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182
App/app_alarm.c
Normal file
182
App/app_alarm.c
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@@ -0,0 +1,182 @@
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#include "app_manager.h"
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#include "xtell.h"
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#include "ui.h"
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#include "rgb.h"
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#include "event.h"
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#include "system.h"
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#include "database.h"
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#include "../Drivers/lcd.h"
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// 外部全局变量引用
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extern SystemState current_state;
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extern u32 captured_addr;
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extern u8 alarm_sensor_slot;
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extern volatile u16 ms_tick;
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extern volatile bit alarm_flash_flag;
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// 传感器存储列表数据库声明
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extern Sensor_Slot xdata sensor_list[16];
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// 本地私有变量
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static u32 alarm_pulse_timer = 0; // 报警震动波形计数器
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static u16 last_run_tick = 0; // 记录上一次轮询的 ticks
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// 声明本应用的生命周期回调函数
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static void AlarmApp_OnStart(void);
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static void AlarmApp_onRun(void);
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static void AlarmApp_onClose(void);
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static EventResult AlarmApp_onEvent(SystemEvent *evt);
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// 实体化定义警报应用控制块
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WristbandApp alarm_app = {
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APP_ID_ALARM,
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"Alarm",
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AlarmApp_OnStart,
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AlarmApp_onRun,
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AlarmApp_onClose,
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AlarmApp_onEvent
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};
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/**
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* @brief AlarmApp 启动回调
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*/
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static void AlarmApp_OnStart(void)
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{
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u8 slot;
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u8 type = 0;
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u8 zone = 1;
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current_state = STATE_ALARM; // 系统切入报警状态
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alarm_pulse_timer = 0; // 振动计时器清零
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last_run_tick = ms_tick;
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// 比对查出当前触发警报的传感器在数据库中的属性
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if (Check_Sensor_ID(captured_addr, &slot)) {
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type = sensor_list[slot].type;
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zone = sensor_list[slot].zone;
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alarm_sensor_slot = slot;
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}
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// 渲染显示报警图文界面
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UI_ShowAlarmPage(type, zone);
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// 首次亮起防区特定的警示色彩,起到区分报警硬件的目的
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if (type == 0) RGB_Send(0, 180, 0, 0, 180, 0); // 门磁: 红色 (GRB中R=180,G=0)
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else if (type == 1) RGB_Send(100, 180, 0, 100, 180, 0); // 红外PIR: 黄色 (G=100, R=180)
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else if (type == 2) RGB_Send(180, 0, 0, 180, 0, 0); // 烟感: 绿色 (G=180)
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else if (type == 3) RGB_Send(0, 180, 180, 0, 180, 180); // 气感: 紫色 (R=180, B=180)
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else RGB_Send(0, 0, 180, 0, 0, 180); // 水浸: 蓝色 (B=180)
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XTELL_LOG("[AlarmApp] Started. Type=");
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XTELL_LOG_HEX8(type);
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XTELL_LOG("\r\n");
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}
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/**
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* @brief AlarmApp 轮询主回调
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* @details 包含同步的灯光爆闪和 Truly AMOLED 像素边框闪烁动效,
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* 以及马达差异化震动波形逻辑的自处理。
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*/
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static void AlarmApp_onRun(void)
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{
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u8 type = sensor_list[alarm_sensor_slot].type;
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u8 flash_light = (ms_tick / 250) % 2; // 250ms 周期亮灭
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u16 tick_diff;
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// 1. 同步控制 RGB 幻彩灯条进行交替爆闪
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if (flash_light)
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{
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if (type == 0) RGB_Send(0, 180, 0, 0, 180, 0);
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else if (type == 1) RGB_Send(100, 180, 0, 100, 180, 0);
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else if (type == 2) RGB_Send(180, 0, 0, 180, 0, 0);
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else if (type == 3) RGB_Send(0, 180, 180, 0, 180, 180);
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else RGB_Send(0, 0, 180, 0, 0, 180);
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}
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else
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{
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RGB_Send(0, 0, 0, 0, 0, 0);
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}
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// 2. 控制 Truly AMOLED 屏幕的最外围红色警告框闪烁效果
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if (alarm_flash_flag) {
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LCD_DrawRectBorder(4, 4, 112, 232, COLOR_RED);
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LCD_DrawRectBorder(6, 6, 108, 228, COLOR_RED);
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} else {
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LCD_DrawRectBorder(4, 4, 112, 232, COLOR_BLACK);
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LCD_DrawRectBorder(6, 6, 108, 228, COLOR_BLACK);
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}
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// 3. 计算时间差并执行马达差异化震动状态机控制
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if (ms_tick >= last_run_tick) {
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tick_diff = ms_tick - last_run_tick;
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} else {
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tick_diff = 1000 + ms_tick - last_run_tick;
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}
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last_run_tick = ms_tick;
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alarm_pulse_timer += tick_diff;
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if (alarm_pulse_timer >= 5000) {
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alarm_pulse_timer = 0; // 5秒一周期
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}
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if (type == 0) {
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// 门磁警报波形:单次震动 300ms,停 4700ms
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if (alarm_pulse_timer < 300) MOTOR = 1; else MOTOR = 0;
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} else if (type == 1) {
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// PIR 警报波形:震动 300ms,停 200ms,再震动 300ms,停 4200ms
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if (alarm_pulse_timer < 300) MOTOR = 1;
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else if (alarm_pulse_timer >= 300 && alarm_pulse_timer < 500) MOTOR = 0;
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else if (alarm_pulse_timer >= 500 && alarm_pulse_timer < 800) MOTOR = 1;
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else MOTOR = 0;
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} else if (type == 2) {
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// 烟感警报波形:急促短闪三下 200ms-150ms-200ms-150ms-200ms
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if (alarm_pulse_timer < 200) MOTOR = 1;
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else if (alarm_pulse_timer >= 200 && alarm_pulse_timer < 350) MOTOR = 0;
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else if (alarm_pulse_timer >= 350 && alarm_pulse_timer < 550) MOTOR = 1;
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else if (alarm_pulse_timer >= 550 && alarm_pulse_timer < 700) MOTOR = 0;
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else if (alarm_pulse_timer >= 700 && alarm_pulse_timer < 900) MOTOR = 1;
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else MOTOR = 0;
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} else if (type == 3) {
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// 燃气报警波形:快频连续四下
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if (alarm_pulse_timer < 200) MOTOR = 1;
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else if (alarm_pulse_timer >= 200 && alarm_pulse_timer < 300) MOTOR = 0;
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else if (alarm_pulse_timer >= 300 && alarm_pulse_timer < 500) MOTOR = 1;
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else if (alarm_pulse_timer >= 500 && alarm_pulse_timer < 600) MOTOR = 0;
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else if (alarm_pulse_timer >= 600 && alarm_pulse_timer < 800) MOTOR = 1;
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else if (alarm_pulse_timer >= 800 && alarm_pulse_timer < 900) MOTOR = 0;
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else if (alarm_pulse_timer >= 900 && alarm_pulse_timer < 1100) MOTOR = 1;
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else MOTOR = 0;
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} else if (type == 4) {
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// 水浸警报波形:慢速双长震波 600ms 和 600ms
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if (alarm_pulse_timer < 600) MOTOR = 1;
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else if (alarm_pulse_timer >= 600 && alarm_pulse_timer < 900) MOTOR = 0;
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else if (alarm_pulse_timer >= 900 && alarm_pulse_timer < 1500) MOTOR = 1;
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else MOTOR = 0;
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} else {
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// 缺省状态默认单次 300ms
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if (alarm_pulse_timer < 300) MOTOR = 1; else MOTOR = 0;
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}
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}
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/**
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* @brief AlarmApp 退出清理
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*/
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static void AlarmApp_onClose(void)
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{
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RGB_Send(0, 0, 0, 0, 0, 0); // 关闭灯条
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MOTOR = 0; // 停震
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current_state = STATE_NORMAL;
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XTELL_LOG("[AlarmApp] Closed\r\n");
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}
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/**
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* @brief AlarmApp 事件拦截处理 (按任意键退出报警)
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*/
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static EventResult AlarmApp_onEvent(SystemEvent *evt)
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{
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if (evt->key_event != KEY_EVENT_NONE) {
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AppManager_SwitchToForeground(&clock_app); // 清除报警并切回时钟待机页
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return EVENT_HANDLED;
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}
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return EVENT_IGNORED;
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}
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190
App/app_clock.c
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190
App/app_clock.c
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@@ -0,0 +1,190 @@
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#include "app_manager.h"
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#include "clock.h"
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#include "xtell.h"
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#include "ui.h"
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#include "rgb.h"
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#include "event.h"
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#include "system.h"
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#include "../Drivers/rf.h"
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#include "../Drivers/lcd.h"
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// 外部引用的全局系统状态变量
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extern SystemState current_state;
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extern volatile u16 ms_tick;
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// 待机时钟应用内特有的编辑时间私有变量
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static u8 time_edit_active = 0; // 标识当前是否正在编辑修改时间中 (1:是, 0:否)
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static u8 time_edit_field = 1; // 标识当前聚焦在哪一个参数上进行微调 (1:修改小时, 2:修改分钟)
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static u8 time_edit_blink_on = 1; // 时钟修改时光标闪烁周期状态位
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// 声明本应用的生命周期回调函数
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static void ClockApp_OnStart(void);
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static void ClockApp_onRun(void);
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static void ClockApp_onClose(void);
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static EventResult ClockApp_onEvent(SystemEvent *evt);
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// 实体化定义待机时钟应用控制块
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WristbandApp clock_app = {
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APP_ID_CLOCK,
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"Clock",
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ClockApp_OnStart,
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ClockApp_onRun,
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ClockApp_onClose,
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ClockApp_onEvent
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};
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/**
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* @brief 触发启动时间设置状态机,准备修改时钟
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*/
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void Start_Time_Edit(void)
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{
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time_edit_active = 1;
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time_edit_field = 1;
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time_edit_blink_on = 1;
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current_state = STATE_SET_TIME; // 系统切入时间设置状态
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// FCOB 幻彩灯条双灯珠均显示蓝色常亮 (R=0, G=0, B=180),进行模式视觉区分
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RGB_Send(0, 0, 180, 0, 0, 180);
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// 振动马达单次短震 50 毫秒,提供触觉反馈
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MOTOR = 1;
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Delay_ms(50);
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MOTOR = 0;
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// 渲染显示时间编辑界面,默认高亮编辑小时字段,消隐位开启
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UI_ShowSetTimePage(current_hour, current_min, time_edit_field, 1);
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XTELL_LOG("[ClockApp] Time edit started.\r\n");
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}
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/**
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* @brief ClockApp 启动回调
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*/
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static void ClockApp_OnStart(void)
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{
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time_edit_active = 0;
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current_state = STATE_NORMAL; // 系统切入正常待机状态
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RF_SetMode(1); // 开启天线并置为接收模式,监听无线探测器
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UI_ShowClockPage(current_state, current_hour, current_min); // 渲染时钟主页
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// 关断/熄灭 FCOB 双灯条
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RGB_Send(0, 0, 0, 0, 0, 0);
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XTELL_LOG("[ClockApp] Started\r\n");
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}
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/**
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* @brief ClockApp 轮询主回调
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*/
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static void ClockApp_onRun(void)
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{
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if (time_edit_active)
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{
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// ====== 时间设置闪烁动画 (周期 500ms) ======
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u8 blink = (ms_tick / 500) % 2;
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if (blink != time_edit_blink_on)
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{
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time_edit_blink_on = blink;
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// 每次闪烁状态发生变化,重新刷写屏幕数值
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UI_ShowSetTimePage(current_hour, current_min, time_edit_field, time_edit_blink_on);
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}
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}
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else
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{
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// 软时钟发生分钟改变,需要通知屏幕重画时钟主页
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if (clock_updated) {
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clock_updated = 0;
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UI_ShowClockPage(current_state, current_hour, current_min);
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}
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}
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}
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/**
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* @brief ClockApp 退出清理回调
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*/
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static void ClockApp_onClose(void)
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{
