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renderer.ts
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renderer.ts
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import {
Text,
Fragment,
Comment,
cloneIfMounted,
normalizeVNode,
VNode,
VNodeArrayChildren,
createVNode,
isSameVNodeType,
Static,
VNodeHook,
VNodeProps,
invokeVNodeHook
} from './vnode'
import {
ComponentInternalInstance,
ComponentOptions,
createComponentInstance,
Data,
setupComponent
} from './component'
import {
filterSingleRoot,
renderComponentRoot,
shouldUpdateComponent,
updateHOCHostEl
} from './componentRenderUtils'
import {
EMPTY_OBJ,
EMPTY_ARR,
isReservedProp,
PatchFlags,
ShapeFlags,
NOOP,
invokeArrayFns,
isArray,
getGlobalThis
} from '@vue/shared'
import {
queueJob,
queuePostFlushCb,
flushPostFlushCbs,
invalidateJob,
flushPreFlushCbs,
SchedulerJob
} from './scheduler'
import { pauseTracking, resetTracking, ReactiveEffect } from '@vue/reactivity'
import { updateProps } from './componentProps'
import { updateSlots } from './componentSlots'
import { pushWarningContext, popWarningContext, warn } from './warning'
import { createAppAPI, CreateAppFunction } from './apiCreateApp'
import { setRef } from './rendererTemplateRef'
import {
SuspenseBoundary,
queueEffectWithSuspense,
SuspenseImpl
} from './components/Suspense'
import { TeleportImpl, TeleportVNode } from './components/Teleport'
import { isKeepAlive, KeepAliveContext } from './components/KeepAlive'
import { registerHMR, unregisterHMR, isHmrUpdating } from './hmr'
import { createHydrationFunctions, RootHydrateFunction } from './hydration'
import { invokeDirectiveHook } from './directives'
import { startMeasure, endMeasure } from './profiling'
import {
devtoolsComponentAdded,
devtoolsComponentRemoved,
devtoolsComponentUpdated,
setDevtoolsHook
} from './devtools'
import { initFeatureFlags } from './featureFlags'
import { isAsyncWrapper } from './apiAsyncComponent'
import { isCompatEnabled } from './compat/compatConfig'
import { DeprecationTypes } from './compat/compatConfig'
export interface Renderer<HostElement = RendererElement> {
render: RootRenderFunction<HostElement>
createApp: CreateAppFunction<HostElement>
}
export interface HydrationRenderer extends Renderer<Element | ShadowRoot> {
hydrate: RootHydrateFunction
}
export type RootRenderFunction<HostElement = RendererElement> = (
vnode: VNode | null,
container: HostElement,
isSVG?: boolean
) => void
export interface RendererOptions<
HostNode = RendererNode,
HostElement = RendererElement
> {
patchProp(
el: HostElement,
key: string,
prevValue: any,
nextValue: any,
isSVG?: boolean,
prevChildren?: VNode<HostNode, HostElement>[],
parentComponent?: ComponentInternalInstance | null,
parentSuspense?: SuspenseBoundary | null,
unmountChildren?: UnmountChildrenFn
): void
insert(el: HostNode, parent: HostElement, anchor?: HostNode | null): void
remove(el: HostNode): void
createElement(
type: string,
isSVG?: boolean,
isCustomizedBuiltIn?: string,
vnodeProps?: (VNodeProps & { [key: string]: any }) | null
): HostElement
createText(text: string): HostNode
createComment(text: string): HostNode
setText(node: HostNode, text: string): void
setElementText(node: HostElement, text: string): void
parentNode(node: HostNode): HostElement | null
nextSibling(node: HostNode): HostNode | null
querySelector?(selector: string): HostElement | null
setScopeId?(el: HostElement, id: string): void
cloneNode?(node: HostNode): HostNode
insertStaticContent?(
content: string,
parent: HostElement,
anchor: HostNode | null,
isSVG: boolean,
start?: HostNode | null,
end?: HostNode | null
): [HostNode, HostNode]
}
// Renderer Node can technically be any object in the context of core renderer
// logic - they are never directly operated on and always passed to the node op
// functions provided via options, so the internal constraint is really just
// a generic object.
export interface RendererNode {
[key: string]: any
}
export interface RendererElement extends RendererNode {}
// An object exposing the internals of a renderer, passed to tree-shakeable
// features so that they can be decoupled from this file. Keys are shortened
// to optimize bundle size.
