1 /////////////////////////////////////////////////////////////////////////////
4 // Author: David Webster
8 // Copyright: (c) David Webster
9 // Licence: wxWindows licence
10 /////////////////////////////////////////////////////////////////////////////
12 // For compilers that support precompilation, includes "wx.h".
13 #include "wx/wxprec.h"
16 #include "wx/window.h"
19 #include "wx/dialog.h"
21 #include "wx/bitmap.h"
22 #include "wx/dcmemory.h"
25 #include "wx/msgdlg.h"
27 #include "wx/statusbr.h"
31 #include "wx/module.h"
32 #include "wx/dcprint.h"
36 #include "wx/os2/private.h"
38 IMPLEMENT_ABSTRACT_CLASS(wxDC
, wxObject
)
41 // wxWidgets uses the Microsoft convention that the origin is the UPPER left.
42 // Native OS/2 however in the GPI and PM define the origin as the LOWER left.
43 // In order to map OS/2 GPI/PM y coordinates to wxWidgets coordinates we must
44 // perform the following transformation:
46 // Parent object height: POBJHEIGHT
47 // Desried origin: WXORIGINY
48 // Object to place's height: OBJHEIGHT
50 // To get the OS2 position from the wxWidgets one:
52 // OS2Y = POBJHEIGHT - (WXORIGINY + OBJHEIGHT)
54 // For OS/2 wxDC's we will always determine m_vRclPaint as the size of the
55 // OS/2 Presentation Space associated with the device context. y is the
56 // desired application's y coordinate of the origin in wxWidgets space.
57 // objy is the height of the object we are going to draw.
59 #define OS2Y(y, objy) ((m_vRclPaint.yTop - m_vRclPaint.yBottom) - (y + objy))
61 // ---------------------------------------------------------------------------
63 // ---------------------------------------------------------------------------
65 static const int VIEWPORT_EXTENT
= 1000;
67 static const int MM_POINTS
= 9;
68 static const int MM_METRIC
= 10;
70 // ---------------------------------------------------------------------------
72 // ---------------------------------------------------------------------------
74 // convert degrees to radians
75 static inline double DegToRad(double deg
) { return (deg
* M_PI
) / 180.0; }
79 , int nForegroundColour
84 vCbnd
.lColor
= nForegroundColour
;
85 ::GpiSetAttrs( hPS
// presentation-space handle
86 ,PRIM_CHAR
// Char primitive.
87 ,CBB_COLOR
// sets color.
89 ,&vCbnd
// buffer for attributes.
100 ::GpiQueryAttrs( hPS
// presentation-space handle
101 ,PRIM_CHAR
// Char primitive.
102 ,CBB_BACK_COLOR
// Background color.
103 ,&vCbnd
// buffer for attributes.
105 return vCbnd
.lBackColor
;
111 , int nBackgroundColour
117 rc
= QueryTextBkColor(hPS
);
119 vCbnd
.lBackColor
= nBackgroundColour
;
120 ::GpiSetAttrs(hPS
, // presentation-space handle
121 PRIM_CHAR
, // Char primitive.
122 CBB_BACK_COLOR
, // sets color.
124 &vCbnd
// buffer for attributes.
131 , int nBackgroundMode
134 if(nBackgroundMode
== wxTRANSPARENT
)
139 // the background of the primitive takes over whatever is underneath.
146 // ===========================================================================
148 // ===========================================================================
150 #if wxUSE_DC_CACHEING
153 * This implementation is a bit ugly and uses the old-fashioned wxList class, so I will
154 * improve it in due course, either using arrays, or simply storing pointers to one
155 * entry for the bitmap, and two for the DCs. -- JACS
158 // ---------------------------------------------------------------------------
160 // ---------------------------------------------------------------------------
162 wxList
wxDC::m_svBitmapCache
;
163 wxList
wxDC::m_svDCCache
;
165 wxDCCacheEntry::wxDCCacheEntry(
177 } // end of wxDCCacheEntry::wxDCCacheEntry
179 wxDCCacheEntry::wxDCCacheEntry(
184 m_hBitmap
= NULLHANDLE
;
189 } // end of wxDCCacheEntry::wxDCCacheEntry
191 wxDCCacheEntry::~wxDCCacheEntry()
194 ::GpiDeleteBitmap(m_hBitmap
);
196 ::GpiDestroyPS(m_hPS
);
197 } // end of wxDCCacheEntry::~wxDCCacheEntry
199 wxDCCacheEntry
* wxDC::FindBitmapInCache(
205 int nDepth
= 24; // we'll fix this later ::GetDeviceCaps((HDC) dc, PLANES) * ::GetDeviceCaps((HDC) dc, BITSPIXEL);
206 wxNode
* pNode
= m_svBitmapCache
.First();
207 BITMAPINFOHEADER2 vBmpHdr
;
211 wxDCCacheEntry
* pEntry
= (wxDCCacheEntry
*)pNode
->Data();
213 if (pEntry
->m_nDepth
== nDepth
)
215 memset(&vBmpHdr
, 0, sizeof(BITMAPINFOHEADER2
));
217 if (pEntry
->m_nWidth
< nWidth
|| pEntry
->m_nHeight
< nHeight
)
219 ::GpiDeleteBitmap((HBITMAP
)pEntry
->m_hBitmap
);
220 vBmpHdr
.cbFix
= sizeof(BITMAPINFOHEADER2
);
222 vBmpHdr
.cy
= nHeight
;
224 vBmpHdr
.cBitCount
= (USHORT
)nDepth
;
226 pEntry
->m_hBitmap
= (WXHBITMAP
) ::GpiCreateBitmap( hPS
230 if (!pEntry
->m_hBitmap
)
232 wxLogLastError(wxT("CreateCompatibleBitmap"));
234 pEntry
->m_nWidth
= nWidth
;
235 pEntry
->m_nHeight
= nHeight
;
240 pNode
= pNode
->Next();
242 memset(&vBmpHdr
, 0, sizeof(BITMAPINFOHEADER2
));
243 vBmpHdr
.cbFix
= sizeof(BITMAPINFOHEADER2
);
245 vBmpHdr
.cy
= nHeight
;
247 vBmpHdr
.cBitCount
= (USHORT
)nDepth
;
249 WXHBITMAP hBitmap
= (WXHBITMAP
) ::GpiCreateBitmap( hPS
255 wxLogLastError(wxT("CreateCompatibleBitmap"));
257 wxDCCacheEntry
* pEntry
= new wxDCCacheEntry( hBitmap
262 AddToBitmapCache(pEntry
);
264 } // end of FindBitmapInCache
266 wxDCCacheEntry
* wxDC::FindDCInCache(
267 wxDCCacheEntry
* pNotThis
271 int nDepth
= 24; // we'll fix this up later ::GetDeviceCaps((HDC) dc, PLANES) * ::GetDeviceCaps((HDC) dc, BITSPIXEL);
272 wxNode
* pNode
= m_svDCCache
.First();
276 wxDCCacheEntry
* pEntry
= (wxDCCacheEntry
*)pNode
->Data();
279 // Don't return the same one as we already have
281 if (!pNotThis
|| (pNotThis
!= pEntry
))
283 if (pEntry
->m_nDepth
== nDepth
)
288 pNode
= pNode
->Next();
290 wxDCCacheEntry
* pEntry
= new wxDCCacheEntry( hPS
293 AddToDCCache(pEntry
);
295 } // end of wxDC::FindDCInCache
297 void wxDC::AddToBitmapCache(
298 wxDCCacheEntry
* pEntry
301 m_svBitmapCache
.Append(pEntry
);
302 } // end of wxDC::AddToBitmapCache
304 void wxDC::AddToDCCache(
305 wxDCCacheEntry
* pEntry
308 m_svDCCache
.Append(pEntry
);
309 } // end of wxDC::AddToDCCache
311 void wxDC::ClearCache()
313 m_svBitmapCache
.DeleteContents(true);
314 m_svBitmapCache
.Clear();
315 m_svBitmapCache
.DeleteContents(false);
316 m_svDCCache
.DeleteContents(true);
318 m_svDCCache
.DeleteContents(false);
319 } // end of wxDC::ClearCache
321 // Clean up cache at app exit
322 class wxDCModule
: public wxModule
325 virtual bool OnInit() { return true; }
326 virtual void OnExit() { wxDC::ClearCache(); }
329 DECLARE_DYNAMIC_CLASS(wxDCModule
)
330 }; // end of CLASS wxDCModule
332 IMPLEMENT_DYNAMIC_CLASS(wxDCModule
, wxModule
)
334 #endif // ndef for wxUSE_DC_CACHEING
336 // ---------------------------------------------------------------------------
338 // ---------------------------------------------------------------------------
354 m_bIsPaintTime
= false; // True at Paint Time
356 wxColour
vColor( wxT("BLACK") );
357 m_pen
.SetColour(vColor
);
359 vColor
.Set( wxT("WHITE") );
360 m_brush
.SetColour(vColor
);
362 } // end of wxDC::wxDC
368 SelectOldObjects(m_hDC
);
370 // if we own the HDC, we delete it, otherwise we just release it
376 ::GpiAssociate(m_hPS
, NULLHANDLE
);
377 ::GpiDestroyPS(m_hPS
);
380 ::DevCloseDC((HDC
)m_hDC
);
385 // Just Dissacociate, not destroy if we don't own the DC
