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# 编码实现 - 按键扫描与事件判定 (Docs/60_coding/mod-key.md)
本文件对应按键状态消抖、确认键长按 3 秒判定以及主键事件注入的具体编码实现细节。
## 1. 对应代码源文件
* [App/main.c](file:///c:/workfile/105/stc32g12k128/App/main.c) (定时中断内的按键扫描、按键状态高阻读取、长短按电平扫描)
## 2. 关键代码片段与逻辑实现
### 2.1 按键中断定时器扫描 (每 10ms 调度一次)
`Timer1_Isr` (1ms 滴答) 内,通过 `key_scan_timer` 进行 10ms 分频并调用 `Key_Scan_Process()`
```c
void Key_Scan_Process(void) {
// 1. 读取引脚状态并消抖
static u8 key_up_state = 0xFF;
static u8 key_down_state = 0xFF;
static u8 key_confirm_state = 0xFF;
static u8 key_sos1_state = 0xFF;
static u8 key_sos2_state = 0xFF;
u8 key_sos_state;
key_up_state = (key_up_state << 1) | KEY_UP;
key_down_state = (key_down_state << 1) | KEY_DOWN;
key_confirm_state = (key_confirm_state << 1) | KEY_CONFIRM;
key_sos1_state = (key_sos1_state << 1) | KEY_SOS1;
key_sos2_state = (key_sos2_state << 1) | KEY_SOS2;
// 双上部 SOS 键的逻辑并联
key_sos_state = key_sos1_state & key_sos2_state;
// 2. 按键长按与短按状态机扫描
// ▲ 键 (UP) 处理
if ((key_up_state & 0x07) == 0) {
key_up_hold++;
} else {
if (key_up_hold > 2) {
key_event_buf = KEY_UP_SHORT;
}
key_up_hold = 0;
}
// ▼ 键 (DOWN) 处理 (支持长按 2 秒清除报警/退出)
if ((key_down_state & 0x07) == 0) {
key_down_hold++;
if (key_down_hold == 200) { // 2秒
key_event_buf = KEY_DOWN_LONG;
}
} else {
if (key_down_hold > 2 && key_down_hold < 200) {
key_event_buf = KEY_DOWN_SHORT;
}
key_down_hold = 0;
}
// ■ 确认键 (CONFIRM) 处理 (支持长按 3 秒进入/退出)
if ((key_confirm_state & 0x07) == 0) {
key_confirm_hold++;
if (key_confirm_hold == 300) { // 3秒
key_event_buf = KEY_CONFIRM_LONG;
}
} else {
if (key_confirm_hold > 2 && key_confirm_hold < 300) {
key_event_buf = KEY_CONFIRM_CLICK;
}
key_confirm_hold = 0;
}
// 并联 SOS 键
if ((key_sos_state & 0x07) == 0) {
key_sos_hold++;
if (key_sos_hold == 3) {
key_event_buf = KEY_SOS_ACTIVE;
}
} else {
key_sos_hold = 0;
}
}
```
### 2.2 事件解调与微调分配分发 (Process_System_Event 示例)
在主循环事件分发中,对各个状态下的事件进行处理:
```c
void Process_System_Event(KeyEvent evt) {
switch (current_state) {
case STATE_MENU:
if (evt == KEY_UP_SHORT) {
if (menu_index > 0) menu_index--;
Redraw = 1;
} else if (evt == KEY_DOWN_SHORT) {
if (menu_index < 3) menu_index++;
Redraw = 1;
} else if (evt == KEY_CONFIRM_CLICK) {
Enter_Menu_Branch(menu_index);
} else if (evt == KEY_CONFIRM_LONG) {
current_state = STATE_CLOCK;
Redraw = 1;
}
break;
case STATE_PAIR_CONFIRM:
// 直接进行后缀序号微调 (传感器类型已由射频数据码自动识别并锁定)
if (evt == KEY_UP_SHORT) {
if (selected_suffix < 99) selected_suffix++;
Redraw = 1;
} else if (evt == KEY_DOWN_SHORT) {
if (selected_suffix > 1) selected_suffix--;
Redraw = 1;
} else if (evt == KEY_CONFIRM_CLICK) {
// 点击 CONFIRM直接将自动解析的类型和调整好的序号写入数据库
Add_Sensor(captured_addr, auto_detected_type, selected_suffix);
current_state = STATE_CLOCK;
Redraw = 1;
} else if (evt == KEY_CONFIRM_LONG) {
// 长按 3 秒放弃保存返回时钟
current_state = STATE_CLOCK;
Redraw = 1;
}
break;
case STATE_IPC_BIND:
if (evt == KEY_CONFIRM_LONG || evt == KEY_DOWN_LONG) {
current_state = STATE_CLOCK;
Redraw = 1;
} else if (evt == KEY_CONFIRM_CLICK) {
EV1527_Transmit(bracelet_factory_id, 0x01);
}
break;
// 其它状态处理...
}
}
```
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