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Author SHA1 Message Date
a2e65c2d1a refactor: Remove unneeded wrapper functions when specifying callbacks
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These wrappers can be moved up to where the callback itself is defined
instead of having to wrap the call manually. This also works a lot nicer
now that it is possible to provide multiple callback functions.
2025-09-08 04:13:01 +02:00
e26fd9f132 fix: Front door presence does not get cleared properly 2025-09-08 04:06:02 +02:00
eb0c80c4ce feat(callback)!: ActionCallback can now receive any amount of arguments
ActionCallback now only has one generics argument that has to implement
IntoLuaMulti, this makes ActionCallback much more flexible as it no
longer always requires two arguments.
2025-09-08 04:06:01 +02:00
12 changed files with 139 additions and 136 deletions

View File

@@ -35,9 +35,9 @@ pub struct Config {
pub sensor_type: SensorType,
#[device_config(from_lua, default)]
pub callback: ActionCallback<ContactSensor, bool>,
pub callback: ActionCallback<(ContactSensor, bool)>,
#[device_config(from_lua, default)]
pub battery_callback: ActionCallback<ContactSensor, f32>,
pub battery_callback: ActionCallback<(ContactSensor, f32)>,
#[device_config(from_lua)]
pub client: WrappedAsyncClient,
@@ -165,14 +165,17 @@ impl OnMqtt for ContactSensor {
return;
}
self.config.callback.call(self, &!is_closed).await;
self.config.callback.call((self.clone(), !is_closed)).await;
debug!(id = self.get_id(), "Updating state to {is_closed}");
self.state_mut().await.is_closed = is_closed;
}
if let Some(battery) = message.battery {
self.config.battery_callback.call(self, &battery).await;
self.config
.battery_callback
.call((self.clone(), battery))
.await;
}
}
}

View File

@@ -21,19 +21,19 @@ pub struct Config {
pub client: WrappedAsyncClient,
#[device_config(from_lua, default)]
pub left_callback: ActionCallback<HueSwitch, ()>,
pub left_callback: ActionCallback<HueSwitch>,
#[device_config(from_lua, default)]
pub right_callback: ActionCallback<HueSwitch, ()>,
pub right_callback: ActionCallback<HueSwitch>,
#[device_config(from_lua, default)]
pub left_hold_callback: ActionCallback<HueSwitch, ()>,
pub left_hold_callback: ActionCallback<HueSwitch>,
#[device_config(from_lua, default)]
pub right_hold_callback: ActionCallback<HueSwitch, ()>,
pub right_hold_callback: ActionCallback<HueSwitch>,
#[device_config(from_lua, default)]
pub battery_callback: ActionCallback<HueSwitch, f32>,
pub battery_callback: ActionCallback<(HueSwitch, f32)>,
}
#[derive(Debug, Copy, Clone, Deserialize)]
@@ -104,19 +104,21 @@ impl OnMqtt for HueSwitch {
);
match action {
Action::LeftPressRelease => self.config.left_callback.call(self, &()).await,
Action::RightPressRelease => self.config.right_callback.call(self, &()).await,
Action::LeftHold => self.config.left_hold_callback.call(self, &()).await,
Action::RightHold => self.config.right_hold_callback.call(self, &()).await,
Action::LeftPressRelease => self.config.left_callback.call(self.clone()).await,
Action::RightPressRelease => {
self.config.right_callback.call(self.clone()).await
}
Action::LeftHold => self.config.left_hold_callback.call(self.clone()).await,
Action::RightHold => self.config.right_hold_callback.call(self.clone()).await,
// If there is no hold action, the switch will act like a normal release
Action::RightHoldRelease => {
if !self.config.right_hold_callback.is_set() {
self.config.right_callback.call(self, &()).await
if self.config.right_hold_callback.is_empty() {
self.config.right_callback.call(self.clone()).await
}
}
Action::LeftHoldRelease => {
if !self.config.left_hold_callback.is_set() {
self.config.left_callback.call(self, &()).await
if self.config.left_hold_callback.is_empty() {
self.config.left_callback.call(self.clone()).await
}
}
_ => {}
@@ -124,7 +126,10 @@ impl OnMqtt for HueSwitch {
}
if let Some(battery) = message.battery {
self.config.battery_callback.call(self, &battery).await;
self.config
.battery_callback
.call((self.clone(), battery))
.await;
}
}
}

