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1 /**************************************************************************** |
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2 ** |
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3 ** Copyright (C) 2009 Nokia Corporation and/or its subsidiary(-ies). |
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4 ** All rights reserved. |
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5 ** Contact: Nokia Corporation (qt-info@nokia.com) |
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6 ** |
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7 ** This file is part of the examples of the Qt Toolkit. |
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8 ** |
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9 ** $QT_BEGIN_LICENSE:LGPL$ |
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10 ** No Commercial Usage |
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11 ** This file contains pre-release code and may not be distributed. |
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12 ** You may use this file in accordance with the terms and conditions |
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13 ** contained in the Technology Preview License Agreement accompanying |
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14 ** this package. |
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15 ** |
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16 ** GNU Lesser General Public License Usage |
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17 ** Alternatively, this file may be used under the terms of the GNU Lesser |
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18 ** General Public License version 2.1 as published by the Free Software |
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19 ** Foundation and appearing in the file LICENSE.LGPL included in the |
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20 ** packaging of this file. Please review the following information to |
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21 ** ensure the GNU Lesser General Public License version 2.1 requirements |
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22 ** will be met: http://www.gnu.org/licenses/old-licenses/lgpl-2.1.html. |
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23 ** |
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24 ** In addition, as a special exception, Nokia gives you certain additional |
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25 ** rights. These rights are described in the Nokia Qt LGPL Exception |
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26 ** version 1.1, included in the file LGPL_EXCEPTION.txt in this package. |
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27 ** |
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28 ** If you have questions regarding the use of this file, please contact |
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29 ** Nokia at qt-info@nokia.com. |
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30 ** |
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31 ** |
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32 ** |
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33 ** |
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34 ** |
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35 ** |
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36 ** |
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37 ** |
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38 ** $QT_END_LICENSE$ |
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39 ** |
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40 ****************************************************************************/ |
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41 |
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42 #include <stdlib.h> |
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43 #include <unistd.h> |
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44 #include <stdio.h> |
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45 #include <fcntl.h> |
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46 #include <linux/fb.h> |
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47 #include <linux/kd.h> |
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48 #include <sys/mman.h> |
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49 #include <sys/ioctl.h> |
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50 #include <sys/time.h> |
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51 #include <string.h> |
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52 #include <errno.h> |
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53 |
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54 struct fb_var_screeninfo vinfo; |
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55 struct fb_fix_screeninfo finfo; |
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56 char *frameBuffer = 0; |
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57 int fbFd = 0; |
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58 int ttyFd = 0; |
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59 |
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60 void printFixedInfo() |
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61 { |
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62 printf("Fixed screen info:\n" |
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63 "\tid: %s\n" |
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64 "\tsmem_start: 0x%lx\n" |
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65 "\tsmem_len: %d\n" |
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66 "\ttype: %d\n" |
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67 "\ttype_aux: %d\n" |
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68 "\tvisual: %d\n" |
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69 "\txpanstep: %d\n" |
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70 "\typanstep: %d\n" |
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71 "\tywrapstep: %d\n" |
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72 "\tline_length: %d\n" |
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73 "\tmmio_start: 0x%lx\n" |
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74 "\tmmio_len: %d\n" |
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75 "\taccel: %d\n" |
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76 "\n", |
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77 finfo.id, finfo.smem_start, finfo.smem_len, finfo.type, |
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78 finfo.type_aux, finfo.visual, finfo.xpanstep, finfo.ypanstep, |
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79 finfo.ywrapstep, finfo.line_length, finfo.mmio_start, |
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80 finfo.mmio_len, finfo.accel); |
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81 } |
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82 |
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83 void printVariableInfo() |
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84 { |
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85 printf("Variable screen info:\n" |
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86 "\txres: %d\n" |
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87 "\tyres: %d\n" |
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88 "\txres_virtual: %d\n" |
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89 "\tyres_virtual: %d\n" |
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90 "\tyoffset: %d\n" |
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91 "\txoffset: %d\n" |
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92 "\tbits_per_pixel: %d\n" |
