Created
October 30, 2014 12:34
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Various contour descriptors
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function forward_difference(c::Matrix) | |
out = zeros(c) | |
@simd for i = 1:size(c,1)-1 | |
@inbounds out[i,:] = c[i+1,:] - c[i,:] | |
end | |
@inbounds out[size(c,1),:] = c[1,:] - c[size(c,1),:] | |
out | |
end | |
function at(c::Matrix, t::Number, Δc::Matrix, cumlen::Vector{Float64}) | |
k = 2 | |
while t >= cumlen[k] | |
k += 1 | |
end | |
c[k-1,:] + Δc[k-1,:] * (t - cumlen[k-1]) / (cumlen[k] - cumlen[k-1]) | |
end | |
function at(c::Matrix, t::Number) | |
Δc = forward_difference(c) | |
cumlen = [.0, sum(Δc.^2,2) |> sqrt |> cumsum] | |
cumlen ./= cumlen[end] | |
at(c, t, Δc, cumlen) | |
end | |
function resample(c::Matrix, M::Int) | |
Δc = forward_difference(c) | |
cumlen = [.0, sum(Δc.^2,2) |> sqrt |> cumsum] | |
cumlen ./= cumlen[end] | |
out = zeros(M,2) | |
k = 2::Int64 | |
for i = 1:M | |
t = (i-1) / M | |
while t >= cumlen[k] | |
k += 1 | |
end | |
@inbounds out[i,:] = c[k-1,:] + Δc[k-1,:] * (t - cumlen[k-1]) / (cumlen[k] - cumlen[k-1]) | |
end | |
out | |
end | |
fourierDescriptor(c::Matrix) = fft!(c[:,1] + c[:,2]im) | |
fourierDescriptor(c::Matrix, M::Int) = resample(c,M) |> fourierDescriptor | |
function makeInvariant!(d::Vector{Complex{Float64}}) | |
d[1] = 0 # translation invariance | |
d ./= abs(d[2]) # scale invariance | |
d | |
end | |
makeInvariant(d) = makeInvariant!(copy(d)) | |
function toContour(d::Vector) | |
id = ifft(d) | |
[real(id) imag(id)] | |
end | |
function centroidDistance(c::Matrix) | |
d = sum((c .- mean(c,1)).^2, 2) |> sqrt | |
d ./ maximum(d) # scale invariance | |
end | |
centroidDistance(c::Matrix, M::Int) = resample(c,M) |> centroidDistance | |
fftCentroidDistance(c::Matrix) = centroidDistance(c) |> fft | |
fftCentroidDistance(c::Matrix, M::Int) = resample(c,M) |> centroidDistance |> fft |
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