358 lines
10 KiB
TypeScript
358 lines
10 KiB
TypeScript
/**
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* @license
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* Copyright Google Inc. All Rights Reserved.
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*
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* Use of this source code is governed by an MIT-style license that can be
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* found in the LICENSE file at https://angular.io/license
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*/
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import {Inject, Injectable, PACKAGE_ROOT_URL} from '@angular/core';
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import {StringWrapper, isPresent, isBlank, RegExpWrapper,} from '../src/facade/lang';
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const _ASSET_SCHEME = 'asset:';
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/**
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* Create a {@link UrlResolver} with no package prefix.
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*/
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export function createUrlResolverWithoutPackagePrefix(): UrlResolver {
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return new UrlResolver();
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}
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export function createOfflineCompileUrlResolver(): UrlResolver {
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return new UrlResolver(_ASSET_SCHEME);
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}
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/**
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* A default provider for {@link PACKAGE_ROOT_URL} that maps to '/'.
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*/
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export var DEFAULT_PACKAGE_URL_PROVIDER = {
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provide: PACKAGE_ROOT_URL,
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useValue: '/'
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};
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/**
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* Used by the {@link Compiler} when resolving HTML and CSS template URLs.
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*
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* This class can be overridden by the application developer to create custom behavior.
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*
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* See {@link Compiler}
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*
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* ## Example
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*
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* {@example compiler/ts/url_resolver/url_resolver.ts region='url_resolver'}
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*
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* @security When compiling templates at runtime, you must
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* ensure that the entire template comes from a trusted source.
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* Attacker-controlled data introduced by a template could expose your
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* application to XSS risks. For more detail, see the [Security Guide](http://g.co/ng/security).
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*/
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@Injectable()
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export class UrlResolver {
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constructor(@Inject(PACKAGE_ROOT_URL) private _packagePrefix: string = null) {}
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/**
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* Resolves the `url` given the `baseUrl`:
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* - when the `url` is null, the `baseUrl` is returned,
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* - if `url` is relative ('path/to/here', './path/to/here'), the resolved url is a combination of
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* `baseUrl` and `url`,
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* - if `url` is absolute (it has a scheme: 'http://', 'https://' or start with '/'), the `url` is
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* returned as is (ignoring the `baseUrl`)
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*/
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resolve(baseUrl: string, url: string): string {
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var resolvedUrl = url;
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if (isPresent(baseUrl) && baseUrl.length > 0) {
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resolvedUrl = _resolveUrl(baseUrl, resolvedUrl);
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}
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var resolvedParts = _split(resolvedUrl);
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var prefix = this._packagePrefix;
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if (isPresent(prefix) && isPresent(resolvedParts) &&
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resolvedParts[_ComponentIndex.Scheme] == 'package') {
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var path = resolvedParts[_ComponentIndex.Path];
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if (this._packagePrefix === _ASSET_SCHEME) {
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var pathSegements = path.split(/\//);
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resolvedUrl = `asset:${pathSegements[0]}/lib/${pathSegements.slice(1).join('/')}`;
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} else {
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prefix = StringWrapper.stripRight(prefix, '/');
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path = StringWrapper.stripLeft(path, '/');
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return `${prefix}/${path}`;
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}
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}
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return resolvedUrl;
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}
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}
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/**
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* Extract the scheme of a URL.
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*/
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export function getUrlScheme(url: string): string {
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var match = _split(url);
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return (match && match[_ComponentIndex.Scheme]) || '';
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}
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// The code below is adapted from Traceur:
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// https://github.com/google/traceur-compiler/blob/9511c1dafa972bf0de1202a8a863bad02f0f95a8/src/runtime/url.js
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/**
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* Builds a URI string from already-encoded parts.
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*
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* No encoding is performed. Any component may be omitted as either null or
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* undefined.
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*
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* @param opt_scheme The scheme such as 'http'.
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* @param opt_userInfo The user name before the '@'.
