1 | /****************************************************************************
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2 | ** $Id: qpixmap_pm.cpp 124 2006-09-12 21:25:42Z dmik $
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3 | **
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4 | ** Implementation of QPixmap class for OS/2
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5 | **
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6 | ** Copyright (C) 1992-2002 Trolltech AS. All rights reserved.
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7 | ** Copyright (C) 2004 Norman ASA. Initial OS/2 Port.
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8 | ** Copyright (C) 2005 netlabs.org. Further OS/2 Development.
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9 | **
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10 | ** This file is part of the kernel module of the Qt GUI Toolkit.
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11 | **
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12 | ** This file may be distributed under the terms of the Q Public License
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13 | ** as defined by Trolltech AS of Norway and appearing in the file
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14 | ** LICENSE.QPL included in the packaging of this file.
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15 | **
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16 | ** This file may be distributed and/or modified under the terms of the
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17 | ** GNU General Public License version 2 as published by the Free Software
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18 | ** Foundation and appearing in the file LICENSE.GPL included in the
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19 | ** packaging of this file.
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20 | **
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21 | ** Licensees holding valid Qt Enterprise Edition or Qt Professional Edition
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22 | ** licenses may use this file in accordance with the Qt Commercial License
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23 | ** Agreement provided with the Software.
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24 | **
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25 | ** This file is provided AS IS with NO WARRANTY OF ANY KIND, INCLUDING THE
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26 | ** WARRANTY OF DESIGN, MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
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27 | **
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28 | ** See http://www.trolltech.com/pricing.html or email sales@trolltech.com for
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29 | ** information about Qt Commercial License Agreements.
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30 | ** See http://www.trolltech.com/qpl/ for QPL licensing information.
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31 | ** See http://www.trolltech.com/gpl/ for GPL licensing information.
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32 | **
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33 | ** Contact info@trolltech.com if any conditions of this licensing are
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34 | ** not clear to you.
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35 | **
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36 | **********************************************************************/
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37 |
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38 | #include "qbitmap.h"
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39 | #include "qimage.h"
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40 | #include "qpaintdevicemetrics.h"
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41 | #include "qwmatrix.h"
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42 | #include "qapplication.h"
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43 | #include "qapplication_p.h"
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44 | #include "qt_os2.h"
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45 |
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46 | extern const uchar *qt_get_bitflip_array(); // defined in qimage.cpp
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47 |
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48 | static inline HPS alloc_mem_ps( int w, int h, HPS compat = 0 )
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49 | {
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50 | HDC hdcCompat = 0;
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51 | if ( compat )
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52 | hdcCompat = GpiQueryDevice( compat );
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53 |
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54 | static const PSZ hdcData[4] = { "Display", NULL, NULL, NULL };
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55 | HDC hdc = DevOpenDC( 0, OD_MEMORY, "*", 4, (PDEVOPENDATA) hdcData, hdcCompat );
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56 | if ( !hdc ) {
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57 | #if defined(QT_CHECK_NULL)
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58 | qSystemWarning( "alloc_mem_dc: DevOpenDC failed!" );
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59 | #endif
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60 | return 0;
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61 | }
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62 | SIZEL size = { w, h };
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63 | HPS hps = GpiCreatePS( 0, hdc, &size, PU_PELS | GPIA_ASSOC | GPIT_MICRO );
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64 | if ( !hps ) {
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65 | #if defined(QT_CHECK_NULL)
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66 | qSystemWarning( "alloc_mem_dc: GpiCreatePS failed!" );
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67 | #endif
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68 | return 0;
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69 | }
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70 | if ( QColor::hPal() ) {
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71 | GpiSelectPalette( hps, QColor::hPal() );
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72 | } else {
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73 | // direct RGB mode
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74 | GpiCreateLogColorTable( hps, 0, LCOLF_RGB, 0, 0, NULL );
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75 | }
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76 | return hps;
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77 | }
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78 |
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79 | static inline void free_mem_ps( HPS hps )
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80 | {
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81 | HDC hdc = GpiQueryDevice( hps );
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82 | GpiAssociate( hps, 0 );
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83 | GpiDestroyPS( hps );
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84 | DevCloseDC( hdc );
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85 | }
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86 |
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87 | extern HPS qt_alloc_mem_ps( int w, int h, HPS compat = 0 )
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88 | {
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89 | return alloc_mem_ps( w, h, compat );
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90 | }
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91 |
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92 | extern void qt_free_mem_ps( HPS hps )
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93 | {
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94 | free_mem_ps( hps );
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95 | }
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96 |
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97 |
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98 | void QPixmap::init( int w, int h, int d, bool bitmap, Optimization optim )
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99 | {
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100 | #if defined(QT_CHECK_STATE)
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101 | if ( qApp->type() == QApplication::Tty ) {
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102 | qWarning( "QPixmap: Cannot create a QPixmap when no GUI "
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103 | "is being used" );
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104 | }
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105 | #endif
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106 |
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107 | static int serial = 0;
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108 | const int dd = defaultDepth();
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109 |
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110 | if ( optim == DefaultOptim ) // use default optimization
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111 | optim = defOptim;
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112 |
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113 | data = new QPixmapData;
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114 | Q_CHECK_PTR( data );
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115 |
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116 | memset( data, 0, sizeof(QPixmapData) );
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117 | data->count = 1;
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118 | data->uninit = TRUE;
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119 | data->bitmap = bitmap;
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120 | data->ser_no = ++serial;
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121 | data->optim = optim;
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122 |
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123 | bool make_null = w == 0 || h == 0; // create null pixmap
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124 | if ( d == 1 ) // monocrome pixmap
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125 | data->d = 1;
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126 | else if ( d < 0 || d == dd ) // compatible pixmap
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127 | data->d = dd;
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128 | if ( make_null || w < 0 || h < 0 || data->d == 0 ) {
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129 | hps = 0;
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130 | data->hbm = 0;
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131 | #if defined(QT_CHECK_RANGE)
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132 | if ( !make_null ) // invalid parameters
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133 | qWarning( "QPixmap: Invalid pixmap parameters" );
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134 | #endif
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135 | return;
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136 | }
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137 | data->w = w;
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138 | data->h = h;
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139 |
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140 | hps = alloc_mem_ps( w, h );
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141 | BITMAPINFOHEADER2 bmh;
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142 | memset( &bmh, 0, sizeof(BITMAPINFOHEADER2) );
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143 | bmh.cbFix = sizeof(BITMAPINFOHEADER2);
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144 | bmh.cx = w;
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145 | bmh.cy = h;
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146 | bmh.cPlanes = 1;
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147 | if ( data->d == 1 ) // monocrome bitmap
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148 | bmh.cBitCount = 1;
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149 | else // compatible bitmap
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150 | bmh.cBitCount = dd;
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151 | data->hbm = GpiCreateBitmap( hps, &bmh, 0, NULL, NULL );
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152 |
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153 | if ( !data->hbm ) {
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154 | data->w = 0;
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155 | data->h = 0;
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156 | free_mem_ps( hps );
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157 | hps = 0;
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158 | #if defined(QT_CHECK_NULL)
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159 | qSystemWarning( "QPixmap: Pixmap allocation failed" );
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160 | #endif
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161 | return;
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162 | }
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163 |
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164 | GpiSetBitmap( hps, data->hbm );
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165 | }
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166 |
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167 |
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168 | void QPixmap::deref()
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169 | {
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170 | if ( data && data->deref() ) { // last reference lost
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171 | if ( hps )
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172 | GpiSetBitmap( hps, 0 );
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173 | if ( data->hasRealAlpha && data->realAlphaBits ) {
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174 | delete[] data->realAlphaBits;
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175 | data->realAlphaBits = 0;
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176 | }
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177 | if ( data->mask ) {
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178 | delete data->mask;
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179 | if ( data->maskedHbm ) {
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180 | GpiDeleteBitmap( data->maskedHbm );
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181 | data->maskedHbm = 0;
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182 | }
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183 | }
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184 | if ( data->hbm ) {
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185 | GpiDeleteBitmap( data->hbm );
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186 | data->hbm = 0;
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187 | }
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188 | if ( hps ) {
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189 | free_mem_ps( hps );
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190 | hps = 0;
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191 | }
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192 | delete data;
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193 | data = 0;
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194 | }
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195 | }
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196 |
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197 |
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198 | QPixmap::QPixmap( int w, int h, const uchar *bits, bool isXbitmap )
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199 | : QPaintDevice( QInternal::Pixmap )
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200 | { // for bitmaps only
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201 | init( 0, 0, 0, FALSE, NormalOptim );
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202 | if ( w <= 0 || h <= 0 ) // create null pixmap
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203 | return;
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204 |
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205 | data->uninit = FALSE;
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206 | data->w = w;
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207 | data->h = h;
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208 | data->d = 1;
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209 |
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210 | int bitsbpl = (w + 7) / 8; // original # bytes per line
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211 |
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212 | int bpl = ((w + 31) / 32) * 4; // bytes per scanline,
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213 | // doubleword aligned
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214 |
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215 | uchar *newbits = new uchar[bpl*h];
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216 | uchar *p = newbits + bpl*(h - 1); // last scanline
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217 | int x, y, pad;
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218 | pad = bpl - bitsbpl;
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219 | const uchar *f = isXbitmap ? qt_get_bitflip_array() : 0;
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220 |
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221 | // flip bit order if Xbitmap and flip bitmap top to bottom
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222 | for ( y=0; y<h; y++ ) {
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223 | if ( f ) {
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224 | for ( x=0; x<bitsbpl; x++ )
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225 | *p++ = f[*bits++];
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226 | for ( x=0; x<pad; x++ )
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227 | *p++ = 0;
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228 | p -= bpl;
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229 | } else {
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230 | memcpy( p, bits, bitsbpl );
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231 | memset( p + bitsbpl, 0, pad );
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232 | bits += bitsbpl;
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233 | }
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234 | p -= bpl;
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235 | }
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236 |
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237 | hps = alloc_mem_ps( w, h );
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238 | // allocate header + 2 palette entries
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239 | char *bmi_data = new char[ sizeof(BITMAPINFOHEADER2) + 4 * 2 ];
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240 | memset( bmi_data, 0, sizeof(BITMAPINFOHEADER2) );
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241 | BITMAPINFOHEADER2 &bmh = *(PBITMAPINFOHEADER2) bmi_data;
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242 | PULONG pal = (PULONG) (bmi_data + sizeof(BITMAPINFOHEADER2));
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243 | bmh.cbFix = sizeof(BITMAPINFOHEADER2);
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244 | bmh.cx = w;
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245 | bmh.cy = h;
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246 | bmh.cPlanes = 1;
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247 | bmh.cBitCount = 1;
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248 | bmh.cclrUsed = 2;
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249 | pal[0] = 0;
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250 | pal[1] = 0x00FFFFFF;
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251 | data->hbm = GpiCreateBitmap(
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252 | hps, &bmh, CBM_INIT, (PBYTE) newbits, (PBITMAPINFO2) bmi_data
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253 | );
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254 |
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255 | GpiSetBitmap( hps, data->hbm );
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256 |
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257 | delete [] bmi_data;
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258 | delete [] newbits;
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259 | if ( defOptim != NormalOptim )
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260 | setOptimization( defOptim );
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261 | }
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262 |
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263 |
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264 | void QPixmap::detach()
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265 | {
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266 | if ( data->uninit || data->count == 1 )
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267 | data->uninit = FALSE;
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268 | else
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269 | *this = copy();
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270 | }
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271 |
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272 |
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273 | int QPixmap::defaultDepth()
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274 | {
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275 | static int dd = 0;
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276 | if ( dd == 0 ) {
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277 | LONG formats[ 2 ];
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278 | GpiQueryDeviceBitmapFormats( qt_display_ps(), 2, formats );
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279 | dd = formats[ 0 ] * formats[ 1 ];
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280 | }
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281 | return dd;
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282 | }
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283 |
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284 |
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285 | void QPixmap::setOptimization( Optimization optimization )
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286 | {
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287 | if ( optimization == data->optim )
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288 | return;
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289 | detach();
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290 | data->optim = optimization == DefaultOptim ?
