738 lines
23 KiB
Arduino
738 lines
23 KiB
Arduino
#include <Arduino.h>
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#include <WiFi.h>
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#include <HTTPClient.h>
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#include <ArduinoJson.h>
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#include <esp_display_panel.hpp>
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#include <lvgl.h>
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#include "lvgl_v8_port.h"
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#include "dashboard_config.h"
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#include "dashboard_status_model.h"
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using namespace esp_panel::drivers;
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using namespace esp_panel::board;
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static lv_obj_t *battery_label = nullptr;
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static lv_obj_t *temps_label = nullptr;
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static lv_obj_t *outputs_label = nullptr;
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static lv_obj_t *relay_buttons[6] = {nullptr};
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static lv_obj_t *relay_button_labels[6] = {nullptr};
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static String relay_ids[6];
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static String relay_names[6];
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static bool relay_states[6] = {false};
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static int relay_count = 0;
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static lv_obj_t *system_label = nullptr;
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static lv_obj_t *wifi_label = nullptr;
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static lv_obj_t *touch_count_label = nullptr;
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static uint32_t touch_count = 0;
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static unsigned long last_wifi_attempt_ms = 0;
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static unsigned long last_wifi_label_update_ms = 0;
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static unsigned long last_status_poll_ms = 0;
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static unsigned long last_metadata_poll_ms = 0;
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static String last_battery_text;
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static String last_temps_text;
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static String last_outputs_text;
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static String last_system_text;
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static String last_wifi_text;
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static DashboardStatus status_model;
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static String on_off(bool value)
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{
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return value ? "ON" : "OFF";
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}
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static void force_status_poll_now()
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{
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last_status_poll_ms = 0;
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}
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static bool post_relay_state(const String &relay_id, bool state)
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{
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if (WiFi.status() != WL_CONNECTED) {
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Serial.println("Relay command skipped: WiFi not connected");
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return false;
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}
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DynamicJsonDocument request(256);
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request["id"] = relay_id;
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request["state"] = state;
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String payload;
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serializeJson(request, payload);
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Serial.print("POST ");
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Serial.println(CARGO_API_RELAY_SET_URL);
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Serial.println(payload);
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HTTPClient http;
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http.setTimeout(5000);
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http.begin(CARGO_API_RELAY_SET_URL);
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http.addHeader("Content-Type", "application/json");
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int code = http.POST(payload);
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String body = http.getString();
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Serial.print("Relay HTTP code: ");
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Serial.println(code);
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Serial.println(body);
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http.end();
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return code >= 200 && code < 300;
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}
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static void relay_button_event_cb(lv_event_t *event)
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{
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if (lv_event_get_code(event) != LV_EVENT_CLICKED) {
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return;
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}
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intptr_t index_value = reinterpret_cast<intptr_t>(lv_event_get_user_data(event));
