*This API is experimental and subject to change or removal.*
This PR is an alternative to
https://github.com/facebook/react/pull/32421 based on feedback:
https://github.com/facebook/react/pull/32421#pullrequestreview-2625382015
. The difference here is that we traverse from the Fragment's fiber at
operation time instead of keeping a set of children on the
`FragmentInstance`. We still need to handle newly added or removed child
nodes to apply event listeners and observers, so we treat those updates
as effects.
**Fragment Refs**
This PR extends React's Fragment component to accept a `ref` prop. The
Fragment's ref will attach to a custom host instance, which will provide
an Element-like API for working with the Fragment's host parent and host
children.
Here I've implemented `addEventListener`, `removeEventListener`, and
`focus` to get started but we'll be iterating on this by adding
additional APIs in future PRs. This sets up the mechanism to attach refs
and perform operations on children. The FragmentInstance is implemented
in `react-dom` here but is planned for Fabric as well.
The API works by targeting the first level of host children and proxying
Element-like APIs to allow developers to manage groups of elements or
elements that cannot be easily accessed such as from a third-party
library or deep in a tree of Functional Component wrappers.
```javascript
import {Fragment, useRef} from 'react';
const fragmentRef = useRef(null);
<Fragment ref={fragmentRef}>
<div id="A" />
<Wrapper>
<div id="B">
<div id="C" />
</div>
</Wrapper>
<div id="D" />
</Fragment>
```
In this case, calling `fragmentRef.current.addEventListener()` would
apply an event listener to `A`, `B`, and `D`. `C` is skipped because it
is nested under the first level of Host Component. If another Host
Component was appended as a sibling to `A`, `B`, or `D`, the event
listener would be applied to that element as well and any other APIs
would also affect the newly added child.
This is an implementation of the basic feature as a starting point for
feedback and further iteration.
This lets us track separately if something was suspended on an Action
using useActionState rather than suspended on Data.
This approach feels quite bloated and it seems like we'd eventually
might want to read more information about the Promise that suspended and
the context it suspended in. As a more general reason for suspending.
The way useActionState works in combination with the prewarming is quite
unfortunate because 1) it renders blocking to update the isPending flag
whether you use it or not 2) it prewarms and suspends the useActionState
3) then it does another third render to get back into the useActionState
position again.
Stacked on https://github.com/facebook/react/pull/30400 and
https://github.com/facebook/react/pull/30369
Previously we were using fake evals to recreate a stack for console
replaying and thrown errors. However, for owner stacks we just used the
raw string that came from the server.
This means that the format of the owner stack could include different
formats. Like Spidermonkey format for the client components and V8 for
the server components. This means that this stack can't be parsed
natively by the browser like when printing them as error like in
https://github.com/facebook/react/pull/30289. Additionally, since
there's no source file registered with that name and no source mapping
url, it can't be source mapped.
Before:
<img width="1329" alt="before-firefox"
src="https://github.com/user-attachments/assets/cbe03f9c-96ac-48fb-b58f-f3a224a774f4">
Instead, we need to create a fake stack like we do for the other things.
That way when it's printed as an Error it gets source mapped. It also
means that the format is consistently in the native format of the
current browser.
After:
<img width="753" alt="after-firefox"
src="https://github.com/user-attachments/assets/b436f1f5-ca37-4203-b29f-df9828c9fad3">
So this is nice because you can just take the result from
`captureOwnerStack()` and append it to an `Error` stack and print it
natively. E.g. this is what React DevTools will do.
If you want to parse and present it yourself though it's a bit awkward
though. The `captureOwnerStack()` API now includes a bunch of
`rsc://React/` URLs. These don't really have any direct connection to
the source map. Only the browser knows this connection from the eval.
You basically have to strip the prefix and then manually pass the
remainder to your own `findSourceMapURL`.
Another awkward part is that since Safari doesn't support eval sourceURL
exposed into `error.stack` - it means that `captureOwnerStack()` get an
empty location for server components since the fake eval doesn't work
there. That's not a big deal since these stacks are already broken even
for client modules for many because the `eval-source-map` strategy in
Webpack doesn't work in Safari for this same reason.
A lot of this refactoring is just clarifying that there's three kind of
ReactComponentInfo fields:
- `stack` - The raw stack as described on the original server.