export interface RendererInternals<
HostNode = RendererNode,
HostElement = RendererElement
> {
p: PatchFn
um: UnmountFn
r: RemoveFn
m: MoveFn
mt: MountComponentFn
mc: MountChildrenFn
pc: PatchChildrenFn
pbc: PatchBlockChildrenFn
n: NextFn
o: RendererOptions<HostNode, HostElement>
}
// These functions are created inside a closure and therefore their types cannot
// be directly exported. In order to avoid maintaining function signatures in
// two places, we declare them once here and use them inside the closure.
type PatchFn = (
n1: VNode | null, // null means this is a mount
n2: VNode,
container: RendererElement,
anchor?: RendererNode | null,
parentComponent?: ComponentInternalInstance | null,
parentSuspense?: SuspenseBoundary | null,
isSVG?: boolean,
slotScopeIds?: string[] | null,
optimized?: boolean
) => void
type MountChildrenFn = (
children: VNodeArrayChildren,
container: RendererElement,
anchor: RendererNode | null,
parentComponent: ComponentInternalInstance | null,
parentSuspense: SuspenseBoundary | null,
isSVG: boolean,
slotScopeIds: string[] | null,
optimized: boolean,
start?: number
) => void
type PatchChildrenFn = (
n1: VNode | null,
n2: VNode,
container: RendererElement,
anchor: RendererNode | null,
parentComponent: ComponentInternalInstance | null,
parentSuspense: SuspenseBoundary | null,
isSVG: boolean,
slotScopeIds: string[] | null,
optimized: boolean
) => void
type PatchBlockChildrenFn = (
oldChildren: VNode[],
newChildren: VNode[],
fallbackContainer: RendererElement,
parentComponent: ComponentInternalInstance | null,
parentSuspense: SuspenseBoundary | null,
isSVG: boolean,
slotScopeIds: string[] | null
) => void
type MoveFn = (
vnode: VNode,
container: RendererElement,
anchor: RendererNode | null,
type: MoveType,
parentSuspense?: SuspenseBoundary | null
) => void
type NextFn = (vnode: VNode) => RendererNode | null
type UnmountFn = (
vnode: VNode,
parentComponent: ComponentInternalInstance | null,
parentSuspense: SuspenseBoundary | null,
doRemove?: boolean,
optimized?: boolean
) => void
type RemoveFn = (vnode: VNode) => void
type UnmountChildrenFn = (
children: VNode[],
parentComponent: ComponentInternalInstance | null,
parentSuspense: SuspenseBoundary | null,
doRemove?: boolean,
optimized?: boolean,
start?: number
) => void
export type MountComponentFn = (
initialVNode: VNode,
container: RendererElement,
anchor: RendererNode | null,
parentComponent: ComponentInternalInstance | null,
parentSuspense: SuspenseBoundary | null,
isSVG: boolean,
optimized: boolean
) => void
type ProcessTextOrCommentFn = (
n1: VNode | null,
n2: VNode,
container: RendererElement,
anchor: RendererNode | null
) => void
export type SetupRenderEffectFn = (
instance: ComponentInternalInstance,
initialVNode: VNode,
container: RendererElement,
anchor: RendererNode | null,
parentSuspense: SuspenseBoundary | null,
isSVG: boolean,
optimized: boolean
) => void
export const enum MoveType {
ENTER,
LEAVE,
REORDER
}
export const queuePostRenderEffect = __FEATURE_SUSPENSE__
? __TEST__
? // vitest can't seem to handle eager circular dependency
(fn: Function | Function[], suspense: SuspenseBoundary | null) =>
queueEffectWithSuspense(fn, suspense)
: queueEffectWithSuspense
: queuePostFlushCb
/**
* The createRenderer function accepts two generic arguments:
* HostNode and HostElement, corresponding to Node and Element types in the
* host environment. For example, for runtime-dom, HostNode would be the DOM
* `Node` interface and HostElement would be the DOM `Element` interface.
*
* Custom renderers can pass in the platform specific types like this:
*
* ``` js
* const { render, createApp } = createRenderer<Node, Element>({
* patchProp,
* ...nodeOps
* })
* ```
*/
export function createRenderer<
HostNode = RendererNode,
HostElement = RendererElement
>(options: RendererOptions<HostNode, HostElement>) {
return baseCreateRenderer<HostNode, HostElement>(options)
}
// Separate API for creating hydration-enabled renderer.
