mirror of
https://github.com/esphome/esphome.git
synced 2024-12-19 12:04:54 +01:00
[opentherm] Message ordering, on-the-fly message editing, code improvements (#7903)
This commit is contained in:
parent
9816c27031
commit
a6957b9d3b
12 changed files with 475 additions and 145 deletions
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@ -1,10 +1,12 @@
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from typing import Any
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import logging
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from esphome import automation
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import esphome.codegen as cg
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import esphome.config_validation as cv
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from esphome import pins
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from esphome.components import sensor
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from esphome.const import CONF_ID, PLATFORM_ESP32, PLATFORM_ESP8266
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from esphome.const import CONF_ID, PLATFORM_ESP32, PLATFORM_ESP8266, CONF_TRIGGER_ID
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from . import const, schema, validate, generate
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CODEOWNERS = ["@olegtarasov"]
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@ -20,7 +22,21 @@ CONF_CH2_ACTIVE = "ch2_active"
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CONF_SUMMER_MODE_ACTIVE = "summer_mode_active"
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CONF_DHW_BLOCK = "dhw_block"
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CONF_SYNC_MODE = "sync_mode"
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CONF_OPENTHERM_VERSION = "opentherm_version"
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CONF_OPENTHERM_VERSION = "opentherm_version" # Deprecated, will be removed
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CONF_BEFORE_SEND = "before_send"
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CONF_BEFORE_PROCESS_RESPONSE = "before_process_response"
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# Triggers
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BeforeSendTrigger = generate.opentherm_ns.class_(
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"BeforeSendTrigger",
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automation.Trigger.template(generate.OpenthermData.operator("ref")),
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)
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BeforeProcessResponseTrigger = generate.opentherm_ns.class_(
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"BeforeProcessResponseTrigger",
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automation.Trigger.template(generate.OpenthermData.operator("ref")),
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)
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_LOGGER = logging.getLogger(__name__)
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CONFIG_SCHEMA = cv.All(
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cv.Schema(
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@ -36,7 +52,19 @@ CONFIG_SCHEMA = cv.All(
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cv.Optional(CONF_SUMMER_MODE_ACTIVE, False): cv.boolean,
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cv.Optional(CONF_DHW_BLOCK, False): cv.boolean,
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cv.Optional(CONF_SYNC_MODE, False): cv.boolean,
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cv.Optional(CONF_OPENTHERM_VERSION): cv.positive_float,
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cv.Optional(CONF_OPENTHERM_VERSION): cv.positive_float, # Deprecated
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cv.Optional(CONF_BEFORE_SEND): automation.validate_automation(
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{
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cv.GenerateID(CONF_TRIGGER_ID): cv.declare_id(BeforeSendTrigger),
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}
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),
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cv.Optional(CONF_BEFORE_PROCESS_RESPONSE): automation.validate_automation(
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{
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cv.GenerateID(CONF_TRIGGER_ID): cv.declare_id(
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BeforeProcessResponseTrigger
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),
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}
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),
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}
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)
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.extend(
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@ -44,6 +72,11 @@ CONFIG_SCHEMA = cv.All(
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schema.INPUTS, (lambda _: cv.use_id(sensor.Sensor))
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)
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)
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.extend(
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validate.create_entities_schema(
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schema.SETTINGS, (lambda s: s.validation_schema)
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)
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)
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.extend(cv.COMPONENT_SCHEMA),
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cv.only_on([PLATFORM_ESP32, PLATFORM_ESP8266]),
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)
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@ -60,18 +93,33 @@ async def to_code(config: dict[str, Any]) -> None:
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out_pin = await cg.gpio_pin_expression(config[CONF_OUT_PIN])
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cg.add(var.set_out_pin(out_pin))
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non_sensors = {CONF_ID, CONF_IN_PIN, CONF_OUT_PIN}
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non_sensors = {
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CONF_ID,
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CONF_IN_PIN,
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CONF_OUT_PIN,
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CONF_BEFORE_SEND,
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CONF_BEFORE_PROCESS_RESPONSE,
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}
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input_sensors = []
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settings = []
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for key, value in config.items():
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if key in non_sensors:
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continue
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if key in schema.INPUTS:
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input_sensor = await cg.get_variable(value)
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cg.add(
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getattr(var, f"set_{key}_{const.INPUT_SENSOR.lower()}")(input_sensor)
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)
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cg.add(getattr(var, f"set_{key}_{const.INPUT_SENSOR}")(input_sensor))
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input_sensors.append(key)
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elif key in schema.SETTINGS:
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if value == schema.SETTINGS[key].default_value:
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continue
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cg.add(getattr(var, f"set_{key}_{const.SETTING}")(value))
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settings.append(key)
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else:
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if key == CONF_OPENTHERM_VERSION:
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_LOGGER.warning(
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"opentherm_version is deprecated and will be removed in esphome 2025.2.0\n"
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"Please change to 'opentherm_version_controller'."
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)
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cg.add(getattr(var, f"set_{key}")(value))
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if len(input_sensors) > 0:
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@ -81,3 +129,21 @@ async def to_code(config: dict[str, Any]) -> None:
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)
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generate.define_readers(const.INPUT_SENSOR, input_sensors)
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generate.add_messages(var, input_sensors, schema.INPUTS)
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if len(settings) > 0:
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generate.define_has_settings(settings, schema.SETTINGS)
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generate.define_message_handler(const.SETTING, settings, schema.SETTINGS)
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generate.define_setting_readers(const.SETTING, settings)
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generate.add_messages(var, settings, schema.SETTINGS)
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for conf in config.get(CONF_BEFORE_SEND, []):
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trigger = cg.new_Pvariable(conf[CONF_TRIGGER_ID], var)
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await automation.build_automation(
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trigger, [(generate.OpenthermData.operator("ref"), "x")], conf
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)
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for conf in config.get(CONF_BEFORE_PROCESS_RESPONSE, []):
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trigger = cg.new_Pvariable(conf[CONF_TRIGGER_ID], var)
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await automation.build_automation(
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trigger, [(generate.OpenthermData.operator("ref"), "x")], conf
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)
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25
esphome/components/opentherm/automation.h
Normal file
25
esphome/components/opentherm/automation.h
Normal file
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@ -0,0 +1,25 @@
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#pragma once
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#include "esphome/core/automation.h"
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#include "hub.h"
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#include "opentherm.h"
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namespace esphome {
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namespace opentherm {
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class BeforeSendTrigger : public Trigger<OpenthermData &> {
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public:
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BeforeSendTrigger(OpenthermHub *hub) {
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hub->add_on_before_send_callback([this](OpenthermData &x) { this->trigger(x); });
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}
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};
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class BeforeProcessResponseTrigger : public Trigger<OpenthermData &> {
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public:
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BeforeProcessResponseTrigger(OpenthermHub *hub) {
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hub->add_on_before_process_response_callback([this](OpenthermData &x) { this->trigger(x); });
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}
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};
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} // namespace opentherm
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} // namespace esphome
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@ -9,3 +9,4 @@ SWITCH = "switch"
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NUMBER = "number"
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OUTPUT = "output"
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INPUT_SENSOR = "input_sensor"
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SETTING = "setting"
