]> git.proxmox.com Git - mirror_edk2.git/blame - MdeModulePkg/Bus/Usb/UsbKbDxe/KeyBoard.c
MdeModulePkg/UsbKbDxe: don't assert when the key read is invalid
[mirror_edk2.git] / MdeModulePkg / Bus / Usb / UsbKbDxe / KeyBoard.c
CommitLineData
ed838d0c 1/** @file\r
a7022cec 2 Helper functions for USB Keyboard Driver.\r
3\r
18b50d66 4Copyright (c) 2004 - 2016, Intel Corporation. All rights reserved.<BR>\r
cd5ebaa0 5This program and the accompanying materials\r
ed838d0c 6are licensed and made available under the terms and conditions of the BSD License\r
7which accompanies this distribution. The full text of the license may be found at\r
8http://opensource.org/licenses/bsd-license.php\r
9\r
10THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,\r
11WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.\r
12\r
ed838d0c 13**/\r
14\r
a7022cec 15#include "KeyBoard.h"\r
813acf3a 16\r
c41c3e55 17USB_KEYBOARD_LAYOUT_PACK_BIN mUsbKeyboardLayoutBin = {\r
18 sizeof (USB_KEYBOARD_LAYOUT_PACK_BIN), // Binary size\r
19\r
20 //\r
21 // EFI_HII_PACKAGE_HEADER\r
22 //\r
23 {\r
24 sizeof (USB_KEYBOARD_LAYOUT_PACK_BIN) - sizeof (UINT32),\r
25 EFI_HII_PACKAGE_KEYBOARD_LAYOUT\r
26 },\r
27 1, // LayoutCount\r
28 sizeof (USB_KEYBOARD_LAYOUT_PACK_BIN) - sizeof (UINT32) - sizeof (EFI_HII_PACKAGE_HEADER) - sizeof (UINT16), // LayoutLength\r
29 USB_KEYBOARD_LAYOUT_KEY_GUID, // KeyGuid\r
30 sizeof (UINT16) + sizeof (EFI_GUID) + sizeof (UINT32) + sizeof (UINT8) + (USB_KEYBOARD_KEY_COUNT * sizeof (EFI_KEY_DESCRIPTOR)), // LayoutDescriptorStringOffset\r
31 USB_KEYBOARD_KEY_COUNT, // DescriptorCount\r
32 {\r
33 //\r
34 // EFI_KEY_DESCRIPTOR (total number is USB_KEYBOARD_KEY_COUNT)\r
35 //\r
36 {EfiKeyC1, 'a', 'A', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
37 {EfiKeyB5, 'b', 'B', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
38 {EfiKeyB3, 'c', 'C', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
39 {EfiKeyC3, 'd', 'D', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
40 {EfiKeyD3, 'e', 'E', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
41 {EfiKeyC4, 'f', 'F', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
42 {EfiKeyC5, 'g', 'G', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
43 {EfiKeyC6, 'h', 'H', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
44 {EfiKeyD8, 'i', 'I', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
45 {EfiKeyC7, 'j', 'J', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
46 {EfiKeyC8, 'k', 'K', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
47 {EfiKeyC9, 'l', 'L', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
48 {EfiKeyB7, 'm', 'M', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
49 {EfiKeyB6, 'n', 'N', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
50 {EfiKeyD9, 'o', 'O', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
51 {EfiKeyD10, 'p', 'P', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
52 {EfiKeyD1, 'q', 'Q', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
53 {EfiKeyD4, 'r', 'R', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
54 {EfiKeyC2, 's', 'S', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
55 {EfiKeyD5, 't', 'T', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
56 {EfiKeyD7, 'u', 'U', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
57 {EfiKeyB4, 'v', 'V', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
58 {EfiKeyD2, 'w', 'W', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
59 {EfiKeyB2, 'x', 'X', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
60 {EfiKeyD6, 'y', 'Y', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
61 {EfiKeyB1, 'z', 'Z', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_CAPS_LOCK},\r
62 {EfiKeyE1, '1', '!', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
63 {EfiKeyE2, '2', '@', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
64 {EfiKeyE3, '3', '#', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
65 {EfiKeyE4, '4', '$', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
66 {EfiKeyE5, '5', '%', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
67 {EfiKeyE6, '6', '^', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
68 {EfiKeyE7, '7', '&', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
69 {EfiKeyE8, '8', '*', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
70 {EfiKeyE9, '9', '(', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
71 {EfiKeyE10, '0', ')', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
72 {EfiKeyEnter, 0x0d, 0x0d, 0, 0, EFI_NULL_MODIFIER, 0},\r
73 {EfiKeyEsc, 0x1b, 0x1b, 0, 0, EFI_NULL_MODIFIER, 0},\r
74 {EfiKeyBackSpace, 0x08, 0x08, 0, 0, EFI_NULL_MODIFIER, 0},\r
75 {EfiKeyTab, 0x09, 0x09, 0, 0, EFI_NULL_MODIFIER, 0},\r
76 {EfiKeySpaceBar, ' ', ' ', 0, 0, EFI_NULL_MODIFIER, 0},\r
77 {EfiKeyE11, '-', '_', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
78 {EfiKeyE12, '=', '+', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
79 {EfiKeyD11, '[', '{', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
80 {EfiKeyD12, ']', '}', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
81 {EfiKeyD13, '\\', '|', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
74a959b3 82 {EfiKeyC12, '\\', '|', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
c41c3e55 83 {EfiKeyC10, ';', ':', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
84 {EfiKeyC11, '\'', '"', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
85 {EfiKeyE0, '`', '~', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
86 {EfiKeyB8, ',', '<', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
87 {EfiKeyB9, '.', '>', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
88 {EfiKeyB10, '/', '?', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT},\r
89 {EfiKeyCapsLock, 0x00, 0x00, 0, 0, EFI_CAPS_LOCK_MODIFIER, 0},\r
90 {EfiKeyF1, 0x00, 0x00, 0, 0, EFI_FUNCTION_KEY_ONE_MODIFIER, 0},\r
91 {EfiKeyF2, 0x00, 0x00, 0, 0, EFI_FUNCTION_KEY_TWO_MODIFIER, 0},\r
92 {EfiKeyF3, 0x00, 0x00, 0, 0, EFI_FUNCTION_KEY_THREE_MODIFIER, 0},\r
93 {EfiKeyF4, 0x00, 0x00, 0, 0, EFI_FUNCTION_KEY_FOUR_MODIFIER, 0},\r
94 {EfiKeyF5, 0x00, 0x00, 0, 0, EFI_FUNCTION_KEY_FIVE_MODIFIER, 0},\r
95 {EfiKeyF6, 0x00, 0x00, 0, 0, EFI_FUNCTION_KEY_SIX_MODIFIER, 0},\r
96 {EfiKeyF7, 0x00, 0x00, 0, 0, EFI_FUNCTION_KEY_SEVEN_MODIFIER, 0},\r
97 {EfiKeyF8, 0x00, 0x00, 0, 0, EFI_FUNCTION_KEY_EIGHT_MODIFIER, 0},\r
98 {EfiKeyF9, 0x00, 0x00, 0, 0, EFI_FUNCTION_KEY_NINE_MODIFIER, 0},\r
99 {EfiKeyF10, 0x00, 0x00, 0, 0, EFI_FUNCTION_KEY_TEN_MODIFIER, 0},\r
100 {EfiKeyF11, 0x00, 0x00, 0, 0, EFI_FUNCTION_KEY_ELEVEN_MODIFIER, 0},\r
101 {EfiKeyF12, 0x00, 0x00, 0, 0, EFI_FUNCTION_KEY_TWELVE_MODIFIER, 0},\r
102 {EfiKeyPrint, 0x00, 0x00, 0, 0, EFI_PRINT_MODIFIER, 0},\r
103 {EfiKeySLck, 0x00, 0x00, 0, 0, EFI_SCROLL_LOCK_MODIFIER, 0},\r
104 {EfiKeyPause, 0x00, 0x00, 0, 0, EFI_PAUSE_MODIFIER, 0},\r
105 {EfiKeyIns, 0x00, 0x00, 0, 0, EFI_INSERT_MODIFIER, 0},\r
106 {EfiKeyHome, 0x00, 0x00, 0, 0, EFI_HOME_MODIFIER, 0},\r
107 {EfiKeyPgUp, 0x00, 0x00, 0, 0, EFI_PAGE_UP_MODIFIER, 0},\r
108 {EfiKeyDel, 0x00, 0x00, 0, 0, EFI_DELETE_MODIFIER, 0},\r
109 {EfiKeyEnd, 0x00, 0x00, 0, 0, EFI_END_MODIFIER, 0},\r
110 {EfiKeyPgDn, 0x00, 0x00, 0, 0, EFI_PAGE_DOWN_MODIFIER, 0},\r
111 {EfiKeyRightArrow, 0x00, 0x00, 0, 0, EFI_RIGHT_ARROW_MODIFIER, 0},\r
112 {EfiKeyLeftArrow, 0x00, 0x00, 0, 0, EFI_LEFT_ARROW_MODIFIER, 0},\r
113 {EfiKeyDownArrow, 0x00, 0x00, 0, 0, EFI_DOWN_ARROW_MODIFIER, 0},\r
114 {EfiKeyUpArrow, 0x00, 0x00, 0, 0, EFI_UP_ARROW_MODIFIER, 0},\r
115 {EfiKeyNLck, 0x00, 0x00, 0, 0, EFI_NUM_LOCK_MODIFIER, 0},\r
116 {EfiKeySlash, '/', '/', 0, 0, EFI_NULL_MODIFIER, 0},\r
117 {EfiKeyAsterisk, '*', '*', 0, 0, EFI_NULL_MODIFIER, 0},\r
118 {EfiKeyMinus, '-', '-', 0, 0, EFI_NULL_MODIFIER, 0},\r
119 {EfiKeyPlus, '+', '+', 0, 0, EFI_NULL_MODIFIER, 0},\r
120 {EfiKeyEnter, 0x0d, 0x0d, 0, 0, EFI_NULL_MODIFIER, 0},\r
121 {EfiKeyOne, '1', '1', 0, 0, EFI_END_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_NUM_LOCK},\r
122 {EfiKeyTwo, '2', '2', 0, 0, EFI_DOWN_ARROW_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_NUM_LOCK},\r
123 {EfiKeyThree, '3', '3', 0, 0, EFI_PAGE_DOWN_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_NUM_LOCK},\r
124 {EfiKeyFour, '4', '4', 0, 0, EFI_LEFT_ARROW_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_NUM_LOCK},\r
125 {EfiKeyFive, '5', '5', 0, 0, EFI_NULL_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_NUM_LOCK},\r
126 {EfiKeySix, '6', '6', 0, 0, EFI_RIGHT_ARROW_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_NUM_LOCK},\r
127 {EfiKeySeven, '7', '7', 0, 0, EFI_HOME_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_NUM_LOCK},\r