// Hydration logic is only used when calling this function, making it
// tree-shakable.
export function createHydrationRenderer(
options: RendererOptions<Node, Element>
) {
return baseCreateRenderer(options, createHydrationFunctions)
}
// overload 1: no hydration
function baseCreateRenderer<
HostNode = RendererNode,
HostElement = RendererElement
>(options: RendererOptions<HostNode, HostElement>): Renderer<HostElement>
// overload 2: with hydration
function baseCreateRenderer(
options: RendererOptions<Node, Element>,
createHydrationFns: typeof createHydrationFunctions
): HydrationRenderer
// implementation
function baseCreateRenderer(
options: RendererOptions,
createHydrationFns?: typeof createHydrationFunctions
): any {
// compile-time feature flags check
if (__ESM_BUNDLER__ && !__TEST__) {
initFeatureFlags()
}
const target = getGlobalThis()
target.__VUE__ = true
if (__DEV__ || __FEATURE_PROD_DEVTOOLS__) {
setDevtoolsHook(target.__VUE_DEVTOOLS_GLOBAL_HOOK__, target)
}
const {
insert: hostInsert,
remove: hostRemove,
patchProp: hostPatchProp,
createElement: hostCreateElement,
createText: hostCreateText,
createComment: hostCreateComment,
setText: hostSetText,
setElementText: hostSetElementText,
parentNode: hostParentNode,
nextSibling: hostNextSibling,
setScopeId: hostSetScopeId = NOOP,
insertStaticContent: hostInsertStaticContent
} = options
// Note: functions inside this closure should use `const xxx = () => {}`
// style in order to prevent being inlined by minifiers.
const patch: PatchFn = (
n1,
n2,
container,
anchor = null,
parentComponent = null,
parentSuspense = null,
isSVG = false,
slotScopeIds = null,
optimized = __DEV__ && isHmrUpdating ? false : !!n2.dynamicChildren
) => {
if (n1 === n2) {
return
}
// patching & not same type, unmount old tree
if (n1 && !isSameVNodeType(n1, n2)) {
anchor = getNextHostNode(n1)
unmount(n1, parentComponent, parentSuspense, true)
n1 = null
}
if (n2.patchFlag === PatchFlags.BAIL) {
optimized = false
n2.dynamicChildren = null
}
const { type, ref, shapeFlag } = n2
switch (type) {
case Text:
processText(n1, n2, container, anchor)
break
case Comment:
processCommentNode(n1, n2, container, anchor)
break
case Static:
if (n1 == null) {
mountStaticNode(n2, container, anchor, isSVG)
} else if (__DEV__) {
patchStaticNode(n1, n2, container, isSVG)
}
break
case Fragment:
processFragment(
n1,
n2,
container,
anchor,
parentComponent,
parentSuspense,
isSVG,
slotScopeIds,
optimized
)
break
default:
if (shapeFlag & ShapeFlags.ELEMENT) {
processElement(
n1,
n2,
container,
anchor,
parentComponent,
parentSuspense,
isSVG,
slotScopeIds,
optimized
)
} else if (shapeFlag & ShapeFlags.COMPONENT) {
processComponent(
n1,
n2,
container,
anchor,
parentComponent,
parentSuspense,
isSVG,
slotScopeIds,
optimized
)
} else if (shapeFlag & ShapeFlags.TELEPORT) {
;(type as typeof TeleportImpl).process(
n1 as TeleportVNode,
n2 as TeleportVNode,
container,
anchor,
parentComponent,
parentSuspense,
isSVG,
slotScopeIds,
optimized,
internals
)
} else if (__FEATURE_SUSPENSE__ && shapeFlag & ShapeFlags.SUSPENSE) {
;(type as typeof SuspenseImpl).process(
n1,
n2,
container,
anchor,
parentComponent,
parentSuspense,
isSVG,
slotScopeIds,
optimized,
internals
)
} else if (__DEV__) {
warn('Invalid VNode type:', type, `(${typeof type})`)
}
}
// set ref
if (ref != null && parentComponent) {
setRef(ref, n1 && n1.ref, parentSuspense, n2 || n1, !n2)
}
}
const processText: ProcessTextOrCommentFn = (n1, n2, container, anchor) => {
if (n1 == null) {
hostInsert(
(n2.el = hostCreateText(n2.children as string)),
container,
anchor
)
} else {
const el = (n2.el = n1.el!)
if (n2.children !== n1.children) {
hostSetText(el, n2.children as string)
}
}
}
const processCommentNode: ProcessTextOrCommentFn = (
n1,
n2,
container,
anchor
) => {
if (n1 == null) {
hostInsert(
(n2.el = hostCreateComment((n2.children as string) || '')),
container,
anchor
)
} else {
// there's no support for dynamic comments
n2.el = n1.el
}
}
const mountStaticNode = (
n2: VNode,
container: RendererElement,
anchor: RendererNode | null,
isSVG: boolean
) => {
// static nodes are only present when used with compiler-dom/runtime-dom
// which guarantees presence of hostInsertStaticContent.
