474 lines
17 KiB
C++
474 lines
17 KiB
C++
#include "CrossPointWebServerActivity.h"
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#include <DNSServer.h>
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#include <ESPmDNS.h>
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#include <GfxRenderer.h>
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#include <HalClock.h>
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#include <I18n.h>
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#include <WiFi.h>
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#include <esp_task_wdt.h>
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#include <cstddef>
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#include "MappedInputManager.h"
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#include "NetworkModeSelectionActivity.h"
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#include "WifiSelectionActivity.h"
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#include "activities/network/CalibreConnectActivity.h"
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#include "activities/network/SignalStrengthWidget.h"
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#include "components/UITheme.h"
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#include "fontIds.h"
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#include "util/QrUtils.h"
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namespace {
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// AP Mode configuration
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constexpr const char* AP_SSID = "CrossPoint-Reader";
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constexpr const char* AP_PASSWORD = nullptr; // Open network for ease of use
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constexpr const char* AP_HOSTNAME = "crosspoint";
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constexpr uint8_t AP_CHANNEL = 1;
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constexpr uint8_t AP_MAX_CONNECTIONS = 2; // reduce from default 4 to save resources
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constexpr int QR_CODE_WIDTH = 198;
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constexpr int QR_CODE_HEIGHT = 198;
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// DNS server for captive portal (redirects all DNS queries to our IP)
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DNSServer* dnsServer = nullptr;
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constexpr uint16_t DNS_PORT = 53;
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} // namespace
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void CrossPointWebServerActivity::onEnter() {
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Activity::onEnter();
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LOG_DBG("WEBACT", "Free heap at onEnter: %d bytes", ESP.getFreeHeap());
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// Reset state
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state = WebServerActivityState::MODE_SELECTION;
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networkMode = NetworkMode::JOIN_NETWORK;
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isApMode = false;
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connectedIP.clear();
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connectedSSID.clear();
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lastHandleClientTime = 0;
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requestUpdate();
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// Launch network mode selection subactivity
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LOG_DBG("WEBACT", "Launching NetworkModeSelectionActivity...");
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startActivityForResult(std::make_unique<NetworkModeSelectionActivity>(renderer, mappedInput),
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[this](const ActivityResult& result) {
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if (result.isCancelled) {
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onGoHome();
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} else {
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onNetworkModeSelected(std::get<NetworkModeResult>(result.data).mode);
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}
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});
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}
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void CrossPointWebServerActivity::onExit() {
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Activity::onExit();
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LOG_DBG("WEBACT", "Free heap at onExit start: %d bytes", ESP.getFreeHeap());
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state = WebServerActivityState::SHUTTING_DOWN;
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// Stop the web server first (before disconnecting WiFi)
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stopWebServer();
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// Stop mDNS
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MDNS.end();
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// Stop DNS server if running (AP mode)
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if (dnsServer) {
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LOG_DBG("WEBACT", "Stopping DNS server...");
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dnsServer->stop();
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delete dnsServer;
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dnsServer = nullptr;
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}
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// Brief wait for LWIP stack to flush pending packets
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delay(50);
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// Disconnect WiFi gracefully
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if (isApMode) {
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LOG_DBG("WEBACT", "Stopping WiFi AP...");
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WiFi.softAPdisconnect(true);
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delay(30);
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WiFi.mode(WIFI_OFF);
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delay(30);
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} else {
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HalClock::wifiOff();
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}
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LOG_DBG("WEBACT", "Free heap at onExit end: %d bytes", ESP.getFreeHeap());
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requestUpdate();
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}
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void CrossPointWebServerActivity::onNetworkModeSelected(const NetworkMode mode) {
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const char* modeName = "Join Network";
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if (mode == NetworkMode::CONNECT_CALIBRE) {
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modeName = "Connect to Calibre";
