Deleted because use f the window driver mechanism.
git-svn-id: file:///fltk/svn/fltk/branches/branch-1.3-porting@11337 ea41ed52-d2ee-0310-a9c1-e6b18d33e121
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//
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// "$Id$"
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//
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// Implementation of Fl_Window::shape(Fl_Image*) for the Fast Light Tool Kit (FLTK).
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//
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// Copyright 2010-2016 by Bill Spitzak and others.
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//
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// This library is free software. Distribution and use rights are outlined in
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// the file "COPYING" which should have been included with this file. If this
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// file is missing or damaged, see the license at:
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//
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// http://www.fltk.org/COPYING.php
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//
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// Please report all bugs and problems to:
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//
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// http://www.fltk.org/str.php
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//
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#include <FL/Fl.H>
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#include <FL/fl_draw.H>
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#include <FL/x.H>
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#include <FL/Fl_Window.H>
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#include <FL/Fl_Bitmap.H>
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#include <FL/Fl_Pixmap.H>
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#include <string.h>
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#if defined(WIN32) || defined(__APPLE__) // PORTME: Fl_Window_Driver - platform window driver
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#elif defined(FL_PORTING)
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# pragma message "FL_PORTING: add code to implement arbitrarily shaped windows"
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#else
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#endif
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#ifdef WIN32
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# include <malloc.h> // needed for VisualC2010
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#elif !defined(__APPLE__) // PORTME: Fl_Window_Driver - platform window driver
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#include <config.h>
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#if HAVE_DLFCN_H
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#include <dlfcn.h>
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#endif
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#define ShapeBounding 0
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#define ShapeSet 0
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#endif
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#if defined(__APPLE__) // PORTME: Fl_Window_Driver - platform window driver
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static void MyProviderReleaseData (void *info, const void *data, size_t size) {
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delete[] (uchar*)data;
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}
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// bitwise inversion of all 4-bit quantities
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static const unsigned char swapped[16] = {0,8,4,12,2,10,6,14,1,9,5,13,3,11,7,15};
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static inline uchar swap_byte(const uchar b) {
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// reverse the order of bits of byte b: 1->8 becomes 8->1
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return (swapped[b & 0xF] << 4) | swapped[b >> 4];
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}
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#elif defined(WIN32)
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static inline BYTE bit(int x) { return (BYTE)(1 << (x%8)); }
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static HRGN bitmap2region(Fl_Image* image) {
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HRGN hRgn = 0;
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/* Does this need to be dynamically determined, perhaps? */
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const int ALLOC_UNIT = 100;
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DWORD maxRects = ALLOC_UNIT;
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RGNDATA* pData = (RGNDATA*)malloc(sizeof(RGNDATAHEADER)+(sizeof(RECT)*maxRects));
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pData->rdh.dwSize = sizeof(RGNDATAHEADER);
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pData->rdh.iType = RDH_RECTANGLES;
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pData->rdh.nCount = pData->rdh.nRgnSize = 0;
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SetRect(&pData->rdh.rcBound, MAXLONG, MAXLONG, 0, 0);
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const int bytesPerLine = (image->w() + 7)/8;
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BYTE* p, *data = (BYTE*)*image->data();
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for (int y = 0; y < image->h(); y++) {
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// each row, left to right
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for (int x = 0; x < image->w(); x++) {
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int x0 = x;
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while (x < image->w()) {
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p = data + x / 8;
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if (!((*p) & bit(x))) break; // transparent pixel
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x++;
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}
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if (x > x0) {
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RECT *pr;
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/* Add the pixels (x0, y) to (x, y+1) as a new rectangle
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* in the region
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*/
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if (pData->rdh.nCount >= maxRects) {
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maxRects += ALLOC_UNIT;
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pData = (RGNDATA*)realloc(pData, sizeof(RGNDATAHEADER)
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+ (sizeof(RECT)*maxRects));
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}
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pr = (RECT*)&pData->Buffer;
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SetRect(&pr[pData->rdh.nCount], x0, y, x, y+1);
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if (x0 < pData->rdh.rcBound.left)
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pData->rdh.rcBound.left = x0;
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if (y < pData->rdh.rcBound.top)
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pData->rdh.rcBound.top = y;
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if (x > pData->rdh.rcBound.right)
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pData->rdh.rcBound.right = x;
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if (y+1 > pData->rdh.rcBound.bottom)
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pData->rdh.rcBound.bottom = y+1;
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pData->rdh.nCount++;
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/* On Windows98, ExtCreateRegion() may fail if the
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* number of rectangles is too large (ie: >
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* 4000). Therefore, we have to create the region by
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* multiple steps.
