After an easy couple version with #34252, this version is less flexible
(and safer) on inferring exported types mainly.
We require to annotate some exported types to differentiate between
`boolean` and literal `true` types, etc.
It wasn't immediately obvious to me, that all the exports here are
related to legacy context, so renaming for clarity.
Modern context lives in `ReactFiberNewContext` which we could probably
also raname in a separate step to just Context.
Includes #31412.
The issue is that `pushTreeFork` stores some global state when reconcile
children. This gets popped by `popTreeContext` in `completeWork`.
Normally `completeWork` returns its own `Fiber` again if it wants to do
a second pass which will call `pushTreeFork` again in the next pass.
However, `SuspenseList` doesn't return itself, it returns the next child
to work on.
The fix is to keep track of the count and push it again it when we
return the next child to attempt.
There are still some outstanding issues with hydration. Like the
backwards test still has the wrong behavior in it because it hydrates
backwards and so it picks up the DOM nodes in reverse order.
`tail="hidden"` also doesn't work correctly.
There's also another issue with `useId` and `AsyncIterable` in
SuspenseList when there's an unknown number of children. We don't
support those showing one at a time yet though so it's not an issue yet.
To fix it we need to add variable total count to the `useId` algorithm.
E.g. by falling back to varint encoding.
---------
Co-authored-by: Rick Hanlon <rickhanlonii@fb.com>
Co-authored-by: Ricky <rickhanlonii@gmail.com>
This fixes a long standing issue that controlled inputs gets out of sync
with the browser state if it's changed before we hydrate.
This resolves the issue by replaying the change events (click, input and
change) if the value has changed by the time we commit the hydration.
That way you can reflect the new value in state to bring it in sync. It
does this whether controlled or uncontrolled.
The idea is that this should be ok to replay because it's similar to the
continuous events in that it doesn't replay a sequence but only reflects
the current state of the tree.
Since this is a breaking change I added it behind
`enableHydrationChangeEvent` flag.
There is still an additional issue remaining that I intend to address in
a follow up. If a `useLayoutEffect` triggers an sync rerender on
hydration (always a bad idea) then that can rerender before we have had
a chance to replay the change events. If that renders through a input
then that input will always override the browser value with the
controlled value. Which will reset it before we've had a change to
update to the new value.
Stacked on #32862 and #32842.
This means that Activity boundaries now act as boundaries which can have
their effects mounted independently. Just like Suspense boundaries, we
hydrate the outer content first and then start hydrating the content in
an Offscreen lane. Flowing props or interacting with the content
increases the priority just like Suspense boundaries.
This skips emitting even the comments for `<Activity mode="hidden">` so
we don't hydrate those. Instead those are deferred to a later client
render.
The implementation are just forked copies of the SuspenseComponent
branches and then carefully going through each line and tweaking it.
The main interesting bit is that, unlike Suspense, Activity boundaries
don't have fallbacks so all those branches where you might commit a
suspended tree disappears. Instead, if something suspends while
hydration, we can just leave the dehydrated content in place. However,
if something does suspend during client rendering then it should bubble
up to the parent. Therefore, we have to be careful to only
pushSuspenseHandler when hydrating. That's really the main difference.
This just uses the existing basic Activity tests but I've started work
on port all of the applicable Suspense tests in SelectiveHydration-test
and PartialHydration-test to Activity versions.
Stacked on #32851 and #32900.
This implements the equivalent Configs for ActivityInstance as we have
for SuspenseInstance. These can be implemented as comments but they
don't have to be and can be implemented differently in the renderer.
This seems like a lot duplication but it's actually ends mostly just
calling the same methods underneath and the wrappers compiles out.
This doesn't leave the Activity dehydrated yet. It just hydrates into it
immediately.
Even if the `enableSuspenseyImages` flag is off.
Started View Transitions already wait for Suspensey Fonts and this is
another Suspensey feature that is even more important for View
Transitions - even though we eventually want it all the time. So this
uses `<ViewTransition>` as an early opt-in for that tree into Suspensey
Images, which we can ship in a minor.
