remote control init

This commit is contained in:
TuxMonkey
2025-12-15 21:31:36 +08:00
parent 2d905efeb7
commit a78fe6ea11
10 changed files with 893 additions and 109 deletions

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@@ -1,5 +1,430 @@
//
// Created by ASUS on 2025/11/17.
//
/*************************发射机DT7***************************
* *
* ----------------------------------------------------- *
* | (上-1) (上-1) | *
* |SW_L|(中-3) SW_R|(中-3) | *
* | (下-2) (下-2) | *
* | | *
* | | ^ | | ^ | | *
* | | 3 |左摇杆 右摇杆| 1 | | *
* | --- --- --- --- | *
* |< 2> < 0>| *
* | --- --- --- --- | *
* | | | | | | *
* | | | | | | *
* | | *
* ----------------------------------------------------- *
* *
**************************遥控器信息**************************
*域 通道0 通道1 通道2 通道3 S1 S2 *
*偏移 0 11 22 33 44 46 *
*长度(bit) 11 11 11 11 2 2 *
*符号位 无 无 无 无 无 无 *
*范围 ***********最大值1684********* *最大值3* *
* * 中间值1024 * *最小值1* *
* ***********最小值364********** *
*功能 1:上 1:上 *
* 2:下 2:下 *
* 3:中 3:中 *
* *
***************************鼠标信息***************************
*域 鼠标x轴 鼠标y轴 鼠标z轴 鼠标左键 鼠标右键*
*偏移 48 64 80 86 94 *
*长度 16 16 16 8 8 *
*符号位 有 有 有 无 无 *
*范围 ******最大值32767***** ***最大值1*** *
* * 最小值-32768 * ***最小值0*** *
* ******静止值0********* *
*功能 ***鼠标在XYZ轴的移动速度*** *鼠标左右键是否按下*
* * 负值表示往左移动 * * 0:没按下 *
* ***正值表示往右移动******** *****1:按下*********
* *
* *
***************************键盘信息***************************
*域 按键 *
*偏移 102 *
*长度 16 *
*符号位 无 *
*范围 位值标识 *
*功能 每个按键对应一个bit *
* Bit 0:W键 *
* Bit 1:S键 *
* Bit 2:A键 *
* Bit 3:D键 *
* Bit 4:Shift键 *
* Bit 5:Ctrl键 *
* Bit 6:Q键 *
* Bit 7:E键 *
* Bit 8:R键 *
* Bit 9:F键 *
* Bit10:G键 *
* Bit11:Z键 *
* Bit12:X键 *
* Bit13:C键 *
* Bit14:V键 *
* Bit15:B键 *
**************************************************************/
#include "rc.h"
#include "string.h"
#include "bsp_usart.h"
#include "memory.h"
#include "stdlib.h"
#include "daemon.h"
#include "indicator_app/ws2812status.h"
#include "robot_def.h"
#define REMOTE_CONTROL_FRAME_SIZE 25u // 遥控器接收的buffer大小
//@todo测试define
#define REMOTE_FS_I6X
// 定义SBUS协议的起始标志
#define SBUS_HEAD 0X0F
// 定义SBUS协议的结束标志
#define SBUS_END 0X00
// 遥控器数据
static RC_ctrl_t rc_ctrl[2]; //[0]:当前数据TEMP,[1]:上一次的数据LAST.用于按键持续按下和切换的判断
static uint8_t rc_init_flag = 0; // 遥控器初始化标志位
// 遥控器拥有的串口实例,因为遥控器是单例,所以这里只有一个,就不封装了
static USART_Instance *rc_usart_instance;