View File

@@ -24,9 +24,9 @@ pub struct Config {
pub client: WrappedAsyncClient,
#[device_config(from_lua, default)]
pub callback: ActionCallback<IkeaRemote, bool>,
pub callback: ActionCallback<(IkeaRemote, bool)>,
#[device_config(from_lua, default)]
pub battery_callback: ActionCallback<IkeaRemote, f32>,
pub battery_callback: ActionCallback<(IkeaRemote, f32)>,
}
#[derive(Debug, Clone, LuaDevice)]
@@ -88,12 +88,15 @@ impl OnMqtt for IkeaRemote {
};
if let Some(on) = on {
self.config.callback.call(self, &on).await;
self.config.callback.call((self.clone(), on)).await;
}
}
if let Some(battery) = message.battery {
self.config.battery_callback.call(self, &battery).await;
self.config
.battery_callback
.call((self.clone(), battery))
.await;
}
}
}

View File

@@ -21,7 +21,7 @@ pub struct Config {
pub max: isize,
#[device_config(from_lua, default)]
pub callback: ActionCallback<LightSensor, bool>,
pub callback: ActionCallback<(LightSensor, bool)>,
#[device_config(from_lua)]
pub client: WrappedAsyncClient,
@@ -114,7 +114,7 @@ impl OnMqtt for LightSensor {
self.config
.callback
.call(self, &!self.state().await.is_dark)
.call((self.clone(), !self.state().await.is_dark))
.await;
}
}

View File

@@ -20,7 +20,7 @@ pub struct Config {
pub mqtt: MqttDeviceConfig,
#[device_config(from_lua, default)]
pub callback: ActionCallback<Presence, bool>,
pub callback: ActionCallback<(Presence, bool)>,
#[device_config(from_lua)]
pub client: WrappedAsyncClient,
@@ -118,7 +118,10 @@ impl OnMqtt for Presence {
debug!("Overall presence updated: {overall_presence}");
self.state_mut().await.current_overall_presence = overall_presence;
self.config.callback.call(self, &overall_presence).await;
self.config
.callback
.call((self.clone(), overall_presence))
.await;
}
}
}

View File

@@ -21,7 +21,7 @@ pub struct Config {
pub threshold: f32,
#[device_config(from_lua, default)]
pub done_callback: ActionCallback<Washer, ()>,
pub done_callback: ActionCallback<Washer>,
#[device_config(from_lua)]
pub client: WrappedAsyncClient,
@@ -109,7 +109,7 @@ impl OnMqtt for Washer {
self.state_mut().await.running = 0;
self.config.done_callback.call(self, &()).await;
self.config.done_callback.call(self.clone()).await;
} else if power < self.config.threshold {
// Prevent false positives
self.state_mut().await.running = 0;

View File

@@ -34,7 +34,7 @@ pub struct Config<T: LightState> {
pub mqtt: MqttDeviceConfig,
#[device_config(from_lua, default)]
pub callback: ActionCallback<Light<T>, T>,
pub callback: ActionCallback<(Light<T>, T)>,
#[device_config(from_lua)]
pub client: WrappedAsyncClient,
@@ -165,7 +165,7 @@ impl OnMqtt for Light<StateOnOff> {
self.config
.callback
.call(self, self.state().await.deref())
.call((self.clone(), self.state().await.clone()))
.await;
}
}
@@ -204,7 +204,7 @@ impl OnMqtt for Light<StateBrightness> {
self.config
.callback
.call(self, self.state().await.deref())
.call((self.clone(), self.state().await.clone()))
.await;
}
}
@@ -245,7 +245,7 @@ impl OnMqtt for Light<StateColorTemperature> {
self.config
.callback
.call(self, self.state().await.deref())
.call((self.clone(), self.state().await.clone()))
.await;
}
}