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93 "\tgrayscale: %d\n" |
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94 "\tred: offset: %2d, length: %2d, msb_right: %2d\n" |
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95 "\tgreen: offset: %2d, length: %2d, msb_right: %2d\n" |
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96 "\tblue: offset: %2d, length: %2d, msb_right: %2d\n" |
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97 "\ttransp: offset: %2d, length: %2d, msb_right: %2d\n" |
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98 "\tnonstd: %d\n" |
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99 "\tactivate: %d\n" |
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100 "\theight: %d\n" |
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101 "\twidth: %d\n" |
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102 "\taccel_flags: 0x%x\n" |
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103 "\tpixclock: %d\n" |
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104 "\tleft_margin: %d\n" |
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105 "\tright_margin: %d\n" |
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106 "\tupper_margin: %d\n" |
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107 "\tlower_margin: %d\n" |
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108 "\thsync_len: %d\n" |
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109 "\tvsync_len: %d\n" |
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110 "\tsync: %d\n" |
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111 "\tvmode: %d\n" |
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112 "\n", |
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113 vinfo.xres, vinfo.yres, vinfo.xres_virtual, vinfo.yres_virtual, |
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114 vinfo.xoffset, vinfo.yoffset, vinfo.bits_per_pixel, vinfo.grayscale, |
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115 vinfo.red.offset, vinfo.red.length, vinfo.red.msb_right, |
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116 vinfo.green.offset, vinfo.green.length, vinfo.green.msb_right, |
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117 vinfo.blue.offset, vinfo.blue.length, vinfo.blue.msb_right, |
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118 vinfo.transp.offset, vinfo.transp.length, vinfo.transp.msb_right, |
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119 vinfo.nonstd, vinfo.activate, vinfo.height, vinfo.width, |
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120 vinfo.accel_flags, vinfo.pixclock, vinfo.left_margin, |
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121 vinfo.right_margin, vinfo.upper_margin, vinfo.lower_margin, |
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122 vinfo.hsync_len, vinfo.vsync_len, vinfo.sync, vinfo.vmode); |
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123 } |
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124 |
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125 long switchToGraphicsMode() |
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126 { |
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127 const char *const devs[] = {"/dev/tty0", "/dev/tty", "/dev/console", 0}; |
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128 const char * const *dev; |
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129 long oldMode = KD_TEXT; |
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130 |
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131 for (dev = devs; *dev; ++dev) { |
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132 ttyFd = open(*dev, O_RDWR); |
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133 if (ttyFd != -1) |
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134 break; |
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135 printf("Opening tty device %s failed: %s\n", *dev, strerror(errno)); |
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136 } |
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137 |
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138 ioctl(ttyFd, KDGETMODE, &oldMode); |
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139 if (oldMode == KD_GRAPHICS) { |
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140 printf("Was in graphics mode already. Skipping\n"); |
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141 return oldMode; |
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142 } |
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143 int ret = ioctl(ttyFd, KDSETMODE, KD_GRAPHICS); |
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144 if (ret == -1) { |
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145 printf("Switch to graphics mode failed: %s\n", strerror(errno)); |
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146 return oldMode; |
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147 } |
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148 |
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149 printf("Successfully switched to graphics mode.\n\n"); |
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150 |
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151 return oldMode; |
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152 } |
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153 |
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154 void restoreTextMode(long oldMode) |
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155 { |
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156 if (ttyFd == -1) |
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157 return; |
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158 |
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159 ioctl(ttyFd, KDSETMODE, oldMode); |
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160 close(ttyFd); |
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161 } |
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162 |
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163 struct fb_cmap oldPalette; |
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164 struct fb_cmap palette; |
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165 int paletteSize = 0; |
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166 |
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167 void initPalette_16() |
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168 { |
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169 if (finfo.type == FB_TYPE_PACKED_PIXELS) { |
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170 // We'll setup a grayscale map for 4bpp linear |
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171 int val = 0; |
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172 int i; |
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173 for (i = 0; i < 16; ++i) { |
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174 palette.red[i] = (val << 8) | val; |
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175 palette.green[i] = (val << 8) | val; |
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176 palette.blue[i] = (val << 8) | val; |
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177 val += 17; |
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178 } |
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179 return; |
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180 } |
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181 |
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182 // Default 16 colour palette |
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183 unsigned char reds[16] = { 0x00, 0x7F, 0xBF, 0xFF, 0xFF, 0xA2, |
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184 0x00, 0xFF, 0xFF, 0x00, 0x7F, 0x7F, |