static Daemon_Instance *rc_daemon_instance;
#ifdef REMOTE_DJI_DT7
/**
* @brief 矫正遥控器摇杆的值,超过660或者小于-660的值都认为是无效值,置0
*
*/
static void RectifyRCjoystick()
{
for (uint8_t i = 0; i < 5; ++i)
if (abs(*(&rc_ctrl[TEMP].rc.rocker_l_ + i)) > 660)
*(&rc_ctrl[TEMP].rc.rocker_l_ + i) = 0;
}
/**
* @brief 遥控器数据解析
*
* @param sbus_buf 接收buffer
*/
static void sbus_to_rc(const uint8_t *sbus_buf)
{
// 摇杆,直接解算时减去偏置
rc_ctrl[TEMP].rc.rocker_r_ = ((sbus_buf[0] | (sbus_buf[1] << 8)) & 0x07ff) - RC_CH_VALUE_OFFSET; //!< Channel 0
rc_ctrl[TEMP].rc.rocker_r1 = (((sbus_buf[1] >> 3) | (sbus_buf[2] << 5)) & 0x07ff) - RC_CH_VALUE_OFFSET;
//!< Channel 1
rc_ctrl[TEMP].rc.rocker_l_ = (((sbus_buf[2] >> 6) | (sbus_buf[3] << 2) | (sbus_buf[4] << 10)) & 0x07ff) -
RC_CH_VALUE_OFFSET; //!< Channel 2
rc_ctrl[TEMP].rc.rocker_l1 = (((sbus_buf[4] >> 1) | (sbus_buf[5] << 7)) & 0x07ff) - RC_CH_VALUE_OFFSET;
//!< Channel 3
rc_ctrl[TEMP].rc.dial = ((sbus_buf[16] | (sbus_buf[17] << 8)) & 0x07FF) - RC_CH_VALUE_OFFSET; // 左侧拨轮
RectifyRCjoystick();
// 开关,0左1右
rc_ctrl[TEMP].rc.switch_right = ((sbus_buf[5] >> 4) & 0x0003); //!< Switch right
rc_ctrl[TEMP].rc.switch_left = ((sbus_buf[5] >> 4) & 0x000C) >> 2; //!< Switch left
// 鼠标解析
rc_ctrl[TEMP].mouse.x = (sbus_buf[6] | (sbus_buf[7] << 8)); //!< Mouse X axis
rc_ctrl[TEMP].mouse.y = (sbus_buf[8] | (sbus_buf[9] << 8)); //!< Mouse Y axis
rc_ctrl[TEMP].mouse.z = (sbus_buf[10] | (sbus_buf[11] << 8)); //!< Mouse Z axis // 滚轮
rc_ctrl[TEMP].mouse.press_l = sbus_buf[12]; //!< Mouse Left Is Press ?
rc_ctrl[TEMP].mouse.press_r = sbus_buf[13]; //!< Mouse Right Is Press ?
// 位域的按键值解算,直接memcpy即可,注意小端低字节在前,即lsb在第一位,msb在最后
*(uint16_t *) &rc_ctrl[TEMP].key[KEY_PRESS] = (uint16_t) (sbus_buf[14] | (sbus_buf[15] << 8));
if (rc_ctrl[TEMP].key[KEY_PRESS].ctrl) // ctrl键按下
rc_ctrl[TEMP].key[KEY_PRESS_WITH_CTRL] = rc_ctrl[TEMP].key[KEY_PRESS];
else
memset(&rc_ctrl[TEMP].key[KEY_PRESS_WITH_CTRL], 0, sizeof(Key_t));
if (rc_ctrl[TEMP].key[KEY_PRESS].shift) // shift键按下
rc_ctrl[TEMP].key[KEY_PRESS_WITH_SHIFT] = rc_ctrl[TEMP].key[KEY_PRESS];
else
memset(&rc_ctrl[TEMP].key[KEY_PRESS_WITH_SHIFT], 0, sizeof(Key_t));
uint16_t key_now = rc_ctrl[TEMP].key[KEY_PRESS].keys, // 当前按键是否按下
key_last = rc_ctrl[LAST].key[KEY_PRESS].keys, // 上一次按键是否按下
key_with_ctrl = rc_ctrl[TEMP].key[KEY_PRESS_WITH_CTRL].keys, // 当前ctrl组合键是否按下