389 ::GpiAssociate(m_hPS
, NULLHANDLE
);
393 } // end of wxDC::~wxDC
395 // This will select current objects out of the DC,
396 // which is what you have to do before deleting the
398 void wxDC::SelectOldObjects(
406 ::GpiSetBitmap(hPS
, (HBITMAP
) m_hOldBitmap
);
407 if (m_vSelectedBitmap
.Ok())
409 m_vSelectedBitmap
.SetSelectedInto(NULL
);
414 // OS/2 has no other native GDI objects to set in a PS/DC like windows
422 m_brush
= wxNullBrush
;
424 m_palette
= wxNullPalette
;
426 m_backgroundBrush
= wxNullBrush
;
427 m_vSelectedBitmap
= wxNullBitmap
;
428 } // end of wxDC::SelectOldObjects
430 // ---------------------------------------------------------------------------
432 // ---------------------------------------------------------------------------
434 #define DO_SET_CLIPPING_BOX() \
438 ::GpiQueryClipBox(m_hPS, &rect); \
440 m_clipX1 = (wxCoord) XDEV2LOG(rect.xLeft); \
441 m_clipY1 = (wxCoord) YDEV2LOG(rect.yTop); \
442 m_clipX2 = (wxCoord) XDEV2LOG(rect.xRight); \
443 m_clipY2 = (wxCoord) YDEV2LOG(rect.yBottom); \
446 void wxDC::DoSetClippingRegion(
455 vY
= OS2Y(vY
,vHeight
);
458 vRect
.yTop
= vY
+ vHeight
;
459 vRect
.xRight
= vX
+ vWidth
;
461 ::GpiIntersectClipRectangle(m_hPS
, &vRect
);
462 DO_SET_CLIPPING_BOX()
463 } // end of wxDC::DoSetClippingRegion
465 void wxDC::DoSetClippingRegionAsRegion(
466 const wxRegion
& rRegion
469 wxCHECK_RET(rRegion
.GetHRGN(), wxT("invalid clipping region"));
473 ::GpiSetClipRegion( m_hPS
474 ,(HRGN
)rRegion
.GetHRGN()
477 DO_SET_CLIPPING_BOX()
478 } // end of wxDC::DoSetClippingRegionAsRegion
480 void wxDC::DestroyClippingRegion(void)
482 if (m_clipping
&& m_hPS
)
487 // TODO: this should restore the previous clipped region
488 // so that OnPaint processing works correctly, and
489 // the update doesn't get destroyed after the first
490 // DestroyClippingRegion
491 vRect
.xLeft
= XLOG2DEV(0);
492 vRect
.yTop
= YLOG2DEV(32000);
493 vRect
.xRight
= XLOG2DEV(32000);
494 vRect
.yBottom
= YLOG2DEV(0);
496 HRGN hRgn
= ::GpiCreateRegion(m_hPS
, 1, &vRect
);
498 ::GpiSetClipRegion(m_hPS
, hRgn
, &hRgnOld
);
501 } // end of wxDC::DestroyClippingRegion
503 // ---------------------------------------------------------------------------
504 // query capabilities
505 // ---------------------------------------------------------------------------
507 bool wxDC::CanDrawBitmap() const
512 bool wxDC::CanGetTextExtent() const
514 LONG lTechnology
= 0L;
516 ::DevQueryCaps(GetHDC(), CAPS_TECHNOLOGY
, 1L, &lTechnology
);
517 return (lTechnology
== CAPS_TECH_RASTER_DISPLAY
) || (lTechnology
== CAPS_TECH_RASTER_PRINTER
);
518 } // end of wxDC::CanGetTextExtent
520 int wxDC::GetDepth() const
522 LONG lArray
[CAPS_COLOR_BITCOUNT
];
523 int nBitsPerPixel
= 0;
525 if(::DevQueryCaps( GetHDC()
531 nBitsPerPixel
= (int)lArray
[CAPS_COLOR_BITCOUNT
];
533 return nBitsPerPixel
;
534 } // end of wxDC::GetDepth
536 // ---------------------------------------------------------------------------
538 // ---------------------------------------------------------------------------
543 // If this is a canvas DC then just fill with the background color
544 // Otherwise purge the whole thing
550 ::GpiQueryClipBox(m_hPS
, &vRect
);
551 ::WinFillRect(m_hPS
, &vRect
, ::GpiQueryBackColor(m_hPS
));
555 } // end of wxDC::Clear
557 bool wxDC::DoFloodFill(
560 , const wxColour
& rCol
568 bool bSuccess
= false;
570 vPtlPos
.x
= vX
; // Loads x-coordinate
571 vPtlPos
.y
= OS2Y(vY
,0); // Loads y-coordinate
572 ::GpiMove(m_hPS
, &vPtlPos
); // Sets current position
573 lColor
= rCol
.GetPixel();
574 lOptions
= FF_BOUNDARY
;
575 if(wxFLOOD_SURFACE
== nStyle
)
576 lOptions
= FF_SURFACE
;
578 if ((lHits
= ::GpiFloodFill(m_hPS
, lOptions
, lColor
)) != GPI_ERROR
)
582 } // end of wxDC::DoFloodFill
584 bool wxDC::DoGetPixel(
594 vPoint
.y
= OS2Y(vY
,0);
595 lColor
= ::GpiQueryPel(m_hPS
, &vPoint
);
598 // return the color of the pixel
601 pCol
->Set( GetRValue(lColor
)
606 } // end of wxDC::DoGetPixel
608 void wxDC::DoCrossHair(
615 wxCoord vX1
= vX
- VIEWPORT_EXTENT
;
616 wxCoord vY1
= vY
- VIEWPORT_EXTENT
;
617 wxCoord vX2
= vX
+ VIEWPORT_EXTENT
;
618 wxCoord vY2
= vY
+ VIEWPORT_EXTENT
;
627 ::GpiMove(m_hPS
, &vPoint
[0]);
628 ::GpiLine(m_hPS
, &vPoint
[1]);
636 ::GpiMove(m_hPS
, &vPoint
[2]);
637 ::GpiLine(m_hPS
, &vPoint
[3]);
638 CalcBoundingBox(vX1
, vY1
);
639 CalcBoundingBox(vX2
, vY2
);
640 } // end of wxDC::DoCrossHair
642 void wxDC::DoDrawLine(
650 COLORREF vColor
= 0x00ffffff;
653 // Might be a memory DC with no Paint rect.
655 if (!(m_vRclPaint
.yTop
== 0 &&
656 m_vRclPaint
.yBottom
== 0 &&
657 m_vRclPaint
.xRight
== 0 &&
658 m_vRclPaint
.xLeft
== 0))
665 if (m_vSelectedBitmap
!= wxNullBitmap
)
667 m_vRclPaint
.yTop
= m_vSelectedBitmap
.GetHeight();
668 m_vRclPaint
.xRight
= m_vSelectedBitmap
.GetWidth();
679 vColor
= m_pen
.GetColour().GetPixel();
681 ::GpiSetColor(m_hPS
, vColor
);
682 ::GpiMove(m_hPS
, &vPoint
[0]);
683 ::GpiLine(m_hPS
, &vPoint
[1]);
684 CalcBoundingBox(vX1
, vY1
);
685 CalcBoundingBox(vX2
, vY2
);
686 } // end of wxDC::DoDrawLine
688 //////////////////////////////////////////////////////////////////////////////
689 // Draws an arc of a circle, centred on (xc, yc), with starting point (x1, y1)
690 // and ending at (x2, y2). The current pen is used for the outline and the
691 // current brush for filling the shape. The arc is drawn in an anticlockwise
692 // direction from the start point to the end point.
693 //////////////////////////////////////////////////////////////////////////////
694 void wxDC::DoDrawArc(
704 POINTL vPtlArc
[2]; // Structure for current position
711 ARCPARAMS vArcp
; // Structure for arc parameters
713 if((vX1
== vXc
&& vY1
== vXc
) || (vX2
== vXc
&& vY2
== vXc
))
714 return; // Draw point ??
715 dRadius
= 0.5 * ( hypot( (double)(vY1
- vYc
)
718 hypot( (double)(vY2
- vYc
)
723 dAngl1
= atan2( (double)(vY1
- vYc
)
726 dAngl2
= atan2( (double)(vY2
- vYc
)
733 // GpiPointArc can't draw full arc
735 if(dAngl2
== dAngl1
|| (vX1
== vX2
&& vY1
== vY2
) )
740 dAnglmid
= (dAngl1
+ dAngl2
)/2. + M_PI
;
741 vXm
= (wxCoord
)(vXc
+ dRadius
* cos(dAnglmid
));
742 vYm
= (wxCoord
)(vYc
+ dRadius
* sin(dAnglmid
));
757 dAnglmid
= (dAngl1
+ dAngl2
)/2.;
758 vXm
= (wxCoord
)(vXc
+ dRadius
* cos(dAnglmid
));
759 vYm
= (wxCoord
)(vYc
+ dRadius
* sin(dAnglmid
));
762 // Ellipse main axis (r,q), (p,s) with center at (0,0) */
768 ::GpiSetArcParams(m_hPS
, &vArcp
); // Sets parameters to default
770 vPtlPos
.x
= vX1
; // Loads x-coordinate
771 vPtlPos
.y
= vY1
; // Loads y-coordinate
772 ::GpiMove(m_hPS
, &vPtlPos
); // Sets current position
777 #if !(defined(__WATCOMC__) && __WATCOMC__ < 1240 )
778 // Open Watcom 1.3 had incomplete headers
779 // that's reported and should be fixed for OW 1.4
780 ::GpiPointArc(m_hPS
, vPtlArc
); // Draws the arc
782 CalcBoundingBox( (wxCoord
)(vXc
- dRadius
)
783 ,(wxCoord
)(vYc
- dRadius
)
785 CalcBoundingBox( (wxCoord
)(vXc
+ dRadius
)
786 ,(wxCoord
)(vYc
+ dRadius
)
788 } // end of wxDC::DoDrawArc
790 void wxDC::DoDrawCheckMark(
799 vY1
= OS2Y(vY1
,vHeight
);
803 vPoint
[1].x
= vX1
+ vWidth
;
804 vPoint
[1].y
= vY1
+ vHeight
;
806 ::GpiMove(m_hPS
, &vPoint
[0]);
807 ::GpiBox( m_hPS
// handle to a presentation space
808 ,DRO_OUTLINE
// draw the box outline ? or ?
