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https://github.com/Laxilef/OTGateway.git
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5 Commits
otc_fix
...
ae58cfecb4
| Author | SHA1 | Date | |
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ae58cfecb4 | ||
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1f72286be7 | ||
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40767fbb99 | ||
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cb34e073a7 | ||
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8ba73093af |
BIN
build/firmware_nodemcu_8266_1.5.3.elf
Normal file
BIN
build/firmware_nodemcu_8266_1.5.3.elf
Normal file
Binary file not shown.
BIN
build/Алгоритм от OTThing + График.zip
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BIN
build/Алгоритм от OTThing + График.zip
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@@ -16,14 +16,16 @@ public:
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float Kn = 0.0;
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float Kk = 0.0;
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float Kt = 0.0;
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float Ke = 1.3;
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Equitherm() = default;
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// kn, kk, kt
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Equitherm(float new_kn, float new_kk, float new_kt) {
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// kn, kk, kt, Ke
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Equitherm(float new_kn, float new_kk, float new_kt, float new_ke) {
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Kn = new_kn;
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Kk = new_kk;
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Kt = new_kt;
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Ke = new_ke;
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}
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// лимит выходной величины
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@@ -34,7 +36,7 @@ public:
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// возвращает новое значение при вызове
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datatype getResult() {
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datatype output = getResultN() + getResultK() + getResultT();
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datatype output = getResultN() + Kk + getResultT();
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output = constrain(output, _minOut, _maxOut); // ограничиваем выход
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return output;
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}
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@@ -43,21 +45,30 @@ private:
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unsigned short _minOut = 20, _maxOut = 90;
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// температура контура отопления в зависимости от наружной температуры
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// datatype getResultN() {
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// Kntemp = Kn*3.3; //Подгонка под типовые кривые
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// float tempDiff = targetTemp - outdoorTemp;
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// if (tempDiff < 0) tempDiff = 0;
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// float T_rad = targetTemp + pow(Kntemp * tempDiff, 1.0 / Ke);
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// return T_rad;
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// }
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datatype getResultN() {
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float a = (-0.21 * Kn) - 0.06; // a = -0,21k — 0,06
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float b = (6.04 * Kn) + 1.98; // b = 6,04k + 1,98
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float c = (-5.06 * Kn) + 18.06; // с = -5,06k + 18,06
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float x = (-0.2 * outdoorTemp) + 5; // x = -0.2*t1 + 5
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return (a * x * x) + (b * x) + c; // Tn = ax2 + bx + c
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}
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float tempDiff = targetTemp - outdoorTemp;
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if (tempDiff < 0) {
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tempDiff = 0;
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}
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float minOutside = targetTemp - (_maxOut - targetTemp) / Kn;
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float c1 = (_maxOut - targetTemp) / pow(targetTemp - minOutside, 1.0 / Ke);
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float T_rad = targetTemp + c1 * pow(tempDiff, 1.0 / Ke) ;
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if (T_rad > _maxOut) {
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T_rad = _maxOut;
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}
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// поправка на желаемую комнатную температуру
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datatype getResultK() {
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return (targetTemp - 20) * Kk;
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}
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return T_rad;
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}
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// Расчет поправки (ошибки) термостата
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datatype getResultT() {
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return constrain((targetTemp - indoorTemp), -3, 3) * Kt;
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}
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};
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};
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@@ -84,7 +84,7 @@ board_build.ldscript = eagle.flash.4m1m.ld
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;platform_packages =
