mirror of
https://github.com/JuliaFEM/JuliaFEM.jl.git
synced 2026-08-29 07:32:54 +00:00
362 lines
12 KiB
Julia
362 lines
12 KiB
Julia
# This file is a part of JuliaFEM.
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# License is MIT: see https://github.com/JuliaFEM/JuliaFEM.jl/blob/master/LICENSE.md
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using HDF5
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using JuliaFEM
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using JuliaFEM.Core: Element, Quad4, Tri3, Seg2, Hex8, update!
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# TODO: this should be elsewhere
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function aster_create_elements(mesh, element_set, element_type=nothing)
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elements = Element[]
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mapping = Dict(:QU4 => Quad4, :TR3 => Tri3, :SE2 => Seg2, :HE8 => Hex8)
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for (elid, (eltype, elset, elcon)) in mesh["connectivity"]
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if !haskey(mapping, eltype)
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error("aster_create_elements: unknown element mapping $eltype")
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end
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elset == element_set || continue
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if !isa(element_type, Void)
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if isa(element_type, Tuple)
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if !(eltype in element_type)
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continue
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end
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elseif eltype != element_type
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continue
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end
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end
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element = mapping[eltype](elcon)
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push!(elements, element)
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end
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update!(elements, "geometry", mesh["nodes"])
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return elements
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end
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function aster_parse_nodes(section::ASCIIString; strip_characters=true)
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nodes = Dict{Any, Vector{Float64}}()
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has_started = false
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for line in split(section, '\n')
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m = matchall(r"[\w.-]+", line)
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if (length(m) != 1) && (!has_started)
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continue
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end
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if length(m) == 1
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if (m[1] == "COOR_2D") || (m[1] == "COOR_3D")
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has_started = true
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continue
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end
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if m[1] == "FINSF"
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break
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end
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end
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if length(m) == 4
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nid = m[1]
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if strip_characters
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nid = matchall(r"\d", nid)
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nid = parse(Int, nid[1])
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end
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nodes[nid] = float(m[2:end])
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end
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end
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return nodes
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end
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function parse(mesh::ASCIIString, ::Type{Val{:CODE_ASTER_MAIL}})
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model = Dict{ASCIIString, Any}()
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header = nothing
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data = ASCIIString[]
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for line in split(mesh, '\n')
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length(line) != 0 || continue
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info("line: $line")
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if is_aster_mail_keyword(strip(line))
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header = parse_aster_header(line)
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empty!(data)
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continue
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end
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if line == "FINSF"
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info(data)
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header = nothing
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process_aster_section!(model, join(data, ""), header, Val{header[1]})
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end
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end
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return model
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end
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function aster_renumber_nodes_!(mesh, node_numbering)
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old_nodes = mesh["nodes"]
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new_nodes = typeof(old_nodes)()
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for (node_id, node_coords) in old_nodes
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new_node_id = node_numbering[node_id]
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new_nodes[new_node_id] = node_coords
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end
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mesh["nodes"] = new_nodes
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for (elid, (eltype, elset, elcon)) in mesh["connectivity"]
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new_elcon = [node_numbering[node_id] for node_id in elcon]
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mesh["connectivity"][elid] = (eltype, elset, new_elcon)
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end
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end
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function aster_renumber_nodes(mesh)
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nodemap = Dict{Int64,Int64}()
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for (i, nid) in enumerate(keys(mesh["nodes"]))
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nodemap[nid] = i
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end
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new_nodes = Dict{Int64, Vector{Float64}}()
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for (nid, ncoords) in mesh["nodes"]
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new_nodes[nodemap[nid]] = ncoords
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end
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function change_node_ids(old_ids::Vector{Int64})
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return Int[nodemap[nid] for nid in old_ids]
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end
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new_elements = Dict{Int64, Tuple{Symbol, Symbol, Vector{Int64}}}()
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for (elid, (eltype, elset, elcon)) in mesh["connectivity"]
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new_elements[elid] = (eltype, elset, change_node_ids(elcon))
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end
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mesh["nodes"] = new_nodes
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mesh["elements"] = new_elements
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return mesh
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end
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function aster_renumber_nodes!(mesh1, mesh2)
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reserved_node_ids = Set(collect(keys(mesh1["nodes"])))
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@debug info("already reserved node ids: $reserved_node_ids")