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} else if (mode == NetworkMode::CREATE_HOTSPOT) {
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modeName = "Create Hotspot";
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}
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LOG_DBG("WEBACT", "Network mode selected: %s", modeName);
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networkMode = mode;
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isApMode = (mode == NetworkMode::CREATE_HOTSPOT);
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if (mode == NetworkMode::CONNECT_CALIBRE) {
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startActivityForResult(
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std::make_unique<CalibreConnectActivity>(renderer, mappedInput), [this](const ActivityResult& result) {
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state = WebServerActivityState::MODE_SELECTION;
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startActivityForResult(std::make_unique<NetworkModeSelectionActivity>(renderer, mappedInput),
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[this](const ActivityResult& result) {
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if (result.isCancelled) {
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onGoHome();
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} else {
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onNetworkModeSelected(std::get<NetworkModeResult>(result.data).mode);
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}
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});
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});
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return;
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}
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if (mode == NetworkMode::JOIN_NETWORK) {
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// STA mode - launch WiFi selection
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LOG_DBG("WEBACT", "Turning on WiFi (STA mode)...");
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WiFi.mode(WIFI_STA);
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state = WebServerActivityState::WIFI_SELECTION;
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LOG_DBG("WEBACT", "Launching WifiSelectionActivity...");
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startActivityForResult(std::make_unique<WifiSelectionActivity>(renderer, mappedInput),
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[this](const ActivityResult& result) {
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if (!result.isCancelled) {
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const auto& wifi = std::get<WifiResult>(result.data);
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connectedIP = wifi.ip;
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connectedSSID = wifi.ssid;
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}
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onWifiSelectionComplete(!result.isCancelled);
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});
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} else {
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// AP mode - start access point
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state = WebServerActivityState::AP_STARTING;
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requestUpdate();
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startAccessPoint();
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}
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}
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void CrossPointWebServerActivity::onWifiSelectionComplete(const bool connected) {
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LOG_DBG("WEBACT", "WifiSelectionActivity completed, connected=%d", connected);
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if (connected) {
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// Get connection info before exiting subactivity
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isApMode = false;
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// Start mDNS for hostname resolution
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if (MDNS.begin(AP_HOSTNAME)) {
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LOG_DBG("WEBACT", "mDNS started: http://%s.local/", AP_HOSTNAME);
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}
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// Start the web server
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startWebServer();
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} else {
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// User cancelled - go back to mode selection
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state = WebServerActivityState::MODE_SELECTION;
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startActivityForResult(std::make_unique<NetworkModeSelectionActivity>(renderer, mappedInput),
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[this](const ActivityResult& result) {
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if (result.isCancelled) {
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onGoHome();
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} else {
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onNetworkModeSelected(std::get<NetworkModeResult>(result.data).mode);
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}
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});
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}
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}
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void CrossPointWebServerActivity::startAccessPoint() {
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LOG_DBG("WEBACT", "Starting Access Point mode...");
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LOG_DBG("WEBACT", "Free heap before AP start: %d bytes", ESP.getFreeHeap());
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// Configure and start the AP
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WiFi.mode(WIFI_AP);
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delay(100);
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// Start soft AP
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bool apStarted;
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if (AP_PASSWORD && strlen(AP_PASSWORD) >= 8) {
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apStarted = WiFi.softAP(AP_SSID, AP_PASSWORD, AP_CHANNEL, false, AP_MAX_CONNECTIONS);
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} else {
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// Open network (no password)
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apStarted = WiFi.softAP(AP_SSID, nullptr, AP_CHANNEL, false, AP_MAX_CONNECTIONS);
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}
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if (!apStarted) {
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LOG_ERR("WEBACT", "ERROR: Failed to start Access Point!");
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onGoHome();