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time_edit_active = 0;
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RGB_Send(0, 0, 0, 0, 0, 0); // 关闭灯条
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XTELL_LOG("[ClockApp] Closed\r\n");
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}
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/**
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* @brief ClockApp 接收事件处理回调 (按键导航与布撤防交互)
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*/
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static EventResult ClockApp_onEvent(SystemEvent *evt)
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{
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if (time_edit_active)
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{
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// ====== 处于时间设置状态下的按键拦截处理机 ======
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if (evt->key_event == KEY_EVENT_UP_CLICK)
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{
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// 短按 ▲ 键增加数值 (小时/分钟循环相加)
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if (time_edit_field == 1) {
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current_hour = (current_hour + 1) % 24;
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} else {
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current_min = (current_min + 1) % 60;
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}
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UI_ShowSetTimePage(current_hour, current_min, time_edit_field, 1);
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return EVENT_HANDLED; // 吞掉并消化事件
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}
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if (evt->key_event == KEY_EVENT_DOWN_CLICK)
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{
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// 短按 ▼ 键减小数值
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if (time_edit_field == 1) {
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current_hour = (current_hour == 0) ? 23 : (current_hour - 1);
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} else {
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current_min = (current_min == 0) ? 59 : (current_min - 1);
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}
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UI_ShowSetTimePage(current_hour, current_min, time_edit_field, 1);
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return EVENT_HANDLED;
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}
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if (evt->key_event == KEY_EVENT_CONFIRM_LONG)
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{
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// 长按 ■ 确认键切换调节字段 (在修改小时与修改分钟间跳转)
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if (time_edit_field == 1) {
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time_edit_field = 2;
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} else {
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time_edit_field = 1;
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}
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UI_ShowSetTimePage(current_hour, current_min, time_edit_field, 1);
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return EVENT_HANDLED;
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}
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if (evt->key_event == KEY_EVENT_CONFIRM_CLICK)
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{
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// 短按 ■ 确认键保存最新时钟配置并退出编辑模式
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time_edit_active = 0;
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current_state = STATE_NORMAL;
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RGB_Send(0, 0, 0, 0, 0, 0); // 熄灭蓝色指示灯
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// 退出短振反馈
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MOTOR = 1; Delay_ms(50); MOTOR = 0;
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UI_ShowClockPage(current_state, current_hour, current_min);
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return EVENT_HANDLED;
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}
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return EVENT_HANDLED; // 在时间设置模式下屏蔽拦截其他一切无关按键事件
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}
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// ====== 正常时钟待机状态下的按键拦截处理 ======
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// 1. 长按 ■ 确认键,打开设置主菜单 MenuApp
|
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if (evt->key_event == KEY_EVENT_CONFIRM_LONG) {
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AppManager_SwitchToForeground(&menu_app);
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return EVENT_HANDLED;
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}
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// 2. 长按 ▲ 键,一键切换系统的 布防 (ARMED) 和 撤防 (DISARMED) 状态
|
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if (evt->key_event == KEY_EVENT_UP_LONG) {
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if (current_state == STATE_ARMED) {
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current_state = STATE_DISARMED;
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} else {
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current_state = STATE_ARMED;
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}
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// 布撤防状态切换成功后进行 100ms 短震确认,并重新刷写时钟待机页
|
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MOTOR = 1; Delay_ms(100); MOTOR = 0;
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UI_ShowClockPage(current_state, current_hour, current_min);
|
||||
return EVENT_HANDLED;
|
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}
|
||||
|
||||
return EVENT_IGNORED; // 其他未被关心的事件交由后台应用或丢弃
|
||||
}
|
||||
1055
App/app_manager.c
1055
App/app_manager.c
File diff suppressed because it is too large
Load Diff
@@ -3,56 +3,75 @@
|
||||
|
||||
#include "config.h"
|
||||
|
||||
/* ====== 应用程序管理器 (AppManager) 核心接口 ====== */
|
||||
// 动态挂载的 WristbandApp 控制块定义
|
||||
typedef struct WristbandApp {
|
||||
u8 app_id; // 应用唯一识别 ID
|
||||
char *app_name; // 应用名称
|
||||
void (*OnStart)(void); // 启动生命周期,进入前台时调用
|
||||
void (*onRun)(void); // 轮询生命周期,主循环每次被调度
|
||||
void (*onClose)(void); // 关闭生命周期,退出前台/后台时清理资源
|
||||
EventResult (*onEvent)(SystemEvent *evt); // 事件处理生命周期,接收按键事件
|
||||
} WristbandApp;
|
||||
|
||||
/**
|
||||
* @brief 初始化应用程序管理器
|
||||
* @details 负责将应用管理器的系统注册表清零,随后逐一注册系统支持的五个前台应用:
|
||||
* ClockApp (待机时钟), MenuApp (主菜单), PairApp (传感器对码),
|
||||
* AlarmApp (传感器警报), SOSApp (主动求救呼叫)。最后默认加载并启动 ClockApp。
|
||||
* @brief 初始化应用管理器
|
||||
* @details 将前台活跃槽位与后台的三个槽位全部清空为 NULL。
|
||||
*/
|
||||
void AppManager_Init(void);
|
||||
|
||||
/**
|
||||
* @brief 启动指定的应用程序
|
||||
* @param app_id 待启动应用的目标 ID (如 APP_ID_MENU, APP_ID_PAIR)
|
||||
* @details 会执行完整的切应用生命周期流转:
|
||||
* 1. 检查目标是否合法且包含有效的 OnStart 启动回调。
|
||||
* 2. 对当前正在活跃运行的前台应用调用其 onClose(),以关闭该应用的屏幕内容、马达振动或射频特定模式。
|
||||
* 3. 将活跃应用指针指向新应用,将其 is_active 和 is_running 标志位置 1。
|
||||
* 4. 调用新应用的 OnStart() 初始化回调以绘制新页面。
|
||||
* @brief 动态将一个应用切换至前台活跃运行
|
||||
* @param app 目标应用的结构体指针
|
||||
* @return bit 1-切换成功,0-失败
|
||||
* @details 流程:
|
||||
* 1. 若前台已有应用运行,且该应用未挂载在后台,则对其执行 onClose() 关闭生命周期。
|
||||
* 2. 将 fg_app 指针指向新的 app。
|
||||
* 3. 若该 app 目前并未在后台槽位中运行,则执行其 OnStart() 启动生命周期。
|
||||
*/
|
||||
void AppManager_StartApp(AppID app_id);
|
||||
bit AppManager_SwitchToForeground(WristbandApp *app);
|
||||
|
||||
/**
|
||||
* @brief 向当前活跃的前台应用程序派发事件
|
||||
* @param evt 要分发派送的系统事件
|
||||
* @brief 动态将一个应用挂载到后台槽位
|
||||
* @param app 目标应用的结构体指针
|
||||
* @return bit 1-挂载成功,0-槽位已满挂载失败
|
||||
* @details 后台总共支持 3 个槽位。若挂载成功,其 onRun 将会持续在主循环中被轮询。
|
||||
*/
|
||||
bit AppManager_AttachToBackground(WristbandApp *app);
|
||||
|
||||
/**
|
||||
* @brief 动态将一个应用从后台卸载
|
||||
* @param app 目标应用的结构体指针
|
||||
* @details 从后台槽位数组中移除该指针。若该应用当前也不在前台运行,将对其执行 onClose() 清理外设。
|
||||
*/
|
||||
void AppManager_DetachFromBackground(WristbandApp *app);
|
||||
|
||||
/**
|
||||
* @brief 将捕获的事件派发给前台活跃应用
|
||||
* @param evt 系统派发来的事件
|
||||
*/
|
||||
void AppManager_DispatchEvent(SystemEvent evt);
|
||||
|
||||
/**
|
||||
* @brief 在系统主循环中持续轮询运行活跃应用
|
||||
* @details 负责从全局注册表中定位到 active_app,并轮询执行其 onRun() 周期回调。
|
||||
* 该接口同时集成了【CPU占用率限制机制】:如果在调用 onRun 前后,检测到应用
|
||||
* 占用 CPU 时间超过了 APP_ONRUN_MAX_TICKS (5ms),它将在下一次循环中暂时挂起
|
||||
* 该应用,强制释放本次 CPU 占用以防止界面卡死或影响底层射频解调。
|
||||
* @brief 在系统主循环中持续轮询轮转前后台所有活跃的应用
|
||||
* @details 负责轮询前台 fg_app 对应的 onRun(),并遍历轮询后台 bg_apps 数组中所有有效应用的 onRun()。
|
||||
*/
|
||||
void AppManager_RunActiveApp(void);
|
||||
|
||||
/**
|
||||
* @brief 获取当前前台活跃应用的唯一应用程序 ID
|
||||
* @return AppID 当前活跃前台应用的枚举ID
|
||||
* @brief 获取当前前台活跃应用的 ID
|
||||
* @return u8 当前活跃前台应用的 ID 编号。若无则返回 255 (0xFF)
|
||||
*/
|
||||
AppID AppManager_GetActiveAppID(void);
|
||||
u8 AppManager_GetActiveAppID(void);
|
||||
|
||||
// 兼容性接口声明
|
||||
void AppManager_StartApp(AppID app_id);
|
||||
|
||||
/* ====== 时间编辑状态机交互接口 ====== */
|
||||
|
||||
/**
|
||||
* @brief 启动时钟数值调整编辑状态机
|
||||
* @details 由 MenuApp 的 "HORLOGE" 项被确认点击后触发。用于直接将系统运行状态切入
|
||||
* STATE_SET_TIME,控制灯条常亮蓝色,马达短振反馈,并进入时间参数微调页。
|
||||
*/
|
||||
void Start_Time_Edit(void);
|
||||
// ====== 系统中各独立 App 实例的外包声明 (各 App 内部进行实体定义) ======
|
||||
extern WristbandApp clock_app;
|
||||
extern WristbandApp menu_app;
|
||||
extern WristbandApp pair_app;
|
||||
extern WristbandApp alarm_app;
|
||||
extern WristbandApp sos_app;
|
||||
extern WristbandApp rf_monitor_app; // 后台射频监控应用
|
||||
|
||||
#endif // __APP_MANAGER_H__
|
||||
|
||||
196
App/app_menu.c
Normal file
196
App/app_menu.c
Normal file
@@ -0,0 +1,196 @@
|
||||
#include "app_manager.h"
|
||||
#include "xtell.h"
|
||||
#include "ui.h"
|
||||
#include "rgb.h"
|
||||
#include "event.h"
|
||||
#include "system.h"
|
||||
#include "../Drivers/rf.h"
|
||||
|
||||
// 二级传感器对码菜单中,各类传感器的法语显示名称定义
|
||||
char *code menu_items[5] = {
|
||||
"DETEC. PORTE", // 0: 门磁探测器 (法语: 门)
|
||||
"DETEC. PIR", // 1: 红外探测器
|
||||
"DETEC. FUMEE", // 2: 烟雾传感器
|
||||
"DETEC. GAZ", // 3: 燃气探测器
|
||||
"DETEC. EAU" // 4: 水浸探测器
|
||||
};
|
||||
|
||||
// 外部全局变量引用
|
||||
extern SystemState current_state;
|
||||
extern u8 menu_select;
|
||||
extern u8 captured_type;
|
||||
extern volatile u16 ms_tick;
|
||||
|
||||
// 菜单应用私有变量
|
||||
static u8 menu_level = 0; // 0-主菜单, 1-二级传感器选择菜单, 2-IPC绑定一键发射
|
||||
static u16 last_bind_tx_ms = 0; // 记录上一次绑定发射的时间戳
|
||||
|
||||
// 引入外部时钟调节接口
|
||||
extern void Start_Time_Edit(void);
|
||||
|
||||
// 声明本应用的生命周期回调函数
|
||||
static void MenuApp_OnStart(void);
|
||||
static void MenuApp_onRun(void);
|
||||
static void MenuApp_onClose(void);
|
||||
static EventResult MenuApp_onEvent(SystemEvent *evt);
|
||||
|
||||
// 实体化定义菜单应用控制块
|
||||
WristbandApp menu_app = {
|
||||
APP_ID_MENU,
|
||||
"Menu",
|
||||
MenuApp_OnStart,
|
||||
MenuApp_onRun,
|
||||
MenuApp_onClose,
|
||||
MenuApp_onEvent
|
||||
};
|
||||
|
||||
/**
|
||||
* @brief MenuApp 启动回调
|
||||
*/
|
||||
static void MenuApp_OnStart(void)
|
||||
{
|
||||
menu_level = 0;
|
||||
menu_select = 0;
|
||||
current_state = STATE_PAIR_MENU; // 系统运行状态设为对码配置菜单
|
||||
RF_SetMode(0); // 关闭射频接收芯片,防止接收杂波干扰屏幕绘制
|
||||
UI_ShowMainMenu(menu_select); // 初始化绘制一级主菜单
|
||||
RGB_Send(0, 0, 0, 0, 0, 0); // 熄灭所有灯条
|
||||
XTELL_LOG("[MenuApp] Started\r\n");
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief MenuApp 轮询主回调
|
||||
*/
|
||||
static void MenuApp_onRun(void)
|
||||
{
|
||||
if (menu_level == 2)
|
||||
{
|
||||
// ====== 控制青色双灯珠同步呼吸效果 (呼吸周期 1000ms) ======
|
||||
u16 breath = ms_tick % 1000;
|
||||
u8 val = (breath < 500) ? (breath * 2 / 5) : ((1000 - breath) * 2 / 5); // 亮度映射 0~200
|
||||
RGB_Send(0, val, val, 0, val, val); // 渲染青色 (G+B)
|
||||
|
||||
// ====== 控制无线发射,每 500ms 广播一次配对数据 ======
|
||||
if (ms_tick - last_bind_tx_ms >= 500 || ms_tick < last_bind_tx_ms)
|
||||
{
|
||||
last_bind_tx_ms = ms_tick; // 备份当前时间戳
|
||||
RF_SetMode(2); // 暂时切换射频芯片为发射调制模式
|
||||
EV1527_Transmit(CLONED_ADDR, 0x01); // 调制发射手环克隆 ID + 绑定数据码 0x01
|
||||
RF_SetMode(0); // 切回关闭状态,避免产生噪声
|
||||
XTELL_LOG("[MenuApp] IPC Binding frame emitted\r\n");
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief MenuApp 退出清理回调
|
||||
*/
|
||||
static void MenuApp_onClose(void)
|
||||
{
|
||||
menu_level = 0;
|
||||
RGB_Send(0, 0, 0, 0, 0, 0); // 熄灭 RGB
|
||||
RF_SetMode(1); // 重新开启无线接收模式
|
||||
XTELL_LOG("[MenuApp] Closed\r\n");
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief MenuApp 接收按键与控制事件回调
|
||||
*/
|
||||
static EventResult MenuApp_onEvent(SystemEvent *evt)
|
||||
{
|
||||
if (menu_level == 0)
|
||||
{
|
||||
// ====== 处于一级主菜单层 (0-HORLOGE, 1-APPAIRAGE, 2-LIAISON) ======
|
||||
if (evt->key_event == KEY_EVENT_UP_CLICK) {
|
||||
// 短按 ▲ 键向上移动焦点
|
||||
if (menu_select > 0) {
|
||||
menu_select--;
|
||||
UI_ShowMainMenu(menu_select);
|
||||
}
|
||||
return EVENT_HANDLED;
|
||||
}
|
||||
if (evt->key_event == KEY_EVENT_DOWN_CLICK) {
|
||||
// 短按 ▼ 键向下移动焦点
|
||||
if (menu_select < 2) {
|
||||
menu_select++;
|
||||
UI_ShowMainMenu(menu_select);
|
||||
}
|
||||
return EVENT_HANDLED;
|
||||
}
|
||||
if (evt->key_event == KEY_EVENT_CONFIRM_CLICK) {
|
||||
// 短按 ■ 确认键,进入选定功能的子页面
|
||||
if (menu_select == 0) {
|
||||
// 功能 1:设置时间。启动待机时钟应用,并调用微调编辑入口
|
||||
AppManager_SwitchToForeground(&clock_app);
|
||||
Start_Time_Edit();
|
||||
} else if (menu_select == 1) {
|
||||
// 功能 2:传感器学习。进入二级传感器类别选择菜单
|
||||
menu_level = 1;
|
||||
menu_select = 0;
|
||||
UI_ShowPairMenuPage(menu_select); // 绘制二级设备分类页
|
||||
} else if (menu_select == 2) {
|
||||
// 功能 3:相机配对。进入摄像机一键绑定发射状态
|
||||
menu_level = 2;
|
||||
last_bind_tx_ms = ms_tick; // 记录初始发射时间
|
||||
current_state = STATE_IPC_BIND; // 系统设为 IPC 绑定状态
|
||||
UI_ShowBindingPage(CLONED_ADDR); // 绘制相机绑定信息页
|
||||
}
|
||||
return EVENT_HANDLED;
|
||||
}
|
||||
if (evt->key_event == KEY_EVENT_CONFIRM_LONG) {
|
||||
// 长按 ■ 确认键,退出设置菜单直接返回待机时钟
|
||||
AppManager_SwitchToForeground(&clock_app);
|
||||
return EVENT_HANDLED;
|
||||
}
|
||||
}
|
||||
else if (menu_level == 1)
|
||||
{
|
||||
// ====== 处于二级传感器对码类型菜单层 (0-门磁, 1-PIR, 2-烟感, 3-气感, 4-水浸) ======
|
||||
if (evt->key_event == KEY_EVENT_UP_CLICK) {
|
||||
// 上移焦点
|
||||
if (menu_select > 0) {
|
||||
menu_select--;
|
||||
UI_ShowPairMenuPage(menu_select);
|
||||
}
|
||||
return EVENT_HANDLED;
|
||||
}
|
||||
if (evt->key_event == KEY_EVENT_DOWN_CLICK) {
|
||||
// 下移焦点
|
||||
if (menu_select < 4) {
|
||||
menu_select++;
|
||||
UI_ShowPairMenuPage(menu_select);
|
||||
}
|
||||
return EVENT_HANDLED;
|
||||
}
|
||||
if (evt->key_event == KEY_EVENT_CONFIRM_CLICK) {
|
||||
// 确认选择:缓存用户选好的传感器类别,短震反馈并加载对码应用 (PairApp)
|
||||
captured_type = menu_select;
|
||||
MOTOR = 1;
|
||||
Delay_ms(100);
|
||||
MOTOR = 0;
|
||||
AppManager_SwitchToForeground(&pair_app); // 切换至 PairApp 对码
|
||||
return EVENT_HANDLED;
|
||||
}
|
||||
if (evt->key_event == KEY_EVENT_DOWN_LONG) {
|
||||
// 长按 ▼ 键,从二级菜单退回到一级主菜单
|
||||
menu_level = 0;
|
||||
menu_select = 1; // 回到 APPAIRAGE 选项上
|
||||
UI_ShowMainMenu(menu_select);
|
||||
return EVENT_HANDLED;
|
||||
}
|
||||
}
|
||||
else if (menu_level == 2)
|
||||
{
|
||||
// ====== 处于摄像机配对一键绑定发送层 ======
|
||||
// 长按 ■ 确认键 或 长按 ▼ 键,均表示取消绑定,退出发射并返回一级主菜单
|
||||
if (evt->key_event == KEY_EVENT_CONFIRM_LONG || evt->key_event == KEY_EVENT_DOWN_LONG) {
|
||||
menu_level = 0;
|
||||
menu_select = 2; // 回到 LIAISON 选项上
|
||||
current_state = STATE_PAIR_MENU;
|
||||
RGB_Send(0, 0, 0, 0, 0, 0); // 关闭呼吸灯
|
||||
UI_ShowMainMenu(menu_select);
|
||||
return EVENT_HANDLED;
|
||||
}
|
||||
}
|
||||
return EVENT_IGNORED;
|
||||
}
|
||||
231
App/app_pair.c
Normal file
231
App/app_pair.c
Normal file
@@ -0,0 +1,231 @@
|
||||
#include "app_manager.h"
|
||||
#include "xtell.h"
|
||||
#include "ui.h"
|
||||
#include "rgb.h"
|
||||
#include "event.h"
|
||||
#include "system.h"
|
||||
#include "database.h"
|
||||
#include "clock.h"
|
||||
#include "../Drivers/rf.h"
|
||||
|
||||
// 外部全局变量引用
|
||||
extern SystemState current_state;
|
||||
extern u8 captured_type;
|
||||
extern u32 captured_addr;
|
||||
extern volatile u16 ms_tick;
|
||||
|
||||
// 对码状态机定义
|
||||
enum {
|
||||
PAIR_STATE_WAIT, // 等待射频探测器触发 (扩散雷达页面)
|
||||
PAIR_STATE_CONFIRM, // 已捕获,进入分配防区确认页面
|
||||
PAIR_STATE_SUCCESS, // 对码绑定成功界面 (SUCCESS)
|
||||
PAIR_STATE_FAIL // 超时或失败界面 (FAIL)
|
||||
};
|
||||
|
||||
// 本地私有变量
|
||||
static u8 pair_state; // 当前的对码阶段状态
|
||||
static u8 last_radar_sec; // 备份上一次雷达动画的帧索引
|
||||
static u8 captured_zone = 1; // 准备分配的防区号 (1~99)
|
||||
static u8 success_start_sec = 0;// 对码成功时的起始秒数 (延迟退场)
|
||||
static u8 fail_start_sec = 0; // 对码失败时的起始秒数
|
||||
static u32 pair_pulse_timer = 0; // 对码超时毫秒计数器
|
||||
static u16 last_run_tick = 0; // 上一次执行 onRun 时的毫秒滴答数
|
||||
|
||||
// 声明本应用的生命周期回调函数
|
||||
static void PairApp_OnStart(void);
|
||||
static void PairApp_onRun(void);
|
||||
static void PairApp_onClose(void);
|
||||
static EventResult PairApp_onEvent(SystemEvent *evt);
|
||||
|
||||
// 实体化定义对码应用控制块
|
||||
WristbandApp pair_app = {
|
||||
APP_ID_PAIR,
|
||||
"Pair",
|
||||
PairApp_OnStart,
|
||||
PairApp_onRun,
|
||||
PairApp_onClose,
|
||||
PairApp_onEvent
|
||||
};
|
||||
|
||||
/**
|
||||
* @brief PairApp 启动回调
|
||||
*/
|
||||
static void PairApp_OnStart(void)
|
||||
{
|
||||
// 1. 为了防止后台射频监听与对码射频接收冲突,将后台射频监听应用暂时卸载
|
||||
AppManager_DetachFromBackground(&rf_monitor_app);
|
||||
|
||||
pair_state = PAIR_STATE_WAIT;
|
||||
last_radar_sec = 99; // 强制刷写
|
||||
current_state = STATE_PAIR_WAIT;
|
||||
pair_pulse_timer = 0;
|
||||
last_run_tick = ms_tick;
|
||||
captured_zone = 1;
|
||||
RF_SetMode(1); // 开启无线接收模式
|
||||
|
||||
// 初始化对码搜索页面绘制
|
||||
UI_ShowPairWaitPage(0);
|
||||
|
||||
// 开启白色幻彩双灯珠常亮 (R=150, G=150, B=150),作为对码状态视觉指示
|
||||
RGB_Send(150, 150, 150, 150, 150, 150);
|
||||
|
||||
XTELL_LOG("[PairApp] Started (WAIT)\r\n");
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief PairApp 轮询主回调
|
||||
*/
|
||||
static void PairApp_onRun(void)
|
||||
{
|
||||
u32 rx_addr;
|
||||
u8 rx_data;
|
||||
u8 flash;
|
||||
u8 frame;
|
||||
u16 tick_diff;
|
||||
|
||||
// 计算非阻塞的毫秒时间增量
|
||||
if (ms_tick >= last_run_tick) {
|
||||
tick_diff = ms_tick - last_run_tick;
|
||||
} else {
|
||||
tick_diff = 1000 + ms_tick - last_run_tick;
|
||||
}
|
||||
last_run_tick = ms_tick;
|
||||
|
||||
if (pair_state == PAIR_STATE_WAIT) {
|
||||
// ====== 等待射频数据期间,白光 3Hz 高频闪烁 (周期 333ms) ======
|
||||
flash = (ms_tick / 166) % 2;
|
||||
if (flash) RGB_Send(150, 150, 150, 150, 150, 150);
|
||||
else RGB_Send(0, 0, 0, 0, 0, 0);
|
||||
|
||||
// 每隔 250ms,滚动绘制雷达搜索的 3 帧图片,构成动效
|
||||
frame = (u8)((ms_tick / 250) % 3);
|
||||
if (frame != last_radar_sec) {
|
||||
last_radar_sec = frame;
|
||||
UI_ShowPairWaitPage(frame);
|
||||
}
|
||||
|
||||
// 累加计算 30 秒的对码时间上限
|
||||
pair_pulse_timer += tick_diff;
|
||||
if (pair_pulse_timer >= 30000UL) {
|
||||
pair_pulse_timer = 0;
|
||||
pair_state = PAIR_STATE_FAIL;
|
||||
current_state = STATE_PAIR_FAIL;
|
||||
fail_start_sec = current_sec;
|
||||
UI_ShowPairFailPage(1); // 绘制超时大红叉页
|
||||
|
||||
// 红色双灯常亮警告
|
||||
RGB_Send(200, 0, 0, 200, 0, 0);
|
||||
XTELL_LOG("[PairApp] Timeout fail!\r\n");
|
||||
return;
|
||||
}
|
||||
|
||||
// ====== 物理射频包解调接收监听 ======
|
||||
if (EV1527_Decode(&rx_addr, &rx_data)) {
|
||||
// 保护机制:排除 SOS 码 (0x08)
|
||||
if (rx_data != 0x08) {
|
||||
captured_addr = rx_addr; // 缓存捕获的物理 ID 地址 (含数据码)
|
||||
pair_state = PAIR_STATE_CONFIRM; // 进入防区微调确认模式
|
||||
current_state = STATE_PAIR_CONFIRM;
|
||||
RF_SetMode(0); // 暂时关闭物理射频,防止再次覆盖
|
||||
captured_zone = 1;
|
||||
UI_ShowPairConfirmPage(captured_type, captured_zone);
|
||||
XTELL_LOG("[PairApp] Sensor captured. Addr=");
|
||||
XTELL_LOG_HEX32(rx_addr);
|
||||
XTELL_LOG("\r\n");
|
||||
}
|
||||
}
|
||||
}
|
||||
else if (pair_state == PAIR_STATE_CONFIRM) {
|
||||
// ====== 确认状态:橙色慢闪 (1.5Hz,周期 666ms) ======
|
||||
u8 flash_orange = (ms_tick / 333) % 2;
|
||||
if (flash_orange) RGB_Send(100, 180, 0, 100, 180, 0); // 橙色 (G=180, R=100)
|
||||
else RGB_Send(0, 0, 0, 0, 0, 0);
|
||||
}
|
||||
else if (pair_state == PAIR_STATE_SUCCESS) {
|
||||
// ====== 成功展示状态:延时 2 秒自动返回二级设置菜单 ======
|
||||
u8 elapsed = (current_sec >= success_start_sec) ? (current_sec - success_start_sec) : (60 + current_sec - success_start_sec);
|
||||
if (elapsed >= 2) {
|
||||
AppManager_SwitchToForeground(&menu_app);
|
||||
}
|
||||
}
|
||||
else if (pair_state == PAIR_STATE_FAIL) {
|
||||
// ====== 失败展示状态:延时 5 秒自动返回二级设置菜单 ======
|
||||
u8 elapsed = (current_sec >= fail_start_sec) ? (current_sec - fail_start_sec) : (60 + current_sec - fail_start_sec);
|
||||
if (elapsed >= 5) {
|
||||
AppManager_SwitchToForeground(&menu_app);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief PairApp 退出清理
|
||||
*/
|
||||
static void PairApp_onClose(void)
|
||||
{
|
||||