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@ -1,13 +1,14 @@
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from collections.abc import Awaitable
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from typing import Any, Callable
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from typing import Any, Callable, Optional
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import esphome.codegen as cg
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from esphome.const import CONF_ID
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from . import const
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from .schema import TSchema
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from .schema import TSchema, SettingSchema
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opentherm_ns = cg.esphome_ns.namespace("opentherm")
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OpenthermHub = opentherm_ns.class_("OpenthermHub", cg.Component)
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OpenthermData = opentherm_ns.class_("OpenthermData")
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def define_has_component(component_type: str, keys: list[str]) -> None:
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@ -21,6 +22,24 @@ def define_has_component(component_type: str, keys: list[str]) -> None:
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cg.add_define(f"OPENTHERM_HAS_{component_type.upper()}_{key}")
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# We need a separate set of macros for settings because there are different backing field types we need to take
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# into account
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def define_has_settings(keys: list[str], schemas: dict[str, SettingSchema]) -> None:
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cg.add_define(
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"OPENTHERM_SETTING_LIST(F, sep)",
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cg.RawExpression(
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" sep ".join(
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map(
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lambda key: f"F({schemas[key].backing_type}, {key}_setting, {schemas[key].default_value})",
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keys,
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)
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)
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),
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)
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for key in keys:
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cg.add_define(f"OPENTHERM_HAS_SETTING_{key}")
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def define_message_handler(
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component_type: str, keys: list[str], schemas: dict[str, TSchema]
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) -> None:
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@ -74,16 +93,30 @@ def define_readers(component_type: str, keys: list[str]) -> None:
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)
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def add_messages(hub: cg.MockObj, keys: list[str], schemas: dict[str, TSchema]):
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messages: set[tuple[str, bool]] = set()
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def define_setting_readers(component_type: str, keys: list[str]) -> None:
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for key in keys:
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messages.add((schemas[key].message, schemas[key].keep_updated))
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for msg, keep_updated in messages:
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cg.add_define(
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f"OPENTHERM_READ_{key}",
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cg.RawExpression(f"this->{key}_{component_type.lower()}"),
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)
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def add_messages(hub: cg.MockObj, keys: list[str], schemas: dict[str, TSchema]):
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messages: dict[str, tuple[bool, Optional[int]]] = {}
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for key in keys:
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messages[schemas[key].message] = (
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schemas[key].keep_updated,
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schemas[key].order if hasattr(schemas[key], "order") else None,
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)
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for msg, (keep_updated, order) in messages.items():
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msg_expr = cg.RawExpression(f"esphome::opentherm::MessageId::{msg}")
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if keep_updated:
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cg.add(hub.add_repeating_message(msg_expr))
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else:
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cg.add(hub.add_initial_message(msg_expr))
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if order is not None:
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cg.add(hub.add_initial_message(msg_expr, order))
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else:
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cg.add(hub.add_initial_message(msg_expr))
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def add_property_set(var: cg.MockObj, config_key: str, config: dict[str, Any]) -> None:
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@ -63,7 +63,7 @@ void write_f88(const float value, OpenthermData &data) { data.f88(value); }
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OpenthermData OpenthermHub::build_request_(MessageId request_id) const {
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OpenthermData data;
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data.type = 0;
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data.id = 0;
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data.id = request_id;
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data.valueHB = 0;
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data.valueLB = 0;
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@ -82,28 +82,13 @@ OpenthermData OpenthermHub::build_request_(MessageId request_id) const {
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// NOLINTEND
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data.type = MessageType::READ_DATA;
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data.id = MessageId::STATUS;
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data.valueHB = ch_enabled | (dhw_enabled << 1) | (cooling_enabled << 2) | (otc_enabled << 3) | (ch2_enabled << 4) |
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(summer_mode_is_active << 5) | (dhw_blocked << 6);
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return data;
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}
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// Another special case is OpenTherm version number which is configured at hub level as a constant
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if (request_id == MessageId::OT_VERSION_CONTROLLER) {
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data.type = MessageType::WRITE_DATA;
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data.id = MessageId::OT_VERSION_CONTROLLER;
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data.f88(this->opentherm_version_);
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return data;
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}
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// Disable incomplete switch statement warnings, because the cases in each
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// switch are generated based on the configured sensors and inputs.
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#pragma GCC diagnostic push
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#pragma GCC diagnostic ignored "-Wswitch"
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// Next, we start with the write requests from switches and other inputs,
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// Next, we start with write requests from switches and other inputs,
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// because we would want to write that data if it is available, rather than
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// request a read for that type (in the case that both read and write are
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// supported).
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@ -116,14 +101,23 @@ OpenthermData OpenthermHub::build_request_(MessageId request_id) const {
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OPENTHERM_MESSAGE_WRITE_POSTSCRIPT, )
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OPENTHERM_INPUT_SENSOR_MESSAGE_HANDLERS(OPENTHERM_MESSAGE_WRITE_MESSAGE, OPENTHERM_MESSAGE_WRITE_ENTITY, ,
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OPENTHERM_MESSAGE_WRITE_POSTSCRIPT, )
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OPENTHERM_SETTING_MESSAGE_HANDLERS(OPENTHERM_MESSAGE_WRITE_MESSAGE, OPENTHERM_MESSAGE_WRITE_SETTING, ,
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OPENTHERM_MESSAGE_WRITE_POSTSCRIPT, )
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default:
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break;
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}
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// Finally, handle the simple read requests, which only change with the message id.
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switch (request_id) { OPENTHERM_SENSOR_MESSAGE_HANDLERS(OPENTHERM_MESSAGE_READ_MESSAGE, OPENTHERM_IGNORE, , , ) }
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switch (request_id) {
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OPENTHERM_SENSOR_MESSAGE_HANDLERS(OPENTHERM_MESSAGE_READ_MESSAGE, OPENTHERM_IGNORE, , , )
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default:
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break;
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}
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switch (request_id) {
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OPENTHERM_BINARY_SENSOR_MESSAGE_HANDLERS(OPENTHERM_MESSAGE_READ_MESSAGE, OPENTHERM_IGNORE, , , )
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default:
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break;
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}
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#pragma GCC diagnostic pop
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// And if we get here, a message was requested which somehow wasn't handled.
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// This shouldn't happen due to the way the defines are configured, so we
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@ -163,19 +157,37 @@ void OpenthermHub::setup() {
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// communicate at least once every second. Sending the status request is
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// good practice anyway.
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this->add_repeating_message(MessageId::STATUS);
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// Also ensure that we start communication with the STATUS message
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this->initial_messages_.insert(this->initial_messages_.begin(), MessageId::STATUS);
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if (this->opentherm_version_ > 0.0f) {
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this->initial_messages_.insert(this->initial_messages_.begin(), MessageId::OT_VERSION_CONTROLLER);
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}
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this->current_message_iterator_ = this->initial_messages_.begin();
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this->write_initial_messages_(this->messages_);
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this->message_iterator_ = this->messages_.begin();
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}
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void OpenthermHub::on_shutdown() { this->opentherm_->stop(); }
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// Disabling clang-tidy for this particular line since it keeps removing the trailing underscore (bug?)
