Added WiFi AP console mode
This commit is contained in:
parent
da1d9e732b
commit
910d50f11e
@ -109,7 +109,7 @@ char bt_devname[11];
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bool bt_init() {
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bt_state = BT_STATE_OFF;
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if (bt_setup_hw()) {
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if (bt_enabled) bt_start();
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if (bt_enabled && !console_active) bt_start();
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return true;
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} else {
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return false;
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5
Config.h
5
Config.h
@ -42,6 +42,11 @@
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bool bt_enabled = false;
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bool bt_allow_pairing = false;
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#define M_FRQ_S 27388122
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#define M_FRQ_R 27388061
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bool console_active = false;
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bool sx1276_installed = false;
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#if defined(__AVR_ATmega1284P__)
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#define PLATFORM PLATFORM_AVR
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#define MCU_VARIANT MCU_1284P
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178
Console.h
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178
Console.h
Normal file
@ -0,0 +1,178 @@
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#include <FS.h>
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#include <SPIFFS.h>
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#include <WiFi.h>
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#include <WebServer.h>
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#if CONFIG_IDF_TARGET_ESP32
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#include "esp32/rom/rtc.h"
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#elif CONFIG_IDF_TARGET_ESP32S2
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#include "esp32s2/rom/rtc.h"
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#elif CONFIG_IDF_TARGET_ESP32C3
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#include "esp32c3/rom/rtc.h"
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#elif CONFIG_IDF_TARGET_ESP32S3
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#include "esp32s3/rom/rtc.h"
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#else
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#error Target CONFIG_IDF_TARGET is not supported
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#endif
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// Replace with your network credentials
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const char* ssid = "RNode Test";
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const char* password = "somepass";
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WebServer server(80);
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void console_dbg(String msg) {
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Serial.print("[Webserver] ");
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Serial.println(msg);
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}
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bool exists(String path){
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bool yes = false;
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File file = SPIFFS.open(path, "r");
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if(!file.isDirectory()){
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yes = true;
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}
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file.close();
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return yes;
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}
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String console_get_content_type(String filename) {
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if (server.hasArg("download")) {
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return "application/octet-stream";
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} else if (filename.endsWith(".htm")) {
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return "text/html";
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} else if (filename.endsWith(".html")) {
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return "text/html";
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} else if (filename.endsWith(".css")) {
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return "text/css";
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} else if (filename.endsWith(".js")) {
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return "application/javascript";
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} else if (filename.endsWith(".png")) {
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return "image/png";
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} else if (filename.endsWith(".gif")) {
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return "image/gif";
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} else if (filename.endsWith(".jpg")) {
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return "image/jpeg";
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} else if (filename.endsWith(".ico")) {
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return "image/x-icon";
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} else if (filename.endsWith(".xml")) {
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return "text/xml";
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} else if (filename.endsWith(".pdf")) {
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return "application/x-pdf";
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} else if (filename.endsWith(".zip")) {
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return "application/x-zip";
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} else if (filename.endsWith(".gz")) {
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return "application/x-gzip";
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}
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return "text/plain";
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}
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bool console_serve_file(String path) {
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console_dbg("Request for: "+path);
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if (path.endsWith("/")) {
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path += "index.html";
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}
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String content_type = console_get_content_type(path);
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String pathWithGz = path + ".gz";
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if (exists(pathWithGz) || exists(path)) {
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if (exists(pathWithGz)) {
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path += ".gz";
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}
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File file = SPIFFS.open(path, "r");
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console_dbg("Serving file to client");
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server.streamFile(file, content_type);
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file.close();
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console_dbg("File serving done");
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return true;
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}
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console_dbg("Error: Could not open file for serving");
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return false;
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}
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void console_register_pages() {
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server.onNotFound([]() {
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if (!console_serve_file(server.uri())) {
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server.send(404, "text/plain", "Not Found");
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}
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});
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}
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void console_start() {
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Serial.println("");
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console_dbg("Starting Access Point...");
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// WiFi.softAP(ssid, password);
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WiFi.softAP(bt_devname, password);
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delay(150);
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IPAddress ip(10, 0, 0, 1);
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IPAddress nm(255, 255, 255, 0);
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WiFi.softAPConfig(ip, ip, nm);
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if(!SPIFFS.begin(true)){
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console_dbg("Error: Could not mount SPIFFS");
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return;
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} else {
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console_dbg("SPIFFS Ready");
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}
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console_register_pages();
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server.begin();
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led_indicate_console();
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}
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void console_loop(){
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server.handleClient();
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// Internally, this yields the thread and allows
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// other tasks to run.
