576 lines
15 KiB
C
576 lines
15 KiB
C
/*
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* Copyright (C) 2007 Google (Evan Stade)
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
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*
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*/
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#include <stdarg.h>
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#include <math.h>
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#include "windef.h"
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#include "winbase.h"
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#include "winuser.h"
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#include "wingdi.h"
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#include "objbase.h"
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#include "gdiplus.h"
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#include "gdiplus_private.h"
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#include "wine/debug.h"
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WINE_DEFAULT_DEBUG_CHANNEL(gdiplus);
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/* make sure path has enough space for len more points */
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static BOOL lengthen_path(GpPath *path, INT len)
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{
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/* initial allocation */
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if(path->datalen == 0){
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path->datalen = len * 2;
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path->pathdata.Points = GdipAlloc(path->datalen * sizeof(PointF));
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if(!path->pathdata.Points) return FALSE;
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path->pathdata.Types = GdipAlloc(path->datalen);
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if(!path->pathdata.Types){
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GdipFree(path->pathdata.Points);
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return FALSE;
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}
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}
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/* reallocation, double size of arrays */
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else if(path->datalen - path->pathdata.Count < len){
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while(path->datalen - path->pathdata.Count < len)
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path->datalen *= 2;
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path->pathdata.Points = HeapReAlloc(GetProcessHeap(), 0,
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path->pathdata.Points, path->datalen * sizeof(PointF));
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if(!path->pathdata.Points) return FALSE;
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path->pathdata.Types = HeapReAlloc(GetProcessHeap(), 0,
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path->pathdata.Types, path->datalen);
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if(!path->pathdata.Types) return FALSE;
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}
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return TRUE;
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}
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GpStatus WINGDIPAPI GdipAddPathArc(GpPath *path, REAL x1, REAL y1, REAL x2,
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REAL y2, REAL startAngle, REAL sweepAngle)
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{
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INT count, old_count, i;
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if(!path)
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return InvalidParameter;
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count = arc2polybezier(NULL, x1, y1, x2, y2, startAngle, sweepAngle);
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if(count == 0)
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return Ok;
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if(!lengthen_path(path, count))
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return OutOfMemory;
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old_count = path->pathdata.Count;
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arc2polybezier(&path->pathdata.Points[old_count], x1, y1, x2, y2,
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startAngle, sweepAngle);
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for(i = 0; i < count; i++){
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path->pathdata.Types[old_count + i] = PathPointTypeBezier;
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}
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path->pathdata.Types[old_count] =
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(path->newfigure ? PathPointTypeStart : PathPointTypeLine);
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path->newfigure = FALSE;
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path->pathdata.Count += count;
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return Ok;
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}
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GpStatus WINGDIPAPI GdipAddPathBezierI(GpPath *path, INT x1, INT y1, INT x2,
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INT y2, INT x3, INT y3, INT x4, INT y4)
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{
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INT old_count;
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if(!path)
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return InvalidParameter;
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if(!lengthen_path(path, 4))
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return OutOfMemory;
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old_count = path->pathdata.Count;
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path->pathdata.Points[old_count].X = (REAL) x1;
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path->pathdata.Points[old_count].Y = (REAL) y1;
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path->pathdata.Points[old_count + 1].X = (REAL) x2;
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path->pathdata.Points[old_count + 1].Y = (REAL) y2;
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path->pathdata.Points[old_count + 2].X = (REAL) x3;
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path->pathdata.Points[old_count + 2].Y = (REAL) y3;
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path->pathdata.Points[old_count + 3].X = (REAL) x4;
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path->pathdata.Points[old_count + 3].Y = (REAL) y4;
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path->pathdata.Types[old_count] =
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(path->newfigure ? PathPointTypeStart : PathPointTypeLine);
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path->pathdata.Types[old_count + 1] = PathPointTypeBezier;
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path->pathdata.Types[old_count + 2] = PathPointTypeBezier;
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path->pathdata.Types[old_count + 3] = PathPointTypeBezier;
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path->newfigure = FALSE;
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path->pathdata.Count += 4;
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return Ok;
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}
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GpStatus WINGDIPAPI GdipAddPathBeziers(GpPath *path, GDIPCONST GpPointF *points,
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INT count)
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{
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INT i, old_count;
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if(!path || !points || ((count - 1) % 3))
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return InvalidParameter;
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if(!lengthen_path(path, count))
