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using Gridap | ||
using Gridap.Geometry | ||
using Gridap.Adaptivity | ||
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using GridapDistributed | ||
using PartitionedArrays | ||
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function DistributedAdaptivityGlue(serial_glue,parent,child) | ||
glue = map(partition(get_cell_gids(parent)),partition(get_cell_gids(child))) do parent_gids, child_gids | ||
old_l2g = parent_gids.local_to_global | ||
new_l2g = child_gids.local_to_global | ||
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n2o_faces_map = [Int64[],Int64[],serial_glue.n2o_faces_map[3][new_l2g]] | ||
n2o_cell_to_child_id = serial_glue.n2o_cell_to_child_id[new_l2g] | ||
rrules = serial_glue.refinement_rules[old_l2g] | ||
AdaptivityGlue(n2o_faces_map,n2o_cell_to_child_id,rrules) | ||
end | ||
return glue | ||
end | ||
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############################################################################################ | ||
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coarse_ranks = with_debug() do distribute | ||
distribute(LinearIndices((2,))) | ||
end | ||
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fine_ranks = with_debug() do distribute | ||
distribute(LinearIndices((4,))) | ||
end | ||
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serial_parent = UnstructuredDiscreteModel(CartesianDiscreteModel((0,1,0,1),(4,4))) | ||
serial_child = refine(serial_parent) | ||
serial_rglue = get_adaptivity_glue(serial_child) | ||
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parent_cell_to_part = [1,1,1,1,1,1,1,1,2,2,2,2,2,2,2,2] | ||
parent = DiscreteModel(coarse_ranks,serial_parent,parent_cell_to_part) | ||
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child_cell_to_part = lazy_map(Reindex(parent_cell_to_part),serial_rglue.n2o_faces_map[3]) | ||
child = DiscreteModel(coarse_ranks,serial_child,child_cell_to_part) | ||
coarse_adaptivity_glue = DistributedAdaptivityGlue(serial_rglue,parent,child) | ||
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redist_parent_cell_to_part = [1,1,2,2,1,1,2,2,3,3,4,4,3,3,4,4] | ||
redist_parent = DiscreteModel(fine_ranks,serial_parent,redist_parent_cell_to_part) | ||
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redist_child_cell_to_part = lazy_map(Reindex(redist_parent_cell_to_part),serial_rglue.n2o_faces_map[3]) | ||
redist_child = DiscreteModel(fine_ranks,serial_child,redist_child_cell_to_part) | ||
fine_adaptivity_glue = DistributedAdaptivityGlue(serial_rglue,redist_parent,redist_child) | ||
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# Building the RedistributeGlue | ||
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old_cell_to_part = parent_cell_to_part | ||
new_cell_to_part = redist_parent_cell_to_part | ||
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p = 1 | ||
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old_partition = partition(get_cell_gids(parent)).items[p] | ||
new_partition = partition(get_cell_gids(redist_parent)).items[p] | ||
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# This looks wrong... why is it like this? | ||
global_to_local(old_partition) | ||
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old_new_cell_to_part = collect(zip(old_cell_to_part,new_cell_to_part)) | ||
gids_rcv = findall(x->x[1]!=p && x[2]==p, old_new_cell_to_part) | ||
gids_snd = findall(x->x[1]==p && x[2]!=p, old_new_cell_to_part) | ||
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parts_rcv = unique(old_cell_to_part[gids_rcv]) | ||
parts_snd = unique(new_cell_to_part[gids_snd]) | ||
lids_rcv = [findall(x -> x == nbor ,old_cell_to_part[gids_rcv]) for nbor in parts_rcv] | ||
lids_snd = [findall(x -> x == nbor ,new_cell_to_part[gids_snd]) for nbor in parts_snd] | ||
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map(local_views(redist_child)) do model | ||
coords = Geometry.get_node_coordinates(model) | ||
c2n_map = Geometry.get_faces(get_grid_topology(model),2,0) | ||
cell_coords = lazy_map(nodes->lazy_map(Reindex(coords),nodes),c2n_map) | ||
display(cell_coords) | ||
return nothing | ||
end | ||
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