euv_core/reactive/signal/impl.rs
1use crate::*;
2
3/// Implementation of reactive signal operations.
4impl<T> Signal<T>
5where
6 T: Clone + PartialEq + 'static,
7{
8 /// Creates a new `Signal` with the given initial value.
9 ///
10 /// # Arguments
11 ///
12 /// - `T` - The initial value of the signal.
13 ///
14 /// # Returns
15 ///
16 /// - `Self` - A handle to the newly created reactive signal.
17 pub fn create(value: T) -> Self {
18 let signal_inner: Rc<RefCell<SignalInner<T>>> =
19 Rc::new(RefCell::new(SignalInner::new(value, Vec::new(), true)));
20 let addr: usize = Rc::as_ptr(&signal_inner) as usize;
21 signal_inner_registry_mut().insert(addr, signal_inner as Rc<dyn Any>);
22 let mut signal: Self = Self::new(0, std::marker::PhantomData);
23 signal.set_inner(addr);
24 signal
25 }
26
27 /// Returns a reference to the inner `RefCell` for this signal.
28 ///
29 /// # Returns
30 ///
31 /// - `&'static RefCell<SignalInner<T>>` - A reference to the inner state.
32 fn inner_ref(&self) -> &'static RefCell<SignalInner<T>> {
33 get_signal_inner_ref(self.get_inner())
34 }
35
36 /// Returns the current value of the signal.
37 ///
38 /// Uses `try_borrow` to avoid panicking when the inner `RefCell` is
39 /// already mutably borrowed (e.g., during a `set()` notification cycle).
40 /// In that case, falls back to an unsafe direct read of the value,
41 /// which is safe in single-threaded WASM contexts because the value
42 /// itself is not being mutated at the point of read (only the `RefCell`
43 /// borrow flag is contested).
44 ///
45 /// # Returns
46 ///
47 /// - `T` - The current value of the signal.
48 pub fn get(&self) -> T {
49 let inner_ref: &RefCell<SignalInner<T>> = self.inner_ref();
50 let Ok(inner) = inner_ref.try_borrow() else {
51 return unsafe { (*inner_ref.as_ptr()).get_value().clone() };
52 };
53 inner.get_value().clone()
54 }
55
56 /// Subscribes a callback to be invoked when the signal changes.
57 ///
58 /// If the inner `RefCell` is already borrowed, this is a no-op to avoid
59 /// panicking during re-entrant signal updates.
60 ///
61 /// # Arguments
62 ///
63 /// - `FnMut() + 'static` - The callback to invoke when the signal changes.
64 pub fn subscribe<F>(&self, callback: F)
65 where
66 F: FnMut() + 'static,
67 {
68 if let Ok(mut inner) = self.inner_ref().try_borrow_mut() {
69 inner.get_mut_listeners().push(Box::new(callback));
70 }
71 }
72
73 /// Replaces all listeners with a single new callback.
74 ///
75 /// Unlike `subscribe`, which appends a listener, this method clears any
76 /// existing listeners first and then adds the new one. If the inner
77 /// `RefCell` is already borrowed, this is a no-op.
78 ///
79 /// # Arguments
80 ///
81 /// - `FnMut() + 'static` - The callback to invoke when the signal changes.
82 pub(crate) fn replace_subscribe<F>(&self, callback: F)
83 where
84 F: FnMut() + 'static,
85 {
86 if let Ok(mut inner) = self.inner_ref().try_borrow_mut() {
87 let listeners: &mut Vec<Box<dyn FnMut()>> = inner.get_mut_listeners();
88 listeners.clear();
89 listeners.push(Box::new(callback));
90 }
91 }
92
93 /// Removes all subscribed listeners from this signal and marks it as
94 /// inactive. If the inner `RefCell` is already borrowed, this is a no-op.
95 pub(crate) fn clear_listeners(&self) {
96 if let Ok(mut inner) = self.inner_ref().try_borrow_mut() {
97 inner.set_alive(false);
98 inner.get_mut_listeners().clear();
99 }
100 }
101
102 /// Core implementation of value update and listener notification.
103 ///
104 /// Returns `true` if the value was updated and listeners were notified.
105 /// Returns `false` if the inner `RefCell` is already mutably borrowed
106 /// (re-entrant access), the signal is inactive, or the value is unchanged.
107 fn update_and_notify(&self, value: T) -> bool {
108 let inner_ref: &RefCell<SignalInner<T>> = self.inner_ref();
109 let mut listeners: Vec<Box<dyn FnMut()>> = Vec::new();
110 let Ok(mut inner) = inner_ref.try_borrow_mut() else {
111 return false;
112 };
113 if !inner.get_alive() {
114 return false;
115 }
116 if *inner.get_value() == value {
117 return false;
118 }
119 inner.set_value(value);
120 swap(inner.get_mut_listeners(), &mut listeners);
121 drop(inner);
122 for mut listener in listeners {
123 listener();
124 if let Ok(mut inner) = inner_ref.try_borrow_mut() {
125 inner.get_mut_listeners().push(listener);
126 }
127 }
128 true
129 }
130
131 /// Sets the value of the signal and notifies listeners.