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291 | defOptim : optimization;
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292 | }
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293 |
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294 |
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295 | void QPixmap::fill( const QColor &fillColor )
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296 | {
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297 | if ( isNull() )
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298 | return;
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299 | detach(); // detach other references
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300 |
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301 | const ULONG AreaAttrs = ABB_COLOR | ABB_MIX_MODE | ABB_SET | ABB_SYMBOL;
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302 | AREABUNDLE oldAb;
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303 | GpiQueryAttrs( hps, PRIM_AREA, AreaAttrs, (PBUNDLE) &oldAb );
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304 | AREABUNDLE newAb;
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305 | newAb.lColor = fillColor.pixel();
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306 | newAb.usMixMode = FM_OVERPAINT;
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307 | newAb.usSet = LCID_DEFAULT;
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308 | newAb.usSymbol = PATSYM_SOLID;
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309 | GpiSetAttrs( hps, PRIM_AREA, AreaAttrs, 0, (PBUNDLE) &newAb );
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310 | POINTL ptl = { 0, 0 };
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311 | GpiMove( hps, &ptl );
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312 | ptl.x = data->w - 1;
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313 | ptl.y = data->h - 1;
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314 | GpiBox( hps, DRO_FILL, &ptl, 0, 0 );
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315 | GpiSetAttrs( hps, PRIM_AREA, AreaAttrs, 0, (PBUNDLE) &newAb );
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316 | }
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317 |
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318 |
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319 | int QPixmap::metric( int m ) const
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320 | {
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321 | if ( m == QPaintDeviceMetrics::PdmWidth ) {
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322 | return width();
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323 | } else if ( m == QPaintDeviceMetrics::PdmHeight ) {
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324 | return height();
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325 | } else {
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326 | LONG val;
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327 | HDC hdc = GpiQueryDevice( hps );
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328 | switch ( m ) {
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329 | case QPaintDeviceMetrics::PdmDpiX:
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330 | DevQueryCaps( hdc, CAPS_HORIZONTAL_FONT_RES, 1, &val );
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331 | break;
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332 | case QPaintDeviceMetrics::PdmDpiY:
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333 | DevQueryCaps( hdc, CAPS_VERTICAL_FONT_RES, 1, &val );
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334 | break;
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335 | case QPaintDeviceMetrics::PdmWidthMM:
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336 | DevQueryCaps( hdc, CAPS_HORIZONTAL_RESOLUTION, 1, &val );
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337 | val = width() * 1000 / val;
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338 | break;
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339 | case QPaintDeviceMetrics::PdmHeightMM:
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340 | DevQueryCaps( hdc, CAPS_VERTICAL_RESOLUTION, 1, &val );
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341 | val = width() * 1000 / val;
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342 | break;
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343 | case QPaintDeviceMetrics::PdmNumColors:
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344 | if (depth() == 1) {
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345 | // it's a monochrome bitmap
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346 | val = 1;
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347 | } else {
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348 | DevQueryCaps( hdc, CAPS_COLORS, 1, &val );
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349 | }
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350 | break;
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351 | case QPaintDeviceMetrics::PdmDepth:
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352 | val = depth();
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353 | break;
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354 | default:
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355 | val = 0;
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356 | #if defined(QT_CHECK_RANGE)
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357 | qWarning( "QPixmap::metric: Invalid metric command" );
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358 | #endif
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359 | }
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360 | return val;
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361 | }
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362 | }
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363 |
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364 | QImage QPixmap::convertToImage() const
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365 | {
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366 | if ( isNull() )
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367 | return QImage(); // null image
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368 |
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369 | int w = width();
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370 | int h = height();
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371 | const QBitmap *m = data->hasRealAlpha ? 0 : mask();
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372 | int d = depth();
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373 | int ncols = 2;
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374 |
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375 | if ( d > 1 && d <= 8 ) { // set to nearest valid depth
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376 | d = 8; // 2..7 ==> 8
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377 | ncols = 256;
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378 | } else if ( d > 8 ) {
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379 | d = 32; // > 8 ==> 32
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380 | ncols = 0;
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381 | // Note: even if trueColorDepth() != 32 here, we don't return hoping
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382 | // that the video driver can at least convert from/to 32-bpp bitmaps
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383 | // (which is the case for SNAP that doesn't report 32-bpp as the
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384 | // supported depth when a lower color depth is specified in Screen
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385 | // settings, but works well when converting).
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386 | }
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387 |
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388 | QImage image( w, h, d, ncols, QImage::BigEndian );
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389 |
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390 | // allocate header + ncols palette entries
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391 | char *bmi_data = new char[ sizeof(BITMAPINFOHEADER2) + 4 * ncols ];
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392 | memset( bmi_data, 0, sizeof(BITMAPINFOHEADER2) );
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393 | BITMAPINFOHEADER2 &bmh = *(PBITMAPINFOHEADER2) bmi_data;
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394 | PULONG pal = (PULONG) (bmi_data + sizeof(BITMAPINFOHEADER2));
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395 | bmh.cbFix = sizeof(BITMAPINFOHEADER2);
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396 | bmh.cx = w;
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397 | bmh.cy = h;
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398 | bmh.cPlanes = 1;
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399 | bmh.cBitCount = d;
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400 | bmh.cclrUsed = ncols;
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401 | GpiQueryBitmapBits( hps, 0, h, (PBYTE) image.bits(), (PBITMAPINFO2) bmi_data );
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402 |
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403 | if ( data->hasRealAlpha ) {
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404 | if ( data->realAlphaBits ) {
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405 | // incorporate the alpha channel to image data
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406 | // (see comments in convertFromImage() for details)
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407 | uchar *src = data->realAlphaBits;
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408 | int y = 0;
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409 | while ( y < image.height() ) {
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410 | uchar *dst = image.scanLine( y++ );
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411 | uchar *end = dst + image.bytesPerLine();
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412 | dst += 3;
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413 | while ( dst < end ) {
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414 | *dst = *(src++);
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415 | dst += 4;
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416 | }
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417 | }
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418 | }
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419 | image.setAlphaBuffer( TRUE );
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420 | }
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421 |
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422 | // flip the image top to bottom
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423 | {
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424 | int bpl = image.bytesPerLine();
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425 | uchar *line = new uchar[bpl];
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426 | uchar *top = image.scanLine( 0 );
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427 | uchar *bottom = image.scanLine( h - 1 );
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428 | while( top < bottom ) {
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429 | memcpy( line, top, bpl );
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430 | memcpy( top, bottom, bpl );
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431 | memcpy( bottom, line, bpl );
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432 | top += bpl;
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433 | bottom -= bpl;
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434 | }
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435 | delete [] line;
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436 | }
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437 |
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438 | if ( d == 1 ) {
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439 | // use a white/black palette for monochrome pixmaps (istead of
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440 | // black/white supplied by GPI) to make the result of possible
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441 | // converson to a higher depth compatible with other platforms.