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; framework-arduinoespressif32 @ https://github.com/espressif/arduino-esp32.git#3.0.5
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; framework-arduinoespressif32-libs @ https://github.com/espressif/esp32-arduino-lib-builder/releases/download/idf-release_v5.1/esp32-arduino-libs-idf-release_v5.1-33fbade6.zip
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platform = https://github.com/pioarduino/platform-espressif32/releases/download/53.03.13/platform-espressif32.zip
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platform = https://github.com/pioarduino/platform-espressif32/releases/download/53.03.12/platform-espressif32.zip
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platform_packages =
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board_build.partitions = esp32_partitions.csv
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lib_deps =
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@@ -164,10 +164,10 @@ board_build.ldscript = ${esp8266_defaults.board_build.ldscript}
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build_type = ${esp8266_defaults.build_type}
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build_flags =
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${esp8266_defaults.build_flags}
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-D DEFAULT_OT_IN_GPIO=13
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-D DEFAULT_OT_OUT_GPIO=15
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-D DEFAULT_OT_IN_GPIO=4
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-D DEFAULT_OT_OUT_GPIO=5
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-D DEFAULT_SENSOR_OUTDOOR_GPIO=12
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-D DEFAULT_SENSOR_INDOOR_GPIO=4
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-D DEFAULT_SENSOR_INDOOR_GPIO=14
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-D DEFAULT_STATUS_LED_GPIO=2
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-D DEFAULT_OT_RX_LED_GPIO=16
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@@ -14,12 +14,12 @@ ap_password = otgateway123456
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sta_ssid =
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sta_password =
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portal_login = admin
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portal_password = admin
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portal_login =
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portal_password =
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mqtt_enabled = false
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mqtt_server =
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mqtt_port = 1883
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mqtt_user =
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mqtt_password =
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mqtt_prefix = opentherm
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mqtt_prefix = otgateway
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@@ -886,6 +886,29 @@ public:
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return this->publish(this->makeConfigTopic(FPSTR(HA_ENTITY_NUMBER), F("equitherm_k_factor")).c_str(), doc);
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}
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bool publishInputEquithermFactorK(bool enabledByDefault = true) {
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JsonDocument doc;
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doc[FPSTR(HA_AVAILABILITY)][FPSTR(HA_TOPIC)] = this->statusTopic.c_str();
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doc[FPSTR(HA_ENABLED_BY_DEFAULT)] = enabledByDefault;
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doc[FPSTR(HA_UNIQUE_ID)] = this->getObjectIdWithPrefix(F("equitherm_e"));
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doc[FPSTR(HA_OBJECT_ID)] = doc[FPSTR(HA_UNIQUE_ID)];
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doc[FPSTR(HA_ENTITY_CATEGORY)] = FPSTR(HA_ENTITY_CATEGORY_CONFIG);
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doc[FPSTR(HA_NAME)] = F("Equitherm Exponent E");
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doc[FPSTR(HA_ICON)] = F("mdi:alpha-e-circle-outline");
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doc[FPSTR(HA_STATE_TOPIC)] = this->settingsTopic.c_str();
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doc[FPSTR(HA_VALUE_TEMPLATE)] = F("{{ value_json.equitherm.e_factor|float(0)|round(2) }}");
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doc[FPSTR(HA_COMMAND_TOPIC)] = this->setSettingsTopic.c_str();
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doc[FPSTR(HA_COMMAND_TEMPLATE)] = F("{\"equitherm\": {\"e_factor\" : {{ value }}}}");
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doc[FPSTR(HA_MIN)] = 1;
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doc[FPSTR(HA_MAX)] = 2;
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doc[FPSTR(HA_STEP)] = 0.01f;
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doc[FPSTR(HA_MODE)] = FPSTR(HA_MODE_BOX);
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doc[FPSTR(HA_EXPIRE_AFTER)] = this->expireAfter;
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doc.shrinkToFit();
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return this->publish(this->makeConfigTopic(FPSTR(HA_ENTITY_NUMBER), F("equitherm_k_factor")).c_str(), doc);
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}
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bool publishInputEquithermFactorT(bool enabledByDefault = true) {
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JsonDocument doc;
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doc[FPSTR(HA_AVAILABILITY)][0][FPSTR(HA_TOPIC)] = this->statusTopic.c_str();
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@@ -172,6 +172,7 @@ protected:
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etRegulator.setLimits(minTemp, maxTemp);
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etRegulator.Kn = settings.equitherm.n_factor;
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etRegulator.Kk = settings.equitherm.k_factor;