809 ,&vPoint
[1] // address of the corner
810 ,0L // horizontal corner radius
811 ,0L // vertical corner radius
813 if(vWidth
> 4 && vHeight
> 4)
817 vPoint
[0].x
+= 2; vPoint
[0].y
+= 2;
818 vPoint
[1].x
-= 2; vPoint
[1].y
-= 2;
819 ::GpiMove(m_hPS
, &vPoint
[0]);
820 ::GpiLine(m_hPS
, &vPoint
[1]);
822 vPoint
[0].x
= vPoint
[1].x
;
824 ::GpiMove(m_hPS
, &vPoint
[0]);
825 ::GpiLine(m_hPS
, &vPoint
[1]);
831 wxCoord vX2
= vX1
+ vWidth
;
832 wxCoord vY2
= vY1
+ vHeight
;
837 } // end of wxDC::DoDrawCheckMark
839 void wxDC::DoDrawPoint(
845 COLORREF vColor
= 0x00ffffff;
849 vColor
= m_pen
.GetColour().GetPixel();
851 ::GpiSetColor(m_hPS
, vColor
);
853 vPoint
.y
= OS2Y(vY
,0);
854 ::GpiSetPel(m_hPS
, &vPoint
);
858 } // end of wxDC::DoDrawPoint
860 void wxDC::DoDrawPolygon(
868 ULONG ulCount
= 1; // Number of polygons.
869 POLYGON vPlgn
; // polygon.
870 ULONG flOptions
= 0L; // Drawing options.
872 //////////////////////////////////////////////////////////////////////////////
873 // This contains fields of option bits... to draw boundary lines as well as
874 // the area interior.
876 // Drawing boundary lines:
877 // POLYGON_NOBOUNDARY Does not draw boundary lines.
878 // POLYGON_BOUNDARY Draws boundary lines (the default).
880 // Construction of the area interior:
881 // POLYGON_ALTERNATE Constructs interior in alternate mode
883 // POLYGON_WINDING Constructs interior in winding mode.
884 //////////////////////////////////////////////////////////////////////////////
886 ULONG flModel
= 0L; // Drawing model.
888 //////////////////////////////////////////////////////////////////////////////
890 // POLYGON_INCL Fill is inclusive of bottom right (the default).
891 // POLYGON_EXCL Fill is exclusive of bottom right.
892 // This is provided to aid migration from other graphics models.
893 //////////////////////////////////////////////////////////////////////////////
895 LONG lHits
= 0L; // Correlation/error indicator.
898 int nIsTRANSPARENT
= 0;
899 LONG lBorderColor
= 0L;
902 lBorderColor
= m_pen
.GetColour().GetPixel();
903 lColor
= m_brush
.GetColour().GetPixel();
904 if(m_brush
.GetStyle() == wxTRANSPARENT
)
908 vPlgn
.aPointl
= (POINTL
*) calloc( n
+ 1
910 ); // well, new will call malloc
912 for(i
= 0; i
< n
; i
++)
914 vPlgn
.aPointl
[i
].x
= vPoints
[i
].x
; // +xoffset;
915 vPlgn
.aPointl
[i
].y
= OS2Y(vPoints
[i
].y
,0); // +yoffset;
917 flModel
= POLYGON_BOUNDARY
;
918 if(nFillStyle
== wxWINDING_RULE
)
919 flModel
|= POLYGON_WINDING
;
921 flModel
|= POLYGON_ALTERNATE
;
924 vPoint
.y
= OS2Y(vYoffset
,0);
926 ::GpiSetColor(m_hPS
, lBorderColor
);
927 ::GpiMove(m_hPS
, &vPoint
);
928 lHits
= ::GpiPolygons(m_hPS
, ulCount
, &vPlgn
, flOptions
, flModel
);
930 } // end of wxDC::DoDrawPolygon
932 void wxDC::DoDrawLines(
941 if (vXoffset
!= 0L || vXoffset
!= 0L)
945 vPoint
.x
= vPoints
[0].x
+ vXoffset
;
946 vPoint
.y
= OS2Y(vPoints
[0].y
+ vYoffset
,0);
947 ::GpiMove(m_hPS
, &vPoint
);
949 LONG lBorderColor
= m_pen
.GetColour().GetPixel();
951 ::GpiSetColor(m_hPS
, lBorderColor
);
952 for(i
= 1; i
< n
; i
++)
954 vPoint
.x
= vPoints
[i
].x
+ vXoffset
;
955 vPoint
.y
= OS2Y(vPoints
[i
].y
+ vYoffset
,0);
956 ::GpiLine(m_hPS
, &vPoint
);
963 CalcBoundingBox( vPoints
[0].x
966 vPoint
.x
= vPoints
[0].x
;
967 vPoint
.y
= OS2Y(vPoints
[0].y
,0);
968 ::GpiMove(m_hPS
, &vPoint
);
970 for (i
= 0; i
< n
; i
++)
972 CalcBoundingBox( vPoints
[i
].x
975 vPoint
.x
= vPoints
[i
].x
;
976 vPoint
.y
= OS2Y(vPoints
[i
].y
,0);
977 ::GpiLine(m_hPS
, &vPoint
);
980 } // end of wxDC::DoDrawLines
982 void wxDC::DoDrawRectangle(
993 int nIsTRANSPARENT
= 0;
996 // Might be a memory DC with no Paint rect.
998 if (!(m_vRclPaint
.yTop
== 0 &&
999 m_vRclPaint
.yBottom
== 0 &&
1000 m_vRclPaint
.xRight
== 0 &&
1001 m_vRclPaint
.xLeft
== 0))
1002 vY
= OS2Y(vY
,vHeight
);
1005 if (m_vSelectedBitmap
!= wxNullBitmap
)
1007 m_vRclPaint
.yTop
= m_vSelectedBitmap
.GetHeight();
1008 m_vRclPaint
.xRight
= m_vSelectedBitmap
.GetWidth();
1009 vY
= OS2Y(vY
,vHeight
);
1013 wxCoord vX2
= vX
+ vWidth
;
1014 wxCoord vY2
= vY
+ vHeight
;
1018 vPoint
[1].x
= vX
+ vWidth
- 1;
1019 vPoint
[1].y
= vY
+ vHeight
- 1;
1020 ::GpiMove(m_hPS
, &vPoint
[0]);
1021 lColor
= m_brush
.GetColour().GetPixel();
1022 lBorderColor
= m_pen
.GetColour().GetPixel();
1023 if (m_brush
.GetStyle() == wxTRANSPARENT
)
1025 if(lColor
== lBorderColor
|| nIsTRANSPARENT
)
1027 lControl
= DRO_OUTLINEFILL
; //DRO_FILL;
1028 if(m_brush
.GetStyle() == wxTRANSPARENT
)
1029 lControl
= DRO_OUTLINE
;
1031 ::GpiSetColor(m_hPS
, lBorderColor
);
1032 ::GpiBox( m_hPS
// handle to a presentation space
1033 ,lControl
// draw the box outline ? or ?
1034 ,&vPoint
[1] // address of the corner
1035 ,0L // horizontal corner radius
1036 ,0L // vertical corner radius
1041 lControl
= DRO_OUTLINE
;
1042 ::GpiSetColor( m_hPS
1051 lControl
= DRO_FILL
;
1052 ::GpiSetColor( m_hPS
1055 vPoint
[0].x
= vX
+ 1;
1056 vPoint
[0].y
= vY
+ 1;
1057 vPoint
[1].x
= vX
+ vWidth
- 2;
1058 vPoint
[1].y
= vY
+ vHeight
- 2;
1059 ::GpiMove(m_hPS
, &vPoint
[0]);
1067 CalcBoundingBox(vX
, vY
);
1068 CalcBoundingBox(vX2
, vY2
);
1069 } // end of wxDC::DoDrawRectangle
1071 void wxDC::DoDrawRoundedRectangle(
1083 int nIsTRANSPARENT
= 0;
1086 // Might be a memory DC with no Paint rect.
1088 if (!(m_vRclPaint
.yTop
== 0 &&
1089 m_vRclPaint
.yBottom
== 0 &&
1090 m_vRclPaint
.xRight
== 0 &&
1091 m_vRclPaint
.xLeft
== 0))
1092 vY
= OS2Y(vY
,vHeight
);
1095 if (m_vSelectedBitmap
!= wxNullBitmap
)
1097 m_vRclPaint
.yTop
= m_vSelectedBitmap
.GetHeight();
1098 m_vRclPaint
.xRight
= m_vSelectedBitmap
.GetWidth();
1099 vY
= OS2Y(vY
,vHeight
);
1103 wxCoord vX2
= (vX
+ vWidth
);
1104 wxCoord vY2
= (vY
+ vHeight
);
1108 vPoint
[1].x
= vX
+ vWidth
- 1;
1109 vPoint
[1].y
= vY
+ vHeight
- 1;
1110 ::GpiMove(m_hPS
, &vPoint
[0]);
1112 lColor
= m_brush
.GetColour().GetPixel();
1113 lBorderColor
= m_pen
.GetColour().GetPixel();
1114 lControl
= DRO_OUTLINEFILL
; //DRO_FILL;
1115 if (m_brush
.GetStyle() == wxTRANSPARENT
)
1117 if(lColor
== lBorderColor
|| nIsTRANSPARENT
)
1119 lControl
= DRO_OUTLINEFILL
; //DRO_FILL;
1120 if(m_brush
.GetStyle() == wxTRANSPARENT
)
1121 lControl
= DRO_OUTLINE
;
1123 ::GpiSetColor(m_hPS
, lColor
);
1124 ::GpiBox( m_hPS
// handle to a presentation space
1125 ,lControl
// draw the box outline ? or ?
