Currently the standalone migration only copies symbols referenced from the NgModule metadata into the main file. Top-level `registerLocaleData` calls, and the default imports they depend on, are dropped silently when the module file is pruned, which breaks locale resolution at runtime with a "Missing locale data" error.
Copies top-level `registerLocaleData` calls from the file of the bootstrapped module into the main file, and adds support for carrying over default imports which were previously skipped silently by the reference resolution.
Fixes#50886
The quick fix and completion auto-import always generated the module specifier with double quotes, ignoring the user's quote preference and the style used in the file.
The generated import now respects the `quotePreference` from the TypeScript user preferences. When the preference is `auto` (or absent), the style is inferred from the first existing import in the file, mirroring TypeScript's own behavior. Files with no imports
keep the previous double-quote default.
Fixes#67108
When Angular type-checks host bindings and template class bindings
(`[class.foo]="expr"`), the Type Check Block (TCB) emits the binding
as a standalone expression statement (e.g. `(expr);`). This verifies that
the expression itself is syntactically and semantically valid (e.g. properties
exist on the component instance), but does not constrain the
expression to `boolean` because Angular evaluates class bindings using standard
JavaScript truthiness.
In classic `ngtsc`, the runtime Ivy instructions (`ɵɵdefineComponent`) were
generated only during the JS emit phase, after TypeScript type-checking had
completed. Thus, `tsc` never validated the arguments passed to `ɵɵclassProp`.
Under standalone commpilation, Ivy definitions are generated
directly into the TypeScript AST and type-checked by `tsc`. This causes `tsc`
to check the emitted `ɵɵclassProp('foo', expr)` call against the instruction's
declared signature. Because `ɵɵclassProp` was strictly typed as
`boolean | undefined | null`, any valid truthy non-boolean expression
(e.g., `1`, `items.length`, or non-empty strings) produces a `TS2345` compiler error.
At runtime, `ɵɵclassProp` delegates to `checkStylingProperty`, which evaluates
the value via truthiness (`!!value`). Widening the parameter type to `any`
aligns the instruction's type signature with Angular's binding semantics and
prevents type-checking failures during in-place compilation.
When @Component.deferredImports is defined as an object mapping block
names to dependency arrays, deduplicate entries when aggregating block
imports into the component-level flattened scope. This prevents
duplicate directive/component collisions in DirectiveMatcher when
multiple @defer blocks share dependencies.
Enforces that components, directives, and pipes in @Component.deferredImports mapped to specific block keys are only used within their designated @defer blocks during template type checking, reporting out-of-band diagnostics when used eagerly or across mismatched blocks.
Allow `@Component.deferredImports` to be an object mapping block names to arrays of dependencies, and support `@defer (name blockName)` syntax to configure block-specific dependency lists in both standard and local compilation modes.
This enables more targeted dependency chunk generation during local compilation instead of over-eagerly loading all deferred imports together.
This forwards the `AbortSignal` natively supplied by Chrome 153.0.8009.0's update to `registerTool` executions down into the Angular context. This helps tools gracefully handle execution cancellations initiated by agents or users, preventing unnecessary background work and leaking resources.
We combine the injector/component destruction abort signals with the native WebMCP execution cancellation signals so the underlying tools correctly cancel long-running requests without producing invalid states.
Justification:
https://groups.google.com/a/chromium.org/g/chrome-ai-dev-preview/c/9291sjhIRz0/m/RFuyRrs5AAAJ
Introduces support for route-level resources via the `resources` property on route definitions, enabled with `withRouterResources()`.
Router resources provide a reactive, signal-based alternative to resolvers, allowing routes to declare resources tied to route parameters and route lifecycle:
- The `resources` function executes during navigation transitions within an injection context scoped to the route (`_localInjector`).
- It receives a `ResourceContext` containing signals for `params`, `queryParams`, `fragment`, and `data`, alongside the static `snapshot`.
- For newly created routes, `resources` runs once and attaches to `ActivatedRoute.resources`. For reused routes, parameter signals update reactively to trigger new data fetches while keeping resource references stable.
- Wrapped resources (`routerResource`) provide transactional stability: snapshots are frozen during active navigations to prevent UI jitter, unfreezing on `NavigationEnd`.
- On cancelled navigations or errors, rollback recovery retains the frozen snapshot until reverted signals settle, avoiding flashes of loading state. Manual reloads are rejected while frozen.
