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| Author | SHA1 | Date | |
|---|---|---|---|
| be6f52fa8b | |||
| 6fee6323ea | |||
| 0df22b4186 | |||
| f0d3f51922 | |||
| afda00d8f2 | |||
| 72844ff821 | |||
| 70758b1c06 | |||
| de545c9919 | |||
| 9f200e2e83 |
+27
-27
@@ -1,23 +1,23 @@
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/************************************************************************************************
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/************************************************************************************************
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* 程序版本:V3.0
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* 程序版本:V3.0
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* 程序日期:2022-11-3
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* 程序日期:2022-11-3
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* 程序作者:
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* 程序作者:
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************************************************************************************************/
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************************************************************************************************/
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#include "Imu.h"
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#include "Imu.h"
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#include "main.h"
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#include "main.h"
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#define Kp_New 0.9f //互补滤波当前数据的权重
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#define Kp_New 0.9f //互补滤波当前数据的权重
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#define Kp_Old 0.1f //互补滤波历史数据的权重
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#define Kp_Old 0.1f //互补滤波历史数据的权重
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#define Acc_Gain 0.0001220f //加速度变成G (初始化加速度满量程-+4g LSBa = 2*4/65535.0)
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#define Acc_Gain 0.0001220f //加速度变成G (初始化加速度满量程-+4g LSBa = 2*4/65535.0)
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#define Gyro_Gain 0.0609756f //角速度变成度 (初始化陀螺仪满量程+-2000 LSBg = 2*2000/65535.0)
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#define Gyro_Gain 0.0609756f //角速度变成度 (初始化陀螺仪满量程+-2000 LSBg = 2*2000/65535.0)
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#define Gyro_Gr 0.0010641f //角速度变成弧度(3.1415/180 * LSBg)
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#define Gyro_Gr 0.0010641f //角速度变成弧度(3.1415/180 * LSBg)
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//kp=ki=0 就是完全相信陀螺仪
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//kp=ki=0 就是完全相信陀螺仪
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#define Kp 1.5f // proportional gain governs rate of convergence to accelerometer/magnetometer
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#define Kp 1.5f // proportional gain governs rate of convergence to accelerometer/magnetometer
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//比例增益控制加速度计,磁力计的收敛速率
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//比例增益控制加速度计,磁力计的收敛速率
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#define Ki 0.005f // integral gain governs rate of convergence of gyroscope biases
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#define Ki 0.005f // integral gain governs rate of convergence of gyroscope biases
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//积分增益控制陀螺偏差的收敛速度
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//积分增益控制陀螺偏差的收敛速度
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#define halfT 0.005f // half the sample period 采样周期的一半
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#define halfT 0.005f // half the sample period 采样周期的一半
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static volatile float q0 = 1, q1 = 0, q2 = 0, q3 = 0; // quaternion elements representing the estimated orientation
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static volatile float q0 = 1, q1 = 0, q2 = 0, q3 = 0; // quaternion elements representing the estimated orientation
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static volatile float exInt = 0, eyInt = 0, ezInt = 0; // scaled integral error
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static volatile float exInt = 0, eyInt = 0, ezInt = 0; // scaled integral error
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@@ -29,7 +29,7 @@ static float MedianValue(float *value_buf, unsigned int size)
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unsigned int i,j;
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unsigned int i,j;
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float temp;
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float temp;
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//排序采用冒泡法
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//排序采用冒泡法
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for (j=0;j<=size;j++){
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for (j=0;j<=size;j++){
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for (i=0;i<=size-j;i++){
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for (i=0;i<=size-j;i++){
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if (value_buf[i] > value_buf[i+1]){
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if (value_buf[i] > value_buf[i+1]){
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@@ -194,48 +194,48 @@ static void IMUupdate(float gx, float gy, float gz, float ax, float ay, float az
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if(ax*ay*az==0)
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if(ax*ay*az==0)
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return;
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return;
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//加速度计<测量>的重力加速度向量(机体坐标系)
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//加速度计<测量>的重力加速度向量(机体坐标系)
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norm = invSqrt(ax*ax + ay*ay + az*az);
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norm = invSqrt(ax*ax + ay*ay + az*az);
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ax = ax * norm;
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ax = ax * norm;
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ay = ay * norm;
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ay = ay * norm;
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az = az * norm;
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az = az * norm;
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// printf("ax=%0.2f ay=%0.2f az=%0.2f\r\n",ax,ay,az);
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// printf("ax=%0.2f ay=%0.2f az=%0.2f\r\n",ax,ay,az);
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//陀螺仪积分<估计>重力向量(机体坐标系)
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//陀螺仪积分<估计>重力向量(机体坐标系)
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vx = 2*(q1q3 - q0q2); //矩阵(3,1)项
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vx = 2*(q1q3 - q0q2); //矩阵(3,1)项
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vy = 2*(q0q1 + q2q3); //矩阵(3,2)项
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vy = 2*(q0q1 + q2q3); //矩阵(3,2)项
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vz = q0q0 - q1q1 - q2q2 + q3q3 ; //矩阵(3,3)项
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vz = q0q0 - q1q1 - q2q2 + q3q3 ; //矩阵(3,3)项
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//向量叉乘所得的值
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//向量叉乘所得的值
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ex = (ay*vz - az*vy);
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ex = (ay*vz - az*vy);
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ey = (az*vx - ax*vz);
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ey = (az*vx - ax*vz);
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ez = (ax*vy - ay*vx);
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ez = (ax*vy - ay*vx);
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//用上面求出误差进行积分
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//用上面求出误差进行积分
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exInt = exInt + ex * Ki;
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exInt = exInt + ex * Ki;
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eyInt = eyInt + ey * Ki;
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eyInt = eyInt + ey * Ki;
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ezInt = ezInt + ez * Ki;
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ezInt = ezInt + ez * Ki;
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//将误差PI后补偿到陀螺仪
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//将误差PI后补偿到陀螺仪
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gx = gx + Kp*ex + exInt;
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gx = gx + Kp*ex + exInt;
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gy = gy + Kp*ey + eyInt;
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gy = gy + Kp*ey + eyInt;
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gz = gz + Kp*ez + ezInt;//这里的gz由于没有观测者进行矫正会产生漂移,表现出来的就是积分自增或自减
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gz = gz + Kp*ez + ezInt;//这里的gz由于没有观测者进行矫正会产生漂移,表现出来的就是积分自增或自减
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//四元素的微分方程
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//四元素的微分方程
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q0 = q0 + (-q1*gx - q2*gy - q3*gz)*halfT;
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q0 = q0 + (-q1*gx - q2*gy - q3*gz)*halfT;
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q1 = q1 + (q0*gx + q2*gz - q3*gy)*halfT;
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q1 = q1 + (q0*gx + q2*gz - q3*gy)*halfT;
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q2 = q2 + (q0*gy - q1*gz + q3*gx)*halfT;
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q2 = q2 + (q0*gy - q1*gz + q3*gx)*halfT;
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q3 = q3 + (q0*gz + q1*gy - q2*gx)*halfT;
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q3 = q3 + (q0*gz + q1*gy - q2*gx)*halfT;
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//单位化四元数
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//单位化四元数
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norm = invSqrt(q0*q0 + q1*q1 + q2*q2 + q3*q3);
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norm = invSqrt(q0*q0 + q1*q1 + q2*q2 + q3*q3);
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q0 = q0 * norm;
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q0 = q0 * norm;
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q1 = q1 * norm;
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q1 = q1 * norm;
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q2 = q2 * norm;
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q2 = q2 * norm;
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q3 = q3 * norm;
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q3 = q3 * norm;
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// 矩阵表达式
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// 矩阵表达式
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// matrix[0] = q0q0 + q1q1 - q2q2 - q3q3; // 11
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// matrix[0] = q0q0 + q1q1 - q2q2 - q3q3; // 11
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// matrix[1] = 2.f * (q1q2 + q0q3); // 12
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// matrix[1] = 2.f * (q1q2 + q0q3); // 12
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// matrix[2] = 2.f * (q1q3 - q0q2); // 13
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// matrix[2] = 2.f * (q1q3 - q0q2); // 13
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@@ -246,7 +246,7 @@ static void IMUupdate(float gx, float gy, float gz, float ax, float ay, float az
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// matrix[7] = 2.f * (q2q3 - q0q1); // 32
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// matrix[7] = 2.f * (q2q3 - q0q1); // 32
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// matrix[8] = q0q0 - q1q1 - q2q2 + q3q3; // 33
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// matrix[8] = q0q0 - q1q1 - q2q2 + q3q3; // 33
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//下一步是四元数转换成欧拉角(Z->Y->X)
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//下一步是四元数转换成欧拉角(Z->Y->X)
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}
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}
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+6
-6
@@ -1,17 +1,17 @@
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#ifndef _IMU_H_
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#ifndef _IMU_H_
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#define _IMU_H_
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#define _IMU_H_
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#include <math.h>
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#include <math.h>
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#define PI 3.14159265358979323846f
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#define PI 3.14159265358979323846f
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#define RAD_TO_DEG 57.2957795 // 弧度到度的转换系数
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#define RAD_TO_DEG 57.2957795 // 弧度到度的转换系数
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#define DEG_TO_RAD 0.0174533 // 度到弧度的转换系数
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#define DEG_TO_RAD 0.0174533 // 度到弧度的转换系数
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// 定义欧拉角结构体
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// 定义欧拉角结构体
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typedef struct {
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typedef struct {
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volatile float roll, pitch, yaw;//弧度
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volatile float roll, pitch, yaw;//弧度
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}Rad_T, *RadDp;
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}Rad_T, *RadDp;
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typedef struct {
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typedef struct {
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volatile float roll, pitch, yaw;//角度
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volatile float roll, pitch, yaw;//角度
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}Deg_T, *DegDp;
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}Deg_T, *DegDp;
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#define Imu_AccFilterSize 10
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#define Imu_AccFilterSize 10
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@@ -1,4 +1,4 @@
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#include "sx127x.h"
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#include "sx127x.h"
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#include "ddl.h"
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#include "ddl.h"
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#include "UartDebug.h"
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#include "UartDebug.h"
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@@ -271,7 +271,7 @@ void Sx1276LoRaEnterRx(void)
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uint8_t temp;
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uint8_t temp;
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SX1276Read(REG_LR_IRQFLAGS, &temp);
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SX1276Read(REG_LR_IRQFLAGS, &temp);
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//设置接收模式
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//设置接收模式
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LORA_ANTRXEN();
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LORA_ANTRXEN();
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}
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}
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@@ -314,17 +314,17 @@ void Sx1276LoRaInit(void (*RxCallBack)(uint8_t *rBuff, uint8_t rlen))
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//SpreadingFactor
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//SpreadingFactor
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if( LoRaPara.SpreadFactor == SX1276_SF_64){
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if( LoRaPara.SpreadFactor == SX1276_SF_64){
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SX1276LoRaSetNbTrigPeaks(5);
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SX1276LoRaSetNbTrigPeaks(5);
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SX1276LoRaSetLowDatarateOptimize(TRUE); //低数据速率设置
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SX1276LoRaSetLowDatarateOptimize(TRUE); //低数据速率设置
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}
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}
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else{
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else{
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SX1276LoRaSetNbTrigPeaks(3);
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SX1276LoRaSetNbTrigPeaks(3);
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SX1276LoRaSetLowDatarateOptimize(FALSE); //低数据速率设置
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SX1276LoRaSetLowDatarateOptimize(FALSE); //低数据速率设置
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}
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}
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LoRaPara.RegBuff.RegModemConfig2 = (LoRaPara.RegBuff.RegModemConfig2 & RFLR_MODEMCONFIG2_SF_MASK ) | LoRaPara.SpreadFactor;
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LoRaPara.RegBuff.RegModemConfig2 = (LoRaPara.RegBuff.RegModemConfig2 & RFLR_MODEMCONFIG2_SF_MASK ) | LoRaPara.SpreadFactor;
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//PacketCrcOn
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//PacketCrcOn
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LoRaPara.RegBuff.RegModemConfig2 = (LoRaPara.RegBuff.RegModemConfig2 & RFLR_MODEMCONFIG2_RXPAYLOADCRC_MASK ) | SX1276_CRC_ON; //SX1276_CRC_OFF
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LoRaPara.RegBuff.RegModemConfig2 = (LoRaPara.RegBuff.RegModemConfig2 & RFLR_MODEMCONFIG2_RXPAYLOADCRC_MASK ) | SX1276_CRC_ON; //SX1276_CRC_OFF
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//验证寄存器操作是否成功
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//验证寄存器操作是否成功
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SX1276Write(REG_LR_MODEMCONFIG2, LoRaPara.RegBuff.RegModemConfig2);
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SX1276Write(REG_LR_MODEMCONFIG2, LoRaPara.RegBuff.RegModemConfig2);
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uint8_t Config2 = 0;
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uint8_t Config2 = 0;
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SX1276Read(REG_LR_MODEMCONFIG2, &Config2);
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SX1276Read(REG_LR_MODEMCONFIG2, &Config2);
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@@ -425,7 +425,7 @@ void Sx1276LoRaLoopHandler(void)
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void Sx1276LoRaSendBuffer(uint8_t* pucBuff, uint8_t ucLen)
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void Sx1276LoRaSendBuffer(uint8_t* pucBuff, uint8_t ucLen)
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{
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{
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//设置发送模式
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//设置发送模式
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LORA_ANTTXEN();
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LORA_ANTTXEN();
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LoRaPara.State = SX1276_BUSY;
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LoRaPara.State = SX1276_BUSY;
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@@ -473,8 +473,8 @@ void Sx1276LoRaWakeup(void)
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}
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}
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////////////////////////////////////////
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////////////////////////////////////////
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//配置本层参数的函数
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//配置本层参数的函数
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//频道表
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//频道表
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const uint32_t gdwSx1276ChannelTbl[SX1276_CHANNEL_MAX]={
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const uint32_t gdwSx1276ChannelTbl[SX1276_CHANNEL_MAX]={
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FREQ_CENT-FREQ_DEV*8, FREQ_CENT-FREQ_DEV*7, FREQ_CENT-FREQ_DEV*6, FREQ_CENT-FREQ_DEV*5,
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FREQ_CENT-FREQ_DEV*8, FREQ_CENT-FREQ_DEV*7, FREQ_CENT-FREQ_DEV*6, FREQ_CENT-FREQ_DEV*5,
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FREQ_CENT-FREQ_DEV*4, FREQ_CENT-FREQ_DEV*3, FREQ_CENT-FREQ_DEV*2, FREQ_CENT-FREQ_DEV*1,
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FREQ_CENT-FREQ_DEV*4, FREQ_CENT-FREQ_DEV*3, FREQ_CENT-FREQ_DEV*2, FREQ_CENT-FREQ_DEV*1,
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@@ -15,7 +15,7 @@
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#define DEBUG_CMD_CNT 16
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#define DEBUG_CMD_CNT 16
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const DBGFunType DebugFun[DEBUG_CMD_CNT];
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const DBGFunType DebugFun[DEBUG_CMD_CNT];
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volatile DebugChannel_e gDebugChannel = DBG_CH_UART0;
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volatile DebugChannel_e gDebugChannel = DBG_CH_RS485_1;//上电默认调试口
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static char buff[DEBUG_BUFSIZE];
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static char buff[DEBUG_BUFSIZE];
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volatile uint16_t iw=0; /* buffer write index*/
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volatile uint16_t iw=0; /* buffer write index*/
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@@ -62,24 +62,24 @@ void vcom_Send( char *format, ... )
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void vcom_Print(uint8_t sLen)
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void vcom_Print(uint8_t sLen)
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{
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{
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// 定义一个字符指针CurChar
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// 定义一个字符指针CurChar
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char* CurChar;
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char* CurChar;
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// 初始化ir
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// 初始化ir
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ir = 0;
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ir = 0;
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// 当ir小于sLen时,循环执行
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// 当ir小于sLen时,循环执行
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while(ir < sLen)
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while(ir < sLen)
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{
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{
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// 获取字符指针CurChar
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// 获取字符指针CurChar
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CurChar = &buff[ir++];
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CurChar = &buff[ir++];
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// 调用DebugUartSend函数,发送CurChar指向的字符,次数为1
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// 调用DebugUartSend函数,发送CurChar指向的字符,次数为1
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DBGUartSend((uint8_t*)CurChar, 1);
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DBGUartSend((uint8_t*)CurChar, 1);
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}
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}
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}
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}
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// 定义一个函数vcom_Send2,用于发送字符串
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// 定义一个函数vcom_Send2,用于发送字符串
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void vcom_Send2(uint8_t *sData, uint16_t len)
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void vcom_Send2(uint8_t *sData, uint16_t len)
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{
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{
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// 遍历sData,将每个元素发送到DebugUartSend
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// 遍历sData,将每个元素发送到DebugUartSend
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for(int i = 0; i < len; i++) {
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for(int i = 0; i < len; i++) {
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DBGUartSendByte(sData[i]);
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DBGUartSendByte(sData[i]);
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}
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}
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@@ -94,7 +94,7 @@ void DebugLoopHandler(void)
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return;
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return;
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//for(argv[argc] = strtok(RxBuff, " '\r'"); argv[argc] != NULL; argv[++argc] = strtok(NULL, " '\r'"));
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//for(argv[argc] = strtok(RxBuff, " '\r'"); argv[argc] != NULL; argv[++argc] = strtok(NULL, " '\r'"));
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// 解析字符串,将参数放入argv数组中
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// 解析字符串,将参数放入argv数组中
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argp = strtok(RxBuff, " ");
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argp = strtok(RxBuff, " ");
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for(int i = 0; i < 10; i++) {
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for(int i = 0; i < 10; i++) {
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if(argp != NULL) {
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if(argp != NULL) {
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@@ -107,19 +107,19 @@ void DebugLoopHandler(void)
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}
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}
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}
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}
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|
||||||
// 获取第一个参数,并将其赋值给argp
|
// 获取第一个参数,并将其赋值给argp
|
||||||
argp = strtok(argv[argc], "'\r'");
|
argp = strtok(argv[argc], "'\r'");
|
||||||
// 如果argp不为空,则将argp的值赋值给argv[argc],并将argc加1
|
// 如果argp不为空,则将argp的值赋值给argv[argc],并将argc加1
|
||||||
if(argp != NULL) {
|
if(argp != NULL) {
|
||||||
argv[argc++] = argp;
|
argv[argc++] = argp;
|
||||||
}
|
}
|
||||||
// 否则,将RxLen设置为0,并返回
|
// 否则,将RxLen设置为0,并返回
|
||||||
else {
|
else {
|
||||||
RxLen = 0;
|
RxLen = 0;
|
||||||
return;
|
return;
|
||||||
}
|
}
|
||||||
|
|
||||||
// 遍历DebugFun数组,查找argv[0]是否与DBGCmd匹配,若匹配则调用DBGExec函数
|
// 遍历DebugFun数组,查找argv[0]是否与DBGCmd匹配,若匹配则调用DBGExec函数
|
||||||
for(int i = 0; i < DEBUG_CMD_CNT; i++) {
|
for(int i = 0; i < DEBUG_CMD_CNT; i++) {
|
||||||
if(strcmp(argv[0], DebugFun[i].DBGCmd) == 0)
|
if(strcmp(argv[0], DebugFun[i].DBGCmd) == 0)
|
||||||
DebugFun[i].DBGExec(argc, argv);
|
DebugFun[i].DBGExec(argc, argv);
|
||||||
@@ -129,45 +129,45 @@ void DebugLoopHandler(void)
|
|||||||
RxLen = 0;
|
RxLen = 0;
|
||||||
}
|
}
|
||||||
|
|
||||||
// 函数:Debug1mSRoutine
|
// 函数:Debug1mSRoutine
|
||||||
// 功能:1ms调试时钟routine
|
// 功能:1ms调试时钟routine
|
||||||
void Debug1mSRoutine(void)
|
void Debug1mSRoutine(void)
|
||||||
{
|
{
|
||||||
// 如果1ms调试时钟计数器大于0
|
// 如果1ms调试时钟计数器大于0
|
||||||
if(RxRevTimeOutCnt > 0)
|
if(RxRevTimeOutCnt > 0)
|
||||||
// 1ms调试时钟计数器减1
|
// 1ms调试时钟计数器减1
|
||||||
RxRevTimeOutCnt--;
|
RxRevTimeOutCnt--;
|
||||||
}
|
}
|
||||||
|
|
||||||
// 定义函数DebugUartIRQ,用于处理串口接收中断
|
// 定义函数DebugUartIRQ,用于处理串口接收中断
|
||||||
void DebugUartIRQ(uint8_t Data)
|
void DebugUartIRQ(uint8_t Data)
|
||||||
{
|
{
|
||||||
// 如果1分钟超时计数器为0,则清空RxLen
|
// 如果1分钟超时计数器为0,则清空RxLen
|
||||||
if(RxRevTimeOutCnt == 0)
|
if(RxRevTimeOutCnt == 0)
|
||||||
RxLen = 0;
|
RxLen = 0;
|
||||||
|
|
||||||
// 重置1分钟超时计数器
|
// 重置1分钟超时计数器
|
||||||
RxRevTimeOutCnt = 3;
|
RxRevTimeOutCnt = 3;
|
||||||
// 如果RxLen小于128,则将数据添加到RxBuff中
|
// 如果RxLen小于128,则将数据添加到RxBuff中
|
||||||
if(RxLen < 128) {
|
if(RxLen < 128) {
|
||||||
RxBuff[RxLen++] = Data;
|
RxBuff[RxLen++] = Data;
|
||||||
}
|
}
|
||||||
// DBG_LOG("RxBuff = %s\n", RxBuff);
|
// DBG_LOG("RxBuff = %s\n", RxBuff);
|
||||||
// RS485_Flag=1;//接收标志为置1
|
// RS485_Flag=1;//接收标志为置1
|
||||||
}
|
}
|
||||||
|
|
||||||
extern uint8_t LocalMAC[6]; //本机MAC地址
|
extern uint8_t LocalMAC[6]; //本机MAC地址
|
||||||
extern uint8_t GatewayMAC[6]; //网关MAC地址,注册时全为0
|
extern uint8_t GatewayMAC[6]; //网关MAC地址,注册时全为0
|
||||||
extern uint32_t LocalType;
|
extern uint32_t LocalType;
|
||||||
extern uint32_t CommWay;
|
extern uint32_t CommWay;
|
||||||
extern uint32_t DeviceSign;
|
extern uint32_t DeviceSign;
|
||||||
extern uint32_t AddNumber;
|
extern uint32_t AddNumber;
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: DebugCmdGetPara
|
* 函数名称: DebugCmdGetPara
|
||||||
* 功能描述: 查看参数
|
* 功能描述: 查看参数
|
||||||
* 参 数: argc, 输入参数数量
|
* 参 数: argc, 输入参数数量
|
||||||
argv, 输入参数
|
argv, 输入参数
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static void DebugCmdGetPara(int argc, char *argv[])
|
static void DebugCmdGetPara(int argc, char *argv[])
|
||||||
{
|
{
|
||||||
@@ -214,6 +214,8 @@ static void DebugCmdGetPara(int argc, char *argv[])
|
|||||||
DBG_LOG("Lora: ch %d, rp %d, fc %d\r\n", App.Para.Lora.ucChannel, App.Para.Lora.RegPreamble, App.Para.Lora.FreqCent);
|
DBG_LOG("Lora: ch %d, rp %d, fc %d\r\n", App.Para.Lora.ucChannel, App.Para.Lora.RegPreamble, App.Para.Lora.FreqCent);
|
||||||
DBG_LOG("LpCfg: CI:%dsec, RI:%dmin, EI:%dmin, ET:%dmin\r\n",
|
DBG_LOG("LpCfg: CI:%dsec, RI:%dmin, EI:%dmin, ET:%dmin\r\n",
|
||||||
App.Para.Layout.CollectTime*30, App.Para.Layout.ReportInterval/2, App.Para.Layout.ERInterval/2, App.Para.Layout.ERTime/2);
|
App.Para.Layout.CollectTime*30, App.Para.Layout.ReportInterval/2, App.Para.Layout.ERInterval/2, App.Para.Layout.ERTime/2);
|
||||||
|
DBG_LOG("Laser: %s, AutoOff: %dmin\r\n",
|
||||||
|
(SGCP.LaserOnOff == true) ? "ON" : "OFF", SGCP.LaserTimerMinutes);
|
||||||
struct tm *stime;
|
struct tm *stime;
|
||||||
uint32_t dwStamp = TimeTs();
|
uint32_t dwStamp = TimeTs();
|
||||||
stime = localtime(&dwStamp);
|
stime = localtime(&dwStamp);
|
||||||
@@ -226,11 +228,11 @@ static void DebugCmdGetPara(int argc, char *argv[])
|
|||||||
DBG_LOG("**********************************************************\r\n");
|
DBG_LOG("**********************************************************\r\n");
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: DebugCmdMainOnOff
|
* 函数名称: DebugCmdMainOnOff
|
||||||
* 功能描述: 主调试信息开关
|
* 功能描述: 主调试信息开关
|
||||||
* 参 数: argc, 输入参数数量
|
* 参 数: argc, 输入参数数量
|
||||||
argv, 输入参数
|
argv, 输入参数
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static void DebugCmdMainOnOff(int argc, char *argv[])
|
static void DebugCmdMainOnOff(int argc, char *argv[])
|
||||||
{
|
{
|
||||||
@@ -253,11 +255,11 @@ static void DebugCmdMainOnOff(int argc, char *argv[])
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: DebugCmdDataOnOff
|
* 函数名称: DebugCmdDataOnOff
|
||||||
* 功能描述: 数据调试信息开关
|
* 功能描述: 数据调试信息开关
|
||||||
* 参 数: argc, 输入参数数量
|
* 参 数: argc, 输入参数数量
|
||||||
argv, 输入参数
|
argv, 输入参数
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static void DebugCmdDataOnOff(int argc, char *argv[])
|
static void DebugCmdDataOnOff(int argc, char *argv[])
|
||||||
{
|
{
|
||||||
@@ -280,11 +282,11 @@ static void DebugCmdDataOnOff(int argc, char *argv[])
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: DebugCmdSetMac
|
* 函数名称: DebugCmdSetMac
|
||||||
* 功能描述: 设置MAC地址
|
* 功能描述: 设置MAC地址
|
||||||
* 参 数: argc, 输入参数数量
|
* 参 数: argc, 输入参数数量
|
||||||
argv, 输入参数
|
argv, 输入参数
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static void DebugCmdSetMac(int argc, char *argv[])
|
static void DebugCmdSetMac(int argc, char *argv[])
|
||||||
{
|
{
|
||||||
@@ -317,11 +319,11 @@ static void DebugCmdSetMac(int argc, char *argv[])
|
|||||||
DBG_LOG("Set gateway mac Address completed.\r\n");
|
DBG_LOG("Set gateway mac Address completed.\r\n");
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: DebugCmdDevReg
|
* 函数名称: DebugCmdDevReg
|
||||||
* 功能描述: 设备申请注册
|
* 功能描述: 设备申请注册
|
||||||
* 参 数: argc, 输入参数数量
|
* 参 数: argc, 输入参数数量
|
||||||
argv, 输入参数
|
argv, 输入参数
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static void DebugCmdDevReg(int argc, char *argv[])
|
static void DebugCmdDevReg(int argc, char *argv[])
|
||||||
{
|
{
|
||||||
@@ -340,11 +342,11 @@ static void DebugCmdDevReg(int argc, char *argv[])
|
|||||||
App.LoginFlag = true;
|
App.LoginFlag = true;
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: DebugCmdDataUpload
|
* 函数名称: DebugCmdDataUpload
|
||||||
* 功能描述: 设备数据上传
|
* 功能描述: 设备数据上传
|
||||||
* 参 数: argc, 输入参数数量
|
* 参 数: argc, 输入参数数量
|
||||||
argv, 输入参数
|
argv, 输入参数
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static void DebugCmdDataUpload(int argc, char *argv[])
|
static void DebugCmdDataUpload(int argc, char *argv[])
|
||||||
{
|
{
|
||||||
@@ -372,11 +374,11 @@ static void DebugCmdDataUpload(int argc, char *argv[])
|
|||||||
App.UploadFlag = true;
|
App.UploadFlag = true;
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: DebugCmdDataColl
|
* 函数名称: DebugCmdDataColl
|
||||||
* 功能描述: 设备数据采集
|
* 功能描述: 设备数据采集
|
||||||
* 参 数: argc, 输入参数数量