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etRegulator.Ke = settings.equitherm.e_factor;
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etRegulator.targetTemp = targetTemp;
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etRegulator.outdoorTemp = outdoorTemp;
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float etResult = etRegulator.getResult();
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@@ -137,6 +137,7 @@ struct Settings {
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float n_factor = 0.7f;
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float k_factor = 3.0f;
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float t_factor = 2.0f;
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float e_factor = 1.3f;
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} equitherm;
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struct {
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@@ -73,6 +73,7 @@ const char S_DNS[] PROGMEM = "dns";
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const char S_DT[] PROGMEM = "dt";
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const char S_D_FACTOR[] PROGMEM = "d_factor";
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const char S_D_MULTIPLIER[] PROGMEM = "d_multiplier";
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const char S_E_FACTOR[] PROGMEM = "e_factor";
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const char S_EMERGENCY[] PROGMEM = "emergency";
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const char S_ENABLED[] PROGMEM = "enabled";
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const char S_ENV[] PROGMEM = "env";
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@@ -502,6 +502,7 @@ void settingsToJson(const Settings& src, JsonVariant dst, bool safe = false) {
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equitherm[FPSTR(S_ENABLED)] = src.equitherm.enabled;
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equitherm[FPSTR(S_N_FACTOR)] = roundf(src.equitherm.n_factor, 3);
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equitherm[FPSTR(S_K_FACTOR)] = roundf(src.equitherm.k_factor, 3);
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equitherm[FPSTR(S_E_FACTOR)] = roundf(src.equitherm.e_factor, 3);
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equitherm[FPSTR(S_T_FACTOR)] = roundf(src.equitherm.t_factor, 3);
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auto pid = dst[FPSTR(S_PID)].to<JsonObject>();
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@@ -1100,6 +1101,14 @@ bool jsonToSettings(const JsonVariantConst src, Settings& dst, bool safe = false
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}
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}
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if (!src[FPSTR(S_EQUITHERM)][FPSTR(S_E_FACTOR)].isNull()) {
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float value = src[FPSTR(S_EQUITHERM)][FPSTR(S_E_FACTOR)].as<float>();
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if (value >= 1 && value <= 2 && fabsf(value - dst.equitherm.e_factor) > 0.0001f) {
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dst.equitherm.e_factor = roundf(value, 3);
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changed = true;
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}
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}
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if (!src[FPSTR(S_EQUITHERM)][FPSTR(S_T_FACTOR)].isNull()) {
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float value = src[FPSTR(S_EQUITHERM)][FPSTR(S_T_FACTOR)].as<float>();
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@@ -342,9 +342,14 @@
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"equitherm": {
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"n": "N factor",
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"k": "K factor",
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"e": "Exponent E",
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"t": {
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"title": "T factor",
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"note": "Not used if PID is enabled"
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},
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"chart": {
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"radiatorTemp": "Radiator Temperature (°C)",
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"outdoorTemp": "Outdoor Temperature (°C)"
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}
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},
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@@ -342,9 +342,14 @@
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"equitherm": {
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"n": "Fattore N",
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"k": "Fattore K",
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"e": "Esponente E",
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"t": {
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"title": "Fattore T",
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"note": "Non usato se PID è attivato"
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},
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"chart": {
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"radiatorTemp": "Temperatura Del Radiatore (°C)",
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"outdoorTemp": "Outdoor Temperature (°C)"
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}
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},
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@@ -342,9 +342,14 @@
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"equitherm": {
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"n": "Коэффициент N",
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"k": "Коэффициент K",
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"e": "Экспонента E",
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"t": {
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"title": "Коэффициент T",
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"note": "Не используется, если ПИД включен"
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},