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185 0x00, 0x00, 0x00, 0x82 }; |
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186 unsigned char greens[16] = { 0x00, 0x7F, 0xBF, 0xFF, 0x00, 0xC5, |
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187 0x00, 0xFF, 0x00, 0xFF, 0x00, 0x00, |
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188 0x00, 0x7F, 0x7F, 0x7F }; |
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189 unsigned char blues[16] = { 0x00, 0x7F, 0xBF, 0xFF, 0x00, 0x11, |
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190 0xFF, 0x00, 0xFF, 0xFF, 0x00, 0x7F, |
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191 0x7F, 0x7F, 0x00, 0x00 }; |
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192 |
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193 int i; |
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194 for (i = 0; i < 16; ++i) { |
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195 palette.red[i] = ((reds[i]) << 8) | reds[i]; |
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196 palette.green[i] = ((greens[i]) << 8) | greens[i]; |
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197 palette.blue[i] = ((blues[i]) << 8) | blues[i]; |
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198 palette.transp[i] = 0; |
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199 } |
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200 } |
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201 |
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202 void initPalette_256() |
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203 { |
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204 if (vinfo.grayscale) { |
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205 int i; |
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206 for (i = 0; i < 256; ++i) { |
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207 unsigned short c = (i << 8) | i; |
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208 palette.red[i] = c; |
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209 palette.green[i] = c; |
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210 palette.blue[i] = c; |
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211 palette.transp[i] = 0; |
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212 } |
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213 return; |
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214 } |
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215 |
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216 // 6x6x6 216 color cube |
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217 int i = 0; |
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218 int ir, ig, ib; |
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219 for (ir = 0x0; ir <= 0xff; ir += 0x33) { |
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220 for (ig = 0x0; ig <= 0xff; ig += 0x33) { |
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221 for (ib = 0x0; ib <= 0xff; ib += 0x33) { |
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222 palette.red[i] = (ir << 8)|ir; |
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223 palette.green[i] = (ig << 8)|ig; |
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224 palette.blue[i] = (ib << 8)|ib; |
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225 palette.transp[i] = 0; |
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226 ++i; |
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227 } |
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228 } |
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229 } |
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230 } |
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231 |
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232 void initPalette() |
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233 { |
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234 switch (vinfo.bits_per_pixel) { |
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235 case 8: paletteSize = 256; break; |
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236 case 4: paletteSize = 16; break; |
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237 default: break; |
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238 } |
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239 |
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240 if (!paletteSize) |
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241 return; /* not using a palette */ |
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242 |
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243 /* read old palette */ |
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244 oldPalette.start = 0; |
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245 oldPalette.len = paletteSize; |
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246 oldPalette.red = (unsigned short*)malloc(sizeof(unsigned short)*paletteSize); |
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247 oldPalette.green = (unsigned short*)malloc(sizeof(unsigned short)*paletteSize); |
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248 oldPalette.blue=(unsigned short*)malloc(sizeof(unsigned short)*paletteSize); |
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249 oldPalette.transp=(unsigned short*)malloc(sizeof(unsigned short)*paletteSize); |
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250 if (ioctl(ttyFd, FBIOGETCMAP, &oldPalette) == -1) |
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251 perror("initPalette: error reading palette"); |
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252 |
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253 /* create new palette */ |
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254 palette.start = 0; |
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255 palette.len = paletteSize; |
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256 palette.red = (unsigned short*)malloc(sizeof(unsigned short)*paletteSize); |
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257 palette.green = (unsigned short*)malloc(sizeof(unsigned short)*paletteSize); |
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258 palette.blue = (unsigned short*)malloc(sizeof(unsigned short)*paletteSize); |
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259 palette.transp = (unsigned short*)malloc(sizeof(unsigned short)*paletteSize); |
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260 switch (paletteSize) { |
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261 case 16: initPalette_16(); break; |
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262 case 256: initPalette_256(); break; |
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263 default: break; |
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264 } |
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265 |
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266 /* set new palette */ |
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267 if (ioctl(ttyFd, FBIOPUTCMAP, &palette) == -1) |
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268 perror("initPalette: error setting palette"); |
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269 } |
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270 |
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271 void resetPalette() |
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272 { |
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273 if (paletteSize == 0) |
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274 return; |
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275 |
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276 if (ioctl(ttyFd, FBIOPUTCMAP, &oldPalette) == -1) |
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277 perror("resetPalette"); |