;[n2.el, n2.anchor] = hostInsertStaticContent!(
n2.children as string,
container,
anchor,
isSVG,
n2.el,
n2.anchor
)
}
/**
* Dev / HMR only
*/
const patchStaticNode = (
n1: VNode,
n2: VNode,
container: RendererElement,
isSVG: boolean
) => {
// static nodes are only patched during dev for HMR
if (n2.children !== n1.children) {
const anchor = hostNextSibling(n1.anchor!)
// remove existing
removeStaticNode(n1)
// insert new
;[n2.el, n2.anchor] = hostInsertStaticContent!(
n2.children as string,
container,
anchor,
isSVG
)
} else {
n2.el = n1.el
n2.anchor = n1.anchor
}
}
const moveStaticNode = (
{ el, anchor }: VNode,
container: RendererElement,
nextSibling: RendererNode | null
) => {
let next
while (el && el !== anchor) {
next = hostNextSibling(el)
hostInsert(el, container, nextSibling)
el = next
}
hostInsert(anchor!, container, nextSibling)
}
const removeStaticNode = ({ el, anchor }: VNode) => {
let next
while (el && el !== anchor) {
next = hostNextSibling(el)
hostRemove(el)
el = next
}
hostRemove(anchor!)
}
const processElement = (
n1: VNode | null,
n2: VNode,
container: RendererElement,
anchor: RendererNode | null,
parentComponent: ComponentInternalInstance | null,
parentSuspense: SuspenseBoundary | null,
isSVG: boolean,
slotScopeIds: string[] | null,
optimized: boolean
) => {
isSVG = isSVG || (n2.type as string) === 'svg'
if (n1 == null) {
mountElement(
n2,
container,
anchor,
parentComponent,
parentSuspense,
isSVG,
slotScopeIds,
optimized
)
} else {
patchElement(
n1,
n2,
parentComponent,
parentSuspense,
isSVG,
slotScopeIds,
optimized
)
}
}
const mountElement = (
vnode: VNode,
container: RendererElement,
anchor: RendererNode | null,
parentComponent: ComponentInternalInstance | null,
parentSuspense: SuspenseBoundary | null,
isSVG: boolean,
slotScopeIds: string[] | null,
optimized: boolean
) => {
let el: RendererElement
let vnodeHook: VNodeHook | undefined | null
const { type, props, shapeFlag, transition, dirs } = vnode
el = vnode.el = hostCreateElement(
vnode.type as string,
isSVG,
props && props.is,
props
)
// mount children first, since some props may rely on child content
// being already rendered, e.g. `<select value>`
if (shapeFlag & ShapeFlags.TEXT_CHILDREN) {
hostSetElementText(el, vnode.children as string)
} else if (shapeFlag & ShapeFlags.ARRAY_CHILDREN) {
mountChildren(
vnode.children as VNodeArrayChildren,
el,
null,
parentComponent,
parentSuspense,
isSVG && type !== 'foreignObject',
slotScopeIds,
optimized
)
}
if (dirs) {
invokeDirectiveHook(vnode, null, parentComponent, 'created')
}
// scopeId
setScopeId(el, vnode, vnode.scopeId, slotScopeIds, parentComponent)
// props
if (props) {
for (const key in props) {
if (key !== 'value' && !isReservedProp(key)) {
hostPatchProp(
el,
key,
null,
props[key],
isSVG,
vnode.children as VNode[],
parentComponent,
parentSuspense,
unmountChildren
)
}
}
/**
* Special case for setting value on DOM elements:
* - it can be order-sensitive (e.g. should be set *after* min/max, #2325, #4024)
* - it needs to be forced (#1471)
* #2353 proposes adding another renderer option to configure this, but
* the properties affects are so finite it is worth special casing it
* here to reduce the complexity. (Special casing it also should not
* affect non-DOM renderers)
*/
if ('value' in props) {
hostPatchProp(el, 'value', null, props.value)
}
if ((vnodeHook = props.onVnodeBeforeMount)) {
invokeVNodeHook(vnodeHook, parentComponent, vnode)
}
}
if (__DEV__ || __FEATURE_PROD_DEVTOOLS__) {
Object.defineProperty(el, '__vnode', {
value: vnode,
enumerable: false
})
Object.defineProperty(el, '__vueParentComponent', {
value: parentComponent,
