Files
Agent-n8n/web_frontend/food-order-demo/node_modules/unist-util-visit-parents/lib/index.d.ts
Yep_Q c3eb7125cc feat: 创建食品订单班演示系统基础框架
详细说明:
- 基于文旅订单班框架复制创建food-order-demo项目
- 修改端口配置为4174避免冲突
- 更新LandingPage为青莳轻食主题(绿色健康风格)
- 重新定义7个食品行业专业Agent:
  * 市场研究专家:轻食市场分析、客群画像
  * 营养配方师:营养成分配比、低卡高蛋白设计
  * 供应链管理专家:有机食材供应、溯源体系
  * 品牌策划师:品牌定位、店铺空间布局
  * 财务分析师:投资预算、ROI分析
  * 运营管理专家:运营流程、品控标准
  * 食品创业导师:中央协调、方案整合
- 创建专用启动脚本start.sh
- 验证系统可正常运行在端口4174
- 实现代码复用率90%,符合预期目标

影响文件: web_frontend/food-order-demo/
技术栈: React 18 + TypeScript + Tailwind CSS + Zustand
2025-09-28 10:32:44 +08:00

231 lines
6.2 KiB
TypeScript
Raw Blame History

This file contains ambiguous Unicode characters

This file contains Unicode characters that might be confused with other characters. If you think that this is intentional, you can safely ignore this warning. Use the Escape button to reveal them.

export function visitParents<
Tree extends import('unist').Node,
Check extends Test
>(
tree: Tree,
check: Check,
visitor: BuildVisitor<Tree, Check>,
reverse?: boolean | null | undefined
): undefined
export function visitParents<
Tree extends import('unist').Node,
Check extends Test
>(
tree: Tree,
visitor: BuildVisitor<Tree, Test>,
reverse?: boolean | null | undefined
): undefined
/**
* Continue traversing as normal.
*/
export const CONTINUE: true
/**
* Stop traversing immediately.
*/
export const EXIT: false
/**
* Do not traverse this nodes children.
*/
export const SKIP: 'skip'
export type UnistNode = import('unist').Node
export type UnistParent = import('unist').Parent
/**
* Test from `unist-util-is`.
*
* Note: we have remove and add `undefined`, because otherwise when generating
* automatic `.d.ts` files, TS tries to flatten paths from a local perspective,
* which doesnt work when publishing on npm.
*/
export type Test = Exclude<import('unist-util-is').Test, undefined> | undefined
/**
* Get the value of a type guard `Fn`.
*/
export type Predicate<Fn, Fallback> = Fn extends (
value: any
) => value is infer Thing
? Thing
: Fallback
/**
* Check whether a node matches a primitive check in the type system.
*/
export type MatchesOne<Value, Check> = Check extends null | undefined
? Value
: Value extends {
type: Check
}
? Value
: Value extends Check
? Value
: Check extends Function
? Predicate<Check, Value> extends Value
? Predicate<Check, Value>
: never
: never
/**
* Check whether a node matches a check in the type system.
*/
export type Matches<Value, Check> = Check extends Array<any>
? MatchesOne<Value, Check[keyof Check]>
: MatchesOne<Value, Check>
/**
* Number; capped reasonably.
*/
export type Uint = 0 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10
/**
* Increment a number in the type system.
*/
export type Increment<I extends Uint = 0> = I extends 0
? 1
: I extends 1
? 2
: I extends 2
? 3
: I extends 3
? 4
: I extends 4
? 5
: I extends 5
? 6
: I extends 6
? 7
: I extends 7
? 8
: I extends 8
? 9
: 10
/**
* Collect nodes that can be parents of `Child`.
*/
export type InternalParent<
Node extends import('unist').Node,
Child extends import('unist').Node
> = Node extends import('unist').Parent
? Node extends {
children: (infer Children)[]
}
? Child extends Children
? Node
: never
: never
: never
/**
* Collect nodes in `Tree` that can be parents of `Child`.
*/
export type Parent<
Tree extends import('unist').Node,
Child extends import('unist').Node
> = InternalParent<InclusiveDescendant<Tree>, Child>
/**
* Collect nodes in `Tree` that can be ancestors of `Child`.
*/
export type InternalAncestor<
Node extends import('unist').Node,
Child extends import('unist').Node,
Max extends Uint = 10,
Depth extends Uint = 0
> = Depth extends Max
? never
:
| InternalParent<Node, Child>
| InternalAncestor<
Node,
InternalParent<Node, Child>,
Max,
Increment<Depth>
>
/**
* Collect nodes in `Tree` that can be ancestors of `Child`.
*/
export type Ancestor<
Tree extends import('unist').Node,
Child extends import('unist').Node
> = InternalAncestor<InclusiveDescendant<Tree>, Child>
/**
* Collect all (inclusive) descendants of `Tree`.
*
* > 👉 **Note**: for performance reasons, this seems to be the fastest way to
* > recurse without actually running into an infinite loop, which the
* > previous version did.
* >
* > Practically, a max of `2` is typically enough assuming a `Root` is
* > passed, but it doesnt improve performance.
* > It gets higher with `List > ListItem > Table > TableRow > TableCell`.
* > Using up to `10` doesnt hurt or help either.
*/
export type InclusiveDescendant<
Tree extends import('unist').Node,
Max extends Uint = 10,
Depth extends Uint = 0
> = Tree extends UnistParent
? Depth extends Max
? Tree
:
| Tree
| InclusiveDescendant<Tree['children'][number], Max, Increment<Depth>>
: Tree
/**
* Union of the action types.
*/
export type Action = 'skip' | boolean
/**
* Move to the sibling at `index` next (after node itself is completely
* traversed).
*
* Useful if mutating the tree, such as removing the node the visitor is
* currently on, or any of its previous siblings.
* Results less than 0 or greater than or equal to `children.length` stop
* traversing the parent.
*/
export type Index = number
/**
* List with one or two values, the first an action, the second an index.
*/
export type ActionTuple = [
(Action | null | undefined | void)?,
(Index | null | undefined)?
]
/**
* Any value that can be returned from a visitor.
*/
export type VisitorResult =
| Action
| [(void | Action | null | undefined)?, (number | null | undefined)?]
| Index
| null
| undefined
| void
/**
* Handle a node (matching `test`, if given).
*
* Visitors are free to transform `node`.
* They can also transform the parent of node (the last of `ancestors`).
*
* Replacing `node` itself, if `SKIP` is not returned, still causes its
* descendants to be walked (which is a bug).
*
* When adding or removing previous siblings of `node` (or next siblings, in
* case of reverse), the `Visitor` should return a new `Index` to specify the
* sibling to traverse after `node` is traversed.
* Adding or removing next siblings of `node` (or previous siblings, in case
* of reverse) is handled as expected without needing to return a new `Index`.
*
* Removing the children property of an ancestor still results in them being
* traversed.
*/
export type Visitor<
Visited extends import('unist').Node = import('unist').Node,
VisitedParents extends import('unist').Parent = import('unist').Parent
> = (node: Visited, ancestors: Array<VisitedParents>) => VisitorResult
/**
* Build a typed `Visitor` function from a tree and a test.
*
* It will infer which values are passed as `node` and which as `parents`.
*/
export type BuildVisitor<
Tree extends import('unist').Node = import('unist').Node,
Check extends Test = Test
> = Visitor<
Matches<InclusiveDescendant<Tree>, Check>,
Ancestor<Tree, Matches<InclusiveDescendant<Tree>, Check>>
>