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int index = static_cast<int>(index_value);
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if (index < 0 || index >= relay_count) {
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Serial.println("Relay button index out of range");
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return;
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}
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String relay_id = relay_ids[index];
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bool previous_state = relay_states[index];
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bool next_state = !previous_state;
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relay_states[index] = next_state;
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update_relay_buttons();
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update_outputs_label_from_relays();
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String pending_text = "Sending relay command...\n";
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pending_text += relay_id;
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pending_text += " -> ";
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pending_text += on_off(next_state);
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set_label_text_if_changed(system_label, last_system_text, pending_text);
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bool ok = post_relay_state(relay_id, next_state);
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if (ok) {
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String optimistic_text = "Relay command sent\n";
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optimistic_text += relay_id;
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optimistic_text += " -> ";
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optimistic_text += on_off(next_state);
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optimistic_text += "\nRefreshing status...";
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set_label_text_if_changed(system_label, last_system_text, optimistic_text);
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force_status_poll_now();
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poll_status_api();
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} else {
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relay_states[index] = previous_state;
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update_relay_buttons();
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update_outputs_label_from_relays();
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set_label_text_if_changed(system_label, last_system_text, "Relay command failed");
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}
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}
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static void update_outputs_label_from_relays()
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{
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String outputs = "";
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for (int i = 0; i < relay_count && i < 6; i++) {
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outputs += String(i + 1);
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outputs += ". ";
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outputs += relay_names[i].length() > 0 ? relay_names[i] : relay_ids[i];
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outputs += ": ";
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outputs += on_off(relay_states[i]);
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outputs += "\n";
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}
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if (outputs.length() == 0) {
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outputs = "No outputs reported";
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}
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status_model.outputs_text = outputs;
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set_label_text_if_changed(outputs_label, last_outputs_text, outputs);
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}
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static void update_relay_buttons()
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{
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lvgl_port_lock(-1);
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for (int i = 0; i < 6; i++) {
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if (relay_buttons[i] == nullptr || relay_button_labels[i] == nullptr) {
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continue;
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}
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if (i < relay_count) {
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lv_obj_clear_flag(relay_buttons[i], LV_OBJ_FLAG_HIDDEN);
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String label = relay_ids[i];
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label += relay_states[i] ? " OFF" : " ON";
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lv_label_set_text(relay_button_labels[i], label.c_str());
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} else {
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lv_obj_add_flag(relay_buttons[i], LV_OBJ_FLAG_HIDDEN);
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}
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}
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lvgl_port_unlock();
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}
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static void set_label_text_if_changed(lv_obj_t *label, String &last_text, const String &text)
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{
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if (label == nullptr || last_text == text) {
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return;
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}
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last_text = text;
