First Working version of the Emergengy pusher.

This commit is contained in:
Joe Tretter
2023-10-12 17:15:19 -05:00
commit e7f33b5af2
8 changed files with 332 additions and 0 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"
],
"unwantedRecommendations": [
"ms-vscode.cpptools-extension-pack"
]
}

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{
"files.associations": {
"array": "cpp",
"string": "cpp",
"string_view": "cpp"
}
}

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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

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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 a 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
[env:esp32doit-devkit-v1]
platform = espressif32
board = esp32doit-devkit-v1
framework = arduino
monitor_speed = 115200

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#include <Arduino.h>
#include <esp_now.h>
#include <WiFi.h>
// GPIOs
#define GPIO_EMERGENCY_LED 5
#define GPIO_SYNC_LED 19
#define GPIO_EMERGENCY_BUTTON 16
// Software Parameters
#define LOOP_DELAY 1
#define PING_TIMEOUT_NUM_LOOPS 2
#define EMERGENCY_BUTTON_SCAN_RATE_SECONDS 2
String macList[2] = {"24:6F:28:B1:EE:74", "24:6F:28:B2:40:8C"};
String macLocal,macRemote;
uint8_t macRemoteIntArr[6];
esp_now_peer_info_t peerInfo={};
int64_t lastPingUptimeInSeconds;
volatile int64_t lastButtonPushUptimeInSeconds;
boolean isReceiverEmergencyLedOn;
volatile boolean isSenderEmergency;
typedef struct struct_info {
boolean isEmergency;
boolean isPing;
String macOfSender;
} struct_info;
struct_info myData;
int64_t getUptimeInSeconds(){
return esp_timer_get_time()/1000000;
}
// Callback when data is sent
void OnDataSent(const uint8_t *mac_addr, esp_now_send_status_t status) {
Serial.print("\r\nLast Packet Send Status:\t");
Serial.println(status == ESP_NOW_SEND_SUCCESS ? "Delivery Success" : "Delivery Fail");
}
// Callback when data is received
void OnDataRecv(const uint8_t * mac, const uint8_t *incomingData, int len) {
struct_info myData;
memcpy(&myData, incomingData, sizeof(incomingData));
Serial.print("Bytes received: ");
Serial.println(len);
Serial.printf("d:_%d_|",myData.isPing);
if (myData.isPing) {
lastPingUptimeInSeconds=getUptimeInSeconds();
}
if(myData.isEmergency) {
digitalWrite(GPIO_EMERGENCY_LED,HIGH);
isReceiverEmergencyLedOn=true;
} else {
digitalWrite(GPIO_EMERGENCY_LED,LOW);
isReceiverEmergencyLedOn=false;
}
}
void OnButtonPushed(){
Serial.println("BUTTON PUSH CALLBACK.");
if((getUptimeInSeconds()-lastButtonPushUptimeInSeconds)>EMERGENCY_BUTTON_SCAN_RATE_SECONDS){
isSenderEmergency=!isSenderEmergency;
lastButtonPushUptimeInSeconds=getUptimeInSeconds();
Serial.println("BUTTON PUSH EXEC.");
}
}
int char2int(char input)
{
if(input >= '0' && input <= '9')
return input - '0';
if(input >= 'A' && input <= 'F')
return input - 'A' + 10;
if(input >= 'a' && input <= 'f')
return input - 'a' + 10;
throw std::invalid_argument("Invalid input string");
}
// This function assumes src to be a zero terminated sanitized string with
// an even number of [0-9a-f] characters, and target to be sufficiently large
void hex2bin(const char* src, uint8_t* target)