128 {EfiKeyEight, '8', '8', 0, 0, EFI_UP_ARROW_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_NUM_LOCK},\r
129 {EfiKeyNine, '9', '9', 0, 0, EFI_PAGE_UP_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_NUM_LOCK},\r
130 {EfiKeyZero, '0', '0', 0, 0, EFI_INSERT_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_NUM_LOCK},\r
131 {EfiKeyPeriod, '.', '.', 0, 0, EFI_DELETE_MODIFIER, EFI_AFFECTED_BY_STANDARD_SHIFT | EFI_AFFECTED_BY_NUM_LOCK},\r
132 {EfiKeyA4, 0x00, 0x00, 0, 0, EFI_MENU_MODIFIER, 0},\r
133 {EfiKeyLCtrl, 0, 0, 0, 0, EFI_LEFT_CONTROL_MODIFIER, 0},\r
134 {EfiKeyLShift, 0, 0, 0, 0, EFI_LEFT_SHIFT_MODIFIER, 0},\r
135 {EfiKeyLAlt, 0, 0, 0, 0, EFI_LEFT_ALT_MODIFIER, 0},\r
136 {EfiKeyA0, 0, 0, 0, 0, EFI_LEFT_LOGO_MODIFIER, 0},\r
137 {EfiKeyRCtrl, 0, 0, 0, 0, EFI_RIGHT_CONTROL_MODIFIER, 0},\r
138 {EfiKeyRShift, 0, 0, 0, 0, EFI_RIGHT_SHIFT_MODIFIER, 0},\r
139 {EfiKeyA2, 0, 0, 0, 0, EFI_RIGHT_ALT_MODIFIER, 0},\r
140 {EfiKeyA3, 0, 0, 0, 0, EFI_RIGHT_LOGO_MODIFIER, 0},\r
141 },\r
142 1, // DescriptionCount\r
143 {'e', 'n', '-', 'U', 'S'}, // RFC4646 language code\r
144 ' ', // Space\r
145 {'E', 'n', 'g', 'l', 'i', 's', 'h', ' ', 'K', 'e', 'y', 'b', 'o', 'a', 'r', 'd', '\0'}, // DescriptionString[]\r
813acf3a 146};\r
147\r
813acf3a 148//\r
c41c3e55 149// EFI_KEY to USB Keycode conversion table\r
b4e73a63 150// EFI_KEY is defined in UEFI spec.\r
151// USB Keycode is defined in USB HID Firmware spec.\r
813acf3a 152//\r
b4e73a63 153UINT8 EfiKeyToUsbKeyCodeConvertionTable[] = {\r
813acf3a 154 0xe0, // EfiKeyLCtrl\r
155 0xe3, // EfiKeyA0\r
156 0xe2, // EfiKeyLAlt\r
157 0x2c, // EfiKeySpaceBar\r
158 0xe6, // EfiKeyA2\r
159 0xe7, // EfiKeyA3\r
160 0x65, // EfiKeyA4\r
161 0xe4, // EfiKeyRCtrl\r
162 0x50, // EfiKeyLeftArrow\r
163 0x51, // EfiKeyDownArrow\r
164 0x4F, // EfiKeyRightArrow\r
165 0x62, // EfiKeyZero\r
166 0x63, // EfiKeyPeriod\r
167 0x28, // EfiKeyEnter\r
168 0xe1, // EfiKeyLShift\r
169 0x64, // EfiKeyB0\r
170 0x1D, // EfiKeyB1\r
171 0x1B, // EfiKeyB2\r
172 0x06, // EfiKeyB3\r
173 0x19, // EfiKeyB4\r
174 0x05, // EfiKeyB5\r
175 0x11, // EfiKeyB6\r
176 0x10, // EfiKeyB7\r
177 0x36, // EfiKeyB8\r
178 0x37, // EfiKeyB9\r
179 0x38, // EfiKeyB10\r
180 0xe5, // EfiKeyRShift\r
181 0x52, // EfiKeyUpArrow\r
182 0x59, // EfiKeyOne\r
183 0x5A, // EfiKeyTwo\r
184 0x5B, // EfiKeyThree\r
185 0x39, // EfiKeyCapsLock\r
186 0x04, // EfiKeyC1\r
187 0x16, // EfiKeyC2\r
188 0x07, // EfiKeyC3\r
189 0x09, // EfiKeyC4\r
190 0x0A, // EfiKeyC5\r
191 0x0B, // EfiKeyC6\r
192 0x0D, // EfiKeyC7\r
193 0x0E, // EfiKeyC8\r
194 0x0F, // EfiKeyC9\r
195 0x33, // EfiKeyC10\r
196 0x34, // EfiKeyC11\r
197 0x32, // EfiKeyC12\r
198 0x5C, // EfiKeyFour\r
199 0x5D, // EfiKeyFive\r
200 0x5E, // EfiKeySix\r
201 0x57, // EfiKeyPlus\r
202 0x2B, // EfiKeyTab\r
203 0x14, // EfiKeyD1\r
204 0x1A, // EfiKeyD2\r
205 0x08, // EfiKeyD3\r
206 0x15, // EfiKeyD4\r
207 0x17, // EfiKeyD5\r
208 0x1C, // EfiKeyD6\r
209 0x18, // EfiKeyD7\r
210 0x0C, // EfiKeyD8\r
211 0x12, // EfiKeyD9\r
212 0x13, // EfiKeyD10\r
213 0x2F, // EfiKeyD11\r
214 0x30, // EfiKeyD12\r
215 0x31, // EfiKeyD13\r
216 0x4C, // EfiKeyDel\r
217 0x4D, // EfiKeyEnd\r
218 0x4E, // EfiKeyPgDn\r
219 0x5F, // EfiKeySeven\r
220 0x60, // EfiKeyEight\r
221 0x61, // EfiKeyNine\r
222 0x35, // EfiKeyE0\r
223 0x1E, // EfiKeyE1\r
224 0x1F, // EfiKeyE2\r
225 0x20, // EfiKeyE3\r
226 0x21, // EfiKeyE4\r
227 0x22, // EfiKeyE5\r
228 0x23, // EfiKeyE6\r
229 0x24, // EfiKeyE7\r
230 0x25, // EfiKeyE8\r
231 0x26, // EfiKeyE9\r
232 0x27, // EfiKeyE10\r
233 0x2D, // EfiKeyE11\r
234 0x2E, // EfiKeyE12\r
235 0x2A, // EfiKeyBackSpace\r
236 0x49, // EfiKeyIns\r
237 0x4A, // EfiKeyHome\r
238 0x4B, // EfiKeyPgUp\r
239 0x53, // EfiKeyNLck\r
240 0x54, // EfiKeySlash\r
241 0x55, // EfiKeyAsterisk\r
242 0x56, // EfiKeyMinus\r
243 0x29, // EfiKeyEsc\r
244 0x3A, // EfiKeyF1\r
245 0x3B, // EfiKeyF2\r
246 0x3C, // EfiKeyF3\r
247 0x3D, // EfiKeyF4\r
248 0x3E, // EfiKeyF5\r
249 0x3F, // EfiKeyF6\r
250 0x40, // EfiKeyF7\r
251 0x41, // EfiKeyF8\r
252 0x42, // EfiKeyF9\r
253 0x43, // EfiKeyF10\r
254 0x44, // EfiKeyF11\r
255 0x45, // EfiKeyF12\r
256 0x46, // EfiKeyPrint\r
257 0x47, // EfiKeySLck\r
258 0x48 // EfiKeyPause\r
259};\r
260\r
ed838d0c 261//\r
b4e73a63 262// Keyboard modifier value to EFI Scan Code convertion table\r
263// EFI Scan Code and the modifier values are defined in UEFI spec.\r
ed838d0c 264//\r
b4e73a63 265UINT8 ModifierValueToEfiScanCodeConvertionTable[] = {\r
813acf3a 266 SCAN_NULL, // EFI_NULL_MODIFIER\r
267 SCAN_NULL, // EFI_LEFT_CONTROL_MODIFIER\r
268 SCAN_NULL, // EFI_RIGHT_CONTROL_MODIFIER\r
269 SCAN_NULL, // EFI_LEFT_ALT_MODIFIER\r
270 SCAN_NULL, // EFI_RIGHT_ALT_MODIFIER\r
271 SCAN_NULL, // EFI_ALT_GR_MODIFIER\r
272 SCAN_INSERT, // EFI_INSERT_MODIFIER\r
273 SCAN_DELETE, // EFI_DELETE_MODIFIER\r
274 SCAN_PAGE_DOWN, // EFI_PAGE_DOWN_MODIFIER\r
275 SCAN_PAGE_UP, // EFI_PAGE_UP_MODIFIER\r
276 SCAN_HOME, // EFI_HOME_MODIFIER\r
277 SCAN_END, // EFI_END_MODIFIER\r
278 SCAN_NULL, // EFI_LEFT_SHIFT_MODIFIER\r
279 SCAN_NULL, // EFI_RIGHT_SHIFT_MODIFIER\r
280 SCAN_NULL, // EFI_CAPS_LOCK_MODIFIER\r
281 SCAN_NULL, // EFI_NUM_LOCK_MODIFIER\r
282 SCAN_LEFT, // EFI_LEFT_ARROW_MODIFIER\r
283 SCAN_RIGHT, // EFI_RIGHT_ARROW_MODIFIER\r
284 SCAN_DOWN, // EFI_DOWN_ARROW_MODIFIER\r
285 SCAN_UP, // EFI_UP_ARROW_MODIFIER\r
286 SCAN_NULL, // EFI_NS_KEY_MODIFIER\r
287 SCAN_NULL, // EFI_NS_KEY_DEPENDENCY_MODIFIER\r
288 SCAN_F1, // EFI_FUNCTION_KEY_ONE_MODIFIER\r
289 SCAN_F2, // EFI_FUNCTION_KEY_TWO_MODIFIER\r
290 SCAN_F3, // EFI_FUNCTION_KEY_THREE_MODIFIER\r
291 SCAN_F4, // EFI_FUNCTION_KEY_FOUR_MODIFIER\r
292 SCAN_F5, // EFI_FUNCTION_KEY_FIVE_MODIFIER\r
293 SCAN_F6, // EFI_FUNCTION_KEY_SIX_MODIFIER\r
294 SCAN_F7, // EFI_FUNCTION_KEY_SEVEN_MODIFIER\r
295 SCAN_F8, // EFI_FUNCTION_KEY_EIGHT_MODIFIER\r
296 SCAN_F9, // EFI_FUNCTION_KEY_NINE_MODIFIER\r
297 SCAN_F10, // EFI_FUNCTION_KEY_TEN_MODIFIER\r
298 SCAN_F11, // EFI_FUNCTION_KEY_ELEVEN_MODIFIER\r
299 SCAN_F12, // EFI_FUNCTION_KEY_TWELVE_MODIFIER\r
3765794c 300 //\r
301 // For Partial Keystroke support\r
302 //\r
4ff492c3 303 SCAN_NULL, // EFI_PRINT_MODIFIER\r
304 SCAN_NULL, // EFI_SYS_REQUEST_MODIFIER\r
305 SCAN_NULL, // EFI_SCROLL_LOCK_MODIFIER\r
3765794c 306 SCAN_PAUSE, // EFI_PAUSE_MODIFIER\r
307 SCAN_NULL, // EFI_BREAK_MODIFIER\r
308 SCAN_NULL, // EFI_LEFT_LOGO_MODIFIER\r
309 SCAN_NULL, // EFI_RIGHT_LOGO_MODIFER\r
310 SCAN_NULL, // EFI_MENU_MODIFER\r
ed838d0c 311};\r
312\r
aa79b0b3 313/**\r
c41c3e55 314 Initialize Key Convention Table by using default keyboard layout.\r
aa79b0b3 315\r
316 @param UsbKeyboardDevice The USB_KB_DEV instance.\r
aa79b0b3 317\r
c41c3e55 318 @retval EFI_SUCCESS The default keyboard layout was installed successfully\r
319 @retval Others Failure to install default keyboard layout.\r
aa79b0b3 320**/\r
c41c3e55 321EFI_STATUS\r
c41c3e55 322InstallDefaultKeyboardLayout (\r
323 IN OUT USB_KB_DEV *UsbKeyboardDevice\r
aa79b0b3 324 )\r
325{\r
c41c3e55 326 EFI_STATUS Status;\r
327 EFI_HII_DATABASE_PROTOCOL *HiiDatabase;\r
328 EFI_HII_HANDLE HiiHandle;\r
aa79b0b3 329\r
330 //\r
c41c3e55 331 // Locate Hii database protocol\r
aa79b0b3 332 //\r
c41c3e55 333 Status = gBS->LocateProtocol (\r
334 &gEfiHiiDatabaseProtocolGuid,\r
335 NULL,\r
336 (VOID **) &HiiDatabase\r
337 );\r
338 if (EFI_ERROR (Status)) {\r
339 return Status;\r
340 }\r
aa79b0b3 341\r
c41c3e55 342 //\r
343 // Install Keyboard Layout package to HII database\r
344 //\r
cb7d01c0 345 HiiHandle = HiiAddPackages (\r
c8ad2d7a 346 &gUsbKeyboardLayoutPackageGuid,\r
cb7d01c0 347 UsbKeyboardDevice->ControllerHandle,\r
348 &mUsbKeyboardLayoutBin,\r
349 NULL\r
350 );\r
351 if (HiiHandle == NULL) {\r
352 return EFI_OUT_OF_RESOURCES;\r
aa79b0b3 353 }\r
c41c3e55 354\r
355 //\r
356 // Set current keyboard layout\r
357 //\r
c8ad2d7a 358 Status = HiiDatabase->SetKeyboardLayout (HiiDatabase, &gUsbKeyboardLayoutKeyGuid);\r
c41c3e55 359\r
360 return Status;\r
aa79b0b3 361}\r
362\r
c41c3e55 363\r
ed838d0c 364/**\r
b4e73a63 365 Uses USB I/O to check whether the device is a USB keyboard device.\r
366\r
367 @param UsbIo Pointer to a USB I/O protocol instance.\r
ed838d0c 368\r
b4e73a63 369 @retval TRUE Device is a USB keyboard device.\r
370 @retval FALSE Device is a not USB keyboard device.\r
ed838d0c 371\r
372**/\r
373BOOLEAN\r
374IsUSBKeyboard (\r
375 IN EFI_USB_IO_PROTOCOL *UsbIo\r
376 )\r
377{\r
378 EFI_STATUS Status;\r
379 EFI_USB_INTERFACE_DESCRIPTOR InterfaceDescriptor;\r
380\r
381 //\r
b4e73a63 382 // Get the default interface descriptor\r
ed838d0c 383 //\r
384 Status = UsbIo->UsbGetInterfaceDescriptor (\r
385 UsbIo,\r
386 &InterfaceDescriptor\r
