First Working version of the Emergengy pusher.
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5
.gitignore
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5
.gitignore
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.pio
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.vscode/.browse.c_cpp.db*
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.vscode/c_cpp_properties.json
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.vscode/launch.json
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.vscode/ipch
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10
.vscode/extensions.json
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10
.vscode/extensions.json
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{
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// See http://go.microsoft.com/fwlink/?LinkId=827846
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// for the documentation about the extensions.json format
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"recommendations": [
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"platformio.platformio-ide"
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],
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"unwantedRecommendations": [
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"ms-vscode.cpptools-extension-pack"
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]
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}
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7
.vscode/settings.json
vendored
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7
.vscode/settings.json
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{
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"files.associations": {
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"array": "cpp",
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"string": "cpp",
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"string_view": "cpp"
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}
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}
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39
include/README
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39
include/README
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This directory is intended for project header files.
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A header file is a file containing C declarations and macro definitions
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to be shared between several project source files. You request the use of a
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header file in your project source file (C, C++, etc) located in `src` folder
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by including it, with the C preprocessing directive `#include'.
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```src/main.c
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#include "header.h"
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int main (void)
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{
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...
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}
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```
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Including a header file produces the same results as copying the header file
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into each source file that needs it. Such copying would be time-consuming
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and error-prone. With a header file, the related declarations appear
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in only one place. If they need to be changed, they can be changed in one
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place, and programs that include the header file will automatically use the
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new version when next recompiled. The header file eliminates the labor of
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finding and changing all the copies as well as the risk that a failure to
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find one copy will result in inconsistencies within a program.
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In C, the usual convention is to give header files names that end with `.h'.
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It is most portable to use only letters, digits, dashes, and underscores in
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header file names, and at most one dot.
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Read more about using header files in official GCC documentation:
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* Include Syntax
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* Include Operation
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* Once-Only Headers
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* Computed Includes
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https://gcc.gnu.org/onlinedocs/cpp/Header-Files.html
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46
lib/README
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46
lib/README
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This directory is intended for project specific (private) libraries.
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PlatformIO will compile them to static libraries and link into executable file.
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The source code of each library should be placed in a an own separate directory
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("lib/your_library_name/[here are source files]").
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For example, see a structure of the following two libraries `Foo` and `Bar`:
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|--lib
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| |
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| |--Bar
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| | |--docs
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| | |--examples
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| | |--src
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| | |- Bar.c
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| | |- Bar.h
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| | |- library.json (optional, custom build options, etc) https://docs.platformio.org/page/librarymanager/config.html
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| |
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| |--Foo
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| | |- Foo.c
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| | |- Foo.h
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| |
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| |- README --> THIS FILE
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|
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|- platformio.ini
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|--src
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|- main.c
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and a contents of `src/main.c`:
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```
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#include <Foo.h>
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#include <Bar.h>
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int main (void)
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{
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...
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}
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```
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PlatformIO Library Dependency Finder will find automatically dependent
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libraries scanning project source files.
