This is a partial revert of #33094. It's true that we don't need the
server and client ViewTransition names to line up. However the server
does need to be able to generate deterministic names for itself. The
cheapest way to do that is using the useId algorithm. When it's used by
the server, the client needs to also materialize an ID even if it
doesn't use it.
And that doesn't disable with `update="none"`.
The principle here is that we want the content of a Portal to animate if
other things are animating with it but if other things aren't animating
then we don't.
Stacked on #33160, #33162, #33186 and #33188.
We have a special case that's awkward for default indicators. When you
start a new async Transition from `React.startTransition` then there's
not yet any associated root with the Transition because you haven't
necessarily `setState` on anything yet until the promise resolves.
That's what `entangleAsyncAction` handles by creating a lane that
everything entangles with until all async actions are done.
If there are no sync updates before the end of the event, we should
trigger a default indicator until either the async action completes
without update or if it gets entangled with some roots we should keep it
going until those roots are done.
Stacked on #33160.
The purpose of this is to avoid calling `onDefaultTransitionIndicator`
when a Default priority update acts as the loading indicator, but still
call it when unrelated Default updates happens nearby.
When we schedule Default priority work that gets batched with other
events in the same frame more or less. This helps optimize by doing less
work. However, that batching means that we can't separate work from one
setState from another. If we would consider all Default priority work in
a frame when determining whether to show the default we might never show
it in cases like when you have a recurring timer updating something.
This instead flushes the Default priority work eagerly along with the
sync work at the end of the event, if this event scheduled any
Transition work. This is then used to determine if the default indicator
needs to be shown.
Stacked on #33159.
This implements `onDefaultTransitionIndicator`.
The sequence is:
1) In `markRootUpdated` we schedule Transition updates as needing
`indicatorLanes` on the root. This tracks the lanes that currently need
an indicator to either start or remain going until this lane commits.
2) Track mutations during any commit. We use the same hook that view
transitions use here but instead of tracking it just per view transition
scope, we also track a global boolean for the whole root.
3) If a sync/default commit had any mutations, then we clear the
indicator lane for the `currentEventTransitionLane`. This requires that
the lane is still active while we do these commits. See #33159. In other
words, a sync update gets associated with the current transition and it
is assumed to be rendering the loading state for that corresponding
transition so we don't need a default indicator for this lane.
4) At the end of `processRootScheduleInMicrotask`, right before we're
about to enter a new "event transition lane" scope, it is no longer
possible to render any more loading states for the current transition
lane. That's when we invoke `onDefaultTransitionIndicator` for any roots
that have new indicator lanes.
5) When we commit, we remove the finished lanes from `indicatorLanes`
and once that reaches zero again, then we can clean up the default
indicator. This approach means that you can start multiple different
transitions while an indicator is still going but it won't stop/restart
each time. Instead, it'll wait until all are done before stopping.
Follow ups:
- [x] Default updates are currently not enough to cancel because those
aren't flush in the same microtask. That's unfortunate. #33186
- [x] Handle async actions before the setState. Since these don't
necessarily have a root this is tricky. #33190
- [x] Disable for `useDeferredValue`. ~Since it also goes through
`markRootUpdated` and schedules a Transition lane it'll get a default
indicator even though it probably shouldn't have one.~ EDIT: Turns out
this just works because it doesn't go through `markRootUpdated` when
work is left behind.
- [x] Implement built-in DOM version by default. #33162
When we're entangled with an async action lane we use that lane instead
of the currentEventTransitionLane. Conversely, if we start a new async
action lane we reuse the currentEventTransitionLane.
So they're basically supposed to be in sync but they're not if you
resolve the async action and then schedule new stuff in the same event.
Then you end up with two transitions in the same event with different
lanes.
By stashing it like this we fix that but it also gives us an opportunity
to check just the currentEventTransitionLane to see if this event
scheduled any regular Transition updates or Async Transitions.
This keeps track of the transition lane allocated for this event. I want
to be able to use the current one within sync work flushing to know
which lane needs its loading indicator cleared.