387 );\r
388\r
389 if (EFI_ERROR (Status)) {\r
390 return FALSE;\r
391 }\r
392\r
393 if (InterfaceDescriptor.InterfaceClass == CLASS_HID &&\r
394 InterfaceDescriptor.InterfaceSubClass == SUBCLASS_BOOT &&\r
395 InterfaceDescriptor.InterfaceProtocol == PROTOCOL_KEYBOARD\r
396 ) {\r
ed838d0c 397 return TRUE;\r
398 }\r
399\r
400 return FALSE;\r
401}\r
402\r
a7022cec 403/**\r
404 Get current keyboard layout from HII database.\r
405\r
b4e73a63 406 @return Pointer to HII Keyboard Layout.\r
407 NULL means failure occurred while trying to get keyboard layout.\r
ed838d0c 408\r
a7022cec 409**/\r
813acf3a 410EFI_HII_KEYBOARD_LAYOUT *\r
411GetCurrentKeyboardLayout (\r
412 VOID\r
413 )\r
813acf3a 414{\r
415 EFI_STATUS Status;\r
416 EFI_HII_DATABASE_PROTOCOL *HiiDatabase;\r
417 EFI_HII_KEYBOARD_LAYOUT *KeyboardLayout;\r
418 UINT16 Length;\r
419\r
420 //\r
b4e73a63 421 // Locate HII Database Protocol\r
813acf3a 422 //\r
423 Status = gBS->LocateProtocol (\r
424 &gEfiHiiDatabaseProtocolGuid,\r
425 NULL,\r
426 (VOID **) &HiiDatabase\r
427 );\r
428 if (EFI_ERROR (Status)) {\r
429 return NULL;\r
430 }\r
431\r
432 //\r
433 // Get current keyboard layout from HII database\r
434 //\r
435 Length = 0;\r
436 KeyboardLayout = NULL;\r
437 Status = HiiDatabase->GetKeyboardLayout (\r
438 HiiDatabase,\r
439 NULL,\r
440 &Length,\r
441 KeyboardLayout\r
442 );\r
443 if (Status == EFI_BUFFER_TOO_SMALL) {\r
444 KeyboardLayout = AllocatePool (Length);\r
445 ASSERT (KeyboardLayout != NULL);\r
446\r
447 Status = HiiDatabase->GetKeyboardLayout (\r
448 HiiDatabase,\r
449 NULL,\r
450 &Length,\r
451 KeyboardLayout\r
452 );\r
453 if (EFI_ERROR (Status)) {\r
c92e277d 454 FreePool (KeyboardLayout);\r
813acf3a 455 KeyboardLayout = NULL;\r
456 }\r
457 }\r
458\r
459 return KeyboardLayout;\r
460}\r
461\r
a7022cec 462/**\r
b4e73a63 463 Find Key Descriptor in Key Convertion Table given its USB keycode.\r
a7022cec 464\r
465 @param UsbKeyboardDevice The USB_KB_DEV instance.\r
b4e73a63 466 @param KeyCode USB Keycode.\r
a7022cec 467\r
b4e73a63 468 @return The Key Descriptor in Key Convertion Table.\r
5899f27e 469 NULL means not found.\r
a7022cec 470\r
471**/\r
813acf3a 472EFI_KEY_DESCRIPTOR *\r
473GetKeyDescriptor (\r
474 IN USB_KB_DEV *UsbKeyboardDevice,\r
b4e73a63 475 IN UINT8 KeyCode\r
813acf3a 476 )\r
813acf3a 477{\r
478 UINT8 Index;\r
479\r
b4e73a63 480 //\r
481 // Make sure KeyCode is in the range of [0x4, 0x65] or [0xe0, 0xe7]\r
482 //\r
483 if ((!USBKBD_VALID_KEYCODE (KeyCode)) || ((KeyCode > 0x65) && (KeyCode < 0xe0)) || (KeyCode > 0xe7)) {\r
813acf3a 484 return NULL;\r
485 }\r
486\r
b4e73a63 487 //\r
488 // Calculate the index of Key Descriptor in Key Convertion Table\r
489 //\r
490 if (KeyCode <= 0x65) {\r
491 Index = (UINT8) (KeyCode - 4);\r
813acf3a 492 } else {\r
b4e73a63 493 Index = (UINT8) (KeyCode - 0xe0 + NUMBER_OF_VALID_NON_MODIFIER_USB_KEYCODE);\r
813acf3a 494 }\r
495\r
496 return &UsbKeyboardDevice->KeyConvertionTable[Index];\r
497}\r
498\r
a7022cec 499/**\r
b4e73a63 500 Find Non-Spacing key for given Key descriptor.\r
a7022cec 501\r
502 @param UsbKeyboardDevice The USB_KB_DEV instance.\r
503 @param KeyDescriptor Key descriptor.\r
504\r
5899f27e 505 @return The Non-Spacing key corresponding to KeyDescriptor\r
506 NULL means not found.\r
a7022cec 507\r
508**/\r
813acf3a 509USB_NS_KEY *\r
510FindUsbNsKey (\r
511 IN USB_KB_DEV *UsbKeyboardDevice,\r
512 IN EFI_KEY_DESCRIPTOR *KeyDescriptor\r
513 )\r
813acf3a 514{\r
515 LIST_ENTRY *Link;\r
e15c65a3 516 LIST_ENTRY *NsKeyList;\r
813acf3a 517 USB_NS_KEY *UsbNsKey;\r
3765794c 518\r
e15c65a3 519 NsKeyList = &UsbKeyboardDevice->NsKeyList;\r
520 Link = GetFirstNode (NsKeyList);\r
521 while (!IsNull (NsKeyList, Link)) {\r
813acf3a 522 UsbNsKey = USB_NS_KEY_FORM_FROM_LINK (Link);\r
523\r
524 if (UsbNsKey->NsKey[0].Key == KeyDescriptor->Key) {\r
525 return UsbNsKey;\r
526 }\r
527\r
e15c65a3 528 Link = GetNextNode (NsKeyList, Link);\r
813acf3a 529 }\r
530\r
531 return NULL;\r
532}\r
533\r
a7022cec 534/**\r
b4e73a63 535 Find physical key definition for a given key descriptor.\r
536\r
537 For a specified non-spacing key, there are a list of physical\r
538 keys following it. This function traverses the list of\r
539 physical keys and tries to find the physical key matching\r
540 the KeyDescriptor.\r
a7022cec 541\r
b4e73a63 542 @param UsbNsKey The non-spacing key information.\r
543 @param KeyDescriptor The key descriptor.\r
a7022cec 544\r
545 @return The physical key definition.\r
b4e73a63 546 If no physical key is found, parameter KeyDescriptor is returned.\r
a7022cec 547\r
548**/\r
813acf3a 549EFI_KEY_DESCRIPTOR *\r
550FindPhysicalKey (\r
551 IN USB_NS_KEY *UsbNsKey,\r
552 IN EFI_KEY_DESCRIPTOR *KeyDescriptor\r
553 )\r
813acf3a 554{\r
555 UINTN Index;\r
556 EFI_KEY_DESCRIPTOR *PhysicalKey;\r
557\r
558 PhysicalKey = &UsbNsKey->NsKey[1];\r
559 for (Index = 0; Index < UsbNsKey->KeyCount; Index++) {\r
560 if (KeyDescriptor->Key == PhysicalKey->Key) {\r
561 return PhysicalKey;\r
562 }\r
563\r
564 PhysicalKey++;\r
565 }\r
566\r
567 //\r
568 // No children definition matched, return original key\r
569 //\r
570 return KeyDescriptor;\r
571}\r
572\r
a7022cec 573/**\r
b4e73a63 574 The notification function for EFI_HII_SET_KEYBOARD_LAYOUT_EVENT_GUID.\r
a7022cec 575\r
b4e73a63 576 This function is registered to event of EFI_HII_SET_KEYBOARD_LAYOUT_EVENT_GUID\r
577 group type, which will be triggered by EFI_HII_DATABASE_PROTOCOL.SetKeyboardLayout().\r
578 It tries to get curent keyboard layout from HII database.\r
579\r
580 @param Event Event being signaled.\r
581 @param Context Points to USB_KB_DEV instance.\r
a7022cec 582\r
583**/\r
813acf3a 584VOID\r
585EFIAPI\r
586SetKeyboardLayoutEvent (\r
b4e73a63 587 IN EFI_EVENT Event,\r
588 IN VOID *Context\r
813acf3a 589 )\r
813acf3a 590{\r
591 USB_KB_DEV *UsbKeyboardDevice;\r
592 EFI_HII_KEYBOARD_LAYOUT *KeyboardLayout;\r
593 EFI_KEY_DESCRIPTOR TempKey;\r
594 EFI_KEY_DESCRIPTOR *KeyDescriptor;\r
595 EFI_KEY_DESCRIPTOR *TableEntry;\r
596 EFI_KEY_DESCRIPTOR *NsKey;\r
597 USB_NS_KEY *UsbNsKey;\r
598 UINTN Index;\r
599 UINTN Index2;\r
600 UINTN KeyCount;\r
b4e73a63 601 UINT8 KeyCode;\r
813acf3a 602\r
603 UsbKeyboardDevice = (USB_KB_DEV *) Context;\r
16a97771 604 if (UsbKeyboardDevice->Signature != USB_KB_DEV_SIGNATURE) {\r
605 return;\r
606 }\r
813acf3a 607\r
608 //\r
b4e73a63 609 // Try to get current keyboard layout from HII database\r
813acf3a 610 //\r
611 KeyboardLayout = GetCurrentKeyboardLayout ();\r
612 if (KeyboardLayout == NULL) {\r
613 return;\r
614 }\r
615\r
616 //\r
5899f27e 617 // Re-allocate resource for KeyConvertionTable\r
813acf3a 618 //\r
619 ReleaseKeyboardLayoutResources (UsbKeyboardDevice);\r
b4e73a63 620 UsbKeyboardDevice->KeyConvertionTable = AllocateZeroPool ((NUMBER_OF_VALID_USB_KEYCODE) * sizeof (EFI_KEY_DESCRIPTOR));\r
813acf3a 621 ASSERT (UsbKeyboardDevice->KeyConvertionTable != NULL);\r
622\r
5899f27e 623 //\r
624 // Traverse the list of key descriptors following the header of EFI_HII_KEYBOARD_LAYOUT\r
625 //\r
813acf3a 626 KeyDescriptor = (EFI_KEY_DESCRIPTOR *) (((UINT8 *) KeyboardLayout) + sizeof (EFI_HII_KEYBOARD_LAYOUT));\r
627 for (Index = 0; Index < KeyboardLayout->DescriptorCount; Index++) {\r
628 //\r
629 // Copy from HII keyboard layout package binary for alignment\r
630 //\r
631 CopyMem (&TempKey, KeyDescriptor, sizeof (EFI_KEY_DESCRIPTOR));\r
632\r
633 //\r
b4e73a63 634 // Fill the key into KeyConvertionTable, whose index is calculated from USB keycode.\r
813acf3a 635 //\r
b4e73a63 636 KeyCode = EfiKeyToUsbKeyCodeConvertionTable [(UINT8) (TempKey.Key)];\r
637 TableEntry = GetKeyDescriptor (UsbKeyboardDevice, KeyCode);\r
d12c6a78 638 if (TableEntry == NULL) {\r
639 ReleaseKeyboardLayoutResources (UsbKeyboardDevice);\r
640 FreePool (KeyboardLayout);\r
641 return;\r
642 }\r
813acf3a 643 CopyMem (TableEntry, KeyDescriptor, sizeof (EFI_KEY_DESCRIPTOR));\r
644\r
b4e73a63 645 //\r
646 // For non-spacing key, create the list with a non-spacing key followed by physical keys.\r
647 //\r
813acf3a 648 if (TempKey.Modifier == EFI_NS_KEY_MODIFIER) {\r
d12c6a78 649 UsbNsKey = AllocateZeroPool (sizeof (USB_NS_KEY));\r
813acf3a 650 ASSERT (UsbNsKey != NULL);\r
651\r
652 //\r
653 // Search for sequential children physical key definitions\r
654 //\r
655 KeyCount = 0;\r
656 NsKey = KeyDescriptor + 1;\r
c1fd2767 657 for (Index2 = (UINT8) Index + 1; Index2 < KeyboardLayout->DescriptorCount; Index2++) {\r
813acf3a 658 CopyMem (&TempKey, NsKey, sizeof (EFI_KEY_DESCRIPTOR));\r
ed3a31b5 659 if (TempKey.Modifier == EFI_NS_KEY_DEPENDENCY_MODIFIER) {\r
813acf3a 660 KeyCount++;\r
661 } else {\r
662 break;\r
663 }\r