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442 | if ( m ) {
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443 | image.setAlphaBuffer( TRUE );
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444 | image.setColor( 0, qRgba( 255, 255, 255, 0 ) );
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445 | image.setColor( 1, qRgba( 0, 0, 0, 255 ) );
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446 | } else {
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447 | image.setColor( 0, qRgb( 255, 255, 255 ) );
|
---|
448 | image.setColor( 1, qRgb( 0, 0, 0 ) );
|
---|
449 | }
|
---|
450 | } else {
|
---|
451 | for ( int i=0; i<ncols; i++ ) { // copy color table
|
---|
452 | PRGB2 r = (PRGB2) &pal[i];
|
---|
453 | if ( m )
|
---|
454 | image.setColor( i, qRgba(r->bRed,
|
---|
455 | r->bGreen,
|
---|
456 | r->bBlue,255) );
|
---|
457 | else
|
---|
458 | image.setColor( i, qRgb(r->bRed,
|
---|
459 | r->bGreen,
|
---|
460 | r->bBlue) );
|
---|
461 | }
|
---|
462 | }
|
---|
463 |
|
---|
464 | delete [] bmi_data;
|
---|
465 |
|
---|
466 | if ( d != 1 && m ) {
|
---|
467 | image.setAlphaBuffer(TRUE);
|
---|
468 | QImage msk = m->convertToImage();
|
---|
469 |
|
---|
470 | switch ( d ) {
|
---|
471 | case 8: {
|
---|
472 | int used[256];
|
---|
473 | memset( used, 0, sizeof(int)*256 );
|
---|
474 | uchar* p = image.bits();
|
---|
475 | int l = image.numBytes();
|
---|
476 | while (l--) {
|
---|
477 | used[*p++]++;
|
---|
478 | }
|
---|
479 | int trans=0;
|
---|
480 | int bestn=INT_MAX;
|
---|
481 | for ( int i=0; i<256; i++ ) {
|
---|
482 | if ( used[i] < bestn ) {
|
---|
483 | bestn = used[i];
|
---|
484 | trans = i;
|
---|
485 | if ( !bestn )
|
---|
486 | break;
|
---|
487 | }
|
---|
488 | }
|
---|
489 | image.setColor( trans, image.color(trans)&0x00ffffff );
|
---|
490 | for ( int y=0; y<image.height(); y++ ) {
|
---|
491 | uchar* mb = msk.scanLine(y);
|
---|
492 | uchar* ib = image.scanLine(y);
|
---|
493 | uchar bit = 0x80;
|
---|
494 | int i=image.width();
|
---|
495 | while (i--) {
|
---|
496 | if ( !(*mb & bit) )
|
---|
497 | *ib = trans;
|
---|
498 | bit /= 2; if ( !bit ) mb++,bit = 0x80; // ROL
|
---|
499 | ib++;
|
---|
500 | }
|
---|
501 | }
|
---|
502 | } break;
|
---|
503 | case 32: {
|
---|
504 | for ( int y=0; y<image.height(); y++ ) {
|
---|
505 | uchar* mb = msk.scanLine(y);
|
---|
506 | QRgb* ib = (QRgb*)image.scanLine(y);
|
---|
507 | uchar bit = 0x80;
|
---|
508 | int i=image.width();
|
---|
509 | while (i--) {
|
---|
510 | if ( *mb & bit )
|
---|
511 | *ib |= 0xff000000;
|
---|
512 | else
|
---|
513 | *ib &= 0x00ffffff;
|
---|
514 | bit /= 2; if ( !bit ) mb++,bit = 0x80; // ROL
|
---|
515 | ib++;
|
---|
516 | }
|
---|
517 | }
|
---|
518 | } break;
|
---|
519 | }
|
---|
520 | }
|
---|
521 |
|
---|
522 | return image;
|
---|
523 | }
|
---|
524 |
|
---|
525 | bool QPixmap::convertFromImage( const QImage &img, int conversion_flags )
|
---|
526 | {
|
---|
527 | if ( img.isNull() ) {
|
---|
528 | #if defined(QT_CHECK_NULL)
|
---|
529 | qWarning( "QPixmap::convertFromImage: Cannot convert a null image" );
|
---|
530 | #endif
|
---|
531 | return FALSE;
|
---|
532 | }
|
---|
533 |
|
---|
534 | QImage image = img;
|
---|
535 | int d = image.depth();
|
---|
536 | int dd = defaultDepth();
|
---|
537 | bool force_mono = (dd == 1 || isQBitmap() ||
|
---|
538 | (conversion_flags & ColorMode_Mask)==MonoOnly );
|
---|
539 |
|
---|
540 | if ( force_mono ) { // must be monochrome
|
---|
541 | if ( d != 1 ) { // dither
|
---|
542 | image = image.convertDepth( 1, conversion_flags );
|
---|
543 | d = 1;
|
---|
544 | }
|
---|
545 | } else { // can be both
|
---|
546 | bool conv8 = FALSE;
|
---|
547 | if ( d > 8 && dd <= 8 ) { // convert to 8 bit
|
---|
548 | if ( (conversion_flags & DitherMode_Mask) == AutoDither )
|
---|
549 | conversion_flags = (conversion_flags & ~DitherMode_Mask)
|
---|
550 | | PreferDither;
|
---|
551 | conv8 = TRUE;
|
---|
552 | } else if ( (conversion_flags & ColorMode_Mask) == ColorOnly ) {
|
---|
553 | conv8 = d == 1; // native depth wanted
|
---|
554 | } else if ( d == 1 ) {
|
---|
555 | if ( image.numColors() == 2 ) {
|
---|
556 | // Note: 1-bpp images other than true black-white cannot be
|
---|
557 | // correctly stored as GPI bitmaps (it doesn't store the palette
|
---|
558 | // for them), so the code below ensures they will be converted
|
---|
559 | // to 8-bpp images first. However, black-white images with alpha
|
---|
560 | // channel will be also converted, though they can be stored
|
---|
561 | // as bitmaps. The correct code to prevent setting conv8 to TRUE
|
---|
562 | // for black-white bitmaps both with and w/o alpha should be:
|
---|
563 | // QRgb c0 = image.color(0) | ~RGB_MASK;
|
---|
564 | // QRgb c1 = image.color(1) | ~RGB_MASK;
|
---|
565 | // but it is left as is solely for compatibility with Qt/Win32
|
---|
566 | // (otherwise we would get visually different pixmaps).
|
---|
567 | QRgb c0 = image.color(0); // Auto: convert to best
|
---|
568 | QRgb c1 = image.color(1);
|
---|
569 | conv8 = QMIN(c0,c1) != qRgb(0,0,0) || QMAX(c0,c1) != qRgb(255,255,255);
|
---|
570 | } else {
|
---|
571 | // eg. 1-color monochrome images (they do exist).
|
---|
572 | conv8 = TRUE;
|
---|
573 | }
|
---|
574 | }
|
---|
575 | if ( conv8 ) {
|
---|
576 | image = image.convertDepth( 8, conversion_flags );
|
---|
577 | d = 8;
|
---|
578 | }
|
---|
579 | }
|
---|
580 |
|
---|
581 | if ( d == 1 ) { // 1 bit pixmap (bitmap)
|
---|
582 | image = image.convertBitOrder( QImage::BigEndian );
|
---|
583 | }
|
---|
584 |
|
---|
585 | bool hasRealAlpha = FALSE;
|
---|
586 | if ( img.hasAlphaBuffer() ) {
|
---|
587 | if (image.depth() == 8) {
|
---|
588 | const QRgb * const rgb = img.colorTable();
|
---|
589 | for (int i = 0, count = img.numColors(); i < count; ++i) {
|
---|
590 | const int alpha = qAlpha(rgb[i]);
|
---|
591 | if (alpha != 0 && alpha != 0xff) {
|
---|
592 | hasRealAlpha = true;
|
---|
593 | break;
|
---|
594 | }
|
---|
595 | }
|
---|
596 | if (hasRealAlpha) {
|
---|
597 | image = image.convertDepth(32, conversion_flags);
|
---|
598 | d = image.depth();
|
---|
599 | }
|
---|
600 | } else if (image.depth() == 32) {
|
---|
601 | int i = 0;
|
---|
602 | while ( i<image.height() && !hasRealAlpha ) {
|
---|
603 | uchar *p = image.scanLine(i);
|
---|
604 | uchar *end = p + image.bytesPerLine();
|
---|
605 | p += 3;
|
---|
606 | while ( p < end ) {
|
---|
607 | if ( *p!=0 && *p!=0xff ) {
|
---|
608 | hasRealAlpha = TRUE;
|
---|
609 | break;
|
---|
610 | }
|
---|
611 | p += 4;
|
---|
612 | }
|
---|
613 | ++i;
|
---|
614 | }
|
---|
615 | }
|
---|
616 | }
|
---|
617 |
|
---|
618 | int w = image.width();
|
---|
619 | int h = image.height();
|
---|
620 |
|
---|
621 | if ( width() == w && height() == h &&
|
---|
622 | ( (d == 1 && depth() == 1) ||
|
---|
623 | (d != 1 && depth() != 1 && hasRealAlpha == hasAlphaChannel()) ) ) {
|
---|
624 | // same size etc., use the existing pixmap
|
---|
625 | detach();
|
---|
626 | if ( data->mask ) { // get rid of the mask
|
---|
627 | delete data->mask;
|
---|
628 | data->mask = 0;
|
---|
629 | if ( data->maskedHbm )
|
---|
630 | prepareForMasking( FALSE, TRUE );
|
---|
631 | }
|
---|
632 | } else {
|
---|
633 | // different size or depth, make a new pixmap
|
---|
634 | QPixmap pm( w, h, d == 1 ? 1 : -1, data->bitmap, data->optim );
|
---|
635 | *this = pm;
|
---|
636 | }
|
---|
637 |
|
---|
638 | // Note: even if trueColorDepth() != 32 here, we don't return hoping
|
---|
639 | // that the video driver can at least convert from/to 32-bpp bitmaps
|
---|
640 | // (which is the case for SNAP that doesn't report 32-bpp as the
|
---|
641 | // supported depth when a lower color depth is specified in Screen
|
---|
642 | // settings, but works well when converting).
