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328 lines
14 KiB
TypeScript
328 lines
14 KiB
TypeScript
// These utilities are common to multiple language service features.
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module ts {
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export interface ListItemInfo {
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listItemIndex: number;
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list: Node;
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}
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export function getEndLinePosition(line: number, sourceFile: SourceFile): number {
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Debug.assert(line >= 1);
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var lineStarts = sourceFile.getLineStarts();
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// lines returned by SourceFile.getLineAndCharacterForPosition are 1-based
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var lineIndex = line - 1;
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if (lineIndex === lineStarts.length - 1) {
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// last line - return EOF
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return sourceFile.text.length - 1;
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}
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else {
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// current line start
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var start = lineStarts[lineIndex];
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// take the start position of the next line -1 = it should be some line break
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var pos = lineStarts[lineIndex + 1] - 1;
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Debug.assert(isLineBreak(sourceFile.text.charCodeAt(pos)));
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// walk backwards skipping line breaks, stop the the beginning of current line.
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// i.e:
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// <some text>
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// $ <- end of line for this position should match the start position
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while (start <= pos && isLineBreak(sourceFile.text.charCodeAt(pos))) {
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pos--;
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}
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return pos;
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}
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}
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export function getStartPositionOfLine(line: number, sourceFile: SourceFile): number {
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Debug.assert(line >= 1);
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return sourceFile.getLineStarts()[line - 1];
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}
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export function getStartLinePositionForPosition(position: number, sourceFile: SourceFile): number {
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var lineStarts = sourceFile.getLineStarts();
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var line = sourceFile.getLineAndCharacterFromPosition(position).line;
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return lineStarts[line - 1];
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}
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export function rangeContainsRange(r1: TextRange, r2: TextRange): boolean {
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return startEndContainsRange(r1.pos, r1.end, r2);
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}
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export function startEndContainsRange(start: number, end: number, range: TextRange): boolean {
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return start <= range.pos && end >= range.end;
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}
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export function rangeContainsStartEnd(range: TextRange, start: number, end: number): boolean {
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return range.pos <= start && range.end >= end;
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}
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export function rangeOverlapsWithStartEnd(r1: TextRange, start: number, end: number) {
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return startEndOverlapsWithStartEnd(r1.pos, r1.end, start, end);
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}
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export function startEndOverlapsWithStartEnd(start1: number, end1: number, start2: number, end2: number) {
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var start = Math.max(start1, start2);
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var end = Math.min(end1, end2);
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return start < end;
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}
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export function findListItemInfo(node: Node): ListItemInfo {
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var syntaxList = findContainingList(node);
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// It is possible at this point for syntaxList to be undefined, either if
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// node.parent had no list child, or if none of its list children contained
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// the span of node. If this happens, return undefined. The caller should
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// handle this case.
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if (!syntaxList) {
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return undefined;
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}
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var children = syntaxList.getChildren();
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var index = indexOf(children, node);
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return {
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listItemIndex: index,
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list: syntaxList
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};
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}
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export function findChildOfKind(n: Node, kind: SyntaxKind, sourceFile?: SourceFile): Node {
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return forEach(n.getChildren(sourceFile), c => c.kind === kind && c);
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}
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export function findContainingList(node: Node): Node {
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// The node might be a list element (nonsynthetic) or a comma (synthetic). Either way, it will
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// be parented by the container of the SyntaxList, not the SyntaxList itself.
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// In order to find the list item index, we first need to locate SyntaxList itself and then search
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// for the position of the relevant node (or comma).
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var syntaxList = forEach(node.parent.getChildren(), c => {
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// find syntax list that covers the span of the node
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if (c.kind === SyntaxKind.SyntaxList && c.pos <= node.pos && c.end >= node.end) {
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return c;
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}
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});
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return syntaxList;
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}
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/**
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* Includes the start position of each child, but excludes the end.
