source: trunk/src/series/test_civ.m @ 1165

Last change on this file since 1165 was 1163, checked in by sommeria, 2 months ago

SearchBoxSize? changed to SearchRange? in civ, possibility of a grid set by a netcdf file

File size: 12.3 KB
Line 
1%'test_civ': test the civ fct on a simple shear produced by defomation of the input image
2%------------------------------------------------------------------------
3% Method:
4    %open a netcdf file with civ results.
5   
6% function ParamOut=test_patch_tps (Param)
7%
8%%%%%%%%%%% GENERAL TO ALL SERIES ACTION FCTS %%%%%%%%%%%%%%%%%%%%%%%%%%%
9%
10%OUTPUT
11% ParamOut: sets input parameters when the function is selected, not activated(input Param.Action.RUN=0),=[] when the function is running
12%
13%INPUT:
14% In run mode, the input parameters are given as a Matlab structure Param copied from the GUI series.
15% In batch mode, Param is the name of the corresponding xml file containing the same information
16% when Param.Action.RUN=0 (as activated when the current Action is selected
17% in series), the function ouput paramOut set the activation of the needed GUI elements
18%
19% Param contains the elements:(use the menu bar command 'export/GUI config' in series to
20% see the current structure Param)
21%    .InputTable: cell of input file names, (several lines for multiple input)
22%                      each line decomposed as {RootPath,SubDir,Rootfile,NomType,Extension}
23%    .OutputSubDir: name of the subdirectory for data outputs
24%    .OutputDirExt: directory extension for data outputs
25%    .Action: .ActionName: name of the current activated function
26%             .ActionPath:   path of the current activated function
27%             .ActionExt: fct extension ('.m', Matlab fct, '.sh', compiled   Matlab fct
28%             .RUN =0 for GUI input, =1 for function activation
29%             .RunMode='local','background', 'cluster': type of function  use
30%             
31%    .IndexRange: set the file or frame indices on which the action must be performed
32%    .InputFields: sub structure describing the input fields withfields
33%              .FieldName: name(s) of the field
34%              .VelType: velocity type
35
36%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
37
38%=======================================================================
39% Copyright 2008-2024, LEGI UMR 5519 / CNRS UGA G-INP, Grenoble, France
40%   http://www.legi.grenoble-inp.fr
41%   Joel.Sommeria - Joel.Sommeria (A) univ-grenoble-alpes.fr
42%
43%     This file is part of the toolbox UVMAT.
44%
45%     UVMAT is free software; you can redistribute it and/or modify
46%     it under the terms of the GNU General Public License as published
47%     by the Free Software Foundation; either version 2 of the license,
48%     or (at your option) any later version.
49%
50%     UVMAT is distributed in the hope that it will be useful,
51%     but WITHOUT ANY WARRANTY; without even the implied warranty of
52%     MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
53%     GNU General Public License (see LICENSE.txt) for more details.
54%=======================================================================
55
56function ParamOut=test_civ (Param)
57
58%%%%%%%%%%%%%%%%%    INPUT PREPARATION MODE (no RUN)    %%%%%%%%%%%%%%%%%
59if isstruct(Param) && isequal(Param.Action.RUN,0)
60    ParamOut.AllowInputSort='off';% allow alphabetic sorting of the list of input file SubDir (options 'off'/'on', 'off' by default)
61    ParamOut.WholeIndexRange='one';% prescribes the file index ranges from min to max (options 'off'/'on'/'one' (single input index), 'off' by default)
62    ParamOut.NbSlice='off'; % edit box nbre of slices made active
63    ParamOut.VelType='one';% menu for selecting the velocity type (options 'off'/'one'/'two',  'off' by default)
64    ParamOut.FieldName='off';% menu for selecting the field (s) in the input file(options 'off'/'one'/'two', 'off' by default)
65    ParamOut.FieldTransform = 'off';%can use a transform function
66    ParamOut.ProjObject='off';%cannot use projection object(option 'off'/'on',
67    ParamOut.Mask='off';%can use mask option   (option 'off'/'on', 'off' by default)
68    ParamOut.OutputDirExt='.test_subpixel';%set the output dir extension
69    ParamOut.OutputFileMode='NbSlice';% '=NbInput': 1 output file per input file index, '=NbInput_i': 1 file per input file index i, '=NbSlice': 1 file per slice
70   
71    %% root input file(s) and type
72    % check the existence of the first file in the series
73     first_j=[];% note that the function will propose to cover the whole range of indices
74    if isfield(Param.IndexRange,'first_j'); first_j=Param.IndexRange.first_j; end
75    PairString='';
76    if isfield(Param.IndexRange,'PairString'); PairString=Param.IndexRange.PairString; end
77    [i1,i2,j1,j2] = get_file_index(Param.IndexRange.first_i,first_j,PairString);