- Local injectors are automatically cleaned up if navigations are cancelled or rolled back.
Note that this commit only implements non-blocking resources (marked with `nonBlocking()`), deferring blocking resource resolution to future work to keep the initial changeset smaller and less complex.
PR Close#70211
Activated Route Injector feature was developed for resources. This moves the internal
naming (files and vars) to reflect this now that we have landed the core bits of plumbing
and are ready to implement router resources.
PR Close#70211
`findConnectedBlocks` scans siblings after an `@if` to collect connected
`@else`/`@else if` blocks. Whitespace-only text nodes encountered during
the scan were eagerly added to `processedNodes`, marking them as "do not
emit", before confirming whether a connected block actually followed.
By the time `findConnectedBlocks` runs, `WhitespaceVisitor` has already
converted `&ngsp;` (and ` `) into a plain space character, making
them indistinguishable from insignificant whitespace via `.trim().length`.
When the next sibling was a second, unrelated `@if` instead of `@else`,
the scan stopped but the text node was already silently dropped.
Fix by deferring the `processedNodes` insertion into a pending buffer and
only committing those nodes once a connected block is confirmed to follow.
Fixes#55791
Defer blocks that ask to run during browser idle time with the same
options get grouped into one batch ("bucket") and processed together
the next time the browser is idle. While that batch runs, if one
callback (or the change-detection check right after it) asks to
schedule more idle work for that same batch, Angular used to register
a second idle-callback handle instead of reusing the one already in
flight.
That second handle became orphaned. By the time the batch finished
running, its queue was empty, so Angular threw away the bookkeeping
for it — including the only reference that could have cancelled the
handle. If the app was destroyed before the browser got around to
calling it, it fired anyway, against a scheduler that no longer
existed.
The root cause was a marker (idleId) that IdleScheduler uses to know
"I already have a browser callback pending for this batch, don't
request another one." That marker was being cleared to null right at
the start of processing a batch, before any of its callbacks had
actually run. So a callback that re-entrantly asked to schedule more
work mid-batch saw "nothing pending" and requested a redundant handle.
The fix: leave the marker set for the entire batch instead of clearing
it up front. Only clear it once every callback in the batch has run —
at that point, if there's leftover work, it's safe to request a fresh
handle for it.
Added a test for the basic re-entrant scenario, plus five more for
edge cases: a re-entrant add() into a different batch, and re-entrant
remove() of a sibling callback that hasn't run yet versus one that
already has.
Before: getSignalGraph only exposed debuggableFn on computed and template
nodes, preventing DevTools from linking to source code for other node types.
After: debuggableFn is also populated for linkedSignal, effect, and
afterRenderEffectPhase nodes.
When a componentless parent route has children rendered into a named outlet
(e.g. `outlet: 'inner'`), the `canDeactivate` guard received `null` as the
component argument instead of the actual component instance.
The bug was in `deactivateRouteAndItsChildren`: for componentless routes,
each child was passed the same `context` inherited from the parent lookup,
which was `null` when the parent component only registered a named outlet.
The children's actual outlet contexts were never consulted.
The fix adds a `parentContexts: ChildrenOutletContexts | null` parameter so
that for componentless routes, each child is looked up by its own outlet name
in `parentContexts` (e.g. `parentContexts.getContext('inner')`). For
component routes, `context.children` is passed as the new `parentContexts`
on recursion, ensuring correct context resolution across component boundaries.
This re-addresses #34614. A previous fix (#36302) was reverted because it
passed `parentContexts` unchanged through component boundaries; this fix
updates `parentContexts` to `context.children` when descending into a
component route, preventing the wrong contexts from propagating into deeper
componentless levels.
Fixes#34614
We keep getting PRs that target single usages of `hasOwnProperty` and we have ~100 of them. These changes aim to address the issue centrally by swapping out all the instances and adding a lint rule against introducing new ones.
To allow this we'll catch the errors during typechecking and discard it.
As context, when setting `isolatedDeclarations: true` this requires developers to explicitly type every property but the `private` ones. By allowing private properties to be used in templates we discard the actually for explicit typing for template only properties.
When a view has more than one effect scheduled to run, and one of them
destroys the view (e.g. by calling `componentRef.destroy()`), the
remaining effects in that same flush could still run afterward,
against a view that no longer exists. In some cases this crashed
outright with `TypeError: view[EFFECTS] is not iterable`.