It's also a bit weird that transition work scheduled inside sync updates
in the same event aren't entangled with other transitions in that event
when `flushSync` is.
Therefore this moves it to reset after flushing.
It should have no impact. Just splitting it out into a separate PR for
an abundance of caution.
The only thing this might affect would be if the React internals throws
and it doesn't reset after. But really it doesn't really have to reset
and they're all entangled anyway.
Stacked on #33150.
We use `noop` functions in a lot of places as place holders. I don't
think there's any real optimizations we get from having separate
instances. This moves them to use a common instance in `shared/noop`.
This enables `focus` and `focusLast` methods on FragmentInstances to
search nested host components, depth first. Attempts focus on each child
and bails if one is successful. Previously, only the first level of host
children would attempt focus.
Now if we have an example like
```
component MenuItem() {
return (<div><a>{...}</a></div>)
}
component Menu() {
return <Fragment>{items.map(i => <MenuItem i={i} />)}</Fragment>
}
```
We can target focus on the first or last a tag, rather than checking
each wrapping div and then noop.
This adds `compareDocumentPosition(otherNode)` to fragment instances.
The semantics implemented are meant to match typical element
positioning, with some fragment specifics. See the unit tests for all
expectations.
- An element preceding a fragment is `Node.DOCUMENT_POSITION_PRECEDING`
- An element after a fragment is `Node.DOCUMENT_POSITION_FOLLOWING`
- An element containing the fragment is
`Node.DOCUMENT_POSITION_PRECEDING` and
`Node.DOCUMENT_POSITION_CONTAINING`
- An element within the fragment is
`Node.DOCUMENT_POSITION_CONTAINED_BY`
- An element compared against an empty fragment will result in
`Node.DOCUMENT_POSITION_DISCONNECTED` and
`Node.DOCUMENT_POSITION_IMPLEMENTATION_SPECIFIC`
Since we assume a fragment instances target children are DOM siblings
and we want to compare the full fragment as a pseudo container, we can
compare against the first target child outside of handling the special
cases (empty fragments and contained elements).
Originally I thought it was important that SSR used the same View
Transition name as the client so that the Fizz runtime could emit those
names and then the client could pick up and take over. However, I no
longer believe that approach is feasible. Instead, the names can be
generated only during that particular animation.
Therefore we can simplify the auto name assignment to not have to
consider the hydration.
Stacked on #33129. Flagged behind `enableHydrationChangeEvent`.
If you type into a controlled input before hydration and something else
rerenders like a setState in an effect, then the controlled input will
reset to whatever React thought it was. Even with event replaying that
this is stacked on, if the second render happens before event replaying
has fired in a separate task.
We don't want to flush inside the commit phase because then things like
flushSync in these events wouldn't work since they're inside the commit
stack.
This flushes all event replaying between renders by flushing it at the
end of `flushSpawned` work. We've already committed at that point and is
about to either do subsequent renders or yield to event loop for passive
effects which could have these events fired anyway. This just ensures
that they've already happened by the time subsequent renders fire. This
means that there's now a type of event that fire between sync render
passes.
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.
Adds Fragment Ref support to RN through the Fabric config, starting with
`observeUsing`/`unobserveUsing`. This is mostly a copy from the
implementation on DOM, and some of it can likely be shared in the future
but keeping it separate for now and we can refactor as we add more
features.
Added a basic test with Fabric, but testing specific methods requires so
much mocking that it doesn't seem valuable here.
I built Fabric and ran on the Catalyst app internally to test with
intersection observers end to end.
Stacked on #32736.
That way you can find the owner stack of each component that rerendered
for context.
In addition to the JSX callsite tasks that we already track, I also
added tracking of the first `setState` call before rendering.
We then run the "Update" entries in that task. That way you can find the
callsite of the first setState and therefore the "cause" of a render
starting by selecting the "Update" track.
Unfortunately this is blocked on bugs in Chrome that makes it so that
these stacks are not reliable in the Performance tab. It basically just
doesn't work.
