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- !function(e){if("object"==typeof exports&&"undefined"!=typeof module)module.exports=e();else if("function"==typeof define&&define.amd)define([],e);else{var f;"undefined"!=typeof window?f=window:"undefined"!=typeof global?f=global:"undefined"!=typeof self&&(f=self),f.xmpp=e()}}(function(){var define,module,exports;return (function e(t,n,r){function s(o,u){if(!n[o]){if(!t[o]){var a=typeof require=="function"&&require;if(!u&&a)return a(o,!0);if(i)return i(o,!0);var f=new Error("Cannot find module '"+o+"'");throw f.code="MODULE_NOT_FOUND",f}var l=n[o]={exports:{}};t[o][0].call(l.exports,function(e){var n=t[o][1][e];return s(n?n:e)},l,l.exports,e,t,n,r)}return n[o].exports}var i=typeof require=="function"&&require;for(var o=0;o<r.length;o++)s(r[o]);return s})({1:[function(require,module,exports){
- /* jshint -W117 */
- var TraceablePeerConnection = require("./TraceablePeerConnection");
- var SDPDiffer = require("./SDPDiffer");
- var SDPUtil = require("./SDPUtil");
- var SDP = require("./SDP");
-
- // Jingle stuff
- function JingleSession(me, sid, connection, service) {
- this.me = me;
- this.sid = sid;
- this.connection = connection;
- this.initiator = null;
- this.responder = null;
- this.isInitiator = null;
- this.peerjid = null;
- this.state = null;
- this.localSDP = null;
- this.remoteSDP = null;
- this.relayedStreams = [];
- this.startTime = null;
- this.stopTime = null;
- this.media_constraints = null;
- this.pc_constraints = null;
- this.ice_config = {};
- this.drip_container = [];
- this.service = service;
-
- this.usetrickle = true;
- this.usepranswer = false; // early transport warmup -- mind you, this might fail. depends on webrtc issue 1718
- this.usedrip = false; // dripping is sending trickle candidates not one-by-one
-
- this.hadstuncandidate = false;
- this.hadturncandidate = false;
- this.lasticecandidate = false;
-
- this.statsinterval = null;
-
- this.reason = null;
-
- this.addssrc = [];
- this.removessrc = [];
- this.pendingop = null;
- this.switchstreams = false;
-
- this.wait = true;
- this.localStreamsSSRC = null;
-
- /**
- * The indicator which determines whether the (local) video has been muted
- * in response to a user command in contrast to an automatic decision made
- * by the application logic.
- */
- this.videoMuteByUser = false;
- }
-
- //TODO: this array must be removed when firefox implement multistream support
- JingleSession.notReceivedSSRCs = [];
-
- JingleSession.prototype.initiate = function (peerjid, isInitiator) {
- var self = this;
- if (this.state !== null) {
- console.error('attempt to initiate on session ' + this.sid +
- 'in state ' + this.state);
- return;
- }
- this.isInitiator = isInitiator;
- this.state = 'pending';
- this.initiator = isInitiator ? this.me : peerjid;
- this.responder = !isInitiator ? this.me : peerjid;
- this.peerjid = peerjid;
- this.hadstuncandidate = false;
- this.hadturncandidate = false;
- this.lasticecandidate = false;
-
- this.peerconnection
- = new TraceablePeerConnection(
- this.connection.jingle.ice_config,
- this.connection.jingle.pc_constraints );
-
- this.peerconnection.onicecandidate = function (event) {
- self.sendIceCandidate(event.candidate);
- };
- this.peerconnection.onaddstream = function (event) {
- console.log("REMOTE STREAM ADDED: " + event.stream + " - " + event.stream.id);
- self.remoteStreamAdded(event);
- };
- this.peerconnection.onremovestream = function (event) {
- // Remove the stream from remoteStreams
- // FIXME: remotestreamremoved.jingle not defined anywhere(unused)
- $(document).trigger('remotestreamremoved.jingle', [event, self.sid]);