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*/
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export function findListItemIndexContainingPosition(list: Node, position: number): number {
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Debug.assert(list.kind === SyntaxKind.SyntaxList);
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var children = list.getChildren();
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for (var i = 0; i < children.length; i++) {
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if (children[i].pos <= position && children[i].end > position) {
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return i;
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}
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}
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return -1;
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}
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/* Gets the token whose text has range [start, end) and
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* position >= start and (position < end or (position === end && token is keyword or identifier))
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*/
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export function getTouchingWord(sourceFile: SourceFile, position: number): Node {
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return getTouchingToken(sourceFile, position, n => isWord(n.kind));
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}
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/* Gets the token whose text has range [start, end) and position >= start
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* and (position < end or (position === end && token is keyword or identifier or numeric\string litera))
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*/
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export function getTouchingPropertyName(sourceFile: SourceFile, position: number): Node {
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return getTouchingToken(sourceFile, position, n => isPropertyName(n.kind));
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}
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/** Returns the token if position is in [start, end) or if position === end and includeItemAtEndPosition(token) === true */
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export function getTouchingToken(sourceFile: SourceFile, position: number, includeItemAtEndPosition?: (n: Node) => boolean): Node {
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return getTokenAtPositionWorker(sourceFile, position, /*allowPositionInLeadingTrivia*/ false, includeItemAtEndPosition);
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}
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/** Returns a token if position is in [start-of-leading-trivia, end) */
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export function getTokenAtPosition(sourceFile: SourceFile, position: number): Node {
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return getTokenAtPositionWorker(sourceFile, position, /*allowPositionInLeadingTrivia*/ true, /*includeItemAtEndPosition*/ undefined);
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}
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/** Get the token whose text contains the position */
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function getTokenAtPositionWorker(sourceFile: SourceFile, position: number, allowPositionInLeadingTrivia: boolean, includeItemAtEndPosition: (n: Node) => boolean): Node {
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var current: Node = sourceFile;
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outer: while (true) {
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if (isToken(current)) {
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// exit early
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return current;
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}
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// find the child that contains 'position'
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for (var i = 0, n = current.getChildCount(sourceFile); i < n; i++) {
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var child = current.getChildAt(i);
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var start = allowPositionInLeadingTrivia ? child.getFullStart() : child.getStart(sourceFile);
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if (start <= position) {
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var end = child.getEnd();
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if (position < end || (position === end && child.kind === SyntaxKind.EndOfFileToken)) {
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current = child;
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continue outer;
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}
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else if (includeItemAtEndPosition && end === position) {
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var previousToken = findPrecedingToken(position, sourceFile, child);
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if (previousToken && includeItemAtEndPosition(previousToken)) {
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return previousToken;
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}
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}
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}
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}
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return current;
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}
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}
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/**
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* The token on the left of the position is the token that strictly includes the position
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* or sits to the left of the cursor if it is on a boundary. For example
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*
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* fo|o -> will return foo
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* foo <comment> |bar -> will return foo
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*
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*/
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export function findTokenOnLeftOfPosition(file: SourceFile, position: number): Node {
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// Ideally, getTokenAtPosition should return a token. However, it is currently
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// broken, so we do a check to make sure the result was indeed a token.
