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3923 | svoboda | 1 | /* |
2 | * Copyright (c) 2009 Jiri Svoboda |
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3 | * All rights reserved. |
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4 | * |
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5 | * Redistribution and use in source and binary forms, with or without |
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6 | * modification, are permitted provided that the following conditions |
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7 | * are met: |
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8 | * |
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9 | * - Redistributions of source code must retain the above copyright |
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10 | * notice, this list of conditions and the following disclaimer. |
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11 | * - Redistributions in binary form must reproduce the above copyright |
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12 | * notice, this list of conditions and the following disclaimer in the |
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13 | * documentation and/or other materials provided with the distribution. |
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14 | * - The name of the author may not be used to endorse or promote products |
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15 | * derived from this software without specific prior written permission. |
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16 | * |
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17 | * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR |
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18 | * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES |
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19 | * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. |
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20 | * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, |
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21 | * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT |
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22 | * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, |
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23 | * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY |
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24 | * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT |
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25 | * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF |
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26 | * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
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27 | */ |
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28 | |||
29 | /** @addtogroup kbd |
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30 | * @brief GXEmul framebuffer-mode keyboard controller driver. |
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31 | * @{ |
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32 | */ |
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33 | |||
34 | #include <kbd.h> |
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35 | #include <kbd/kbd.h> |
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36 | #include <kbd/keycode.h> |
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37 | #include <kbd_ctl.h> |
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38 | |||
39 | static void parse_ds_start(int scancode); |
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40 | static void parse_ds_e(int scancode); |
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41 | static void parse_ds_e1(int scancode); |
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42 | static void parse_ds_e1a(int scancode); |
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43 | static void parse_ds_e1b(int scancode); |
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44 | static void parse_ds_e1c(int scancode); |
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45 | |||
46 | static void parse_leaf(int scancode, int *map, size_t map_length); |
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47 | |||
48 | enum dec_state { |
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49 | ds_start, |
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50 | ds_e, |
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51 | ds_e1, |
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52 | ds_e1a, |
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53 | ds_e1b, |
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54 | ds_e1c |
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55 | }; |
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56 | |||
57 | static int map_start[] = { |
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58 | |||
59 | [0x60] = KC_BACKTICK, |
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60 | |||
61 | [0x31] = KC_1, |
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62 | [0x32] = KC_2, |
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63 | [0x33] = KC_3, |
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64 | [0x34] = KC_4, |
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65 | [0x35] = KC_5, |
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66 | [0x36] = KC_6, |
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67 | [0x37] = KC_7, |
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68 | [0x38] = KC_8, |
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69 | [0x39] = KC_9, |
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70 | [0x30] = KC_0, |
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71 | |||
72 | [0x2d] = KC_MINUS, |
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73 | [0x3d] = KC_EQUALS, |
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74 | [0x08] = KC_BACKSPACE, |
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75 | |||
76 | [0x0f] = KC_TAB, |
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77 | |||
78 | [0x71] = KC_Q, |
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79 | [0x77] = KC_W, |
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80 | [0x65] = KC_E, |
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81 | [0x72] = KC_R, |
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82 | [0x74] = KC_T, |
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83 | [0x79] = KC_Y, |
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84 | [0x75] = KC_U, |
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85 | [0x69] = KC_I, |
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86 | [0x6f] = KC_O, |
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87 | [0x70] = KC_P, |
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88 | |||
89 | [0x5b] = KC_LBRACKET, |
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90 | [0x5d] = KC_RBRACKET, |
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91 | |||
92 | // [0x3a] = KC_CAPS_LOCK, |
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93 | |||
94 | [0x61] = KC_A, |
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95 | [0x73] = KC_S, |
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96 | [0x64] = KC_D, |
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97 | [0x66] = KC_F, |
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98 | [0x67] = KC_G, |
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99 | [0x68] = KC_H, |
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100 | [0x6a] = KC_J, |
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101 | [0x6b] = KC_K, |
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102 | [0x6c] = KC_L, |
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103 | |||
104 | [0x3b] = KC_SEMICOLON, |
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105 | [0x27] = KC_QUOTE, |
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106 | [0x5c] = KC_BACKSLASH, |
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107 | |||
108 | // [0x2a] = KC_LSHIFT, |
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109 | |||
110 | [0x7a] = KC_Z, |
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111 | [0x78] = KC_X, |
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112 | [0x63] = KC_C, |
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113 | [0x76] = KC_V, |
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114 | [0x62] = KC_B, |
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115 | [0x6e] = KC_N, |
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116 | [0x6d] = KC_M, |
