#include "boot.h" #include "reset.h" // Local logging tag static const char TAG[] = __FILE__; // start local web server with user interface for maintenance mode // used for manually uploading a firmware file via wifi void start_boot_menu(void) { uint8_t mac[6]; char clientId[20]; // hash 6 byte MAC to 4 byte hash esp_eth_get_mac(mac); const uint32_t hashedmac = myhash((const char *)mac, 6); snprintf(clientId, 20, "paxcounter_%08x", hashedmac); const char *host = clientId; const char *ssid = WIFI_SSID; const char *password = WIFI_PASS; RTC_runmode = RUNMODE_NORMAL; hw_timer_t *timer = NULL; timer = timerBegin(2, 80, true); // timer 2, div 80, countup timerAttachInterrupt(timer, &esp_restart, true); // callback device reset timerAlarmWrite(timer, BOOTDELAY * 1000000, false); // set time in us timerAlarmEnable(timer); // enable interrupt WebServer server(80); const char *loginMenu = "
" "" "" "" "
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Maintenance Menu
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" "
" "
" ""; const char *serverIndex = "" "
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progress: 0%
" ""; // Connect to WiFi network // workaround applied here to avoid WIFI_AUTH failure // see https://github.com/espressif/arduino-esp32/issues/2501 WiFi.disconnect(true, true); WiFi.mode(WIFI_STA); // 1st try WiFi.begin(ssid, password); while (WiFi.status() == WL_DISCONNECTED) { delay(500); } // 2nd try if (WiFi.status() != WL_CONNECTED) { WiFi.begin(ssid, password); while (WiFi.status() != WL_CONNECTED) { delay(500); } } MDNS.begin(host); server.on("/", HTTP_GET, [&server, &loginMenu]() { server.sendHeader("Connection", "close"); server.send(200, "text/html", loginMenu); }); server.on("/serverIndex", HTTP_GET, [&server, &serverIndex, &timer]() { timerAlarmWrite(timer, BOOTTIMEOUT * 1000000, false); server.sendHeader("Connection", "close"); server.send(200, "text/html", serverIndex); }); // handling uploading firmware file server.on( "/update", HTTP_POST, [&server]() { server.sendHeader("Connection", "close"); server.send(200, "text/plain", (Update.hasError()) ? "FAIL" : "OK"); RTC_runmode = Update.hasError() ? RUNMODE_NORMAL : RUNMODE_POWERCYCLE; WiFi.disconnect(true, true); esp_restart(); }, [&server, &timer]() { HTTPUpload &upload = server.upload(); if (upload.status == UPLOAD_FILE_START) { ESP_LOGI(TAG, "Update: %s\n", upload.filename.c_str()); #if (HAS_LED != NOT_A_PIN) #ifndef LED_ACTIVE_LOW if (!Update.begin(UPDATE_SIZE_UNKNOWN, U_FLASH, HAS_LED, HIGH)) { #else if (!Update.begin(UPDATE_SIZE_UNKNOWN, U_FLASH, HAS_LED, LOW)) { #endif #else if (!Update.begin(UPDATE_SIZE_UNKNOWN)) { #endif ESP_LOGE(TAG, "Error: %s", Update.errorString()); } } else if (upload.status == UPLOAD_FILE_WRITE) { // flashing firmware to ESP if (Update.write(upload.buf, upload.currentSize) != upload.currentSize) { ESP_LOGE(TAG, "Error: %s", Update.errorString()); } } else if (upload.status == UPLOAD_FILE_END) { if (Update.end( true)) { // true to set the size to the current progress ESP_LOGI(TAG, "Update finished, %u bytes written", upload.totalSize); } else { ESP_LOGE(TAG, "Update failed, status=%d", upload.status); } } }); server.begin(); MDNS.addService("http", "tcp", 80); ESP_LOGI(TAG, "WiFi connected to '%s', open http://%s.local or http://%s in your " "browser", WiFi.SSID().c_str(), clientId, WiFi.localIP().toString().c_str()); while (1) { server.handleClient(); delay(1); } }