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'use strict';
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const FreeList = require('internal/freelist').FreeList;
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const HTTPParser = process.binding('http_parser').HTTPParser;
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const incoming = require('_http_incoming');
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const IncomingMessage = incoming.IncomingMessage;
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const readStart = incoming.readStart;
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const readStop = incoming.readStop;
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const debug = require('util').debuglog('http');
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exports.debug = debug;
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exports.CRLF = '\r\n';
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exports.chunkExpression = /chunk/i;
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exports.continueExpression = /100-continue/i;
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exports.methods = HTTPParser.methods;
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const kOnHeaders = HTTPParser.kOnHeaders | 0;
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const kOnHeadersComplete = HTTPParser.kOnHeadersComplete | 0;
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const kOnBody = HTTPParser.kOnBody | 0;
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const kOnMessageComplete = HTTPParser.kOnMessageComplete | 0;
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const kOnExecute = HTTPParser.kOnExecute | 0;
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// Only called in the slow case where slow means
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// that the request headers were either fragmented
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// across multiple TCP packets or too large to be
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// processed in a single run. This method is also
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// called to process trailing HTTP headers.
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function parserOnHeaders(headers, url) {
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// Once we exceeded headers limit - stop collecting them
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if (this.maxHeaderPairs <= 0 ||
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this._headers.length < this.maxHeaderPairs) {
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this._headers = this._headers.concat(headers);
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}
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this._url += url;
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}
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// `headers` and `url` are set only if .onHeaders() has not been called for
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// this request.
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// `url` is not set for response parsers but that's not applicable here since
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// all our parsers are request parsers.
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function parserOnHeadersComplete(versionMajor, versionMinor, headers, method,
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url, statusCode, statusMessage, upgrade,
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shouldKeepAlive) {
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var parser = this;
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if (!headers) {
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headers = parser._headers;
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parser._headers = [];
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}
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if (!url) {
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url = parser._url;
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parser._url = '';
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}
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parser.incoming = new IncomingMessage(parser.socket);
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parser.incoming.httpVersionMajor = versionMajor;
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parser.incoming.httpVersionMinor = versionMinor;
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parser.incoming.httpVersion = versionMajor + '.' + versionMinor;
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parser.incoming.url = url;
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var n = headers.length;
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// If parser.maxHeaderPairs <= 0 assume that there's no limit.
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if (parser.maxHeaderPairs > 0)
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n = Math.min(n, parser.maxHeaderPairs);
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parser.incoming._addHeaderLines(headers, n);
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if (typeof method === 'number') {
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// server only
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parser.incoming.method = HTTPParser.methods[method];
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} else {
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// client only
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parser.incoming.statusCode = statusCode;
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parser.incoming.statusMessage = statusMessage;
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}
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if (upgrade && parser.outgoing !== null && !parser.outgoing.upgrading) {
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// The client made non-upgrade request, and server is just advertising
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// supported protocols.
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//
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// See RFC7230 Section 6.7
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upgrade = false;
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}
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parser.incoming.upgrade = upgrade;
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var skipBody = 0; // response to HEAD or CONNECT
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if (!upgrade) {
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// For upgraded connections and CONNECT method request, we'll emit this
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// after parser.execute so that we can capture the first part of the new
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// protocol.
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skipBody = parser.onIncoming(parser.incoming, shouldKeepAlive);
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}
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if (typeof skipBody !== 'number')
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return skipBody ? 1 : 0;
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else
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return skipBody;
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}
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// XXX This is a mess.
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// TODO: http.Parser should be a Writable emits request/response events.
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function parserOnBody(b, start, len) {
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var parser = this;
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var stream = parser.incoming;
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// if the stream has already been removed, then drop it.
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if (!stream)
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return;
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var socket = stream.socket;
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// pretend this was the result of a stream._read call.
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if (len > 0 && !stream._dumped) {
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var slice = b.slice(start, start + len);
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var ret = stream.push(slice);
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if (!ret)
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readStop(socket);
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}
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}
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function parserOnMessageComplete() {
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var parser = this;
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var stream = parser.incoming;
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if (stream) {
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stream.complete = true;
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// Emit any trailing headers.
