mirror of
https://github.com/emsesp/EMS-ESP32.git
synced 2025-12-06 07:49:52 +03:00
Merge branch 'dev' of https://github.com/proddy/EMS-ESP32 into idf4
This commit is contained in:
@@ -40,6 +40,7 @@
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- API fetch individual attributes from an entity [#462](https://github.com/emsesp/EMS-ESP32/issues/462)
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- Option to disable mDNS
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- Option for rendering booleans on dashboard [#456](https://github.com/emsesp/EMS-ESP32/issues/456)
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- Upload customization settings from a file [#256](https://github.com/emsesp/EMS-ESP32/issues/256)
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### Fixed
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@@ -78,7 +78,7 @@
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"max-len": [
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1,
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{
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"code": 150
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"code": 200
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}
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],
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"arrow-parens": 1
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@@ -2,7 +2,7 @@ import { FC, useContext } from 'react';
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import { Typography, Button, Box, List, ListItem, ListItemText, Link, ListItemAvatar } from '@mui/material';
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import { SectionContent, ButtonRow } from '../components';
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import { SectionContent, ButtonRow, MessageBox } from '../components';
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import { AuthenticatedContext } from '../contexts/authentication';
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@@ -102,9 +102,13 @@ const HelpInformation: FC = () => {
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<GitHubIcon />
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</ListItemAvatar>
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<ListItemText>
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To report an issue or request a feature, please do via
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To report an issue or request a feature, please
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<Link component="button" variant="body1" onClick={() => onDownload('info')}>
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download
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</Link>
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the debug information and include in a new
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<Link target="_blank" href="https://github.com/emsesp/EMS-ESP32/issues/new/choose" color="primary">
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{'GitHub'}
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GitHub issue
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</Link>
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</ListItemText>
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</ListItem>
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@@ -112,28 +116,15 @@ const HelpInformation: FC = () => {
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{me.admin && (
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<>
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<Typography sx={{ pt: 2, pb: 1 }} variant="h6" color="primary">
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Export Data
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<Typography sx={{ pt: 2, pb: 2 }} variant="h6" color="primary">
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Download Settings
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</Typography>
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<Box color="warning.main">
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<Typography sx={{ pb: 1 }} variant="body2">
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Download the current system information to show EMS statistics and connected devices
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</Typography>
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</Box>
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<Button startIcon={<DownloadIcon />} variant="outlined" color="secondary" onClick={() => onDownload('info')}>
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system info
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</Button>
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<Box color="warning.main">
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<Typography sx={{ pt: 2 }} variant="body2">
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<Typography variant="body2">
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Export the application settings and any customizations to a JSON file. These files can later be uploaded
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via the System menu.
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</Typography>
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<Typography sx={{ pt: 2 }} variant="body2">
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Be careful when sharing the settings as the file contains passwords and other sensitive system
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information.
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via System→Upload.
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</Typography>
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</Box>
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<Box sx={{ display: 'flex' }}>
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<ButtonRow>
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<Button
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@@ -154,6 +145,12 @@ const HelpInformation: FC = () => {
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</Button>
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</ButtonRow>
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</Box>
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<MessageBox
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my={2}
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level="warning"
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message="Be careful when sharing your Settings as the file contains passwords and other sensitive system
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information!"
