OpenDTU/include/Configuration.h
Thomas Basler 8cbae76797 Implement offsets for YieldTotal (#549)
This allows to enter a offset in kWh in the inverter properties which will be applied to the read Yield Total value of the inverter. Using this can set your total production to zero if you e.g. are using a used device.
2023-02-13 20:25:00 +01:00

115 lines
3.0 KiB
C++

// SPDX-License-Identifier: GPL-2.0-or-later
#pragma once
#include <Arduino.h>
#define CONFIG_FILENAME "/config.json"
#define CONFIG_VERSION 0x00011700 // 0.1.23 // make sure to clean all after change
#define WIFI_MAX_SSID_STRLEN 31
#define WIFI_MAX_PASSWORD_STRLEN 64
#define WIFI_MAX_HOSTNAME_STRLEN 31
#define NTP_MAX_SERVER_STRLEN 31
#define NTP_MAX_TIMEZONE_STRLEN 50
#define NTP_MAX_TIMEZONEDESCR_STRLEN 50
#define MQTT_MAX_HOSTNAME_STRLEN 128
#define MQTT_MAX_USERNAME_STRLEN 64
#define MQTT_MAX_PASSWORD_STRLEN 64
#define MQTT_MAX_TOPIC_STRLEN 32
#define MQTT_MAX_LWTVALUE_STRLEN 20
#define MQTT_MAX_ROOT_CA_CERT_STRLEN 2560
#define INV_MAX_NAME_STRLEN 31
#define INV_MAX_COUNT 10
#define INV_MAX_CHAN_COUNT 4
#define CHAN_MAX_NAME_STRLEN 31
#define DEV_MAX_MAPPING_NAME_STRLEN 63
#define JSON_BUFFER_SIZE 6144
struct CHANNEL_CONFIG_T {
uint16_t MaxChannelPower;
char Name[CHAN_MAX_NAME_STRLEN];
float YieldTotalOffset;
};
struct INVERTER_CONFIG_T {
uint64_t Serial;
char Name[INV_MAX_NAME_STRLEN + 1];
CHANNEL_CONFIG_T channel[INV_MAX_CHAN_COUNT];
};
struct CONFIG_T {
uint32_t Cfg_Version;
uint Cfg_SaveCount;
char WiFi_Ssid[WIFI_MAX_SSID_STRLEN + 1];
char WiFi_Password[WIFI_MAX_PASSWORD_STRLEN + 1];
byte WiFi_Ip[4];
byte WiFi_Netmask[4];
byte WiFi_Gateway[4];
byte WiFi_Dns1[4];
byte WiFi_Dns2[4];
bool WiFi_Dhcp;
char WiFi_Hostname[WIFI_MAX_HOSTNAME_STRLEN + 1];
char Ntp_Server[NTP_MAX_SERVER_STRLEN + 1];
char Ntp_Timezone[NTP_MAX_TIMEZONE_STRLEN + 1];
char Ntp_TimezoneDescr[NTP_MAX_TIMEZONEDESCR_STRLEN + 1];
bool Mqtt_Enabled;
uint Mqtt_Port;
char Mqtt_Username[MQTT_MAX_USERNAME_STRLEN + 1];
char Mqtt_Password[MQTT_MAX_PASSWORD_STRLEN + 1];
char Mqtt_Topic[MQTT_MAX_TOPIC_STRLEN + 1];
bool Mqtt_Retain;
char Mqtt_LwtTopic[MQTT_MAX_TOPIC_STRLEN + 1];
char Mqtt_LwtValue_Online[MQTT_MAX_LWTVALUE_STRLEN + 1];
char Mqtt_LwtValue_Offline[MQTT_MAX_LWTVALUE_STRLEN + 1];
uint32_t Mqtt_PublishInterval;
INVERTER_CONFIG_T Inverter[INV_MAX_COUNT];
uint64_t Dtu_Serial;
uint32_t Dtu_PollInterval;
uint8_t Dtu_PaLevel;
bool Mqtt_Hass_Enabled;
bool Mqtt_Hass_Retain;
char Mqtt_Hass_Topic[MQTT_MAX_TOPIC_STRLEN + 1];
bool Mqtt_Hass_IndividualPanels;
bool Mqtt_Tls;
char Mqtt_RootCaCert[MQTT_MAX_ROOT_CA_CERT_STRLEN + 1];
char Mqtt_Hostname[MQTT_MAX_HOSTNAME_STRLEN + 1];
bool Mqtt_Hass_Expire;
char Security_Password[WIFI_MAX_PASSWORD_STRLEN + 1];
bool Security_AllowReadonly;
char Dev_PinMapping[DEV_MAX_MAPPING_NAME_STRLEN + 1];
bool Display_PowerSafe;
bool Display_ScreenSaver;
bool Display_ShowLogo;
uint8_t Display_Contrast;
};
class ConfigurationClass {
public:
void init();
bool read();
bool write();
void migrate();
CONFIG_T& get();
INVERTER_CONFIG_T* getFreeInverterSlot();
INVERTER_CONFIG_T* getInverterConfig(uint64_t serial);
};
extern ConfigurationClass Configuration;