|
* 参 数: argc, 输入参数数量
|
||||||
argv, 输入参数
|
argv, 输入参数
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static void DebugCmdDataColl(int argc, char *argv[])
|
static void DebugCmdDataColl(int argc, char *argv[])
|
||||||
{
|
{
|
||||||
@@ -394,11 +396,11 @@ static void DebugCmdDataColl(int argc, char *argv[])
|
|||||||
SGCP.TimingAcquisition = true;
|
SGCP.TimingAcquisition = true;
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: DebugCmdCat1OnOff
|
* 函数名称: DebugCmdCat1OnOff
|
||||||
* 功能描述: CAT1调试信息开关
|
* 功能描述: CAT1调试信息开关
|
||||||
* 参 数: argc, 输入参数数量
|
* 参 数: argc, 输入参数数量
|
||||||
argv, 输入参数
|
argv, 输入参数
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void DebugCmdRS485Ctrl(int argc, char *argv[])
|
void DebugCmdRS485Ctrl(int argc, char *argv[])
|
||||||
{
|
{
|
||||||
@@ -436,7 +438,7 @@ void DebugCmdRS485Ctrl(int argc, char *argv[])
|
|||||||
}
|
}
|
||||||
else if(strstr(argv[3], "off") != NULL){
|
else if(strstr(argv[3], "off") != NULL){
|
||||||
if(idx == 1)
|
if(idx == 1)
|
||||||
App.Para.Rs485Ch2.Enable = false;
|
App.Para.Rs485Ch1.Enable = false;
|
||||||
else if(idx == 2)
|
else if(idx == 2)
|
||||||
App.Para.Rs485Ch2.Enable = false;
|
App.Para.Rs485Ch2.Enable = false;
|
||||||
DBG_LOG("RS485Ch%d Disable!\r\n", idx);
|
DBG_LOG("RS485Ch%d Disable!\r\n", idx);
|
||||||
@@ -519,11 +521,11 @@ void DebugCmdRS485Ctrl(int argc, char *argv[])
|
|||||||
DBG_LOG("At least keep one upgraded serial port!\r\n");
|
DBG_LOG("At least keep one upgraded serial port!\r\n");
|
||||||
return;
|
return;
|
||||||
}
|
}
|
||||||
App.Para.Rs485Ch2.UpgradeEnable = false;
|
App.Para.Rs485Ch1.UpgradeEnable = false;
|
||||||
DBG_LOG("RS485Ch%d Upgrade Off!\r\n", idx);
|
DBG_LOG("RS485Ch%d Upgrade Off!\r\n", idx);
|
||||||
}
|
}
|
||||||
else if(idx == 2) {
|
else if(idx == 2) {
|
||||||
if(App.Para.Rs485Ch2.UpgradeEnable == false)
|
if(App.Para.Rs485Ch1.UpgradeEnable == false)
|
||||||
{
|
{
|
||||||
DBG_LOG("At least keep one upgraded serial port!\r\n");
|
DBG_LOG("At least keep one upgraded serial port!\r\n");
|
||||||
return;
|
return;
|
||||||
@@ -541,11 +543,11 @@ void DebugCmdRS485Ctrl(int argc, char *argv[])
|
|||||||
SAVE_APP_PARA((uint32_t *)&App.Para);
|
SAVE_APP_PARA((uint32_t *)&App.Para);
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: DebugLoraConfig
|
* 函数名称: DebugLoraConfig
|
||||||
* 功能描述: Lora参数配置
|
* 功能描述: Lora参数配置
|
||||||
* 参 数: argc, 输入参数数量
|
* 参 数: argc, 输入参数数量
|
||||||
argv, 输入参数
|
argv, 输入参数
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static void DebugLoraConfig(int argc, char *argv[])
|
static void DebugLoraConfig(int argc, char *argv[])
|
||||||
{
|
{
|
||||||
@@ -675,19 +677,19 @@ static void DebugLoraConfig(int argc, char *argv[])
|
|||||||
DBG_LOG("Lora reinitializes.\r\n");
|
DBG_LOG("Lora reinitializes.\r\n");
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: DebugCmdLPConfig
|
* 函数名称: DebugCmdLPConfig
|
||||||
* 功能描述: 低功耗参数配置
|
* 功能描述: 低功耗参数配置
|
||||||
* 参 数: argc, 输入参数数量
|
* 参 数: argc, 输入参数数量
|
||||||
argv, 输入参数
|
argv, 输入参数
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static void DebugCmdLPConfig(int argc, char *argv[])
|
static void DebugCmdLPConfig(int argc, char *argv[])
|
||||||
{
|
{
|
||||||
DBG_LOG("\r\n");
|
DBG_LOG("\r\n");
|
||||||
uint16_t CollectInterval; //采集时间间隔
|
uint16_t CollectInterval; //采集时间间隔
|
||||||
uint16_t ReportInterval; //上报时间间隔
|
uint16_t ReportInterval; //上报时间间隔
|
||||||
uint8_t ERInterval; //紧急上报时间间隔
|
uint8_t ERInterval; //紧急上报时间间隔
|
||||||
uint8_t ERTime; //紧急上报时长
|
uint8_t ERTime; //紧急上报时长
|
||||||
|
|
||||||
if(strcmp(argv[1], "?") == 0) {
|
if(strcmp(argv[1], "?") == 0) {
|
||||||
DBG_LOG("Debug Cmd: lpcfg arg1 arg2 arg3 arg4\r\n");
|
DBG_LOG("Debug Cmd: lpcfg arg1 arg2 arg3 arg4\r\n");
|
||||||
@@ -737,11 +739,11 @@ static void DebugCmdLPConfig(int argc, char *argv[])
|
|||||||
DBG_LOG("The low-power device is configured.\r\n");
|
DBG_LOG("The low-power device is configured.\r\n");
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: DebugLaserConfig
|
* 函数名称: DebugLaserConfig
|
||||||
* 功能描述: 激光控制
|
* 功能描述: 激光控制
|
||||||
* 参 数: argc, 输入参数数量
|
* 参 数: argc, 输入参数数量
|
||||||
argv, 输入参数
|
* argv, 参数列表
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static void DebugLaserConfig(int argc, char *argv[])
|
static void DebugLaserConfig(int argc, char *argv[])
|
||||||
{
|
{
|
||||||
@@ -751,32 +753,54 @@ static void DebugLaserConfig(int argc, char *argv[])
|
|||||||
|
|
||||||
if(strcmp(argv[1], "?") == 0) {
|
if(strcmp(argv[1], "?") == 0) {
|
||||||
DBG_LOG("Debug Cmd: laser arg1\r\n");
|
DBG_LOG("Debug Cmd: laser arg1\r\n");
|
||||||
DBG_LOG(" brief --> Control laser on or off.\r\n");
|
DBG_LOG(" brief --> Control laser on/off, set auto-off timer.\r\n");
|
||||||
DBG_LOG(" arg1 --> on/off\r\n\r\n");
|
DBG_LOG(" arg1 --> on/off/time\r\n");
|
||||||
|
DBG_LOG(" laser on Turn on laser, start timer.\r\n");
|
||||||
|
DBG_LOG(" laser off Turn off laser.\r\n");
|
||||||
|
DBG_LOG(" laser time <min> Set auto-off timer (0=disable, default 10).\r\n\r\n");
|
||||||
return;
|
return;
|
||||||
}
|
}
|
||||||
|
|
||||||
if(strcmp(argv[1], "on") == 0) {
|
if(strcmp(argv[1], "on") == 0) {
|
||||||
DBG_LOG("The laser has been activated.\r\n");
|
DBG_LOG("The laser has been activated.\r\n");
|
||||||
SGCP.LaserOnOff = true;
|
SGCP.LaserOnOff = true;
|
||||||
|
SGCP.LaserTimerCount = SGCP.LaserTimerMinutes * 2;
|
||||||
SGCP.GWStatus = GW_STATUS_LASER_STARES;
|
SGCP.GWStatus = GW_STATUS_LASER_STARES;
|
||||||
}
|
}
|
||||||
else if(strcmp(argv[1], "off") == 0) {
|
else if(strcmp(argv[1], "off") == 0) {
|
||||||
DBG_LOG("The laser has been turned off.\r\n");
|
DBG_LOG("The laser has been turned off.\r\n");
|
||||||
SGCP.LaserOnOff = false;
|
SGCP.LaserOnOff = false;
|
||||||
|
SGCP.LaserTimerCount = 0;
|
||||||
SGCP.GWStatus = GW_STATUS_LASER_STARES;
|
SGCP.GWStatus = GW_STATUS_LASER_STARES;
|
||||||
}
|
}
|
||||||
|
else if(strcmp(argv[1], "time") == 0)
|
||||||
|
{
|
||||||
|
if(argc < 3)
|
||||||
|
{
|
||||||
|
DBG_LOG("Laser timer is set to %d minute(s).\r\n", SGCP.LaserTimerMinutes);
|
||||||
|
return;
|
||||||
|
}
|
||||||
|
int min = atoi(argv[2]);
|
||||||
|
if(min < 0 || min > 240)
|
||||||
|
{
|
||||||
|
DBG_LOG("Invalid minutes! Range: 0~240.\r\n");
|
||||||
|
return;
|
||||||
|
}
|
||||||
|
SGCP.LaserTimerMinutes = (uint8_t)min;
|
||||||
|
App.Para.LaserTimerMinutes = (uint8_t)min;
|
||||||
|
SAVE_APP_PARA((uint32_t *)&App.Para);
|
||||||
|
DBG_LOG("Laser timer set to %d minute(s).\r\n", SGCP.LaserTimerMinutes);
|
||||||
|
}
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: DebugCmdRestoreFactory
|
* Function: DebugCmdRestoreFactory
|
||||||
* 功能描述: 恢复出厂设置
|
* Description: 恢复出厂设置
|
||||||
* 参 数: argc, 输入参数数量
|
* Input: argc, 参数个数
|
||||||
argv, 输入参数
|
* argv, 参数列表
|
||||||
* 返 回 值: 无
|
* Output: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void DebugCmdRestoreFactory(int argc, char *argv[])
|
void DebugCmdRestoreFactory(int argc, char *argv[])
|
||||||
{
|
{
|
||||||
DBG_LOG("\r\n");
|
|
||||||
if(strcmp(argv[1], "?") == 0) {
|
if(strcmp(argv[1], "?") == 0) {
|
||||||
DBG_LOG("Debug Cmd: res arg1\r\n\
|
DBG_LOG("Debug Cmd: res arg1\r\n\
|
||||||
brief --> Restore to factory.\r\n");
|
brief --> Restore to factory.\r\n");
|
||||||
@@ -797,11 +821,11 @@ void DebugCmdRestoreFactory(int argc, char *argv[])
|
|||||||
while(1);
|
while(1);
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: DebugCmdReboot
|
* 函数名称: DebugCmdChannel
|
||||||
* 功能描述: 设备重启
|
* 功能描述: 调试打印通道设置
|
||||||
* 参 数: argc, 输入参数数量
|
* 参 数: argc, 输入参数数量
|
||||||
argv, 输入参数
|
argv, 输入参数
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static void DebugCmdChannel(int argc, char *argv[])
|
static void DebugCmdChannel(int argc, char *argv[])
|
||||||
{
|
{
|
||||||
@@ -840,19 +864,108 @@ static void DebugCmdReboot(int argc, char *argv[])
|
|||||||
while(1);
|
while(1);
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
|
/*****************************************************************************************
|
||||||
|
* Function: DebugCmdAtt
|
||||||
|
* Description: 姿态角持续输出
|
||||||
|
* Input: argc, 参数个数
|
||||||
|
argv, 参数列表
|
||||||
|
* Output: 无
|
||||||
|
*****************************************************************************************/
|
||||||
|
static void DebugCmdAtt(int argc, char *argv[])
|
||||||
|
{
|
||||||
|
DBG_LOG("\r\n");
|
||||||
|
if(argc < 2 || strcmp(argv[1], "?") == 0)
|
||||||
|
{
|
||||||
|
DBG_LOG("Debug Cmd: att\r\n");
|
||||||
|
DBG_LOG(" brief --> Continuous attitude angle output.\r\n");
|
||||||
|
DBG_LOG(" arg1 --> on/off\r\n\r\n");
|
||||||
|
return;
|
||||||
|
}
|
||||||
|
|
||||||
|
if(strcmp(argv[1], "on") == 0)
|
||||||
|
{
|
||||||
|
App.AttTestMode = true;
|
||||||
|
App.AttTestCnt = 1000;
|
||||||
|
DBG_LOG("Attitude debug output ON.\r\n");
|
||||||
|
}
|
||||||
|
else if(strcmp(argv[1], "off") == 0)
|
||||||
|
{
|
||||||
|
App.AttTestMode = false;
|
||||||
|
DBG_LOG("Attitude debug output OFF.\r\n");
|
||||||
|
}
|
||||||
|
}
|
||||||
|
/*****************************************************************************************
|
||||||
|
* Function: DebugCmdSignal
|
||||||
|
* Description: 信号质量查询
|
||||||
|
* Input: argc, 参数个数
|
||||||
|
argv, 参数列表
|
||||||
|
* Output: 无
|
||||||
|
*****************************************************************************************/
|
||||||
|
static void DebugCmdSignal(int argc, char *argv[])
|
||||||
|
{
|
||||||
|
DBG_LOG("\r\n");
|
||||||
|
if(argc > 1)
|
||||||
|
{
|
||||||
|
if(strcmp(argv[1], "?") == 0) {
|
||||||
|
DBG_LOG("Debug Cmd: sig\r\n");
|
||||||
|
DBG_LOG(" brief --> Query signal quality with gateway.\r\n");
|
||||||
|
return;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
if(SGCP.GWStatus != GW_STATUS_IDLE) {
|
||||||
|
DBG_LOG("Device is busy, please try again later.\r\n");
|
||||||
|
return;
|
||||||
|
}
|
||||||
|
SGCP.GWStatus = GW_STATUS_SIGNAL;
|
||||||
|
}
|
||||||
|
/*****************************************************************************************
|
||||||
|
* Function: DebugCmdAttTest
|
||||||
|
* Description: 姿态角测试输出
|
||||||
|
* Input: argc, 参数个数
|
||||||
|
* argv, 参数列表
|
||||||
|
* Output: 无
|
||||||
|
*****************************************************************************************/
|
||||||
|
static void DebugCmdAttTest(int argc, char *argv[])
|
||||||
|
{
|
||||||
|
DBG_LOG("\r\n");
|
||||||
|
if(argc < 2)
|
||||||
|
{
|
||||||
|
DBG_LOG("Debug Cmd: att on/off\r\n");
|
||||||
|
DBG_LOG(" att on --> Start attitude test output.\r\n");
|
||||||
|
DBG_LOG(" att off --> Stop attitude test output.\r\n\r\n");
|
||||||
|
return;
|
||||||
|
}
|
||||||
|
|
||||||
|
if(strcmp(argv[1], "on") == 0) {
|
||||||
|
App.AttTestMode = true;
|
||||||
|
App.AttTestCnt = 1000;
|
||||||
|
DBG_LOG("Attitude test started.\r\n");
|
||||||
|
}
|
||||||
|
else if(strcmp(argv[1], "off") == 0) {
|
||||||
|
App.AttTestMode = false;
|
||||||
|
DBG_LOG("Attitude test stopped.\r\n");
|
||||||
|
}
|
||||||
|
else {
|
||||||
|
DBG_LOG("Usage: att on/off\r\n");
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
void DebugCmdHelp(int argc, char *argv[])
|
void DebugCmdHelp(int argc, char *argv[])
|
||||||
{
|
{
|
||||||
DBG_LOG("\r\n");
|
DBG_LOG("\r\n");
|
||||||
char Data[10];
|
char Data[10];
|
||||||
uint8_t len = 0;
|
uint8_t len = 0;
|
||||||
char *argv1[10]; // 最多10个参数,按需调整
|
char *argv1[10]; // 最多10个参数,按需调整
|
||||||
int argc1 = 0;
|
int argc1 = 0;
|
||||||
char *token;
|
char *token;
|
||||||
|
|
||||||
memset(Data, 0x00, 10);
|
memset(Data, 0x00, 10);
|
||||||
len = strlen("para ?\0");
|
len = strlen("para ?\0");
|
||||||
memcpy(Data, "para ?\0", len);
|
memcpy(Data, "para ?\0", len);
|
||||||
token = strtok(Data, " "); // 假设分隔符是空格
|
token = strtok(Data, " "); // 假设分隔符是空格
|
||||||
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++){
|
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++){
|
||||||
argv1[argc1] = token;
|
argv1[argc1] = token;
|
||||||
token = strtok(NULL, " ");
|
token = strtok(NULL, " ");
|
||||||
@@ -862,7 +975,7 @@ void DebugCmdHelp(int argc, char *argv[])
|
|||||||
memset(Data, 0x00, 10);
|
memset(Data, 0x00, 10);
|
||||||
len = strlen("main ?\0");
|
len = strlen("main ?\0");
|
||||||
memcpy(Data, "main ?\0", len);
|
memcpy(Data, "main ?\0", len);
|
||||||
token = strtok(Data, " "); // 假设分隔符是空格
|
token = strtok(Data, " "); // 假设分隔符是空格
|
||||||
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++){
|
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++){
|
||||||
argv1[argc1] = token;
|
argv1[argc1] = token;
|
||||||
token = strtok(NULL, " ");
|
token = strtok(NULL, " ");
|
||||||
@@ -872,7 +985,7 @@ void DebugCmdHelp(int argc, char *argv[])
|
|||||||
memset(Data, 0x00, 10);
|
memset(Data, 0x00, 10);
|
||||||
len = strlen("data ?\0");
|
len = strlen("data ?\0");
|
||||||
memcpy(Data, "data ?\0", len);
|
memcpy(Data, "data ?\0", len);
|
||||||
token = strtok(Data, " "); // 假设分隔符是空格
|
token = strtok(Data, " "); // 假设分隔符是空格
|
||||||
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++){
|
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++){
|
||||||
argv1[argc1] = token;
|
argv1[argc1] = token;
|
||||||
token = strtok(NULL, " ");
|
token = strtok(NULL, " ");
|
||||||
@@ -882,7 +995,7 @@ void DebugCmdHelp(int argc, char *argv[])
|
|||||||
memset(Data, 0x00, 10);
|
memset(Data, 0x00, 10);
|
||||||
len = strlen("mac ?\0");
|
len = strlen("mac ?\0");
|
||||||
memcpy(Data, "mac ?\0", len);
|
memcpy(Data, "mac ?\0", len);
|
||||||
token = strtok(Data, " "); // 假设分隔符是空格
|
token = strtok(Data, " "); // 假设分隔符是空格
|
||||||
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++){
|
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++){
|
||||||
argv1[argc1] = token;
|
argv1[argc1] = token;
|
||||||
token = strtok(NULL, " ");
|
token = strtok(NULL, " ");
|
||||||
@@ -892,7 +1005,7 @@ void DebugCmdHelp(int argc, char *argv[])
|
|||||||
memset(Data, 0x00, 10);
|
memset(Data, 0x00, 10);
|
||||||
len = strlen("reg ?\0");
|
len = strlen("reg ?\0");
|
||||||
memcpy(Data, "reg ?\0", len);
|
memcpy(Data, "reg ?\0", len);
|
||||||
token = strtok(Data, " "); // 假设分隔符是空格
|
token = strtok(Data, " "); // 假设分隔符是空格
|
||||||
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++){
|
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++){
|
||||||
argv1[argc1] = token;
|
argv1[argc1] = token;
|
||||||
token = strtok(NULL, " ");
|
token = strtok(NULL, " ");
|
||||||
@@ -902,7 +1015,7 @@ void DebugCmdHelp(int argc, char *argv[])
|
|||||||
memset(Data, 0x00, 10);
|
memset(Data, 0x00, 10);
|
||||||
len = strlen("up ?\0");
|
len = strlen("up ?\0");
|
||||||
memcpy(Data, "up ?\0", len);
|
memcpy(Data, "up ?\0", len);
|
||||||
token = strtok(Data, " "); // 假设分隔符是空格
|
token = strtok(Data, " "); // 假设分隔符是空格
|
||||||
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++){
|
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++){
|
||||||
argv1[argc1] = token;
|
argv1[argc1] = token;
|
||||||
token = strtok(NULL, " ");
|
token = strtok(NULL, " ");
|
||||||
@@ -912,7 +1025,7 @@ void DebugCmdHelp(int argc, char *argv[])
|
|||||||
memset(Data, 0x00, 10);
|
memset(Data, 0x00, 10);
|
||||||
len = strlen("coll ?\0");
|
len = strlen("coll ?\0");
|
||||||
memcpy(Data, "coll ?\0", len);
|
memcpy(Data, "coll ?\0", len);
|
||||||
token = strtok(Data, " "); // 假设分隔符是空格
|
token = strtok(Data, " "); // 假设分隔符是空格
|
||||||
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++){
|
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++){
|
||||||
argv1[argc1] = token;
|
argv1[argc1] = token;
|
||||||
token = strtok(NULL, " ");
|
token = strtok(NULL, " ");
|
||||||
@@ -922,7 +1035,7 @@ void DebugCmdHelp(int argc, char *argv[])
|
|||||||
memset(Data, 0x00, 10);
|
memset(Data, 0x00, 10);
|
||||||
len = strlen("rs485 ?\0");
|
len = strlen("rs485 ?\0");
|
||||||
memcpy(Data, "rs485 ?\0", len);
|
memcpy(Data, "rs485 ?\0", len);
|
||||||
token = strtok(Data, " "); // 假设分隔符是空格
|
token = strtok(Data, " "); // 假设分隔符是空格
|
||||||
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++){
|
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++){
|
||||||
argv1[argc1] = token;
|
argv1[argc1] = token;
|
||||||
token = strtok(NULL, " ");
|
token = strtok(NULL, " ");
|
||||||
@@ -932,7 +1045,7 @@ void DebugCmdHelp(int argc, char *argv[])
|
|||||||
memset(Data, 0x00, 10);
|
memset(Data, 0x00, 10);
|
||||||
len = strlen("lora ?\0");
|
len = strlen("lora ?\0");
|
||||||
memcpy(Data, "lora ?\0", len);
|
memcpy(Data, "lora ?\0", len);
|
||||||
token = strtok(Data, " "); // 假设分隔符是空格
|
token = strtok(Data, " "); // 假设分隔符是空格
|
||||||
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++) {
|
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++) {
|
||||||
argv1[argc1] = token;
|
argv1[argc1] = token;
|
||||||
token = strtok(NULL, " ");
|
token = strtok(NULL, " ");
|
||||||
@@ -942,7 +1055,7 @@ void DebugCmdHelp(int argc, char *argv[])
|
|||||||
memset(Data, 0x00, 10);
|
memset(Data, 0x00, 10);
|
||||||
len = strlen("lpcfg ?\0");
|
len = strlen("lpcfg ?\0");
|
||||||
memcpy(Data, "lpcfg ?\0", len);
|
memcpy(Data, "lpcfg ?\0", len);
|
||||||
token = strtok(Data, " "); // 假设分隔符是空格
|
token = strtok(Data, " "); // 假设分隔符是空格
|
||||||
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++) {
|
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++) {
|
||||||
argv1[argc1] = token;
|
argv1[argc1] = token;
|
||||||
token = strtok(NULL, " ");
|
token = strtok(NULL, " ");
|
||||||
@@ -952,7 +1065,7 @@ void DebugCmdHelp(int argc, char *argv[])
|
|||||||
memset(Data, 0x00, 10);
|
memset(Data, 0x00, 10);
|
||||||
len = strlen("laser ?\0");
|
len = strlen("laser ?\0");
|
||||||
memcpy(Data, "laser ?\0", len);
|
memcpy(Data, "laser ?\0", len);
|
||||||
token = strtok(Data, " "); // 假设分隔符是空格
|
token = strtok(Data, " "); // 假设分隔符是空格
|
||||||
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++) {
|
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++) {
|
||||||
argv1[argc1] = token;
|
argv1[argc1] = token;
|
||||||
token = strtok(NULL, " ");
|
token = strtok(NULL, " ");
|
||||||
@@ -962,7 +1075,7 @@ void DebugCmdHelp(int argc, char *argv[])
|
|||||||
memset(Data, 0x00, 10);
|
memset(Data, 0x00, 10);
|
||||||
len = strlen("res ?\0");
|
len = strlen("res ?\0");
|
||||||
memcpy(Data, "res ?\0", len);
|
memcpy(Data, "res ?\0", len);
|
||||||
token = strtok(Data, " "); // 假设分隔符是空格
|
token = strtok(Data, " "); // 假设分隔符是空格
|
||||||
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++) {
|
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++) {
|
||||||
argv1[argc1] = token;
|
argv1[argc1] = token;
|
||||||
token = strtok(NULL, " ");
|
token = strtok(NULL, " ");
|
||||||
@@ -982,12 +1095,31 @@ void DebugCmdHelp(int argc, char *argv[])
|
|||||||
memset(Data, 0x00, 10);
|
memset(Data, 0x00, 10);
|
||||||
len = strlen("reboot ?\0");
|
len = strlen("reboot ?\0");
|
||||||
memcpy(Data, "reboot ?\0", len);
|
memcpy(Data, "reboot ?\0", len);
|
||||||
token = strtok(Data, " "); // 假设分隔符是空格
|
token = strtok(Data, " "); // 假设分隔符是空格
|
||||||
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++) {
|
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++) {
|
||||||
argv1[argc1] = token;
|
argv1[argc1] = token;
|
||||||
token = strtok(NULL, " ");
|
token = strtok(NULL, " ");
|
||||||
}
|
}
|
||||||
DebugCmdReboot(argc1, argv1);
|
DebugCmdReboot(argc1, argv1);
|
||||||
|
|
||||||
|
memset(Data, 0x00, 10);
|
||||||
|
len = strlen("sig ?\0");
|
||||||
|
memcpy(Data, "sig ?\0", len);
|
||||||
|
token = strtok(Data, " ");
|
||||||
|
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++) {
|
||||||
|
argv1[argc1] = token;
|
||||||
|
token = strtok(NULL, " ");
|
||||||
|
}
|
||||||
|
|
||||||
|
memset(Data, 0x00, 10);
|
||||||
|
len = strlen("att ?\0");
|
||||||
|
memcpy(Data, "att ?\0", len);
|
||||||
|
token = strtok(Data, " ");
|
||||||
|
for(argc1 = 0; (token != NULL && argc1 < 10); argc1++) {
|
||||||
|
argv1[argc1] = token;
|
||||||
|
token = strtok(NULL, " ");
|
||||||
|
}
|
||||||
|
DebugCmdAtt(argc1, argv1);
|
||||||
}
|
}
|
||||||
|
|
||||||
const DBGFunType DebugFun[DEBUG_CMD_CNT] = {
|
const DBGFunType DebugFun[DEBUG_CMD_CNT] = {
|
||||||
@@ -1006,6 +1138,8 @@ const DBGFunType DebugFun[DEBUG_CMD_CNT] = {
|
|||||||
"res", DebugCmdRestoreFactory,
|
"res", DebugCmdRestoreFactory,
|
||||||
"dch", DebugCmdChannel,
|
"dch", DebugCmdChannel,
|
||||||
"reboot", DebugCmdReboot,
|
"reboot", DebugCmdReboot,
|
||||||
|
"att", DebugCmdAtt,
|
||||||
|
"sig", DebugCmdSignal,
|
||||||
};
|
};
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
|
|||||||
@@ -1,4 +1,4 @@
|
|||||||
#ifndef __DEBUG_H
|
#ifndef __DEBUG_H
|
||||||
#define __DEBUG_H
|
#define __DEBUG_H
|
||||||
|
|
||||||
#include "bsp.h"
|
#include "bsp.h"
|
||||||
@@ -13,7 +13,7 @@
|
|||||||
void vcom_Send( char *format, ... );
|
void vcom_Send( char *format, ... );
|
||||||
void vcom_Send2(uint8_t *sData, uint16_t len);
|
void vcom_Send2(uint8_t *sData, uint16_t len);
|
||||||
|
|
||||||
#define DBG_LOG2(x, y) vcom_Send2(x, y) //打印长度超过缓存DEBUG_BUFF_SIZE_MAX的信息
|
#define DBG_LOG2(x, y) vcom_Send2(x, y) //打印长度超过缓存DEBUG_BUFF_SIZE_MAX的信息
|
||||||
#define DBG_LOG(...) vcom_Send(__VA_ARGS__)
|
#define DBG_LOG(...) vcom_Send(__VA_ARGS__)
|
||||||
#define DBG_LOG_F(fmt,arg...) LOG("[%s] "fmt,__FUNCTION__,##arg)
|
#define DBG_LOG_F(fmt,arg...) LOG("[%s] "fmt,__FUNCTION__,##arg)
|
||||||
|
|
||||||
@@ -27,7 +27,7 @@ void vcom_Send2(uint8_t *sData, uint16_t len);
|
|||||||
}
|
}
|
||||||
|
|
||||||
typedef enum {
|
typedef enum {
|
||||||
DBG_CH_UART0 = 0, //默认串口调试方式 Uart0Init
|
DBG_CH_UART0 = 0, //默认串口调试方式 Uart0Init
|
||||||
DBG_CH_RS485_1, //RS485_1 (LPUART0)
|
DBG_CH_RS485_1, //RS485_1 (LPUART0)
|
||||||
}DebugChannel_e;
|
}DebugChannel_e;
|
||||||
|
|
||||||
|
|||||||
@@ -1,4 +1,4 @@
|
|||||||
|
|
||||||
/* Includes ------------------------------------------------------------------*/
|
/* Includes ------------------------------------------------------------------*/
|
||||||
#include "lsm6dsl_app.h"
|
#include "lsm6dsl_app.h"
|
||||||
#include "lsm6dsl_reg.h"
|
#include "lsm6dsl_reg.h"
|
||||||
@@ -15,7 +15,7 @@ static bool InitFlag;
|
|||||||
|
|
||||||
#define ACC_CVTTIME (20 * 1000)
|
#define ACC_CVTTIME (20 * 1000)
|
||||||
#define ACC_COLL_CNT_MAX 6
|
#define ACC_COLL_CNT_MAX 6
|
||||||
#define ACC_FIFO_WATERMASK (ACC_COLL_CNT_MAX * 6) //采集一秒数据
|
#define ACC_FIFO_WATERMASK (ACC_COLL_CNT_MAX * 6) //采集一秒数据
|
||||||
#define TX_BUF_DIM 1000
|
#define TX_BUF_DIM 1000
|
||||||
#define BOOT_TIME 15 //ms
|
#define BOOT_TIME 15 //ms
|
||||||
|
|
||||||
@@ -93,7 +93,7 @@ static void Lsm6dsl_Init(void)
|
|||||||
/* Set Output Data Rate */
|
/* Set Output Data Rate */
|
||||||
lsm6dsl_xl_data_rate_set(&dev_ctx, LSM6DSL_XL_ODR_12Hz5);
|
lsm6dsl_xl_data_rate_set(&dev_ctx, LSM6DSL_XL_ODR_12Hz5);
|
||||||
lsm6dsl_gy_data_rate_set(&dev_ctx, LSM6DSL_GY_ODR_12Hz5);
|
lsm6dsl_gy_data_rate_set(&dev_ctx, LSM6DSL_GY_ODR_12Hz5);
|
||||||
//lsm6dsl_gy_data_rate_set(&left_dev_ctx, LSM6DSL_GY_ODR_OFF); //关闭地磁
|
//lsm6dsl_gy_data_rate_set(&left_dev_ctx, LSM6DSL_GY_ODR_OFF); //关闭地磁
|
||||||
/* Set full scale */
|
/* Set full scale */
|
||||||
lsm6dsl_xl_full_scale_set(&dev_ctx, LSM6DSL_2g);
|
lsm6dsl_xl_full_scale_set(&dev_ctx, LSM6DSL_2g);
|
||||||
lsm6dsl_gy_full_scale_set(&dev_ctx, LSM6DSL_2000dps);
|
lsm6dsl_gy_full_scale_set(&dev_ctx, LSM6DSL_2000dps);
|
||||||
@@ -110,26 +110,26 @@ static void Lsm6dsl_Init(void)
|
|||||||
/* Gyroscope - filtering chain */
|
/* Gyroscope - filtering chain */
|
||||||
lsm6dsl_gy_band_pass_set(&dev_ctx, LSM6DSL_HP_260mHz_LP1_STRONG);
|
lsm6dsl_gy_band_pass_set(&dev_ctx, LSM6DSL_HP_260mHz_LP1_STRONG);
|
||||||
|
|
||||||
//fifo模式设置
|
//fifo模式设置
|
||||||
lsm6dsl_fifo_xl_batch_set(&dev_ctx, LSM6DSL_FIFO_XL_NO_DEC);//fifo加速度写入频率设置
|
lsm6dsl_fifo_xl_batch_set(&dev_ctx, LSM6DSL_FIFO_XL_NO_DEC);//fifo加速度写入频率设置
|
||||||
lsm6dsl_fifo_gy_batch_set(&dev_ctx, LSM6DSL_FIFO_GY_NO_DEC);//fifo陀螺仪写入频率设置
|
lsm6dsl_fifo_gy_batch_set(&dev_ctx, LSM6DSL_FIFO_GY_NO_DEC);//fifo陀螺仪写入频率设置
|
||||||
lsm6dsl_fifo_data_rate_set(&dev_ctx, LSM6DSL_FIFO_12Hz5);//FIFO ODR选择
|
lsm6dsl_fifo_data_rate_set(&dev_ctx, LSM6DSL_FIFO_12Hz5);//FIFO ODR选择
|
||||||
|
|
||||||
//中断1设置,watermark full中断
|
//中断1设置,watermark full中断
|
||||||
lsm6dsl_int1_route_t int1val ={0, 0, 0};
|
lsm6dsl_int1_route_t int1val ={0, 0, 0};
|
||||||
int1val.int1_full_flag = 1; //开阀值中断,fifo存储到缓存深度时触发
|
int1val.int1_full_flag = 1; //开阀值中断,fifo存储到缓存深度时触发
|
||||||
lsm6dsl_pin_int1_route_set(&dev_ctx, int1val);
|
lsm6dsl_pin_int1_route_set(&dev_ctx, int1val);
|
||||||
lsm6dsl_fifo_watermark_set(&dev_ctx, ACC_FIFO_WATERMASK);//FIFO水印电平设置,阈值设置,缓存深度
|
lsm6dsl_fifo_watermark_set(&dev_ctx, ACC_FIFO_WATERMASK);//FIFO水印电平设置,阈值设置,缓存深度
|
||||||
lsm6dsl_fifo_stop_on_wtm_set(&dev_ctx, 1);//fifo缓存深度存满时,不再存储
|
lsm6dsl_fifo_stop_on_wtm_set(&dev_ctx, 1);//fifo缓存深度存满时,不再存储
|
||||||
//lsm6dsl_fifo_xl_gy_8bit_format_set(&left_dev_ctx, 1);//在FIFO中为XL和陀螺启用MSByte记忆,缓存宽度
|
//lsm6dsl_fifo_xl_gy_8bit_format_set(&left_dev_ctx, 1);//在FIFO中为XL和陀螺启用MSByte记忆,缓存宽度
|
||||||
lsm6dsl_block_data_update_set(&dev_ctx, 1); //fifo模式ctrl3_c bdu必须为1,直到读取MSB和LSB后才更新输出寄存器
|
lsm6dsl_block_data_update_set(&dev_ctx, 1); //fifo模式ctrl3_c bdu必须为1,直到读取MSB和LSB后才更新输出寄存器
|
||||||
lsm6dsl_auto_increment_set(&dev_ctx, 1); //fifo模式ctrl3_c if_inc必须为1,通过串行接口(I2C或SPI)进行多字节访问时自动增加寄存器地址。
|
lsm6dsl_auto_increment_set(&dev_ctx, 1); //fifo模式ctrl3_c if_inc必须为1,通过串行接口(I2C或SPI)进行多字节访问时自动增加寄存器地址。
|
||||||
lsm6dsl_ctrl3_c_t ctrl3_c;
|
lsm6dsl_ctrl3_c_t ctrl3_c;
|
||||||
platform_read(LSM6DSL_CTRL3_C, (uint8_t *)&ctrl3_c, 1);
|
platform_read(LSM6DSL_CTRL3_C, (uint8_t *)&ctrl3_c, 1);
|
||||||
//lsm6dsl_fifo_mode_set(&dev_ctx, LSM6DSL_FIFO_MODE);
|
//lsm6dsl_fifo_mode_set(&dev_ctx, LSM6DSL_FIFO_MODE);
|
||||||
|
|
||||||
//中断2设置,唤醒中断
|
//中断2设置,唤醒中断
|
||||||
// uint8_t temp = 0x90; //唤醒中断
|
// uint8_t temp = 0x90; //唤醒中断
|
||||||
// platform_write(LSM6DSL_TAP_CFG, &temp, 1);
|
// platform_write(LSM6DSL_TAP_CFG, &temp, 1);
|
||||||
// temp = 0;
|
// temp = 0;
|
||||||
// platform_write(LSM6DSL_WAKE_UP_DUR, &temp, 1);
|
// platform_write(LSM6DSL_WAKE_UP_DUR, &temp, 1);
|
||||||
|
|||||||
+70
-70
@@ -1,4 +1,4 @@
|
|||||||
#include "main.h"
|
#include "main.h"
|
||||||
#include "mmc5983.h"
|
#include "mmc5983.h"
|
||||||
#include "UartDebug.h"
|
#include "UartDebug.h"
|
||||||
#include "i2c.h"
|
#include "i2c.h"
|
||||||
@@ -11,11 +11,11 @@ static bool MMC5983IntFlag;
|
|||||||
static MMC5983Var_t MMC5983Var;
|
static MMC5983Var_t MMC5983Var;
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: MMC5983_Write_Reg
|
* 函数名称: MMC5983_Write_Reg
|
||||||
* 功能描述: MMC5983写寄存器
|
* 功能描述: MMC5983写寄存器
|
||||||
* 参 数: reg 寄存器地址
|
* 参 数: reg 寄存器地址
|
||||||
val 寄存器数据
|
val 寄存器数据
|
||||||
* 返 回 值: 成功返回true,失败返回false
|
* 返 回 值: 成功返回true,失败返回false
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static bool MMC5983_Write_Reg(uint8_t reg, uint8_t val)
|
static bool MMC5983_Write_Reg(uint8_t reg, uint8_t val)
|
||||||
{
|
{
|
||||||
@@ -23,10 +23,10 @@ static bool MMC5983_Write_Reg(uint8_t reg, uint8_t val)
|
|||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: MMC5983_Read_Reg
|
* 函数名称: MMC5983_Read_Reg
|
||||||
* 功能描述: MMC5983读寄存器
|
* 功能描述: MMC5983读寄存器
|
||||||
* 参 数: reg 寄存器地址
|
* 参 数: reg 寄存器地址
|
||||||
* 返 回 值: 返回寄存器值
|
* 返 回 值: 返回寄存器值
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static uint8_t MMC5983_Read_Reg(uint8_t reg)
|
static uint8_t MMC5983_Read_Reg(uint8_t reg)
|
||||||
{
|
{
|
||||||
@@ -37,12 +37,12 @@ static uint8_t MMC5983_Read_Reg(uint8_t reg)
|
|||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: MMC5983_Read_Buffer
|
* 函数名称: MMC5983_Read_Buffer
|
||||||
* 功能描述: MMC5983读数据
|
* 功能描述: MMC5983读数据
|
||||||
* 参 数: reg 寄存器地址
|
* 参 数: reg 寄存器地址
|
||||||
buffer 读取数据输出缓存入口
|
buffer 读取数据输出缓存入口
|
||||||
len 读取长度
|
len 读取长度
|
||||||
* 返 回 值: 成功返回true,失败返回false
|
* 返 回 值: 成功返回true,失败返回false
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static bool MMC5983_Read_Buffer(uint8_t reg, void *buffer, uint8_t len)
|
static bool MMC5983_Read_Buffer(uint8_t reg, void *buffer, uint8_t len)
|
||||||
{
|
{
|
||||||
@@ -50,27 +50,27 @@ static bool MMC5983_Read_Buffer(uint8_t reg, void *buffer, uint8_t len)
|
|||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: MMC5983StartCov
|
* 函数名称: MMC5983StartCov
|
||||||
* 功能描述: MMC5983开启连续转换
|
* 功能描述: MMC5983开启连续转换
|
||||||
* 参 数: 无
|
* 参 数: 无
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static void MMC5983StartCov(void)
|
static void MMC5983StartCov(void)
|
||||||
{
|
{
|
||||||
MMC5983RegCtrl2 Ctrl2Reg; //开启/关闭连续转换
|
MMC5983RegCtrl2 Ctrl2Reg; //开启/关闭连续转换
|
||||||
Ctrl2Reg.Byte = 0x00;
|
Ctrl2Reg.Byte = 0x00;
|
||||||
Ctrl2Reg.Bit.Cm_freq = 0x04;
|
Ctrl2Reg.Bit.Cm_freq = 0x04;
|
||||||
Ctrl2Reg.Bit.Cmm_en = 1; //连续设1,单次设0
|
Ctrl2Reg.Bit.Cmm_en = 1; //连续设1,单次设0
|
||||||
Ctrl2Reg.Bit.Prd_set = 3;
|
Ctrl2Reg.Bit.Prd_set = 3;
|
||||||
Ctrl2Reg.Bit.En_prd_set = 1; //连续设1,单次设0
|
Ctrl2Reg.Bit.En_prd_set = 1; //连续设1,单次设0
|
||||||
MMC5983_Write_Reg(MMC5983_CTRL_2, Ctrl2Reg.Byte);
|
MMC5983_Write_Reg(MMC5983_CTRL_2, Ctrl2Reg.Byte);
|
||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: MMC5983_Init
|
* 函数名称: MMC5983_Init
|
||||||
* 功能描述: MMC5983初始化
|
* 功能描述: MMC5983初始化
|
||||||
* 参 数: 无
|
* 参 数: 无
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static void MMC5983_Init(void)
|
static void MMC5983_Init(void)
|
||||||
{
|
{
|
||||||
@@ -93,12 +93,12 @@ static void MMC5983_Init(void)
|
|||||||
MMC5983_Write_Reg(MMC5983_CTRL_1, Ctrl1Reg.Byte);
|
MMC5983_Write_Reg(MMC5983_CTRL_1, Ctrl1Reg.Byte);
|
||||||
MMC5983Delay(15);
|
MMC5983Delay(15);
|
||||||
|
|
||||||
MMC5983RegCtrl2 Ctrl2Reg; //开启/关闭连续转换
|
MMC5983RegCtrl2 Ctrl2Reg; //开启/关闭连续转换
|
||||||
Ctrl2Reg.Byte = 0x00;
|
Ctrl2Reg.Byte = 0x00;
|
||||||
Ctrl2Reg.Bit.Cm_freq = 0x04;
|
Ctrl2Reg.Bit.Cm_freq = 0x04;
|
||||||
Ctrl2Reg.Bit.Cmm_en = 0; //连续设1,单次设0
|
Ctrl2Reg.Bit.Cmm_en = 0; //连续设1,单次设0
|
||||||
Ctrl2Reg.Bit.Prd_set = 3;
|
Ctrl2Reg.Bit.Prd_set = 3;
|
||||||
Ctrl2Reg.Bit.En_prd_set = 0; //连续设1,单次设0
|
Ctrl2Reg.Bit.En_prd_set = 0; //连续设1,单次设0
|
||||||
MMC5983_Write_Reg(MMC5983_CTRL_2, Ctrl2Reg.Byte);
|
MMC5983_Write_Reg(MMC5983_CTRL_2, Ctrl2Reg.Byte);
|
||||||
|
|
||||||
MMC5983RegCtrl3 Ctrl3Reg;
|
MMC5983RegCtrl3 Ctrl3Reg;
|
||||||
@@ -121,12 +121,12 @@ static void MMC5983_Init(void)
|
|||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: MMC5983_Read
|
* 函数名称: MMC5983_Read
|
||||||
* 功能描述: MMC5983读取原始数据
|
* 功能描述: MMC5983读取原始数据
|
||||||
* 参 数: MagAdcX X轴数据
|
* 参 数: MagAdcX X轴数据
|
||||||
MagAdcY Y轴数据
|
MagAdcY Y轴数据
|
||||||
MagAdcZ Z轴数据
|
MagAdcZ Z轴数据
|
||||||
* 返 回 值: 成功返回true,失败返回false
|
* 返 回 值: 成功返回true,失败返回false
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static bool MMC5983_Read(int32_t *MagAdcX, int32_t *MagAdcY, int32_t *MagAdcZ)
|
static bool MMC5983_Read(int32_t *MagAdcX, int32_t *MagAdcY, int32_t *MagAdcZ)
|
||||||
{
|
{
|
||||||
@@ -142,10 +142,10 @@ static bool MMC5983_Read(int32_t *MagAdcX, int32_t *MagAdcY, int32_t *MagAdcZ)
|
|||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: MMC5983_Get_Mag
|
* 函数名称: MMC5983_Get_Mag
|
||||||
* 功能描述: 外部获取MMC5983磁场强度数据
|
* 功能描述: 外部获取MMC5983磁场强度数据
|
||||||
* 参 数: mag 读取数据输出缓存入口
|
* 参 数: mag 读取数据输出缓存入口
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void MMC5983_Get_Mag(float *mag)
|
void MMC5983_Get_Mag(float *mag)
|
||||||
{
|
{
|
||||||
@@ -164,10 +164,10 @@ void MMC5983_Get_Mag(float *mag)
|
|||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: MMC5983LoopHandler
|
* 函数名称: MMC5983LoopHandler
|
||||||
* 功能描述: MMC5983循环处理函数
|
* 功能描述: MMC5983循环处理函数
|
||||||
* 参 数: 无
|
* 参 数: 无
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
extern void MmcDataProcessCallBack(float *Mag);
|
extern void MmcDataProcessCallBack(float *Mag);
|
||||||
|
|
||||||
@@ -251,16 +251,16 @@ void MMC5983LoopHandler(void)
|
|||||||
case MMC5983_STATUS_STOP:{
|
case MMC5983_STATUS_STOP:{
|
||||||
MMC5983Stop();
|
MMC5983Stop();
|
||||||
MMC5983Var.Status = MMC5983_STATUS_IDLE;
|
MMC5983Var.Status = MMC5983_STATUS_IDLE;
|
||||||
//MMC5983Var.Status = MMC5983_STATUS_START;//持续工作
|
//MMC5983Var.Status = MMC5983_STATUS_START;//持续工作
|
||||||
break;}
|
break;}
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: LeftMMC59831mSRoutine
|
* 函数名称: LeftMMC59831mSRoutine
|
||||||
* 功能描述: MMC59831ms时基循环处理函数
|
* 功能描述: MMC59831ms时基循环处理函数
|
||||||
* 参 数: 无
|
* 参 数: 无
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void MMC59831mSRoutine(void)
|
void MMC59831mSRoutine(void)
|
||||||
{
|
{
|
||||||
@@ -269,10 +269,10 @@ void MMC59831mSRoutine(void)
|
|||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: LeftMMC5983Init
|
* 函数名称: LeftMMC5983Init
|
||||||
* 功能描述: MMC5983初始化
|
* 功能描述: MMC5983初始化
|
||||||
* 参 数: 无
|
* 参 数: 无
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void MMC5983Init(void)
|
void MMC5983Init(void)
|
||||||
{
|
{
|
||||||
@@ -285,10 +285,10 @@ void MMC5983Init(void)
|
|||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: LeftMMC5983Start
|
* 函数名称: LeftMMC5983Start
|
||||||
* 功能描述: MMC5983启动
|
* 功能描述: MMC5983启动
|
||||||
* 参 数: 无
|
* 参 数: 无
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void MMC5983Start(void)
|
void MMC5983Start(void)
|
||||||
{
|
{
|
||||||
@@ -301,21 +301,21 @@ void MMC5983Start(void)
|
|||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: LeftMMC5983StartRead
|
* 函数名称: LeftMMC5983StartRead
|
||||||
* 功能描述: MMC5983启动读取
|
* 功能描述: MMC5983启动读取
|
||||||
* 参 数: 无
|
* 参 数: 无
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void MMC5983StartRead(void)
|
void MMC5983StartRead(void)
|
||||||
{
|
{
|
||||||
MMC5983_Init();//读取时重新初始化
|
MMC5983_Init();//读取时重新初始化
|
||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: MMC5983Stop
|
* 函数名称: MMC5983Stop
|
||||||
* 功能描述: MMC5983停止
|
* 功能描述: MMC5983停止
|
||||||
* 参 数: 无
|
* 参 数: 无
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void MMC5983Stop(void)
|
void MMC5983Stop(void)
|
||||||
{
|
{
|
||||||
@@ -331,10 +331,10 @@ void MMC5983Stop(void)
|
|||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: LeftMMC5983IntCallBack
|
* 函数名称: LeftMMC5983IntCallBack
|
||||||
* 功能描述: MMC5983中断回调
|
* 功能描述: MMC5983中断回调
|
||||||
* 参 数: 无
|
* 参 数: 无
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void MMC5983IntCallBack(void)
|
void MMC5983IntCallBack(void)
|
||||||
{
|
{
|
||||||
|
|||||||
+29
-29
@@ -1,4 +1,4 @@
|
|||||||
/*******************************************************************************
|
/*******************************************************************************
|
||||||
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
|
* Copyright (C) 2019, Huada Semiconductor Co.,Ltd All rights reserved.