1126 ,&vPoint
[1] // address of the corner
1127 ,(LONG
)dRadius
// horizontal corner radius
1128 ,(LONG
)dRadius
// vertical corner radius
1133 lControl
= DRO_OUTLINE
;
1134 ::GpiSetColor( m_hPS
1143 lControl
= DRO_FILL
;
1144 ::GpiSetColor( m_hPS
1147 vPoint
[0].x
= vX
+ 1;
1148 vPoint
[0].y
= vY
+ 1;
1149 vPoint
[1].x
= vX
+ vWidth
- 2;
1150 vPoint
[1].y
= vY
+ vHeight
- 2;
1151 ::GpiMove(m_hPS
, &vPoint
[0]);
1160 CalcBoundingBox(vX
, vY
);
1161 CalcBoundingBox(vX2
, vY2
);
1162 } // end of wxDC::DoDrawRoundedRectangle
1164 // Draw Ellipse within box (x,y) - (x+width, y+height)
1165 void wxDC::DoDrawEllipse(
1172 POINTL vPtlPos
; // Structure for current position
1173 FIXED vFxMult
; // Multiplier for ellipse
1174 ARCPARAMS vArcp
; // Structure for arc parameters
1176 vY
= OS2Y(vY
,vHeight
);
1179 vArcp
.lQ
= vHeight
/2;
1180 vArcp
.lP
= vWidth
/2;
1182 ::GpiSetArcParams( m_hPS
1184 ); // Sets parameters to default
1185 vPtlPos
.x
= vX
+ vWidth
/2; // Loads x-coordinate
1186 vPtlPos
.y
= vY
+ vHeight
/2; // Loads y-coordinate
1189 ); // Sets current position
1190 vFxMult
= MAKEFIXED(1, 0); /* Sets multiplier */
1193 // DRO_FILL, DRO_OTLINEFILL - where to get
1198 ); // Draws full arc with center at current position
1200 wxCoord vX2
= (vX
+ vWidth
);
1201 wxCoord vY2
= (vY
+ vHeight
);
1203 CalcBoundingBox(vX
, vY
);
1204 CalcBoundingBox(vX2
, vY2
);
1205 } // end of wxDC::DoDrawEllipse
1207 void wxDC::DoDrawEllipticArc(
1216 POINTL vPtlPos
; // Structure for current position
1217 FIXED vFxMult
; // Multiplier for ellipse
1218 ARCPARAMS vArcp
; // Structure for arc parameters
1220 FIXED vFSweepa
; // Start angle, sweep angle
1224 vY
= OS2Y(vY
,vHeight
);
1226 dFractPart
= modf(dSa
,&dIntPart
);
1227 vFSa
= MAKEFIXED((int)dIntPart
, (int)(dFractPart
* 0xffff) );
1228 dFractPart
= modf(dEa
- dSa
, &dIntPart
);
1229 vFSweepa
= MAKEFIXED((int)dIntPart
, (int)(dFractPart
* 0xffff) );
1232 // Ellipse main axis (r,q), (p,s) with center at (0,0)
1235 vArcp
.lQ
= vHeight
/2;
1236 vArcp
.lP
= vWidth
/2;
1238 ::GpiSetArcParams(m_hPS
, &vArcp
); // Sets parameters to default
1239 vPtlPos
.x
= (wxCoord
)(vX
+ vWidth
/2 * (1. + cos(DegToRad(dSa
)))); // Loads x-coordinate
1240 vPtlPos
.y
= (wxCoord
)(vY
+ vHeight
/2 * (1. + sin(DegToRad(dSa
)))); // Loads y-coordinate
1241 ::GpiMove(m_hPS
, &vPtlPos
); // Sets current position
1244 // May be not to the center ?
1246 vPtlPos
.x
= vX
+ vWidth
/2 ; // Loads x-coordinate
1247 vPtlPos
.y
= vY
+ vHeight
/2; // Loads y-coordinate
1248 vFxMult
= MAKEFIXED(1, 0); // Sets multiplier
1251 // DRO_FILL, DRO_OTLINEFILL - where to get
1253 ::GpiPartialArc( m_hPS
1259 wxCoord vX2
= (vX
+ vWidth
);
1260 wxCoord vY2
= (vY
+ vHeight
);
1262 CalcBoundingBox(vX
, vY
);
1263 CalcBoundingBox(vX2
, vY2
);
1264 } // end of wxDC::DoDrawEllipticArc
1266 void wxDC::DoDrawIcon(
1273 // Need to copy back into a bitmap. ::WinDrawPointer uses device coords
1274 // and I don't feel like figuring those out for scrollable windows so
1275 // just convert to a bitmap then let the DoDrawBitmap routing display it
1279 DoDrawBitmap(rIcon
.GetXpmSrc(), vX
, vY
, true);
1283 wxBitmap
vBitmap(rIcon
);
1285 DoDrawBitmap(vBitmap
, vX
, vY
, false);
1287 CalcBoundingBox(vX
, vY
);
1288 CalcBoundingBox(vX
+ rIcon
.GetWidth(), vY
+ rIcon
.GetHeight());
1289 } // end of wxDC::DoDrawIcon
1291 void wxDC::DoDrawBitmap(
1292 const wxBitmap
& rBmp
1298 #if wxUSE_PRINTING_ARCHITECTURE
1299 if (!IsKindOf(CLASSINFO(wxPrinterDC
)))
1302 HBITMAP hBitmap
= (HBITMAP
)rBmp
.GetHBITMAP();
1303 HBITMAP hBitmapOld
= NULLHANDLE
;
1306 vY
= OS2Y(vY
,rBmp
.GetHeight());
1309 vPoint
[0].y
= vY
+ rBmp
.GetHeight();
1310 vPoint
[1].x
= vX
+ rBmp
.GetWidth();
1314 vPoint
[3].x
= rBmp
.GetWidth();
1315 vPoint
[3].y
= rBmp
.GetHeight();
1318 wxMask
* pMask
= rBmp
.GetMask();
1323 // Need to imitate ::MaskBlt in windows.
1324 // 1) Extract the bits from from the bitmap.
1325 // 2) Extract the bits from the mask
1326 // 3) Using the mask bits do the following:
1327 // A) If the mask byte is 00 leave the bitmap byte alone
1328 // B) If the mask byte is FF copy the screen color into
1330 // 4) Create a new bitmap and set its bits to the above result
1331 // 5) Blit this to the screen PS
1333 HBITMAP hMask
= (HBITMAP
)pMask
->GetMaskBitmap();
1334 HBITMAP hOldMask
= NULLHANDLE
;
1335 HBITMAP hOldBitmap
= NULLHANDLE
;
1336 HBITMAP hNewBitmap
= NULLHANDLE
;
1337 unsigned char* pucBits
; // buffer that will contain the bitmap data
1338 unsigned char* pucBitsMask
; // buffer that will contain the mask data
1339 unsigned char* pucData
; // pointer to use to traverse bitmap data
1340 unsigned char* pucDataMask
; // pointer to use to traverse mask data
1346 // The usual Memory context creation stuff
1348 DEVOPENSTRUC vDop
= {0L, "DISPLAY", NULL
, 0L, 0L, 0L, 0L, 0L, 0L};
1349 SIZEL vSize
= {0, 0};
1350 HDC hDC
= ::DevOpenDC(vHabmain
, OD_MEMORY
, "*", 5L, (PDEVOPENDATA
)&vDop
, NULLHANDLE
);
1351 HPS hPS
= ::GpiCreatePS(vHabmain
, hDC
, &vSize
, PU_PELS
| GPIA_ASSOC
);
1354 // The usual bitmap header stuff
1356 BITMAPINFOHEADER2 vHeader
;
1359 memset(&vHeader
, '\0', 16);
1362 memset(&vInfo
, '\0', 16);
1364 vInfo
.cx
= (ULONG
)rBmp
.GetWidth();
1365 vInfo
.cy
= (ULONG
)rBmp
.GetHeight();
1367 vInfo
.cBitCount
= 24; // Set to desired count going in
1370 // Create the buffers for data....all wxBitmaps are 24 bit internally
1372 int nBytesPerLine
= rBmp
.GetWidth() * 3;
1373 int nSizeDWORD
= sizeof(DWORD
);
1374 int nLineBoundary
= nBytesPerLine
% nSizeDWORD
;
1382 // Need to get a background color for mask blitting
1384 if (IsKindOf(CLASSINFO(wxWindowDC
)))
1386 wxWindowDC
* pWindowDC
= wxDynamicCast(this, wxWindowDC
);
1388 lColor
= pWindowDC
->m_pCanvas
->GetBackgroundColour().GetPixel();
1390 else if (GetBrush().Ok())
1391 lColor
= GetBrush().GetColour().GetPixel();
1393 lColor
= m_textBackgroundColour
.GetPixel();
1396 // Bitmap must be in a double-word aligned address so we may
1397 // have some padding to worry about
1399 if (nLineBoundary
> 0)
1401 nPadding
= nSizeDWORD
- nLineBoundary
;
1402 nBytesPerLine
+= nPadding
;
1404 pucBits
= (unsigned char *)malloc(nBytesPerLine
* rBmp
.GetHeight());
1405 pucBitsMask
= (unsigned char *)malloc(nBytesPerLine
* rBmp
.GetHeight());
1406 memset(pucBits
, '\0', (nBytesPerLine
* rBmp
.GetHeight()));
1407 memset(pucBitsMask
, '\0', (nBytesPerLine
* rBmp
.GetHeight()));
1410 // Extract the bitmap and mask data
1412 if ((hOldBitmap
= ::GpiSetBitmap(hPS
, hBitmap
)) == HBM_ERROR
)
1414 vError
= ::WinGetLastError(vHabmain
);
1415 sError
= wxPMErrorToStr(vError
);
1417 ::GpiQueryBitmapInfoHeader(hBitmap
, &vHeader
);
1418 vInfo
.cBitCount
= 24;
1419 if ((lScans
= ::GpiQueryBitmapBits( hPS
1421 ,(LONG
)rBmp
.GetHeight()
1426 vError
= ::WinGetLastError(vHabmain
);
1427 sError
= wxPMErrorToStr(vError
);
1429 if ((hOldMask
= ::GpiSetBitmap(hPS
, hMask
)) == HBM_ERROR
)
1431 vError
= ::WinGetLastError(vHabmain
);
1432 sError
= wxPMErrorToStr(vError
);
1434 ::GpiQueryBitmapInfoHeader(hMask
, &vHeader
);
1435 vInfo
.cBitCount
= 24;
1436 if ((lScans
= ::GpiQueryBitmapBits( hPS
1438 ,(LONG
)rBmp
.GetHeight()
1443 vError
= ::WinGetLastError(vHabmain
);
1444 sError
= wxPMErrorToStr(vError
);
1446 if (( hMask
= ::GpiSetBitmap(hPS
, hOldMask
)) == HBM_ERROR
)
1448 vError
= ::WinGetLastError(vHabmain
);
1449 sError
= wxPMErrorToStr(vError
);
1453 // Now set the bytes(bits) according to the mask values
