Author SHA1 Message Date
NanamiAdmin b522501c86 first commit 2025-07-23 13:42:07 +08:00
13 changed files with 2 additions and 631 deletions
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.pio
.vscode/.browse.c_cpp.db*
.vscode/c_cpp_properties.json
.vscode/launch.json
.vscode/ipch
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{
// See http://go.microsoft.com/fwlink/?LinkId=827846
// for the documentation about the extensions.json format
"recommendations": [
"platformio.platformio-ide"
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}
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"C:/Users/FPCLinkYZT114/.platformio/packages/framework-arduinoespressif8266/libraries/esp8266/src",
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""
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# SmartSocket_ESP8266
A smart socket controller program used by the MCU ESP8266
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This directory is intended for project header files.
A header file is a file containing C declarations and macro definitions
to be shared between several project source files. You request the use of a
header file in your project source file (C, C++, etc) located in `src` folder
by including it, with the C preprocessing directive `#include'.
```src/main.c
#include "header.h"
int main (void)
{
...
}
```
Including a header file produces the same results as copying the header file
into each source file that needs it. Such copying would be time-consuming
and error-prone. With a header file, the related declarations appear
in only one place. If they need to be changed, they can be changed in one
place, and programs that include the header file will automatically use the
new version when next recompiled. The header file eliminates the labor of
finding and changing all the copies as well as the risk that a failure to
find one copy will result in inconsistencies within a program.
In C, the usual convention is to give header files names that end with `.h'.
It is most portable to use only letters, digits, dashes, and underscores in
header file names, and at most one dot.
Read more about using header files in official GCC documentation:
* Include Syntax
* Include Operation
* Once-Only Headers
* Computed Includes
https://gcc.gnu.org/onlinedocs/cpp/Header-Files.html
-46
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This directory is intended for project specific (private) libraries.
PlatformIO will compile them to static libraries and link into executable file.
The source code of each library should be placed in an own separate directory
("lib/your_library_name/[here are source files]").
For example, see a structure of the following two libraries `Foo` and `Bar`:
|--lib
| |
| |--Bar
| | |--docs
| | |--examples
| | |--src
| | |- Bar.c
| | |- Bar.h
| | |- library.json (optional, custom build options, etc) https://docs.platformio.org/page/librarymanager/config.html
| |
| |--Foo
| | |- Foo.c
| | |- Foo.h
| |
| |- README --> THIS FILE
|
|- platformio.ini
|--src
|- main.c
and a contents of `src/main.c`:
```
#include <Foo.h>
#include <Bar.h>
int main (void)
{
...
}
```
PlatformIO Library Dependency Finder will find automatically dependent
libraries scanning project source files.
More information about PlatformIO Library Dependency Finder
- https://docs.platformio.org/page/librarymanager/ldf.html
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; PlatformIO Project Configuration File
;
; Build options: build flags, source filter
; Upload options: custom upload port, speed and extra flags
; Library options: dependencies, extra library storages
; Advanced options: extra scripting
;
; Please visit documentation for the other options and examples
; https://docs.platformio.org/page/projectconf.html
[platform]
name = smartplugs_esp8266
[env]
upload_speed = 921600
monitor_encoding = utf-8
monitor_speed = 115200
framework = arduino
[env:esp8266]
platform = espressif8266
board = nodemcu
board_build.ldscript =eagle.flash.1m.ld
-38
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# ESP8266_SmartSocketController
---
## A control firmware for socket to accept network control
# Features
- UDP control over WiFi
- LED status report
# How to use
- Download and flash the firmware in the release page
- Launch any serial debug tools, open the serial port with speed 115200
- Reset the device
- Enter your SSID&Password
- Waiting for saving data
- Unplug the MCU from your PC, connect it to relay module and your socket
- Add this device to your manage program
- Enjoy~
# What you need
- esp-01s module
- relay module
# Environment
- Visual Studio Code
- PlatformIO Extension
---
# Build
- Launch VS Code, open the whole folder
- Waiting for PlatformIO to initialize
- Click Build to build the firmware
---
### Note
- This is my frist project, not very similar to everything, if there is any wrong or something can be upgrade, please let me know! Thanks!