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/>
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</>
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)}
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@@ -193,10 +193,11 @@ const char * Command::parse_command_string(const char * command, int8_t & id) {
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return nullptr;
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}
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// check prefix and valid number range, also check 'id'
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if (!strncmp(command, "hc", 2) && command[2] >= '1' && command[2] <= '8') {
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id = command[2] - '0';
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command += 3;
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} else if (!strncmp(command, "wwc", 3) && command[3] >= '1' && command[4] == '0') {
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} else if (!strncmp(command, "wwc", 3) && command[3] == '1' && command[4] == '0') {
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id = 19;
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command += 5;
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} else if (!strncmp(command, "wwc", 3) && command[3] >= '1' && command[3] <= '9') {
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200
src/system.cpp
200
src/system.cpp
@@ -689,7 +689,7 @@ void System::commands_init() {
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// these commands will return data in JSON format
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Command::add(EMSdevice::DeviceType::SYSTEM, F_(info), System::command_info, F("show system status"));
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Command::add(EMSdevice::DeviceType::SYSTEM, F_(settings), System::command_settings, F("fetch system settings"));
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Command::add(EMSdevice::DeviceType::SYSTEM, F_(settings), System::command_settings, F("fetch system settings"), CommandFlag::ADMIN_ONLY);
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Command::add(EMSdevice::DeviceType::SYSTEM, F_(customizations), System::command_customizations, F("fetch system customizations"));
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Command::add(EMSdevice::DeviceType::SYSTEM, F_(commands), System::command_commands, F("fetch system commands"));
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@@ -915,7 +915,7 @@ bool System::check_upgrade() {
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reboot_required |= saveSettings(EMSESP_SETTINGS_FILE, "Settings", input);
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} else if (settings_type == "customizations") {
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// it's a customization file, just replace it and there's no need to reboot
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saveSettings(EMSESP_CUSTOMIZATION_FILE, "Customization", input);
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saveSettings(EMSESP_CUSTOMIZATION_FILE, "Customizations", input);
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} else {
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LOG_ERROR(F("Unrecognized file uploaded"));
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}
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@@ -923,7 +923,7 @@ bool System::check_upgrade() {
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LOG_ERROR(F("Unrecognized file uploaded, not json"));
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}
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// close (just in case) and remove the file
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// close (just in case) and remove the temp file
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new_file.close();
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LittleFS.remove(TEMP_FILENAME_PATH);
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}
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@@ -1007,36 +1007,25 @@ bool System::command_info(const char * value, const int8_t id, JsonObject & outp
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JsonObject node;
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// System
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node = output.createNestedObject("System");
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node["version"] = EMSESP_APP_VERSION;
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node["uptime"] = uuid::log::format_timestamp_ms(uuid::get_uptime_ms(), 3);
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node["uptime (seconds)"] = uuid::get_uptime_sec();
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node["network time"] = EMSESP::system_.ntp_connected() ? "connected" : "disconnected";
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node = output.createNestedObject("System Status");
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node["version"] = EMSESP_APP_VERSION;
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node["uptime"] = uuid::log::format_timestamp_ms(uuid::get_uptime_ms(), 3);
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// node["uptime (seconds)"] = uuid::get_uptime_sec();
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#ifndef EMSESP_STANDALONE
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node["freemem"] = ESP.getFreeHeap() / 1000L; // kilobytes
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#endif
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node["reset reason"] = EMSESP::system_.reset_reason(0) + " / " + EMSESP::system_.reset_reason(1);
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if (EMSESP::dallas_enabled()) {
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node["temperature sensors"] = EMSESP::dallassensor_.no_sensors();
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}
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if (EMSESP::analog_enabled()) {
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node["analog sensors"] = EMSESP::analogsensor_.no_sensors();
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}
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#ifndef EMSESP_STANDALONE
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// Network
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node = output.createNestedObject("Network");
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// Network Status
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node = output.createNestedObject("Network Status");
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if (WiFi.status() == WL_CONNECTED) {
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node["connection"] = F("WiFi");
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node["hostname"] = WiFi.getHostname();
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node["SSID"] = WiFi.SSID();
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node["BSSID"] = WiFi.BSSIDstr();
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node["RSSI"] = WiFi.RSSI();
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node["MAC"] = WiFi.macAddress();
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node["connection"] = F("WiFi");
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node["hostname"] = WiFi.getHostname();
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// node["SSID"] = WiFi.SSID();
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// node["BSSID"] = WiFi.BSSIDstr();
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node["RSSI"] = WiFi.RSSI();
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// node["MAC"] = WiFi.macAddress();
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node["IPv4 address"] = uuid::printable_to_string(WiFi.localIP()) + "/" + uuid::printable_to_string(WiFi.subnetMask());
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node["IPv4 gateway"] = uuid::printable_to_string(WiFi.gatewayIP());
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node["IPv4 nameserver"] = uuid::printable_to_string(WiFi.dnsIP());
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@@ -1053,18 +1042,115 @@ bool System::command_info(const char * value, const int8_t id, JsonObject & outp
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if (ETH.localIPv6().toString() != "0000:0000:0000:0000:0000:0000:0000:0000") {
