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Author | SHA1 | Date |
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Siwat Sirichai | 5ce76bfef7 | |
Siwat Sirichai | c4d2db98d5 | |
Siwat Sirichai | ee924b8b30 | |
Siwat Sirichai | e31d33273a | |
Siwat Sirichai | 513db506b2 | |
Siwat Sirichai | a056531ab0 | |
Siwat Sirichai | ca0ee31e95 | |
Siwat Sirichai | 87f0ee073b |
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@ -73,7 +73,9 @@ bool ESPMegaPRO::begin()
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esp_restart();
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}
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}
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// Recovery Mode
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recovery.bindFRAM(&fram, 600);
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recovery.begin();
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return true;
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}
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@ -89,6 +91,7 @@ void ESPMegaPRO::loop()
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{
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inputs.loop();
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outputs.loop();
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recovery.loop();
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for (int i = 0; i < 255; i++)
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{
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if (cardInstalled[i])
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@ -15,6 +15,7 @@
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#include <ESPMegaDisplay.hpp>
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#include <InternalDisplay.hpp>
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#include <ESPMegaWebServer.hpp>
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#include <ESPMegaRecovery.hpp>
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// ESPMega Pro R3 Board Address
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#define FRAM_ADDRESS 0x56
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@ -82,6 +83,11 @@ class ESPMegaPRO {
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* @note You must call enableWebServer() before using this component.
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*/
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ESPMegaWebServer *webServer;
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/**
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* @brief This component is used to enter recovery mode when the ESPMegaPRO board is in a bootloop.
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* @typedef ESPMegaRecovery
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*/
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ESPMegaRecovery recovery;
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private:
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bool iotEnabled = false;
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bool internalDisplayEnabled = false;
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@ -0,0 +1,141 @@
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#include <ESPMegaRecovery.hpp>
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ESPMegaRecovery::ESPMegaRecovery()
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{
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// Initialize all the pointers to null
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this->fram = nullptr;
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this->fram_address = 0;
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this->bootloop_counter = 0;
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this->recovery_mode = false;
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this->web_server = nullptr;
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this->iot = nullptr;
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}
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void ESPMegaRecovery::begin() {
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// Retrieve the bootloop counter from the FRAM
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if(this->fram != nullptr) {
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this->bootloop_counter = this->fram->read8(this->fram_address);
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}
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// Inclement the bootloop counter
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this->inclementBootloopCounter();
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ESP_LOGV("ESPMegaRecovery", "Bootloop counter: %d", this->getBootloopCounter());
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// If the bootloop counter is greater than 5, enter recovery mode
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if(this->getBootloopCounter() > 5) {
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ESP_LOGE("ESPMegaRecovery", "Bootloop detected");
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// Reset the bootloop counter to prevent re-entering recovery mode
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// The device might unintentionally restart multiple times
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// By resetting the counter, the user can press reset once in recovery mode to exit
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ESP_LOGD("ESPMegaRecovery", "Resetting bootloop counter");
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this->resetBootloopCounter();
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ESP_LOGW("ESPMegaRecovery", "Entering recovery mode");
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this->enterRecoveryMode();
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this->loop();
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}
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}
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void ESPMegaRecovery::loop() {
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// If the device is in recovery mode, block all other tasks
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if(this->isRecoveryMode()) {
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int i = 0;
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while(true) {
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if (i%10 == 0) {
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ESP_LOGV("ESPMegaRecovery", "System is in recovery mode, no tasks will be executed");
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ESP_LOGV("ESPMegaRecovery", "Please upload a new firmware to exit recovery mode");
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}
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// This code will become the new loop
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delay(1000);
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i++;
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}
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}
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// Watchdog timer
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static bool booted = false;
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static uint32_t boot_time = millis();
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if(!booted) {
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if(millis() - boot_time > RECOVERY_WATCHDOG_TIMEOUT * 1000) {
