src/ImFilter.jl

Thu, 04 Feb 2021 13:58:19 -0500

author
Tuomo Valkonen <tuomov@iki.fi>
date
Thu, 04 Feb 2021 13:58:19 -0500
changeset 53
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parent 48
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permissions
-rw-r--r--

Fix some `using` to be relative.

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1 ##################################################
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2 # Simple (and fast for small filters compared to
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3 # ImageFiltering) image filtering
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4 ##################################################
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5
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6 __precompile__()
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7
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8 module ImFilter
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9
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10 using OffsetArrays
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11 using AlgTools.Util: @threadsif, norm₁
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12 using AlgTools.LinOps
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14 ##########
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15 # Exports
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16 ##########
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18 export simple_imfilter,
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19 simple_imfilter!,
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20 simple_imfilter_adjoint,
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21 simple_imfilter_adjoint!,
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22 gaussian,
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23 FilterKernel
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25 ##############
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26 # The routine
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27 ##############
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28
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29 Image = Array{Float64,2}
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30 Kernel = OffsetArray{Float64,2,Image}
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31
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32 @inline function inside(i, aʹ, bʹ, a, b)
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33 return (max(a, i - aʹ) - i):(min(b, i + bʹ) - i)
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34 end
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35
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36 function simple_imfilter!(res::Image, b::Image, kernel::Kernel; threads::Bool=true)
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37 n, m = size(b)
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38 k, 𝓁 = size(kernel)
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39 o₁, o₂ = kernel.offsets
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40 a₁, a₂ = k + o₁, 𝓁 + o₂
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41 b₁, b₂ = -1 - o₁, -1 - o₂
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42 kp = kernel.parent
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43
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44 @assert(isodd(k) && isodd(𝓁) && size(res)==size(b))
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45
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46 @threadsif threads for i=1:n
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47 @inbounds for j=1:m
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48 tmp = 0.0
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49 it₁ = inside(i, a₁, b₁, 1, n)
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50 it₂ = inside(j, a₂, b₂, 1, m)
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51 for p=it₁
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52 @simd for q=it₂
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53 tmp += kp[p-o₁, q-o₂]*b[i+p,j+q]
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54 end
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55 end
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56 res[i, j] = tmp
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57 end
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58 end
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59
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60 return res
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61 end
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62
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63 function simple_imfilter(b::Image, kernel::Kernel; threads::Bool=true)
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64 res = similar(b)
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65 simple_imfilter!(res, b, kernel)
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66 end
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67
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68 function simple_imfilter_adjoint!(res::Image, b::Image, kernel::Kernel; threads::Bool=true)
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69 n, m = size(b)
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70 k, 𝓁 = size(kernel)
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71 o₁, o₂ = kernel.offsets
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72 a₁, a₂ = k + o₁, 𝓁 + o₂
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73 b₁, b₂ = -1 - o₁, -1 - o₂
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74 kp = kernel.parent
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75
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76 @assert(isodd(k) && isodd(𝓁) && size(res)==size(b))
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77
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78 res .= 0
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79
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80 @threadsif threads for i=1:n
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81 @inbounds for j=1:m
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82 it₁ = inside(i, a₁, b₁, 1, n)
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83 it₂ = inside(j, a₂, b₂, 1, m)
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84 for p=it₁
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85 @simd for q=it₂
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86 res[i+p,j+q] += kp[p-o₁, q-o₂]*b[i, j]
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87 end
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88 end
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89 end
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90 end
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91
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92 return res
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93 end
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94
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95 function simple_imfilter_adjoint(b::Image, kernel::Kernel; threads::Bool=true)
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96 res = similar(b)
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97 simple_imfilter_adjoint!(res, b, kernel)
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98 end
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99
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100 ###########################
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101 # Abstract linear operator
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102 ###########################
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103
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104 struct FilterKernel <: AdjointableOp{Image, Image}
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105 kernel::Kernel
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106 end
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107
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108 function (op::FilterKernel)(b::Image)
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109 return simple_imfilter(b, op.kernel)
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110 end
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111
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112 function LinOps.inplace!(y::Image, op::FilterKernel, x::Image)
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113 return simple_imfilter!(y, x, op.kernel)
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114 end
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115
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116 function LinOps.calc_adjoint(op::FilterKernel, y::Image)
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117 return simple_imfilter_adjoint(y, op.kernel)
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118 end
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119
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120 function LinOps.calc_adjoint!(res::Image, op::FilterKernel, y::Image)
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121 return simple_imfilter_adjoint!(res, y, op.kernel)
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122 end
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123
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124 function LinOps.opnorm_estimate(op::FilterKernel)
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125 # Due to |f * g|_p ≤ |f|_p|g|_1
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126 return norm₁(op.kernel)
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127 end
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128
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129 ######################################################
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130 # Distributions. Just to avoid the long load times of
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131 # ImageFiltering and heavy dependencies on FFTW etc.
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132 ######################################################
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133
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134 function gaussian(σ, n)
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135 @assert(all(isodd.(n)))
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136 a=convert.(Integer, @. (n-1)/2)
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137 g=OffsetArray{Float64}(undef, [-m:m for m in a]...);
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138 for i in CartesianIndices(g)
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139 g[i]=exp(-sum(Tuple(i).^2 ./ (2 .* σ.^2)))
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140 end
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141 g./=sum(g)
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142 end
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143
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144 end # Module
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145

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