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* [SwiftSyntax] Fix SyntaxChildren iteration SyntaxChildren.Iterator stops the first time it sees a nil child; since it traverses all indexes without considering presence, this causes it to terminate iteration early if there is a missing child in the list. * [SwiftSyntax] Add tests for SyntaxChildren
230 lines
7.5 KiB
Swift
230 lines
7.5 KiB
Swift
//===-------------------- Syntax.swift - Syntax Protocol ------------------===//
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//
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// This source file is part of the Swift.org open source project
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//
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// Copyright (c) 2014 - 2017 Apple Inc. and the Swift project authors
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// Licensed under Apache License v2.0 with Runtime Library Exception
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//
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// See https://swift.org/LICENSE.txt for license information
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// See https://swift.org/CONTRIBUTORS.txt for the list of Swift project authors
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//
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//===----------------------------------------------------------------------===//
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import Foundation
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/// A Syntax node represents a tree of nodes with tokens at the leaves.
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/// Each node has accessors for its known children, and allows efficient
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/// iteration over the children through its `children` property.
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public class Syntax: CustomStringConvertible {
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/// The type of sequence containing the indices of present children.
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internal typealias PresentChildIndicesSequence =
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LazyFilterSequence<CountableRange<Int>>
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/// The root of the tree this node is currently in.
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internal let _root: SyntaxData
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/// The data backing this node.
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/// - note: This is unowned, because the reference to the root data keeps it
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/// alive. This means there is an implicit relationship -- the data
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/// property must be a descendent of the root. This relationship must
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/// be preserved in all circumstances where Syntax nodes are created.
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internal unowned var data: SyntaxData
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#if DEBUG
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func validate() {
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// This is for subclasses to override to perform structural validation.
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}
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#endif
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/// Creates a Syntax node from the provided root and data.
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internal init(root: SyntaxData, data: SyntaxData) {
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self._root = root
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self.data = data
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#if DEBUG
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validate()
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#endif
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}
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/// Access the raw syntax assuming the node is a Syntax.
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var raw: RawSyntax {
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return data.raw
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}
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/// An iterator over children of this node.
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public var children: SyntaxChildren {
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return SyntaxChildren(node: self)
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}
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/// Whether or not this node it marked as `present`.
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public var isPresent: Bool {
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return raw.presence == .present
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}
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/// Whether or not this node it marked as `missing`.
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public var isMissing: Bool {
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return raw.presence == .missing
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}
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/// Whether or not this node represents an Expression.
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public var isExpr: Bool {
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return raw.kind.isExpr
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}
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/// Whether or not this node represents a Declaration.
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public var isDecl: Bool {
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return raw.kind.isDecl
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}
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/// Whether or not this node represents a Statement.
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public var isStmt: Bool {
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return raw.kind.isStmt
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}
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/// Whether or not this node represents a Type.
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public var isType: Bool {
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return raw.kind.isType
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}
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/// Whether or not this node represents a Pattern.
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public var isPattern: Bool {
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return raw.kind.isPattern
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}
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/// The parent of this syntax node, or `nil` if this node is the root.
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public var parent: Syntax? {
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guard let parentData = data.parent else { return nil }
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return Syntax.make(root: _root, data: parentData)
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}
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/// The index of this node in the parent's children.
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public var indexInParent: Int {
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return data.indexInParent
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}
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/// The root of the tree in which this node resides.
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public var root: Syntax {
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return Syntax.make(root: _root, data: _root)
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}
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/// The sequence of indices that correspond to child nodes that are not
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/// missing.
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///
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/// This property is an implementation detail of `SyntaxChildren`.
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internal var presentChildIndices: PresentChildIndicesSequence {
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return raw.layout.indices.lazy.filter { self.raw.layout[$0].isPresent }
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}
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/// Gets the child at the provided index in this node's children.
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/// - Parameter index: The index of the child node you're looking for.
