You've already forked lazarus-ccr
git-svn-id: https://svn.code.sf.net/p/lazarus-ccr/svn@7410 8e941d3f-bd1b-0410-a28a-d453659cc2b4
509 lines
13 KiB
ObjectPascal
509 lines
13 KiB
ObjectPascal
// File for testing according to pdf help: KappaTest3.laz
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// BUT: Yields different results than pdf
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// --> using file genkappa.laz for the chm
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unit GenKappaUnit;
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{$mode objfpc}{$H+}
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interface
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uses
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Classes, SysUtils, FileUtil, LResources, Forms, Controls, Graphics, Dialogs,
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StdCtrls, ExtCtrls, Buttons, MainUnit,
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Globals, OutputUnit, FunctionsLib, ContextHelpUnit;
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type
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{ TGenKappaFrm }
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TGenKappaFrm = class(TForm)
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Bevel1: TBevel;
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HelpBtn: TButton;
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Label4: TLabel;
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Panel1: TPanel;
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ResetBtn: TButton;
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ComputeBtn: TButton;
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CloseBtn: TButton;
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CatIn: TBitBtn;
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CatOut: TBitBtn;
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CatEdit: TEdit;
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ObjectEdit: TEdit;
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RaterEdit: TEdit;
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Label1: TLabel;
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Label2: TLabel;
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Label3: TLabel;
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ObjIn: TBitBtn;
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ObjOut: TBitBtn;
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RaterIn: TBitBtn;
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RaterOut: TBitBtn;
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VarList: TListBox;
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procedure CatInClick(Sender: TObject);
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procedure CatOutClick(Sender: TObject);
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procedure ComputeBtnClick(Sender: TObject);
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procedure FormActivate(Sender: TObject);
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procedure FormCreate(Sender: TObject);
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procedure FormShow(Sender: TObject);
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procedure HelpBtnClick(Sender: TObject);
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procedure ObjInClick(Sender: TObject);
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procedure ObjOutClick(Sender: TObject);
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procedure RaterInClick(Sender: TObject);
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procedure RaterOutClick(Sender: TObject);
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procedure ResetBtnClick(Sender: TObject);
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procedure VarListSelectionChange(Sender: TObject; User: boolean);
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private
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{ private declarations }
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FAutoSized: Boolean;
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NoCats: integer;
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NoObjects: integer;
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NoRaters: integer;
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function compute_term1(R: IntDyneCube; i, j, k: integer): double;
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function compute_term2(R: IntDyneCube; i, j, l: integer): double;
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function compute_denom(R: IntDyneCube): double;
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function compute_partial_pchance(R: IntDyneCube; i, j: integer; denom: double): double;
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function compute_partial_pobs(R: IntDyneCube; k, l: integer): double;
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function KappaVariance(R: IntDyneCube; n, m, K1: integer): double;
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procedure UpdateBtnStates;
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public
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{ public declarations }
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end;
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var
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GenKappaFrm: TGenKappaFrm;
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implementation
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uses
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Math, Utils;
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{ TGenKappaFrm }
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procedure TGenKappaFrm.ResetBtnClick(Sender: TObject);
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VAR i : integer;
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begin
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CatIn.Enabled := true;
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CatOut.Enabled := false;
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ObjIn.Enabled := true;
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ObjOut.Enabled := false;
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RaterIn.Enabled := true;
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RaterOut.Enabled := false;
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CatEdit.Text := '';
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ObjectEdit.Text := '';
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RaterEdit.Text := '';
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VarList.Clear;
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for i := 0 to NoVariables - 1 do
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VarList.Items.Add(OS3MainFrm.DataGrid.Cells[i+1,0]);
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end;
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procedure TGenKappaFrm.CatInClick(Sender: TObject);
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var
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index: integer;
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begin
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index := VarList.ItemIndex;
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if (index > -1) and (CatEdit.Text = '') then
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begin
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CatEdit.Text := VarList.Items[index];
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VarList.Items.Delete(index);
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UpdateBtnStates;
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end;
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end;
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procedure TGenKappaFrm.CatOutClick(Sender: TObject);
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begin
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if CatEdit.Text <> '' then
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begin
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VarList.Items.Add(CatEdit.Text);
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CatEdit.Text := '';
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UpdateBtnStates;
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end;
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end;
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procedure TGenKappaFrm.ComputeBtnClick(Sender: TObject);
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var
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CatCol, ObjCol, RaterCol, frequency, i, j, k, l: integer;
