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3e6ea62841
This change is to prevent needed a separate stat syscall for each file when using readdir. For consistency, this PR also modifies std's `WalkEntry` interface to extend `DirEntry` with an additional `path` field.
262 lines
7.2 KiB
TypeScript
262 lines
7.2 KiB
TypeScript
import {
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GlobOptions,
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SEP_PATTERN,
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globToRegExp,
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isAbsolute,
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isGlob,
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isWindows,
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joinGlobs,
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normalize,
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} from "../path/mod.ts";
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import {
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WalkEntry,
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createWalkEntry,
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createWalkEntrySync,
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walk,
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walkSync,
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} from "./walk.ts";
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import { assert } from "../testing/asserts.ts";
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const { cwd } = Deno;
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type FileInfo = Deno.FileInfo;
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export interface ExpandGlobOptions extends GlobOptions {
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root?: string;
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exclude?: string[];
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includeDirs?: boolean;
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}
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interface SplitPath {
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segments: string[];
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isAbsolute: boolean;
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hasTrailingSep: boolean;
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// Defined for any absolute Windows path.
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winRoot?: string;
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}
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// TODO: Maybe make this public somewhere.
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function split(path: string): SplitPath {
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const s = SEP_PATTERN.source;
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const segments = path
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.replace(new RegExp(`^${s}|${s}$`, "g"), "")
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.split(SEP_PATTERN);
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const isAbsolute_ = isAbsolute(path);
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return {
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segments,
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isAbsolute: isAbsolute_,
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hasTrailingSep: !!path.match(new RegExp(`${s}$`)),
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winRoot: isWindows && isAbsolute_ ? segments.shift() : undefined,
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};
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}
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function throwUnlessNotFound(error: Error): void {
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if (!(error instanceof Deno.errors.NotFound)) {
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throw error;
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}
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}
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function comparePath(a: WalkEntry, b: WalkEntry): number {
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if (a.path < b.path) return -1;
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if (a.path > b.path) return 1;
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return 0;
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}
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/**
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* Expand the glob string from the specified `root` directory and yield each
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* result as a `WalkEntry` object.
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*/
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export async function* expandGlob(
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glob: string,
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{
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root = cwd(),
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exclude = [],
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includeDirs = true,
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extended = false,
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globstar = false,
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}: ExpandGlobOptions = {}
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): AsyncIterableIterator<WalkEntry> {
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const globOptions: GlobOptions = { extended, globstar };
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const absRoot = isAbsolute(root)
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? normalize(root)
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: joinGlobs([cwd(), root], globOptions);
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const resolveFromRoot = (path: string): string =>
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isAbsolute(path)
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? normalize(path)
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: joinGlobs([absRoot, path], globOptions);
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const excludePatterns = exclude
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.map(resolveFromRoot)
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.map((s: string): RegExp => globToRegExp(s, globOptions));
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const shouldInclude = (path: string): boolean =>
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!excludePatterns.some((p: RegExp): boolean => !!path.match(p));
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const { segments, hasTrailingSep, winRoot } = split(resolveFromRoot(glob));
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let fixedRoot = winRoot != undefined ? winRoot : "/";
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while (segments.length > 0 && !isGlob(segments[0])) {
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const seg = segments.shift();
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assert(seg != null);
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fixedRoot = joinGlobs([fixedRoot, seg], globOptions);
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}
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let fixedRootInfo: WalkEntry;
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try {
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fixedRootInfo = await createWalkEntry(fixedRoot);
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} catch (error) {
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return throwUnlessNotFound(error);
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}
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async function* advanceMatch(
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walkInfo: WalkEntry,
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globSegment: string
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): AsyncIterableIterator<WalkEntry> {
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if (!walkInfo.isDirectory) {
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return;
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} else if (globSegment == "..") {
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const parentPath = joinGlobs([walkInfo.path, ".."], globOptions);
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try {
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if (shouldInclude(parentPath)) {
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return yield await createWalkEntry(parentPath);
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}
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} catch (error) {
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throwUnlessNotFound(error);
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}
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return;
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} else if (globSegment == "**") {
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return yield* walk(walkInfo.path, {
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includeFiles: false,
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skip: excludePatterns,
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});
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}
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yield* walk(walkInfo.path, {
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maxDepth: 1,
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match: [
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globToRegExp(
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joinGlobs([walkInfo.path, globSegment], globOptions),
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globOptions
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),
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],
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skip: excludePatterns,
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});
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}
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let currentMatches: WalkEntry[] = [fixedRootInfo];
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for (const segment of segments) {
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// Advancing the list of current matches may introduce duplicates, so we
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// pass everything through this Map.