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delay(5);
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}
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// void listDir(fs::FS &fs, const char * dirname, uint8_t levels){
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// Serial.printf("Listing directory: %s\r\n", dirname);
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// File root = fs.open(dirname);
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// if(!root){
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// Serial.println("- failed to open directory");
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// return;
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// }
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// if(!root.isDirectory()){
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// Serial.println(" - not a directory");
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// return;
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// }
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// File file = root.openNextFile();
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// while(file){
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// if(file.isDirectory()){
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// Serial.print(" DIR : ");
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// Serial.println(file.name());
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// if(levels){
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// listDir(fs, file.path(), levels -1);
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// }
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// } else {
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// Serial.print(" FILE: ");
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// Serial.print(file.name());
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// Serial.print("\tSIZE: ");
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// Serial.println(file.size());
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// }
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// file = root.openNextFile();
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// }
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// }
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// void readFile(fs::FS &fs, const char * path){
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// Serial.printf("Reading file: %s\r\n", path);
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// File file = fs.open(path);
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// if(!file || file.isDirectory()){
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// Serial.println("− failed to open file for reading");
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// return;
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// }
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// Serial.println("− read from file:");
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// while(file.available()){
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// Serial.write(file.read());
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// }
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// }
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14
Console/index.html
Normal file
14
Console/index.html
Normal file
File diff suppressed because one or more lines are too long
35
LoRa.cpp
35
LoRa.cpp
@ -85,6 +85,8 @@
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#define MAX_PKT_LENGTH 255
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bool lora_preinit_done = false;
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LoRaClass::LoRaClass() :
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_spiSettings(8E6, MSBFIRST, SPI_MODE0),
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_ss(LORA_DEFAULT_SS_PIN), _reset(LORA_DEFAULT_RESET_PIN), _dio0(LORA_DEFAULT_DIO0_PIN),
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@ -97,13 +99,26 @@ LoRaClass::LoRaClass() :
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setTimeout(0);
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}
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int LoRaClass::begin(long frequency)
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{
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bool LoRaClass::preInit() {
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// setup pins
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pinMode(_ss, OUTPUT);
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// set SS high
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digitalWrite(_ss, HIGH);
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SPI.begin();
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// check version
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uint8_t version = readRegister(REG_VERSION);
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if (version != 0x12) {
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return false;
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}
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lora_preinit_done = true;
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return true;
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}
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int LoRaClass::begin(long frequency)
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{
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if (_reset != -1) {
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pinMode(_reset, OUTPUT);
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@ -114,13 +129,10 @@ int LoRaClass::begin(long frequency)
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delay(10);
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}
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// start SPI
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SPI.begin();
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// check version
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uint8_t version = readRegister(REG_VERSION);
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if (version != 0x12) {
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return 0;
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if (!lora_preinit_done) {
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if (!preInit()) {
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return false;
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}
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}
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// put in sleep mode
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@ -433,6 +445,11 @@ void LoRaClass::setTxPower(int level, int outputPin) {
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}
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}
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uint8_t LoRaClass::getTxPower() {
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byte txp = readRegister(REG_PA_CONFIG);
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return txp;
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}
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void LoRaClass::setFrequency(long frequency) {
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_frequency = frequency;
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2
LoRa.h
2
LoRa.h
@ -54,6 +54,8 @@ public:
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void idle();
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void sleep();
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bool preInit();
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uint8_t getTxPower();
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void setTxPower(int level, int outputPin = PA_OUTPUT_PA_BOOST_PIN);
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uint32_t getFrequency();
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void setFrequency(long frequency);
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@ -32,9 +32,6 @@ char sbuf[128];
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bool packet_ready = false;
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#endif
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// TODO: Implement
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bool console_active = true;
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void setup() {
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#if MCU_VARIANT == MCU_ESP32
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boot_seq();
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@ -75,6 +72,26 @@ void setup() {
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// Set chip select, reset and interrupt
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// pins for the LoRa module
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LoRa.setPins(pin_cs, pin_reset, pin_dio);
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if (LoRa.preInit()) {
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sx1276_installed = true;
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uint32_t lfr = LoRa.getFrequency();
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if (lfr == 0) {
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// Normal boot
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} else if (lfr == M_FRQ_R) {
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// Quick reboot
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#if HAS_CONSOLE
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if (rtc_get_reset_reason(0) == POWERON_RESET) {
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console_active = true;
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}
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#endif
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} else {
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// Unknown boot
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}