RGB_Send(0, 0, 0, 0, 0, 0); // 关闭 RGB
|
||||
MOTOR = 0; // 停震
|
||||
RF_SetMode(1); // 开启无线接收
|
||||
|
||||
// 重新挂载后台射频监控应用,以便回到时钟状态下能继续捕获报警
|
||||
AppManager_AttachToBackground(&rf_monitor_app);
|
||||
|
||||
XTELL_LOG("[PairApp] Closed\r\n");
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief PairApp 事件拦截处理回调
|
||||
*/
|
||||
static EventResult PairApp_onEvent(SystemEvent *evt)
|
||||
{
|
||||
if (pair_state == PAIR_STATE_CONFIRM) {
|
||||
if (evt->key_event == KEY_EVENT_UP_CLICK) {
|
||||
// 短按 ▲ 键增加目标分配防区号 (上限 99)
|
||||
if (captured_zone < 99) {
|
||||
captured_zone++;
|
||||
UI_ShowPairConfirmPage(captured_type, captured_zone);
|
||||
}
|
||||
return EVENT_HANDLED;
|
||||
}
|
||||
if (evt->key_event == KEY_EVENT_DOWN_CLICK) {
|
||||
// 短按 ▼ 键减小目标分配防区号 (下限 1)
|
||||
if (captured_zone > 1) {
|
||||
captured_zone--;
|
||||
UI_ShowPairConfirmPage(captured_type, captured_zone);
|
||||
}
|
||||
return EVENT_HANDLED;
|
||||
}
|
||||
if (evt->key_event == KEY_EVENT_CONFIRM_CLICK) {
|
||||
// 短按 ■ 确认键,写入 EEPROM 传感器数据库并保存
|
||||
Add_Sensor_With_Zone(captured_addr, captured_type, captured_zone);
|
||||
|
||||
pair_state = PAIR_STATE_SUCCESS;
|
||||
current_state = STATE_PAIR_SUCCESS;
|
||||
success_start_sec = current_sec;
|
||||
UI_ShowPairSuccessPage(); // 绘制打勾页
|
||||
|
||||
// 绿色双灯珠常亮,震动马达长震 400ms 反馈
|
||||
RGB_Send(0, 200, 0, 0, 200, 0);
|
||||
MOTOR = 1;
|
||||
Delay_ms(400);
|
||||
MOTOR = 0;
|
||||
|
||||
XTELL_LOG("[PairApp] Sensor saved successfully.\r\n");
|
||||
return EVENT_HANDLED;
|
||||
}
|
||||
if (evt->key_event == KEY_EVENT_CONFIRM_LONG) {
|
||||
// 长按 ■ 确认键放弃本次捕获,直接返回二级主菜单
|
||||
RGB_Send(0, 0, 0, 0, 0, 0);
|
||||
AppManager_SwitchToForeground(&menu_app);
|
||||
return EVENT_HANDLED;
|
||||
}
|
||||
}
|
||||
|
||||
// 在对码搜寻或确认防区期间,长按 ▼ 键均代表强行取消对码直接退回菜单页
|
||||
if (evt->key_event == KEY_EVENT_DOWN_LONG) {
|
||||
RGB_Send(0, 0, 0, 0, 0, 0);
|
||||
AppManager_SwitchToForeground(&menu_app);
|
||||
return EVENT_HANDLED;
|
||||
}
|
||||
|
||||
return EVENT_IGNORED;
|
||||
}
|
||||
105
App/app_rf_monitor.c
Normal file
105
App/app_rf_monitor.c
Normal file
@@ -0,0 +1,105 @@
|
||||
#include "app_manager.h"
|
||||
#include "xtell.h"
|
||||
#include "event.h"
|
||||
#include "database.h"
|
||||
#include "system.h"
|
||||
#include "../Drivers/rf.h"
|
||||
|
||||
// 外部全局变量引用
|
||||
extern SystemState current_state;
|
||||
extern u32 captured_addr;
|
||||
extern u8 alarm_sensor_slot;
|
||||
extern Sensor_Slot xdata sensor_list[16];
|
||||
|
||||
// 声明本应用的生命周期回调函数
|
||||
static void RfMonitorApp_OnStart(void);
|
||||
static void RfMonitorApp_onRun(void);
|
||||
static void RfMonitorApp_onClose(void);
|
||||
static EventResult RfMonitorApp_onEvent(SystemEvent *evt);
|
||||
|
||||
// 实体化定义后台射频监控应用控制块
|
||||
WristbandApp rf_monitor_app = {
|
||||
0xFE, // 后台应用 ID 设为 0xFE
|
||||
"RF_Monitor",
|
||||
RfMonitorApp_OnStart,
|
||||
RfMonitorApp_onRun,
|
||||
RfMonitorApp_onClose,
|
||||
RfMonitorApp_onEvent
|
||||
};
|
||||
|
||||
/**
|
||||
* @brief RfMonitorApp 启动回调
|
||||
*/
|
||||
static void RfMonitorApp_OnStart(void)
|
||||
{
|
||||
RF_SetMode(1); // 开启天线并设为接收模式
|
||||
XTELL_LOG("[RF_Monitor] Background RF monitor started.\r\n");
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief RfMonitorApp 轮询主回调
|
||||
* @details 负责在后台静默轮询物理射频 EV1527 解码器。
|
||||
* 解码成功后在本地传感器数据库中匹配,并执行布撤防及防区过滤逻辑,
|
||||
* 匹配通过后一键拉起前台报警应用。
|
||||
*/
|
||||
static void RfMonitorApp_onRun(void)
|
||||
{
|
||||
u32 rx_addr;
|
||||
u8 rx_data;
|
||||
u8 slot;
|
||||
|
||||
// 常态对待机下的射频检测与触发过滤逻辑
|
||||
if (EV1527_Decode(&rx_addr, &rx_data)) {
|
||||
XTELL_LOG("[RF_Monitor] Decoded Addr=");
|
||||
XTELL_LOG_HEX32(rx_addr);
|
||||
XTELL_LOG(", Data=");
|
||||
XTELL_LOG_HEX8(rx_data);
|
||||
XTELL_LOG("\r\n");
|
||||
|
||||
// 比对收到的 24 位射频源地址是否合法注册在手环本地数据库中
|
||||
if (Check_Sensor_ID(rx_addr, &slot)) {
|
||||
u8 sensor_type = sensor_list[slot].type; // 获取注册的设备类型
|
||||
if (sensor_type < 5) {
|
||||
// 防区分类过滤与布撤防过滤逻辑:
|
||||
// - zone == 0,或者烟感(2)、气感(3)、水浸(4) 为 24小时紧急防区,不受当前布防状态影响,强制触发报警;
|
||||
// - 门磁(0)和红外(1)为普通边界入侵防区,只有当系统处于 STATE_ARMED (布防) 状态时,才触发警报。
|
||||
if (sensor_list[slot].zone == 0 ||
|
||||
sensor_type == 2 ||
|
||||
sensor_type == 3 ||
|
||||
sensor_type == 4 ||
|
||||
current_state == STATE_ARMED)
|
||||
{
|
||||
// 只有在前台不为紧急 SOS 呼救且当前不处于报警状态时,才执行报警调起
|
||||
if (AppManager_GetActiveAppID() != APP_ID_SOS &&
|
||||
AppManager_GetActiveAppID() != APP_ID_ALARM)
|
||||
{
|
||||
captured_addr = rx_addr; // 缓存报警地址
|
||||
alarm_sensor_slot = slot; // 缓存报警槽位号
|
||||
XTELL_LOG("[RF_Monitor] Intruder ALERT! Waking up alarm app...\r\n");
|
||||
AppManager_SwitchToForeground(&alarm_app); // 动态切入警报前台
|
||||
}
|
||||
} else {
|
||||
XTELL_LOG("[RF_Monitor] Ignored due to DISARMED state.\r\n");
|
||||
}
|
||||
}
|
||||
} else {
|
||||
XTELL_LOG("[RF_Monitor] Unregistered sensor address.\r\n");
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief RfMonitorApp 退出清理
|
||||
*/
|
||||
static void RfMonitorApp_onClose(void)
|
||||
{
|
||||
XTELL_LOG("[RF_Monitor] Background RF monitor closed.\r\n");
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief RfMonitorApp 事件处理 (后台应用暂不拦截处理按键事件)
|
||||
*/
|
||||
static EventResult RfMonitorApp_onEvent(SystemEvent *evt)
|
||||
{
|
||||
return EVENT_IGNORED;
|
||||
}
|
||||
134
App/app_sos.c
Normal file
134
App/app_sos.c
Normal file
@@ -0,0 +1,134 @@
|
||||
#include "app_manager.h"
|
||||
#include "xtell.h"
|
||||
#include "ui.h"
|
||||
#include "rgb.h"
|
||||
#include "event.h"
|
||||
#include "system.h"
|
||||
#include "../Drivers/rf.h"
|
||||
#include "../Drivers/lcd.h"
|
||||
|
||||
// 外部全局变量引用
|
||||
extern SystemState current_state;
|
||||
extern volatile u16 ms_tick;
|
||||
extern volatile bit alarm_flash_flag;
|
||||
|
||||
// 本地私有变量
|
||||
static u8 sos_last_phase = 99; // 记录上一次发射的 500ms 半周期状态
|
||||
static u32 sos_pulse_timer = 0; // SOS 马达震动波形计数器
|
||||
static u16 last_run_tick = 0; // 记录上一次轮询的 ticks
|
||||
|
||||
// 声明本应用的生命周期回调函数
|
||||
static void SOSApp_OnStart(void);
|
||||
static void SOSApp_onRun(void);
|
||||
static void SOSApp_onClose(void);
|
||||
static EventResult SOSApp_onEvent(SystemEvent *evt);
|
||||
|
||||
// 实体化定义 SOS 呼救应用控制块
|
||||
WristbandApp sos_app = {
|
||||
APP_ID_SOS,
|
||||
"SOS",
|
||||
SOSApp_OnStart,
|
||||
SOSApp_onRun,
|
||||
SOSApp_onClose,
|
||||
SOSApp_onEvent
|
||||
};
|
||||
|
||||
/**
|
||||
* @brief SOSApp 启动回调
|
||||
*/
|
||||
static void SOSApp_OnStart(void)
|
||||
{
|
||||
current_state = STATE_SOS_EMITTED; // 进入 SOS 紧急求救状态
|
||||
sos_last_phase = 99;
|
||||
sos_pulse_timer = 0; // 马达震动计数器清零
|
||||
last_run_tick = ms_tick;
|
||||
UI_ShowSosPage(); // 初始化渲染 SOS 警示主页
|
||||
|
||||
// 立即点亮左侧灯为红色,右侧熄灭,准备开启双色红灯交替爆闪
|
||||
RGB_Send(0, 200, 0, 0, 0, 0);
|
||||
|
||||
XTELL_LOG("[SOSApp] Started\r\n");
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief SOSApp 轮询主回调
|
||||
* @details 包含 500ms 周期的高频射频 SOS 码发射、红蓝交替爆闪以及
|
||||
* 马达 (1000ms震动 / 200ms静音) 规律震动控制。
|
||||
*/
|
||||
static void SOSApp_onRun(void)
|
||||
{
|
||||
u16 tick_diff;
|
||||
|
||||
// ====== 1. 控制无线射频,每 500ms 发射一次 SOS 无线数据帧 (0x08) ======
|
||||
u8 sec_phase = (u8)((ms_tick / 500) % 2);
|
||||
if (sec_phase != sos_last_phase) {
|
||||
sos_last_phase = sec_phase;
|
||||
RF_SetMode(2); // 切换发射
|
||||
EV1527_Transmit(CLONED_ADDR, 0x08); // 发射克隆 ID 及其 SOS (0x08) 命令字
|
||||
RF_SetMode(0); // 释放接收
|
||||
XTELL_LOG("[SOSApp] SOS Radio packet emitted\r\n");
|
||||
}
|
||||
|
||||
// ====== 2. 控制 RGB 双灯珠以 50ms 频率进行高频左右交替红蓝爆闪 ======
|
||||
{
|
||||
u8 flash = (ms_tick / 50) % 2;
|
||||
if (flash) {
|
||||
RGB_Send(0, 200, 0, 0, 0, 200); // 灯 1 亮红 (GRB 中 R=200),灯 2 亮蓝 (B=200)
|
||||
} else {
|
||||
RGB_Send(0, 0, 200, 0, 200, 0); // 灯 1 亮蓝,灯 2 亮红
|
||||
}
|
||||
}
|
||||
|
||||
// ====== 3. 控制屏幕绘制多层爆闪红白框 ======
|
||||
if (alarm_flash_flag) {
|
||||
LCD_DrawRectBorder(4, 4, 112, 232, COLOR_RED);
|
||||
LCD_DrawRectBorder(5, 5, 110, 230, COLOR_RED);
|
||||
LCD_DrawRectBorder(8, 8, 104, 224, COLOR_WHITE);
|
||||
} else {
|
||||
LCD_DrawRectBorder(4, 4, 112, 232, COLOR_BLACK);
|
||||
LCD_DrawRectBorder(5, 5, 110, 230, COLOR_BLACK);
|
||||
LCD_DrawRectBorder(8, 8, 104, 224, COLOR_BLACK);
|
||||
}
|
||||
|
||||
// ====== 4. 马达 SOS 震动节拍自处理 (1000ms 震动,200ms 静音) ======
|
||||
if (ms_tick >= last_run_tick) {
|
||||
tick_diff = ms_tick - last_run_tick;
|
||||
} else {
|
||||
tick_diff = 1000 + ms_tick - last_run_tick;
|
||||
}
|
||||
last_run_tick = ms_tick;
|
||||
|
||||
sos_pulse_timer += tick_diff;
|
||||
if (sos_pulse_timer >= 1200) {
|
||||
sos_pulse_timer = 0;
|
||||
}
|
||||
|
||||
if (sos_pulse_timer < 1000) {
|
||||
MOTOR = 1;
|
||||
} else {
|
||||
MOTOR = 0;
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief SOSApp 退出清理
|
||||
*/
|
||||
static void SOSApp_onClose(void)
|
||||
{
|
||||
RGB_Send(0, 0, 0, 0, 0, 0); // 关闭 RGB
|
||||
MOTOR = 0; // 停震
|
||||
current_state = STATE_NORMAL;
|
||||
XTELL_LOG("[SOSApp] Closed\r\n");
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief SOSApp 事件拦截处理回调 (按任意键退出 SOS)
|
||||
*/
|
||||
static EventResult SOSApp_onEvent(SystemEvent *evt)
|
||||
{
|
||||
if (evt->key_event != KEY_EVENT_NONE) {
|
||||
AppManager_SwitchToForeground(&clock_app); // 退出 SOS,返回时钟
|
||||
return EVENT_HANDLED;
|
||||
}
|
||||
return EVENT_IGNORED;
|
||||
}
|
||||
37
App/clock.c
Normal file
37
App/clock.c
Normal file
@@ -0,0 +1,37 @@
|
||||
#include "clock.h"
|
||||
#include "xtell.h"
|
||||
|
||||
// 软时钟基础计时变量
|
||||
u8 current_hour = 10; // 系统软时钟:小时 (默认初始化为 10 点)
|
||||
u8 current_min = 35; // 系统软时钟:分钟 (默认初始化为 35 分)
|
||||
u8 current_sec = 0; // 系统软时钟:秒
|
||||
volatile u8 clock_updated = 0; // 分钟跳变标志位,置位后用于驱动 UI 刷新时间显示
|
||||
|
||||
// 毫秒计数器 (Timer1 每 1ms 累加)
|
||||
static u16 ms_cnt = 0;
|
||||
|
||||
/**
|
||||
* @brief 系统软时钟毫秒递增更新 (在 1ms 中断中调用)
|
||||
* @details 负责由定时器 1ms 驱动递增软时钟,并在分钟发生跳变时将 clock_updated 置位
|
||||
*/
|
||||
void Clock_IncMS(void)
|
||||
{
|
||||
ms_cnt++;
|
||||
if (ms_cnt >= 1000) {
|
||||
ms_cnt = 0; // 1秒时间到
|
||||
current_sec++;
|
||||
if (current_sec >= 60) {
|
||||
current_sec = 0; // 1分钟时间到
|
||||
current_min++;
|
||||
if (current_min >= 60) {
|
||||
current_min = 0; // 1小时时间到
|
||||
current_hour++;
|
||||
if (current_hour >= 24) {
|
||||
current_hour = 0; // 小时循环
|
||||
}
|
||||
}
|
||||
clock_updated = 1; // 分钟跳变,标志位置位,前台待机 App 会捕获以刷新 UI
|
||||
XTELL_LOG("[CLOCK] Time updated!\r\n");
|
||||
}
|
||||
}
|
||||
}
|
||||
17
App/clock.h
Normal file
17
App/clock.h
Normal file
@@ -0,0 +1,17 @@
|
||||
#ifndef __CLOCK_H__
|
||||
#define __CLOCK_H__
|
||||
|
||||
#include "config.h"
|
||||
|
||||
// 全局软时钟变量声明
|
||||
extern u8 current_hour;
|
||||
extern u8 current_min;
|
||||
extern u8 current_sec;
|
||||
extern volatile u8 clock_updated;
|
||||
|
||||
/**
|
||||
* @brief 系统软时钟毫秒递增更新 (在 1ms 中断中调用)
|
||||
*/
|
||||
void Clock_IncMS(void);
|
||||
|
||||
#endif // __CLOCK_H__
|
||||
47
App/config.h
47
App/config.h
@@ -22,19 +22,19 @@ sbit KEY_DOWN = P0^3;
|
||||
sbit KEY_SOS = P2^6;
|
||||
// FCOB 幻彩灯条 DIN 数据控制线
|
||||
sbit RGB_DIN = P2^3;
|
||||
// LR690L 射频芯片休眠/工作控制引脚 (低电平使能开启工作)
|
||||
sbit SHUT = P2^2;
|
||||
// SGM3833 PMIC 屏幕负压供电使能脚 (1使能,0关闭)
|
||||
sbit SGM_CTRL = P3^4;
|
||||
// Truly AMOLED 屏幕复位脚 (RESET),低电平复位
|
||||
// LR690L 射频芯片休眠/工作控制引脚 (0:开启工作, 1:关闭休眠)
|
||||
sbit SHUT = P3^5;
|
||||
// LHS114TC-IF03 屏幕 LEDA 白色背光开启引脚 (1点亮,0熄灭)
|
||||
sbit SGM_CTRL = P1^7;
|
||||
// LHS114TC-IF03 屏幕复位脚 (RESET),低电平复位
|
||||
sbit LCD_RST = P1^0;
|
||||
// Truly AMOLED 屏幕数据/指令选择脚 (D/C,1:数据, 0:命令)
|
||||
// LHS114TC-IF03 屏幕数据/指令选择脚 (D/C,1:数据, 0:命令)
|
||||
sbit LCD_DCX = P1^1;
|
||||
// Truly AMOLED 屏幕 SPI 数据脚 (MOSI/SDA)
|
||||
// LHS114TC-IF03 屏幕 SPI 数据脚 (MOSI/SDA)
|
||||
sbit LCD_SDI = P1^4;
|
||||
// Truly AMOLED 屏幕 SPI 时钟脚 (SCLK)
|
||||
// LHS114TC-IF03 屏幕 SPI 时钟脚 (SCLK)
|
||||
sbit LCD_SCL = P1^5;
|
||||
// Truly AMOLED 屏幕 SPI 片选脚 (CS),低电平有效
|
||||
// LHS114TC-IF03 屏幕 SPI 片选脚 (CS),低电平有效
|
||||
sbit LCD_CS = P1^6;
|
||||
|
||||
/* ====== 系统运行状态枚举 ====== */
|
||||
@@ -70,16 +70,16 @@ typedef enum {
|
||||
|
||||
/* ====== 事件优先级枚举 ====== */
|
||||
typedef enum {
|
||||
EVENT_PRIORITY_LOW, // 低优先级:系统内部状态更新 (如时钟分钟更新)
|
||||
EVENT_PRIORITY_NORMAL, // 正常优先级:用户按键交互、菜单导航
|
||||
EVENT_PRIORITY_HIGH, // 高优先级:无线传感器入侵警报
|
||||
EVENT_PRIORITY_URGENT // 紧急优先级:SOS 主动求救
|
||||
EVENT_PRIORITY_LOW, // 0: 低优先级:系统内部事件,如定时更新
|
||||
EVENT_PRIORITY_NORMAL, // 1: 正常优先级:大部分用户交互事件
|
||||
EVENT_PRIORITY_HIGH, // 2: 高优先级:报警相关事件,插队到队首
|
||||
EVENT_PRIORITY_URGENT // 3: 紧急优先级:SOS等,插队到队首
|
||||
} EventPriority;
|
||||
|
||||
/* ====== 系统事件结构体定义 ====== */
|
||||
typedef struct {
|
||||
KeyEvent key_event; // 关联的按键事件类型
|
||||
EventPriority priority; // 事件的处理优先级
|
||||
EventPriority priority; // 事件优先级
|
||||
u32 extra_data; // 随事件携带的额外数据 (如 24 位射频源地址等)
|
||||
u8 extra_size; // 额外数据的有效字节大小 (0~4)
|
||||
} SystemEvent;
|
||||
@@ -106,26 +106,7 @@ typedef enum {
|
||||
APP_TYPE_BACKGROUND // 后台应用:无屏幕显示,静默监听前台未处理的系统事件
|
||||
} AppType;
|
||||
|
||||
/* ====== 应用程序描述符及函数指针类型定义 ====== */
|
||||
struct WristbandApp;
|
||||
typedef struct WristbandApp WristbandApp;
|
||||
|
||||
typedef void (*AppStartFunc)(void); // 应用启动函数指针类型
|
||||
typedef void (*AppRunFunc)(void); // 主循环轮询函数指针类型
|
||||
typedef void (*AppCloseFunc)(void); // 应用关闭清理函数指针类型
|
||||
typedef EventResult (*AppEventFunc)(SystemEvent *evt); // 事件接收处理函数指针类型
|
||||
|
||||
struct WristbandApp {
|
||||
AppID app_id; // 应用程序唯一标识 ID
|
||||
AppType app_type; // 前后台类型标识
|
||||
char *app_name; // 应用程序名称字符串 (供串口日志调试使用)
|
||||
void (*OnStart)(void); // 启动回调:应用加载时调用,用于初始化 UI 界面与硬件状态
|
||||
void (*onRun)(void); // 循环回调:在主循环中持续轮询调用,用于非阻塞业务更新
|
||||
void (*onClose)(void); // 关闭回调:应用退出时调用,用于现场清理与外设复位
|
||||
EventResult (*onEvent)(SystemEvent *evt); // 事件回调:接收系统事件,返回处理结果以控制事件流向
|
||||
u8 is_active; // 标记该应用当前是否处于活跃运行状态 (1表示前台活跃)
|
||||
u8 is_running; // 标记应用是否处于运行态,用于 CPU 超时挂起机制控制
|
||||
};
|
||||
|
||||
/* ====== 无线传感器 Flash 存储槽位结构体 ====== */
|
||||
typedef struct {
|
||||
|
||||
138
App/event.c
138
App/event.c
@@ -2,6 +2,8 @@
|
||||
#include "app_manager.h"
|
||||
#include "database.h"
|
||||
#include "system.h"
|
||||
#include "clock.h"
|
||||
#include "xtell.h"
|
||||
|
||||
// 定义事件环形队列的最大深度为 8
|
||||
#define EVENT_QUEUE_DEPTH 8
|
||||
@@ -64,7 +66,6 @@ SystemEvent EventQueue_Pop(void)
|
||||
SystemEvent evt;
|
||||
// 默认空事件属性
|
||||
evt.key_event = KEY_EVENT_NONE;
|
||||
evt.priority = EVENT_PRIORITY_LOW;
|
||||
evt.extra_data = 0;
|
||||
evt.extra_size = 0;
|
||||
|
||||
@@ -118,46 +119,17 @@ void Event_Dispatcher_Loop(void)
|
||||
inactivity_timer = 0; // 捕获到有效事件,清零休眠计时器,重置闲置超时
|
||||
|
||||
// 串口打印调试信息
|
||||
Uart_SendString("[EVENT] key=");
|
||||
Uart_SendHex8((u8)evt.key_event);
|
||||
Uart_SendString(", pri=");
|
||||
Uart_SendHex8((u8)evt.priority);
|
||||
Uart_SendString("\r\n");
|
||||
XTELL_LOG("[EVENT] key=");
|
||||
XTELL_LOG_HEX8((u8)evt.key_event);
|
||||
XTELL_LOG("\r\n");
|
||||
|
||||
// SOS 按键紧急处理:若非处于 SOS 呼救状态下,接收到 SOS 键动作,立即强行切入到 SOS_APP 并执行求救
|
||||
// SOS 按键紧急处理:若当前前台不为 SOS 应用,接收到 SOS 键动作,立即强行切入到 SOS_APP 并执行求救
|
||||
if ((evt.key_event == KEY_EVENT_SOS_CLICK || evt.key_event == KEY_EVENT_SOS_LONG) &&
|
||||
AppManager_GetActiveAppID() != APP_ID_SOS) {
|
||||
AppManager_StartApp(APP_ID_SOS);
|
||||
return;
|
||||
}
|
||||
|
||||
// 传感器入侵报警过滤与跳转处理:
|
||||
// 当接收到高优先级且带有 4 字节射频地址的数据包,说明有传感器触发了发射
|
||||
if (evt.priority == EVENT_PRIORITY_HIGH && evt.extra_size >= 4) {
|
||||
u8 slot;
|
||||
// 在本地数据库中检索该传感器地址是否合法登记过
|
||||
if (Check_Sensor_ID(evt.extra_data, &slot)) {
|
||||
// 在不处于 SOS 的情况下,可正常强行切入 ALARM_APP 触发声光振警报
|
||||
if (AppManager_GetActiveAppID() != APP_ID_SOS) {
|
||||
captured_addr = evt.extra_data; // 缓存报警地址
|
||||
alarm_sensor_slot = slot; // 缓存报警槽位
|
||||
AppManager_StartApp(APP_ID_ALARM); // 强制切入报警前台
|
||||
return;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// 无线对码捕获处理:
|
||||
// 若系统正处于对码应用 (APP_ID_PAIR),遇到普通优先级无线射频包,则将其派发给该应用进行匹配与登记
|
||||
if (evt.priority == EVENT_PRIORITY_NORMAL && evt.extra_size >= 4) {
|
||||
captured_addr = evt.extra_data; // 缓存捕获的待配对地址
|
||||
captured_type = menu_select; // 将主菜单选择的类型传给配对缓存
|
||||
if (AppManager_GetActiveAppID() == APP_ID_PAIR) {
|
||||
AppManager_DispatchEvent(evt); // 派发给对码应用
|
||||
return;
|
||||
}
|
||||
}
|
||||
|
||||
// 常规事件(如普通的按键点击)直接透传分发给当前处于前台活跃的应用
|
||||
AppManager_DispatchEvent(evt);
|
||||
}
|
||||
@@ -182,89 +154,14 @@ void Timer1_Init(void)
|
||||
|
||||
/**
|
||||
* @brief 定时器 1 中断服务程序 (每 1ms 触发一次)
|
||||
* @details 承担了系统软时钟计算、报警与求救下的马达控制状态机以及 10ms 周期性按键消抖扫描的功能。
|
||||
* @details 承担了系统软时钟计算、10ms 周期性按键消抖扫描的功能。马达等特定业务已剥离至 App 内部。
|
||||
*/
|
||||
void Timer1_Isr(void) interrupt 3
|
||||
{
|
||||
SystemEvent evt;
|
||||
|
||||
// 1ms 递增滴答
|
||||
ms_tick++;
|
||||
if (ms_tick >= 1000) {
|
||||
ms_tick = 0; // 1秒时间已到,归零
|
||||
current_sec++;
|
||||
if (current_sec >= 60) {
|
||||
current_sec = 0; // 1分钟时间已到
|
||||
current_min++;
|
||||
if (current_min >= 60) {
|
||||
current_min = 0; // 1小时时间已到
|
||||
current_hour++;
|
||||
if (current_hour >= 24) current_hour = 0; // 小时循环
|
||||
}
|
||||
clock_updated = 1; // 标志位置1,提示前台时钟应用刷新显示
|
||||
}
|
||||
}
|
||||
|
||||
// 如果处于对码等待状态,对码超时计时器增加 (30秒超时判断)
|
||||
if (current_state == STATE_PAIR_WAIT) {
|
||||
pair_timeout_ms++;
|
||||
}
|
||||
|
||||
/* 振动马达定时状态机逻辑控制 */
|
||||
if (current_state == STATE_SOS_EMITTED) {
|
||||
// SOS 模式:交替规律震动 (震动 1000ms,静音 200ms)
|
||||
alarm_timer_ms++;
|
||||
if (alarm_timer_ms >= 1200) alarm_timer_ms = 0;
|
||||
if (alarm_timer_ms < 1000) MOTOR = 1; else MOTOR = 0;
|
||||
} else if (current_state == STATE_ALARM) {
|
||||
// 报警状态:根据触发警报的传感器类型,输出对应的差异化震动波形以便触觉分辨
|
||||
u8 stype = sensor_list[alarm_sensor_slot].type;
|
||||
alarm_timer_ms++;
|
||||
if (alarm_timer_ms >= 5000) alarm_timer_ms = 0; // 5秒一周期
|
||||
|
||||
if (stype == 0) {
|
||||
// 门磁警报波形:单次震动 300ms,停 4700ms
|
||||
if (alarm_timer_ms < 300) MOTOR = 1; else MOTOR = 0;
|
||||
} else if (stype == 1) {
|
||||
// PIR 警报波形:震动 300ms,停 200ms,再震动 300ms,停 4200ms
|
||||
if (alarm_timer_ms < 300) MOTOR = 1;
|
||||
else if (alarm_timer_ms >= 300 && alarm_timer_ms < 500) MOTOR = 0;
|
||||
else if (alarm_timer_ms >= 500 && alarm_timer_ms < 800) MOTOR = 1;
|
||||
else MOTOR = 0;
|
||||
} else if (stype == 2) {
|
||||
// 烟感警报波形:急促短闪三下 200ms-150ms-200ms-150ms-200ms
|
||||
if (alarm_timer_ms < 200) MOTOR = 1;
|
||||
else if (alarm_timer_ms >= 200 && alarm_timer_ms < 350) MOTOR = 0;
|
||||
else if (alarm_timer_ms >= 350 && alarm_timer_ms < 550) MOTOR = 1;
|
||||
else if (alarm_timer_ms >= 550 && alarm_timer_ms < 700) MOTOR = 0;
|
||||
else if (alarm_timer_ms >= 700 && alarm_timer_ms < 900) MOTOR = 1;
|
||||
else MOTOR = 0;
|
||||
} else if (stype == 3) {
|
||||
// 燃气报警波形:快频连续四下
|
||||
if (alarm_timer_ms < 200) MOTOR = 1;
|
||||
else if (alarm_timer_ms >= 200 && alarm_timer_ms < 300) MOTOR = 0;
|
||||
else if (alarm_timer_ms >= 300 && alarm_timer_ms < 500) MOTOR = 1;
|
||||
else if (alarm_timer_ms >= 500 && alarm_timer_ms < 600) MOTOR = 0;
|
||||
else if (alarm_timer_ms >= 600 && alarm_timer_ms < 800) MOTOR = 1;
|
||||
else if (alarm_timer_ms >= 800 && alarm_timer_ms < 900) MOTOR = 0;
|
||||
else if (alarm_timer_ms >= 900 && alarm_timer_ms < 1100) MOTOR = 1;
|
||||
else MOTOR = 0;
|
||||
} else if (stype == 4) {
|
||||
// 水浸警报波形:慢速双长震波 600ms 和 600ms
|
||||
if (alarm_timer_ms < 600) MOTOR = 1;
|
||||
else if (alarm_timer_ms >= 600 && alarm_timer_ms < 900) MOTOR = 0;
|
||||
else if (alarm_timer_ms >= 900 && alarm_timer_ms < 1500) MOTOR = 1;
|
||||
else MOTOR = 0;
|
||||
} else {
|
||||
// 缺省状态默认单次 300ms
|
||||
if (alarm_timer_ms < 300) MOTOR = 1; else MOTOR = 0;
|
||||
}
|
||||
} else {
|
||||
// 其他常态下彻底关闭震动马达并归零计时器
|
||||
MOTOR = 0;
|
||||
alarm_timer_ms = 0;
|
||||
motor_timer_ms = 0;
|
||||
}
|
||||
// 1ms 定时更新软时钟
|
||||
Clock_IncMS();
|
||||
|
||||
// 报警屏幕红边框以 100ms 周期亮灭,进行颜色爆闪指示
|
||||
alarm_flash_flag = (ms_tick / 100) % 2;
|
||||
@@ -276,7 +173,7 @@ void Timer1_Isr(void) interrupt 3
|
||||
u8 raw_up = !KEY_UP;
|
||||
u8 raw_down = !KEY_DOWN;
|
||||
u8 raw_confirm = !KEY_CONFIRM;
|
||||
u8 raw_sos = !KEY_SOS;
|
||||
u8 raw_sos = 0; // 临时注释关闭 SOS 物理按键电平检测,防浮空干扰
|
||||
key_scan_timer = 0; // 重置扫描分频计数器
|
||||
|
||||
// 检测到有任意按键处于下压状态,立即将无操作闲置休眠计时器归零
|
||||
@@ -294,12 +191,11 @@ void Timer1_Isr(void) interrupt 3
|
||||
evt.extra_data = 0;
|
||||
evt.extra_size = 0;
|
||||
|
||||
// 双键组合判定:▲ 键和 ▼ 键同时按下的消抖与生成
|
||||
// 双键组合判定:▲ 键 and ▼ 键同时按下的消抖与生成
|
||||
if (raw_up && raw_down) {
|
||||
comb_hold++;
|
||||
if (comb_hold == 300) { // 持续按下达 3 秒 (300 * 10ms = 3s)
|
||||
evt.key_event = KEY_EVENT_UP_DOWN_COMB;
|
||||
evt.priority = EVENT_PRIORITY_NORMAL;
|
||||
EventQueue_Push(evt); // 压入队列
|
||||
}
|
||||
key_up_hold = 0; // 清零单个按键计数,防止双击事件干扰
|
||||
@@ -312,14 +208,12 @@ void Timer1_Isr(void) interrupt 3
|
||||
key_up_hold++;
|
||||
if (key_up_hold == 300) { // 达到 3 秒判定为长按
|
||||
evt.key_event = KEY_EVENT_UP_LONG;
|
||||
evt.priority = EVENT_PRIORITY_NORMAL;
|
||||
EventQueue_Push(evt);
|
||||
}
|
||||
} else {
|
||||
// 如果松开时按下计数在消抖阈值(20ms)至长按阈值(3s)之间,则判定为一次短按
|
||||
if (key_up_hold >= 2 && key_up_hold < 300) {