enumerable: false
})
}
if (dirs) {
invokeDirectiveHook(vnode, null, parentComponent, 'beforeMount')
}
// #1583 For inside suspense + suspense not resolved case, enter hook should call when suspense resolved
// #1689 For inside suspense + suspense resolved case, just call it
const needCallTransitionHooks =
(!parentSuspense || (parentSuspense && !parentSuspense.pendingBranch)) &&
transition &&
!transition.persisted
if (needCallTransitionHooks) {
transition!.beforeEnter(el)
}
hostInsert(el, container, anchor)
if (
(vnodeHook = props && props.onVnodeMounted) ||
needCallTransitionHooks ||
dirs
) {
queuePostRenderEffect(() => {
vnodeHook && invokeVNodeHook(vnodeHook, parentComponent, vnode)
needCallTransitionHooks && transition!.enter(el)
dirs && invokeDirectiveHook(vnode, null, parentComponent, 'mounted')
}, parentSuspense)
}
}
const setScopeId = (
el: RendererElement,
vnode: VNode,
scopeId: string | null,
slotScopeIds: string[] | null,
parentComponent: ComponentInternalInstance | null
) => {
if (scopeId) {
hostSetScopeId(el, scopeId)
}
if (slotScopeIds) {
for (let i = 0; i < slotScopeIds.length; i++) {
hostSetScopeId(el, slotScopeIds[i])
}
}
if (parentComponent) {
let subTree = parentComponent.subTree
if (
__DEV__ &&
subTree.patchFlag > 0 &&
subTree.patchFlag & PatchFlags.DEV_ROOT_FRAGMENT
) {
subTree =
filterSingleRoot(subTree.children as VNodeArrayChildren) || subTree
}
if (vnode === subTree) {
const parentVNode = parentComponent.vnode
setScopeId(
el,
parentVNode,
parentVNode.scopeId,
parentVNode.slotScopeIds,
parentComponent.parent
)
}
}
}
const mountChildren: MountChildrenFn = (
children,
container,
anchor,
parentComponent,
parentSuspense,
isSVG,
slotScopeIds,
optimized,
start = 0
) => {
for (let i = start; i < children.length; i++) {
const child = (children[i] = optimized
? cloneIfMounted(children[i] as VNode)
: normalizeVNode(children[i]))
patch(
null,
child,
container,
anchor,
parentComponent,
parentSuspense,
isSVG,
slotScopeIds,
optimized
)
}
}
const patchElement = (
n1: VNode,
n2: VNode,
parentComponent: ComponentInternalInstance | null,
parentSuspense: SuspenseBoundary | null,
isSVG: boolean,
slotScopeIds: string[] | null,
optimized: boolean
) => {
const el = (n2.el = n1.el!)
let { patchFlag, dynamicChildren, dirs } = n2
// #1426 take the old vnode's patch flag into account since user may clone a
// compiler-generated vnode, which de-opts to FULL_PROPS
patchFlag |= n1.patchFlag & PatchFlags.FULL_PROPS
const oldProps = n1.props || EMPTY_OBJ
const newProps = n2.props || EMPTY_OBJ
let vnodeHook: VNodeHook | undefined | null
// disable recurse in beforeUpdate hooks
parentComponent && toggleRecurse(parentComponent, false)
if ((vnodeHook = newProps.onVnodeBeforeUpdate)) {
invokeVNodeHook(vnodeHook, parentComponent, n2, n1)
}
if (dirs) {
invokeDirectiveHook(n2, n1, parentComponent, 'beforeUpdate')
}
parentComponent && toggleRecurse(parentComponent, true)
if (__DEV__ && isHmrUpdating) {
// HMR updated, force full diff
patchFlag = 0
optimized = false
dynamicChildren = null
}
const areChildrenSVG = isSVG && n2.type !== 'foreignObject'
if (dynamicChildren) {
patchBlockChildren(
n1.dynamicChildren!,
dynamicChildren,
el,
parentComponent,
parentSuspense,
areChildrenSVG,
slotScopeIds
)
if (__DEV__ && parentComponent && parentComponent.type.__hmrId) {
traverseStaticChildren(n1, n2)
}
} else if (!optimized) {
// full diff
patchChildren(
n1,
n2,
el,
null,
parentComponent,
parentSuspense,
areChildrenSVG,
slotScopeIds,
false
)
}
if (patchFlag > 0) {
// the presence of a patchFlag means this element's render code was
// generated by the compiler and can take the fast path.