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lvgl_port_lock(-1);
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lv_label_set_text(label, text.c_str());
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lvgl_port_unlock();
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}
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static void update_overview_widgets()
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{
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String battery;
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battery += "SOC: ";
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battery += status_model.soc >= 0 ? String(status_model.soc) + "%" : "n/a";
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battery += "\nVoltage: ";
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battery += String(status_model.voltage, 2);
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battery += " V\nCurrent: ";
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battery += String(status_model.current, 2);
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battery += " A\nRemaining: ";
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battery += String(status_model.remaining_ah, 1);
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battery += " / ";
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battery += String(status_model.capacity_ah, 0);
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battery += " Ah\nBatt Temp: ";
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battery += String(status_model.battery_temp_f, 1);
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battery += " F\nBMS: ";
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battery += status_model.bms_connected ? "online" : "offline";
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if (status_model.cell_delta_mv >= 0) {
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battery += "\nCell Delta: ";
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battery += String(status_model.cell_delta_mv);
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battery += " mV";
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}
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String system;
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system += "API: ";
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system += status_model.api_ok ? "connected" : "error";
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system += "\nHTTP: ";
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system += String(status_model.http_code);
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system += "\nProfile: ";
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system += status_model.hardware_profile;
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system += "\nOutputs: ";
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system += String(status_model.output_count);
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system += "\nFirmware: ";
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system += status_model.firmware_version;
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system += "\nUptime: ";
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system += String(status_model.uptime_seconds);
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system += " sec\nCargo AP: ";
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system += status_model.cargo_ap_ssid;
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system += "\nCargo STA IP: ";
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system += status_model.cargo_sta_ip;
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set_label_text_if_changed(battery_label, last_battery_text, battery);
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set_label_text_if_changed(temps_label, last_temps_text, status_model.temps_text);
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set_label_text_if_changed(outputs_label, last_outputs_text, status_model.outputs_text);
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set_label_text_if_changed(system_label, last_system_text, system);
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}
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static void parse_status_json(const String &body)
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{
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DynamicJsonDocument doc(20000);
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DeserializationError error = deserializeJson(doc, body);
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if (error) {
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status_model.api_ok = false;
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status_model.http_code = 200;
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String parse_error;
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parse_error += "JSON parse failed\n";
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parse_error += error.c_str();
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Serial.println(parse_error);
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set_label_text_if_changed(battery_label, last_battery_text, "Battery\nJSON parse failed");
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set_label_text_if_changed(temps_label, last_temps_text, parse_error);
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set_label_text_if_changed(outputs_label, last_outputs_text, "Outputs\nNo parsed data");
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set_label_text_if_changed(system_label, last_system_text, parse_error);
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return;
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}
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Serial.println("JSON parse OK");
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status_model.api_ok = true;
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status_model.http_code = 200;
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if (doc["battery"].is<JsonObject>()) {
