Initial functionality added to PGFPlots backend.
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@ -1,4 +1,3 @@
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# https://github.com/sisl/PGFPlots.jl
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function _initialize_backend(::PGFPlotsBackend; kw...)
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@ -10,6 +9,134 @@ function _initialize_backend(::PGFPlotsBackend; kw...)
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# TODO: other initialization
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end
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_pgfplots_get_color(c) = "{rgb,1:red,$(float(c.r));green,$(float(c.g));blue,$(float(c.b))}"
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function _pgfplots_get_linestyle!(kwargs, plt)
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linestyle = plt[:linestyle]
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if linestyle == :dash
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kwargs[:style] *= "dashed,"
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elseif linestyle == :dot
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kwargs[:style] *= "dotted,"
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elseif linestyle == :dashdot
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kwargs[:style] *= "dashdotted,"
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elseif linestyle == :dashdotdot
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kwargs[:style] *= "dashdotdotted,"
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end
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kwargs[:style] *= (haskey(plt, :linewidth) && plt[:linewidth] != :auto) ? "line width = $(plt[:linewidth]) pt," : "line width = 1 pt,"
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end
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function _pgfplots_get_marker!(kwargs, plt)
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# Control marker shape
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mark = plt[:markershape]
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if mark in (:none,:n, :no)
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kwargs[:style] *= "mark = none,"
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elseif mark in (:auto, :a)
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kwargs[:style] *= "mark = *,"
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elseif mark in (:cross, :+, :plus)
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kwargs[:style] *= "mark = +,"
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elseif mark in (:xcross ,:X, :x)
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kwargs[:style] *= "mark = x,"
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elseif mark in (:utriangle, :^, :uptri, :uptriangle, :ut, :utri,
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:dtriangle, :V, :downtri, :downtriangle, :dt ,:dtri, :v)
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kwargs[:style] *= "mark = triangle*,"
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elseif mark in (:ellipse, :c, :circle)
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kwargs[:style] *= "mark = o*,"
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elseif mark in (:rect ,:r, :sq, :square)
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kwargs[:style] *= "mark = square*,"
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elseif mark in (:star5 ,:s, :star, :star1)
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kwargs[:style] *= "mark = star,"
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elseif mark in (:star6,)
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kwargs[:style] *= "mark = asterisk,"
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elseif mark in (:diamond, :d)
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kwargs[:style] *= "mark = diamond*,"
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elseif mark in (:pentagon ,:p, :pent)
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kwargs[:style] *= "mark = pentagon*,"
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end
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# Control marker size
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kwargs[:style] *= "mark size = $(plt[:markersize]/2),"
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# Control marker colors and alphas
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marker_fill = plt[:markercolor].c
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α = plt[:markeralpha] == nothing ? 1.0 : plt[:markeralpha]
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marker_stroke = plt[:markerstrokecolor].c
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kwargs[:style] *= "mark options = {color="*_pgfplots_get_color(marker_stroke)*","
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kwargs[:style] *= mark in (:dtriangle, :V, :downtri, :downtriangle, :dt ,:dtri, :v) ? "rotate=180," : ""
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kwargs[:style] *= "fill="*_pgfplots_get_color(marker_fill)*","
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kwargs[:style] *= "fill opacity = $α,"
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markerstrokestyle = plt[:markerstrokestyle]
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if markerstrokestyle == :solid
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kwargs[:style] *= "solid,"
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elseif markerstrokestyle == :dash
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kwargs[:style] *= "dashed,"
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elseif markerstrokestyle == :dot
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kwargs[:style] *= "dotted,"
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elseif markerstrokestyle == :dashdot
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kwargs[:style] *= "dashdotted,"
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elseif markerstrokestyle == :dashdotdot
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kwargs[:style] *= "dashdotdotted,"
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end
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kwargs[:style] *= "},"
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end
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function _pgfplots_get_series_color!(kwargs, plt)
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color = plt[:seriescolor].c
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α = plt[:seriesalpha] == nothing ? 1.0 : plt[:seriesalpha]
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kwargs[:style] *= "color="*_pgfplots_get_color(color)*","
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kwargs[:style] *= "draw opacity = $α,"
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end
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function _pgfplots_get_plot_kwargs(plt)
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kwargs = KW()
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kwargs[:style] = ""
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_pgfplots_get_linestyle!(kwargs, plt)
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_pgfplots_get_marker!(kwargs, plt)
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_pgfplots_get_series_color!(kwargs, plt)
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kwargs
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end
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function _pgfplots_axis(plt_series)
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line_type = plt_series[:linetype]
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plt_kwargs = _pgfplots_get_plot_kwargs(plt_series)
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if line_type == :path
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PGFPlots.Linear(plt_series[:x], plt_series[:y]; plt_kwargs...)