|
||||||
*
|
*
|
||||||
* This software is owned and published by:
|
* This software is owned and published by:
|
||||||
@@ -83,39 +83,39 @@ typedef enum en_opa_oenx
|
|||||||
OpaOen4 = 6u //OUT4
|
OpaOen4 = 6u //OUT4
|
||||||
}en_opa_oenx_t;
|
}en_opa_oenx_t;
|
||||||
|
|
||||||
typedef enum en_opa_clksrc // 自动校准脉冲宽度设置
|
typedef enum en_opa_clksrc // 鑷姩鏍″噯鑴夊啿瀹藉害璁剧疆
|
||||||
{
|
{
|
||||||
OpaM1Pclk = 0u, // 1个PCLK周期
|
OpaM1Pclk = 0u, // 1涓狿CLK鍛ㄦ湡
|
||||||
OpaM2Pclk = 1u, // 2个PCLK周期
|
OpaM2Pclk = 1u, // 2涓狿CLK鍛ㄦ湡
|
||||||
OpaM4Pclk = 2u, // 4个PCLK周期
|
OpaM4Pclk = 2u, // 4涓狿CLK鍛ㄦ湡
|
||||||
OpaM8Pclk = 3u, // 8个PCLK周期
|
OpaM8Pclk = 3u, // 8涓狿CLK鍛ㄦ湡
|
||||||
OpaM16Pclk = 4u, // 16个PCLK周期
|
OpaM16Pclk = 4u, // 16涓狿CLK鍛ㄦ湡
|
||||||
OpaM32Pclk = 5u, // 32个PCLK周期
|
OpaM32Pclk = 5u, // 32涓狿CLK鍛ㄦ湡
|
||||||
OpaM64Pclk = 6u, // 64个PCLK周期
|
OpaM64Pclk = 6u, // 64涓狿CLK鍛ㄦ湡
|
||||||
OpaM128Pclk = 7u, // 128个PCLK周期
|
OpaM128Pclk = 7u, // 128涓狿CLK鍛ㄦ湡
|
||||||
OpaM256Pclk = 8u, // 256个PCLK周期
|
OpaM256Pclk = 8u, // 256涓狿CLK鍛ㄦ湡
|
||||||
OpaM512Pclk = 9u, // 512个PCLK周期
|
OpaM512Pclk = 9u, // 512涓狿CLK鍛ㄦ湡
|
||||||
OpaM1024Pclk = 10u, // 1024个PCLK周期
|
OpaM1024Pclk = 10u, // 1024涓狿CLK鍛ㄦ湡
|
||||||
OpaM2048Pclk = 11u, // 2048个PCLK周期
|
OpaM2048Pclk = 11u, // 2048涓狿CLK鍛ㄦ湡
|
||||||
OpaM4096Pclk = 12u // 4096个PCLK周期
|
OpaM4096Pclk = 12u // 4096涓狿CLK鍛ㄦ湡
|
||||||
}en_opa_clksrc_t;
|
}en_opa_clksrc_t;
|
||||||
|
|
||||||
typedef enum en_opa_set0ctrl
|
typedef enum en_opa_set0ctrl
|
||||||
{
|
{
|
||||||
enClkSwSet = 3u, // 软件校准使能
|
enClkSwSet = 3u, // 杞欢鏍″噯浣胯兘
|
||||||
enAzPulse = 2u, // 软件校准
|
enAzPulse = 2u, // 杞欢鏍″噯
|
||||||
enTrigger = 1u, // 软件触发自动教零
|
enTrigger = 1u, // 杞欢瑙﹀彂鑷姩鏁欓浂
|
||||||
enAdctr = 1u // 使能ADC启动触发OPA自动校准功能
|
enAdctr = 1u // 浣胯兘ADC鍚姩瑙﹀彂OPA鑷姩鏍″噯鍔熻兘
|
||||||
}en_opa_set0ctrl_t;
|
}en_opa_set0ctrl_t;
|
||||||
|
|
||||||
typedef struct
|
typedef struct
|
||||||
{
|
{
|
||||||
boolean_t bAzen; // 自动教零配置
|
boolean_t bAzen; // 鑷姩鏁欓浂閰嶇疆
|
||||||
boolean_t bClk_sw_set; // 自动教零选择
|
boolean_t bClk_sw_set; // 鑷姩鏁欓浂閫夋嫨
|
||||||
boolean_t bAz_pulse; // 软件校准设置
|
boolean_t bAz_pulse; // 杞欢鏍″噯璁剧疆
|
||||||
boolean_t bTrigger; // 软件触发校准设置
|
boolean_t bTrigger; // 杞欢瑙﹀彂鏍″噯璁剧疆
|
||||||
boolean_t bAdctr_en; // ADC启动触发OPA自动校准设置
|
boolean_t bAdctr_en; // ADC鍚姩瑙﹀彂OPA鑷姩鏍″噯璁剧疆
|
||||||
en_opa_clksrc_t enClksrc; // 自动校准脉冲宽度设置
|
en_opa_clksrc_t enClksrc; // 鑷姩鏍″噯鑴夊啿瀹藉害璁剧疆
|
||||||
}stc_opa_zcfg_t;
|
}stc_opa_zcfg_t;
|
||||||
|
|
||||||
|
|
||||||
@@ -126,17 +126,17 @@ typedef struct
|
|||||||
/******************************************************************************
|
/******************************************************************************
|
||||||
* Global function prototypes (definition in C source)
|
* Global function prototypes (definition in C source)
|
||||||
******************************************************************************/
|
******************************************************************************/
|
||||||
//OPA 通道使能
|
//OPA 閫氶亾浣胯兘
|
||||||
extern void Opa_Cmd(boolean_t NewStatus);
|
extern void Opa_Cmd(boolean_t NewStatus);
|
||||||
extern void Opa_CmdBuf(boolean_t NewStatus);
|
extern void Opa_CmdBuf(boolean_t NewStatus);
|
||||||
|
|
||||||
//OPA零点校准配置
|
//OPA闆剁偣鏍″噯閰嶇疆
|
||||||
extern void Opa_SetZero(stc_opa_zcfg_t* InitZero);
|
extern void Opa_SetZero(stc_opa_zcfg_t* InitZero);
|
||||||
|
|
||||||
//使能输出OUTX
|
//浣胯兘杈撳嚭OUTX
|
||||||
extern void Opa_CmdOnex(en_opa_oenx_t onex, boolean_t NewState);
|
extern void Opa_CmdOnex(en_opa_oenx_t onex, boolean_t NewState);
|
||||||
|
|
||||||
//配置校零相关的位
|
//閰嶇疆鏍¢浂鐩稿叧鐨勪綅
|
||||||
extern void Opa_ZeroBitCtrl(en_opa_set0ctrl_t CtrlBit, boolean_t NewState);
|
extern void Opa_ZeroBitCtrl(en_opa_set0ctrl_t CtrlBit, boolean_t NewState);
|
||||||
|
|
||||||
//@} // OPA Group
|
//@} // OPA Group
|
||||||
|
|||||||
+7
-7
@@ -1,4 +1,4 @@
|
|||||||
/*************************************************************************************
|
/*************************************************************************************
|
||||||
* Copyright (C) 2016, Huada Semiconductor Co.,Ltd All rights reserved.
|
* Copyright (C) 2016, Huada Semiconductor Co.,Ltd All rights reserved.
|
||||||
*
|
*
|
||||||
* This software is owned and published by:
|
* This software is owned and published by:
|
||||||
@@ -42,7 +42,7 @@
|
|||||||
/******************************************************************************/
|
/******************************************************************************/
|
||||||
/** \file ram.h
|
/** \file ram.h
|
||||||
**
|
**
|
||||||
** RAM 数据结构及API声明.
|
** RAM 鏁版嵁缁撴瀯鍙夾PI澹版槑.
|
||||||
**
|
**
|
||||||
** - 2019-04-02 LuX V1.0
|
** - 2019-04-02 LuX V1.0
|
||||||
**
|
**
|
||||||
@@ -96,15 +96,15 @@ extern "C"
|
|||||||
******************************************************************************/
|
******************************************************************************/
|
||||||
|
|
||||||
|
|
||||||
///<中断相关函数
|
///<涓柇鐩稿叧鍑芥暟
|
||||||
///<中断使能/禁止
|
///<涓柇浣胯兘/绂佹
|
||||||
void Ram_EnableIrq(void);
|
void Ram_EnableIrq(void);
|
||||||
void Ram_DisableIrq(void);
|
void Ram_DisableIrq(void);
|
||||||
///<中断标志获取
|
///<涓柇鏍囧織鑾峰彇
|
||||||
boolean_t Ram_GetIntFlag(void);
|
boolean_t Ram_GetIntFlag(void);
|
||||||
///<中断标志清除
|
///<涓柇鏍囧織娓呴櫎
|
||||||
void Ram_ClearIntFlag(void);
|
void Ram_ClearIntFlag(void);
|
||||||
///<奇偶校验出错地址获取
|
///<濂囧伓鏍¢獙鍑洪敊鍦板潃鑾峰彇
|
||||||
uint32_t Ram_ErrAddrGet(void);
|
uint32_t Ram_ErrAddrGet(void);
|
||||||
|
|
||||||
//@} // RamGroup
|
//@} // RamGroup
|
||||||
|
|||||||
+6
-6
@@ -1,4 +1,4 @@
|
|||||||
/******************************************************************************
|
/******************************************************************************
|
||||||
*Copyright(C)2018, Huada Semiconductor Co.,Ltd All rights reserved.
|
*Copyright(C)2018, Huada Semiconductor Co.,Ltd All rights reserved.
|
||||||
*
|
*
|
||||||
* This software is owned and published by:
|
* This software is owned and published by:
|
||||||
@@ -85,7 +85,7 @@
|
|||||||
|
|
||||||
/**
|
/**
|
||||||
*****************************************************************************
|
*****************************************************************************
|
||||||
** \brief Ram奇偶校验出错地址获取
|
** \brief Ram濂囧伓鏍¢獙鍑洪敊鍦板潃鑾峰彇
|
||||||
**
|
**
|
||||||
**
|
**
|
||||||
** \retval ERROR ADDRESS
|
** \retval ERROR ADDRESS
|
||||||
@@ -97,7 +97,7 @@ uint32_t Ram_ErrAddrGet(void)
|
|||||||
|
|
||||||
/**
|
/**
|
||||||
*****************************************************************************
|
*****************************************************************************
|
||||||
** \brief Ram中断标志获取
|
** \brief Ram涓柇鏍囧織鑾峰彇
|
||||||
**
|
**
|
||||||
**
|
**
|
||||||
** \retval TRUE or FALSE
|
** \retval TRUE or FALSE
|
||||||
@@ -116,7 +116,7 @@ boolean_t Ram_GetIntFlag(void)
|
|||||||
|
|
||||||
/**
|
/**
|
||||||
*****************************************************************************
|
*****************************************************************************
|
||||||
** \brief Ram中断标志清除
|
** \brief Ram涓柇鏍囧織娓呴櫎
|
||||||
**
|
**
|
||||||
**
|
**
|
||||||
** \retval Null
|
** \retval Null
|
||||||
@@ -128,7 +128,7 @@ void Ram_ClearIntFlag(void)
|
|||||||
|
|
||||||
/**
|
/**
|
||||||
*****************************************************************************
|
*****************************************************************************
|
||||||
** \brief Ram中断使能
|
** \brief Ram涓柇浣胯兘
|
||||||
**
|
**
|
||||||
** \retval Null
|
** \retval Null
|
||||||
*****************************************************************************/
|
*****************************************************************************/
|
||||||
@@ -139,7 +139,7 @@ void Ram_EnableIrq (void)
|
|||||||
|
|
||||||
/**
|
/**
|
||||||
*****************************************************************************
|
*****************************************************************************
|
||||||
** \brief ram中断禁止
|
** \brief ram涓柇绂佹
|
||||||
**
|
**
|
||||||
** \retval Null
|
** \retval Null
|
||||||
*****************************************************************************/
|
*****************************************************************************/
|
||||||
|
|||||||
+11
-11
@@ -1,4 +1,4 @@
|
|||||||
#ifndef __ALGORITHM_H
|
#ifndef __ALGORITHM_H
|
||||||
#define __ALGORITHM_H
|
#define __ALGORITHM_H
|
||||||
|
|
||||||
#include <math.h>
|
#include <math.h>
|
||||||
@@ -11,20 +11,20 @@
|
|||||||
#define CRC16_BASE 0xA001
|
#define CRC16_BASE 0xA001
|
||||||
|
|
||||||
|
|
||||||
// 峰值谷值检查结果结构体
|
// 峰值谷值检查结果结构体
|
||||||
typedef struct {
|
typedef struct {
|
||||||
bool peaks_positive; // 所有峰值是否大于0
|
bool peaks_positive; // 所有峰值是否大于0
|
||||||
bool valleys_negative; // 所有谷值是否小于0
|
bool valleys_negative; // 所有谷值是否小于0
|
||||||
int peak_count; // 检测到的峰值数量
|
int peak_count; // 检测到的峰值数量
|
||||||
int valley_count; // 检测到的谷值数量
|
int valley_count; // 检测到的谷值数量
|
||||||
} PeakValleyCheck;
|
} PeakValleyCheck;
|
||||||
|
|
||||||
// 趋势分析结果结构体
|
// 趋势分析结果结构体
|
||||||
typedef struct {
|
typedef struct {
|
||||||
double slope; // 线性斜率
|
double slope; // 线性斜率
|
||||||
int sign_changes; // 符号变化次数
|
int sign_changes; // 符号变化次数
|
||||||
char trend_type; // 趋势类型
|
char trend_type; // 趋势类型
|
||||||
char steepness; // 陡峭度
|
char steepness; // 陡峭度
|
||||||
} TrendResult;
|
} TrendResult;
|
||||||
|
|
||||||
PeakValleyCheck check_peaks_valleys(int data[], int length);
|
PeakValleyCheck check_peaks_valleys(int data[], int length);
|
||||||
|
|||||||
+129
-122
@@ -1,13 +1,13 @@
|
|||||||
/* 传感器通用通讯协议V1.0*/
|
/* 传感器通用通讯协议V1.0*/
|
||||||
|
|
||||||
#ifndef __SGCP_H
|
#ifndef __SGCP_H
|
||||||
#define __SGCP_H
|
#define __SGCP_H
|
||||||
#include "bsp.h"
|
#include "bsp.h"
|
||||||
|
|
||||||
#define WORK_MODE 1 //工作模式选择,0、本机为查询模式,1、本机为上报模式(低功耗)
|
#define WORK_MODE 1 //工作模式选择,0、本机为查询模式,1、本机为上报模式(低功耗)
|
||||||
#define SGCP_SELECT 1 //协议选择,0、本机为单个主设备接多个子设备,1、本机为单个主设备不接子设备,2、本机为单个子设备
|
#define SGCP_SELECT 1 //协议选择,0、本机为单个主设备接多个子设备,1、本机为单个主设备不接子设备,2、本机为单个子设备
|
||||||
|
|
||||||
typedef struct {//网关与主设备固定帧
|
typedef struct {//网关与主设备固定帧
|
||||||
uint8_t Header;
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uint8_t Header;
|
||||||
uint8_t GWAddr[6];
|
uint8_t GWAddr[6];
|
||||||
uint8_t MDAddr[6];
|
uint8_t MDAddr[6];
|
||||||
@@ -15,56 +15,56 @@ typedef struct {//
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|||||||
uint16_t PayloadLen;
|
uint16_t PayloadLen;
|
||||||
}__attribute__ ((packed))GatewayFrameHeader_t,*GatewayFrameHeader;
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}__attribute__ ((packed))GatewayFrameHeader_t,*GatewayFrameHeader;
|
||||||
|
|
||||||
typedef struct {//主设备与子设备固定帧
|
typedef struct {//主设备与子设备固定帧
|
||||||
uint8_t Header;
|
uint8_t Header;
|
||||||
uint8_t Addr;
|
uint8_t Addr;
|
||||||
uint8_t Cmd;
|
uint8_t Cmd;
|
||||||
uint8_t PayloadLen;
|
uint8_t PayloadLen;
|
||||||
}__attribute__ ((packed))SubsetFrameHeader_t,*SubsetFrameHeader;
|
}__attribute__ ((packed))SubsetFrameHeader_t,*SubsetFrameHeader;
|
||||||
|
|
||||||
typedef struct {//内部指令固定帧
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typedef struct {//内部指令固定帧
|
||||||
uint8_t Header;
|
uint8_t Header;
|
||||||
uint8_t MAC[6];
|
uint8_t MAC[6];
|
||||||
uint8_t Cmd;
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uint8_t Cmd;
|
||||||
uint8_t PayloadLen;
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uint8_t PayloadLen;
|
||||||
}__attribute__ ((packed))InsideFrameHeader_t,*InsideFrameHeader;
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}__attribute__ ((packed))InsideFrameHeader_t,*InsideFrameHeader;
|
||||||
|
|
||||||
typedef struct {//主设备固定包头
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typedef struct {//主设备固定包头
|
||||||
uint8_t BatLevel; //电池电量
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uint8_t BatLevel; //电池电量
|
||||||
int8_t RSSI; //信号强度
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int8_t RSSI; //信号强度
|
||||||
int8_t Nsr; //信噪比
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int8_t Nsr; //信噪比
|
||||||
}__attribute__ ((packed))MasterDev_T,*MasterDevDp;
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}__attribute__ ((packed))MasterDev_T,*MasterDevDp;
|
||||||
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|
||||||
typedef struct {//0x0006 三维连续变形
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typedef struct {//0x0006 三维连续变形
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||||||
int16_t PitchAngle; //俯仰角 (范围±900)单位0.1°
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int16_t PitchAngle; //俯仰角 (范围±1800)单位0.1°
|
||||||
int16_t RollAngle; //横滚角 (范围±900)单位0.1°
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int16_t RollAngle; //横滚角 (范围±1800)单位0.1°
|
||||||
int16_t YawAngle; //偏航角 (范围0~3600)单位0.1°
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int16_t YawAngle; //偏航角 (范围0~3600)单位0.1°
|
||||||
}__attribute__ ((packed))ContDefor3D_T,*ContDefor3DDp;
|
}__attribute__ ((packed))ContDefor3D_T,*ContDefor3DDp;
|
||||||
|
|
||||||
typedef struct {//0x0007 通讯单元
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typedef struct {//0x0007 通讯单元
|
||||||
MasterDev_T MasterDev;
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MasterDev_T MasterDev;
|
||||||
}__attribute__ ((packed))CommUnit_T,*CommUnitDp;
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}__attribute__ ((packed))CommUnit_T,*CommUnitDp;
|
||||||
|
|
||||||
typedef struct {//0x0008 三维应力
|
typedef struct {//0x0008 三维应力
|
||||||
int16_t PitchAngle; //俯仰角(范围±900)单位0.1°
|
int16_t PitchAngle; //俯仰角(范围±900)单位0.1°
|
||||||
int16_t RollAngle; //横滚角(范围±900)单位0.1°
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int16_t RollAngle; //横滚角(范围±900)单位0.1°
|
||||||
int16_t YawAngle; //偏航角(范围0~3600)单位0.1°
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int16_t YawAngle; //偏航角(范围0~3600)单位0.1°
|
||||||
int32_t Strain1; //X轴应力值(范围±10MPa,单位Pa)
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int32_t Strain1; //X轴应力值(范围±10MPa,单位Pa)
|
||||||
int32_t Strain2; //Y轴应力值(范围±10MPa,单位Pa)
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int32_t Strain2; //Y轴应力值(范围±10MPa,单位Pa)
|
||||||
int32_t Strain3; //Z轴应力值(范围±10MPa,单位Pa)
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int32_t Strain3; //Z轴应力值(范围±10MPa,单位Pa)
|
||||||
}__attribute__ ((packed))Force3D_T,*Force3DDp;
|
}__attribute__ ((packed))Force3D_T,*Force3DDp;
|
||||||
|
|
||||||
typedef struct {//0x0009 激光示踪
|
typedef struct {//0x0009 激光示踪
|
||||||
MasterDev_T MasterDev;
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MasterDev_T MasterDev;
|
||||||
int16_t PitchAngle; //俯仰角 (范围±900)单位0.1°
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int16_t PitchAngle; //俯仰角 (范围±900)单位0.1°
|
||||||
int16_t RollAngle; //横滚角 (范围±900)单位0.1°
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int16_t RollAngle; //横滚角 (范围±900)单位0.1°
|
||||||
int16_t YawAngle; //偏航角 (范围0~3600)单位0.1°
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int16_t YawAngle; //偏航角 (范围0~3600)单位0.1°
|
||||||
}__attribute__ ((packed))LaserTracing_T,*LaserTracingDp;
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}__attribute__ ((packed))LaserTracing_T,*LaserTracingDp;
|
||||||
|
|
||||||
typedef struct {//0x000E 裂缝仪
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typedef struct {//0x000E 裂缝仪
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||||||
int16_t XwiseDist; //横向位移量(范围0~150mm)
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int16_t XwiseDist; //横向位移量(范围0~150mm)
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||||||
int16_t LgthwysDist; //纵向位移距离(范围0~150mm)
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int16_t LgthwysDist; //纵向位移距离(范围0~150mm)
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||||||
int16_t RotationDist; //旋转位移距离(范围0~150mm)
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int16_t RotationDist; //旋转位移距离(范围0~150mm)
|
||||||
}__attribute__ ((packed))Crack_T,*CrackDp;
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}__attribute__ ((packed))Crack_T,*CrackDp;
|
||||||
|
|
||||||
typedef struct {
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typedef struct {
|
||||||
@@ -73,9 +73,9 @@ typedef struct {
|
|||||||
Force3D_T Force3D;
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Force3D_T Force3D;
|
||||||
Crack_T Crack;
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Crack_T Crack;
|
||||||
LaserTracing_T LaserTracing;
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LaserTracing_T LaserTracing;
|
||||||
}__attribute__ ((packed))DeviceData_T,*DeviceDp; //设备数据
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}__attribute__ ((packed))DeviceData_T,*DeviceDp; //设备数据
|
||||||
|
|
||||||
/*接收子设备数据状态机*/
|
/*接收子设备数据状态机*/
|
||||||
typedef enum {
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typedef enum {
|
||||||
SUB_STATUS_IDLE,
|
SUB_STATUS_IDLE,
|
||||||
SUB_STATUS_BROADCAST_CALI,
|
SUB_STATUS_BROADCAST_CALI,
|
||||||
@@ -89,7 +89,7 @@ typedef enum {
|
|||||||
SUB_STATUS_BROADCAST_SYNC_TIME,
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SUB_STATUS_BROADCAST_SYNC_TIME,
|
||||||
}SubStatus_m;
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}SubStatus_m;
|
||||||
|
|
||||||
/*接收网关数据状态机*/
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/*接收网关数据状态机*/
|
||||||
typedef enum {
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typedef enum {
|
||||||
GW_STATUS_IDLE,
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GW_STATUS_IDLE,
|
||||||
GW_STATUS_WAIT_SUBIDLE,
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GW_STATUS_WAIT_SUBIDLE,
|
||||||
@@ -99,11 +99,13 @@ typedef enum {
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|||||||
GW_STATUS_READ_SENSOR,
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GW_STATUS_READ_SENSOR,
|
||||||
GW_STATUS_SET_COL_TIME,
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GW_STATUS_SET_COL_TIME,
|
||||||
GW_STATUS_SYNC_TIME,
|
GW_STATUS_SYNC_TIME,
|
||||||
GW_STATUS_UPLOAD_SENSOR,//主动上报模式时会使用该状态
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GW_STATUS_UPLOAD_SENSOR,//主动上报模式时会使用该状态
|
||||||
GW_STATUS_WAIT_UPLOAD,//主动上报模式时会使用该状态
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GW_STATUS_WAIT_UPLOAD,//主动上报模式时会使用该状态
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||||||
GW_STATUS_LASER_STARES,//激光状态回应
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GW_STATUS_LASER_STARES,//激光状态回应
|
||||||
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GW_STATUS_SIGNAL,
|
||||||
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GW_STATUS_WAIT_SIGNAL,
|
||||||
}GWStatus_m;
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}GWStatus_m;
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||||||
/*接收主设备数据状态机*/
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/*接收主设备数据状态机*/
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||||||
typedef enum {
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typedef enum {
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||||||
MAS_STATUS_IDLE,
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MAS_STATUS_IDLE,
|
||||||
MAS_STATUS_CALI,
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MAS_STATUS_CALI,
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||||||
@@ -112,80 +114,81 @@ typedef enum {
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|||||||
MAS_STATUS_SET_COL_TIME,
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MAS_STATUS_SET_COL_TIME,
|
||||||
MAS_STATUS_SYNC_TIME,
|
MAS_STATUS_SYNC_TIME,
|
||||||
}MasStatus_m;
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}MasStatus_m;
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||||||
/*内部指令数据状态机*/
|
/*内部指令数据状态机*/
|
||||||
typedef enum {
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typedef enum {
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||||||
IN_STATUS_IDLE,
|
IN_STATUS_IDLE,
|
||||||
IN_STATUS_UPDATE,
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IN_STATUS_UPDATE,
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||||||
IN_STATUS_ALTER_485ADDR,
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IN_STATUS_ALTER_485ADDR,
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||||||
}InStatus_m;
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}InStatus_m;
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||||||
/*网关到主设备命令集*/
|
/*网关到主设备命令集*/
|
||||||
typedef enum {
|
typedef enum {
|
||||||
GWTOMD_CMD_LOGIN = 0x00, //0x00,设备注册
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GWTOMD_CMD_LOGIN = 0x00, //0x00,设备注册
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||||||
GWTOMD_CMD_CALI = 0x01, //0x01, 校准指令
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GWTOMD_CMD_CALI = 0x01, //0x01, 校准指令
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||||||
GWTOMD_CMD_READ_UPLOAD_SENSOR = 0x02, //0x02,读取数据指令or上传数据指令
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GWTOMD_CMD_READ_UPLOAD_SENSOR = 0x02, //0x02,读取数据指令or上传数据指令
|
||||||
GWTOMD_CMD_SET_COL_TIME = 0x05, //0x05,设置采集时间间隔
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GWTOMD_CMD_SET_COL_TIME = 0x05, //0x05,设置采集时间间隔
|
||||||
GWTOMD_CMD_SYNC_TIME = 0x06, //0x06,时间同步
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GWTOMD_CMD_SYNC_TIME = 0x06, //0x06,时间同步
|
||||||
GWTOMD_CMD_SET_LASER = 0x08,//打开or关闭激光
|
GWTOMD_CMD_SET_LASER = 0x08,//打开or关闭激光
|
||||||
|
GWTOMD_CMD_SIGNAL = 0x09,
|
||||||
}GWTOMD_CMD_M;
|
}GWTOMD_CMD_M;
|
||||||
|
|
||||||
/*主设备到子设备命令集*/
|
/*主设备到子设备命令集*/
|
||||||
typedef enum {
|
typedef enum {
|
||||||
MDTOSD_CMD_CALI = 0x01, //0x01, 校准指令
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MDTOSD_CMD_CALI = 0x01, //0x01, 校准指令
|
||||||
MDTOSD_CMD_READ_DATA = 0x02, //0x02,读取数据指令
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MDTOSD_CMD_READ_DATA = 0x02, //0x02,读取数据指令
|
||||||
MDTOSD_CMD_INQUIRE = 0x03, //0x03, 设备查询指令
|
MDTOSD_CMD_INQUIRE = 0x03, //0x03, 设备查询指令
|
||||||
MDTOSD_CMD_SET_COL_TIME = 0x05, //0x05,设置采集时间间隔
|
MDTOSD_CMD_SET_COL_TIME = 0x05, //0x05,设置采集时间间隔
|
||||||
MDTOSD_CMD_SYNC_TIME = 0x06, //0x06,时间同步
|
MDTOSD_CMD_SYNC_TIME = 0x06, //0x06,时间同步
|
||||||
}MDTOSD_CMD_M;
|
}MDTOSD_CMD_M;
|
||||||
/*内部指令命令集*/
|
/*内部指令命令集*/
|
||||||
typedef enum {
|
typedef enum {
|
||||||
INSIDE_CMD_UPDATE = 0x81, //0x81,升级程序下发请求,由主机发起,从机应答
|
INSIDE_CMD_UPDATE = 0x81, //0x81,升级程序下发请求,由主机发起,从机应答
|
||||||
INSIDE_CMD_ALTER_485ADDR = 0x04, //0x04, 设置设备485地址
|
INSIDE_CMD_ALTER_485ADDR = 0x04, //0x04, 设置设备485地址
|
||||||
}INSIDE_CMD_M;
|
}INSIDE_CMD_M;
|
||||||
/*设备类型*/
|
/*设备类型*/
|
||||||
typedef enum {
|
typedef enum {
|
||||||
NUL, //0x0000 空设备
|
NUL, //0x0000 空设备
|
||||||
FORCE_6D, //0x0001 六维应力
|
FORCE_6D, //0x0001 六维应力
|
||||||
OSMOTIC_PRESSURE, //0x0002 渗透压
|
OSMOTIC_PRESSURE, //0x0002 渗透压
|
||||||
ELASTIC_WAVEGUIDE, //0x0003 弹性波导
|
ELASTIC_WAVEGUIDE, //0x0003 弹性波导
|
||||||
DIELECTRIC_MASS, //0x0004 介电质普
|
DIELECTRIC_MASS, //0x0004 介电质普
|
||||||
_0x0005, //0x0005 保留
|
_0x0005, //0x0005 保留
|
||||||
CONT_DEFOR_3D, //0x0006 三维连续变形
|
CONT_DEFOR_3D, //0x0006 三维连续变形
|
||||||
COMM_UNIT, //0x0007 通讯单元
|
COMM_UNIT, //0x0007 通讯单元
|
||||||
FORCE_3D, //0x0008 三维应力
|
FORCE_3D, //0x0008 三维应力
|
||||||
LASER_TRACING, //0x0009 激光示踪
|
LASER_TRACING, //0x0009 激光示踪
|
||||||
_0x000A, //0x000A 保留
|
_0x000A, //0x000A 保留
|
||||||
_0x000B, //0x000B 保留
|
_0x000B, //0x000B 保留
|
||||||
_0x000C, //0x000C 保留
|
_0x000C, //0x000C 保留
|
||||||
MULTI_PARAMETER_FUSION, //0x000D 多参数融合
|
MULTI_PARAMETER_FUSION, //0x000D 多参数融合
|
||||||
CRACK_DETECTION, //0x000E 裂缝仪
|
CRACK_DETECTION, //0x000E 裂缝仪
|
||||||
_0x000F, //0x000F 保留
|
_0x000F, //0x000F 保留
|
||||||
ATTITUDE_MONITOR, //0x0010 姿态检测
|
ATTITUDE_MONITOR, //0x0010 姿态检测
|
||||||
LASER_DISPLACE, //0x0011 激光位移
|
LASER_DISPLACE, //0x0011 激光位移
|
||||||
REBAR_STRESS, //0x0012 钢筋应力
|
REBAR_STRESS, //0x0012 钢筋应力
|
||||||
ANCHOR_ROD_STRESS, //0x0013 锚杆轴力
|
ANCHOR_ROD_STRESS, //0x0013 锚杆轴力
|
||||||
SURFACE_STRESS, //0x0014 表面应力
|
SURFACE_STRESS, //0x0014 表面应力
|
||||||
PRESSURE, //0x0015 压力
|
PRESSURE, //0x0015 压力
|
||||||
MICROWAVE_DISPLACE, //0x0016 微波测距
|
MICROWAVE_DISPLACE, //0x0016 微波测距
|
||||||
}DEVICE_TYPE_M;
|
}DEVICE_TYPE_M;
|
||||||
/*通讯方式*/
|
/*通讯方式*/
|
||||||
typedef enum {
|
typedef enum {
|
||||||
LORA = 0x01, //0x01 LORA通讯
|
LORA = 0x01, //0x01 LORA通讯
|
||||||
RS485 = 0x02, //0x02 RS485通讯
|
RS485 = 0x02, //0x02 RS485通讯
|
||||||
RS232 = 0x03, //0x03 RS232通讯
|
RS232 = 0x03, //0x03 RS232通讯
|
||||||
CAN = 0x04, //0x04 CAN通讯
|
CAN = 0x04, //0x04 CAN通讯
|
||||||
CATONE = 0x05, //0x05 _4G通讯
|
CATONE = 0x05, //0x05 _4G通讯
|
||||||
BLE = 0x06, //0x06 BLE通讯
|
BLE = 0x06, //0x06 BLE通讯
|
||||||
WIFI = 0x07, //0x07 WIFI通讯
|
WIFI = 0x07, //0x07 WIFI通讯
|
||||||
UART = 0x08, //0x08 UART通讯
|
UART = 0x08, //0x08 UART通讯
|
||||||
}COMM_WAY_M;
|
}COMM_WAY_M;
|
||||||
/*设备标志*/
|
/*设备标志*/
|
||||||
typedef enum {
|
typedef enum {
|
||||||
MASTER = 0x000000, //0x000000 主设备
|
MASTER = 0x000000, //0x000000 主设备
|
||||||
SUBSET = 0x800000, //0x800000 子设备
|
SUBSET = 0x800000, //0x800000 子设备
|
||||||
}DEVICE_SIGN_M;
|
}DEVICE_SIGN_M;
|
||||||
typedef struct {
|
typedef struct {
|
||||||
__IO GWTOMD_CMD_M rCmdGWToMD; //网关下发命令
|
__IO GWTOMD_CMD_M rCmdGWToMD; //网关下发命令
|
||||||
__IO GWTOMD_CMD_M sCmdMDToGW; //主设备返回命令
|
__IO GWTOMD_CMD_M sCmdMDToGW; //主设备返回命令
|
||||||
__IO uint16_t rPayLen;
|
__IO uint16_t rPayLen;
|
||||||
__IO bool HeaderFrame;
|
__IO bool HeaderFrame;
|
||||||
__IO uint8_t RxLen;
|
__IO uint8_t RxLen;
|
||||||
@@ -193,8 +196,8 @@ typedef struct {
|
|||||||
}GWTOMD_Rx_T;
|
}GWTOMD_Rx_T;
|
||||||
|
|
||||||
typedef struct {
|
typedef struct {
|
||||||
__IO MDTOSD_CMD_M rCmdSDToMD; //子设备返回命令
|
__IO MDTOSD_CMD_M rCmdSDToMD; //子设备返回命令
|
||||||
__IO MDTOSD_CMD_M sCmdMDToSD; //主设备下发命令
|
__IO MDTOSD_CMD_M sCmdMDToSD; //主设备下发命令
|
||||||
__IO uint8_t rPayLen;
|
__IO uint8_t rPayLen;
|
||||||
__IO bool HeaderFrame;
|
__IO bool HeaderFrame;
|
||||||
__IO uint8_t RxLen;
|
__IO uint8_t RxLen;
|
||||||
@@ -212,12 +215,12 @@ typedef struct {
|
|||||||
GWTOMD_Rx_T GWRS485Rx;
|
GWTOMD_Rx_T GWRS485Rx;
|
||||||
uint8_t GatewayBuffLen;
|
uint8_t GatewayBuffLen;
|
||||||
uint8_t GatewayBuff[256];
|
uint8_t GatewayBuff[256];
|
||||||
uint8_t GatewayRevTimeoutCnt; //网关串口接收超时计数
|
uint8_t GatewayRevTimeoutCnt; //网关串口接收超时计数
|
||||||
|
|
||||||
MDTOSD_Rx_T SDRS485Rx;
|
MDTOSD_Rx_T SDRS485Rx;
|
||||||
uint8_t SubsetBuffLen;
|
uint8_t SubsetBuffLen;
|
||||||
uint8_t SubsetBuff[256];
|
uint8_t SubsetBuff[256];
|
||||||
uint8_t SubsetRevTimeoutCnt; //子设备串口接收超时计数
|
uint8_t SubsetRevTimeoutCnt; //子设备串口接收超时计数
|
||||||
|
|
||||||
uint8_t InsidePayLen;
|
uint8_t InsidePayLen;
|
||||||
uint8_t InsideBuffLen;
|
uint8_t InsideBuffLen;
|
||||||
@@ -233,43 +236,47 @@ typedef struct {
|
|||||||
|
|
||||||
DeviceData_T DevData;
|
DeviceData_T DevData;
|
||||||
|
|
||||||
bool SubsetCaliOk; //子设备校准标志位
|
bool SubsetCaliOk; //子设备校准标志位
|
||||||
bool MasterCaliOk; //主设备标校标志位
|
bool MasterCaliOk; //主设备标校标志位
|
||||||
|
|
||||||
uint8_t ReadDataAdd; //获取数据地址
|