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*/
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if (pData->rdh.nCount == 2000) {
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HRGN h = ExtCreateRegion(NULL, sizeof(RGNDATAHEADER)
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+ (sizeof(RECT)*maxRects), pData);
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if (hRgn) {
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CombineRgn(hRgn, hRgn, h, RGN_OR);
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DeleteObject(h);
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} else
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hRgn = h;
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pData->rdh.nCount = 0;
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SetRect(&pData->rdh.rcBound, MAXLONG, MAXLONG, 0, 0);
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}
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}
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}
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/* Go to next row */
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data += bytesPerLine;
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}
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/* Create or extend the region with the remaining rectangles*/
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HRGN h = ExtCreateRegion(NULL, sizeof(RGNDATAHEADER)
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+ (sizeof(RECT)*maxRects), pData);
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if (hRgn) {
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CombineRgn(hRgn, hRgn, h, RGN_OR);
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DeleteObject(h);
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} else hRgn = h;
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free(pData); // I've created the region so I can free this now, right?
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return hRgn;
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}
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#elif defined(FL_PORTING)
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# pragma message "FL_PORTING: implement window masks"
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#else
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#ifndef FL_DOXYGEN
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void Fl_Window::combine_mask()
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{
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typedef void (*XShapeCombineMask_type)(Display*, int, int, int, int, Pixmap, int);
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static XShapeCombineMask_type XShapeCombineMask_f = NULL;
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static int beenhere = 0;
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typedef Bool (*XShapeQueryExtension_type)(Display*, int*, int*);
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if (!beenhere) {
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beenhere = 1;
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#if HAVE_DLSYM && HAVE_DLFCN_H
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fl_open_display();
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void *handle = dlopen(NULL, RTLD_LAZY); // search symbols in executable
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XShapeQueryExtension_type XShapeQueryExtension_f = (XShapeQueryExtension_type)dlsym(handle, "XShapeQueryExtension");
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XShapeCombineMask_f = (XShapeCombineMask_type)dlsym(handle, "XShapeCombineMask");
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// make sure that the X server has the SHAPE extension
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int error_base, shapeEventBase;
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if ( !( XShapeQueryExtension_f && XShapeCombineMask_f &&
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XShapeQueryExtension_f(fl_display, &shapeEventBase, &error_base) ) ) XShapeCombineMask_f = NULL;
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#endif
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}
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if (!XShapeCombineMask_f) return;
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shape_data_->lw_ = w();
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shape_data_->lh_ = h();
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Fl_Image* temp = shape_data_->shape_->copy(shape_data_->lw_, shape_data_->lh_);
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Pixmap pbitmap = XCreateBitmapFromData(fl_display, fl_xid(this),
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(const char*)*temp->data(),
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temp->w(), temp->h());
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XShapeCombineMask_f(fl_display, fl_xid(this), ShapeBounding, 0, 0, pbitmap, ShapeSet);
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if (pbitmap != None) XFreePixmap(fl_display, pbitmap);
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delete temp;
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}
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#endif // !FL_DOXYGEN
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#endif // __APPLE__ // PORTME: Fl_Window_Driver - platform window driver
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void Fl_Window::shape_bitmap_(Fl_Image* b) {
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shape_data_->shape_ = b;
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#if defined(__APPLE__) // PORTME: Fl_Window_Driver - platform window driver
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if (b) {
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// complement mask bits and perform bitwise inversion of all bytes and also reverse top and bottom
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int bytes_per_row = (b->w() + 7)/8;
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uchar *from = new uchar[bytes_per_row * b->h()];
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for (int i = 0; i < b->h(); i++) {
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uchar *p = (uchar*)(*b->data()) + bytes_per_row * i;
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uchar *last = p + bytes_per_row;
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uchar *q = from + (b->h() - 1 - i) * bytes_per_row;
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while (p < last) {
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*q++ = swap_byte(~*p++);
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}
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}
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CGDataProviderRef provider = CGDataProviderCreateWithData(NULL, from, bytes_per_row * b->h(), MyProviderReleaseData);