|
---|
643 |
|
---|
644 | int ncols = image.numColors();
|
---|
645 |
|
---|
646 | // allocate header + ncols palette entries
|
---|
647 | char *bmi_data = new char[ sizeof(BITMAPINFOHEADER2) + 4 * ncols ];
|
---|
648 | memset( bmi_data, 0, sizeof(BITMAPINFOHEADER2) );
|
---|
649 | BITMAPINFOHEADER2 &bmh = *(PBITMAPINFOHEADER2) bmi_data;
|
---|
650 | PULONG pal = (PULONG) (bmi_data + sizeof(BITMAPINFOHEADER2));
|
---|
651 | bmh.cbFix = sizeof(BITMAPINFOHEADER2);
|
---|
652 | bmh.cx = w;
|
---|
653 | bmh.cy = h;
|
---|
654 | bmh.cPlanes = 1;
|
---|
655 | bmh.cBitCount = d;
|
---|
656 | bmh.cclrUsed = ncols;
|
---|
657 | bool doAlloc = ( QApplication::colorSpec() == QApplication::CustomColor
|
---|
658 | && QColor::hPal() );
|
---|
659 |
|
---|
660 | if ( d == 1 ) {
|
---|
661 | // always use the black/white palette for monochrome pixmaps;
|
---|
662 | // otherwise GPI can swap 0s and 1s when creating a bitmap.
|
---|
663 | pal [0] = 0;
|
---|
664 | pal [1] = 0x00FFFFFF;
|
---|
665 | } else {
|
---|
666 | for ( int i=0; i<ncols; i++ ) { // copy color table
|
---|
667 | PRGB2 r = (PRGB2) &pal[i];
|
---|
668 | QRgb c = image.color(i);
|
---|
669 | r->bBlue = qBlue( c );
|
---|
670 | r->bGreen = qGreen( c );
|
---|
671 | r->bRed = qRed( c );
|
---|
672 | r->fcOptions = 0;
|
---|
673 | if ( doAlloc ) {
|
---|
674 | QColor cl( c );
|
---|
675 | cl.alloc();
|
---|
676 | }
|
---|
677 | }
|
---|
678 | }
|
---|
679 |
|
---|
680 | data->hasRealAlpha = hasRealAlpha;
|
---|
681 |
|
---|
682 | // If we have real alpha bits and the default video driver depth is 32-bpp,
|
---|
683 | // we store the alpha channel in the unused high byte of the 32-bit pixel
|
---|
684 | // value to save memory and slightly optimize the performance (QImage already
|
---|
685 | // contains the alpha channel there, so nothing has to be done when setting
|
---|
686 | // bitmap bits). Otherwise we create a separate array to store the alpha
|
---|
687 | // channel from QImage.
|
---|
688 |
|
---|
689 | if ( hasRealAlpha && depth() != 32 ) {
|
---|
690 | if ( data->realAlphaBits == 0 ) {
|
---|
691 | // alpha bits buffer doesn't exist yet, create it
|
---|
692 | data->realAlphaBits = new uchar [w * h];
|
---|
693 | }
|
---|
694 | // store alpha bits flipping scan lines top to bottom
|
---|
695 | uchar *dst = data->realAlphaBits + w * (h - 1);
|
---|
696 | int y = 0;
|
---|
697 | while ( y < image.height() ) {
|
---|
698 | uchar *src = image.scanLine( y++ );
|
---|
699 | uchar *end = src + image.bytesPerLine();
|
---|
700 | src += 3;
|
---|
701 | while ( src < end ) {
|
---|
702 | *(dst++) = *src;
|
---|
703 | src += 4;
|
---|
704 | }
|
---|
705 | // go to the previous row
|
---|
706 | dst -= w * 2;
|
---|
707 | }
|
---|
708 | }
|
---|
709 |
|
---|
710 | // flip the image top to bottom
|
---|
711 | image.detach();
|
---|
712 | int bpl = image.bytesPerLine();
|
---|
713 | uchar *line = new uchar[bpl];
|
---|
714 | uchar *top = image.scanLine( 0 );
|
---|
715 | uchar *bottom = image.scanLine( h - 1 );
|
---|
716 | while( top < bottom ) {
|
---|
717 | memcpy( line, top, bpl );
|
---|
718 | memcpy( top, bottom, bpl );
|
---|
719 | memcpy( bottom, line, bpl );
|
---|
720 | top += bpl;
|
---|
721 | bottom -= bpl;
|
---|
722 | }
|
---|
723 | delete [] line;
|
---|
724 | GpiSetBitmapBits( hps, 0, h, (PBYTE) image.bits(), (PBITMAPINFO2) bmi_data );
|
---|
725 |
|
---|
726 | if ( img.hasAlphaBuffer() ) {
|
---|
727 | QBitmap m;
|
---|
728 | m = img.createAlphaMask( conversion_flags );
|
---|
729 | data->mask = new QBitmap( m );
|
---|
730 | }
|
---|
731 |
|
---|
732 | delete [] bmi_data;
|
---|
733 | data->uninit = FALSE;
|
---|
734 |
|
---|
735 | return TRUE;
|
---|
736 | }
|
---|
737 |
|
---|
738 |
|
---|
739 | QPixmap QPixmap::grabWindow( WId window, int x, int y, int w, int h )
|
---|
740 | {
|
---|
741 | RECTL rcl;
|
---|
742 | WinQueryWindowRect( window, &rcl );
|
---|
743 | if ( w <= 0 || h <= 0 ) {
|
---|
744 | if ( w == 0 || h == 0 ) {
|
---|
745 | QPixmap nullPixmap;
|
---|
746 | return nullPixmap;
|
---|
747 | }
|
---|
748 | if ( w < 0 )
|
---|
749 | w = rcl.xRight;
|
---|
750 | if ( h < 0 )
|
---|
751 | h = rcl.yTop;
|
---|
752 | }
|
---|
753 | // flip y coordinate
|
---|
754 | y = rcl.yTop - (y + h);
|
---|
755 | QPixmap pm( w, h );
|
---|
756 | HPS hps = WinGetPS( window );
|
---|
757 | POINTL pnts[] = { {0, 0}, {w, h}, {x, y} };
|
---|
758 | GpiBitBlt( pm.hps, hps, 3, pnts, ROP_SRCCOPY, BBO_IGNORE );
|
---|
759 | WinReleasePS( hps );
|
---|
760 | return pm;
|
---|
761 | }
|
---|
762 |
|
---|
763 | #ifndef QT_NO_PIXMAP_TRANSFORMATION
|
---|
764 | QPixmap QPixmap::xForm( const QWMatrix &matrix ) const
|
---|
765 | {
|
---|
766 | int w, h; // size of target pixmap
|
---|
767 | int ws, hs; // size of source pixmap
|
---|
768 | uchar *dptr; // data in target pixmap
|
---|
769 | int dbpl, dbytes; // bytes per line/bytes total
|
---|
770 | uchar *sptr; // data in original pixmap
|
---|
771 | int sbpl; // bytes per line in original
|
---|
772 | int bpp; // bits per pixel
|
---|
773 | bool depth1 = depth() == 1;
|
---|
774 |
|
---|
775 | if ( isNull() ) // this is a null pixmap
|
---|
776 | return copy();
|
---|
777 |
|
---|
778 | ws = width();
|
---|
779 | hs = height();
|
---|
780 |
|
---|
781 | QWMatrix mat( matrix.m11(), matrix.m12(), matrix.m21(), matrix.m22(), 0., 0. );
|
---|
782 |
|
---|
783 | if ( matrix.m12() == 0.0F && matrix.m21() == 0.0F &&
|
---|
784 | matrix.m11() >= 0.0F && matrix.m22() >= 0.0F ) {
|
---|
785 | if ( mat.m11() == 1.0F && mat.m22() == 1.0F )
|
---|
786 | return *this; // identity matrix
|
---|
787 |
|
---|
788 | h = qRound( mat.m22()*hs );
|
---|
789 | w = qRound( mat.m11()*ws );
|
---|
790 | h = QABS( h );
|
---|
791 | w = QABS( w );
|
---|
792 | if ( !data->hasRealAlpha ) {
|
---|
793 | QPixmap pm( w, h, depth(), optimization() );
|
---|
794 | POINTL ptls[] = {
|
---|
795 | { 0, 0 }, { w, h },
|
---|
796 | { 0, 0 }, { ws, hs }
|
---|
797 | };
|
---|
798 | GpiBitBlt( pm.hps, hps, 4, ptls, ROP_SRCCOPY, BBO_IGNORE );
|
---|
799 | if ( data->mask ) {
|
---|
800 | QBitmap bm =
|
---|
801 | data->selfmask ? *((QBitmap*)(&pm)) :
|
---|
802 | data->mask->xForm( matrix );
|
---|
803 | pm.setMask( bm );
|
---|
804 | }
|
---|
805 | return pm;
|
---|
806 | }
|
---|
807 | } else {
|
---|
808 | // rotation or shearing
|
---|
809 | QPointArray a( QRect(0,0,ws+1,hs+1) );
|
---|
810 | a = mat.map( a );
|
---|
811 | QRect r = a.boundingRect().normalize();
|
---|
812 | w = r.width()-1;
|
---|
813 | h = r.height()-1;
|
---|
814 | }
|
---|
815 |
|
---|
816 | mat = trueMatrix( mat, ws, hs ); // true matrix
|
---|
817 |
|
---|
818 | bool invertible;
|
---|
819 | mat = mat.invert( &invertible ); // invert matrix
|
---|
820 |
|
---|
821 | if ( h == 0 || w == 0 || !invertible ) { // error, return null pixmap
|
---|
822 | QPixmap pm;
|
---|
823 | pm.data->bitmap = data->bitmap;
|
---|
824 | return pm;
|
---|
825 | }
|
---|
826 |
|
---|
827 | if ( data->hasRealAlpha ) {
|
---|
828 | bpp = 32;
|
---|
829 | } else {
|
---|
830 | bpp = depth();
|
---|
831 | if ( bpp > 1 && bpp < 8 )
|
---|
832 | bpp = 8;
|
---|
833 | }
|
---|
834 |
|
---|
835 | sbpl = ((ws * bpp + 31) / 32) * 4;
|
---|
836 | sptr = new uchar[ hs * sbpl ];
|
---|
837 | int ncols;
|
---|
838 | if ( bpp <= 8 ) {
|
---|
839 | ncols = 1 << bpp;
|
---|
840 | } else {
|
---|
841 | ncols = 0;
|
---|
842 | }
|
---|
843 |
|
---|
844 | // Note: even if trueColorDepth() != 32 here, we don't return hoping
|
---|
845 | // that the video driver can at least convert from/to 32-bpp bitmaps
|
---|
846 | // (which is the case for SNAP that doesn't report 32-bpp as the
|
---|
847 | // supported depth when a lower color depth is specified in Screen
|
---|
848 | // settings, but works well when converting).