664 NsKey++;\r
665 }\r
666\r
667 UsbNsKey->Signature = USB_NS_KEY_SIGNATURE;\r
668 UsbNsKey->KeyCount = KeyCount;\r
669 UsbNsKey->NsKey = AllocateCopyPool (\r
670 (KeyCount + 1) * sizeof (EFI_KEY_DESCRIPTOR),\r
671 KeyDescriptor\r
672 );\r
673 InsertTailList (&UsbKeyboardDevice->NsKeyList, &UsbNsKey->Link);\r
674\r
675 //\r
676 // Skip over the child physical keys\r
677 //\r
678 Index += KeyCount;\r
679 KeyDescriptor += KeyCount;\r
680 }\r
681\r
682 KeyDescriptor++;\r
683 }\r
684\r
685 //\r
b4e73a63 686 // There are two EfiKeyEnter, duplicate its key descriptor\r
813acf3a 687 //\r
688 TableEntry = GetKeyDescriptor (UsbKeyboardDevice, 0x58);\r
689 KeyDescriptor = GetKeyDescriptor (UsbKeyboardDevice, 0x28);\r
690 CopyMem (TableEntry, KeyDescriptor, sizeof (EFI_KEY_DESCRIPTOR));\r
691\r
e15c65a3 692 FreePool (KeyboardLayout);\r
813acf3a 693}\r
694\r
a7022cec 695/**\r
b4e73a63 696 Destroy resources for keyboard layout.\r
a7022cec 697\r
698 @param UsbKeyboardDevice The USB_KB_DEV instance.\r
699\r
700**/\r
813acf3a 701VOID\r
702ReleaseKeyboardLayoutResources (\r
b4e73a63 703 IN OUT USB_KB_DEV *UsbKeyboardDevice\r
813acf3a 704 )\r
813acf3a 705{\r
706 USB_NS_KEY *UsbNsKey;\r
707 LIST_ENTRY *Link;\r
708\r
676df92c 709 if (UsbKeyboardDevice->KeyConvertionTable != NULL) {\r
710 FreePool (UsbKeyboardDevice->KeyConvertionTable);\r
711 }\r
813acf3a 712 UsbKeyboardDevice->KeyConvertionTable = NULL;\r
713\r
714 while (!IsListEmpty (&UsbKeyboardDevice->NsKeyList)) {\r
715 Link = GetFirstNode (&UsbKeyboardDevice->NsKeyList);\r
716 UsbNsKey = USB_NS_KEY_FORM_FROM_LINK (Link);\r
717 RemoveEntryList (&UsbNsKey->Link);\r
718\r
676df92c 719 FreePool (UsbNsKey->NsKey);\r
720 FreePool (UsbNsKey);\r
813acf3a 721 }\r
722}\r
723\r
a7022cec 724/**\r
b4e73a63 725 Initialize USB keyboard layout.\r
726\r
727 This function initializes Key Convertion Table for the USB keyboard device.\r
728 It first tries to retrieve layout from HII database. If failed and default\r
729 layout is enabled, then it just uses the default layout.\r
a7022cec 730\r
731 @param UsbKeyboardDevice The USB_KB_DEV instance.\r
732\r
b4e73a63 733 @retval EFI_SUCCESS Initialization succeeded.\r
734 @retval EFI_NOT_READY Keyboard layout cannot be retrieve from HII\r
735 database, and default layout is disabled.\r
736 @retval Other Fail to register event to EFI_HII_SET_KEYBOARD_LAYOUT_EVENT_GUID group.\r
a7022cec 737\r
738**/\r
813acf3a 739EFI_STATUS\r
740InitKeyboardLayout (\r
b4e73a63 741 OUT USB_KB_DEV *UsbKeyboardDevice\r
813acf3a 742 )\r
813acf3a 743{\r
744 EFI_HII_KEYBOARD_LAYOUT *KeyboardLayout;\r
745 EFI_STATUS Status;\r
746\r
b4e73a63 747 UsbKeyboardDevice->KeyConvertionTable = AllocateZeroPool ((NUMBER_OF_VALID_USB_KEYCODE) * sizeof (EFI_KEY_DESCRIPTOR));\r
813acf3a 748 ASSERT (UsbKeyboardDevice->KeyConvertionTable != NULL);\r
749\r
750 InitializeListHead (&UsbKeyboardDevice->NsKeyList);\r
751 UsbKeyboardDevice->CurrentNsKey = NULL;\r
752 UsbKeyboardDevice->KeyboardLayoutEvent = NULL;\r
753\r
754 //\r
5899f27e 755 // Register event to EFI_HII_SET_KEYBOARD_LAYOUT_EVENT_GUID group,\r
b4e73a63 756 // which will be triggered by EFI_HII_DATABASE_PROTOCOL.SetKeyboardLayout().\r
813acf3a 757 //\r
758 Status = gBS->CreateEventEx (\r
e53a6ea9 759 EVT_NOTIFY_SIGNAL,\r
813acf3a 760 TPL_NOTIFY,\r
761 SetKeyboardLayoutEvent,\r
762 UsbKeyboardDevice,\r
7772b176 763 &gEfiHiiKeyBoardLayoutGuid,\r
813acf3a 764 &UsbKeyboardDevice->KeyboardLayoutEvent\r
765 );\r
766 if (EFI_ERROR (Status)) {\r
767 return Status;\r
768 }\r
769\r
813acf3a 770 KeyboardLayout = GetCurrentKeyboardLayout ();\r
771 if (KeyboardLayout != NULL) {\r
772 //\r
5899f27e 773 // If current keyboard layout is successfully retrieved from HII database,\r
774 // force to initialize the keyboard layout.\r
813acf3a 775 //\r
776 gBS->SignalEvent (UsbKeyboardDevice->KeyboardLayoutEvent);\r
777 } else {\r
778 if (FeaturePcdGet (PcdDisableDefaultKeyboardLayoutInUsbKbDriver)) {\r
813acf3a 779 //\r
5899f27e 780 // If no keyboard layout can be retrieved from HII database, and default layout\r
781 // is disabled, then return EFI_NOT_READY.\r
813acf3a 782 //\r
5899f27e 783 return EFI_NOT_READY;\r
813acf3a 784 }\r
5899f27e 785 //\r
786 // If no keyboard layout can be retrieved from HII database, and default layout\r
787 // is enabled, then load the default keyboard layout.\r
788 //\r
c41c3e55 789 InstallDefaultKeyboardLayout (UsbKeyboardDevice);\r
813acf3a 790 }\r
3765794c 791\r
813acf3a 792 return EFI_SUCCESS;\r
793}\r
794\r
ed838d0c 795\r
796/**\r
b4e73a63 797 Initialize USB keyboard device and all private data structures.\r
ed838d0c 798\r
a7022cec 799 @param UsbKeyboardDevice The USB_KB_DEV instance.\r
ed838d0c 800\r
a7022cec 801 @retval EFI_SUCCESS Initialization is successful.\r
b4e73a63 802 @retval EFI_DEVICE_ERROR Keyboard initialization failed.\r
ed838d0c 803\r
804**/\r
805EFI_STATUS\r
806InitUSBKeyboard (\r
b4e73a63 807 IN OUT USB_KB_DEV *UsbKeyboardDevice\r
ed838d0c 808 )\r
809{\r
efe9186f 810 UINT16 ConfigValue;\r
ed838d0c 811 UINT8 Protocol;\r
ed838d0c 812 EFI_STATUS Status;\r
813 UINT32 TransferResult;\r
ed838d0c 814\r
5899f27e 815 REPORT_STATUS_CODE_WITH_DEVICE_PATH (\r
ed838d0c 816 EFI_PROGRESS_CODE,\r
f9876ecf 817 (EFI_PERIPHERAL_KEYBOARD | EFI_P_KEYBOARD_PC_SELF_TEST),\r
5899f27e 818 UsbKeyboardDevice->DevicePath\r
ed838d0c 819 );\r
820\r
c1fd2767
RN
821 InitQueue (&UsbKeyboardDevice->UsbKeyQueue, sizeof (USB_KEY));\r
822 InitQueue (&UsbKeyboardDevice->EfiKeyQueue, sizeof (EFI_KEY_DATA));\r
ed838d0c 823\r
824 //\r
efe9186f 825 // Use the config out of the descriptor\r
826 // Assumed the first config is the correct one and this is not always the case\r
827 //\r
828 Status = UsbGetConfiguration (\r
3765794c 829 UsbKeyboardDevice->UsbIo,\r
830 &ConfigValue,\r
efe9186f 831 &TransferResult\r
832 );\r
833 if (EFI_ERROR (Status)) {\r
834 ConfigValue = 0x01;\r
ed838d0c 835 //\r
16d718a5 836 // Uses default configuration to configure the USB Keyboard device.\r
ed838d0c 837 //\r
16d718a5 838 Status = UsbSetConfiguration (\r
839 UsbKeyboardDevice->UsbIo,\r
840 ConfigValue,\r
841 &TransferResult\r
842 );\r
843 if (EFI_ERROR (Status)) {\r
844 //\r
845 // If configuration could not be set here, it means\r
846 // the keyboard interface has some errors and could\r
847 // not be initialized\r
848 //\r
849 REPORT_STATUS_CODE_WITH_DEVICE_PATH (\r
850 EFI_ERROR_CODE | EFI_ERROR_MINOR,\r
851 (EFI_PERIPHERAL_KEYBOARD | EFI_P_EC_INTERFACE_ERROR),\r
852 UsbKeyboardDevice->DevicePath\r
853 );\r
ed838d0c 854\r
16d718a5 855 return EFI_DEVICE_ERROR;\r
856 }\r
ed838d0c 857 }\r
858\r
859 UsbGetProtocolRequest (\r
860 UsbKeyboardDevice->UsbIo,\r
861 UsbKeyboardDevice->InterfaceDescriptor.InterfaceNumber,\r
862 &Protocol\r
863 );\r
864 //\r
5899f27e 865 // Set boot protocol for the USB Keyboard.\r
ed838d0c 866 // This driver only supports boot protocol.\r
ed838d0c 867 //\r
868 if (Protocol != BOOT_PROTOCOL) {\r
869 UsbSetProtocolRequest (\r
870 UsbKeyboardDevice->UsbIo,\r
871 UsbKeyboardDevice->InterfaceDescriptor.InterfaceNumber,\r
872 BOOT_PROTOCOL\r
873 );\r
874 }\r
ed838d0c 875\r
b4e73a63 876 UsbKeyboardDevice->CtrlOn = FALSE;\r
877 UsbKeyboardDevice->AltOn = FALSE;\r
878 UsbKeyboardDevice->ShiftOn = FALSE;\r
879 UsbKeyboardDevice->NumLockOn = FALSE;\r
880 UsbKeyboardDevice->CapsOn = FALSE;\r
881 UsbKeyboardDevice->ScrollOn = FALSE;\r
3765794c 882\r
b4e73a63 883 UsbKeyboardDevice->LeftCtrlOn = FALSE;\r
884 UsbKeyboardDevice->LeftAltOn = FALSE;\r
885 UsbKeyboardDevice->LeftShiftOn = FALSE;\r
886 UsbKeyboardDevice->LeftLogoOn = FALSE;\r
887 UsbKeyboardDevice->RightCtrlOn = FALSE;\r
888 UsbKeyboardDevice->RightAltOn = FALSE;\r
889 UsbKeyboardDevice->RightShiftOn = FALSE;\r
890 UsbKeyboardDevice->RightLogoOn = FALSE;\r
891 UsbKeyboardDevice->MenuKeyOn = FALSE;\r
892 UsbKeyboardDevice->SysReqOn = FALSE;\r
893\r
894 UsbKeyboardDevice->AltGrOn = FALSE;\r
813acf3a 895\r
896 UsbKeyboardDevice->CurrentNsKey = NULL;\r
ed838d0c 897\r
898 //\r
b4e73a63 899 // Sync the initial state of lights on keyboard.\r
ed838d0c 900 //\r
901 SetKeyLED (UsbKeyboardDevice);\r
902\r
903 ZeroMem (UsbKeyboardDevice->LastKeyCodeArray, sizeof (UINT8) * 8);\r
904\r
905 //\r
c92e277d 906 // Create event for repeat keys' generation.\r
ed838d0c 907 //\r
a7022cec 908 if (UsbKeyboardDevice->RepeatTimer != NULL) {\r
ed838d0c 909 gBS->CloseEvent (UsbKeyboardDevice->RepeatTimer);\r
5899f27e 910 UsbKeyboardDevice->RepeatTimer = NULL;\r
ed838d0c 911 }\r
912\r
c92e277d 913 gBS->CreateEvent (\r
914 EVT_TIMER | EVT_NOTIFY_SIGNAL,\r
4607d9e5 915 TPL_CALLBACK,\r
c92e277d 916 USBKeyboardRepeatHandler,\r
917 UsbKeyboardDevice,\r