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var headers = parser._headers;
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if (headers) {
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parser.incoming._addHeaderLines(headers, headers.length);
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parser._headers = [];
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parser._url = '';
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}
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// For emit end event
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stream.push(null);
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}
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// force to read the next incoming message
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readStart(parser.socket);
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}
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var parsers = new FreeList('parsers', 1000, function() {
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var parser = new HTTPParser(HTTPParser.REQUEST);
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parser._headers = [];
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parser._url = '';
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parser._consumed = false;
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parser.socket = null;
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parser.incoming = null;
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parser.outgoing = null;
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// Only called in the slow case where slow means
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// that the request headers were either fragmented
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// across multiple TCP packets or too large to be
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// processed in a single run. This method is also
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// called to process trailing HTTP headers.
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parser[kOnHeaders] = parserOnHeaders;
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parser[kOnHeadersComplete] = parserOnHeadersComplete;
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parser[kOnBody] = parserOnBody;
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parser[kOnMessageComplete] = parserOnMessageComplete;
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parser[kOnExecute] = null;
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return parser;
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});
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exports.parsers = parsers;
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// Free the parser and also break any links that it
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// might have to any other things.
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// TODO: All parser data should be attached to a
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// single object, so that it can be easily cleaned
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// up by doing `parser.data = {}`, which should
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// be done in FreeList.free. `parsers.free(parser)`
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// should be all that is needed.
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function freeParser(parser, req, socket) {
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if (parser) {
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parser._headers = [];
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parser.onIncoming = null;
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if (parser._consumed)
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parser.unconsume();
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parser._consumed = false;
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if (parser.socket)
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parser.socket.parser = null;
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parser.socket = null;
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parser.incoming = null;
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parser.outgoing = null;
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parser[kOnExecute] = null;
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if (parsers.free(parser) === false)
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parser.close();
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parser = null;
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}
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if (req) {
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req.parser = null;
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}
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if (socket) {
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socket.parser = null;
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}
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}
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exports.freeParser = freeParser;
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function ondrain() {
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if (this._httpMessage) this._httpMessage.emit('drain');
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}
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function httpSocketSetup(socket) {
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socket.removeListener('drain', ondrain);
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socket.on('drain', ondrain);
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}
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exports.httpSocketSetup = httpSocketSetup;
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/**
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* Verifies that the given val is a valid HTTP token
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* per the rules defined in RFC 7230
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* See https://tools.ietf.org/html/rfc7230#section-3.2.6
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*
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* This implementation of checkIsHttpToken() loops over the string instead of
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* using a regular expression since the former is up to 180% faster with v8 4.9
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* depending on the string length (the shorter the string, the larger the
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* performance difference)
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**/
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function checkIsHttpToken(val) {
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if (typeof val !== 'string' || val.length === 0)
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return false;
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for (var i = 0, len = val.length; i < len; i++) {
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var ch = val.charCodeAt(i);
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if (ch >= 65 && ch <= 90) // A-Z
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continue;
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if (ch >= 97 && ch <= 122) // a-z
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continue;
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// ^ => 94
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// _ => 95
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// ` => 96
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// | => 124
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// ~ => 126
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if (ch === 94 || ch === 95 || ch === 96 || ch === 124 || ch === 126)
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continue;
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if (ch >= 48 && ch <= 57) // 0-9
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continue;
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// ! => 33
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// # => 35
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// $ => 36
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// % => 37
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// & => 38
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// ' => 39
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// * => 42
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// + => 43
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// - => 45
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// . => 46
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if (ch >= 33 && ch <= 46) {
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if (ch === 34 || ch === 40 || ch === 41 || ch === 44)
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return false;
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continue;
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}
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return false;
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}
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return true;
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}
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exports._checkIsHttpToken = checkIsHttpToken;
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/**
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* True if val contains an invalid field-vchar
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* field-value = *( field-content / obs-fold )
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* field-content = field-vchar [ 1*( SP / HTAB ) field-vchar ]
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* field-vchar = VCHAR / obs-text
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**/
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function checkInvalidHeaderChar(val) {
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val = '' + val;
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for (var i = 0; i < val.length; i++) {
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const ch = val.charCodeAt(i);
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if (ch === 9) continue;
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if (ch <= 31 || ch > 255 || ch === 127) return true;
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}
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return false;
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}
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exports._checkInvalidHeaderChar = checkInvalidHeaderChar;
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