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ESP_LOGI("ESPMegaRecovery", "System booted successfully, resetting bootloop counter");
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this->resetBootloopCounter();
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booted = true;
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}
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}
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}
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void ESPMegaRecovery::enterRecoveryMode() {
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// Set the recovery mode flag
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this->recovery_mode = true;
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// Enabling the IoT module
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ESP_LOGI("ESPMegaRecovery", "Enabling the IoT module");
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this->iot = new ESPMegaIoT();
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this->iot->bindFRAM(this->fram);
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ETH.begin();
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this->iot->bindEthernetInterface(Ð);
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ESP_LOGI("ESPMegaRecovery", "Loading network configuration");
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this->iot->loadNetworkConfig();
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ESP_LOGI("ESPMegaRecovery", "Attempting to connect to the network");
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this->iot->connectNetwork();
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// Start the web server
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ESP_LOGI("ESPMegaRecovery", "Starting the web server");
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this->web_server = new ESPMegaWebServer(80, this->iot);
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this->web_server->bindFRAM(this->fram);
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this->web_server->loadCredentialsFromFRAM();
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ESP_LOGI("ESPMegaRecovery", "Aquiring the web server instance");
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AsyncWebServer *server = this->web_server->getServer();
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server->begin();
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// Add OTA update and restart endpoint
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ESP_LOGI("ESPMegaRecovery", "Adding OTA update and reboot endpoints");
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auto bindedDashboardHandler = std::bind(&ESPMegaWebServer::dashboardHandler, this->web_server, std::placeholders::_1);
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auto bindedOtaRequestHandler = std::bind(&ESPMegaWebServer::otaRequestHandler, this->web_server, std::placeholders::_1);
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auto bindedOtaUploadHandler = std::bind(&ESPMegaWebServer::otaUploadHandler, this->web_server, std::placeholders::_1, std::placeholders::_2, std::placeholders::_3, std::placeholders::_4, std::placeholders::_5, std::placeholders::_6);
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auto bindedDeviceInfoHandler = std::bind(&ESPMegaRecovery::getDeviceInfoHandler, this, std::placeholders::_1);
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auto bindedConfigHandler = std::bind(&ESPMegaRecovery::configHandler, this, std::placeholders::_1);
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server->on("/", HTTP_GET, bindedDashboardHandler);
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server->on("/ota_update", HTTP_POST, bindedOtaRequestHandler, bindedOtaUploadHandler);
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server->on("/reboot", HTTP_GET, std::bind(&ESPMegaWebServer::rebootHandler, this->web_server, std::placeholders::_1));
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server->on("/get_device_info", HTTP_GET, bindedDeviceInfoHandler);
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server->on("/config", HTTP_GET, bindedConfigHandler);
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}
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void ESPMegaRecovery::bindFRAM(FRAM *fram, uint32_t address) {
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this->fram = fram;
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this->fram_address = address;
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}
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uint8_t ESPMegaRecovery::getBootloopCounter() {
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return this->bootloop_counter;
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}
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void ESPMegaRecovery::inclementBootloopCounter() {
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this->bootloop_counter++;
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if(this->fram != nullptr) {
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this->fram->write8(this->fram_address, this->bootloop_counter);
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}
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}
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void ESPMegaRecovery::resetBootloopCounter() {
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this->bootloop_counter = 0;
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if(this->fram != nullptr) {
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this->fram->write8(this->fram_address, this->bootloop_counter);
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}
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}
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bool ESPMegaRecovery::isRecoveryMode() {
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return this->recovery_mode;
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}
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void ESPMegaRecovery::getDeviceInfoHandler(AsyncWebServerRequest *request) {
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if (!request->authenticate(this->web_server->getWebUsername(), this->web_server->getWebPassword()))
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{
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return request->requestAuthentication();
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}
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StaticJsonDocument<512> doc;
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doc["hostname"] = this->iot->getNetworkConfig()->hostname;
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doc["ip_address"] = this->iot->getIp().toString();
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doc["mac_address"] = this->iot->getMac();
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doc["model"] = BOARD_MODEL;
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doc["mqtt_server"] = "Recovery";
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doc["mqtt_port"] = "Mode";
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doc["base_topic"] = "Recovery Mode";
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doc["mqtt_connected"] = "Recovery Mode";
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doc["software_version"] = "EMG-SAFE-1.0.0";
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doc["sdk_version"] = SDK_VESRION;
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doc["idf_version"] = IDF_VER;
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char buffer[512];