918 &UsbKeyboardDevice->RepeatTimer\r
919 );\r
ed838d0c 920\r
c92e277d 921 //\r
922 // Create event for delayed recovery, which deals with device error.\r
923 //\r
a7022cec 924 if (UsbKeyboardDevice->DelayedRecoveryEvent != NULL) {\r
ed838d0c 925 gBS->CloseEvent (UsbKeyboardDevice->DelayedRecoveryEvent);\r
5899f27e 926 UsbKeyboardDevice->DelayedRecoveryEvent = NULL;\r
ed838d0c 927 }\r
928\r
c92e277d 929 gBS->CreateEvent (\r
930 EVT_TIMER | EVT_NOTIFY_SIGNAL,\r
931 TPL_NOTIFY,\r
932 USBKeyboardRecoveryHandler,\r
933 UsbKeyboardDevice,\r
934 &UsbKeyboardDevice->DelayedRecoveryEvent\r
935 );\r
ed838d0c 936\r
937 return EFI_SUCCESS;\r
938}\r
939\r
940\r
941/**\r
b4e73a63 942 Handler function for USB keyboard's asynchronous interrupt transfer.\r
943\r
944 This function is the handler function for USB keyboard's asynchronous interrupt transfer\r
945 to manage the keyboard. It parses the USB keyboard input report, and inserts data to\r
946 keyboard buffer according to state of modifer keys and normal keys. Timer for repeat key\r
947 is also set accordingly.\r
ed838d0c 948\r
a7022cec 949 @param Data A pointer to a buffer that is filled with key data which is\r
950 retrieved via asynchronous interrupt transfer.\r
951 @param DataLength Indicates the size of the data buffer.\r
952 @param Context Pointing to USB_KB_DEV instance.\r
953 @param Result Indicates the result of the asynchronous interrupt transfer.\r
ed838d0c 954\r
b4e73a63 955 @retval EFI_SUCCESS Asynchronous interrupt transfer is handled successfully.\r
956 @retval EFI_DEVICE_ERROR Hardware error occurs.\r
ed838d0c 957\r
958**/\r
959EFI_STATUS\r
960EFIAPI\r
961KeyboardHandler (\r
962 IN VOID *Data,\r
963 IN UINTN DataLength,\r
964 IN VOID *Context,\r
965 IN UINT32 Result\r
966 )\r
967{\r
968 USB_KB_DEV *UsbKeyboardDevice;\r
969 EFI_USB_IO_PROTOCOL *UsbIo;\r
970 UINT8 *CurKeyCodeBuffer;\r
971 UINT8 *OldKeyCodeBuffer;\r
972 UINT8 CurModifierMap;\r
973 UINT8 OldModifierMap;\r
b4e73a63 974 UINT8 Mask;\r
c1fd2767 975 UINTN Index;\r
ed838d0c 976 UINT8 Index2;\r
ed838d0c 977 BOOLEAN KeyRelease;\r
978 BOOLEAN KeyPress;\r
ed838d0c 979 USB_KEY UsbKey;\r
980 UINT8 NewRepeatKey;\r
981 UINT32 UsbStatus;\r
813acf3a 982 EFI_KEY_DESCRIPTOR *KeyDescriptor;\r
ed838d0c 983\r
5899f27e 984 ASSERT (Context != NULL);\r
ed838d0c 985\r
986 NewRepeatKey = 0;\r
ed838d0c 987 UsbKeyboardDevice = (USB_KB_DEV *) Context;\r
988 UsbIo = UsbKeyboardDevice->UsbIo;\r
989\r
990 //\r
b4e73a63 991 // Analyzes Result and performs corresponding action.\r
ed838d0c 992 //\r
993 if (Result != EFI_USB_NOERROR) {\r
994 //\r
995 // Some errors happen during the process\r
996 //\r
5899f27e 997 REPORT_STATUS_CODE_WITH_DEVICE_PATH (\r
ed838d0c 998 EFI_ERROR_CODE | EFI_ERROR_MINOR,\r
f9876ecf 999 (EFI_PERIPHERAL_KEYBOARD | EFI_P_EC_INPUT_ERROR),\r
5899f27e 1000 UsbKeyboardDevice->DevicePath\r
ed838d0c 1001 );\r
1002\r
1003 //\r
b4e73a63 1004 // Stop the repeat key generation if any\r
ed838d0c 1005 //\r
1006 UsbKeyboardDevice->RepeatKey = 0;\r
1007\r
1008 gBS->SetTimer (\r
1009 UsbKeyboardDevice->RepeatTimer,\r
1010 TimerCancel,\r
1011 USBKBD_REPEAT_RATE\r
1012 );\r
1013\r
1014 if ((Result & EFI_USB_ERR_STALL) == EFI_USB_ERR_STALL) {\r
1015 UsbClearEndpointHalt (\r
1016 UsbIo,\r
1017 UsbKeyboardDevice->IntEndpointDescriptor.EndpointAddress,\r
1018 &UsbStatus\r
1019 );\r
1020 }\r
1021\r
1022 //\r
1023 // Delete & Submit this interrupt again\r
3765794c 1024 // Handler of DelayedRecoveryEvent triggered by timer will re-submit the interrupt.\r
ed838d0c 1025 //\r
c52fa98c 1026 UsbIo->UsbAsyncInterruptTransfer (\r
5899f27e 1027 UsbIo,\r
1028 UsbKeyboardDevice->IntEndpointDescriptor.EndpointAddress,\r
1029 FALSE,\r
1030 0,\r
1031 0,\r
1032 NULL,\r
1033 NULL\r
1034 );\r
1035 //\r
b4e73a63 1036 // EFI_USB_INTERRUPT_DELAY is defined in USB standard for error handling.\r
5899f27e 1037 //\r
ed838d0c 1038 gBS->SetTimer (\r
5899f27e 1039 UsbKeyboardDevice->DelayedRecoveryEvent,\r
1040 TimerRelative,\r
1041 EFI_USB_INTERRUPT_DELAY\r
1042 );\r
ed838d0c 1043\r
1044 return EFI_DEVICE_ERROR;\r
1045 }\r
1046\r
5899f27e 1047 //\r
1048 // If no error and no data, just return EFI_SUCCESS.\r
1049 //\r
ed838d0c 1050 if (DataLength == 0 || Data == NULL) {\r
1051 return EFI_SUCCESS;\r
1052 }\r
1053\r
5899f27e 1054 //\r
1055 // Following code checks current keyboard input report against old key code buffer.\r
1056 // According to USB HID Firmware Specification, the report consists of 8 bytes.\r
1057 // Byte 0 is map of Modifier keys.\r
1058 // Byte 1 is reserved.\r
1059 // Bytes 2 to 7 are keycodes.\r
1060 //\r
ed838d0c 1061 CurKeyCodeBuffer = (UINT8 *) Data;\r
1062 OldKeyCodeBuffer = UsbKeyboardDevice->LastKeyCodeArray;\r
1063\r
1064 //\r
5899f27e 1065 // Checks for new key stroke.\r
ed838d0c 1066 //\r
1067 for (Index = 0; Index < 8; Index++) {\r
1068 if (OldKeyCodeBuffer[Index] != CurKeyCodeBuffer[Index]) {\r
1069 break;\r
1070 }\r
1071 }\r
1072\r
5899f27e 1073 //\r
1074 // If no new key, return EFI_SUCCESS immediately.\r
1075 //\r
ed838d0c 1076 if (Index == 8) {\r
1077 return EFI_SUCCESS;\r
1078 }\r
1079\r
1080 //\r
5899f27e 1081 // Parse the modifier key, which is the first byte of keyboard input report.\r
ed838d0c 1082 //\r
1083 CurModifierMap = CurKeyCodeBuffer[0];\r
1084 OldModifierMap = OldKeyCodeBuffer[0];\r
1085\r
1086 //\r
5899f27e 1087 // Handle modifier key's pressing or releasing situation.\r
b4e73a63 1088 // According to USB HID Firmware spec, Byte 0 uses folloing map of Modifier keys:\r
1089 // Bit0: Left Control, Keycode: 0xe0\r
1090 // Bit1: Left Shift, Keycode: 0xe1\r
1091 // Bit2: Left Alt, Keycode: 0xe2\r
1092 // Bit3: Left GUI, Keycode: 0xe3\r
1093 // Bit4: Right Control, Keycode: 0xe4\r
1094 // Bit5: Right Shift, Keycode: 0xe5\r
1095 // Bit6: Right Alt, Keycode: 0xe6\r
1096 // Bit7: Right GUI, Keycode: 0xe7\r
ed838d0c 1097 //\r
1098 for (Index = 0; Index < 8; Index++) {\r
b4e73a63 1099 Mask = (UINT8) (1 << Index);\r
1100 if ((CurModifierMap & Mask) != (OldModifierMap & Mask)) {\r
ed838d0c 1101 //\r
b4e73a63 1102 // If current modifier key is up, then CurModifierMap & Mask = 0;\r
5899f27e 1103 // otherwise it is a non-zero value.\r
b4e73a63 1104 // Insert the changed modifier key into key buffer.\r
ed838d0c 1105 //\r
c1fd2767
RN
1106 UsbKey.KeyCode = (UINT8) (0xe0 + Index);\r
1107 UsbKey.Down = (BOOLEAN) ((CurModifierMap & Mask) != 0);\r
1108 Enqueue (&UsbKeyboardDevice->UsbKeyQueue, &UsbKey, sizeof (UsbKey));\r
ed838d0c 1109 }\r
1110 }\r
1111\r
1112 //\r
5899f27e 1113 // Handle normal key's releasing situation\r
b4e73a63 1114 // Bytes 2 to 7 are for normal keycodes\r
ed838d0c 1115 //\r
1116 KeyRelease = FALSE;\r
1117 for (Index = 2; Index < 8; Index++) {\r
1118\r
1119 if (!USBKBD_VALID_KEYCODE (OldKeyCodeBuffer[Index])) {\r
1120 continue;\r
1121 }\r
5899f27e 1122 //\r
1123 // For any key in old keycode buffer, if it is not in current keycode buffer,\r
1124 // then it is released. Otherwise, it is not released.\r
1125 //\r
ed838d0c 1126 KeyRelease = TRUE;\r
1127 for (Index2 = 2; Index2 < 8; Index2++) {\r
1128\r
1129 if (!USBKBD_VALID_KEYCODE (CurKeyCodeBuffer[Index2])) {\r
1130 continue;\r
1131 }\r
1132\r
1133 if (OldKeyCodeBuffer[Index] == CurKeyCodeBuffer[Index2]) {\r
1134 KeyRelease = FALSE;\r
1135 break;\r
1136 }\r
1137 }\r
1138\r
1139 if (KeyRelease) {\r
c1fd2767
RN
1140 UsbKey.KeyCode = OldKeyCodeBuffer[Index];\r
1141 UsbKey.Down = FALSE;\r
1142 Enqueue (&UsbKeyboardDevice->UsbKeyQueue, &UsbKey, sizeof (UsbKey));\r
ed838d0c 1143 //\r
5899f27e 1144 // The original repeat key is released.\r
ed838d0c 1145 //\r
1146 if (OldKeyCodeBuffer[Index] == UsbKeyboardDevice->RepeatKey) {\r
1147 UsbKeyboardDevice->RepeatKey = 0;\r
1148 }\r
1149 }\r
1150 }\r
1151\r
1152 //\r
5899f27e 1153 // If original repeat key is released, cancel the repeat timer\r
ed838d0c 1154 //\r
1155 if (UsbKeyboardDevice->RepeatKey == 0) {\r
1156 gBS->SetTimer (\r
5899f27e 1157 UsbKeyboardDevice->RepeatTimer,\r
1158 TimerCancel,\r
1159 USBKBD_REPEAT_RATE\r
1160 );\r
ed838d0c 1161 }\r
1162\r
1163 //\r
5899f27e 1164 // Handle normal key's pressing situation\r
ed838d0c 1165 //\r
1166 KeyPress = FALSE;\r
1167 for (Index = 2; Index < 8; Index++) {\r
1168\r
1169 if (!USBKBD_VALID_KEYCODE (CurKeyCodeBuffer[Index])) {\r
1170 continue;\r
1171 }\r
5899f27e 1172 //\r
1173 // For any key in current keycode buffer, if it is not in old keycode buffer,\r
1174 // then it is pressed. Otherwise, it is not pressed.\r
1175 //\r
ed838d0c 1176 KeyPress = TRUE;\r
1177 for (Index2 = 2; Index2 < 8; Index2++) {\r
1178\r
1179 if (!USBKBD_VALID_KEYCODE (OldKeyCodeBuffer[Index2])) {\r
1180 continue;\r
1181 }\r
1182\r
