clean up Huawei MQTT handler
* bind the callback to a topic (enum value) such that there is no need to tokenize the full topic (string) to find out what value is being processed. tokenizing is expensive. * get rid of using the config in the callback, which improves thread-safety since the MQTT callback is running in the MQTT thread. * prefer C++ method stof to convert MQTT value to a float, which saves us from using new and delete for a buffer in particular. * prefer switch statements over if-else-trees. * split long lines. * get rid of topic #defines. * fix indention.
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fe2f82e303
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@ -15,7 +15,19 @@ public:
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private:
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private:
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void loop();
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void loop();
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void onMqttMessage(const espMqttClientTypes::MessageProperties& properties, const char* topic, const uint8_t* payload, size_t len, size_t index, size_t total);
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enum class Topic : unsigned {
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LimitOnlineVoltage,
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LimitOnlineCurrent,
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LimitOfflineVoltage,
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LimitOfflineCurrent,
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Mode
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};
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void onMqttMessage(Topic t,
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const espMqttClientTypes::MessageProperties& properties,
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const char* topic, const uint8_t* payload, size_t len,
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size_t index, size_t total);
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Task _loopTask;
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Task _loopTask;
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@ -10,12 +10,6 @@
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#include "WebApi_Huawei.h"
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#include "WebApi_Huawei.h"
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#include <ctime>
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#include <ctime>
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#define TOPIC_SUB_LIMIT_ONLINE_VOLTAGE "limit_online_voltage"
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#define TOPIC_SUB_LIMIT_ONLINE_CURRENT "limit_online_current"
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#define TOPIC_SUB_LIMIT_OFFLINE_VOLTAGE "limit_offline_voltage"
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#define TOPIC_SUB_LIMIT_OFFLINE_CURRENT "limit_offline_current"
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#define TOPIC_SUB_MODE "mode"
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MqttHandleHuaweiClass MqttHandleHuawei;
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MqttHandleHuaweiClass MqttHandleHuawei;
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void MqttHandleHuaweiClass::init(Scheduler& scheduler)
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void MqttHandleHuaweiClass::init(Scheduler& scheduler)
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@ -25,19 +19,22 @@ void MqttHandleHuaweiClass::init(Scheduler& scheduler)
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_loopTask.setIterations(TASK_FOREVER);
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_loopTask.setIterations(TASK_FOREVER);
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_loopTask.enable();
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_loopTask.enable();
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using std::placeholders::_1;
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String const& prefix = MqttSettings.getPrefix();
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using std::placeholders::_2;
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using std::placeholders::_3;
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using std::placeholders::_4;
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using std::placeholders::_5;
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using std::placeholders::_6;
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String topic = MqttSettings.getPrefix();
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auto subscribe = [&prefix, this](char const* subTopic, Topic t) {
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MqttSettings.subscribe(String(topic + "huawei/cmd/" + TOPIC_SUB_LIMIT_ONLINE_VOLTAGE).c_str(), 0, std::bind(&MqttHandleHuaweiClass::onMqttMessage, this, _1, _2, _3, _4, _5, _6));
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String fullTopic(prefix + "huawei/cmd/" + subTopic);
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MqttSettings.subscribe(String(topic + "huawei/cmd/" + TOPIC_SUB_LIMIT_ONLINE_CURRENT).c_str(), 0, std::bind(&MqttHandleHuaweiClass::onMqttMessage, this, _1, _2, _3, _4, _5, _6));
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MqttSettings.subscribe(fullTopic.c_str(), 0,
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MqttSettings.subscribe(String(topic + "huawei/cmd/" + TOPIC_SUB_LIMIT_OFFLINE_VOLTAGE).c_str(), 0, std::bind(&MqttHandleHuaweiClass::onMqttMessage, this, _1, _2, _3, _4, _5, _6));
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std::bind(&MqttHandleHuaweiClass::onMqttMessage, this, t,
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MqttSettings.subscribe(String(topic + "huawei/cmd/" + TOPIC_SUB_LIMIT_OFFLINE_CURRENT).c_str(), 0, std::bind(&MqttHandleHuaweiClass::onMqttMessage, this, _1, _2, _3, _4, _5, _6));
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std::placeholders::_1, std::placeholders::_2,
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MqttSettings.subscribe(String(topic + "huawei/cmd/" + TOPIC_SUB_MODE).c_str(), 0, std::bind(&MqttHandleHuaweiClass::onMqttMessage, this, _1, _2, _3, _4, _5, _6));
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std::placeholders::_3, std::placeholders::_4,
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std::placeholders::_5, std::placeholders::_6));