- `debugStack` - The Error object containing the stack as represented in
the current client as fake evals.
- `debugTask` - The same thing as `debugStack` but described in terms of
a native `console.createTask`.
Currently we're printing parent stacks at the end of DOM nesting even
with owner stacks enabled. That's because the context of parent tree is
relevant for determining why two things are nested. It might not be
sufficient to see the owner stack alone.
I'm trying to get rid of parent stacks and rely on more of the plain
owner stacks or ideally console.createTask. These are generally better
anyway since the exact line for creating the JSX is available. It also
lets you find a parent stack frame that is most relevant e.g. if it's
hidden inside internals.
For DOM nesting there's really only two stacks that are relevant. The
creation of the parent and the creation of the child. Sometimes they're
close enough to be the same thing. Such as for parents that can't have
text children or when the ancestor is the direct parent created at the
same place (same owner).
Sometimes they're far apart. In this case I add a second console.error
within the context of the ancestor. That way the second stack trace can
be used to read the stack trace for where it was created.
To preserve some parent context I now print the parent stack in a diff
view format using the logic from hydration diffs. This includes some
siblings and props for context.
<img width="756" alt="Screenshot 2024-07-10 at 12 21 38 AM"
src="https://github.com/facebook/react/assets/63648/0843133d-cc7a-4ecc-91c0-f46ae8e99f20">
Text Nodes:
<img width="749" alt="Screenshot 2024-07-10 at 12 37 40 AM"
src="https://github.com/facebook/react/assets/63648/ee377d82-54ee-450a-99d1-fcc3ef290d59">
---------
Co-authored-by: tjallingt <tjallingt@gmail.com>
This is all behind the `enableOwnerStacks` flag.
This is a follow up to #29088. In that I moved type validation into the
renderer since that's the one that knows what types are allowed.
However, I only removed it from `React.createElement` and not the JSX
which was an oversight.
However, I also noticed that for invalid types we don't have the right
stack trace for throws because we're not yet inside the JSX element that
itself is invalid. We should use its stack for the stack trace. That's
the reason it's enough to just use the throw now because we can get a
good stack trace from the owner stack. This is fixed by creating a fake
Throw Fiber that gets assigned the right stack.
Additionally, I noticed that for certain invalid types like the most
common one `undefined` we error in Flight so a missing import in RSC
leads to a generic error. Instead of erroring on the Flight side we
should just let anything that's not a Server Component through to the
client and then let the Client renderer determine whether it's a valid
type or not. Since we now have owner stacks through the server too, this
will still be able to provide a good stack trace on the client that
points to the server in that case.
<img width="571" alt="Screenshot 2024-06-25 at 6 46 35 PM"
src="https://github.com/facebook/react/assets/63648/6812c24f-e274-4e09-b4de-21deda9ea1d4">
To get the best stack you have to expand the little icon and the regular
stack is noisy [due to this Chrome
bug](https://issues.chromium.org/issues/345248263) which makes it a
little harder to find but once that's fixed it might be easier.
Stacked on #29807.
Conceptually the error's owner/task should ideally be captured when the
Error constructor is called but neither `console.createTask` does this,
nor do we override `Error` to capture our `owner`. So instead, we use
the nearest parent as the owner/task of the error. This is usually the
same thing when it's thrown from the same async component but not if you
await a promise started from a different component/task.
Before this stack the "owner" and "task" of a Lazy that errors was the
nearest Fiber but if the thing erroring is a Server Component, we need
to get that as the owner from the inner most part of debugInfo.
To get the Task for that Server Component, we need to expose it on the
ReactComponentInfo object. Unfortunately that makes the object not
serializable so we need to special case this to exclude it from
serialization. It gets restored again on the client.
Before (Shell):
<img width="813" alt="Screenshot 2024-06-06 at 5 16 20 PM"
src="https://github.com/facebook/react/assets/63648/7da2d4c9-539b-494e-ba63-1abdc58ff13c">
After (App):
<img width="811" alt="Screenshot 2024-06-08 at 12 29 23 AM"
src="https://github.com/facebook/react/assets/63648/dbf40bd7-c24d-4200-81a6-5018bef55f6d">
Stacked on #29804.