uint8_t ReadDataAdd; //获取数据地址
|
||||||
uint16_t DeviceDataLen; //在线设备采集到的数据长度总和
|
uint16_t DeviceDataLen; //在线设备采集到的数据长度总和
|
||||||
uint8_t DeviceDataBuff[512]; //在线设备采集到的数据缓存(主设备的数据永远排在最前面)
|
uint8_t DeviceDataBuff[512]; //在线设备采集到的数据缓存(主设备的数据永远排在最前面)
|
||||||
uint8_t DeviceData[512]; //在线设备采集到的数据(主设备的数据永远排在最前面)
|
uint8_t DeviceData[512]; //在线设备采集到的数据(主设备的数据永远排在最前面)
|
||||||
bool SubsetReadDataOk; //子设备读取数据成功标志位
|
bool SubsetReadDataOk; //子设备读取数据成功标志位
|
||||||
bool DeviceReadDataOk; //设备读取数据完成标志位
|
bool DeviceReadDataOk; //设备读取数据完成标志位
|
||||||
|
|
||||||
uint8_t DeviceN; //在线设备数量(最多32个子设备,1个主设备)
|
uint8_t DeviceN; //在线设备数量(最多32个子设备,1个主设备)
|
||||||
uint8_t Dev485Addr; //在线设备485地址(最多32个子设备,1个主设备)
|
uint8_t Dev485Addr; //在线设备485地址(最多32个子设备,1个主设备)
|
||||||
uint8_t Dev485Addrs[16]; //在线设备485地址缓存,0位为0x00广播地址
|
uint8_t Dev485Addrs[16]; //在线设备485地址缓存,0位为0x00广播地址
|
||||||
uint8_t DeviceMAC[16][6]; //在线设备的唯一MAC地址(主设备的MAC永远排在最前面)
|
uint8_t DeviceMAC[16][6]; //在线设备的唯一MAC地址(主设备的MAC永远排在最前面)
|
||||||
bool SubsetMACOk; //在线子设备MAC获取成功标志位
|
bool SubsetMACOk; //在线子设备MAC获取成功标志位
|
||||||
bool DeviceMACOk; //在线设备获取完成标志位
|
bool DeviceMACOk; //在线设备获取完成标志位
|
||||||
|
|
||||||
bool CollTimeSetOk; //采集时间设置成功标志位
|
bool CollTimeSetOk; //采集时间设置成功标志位
|
||||||
uint8_t CollTimeAdd; //设置采集时间地址
|
uint8_t CollTimeAdd; //设置采集时间地址
|
||||||
|
|
||||||
bool SyncTimeOk; //时间同步成功标志位
|
bool SyncTimeOk; //时间同步成功标志位
|
||||||
uint8_t SyncTimeAdd; //时间同步设备地址
|
uint8_t SyncTimeAdd; //时间同步设备地址
|
||||||
|
|
||||||
bool BroadCmd; //广播命令
|
bool BroadCmd; //广播命令
|
||||||
|
|
||||||
bool LoginOk; //注册成功标志位
|
bool LoginOk; //注册成功标志位
|
||||||
bool LoginMess;
|
bool LoginMess;
|
||||||
|
|
||||||
bool UploadOk; //上传成功标志位
|
bool UploadOk; //上传成功标志位
|
||||||
bool UploadMess;
|
bool UploadMess;
|
||||||
|
|
||||||
bool Gateway_IRQ_Status; //网关接收中断
|
bool Gateway_IRQ_Status; //网关接收中断
|
||||||
bool Subset_IRQ_Status; //子设备接收中断
|
bool Subset_IRQ_Status; //子设备接收中断
|
||||||
bool TimingAcquisition; //采集传感器数据
|
bool TimingAcquisition; //采集传感器数据
|
||||||
|
|
||||||
/**激光示踪私有**/
|
/**激光示踪私有**/
|
||||||
bool LaserOnOff; //打开与关闭激光标志位
|
bool LaserOnOff; //打开与关闭激光标志位
|
||||||
|
int8_t SignalRSSI;
|
||||||
|
int8_t SignalSNR;
|
||||||
|
uint8_t LaserTimerMinutes; //激光定时关闭分钟数
|
||||||
|
uint16_t LaserTimerCount; //激光定时计数(RTC 30s)
|
||||||
}SGCP_t;
|
}SGCP_t;
|
||||||
extern SGCP_t SGCP;
|
extern SGCP_t SGCP;
|
||||||
|
|
||||||
|
|||||||
+5
-5
@@ -1,4 +1,4 @@
|
|||||||
#ifndef __UPDATE_H
|
#ifndef __UPDATE_H
|
||||||
#define __UPDATE_H
|
#define __UPDATE_H
|
||||||
|
|
||||||
#include <stdint.h>
|
#include <stdint.h>
|
||||||
@@ -23,14 +23,14 @@
|
|||||||
#define BOOT_PARA_ADDRESS (0x0001FC00)//(FLASH_BASE + BOOT_SIZE)
|
#define BOOT_PARA_ADDRESS (0x0001FC00)//(FLASH_BASE + BOOT_SIZE)
|
||||||
#define BOOT_PARA_SIZE (FLASH_SECTOR_SIZE)
|
#define BOOT_PARA_SIZE (FLASH_SECTOR_SIZE)
|
||||||
|
|
||||||
//主机下发升级请求载荷结构体
|
//主机下发升级请求载荷结构体
|
||||||
typedef struct {
|
typedef struct {
|
||||||
uint16_t PackageNum;
|
uint16_t PackageNum;
|
||||||
uint32_t AppSize;
|
uint32_t AppSize;
|
||||||
uint32_t AppCrc32;
|
uint32_t AppCrc32;
|
||||||
}__attribute__ ((packed))UpDataRequset_t, *UDReq;
|
}__attribute__ ((packed))UpDataRequset_t, *UDReq;
|
||||||
|
|
||||||
//帧头结构体
|
//帧头结构体
|
||||||
typedef struct {
|
typedef struct {
|
||||||
uint8_t Header;
|
uint8_t Header;
|
||||||
uint8_t DevMac[6];
|
uint8_t DevMac[6];
|
||||||
@@ -39,14 +39,14 @@ typedef struct {
|
|||||||
}__attribute__((packed))UpdateFrameHeader_t,*pUpdateFrameHeader;
|
}__attribute__((packed))UpdateFrameHeader_t,*pUpdateFrameHeader;
|
||||||
|
|
||||||
|
|
||||||
//输入接口函数定义,需根据接口重新定义
|
//输入接口函数定义,需根据接口重新定义
|
||||||
#define U_DBG_LOG(...) DBG_LOG(__VA_ARGS__)
|
#define U_DBG_LOG(...) DBG_LOG(__VA_ARGS__)
|
||||||
#define U_DELAY_MS(x) delay_ms(x)
|
#define U_DELAY_MS(x) delay_ms(x)
|
||||||
#define U_SYSTEM_TESET() SystemReset()
|
#define U_SYSTEM_TESET() SystemReset()
|
||||||
#define SAVE_BOOT_PARA(addr) SAVE_APP_PARA(addr)
|
#define SAVE_BOOT_PARA(addr) SAVE_APP_PARA(addr)
|
||||||
#define READ_BOOT_PARA(addr) READ_APP_PARA(addr)
|
#define READ_BOOT_PARA(addr) READ_APP_PARA(addr)
|
||||||
|
|
||||||
//输出接口
|
//输出接口
|
||||||
void Update(uint8_t *PayLoad);
|
void Update(uint8_t *PayLoad);
|
||||||
void UpdateInit(void);
|
void UpdateInit(void);
|
||||||
#endif
|
#endif
|
||||||
+116
-115
@@ -1,4 +1,4 @@
|
|||||||
#ifndef _BSP_H
|
#ifndef _BSP_H
|
||||||
#define _BSP_H
|
#define _BSP_H
|
||||||
|
|
||||||
#include <stdint.h>
|
#include <stdint.h>
|
||||||
@@ -8,23 +8,23 @@
|
|||||||
#include "spi.h"
|
#include "spi.h"
|
||||||
#include "Update.h"
|
#include "Update.h"
|
||||||
|
|
||||||
/*模块启用与关闭*/
|
/*模块启用与关闭*/
|
||||||
#define USE_DEBUG 1 //调试串口选择,0、关闭,1、启用
|
#define USE_DEBUG 1 //调试串口选择,0、关闭,1、启用
|
||||||
#define USE_VBAT_AD 1 //电池电压AD获取选择,0、关闭,1、启用
|
#define USE_VBAT_AD 1 //电池电压AD获取选择,0、关闭,1、启用
|
||||||
#define USE_WDT 1 //看门狗选择,0、关闭,1启用
|
#define USE_WDT 1 //看门狗选择,0、关闭,1启用
|
||||||
#define USE_EXFALSE 0 //外部FALSE存储选择,0、关闭,1、启用
|
#define USE_EXFALSE 0 //外部FALSE存储选择,0、关闭,1、启用
|
||||||
#define USE_LED 1 //状态灯选择,0、关闭,1、启用
|
#define USE_LED 1 //状态灯选择,0、关闭,1、启用
|
||||||
#define USE_RTC 1 //RTC时钟开关,0、关闭,1、开启
|
#define USE_RTC 1 //RTC时钟开关,0、关闭,1、开启
|
||||||
|
|
||||||
#define USE_LPUART0 1 //LPUART0开关,0、关闭,1、启用
|
#define USE_LPUART0 1 //LPUART0开关,0、关闭,1、启用
|
||||||
#define USE_UART0 1 //UART0开关,0、关闭,1、启用
|
#define USE_UART0 1 //UART0开关,0、关闭,1、启用
|
||||||
#define USE_UART1 0 //UART0开关,0、关闭,1、启用
|
#define USE_UART1 0 //UART0开关,0、关闭,1、启用
|
||||||
#define USE_I2C0 1 //I2C0开关,0、关闭,1、启用
|
#define USE_I2C0 1 //I2C0开关,0、关闭,1、启用
|
||||||
#define USE_I2C1 1 //I2C1开关,0、关闭,1、启用
|
#define USE_I2C1 1 //I2C1开关,0、关闭,1、启用
|
||||||
#define USE_SPI0 1 //SPI1开关,0、关闭,1、启用
|
#define USE_SPI0 1 //SPI1开关,0、关闭,1、启用
|
||||||
#define USE_SPI1 0 //SPI1开关,0、关闭,1、启用
|
#define USE_SPI1 0 //SPI1开关,0、关闭,1、启用
|
||||||
|
|
||||||
//#define USE_BOOTLOADER 1 //BOOTLOADER开关,0、关闭,1、启用
|
//#define USE_BOOTLOADER 1 //BOOTLOADER开关,0、关闭,1、启用
|
||||||
|
|
||||||
//<<---------------------------- MCU -------------------------------->>
|
//<<---------------------------- MCU -------------------------------->>
|
||||||
//< UART0
|
//< UART0
|
||||||
@@ -45,167 +45,167 @@
|
|||||||
#define UART1_RX_PIN GpioPin1
|
#define UART1_RX_PIN GpioPin1
|
||||||
#define UART1_RX_AF GpioAf3
|
#define UART1_RX_AF GpioAf3
|
||||||
|
|
||||||
//< 低功耗串口
|
//< 低功耗串口
|
||||||
#define LPUart0_TxPortx GpioPortB //低功耗串口0通道
|
#define LPUart0_TxPortx GpioPortB //低功耗串口0通道
|
||||||
#define LPUART0_TxPinx GpioPin10 //配置PB10为LPUART0_Tx
|
#define LPUART0_TxPinx GpioPin10 //配置PB10为LPUART0_Tx
|
||||||
#define LPUART0_TX_AF GpioAf4
|
#define LPUART0_TX_AF GpioAf4
|
||||||
|
|
||||||
#define LPUart0_RxPortx GpioPortB //低功耗串口0通道
|
#define LPUart0_RxPortx GpioPortB //低功耗串口0通道
|
||||||
#define LPUART0_RxPinx GpioPin11 //配置PB11为LPUART0_Rx
|
#define LPUART0_RxPinx GpioPin11 //配置PB11为LPUART0_Rx
|
||||||
#define LPUART0_RX_AF GpioAf3
|
#define LPUART0_RX_AF GpioAf3
|
||||||
|
|
||||||
//< SPI0
|
//< SPI0
|
||||||
#define SPI0_NSS_PORTx GpioPortA //NSSIO口
|
#define SPI0_NSS_PORTx GpioPortA //NSSIO口
|
||||||
#define SPI0_NSS_PINx GpioPin15 //配置PA04为NSS
|
#define SPI0_NSS_PINx GpioPin15 //配置PA04为NSS
|
||||||
#define SET_SPI0_NSS() Gpio_SetIO(SPI0_NSS_PORTx, SPI0_NSS_PINx) //NSS拉高
|
#define SET_SPI0_NSS() Gpio_SetIO(SPI0_NSS_PORTx, SPI0_NSS_PINx) //NSS拉高
|
||||||
#define CLR_SPI0_NSS() Gpio_ClrIO(SPI0_NSS_PORTx, SPI0_NSS_PINx) //NSS拉低
|
#define CLR_SPI0_NSS() Gpio_ClrIO(SPI0_NSS_PORTx, SPI0_NSS_PINx) //NSS拉低
|
||||||
#define SPI0_NSS_AF GpioAf1
|
#define SPI0_NSS_AF GpioAf1
|
||||||
|
|
||||||
#define SPI0_SCK_PORTx GpioPortB //SCKIO口
|
#define SPI0_SCK_PORTx GpioPortB //SCKIO口
|
||||||
#define SPI0_SCK_PINx GpioPin3 //配置PA05为SCK
|
#define SPI0_SCK_PINx GpioPin3 //配置PA05为SCK
|
||||||
#define SET_SPI0_SCK() Gpio_SetIO(SPI0_SCK_PORTx, SPI0_SCK_PINx) //SCK拉高
|
#define SET_SPI0_SCK() Gpio_SetIO(SPI0_SCK_PORTx, SPI0_SCK_PINx) //SCK拉高
|
||||||
#define CLR_SPI0_SCK() Gpio_ClrIO(SPI0_SCK_PORTx, SPI0_SCK_PINx) //SCK拉低
|
#define CLR_SPI0_SCK() Gpio_ClrIO(SPI0_SCK_PORTx, SPI0_SCK_PINx) //SCK拉低
|
||||||
#define SPI0_SCK_AF GpioAf1
|
#define SPI0_SCK_AF GpioAf1
|
||||||
|
|
||||||
#define SPI0_MISO_PORTx GpioPortB //MISOIO口
|
#define SPI0_MISO_PORTx GpioPortB //MISOIO口
|
||||||
#define SPI0_MISO_PINx GpioPin4 //配置PA06为MISO
|
#define SPI0_MISO_PINx GpioPin4 //配置PA06为MISO
|
||||||
#define SET_SPI0_MISO() Gpio_SetIO(SPI0_MISO_PORTx, SPI0_MISO_PINx) //MISO拉高
|
#define SET_SPI0_MISO() Gpio_SetIO(SPI0_MISO_PORTx, SPI0_MISO_PINx) //MISO拉高
|
||||||
#define CLR_SPI0_MISO() Gpio_ClrIO(SPI0_MISO_PORTx, SPI0_MISO_PINx) //MISO拉低
|
#define CLR_SPI0_MISO() Gpio_ClrIO(SPI0_MISO_PORTx, SPI0_MISO_PINx) //MISO拉低
|
||||||
#define SPI0_MISO_AF GpioAf1
|
#define SPI0_MISO_AF GpioAf1
|
||||||
|
|
||||||
#define SPI0_MOSI_PORTx GpioPortB //MOSIIO口
|
#define SPI0_MOSI_PORTx GpioPortB //MOSIIO口
|
||||||
#define SPI0_MOSI_PINx GpioPin5 //配置PA07为MOSI
|
#define SPI0_MOSI_PINx GpioPin5 //配置PA07为MOSI
|
||||||
#define SET_SPI0_MOSI() Gpio_SetIO(SPI0_MOSI_PORTx, SPI0_MOSI_PINx) //MOSI拉高
|
#define SET_SPI0_MOSI() Gpio_SetIO(SPI0_MOSI_PORTx, SPI0_MOSI_PINx) //MOSI拉高
|
||||||
#define CLR_SPI0_MOSI() Gpio_ClrIO(SPI0_MOSI_PORTx, SPI0_MOSI_PINx) //MOSI拉低
|
#define CLR_SPI0_MOSI() Gpio_ClrIO(SPI0_MOSI_PORTx, SPI0_MOSI_PINx) //MOSI拉低
|
||||||
#define SPI0_MOSI_AF GpioAf1
|
#define SPI0_MOSI_AF GpioAf1
|
||||||
|
|
||||||
//< SPI1
|
//< SPI1
|
||||||
#define SPI1_NSS_PORTx GpioPortB //NSSIO口
|
#define SPI1_NSS_PORTx GpioPortB //NSSIO口
|
||||||
#define SPI1_NSS_PINx GpioPin12 //配置PB12为NSS
|
#define SPI1_NSS_PINx GpioPin12 //配置PB12为NSS
|
||||||
#define SET_SPI1_NSS() Gpio_SetIO(SPI1_NSS_PORTx, SPI1_NSS_PINx) //NSS拉高
|
#define SET_SPI1_NSS() Gpio_SetIO(SPI1_NSS_PORTx, SPI1_NSS_PINx) //NSS拉高
|
||||||
#define CLR_SPI1_NSS() Gpio_ClrIO(SPI1_NSS_PORTx, SPI1_NSS_PINx) //NSS拉低
|
#define CLR_SPI1_NSS() Gpio_ClrIO(SPI1_NSS_PORTx, SPI1_NSS_PINx) //NSS拉低
|
||||||
#define SPI1_NSS_AF GpioAf1
|
#define SPI1_NSS_AF GpioAf1
|
||||||
|
|
||||||
#define SPI1_SCK_PORTx GpioPortB //SCKIO口
|
#define SPI1_SCK_PORTx GpioPortB //SCKIO口
|
||||||
#define SPI1_SCK_PINx GpioPin3 //配置PB13为SCK
|
#define SPI1_SCK_PINx GpioPin3 //配置PB13为SCK
|
||||||
#define SET_SPI1_SCK() Gpio_SetIO(SPI1_SCK_PORTx, SPI1_SCK_PINx) //SCK拉高
|
#define SET_SPI1_SCK() Gpio_SetIO(SPI1_SCK_PORTx, SPI1_SCK_PINx) //SCK拉高
|
||||||
#define CLR_SPI1_SCK() Gpio_ClrIO(SPI1_SCK_PORTx, SPI1_SCK_PINx) //SCK拉低
|
#define CLR_SPI1_SCK() Gpio_ClrIO(SPI1_SCK_PORTx, SPI1_SCK_PINx) //SCK拉低
|
||||||
#define SPI1_SCK_AF GpioAf1
|
#define SPI1_SCK_AF GpioAf1
|
||||||
|
|
||||||
#define SPI1_MISO_PORTx GpioPortB //MISOIO口
|
#define SPI1_MISO_PORTx GpioPortB //MISOIO口
|
||||||
#define SPI1_MISO_PINx GpioPin4 //配置PB14为MISO
|
#define SPI1_MISO_PINx GpioPin4 //配置PB14为MISO
|
||||||
#define SET_SPI1_MISO() Gpio_SetIO(SPI1_MISO_PORTx, SPI1_MISO_PINx) //MISO拉高
|
#define SET_SPI1_MISO() Gpio_SetIO(SPI1_MISO_PORTx, SPI1_MISO_PINx) //MISO拉高
|
||||||
#define CLR_SPI1_MISO() Gpio_ClrIO(SPI1_MISO_PORTx, SPI1_MISO_PINx) //MISO拉低
|
#define CLR_SPI1_MISO() Gpio_ClrIO(SPI1_MISO_PORTx, SPI1_MISO_PINx) //MISO拉低
|
||||||
#define SPI1_MISO_AF GpioAf1
|
#define SPI1_MISO_AF GpioAf1
|
||||||
|
|
||||||
#define SPI1_MOSI_PORTx GpioPortB //MOSIIO口
|
#define SPI1_MOSI_PORTx GpioPortB //MOSIIO口
|
||||||
#define SPI1_MOSI_PINx GpioPin5 //配置PB15为MOSI
|
#define SPI1_MOSI_PINx GpioPin5 //配置PB15为MOSI
|
||||||
#define SET_SPI1_MOSI() Gpio_SetIO(SPI1_MOSI_PORTx, SPI1_MOSI_PINx) //MOSI拉高
|
#define SET_SPI1_MOSI() Gpio_SetIO(SPI1_MOSI_PORTx, SPI1_MOSI_PINx) //MOSI拉高
|
||||||
#define CLR_SPI1_MOSI() Gpio_ClrIO(SPI1_MOSI_PORTx, SPI1_MOSI_PINx) //MOSI拉低
|
#define CLR_SPI1_MOSI() Gpio_ClrIO(SPI1_MOSI_PORTx, SPI1_MOSI_PINx) //MOSI拉低
|
||||||
#define SPI1_MOSI_AF GpioAf1
|
#define SPI1_MOSI_AF GpioAf1
|
||||||
|
|
||||||
//< I2C0
|
//< I2C0
|
||||||
#define I2C0_SCL_PORTx GpioPortF //SCL的GPIO通道
|
#define I2C0_SCL_PORTx GpioPortF //SCL的GPIO通道
|
||||||
#define I2C0_SCL_PINx GpioPin1 //SCL的通道位
|
#define I2C0_SCL_PINx GpioPin1 //SCL的通道位
|
||||||
#define I2C0_SCL_AF GpioAf1
|
#define I2C0_SCL_AF GpioAf1
|
||||||
#define SET_I2C0_SCL() Gpio_SetIO(I2C0_SCL_PORTx, I2C0_SCL_PINx)
|
#define SET_I2C0_SCL() Gpio_SetIO(I2C0_SCL_PORTx, I2C0_SCL_PINx)
|
||||||
#define CLR_I2C0_SCL() Gpio_ClrIO(I2C0_SCL_PORTx, I2C0_SCL_PINx)
|
#define CLR_I2C0_SCL() Gpio_ClrIO(I2C0_SCL_PORTx, I2C0_SCL_PINx)
|
||||||
|
|
||||||
#define I2C0_SDA_PORTx GpioPortF //SDA的GPIO通道
|
#define I2C0_SDA_PORTx GpioPortF //SDA的GPIO通道
|
||||||
#define I2C0_SDA_PINx GpioPin0 //SDA的通道位
|
#define I2C0_SDA_PINx GpioPin0 //SDA的通道位
|
||||||
#define I2C0_SDA_AF GpioAf1
|
#define I2C0_SDA_AF GpioAf1
|
||||||
#define SET_I2C0_SDA() Gpio_SetIO(I2C0_SDA_PORTx, I2C0_SDA_PINx)
|
#define SET_I2C0_SDA() Gpio_SetIO(I2C0_SDA_PORTx, I2C0_SDA_PINx)
|
||||||
#define CLR_I2C0_SDA() Gpio_ClrIO(I2C0_SDA_PORTx, I2C0_SDA_PINx)
|
#define CLR_I2C0_SDA() Gpio_ClrIO(I2C0_SDA_PORTx, I2C0_SDA_PINx)
|
||||||
|
|
||||||
//< I2C1
|
//< I2C1
|
||||||
#define I2C1_SCL_PORTx GpioPortA //SCL的GPIO通道
|
#define I2C1_SCL_PORTx GpioPortA //SCL的GPIO通道
|
||||||
#define I2C1_SCL_PINx GpioPin11 //SCL的通道位
|
#define I2C1_SCL_PINx GpioPin11 //SCL的通道位
|
||||||
#define I2C1_SCL_AF GpioAf3
|
#define I2C1_SCL_AF GpioAf3
|
||||||
#define SET_I2C1_SCL() Gpio_SetIO(I2C1_SCL_PORTx, I2C1_SCL_PINx)
|
#define SET_I2C1_SCL() Gpio_SetIO(I2C1_SCL_PORTx, I2C1_SCL_PINx)
|
||||||
#define CLR_I2C1_SCL() Gpio_ClrIO(I2C1_SCL_PORTx, I2C1_SCL_PINx)
|
#define CLR_I2C1_SCL() Gpio_ClrIO(I2C1_SCL_PORTx, I2C1_SCL_PINx)
|
||||||
|
|
||||||
#define I2C1_SDA_PORTx GpioPortA //SDA的GPIO通道
|
#define I2C1_SDA_PORTx GpioPortA //SDA的GPIO通道
|
||||||
#define I2C1_SDA_PINx GpioPin12 //SDA的通道位
|
#define I2C1_SDA_PINx GpioPin12 //SDA的通道位
|
||||||
#define I2C1_SDA_AF GpioAf3
|
#define I2C1_SDA_AF GpioAf3
|
||||||
#define SET_I2C1_SDA() Gpio_SetIO(I2C1_SDA_PORTx, I2C1_SDA_PINx)
|
#define SET_I2C1_SDA() Gpio_SetIO(I2C1_SDA_PORTx, I2C1_SDA_PINx)
|
||||||
#define CLR_I2C1_SDA() Gpio_ClrIO(I2C1_SDA_PORTx, I2C1_SDA_PINx)
|
#define CLR_I2C1_SDA() Gpio_ClrIO(I2C1_SDA_PORTx, I2C1_SDA_PINx)
|
||||||
|
|
||||||
//<<---------------------------- 485 -------------------------------->>
|
//<<---------------------------- 485 -------------------------------->>
|
||||||
//< LPUart0
|
//< LPUart0
|
||||||
#define RS485_CTRL_PORTx GpioPortB //RS485_1通信控制
|
#define RS485_CTRL_PORTx GpioPortB //RS485_1通信控制
|
||||||
#define RS485_CTRL_PINx GpioPin1 //配置PB02为RS485_1_CTRL
|
#define RS485_CTRL_PINx GpioPin1 //配置PB02为RS485_1_CTRL
|
||||||
#define RS485_CTRL_TX() Gpio_SetIO(RS485_CTRL_PORTx, RS485_CTRL_PINx) //RS485_1_CTRL拉高发送
|
#define RS485_CTRL_TX() Gpio_SetIO(RS485_CTRL_PORTx, RS485_CTRL_PINx) //RS485_1_CTRL拉高发送
|
||||||
#define RS485_CTRL_RX() Gpio_ClrIO(RS485_CTRL_PORTx, RS485_CTRL_PINx) //RS485_1_CTRL拉低接收
|
#define RS485_CTRL_RX() Gpio_ClrIO(RS485_CTRL_PORTx, RS485_CTRL_PINx) //RS485_1_CTRL拉低接收
|
||||||
|
|
||||||
//<<---------------------------- LED -------------------------------->>
|
//<<---------------------------- LED -------------------------------->>
|
||||||
//< LED_State
|
//< LED_State
|
||||||
#define LED_STATE_PORTx GpioPortF //状态指示灯IO通道
|
#define LED_STATE_PORTx GpioPortF //状态指示灯IO通道
|
||||||
#define LED_STATE_PINx GpioPin7 //状态指示灯脚位
|
#define LED_STATE_PINx GpioPin7 //状态指示灯脚位
|
||||||
#define LED_ON() Gpio_SetIO(LED_STATE_PORTx, LED_STATE_PINx);//状态指示灯亮
|
#define LED_ON() Gpio_SetIO(LED_STATE_PORTx, LED_STATE_PINx);//状态指示灯亮
|
||||||
#define LED_OFF() Gpio_ClrIO(LED_STATE_PORTx, LED_STATE_PINx);//状态指示灯灭
|
#define LED_OFF() Gpio_ClrIO(LED_STATE_PORTx, LED_STATE_PINx);//状态指示灯灭
|
||||||
|
|
||||||
//<<---------------------------- LORA --> SPI0 -------------------------------->>
|
//<<---------------------------- LORA --> SPI0 -------------------------------->>
|
||||||
//< LORA --> DIO0
|
//< LORA --> DIO0
|
||||||
#define LORA_DIO0_PORTx GpioPortB //LORA_DIO0口
|
#define LORA_DIO0_PORTx GpioPortB //LORA_DIO0口
|
||||||
#define LORA_DIO0_PINx GpioPin7 //配置PA01为DIO0
|
#define LORA_DIO0_PINx GpioPin7 //配置PA01为DIO0
|
||||||
#define GET_LORA_DIO0() Gpio_GetInputIO(LORA_DIO0_PORTx, LORA_DIO0_PINx) //获取LORA_DIO0电平状态
|
#define GET_LORA_DIO0() Gpio_GetInputIO(LORA_DIO0_PORTx, LORA_DIO0_PINx) //获取LORA_DIO0电平状态
|
||||||
//< LORA --> DIO1
|
//< LORA --> DIO1
|
||||||
#define LORA_DIO1_PORTx GpioPortB //LORA_DIO0口
|
#define LORA_DIO1_PORTx GpioPortB //LORA_DIO0口
|
||||||
#define LORA_DIO1_PINx GpioPin0 //配置PA01为DIO0
|
#define LORA_DIO1_PINx GpioPin0 //配置PA01为DIO0
|
||||||
#define GET_LORA_DIO1() Gpio_GetInputIO(LORA_DIO1_PORTx, LORA_DIO1_PINx) //获取LORA_DIO0电平状态
|
#define GET_LORA_DIO1() Gpio_GetInputIO(LORA_DIO1_PORTx, LORA_DIO1_PINx) //获取LORA_DIO0电平状态
|
||||||
|
|
||||||
//< LORA --> RST
|
//< LORA --> RST
|
||||||
#define LORA_RST_PORTx GpioPortB //LORA_RST口
|
#define LORA_RST_PORTx GpioPortB //LORA_RST口
|
||||||
#define LORA_RST_PINx GpioPin6 //配置PA00为RST
|
#define LORA_RST_PINx GpioPin6 //配置PA00为RST
|
||||||
#define SET_LORA_RST() Gpio_SetIO(LORA_RST_PORTx, LORA_RST_PINx) //LORA复位脚拉高
|
#define SET_LORA_RST() Gpio_SetIO(LORA_RST_PORTx, LORA_RST_PINx) //LORA复位脚拉高
|
||||||
#define CLR_LORA_RST() Gpio_ClrIO(LORA_RST_PORTx, LORA_RST_PINx) //LORA复位脚拉低
|
#define CLR_LORA_RST() Gpio_ClrIO(LORA_RST_PORTx, LORA_RST_PINx) //LORA复位脚拉低
|
||||||
|
|
||||||
//<<---------------------------- LSM6DSLTR --> I2C0 -------------------------------->>
|
//<<---------------------------- LSM6DSLTR --> I2C0 -------------------------------->>
|
||||||
//< ACC_INT1
|
//< ACC_INT1
|
||||||
#define LSM6DSLTR_INT1_PORTx GpioPortC //LSM6DSLTR中断1IO通道
|
#define LSM6DSLTR_INT1_PORTx GpioPortC //LSM6DSLTR中断1IO通道
|
||||||
#define LSM6DSLTR_INT1_PINx GpioPin15 //配置PB01为ACC_INT1
|
#define LSM6DSLTR_INT1_PINx GpioPin15 //配置PB01为ACC_INT1
|
||||||
#define GET_LSM6DSLTR_INT1() Gpio_GetInputIO(LSM6DSLTR_INT1_PORTx, LSM6DSLTR_INT1_PINx) //获取ACC_INT1电平状态
|
#define GET_LSM6DSLTR_INT1() Gpio_GetInputIO(LSM6DSLTR_INT1_PORTx, LSM6DSLTR_INT1_PINx) //获取ACC_INT1电平状态
|
||||||
|
|
||||||
//< ACC_INT2
|
//< ACC_INT2
|
||||||
#define LSM6DSLTR_INT2_PORTx GpioPortC //LSM6DSLTR中断1IO通道
|
#define LSM6DSLTR_INT2_PORTx GpioPortC //LSM6DSLTR中断1IO通道
|
||||||
#define LSM6DSLTR_INT2_PINx GpioPin13 //配置PA08为ACC_INT2
|
#define LSM6DSLTR_INT2_PINx GpioPin13 //配置PA08为ACC_INT2
|
||||||
#define GET_LSM6DSLTR_INT2() Gpio_GetInputIO(LSM6DSLTR_INT2_PORTx, LSM6DSLTR_INT2_PINx) //获取ACC_INT2电平状态
|
#define GET_LSM6DSLTR_INT2() Gpio_GetInputIO(LSM6DSLTR_INT2_PORTx, LSM6DSLTR_INT2_PINx) //获取ACC_INT2电平状态
|
||||||
|
|
||||||
//<<---------------------------- MMC5983MA --> I2C0 -------------------------------->>
|
//<<---------------------------- MMC5983MA --> I2C0 -------------------------------->>
|
||||||
//< MMC0_INT
|
//< MMC0_INT
|
||||||
#define MMC5983MA_INT_PORTx GpioPortC //MMC5983MA中断IO通道
|
#define MMC5983MA_INT_PORTx GpioPortC //MMC5983MA中断IO通道
|
||||||
#define MMC5983MA_INT_PINx GpioPin14 //配置PB00为MMC_INT
|
#define MMC5983MA_INT_PINx GpioPin14 //配置PB00为MMC_INT
|
||||||
#define GET_MMC5983MA_INT() Gpio_GetInputIO(MMC5983MA_INT_PORTx, MMC5983MA_INT_PINx) //获取ACC_INT2电平状态
|
#define GET_MMC5983MA_INT() Gpio_GetInputIO(MMC5983MA_INT_PORTx, MMC5983MA_INT_PINx) //获取ACC_INT2电平状态
|
||||||
|
|
||||||
//<<---------------------------- LASER -------------------------------->>
|
//<<---------------------------- LASER -------------------------------->>
|
||||||
//< LASER1
|
//< LASER1
|
||||||
#define LASER1_ON_OFF_PORTx GpioPortB
|
#define LASER1_ON_OFF_PORTx GpioPortB
|
||||||
#define LASER1_ON_OFF_PINx GpioPin14
|
#define LASER1_ON_OFF_PINx GpioPin14
|
||||||
#define LASER1_ON() Gpio_SetIO(LASER1_ON_OFF_PORTx, LASER1_ON_OFF_PINx) //LORA复位脚拉高
|
#define LASER1_ON() Gpio_SetIO(LASER1_ON_OFF_PORTx, LASER1_ON_OFF_PINx) //LORA复位脚拉高
|
||||||
#define LASER1_OFF() Gpio_ClrIO(LASER1_ON_OFF_PORTx, LASER1_ON_OFF_PINx) //LORA复位脚拉低
|
#define LASER1_OFF() Gpio_ClrIO(LASER1_ON_OFF_PORTx, LASER1_ON_OFF_PINx) //LORA复位脚拉低
|
||||||
//< LASER2
|
//< LASER2
|
||||||
#define LASER2_ON_OFF_PORTx GpioPortB
|
#define LASER2_ON_OFF_PORTx GpioPortB
|
||||||
#define LASER2_ON_OFF_PINx GpioPin13
|
#define LASER2_ON_OFF_PINx GpioPin13
|
||||||
#define LASER2_ON() Gpio_SetIO(LASER2_ON_OFF_PORTx, LASER2_ON_OFF_PINx) //LORA复位脚拉高
|
#define LASER2_ON() Gpio_SetIO(LASER2_ON_OFF_PORTx, LASER2_ON_OFF_PINx) //LORA复位脚拉高
|
||||||
#define LASER2_OFF() Gpio_ClrIO(LASER2_ON_OFF_PORTx, LASER2_ON_OFF_PINx) //LORA复位脚拉低
|
#define LASER2_OFF() Gpio_ClrIO(LASER2_ON_OFF_PORTx, LASER2_ON_OFF_PINx) //LORA复位脚拉低
|
||||||
//< LASER3
|
//< LASER3
|
||||||
#define LASER3_ON_OFF_PORTx GpioPortB
|
#define LASER3_ON_OFF_PORTx GpioPortB
|
||||||
#define LASER3_ON_OFF_PINx GpioPin12
|
#define LASER3_ON_OFF_PINx GpioPin12
|
||||||
#define LASER3_ON() Gpio_SetIO(LASER3_ON_OFF_PORTx, LASER3_ON_OFF_PINx) //LORA复位脚拉高
|
#define LASER3_ON() Gpio_SetIO(LASER3_ON_OFF_PORTx, LASER3_ON_OFF_PINx) //LORA复位脚拉高
|
||||||
#define LASER3_OFF() Gpio_ClrIO(LASER3_ON_OFF_PORTx, LASER3_ON_OFF_PINx) //LORA复位脚拉低
|
#define LASER3_OFF() Gpio_ClrIO(LASER3_ON_OFF_PORTx, LASER3_ON_OFF_PINx) //LORA复位脚拉低
|
||||||
|
|
||||||
//<<------------------------------ ADC ---------------------------------->>
|
//<<------------------------------ ADC ---------------------------------->>
|
||||||
#define AD_ON_OFF_PORTx GpioPortA
|
#define AD_ON_OFF_PORTx GpioPortA
|
||||||
#define AD_ON_OFF_PINx GpioPin3
|
#define AD_ON_OFF_PINx GpioPin3
|
||||||
#define AD_ON() Gpio_SetIO(AD_ON_OFF_PORTx, AD_ON_OFF_PINx) //LORA复位脚拉高
|
#define AD_ON() Gpio_SetIO(AD_ON_OFF_PORTx, AD_ON_OFF_PINx)
|
||||||
#define AD_OFF() Gpio_ClrIO(AD_ON_OFF_PORTx, AD_ON_OFF_PINx) //LORA复位脚拉低
|
#define AD_OFF() Gpio_ClrIO(AD_ON_OFF_PORTx, AD_ON_OFF_PINx)
|
||||||
|
|
||||||
#define VBAT_PORTx GpioPortA
|
#define VBAT_PORTx GpioPortA
|
||||||
#define VBAT_PINx GpioPin4
|
#define VBAT_PINx GpioPin4
|
||||||
#define VBAT_ADC_PORTx AdcExInputCH4//采样通道
|
#define VBAT_ADC_PORTx AdcExInputCH4//采样通道
|
||||||
#define VBAT_CAL 3.5 //电池电压校准
|
#define VBAT_CAL 3.5 //电池电压校准
|
||||||
|
|
||||||
//< 电池电压
|
//< 电池电压
|
||||||
extern float VBAT_8V4;
|
extern float VBAT_8V4;
|
||||||
extern uint8_t VBAT_Percentage;
|
extern uint8_t VBAT_Percentage;
|
||||||
|
|
||||||
@@ -215,23 +215,23 @@ typedef struct {
|
|||||||
uint32_t PackageCnt;
|
uint32_t PackageCnt;
|
||||||
uint32_t AppSize;
|
uint32_t AppSize;
|
||||||
uint32_t Crc32Check;
|
uint32_t Crc32Check;
|
||||||
uint32_t FirstRunFlag;//第一次运行
|
uint32_t FirstRunFlag;//第一次运行
|
||||||
uint8_t DevMac[6];//设备MAC
|
uint8_t DevMac[6];//设备MAC
|
||||||
uint32_t LoraFreq;//Lora频率
|
uint32_t LoraFreq;//Lora频率
|
||||||
}BootPara_t, *BootPara;
|
}BootPara_t, *BootPara;
|
||||||
|
|
||||||
typedef struct {
|
typedef struct {
|
||||||
uint16_t CollectTime; //数据采集时间间隔,设置范围30*N秒,1<=N<=240,(默认300秒,N=10)
|
uint16_t CollectTime; //数据采集时间间隔,设置范围30*N秒,1<=N<=240,(默认300秒,N=10)
|
||||||
uint16_t ReportInterval; //上报时间间隔,设置范围,30*N秒,10<=N<=1440(默认1200秒,N=40)
|
uint16_t ReportInterval; //上报时间间隔,设置范围,30*N秒,10<=N<=1440(默认1200秒,N=40)
|
||||||
uint8_t ERInterval; //紧急上报时间间隔,设置范围,30*N秒,2<=N<=10(默认120秒,N=4)
|
uint8_t ERInterval; //紧急上报时间间隔,设置范围,30*N秒,2<=N<=10(默认120秒,N=4)
|
||||||
uint8_t ERTime; //紧急上报时长,设置范围,30*N秒,20<=N<=240(默认1200秒,N=40)
|
uint8_t ERTime; //紧急上报时长,设置范围,30*N秒,20<=N<=240(默认1200秒,N=40)
|
||||||
uint32_t TimeStamp; //网关返回RTC时间戳
|
uint32_t TimeStamp; //网关返回RTC时间戳
|
||||||
}__attribute__((packed))LayoutPara_t,*LayoutPara;//上位机下发的配置参数
|
}__attribute__((packed))LayoutPara_t,*LayoutPara;//上位机下发的配置参数
|
||||||
|
|
||||||
typedef struct {
|
typedef struct {
|
||||||
int16_t PitchZero; //俯仰角零点
|
int16_t PitchZero; //俯仰角零点
|
||||||
int16_t RollZero; //横滚角零点
|
int16_t RollZero; //横滚角零点
|
||||||
int16_t YawZero; //偏航角零点
|
int16_t YawZero; //偏航角零点
|
||||||
}__attribute__ ((packed))CalibratePara_t, *CalibratePara;
|
}__attribute__ ((packed))CalibratePara_t, *CalibratePara;
|
||||||
|
|
||||||
typedef struct {
|
typedef struct {
|
||||||
@@ -246,9 +246,9 @@ typedef struct {
|
|||||||
}__attribute__ ((packed))LoraPara_t, *pLoraPara;
|
}__attribute__ ((packed))LoraPara_t, *pLoraPara;
|
||||||
|
|
||||||
typedef struct {
|
typedef struct {
|
||||||
bool Enable; //串口使能
|
bool Enable; //串口使能
|
||||||
bool UpgradeEnable;//升级功能使能
|
bool UpgradeEnable;//升级功能使能
|
||||||
uint32_t Addr; //本机485地址
|
uint32_t Addr; //本机485地址
|
||||||
uint32_t BaudRate;
|
uint32_t BaudRate;
|
||||||
}__attribute__((packed))RS485Para_t, *RS485Para;
|
}__attribute__((packed))RS485Para_t, *RS485Para;
|
||||||
|
|
||||||
@@ -258,7 +258,8 @@ typedef struct {
|
|||||||
CalibratePara_t CaliPara;
|
CalibratePara_t CaliPara;
|
||||||
RS485Para_t Rs485Ch1;
|
RS485Para_t Rs485Ch1;
|
||||||
RS485Para_t Rs485Ch2;
|
RS485Para_t Rs485Ch2;
|
||||||
uint32_t FactoryFlag;//出厂标志位
|
uint32_t FactoryFlag;//出厂标志位
|
||||||
|
uint8_t LaserTimerMinutes; //激光定时关闭分钟数
|
||||||
LoraPara_t Lora;
|
LoraPara_t Lora;
|
||||||
}AppPara_T, *pAppPara;
|
}AppPara_T, *pAppPara;
|
||||||
//#define APP_PARA_ADDRESS (0x0001FC00)
|
//#define APP_PARA_ADDRESS (0x0001FC00)
|
||||||
|
|||||||
+39
-37
@@ -1,12 +1,12 @@
|
|||||||
#ifndef __MAIN_H
|
#ifndef __MAIN_H
|
||||||
#define __MAIN_H
|
#define __MAIN_H
|
||||||
#include "bsp.h"
|
#include "bsp.h"
|
||||||
#include "UartDebug.h"
|
#include "UartDebug.h"
|
||||||
#include "Update.h"
|
#include "Update.h"
|
||||||
#include "Imu.h"
|
#include "Imu.h"
|
||||||
|
|
||||||
#define SOFTWARE_VERSION 12 //软件版本
|
#define SOFTWARE_VERSION 12 //软件版本
|
||||||
#define HARDWARE_VERSION 11 //硬件版本
|
#define HARDWARE_VERSION 11 //硬件版本
|
||||||
|
|
||||||
#define MAIN_DBG_LOG(...) { if(MainDispEn) DBG_LOG(__VA_ARGS__);}
|
#define MAIN_DBG_LOG(...) { if(MainDispEn) DBG_LOG(__VA_ARGS__);}
|
||||||
#define DATA_DBG_LOG(...) { if(DataDispEn) DBG_LOG(__VA_ARGS__);}
|
#define DATA_DBG_LOG(...) { if(DataDispEn) DBG_LOG(__VA_ARGS__);}
|
||||||
@@ -17,34 +17,34 @@
|
|||||||
#define Z 2
|
#define Z 2
|
||||||
#define XYZ 3
|
#define XYZ 3
|
||||||
|
|
||||||
#define SYSTEM_TIMING_LOGIN (86400 / 30) //系统定时注册时间(一天86400秒)
|
#define SYSTEM_TIMING_LOGIN (86400 / 30) //系统定时注册时间(一天86400秒)
|
||||||
#define ERR_TIMING_LOGIN (1800 / 30) //注册错误重新注册时间(半个小时1800秒)
|
#define ERR_TIMING_LOGIN (1800 / 30) //注册错误重新注册时间(半个小时1800秒)
|
||||||
|
|
||||||
#define TEST_TIME (60*60*1000)
|
#define TEST_TIME (60*60*1000)
|
||||||
|
|
||||||
#define ERINTERVAL_VPT 10 //紧急上报阈值,单位0.1°
|
#define ERINTERVAL_VPT 10 //紧急上报阈值,单位0.1°
|
||||||
#define ERINTERVAL_VPT 10 //紧急上报阈值,单位0.1°
|
#define ERINTERVAL_VPT 10 //紧急上报阈值,单位0.1°
|
||||||
|
|
||||||
typedef struct {//传感器原始数据
|
typedef struct {//传感器原始数据
|
||||||
float acce[XYZ];
|
float acce[XYZ];
|
||||||
float gy[XYZ];
|
float gy[XYZ];
|
||||||
float mag[XYZ];
|
float mag[XYZ];
|
||||||
}__attribute__ ((packed))SensorData_T,*SensorDp;//传感器数据
|
}__attribute__ ((packed))SensorData_T,*SensorDp;//传感器数据
|
||||||
|
|
||||||
typedef struct {//转换的数据
|
typedef struct {//转换的数据
|
||||||
int16_t Pitch; //俯仰角偏斜 (范围±900)单位0.1°
|
int16_t Pitch; //俯仰角偏斜 (范围±900)单位0.1°
|
||||||
