[8] | 1 | %'imadoc2struct': reads the xml file for image documentation
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[89] | 2 | %------------------------------------------------------------------------
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[109] | 3 | % function [s,errormsg]=imadoc2struct(ImaDoc,option)
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[8] | 4 | %
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| 5 | % OUTPUT:
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| 6 | % s: structure representing ImaDoc
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| 7 | % s.Heading: information about the data hierarchical structure
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| 8 | % s.Time: matrix of times
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| 9 | % s.TimeUnit
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| 10 | % s.GeometryCalib: substructure containing the parameters for geometric calibration
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| 11 | % errormsg: error message
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| 12 | %
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| 13 | % INPUT:
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| 14 | % ImaDoc: full name of the xml input file with head key ImaDoc
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[109] | 15 | % option: ='GeometryCalib': read the data of GeometryCalib, including source point coordinates
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[89] | 16 |
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[109] | 17 | function [s,errormsg]=imadoc2struct(ImaDoc,option)
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[156] | 18 | %% default input and output
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[109] | 19 | if ~exist('option','var')
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[156] | 20 | option='*';
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[109] | 21 | end
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[8] | 22 | errormsg=[];%default
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| 23 | s.Heading=[];%default
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| 24 | s.Time=[]; %default
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| 25 | s.TimeUnit=[]; %default
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| 26 | s.GeometryCalib=[];
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| 27 | tsai=[];%default
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| 28 |
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[156] | 29 | %% opening the xml file
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[456] | 30 | [tild,tild,FileExt]=fileparts(ImaDoc);
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| 31 | if strcmp(FileExt,'.civ')
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[460] | 32 | [errormsg,time,TimeUnit,mode,npx,npy,s.GeometryCalib]=read_imatext(ImaDoc);
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[456] | 33 | return
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| 34 | end
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[8] | 35 | try
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| 36 | t=xmltree(ImaDoc);
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[456] | 37 | catch ME
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| 38 | errormsg={['error reading ' ImaDoc ': ']; ME.message};
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[8] | 39 | display(errormsg);
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| 40 | return
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| 41 | end
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| 42 | uid_root=find(t,'/ImaDoc');
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[456] | 43 | if isempty(uid_root), return; end;%not an ImaDoc .xml file
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[8] | 44 |
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[156] | 45 | %% Heading
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[8] | 46 | uid_Heading=find(t,'/ImaDoc/Heading');
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| 47 | if ~isempty(uid_Heading),
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| 48 | uid_Campaign=find(t,'/ImaDoc/Heading/Campaign');
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| 49 | uid_Exp=find(t,'/ImaDoc/Heading/Experiment');
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| 50 | uid_Device=find(t,'/ImaDoc/Heading/Device');
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| 51 | uid_Record=find(t,'/ImaDoc/Heading/Record');
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| 52 | uid_FirstImage=find(t,'/ImaDoc/Heading/ImageName');
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| 53 | s.Heading.Campaign=get(t,children(t,uid_Campaign),'value');
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| 54 | s.Heading.Experiment=get(t,children(t,uid_Exp),'value');
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| 55 | s.Heading.Device=get(t,children(t,uid_Device),'value');
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| 56 | if ~isempty(uid_Record)
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| 57 | s.Heading.Record=get(t,children(t,uid_Record),'value');
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| 58 | end
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| 59 | s.Heading.ImageName=get(t,children(t,uid_FirstImage),'value');
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| 60 | end