If you're doing an update inside a ViewTransition then we're eligible to
start a ViewTransition in any Transition that might suspend. Even if
that doesn't end up animating after all, we still consider it Suspensey.
We could try to suspend inside the startViewTransition but that's not
how it would work with `enableSuspenseyImages` on and we can't do that
for startGestureTransition.
Even so we still need some opt-in to trigger the Suspense fallback even
before we know whether we'll animate or not. So the simple solution is
just that `<ViewTransition>` opts in the whole subtree into Suspensey
Images in general.
In this PR I disable `enableSuspenseyImages` in experimental so that we
can instead test the path that only enables it inside `<ViewTransition>`
tree since that's the path that would next graduate to a minor.
We've known we've wanted this for many years and most of the
implementation was already done for Suspensey CSS. This waits to commit
until images have decoded by default or up to 500ms timeout (same as
suspensey fonts).
It only applies to Transitions, Retries (Suspense), Gesture Transitions
(flag) and Idle (doesn't exist). Sync updates just commit immediately.
`<img loading="lazy" src="..." />` opts out since you explicitly want it
to load lazily in that case.
`<img onLoad={...} src="..." />` also opts out since that implies you're
ok with managing your own reveal.
In the future, we may add an opt in e.g. `<img blocking="render"
src="..." />` that opts into longer timeouts and re-suspends even sync
updates. Perhaps also triggering error boundaries on errors.
The rollout for this would have to go in a major and we may have to
relax the default timeout to not delay too much by default. However, we
can also make this part of `enableViewTransition` so that if you opt-in
by using View Transitions then those animations will suspend on images.
That we could ship in a minor.
Followup from https://github.com/facebook/react/pull/32499
Manual mode is unused and has some bugs such as revealing hidden
boundaries when manually toggling. We also want to change how manual
mode works, and do some refactors to Activity to make it easier to
support. For now we'll remove it, then add it back after the other
changes we have planned.
This PR separates Activity to it's own element type separate from
Offscreen. The goal is to allow us to add Activity element boundary
semantics during hydration similar to Suspense semantics, without
impacting the Offscreen behavior in suspended children.
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## Summary
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does the pull request solve?
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This PR fixes asserts when `passChildrenWhenCloningPersistedNodes` is
enabled for React Native and OffscreenComponent child rendering unhides
host components.
Discussions around possible fixes for the asserts seen in React Native
suggested changing the way we handle hiding/unhiding host components by
updating the fiber state with the hidden host component instead of
submitting a hidden clone Fabric and keeping the original as the current
fiber.
Implementing this fix would require holding onto the original styling of
the hidden host component. The reconciler updates the styling by adding
`display: none` to hide the contents. If the original host component was
already hidden, the renderer would lose that information and remove the
styling when showing the contents again.
To reduce the changes required to make
`passChildrenWhenCloningPersistedNodes` work, this PR falls back to the
original cloning method when OffscreenComponents are part of the
children needed to be added back. This effectively resolve the asserts
triggered by the feature in RN and improves overall performance.
## How did you test this change?
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This fix was tested by enabling `passChildrenWhenCloningPersistedNodes`
in an app built with React Native that had a repro for triggering the
asserts. The asserts do not occur anymore when using the changes in this
PR.
---------
Co-authored-by: Nick <lefever@meta.com>
When a named ViewTransition component unmounts in one place and mounts
in a different place we need to match these up so we know a pair has
been created. Since the unmounts are tracked in the snapshot phase we
need some way to track the mounts before that.
Originally the way I did that is by reusing the render phase since there
was no other phase in the commit before that. However, that's not quite
correct. Just because something is visited in render doesn't mean it'll
commit. E.g. if that tree ends up suspending or erroring. Which would
lead to a false positive on match. The unmount shouldn't animate in that
case.
(Un)fortunately we have already added a traversal before the snapshot
phase for tracking suspensey CSS. The `accumulateSuspenseyCommit` phase.