Transferring of debugInfo was added in #28286. It represents the parent
stack between the current Fiber and into the next Fiber we're about to
create. I.e. Server Components in between. ~I don't love passing
DEV-only fields as arguments anyway since I don't trust closure to
remove unused arguments that way.~ EDIT: Actually it seems like closure
handled that just fine before which is why this is no change in prod.
Instead, I track it on the module scope. Notably with DON'T use
try/finally because if something throws we want to observe what it was
at the time we threw. Like the pattern we use many other places.
Now we can use this when we create the Throw Fiber to associate the
Server Components that were part of the parent stack before this error
threw. There by giving us the correct parent stacks at the location that
threw.
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.
This refactors key warning to happen inline after we've matched a Fiber.
I didn't want to do that originally because it was riskier. But it turns
out to be straightforward enough.
This lets us use that Fiber as the source of the warning which matters
to DevTools because then DevTools can associate it with the right
component after it mounts.
We can also associate the duplicate key warning with this Fiber. That
way we'll get the callsite with the duplicate key on the stack and can
associate this warning with the child that had the duplicate.
I kept the forked DevTools tests because the warning now is counted on
the Child instead of the Parent (18 behavior).
However, this won't be released in 19.0.0 so I only test this in
whatever the next version is.
Doesn't seem worth it to have a test for just the 19.0.0 behavior.
Stacked on #29044.
To work with `console.createTask(...).run(...)` we need to be able to
run a function in the scope of the task.
The main concern with this, other than general performance, is that it
might add more stack frames on very deep stacks that hit the stack
limit. Such as with the commit phase where we recursively go down the
tree. These callbacks aren't really necessary in the recursive part but
only in the shallow invocation of the commit phase for each tag. So we
could refactor the commit phase so that only the shallow part at each
level is covered this way.
This one should be fully behind the `enableOwnerStacks` flag.
Instead of printing the parent Component stack all the way to the root,
this now prints the owner stack of every JSX callsite. It also includes
intermediate callsites between the Component and the JSX call so it has
potentially more frames. Mainly it provides the line number of the JSX
callsite. In terms of the number of components is a subset of the parent
component stack so it's less information in that regard. This is usually
better since it's more focused on components that might affect the
output but if it's contextual based on rendering it's still good to have
parent stack. Therefore, I still use the parent stack when printing DOM
nesting warnings but I plan on switching that format to a diff view
format instead (Next.js already reformats the parent stack like this).
__Follow ups__
- Server Components show up in the owner stack for client logs but logs
done by Server Components don't yet get their owner stack printed as
they're replayed. They're also not yet printed in the server logs of the
RSC server.
- Server Component stack frames are formatted as the server and added to
the end but this might be a different format than the browser. E.g. if
server is running V8 and browser is running JSC or vice versa. Ideally
we can reformat them in terms of the client formatting.
- This doesn't yet update Fizz or DevTools. Those will be follow ups.
Fizz still prints parent stacks in the server side logs. The stacks
added to user space `console.error` calls by DevTools still get the
parent stacks instead.
- It also doesn't yet expose these to user space so there's no way to
get them inside `onCaughtError` for example or inside a custom
`console.error` override.
- In another follow up I'll use `console.createTask` instead and
completely remove these stacks if it's available.
This is necessary to simplify the component stack handling to make way
for owner stacks. It also solves some hacks that we used to have but
don't quite make sense. It also solves the problem where things like key
warnings get silenced in RSC because they get deduped. It also surfaces
areas where we were missing key warnings to begin with.
Almost every type of warning is issued from the renderer. React Elements
are really not anything special themselves. They're just lazily invoked
functions and its really the renderer that determines there semantics.
We have three types of warnings that previously fired in
JSX/createElement:
- Fragment props validation.
- Type validation.
- Key warning.
It's nice to be able to do some validation in the JSX/createElement
because it has a more specific stack frame at the callsite. However,
that's the case for every type of component and validation. That's the
whole point of enableOwnerStacks. It's also not sufficient to do it in
JSX/createElement so we also have validation in the renderers too. So
this validation is really just an eager validation but also happens
again later.
The problem with these is that we don't really know what types are valid
until we get to the renderer. Additionally, by placing it in the
isomorphic code it becomes harder to do deduping of warnings in a way
that makes sense for that renderer. It also means we can't reuse logic
for managing stacks etc.