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return OutOfMemory;
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old_count = path->pathdata.Count;
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for(i = 0; i < count; i++){
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path->pathdata.Points[old_count + i].X = points[i].X;
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path->pathdata.Points[old_count + i].Y = points[i].Y;
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path->pathdata.Types[old_count + i] = PathPointTypeBezier;
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}
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path->pathdata.Types[old_count] =
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(path->newfigure ? PathPointTypeStart : PathPointTypeLine);
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path->newfigure = FALSE;
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path->pathdata.Count += count;
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return Ok;
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}
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GpStatus WINGDIPAPI GdipAddPathEllipse(GpPath *path, REAL x, REAL y, REAL width,
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REAL height)
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{
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INT old_count, numpts;
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if(!path)
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return InvalidParameter;
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if(!lengthen_path(path, MAX_ARC_PTS))
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return OutOfMemory;
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old_count = path->pathdata.Count;
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if((numpts = arc2polybezier(&path->pathdata.Points[old_count], x, y, width,
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height, 0.0, 360.0)) != MAX_ARC_PTS){
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ERR("expected %d points but got %d\n", MAX_ARC_PTS, numpts);
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return GenericError;
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}
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memset(&path->pathdata.Types[old_count + 1], PathPointTypeBezier,
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MAX_ARC_PTS - 1);
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/* An ellipse is an intrinsic figure (always is its own subpath). */
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path->pathdata.Types[old_count] = PathPointTypeStart;
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path->pathdata.Types[old_count + MAX_ARC_PTS - 1] |= PathPointTypeCloseSubpath;
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path->newfigure = TRUE;
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path->pathdata.Count += MAX_ARC_PTS;
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return Ok;
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}
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GpStatus WINGDIPAPI GdipAddPathLine2(GpPath *path, GDIPCONST GpPointF *points,
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INT count)
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{
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INT i, old_count;
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if(!path || !points)
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return InvalidParameter;
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if(!lengthen_path(path, count))
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return OutOfMemory;
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old_count = path->pathdata.Count;
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for(i = 0; i < count; i++){
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path->pathdata.Points[old_count + i].X = points[i].X;
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path->pathdata.Points[old_count + i].Y = points[i].Y;
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path->pathdata.Types[old_count + i] = PathPointTypeLine;
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}
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if(path->newfigure){
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path->pathdata.Types[old_count] = PathPointTypeStart;
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path->newfigure = FALSE;
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}
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path->pathdata.Count += count;
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return Ok;
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}
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GpStatus WINGDIPAPI GdipAddPathLineI(GpPath *path, INT x1, INT y1, INT x2, INT y2)
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{
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INT old_count;
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if(!path)
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return InvalidParameter;
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if(!lengthen_path(path, 2))
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return OutOfMemory;
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old_count = path->pathdata.Count;
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path->pathdata.Points[old_count].X = (REAL) x1;
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path->pathdata.Points[old_count].Y = (REAL) y1;
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path->pathdata.Points[old_count + 1].X = (REAL) x2;
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path->pathdata.Points[old_count + 1].Y = (REAL) y2;
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path->pathdata.Types[old_count] =
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(path->newfigure ? PathPointTypeStart : PathPointTypeLine);
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path->pathdata.Types[old_count + 1] = PathPointTypeLine;
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path->newfigure = FALSE;
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path->pathdata.Count += 2;
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return Ok;
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}
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GpStatus WINGDIPAPI GdipAddPathPath(GpPath *path, GDIPCONST GpPath* addingPath,
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BOOL connect)
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{
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INT old_count, count;
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if(!path || !addingPath)
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return InvalidParameter;
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old_count = path->pathdata.Count;
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count = addingPath->pathdata.Count;
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if(!lengthen_path(path, count))
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return OutOfMemory;
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memcpy(&path->pathdata.Points[old_count], addingPath->pathdata.Points,
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count * sizeof(GpPointF));
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memcpy(&path->pathdata.Types[old_count], addingPath->pathdata.Types, count);
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if(path->newfigure || !connect)
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path->pathdata.Types[old_count] = PathPointTypeStart;
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else
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path->pathdata.Types[old_count] = PathPointTypeLine;
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path->newfigure = FALSE;
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path->pathdata.Count += count;
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return Ok;
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}
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GpStatus WINGDIPAPI GdipClonePath(GpPath* path, GpPath **clone)