This needs to find new mounts of Suspensey CSS or if there was a
reappearing Offscreen boundary it needs to find any Suspensey CSS
already inside that tree. This is exactly the same traversal we need to
find newly appearing View Transition components. So we can just reuse
that.
This adds refs to View Transition that can resolve to an instance of:
```js
type ViewTransitionRef = {
name: string,
group: Animatable,
imagePair: Animatable,
old: Animatable,
new: Animatable,
}
```
Animatable is a type that has `animate(keyframes, options)` and
`getAnimations()` on it. It's the interface that exists on Element that
lets you start animations on it. These ones are like that but for the
four pseudo-elements created by the view transition.
If a name changes, then a new ref is created. That way if you hold onto
a ref during an exit animation spawned by the name change, you can keep
calling functions on it. It will keep referring to the old name rather
than the new name.
This allows imperative control over the animations instead of using CSS
for this.
```js
const viewTransition = ref.current;
const groupAnimation = viewTransition.group.animate(keyframes, options);
const imagePairAnimation = viewTransition.imagePair.animate(keyframes, options);
const oldAnimation = viewTransition.old.animate(keyframes, options);
const newAnimation = viewTransition.new.animate(keyframes, options);
```
The downside of using this API is that it doesn't work with SSR so for
SSR rendered animations they'll fallback to the CSS. You could use this
for progressive enhancement though.
Note: In this PR the ref only controls one DOM node child but there can
be more than one DOM node in the ViewTransition fragment and they are
just left to their defaults. We could try something like making the
`animate()` function apply to multiple children but that could lead to
some weird consequences and the return value would be difficult to
merge. We could try to maintain an array of Animatable that updates with
how ever many things are currently animating but that makes the API more
complicated to use for the simple case. Conceptually this should be like
a fragment so we would ideally combine the multiple children into a
single isolate if we could. Maybe one day the same name could be applied
to multiple children to create a single isolate. For now I think I'll
just leave it like this and you're really expect to just use it with one
DOM node. If you have more than one they just get the default animations
from CSS.
Using this is a little tricky due timing. In this fixture I just use a
layout effect plus rAF to get into the right timing after the
startViewTransition is ready. In the future I'll add an event that fires
when View Transitions heuristics fire with the right timing.
This will provide the opt-in for using [View
Transitions](https://developer.mozilla.org/en-US/docs/Web/API/View_Transition_API)
in React.
View Transitions only trigger for async updates like `startTransition`,
`useDeferredValue`, Actions or `<Suspense>` revealing from fallback to
content. Synchronous updates provide an opt-out but also guarantee that
they commit immediately which View Transitions can't.
There's no need to opt-in to View Transitions at the "cause" side like
event handlers or actions. They don't know what UI will change and
whether that has an animated transition described.
Conceptually the `<ViewTransition>` component is like a DOM fragment
that transitions its children in its own isolate/snapshot. The API works
by wrapping a DOM node or inner component:
```js
import {ViewTransition} from 'react';
<ViewTransition><Component /></ViewTransition>
```
The default is `name="auto"` which will automatically assign a
`view-transition-name` to the inner DOM node. That way you can add a
View Transition to a Component without controlling its DOM nodes styling
otherwise.
A difference between this and the browser's built-in
`view-transition-name: auto` is that switching the DOM nodes within the
`<ViewTransition>` component preserves the same name so this example
cross-fades between the DOM nodes instead of causing an exit and enter:
```js
<ViewTransition>{condition ? <ComponentA /> : <ComponentB />}</ViewTransition>
```
This becomes especially useful with `<Suspense>` as this example
cross-fades between Skeleton and Content:
```js
<ViewTransition>
<Suspense fallback={<Skeleton />}>
<Content />
</Suspense>
</ViewTransition>
```
Where as this example triggers an exit of the Skeleton and an enter of
the Content:
```js
<Suspense fallback={<ViewTransition><Skeleton /></ViewTransition>}>
<ViewTransition><Content /></ViewTransition>
</Suspense>
```
Managing instances and keys becomes extra important.