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| 61 |
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[156] | 62 | %% Camera and timing
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| 63 | if strcmp(option,'*') || strcmp(option,'Camera')
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| 64 | uid_Camera=find(t,'/ImaDoc/Camera');
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| 65 | if ~isempty(uid_Camera)
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| 66 | uid_ImageSize=find(t,'/ImaDoc/Camera/ImageSize');
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| 67 | if ~isempty(uid_ImageSize);
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| 68 | ImageSize=get(t,children(t,uid_ImageSize),'value');
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| 69 | xindex=findstr(ImageSize,'x');
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| 70 | if length(xindex)>=2
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| 71 | s.Npx=str2double(ImageSize(1:xindex(1)-1));
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| 72 | s.Npy=str2double(ImageSize(xindex(1)+1:xindex(2)-1));
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| 73 | end
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[8] | 74 | end
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[156] | 75 | uid_TimeUnit=find(t,'/ImaDoc/Camera/TimeUnit');
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| 76 | if ~isempty(uid_TimeUnit)
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| 77 | s.TimeUnit=get(t,children(t,uid_TimeUnit),'value');
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| 78 | end
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| 79 | uid_BurstTiming=find(t,'/ImaDoc/Camera/BurstTiming');
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| 80 | if ~isempty(uid_BurstTiming)
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| 81 | for k=1:length(uid_BurstTiming)
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| 82 | subt=branch(t,uid_BurstTiming(k));%subtree under BurstTiming
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| 83 | % reading Dtk
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| 84 | Frequency=get_value(subt,'/BurstTiming/FrameFrequency',1);
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| 85 | Dtj=get_value(subt,'/BurstTiming/Dtj',[]);
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| 86 | Dtj=Dtj/Frequency;%Dtj converted from frame unit to TimeUnit (e.g. 's')
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| 87 | NbDtj=get_value(subt,'/BurstTiming/NbDtj',1);
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| 88 | Dti=get_value(subt,'/BurstTiming/Dti',[]);
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| 89 | Dti=Dti/Frequency;%Dtj converted from frame unit to TimeUnit (e.g. 's')
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| 90 | NbDti=get_value(subt,'/BurstTiming/NbDti',1);
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| 91 | Time_val=get_value(subt,'/BurstTiming/Time',0);%time in TimeUnit
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| 92 | if ~isempty(Dti)
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| 93 | Dti=reshape(Dti'*ones(1,NbDti),NbDti*numel(Dti),1); %concatene Dti vector NbDti times
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| 94 | Time_val=[Time_val;Time_val(end)+cumsum(Dti)];%append the times defined by the intervals Dti
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| 95 | end
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| 96 | if ~isempty(Dtj)
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[215] | 97 | Dtj=reshape(Dtj'*ones(1,NbDtj),1,NbDtj*numel(Dtj)); %concatene Dtj vector NbDtj times
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[156] | 98 | Dtj=[0 Dtj];
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| 99 | Time_val=Time_val*ones(1,numel(Dtj))+ones(numel(Time_val),1)*cumsum(Dtj);% produce a time matrix with Dtj
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| 100 | end
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| 101 | % reading Dtk
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| 102 | Dtk=get_value(subt,'/BurstTiming/Dtk',[]);
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| 103 | NbDtk=get_value(subt,'/BurstTiming/NbDtk',1);
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| 104 | if isempty(Dtk)
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[8] | 105 | s.Time=[s.Time;Time_val];
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[156] | 106 | else
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| 107 | for kblock=1:NbDtk+1
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[185] | 108 | Time_val_k=Time_val+(kblock-1)*Dtk;
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| 109 | s.Time=[s.Time;Time_val_k];
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[156] | 110 | end
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[8] | 111 | end
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| 112 | end
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| 113 | end
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| 114 | end
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| 115 | end
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| 116 |
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[191] | 117 | %% motor
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| 118 | if strcmp(option,'*') || strcmp(option,'GeometryCalib')