Here's why: `runEffectsInView` walks a view's effects in a `for...of`
loop, wrapped in an outer `while` loop that re-checks for any effects
that became dirty as a side effect of ones that already ran. When an
effect destroys its view, `view[EFFECTS]` gets set to `null` as part
of tearing the view down.
First attempt checked for that inside the `for...of` loop, before each
effect runs. That covers a sibling effect later in the *same* pass,
but misses a second case: if the effect that destroys the view *also*
dirties another effect on that same view in the process (e.g. by
writing a signal the sibling depends on), the outer `while` loop sees
`HasChildViewsToRefresh` set and tries to restart — and immediately
crashes re-entering `for (const effect of view[EFFECTS])` on a
now-null value, before the in-loop check ever gets a chance to run.
Reproduced that exact crash with a test first: two effects on one
view, the second one writes a signal the first depends on and then
destroys the view in the same call — confirmed it throws before
touching the fix.
Fixed by checking right after `effect.run()` instead of before it,
covering both cases in one place: the remaining effects in the current
pass, and the loop trying to restart afterward. As soon as one effect
destroys the view, nothing else runs against it again.
This is intentionally narrow in scope. An earlier version of this fix
also tried to guarantee that `onCleanup()` callbacks still ran even
when registered after an effect destroyed its own view. That's been
dropped — destroying your own view and then continuing to register
more work for it isn't something the framework should have to paper
over. If you need to do both, register `onCleanup` first, then
destroy.
Previously, when you passed an object typed like
Record<'a' | 'b', number> into the `keyvalue` pipe, TypeScript would
"forget" that the keys could only ever be 'a' or 'b', and just tell
you the key was a plain `string` instead. So code like this used to
fail to compile, even though it's correct:
```ts
const input: Record<'a' | 'b', number> = {a: 1, b: 2};
const result = pipe.transform(input);
const key: 'a' | 'b' = result[0].key; // error: string is not 'a' | 'b'
```
This happened because the pipe has multiple overloaded versions of
transform(), and TypeScript checks them top to bottom, using the
first one that matches. The "number keys" overload was listed first,
and it happened to also match string-keyed objects by accident, so
it "won" before the correct "string keys" overload ever got a
chance to run.
The fix just reorders those two overloads so the string-keys one is
checked first. Nothing about runtime behavior changes — objects with
actual numeric keys (e.g. Record<1 | 2, string>) still correctly
report their keys as plain `string`, matching what Object.keys()
really returns at runtime.
Prevent arbitrary MetaDefinition properties from writing on* handlers directly to meta elements. Browser events can execute these handlers, including on meta elements rendered in the document body.
The "Value transformation" section taught readers to hand-roll
transformation with `linkedSignal()` and a manual parse method, even
though `@angular/forms/signals` ships `transformedValue()` for exactly
this case. Readers ended up with a weaker version of a feature the
framework already provides — notably, no parse error reporting.
Rewrite the section around `transformedValue()` and document the parts
the manual pattern could not cover: returning `{error}` from `parse` to
surface parse errors on the field's `errors()`, and `reset()` clearing
them. This also makes good on the cross-reference from the validation
guide, which pointed here for parse error details the section never
covered.
Fixes#70206
Co-authored-by: Matthieu Riegler <kyro38@gmail.com>
Replace unsafe `any` type annotations with `unknown` across the localize
utility layer to improve type safety and catch potential type errors at
compile time rather than at runtime.
Changes in `messages.ts`:
- `ParsedMessage.substitutions`: `Record<string, any>` → `Record<string, unknown>`
- `parseMessage` parameter `expressions`: `readonly any[]` → `readonly unknown[]`
- Local `substitutions` variable: `{[key: string]: any}` → `Record<string, unknown>`
Changes in `translations.ts`:
- `isMissingTranslationError` parameter: `any` → `unknown`, with proper
narrowing (`typeof e === 'object' && e !== null`) before property access
- `MissingTranslationError.type` visibility: `private` → `readonly` to allow
access through the narrowed `unknown` type in the type guard
- `translate` parameter and return type: `readonly any[]` → `readonly unknown[]`
- `makeTemplateObject` cast: `cooked as any` → `cooked as unknown as TemplateStringsArray`
Fix in `mock_message.ts` (test helper):
- `substitutions: []` → `substitutions: {}` — the array literal was only
assignable because the field was typed as `any`; the correct empty value
for a `Record<string, unknown>` is an object literal
NgModel injects ControlContainer with @Host(), which stops the injector at
the component host element boundary. When NgForm lives in a parent component
and ngModel lives in a child component, the injection returns null silently
and the control acts standalone — never registering with the form.