You can also specify an explicit `name` property for example for
animating the same conceptual item from one page onto another. However,
best practices is to property namespace these since they can easily
collide. It's also useful to add an `id` to it if available.
```js
<ViewTransition name="my-shared-view">
```
The model in general is the same as plain `view-transition-name` except
React manages a set of heuristics for when to apply it. A problem with
the naive View Transitions model is that it overly opts in every
boundary that *might* transition into transitioning. This is leads to
unfortunate effects like things floating around when unrelated updates
happen. This leads the whole document to animate which means that
nothing is clickable in the meantime. It makes it not useful for smaller
and more local transitions. Best practice is to add
`view-transition-name` only right before you're about to need to animate
the thing. This is tricky to manage globally on complex apps and is not
compositional. Instead we let React manage when a `<ViewTransition>`
"activates" and add/remove the `view-transition-name`. This is also when
React calls `startViewTransition` behind the scenes while it mutates the
DOM.
I've come up with a number of heuristics that I think will make a lot
easier to coordinate this. The principle is that only if something that
updates that particular boundary do we activate it. I hope that one day
maybe browsers will have something like these built-in and we can remove
our implementation.
A `<ViewTransition>` only activates if:
- If a mounted Component renders a `<ViewTransition>` within it outside
the first DOM node, and it is within the viewport, then that
ViewTransition activates as an "enter" animation. This avoids inner
"enter" animations trigger when the parent mounts.
- If an unmounted Component had a `<ViewTransition>` within it outside
the first DOM node, and it was within the viewport, then that
ViewTransition activates as an "exit" animation. This avoids inner
"exit" animations triggering when the parent unmounts.
- If an explicitly named `<ViewTransition name="...">` is deep within an
unmounted tree and one with the same name appears in a mounted tree at
the same time, then both are activated as a pair, but only if they're
both in the viewport. This avoids these triggering "enter" or "exit"
animations when going between parents that don't have a pair.
- If an already mounted `<ViewTransition>` is visible and a DOM
mutation, that might affect how it's painted, happens within its
children but outside any nested `<ViewTransition>`. This allows it to
"cross-fade" between its updates.
- If an already mounted `<ViewTransition>` resizes or moves as the
result of direct DOM nodes siblings changing or moving around. This
allows insertion, deletion and reorders into a list to animate all
children. It is only within one DOM node though, to avoid unrelated
changes in the parent to trigger this. If an item is outside the
viewport before and after, then it's skipped to avoid things flying
across the screen.
- If a `<ViewTransition>` boundary changes size, due to a DOM mutation
within it, then the parent activates (or the root document if there are
no more parents). This ensures that the container can cross-fade to
avoid abrupt relayout. This can be avoided by using absolutely
positioned children. When this can avoid bubbling to the root document,
whatever is not animating is still responsive to clicks during the
transition.
Conceptually each DOM node has its own default that activates the parent
`<ViewTransition>` or no transition if the parent is the root. That
means that if you add a DOM node like `<div><ViewTransition><Component
/></ViewTransition></div>` this won't trigger an "enter" animation since
it was the div that was added, not the ViewTransition. Instead, it might
cause a cross-fade of the parent ViewTransition or no transition if it
had no parent. This ensures that only explicit boundaries perform coarse
animations instead of every single node which is really the benefit of
the View Transitions model. This ends up working out well for simple
cases like switching between two pages immediately while transitioning
one floating item that appears on both pages. Because only the floating
item transitions by default.
Note that it's possible to add manual `view-transition-name` with CSS or
`style={{ viewTransitionName: 'auto' }}` that always transitions as long
as something else has a `<ViewTransition>` that activates. For example a
`<ViewTransition>` can wrap a whole page for a cross-fade but inside of
it an explicit name can be added to something to ensure it animates as a
move when something relates else changes its layout. Instead of just
cross-fading it along with the Page which would be the default.
There's more PRs coming with some optimizations, fixes and expanded
APIs. This first PR explores the above core heuristic.