78    FirstFileName=fullfile_uvmat(Param.InputTable{1,1},Param.InputTable{1,2},Param.InputTable{1,3},...
79        Param.InputTable{1,5},Param.InputTable{1,4},i1,i2,j1,j2);
80    if ~exist(FirstFileName,'file')
81        msgbox_uvmat('ERROR',['the input file ' FirstFileName ' does not exist'])
82        return
83    end
84
85    %% check the validity of  input file types
86    Data=nc2struct(FirstFileName,[]);
87    if isfield(Data,'CivStage')
88        switch Data.CivStage
89            case {1,2,3}
90                CivStage='civ1';
91               
92            otherwise
93                CivStage='civ2';
94        end
95    else
96        msgbox_uvmat('ERROR','invalid file type input: test_filter_tps proceeds raw civ data')
97        return
98    end
99
100    %% numbers of fields
101    incr_j=1;%default
102    if isfield(Param.IndexRange,'incr_j')&&~isempty(Param.IndexRange.incr_j)
103        incr_j=Param.IndexRange.incr_j;
104    end
105%     if isempty(first_j)||isempty(last_j)
106%         nbfield_j=1;
107%     else
108%         nbfield_j=numel(first_j:incr_j:last_j);%nb of fields for the j index (bursts or volume slices)
109%     end
110    first_i=1;last_i=1;incr_i=1;%default
111    if isfield(Param.IndexRange,'MinIndex_i'); first_i=Param.IndexRange.MinIndex_i; end   
112    if isfield(Param.IndexRange,'MaxIndex_i'); last_i=Param.IndexRange.MaxIndex_i; end
113    if isfield(Param.IndexRange,'incr_i')&&~isempty(Param.IndexRange.incr_i)
114        incr_i=Param.IndexRange.incr_i;
115    end
116    nbfield_i=numel(first_i:incr_i:last_i);%nb of fields for the i index (bursts or volume slices)
117%     nbfield=nbfield_j*nbfield_i; %total number of fields
118   
119    %% setting of intput parameters
120    ListParam={'CivStage';'CorrSmooth';'Civ1_CorrBoxSize'};
121    DefaultValue={CivStage;1;[31 31]};
122    if isfield(Param,'ActionInput')
123        ParamIn=Param.ActionInput;
124    else
125        ParamIn=[];
126    end
127        [ParamOut.ActionInput,errormsg] = set_param_input(ListParam,DefaultValue,ParamIn);
128        if ~isempty(errormsg)
129            msgbox_uvmat('ERROR',errormsg)
130        end
131    return
132end
133%%%%%%%%%%%%%%%%%    STOP HERE FOR PAMETER INPUT MODE   %%%%%%%%%%%%%%%%%
134
135%% read input parameters from an xml file if input is a file name (batch mode)
136checkrun=1;
137RUNHandle=[];
138WaitbarHandle=[];
139if ischar(Param)
140    Param=xml2struct(Param);% read Param as input file (batch case)
141    checkrun=0;
142else
143    hseries=findobj(allchild(0),'Tag','series');
144    RUNHandle=findobj(hseries,'Tag','RUN');%handle of RUN button in GUI series
145    WaitbarHandle=findobj(hseries,'Tag','Waitbar');%handle of waitbar in GUI series
146end
147
148%% input preparation
149RootPath=Param.InputTable{:,1};
150RootFile=Param.InputTable{:,3};
151NomType=Param.InputTable{:,4};
152[filecell,i1_series,i2_series,j1_series,j2_series]=get_file_series(Param);