---
### Contact
- Email: yzt114@yeah.net
- Personal Site: https://nanami.tech
- Personal Blog: https://blog.nanami.tech
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#include <Arduino.h>
#include <ESP8266WiFi.h>
#include <WiFiUdp.h>
#include <EEPROM.h>
#include <WiFiServer.h>
#define relay 0
int ledPin = 2;
int UdpbeginPacketTest;
int UdpendPacketTest;
int digitalStatus;
WiFiUDP Udp;
unsigned int localUdpPort = 443;
char incomingPacket[537];
WiFiServer server(80);
void loadWiFiSettings(char* ssid, char* password) { //Read WiFi settings from EEPROM
EEPROM.begin(64); //Initialize EEPROM with size 64 bytes
for (int i = 0; i < 32; i++) {
char c = EEPROM.read(i);
// Serial.print(c);
// Serial.print(" ");
// Serial.print((int)c);
// Serial.print(" ");
ssid[i] = c;
if(c =='\0'){
break;
}
}
for (int i = 0; i < 32; i++) {
char c = EEPROM.read(i + 32);
// Serial.print(c);
// Serial.print(" ");
// Serial.print((int)c);
// Serial.print(" ");
password[i] = c;
if(c == '\0'){
break;
}
}
EEPROM.end();
}
void saveWiFiSettings(const char ssid[32], const char password[32]) {
EEPROM.begin(64); //Initialize EEPROM with size 64 bytes
for(int i=0; i<32; i++) {
// Serial.print(ssid[i]);
// Serial.print(" ");
// Serial.print((int)ssid[i]);
EEPROM.write(i, ssid[i]); //Write SSID to EEPROM
// Serial.print(ssid[i]);
if(ssid[i] == '\0') {
break;
}
}
for(int i=0; i<32; i++) {
// Serial.print(password[i]);
// Serial.print(" ");
// Serial.print((int)password[i]);
EEPROM.write(i+32, password[i]); //Write Password to EEPROM
// Serial.print(password[i]);
if(password[i] == '\0') {
break;
}
}
Serial.println("EEPROM.end");
EEPROM.end();
}
void connectWiFi(const char* ssid, const char* password) { //Connect to WiFi
WiFi.begin(ssid,password);
while(WiFi.status() !=WL_CONNECTED){ // Wait for WiFi connection || Blink LED while connecting
digitalWrite(ledPin,LOW); // Turn on LED
delay(250);
Serial.println(".");
digitalWrite(ledPin,HIGH);// Turn off LED
delay(250);
}
}
void setup(){
static String serial_command;
Serial.begin(115200);
Serial.println(""); //Print firmware information
Serial.println("Smart Socket ESP8266EX Firmware Ver.1.0.1.stable");
Serial.println("Developed by Madobi Nanami");
Serial.println("Personal site: https://nanami.tech");
pinMode(ledPin,OUTPUT); //Initialize LED pin
pinMode(relay,OUTPUT); //Initialize relay pin
digitalWrite(relay,LOW);
digitalWrite(ledPin,LOW); //Turn on LED
char ssid[32];
char password[32];
loadWiFiSettings(ssid, password); //Load WiFi settings from EEPROM
if(strlen(ssid) == 0 || strlen(password) == 0){ //Check if WiFi settings are empty
Serial.println("No WiFi settings found in EEPROM, please set them.");
Serial.println("Please enter SSID:");
while(!Serial.available());
String inputSsid = Serial.readStringUntil('\n');
inputSsid.trim();
if(inputSsid.length() > 32) {
Serial.println("SSID is too long, please enter a shorter one.");
return;
}
Serial.println("Please enter Password:");
while(!Serial.available());
String inputPassword = Serial.readStringUntil('\n');
inputPassword.trim();
if(inputPassword.length() > 32) {
Serial.println("Password is too long, please enter a shorter one.");
return;
}
Serial.println("Trying to connect to WiFi...");
connectWiFi(inputSsid.c_str(), inputPassword.c_str()); //Connect to WiFi
if(WiFi.status() != WL_CONNECTED) {
Serial.println("Failed to connect to WiFi, please check your SSID and Password.");
digitalWrite(ledPin,LOW); //Stop blinking LED if failed to connect
return;
}
Serial.println("Connected to WiFi.");
Serial.println("Saving WiFi settings to EEPROM...");
saveWiFiSettings(inputSsid.c_str(), inputPassword.c_str());