int16_t Roll; //横滚角偏斜 (范围±900)单位0.1°
|
int16_t Roll; //横滚角偏斜 (范围±900)单位0.1°
|
||||||
int16_t Yaw; //偏航角偏斜 (范围0~3600)单位0.1°
|
int16_t Yaw; //偏航角偏斜 (范围0~3600)单位0.1°
|
||||||
// int16_t Temp; //温度值
|
// int16_t Temp; //温度值
|
||||||
// int32_t AD; //AD值
|
// int32_t AD; //AD值
|
||||||
}__attribute__ ((packed))ConvertedData_T, *ConvertedDp;
|
}__attribute__ ((packed))ConvertedData_T, *ConvertedDp;
|
||||||
|
|
||||||
typedef struct {// 姿态角数据
|
typedef struct {// 姿态角数据
|
||||||
Rad_T Rad;
|
Rad_T Rad;
|
||||||
Deg_T Deg;
|
Deg_T Deg;
|
||||||
}__attribute__ ((packed))AHRSData_T,*AHRSDp;
|
}__attribute__ ((packed))AHRSData_T,*AHRSDp;
|
||||||
|
|
||||||
/*主程序状态机*/
|
/*主程序状态机*/
|
||||||
typedef enum {
|
typedef enum {
|
||||||
APP_STATUS_IDLE,
|
APP_STATUS_IDLE,
|
||||||
APP_STATUS_SLEEP,
|
APP_STATUS_SLEEP,
|
||||||
@@ -55,7 +55,7 @@ typedef enum {
|
|||||||
APP_STATUS_WAIT_UPLOAD,
|
APP_STATUS_WAIT_UPLOAD,
|
||||||
}AppStatus_m;
|
}AppStatus_m;
|
||||||
|
|
||||||
/*数据读取状态机*/
|
/*数据读取状态机*/
|
||||||
typedef enum {
|
typedef enum {
|
||||||
READDATA_STATUS_IDLE,
|
READDATA_STATUS_IDLE,
|
||||||
READDATA_STATUS_UPDAING,
|
READDATA_STATUS_UPDAING,
|
||||||
@@ -64,8 +64,8 @@ typedef enum {
|
|||||||
}ReadDataStatus_m;
|
}ReadDataStatus_m;
|
||||||
|
|
||||||
typedef struct {
|
typedef struct {
|
||||||
AppStatus_m Status;//状态
|
AppStatus_m Status;//状态
|
||||||
ReadDataStatus_m RDStatus;//读取数据状态
|
ReadDataStatus_m RDStatus;//读取数据状态
|
||||||
|
|
||||||
uint32_t TD1mSDelayCnt;
|
uint32_t TD1mSDelayCnt;
|
||||||
uint8_t FeedDogDlyCnt;
|
uint8_t FeedDogDlyCnt;
|
||||||
@@ -77,30 +77,32 @@ typedef struct {
|
|||||||
AHRSData_T AHRSData;
|
AHRSData_T AHRSData;
|
||||||
ConvertedData_T ConvertedData;
|
ConvertedData_T ConvertedData;
|
||||||
|
|
||||||
uint32_t RepeLoginCount; //24h重复注册计数
|
uint32_t RepeLoginCount; //24h重复注册计数
|
||||||
uint8_t Login30MinCount; //注册30分定时计数
|
uint8_t Login30MinCount; //注册30分定时计数
|
||||||
uint8_t Login2Min30SCount; //注册100ms~2分+30s定时计数
|
uint8_t Login2Min30SCount; //注册100ms~2分+30s定时计数
|
||||||
bool Login_RTC; //注册30分定时器启动标志位
|
bool Login_RTC; //注册30分定时器启动标志位
|
||||||
bool Login_LPTimer0; //注册100ms~2分+30s定时器启动标志位
|
bool Login_LPTimer0; //注册100ms~2分+30s定时器启动标志位
|
||||||
bool LoginFlag; //注册标志位
|
bool LoginFlag; //注册标志位
|
||||||
|
|
||||||
uint16_t Coll_N; //数据采集时间计数
|
uint16_t Coll_N; //数据采集时间计数
|
||||||
uint16_t Repor_N; //上报时间计数
|
uint16_t Repor_N; //上报时间计数
|
||||||
uint16_t ERInterval_N; //紧急上报时间间隔计数
|
uint16_t ERInterval_N; //紧急上报时间间隔计数
|
||||||
uint8_t ERTime_N; //紧急上报时间计数
|
uint8_t ERTime_N; //紧急上报时间计数
|
||||||
bool ERFlag; //紧急上报标志位
|
bool ERFlag; //紧急上报标志位
|
||||||
|
|
||||||
bool UploadFlag; //上传数据标志位
|
bool UploadFlag; //上传数据标志位
|
||||||
uint8_t Upload45S10SCount; //上传数据超时计数
|
uint8_t Upload45S10SCount; //上传数据超时计数
|
||||||
bool Upload_LPTimer0; //上传100~10000ms+45秒定时器启动标志位
|
bool Upload_LPTimer0; //上传100~10000ms+45秒定时器启动标志位
|
||||||
|
|
||||||
bool MagRead_EndFlag;
|
bool MagRead_EndFlag;
|
||||||
bool AccRead_EndFlag;
|
bool AccRead_EndFlag;
|
||||||
bool UpdateOk; //数据更新标志位
|
bool UpdateOk; //数据更新标志位
|
||||||
|
|
||||||
bool CaliFlag; //标校标志位
|
bool CaliFlag; //标校标志位
|
||||||
|
|
||||||
int16_t Nonce; //随机数
|
uint16_t Nonce; //随机数
|
||||||
|
bool AttTestMode; //姿态测试模式标志位
|
||||||
|
uint32_t AttTestCnt; //姿态测试打印计数(ms)
|
||||||
}AppDetect_t;
|
}AppDetect_t;
|
||||||
extern AppDetect_t App;
|
extern AppDetect_t App;
|
||||||
|
|
||||||
|
|||||||
+194
-194
@@ -1,50 +1,50 @@
|
|||||||
#include "bsp.h"
|
#include "bsp.h"
|
||||||
#include "Algorithm.h"
|
#include "Algorithm.h"
|
||||||
#include "UartDebug.h"
|
#include "UartDebug.h"
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: check_peaks_valleys_ratio
|
* 函数名称: check_peaks_valleys_ratio
|
||||||
* 功能描述: 检查数据的峰值是否大于0,谷值是否小于0(忽略0值)
|
* 功能描述: 检查数据的峰值是否大于0,谷值是否小于0(忽略0值)
|
||||||
* 参 数: data, 数据
|
* 参 数: data, 数据
|
||||||
length, 数据长度
|
length, 数据长度
|
||||||
* 返 回 值: 结果返回峰值谷值检查结果结构体
|
* 返 回 值: 结果返回峰值谷值检查结果结构体
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
PeakValleyCheck check_peaks_valleys(int data[], int length) {
|
PeakValleyCheck check_peaks_valleys(int data[], int length) {
|
||||||
PeakValleyCheck result = {true, true, 0, 0};
|
PeakValleyCheck result = {true, true, 0, 0};
|
||||||
|
|
||||||
// 如果数据长度小于3,无法形成有效的峰值/谷值
|
// 如果数据长度小于3,无法形成有效的峰值/谷值
|
||||||
if (length < 3) {
|
if (length < 3) {
|
||||||
return result;
|
return result;
|
||||||
}
|
}
|
||||||
|
|
||||||
int i = 0;
|
int i = 0;
|
||||||
// 跳过开头的0值
|
// 跳过开头的0值
|
||||||
while (i < length && data[i] == 0) {
|
while (i < length && data[i] == 0) {
|
||||||
i++;
|
i++;
|
||||||
}
|
}
|
||||||
|
|
||||||
// 遍历数据点
|
// 遍历数据点
|
||||||
while (i < length) {
|
while (i < length) {
|
||||||
// 1. 寻找下一个非零点作为起点
|
// 1. 寻找下一个非零点作为起点
|
||||||
int start = i;
|
int start = i;
|
||||||
while (i < length && data[i] == 0) {
|
while (i < length && data[i] == 0) {
|
||||||
i++;
|
i++;
|
||||||
}
|
}
|
||||||
if (i >= length) break;
|
if (i >= length) break;
|
||||||
|
|
||||||
// 2. 寻找当前非零段的结束点
|
// 2. 寻找当前非零段的结束点
|
||||||
int end = i;
|
int end = i;
|
||||||
while (end < length && data[end] != 0) {
|
while (end < length && data[end] != 0) {
|
||||||
end++;
|
end++;
|
||||||
}
|
}
|
||||||
end--; // 指向最后一个非零点
|
end--; // 指向最后一个非零点
|
||||||
|
|
||||||
// 3. 在当前非零段中检测峰值和谷值
|
// 3. 在当前非零段中检测峰值和谷值
|
||||||
for (int j = i; j <= end; j++) {
|
for (int j = i; j <= end; j++) {
|
||||||
// 跳过边界点
|
// 跳过边界点
|
||||||
if (j == i || j == end) continue;
|
if (j == i || j == end) continue;
|
||||||
|
|
||||||
// 检查是否为峰值(大于左右相邻的非零点)
|
// 检查是否为峰值(大于左右相邻的非零点)
|
||||||
if (data[j] > data[j-1] && data[j] > data[j+1]) {
|
if (data[j] > data[j-1] && data[j] > data[j+1]) {
|
||||||
result.peak_count++;
|
result.peak_count++;
|
||||||
if (data[j] <= 0) {
|
if (data[j] <= 0) {
|
||||||
@@ -52,7 +52,7 @@ PeakValleyCheck check_peaks_valleys(int data[], int length) {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
// 检查是否为谷值(小于左右相邻的非零点)
|
// 检查是否为谷值(小于左右相邻的非零点)
|
||||||
if (data[j] < data[j-1] && data[j] < data[j+1]) {
|
if (data[j] < data[j-1] && data[j] < data[j+1]) {
|
||||||
result.valley_count++;
|
result.valley_count++;
|
||||||
if (data[j] >= 0) {
|
if (data[j] >= 0) {
|
||||||
@@ -61,33 +61,33 @@ PeakValleyCheck check_peaks_valleys(int data[], int length) {
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
// 移动到下一段
|
// 移动到下一段
|
||||||
i = end + 1;
|
i = end + 1;
|
||||||
}
|
}
|
||||||
|
|
||||||
return result;
|
return result;
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: analyze_trend
|
* 函数名称: analyze_trend
|
||||||
* 功能描述: 趋势分析函数
|
* 功能描述: 趋势分析函数
|
||||||
* 参 数: data, 数据
|
* 参 数: data, 数据
|
||||||
length, 数据长度
|
length, 数据长度
|
||||||
* 返 回 值: 结果返回趋势分析结构体
|
* 返 回 值: 结果返回趋势分析结构体
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
TrendResult analyze_trend(int data[], int length) {
|
TrendResult analyze_trend(int data[], int length) {
|
||||||
TrendResult result = {0};
|
TrendResult result = {0};
|
||||||
#if 1
|
#if 1
|
||||||
// 0. 检查有效数据长度
|
// 0. 检查有效数据长度
|
||||||
if (length < 2) {
|
if (length < 2) {
|
||||||
DBG_LOG("Data deficient\r\n");
|
DBG_LOG("Data deficient\r\n");
|
||||||
return result;
|
return result;
|
||||||
}
|
}
|
||||||
|
|
||||||
// 1. 计算线性回归斜率
|
// 1. 计算线性回归斜率
|
||||||
double sum_x = 0, sum_y = 0, sum_xy = 0, sum_x2 = 0;
|
double sum_x = 0, sum_y = 0, sum_xy = 0, sum_x2 = 0;
|
||||||
|
|
||||||
for (int i = 0; i < length; i++) {
|
for (int i = 0; i < length; i++) {
|
||||||
double x = i; // 时间序列 (0,1,2,...)
|
double x = i; // 时间序列 (0,1,2,...)
|
||||||
double y = data[i];
|
double y = data[i];
|
||||||
sum_x += x;
|
sum_x += x;
|
||||||
sum_y += y;
|
sum_y += y;
|
||||||
@@ -98,15 +98,15 @@ TrendResult analyze_trend(int data[], int length) {
|
|||||||
double numerator = length * sum_xy - sum_x * sum_y;
|
double numerator = length * sum_xy - sum_x * sum_y;
|
||||||
double denominator = length * sum_x2 - sum_x * sum_x;
|
double denominator = length * sum_x2 - sum_x * sum_x;
|
||||||
|
|
||||||
// 处理分母为零的情况
|
// 处理分母为零的情况
|
||||||
if (fabs(denominator) > 1e-10) {
|
if (fabs(denominator) > 1e-10) {
|
||||||
result.slope = numerator / denominator;
|
result.slope = numerator / denominator;
|
||||||
}
|
}
|
||||||
#endif
|
#endif
|
||||||
#if 0
|
#if 0
|
||||||
// 2. 计算振荡特征(差分符号变化次数)
|
// 2. 计算振荡特征(差分符号变化次数)
|
||||||
int sign_changes = 0;
|
int sign_changes = 0;
|
||||||
int prev_sign = 0; // 0=未初始化, 1=正, -1=负
|
int prev_sign = 0; // 0=未初始化, 1=正, -1=负
|
||||||
|
|
||||||
for (int i = 1; i < length; i++) {
|
for (int i = 1; i < length; i++) {
|
||||||
int diff = data[i] - data[i-1];
|
int diff = data[i] - data[i-1];
|
||||||
@@ -122,66 +122,66 @@ TrendResult analyze_trend(int data[], int length) {
|
|||||||
result.sign_changes = sign_changes;
|
result.sign_changes = sign_changes;
|
||||||
#endif
|
#endif
|
||||||
#if 0
|
#if 0
|
||||||
// 3. 动态计算阈值(基于数据长度)
|
// 3. 动态计算阈值(基于数据长度)
|
||||||
int oscillation_threshold = (int)(0.4 * (length - 1)); // 40%的变化率
|
int oscillation_threshold = (int)(0.4 * (length - 1)); // 40%的变化率
|
||||||
double slope_threshold = 0.05 * (length / 20.0); // 长度标准化
|
double slope_threshold = 0.05 * (length / 20.0); // 长度标准化
|
||||||
#endif
|
#endif
|
||||||
#if 0
|
#if 0
|
||||||
// 4. 趋势判断
|
// 4. 趋势判断
|
||||||
if (sign_changes >= oscillation_threshold) {
|
if (sign_changes >= oscillation_threshold) {
|
||||||
//DBG_LOG("Oscillating trend\r\n");//振荡趋势
|
//DBG_LOG("Oscillating trend\r\n");//振荡趋势
|
||||||
result.trend_type = 0;
|
result.trend_type = 0;
|
||||||
} else if (fabs(result.slope) < slope_threshold) {
|
} else if (fabs(result.slope) < slope_threshold) {
|
||||||
//DBG_LOG("Smooth trend\r\n");//平稳趋势
|
//DBG_LOG("Smooth trend\r\n");//平稳趋势
|
||||||
result.trend_type = 1;
|
result.trend_type = 1;
|
||||||
} else if (result.slope > 0) {
|
} else if (result.slope > 0) {
|
||||||
//DBG_LOG("Up trend\r\n");//上升趋势
|
//DBG_LOG("Up trend\r\n");//上升趋势
|
||||||
result.trend_type = 2;
|
result.trend_type = 2;
|
||||||
} else {
|
} else {
|
||||||
//DBG_LOG("Down trend\r\n");//下降趋势
|
//DBG_LOG("Down trend\r\n");//下降趋势
|
||||||
result.trend_type = 3;
|
result.trend_type = 3;
|
||||||
}
|
}
|
||||||
#endif
|
#endif
|
||||||
#if 0
|
#if 0
|
||||||
// 5. 陡峭判断
|
// 5. 陡峭判断
|
||||||
double abs_slope = fabs(result.slope);
|
double abs_slope = fabs(result.slope);
|
||||||
if (abs_slope > 0.8) {
|
if (abs_slope > 0.8) {
|
||||||
//DBG_LOG("Steeply");//陡峭
|
//DBG_LOG("Steeply");//陡峭
|
||||||
result.sign_changes = 0;
|
result.sign_changes = 0;
|
||||||
} else if (abs_slope > 0.3) {
|
} else if (abs_slope > 0.3) {
|
||||||
//DBG_LOG("Obvious");//明显
|
//DBG_LOG("Obvious");//明显
|
||||||
result.sign_changes = 1;
|
result.sign_changes = 1;
|
||||||
} else if (abs_slope > 0.1) {
|
} else if (abs_slope > 0.1) {
|
||||||
//DBG_LOG("Mild");//温和
|
//DBG_LOG("Mild");//温和
|
||||||
result.sign_changes = 2;
|
result.sign_changes = 2;
|
||||||
} else {
|
} else {
|
||||||
//DBG_LOG("gentle");//平缓
|
//DBG_LOG("gentle");//平缓
|
||||||
result.sign_changes = 3;
|
result.sign_changes = 3;
|
||||||
}
|
}
|
||||||
#endif
|
#endif
|
||||||
return result;
|
return result;
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: calculateAverage
|
* 函数名称: calculateAverage
|
||||||
* 功能描述: 计算平均值
|
* 功能描述: 计算平均值
|
||||||
* 参 数: arr, 数据
|
* 参 数: arr, 数据
|
||||||
size, 数据长度
|
size, 数据长度
|
||||||
* 返 回 值: 结果返回 long long 防溢出
|
* 返 回 值: 结果返回 long long 防溢出
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
float calculateAverage(int *arr, int size)
|
float calculateAverage(int *arr, int size)
|
||||||
{
|
{
|
||||||
int sum = 0;
|
int sum = 0;
|
||||||
for (int i = 0; i < size; i++) {
|
for (int i = 0; i < size; i++) {
|
||||||
sum += arr[i]; // 累加数组中的每个元素
|
sum += arr[i]; // 累加数组中的每个元素
|
||||||
}
|
}
|
||||||
return (float)sum / size; // 返回平均值
|
return (float)sum / size; // 返回平均值
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: slope
|
* 函数名称: slope
|
||||||
* 功能描述: 计算斜率
|
* 功能描述: 计算斜率
|
||||||
* 参 数: x_data, x轴数据
|
* 参 数: x_data, x轴数据
|
||||||
y_data, y轴数据
|
y_data, y轴数据
|
||||||
* 返 回 值: 结果返回 long long 防溢出
|
* 返 回 值: 结果返回 long long 防溢出
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
double slope(int32_t *x_data, int32_t *y_data, int n)
|
double slope(int32_t *x_data, int32_t *y_data, int n)
|
||||||
{
|
{
|
||||||
@@ -196,30 +196,30 @@ double slope(int32_t *x_data, int32_t *y_data, int n)
|
|||||||
return sum_xy / sum_xx;
|
return sum_xy / sum_xx;
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: power
|
* 函数名称: power
|
||||||
* 功能描述: 快速幂算法
|
* 功能描述: 快速幂算法
|
||||||
* 参 数: base, 滤波数据
|
* 参 数: base, 滤波数据
|
||||||
exponent, 滤波数据长度
|
exponent, 滤波数据长度
|
||||||
* 返 回 值: 结果返回 long long 防溢出
|
* 返 回 值: 结果返回 long long 防溢出
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
long long power(int base, unsigned int exponent) {
|
long long power(int base, unsigned int exponent) {
|
||||||
long long result = 1;
|
long long result = 1;
|
||||||
while (exponent > 0) {
|
while (exponent > 0) {
|
||||||
if (exponent % 2 == 1) {
|
if (exponent % 2 == 1) {
|
||||||
result *= base; // 指数为奇数时累乘
|
result *= base; // 指数为奇数时累乘
|
||||||
}
|
}
|
||||||
base *= base; // 底数平方
|
base *= base; // 底数平方
|
||||||
exponent /= 2; // 指数折半
|
exponent /= 2; // 指数折半
|
||||||
}
|
}
|
||||||
return result;
|
return result;
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: IntFilter_16t
|
* 函数名称: IntFilter_16t
|
||||||
* 功能描述: 16位数据中值滤波函数
|
* 功能描述: 16位数据中值滤波函数
|
||||||
* 参 数: Data, 滤波数据
|
* 参 数: Data, 滤波数据
|
||||||
Cnt, 滤波数据长度
|
Cnt, 滤波数据长度
|
||||||
FilterCnt, 滤除的数据长度,必须为2的倍数
|
FilterCnt, 滤除的数据长度,必须为2的倍数
|
||||||
* 返 回 值: 滤波后的16位数据
|
* 返 回 值: 滤波后的16位数据
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
int IntFilter_16t(int16_t *Data, uint8_t Cnt, uint8_t FilterCnt)
|
int IntFilter_16t(int16_t *Data, uint8_t Cnt, uint8_t FilterCnt)
|
||||||
{
|
{
|
||||||
@@ -245,12 +245,12 @@ int IntFilter_16t(int16_t *Data, uint8_t Cnt, uint8_t FilterCnt)
|
|||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: IntFilter_32t
|
* 函数名称: IntFilter_32t
|
||||||
* 功能描述: 32位数据中值滤波函数
|
* 功能描述: 32位数据中值滤波函数
|
||||||
* 参 数: Data, 滤波数据
|
* 参 数: Data, 滤波数据
|
||||||
Cnt, 滤波数据长度
|
Cnt, 滤波数据长度
|
||||||
FilterCnt, 滤除的数据长度,必须为2的倍数
|
FilterCnt, 滤除的数据长度,必须为2的倍数
|
||||||
* 返 回 值: 滤波后的32位数据
|
* 返 回 值: 滤波后的32位数据
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
int IntFilter_32t(int32_t *Data, uint8_t Cnt, uint8_t FilterCnt)
|
int IntFilter_32t(int32_t *Data, uint8_t Cnt, uint8_t FilterCnt)
|
||||||
{
|
{
|
||||||
@@ -275,12 +275,12 @@ int IntFilter_32t(int32_t *Data, uint8_t Cnt, uint8_t FilterCnt)
|
|||||||
return (sum / (Cnt - FilterCnt));
|
return (sum / (Cnt - FilterCnt));
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: IntFilter_u32t
|
* 函数名称: IntFilter_u32t
|
||||||
* 功能描述: 32位无符号位数据中值滤波函数
|
* 功能描述: 32位无符号位数据中值滤波函数
|
||||||
* 参 数: Data, 滤波数据
|
* 参 数: Data, 滤波数据
|
||||||
Cnt, 滤波数据长度
|
Cnt, 滤波数据长度
|
||||||
FilterCnt, 滤除的数据长度,必须为2的倍数
|
FilterCnt, 滤除的数据长度,必须为2的倍数
|
||||||
* 返 回 值: 滤波后的32位数据
|
* 返 回 值: 滤波后的32位数据
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
uint32_t IntFilter_u32t(uint32_t *Data, uint8_t Cnt, uint8_t FilterCnt)
|
uint32_t IntFilter_u32t(uint32_t *Data, uint8_t Cnt, uint8_t FilterCnt)
|
||||||
{
|
{
|
||||||
@@ -305,12 +305,12 @@ uint32_t IntFilter_u32t(uint32_t *Data, uint8_t Cnt, uint8_t FilterCnt)
|
|||||||
return (sum / (Cnt - FilterCnt));
|
return (sum / (Cnt - FilterCnt));
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: IntFilter_Float
|
* 函数名称: IntFilter_Float
|
||||||
* 功能描述: 32位浮点数数据中值滤波函数
|
* 功能描述: 32位浮点数数据中值滤波函数
|
||||||
* 参 数: Data, 滤波数据
|
* 参 数: Data, 滤波数据
|
||||||
Cnt, 滤波数据长度
|
Cnt, 滤波数据长度
|
||||||
FilterCnt, 滤除的数据长度,必须为2的倍数
|
FilterCnt, 滤除的数据长度,必须为2的倍数
|
||||||
* 返 回 值: 滤波后的32位数据
|
* 返 回 值: 滤波后的32位数据
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
float IntFilter_Float(float *Data, uint8_t Cnt, uint8_t FilterCnt)
|
float IntFilter_Float(float *Data, uint8_t Cnt, uint8_t FilterCnt)
|
||||||
{
|
{
|
||||||
@@ -335,11 +335,11 @@ float IntFilter_Float(float *Data, uint8_t Cnt, uint8_t FilterCnt)
|
|||||||
return (sum / (Cnt - FilterCnt));
|
return (sum / (Cnt - FilterCnt));
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: AverageFilter_u32t
|
* 函数名称: AverageFilter_u32t
|
||||||
* 功能描述: 32位数据均值滤波函数,去除了最大值和最小值
|
* 功能描述: 32位数据均值滤波函数,去除了最大值和最小值
|
||||||
* 参 数: Data, 滤波数据
|
* 参 数: Data, 滤波数据
|
||||||
Cnt, 滤波数据长度
|
Cnt, 滤波数据长度
|
||||||
* 返 回 值: 滤波后的32位数据
|
* 返 回 值: 滤波后的32位数据
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
uint32_t AverageFilter_u32t(uint32_t *Data, uint8_t Cnt)
|
uint32_t AverageFilter_u32t(uint32_t *Data, uint8_t Cnt)
|
||||||
{
|
{
|
||||||
@@ -360,7 +360,7 @@ uint32_t AverageFilter_u32t(uint32_t *Data, uint8_t Cnt)
|
|||||||
return sum / 2;
|
return sum / 2;
|
||||||
}
|
}
|
||||||
|
|
||||||
for (uint8_t i = 0; i < Cnt; i++)//找出最大值
|
for (uint8_t i = 0; i < Cnt; i++)//找出最大值
|
||||||
{
|
{
|
||||||
if (Data[i] > max)
|
if (Data[i] > max)
|
||||||
{
|
{
|
||||||
@@ -368,7 +368,7 @@ uint32_t AverageFilter_u32t(uint32_t *Data, uint8_t Cnt)
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
for (uint8_t i = 0; i < Cnt; i++)//找出最小值
|
for (uint8_t i = 0; i < Cnt; i++)//找出最小值
|
||||||
{
|
{
|
||||||
if (Data[i] < min)
|
if (Data[i] < min)
|
||||||
{
|
{
|
||||||
@@ -376,7 +376,7 @@ uint32_t AverageFilter_u32t(uint32_t *Data, uint8_t Cnt)
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
for(int i = 0; i < Cnt; i++){//求和
|
for(int i = 0; i < Cnt; i++){//求和
|
||||||
sum += Data[i];
|
sum += Data[i];
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -384,11 +384,11 @@ uint32_t AverageFilter_u32t(uint32_t *Data, uint8_t Cnt)
|
|||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: AverageFilter_32t
|
* 函数名称: AverageFilter_32t
|
||||||
* 功能描述: 32位数据均值滤波函数,去除了最大值和最小值
|
* 功能描述: 32位数据均值滤波函数,去除了最大值和最小值
|
||||||
* 参 数: Data, 滤波数据
|
* 参 数: Data, 滤波数据
|
||||||
Cnt, 滤波数据长度
|
Cnt, 滤波数据长度
|
||||||
* 返 回 值: 滤波后的32位数据
|
* 返 回 值: 滤波后的32位数据
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
int AverageFilter_32t(int32_t *Data, uint8_t Cnt)
|
int AverageFilter_32t(int32_t *Data, uint8_t Cnt)
|
||||||
{
|
{
|
||||||
@@ -408,7 +408,7 @@ int AverageFilter_32t(int32_t *Data, uint8_t Cnt)
|
|||||||
return sum / 2;
|
return sum / 2;
|
||||||
}
|
}
|
||||||
|
|
||||||
for (uint8_t i = 0; i < Cnt; i++)//找出最大值
|
for (uint8_t i = 0; i < Cnt; i++)//找出最大值
|
||||||
{
|
{
|
||||||
if (Data[i] > max)
|
if (Data[i] > max)
|
||||||
{
|
{
|
||||||
@@ -416,7 +416,7 @@ int AverageFilter_32t(int32_t *Data, uint8_t Cnt)
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
for (uint8_t i = 0; i < Cnt; i++)//找出最小值
|
for (uint8_t i = 0; i < Cnt; i++)//找出最小值
|
||||||
{
|
{
|
||||||
if (Data[i] < min)
|
if (Data[i] < min)
|
||||||
{
|
{
|
||||||
@@ -424,24 +424,24 @@ int AverageFilter_32t(int32_t *Data, uint8_t Cnt)
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
for(int i = 0; i < Cnt; i++){//求和
|
for(int i = 0; i < Cnt; i++){//求和
|
||||||
sum += Data[i];
|
sum += Data[i];
|
||||||
}
|
}
|
||||||
|
|
||||||
return (sum - max - min) / (Cnt - 2);
|
return (sum - max - min) / (Cnt - 2);
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: Fitting_Polynomial
|
* 函数名称: Fitting_Polynomial
|
||||||
* 功能描述: 根据数组AD[], Actual[]列出的一组数据,用最小二乘法求它的拟合曲线,默认3阶
|
* 功能描述: 根据数组AD[], Actual[]列出的一组数据,用最小二乘法求它的拟合曲线,默认3阶
|
||||||
近似解析表达式为y = a3*x^3 + a2*x^2 + a1*x + a0;
|
近似解析表达式为y = a3*x^3 + a2*x^2 + a1*x + a0;
|
||||||
* 参 数: AD, AD芯片采样值
|
* 参 数: AD, AD芯片采样值
|
||||||
Actual, 实际标校值
|
Actual, 实际标校值
|
||||||
Cnt, 拟合数据个数
|
Cnt, 拟合数据个数
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void Fitting_Polynomial(double *AD, double *Actual, uint8_t Cnt)
|
void Fitting_Polynomial(double *AD, double *Actual, uint8_t Cnt)
|
||||||
{
|
{
|
||||||
static const uint8_t rank_ = 3;//拟合阶数3
|
static const uint8_t rank_ = 3;//拟合阶数3
|
||||||
double atemp[2 * (rank_ + 1)], b[rank_ + 1], a[rank_ + 1][rank_ + 1];
|
double atemp[2 * (rank_ + 1)], b[rank_ + 1], a[rank_ + 1][rank_ + 1];
|
||||||
int i, j, k;
|
int i, j, k;
|
||||||
|
|
||||||
@@ -460,22 +460,22 @@ void Fitting_Polynomial(double *AD, double *Actual, uint8_t Cnt)
|
|||||||
|
|
||||||
atemp[0] = Cnt;
|
atemp[0] = Cnt;
|
||||||
|
|
||||||
for(i = 0; i < rank_ + 1; i++){ //构建线性方程组系数矩阵,b[]不变
|
for(i = 0; i < rank_ + 1; i++){ //构建线性方程组系数矩阵,b[]不变
|
||||||
k = i;
|
k = i;
|
||||||
for(j = 0; j < rank_ + 1; j++) a[i][j] = atemp[k++];
|
for(j = 0; j < rank_ + 1; j++) a[i][j] = atemp[k++];
|
||||||
}
|
}
|
||||||
|
|
||||||
//以下为高斯列主元消去法解线性方程组
|
//以下为高斯列主元消去法解线性方程组
|
||||||
for(k = 0; k < rank_ + 1 - 1; k++){ //n - 1列
|
for(k = 0; k < rank_ + 1 - 1; k++){ //n - 1列
|
||||||
int column = k;
|
int column = k;
|
||||||
double mainelement = a[k][k];
|
double mainelement = a[k][k];
|
||||||
|
|
||||||
for(i = k; i < rank_ + 1; i++) //找主元素
|
for(i = k; i < rank_ + 1; i++) //找主元素
|
||||||
if(fabs(a[i][k]) > mainelement){
|
if(fabs(a[i][k]) > mainelement){
|
||||||
mainelement = fabs(a[i][k]);
|
mainelement = fabs(a[i][k]);
|
||||||
column = i;
|
column = i;
|
||||||
}
|
}
|
||||||
for(j = k; j < rank_ + 1; j++){ //交换两行
|
for(j = k; j < rank_ + 1; j++){ //交换两行
|
||||||
double atemp = a[k][j];
|
double atemp = a[k][j];
|
||||||
a[k][j] = a[column][j];
|
a[k][j] = a[column][j];
|
||||||
a[column][j] = atemp;
|
a[column][j] = atemp;
|
||||||
@@ -484,19 +484,19 @@ void Fitting_Polynomial(double *AD, double *Actual, uint8_t Cnt)
|
|||||||
b[k] = b[column];
|
b[k] = b[column];
|
||||||
b[column] = btemp;
|
b[column] = btemp;
|
||||||
|
|
||||||
for(i = k + 1; i < rank_ + 1; i++){ //消元过程
|
for(i = k + 1; i < rank_ + 1; i++){ //消元过程
|
||||||
double Mik = a[i][k] / a[k][k];
|
double Mik = a[i][k] / a[k][k];
|
||||||
for(j = k; j < rank_ + 1; j++) a[i][j] -= Mik * a[k][j];
|
for(j = k; j < rank_ + 1; j++) a[i][j] -= Mik * a[k][j];
|
||||||
b[i] -= Mik * b[k];
|
b[i] -= Mik * b[k];
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
b[rank_ + 1 - 1] /= a[rank_ + 1 - 1][rank_ + 1 - 1]; //回代过程
|
b[rank_ + 1 - 1] /= a[rank_ + 1 - 1][rank_ + 1 - 1]; //回代过程
|
||||||
for(i = rank_ + 1 - 2; i >= 0; i--){
|
for(i = rank_ + 1 - 2; i >= 0; i--){
|
||||||
double sum = 0;
|
double sum = 0;
|
||||||
for(j = i + 1; j < rank_ + 1; j++) sum += a[i][j] * b[j];
|
for(j = i + 1; j < rank_ + 1; j++) sum += a[i][j] * b[j];
|
||||||
b[i] = (b[i] - sum) / a[i][i];
|
b[i] = (b[i] - sum) / a[i][i];
|
||||||
}//高斯列主元消去法结束
|
}//高斯列主元消去法结束
|
||||||
|
|
||||||
DBG_LOG("P(x) = %.16fx^3%+.16fx^2%+.16fx%+.16f\r\n", b[3], b[2], b[1], b[0]);
|
DBG_LOG("P(x) = %.16fx^3%+.16fx^2%+.16fx%+.16f\r\n", b[3], b[2], b[1], b[0]);
|
||||||
|
|
||||||
@@ -507,46 +507,46 @@ void Fitting_Polynomial(double *AD, double *Actual, uint8_t Cnt)
|
|||||||
|
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: get_K
|
* 函数名称: get_K
|
||||||
* 功能描述: 斜率计算
|
* 功能描述: 斜率计算
|
||||||
* 参 数: count,数据个数 数组行(列)的个数 数组的行列数目相等
|
* 参 数: count,数据个数 数组行(列)的个数 数组的行列数目相等
|
||||||
dataCol_X[count],数据的列数据
|
dataCol_X[count],数据的列数据
|
||||||
dataRow_Y[count],数据的行数据
|
dataRow_Y[count],数据的行数据
|
||||||
* 返 回 值: k 斜率
|
* 返 回 值: k 斜率
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
float get_K(uint8_t count , int32_t *dataCol_X, int32_t *dataRow_Y)
|
float get_K(uint8_t count , int32_t *dataCol_X, int32_t *dataRow_Y)
|
||||||
{
|
{
|
||||||
float k = 0;//斜率
|
float k = 0;//斜率
|
||||||
float aveCol_X = 0;//列的平均值x
|
float aveCol_X = 0;//列的平均值x
|
||||||
float aveRow_Y = 0;//行的平均值y
|
float aveRow_Y = 0;//行的平均值y
|
||||||
int32_t sum_XY = 0;//行列的总和xy
|
int32_t sum_XY = 0;//行列的总和xy
|
||||||
int32_t sumRow_Y = 0;//行的总和y
|
int32_t sumRow_Y = 0;//行的总和y
|
||||||
int32_t sumCol_X = 0;//列的总和x
|
int32_t sumCol_X = 0;//列的总和x
|
||||||
int32_t sumCol_X2 = 0;//列的总和x^2
|
int32_t sumCol_X2 = 0;//列的总和x^2
|
||||||
|
|
||||||
for(uint16_t i = 0 ; i < count ; i++)
|
for(uint16_t i = 0 ; i < count ; i++)
|
||||||
{
|
{
|
||||||
sumCol_X += dataCol_X[i];//求列x的总和
|
sumCol_X += dataCol_X[i];//求列x的总和
|
||||||
sumRow_Y += dataRow_Y[i];//求行y的总和
|
sumRow_Y += dataRow_Y[i];//求行y的总和
|
||||||
sumCol_X2 += dataCol_X[i] * dataCol_X[i];//求x^2的总和
|
sumCol_X2 += dataCol_X[i] * dataCol_X[i];//求x^2的总和
|
||||||
sum_XY += (dataCol_X[i] * dataRow_Y[i]);//求xy的总和
|
sum_XY += (dataCol_X[i] * dataRow_Y[i]);//求xy的总和
|
||||||
}
|
}
|
||||||
|
|
||||||
aveCol_X = 1.0 * sumCol_X / count;//求平均值
|
aveCol_X = 1.0 * sumCol_X / count;//求平均值
|
||||||
aveRow_Y = 1.0 * sumRow_Y / count;
|
aveRow_Y = 1.0 * sumRow_Y / count;
|
||||||
|
|
||||||
k = (sum_XY - aveCol_X * aveRow_Y * count) / //根据公式求斜率
|
k = (sum_XY - aveCol_X * aveRow_Y * count) / //根据公式求斜率
|
||||||
(sumCol_X2 - aveCol_X * aveCol_X * count);
|
(sumCol_X2 - aveCol_X * aveCol_X * count);
|
||||||
|
|
||||||
return k;
|
return k;
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: TrendAnalyse
|
* 函数名称: TrendAnalyse
|
||||||
* 功能描述: 判断数组中的值的总体趋势
|
* 功能描述: 判断数组中的值的总体趋势
|
||||||
* 参 数: Data,
|
* 参 数: Data,
|
||||||
Cnt,
|
Cnt,
|
||||||
VPT,
|
VPT,
|
||||||
* 返 回 值: true或false
|
* 返 回 值: true或false
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
int8_t TrendAnalyse(int32_t *Data, uint8_t Cnt, int32_t VPT)
|
int8_t TrendAnalyse(int32_t *Data, uint8_t Cnt, int32_t VPT)
|
||||||
{
|
{
|
||||||
@@ -571,26 +571,26 @@ int8_t TrendAnalyse(int32_t *Data, uint8_t Cnt, int32_t VPT)
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
if(zero > (Cnt-(Cnt / 5)))
|
if(zero > (Cnt-(Cnt / 5)))
|
||||||
Trend = 0;//振荡趋势
|
Trend = 0;//振荡趋势
|
||||||
else if(plus > (Cnt-(Cnt/ 5)))
|
else if(plus > (Cnt-(Cnt/ 5)))
|
||||||
Trend = 1;//上升趋势
|
Trend = 1;//上升趋势
|
||||||
else if(minus > (Cnt-(Cnt/ 5)))
|
else if(minus > (Cnt-(Cnt/ 5)))
|
||||||
Trend = -1;//下降趋势
|
Trend = -1;//下降趋势
|
||||||
|
|
||||||
return Trend;//总趋势
|
return Trend;//总趋势
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: Waveform_Up
|
* 函数名称: Waveform_Up
|
||||||
* 功能描述: 找出一段波形的波峰值
|
* 功能描述: 找出一段波形的波峰值
|
||||||
dCnt, 波形数据长度
|
dCnt, 波形数据长度
|
||||||
pCnt, 要查找波峰数
|
pCnt, 要查找波峰数
|
||||||
vlue, 返回的波峰值
|
vlue, 返回的波峰值
|
||||||
* 返 回 值: true或false
|
* 返 回 值: true或false
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void Waveform_Up(int32_t *Data, uint8_t dCnt, uint8_t pCnt, int32_t *vlue)
|
void Waveform_Up(int32_t *Data, uint8_t dCnt, uint8_t pCnt, int32_t *vlue)
|
||||||
{
|
{
|
||||||
uint8_t peak[pCnt];
|
uint8_t peak[pCnt];
|
||||||
for(uint8_t i = 0, j = 0; i < dCnt; i++)//找出峰值地址
|
for(uint8_t i = 0, j = 0; i < dCnt; i++)//找出峰值地址
|
||||||
{
|
{
|
||||||
if(Data[i] < Data[i + 1] && Data[i + 1] > Data[i + 2])
|
if(Data[i] < Data[i + 1] && Data[i + 1] > Data[i + 2])
|
||||||
{
|
{
|
||||||
@@ -605,17 +605,17 @@ void Waveform_Up(int32_t *Data, uint8_t dCnt, uint8_t pCnt, int32_t *vlue)
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: Waveform_Down
|
* 函数名称: Waveform_Down
|
||||||
* 功能描述: 找出一段波形的波谷值
|
* 功能描述: 找出一段波形的波谷值
|
||||||
dCnt, 波形数据长度
|
dCnt, 波形数据长度
|
||||||
pCnt, 要查找波谷数
|
pCnt, 要查找波谷数
|
||||||
vlue, 返回的波谷值
|
vlue, 返回的波谷值
|
||||||
* 返 回 值: true或false
|
* 返 回 值: true或false
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void Waveform_Down(int32_t *Data, uint8_t dCnt, uint8_t pCnt, int32_t *vlue)