|
---|
849 |
|
---|
850 | // allocate header + ncols palette entries
|
---|
851 | int bmi_data_len = sizeof(BITMAPINFOHEADER2) + 4 * ncols;
|
---|
852 | char *bmi_data = new char[ bmi_data_len ];
|
---|
853 | memset( bmi_data, 0, sizeof(BITMAPINFOHEADER2) );
|
---|
854 | BITMAPINFOHEADER2 &bmh = *(PBITMAPINFOHEADER2) bmi_data;
|
---|
855 | bmh.cbFix = sizeof(BITMAPINFOHEADER2);
|
---|
856 | bmh.cx = ws;
|
---|
857 | bmh.cy = hs;
|
---|
858 | bmh.cPlanes = 1;
|
---|
859 | bmh.cBitCount = bpp;
|
---|
860 | bmh.cclrUsed = ncols;
|
---|
861 | if ( depth1 ) {
|
---|
862 | // always use the black/white palette for monochrome pixmaps;
|
---|
863 | // otherwise GPI can swap 0s and 1s when creating a bitmap.
|
---|
864 | PULONG pal = (PULONG) (bmi_data + sizeof(BITMAPINFOHEADER2));
|
---|
865 | pal[0] = 0;
|
---|
866 | pal[1] = 0x00FFFFFF;
|
---|
867 | }
|
---|
868 |
|
---|
869 | GpiQueryBitmapBits( hps, 0, hs, (PBYTE) sptr, (PBITMAPINFO2) bmi_data );
|
---|
870 |
|
---|
871 | if ( data->hasRealAlpha && data->realAlphaBits ) {
|
---|
872 | // incorporate the alpha channel to image data
|
---|
873 | // (see comments in convertFromImage() for details)
|
---|
874 | int bpx = bpp / 8;
|
---|
875 | int inc = sbpl - bpx * ws;
|
---|
876 | uchar *src = data->realAlphaBits;
|
---|
877 | uchar *dst = sptr + 3; // move to the alpha byte
|
---|
878 | for ( int y = 0; y < hs; ++ y ) {
|
---|
879 | for ( int x = 0; x < ws; ++ x ) {
|
---|
880 | *dst = *(src++);
|
---|
881 | dst += bpx;
|
---|
882 | }
|
---|
883 | dst += inc;
|
---|
884 | }
|
---|
885 | }
|
---|
886 |
|
---|
887 | dbpl = ((w * bpp + 31) / 32) * 4;
|
---|
888 | dbytes = dbpl * h;
|
---|
889 |
|
---|
890 | dptr = new uchar[ dbytes ]; // create buffer for bits
|
---|
891 | Q_CHECK_PTR( dptr );
|
---|
892 | if ( depth1 )
|
---|
893 | memset( dptr, 0x00, dbytes );
|
---|
894 | else if ( bpp == 8 )
|
---|
895 | memset( dptr, white.pixel(), dbytes );
|
---|
896 | else if ( data->hasRealAlpha )
|
---|
897 | memset( dptr, 0x00, dbytes );
|
---|
898 | else
|
---|
899 | memset( dptr, 0xff, dbytes );
|
---|
900 |
|
---|
901 | int xbpl, p_inc;
|
---|
902 | if ( depth1 ) {
|
---|
903 | xbpl = (w + 7) / 8;
|
---|
904 | p_inc = dbpl - xbpl;
|
---|
905 | } else {
|
---|
906 | xbpl = (w * bpp) / 8;
|
---|
907 | p_inc = dbpl - xbpl;
|
---|
908 | }
|
---|
909 |
|
---|
910 | // OS/2 stores first image row at the bottom of the pixmap data,
|
---|
911 | // so do xForm starting from the bottom scanline to the top one
|
---|
912 | if ( !qt_xForm_helper( mat, 0, QT_XFORM_TYPE_MSBFIRST, bpp,
|
---|
913 | dptr + dbytes - dbpl, xbpl, p_inc - dbpl * 2, h,
|
---|
914 | sptr + (hs*sbpl) - sbpl, -sbpl, ws, hs ) ) {
|
---|
915 | #if defined(QT_CHECK_RANGE)
|
---|
916 | qWarning( "QPixmap::xForm: display not supported (bpp=%d)",bpp);
|
---|
917 | #endif
|
---|
918 | QPixmap pm;
|
---|
919 | delete [] sptr;
|
---|
920 | delete [] bmi_data;
|
---|
921 | delete [] dptr;
|
---|
922 | return pm;
|
---|
923 | }
|
---|
924 |
|
---|
925 | delete [] sptr;
|
---|
926 |
|
---|
927 | QPixmap pm( w, h, depth(), data->bitmap, optimization() );
|
---|
928 | pm.data->uninit = FALSE;
|
---|
929 | bmh.cx = w;
|
---|
930 | bmh.cy = h;
|
---|
931 | GpiSetBitmapBits( pm.hps, 0, h, (PBYTE) dptr, (PBITMAPINFO2) bmi_data );
|
---|
932 |
|
---|
933 | if ( data->mask ) {
|
---|
934 | QBitmap bm = data->selfmask ? *((QBitmap*)(&pm)) :
|
---|
935 | data->mask->xForm(matrix);
|
---|
936 | pm.setMask( bm );
|
---|
937 | }
|
---|
938 |
|
---|
939 | if ( data->hasRealAlpha ) {
|
---|
940 | pm.data->hasRealAlpha = TRUE;
|
---|
941 | if ( pm.depth() != 32 ) {
|
---|
942 | // we are not able to store the alpha channel in the bitmap bits,
|
---|
943 | // store it separately
|
---|
944 | pm.data->realAlphaBits = new uchar[ w * h ];
|
---|
945 | int bpx = bpp / 8;
|
---|
946 | uchar *dst = pm.data->realAlphaBits;
|
---|
947 | uchar *src = dptr + 3; // move to the alpha byte
|
---|
948 | for ( int y = 0; y < h; ++ y ) {
|
---|
949 | for ( int x = 0; x < w; ++ x ) {
|
---|
950 | *(dst++) = *src;
|
---|
951 | src += bpx;
|
---|
952 | }
|
---|
953 | src += p_inc;
|
---|
954 | }
|
---|
955 | }
|
---|
956 | }
|
---|
957 |
|
---|
958 | delete [] bmi_data;
|
---|
959 | delete [] dptr;
|
---|
960 |
|
---|
961 | return pm;
|
---|
962 | }
|
---|
963 | #endif // QT_NO_PIXMAP_TRANSFORMATION
|
---|
964 |
|
---|
965 | /*!
|
---|
966 | \fn HBITMAP QPixmap::hbm() const
|
---|
967 | \internal
|
---|
968 | */
|
---|
969 |
|
---|
970 | bool QPixmap::hasAlpha() const
|
---|
971 | {
|
---|
972 | return data->hasRealAlpha || data->mask;
|
---|
973 | }
|
---|
974 |
|
---|
975 | bool QPixmap::hasAlphaChannel() const
|
---|
976 | {
|
---|
977 | return data->hasRealAlpha;
|
---|
978 | }
|
---|
979 |
|
---|
980 | /**
|
---|
981 | * \internal
|
---|
982 | * If \a prepare is TRUE, prepares for painting a pixmap with mask: precomposes
|
---|
983 | * and selects a masked bitmap (with transparent pixels made black) into this
|
---|
984 | * pixmap's hps. If \a prepare is FALSE, it does the cleanup. If \a force is
|
---|
985 | * TRUE on cleanup, the masked bitmap is destroyed regardless of the
|
---|
986 | * optimization type.