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/// - Returns: A Syntax node for the provided child, or `nil` if there
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/// is not a child at that index in the node.
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public func child(at index: Int) -> Syntax? {
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guard raw.layout.indices.contains(index) else { return nil }
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if raw.layout[index].isMissing { return nil }
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return Syntax.make(root: _root, data: data.cachedChild(at: index))
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}
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/// A source-accurate description of this node.
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public var description: String {
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var s = ""
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self.write(to: &s)
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return s
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}
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}
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extension Syntax: TextOutputStreamable {
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/// Prints the raw value of this node to the provided stream.
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/// - Parameter stream: The stream to which to print the raw tree.
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public func write<Target>(to target: inout Target)
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where Target: TextOutputStream {
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data.raw.write(to: &target)
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}
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}
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extension Syntax: Equatable {
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/// Determines if two nodes are equal to each other.
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public static func ==(lhs: Syntax, rhs: Syntax) -> Bool {
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return lhs.data === rhs.data
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}
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}
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/// MARK: - Nodes
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/// A Syntax node representing a single token.
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public class TokenSyntax: Syntax {
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/// The text of the token as written in the source code.
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public var text: String {
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return tokenKind.text
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}
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public func withKind(_ tokenKind: TokenKind) -> TokenSyntax {
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guard case let .token(_, leadingTrivia, trailingTrivia, presence) = raw else {
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fatalError("TokenSyntax must have token as its raw")
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}
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let (root, newData) = data.replacingSelf(.token(tokenKind, leadingTrivia,
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trailingTrivia, presence))
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return TokenSyntax(root: root, data: newData)
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}
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/// Returns a new TokenSyntax with its leading trivia replaced
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/// by the provided trivia.
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public func withLeadingTrivia(_ leadingTrivia: Trivia) -> TokenSyntax {
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guard case let .token(kind, _, trailingTrivia, presence) = raw else {
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fatalError("TokenSyntax must have token as its raw")
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}
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let (root, newData) = data.replacingSelf(.token(kind, leadingTrivia,
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trailingTrivia, presence))
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return TokenSyntax(root: root, data: newData)
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}
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/// Returns a new TokenSyntax with its trailing trivia replaced
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/// by the provided trivia.
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public func withTrailingTrivia(_ trailingTrivia: Trivia) -> TokenSyntax {
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guard case let .token(kind, leadingTrivia, _, presence) = raw else {
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fatalError("TokenSyntax must have token as its raw")
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}
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let (root, newData) = data.replacingSelf(.token(kind, leadingTrivia,
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trailingTrivia, presence))
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return TokenSyntax(root: root, data: newData)
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}
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/// Returns a new TokenSyntax with its leading trivia removed.
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public func withoutLeadingTrivia() -> TokenSyntax {
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return withLeadingTrivia([])
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}
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/// Returns a new TokenSyntax with its trailing trivia removed.
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public func withoutTrailingTrivia() -> TokenSyntax {
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return withTrailingTrivia([])
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}
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/// Returns a new TokenSyntax with all trivia removed.
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public func withoutTrivia() -> TokenSyntax {
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return withoutLeadingTrivia().withoutTrailingTrivia()
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}
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/// The leading trivia (spaces, newlines, etc.) associated with this token.
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public var leadingTrivia: Trivia {
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guard case .token(_, let leadingTrivia, _, _) = raw else {
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fatalError("TokenSyntax must have token as its raw")
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}
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return leadingTrivia
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}
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/// The trailing trivia (spaces, newlines, etc.) associated with this token.
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public var trailingTrivia: Trivia {
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guard case .token(_, _, let trailingTrivia, _) = raw else {
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fatalError("TokenSyntax must have token as its raw")
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}
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return trailingTrivia
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}
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/// The kind of token this node represents.
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public var tokenKind: TokenKind {
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guard case .token(let kind, _, _, _) = raw else {
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fatalError("TokenSyntax must have token as its raw")
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}
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return kind
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}
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}
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