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shape_data_->mask = CGImageMaskCreate(b->w(), b->h(), 1, 1, bytes_per_row, provider, NULL, false);
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CFRelease(provider);
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}
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#endif
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}
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#if defined(__APPLE__) // on the mac, use an 8-bit mask // PORTME: Fl_Window_Driver - platform window driver
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/* the image can be of any depth
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offset gives the byte offset from the pixel start to the byte used to construct the shape
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*/
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void Fl_Window::shape_alpha_(Fl_Image* img, int offset) {
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int i, d = img->d(), w = img->w(), h = img->h();
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shape_data_->shape_ = img;
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if (shape_data_->shape_) {
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// reverse top and bottom and convert to gray scale if img->d() == 3 and complement bits
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int bytes_per_row = w * d;
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uchar *from = new uchar[w * h];
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for ( i = 0; i < h; i++) {
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uchar *p = (uchar*)(*img->data()) + bytes_per_row * i + offset;
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uchar *last = p + bytes_per_row;
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uchar *q = from + (h - 1 - i) * w;
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while (p < last) {
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if (d == 3) {
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unsigned u = *p++;
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u += *p++;
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u += *p++;
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*q++ = ~(u/3);
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}
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else {
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*q++ = ~(*p);
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p += d;
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}
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}
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}
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CGDataProviderRef provider = CGDataProviderCreateWithData(NULL, from, w * h, MyProviderReleaseData);
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shape_data_->mask = CGImageMaskCreate(w, h, 8, 8, w, provider, NULL, false);
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CFRelease(provider);
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}
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}
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#else
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/* the img image can be of any depth
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offset gives the byte offset from the pixel start to the byte used to construct the shape
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*/
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void Fl_Window::shape_alpha_(Fl_Image* img, int offset) {
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int i, j, d = img->d(), w = img->w(), h = img->h(), bytesperrow = (w+7)/8;
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unsigned u;
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uchar byte, onebit;
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// build an Fl_Bitmap covering the non-fully transparent/black part of the image
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const uchar* bits = new uchar[h*bytesperrow]; // to store the bitmap
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const uchar* alpha = (const uchar*)*img->data() + offset; // points to alpha value of rgba pixels
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for (i = 0; i < h; i++) {
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uchar *p = (uchar*)bits + i * bytesperrow;
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byte = 0;
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onebit = 1;
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for (j = 0; j < w; j++) {
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if (d == 3) {
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u = *alpha;
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u += *(alpha+1);
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u += *(alpha+2);
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}
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else u = *alpha;
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if (u > 0) { // if the pixel is not fully transparent/black
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byte |= onebit; // turn on the corresponding bit of the bitmap
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}
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onebit = onebit << 1; // move the single set bit one position to the left
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if (onebit == 0 || j == w-1) {
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onebit = 1;
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*p++ = byte; // store in bitmap one pack of bits
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byte = 0;
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}
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alpha += d; // point to alpha value of next pixel
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}
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}
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Fl_Bitmap* bitmap = new Fl_Bitmap(bits, w, h);
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bitmap->alloc_array = 1;
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shape_bitmap_(bitmap);
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shape_data_->todelete_ = bitmap;
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}
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#endif
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void Fl_Window::shape_pixmap_(Fl_Image* pixmap) {
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Fl_RGB_Image* rgba = new Fl_RGB_Image((Fl_Pixmap*)pixmap);
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shape_alpha_(rgba, 3);
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delete rgba;
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}
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/** Assigns a non-rectangular shape to the window.