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"chart": {
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"radiatorTemp": "Температура радиатора (°C)",
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"outdoorTemp": "Наружная температура (°C)"
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}
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},
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@@ -261,9 +261,10 @@
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</details>
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<hr />
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<details>
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<summary><b data-i18n>settings.section.equitherm</b></summary>
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<canvas id="equithermChart" width="400" height="200"></canvas>
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<div>
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<div id="equitherm-settings-busy" aria-busy="true"></div>
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<form action="/api/settings" id="equitherm-settings" class="hidden">
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@@ -273,7 +274,7 @@
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<span data-i18n>settings.enable</span>
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</label>
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</fieldset>
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<div class="grid">
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<label>
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<span data-i18n>settings.equitherm.n</span>
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@@ -285,6 +286,11 @@
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<input type="number" inputmode="decimal" name="equitherm[k_factor]" min="0" max="10" step="0.01" required>
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</label>
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<label>
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<span data-i18n>settings.equitherm.e</span>
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<input type="number" inputmode="decimal" name="equitherm[e_factor]" min="1" max="2" step="0.01" required>
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</label>
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<label>
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<span data-i18n>settings.equitherm.t.title</span>
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<input type="number" inputmode="decimal" name="equitherm[t_factor]" min="0" max="10" step="0.01" required>
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@@ -299,6 +305,8 @@
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<hr />
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<details>
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<summary><b data-i18n>settings.section.pid</b></summary>
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<div>
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@@ -756,6 +764,7 @@
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</footer>
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<script src="/static/app.js?{BUILD_TIME}"></script>
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<script src="https://cdn.jsdelivr.net/npm/chart.js"></script>
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<script>
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document.addEventListener('DOMContentLoaded', async () => {
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const lang = new Lang(document.getElementById('lang'));
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@@ -885,6 +894,7 @@
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setCheckboxValue("[name='equitherm[enabled]']", data.equitherm.enabled);
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setInputValue("[name='equitherm[n_factor]']", data.equitherm.n_factor);
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setInputValue("[name='equitherm[k_factor]']", data.equitherm.k_factor);
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setInputValue("[name='equitherm[e_factor]']", data.equitherm.e_factor);
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setInputValue("[name='equitherm[t_factor]']", data.equitherm.t_factor);
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setBusy('#equitherm-settings-busy', '#equitherm-settings', false);
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@@ -909,6 +919,9 @@
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setInputValue("[name='pid[deadband][thresholdHigh]']", data.pid.deadband.thresholdHigh);
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setInputValue("[name='pid[deadband][thresholdLow]']", data.pid.deadband.thresholdLow);
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setBusy('#pid-settings-busy', '#pid-settings', false);
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||||
|
||||
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};
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try {
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@@ -961,6 +974,179 @@
|
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} catch (error) {
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console.log(error);
|
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}
|
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|
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//График
|
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let equithermChart;
|
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|
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async function initChart() {
|
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try {
|
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const response = await fetch("/api/settings", {
|
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cache: "no-cache",
|
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credentials: "include"
|
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});
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|
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if (!response.ok) {