- };
- this.peerconnection.onsignalingstatechange = function (event) {
- if (!(self && self.peerconnection)) return;
- };
- this.peerconnection.oniceconnectionstatechange = function (event) {
- if (!(self && self.peerconnection)) return;
- switch (self.peerconnection.iceConnectionState) {
- case 'connected':
- this.startTime = new Date();
- break;
- case 'disconnected':
- this.stopTime = new Date();
- break;
- }
- onIceConnectionStateChange(self.sid, self);
- };
- // add any local and relayed stream
- RTC.localStreams.forEach(function(stream) {
- self.peerconnection.addStream(stream.getOriginalStream());
- });
- this.relayedStreams.forEach(function(stream) {
- self.peerconnection.addStream(stream);
- });
- };
-
- function onIceConnectionStateChange(sid, session) {
- switch (session.peerconnection.iceConnectionState) {
- case 'checking':
- session.timeChecking = (new Date()).getTime();
- session.firstconnect = true;
- break;
- case 'completed': // on caller side
- case 'connected':
- if (session.firstconnect) {
- session.firstconnect = false;
- var metadata = {};
- metadata.setupTime
- = (new Date()).getTime() - session.timeChecking;
- session.peerconnection.getStats(function (res) {
- if(res && res.result) {
- res.result().forEach(function (report) {
- if (report.type == 'googCandidatePair' &&
- report.stat('googActiveConnection') == 'true') {
- metadata.localCandidateType
- = report.stat('googLocalCandidateType');
- metadata.remoteCandidateType
- = report.stat('googRemoteCandidateType');
-
- // log pair as well so we can get nice pie
- // charts
- metadata.candidatePair
- = report.stat('googLocalCandidateType') +
- ';' +
- report.stat('googRemoteCandidateType');
-
- if (report.stat('googRemoteAddress').indexOf('[') === 0)
- {
- metadata.ipv6 = true;
- }
- }
- });
- }
- });
- }
- break;
- }
- }
-
- JingleSession.prototype.accept = function () {
- var self = this;
- this.state = 'active';
-
- var pranswer = this.peerconnection.localDescription;
- if (!pranswer || pranswer.type != 'pranswer') {
- return;
- }
- console.log('going from pranswer to answer');
- if (this.usetrickle) {
- // remove candidates already sent from session-accept
- var lines = SDPUtil.find_lines(pranswer.sdp, 'a=candidate:');
- for (var i = 0; i < lines.length; i++) {
- pranswer.sdp = pranswer.sdp.replace(lines[i] + '\r\n', '');
- }
- }
- while (SDPUtil.find_line(pranswer.sdp, 'a=inactive')) {
- // FIXME: change any inactive to sendrecv or whatever they were originally
- pranswer.sdp = pranswer.sdp.replace('a=inactive', 'a=sendrecv');
- }
- pranswer = simulcast.reverseTransformLocalDescription(pranswer);
- var prsdp = new SDP(pranswer.sdp);
- var accept = $iq({to: this.peerjid,
- type: 'set'})
- .c('jingle', {xmlns: 'urn:xmpp:jingle:1',
- action: 'session-accept',
- initiator: this.initiator,
- responder: this.responder,
- sid: this.sid });
- prsdp.toJingle(accept, this.initiator == this.me ? 'initiator' : 'responder', this.localStreamsSSRC);
- var sdp = this.peerconnection.localDescription.sdp;
- while (SDPUtil.find_line(sdp, 'a=inactive')) {
- // FIXME: change any inactive to sendrecv or whatever they were originally
- sdp = sdp.replace('a=inactive', 'a=sendrecv');
- }
- var self = this;
- this.peerconnection.setLocalDescription(new RTCSessionDescription({type: 'answer', sdp: sdp}),
- function () {
- //console.log('setLocalDescription success');
- self.setLocalDescription();
-
- self.connection.sendIQ(accept,
- function () {
- var ack = {};
- ack.source = 'answer';
- $(document).trigger('ack.jingle', [self.sid, ack]);
- },
- function (stanza) {
- var error = ($(stanza).find('error').length) ? {
