mirror of
https://github.com/c-sooyoung/fold_slice.git
synced 2026-09-17 22:59:07 +09:00
159 lines
10 KiB
Matlab
159 lines
10 KiB
Matlab
%UPDATE_VOLUME apply the updated projection information to the shared
|
||
%tomographic volume using a gradient descent method
|
||
%
|
||
% [volData, update_norm] = update_volume(volData, projData_c_upd, update_step, projData_model, par)
|
||
%
|
||
%
|
||
% Inputs:
|
||
% **volData - 3D array, linearized tomographic volume (ie tranmission == exp(sum(volData,1)) == prod(exp(volData)) )
|
||
% **projData_upd - stacked 2D array, linearized difference of the complex-valued projections, ie log( P_new .* conj(P_orig) ./ |P_orig|^2)
|
||
% **updated_step - complex scalar, update step length for the gradient descent method, should be < 1
|
||
% **projData_model - structure that contain information about the model projection at the current angle
|
||
% **par - parameter structure for the ptychotomo method
|
||
% *returns*
|
||
% **volData - 3D array, updated linearized tomographic volume (ie tranmission == exp(sum(volData,1)) == prod(exp(volData)) )
|
||
% **update_norm - scalar, relative tomo volume change since between the original and update volData
|
||
|
||
|
||
|
||
% Academic License Agreement
|
||
%
|
||
% Source Code
|
||
%
|
||
% Introduction
|
||
% • This license agreement sets forth the terms and conditions under which the PAUL SCHERRER INSTITUT (PSI), CH-5232 Villigen-PSI, Switzerland (hereafter "LICENSOR")
|
||
% will grant you (hereafter "LICENSEE") a royalty-free, non-exclusive license for academic, non-commercial purposes only (hereafter "LICENSE") to use the PtychoShelves
|
||
% computer software program and associated documentation furnished hereunder (hereafter "PROGRAM").
|
||
%
|
||
% Terms and Conditions of the LICENSE
|
||
% 1. LICENSOR grants to LICENSEE a royalty-free, non-exclusive license to use the PROGRAM for academic, non-commercial purposes, upon the terms and conditions
|
||
% hereinafter set out and until termination of this license as set forth below.
|
||
% 2. LICENSEE acknowledges that the PROGRAM is a research tool still in the development stage. The PROGRAM is provided without any related services, improvements
|
||
% or warranties from LICENSOR and that the LICENSE is entered into in order to enable others to utilize the PROGRAM in their academic activities. It is the
|
||
% LICENSEE’s responsibility to ensure its proper use and the correctness of the results.”
|
||
% 3. THE PROGRAM IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR
|
||
% A PARTICULAR PURPOSE AND NONINFRINGEMENT OF ANY PATENTS, COPYRIGHTS, TRADEMARKS OR OTHER RIGHTS. IN NO EVENT SHALL THE LICENSOR, THE AUTHORS OR THE COPYRIGHT
|
||
% HOLDERS BE LIABLE FOR ANY CLAIM, DIRECT, INDIRECT OR CONSEQUENTIAL DAMAGES OR OTHER LIABILITY ARISING FROM, OUT OF OR IN CONNECTION WITH THE PROGRAM OR THE USE
|
||
% OF THE PROGRAM OR OTHER DEALINGS IN THE PROGRAM.
|
||
% 4. LICENSEE agrees that it will use the PROGRAM and any modifications, improvements, or derivatives of PROGRAM that LICENSEE may create (collectively,
|
||
% "IMPROVEMENTS") solely for academic, non-commercial purposes and that any copy of PROGRAM or derivatives thereof shall be distributed only under the same
|
||
% license as PROGRAM. The terms "academic, non-commercial", as used in this Agreement, mean academic or other scholarly research which (a) is not undertaken for
|
||
% profit, or (b) is not intended to produce works, services, or data for commercial use, or (c) is neither conducted, nor funded, by a person or an entity engaged
|
||
% in the commercial use, application or exploitation of works similar to the PROGRAM.