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{
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if(!path || !clone)
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return InvalidParameter;
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*clone = GdipAlloc(sizeof(GpPath));
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if(!*clone) return OutOfMemory;
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**clone = *path;
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(*clone)->pathdata.Points = GdipAlloc(path->datalen * sizeof(PointF));
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(*clone)->pathdata.Types = GdipAlloc(path->datalen);
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if(!(*clone)->pathdata.Points || !(*clone)->pathdata.Types){
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GdipFree(*clone);
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GdipFree((*clone)->pathdata.Points);
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GdipFree((*clone)->pathdata.Types);
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return OutOfMemory;
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}
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memcpy((*clone)->pathdata.Points, path->pathdata.Points,
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path->datalen * sizeof(PointF));
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memcpy((*clone)->pathdata.Types, path->pathdata.Types, path->datalen);
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return Ok;
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}
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GpStatus WINGDIPAPI GdipClosePathFigure(GpPath* path)
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{
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if(!path)
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return InvalidParameter;
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if(path->pathdata.Count > 0){
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path->pathdata.Types[path->pathdata.Count - 1] |= PathPointTypeCloseSubpath;
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path->newfigure = TRUE;
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}
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return Ok;
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}
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GpStatus WINGDIPAPI GdipClosePathFigures(GpPath* path)
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{
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INT i;
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if(!path)
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return InvalidParameter;
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for(i = 1; i < path->pathdata.Count; i++){
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if(path->pathdata.Types[i] == PathPointTypeStart)
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path->pathdata.Types[i-1] |= PathPointTypeCloseSubpath;
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}
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path->newfigure = TRUE;
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return Ok;
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}
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GpStatus WINGDIPAPI GdipCreatePath(GpFillMode fill, GpPath **path)
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{
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if(!path)
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return InvalidParameter;
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*path = GdipAlloc(sizeof(GpPath));
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if(!*path) return OutOfMemory;
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(*path)->fill = fill;
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(*path)->newfigure = TRUE;
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return Ok;
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}
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GpStatus WINGDIPAPI GdipCreatePath2(GDIPCONST GpPointF* points,
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GDIPCONST BYTE* types, INT count, GpFillMode fill, GpPath **path)
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{
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if(!path)
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return InvalidParameter;
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*path = GdipAlloc(sizeof(GpPath));
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if(!*path) return OutOfMemory;
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(*path)->pathdata.Points = GdipAlloc(count * sizeof(PointF));
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(*path)->pathdata.Types = GdipAlloc(count);
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if(!(*path)->pathdata.Points || !(*path)->pathdata.Types){
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GdipFree((*path)->pathdata.Points);
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GdipFree((*path)->pathdata.Types);
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GdipFree(*path);
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return OutOfMemory;
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}
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memcpy((*path)->pathdata.Points, points, count * sizeof(PointF));
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memcpy((*path)->pathdata.Types, types, count);
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(*path)->pathdata.Count = count;
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(*path)->datalen = count;
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(*path)->fill = fill;
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(*path)->newfigure = TRUE;
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return Ok;
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}
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GpStatus WINGDIPAPI GdipDeletePath(GpPath *path)
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{
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if(!path)
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return InvalidParameter;
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GdipFree(path->pathdata.Points);
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GdipFree(path->pathdata.Types);
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GdipFree(path);
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return Ok;
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}
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GpStatus WINGDIPAPI GdipGetPathFillMode(GpPath *path, GpFillMode *fillmode)
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{
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if(!path || !fillmode)
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return InvalidParameter;
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*fillmode = path->fill;
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return Ok;
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}
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GpStatus WINGDIPAPI GdipGetPathPoints(GpPath *path, GpPointF* points, INT count)
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{
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if(!path)
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return InvalidParameter;
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if(count < path->pathdata.Count)
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return InsufficientBuffer;
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memcpy(points, path->pathdata.Points, path->pathdata.Count * sizeof(GpPointF));
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return Ok;
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}
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GpStatus WINGDIPAPI GdipGetPathTypes(GpPath *path, BYTE* types, INT count)
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{
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if(!path)
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return InvalidParameter;