{
while(*src && src[1])
{
*(target++) = char2int(*src)*16 + char2int(src[1]);
src += 2;
}
}
void setup(){
sleep(LOOP_DELAY); // give the serial monitor a moment to connect.
Serial.begin(115200);
WiFi.mode(WIFI_MODE_STA);
macLocal=WiFi.macAddress();
macRemote=macList[macList[0]==macLocal?1:0];
Serial.println("Local [" + macLocal + "] -> Remote: [" + macRemote+"]");
// Init ESP-NOW
if (esp_now_init() != ESP_OK) {
Serial.println("Error initializing ESP-NOW");
return;
}
// Once ESPNow is successfully Init, we will register for Send CB to
// get the status of Trasnmitted packet
esp_now_register_send_cb(OnDataSent);
// Register peer
String macRemoteNoColon=macRemote;
macRemoteNoColon.replace(":","");
char macRemoteNoColonCharArr[13];
macRemoteNoColon.toCharArray(macRemoteNoColonCharArr,sizeof(macRemoteNoColonCharArr));
for (int i=0;i<12;i++){
Serial.print( macRemoteNoColonCharArr[i]);
Serial.print(".");
}
Serial.println("<--- HEX CA");
hex2bin(macRemoteNoColonCharArr,macRemoteIntArr);
for (int i=0;i<6;i++){
Serial.printf( "%d|%X - ",macRemoteIntArr[i],macRemoteIntArr[i]);
}
Serial.println("<--- DEC REM");
memcpy(peerInfo.peer_addr, macRemoteIntArr, 6);
peerInfo.channel = 0;
peerInfo.encrypt = false;
peerInfo.ifidx = WIFI_IF_STA;
// Add peer
if (esp_now_add_peer(&peerInfo) != ESP_OK){
Serial.println("Failed to add peer");
return;
}
// Register for a callback function that will be called when data is received
esp_now_register_recv_cb(OnDataRecv);
pinMode(GPIO_EMERGENCY_LED, OUTPUT);
digitalWrite(GPIO_EMERGENCY_LED,LOW);
pinMode(GPIO_SYNC_LED,OUTPUT);
digitalWrite(GPIO_SYNC_LED,LOW);
pinMode(GPIO_EMERGENCY_BUTTON,INPUT_PULLDOWN);
attachInterrupt(GPIO_EMERGENCY_BUTTON, OnButtonPushed, RISING);
myData.isPing=1;
myData.macOfSender="";
isReceiverEmergencyLedOn=false;
myData.isEmergency=false;
isSenderEmergency=false;
lastButtonPushUptimeInSeconds=getUptimeInSeconds();
}
void loop(){
// Send message via ESP-NOW
sleep(LOOP_DELAY);
boolean isButtonPushed = (HIGH== digitalRead(GPIO_EMERGENCY_BUTTON));
Serial.println(isButtonPushed?"PUSHED":"RELEASED");
// only one device has a button, the origin will tell the recipient to revert back the status.
if (isButtonPushed) {
myData.macOfSender=macLocal;
}
if (myData.macOfSender!=macLocal) {
myData.isEmergency=isReceiverEmergencyLedOn;
} else {
myData.isEmergency=isSenderEmergency;
}
esp_err_t result = esp_now_send(macRemoteIntArr,(uint8_t *) &myData, sizeof(myData));
Serial.println(myData.isEmergency?"EMERGENGY ON":"EMERGENCY OFF");
Serial.println((isSenderEmergency==1)?"SEN EMERG ON":"SEN EMERG OFF");
if ((getUptimeInSeconds()-lastPingUptimeInSeconds) < (LOOP_DELAY*PING_TIMEOUT_NUM_LOOPS)) {
digitalWrite(GPIO_SYNC_LED,HIGH);
} else {
digitalWrite(GPIO_SYNC_LED,LOW);
}
switch (result) {
case ESP_OK:
Serial.println("[" +macLocal+ "] Sent with success");
break;
case ESP_ERR_ESPNOW_NOT_FOUND:
Serial.println("[" +macLocal+ "] Peer not Avavilable");
break;
default:
Serial.printf("[%s] Error sending the data [%X]\n",macLocal,result);
}
}

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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