153% if ~isempty(hdisp),delete(hdisp),end;
154%%%%%%%%%%%%
155% The cell array filecell is the list of input file names, while
156% filecell{iview,fileindex}:
157%        iview: line in the table corresponding to a given file series
158%        fileindex: file index within  the file series,
159% i1_series(iview,ref_j,ref_i)... are the corresponding arrays of indices i1,i2,j1,j2, depending on the input line iview and the two reference indices ref_i,ref_j
160% i1_series(iview,fileindex) expresses the same indices as a 1D array in file indices
161%%%%%%%%%%%%
162
163%% output path
164
165OutputPath=fullfile(Param.OutputPath,Param.Experiment,Param.Device);
166
167
168%% Prepare the structure of output netcdf file
169DataOut.ListGlobalAttribute={'Conventions','Program','CivStage'};
170DataOut.Conventions='uvmat/civdata';% states the conventions used for the description of field variables and attributes
171if isfield(Param,'UvmatRevision')
172    DataOut.Program=['test_subpixel, uvmat r' Param.UvmatRevision];
173else
174    DataOut.Program='test_subpixel';
175end
176DataOut.CivStage=1;
177DataOut.CoordUnit='pixel';
178DataOut.ListVarName={'Civ1_X','Civ1_Y','Civ1_U','Civ1_V','Civ1_C','Civ1_FF'};
179DataOut.VarDimName={'nb_vec','nb_vec','nb_vec','nb_vec','nb_vec','nb_vec'};
180DataOut.VarAttribute{1}.Role='coord_x';
181DataOut.VarAttribute{2}.Role='coord_y';
182DataOut.VarAttribute{3}.Role='vector_x';
183DataOut.VarAttribute{4}.Role='vector_y';
184DataOut.VarAttribute{5}.Role='ancillary';
185DataOut.VarAttribute{6}.Role='errorflag';
186
187%% MAIN LOOP
188
189Data=read_field(filecell{1,1},'civdata',Param.InputFields);
190
191%% create shifted input image
192
193A=read_image(Data.Civ1_ImageA);
194[npy,npx]=size(A);
195B=zeros(npy,npx);
196for iline=1:npy
197    Ashift=interp(double(A(iline,:)),10);
198    Ashift=circshift(Ashift,round(200*(iline-(npy/2))/npy)+10);
199    Ashift(1:round(200*(iline-(npy/2))/npy)+10)=0;
200    B(iline,:)=decimate(Ashift,10);
201end
202B=B+(rand(npy,npx)-0.5).*B;
203par_civ.ImageA=A;
204if isa(A,'uint8')
205    par_civ.ImageB=uint8(B);
206    BitDepth=8;
207else
208    par_civ.ImageB=uint16(B);
209    BitDepth=16;
210end
211y=linspace (0.5,npy-0.5,npy);
212
213%% Run civ_series
214%Param.ActionInput.ListCompareMode='PIV';
215par_civ.CorrBoxSize=Param.ActionInput.Civ1_CorrBoxSize;
216par_civ.SearchRange=[15 5];
217par_civ.SearchBoxShift=[0 0];
218par_civ.Dx=Data.Civ1_Dx;
219par_civ.Dy=Data.Civ1_Dy;
220par_civ.Dy=Data.Civ1_Dy;
221par_civ.CorrSmooth=Param.ActionInput.CorrSmooth;
222% par_civ.MinCorr=0;
223%    path_series=fileparts(which('series'));
224% addpath(fullfile(path_series,'series'))
225%     [DataOut,errormsg,result_conv]= civ_series(Param)
226
227% par_civ: structure of input parameters, with fields:
228%  .ImageA: first image for correlation (matrix)
229%  .ImageB: second image for correlation(matrix)