Fragment props validation really should just be part of the renderer
like any other component type. This also matters once we add Fragment
refs and other fragment features. So I moved this into Fiber. However,
since some Fragments don't have Fibers, I do the validation in
ChildFiber instead of beginWork where it would normally happen.
For `type` validation we already do validation when rendering. By
leaving it to the renderer we don't have to hard code an extra list.
This list also varies by context. E.g. class components aren't allowed
in RSC but client references are but we don't have an isomorphic way to
identify client references because they're defined by the host config so
the current logic is flawed anyway. I kept the early validation for now
without the `enableOwnerStacks` since it does provide a nicer stack
frame but with that flag on it'll be handled with nice stacks anyway. I
normalized some of the errors to ensure tests pass.
For `key` validation it's the same principle. The mechanism for the
heuristic is still the same - if it passes statically through a parent
JSX/createElement call then it's considered validated. We already did
print the error later from the renderer so this also disables the early
log in the `enableOwnerStacks` flag.
I also added logging to Fizz so that key warnings can print in SSR logs.
Flight is a bit more complex. For elements that end up on the client we
just pass the `validated` flag along to the client and let the client
renderer print the error once rendered. For server components we log the
error from Flight with the server component as the owner on the stack
which will allow us to print the right stack for context. The factoring
of this is a little tricky because we only want to warn if it's in an
array parent but we want to log the error later to get the right debug
info.
Fiber/Fizz has a similar factoring problem that causes us to create a
fake Fiber for the owner which means the logs won't be associated with
the right place in DevTools.
Stacked on #28849, #28854, #28853. Behind a flag.
If you're following along from the side-lines. This is probably not what
you think it is.
It's NOT a way to get updates to a component over time. The
AsyncIterable works like an Iterable already works in React which is how
an Array works. I.e. it's a list of children - not the value of a child
over time.
It also doesn't actually render one component at a time. The way it
works is more like awaiting the entire list to become an array and then
it shows up. Before that it suspends the parent.
To actually get these to display one at a time, you have to opt-in with
`<SuspenseList>` to describe how they should appear. That's really the
interesting part and that not implemented yet.
Additionally, since these are effectively Async Functions and uncached
promises, they're not actually fully "supported" on the client yet for
the same reason rendering plain Promises and Async Functions aren't.
They warn. It's only really useful when paired with RSC that produces
instrumented versions of these. Ideally we'd published instrumented
helpers to help with map/filter style operations that yield new
instrumented AsyncIterables.
The way the implementation works basically just relies on unwrapThenable
and otherwise works like a plain Iterator.
There is one quirk with these that are different than just promises. We
ask for a new iterator each time we rerender. This means that upon retry
we kick off another iteration which itself might kick off new requests
that block iterating further. To solve this and make it actually
efficient enough to use on the client we'd need to stash something like
a buffer of the previous iteration and maybe iterator on the iterable so
that we can continue where we left off or synchronously iterate if we've
seen it before. Similar to our `.value` convention on Promises.
In Fizz, I had to do a special case because when we render an iterator
child we don't actually rerender the parent again like we do in Fiber.
However, it's more efficient to just continue on where we left off by
reusing the entries from the thenable state from before in that case.
We have changed the shape (and the runtime) of React Elements. To help
avoid precompiled or inlined JSX having subtle breakages or deopting
hidden classes, I renamed the symbol so that we can early error if
private implementation details are used or mismatching versions are
used.
Why "transitional"? Well, because this is not the last time we'll change
the shape. This is just a stepping stone to removing the `ref` field on
the elements in the next version so we'll likely have to do it again.
This doesn't change production behavior. We always render Iterables to
our best effort in prod even if they're Iterators.
But this does change the DEV warnings which indicates which are valid
patterns to use.
It's a footgun to use an Iterator as a prop when you pass between
components because if an intermediate component rerenders without its
parent, React won't be able to iterate it again to reconcile and any
mappers won't be able to re-apply. This is actually typically not a
problem when passed only to React host components but as a pattern it's
a problem for composability.
We used to warn only for Generators - i.e. Iterators returned from
Generator functions. This adds a warning for Iterators created by other
means too (e.g. Flight or the native Iterator utils). The heuristic is
to check whether the Iterator is the same as the Iterable because that
means it's not possible to get new iterators out of it. This case used
to just yield non-sense like empty sets in DEV but not in prod.