This is a new extension that Chrome added to the existing
`console.timeStamp` similar to the extensions added to
`performance.measure`. This one should be significantly faster because
it doesn't have the extra object indirection, it doesn't return a
`PerformanceMeasure` entry and doesn't register itself with the global
system of entries.
I also use `performance.measure` in DEV for errors since we can attach
the error to the `properties` extension which doesn't exist for
`console.timeStamp`.
A downside of using this API is that there's no programmatic API for the
site itself to collect its own logs from React. Which the previous
allowed us to use the standard `performance.getEntries()` for. The
recommendation instead will be for the site to patch `console.timeStamp`
if it wants to collect measurements from React just like you're
recommended to patch `console.error` or `fetch` or whatever to collect
other instrumentation metrics.
This extension works in Chrome canary but it doesn't yet work fully in
Chrome stable. We might want to wait until it has propagated to Chrome
to stable. It should be in Chrome 136.
`requestFormReset` incorrectly tries to get the current dispatch queue
from the Fiber. However, the Fiber might be the workInProgress which is
an inconsistent state.
This hack just tries the other Fiber if it detects one of the known
inconsistent states but there can be more.
Really we should stash the dispatch queue somewhere stateful which is
effectively what `setState` does by binding it to the closure.
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.
I think this was probably just copy-paste from the Suspense path.
It shouldn't matter what the previous state of an Offscreen boundary
was. What matters is that it's now hidden and therefore if it suspends,
we can just leave it as is without the tree becoming inconsistent.
Found this bug while working on Activity. There's a weird edge case when
a dehydrated Suspense boundary is a direct child of another Suspense
boundary which is hydrated but then it resuspends without forcing the
inner one to hydrate/delete.
It used to just leave that in place because hiding/unhiding didn't deal
with dehydrated fragments.
Not sure this is really worth fixing.
I found a bug even before the Activity hydration stuff.
If we're hydrating an Offscreen boundary in its "hidden" state it won't
have any content to hydrate so will trigger hydration errors (which are
then eaten by the Offscreen boundary itself). Leaving it not prewarmed.
This doesn't happen in the simple case because we'd be hydrating at a
higher priority than Offscreen at the root, and those are deferred to
Offscreen by not having higher priority. However, we've hydrating at the
Offscreen priority, which we do inside Suspense boundaries, then it
tries to hydrate against an empty set.
I ended up moving this to the Activity boundary in a future PR since
it's the SSR side that decided where to not render something and it only
has a concept of Activity, no Offscreen.
https://github.com/facebook/react/pull/32863/commits/1dc05a5e2222e18fc3a2062ee1bd957109e21344#diff-d5166797ebbc5b646a49e6a06a049330ca617985d7a6edf3ad1641b43fde1ddfR1111
Since `hidden` is a prop on arbitrary DOM elements it's a common mistake
to think that it would also work that way on `<Activity>` but it
doesn't. In fact, we even had this mistakes in our own tests.
Maybe there's an argument that we should actually just support it but we
also have more modes planned.
So this adds a warning. It should also already be covered by TypeScript.
It used to be that in `__DEV__` we wrapped this `renderWithHooks`,
`checkDidRenderIdHook` pair in calls to `setIsRendering()`. However,
that dev-only bookkeeping was removed in
https://github.com/facebook/react/pull/29206 leaving this redundant
check which runs identical code in dev and in prod.
## Test Plan
* Manually confirm both cases are the same
* GitHub CI tests
We use the Update flag to track if a View Transition had any mutations
or relayout. Unlike the other usage of it, this is just temporary state
during the commit phase.
Normally the flags gets used in the render phase and we reset it when we
rerender but in the case of "nested" updates, those trees didn't update.
We're only looking for relayouts. So we need to manually reset it before
we start using it.
We probably shouldn't abuse the Update flag for this and instead use
something like temporary state on ViewTransitionState.
Stacked on #32838.
We don't always type the Props of built-ins. This adds typing for most
of the built-ins.
