colormap(cg::PlotUtils.CategoricalColorGradient)
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r = range(0, 1, length = 256)
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r = range(0, stop = 1, length = 256)
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pyvals = collect(zip(r, py_color(cg[r])))
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pyvals = collect(zip(r, py_color(cg[r])))
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cm = pycolors."LinearSegmentedColormap"."from_list"("tmp", pyvals)
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cm = pycolors."LinearSegmentedColormap"."from_list"("tmp", pyvals)
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cm."set_bad"(color=(0,0,0,0.0), alpha=0.0)
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cm."set_bad"(color=(0,0,0,0.0), alpha=0.0)
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@ -752,7 +752,7 @@ end
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@deprecate curve_points coords
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@deprecate curve_points coords
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coords(curve::BezierCurve, n::Integer = 30; range = [0,1]) = map(curve, Base.range(range..., length=n))
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coords(curve::BezierCurve, n::Integer = 30; range = [0,1]) = map(curve, Base.range(first(range), stop=last(range), length=n))
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# build a BezierCurve which leaves point p vertically upwards and arrives point q vertically upwards.
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# build a BezierCurve which leaves point p vertically upwards and arrives point q vertically upwards.
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# may create a loop if necessary. Assumes the view is [0,1]
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# may create a loop if necessary. Assumes the view is [0,1]
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@ -251,7 +251,7 @@ Draw contour lines of the `Surface` z.
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# Example
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# Example
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```julia-repl
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```julia-repl
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julia> x = y = range(-20, 20, length = 100)
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julia> x = y = range(-20, stop = 20, length = 100)
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julia> contour(x, y, (x, y) -> x^2 + y^2)
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julia> contour(x, y, (x, y) -> x^2 + y^2)
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```
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```
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"""
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"""
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@ -272,7 +272,7 @@ Draw a 3D surface plot.
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# Example
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# Example
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```julia-repl
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```julia-repl
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julia> using LinearAlgebra
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julia> using LinearAlgebra
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julia> x = y = range(-3, 3, length = 100)
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julia> x = y = range(-3, stop = 3, length = 100)
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julia> surface(x, y, (x, y) -> sinc(norm([x, y])))
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julia> surface(x, y, (x, y) -> sinc(norm([x, y])))
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```
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```
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"""
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"""
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