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return;
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}
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delay(100); // Wait for AP to fully initialize
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// Get AP IP address
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const IPAddress apIP = WiFi.softAPIP();
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char ipStr[16];
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snprintf(ipStr, sizeof(ipStr), "%d.%d.%d.%d", apIP[0], apIP[1], apIP[2], apIP[3]);
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connectedIP = ipStr;
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connectedSSID = AP_SSID;
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LOG_DBG("WEBACT", "Access Point started!");
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LOG_DBG("WEBACT", "SSID: %s", AP_SSID);
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LOG_DBG("WEBACT", "IP: %s", connectedIP.c_str());
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// Start mDNS for hostname resolution
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if (MDNS.begin(AP_HOSTNAME)) {
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LOG_DBG("WEBACT", "mDNS started: http://%s.local/", AP_HOSTNAME);
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} else {
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LOG_DBG("WEBACT", "WARNING: mDNS failed to start");
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}
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// Start DNS server for captive portal behavior
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// This redirects all DNS queries to our IP, making any domain typed resolve to us
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dnsServer = new DNSServer();
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dnsServer->setErrorReplyCode(DNSReplyCode::NoError);
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dnsServer->start(DNS_PORT, "*", apIP);
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LOG_DBG("WEBACT", "DNS server started for captive portal");
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LOG_DBG("WEBACT", "Free heap after AP start: %d bytes", ESP.getFreeHeap());
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// Start the web server
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startWebServer();
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}
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void CrossPointWebServerActivity::startWebServer() {
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LOG_DBG("WEBACT", "Starting web server...");
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// Create the web server instance
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webServer.reset(new CrossPointWebServer());
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webServer->begin();
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if (webServer->isRunning()) {
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state = WebServerActivityState::SERVER_RUNNING;
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if (!isApMode) {
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currentRssi = WiFi.RSSI();
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lastRssiUpdateTime = millis();
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}
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LOG_DBG("WEBACT", "Web server started successfully");
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// Force an immediate render since we're transitioning from a subactivity
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// that had its own rendering task. We need to make sure our display is shown.
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requestUpdate();
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} else {
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LOG_ERR("WEBACT", "ERROR: Failed to start web server!");
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webServer.reset();
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// Go back on error
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onGoHome();
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}
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}
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void CrossPointWebServerActivity::stopWebServer() {
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if (webServer && webServer->isRunning()) {
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LOG_DBG("WEBACT", "Stopping web server...");
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webServer->stop();
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LOG_DBG("WEBACT", "Web server stopped");
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}
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webServer.reset();
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}
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void CrossPointWebServerActivity::loop() {
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// Handle different states
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if (state == WebServerActivityState::SERVER_RUNNING) {
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// Handle DNS requests for captive portal (AP mode only)
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if (isApMode && dnsServer) {
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dnsServer->processNextRequest();
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}
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// STA mode: Monitor WiFi connection health
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if (!isApMode && webServer && webServer->isRunning()) {
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static unsigned long lastWifiCheck = 0;
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if (millis() - lastWifiCheck > 2000) { // Check every 2 seconds
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lastWifiCheck = millis();
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const wl_status_t wifiStatus = WiFi.status();
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if (wifiStatus != WL_CONNECTED) {
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LOG_DBG("WEBACT", "WiFi disconnected! Status: %d", wifiStatus);
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// Show error and exit gracefully
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state = WebServerActivityState::SHUTTING_DOWN;
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requestUpdate();
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return;
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}
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// Log weak signal warnings
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const int rssi = WiFi.RSSI();
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if (rssi < -75) {
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LOG_DBG("WEBACT", "Warning: Weak WiFi signal: %d dBm", rssi);
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}
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}