- code: $(stanza).find('error').attr('code'),
- reason: $(stanza).find('error :first')[0].tagName
- }:{};
- error.source = 'answer';
- JingleSession.onJingleError(self.sid, error);
- },
- 10000);
- },
- function (e) {
- console.error('setLocalDescription failed', e);
- }
- );
- };
-
- JingleSession.prototype.terminate = function (reason) {
- this.state = 'ended';
- this.reason = reason;
- this.peerconnection.close();
- if (this.statsinterval !== null) {
- window.clearInterval(this.statsinterval);
- this.statsinterval = null;
- }
- };
-
- JingleSession.prototype.active = function () {
- return this.state == 'active';
- };
-
- JingleSession.prototype.sendIceCandidate = function (candidate) {
- var self = this;
- if (candidate && !this.lasticecandidate) {
- var ice = SDPUtil.iceparams(this.localSDP.media[candidate.sdpMLineIndex], this.localSDP.session);
- var jcand = SDPUtil.candidateToJingle(candidate.candidate);
- if (!(ice && jcand)) {
- console.error('failed to get ice && jcand');
- return;
- }
- ice.xmlns = 'urn:xmpp:jingle:transports:ice-udp:1';
-
- if (jcand.type === 'srflx') {
- this.hadstuncandidate = true;
- } else if (jcand.type === 'relay') {
- this.hadturncandidate = true;
- }
-
- if (this.usetrickle) {
- if (this.usedrip) {
- if (this.drip_container.length === 0) {
- // start 20ms callout
- window.setTimeout(function () {
- if (self.drip_container.length === 0) return;
- self.sendIceCandidates(self.drip_container);
- self.drip_container = [];
- }, 20);
-
- }
- this.drip_container.push(candidate);
- return;
- } else {
- self.sendIceCandidate([candidate]);
- }
- }
- } else {
- //console.log('sendIceCandidate: last candidate.');
- if (!this.usetrickle) {
- //console.log('should send full offer now...');
- var init = $iq({to: this.peerjid,
- type: 'set'})
- .c('jingle', {xmlns: 'urn:xmpp:jingle:1',
- action: this.peerconnection.localDescription.type == 'offer' ? 'session-initiate' : 'session-accept',
- initiator: this.initiator,
- sid: this.sid});
- this.localSDP = new SDP(this.peerconnection.localDescription.sdp);
- var self = this;
- var sendJingle = function (ssrc) {
- if(!ssrc)
- ssrc = {};
- self.localSDP.toJingle(init, self.initiator == self.me ? 'initiator' : 'responder', ssrc);
- self.connection.sendIQ(init,
- function () {
- //console.log('session initiate ack');
- var ack = {};
- ack.source = 'offer';
- $(document).trigger('ack.jingle', [self.sid, ack]);
- },
- function (stanza) {
- self.state = 'error';
- self.peerconnection.close();
- var error = ($(stanza).find('error').length) ? {
- code: $(stanza).find('error').attr('code'),
- reason: $(stanza).find('error :first')[0].tagName,
- }:{};
- error.source = 'offer';
- JingleSession.onJingleError(self.sid, error);
- },
- 10000);
- }
- sendJingle();
- }
- this.lasticecandidate = true;
- console.log('Have we encountered any srflx candidates? ' + this.hadstuncandidate);
- console.log('Have we encountered any relay candidates? ' + this.hadturncandidate);
-
- if (!(this.hadstuncandidate || this.hadturncandidate) && this.peerconnection.signalingState != 'closed') {
- $(document).trigger('nostuncandidates.jingle', [this.sid]);
- }
- }
- };
-
- JingleSession.prototype.sendIceCandidates = function (candidates) {
- console.log('sendIceCandidates', candidates);
- var cand = $iq({to: this.peerjid, type: 'set'})
- .c('jingle', {xmlns: 'urn:xmpp:jingle:1',
- action: 'transport-info',
- initiator: this.initiator,
- sid: this.sid});
- for (var mid = 0; mid < this.localSDP.media.length; mid++) {
- var cands = candidates.filter(function (el) { return el.sdpMLineIndex == mid; });
