use crate::syntax::SyntaxTrivia;
use crate::{Language, NodeOrToken, SyntaxNode, SyntaxToken, cursor};
use flash_text_size::{TextRange, TextSize};
use std::iter;
use std::ptr::NonNull;
pub type SyntaxElement<L> = NodeOrToken<SyntaxNode<L>, SyntaxToken<L>>;
impl<L: Language> SyntaxElement<L> {
pub fn key(&self) -> SyntaxElementKey {
match self {
Self::Node(it) => it.key(),
Self::Token(it) => it.key(),
}
}
pub fn text_range(&self) -> TextRange {
match self {
Self::Node(it) => it.text_range_with_trivia(),
Self::Token(it) => it.text_range(),
}
}
pub fn text_trimmed_range(&self) -> TextRange {
match self {
Self::Node(it) => it.text_trimmed_range(),
Self::Token(it) => it.text_trimmed_range(),
}
}
pub fn leading_trivia(&self) -> Option<SyntaxTrivia<L>> {
match self {
Self::Node(it) => it.first_leading_trivia(),
Self::Token(it) => Some(it.leading_trivia()),
}
}
pub fn trailing_trivia(&self) -> Option<SyntaxTrivia<L>> {
match self {
Self::Node(it) => it.last_trailing_trivia(),
Self::Token(it) => Some(it.trailing_trivia()),
}
}
pub fn kind(&self) -> L::Kind {
match self {
Self::Node(it) => it.kind(),
Self::Token(it) => it.kind(),
}
}
pub fn parent(&self) -> Option<SyntaxNode<L>> {
match self {
Self::Node(it) => it.parent(),
Self::Token(it) => it.parent(),
}
}
pub(crate) fn index(&self) -> usize {
match self {
Self::Node(it) => it.index(),
Self::Token(it) => it.index(),
}
}
pub fn ancestors(&self) -> impl Iterator<Item = SyntaxNode<L>> + use<L> {
let first = match self {
Self::Node(it) => Some(it.clone()),
Self::Token(it) => it.parent(),
};
iter::successors(first, SyntaxNode::parent)
}
pub fn next_sibling_or_token(&self) -> Option<Self> {
match self {
Self::Node(it) => it.next_sibling_or_token(),
Self::Token(it) => it.next_sibling_or_token(),
}
}
pub fn prev_sibling_or_token(&self) -> Option<Self> {
match self {
Self::Node(it) => it.prev_sibling_or_token(),
Self::Token(it) => it.prev_sibling_or_token(),
}
}
#[must_use = "syntax elements are immutable, the result of update methods must be propagated to have any effect"]
pub fn detach(self) -> Self {
match self {
Self::Node(it) => Self::Node(it.detach()),
Self::Token(it) => Self::Token(it.detach()),
}
}
}
impl<L: Language> From<cursor::SyntaxElement> for SyntaxElement<L> {
fn from(raw: cursor::SyntaxElement) -> Self {
match raw {
NodeOrToken::Node(it) => Self::Node(it.into()),
NodeOrToken::Token(it) => Self::Token(it.into()),
}
}
}
impl<L: Language> From<SyntaxElement<L>> for cursor::SyntaxElement {
fn from(element: SyntaxElement<L>) -> Self {
match element {
NodeOrToken::Node(it) => Self::Node(it.into()),
NodeOrToken::Token(it) => Self::Token(it.into()),
}
}
}
impl<L: Language> From<SyntaxToken<L>> for SyntaxElement<L> {
fn from(token: SyntaxToken<L>) -> Self {
Self::Token(token)
}
}
impl<L: Language> From<SyntaxNode<L>> for SyntaxElement<L> {
fn from(node: SyntaxNode<L>) -> Self {
Self::Node(node)
}
}
#[derive(Copy, Clone, Eq, PartialEq, Hash)]
pub struct SyntaxElementKey {
node_data: NonNull<()>,
offset: TextSize,
}
impl SyntaxElementKey {
pub(crate) fn new(node_data: NonNull<()>, offset: TextSize) -> Self {
Self { node_data, offset }
}
}