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fold_slice/tomo/+tomo/SART_prepare.m
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% SART_PREPARE prepare cache and config for SART tomography reconstruction code
%
% [cache,cfg] = SART_prepare(cfg, vectors, grouping, varargin)
%
% Inputs:
% **cfg - config struct from ASTRA_initialize
% **vectors - vectors of projection rotation generated by ASTRA_initialize
% **split - split parameter for the ASTRA projector
% *optional*
% ** split =[1,1,1] - split the solved volume, split(3 is used to split in separated blocks, split(1:2) is used inside Atx_partial to du subplitting for ASTRA
% ** deformation_fields = {} - cell 3x1 of deformation arrays
% ** GPU = [] - list of GPUs to be used in reconstruction
% ** split_sub = [1,1,1] - splitting of the sub block on smaller tasks in the Atx_partial method , 1 == no splitting
% ** verbose = 1 - verbose = 0 : quiet, verbose : standard info , verbose = 2: debug
% ** keep_on_GPU = false - if true, do not gather arrays from GPU -> faster
% ** weights = [] - custom weights (3D array) that denote reliable region in the projection
%
% *returns*
% ++cache - precalcualted values needed for SART
% ++cfg - modified ASTRA config structure needed for SART
%*-----------------------------------------------------------------------*
%|                                                                       |
%|  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 [cache,cfg] = SART_prepare(cfg, vectors, grouping, varargin)
par = inputParser;
par.addOptional('split', 1)
par.addParameter('deformation_fields', {} ) % cell 3x1 of deformation arrays
par.addParameter('GPU', []) % list of GPUs to be used in reconstruction
par.addParameter('split_sub', 1) % splitting of the sub block on smaller tasks in the Atx_partial method , 1 == no splitting
par.addParameter('verbose', 0) % verbose = 0 : quiet, verbose : standard info , verbose = 2: debug
par.addParameter('keep_on_gpu', false); % keep resuls on GPU or move to RAM
par.addParameter('weights', []); % custom weights (3D array) that denote reliable region in the projection
par.parse(varargin{:})
res = par.Results;
Nangles = length(vectors);
cfg.Grouping = min(Nangles, grouping);
cfg.iProjGroups = ceil(Nangles/cfg.Grouping);
if ~res.keep_on_gpu && gpuDeviceCount
empty = ones(cfg.iVolX, cfg.iVolY, cfg.iVolZ, 'single');
R = tomo.Ax_sup_partial(empty, cfg, vectors, res.split, 'GPU', res.GPU, 'split_sub', res.split_sub, 'verbose', res.verbose, 'deformation_fields', res.deformation_fields );
else
empty = gpuArray.ones(cfg.iVolX, cfg.iVolY, cfg.iVolZ, 'single');
R = astra.Ax_partial(empty, cfg, vectors, res.split_sub, 'verbose', res.verbose, 'deformation_fields', res.deformation_fields );
end
% some "representative" sample of R
R_val = R(ceil(end/2), ceil(end/2), ceil(end/2));
R = (R>0)./sqrt(R.^2+(1e-2 * R_val)^2 ); %% !! avoid division by 0
if ~isempty(res.weights)
R = R.*res.weights; % apply custom weights
end
cache.R = R;
cfg.iProjAngles = Nangles;
cache.Nbunches = cfg.iProjGroups;
end