- var mline = SDPUtil.parse_mline(this.localSDP.media[mid].split('\r\n')[0]);
- if (cands.length > 0) {
- var ice = SDPUtil.iceparams(this.localSDP.media[mid], this.localSDP.session);
- ice.xmlns = 'urn:xmpp:jingle:transports:ice-udp:1';
- cand.c('content', {creator: this.initiator == this.me ? 'initiator' : 'responder',
- name: (cands[0].sdpMid? cands[0].sdpMid : mline.media)
- }).c('transport', ice);
- for (var i = 0; i < cands.length; i++) {
- cand.c('candidate', SDPUtil.candidateToJingle(cands[i].candidate)).up();
- }
- // add fingerprint
- if (SDPUtil.find_line(this.localSDP.media[mid], 'a=fingerprint:', this.localSDP.session)) {
- var tmp = SDPUtil.parse_fingerprint(SDPUtil.find_line(this.localSDP.media[mid], 'a=fingerprint:', this.localSDP.session));
- tmp.required = true;
- cand.c(
- 'fingerprint',
- {xmlns: 'urn:xmpp:jingle:apps:dtls:0'})
- .t(tmp.fingerprint);
- delete tmp.fingerprint;
- cand.attrs(tmp);
- cand.up();
- }
- cand.up(); // transport
- cand.up(); // content
- }
- }
- // might merge last-candidate notification into this, but it is called alot later. See webrtc issue #2340
- //console.log('was this the last candidate', this.lasticecandidate);
- this.connection.sendIQ(cand,
- function () {
- var ack = {};
- ack.source = 'transportinfo';
- $(document).trigger('ack.jingle', [this.sid, ack]);
- },
- function (stanza) {
- var error = ($(stanza).find('error').length) ? {
- code: $(stanza).find('error').attr('code'),
- reason: $(stanza).find('error :first')[0].tagName,
- }:{};
- error.source = 'transportinfo';
- JingleSession.onJingleError(this.sid, error);
- },
- 10000);
- };
-
-
- JingleSession.prototype.sendOffer = function () {
- //console.log('sendOffer...');
- var self = this;
- this.peerconnection.createOffer(function (sdp) {
- self.createdOffer(sdp);
- },
- function (e) {
- console.error('createOffer failed', e);
- },
- this.media_constraints
- );
- };
-
- JingleSession.prototype.createdOffer = function (sdp) {
- //console.log('createdOffer', sdp);
- var self = this;
- this.localSDP = new SDP(sdp.sdp);
- //this.localSDP.mangle();
- var sendJingle = function () {
- var init = $iq({to: this.peerjid,
- type: 'set'})
- .c('jingle', {xmlns: 'urn:xmpp:jingle:1',
- action: 'session-initiate',
- initiator: this.initiator,
- sid: this.sid});
- self.localSDP.toJingle(init, this.initiator == this.me ? 'initiator' : 'responder', this.localStreamsSSRC);
- self.connection.sendIQ(init,
- function () {
- var ack = {};
- ack.source = 'offer';
- $(document).trigger('ack.jingle', [self.sid, ack]);
- },
- function (stanza) {
- self.state = 'error';
- self.peerconnection.close();
- var error = ($(stanza).find('error').length) ? {
- code: $(stanza).find('error').attr('code'),
- reason: $(stanza).find('error :first')[0].tagName,
- }:{};
- error.source = 'offer';
- JingleSession.onJingleError(self.sid, error);
- },
- 10000);
- }
- sdp.sdp = this.localSDP.raw;
- this.peerconnection.setLocalDescription(sdp,
- function () {
- if(self.usetrickle)
- {
- sendJingle();
- }
- self.setLocalDescription();
- //console.log('setLocalDescription success');
- },
- function (e) {
- console.error('setLocalDescription failed', e);
- }
- );
- var cands = SDPUtil.find_lines(this.localSDP.raw, 'a=candidate:');
- for (var i = 0; i < cands.length; i++) {
- var cand = SDPUtil.parse_icecandidate(cands[i]);
- if (cand.type == 'srflx') {
- this.hadstuncandidate = true;
- } else if (cand.type == 'relay') {
- this.hadturncandidate = true;
- }
- }
- };
-
- JingleSession.prototype.setRemoteDescription = function (elem, desctype) {
- //console.log('setting remote description... ', desctype);
- this.remoteSDP = new SDP('');