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117 | |||
118 | [0x2c] = KC_COMMA, |
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119 | [0x2e] = KC_PERIOD, |
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120 | [0x2f] = KC_SLASH, |
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121 | |||
122 | // [0x36] = KC_RSHIFT, |
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123 | |||
124 | // [0x1d] = KC_LCTRL, |
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125 | // [0x38] = KC_LALT, |
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126 | [0x20] = KC_SPACE, |
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127 | |||
128 | [0x1b] = KC_ESCAPE, |
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129 | |||
130 | [0x0a] = KC_ENTER, |
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131 | [0x0d] = KC_ENTER |
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132 | |||
133 | /* |
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134 | [0x1] = KC_PRNSCR, |
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135 | [0x1] = KC_SCROLL_LOCK, |
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136 | [0x1] = KC_PAUSE, |
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137 | */ |
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138 | }; |
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139 | |||
140 | static int map_e1[] = |
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141 | { |
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142 | }; |
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143 | |||
144 | static int map_e1a[] = |
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145 | { |
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146 | [0x50] = KC_F1, |
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147 | [0x51] = KC_F2, |
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148 | [0x52] = KC_F3, |
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149 | [0x53] = KC_F4, |
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150 | }; |
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151 | |||
152 | static int map_e1b[] = |
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153 | { |
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154 | [0x33] = KC_F5, |
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155 | [0x37] = KC_F6, |
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156 | [0x38] = KC_F7, |
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157 | [0x39] = KC_F8, |
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158 | }; |
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159 | |||
160 | static int map_e1c[] = |
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161 | { |
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162 | [0x38] = KC_F9, |
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163 | [0x39] = KC_F10, |
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164 | [0x33] = KC_F11, |
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165 | [0x34] = KC_F12, |
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166 | }; |
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167 | |||
168 | |||
169 | static enum dec_state ds = ds_start; |
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170 | |||
171 | void kbd_ctl_parse_scancode(int scancode) |
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172 | { |
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173 | switch (ds) { |
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174 | case ds_start: parse_ds_start(scancode); break; |
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175 | case ds_e: parse_ds_e(scancode); break; |
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176 | case ds_e1: parse_ds_e1(scancode); break; |
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177 | case ds_e1a: parse_ds_e1a(scancode); break; |
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178 | case ds_e1b: parse_ds_e1b(scancode); break; |
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179 | case ds_e1c: parse_ds_e1c(scancode); break; |
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180 | } |
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181 | } |
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182 | |||
183 | static void parse_ds_start(int scancode) |
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184 | { |
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185 | if (scancode == 0x1b) { |
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186 | ds = ds_e; |
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187 | return; |
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188 | } |
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189 | |||
190 | parse_leaf(scancode, map_start, sizeof(map_start) / sizeof(int)); |
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191 | } |
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192 | |||
193 | static void parse_ds_e(int scancode) |
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194 | { |
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195 | switch (scancode) { |
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196 | case 0x5b: ds = ds_e1; return; |
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197 | case 0x1b: ds = ds_start; break; |
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198 | default: ds = ds_start; return; |
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199 | } |
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200 | |||
201 | kbd_push_ev(KE_PRESS, KC_ESCAPE, 0); |
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202 | } |
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203 | |||
204 | static void parse_ds_e1(int scancode) |
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205 | { |
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206 | switch (scancode) { |
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207 | case 0x4f: ds = ds_e1a; return; |
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208 | case 0x31: ds = ds_e1b; return; |
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209 | case 0x32: ds = ds_e1c; return; |
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210 | default: ds = ds_start; break; |
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211 | } |
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212 | |||
213 | parse_leaf(scancode, map_e1, sizeof(map_e1) / sizeof(int)); |
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214 | } |
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215 | |||
216 | static void parse_ds_e1a(int scancode) |
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217 | { |
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218 | parse_leaf(scancode, map_e1a, sizeof(map_e1a) / sizeof(int)); |
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219 | } |
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220 | |||
221 | static void parse_ds_e1b(int scancode) |
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222 | { |
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223 | parse_leaf(scancode, map_e1b, sizeof(map_e1b) / sizeof(int)); |
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224 | } |
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225 | |||
226 | static void parse_ds_e1c(int scancode) |
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227 | { |
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228 | parse_leaf(scancode, map_e1c, sizeof(map_e1c) / sizeof(int)); |
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229 | } |
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230 | |||
231 | static void parse_leaf(int scancode, int *map, size_t map_length) |
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232 | { |
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233 | unsigned int key; |
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234 | |||
235 | ds = ds_start; |
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236 | |||
237 | if (scancode < 0 || scancode >= map_length) |
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238 | return; |
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239 | |||
240 | key = map[scancode]; |
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241 | if (key != 0) |
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242 | kbd_push_ev(KE_PRESS, key, 0); |
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243 | } |
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244 | |||
245 | |||
246 | /** |
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247 | * @} |
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248 | */ |