// in this path old node and new node are guaranteed to have the same shape
// (i.e. at the exact same position in the source template)
if (patchFlag & PatchFlags.FULL_PROPS) {
// element props contain dynamic keys, full diff needed
patchProps(
el,
n2,
oldProps,
newProps,
parentComponent,
parentSuspense,
isSVG
)
} else {
// class
// this flag is matched when the element has dynamic class bindings.
if (patchFlag & PatchFlags.CLASS) {
if (oldProps.class !== newProps.class) {
hostPatchProp(el, 'class', null, newProps.class, isSVG)
}
}
// style
// this flag is matched when the element has dynamic style bindings
if (patchFlag & PatchFlags.STYLE) {
hostPatchProp(el, 'style', oldProps.style, newProps.style, isSVG)
}
// props
// This flag is matched when the element has dynamic prop/attr bindings
// other than class and style. The keys of dynamic prop/attrs are saved for
// faster iteration.
// Note dynamic keys like :[foo]="bar" will cause this optimization to
// bail out and go through a full diff because we need to unset the old key
if (patchFlag & PatchFlags.PROPS) {
// if the flag is present then dynamicProps must be non-null
const propsToUpdate = n2.dynamicProps!
for (let i = 0; i < propsToUpdate.length; i++) {
const key = propsToUpdate[i]
const prev = oldProps[key]
const next = newProps[key]
// #1471 force patch value
if (next !== prev || key === 'value') {
hostPatchProp(
el,
key,
prev,
next,
isSVG,
n1.children as VNode[],
parentComponent,
parentSuspense,
unmountChildren
)
}
}
}
}
// text
// This flag is matched when the element has only dynamic text children.
if (patchFlag & PatchFlags.TEXT) {
if (n1.children !== n2.children) {
hostSetElementText(el, n2.children as string)
}
}
} else if (!optimized && dynamicChildren == null) {
// unoptimized, full diff
patchProps(
el,
n2,
oldProps,
newProps,
parentComponent,
parentSuspense,
isSVG
)
}
if ((vnodeHook = newProps.onVnodeUpdated) || dirs) {
queuePostRenderEffect(() => {
vnodeHook && invokeVNodeHook(vnodeHook, parentComponent, n2, n1)
dirs && invokeDirectiveHook(n2, n1, parentComponent, 'updated')
}, parentSuspense)
}
}
// The fast path for blocks.
const patchBlockChildren: PatchBlockChildrenFn = (
oldChildren,
newChildren,
fallbackContainer,
parentComponent,
parentSuspense,
isSVG,
slotScopeIds
) => {
for (let i = 0; i < newChildren.length; i++) {
const oldVNode = oldChildren[i]
const newVNode = newChildren[i]
// Determine the container (parent element) for the patch.
const container =
// oldVNode may be an errored async setup() component inside Suspense
// which will not have a mounted element
oldVNode.el &&
// - In the case of a Fragment, we need to provide the actual parent
// of the Fragment itself so it can move its children.
(oldVNode.type === Fragment ||
// - In the case of different nodes, there is going to be a replacement
// which also requires the correct parent container
!isSameVNodeType(oldVNode, newVNode) ||
// - In the case of a component, it could contain anything.
oldVNode.shapeFlag & (ShapeFlags.COMPONENT | ShapeFlags.TELEPORT))
? hostParentNode(oldVNode.el)!
: // In other cases, the parent container is not actually used so we
// just pass the block element here to avoid a DOM parentNode call.
fallbackContainer
patch(
oldVNode,
newVNode,
container,
null,
parentComponent,
parentSuspense,
isSVG,
slotScopeIds,
true
)
}
}
const patchProps = (
el: RendererElement,
vnode: VNode,
oldProps: Data,
newProps: Data,
parentComponent: ComponentInternalInstance | null,
parentSuspense: SuspenseBoundary | null,
isSVG: boolean
) => {
if (oldProps !== newProps) {
if (oldProps !== EMPTY_OBJ) {