Serial.println("WiFi settings saved.");
} else {
Serial.println("Load WiFi settings from EEPROM.");
Serial.print("SSID: ");
Serial.println(ssid);
Serial.print("Password: ");
Serial.println(password);
}
connectWiFi(ssid, password); //Connect to WiFi
if(WiFi.status() != WL_CONNECTED) {
Serial.println("Failed to connect to WiFi, please check your SSID and Password.");
digitalWrite(ledPin,LOW); //Stop blinking LED if failed to connect
return;
}
Serial.println("Connected.");
digitalWrite(ledPin,LOW); //Turn on LED after connected
server.begin();
Udp.begin(localUdpPort);
Serial.println("UDP server started. Listening on port 443");
Serial.print("Use this address to connect: ");
Serial.println(WiFi.localIP());
}
void serial_action(String serial_command){ // Function to handle serial commands
if(serial_command == "device.read"){ // Read device information
Serial.println("Device information requested.");
Udp.beginPacket(Udp.remoteIP(),Udp.remotePort());
Udp.write("[Chipset]ESP8266EX");
Udp.write("[Manufacture]Espressif");
Udp.write("[DeviceType]relayController");
Udp.write("[FirmwareName]Smart Socket");
Udp.write("[FirmwareVersion]1.0.1.stable");
Udp.write("[FirmwareBuildVer]25");
Udp.write("[Developer]Madobi Nanami");
Udp.write("[BuildDate]2025.07.28");
delay(500);
Udp.write("[Command]EOF");
Udp.endPacket();
Serial.println("[Chipset]ESP8266EX");
Serial.println("[Manufacture]Espressif");
Serial.println("[DeviceType]relayController");
Serial.println("[FirmwareName]Smart Socket");
Serial.println("[FirmwareVersion]1.0.1.stable");
Serial.println("[FirmwareBuildVer]25");
Serial.println("[Developer]Madobi Nanami");
Serial.println("[BuildDate]2025.07.28");
Serial.println("End.");
return;
}
if(serial_command == "led.read"){ // Read LED status
digitalStatus = digitalRead(ledPin);
Udp.beginPacket(Udp.remoteIP(),Udp.remotePort());
Udp.write(digitalStatus);
Udp.endPacket();
return;
}
if(serial_command == "relay.read"){ // Read relay status
digitalStatus = digitalRead(relay);
Udp.beginPacket(Udp.remoteIP(),Udp.remotePort());
Udp.write(digitalStatus);
Udp.endPacket();
return;
}
if(serial_command == "led.on"){ // Turn on LED
digitalWrite(ledPin,LOW);
Udp.beginPacket(Udp.remoteIP(),Udp.remotePort());
Udp.write("led.on");
Udp.endPacket();
return;
}
if(serial_command == "led.off"){ // Turn off LED
digitalWrite(ledPin,HIGH);
Udp.beginPacket(Udp.remoteIP(),Udp.remotePort());
Udp.write("led.off");
Udp.endPacket();
return;
}
if(serial_command == "relay.on"){ // Turn on relay
digitalWrite(relay,HIGH);
Udp.beginPacket(Udp.remoteIP(),Udp.remotePort());
Udp.write("relay.on");
Udp.endPacket();
return;
}
if(serial_command == "relay.off"){ // Turn off relay
digitalWrite(relay,LOW);
Udp.beginPacket(Udp.remoteIP(),Udp.remotePort());
Udp.write("relay.off");
Udp.endPacket();
}
if(serial_command == "wifi.reset"){ // Reset WiFi settings
Serial.println("Resetting WiFi settings...");
EEPROM.begin(64);
for(int i=0; i<64; i++) {
EEPROM.write(i, 0); // Clear EEPROM
}
EEPROM.end();
Serial.println("WiFi settings reset.");
Udp.beginPacket(Udp.remoteIP(),Udp.remotePort());
Udp.write("WiFi settings reset.");
Udp.endPacket();
return;
}
}
void loop(){
int packetSize = Udp.parsePacket();
if(packetSize){
Serial.printf("Received %d bytes from client: %s:%d\n",packetSize,Udp.remoteIP().toString()); // Report income udp packet
int len = Udp.read(incomingPacket,536);
if(len>0){
incomingPacket[len] = 0;
Serial.printf("UDP packet contents: %s\n", incomingPacket);
if(strcmp(incomingPacket, "udp.test") == 0){ // Test UDP connection
UdpbeginPacketTest = Udp.beginPacket(Udp.remoteIP(),Udp.remotePort());
if(UdpbeginPacketTest=1){