---------
Co-authored-by: Sebastian "Sebbie" Silbermann <silbermann.sebastian@gmail.com>
This is a follow up to #31752.
This keeps track in the commit phase whether this subtree was hydrated.
If it was, then we mark those components in the Components track as
green. Just like the phase itself is marked as green.
If the boundary client rendered we instead mark it as "errored" and its
children given the plain primary render color (blue). I also collect the
hydration error for this case so we can include its message in the
details view. (Unfortunately this doesn't support newlines atm.)
Most of the time this happens in separate commits for each boundary but
it is possible to force a client render in the same pass as a hydration.
Such as if an update flows into a boundary that has been put into
fallback state after it was initially attempted.
<img width="1487" alt="Screenshot 2024-12-18 at 12 06 54 AM"
src="https://github.com/user-attachments/assets/74c57291-4d11-414c-9751-3dac3285a89a"
/>
When a synchronous update suspends, and we prerender the siblings, the
prerendering should be non-blocking so that we can immediately restart
once the data arrives.
This happens automatically when there's a Suspense boundary, because we
immediately commit the boundary and then proceed to a Retry render,
which are always concurrent. When there's not a Suspense boundary, there
is no Retry, so we need to take care to switch from the synchronous work
loop to the concurrent one, to enable time slicing.
When a component suspends and is replaced by a fallback, we should start
prerendering the fallback immediately, even before any new data is
received. During the retry, we can enter prerender mode directly if
we're sure that no new data was received since we last attempted to
render the boundary.
To do this, when completing the fallback, we leave behind a pending
retry lane on the Suspense boundary. Previously we only did this once a
promise resolved, but by assigning a lane during the complete phase, we
will know that there's speculative work to be done.
Then, upon committing the fallback, we mark the retry lane as suspended
— but only if nothing was pinged or updated in the meantime. That allows
us to immediately enter prerender mode (i.e. render without skipping any
siblings) when performing the retry.
Persistent renderers used the `Update` effect flag to check if a subtree
needs to be cloned. In some cases, that causes extra renders, such as
when a layout effect is triggered which only has an effect on the JS
side, but doesn't update the host components.
It's been a bit tricky to find the right places where this needs to be
set and I'm not 100% sure I got all the cases even though the tests
passed.
This lets us rethrow it in the conceptual place of the child.
There's currently a problem when we suspend or throw in the child fiber
reconciliation phase. This work is done by the parent component, so if
it suspends or errors it is as if that component errored or suspended.
However, conceptually it's like a child suspended or errored.
In theory any thing can throw but it is really mainly due to either
`React.lazy` (both in the element.type position and node position),
`Thenable`s or the `Thenable`s that make up `AsyncIterable`s.
Mainly this happens because a Server Component that errors turns into a
`React.lazy`. In practice this means that if you have a Server Component
as the direct child of an Error Boundary. Errors inside of it won't be
caught.
We used to have the same problem with Thenables and Suspense but because
it's now always nested inside an inner Offscreen boundary that shields
it by being one level nested. However, when we have raw Offscreen
(Activity) boundaries they should also be able to catch the suspense if
it's in a hidden state so the problem returns. This fixes it for thrown
promises but it doesn't fix it for SuspenseException. I'm not sure this
is even the right strategy for Suspense though. It kind of relies on the
node never actually mounting/committing.
It's conceptually a little tricky because the current component can
inspect the children and make decisions based on them. Such as
SuspenseList.
The other thing that this PR tries to address is that it sets the
foundation for dealing with error reporting for Server Components that
errored. If something client side errors it'll be a stack like Server
(DebugInfo) -> Fiber -> Fiber -> Server -> (DebugInfo) -> Fiber.
However, all error reporting relies on it eventually terminating into a
Fiber that is responsible for the error. To avoid having to fork too
much it would be nice if I could create a Fiber to associate with the
error so that even a Server component error in this case ultimately
terminates in a Fiber.