When we did type them, we used to put it in the `ReactFiber...Component`
files but any public API like this can be implemented in other renderers
too such as Fizz. So I moved them to `shared/ReactTypes` which is where
we put other public API types (that are not already built-in to Flow).
That way Fizz can import them and assert properly when it accesses the
props.
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.
Behind the `enableSrcObject` flag. This is revisiting a variant of what
was discussed in #11163.
Instead of supporting the [`srcObject`
property](https://developer.mozilla.org/en-US/docs/Web/API/HTMLMediaElement/srcObject)
as a separate name, this adds an overload of `src` to allow objects to
be passed. The DOM needs to add separate properties for the object forms
since you read back but it doesn't make sense for React's write-only API
to do that. Similar to how we'll like add an overload for
`popoverTarget` instead of calling it `popoverTargetElement` and how
`style` accepts an object and it's not `styleObject={{...}}`.
There are a number of reason to revisit this.
- It's just way more convenient to have this built-in and it makes
conceptual sense. We typically support declarative APIs and polyfill
them when necessary.
- RSC supports Blobs and by having it built-in you don't need a Client
Component wrapper to render it where as doing it with effects would
require more complex wrappers. By picking Blobs over base64,
client-navigations can use the more optimized binary encoding in the RSC
protocol.
- The timing aspect of coordinating it with Suspensey images and image
decoding is a bit tricky to get right because if you set it in an effect
it's too late because you've already rendered it.
- SSR gets complicated when done in user space because you have to
handle both branches. Likely with `useSyncExternalStore`.
- By having it built-in we could optimize the payloads shared between
RSC payloads embedded in the HTML and data URLs.
This does not support objects for `<source src>` nor `<img srcset>`.
Those don't really have equivalents in the DOM neither. They're mainly
for picking an option when you don't know programmatically. However, for
this use case you're really better off picking a variant before
generating the blobs.
We may support Response objects in the future too as per
https://github.com/whatwg/fetch/issues/49
When `startTime` still has its initial value of `-1.1` we must not call
`logComponentMount`. This can occur when rendering a `'next/dynamic'`
component with `{ssr: false}` in a client component, for example.
Unfortunately, I didn't manage to reproduce this scenario in a unit
test.
Safari has a bug where if you put a block element inside an inline
element and the inline element has a `view-transition-name` assigned it
finds it as duplicate names.
https://bugs.webkit.org/show_bug.cgi?id=290923
This adds a warning if we detect this scenario in dev mode.
For the case where it renders into a single block, we can model this by
making the parent either `block` or `inline-block` automatically to fix
the issue. So we do that to automatically cover simple cases like
`<a><div>...</div></a>`. This unfortunately causes layout/styling thrash
so we might want to delete it once the bug has been fixed in enough
Safari versions.
Found a bug that occurs during a specific combination of very subtle
implementation details.
It occurs sometimes (not always) when 1) a transition is scheduled
during a popstate event, and 2) as a result, a new value is passed to an
already-mounted useDeferredValue hook.
The fix is relatively straightforward, and I found it almost
immediately; it took a bit longer to figure out exactly how the scenario
occurred in production and create a test case to simulate it.
Rather than couple the test to the implementation details, I've chosen
to keep it as high-level as possible so that it doesn't break if the
details change. In the future, it might not be trigger the exact set of
internal circumstances anymore, but it could be useful for catching
similar bugs because it represents a realistic real world situation —
namely, switching tabs repeatedly in an app that uses useDeferredValue.
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.
Stacked on #32815.
To be able to differentiate mounted subtrees from updated subtrees. This
adds a yellow entry above the component subtree that mounted. This is
added both to the render phase, mutation effect phase, layout effect
phase and passive effect phase.
<img width="962" alt="Screenshot 2025-04-03 at 10 41 02 PM"
src="https://github.com/user-attachments/assets/13777347-07e8-458c-9127-8675ef08b54f"
/>
Ideally we could probably give an annotation to the component instead of
adding a whole other line which is also a color that's kind of
distracting. However, not all components are included and keeping track
of which one is the first one below is kind of annoying. Adding a marker
to all components is kind of noisy. So this is a compromise. It's only
one per depth so it won't make it too deep even on larger trees.