key_with_shift = rc_ctrl[TEMP].key[KEY_PRESS_WITH_SHIFT].keys, // 当前shift组合键是否按下
key_last_with_ctrl = rc_ctrl[LAST].key[KEY_PRESS_WITH_CTRL].keys, // 上一次ctrl组合键是否按下
key_last_with_shift = rc_ctrl[LAST].key[KEY_PRESS_WITH_SHIFT].keys; // 上一次shift组合键是否按下
for (uint16_t i = 0, j = 0x1; i < 16; j <<= 1, i++)
{
if (i == 4 || i == 5) // 4,5位为ctrl和shift,直接跳过
continue;
// 如果当前按键按下,上一次按键没有按下,且ctrl和shift组合键没有按下,则按键按下计数加1(检测到上升沿)
if ((key_now & j) && !(key_last & j) && !(key_with_ctrl & j) && !(key_with_shift & j))
rc_ctrl[TEMP].key_count[KEY_PRESS][i]++;
// 当前ctrl组合键按下,上一次ctrl组合键没有按下,则ctrl组合键按下计数加1(检测到上升沿)
if ((key_with_ctrl & j) && !(key_last_with_ctrl & j))
rc_ctrl[TEMP].key_count[KEY_PRESS_WITH_CTRL][i]++;
// 当前shift组合键按下,上一次shift组合键没有按下,则shift组合键按下计数加1(检测到上升沿)
if ((key_with_shift & j) && !(key_last_with_shift & j))
rc_ctrl[TEMP].key_count[KEY_PRESS_WITH_SHIFT][i]++;
}
memcpy(&rc_ctrl[LAST], &rc_ctrl[TEMP], sizeof(RC_ctrl_t)); // 保存上一次的数据,用于按键持续按下和切换的判断
}
#endif
#ifdef REMOTE_FS_I6X
/**
* @brief 遥控器数据解析
*
* @param sbus_buf 接收buffer
*/
static void sbus_to_rc(const uint8_t *sbus_buf)
{
// // 摇杆,直接解算时减去偏置
// rc_ctrl[TEMP].rc.rocker_r_ = ((sbus_buf[0] | (sbus_buf[1] << 8)) & 0x07ff) - RC_CH_VALUE_OFFSET; //!< Channel 0
// rc_ctrl[TEMP].rc.rocker_r1 = (((sbus_buf[1] >> 3) | (sbus_buf[2] << 5)) & 0x07ff) - RC_CH_VALUE_OFFSET; //!< Channel 1
// rc_ctrl[TEMP].rc.rocker_l_ = (((sbus_buf[2] >> 6) | (sbus_buf[3] << 2) | (sbus_buf[4] << 10)) & 0x07ff) - RC_CH_VALUE_OFFSET; //!< Channel 2
// rc_ctrl[TEMP].rc.rocker_l1 = (((sbus_buf[4] >> 1) | (sbus_buf[5] << 7)) & 0x07ff) - RC_CH_VALUE_OFFSET; //!< Channel 3
// rc_ctrl[TEMP].rc.dial = ((sbus_buf[16] | (sbus_buf[17] << 8)) & 0x07FF) - RC_CH_VALUE_OFFSET; // 左侧拨轮
// RectifyRCjoystick();
// // 开关,0左1右
// rc_ctrl[TEMP].rc.switch_right = ((sbus_buf[5] >> 4) & 0x0003); //!< Switch right
// rc_ctrl[TEMP].rc.switch_left = ((sbus_buf[5] >> 4) & 0x000C) >> 2; //!< Switch left
// // 鼠标解析
// rc_ctrl[TEMP].mouse.x = (sbus_buf[6] | (sbus_buf[7] << 8)); //!< Mouse X axis
// rc_ctrl[TEMP].mouse.y = (sbus_buf[8] | (sbus_buf[9] << 8)); //!< Mouse Y axis
// rc_ctrl[TEMP].mouse.z = (sbus_buf[10] | (sbus_buf[11] << 8)); //!< Mouse Z axis // 滚轮
// rc_ctrl[TEMP].mouse.press_l = sbus_buf[12]; //!< Mouse Left Is Press ?