1183 if (CurKeyCodeBuffer[Index] == OldKeyCodeBuffer[Index2]) {\r
1184 KeyPress = FALSE;\r
1185 break;\r
1186 }\r
1187 }\r
1188\r
1189 if (KeyPress) {\r
c1fd2767
RN
1190 UsbKey.KeyCode = CurKeyCodeBuffer[Index];\r
1191 UsbKey.Down = TRUE;\r
1192 Enqueue (&UsbKeyboardDevice->UsbKeyQueue, &UsbKey, sizeof (UsbKey));\r
5899f27e 1193\r
ed838d0c 1194 //\r
5899f27e 1195 // Handle repeat key\r
ed838d0c 1196 //\r
813acf3a 1197 KeyDescriptor = GetKeyDescriptor (UsbKeyboardDevice, CurKeyCodeBuffer[Index]);\r
18b50d66
FT
1198 if (KeyDescriptor == NULL) {\r
1199 continue;\r
1200 }\r
81464cf1 1201\r
813acf3a 1202 if (KeyDescriptor->Modifier == EFI_NUM_LOCK_MODIFIER || KeyDescriptor->Modifier == EFI_CAPS_LOCK_MODIFIER) {\r
5899f27e 1203 //\r
1204 // For NumLock or CapsLock pressed, there is no need to handle repeat key for them.\r
1205 //\r
ed838d0c 1206 UsbKeyboardDevice->RepeatKey = 0;\r
1207 } else {\r
ed838d0c 1208 //\r
5899f27e 1209 // Prepare new repeat key, and clear the original one.\r
ed838d0c 1210 //\r
5899f27e 1211 NewRepeatKey = CurKeyCodeBuffer[Index];\r
ed838d0c 1212 UsbKeyboardDevice->RepeatKey = 0;\r
1213 }\r
1214 }\r
1215 }\r
1216\r
1217 //\r
b4e73a63 1218 // Update LastKeycodeArray buffer in the UsbKeyboardDevice data structure.\r
ed838d0c 1219 //\r
1220 for (Index = 0; Index < 8; Index++) {\r
1221 UsbKeyboardDevice->LastKeyCodeArray[Index] = CurKeyCodeBuffer[Index];\r
1222 }\r
1223\r
ed838d0c 1224 //\r
b4e73a63 1225 // If there is new key pressed, update the RepeatKey value, and set the\r
ed838d0c 1226 // timer to repeate delay timer\r
1227 //\r
1228 if (NewRepeatKey != 0) {\r
1229 //\r
5899f27e 1230 // Sets trigger time to "Repeat Delay Time",\r
ed838d0c 1231 // to trigger the repeat timer when the key is hold long\r
1232 // enough time.\r
1233 //\r
1234 gBS->SetTimer (\r
b4e73a63 1235 UsbKeyboardDevice->RepeatTimer,\r
1236 TimerRelative,\r
1237 USBKBD_REPEAT_DELAY\r
1238 );\r
ed838d0c 1239 UsbKeyboardDevice->RepeatKey = NewRepeatKey;\r
1240 }\r
1241\r
1242 return EFI_SUCCESS;\r
1243}\r
1244\r
1245\r
1246/**\r
b4e73a63 1247 Retrieves a USB keycode after parsing the raw data in keyboard buffer.\r
1248\r
1249 This function parses keyboard buffer. It updates state of modifier key for\r
1250 USB_KB_DEV instancem, and returns keycode for output.\r
ed838d0c 1251\r
a7022cec 1252 @param UsbKeyboardDevice The USB_KB_DEV instance.\r
b4e73a63 1253 @param KeyCode Pointer to the USB keycode for output.\r
ed838d0c 1254\r
b4e73a63 1255 @retval EFI_SUCCESS Keycode successfully parsed.\r
1256 @retval EFI_NOT_READY Keyboard buffer is not ready for a valid keycode\r
ed838d0c 1257\r
1258**/\r
1259EFI_STATUS\r
1260USBParseKey (\r
1261 IN OUT USB_KB_DEV *UsbKeyboardDevice,\r
b4e73a63 1262 OUT UINT8 *KeyCode\r
ed838d0c 1263 )\r
1264{\r
813acf3a 1265 USB_KEY UsbKey;\r
1266 EFI_KEY_DESCRIPTOR *KeyDescriptor;\r
ed838d0c 1267\r
b4e73a63 1268 *KeyCode = 0;\r
ed838d0c 1269\r
c1fd2767 1270 while (!IsQueueEmpty (&UsbKeyboardDevice->UsbKeyQueue)) {\r
ed838d0c 1271 //\r
5899f27e 1272 // Pops one raw data off.\r
ed838d0c 1273 //\r
c1fd2767 1274 Dequeue (&UsbKeyboardDevice->UsbKeyQueue, &UsbKey, sizeof (UsbKey));\r
ed838d0c 1275\r
813acf3a 1276 KeyDescriptor = GetKeyDescriptor (UsbKeyboardDevice, UsbKey.KeyCode);\r
18b50d66
FT
1277 if (KeyDescriptor == NULL) {\r
1278 continue;\r
1279 }\r
b4e73a63 1280 if (!UsbKey.Down) {\r
5899f27e 1281 //\r
1282 // Key is released.\r
1283 //\r
813acf3a 1284 switch (KeyDescriptor->Modifier) {\r
ed838d0c 1285\r
66aa04e4 1286 //\r
b4e73a63 1287 // Ctrl release\r
66aa04e4 1288 //\r
813acf3a 1289 case EFI_LEFT_CONTROL_MODIFIER:\r
b4e73a63 1290 UsbKeyboardDevice->LeftCtrlOn = FALSE;\r
1291 UsbKeyboardDevice->CtrlOn = FALSE;\r
66aa04e4 1292 break;\r
813acf3a 1293 case EFI_RIGHT_CONTROL_MODIFIER:\r
b4e73a63 1294 UsbKeyboardDevice->RightCtrlOn = FALSE;\r
1295 UsbKeyboardDevice->CtrlOn = FALSE;\r
ed838d0c 1296 break;\r
1297\r
66aa04e4 1298 //\r
1299 // Shift release\r
1300 //\r
813acf3a 1301 case EFI_LEFT_SHIFT_MODIFIER:\r
b4e73a63 1302 UsbKeyboardDevice->LeftShiftOn = FALSE;\r
1303 UsbKeyboardDevice->ShiftOn = FALSE;\r
66aa04e4 1304 break;\r
813acf3a 1305 case EFI_RIGHT_SHIFT_MODIFIER:\r
b4e73a63 1306 UsbKeyboardDevice->RightShiftOn = FALSE;\r
1307 UsbKeyboardDevice->ShiftOn = FALSE;\r
ed838d0c 1308 break;\r
1309\r
66aa04e4 1310 //\r
1311 // Alt release\r
1312 //\r
813acf3a 1313 case EFI_LEFT_ALT_MODIFIER:\r
b4e73a63 1314 UsbKeyboardDevice->LeftAltOn = FALSE;\r
1315 UsbKeyboardDevice->AltOn = FALSE;\r
66aa04e4 1316 break;\r
813acf3a 1317 case EFI_RIGHT_ALT_MODIFIER:\r
b4e73a63 1318 UsbKeyboardDevice->RightAltOn = FALSE;\r
1319 UsbKeyboardDevice->AltOn = FALSE;\r
ed838d0c 1320 break;\r
1321\r
66aa04e4 1322 //\r
813acf3a 1323 // Left Logo release\r
66aa04e4 1324 //\r
813acf3a 1325 case EFI_LEFT_LOGO_MODIFIER:\r
b4e73a63 1326 UsbKeyboardDevice->LeftLogoOn = FALSE;\r
66aa04e4 1327 break;\r
813acf3a 1328\r
1329 //\r
1330 // Right Logo release\r
1331 //\r
1332 case EFI_RIGHT_LOGO_MODIFIER:\r
b4e73a63 1333 UsbKeyboardDevice->RightLogoOn = FALSE;\r
66aa04e4 1334 break;\r
1335\r
1336 //\r
813acf3a 1337 // Menu key release\r
66aa04e4 1338 //\r
813acf3a 1339 case EFI_MENU_MODIFIER:\r
b4e73a63 1340 UsbKeyboardDevice->MenuKeyOn = FALSE;\r
66aa04e4 1341 break;\r
1342\r
1343 //\r
1344 // SysReq release\r
1345 //\r
a77267d2 1346 case EFI_PRINT_MODIFIER:\r
813acf3a 1347 case EFI_SYS_REQUEST_MODIFIER:\r
b4e73a63 1348 UsbKeyboardDevice->SysReqOn = FALSE;\r
66aa04e4 1349 break;\r
813acf3a 1350\r
1351 //\r
1352 // AltGr release\r
1353 //\r
1354 case EFI_ALT_GR_MODIFIER:\r
b4e73a63 1355 UsbKeyboardDevice->AltGrOn = FALSE;\r
813acf3a 1356 break;\r
1357\r
ed838d0c 1358 default:\r
1359 break;\r
1360 }\r
1361\r
1362 continue;\r
1363 }\r
1364\r
1365 //\r
1366 // Analyzes key pressing situation\r
1367 //\r
813acf3a 1368 switch (KeyDescriptor->Modifier) {\r
ed838d0c 1369\r
813acf3a 1370 //\r
b4e73a63 1371 // Ctrl press\r
813acf3a 1372 //\r
1373 case EFI_LEFT_CONTROL_MODIFIER:\r
b4e73a63 1374 UsbKeyboardDevice->LeftCtrlOn = TRUE;\r
1375 UsbKeyboardDevice->CtrlOn = TRUE;\r
66aa04e4 1376 break;\r
813acf3a 1377 case EFI_RIGHT_CONTROL_MODIFIER:\r
b4e73a63 1378 UsbKeyboardDevice->RightCtrlOn = TRUE;\r
1379 UsbKeyboardDevice->CtrlOn = TRUE;\r
ed838d0c 1380 break;\r
1381\r
66aa04e4 1382 //\r
1383 // Shift press\r
1384 //\r
813acf3a 1385 case EFI_LEFT_SHIFT_MODIFIER:\r
b4e73a63 1386 UsbKeyboardDevice->LeftShiftOn = TRUE;\r
1387 UsbKeyboardDevice->ShiftOn = TRUE;\r
66aa04e4 1388 break;\r
813acf3a 1389 case EFI_RIGHT_SHIFT_MODIFIER:\r
b4e73a63 1390 UsbKeyboardDevice->RightShiftOn = TRUE;\r
1391 UsbKeyboardDevice->ShiftOn = TRUE;\r
ed838d0c 1392 break;\r
1393\r
66aa04e4 1394 //\r
1395 // Alt press\r
1396 //\r
813acf3a 1397 case EFI_LEFT_ALT_MODIFIER:\r
b4e73a63 1398 UsbKeyboardDevice->LeftAltOn = TRUE;\r
1399 UsbKeyboardDevice->AltOn = TRUE;\r
66aa04e4 1400 break;\r
813acf3a 1401 case EFI_RIGHT_ALT_MODIFIER:\r
b4e73a63 1402 UsbKeyboardDevice->RightAltOn = TRUE;\r
1403 UsbKeyboardDevice->AltOn = TRUE;\r
ed838d0c 1404 break;\r
1405\r
66aa04e4 1406 //\r
813acf3a 1407 // Left Logo press\r
66aa04e4 1408 //\r
813acf3a 1409 case EFI_LEFT_LOGO_MODIFIER:\r
b4e73a63 1410 UsbKeyboardDevice->LeftLogoOn = TRUE;\r
66aa04e4 1411 break;\r
813acf3a 1412\r
1413 //\r
1414 // Right Logo press\r
1415 //\r
1416 case EFI_RIGHT_LOGO_MODIFIER:\r
b4e73a63 1417 UsbKeyboardDevice->RightLogoOn = TRUE;\r
ed838d0c 1418 break;\r
1419\r
ed838d0c 1420 //\r
813acf3a 1421 // Menu key press\r
66aa04e4 1422 //\r
813acf3a 1423 case EFI_MENU_MODIFIER:\r
b4e73a63 1424 UsbKeyboardDevice->MenuKeyOn = TRUE;\r
66aa04e4 1425 break;\r
1426\r
1427 //\r
1428 // SysReq press\r
ed838d0c 1429 //\r
a77267d2 1430 case EFI_PRINT_MODIFIER:\r
813acf3a 1431 case EFI_SYS_REQUEST_MODIFIER:\r
b4e73a63 1432 UsbKeyboardDevice->SysReqOn = TRUE;\r
66aa04e4 1433 break;\r
1434\r
813acf3a 1435 //\r
1436 // AltGr press\r
1437 //\r
1438 case EFI_ALT_GR_MODIFIER:\r
b4e73a63 1439 UsbKeyboardDevice->AltGrOn = TRUE;\r
813acf3a 1440 break;\r
1441\r
1442 case EFI_NUM_LOCK_MODIFIER:\r
66aa04e4 1443 //\r
b4e73a63 1444 // Toggle NumLock\r
66aa04e4 1445 //\r
b4e73a63 1446 UsbKeyboardDevice->NumLockOn = (BOOLEAN) (!(UsbKeyboardDevice->NumLockOn));\r
ed838d0c 1447 SetKeyLED (UsbKeyboardDevice);\r
ed838d0c 1448 break;\r
1449\r
813acf3a 1450 case EFI_CAPS_LOCK_MODIFIER:\r
66aa04e4 1451 //\r
b4e73a63 1452 // Toggle CapsLock\r
66aa04e4 1453 //\r
b4e73a63 1454 UsbKeyboardDevice->CapsOn = (BOOLEAN) (!(UsbKeyboardDevice->CapsOn));\r
ed838d0c 1455 SetKeyLED (UsbKeyboardDevice);\r
ed838d0c 1456 break;\r
1457\r
813acf3a 1458 case EFI_SCROLL_LOCK_MODIFIER:\r
66aa04e4 1459 //\r
b4e73a63 1460 // Toggle ScrollLock\r