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* @param opt_domain The domain such as 'www.google.com', already
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* URI-encoded.
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* @param opt_port The port number.
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* @param opt_path The path, already URI-encoded. If it is not
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* empty, it must begin with a slash.
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* @param opt_queryData The URI-encoded query data.
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* @param opt_fragment The URI-encoded fragment identifier.
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* @return The fully combined URI.
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*/
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function _buildFromEncodedParts(
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opt_scheme?: string, opt_userInfo?: string, opt_domain?: string, opt_port?: string,
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opt_path?: string, opt_queryData?: string, opt_fragment?: string): string {
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var out: string[] = [];
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if (isPresent(opt_scheme)) {
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out.push(opt_scheme + ':');
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}
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if (isPresent(opt_domain)) {
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out.push('//');
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if (isPresent(opt_userInfo)) {
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out.push(opt_userInfo + '@');
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}
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out.push(opt_domain);
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if (isPresent(opt_port)) {
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out.push(':' + opt_port);
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}
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}
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if (isPresent(opt_path)) {
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out.push(opt_path);
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}
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if (isPresent(opt_queryData)) {
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out.push('?' + opt_queryData);
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}
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if (isPresent(opt_fragment)) {
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out.push('#' + opt_fragment);
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}
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return out.join('');
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}
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/**
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* A regular expression for breaking a URI into its component parts.
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*
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* {@link http://www.gbiv.com/protocols/uri/rfc/rfc3986.html#RFC2234} says
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* As the "first-match-wins" algorithm is identical to the "greedy"
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* disambiguation method used by POSIX regular expressions, it is natural and
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* commonplace to use a regular expression for parsing the potential five
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* components of a URI reference.
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*
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* The following line is the regular expression for breaking-down a
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* well-formed URI reference into its components.
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*
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* <pre>
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* ^(([^:/?#]+):)?(//([^/?#]*))?([^?#]*)(\?([^#]*))?(#(.*))?
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* 12 3 4 5 6 7 8 9
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* </pre>
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*
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* The numbers in the second line above are only to assist readability; they
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* indicate the reference points for each subexpression (i.e., each paired
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* parenthesis). We refer to the value matched for subexpression <n> as $<n>.
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* For example, matching the above expression to
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* <pre>
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* http://www.ics.uci.edu/pub/ietf/uri/#Related
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* </pre>
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* results in the following subexpression matches:
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* <pre>
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* $1 = http:
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* $2 = http
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* $3 = //www.ics.uci.edu
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* $4 = www.ics.uci.edu
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* $5 = /pub/ietf/uri/
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* $6 = <undefined>
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* $7 = <undefined>
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* $8 = #Related
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* $9 = Related
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* </pre>
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* where <undefined> indicates that the component is not present, as is the
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* case for the query component in the above example. Therefore, we can
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* determine the value of the five components as
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* <pre>
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* scheme = $2
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* authority = $4
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* path = $5
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* query = $7
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* fragment = $9
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* </pre>
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*
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* The regular expression has been modified slightly to expose the
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* userInfo, domain, and port separately from the authority.
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* The modified version yields
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* <pre>
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* $1 = http scheme
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* $2 = <undefined> userInfo -\
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* $3 = www.ics.uci.edu domain | authority
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* $4 = <undefined> port -/
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* $5 = /pub/ietf/uri/ path
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* $6 = <undefined> query without ?
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* $7 = Related fragment without #
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* </pre>
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* @type {!RegExp}
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* @internal
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*/
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var _splitRe = RegExpWrapper.create(
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'^' +
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'(?:' +
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'([^:/?#.]+)' + // scheme - ignore special characters
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// used by other URL parts such as :,
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// ?, /, #, and .
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':)?' +
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'(?://' +
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'(?:([^/?#]*)@)?' + // userInfo
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'([\\w\\d\\-\\u0100-\\uffff.%]*)' + // domain - restrict to letters,
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// digits, dashes, dots, percent
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// escapes, and unicode characters.