// rc_ctrl[TEMP].mouse.press_r = sbus_buf[13]; //!< Mouse Right Is Press ?
// // 位域的按键值解算,直接memcpy即可,注意小端低字节在前,即lsb在第一位,msb在最后
// *(uint16_t *)&rc_ctrl[TEMP].key[KEY_PRESS] = (uint16_t)(sbus_buf[14] | (sbus_buf[15] << 8));
// if (rc_ctrl[TEMP].key[KEY_PRESS].ctrl) // ctrl键按下
// rc_ctrl[TEMP].key[KEY_PRESS_WITH_CTRL] = rc_ctrl[TEMP].key[KEY_PRESS];
// else
// memset(&rc_ctrl[TEMP].key[KEY_PRESS_WITH_CTRL], 0, sizeof(Key_t));
// if (rc_ctrl[TEMP].key[KEY_PRESS].shift) // shift键按下
// rc_ctrl[TEMP].key[KEY_PRESS_WITH_SHIFT] = rc_ctrl[TEMP].key[KEY_PRESS];
// else
// memset(&rc_ctrl[TEMP].key[KEY_PRESS_WITH_SHIFT], 0, sizeof(Key_t));
// uint16_t key_now = rc_ctrl[TEMP].key[KEY_PRESS].keys, // 当前按键是否按下
// key_last = rc_ctrl[LAST].key[KEY_PRESS].keys, // 上一次按键是否按下
// key_with_ctrl = rc_ctrl[TEMP].key[KEY_PRESS_WITH_CTRL].keys, // 当前ctrl组合键是否按下
// key_with_shift = rc_ctrl[TEMP].key[KEY_PRESS_WITH_SHIFT].keys, // 当前shift组合键是否按下
// key_last_with_ctrl = rc_ctrl[LAST].key[KEY_PRESS_WITH_CTRL].keys, // 上一次ctrl组合键是否按下
// key_last_with_shift = rc_ctrl[LAST].key[KEY_PRESS_WITH_SHIFT].keys; // 上一次shift组合键是否按下
// for (uint16_t i = 0, j = 0x1; i < 16; j <<= 1, i++) {
// if (i == 4 || i == 5) // 4,5位为ctrl和shift,直接跳过
// continue;
// // 如果当前按键按下,上一次按键没有按下,且ctrl和shift组合键没有按下,则按键按下计数加1(检测到上升沿)
// if ((key_now & j) && !(key_last & j) && !(key_with_ctrl & j) && !(key_with_shift & j))
// rc_ctrl[TEMP].key_count[KEY_PRESS][i]++;
// // 当前ctrl组合键按下,上一次ctrl组合键没有按下,则ctrl组合键按下计数加1(检测到上升沿)
// if ((key_with_ctrl & j) && !(key_last_with_ctrl & j))
// rc_ctrl[TEMP].key_count[KEY_PRESS_WITH_CTRL][i]++;
// // 当前shift组合键按下,上一次shift组合键没有按下,则shift组合键按下计数加1(检测到上升沿)
// if ((key_with_shift & j) && !(key_last_with_shift & j))
// rc_ctrl[TEMP].key_count[KEY_PRESS_WITH_SHIFT][i]++;
// }
if ((sbus_buf[0] != SBUS_HEAD) || (sbus_buf[24] != SBUS_END))
return;
// if (sbus_buf[23] == 0x0C)
// rc_ctrl->online = 0;
// else
// rc_ctrl->online = 1;
