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#2020征文-开发板#Hi3861 炫彩灯板(DCL)开发
一凝
发布于 2021-1-7 17:35
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一、前言
HarmonyOS HiSpark Wi-Fi IoT 套件开发之炫彩灯板
二、场景描述
场景设定:楼道
三、功能描述
感应照明灯,在光线比较暗的地方,感应到人体就会打开照明灯
四、功能实现
首先,通过人体红外感应检测人体运动
然后,通过光敏电阻检测光线亮度
最后,若满足有人且天黑的条件则亮灯
五、代码实现
/*
* Copyright (c) 2020 Huawei Device Co., Ltd.
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
/*
* HiSpark_WiFi_IoT_DCL_VER.A板
* GPIO_07 人体红外感应
* GPIO_09 光敏电阻
* GPIO_10 红色LED,高电平点亮
* GPIO_11 绿色LED,高电平点亮
* GPIO_12 蓝色LED,高电平点亮
*/
#include <stdio.h>
#include <unistd.h>
#include "wifiiot_adc.h"
#include "ohos_init.h"
#include "cmsis_os2.h"
#include "wifiiot_gpio.h"
#include "wifiiot_gpio_ex.h"
#define LED_INTERVAL_TIME_US 300000
#define LED_TASK_STACK_SIZE 512
#define LED_TASK_PRIO 25
enum LedState {
LED_ON = 0,
LED_OFF,
LED_SPARK,
};
enum LedState g_ledState = LED_OFF;
static void *LedTask(const char *arg)
{
(void)arg;
while (1) {
WifiIotGpioValue rel=0;
GpioGetInputVal(WIFI_IOT_IO_NAME_GPIO_7, &rel);
unsigned short data = 0;
AdcRead(WIFI_IOT_ADC_CHANNEL_4, &data, WIFI_IOT_ADC_EQU_MODEL_4, WIFI_IOT_ADC_CUR_BAIS_DEFAULT, 0);
if(rel != 0 && data > 1500){//当感应到人体活动且天色较暗时,三色LED会闪烁
g_ledState = LED_SPARK;
// printf("GPIO_7=%d, GPIO_9=%d\n",(int)rel,data);
}
else{
g_ledState = LED_OFF;
}
switch (g_ledState) {
case LED_ON:
GpioSetOutputVal(WIFI_IOT_IO_NAME_GPIO_10, 1);
usleep(LED_INTERVAL_TIME_US);
break;
case LED_OFF:
GpioSetOutputVal(WIFI_IOT_IO_NAME_GPIO_10, 0);
GpioSetOutputVal(WIFI_IOT_IO_NAME_GPIO_11, 0);
GpioSetOutputVal(WIFI_IOT_IO_NAME_GPIO_12, 0);
usleep(LED_INTERVAL_TIME_US);
break;
case LED_SPARK:
GpioSetOutputVal(WIFI_IOT_IO_NAME_GPIO_10, 0);
GpioSetOutputVal(WIFI_IOT_IO_NAME_GPIO_11, 1);
usleep(LED_INTERVAL_TIME_US);
GpioSetOutputVal(WIFI_IOT_IO_NAME_GPIO_11, 0);
GpioSetOutputVal(WIFI_IOT_IO_NAME_GPIO_12, 1);
usleep(LED_INTERVAL_TIME_US);
GpioSetOutputVal(WIFI_IOT_IO_NAME_GPIO_12, 0);
GpioSetOutputVal(WIFI_IOT_IO_NAME_GPIO_10, 1);
usleep(LED_INTERVAL_TIME_US);
break;
default:
usleep(LED_INTERVAL_TIME_US);
break;
}
}
return NULL;
}
static void LedExampleEntry(void)
{
osThreadAttr_t attr;
GpioInit();
//设置IO为输入状态
IoSetFunc(WIFI_IOT_IO_NAME_GPIO_7, WIFI_IOT_IO_FUNC_GPIO_7_GPIO);
GpioSetDir(WIFI_IOT_IO_NAME_GPIO_7, WIFI_IOT_GPIO_DIR_IN);
IoSetPull(WIFI_IOT_IO_NAME_GPIO_7, WIFI_IOT_IO_PULL_UP);
IoSetFunc(WIFI_IOT_IO_NAME_GPIO_9, WIFI_IOT_IO_FUNC_GPIO_9_GPIO);
GpioSetDir(WIFI_IOT_IO_NAME_GPIO_9, WIFI_IOT_GPIO_DIR_IN);
//设置红色,绿色,蓝色 LED IO为输出状态
IoSetFunc(WIFI_IOT_IO_NAME_GPIO_10, WIFI_IOT_IO_FUNC_GPIO_10_GPIO);
GpioSetDir(WIFI_IOT_IO_NAME_GPIO_10, WIFI_IOT_GPIO_DIR_OUT);
IoSetFunc(WIFI_IOT_IO_NAME_GPIO_11, WIFI_IOT_IO_FUNC_GPIO_11_GPIO);
GpioSetDir(WIFI_IOT_IO_NAME_GPIO_11, WIFI_IOT_GPIO_DIR_OUT);
IoSetFunc(WIFI_IOT_IO_NAME_GPIO_12, WIFI_IOT_IO_FUNC_GPIO_12_GPIO);
GpioSetDir(WIFI_IOT_IO_NAME_GPIO_12, WIFI_IOT_GPIO_DIR_OUT);
attr.name = "LedTask";
attr.attr_bits = 0U;
attr.cb_mem = NULL;
attr.cb_size = 0U;
attr.stack_mem = NULL;
attr.stack_size = LED_TASK_STACK_SIZE;
attr.priority = LED_TASK_PRIO;
if (osThreadNew((osThreadFunc_t)LedTask, NULL, &attr) == NULL) {
printf("[LedExample] Falied to create LedTask!\n");
}
}
SYS_RUN(LedExampleEntry);
六、编译
七、烧录
八、运行
九、总结
在编程过程中需要参考API文档,了解每个函数的定义,还需要参考硬件电路图,了解每个管脚的定义。感谢社区的大佬们提供帮助
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已于2021-1-7 17:35:26修改
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