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void OpenthermHub::write_initial_messages_(std::vector<MessageId> &target) { // NOLINT
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std::vector<std::pair<MessageId, uint8_t>> sorted;
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std::copy_if(this->configured_messages_.begin(), this->configured_messages_.end(), std::back_inserter(sorted),
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[](const std::pair<MessageId, uint8_t> &pair) { return pair.second < REPEATING_MESSAGE_ORDER; });
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std::sort(sorted.begin(), sorted.end(),
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[](const std::pair<MessageId, uint8_t> &a, const std::pair<MessageId, uint8_t> &b) {
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return a.second < b.second;
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});
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target.clear();
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std::transform(sorted.begin(), sorted.end(), std::back_inserter(target),
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[](const std::pair<MessageId, uint8_t> &pair) { return pair.first; });
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}
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// Disabling clang-tidy for this particular line since it keeps removing the trailing underscore (bug?)
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void OpenthermHub::write_repeating_messages_(std::vector<MessageId> &target) { // NOLINT
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target.clear();
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for (auto const &pair : this->configured_messages_) {
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if (pair.second == REPEATING_MESSAGE_ORDER) {
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target.push_back(pair.first);
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}
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}
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}
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void OpenthermHub::loop() {
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if (this->sync_mode_) {
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this->sync_loop_();
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@ -184,29 +196,18 @@ void OpenthermHub::loop() {
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auto cur_time = millis();
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auto const cur_mode = this->opentherm_->get_mode();
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if (this->handle_error_(cur_mode)) {
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return;
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}
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switch (cur_mode) {
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case OperationMode::WRITE:
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case OperationMode::READ:
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case OperationMode::LISTEN:
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if (!this->check_timings_(cur_time)) {
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break;
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}
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this->last_mode_ = cur_mode;
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break;
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case OperationMode::ERROR_PROTOCOL:
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if (this->last_mode_ == OperationMode::WRITE) {
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this->handle_protocol_write_error_();
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} else if (this->last_mode_ == OperationMode::READ) {
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this->handle_protocol_read_error_();
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}
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this->stop_opentherm_();
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break;
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case OperationMode::ERROR_TIMEOUT:
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this->handle_timeout_error_();
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this->stop_opentherm_();
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break;
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case OperationMode::IDLE:
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this->check_timings_(cur_time);
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if (this->should_skip_loop_(cur_time)) {
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break;
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}
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@ -219,6 +220,28 @@ void OpenthermHub::loop() {
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case OperationMode::RECEIVED:
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this->read_response_();
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break;
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default:
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break;
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}
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this->last_mode_ = cur_mode;
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}
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bool OpenthermHub::handle_error_(OperationMode mode) {
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switch (mode) {
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case OperationMode::ERROR_PROTOCOL:
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// Protocol error can happen only while reading boiler response.
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this->handle_protocol_error_();
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return true;
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case OperationMode::ERROR_TIMEOUT:
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// Timeout error might happen while we wait for device to respond.
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this->handle_timeout_error_();
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return true;
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case OperationMode::ERROR_TIMER:
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// Timer error can happen only on ESP32.
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this->handle_timer_error_();
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return true;
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default:
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return false;
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}
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}
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@ -237,16 +260,20 @@ void OpenthermHub::sync_loop_() {
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}
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this->start_conversation_();
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// There may be a timer error at this point
|
||||
if (this->handle_error_(this->opentherm_->get_mode())) {
|
||||
return;
|
||||
}
|
||||
|
||||
// Spin while message is being sent to device
|
||||
if (!this->spin_wait_(1150, [&] { return this->opentherm_->is_active(); })) {
|
||||
ESP_LOGE(TAG, "Hub timeout triggered during send");
|
||||
this->stop_opentherm_();
|
||||
return;
|
||||
}
|
||||
|
||||
if (this->opentherm_->is_error()) {
|
||||
this->handle_protocol_write_error_();
|
||||
this->stop_opentherm_();
|
||||
// Check for errors and ensure we are in the right state (message sent successfully)
|
||||
if (this->handle_error_(this->opentherm_->get_mode())) {
|
||||
return;
|
||||
} else if (!this->opentherm_->is_sent()) {
|
||||
ESP_LOGW(TAG, "Unexpected state after sending request: %s",
