Tau.Acuvim/firmware/include/command_handler.h
Renier Forster 84a0668c54 Initial commit: Tau Acuvim IoT monitoring system
Complete IoT monitoring platform for Acuvim II power meters via ESP32.

Firmware (Phases 1-7):
- ESP32-WROVER-B (TTGO T-Call v1.4) with RS485 Modbus RTU
- WiFi STA+AP concurrent mode with GSM/GPRS failover
- Transport abstraction layer with 4 priority modes
- MQTT protocol with 20 commands, LWT, QoS, exponential backoff
- SD card offline buffering with JSONL rotation and non-blocking drain
- OTA firmware updates with dual partition rollback protection
- Watchdog timer, crash loop detection, Acuvim health monitoring
- Captive portal provisioning with AP mode

Console backend (Phase 8):
- .NET 10 minimal API with PostgreSQL + EF Core
- JWT authentication, SignalR real-time updates
- MQTTnet 5.x bridge service with health monitoring
- Device, telemetry, firmware, alert, group management
- Rate limiting, security headers, Swagger/OpenAPI

Frontend (Phase 9):
- React 18 + TypeScript + Vite with Ant Design 5
- ECharts telemetry visualization, TanStack Query
- SignalR live updates, device management UI
- Dashboard, fleet management, firmware deployment

Testing & Production (Phase 10):
- 28 firmware unit tests (Modbus, JSON, config, version)
- 23 xUnit backend tests (device, telemetry, command, alert)
- Docker Compose with nginx, TLS MQTT, PostgreSQL
- Production deployment, commissioning, and troubleshooting docs

Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
2026-05-16 19:05:32 +02:00

72 lines
2.4 KiB
C++

#ifndef COMMAND_HANDLER_H
#define COMMAND_HANDLER_H
#include <Arduino.h>
#include <ArduinoJson.h>
#include "config_manager.h"
#include "wifi_manager.h"
#include "gsm_manager.h"
#include "transport_manager.h"
#include "mqtt_client.h"
#include "acuvim_reader.h"
#include "acuvim_registers.h"
#include "ota_manager.h"
#include "sd_manager.h"
#include "health_monitor.h"
class CommandHandler {
public:
void begin(ConfigManager& config, WifiManager& wifi,
GsmManager& gsm, TransportManager& transport,
MqttClient& mqtt, AcuvimReader& acuvim,
OtaManager& ota, SdManager& sd,
HealthMonitor& health);
void handleCommand(const String& topic, const String& payload);
void setLatestData(const AcuvimData& data) { _lastData = data; }
bool isRegistered() const { return _registered; }
void sendRegistration();
private:
ConfigManager* _config;
WifiManager* _wifi;
GsmManager* _gsm;
TransportManager* _transport;
MqttClient* _mqtt;
AcuvimReader* _acuvim;
OtaManager* _ota;
SdManager* _sd;
HealthMonitor* _health;
AcuvimData _lastData;
bool _registered;
void respond(const char* requestId, const char* status,
JsonDocument& doc);
void cmdPing(const char* requestId);
void cmdGetConfig(const char* requestId);
void cmdGetStatus(const char* requestId);
void cmdGetTelemetry(const char* requestId);
void cmdRestart(const char* requestId);
void cmdFactoryReset(const char* requestId, JsonObject& params);
void cmdWifiScan(const char* requestId);
void cmdWifiSet(const char* requestId, JsonObject& params);
void cmdWifiDisconnect(const char* requestId);
void cmdMqttSet(const char* requestId, JsonObject& params);
void cmdGsmSet(const char* requestId, JsonObject& params);
void cmdTransportPriority(const char* requestId, JsonObject& params);
void cmdSleepSet(const char* requestId, JsonObject& params);
void cmdModbusSet(const char* requestId, JsonObject& params);
void cmdConsoleSet(const char* requestId, JsonObject& params);
void cmdOtaUpdate(const char* requestId, JsonObject& params);
void cmdOtaCheck(const char* requestId);
void cmdSetHeartbeat(const char* requestId, JsonObject& params);
void cmdSetAlerts(const char* requestId, JsonObject& params);
void cmdRegisterAck(const char* requestId, JsonObject& params);
};
#endif