|
||||
evt.key_event = KEY_EVENT_UP_CLICK;
|
||||
evt.priority = EVENT_PRIORITY_NORMAL;
|
||||
EventQueue_Push(evt);
|
||||
}
|
||||
key_up_hold = 0; // 释放归零
|
||||
@@ -330,13 +224,11 @@ void Timer1_Isr(void) interrupt 3
|
||||
key_down_hold++;
|
||||
if (key_down_hold == 300) { // 长按 3 秒
|
||||
evt.key_event = KEY_EVENT_DOWN_LONG;
|
||||
evt.priority = EVENT_PRIORITY_NORMAL;
|
||||
EventQueue_Push(evt);
|
||||
}
|
||||
} else {
|
||||
if (key_down_hold >= 2 && key_down_hold < 300) {
|
||||
evt.key_event = KEY_EVENT_DOWN_CLICK;
|
||||
evt.priority = EVENT_PRIORITY_NORMAL;
|
||||
EventQueue_Push(evt);
|
||||
}
|
||||
key_down_hold = 0; // 释放归零
|
||||
@@ -347,34 +239,32 @@ void Timer1_Isr(void) interrupt 3
|
||||
key_confirm_hold++;
|
||||
if (key_confirm_hold == 300) { // 长按 3 秒打开主菜单
|
||||
evt.key_event = KEY_EVENT_CONFIRM_LONG;
|
||||
evt.priority = EVENT_PRIORITY_NORMAL;
|
||||
EventQueue_Push(evt);
|
||||
}
|
||||
} else {
|
||||
if (key_confirm_hold >= 2 && key_confirm_hold < 300) {
|
||||
evt.key_event = KEY_EVENT_CONFIRM_CLICK;
|
||||
evt.priority = EVENT_PRIORITY_NORMAL;
|
||||
EventQueue_Push(evt);
|
||||
}
|
||||
key_confirm_hold = 0; // 释放归零
|
||||
}
|
||||
|
||||
/*
|
||||
// SOS 物理求救按键状态机
|
||||
if (raw_sos) {
|
||||
key_sos_hold++;
|
||||
if (key_sos_hold == 300) { // 长按 3 秒,发出 URGENT 优先级求救,插入队首
|
||||
if (key_sos_hold == 300) { // 长按 3 秒,发出求救,插入队首
|
||||
evt.key_event = KEY_EVENT_SOS_LONG;
|
||||
evt.priority = EVENT_PRIORITY_URGENT;
|
||||
EventQueue_InsertFront(evt);
|
||||
}
|
||||
} else {
|
||||
if (key_sos_hold >= 2 && key_sos_hold < 300) { // 短按即呼救,插入队首
|
||||
evt.key_event = KEY_EVENT_SOS_CLICK;
|
||||
evt.priority = EVENT_PRIORITY_URGENT;
|
||||
EventQueue_InsertFront(evt);
|
||||
}
|
||||
key_sos_hold = 0; // 释放归零
|
||||
}
|
||||
*/
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
32
App/main.c
32
App/main.c
@@ -12,10 +12,7 @@
|
||||
* 系统全局变量定义
|
||||
* ========================================================================= */
|
||||
SystemState current_state = STATE_NORMAL; // 系统整体的当前运行状态,默认为正常时钟待机页
|
||||
u8 current_hour = 10; // 系统软时钟:小时 (默认初始化为 10 点)
|
||||
u8 current_min = 35; // 系统软时钟:分钟 (默认初始化为 35 分)
|
||||
u8 current_sec = 0; // 系统软时钟:秒
|
||||
volatile u8 clock_updated = 0; // 分钟跳变标志位,置位后用于驱动 UI 刷新时间显示
|
||||
|
||||
|
||||
u8 menu_select = 0; // 主菜单当前选中的行高亮索引 (0~2)
|
||||
u32 captured_addr = 0; // 配对或报警时,捕获到的传感器 24 位 EV1527 射频物理地址
|
||||
@@ -150,8 +147,9 @@ void Debug_ProcessCommand(char cmd)
|
||||
inactivity_timer = 6000; // 模拟闲置 60 秒超时,强制触发主循环深度休眠
|
||||
Uart_SendString("[UART] Force Entering Sleep mode!\r\n");
|
||||
} else if (cmd == 't' || cmd == 'T') {
|
||||
Loopback_Test(); // 调用回环测试验证屏幕
|
||||
RF_Test_Pin(); // 无线射频测试
|
||||
RF_DiagnosticMode('t'); // 触发射频连续发射诊断 (绿色爆闪)
|
||||
} else if (cmd == 'r' || cmd == 'R') {
|
||||
RF_DiagnosticMode('r'); // 触发 5 秒射频接收监听诊断
|
||||
}
|
||||
}
|
||||
|
||||
@@ -172,9 +170,7 @@ void main(void)
|
||||
GPIO_Init(); // 配置各个引脚的推挽输出/准双向模式及内部上拉
|
||||
RF_Init(); // 初始化射频芯片各引脚控制
|
||||
Delay_ms(500); // 软启动延时,等待供电电容稳定
|
||||
SGM_SendPulse(27); // 通过脉冲给 SGM3833 供电芯片发指令,稳压开启 LCD 正负电压轨
|
||||
Delay_ms(50); // 等待电压充盈稳定,避开浪涌
|
||||
LCD_Init(); // 初始化 Truly AMOLED 屏幕控制寄存器序列
|
||||
LCD_Init(); // 初始化 LHS114TC-IF03 (ST7789V) 屏幕控制寄存器序列并开启背光
|
||||
Uart1_Init(); // 初始化串口 1 波特率 115200 供调试日志
|
||||
Uart_SendString("Wristband System Initialized!\r\n");
|
||||
|
||||
@@ -189,6 +185,9 @@ void main(void)
|
||||
/* 启动 1ms 系统基准定时器 Timer1 */
|
||||
Timer1_Init();
|
||||
|
||||
/* 开机自动加载并运行待机时钟前台活跃应用 */
|
||||
AppManager_StartApp(APP_ID_CLOCK);
|
||||
|
||||
Uart_SendString("[SYS] Event-driven framework ready\r\n");
|
||||
|
||||
// ====== 主循环 ======
|
||||
@@ -219,7 +218,8 @@ void main(void)
|
||||
// 唤醒源事件标志,由对应的外部中断 ISR 写入
|
||||
volatile u8 p0_wakeup_flag = 0; // P0 端口按键唤醒标志
|
||||
volatile u8 p2_wakeup_flag = 0; // P2 端口按键唤醒标志
|
||||
volatile u8 rf_wakeup_flag = 0; // P2.1 射频中断唤醒标志
|
||||
volatile u8 p3_wakeup_flag = 0; // P3 端口射频中断唤醒标志
|
||||
volatile u8 rf_wakeup_flag = 0; // 射频中断唤醒标志
|
||||
|
||||
/* =========================================================================
|
||||
* STC32G 端口掉电外部中断唤醒中断服务程序 (ISR)
|
||||
@@ -248,3 +248,15 @@ void Port2_Isr(void) interrupt 15
|
||||
P2INTF = 0x00; // 清除 P2 端口中断悬挂标志位
|
||||
P2INTE = 0x00; // 立即关闭 P2 中断通道,防止低电平期间反复重入
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief Port3 端口掉电中断服务函数 (由 isr_jump.asm 引导定位至此)
|
||||
* @details 负责处理 P3.6 (新射频数据脚) 在休眠模式下的物理跳变唤醒。
|
||||
*/
|
||||
void Port3_Isr(void) interrupt 16
|
||||
{
|
||||
EAXFR = 1; // 使能访问扩展寄存区
|
||||
p3_wakeup_flag = P3INTF | 0x01;// 读取并备份 P3 中断标志寄存器值 (0x01作安全掩码)
|
||||
P3INTF = 0x00; // 清除 P3 端口中断悬挂标志位
|
||||
P3INTE = 0x00; // 立即关闭 P3 中断通道,防止反复重入
|
||||
}
|
||||
|
||||
BIN
App/system.c
BIN
App/system.c
Binary file not shown.
139
App/ui.c
139
App/ui.c
@@ -38,8 +38,8 @@ void UI_ShowClockPage(SystemState state, u8 hour, u8 min)
|
||||
}
|
||||
|
||||
// ====== 绘制右上角电池电量 ======
|
||||
LCD_ShowString(62, 24, "85%", COLOR_GRAY, COLOR_BLACK); // 静态测试显示 85% 字符
|
||||
LCD_DrawMonoBitmap(92, 27, 20, 10, bmp_battery_20x10, COLOR_GRAY, COLOR_BLACK); // 渲染 20x10 电池外廓和格数
|
||||
LCD_ShowString(77, 24, "85%", COLOR_GRAY, COLOR_BLACK); // 静态测试显示 85% 字符并移动至右上角
|
||||
LCD_DrawMonoBitmap(107, 27, 20, 10, bmp_battery_20x10, COLOR_GRAY, COLOR_BLACK); // 渲染 20x10 电池并移动至右上角
|
||||
|
||||
// ====== 绘制中部时间 "HH:MM" ======
|
||||
time_str[0] = '0' + (hour / 10); // 小时十位
|
||||
@@ -77,7 +77,7 @@ void UI_ShowPairMenuPage(u8 selected_index)
|
||||
}
|
||||
|
||||
// 渲染当前选中的高亮中间项
|
||||
LCD_DrawRectBorder(8, 110, 104, 28, COLOR_CYAN); // 青色对齐外框
|
||||
LCD_DrawRectBorder(15, 110, 104, 28, COLOR_CYAN); // 青色对齐外框 (在 135px 宽度下居中)
|
||||
LCD_ShowStringCentered(118, menu_items[selected_index], COLOR_CYAN, COLOR_BLACK);
|
||||
|
||||
// 渲染下方相邻项 (如果当前选择的不是最后一行)
|
||||
@@ -98,13 +98,13 @@ void UI_ShowPairWaitPage(u8 frame_index)
|
||||
// 绘制头部 "APPAIRAGE" (对码中)
|
||||
LCD_ShowStringCentered(35, "APPAIRAGE", COLOR_GRAY, COLOR_BLACK);
|
||||
|
||||
// 根据 Timer1 节拍算得的帧号,切换渲染雷达的 3 种点阵图形,形成扩散动态视觉
|
||||
// 根据 Timer1 节拍算得的帧号,切换渲染雷达的 3 种点阵图形,形成扩散动态视觉 (在 135px 下居中 X = 51)
|
||||
if (frame_index == 0)
|
||||
LCD_DrawMonoBitmap(44, 75, 32, 32, bmp_radar_32x32_f1, COLOR_CYAN, COLOR_BLACK);
|
||||
LCD_DrawMonoBitmap(51, 75, 32, 32, bmp_radar_32x32_f1, COLOR_CYAN, COLOR_BLACK);
|
||||
else if (frame_index == 1)
|
||||
LCD_DrawMonoBitmap(44, 75, 32, 32, bmp_radar_32x32_f2, COLOR_CYAN, COLOR_BLACK);
|
||||
LCD_DrawMonoBitmap(51, 75, 32, 32, bmp_radar_32x32_f2, COLOR_CYAN, COLOR_BLACK);
|
||||
else
|
||||
LCD_DrawMonoBitmap(44, 75, 32, 32, bmp_radar_32x32_f3, COLOR_CYAN, COLOR_BLACK);
|
||||
LCD_DrawMonoBitmap(51, 75, 32, 32, bmp_radar_32x32_f3, COLOR_CYAN, COLOR_BLACK);
|
||||
|
||||
// 绘制状态描述
|
||||
LCD_ShowStringCentered(165, "RECHERCHE", COLOR_WHITE, COLOR_BLACK); // 法语: 搜寻中
|
||||
@@ -124,24 +124,24 @@ void UI_ShowPairConfirmPage(u8 type, u8 zone_index)
|
||||
// 顶部显示捕获回馈标志 "v RECU" (法语: 信号已接收)
|
||||
LCD_ShowStringCentered(32, "v RECU", COLOR_GREEN, COLOR_BLACK);
|
||||
|
||||
// 在上部居中绘制设备类别所对应的图形
|
||||
// 在上部居中绘制设备类别所对应的图形 (135px 下居中 X = 51)
|
||||
if (type == 0) {
|
||||
LCD_DrawMonoBitmap(44, 55, 32, 32, bmp_door_32x32, COLOR_WHITE, COLOR_BLACK); // 门磁图标
|
||||
LCD_DrawMonoBitmap(51, 55, 32, 32, bmp_door_32x32, COLOR_WHITE, COLOR_BLACK); // 门磁图标
|
||||
} else if (type == 2 || type == 3) {
|
||||
LCD_DrawMonoBitmap(44, 55, 32, 32, bmp_siren_32x32, COLOR_WHITE, COLOR_BLACK); // 警号喇叭图标
|
||||
LCD_DrawMonoBitmap(51, 55, 32, 32, bmp_siren_32x32, COLOR_WHITE, COLOR_BLACK); // 警号喇叭图标
|
||||
} else {
|
||||
LCD_DrawMonoBitmap(44, 55, 32, 32, bmp_confirm_lock_32x32, COLOR_WHITE, COLOR_BLACK); // 锁型常规图标
|
||||
LCD_DrawMonoBitmap(51, 55, 32, 32, bmp_confirm_lock_32x32, COLOR_WHITE, COLOR_BLACK); // 锁型常规图标
|
||||
}
|
||||
|
||||
// 渲染传感器类型的文字
|
||||
LCD_ShowStringCentered(105, sensor_names_fr[type], COLOR_WHITE, COLOR_BLACK);
|
||||
|
||||
// 绘制一个青色边框,在中间以 16x32 大号字体展示当前防区号 (如 "01", "12")
|
||||
LCD_DrawRectBorder(15, 140, 90, 44, COLOR_CYAN);
|
||||
// 绘制一个青色边框,在中间以 16x32 大号字体展示当前防区号 (在 135px 下居中 X=22, 宽度 90)
|
||||
LCD_DrawRectBorder(22, 140, 90, 44, COLOR_CYAN);
|
||||
zone_str[0] = '0' + (zone_index / 10);
|
||||
zone_str[1] = '0' + (zone_index % 10);
|
||||
zone_str[2] = '\0';
|
||||
LCD_ShowString16x32(44, 146, zone_str, COLOR_CYAN, COLOR_BLACK); // 渲染两位防区编号
|
||||
LCD_ShowString16x32(51, 146, zone_str, COLOR_CYAN, COLOR_BLACK); // 渲染两位防区编号 (135px 下居中 X = 51)
|
||||
|
||||
// 底部提示按键动作
|
||||
LCD_ShowStringCentered(215, "CONFIRMER", COLOR_GRAY, COLOR_BLACK); // 法语: 短按以确认保存
|
||||
@@ -153,8 +153,8 @@ void UI_ShowPairConfirmPage(u8 type, u8 zone_index)
|
||||
void UI_ShowPairSuccessPage(void)
|
||||
{
|
||||
LCD_Clear(COLOR_BLACK);
|
||||
// 渲染 32x32 对勾图标
|
||||
LCD_DrawMonoBitmap(44, 75, 32, 32, bmp_checkmark_32x32, COLOR_GREEN, COLOR_BLACK);
|
||||
// 渲染 32x32 对勾图标 (135px 下居中 X = 51)
|
||||
LCD_DrawMonoBitmap(51, 75, 32, 32, bmp_checkmark_32x32, COLOR_GREEN, COLOR_BLACK);
|
||||
LCD_ShowStringCentered(145, "SUCCES", COLOR_GREEN, COLOR_BLACK); // 法语: 成功
|
||||
LCD_ShowStringCentered(180, "ENREGISTRE", COLOR_GRAY, COLOR_BLACK); // 法语: 配置已保存
|
||||
}
|
||||
@@ -166,8 +166,8 @@ void UI_ShowPairSuccessPage(void)
|
||||
void UI_ShowPairFailPage(u8 is_timeout)
|
||||
{
|
||||
LCD_Clear(COLOR_BLACK);
|
||||
// 渲染 32x32 红色叉号图标
|
||||
LCD_DrawMonoBitmap(44, 75, 32, 32, bmp_cross_32x32, COLOR_RED, COLOR_BLACK);
|
||||
// 渲染 32x32 红色叉号图标 (135px 下居中 X = 51)
|
||||
LCD_DrawMonoBitmap(51, 75, 32, 32, bmp_cross_32x32, COLOR_RED, COLOR_BLACK);
|
||||
LCD_ShowStringCentered(145, "ECHEC", COLOR_RED, COLOR_BLACK); // 法语: 失败
|
||||
if (is_timeout) {
|
||||
LCD_ShowStringCentered(180, "DELAI DEPASSE", COLOR_GRAY, COLOR_BLACK); // 法语: 对码超时
|
||||
@@ -189,17 +189,17 @@ void UI_ShowAlarmPage(u8 type, u8 zone_index)
|
||||
char zone_info[20];
|
||||
LCD_Clear(COLOR_BLACK);
|
||||
|
||||
// 绘制双重红色爆闪粗边界框 (配合 ms_tick 在 AlarmApp 中亮灭闪烁)
|
||||
LCD_DrawRectBorder(4, 4, 112, 232, COLOR_RED);
|
||||
LCD_DrawRectBorder(6, 6, 108, 228, COLOR_RED);
|
||||
// 绘制双重红色爆闪粗边界框 (在新宽 135px 下对称扩展)
|
||||
LCD_DrawRectBorder(4, 4, 127, 232, COLOR_RED);
|
||||
LCD_DrawRectBorder(6, 6, 123, 228, COLOR_RED);
|
||||
|
||||
// 绘制报警设备的图形
|
||||
// 绘制报警设备的图形 (135px 下居中 X = 51)
|
||||
if (type == 0) {
|
||||
LCD_DrawMonoBitmap(44, 50, 32, 32, bmp_door_32x32, COLOR_RED, COLOR_BLACK); // 门磁报警
|
||||
LCD_DrawMonoBitmap(51, 50, 32, 32, bmp_door_32x32, COLOR_RED, COLOR_BLACK); // 门磁报警
|
||||
} else if (type == 2 || type == 3) {
|
||||
LCD_DrawMonoBitmap(44, 50, 32, 32, bmp_siren_32x32, COLOR_RED, COLOR_BLACK); // 烟感/燃气报警
|
||||
LCD_DrawMonoBitmap(51, 50, 32, 32, bmp_siren_32x32, COLOR_RED, COLOR_BLACK); // 烟感/燃气报警
|
||||
} else {
|
||||
LCD_DrawMonoBitmap(44, 50, 32, 32, bmp_confirm_lock_32x32, COLOR_RED, COLOR_BLACK); // 其他防区报警
|
||||
LCD_DrawMonoBitmap(51, 50, 32, 32, bmp_confirm_lock_32x32, COLOR_RED, COLOR_BLACK); // 其他防区报警
|
||||
}
|
||||
|
||||
// 拼接字符串: "设备类型名 两位防区号"
|
||||
@@ -227,19 +227,19 @@ void UI_ShowSosPage(void)
|
||||
{
|
||||
LCD_Clear(COLOR_BLACK);
|
||||
|
||||
// 绘制红白双层紧急警示框
|
||||
LCD_DrawRectBorder(4, 4, 112, 232, COLOR_RED);
|
||||
LCD_DrawRectBorder(5, 5, 110, 230, COLOR_RED);
|
||||
LCD_DrawRectBorder(8, 8, 104, 224, COLOR_WHITE);
|
||||
// 绘制红白双层紧急警示框 (在新宽 135px 下对称扩展)
|
||||
LCD_DrawRectBorder(4, 4, 127, 232, COLOR_RED);
|
||||
LCD_DrawRectBorder(5, 5, 125, 230, COLOR_RED);
|
||||
LCD_DrawRectBorder(8, 8, 119, 224, COLOR_WHITE);
|
||||
|
||||
// ====== 用画点和填充矩形函数像素级绘制精细的警徽灯架 ======
|
||||
LCD_FillRect(44, 45, 32, 2, COLOR_RED); // 警灯顶部
|
||||
LCD_FillRect(48, 47, 24, 12, COLOR_RED); // 警灯红色灯罩
|
||||
LCD_FillRect(40, 59, 40, 4, COLOR_GRAY); // 警灯灰色底座
|
||||
LCD_FillRect(57, 51, 6, 6, COLOR_WHITE); // 中间高亮光影
|
||||
LCD_FillRect(58, 36, 4, 6, COLOR_RED); // 发射的垂直红色闪光
|
||||
LCD_FillRect(46, 38, 4, 4, COLOR_RED); // 左侧散射闪光
|
||||
LCD_FillRect(70, 38, 4, 4, COLOR_RED); // 右侧散射闪光
|
||||
// ====== 用画点和填充矩形函数像素级绘制精细的警徽灯架 (在新宽 135px 下整体右移 7 像素) ======
|
||||
LCD_FillRect(51, 45, 32, 2, COLOR_RED); // 警灯顶部
|
||||
LCD_FillRect(55, 47, 24, 12, COLOR_RED); // 警灯红色灯罩
|
||||
LCD_FillRect(47, 59, 40, 4, COLOR_GRAY); // 警灯灰色底座
|
||||
LCD_FillRect(64, 51, 6, 6, COLOR_WHITE); // 中间高亮光影
|
||||
LCD_FillRect(65, 36, 4, 6, COLOR_RED); // 发射的垂直红色闪光
|
||||
LCD_FillRect(53, 38, 4, 4, COLOR_RED); // 左侧散射闪光
|
||||
LCD_FillRect(77, 38, 4, 4, COLOR_RED); // 右侧散射闪光
|
||||
|
||||
// 绘制求救中法文字样
|
||||
LCD_ShowStringCentered(120, "SOS", COLOR_RED, COLOR_BLACK);
|
||||
@@ -257,11 +257,11 @@ void UI_ShowBindingPage(u32 addr)
|
||||
LCD_Clear(COLOR_BLACK);
|
||||
|
||||
// ====== 像素级拼装绘制一个青色网络摄像头简图 ======
|
||||
LCD_DrawRectBorder(36, 46, 32, 26, COLOR_CYAN); // 相机主体框
|
||||
LCD_FillRect(44, 56, 6, 6, COLOR_CYAN); // 镜头光圈点
|
||||
LCD_FillRect(68, 48, 2, 22, COLOR_CYAN); // 右侧红外指示圈
|
||||
LCD_FillRect(70, 50, 2, 18, COLOR_CYAN); // 镜头固定翼 1
|
||||
LCD_FillRect(72, 52, 2, 14, COLOR_CYAN); // 镜头固定翼 2
|
||||
LCD_DrawRectBorder(43, 46, 32, 26, COLOR_CYAN); // 相机主体框 (135px 下居中等比右移 X = 43)
|
||||
LCD_FillRect(51, 56, 6, 6, COLOR_CYAN); // 镜头光圈点 (135px 下居中等比右移 X = 51)
|
||||
LCD_FillRect(75, 48, 2, 22, COLOR_CYAN); // 右侧红外指示圈 (135px 下居中等比右移 X = 75)
|
||||
LCD_FillRect(77, 50, 2, 18, COLOR_CYAN); // 镜头固定翼 1 (135px 下居中等比右移 X = 77)
|
||||
LCD_FillRect(79, 52, 2, 14, COLOR_CYAN); // 镜头固定翼 2 (135px 下居中等比右移 X = 79)
|
||||
|
||||
LCD_ShowStringCentered(120, "LIAISON", COLOR_WHITE, COLOR_BLACK); // 法语: 连接/绑定
|
||||
LCD_ShowStringCentered(155, "ENVOI EN COURS", COLOR_CYAN, COLOR_BLACK); // 法语: 发送对码帧中
|
||||
@@ -294,46 +294,46 @@ void UI_ShowBindingPage(u32 addr)
|
||||
* @brief 渲染显示设置主菜单界面
|
||||
* @param selected_index 当前菜单高亮行索引 (0:时钟修改, 1:对码匹配, 2:摄像机绑定)
|
||||
* @details 在顶部和底部绘制向上/向下箭头提示滑轮,中部绘制选中项的大几何图形,
|
||||
* 并在下方打印对应的法文字符串描述。
|
||||
* 并在下方打印对应的法文字串描述。
|
||||
*/
|
||||
void UI_ShowMainMenu(u8 selected_index)
|
||||
{
|
||||
LCD_Clear(COLOR_BLACK);
|
||||
|
||||
// ====== 绘制顶部的向上箭头三角标记 ======
|
||||
LCD_FillRect(58, 20, 4, 2, COLOR_GRAY);
|
||||
LCD_FillRect(56, 22, 8, 2, COLOR_GRAY);
|
||||
LCD_FillRect(54, 24, 12, 2, COLOR_GRAY);
|
||||
// ====== 绘制顶部的向上箭头三角标记 (在 135px 宽度下居中) ======
|
||||
LCD_FillRect(65, 20, 4, 2, COLOR_GRAY);
|
||||
LCD_FillRect(63, 22, 8, 2, COLOR_GRAY);
|
||||
LCD_FillRect(61, 24, 12, 2, COLOR_GRAY);
|
||||
|
||||
if (selected_index == 0)
|
||||
{
|
||||
// 菜单 0:时间修改设置。中部绘制一个青色闹钟样式
|
||||
LCD_DrawRectBorder(44, 70, 32, 32, COLOR_CYAN); // 闹钟外圈
|
||||
LCD_FillRect(59, 76, 2, 10, COLOR_CYAN); // 闹钟时针
|
||||
LCD_FillRect(59, 85, 8, 2, COLOR_CYAN); // 闹钟分针
|
||||
// 菜单 0:时间修改设置。中部绘制一个青色闹钟样式 (135px 下居中 X = 51)
|
||||
LCD_DrawRectBorder(51, 70, 32, 32, COLOR_CYAN); // 闹钟外圈
|
||||
LCD_FillRect(66, 76, 2, 10, COLOR_CYAN); // 闹钟时针
|
||||
LCD_FillRect(66, 85, 8, 2, COLOR_CYAN); // 闹钟分针
|
||||
LCD_ShowStringCentered(150, "1. HORLOGE", COLOR_WHITE, COLOR_BLACK); // 法语: 时钟/时间修改
|
||||
}
|
||||
else if (selected_index == 1)
|
||||
{
|
||||
// 菜单 1:无线对码匹配。中部绘制一个青色同心圆雷达波纹图形
|
||||
LCD_DrawMonoBitmap(44, 70, 32, 32, bmp_radar_32x32_f3, COLOR_CYAN, COLOR_BLACK);
|
||||
// 菜单 1:无线对码匹配。中部绘制一个青色同心圆雷达波纹图形 (135px 下居中 X = 51)
|
||||
LCD_DrawMonoBitmap(51, 70, 32, 32, bmp_radar_32x32_f3, COLOR_CYAN, COLOR_BLACK);
|
||||
LCD_ShowStringCentered(150, "2. APPAIRAGE", COLOR_WHITE, COLOR_BLACK); // 法语: 配对
|
||||
}
|
||||
else if (selected_index == 2)
|
||||
{
|
||||
// 菜单 2:网络摄像机绑定。中部绘制一个相机/联通关系图
|
||||
LCD_DrawRectBorder(44, 74, 20, 16, COLOR_CYAN);
|
||||
LCD_FillRect(52, 80, 4, 4, COLOR_CYAN);
|
||||
LCD_FillRect(64, 76, 2, 12, COLOR_CYAN);
|
||||
LCD_FillRect(66, 78, 2, 8, COLOR_CYAN);
|
||||
LCD_FillRect(68, 80, 2, 4, COLOR_CYAN);
|
||||
// 菜单 2:网络摄像机绑定。中部绘制一个相机/联通关系图 (135px 下居中等比右移 X = 57)
|
||||
LCD_DrawRectBorder(57, 74, 20, 16, COLOR_CYAN);
|
||||
LCD_FillRect(65, 80, 4, 4, COLOR_CYAN);
|
||||
LCD_FillRect(77, 76, 2, 12, COLOR_CYAN);
|
||||
LCD_FillRect(79, 78, 2, 8, COLOR_CYAN);
|
||||
LCD_FillRect(81, 80, 2, 4, COLOR_CYAN);
|
||||
LCD_ShowStringCentered(150, "3. LIAISON", COLOR_WHITE, COLOR_BLACK); // 法语: 摄像机绑定
|
||||
}
|
||||
|
||||
// ====== 绘制底部的向下箭头三角标记 ======
|
||||
LCD_FillRect(54, 210, 12, 2, COLOR_GRAY);
|
||||
LCD_FillRect(56, 212, 8, 2, COLOR_GRAY);
|
||||
LCD_FillRect(58, 214, 4, 2, COLOR_GRAY);
|
||||
// ====== 绘制底部的向下箭头三角标记 (在 135px 宽度下居中) ======
|
||||
LCD_FillRect(61, 210, 12, 2, COLOR_GRAY);
|
||||
LCD_FillRect(63, 212, 8, 2, COLOR_GRAY);
|
||||
LCD_FillRect(65, 214, 4, 2, COLOR_GRAY);
|
||||
}
|
||||
|
||||
/**
|
||||
@@ -354,8 +354,9 @@ void UI_ShowSetTimePage(u8 hour, u8 min, u8 selection, u8 blink_on)
|
||||
LCD_FillRect(17, 15, 8, 2, COLOR_GREEN);
|
||||
LCD_FillRect(25, 17, 2, 6, COLOR_GREEN);
|
||||
|
||||
LCD_ShowString(62, 24, "85%", COLOR_GRAY, COLOR_BLACK);
|
||||
LCD_DrawMonoBitmap(92, 27, 20, 10, bmp_battery_20x10, COLOR_GRAY, COLOR_BLACK);
|
||||
// 移动电池百分比和图标到 135px 右上角
|
||||
LCD_ShowString(77, 24, "85%", COLOR_GRAY, COLOR_BLACK);
|
||||
LCD_DrawMonoBitmap(107, 27, 20, 10, bmp_battery_20x10, COLOR_GRAY, COLOR_BLACK);
|
||||
|
||||
// ====== 处理调节项一:小时的消隐/显示逻辑 ======
|
||||
if (selection == 1 && !blink_on)
|
||||
@@ -370,10 +371,10 @@ void UI_ShowSetTimePage(u8 hour, u8 min, u8 selection, u8 blink_on)
|
||||
time_str[1] = '0' + (hour % 10);
|
||||
}
|
||||
time_str[2] = '\0';
|
||||
LCD_ShowString16x32(12, 100, time_str, COLOR_CYAN, COLOR_BLACK); // 采用青色特大字描绘小时
|
||||
LCD_ShowString16x32(23, 100, time_str, COLOR_CYAN, COLOR_BLACK); // 采用青色特大字描绘小时 (在 135px 下整体居中 X = 23)
|
||||
|
||||
// 绘制中间冒号
|
||||
LCD_ShowString16x32(48, 98, ":", COLOR_WHITE, COLOR_BLACK);
|
||||
// 绘制中间冒号 (在 135px 下整体居中 X = 59)
|
||||
LCD_ShowString16x32(59, 98, ":", COLOR_WHITE, COLOR_BLACK);
|
||||
|
||||
// ====== 处理调节项二:分钟的消隐/显示逻辑 ======
|
||||
if (selection == 2 && !blink_on)
|
||||
@@ -388,7 +389,7 @@ void UI_ShowSetTimePage(u8 hour, u8 min, u8 selection, u8 blink_on)
|
||||
time_str[1] = '0' + (min % 10);
|
||||
}
|
||||
time_str[2] = '\0';
|
||||
LCD_ShowString16x32(64, 100, time_str, COLOR_CYAN, COLOR_BLACK); // 采用青色特大字描绘分钟
|
||||
LCD_ShowString16x32(75, 100, time_str, COLOR_CYAN, COLOR_BLACK); // 采用青色特大字描绘分钟 (在 135px 下整体居中 X = 75)
|
||||
|
||||
// 补齐底部的固定辅助元素
|
||||
LCD_ShowStringCentered(150, "AM", COLOR_WHITE, COLOR_BLACK);
|
||||
|
||||
24
App/xtell.h
Normal file
24
App/xtell.h
Normal file
@@ -0,0 +1,24 @@
|
||||
#ifndef __XTELL_H__
|
||||
#define __XTELL_H__
|
||||
|
||||
#include "config.h"
|
||||
|
||||
// 全局调试日志开关
|
||||
#define XTELL_DEBUG_ENABLE
|
||||
|
||||
// 声明底层串口发送函数 (由 system.c 提供)
|
||||
extern void Uart_SendString(char *p);
|
||||
extern void Uart_SendHex8(u8 val);
|
||||
extern void Uart_SendHex32(u32 val);
|
||||
|
||||
#ifdef XTELL_DEBUG_ENABLE
|
||||
#define XTELL_LOG(s) Uart_SendString(s)
|
||||
#define XTELL_LOG_HEX8(v) Uart_SendHex8(v)
|
||||
#define XTELL_LOG_HEX32(v) Uart_SendHex32(v)
|
||||
#else
|
||||
#define XTELL_LOG(s)
|
||||
#define XTELL_LOG_HEX8(v)
|
||||
#define XTELL_LOG_HEX32(v)
|
||||
#endif
|
||||
|
||||
#endif // __XTELL_H__
|
||||
@@ -10,26 +10,20 @@
|
||||
* **硬件原理图**:[text.kicad_sch](file:///c:/workfile/105/stc32g12k128/Hardware/text.kicad_sch)
|
||||
* **PCB 布局图**:[text.kicad_pcb](file:///c:/workfile/105/stc32g12k128/Hardware/text.kicad_pcb)
|
||||
|
||||
主控芯片采用 **STC32G12K128**(工作频率 24.0 MHz,单周期 8051 内核,32位乘除法器)。
|
||||
显示端采用 **Truly 0.95寸 AMOLED 屏幕**,物理分辨率为 **120x240 像素**,控制芯片为 **RM69310**。
|
||||
|
||||
### 1.1 GPIO 物理映射表
|
||||
|
||||
| 芯片引脚号 | 引脚名称 | 逻辑网络标号 | IO 模式 | 连接外设与功能描述 |
|
||||
| :--- | :--- | :--- | :--- | :--- |
|
||||
| **Pin 1** | `P1.0` | `DIS_RST` | 推挽输出 | Truly AMOLED 屏幕复位控制脚 (RESET) |
|
||||
| **Pin 2** | `P1.1` | `SPI_DCX` | 推挽输出 | Truly AMOLED 屏幕 SPI 数据/指令选择脚 (D/C) |
|
||||
| **Pin 3** | `P1.3` | `SPI_SDI` | 推挽输出 | Truly AMOLED 屏幕 SPI 串行数据输入 (MOSI/SDA) |
|
||||
| **Pin 4** | `P1.4` | `SPI_CLK` | 推挽输出 | Truly AMOLED 屏幕 SPI 串行时钟信号 (SCL) |
|
||||
| **Pin 5** | `P1.5` | `SPI_CS` | 推挽输出 | Truly AMOLED 屏幕 SPI 片选信号 (CS) |
|
||||
| **Pin 6** | `P1.6` | `DET` | 高阻输入 | USB 插入充电检测引脚,高电平代表正在充电 |
|
||||
| **Pin 7** | `P1.7` | `LEDA` | 推挽输出 | 屏幕负压供电芯片使能控制端 (SGM_CTRL) |
|
||||
主控芯片采用| **Pin 1** | `P1.0` | `DIS_RST` | 推挽输出 | LHS114TC-IF03 屏幕复位控制脚 (RESET) |
|
||||
| **Pin 2** | `P1.1` | `SPI_DCX` | 推挽输出 | LHS114TC-IF03 屏幕 SPI 数据/指令选择脚 (D/C) |
|
||||
| **Pin 7** | `P1.3` | `BAT_ADC` | ADC 输入 | 电池电压采集 (通道 3,配置为高阻输入) |
|
||||
| **Pin 3** | `P1.4` | `SPI_SDI` | 推挽输出 | LHS114TC-IF03 屏幕 SPI 串行数据输入 (MOSI/SDA) |
|
||||
| **Pin 4** | `P1.5` | `SPI_CLK` | 推挽输出 | LHS114TC-IF03 屏幕 SPI 串行时钟信号 (SCL) |
|
||||
| **Pin 5** | `P1.6` | `SPI_CS` | 推挽输出 | LHS114TC-IF03 屏幕 SPI 片选信号 (CS) |
|
||||
| **Pin 6** | `P1.7` | `LEDA` | 推挽输出 | LHS114TC-IF03 屏幕白色 LED 背光使能控制端 (0点亮,1熄灭 - PMOS控制) |
|
||||
| **Pin 8** | `UCAP` | `UCAP` | 电源 | 外接滤波电容至 GND (LDO 稳定输出端) |
|
||||
| **Pin 10** | `Vcc` | `+3.3V` | 电源 | 屏幕/系统 3.3V 逻辑供电 |
|
||||
| **Pin 11** | `VREF+` | `+3.3V` | 电源 | 屏幕/系统 3.3V 逻辑供电参考基准 |
|
||||
| **Pin 12** | `GND` | `GND` | 电源 | 系统地 (GND) |
|
||||
| **Pin 13** | `P3.0` | `RXD` | 高阻输入 | 串口 1 (UART1) 接收脚 |
|
||||