|
---|
987 | *
|
---|
988 | * Currently used in ::bitBlt() and in QPixmap::createIcon().
|
---|
989 | */
|
---|
990 | void QPixmap::prepareForMasking( bool prepare, bool force /* = FALSE */ )
|
---|
991 | {
|
---|
992 | if ( !data->mask || data->selfmask )
|
---|
993 | return;
|
---|
994 | if ( prepare ) {
|
---|
995 | if ( !data->maskedHbm ) {
|
---|
996 | GpiSetBitmap( hps, 0 );
|
---|
997 | BITMAPINFOHEADER2 bmh;
|
---|
998 | memset( &bmh, 0, sizeof(BITMAPINFOHEADER2) );
|
---|
999 | bmh.cbFix = sizeof(BITMAPINFOHEADER2);
|
---|
1000 | bmh.cx = data->w;
|
---|
1001 | bmh.cy = data->h;
|
---|
1002 | bmh.cPlanes = 1;
|
---|
1003 | bmh.cBitCount = data->d;
|
---|
1004 | data->maskedHbm = GpiCreateBitmap( hps, &bmh, 0, NULL, NULL );
|
---|
1005 | GpiSetBitmap( hps, data->maskedHbm );
|
---|
1006 | POINTL ptls[] = {
|
---|
1007 | // dst is inclusive
|
---|
1008 | { 0, 0 }, { data->w - 1, data->h - 1 },
|
---|
1009 | { 0, 0 }, { data->w, data->h },
|
---|
1010 | };
|
---|
1011 | GpiWCBitBlt( hps, data->hbm, 4, ptls, ROP_SRCCOPY, BBO_IGNORE );
|
---|
1012 | // dst is exclusive
|
---|
1013 | ptls[1].x++;
|
---|
1014 | ptls[1].y++;
|
---|
1015 | // make transparent pixels black
|
---|
1016 | const ULONG AllImageAttrs =
|
---|
1017 | IBB_COLOR | IBB_BACK_COLOR |
|
---|
1018 | IBB_MIX_MODE | IBB_BACK_MIX_MODE;
|
---|
1019 | IMAGEBUNDLE oldIb;
|
---|
1020 | GpiQueryAttrs( hps, PRIM_IMAGE, AllImageAttrs, (PBUNDLE) &oldIb );
|
---|
1021 | IMAGEBUNDLE newIb = {
|
---|
1022 | CLR_TRUE, CLR_FALSE, FM_OVERPAINT, BM_OVERPAINT
|
---|
1023 | };
|
---|
1024 | GpiSetAttrs( hps, PRIM_IMAGE, AllImageAttrs, 0, (PBUNDLE) &newIb );
|
---|
1025 | GpiBitBlt( hps, data->mask->hps, 3, ptls, ROP_SRCAND, BBO_IGNORE );
|
---|
1026 | GpiSetAttrs( hps, PRIM_IMAGE, AllImageAttrs, 0, (PBUNDLE) &oldIb );
|
---|
1027 | } else {
|
---|
1028 | GpiSetBitmap( hps, data->maskedHbm );
|
---|
1029 | }
|
---|
1030 | } else {
|
---|
1031 | GpiSetBitmap( hps, data->hbm );
|
---|
1032 | // delete the precomposed masked pixmap when memory optimization
|
---|
1033 | // is in force (or force is TRUE)
|
---|
1034 | if ( data->maskedHbm && (force || (data->optim != NormalOptim &&
|
---|
1035 | data->optim != BestOptim)) ) {
|
---|
1036 | GpiDeleteBitmap( data->maskedHbm );
|
---|
1037 | data->maskedHbm = 0;
|
---|
1038 | }
|
---|
1039 | }
|
---|
1040 | }
|
---|
1041 |
|
---|
1042 | HPOINTER QPixmap::createIcon( bool pointer, int hotX, int hotY, bool mini )
|
---|
1043 | {
|
---|
1044 | HPOINTER icon = NULLHANDLE;
|
---|
1045 |
|
---|
1046 | if ( !isNull() ) {
|
---|
1047 | int w = WinQuerySysValue( HWND_DESKTOP, pointer ? SV_CXPOINTER : SV_CXICON );
|
---|
1048 | int h = WinQuerySysValue( HWND_DESKTOP, pointer ? SV_CYPOINTER : SV_CYICON );
|
---|
1049 | if ( mini ) {
|
---|
1050 | w /= 2;
|
---|
1051 | h /= 2;
|
---|
1052 | }
|
---|
1053 |
|
---|
1054 | QPixmap pm = *this;
|
---|
1055 |
|
---|
1056 | #if !defined(QT_PM_NO_ICON_THRESHOLD)
|
---|
1057 | // non-scalable threshold
|
---|
1058 | enum { tmax = 12 };
|
---|
1059 | int tw = w / 4;
|
---|
1060 | int th = h / 4;
|
---|
1061 | // difference
|
---|
1062 | int dw = w - data->w;
|
---|
1063 | int dh = h - data->h;
|
---|
1064 |
|
---|
1065 | if ( (tw <= tmax && th <= tmax) &&
|
---|
1066 | ((data->w >= data->h && dw > 0 && dw <= tw) ||
|
---|
1067 | (dh > 0 && dh <= th)) ) {
|
---|
1068 | pm = QPixmap( w, h );
|
---|
1069 | LONG ofsx = dw / 2;
|
---|
1070 | LONG ofsy = dh / 2;
|
---|
1071 | POINTL ptls[] = {
|
---|
1072 | { ofsx, ofsy }, { data->w + ofsx, data->h + ofsy },
|
---|
1073 | { 0, 0 },
|
---|
1074 | };
|
---|
1075 | GpiBitBlt( pm.hps, hps, 3, ptls, ROP_SRCCOPY, BBO_IGNORE );
|
---|
1076 | QBitmap msk = QBitmap( w, h );
|
---|
1077 | msk.fill( color0 );
|
---|
1078 | if ( data->mask ) {
|
---|
1079 | GpiBitBlt( msk.hps, data->mask->hps, 3, ptls, ROP_SRCCOPY, BBO_IGNORE );
|
---|
1080 | } else {
|
---|
1081 | GpiBitBlt( msk.hps, NULL, 3, ptls, ROP_ONE, BBO_IGNORE );
|
---|
1082 | }
|
---|
1083 | pm.setMask( msk );
|
---|
1084 | // correct the hot spot
|
---|
1085 | hotX += ofsx;
|
---|
1086 | hotY += ofsy;
|
---|
1087 | } else
|
---|
1088 | #endif
|
---|
1089 | {
|
---|
1090 | if ( data->w != w || data->h != h ) {
|
---|
1091 | QImage i = convertToImage();
|
---|
1092 | #if !defined(QT_NO_IMAGE_SMOOTHSCALE)
|
---|
1093 | // do smooth resize until icon is two or more times bigger
|
---|
1094 | // than the pixmap
|
---|
1095 | if ( data->w * 2 > w || data->h * 2 > h ) {
|
---|
1096 | pm = QPixmap( i.smoothScale( w, h ) );
|
---|
1097 | } else
|
---|
1098 | #endif
|
---|
1099 | {
|
---|
1100 | pm = QPixmap( i.scale( w, h ) );
|
---|
1101 | }
|
---|
1102 | // correct the hot spot
|
---|
1103 | hotX = hotX * w / data->w;
|
---|
1104 | hotY = hotY * h / data->h;
|
---|
1105 | }
|
---|
1106 | }
|
---|
1107 |
|
---|
1108 | QBitmap msk( w, h * 2, TRUE );
|
---|
1109 | if ( pm.data->mask ) {
|
---|
1110 | // create AND mask (XOR mask is left zeroed -- it's ok)
|
---|
1111 | POINTL ptls[] = {
|
---|
1112 | { 0, h }, { w, h * 2 },
|
---|
1113 | { 0, 0 }, { w, h },
|
---|
1114 | };
|
---|
1115 | GpiBitBlt( msk.hps, pm.data->mask->hps, 4, ptls, ROP_NOTSRCCOPY, BBO_IGNORE );
|
---|
1116 | pm.prepareForMasking( TRUE );
|
---|
1117 | }
|
---|
1118 |
|
---|
1119 | // unselect bitmap handles from hps
|
---|
1120 | GpiSetBitmap( pm.hps, 0 );
|
---|
1121 | GpiSetBitmap( msk.hps, 0 );
|
---|
1122 |
|
---|
1123 | // Due to a bug in WinCreatePointerIndirect, it always ignores
|
---|
1124 | // hbmMiniPointer and hbmMiniColor fields, so we use only hbmPointer
|
---|
1125 | // and hbmColor. Thankfully, PM will assign it correctly either to
|
---|
1126 | // the "normal" or to the "mini" slot depending on the actual icon
|
---|
1127 | // width and height.