However, a new realization is that when the Component itself is a
Generator Function, it's not actually a problem. That's because the
React Element itself works as an Iterable since we can ask for new
generators by calling the function again. So this adds a special case to
allow the Generator returned from a Generator Function's direct child.
The principle is “don’t pass iterators around” but in this case there is
no iterator floating around because it’s between React and the JS VM.
Also see #28849 for context on AsyncIterables.
Related to this, but Hooks should ideally be banned in these for the
same reason they're banned in Async Functions.
This wasn't clearly articulated and tested why the code structure is
like this but I think the logic is correct - or at least consistent with
the weird semantics.
We place this top-level fragment check inside the recursion so that you
can resolve how many every Lazy or Usable wrappers you want and it still
preserves the same semantics if they weren't there (which they might not
be as a matter of a race condition).
However, we don't actually recurse with the top-level fragment
unwrapping itself because nesting a bunch of keyless fragments isn't the
same as a single fragment/element.
Based on:
- #28464
---
This moves the entire string ref implementation out Fiber and into the
JSX runtime. The string is converted to a callback ref during element
creation. This is a subtle change in behavior, because it will have
already been converted to a callback ref if you access element.prop.ref
or element.ref. But this is only for Meta, because string refs are
disabled entirely in open source. And if it leads to an issue in
practice, the solution is to switch to a different ref type, which Meta
is going to do regardless.
The runtime contains a type check to determine if a user-provided ref is
a valid type — a function or object (or a string, when
`disableStringRefs` is off). This currently happens during child
reconciliation. This changes it to happen only when the ref is passed to
the component that the ref is being attached to.
This is a continuation of the "ref as prop" change — until you actually
pass a ref to a HostComponent, class, etc, ref is a normal prop that has
no special behavior.
Depends on:
- https://github.com/facebook/react/pull/28398
---
This removes string refs, which has been deprecated in Strict Mode for
seven years.
I've left them behind a flag for Meta, but in open source this fully
removes the feature.
When enableRefAsProp is on, we should always use the props as the source
of truth for refs. Not a field on the fiber.
In the case of string refs, this presents a problem, because string refs
are not passed around internally as strings; they are converted to
callback refs. The ref used by the reconciler is not the same as the one
the user provided.
But since this is a deprecated feature anyway, what we can do is clone
the props object and replace it with the internal callback ref. Then we
can continue to use the props object as the source of truth.
This means the internal callback ref will leak into userspace. The
receiving component will receive a callback ref even though the parent
passed a string. Which is weird, but again, this is a deprecated
feature, and we're only leaving it around behind a flag so that Meta can
keep using string refs temporarily while they finish migrating their
codebase.
Depends on:
- #28317
- #28320
---
Changes the behavior of the JSX runtime to pass through `ref` as a
normal prop, rather than plucking it from the props object and storing
on the element.
This is a breaking change since it changes the type of the receiving
component. However, most code is unaffected since it's unlikely that a
component would have attempted to access a `ref` prop, since it was not
possible to get a reference to one.
`forwardRef` _will_ still pluck `ref` from the props object, though,
since it's extremely common for users to spread the props object onto
the inner component and pass `ref` as a differently named prop. This is
for maximum compatibility with existing code — the real impact of this
change is that `forwardRef` is no longer required.
Currently, refs are resolved during child reconciliation and stored on
the fiber. As a result of this change, we can move ref resolution to
happen only much later, and only for components that actually use them.
Then we can remove the `ref` field from the Fiber type. I have not yet
done that in this step, though.
Also warn for symbols.
It's weird because for objects we throw a hard error but functions we do
a dev only check. Mainly because we have an object branch anyway.
In the object branch we have some built-ins that have bad errors like
forwardRef and memo but since they're going to become functions later, I
didn't bother updating those. Once they're functions those names will be
part of this.
That way we can use it for debug information like component stacks and
DevTools. I used an extra stack argument in Child Fiber to track this as
it's flowing down since it's not just elements where we have this info
readily available but parent arrays and lazy can merge this into the
Fiber too. It's not great that this is a dev-only argument and I could
track it globally but seems more likely to make mistakes.
It is possible for the same debug info to appear for multiple child
fibers like when it's attached to a fragment or a lazy that resolves to
a fragment at the root. The object identity could be used in these
scenarios to infer if that's really one server component that's a parent
of all children or if each child has a server component with the same
name.