|
void Waveform_Down(int32_t *Data, uint8_t dCnt, uint8_t pCnt, int32_t *vlue)
|
||||||
{
|
{
|
||||||
uint8_t peak[pCnt];
|
uint8_t peak[pCnt];
|
||||||
for(uint8_t i = 0, j = 0; i < dCnt; i++)//找出峰值地址
|
for(uint8_t i = 0, j = 0; i < dCnt; i++)//找出峰值地址
|
||||||
{
|
{
|
||||||
if(Data[i] > Data[i + 1] && Data[i + 1] < Data[i + 2])
|
if(Data[i] > Data[i + 1] && Data[i + 1] < Data[i + 2])
|
||||||
{
|
{
|
||||||
@@ -630,12 +630,12 @@ void Waveform_Down(int32_t *Data, uint8_t dCnt, uint8_t pCnt, int32_t *vlue)
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: count_most_greater
|
* 函数名称: count_most_greater
|
||||||
* 功能描述: 判断数组中的值是否大部分大于 target
|
* 功能描述: 判断数组中的值是否大部分大于 target
|
||||||
* 参 数: arr,
|
* 参 数: arr,
|
||||||
size,
|
size,
|
||||||
target,
|
target,
|
||||||
* 返 回 值: true或false
|
* 返 回 值: true或false
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
bool count_most_greater(int32_t *arr, uint8_t size, int32_t target)
|
bool count_most_greater(int32_t *arr, uint8_t size, int32_t target)
|
||||||
{
|
{
|
||||||
@@ -649,12 +649,12 @@ bool count_most_greater(int32_t *arr, uint8_t size, int32_t target)
|
|||||||
return true;
|
return true;
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: count_greater
|
* 函数名称: count_greater
|
||||||
* 功能描述: 判断数组中的值是否全部大于 target
|
* 功能描述: 判断数组中的值是否全部大于 target
|
||||||
* 参 数: arr,
|
* 参 数: arr,
|
||||||
size,
|
size,
|
||||||
target,
|
target,
|
||||||
* 返 回 值: true或false
|
* 返 回 值: true或false
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
bool count_greater(int32_t *arr, uint8_t size, int32_t target)
|
bool count_greater(int32_t *arr, uint8_t size, int32_t target)
|
||||||
{
|
{
|
||||||
@@ -665,12 +665,12 @@ bool count_greater(int32_t *arr, uint8_t size, int32_t target)
|
|||||||
return true;
|
return true;
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: count_smaller
|
* 函数名称: count_smaller
|
||||||
* 功能描述: 判断数组中的值是否全部小于 target
|
* 功能描述: 判断数组中的值是否全部小于 target
|
||||||
* 参 数: arr,
|
* 参 数: arr,
|
||||||
size,
|
size,
|
||||||
target,
|
target,
|
||||||
* 返 回 值: true或false
|
* 返 回 值: true或false
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
bool count_smaller(int32_t *arr, uint8_t size, int32_t target)
|
bool count_smaller(int32_t *arr, uint8_t size, int32_t target)
|
||||||
{
|
{
|
||||||
@@ -682,12 +682,12 @@ bool count_smaller(int32_t *arr, uint8_t size, int32_t target)
|
|||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: CRC_Modbus
|
* 函数名称: CRC_Modbus
|
||||||
* 功能描述: CRC16计算函数
|
* 功能描述: CRC16计算函数
|
||||||
* 参 数: wBase, 多项式
|
* 参 数: wBase, 多项式
|
||||||
Para,校验数据入口
|
Para,校验数据入口
|
||||||
Data, 校验数据长度入口
|
Data, 校验数据长度入口
|
||||||
* 返 回 值: crc16校验值
|
* 返 回 值: crc16校验值
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
uint16_t CRC_Modbus(uint16_t wBase, uint8_t *para, uint16_t length)
|
uint16_t CRC_Modbus(uint16_t wBase, uint8_t *para, uint16_t length)
|
||||||
{
|
{
|
||||||
@@ -710,18 +710,18 @@ uint16_t CRC_Modbus(uint16_t wBase, uint8_t *para, uint16_t length)
|
|||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: CRC_Sum
|
* 函数名称: CRC_Sum
|
||||||
* 功能描述: 从第二个字节开始,求和取反
|
* 功能描述: 从第二个字节开始,求和取反
|
||||||
* 参 数: _pbuff,校验数据入口
|
* 参 数: _pbuff,校验数据入口
|
||||||
_cmdLen,校验数据长度入口
|
_cmdLen,校验数据长度入口
|
||||||
* 返 回 值: cmd_sum,校验值(一个字节)
|
* 返 回 值: cmd_sum,校验值(一个字节)
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
uint8_t CRC_Sum(uint8_t *_pbuff, uint16_t _cmdLen)
|
uint8_t CRC_Sum(uint8_t *_pbuff, uint16_t _cmdLen)
|
||||||
{
|
{
|
||||||
uint8_t cmd_sum=0;
|
uint8_t cmd_sum=0;
|
||||||
uint16_t i;
|
uint16_t i;
|
||||||
|
|
||||||
for(i=1;i<_cmdLen;i++)//从1开始,跳过第一个字节
|
for(i=1;i<_cmdLen;i++)//从1开始,跳过第一个字节
|
||||||
{
|
{
|
||||||
cmd_sum += _pbuff[i];
|
cmd_sum += _pbuff[i];
|
||||||
}
|
}
|
||||||
@@ -730,12 +730,12 @@ uint8_t CRC_Sum(uint8_t *_pbuff, uint16_t _cmdLen)
|
|||||||
return cmd_sum;
|
return cmd_sum;
|
||||||
}
|
}
|
||||||
/**
|
/**
|
||||||
* @brief 检查缓冲区是否全部等于指定字节值
|
* @brief 检查缓冲区是否全部等于指定字节值
|
||||||
* @param data : 待检查的数据指针
|
* @param data : 待检查的数据指针
|
||||||
* @param len : 数据长度(字节数)
|
* @param len : 数据长度(字节数)
|
||||||
* @param val : 期望的字节值 (0x00 ~ 0xFF)
|
* @param val : 期望的字节值 (0x00 ~ 0xFF)
|
||||||
* @return true : 全部等于 val
|
* @return true : 全部等于 val
|
||||||
* false: 存在不等于 val 的字节
|
* false: 存在不等于 val 的字节
|
||||||
*/
|
*/
|
||||||
bool is_all_byte(const uint8_t *data, size_t len, uint8_t val)
|
bool is_all_byte(const uint8_t *data, size_t len, uint8_t val)
|
||||||
{
|
{
|
||||||
@@ -747,12 +747,12 @@ bool is_all_byte(const uint8_t *data, size_t len, uint8_t val)
|
|||||||
return true;
|
return true;
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: HexToAscii
|
* 函数名称: HexToAscii
|
||||||
* 功能描述: 16进制转ASCII码
|
* 功能描述: 16进制转ASCII码
|
||||||
* 参 数: HexData,16进制数组
|
* 参 数: HexData,16进制数组
|
||||||
ASCData,ASCII码
|
ASCData,ASCII码
|
||||||
sLen,数据长度
|
sLen,数据长度
|
||||||
* 返 回 值: true或false
|
* 返 回 值: true或false
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void HexToAscii(uint8_t *HexData, char *ASCData, uint8_t sLen)
|
void HexToAscii(uint8_t *HexData, char *ASCData, uint8_t sLen)
|
||||||
{
|
{
|
||||||
|
|||||||
+277
-208
File diff suppressed because it is too large
Load Diff
+9
-9
@@ -1,13 +1,13 @@
|
|||||||
#include "Update.h"
|
#include "Update.h"
|
||||||
#include "UartDebug.h"
|
#include "UartDebug.h"
|
||||||
#include "main.h"
|
#include "main.h"
|
||||||
#include "bsp.h"
|
#include "bsp.h"
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: Update
|
* 函数名称: Update
|
||||||
* 功能描述: 固件升级,此函数在解析到升级指令是调用
|
* 功能描述: 固件升级,此函数在解析到升级指令是调用
|
||||||
* 参 数: PayLoad 协议负载,需去除帧头等信息,只传负载数据
|
* 参 数: PayLoad 协议负载,需去除帧头等信息,只传负载数据
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void Update(uint8_t *PayLoad)
|
void Update(uint8_t *PayLoad)
|
||||||
{
|
{
|
||||||
@@ -32,10 +32,10 @@ void Update(uint8_t *PayLoad)
|
|||||||
}
|
}
|
||||||
|
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: UpdateInit
|
* 函数名称: UpdateInit
|
||||||
* 功能描述: 升级参数初始化,需要在程序启动,外设初试完后调用
|
* 功能描述: 升级参数初始化,需要在程序启动,外设初试完后调用
|
||||||
* 参 数: 无
|
* 参 数: 无
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void UpdateInit(void)
|
void UpdateInit(void)
|
||||||
{
|
{
|
||||||
|
|||||||
+223
-221
@@ -32,51 +32,51 @@ extern void LORA_RxCallBack(uint8_t *rBuff, uint8_t rlen);
|
|||||||
static __IO uint32_t SysTickCnt = 0;
|
static __IO uint32_t SysTickCnt = 0;
|
||||||
static volatile uint32_t u32AdcRestult;
|
static volatile uint32_t u32AdcRestult;
|
||||||
|
|
||||||
static void SystemClkDivInit(void)//系统时钟分频设置
|
static void SystemClkDivInit(void)//系统时钟分频设置
|
||||||
{
|
{
|
||||||
//时钟分频设置
|
//时钟分频设置
|
||||||
Sysctrl_SetHCLKDiv(SysctrlHclkDiv1);
|
Sysctrl_SetHCLKDiv(SysctrlHclkDiv1);
|
||||||
Sysctrl_SetPCLKDiv(SysctrlPclkDiv1);
|
Sysctrl_SetPCLKDiv(SysctrlPclkDiv1);
|
||||||
}
|
}
|
||||||
static void SystemClkInit(en_sysctrl_rch_freq_t enRchFreq)//时钟初始化
|
static void SystemClkInit(en_sysctrl_rch_freq_t enRchFreq)//时钟初始化
|
||||||
{
|
{
|
||||||
///< RCH时钟不同频率的切换,需要先将时钟切换到RCL
|
///< RCH时钟不同频率的切换,需要先将时钟切换到RCL
|
||||||
Sysctrl_SetRCLTrim(SysctrlRclFreq38400);
|
Sysctrl_SetRCLTrim(SysctrlRclFreq38400);
|
||||||
Sysctrl_SetRCLStableTime(SysctrlRclStableCycle64);
|
Sysctrl_SetRCLStableTime(SysctrlRclStableCycle64);
|
||||||
Sysctrl_ClkSourceEnable(SysctrlClkRCL, TRUE);
|
Sysctrl_ClkSourceEnable(SysctrlClkRCL, TRUE);
|
||||||
|
|
||||||
/*内部高速时钟初始化 24MHZ*/
|
/*内部高速时钟初始化 24MHZ*/
|
||||||
/*Sysctrl_SetRCHTrim(enRchFreq);
|
/*Sysctrl_SetRCHTrim(enRchFreq);
|
||||||
Sysctrl_ClkSourceEnable(SysctrlClkRCH, TRUE);
|
Sysctrl_ClkSourceEnable(SysctrlClkRCH, TRUE);
|
||||||
//< HCLK不超过24M:此处设置FLASH读等待周期为0 cycle
|
//< HCLK不超过24M:此处设置FLASH读等待周期为0 cycle
|
||||||
Flash_WaitCycle(FlashWaitCycle0);
|
Flash_WaitCycle(FlashWaitCycle0);
|
||||||
|
|
||||||
Sysctrl_SysClkSwitch(SysctrlClkRCH);//系统时钟源选择
|
Sysctrl_SysClkSwitch(SysctrlClkRCH);//系统时钟源选择
|
||||||
*/
|
*/
|
||||||
|
|
||||||
/*内部高速时钟初始化 48MHZ*/
|
/*内部高速时钟初始化 48MHZ*/
|
||||||
stc_sysctrl_pll_cfg_t stcPLLCfg;
|
stc_sysctrl_pll_cfg_t stcPLLCfg;
|
||||||
|
|
||||||
///< 加载目标频率的RCH的TRIM值
|
///< 加载目标频率的RCH的TRIM值
|
||||||
Sysctrl_SetRCHTrim(SysctrlRchFreq4MHz);
|
Sysctrl_SetRCHTrim(SysctrlRchFreq4MHz);
|
||||||
///< 使能RCH
|
///< 使能RCH
|
||||||
Sysctrl_ClkSourceEnable(SysctrlClkRCH, TRUE);
|
Sysctrl_ClkSourceEnable(SysctrlClkRCH, TRUE);
|
||||||
|
|
||||||
stcPLLCfg.enInFreq = SysctrlPllInFreq4_6MHz; //RCH 4MHz
|
stcPLLCfg.enInFreq = SysctrlPllInFreq4_6MHz; //RCH 4MHz
|
||||||
stcPLLCfg.enOutFreq = SysctrlPllOutFreq36_48MHz; //PLL 输出
|
stcPLLCfg.enOutFreq = SysctrlPllOutFreq36_48MHz; //PLL 输出
|
||||||
stcPLLCfg.enPllClkSrc = SysctrlPllRch; //输入时钟源选择RCH
|
stcPLLCfg.enPllClkSrc = SysctrlPllRch; //输入时钟源选择RCH
|
||||||
stcPLLCfg.enPllMul = SysctrlPllMul12; //4MHz x 12 = 48MHz
|
stcPLLCfg.enPllMul = SysctrlPllMul12; //4MHz x 12 = 48MHz
|
||||||
Sysctrl_SetPLLFreq(&stcPLLCfg);
|
Sysctrl_SetPLLFreq(&stcPLLCfg);
|
||||||
|
|
||||||
///< 当使用的时钟源HCLK大于24M:设置FLASH 读等待周期为1 cycle(默认值也为1 cycle)
|
///< 当使用的时钟源HCLK大于24M:设置FLASH 读等待周期为1 cycle(默认值也为1 cycle)
|
||||||
Flash_WaitCycle(FlashWaitCycle1);
|
Flash_WaitCycle(FlashWaitCycle1);
|
||||||
|
|
||||||
///< 使能PLL
|
///< 使能PLL
|
||||||
Sysctrl_ClkSourceEnable(SysctrlClkPLL, TRUE);
|
Sysctrl_ClkSourceEnable(SysctrlClkPLL, TRUE);
|
||||||
///< 时钟切换到PLL
|
///< 时钟切换到PLL
|
||||||
Sysctrl_SysClkSwitch(SysctrlClkPLL);
|
Sysctrl_SysClkSwitch(SysctrlClkPLL);
|
||||||
|
|
||||||
/*外部低速晶振初始化 32.768KHz*/
|
/*外部低速晶振初始化 32.768KHz*/
|
||||||
/* Sysctrl_XTLDriverCfg(SysctrlXtlAmp3, SysctrlXtalDriver3);
|
/* Sysctrl_XTLDriverCfg(SysctrlXtlAmp3, SysctrlXtalDriver3);
|
||||||
Sysctrl_SetXTLStableTime(SysctrlXtlStableCycle16384);
|
Sysctrl_SetXTLStableTime(SysctrlXtlStableCycle16384);
|
||||||
Sysctrl_ClkSourceEnable(SysctrlClkXTL, TRUE);
|
Sysctrl_ClkSourceEnable(SysctrlClkXTL, TRUE);
|
||||||
@@ -84,9 +84,9 @@ static void SystemClkInit(en_sysctrl_rch_freq_t enRchFreq)//ʱ
|
|||||||
}
|
}
|
||||||
static void SystemRCLInit(void)
|
static void SystemRCLInit(void)
|
||||||
{
|
{
|
||||||
Sysctrl_SetRCLTrim(SysctrlRclFreq38400); ///< 配置RCL时钟为38400kHz
|
Sysctrl_SetRCLTrim(SysctrlRclFreq38400); ///< 配置RCL时钟为38400kHz
|
||||||
Sysctrl_SetRCLStableTime(SysctrlRclStableCycle256);
|
Sysctrl_SetRCLStableTime(SysctrlRclStableCycle256);
|
||||||
Sysctrl_ClkSourceEnable(SysctrlClkRCL, TRUE); ///< 使能RCL时钟
|
Sysctrl_ClkSourceEnable(SysctrlClkRCL, TRUE); ///< 使能RCL时钟
|
||||||
}
|
}
|
||||||
|
|
||||||
void Uart0Init(uint32_t Baud)
|
void Uart0Init(uint32_t Baud)
|
||||||
@@ -111,21 +111,21 @@ void Uart0Init(uint32_t Baud)
|
|||||||
DDL_ZERO_STRUCT(stcCfg);
|
DDL_ZERO_STRUCT(stcCfg);
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralUart0,TRUE);
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralUart0,TRUE);
|
||||||
|
|
||||||
///<UART 初始化
|
///<UART 初始化
|
||||||
stcCfg.enStopBit = UartMsk1bit; ///<1停止位
|
stcCfg.enStopBit = UartMsk1bit; ///<1停止位
|
||||||
stcCfg.enMmdorCk = UartMskEven; ///<偶校验
|
// stcCfg.enMmdorCk = UartMskEven; ///<偶校验
|
||||||
stcCfg.stcBaud.u32Pclk = Sysctrl_GetPClkFreq(); ///<PCLK获取
|
stcCfg.stcBaud.u32Pclk = Sysctrl_GetPClkFreq(); ///<PCLK获取
|
||||||
stcCfg.stcBaud.enClkDiv = UartMsk8Or16Div; ///<采样分频
|
stcCfg.stcBaud.enClkDiv = UartMsk8Or16Div; ///<采样分频
|
||||||
stcCfg.stcBaud.u32Baud = Baud; ///<波特率
|
stcCfg.stcBaud.u32Baud = Baud; ///<波特率
|
||||||
stcCfg.enRunMode = UartMskMode1; ///<工作模式
|
stcCfg.enRunMode = UartMskMode1; ///<工作模式
|
||||||
Uart_Init(M0P_UART0, &stcCfg);
|
Uart_Init(M0P_UART0, &stcCfg);
|
||||||
|
|
||||||
///<UART 中断使能
|
///<UART 中断使能
|
||||||
Uart_ClrStatus(M0P_UART0, UartRC); ///<清接收中断请求
|
Uart_ClrStatus(M0P_UART0, UartRC); ///<清接收中断请求
|
||||||
Uart_ClrStatus(M0P_UART0, UartTC); ///<清发送中断请求
|
Uart_ClrStatus(M0P_UART0, UartTC); ///<清发送中断请求
|
||||||
//Uart_EnableIrq(M0P_UART1,UartTxIrq); ///<使能发送中断
|
//Uart_EnableIrq(M0P_UART1,UartTxIrq); ///<使能发送中断
|
||||||
Uart_EnableIrq(M0P_UART0, UartRxIrq); ///<使能接收中断
|
Uart_EnableIrq(M0P_UART0, UartRxIrq); ///<使能接收中断
|
||||||
EnableNvic(UART0_2_IRQn, IrqLevel3, TRUE); ///<系统中断使能
|
EnableNvic(UART0_2_IRQn, IrqLevel3, TRUE); ///<系统中断使能
|
||||||
}
|
}
|
||||||
|
|
||||||
static void Uart1Init(void)
|
static void Uart1Init(void)
|
||||||
@@ -150,21 +150,21 @@ static void Uart1Init(void)
|
|||||||
DDL_ZERO_STRUCT(stcCfg);
|
DDL_ZERO_STRUCT(stcCfg);
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralUart1,TRUE);
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralUart1,TRUE);
|
||||||
|
|
||||||
///<UART 初始化
|
///<UART 初始化
|
||||||
stcCfg.enStopBit = UartMsk1bit; ///<1停止位
|
stcCfg.enStopBit = UartMsk1bit; ///<1停止位
|
||||||
//stcCfg.enMmdorCk = UartMskEven; ///<偶校验
|
//stcCfg.enMmdorCk = UartMskEven; ///<偶校验
|
||||||
stcCfg.stcBaud.u32Pclk = Sysctrl_GetPClkFreq(); ///<PCLK获取
|
stcCfg.stcBaud.u32Pclk = Sysctrl_GetPClkFreq(); ///<PCLK获取
|
||||||
stcCfg.stcBaud.enClkDiv = UartMsk8Or16Div; ///<采样分频
|
stcCfg.stcBaud.enClkDiv = UartMsk8Or16Div; ///<采样分频
|
||||||
stcCfg.stcBaud.u32Baud = 115200; ///<波特率
|
stcCfg.stcBaud.u32Baud = 115200; ///<波特率
|
||||||
stcCfg.enRunMode = UartMskMode1; ///<工作模式
|
stcCfg.enRunMode = UartMskMode1; ///<工作模式
|
||||||
Uart_Init(M0P_UART1, &stcCfg);
|
Uart_Init(M0P_UART1, &stcCfg);
|
||||||
|
|
||||||
///<UART 中断使能
|
///<UART 中断使能
|
||||||
Uart_ClrStatus(M0P_UART1, UartRC); ///<清接收中断请求
|
Uart_ClrStatus(M0P_UART1, UartRC); ///<清接收中断请求
|
||||||
Uart_ClrStatus(M0P_UART1, UartTC); ///<清发送中断请求
|
Uart_ClrStatus(M0P_UART1, UartTC); ///<清发送中断请求
|
||||||
//Uart_EnableIrq(M0P_UART1,UartTxIrq); ///<使能发送中断
|
//Uart_EnableIrq(M0P_UART1,UartTxIrq); ///<使能发送中断
|
||||||
Uart_EnableIrq(M0P_UART1, UartRxIrq); ///<使能接收中断
|
Uart_EnableIrq(M0P_UART1, UartRxIrq); ///<使能接收中断
|
||||||
EnableNvic(UART1_3_IRQn, IrqLevel3, TRUE); ///<系统中断使能
|
EnableNvic(UART1_3_IRQn, IrqLevel3, TRUE); ///<系统中断使能
|
||||||
}
|
}
|
||||||
void LpUart0Init(uint32_t Baud)
|
void LpUart0Init(uint32_t Baud)
|
||||||
{
|
{
|
||||||
@@ -177,42 +177,42 @@ void LpUart0Init(uint32_t Baud)
|
|||||||
///<TX
|
///<TX
|
||||||
stcGpioCfg.enDir = GpioDirOut;
|
stcGpioCfg.enDir = GpioDirOut;
|
||||||
Gpio_Init(LPUart0_TxPortx,LPUART0_TxPinx,&stcGpioCfg);
|
Gpio_Init(LPUart0_TxPortx,LPUART0_TxPinx,&stcGpioCfg);
|
||||||
Gpio_SetAfMode(LPUart0_TxPortx,LPUART0_TxPinx,GpioAf4); //配置PB10为LPUART0_TX
|
Gpio_SetAfMode(LPUart0_TxPortx,LPUART0_TxPinx,GpioAf4); //配置PB10为LPUART0_TX
|
||||||
|
|
||||||
//<RX
|
//<RX
|
||||||
stcGpioCfg.enDir = GpioDirIn;
|
stcGpioCfg.enDir = GpioDirIn;
|
||||||
Gpio_Init(LPUart0_RxPortx,LPUART0_RxPinx,&stcGpioCfg);
|
Gpio_Init(LPUart0_RxPortx,LPUART0_RxPinx,&stcGpioCfg);
|
||||||
Gpio_SetAfMode(LPUart0_RxPortx,LPUART0_RxPinx,GpioAf3); //配置PB11为LPUART0_RX
|
Gpio_SetAfMode(LPUart0_RxPortx,LPUART0_RxPinx,GpioAf3); //配置PB11为LPUART0_RX
|
||||||
|
|
||||||
DDL_ZERO_STRUCT(stcCfg);
|
DDL_ZERO_STRUCT(stcCfg);
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralLpUart0,TRUE);
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralLpUart0,TRUE);
|
||||||
|
|
||||||
///<LPUART 初始化
|
///<LPUART 初始化
|
||||||
stcCfg.enStopBit = LPUart1bit; ///<1停止位
|
stcCfg.enStopBit = LPUart1bit; ///<1停止位
|
||||||
//stcCfg.enMmdorCk = LPUartEven; ///<偶校验
|
//stcCfg.enMmdorCk = LPUartEven; ///<偶校验
|
||||||
stcCfg.stcBaud.enSclkSel = LPUartMskRcl; ///<传输时钟源
|
stcCfg.stcBaud.enSclkSel = LPUartMskRcl; ///<传输时钟源
|
||||||
stcCfg.stcBaud.u32Sclk = 38400; ///<PCLK获取
|
stcCfg.stcBaud.u32Sclk = 38400; ///<PCLK获取
|
||||||
stcCfg.stcBaud.enSclkDiv = LPUartMsk4Or8Div; ///<采样分频
|
stcCfg.stcBaud.enSclkDiv = LPUartMsk4Or8Div; ///<采样分频
|
||||||
stcCfg.stcBaud.u32Baud = Baud; ///<波特率
|
stcCfg.stcBaud.u32Baud = Baud; ///<波特率
|
||||||
stcCfg.enRunMode = LPUartMskMode1; ///<工作模式
|
stcCfg.enRunMode = LPUartMskMode1; ///<工作模式
|
||||||
LPUart_Init(M0P_LPUART0, &stcCfg);
|
LPUart_Init(M0P_LPUART0, &stcCfg);
|
||||||
|
|
||||||
///<LPUART 中断使能
|
///<LPUART 中断使能
|
||||||
LPUart_ClrStatus(M0P_LPUART0,LPUartRC); ///<清接收中断请求
|
LPUart_ClrStatus(M0P_LPUART0,LPUartRC); ///<清接收中断请求
|
||||||
LPUart_ClrStatus(M0P_LPUART0,LPUartTC); ///<清发送中断请求
|
LPUart_ClrStatus(M0P_LPUART0,LPUartTC); ///<清发送中断请求
|
||||||
//LPUart_EnableIrq(M0P_LPUART0,LPUartTxIrq); ///<使能发送中断
|
//LPUart_EnableIrq(M0P_LPUART0,LPUartTxIrq); ///<使能发送中断
|
||||||
LPUart_EnableIrq(M0P_LPUART0,LPUartRxIrq); ///<使能接收中断
|
LPUart_EnableIrq(M0P_LPUART0,LPUartRxIrq); ///<使能接收中断
|
||||||
EnableNvic(LPUART0_IRQn,IrqLevel3,TRUE); ///<系统中断使能
|
EnableNvic(LPUART0_IRQn,IrqLevel3,TRUE); ///<系统中断使能
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: AdcInit
|
* 函数名称: AdcInit
|
||||||
* 功能描述: ADC初始化
|
* 功能描述: ADC初始化
|
||||||
* 参 数: 无
|
* 参 数: 无
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static void AdcInit(void)
|
static void AdcInit(void)
|
||||||
{
|
{
|
||||||
///< 开启ADC/BGR GPIO外设时钟
|
///< 开启ADC/BGR GPIO外设时钟
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralGpio, TRUE);
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralGpio, TRUE);
|
||||||
Gpio_SetAnalogMode(VBAT_PORTx, VBAT_PINx); //PA04 (AIN4)
|
Gpio_SetAnalogMode(VBAT_PORTx, VBAT_PINx); //PA04 (AIN4)
|
||||||
|
|
||||||
@@ -220,29 +220,29 @@ static void AdcInit(void)
|
|||||||
|
|
||||||
DDL_ZERO_STRUCT(stcAdcCfg);
|
DDL_ZERO_STRUCT(stcAdcCfg);
|
||||||
|
|
||||||
///< 开启ADC/BGR外设时钟
|
///< 开启ADC/BGR外设时钟
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralAdcBgr, TRUE);
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralAdcBgr, TRUE);
|
||||||
|
|
||||||
Bgr_BgrEnable(); ///< 开启BGR
|
Bgr_BgrEnable(); ///< 开启BGR
|
||||||
|
|
||||||
///< ADC 初始化配置
|
///< ADC 初始化配置
|
||||||
stcAdcCfg.enAdcMode = AdcSglMode; ///<采样模式-单次
|
stcAdcCfg.enAdcMode = AdcSglMode; ///<采样模式-单次
|
||||||
stcAdcCfg.enAdcClkDiv = AdcMskClkDiv8; ///<采样分频-1
|
stcAdcCfg.enAdcClkDiv = AdcMskClkDiv8; ///<采样分频-1
|
||||||
stcAdcCfg.enAdcSampCycleSel = AdcMskSampCycle12Clk; ///<采样周期数-12
|
stcAdcCfg.enAdcSampCycleSel = AdcMskSampCycle12Clk; ///<采样周期数-12
|
||||||
stcAdcCfg.enAdcRefVolSel = AdcMskRefVolSelAVDD; ///<参考电压选择-AVDD
|
stcAdcCfg.enAdcRefVolSel = AdcMskRefVolSelAVDD; ///<参考电压选择-AVDD
|
||||||
stcAdcCfg.enAdcOpBuf = AdcMskBufEnable; ///<OP BUF配置-关
|
stcAdcCfg.enAdcOpBuf = AdcMskBufEnable; ///<OP BUF配置-关
|
||||||
stcAdcCfg.enInRef = AdcMskInRefDisable; ///<内部参考电压使能-关
|
stcAdcCfg.enInRef = AdcMskInRefDisable; ///<内部参考电压使能-关
|
||||||
stcAdcCfg.enAdcAlign = AdcAlignRight; ///<转换结果对齐方式-右
|
stcAdcCfg.enAdcAlign = AdcAlignRight; ///<转换结果对齐方式-右
|
||||||
Adc_Init(&stcAdcCfg);
|
Adc_Init(&stcAdcCfg);
|
||||||
|
|
||||||
Adc_CfgSglChannel(VBAT_ADC_PORTx); // 配置单次采样通道
|
Adc_CfgSglChannel(VBAT_ADC_PORTx); // 配置单次采样通道
|
||||||
Adc_SGL_Always_Start(); // 启动单次一直采样
|
Adc_SGL_Always_Start(); // 启动单次一直采样
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: Battery_Level_Percent_Table
|
* 函数名称: Battery_Level_Percent_Table
|
||||||
* 功能描述: 电池电量百分比转换
|
* 功能描述: 电池电量百分比转换
|
||||||
* 参 数: voltage,采集到的电压
|
* 参 数: voltage,采集到的电压
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
static float Battery_Level_Percent_Table[37] = {9000, 9100, 9200, 9300, 9400, 9500, 9600, 9700, 9800, 9900,
|
static float Battery_Level_Percent_Table[37] = {9000, 9100, 9200, 9300, 9400, 9500, 9600, 9700, 9800, 9900,
|
||||||
10000, 10100, 10200, 10300, 10400, 10500, 10600, 10700, 10800, 10900,
|
10000, 10100, 10200, 10300, 10400, 10500, 10600, 10700, 10800, 10900,
|
||||||
@@ -263,32 +263,32 @@ static int Percentage(float voltage)
|
|||||||
return 100;
|
return 100;
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: ADC_IRQHandler
|
* 函数名称: ADC_IRQHandler
|
||||||
* 功能描述: ADC采集中断,放在主循环内一直循环采集
|
* 功能描述: ADC采集中断,放在主循环内一直循环采集
|
||||||
* 参 数: 无
|
* 参 数: 无
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
float VBAT_12V;//< ADC采集到的电压
|
float VBAT_12V;//< ADC采集到的电压
|
||||||
uint8_t VBAT_Percentage;//电池电压百分比
|
uint8_t VBAT_Percentage;//电池电压百分比
|
||||||
void ADCLoopHandler(void)
|
void ADCLoopHandler(void)
|
||||||
{
|
{
|
||||||
if(Adc_GetIrqStatus(AdcMskIrqSgl))//ADC中断状态获取
|
if(Adc_GetIrqStatus(AdcMskIrqSgl))//ADC中断状态获取
|
||||||
{
|
{
|
||||||
VBAT_12V = (Adc_GetSglResult() * VBAT_CAL);//< 获取实际电压
|
VBAT_12V = (Adc_GetSglResult() * VBAT_CAL);//< 获取实际电压
|
||||||
VBAT_Percentage = Percentage(VBAT_12V);//获取百分比
|
VBAT_Percentage = Percentage(VBAT_12V);//获取百分比
|
||||||
//DBG_LOG("VBAT_Percentage:%d\n",VBAT_Percentage);
|
//DBG_LOG("VBAT_Percentage:%d\n",VBAT_Percentage);
|
||||||
Adc_ClrIrqStatus(AdcMskIrqSgl);//清除ADC中断状态
|
Adc_ClrIrqStatus(AdcMskIrqSgl);//清除ADC中断状态
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
void RTCInit(uint8_t sec)
|
void RTCInit(uint8_t sec)
|
||||||
{
|
{
|
||||||
stc_rtc_initstruct_t RtcInitStruct;
|
stc_rtc_initstruct_t RtcInitStruct;
|
||||||
|
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralRtc,TRUE); //RTC模块时钟打开
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralRtc,TRUE); //RTC模块时钟打开
|
||||||
RtcInitStruct.rtcAmpm = RtcPm; //24小时制
|
RtcInitStruct.rtcAmpm = RtcPm; //24小时制
|
||||||
RtcInitStruct.rtcClksrc = RtcClkRcl; //外部低速时钟
|
RtcInitStruct.rtcClksrc = RtcClkRcl; //外部低速时钟
|
||||||
RtcInitStruct.rtcPrdsel.rtcPrdsel = RtcPrdx; //周期中断类型PRDX
|
RtcInitStruct.rtcPrdsel.rtcPrdsel = RtcPrdx; //周期中断类型PRDX
|
||||||
RtcInitStruct.rtcPrdsel.rtcPrdx = sec * 2 - 1; //周期中断时间间隔 30秒
|
RtcInitStruct.rtcPrdsel.rtcPrdx = sec * 2 - 1; //周期中断时间间隔 30秒
|
||||||
|
|
||||||
Rtc_ReadDateTime(&RtcInitStruct.rtcTime);
|
Rtc_ReadDateTime(&RtcInitStruct.rtcTime);
|
||||||
if(RtcInitStruct.rtcTime.u8Year < 0x23 || RtcInitStruct.rtcTime.u8Year > 0x99 || RtcInitStruct.rtcTime.u8Month > 0x12) {
|
if(RtcInitStruct.rtcTime.u8Year < 0x23 || RtcInitStruct.rtcTime.u8Year > 0x99 || RtcInitStruct.rtcTime.u8Month > 0x12) {
|
||||||
@@ -301,18 +301,18 @@ void RTCInit(uint8_t sec)
|
|||||||
RtcInitStruct.rtcTime.u8Year = 0x23;
|
RtcInitStruct.rtcTime.u8Year = 0x23;
|
||||||
}
|
}
|
||||||
RtcInitStruct.rtcCompen = RtcCompenEnable;
|
RtcInitStruct.rtcCompen = RtcCompenEnable;
|
||||||
RtcInitStruct.rtcCompValue = 0; //补偿值 根据实际情况进行补偿
|
RtcInitStruct.rtcCompValue = 0; //补偿值 根据实际情况进行补偿
|
||||||
Rtc_Init(&RtcInitStruct);
|
Rtc_Init(&RtcInitStruct);
|
||||||
Rtc_AlmIeCmd(TRUE); //使能闹钟中断
|
Rtc_AlmIeCmd(TRUE); //使能闹钟中断
|
||||||
EnableNvic(RTC_IRQn, IrqLevel3, TRUE); //使能RTC中断向量
|
EnableNvic(RTC_IRQn, IrqLevel3, TRUE); //使能RTC中断向量
|
||||||
Rtc_Cmd(TRUE); //使能RTC开始计数
|
Rtc_Cmd(TRUE); //使能RTC开始计数
|
||||||
Rtc_StartWait(); //启动RTC计数,如果要立即切换到低功耗,需要执行此函数
|
Rtc_StartWait(); //启动RTC计数,如果要立即切换到低功耗,需要执行此函数
|
||||||
}
|
}
|
||||||
/******************************************************************************
|
/******************************************************************************
|
||||||
* 函数名称: LPTimer0Init
|
* 函数名称: LPTimer0Init
|
||||||
* 功能描述: 低功耗定时器0初始化
|
* 功能描述: 低功耗定时器0初始化
|
||||||
* 参 数: sTime 定时中断秒时间
|
* 参 数: sTime 定时中断秒时间
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
******************************************************************************/
|
******************************************************************************/
|
||||||
void LPTimer0Init(uint16_t _100ms)
|
void LPTimer0Init(uint16_t _100ms)
|
||||||
{
|
{
|
||||||
@@ -321,7 +321,7 @@ void LPTimer0Init(uint16_t _100ms)
|
|||||||
stc_lptim_cfg_t stcLptCfg;
|
stc_lptim_cfg_t stcLptCfg;
|
||||||
DDL_ZERO_STRUCT(stcLptCfg);
|
DDL_ZERO_STRUCT(stcLptCfg);
|
||||||
|
|
||||||
///< 使能LPTIM0 外设时钟
|
///< 使能LPTIM0 外设时钟
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralLpTim0, TRUE);
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralLpTim0, TRUE);
|
||||||
|
|
||||||
stcLptCfg.enPrs = LptimPrsDiv256;
|
stcLptCfg.enPrs = LptimPrsDiv256;
|
||||||
@@ -329,13 +329,13 @@ void LPTimer0Init(uint16_t _100ms)
|
|||||||
stcLptCfg.enGatep = LptimGatePLow;
|
stcLptCfg.enGatep = LptimGatePLow;
|
||||||
stcLptCfg.enTcksel = LptimRcl;
|
stcLptCfg.enTcksel = LptimRcl;
|
||||||
stcLptCfg.enTogen = LptimTogEnLow;
|
stcLptCfg.enTogen = LptimTogEnLow;
|
||||||
stcLptCfg.enCt = LptimTimerFun; //警示器功能
|
stcLptCfg.enCt = LptimTimerFun; //警示器功能
|
||||||
stcLptCfg.enMd = LptimMode1; //工作模式为模式1:无自动重装载16位计数器/定时器
|
stcLptCfg.enMd = LptimMode1; //工作模式为模式1:无自动重装载16位计数器/定时器
|
||||||
stcLptCfg.u16Arr = 0x10000 - (_100ms * 13); //预装载寄存器值
|
stcLptCfg.u16Arr = 0x10000 - (_100ms * 13); //预装载寄存器值
|
||||||
Lptim_Init(M0P_LPTIMER0, &stcLptCfg);
|
Lptim_Init(M0P_LPTIMER0, &stcLptCfg);
|
||||||
|
|
||||||
Lptim_ClrItStatus(M0P_LPTIMER0); //清除中断标志位
|
Lptim_ClrItStatus(M0P_LPTIMER0); //清除中断标志位
|
||||||
Lptim_ConfIt(M0P_LPTIMER0, TRUE); //允许LPTIMER中断
|
Lptim_ConfIt(M0P_LPTIMER0, TRUE); //允许LPTIMER中断
|
||||||
EnableNvic(LPTIM_0_1_IRQn, IrqLevel3, TRUE);
|
EnableNvic(LPTIM_0_1_IRQn, IrqLevel3, TRUE);
|
||||||
|
|
||||||
Lptim_Cmd(M0P_LPTIMER0, TRUE);
|
Lptim_Cmd(M0P_LPTIMER0, TRUE);
|
||||||
@@ -356,7 +356,7 @@ static void GPIOInit(void)
|
|||||||
DDL_ZERO_STRUCT(GpioInitStruct);
|
DDL_ZERO_STRUCT(GpioInitStruct);
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralGpio,TRUE);
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralGpio,TRUE);
|
||||||
|
|
||||||
//未使用或引出的脚设为输入上拉
|
//未使用或引出的脚设为输入上拉
|
||||||
GpioInitStruct.enDir = GpioDirIn;
|
GpioInitStruct.enDir = GpioDirIn;
|
||||||
GpioInitStruct.enPu = GpioPuEnable;
|
GpioInitStruct.enPu = GpioPuEnable;
|
||||||
|
|
||||||
@@ -376,30 +376,32 @@ static void GPIOInit(void)
|
|||||||
Gpio_Init(GpioPortF, GpioPin6, &GpioInitStruct);
|
Gpio_Init(GpioPortF, GpioPin6, &GpioInitStruct);
|
||||||
//end
|
//end
|
||||||
|
|
||||||
/********************************** GPIO输出 ****************************************/
|
/********************************** GPIO输出 ****************************************/
|
||||||
GpioInitStruct.enDir = GpioDirOut; ///< 端口方向配置->输出
|
GpioInitStruct.enDir = GpioDirOut; ///< 端口方向配置->输出
|
||||||
GpioInitStruct.enDrv = GpioDrvH; ///< 端口驱动能力配置->高驱动能力
|
GpioInitStruct.enDrv = GpioDrvH; ///< 端口驱动能力配置->高驱动能力
|
||||||
GpioInitStruct.enPu = GpioPuDisable; ///< 端口上下拉配置->无
|
GpioInitStruct.enPu = GpioPuDisable; ///< 端口上下拉配置->无
|
||||||
GpioInitStruct.enPd = GpioPdDisable;
|
GpioInitStruct.enPd = GpioPdDisable;
|
||||||
GpioInitStruct.enOD = GpioOdDisable; ///< 端口开漏输出配置->开漏输出关闭
|
GpioInitStruct.enOD = GpioOdDisable; ///< 端口开漏输出配置->开漏输出关闭
|
||||||
GpioInitStruct.enCtrlMode = GpioAHB; ///< 端口输入/输出值寄存器总线控制模式配置->AHB
|
GpioInitStruct.enCtrlMode = GpioAHB; ///< 端口输入/输出值寄存器总线控制模式配置->AHB
|
||||||
GpioInitStruct.bOutputVal = false; ///< 端口默认输出配置->低电平
|
GpioInitStruct.bOutputVal = false; ///< 端口默认输出配置->低电平
|
||||||
//< RS485控制引脚
|
//< RS485控制引脚
|
||||||
Gpio_Init(RS485_CTRL_PORTx,RS485_CTRL_PINx,&GpioInitStruct);
|
Gpio_Init(RS485_CTRL_PORTx,RS485_CTRL_PINx,&GpioInitStruct);
|
||||||
//< 激光控制引脚
|
//< 激光控制引脚
|
||||||
Gpio_Init(LASER1_ON_OFF_PORTx,LASER1_ON_OFF_PINx,&GpioInitStruct);
|
Gpio_Init(LASER1_ON_OFF_PORTx,LASER1_ON_OFF_PINx,&GpioInitStruct);
|
||||||
Gpio_Init(LASER2_ON_OFF_PORTx,LASER2_ON_OFF_PINx,&GpioInitStruct);
|
Gpio_Init(LASER2_ON_OFF_PORTx,LASER2_ON_OFF_PINx,&GpioInitStruct);
|
||||||
Gpio_Init(LASER3_ON_OFF_PORTx,LASER3_ON_OFF_PINx,&GpioInitStruct);
|
Gpio_Init(LASER3_ON_OFF_PORTx,LASER3_ON_OFF_PINx,&GpioInitStruct);
|
||||||
|
//< ADC???????