1454 // 3 bytes per pel...must handle one at a time
1457 pucDataMask
= pucBitsMask
;
1460 // 16 bit kludge really only kinda works. The mask gets applied
1461 // where needed but the original bitmap bits are dorked sometimes
1463 bool bpp16
= (wxDisplayDepth() == 16);
1465 for (i
= 0; i
< rBmp
.GetHeight(); i
++)
1467 for (j
= 0; j
< rBmp
.GetWidth(); j
++)
1470 if (bpp16
&& *pucDataMask
== 0xF8) // 16 bit display gobblygook
1472 else if (*pucDataMask
== 0xFF) // leave bitmap byte alone
1476 *pucData
= ((unsigned char)(lColor
>> 16));
1480 if (bpp16
&& *(pucDataMask
+ 1) == 0xFC) // 16 bit display gobblygook
1482 else if (*(pucDataMask
+ 1) == 0xFF) // leave bitmap byte alone
1486 *pucData
= ((unsigned char)(lColor
>> 8));
1491 if (bpp16
&& *(pucDataMask
+ 2) == 0xF8) // 16 bit display gobblygook
1493 else if (*(pucDataMask
+ 2) == 0xFF) // leave bitmap byte alone
1497 *pucData
= ((unsigned char)lColor
);
1502 for (j
= 0; j
< nPadding
; j
++)
1509 // Create a new bitmap
1511 vHeader
.cx
= (ULONG
)rBmp
.GetWidth();
1512 vHeader
.cy
= (ULONG
)rBmp
.GetHeight();
1513 vHeader
.cPlanes
= 1L;
1514 vHeader
.cBitCount
= 24;
1515 if ((hNewBitmap
= ::GpiCreateBitmap( hPS
1522 vError
= ::WinGetLastError(vHabmain
);
1523 sError
= wxPMErrorToStr(vError
);
1527 // Now blit it to the screen PS
1529 if ((lHits
= ::GpiWCBitBlt( (HPS
)GetHPS()
1537 vError
= ::WinGetLastError(vHabmain
);
1538 sError
= wxPMErrorToStr(vError
);
1546 ::GpiSetBitmap(hPS
, NULLHANDLE
);
1547 ::GpiDeleteBitmap(hNewBitmap
);
1548 ::GpiDestroyPS(hPS
);
1554 ULONG lOldForeGround
= ::GpiQueryColor((HPS
)GetHPS());
1555 ULONG lOldBackGround
= ::GpiQueryBackColor((HPS
)GetHPS());
1557 if (m_textForegroundColour
.Ok())
1559 ::GpiSetColor( (HPS
)GetHPS()
1560 ,m_textForegroundColour
.GetPixel()
1563 if (m_textBackgroundColour
.Ok())
1565 ::GpiSetBackColor( (HPS
)GetHPS()
1566 ,m_textBackgroundColour
.GetPixel()
1570 // Need to alter bits in a mono bitmap to match the new
1571 // background-foreground if it is different.
1573 if (rBmp
.IsMono() &&
1574 ((m_textForegroundColour
.GetPixel() != lOldForeGround
) ||
1575 (m_textBackgroundColour
.GetPixel() != lOldBackGround
)))
1577 DEVOPENSTRUC vDop
= {0L, "DISPLAY", NULL
, 0L, 0L, 0L, 0L, 0L, 0L};
1578 SIZEL vSize
= {0, 0};
1579 HDC hDC
= ::DevOpenDC(vHabmain
, OD_MEMORY
, "*", 5L, (PDEVOPENDATA
)&vDop
, NULLHANDLE
);
1580 HPS hPS
= ::GpiCreatePS(vHabmain
, hDC
, &vSize
, PU_PELS
| GPIA_ASSOC
);
1582 int nBytesPerLine
= rBmp
.GetWidth() * 3;
1584 LONG lForeGround
= m_textForegroundColour
.GetPixel();
1585 LONG lBackGround
= m_textBackgroundColour
.GetPixel();
1587 HBITMAP hOldBitmap
= NULLHANDLE
;
1593 memset(&vInfo
, '\0', 16);
1595 vInfo
.cx
= (ULONG
)rBmp
.GetWidth();
1596 vInfo
.cy
= (ULONG
)rBmp
.GetHeight();
1598 vInfo
.cBitCount
= 24;
1600 unsigned char* pucBits
; // buffer that will contain the bitmap data
1601 unsigned char* pucData
; // pointer to use to traverse bitmap data
1603 pucBits
= new unsigned char[nBytesPerLine
* rBmp
.GetHeight()];
1604 memset(pucBits
, '\0', (nBytesPerLine
* rBmp
.GetHeight()));
1606 if ((hOldBitmap
= ::GpiSetBitmap(hPS
, hBitmap
)) == HBM_ERROR
)
1608 vError
= ::WinGetLastError(vHabmain
);
1609 sError
= wxPMErrorToStr(vError
);
1612 if ((lScans
= ::GpiQueryBitmapBits( hPS
1614 ,(LONG
)rBmp
.GetHeight()
1619 vError
= ::WinGetLastError(vHabmain
);
1620 sError
= wxPMErrorToStr(vError
);
1623 unsigned char cOldRedFore
= (unsigned char)(lOldForeGround
>> 16);
1624 unsigned char cOldGreenFore
= (unsigned char)(lOldForeGround
>> 8);
1625 unsigned char cOldBlueFore
= (unsigned char)lOldForeGround
;
1627 unsigned char cRedFore
= (unsigned char)(lForeGround
>> 16);
1628 unsigned char cGreenFore
= (unsigned char)(lForeGround
>> 8);
1629 unsigned char cBlueFore
= (unsigned char)lForeGround
;
1631 unsigned char cRedBack
= (unsigned char)(lBackGround
>> 16);
1632 unsigned char cGreenBack
= (unsigned char)(lBackGround
>> 8);
1633 unsigned char cBlueBack
= (unsigned char)lBackGround
;
1636 for (i
= 0; i
< rBmp
.GetHeight(); i
++)
1638 for (j
= 0; j
< rBmp
.GetWidth(); j
++)
1640 unsigned char cBmpRed
= *pucData
;
1641 unsigned char cBmpGreen
= *(pucData
+ 1);
1642 unsigned char cBmpBlue
= *(pucData
+ 2);
1644 if ((cBmpRed
== cOldRedFore
) &&
1645 (cBmpGreen
== cOldGreenFore
) &&
1646 (cBmpBlue
== cOldBlueFore
))
1648 *pucData
= cBlueFore
;
1650 *pucData
= cGreenFore
;
1652 *pucData
= cRedFore
;
1657 *pucData
= cBlueBack
;
1659 *pucData
= cGreenBack
;
1661 *pucData
= cRedBack
;
1666 if ((lScans
= ::GpiSetBitmapBits( hPS
1668 ,(LONG
)rBmp
.GetHeight()
1673 vError
= ::WinGetLastError(vHabmain
);
1674 sError
= wxPMErrorToStr(vError
);
1678 ::GpiSetBitmap(hPS
, NULLHANDLE
);
1679 ::GpiDestroyPS(hPS
);
1682 ::GpiWCBitBlt( (HPS
)GetHPS()
1689 ::GpiSetBitmap((HPS
)GetHPS(), hBitmapOld
);
1690 ::GpiSetColor((HPS
)GetHPS(), lOldForeGround
);
1691 ::GpiSetBackColor((HPS
)GetHPS(), lOldBackGround
);
1694 } // end of wxDC::DoDrawBitmap
1696 void wxDC::DoDrawText(
1697 const wxString
& rsText
1710 CalcBoundingBox(vX
, vY
);
1711 GetTextExtent(rsText
, &vWidth
, &vHeight
);
1712 CalcBoundingBox((vX
+ vWidth
), (vY
+ vHeight
));
1713 } // end of wxDC::DoDrawText
1715 void wxDC::DrawAnyText(
1716 const wxString
& rsText
1721 int nOldBackground
= 0;
1728 // prepare for drawing the text
1732 // Set text color attributes
1734 if (m_textForegroundColour
.Ok())
1737 ,(int)m_textForegroundColour
.GetPixel()
1741 if (m_textBackgroundColour
.Ok())
1743 nOldBackground
= SetTextBkColor( m_hPS
1744 ,(int)m_textBackgroundColour
.GetPixel()
1750 GetTextExtent( rsText
1755 if (!(m_vRclPaint
.yTop
== 0 &&
1756 m_vRclPaint
.yBottom
== 0 &&
1757 m_vRclPaint
.xRight
== 0 &&
1758 m_vRclPaint
.xLeft
== 0))
1761 // Position Text a little differently in the Statusbar from other panels
1763 if (m_pCanvas
&& m_pCanvas
->IsKindOf(CLASSINFO(wxStatusBar
)))
1764 vPtlStart
.y
= OS2Y(vY
,vTextY
);
1766 vPtlStart
.y
= (wxCoord
)(OS2Y(vY
,vTextY
/1.5)); // Full extent is a bit much
1770 if (m_vSelectedBitmap
!= wxNullBitmap
)
1772 m_vRclPaint
.yTop
= m_vSelectedBitmap
.GetHeight();
1773 m_vRclPaint
.xRight
= m_vSelectedBitmap
.GetWidth();
1774 if (m_pCanvas
&& m_pCanvas
->IsKindOf(CLASSINFO(wxStatusBar
)))
1775 vPtlStart
.y
= OS2Y(vY
,vTextY
);
1777 vPtlStart
.y
= (LONG
)(OS2Y(vY
,vTextY
/1.5));
1783 PCH pzStr
= (PCH
)rsText
.c_str();
1785 ::GpiMove(m_hPS
, &vPtlStart
);
1786 lHits
= ::GpiCharString( m_hPS
1790 if (lHits
!= GPI_OK
)
1792 wxLogLastError(wxT("TextOut"));
1796 // Restore the old parameters (text foreground colour may be left because
1797 // it never is set to anything else, but background should remain
1798 // transparent even if we just drew an opaque string)
1800 if (m_textBackgroundColour
.Ok())
1801 SetTextBkColor( m_hPS
1809 void wxDC::DoDrawRotatedText(
1810 const wxString
& rsText
1828 DoDrawText(text, x, y);
1833 wxFillLogFont(&lf, &m_font);
1835 // GDI wants the angle in tenth of degree
1836 long angle10 = (long)(angle * 10);
1837 lf.lfEscapement = angle10;
1838 lf. lfOrientation = angle10;
1840 HFONT hfont = ::CreateFontIndirect(&lf);
1843 wxLogLastError("CreateFont");
1847 HFONT hfontOld = ::SelectObject(GetHdc(), hfont);
1849 DrawAnyText(text, x, y);
1851 (void)::SelectObject(GetHdc(), hfontOld);
1854 // call the bounding box by adding all four vertices of the rectangle
1855 // containing the text to it (simpler and probably not slower than
1856 // determining which of them is really topmost/leftmost/...)