Host Components can exist as four semantic types
1. regular Components (Vanilla obv)
2. singleton Components
2. hoistable components
3. resources
Each of these component types have their own rules related to mounting
and reconciliation however they are not direclty modeled as their own
unique fiber type. This is partly for code size but also because
reconciling the inner type of these components would be in a very hot
path in fiber creation and reconciliation and it's just not practical to
do this logic check here.
Right now we have three Fiber types used to implement these 4 concepts
but we probably need to reconsider the model and think of Host
Components as a single fiber type with an inner implementation. Once we
do this we can regularize things like transitioning between a resource
and a regular component or a singleton and a hoistable instance. The
cases where these transitions happen today aren't particularly common
but they can be observed and currently the handling of these transitions
is incomplete at best and buggy at worst. The most egregious case is the
link type. This can be a regular component (stylesheet without
precedence) a hoistable component (non stylesheet link tags) or a
resource (stylesheet with a precedence) and if you have a single jsx
slot that tries to reconcile transitions between these types it just
doesn't work well.
This commit adds an error for when a Hoistable goes from Instance to
Resource. Currently this is only possible for `<link>` elements going to
and from stylesheets with precedence. Hopefully we'll be able to remove
this error and implement as an inner type before we encounter new
categories for the Hoistable types
detecting type shifting to and from regular components is harder to do
efficiently because we don't want to reevaluate the type on every update
for host components which is currently not required and would add
overhead to a very hot path
singletons can't really type shift in their one practical implementation
(DOM) so they are only a problem in theroy not practice
Updates Suspensey instances and resources to preload even during urgent
updates and to potentially suspend.
The current implementation is unchanged for transitions but for sync
updates if there is a suspense boundary above the resource/instance it
will be rendered in fallback mode instead.
Note: This behavior is not what we want for images once we make them
suspense enabled. We will need to have forked behavior here to
distinguish between stylesheets which should never commit when not
loaded and images which should commit after a small delay
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Currently updatePriority is tracked in the reconciler. `flushSync` is
going to be implemented reconciler agnostic soon and we need to move the
tracking of this state to the renderer and out of reconciler. This
change implements new renderer bin dings for getCurrentUpdatePriority
and setCurrentUpdatePriority.
I was originally going to have the getter also do the event priority
defaulting using window.event so we eliminate getCur rentEventPriority
but this makes all the callsites where we store the true current
updatePriority on the stack harder to work with so for now they remain
separate.
I also moved runWithPriority to the renderer since it really belongs
whereever the state is being managed and it is only currently exposed in
the DOM renderer.
Additionally the current update priority is not stored on
ReactDOMSharedInternals. While not particularly meaningful in this
change it opens the door to implementing `flushSync` outside of the
reconciler
Saves some bytes and ensures that we're actually disabling it.
Turns out this flag wasn't disabling React Native/Fabric, React Noop and
React ART legacy modes so those are updated too.
Should be rebased on #28681.
This PR relands #28672 on top of the flag removal and the test
demonstrating a breakage in Suspense for legacy mode.
React has deprecated module pattern Function Components for many years
at this point. Supporting this pattern required React to have a concept
of an indeterminate component so that when a component first renders it
can turn into either a ClassComponent or a FunctionComponent depending
on what it returns. While this feature was deprecated and put behind a
flag it is still in stable. This change remvoes the flag, removes the
warnings, and removes the concept of IndeterminateComponent from the
React codebase.
While removing IndeterminateComponent type Seb and I discovered that we
needed a concept of IncompleteFunctionComponent to support Suspense in
legacy mode. This new work tag is only needed as long as legacy mode is
around and ideally any code that considers this tag will be excludable
from OSS builds once we land extra gates using `disableLegacyMode` flag.
This breaks internal tests, so must be something in the refactor. Since
it's the top commit let's revert and split into two PRs, one that
removes the flag and one that does the refactor, so we can find the bug.
The module pattern
```
function MyComponent() {
return {
render() {
return this.state.foo
}
}
}
```
has been deprecated for approximately 5 years now. This PR removes
support for this pattern. It also simplifies a number of code paths in
particular related to the concept of `IndeterminateComponent` types.