- this.remoteSDP.fromJingle(elem);
- if (this.peerconnection.remoteDescription !== null) {
- console.log('setRemoteDescription when remote description is not null, should be pranswer', this.peerconnection.remoteDescription);
- if (this.peerconnection.remoteDescription.type == 'pranswer') {
- var pranswer = new SDP(this.peerconnection.remoteDescription.sdp);
- for (var i = 0; i < pranswer.media.length; i++) {
- // make sure we have ice ufrag and pwd
- if (!SDPUtil.find_line(this.remoteSDP.media[i], 'a=ice-ufrag:', this.remoteSDP.session)) {
- if (SDPUtil.find_line(pranswer.media[i], 'a=ice-ufrag:', pranswer.session)) {
- this.remoteSDP.media[i] += SDPUtil.find_line(pranswer.media[i], 'a=ice-ufrag:', pranswer.session) + '\r\n';
- } else {
- console.warn('no ice ufrag?');
- }
- if (SDPUtil.find_line(pranswer.media[i], 'a=ice-pwd:', pranswer.session)) {
- this.remoteSDP.media[i] += SDPUtil.find_line(pranswer.media[i], 'a=ice-pwd:', pranswer.session) + '\r\n';
- } else {
- console.warn('no ice pwd?');
- }
- }
- // copy over candidates
- var lines = SDPUtil.find_lines(pranswer.media[i], 'a=candidate:');
- for (var j = 0; j < lines.length; j++) {
- this.remoteSDP.media[i] += lines[j] + '\r\n';
- }
- }
- this.remoteSDP.raw = this.remoteSDP.session + this.remoteSDP.media.join('');
- }
- }
- var remotedesc = new RTCSessionDescription({type: desctype, sdp: this.remoteSDP.raw});
-
- this.peerconnection.setRemoteDescription(remotedesc,
- function () {
- //console.log('setRemoteDescription success');
- },
- function (e) {
- console.error('setRemoteDescription error', e);
- JingleSession.onJingleFatalError(self, e);
- }
- );
- };
-
- JingleSession.prototype.addIceCandidate = function (elem) {
- var self = this;
- if (this.peerconnection.signalingState == 'closed') {
- return;
- }
- if (!this.peerconnection.remoteDescription && this.peerconnection.signalingState == 'have-local-offer') {
- console.log('trickle ice candidate arriving before session accept...');
- // create a PRANSWER for setRemoteDescription
- if (!this.remoteSDP) {
- var cobbled = 'v=0\r\n' +
- 'o=- ' + '1923518516' + ' 2 IN IP4 0.0.0.0\r\n' +// FIXME
- 's=-\r\n' +
- 't=0 0\r\n';
- // first, take some things from the local description
- for (var i = 0; i < this.localSDP.media.length; i++) {
- cobbled += SDPUtil.find_line(this.localSDP.media[i], 'm=') + '\r\n';
- cobbled += SDPUtil.find_lines(this.localSDP.media[i], 'a=rtpmap:').join('\r\n') + '\r\n';
- if (SDPUtil.find_line(this.localSDP.media[i], 'a=mid:')) {
- cobbled += SDPUtil.find_line(this.localSDP.media[i], 'a=mid:') + '\r\n';
- }
- cobbled += 'a=inactive\r\n';
- }
- this.remoteSDP = new SDP(cobbled);
- }
- // then add things like ice and dtls from remote candidate
- elem.each(function () {
- for (var i = 0; i < self.remoteSDP.media.length; i++) {
- if (SDPUtil.find_line(self.remoteSDP.media[i], 'a=mid:' + $(this).attr('name')) ||
- self.remoteSDP.media[i].indexOf('m=' + $(this).attr('name')) === 0) {
- if (!SDPUtil.find_line(self.remoteSDP.media[i], 'a=ice-ufrag:')) {
- var tmp = $(this).find('transport');
- self.remoteSDP.media[i] += 'a=ice-ufrag:' + tmp.attr('ufrag') + '\r\n';
- self.remoteSDP.media[i] += 'a=ice-pwd:' + tmp.attr('pwd') + '\r\n';
- tmp = $(this).find('transport>fingerprint');
- if (tmp.length) {
- self.remoteSDP.media[i] += 'a=fingerprint:' + tmp.attr('hash') + ' ' + tmp.text() + '\r\n';
- } else {
- console.log('no dtls fingerprint (webrtc issue #1718?)');
- self.remoteSDP.media[i] += 'a=crypto:1 AES_CM_128_HMAC_SHA1_80 inline:BAADBAADBAADBAADBAADBAADBAADBAADBAADBAAD\r\n';
- }
- break;
- }
- }
- }
- });
- this.remoteSDP.raw = this.remoteSDP.session + this.remoteSDP.media.join('');