1858 GetTextExtent(text, &w, &h);
1860 double rad = DegToRad(angle);
1862 // "upper left" and "upper right"
1863 CalcBoundingBox(x, y);
1864 CalcBoundingBox(x + w*cos(rad), y - h*sin(rad));
1865 CalcBoundingBox(x + h*sin(rad), y + h*cos(rad));
1867 // "bottom left" and "bottom right"
1868 x += (wxCoord)(h*sin(rad));
1869 y += (wxCoord)(h*cos(rad));
1870 CalcBoundingBox(x, y);
1871 CalcBoundingBox(x + h*sin(rad), y + h*cos(rad));
1876 // ---------------------------------------------------------------------------
1878 // ---------------------------------------------------------------------------
1880 void wxDC::DoSelectPalette( bool WXUNUSED(bRealize
) )
1883 // Set the old object temporarily, in case the assignment deletes an object
1884 // that's not yet selected out.
1895 hOldPal
= ::GpiSelectPalette((HDC
) m_hPS
, (HPALETTE
) m_palette
.GetHPALETTE());
1897 m_hOldPalette
= (WXHPALETTE
)hOldPal
;
1899 } // end of wxDC::DoSelectPalette
1901 void wxDC::InitializePalette()
1903 if (wxDisplayDepth() <= 8 )
1906 // Look for any window or parent that has a custom palette. If any has
1907 // one then we need to use it in drawing operations
1909 wxWindow
* pWin
= m_pCanvas
->GetAncestorWithCustomPalette();
1911 m_hasCustomPalette
= pWin
&& pWin
->HasCustomPalette();
1912 if (m_hasCustomPalette
)
1914 m_palette
= pWin
->GetPalette();
1917 // turn on PM translation for this palette
1922 } // end of wxDC::InitializePalette
1924 void wxDC::SetPalette(
1925 const wxPalette
& rPalette
1932 m_palette
= rPalette
;
1940 HPALETTE hOldPal
= ::GpiSelectPalette((HDC
) m_hPS
, (HPALETTE
) m_palette
.GetHPALETTE());
1942 m_hOldPalette
= (WXHPALETTE
)hOldPal
;
1943 } // end of wxDC::SetPalette
1950 // Set the old object temporarily, in case the assignment deletes an object
1951 // that's not yet selected out.
1963 m_font
.SetPS(m_hPS
); // this will realize the font
1967 HFONT hFont
= m_font
.GetResourceHandle();
1968 if (hFont
== (HFONT
) NULL
)
1970 wxLogDebug(wxT("::SelectObject failed in wxDC::SetFont."));
1973 m_hOldFont
= (WXHFONT
) hFont
;
1975 } // end of wxDC::SetFont
1981 wxCHECK_RET( Ok(), wxT("invalid window dc") );
1997 m_pen
.SetPS((HPS
)m_hOldPen
);
2004 if (m_pen
.GetResourceHandle())
2008 m_hOldPen
= m_pen
.GetPS();
2010 ::GpiSetColor(m_hPS
, m_pen
.GetColour().GetPixel());
2014 void wxDC::SetBrush(
2015 const wxBrush
& rBrush
2018 wxCHECK_RET( Ok(), wxT("invalid window dc") );
2024 if (m_brush
== rBrush
)
2034 m_brush
.SetPS((HPS
)m_hOldBrush
);
2041 if (m_brush
.GetResourceHandle())
2043 m_brush
.SetPS(m_hPS
);
2045 m_hOldBrush
= (WXHWND
)m_brush
.GetPS();
2048 } // end of wxDC::SetBrush
2050 void wxDC::SetBackground(
2051 const wxBrush
& rBrush
2054 m_backgroundBrush
= rBrush
;
2055 if (!m_backgroundBrush
.Ok())
2059 bool bCustomColours
= true;
2062 // If we haven't specified wxUSER_COLOURS, don't allow the panel/dialog box to
2063 // change background colours from the control-panel specified colours.
2065 if (m_pCanvas
->IsKindOf(CLASSINFO(wxWindow
)) &&
2066 ((m_pCanvas
->GetWindowStyleFlag() & wxUSER_COLOURS
) != wxUSER_COLOURS
))
2067 bCustomColours
= false;
2070 if (m_backgroundBrush
.GetStyle()==wxTRANSPARENT
)
2072 m_pCanvas
->SetTransparent(true);
2077 // Setting the background brush of a DC
2078 // doesn't affect the window background colour. However,
2079 // I'm leaving in the transparency setting because it's needed by
2080 // various controls (e.g. wxStaticText) to determine whether to draw
2081 // transparently or not. TODO: maybe this should be a new function
2082 // wxWindow::SetTransparency(). Should that apply to the child itself, or the
2084 // m_canvas->SetBackgroundColour(m_backgroundBrush.GetColour());
2086 m_pCanvas
->SetTransparent(false);
2090 COLORREF vNewColor
= m_backgroundBrush
.GetColour().GetPixel();
2091 (void)::GpiSetBackColor((HPS
)m_hPS
, (LONG
)vNewColor
);
2092 } // end of wxDC::SetBackground
2094 void wxDC::SetBackgroundMode(
2098 m_backgroundMode
= nMode
;
2099 } // end of wxDC::SetBackgroundMode
2101 void wxDC::SetLogicalFunction(
2105 m_logicalFunction
= nFunction
;
2106 SetRop((WXHDC
)m_hDC
);
2107 } // wxDC::SetLogicalFunction
2113 if (!hDC
|| m_logicalFunction
< 0)
2117 switch (m_logicalFunction
)
2128 lCRop
= FM_MERGESRCNOT
;
2132 lCRop
= FM_NOTMASKSRC
;
2144 lCRop
= FM_MERGENOTSRC
;
2148 lCRop
= FM_MERGESRCNOT
;
2160 lCRop
= FM_SUBTRACT
;
2167 lCRop
= FM_OVERPAINT
;
2170 ::GpiSetMix((HPS
)hDC
, lCRop
);
2171 } // end of wxDC::SetRop
2173 bool wxDC::StartDoc( const wxString
& WXUNUSED(rsMessage
) )
2175 // We might be previewing, so return true to let it continue.
2177 } // end of wxDC::StartDoc
2181 } // end of wxDC::EndDoc
2183 void wxDC::StartPage()
2185 } // end of wxDC::StartPage
2187 void wxDC::EndPage()
2189 } // end of wxDC::EndPage
2191 // ---------------------------------------------------------------------------
2193 // ---------------------------------------------------------------------------
2195 wxCoord
wxDC::GetCharHeight() const
2197 FONTMETRICS vFM
; // metrics structure
2199 ::GpiQueryFontMetrics( m_hPS
2200 ,sizeof(FONTMETRICS
)
2203 return YDEV2LOGREL(vFM
.lXHeight
);
2206 wxCoord
wxDC::GetCharWidth() const
2208 FONTMETRICS vFM
; // metrics structure
2210 ::GpiQueryFontMetrics( m_hPS
2211 ,sizeof(FONTMETRICS
)
2214 return XDEV2LOGREL(vFM
.lAveCharWidth
);
2217 void wxDC::DoGetTextExtent(
2218 const wxString
& rsString
2221 , wxCoord
* pvDescent
2222 , wxCoord
* pvExternalLeading
2226 POINTL avPoint
[TXTBOX_COUNT
];
2231 FONTMETRICS vFM
; // metrics structure
2233 ERRORID vErrorCode
; // last error id code
2234 wxFont
* pFontToUse
= (wxFont
*)pTheFont
;
2236 wxChar zMsg
[128]; // DEBUG
2240 pFontToUse
= (wxFont
*)&m_font
;
2241 l
= rsString
.length();
2244 // In world coordinates.