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if (millis() - lastRssiUpdateTime > 5000) { // Refresh signal indicator every 5 seconds
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lastRssiUpdateTime = millis();
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currentRssi = WiFi.RSSI();
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requestUpdate();
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}
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}
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// Handle web server requests - maximize throughput with watchdog safety
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if (webServer && webServer->isRunning()) {
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const unsigned long timeSinceLastHandleClient = millis() - lastHandleClientTime;
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// Log if there's a significant gap between handleClient calls (>100ms)
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if (lastHandleClientTime > 0 && timeSinceLastHandleClient > 100) {
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LOG_DBG("WEBACT", "WARNING: %lu ms gap since last handleClient", timeSinceLastHandleClient);
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}
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// Reset watchdog BEFORE processing - HTTP header parsing can be slow
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esp_task_wdt_reset();
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// Process HTTP requests in tight loop for maximum throughput
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// More iterations = more data processed per main loop cycle
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constexpr int MAX_ITERATIONS = 500;
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for (int i = 0; i < MAX_ITERATIONS && webServer->isRunning(); i++) {
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webServer->handleClient();
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// Reset watchdog every 32 iterations
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if ((i & 0x1F) == 0x1F) {
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esp_task_wdt_reset();
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}
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// Yield and check for exit button every 64 iterations
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if ((i & 0x3F) == 0x3F) {
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yield();
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// Force trigger an update of which buttons are being pressed so be have accurate state
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// for back button checking
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mappedInput.update();
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// Check for exit button inside loop for responsiveness
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if (mappedInput.wasPressed(MappedInputManager::Button::Back)) {
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onGoHome();
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return;
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}
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}
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}
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lastHandleClientTime = millis();
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}
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// Handle exit on Back button (also check outside loop)
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if (mappedInput.wasPressed(MappedInputManager::Button::Back)) {
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onGoHome();
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return;
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}
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}
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}
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void CrossPointWebServerActivity::render(RenderLock&&) {
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// Only render our own UI when server is running
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// Subactivities handle their own rendering
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if (state == WebServerActivityState::SERVER_RUNNING || state == WebServerActivityState::AP_STARTING) {
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renderer.clearScreen();
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const auto& metrics = UITheme::getInstance().getMetrics();
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const Rect contentRect = UITheme::getContentRect(renderer, true, false);
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GUI.drawHeader(renderer, Rect{contentRect.x, metrics.topPadding, contentRect.width, metrics.headerHeight},
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isApMode ? tr(STR_HOTSPOT_MODE) : tr(STR_FILE_TRANSFER), nullptr);
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if (state == WebServerActivityState::SERVER_RUNNING) {
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GUI.drawSubHeader(
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renderer,
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Rect{contentRect.x, metrics.topPadding + metrics.headerHeight, contentRect.width, metrics.tabBarHeight},
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connectedSSID.c_str());
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renderServerRunning();
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} else {
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const auto height = renderer.getLineHeight(UI_10_FONT_ID);
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const auto top = contentRect.y + (contentRect.height - height) / 2;
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renderer.drawCenteredText(UI_10_FONT_ID, top, tr(STR_STARTING_HOTSPOT));
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}
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renderer.displayBuffer();
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}
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}
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namespace {} // namespace
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void CrossPointWebServerActivity::renderServerRunning() const {
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const auto& metrics = UITheme::getInstance().getMetrics();
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const Rect contentRect = UITheme::getContentRect(renderer, true, false);
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GUI.drawHeader(renderer, Rect{contentRect.x, metrics.topPadding, contentRect.width, metrics.headerHeight},
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isApMode ? tr(STR_HOTSPOT_MODE) : tr(STR_FILE_TRANSFER), nullptr);
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GUI.drawSubHeader(
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renderer, Rect{contentRect.x, metrics.topPadding + metrics.headerHeight, contentRect.width, metrics.tabBarHeight},
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connectedSSID.c_str());