Serial.println("Udp beginPacket test pass.");
}
Udp.write("udp test pass");
UdpendPacketTest = Udp.endPacket();
if(UdpendPacketTest=1){
Serial.println("Udp endPacket test pass.");
}
return;
}
if(strcmp(incomingPacket, "device.read") == 0 ||
strcmp(incomingPacket, "led.read") == 0 ||
strcmp(incomingPacket, "relay.read") == 0 ||
strcmp(incomingPacket, "led.on") == 0 ||
strcmp(incomingPacket, "led.off") == 0 ||
strcmp(incomingPacket, "relay.on") == 0 ||
strcmp(incomingPacket, "relay.off") == 0) {
serial_action(incomingPacket);
} else {
Serial.println("Unknown command received.");
Udp.beginPacket(Udp.remoteIP(),Udp.remotePort());
Udp.write("Unknown command");
Udp.endPacket();
}
}
}
if(Serial.available()) { // Check if there is data available on serial port
String serial_command = Serial.readStringUntil('\n'); // Read serial command
serial_command.trim(); // Remove whitespace
Serial.printf("Received command: %s\n", serial_command.c_str()); // Print received command
if(serial_command == "device.read" ||
serial_command == "led.read" ||
serial_command == "relay.read" ||
serial_command == "led.on" ||
serial_command == "led.off" ||
serial_command == "relay.on" ||
serial_command == "relay.off" ||
serial_command == "wifi.reset") {
serial_action(serial_command); // Handle the command
} else {
Serial.println("Unknown command received.");
}
}
if(!WL_CONNECTED == WiFi.status()){ // Check if WiFi is connected
Serial.println("WiFi disconnected, trying to reconnect...");
digitalWrite(ledPin,LOW); // Turn off LED while reconnecting
WiFi.disconnect();
WiFi.begin();
while(WiFi.status() != WL_CONNECTED){ // Wait for WiFi connection
delay(500);
Serial.print(".");
digitalWrite(ledPin,HIGH); // Blink LED while connecting
delay(500);
digitalWrite(ledPin,LOW); // Blink LED while connecting
}
Serial.println("Reconnected to WiFi.");
digitalWrite(ledPin,LOW); // Turn on LED after reconnected
}
// TODO: Implement web server functionality
// if(server.hasClient()){ // Check if there is a client connected
// WiFiClient client = server.available();
// if(client){
// Serial.println("New client connected.");
// String currentLine = "";
// while(client.connected()){
// if(client.available()){
// char c = client.read();
// Serial.write(c);
// if(c == '\n'){
// if(currentLine.length() == 0){
// client.println("HTTP/1.1 200 OK");
// client.println("Content-Type: text/html");
// client.println("Connection: close");
// client.println();
// client.println("<!DOCTYPE HTML>");
// client.println("<html>");
// client.println("<head><title>Smart Socket</title></head>");
// client.println("<body>");
// client.println("<h1>Smart Socket</h1>");
// client.println("<p>ESP8266EX Smart Socket</p>");
// client.println("<p>Firmware Version: 1.0.1.stable</p>");
// client.println("<p>Developer: Madobi Nanami</p>");
// client.println("</body></html>");
// break;
// } else {
// currentLine = "";
// }
// } else if(c != '\r') {
// currentLine += c;
// }
// }
// }
// delay(1);
// client.stop();
// Serial.println("Client disconnected.");
// }
// }
}
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This directory is intended for PlatformIO Test Runner and project tests.
Unit Testing is a software testing method by which individual units of
source code, sets of one or more MCU program modules together with associated
control data, usage procedures, and operating procedures, are tested to
determine whether they are fit for use. Unit testing finds problems early
in the development cycle.
More information about PlatformIO Unit Testing:
- https://docs.platformio.org/en/latest/advanced/unit-testing/index.html