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| 119 | uid_subtree=find(t,'/ImaDoc/TranslationMotor');
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| 120 | if length(uid_subtree)==1
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| 121 | subt=branch(t,uid_subtree);%subtree under GeometryCalib
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[207] | 122 | [s.TranslationMotor,errormsg]=read_subtree(subt,{'Nbslice','ZStart','ZEnd'},[1 1 1],[1 1 1]);
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[191] | 123 | end
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| 124 | end
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[156] | 125 | %% geometric calibration
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| 126 | if strcmp(option,'*') || strcmp(option,'GeometryCalib')
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| 127 | uid_GeometryCalib=find(t,'/ImaDoc/GeometryCalib');
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| 128 | if ~isempty(uid_GeometryCalib)
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| 129 | if length(uid_GeometryCalib)>1
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| 130 | errormsg=['More than one GeometryCalib in ' filecivxml];
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| 131 | return
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[8] | 132 | end
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[156] | 133 | subt=branch(t,uid_GeometryCalib);%subtree under GeometryCalib
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| 134 | cont=get(subt,1,'contents');
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| 135 | if ~isempty(cont)
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| 136 | uid_CalibrationType=find(subt,'/GeometryCalib/CalibrationType');
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| 137 | if isequal(length(uid_CalibrationType),1)
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| 138 | tsai.CalibrationType=get(subt,children(subt,uid_CalibrationType),'value');
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[114] | 139 | end
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[156] | 140 | uid_CoordUnit=find(subt,'/GeometryCalib/CoordUnit');
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| 141 | if isequal(length(uid_CoordUnit),1)
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| 142 | tsai.CoordUnit=get(subt,children(subt,uid_CoordUnit),'value');
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[8] | 143 | end
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[156] | 144 | uid_fx_fy=find(subt,'/GeometryCalib/fx_fy');
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| 145 | focal=[];%default fro old convention (Reg Wilson)
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| 146 | if isequal(length(uid_fx_fy),1)
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| 147 | tsai.fx_fy=str2num(get(subt,children(subt,uid_fx_fy),'value'));
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| 148 | else %old convention (Reg Wilson)
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| 149 | uid_focal=find(subt,'/GeometryCalib/focal');
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| 150 | uid_dpx_dpy=find(subt,'/GeometryCalib/dpx_dpy');
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| 151 | uid_sx=find(subt,'/GeometryCalib/sx');
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| 152 | if ~isempty(uid_focal) && ~isempty(uid_dpx_dpy) && ~isempty(uid_sx)
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| 153 | dpx_dpy=str2num(get(subt,children(subt,uid_dpx_dpy),'value'));
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| 154 | sx=str2num(get(subt,children(subt,uid_sx),'value'));
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| 155 | focal=str2num(get(subt,children(subt,uid_focal),'value'));
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| 156 | tsai.fx_fy(1)=sx*focal/dpx_dpy(1);
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| 157 | tsai.fx_fy(2)=focal/dpx_dpy(2);
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| 158 | end
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[8] | 159 | end
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[156] | 160 | uid_Cx_Cy=find(subt,'/GeometryCalib/Cx_Cy');
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| 161 | if ~isempty(uid_Cx_Cy)
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| 162 | tsai.Cx_Cy=str2num(get(subt,children(subt,uid_Cx_Cy),'value'));
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[8] | 163 | end
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[156] | 164 | uid_kc=find(subt,'/GeometryCalib/kc');
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| 165 | if ~isempty(uid_kc)
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| 166 | tsai.kc=str2double(get(subt,children(subt,uid_kc),'value'));
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| 167 | else %old convention (Reg Wilson)
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| 168 | uid_kappa1=find(subt,'/GeometryCalib/kappa1');
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| 169 | if ~isempty(uid_kappa1)&& ~isempty(focal)
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| 170 | kappa1=str2double(get(subt,children(subt,uid_kappa1),'value'));
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| 171 | tsai.kc=-kappa1*focal*focal;
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[60] | 172 | end
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[156] | 173 | end