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This function gives an arbitrary shape (not just a rectangular region) to an Fl_Window.
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An Fl_Image of any dimension can be used as mask; it is rescaled to the window's dimension as needed.
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The layout and widgets inside are unaware of the mask shape, and most will act as though the window's
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rectangular bounding box is available
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to them. It is up to you to make sure they adhere to the bounds of their masking shape.
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The \p img argument can be an Fl_Bitmap, Fl_Pixmap, Fl_RGB_Image or Fl_Shared_Image:
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\li With Fl_Bitmap or Fl_Pixmap, the shaped window covers the image part where bitmap bits equal one,
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or where the pixmap is not fully transparent.
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\li With an Fl_RGB_Image with an alpha channel (depths 2 or 4), the shaped window covers the image part
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that is not fully transparent.
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\li With an Fl_RGB_Image of depth 1 (gray-scale) or 3 (RGB), the shaped window covers the non-black image part.
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\li With an Fl_Shared_Image, the shape is determined by rules above applied to the underlying image.
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The shared image should not have been scaled through Fl_Shared_Image::scale().
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Platform details:
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\li On the unix/linux platform, the SHAPE extension of the X server is required.
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This function does control the shape of Fl_Gl_Window instances.
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\li On the MSWindows platform, this function does nothing with class Fl_Gl_Window.
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\li On the Mac platform, OS version 10.4 or above is required.
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An 8-bit shape-mask is used when \p img is an Fl_RGB_Image:
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with depths 2 or 4, the image alpha channel becomes the shape mask such that areas with alpha = 0
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are out of the shaped window;
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with depths 1 or 3, white and black are in and out of the
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shaped window, respectively, and other colors give intermediate masking scores.
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This function does nothing with class Fl_Gl_Window.
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The window borders and caption created by the window system are turned off by default. They
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can be re-enabled by calling Fl_Window::border(1).
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A usage example is found at example/shapedwindow.cxx.
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\version 1.3.3 (and requires compilation with FL_ABI_VERSION >= 10303)
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*/
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void Fl_Window::shape(const Fl_Image* img) {
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if (shape_data_) {
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if (shape_data_->todelete_) { delete shape_data_->todelete_; }
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#if defined(__APPLE__) // PORTME: Fl_Window_Driver - platform window driver
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if (shape_data_->mask) { CGImageRelease(shape_data_->mask); }
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#endif
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}
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else {
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shape_data_ = new shape_data_type;
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}
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memset(shape_data_, 0, sizeof(shape_data_type));
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border(false);
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int d = img->d();
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if (d && img->count() >= 2) shape_pixmap_((Fl_Image*)img);
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else if (d == 0) shape_bitmap_((Fl_Image*)img);
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else if (d == 2 || d == 4) shape_alpha_((Fl_Image*)img, d - 1);
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else if ((d == 1 || d == 3) && img->count() == 1) shape_alpha_((Fl_Image*)img, 0);
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}
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void Fl_Window::draw() {
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#if defined(__APPLE__)
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CGContextRef gc = (CGContextRef)Fl_Display_Device::display_device()->driver()->gc();
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#endif
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if (shape_data_) {
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# if defined(__APPLE__) && MAC_OS_X_VERSION_MAX_ALLOWED >= MAC_OS_X_VERSION_10_4
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if (shape_data_->mask && (&CGContextClipToMask != NULL)) {
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CGContextClipToMask(gc, CGRectMake(0,0,w(),h()), shape_data_->mask); // requires Mac OS 10.4
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}
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CGContextSaveGState(gc);
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#elif defined(WIN32)
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if ((shape_data_->lw_ != w() || shape_data_->lh_ != h()) && shape_data_->shape_) {
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// size of window has changed since last time
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shape_data_->lw_ = w();
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shape_data_->lh_ = h();
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Fl_Image* temp = shape_data_->shape_->copy(shape_data_->lw_, shape_data_->lh_);
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HRGN region = bitmap2region(temp);
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SetWindowRgn(fl_xid(this), region, TRUE); // the system deletes the region when it's no longer needed
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delete temp;
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}
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#elif defined(USE_X11)
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if (( shape_data_->lw_ != w() || shape_data_->lh_ != h() ) && shape_data_->shape_) {
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// size of window has changed since last time
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combine_mask();
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}
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# endif
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||||
}
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||||
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// The following is similar to Fl_Group::draw(), but ...