|
||
% 5. LICENSEE agrees that it shall make the following acknowledgement in any publication resulting from the use of the PROGRAM or any translation of the code into
|
||
% another computing language:
|
||
% "Data processing was carried out using the PtychoShelves package developed by the Science IT and the coherent X-ray scattering (CXS) groups, Paul
|
||
% Scherrer Institut, Switzerland."
|
||
%
|
||
% Additionally, any publication using the package, or any translation of the code into another computing language should cite
|
||
% K. Wakonig, H.-C. Stadler, M. Odstrčil, E.H.R. Tsai, A. Diaz, M. Holler, I. Usov, J. Raabe, A. Menzel, M. Guizar-Sicairos, PtychoShelves, a versatile
|
||
% high-level framework for high-performance analysis of ptychographic data, J. Appl. Cryst. 53(2) (2020). (doi: 10.1107/S1600576720001776)
|
||
% and for difference map:
|
||
% P. Thibault, M. Dierolf, A. Menzel, O. Bunk, C. David, F. Pfeiffer, High-resolution scanning X-ray diffraction microscopy, Science 321, 379–382 (2008).
|
||
% (doi: 10.1126/science.1158573),
|
||
% for maximum likelihood:
|
||
% P. Thibault and M. Guizar-Sicairos, Maximum-likelihood refinement for coherent diffractive imaging, New J. Phys. 14, 063004 (2012).
|
||
% (doi: 10.1088/1367-2630/14/6/063004),
|
||
% for LSQ-ML:
|
||
% M. Odstrčil, A. Menzel, and M. Guizar-Sicairos, Iterative least-squares solver for generalized maximum-likelihood ptychography, Opt. Express 26(3), 3108 (2018).
|
||
% (doi: 10.1364/OE.26.003108),
|
||
% for mixed coherent modes:
|
||
% P. Thibault and A. Menzel, Reconstructing state mixtures from diffraction measurements, Nature 494, 68–71 (2013). (doi: 10.1038/nature11806),
|
||
% and/or for multislice:
|
||
% E. H. R. Tsai, I. Usov, A. Diaz, A. Menzel, and M. Guizar-Sicairos, X-ray ptychography with extended depth of field, Opt. Express 24, 29089–29108 (2016).
|
||
% (doi: 10.1364/OE.24.029089),
|
||
% and/or for OPRP:
|
||
% M. Odstrcil, P. Baksh, S. A. Boden, R. Card, J. E. Chad, J. G. Frey, W. S. Brocklesby, Ptychographic coherent diffractive imaging with orthogonal probe relaxation.
|
||
% Opt. Express 24.8 (8360-8369) 2016. (doi: 10.1364/OE.24.008360).
|
||
% 6. Except for the above-mentioned acknowledgment, LICENSEE shall not use the PROGRAM title or the names or logos of LICENSOR, nor any adaptation thereof, nor the
|
||
% names of any of its employees or laboratories, in any advertising, promotional or sales material without prior written consent obtained from LICENSOR in each case.
|
||
% 7. Ownership of all rights, including copyright in the PROGRAM and in any material associated therewith, shall at all times remain with LICENSOR, and LICENSEE
|
||
% agrees to preserve same. LICENSEE agrees not to use any portion of the PROGRAM or of any IMPROVEMENTS in any machine-readable form outside the PROGRAM, nor to
|
||
% make any copies except for its internal use, without prior written consent of LICENSOR. LICENSEE agrees to place the following copyright notice on any such copies:
|
||
% © All rights reserved. PAUL SCHERRER INSTITUT, Switzerland, Laboratory for Macromolecules and Bioimaging, 2017.
|
||
% 8. The LICENSE shall not be construed to confer any rights upon LICENSEE by implication or otherwise except as specifically set forth herein.