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JsonObject battery = doc["battery"];
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status_model.bms_connected = battery["connected"] | status_model.bms_connected;
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status_model.soc = battery["soc"] | status_model.soc;
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status_model.voltage = battery["voltage"] | status_model.voltage;
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status_model.current = battery["current"] | status_model.current;
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status_model.battery_temp_f = battery["temperature_f"] | status_model.battery_temp_f;
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status_model.remaining_ah = battery["remaining_ah"] | status_model.remaining_ah;
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status_model.capacity_ah = battery["capacity_ah"] | status_model.capacity_ah;
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status_model.cell_delta_mv = battery["cell_delta_mv"] | status_model.cell_delta_mv;
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}
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if (doc["config"].is<JsonObject>()) {
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JsonObject config = doc["config"];
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status_model.hardware_profile = String((const char *)(config["hardware_profile"] | status_model.hardware_profile.c_str()));
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status_model.output_count = config["output_count"] | status_model.output_count;
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}
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if (doc["system"].is<JsonObject>()) {
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JsonObject system = doc["system"];
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status_model.firmware_version = String((const char *)(system["firmware_version"] | status_model.firmware_version.c_str()));
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status_model.uptime_seconds = system["uptime_seconds"] | status_model.uptime_seconds;
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}
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if (doc["network"].is<JsonObject>()) {
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JsonObject network = doc["network"];
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status_model.cargo_ap_ssid = String((const char *)(network["ap_ssid"] | status_model.cargo_ap_ssid.c_str()));
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status_model.cargo_sta_ip = String((const char *)(network["sta_ip"] | status_model.cargo_sta_ip.c_str()));
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}
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if (doc["temps"].is<JsonArray>()) {
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String temps = "";
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JsonArray temp_array = doc["temps"];
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int shown_temps = 0;
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for (JsonObject temp : temp_array) {
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bool enabled = temp["enabled"] | false;
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bool online = temp["online"] | false;
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if (!enabled && shown_temps >= 2) {
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continue;
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}
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const char *name = temp["name"] | temp["id"] | "Temp";
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temps += name;
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temps += ": ";
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if (!enabled) {
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temps += "disabled";
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} else if (!online) {
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temps += "offline";
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} else if (temp["temperature_f"].isNull()) {
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temps += "n/a";
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} else {
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float temperature_f = temp["temperature_f"] | 0.0;
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temps += String(temperature_f, 1);
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temps += " F";
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}
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temps += "\n";
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shown_temps++;
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if (shown_temps >= 5) {
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break;
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}
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}
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if (temps.length() == 0) {
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temps = "No temp sensors reported";
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}
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status_model.temps_text = temps;
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}
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if (doc["relays"].is<JsonArray>()) {
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String outputs = "";
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JsonArray relay_array = doc["relays"];
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relay_count = 0;
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for (JsonObject relay : relay_array) {
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const char *id = relay["id"] | "";
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const char *name = relay["name"] | relay["id"] | "Output";
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bool enabled = relay["enabled"] | false;