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//
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// - draws the box at (0,0), i.e. with x=0 and y=0 instead of x() and y()
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// - does NOT draw the label (text)
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// - draws the image only if FL_ALIGN_INSIDE is set
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//
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// Note: The label (text) of top level windows is drawn in the title bar.
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// Other windows do not draw their labels at all, unless drawn by their
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// parent widgets or by special draw() methods (derived classes).
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if (damage() & ~FL_DAMAGE_CHILD) { // draw the entire thing
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draw_box(box(),0,0,w(),h(),color()); // draw box with x/y = 0
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if (image() && (align() & FL_ALIGN_INSIDE)) { // draw the image only
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Fl_Label l1;
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memset(&l1,0,sizeof(l1));
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l1.align_ = align();
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l1.image = image();
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if (!active_r() && l1.image && l1.deimage) l1.image = l1.deimage;
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l1.type = labeltype();
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l1.draw(0,0,w(),h(),align());
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||||
}
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||||
}
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||||
draw_children();
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||||
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#ifdef __APPLE_QUARTZ__ // PORTME: Fl_Window_Driver - platform window driver
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||||
// on OS X, windows have no frame. Before OS X 10.7, to resize a window, we drag the lower right
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||||
// corner. This code draws a little ribbed triangle for dragging.
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||||
if (fl_mac_os_version < 100700 && gc && !parent() && resizable() &&
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||||
(!size_range_set || minh!=maxh || minw!=maxw)) {
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||||
int dx = Fl::box_dw(box())-Fl::box_dx(box());
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||||
int dy = Fl::box_dh(box())-Fl::box_dy(box());
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if (dx<=0) dx = 1;
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if (dy<=0) dy = 1;
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int x1 = w()-dx-1, x2 = x1, y1 = h()-dx-1, y2 = y1;
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Fl_Color c[4] = {
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||||
color(),
|
||||
fl_color_average(color(), FL_WHITE, 0.7f),
|
||||
fl_color_average(color(), FL_BLACK, 0.6f),
|
||||
fl_color_average(color(), FL_BLACK, 0.8f),
|
||||
};
|
||||
int i;
|
||||
for (i=dx; i<12; i++) {
|
||||
fl_color(c[i&3]);
|
||||
fl_line(x1--, y1, x2, y2--);
|
||||
}
|
||||
}
|
||||
#endif
|
||||
# if defined(__APPLE__) && MAC_OS_X_VERSION_MAX_ALLOWED >= MAC_OS_X_VERSION_10_4
|
||||
if (shape_data_) CGContextRestoreGState(gc);
|
||||
# endif
|
||||
|
||||
# if defined(FLTK_USE_CAIRO)
|
||||
Fl::cairo_make_current(this); // checkout if an update is necessary
|
||||
# endif
|
||||
}
|
||||
|
||||
|
||||
|
||||
//
|
||||
// End of "$Id$".
|
||||
//
|
Loading…
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Reference in New Issue
Block a user