mirror of
https://github.com/emsesp/EMS-ESP32.git
synced 2025-12-06 07:49:52 +03:00
text changes and formatting
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@@ -46,7 +46,7 @@ uint8_t Command::process(const char * path, const bool is_admin, const JsonObjec
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if (!strncmp(path, Mqtt::base().c_str(), Mqtt::base().length())) {
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char new_path[Mqtt::MQTT_TOPIC_MAX_SIZE];
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strlcpy(new_path, path, sizeof(new_path));
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p.parse(new_path + Mqtt::base().length() + 1); // re-parse the stripped path
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p.parse(new_path + Mqtt::base().length() + 1); // re-parse the stripped path
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} else {
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return message(CommandRet::ERROR, "unrecognized path", output); // error
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}
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@@ -194,7 +194,7 @@ uint8_t Command::process(const char * path, const bool is_admin, const JsonObjec
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} else if (data.isNull()) {
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return_code = Command::call(device_type, command_p, "", is_admin, id_n, output); // empty, will do a query instead
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} else {
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return message(CommandRet::ERROR, "cannot parse command", output); // can't process
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return message(CommandRet::ERROR, "cannot parse command", output); // can't process
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}
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return return_code;
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}
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@@ -301,9 +301,14 @@ uint8_t Command::call(const uint8_t device_type, const char * cmd, const char *
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auto cf = find_command(device_type, device_id, cmd);
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// check if its a call to and end-point to a device
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// except for system commands as this is a special device without any queryable entities (device values)
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if ((device_type > EMSdevice::DeviceType::SYSTEM) && (!value || !strlen(value))) {
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if (!cf || !cf->cmdfunction_json_) {
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// this is used to fetch the attributes of the device entity, or call a command directly
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bool single_command = (!value || !strlen(value));
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if (single_command) {
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// exception 1: anything that is from System
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// exception 2: boiler coldshot command
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bool get_attributes = (!cf || !cf->cmdfunction_json_) && (device_type > EMSdevice::DeviceType::SYSTEM) && (strcmp(cmd, F_(coldshot)) != 0);
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if (get_attributes) {
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LOG_DEBUG("Calling %s command '%s' to retrieve attributes", dname, cmd);
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return EMSESP::get_device_value_info(output, cmd, id, device_type) ? CommandRet::OK : CommandRet::ERROR; // entity = cmd
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}
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@@ -344,7 +349,7 @@ uint8_t Command::call(const uint8_t device_type, const char * cmd, const char *
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// check if read-only. This also checks for valid tags (e.g. heating circuits)
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if (cf->cmdfunction_) {
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if (EMSESP::cmd_is_readonly(device_type, device_id, cmd, id)) {
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if (!single_command && EMSESP::cmd_is_readonly(device_type, device_id, cmd, id)) {
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return_code = CommandRet::INVALID; // readonly or invalid hc
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} else {
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return_code = ((cf->cmdfunction_)(value, id)) ? CommandRet::OK : CommandRet::ERROR;
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@@ -593,7 +598,7 @@ void Command::show_devices(uuid::console::Shell & shell) {
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// output list of all commands to console
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// calls show with verbose mode set
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void Command::show_all(uuid::console::Shell & shell) {
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shell.println("Available commands (*=do not need authorization): ");
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shell.println("Available commands (*=authorization not required): ");
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// show system first
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shell.print(COLOR_BOLD_ON);
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@@ -341,7 +341,7 @@ void EMSESP::dump_all_values(uuid::console::Shell & shell) {
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if (device.product_id == 160) { // MM100
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device_id = 0x28; // wwc
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} else {
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device_id = 0x20; // hc
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device_id = 0x20; // hc
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}
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} else {
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device_id = 0x20; // should cover all the other device types
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@@ -926,7 +926,7 @@ bool EMSESP::process_telegram(std::shared_ptr<const Telegram> telegram) {
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if (telegram->type_id == publish_id_) {
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publish_id_ = 0;
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}
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emsdevice->has_update(false); // reset flag
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emsdevice->has_update(false); // reset flag
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if (!Mqtt::publish_single()) {