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LoRa.setFrequency(M_FRQ_S);
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} else {
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sx1276_installed = false;
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}
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#if HAS_DISPLAY
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disp_ready = display_init();
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@ -91,15 +108,17 @@ void setup() {
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bt_init_ran = true;
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#endif
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kiss_indicate_reset();
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if (console_active) {
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console_start();
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} else {
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kiss_indicate_reset();
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}
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#endif
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// Validate board health, EEPROM and config
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validate_status();
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LoRa.setFrequency(0);
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}
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void lora_receive() {
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@ -864,16 +883,27 @@ void validate_status() {
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if (eeprom_product_valid() && eeprom_model_valid() && eeprom_hwrev_valid()) {
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if (eeprom_checksum_valid()) {
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eeprom_ok = true;
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#if PLATFORM == PLATFORM_ESP32
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if (device_init()) {
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if (sx1276_installed) {
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#if PLATFORM == PLATFORM_ESP32
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if (device_init()) {
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hw_ready = true;
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} else {
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hw_ready = false;
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}
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#else
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hw_ready = true;
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} else {
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hw_ready = false;
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}
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#else
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hw_ready = true;
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#endif
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#endif
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} else {
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hw_ready = false;
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Serial.write("No SX1276/SX1278 radio module found\r\n");
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#if HAS_DISPLAY
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if (disp_ready) {
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device_init_done = true;
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update_display();
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}
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#endif
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}
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if (hw_ready && eeprom_have_conf()) {
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eeprom_conf_load();
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op_mode = MODE_TNC;
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@ -969,8 +999,10 @@ void loop() {
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}
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#if MCU_VARIANT == MCU_ESP32
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buffer_serial();
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if (!fifo_isempty(&serialFIFO)) serial_poll();
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// if (!console_active) {
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buffer_serial();
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if (!fifo_isempty(&serialFIFO)) serial_poll();
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// }
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#else
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if (!fifo_isempty_locked(&serialFIFO)) serial_poll();
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#endif
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@ -984,7 +1016,7 @@ void loop() {
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#endif
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#if HAS_BLUETOOTH
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if (bt_ready) update_bt();
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if (!console_active && bt_ready) update_bt();
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#endif
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}
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BIN
Release/spiffs.bin
Normal file
BIN
Release/spiffs.bin
Normal file
Binary file not shown.
38
Utilities.h
38
Utilities.h
@ -326,6 +326,7 @@ unsigned long led_standby_ticks = 0;
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int8_t led_notready_direction = 0;
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unsigned long led_notready_ticks = 0;
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unsigned long led_standby_wait = 350;
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unsigned long led_console_wait = 1;
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unsigned long led_notready_wait = 200;
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#else
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@ -389,6 +390,34 @@ int8_t led_standby_direction = 0;
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}
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}
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void led_indicate_console() {
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npset(0x60, 0x00, 0x60);
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// led_standby_ticks++;
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// if (led_standby_ticks > led_console_wait) {
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// led_standby_ticks = 0;
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// if (led_standby_value <= led_standby_min) {
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// led_standby_direction = 1;
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// } else if (led_standby_value >= led_standby_max) {
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// led_standby_direction = -1;
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// }
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// uint8_t led_standby_intensity;
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// led_standby_value += led_standby_direction;
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// int led_standby_ti = led_standby_value - led_standby_lng;
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// if (led_standby_ti < 0) {
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// led_standby_intensity = 0;
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// } else if (led_standby_ti > led_standby_cut) {
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// led_standby_intensity = led_standby_cut;
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// } else {
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// led_standby_intensity = led_standby_ti;
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// }
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// npset(led_standby_intensity, 0x00, led_standby_intensity);
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// }
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}
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#else
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void led_indicate_standby() {
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led_standby_ticks++;
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@ -418,6 +447,10 @@ int8_t led_standby_direction = 0;
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#endif
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}
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}
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void led_indicate_console() {
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led_indicate_standby();
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}
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#endif
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#endif
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@ -804,6 +837,11 @@ void set_implicit_length(uint8_t len) {
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}
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}
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int getTxPower() {
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uint8_t txp = LoRa.getTxPower();
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return (int)txp;
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}
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void setTXPower() {
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if (radio_online) {
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if (model == MODEL_A2) LoRa.setTxPower(lora_txp, PA_OUTPUT_PA_BOOST_PIN);
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