|
||||
|
@ -257,19 +284,20 @@ void OpenthermHub::sync_loop_() {
|
|||
|
||||
// Listen for the response
|
||||
this->opentherm_->listen();
|
||||
// There may be a timer error at this point
|
||||
if (this->handle_error_(this->opentherm_->get_mode())) {
|
||||
return;
|
||||
}
|
||||
|
||||
// Spin while response is being received
|
||||
if (!this->spin_wait_(1150, [&] { return this->opentherm_->is_active(); })) {
|
||||
ESP_LOGE(TAG, "Hub timeout triggered during receive");
|
||||
this->stop_opentherm_();
|
||||
return;
|
||||
}
|
||||
|
||||
if (this->opentherm_->is_timeout()) {
|
||||
this->handle_timeout_error_();
|
||||
this->stop_opentherm_();
|
||||
return;
|
||||
} else if (this->opentherm_->is_protocol_error()) {
|
||||
this->handle_protocol_read_error_();
|
||||
this->stop_opentherm_();
|
||||
// Check for errors and ensure we are in the right state (message received successfully)
|
||||
if (this->handle_error_(this->opentherm_->get_mode())) {
|
||||
return;
|
||||
} else if (!this->opentherm_->has_message()) {
|
||||
ESP_LOGW(TAG, "Unexpected state after receiving response: %s",
|
||||
|
@ -281,17 +309,13 @@ void OpenthermHub::sync_loop_() {
|
|||
this->read_response_();
|
||||
}
|
||||
|
||||
bool OpenthermHub::check_timings_(uint32_t cur_time) {
|
||||
void OpenthermHub::check_timings_(uint32_t cur_time) {
|
||||
if (this->last_conversation_start_ > 0 && (cur_time - this->last_conversation_start_) > 1150) {
|
||||
ESP_LOGW(TAG,
|
||||
"%d ms elapsed since the start of the last convo, but 1150 ms are allowed at maximum. Look at other "
|
||||
"components that might slow the loop down.",
|
||||
(int) (cur_time - this->last_conversation_start_));
|
||||
this->stop_opentherm_();
|
||||
return false;
|
||||
}
|
||||
|
||||
return true;
|
||||
}
|
||||
|
||||
bool OpenthermHub::should_skip_loop_(uint32_t cur_time) const {
|
||||
|
@ -304,14 +328,17 @@ bool OpenthermHub::should_skip_loop_(uint32_t cur_time) const {
|
|||
}
|
||||
|
||||
void OpenthermHub::start_conversation_() {
|
||||
if (this->sending_initial_ && this->current_message_iterator_ == this->initial_messages_.end()) {
|
||||
this->sending_initial_ = false;
|
||||
this->current_message_iterator_ = this->repeating_messages_.begin();
|
||||
} else if (this->current_message_iterator_ == this->repeating_messages_.end()) {
|
||||
this->current_message_iterator_ = this->repeating_messages_.begin();
|
||||
if (this->message_iterator_ == this->messages_.end()) {
|
||||
if (this->sending_initial_) {
|
||||
this->sending_initial_ = false;
|
||||
this->write_repeating_messages_(this->messages_);
|
||||
}
|
||||
this->message_iterator_ = this->messages_.begin();
|
||||
}
|
||||
|
||||
auto request = this->build_request_(*this->current_message_iterator_);
|
||||
auto request = this->build_request_(*this->message_iterator_);
|
||||
|
||||
this->before_send_callback_.call(request);
|
||||
|
||||
ESP_LOGD(TAG, "Sending request with id %d (%s)", request.id,
|
||||
this->opentherm_->message_id_to_str((MessageId) request.id));
|
||||
|
@ -331,37 +358,48 @@ void OpenthermHub::read_response_() {
|
|||
|
||||
this->stop_opentherm_();
|
||||
|
||||
this->before_process_response_callback_.call(response);
|
||||
this->process_response(response);
|
||||
|
||||
this->current_message_iterator_++;
|
||||
this->message_iterator_++;
|
||||
}
|
||||
|
||||
void OpenthermHub::stop_opentherm_() {
|
||||
this->opentherm_->stop();
|
||||
this->last_conversation_end_ = millis();
|
||||
}
|
||||
void OpenthermHub::handle_protocol_write_error_() {
|
||||
ESP_LOGW(TAG, "Error while sending request: %s",
|
||||
this->opentherm_->operation_mode_to_str(this->opentherm_->get_mode()));
|
||||
this->opentherm_->debug_data(this->last_request_);
|
||||
}
|
||||
void OpenthermHub::handle_protocol_read_error_() {
|
||||
|
||||
void OpenthermHub::handle_protocol_error_() {
|
||||
OpenThermError error;
|
||||
this->opentherm_->get_protocol_error(error);
|
||||
ESP_LOGW(TAG, "Protocol error occured while receiving response: %s",
|
||||
this->opentherm_->protocol_error_to_to_str(error.error_type));
|
||||
this->opentherm_->protocol_error_to_str(error.error_type));
|
||||
this->opentherm_->debug_error(error);
|
||||
}
|
||||
void OpenthermHub::handle_timeout_error_() {
|
||||
ESP_LOGW(TAG, "Receive response timed out at a protocol level");
|
||||
this->stop_opentherm_();
|
||||
}
|
||||
|
||||
void OpenthermHub::handle_timeout_error_() {
|
||||
ESP_LOGW(TAG, "Timeout while waiting for response from device");
|
||||
this->stop_opentherm_();
|
||||
}
|
||||
|
||||
void OpenthermHub::handle_timer_error_() {
|
||||
this->opentherm_->report_and_reset_timer_error();
|
||||
this->stop_opentherm_();
|
||||
// Timer error is critical, there is no point in retrying.
|
||||
this->mark_failed();
|
||||
}
|
||||
|
||||
void OpenthermHub::dump_config() {
|
||||
std::vector<MessageId> initial_messages;
|
||||
std::vector<MessageId> repeating_messages;
|
||||
this->write_initial_messages_(initial_messages);
|
||||
this->write_repeating_messages_(repeating_messages);
|
||||
|
||||
ESP_LOGCONFIG(TAG, "OpenTherm:");
|
||||
LOG_PIN(" In: ", this->in_pin_);
|
||||
LOG_PIN(" Out: ", this->out_pin_);
|
||||
ESP_LOGCONFIG(TAG, " Sync mode: %d", this->sync_mode_);
|
||||
ESP_LOGCONFIG(TAG, " Sync mode: %s", YESNO(this->sync_mode_));
|
||||
ESP_LOGCONFIG(TAG, " Sensors: %s", SHOW(OPENTHERM_SENSOR_LIST(ID, )));
|
||||
ESP_LOGCONFIG(TAG, " Binary sensors: %s", SHOW(OPENTHERM_BINARY_SENSOR_LIST(ID, )));
|
||||
ESP_LOGCONFIG(TAG, " Switches: %s", SHOW(OPENTHERM_SWITCH_LIST(ID, )));
|
||||
|
@ -369,12 +407,12 @@ void OpenthermHub::dump_config() {
|
|||
ESP_LOGCONFIG(TAG, " Outputs: %s", SHOW(OPENTHERM_OUTPUT_LIST(ID, )));
|
||||
ESP_LOGCONFIG(TAG, " Numbers: %s", SHOW(OPENTHERM_NUMBER_LIST(ID, )));
|
||||
ESP_LOGCONFIG(TAG, " Initial requests:");
|
||||
for (auto type : this->initial_messages_) {
|
||||
ESP_LOGCONFIG(TAG, " - %d (%s)", type, this->opentherm_->message_id_to_str((type)));
|
||||
for (auto type : initial_messages) {
|
||||
ESP_LOGCONFIG(TAG, " - %d (%s)", type, this->opentherm_->message_id_to_str(type));
|
||||
}
|
||||
ESP_LOGCONFIG(TAG, " Repeating requests:");
|
||||
for (auto type : this->repeating_messages_) {
|
||||
ESP_LOGCONFIG(TAG, " - %d (%s)", type, this->opentherm_->message_id_to_str((type)));
|
||||
for (auto type : repeating_messages) {
|
||||
ESP_LOGCONFIG(TAG, " - %d (%s)", type, this->opentherm_->message_id_to_str(type));
|
||||
}
|
||||
}
|
||||
|
||||
|
|
|
@ -38,6 +38,9 @@
|
|||
namespace esphome {
|
||||
namespace opentherm {
|
||||
|
||||
static const uint8_t REPEATING_MESSAGE_ORDER = 255;
|
||||
static const uint8_t INITIAL_UNORDERED_MESSAGE_ORDER = 254;
|
||||
|
||||
// OpenTherm component for ESPHome
|
||||
class OpenthermHub : public Component {
|
||||
protected:
|
||||
|
@ -58,15 +61,12 @@ class OpenthermHub : public Component {
|
|||
|
||||
OPENTHERM_INPUT_SENSOR_LIST(OPENTHERM_DECLARE_INPUT_SENSOR, )
|
||||
|
||||
// The set of initial messages to send on starting communication with the boiler
|
||||
std::vector<MessageId> initial_messages_;
|
||||
// and the repeating messages which are sent repeatedly to update various sensors
|
||||
// and boiler parameters (like the setpoint).
|
||||
std::vector<MessageId> repeating_messages_;
|
||||
// Indicates if we are still working on the initial requests or not
|
||||
OPENTHERM_SETTING_LIST(OPENTHERM_DECLARE_SETTING, )
|
||||
|
||||
bool sending_initial_ = true;
|
||||
// Index for the current request in one of the _requests sets.
|
||||
std::vector<MessageId>::const_iterator current_message_iterator_;
|
||||
std::unordered_map<MessageId, uint8_t> configured_messages_;
|
||||
std::vector<MessageId> messages_;
|
||||
std::vector<MessageId>::const_iterator message_iterator_;
|
||||
|
||||
uint32_t last_conversation_start_ = 0;
|
||||
uint32_t last_conversation_end_ = 0;
|
||||
|
@ -78,20 +78,25 @@ class OpenthermHub : public Component {
|
|||
// Very likely to happen while using Dallas temperature sensors.