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mesh2_node_numbering = Dict{Int64, Int64}()
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# find new node ids assigned for mesh 2
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k = 1
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for node_id in sort(collect(keys(mesh2["nodes"])))
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@debug info("mesh2: processing node $node_id")
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# if node id is reserved in mesh 1, find new number
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if node_id in reserved_node_ids
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@debug info("node id conflict, $node_id already defined in mesh 1, renumbering")
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while k in reserved_node_ids
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k += 1
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end
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@debug info("mesh2: node $node_id -> $k")
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mesh2_node_numbering[node_id] = k
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push!(reserved_node_ids, k)
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else
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mesh2_node_numbering[node_id] = node_id
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end
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end
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@debug info("new node numering:")
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@debug println(mesh2_node_numbering)
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aster_renumber_nodes_!(mesh2, mesh2_node_numbering)
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#=
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# create new nodes
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mesh2_old_nodes = mesh2["nodes"]
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mesh2_new_nodes = typeof(mesh2_old_nodes)()
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for (node_id, node_coords) in mesh2_old_nodes
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new_node_id = mesh2_node_numbering[node_id]
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mesh2_new_nodes[new_node_id] = node_coords
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end
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mesh2["nodes"] = mesh2_new_nodes
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# update connectivity
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for (elid, (eltype, elset, elcon)) in mesh2["connectivity"]
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new_elcon = [mesh2_node_numbering[node_id] for node_id in elcon]
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mesh2["connectivity"][elid] = (eltype, elset, new_elcon)
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end
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=#
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end
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function aster_renumber_elements!(mesh1, mesh2)
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reserved_element_ids = Set(collect(keys(mesh1["connectivity"])))
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@debug info("already reserved element ids: $reserved_element_ids")
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mesh2_element_numbering = Dict{Int64, Int64}()
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# find new element ids assigned for mesh 2
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k = 1
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for element_id in sort(collect(keys(mesh2["connectivity"])))
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@debug info("mesh2: processing element $element_id")
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# if node id is reserved in mesh 1, find new number
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if element_id in reserved_element_ids
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@debug info("element id conflict, $element_id already defined in mesh 1, renumbering")
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while k in reserved_element_ids
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k += 1
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end
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@debug info("mesh2: element $element_id -> $k")
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mesh2_element_numbering[element_id] = k
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push!(reserved_element_ids, k)
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else
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mesh2_element_numbering[element_id] = element_id
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end
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end
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@debug info("element numbering for mesh 2:")
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@debug info(mesh2_element_numbering)
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# create new elements
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mesh2_old_elements = mesh2["connectivity"]
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mesh2_new_elements = typeof(mesh2_old_elements)()
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for (element_id, element_data) in mesh2_old_elements
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new_element_id = mesh2_element_numbering[element_id]
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mesh2_new_elements[new_element_id] = element_data
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end
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mesh2["connectivity"] = mesh2_new_elements
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end
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function aster_combine_meshes(mesh1, mesh2)
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# check that meshes are ready to be combined
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node_ids_mesh_1 = collect(keys(mesh1["nodes"]))
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node_ids_mesh_2 = collect(keys(mesh2["nodes"]))
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if length(intersect(node_ids_mesh_1, node_ids_mesh_2)) != 0
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error("nodes with same id number in both meshes, failed.")
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end
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element_ids_mesh_1 = collect(keys(mesh1["connectivity"]))
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element_ids_mesh_2 = collect(keys(mesh2["connectivity"]))
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if length(intersect(element_ids_mesh_1, element_ids_mesh_2)) != 0
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error("elements with same id number in both meshes, failed.")
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end
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@assert similar(mesh1) == similar(mesh2)
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@assert similar(mesh1["nodes"]) == similar(mesh2["nodes"])
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@assert similar(mesh1["connectivity"]) == similar(mesh2["connectivity"])
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new_mesh = similar(mesh1)
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new_mesh["nodes"] = similar(mesh1["nodes"])
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new_mesh["connectivity"] = similar(mesh1["connectivity"])
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for (node_id, node_coords) in mesh1["nodes"]
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new_mesh["nodes"][node_id] = node_coords
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end
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for (node_id, node_coords) in mesh2["nodes"]
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new_mesh["nodes"][node_id] = node_coords
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end
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for (element_id, element_data) in mesh1["connectivity"]
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new_mesh["connectivity"][element_id] = element_data
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end
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for (element_id, element_data) in mesh2["connectivity"]
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new_mesh["connectivity"][element_id] = element_data
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end
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return new_mesh
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end
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"""
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Code Aster binary file (.med), which is exported from SALOME.
