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input: add qemu_input_key_number_to_qcode
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1 #include "sysemu/sysemu.h"
2 #include "ui/keymaps.h"
3 #include "ui/input.h"
4
5 static const int qcode_to_number[] = {
6 [Q_KEY_CODE_SHIFT] = 0x2a,
7 [Q_KEY_CODE_SHIFT_R] = 0x36,
8
9 [Q_KEY_CODE_ALT] = 0x38,
10 [Q_KEY_CODE_ALT_R] = 0xb8,
11 [Q_KEY_CODE_ALTGR] = 0x64,
12 [Q_KEY_CODE_ALTGR_R] = 0xe4,
13 [Q_KEY_CODE_CTRL] = 0x1d,
14 [Q_KEY_CODE_CTRL_R] = 0x9d,
15
16 [Q_KEY_CODE_MENU] = 0xdd,
17
18 [Q_KEY_CODE_ESC] = 0x01,
19
20 [Q_KEY_CODE_1] = 0x02,
21 [Q_KEY_CODE_2] = 0x03,
22 [Q_KEY_CODE_3] = 0x04,
23 [Q_KEY_CODE_4] = 0x05,
24 [Q_KEY_CODE_5] = 0x06,
25 [Q_KEY_CODE_6] = 0x07,
26 [Q_KEY_CODE_7] = 0x08,
27 [Q_KEY_CODE_8] = 0x09,
28 [Q_KEY_CODE_9] = 0x0a,
29 [Q_KEY_CODE_0] = 0x0b,
30 [Q_KEY_CODE_MINUS] = 0x0c,
31 [Q_KEY_CODE_EQUAL] = 0x0d,
32 [Q_KEY_CODE_BACKSPACE] = 0x0e,
33
34 [Q_KEY_CODE_TAB] = 0x0f,
35 [Q_KEY_CODE_Q] = 0x10,
36 [Q_KEY_CODE_W] = 0x11,
37 [Q_KEY_CODE_E] = 0x12,
38 [Q_KEY_CODE_R] = 0x13,
39 [Q_KEY_CODE_T] = 0x14,
40 [Q_KEY_CODE_Y] = 0x15,
41 [Q_KEY_CODE_U] = 0x16,
42 [Q_KEY_CODE_I] = 0x17,
43 [Q_KEY_CODE_O] = 0x18,
44 [Q_KEY_CODE_P] = 0x19,
45 [Q_KEY_CODE_BRACKET_LEFT] = 0x1a,
46 [Q_KEY_CODE_BRACKET_RIGHT] = 0x1b,
47 [Q_KEY_CODE_RET] = 0x1c,
48
49 [Q_KEY_CODE_A] = 0x1e,
50 [Q_KEY_CODE_S] = 0x1f,
51 [Q_KEY_CODE_D] = 0x20,
52 [Q_KEY_CODE_F] = 0x21,
53 [Q_KEY_CODE_G] = 0x22,
54 [Q_KEY_CODE_H] = 0x23,
55 [Q_KEY_CODE_J] = 0x24,
56 [Q_KEY_CODE_K] = 0x25,
57 [Q_KEY_CODE_L] = 0x26,
58 [Q_KEY_CODE_SEMICOLON] = 0x27,
59 [Q_KEY_CODE_APOSTROPHE] = 0x28,
60 [Q_KEY_CODE_GRAVE_ACCENT] = 0x29,
61
62 [Q_KEY_CODE_BACKSLASH] = 0x2b,
63 [Q_KEY_CODE_Z] = 0x2c,
64 [Q_KEY_CODE_X] = 0x2d,
65 [Q_KEY_CODE_C] = 0x2e,
66 [Q_KEY_CODE_V] = 0x2f,
67 [Q_KEY_CODE_B] = 0x30,
68 [Q_KEY_CODE_N] = 0x31,
69 [Q_KEY_CODE_M] = 0x32,
70 [Q_KEY_CODE_COMMA] = 0x33,
71 [Q_KEY_CODE_DOT] = 0x34,
72 [Q_KEY_CODE_SLASH] = 0x35,
73
74 [Q_KEY_CODE_ASTERISK] = 0x37,
75
76 [Q_KEY_CODE_SPC] = 0x39,
77 [Q_KEY_CODE_CAPS_LOCK] = 0x3a,
78 [Q_KEY_CODE_F1] = 0x3b,
79 [Q_KEY_CODE_F2] = 0x3c,
80 [Q_KEY_CODE_F3] = 0x3d,
81 [Q_KEY_CODE_F4] = 0x3e,
82 [Q_KEY_CODE_F5] = 0x3f,
83 [Q_KEY_CODE_F6] = 0x40,
84 [Q_KEY_CODE_F7] = 0x41,
85 [Q_KEY_CODE_F8] = 0x42,
86 [Q_KEY_CODE_F9] = 0x43,
87 [Q_KEY_CODE_F10] = 0x44,
88 [Q_KEY_CODE_NUM_LOCK] = 0x45,
89 [Q_KEY_CODE_SCROLL_LOCK] = 0x46,
90
91 [Q_KEY_CODE_KP_DIVIDE] = 0xb5,
92 [Q_KEY_CODE_KP_MULTIPLY] = 0x37,
93 [Q_KEY_CODE_KP_SUBTRACT] = 0x4a,