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278 |
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279 free(oldPalette.red); |
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280 free(oldPalette.green); |
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281 free(oldPalette.blue); |
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282 free(oldPalette.transp); |
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283 |
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284 free(palette.red); |
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285 free(palette.green); |
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286 free(palette.blue); |
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287 free(palette.transp); |
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288 } |
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289 |
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290 void drawRect_rgb32(int x0, int y0, int width, int height, int color) |
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291 { |
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292 const int bytesPerPixel = 4; |
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293 const int stride = finfo.line_length / bytesPerPixel; |
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294 |
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295 int *dest = (int*)(frameBuffer) |
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296 + (y0 + vinfo.yoffset) * stride |
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297 + (x0 + vinfo.xoffset); |
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298 |
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299 int x, y; |
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300 for (y = 0; y < height; ++y) { |
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301 for (x = 0; x < width; ++x) { |
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302 dest[x] = color; |
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303 } |
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304 dest += stride; |
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305 } |
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306 } |
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307 |
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308 void drawRect_rgb18(int x0, int y0, int width, int height, int color) |
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309 { |
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310 const int bytesPerPixel = 3; |
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311 const int stride = finfo.line_length - width * bytesPerPixel; |
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312 const int red = (color & 0xff0000) >> 16; |
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313 const int green = (color & 0xff00) >> 8; |
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314 const int blue = (color & 0xff); |
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315 const unsigned int packed = (blue >> 2) | |
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316 ((green >> 2) << 6) | |
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317 ((red >> 2) << 12); |
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318 const char color18[3] = { packed & 0xff, |
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319 (packed & 0xff00) >> 8, |
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320 (packed & 0xff0000) >> 16 }; |
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321 |
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322 char *dest = (char*)(frameBuffer) |
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323 + (y0 + vinfo.yoffset) * stride |
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324 + (x0 + vinfo.xoffset); |
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325 |
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326 int x, y; |
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327 for (y = 0; y < height; ++y) { |
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328 for (x = 0; x < width; ++x) { |
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329 *dest++ = color18[0]; |
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330 *dest++ = color18[1]; |
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331 *dest++ = color18[2]; |
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332 } |
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333 dest += stride; |
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334 } |
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335 } |
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336 |
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337 void drawRect_rgb16(int x0, int y0, int width, int height, int color) |
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338 { |
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339 const int bytesPerPixel = 2; |
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340 const int stride = finfo.line_length / bytesPerPixel; |
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341 const int red = (color & 0xff0000) >> (16 + 3); |
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342 const int green = (color & 0xff00) >> (8 + 2); |
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343 const int blue = (color & 0xff) >> 3; |
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344 const short color16 = blue | (green << 5) | (red << (5 + 6)); |
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345 |
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346 short *dest = (short*)(frameBuffer) |
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347 + (y0 + vinfo.yoffset) * stride |
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348 + (x0 + vinfo.xoffset); |
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349 |
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350 int x, y; |
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351 for (y = 0; y < height; ++y) { |
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352 for (x = 0; x < width; ++x) { |
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353 dest[x] = color16; |
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354 } |
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355 dest += stride; |
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356 } |
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357 } |
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358 |
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359 void drawRect_rgb15(int x0, int y0, int width, int height, int color) |
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360 { |
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361 const int bytesPerPixel = 2; |
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362 const int stride = finfo.line_length / bytesPerPixel; |
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363 const int red = (color & 0xff0000) >> (16 + 3); |
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364 const int green = (color & 0xff00) >> (8 + 3); |
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365 const int blue = (color & 0xff) >> 3; |
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366 const short color15 = blue | (green << 5) | (red << (5 + 5)); |
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367 |
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368 short *dest = (short*)(frameBuffer) |
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369 + (y0 + vinfo.yoffset) * stride |
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370 + (x0 + vinfo.xoffset); |
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371 |
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372 int x, y; |