|
||||
bool sync_mode_ = false;
|
||||
|
||||
float opentherm_version_ = 0.0f;
|
||||
CallbackManager<void(OpenthermData &)> before_send_callback_;
|
||||
CallbackManager<void(OpenthermData &)> before_process_response_callback_;
|
||||
|
||||
// Create OpenTherm messages based on the message id
|
||||
OpenthermData build_request_(MessageId request_id) const;
|
||||
void handle_protocol_write_error_();
|
||||
void handle_protocol_read_error_();
|
||||
bool handle_error_(OperationMode mode);
|
||||
void handle_protocol_error_();
|
||||
void handle_timeout_error_();
|
||||
void handle_timer_error_();
|
||||
void stop_opentherm_();
|
||||
void start_conversation_();
|
||||
void read_response_();
|
||||
bool check_timings_(uint32_t cur_time);
|
||||
void check_timings_(uint32_t cur_time);
|
||||
bool should_skip_loop_(uint32_t cur_time) const;
|
||||
void sync_loop_();
|
||||
|
||||
void write_initial_messages_(std::vector<MessageId> &target);
|
||||
void write_repeating_messages_(std::vector<MessageId> &target);
|
||||
|
||||
template<typename F> bool spin_wait_(uint32_t timeout, F func) {
|
||||
auto start_time = millis();
|
||||
while (func()) {
|
||||
|
@ -127,13 +132,18 @@ class OpenthermHub : public Component {
|
|||
|
||||
OPENTHERM_INPUT_SENSOR_LIST(OPENTHERM_SET_INPUT_SENSOR, )
|
||||
|
||||
OPENTHERM_SETTING_LIST(OPENTHERM_SET_SETTING, )
|
||||
|
||||
// Add a request to the vector of initial requests
|
||||
void add_initial_message(MessageId message_id) { this->initial_messages_.push_back(message_id); }
|
||||
void add_initial_message(MessageId message_id) {
|
||||
this->configured_messages_[message_id] = INITIAL_UNORDERED_MESSAGE_ORDER;
|
||||
}
|
||||
void add_initial_message(MessageId message_id, uint8_t order) { this->configured_messages_[message_id] = order; }
|
||||
// Add a request to the set of repeating requests. Note that a large number of repeating
|
||||
// requests will slow down communication with the boiler. Each request may take up to 1 second,
|
||||
// so with all sensors enabled, it may take about half a minute before a change in setpoint
|
||||
// will be processed.
|
||||
void add_repeating_message(MessageId message_id) { this->repeating_messages_.push_back(message_id); }
|
||||
void add_repeating_message(MessageId message_id) { this->configured_messages_[message_id] = REPEATING_MESSAGE_ORDER; }
|
||||
|
||||
// There are seven status variables, which can either be set as a simple variable,
|
||||
// or using a switch. ch_enable and dhw_enable default to true, the others to false.
|
||||
|
@ -149,7 +159,13 @@ class OpenthermHub : public Component {
|
|||
void set_summer_mode_active(bool value) { this->summer_mode_active = value; }
|
||||
void set_dhw_block(bool value) { this->dhw_block = value; }
|
||||
void set_sync_mode(bool sync_mode) { this->sync_mode_ = sync_mode; }
|
||||
void set_opentherm_version(float value) { this->opentherm_version_ = value; }
|
||||
|
||||
void add_on_before_send_callback(std::function<void(OpenthermData &)> &&callback) {
|
||||
this->before_send_callback_.add(std::move(callback));
|
||||
}
|
||||
void add_on_before_process_response_callback(std::function<void(OpenthermData &)> &&callback) {
|
||||
this->before_process_response_callback_.add(std::move(callback));
|
||||
}
|
||||
|
||||
float get_setup_priority() const override { return setup_priority::HARDWARE; }
|
||||
|
||||
|
|
|
@ -52,7 +52,9 @@ bool OpenTherm::initialize() {
|
|||
OpenTherm::instance = this;
|
||||
#endif
|
||||
this->in_pin_->pin_mode(gpio::FLAG_INPUT);
|
||||
this->in_pin_->setup();
|
||||
this->out_pin_->pin_mode(gpio::FLAG_OUTPUT);
|
||||
this->out_pin_->setup();
|
||||
this->out_pin_->digital_write(true);
|
||||
|
||||
#if defined(ESP32) || defined(USE_ESP_IDF)
|
||||
|
@ -182,7 +184,7 @@ bool IRAM_ATTR OpenTherm::timer_isr(OpenTherm *arg) {
|
|||
}
|
||||
arg->capture_ = 1; // reset counter
|
||||
} else if (arg->capture_ > 0xFF) {
|
||||
// no change for too long, invalid mancheter encoding
|
||||
// no change for too long, invalid manchester encoding
|
||||
arg->mode_ = OperationMode::ERROR_PROTOCOL;
|
||||
arg->error_type_ = ProtocolErrorType::NO_CHANGE_TOO_LONG;
|
||||
arg->stop_timer_();
|
||||
|
@ -312,21 +314,31 @@ bool OpenTherm::init_esp32_timer_() {
|
|||
}
|
||||
|
||||
void IRAM_ATTR OpenTherm::start_esp32_timer_(uint64_t alarm_value) {
|
||||
esp_err_t result;
|
||||
// We will report timer errors outside of interrupt handler
|
||||
this->timer_error_ = ESP_OK;
|
||||
this->timer_error_type_ = TimerErrorType::NO_TIMER_ERROR;
|
||||
|
||||
result = timer_set_alarm_value(this->timer_group_, this->timer_idx_, alarm_value);
|
||||
if (result != ESP_OK) {
|
||||
const auto *error = esp_err_to_name(result);
|
||||
ESP_LOGE(TAG, "Failed to set alarm value. Error: %s", error);
|
||||
this->timer_error_ = timer_set_alarm_value(this->timer_group_, this->timer_idx_, alarm_value);
|
||||
if (this->timer_error_ != ESP_OK) {
|
||||
this->timer_error_type_ = TimerErrorType::SET_ALARM_VALUE_ERROR;
|
||||
return;
|
||||
}
|
||||
this->timer_error_ = timer_start(this->timer_group_, this->timer_idx_);
|
||||
if (this->timer_error_ != ESP_OK) {
|
||||
this->timer_error_type_ = TimerErrorType::TIMER_START_ERROR;
|
||||
}
|
||||
}
|
||||
|
||||
void OpenTherm::report_and_reset_timer_error() {
|
||||
if (this->timer_error_ == ESP_OK) {
|
||||
return;
|
||||
}
|
||||
|
||||
result = timer_start(this->timer_group_, this->timer_idx_);
|
||||
if (result != ESP_OK) {
|
||||