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node["IPv6 address"] = uuid::printable_to_string(ETH.localIPv6());
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}
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EMSESP::webSettingsService.read([&](WebSettings & settings) {
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node["phy type"] = settings.phy_type;
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node["eth power"] = settings.eth_power;
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node["eth phy addr"] = settings.eth_phy_addr;
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node["eth clock mode"] = settings.eth_clock_mode;
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});
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}
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#endif
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EMSESP::esp8266React.getNetworkSettingsService()->read([&](NetworkSettings & settings) {
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node["static ip config"] = settings.staticIPConfig;
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node["enable IPv6"] = settings.enableIPv6;
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node["low bandwidth"] = settings.bandwidth20;
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node["disable sleep"] = settings.nosleep;
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});
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#ifndef EMSESP_STANDALONE
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EMSESP::esp8266React.getAPSettingsService()->read([&](APSettings & settings) {
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const char * pM[] = {"always", "disconnected", "never"};
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node["AP provision mode"] = pM[settings.provisionMode];
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node["AP security"] = settings.password.length() ? "wpa2" : "open";
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node["AP ssid"] = settings.ssid;
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});
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#endif
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// NTP status
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node = output.createNestedObject("NTP Status");
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#ifndef EMSESP_STANDALONE
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node["network time"] = EMSESP::system_.ntp_connected() ? "connected" : "disconnected";
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EMSESP::esp8266React.getNTPSettingsService()->read([&](NTPSettings & settings) {
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node["enabled"] = settings.enabled;
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node["server"] = settings.server;
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node["tz label"] = settings.tzLabel;
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// node["tz format"] = settings.tzFormat;
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});
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// OTA status
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node = output.createNestedObject("OTA Status");
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EMSESP::esp8266React.getOTASettingsService()->read([&](OTASettings & settings) {
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node["enabled"] = settings.enabled;
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node["port"] = settings.port;
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});
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#endif
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// MQTT Status
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node = output.createNestedObject("MQTT Status");
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node["MQTT status"] = Mqtt::connected() ? F_(connected) : F_(disconnected);
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if (Mqtt::enabled()) {
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node["MQTT publishes"] = Mqtt::publish_count();
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node["MQTT publish fails"] = Mqtt::publish_fails();
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}
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EMSESP::esp8266React.getMqttSettingsService()->read([&](MqttSettings & settings) {
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node["enabled"] = settings.enabled;
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node["client_id"] = settings.clientId;
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node["keep alive"] = settings.keepAlive;
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node["clean session"] = settings.cleanSession;
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node["base"] = settings.base;
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node["discovery prefix"] = settings.discovery_prefix;
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node["nested format"] = settings.nested_format;
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node["ha enabled"] = settings.ha_enabled;
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node["mqtt qos"] = settings.mqtt_qos;
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node["mqtt retain"] = settings.mqtt_retain;
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node["publish time boiler"] = settings.publish_time_boiler;
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node["publish time thermostat"] = settings.publish_time_thermostat;
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node["publish time solar"] = settings.publish_time_solar;
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node["publish time mixer"] = settings.publish_time_mixer;
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node["publish time other"] = settings.publish_time_other;
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node["publish time sensor"] = settings.publish_time_sensor;
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node["publish single"] = settings.publish_single;
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node["publish2command"] = settings.publish_single2cmd;
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node["send response"] = settings.send_response;
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});
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// Syslog Status
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node = output.createNestedObject("Syslog Status");
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node["enabled"] = EMSESP::system_.syslog_enabled_;
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#ifndef EMSESP_STANDALONE
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if (EMSESP::system_.syslog_enabled_) {
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node["syslog started"] = syslog_.started();
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node["syslog level"] = FL_(enum_syslog_level)[syslog_.log_level() + 1];
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node["syslog ip"] = syslog_.ip();
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node["syslog queue"] = syslog_.queued();
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}
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#endif
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// Status
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node = output.createNestedObject("Status");
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// Sensor Status
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node = output.createNestedObject("Sensor Status");
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if (EMSESP::dallas_enabled()) {
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node["temperature sensors"] = EMSESP::dallassensor_.no_sensors();
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node["temperature sensor reads"] = EMSESP::dallassensor_.reads();
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node["temperature sensor fails"] = EMSESP::dallassensor_.fails();
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}
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if (EMSESP::analog_enabled()) {
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node["analog sensors"] = EMSESP::analogsensor_.no_sensors();