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};
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subscribe("limit_online_voltage", Topic::LimitOnlineVoltage);
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subscribe("limit_online_current", Topic::LimitOnlineCurrent);
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subscribe("limit_offline_voltage", Topic::LimitOfflineVoltage);
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subscribe("limit_offline_current", Topic::LimitOfflineCurrent);
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subscribe("mode", Topic::Mode);
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_lastPublish = millis();
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_lastPublish = millis();
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@ -86,81 +83,79 @@ void MqttHandleHuaweiClass::loop()
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}
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}
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void MqttHandleHuaweiClass::onMqttMessage(const espMqttClientTypes::MessageProperties& properties, const char* topic, const uint8_t* payload, size_t len, size_t index, size_t total)
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void MqttHandleHuaweiClass::onMqttMessage(Topic t,
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const espMqttClientTypes::MessageProperties& properties,
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const char* topic, const uint8_t* payload, size_t len,
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size_t index, size_t total)
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{
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{
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const CONFIG_T& config = Configuration.get();
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std::string strValue(reinterpret_cast<const char*>(payload), len);
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float payload_val = -1;
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char token_topic[MQTT_MAX_TOPIC_STRLEN + 40]; // respect all subtopics
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try {
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strncpy(token_topic, topic, MQTT_MAX_TOPIC_STRLEN + 40); // convert const char* to char*
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payload_val = std::stof(strValue);
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}
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char* setting;
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catch (std::invalid_argument const& e) {
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char* rest = &token_topic[strlen(config.Mqtt.Topic)];
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MessageOutput.printf("Huawei MQTT handler: cannot parse payload of topic '%s' as float: %s\r\n",
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topic, strValue.c_str());
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strtok_r(rest, "/", &rest); // Remove "huawei"
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strtok_r(rest, "/", &rest); // Remove "cmd"
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setting = strtok_r(rest, "/", &rest);
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if (setting == NULL) {
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return;
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return;
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}
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}
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char* strlimit = new char[len + 1];
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memcpy(strlimit, payload, len);
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strlimit[len] = '\0';
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float payload_val = strtof(strlimit, NULL);
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delete[] strlimit;
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std::lock_guard<std::mutex> mqttLock(_mqttMutex);
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std::lock_guard<std::mutex> mqttLock(_mqttMutex);
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if (!strcmp(setting, TOPIC_SUB_LIMIT_ONLINE_VOLTAGE)) {
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switch (t) {
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// Set voltage limit
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case Topic::LimitOnlineVoltage:
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MessageOutput.printf("Limit Voltage: %f V\r\n", payload_val);
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MessageOutput.printf("Limit Voltage: %f V\r\n", payload_val);
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_mqttCallbacks.push_back(std::bind(&HuaweiCanClass::setValue,
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_mqttCallbacks.push_back(std::bind(&HuaweiCanClass::setValue,
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&HuaweiCan, payload_val, HUAWEI_ONLINE_VOLTAGE));
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&HuaweiCan, payload_val, HUAWEI_ONLINE_VOLTAGE));
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break;
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} else if (!strcmp(setting, TOPIC_SUB_LIMIT_OFFLINE_VOLTAGE)) {
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case Topic::LimitOfflineVoltage:
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// Set current limit
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MessageOutput.printf("Offline Limit Voltage: %f V\r\n", payload_val);
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MessageOutput.printf("Offline Limit Voltage: %f V\r\n", payload_val);
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_mqttCallbacks.push_back(std::bind(&HuaweiCanClass::setValue,
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_mqttCallbacks.push_back(std::bind(&HuaweiCanClass::setValue,
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&HuaweiCan, payload_val, HUAWEI_OFFLINE_VOLTAGE));
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&HuaweiCan, payload_val, HUAWEI_OFFLINE_VOLTAGE));
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break;
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} else if (!strcmp(setting, TOPIC_SUB_LIMIT_ONLINE_CURRENT)) {
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case Topic::LimitOnlineCurrent:
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// Set current limit
