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fold_slice/+utils/imshift_fast.m
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2026-08-07 15:56:42 +09:00

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% IMSHIFT_FAST shift of stack of images by given number of
% pixels and if needed crop / pad image to fit into Npix_new
%
% img_new=imshift_fast(img_0, x,y, Npix_new=[], type='linear', default_val=0)
%
% Inputs:
% **img_0 - stack of images
% **x,y - horizontal / vertical shift in pixels (scalars)
% **Npix_new - empty/missing => keep original size, 2x1 vector => embed new image into given frame size
% **type - linear / nearest neighbor interpolation , (missing/empty => linear)
% **default_val - default value to fill empty regions created after the image shift
% returns:
% ++ img_new - shifted image padded to Npix_new
%*-----------------------------------------------------------------------*
%|                                                                       |
%|  Except where otherwise noted, this work is licensed under a          |
%|  Creative Commons Attribution-NonCommercial-ShareAlike 4.0            |
%|  International (CC BY-NC-SA 4.0) license.                             |
%|                                                                       |
%|  Copyright (c) 2017 by Paul Scherrer Institute (http://www.psi.ch)    |
%|                                                                       |
%|      Author: CXS group, PSI  |
%*-----------------------------------------------------------------------*
% You may use this code with the following provisions:
%
% If the code is fully or partially redistributed, or rewritten in another
% computing language this notice should be included in the redistribution.
%
% If this code, or subfunctions or parts of it, is used for research in a
% publication or if it is fully or partially rewritten for another
% computing language the authors and institution should be acknowledged
% in written form in the publication: “Data processing was carried out
% using the “cSAXS matlab package” developed by the CXS group,
% Paul Scherrer Institut, Switzerland.”
% Variations on the latter text can be incorporated upon discussion with
% the CXS group if needed to more specifically reflect the use of the package
% for the published work.
%
% A publication that focuses on describing features, or parameters, that
% are already existing in the code should be first discussed with the
% authors.
%
% This code and subroutines are part of a continuous development, they
% are provided “as they are” without guarantees or liability on part
% of PSI or the authors. It is the user responsibility to ensure its
% proper use and the correctness of the results.
function img_new=imshift_fast(img_0, x,y, Npix_new, type, default_val)
if nargin < 4 || isempty(Npix_new)
Npix_new = size(img_0);
end
Npix_new = Npix_new(1:2);
if nargin < 5
type = 'linear';
end
if nargin < 6
default_val = 0;
end
if length(x) > 1 || length(y) > 1
error('Only scalar position shifts are accepted')
end
[Nx, Ny, Nimgs] = size(img_0);
if x==0 && y == 0 && all([Nx,Ny] == Npix_new)
%% no change is needed, return original image
img_new = img_0;
return
end
pos = -[x,y];
if strcmp(type, 'linear') && any(round([x,y]) ~= [x,y]) && ~isa(img_0, 'logical')
shift = make_shift(pos - round(pos));
Npix_tmp = size(img_0);
Npix_tmp(1:2) = Npix_tmp(1:2) + 2;
img_tmp = zeros(Npix_tmp, 'like', img_0 );
for i = 1:Nimgs
img_tmp(:,:,i) = conv2(img_0(:,:,i), shift, 'full');
end
img_0 = img_tmp;
end
Npix = [Nx,Ny];
[oROI, pROI] = find_ROI( pos ,Npix_new, Npix );
if all(x==0) && all(y == 0) && all(Npix_new < Npix)
img_new = img_0(pROI{:},:);
else
if all(abs(pos) <= 1) && all( Npix_new == Npix)
img_new = img_0; % for tiny shift reuse the original array
else
img_new = ones([Npix_new,Nimgs], 'like', img_0 )*default_val;
end
img_new(oROI{:}, :) = img_0(pROI{:}, :);
end
end
function [oROI, pROI, oROI_, pROI_] = find_ROI( position, Nobj_new, Nobj_0 )
oROI = cell(2,1);
pROI = cell(2,1);
pos = round(position([2,1]));
%% correction for odd size of the Nobj_new
pos = pos - mod(Nobj_0-Nobj_new,2) .* (Nobj_new > Nobj_0);
oROI_ = zeros(2);
pROI_ = zeros(2);
for dim = 1:2
range_0 = round(pos(dim) + [1,Nobj_0(dim)] - Nobj_0(dim)/2 + Nobj_new(dim)/2);
oROI_(dim,:) = min(max(1,range_0), Nobj_new(dim));
l = oROI_(dim,2) - oROI_(dim,1) +1;
p1 = min(Nobj_0(dim), Nobj_0(dim) - (range_0(2) - Nobj_new(dim)));
pROI_(dim,1) = p1 - l+1;
pROI_(dim,2) = p1;
if pROI_(dim,1) < pROI_(dim,2)
pROI{dim} = pROI_(dim,1):pROI_(dim,2);
else
pROI{dim} = [];
end
if oROI_(dim,1) < oROI_(dim,2)
oROI{dim} = oROI_(dim,1):oROI_(dim,2);
else
oROI{dim} = [];
end
end
end
function shift_mat = make_shift(shift)
x = shift(2); % correction on pixel position
y = shift(1);
N = max(1, ceil(abs([x,y])));
x = x+N(1);
y = y+N(2);
dx = x-floor(x);
dy = y-floor(y);
w(1) = dx * dy;
w(2) = (1-dx) * dy;
w(3) = dx * (1-dy);
w(4) = (1-dx) * (1-dy);
ix = 1+floor(x);
iy = 1+floor(y);
shift_mat = zeros(2*N+1);
shift_mat(ix, iy) = w(4);
shift_mat(ix+1, iy) = w(3);
shift_mat(ix, iy+1) = w(2);
shift_mat(ix+1, iy+1) = w(1);
end