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serializeJson(doc, buffer);
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request->send(200, "application/json", buffer);
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}
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void ESPMegaRecovery::configHandler(AsyncWebServerRequest *request){
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// Say Not Available in Recovery Mode
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// Wait 3s then redirect to /
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request->send(500, "text/html", "<h1>RECOVERY MODE</h1><p>Configuration is not available in recovery mode</p><script>setTimeout(function(){window.location.href = '/';}, 1500);</script>");
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}
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@ -0,0 +1,36 @@
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#include <FRAM.h>
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#include <ESPMegaWebServer.hpp>
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#include <esp_log.h>
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/**
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* @brief Recovery mode for ESPMega
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* Recovery mode is a mode that is entered when the device is in a bootloop
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* In this mode, the device will block all other tasks and wait for a new firmware to be uploaded over the air
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* To exit recovery mode, the device must be restarted or a new firmware must be uploaded
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* This is useful when the device is in a bootloop and the user can't access the device to upload a new firmware (ota bricking)
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* The device is considered to be in a bootloop when it is restarted before RECOVERY_WATCHDOG_TIMEOUT seconds for 5 consecutive times
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* The timer is started when the device's initialization is complete (enter loop)
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*/
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#define RECOVERY_WATCHDOG_TIMEOUT 15 // The time in seconds to wait for a restart before considering it a bootloop
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class ESPMegaRecovery {
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public:
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ESPMegaRecovery();
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void begin();
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void loop();
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void enterRecoveryMode(); // Enter recovery mode, Block all other tasks, start OTA server
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void bindFRAM(FRAM* fram, uint32_t address); // Bind the FRAM block to store the bootloop counter
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uint8_t getBootloopCounter(); // Get the bootloop counter
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void inclementBootloopCounter(); // Increment the bootloop counter
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void resetBootloopCounter(); // Reset the bootloop counter
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bool isRecoveryMode(); // Check if the device is in recovery mode
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private:
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void getDeviceInfoHandler(AsyncWebServerRequest *request);
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void configHandler(AsyncWebServerRequest *request);
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FRAM* fram;
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uint32_t fram_address;
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uint8_t bootloop_counter;
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ESPMegaIoT* iot;
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ESPMegaWebServer* web_server;
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bool recovery_mode;
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};
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@ -35,17 +35,6 @@ class ESPMegaWebServer
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void saveCredentialsToFRAM();
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AsyncWebServer* getServer();
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bool checkAuthentication(AsyncWebServerRequest *request);
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private:
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// FRAM
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FRAM *fram;
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// Credentials
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char webUsername[32];
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char webPassword[32];
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// Web Server
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AsyncWebServer *server;
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uint16_t port;
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// ESPMegaIoT
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ESPMegaIoT *iot;
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// Endpoints Handlers
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void dashboardHandler(AsyncWebServerRequest *request);
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void configHandler(AsyncWebServerRequest *request);
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@ -57,4 +46,15 @@ class ESPMegaWebServer
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void otaUploadHandler(AsyncWebServerRequest *request, String filename, size_t index, uint8_t *data, size_t len, bool final);
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void restAPIHandler(AsyncWebServerRequest *request);
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void rebootHandler(AsyncWebServerRequest *request);
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private:
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// FRAM
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FRAM *fram;
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// Credentials
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char webUsername[32];
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char webPassword[32];
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// Web Server
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AsyncWebServer *server;
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uint16_t port;
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// ESPMegaIoT
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ESPMegaIoT *iot;
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};
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@ -14,7 +14,7 @@
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// #define FRAM_DEBUG
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// #define MQTT_DEBUG
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// #define WRITE_DEFAULT_NETCONF
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#define WRITE_DEFAULT_NETCONF
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//#define CLIMATE_CARD_ENABLE
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#define MQTT_CARD_REGISTER
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#define DISPLAY_ENABLE
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