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ChickenPox graph dataset (#233)
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* Add ChickenPox export

* Add ChickenPox dataset export

* Add ChickenPox test

* Add ChickenPox dataset

* Fix a alphabetical order

* Add more info and example

* Add more tests
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aurorarossi committed Jul 9, 2024
1 parent 3d40a68 commit 09607d0
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7 changes: 4 additions & 3 deletions docs/src/datasets/graphs.md
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Expand Up @@ -20,18 +20,19 @@ MLDatasets.HeteroGraph
```

```@docs
ChickenPox
CiteSeer
Cora
KarateClub
METRLA
MovieLens
OGBDataset
OrganicMaterialsDB
PEMSBAY
PolBlogs
PubMed
Reddit
TUDataset
METRLA
PEMSBAY
TemporalBrains
TUDataset
WindMillEnergy
```
4 changes: 4 additions & 0 deletions src/MLDatasets.jl
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Expand Up @@ -111,6 +111,8 @@ include("graph.jl")
include("datasets/graphs/planetoid.jl")
include("datasets/graphs/traffic.jl")
# export read_planetoid_data
include("datasets/graphs/chickenpox.jl")
export ChickenPox
include("datasets/graphs/cora.jl")
export Cora
include("datasets/graphs/citeseer.jl")
Expand Down Expand Up @@ -149,6 +151,7 @@ function __init__()
# TODO automatically find and execute __init__xxx functions

# graph
__init__chickenpox()
__init__citeseer()
__init__cora()
__init__movielens()
Expand All @@ -163,6 +166,7 @@ function __init__()
__init__temporalbrains()
__init__windmillenergy()


# misc
__init__iris()
__init__mutagenesis()
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108 changes: 108 additions & 0 deletions src/datasets/graphs/chickenpox.jl
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function __init__chickenpox()
DEPNAME = "ChickenPox"
LINK = "https://graphmining.ai/temporal_datasets/"
register(ManualDataDep(DEPNAME,
"""
Dataset: $DEPNAME
Website : $LINK
"""))
end

function chickenpox_datadir(dir = nothing)
dir = isnothing(dir) ? datadep"ChickenPox" : dir
LINK = "http://www-sop.inria.fr/members/Aurora.Rossi/data/chickenpox.json"
if length(readdir((dir))) == 0
DataDeps.fetch_default(LINK, dir)
end
@assert isdir(dir)
return dir
end

function generate_task(data::AbstractArray, num_timesteps_in::Int, num_timesteps_out::Int)
features = []
targets = []
for i in 1:(size(data,3)-num_timesteps_in-num_timesteps_out)
push!(features, data[:,:,i:i+num_timesteps_in-1])
push!(targets, data[:,:,i+num_timesteps_in:i+num_timesteps_in+num_timesteps_out-1])
end
return features, targets
end

function create_chickenpox_dataset( normalize::Bool, num_timesteps_in::Int, num_timesteps_out::Int, dir)
name_file = joinpath(dir, "chickenpox.json")
data = read_json(name_file)
src = zeros(Int, length(data["edges"]))
dst = zeros(Int, length(data["edges"]))
for (i, edge) in enumerate(data["edges"])
src[i] = edge[1] + 1
dst[i] = edge[2] + 1
end
f = Float32.(stack(data["FX"]))
f = reshape(f, 1, size(f, 1), size(f, 2))

metadata = Dict(key => value + 1 for (key, value) in data["node_ids"])

if normalize
f = (f .- Statistics.mean(f, dims=(2))) ./ Statistics.std(f, dims=(2)) #Z-score normalization
end

x, y = generate_task(f, num_timesteps_in, num_timesteps_out)

g = Graph(; edge_index = (src, dst),
node_data = (features = x, targets = y))
return g, metadata
end

"""
ChickenPox(; normalize= true, num_timesteps_in = 8 , num_timesteps_out = 8, dir = nothing)
The ChickenPox dataset contains county-level chickenpox cases in Hungary between 2004 and 2014.
`ChickenPox` is composed of a graph with nodes representing counties and edges representing the neighborhoods, and a metadata dictionary containing the correspondence between the node indices and the county names.
The node features are the number of weekly chickenpox cases in each county. They are represented as an array of arrays of size `(1, num_nodes, num_timesteps_in)`. The target values are the number of weekly chickenpox cases in each county. They are represented as an array of arrays of size `(1, num_nodes, num_timesteps_out)`. In both cases. two consecutive arrays are shifted by one-time step.
The dataset was taken from the [Pytorch Geometric Temporal repository](https://pytorch-geometric-temporal.readthedocs.io/en/latest/modules/dataset.html#torch_geometric_temporal.dataset.chickenpox.ChickenpoxDatasetLoader) and more information about the dataset can be found in the paper ["Chickenpox Cases in Hungary: a Benchmark Dataset for
Spatiotemporal Signal Processing with Graph Neural Networks"](https://arxiv.org/pdf/2102.08100).
# Keyword Arguments
- `normalize::Bool`: Whether to normalize the data using Z-score normalization. Default is `true`.
- `num_timesteps_in::Int`: The number of time steps, in this case, the number of weeks, for the input features. Default is `8`.
- `num_timesteps_out::Int`: The number of time steps, in this case, the number of weeks, for the target values. Default is `8`.
- `dir::String`: The directory to save the dataset. Default is `nothing`.
# Examples
```julia-repl
julia> using JSON3 # import JSON3
julia> dataset = ChickenPox()
dataset ChickenPox:
metadata => Dict{Symbol, Any} with 20 entries
graphs => 1-element Vector{MLDatasets.Graph}
julia> dataset.graphs[1].num_nodes # 20 counties
20
julia> size(dataset.graphs[1].node_data.features[1])
(1, 20, 8)
julia> dataset.metadata[:BUDAPEST] # The node 5 correponds to Budapest county
5
```
"""
struct ChickenPox <: AbstractDataset
metadata::Dict{Symbol, Any}
graphs::Vector{Graph}
end

function ChickenPox(; normalize::Bool = true, num_timesteps_in::Int = 8 , num_timesteps_out::Int = 8, dir = nothing)
create_default_dir("ChickenPox")
dir = chickenpox_datadir(dir)
g, metadata = create_chickenpox_dataset(normalize, num_timesteps_in, num_timesteps_out, dir)
return ChickenPox(metadata, [g])
end

Base.length(d::ChickenPox) = length(d.graphs)
Base.getindex(d::ChickenPox, ::Colon) = d.graphs[1]
Base.getindex(d::ChickenPox, i) = getindex(d.graphs, i)
20 changes: 20 additions & 0 deletions test/datasets/graphs_no_ci.jl
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Expand Up @@ -392,3 +392,23 @@ end
@test g.num_edges == 121
@test g.node_data.features[1][:,:,2:end] == g.node_data.features[2][:,:,1:end-1]
end

@testset "ChickenPox" begin
data = ChickenPox()
@test data isa AbstractDataset
@test data.metadata isa Dict
@test length(data) == 1
g = data[1]
@test g === data[:]
@test g isa MLDatasets.Graph

@test g.num_nodes == 20
@test g.num_edges == 102
@test g.node_data.features[1][:,:,2:end] == g.node_data.features[2][:,:,1:end-1]

@test data.metadata[:BUDAPEST] == 5
@test data.metadata[:BACS] == 1
@test data.metadata[:ZALA] == 20
@test data.metadata[:HEVES] == 10
@test data.metadata isa Dict{Symbol, Any}
end

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