132 ///
133 /// # Arguments
134 ///
135 /// - `T` - The new value to assign to the signal.
136 pub fn set(&self, value: T) {
137 if self.update_and_notify(value) {
138 schedule_signal_update();
139 }
140 }
141
142 /// Sets the value of the signal and notifies listeners without scheduling
143 /// a global DOM update dispatch.
144 ///
145 /// # Arguments
146 ///
147 /// - `T` - The new value to assign to the signal.
148 pub fn set_silent(&self, value: T) {
149 self.update_and_notify(value);
150 }
151
152 /// Sets the value of the signal without notifying listeners or scheduling
153 /// a DOM update. This is useful for breaking circular watch dependencies
154 /// where two signals watch each other and would otherwise recurse infinitely.
155 /// If the inner `RefCell` is already borrowed, this is a no-op.
156 ///
157 /// # Arguments
158 ///
159 /// - `T` - The new value to assign to the signal.
160 pub fn set_untracked(&self, value: T) {
161 let inner_ref: &RefCell<SignalInner<T>> = self.inner_ref();
162 if let Ok(mut inner) = inner_ref.try_borrow_mut() {
163 inner.set_value(value);
164 }
165 }
166}
167
168/// Clones the signal, sharing the same inner state.
169///
170/// Since `Signal` is `Copy`, this simply returns `*self`.
171///
172/// # Returns
173///
174/// - `Self`: A copy of the signal handle sharing the same inner state.
175impl<T> Clone for Signal<T>
176where
177 T: Clone + PartialEq + 'static,
178{
179 fn clone(&self) -> Self {
180 *self
181 }
182}
183
184/// Copies the signal, sharing the same inner state.
185///
186/// Safe because only the inner address (a `usize`) is copied;
187/// the actual `Rc` reference is held by the global signal registry.
188impl<T> Copy for Signal<T> where T: Clone + PartialEq + 'static {}
189
190/// Marks `SignalCell` as `Sync` for single-threaded WASM contexts.
191///
192/// SAFETY: `SignalCell` is only used in single-threaded WASM contexts.
193/// Concurrent access from multiple threads would be undefined behavior.
194unsafe impl<T> Sync for SignalCell<T> where T: Clone + PartialEq + 'static {}
195
196/// Implementation of SignalCell construction and access.
197impl<T> SignalCell<T>
198where
199 T: Clone + PartialEq + 'static,
200{
201 /// Creates a new `SignalCell` with no signal stored.
202 ///
203 /// # Returns
204 ///
205 /// - `Self`: An empty `SignalCell` with `None` stored in the inner `UnsafeCell`.
206 pub const fn none() -> Self {
207 Self {
208 inner: UnsafeCell::new(None),
209 }
210 }
211
212 /// Stores a signal into the cell.
213 ///
214 /// # Arguments
215 ///
216 /// - `Signal<T>` - The signal to store.
217 ///
218 /// # Panics
219 ///
220 /// Panics if a signal has already been stored.
221 pub fn set(&self, signal: Signal<T>) {
222 unsafe {
223 let ptr: &mut Option<Signal<T>> = &mut *self.get_inner().get();
224 if ptr.is_some() {
225 panic!("SignalCell::set called on an already-initialized cell");
226 }
227 *ptr = Some(signal);
228 }
229 }
230
231 /// Returns the signal stored in the cell.
232 ///
233 /// # Returns
234 ///
235 /// - `Signal<T>` - The stored signal.
236 ///
237 /// # Panics
238 ///
239 /// Panics if no signal has been stored via `set`.
240 pub fn get(&self) -> Signal<T> {
241 unsafe {
242 let ptr: &Option<Signal<T>> = &*self.get_inner().get();
243 match ptr {
244 Some(signal) => *signal,
245 None => panic!("SignalCell::get called on an uninitialized cell"),
246 }
247 }
248 }
249}
250
251/// Provides a default empty `SignalCell`.
252///
253/// Creates a `SignalCell` with `None` stored in the inner `UnsafeCell`.
254///
255/// # Returns
256///
257/// - `Self`: An empty `SignalCell` with no signal stored.
258impl<T> Default for SignalCell<T>
259where
260 T: Clone + PartialEq + 'static,
261{
262 fn default() -> Self {
263 Self {
264 inner: UnsafeCell::new(None),
265 }
266 }
267}
268
269/// Marks `SignalInnerRegistryCell` as `Sync` for single-threaded WASM contexts.
270///
271/// SAFETY: `SignalInnerRegistryCell` is only used in single-threaded WASM contexts.
272/// Concurrent access from multiple threads would be undefined behavior.
273unsafe impl Sync for SignalInnerRegistryCell {}