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node["analog sensor reads"] = EMSESP::analogsensor_.reads();
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node["analog sensor fails"] = EMSESP::analogsensor_.fails();
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}
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// API Status
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node = output.createNestedObject("API Status");
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node["API calls"] = WebAPIService::api_count();
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node["API fails"] = WebAPIService::api_fails();
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// EMS Bus Status
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node = output.createNestedObject("Bus Status");
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switch (EMSESP::bus_status()) {
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case EMSESP::BUS_STATUS_OFFLINE:
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node["bus status"] = (F("disconnected"));
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break;
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case EMSESP::BUS_STATUS_TX_ERRORS:
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node["bus status"] = (F("connected, tx issues - try a different tx-mode"));
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node["bus status"] = (F("connected, tx issues - try a different Tx Mode"));
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break;
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case EMSESP::BUS_STATUS_CONNECTED:
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node["bus status"] = (F("connected"));
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@@ -1073,7 +1159,6 @@ bool System::command_info(const char * value, const int8_t id, JsonObject & outp
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node["bus status"] = (F("unknown"));
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break;
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}
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if (EMSESP::bus_status() != EMSESP::BUS_STATUS_OFFLINE) {
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node["bus protocol"] = EMSbus::is_ht3() ? F("HT3") : F("Buderus");
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node["bus telegrams received (rx)"] = EMSESP::rxservice_.telegram_count();
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@@ -1084,34 +1169,37 @@ bool System::command_info(const char * value, const int8_t id, JsonObject & outp
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node["bus writes failed"] = EMSESP::txservice_.telegram_write_fail_count();
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node["bus rx line quality"] = EMSESP::rxservice_.quality();
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node["bus tx line quality"] = (EMSESP::txservice_.read_quality() + EMSESP::txservice_.read_quality()) / 2;
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if (Mqtt::enabled()) {
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node["MQTT status"] = Mqtt::connected() ? F_(connected) : F_(disconnected);
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node["MQTT publishes"] = Mqtt::publish_count();
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node["MQTT publish fails"] = Mqtt::publish_fails();
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}
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node["temperature sensors"] = EMSESP::dallassensor_.no_sensors();
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if (EMSESP::dallas_enabled()) {
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node["temperature sensor reads"] = EMSESP::dallassensor_.reads();
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node["temperature sensor fails"] = EMSESP::dallassensor_.fails();
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}
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node["analog sensors"] = EMSESP::analogsensor_.no_sensors();
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if (EMSESP::analog_enabled()) {
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node["analog sensor reads"] = EMSESP::analogsensor_.reads();
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node["analog sensor fails"] = EMSESP::analogsensor_.fails();
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}
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node["API calls"] = WebAPIService::api_count();
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node["API fails"] = WebAPIService::api_fails();
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#ifndef EMSESP_STANDALONE
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if (EMSESP::system_.syslog_enabled_) {
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node["syslog started"] = syslog_.started();
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node["syslog level"] = FL_(enum_syslog_level)[syslog_.log_level() + 1];
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node["syslog ip"] = syslog_.ip();
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node["syslog queue"] = syslog_.queued();
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}
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#endif
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}
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// Settings
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node = output.createNestedObject("Settings");
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EMSESP::webSettingsService.read([&](WebSettings & settings) {
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node["board profile"] = settings.board_profile;
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node["tx mode"] = settings.tx_mode;
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node["ems bus id"] = settings.ems_bus_id;
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node["shower timer"] = settings.shower_timer;
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node["shower alert"] = settings.shower_alert;
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if (settings.shower_alert) {
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node["shower alert coldshot"] = settings.shower_alert_coldshot; // seconds
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node["shower alert trigger"] = settings.shower_alert_trigger; // minutes
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}
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node["rx gpio"] = settings.rx_gpio;
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node["tx gpio"] = settings.tx_gpio;
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node["dallas gpio"] = settings.dallas_gpio;
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node["pbutton gpio"] = settings.pbutton_gpio;
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node["led gpio"] = settings.led_gpio;
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node["hide led"] = settings.hide_led;
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node["notoken api"] = settings.notoken_api;
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node["readonly mode"] = settings.readonly_mode;
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node["fahrenheit"] = settings.fahrenheit;
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node["dallas parasite"] = settings.dallas_parasite;
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node["bool format"] = settings.bool_format;
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node["bool dashboard"] = settings.bool_dashboard;
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node["enum format"] = settings.enum_format;
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node["analog enabled"] = settings.analog_enabled;
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node["telnet enabled"] = settings.telnet_enabled;
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});
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// Devices - show EMS devices
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JsonArray devices = output.createNestedArray("Devices");
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for (const auto & device_class : EMSFactory::device_handlers()) {
|
||||
|
||||
Reference in New Issue
Block a user