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bool available = relay["available"] | true;
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bool state = relay["state"] | false;
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int channel = relay["hardware_channel"] | 0;
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if (relay_count < 6 && enabled && available) {
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relay_ids[relay_count] = String(id);
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relay_names[relay_count] = String(name);
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relay_states[relay_count] = state;
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relay_count++;
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}
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outputs += String(channel);
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outputs += ". ";
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outputs += name;
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outputs += ": ";
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if (!available) {
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outputs += "unavailable";
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} else if (!enabled) {
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outputs += "disabled";
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} else {
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outputs += on_off(state);
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}
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outputs += "\n";
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}
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if (outputs.length() == 0) {
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outputs = "No outputs reported";
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}
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status_model.outputs_text = outputs;
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update_relay_buttons();
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}
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Serial.println("Parsed status summary:");
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Serial.print(" SOC: ");
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Serial.println(status_model.soc);
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Serial.print(" Voltage: ");
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Serial.println(status_model.voltage);
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Serial.print(" Temps text: ");
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Serial.println(status_model.temps_text);
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Serial.print(" Outputs text: ");
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Serial.println(status_model.outputs_text);
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update_overview_widgets();
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}
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static void touch_test_event_cb(lv_event_t *event)
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{
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if (lv_event_get_code(event) != LV_EVENT_CLICKED) {
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return;
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}
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touch_count++;
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if (touch_count_label != nullptr) {
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lvgl_port_lock(-1);
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lv_label_set_text_fmt(touch_count_label, "Touch count: %lu", (unsigned long)touch_count);
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lvgl_port_unlock();
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}
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Serial.print("Touch count: ");
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Serial.println(touch_count);
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}
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static void connect_wifi_if_needed()
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{
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if (WiFi.status() == WL_CONNECTED) {
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return;
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}
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if (millis() - last_wifi_attempt_ms < 10000) {
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return;
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}
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last_wifi_attempt_ms = millis();
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Serial.print("Connecting to Cargo ESP AP: ");
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Serial.println(CARGO_WIFI_SSID);
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WiFi.mode(WIFI_STA);
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WiFi.begin(CARGO_WIFI_SSID, CARGO_WIFI_PASSWORD);
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}
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static void update_wifi_label()
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{
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if (millis() - last_wifi_label_update_ms < 5000) {
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return;
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}
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last_wifi_label_update_ms = millis();
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String text;
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if (WiFi.status() == WL_CONNECTED) {
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text += "Dashboard WiFi: connected";
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text += "\nIP: ";
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text += WiFi.localIP().toString();