Stacked on #28476.
We used to `console.error` for every mismatch we found, up until the
error we threw for the hydration mismatch.
This changes it so that we build up a set of diffs up until we either
throw or complete hydrating the root/suspense boundary. If we throw, we
append the diff to the error message which gets passed to
onRecoverableError (which by default is also logged to console). If we
complete, we append it to a `console.error`.
Since we early abort when something throws, it effectively means that we
can only collect multiple diffs if there were preceding non-throwing
mismatches - i.e. only properties mismatched but tag name matched.
There can still be multiple logs if multiple siblings Suspense
boundaries all error hydrating but then they're separate errors
entirely.
We still log an extra line about something erroring but I think the goal
should be that it leads to a single recoverable or console.error.
This doesn't yet actually print the diff as part of this message. That's
in a follow up PR.
In #23176 we added a special case in completeWork for SuspenseBoundaries
if they still have trailing children. However, that misses a case
because it doesn't log a recoverable error for the hydration mismatch.
So we get an error that we rerendered.
I think this special case was done to avoid contexts getting out of
sync. I don't know why we didn't just move where the pop happens though
so that's what I did here and let the regular pass throw instead. Seems
to be pass the tests.
Certain fiber types may have a ref attached to them. The main ones are
HostComponent and ClassComponent. During the render phase, we check if a
ref was passed to it, and if so, we schedule a Ref effect: `markRef`.
Currently, we're not consistent about whether we call `markRef` in the
begin phase or the complete phase. For some fiber types, I found that
`markRef` was called in both phases, causing redundant work.
After some investigation, I don't believe it's necessary to call
`markRef` in both the begin phase and the complete phase, as long as you
don't bail out before calling `markRef`.
I though that maybe it had to do with the
`attemptEarlyBailoutIfNoScheduledUpdates` branch, which is a fast path
that skips the regular begin phase if no new props, state, or context
were passed. But if the props haven't changed (referentially — the
`memo` and `shouldComponentUpdate` checks happen later), then it follows
that the ref couldn't have changed either. This is true even in the old
`createElement` runtime where `ref` is stored on the element instead of
as a prop, because there's no way to pass a new ref to an element
without also passing new props. You might argue this is a leaky
assumption, but since we're shifting ref to be just a regular prop
anyway, I think it's the correct way to think about it going forward.
I think the pattern of calling `markRef` in the complete phase may have
been left over from an earlier iteration of the implementation before
the bailout logic was structured like it is today.
So, I removed all the `markRef` calls from the complete phase. In the
case of ScopeComponent, which had no corresponding call in the begin
phase, I added one.
We already had a test that asserted that a ref is reattached even if the
component bails out, but I added some new ones to be extra safe.
The reason I'm changing this this is because I'm working on a different
change to move the ref handling logic in `coerceRef` to happen in render
phase of the component that accepts the ref, instead of during the
parent's reconciliation.
Previously, `<Context>` was equivalent to `<Context.Consumer>`. However,
since the introduction of Hooks, the `<Context.Consumer>` API is rarely
used. The goal here is to make the common case cleaner:
```js
const ThemeContext = createContext('light')
function App() {
return (
<ThemeContext value="dark">
...
</ThemeContext>
)
}
function Button() {
const theme = use(ThemeContext)
// ...
}
```
This is technically a breaking change, but we've been warning about
rendering `<Context>` directly for several years by now, so it's
unlikely much code in the wild depends on the old behavior. [Proof that
it warns today (check
console).](https://codesandbox.io/p/sandbox/peaceful-nobel-pdxtfl)
---
**The relevant commit is 5696782b428a5ace96e66c1857e13249b6c07958.** It
switches `createContext` implementation so that `Context.Provider ===
Context`.
The main assumption that changed is that a Provider's fiber type is now
the context itself (rather than an intermediate object). Whereas a
Consumer's fiber type is now always an intermediate object (rather than
it being sometimes the context itself and sometimes an intermediate
object).