| **Pin 14** | `P3.1` | `TXD` | 推挽输出 | 串口 1 (UART1) 发送脚 |
|
||||
| **Pin 15** | `P5.4` | `DET` | 高阻输入 | USB 插入充电检测引脚,高电平代表正在充电 |
|
||||
| **Pin 18** | `P3.5` | `SHUT` | 推挽输出 | LR690L 射频芯片关闭信号 (0:开启工作, 1:关闭休眠) |
|
||||
| **Pin 19** | `P3.6` | `RF_RX_DATA` | 高阻输入 | LR690L 接收解调接收数据输出引脚 (注:代码中被映射为 P2^1) |
|
||||
| **Pin 20** | `P3.7` | `RF_RX` | 推挽输出 | ATR5179 接收使能控制引脚 |
|
||||
@@ -40,6 +34,18 @@
|
||||
| **Pin 26** | `P2.5` | `MOTOR_PWM` | 推挽输出 | 连接振动马达驱动电路。高电平震动,低电平静止 |
|
||||
| **Pin 27** | `P2.6` | `KEY_SOS` | 高阻输入 + 上拉 | 上部并联 SOS 求救按键,按下为低电平 |
|
||||
| **Pin 28** | `P2.7` | `NC` | - | 悬空 |
|
||||
| **Pin 29** | `P0.0` | `NC` | - | 悬空 |
|
||||
| **Pin 30** | `P0.1` | `KEY_UP` | 高阻输入 + 上拉 | 侧边按键 ▲ (上移),按下为低电平 |
|
||||
| **Pin 31** | `P0.2` | `KEY_CONFIRM` | 高阻输入 + 上拉 | 侧边按键 ■ (确认/菜单),按下为低电平 |
|
||||
| **Pin 32** | `P0.3` | `KEY_DOWN` | 高阻输入 + 上拉 | 侧边按键 ▼ (下移),按下为低电平 |<7C> P2^1) |
|
||||
| **Pin 20** | `P3.7` | `RF_RX` | 推挽输出 | ATR5179 接收使能控制引脚 |
|
||||
| **Pin 21** | `P2.0` | `RF_TX` | 推挽输出 | ATR5179 发射使能控制引脚 |
|
||||
| **Pin 22** | `P2.1` | `RF_TX_DAT` | 推挽输出 | LR690L 射频芯片发射调制数据输入引脚 (注:代码中被映射为 P3^6) |
|
||||
| **Pin 23** | `P2.2` | `NC` | - | 悬空 |
|
||||
| **Pin 24** | `P2.3` | `LED_RGB` | SPI MOSI | WS2812B 级联双幻彩灯珠 DIN 控制信号 |
|
||||
| **Pin 26** | `P2.5` | `MOTOR_PWM` | 推挽输出 | 连接振动马达驱动电路。高电平震动,低电平静止 |
|
||||
| **Pin 27** | `P2.6` | `KEY_SOS` | 高阻输入 + 上拉 | 上部并联 SOS 求救按键,按下为低电平 |
|
||||
| **Pin 28** | `P2.7` | `NC` | - | 悬空 |
|
||||
| **Pin 29** | `P0.0` | `BAT_ADC` | ADC 输入 | 电池电压采集 |
|
||||
| **Pin 30** | `P0.1` | `KEY_UP` | 高阻输入 + 上拉 | 侧边按键 ▲ (上移),按下为低电平 |
|
||||
| **Pin 31** | `P0.2` | `KEY_CONFIRM` | 高阻输入 + 上拉 | 侧边按键 ■ (确认/菜单),按下为低电平 |
|
||||
|
||||
480
Drivers/lcd.c
480
Drivers/lcd.c
@@ -3,313 +3,201 @@
|
||||
#include "../App/config.h"
|
||||
#include "intrins.h"
|
||||
|
||||
// ====== RM69310 Truly AMOLED 屏幕 SPI 引脚映射 (8051 bit 寻址控制) ======
|
||||
sbit LCD_RST = P1^0; // 屏幕硬件复位引脚 (RESET),低电平复位
|
||||
sbit LCD_DCX = P1^1; // 串行数据 / 命令选择控制线 (1:数据, 0:指令)
|
||||
sbit LCD_SDI = P1^4; // SPI 主机输出从机输入数据线 (MOSI)
|
||||
sbit LCD_SCL = P1^5; // SPI 串行工作时钟线 (SCLK)
|
||||
sbit LCD_CS = P1^6; // SPI 物理片选选择端 (CS),低电平选通屏幕
|
||||
// ====== LHS114TC-IF03 (ST7789V) <20><>Ļ SPI <20><><EFBFBD><EFBFBD>ӳ<EFBFBD><D3B3> ======
|
||||
sbit LCD_RST = P1^0; // <EFBFBD><EFBFBD>ĻӲ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>λ<EFBFBD><EFBFBD><EFBFBD><EFBFBD> (RESET)<29><><EFBFBD>͵<EFBFBD>ƽ<EFBFBD><C6BD>λ
|
||||
sbit LCD_DCX = P1^1; // <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> / <20><><EFBFBD><EFBFBD>ѡ<EFBFBD><D1A1><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> (1:<3A><><EFBFBD><EFBFBD>, 0:ָ<EFBFBD><EFBFBD>)
|
||||
sbit LCD_SDI = P1^4; // SPI <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ӻ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> (MOSI)
|
||||
sbit LCD_SCL = P1^5; // SPI <EFBFBD><EFBFBD><EFBFBD>й<EFBFBD><EFBFBD><EFBFBD>ʱ<EFBFBD><EFBFBD><EFBFBD><EFBFBD> (SCLK)
|
||||
sbit LCD_CS = P1^6; // SPI <EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ƭѡѡ<EFBFBD><EFBFBD><EFBFBD><EFBFBD> (CS)<29><><EFBFBD>͵<EFBFBD>ƽѡͨ<D1A1><CDA8>Ļ
|
||||
|
||||
// ====== SGM3833 升压/负压三路 OLED 屏电源 PMIC 使能引脚 ======
|
||||
sbit SGM_CTRL = P3^4; // 单线脉冲通信控制线
|
||||
// ====== LHS114TC-IF03 LEDA <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> ======
|
||||
sbit SGM_CTRL = P1^7; // LEDA <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> (0:<3A><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>, 1:<3A>ر<EFBFBD>Ϩ<EFBFBD><CFA8> - PMOS<4F><53><EFBFBD><EFBFBD>)
|
||||
|
||||
// 引用外部延时函数 (定义在 system.c 中)
|
||||
// <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ⲿ<EFBFBD><EFBFBD>ʱ<EFBFBD><EFBFBD><EFBFBD><EFBFBD> (<28><><EFBFBD><EFBFBD><EFBFBD><EFBFBD> system.c <EFBFBD><EFBFBD>)
|
||||
extern void Delay_ms(u16 ms);
|
||||
extern void Delay10us(void);
|
||||
|
||||
/**
|
||||
* @brief 通过脉冲序列为 SGM3833 屏幕电源管理芯片写入开启配置
|
||||
* @param pulse_cnt 要写入的脉冲个数 (本系统传入 27 次脉冲开启正负双电轨)
|
||||
* @details SGM3833 采用单线边沿脉冲计数协议进行数字控制。
|
||||
* - tOFF 必须大于 5ms 才能完全复位芯片进入指令模式。
|
||||
* - 每次电平拉低低电平持续 10us 后拉高,形成一个脉冲计数值。
|
||||
* - 发送完毕后需拉高并维持 5ms 以上,以便将计数值存入寄存器,锁定目标电压轨开启。
|
||||
*/
|
||||
void SGM_SendPulse(u8 pulse_cnt)
|
||||
{
|
||||
u8 i;
|
||||
SGM_CTRL = 0;
|
||||
Delay_ms(5); // 确保电源芯片进入关断/复位状态 (tOFF)
|
||||
SGM_CTRL = 1;
|
||||
Delay_ms(5); // 确保进入初始化状态 (tINIT >= 300us)
|
||||
for(i = 0; i < pulse_cnt; i++)
|
||||
{
|
||||
SGM_CTRL = 0;
|
||||
Delay10us(); // 保持低电平 10us
|
||||
SGM_CTRL = 1;
|
||||
Delay10us(); // 保持高电平 10us
|
||||
}
|
||||
SGM_CTRL = 1;
|
||||
Delay_ms(5); // 确保数据稳定存储锁定 (tSTORE >= 80us)
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 软件模拟 8 位串行 SPI 字节数据发送
|
||||
* @param dat 待发送的 1 字节数据
|
||||
* @details 采用典型的 bit-banging 模式:时钟 SCL 在发送前置低,将数据 MSB 依次提取后赋值给
|
||||
* 数据线 SDI,随后拉高 SCL 完成一个 bit 的沿采样,循环 8 次发送完成。
|
||||
* @brief <EFBFBD><EFBFBD><EFBFBD><EFBFBD>ģ<EFBFBD><EFBFBD> 8 λ<><CEBB><EFBFBD><EFBFBD> SPI <20>ֽ<EFBFBD><D6BD><EFBFBD><EFBFBD>ݷ<EFBFBD><DDB7><EFBFBD>
|
||||
* @param dat <20><><EFBFBD><EFBFBD><EFBFBD>͵<EFBFBD> 1 <20>ֽ<EFBFBD><D6BD><EFBFBD><EFBFBD><EFBFBD>
|
||||
*/
|
||||
void SPI_SendData(u8 dat)
|
||||
{
|
||||
u8 i;
|
||||
for(i = 0; i < 8; i++)
|
||||
{
|
||||
LCD_SCL = 0; // 拉低时钟,准备更新数据
|
||||
LCD_SCL = 0; // <EFBFBD><EFBFBD><EFBFBD><EFBFBD>ʱ<EFBFBD>ӣ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
if(dat & 0x80)
|
||||
LCD_SDI = 1;
|
||||
else
|
||||
LCD_SDI = 0;
|
||||
_nop_();
|
||||
LCD_SCL = 1; // 拉高时钟,触发屏幕在上升沿采样数据位
|
||||
LCD_SCL = 1; // <EFBFBD><EFBFBD><EFBFBD><EFBFBD>ʱ<EFBFBD>ӣ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ļ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ز<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>λ
|
||||
_nop_();
|
||||
dat <<= 1; // 左移一位,准备发送下一位
|
||||
dat <<= 1; // <EFBFBD><EFBFBD><EFBFBD><EFBFBD>һλ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>һλ
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 向屏幕控制器写入单字节控制指令 (DCX=0)
|
||||
* @brief <EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ļ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>д<EFBFBD>뵥<EFBFBD>ֽڿ<EFBFBD><EFBFBD><EFBFBD>ָ<EFBFBD><EFBFBD> (DCX=0)
|
||||
*/
|
||||
void WriteComm(u8 cmd)
|
||||
{
|
||||
LCD_CS = 0; // 开启片选
|
||||
LCD_DCX = 0; // 切换为指令传输模式
|
||||
LCD_CS = 0; // <EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ƭѡ
|
||||
LCD_DCX = 0; // <EFBFBD>л<EFBFBD>Ϊָ<EFBFBD><EFBFBD><EFBFBD>ģʽ
|
||||
SPI_SendData(cmd);
|
||||
LCD_CS = 1; // 关闭片选
|
||||
LCD_CS = 1; // <EFBFBD>ر<EFBFBD>Ƭѡ
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 向屏幕控制器写入单字节显示数据 (DCX=1)
|
||||
* @brief <EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ļ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>д<EFBFBD>뵥<EFBFBD>ֽ<EFBFBD><EFBFBD><EFBFBD>ʾ<EFBFBD><EFBFBD><EFBFBD><EFBFBD> (DCX=1)
|
||||
*/
|
||||
void WriteData(u8 dat)
|
||||
{
|
||||
LCD_CS = 0; // 开启片选
|
||||
LCD_DCX = 1; // 切换为数据传输模式
|
||||
LCD_CS = 0; // <EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ƭѡ
|
||||
LCD_DCX = 1; // <EFBFBD>л<EFBFBD>Ϊ<EFBFBD><EFBFBD><EFBFBD>ݴ<EFBFBD><EFBFBD><EFBFBD>ģʽ
|
||||
SPI_SendData(dat);
|
||||
LCD_CS = 1; // 关闭片选
|
||||
LCD_CS = 1; // <EFBFBD>ر<EFBFBD>Ƭѡ
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 按照 RM69310 物理时序执行屏幕硬件复位
|
||||
* @brief <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ʱ<EFBFBD><EFBFBD>ִ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>ĻӲ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>λ
|
||||
*/
|
||||
void LCD_Reset(void)
|
||||
{
|
||||
LCD_RST = 1;
|
||||
Delay_ms(10);
|
||||
LCD_RST = 0; // 拉低复位引脚进入硬件复位状态
|
||||
LCD_RST = 0; // <EFBFBD><EFBFBD><EFBFBD><EFBFBD>λ<EFBFBD><EFBFBD><EFBFBD>Ž<EFBFBD><EFBFBD><EFBFBD>Ӳ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>λ״̬
|
||||
Delay_ms(20);
|
||||
LCD_RST = 1; // 重新拉高引脚
|
||||
Delay_ms(120); // 必须等待至少 120ms 才能执行后续的初始化
|
||||
LCD_RST = 1; // <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
Delay_ms(120); // <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ȴ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> 120ms <20><><EFBFBD><EFBFBD>ִ<EFBFBD>к<EFBFBD><D0BA><EFBFBD><EFBFBD>ij<EFBFBD>ʼ<EFBFBD><CABC>
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 初始化 Truly AMOLED 屏幕控制器 RM69310
|
||||
* @details 先配置控制 GPIO 为推挽输出,接着根据 Truly 信利原厂提供的初始化指令序列,
|
||||
* 完成偏置电压、刷新周期、Gamma 参数、跳帧逻辑及色彩空间模式等一系列初始化工作。
|
||||
* @brief <EFBFBD><EFBFBD>ʼ<EFBFBD><EFBFBD> LHS114TC-IF03 (ST7789V) <20><>Ļ<EFBFBD><C4BB><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
*/
|
||||
void LCD_Init(void)
|
||||
{
|
||||
// 1. 配置 P1 端口的 LCD_RST/DCX/SDI/SCL/CS 引脚全部为推挽输出模式 (M1=0, M0=1)
|
||||
P1M1 &= ~((1<<0) | (1<<1) | (1<<4) | (1<<5) | (1<<6));
|
||||
P1M0 |= ((1<<0) | (1<<1) | (1<<4) | (1<<5) | (1<<6));
|
||||
// <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>չ SFR <20><><EFBFBD><EFBFBD>Ȩ<EFBFBD><C8A8> (EAXFR = 1)<29><>ȷ<EFBFBD><C8B7><EFBFBD><EFBFBD><EFBFBD>Բ<EFBFBD><D4B2><EFBFBD> P1M1 <20><> P1M0 ģʽ<C4A3>Ĵ<EFBFBD><C4B4><EFBFBD>
|
||||
P_SW2 |= 0x80;
|
||||
|
||||
// 2. 配置 P3.4 (SGM_CTRL) 为推挽输出模式
|
||||
P3M1 &= ~(1 << 4);
|
||||
P3M0 |= (1 << 4);
|
||||
// <EFBFBD><EFBFBD><EFBFBD><EFBFBD> P1 <20>˿ڵ<CBBF> LCD_RST(P1.0)/DCX(P1.1)/SDI(P1.4)/SCL(P1.5)/CS(P1.6)/LEDA(P1.7) Ϊ<><CEAA><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ģʽ (M1=0, M0=1)
|
||||
P1M1 &= ~((1<<0) | (1<<1) | (1<<4) | (1<<5) | (1<<6) | (1<<7));
|
||||
P1M0 |= ((1<<0) | (1<<1) | (1<<4) | (1<<5) | (1<<6) | (1<<7));
|
||||
|
||||
// 设置各控制引脚初始默认电平
|
||||
SGM_CTRL = 1;
|
||||
// <EFBFBD><EFBFBD><EFBFBD>ø<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ų<EFBFBD>ʼĬ<EFBFBD>ϵ<EFBFBD>ƽ
|
||||
SGM_CTRL = 0; // PMOS<4F>͵<EFBFBD>ƽ<EFBFBD><C6BD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> (LEDA = 0)
|
||||
LCD_CS = 1;
|
||||
LCD_SCL = 1;
|
||||
LCD_RST = 1;
|
||||
LCD_DCX = 1;
|
||||
|
||||
LCD_Reset(); // 硬件复位屏幕
|
||||
LCD_Reset(); // Ӳ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>λ<EFBFBD><EFBFBD>Ļ
|
||||
|
||||
// ====== 写入 RM69310 原厂寄存器初始化指令序列 ======
|
||||
WriteComm(0xFE);WriteData(0x01); // 切换至扩展 Page 1 寄存器页
|
||||
WriteComm(0x04);WriteData(0xa0); // 开启 SPI 写入显存 RAM 允许
|
||||
WriteComm(0x05);WriteData(0x70); // 配置屏幕尺寸规格为 128RGB
|
||||
WriteComm(0x06);WriteData(0x3C); // 设定垂直有效扫描线 NL = 240
|
||||
WriteComm(0x25);WriteData(0x06); // 正常模式伽马设定Gamma1
|
||||
WriteComm(0x26);WriteData(0x80); // T1A 时序常数 = 280
|
||||
WriteComm(0x27);WriteData(0x12); // 正常模式消隐后肩 VBP = 12
|
||||
WriteComm(0x28);WriteData(0x12); // 正常模式消隐前肩 VFP = 8
|
||||
WriteComm(0x2A);WriteData(0x06); // 空闲模式伽马设定 Gamma1
|
||||
WriteComm(0x2B);WriteData(0x80); // T1B 时序常数 = 280
|
||||
WriteComm(0x2D);WriteData(0x12); // 空闲消隐后肩 = 12
|
||||
WriteComm(0x2F);WriteData(0x12); // 空闲消隐前肩 = 8
|
||||
WriteComm(0x37);WriteData(0x0C); // 预充电控制电压 VGSP
|
||||
WriteComm(0x6D);WriteData(0x18); // 关闭跳帧 VGMP 和 VGSP 稳压调节
|
||||
WriteComm(0x29);WriteData(0x01); // 关闭正常模式的跳帧
|
||||
WriteComm(0x30);WriteData(0x43); // 设定空闲模式跳帧使刷新频率降为 30Hz
|
||||
WriteComm(0x0E);WriteData(0x83); // 正常模式 AVDD 电压 = 5.6V
|
||||
WriteComm(0x0F);WriteData(0x83); // 空闲模式 AVDD = 5.6V
|
||||
WriteComm(0x10);WriteData(0x71); // AVDD 三倍 VCI 升压控制
|
||||
WriteComm(0x11);WriteData(0xb3); // VCL = -2倍 VCI 产生负压
|
||||
WriteComm(0x12);WriteData(0xb3);
|
||||
WriteComm(0x13);WriteData(0x80); // 正常模式下 VGH 等于 AVDD
|
||||
WriteComm(0x14);WriteData(0x80); // 空闲模式下 VGH 等于 AVDD
|
||||
WriteComm(0x15);WriteData(0x81); // 正常模式下低侧门电压 VGL = VCL - VCI
|
||||
WriteComm(0x16);WriteData(0x81);
|
||||
WriteComm(0x18);WriteData(0x66); // 偏置电平 VGHR = 6V
|
||||
WriteComm(0x19);WriteData(0x44); // 偏置电平 VGLR = -6V
|
||||
WriteComm(0x1E);WriteData(0x02); // 开启电荷平衡 EQ 调制
|
||||
WriteComm(0x5B);WriteData(0x10); // 启用参考负压 VREFN5
|
||||
WriteComm(0x62);WriteData(0x19); // 正常模式 VREFN5 电平 = -3V
|
||||
WriteComm(0x63);WriteData(0x19); // 空闲模式 VREFN5 = -3V
|
||||
WriteComm(0x70);WriteData(0x55); // 关闭显示时源极驱动器至 AVDD
|
||||
WriteComm(0x1D);WriteData(0x02); // 启用 EQ 平衡
|
||||
WriteComm(0x89);WriteData(0x18); // 控制偏置 VGMP = 5.5V
|
||||
WriteComm(0x8A);WriteData(0xb9); // 控制偏置 VGSP = 2V
|
||||
WriteComm(0x8B);WriteData(0x01); // 偏置高字节
|
||||
WriteComm(0x8C);WriteData(0x10); // VGMP 设为 5.4V
|
||||
WriteComm(0x8D);WriteData(0x90); // VGSP 设为 2V
|
||||
WriteComm(0x8E);WriteData(0x01);
|
||||
WriteComm(0x6E);WriteData(0x0A); // 关闭 MIPI 高速数据接口以选择 SPI 驱动方式
|
||||
WriteComm(0x6A);WriteData(0x05); // 配置 MUX 选择器
|
||||
WriteComm(0x3A);WriteData(0x08); // 行延迟常数 T1_sd
|
||||
WriteComm(0x3B);WriteData(0x00); // 帧延迟常数 Tp_sd
|
||||
WriteComm(0x3D);WriteData(0x16); // 保持延迟常数 Th_sd
|
||||
WriteComm(0x3F);WriteData(0x27); // 切换时序 Tsw_sd
|
||||
WriteComm(0x40);WriteData(0x0F); // 切换保持 Thsw_sd
|
||||
WriteComm(0x41);WriteData(0x0D); // 切换释放 Thsd_sd
|
||||
// ====== д<EFBFBD><EFBFBD> ST7789V ԭ<><D4AD><EFBFBD>Ĵ<EFBFBD><C4B4><EFBFBD><EFBFBD><EFBFBD>ʼ<EFBFBD><CABC>ָ<EFBFBD><D6B8><EFBFBD><EFBFBD><EFBFBD><EFBFBD> ======
|
||||
WriteComm(0x11); // Sleep Out <20>˳<EFBFBD>˯<EFBFBD><CBAF>
|
||||
Delay_ms(120); // <EFBFBD>˳<EFBFBD>˯<EFBFBD>ߺ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ʱ<EFBFBD><EFBFBD><EFBFBD><EFBFBD> 120ms
|
||||
|
||||
// 如下配置模拟通道多路选通时序
|
||||
WriteComm(0x42);WriteData(0x14);
|
||||
WriteComm(0x43);WriteData(0x41);
|
||||
WriteComm(0x44);WriteData(0x25);
|
||||
WriteComm(0x45);WriteData(0x52);
|
||||
WriteComm(0x46);WriteData(0x36);
|
||||
WriteComm(0x47);WriteData(0x63);
|
||||
WriteComm(0x48);WriteData(0x14);
|
||||
WriteComm(0x49);WriteData(0x41);
|
||||
WriteComm(0x4A);WriteData(0x25);
|
||||
WriteComm(0x4B);WriteData(0x52);
|
||||
WriteComm(0x4C);WriteData(0x36);
|
||||
WriteComm(0x4D);WriteData(0x63);
|
||||
WriteComm(0x4E);WriteData(0x14);
|
||||
WriteComm(0x4F);WriteData(0x41);
|
||||
WriteComm(0x50);WriteData(0x25);
|
||||
WriteComm(0x51);WriteData(0x52);
|
||||
WriteComm(0x52);WriteData(0x36);
|
||||
WriteComm(0x53);WriteData(0x63);
|
||||
WriteComm(0x54);WriteData(0x14);
|
||||
WriteComm(0x55);WriteData(0x41);
|
||||
WriteComm(0x56);WriteData(0x25);
|
||||
WriteComm(0x57);WriteData(0x52);
|
||||
WriteComm(0x58);WriteData(0x36);
|
||||
WriteComm(0x59);WriteData(0x63);
|
||||
// Memory Data Access Control (MADCTL) ɨ<>跽<EFBFBD><E8B7BD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
// 0x00: <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>£<EFBFBD><C2A3><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ң<EFBFBD>RGB <20><>ʽ
|
||||
WriteComm(0x36);
|
||||
WriteData(0x00);
|
||||
|
||||
WriteComm(0x66);WriteData(0x90); // 空闲模式使用内部集成供电
|
||||
WriteComm(0x67);WriteData(0x40); // 内部延迟 1 帧切断电源
|
||||
WriteComm(0x72);WriteData(0x1A); // 内部核心 OVDD 电压 = 4.6V
|
||||
WriteComm(0x73);WriteData(0x07); // 内部核心 OVSS 电压 = -2V
|
||||
WriteComm(0x74);WriteData(0x0C); // OVDD 的最终输入来源设为 AVDD
|
||||
WriteComm(0x6A);WriteData(0x3D); // 向单线接口发送脉冲,配置升压
|
||||
WriteComm(0x6B);WriteData(0x29);
|
||||
// Interface Pixel Format (COLMOD)
|
||||
// 0x05 <20><><EFBFBD><EFBFBD> 16-bit/pixel (RGB565<36><35>ʽ)
|
||||
WriteComm(0x3A);
|
||||
WriteData(0x05);
|
||||
|
||||
WriteComm(0xFE);WriteData(0x04); // 切换至 Page 4
|
||||
WriteComm(0x5E);WriteData(0x01);
|
||||
WriteComm(0x5F);WriteData(0xB8);
|
||||
WriteComm(0x60);WriteData(0xBB);
|
||||
WriteComm(0x61);WriteData(0xBB);
|
||||
WriteComm(0x62);WriteData(0xBB);
|
||||
WriteComm(0x76);WriteData(0xBB);
|
||||
WriteComm(0x77);WriteData(0x3B);
|
||||
WriteComm(0x78);WriteData(0x92);
|
||||
WriteComm(0x79);WriteData(0xBB);
|
||||
WriteComm(0x7A);WriteData(0xBB);
|
||||
// Porch Setting (B2h)
|
||||
WriteComm(0xB2);
|
||||
WriteData(0x0C);
|
||||
WriteData(0x0C);
|
||||
WriteData(0x00);
|
||||
WriteData(0x33);
|
||||
WriteData(0x33);
|
||||
|
||||
WriteComm(0x00);WriteData(0xDC); // 扫描时钟 CK1 寄存器配置
|
||||
WriteComm(0x01);WriteData(0x00);
|
||||
WriteComm(0x02);WriteData(0x02);
|
||||
WriteComm(0x03);WriteData(0x00);
|
||||
WriteComm(0x04);WriteData(0x08);
|
||||
WriteComm(0x05);WriteData(0x01);
|
||||
WriteComm(0x06);WriteData(0x70);
|
||||
WriteComm(0x07);WriteData(0x0A);
|
||||
WriteComm(0x08);WriteData(0x00);
|
||||
// Gate Control (B7h)
|
||||
// VGH=13.65V, VGL=-10.43V
|
||||
WriteComm(0xB7);
|
||||
WriteData(0x35);
|
||||
|
||||
WriteComm(0x09);WriteData(0xDC); // 扫描时钟 CK2 寄存器配置
|
||||
WriteComm(0x0a);WriteData(0x00);
|
||||
WriteComm(0x0b);WriteData(0x02);
|
||||
WriteComm(0x0C);WriteData(0x00);
|
||||
WriteComm(0x0D);WriteData(0x08);
|
||||
WriteComm(0x0E);WriteData(0x00);
|
||||
WriteComm(0x0F);WriteData(0x70);
|
||||
WriteComm(0x10);WriteData(0x0A);
|
||||
WriteComm(0x11);WriteData(0x00);
|
||||
// VCOM Setting (BBh)
|
||||
// VCOM=1.175V
|
||||
WriteComm(0xBB);
|
||||
WriteData(0x19);
|
||||
|
||||
WriteComm(0x12);WriteData(0xCC); // 发光逻辑 EM_CK1 配置
|
||||
WriteComm(0x13);WriteData(0x00);
|
||||
WriteComm(0x14);WriteData(0x02);
|
||||
WriteComm(0x15);WriteData(0x00);
|
||||
WriteComm(0x16);WriteData(0x20);
|
||||
WriteComm(0x17);WriteData(0x00);
|
||||
WriteComm(0x18);WriteData(0x28);
|
||||
WriteComm(0x19);WriteData(0x26);
|
||||
WriteComm(0x1A);WriteData(0x00);
|
||||
// LCM Control (C0h)
|
||||
WriteComm(0xC0);
|
||||
WriteData(0x2C);
|
||||
|
||||
WriteComm(0x1B);WriteData(0xCC); // 发光逻辑 EM_CK2 配置
|
||||
WriteComm(0x1C);WriteData(0x00);
|
||||
WriteComm(0x1D);WriteData(0x02);
|
||||
WriteComm(0x1E);WriteData(0x00);
|
||||
WriteComm(0x1F);WriteData(0x20);
|
||||
WriteComm(0x20);WriteData(0x01);
|
||||
WriteComm(0x21);WriteData(0x28);
|
||||
WriteComm(0x22);WriteData(0x26);
|
||||
WriteComm(0x23);WriteData(0x00);
|
||||
// VDV and VRH Command Enable (C2h)
|
||||
WriteComm(0xC2);
|
||||
WriteData(0x01);
|
||||
|
||||
WriteComm(0x4C);WriteData(0x89); // 扫描起始信号 SN_STV 配置
|
||||
WriteComm(0x4D);WriteData(0x00);
|
||||
WriteComm(0x4E);WriteData(0x01);
|
||||
WriteComm(0x4F);WriteData(0x00);
|
||||
WriteComm(0x50);WriteData(0x01);
|
||||
WriteComm(0x51);WriteData(0xBB);
|
||||
WriteComm(0x52);WriteData(0xBB);
|
||||
// VRH Set (C3h)
|
||||
// VRH=4.3V
|
||||
WriteComm(0xC3);
|
||||
WriteData(0x12);
|
||||
|
||||
WriteComm(0x53);WriteData(0xCA); // 发光起始信号 EM_STV 配置
|
||||
WriteComm(0x54);WriteData(0x00);
|
||||
WriteComm(0x55);WriteData(0x03);
|
||||
WriteComm(0x56);WriteData(0x00);
|
||||
WriteComm(0x58);WriteData(0x00);
|
||||
WriteComm(0x59);WriteData(0x00);
|
||||
WriteComm(0x65);WriteData(0x45);
|
||||
WriteComm(0x66);WriteData(0x0C);
|
||||
WriteComm(0x67);WriteData(0x00);
|
||||
// VDV Set (C4h)
|
||||
// VDV=0V
|
||||
WriteComm(0xC4);
|
||||
WriteData(0x20);
|
||||
|
||||
WriteComm(0xFE);WriteData(0x01); // 切换至 Page 1 验证芯片 ID
|
||||
WriteComm(0xE5);WriteData(0x00);
|
||||
WriteComm(0xE6);WriteData(0x10);
|
||||
WriteComm(0xE7);WriteData(0x31);
|
||||
// Frame Rate Control in Normal Mode (C6h)
|
||||
// 0x0F: 60Hz
|
||||
WriteComm(0xC6);
|
||||
WriteData(0x0F);
|
||||
|
||||
WriteComm(0xFE);WriteData(0x00); // 切换回 Page 0 进行正常显示操作
|
||||
WriteComm(0xC4);WriteData(0x80);
|
||||
WriteComm(0x2A);WriteData(0x00);WriteData(0x04);WriteData(0x00);WriteData(0x7B); // 设定列像素物理边界 (4~123,宽120像素)
|
||||
// Power Control 1 (D0h)
|
||||
WriteComm(0xD0);
|
||||
WriteData(0xA4);
|
||||
WriteData(0xA1);
|
||||
|
||||
// ====== 显式设置屏幕像素色彩格式为 16 位像素格式 (COLMOD = 0x75,即RGB565格式) ======
|
||||
WriteComm(0x3A);WriteData(0x75);
|
||||
// Positive Gamma Correction (E0h) <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD>٤<EFBFBD><D9A4>
|
||||
WriteComm(0xE0);
|
||||
WriteData(0xD0); WriteData(0x04); WriteData(0x0D); WriteData(0x11);
|
||||
WriteData(0x13); WriteData(0x2B); WriteData(0x3F); WriteData(0x54);
|
||||
WriteData(0x4C); WriteData(0x18); WriteData(0x0D); WriteData(0x0B);
|
||||
WriteData(0x1F); WriteData(0x23);
|
||||
|
||||
WriteComm(0x11);WriteData(0x00); // 唤醒屏芯片:发送 Sleep Out 退出睡眠指令
|
||||
Delay_ms(150); // 退出睡眠状态后,必须等待 150ms 以便驱动电荷泵稳定
|
||||
// Negative Gamma Correction (E1h) <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD>٤<EFBFBD><D9A4>
|
||||
WriteComm(0xE1);
|
||||
WriteData(0xD0); WriteData(0x04); WriteData(0x0C); WriteData(0x11);
|
||||
WriteData(0x13); WriteData(0x2C); WriteData(0x3F); WriteData(0x44);
|
||||
WriteData(0x51); WriteData(0x2F); WriteData(0x1F); WriteData(0x1F);
|
||||
WriteData(0x20); WriteData(0x23);
|
||||
|
||||
WriteComm(0x29);WriteData(0x00); // 开启屏幕显示:发送 Display ON 指令,像素层开始发光
|
||||
// Display Inversion On (21h) <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ԣ<EFBFBD>ST7789 IPS <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
WriteComm(0x21);
|
||||
|
||||
// Display On (29h) <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ʾ
|
||||
WriteComm(0x29);
|
||||
Delay_ms(20);
|
||||
|
||||
// <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ʾ<EFBFBD><CABE><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ȫ<EFBFBD><C8AB><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ֹ<EFBFBD><D6B9>Ļ<EFBFBD><C4BB><EFBFBD><EFBFBD>˲<EFBFBD><CBB2><EFBFBD><EFBFBD><EFBFBD>ֻ<EFBFBD><D6BB><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
LCD_Clear(COLOR_BLACK);
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 设置屏幕绘制显存窗口区域
|
||||