View File

@@ -51,7 +51,7 @@ pub struct Config<T: OutletState> {
pub outlet_type: OutletType,
#[device_config(from_lua, default)]
pub callback: ActionCallback<Outlet<T>, T>,
pub callback: ActionCallback<(Outlet<T>, T)>,
#[device_config(from_lua)]
pub client: WrappedAsyncClient,
@@ -155,7 +155,7 @@ impl OnMqtt for Outlet<StateOnOff> {
self.config
.callback
.call(self, self.state().await.deref())
.call((self.clone(), self.state().await.clone()))
.await;
}
}
@@ -192,7 +192,7 @@ impl OnMqtt for Outlet<StatePower> {
self.config
.callback
.call(self, self.state().await.deref())
.call((self.clone(), self.state().await.clone()))
.await;
}
}

View File

@@ -1,34 +1,28 @@
use std::marker::PhantomData;
use futures::future::try_join_all;
use mlua::{FromLua, IntoLua, LuaSerdeExt};
use serde::Serialize;
use mlua::{FromLua, IntoLuaMulti};
#[derive(Debug, Clone)]
struct Internal {
pub struct ActionCallback<P> {
callbacks: Vec<mlua::Function>,
lua: mlua::Lua,
_parameters: PhantomData<P>,
}
#[derive(Debug, Clone)]
pub struct ActionCallback<T, S> {
internal: Option<Internal>,
_this: PhantomData<T>,
_state: PhantomData<S>,
}
impl<T, S> Default for ActionCallback<T, S> {
// NOTE: For some reason the derive macro combined with PhantomData leads to issues where it
// requires all types part of P to implement default, even if they never actually get constructed.
// By manually implemented Default it works fine.
impl<P> Default for ActionCallback<P> {
fn default() -> Self {
Self {
internal: None,
_this: PhantomData::<T>,
_state: PhantomData::<S>,
callbacks: Default::default(),
_parameters: Default::default(),
}
}
}
impl<T, S> FromLua for ActionCallback<T, S> {
fn from_lua(value: mlua::Value, lua: &mlua::Lua) -> mlua::Result<Self> {
impl<P> FromLua for ActionCallback<P> {
fn from_lua(value: mlua::Value, _lua: &mlua::Lua) -> mlua::Result<Self> {
let callbacks = match value {
mlua::Value::Function(f) => vec![f],
mlua::Value::Table(table) => table
@@ -49,40 +43,28 @@ impl<T, S> FromLua for ActionCallback<T, S> {
};
Ok(ActionCallback {
internal: Some(Internal {
callbacks,
lua: lua.clone(),
}),
_this: PhantomData::<T>,
_state: PhantomData::<S>,
_parameters: PhantomData::<P>,
})
}
}
// TODO: Return proper error here
impl<T, S> ActionCallback<T, S>
impl<P> ActionCallback<P>
where
T: IntoLua + Sync + Send + Clone + 'static,
S: Serialize,
P: IntoLuaMulti + Sync + Clone,
{
pub async fn call(&self, this: &T, state: &S) {
let Some(internal) = self.internal.as_ref() else {
return;
};
let state = internal.lua.to_value(state).unwrap();
pub async fn call(&self, parameters: P) {
try_join_all(
internal
.callbacks
self.callbacks
.iter()
.map(async |f| f.call_async::<()>((this.clone(), state.clone())).await),
.map(async |f| f.call_async::<()>(parameters.clone()).await),
)
.await
.unwrap();
}
pub fn is_set(&self) -> bool {
self.internal.is_some()
pub fn is_empty(&self) -> bool {
self.callbacks.is_empty()
}
}

View File

@@ -29,7 +29,7 @@ impl mlua::UserData for Timeout {
methods.add_async_method(
"start",
async |_lua, this, (timeout, callback): (f32, ActionCallback<mlua::Value, bool>)| {
async |_lua, this, (timeout, callback): (f32, ActionCallback<()>)| {
if let Some(handle) = this.state.write().await.handle.take() {
handle.abort();
}
@@ -42,7 +42,7 @@ impl mlua::UserData for Timeout {
async move {
tokio::time::sleep(timeout).await;
callback.call(&mlua::Nil, &false).await;
callback.call(()).await;
}
}));

