{ This file is part of the Mufasa Macro Library (MML) Copyright (c) 2009 by Raymond van Venetiƫ and Merlijn Wajer MML is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. MML is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with MML. If not, see . See the file COPYING, included in this distribution, for details about the copyright. Colour.inc for the Mufasa Macro Library } function ps_GetColor(x,y : integer) : TColor; extdecl; begin; Result := CurrThread.Client.IOManager.GetColor(x,y); end; procedure ps_GetColorsWrap(Coords : TPointArray; var Colors: TIntegerArray); extdecl; begin Colors := CurrThread.Client.MFinder.GetColors(coords); end; function ps_GetColors(const Coords : TPointArray) : TIntegerArray; extdecl; begin result := CurrThread.Client.MFinder.GetColors(coords); end; function ps_findcolor(var x, y: integer; color, x1, y1, x2, y2: integer): boolean; extdecl; begin Result := CurrThread.Client.MFinder.FindColor(x, y, color, x1, y1, x2, y2); end; function ps_findcolortoleranceOptimised(var x, y: integer; color, x1, y1, x2, y2, tol: integer): boolean; extdecl; begin Result := CurrThread.Client.MFinder.FindColorToleranceOptimised(x, y, color, x1, y1, x2, y2, tol); end; function ps_findcolortolerance(var x, y: integer; color, x1, y1, x2, y2, tol: integer): boolean; extdecl; begin Result := CurrThread.Client.MFinder.FindColorTolerance(x, y, color, x1, y1, x2, y2, tol); end; function ps_FindColors(var TPA: TPointArray; Color, x1, y1, x2, y2: Integer): Boolean; extdecl; begin Result := CurrThread.Client.MFinder.FindColors(TPA, color, x1, y1, x2, y2); end; procedure ps_SetColorToleranceSpeed(cts: Integer); extdecl; begin CurrThread.Client.MFinder.SetToleranceSpeed(cts); end; function ps_GetToleranceSpeed: Integer; extdecl; begin CurrThread.Client.MFinder.GetToleranceSpeed; end; procedure ps_SetToleranceSpeed2Modifiers(nHue, nSat: Extended); extdecl; begin CurrThread.Client.MFinder.SetToleranceSpeed2Modifiers(nHue, nSat); end; procedure ps_GetToleranceSpeed2Modifiers(var hMod, sMod: Extended); extdecl; begin CurrThread.Client.MFinder.GetToleranceSpeed2Modifiers(hMod, sMod); end; function ps_SimilarColors(Col1,Col2,Tol : integer) : boolean; extdecl; begin; Result := CurrThread.Client.MFinder.SimilarColors(Col1,Col2,Tol); end; function ps_CountColor(Color, xs, ys, xe, ye: Integer): Integer; extdecl; begin; result := CurrThread.Client.MFinder.CountColor(color,xs,ys,xe,ye); end; function ps_CountColorTolerance(Color, xs, ys, xe, ye, Tolerance: Integer): Integer; extdecl; begin; result := CurrThread.Client.MFinder.CountColorTolerance(color,xs,ys,xe,ye,tolerance); end; function ps_FindColorsToleranceOptimised(var Points: TPointArray; Color, xs, ys, xe, ye, Tolerance: Integer): Boolean; extdecl; begin; result := CurrThread.Client.MFinder.FindColorsToleranceOptimised(points,color,xs,ys,xe,ye,tolerance); end; function ps_FindColorsTolerance(var Points: TPointArray; Color, xs, ys, xe, ye, Tolerance: Integer): Boolean; extdecl; begin; result := CurrThread.Client.MFinder.FindColorsTolerance(points,color,xs,ys,xe,ye,tolerance); end; function ps_FindColorSpiral(var x, y: Integer; color, xs, ys, xe, ye: Integer): Boolean; extdecl; begin; result := CurrThread.Client.MFinder.FindColorSpiral(x,y,color,xs,ys,xe,ye); end; function ps_FindColorSpiralTolerance(var x, y: Integer; color, xs, ys, xe, ye,Tol: Integer): Boolean; begin result := CurrThread.Client.MFinder.FindColorSpiralTolerance(x,y,color,xs,ys,xe,ye,tol); end; function ps_FindColorsSpiralTolerance(x, y: Integer; var Points: TPointArray; color, xs, ys, xe, ye: Integer; Tolerance: Integer) : boolean; extdecl; begin; result := CurrThread.Client.MFinder.FindColorsSpiralTolerance(x,y,Points,color,xs,ys,xe,ye,tolerance); end; function ps_FindColoredArea(var x, y: Integer; color, xs, ys, xe, ye: Integer; MinArea: Integer): Boolean; extdecl; begin; result := CurrThread.Client.MFinder.FindColoredArea(x,y,color,xs,ys,xe,ye,minarea); end; function ps_FindColoredAreaTolerance(var x, y: Integer; Color, xs, ys, xe, ye, MinArea, tol: Integer): Boolean; extdecl; begin; result := CurrThread.Client.MFinder.FindColoredAreaTolerance(x,y,color,xs,ys,xe,ye,minarea,tol); end;