230%  .CorrBoxSize: 1,2 vector giving the size of the correlation box in x and y
231%  .SearchBoxSize:  1,2 vector giving the size of the search box in x and y
232%  .SearchBoxShift: 1,2 vector or 2 column matrix (for civ2) giving the shift of the search box in x and y
233%  .CorrSmooth: =1 or 2 determines the choice of the sub-pixel determination of the correlation max
234%  .ImageWidth: nb of pixels of the image in x
235%  .Dx, Dy: mesh for the PIV calculation
236%  .Grid: grid giving the PIV calculation points (alternative to .Dx .Dy): centres of the correlation boxes in Image A
237%  .Mask: name of a mask file or mask image matrix itself
238%  .MinIma: thresholds for image luminosity
239%  .MaxIma
240%  .CheckDeformation=1 for subpixel interpolation and image deformation (linear transform)
241%  .DUDX: matrix of deformation obtained from patch at each grid point
242%  .DUDY
243%  .DVDX:
244%  .DVDY
245
246[DataOut.Civ1_X,DataOut.Civ1_Y,DataOut.Civ1_U,DataOut.Civ1_V,DataOut.Civ1_C,DataOut.Civ1_FF,result_conv,errormsg] = civ (par_civ);
247
248if ~isempty(errormsg)
249    disp_uvmat('ERROR',errormsg,checkrun)
250    return
251end
252
253Uref=-10*(2*DataOut.Civ1_Y/npy)+10.1;
254Udiff=DataOut.Civ1_U-Uref;
255figure(1)
256clf
257h=histogram(DataOut.Civ1_U,200,'BinLimits',[-10 10])
258xlabel('U(pixels)')
259grid on
260figure(2)
261clf
262h=histogram(Udiff,'BinLimits',[-1 1])
263xlabel('Udiff (pixels)')
264grid on
265figure(3)
266clf
267h=histogram(DataOut.Civ1_V,'BinLimits',[-1 1])
268xlabel('V (pixels)')
269grid on
270OutputFile=fullfile(OutputPath,[Param.OutputSubDir Param.OutputDirExt],[RootFile '_' num2str(Param.IndexRange.first_i) '.nc'])
271errormsg=struct2nc(OutputFile,DataOut)
272
273OutputImageA=fullfile(OutputPath,[Param.OutputSubDir Param.OutputDirExt],[RootFile '_' num2str(Param.IndexRange.first_i) 'a.png'])
274
275OutputImageB=fullfile(OutputPath,[Param.OutputSubDir Param.OutputDirExt],[RootFile '_' num2str(Param.IndexRange.first_i) 'b.png'])
276imwrite(par_civ.ImageA,OutputImageA,'BitDepth',BitDepth);% save the new image
277imwrite(par_civ.ImageB,OutputImageB,'BitDepth',BitDepth);
278% %plot rms difference and proportion of excluded vectors
279% figure(2)
280% clf
281% if CivStage==3% civ1
282%     ref=0.2; %recommanded value for diff rms
283%     txt='civ1';
284% else
285%     ref=0.1;
286%     txt='civ2';
287% end
288% semilogx(FieldSmooth,DataOut.Diff_rms,'b+-',FieldSmooth,DataOut.NbExclude,'m+-',FieldSmooth,ref*ones(size(FieldSmooth)),'b--')
289% grid on
290% title( [filecell{1,1} ':' txt])
291% legend({'rms vel. diff. ' ;' ratio excluded vectors';['recommended diff for' txt]},'Location','northwest')
292% xlabel('smoothing parameter')
293% ylabel('rms (pixels) and proportion of excluded vectors')
294% OutputFig=fullfile(OutputPath,OutputDir,'plot_rms_diff.png');
295% saveas(2,OutputFig)
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