This is effectively a public API because you can use it to stash
information on Promises from a third-party service - not just Server
Components. I started outline the types for this for some things I was
planning to add but it's not final.
I was also planning on storing it from `use(thenable)` for when you
suspend on a Promise. However, I realized that there's no Hook instance
for those to stash it on. So it might need a separate data structure to
stash the previous pass over of `use()` that resets each render.
No tests yet since I didn't want to test internals but it'll be covered
once we have debugging features like component stacks.
Along with all the places using it like the `_debugSource` on Fiber.
This still lets them be passed into `createElement` (and JSX dev
runtime) since those can still be used in existing already compiled code
and we don't want that to start spreading to DOM attributes.
We used to have a DEV mode that compiles the source location of JSX into
the compiled output. This was nice because we could get the actual call
site of the JSX (instead of just somewhere in the component). It had a
bunch of issues though:
- It only works with JSX.
- The way this source location is compiled is different in all the
pipelines along the way. It relies on this transform being first and the
source location we want to extract but it doesn't get preserved along
source maps and don't have a way to be connected to the source hosted by
the source maps. Ideally it should just use the mechanism other source
maps use.
- Since it's expensive it only works in DEV so if it's used for
component stacks it would vary between dev and prod.
- It only captures the callsite of the JSX and not the stack between the
component and that callsite. In the happy case it's in the component but
not always.
Instead, we have another zero-cost trick to extract the call site of
each component lazily only if it's needed. This ensures that component
stacks are the same in DEV and PROD. At the cost of worse line number
information.
The better way to get the JSX call site would be to get it from `new
Error()` or `console.createTask()` inside the JSX runtime which can
capture the whole stack in a consistent way with other source mappings.
We might explore that in the future.
This removes source location info from React DevTools and React Native
Inspector. The "jump to source code" feature or inspection can be made
lazy instead by invoking the lazy component stack frame generation. That
way it can be made to work in prod too. The filtering based on file path
is a bit trickier.
When redesigned this UI should ideally also account for more than one
stack frame.
With this change the DEV only Babel transforms are effectively
deprecated since they're not necessary for anything.
Server Context was never documented, and has been deprecated in
https://github.com/facebook/react/pull/27424.
This PR removes it completely, including the implementation code.
Notably, `useContext` is removed from the shared subset, so importing it
from a React Server environment would now should be a build error in
environments that are able to enforce that.
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
## Based on #25634
Like promises, this adds support for Context as a React node.
In this initial implementation, the context dependency is added to the
parent of child node. This allows the parent to re-reconcile its
children when the context updates, so that it can delete the old node if
the identity of the child has changed (i.e. if the key or type of an
element has changed). But it also means that the parent will replay its
entire begin phase. Ideally React would delete the old node and mount
the new node without reconciling all the children. I'll leave this for a
future optimization.
Implements Promise as a valid React node types. The idea is that any
type that can be unwrapped with `use` should also be renderable.
When the reconciler encounters a Usable in a child position, it will
transparently unwrap the value before reconciling it. The value of the
inner value will determine the identity of the child during
reconciliation, not the Usable object that wraps around it.
Unlike `use`, the reconciler will recursively unwrap the value until it
reaches a non-Usable type, e.g. `Usable<Usable<Usable<T>>>` will resolve
to T.
In this initial commit, I've added support for Promises. I will do
Context in the [next
step](https://github.com/facebook/react/pull/25641).
Being able to render a promise as a child has several interesting
implications. The Server Components response format can use this feature
in its implementation — instead of wrapping references to client
components in `React.lazy`, it can just use a promise.
This also fulfills one of the requirements for async components on the
client, because an async component always returns a promise for a React
node. However, we will likely warn and/or lint against this for the time
being because there are major caveats if you re-render an async
component in response to user input. (Note: async components already
work in a Server Components environment — the caveats only apply to
running them in the browser.)
To suspend, React uses the same algorithm as `use`: by throwing an
exception to unwind the stack, then replaying the begin phase once the
promise resolves. It's a little weird to suspend during reconciliation,
however, `lazy` already does this so if there were any obvious bugs
related to that we likely would have already found them.