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elseif line_type == :path3d
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PGFPlots.Linear3(plt_series[:x], plt_series[:y], plt_series[:z]; plt_kwargs...)
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elseif line_type == :scatter
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PGFPlots.Scatter(plt_series[:x], plt_series[:y]; plt_kwargs...)
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elseif line_type == :steppre
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plt_kwargs[:style] *= "const plot mark right,"
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PGFPlots.Linear(plt_series[:x], plt_series[:y]; plt_kwargs...)
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elseif line_type == :stepmid
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plt_kwargs[:style] *= "const plot mark mid,"
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PGFPlots.Linear(plt_series[:x], plt_series[:y]; plt_kwargs...)
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elseif line_type == :steppost
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plt_kwargs[:style] *= "const plot,"
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PGFPlots.Linear(plt_series[:x], plt_series[:y]; plt_kwargs...)
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elseif line_type == :hist
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#TODO patch this in PGFPlots.jl instead; the problem is that PGFPlots will
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# save _all_ data points in the figure which can be quite heavy
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plt_hist = hist(plt_series[:y])
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plt_kwargs[:style] *= "ybar interval, mark = none"
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PGFPlots.Linear(plt_hist[1][1:end-1]+plt_hist[1].step/2, plt_hist[2]; plt_kwargs...)
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elseif line_type == :hist2d
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PGFPlots.Histogram2(plt_series[:x], plt_series[:y])
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elseif line_type == :bar
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plt_kwargs[:style] *= "ybar, mark = none"
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PGFPlots.Linear(plt_series[:x], plt_series[:y]; plt_kwargs...)
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elseif line_type == :sticks || line_type == :ysticks
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plt_kwargs[:style] *= "ycomb"
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PGFPlots.Linear(plt_series[:x], plt_series[:y]; plt_kwargs...)
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elseif line_type == :xsticks
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plt_kwargs[:style] *= "xcomb"
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PGFPlots.Linear(plt_series[:x], plt_series[:y]; plt_kwargs...)
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elseif line_type == :contour
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PGFPlots.Contour(plt_series[:z].surf, plt_series[:x], plt_series[:y])
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end
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end
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# ---------------------------------------------------------------------------
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function _create_plot(pkg::PGFPlotsBackend, d::KW)
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@ -78,16 +205,71 @@ end
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# ----------------------------------------------------------------
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function _pgfplots_get_axis_kwargs(d)
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axisargs = KW()
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axisargs[:style] = "{"
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for arg in (:xlabel, :ylabel, :zlabel, :title)
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axisargs[arg] = d[arg]
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end
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axisargs[:style] *= d[:xflip] == true ? "x dir=reverse," : ""
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axisargs[:style] *= d[:yflip] == true ? "y dir=reverse," : ""
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if d[:xscale] in (:log, :log2, :ln, :log10)
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axisargs[:xmode] = "log"
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if d[:xscale] == :log2
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axisargs[:style] *= "log basis x=2,"
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elseif d[:xscale] in (:log, :log10)
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axisargs[:style] *= "log basis x=10,"
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end
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end
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if d[:yscale] in (:log, :log2, :ln, :log10)
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axisargs[:ymode] = "log"
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if d[:yscale] == :log2
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axisargs[:style] *= "log basis y=2,"
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elseif d[:yscale] in (:log, :log10)
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axisargs[:style] *= "log basis x=10,"
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end
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end
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if d[:zscale] in (:log, :log2, :ln, :log10)
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axisargs[:zmode] = "log"
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if d[:zscale] == :log2
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axisargs[:style] *= "log basis z=2,"
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elseif d[:zscale] in (:log, :log10)
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axisargs[:style] *= "log basis x=10,"
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end
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end
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axisargs[:style] *= "},"
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# Control background color
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bg_color = d[:background_color].c
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axisargs[:style] *= "axis background/.style={fill={rgb,1:red,$(float(bg_color.r));green,$(float(bg_color.g));blue,$(float(bg_color.b))},}"
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# Control x/y-limits
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if d[:xlims] !== :auto
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axisargs[:xmin] = d[:xlims][1]
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axisargs[:xmax] = d[:xlims][2]
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end
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if d[:ylims] !== :auto
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axisargs[:ymin] = d[:ylims][1]
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axisargs[:ymax] = d[:ylims][2]
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end
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if d[:grid] == true
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axisargs[:style] = "grid = major"
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elseif d[:grid] == false
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end
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axisargs
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end
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# ----------------------------------------------------------------
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################# This is the important method to implement!!! #################
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function _make_pgf_plot(plt::Plot{PGFPlotsBackend})
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# TODO: convert plt.plotargs and plt.seriesargs into PGFPlots calls
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# TODO: return the PGFPlots object
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os = [_pgfplots_axis(plt_series) for plt_series in plt.seriesargs]
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axisargs =_pgfplots_get_axis_kwargs(plt.plotargs)
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plt.o = PGFPlots.Axis([os...]; axisargs...)