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publish_device_values(emsdevice->device_type()); // publish to MQTT if we explicitly have too
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}
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@@ -1118,7 +1118,7 @@ bool EMSESP::add_device(const uint8_t device_id, const uint8_t product_id, const
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name = "Modem";
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device_type = DeviceType::CONNECT;
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} else if (device_id == EMSdevice::EMS_DEVICE_ID_CONVERTER) {
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name = "Converter"; // generic
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name = "Converter"; // generic
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} else if (device_id == EMSdevice::EMS_DEVICE_ID_CLOCK) {
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name = "Clock"; // generic
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device_type = DeviceType::CONTROLLER;
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@@ -1390,7 +1390,7 @@ void EMSESP::incoming_telegram(uint8_t * data, const uint8_t length) {
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#endif
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Roomctrl::check((data[1] ^ 0x80 ^ rxservice_.ems_mask()), data); // check if there is a message for the roomcontroller
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rxservice_.add(data, length); // add to RxQueue
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rxservice_.add(data, length); // add to RxQueue
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}
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}
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@@ -1470,8 +1470,8 @@ void EMSESP::start() {
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bool factory_settings = false;
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#endif
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esp8266React.begin(); // loads core system services settings (network, mqtt, ap, ntp etc)
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webLogService.begin(); // start web log service. now we can start capturing logs to the web log
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esp8266React.begin(); // loads core system services settings (network, mqtt, ap, ntp etc)
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webLogService.begin(); // start web log service. now we can start capturing logs to the web log
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LOG_INFO("Starting EMS-ESP version %s", EMSESP_APP_VERSION); // welcome message
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LOG_DEBUG("System is running in Debug mode");
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@@ -1491,7 +1491,7 @@ void EMSESP::start() {
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system_.system_restart();
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};
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system_.reload_settings(); // ... and store some of the settings locally
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system_.reload_settings(); // ... and store some of the settings locally
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webCustomizationService.begin(); // load the customizations
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webSchedulerService.begin(); // load the scheduler events
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24
src/mqtt.cpp
24
src/mqtt.cpp
@@ -278,9 +278,13 @@ void Mqtt::on_message(const char * topic, const uint8_t * payload, size_t len) c
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if (return_code != CommandRet::OK) {
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char error[100];
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if (output.size()) {
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snprintf(error, sizeof(error), "Call failed with error: %s (%s)", (const char *)output["message"], Command::return_code_string(return_code).c_str());
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snprintf(error,
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sizeof(error),
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"MQTT command failed with error: %s (%s)",
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(const char *)output["message"],
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Command::return_code_string(return_code).c_str());
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} else {
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snprintf(error, sizeof(error), "Call failed with error code (%s)", Command::return_code_string(return_code).c_str());
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snprintf(error, sizeof(error), "MQTT command failed with error code (%s)", Command::return_code_string(return_code).c_str());
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}
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LOG_ERROR(error);
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Mqtt::queue_publish("response", error);
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@@ -506,7 +510,7 @@ void Mqtt::on_connect() {
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// publish to the last will topic (see Mqtt::start() function) to say we're alive
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queue_publish_retain("status", "online", true); // with retain on
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mqtt_publish_fails_ = 0; // reset fail count to 0
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mqtt_publish_fails_ = 0; // reset fail count to 0
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}
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// Home Assistant Discovery - the main master Device called EMS-ESP
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@@ -679,7 +683,7 @@ bool Mqtt::queue_remove_topic(const char * topic) {
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if (ha_enabled_) {
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return queue_publish_message(Mqtt::discovery_prefix() + topic, "", true); // publish with retain to remove from broker
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} else {
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return queue_publish_message(topic, "", true); // publish with retain to remove from broker
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return queue_publish_message(topic, "", true); // publish with retain to remove from broker
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}
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}
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@@ -691,7 +695,7 @@ bool Mqtt::queue_ha(const char * topic, const JsonObject & payload) {
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std::string payload_text;