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value, rater, category, anobject: integer;
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R: IntDyneCube;
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pobs, pchance, kappa, num, denom, partial_pchance, a_priori: double;
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average_frequency: DblDyneVec;
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z: double;
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lReport: TStrings;
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begin
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lReport := TStringList.Create;
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try
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lReport.Add('GENERALIZED KAPPA COEFFICIENT PROCEDURE');
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lReport.Add('Adapted from the program written by Giovanni Flammia');
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lReport.Add('Copy-write 1995, M.I.T. Lab. for Computer Science');
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lReport.Add('');
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// get columns for the variables
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CatCol := 0;
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ObjCol := 0;
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RaterCol := 0;
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for i := 1 to NoVariables do
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begin
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if (OS3MainFrm.DataGrid.Cells[i, 0] = CatEdit.Text) then CatCol := i;
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if (OS3MainFrm.DataGrid.Cells[i, 0] = RaterEdit.Text) then RaterCol := i;
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if (OS3MainFrm.DataGrid.Cells[i, 0] = ObjectEdit.Text) then ObjCol := i;
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end;
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if ((CatCol = 0) or (RaterCol = 0) or (ObjCol = 0)) then
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begin
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MessageDlg('One or more variables not defined.', mtError, [mbOK], 0);
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exit;
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end;
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// get max no of codes for objects, raters, categories
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NoCats := 0;
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NoObjects := 0;
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NoRaters := 0;
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for i := 1 to NoCases do
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begin
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value := round(StrToFloat(Trim(OS3MainFrm.DataGrid.Cells[CatCol, i])));
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if (value > NoCats) then NoCats := value;
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value := round(StrToFloat(Trim(OS3MainFrm.DataGrid.Cells[ObjCol, i])));
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if (value > NoObjects) then NoObjects := value;
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value := round(StrToFloat(Trim(OS3MainFrm.DataGrid.Cells[RaterCol, i])));
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if (value > NoRaters) then NoRaters := value;
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end;
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lReport.Add('%d Raters using %d Categories to rate %d Objects', [NoRaters, NoCats, NoObjects]);
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lReport.Add('');
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// get memory for R and set to zero
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SetLength(R, NoRaters+1, NoCats+1, NoObjects+1);
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for i := 0 to NoRaters - 1 do
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for k := 0 to NoCats - 1 do
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for l := 0 to NoObjects - 1 do
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R[i,k,l] := 0;
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// get memory for average_frequency
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SetLength(average_frequency, NoCats+1);
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for k := 0 to NoCats - 1 do
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average_frequency[k] := 0.0;
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// read data and store in R
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for i := 1 to NoCases do
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begin
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rater := round(StrToFloat(Trim(OS3MainFrm.DataGrid.Cells[RaterCol, i])));
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anobject := round(StrToFloat(Trim(OS3MainFrm.DataGrid.Cells[ObjCol, i])));
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category := round(StrToFloat(Trim(OS3MainFrm.DataGrid.Cells[CatCol, i])));
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R[rater-1, category-1, anobject-1] := 1;
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end;
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//compute chance probability of agreement pchance for all raters
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pchance := 0.0;
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denom := compute_denom(R);
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for i := 0 to NoRaters - 1 do
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begin
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for j := 0 to NoRaters - 1 do
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if (i <> j) then
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begin
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partial_pchance := compute_partial_pchance(R,i,j,denom);
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pchance := pchance + partial_pchance;
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end;
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for k := 0 to NoCats - 1 do
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begin
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frequency := 0;
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for l := 0 to NoObjects - 1 do
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frequency := frequency + R[i,k,l];
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a_priori := frequency / NoObjects;
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lReport.Add('Frequency[%d,%d]: %f', [i+1, k+1, a_priori]);
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end;
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end;
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for k := 0 to NoCats - 1 do
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for l := 0 to NoObjects - 1 do
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for i := 0 to NoRaters - 1 do
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average_frequency[k] := average_frequency[k] + R[i,k,l];
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for k := 0 to NoCats - 1 do
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begin
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average_frequency[k] := average_frequency[k] / (NoObjects * NoRaters);
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lReport.Add('Average_Frequency[%d]: %f', [k+1, average_frequency[k]]);
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end;
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lReport.Add('PChance: %f', [pchance]);
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// compute observed probability of agreement among all raters
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num := 0.0;
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for k := 0 to NoCats - 1 do
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for l := 0 to NoObjects - 1 do
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num := num + compute_partial_pobs(R,k,l);
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if (denom > 0.0) then
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pobs := num / denom
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else
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pobs := 0.0;
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lReport.Add('PObs: %f', [pobs]);