-
- // we need a complete SDP with ice-ufrag/ice-pwd in all parts
- // this makes the assumption that the PRANSWER is constructed such that the ice-ufrag is in all mediaparts
- // but it could be in the session part as well. since the code above constructs this sdp this can't happen however
- var iscomplete = this.remoteSDP.media.filter(function (mediapart) {
- return SDPUtil.find_line(mediapart, 'a=ice-ufrag:');
- }).length == this.remoteSDP.media.length;
-
- if (iscomplete) {
- console.log('setting pranswer');
- try {
- this.peerconnection.setRemoteDescription(new RTCSessionDescription({type: 'pranswer', sdp: this.remoteSDP.raw }),
- function() {
- },
- function(e) {
- console.log('setRemoteDescription pranswer failed', e.toString());
- });
- } catch (e) {
- console.error('setting pranswer failed', e);
- }
- } else {
- //console.log('not yet setting pranswer');
- }
- }
- // operate on each content element
- elem.each(function () {
- // would love to deactivate this, but firefox still requires it
- var idx = -1;
- var i;
- for (i = 0; i < self.remoteSDP.media.length; i++) {
- if (SDPUtil.find_line(self.remoteSDP.media[i], 'a=mid:' + $(this).attr('name')) ||
- self.remoteSDP.media[i].indexOf('m=' + $(this).attr('name')) === 0) {
- idx = i;
- break;
- }
- }
- if (idx == -1) { // fall back to localdescription
- for (i = 0; i < self.localSDP.media.length; i++) {
- if (SDPUtil.find_line(self.localSDP.media[i], 'a=mid:' + $(this).attr('name')) ||
- self.localSDP.media[i].indexOf('m=' + $(this).attr('name')) === 0) {
- idx = i;
- break;
- }
- }
- }
- var name = $(this).attr('name');
- // TODO: check ice-pwd and ice-ufrag?
- $(this).find('transport>candidate').each(function () {
- var line, candidate;
- line = SDPUtil.candidateFromJingle(this);
- candidate = new RTCIceCandidate({sdpMLineIndex: idx,
- sdpMid: name,
- candidate: line});
- try {
- self.peerconnection.addIceCandidate(candidate);
- } catch (e) {
- console.error('addIceCandidate failed', e.toString(), line);
- }
- });
- });
- };
-
- JingleSession.prototype.sendAnswer = function (provisional) {
- //console.log('createAnswer', provisional);
- var self = this;
- this.peerconnection.createAnswer(
- function (sdp) {
- self.createdAnswer(sdp, provisional);
- },
- function (e) {
- console.error('createAnswer failed', e);
- },
- this.media_constraints
- );
- };
-
- JingleSession.prototype.createdAnswer = function (sdp, provisional) {
- //console.log('createAnswer callback');
- var self = this;
- this.localSDP = new SDP(sdp.sdp);
- //this.localSDP.mangle();
- this.usepranswer = provisional === true;
- if (this.usetrickle) {
- if (this.usepranswer) {
- sdp.type = 'pranswer';
- for (var i = 0; i < this.localSDP.media.length; i++) {
- this.localSDP.media[i] = this.localSDP.media[i].replace('a=sendrecv\r\n', 'a=inactive\r\n');
- }
- this.localSDP.raw = this.localSDP.session + '\r\n' + this.localSDP.media.join('');
- }
- }
- var self = this;
- var sendJingle = function (ssrcs) {
-
- var accept = $iq({to: self.peerjid,
- type: 'set'})
- .c('jingle', {xmlns: 'urn:xmpp:jingle:1',
- action: 'session-accept',
- initiator: self.initiator,
- responder: self.responder,
- sid: self.sid });
- var publicLocalDesc = simulcast.reverseTransformLocalDescription(sdp);
- var publicLocalSDP = new SDP(publicLocalDesc.sdp);
- publicLocalSDP.toJingle(accept, self.initiator == self.me ? 'initiator' : 'responder', ssrcs);
- self.connection.sendIQ(accept,
- function () {
- var ack = {};
- ack.source = 'answer';
- $(document).trigger('ack.jingle', [self.sid, ack]);
- },
- function (stanza) {