2246 bRc
= ::GpiQueryTextBox( m_hPS
2248 ,(PCH
)rsString
.c_str()
2249 ,TXTBOX_COUNT
// return maximum information
2250 ,avPoint
// array of coordinates points
2254 vErrorCode
= ::WinGetLastError(wxGetInstance());
2255 sError
= wxPMErrorToStr(vErrorCode
);
2257 wxSprintf(zMsg
, _T("GpiQueryTextBox for %s: failed with Error: %lx - %s"), rsString
.c_str(), vErrorCode
, sError
.c_str());
2258 (void)wxMessageBox( _T("wxWidgets Menu sample")
2264 vPtMin
.x
= avPoint
[0].x
;
2265 vPtMax
.x
= avPoint
[0].x
;
2266 vPtMin
.y
= avPoint
[0].y
;
2267 vPtMax
.y
= avPoint
[0].y
;
2268 for (i
= 1; i
< 4; i
++)
2270 if(vPtMin
.x
> avPoint
[i
].x
) vPtMin
.x
= avPoint
[i
].x
;
2271 if(vPtMin
.y
> avPoint
[i
].y
) vPtMin
.y
= avPoint
[i
].y
;
2272 if(vPtMax
.x
< avPoint
[i
].x
) vPtMax
.x
= avPoint
[i
].x
;
2273 if(vPtMax
.y
< avPoint
[i
].y
) vPtMax
.y
= avPoint
[i
].y
;
2275 ::GpiQueryFontMetrics( m_hPS
2276 ,sizeof(FONTMETRICS
)
2281 *pvX
= (wxCoord
)(vPtMax
.x
- vPtMin
.x
+ 1);
2283 *pvY
= (wxCoord
)(vPtMax
.y
- vPtMin
.y
+ 1);
2285 *pvDescent
= vFM
.lMaxDescender
;
2286 if (pvExternalLeading
)
2287 *pvExternalLeading
= vFM
.lExternalLeading
;
2290 void wxDC::SetMapMode(
2294 int nPixelWidth
= 0;
2295 int nPixelHeight
= 0;
2298 LONG lArray
[CAPS_VERTICAL_RESOLUTION
];
2300 m_mappingMode
= nMode
;
2302 if(::DevQueryCaps( m_hDC
2304 ,CAPS_VERTICAL_RESOLUTION
2311 nPixelWidth
= lArray
[CAPS_WIDTH
];
2312 nPixelHeight
= lArray
[CAPS_HEIGHT
];
2313 lHorzRes
= lArray
[CAPS_HORIZONTAL_RESOLUTION
]; // returns pel/meter
2314 lVertRes
= lArray
[CAPS_VERTICAL_RESOLUTION
]; // returns pel/meter
2315 nMmWidth
= (lHorzRes
/1000) * nPixelWidth
;
2316 nMmWidth
= (lVertRes
/1000) * nPixelHeight
;
2318 if ((nPixelWidth
== 0) || (nPixelHeight
== 0) || (nMmWidth
== 0) || (nMmHeight
== 0))
2323 double dMm2pixelsX
= nPixelWidth
/nMmWidth
;
2324 double dMm2pixelsY
= nPixelHeight
/nMmHeight
;
2329 m_logicalScaleX
= (twips2mm
* dMm2pixelsX
);
2330 m_logicalScaleY
= (twips2mm
* dMm2pixelsY
);
2334 m_logicalScaleX
= (pt2mm
* dMm2pixelsX
);
2335 m_logicalScaleY
= (pt2mm
* dMm2pixelsY
);
2339 m_logicalScaleX
= dMm2pixelsX
;
2340 m_logicalScaleY
= dMm2pixelsY
;
2344 m_logicalScaleX
= (dMm2pixelsX
/10.0);
2345 m_logicalScaleY
= (dMm2pixelsY
/10.0);
2350 m_logicalScaleX
= 1.0;
2351 m_logicalScaleY
= 1.0;
2357 ulOptions
= ::GpiQueryPS(m_hPS
, &vSize
);
2358 if (!ulOptions
& PU_ARBITRARY
)
2360 ulOptions
= PU_ARBITRARY
| GPIF_DEFAULT
;
2361 ::GpiSetPS(m_hPS
, &vSize
, ulOptions
);
2363 m_nWindowExtX
= (int)MS_XDEV2LOG(VIEWPORT_EXTENT
);
2364 m_nWindowExtY
= (int)MS_YDEV2LOG(VIEWPORT_EXTENT
);
2366 }; // end of wxDC::SetMapMode
2368 void wxDC::SetUserScale( double dX
,
2374 SetMapMode(m_mappingMode
);
2375 } // end of wxDC::SetUserScale
2377 void wxDC::SetAxisOrientation( bool bXLeftRight
,
2380 m_signX
= bXLeftRight
? 1 : -1;
2381 m_signY
= bYBottomUp
? -1 : 1;
2383 SetMapMode(m_mappingMode
);
2384 } // end of wxDC::SetAxisOrientation
2386 void wxDC::SetSystemScale(
2394 SetMapMode(m_mappingMode
);
2395 } // end of wxDC::SetSystemScale
2397 void wxDC::SetLogicalOrigin(
2404 ::GpiQueryPageViewport( m_hPS
2411 ::GpiSetPageViewport( m_hPS
2414 }; // end of wxDC::SetLogicalOrigin
2416 void wxDC::SetDeviceOrigin(
2423 m_deviceOriginX
= vX
;
2424 m_deviceOriginY
= vY
;
2425 ::GpiQueryPageViewport( m_hPS
2430 vRect
.yBottom
-= vY
;
2432 ::GpiSetPageViewport( m_hPS
2435 }; // end of wxDC::SetDeviceOrigin
2437 // ---------------------------------------------------------------------------
2438 // coordinates transformations
2439 // ---------------------------------------------------------------------------
2441 wxCoord
wxDCBase::DeviceToLogicalX(wxCoord x
) const
2443 return (wxCoord
) (((x
) - m_deviceOriginX
)/(m_logicalScaleX
*m_userScaleX
*m_signX
*m_scaleX
) - m_logicalOriginX
);
2446 wxCoord
wxDCBase::DeviceToLogicalXRel(wxCoord x
) const
2448 // axis orientation is not taken into account for conversion of a distance
2449 return (wxCoord
) ((x
)/(m_logicalScaleX
*m_userScaleX
*m_scaleX
));
2452 wxCoord
wxDCBase::DeviceToLogicalY(wxCoord y
) const
2454 return (wxCoord
) (((y
) - m_deviceOriginY
)/(m_logicalScaleY
*m_userScaleY
*m_signY
*m_scaleY
) - m_logicalOriginY
);
2457 wxCoord
wxDCBase::DeviceToLogicalYRel(wxCoord y
) const
2459 // axis orientation is not taken into account for conversion of a distance
2460 return (wxCoord
) ((y
)/(m_logicalScaleY
*m_userScaleY
*m_scaleY
));
2463 wxCoord
wxDCBase::LogicalToDeviceX(wxCoord x
) const
2465 return (wxCoord
) ((x
- m_logicalOriginX
)*m_logicalScaleX
*m_userScaleX
*m_signX
*m_scaleX
+ m_deviceOriginX
);
2468 wxCoord
wxDCBase::LogicalToDeviceXRel(wxCoord x
) const
2470 // axis orientation is not taken into account for conversion of a distance
2471 return (wxCoord
) (x
*m_logicalScaleX
*m_userScaleX
*m_scaleX
);
2474 wxCoord
wxDCBase::LogicalToDeviceY(wxCoord y
) const
2476 return (wxCoord
) ((y
- m_logicalOriginY
)*m_logicalScaleY
*m_userScaleY
*m_signY
*m_scaleY
+ m_deviceOriginY
);
2479 wxCoord
wxDCBase::LogicalToDeviceYRel(wxCoord y
) const
2481 // axis orientation is not taken into account for conversion of a distance
2482 return (wxCoord
) (y
*m_logicalScaleY
*m_userScaleY
*m_scaleY
);
2485 // ---------------------------------------------------------------------------
2487 // ---------------------------------------------------------------------------
2489 bool wxDC::DoBlit( wxCoord vXdest
,
2498 wxCoord
WXUNUSED(vXsrcMask
),
2499 wxCoord
WXUNUSED(vYsrcMask
) )
2501 wxMask
* pMask
= NULL
;
2503 COLORREF vOldTextColor
;
2504 COLORREF vOldBackground
= ::GpiQueryBackColor(m_hPS
);
2508 const wxBitmap
& rBmp
= pSource
->m_vSelectedBitmap
;
2510 pMask
= rBmp
.GetMask();
2511 if (!(rBmp
.Ok() && pMask
&& pMask
->GetMaskBitmap()))
2517 ::GpiQueryAttrs( m_hPS
2522 vOldTextColor
= (COLORREF
)vCbnd
.lColor
;
2524 if (m_textForegroundColour
.Ok())
2526 vCbnd
.lColor
= (LONG
)m_textForegroundColour
.GetPixel();
2527 ::GpiSetAttrs( m_hPS
// presentation-space handle
2528 ,PRIM_CHAR
// Char primitive.
2529 ,CBB_COLOR
// sets color.
2531 ,&vCbnd
// buffer for attributes.