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var tokenAtPosition = getTokenAtPosition(file, position);
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if (isToken(tokenAtPosition) && position > tokenAtPosition.getStart(file) && position < tokenAtPosition.getEnd()) {
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return tokenAtPosition;
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}
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return findPrecedingToken(position, file);
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}
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export function findNextToken(previousToken: Node, parent: Node): Node {
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return find(parent);
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function find(n: Node): Node {
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if (isToken(n) && n.pos === previousToken.end) {
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// this is token that starts at the end of previous token - return it
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return n;
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}
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var children = n.getChildren();
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for (var i = 0, len = children.length; i < len; ++i) {
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var child = children[i];
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var shouldDiveInChildNode =
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// previous token is enclosed somewhere in the child
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(child.pos <= previousToken.pos && child.end > previousToken.end) ||
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// previous token ends exactly at the beginning of child
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(child.pos === previousToken.end);
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if (shouldDiveInChildNode && nodeHasTokens(child)) {
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return find(child);
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}
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}
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return undefined;
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}
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}
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export function findPrecedingToken(position: number, sourceFile: SourceFile, startNode?: Node): Node {
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return find(startNode || sourceFile);
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function findRightmostToken(n: Node): Node {
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if (isToken(n)) {
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return n;
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}
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var children = n.getChildren();
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var candidate = findRightmostChildNodeWithTokens(children, /*exclusiveStartPosition*/ children.length);
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return candidate && findRightmostToken(candidate);
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}
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function find(n: Node): Node {
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if (isToken(n)) {
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return n;
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}
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var children = n.getChildren();
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for (var i = 0, len = children.length; i < len; ++i) {
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var child = children[i];
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if (nodeHasTokens(child)) {
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if (position <= child.end) {
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if (child.getStart(sourceFile) >= position) {
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// actual start of the node is past the position - previous token should be at the end of previous child
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var candidate = findRightmostChildNodeWithTokens(children, /*exclusiveStartPosition*/ i);
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return candidate && findRightmostToken(candidate)
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}
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else {
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// candidate should be in this node
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return find(child);
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}
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}
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}
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}
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Debug.assert(startNode !== undefined || n.kind === SyntaxKind.SourceFile);
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// Here we know that none of child token nodes embrace the position,
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// the only known case is when position is at the end of the file.
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// Try to find the rightmost token in the file without filtering.
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// Namely we are skipping the check: 'position < node.end'
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if (children.length) {
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var candidate = findRightmostChildNodeWithTokens(children, /*exclusiveStartPosition*/ children.length);
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return candidate && findRightmostToken(candidate);
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}
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}
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/// finds last node that is considered as candidate for search (isCandidate(node) === true) starting from 'exclusiveStartPosition'
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function findRightmostChildNodeWithTokens(children: Node[], exclusiveStartPosition: number): Node {
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for (var i = exclusiveStartPosition - 1; i >= 0; --i) {
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if (nodeHasTokens(children[i])) {
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return children[i];
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}
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}
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}
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}
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function nodeHasTokens(n: Node): boolean {
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if (n.kind === SyntaxKind.Unknown) {
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return false;
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}
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// If we have a token or node that has a non-zero width, it must have tokens.
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// Note, that getWidth() does not take trivia into account.
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return n.getWidth() !== 0;
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}
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export function getTypeArgumentOrTypeParameterList(node: Node): NodeArray<Node> {
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if (node.kind === SyntaxKind.TypeReference || node.kind === SyntaxKind.CallExpression) {
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return (<CallExpression>node).typeArguments;
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}
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if (isAnyFunction(node) || node.kind === SyntaxKind.ClassDeclaration || node.kind === SyntaxKind.InterfaceDeclaration) {
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return (<FunctionLikeDeclaration>node).typeParameters;
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}
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return undefined;
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}
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export function isToken(n: Node): boolean {
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return n.kind >= SyntaxKind.FirstToken && n.kind <= SyntaxKind.LastToken;
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}
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function isWord(kind: SyntaxKind): boolean {
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return kind === SyntaxKind.Identifier || isKeyword(kind);
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}
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function isPropertyName(kind: SyntaxKind): boolean {
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return kind === SyntaxKind.StringLiteral || kind === SyntaxKind.NumericLiteral || isWord(kind);
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}
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export function isComment(kind: SyntaxKind): boolean {
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return kind === SyntaxKind.SingleLineCommentTrivia || kind === SyntaxKind.MultiLineCommentTrivia;
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}
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export function isPunctuation(kind: SyntaxKind): boolean {
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return SyntaxKind.FirstPunctuation <= kind && kind <= SyntaxKind.LastPunctuation;
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}
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export function isInsideTemplateLiteral(node: LiteralExpression, position: number) {
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return (node.getStart() < position && position < node.getEnd())
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|| (isUnterminatedTemplateEnd(node) && position >= node.getEnd());
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}
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} |