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MessageOutput.printf("Limit Current: %f A\r\n", payload_val);
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MessageOutput.printf("Limit Current: %f A\r\n", payload_val);
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_mqttCallbacks.push_back(std::bind(&HuaweiCanClass::setValue,
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_mqttCallbacks.push_back(std::bind(&HuaweiCanClass::setValue,
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&HuaweiCan, payload_val, HUAWEI_ONLINE_CURRENT));
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&HuaweiCan, payload_val, HUAWEI_ONLINE_CURRENT));
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break;
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} else if (!strcmp(setting, TOPIC_SUB_LIMIT_OFFLINE_CURRENT)) {
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case Topic::LimitOfflineCurrent:
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// Set current limit
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MessageOutput.printf("Offline Limit Current: %f A\r\n", payload_val);
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MessageOutput.printf("Offline Limit Current: %f A\r\n", payload_val);
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_mqttCallbacks.push_back(std::bind(&HuaweiCanClass::setValue,
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_mqttCallbacks.push_back(std::bind(&HuaweiCanClass::setValue,
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&HuaweiCan, payload_val, HUAWEI_OFFLINE_CURRENT));
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&HuaweiCan, payload_val, HUAWEI_OFFLINE_CURRENT));
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break;
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} else if (!strcmp(setting, TOPIC_SUB_MODE)) {
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case Topic::Mode:
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// Control power on/off
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switch (static_cast<int>(payload_val)) {
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if(payload_val == 3) {
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case 3:
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MessageOutput.println("[Huawei MQTT::] Received MQTT msg. New mode: Full internal control");
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MessageOutput.println("[Huawei MQTT::] Received MQTT msg. New mode: Full internal control");
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_mqttCallbacks.push_back(std::bind(&HuaweiCanClass::setMode,
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_mqttCallbacks.push_back(std::bind(&HuaweiCanClass::setMode,
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&HuaweiCan, HUAWEI_MODE_AUTO_INT));
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&HuaweiCan, HUAWEI_MODE_AUTO_INT));
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}
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break;
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if(payload_val == 2) {
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case 2:
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MessageOutput.println("[Huawei MQTT::] Received MQTT msg. New mode: Internal on/off control, external power limit");
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MessageOutput.println("[Huawei MQTT::] Received MQTT msg. New mode: Internal on/off control, external power limit");
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_mqttCallbacks.push_back(std::bind(&HuaweiCanClass::setMode,
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_mqttCallbacks.push_back(std::bind(&HuaweiCanClass::setMode,
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&HuaweiCan, HUAWEI_MODE_AUTO_EXT));
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&HuaweiCan, HUAWEI_MODE_AUTO_EXT));
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}
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break;
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if(payload_val == 1) {
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case 1:
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MessageOutput.println("[Huawei MQTT::] Received MQTT msg. New mode: Turned ON");
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MessageOutput.println("[Huawei MQTT::] Received MQTT msg. New mode: Turned ON");
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_mqttCallbacks.push_back(std::bind(&HuaweiCanClass::setMode,
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_mqttCallbacks.push_back(std::bind(&HuaweiCanClass::setMode,
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&HuaweiCan, HUAWEI_MODE_ON));
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&HuaweiCan, HUAWEI_MODE_ON));
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}
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break;
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if(payload_val == 0) {
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case 0:
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MessageOutput.println("[Huawei MQTT::] Received MQTT msg. New mode: Turned OFF");
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MessageOutput.println("[Huawei MQTT::] Received MQTT msg. New mode: Turned OFF");
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_mqttCallbacks.push_back(std::bind(&HuaweiCanClass::setMode,
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_mqttCallbacks.push_back(std::bind(&HuaweiCanClass::setMode,
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&HuaweiCan, HUAWEI_MODE_OFF));
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&HuaweiCan, HUAWEI_MODE_OFF));
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}
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break;
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}
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default:
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MessageOutput.printf("[Huawei MQTT::] Invalid mode %.0f\r\n", payload_val);
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break;
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}
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break;
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}
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}
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}
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