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throw new Error('Response not valid');
|
||||
}
|
||||
|
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const result = await response.json();
|
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//График переменные
|
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const targetTemp = result?.heating?.target_temp ?? 24;
|
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const maxOut = result?.heating?.maxTemp ?? 90;
|
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const Kn = result?.equitherm?.n_factor ?? 1;
|
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const Ke = result?.equitherm?.e_factor ?? 1.3;
|
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const Kk = result?.equitherm?.k_factor ?? 0;
|
||||
|
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function calculateTRad(targetTemp, outdoorTemp, maxOut, Kn, Ke, Kk) {
|
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let tempDiff = targetTemp - outdoorTemp;
|
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if (tempDiff < 0) {
|
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tempDiff = 0;
|
||||
}
|
||||
const minOutside = targetTemp - (maxOut - targetTemp) / Kn;
|
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let base = targetTemp - minOutside;
|
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if (base <= 0) {
|
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base = 0.0001;
|
||||
}
|
||||
const c1 = (maxOut - targetTemp) / Math.pow(base, 1.0 / Ke);
|
||||
let T_rad = targetTemp + c1 * Math.pow(tempDiff, 1.0 / Ke) + Kk;
|
||||
return Math.min(T_rad, maxOut);
|
||||
}
|
||||
|
||||
function generateChartData(targetTemp, maxOut, Kn, Ke, Kk) {
|
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const outdoorTemps = [];
|
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const predictedTRad = [];
|
||||
|
||||
for (let temp = 25; temp >= -30; temp -= 1) {
|
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outdoorTemps.push(temp);
|
||||
predictedTRad.push(calculateTRad(targetTemp, temp, maxOut, Kn, Ke, Kk).toFixed(1));
|
||||
}
|
||||
return { outdoorTemps, predictedTRad };
|
||||
}
|
||||
|
||||
// Стартовые данные
|
||||
const { outdoorTemps, predictedTRad } = generateChartData(targetTemp, maxOut, Kn, Ke, Kk);
|
||||
|
||||
// Создаем график
|
||||
const ctx = document.getElementById('equithermChart').getContext('2d');
|
||||
// Create gradient for the line
|
||||
const canvasHeight = ctx.canvas.height;
|
||||
const gradient = ctx.createLinearGradient(0, canvasHeight, 0, 0); // Adjust x1, y1, x2, y2 for direction
|
||||
gradient.addColorStop(0, 'rgba(75, 192, 192, 1)');
|
||||
gradient.addColorStop(0.5, 'rgba(255, 99, 132, 1)');
|
||||
|
||||
|
||||
equithermChart = new Chart(ctx, {
|
||||
type: 'line',
|
||||
data: {
|
||||
labels: outdoorTemps,
|
||||
datasets: [{
|
||||
label: 'Температура Радиатора (°C)',
|
||||
borderColor: gradient, // Use gradient instead of solid color
|
||||
borderWidth: 1,
|
||||
fill: false,
|
||||
tension: 0.1,
|
||||
pointRadius: 2, // Reduce dot size (default is 3)
|
||||
pointHoverRadius: 4,
|
||||
data: predictedTRad
|
||||
}]
|
||||
},
|
||||
options: {
|
||||
responsive: true,
|
||||
scales: {
|
||||
x: {
|
||||
display: true,
|
||||
title: {
|
||||
display: true,
|
||||
text: 'Наружная температура (°C)'
|
||||
}
|
||||
},
|
||||
y: {
|
||||
display: true,
|
||||
title: {
|
||||
display: true,
|
||||
text: 'Температура Радиатора (°C)'
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
});
|
||||
|
||||
// Показ формы
|
||||
document.getElementById('equitherm-settings-busy').classList.add('hidden');
|
||||
document.getElementById('equitherm-settings').classList.remove('hidden');
|
||||
|
||||
} catch (error) {
|
||||
console.log(error);
|
||||
}
|
||||
}
|
||||
|
||||
// Обновление графика
|
||||
function updateChart(formData) {
|
||||
if (!equithermChart) return;
|
||||
|
||||
fetch("/api/settings", {
|
||||
cache: "no-cache",
|
||||
credentials: "include"
|
||||
})
|
||||
.then(response => response.json())
|
||||
.then(result => {
|
||||
const targetTemp = result?.heating?.target_temp ?? 24;
|
||||
const maxOut = result?.heating?.maxTemp ?? 90;
|
||||
const Kn = parseFloat(formData.get('equitherm[n_factor]')) || 1;
|
||||
const Ke = parseFloat(formData.get('equitherm[e_factor]')) || 1.3;
|
||||
const Kk = parseFloat(formData.get('equitherm[k_factor]')) || 0;
|
||||
|
||||
function calculateTRad(targetTemp, outdoorTemp, maxOut, Kn, Ke, Kk) {
|
||||
let tempDiff = targetTemp - outdoorTemp;
|
||||
if (tempDiff < 0) {
|
||||
tempDiff = 0;
|
||||
}
|
||||
const minOutside = targetTemp - (maxOut - targetTemp) / Kn;
|
||||
let base = targetTemp - minOutside;
|
||||
if (base <= 0) {
|
||||
base = 0.0001;
|
||||
}
|
||||
const c1 = (maxOut - targetTemp) / Math.pow(base, 1.0 / Ke);
|
||||
let T_rad = targetTemp + c1 * Math.pow(tempDiff, 1.0 / Ke) + Kk;
|
||||
return Math.min(T_rad, maxOut);
|
||||
}
|
||||
|
||||
const outdoorTemps = [];
|
||||
const predictedTRad = [];
|
||||
for (let temp = 25; temp >= -30; temp -= 1) {
|
||||
outdoorTemps.push(temp);
|
||||
predictedTRad.push(calculateTRad(targetTemp, temp, maxOut, Kn, Ke, Kk).toFixed(1));
|
||||
}
|
||||
|
||||
equithermChart.data.labels = outdoorTemps;
|
||||
equithermChart.data.datasets[0].data = predictedTRad;
|
||||
equithermChart.update();
|
||||
})
|
||||
.catch(error => console.log(error));
|
||||
}
|
||||
|
||||
// Слушаем отправку
|
||||
const form = document.getElementById('equitherm-settings');
|
||||
form.addEventListener('submit', (e) => {
|
||||
|
||||
const formData = new FormData(form);
|
||||
updateChart(formData);
|
||||
});
|
||||
|
||||
// Слушаем кнопку сохранить
|
||||
const equithermSection = document.querySelector('details');
|
||||
const saveButton = equithermSection.querySelector('button[data-i18n="button.save"]');
|
||||
saveButton.addEventListener('click', () => {
|
||||
const form = document.getElementById('equitherm-settings');
|
||||
const formData = new FormData(form);
|
||||
updateChart(formData);
|
||||
});
|
||||
|
||||
// инициализируем
|
||||
initChart();
|
||||
|
||||
|
||||
});
|
||||
</script>
|
||||
</body>
|
||||
|
||||
Reference in New Issue
Block a user