2534 if (m_textBackgroundColour
.Ok())
2536 ::GpiSetBackColor(m_hPS
, (LONG
)m_textBackgroundColour
.GetPixel());
2539 LONG lRop
= ROP_SRCCOPY
;
2543 case wxXOR
: lRop
= ROP_SRCINVERT
; break;
2544 case wxINVERT
: lRop
= ROP_DSTINVERT
; break;
2545 case wxOR_REVERSE
: lRop
= 0x00DD0228; break;
2546 case wxAND_REVERSE
: lRop
= ROP_SRCERASE
; break;
2547 case wxCLEAR
: lRop
= ROP_ZERO
; break;
2548 case wxSET
: lRop
= ROP_ONE
; break;
2549 case wxOR_INVERT
: lRop
= ROP_MERGEPAINT
; break;
2550 case wxAND
: lRop
= ROP_SRCAND
; break;
2551 case wxOR
: lRop
= ROP_SRCPAINT
; break;
2552 case wxEQUIV
: lRop
= 0x00990066; break;
2553 case wxNAND
: lRop
= 0x007700E6; break;
2554 case wxAND_INVERT
: lRop
= 0x00220326; break;
2555 case wxCOPY
: lRop
= ROP_SRCCOPY
; break;
2556 case wxNO_OP
: lRop
= ROP_NOTSRCERASE
; break;
2557 case wxSRC_INVERT
: lRop
= ROP_SRCINVERT
; break;
2558 case wxNOR
: lRop
= ROP_NOTSRCCOPY
; break;
2560 wxFAIL_MSG( wxT("unsupported logical function") );
2569 // Blit bitmap with mask
2573 // Create a temp buffer bitmap and DCs/PSs to access it and the mask
2579 DEVOPENSTRUC vDOP
= {0L, "DISPLAY", NULL
, 0L, 0L, 0L, 0L, 0L, 0L};
2580 BITMAPINFOHEADER2 vBmpHdr
;
2582 SIZEL vSize
= {0, 0};
2585 memset(&vBmpHdr
, 0, sizeof(BITMAPINFOHEADER2
));
2586 vBmpHdr
.cbFix
= sizeof(BITMAPINFOHEADER2
);
2587 vBmpHdr
.cx
= vWidth
;
2588 vBmpHdr
.cy
= vHeight
;
2589 vBmpHdr
.cPlanes
= 1;
2590 vBmpHdr
.cBitCount
= 24;
2592 #if wxUSE_DC_CACHEING
2595 // create a temp buffer bitmap and DCs to access it and the mask
2597 wxDCCacheEntry
* pDCCacheEntry1
= FindDCInCache( NULL
2600 wxDCCacheEntry
* pDCCacheEntry2
= FindDCInCache( pDCCacheEntry1
2603 wxDCCacheEntry
* pBitmapCacheEntry
= FindBitmapInCache( GetHPS()
2608 hPSMask
= pDCCacheEntry1
->m_hPS
;
2609 hDCBuffer
= (HDC
)pDCCacheEntry2
->m_hPS
;
2610 hBufBitmap
= (HBITMAP
)pBitmapCacheEntry
->m_hBitmap
;
2611 wxUnusedVar(hDCMask
);
2615 hDCMask
= ::DevOpenDC(vHabmain
, OD_MEMORY
, "*", 5L, (PDEVOPENDATA
)&vDOP
, NULLHANDLE
);
2616 hDCBuffer
= ::DevOpenDC(vHabmain
, OD_MEMORY
, "*", 5L, (PDEVOPENDATA
)&vDOP
, NULLHANDLE
);
2617 hPSMask
= ::GpiCreatePS(vHabmain
, hDCMask
, &vSize
, PU_PELS
| GPIT_MICRO
| GPIA_ASSOC
);
2618 hPSBuffer
= ::GpiCreatePS(vHabmain
, hDCBuffer
, &vSize
, PU_PELS
| GPIT_MICRO
| GPIA_ASSOC
);
2619 hBufBitmap
= ::GpiCreateBitmap(GetHPS(), &vBmpHdr
, 0L, NULL
, NULL
);
2623 POINTL aPoint1
[4] = { {0, 0}
2626 ,{vXdest
+ vWidth
, vYdest
+ vHeight
}
2628 POINTL aPoint2
[4] = { {0, 0}
2631 ,{vXsrc
+ vWidth
, vYsrc
+ vHeight
}
2633 POINTL aPoint3
[4] = { {vXdest
, vYdest
}
2634 ,{vXdest
+ vWidth
, vYdest
+ vHeight
}
2636 ,{vXsrc
+ vWidth
, vYsrc
+ vHeight
}
2638 POINTL aPoint4
[4] = { {vXdest
, vYdest
}
2639 ,{vXdest
+ vWidth
, vYdest
+ vHeight
}
2643 ::GpiSetBitmap(hPSMask
, (HBITMAP
) pMask
->GetMaskBitmap());
2644 ::GpiSetBitmap(hPSBuffer
, (HBITMAP
) hBufBitmap
);
2647 // Copy dest to buffer
2649 rc
= ::GpiBitBlt( hPSBuffer
2656 if (rc
== GPI_ERROR
)
2658 wxLogLastError(wxT("BitBlt"));
2662 // Copy src to buffer using selected raster op
2664 rc
= ::GpiBitBlt( hPSBuffer
2671 if (rc
== GPI_ERROR
)
2673 wxLogLastError(wxT("BitBlt"));
2677 // Set masked area in buffer to BLACK (pixel value 0)
2679 COLORREF vPrevBkCol
= ::GpiQueryBackColor(GetHPS());
2680 COLORREF vPrevCol
= ::GpiQueryColor(GetHPS());
2682 ::GpiSetBackColor(GetHPS(), OS2RGB(255, 255, 255));
2683 ::GpiSetColor(GetHPS(), OS2RGB(0, 0, 0));
2685 rc
= ::GpiBitBlt( hPSBuffer
2692 if (rc
== GPI_ERROR
)
2694 wxLogLastError(wxT("BitBlt"));
2698 // Set unmasked area in dest to BLACK
2700 ::GpiSetBackColor(GetHPS(), OS2RGB(0, 0, 0));
2701 ::GpiSetColor(GetHPS(), OS2RGB(255, 255, 255));
2702 rc
= ::GpiBitBlt( GetHPS()
2709 if (rc
== GPI_ERROR
)
2711 wxLogLastError(wxT("BitBlt"));
2715 // Restore colours to original values
2717 ::GpiSetBackColor(GetHPS(), vPrevBkCol
);
2718 ::GpiSetColor(GetHPS(), vPrevCol
);
2721 // OR buffer to dest
2723 rc
= ::GpiBitBlt( GetHPS()
2730 if (rc
== GPI_ERROR
)
2733 wxLogLastError(wxT("BitBlt"));
2737 // Tidy up temporary DCs and bitmap
2739 ::GpiSetBitmap(hPSMask
, NULLHANDLE
);
2740 ::GpiSetBitmap(hPSBuffer
, NULLHANDLE
);
2741 #if !wxUSE_DC_CACHEING
2742 ::GpiDestroyPS(hPSMask
);
2743 ::GpiDestroyPS(hPSBuffer
);
2744 ::DevCloseDC(hDCMask
);
2745 ::DevCloseDC(hDCBuffer
);
2746 ::GpiDeleteBitmap(hBufBitmap
);
2750 else // no mask, just BitBlt() it
2752 POINTL aPoint
[4] = { {vXdest
, vYdest
}
2753 ,{vXdest
+ vWidth
, vYdest
+ vHeight
}
2755 ,{vXsrc
+ vWidth
, vYsrc
+ vHeight
}
2758 bSuccess
= (::GpiBitBlt( m_hPS
2767 wxLogLastError(wxT("BitBlt"));
2770 vCbnd
.lColor
= (LONG
)vOldTextColor
;
2771 ::GpiSetAttrs( m_hPS
// presentation-space handle
2772 ,PRIM_CHAR
// Char primitive.
2773 ,CBB_COLOR
// sets color.
2775 ,&vCbnd
// buffer for attributes.
2777 ::GpiSetBackColor(m_hPS
, (LONG
)vOldBackground
);
2781 void wxDC::DoGetSize(
2786 LONG lArray
[CAPS_HEIGHT
];
2788 if(::DevQueryCaps( m_hDC
2794 *pnWidth
= lArray
[CAPS_WIDTH
];
2795 *pnHeight
= lArray
[CAPS_HEIGHT
];
2797 }; // end of wxDC::DoGetSize(
2799 void wxDC::DoGetSizeMM( int* pnWidth
,
2800 int* pnHeight
) const
2802 LONG lArray
[CAPS_VERTICAL_RESOLUTION
];
2804 if(::DevQueryCaps( m_hDC
2806 ,CAPS_VERTICAL_RESOLUTION
2812 int nWidth
= lArray
[CAPS_WIDTH
];
2813 int nHorzRes
= lArray
[CAPS_HORIZONTAL_RESOLUTION
]; // returns pel/meter
2814 *pnWidth
= (nHorzRes
/1000) * nWidth
;
2819 int nHeight
= lArray
[CAPS_HEIGHT
];
2820 int nVertRes
= lArray
[CAPS_VERTICAL_RESOLUTION
]; // returns pel/meter
2821 *pnHeight
= (nVertRes
/1000) * nHeight
;
2824 }; // end of wxDC::DoGetSizeMM
2826 wxSize
wxDC::GetPPI() const
2828 LONG lArray
[CAPS_VERTICAL_RESOLUTION
];
2832 if(::DevQueryCaps( m_hDC
2834 ,CAPS_VERTICAL_RESOLUTION
2843 nPelWidth
= lArray
[CAPS_WIDTH
];
2844 nPelHeight
= lArray
[CAPS_HEIGHT
];
2845 nHorzRes
= lArray
[CAPS_HORIZONTAL_RESOLUTION
]; // returns pel/meter
2846 nVertRes
= lArray
[CAPS_VERTICAL_RESOLUTION
]; // returns pel/meter
2847 nWidth
= (int)((nHorzRes
/39.3) * nPelWidth
);
2848 nHeight
= (int)((nVertRes
/39.3) * nPelHeight
);
2850 wxSize
ppisize(nWidth
, nHeight
);
2852 } // end of wxDC::GetPPI
2854 void wxDC::SetLogicalScale(
2859 m_logicalScaleX
= dX
;
2860 m_logicalScaleY
= dY
;
2861 }; // end of wxDC::SetLogicalScale