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373 for (y = 0; y < height; ++y) { |
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374 for (x = 0; x < width; ++x) { |
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375 dest[x] = color15; |
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376 } |
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377 dest += stride; |
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378 } |
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379 } |
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380 |
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381 void drawRect_palette(int x0, int y0, int width, int height, int color) |
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382 { |
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383 const int bytesPerPixel = 1; |
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384 const int stride = finfo.line_length / bytesPerPixel; |
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385 const unsigned char color8 = color; |
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386 |
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387 unsigned char *dest = (unsigned char*)(frameBuffer) |
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388 + (y0 + vinfo.yoffset) * stride |
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389 + (x0 + vinfo.xoffset); |
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390 |
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391 int x, y; |
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392 for (y = 0; y < height; ++y) { |
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393 for (x = 0; x < width; ++x) { |
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394 dest[x] = color8; |
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395 } |
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396 dest += stride; |
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397 } |
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398 } |
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399 |
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400 void drawRect(int x0, int y0, int width, int height, int color) |
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401 { |
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402 switch (vinfo.bits_per_pixel) { |
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403 case 32: |
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404 drawRect_rgb32(x0, y0, width, height, color); |
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405 break; |
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406 case 18: |
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407 drawRect_rgb18(x0, y0, width, height, color); |
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408 break; |
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409 case 16: |
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410 drawRect_rgb16(x0, y0, width, height, color); |
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411 break; |
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412 case 15: |
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413 drawRect_rgb15(x0, y0, width, height, color); |
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414 break; |
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415 case 8: |
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416 drawRect_palette(x0, y0, width, height, color); |
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417 break; |
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418 case 4: |
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419 drawRect_palette(x0, y0, width, height, color); |
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420 break; |
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421 default: |
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422 printf("Warning: drawRect() not implemented for color depth %i\n", |
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423 vinfo.bits_per_pixel); |
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424 break; |
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425 } |
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426 } |
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427 |
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428 #define PERFORMANCE_RUN_COUNT 5 |
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429 void performSpeedTest(void* fb, int fbSize) |
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430 { |
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431 int i, j, run; |
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432 |
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433 struct timeval startTime, endTime; |
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434 unsigned long long results[PERFORMANCE_RUN_COUNT]; |
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435 unsigned long long average; |
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436 |
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437 unsigned int* testImage; |
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438 |
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439 unsigned int randData[17] = { |
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440 0x3A428472, 0x724B84D3, 0x26B898AB, 0x7D980E3C, 0x5345A084, |
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441 0x6779B66B, 0x791EE4B4, 0x6E8EE3CC, 0x63AF504A, 0x18A21B33, |
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442 0x0E26EB73, 0x022F708E, 0x1740F3B0, 0x7E2C699D, 0x0E8A570B, |
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443 0x5F2C22FB, 0x6A742130 |
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444 }; |
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445 |
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446 printf("Frame Buffer Performance test...\n"); |
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447 |
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448 for (run=0; run<PERFORMANCE_RUN_COUNT; ++run) { |
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449 |
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450 /* Generate test image with random(ish) data: */ |
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451 testImage = (unsigned int*) malloc(fbSize); |
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452 j = run; |
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453 for (i=0; i < (int)(fbSize / sizeof(int)); ++i) { |
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454 testImage[i] = randData[j]; |
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455 j++; |
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456 if (j >= 17) |
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457 j = 0; |
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458 } |
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459 |
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460 gettimeofday(&startTime, NULL); |
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461 memcpy(fb, testImage, fbSize); |
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462 gettimeofday(&endTime, NULL); |
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463 |
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464 long secsDiff = endTime.tv_sec - startTime.tv_sec; |
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465 results[run] = secsDiff * 1000000 + (endTime.tv_usec - startTime.tv_usec); |
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466 |
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467 free(testImage); |
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468 } |
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469 |