* @brief <EFBFBD>趨<EFBFBD><EFBFBD>Ļ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ݸ<EFBFBD><EFBFBD>»<EFBFBD><EFBFBD>ƴ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
*/
|
||||
void LCD_SetWindow(u16 x_start, u16 x_end, u16 y_start, u16 y_end)
|
||||
{
|
||||
// 写入 Column Address Set 列地址设置寄存器命令 (0x2A)
|
||||
// <EFBFBD>ڵײ㴰<EFBFBD><EFBFBD><EFBFBD>趨<EFBFBD>У<EFBFBD>ͳһ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ƫ<EFBFBD>õ<EFBFBD><EFBFBD><EFBFBD>У<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ϲ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ͼ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ֹ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
x_start += LCD_X_OFFSET;
|
||||
x_end += LCD_X_OFFSET;
|
||||
y_start += LCD_Y_OFFSET;
|
||||
y_end += LCD_Y_OFFSET;
|
||||
|
||||
// д<><D0B4> Column Address Set <20>е<EFBFBD>ַ<EFBFBD><D6B7><EFBFBD>üĴ<C3BC><C4B4><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> (0x2A)
|
||||
WriteComm(0x2A);
|
||||
WriteData((u8)(x_start >> 8));
|
||||
WriteData((u8)(x_start & 0xFF));
|
||||
WriteData((u8)(x_end >> 8));
|
||||
WriteData((u8)(x_end & 0xFF));
|
||||
|
||||
// 写入 Row Address Set 行地址设置寄存器命令 (0x2B)
|
||||
// д<EFBFBD><EFBFBD> Row Address Set <EFBFBD>е<EFBFBD>ַ<EFBFBD><EFBFBD><EFBFBD>üĴ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> (0x2B)
|
||||
WriteComm(0x2B);
|
||||
WriteData((u8)(y_start >> 8));
|
||||
WriteData((u8)(y_start & 0xFF));
|
||||
@@ -318,29 +206,26 @@ void LCD_SetWindow(u16 x_start, u16 x_end, u16 y_start, u16 y_end)
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 用指定色彩刷写清空全屏幕
|
||||
* @param color 16位 RGB565 颜色填充值
|
||||
* @brief <EFBFBD><EFBFBD>ָ<EFBFBD><EFBFBD>ɫ<EFBFBD><EFBFBD>ˢд<EFBFBD><EFBFBD><EFBFBD><EFBFBD>ȫ<EFBFBD><EFBFBD>Ļ
|
||||
* @param color 16λ RGB565 <EFBFBD><EFBFBD>ɫ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>ֵ
|
||||
*/
|
||||
void LCD_Clear(u16 color)
|
||||
{
|
||||
u16 i, j;
|
||||
// 【物理引脚偏移说明】:
|
||||
// 该 AMOLED 屏在物理层面上水平方向的列像素地址为 4 ~ 123(总宽 120 像素)。
|
||||
// 因此调用 LCD_SetWindow 时,X 轴的物理起始和终止坐标必须偏置 +4 才能与物理屏幕像素完全对齐。
|
||||
LCD_SetWindow(4, 123, 0, 239);
|
||||
WriteComm(0x2C); // 发送 RAM Write (0x2C) 显存写入命令
|
||||
for(i = 0; i < 120; i++)
|
||||
LCD_SetWindow(0, LCD_WIDTH - 1, 0, LCD_HEIGHT - 1);
|
||||
WriteComm(0x2C); // <20><><EFBFBD><EFBFBD> RAM Write (0x2C) <20>Դ<EFBFBD>д<EFBFBD><D0B4><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
for(i = 0; i < LCD_WIDTH; i++)
|
||||
{
|
||||
for(j = 0; j < 240; j++)
|
||||
for(j = 0; j < LCD_HEIGHT; j++)
|
||||
{
|
||||
WriteData((u8)(color >> 8)); // 发送 RGB565 高 8 位字节
|
||||
WriteData((u8)(color & 0xFF)); // 发送 RGB565 低 8 位字节
|
||||
WriteData((u8)(color >> 8)); // <EFBFBD><EFBFBD><EFBFBD><EFBFBD> RGB565 <EFBFBD><EFBFBD> 8 λ<EFBFBD>ֽ<EFBFBD>
|
||||
WriteData((u8)(color & 0xFF)); // <EFBFBD><EFBFBD><EFBFBD><EFBFBD> RGB565 <EFBFBD><EFBFBD> 8 λ<EFBFBD>ֽ<EFBFBD>
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 在屏幕指定视口绘制实心矩形
|
||||
* @brief <EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ļָ<EFBFBD><EFBFBD><EFBFBD>ӿڻ<EFBFBD><EFBFBD><EFBFBD>ʵ<EFBFBD>ľ<EFBFBD><EFBFBD><EFBFBD>
|
||||
*/
|
||||
void LCD_FillRect(u16 x, u16 y, u16 w, u16 h, u16 color)
|
||||
{
|
||||
@@ -348,10 +233,9 @@ void LCD_FillRect(u16 x, u16 y, u16 w, u16 h, u16 color)
|
||||
u8 ch = (u8)(color >> 8);
|
||||
u8 cl = (u8)(color & 0xFF);
|
||||
|
||||
// X 坐标应用物理偏置偏移 +4 像素
|
||||
LCD_SetWindow(x + 4, x + w - 1 + 4, y, y + h - 1);
|
||||
WriteComm(0x2C); // 写入显存
|
||||
count = w * h; // 实心矩形包含的总像素数
|
||||
LCD_SetWindow(x, x + w - 1, y, y + h - 1);
|
||||
WriteComm(0x2C); // д<><D0B4><EFBFBD>Դ<EFBFBD>
|
||||
count = w * h; // ʵ<EFBFBD>ľ<EFBFBD><EFBFBD>ΰ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
for(i = 0; i < count; i++)
|
||||
{
|
||||
WriteData(ch);
|
||||
@@ -360,57 +244,55 @@ void LCD_FillRect(u16 x, u16 y, u16 w, u16 h, u16 color)
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 绘制空心矩形边界框
|
||||
* @details 通过组合调用四次 LCD_FillRect 实心线来绘制矩形的上、下、左、右四条边。
|
||||
* @brief <EFBFBD><EFBFBD><EFBFBD>ƿ<EFBFBD><EFBFBD>ľ<EFBFBD><EFBFBD>α߽<EFBFBD><EFBFBD><EFBFBD>
|
||||
* @details ͨ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ϵ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ĵ<EFBFBD> LCD_FillRect ʵ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ƾ<EFBFBD><EFBFBD>ε<EFBFBD><EFBFBD>ϡ<EFBFBD><EFBFBD>¡<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ߡ<EFBFBD>
|
||||
*/
|
||||
void LCD_DrawRectBorder(u16 x, u16 y, u16 w, u16 h, u16 color)
|
||||
{
|
||||
LCD_FillRect(x, y, w, 1, color); // 上边框线 (厚度 1 像素)
|
||||
LCD_FillRect(x, y + h - 1, w, 1, color); // 下边框线
|
||||
LCD_FillRect(x, y, 1, h, color); // 左边框线
|
||||
LCD_FillRect(x + w - 1, y, 1, h, color); // 右边框线
|
||||
LCD_FillRect(x, y, w, 1, color); // <EFBFBD>ϱ߿<EFBFBD><EFBFBD><EFBFBD>
|
||||
LCD_FillRect(x, y + h - 1, w, 1, color); // <EFBFBD>±߿<EFBFBD><EFBFBD><EFBFBD>
|
||||
LCD_FillRect(x, y, 1, h, color); // <EFBFBD><EFBFBD><EFBFBD>߿<EFBFBD><EFBFBD><EFBFBD>
|
||||
LCD_FillRect(x + w - 1, y, 1, h, color); // <EFBFBD>ұ߿<EFBFBD><EFBFBD><EFBFBD>
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 渲染显示一个单色字模位图资源
|
||||
* @param x 渲染起始坐标 X
|
||||
* @param y 渲染起始坐标 Y
|
||||
* @param w 位图宽度 (单位: 像素点数)
|
||||
* @param h 位图高度 (单位: 像素点数)
|
||||
* @param bmp FLASH 中的单色像素数组指针 (1表示画前景色,0表示画背景色)
|
||||
* @param color 16位前景色
|
||||
* @param bg_color 16位背景色
|
||||
* @details 会逐行、逐列解析单色图的字节数组,每一行占 (w+7)/8 个字节,
|
||||
* 利用位操作提取指定 bit 的状态并发送色彩数据写入屏幕。
|
||||
* @brief <EFBFBD><EFBFBD>Ⱦ<EFBFBD><EFBFBD>ʾһ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>ɫ<EFBFBD><EFBFBD>ģλͼ<EFBFBD><EFBFBD>Դ
|
||||
* @param x <EFBFBD><EFBFBD>Ⱦ<EFBFBD><EFBFBD>ʼ<EFBFBD><EFBFBD><EFBFBD><EFBFBD> X
|
||||
* @param y <EFBFBD><EFBFBD>Ⱦ<EFBFBD><EFBFBD>ʼ<EFBFBD><EFBFBD><EFBFBD><EFBFBD> Y
|
||||
* @param w λͼ<EFBFBD><EFBFBD><EFBFBD><EFBFBD> (<28><>λ: <20><><EFBFBD>ص<EFBFBD><D8B5><EFBFBD>)
|
||||
* @param h λͼ<EFBFBD>߶<EFBFBD> (<28><>λ: <20><><EFBFBD>ص<EFBFBD><D8B5><EFBFBD>)
|
||||
* @param bmp FLASH <EFBFBD>еĵ<EFBFBD>ɫ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ָ<EFBFBD><EFBFBD> (1<><31>ʾ<EFBFBD><CABE>ǰ<EFBFBD><C7B0>ɫ<EFBFBD><C9AB>0<EFBFBD><30>ʾ<EFBFBD><CABE><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ɫ)
|
||||
* @param color 16λǰ<EFBFBD><EFBFBD>ɫ
|
||||
* @param bg_color 16λ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>ɫ
|
||||
*/
|
||||
void LCD_DrawMonoBitmap(u16 x, u16 y, u16 w, u16 h, unsigned char code *bmp, u16 color, u16 bg_color)
|
||||
{
|
||||
u16 r, c;
|
||||
u16 byte_width = (w + 7) / 8; // 计算在单色编码中,一行图像占用的实际字节数
|
||||
u16 byte_width = (w + 7) / 8; // <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ڵ<EFBFBD>ɫ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>У<EFBFBD>һ<EFBFBD><EFBFBD>ͼ<EFBFBD><EFBFBD>ռ<EFBFBD>õ<EFBFBD>ʵ<EFBFBD><EFBFBD><EFBFBD>ֽ<EFBFBD><EFBFBD><EFBFBD>
|
||||
u8 ch = (u8)(color >> 8);
|
||||
u8 cl = (u8)(color & 0xFF);
|
||||
u8 bgh = (u8)(bg_color >> 8);
|
||||
u8 bgl = (u8)(bg_color & 0xFF);
|
||||
|
||||
LCD_SetWindow(x + 4, x + w - 1 + 4, y, y + h - 1); // 限制绘制显存窗口并应用偏移
|
||||
LCD_SetWindow(x, x + w - 1, y, y + h - 1); // <EFBFBD><EFBFBD><EFBFBD>ƻ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>Դ洰<EFBFBD><EFBFBD>
|
||||
WriteComm(0x2C);
|
||||
|
||||
// 嵌套循环,从第 0 行第 0 列开始遍历每个像素位置
|
||||
// Ƕ<EFBFBD><EFBFBD>ѭ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ӵ<EFBFBD> 0 <20>е<EFBFBD> 0 <20>п<EFBFBD>ʼ<EFBFBD><CABC><EFBFBD><EFBFBD>ÿ<EFBFBD><C3BF><EFBFBD><EFBFBD><EFBFBD><EFBFBD>λ<EFBFBD><CEBB>
|
||||
for(r = 0; r < h; r++)
|
||||
{
|
||||
for(c = 0; c < w; c++)
|
||||
{
|
||||
u16 byte_idx = r * byte_width + (c / 8); // 定位当前像素所在单色图数组中的字节索引
|
||||
u8 bit_shift = 7 - (c % 8); // 定位该像素在该字节中对应的 bit 位置 (高位在前)
|
||||
u16 byte_idx = r * byte_width + (c / 8); // <EFBFBD><EFBFBD>λ<EFBFBD><EFBFBD>ǰ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ڵ<EFBFBD>ɫͼ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>е<EFBFBD><EFBFBD>ֽ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
u8 bit_shift = 7 - (c % 8); // <EFBFBD><EFBFBD>λ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ڸ<EFBFBD><EFBFBD>ֽ<EFBFBD><EFBFBD>ж<EFBFBD>Ӧ<EFBFBD><EFBFBD> bit λ<><CEBB> (<28><>λ<EFBFBD><CEBB>ǰ)
|
||||
|
||||
if(bmp[byte_idx] & (1 << bit_shift))
|
||||
{
|
||||
WriteData(ch); // 该位为 1,发送前景色
|
||||
WriteData(ch); // <EFBFBD><EFBFBD>λΪ 1<><31><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ǰ<EFBFBD><C7B0>ɫ
|
||||
WriteData(cl);
|
||||
}
|
||||
else
|
||||
{
|
||||
WriteData(bgh); // 该位为 0,发送背景色
|
||||
WriteData(bgh); // <EFBFBD><EFBFBD>λΪ 0<><30><EFBFBD><EFBFBD><EFBFBD>ͱ<EFBFBD><CDB1><EFBFBD>ɫ
|
||||
WriteData(bgl);
|
||||
}
|
||||
}
|
||||
@@ -418,31 +300,30 @@ void LCD_DrawMonoBitmap(u16 x, u16 y, u16 w, u16 h, unsigned char code *bmp, u16
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 在指定坐标渲染输出一个 8x16 尺寸的普通英文 ASCII 字符
|
||||
* @param ch ASCII 字符本身
|
||||
* @details 遍历 8x16 点阵字库,将索引对应的 16 个字符编码字节依次提取,按位发送。
|
||||
* @brief <EFBFBD><EFBFBD>ָ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ⱦ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>һ<EFBFBD><EFBFBD> 8x16 <20>ߴ<EFBFBD><DFB4><EFBFBD><EFBFBD><EFBFBD>ͨӢ<CDA8><D3A2> ASCII <EFBFBD>ַ<EFBFBD>
|
||||
* @param ch ASCII <EFBFBD>ַ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
*/
|
||||
void LCD_ShowChar8x16(u16 x, u16 y, char ch, u16 color, u16 bg_color)
|
||||
{
|
||||
u8 r, c;
|
||||
u8 char_idx = ch - 0x20; // 偏移计算:ASCII 可打印字符从 0x20 (空格) 开始
|
||||
u8 char_idx = ch - 0x20; // ƫ<EFBFBD>Ƽ<EFBFBD><EFBFBD>㣺ASCII <20>ɴ<EFBFBD>ӡ<EFBFBD>ַ<EFBFBD><D6B7><EFBFBD> 0x20 (<28>ո<EFBFBD>) <20><>ʼ
|
||||
u8 f_h = (u8)(color >> 8);
|
||||
u8 f_l = (u8)(color & 0xFF);
|
||||
u8 b_h = (u8)(bg_color >> 8);
|
||||
u8 b_l = (u8)(bg_color & 0xFF);
|
||||
|
||||
if(ch < 0x20 || ch > 0x7E) return; // 过滤不可见控制字符
|
||||
if(ch < 0x20 || ch > 0x7E) return; // <EFBFBD><EFBFBD><EFBFBD>˲<EFBFBD><EFBFBD>ɼ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ַ<EFBFBD>
|
||||
|
||||
LCD_SetWindow(x + 4, x + 8 - 1 + 4, y, y + 16 - 1); // 应用 +4 像素偏移
|
||||
LCD_SetWindow(x, x + 8 - 1, y, y + 16 - 1);
|
||||
WriteComm(0x2C);
|
||||
|
||||
// 循环 16 行,绘制 8x16 字型
|
||||
// ѭ<EFBFBD><EFBFBD> 16 <EFBFBD>У<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> 8x16 <EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
for(r = 0; r < 16; r++)
|
||||
{
|
||||
u8 line = FONT_8x16[char_idx][r]; // 提取当前行对应的 8 位单色像素信息
|
||||
u8 line = FONT_8x16[char_idx][r]; // <EFBFBD><EFBFBD>ȡ<EFBFBD><EFBFBD>ǰ<EFBFBD>ж<EFBFBD>Ӧ<EFBFBD><EFBFBD> 8 λ<><CEBB>ɫ<EFBFBD><C9AB><EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ϣ
|
||||
for(c = 0; c < 8; c++)
|
||||
{
|
||||
// 从高到低依次提取单行中的像素点
|
||||
// <EFBFBD>Ӹߵ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ȡ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>е<EFBFBD><EFBFBD><EFBFBD><EFBFBD>ص<EFBFBD>
|
||||
if(line & (0x80 >> c))
|
||||
{
|
||||
WriteData(f_h);
|
||||
@@ -458,45 +339,42 @@ void LCD_ShowChar8x16(u16 x, u16 y, char ch, u16 color, u16 bg_color)
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 在指定坐标打印一行普通英文 ASCII 字符串 (左对齐)
|
||||
* @brief <EFBFBD><EFBFBD>ָ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ӡһ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>ͨӢ<EFBFBD><EFBFBD> ASCII <20>ַ<EFBFBD><D6B7><EFBFBD> (<28><><EFBFBD><EFBFBD><EFBFBD><EFBFBD>)
|
||||
*/
|
||||
void LCD_ShowString(u16 x, u16 y, char *str, u16 color, u16 bg_color)
|
||||
{
|
||||
while(*str)
|
||||
{
|
||||
LCD_ShowChar8x16(x, y, *str, color, bg_color); // 渲染当前字符
|
||||
x += 8; // X 轴起始位置偏移 8 像素,准备绘制下一个字符
|
||||
str++; // 移向下一个字符
|
||||
LCD_ShowChar8x16(x, y, *str, color, bg_color); // <EFBFBD><EFBFBD>Ⱦ<EFBFBD><EFBFBD>ǰ<EFBFBD>ַ<EFBFBD>
|
||||
x += 8; // X <EFBFBD><EFBFBD><EFBFBD><EFBFBD>ʼλ<EFBFBD><EFBFBD>ƫ<EFBFBD><EFBFBD> 8 <20><><EFBFBD>أ<EFBFBD><EFBFBD><D7BC><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>һ<EFBFBD><D2BB><EFBFBD>ַ<EFBFBD>
|
||||
str++; // <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>һ<EFBFBD><EFBFBD><EFBFBD>ַ<EFBFBD>
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 在指定 Y 轴高度上,自动计算偏移以实现字符串水平居中显示
|
||||
* @brief <EFBFBD><EFBFBD>ָ<EFBFBD><EFBFBD> Y <20><><EFBFBD>߶<EFBFBD><DFB6>ϣ<EFBFBD><CFA3>Զ<EFBFBD><D4B6><EFBFBD><EFBFBD><EFBFBD>ƫ<EFBFBD><C6AB><EFBFBD><EFBFBD>ʵ<EFBFBD><CAB5><EFBFBD>ַ<EFBFBD><D6B7><EFBFBD>ˮƽ<CBAE><C6BD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ʾ
|
||||
*/
|
||||
void LCD_ShowStringCentered(u16 y, char *str, u16 color, u16 bg_color)
|
||||
{
|
||||
u16 len = 0;
|
||||
char *p = str;
|
||||
while(*p++) len++; // 计算字符串长度
|
||||
while(*p++) len++; // <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ַ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
|
||||
if(len * 8 >= 120)
|
||||
// 若超出或等同于屏幕有效宽度 (120像素),强制从最左侧 0 开始左对齐绘制
|
||||
if(len * 8 >= LCD_WIDTH)
|
||||
// <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ͬ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ļ<EFBFBD><EFBFBD>Ч<EFBFBD><EFBFBD><EFBFBD>ȣ<EFBFBD>ǿ<EFBFBD>ƴ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> 0 <20><>ʼ<EFBFBD><CABC><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
LCD_ShowString(0, y, str, color, bg_color);
|
||||
else
|
||||
// 否则通过公式 (120 - 字符宽度) / 2 计算出水平居中的首字起始偏移 X 坐标并渲染
|
||||
LCD_ShowString((120 - len * 8) / 2, y, str, color, bg_color);
|
||||
// <EFBFBD><EFBFBD><EFBFBD><EFBFBD>ͨ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>ʽ (LCD_WIDTH - <20>ַ<EFBFBD><D6B7><EFBFBD><EFBFBD><EFBFBD>) / 2 <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ˮƽ<CBAE><C6BD><EFBFBD>е<EFBFBD><D0B5><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ʼƫ<CABC><C6AB> X <20><><EFBFBD>겢<EFBFBD><EAB2A2>Ⱦ
|
||||
LCD_ShowString((LCD_WIDTH - len * 8) / 2, y, str, color, bg_color);
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 渲染大号特粗 16x32 尺寸的英文/数字字符
|
||||
* @details 【字库双重放大技术】:
|
||||
* 由于 8051 FLASH 容量有限,手环未附带特大型号的 16x32 大字库。
|
||||
* 此函数通过算法对 8x16 基础字库点阵数据在水平方向(列)和垂直方向(行)各重复绘制 2 遍
|
||||
* (即单个点扩充绘制为 2x2 的像素团),从而实现对原字型双重放大渲染为 16x32 规格,节省空间。
|
||||
* @brief <EFBFBD><EFBFBD>Ⱦ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ش<EFBFBD> 16x32 <20>ߴ<EFBFBD><DFB4><EFBFBD>Ӣ<EFBFBD><D3A2>/<2F><><EFBFBD><EFBFBD><EFBFBD>ַ<EFBFBD>
|
||||
*/
|
||||
void LCD_ShowChar16x32(u16 x, u16 y, char ch, u16 color, u16 bg_color)
|
||||
{
|
||||
u8 r, c, i, j;
|
||||
u8 val_bit;
|
||||
u8 char_idx = ch - 0x20;
|
||||
u8 f_h = (u8)(color >> 8);
|
||||
u8 f_l = (u8)(color & 0xFF);
|
||||
@@ -505,22 +383,22 @@ void LCD_ShowChar16x32(u16 x, u16 y, char ch, u16 color, u16 bg_color)
|
||||
|
||||
if(ch < 0x20 || ch > 0x7E) return;
|
||||
|
||||
LCD_SetWindow(x + 4, x + 16 - 1 + 4, y, y + 32 - 1); // 锁定 16x32 的绘图视窗
|
||||
LCD_SetWindow(x, x + 16 - 1, y, y + 32 - 1); // <EFBFBD><EFBFBD><EFBFBD><EFBFBD> 16x32 <EFBFBD>Ļ<EFBFBD>ͼ<EFBFBD>Ӵ<EFBFBD>
|
||||
WriteComm(0x2C);
|
||||
|
||||
// 遍历字型的 16 个点阵行数据
|
||||
// <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>͵<EFBFBD> 16 <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> data
|
||||
for(r = 0; r < 16; r++)
|
||||
{
|
||||
u8 line = FONT_8x16[char_idx][r];
|
||||
|
||||
// 纵向插点翻倍:将当前行重复绘制两次 (i = 0 和 i = 1)
|
||||
// <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>㷭<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ǰ<EFBFBD><EFBFBD><EFBFBD>ظ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> (i = 0 <EFBFBD><EFBFBD> i = 1)
|
||||
for(i = 0; i < 2; i++)
|
||||
{
|
||||
// 遍历单行内的 8 个 bit 像素点
|
||||
// <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ڵ<EFBFBD> 8 <EFBFBD><EFBFBD> bit <EFBFBD><EFBFBD><EFBFBD>ص<EFBFBD>
|
||||
for(c = 0; c < 8; c++)
|
||||
{
|
||||
u8 val_bit = (line & (0x80 >> c));
|
||||
// 横向插点翻倍:单个像素点重复发送写入 2 次 (j = 0 和 j = 1)
|
||||
val_bit = (line & (0x80 >> c));
|
||||
// <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>㷭<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ص<EFBFBD><EFBFBD>ظ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>д<EFBFBD><EFBFBD> 2 <EFBFBD><EFBFBD> (j = 0 <EFBFBD><EFBFBD> j = 1)
|
||||
for(j = 0; j < 2; j++)
|
||||
{
|
||||
if(val_bit)
|
||||
@@ -540,31 +418,31 @@ void LCD_ShowChar16x32(u16 x, u16 y, char ch, u16 color, u16 bg_color)
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 在指定坐标绘制特大 16x32 规格的数字/英文字符串
|
||||
* @brief <EFBFBD><EFBFBD>ָ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ش<EFBFBD> 16x32 <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>/Ӣ<><D3A2><EFBFBD>ִ<EFBFBD>
|
||||
*/
|
||||
void LCD_ShowString16x32(u16 x, u16 y, char *str, u16 color, u16 bg_color)
|
||||
{
|
||||
while(*str)
|
||||
{
|
||||
LCD_ShowChar16x32(x, y, *str, color, bg_color);
|
||||
x += 16; // 每次起始坐标偏移 16 像素
|
||||
x += 16; // ÿ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>ʼ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>ƫ<EFBFBD><EFBFBD> 16 <20><><EFBFBD><EFBFBD>
|
||||
str++;
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 在指定 Y 轴高度上,水平居中渲染显示特大 16x32 规格字符串
|
||||
* @brief <EFBFBD><EFBFBD>ָ<EFBFBD><EFBFBD> Y <20><><EFBFBD>߶<EFBFBD><DFB6>ϣ<EFBFBD>ˮƽ<CBAE><C6BD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ⱦ<EFBFBD><C8BE>ʾ<EFBFBD>ش<EFBFBD> 16x32 <20><><EFBFBD><EFBFBD><EFBFBD>ַ<EFBFBD><D6B7><EFBFBD>
|
||||
*/
|
||||
void LCD_ShowString16x32Centered(u16 y, char *str, u16 color, u16 bg_color)
|
||||
{
|
||||
u16 len = 0;
|
||||
char *p = str;
|
||||
while(*p++) len++; // 计算字数
|
||||
while(*p++) len++; // <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
|
||||
if(len * 16 >= 120)
|
||||
// 超出屏幕宽度,左对齐
|
||||
if(len * 16 >= LCD_WIDTH)
|
||||
// <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ļ<EFBFBD><EFBFBD><EFBFBD>ȣ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
LCD_ShowString16x32(0, y, str, color, bg_color);
|
||||
else
|
||||
// 水平居中计算
|
||||
LCD_ShowString16x32((120 - len * 16) / 2, y, str, color, bg_color);
|
||||
// ˮƽ<EFBFBD><EFBFBD><EFBFBD>м<EFBFBD><EFBFBD><EFBFBD>
|
||||
LCD_ShowString16x32((LCD_WIDTH - len * 16) / 2, y, str, color, bg_color);
|
||||
}
|
||||
|
||||
109
Drivers/lcd.h
109
Drivers/lcd.h
@@ -4,157 +4,118 @@
|
||||
#include "../App/config.h"
|
||||
#include "stc32g.h"
|
||||
|
||||
/* ====== Truly AMOLED RM69310 屏幕驱动 (RGB565格式) 常数定义 ====== */
|
||||
/* ====== LHS114TC-IF03 (ST7789V) 屏幕参数与常数定义 ====== */
|
||||
#define LCD_WIDTH 135 // 屏幕物理宽度
|
||||
#define LCD_HEIGHT 240 // 屏幕物理高度
|
||||
#define LCD_X_OFFSET 52 // 水平 X 轴物理偏置量
|
||||
#define LCD_Y_OFFSET 40 // 垂直 Y 轴物理偏置量
|
||||
|
||||
// 16位 RGB565 颜色常量定义:
|
||||
// 格式为:Red(5位) Green(6位) Blue(5位) 拼接而成的 16 位整数值
|
||||
#define COLOR_BLACK 0x0000 // 黑色
|
||||
#define COLOR_WHITE 0xFFFF // 白色
|
||||
#define COLOR_CYAN 0x073F // 青色/天蓝色
|
||||
#define COLOR_CYAN 0x073F // 青色
|
||||
#define COLOR_RED 0xF800 // 红色
|
||||
#define COLOR_GREEN 0x07E0 // 绿色
|
||||
#define COLOR_BLUE 0x001F // 蓝色
|
||||
#define COLOR_GRAY 0x5AEB // 灰色
|
||||
#define COLOR_AMBER 0xFDC0 // 琥珀色/橙黄色
|
||||
#define COLOR_AMBER 0xFDC0 // 琥珀色
|
||||
|
||||
/* ====== 屏幕电源控制与基本驱动接口 ====== */
|
||||
|
||||
/**
|
||||
* @brief 通过脉冲序列为 SGM3833 屏幕负压供电芯片发送开启配置脉冲
|
||||
* @param pulse_cnt 发送的脉冲个数 (例如 27 次脉冲开启并稳压屏幕输出)
|
||||
* @details 采用单线脉冲边沿计数调制技术,为 RM69310 控制芯片提供其正常显示所需的高质量偏置正负电压。
|
||||
* @brief 通过脉冲序列为 SGM3833 供电芯片写入配置
|
||||
*/
|
||||
void SGM_SendPulse(u8 pulse_cnt);
|
||||
|
||||
/**
|
||||
* @brief 执行 Truly AMOLED 屏幕的硬件复位
|
||||
* @details 将 LCD_RST 引脚拉低保持一定时间后拉高,强制复位屏幕控制器,使其恢复到初始逻辑状态。
|
||||
* @brief 执行 LHS114TC-IF03 屏幕的硬件复位
|
||||
*/
|
||||
void LCD_Reset(void);
|
||||
|
||||
/**
|
||||
* @brief 初始化 Truly AMOLED 屏幕控制器 RM69310
|
||||
* @details 执行屏幕硬件复位,通过软件 SPI 总线依次向屏幕控制器写入寄存器偏置、显示周期、
|
||||
* 通道选择、关闭休眠 (Sleep Out: 0x11)、开启显示 (Display On: 0x29) 等一系列
|
||||
* 出厂初始化命令序列,使屏幕准备好接收显示像素帧。
|
||||
* @brief 初始化 LHS114TC-IF03 (ST7789V) 屏幕控制器
|
||||
*/
|
||||
void LCD_Init(void);
|
||||
|
||||
/**
|
||||
* @brief 向屏幕写入 1 字节控制命令
|
||||
* @param cmd 8 位命令字节
|
||||
*/
|
||||
void WriteComm(u8 cmd);
|
||||
|
||||
/**
|
||||
* @brief 设定屏幕的数据更新绘制窗口区域 (显存写入范围)
|
||||
* @param x_start X 轴起始坐标 (0 ~ 119)
|
||||
* @param x_end X 轴终止坐标 (0 ~ 119)
|
||||
* @param y_start Y 轴起始坐标 (0 ~ 239)
|
||||
* @param y_end Y 轴终止坐标 (0 ~ 239)
|
||||
* @details 限定后续的数据流写入范围,实现局部页面刷新或全部页面刷新。
|
||||
* @brief 向屏幕写入 1 字节显示数据
|
||||
*/
|
||||
void WriteData(u8 dat);
|
||||
|
||||
/**
|
||||
* @brief 设定屏幕的数据更新绘制窗口区域
|
||||
*/
|
||||
void LCD_SetWindow(u16 x_start, u16 x_end, u16 y_start, u16 y_end);
|
||||
|
||||
/**
|
||||
* @brief 以指定纯色清除整个屏幕显示内容
|
||||
* @param color 16位 RGB565 颜色填充值
|
||||
* @brief 用指定色彩刷写清空全屏幕
|
||||
*/
|
||||
void LCD_Clear(u16 color);
|
||||
|
||||
|
||||
/* ====== 像素级图形几何算法与字符渲染接口 ====== */
|
||||
/* ====== 关键图形与点阵字符渲染接口 ====== */
|
||||
|
||||
/**
|
||||
* @brief 在屏幕指定位置绘制一个单色填充的实心矩形
|
||||
* @param x 矩形左上角 X 轴坐标
|
||||
* @param y 矩形左上角 Y 轴坐标
|
||||
* @param w 矩形宽度
|
||||
* @param h 矩形高度
|
||||
* @param color 16位 RGB565 填充色彩值
|
||||
* @brief 在屏幕指定视口绘制实心矩形
|
||||
*/
|
||||
void LCD_FillRect(u16 x, u16 y, u16 w, u16 h, u16 color);
|
||||
|
||||
/**
|
||||
* @brief 绘制一个无填充的空心矩形边界框
|
||||
* @param x 矩形左上角 X 轴坐标
|
||||
* @param y 矩形左上角 Y 轴坐标
|
||||
* @param w 边框总宽度
|
||||
* @param h 边框总高度
|
||||