const auto *error = esp_err_to_name(result);
|
||||
ESP_LOGE(TAG, "Failed to start the timer. Error: %s", error);
|
||||
return;
|
||||
}
|
||||
ESP_LOGE(TAG, "Error occured while manipulating timer (%s): %s", this->timer_error_to_str(this->timer_error_type_),
|
||||
esp_err_to_name(this->timer_error_));
|
||||
|
||||
this->timer_error_ = ESP_OK;
|
||||
this->timer_error_type_ = NO_TIMER_ERROR;
|
||||
}
|
||||
|
||||
// 5 kHz timer_
|
||||
|
@ -343,21 +355,18 @@ void IRAM_ATTR OpenTherm::start_write_timer_() {
|
|||
|
||||
void IRAM_ATTR OpenTherm::stop_timer_() {
|
||||
InterruptLock const lock;
|
||||
// We will report timer errors outside of interrupt handler
|
||||
this->timer_error_ = ESP_OK;
|
||||
this->timer_error_type_ = TimerErrorType::NO_TIMER_ERROR;
|
||||
|
||||
esp_err_t result;
|
||||
|
||||
result = timer_pause(this->timer_group_, this->timer_idx_);
|
||||
if (result != ESP_OK) {
|
||||
const auto *error = esp_err_to_name(result);
|
||||
ESP_LOGE(TAG, "Failed to pause the timer. Error: %s", error);
|
||||
this->timer_error_ = timer_pause(this->timer_group_, this->timer_idx_);
|
||||
if (this->timer_error_ != ESP_OK) {
|
||||
this->timer_error_type_ = TimerErrorType::TIMER_PAUSE_ERROR;
|
||||
return;
|
||||
}
|
||||
|
||||
result = timer_set_counter_value(this->timer_group_, this->timer_idx_, 0);
|
||||
if (result != ESP_OK) {
|
||||
const auto *error = esp_err_to_name(result);
|
||||
ESP_LOGE(TAG, "Failed to set timer counter to 0 after pausing. Error: %s", error);
|
||||
return;
|
||||
this->timer_error_ = timer_set_counter_value(this->timer_group_, this->timer_idx_, 0);
|
||||
if (this->timer_error_ != ESP_OK) {
|
||||
this->timer_error_type_ = TimerErrorType::SET_COUNTER_VALUE_ERROR;
|
||||
}
|
||||
}
|
||||
|
||||
|
@ -386,6 +395,9 @@ void IRAM_ATTR OpenTherm::stop_timer_() {
|
|||
timer1_detachInterrupt();
|
||||
}
|
||||
|
||||
// There is nothing to report on ESP8266
|
||||
void OpenTherm::report_and_reset_timer_error() {}
|
||||
|
||||
#endif // END ESP8266
|
||||
|
||||
// https://stackoverflow.com/questions/21617970/how-to-check-if-value-has-even-parity-of-bits-or-odd
|
||||
|
@ -412,11 +424,12 @@ const char *OpenTherm::operation_mode_to_str(OperationMode mode) {
|
|||
TO_STRING_MEMBER(SENT)
|
||||
TO_STRING_MEMBER(ERROR_PROTOCOL)
|
||||
TO_STRING_MEMBER(ERROR_TIMEOUT)
|
||||
TO_STRING_MEMBER(ERROR_TIMER)
|
||||
default:
|
||||
return "<INVALID>";
|
||||
}
|
||||
}
|
||||
const char *OpenTherm::protocol_error_to_to_str(ProtocolErrorType error_type) {
|
||||
const char *OpenTherm::protocol_error_to_str(ProtocolErrorType error_type) {
|
||||
switch (error_type) {
|
||||
TO_STRING_MEMBER(NO_ERROR)
|
||||
TO_STRING_MEMBER(NO_TRANSITION)
|
||||
|
@ -427,6 +440,17 @@ const char *OpenTherm::protocol_error_to_to_str(ProtocolErrorType error_type) {
|
|||
return "<INVALID>";
|
||||
}
|
||||
}
|
||||
const char *OpenTherm::timer_error_to_str(TimerErrorType error_type) {
|
||||
switch (error_type) {
|
||||
TO_STRING_MEMBER(NO_TIMER_ERROR)
|
||||
TO_STRING_MEMBER(SET_ALARM_VALUE_ERROR)
|
||||
TO_STRING_MEMBER(TIMER_START_ERROR)
|
||||
TO_STRING_MEMBER(TIMER_PAUSE_ERROR)
|
||||
TO_STRING_MEMBER(SET_COUNTER_VALUE_ERROR)
|
||||
default:
|
||||
return "<INVALID>";
|
||||
}
|
||||
}
|
||||
const char *OpenTherm::message_type_to_str(MessageType message_type) {
|
||||
switch (message_type) {
|
||||
TO_STRING_MEMBER(READ_DATA)
|
||||
|
|
|
@ -36,11 +36,12 @@ enum OperationMode {
|
|||
READ = 2, // reading 32-bit data frame
|
||||
RECEIVED = 3, // data frame received with valid start and stop bit
|
||||
|
||||
WRITE = 4, // writing data with timer_
|
||||
WRITE = 4, // writing data to output
|
||||
SENT = 5, // all data written to output
|
||||
|
||||
ERROR_PROTOCOL = 8, // manchester protocol data transfer error
|
||||
ERROR_TIMEOUT = 9 // read timeout
|
||||
ERROR_PROTOCOL = 8, // protocol error, can happed only during READ
|
||||
ERROR_TIMEOUT = 9, // timeout while waiting for response from device, only during LISTEN
|
||||
ERROR_TIMER = 10 // error operating the ESP32 timer
|
||||
};
|
||||
|
||||
enum ProtocolErrorType {
|
||||
|
@ -51,6 +52,14 @@ enum ProtocolErrorType {
|
|||
NO_CHANGE_TOO_LONG = 4, // No level change for too much timer ticks
|
||||
};
|
||||
|
||||
enum TimerErrorType {
|
||||
NO_TIMER_ERROR = 0, // No error
|
||||
SET_ALARM_VALUE_ERROR = 1, // No transition in the middle of the bit
|
||||
TIMER_START_ERROR = 2, // Stop bit wasn't present when expected
|
||||
TIMER_PAUSE_ERROR = 3, // Parity check didn't pass
|
||||
SET_COUNTER_VALUE_ERROR = 4, // No level change for too much timer ticks
|
||||
};
|
||||
|
||||
enum MessageType {
|
||||
READ_DATA = 0,
|
||||
READ_ACK = 4,
|
||||
|
@ -299,7 +308,9 @@ class OpenTherm {
|
|||
*
|
||||
* @return true if last listen() or send() operation ends up with an error.
|
||||
*/
|
||||
bool is_error() { return mode_ == OperationMode::ERROR_TIMEOUT || mode_ == OperationMode::ERROR_PROTOCOL; }
|
||||
bool is_error() {
|
||||
return mode_ == OperationMode::ERROR_TIMEOUT || mode_ == OperationMode::ERROR_PROTOCOL || mode_ == ERROR_TIMER;
|
||||
}
|
||||
|
||||
/**
|
||||
* Indicates whether last listen() or send() operation ends up with a *timeout* error
|
||||
|
@ -313,14 +324,22 @@ class OpenTherm {
|
|||
*/
|
||||
bool is_protocol_error() { return mode_ == OperationMode::ERROR_PROTOCOL; }
|
||||
|
||||
/**
|
||||
* Indicates whether start_esp32_timer_() or stop_timer_() had an error. Only relevant when used on ESP32.
|
||||
* @return true if there was an error.