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int startY = metrics.topPadding + metrics.headerHeight + metrics.tabBarHeight + metrics.verticalSpacing * 2;
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int height10 = renderer.getLineHeight(UI_10_FONT_ID);
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if (isApMode) {
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// AP mode display
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renderer.drawText(UI_10_FONT_ID, metrics.contentSidePadding, startY, tr(STR_CONNECT_WIFI_HINT), true,
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EpdFontFamily::BOLD);
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startY += height10 + metrics.verticalSpacing * 2;
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// Show QR code for Wifi
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const std::string wifiConfig = std::string("WIFI:S:") + connectedSSID + ";;";
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const Rect qrBoundsWifi(metrics.contentSidePadding, startY, QR_CODE_WIDTH, QR_CODE_HEIGHT);
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QrUtils::drawQrCode(renderer, qrBoundsWifi, wifiConfig);
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// Show network name
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renderer.drawText(UI_10_FONT_ID, metrics.contentSidePadding + QR_CODE_WIDTH + metrics.verticalSpacing, startY + 80,
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connectedSSID.c_str());
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startY += QR_CODE_HEIGHT + 2 * metrics.verticalSpacing;
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// Show primary URL (hostname)
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renderer.drawText(UI_10_FONT_ID, metrics.contentSidePadding, startY, tr(STR_OPEN_URL_HINT), true,
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EpdFontFamily::BOLD);
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startY += height10 + metrics.verticalSpacing * 2;
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std::string hostnameUrl = std::string("http://") + AP_HOSTNAME + ".local/";
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std::string ipUrl = tr(STR_OR_HTTP_PREFIX) + connectedIP + "/";
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// Show QR code for URL
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const Rect qrBoundsUrl(metrics.contentSidePadding, startY, QR_CODE_WIDTH, QR_CODE_HEIGHT);
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QrUtils::drawQrCode(renderer, qrBoundsUrl, hostnameUrl);
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// Show IP address as fallback
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renderer.drawText(UI_10_FONT_ID, metrics.contentSidePadding + QR_CODE_WIDTH + metrics.verticalSpacing, startY + 80,
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hostnameUrl.c_str());
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renderer.drawText(SMALL_FONT_ID, metrics.contentSidePadding + QR_CODE_WIDTH + metrics.verticalSpacing, startY + 100,
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ipUrl.c_str());
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const int signalHeight = 22;
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const int signalWidth = contentRect.width - metrics.contentSidePadding * 2;
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const int signalY = startY + 120;
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drawWifiSignalStrength(renderer, contentRect.x + metrics.contentSidePadding, signalY, signalWidth, signalHeight, 0);
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renderer.drawCenteredText(SMALL_FONT_ID, signalY + signalHeight + 2, tr(STR_HOTSPOT_MODE));
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} else {
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startY += metrics.verticalSpacing * 2;
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// STA mode display (original behavior)
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// std::string ipInfo = "IP Address: " + connectedIP;
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renderer.drawCenteredText(UI_10_FONT_ID, startY, tr(STR_OPEN_URL_HINT), true, EpdFontFamily::BOLD);
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startY += height10;
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renderer.drawCenteredText(UI_10_FONT_ID, startY, tr(STR_SCAN_QR_HINT), true, EpdFontFamily::BOLD);
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startY += height10 + metrics.verticalSpacing * 2;
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// Show QR code for URL
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std::string webInfo = "http://" + connectedIP + "/";
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const Rect qrBounds(contentRect.x + (contentRect.width - QR_CODE_WIDTH) / 2, startY, QR_CODE_WIDTH, QR_CODE_HEIGHT);
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QrUtils::drawQrCode(renderer, qrBounds, webInfo);
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startY += QR_CODE_HEIGHT + metrics.verticalSpacing * 2;
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// Show web server URL prominently
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renderer.drawCenteredText(UI_10_FONT_ID, startY, webInfo.c_str(), true);
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startY += height10 + 5;
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// Also show hostname URL
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std::string hostnameUrl = std::string(tr(STR_OR_HTTP_PREFIX)) + AP_HOSTNAME + ".local/";
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renderer.drawCenteredText(SMALL_FONT_ID, startY, hostnameUrl.c_str(), true);
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// AP mode: no external RSSI metric available, but keep UI spacing consistent.
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}
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if (!isApMode) {
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const int signalHeight = 22;
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const int signalWidth = contentRect.width - metrics.contentSidePadding * 2;
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const int signalY = startY + height10 + metrics.verticalSpacing * 2;
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drawWifiSignalStrength(renderer, contentRect.x + metrics.contentSidePadding, signalY, signalWidth, signalHeight,
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currentRssi);
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renderer.drawCenteredText(SMALL_FONT_ID, signalY + signalHeight + 2, rssiLabel(currentRssi).c_str(), true);
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}
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const auto labels = mappedInput.mapLabels(tr(STR_BACK), "", "", "");
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GUI.drawButtonHints(renderer, labels.btn1, labels.btn2, labels.btn3, labels.btn4);
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}
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