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* Socket refactor and SSL * esp-idf temp * Fixes * Echo component and noise * Add noise API transport support * Updates * ESP-IDF * Complete * Fixes * Fixes * Versions update * New i2c APIs * Complete i2c refactor * SPI migration * Revert ESP Preferences migration, too complex for now * OTA support * Remove echo again * Remove ssl again * GPIOFlags updates * Rename esphal and ICACHE_RAM_ATTR * Make ESP32 arduino compilable again * Fix GPIO flags * Complete pin registry refactor and fixes * Fixes to make test1 compile * Remove sdkconfig file * Ignore sdkconfig file * Fixes in reviewing * Make test2 compile * Make test4 compile * Make test5 compile * Run clang-format * Fix lint errors * Use esp-idf APIs instead of btStart * Another round of fixes * Start implementing ESP8266 * Make test3 compile * Guard esp8266 code * Lint * Reformat * Fixes * Fixes v2 * more fixes * ESP-IDF tidy target * Convert ARDUINO_ARCH_ESPxx * Update WiFiSignalSensor * Update time ifdefs * OTA needs millis from hal * RestartSwitch needs delay from hal * ESP-IDF Uart * Fix OTA blank password * Allow setting sdkconfig * Fix idf partitions and allow setting sdkconfig from yaml * Re-add read/write compat APIs and fix esp8266 uart * Fix esp8266 store log strings in flash * Fix ESP32 arduino preferences not initialized * Update ifdefs * Change how sdkconfig change is detected * Add checks to ci-custom and fix them * Run clang-format * Add esp-idf clang-tidy target and fix errors * Fixes from clang-tidy idf round 2 * Fixes from compiling tests with esp-idf * Run clang-format * Switch test5.yaml to esp-idf * Implement ESP8266 Preferences * Lint * Re-do PIO package version selection a bit * Fix arduinoespressif32 package version * Fix unit tests * Lint * Lint fixes * Fix readv/writev not defined * Fix graphing component * Re-add all old options from core/config.py Co-authored-by: Jesse Hills <3060199+jesserockz@users.noreply.github.com>
81 lines
2.9 KiB
C++
81 lines
2.9 KiB
C++
#include "climate_ir.h"
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#include "esphome/core/log.h"
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namespace esphome {
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namespace climate_ir {
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static const char *const TAG = "climate_ir";
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climate::ClimateTraits ClimateIR::traits() {
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auto traits = climate::ClimateTraits();
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traits.set_supports_current_temperature(this->sensor_ != nullptr);
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traits.set_supported_modes({climate::CLIMATE_MODE_OFF, climate::CLIMATE_MODE_HEAT_COOL});
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if (supports_cool_)
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traits.add_supported_mode(climate::CLIMATE_MODE_COOL);
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if (supports_heat_)
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traits.add_supported_mode(climate::CLIMATE_MODE_HEAT);
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if (supports_dry_)
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traits.add_supported_mode(climate::CLIMATE_MODE_DRY);
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if (supports_fan_only_)
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traits.add_supported_mode(climate::CLIMATE_MODE_FAN_ONLY);
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traits.set_supports_two_point_target_temperature(false);
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traits.set_visual_min_temperature(this->minimum_temperature_);
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traits.set_visual_max_temperature(this->maximum_temperature_);
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traits.set_visual_temperature_step(this->temperature_step_);
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traits.set_supported_fan_modes(fan_modes_);
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traits.set_supported_swing_modes(swing_modes_);
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return traits;
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}
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void ClimateIR::setup() {
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if (this->sensor_) {
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this->sensor_->add_on_state_callback([this](float state) {
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this->current_temperature = state;
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// current temperature changed, publish state
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this->publish_state();
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});
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this->current_temperature = this->sensor_->state;
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} else
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this->current_temperature = NAN;
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// restore set points
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auto restore = this->restore_state_();
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if (restore.has_value()) {
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restore->apply(this);
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} else {
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// restore from defaults
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this->mode = climate::CLIMATE_MODE_OFF;
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// initialize target temperature to some value so that it's not NAN
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this->target_temperature =
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roundf(clamp(this->current_temperature, this->minimum_temperature_, this->maximum_temperature_));
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this->fan_mode = climate::CLIMATE_FAN_AUTO;
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this->swing_mode = climate::CLIMATE_SWING_OFF;
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}
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// Never send nan to HA
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if (std::isnan(this->target_temperature))
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this->target_temperature = 24;
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}
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void ClimateIR::control(const climate::ClimateCall &call) {
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if (call.get_mode().has_value())
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this->mode = *call.get_mode();
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if (call.get_target_temperature().has_value())
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this->target_temperature = *call.get_target_temperature();
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if (call.get_fan_mode().has_value())
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this->fan_mode = *call.get_fan_mode();
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if (call.get_swing_mode().has_value())
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this->swing_mode = *call.get_swing_mode();
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this->transmit_state();
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this->publish_state();
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}
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void ClimateIR::dump_config() {
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LOG_CLIMATE("", "IR Climate", this);
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ESP_LOGCONFIG(TAG, " Min. Temperature: %.1f°C", this->minimum_temperature_);
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ESP_LOGCONFIG(TAG, " Max. Temperature: %.1f°C", this->maximum_temperature_);
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ESP_LOGCONFIG(TAG, " Supports HEAT: %s", YESNO(this->supports_heat_));
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ESP_LOGCONFIG(TAG, " Supports COOL: %s", YESNO(this->supports_cool_));
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}
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} // namespace climate_ir
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} // namespace esphome
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