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'(?::([0-9]+))?' + // port
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')?' +
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'([^?#]+)?' + // path
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'(?:\\?([^#]*))?' + // query
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'(?:#(.*))?' + // fragment
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'$');
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/**
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* The index of each URI component in the return value of goog.uri.utils.split.
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* @enum {number}
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*/
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enum _ComponentIndex {
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Scheme = 1,
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UserInfo,
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Domain,
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Port,
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Path,
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QueryData,
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Fragment
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}
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/**
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* Splits a URI into its component parts.
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*
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* Each component can be accessed via the component indices; for example:
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* <pre>
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* goog.uri.utils.split(someStr)[goog.uri.utils.CompontentIndex.QUERY_DATA];
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* </pre>
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*
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* @param uri The URI string to examine.
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* @return Each component still URI-encoded.
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* Each component that is present will contain the encoded value, whereas
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* components that are not present will be undefined or empty, depending
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* on the browser's regular expression implementation. Never null, since
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* arbitrary strings may still look like path names.
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*/
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function _split(uri: string): Array<string|any> {
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return RegExpWrapper.firstMatch(_splitRe, uri);
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}
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/**
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* Removes dot segments in given path component, as described in
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* RFC 3986, section 5.2.4.
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*
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* @param path A non-empty path component.
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* @return Path component with removed dot segments.
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*/
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function _removeDotSegments(path: string): string {
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if (path == '/') return '/';
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var leadingSlash = path[0] == '/' ? '/' : '';
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var trailingSlash = path[path.length - 1] === '/' ? '/' : '';
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var segments = path.split('/');
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var out: string[] = [];
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var up = 0;
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for (var pos = 0; pos < segments.length; pos++) {
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var segment = segments[pos];
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switch (segment) {
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case '':
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case '.':
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break;
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case '..':
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if (out.length > 0) {
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out.pop();
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} else {
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up++;
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}
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break;
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default:
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out.push(segment);
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}
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}
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if (leadingSlash == '') {
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while (up-- > 0) {
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out.unshift('..');
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}
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if (out.length === 0) out.push('.');
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}
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return leadingSlash + out.join('/') + trailingSlash;
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}
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/**
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* Takes an array of the parts from split and canonicalizes the path part
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* and then joins all the parts.
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*/
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function _joinAndCanonicalizePath(parts: any[]): string {
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var path = parts[_ComponentIndex.Path];
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path = isBlank(path) ? '' : _removeDotSegments(path);
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parts[_ComponentIndex.Path] = path;
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return _buildFromEncodedParts(
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parts[_ComponentIndex.Scheme], parts[_ComponentIndex.UserInfo], parts[_ComponentIndex.Domain],
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parts[_ComponentIndex.Port], path, parts[_ComponentIndex.QueryData],
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parts[_ComponentIndex.Fragment]);
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}
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/**
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* Resolves a URL.
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* @param base The URL acting as the base URL.
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* @param to The URL to resolve.
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*/
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function _resolveUrl(base: string, url: string): string {
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var parts = _split(encodeURI(url));
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var baseParts = _split(base);
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if (isPresent(parts[_ComponentIndex.Scheme])) {
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return _joinAndCanonicalizePath(parts);
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} else {
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parts[_ComponentIndex.Scheme] = baseParts[_ComponentIndex.Scheme];
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}
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for (var i = _ComponentIndex.Scheme; i <= _ComponentIndex.Port; i++) {
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if (isBlank(parts[i])) {
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parts[i] = baseParts[i];
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}
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}
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if (parts[_ComponentIndex.Path][0] == '/') {
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return _joinAndCanonicalizePath(parts);
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}
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var path = baseParts[_ComponentIndex.Path];
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if (isBlank(path)) path = '/';
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var index = path.lastIndexOf('/');
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path = path.substring(0, index + 1) + parts[_ComponentIndex.Path];
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parts[_ComponentIndex.Path] = path;
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return _joinAndCanonicalizePath(parts);
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}
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