src/AlgorithmRotation.jl

Sun, 21 Apr 2024 22:35:03 +0300

author
Neil Dizon <neil.dizon@helsinki.fi>
date
Sun, 21 Apr 2024 22:35:03 +0300
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1 ####################################################################
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2 # Predictive online PDPS for optical flow with known velocity field
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3 ####################################################################
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4
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5 __precompile__()
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6
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7 module AlgorithmRotation
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8
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9 identifier = "pdps_known_rotation"
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10
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11 using Printf
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12
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13 using AlgTools.Util
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14 import AlgTools.Iterate
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15 using ImageTools.Gradient
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16
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17 using ..OpticalFlow: ImageSize,
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18 Image,
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19 pdflow!
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20
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21 #########################
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22 # Iterate initialisation
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23 #########################
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24
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25 function init_rest(x::Image)
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26 imdim=size(x)
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27
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28 y = zeros(2, imdim...)
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29 Δx = copy(x)
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30 Δy = copy(y)
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31 x̄ = copy(x)
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32
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33 return x, y, Δx, Δy, x̄
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34 end
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35
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36 function init_iterates(xinit::Image)
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37 return init_rest(copy(xinit))
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38 end
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39
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40 function init_iterates(dim::ImageSize)
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41 return init_rest(zeros(dim...))
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42 end
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43
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44 ############
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45 # Algorithm
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46 ############
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47
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48 function solve( :: Type{DisplacementT};
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49 dim :: ImageSize,
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50 iterate = AlgTools.simple_iterate,
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51 params::NamedTuple) where DisplacementT
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52
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53 ################################
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54 # Extract and set up parameters
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55 ################################
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56
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57 α, ρ = params.α, params.ρ
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58 R_K² = ∇₂_norm₂₂_est²
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59 γ = 1.0
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60 Λ = params.Λ
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61 τ₀, σ₀ = params.τ₀, params.σ₀
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62
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63 τ = τ₀/γ
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64 @assert(1+γ*τ ≥ Λ)
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65 σ = σ₀*1/(τ*R_K²)
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66
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67 println("Step length parameters: τ=$(τ), σ=$(σ)")
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68
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69 ######################
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70 # Initialise iterates
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71 ######################
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72
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73 x, y, Δx, Δy, x̄ = init_iterates(dim)
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74 init_data = (params.init == :data)
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75
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76 ####################
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77 # Run the algorithm
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78 ####################
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79
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80 v = iterate(params) do verbose :: Function,
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81 b :: Image,
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82 v_known :: DisplacementT,
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83 🚫unused_b_next :: Image
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84
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85 ##################
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86 # Prediction step
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87 ##################
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88 if init_data
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89 x .= b
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90 init_data = false
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91 end
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92
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93 pdflow!(x, Δx, y, v_known)
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94
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95 ############
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96 # PDPS step
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97 ############
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98
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99 ∇₂ᵀ!(Δx, y) # primal step:
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100 @. x̄ = x # | save old x for over-relax
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101 @. x = (x-τ*(Δx-b))/(1+τ) # | prox
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102 @. x̄ = 2x - x̄ # over-relax
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103 ∇₂!(Δy, x̄) # dual step: y
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104 @. y = (y + σ*Δy)/(1 + σ*ρ/α) # |
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105 proj_norm₂₁ball!(y, α) # | prox
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106
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107 ################################
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108 # Give function value if needed
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109 ################################
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110 v = verbose() do
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111 ∇₂!(Δy, x)
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112 value = norm₂²(b-x)/2 + params.α*γnorm₂₁(Δy, params.ρ)
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113 value, x, [NaN, NaN], nothing
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114 end
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115
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116 v
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117 end
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118
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119 return x, y, v
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120 end
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121
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122 end # Module
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123
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124

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