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More information about PlatformIO Library Dependency Finder
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- https://docs.platformio.org/page/librarymanager/ldf.html
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15
platformio.ini
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15
platformio.ini
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; PlatformIO Project Configuration File
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;
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; Build options: build flags, source filter
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; Upload options: custom upload port, speed and extra flags
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; Library options: dependencies, extra library storages
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; Advanced options: extra scripting
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;
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; Please visit documentation for the other options and examples
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; https://docs.platformio.org/page/projectconf.html
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[env:esp32doit-devkit-v1]
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platform = espressif32
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board = esp32doit-devkit-v1
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framework = arduino
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monitor_speed = 115200
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199
src/main.cpp
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199
src/main.cpp
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#include <Arduino.h>
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#include <esp_now.h>
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#include <WiFi.h>
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// GPIOs
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#define GPIO_EMERGENCY_LED 5
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#define GPIO_SYNC_LED 19
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#define GPIO_EMERGENCY_BUTTON 16
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// Software Parameters
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#define LOOP_DELAY 1
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#define PING_TIMEOUT_NUM_LOOPS 2
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#define EMERGENCY_BUTTON_SCAN_RATE_SECONDS 2
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String macList[2] = {"24:6F:28:B1:EE:74", "24:6F:28:B2:40:8C"};
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String macLocal,macRemote;
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uint8_t macRemoteIntArr[6];
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esp_now_peer_info_t peerInfo={};
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int64_t lastPingUptimeInSeconds;
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volatile int64_t lastButtonPushUptimeInSeconds;
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boolean isReceiverEmergencyLedOn;
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volatile boolean isSenderEmergency;
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typedef struct struct_info {
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boolean isEmergency;
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boolean isPing;
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String macOfSender;
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} struct_info;
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struct_info myData;
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int64_t getUptimeInSeconds(){
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return esp_timer_get_time()/1000000;
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}
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// Callback when data is sent
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void OnDataSent(const uint8_t *mac_addr, esp_now_send_status_t status) {
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Serial.print("\r\nLast Packet Send Status:\t");
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Serial.println(status == ESP_NOW_SEND_SUCCESS ? "Delivery Success" : "Delivery Fail");
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}
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// Callback when data is received
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void OnDataRecv(const uint8_t * mac, const uint8_t *incomingData, int len) {
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struct_info myData;
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memcpy(&myData, incomingData, sizeof(incomingData));
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Serial.print("Bytes received: ");
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Serial.println(len);
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Serial.printf("d:_%d_|",myData.isPing);
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if (myData.isPing) {
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lastPingUptimeInSeconds=getUptimeInSeconds();
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}
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if(myData.isEmergency) {
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digitalWrite(GPIO_EMERGENCY_LED,HIGH);
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isReceiverEmergencyLedOn=true;
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} else {
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digitalWrite(GPIO_EMERGENCY_LED,LOW);
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isReceiverEmergencyLedOn=false;
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}
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}
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void OnButtonPushed(){
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Serial.println("BUTTON PUSH CALLBACK.");
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if((getUptimeInSeconds()-lastButtonPushUptimeInSeconds)>EMERGENCY_BUTTON_SCAN_RATE_SECONDS){
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isSenderEmergency=!isSenderEmergency;
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lastButtonPushUptimeInSeconds=getUptimeInSeconds();
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Serial.println("BUTTON PUSH EXEC.");
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}
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}
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int char2int(char input)
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{
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if(input >= '0' && input <= '9')
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return input - '0';
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if(input >= 'A' && input <= 'F')
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return input - 'A' + 10;
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if(input >= 'a' && input <= 'f')
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return input - 'a' + 10;
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throw std::invalid_argument("Invalid input string");
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}
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// This function assumes src to be a zero terminated sanitized string with
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// an even number of [0-9a-f] characters, and target to be sufficiently large
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void hex2bin(const char* src, uint8_t* target)
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{
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while(*src && src[1])
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{
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*(target++) = char2int(*src)*16 + char2int(src[1]);
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src += 2;
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}
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}
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void setup(){
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sleep(LOOP_DELAY); // give the serial monitor a moment to connect.