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end
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function Base.writemime(io::IO, mime::MIME"image/png", plt::AbstractPlot{PGFPlotsBackend})
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function Base.writemime(io::IO, mime::MIME"image/svg+xml", plt::AbstractPlot{PGFPlotsBackend})
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plt.o = _make_pgf_plot(plt)
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writemime(io, mime, plt.o)
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end
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@ -681,7 +681,7 @@ subplotSupported(::GLVisualizeBackend) = false
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supportedArgs(::PGFPlotsBackend) = [
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# :annotation,
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# :axis,
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# :background_color,
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:background_color,
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# :color_palette,
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# :fillrange,
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# :fillcolor,
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@ -691,19 +691,19 @@ supportedArgs(::PGFPlotsBackend) = [
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# :label,
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# :layout,
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# :legend,
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# :seriescolor, :seriesalpha,
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# :linecolor,
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# :linestyle,
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# :linetype,
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# :linewidth,
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# :linealpha,
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# :markershape,
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# :markercolor,
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# :markersize,
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# :markeralpha,
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:seriescolor, :seriesalpha,
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:linecolor,
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:linestyle,
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:linetype,
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:linewidth,
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:linealpha,
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:markershape,
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:markercolor,
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:markersize,
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:markeralpha,
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# :markerstrokewidth,
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# :markerstrokecolor,
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# :markerstrokestyle,
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:markerstrokecolor,
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:markerstrokestyle,
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# :n,
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# :bins,
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# :nc,
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@ -712,32 +712,33 @@ supportedArgs(::PGFPlotsBackend) = [
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# :smooth,
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# :show,
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# :size,
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# :title,
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:title,
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# :windowtitle,
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# :x,
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# :xlabel,
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# :xlims,
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:x,
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:xlabel,
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:xlims,
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# :xticks,
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# :y,
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# :ylabel,
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# :ylims,
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:y,
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:ylabel,
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:ylims,
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# :yrightlabel,
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# :yticks,
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# :xscale,
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# :yscale,
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# :xflip,
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# :yflip,
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# :z,
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:xscale,
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:yscale,
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:xflip,
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:yflip,
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:z,
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:zscale,
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# :tickfont,
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# :guidefont,
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# :legendfont,
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# :grid,
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:grid,
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# :surface
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# :levels,
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]
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supportedAxes(::PGFPlotsBackend) = [:auto, :left]
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supportedTypes(::PGFPlotsBackend) = [:contour] #, :path, :scatter ,:steppre, :steppost, :sticks, :hist2d, :hexbin, :hist, :bar, :hline, :vline, :contour]
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supportedStyles(::PGFPlotsBackend) = [:auto, :solid] #, :dash, :dot, :dashdot, :dashdotdot]
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supportedMarkers(::PGFPlotsBackend) = [:none, :auto, :ellipse] #, :rect, :diamond, :utriangle, :dtriangle, :cross, :xcross, :star5] #vcat(_allMarkers, Shape)
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supportedScales(::PGFPlotsBackend) = [:identity] #, :log, :log2, :log10, :asinh, :sqrt]
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supportedTypes(::PGFPlotsBackend) = [:path, :path3d, :scatter, :line, :steppre, :stepmid, :steppost, :hist, :bar, :hist2d, :sticks, :ysticks, :xsticks, :contour] # :hexbin, :hline, :vline,]
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supportedStyles(::PGFPlotsBackend) = [:auto, :solid, :dash, :dot, :dashdot, :dashdotdot]
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supportedMarkers(::PGFPlotsBackend) = [:none, :auto, :ellipse, :rect, :diamond, :utriangle, :dtriangle, :cross, :xcross, :star5, :pentagon] #vcat(_allMarkers, Shape)
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supportedScales(::PGFPlotsBackend) = [:identity, :log, :ln, :log2, :log10] # :asinh, :sqrt]
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subplotSupported(::PGFPlotsBackend) = false
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