esphome/esphome/components/integration/integration_sensor.h
Otto Winter ac0d921413
ESP-IDF support and generic target platforms (#2303)
* 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>
2021-09-20 11:47:51 +02:00

94 lines
2.7 KiB
C++

#pragma once
#include "esphome/core/component.h"
#include "esphome/core/preferences.h"
#include "esphome/core/automation.h"
#include "esphome/core/hal.h"
#include "esphome/components/sensor/sensor.h"
namespace esphome {
namespace integration {
enum IntegrationSensorTime {
INTEGRATION_SENSOR_TIME_MILLISECOND = 0,
INTEGRATION_SENSOR_TIME_SECOND,
INTEGRATION_SENSOR_TIME_MINUTE,
INTEGRATION_SENSOR_TIME_HOUR,
INTEGRATION_SENSOR_TIME_DAY,
};
enum IntegrationMethod {
INTEGRATION_METHOD_TRAPEZOID = 0,
INTEGRATION_METHOD_LEFT,
INTEGRATION_METHOD_RIGHT,
};
class IntegrationSensor : public sensor::Sensor, public Component {
public:
void setup() override;
void dump_config() override;
float get_setup_priority() const override { return setup_priority::DATA; }
void set_min_save_interval(uint32_t min_interval) { this->min_save_interval_ = min_interval; }
void set_sensor(Sensor *sensor) { sensor_ = sensor; }
void set_time(IntegrationSensorTime time) { time_ = time; }
void set_method(IntegrationMethod method) { method_ = method; }
void set_restore(bool restore) { restore_ = restore; }
void reset() { this->publish_and_save_(0.0f); }
protected:
void process_sensor_value_(float value);
float get_time_factor_() {
switch (this->time_) {
case INTEGRATION_SENSOR_TIME_MILLISECOND:
return 1.0f;
case INTEGRATION_SENSOR_TIME_SECOND:
return 1.0f / 1000.0f;
case INTEGRATION_SENSOR_TIME_MINUTE:
return 1.0f / 60000.0f;
case INTEGRATION_SENSOR_TIME_HOUR:
return 1.0f / 3600000.0f;
case INTEGRATION_SENSOR_TIME_DAY:
return 1.0f / 86400000.0f;
default:
return 0.0f;
}
}
void publish_and_save_(double result) {
this->result_ = result;
this->publish_state(result);
float result_f = result;
const uint32_t now = millis();
if (now - this->last_save_ < this->min_save_interval_)
return;
this->last_save_ = now;
this->rtc_.save(&result_f);
}
std::string unit_of_measurement() override;
std::string icon() override { return this->sensor_->get_icon(); }
int8_t accuracy_decimals() override { return this->sensor_->get_accuracy_decimals() + 2; }
sensor::Sensor *sensor_;
IntegrationSensorTime time_;
IntegrationMethod method_;
bool restore_;
ESPPreferenceObject rtc_;
uint32_t last_save_{0};
uint32_t min_save_interval_{0};
uint32_t last_update_;
double result_{0.0f};
float last_value_{0.0f};
};
template<typename... Ts> class ResetAction : public Action<Ts...> {
public:
explicit ResetAction(IntegrationSensor *parent) : parent_(parent) {}
void play(Ts... x) override { this->parent_->reset(); }
protected:
IntegrationSensor *parent_;
};
} // namespace integration
} // namespace esphome