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kappa := (pobs - pchance) / (1.0 - pchance);
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lReport.Add('Kappa: %f', [kappa]);
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z := KappaVariance(R,NoObjects,NoRaters,NoCats);
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if (z > 0.0) then z := kappa / sqrt(z);
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lReport.Add('z for Kappa: %.3f with probability > %.3f', [z, 1.0-probz(z)]);
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DisplayReport(lReport);
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finally
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lReport.Free;
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average_frequency := nil;
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R := nil;
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end;
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end;
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procedure TGenKappaFrm.FormActivate(Sender: TObject);
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var
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w: Integer;
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begin
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if FAutoSized then
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exit;
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w := MaxValue([HelpBtn.Width, ResetBtn.Width, ComputeBtn.Width, CloseBtn.Width]);
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HelpBtn.Constraints.MinWidth := w;
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ResetBtn.Constraints.MinWidth := w;
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ComputeBtn.Constraints.MinWidth := w;
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CloseBtn.Constraints.MinWidth := w;
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Constraints.MinWidth := Width;
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Constraints.MinHeight := Height;
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FAutoSized := true;
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end;
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procedure TGenKappaFrm.FormCreate(Sender: TObject);
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begin
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Assert(OS3MainFrm <> nil);
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end;
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procedure TGenKappaFrm.FormShow(Sender: TObject);
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begin
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ResetBtnClick(self);
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end;
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procedure TGenKappaFrm.HelpBtnClick(Sender: TObject);
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begin
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if ContextHelpForm = nil then
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Application.CreateForm(TContextHelpForm, ContextHelpForm);
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ContextHelpForm.HelpMessage((Sender as TButton).Tag);
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end;
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function TGenKappaFrm.compute_term1(R: IntDyneCube; i, j, k: integer): double;
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var
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kk : integer; // range over 0 .. num_categories-1 */
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l,ll : integer; // range over 0 .. num_points-1 */
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denom_i : integer; //:=0;
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denom_j : integer; //:=0;
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num_i : integer; //:=0;
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num_j : integer; //:=0;
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begin
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denom_i := 0;
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denom_j := 0;
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num_i := 0;
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num_j := 0;
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for kk := 0 to NoCats - 1 do
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for ll := 0 to NoObjects - 1 do
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begin
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denom_i := denom_i + R[i, kk, ll];
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denom_j := denom_j + R[j, kk, ll];
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end;
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for l := 0 to NoObjects - 1 do
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begin
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num_i := num_i + R[i, k, l];
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num_j := num_j + R[j, k, l];
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end;
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result := (num_i * num_j) / (denom_i * denom_j); //((num_i / denom_i) * (num_j / denom_j));
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end;
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function TGenKappaFrm.compute_term2(R: IntDyneCube; i, j, l: integer): double;
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var
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sum_i, sum_j, k: integer;
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begin
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sum_i := 0;
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sum_j := 0;
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for k := 0 to NoCats - 1 do
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begin
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sum_i := sum_i + R[i, k, l];
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sum_j := sum_j + R[j, k, l];
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end;
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Result := sum_i * sum_j;
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end;
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function TGenKappaFrm.compute_denom(R: IntDyneCube): double;
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var
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sum: IntDyneVec;
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i, k, l: integer;
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begin
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Result := 0;
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SetLength(sum, NoObjects); // sum := (int *)calloc(num_points,sizeof(int));
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for l := 0 to NoObjects - 1 do
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begin
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sum[l] := 0;
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for i := 0 to NoRaters - 1 do
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for k := 0 to NoCats - 1 do
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sum[l] := sum[l] + R[i,k,l];
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end;
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for l := 0 to NoObjects - 1 do
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Result := Result + sum[l] * (sum[l] - 1);
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sum := nil;
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end;
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function TGenKappaFrm.compute_partial_pchance(R: IntDyneCube; i, j: integer;
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denom: double): double;
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var
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term1, term2: double;
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k, l: integer;
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begin
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term1 := 0;
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term2 := 0;
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for k := 0 to NoCats - 1 do
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term1 := term1 + compute_term1(R,i,j,k);
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for l := 0 to NoObjects - 1 do
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term2 := term2 + compute_term2(R,i,j,l);
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if (denom > 0.0) then