|
||||||
|
Gpio_Init(AD_ON_OFF_PORTx,AD_ON_OFF_PINx,&GpioInitStruct);
|
||||||
|
|
||||||
GpioInitStruct.bOutputVal = true; ///< 端口默认输出配置->高电平
|
GpioInitStruct.bOutputVal = true; ///< 端口默认输出配置->高电平
|
||||||
//< LORA --> RST
|
//< LORA --> RST
|
||||||
Gpio_Init(LORA_RST_PORTx,LORA_RST_PINx,&GpioInitStruct);
|
Gpio_Init(LORA_RST_PORTx,LORA_RST_PINx,&GpioInitStruct);
|
||||||
//< LED_State
|
//< LED_State
|
||||||
Gpio_Init(LED_STATE_PORTx,LED_STATE_PINx,&GpioInitStruct);
|
Gpio_Init(LED_STATE_PORTx,LED_STATE_PINx,&GpioInitStruct);
|
||||||
|
|
||||||
/********************************** GPIO输入 ****************************************/
|
/********************************** GPIO输入 ****************************************/
|
||||||
GpioInitStruct.enDir = GpioDirIn; ///< 端口方向配置->输入
|
GpioInitStruct.enDir = GpioDirIn; ///< 端口方向配置->输入
|
||||||
GpioInitStruct.enPu = GpioPuDisable; ///< 端口上下拉配置->无
|
GpioInitStruct.enPu = GpioPuDisable; ///< 端口上下拉配置->无
|
||||||
GpioInitStruct.enPd = GpioPdDisable;
|
GpioInitStruct.enPd = GpioPdDisable;
|
||||||
GpioInitStruct.enOD = GpioOdDisable;
|
GpioInitStruct.enOD = GpioOdDisable;
|
||||||
|
|
||||||
@@ -415,33 +417,33 @@ static void GPIOInit(void)
|
|||||||
Gpio_Init(MMC5983MA_INT_PORTx,MMC5983MA_INT_PINx,&GpioInitStruct);
|
Gpio_Init(MMC5983MA_INT_PORTx,MMC5983MA_INT_PINx,&GpioInitStruct);
|
||||||
GlobalIntEnable();
|
GlobalIntEnable();
|
||||||
}
|
}
|
||||||
void GlobalIntEnable(void)//全局中断使能
|
void GlobalIntEnable(void)//全局中断使能
|
||||||
{
|
{
|
||||||
EnableNvic(PORTB_IRQn, IrqLevel3, TRUE);
|
EnableNvic(PORTB_IRQn, IrqLevel3, TRUE);
|
||||||
EnableNvic(PORTC_E_IRQn, IrqLevel3, TRUE);
|
EnableNvic(PORTC_E_IRQn, IrqLevel3, TRUE);
|
||||||
}
|
}
|
||||||
void GlobalIntDisable(void)//全局中断失能
|
void GlobalIntDisable(void)//全局中断失能
|
||||||
{
|
{
|
||||||
EnableNvic(PORTB_IRQn, IrqLevel3, FALSE);
|
EnableNvic(PORTB_IRQn, IrqLevel3, FALSE);
|
||||||
EnableNvic(PORTC_E_IRQn, IrqLevel3, FALSE);
|
EnableNvic(PORTC_E_IRQn, IrqLevel3, FALSE);
|
||||||
}
|
}
|
||||||
void LORAIntEnable(void)//LORA中断使能
|
void LORAIntEnable(void)//LORA中断使能
|
||||||
{
|
{
|
||||||
Gpio_EnableIrq(LORA_DIO0_PORTx, LORA_DIO0_PINx, GpioIrqRising);//LORA_DIO0
|
Gpio_EnableIrq(LORA_DIO0_PORTx, LORA_DIO0_PINx, GpioIrqRising);//LORA_DIO0
|
||||||
Gpio_EnableIrq(LORA_DIO1_PORTx, LORA_DIO1_PINx, GpioIrqRising);//LORA_DIO1
|
Gpio_EnableIrq(LORA_DIO1_PORTx, LORA_DIO1_PINx, GpioIrqRising);//LORA_DIO1
|
||||||
}
|
}
|
||||||
void LORAIntDisable(void)//LORA中断失能
|
void LORAIntDisable(void)//LORA中断失能
|
||||||
{
|
{
|
||||||
Gpio_DisableIrq(LORA_DIO0_PORTx, LORA_DIO0_PINx, GpioIrqRising);
|
Gpio_DisableIrq(LORA_DIO0_PORTx, LORA_DIO0_PINx, GpioIrqRising);
|
||||||
Gpio_DisableIrq(LORA_DIO1_PORTx, LORA_DIO1_PINx, GpioIrqRising);
|
Gpio_DisableIrq(LORA_DIO1_PORTx, LORA_DIO1_PINx, GpioIrqRising);
|
||||||
}
|
}
|
||||||
void ACCandMMCIntEnable(void)//加速度和地磁中断使能
|
void ACCandMMCIntEnable(void)//加速度和地磁中断使能
|
||||||
{
|
{
|
||||||
Gpio_EnableIrq(LSM6DSLTR_INT1_PORTx, LSM6DSLTR_INT1_PINx, GpioIrqRising);//ACC_Int1
|
Gpio_EnableIrq(LSM6DSLTR_INT1_PORTx, LSM6DSLTR_INT1_PINx, GpioIrqRising);//ACC_Int1
|
||||||
Gpio_EnableIrq(LSM6DSLTR_INT2_PORTx, LSM6DSLTR_INT2_PINx, GpioIrqRising);//ACC_Int2
|
Gpio_EnableIrq(LSM6DSLTR_INT2_PORTx, LSM6DSLTR_INT2_PINx, GpioIrqRising);//ACC_Int2
|
||||||
Gpio_EnableIrq(MMC5983MA_INT_PORTx, MMC5983MA_INT_PINx, GpioIrqRising);//MMC_Int
|
Gpio_EnableIrq(MMC5983MA_INT_PORTx, MMC5983MA_INT_PINx, GpioIrqRising);//MMC_Int
|
||||||
}
|
}
|
||||||
void ACCandMMCIntDisable(void)//加速度和地磁中断失能
|
void ACCandMMCIntDisable(void)//加速度和地磁中断失能
|
||||||
{
|
{
|
||||||
Gpio_DisableIrq(LSM6DSLTR_INT1_PORTx, LSM6DSLTR_INT1_PINx, GpioIrqRising);//ACC_Int1
|
Gpio_DisableIrq(LSM6DSLTR_INT1_PORTx, LSM6DSLTR_INT1_PINx, GpioIrqRising);//ACC_Int1
|
||||||
Gpio_DisableIrq(LSM6DSLTR_INT2_PORTx, LSM6DSLTR_INT2_PINx, GpioIrqRising);//ACC_Int2
|
Gpio_DisableIrq(LSM6DSLTR_INT2_PORTx, LSM6DSLTR_INT2_PINx, GpioIrqRising);//ACC_Int2
|
||||||
@@ -456,31 +458,31 @@ static void SPI0Init(void)
|
|||||||
DDL_ZERO_STRUCT(GpioInitStruct);
|
DDL_ZERO_STRUCT(GpioInitStruct);
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralGpio,TRUE);
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralGpio,TRUE);
|
||||||
|
|
||||||
/************************** SPI0配置:主机-->LORA *******************************/
|
/************************** SPI0配置:主机-->LORA *******************************/
|
||||||
GpioInitStruct.enDir = GpioDirOut;
|
GpioInitStruct.enDir = GpioDirOut;
|
||||||
|
|
||||||
Gpio_Init(SPI0_NSS_PORTx,SPI0_NSS_PINx,&GpioInitStruct);
|
Gpio_Init(SPI0_NSS_PORTx,SPI0_NSS_PINx,&GpioInitStruct);
|
||||||
Gpio_SetAfMode(SPI0_NSS_PORTx,SPI0_NSS_PINx,SPI0_NSS_AF); //配置SPI0_NSS
|
Gpio_SetAfMode(SPI0_NSS_PORTx,SPI0_NSS_PINx,SPI0_NSS_AF); //配置SPI0_NSS
|
||||||
|
|
||||||
Gpio_Init(SPI0_SCK_PORTx,SPI0_SCK_PINx,&GpioInitStruct);
|
Gpio_Init(SPI0_SCK_PORTx,SPI0_SCK_PINx,&GpioInitStruct);
|
||||||
Gpio_SetAfMode(SPI0_SCK_PORTx,SPI0_SCK_PINx,SPI0_SCK_AF); //配置SPI0_SCK
|
Gpio_SetAfMode(SPI0_SCK_PORTx,SPI0_SCK_PINx,SPI0_SCK_AF); //配置SPI0_SCK
|
||||||
|
|
||||||
Gpio_Init(SPI0_MOSI_PORTx,SPI0_MOSI_PINx,&GpioInitStruct);
|
Gpio_Init(SPI0_MOSI_PORTx,SPI0_MOSI_PINx,&GpioInitStruct);
|
||||||
Gpio_SetAfMode(SPI0_MOSI_PORTx,SPI0_MOSI_PINx,SPI0_MOSI_AF); //配置SPI0_MOSI
|
Gpio_SetAfMode(SPI0_MOSI_PORTx,SPI0_MOSI_PINx,SPI0_MOSI_AF); //配置SPI0_MOSI
|
||||||
|
|
||||||
GpioInitStruct.enDir = GpioDirIn; ///< 端口方向配置->输入
|
GpioInitStruct.enDir = GpioDirIn; ///< 端口方向配置->输入
|
||||||
|
|
||||||
Gpio_Init(SPI0_MISO_PORTx,SPI0_MISO_PINx,&GpioInitStruct);
|
Gpio_Init(SPI0_MISO_PORTx,SPI0_MISO_PINx,&GpioInitStruct);
|
||||||
Gpio_SetAfMode(SPI0_MISO_PORTx, SPI0_MISO_PINx,SPI0_MISO_AF); //配置SPI0_MISO
|
Gpio_SetAfMode(SPI0_MISO_PORTx, SPI0_MISO_PINx,SPI0_MISO_AF); //配置SPI0_MISO
|
||||||
|
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralSpi0,TRUE); ///< 打开SPI0外设时钟
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralSpi0,TRUE); ///< 打开SPI0外设时钟
|
||||||
Reset_RstPeripheral0(ResetMskSpi0); ///<复位模块
|
Reset_RstPeripheral0(ResetMskSpi0); ///<复位模块
|
||||||
|
|
||||||
//SPI0模块配置:主机
|
//SPI0模块配置:主机
|
||||||
SpiInitStruct.enSpiMode = SpiMskMaster; //配置位主机模式
|
SpiInitStruct.enSpiMode = SpiMskMaster; //配置位主机模式
|
||||||
SpiInitStruct.enPclkDiv = SpiClkMskDiv4; //波特率:PCLK/4
|
SpiInitStruct.enPclkDiv = SpiClkMskDiv4; //波特率:PCLK/4
|
||||||
SpiInitStruct.enCPHA = SpiMskCphasecond; //第二边沿采样
|
SpiInitStruct.enCPHA = SpiMskCphasecond; //第二边沿采样
|
||||||
SpiInitStruct.enCPOL = SpiMskcpolhigh; //极性为高
|
SpiInitStruct.enCPOL = SpiMskcpolhigh; //极性为高
|
||||||
Spi_Init(M0P_SPI0, &SpiInitStruct);
|
Spi_Init(M0P_SPI0, &SpiInitStruct);
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -492,31 +494,31 @@ static void SPI1Init(void)
|
|||||||
DDL_ZERO_STRUCT(GpioInitStruct);
|
DDL_ZERO_STRUCT(GpioInitStruct);
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralGpio,TRUE);
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralGpio,TRUE);
|
||||||
|
|
||||||
/************************** SPI1配置:主机-->LORA *******************************/
|
/************************** SPI1配置:主机-->LORA *******************************/
|
||||||
GpioInitStruct.enDir = GpioDirOut;
|
GpioInitStruct.enDir = GpioDirOut;
|
||||||
|
|
||||||
Gpio_Init(SPI1_NSS_PORTx,SPI1_NSS_PINx,&GpioInitStruct);
|
Gpio_Init(SPI1_NSS_PORTx,SPI1_NSS_PINx,&GpioInitStruct);
|
||||||
Gpio_SetAfMode(SPI1_NSS_PORTx,SPI1_NSS_PINx,SPI1_NSS_AF); //配置SPI1_NSS
|
Gpio_SetAfMode(SPI1_NSS_PORTx,SPI1_NSS_PINx,SPI1_NSS_AF); //配置SPI1_NSS
|
||||||
|
|
||||||
Gpio_Init(SPI1_SCK_PORTx,SPI1_SCK_PINx,&GpioInitStruct);
|
Gpio_Init(SPI1_SCK_PORTx,SPI1_SCK_PINx,&GpioInitStruct);
|
||||||
Gpio_SetAfMode(SPI1_SCK_PORTx,SPI1_SCK_PINx,SPI1_SCK_AF); //配置SPI1_SCK
|
Gpio_SetAfMode(SPI1_SCK_PORTx,SPI1_SCK_PINx,SPI1_SCK_AF); //配置SPI1_SCK
|
||||||
|
|
||||||
Gpio_Init(SPI1_MOSI_PORTx,SPI1_MOSI_PINx,&GpioInitStruct);
|
Gpio_Init(SPI1_MOSI_PORTx,SPI1_MOSI_PINx,&GpioInitStruct);
|
||||||
Gpio_SetAfMode(SPI1_MOSI_PORTx,SPI1_MOSI_PINx,SPI1_MOSI_AF); //配置SPI1_MOSI
|
Gpio_SetAfMode(SPI1_MOSI_PORTx,SPI1_MOSI_PINx,SPI1_MOSI_AF); //配置SPI1_MOSI
|
||||||
|
|
||||||
GpioInitStruct.enDir = GpioDirIn; ///< 端口方向配置->输入
|
GpioInitStruct.enDir = GpioDirIn; ///< 端口方向配置->输入
|
||||||
|
|
||||||
Gpio_Init(SPI1_MISO_PORTx,SPI1_MISO_PINx,&GpioInitStruct);
|
Gpio_Init(SPI1_MISO_PORTx,SPI1_MISO_PINx,&GpioInitStruct);
|
||||||
Gpio_SetAfMode(SPI1_MISO_PORTx, SPI1_MISO_PINx,SPI1_MISO_AF); //配置SPI1_MISO
|
Gpio_SetAfMode(SPI1_MISO_PORTx, SPI1_MISO_PINx,SPI1_MISO_AF); //配置SPI1_MISO
|
||||||
|
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralSpi1,TRUE); ///< 打开SPI0外设时钟
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralSpi1,TRUE); ///< 打开SPI0外设时钟
|
||||||
Reset_RstPeripheral0(ResetMskSpi1); ///<复位模块
|
Reset_RstPeripheral0(ResetMskSpi1); ///<复位模块
|
||||||
|
|
||||||
//SPI1模块配置:主机
|
//SPI1模块配置:主机
|
||||||
SpiInitStruct.enSpiMode = SpiMskMaster; //配置位主机模式
|
SpiInitStruct.enSpiMode = SpiMskMaster; //配置位主机模式
|
||||||
SpiInitStruct.enPclkDiv = SpiClkMskDiv2; //波特率:PCLK/2
|
SpiInitStruct.enPclkDiv = SpiClkMskDiv2; //波特率:PCLK/2
|
||||||
SpiInitStruct.enCPHA = SpiMskCphasecond; //第二边沿采样
|
SpiInitStruct.enCPHA = SpiMskCphasecond; //第二边沿采样
|
||||||
SpiInitStruct.enCPOL = SpiMskcpolhigh; //极性为高
|
SpiInitStruct.enCPOL = SpiMskcpolhigh; //极性为高
|
||||||
Spi_Init(M0P_SPI1, &SpiInitStruct);
|
Spi_Init(M0P_SPI1, &SpiInitStruct);
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -537,28 +539,28 @@ static void I2C0Init(void)
|
|||||||
DDL_ZERO_STRUCT(stcI2cCfg);
|
DDL_ZERO_STRUCT(stcI2cCfg);
|
||||||
DDL_ZERO_STRUCT(stcGpioCfg);
|
DDL_ZERO_STRUCT(stcGpioCfg);
|
||||||
|
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralGpio,TRUE); //开启GPIO时钟门控
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralGpio,TRUE); //开启GPIO时钟门控
|
||||||
|
|
||||||
stcGpioCfg.enDir = GpioDirOut; ///< 端口方向配置->输出
|
stcGpioCfg.enDir = GpioDirOut; ///< 端口方向配置->输出
|
||||||
stcGpioCfg.enOD = GpioOdEnable; ///< 开漏输出
|
stcGpioCfg.enOD = GpioOdEnable; ///< 开漏输出
|
||||||
stcGpioCfg.enPu = GpioPuEnable; ///< 端口上拉配置->使能
|
stcGpioCfg.enPu = GpioPuEnable; ///< 端口上拉配置->使能
|
||||||
stcGpioCfg.enPd = GpioPdDisable; ///< 端口下拉配置->禁止
|
stcGpioCfg.enPd = GpioPdDisable; ///< 端口下拉配置->禁止
|
||||||
stcGpioCfg.bOutputVal = TRUE;
|
stcGpioCfg.bOutputVal = TRUE;
|
||||||
|
|
||||||
Gpio_Init(I2C0_SCL_PORTx, I2C0_SCL_PINx, &stcGpioCfg); ///< 端口初始化
|
Gpio_Init(I2C0_SCL_PORTx, I2C0_SCL_PINx, &stcGpioCfg); ///< 端口初始化
|
||||||
Gpio_SetAfMode(I2C0_SCL_PORTx, I2C0_SCL_PINx, I2C0_SCL_AF);
|
Gpio_SetAfMode(I2C0_SCL_PORTx, I2C0_SCL_PINx, I2C0_SCL_AF);
|
||||||
|
|
||||||
Gpio_Init(I2C0_SDA_PORTx, I2C0_SDA_PINx, &stcGpioCfg);
|
Gpio_Init(I2C0_SDA_PORTx, I2C0_SDA_PINx, &stcGpioCfg);
|
||||||
Gpio_SetAfMode(I2C0_SDA_PORTx, I2C0_SDA_PINx, I2C0_SDA_AF);
|
Gpio_SetAfMode(I2C0_SDA_PORTx, I2C0_SDA_PINx, I2C0_SDA_AF);
|
||||||
|
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralI2c0,TRUE); ///< 开启I2C0时钟门控
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralI2c0,TRUE); ///< 开启I2C0时钟门控
|
||||||
|
|
||||||
stcI2cCfg.u32Pclk = Sysctrl_GetPClkFreq(); ///< 获取PCLK时钟
|
stcI2cCfg.u32Pclk = Sysctrl_GetPClkFreq(); ///< 获取PCLK时钟
|
||||||
stcI2cCfg.u32Baud = 400000; ///< 1MHz
|
stcI2cCfg.u32Baud = 400000; ///< 1MHz
|
||||||
stcI2cCfg.enMode = I2cMasterMode; ///< 主机模式
|
stcI2cCfg.enMode = I2cMasterMode; ///< 主机模式
|
||||||
stcI2cCfg.u8SlaveAddr = 0xD5; ///< 从地址,主模式无效
|
stcI2cCfg.u8SlaveAddr = 0xD5; ///< 从地址,主模式无效
|
||||||
stcI2cCfg.bGc = FALSE; ///< 广播地址应答使能关闭
|
stcI2cCfg.bGc = FALSE; ///< 广播地址应答使能关闭
|
||||||
I2C_Init(M0P_I2C0, &stcI2cCfg); ///< 模块初始化
|
I2C_Init(M0P_I2C0, &stcI2cCfg); ///< 模块初始化
|
||||||
}
|
}
|
||||||
|
|
||||||
static void I2C1Init(void)
|
static void I2C1Init(void)
|
||||||
@@ -569,37 +571,37 @@ static void I2C1Init(void)
|
|||||||
DDL_ZERO_STRUCT(stcI2cCfg);
|
DDL_ZERO_STRUCT(stcI2cCfg);
|
||||||
DDL_ZERO_STRUCT(stcGpioCfg);
|
DDL_ZERO_STRUCT(stcGpioCfg);
|
||||||
|
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralGpio,TRUE); //开启GPIO时钟门控
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralGpio,TRUE); //开启GPIO时钟门控
|
||||||
|
|
||||||
stcGpioCfg.enDir = GpioDirOut; ///< 端口方向配置->输出
|
stcGpioCfg.enDir = GpioDirOut; ///< 端口方向配置->输出
|
||||||
stcGpioCfg.enOD = GpioOdEnable; ///< 开漏输出
|
stcGpioCfg.enOD = GpioOdEnable; ///< 开漏输出
|
||||||
stcGpioCfg.enPu = GpioPuEnable; ///< 端口上拉配置->使能
|
stcGpioCfg.enPu = GpioPuEnable; ///< 端口上拉配置->使能
|
||||||
stcGpioCfg.enPd = GpioPdDisable; ///< 端口下拉配置->禁止
|
stcGpioCfg.enPd = GpioPdDisable; ///< 端口下拉配置->禁止
|
||||||
stcGpioCfg.bOutputVal = TRUE;
|
stcGpioCfg.bOutputVal = TRUE;
|
||||||
|
|
||||||
Gpio_Init(I2C1_SCL_PORTx, I2C1_SCL_PINx, &stcGpioCfg); ///< 端口初始化
|
Gpio_Init(I2C1_SCL_PORTx, I2C1_SCL_PINx, &stcGpioCfg); ///< 端口初始化
|
||||||
Gpio_SetAfMode(I2C1_SCL_PORTx, I2C1_SCL_PINx, I2C1_SCL_AF);
|
Gpio_SetAfMode(I2C1_SCL_PORTx, I2C1_SCL_PINx, I2C1_SCL_AF);
|
||||||
|
|
||||||
Gpio_Init(I2C1_SDA_PORTx, I2C1_SDA_PINx, &stcGpioCfg);
|
Gpio_Init(I2C1_SDA_PORTx, I2C1_SDA_PINx, &stcGpioCfg);
|
||||||
Gpio_SetAfMode(I2C1_SDA_PORTx, I2C1_SDA_PINx, I2C1_SDA_AF);
|
Gpio_SetAfMode(I2C1_SDA_PORTx, I2C1_SDA_PINx, I2C1_SDA_AF);
|
||||||
|
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralI2c1,TRUE); ///< 开启I2C1时钟门控
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralI2c1,TRUE); ///< 开启I2C1时钟门控
|
||||||
|
|
||||||
stcI2cCfg.u32Pclk = Sysctrl_GetPClkFreq(); ///< 获取PCLK时钟
|
stcI2cCfg.u32Pclk = Sysctrl_GetPClkFreq(); ///< 获取PCLK时钟
|
||||||
stcI2cCfg.u32Baud = 400000; ///< 1MHz
|
stcI2cCfg.u32Baud = 400000; ///< 1MHz
|
||||||
stcI2cCfg.enMode = I2cMasterMode; ///< 主机模式
|
stcI2cCfg.enMode = I2cMasterMode; ///< 主机模式
|
||||||
stcI2cCfg.u8SlaveAddr = 0xD5; ///< 从地址,主模式无效
|
stcI2cCfg.u8SlaveAddr = 0xD5; ///< 从地址,主模式无效
|
||||||
stcI2cCfg.bGc = FALSE; ///< 广播地址应答使能关闭
|
stcI2cCfg.bGc = FALSE; ///< 广播地址应答使能关闭
|
||||||
I2C_Init(M0P_I2C1, &stcI2cCfg); ///< 模块初始化
|
I2C_Init(M0P_I2C1, &stcI2cCfg); ///< 模块初始化
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
static void WdtInit(void)
|
static void WdtInit(void)
|
||||||
{
|
{
|
||||||
#if (USE_WDT == 1)
|
#if (USE_WDT == 1)
|
||||||
///< 开启WDT外设时钟
|
///< 开启WDT外设时钟
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralWdt,TRUE);
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralWdt,TRUE);
|
||||||
///< WDT 初始化
|
///< WDT 初始化
|
||||||
Wdt_Init(WdtResetEn, WdtT52s4);
|
Wdt_Init(WdtResetEn, WdtT52s4);
|
||||||
Wdt_Start();
|
Wdt_Start();
|
||||||
#endif
|
#endif
|
||||||
@@ -703,21 +705,21 @@ void PrintfMess(void)
|
|||||||
}
|
}
|
||||||
void DBGUartSendByte(uint8_t sData)
|
void DBGUartSendByte(uint8_t sData)
|
||||||
{
|
{
|
||||||
#if USE_BOOTLOADER
|
if(gDebugChannel == DBG_CH_RS485_1) {
|
||||||
LPUart_SendData(M0P_LPUART0, sData);
|
LPUart_SendData(M0P_LPUART0, sData);
|
||||||
#else
|
} else {
|
||||||
Uart_SendDataPoll(M0P_UART0, sData);
|
Uart_SendDataPoll(M0P_UART0, sData);
|
||||||
#endif
|
}
|
||||||
}
|
}
|
||||||
void DBGUartSend(uint8_t *sData, int sLen)
|
void DBGUartSend(uint8_t *sData, int sLen)
|
||||||
{
|
{
|
||||||
#if USE_BOOTLOADER
|
if(gDebugChannel == DBG_CH_RS485_1) {
|
||||||
LPUart0SendArray(sData, sLen);
|
LPUart0SendArray(sData, sLen);
|
||||||
#else
|
} else {
|
||||||
for(int i = 0; i < sLen; i++) {
|
for(int i = 0; i < sLen; i++) {
|
||||||
Uart_SendDataPoll(M0P_UART0, sData[i]);
|
Uart_SendDataPoll(M0P_UART0, sData[i]);
|
||||||
|
}
|
||||||
}
|
}
|
||||||
#endif
|
|
||||||
}
|
}
|
||||||
void LPUart0SendArray(uint8_t *sData, uint8_t sLen)
|
void LPUart0SendArray(uint8_t *sData, uint8_t sLen)
|
||||||
{
|
{
|
||||||
@@ -732,7 +734,7 @@ uint32_t GetSysTick(void)
|
|||||||
{
|
{
|
||||||
return SysTickCnt;
|
return SysTickCnt;
|
||||||
}
|
}
|
||||||
void delay_us(uint32_t uS)//24MHz一个nop延时0.5us,12MHz延时1us
|
void delay_us(uint32_t uS)//24MHz一个nop延时0.5us,12MHz延时1us
|
||||||
{
|
{
|
||||||
uS *= 2;
|
uS *= 2;
|
||||||
while(uS--)
|
while(uS--)
|
||||||
@@ -777,24 +779,24 @@ void PortB_IRQHandler(void)
|
|||||||
|
|
||||||
void PortC_IRQHandler(void)
|
void PortC_IRQHandler(void)
|
||||||
{
|
{
|
||||||
//加速度INT1
|
//加速度INT1
|
||||||
if(TRUE == Gpio_GetIrqStatus(LSM6DSLTR_INT1_PORTx, LSM6DSLTR_INT1_PINx)) {
|
if(TRUE == Gpio_GetIrqStatus(LSM6DSLTR_INT1_PORTx, LSM6DSLTR_INT1_PINx)) {
|
||||||
Gpio_ClearIrq(LSM6DSLTR_INT1_PORTx, LSM6DSLTR_INT1_PINx);
|
Gpio_ClearIrq(LSM6DSLTR_INT1_PORTx, LSM6DSLTR_INT1_PINx);
|
||||||
Lsm6dsInt1CallBack();
|
Lsm6dsInt1CallBack();
|
||||||
}
|
}
|
||||||
|
|
||||||
//地磁INT
|
//地磁INT
|
||||||
if(TRUE == Gpio_GetIrqStatus(MMC5983MA_INT_PORTx, MMC5983MA_INT_PINx)) {
|
if(TRUE == Gpio_GetIrqStatus(MMC5983MA_INT_PORTx, MMC5983MA_INT_PINx)) {
|
||||||
Gpio_ClearIrq(MMC5983MA_INT_PORTx, MMC5983MA_INT_PINx);
|
Gpio_ClearIrq(MMC5983MA_INT_PORTx, MMC5983MA_INT_PINx);
|
||||||
MMC5983IntCallBack();
|
MMC5983IntCallBack();
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
///<LPUART0 中断服务函数
|
///<LPUART0 中断服务函数
|
||||||
void LpUart0_IRQHandler(void)
|
void LpUart0_IRQHandler(void)
|
||||||
{
|
{
|
||||||
if(LPUart_GetStatus(M0P_LPUART0, LPUartRC)) { ///接收数据
|
if(LPUart_GetStatus(M0P_LPUART0, LPUartRC)) { ///接收数据
|
||||||
LPUart_ClrStatus(M0P_LPUART0, LPUartRC); ///<清接收中断请求
|
LPUart_ClrStatus(M0P_LPUART0, LPUartRC); ///<清接收中断请求
|
||||||
uint8_t u8RxData = LPUart_ReceiveData(M0P_LPUART0); ///读取数据
|
uint8_t u8RxData = LPUart_ReceiveData(M0P_LPUART0); ///读取数据
|
||||||
LPUartRx_CallBack(u8RxData);
|
LPUartRx_CallBack(u8RxData);
|
||||||
DebugUartIRQ(u8RxData);
|
DebugUartIRQ(u8RxData);
|
||||||
}
|
}
|
||||||
@@ -802,17 +804,17 @@ void LpUart0_IRQHandler(void)
|
|||||||
|
|
||||||
void Uart0_IRQHandler(void)
|
void Uart0_IRQHandler(void)
|
||||||
{
|
{
|
||||||
if(Uart_GetStatus(M0P_UART0, UartRC)) { ///接收数据
|
if(Uart_GetStatus(M0P_UART0, UartRC)) { ///接收数据
|
||||||
Uart_ClrStatus(M0P_UART0, UartRC); ///<清接收中断请求
|
Uart_ClrStatus(M0P_UART0, UartRC); ///<清接收中断请求
|
||||||
uint8_t u8RxData = Uart_ReceiveData(M0P_UART0); ///读取数据
|
uint8_t u8RxData = Uart_ReceiveData(M0P_UART0); ///读取数据
|
||||||
//DebugUartIRQ(u8RxData);
|
DebugUartIRQ(u8RxData);
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
void Rtc_IRQHandler(void)
|
void Rtc_IRQHandler(void)
|
||||||
{
|
{
|
||||||
if(Rtc_GetPridItStatus() == TRUE) {
|
if(Rtc_GetPridItStatus() == TRUE) {
|
||||||
Rtc_ClearPrdfItStatus(); //清除中断标志位
|
Rtc_ClearPrdfItStatus(); //清除中断标志位
|
||||||
RtcIRQHander();
|
RtcIRQHander();
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
@@ -821,19 +823,19 @@ void LpTim0_IRQHandler(void)
|
|||||||
{
|
{
|
||||||
if(Lptim_GetItStatus(M0P_LPTIMER0) == TRUE)
|
if(Lptim_GetItStatus(M0P_LPTIMER0) == TRUE)
|
||||||
{
|
{
|
||||||
Lptim_ClrItStatus(M0P_LPTIMER0);//清除LPTimer0的中断标志位
|
Lptim_ClrItStatus(M0P_LPTIMER0);//清除LPTimer0的中断标志位
|
||||||
LPTimer0IRQHander();
|
LPTimer0IRQHander();
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
///<深度休眠模式外部端口配置(STK)
|
///<深度休眠模式外部端口配置(STK)
|
||||||
static void DeepSleepGPIOCfg(void)
|
static void DeepSleepGPIOCfg(void)
|
||||||
{
|
{
|
||||||
stc_gpio_cfg_t GpioInitStruct;
|
stc_gpio_cfg_t GpioInitStruct;
|
||||||
|
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralGpio,TRUE);
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralGpio,TRUE);
|
||||||
|
|
||||||
//低功耗状态下未使用的脚配置
|
//低功耗状态下未使用的脚配置
|
||||||
//输入上拉
|
//输入上拉
|
||||||
GpioInitStruct.enDir = GpioDirIn;
|
GpioInitStruct.enDir = GpioDirIn;
|
||||||
GpioInitStruct.enPu = GpioPuEnable;
|
GpioInitStruct.enPu = GpioPuEnable;
|
||||||
|
|
||||||
@@ -841,7 +843,7 @@ static void DeepSleepGPIOCfg(void)
|
|||||||
Gpio_Init(SPI0_SCK_PORTx,SPI0_SCK_PINx,&GpioInitStruct);
|
Gpio_Init(SPI0_SCK_PORTx,SPI0_SCK_PINx,&GpioInitStruct);
|
||||||
Gpio_Init(SPI0_MISO_PORTx,SPI0_MISO_PINx,&GpioInitStruct);
|
Gpio_Init(SPI0_MISO_PORTx,SPI0_MISO_PINx,&GpioInitStruct);
|
||||||
|
|
||||||
//输入下拉
|
//输入下拉
|
||||||
GpioInitStruct.enDir = GpioDirIn;
|
GpioInitStruct.enDir = GpioDirIn;
|
||||||
GpioInitStruct.enPd = GpioPdEnable;
|
GpioInitStruct.enPd = GpioPdEnable;
|
||||||
|
|
||||||
@@ -853,26 +855,26 @@ void EnterDeepSleep(void)
|
|||||||
SysTick->CTRL &= ~SysTick_CTRL_ENABLE_Msk;
|
SysTick->CTRL &= ~SysTick_CTRL_ENABLE_Msk;
|
||||||
|
|
||||||
//< LORA
|
//< LORA
|
||||||
Sx1276LoRaSleep();//Lora睡眠
|
Sx1276LoRaSleep();//Lora睡眠
|
||||||
LORAIntDisable();//关闭LORA中断
|
LORAIntDisable();//关闭LORA中断
|
||||||
|
|
||||||
ACCandMMCIntDisable();//关闭加速度和地磁中断
|
ACCandMMCIntDisable();//关闭加速度和地磁中断
|
||||||
|
|
||||||
#if (USE_VBAT_AD == 1)//< AD
|
#if (USE_VBAT_AD == 1)//< AD
|
||||||
AD_OFF();
|
AD_OFF();
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralAdcBgr, TRUE);
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralAdcBgr, TRUE);
|
||||||
Sysctrl_ClkSourceEnable(SysctrlClkPLL,FALSE);
|
Sysctrl_ClkSourceEnable(SysctrlClkPLL,FALSE);
|
||||||
Bgr_BgrDisable(); ///< 关闭BGR
|