|
---|
1128 |
|
---|
1129 | POINTERINFO info;
|
---|
1130 | info.fPointer = pointer;
|
---|
1131 | info.xHotspot = hotX;
|
---|
1132 | info.yHotspot = hotY;
|
---|
1133 | info.hbmPointer = msk.data->hbm;
|
---|
1134 | info.hbmColor = pm.data->mask ? pm.data->maskedHbm : pm.data->hbm;
|
---|
1135 | info.hbmMiniPointer = 0;
|
---|
1136 | info.hbmMiniColor = 0;
|
---|
1137 | icon = WinCreatePointerIndirect( HWND_DESKTOP, &info );
|
---|
1138 |
|
---|
1139 | if ( pm.mask() )
|
---|
1140 | pm.prepareForMasking( FALSE );
|
---|
1141 |
|
---|
1142 | GpiSetBitmap( msk.hps, msk.data->hbm );
|
---|
1143 | GpiSetBitmap( pm.hps, pm.data->hbm );
|
---|
1144 | }
|
---|
1145 |
|
---|
1146 | return icon;
|
---|
1147 | }
|
---|
1148 |
|
---|
1149 | void QPixmap::attachHandle( HBITMAP hbm )
|
---|
1150 | {
|
---|
1151 | if ( paintingActive() )
|
---|
1152 | return;
|
---|
1153 |
|
---|
1154 | BITMAPINFOHEADER bmh;
|
---|
1155 | if (!GpiQueryBitmapParameters( hbm, &bmh ))
|
---|
1156 | return;
|
---|
1157 |
|
---|
1158 | if ( !data->uninit && !isNull() ) { // has existing pixmap
|
---|
1159 | deref();
|
---|
1160 | init( 0, 0, 0, FALSE, defOptim );
|
---|
1161 | }
|
---|
1162 |
|
---|
1163 | data->uninit = FALSE;
|
---|
1164 | data->w = bmh.cx;
|
---|
1165 | data->h = bmh.cy;
|
---|
1166 | data->d = bmh.cPlanes * bmh.cBitCount;
|
---|
1167 |
|
---|
1168 | hps = alloc_mem_ps( bmh.cx, bmh.cy );
|
---|
1169 | data->hbm = hbm;
|
---|
1170 |
|
---|
1171 | GpiSetBitmap( hps, data->hbm );
|
---|
1172 | }
|
---|
1173 |
|
---|
1174 | HBITMAP QPixmap::detachHandle()
|
---|
1175 | {
|
---|
1176 | if ( paintingActive() )
|
---|
1177 | return 0;
|
---|
1178 |
|
---|
1179 | HBITMAP hbm = data->hbm;
|
---|
1180 |
|
---|
1181 | // do what deref() will not do after data->hbm is set to 0
|
---|
1182 | if ( hps )
|
---|
1183 | GpiSetBitmap( hps, 0 );
|
---|
1184 |
|
---|
1185 | data->hbm = 0;
|
---|
1186 | deref();
|
---|
1187 |
|
---|
1188 | return hbm;
|
---|
1189 | }
|
---|
1190 |
|
---|
1191 | void QPixmap::unfoldAlphaChannel()
|
---|
1192 | {
|
---|
1193 | // do nothing if there is no alpha channel or if it is already unfolded
|
---|
1194 | // (i.e. stored in a separate array)
|
---|
1195 | if ( !data->hasRealAlpha || data->realAlphaBits )
|
---|
1196 | return;
|
---|
1197 |
|
---|
1198 | Q_ASSERT( data->d == 32 );
|
---|
1199 | if ( !data->d == 32 )
|
---|
1200 | return;
|
---|
1201 |
|
---|
1202 | data->realAlphaBits = new uchar[ data->w * data->h ];
|
---|
1203 |
|
---|
1204 | // no space for palette, since the depth is 32-bpp
|
---|
1205 | BITMAPINFOHEADER2 bmh;
|
---|
1206 | memset( &bmh, 0, sizeof(BITMAPINFOHEADER2) );
|
---|
1207 | bmh.cbFix = sizeof(BITMAPINFOHEADER2);
|
---|
1208 | bmh.cx = data->w;
|
---|
1209 | bmh.cy = data->h;
|
---|
1210 | bmh.cPlanes = 1;
|
---|
1211 | bmh.cBitCount = data->d;
|
---|
1212 |
|
---|
1213 | int bpl = ((data->d * data->w + 31) / 32) * 4;
|
---|
1214 | uchar *bits = new uchar [bpl * data->h];
|
---|
1215 |
|
---|
1216 | GpiQueryBitmapBits( hps, 0, data->h, (PBYTE) bits, (PBITMAPINFO2) &bmh );
|
---|
1217 |
|
---|
1218 | int bpx = data->d / 8;
|
---|
1219 | int inc = bpl - bpx * data->w;
|
---|
1220 | uchar *src = bits + 3; // move to the alpha byte
|
---|
1221 | uchar *dst = data->realAlphaBits;
|
---|
1222 | for ( int y = 0; y < data->h; ++ y ) {
|
---|
1223 | for ( int x = 0; x < data->w; ++ x ) {
|
---|
1224 | *(dst++) = *src;
|
---|
1225 | src += bpx;
|
---|
1226 | }
|
---|
1227 | src += inc;
|
---|
1228 | }
|
---|
1229 |
|
---|
1230 | delete[] bits;
|
---|
1231 | }
|
---|
1232 |
|
---|
1233 | /**
|
---|
1234 | * \internal
|
---|
1235 | * Converts the pixmap (actually, the pixmap's mask, if any) to the alpha
|
---|
1236 | * channel. Implies #unfoldAlphaChannel().
|
---|
1237 | */
|
---|
1238 | void QPixmap::convertToAlpha()
|
---|
1239 | {
|
---|
1240 | if ( isNull() || data->hasRealAlpha )
|
---|
1241 | return;
|
---|
1242 |
|
---|
1243 | if ( data->mask ) {
|
---|
1244 | // allocate header + 2 palette entries
|
---|
1245 | char *bmi_data = new char[ sizeof(BITMAPINFOHEADER2) + 8 ];
|
---|
1246 | memset( bmi_data, 0, sizeof(BITMAPINFOHEADER2) );
|
---|
1247 | BITMAPINFOHEADER2 &bmh = *(PBITMAPINFOHEADER2) bmi_data;
|
---|
1248 | bmh.cbFix = sizeof(BITMAPINFOHEADER2);
|
---|
1249 | bmh.cx = data->w;
|
---|
1250 | bmh.cy = data->h;
|
---|
1251 | bmh.cPlanes = 1;
|
---|
1252 | bmh.cBitCount = 1;
|
---|
1253 | bmh.cclrUsed = 2;
|
---|
1254 |
|
---|
1255 | int bpl = ((data->w + 31) / 32) * 4;
|
---|
1256 | uchar *bits = new uchar [bpl * data->h];
|
---|
1257 |
|
---|
1258 | GpiQueryBitmapBits( data->mask->hps, 0, data->h, (PBYTE) bits,
|
---|
1259 | (PBITMAPINFO2) bmi_data );
|
---|
1260 |
|
---|
1261 | data->realAlphaBits = new uchar[ data->w * data->h ];
|
---|
1262 |
|
---|
1263 | int inc = bpl - data->w / 8;
|
---|
1264 | uchar *src = bits;
|
---|
1265 | uchar *dst = data->realAlphaBits;
|
---|
1266 | uchar m = 0x80;
|
---|
1267 | for ( int y = 0; y < data->h; ++ y ) {
|
---|
1268 | for ( int x = 0; x < data->w; ++ x ) {
|
---|
1269 | *(dst ++) = (*src) & m ? 0xFF : 0x00;
|
---|
1270 | m >>= 1;
|
---|
1271 | if ( !m ) {
|
---|
1272 | m = 0x80;
|
---|
1273 | ++ src;
|
---|
1274 | }
|
---|
1275 | }
|
---|
1276 | src += inc;
|
---|
1277 | }
|
---|
1278 |
|
---|
1279 | data->hasRealAlpha = TRUE;
|
---|
1280 |
|
---|
1281 | delete[] bits;
|
---|
1282 | delete[] bmi_data;
|
---|
1283 | } else {
|
---|
1284 | data->realAlphaBits = new uchar[ data->w * data->h ];
|
---|
1285 | memset( data->realAlphaBits, 0xFF, data->w * data->h );
|
---|
1286 | data->hasRealAlpha = TRUE;
|
---|
1287 | }
|
---|
1288 | }
|
---|
1289 |
|
---|
1290 | /**
|
---|
1291 | * \internal
|
---|
1292 | * This depth is used when querying and setting bitmap bits for pixmaps
|
---|
1293 | * with alpha channel, either 24 or 32 (depending on the video driver caps).
|
---|
1294 | * \note This depth is not used to create bitmaps (#defaultDepth() is always
|
---|
1295 | * in charge for that purpose).
|
---|
1296 | */
|
---|
1297 | //static
|
---|
1298 | int QPixmap::trueColorDepth()
|
---|
1299 | {
|
---|
1300 | static int tcd = 0;
|
---|
1301 | if ( tcd == 0 ) {
|
---|
1302 | HDC display_dc = GpiQueryDevice( qt_display_ps() );
|
---|
1303 | LONG formatCnt = 0;
|
---|
1304 | DevQueryCaps( display_dc, CAPS_BITMAP_FORMATS, 1, &formatCnt );
|
---|
1305 | LONG *formats = new LONG[ formatCnt * 2 ];
|
---|
1306 | GpiQueryDeviceBitmapFormats( qt_display_ps(), formatCnt * 2, formats );
|
---|
1307 | for( int i = 0; i < formatCnt * 2; i += 2 ) {
|
---|
1308 | if ( formats[ i ] == 1 && formats[ i + 1 ] == 32 ) {
|
---|
1309 | tcd = 32;
|
---|
1310 | break;
|
---|
1311 | }
|
---|
1312 | }
|
---|
1313 | delete[] formats;
|
---|
1314 | // if the 32-bpp format is not supported, we assume the 24-bpp
|
---|
1315 | // format that must be supported by all video drivers
|
---|
1316 | if ( tcd == 0 )
|
---|
1317 | tcd = 24;
|
---|
1318 | }
|
---|
1319 | return tcd;
|
---|
1320 | }
|
---|
1321 |
|
---|
1322 | /*!
