Add docstrings to output.jl for documentation
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@ -4,6 +4,32 @@
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# __copyright__ = "2020-2022"
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# __copyright__ = "2020-2022"
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# __license__ = "ISC"
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# __license__ = "ISC"
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"""
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createOutput(settings, drivingCourse, pointsOfInterest)
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Create output information depending on `settings`, `drivingCourse` and `pointsOfInterest`.
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See also [`createOutput`](@ref).
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# Arguments
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- `settings::Settings`: the Settings object containing settings for output format and detail.
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- `drivingCourse::Vector{Dict}`: the Vector containing dictionaries for all support points.
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- `pointsOfInterest::Vector{NamedTuple}`: the Vector containing tuples for the paths' points of interest.
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# Examples
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```julia-repl
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julia> createOutput(settings_poi, drivingCourse_longdistance, pointsOfInterest_pathWithSlope)
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5×11 DataFrame
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Row │ label driving_mode s v t a F_T F_R R_path R_traction R_wagons
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│ String String Real Real Real Real Real Real Real Real Real
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─────┼─────────────────────────────────────────────────────────────────────────────────────────────────────────────────────
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1 │ view_point_1 accelerating 850.0 28.707 54.049 0.331 1.93049e5 36602.1 0.0 9088.56 27513.6
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2 │ distant_signal_1 accelerating 1000.0 30.325 59.129 0.294 1.82746e5 43604.7 4344.35 9795.13 29465.2
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3 │ main_signal_1 accelerating 2000.0 37.356 88.468 0.185 1.48352e5 60899.4 8688.69 13259.1 38951.5
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4 │ main_signal_3 braking 9000.0 27.386 258.578 -0.375 0.0 34522.1 0.0 8537.05 25985.0
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5 │ clearing_point_1 braking 9203.37 24.443 266.426 -0.375 0.0 30176.2 0.0 7389.44 22786.8
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```
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"""
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function createOutput(settings::Settings, drivingCourse::Vector{Dict}, pointsOfInterest::Vector{NamedTuple})
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function createOutput(settings::Settings, drivingCourse::Vector{Dict}, pointsOfInterest::Vector{NamedTuple})
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if settings.outputDetail == :running_time
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if settings.outputDetail == :running_time
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output::Vector{Dict} = [Dict(:t => drivingCourse[end][:t])]
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output::Vector{Dict} = [Dict(:t => drivingCourse[end][:t])]
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@ -52,7 +78,34 @@ function createOutput(settings::Settings, drivingCourse::Vector{Dict}, pointsOfI
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end
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end
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function createDataFrame(output_vector::Vector{Dict}, outputDetail, approxLevel::Int)
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"""
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createDataFrame(output_vector, outputDetail, approxLevel)
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Create a DataFrame from `output_vector` with `outputDetail` and `approxLevel`.
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See also [`createOutput`](@ref).
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# Arguments
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- `output_vector::Vector{Dict}`: the Vector containing all data to be outputted.
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- `outputDetail::Symbol`: the detail level the DataFrame is created for.
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- `approxLevel::Int`: the number of digits for rounding each Number in the DataFrame.
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# Examples
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```julia-repl
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julia> createDataFrame(vector_pointsOfInterest, detail_data_points, approxLevel_default)
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5×11 DataFrame
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Row │ label driving_mode s v t a F_T F_R R_path R_traction R_wagons
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│ String String Real Real Real Real Real Real Real Real Real
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─────┼─────────────────────────────────────────────────────────────────────────────────────────────────────────────────────
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1 │ view_point_1 accelerating 850.0 28.707 54.049 0.331 1.93049e5 36602.1 0.0 9088.56 27513.6
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2 │ distant_signal_1 accelerating 1000.0 30.325 59.129 0.294 1.82746e5 43604.7 4344.35 9795.13 29465.2
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3 │ main_signal_1 accelerating 2000.0 37.356 88.468 0.185 1.48352e5 60899.4 8688.69 13259.1 38951.5
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4 │ main_signal_3 braking 9000.0 27.386 258.578 -0.375 0.0 34522.1 0.0 8537.05 25985.0
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5 │ clearing_point_1 braking 9203.37 24.443 266.426 -0.375 0.0 30176.2 0.0 7389.44 22786.8
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```
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"""
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function createDataFrame(output_vector::Vector{Dict}, outputDetail::Symbol, approxLevel::Int)
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if outputDetail == :running_time
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if outputDetail == :running_time
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# create a DataFrame with running time information
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# create a DataFrame with running time information
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dataFrame = DataFrame(t=[round(output_vector[end][:t], digits=approxLevel)])
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dataFrame = DataFrame(t=[round(output_vector[end][:t], digits=approxLevel)])
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