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470 |
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471 average = 0; |
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472 for (i=0; i<PERFORMANCE_RUN_COUNT; ++i) |
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473 average += results[i]; |
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474 average = average / PERFORMANCE_RUN_COUNT; |
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475 |
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476 printf(" Average: %llu usecs\n", average); |
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477 printf(" Bandwidth: %.03f MByte/Sec\n", (fbSize / 1048576.0) / ((double)average / 1000000.0)); |
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478 printf(" Max. FPS: %.03f fps\n\n", 1000000.0 / (double)average); |
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479 |
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480 /* Clear the framebuffer back to black again: */ |
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481 memset(fb, 0, fbSize); |
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482 } |
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483 |
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484 int main(int argc, char **argv) |
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485 { |
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486 long int screensize = 0; |
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487 int doGraphicsMode = 1; |
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488 long oldKdMode = KD_TEXT; |
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489 const char *devfile = "/dev/fb0"; |
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490 int nextArg = 1; |
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491 |
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492 if (nextArg < argc) { |
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493 if (strncmp("nographicsmodeswitch", argv[nextArg], |
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494 strlen("nographicsmodeswitch")) == 0) |
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495 { |
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496 ++nextArg; |
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497 doGraphicsMode = 0; |
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498 } |
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499 } |
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500 if (nextArg < argc) |
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501 devfile = argv[nextArg++]; |
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502 |
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503 /* Open the file for reading and writing */ |
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504 fbFd = open(devfile, O_RDWR); |
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505 if (fbFd == -1) { |
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506 perror("Error: cannot open framebuffer device"); |
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507 exit(1); |
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508 } |
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509 printf("The framebuffer device was opened successfully.\n\n"); |
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510 |
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511 /* Get fixed screen information */ |
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512 if (ioctl(fbFd, FBIOGET_FSCREENINFO, &finfo) == -1) { |
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513 perror("Error reading fixed information"); |
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514 exit(2); |
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515 } |
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516 |
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517 printFixedInfo(); |
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518 |
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519 /* Figure out the size of the screen in bytes */ |
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520 screensize = finfo.smem_len; |
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521 |
|
522 /* Map the device to memory */ |
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523 frameBuffer = (char *)mmap(0, screensize, |
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524 PROT_READ | PROT_WRITE, MAP_SHARED, |
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525 fbFd, 0); |
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526 if (frameBuffer == MAP_FAILED) { |
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527 perror("Error: Failed to map framebuffer device to memory"); |
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528 exit(4); |
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529 } |
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530 printf("The framebuffer device was mapped to memory successfully.\n" |
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531 "\n"); |
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532 |
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533 if (doGraphicsMode) |
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534 oldKdMode = switchToGraphicsMode(); |
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535 |
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536 /* Get variable screen information */ |
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537 if (ioctl(fbFd, FBIOGET_VSCREENINFO, &vinfo) == -1) { |
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538 perror("Error reading variable information"); |
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539 exit(3); |
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540 } |
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541 |
|
542 printVariableInfo(); |
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543 |
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544 performSpeedTest(frameBuffer, screensize); |
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545 |
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546 initPalette(); |
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547 |
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548 if (paletteSize == 0) { |
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549 printf("Will draw 3 rectangles on the screen,\n" |
|
550 "they should be colored red, green and blue (in that order).\n"); |
|
551 drawRect(vinfo.xres / 8, vinfo.yres / 8, |
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552 vinfo.xres / 4, vinfo.yres / 4, |
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553 0xffff0000); |
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554 drawRect(vinfo.xres * 3 / 8, vinfo.yres * 3 / 8, |
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555 vinfo.xres / 4, vinfo.yres / 4, |
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556 0xff00ff00); |
|
557 drawRect(vinfo.xres * 5 / 8, vinfo.yres * 5 / 8, |
|
558 vinfo.xres / 4, vinfo.yres / 4, |
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559 0xff0000ff); |
|
560 } else { |
|
561 printf("Will rectangles from the 16 first entries in the color palette" |
|
562 " on the screen\n"); |
|
563 int y; |
|
564 int x; |
|
565 for (y = 0; y < 4; ++y) { |
|
566 for (x = 0; x < 4; ++x) { |
|
567 drawRect(vinfo.xres / 4 * x, vinfo.yres / 4 * y, |
|
568 vinfo.xres / 4, vinfo.yres / 4, |
|
569 4 * y + x); |
|
570 } |
|
571 } |
|
572 } |
|
573 |
|
574 sleep(5); |
|
575 |
|
576 resetPalette(); |
|
577 |
|
578 printf(" Done.\n"); |
|
579 |
|
580 if (doGraphicsMode) |
|
581 restoreTextMode(oldKdMode); |
|
582 |
|
583 munmap(frameBuffer, screensize); |
|
584 close(fbFd); |
|
585 return 0; |
|
586 } |