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Serial.begin(115200);
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WiFi.mode(WIFI_MODE_STA);
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macLocal=WiFi.macAddress();
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macRemote=macList[macList[0]==macLocal?1:0];
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Serial.println("Local [" + macLocal + "] -> Remote: [" + macRemote+"]");
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// Init ESP-NOW
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if (esp_now_init() != ESP_OK) {
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Serial.println("Error initializing ESP-NOW");
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return;
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}
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// Once ESPNow is successfully Init, we will register for Send CB to
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// get the status of Trasnmitted packet
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esp_now_register_send_cb(OnDataSent);
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// Register peer
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String macRemoteNoColon=macRemote;
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macRemoteNoColon.replace(":","");
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char macRemoteNoColonCharArr[13];
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macRemoteNoColon.toCharArray(macRemoteNoColonCharArr,sizeof(macRemoteNoColonCharArr));
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for (int i=0;i<12;i++){
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Serial.print( macRemoteNoColonCharArr[i]);
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Serial.print(".");
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}
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Serial.println("<--- HEX CA");
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hex2bin(macRemoteNoColonCharArr,macRemoteIntArr);
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for (int i=0;i<6;i++){
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Serial.printf( "%d|%X - ",macRemoteIntArr[i],macRemoteIntArr[i]);
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}
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Serial.println("<--- DEC REM");
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memcpy(peerInfo.peer_addr, macRemoteIntArr, 6);
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peerInfo.channel = 0;
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peerInfo.encrypt = false;
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peerInfo.ifidx = WIFI_IF_STA;
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// Add peer
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if (esp_now_add_peer(&peerInfo) != ESP_OK){
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Serial.println("Failed to add peer");
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return;
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}
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// Register for a callback function that will be called when data is received
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esp_now_register_recv_cb(OnDataRecv);
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pinMode(GPIO_EMERGENCY_LED, OUTPUT);
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digitalWrite(GPIO_EMERGENCY_LED,LOW);
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pinMode(GPIO_SYNC_LED,OUTPUT);
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digitalWrite(GPIO_SYNC_LED,LOW);
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pinMode(GPIO_EMERGENCY_BUTTON,INPUT_PULLDOWN);
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attachInterrupt(GPIO_EMERGENCY_BUTTON, OnButtonPushed, RISING);
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myData.isPing=1;
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myData.macOfSender="";
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isReceiverEmergencyLedOn=false;
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myData.isEmergency=false;
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isSenderEmergency=false;
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lastButtonPushUptimeInSeconds=getUptimeInSeconds();
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}
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void loop(){
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// Send message via ESP-NOW
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sleep(LOOP_DELAY);
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boolean isButtonPushed = (HIGH== digitalRead(GPIO_EMERGENCY_BUTTON));
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Serial.println(isButtonPushed?"PUSHED":"RELEASED");
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// only one device has a button, the origin will tell the recipient to revert back the status.
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if (isButtonPushed) {
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myData.macOfSender=macLocal;
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}
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if (myData.macOfSender!=macLocal) {
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myData.isEmergency=isReceiverEmergencyLedOn;
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} else {
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myData.isEmergency=isSenderEmergency;
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}
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esp_err_t result = esp_now_send(macRemoteIntArr,(uint8_t *) &myData, sizeof(myData));
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Serial.println(myData.isEmergency?"EMERGENGY ON":"EMERGENCY OFF");
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Serial.println((isSenderEmergency==1)?"SEN EMERG ON":"SEN EMERG OFF");
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if ((getUptimeInSeconds()-lastPingUptimeInSeconds) < (LOOP_DELAY*PING_TIMEOUT_NUM_LOOPS)) {
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digitalWrite(GPIO_SYNC_LED,HIGH);
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} else {
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digitalWrite(GPIO_SYNC_LED,LOW);
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}
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switch (result) {
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case ESP_OK:
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Serial.println("[" +macLocal+ "] Sent with success");
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break;
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case ESP_ERR_ESPNOW_NOT_FOUND:
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Serial.println("[" +macLocal+ "] Peer not Avavilable");
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break;
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default:
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Serial.printf("[%s] Error sending the data [%X]\n",macLocal,result);
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}
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}
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11
test/README
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11
test/README
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This directory is intended for PlatformIO Test Runner and project tests.
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Unit Testing is a software testing method by which individual units of
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source code, sets of one or more MCU program modules together with associated
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control data, usage procedures, and operating procedures, are tested to
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determine whether they are fit for use. Unit testing finds problems early
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in the development cycle.
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More information about PlatformIO Unit Testing:
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- https://docs.platformio.org/en/latest/advanced/unit-testing/index.html
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