|
||||
*/
|
||||
bool is_timer_error() { return mode_ == OperationMode::ERROR_TIMER; }
|
||||
|
||||
bool is_active() { return mode_ == LISTEN || mode_ == READ || mode_ == WRITE; }
|
||||
|
||||
OperationMode get_mode() { return mode_; }
|
||||
|
||||
void debug_data(OpenthermData &data);
|
||||
void debug_error(OpenThermError &error) const;
|
||||
void report_and_reset_timer_error();
|
||||
|
||||
const char *protocol_error_to_to_str(ProtocolErrorType error_type);
|
||||
const char *protocol_error_to_str(ProtocolErrorType error_type);
|
||||
const char *timer_error_to_str(TimerErrorType error_type);
|
||||
const char *message_type_to_str(MessageType message_type);
|
||||
const char *operation_mode_to_str(OperationMode mode);
|
||||
const char *message_id_to_str(MessageId id);
|
||||
|
@ -349,10 +368,12 @@ class OpenTherm {
|
|||
uint32_t data_;
|
||||
uint8_t bit_pos_;
|
||||
int32_t timeout_counter_; // <0 no timeout
|
||||
|
||||
int32_t device_timeout_;
|
||||
|
||||
#if defined(ESP32) || defined(USE_ESP_IDF)
|
||||
esp_err_t timer_error_ = ESP_OK;
|
||||
TimerErrorType timer_error_type_ = TimerErrorType::NO_TIMER_ERROR;
|
||||
|
||||
bool init_esp32_timer_();
|
||||
void start_esp32_timer_(uint64_t alarm_value);
|
||||
#endif
|
||||
|
|
|
@ -28,6 +28,9 @@ namespace opentherm {
|
|||
#ifndef OPENTHERM_INPUT_SENSOR_LIST
|
||||
#define OPENTHERM_INPUT_SENSOR_LIST(F, sep)
|
||||
#endif
|
||||
#ifndef OPENTHERM_SETTING_LIST
|
||||
#define OPENTHERM_SETTING_LIST(F, sep)
|
||||
#endif
|
||||
|
||||
// Use macros to create fields for every entity specified in the ESPHome configuration
|
||||
#define OPENTHERM_DECLARE_SENSOR(entity) sensor::Sensor *entity;
|
||||
|
@ -36,6 +39,7 @@ namespace opentherm {
|
|||
#define OPENTHERM_DECLARE_NUMBER(entity) OpenthermNumber *entity;
|
||||
#define OPENTHERM_DECLARE_OUTPUT(entity) OpenthermOutput *entity;
|
||||
#define OPENTHERM_DECLARE_INPUT_SENSOR(entity) sensor::Sensor *entity;
|
||||
#define OPENTHERM_DECLARE_SETTING(type, entity, def) type entity = def;
|
||||
|
||||
// Setter macros
|
||||
#define OPENTHERM_SET_SENSOR(entity) \
|
||||
|
@ -56,6 +60,9 @@ namespace opentherm {
|
|||
#define OPENTHERM_SET_INPUT_SENSOR(entity) \
|
||||
void set_##entity(sensor::Sensor *sensor) { this->entity = sensor; }
|
||||
|
||||
#define OPENTHERM_SET_SETTING(type, entity, def) \
|
||||
void set_##entity(type value) { this->entity = value; }
|
||||
|
||||
// ===== hub.cpp macros =====
|
||||
|
||||
// *_MESSAGE_HANDLERS are generated in defines.h and look like this:
|
||||
|
@ -85,6 +92,9 @@ namespace opentherm {
|
|||
#ifndef OPENTHERM_INPUT_SENSOR_MESSAGE_HANDLERS
|
||||
#define OPENTHERM_INPUT_SENSOR_MESSAGE_HANDLERS(MESSAGE, ENTITY, entity_sep, postscript, msg_sep)
|
||||
#endif
|
||||
#ifndef OPENTHERM_SETTING_MESSAGE_HANDLERS
|
||||
#define OPENTHERM_SETTING_MESSAGE_HANDLERS(MESSAGE, ENTITY, entity_sep, postscript, msg_sep)
|
||||
#endif
|
||||
|
||||
// Write data request builders
|
||||
#define OPENTHERM_MESSAGE_WRITE_MESSAGE(msg) \
|
||||
|
@ -92,6 +102,7 @@ namespace opentherm {
|
|||
data.type = MessageType::WRITE_DATA; \
|
||||
data.id = request_id;
|
||||
#define OPENTHERM_MESSAGE_WRITE_ENTITY(key, msg_data) message_data::write_##msg_data(this->key->state, data);
|
||||
#define OPENTHERM_MESSAGE_WRITE_SETTING(key, msg_data) message_data::write_##msg_data(this->key, data);
|
||||
#define OPENTHERM_MESSAGE_WRITE_POSTSCRIPT \
|
||||
return data; \
|
||||
}
|
||||
|
|
|
@ -2,8 +2,9 @@
|
|||
# inputs of the OpenTherm component.
|
||||
|
||||
from dataclasses import dataclass
|
||||
from typing import Optional, TypeVar
|
||||
from typing import Optional, TypeVar, Any
|
||||
|
||||
import esphome.config_validation as cv
|
||||
from esphome.const import (
|
||||
UNIT_CELSIUS,
|
||||
UNIT_EMPTY,
|
||||
|
@ -64,6 +65,7 @@ class SensorSchema(EntitySchema):
|
|||
icon: Optional[str] = None
|
||||
device_class: Optional[str] = None
|
||||
disabled_by_default: bool = False
|
||||
order: Optional[int] = None
|
||||
|
||||
|
||||
SENSORS: dict[str, SensorSchema] = {
|
||||
|
@ -399,6 +401,7 @@ SENSORS: dict[str, SensorSchema] = {
|
|||
message="OT_VERSION_DEVICE",
|
||||
keep_updated=False,
|
||||
message_data="f88",
|
||||
order=2,
|
||||
),
|
||||
"device_type": SensorSchema(
|
||||
description="Device product type",
|
||||
|
@ -409,6 +412,7 @@ SENSORS: dict[str, SensorSchema] = {
|
|||
message="VERSION_DEVICE",
|
||||
keep_updated=False,
|
||||
message_data="u8_hb",
|
||||
order=0,
|
||||
),
|
||||
"device_version": SensorSchema(
|
||||
description="Device product version",
|
||||
|
@ -419,6 +423,7 @@ SENSORS: dict[str, SensorSchema] = {
|
|||
message="VERSION_DEVICE",
|
||||
keep_updated=False,
|
||||
message_data="u8_lb",
|
||||
order=0,
|
||||
),
|
||||
"device_id": SensorSchema(
|
||||
description="Device ID code",
|
||||
|
@ -429,6 +434,7 @@ SENSORS: dict[str, SensorSchema] = {
|
|||
message="DEVICE_CONFIG",
|
||||
keep_updated=False,
|
||||
message_data="u8_lb",
|
||||
order=4,
|
||||
),
|
||||
"otc_hc_ratio_ub": SensorSchema(
|
||||
description="OTC heat curve ratio upper bound",
|
||||
|
@ -457,6 +463,7 @@ SENSORS: dict[str, SensorSchema] = {
|
|||
class BinarySensorSchema(EntitySchema):
|
||||
icon: Optional[str] = None
|
||||
device_class: Optional[str] = None
|
||||
order: Optional[int] = None
|
||||
|