66aa04e4 1461 //\r
b4e73a63 1462 UsbKeyboardDevice->ScrollOn = (BOOLEAN) (!(UsbKeyboardDevice->ScrollOn));\r
ed838d0c 1463 SetKeyLED (UsbKeyboardDevice);\r
ed838d0c 1464 break;\r
1465\r
ed838d0c 1466 default:\r
1467 break;\r
1468 }\r
1469\r
1470 //\r
5899f27e 1471 // When encountering Ctrl + Alt + Del, then warm reset.\r
ed838d0c 1472 //\r
813acf3a 1473 if (KeyDescriptor->Modifier == EFI_DELETE_MODIFIER) {\r
b4e73a63 1474 if ((UsbKeyboardDevice->CtrlOn) && (UsbKeyboardDevice->AltOn)) {\r
ed838d0c 1475 gRT->ResetSystem (EfiResetWarm, EFI_SUCCESS, 0, NULL);\r
1476 }\r
1477 }\r
1478\r
b4e73a63 1479 *KeyCode = UsbKey.KeyCode;\r
ed838d0c 1480 return EFI_SUCCESS;\r
1481 }\r
1482\r
1483 return EFI_NOT_READY;\r
ed838d0c 1484}\r
1485\r
1486\r
ed838d0c 1487/**\r
b4e73a63 1488 Converts USB Keycode ranging from 0x4 to 0x65 to EFI_INPUT_KEY.\r
ed838d0c 1489\r
b4e73a63 1490 @param UsbKeyboardDevice The USB_KB_DEV instance.\r
1491 @param KeyCode Indicates the key code that will be interpreted.\r
c1fd2767 1492 @param KeyData A pointer to a buffer that is filled in with\r
b4e73a63 1493 the keystroke information for the key that\r
1494 was pressed.\r
ed838d0c 1495\r
b4e73a63 1496 @retval EFI_SUCCESS Success.\r
1497 @retval EFI_INVALID_PARAMETER KeyCode is not in the range of 0x4 to 0x65.\r
1498 @retval EFI_INVALID_PARAMETER Translated EFI_INPUT_KEY has zero for both ScanCode and UnicodeChar.\r
1499 @retval EFI_NOT_READY KeyCode represents a dead key with EFI_NS_KEY_MODIFIER\r
81464cf1 1500 @retval EFI_DEVICE_ERROR Keyboard layout is invalid.\r
ed838d0c 1501\r
1502**/\r
1503EFI_STATUS\r
5899f27e 1504UsbKeyCodeToEfiInputKey (\r
c1fd2767
RN
1505 IN USB_KB_DEV *UsbKeyboardDevice,\r
1506 IN UINT8 KeyCode,\r
1507 OUT EFI_KEY_DATA *KeyData\r
ed838d0c 1508 )\r
1509{\r
c1fd2767
RN
1510 EFI_KEY_DESCRIPTOR *KeyDescriptor;\r
1511 LIST_ENTRY *Link;\r
1512 LIST_ENTRY *NotifyList;\r
3765794c 1513 KEYBOARD_CONSOLE_IN_EX_NOTIFY *CurrentNotify;\r
ed838d0c 1514\r
ed838d0c 1515 //\r
3765794c 1516 // KeyCode must in the range of [0x4, 0x65] or [0xe0, 0xe7].\r
ed838d0c 1517 //\r
b4e73a63 1518 KeyDescriptor = GetKeyDescriptor (UsbKeyboardDevice, KeyCode);\r
18b50d66
FT
1519 if (KeyDescriptor == NULL) {\r
1520 return EFI_DEVICE_ERROR;\r
1521 }\r
813acf3a 1522\r
813acf3a 1523 if (KeyDescriptor->Modifier == EFI_NS_KEY_MODIFIER) {\r
5899f27e 1524 //\r
1525 // If this is a dead key with EFI_NS_KEY_MODIFIER, then record it and return.\r
1526 //\r
813acf3a 1527 UsbKeyboardDevice->CurrentNsKey = FindUsbNsKey (UsbKeyboardDevice, KeyDescriptor);\r
1528 return EFI_NOT_READY;\r
1529 }\r
1530\r
813acf3a 1531 if (UsbKeyboardDevice->CurrentNsKey != NULL) {\r
5899f27e 1532 //\r
1533 // If this keystroke follows a non-spacing key, then find the descriptor for corresponding\r
1534 // physical key.\r
1535 //\r
813acf3a 1536 KeyDescriptor = FindPhysicalKey (UsbKeyboardDevice->CurrentNsKey, KeyDescriptor);\r
1537 UsbKeyboardDevice->CurrentNsKey = NULL;\r
66aa04e4 1538 }\r
1539\r
81464cf1 1540 //\r
1541 // Make sure modifier of Key Descriptor is in the valid range according to UEFI spec.\r
1542 //\r
26fab514 1543 if (KeyDescriptor->Modifier >= (sizeof (ModifierValueToEfiScanCodeConvertionTable) / sizeof (UINT8))) {\r
81464cf1 1544 return EFI_DEVICE_ERROR;\r
1545 }\r
1546\r
c1fd2767
RN
1547 KeyData->Key.ScanCode = ModifierValueToEfiScanCodeConvertionTable[KeyDescriptor->Modifier];\r
1548 KeyData->Key.UnicodeChar = KeyDescriptor->Unicode;\r
ed838d0c 1549\r
5899f27e 1550 if ((KeyDescriptor->AffectedAttribute & EFI_AFFECTED_BY_STANDARD_SHIFT)!= 0) {\r
b4e73a63 1551 if (UsbKeyboardDevice->ShiftOn) {\r
c1fd2767 1552 KeyData->Key.UnicodeChar = KeyDescriptor->ShiftedUnicode;\r
ed838d0c 1553\r
813acf3a 1554 //\r
1555 // Need not return associated shift state if a class of printable characters that\r
1556 // are normally adjusted by shift modifiers. e.g. Shift Key + 'f' key = 'F'\r
1557 //\r
5899f27e 1558 if ((KeyDescriptor->AffectedAttribute & EFI_AFFECTED_BY_CAPS_LOCK) != 0) {\r
b4e73a63 1559 UsbKeyboardDevice->LeftShiftOn = FALSE;\r
1560 UsbKeyboardDevice->RightShiftOn = FALSE;\r
813acf3a 1561 }\r
ed838d0c 1562\r
b4e73a63 1563 if (UsbKeyboardDevice->AltGrOn) {\r
c1fd2767 1564 KeyData->Key.UnicodeChar = KeyDescriptor->ShiftedAltGrUnicode;\r
813acf3a 1565 }\r
1566 } else {\r
1567 //\r
1568 // Shift off\r
1569 //\r
c1fd2767 1570 KeyData->Key.UnicodeChar = KeyDescriptor->Unicode;\r
ed838d0c 1571\r
b4e73a63 1572 if (UsbKeyboardDevice->AltGrOn) {\r
c1fd2767 1573 KeyData->Key.UnicodeChar = KeyDescriptor->AltGrUnicode;\r
813acf3a 1574 }\r
1575 }\r
ed838d0c 1576 }\r
1577\r
5899f27e 1578 if ((KeyDescriptor->AffectedAttribute & EFI_AFFECTED_BY_CAPS_LOCK) != 0) {\r
b4e73a63 1579 if (UsbKeyboardDevice->CapsOn) {\r
c1fd2767
RN
1580 if (KeyData->Key.UnicodeChar == KeyDescriptor->Unicode) {\r
1581 KeyData->Key.UnicodeChar = KeyDescriptor->ShiftedUnicode;\r
1582 } else if (KeyData->Key.UnicodeChar == KeyDescriptor->ShiftedUnicode) {\r
1583 KeyData->Key.UnicodeChar = KeyDescriptor->Unicode;\r
813acf3a 1584 }\r
ed838d0c 1585 }\r
1586 }\r
813acf3a 1587\r
ed3a31b5 1588 if ((KeyDescriptor->AffectedAttribute & EFI_AFFECTED_BY_NUM_LOCK) != 0) {\r
5899f27e 1589 //\r
1590 // For key affected by NumLock, if NumLock is on and Shift is not pressed, then it means\r
1591 // normal key, instead of original control key. So the ScanCode should be cleaned.\r
1592 // Otherwise, it means control key, so preserve the EFI Scan Code and clear the unicode keycode.\r
1593 //\r
b4e73a63 1594 if ((UsbKeyboardDevice->NumLockOn) && (!(UsbKeyboardDevice->ShiftOn))) {\r
c1fd2767 1595 KeyData->Key.ScanCode = SCAN_NULL;\r
ed838d0c 1596 } else {\r
3765794c 1597 KeyData->Key.UnicodeChar = CHAR_NULL;\r
ed838d0c 1598 }\r
1599 }\r
1600\r
813acf3a 1601 //\r
1602 // Translate Unicode 0x1B (ESC) to EFI Scan Code\r
1603 //\r
c1fd2767
RN
1604 if (KeyData->Key.UnicodeChar == 0x1B && KeyData->Key.ScanCode == SCAN_NULL) {\r
1605 KeyData->Key.ScanCode = SCAN_ESC;\r
3765794c 1606 KeyData->Key.UnicodeChar = CHAR_NULL;\r
813acf3a 1607 }\r
1608\r
5899f27e 1609 //\r
1610 // Not valid for key without both unicode key code and EFI Scan Code.\r
1611 //\r
c1fd2767 1612 if (KeyData->Key.UnicodeChar == 0 && KeyData->Key.ScanCode == SCAN_NULL) {\r
3765794c 1613 if (!UsbKeyboardDevice->IsSupportPartialKey) {\r
ed838d0c 1614 return EFI_NOT_READY;\r
3765794c 1615 }\r
ed838d0c 1616 }\r
1617\r
66aa04e4 1618 //\r
1619 // Save Shift/Toggle state\r
1620 //\r
c1fd2767
RN
1621 KeyData->KeyState.KeyShiftState = EFI_SHIFT_STATE_VALID;\r
1622 KeyData->KeyState.KeyToggleState = EFI_TOGGLE_STATE_VALID;\r
1623\r
b4e73a63 1624 if (UsbKeyboardDevice->LeftCtrlOn) {\r
c1fd2767 1625 KeyData->KeyState.KeyShiftState |= EFI_LEFT_CONTROL_PRESSED;\r
66aa04e4 1626 }\r
b4e73a63 1627 if (UsbKeyboardDevice->RightCtrlOn) {\r
c1fd2767 1628 KeyData->KeyState.KeyShiftState |= EFI_RIGHT_CONTROL_PRESSED;\r
66aa04e4 1629 }\r
b4e73a63 1630 if (UsbKeyboardDevice->LeftAltOn) {\r
c1fd2767 1631 KeyData->KeyState.KeyShiftState |= EFI_LEFT_ALT_PRESSED;\r
66aa04e4 1632 }\r
b4e73a63 1633 if (UsbKeyboardDevice->RightAltOn) {\r
c1fd2767 1634 KeyData->KeyState.KeyShiftState |= EFI_RIGHT_ALT_PRESSED;\r
66aa04e4 1635 }\r
b4e73a63 1636 if (UsbKeyboardDevice->LeftShiftOn) {\r
c1fd2767 1637 KeyData->KeyState.KeyShiftState |= EFI_LEFT_SHIFT_PRESSED;\r
66aa04e4 1638 }\r
b4e73a63 1639 if (UsbKeyboardDevice->RightShiftOn) {\r
c1fd2767 1640 KeyData->KeyState.KeyShiftState |= EFI_RIGHT_SHIFT_PRESSED;\r
66aa04e4 1641 }\r
b4e73a63 1642 if (UsbKeyboardDevice->LeftLogoOn) {\r
c1fd2767 1643 KeyData->KeyState.KeyShiftState |= EFI_LEFT_LOGO_PRESSED;\r
66aa04e4 1644 }\r
b4e73a63 1645 if (UsbKeyboardDevice->RightLogoOn) {\r
c1fd2767 1646 KeyData->KeyState.KeyShiftState |= EFI_RIGHT_LOGO_PRESSED;\r
66aa04e4 1647 }\r
b4e73a63 1648 if (UsbKeyboardDevice->MenuKeyOn) {\r
c1fd2767 1649 KeyData->KeyState.KeyShiftState |= EFI_MENU_KEY_PRESSED;\r
66aa04e4 1650 }\r
b4e73a63 1651 if (UsbKeyboardDevice->SysReqOn) {\r
c1fd2767 1652 KeyData->KeyState.KeyShiftState |= EFI_SYS_REQ_PRESSED;\r
813acf3a 1653 }\r
66aa04e4 1654\r
b4e73a63 1655 if (UsbKeyboardDevice->ScrollOn) {\r
c1fd2767 1656 KeyData->KeyState.KeyToggleState |= EFI_SCROLL_LOCK_ACTIVE;\r
66aa04e4 1657 }\r
b4e73a63 1658 if (UsbKeyboardDevice->NumLockOn) {\r
c1fd2767 1659 KeyData->KeyState.KeyToggleState |= EFI_NUM_LOCK_ACTIVE;\r
66aa04e4 1660 }\r
b4e73a63 1661 if (UsbKeyboardDevice->CapsOn) {\r
c1fd2767 1662 KeyData->KeyState.KeyToggleState |= EFI_CAPS_LOCK_ACTIVE;\r
66aa04e4 1663 }\r
3765794c 1664 if (UsbKeyboardDevice->IsSupportPartialKey) {\r
1665 KeyData->KeyState.KeyToggleState |= EFI_KEY_STATE_EXPOSED;\r