rc_ctrl[TEMP].rc.ch[0] = ((sbus_buf[1] | sbus_buf[2] << 8) & 0x07FF); // 通道1 (云台yaw)
rc_ctrl[TEMP].rc.ch[1] = ((sbus_buf[2] >> 3 | sbus_buf[3] << 5) & 0x07FF); // 通道2 (云台pitch)
rc_ctrl[TEMP].rc.ch[2] = ((sbus_buf[3] >> 6 | sbus_buf[4] << 2 | sbus_buf[5] << 10) & 0x07FF); // 通道3 (前后)
rc_ctrl[TEMP].rc.ch[3] = ((sbus_buf[5] >> 1 | sbus_buf[6] << 7) & 0x07FF); // 通道4 (左右)
rc_ctrl[TEMP].rc.ch[4] = ((sbus_buf[6] >> 4 | sbus_buf[7] << 4) & 0x07FF); // 通道5 (SWA)
rc_ctrl[TEMP].rc.ch[5] = ((sbus_buf[7] >> 7 | sbus_buf[8] << 1 | sbus_buf[9] << 9) & 0x07FF); // 通道6 (SWB)
rc_ctrl[TEMP].rc.ch[6] = ((sbus_buf[9] >> 2 | sbus_buf[10] << 6) & 0x07FF); // 通道7 (SWC)
rc_ctrl[TEMP].rc.ch[7] = ((sbus_buf[10] >> 5 | sbus_buf[11] << 3) & 0x07FF); // 通道8 (SWD)
rc_ctrl[TEMP].rc.ch[8] = ((sbus_buf[12] | sbus_buf[13] << 8) & 0x07FF); // 通道9 (VrA旋钮)
rc_ctrl[TEMP].rc.ch[9] = ((sbus_buf[13] >> 3 | sbus_buf[14] << 5) & 0x07FF); // 通道10 (VrB旋钮)
// rc_ctrl[TEMP].rc.ch[0] = ((sbus_buf[0] | sbus_buf[1] << 8) & 0x07FF); // 通道1 (云台yaw)
// rc_ctrl[TEMP].rc.ch[1] = ((sbus_buf[1] >> 3 | sbus_buf[2] << 5) & 0x07FF); // 通道2 (云台pitch)
// rc_ctrl[TEMP].rc.ch[2] = ((sbus_buf[2] >> 6 | sbus_buf[3] << 2 | sbus_buf[4] << 10) & 0x07FF); // 通道3 (前后)
// rc_ctrl[TEMP].rc.ch[3] = ((sbus_buf[4] >> 1 | sbus_buf[5] << 7) & 0x07FF); // 通道4 (左右)
// rc_ctrl[TEMP].rc.ch[4] = ((sbus_buf[5] >> 4 | sbus_buf[6] << 4) & 0x07FF); // 通道5 (SWA)
// rc_ctrl[TEMP].rc.ch[5] = ((sbus_buf[6] >> 7 | sbus_buf[7] << 1 | sbus_buf[8] << 9) & 0x07FF); // 通道6 (SWB)
// rc_ctrl[TEMP].rc.ch[6] = ((sbus_buf[8] >> 2 | sbus_buf[9] << 6) & 0x07FF); // 通道7 (SWC)
// rc_ctrl[TEMP].rc.ch[7] = ((sbus_buf[9] >> 5 | sbus_buf[10] << 3) & 0x07FF); // 通道8 (SWD)
// rc_ctrl[TEMP].rc.ch[8] = ((sbus_buf[11] | sbus_buf[12] << 8) & 0x07FF); // 通道9 (VrA旋钮)
// rc_ctrl[TEMP].rc.ch[9] = ((sbus_buf[12] >> 3 | sbus_buf[13] << 5) & 0x07FF); // 通道10 (VrB旋钮)
rc_ctrl[TEMP].sw_a = (rc_ctrl[TEMP].rc.ch[4] == 0x00F0) ? RC_SW_UP : RC_SW_DOWN;
