mirror of
https://github.com/moparisthebest/Simba
synced 2024-11-11 03:45:06 -05:00
f8e5ca80fd
git-svn-id: http://www.villavu.com/repositories/merlijn/mufasa@56 3f818213-9676-44b0-a9b4-5e4c4e03d09d
299 lines
6.7 KiB
ObjectPascal
299 lines
6.7 KiB
ObjectPascal
unit finder;
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{$mode objfpc}{$H+}
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interface
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uses
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Classes, SysUtils, MufasaTypes; // Types
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{ TMFinder Class }
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{
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Should be 100% independant, as all platform dependant code is in the
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Window and Input classes.
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Let's try not to use any OS-specific defines here? ;)
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}
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type
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TMFinder = class(TObject)
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constructor Create(aClient: TObject);
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destructor Destroy; override;
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private
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Procedure UpdateCachedValues(NewWidth,NewHeight : integer);
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procedure DefaultOperations(var x1,y1,x2,y2 : integer);
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public
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procedure SetToleranceSpeed(nCTS: Integer);
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function SimilarColors(Color1,Color2,Tolerance : Integer) : boolean;
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// Possibly turn x, y into a TPoint var.
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function FindColor(var x, y: Integer; Color, x1, y1, x2, y2: Integer): Boolean;
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function FindColorTolerance(var x, y: Integer; Color, x1, y1, x2, y2, tol: Integer): Boolean;
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function FindColors(var TPA: TPointArray; Color, x1, y1, x2, y2: Integer): Boolean;
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protected
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Client: TObject;
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CachedWidth, CachedHeight : integer;
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ClientTPA : TPointArray;
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hueMod, satMod: Extended;
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CTS: Integer;
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end;
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implementation
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uses
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Client, // For the Client Casts.
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colour_conv // For RGBToColor, etc.
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;
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constructor TMFinder.Create(aClient: TObject);
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begin
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inherited Create;
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Self.Client := aClient;
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Self.CTS := 1;
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Self.hueMod := 0.2;
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Self.satMod := 0.2;
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end;
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destructor TMFinder.Destroy;
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begin
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inherited;
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end;
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procedure TMFinder.SetToleranceSpeed(nCTS: Integer);
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begin
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if (nCTS < 0) or (nCTS > 2) then
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raise Exception.CreateFmt('The given CTS ([%d]) is invalid.',[nCTS]);
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Self.CTS := nCTS;
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end;
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function TMFinder.SimilarColors(Color1, Color2,Tolerance: Integer) : boolean;
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var
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R1,G1,B1,R2,G2,B2 : Byte;
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H1,S1,L1,H2,S2,L2 : extended;
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begin
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Result := False;
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ColorToRGB(Color1,R1,G1,B1);
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ColorToRGB(Color2,R2,G2,B2);
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if Color1 = Color2 then
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Result := true
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else
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case CTS of
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0: Result := ((Abs(R1-R2) <= Tolerance) and (Abs(G1-G2) <= Tolerance) and (Abs(B1-B2) <= Tolerance));
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1: Result := (Sqrt(sqr(R1-R2) + sqr(G1-G2) + sqr(B1-B2)) <= Tolerance);
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2: begin
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RGBToHSL(R1,g1,b1,H1,S1,L1);
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RGBToHSL(R2,g2,b2,H2,S2,L2);
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Result := ((abs(H1 - H2) <= (hueMod * Tolerance)) and (abs(S2-S1) <= (satMod * Tolerance)) and (abs(L1-L2) <= Tolerance));
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end;
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end;
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end;
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procedure TMFinder.UpdateCachedValues(NewWidth, NewHeight: integer);
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begin
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CachedWidth := NewWidth;
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CachedHeight := NewHeight;
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SetLength(ClientTPA,NewWidth * NewHeight);
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end;
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procedure TMFinder.DefaultOperations(var x1, y1, x2, y2: integer);
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var
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w,h : integer;
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begin
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{ if x1 > x2 then
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Swap(x1,x2);
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if y1 > y2 then
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Swap(y1,y2);}
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if x1 < 0 then
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x1 := 0;
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if y1 < 0 then
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y1 := 0;
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TClient(Self.Client).MWindow.GetDimensions(w,h);
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if (w <> CachedWidth) or (h <> CachedHeight) then
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UpdateCachedValues(w,h);
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if x2 >= w then
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x2 := w-1;
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if y2 >= h then
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y2 := h-1;
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end;
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function TMFinder.FindColor(var x, y: Integer; Color, x1, y1, x2, y2: Integer): Boolean;
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var
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PtrData: TRetData;
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Ptr: PRGB32;
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PtrInc: Integer;
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dX, dY, clR, clG, clB, xx, yy: Integer;
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begin
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// checks for valid x1,y1,x2,y2? (may involve GetDimensions)
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DefaultOperations(x1,y1,x2,y2);
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// calculate delta x and y
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dX := x2 - x1;
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dY := y2 - y1;
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//next, convert the color to r,g,b
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ColorToRGB(Color, clR, clG, clB);
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PtrData := TClient(Client).MWindow.ReturnData(x1, y1, dX + 1, dY + 1);
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// Do we want to "cache" these vars?