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const nextMatchMap: Map<string, WalkEntry> = new Map();
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for (const currentMatch of currentMatches) {
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for await (const nextMatch of advanceMatch(currentMatch, segment)) {
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nextMatchMap.set(nextMatch.path, nextMatch);
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}
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}
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currentMatches = [...nextMatchMap.values()].sort(comparePath);
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}
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if (hasTrailingSep) {
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currentMatches = currentMatches.filter(
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(entry: WalkEntry): boolean => entry.isDirectory
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);
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}
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if (!includeDirs) {
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currentMatches = currentMatches.filter(
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(entry: WalkEntry): boolean => !entry.isDirectory
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);
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}
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yield* currentMatches;
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}
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/** Synchronous version of `expandGlob()`. */
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export function* expandGlobSync(
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glob: string,
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{
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root = cwd(),
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exclude = [],
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includeDirs = true,
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extended = false,
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globstar = false,
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}: ExpandGlobOptions = {}
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): IterableIterator<WalkEntry> {
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const globOptions: GlobOptions = { extended, globstar };
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const absRoot = isAbsolute(root)
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? normalize(root)
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: joinGlobs([cwd(), root], globOptions);
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const resolveFromRoot = (path: string): string =>
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isAbsolute(path)
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? normalize(path)
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: joinGlobs([absRoot, path], globOptions);
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const excludePatterns = exclude
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.map(resolveFromRoot)
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.map((s: string): RegExp => globToRegExp(s, globOptions));
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const shouldInclude = (path: string): boolean =>
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!excludePatterns.some((p: RegExp): boolean => !!path.match(p));
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const { segments, hasTrailingSep, winRoot } = split(resolveFromRoot(glob));
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let fixedRoot = winRoot != undefined ? winRoot : "/";
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while (segments.length > 0 && !isGlob(segments[0])) {
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const seg = segments.shift();
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assert(seg != null);
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fixedRoot = joinGlobs([fixedRoot, seg], globOptions);
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}
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let fixedRootInfo: WalkEntry;
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try {
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fixedRootInfo = createWalkEntrySync(fixedRoot);
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} catch (error) {
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return throwUnlessNotFound(error);
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}
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function* advanceMatch(
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walkInfo: WalkEntry,
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globSegment: string
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): IterableIterator<WalkEntry> {
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if (!walkInfo.isDirectory) {
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return;
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} else if (globSegment == "..") {
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const parentPath = joinGlobs([walkInfo.path, ".."], globOptions);
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try {
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if (shouldInclude(parentPath)) {
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return yield createWalkEntrySync(parentPath);
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}
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} catch (error) {
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throwUnlessNotFound(error);
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}
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return;
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} else if (globSegment == "**") {
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return yield* walkSync(walkInfo.path, {
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includeFiles: false,
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skip: excludePatterns,
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});
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}
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yield* walkSync(walkInfo.path, {
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maxDepth: 1,
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match: [
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globToRegExp(
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joinGlobs([walkInfo.path, globSegment], globOptions),
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globOptions
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),
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],
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skip: excludePatterns,
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});
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}
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let currentMatches: WalkEntry[] = [fixedRootInfo];
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for (const segment of segments) {
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// Advancing the list of current matches may introduce duplicates, so we
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// pass everything through this Map.
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const nextMatchMap: Map<string, WalkEntry> = new Map();
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for (const currentMatch of currentMatches) {
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for (const nextMatch of advanceMatch(currentMatch, segment)) {
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nextMatchMap.set(nextMatch.path, nextMatch);
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}
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}
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currentMatches = [...nextMatchMap.values()].sort(comparePath);
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}
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if (hasTrailingSep) {
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currentMatches = currentMatches.filter(
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(entry: WalkEntry): boolean => entry.isDirectory
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);
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}
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if (!includeDirs) {
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currentMatches = currentMatches.filter(
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(entry: WalkEntry): boolean => !entry.isDirectory
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);
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}
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yield* currentMatches;
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}
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