94 [Q_KEY_CODE_KP_ADD] = 0x4e,
95 [Q_KEY_CODE_KP_ENTER] = 0x9c,
96 [Q_KEY_CODE_KP_DECIMAL] = 0x53,
97 [Q_KEY_CODE_SYSRQ] = 0x54,
98
99 [Q_KEY_CODE_KP_0] = 0x52,
100 [Q_KEY_CODE_KP_1] = 0x4f,
101 [Q_KEY_CODE_KP_2] = 0x50,
102 [Q_KEY_CODE_KP_3] = 0x51,
103 [Q_KEY_CODE_KP_4] = 0x4b,
104 [Q_KEY_CODE_KP_5] = 0x4c,
105 [Q_KEY_CODE_KP_6] = 0x4d,
106 [Q_KEY_CODE_KP_7] = 0x47,
107 [Q_KEY_CODE_KP_8] = 0x48,
108 [Q_KEY_CODE_KP_9] = 0x49,
109
110 [Q_KEY_CODE_LESS] = 0x56,
111
112 [Q_KEY_CODE_F11] = 0x57,
113 [Q_KEY_CODE_F12] = 0x58,
114
115 [Q_KEY_CODE_PRINT] = 0xb7,
116
117 [Q_KEY_CODE_HOME] = 0xc7,
118 [Q_KEY_CODE_PGUP] = 0xc9,
119 [Q_KEY_CODE_PGDN] = 0xd1,
120 [Q_KEY_CODE_END] = 0xcf,
121
122 [Q_KEY_CODE_LEFT] = 0xcb,
123 [Q_KEY_CODE_UP] = 0xc8,
124 [Q_KEY_CODE_DOWN] = 0xd0,
125 [Q_KEY_CODE_RIGHT] = 0xcd,
126
127 [Q_KEY_CODE_INSERT] = 0xd2,
128 [Q_KEY_CODE_DELETE] = 0xd3,
129 [Q_KEY_CODE_MAX] = 0,
130 };
131
132 static int number_to_qcode[0x100];
133
134 int qemu_input_key_value_to_number(const KeyValue *value)
135 {
136 if (value->kind == KEY_VALUE_KIND_QCODE) {
137 return qcode_to_number[value->qcode];
138 } else {
139 assert(value->kind == KEY_VALUE_KIND_NUMBER);
140 return value->number;
141 }
142 }
143
144 int qemu_input_key_number_to_qcode(uint8_t nr)
145 {
146 static int first = true;
147
148 if (first) {
149 int qcode, number;
150 first = false;
151 for (qcode = 0; qcode < Q_KEY_CODE_MAX; qcode++) {
152 number = qcode_to_number[qcode];
153 assert(number < ARRAY_SIZE(number_to_qcode));
154 number_to_qcode[number] = qcode;
155 }
156 }
157
158 return number_to_qcode[nr];
159 }
160
161 int qemu_input_key_value_to_qcode(const KeyValue *value)
162 {
163 if (value->kind == KEY_VALUE_KIND_QCODE) {
164 return value->qcode;
165 } else {
166 assert(value->kind == KEY_VALUE_KIND_NUMBER);
167 return qemu_input_key_number_to_qcode(value->number);
168 }
169 }
170
171 int qemu_input_key_value_to_scancode(const KeyValue *value, bool down,
172 int *codes)
173 {
174 int keycode = qemu_input_key_value_to_number(value);
175 int count = 0;
176
177 if (value->kind == KEY_VALUE_KIND_QCODE &&
178 value->qcode == Q_KEY_CODE_PAUSE) {
179 /* specific case */
180 int v = down ? 0 : 0x80;
181 codes[count++] = 0xe1;
182 codes[count++] = 0x1d | v;
183 codes[count++] = 0x45 | v;
184 return count;
185 }
186 if (keycode & SCANCODE_GREY) {
187 codes[count++] = SCANCODE_EMUL0;
188 keycode &= ~SCANCODE_GREY;
189 }
190 if (!down) {
191 keycode |= SCANCODE_UP;
192 }
193 codes[count++] = keycode;
194
195 return count;
196 }