View File

@@ -28,7 +28,13 @@ impl mlua::UserData for WrappedAsyncClient {
methods.add_async_method(
"send_message",
async |_lua, this, (topic, message): (String, mlua::Value)| {
let message = serde_json::to_string(&message).unwrap();
// serde_json converts nil => "null", but we actually want nil to send an empty
// message
let message = if message.is_nil() {
"".into()
} else {
serde_json::to_string(&message).unwrap()
};
debug!("message = {message}");

View File

@@ -425,12 +425,15 @@ device_manager:add(HueSwitch.new({
local hallway_light_automation = {
timeout = Timeout.new(),
forced = false,
switch_callback = function(self, on)
switch_callback = function(self)
return function(_, on)
self.timeout:cancel()
self.group.set_on(on)
self.forced = on
end
end,
door_callback = function(self, open)
door_callback = function(self)
return function(_, open)
if open then
self.timeout:cancel()
@@ -442,8 +445,10 @@ local hallway_light_automation = {
end
end)
end
end
end,
trash_callback = function(self, open)
trash_callback = function(self)
return function(_, open)
if open then
self.group.set_on(true)
else
@@ -455,20 +460,23 @@ local hallway_light_automation = {
self.group.set_on(false)
end
end
end
end,
light_callback = function(self, on)
light_callback = function(self)
return function(_, state)
if
on
state.on
and (self.trash == nil or self.trash:open_percent()) == 0
and (self.door == nil or self.door:open_percent() == 0)
then
-- If the door and trash are not open, that means the light got turned on manually
self.timeout:cancel()
self.forced = true
elseif not on then
elseif not state.on then
-- The light is never forced when it is off
self.forced = false
end
end
end,
}
@@ -477,9 +485,7 @@ local hallway_storage = LightBrightness.new({
room = "Hallway",
topic = mqtt_z2m("hallway/storage"),
client = mqtt_client,
callback = function(_, state)
hallway_light_automation:light_callback(state.state)
end,
callback = hallway_light_automation:light_callback(),
})
turn_off_when_away(hallway_storage)
device_manager:add(hallway_storage)
@@ -504,13 +510,12 @@ hallway_light_automation.group = {
end,
}
local frontdoor_presence = {
timeout = Timeout.new(),
}
setmetatable(frontdoor_presence, {
__call = function(self, open)
local function presence(duration)
local timeout = Timeout.new()
return function(_, open)
if open then
self.timeout:cancel()
timeout:cancel()
if not presence_system:overall_presence() then
mqtt_client:send_message(mqtt_automation("presence/contact/frontdoor"), {
@@ -519,21 +524,19 @@ setmetatable(frontdoor_presence, {
})
end
else
self.timeout:start(debug and 10 or 15 * 60, function()
mqtt_client:send_message(mqtt_automation("presence/contact/frontdoor"), {})
timeout:start(duration, function()
mqtt_client:send_message(mqtt_automation("presence/contact/frontdoor"), nil)
end)
end
end,
})
end
end
device_manager:add(IkeaRemote.new({
name = "Remote",
room = "Hallway",
client = mqtt_client,
topic = mqtt_z2m("hallway/remote"),
callback = function(_, on)
hallway_light_automation:switch_callback(on)
end,
callback = hallway_light_automation:switch_callback(),
battery_callback = check_battery,
}))
local hallway_frontdoor = ContactSensor.new({
@@ -546,10 +549,10 @@ local hallway_frontdoor = ContactSensor.new({
topic = mqtt_automation("presence/contact/frontdoor"),
timeout = debug and 10 or 15 * 60,
},
callback = function(_, open)
hallway_light_automation:door_callback(open)
frontdoor_presence(open)
end,
callback = {
presence(debug and 10 or 15 * 60),
hallway_light_automation:door_callback(),
},
battery_callback = check_battery,
})
device_manager:add(hallway_frontdoor)
@@ -561,9 +564,7 @@ local hallway_trash = ContactSensor.new({
sensor_type = "Drawer",
topic = mqtt_z2m("hallway/trash"),
client = mqtt_client,
callback = function(_, open)
hallway_light_automation:trash_callback(open)
end,
callback = hallway_light_automation:trash_callback(),
battery_callback = check_battery,
})
device_manager:add(hallway_trash)