rc_ctrl[TEMP].sw_b = rc_ctrl[TEMP].rc.ch[5]; //3档
rc_ctrl[TEMP].sw_c = rc_ctrl[TEMP].rc.ch[6]; //3档
rc_ctrl[TEMP].sw_d = (rc_ctrl[TEMP].rc.ch[7] == 0x00F0) ? RC_SW_UP : RC_SW_DOWN;
// 解析SWB状态
if (rc_ctrl[TEMP].rc.ch[6] == 0x00F0)
{
rc_ctrl[TEMP].sw_b = RC_SW_UP;
}
else if (rc_ctrl[TEMP].rc.ch[6] == 0x0400)
{
rc_ctrl[TEMP].sw_b = RC_SW_MID;
}
else if (rc_ctrl[TEMP].rc.ch[6] == 0x070F)
{
rc_ctrl[TEMP].sw_b = RC_SW_DOWN;
}
else
{
rc_ctrl[TEMP].sw_b = 0;
}
if (rc_ctrl[TEMP].sw_b != rc_ctrl[TEMP].sw_b_last)
{
if (rc_ctrl[TEMP].sw_b == RC_SW_UP)
{
rc_ctrl[TEMP].sw_b_midtoup_flag = 1;
rc_ctrl[TEMP].sw_b_uptomid_flag = 0;
rc_ctrl[TEMP].sw_b_midtodown_flag = 0;
}
else if (rc_ctrl[TEMP].sw_b == RC_SW_MID)
{
rc_ctrl[TEMP].sw_b_midtoup_flag = 0;
rc_ctrl[TEMP].sw_b_uptomid_flag = 1;
rc_ctrl[TEMP].sw_b_midtodown_flag = 0;
}
else if (rc_ctrl[TEMP].sw_b == RC_SW_DOWN)
{
rc_ctrl[TEMP].sw_b_midtoup_flag = 0;
rc_ctrl[TEMP].sw_b_uptomid_flag = 0;
rc_ctrl[TEMP].sw_b_midtodown_flag = 1;
}
}
rc_ctrl[TEMP].sw_b_last = rc_ctrl[TEMP].sw_b;
// 解析SWC状态
if (rc_ctrl[TEMP].rc.ch[6] == 0x00F0)
{
rc_ctrl[TEMP].sw_c = RC_SW_UP;
}
else if (rc_ctrl[TEMP].rc.ch[6] == 0x0400)
{
rc_ctrl[TEMP].sw_c = RC_SW_MID;
}
else if (rc_ctrl[TEMP].rc.ch[6] == 0x070F)
{
rc_ctrl[TEMP].sw_c = RC_SW_DOWN;
}
else
{
rc_ctrl[TEMP].sw_c = 0;
}
if (rc_ctrl[TEMP].sw_c != rc_ctrl[TEMP].sw_c_last)
{
if (rc_ctrl[TEMP].sw_c == RC_SW_UP)
{
rc_ctrl[TEMP].sw_c_midtoup_flag = 1;
rc_ctrl[TEMP].sw_c_uptomid_flag = 0;
rc_ctrl[TEMP].sw_c_midtodown_flag = 0;
}
else if (rc_ctrl[TEMP].sw_c == RC_SW_MID)
{
rc_ctrl[TEMP].sw_c_midtoup_flag = 0;
rc_ctrl[TEMP].sw_c_uptomid_flag = 1;
rc_ctrl[TEMP].sw_c_midtodown_flag = 0;
}
else if (rc_ctrl[TEMP].sw_c == RC_SW_DOWN)
{
rc_ctrl[TEMP].sw_c_midtoup_flag = 0;
rc_ctrl[TEMP].sw_c_uptomid_flag = 0;
rc_ctrl[TEMP].sw_c_midtodown_flag = 1;
}
}
rc_ctrl[TEMP].sw_c_last = rc_ctrl[TEMP].sw_c;
// SWA和SWB的状态变化
if (rc_ctrl[TEMP].sw_a != rc_ctrl[TEMP].sw_a_last)
{