|
||
% 9. DISCLAIMER: LICENSEE shall be aware that Phase Focus Limited of Sheffield, UK has an international portfolio of patents and pending applications which relate
|
||
% to ptychography and that the PROGRAM may be capable of being used in circumstances which may fall within the claims of one or more of the Phase Focus patents,
|
||
% in particular of patent with international application number PCT/GB2005/001464. The LICENSOR explicitly declares not to indemnify the users of the software
|
||
% in case Phase Focus or any other third party will open a legal action against the LICENSEE due to the use of the program.
|
||
% 10. This Agreement shall be governed by the material laws of Switzerland and any dispute arising out of this Agreement or use of the PROGRAM shall be brought before
|
||
% the courts of Zürich, Switzerland.
|
||
|
||
function [volData, update_norm] = update_volume(volData, projData_c_upd, update_step, projData_model, par)
|
||
% update the volData using the provided projection update
|
||
% projData_c_upd and update_step
|
||
|
||
Npx_vol = size(volData);
|
||
|
||
position_offset = -projData_model.position_offset;
|
||
if any(any(round(position_offset) ~= position_offset))
|
||
error('Noninterger shift may result in mixing real and imaginary data')
|
||
end
|
||
|
||
% apply integer shift to correct for shifts of the projections
|
||
projData_c_upd = utils.imshift_fast(projData_c_upd, position_offset(1), position_offset(2));
|
||
|
||
% crop back to projection size
|
||
projData_c_upd = utils.crop_pad(projData_c_upd,[Npx_vol(3),Npx_vol(1)]);
|
||
|
||
|
||
Nblock = ceil(prod(Npx_vol)*8 / 1e9); % split into 2GB blocks
|
||
update_norm = 0;
|
||
|
||
for ii = 1:Nblock
|
||
ind = 1+(ii-1)*ceil(Npx_vol(3)/Nblock):min((ii)*ceil(Npx_vol(3)/Nblock), Npx_vol(3));
|
||
|
||
%% update the reconstructed volume
|
||
args = {projData_model.angle, [Npx_vol(1:2), length(ind)]};
|
||
[volData_upd_r] = ptychotomo.back_proj(real(projData_c_upd(ind,:,:)),args{:});
|
||
[volData_upd_i] = ptychotomo.back_proj(imag(projData_c_upd(ind,:,:)),args{:});
|
||
|
||
volData_upd = complex(volData_upd_r, volData_upd_i);
|
||
update_norm = update_norm + gather(norm(volData_upd(:)));
|
||
|
||
if update_norm / par.norm_full > 0.5
|
||
keyboard
|
||
end
|
||
% update only the processed block
|
||
if update_step > 0 && update_norm / par.norm_full < 0.5
|
||
%% update the full volume, vary the update speed in dependence on number of layers -> avoid instabilities
|
||
volData_block = volData(:,:,ind);
|
||
volData_block = arrayfun(@object_constraint_kernel,volData_block, par.support_mask, update_step, volData_upd, par.max_value, par.min_value);
|
||
%% call MEX function
|
||
set_to_block_gpu(volData, volData_block, uint16(ind));
|
||
end
|
||
|
||
|
||
end
|
||
|
||
update_norm = update_norm / par.norm_full ;
|
||
|
||
|
||
|
||
%utils.verbose(0, 'update_norm %g', update_norm)
|
||
end
|
||
|
||
|
||
%% auxiliary function for GPU, use GPU arrayfun for fast inplace processing
|
||
|
||
function volData = object_constraint_kernel(volData, support_mask, update_step, volData_update, max_value, min_value)
|
||
|
||
% separated update_step / converegnce rate for phase and absorbtion
|
||
volData_update = complex(real(update_step) * real(volData_update), imag(update_step) * imag(volData_update));
|
||
volData = volData .* support_mask;
|
||
|
||
|
||
volData = volData + volData_update;
|
||
|
||
volData_r = real(volData);
|
||
volData_i = imag(volData);
|
||
|
||
% apply some clipping of the output values
|
||
volData_r = min(real(max_value), max(real(min_value), volData_r));
|
||
volData_i = min(imag(max_value), max(imag(min_value), volData_i));
|
||
|
||
volData = complex(volData_r, volData_i) ;
|
||
|
||
|
||
end
|