Still, the structure is a bit unfortunate. Ideally, we shouldn't need to
replay the entire begin phase of the parent fiber in order to reconcile
the children again. This would require a somewhat significant refactor,
because reconciliation happens deep within the begin phase, and
depending on the type of work, not always at the end. We should consider
as a future improvement.
The old version of prettier we were using didn't support the Flow syntax
to access properties in a type using `SomeType['prop']`. This updates
`prettier` and `rollup-plugin-prettier` to the latest versions.
I added the prettier config `arrowParens: "avoid"` to reduce the diff
size as the default has changed in Prettier 2.0. The largest amount of
changes comes from function expressions now having a space. This doesn't
have an option to preserve the old behavior, so we have to update this.
This enables the "exact_empty_objects" setting for Flow which makes
empty objects exact instead of building up the type as properties are
added in code below. This is in preparation to Flow 191 which makes this
the default and removes the config.
More about the change in the Flow blog
[here](https://medium.com/flow-type/improved-handling-of-the-empty-object-in-flow-ead91887e40c).
This setting is an incremental path to the next Flow version enforcing
type annotations on most functions (except some inline callbacks).
Used
```
node_modules/.bin/flow codemod annotate-functions-and-classes --write .
```
to add a majority of the types with some hand cleanup when for large
inferred objects that should just be `Fiber` or weird constructs
including `any`.
Suppressed the remaining issues.
Builds on #25918
We've heard from multiple contributors that the Reconciler forking
mechanism was confusing and/or annoying to deal with. Since it's
currently unused and there's no immediate plans to start using it again,
this removes the forking.
Fully removing the fork is split into 2 steps to preserve file history:
**#25774 previous PR that did the bulk of the work:**
- remove `enableNewReconciler` feature flag.
- remove `unstable_isNewReconciler` export
- remove eslint rules for cross fork imports
- remove `*.new.js` files and update imports
- merge non-suffixed files into `*.old` files where both exist
(sometimes types were defined there)
**This PR**
- rename `*.old` files
* Add feature flag
* Split stack from current fiber
You can get stack from any fiber, not just current.
* Refactor description of component frames
These should use fiber tags for switching. This also puts the relevant code
behind DEV flags.
* We no longer expose StrictMode in component stacks
They're not super useful and will go away later anyway.
* Update tests
Context is no longer part of SSR stacks. This was already the case on the
client.
forwardRef no longer is wrapped on the stack. It's still in getComponentName
but it's probably just noise in stacks. Eventually we'll remove the wrapper
so it'll go away anyway. If we use native stack frames they won't have this
extra wrapper.
It also doesn't pick up displayName from the outer wrapper. We could maybe
transfer it but this will also be fixed by removing the wrapper.
* Forward displayName onto the inner function for forwardRef and memo in DEV
This allows them to show up in stack traces.
I'm not doing this for lazy because lazy is supposed to be called on the
consuming side so you shouldn't assign it a name on that end. Especially
not one that mutates the inner.
* Use multiple instances of the fake component
We mutate the inner component for its name so we need multiple copies.
* Enable prefer-const rule
Stylistically I don't like this but Closure Compiler takes advantage of
this information.
* Auto-fix lints
* Manually fix the remaining callsites
* Refactor Lazy Components
* Switch Blocks to using a Lazy component wrapper
Then resolve to a true Block inside.
* Test component names of lazy Blocks
* Rename lower case isomorphic default exports modules to upper case named exports
We're somewhat inconsistent here between e.g. ReactLazy and memo.
Let's pick one.
This also moves the responder, fundamental, scope creators from shared
since they're isomorphic and same as the other creators.
* Move some files that are specific to the react-reconciler from shared
Individual renderers are allowed to deep require into the reconciler.
* Move files specific to react-dom from shared
react-interactions is right now dom specific (it wasn't before) so we can
type check it together with other dom stuff. Avoids the need for
a shared ReactDOMTypes to be checked by RN for example.
* Move ReactWorkTags to the reconciler
* Move createPortal to export from reconciler
Otherwise Noop can't access it since it's not allowed deep requires.
* Lazify Blocks
Blocks now initialize lazily.
* Initialize Blocks eagerly in ChildFiber
This is for the case when it's a new Block that hasn't yet initialized.
We need to first initialize it to see what "render function" it resolves
to so that we can use that in our comparison.
* Remove extra import type line