If this is an unmount, those are added to the mutation effect phase for
the layout unmounts and passive unmount effect phase. Since these never
have a render, they're not in the render phase.
<img width="1010" alt="Screenshot 2025-04-03 at 11 05 57 PM"
src="https://github.com/user-attachments/assets/ab39f27e-13be-4281-94fa-9391bb293fd2"
/>
For showing / hiding `<Activity>` the terminology "Reconnect" and
"Disconnect" is used instead.
This fixes two bugs with commit phase effect tracking.
I missed, or messed up the rebase for, deletion effects when a subtree
was deleted and for passive disconnects when a subtree was hidden.
The other bug is that when I started using self time
(componentEffectDuration) for color and for determining whether to
bother logging an entry, I didn't consider that the component with
effects can have children which end up resetting this duration before we
log. Which lead to most effects not having their components logged since
they almost always have children.
We don't necessarily have to push/pop but we have to store at least one
thing on the stack unfortunately. That's because we have to do the
actual log after the children to get the right end time. So might as
well use the push/pop strategy like the rest of them.
Rename "Suspended" commit to "Suspended on CSS" since that's the only
reason for this particular branch. This will not hold true because with
suspended images and with view transitions those can also be the reason.
So in the future we need to add those.
Only log "Blocked" in the components track if we yield for 3ms or
longer. It's common to have like 1-2ms yield times for various reasons
going on which is not worth the noise to consider "blocking".
Rename "Blocked" to "Update" in the Blocking/Transition tracks. This is
when a setState happens and with stack traces it's where you should look
for the stack trace of the setState. So we want to indicate that this is
the "Update".
I only added the "Blocked" part if we're blocked for more than 5ms
before we can start rendering - indicating that some other track was
working at the same time and preventing us from rendering.
Stacked on #32793.
This is meant to model the intended semantics of `addTransitionType`
better. The previous hack just consumed all transition types when any
root committed so it could steal them from other roots. Really each root
should get its own set. Really each transition lane should get its own
set.
We can't implement the full ideal semantics yet because 1) we currently
entangle transition lanes 2) we lack `AsyncContext` on the client so for
async actions we can't associate a `addTransitionType` call to a
specific `startTransition`.
This starts by modeling Transition Types to be stored on the Transition
instance. Conceptually they belong to the Transition instance of that
`startTransition` they belong to. That instance is otherwise mostly just
used for Transition Tracing but it makes sense that those would be able
to be passed the Transition Types for that specific instance.
Nested `startTransition` need to get entangled. So that this
`addTransitionType` can be associated with the `setState`:
```js
startTransition(() => {
startTransition(() => {
addTransitionType(...)
});
setState(...);
});
```
Ideally we'd probably just use the same Transition instance itself since
these are conceptually all part of one entangled one. But transition
tracing uses multiple names and start times. Unclear what we want to do
with that. So I kept separate instances but shared `types` set.
Next I collect the types added during a `startTransition` to any root
scheduled with a Transition. This should really be collected one set per
Transition lane in a `LaneMap`. In fact, the information would already
be there if Transition Tracing was always enabled because it tracks all
Transition instances per lane. For now I just keep track of one set for
all Transition lanes. Maybe we should only add it if a `setState` was
done on this root in this particular `startTransition` call rather
having already scheduled any Transition earlier.
While async transitions are entangled, we don't know if there will be a
startTransition+setState on a new root in the future. Therefore, we
collect all transition types while this is happening and if a new root
gets startTransition+setState they get added to that root.
```js
startTransition(async () => {
addTransitionType(...)
await ...;
setState(...);
});
```
Stacked on #32792.
It's tricky to associate a specific `addTransitionType` call to a
specific `startTransition` call because we don't have `AsyncContext` in
browsers yet. However, we can keep track if there are any async
transitions running at all, and if not, warn. This should cover most
cases.