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Result := term1 * term2 / denom
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else
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Result := 0.0;
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end;
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function TGenKappaFrm.compute_partial_pobs(R: IntDyneCube; k, l: integer): double;
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var
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sum, i: integer;
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begin
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sum := 0;
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for i := 0 to NoRaters - 1 do
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sum := sum + R[i, k, l];
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Result := sum * (sum - 1);
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end;
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{ Calculates the variance of Kappa
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R contains 1's or 0's for raters, categories and objects (row, col, slice)
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m is number of raters
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n is number of subjects
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K1 is the number of categories }
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function TGenKappaFrm.KappaVariance(R : IntDyneCube; n, m, K1: integer): double;
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var
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xij, term1, term2: double;
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i, j, k: integer;
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pj: DblDyneVec;
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begin
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term1 := 0.0;
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term2 := 0.0;
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SetLength(pj,K1);
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for j := 0 to K1 - 1 do pj[j] := 0.0;
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// get proportion of values in each category
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for j := 0 to K1 - 1 do // accross categories
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begin
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xij := 0.0;
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for i := 0 to m - 1 do // accross raters
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for k := 0 to n - 1 do // accross objects
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xij := xij + R[i,j,k];
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pj[j] := pj[j] + xij;
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end;
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for j := 0 to K1 - 1 do
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pj[j] := pj[j] / (n * m);
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for j := 0 to K1 - 1 do
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begin
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term1 := term1 + (pj[j] * (1.0 - pj[j]));
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term2 := term2 + (pj[j] * (1.0 - pj[j]) * (1.0 - 2.0 * pj[j]));
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end;
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term1 := term1 * term1;
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if (term1 > 0) and (term2 > 0) then
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Result := (2.0 / (n * m * (m-1) * term1)) * (term1 - term2)
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else
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Result := 0.0;
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pj := nil;
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end;
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procedure TGenKappaFrm.ObjInClick(Sender: TObject);
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var
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index: integer;
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begin
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index := VarList.ItemIndex;
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if (index > -1) and (ObjectEdit.Text = '') then
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begin
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ObjectEdit.Text := VarList.Items[index];
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VarList.Items.Delete(index);
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UpdateBtnStates;
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end;
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end;
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procedure TGenKappaFrm.ObjOutClick(Sender: TObject);
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begin
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if ObjectEdit.Text <> '' then
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begin
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VarList.Items.Add(ObjectEdit.Text);
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ObjectEdit.Text := '';
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UpdateBtnStates;
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end;
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end;
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procedure TGenKappaFrm.RaterInClick(Sender: TObject);
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var
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index: integer;
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begin
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index := VarList.ItemIndex;
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if (index > -1) and (RaterEdit.Text = '') then
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begin
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RaterEdit.Text := VarList.Items.Strings[index];
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VarList.Items.Delete(index);
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UpdateBtnStates;
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end;
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end;
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procedure TGenKappaFrm.RaterOutClick(Sender: TObject);
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begin
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if RaterEdit.Text <> '' then
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begin
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VarList.Items.Add(RaterEdit.Text);
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RaterEdit.Text := '';
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UpdateBtnStates;
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end;
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end;
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procedure TGenKappaFrm.UpdateBtnStates;
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var
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lSelected: Boolean;
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begin
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lSelected := AnySelected(VarList);
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CatIn.Enabled := lSelected and (CatEdit.Text = '');
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CatOut.Enabled := (CatEdit.Text <> '');
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ObjIn.Enabled := lSelected and (ObjectEdit.Text = '');
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ObjOut.Enabled := (ObjectEdit.Text <> '');
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RaterIn.Enabled := lSelected and (RaterEdit.Text = '');
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RaterOut.Enabled := (RaterEdit.Text <> '');
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end;
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procedure TGenKappaFrm.VarListSelectionChange(Sender: TObject; User: boolean);
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begin
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UpdateBtnStates;
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end;
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initialization
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{$I genkappaunit.lrs}
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end.
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