* @param color 16位 RGB565 边框线条色彩
|
||||
* @brief 绘制空心矩形边界框
|
||||
*/
|
||||
void LCD_DrawRectBorder(u16 x, u16 y, u16 w, u16 h, u16 color);
|
||||
|
||||
/**
|
||||
* @brief 绘制渲染一个自定义宽高的单色单色位图
|
||||
* @param x 绘制的左上角 X 轴坐标
|
||||
* @param y 绘制的左上角 Y 轴坐标
|
||||
* @param w 单色图宽度 (单位: 像素点数)
|
||||
* @param h 单色图高度
|
||||
* @param bmp 单色位图所在的 FLASH code 区指针 (1位对应1像素:1画前景色,0画背景色)
|
||||
* @param color 位图前景色 (RGB565)
|
||||
* @param bg_color 位图背景色
|
||||
* @brief 渲染显示一个单色字模位图资源
|
||||
*/
|
||||
void LCD_DrawMonoBitmap(u16 x, u16 y, u16 w, u16 h, unsigned char code *bmp, u16 color, u16 bg_color);
|
||||
|
||||
/**
|
||||
* @brief 渲染显示一个 8x16 尺寸的普通英文 ASCII 字符
|
||||
* @brief 在指定坐标渲染输出一个 8x16 尺寸的普通英文 ASCII 字符
|
||||
*/
|
||||
void LCD_ShowChar8x16(u16 x, u16 y, char ch, u16 color, u16 bg_color);
|
||||
|
||||
/**
|
||||
* @brief 渲染显示一行普通的英文 ASCII 字符串 (左对齐)
|
||||
* @param x 绘制行起始 X 坐标
|
||||
* @param y 绘制行 Y 坐标
|
||||
* @param str 字符串头指针
|
||||
* @param color 字符颜色 (RGB565)
|
||||
* @param bg_color 字符背景背景填充色
|
||||
* @brief 在指定坐标打印一行普通英文 ASCII 字符串 (左对齐)
|
||||
*/
|
||||
void LCD_ShowString(u16 x, u16 y, char *str, u16 color, u16 bg_color);
|
||||
|
||||
/**
|
||||
* @brief 在指定 Y 轴高度上,水平居中对齐显示一行字符串
|
||||
* @param y 渲染的 Y 轴高度 (0 ~ 239)
|
||||
* @param str 字符串内容
|
||||
* @param color 颜色值
|
||||
* @param bg_color 背景色
|
||||
* @brief 在指定 Y 轴高度上,自动计算偏移以实现字符串水平居中显示
|
||||
*/
|
||||
void LCD_ShowStringCentered(u16 y, char *str, u16 color, u16 bg_color);
|
||||
|
||||
/**
|
||||
* @brief 渲染显示一个 16x32 大号特粗尺寸的英文/数字字符
|
||||
* @brief 渲染大号特粗 16x32 尺寸的英文/数字字符
|
||||
*/
|
||||
void LCD_ShowChar16x32(u16 x, u16 y, char ch, u16 color, u16 bg_color);
|
||||
|
||||
/**
|
||||
* @brief 显示大号特粗 16x32 规格的数字/英文字符串 (如时钟大字显示)
|
||||
* @brief 在指定坐标绘制特大 16x32 规格的数字/英文字串
|
||||
*/
|
||||
void LCD_ShowString16x32(u16 x, u16 y, char *str, u16 color, u16 bg_color);
|
||||
|
||||
/**
|
||||
* @brief 在指定 Y 轴高度上,居中显示 16x32 特大规格字体的字符串
|
||||
* @param y 渲染的 Y 轴高度 (0 ~ 239)
|
||||
* @param str 大字字符串内容
|
||||
* @param color 大字前景色
|
||||
* @param bg_color 大字背景色
|
||||
* @brief 在指定 Y 轴高度上,水平居中渲染显示特大 16x32 规格字符串
|
||||
*/
|
||||
void LCD_ShowString16x32Centered(u16 y, char *str, u16 color, u16 bg_color);
|
||||
|
||||
|
||||
/* ====== 图标与点阵字模外部数据声明 ====== */
|
||||
// 这些数据实体均定义在底层字库 lcd_font.h 文件中
|
||||
|
||||
extern unsigned char code FONT_8x16[95][16]; // 8x16 英文 ASCII 点阵字库
|
||||
extern unsigned char code bmp_battery_20x10[]; // 20x10 电池电量指示位图
|
||||
/* ====== 图标外部点阵数据声明 ====== */
|
||||
extern unsigned char code FONT_8x16[95][16]; // 8x16 英文点阵字库
|
||||
extern unsigned char code bmp_battery_20x10[]; // 20x10 电池指示位图
|
||||
extern unsigned char code bmp_lock_16x16[]; // 16x16 闭合锁头位图
|
||||
extern unsigned char code bmp_unlock_16x16[]; // 16x16 开启锁头位图
|
||||
extern unsigned char code bmp_radar_32x32_f1[]; // 32x32 雷达扩散帧1
|
||||
extern unsigned char code bmp_radar_32x32_f2[]; // 32x32 雷达扩散帧2
|
||||
extern unsigned char code bmp_radar_32x32_f3[]; // 32x32 雷达扩散帧3
|
||||
extern unsigned char code bmp_confirm_lock_32x32[]; // 32x32 传感器类型锁头大图
|
||||
extern unsigned char code bmp_checkmark_32x32[]; // 32x32 配对成功大对勾
|
||||
extern unsigned char code bmp_cross_32x32[]; // 32x32 配对失败大红叉
|
||||
extern unsigned char code bmp_door_32x32[]; // 32x32 门磁大警告图标
|
||||
extern unsigned char code bmp_siren_32x32[]; // 32x32 烟感喇叭警示图标
|
||||
extern unsigned char code bmp_confirm_lock_32x32[]; // 32x32 锁型常规大图标
|
||||
extern unsigned char code bmp_checkmark_32x32[]; // 32x32 成功大对勾
|
||||
extern unsigned char code bmp_cross_32x32[]; // 32x32 失败大红叉
|
||||
extern unsigned char code bmp_door_32x32[]; // 32x32 门磁大警示图
|
||||
extern unsigned char code bmp_siren_32x32[]; // 32x32 烟感喇叭大警示图
|
||||
|
||||
#endif // __LCD_H__
|
||||
|
||||
466
Drivers/rf.c
466
Drivers/rf.c
@@ -1,17 +1,17 @@
|
||||
#include "rf.h"
|
||||
#include "../App/config.h"
|
||||
#include "../App/rgb.h"
|
||||
#include "intrins.h"
|
||||
|
||||
// ATR5179 射频前端天线开关控制引脚定义
|
||||
sbit RF_TX = P2^0; // V1 控制端 (1: 选通天线到发射 TX 路径)
|
||||
sbit RF_RX = P3^7; // V2 控制端 (1: 选通天线到接收 RX 路径)
|
||||
// ATR5179 <EFBFBD><EFBFBD>Ƶǰ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>߿<EFBFBD><EFBFBD>ؿ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ŷ<EFBFBD><EFBFBD><EFBFBD>
|
||||
sbit RF_TX = P2^0; // V1 <EFBFBD><EFBFBD><EFBFBD>ƶ<EFBFBD> (1: ѡͨ<D1A1><CDA8><EFBFBD>ߵ<EFBFBD><DFB5><EFBFBD><EFBFBD><EFBFBD> TX ·<EFBFBD><EFBFBD>)
|
||||
sbit RF_RX = P3^7; // V2 <EFBFBD><EFBFBD><EFBFBD>ƶ<EFBFBD> (1: ѡͨ<D1A1><CDA8><EFBFBD>ߵ<EFBFBD><DFB5><EFBFBD><EFBFBD><EFBFBD> RX ·<EFBFBD><EFBFBD>)
|
||||
|
||||
// 射频芯片数据与电源控制引脚定义
|
||||
sbit RF_TX_DAT = P3^6; // LT4455 发射调制数据输入引脚 (DIN)
|
||||
sbit RF_RX_DATA = P2^1; // LR690L 接收解调数据输出引脚 (DATA),连接单片机中断管脚
|
||||
sbit SHUT = P2^2; // LR690L 芯片休眠控制引脚 (1:休眠,0:工作)
|
||||
// <EFBFBD><EFBFBD>ƵоƬ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>Դ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ŷ<EFBFBD><EFBFBD><EFBFBD> (<28><><EFBFBD><EFBFBD><EFBFBD>°<EFBFBD> PCB <20><><EFBFBD>ŶԵ<C5B6><D4B5><EFBFBD><EFBFBD><EFBFBD>)
|
||||
sbit RF_TX_DAT = P2^1; // LR690L <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> (DIN) - <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> Pin 22 (P2.1)
|
||||
sbit RF_RX_DATA = P3^6; // LR690L <EFBFBD><EFBFBD><EFBFBD>ս<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> (DATA) - <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> Pin 19 (P3.6)
|
||||
|
||||
// 声明外部延时及串口打印函数 (在 system.c 中定义)
|
||||
// <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ⲿ<EFBFBD><EFBFBD>ʱ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ڴ<EFBFBD>ӡ<EFBFBD><EFBFBD><EFBFBD><EFBFBD> (<28><> system.c <EFBFBD>ж<EFBFBD><EFBFBD><EFBFBD>)
|
||||
extern void Delay_us(u16 us);
|
||||
extern void Delay_ms(u16 ms);
|
||||
extern u16 GetTimer0_Safe(void);
|
||||
@@ -24,171 +24,156 @@ extern void Uart_SendHex32(u32 val);
|
||||
extern void Uart_SendByte(u8 dat);
|
||||
|
||||
/**
|
||||
* @brief 初始化无线射频芯片相关的 GPIO 引脚方向与初始状态
|
||||
* @brief <EFBFBD><EFBFBD>ʼ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ƵоƬ<EFBFBD><EFBFBD><EFBFBD>ص<EFBFBD> GPIO <20><><EFBFBD>ŷ<EFBFBD><C5B7><EFBFBD><EFBFBD><EFBFBD>״̬
|
||||
*/
|
||||
void RF_Init(void)
|
||||
{
|
||||
// 1. 配置 P2.0 (RF_TX) 和 P2.2 (SHUT) 为推挽输出模式 (M1=0, M0=1)
|
||||
// 配置 P2.1 (RF_RX_DATA) 为准双向口/输入模式 (M1=0, M0=0)
|
||||
P2M1 &= ~((1 << 0) | (1 << 1) | (1 << 2));
|
||||
P2M0 &= ~(1 << 1);
|
||||
P2M0 |= ((1 << 0) | (1 << 2));
|
||||
// EAXFR = 1 <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>չ<EFBFBD><D5B9><EFBFBD><EFBFBD>ܼĴ<DCBC><C4B4><EFBFBD> (XSFR)
|
||||
EAXFR = 1;
|
||||
|
||||
// 2. 配置 P3.6 (RF_TX_DAT) 和 P3.7 (RF_RX) 为推挽输出模式 (M1=0, M0=1)
|
||||
P3M1 &= ~((1 << 6) | (1 << 7));
|
||||
P3M0 |= ((1 << 6) | (1 << 7));
|
||||
// 1. <EFBFBD><EFBFBD><EFBFBD><EFBFBD> P2.0 (RF_TX) <20><> P2.1 (RF_TX_DAT) Ϊ<><CEAA><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ģʽ (M1=0, M0=1)
|
||||
P2M1 &= ~((1 << 0) | (1 << 1));
|
||||
P2M0 |= ((1 << 0) | (1 << 1));
|
||||
|
||||
// 3. 设置系统默认的初始电平
|
||||
RF_TX = 0; // 断开发射天线通路
|
||||
SHUT = 1; // 默认拉高 SHUT,使 LR690L 接收芯片处于低功耗休眠关闭状态
|
||||
RF_RX = 0; // 断开接收天线通路
|
||||
RF_TX_DAT = 0; // 调制发送数据线置低
|
||||
// 2. <20><><EFBFBD><EFBFBD> P3.7 (RF_RX) <20><> P3.5 (SHUT) Ϊ<><CEAA><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ģʽ (M1=0, M0=1)
|
||||
// <20><><EFBFBD><EFBFBD> P3.6 (RF_RX_DATA) Ϊ<><CEAA><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ģʽ (M1=1, M0=0)<29><>ƥ<EFBFBD><C6A5><EFBFBD><EFBFBD><EFBFBD>ս<EFBFBD><D5BD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
P3M1 &= ~((1 << 5) | (1 << 7));
|
||||
P3M1 |= (1 << 6);
|
||||
P3M0 &= ~(1 << 6);
|
||||
P3M0 |= ((1 << 5) | (1 << 7));
|
||||
|
||||
// 3. <20><><EFBFBD><EFBFBD>ϵͳĬ<CDB3>ϵij<CFB5>ʼ<EFBFBD><CABC>ƽ
|
||||
RF_TX = 0; // <20>Ͽ<EFBFBD><CFBF><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ͨ·
|
||||
SHUT = 1; // Ĭ<><C4AC><EFBFBD><EFBFBD><EFBFBD><EFBFBD> SHUT<55><54>ʹ LR690L <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>߹ر<DFB9>״̬
|
||||
RF_RX = 0; // <20>Ͽ<EFBFBD><CFBF><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ͨ·
|
||||
RF_TX_DAT = 0; // <20><><EFBFBD>Ʒ<EFBFBD><C6B7><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>õ<EFBFBD>
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 配置无线射频收发系统的运行模式与天线切换
|
||||
* @param mode 运行模式 (0-休眠隔离, 1-接收工作, 2-发射工作)
|
||||
* @brief <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ƶ<EFBFBD>շ<EFBFBD>ϵͳ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ģʽ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>л<EFBFBD>
|
||||
* @param mode <EFBFBD><EFBFBD><EFBFBD><EFBFBD>ģʽ (0-<2D><><EFBFBD>߸<EFBFBD><DFB8><EFBFBD>, 1-<2D><><EFBFBD>չ<EFBFBD><D5B9><EFBFBD>, 2-<2D><><EFBFBD>乤<EFBFBD><E4B9A4>)
|
||||
*/
|
||||
void RF_SetMode(u8 mode)
|
||||
{
|
||||
if (mode == 0) // ====== 模式 0: 休眠隔离模式 (Sleep/Idle) ======
|
||||
if (mode == 0) // ====== ģʽ 0: <EFBFBD><EFBFBD><EFBFBD>߸<EFBFBD><EFBFBD><EFBFBD>ģʽ (Sleep/Idle) ======
|
||||
{
|
||||
SHUT = 1; // 强制拉高 SHUT 引脚,使 LR690L 彻底进入低功耗待机
|
||||
RF_RX = 0; // 关闭接收天线开关,防止外界电磁杂波串入接收电路
|
||||
RF_TX = 0; // 关闭发射天线开关
|
||||
SHUT = 1; // ǿ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> SHUT <20><><EFBFBD>ţ<EFBFBD>ʹ LR690L <20><><EFBFBD><EFBFBD><D7BD><EFBFBD><EFBFBD><EFBFBD><CDB9>Ĵ<EFBFBD><C4B4><EFBFBD>
|
||||
RF_RX = 0; // <EFBFBD>رս<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>߿<EFBFBD><EFBFBD>أ<EFBFBD><EFBFBD><EFBFBD>ֹ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ӳ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>յ<EFBFBD>·
|
||||
RF_TX = 0; // <EFBFBD>رշ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>߿<EFBFBD><EFBFBD><EFBFBD>
|
||||
}
|
||||
else if (mode == 1) // ====== 模式 1: 射频接收模式 (Rx Mode) ======
|
||||
else if (mode == 1) // ====== ģʽ 1: <EFBFBD><EFBFBD><EFBFBD>չ<EFBFBD><EFBFBD><EFBFBD>ģʽ (RX Mode) ======
|
||||
{
|
||||
SHUT = 0; // 拉低 SHUT,启动并使能 LR690L 接收解调芯片工作
|
||||
RF_RX = 1; // 选通天线切换开关到 RX 路径,连通物理接收天线
|
||||
RF_TX = 0; // 断开 TX 发射路径,防止回环烧毁前端
|
||||
SHUT = 0; // <EFBFBD><EFBFBD><EFBFBD><EFBFBD> SHUT ʹ<><CAB9> LR690L оƬ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>ʼ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
RF_TX = 0; // <EFBFBD>رշ<EFBFBD><EFBFBD>俪<EFBFBD><EFBFBD>
|
||||
RF_RX = 1; // ѡͨ<EFBFBD><EFBFBD><EFBFBD>ߵ<EFBFBD> RX <20><><EFBFBD><EFBFBD>·<EFBFBD><C2B7><EFBFBD><EFBFBD>ʹ<EFBFBD>ܽ<EFBFBD><DCBD><EFBFBD><EFBFBD><EFBFBD>·<EFBFBD><C2B7>Ƶ<EFBFBD>Ŵ<EFBFBD>
|
||||
}
|
||||
else if (mode == 2) // ====== 模式 2: 射频发射模式 (Tx Mode) ======
|
||||
else if (mode == 2) // ====== ģʽ 2: <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>乤<EFBFBD><EFBFBD>ģʽ (TX Mode) ======
|
||||
{
|
||||
SHUT = 1; // 关闭 LR690L 接收芯片,避免发射大功率波形串入接收机
|
||||
RF_RX = 0; // 断开接收路径天线
|
||||
RF_TX = 1; // 选通天线切换开关至 TX 路径,连通物理天线进行发射
|
||||
SHUT = 1; // <EFBFBD><EFBFBD><EFBFBD>ջ<EFBFBD>ͣ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ֹ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>ǿ<EFBFBD>źŶ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ǰ<EFBFBD><EFBFBD>
|
||||
RF_RX = 0; // <EFBFBD>رս<EFBFBD><EFBFBD>տ<EFBFBD><EFBFBD><EFBFBD>
|
||||
RF_TX = 1; // ѡͨ<EFBFBD><EFBFBD><EFBFBD>ߵ<EFBFBD> TX <20><><EFBFBD><EFBFBD>·<EFBFBD><C2B7><EFBFBD><EFBFBD>ʹ<EFBFBD><CAB9><EFBFBD><EFBFBD><EFBFBD>߷<EFBFBD><DFB7><EFBFBD>
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 按 EV1527 载波规范单次调制发送一帧 24 位无线射频数据
|
||||
* @param addr 20 位的发射地址编码
|
||||
* @param dat 4 位的命令状态码
|
||||
* @details EV1527 是常见的无线编码格式:
|
||||
* - 一个基本脉冲周期设为 T ≈ 320us。
|
||||
* - 同步头脉冲: 1T 高电平 (320us) + 31T 低电平 (9920us)。
|
||||
* - 数据位 '1' (逻辑1) 编码: 3T 高电平 (960us) + 1T 低电平 (320us)。
|
||||
* - 数据位 '0' (逻辑0) 编码: 1T 高电平 (320us) + 3T 低电平 (960us)。
|
||||
* @brief <EFBFBD><EFBFBD><EFBFBD><EFBFBD> EV1527 Э<EFBFBD>鵥<EFBFBD>ε<EFBFBD><EFBFBD>Ʒ<EFBFBD><EFBFBD><EFBFBD>һ֡ 24 λ<><CEBB>Ƶ<EFBFBD><C6B5><EFBFBD><EFBFBD> (Sync + 24bit Data)
|
||||
*/
|
||||
void EV1527_TxFrame(u32 addr, u8 dat)
|
||||
{
|
||||
u8 i;
|
||||
u32 tx_val;
|
||||
|
||||
// ====== 1. 发送同步引导脉冲 ======
|
||||
RF_TX_DAT = 1;
|
||||
Delay_us(320); // 1T 高电平
|
||||
RF_TX_DAT = 0;
|
||||
Delay_us(9920); // 31T 低电平
|
||||
// <EFBFBD>ϲ<EFBFBD> 20 λ<><CEBB><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ַ<EFBFBD><D6B7> 4 λ<><CEBB><EFBFBD><EFBFBD><EFBFBD>룬<EFBFBD><EBA3AC><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> 24 λ<>ز<EFBFBD><D8B2><EFBFBD>
|
||||
tx_val = (addr << 4) | (dat & 0x0F);
|
||||
|
||||
// ====== 2. 依次调制发送 20 位物理地址码 (高位 MSB 优先发送) ======
|
||||
for (i = 0; i < 20; i++)
|
||||
{
|
||||
if ((addr >> (19 - i)) & 1)
|
||||
{
|
||||
// 数据 bit 1: 3T高 + 1T低
|
||||
// 1. ͬ<><CDAC>ͷ<EFBFBD><CDB7><EFBFBD>ͣ<EFBFBD><CDA3>ߵ<EFBFBD>ƽ<EFBFBD><C6BD><EFBFBD><EFBFBD> 1T (Լ 350us)<29><><EFBFBD>͵<EFBFBD>ƽ<EFBFBD><C6BD><EFBFBD><EFBFBD> 31T (Լ 10850us)
|
||||
RF_TX_DAT = 1;
|
||||
Delay_us(960);
|
||||
Delay_us(350);
|
||||
RF_TX_DAT = 0;
|
||||
Delay_us(320);
|
||||
Delay_us(10850);
|
||||
|
||||
// 2. <20><><EFBFBD>ε<EFBFBD><CEB5>Ʒ<EFBFBD><C6B7><EFBFBD> 24 λ<><CEBB><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>λ
|
||||
for (i = 0; i < 24; i++)
|
||||
{
|
||||
if (tx_val & (0x800000UL >> i))
|
||||
{
|
||||
// <20><><EFBFBD><EFBFBD> "1"<22><><EFBFBD>ߵ<EFBFBD>ƽ<EFBFBD><C6BD><EFBFBD><EFBFBD> 3T (1050us)<29><><EFBFBD>͵<EFBFBD>ƽ<EFBFBD><C6BD><EFBFBD><EFBFBD> 1T (350us)
|
||||
RF_TX_DAT = 1;
|
||||
Delay_us(1050);
|
||||
RF_TX_DAT = 0;
|
||||
Delay_us(350);
|
||||
}
|
||||
else
|
||||
{
|
||||
// 数据 bit 0: 1T高 + 3T低
|
||||
// <EFBFBD><EFBFBD><EFBFBD><EFBFBD> "0"<22><><EFBFBD>ߵ<EFBFBD>ƽ<EFBFBD><C6BD><EFBFBD><EFBFBD> 1T (350us)<29><><EFBFBD>͵<EFBFBD>ƽ<EFBFBD><C6BD><EFBFBD><EFBFBD> 3T (1050us)
|
||||
RF_TX_DAT = 1;
|
||||
Delay_us(320);
|
||||
Delay_us(350);
|
||||
RF_TX_DAT = 0;
|
||||
Delay_us(960);
|
||||
}
|
||||
}
|
||||
|
||||
// ====== 3. 依次调制发送 4 位指令状态数据码 (高位 MSB 优先) ======
|
||||
for (i = 0; i < 4; i++)
|
||||
{
|
||||
if ((dat >> (3 - i)) & 1)
|
||||
{
|
||||
// 数据 bit 1: 3T高 + 1T低
|
||||
RF_TX_DAT = 1;
|
||||
Delay_us(960);
|
||||
RF_TX_DAT = 0;
|
||||
Delay_us(320);
|
||||
}
|
||||
else
|
||||
{
|
||||
// 数据 bit 0: 1T高 + 3T低
|
||||
RF_TX_DAT = 1;
|
||||
Delay_us(320);
|
||||
RF_TX_DAT = 0;
|
||||
Delay_us(960);
|
||||
Delay_us(1050);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 循环发射多帧无线 EV1527 信号以保证数据通信的完整性
|
||||
* @param addr 20位源地址
|
||||
* @param dat 4位命令码
|
||||
* @brief <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>η<EFBFBD><EFBFBD><EFBFBD> EV1527 <20><>Ƶ֡<C6B5><D6A1><EFBFBD><EFBFBD>ֹ<EFBFBD><D6B9>֡<EFBFBD><D6A1>ʧ
|
||||
*/
|
||||
void EV1527_Transmit(u32 addr, u8 dat)
|
||||
{
|
||||
u8 r;
|
||||
// 循环发射 25 次相同的射频帧 (累计耗时约 340 毫秒),抵御外界瞬间同频杂波干扰
|
||||
for (r = 0; r < 25; r++)
|
||||
u8 i;
|
||||
RF_SetMode(2); // <20>л<EFBFBD>Ϊ<EFBFBD><CEAA><EFBFBD><EFBFBD>״̬<D7B4><CCAC><EFBFBD><EFBFBD>ͨ<EFBFBD><CDA8><EFBFBD>俪<EFBFBD>ز<EFBFBD><D8B2><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ն<EFBFBD>
|
||||
Delay_ms(5); // <20>ȶ<EFBFBD><C8B6><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ƶͨ·
|
||||
|
||||
// ѭ<><D1AD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> 10 ֡<><D6A1>ȷ<EFBFBD><C8B7><EFBFBD><EFBFBD><EFBFBD>ն<EFBFBD><D5B6><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> 1 ֡<><D6A1><EFBFBD><EFBFBD><DEB2><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
for (i = 0; i < 10; i++)
|
||||
{
|
||||
EV1527_TxFrame(addr, dat);
|
||||
Delay_ms(10); // ֡<>䱣<EFBFBD><E4B1A3><EFBFBD><EFBFBD>ʱ
|
||||
}
|
||||
|
||||
RF_TX_DAT = 0; // <20><><EFBFBD>㷢<EFBFBD><E3B7A2><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
RF_SetMode(1); // <20><><EFBFBD>»ָ<C2BB>Ϊ<EFBFBD><CEAA><EFBFBD>ռ<EFBFBD><D5BC><EFBFBD><EFBFBD><EFBFBD>̬<EFBFBD><CCAC><EFBFBD>Ա<EFBFBD><D4B1><EFBFBD><EFBFBD>ⷴ<EFBFBD><E2B7B4>
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 使用定时器 0 (Timer0) 高精度的测量引脚指定电平状态的持续宽度时间
|
||||
* @param state 待测电平状态 (1-测量高电平持续宽度, 0-测量低电平持续宽度)
|
||||
* @param timeout_us 最大等待超时微秒数上限,超时自动退出防锁死
|
||||
* @return u16 最终测量的实际电平持续微秒数。若发生超时则直接返回 0。
|
||||
* @brief <EFBFBD><EFBFBD>ȡ<EFBFBD>ض<EFBFBD><EFBFBD><EFBFBD>ƽ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>״̬<EFBFBD>ij<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ʱ<EFBFBD><EFBFBD> (<28><><EFBFBD><EFBFBD> Timer0 Ӳ<><D3B2><EFBFBD><EFBFBD><EFBFBD><EFBFBD>)
|
||||
*/
|
||||
u16 GetPulseDuration(u8 state, u16 timeout_us)
|
||||
{
|
||||
// 根据系统晶振频率计算在 12T 模式下目标超时的 Timer0 Tick 数值上限
|
||||
u16 timeout_ticks = (u16)((u32)timeout_us * (MAIN_Fosc / 1000000UL) / 12UL);
|
||||
TL0 = 0; // 定时器 0 计数值清零
|
||||
TH0 = 0;
|
||||
TR0 = 1; // 启动定时器 0 硬件计数
|
||||
u16 timeout_ticks;
|
||||
|
||||
// 轮询引脚:只要电平仍旧等于目标待测状态,就继续保持循环
|
||||
// ǿ<EFBFBD>ƹر<EFBFBD> Timer0 <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ֵ<EFBFBD><D6B5><EFBFBD>㸴λ
|
||||
TR0 = 0;
|
||||
TMOD &= 0xF0; // <20><><EFBFBD><EFBFBD> Timer0 <20>Ĵ<EFBFBD><C4B4><EFBFBD>Ϊģʽ 0 (16λ<36>Զ<EFBFBD><D4B6><EFBFBD><EFBFBD><EFBFBD>)
|
||||
TL0 = 0x00;
|
||||
TH0 = 0x00;
|
||||
|
||||
// <20><><EFBFBD><EFBFBD> 16 λ<><CEBB>ʱ<EFBFBD><CAB1><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> ticks <20><>ʱֵ (<28><> 1T ģʽ 24MHz <20>£<EFBFBD>1 Tick = 1 / 24M = 0.0416us)
|
||||
// <20><><EFBFBD><EFBFBD>ϵͳ Timer0 Ĭ<><C4AC><EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ϊ 12T ģʽ (1 Tick = 12 / 24MHz = 0.5us)
|
||||
timeout_ticks = (u16)((u32)timeout_us * (MAIN_Fosc / 1000000UL) / 12UL);
|
||||
|
||||
TR0 = 1; // <20><><EFBFBD><EFBFBD> Timer0 Ӳ<><D3B2><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
|
||||
// <20><><EFBFBD><EFBFBD>Ҫ<EFBFBD><D2AA><EFBFBD><EFBFBD><EFBFBD>ĵ<EFBFBD>ƽ״̬<D7B4><CCAC><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>жϣ<D0B6>ֱ<EFBFBD><D6B1><EFBFBD><EFBFBD>ƽ<EFBFBD><C6BD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ת<EFBFBD><D7AA><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ʱ
|
||||
while (RF_RX_DATA == state)
|
||||
{
|
||||
// 软件防卡死判定:如果当前计数值超过了设定的最大允许超时 Tick 值
|
||||
if (GetTimer0_Safe() > timeout_ticks)
|
||||
{
|
||||
TR0 = 0; // 关断定时器
|
||||
return 0; // 判定超时,返回 0
|
||||
TR0 = 0;
|
||||
return 0; // <EFBFBD>ж<EFBFBD><EFBFBD><EFBFBD>ʱ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> 0
|
||||
}
|
||||
}
|
||||
TR0 = 0; // 关断定时器
|
||||
TR0 = 0; // <EFBFBD>ض϶<EFBFBD>ʱ<EFBFBD><EFBFBD>
|
||||
|
||||
// 将最终读取的 Timer0 硬件 Tick 数值,重新换算成微秒数返回 (1 Tick = 12 / 24MHz = 0.5us)
|
||||
return (u16)((u32)GetTimer0_Safe() * 12UL / (MAIN_Fosc / 1000000UL));
|
||||
}
|
||||
|
||||
// ģ<><C4A3><EFBFBD><EFBFBD>Ƶ<EFBFBD>ź<EFBFBD>ȫ<EFBFBD>ֱ<EFBFBD><D6B1><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
volatile u32 mock_rx_addr = 0;
|
||||
volatile u8 mock_rx_data = 0;
|
||||
volatile bit mock_rf_ready = 0;
|
||||
|
||||
/**
|
||||
* @brief 软件自适应解码接收一帧无线 EV1527 信号
|
||||
* @param out_addr 解码成功后,用于回传物理地址高 20 位的指针
|
||||
* @param out_data 解码成功后,用于回传指令数据低 4 位的指针
|
||||
* @return bit 1-解码成功且校验通过,0-捕获失败或脉冲畸变
|
||||
* @note 核心算法:
|
||||
* 1. 等待并寻找合法的同步引导头脉冲 (1T高电平 + 31T低电平,其中低/高比率约为 31,本程序允许比率在 15~48 内变化以抗物理畸变)。
|
||||
* 2. 依据捕获的同步低电平宽度估算基准周期 T = low_time / 31。
|
||||
* 3. 随后依次高精度捕获 24 个数据位的高电平和低电平时间。
|
||||
* 4. 自适应决策:对于每个 bit,如果其高电平时间 raw_h > 低电平时间 raw_l,则判定该位为 1;否则判定该位为 0。
|
||||
* @brief <EFBFBD><EFBFBD><EFBFBD><EFBFBD>ʽ<EFBFBD><EFBFBD><EFBFBD>Ⲣ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>һ<EFBFBD><EFBFBD><EFBFBD>Ϸ<EFBFBD><EFBFBD><EFBFBD> EV1527 <20><>Ƶ<EFBFBD>ź<EFBFBD><C5BA><EFBFBD><EFBFBD><EFBFBD>֡
|
||||
*/
|
||||
bit EV1527_Decode(u32 *out_addr, u8 *out_data)
|
||||
{
|
||||
@@ -197,229 +182,156 @@ bit EV1527_Decode(u32 *out_addr, u8 *out_data)
|
||||
u32 addr = 0;
|
||||
u8 dat = 0;
|
||||
u16 T;
|
||||
u16 idata raw_h[24]; // 高电平时间寄存数组 (置于 idata 区)
|
||||
u16 idata raw_l[24]; // 低电平时间寄存数组
|
||||
u16 idata raw_h[24];
|
||||
u16 idata raw_l[24];
|
||||
|
||||
// ====== 1. 同步头引导脉冲捕获 (定位上升沿) ======
|
||||
// <EFBFBD><EFBFBD><EFBFBD><EFBFBD>ģ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ƶ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
if (mock_rf_ready) {
|
||||
mock_rf_ready = 0;
|
||||
*out_addr = mock_rx_addr;
|
||||
*out_data = mock_rx_data;
|
||||
return 1;
|
||||
}
|
||||
|
||||
// ====== 1. ͬ<><CDAC>ͷ<EFBFBD><CDB7><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>岶<EFBFBD><E5B2B6> ======
|
||||
{
|
||||
u16 wait_cnt = 0;
|
||||
// 如果当前射频解调输出是高电平,等待其变低
|
||||
while (RF_RX_DATA == 1)
|
||||
{
|
||||
Delay_us(5);
|
||||
wait_cnt++;
|
||||
if (wait_cnt > 2000) // 10 毫秒超时保护
|
||||
if (wait_cnt > 2000) // 10 <EFBFBD><EFBFBD><EFBFBD>볬ʱ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
return 0;
|
||||
}
|
||||
|
||||
// 当引脚维持在低电平后,阻塞等待它跳变为高电平(捕获到同步引导信号的上升沿)
|
||||
wait_cnt = 0;
|
||||
while (RF_RX_DATA == 0)
|
||||
{
|
||||
Delay_us(5);
|
||||
wait_cnt++;
|
||||
if (wait_cnt > 4000) // 20 毫秒超时保护
|
||||
if (wait_cnt > 4000) // 20 <EFBFBD><EFBFBD><EFBFBD>볬ʱ<EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
return 0;
|
||||
}
|
||||
}
|
||||
|
||||
// 捕获引导头高电平时间 (放宽测量阈值上限至 2500 微秒)
|
||||
// <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ͷ<EFBFBD>ߵ<EFBFBD>ƽʱ<EFBFBD><EFBFBD>
|
||||
high_time = GetPulseDuration(1, 2500);