This also errors when inside a React render which might be a legit way
to associate a Transition Type to a specific render (e.g. based on props
changing) but we want to be a more conservative about allowing that yet.
If we wanted to support calling it in render, we might want to set which
Transition object is currently rendering but it's still tricky if the
render has `async function` components. So it might at least be
restricted to sync components (like Hooks).
Stacked on #32788.
Normally we track `addTransitionType` globally because of the async gap
that can happen in Actions where we lack AsyncContext to associate it
with a particular Transition. This unfortunately also means it's
possible to call outside of `startTransition` which is something we want
to warn for.
We need to be able to distinguish whether `addTransitionType` is for a
regular Transition or a Gesture Transition though.
Since `startGestureTransition` is only synchronous we can track it
within that execution scope and move it to a separate set. Since we know
for sure which call owns it we can properly associate it with that
specific provider's `ScheduledGesture`.
This does not yet handle calling `addTransitionType` inside the render
phase of a gesture. That would currently still be associated with the
next Transition instead.
Stacked on #32785.
This is now replaced by `startGestureTransition` added in #32785.
I also renamed the flag from `enableSwipeTransition` to
`enableGestureTransition` to correspond to the new name.
Stacked on #32783. This will replace [the `useSwipeTransition`
API](https://github.com/facebook/react/pull/32373).
Instead, of a special Hook, you can make updates to `useOptimistic`
Hooks within the `startGestureTransition` scope.
```
import {unstable_startGestureTransition as startGestureTransition} from 'react';
const cancel = startGestureTransition(timeline, () => {
setOptimistic(...);
}, options);
```
There are some downsides to this like you can't define two directions as
once and there's no "standard" direction protocol. It's instead up to
libraries to come up with their own conventions (although we can suggest
some).
The convention is still that a gesture recognizer has two props `action`
and `gesture`. The `gesture` prop is a Gesture concept which now behaves
more like an Action but 1) it can't be async 2) it shouldn't have
side-effects. For example you can't call `setState()` in it except on
`useOptimistic` since those can be reverted if needed. The `action` is
invoked with whatever side-effects you want after the gesture fulfills.
This is isomorphic and not associated with a specific renderer nor root
so it's a bit more complicated.
To implement this I unify with the `ReactSharedInternal.T` property to
contain a regular Transition or a Gesture Transition (the `gesture`
field). The benefit of this unification means that every time we
override this based on some scope like entering `flushSync` we also
override the `startGestureTransition` scope. We just have to be careful
when we read it to check the `gesture` field to know which one it is.
(E.g. I error for setState / requestFormReset.)
The other thing that's unique is the `cancel` return value to know when
to stop the gesture. That cancellation is no longer associated with any
particular Hook. It's more associated with the scope of the
`startGestureTransition`. Since the schedule of whether a particular
gesture has rendered or committed is associated with a root, we need to
somehow associate any scheduled gestures with a root.
We could track which roots we update inside the scope but instead, I
went with a model where I check all the roots and see if there's a
scheduled gesture matching the timeline. This means that you could
"retain" a gesture across roots. Meaning this wouldn't cancel until both
are cancelled:
```
const cancelA = startGestureTransition(timeline, () => {
setOptimisticOnRootA(...);
}, options);
const cancelB = startGestureTransition(timeline, () => {
setOptimisticOnRootB(...);
}, options);
```
It's more like it's a global transition than associated with the roots
that were updated.
Optimistic updates mostly just work but I now associate them with a
specific "ScheduledGesture" instance since we can only render one at a
time and so if it's not the current one, we leave it for later.
Clean up of optimistic updates is now lazy rather than when we cancel.
Allowing the cancel closure not to have to be associated with each
particular update.
This is some overdue refactoring. The two types never made sense. It
also should be defined by isomorphic since it defines how it should be
used by renderers rather than isomorphic depending on Fiber.
Clean up hidden classes to be consistent.
Fix missing name due to wrong types. I choose not to invoke the
transition tracing callbacks if there's no name since the name is
required there.