Bgr_BgrDisable(); ///< 关闭BGR
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralAdcBgr, FALSE);
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralAdcBgr, FALSE);
|
||||||
Adc_SGL_Stop();//关闭单次采样
|
Adc_SGL_Stop();//关闭单次采样
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
#if (USE_SPI0 == 1)
|
#if (USE_SPI0 == 1)
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralSpi0,FALSE);//关闭SPI0外设时钟
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralSpi0,FALSE);//关闭SPI0外设时钟
|
||||||
#endif
|
#endif
|
||||||
#if (USE_UART0 == 1)
|
#if (USE_UART0 == 1)
|
||||||
EnableNvic(UART0_2_IRQn, IrqLevel3, false);
|
EnableNvic(UART0_2_IRQn, IrqLevel3, false);
|
||||||
Sysctrl_SetPeripheralGate(SysctrlPeripheralUart0,FALSE); //关闭UART0时钟
|
Sysctrl_SetPeripheralGate(SysctrlPeripheralUart0,FALSE); //关闭UART0时钟
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
DeepSleepGPIOCfg();
|
DeepSleepGPIOCfg();
|
||||||
@@ -899,9 +901,9 @@ void WakeUpInit(void)
|
|||||||
WdtInit();
|
WdtInit();
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
LORAIntEnable();//开启LORA中断
|
LORAIntEnable();//开启LORA中断
|
||||||
Sx1276LoRaWakeup();//LORA唤醒
|
Sx1276LoRaWakeup();//LORA唤醒
|
||||||
ACCandMMCIntEnable();//开启加速度和地磁中断
|
ACCandMMCIntEnable();//开启加速度和地磁中断
|
||||||
|
|
||||||
SysTick_Config(SystemCoreClock/1000);
|
SysTick_Config(SystemCoreClock/1000);
|
||||||
}
|
}
|
||||||
|
|||||||
+93
-61
@@ -20,17 +20,17 @@ extern uint32_t CommWay;
|
|||||||
extern uint32_t DeviceSign;
|
extern uint32_t DeviceSign;
|
||||||
extern uint32_t AddNumber;
|
extern uint32_t AddNumber;
|
||||||
|
|
||||||
extern uint8_t LocalMAC[6]; //本机MAC地址
|
extern uint8_t LocalMAC[6]; //本机MAC地址
|
||||||
extern uint8_t GatewayMAC[6]; //网关MAC地址,注册时全为0
|
extern uint8_t GatewayMAC[6]; //网关MAC地址,注册时全为0
|
||||||
extern uint8_t LocalDataPack[sizeof(SGCP.DevData.LaserTracing)]; //本机数据包 //本机数据包
|
extern uint8_t LocalDataPack[sizeof(SGCP.DevData.LaserTracing)]; //本机数据包 //本机数据包
|
||||||
|
|
||||||
bool MainDispEn = true;
|
bool MainDispEn = true;
|
||||||
bool DataDispEn = true;
|
bool DataDispEn = true;
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: MainDBGOnOff
|
* 函数名称: MainDBGOnOff
|
||||||
* 功能描述: 主调试信息开关函数
|
* 功能描述: 主调试信息开关函数
|
||||||
* 参 数: OnOff,开关
|
* 参 数: OnOff,开关
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void MainDBGOnOff(bool OnOff)
|
void MainDBGOnOff(bool OnOff)
|
||||||
{
|
{
|
||||||
@@ -41,10 +41,10 @@ void MainDBGOnOff(bool OnOff)
|
|||||||
DBG_LOG("\r\nMain Display Disable!\r\n\r\n");
|
DBG_LOG("\r\nMain Display Disable!\r\n\r\n");
|
||||||
}
|
}
|
||||||
/*****************************************************************************************
|
/*****************************************************************************************
|
||||||
* 函数名称: DataDBGOnOff
|
* 函数名称: DataDBGOnOff
|
||||||
* 功能描述: 数据信息开关函数
|
* 功能描述: 数据信息开关函数
|
||||||
* 参 数: OnOff,开关
|
* 参 数: OnOff,开关
|
||||||
* 返 回 值: 无
|
* 返 回 值: 无
|
||||||
*****************************************************************************************/
|
*****************************************************************************************/
|
||||||
void DataDBGOnOff(bool OnOff)
|
void DataDBGOnOff(bool OnOff)
|
||||||
{
|
{
|
||||||
@@ -82,17 +82,17 @@ static void AppInit(void)
|
|||||||
LocalMAC[i] = *((volatile const uint8_t *)(0x00002800 + i));
|
LocalMAC[i] = *((volatile const uint8_t *)(0x00002800 + i));
|
||||||
}
|
}
|
||||||
memcpy(&App.Para.BLPara.DevMac, &LocalMAC[0], 6);
|
memcpy(&App.Para.BLPara.DevMac, &LocalMAC[0], 6);
|
||||||
LocalType = (App.Para.BLPara.DevMac[0] | (App.Para.BLPara.DevMac[1] << 8)); //本机设备类型
|
LocalType = (App.Para.BLPara.DevMac[0] | (App.Para.BLPara.DevMac[1] << 8)); //本机设备类型
|
||||||
CommWay = App.Para.BLPara.DevMac[2]; //本机通讯方式
|
CommWay = App.Para.BLPara.DevMac[2]; //本机通讯方式
|
||||||
DeviceSign = App.Para.BLPara.DevMac[3] & 0x80; //本机设备标志
|
DeviceSign = App.Para.BLPara.DevMac[3] & 0x80; //本机设备标志
|
||||||
AddNumber = ((App.Para.BLPara.DevMac[3] << 16)+ (App.Para.BLPara.DevMac[4] << 8) + App.Para.BLPara.DevMac[5]) - 0x800000; //本机地址编号,数字部分对应唯一地址编号
|
AddNumber = ((App.Para.BLPara.DevMac[3] << 16)+ (App.Para.BLPara.DevMac[4] << 8) + App.Para.BLPara.DevMac[5]) - 0x800000; //本机地址编号,数字部分对应唯一地址编号
|
||||||
#else
|
#else
|
||||||
LocalType = LASER_TRACING; //本机设备类型
|
LocalType = LASER_TRACING; //本机设备类型
|
||||||
CommWay = LORA; //本机通讯方式
|
CommWay = LORA; //本机通讯方式
|
||||||
DeviceSign = MASTER; //本机设备标志
|
DeviceSign = MASTER; //本机设备标志
|
||||||
AddNumber = 0x000023 + DeviceSign;//本机地址编号,数字部分对应唯一地址编号
|
AddNumber = 0x000023 + DeviceSign;//本机地址编号,数字部分对应唯一地址编号
|
||||||
App.Para.BLPara.LoraFreq = CH0;
|
App.Para.BLPara.LoraFreq = CH0;
|
||||||
LocalMAC[0] = LocalType & 0xFF; //本机MAC地址
|
LocalMAC[0] = LocalType & 0xFF; //本机MAC地址
|
||||||
LocalMAC[1] = (LocalType >> 8) & 0xFF;
|
LocalMAC[1] = (LocalType >> 8) & 0xFF;
|
||||||
LocalMAC[2] = CommWay;
|
LocalMAC[2] = CommWay;
|
||||||
LocalMAC[3] = (AddNumber >> 16) & 0xFF;
|
LocalMAC[3] = (AddNumber >> 16) & 0xFF;
|
||||||
@@ -104,7 +104,7 @@ static void AppInit(void)
|
|||||||
if(App.Para.FactoryFlag != 0x00)
|
if(App.Para.FactoryFlag != 0x00)
|
||||||
{
|
{
|
||||||
App.Para.FactoryFlag = 0x00;
|
App.Para.FactoryFlag = 0x00;
|
||||||
/*校准参数初始化*/
|
/*校准参数初始化*/
|
||||||
App.Para.CaliPara.PitchZero = 0;
|
App.Para.CaliPara.PitchZero = 0;
|
||||||
App.Para.CaliPara.RollZero = 0;
|
App.Para.CaliPara.RollZero = 0;
|
||||||
App.Para.CaliPara.YawZero = 0;
|
App.Para.CaliPara.YawZero = 0;
|
||||||
@@ -137,7 +137,7 @@ static void AppInit(void)
|
|||||||
if(App.Para.BLPara.LoraFreq < 410000000 || App.Para.BLPara.LoraFreq > 525000000)
|
if(App.Para.BLPara.LoraFreq < 410000000 || App.Para.BLPara.LoraFreq > 525000000)
|
||||||
App.Para.BLPara.LoraFreq = CH0;
|
App.Para.BLPara.LoraFreq = CH0;
|
||||||
App.Para.Lora.FreqCent = App.Para.BLPara.LoraFreq;
|
App.Para.Lora.FreqCent = App.Para.BLPara.LoraFreq;
|
||||||
SX1276LoRaWriteFreq(App.Para.Lora.FreqCent); //Lora频率:433100000ul + 200000*N
|
SX1276LoRaWriteFreq(App.Para.Lora.FreqCent); //Lora频率:433100000ul + 200000*N
|
||||||
|
|
||||||
if(App.Para.Rs485Ch1.Addr > 16 || App.Para.Rs485Ch1.Addr < 1){
|
if(App.Para.Rs485Ch1.Addr > 16 || App.Para.Rs485Ch1.Addr < 1){
|
||||||
App.Para.Rs485Ch1.Addr = 1;
|
App.Para.Rs485Ch1.Addr = 1;
|
||||||
@@ -157,12 +157,16 @@ static void AppInit(void)
|
|||||||
if(App.Para.Layout.ERTime > 240 || App.Para.Layout.ERTime < 20) {
|
if(App.Para.Layout.ERTime > 240 || App.Para.Layout.ERTime < 20) {
|
||||||
App.Para.Layout.ERTime = 40;
|
App.Para.Layout.ERTime = 40;
|
||||||
}
|
}
|
||||||
|
if(App.Para.LaserTimerMinutes < 0 || App.Para.LaserTimerMinutes > 240)
|
||||||
|
App.Para.LaserTimerMinutes = 10;
|
||||||
|
SGCP.LaserTimerMinutes = App.Para.LaserTimerMinutes;
|
||||||
|
|
||||||
SAVE_APP_PARA((uint32_t *)&App.Para);
|
SAVE_APP_PARA((uint32_t *)&App.Para);
|
||||||
|
|
||||||
LpUart0Init(App.Para.Rs485Ch1.BaudRate);//低功耗串口初始化
|
LpUart0Init(App.Para.Rs485Ch1.BaudRate);//低功耗串口初始化
|
||||||
|
|
||||||
LORAIntEnable();
|
LORAIntEnable();
|
||||||
LoraInit(); //< LORA芯片初始化
|
LoraInit(); //< LORA芯片初始化
|
||||||
FeedDog();
|
FeedDog();
|
||||||
|
|
||||||
Lsm6dslInit();
|
Lsm6dslInit();
|
||||||
@@ -173,7 +177,7 @@ static void AppInit(void)
|
|||||||
|
|
||||||
LPTimer0_OFF();
|
LPTimer0_OFF();
|
||||||
|
|
||||||
uint32_t seed = 0;//< 随机数初始化
|
uint32_t seed = 0;//< 随机数初始化
|
||||||
seed = seed + LocalMAC[2];
|
seed = seed + LocalMAC[2];
|
||||||
seed = (seed << 8) + LocalMAC[3];
|
seed = (seed << 8) + LocalMAC[3];
|
||||||
seed = (seed << 8) + LocalMAC[4];
|
seed = (seed << 8) + LocalMAC[4];
|
||||||
@@ -194,11 +198,8 @@ static void AppInit(void)
|
|||||||
App.LoginFlag = false;
|
App.LoginFlag = false;
|
||||||
App.Login_RTC = false;
|
App.Login_RTC = false;
|
||||||
App.Login_LPTimer0 = true;
|
App.Login_LPTimer0 = true;
|
||||||
//LPTimer0_ON((App.Nonce % 1200) + 300);//定时30s+随机2分钟,最小间隙100ms
|
//LPTimer0_ON((App.Nonce % 1200) + 300);//定时30s+随机2分钟,最小间隙100ms
|
||||||
LPTimer0_ON(50);//5秒后注册
|
LPTimer0_ON(50);//5秒后注册
|
||||||
MAIN_DBG_LOG("Login LPTimer0 Open\r\n");
|
|
||||||
|
|
||||||
App.Upload45S10SCount = 0;
|
|
||||||
App.UploadFlag = false;
|
App.UploadFlag = false;
|
||||||
App.Upload_LPTimer0 = false;
|
App.Upload_LPTimer0 = false;
|
||||||
|
|
||||||
@@ -282,7 +283,7 @@ static void ReadDataLoopHandler(void)
|
|||||||
RollDiff = App.ConvertedData.Roll - App.Para.CaliPara.RollZero;
|
RollDiff = App.ConvertedData.Roll - App.Para.CaliPara.RollZero;
|
||||||
if((PitchDiff > ERINTERVAL_VPT) || (RollDiff > ERINTERVAL_VPT))
|
if((PitchDiff > ERINTERVAL_VPT) || (RollDiff > ERINTERVAL_VPT))
|
||||||
{
|
{
|
||||||
//触发紧急上报
|
//触发紧急上报
|
||||||
App.ERFlag = true;
|
App.ERFlag = true;
|
||||||
DATA_DBG_LOG("PitchDiff=%04d, PitchDiff=%04d\r\n", PitchDiff,RollDiff);
|
DATA_DBG_LOG("PitchDiff=%04d, PitchDiff=%04d\r\n", PitchDiff,RollDiff);
|
||||||
DATA_DBG_LOG("Start emergency reporting!\r\n");
|
DATA_DBG_LOG("Start emergency reporting!\r\n");
|
||||||
@@ -300,7 +301,7 @@ static void ReadDataLoopHandler(void)
|
|||||||
SGCP.DevData.LaserTracing.MasterDev.BatLevel = 0x00;
|
SGCP.DevData.LaserTracing.MasterDev.BatLevel = 0x00;
|
||||||
#endif
|
#endif
|
||||||
#if (SGCP_SELECT == 1 || SGCP_SELECT == 2)
|
#if (SGCP_SELECT == 1 || SGCP_SELECT == 2)
|
||||||
SX1276LoCalcRssiSnr(&SGCP.DevData.LaserTracing.MasterDev.RSSI, &SGCP.DevData.LaserTracing.MasterDev.Nsr);//获取信号强度
|
SX1276LoCalcRssiSnr(&SGCP.DevData.LaserTracing.MasterDev.RSSI, &SGCP.DevData.LaserTracing.MasterDev.Nsr);//获取信号强度
|
||||||
#else
|
#else
|
||||||
SGCP.DevData.LaserTracing.MasterDev.RSSI = 0x00;
|
SGCP.DevData.LaserTracing.MasterDev.RSSI = 0x00;
|
||||||
SGCP.DevData.LaserTracing.MasterDev.Nsr = 0x00;
|
SGCP.DevData.LaserTracing.MasterDev.Nsr = 0x00;
|
||||||
@@ -308,7 +309,7 @@ static void ReadDataLoopHandler(void)
|
|||||||
|
|
||||||
memcpy(LocalDataPack, &SGCP.DevData.LaserTracing, sizeof(LocalDataPack));
|
memcpy(LocalDataPack, &SGCP.DevData.LaserTracing, sizeof(LocalDataPack));
|
||||||
DATA_DBG_LOG("<------------ Sensor Data Upda End ------------> \r\n");
|
DATA_DBG_LOG("<------------ Sensor Data Upda End ------------> \r\n");
|
||||||
//App.RDStatus = READDATA_STATUS_UPDAING;//持续工作
|
//App.RDStatus = READDATA_STATUS_UPDAING;//持续工作
|
||||||
App.RDStatus = READDATA_STATUS_IDLE;
|
App.RDStatus = READDATA_STATUS_IDLE;
|
||||||
App.UpdateOk = true;
|
App.UpdateOk = true;
|
||||||
break;}
|
break;}
|
||||||
@@ -333,7 +334,7 @@ static void AppLoopHandler(void)
|
|||||||
|
|
||||||
case APP_STATUS_ON:{
|
case APP_STATUS_ON:{
|
||||||
if(App.TD1mSDelayCnt <= 0){
|
if(App.TD1mSDelayCnt <= 0){
|
||||||
App.TD1mSDelayCnt = 300;//唤醒后待机时间
|
App.TD1mSDelayCnt = 300;//唤醒后待机时间
|
||||||
App.Status = APP_STATUS_ACTION;
|
App.Status = APP_STATUS_ACTION;
|
||||||
}
|
}
|
||||||
break;}
|
break;}
|
||||||
@@ -348,15 +349,15 @@ static void AppLoopHandler(void)
|
|||||||
if(SGCP.InStatus != IN_STATUS_IDLE){
|
if(SGCP.InStatus != IN_STATUS_IDLE){
|
||||||
break;
|
break;
|
||||||
}
|
}
|
||||||
else if(SGCP.LoginOk == false && App.LoginFlag == true && SGCP.GWStatus == GW_STATUS_IDLE)//设备注册
|
else if(SGCP.LoginOk == false && App.LoginFlag == true && SGCP.GWStatus == GW_STATUS_IDLE)//设备注册
|
||||||
{
|
{
|
||||||
PrintfMess();
|
PrintfMess();
|
||||||
App.LoginFlag = false;
|
App.LoginFlag = false;
|
||||||
LPTimer0_OFF();//关闭低功耗定时器
|
LPTimer0_OFF();//关闭低功耗定时器
|
||||||
SGCP.GWStatus = GW_STATUS_LOGIN;//注册
|
SGCP.GWStatus = GW_STATUS_LOGIN;//注册
|
||||||
App.Status = APP_STATUS_WAIT_LOGIN;
|
App.Status = APP_STATUS_WAIT_LOGIN;
|
||||||
}
|
}
|
||||||
else if(SGCP.TimingAcquisition == true && App.RDStatus == READDATA_STATUS_IDLE)//设备数据获取
|
else if(SGCP.TimingAcquisition == true && App.RDStatus == READDATA_STATUS_IDLE)//设备数据获取
|
||||||
{
|
{
|
||||||
PrintfMess();
|
PrintfMess();
|
||||||
SGCP.TimingAcquisition = false;
|
SGCP.TimingAcquisition = false;
|
||||||
@@ -368,23 +369,28 @@ static void AppLoopHandler(void)
|
|||||||
{
|
{
|
||||||
PrintfMess();
|
PrintfMess();
|
||||||
App.UploadFlag = false;
|
App.UploadFlag = false;
|
||||||
LPTimer0_OFF();//关闭低功耗定时器
|
LPTimer0_OFF();//关闭低功耗定时器
|
||||||
SGCP.GWStatus = GW_STATUS_UPLOAD_SENSOR;//上传
|
SGCP.GWStatus = GW_STATUS_UPLOAD_SENSOR;//上传
|
||||||
App.Status = APP_STATUS_WAIT_UPLOAD;
|
App.Status = APP_STATUS_WAIT_UPLOAD;
|
||||||
}
|
}
|
||||||
|
else if(SGCP.LaserOnOff == true && SGCP.LaserTimerMinutes > 0 && SGCP.LaserTimerCount == 0 && SGCP.GWStatus == GW_STATUS_IDLE)
|
||||||
|
{
|
||||||
|
SGCP.LaserOnOff = false;
|
||||||
|
SGCP.GWStatus = GW_STATUS_LASER_STARES;
|
||||||
|
}
|
||||||
else if(App.RDStatus == READDATA_STATUS_IDLE
|
else if(App.RDStatus == READDATA_STATUS_IDLE
|
||||||
&& SGCP.GWStatus == GW_STATUS_IDLE
|
&& SGCP.GWStatus == GW_STATUS_IDLE
|
||||||
&& SGCP.InStatus == IN_STATUS_IDLE
|
&& SGCP.InStatus == IN_STATUS_IDLE
|
||||||
&& SGCP.TimingAcquisition == false
|
&& SGCP.TimingAcquisition == false
|
||||||
&& App.TD1mSDelayCnt == 0
|
&& App.TD1mSDelayCnt == 0
|
||||||
&& App.ReadData1mSDelayCnt == 0
|
&& App.ReadData1mSDelayCnt == 0
|
||||||
&& SGCP.LaserOnOff == false)
|
&& SGCP.LaserOnOff == false
|
||||||
|
&& App.AttTestMode == false)
|
||||||
{
|
{
|
||||||
//App.Status = APP_STATUS_ACTION;//持续工作
|
//App.Status = APP_STATUS_ACTION;
|
||||||
App.Status = APP_STATUS_OFF;
|
App.Status = APP_STATUS_OFF;
|
||||||
}
|
}
|
||||||
break;}
|
break;}
|
||||||
|
|
||||||
case APP_STATUS_WAIT_LOGIN:{
|
case APP_STATUS_WAIT_LOGIN:{
|
||||||
if(SGCP.LoginMess == true)
|
if(SGCP.LoginMess == true)
|
||||||
{
|
{
|
||||||
@@ -398,14 +404,14 @@ static void AppLoopHandler(void)
|
|||||||
MAIN_DBG_LOG("Login RTC Open\r\n");
|
MAIN_DBG_LOG("Login RTC Open\r\n");
|
||||||
App.Login2Min30SCount = 0;
|
App.Login2Min30SCount = 0;
|
||||||
App.Login30MinCount = 0;
|
App.Login30MinCount = 0;
|
||||||
App.Login_RTC = true;//启动30分注册定时器
|
App.Login_RTC = true;//启动30分注册定时器
|
||||||
}
|
}
|
||||||
else
|
else
|
||||||
{
|
{
|
||||||
PrintfMess();
|
PrintfMess();
|
||||||
App.Login_LPTimer0 = true;
|
App.Login_LPTimer0 = true;
|
||||||
LPTimer0_ON((App.Nonce % 1200) + 300);//定时30s+随机2分钟,最小间隙100ms
|
LPTimer0_ON((App.Nonce % 1200) + 300);//定时30s+随机2分钟,最小间隙100ms
|
||||||
//LPTimer0_ON(100);//定时10s
|
//LPTimer0_ON(100);//定时10s
|
||||||
MAIN_DBG_LOG("Number of registration failures:%d\r\n",App.Login2Min30SCount);
|
MAIN_DBG_LOG("Number of registration failures:%d\r\n",App.Login2Min30SCount);
|
||||||
MAIN_DBG_LOG("Login LPTimer0 Open\r\n");
|
MAIN_DBG_LOG("Login LPTimer0 Open\r\n");
|
||||||
}
|
}
|
||||||
@@ -443,8 +449,8 @@ static void AppLoopHandler(void)
|
|||||||
{
|
{
|
||||||
PrintfMess();
|
PrintfMess();
|
||||||
App.Upload_LPTimer0 = true;
|
App.Upload_LPTimer0 = true;
|
||||||
LPTimer0_ON((App.Nonce % 100) + 450);//随机延时100~10000ms+45秒后重新发送
|
LPTimer0_ON((App.Nonce % 100) + 450);//随机延时100~10000ms+45秒后重新发送
|
||||||
//LPTimer0_ON(100);//定时10s
|
//LPTimer0_ON(100);//定时10s
|
||||||
MAIN_DBG_LOG("Number of failed uploads:%d\r\n",App.Upload45S10SCount);
|
MAIN_DBG_LOG("Number of failed uploads:%d\r\n",App.Upload45S10SCount);
|
||||||
MAIN_DBG_LOG("Upload LPTimer0 Open\r\n");
|
MAIN_DBG_LOG("Upload LPTimer0 Open\r\n");
|
||||||
}
|
}
|
||||||
@@ -468,6 +474,8 @@ static void App1mSRoutine(void)
|
|||||||
if(App.ReadData1mSDelayCnt > 0)
|
if(App.ReadData1mSDelayCnt > 0)
|
||||||
App.ReadData1mSDelayCnt--;
|
App.ReadData1mSDelayCnt--;
|
||||||
App.FeedDogDlyCnt++;
|
App.FeedDogDlyCnt++;
|
||||||
|
if(App.AttTestMode == true && App.AttTestCnt > 0)
|
||||||
|
App.AttTestCnt--;
|
||||||
}
|
}
|
||||||
|
|
||||||
void FeedDogHandler(void)
|
void FeedDogHandler(void)
|
||||||
@@ -480,7 +488,7 @@ void FeedDogHandler(void)
|
|||||||
|
|
||||||
void SystemResetHandler(void)
|
void SystemResetHandler(void)
|
||||||
{
|
{
|
||||||
//系统定时重启
|
//系统定时重启
|
||||||
if(App.SysResetTimeCnt > SYSTEM_TIMING_LOGIN) {
|
if(App.SysResetTimeCnt > SYSTEM_TIMING_LOGIN) {
|
||||||
delay_ms(5);
|
delay_ms(5);
|
||||||
SystemReset();
|
SystemReset();
|
||||||
@@ -500,7 +508,7 @@ void SystemResetHandler(void)
|
|||||||
int32_t main(void)
|
int32_t main(void)
|
||||||
{
|
{
|
||||||
BspInit();
|
BspInit();
|
||||||
delay_ms(3000);//上电延时,等待从设备启动
|
delay_ms(3000);//上电延时,等待从设备启动
|
||||||
AppInit();
|
AppInit();
|
||||||
|
|
||||||
DBG_LOG("\r\n\r\n");
|
DBG_LOG("\r\n\r\n");
|
||||||
@@ -530,10 +538,29 @@ int32_t main(void)
|
|||||||
GwRevLoopHandler();
|
GwRevLoopHandler();
|
||||||
InRevLoopHandler();
|
InRevLoopHandler();
|
||||||
AppLoopHandler();
|
AppLoopHandler();
|
||||||
|
|
||||||
|
#if(USE_DEBUG == 1)
|
||||||
|
if(App.AttTestMode == true)
|
||||||
|
{
|
||||||
|
if(App.AttTestCnt == 0)
|
||||||
|
{
|
||||||
|
App.AttTestCnt = 200;
|
||||||
|
SGCP.TimingAcquisition = true;
|
||||||
|
}
|
||||||
|
if(App.UpdateOk == true)
|
||||||
|
{
|
||||||
|
App.UpdateOk = false;
|
||||||
|
DBG_LOG("Pitch:%.1f Roll:%.1f Yaw:%.1f\r\n",
|
||||||
|
App.ConvertedData.Pitch / 10.0,
|
||||||
|
App.ConvertedData.Roll / 10.0,
|
||||||
|
App.ConvertedData.Yaw / 10.0);
|
||||||
|
}
|
||||||
|
}
|
||||||
|
#endif
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
/*******************************************************************************
|
/*******************************************************************************
|
||||||
* 中断回调函数
|
* 中断回调函数
|
||||||
******************************************************************************/
|
******************************************************************************/
|
||||||
void SysTick_CallBack(void)
|
void SysTick_CallBack(void)
|
||||||
{
|
{
|
||||||
@@ -546,20 +573,20 @@ void SysTick_CallBack(void)
|
|||||||
|
|
||||||
void RtcIRQHander(void)
|
void RtcIRQHander(void)
|
||||||
{
|
{
|
||||||
//SGCP.TimingAcquisition = true; //30S更新一次数据
|
//SGCP.TimingAcquisition = true; //30S更新一次数据
|
||||||
if(SGCP.LoginOk == true)
|
if(SGCP.LoginOk == true)
|
||||||
{
|
{
|
||||||
App.RepeLoginCount++;
|
App.RepeLoginCount++;
|
||||||
if(App.RepeLoginCount >= SYSTEM_TIMING_LOGIN){
|
if(App.RepeLoginCount >= SYSTEM_TIMING_LOGIN){
|
||||||
MAIN_DBG_LOG("24h Repetition Login\r\n");
|
MAIN_DBG_LOG("24h Repetition Login\r\n");
|
||||||
App.RepeLoginCount = 0;
|
App.RepeLoginCount = 0;
|
||||||
SGCP.LoginOk = false;//24h重复注册
|
SGCP.LoginOk = false;//24h重复注册
|
||||||
App.Login2Min30SCount = 0;
|
App.Login2Min30SCount = 0;
|
||||||
App.Login30MinCount = 0;
|
App.Login30MinCount = 0;
|
||||||
App.Login_RTC = false;//关闭30分注册定时器
|
App.Login_RTC = false;//关闭30分注册定时器
|
||||||
|
|
||||||
App.Login_LPTimer0 = true;
|
App.Login_LPTimer0 = true;
|
||||||
LPTimer0_ON((App.Nonce % 1200) + 300);//定时30s+随机2分钟,最小间隙100ms
|
LPTimer0_ON((App.Nonce % 1200) + 300);//定时30s+随机2分钟,最小间隙100ms
|
||||||
MAIN_DBG_LOG("Login LPTimer0 Open\r\n");
|
MAIN_DBG_LOG("Login LPTimer0 Open\r\n");
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -567,7 +594,7 @@ void RtcIRQHander(void)
|
|||||||
if(App.Coll_N >= App.Para.Layout.CollectTime)
|
if(App.Coll_N >= App.Para.Layout.CollectTime)
|
||||||
{
|
{
|
||||||
App.Coll_N = 0;
|
App.Coll_N = 0;
|
||||||
SGCP.TimingAcquisition = true; //定时更新数据
|
SGCP.TimingAcquisition = true; //定时更新数据
|
||||||
}
|
}
|
||||||
|
|
||||||
if(App.ERFlag == true)
|
if(App.ERFlag == true)
|
||||||
@@ -583,7 +610,7 @@ void RtcIRQHander(void)
|
|||||||
{
|
{
|
||||||
App.ERTime_N = 0;
|
App.ERTime_N = 0;
|
||||||
App.ERFlag = false;
|
App.ERFlag = false;
|
||||||
SGCP.MasterCaliOk = true;//紧急上报时间结束,重新校准参数
|
SGCP.MasterCaliOk = true;//紧急上报时间结束,重新校准参数
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
else{
|
else{
|
||||||
@@ -599,19 +626,24 @@ void RtcIRQHander(void)
|
|||||||
if(App.Login_RTC == true)
|
if(App.Login_RTC == true)
|
||||||
{
|
{
|
||||||
App.Login30MinCount++;
|
App.Login30MinCount++;
|
||||||
if(App.Login30MinCount >= ERR_TIMING_LOGIN)//30分钟重置注册错误信息
|
if(App.Login30MinCount >= ERR_TIMING_LOGIN)//30分钟重置注册错误信息
|
||||||
{
|
{
|
||||||
PrintfMess();
|
PrintfMess();
|
||||||
App.Login30MinCount = 0;
|
App.Login30MinCount = 0;
|
||||||
App.Login_RTC = false;//关闭30分注册定时器
|
App.Login_RTC = false;//关闭30分注册定时器
|
||||||
MAIN_DBG_LOG("Login RTC Close\r\n");
|
MAIN_DBG_LOG("Login RTC Close\r\n");
|
||||||
|
|
||||||
App.Login_LPTimer0 = true;
|
App.Login_LPTimer0 = true;
|
||||||
LPTimer0_ON((App.Nonce % 1200) + 300);//定时30s+随机2分钟,最小间隙100ms
|
LPTimer0_ON((App.Nonce % 1200) + 300);//定时30s+随机2分钟,最小间隙100ms
|
||||||
//LPTimer0_ON(100);//定时10s
|
//LPTimer0_ON(100);//定时10s
|
||||||
MAIN_DBG_LOG("Login LPTimer0 Open\r\n");
|
MAIN_DBG_LOG("Login LPTimer0 Open\r\n");
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
|
if(SGCP.LaserOnOff == true && SGCP.LaserTimerCount > 0)
|
||||||
|
{
|
||||||
|
SGCP.LaserTimerCount--;
|
||||||
|
}
|
||||||
}
|
}
|
||||||
void LPTimer0IRQHander(void)
|
void LPTimer0IRQHander(void)
|
||||||
{
|
{
|
||||||
|
|||||||
Reference in New Issue
Block a user