My methodology was to start with the relevant symbols, work tags, and
types, and work my way backwards to all usages.
This might break tooling that depends on inspecting React's internal
fields. I've added DevTools support in the second commit. This didn't
need explicit versioning—the structure tells us enough.
These are all functionally equivalent changes.
- remove double negation and more explicit naming of
`hadNoMutationsEffects`
- use docblock syntax that's consumed by Flow
- remove useless cast
`Activity` is the current candidate name. This PR starts the rename work
by renaming the exported unstable component name.
NOTE: downstream consumers need to rename the import when updating to
this commit.
## Summary
Currently when cloning nodes in Fabric, we reset a node's children on
each clone, and then repeatedly call appendChild to restore the previous
list of children (even if it was quasi-identical to before). This causes
unnecessary invalidation of the layout state in Fabric's ShadowNode data
(which in turn may require additional yoga clones) and extra JSI calls.
This PR adds a feature flag to pass in the children as part of the clone
call, so Fabric always has a complete view of the node that's being
mutated.
This feature flag requires matching changes in the react-native repo:
https://github.com/facebook/react-native/pull/39817
## How did you test this change?
Unit test added demonstrates the new behaviour
```
yarn test -r www-modern ReactFabric-test
yarn test ReactFabric-test.internal
```
Tested a manual sync into React Native and verified core surfaces render
correctly.
## Summary
This PR cleans up `useMutableSource`. This has been blocked by a
remaining dependency internally at Meta, but that has now been deleted.
<!--
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-->
## How did you test this change?
```
yarn flow
yarn lint
yarn test --prod
```
<!--
Demonstrate the code is solid. Example: The exact commands you ran and
their output, screenshots / videos if the pull request changes the user
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solve?
If you leave this empty, your PR will very likely be closed.
-->
When we diffInCommitPhase there's no updatePayload, which caused no
update to be applied.
This is unfortunate because it would've been a lot easier to see this
oversight if we didn't have to support both flags.
I also carified that updateHostComponent is unnecessary in the new flag.
We reuse updateHostComponent for HostSingleton and HostHoistables since
it has a somewhat complex path but that means you have to remember when
editing updateHostComponent that it's not just used for that tag.
Luckily with the new flag, this is actually unnecessary since we just
need to mark it for update if any props have changed and then we diff it
later.
This removes the concept of `prepareUpdate()`, behind a flag.
React Native already does everything in the commit phase, but generates
a temporary update payload before applying it.
React Fabric does it both in the render phase. Now it just moves it to a
single host config.
For DOM I forked updateProperties into one that does diffing and
updating in one pass vs just applying a pre-diffed updatePayload.
There are a few downsides of this approach:
- If only "children" has changed, we end up scheduling an update to be
done in the commit phase. Since we traverse through it anyway, it's
probably not much extra.
- It does more work in the commit phase so for a large tree that is
mostly unchanged, it'll stall longer.
- It does some extra work for special cases since that work happens if
anything has changed. We no longer have a deep bailout.
- The special cases now have to each replicate the "clean up old props"
loop, leading to extra code.
The benefit is that this doesn't allocate temporary extra objects
(possibly multiple per element if the array has to resize). It's less
work overall. It also gives us an option to reuse this function for a
sync render optimization.
Another benefit is that if we do the loop in the commit phase I can do
further optimizations by reading all props that I need for special cases
in that loop instead of polymorphic reads from props. This is what I'd
like to do in future refactors that would be stacked on top of this
change.
part of https://github.com/facebook/react/pull/26571
merging separately to improve tracking of files renames in git
Rename HostConfig files to FiberConfig to clarify they are configs for
Fiber and not Fizz/Flight. This better conforms to the naming used in
Flight and now Fizz of `ReactFlightServerConfig` and `ReactFizzConfig`
Added an explicit type to all $FlowFixMe suppressions to reduce
over-suppressions of new errors that might be caused on the same lines.
Also removes suppressions that aren't used (e.g. in a `@noflow` file as
they're purely misleading)
Test Plan:
yarn flow-ci