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text += "\nRSSI: ";
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text += String(WiFi.RSSI());
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text += " dBm";
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} else {
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text += "Dashboard WiFi: not connected";
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text += "\nSSID: ";
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text += CARGO_WIFI_SSID;
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}
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set_label_text_if_changed(wifi_label, last_wifi_text, text);
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}
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static bool fetch_status_fields(const char *url, const char *label)
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{
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if (WiFi.status() != WL_CONNECTED) {
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set_label_text_if_changed(system_label, last_system_text, "API: waiting for WiFi");
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return false;
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}
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unsigned long start_ms = millis();
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Serial.print("GET ");
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Serial.println(url);
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HTTPClient http;
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http.setTimeout(5000);
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unsigned long begin_start_ms = millis();
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http.begin(url);
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unsigned long begin_ms = millis() - begin_start_ms;
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unsigned long get_start_ms = millis();
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int code = http.GET();
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unsigned long get_ms = millis() - get_start_ms;
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status_model.http_code = code;
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Serial.print(label);
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Serial.print(" HTTP code: ");
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Serial.println(code);
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if (code == 200) {
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unsigned long body_start_ms = millis();
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String body = http.getString();
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unsigned long body_ms = millis() - body_start_ms;
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Serial.print(label);
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Serial.print(" body length: ");
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Serial.println(body.length());
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unsigned long parse_start_ms = millis();
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parse_status_json(body);
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unsigned long parse_ms = millis() - parse_start_ms;
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unsigned long total_ms = millis() - start_ms;
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Serial.print("TIMING ");
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Serial.print(label);
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Serial.print(" begin=");
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Serial.print(begin_ms);
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Serial.print("ms get=");
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Serial.print(get_ms);
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Serial.print("ms body=");
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Serial.print(body_ms);
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Serial.print("ms parse+ui=");
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Serial.print(parse_ms);
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Serial.print("ms total=");
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Serial.print(total_ms);
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Serial.print("ms bytes=");
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Serial.println(body.length());
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|
|
http.end();
|
|
return true;
|
|
}
|
|
|
|
unsigned long total_ms = millis() - start_ms;
|
|
Serial.print("TIMING ");
|
|
Serial.print(label);
|
|
Serial.print(" failed total=");
|
|
Serial.print(total_ms);
|
|
Serial.println("ms");
|
|
|
|
status_model.api_ok = false;
|
|
|
|
String system;
|
|
system += "API: error\n";
|
|
system += label;
|
|
system += "\nHTTP: ";
|
|
system += String(code);
|
|
if (code <= 0) {
|
|
system += "\n";
|
|
system += http.errorToString(code);
|
|
}
|
|
|
|
Serial.println(system);
|
|
set_label_text_if_changed(system_label, last_system_text, system);
|
|
|
|
http.end();
|
|
return false;
|
|
}
|
|
|
|
static void poll_status_api()
|
|
{
|
|
if (WiFi.status() != WL_CONNECTED) {
|
|
set_label_text_if_changed(system_label, last_system_text, "API: waiting for WiFi");
|
|
return;
|
|
}
|
|
|
|
if (millis() - last_status_poll_ms >= 2000) {
|
|
last_status_poll_ms = millis();
|
|
fetch_status_fields(CARGO_API_FAST_STATUS_URL, "fast status");
|
|
}
|
|
|
|
if (millis() - last_metadata_poll_ms >= 30000) {
|
|
last_metadata_poll_ms = millis();
|
|
fetch_status_fields(CARGO_API_SLOW_STATUS_URL, "slow status");
|
|
}
|
|
}
|
|
|
|
static lv_obj_t *create_card(lv_obj_t *parent, const char *title, int width, int height, lv_align_t align, int x, int y)
|
|
{
|
|
lv_obj_t *card = lv_obj_create(parent);
|
|
lv_obj_set_size(card, width, height);
|
|
lv_obj_align(card, align, x, y);
|
|
lv_obj_set_style_radius(card, 16, 0);
|
|
lv_obj_set_style_bg_color(card, lv_color_hex(0x1F2933), 0);
|
|