|
---|
1323 | \internal
|
---|
1324 |
|
---|
1325 | Creates an OS/2 icon or pointer from two given pixmaps.
|
---|
1326 |
|
---|
1327 | If either of the pixmaps doesn't match eaxctly to the system-defined icon
|
---|
1328 | or pointer size, it will be scaled to that size without keeping proportions.
|
---|
1329 | However, to avoid scaling of small pixmaps that will most likely make them
|
---|
1330 | unreadable, there is a non-scalable threshold that causes a pixmap to be
|
---|
1331 | centered rather than scaled. The non-scalable threshold value is 1/4 of the
|
---|
1332 | system-defined size but no more than 12 pixels (if more, then the threshold
|
---|
1333 | is not applied). Here are examples of non-scalable pixmap sizes for common
|
---|
1334 | icon/pointer sizes:
|
---|
1335 |
|
---|
1336 | icon size non-scalable pixmap sizes
|
---|
1337 | --------- -------------------------
|
---|
1338 | 16 px 12..16 px
|
---|
1339 | 20 px 15..20 px
|
---|
1340 | 32 px 24..32 px
|
---|
1341 | 40 px 30..40 px
|
---|
1342 |
|
---|
1343 | \param pointer true to create a pointer, false to create an icon
|
---|
1344 | \param hotX X coordinate of the action point within the pointer/icon
|
---|
1345 | \param hotY Y coordinate of the action point within the pointer/icon
|
---|
1346 | \param normal pixmap for a normal-sized pointer/icon
|
---|
1347 | \param mini pixmap for a mini-sized (half-sized) pointer/icon
|
---|
1348 |
|
---|
1349 | \return PM handle of the created pointer or 0 in case of any error
|
---|
1350 |
|
---|
1351 | \note Due to a bug in WinCreatePointerIndirect, you can specify either a
|
---|
1352 | \a normal pixmap or \a mini pixmap, but not both. If both are specified,
|
---|
1353 | the \a normal will be used so that if its size is equal to or larger than
|
---|
1354 | the normal pointer/icon size (taking the threshold into account), it will
|
---|
1355 | be used as a normal pointer/icon, otherwise as a mini one. PM will use
|
---|
1356 | its own scaling to draw a pointer/icon of the other size when necessary.
|
---|
1357 | This bug may be fixed later.
|
---|
1358 |
|
---|
1359 | \warning This function is not portable.
|
---|
1360 | */
|
---|
1361 | // static
|
---|
1362 | HPOINTER QPixmap::createIcon( bool pointer, int hotX, int hotY,
|
---|
1363 | const QPixmap *normal, const QPixmap *mini )
|
---|
1364 | {
|
---|
1365 | // Due to a bug in WinCreatePointerIndirect (it always ignores
|
---|
1366 | // hbmMiniPointer and hbmMiniColor fields), we can specify either a normal
|
---|
1367 | // icon, but not both. This method still accepts pixmaps for both icon
|
---|
1368 | // sizes (assuming that we will find a workaround one day) but uses only
|
---|
1369 | // one of them.
|
---|
1370 |
|
---|
1371 | if ( normal && !normal->isNull() ) {
|
---|
1372 | // If the specified normal pixmap is equal to or larger than the normal
|
---|
1373 | // icon size (taking the threshold into account), then we use it to
|
---|
1374 | // create a normal icon, otherwise a mini one.
|
---|
1375 | int w = WinQuerySysValue( HWND_DESKTOP, pointer ? SV_CXPOINTER : SV_CXICON );
|
---|
1376 | int h = WinQuerySysValue( HWND_DESKTOP, pointer ? SV_CYPOINTER : SV_CYICON );
|
---|
1377 | #if !defined(QT_PM_NO_ICON_THRESHOLD)
|
---|
1378 | // apply the threshold (see private QPixmap::createIcon() above)
|
---|
1379 | if ( w / 4 <= 12 ) w -= w / 4;
|
---|
1380 | if ( h / 4 <= 12 ) h -= h / 4;
|
---|
1381 | #endif
|
---|
1382 | bool mini = normal->width() < w && normal->height() < h;
|
---|
1383 | return const_cast <QPixmap *> (normal)->createIcon( pointer, hotX, hotY, mini );
|
---|
1384 | }
|
---|
1385 |
|
---|
1386 | if ( mini && !mini->isNull() )
|
---|
1387 | return const_cast <QPixmap *> (mini)->createIcon( pointer, hotX, hotY, TRUE );
|
---|
1388 |
|
---|
1389 | return 0;
|
---|
1390 | }
|
---|
1391 |
|
---|
1392 | Q_EXPORT void copyBlt( QPixmap *dst, int dx, int dy,
|
---|
1393 | const QPixmap *src, int sx, int sy, int sw, int sh )
|
---|
1394 | {
|
---|
1395 | if ( ! dst || ! src || sw == 0 || sh == 0 || dst->depth() != src->depth() ) {
|
---|
1396 | #ifdef QT_CHECK_NULL
|
---|
1397 | Q_ASSERT( dst != 0 );
|
---|
1398 | Q_ASSERT( src != 0 );
|
---|
1399 | #endif
|
---|
1400 | return;
|
---|
1401 | }
|
---|
1402 |
|
---|
1403 | if ( sw < 0 )
|
---|
1404 | sw = src->width() - sx;
|
---|
1405 | if ( sh < 0 )
|
---|
1406 | sh = src->height() - sy;
|
---|
1407 |
|
---|
1408 | // ensure coordinates are within borders, clip if necessary
|
---|
1409 | if ( sx < 0 || sy < 0 || sx + sw > src->width() || sy + sh > src->height() ||
|
---|
1410 | dx < 0 || dy < 0 || dx + sw > dst->width() || dy + sh > dst->height() )
|
---|
1411 | {
|
---|
1412 | int tx = dx - sx;
|
---|
1413 | int ty = dy - sy;
|
---|
1414 | QRect dr( 0, 0, dst->width(), dst->height() ); // dst rect
|
---|
1415 | QRect sr( tx, ty, src->width(), src->height() ); // src rect in dst coords
|
---|
1416 | QRect bltr( dx, dy, sw, sh ); // blit rect in dst coords
|
---|
1417 | bltr &= (dr & sr);
|
---|
1418 | if (bltr.isEmpty())
|
---|
1419 | return;
|
---|
1420 | dx = bltr.x();
|
---|
1421 | dy = bltr.y();
|
---|
1422 | sx = dx - tx;
|
---|
1423 | sy = dy - ty;
|
---|
1424 | sw = bltr.width();
|
---|
1425 | sh = bltr.height();
|
---|
1426 | }
|
---|
1427 |
|
---|
1428 | dst->detach();
|
---|
1429 |
|
---|
1430 | // copy mask data
|
---|
1431 | if ( src->data->mask ) {
|
---|
1432 | if ( !dst->data->mask ) {
|
---|
1433 | dst->data->mask = new QBitmap( dst->width(), dst->height() );
|
---|
1434 | // new masks are fully opaque by default
|
---|
1435 | dst->data->mask->fill( Qt::color1 );
|
---|
1436 | } else if ( dst->data->maskedHbm ) {
|
---|
1437 | // reset the precomposed masked pixmap
|
---|
1438 | dst->prepareForMasking( FALSE, TRUE );
|
---|
1439 | }
|
---|
1440 |
|
---|
1441 | bitBlt( dst->data->mask, dx, dy,
|
---|
1442 | src->data->mask, sx, sy, sw, sh, Qt::CopyROP, TRUE );
|
---|
1443 | }
|
---|
1444 |
|
---|
1445 | // copy alpha bits
|
---|
1446 | if ( src->data->hasRealAlpha ||
|
---|
1447 | (src->data->mask && dst->data->hasRealAlpha) ) {
|
---|
1448 | if ( src->data->hasRealAlpha )
|
---|
1449 | const_cast <QPixmap *> (src)->unfoldAlphaChannel();
|
---|
1450 | else
|
---|
1451 | const_cast <QPixmap *> (src)->convertToAlpha();
|
---|
1452 | if ( dst->data->hasRealAlpha )
|
---|
1453 | dst->unfoldAlphaChannel();
|
---|
1454 | else
|
---|
1455 | dst->convertToAlpha();
|
---|
1456 | uchar *srca = src->data->realAlphaBits + src->width() * sy + sx;
|
---|
1457 | uchar *dsta = dst->data->realAlphaBits + dst->width() * dy + dx;
|
---|
1458 | for ( int y = 0; y < sh; ++ y ) {
|
---|
1459 | memcpy( dsta, srca, sw );
|
---|
1460 | srca += src->width();
|
---|
1461 | dsta += dst->width();
|
---|
1462 | }
|
---|
1463 | }
|
---|
1464 |
|
---|
1465 | // copy pixel data
|
---|
1466 | bitBlt( dst, dx, dy, src, sx, sy, sw, sh, Qt::CopyROP, TRUE );
|
---|
1467 | }
|
---|