|
||||
if (high_time < 50 || high_time > 2500) {
|
||||
if (high_time > 10) { // 剔除高频毛刺噪声,防止调试串口满载
|
||||
Uart_SendString("Sync H Err: ");
|
||||
Uart_SendHex16(high_time);
|
||||
Uart_SendString("us\r\n");
|
||||
}
|
||||
return 0;
|
||||
}
|
||||
|
||||
// 捕获引导头后续的 31T 低电平时间 (设定上限 60 毫秒)
|
||||
// <EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ͷ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> 31T <20>͵<EFBFBD>ƽʱ<C6BD><CAB1>
|
||||
low_time = GetPulseDuration(0, 60000);
|
||||
if (low_time < 1500 || low_time > 60000) {
|
||||
Uart_SendString("Sync L Err H=");
|
||||
Uart_SendHex16(high_time);
|
||||
Uart_SendString(" L=");
|
||||
Uart_SendHex16(low_time);
|
||||
Uart_SendString("us\r\n");
|
||||
return 0;
|
||||
}
|
||||
|
||||
// 计算低电平与高电平的比值,以检验是否满足 EV1527 的 31:1 特征
|
||||
{
|
||||
u32 ratio = (u32)low_time / high_time;
|
||||
if (ratio < 15 || ratio > 48) { // 允许 50% 左右的空气无线传输畸变误差
|
||||
Uart_SendString("Sync Ratio Err H=");
|
||||
Uart_SendHex16(high_time);
|
||||
Uart_SendString(" L=");
|
||||
Uart_SendHex16(low_time);
|
||||
Uart_SendString(" R=");
|
||||
Uart_SendHex16((u16)ratio);
|
||||
Uart_SendString("\r\n");
|
||||
return 0;
|
||||
}
|
||||
}
|
||||
// ͬ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ļ<EFBFBD>ʱ<EFBFBD><EFBFBD> T <20><><EFBFBD><EFBFBD> (<28><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ߵ<EFBFBD>ƽ<EFBFBD><C6BD><EFBFBD>ȼ<EFBFBD>Ϊ 1T)
|
||||
T = high_time;
|
||||
if (T < 100 || T > 800) return 0; // <20><><EFBFBD><EFBFBD>Ӧ<EFBFBD><D3A6>Χ<EFBFBD><EFBFBD>: 100us ~ 800us
|
||||
|
||||
// 自适应估算出基准脉冲时值 T
|
||||
T = low_time / 31;
|
||||
if (T == 0) T = 1; // 零安全防护
|
||||
|
||||
// ====== 2. 依次采集接下来的 24 个数据 bit 脉冲 ======
|
||||
// ====== 2. <20><><EFBFBD>ν<EFBFBD><CEBD><EFBFBD> 24 <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD>λ<EFBFBD><CEBB><EFBFBD><EFBFBD> ======
|
||||
for (i = 0; i < 24; i++)
|
||||
{
|
||||
u16 wait_cnt = 0;
|
||||
// 等待下一个数据位跳变产生的上升沿 (低电平变高)
|
||||
while (RF_RX_DATA == 0)
|
||||
{
|
||||
Delay_us(5);
|
||||
wait_cnt++;
|
||||
if (wait_cnt > 1000) // 5ms 超时判定,防无线信号中断卡死
|
||||
{
|
||||
return 0; // 捕获失败
|
||||
}
|
||||
}
|
||||
raw_h[i] = GetPulseDuration(1, 2000);
|
||||
if (raw_h[i] == 0) return 0;
|
||||
|
||||
// 精密测算本位的高电平与低电平宽度
|
||||
raw_h[i] = GetPulseDuration(1, 5000);
|
||||
if (raw_h[i] == 0) return 0; // 超时错误直接退出
|
||||
|
||||
raw_l[i] = GetPulseDuration(0, 5000);
|
||||
raw_l[i] = GetPulseDuration(0, 2000);
|
||||
if (raw_l[i] == 0) return 0;
|
||||
}
|
||||
|
||||
// ====== 3. 串口输出捕获的时序参数 ======
|
||||
Uart_SendString("Captured: Sync H=");
|
||||
Uart_SendHex16(high_time);
|
||||
Uart_SendString("us, L=");
|
||||
Uart_SendHex16(low_time);
|
||||
Uart_SendString("us, T=");
|
||||
Uart_SendHex16(T);
|
||||
Uart_SendString("us\r\n");
|
||||
|
||||
// ====== 4. 自适应决策:组合成 24 位完整射频数据帧 ======
|
||||
// ====== 3. ˫<EFBFBD>˱<EFBFBD>ֵ<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ж<EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> ======
|
||||
for (i = 0; i < 24; i++)
|
||||
{
|
||||
// 比较本位高低电平持续宽度:
|
||||
// 如果高电平大于低电平,说明宽脉冲在高,判定该位为 1 (3T高+1T低)。
|
||||
// 否则高电平短,判定为 0 (1T高+3T低)。
|
||||
if (raw_h[i] > raw_l[i])
|
||||
u16 total = raw_h[i] + raw_l[i];
|
||||
if (total < T * 3 || total > T * 6) return 0; // <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>λ<EFBFBD><CEBB><EFBFBD>ڱ<EFBFBD><DAB1><EFBFBD><EFBFBD><EFBFBD> 3T~6T ֮<><D6AE>
|
||||
|
||||
if (raw_h[i] > raw_l[i] * 2)
|
||||
{
|
||||
addr = (addr << 1) | 1; // 写入 24 位物理地址与状态数据相结合的最终值
|
||||
}
|
||||
// <20>ߵ<EFBFBD>ƽ<EFBFBD><C6BD><EFBFBD>Գ<EFBFBD><D4B3>ڵ͵<DAB5>ƽ<EFBFBD><C6BD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> "1"
|
||||
if (i < 20)
|
||||
addr = (addr << 1) | 1;
|
||||
else
|
||||
dat = (dat << 1) | 1;
|
||||
}
|
||||
else if (raw_l[i] > raw_h[i] * 2)
|
||||
{
|
||||
// <20>͵<EFBFBD>ƽ<EFBFBD><C6BD><EFBFBD>Գ<EFBFBD><D4B3>ڸߵ<DAB8>ƽ<EFBFBD><C6BD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD> "0"
|
||||
if (i < 20)
|
||||
addr = (addr << 1);
|
||||
}
|
||||
}
|
||||
|
||||
*out_addr = addr; // 输出包含状态数据的 24 位完整射频编码作为传感器唯一 ID
|
||||
*out_data = (u8)(addr & 0x0F); // 输出低 4 位作为指令/状态,保持调用兼容性
|
||||
|
||||
// 串口打印解码最终结果
|
||||
Uart_SendString("Decoded 24bit ADDR: 0x");
|
||||
Uart_SendHex32(addr);
|
||||
Uart_SendString("\r\n");
|
||||
|
||||
return 1; // 成功解析
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 软硬件环路自检回环测试
|
||||
* @details 将发射引脚置位并同时采样接收引脚,用于测试收发芯片控制连通性。
|
||||
*/
|
||||
void Loopback_Test(void)
|
||||
{
|
||||
u16 match_count = 0;
|
||||
u16 i;
|
||||
|
||||
SHUT = 0; // 强行开启接收芯片供电
|
||||
RF_RX = 1; // 选通天线到 RX
|
||||
RF_TX = 0; // 发送引脚隔离
|
||||
Delay_ms(100);
|
||||
|
||||
Uart_SendString("Starting RF Loopback Self-Test...\r\n");
|
||||
|
||||
// 高频翻转模拟发送引脚,同步读取接收解调出的管脚信号,统计匹配率
|
||||
for (i = 0; i < 100; i++)
|
||||
{
|
||||
RF_TX_DAT = 1;
|
||||
Delay_us(500);
|
||||
if (RF_RX_DATA == 1) match_count++;
|
||||
|
||||
RF_TX_DAT = 0;
|
||||
Delay_us(500);
|
||||
if (RF_RX_DATA == 0) match_count++;
|
||||
}
|
||||
|
||||
Uart_SendString("Loopback Match Count: ");
|
||||
Uart_SendHex16(match_count);
|
||||
Uart_SendString("/200\r\n");
|
||||
|
||||
if (match_count > 150)
|
||||
{
|
||||
Uart_SendString("Result: PASS! Transmitter is emitting RF, and Receiver is picking it up!\r\n");
|
||||
else
|
||||
dat = (dat << 1);
|
||||
}
|
||||
else
|
||||
{
|
||||
Uart_SendString("Result: FAIL! No RF signal detected. Check hardware.\r\n");
|
||||
return 0; // <20><>ƽ<EFBFBD><C6BD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ֵ<EFBFBD><D6B5><EFBFBD>Ϲ棬<CFB9>ж<EFBFBD><D0B6><EFBFBD><EFBFBD><EFBFBD>֡<EFBFBD><D6A1><EFBFBD>䣬<EFBFBD><E4A3AC><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
}
|
||||
}
|
||||
|
||||
SHUT = 1; // 关闭接收芯片
|
||||
RF_RX = 0; // 断开接收通道
|
||||
// У<><D0A3><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
*out_addr = addr;
|
||||
*out_data = dat;
|
||||
return 1;
|
||||
}
|
||||
|
||||
/**
|
||||
* @brief 统计接收引脚在 5 秒内的电平翻转次数,用以评估物理噪声污染度或管脚短路
|
||||
* @brief RF <20>շ<EFBFBD><D5B7><EFBFBD><EFBFBD>ϲ<EFBFBD><CFB2>Թ<EFBFBD><D4B9><EFBFBD> (֧<>ַ<EFBFBD><D6B7><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ռ<EFBFBD><D5BC><EFBFBD><EFBFBD><EFBFBD>ӡ)
|
||||
*/
|
||||
void RF_Test_Pin(void)
|
||||
void RF_DiagnosticMode(char choice)
|
||||
{
|
||||
if (choice == 't')
|
||||
{
|
||||
u8 i;
|
||||
u16 j;
|
||||
u16 transitions = 0;
|
||||
bit last_state = RF_RX_DATA;
|
||||
Uart_SendString("=== RF TX Test: Transmitting 20 test frames... ===\r\n");
|
||||
// <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ģʽ<C4A3><CABD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>߿<EFBFBD><DFBF><EFBFBD>
|
||||
RF_SetMode(2);
|
||||
Delay_ms(5);
|
||||
|
||||
Uart_SendString("=== RF RX Pin Data Test Start (5 seconds) ===\r\n");
|
||||
Uart_SendString("SHUT pin state: ");
|
||||
Uart_SendByte(SHUT ? '1' : '0');
|
||||
for (i = 0; i < 20; i++)
|
||||
{
|
||||
// <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ͳ<EFBFBD><CDB2><EFBFBD><D4B0><EFBFBD>ÿ<EFBFBD>η<EFBFBD><CEB7>Ͱ<EFBFBD><CDB0><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ָʾ<D6B8><CABE><EFBFBD><EFBFBD>˸
|
||||
MOTOR = 1;
|
||||
RGB_Send(0, 150, 0, 0, 150, 0); // <20>̹<EFBFBD><CCB9><EFBFBD>˸
|
||||
EV1527_TxFrame(0x37A86UL, 0x01);
|
||||
MOTOR = 0;
|
||||
RGB_Send(0, 0, 0, 0, 0, 0);
|
||||
|
||||
Delay_ms(150); // ֡<><D6A1><EFBFBD><EFBFBD>
|
||||
}
|
||||
RF_TX_DAT = 0;
|
||||
RF_SetMode(1); // <20><><EFBFBD>»ָ<C2BB><D6B8><EFBFBD><EFBFBD><EFBFBD>ģʽ
|
||||
Uart_SendString("[RF] Transmit Done!\r\n");
|
||||
}
|
||||
else if (choice == 'r')
|
||||
{
|
||||
u16 wait_ms;
|
||||
u32 rx_addr;
|
||||
u8 rx_data;
|
||||
|
||||
Uart_SendString("=== RF RX Test: Listening for 5 seconds... ===\r\n");
|
||||
RF_SetMode(1); // <20><><EFBFBD>ý<EFBFBD><C3BD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ģʽ<C4A3><CABD>ʹ<EFBFBD><CAB9><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
Delay_ms(10);
|
||||
|
||||
// 5<><35><EFBFBD>ķ<EFBFBD><C4B7><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
for (wait_ms = 0; wait_ms < 5000; wait_ms++)
|
||||
{
|
||||
if (EV1527_Decode(&rx_addr, &rx_data))
|
||||
{
|
||||
Uart_SendString("[RF] Decoded successfully! Addr: 0x");
|
||||
Uart_SendHex32(rx_addr);
|
||||
Uart_SendString(", Cmd/Data: ");
|
||||
Uart_SendHex8(rx_data);
|
||||
Uart_SendString("\r\n");
|
||||
|
||||
// 强制设为接收模式
|
||||
RF_SetMode(1);
|
||||
// <20>յ<EFBFBD><D5B5>źź<C5BA><C5BA><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><F0B6AFB2><EFBFBD><EFBFBD><EFBFBD>ɫ<EFBFBD><C9AB><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
|
||||
MOTOR = 1;
|
||||
RGB_Send(0, 150, 150, 0, 150, 150);
|
||||
Delay_ms(100);
|
||||
|
||||
Uart_SendString("SHUT pin state (after RF_SetMode(1)): ");
|
||||
Uart_SendByte(SHUT ? '1' : '0');
|
||||
Uart_SendString("\r\n");
|
||||
Uart_SendString("Please trigger your 433MHz transmitter now...\r\n");
|
||||
|
||||
// 连续进行 5 秒的高频电平抖动采样
|
||||
for (i = 0; i < 5; i++)
|
||||
{
|
||||
transitions = 0;
|
||||
// 1秒循环
|
||||
for (j = 0; j < 1000; j++)
|
||||
{
|
||||
u8 k;
|
||||
// 每次内循环进行 5 次采样,每次间隔 200us
|
||||
for (k = 0; k < 5; k++)
|
||||
{
|
||||
bit current_state = RF_RX_DATA;
|
||||
if (current_state != last_state)
|
||||
{
|
||||
transitions++; // 统计电平边沿翻转次数
|
||||
last_state = current_state;
|
||||
MOTOR = 0;
|
||||
RGB_Send(0, 0, 0, 0, 0, 0);
|
||||
}
|
||||
Delay_us(200);
|
||||
Delay_ms(1);
|
||||
}
|
||||
Uart_SendString("=== RF RX Test End ===\r\n");
|
||||
}
|
||||
}
|
||||
|
||||
// 输出本秒的电平跳转总数,若非发射期该数值很大,表明空中有丰富噪声噪底跳变,属接收机正常表现
|
||||
Uart_SendString("Sampling... Transitions in last 1s: ");
|
||||
Uart_SendHex16(transitions);
|
||||
Uart_SendString(", current pin value: ");
|
||||
Uart_SendByte(RF_RX_DATA ? '1' : '0');
|
||||
Uart_SendString("\r\n");
|
||||
}
|
||||
|
||||
Uart_SendString("=== RF Pin Test End ===\r\n");
|
||||
}
|
||||
|
||||
11
Drivers/rf.h
11
Drivers/rf.h
@@ -52,18 +52,13 @@ u16 GetPulseDuration(u8 state, u16 timeout_us);
|
||||
* @param out_addr 输出参数指针:若解码成功,将写入解析得到的 20 位发送地址 (即 24 位帧除去 4 位数据位后的剩余高 20 位)
|
||||
* @param out_data 输出参数指针:若解码成功,将写入解析出的 4 位命令状态数据码 (例如报警/SOS等)
|
||||
* @return bit 1-成功解析出一帧有效数据;0-当前未捕获到合法脉冲或校验失败
|
||||
* @note 此函数通过对 P2.1 (RF_RX_DATA) 输入脉冲宽度进行软件精密测量,定位同步头,依次采集 24 个数据位,并进行 3 次重复性去噪校验。
|
||||
* @note 此函数通过对 P3.6 (RF_RX_DATA) 输入脉冲宽度进行软件精密测量,定位同步头,依次采集 24 个数据位,并进行 3 次重复性去噪校验。
|
||||
*/
|
||||
bit EV1527_Decode(u32 *out_addr, u8 *out_data);
|
||||
|
||||
/**
|
||||
* @brief 串口与射频功能的回环测试函数 (调试使用)
|
||||
* @brief RF 收发诊断测试功能 (支持发送与接收监听打印)
|
||||
*/
|
||||
void Loopback_Test(void);
|
||||
|
||||
/**
|
||||
* @brief 射频控制引脚的高低电平输出极性测试 (硬件排查使用)
|
||||
*/
|
||||
void RF_Test_Pin(void);
|
||||
void RF_DiagnosticMode(char choice);
|
||||
|
||||
#endif // __RF_H__
|
||||
|
||||
@@ -1 +0,0 @@
|
||||
{"hostname":"DESKTOP-0S8JI7H","username":"xtell"}
|
||||
@@ -1 +0,0 @@
|
||||
{"hostname":"DESKTOP-0S8JI7H","username":"xtell"}
|
||||
296
wristband.uvopt
296
wristband.uvopt
@@ -1,296 +0,0 @@
|
||||
<?xml version="1.0" encoding="UTF-8" standalone="no" ?>
|
||||
<ProjectOpt xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:noNamespaceSchemaLocation="project_opt.xsd">
|
||||
|
||||
<SchemaVersion>1.0</SchemaVersion>
|
||||
|
||||
<Header>### uVision Project, (C) Keil Software</Header>
|
||||
|
||||
<Extensions>
|
||||
<cExt>*.c</cExt>
|
||||
<aExt>*.s*; *.src; *.a*</aExt>
|
||||
<oExt>*.obj; *.o</oExt>
|
||||
<lExt>*.lib</lExt>
|
||||
<tExt>*.txt; *.h; *.inc; *.md</tExt>
|
||||
<pExt>*.plm</pExt>
|
||||
<CppX>*.cpp</CppX>
|
||||
<nMigrate>0</nMigrate>
|
||||
</Extensions>
|
||||
|
||||
<DaveTm>
|
||||
<dwLowDateTime>0</dwLowDateTime>
|
||||
<dwHighDateTime>0</dwHighDateTime>
|
||||
</DaveTm>
|
||||
|
||||
<Target>
|
||||
<TargetName>Wristband</TargetName>
|
||||
<ToolsetNumber>0x1</ToolsetNumber>
|
||||
<ToolsetName>MCS-251</ToolsetName>
|
||||
<TargetOption>
|
||||
<CLK251>35000000</CLK251>
|
||||
<OPTTT>
|
||||
<gFlags>1</gFlags>
|
||||
<BeepAtEnd>1</BeepAtEnd>
|
||||
<RunSim>1</RunSim>
|
||||
<RunTarget>0</RunTarget>
|
||||
<RunAbUc>0</RunAbUc>
|
||||
</OPTTT>
|
||||
<OPTHX>
|
||||
<HexSelection>1</HexSelection>
|
||||
<FlashByte>65535</FlashByte>
|
||||
<HexRangeLowAddress>0</HexRangeLowAddress>
|
||||
<HexRangeHighAddress>0</HexRangeHighAddress>
|
||||
<HexOffset>0</HexOffset>
|
||||
</OPTHX>
|
||||
<OPTLEX>
|
||||
<PageWidth>120</PageWidth>
|
||||
<PageLength>65</PageLength>
|
||||
<TabStop>8</TabStop>
|
||||
<ListingPath>.\Build\</ListingPath>
|
||||
</OPTLEX>
|
||||
<ListingPage>
|
||||
<CreateCListing>1</CreateCListing>
|
||||
<CreateAListing>1</CreateAListing>
|
||||
<CreateLListing>1</CreateLListing>
|
||||
<CreateIListing>0</CreateIListing>
|
||||
<AsmCond>1</AsmCond>
|
||||
<AsmSymb>1</AsmSymb>
|
||||
<AsmXref>0</AsmXref>
|
||||
<CCond>1</CCond>
|
||||
<CCode>0</CCode>
|
||||
<CListInc>0</CListInc>
|
||||
<CSymb>0</CSymb>
|
||||
<LinkerCodeListing>0</LinkerCodeListing>
|
||||
</ListingPage>
|
||||
<OPTXL>
|
||||
<LMap>1</LMap>
|
||||
<LComments>1</LComments>
|
||||
<LGenerateSymbols>1</LGenerateSymbols>
|
||||
<LLibSym>1</LLibSym>
|
||||
<LLines>1</LLines>
|
||||
<LLocSym>1</LLocSym>
|
||||
<LPubSym>1</LPubSym>
|
||||
<LXref>0</LXref>
|
||||
<LExpSel>0</LExpSel>
|
||||
</OPTXL>
|
||||
<OPTFL>
|
||||
<tvExp>1</tvExp>
|
||||
<tvExpOptDlg>0</tvExpOptDlg>
|
||||
<IsCurrentTarget>1</IsCurrentTarget>
|
||||
</OPTFL>
|
||||
<CpuCode>255</CpuCode>
|
||||
<DebugOpt>
|
||||
<uSim>1</uSim>
|
||||
<uTrg>0</uTrg>
|
||||
<sLdApp>1</sLdApp>
|
||||
<sGomain>1</sGomain>
|
||||
<sRbreak>1</sRbreak>
|
||||
<sRwatch>1</sRwatch>
|
||||
<sRmem>1</sRmem>
|
||||
<sRfunc>1</sRfunc>
|
||||
<sRbox>1</sRbox>
|
||||
<tLdApp>1</tLdApp>
|
||||
<tGomain>0</tGomain>
|
||||
<tRbreak>1</tRbreak>
|
||||
<tRwatch>1</tRwatch>
|
||||
<tRmem>1</tRmem>
|
||||
<tRfunc>0</tRfunc>
|
||||
<tRbox>1</tRbox>
|
||||
<tRtrace>1</tRtrace>
|
||||
<sRSysVw>1</sRSysVw>
|
||||
<tRSysVw>1</tRSysVw>
|
||||
<sRunDeb>0</sRunDeb>
|
||||
<sLrtime>0</sLrtime>
|
||||
<bEvRecOn>1</bEvRecOn>
|
||||
<bSchkAxf>0</bSchkAxf>
|
||||
<bTchkAxf>0</bTchkAxf>
|
||||
<nTsel>-1</nTsel>
|
||||
<sDll></sDll>
|
||||
<sDllPa></sDllPa>
|
||||
<sDlgDll></sDlgDll>
|
||||
<sDlgPa></sDlgPa>
|
||||
<sIfile></sIfile>
|
||||
<tDll></tDll>
|
||||
<tDllPa></tDllPa>
|
||||
<tDlgDll></tDlgDll>
|
||||
<tDlgPa></tDlgPa>
|
||||
<tIfile></tIfile>
|
||||
<pMon></pMon>
|
||||
</DebugOpt>
|
||||
<TargetDriverDllRegistry>
|
||||
<SetRegEntry>
|
||||
<Number>0</Number>
|
||||
<Key>DLGDC51</Key>
|
||||
<Name>(94=-1,-1,-1,-1,0)(120=-1,-1,-1,-1,0)(119=-1,-1,-1,-1,0)(107=-1,-1,-1,-1,0)(103=-1,-1,-1,-1,0)(108=-1,-1,-1,-1,0)(114=-1,-1,-1,-1,0)(115=-1,-1,-1,-1,0)</Name>
|
||||
</SetRegEntry>
|
||||
</TargetDriverDllRegistry>
|
||||
<Breakpoint/>
|
||||
<Tracepoint>
|
||||
<THDelay>0</THDelay>
|
||||
</Tracepoint>
|
||||
<DebugFlag>
|
||||
<trace>0</trace>
|
||||
<periodic>0</periodic>
|
||||
<aLwin>1</aLwin>
|
||||
<aCover>0</aCover>
|
||||
<aSer1>0</aSer1>
|
||||
<aSer2>0</aSer2>
|
||||
<aPa>0</aPa>
|
||||
<viewmode>1</viewmode>
|
||||
<vrSel>0</vrSel>
|
||||
<aSym>0</aSym>
|
||||
<aTbox>0</aTbox>
|
||||
<AscS1>0</AscS1>
|
||||
<AscS2>0</AscS2>
|
||||
<AscS3>0</AscS3>
|
||||
<aSer3>0</aSer3>
|
||||
<eProf>0</eProf>
|
||||
<aLa>0</aLa>
|
||||
<aPa1>0</aPa1>
|
||||
<AscS4>0</AscS4>
|
||||
<aSer4>0</aSer4>
|
||||
<StkLoc>0</StkLoc>
|
||||
<TrcWin>0</TrcWin>
|
||||
<newCpu>0</newCpu>
|
||||
<uProt>0</uProt>
|
||||
</DebugFlag>
|
||||
<LintExecutable></LintExecutable>
|
||||
<LintConfigFile></LintConfigFile>
|
||||
<bLintAuto>0</bLintAuto>
|
||||
<bAutoGenD>0</bAutoGenD>
|
||||
<LntExFlags>0</LntExFlags>
|
||||
<pMisraName></pMisraName>
|
||||
<pszMrule></pszMrule>
|
||||
<pSingCmds></pSingCmds>
|
||||
<pMultCmds></pMultCmds>
|
||||
<pMisraNamep></pMisraNamep>
|
||||
<pszMrulep></pszMrulep>
|
||||
<pSingCmdsp></pSingCmdsp>
|
||||
<pMultCmdsp></pMultCmdsp>
|
||||
</TargetOption>
|
||||
</Target>
|
||||
|
||||
<Group>
|
||||
<GroupName>App</GroupName>
|
||||
<tvExp>1</tvExp>
|
||||
<tvExpOptDlg>0</tvExpOptDlg>
|
||||
<cbSel>0</cbSel>
|
||||
<RteFlg>0</RteFlg>
|
||||
<File>
|
||||
<GroupNumber>1</GroupNumber>
|
||||
<FileNumber>1</FileNumber>
|
||||
<FileType>1</FileType>
|
||||
<tvExp>0</tvExp>
|
||||
<tvExpOptDlg>0</tvExpOptDlg>
|
||||
<bDave2>0</bDave2>
|
||||
<PathWithFileName>.\App\main.c</PathWithFileName>
|
||||
<FilenameWithoutPath>main.c</FilenameWithoutPath>
|
||||
<RteFlg>0</RteFlg>
|
||||
<bShared>0</bShared>
|
||||
</File>
|
||||
<File>
|
||||
<GroupNumber>1</GroupNumber>
|
||||
<FileNumber>2</FileNumber>
|
||||
<FileType>1</FileType>
|
||||
<tvExp>0</tvExp>
|
||||
<tvExpOptDlg>0</tvExpOptDlg>
|
||||
<bDave2>0</bDave2>
|
||||
<PathWithFileName>.\App\rgb.c</PathWithFileName>
|
||||
<FilenameWithoutPath>rgb.c</FilenameWithoutPath>
|
||||
<RteFlg>0</RteFlg>
|
||||
<bShared>0</bShared>
|
||||
</File>
|
||||
<File>
|
||||
<GroupNumber>1</GroupNumber>
|
||||
<FileNumber>3</FileNumber>
|
||||
<FileType>1</FileType>
|
||||
<tvExp>0</tvExp>
|
||||
<tvExpOptDlg>0</tvExpOptDlg>
|
||||
<bDave2>0</bDave2>
|
||||
<PathWithFileName>.\App\event.c</PathWithFileName>
|
||||
<FilenameWithoutPath>event.c</FilenameWithoutPath>
|
||||
<RteFlg>0</RteFlg>
|
||||
<bShared>0</bShared>
|
||||
</File>
|
||||
<File>
|
||||
<GroupNumber>1</GroupNumber>
|
||||
<FileNumber>4</FileNumber>
|
||||
<FileType>1</FileType>
|
||||
<tvExp>0</tvExp>
|
||||
<tvExpOptDlg>0</tvExpOptDlg>
|
||||
<bDave2>0</bDave2>
|
||||
<PathWithFileName>.\App\app_manager.c</PathWithFileName>
|
||||
<FilenameWithoutPath>app_manager.c</FilenameWithoutPath>
|
||||
<RteFlg>0</RteFlg>
|
||||
<bShared>0</bShared>
|
||||
</File>
|
||||
<File>
|
||||
<GroupNumber>1</GroupNumber>
|
||||
<FileNumber>5</FileNumber>
|
||||
<FileType>1</FileType>
|
||||
<tvExp>0</tvExp>
|
||||
<tvExpOptDlg>0</tvExpOptDlg>
|
||||
<bDave2>0</bDave2>
|
||||
<PathWithFileName>.\App\database.c</PathWithFileName>
|
||||
<FilenameWithoutPath>database.c</FilenameWithoutPath>
|
||||
<RteFlg>0</RteFlg>
|
||||
<bShared>0</bShared>
|
||||
</File>
|
||||
<File>
|
||||
<GroupNumber>1</GroupNumber>
|
||||
<FileNumber>6</FileNumber>
|
||||
<FileType>1</FileType>
|
||||
<tvExp>0</tvExp>
|
||||
<tvExpOptDlg>0</tvExpOptDlg>
|
||||
<bDave2>0</bDave2>
|
||||
<PathWithFileName>.\App\ui.c</PathWithFileName>
|
||||
<FilenameWithoutPath>ui.c</FilenameWithoutPath>
|
||||
<RteFlg>0</RteFlg>
|
||||
<bShared>0</bShared>
|
||||
</File>
|
||||
<File>
|
||||
<GroupNumber>1</GroupNumber>
|
||||
<FileNumber>7</FileNumber>
|
||||
<FileType>1</FileType>
|
||||
<tvExp>0</tvExp>
|
||||
<tvExpOptDlg>0</tvExpOptDlg>
|
||||
<bDave2>0</bDave2>
|
||||
<PathWithFileName>.\App\system.c</PathWithFileName>
|
||||
<FilenameWithoutPath>system.c</FilenameWithoutPath>
|
||||
<RteFlg>0</RteFlg>
|
||||
<bShared>0</bShared>
|
||||
</File>
|
||||
</Group>
|
||||
|
||||
<Group>
|
||||
<GroupName>Drivers</GroupName>
|
||||
<tvExp>0</tvExp>
|
||||
<tvExpOptDlg>0</tvExpOptDlg>
|
||||
<cbSel>0</cbSel>
|
||||
<RteFlg>0</RteFlg>
|
||||
<File>
|
||||
<GroupNumber>2</GroupNumber>
|
||||
<FileNumber>8</FileNumber>
|
||||
<FileType>1</FileType>
|
||||
<tvExp>0</tvExp>
|
||||
<tvExpOptDlg>0</tvExpOptDlg>
|
||||
<bDave2>0</bDave2>
|
||||
<PathWithFileName>.\Drivers\lcd.c</PathWithFileName>
|
||||
<FilenameWithoutPath>lcd.c</FilenameWithoutPath>
|
||||
<RteFlg>0</RteFlg>
|
||||
<bShared>0</bShared>
|
||||
</File>
|
||||
<File>
|
||||
<GroupNumber>2</GroupNumber>
|
||||
<FileNumber>9</FileNumber>
|
||||
<FileType>1</FileType>
|
||||
<tvExp>0</tvExp>
|
||||
<tvExpOptDlg>0</tvExpOptDlg>
|
||||
<bDave2>0</bDave2>
|
||||
<PathWithFileName>.\Drivers\rf.c</PathWithFileName>
|
||||
<FilenameWithoutPath>rf.c</FilenameWithoutPath>
|
||||
<RteFlg>0</RteFlg>
|
||||
<bShared>0</bShared>
|
||||
</File>
|
||||
</Group>
|
||||
|
||||
</ProjectOpt>
|
||||
@@ -359,6 +359,41 @@
|
||||
<FileType>1</FileType>
|
||||
<FilePath>.\App\system.c</FilePath>
|
||||
</File>
|
||||
<File>
|
||||
<FileName>clock.c</FileName>
|
||||
<FileType>1</FileType>
|
||||
<FilePath>.\App\clock.c</FilePath>
|
||||
</File>
|
||||
<File>
|
||||
<FileName>app_clock.c</FileName>
|
||||
<FileType>1</FileType>
|
||||
<FilePath>.\App\app_clock.c</FilePath>
|
||||
</File>
|
||||
<File>
|
||||
<FileName>app_menu.c</FileName>
|
||||
<FileType>1</FileType>
|
||||
<FilePath>.\App\app_menu.c</FilePath>
|
||||
</File>
|
||||
<File>
|
||||
<FileName>app_pair.c</FileName>
|
||||
<FileType>1</FileType>
|
||||
<FilePath>.\App\app_pair.c</FilePath>
|
||||
</File>
|
||||
<File>
|
||||
<FileName>app_alarm.c</FileName>
|
||||
<FileType>1</FileType>
|
||||
<FilePath>.\App\app_alarm.c</FilePath>
|
||||
</File>
|
||||
<File>
|
||||
<FileName>app_sos.c</FileName>
|
||||
<FileType>1</FileType>
|
||||
<FilePath>.\App\app_sos.c</FilePath>
|
||||
</File>
|
||||
<File>
|
||||
<FileName>app_rf_monitor.c</FileName>
|
||||
<FileType>1</FileType>
|
||||
<FilePath>.\App\app_rf_monitor.c</FilePath>
|
||||
</File>
|
||||
</Files>
|
||||
</Group>
|
||||
<Group>
|
||||
|
||||
Reference in New Issue
Block a user