||||
|
||||
BINARY_SENSORS: dict[str, BinarySensorSchema] = {
|
||||
|
@ -525,48 +532,56 @@ BINARY_SENSORS: dict[str, BinarySensorSchema] = {
|
|||
message="DEVICE_CONFIG",
|
||||
keep_updated=False,
|
||||
message_data="flag8_hb_0",
|
||||
order=4,
|
||||
),
|
||||
"control_type_on_off": BinarySensorSchema(
|
||||
description="Configuration: Control type is on/off",
|
||||
message="DEVICE_CONFIG",
|
||||
keep_updated=False,
|
||||
message_data="flag8_hb_1",
|
||||
order=4,
|
||||
),
|
||||
"cooling_supported": BinarySensorSchema(
|
||||
description="Configuration: Cooling supported",
|
||||
message="DEVICE_CONFIG",
|
||||
keep_updated=False,
|
||||
message_data="flag8_hb_2",
|
||||
order=4,
|
||||
),
|
||||
"dhw_storage_tank": BinarySensorSchema(
|
||||
description="Configuration: DHW storage tank",
|
||||
message="DEVICE_CONFIG",
|
||||
keep_updated=False,
|
||||
message_data="flag8_hb_3",
|
||||
order=4,
|
||||
),
|
||||
"controller_pump_control_allowed": BinarySensorSchema(
|
||||
description="Configuration: Controller pump control allowed",
|
||||
message="DEVICE_CONFIG",
|
||||
keep_updated=False,
|
||||
message_data="flag8_hb_4",
|
||||
order=4,
|
||||
),
|
||||
"ch2_present": BinarySensorSchema(
|
||||
description="Configuration: CH2 present",
|
||||
message="DEVICE_CONFIG",
|
||||
keep_updated=False,
|
||||
message_data="flag8_hb_5",
|
||||
order=4,
|
||||
),
|
||||
"water_filling": BinarySensorSchema(
|
||||
description="Configuration: Remote water filling",
|
||||
message="DEVICE_CONFIG",
|
||||
keep_updated=False,
|
||||
message_data="flag8_hb_6",
|
||||
order=4,
|
||||
),
|
||||
"heat_mode": BinarySensorSchema(
|
||||
description="Configuration: Heating or cooling",
|
||||
message="DEVICE_CONFIG",
|
||||
keep_updated=False,
|
||||
message_data="flag8_hb_7",
|
||||
order=4,
|
||||
),
|
||||
"dhw_setpoint_transfer_enabled": BinarySensorSchema(
|
||||
description="Remote boiler parameters: DHW setpoint transfer enabled",
|
||||
|
@ -812,3 +827,65 @@ INPUTS: dict[str, InputSchema] = {
|
|||
auto_max_value=AutoConfigure(message="OTC_CURVE_BOUNDS", message_data="u8_hb"),
|
||||
),
|
||||
}
|
||||
|
||||
|
||||
@dataclass
|
||||
class SettingSchema(EntitySchema):
|
||||
backing_type: str
|
||||
validation_schema: cv.Schema
|
||||
default_value: Any
|
||||
order: Optional[int] = None
|
||||
|
||||
|
||||
SETTINGS: dict[str, SettingSchema] = {
|
||||
"controller_product_type": SettingSchema(
|
||||
description="Controller product type",
|
||||
message="VERSION_CONTROLLER",
|
||||
keep_updated=False,
|
||||
message_data="u8_hb",
|
||||
backing_type="uint8_t",
|
||||
validation_schema=cv.int_range(min=0, max=255),
|
||||
default_value=0,
|
||||
order=1,
|
||||
),
|
||||
"controller_product_version": SettingSchema(
|
||||
description="Controller product version",
|
||||
message="VERSION_CONTROLLER",
|
||||
keep_updated=False,
|
||||
message_data="u8_lb",
|
||||
backing_type="uint8_t",
|
||||
validation_schema=cv.int_range(min=0, max=255),
|
||||
default_value=0,
|
||||
order=1,
|
||||
),
|
||||
"opentherm_version_controller": SettingSchema(
|
||||
description="Version of OpenTherm implemented by controller",
|
||||
message="OT_VERSION_CONTROLLER",
|
||||
keep_updated=False,
|
||||
message_data="f88",
|
||||
backing_type="float",
|
||||
validation_schema=cv.positive_float,
|
||||
default_value=0,
|
||||
order=3,
|
||||
),
|
||||
"controller_configuration": SettingSchema(
|
||||
description="Controller configuration",
|
||||
message="CONTROLLER_CONFIG",
|
||||
keep_updated=False,
|
||||
message_data="u8_hb",
|
||||
backing_type="uint8_t",
|
||||
validation_schema=cv.int_range(min=0, max=255),
|
||||
default_value=0,
|
||||
order=5,
|
||||
),
|
||||
"controller_id": SettingSchema(
|
||||
description="Controller ID code",
|
||||
message="CONTROLLER_CONFIG",
|
||||
keep_updated=False,
|
||||
message_data="u8_lb",
|
||||
backing_type="uint8_t",
|
||||
validation_schema=cv.int_range(min=0, max=255),
|
||||
default_value=0,
|
||||
order=5,
|
||||
),
|
||||
}
|
||||
|
|
|
@ -9,12 +9,17 @@ from .schema import TSchema
|
|||
|
||||
|
||||
def create_entities_schema(
|
||||
entities: dict[str, schema.EntitySchema],
|
||||
entities: dict[str, TSchema],
|
||||
get_entity_validation_schema: Callable[[TSchema], cv.Schema],
|
||||
) -> Schema:
|
||||
entity_schema = {}
|
||||
for key, entity in entities.items():
|
||||
entity_schema[cv.Optional(key)] = get_entity_validation_schema(entity)
|
||||
schema_key = (
|
||||
cv.Optional(key, entity.default_value)
|
||||
if hasattr(entity, "default_value")
|
||||
else cv.Optional(key)
|
||||
)
|
||||
entity_schema[schema_key] = get_entity_validation_schema(entity)
|
||||
return cv.Schema(entity_schema)
|
||||
|
||||
|
||||
|
|
|
@ -16,6 +16,19 @@ opentherm:
|
|||
summer_mode_active: true
|
||||
dhw_block: true
|
||||
sync_mode: true
|
||||
controller_product_type: 63
|
||||
controller_product_version: 1
|
||||
opentherm_version_controller: 2.2
|
||||
controller_id: 1
|
||||
controller_configuration: 1
|
||||
before_send:
|
||||
then:
|
||||
- lambda: |-
|
||||
ESP_LOGW("OT", ">> Sending message %d", x.id);
|
||||
before_process_response:
|
||||
then:
|
||||
- lambda: |-
|
||||
ESP_LOGW("OT", "<< Processing response %d", x.id);
|
||||
|
||||
output:
|
||||
- platform: opentherm
|
||||
|
|
Loading…
Reference in a new issue