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| 174 | uid_Tx_Ty_Tz=find(subt,'/GeometryCalib/Tx_Ty_Tz');
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| 175 | if ~isempty(uid_Tx_Ty_Tz)
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| 176 | tsai.Tx_Ty_Tz=str2num(get(subt,children(subt,uid_Tx_Ty_Tz),'value'));
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| 177 | end
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| 178 | uid_R=find(subt,'/GeometryCalib/R');
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| 179 | if ~isempty(uid_R)
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| 180 | RR=get(subt,children(subt,uid_R),'value');
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| 181 | if length(RR)==3
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| 182 | tsai.R=[str2num(RR{1});str2num(RR{2});str2num(RR{3})];
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| 183 | end
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| 184 | end
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| 185 |
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| 186 | %look for laser plane definitions
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| 187 | uid_Angle=find(subt,'/GeometryCalib/PlaneAngle');
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| 188 | uid_Pos=find(subt,'/GeometryCalib/SliceCoord');
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| 189 | if isempty(uid_Pos)
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| 190 | uid_Pos=find(subt,'/GeometryCalib/PlanePos');%old convention
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| 191 | end
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| 192 | if ~isempty(uid_Angle)
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| 193 | tsai.PlaneAngle=str2num(get(subt,children(subt,uid_Angle),'value'));
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| 194 | end
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| 195 | if ~isempty(uid_Pos)
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| 196 | for j=1:length(uid_Pos)
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| 197 | tsai.SliceCoord(j,:)=str2num(get(subt,children(subt,uid_Pos(j)),'value'));
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| 198 | end
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| 199 | uid_DZ=find(subt,'/GeometryCalib/SliceDZ');
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| 200 | uid_NbSlice=find(subt,'/GeometryCalib/NbSlice');
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| 201 | if ~isempty(uid_DZ) && ~isempty(uid_NbSlice)
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| 202 | DZ=str2double(get(subt,children(subt,uid_DZ),'value'));
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| 203 | NbSlice=get(subt,children(subt,uid_NbSlice),'value');
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| 204 | if isequal(NbSlice,'volume')
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| 205 | tsai.NbSlice='volume';
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| 206 | NbSlice=NbDtj+1;
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| 207 | else
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| 208 | tsai.NbSlice=str2double(NbSlice);
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| 209 | end
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| 210 | tsai.SliceCoord=ones(NbSlice,1)*tsai.SliceCoord+DZ*(0:NbSlice-1)'*[0 0 1];
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| 211 | end
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[207] | 212 | end
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| 213 | tsai.SliceAngle=get_value(subt,'/GeometryCalib/SliceAngle',[0 0 0]);
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| 214 | tsai.VolumeScan=get_value(subt,'/GeometryCalib/VolumeScan','n');
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| 215 | tsai.InterfaceCoord=get_value(subt,'/GeometryCalib/InterfaceCoord',[0 0 0]);
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| 216 | tsai.RefractionIndex=get_value(subt,'/GeometryCalib/RefractionIndex',1);
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[197] | 217 |
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[156] | 218 | if strcmp(option,'GeometryCalib')
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| 219 | tsai.PointCoord=get_value(subt,'/GeometryCalib/SourceCalib/PointCoord',[0 0 0 0 0]);
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| 220 | end
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| 221 | s.GeometryCalib=tsai;
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[8] | 222 | end
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| 223 | end
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[156] | 224 | end
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[8] | 225 |
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| 226 | %--------------------------------------------------
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[191] | 227 | % read a subtree
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| 228 | % INPUT:
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| 229 | % t: xltree
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| 230 | % head_element: head elelemnt of the subtree
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| 231 | % Data, structure containing
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| 232 | % .Key: element name
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| 233 | % .Type: type of element ('charg', 'float'....)