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payload_text.reserve(measureJson(payload) + 1);
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serializeJson(payload, payload_text); // convert json to string
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serializeJson(payload, payload_text); // convert json to string
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return queue_publish_message(Mqtt::discovery_prefix() + topic, payload_text, true); // with retain true
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}
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@@ -860,7 +864,7 @@ bool Mqtt::publish_ha_sensor_config(uint8_t type, // EMSdev
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if (type == DeviceValueType::BOOL) {
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snprintf(topic, sizeof(topic), "binary_sensor/%s", config_topic); // binary sensor (for booleans)
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} else {
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snprintf(topic, sizeof(topic), "sensor/%s", config_topic); // normal HA sensor
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snprintf(topic, sizeof(topic), "sensor/%s", config_topic); // normal HA sensor
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}
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}
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@@ -874,13 +878,13 @@ bool Mqtt::publish_ha_sensor_config(uint8_t type, // EMSdev
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// build the payload
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StaticJsonDocument<EMSESP_JSON_SIZE_LARGE> doc;
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doc["uniq_id"] = uniq_id;
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doc["obj_id"] = uniq_id; // same as unique_id
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doc["obj_id"] = uniq_id; // same as unique_id
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const char * ic_ha = "ic"; // icon - only set this if there is no device class
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const char * sc_ha = "stat_cla"; // state class
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const char * uom_ha = "unit_of_meas"; // unit of measure
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char sample_val[30] = "0"; // sample, correct(!) entity value, used only to prevent warning/error in HA if real value is not published yet
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char sample_val[30] = "0"; // sample, correct(!) entity value, used only to prevent warning/error in HA if real value is not published yet
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// handle commands, which are device entities that are writable
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// we add the command topic parameter
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@@ -952,7 +956,7 @@ bool Mqtt::publish_ha_sensor_config(uint8_t type, // EMSdev
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} else {
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snprintf(ha_name, sizeof(ha_name), "%s", F_name); // no tag
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}
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free(F_name); // very important!
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free(F_name); // very important!
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doc["name"] = ha_name;
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// value template
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@@ -1164,7 +1168,7 @@ bool Mqtt::publish_ha_climate_config(const uint8_t tag, const bool has_roomtemp,
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if (Mqtt::entity_format() == entityFormat::MULTI_SHORT) {
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snprintf(uniq_id_s, sizeof(uniq_id_s), "%s_thermostat_hc%d", mqtt_basename_.c_str(), hc_num); // add basename
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} else {
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snprintf(uniq_id_s, sizeof(uniq_id_s), "thermostat_hc%d", hc_num); // backward compatible with v3.4
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snprintf(uniq_id_s, sizeof(uniq_id_s), "thermostat_hc%d", hc_num); // backward compatible with v3.4
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}
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snprintf(temp_cmd_s, sizeof(temp_cmd_s), "~/thermostat/hc%d/seltemp", hc_num);
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@@ -121,9 +121,9 @@ void WebAPIService::parse(AsyncWebServerRequest * request, JsonObject & input) {
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if (return_code != CommandRet::OK) {
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char error[100];
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if (output.size()) {
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snprintf(error, sizeof(error), "Call failed with error: %s (%s)", (const char *)output["message"], Command::return_code_string(return_code).c_str());
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snprintf(error, sizeof(error), "API failed with error: %s (%s)", (const char *)output["message"], Command::return_code_string(return_code).c_str());
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} else {
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snprintf(error, sizeof(error), "Call failed with error code (%s)", Command::return_code_string(return_code).c_str());
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snprintf(error, sizeof(error), "API failed with error code (%s)", Command::return_code_string(return_code).c_str());
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}
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emsesp::EMSESP::logger().err(error);
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api_fails_++;
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@@ -219,8 +219,8 @@ bool WebEntityService::get_value_info(JsonObject & output, const char * cmd) {
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return false;
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}
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if (Helpers::toLower(cmd) == "commands") {
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output["info"] = "lists all values";
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output["commands"] = "lists all commands";
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output["info"] = "list all values";
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output["commands"] = "list all commands";
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for (const auto & entity : *entityItems) {
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output[entity.name] = "custom entitiy";
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}
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