To surface this invisible failure, emit a dev-mode warning (NG01354) when
ngModel's @Host() injection finds nothing but the element Injector can still
reach a ControlContainer further up the hierarchy. The warning identifies the
cross-boundary issue and points developers to the viewProviders fix or the
standalone option.
Adds the NG01354 reference page explaining why the warning fires and providing
two remediation paths: bridging ControlContainer via viewProviders, or opting
out with [ngModelOptions]="{standalone: true}".
Fixes#47580
StateValue and AnimationTransitionNamespace.trigger detect the {value,
params} object form of a trigger binding by calling hasOwnProperty on the
bound value. When that value is an object from untrusted data (for example
a parsed JSON payload) carrying an own hasOwnProperty key, the shadowed
property is called as a method and throws, breaking the animation flush.
Use Object.hasOwn for the check so a shadowing key no longer matters.
Cancel the unread response body before reporting NG02825 when its declared Content-Length exceeds the configured buffer limit. Without cancellation, SSR can finish while the underlying connection remains open.
Add regression coverage for the declared-length rejection path.
Before: The View Source button tooltip in signal details static ('View source') even when disabled.
After: The tooltip explains 'Source location is not available for this node' when disabled.
Before: getSignalGraph only exposed debuggableFn on computed and template
nodes, preventing DevTools from linking to source code for other node types.
After: debuggableFn is also populated for linkedSignal, effect, and
afterRenderEffectPhase nodes.
locateOrCreateElementNodeImpl looks up the DOM node for an element
during hydration and immediately checks its nodeType. If the
client-rendered DOM has fewer nodes than the server-rendered HTML,
the lookup returns null, and in production that null flows straight
into the nodeType check and crashes with a raw, uncoded
"Cannot read properties of null (reading 'nodeType')" TypeError.
The dev-mode check that would normally catch this (validateMatchingNode)
already handles a missing node, but it's compiled out of production
builds, so the crash only shows up outside of dev mode.
Add a null check ahead of the nodeType check that throws a coded
RuntimeError using the existing HYDRATION_MISSING_NODE (NG0502) code,
with a descriptive message in dev mode and a cheap fallback in
production. Also add a regression test that removes a server-rendered
element before hydration runs and asserts a coded RuntimeError is
thrown instead of a raw TypeError.
Angular's internal LView/TNode bookkeeping can get out of sync with the
real DOM: manual DOM manipulation, a browser extension, or an edge case in
Angular's own view-insertion/reordering code can all leave Angular believing
a node is still attached at a given position when it isn't. The next time
Angular's renderer calls `insertBefore` relative to that stale reference
node, the native DOM API throws an opaque `NotFoundError` with no indication
of which node or component was involved, making these errors effectively
undebuggable in production:
NotFoundError: Failed to execute 'insertBefore' on 'Node': The node
before which the new node is to be inserted is not a child of this node.
at Node.insertBefore (native)
at DefaultDomRenderer2.insertBefore (packages/platform-browser/src/dom/dom_renderer.ts)
at nativeInsertBefore (packages/core/src/render3/dom_node_manipulation.ts)
at nativeAppendOrInsertBefore (packages/core/src/render3/dom_node_manipulation.ts)
... (called while Angular inserts or moves a view during change detection)
Check the reference node's actual parent against the expected parent before
calling the native `insertBefore`, and throw a descriptive `RuntimeError`
(NG05106) instead, following the same pattern already used for hydration
node mismatches.
Exposes the internal fn reference of effect reactive nodes on DebugSignalGraphNode as debuggableFn. This allows Angular DevTools to inspect and set breakpoints on effect callbacks.
When reflection metadata is emitted via setClassMetadata, passing readonly arrays or const tuples for the decorators parameter causes TypeScript type checking errors because setClassMetadata previously expected decorators to be a mutable any[] or null.
This change updates the setClassMetadata type signature to accept decorators as readonly any[] or null and casts the parameter internally when mutating the class metadata property.