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| 234 | % .NbOccur: nbre of occurrence, NaN for un specified number
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| 235 | function [s,errormsg]=read_subtree(subt,Data,NbOccur,NumTest)
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| 236 | %--------------------------------------------------
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| 237 | s=[];%default
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| 238 | errormsg='';
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[207] | 239 | head_element=get(subt,1,'name');
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[191] | 240 | cont=get(subt,1,'contents');
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| 241 | if ~isempty(cont)
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| 242 | for ilist=1:length(Data)
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[207] | 243 | uid_key=find(subt,[head_element '/' Data{ilist}]);
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[191] | 244 | if ~isequal(length(uid_key),NbOccur(ilist))
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[207] | 245 | errormsg=['wrong number of occurence for ' Data{ilist}];
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[191] | 246 | return
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| 247 | end
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| 248 | for ival=1:length(uid_key)
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[207] | 249 | val=get(subt,children(subt,uid_key(ival)),'value');
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[191] | 250 | if ~NumTest(ilist)
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| 251 | eval(['s.' Data{ilist} '=val;']);
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| 252 | else
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| 253 | eval(['s.' Data{ilist} '=str2double(val);'])
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| 254 | end
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| 255 | end
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| 256 | end
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| 257 | end
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| 258 |
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| 259 |
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| 260 | %--------------------------------------------------
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[8] | 261 | % read an xml element
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| 262 | function val=get_value(t,label,default)
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| 263 | %--------------------------------------------------
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| 264 | val=default;
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| 265 | uid=find(t,label);%find the element iud(s)
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[116] | 266 | if ~isempty(uid) %if the element named label exists
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| 267 | uid_child=children(t,uid);%find the children
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[8] | 268 | if ~isempty(uid_child)
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[116] | 269 | data=get(t,uid_child,'type');%get the type of child
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| 270 | if iscell(data)% case of multiple element
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[8] | 271 | for icell=1:numel(data)
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| 272 | val_read=str2num(get(t,uid_child(icell),'value'));
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| 273 | if ~isempty(val_read)
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[109] | 274 | val(icell,:)=val_read;
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[8] | 275 | end
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| 276 | end
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[116] | 277 | % val=val';
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| 278 | else % case of unique element value
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[8] | 279 | val_read=str2num(get(t,uid_child,'value'));
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| 280 | if ~isempty(val_read)
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| 281 | val=val_read;
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[207] | 282 | else
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| 283 | val=get(t,uid_child,'value');%char string data
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[8] | 284 | end
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| 285 | end
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| 286 | end
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| 287 | end
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[456] | 288 |
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| 289 | %------------------------------------------------------------------------
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| 290 | %'read_imatext': reads the .civ file for image documentation (obsolete)
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| 291 | % fileinput: name of the documentation file
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| 292 | % time: matrix of times for the set of images
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| 293 | %pxcmx: scale along x in pixels/cm
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| 294 | %pxcmy: scale along y in pixels/cm
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| 295 | function [error,time,TimeUnit,mode,npx,npy,GeometryCalib]=read_imatext(fileinput)
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| 296 | %------------------------------------------------------------------------
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[460] | 297 | error='';%default
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[456] | 298 | time=[]; %default
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| 299 | TimeUnit='s';
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| 300 | mode='pairs';
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| 301 | npx=[]; %default
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| 302 | npy=[]; %default
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[460] | 303 | GeometryCalib=[];
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| 304 | if ~exist(fileinput,'file'), error=['image doc file ' fileinput ' does not exist']; return;end;%input file does not exist
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[456] | 305 | dotciv=textread(fileinput);
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| 306 | sizdot=size(dotciv);
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| 307 | if ~isequal(sizdot(1)-8,dotciv(1,1));
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| 308 | error=1; %inconsistent number of bursts
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| 309 | end
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| 310 | nbfield=sizdot(1)-8;
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| 311 | npx=(dotciv(2,1));
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| 312 | npy=(dotciv(2,2));
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| 313 | pxcmx=(dotciv(6,1));% pixels/cm in the .civ file
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| 314 | pxcmy=(dotciv(6,2));
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| 315 | % nburst=dotciv(3,1); % nbre of bursts
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| 316 | abs_time1=dotciv([9:nbfield+8],2);
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| 317 | dtime=dotciv(5,1)*(dotciv([9:nbfield+8],[3:end-1])+1);
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| 318 | timeshift=[abs_time1 dtime];
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| 319 | time=cumsum(timeshift,2);
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| 320 |
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| 321 | GeometryCalib.R=[pxcmx 0 0; 0 pxcmy 0;0 0 0];
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| 322 | GeometryCalib.Tx=0;
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| 323 | GeometryCalib.Ty=0;
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| 324 | GeometryCalib.Tz=1;
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| 325 | GeometryCalib.dpx=1;
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| 326 | GeometryCalib.dpy=1;
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| 327 | GeometryCalib.sx=1;
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| 328 | GeometryCalib.Cx=0;
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| 329 | GeometryCalib.Cy=0;
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| 330 | GeometryCalib.f=1;
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| 331 | GeometryCalib.kappa1=0;
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| 332 | GeometryCalib.CoordUnit='cm'; |
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