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// We will, for now. Easier to type.
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Ptr := PtrData.Ptr;
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PtrInc := PtrData.IncPtrWith;
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for yy := y1 to y2 do
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begin;
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for xx := x1 to x2 do
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begin;
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// Colour comparison here. Possibly with tolerance? ;)
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if (Ptr^.R = clR) and (Ptr^.G = clG) and (Ptr^.B = clB) then
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begin
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Result := True;
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x := xx;
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y := yy;
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TClient(Client).MWindow.FreeReturnData;
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Exit;
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end;
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Inc(Ptr);
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end;
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Inc(Ptr, PtrInc)
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end;
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TClient(Client).MWindow.FreeReturnData;
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end;
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function TMFinder.FindColorTolerance(var x, y: Integer; Color, x1, y1, x2, y2, tol: Integer): Boolean;
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var
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PtrData: TRetData;
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Ptr: PRGB32;
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PtrInc: Integer;
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dX, dY, clR, clG, clB, xx, yy: Integer;
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H1, S1, L1, H2, S2, L2: Extended;
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label Hit;
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label Miss;
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begin
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// checks for valid x1,y1,x2,y2? (may involve GetDimensions)
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DefaultOperations(x1,y1,x2,y2);
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// calculate delta x and y
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dX := x2 - x1;
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dY := y2 - y1;
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//next, convert the color to r,g,b
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ColorToRGB(Color, clR, clG, clB);
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ColorToHSL(Color, H1, S1, L1);
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PtrData := TClient(Client).MWindow.ReturnData(x1, y1, dX + 1, dY + 1);
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// Do we want to "cache" these vars?
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// We will, for now. Easier to type.
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Ptr := PtrData.Ptr;
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PtrInc := PtrData.IncPtrWith;
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case CTS of
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0:
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for yy := y1 to y2 do
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begin
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for xx := x1 to x2 do
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begin
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if ((abs(clR-Ptr^.R) <= Tol) and (abs(clG-Ptr^.G) <= Tol) and (Abs(clG-Ptr^.B) <= Tol)) then
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goto Hit;
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inc(Ptr);
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end;
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Inc(Ptr, PtrInc);
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end;
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1:
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for yy := y1 to y2 do
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begin
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for xx := x1 to x2 do
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begin
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if (Sqrt(sqr(clR-Ptr^.R) + sqr(clG - Ptr^.G) + sqr(clB - Ptr^.B)) <= Tol) then
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goto Hit;
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inc(ptr);
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end;
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Inc(Ptr, PtrInc);
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end;
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2:
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begin
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for yy := y1 to y2 do
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for xx := x1 to x2 do
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begin
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RGBToHSL(Ptr^.R,Ptr^.G,Ptr^.B,H2,S2,L2);
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if ((abs(H1 - H2) <= (hueMod * tol)) and (abs(S1 - S2) <= (satMod * tol)) and (abs(L1 - L2) <= Tol)) then
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goto Hit;
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inc(Ptr);
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end;
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Inc(Ptr, PtrInc);
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end;
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end;
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Result := False;
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TClient(Client).MWindow.FreeReturnData;
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Exit;
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Hit:
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Result := True;
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x := xx;
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y := yy;
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TClient(Client).MWindow.FreeReturnData;
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end;
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function TMFinder.FindColors(var TPA: TPointArray; Color, x1, y1, x2, y2: Integer): Boolean;
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var
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PtrData: TRetData;
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Ptr: PRGB32;
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PtrInc: Integer;
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dX, dY, clR, clG, clB, xx, yy, i: Integer;
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begin
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DefaultOperations(x1,y1,x2,y2);
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dX := x2 - x1;
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dY := y2 - y1;
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I := 0;
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ColorToRGB(Color, clR, clG, clB);
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PtrData := TClient(Client).MWindow.ReturnData(x1, y1, dX + 1, dY + 1);
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Ptr := PtrData.Ptr;
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PtrInc := PtrData.IncPtrWith;
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for yy := y1 to y2 do
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begin;
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for xx := x1 to x2 do
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begin;
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if (Ptr^.R = clR) and (Ptr^.G = clG) and (Ptr^.B = clB) then
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begin
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Self.ClientTPA[I] := Point(xx, yy);
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Inc(I);
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end;
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Inc(Ptr);
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end;
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Inc(Ptr, PtrInc);
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end;
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SetLength(TPA, I);
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Move(ClientTPA[0], TPA[0], i * SizeOf(TPoint));
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{ for xx := 0 to I - 1 do
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TPA[xx] := ClientTPA[xx];}
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Result := I > 0;
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TClient(Client).MWindow.FreeReturnData;
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end;
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end.
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