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LAR (Linear Algebraic Repr) -- geometric and topological modeling in Julia.

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LAR.jl

Geometric and topological modeling with chain complexes in Julia.

Installation: julia> Pkg.add("LAR")

Basic Usage

import Lar-core

Generate and visualize a grid of 3-cubes. Poke around with the mouse pressed to interact.

v,cv = p.larCuboids((10,10,10));
viewexploded(v,cv)

Generate and visualize a grid of 2-cubes. Poke as before

v,fv = p.larCuboids((10,10));
viewexploded(v,fv)

Define a visualize a 2-mesh of convex cells. Poke as before

larstring = """
	{"V" : [[5,0],[7,1],[9,0],[13,2],[15,4],[17,8],[14,9],[13,10],
	[11,11],[9,10],[5,9],[7,9],[3,8],[0,6],[2,3],[2,1],[8,3],
	[10,2],[13,4],[14,6],[13,7],[12,10],[11,9],[9,7],[7,7],[4,7],
	[2,6],[3,5],[4,2],[6,3],[11,4],[12,6],[12,7],[10,5],[8,5],
	[7,6],[5,5]],
	"FV" : [[0,1,16,28,29],[0,15,28],[1,2,17],[1,16,17,33],[2,3,17],
	[3,4,18,19],[3,17,18,30],[4,5,19],[5,6,19],[6,7,20,21,22,32],
	[6,19,20],[7,8,21],[8,9,21,22],[9,11,23,24],[9,22,23],
	[10,11,24,25],[10,12,25],[12,13,25,26],[13,14,27],[13,26,27],
	[14,15,28],[14,27,28,29,36],[16,29,34],[16,33,34],[17,30,33],
	[18,19,31],[18,30,31],[19,20,31,32],[22,23,32,33],[23,24,34,35],
	[23,33,34],[24,25,27,36],[24,35,36],[25,26,27],[29,34,35],
	[29,35,36],[30,31,32,33]]}
""";
model = json2larmodel(larstring)
viewexploded(model.Verts',(model.Lar.FV))

Documentation

Very first basic implementation and interface with Python's larlib

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