rc_ctrl[TEMP].sw_a_up_to_down_flag = (rc_ctrl[TEMP].sw_a == RC_SW_UP) ? 1 : 0;
}
rc_ctrl[TEMP].sw_a_last = rc_ctrl[TEMP].sw_a;
// if (rc_ctrl[TEMP].sw_b != rc_ctrl[TEMP].sw_b_last) {
// rc_ctrl[TEMP].sw_b_up_to_down_flag = (rc_ctrl[TEMP].sw_b == RC_SW_UP) ? 1 : 0;
// }
// rc_ctrl[TEMP].sw_b_last = rc_ctrl[TEMP].sw_b;
// SWD的状态变化
if (rc_ctrl[TEMP].sw_d != rc_ctrl[TEMP].sw_d_last)
{
rc_ctrl[TEMP].sw_d_up_to_down_flag = (rc_ctrl[TEMP].sw_d == RC_SW_UP) ? 1 : 0;
}
rc_ctrl[TEMP].sw_d_last = rc_ctrl[TEMP].sw_d;
// 修正 ch1~ch4
rc_ctrl[TEMP].ch1 = rc_ctrl[TEMP].rc.ch[0] - 1024;
rc_ctrl[TEMP].ch2 = rc_ctrl[TEMP].rc.ch[1] - 1024;
rc_ctrl[TEMP].ch3 = rc_ctrl[TEMP].rc.ch[2] - 1024;
rc_ctrl[TEMP].ch4 = rc_ctrl[TEMP].rc.ch[3] - 1024;
// ...existing code...
memcpy(&rc_ctrl[LAST], &rc_ctrl[TEMP], sizeof(RC_ctrl_t)); // 保存上一次的数据,用于按键持续按下和切换的判断
}
#endif
/**
* @brief 对sbus_to_rc的简单封装,用于注册到bsp_usart的回调函数中
*
*/
static void RemoteControlRxCallback()
{
sbus_to_rc(rc_usart_instance->recv_buff); // 进行协议解析
DaemonReload(rc_daemon_instance); // 先喂狗
}
/**
* @brief 遥控器离线的回调函数,注册到守护进程中,串口掉线时调用
*
*/
static void RCLostCallback(void *id)
{
memset(rc_ctrl, 0, sizeof(rc_ctrl)); // 清空遥控器数据
USARTServiceInit(rc_usart_instance); // 尝试重新启动接收
RobotMode = REMOTE_NOT_CONNECTED;
// LEDErrLog(0, LED_COLOR_R); // 红灯常亮 表示遥控器离线
}
RC_ctrl_t *RemoteControlInit(UART_HandleTypeDef *rc_usart_handle)
{
USART_Init_Config_s conf;
conf.module_callback = RemoteControlRxCallback;
conf.usart_handle = rc_usart_handle;
conf.recv_buff_size = REMOTE_CONTROL_FRAME_SIZE;
rc_usart_instance = USARTRegister(&conf);
// 进行守护进程的注册,用于定时检查遥控器是否正常工作
Daemon_Init_Config_s daemon_conf = {
.reload_count = 10, // 100ms未收到数据视为离线,遥控器的接收频率实际上是1000/14Hz(大约70Hz)
.callback = RCLostCallback,
.owner_id = NULL, // 只有1个遥控器,不需要owner_id
};
rc_daemon_instance = DaemonRegister(&daemon_conf);
rc_init_flag = 1;
return rc_ctrl;
}
uint8_t RemoteControlIsOnline()
{
if (rc_init_flag)
return DaemonIsOnline(rc_daemon_instance);
return 0;
}