1666 }\r
c1fd2767
RN
1667 //\r
1668 // Invoke notification functions if the key is registered.\r
1669 //\r
1670 NotifyList = &UsbKeyboardDevice->NotifyList;\r
1671 for (Link = GetFirstNode (NotifyList); !IsNull (NotifyList, Link); Link = GetNextNode (NotifyList, Link)) {\r
1672 CurrentNotify = CR (Link, KEYBOARD_CONSOLE_IN_EX_NOTIFY, NotifyEntry, USB_KB_CONSOLE_IN_EX_NOTIFY_SIGNATURE);\r
3765794c 1673 if (IsKeyRegistered (&CurrentNotify->KeyData, KeyData)) {\r
c1fd2767
RN
1674 CurrentNotify->KeyNotificationFn (KeyData);\r
1675 }\r
1676 }\r
1677\r
c1fd2767 1678 return EFI_SUCCESS;\r
ed838d0c 1679}\r
1680\r
1681\r
ed838d0c 1682/**\r
c1fd2767 1683 Create the queue.\r
ed838d0c 1684\r
c1fd2767
RN
1685 @param Queue Points to the queue.\r
1686 @param ItemSize Size of the single item.\r
ed838d0c 1687\r
ed838d0c 1688**/\r
5899f27e 1689VOID\r
c1fd2767
RN
1690InitQueue (\r
1691 IN OUT USB_SIMPLE_QUEUE *Queue,\r
1692 IN UINTN ItemSize\r
ed838d0c 1693 )\r
1694{\r
c1fd2767 1695 UINTN Index;\r
ed838d0c 1696\r
c1fd2767
RN
1697 Queue->ItemSize = ItemSize;\r
1698 Queue->Head = 0;\r
1699 Queue->Tail = 0;\r
1700\r
1701 if (Queue->Buffer[0] != NULL) {\r
1702 FreePool (Queue->Buffer[0]);\r
1703 }\r
1704\r
1705 Queue->Buffer[0] = AllocatePool (sizeof (Queue->Buffer) / sizeof (Queue->Buffer[0]) * ItemSize);\r
1706 ASSERT (Queue->Buffer[0] != NULL);\r
1707\r
1708 for (Index = 1; Index < sizeof (Queue->Buffer) / sizeof (Queue->Buffer[0]); Index++) {\r
1709 Queue->Buffer[Index] = ((UINT8 *) Queue->Buffer[Index - 1]) + ItemSize;\r
1710 }\r
1711}\r
1712\r
1713/**\r
1714 Destroy the queue\r
1715\r
1716 @param Queue Points to the queue.\r
1717**/\r
1718VOID\r
1719DestroyQueue (\r
1720 IN OUT USB_SIMPLE_QUEUE *Queue\r
1721 )\r
1722{\r
1723 FreePool (Queue->Buffer[0]);\r
ed838d0c 1724}\r
1725\r
1726\r
1727/**\r
c1fd2767 1728 Check whether the queue is empty.\r
ed838d0c 1729\r
c1fd2767 1730 @param Queue Points to the queue.\r
ed838d0c 1731\r
c1fd2767
RN
1732 @retval TRUE Queue is empty.\r
1733 @retval FALSE Queue is not empty.\r
ed838d0c 1734\r
1735**/\r
1736BOOLEAN\r
c1fd2767
RN
1737IsQueueEmpty (\r
1738 IN USB_SIMPLE_QUEUE *Queue\r
ed838d0c 1739 )\r
1740{\r
1741 //\r
b4e73a63 1742 // Meet FIFO empty condition\r
ed838d0c 1743 //\r
c1fd2767 1744 return (BOOLEAN) (Queue->Head == Queue->Tail);\r
ed838d0c 1745}\r
1746\r
1747\r
ed838d0c 1748/**\r
c1fd2767 1749 Check whether the queue is full.\r
ed838d0c 1750\r
c1fd2767 1751 @param Queue Points to the queue.\r
ed838d0c 1752\r
c1fd2767
RN
1753 @retval TRUE Queue is full.\r
1754 @retval FALSE Queue is not full.\r
ed838d0c 1755\r
1756**/\r
1757BOOLEAN\r
c1fd2767
RN
1758IsQueueFull (\r
1759 IN USB_SIMPLE_QUEUE *Queue\r
ed838d0c 1760 )\r
1761{\r
c1fd2767 1762 return (BOOLEAN) (((Queue->Tail + 1) % (MAX_KEY_ALLOWED + 1)) == Queue->Head);\r
ed838d0c 1763}\r
1764\r
1765\r
ed838d0c 1766/**\r
c1fd2767 1767 Enqueue the item to the queue.\r
ed838d0c 1768\r
c1fd2767
RN
1769 @param Queue Points to the queue.\r
1770 @param Item Points to the item to be enqueued.\r
1771 @param ItemSize Size of the item.\r
ed838d0c 1772**/\r
5899f27e 1773VOID\r
c1fd2767
RN
1774Enqueue (\r
1775 IN OUT USB_SIMPLE_QUEUE *Queue,\r
1776 IN VOID *Item,\r
1777 IN UINTN ItemSize\r
ed838d0c 1778 )\r
1779{\r
c1fd2767 1780 ASSERT (ItemSize == Queue->ItemSize);\r
ed838d0c 1781 //\r
b4e73a63 1782 // If keyboard buffer is full, throw the\r
ed838d0c 1783 // first key out of the keyboard buffer.\r
1784 //\r
c1fd2767
RN
1785 if (IsQueueFull (Queue)) {\r
1786 Queue->Head = (Queue->Head + 1) % (MAX_KEY_ALLOWED + 1);\r
ed838d0c 1787 }\r
1788\r
c1fd2767 1789 CopyMem (Queue->Buffer[Queue->Tail], Item, ItemSize);\r
ed838d0c 1790\r
1791 //\r
5899f27e 1792 // Adjust the tail pointer of the FIFO keyboard buffer.\r
ed838d0c 1793 //\r
c1fd2767 1794 Queue->Tail = (Queue->Tail + 1) % (MAX_KEY_ALLOWED + 1);\r
ed838d0c 1795}\r
1796\r
1797\r
1798/**\r
c1fd2767 1799 Dequeue a item from the queue.\r
ed838d0c 1800\r
c1fd2767
RN
1801 @param Queue Points to the queue.\r
1802 @param Item Receives the item.\r
1803 @param ItemSize Size of the item.\r
ed838d0c 1804\r
c1fd2767
RN
1805 @retval EFI_SUCCESS Item was successfully dequeued.\r
1806 @retval EFI_DEVICE_ERROR The queue is empty.\r
ed838d0c 1807\r
1808**/\r
1809EFI_STATUS\r
c1fd2767
RN
1810Dequeue (\r
1811 IN OUT USB_SIMPLE_QUEUE *Queue,\r
1812 OUT VOID *Item,\r
1813 IN UINTN ItemSize\r
ed838d0c 1814 )\r
1815{\r
c1fd2767
RN
1816 ASSERT (Queue->ItemSize == ItemSize);\r
1817\r
1818 if (IsQueueEmpty (Queue)) {\r
ed838d0c 1819 return EFI_DEVICE_ERROR;\r
1820 }\r
1821\r
c1fd2767 1822 CopyMem (Item, Queue->Buffer[Queue->Head], ItemSize);\r
ed838d0c 1823\r
1824 //\r
5899f27e 1825 // Adjust the head pointer of the FIFO keyboard buffer.\r
ed838d0c 1826 //\r
c1fd2767 1827 Queue->Head = (Queue->Head + 1) % (MAX_KEY_ALLOWED + 1);\r
ed838d0c 1828\r
1829 return EFI_SUCCESS;\r
1830}\r
1831\r
1832\r
1833/**\r
b4e73a63 1834 Sets USB keyboard LED state.\r
ed838d0c 1835\r
1836 @param UsbKeyboardDevice The USB_KB_DEV instance.\r
1837\r
ed838d0c 1838**/\r
5899f27e 1839VOID\r
ed838d0c 1840SetKeyLED (\r
1841 IN USB_KB_DEV *UsbKeyboardDevice\r
1842 )\r
1843{\r
1844 LED_MAP Led;\r
1845 UINT8 ReportId;\r
1846\r
1847 //\r
1848 // Set each field in Led map.\r
1849 //\r
b4e73a63 1850 Led.NumLock = (UINT8) ((UsbKeyboardDevice->NumLockOn) ? 1 : 0);\r
1851 Led.CapsLock = (UINT8) ((UsbKeyboardDevice->CapsOn) ? 1 : 0);\r
1852 Led.ScrollLock = (UINT8) ((UsbKeyboardDevice->ScrollOn) ? 1 : 0);\r
ed838d0c 1853 Led.Resrvd = 0;\r
1854\r
1855 ReportId = 0;\r
1856 //\r
5899f27e 1857 // Call Set_Report Request to lighten the LED.\r
ed838d0c 1858 //\r
1859 UsbSetReportRequest (\r
1860 UsbKeyboardDevice->UsbIo,\r
1861 UsbKeyboardDevice->InterfaceDescriptor.InterfaceNumber,\r
1862 ReportId,\r
1863 HID_OUTPUT_REPORT,\r
1864 1,\r
1865 (UINT8 *) &Led\r
1866 );\r
ed838d0c 1867}\r
1868\r
1869\r
1870/**\r
b4e73a63 1871 Handler for Repeat Key event.\r
1872\r
1873 This function is the handler for Repeat Key event triggered\r
1874 by timer.\r
1875 After a repeatable key is pressed, the event would be triggered\r
1876 with interval of USBKBD_REPEAT_DELAY. Once the event is triggered,\r
1877 following trigger will come with interval of USBKBD_REPEAT_RATE.\r
ed838d0c 1878\r
1879 @param Event The Repeat Key event.\r
1880 @param Context Points to the USB_KB_DEV instance.\r
1881\r
ed838d0c 1882**/\r
1883VOID\r
1884EFIAPI\r
1885USBKeyboardRepeatHandler (\r
1886 IN EFI_EVENT Event,\r
1887 IN VOID *Context\r
1888 )\r
1889{\r
1890 USB_KB_DEV *UsbKeyboardDevice;\r
c1fd2767 1891 USB_KEY UsbKey;\r
ed838d0c 1892\r
1893 UsbKeyboardDevice = (USB_KB_DEV *) Context;\r
1894\r
1895 //\r
1896 // Do nothing when there is no repeat key.\r
1897 //\r
1898 if (UsbKeyboardDevice->RepeatKey != 0) {\r
1899 //\r
b4e73a63 1900 // Inserts the repeat key into keyboard buffer,\r
ed838d0c 1901 //\r
c1fd2767
RN
1902 UsbKey.KeyCode = UsbKeyboardDevice->RepeatKey;\r
1903 UsbKey.Down = TRUE;\r
1904 Enqueue (&UsbKeyboardDevice->UsbKeyQueue, &UsbKey, sizeof (UsbKey));\r
ed838d0c 1905\r
1906 //\r
e15c65a3 1907 // Set repeat rate for next repeat key generation.\r
ed838d0c 1908 //\r
1909 gBS->SetTimer (\r
5899f27e 1910 UsbKeyboardDevice->RepeatTimer,\r
1911 TimerRelative,\r
1912 USBKBD_REPEAT_RATE\r
1913 );\r
ed838d0c 1914 }\r
1915}\r
1916\r
1917\r
1918/**\r
b4e73a63 1919 Handler for Delayed Recovery event.\r
1920\r
1921 This function is the handler for Delayed Recovery event triggered\r
1922 by timer.\r
1923 After a device error occurs, the event would be triggered\r
1924 with interval of EFI_USB_INTERRUPT_DELAY. EFI_USB_INTERRUPT_DELAY\r
1925 is defined in USB standard for error handling.\r
ed838d0c 1926\r
1927 @param Event The Delayed Recovery event.\r
1928 @param Context Points to the USB_KB_DEV instance.\r
1929\r
ed838d0c 1930**/\r
1931VOID\r
1932EFIAPI\r
1933USBKeyboardRecoveryHandler (\r
1934 IN EFI_EVENT Event,\r
1935 IN VOID *Context\r
1936 )\r
1937{\r
1938\r
1939 USB_KB_DEV *UsbKeyboardDevice;\r
1940 EFI_USB_IO_PROTOCOL *UsbIo;\r
1941 UINT8 PacketSize;\r
1942\r
1943 UsbKeyboardDevice = (USB_KB_DEV *) Context;\r
1944\r
1945 UsbIo = UsbKeyboardDevice->UsbIo;\r
1946\r
1947 PacketSize = (UINT8) (UsbKeyboardDevice->IntEndpointDescriptor.MaxPacketSize);\r
1948\r
5899f27e 1949 //\r
1950 // Re-submit Asynchronous Interrupt Transfer for recovery.\r
1951 //\r
ed838d0c 1952 UsbIo->UsbAsyncInterruptTransfer (\r
5899f27e 1953 UsbIo,\r
1954 UsbKeyboardDevice->IntEndpointDescriptor.EndpointAddress,\r
1955 TRUE,\r
1956 UsbKeyboardDevice->IntEndpointDescriptor.Interval,\r
1957 PacketSize,\r
1958 KeyboardHandler,\r
1959 UsbKeyboardDevice\r
1960 );\r
ed838d0c 1961}\r