lv_obj_set_style_border_color(card, lv_color_hex(0x3A4652), 0);
|
|
lv_obj_set_style_border_width(card, 2, 0);
|
|
lv_obj_set_style_pad_all(card, 12, 0);
|
|
|
|
lv_obj_t *title_label = lv_label_create(card);
|
|
lv_label_set_text(title_label, title);
|
|
lv_obj_set_style_text_color(title_label, lv_color_hex(0xFFFFFF), 0);
|
|
lv_obj_align(title_label, LV_ALIGN_TOP_LEFT, 0, 0);
|
|
|
|
return card;
|
|
}
|
|
|
|
static lv_obj_t *create_body_label(lv_obj_t *card, int width)
|
|
{
|
|
lv_obj_t *label = lv_label_create(card);
|
|
lv_label_set_text(label, "Waiting for /api/v1/status...");
|
|
lv_obj_set_style_text_color(label, lv_color_hex(0xDDE3EA), 0);
|
|
lv_obj_set_width(label, width);
|
|
lv_label_set_long_mode(label, LV_LABEL_LONG_WRAP);
|
|
lv_obj_align(label, LV_ALIGN_TOP_LEFT, 0, 32);
|
|
return label;
|
|
}
|
|
|
|
static void create_overland_status_screen()
|
|
{
|
|
lv_obj_t *screen = lv_scr_act();
|
|
lv_obj_clean(screen);
|
|
lv_obj_set_style_bg_color(screen, lv_color_hex(0x101418), 0);
|
|
|
|
lv_obj_t *title = lv_label_create(screen);
|
|
lv_label_set_text(title, "Overland Controller");
|
|
lv_obj_set_style_text_color(title, lv_color_hex(0xFFFFFF), 0);
|
|
lv_obj_set_style_text_font(title, &lv_font_montserrat_30, 0);
|
|
lv_obj_align(title, LV_ALIGN_TOP_MID, 0, 16);
|
|
|
|
lv_obj_t *subtitle = lv_label_create(screen);
|
|
lv_label_set_text(subtitle, "ESP32-S3 Dashboard - Cargo ESP Overview");
|
|
lv_obj_set_style_text_color(subtitle, lv_color_hex(0xB8C0C8), 0);
|
|
lv_obj_set_width(subtitle, 920);
|
|
lv_obj_set_style_text_align(subtitle, LV_TEXT_ALIGN_CENTER, 0);
|
|
lv_obj_align_to(subtitle, title, LV_ALIGN_OUT_BOTTOM_MID, 0, 6);
|
|
|
|
lv_obj_t *battery_card = create_card(screen, "Battery", 300, 230, LV_ALIGN_TOP_LEFT, 32, 96);
|
|
lv_obj_t *temps_card = create_card(screen, "Temperatures", 300, 230, LV_ALIGN_TOP_MID, 0, 96);
|
|
lv_obj_t *outputs_card = create_card(screen, "Outputs", 300, 230, LV_ALIGN_TOP_RIGHT, -32, 96);
|
|
lv_obj_t *system_card = create_card(screen, "System / Network", 620, 190, LV_ALIGN_BOTTOM_LEFT, 32, -50);
|
|
lv_obj_t *touch_card = create_card(screen, "Relay Controls", 300, 190, LV_ALIGN_BOTTOM_RIGHT, -32, -50);
|
|
|
|
battery_label = create_body_label(battery_card, 260);
|
|
temps_label = create_body_label(temps_card, 260);
|
|
outputs_label = create_body_label(outputs_card, 260);
|
|
|
|
lv_label_set_text(battery_label, "Waiting for battery data...");
|
|
lv_label_set_text(temps_label, "Waiting for temp data...");
|
|
lv_label_set_text(outputs_label, "Waiting for output data...");
|
|
|
|
wifi_label = create_body_label(system_card, 275);
|
|
|
|
system_label = lv_label_create(system_card);
|
|
lv_label_set_text(system_label, "API: waiting");
|
|
lv_obj_set_style_text_color(system_label, lv_color_hex(0xB8C0C8), 0);
|
|
lv_obj_set_width(system_label, 285);
|
|
lv_label_set_long_mode(system_label, LV_LABEL_LONG_WRAP);
|
|
lv_obj_align(system_label, LV_ALIGN_TOP_LEFT, 305, 32);
|
|
|
|
for (int i = 0; i < 2; i++) {
|
|
relay_buttons[i] = lv_btn_create(touch_card);
|
|
lv_obj_set_size(relay_buttons[i], 120, 48);
|
|
lv_obj_align(relay_buttons[i], LV_ALIGN_TOP_LEFT, i * 132, 34);
|
|
lv_obj_add_event_cb(
|
|
relay_buttons[i],
|
|
relay_button_event_cb,
|
|
LV_EVENT_CLICKED,
|
|
reinterpret_cast<void *>(static_cast<intptr_t>(i))
|
|
);
|
|
|
|
relay_button_labels[i] = lv_label_create(relay_buttons[i]);
|
|
lv_label_set_text(relay_button_labels[i], "Relay");
|
|
lv_obj_center(relay_button_labels[i]);
|
|
}
|
|
|
|
for (int i = 2; i < 6; i++) {
|
|
relay_buttons[i] = lv_btn_create(touch_card);
|
|
lv_obj_set_size(relay_buttons[i], 120, 42);
|
|
lv_obj_align(relay_buttons[i], LV_ALIGN_TOP_LEFT, ((i - 2) % 2) * 132, 92 + (((i - 2) / 2) * 48));
|
|
lv_obj_add_event_cb(
|
|
relay_buttons[i],
|
|
relay_button_event_cb,
|
|
LV_EVENT_CLICKED,
|
|
reinterpret_cast<void *>(static_cast<intptr_t>(i))
|
|
);
|
|
|
|
relay_button_labels[i] = lv_label_create(relay_buttons[i]);
|
|
lv_label_set_text(relay_button_labels[i], "Relay");
|
|
lv_obj_center(relay_button_labels[i]);
|
|
lv_obj_add_flag(relay_buttons[i], LV_OBJ_FLAG_HIDDEN);
|
|
}
|
|
|
|
touch_count_label = lv_label_create(touch_card);
|
|
lv_label_set_text(touch_count_label, "Relay controls");
|
|
lv_obj_set_style_text_color(touch_count_label, lv_color_hex(0xB8C0C8), 0);
|
|
lv_obj_set_width(touch_count_label, 250);
|
|
lv_obj_align(touch_count_label, LV_ALIGN_TOP_LEFT, 0, 142);
|
|
|
|
lv_obj_t *footer = lv_label_create(screen);
|
|
lv_label_set_text(footer, "Fast: battery/temps/relays every 2s | Slow: system/config/network every 30s");
|
|
lv_obj_set_style_text_color(footer, lv_color_hex(0x7D8996), 0);
|
|
lv_obj_set_width(footer, 900);
|
|
lv_obj_set_style_text_align(footer, LV_TEXT_ALIGN_CENTER, 0);
|
|
lv_obj_align(footer, LV_ALIGN_BOTTOM_MID, 0, -14);
|
|
}
|
|
|
|
void setup()
|
|
{
|
|
Serial.begin(115200);
|
|
delay(1000);
|
|
|
|
Serial.println();
|
|
Serial.println("================================");
|
|
Serial.println("Overland Controller Dashboard");
|
|
Serial.println("================================");
|
|
Serial.print("Version: ");
|
|
Serial.println(DASHBOARD_VERSION);
|
|
Serial.println("Target: Waveshare ESP32-S3 Touch LCD 5B");
|
|
Serial.println("Display: 1024x600");
|
|
Serial.println("API Base: /api/v1");
|
|
|
|
Board *board = new Board();
|
|
board->init();
|
|
|
|
#if LVGL_PORT_AVOID_TEARING_MODE
|
|
auto lcd = board->getLCD();
|
|
lcd->configFrameBufferNumber(LVGL_PORT_DISP_BUFFER_NUM);
|
|
#if ESP_PANEL_DRIVERS_BUS_ENABLE_RGB && CONFIG_IDF_TARGET_ESP32S3
|
|
auto lcd_bus = lcd->getBus();
|
|
if (lcd_bus->getBasicAttributes().type == ESP_PANEL_BUS_TYPE_RGB) {
|
|
static_cast<BusRGB *>(lcd_bus)->configRGB_BounceBufferSize(lcd->getFrameWidth() * 10);
|
|
}
|
|
#endif
|
|
#endif
|
|
|
|
assert(board->begin());
|
|
|
|
lvgl_port_init(board->getLCD(), board->getTouch());
|
|
|
|
lvgl_port_lock(-1);
|
|
create_overland_status_screen();
|
|
lvgl_port_unlock();
|
|
|
|
Serial.println("Dashboard clean overview ready");
|
|
}
|
|
|
|
void loop()
|
|
{
|
|
connect_wifi_if_needed();
|
|
update_wifi_label();
|
|
poll_status_api();
|
|
|
|
delay(500);
|
|
}
|