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"""
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type MEDFile
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data :: Dict
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end
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function MEDFile(fn::ASCIIString)
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MEDFile(h5read(fn, "/"))
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end
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function get_mesh_names(med::MEDFile)
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return collect(keys(med.data["FAS"]))
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end
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function get_nodes(med::MEDFile, mesh_name)
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increments = keys(med.data["ENS_MAA"][mesh_name])
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@assert length(increments) == 1
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increment = first(increments)
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nodes = med.data["ENS_MAA"][mesh_name][increment]["NOE"]
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node_ids = nodes["NUM"]
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nnodes = length(node_ids)
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node_coords = nodes["COO"]
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dim = round(Int, length(node_coords)/nnodes)
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node_coords = reshape(node_coords, nnodes, dim)'
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d = Dict{Int64}{Vector{Float64}}()
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for i=1:nnodes
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d[node_ids[i]] = node_coords[:, i]
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end
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return d
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end
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function get_element_sets(med::MEDFile, mesh_name)
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es = Dict{Int64, Symbol}()
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if !haskey(med.data["FAS"][mesh_name], "ELEME")
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return es
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end
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elsets = med.data["FAS"][mesh_name]["ELEME"]
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for elset in keys(elsets)
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k = split(elset, '_')
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elset_id = parse(Int, k[2])
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elset_name = ascii(pointer(convert(Vector{UInt8}, elsets[elset]["GRO"]["NOM"][1])))
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es[elset_id] = Symbol(elset_name)
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end
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return es
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end
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# hex8 nodes rotating cw first in yz plane then x+1
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global const med_elmap = Dict{Symbol, Vector{Int}}(
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:HE8 => [4, 8, 7, 3, 1, 5, 6, 2],
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:TE4 => [2, 3, 4, 1]
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# :SE2 => [2, 1]
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)
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function get_connectivity(med::MEDFile, elsets, mesh_name)
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elsets[0] = :OTHER
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increments = keys(med.data["ENS_MAA"][mesh_name])
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@assert length(increments) == 1
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increment = first(increments)
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all_elements = med.data["ENS_MAA"][mesh_name][increment]["MAI"]
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d = Dict{Int64, Tuple{Symbol, Symbol, Vector{Int64}}}()
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for eltype in keys(all_elements)
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elements = all_elements[eltype]
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elset_ids = elements["FAM"]
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element_ids = elements["NUM"]
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nelements = length(element_ids)
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element_connectivity = elements["NOD"]
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element_dim = round(Int, length(element_connectivity)/nelements)
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element_connectivity = reshape(element_connectivity, nelements, element_dim)'
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for i=1:nelements
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eltype = Symbol(eltype)
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elco = element_connectivity[:, i]
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elset = Symbol(elsets[elset_ids[i]])
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if haskey(med_elmap, eltype)
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elco = elco[med_elmap[eltype]]
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else
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#warn("no element mapping info found for element type $eltype")
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#warn("consider this as a warning: element may have french nodal ordering")
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end
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d[element_ids[i]] = (eltype, elset, elco)
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end
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end
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return d
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end
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""" Parse code aster .med file.
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Paramters
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---------
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fn :: ASCIIString
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file name to parse
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mesh_name :: ASCIIString, optional
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mesh name, if several meshes in one file
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Returns
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-------
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Dict containing fields "nodes" and "connectivity".
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"""
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function parse_aster_med_file(fn::ASCIIString, mesh_name=nothing)
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med = MEDFile(fn)
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if isa(mesh_name, Void)
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mesh_names = get_mesh_names(med::MEDFile)
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all_meshes = join(mesh_names, ", ")
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length(mesh_names) == 1 || error("several meshes found from med, pick one: $all_meshes")
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mesh_name = mesh_names[1]
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end
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elsets = get_element_sets(med, mesh_name)
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elset_names = join(values(elsets), ", ")
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info("Found $(length(elsets)) element sets: $elset_names")
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nodes = get_nodes(med, mesh_name)
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conn = get_connectivity(med, elsets, mesh_name)
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result = Dict{ASCIIString, Any}()
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result["nodes"] = nodes
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result["connectivity"] = conn
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return result
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end
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