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if(count < path->pathdata.Count)
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return InsufficientBuffer;
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memcpy(types, path->pathdata.Types, path->pathdata.Count);
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return Ok;
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}
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/* Windows expands the bounding box to the maximum possible bounding box
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* for a given pen. For example, if a line join can extend past the point
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* it's joining by x units, the bounding box is extended by x units in every
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* direction (even though this is too conservative for most cases). */
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GpStatus WINGDIPAPI GdipGetPathWorldBounds(GpPath* path, GpRectF* bounds,
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GDIPCONST GpMatrix *matrix, GDIPCONST GpPen *pen)
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{
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GpPointF * points, temp_pts[4];
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INT count, i;
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REAL path_width = 1.0, width, height, temp, low_x, low_y, high_x, high_y;
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/* Matrix and pen can be null. */
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if(!path || !bounds)
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return InvalidParameter;
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/* If path is empty just return. */
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count = path->pathdata.Count;
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if(count == 0){
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bounds->X = bounds->Y = bounds->Width = bounds->Height = 0.0;
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return Ok;
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}
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points = path->pathdata.Points;
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low_x = high_x = points[0].X;
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low_y = high_y = points[0].Y;
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for(i = 1; i < count; i++){
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low_x = min(low_x, points[i].X);
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low_y = min(low_y, points[i].Y);
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high_x = max(high_x, points[i].X);
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high_y = max(high_y, points[i].Y);
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}
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width = high_x - low_x;
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height = high_y - low_y;
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/* This looks unusual but it's the only way I can imitate windows. */
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if(matrix){
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temp_pts[0].X = low_x;
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temp_pts[0].Y = low_y;
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temp_pts[1].X = low_x;
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temp_pts[1].Y = high_y;
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temp_pts[2].X = high_x;
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temp_pts[2].Y = high_y;
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temp_pts[3].X = high_x;
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temp_pts[3].Y = low_y;
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GdipTransformMatrixPoints((GpMatrix*)matrix, temp_pts, 4);
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low_x = temp_pts[0].X;
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low_y = temp_pts[0].Y;
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for(i = 1; i < 4; i++){
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low_x = min(low_x, temp_pts[i].X);
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low_y = min(low_y, temp_pts[i].Y);
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}
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temp = width;
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width = height * fabs(matrix->matrix[2]) + width * fabs(matrix->matrix[0]);
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height = height * fabs(matrix->matrix[3]) + temp * fabs(matrix->matrix[1]);
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}
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if(pen){
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path_width = pen->width / 2.0;
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if(count > 2)
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path_width = max(path_width, pen->width * pen->miterlimit / 2.0);
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/* FIXME: this should probably also check for the startcap */
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if(pen->endcap & LineCapNoAnchor)
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path_width = max(path_width, pen->width * 2.2);
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low_x -= path_width;
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low_y -= path_width;
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width += 2.0 * path_width;
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height += 2.0 * path_width;
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}
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bounds->X = low_x;
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bounds->Y = low_y;
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bounds->Width = width;
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bounds->Height = height;
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return Ok;
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}
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GpStatus WINGDIPAPI GdipGetPointCount(GpPath *path, INT *count)
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{
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if(!path)
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return InvalidParameter;
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*count = path->pathdata.Count;
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return Ok;
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}
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GpStatus WINGDIPAPI GdipIsOutlineVisiblePathPointI(GpPath* path, INT x, INT y,
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GpPen *pen, GpGraphics *graphics, BOOL *result)
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{
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static int calls;
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if(!path || !pen)
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return InvalidParameter;
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if(!(calls++))
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FIXME("not implemented\n");
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return NotImplemented;
|
|
}
|
|
|
|
GpStatus WINGDIPAPI GdipStartPathFigure(GpPath *path)
|
|
{
|
|
if(!path)
|
|
return InvalidParameter;
|
|
|
|
path->newfigure = TRUE;
|
|
|
|
return Ok;
|
|
}
|
|
|
|
GpStatus WINGDIPAPI GdipResetPath(GpPath *path)
|
|
{
|
|
if(!path)
|
|
return InvalidParameter;
|
|
|
|
path->pathdata.Count = 0;
|
|
path->newfigure = TRUE;
|
|
path->fill = FillModeAlternate;
|
|
|
|
return Ok;
|
|
}
|
|
|
|
GpStatus WINGDIPAPI GdipSetPathFillMode(GpPath *path, GpFillMode fill)
|
|
{
|
|
if(!path)
|
|
return InvalidParameter;
|
|
|
|
path->fill = fill;
|
|
|
|
return Ok;
|
|
}
|
|
|
|
GpStatus WINGDIPAPI GdipTransformPath(GpPath *path, GpMatrix *matrix)
|
|
{
|
|
if(!path)
|
|
return InvalidParameter;
|
|
|
|
if(path->pathdata.Count == 0)
|
|
return Ok;
|
|
|
|
return GdipTransformMatrixPoints(matrix, path->pathdata.Points,
|
|
path->pathdata.Count);
|
|
}
|