- var error = ($(stanza).find('error').length) ? {
- code: $(stanza).find('error').attr('code'),
- reason: $(stanza).find('error :first')[0].tagName,
- }:{};
- error.source = 'answer';
- JingleSession.onJingleError(self.sid, error);
- },
- 10000);
- }
- sdp.sdp = this.localSDP.raw;
- this.peerconnection.setLocalDescription(sdp,
- function () {
-
- //console.log('setLocalDescription success');
- if (self.usetrickle && !self.usepranswer) {
- sendJingle();
- }
- self.setLocalDescription();
- },
- function (e) {
- console.error('setLocalDescription failed', e);
- }
- );
- var cands = SDPUtil.find_lines(this.localSDP.raw, 'a=candidate:');
- for (var j = 0; j < cands.length; j++) {
- var cand = SDPUtil.parse_icecandidate(cands[j]);
- if (cand.type == 'srflx') {
- this.hadstuncandidate = true;
- } else if (cand.type == 'relay') {
- this.hadturncandidate = true;
- }
- }
- };
-
- JingleSession.prototype.sendTerminate = function (reason, text) {
- var self = this,
- term = $iq({to: this.peerjid,
- type: 'set'})
- .c('jingle', {xmlns: 'urn:xmpp:jingle:1',
- action: 'session-terminate',
- initiator: this.initiator,
- sid: this.sid})
- .c('reason')
- .c(reason || 'success');
-
- if (text) {
- term.up().c('text').t(text);
- }
-
- this.connection.sendIQ(term,
- function () {
- self.peerconnection.close();
- self.peerconnection = null;
- self.terminate();
- var ack = {};
- ack.source = 'terminate';
- $(document).trigger('ack.jingle', [self.sid, ack]);
- },
- function (stanza) {
- var error = ($(stanza).find('error').length) ? {
- code: $(stanza).find('error').attr('code'),
- reason: $(stanza).find('error :first')[0].tagName,
- }:{};
- $(document).trigger('ack.jingle', [self.sid, error]);
- },
- 10000);
- if (this.statsinterval !== null) {
- window.clearInterval(this.statsinterval);
- this.statsinterval = null;
- }
- };
-
- JingleSession.prototype.addSource = function (elem, fromJid) {
-
- var self = this;
- // FIXME: dirty waiting
- if (!this.peerconnection.localDescription)
- {
- console.warn("addSource - localDescription not ready yet")
- setTimeout(function()
- {
- self.addSource(elem, fromJid);
- },
- 200
- );
- return;
- }
-
- console.log('addssrc', new Date().getTime());
- console.log('ice', this.peerconnection.iceConnectionState);
- var sdp = new SDP(this.peerconnection.remoteDescription.sdp);
- var mySdp = new SDP(this.peerconnection.localDescription.sdp);
-
- $(elem).each(function (idx, content) {
- var name = $(content).attr('name');
- var lines = '';
- tmp = $(content).find('ssrc-group[xmlns="urn:xmpp:jingle:apps:rtp:ssma:0"]').each(function() {
- var semantics = this.getAttribute('semantics');
- var ssrcs = $(this).find('>source').map(function () {
- return this.getAttribute('ssrc');
- }).get();
-
- if (ssrcs.length != 0) {
- lines += 'a=ssrc-group:' + semantics + ' ' + ssrcs.join(' ') + '\r\n';
- }
- });
- tmp = $(content).find('source[xmlns="urn:xmpp:jingle:apps:rtp:ssma:0"]'); // can handle both >source and >description>source
- tmp.each(function () {
- var ssrc = $(this).attr('ssrc');
- if(mySdp.containsSSRC(ssrc)){
- /**
- * This happens when multiple participants change their streams at the same time and
- * ColibriFocus.modifySources have to wait for stable state. In the meantime multiple
- * addssrc are scheduled for update IQ. See
- */
- console.warn("Got add stream request for my own ssrc: "+ssrc);
- return;
- }
- $(this).find('>parameter').each(function () {
- lines += 'a=ssrc:' + ssrc + ' ' + $(this).attr('name');
- if ($(this).attr('value') && $(this).attr('value').length)
- lines += ':' + $(this).attr('value');
- lines += '\r\n';
- });
- });
- sdp.media.forEach(function(media, idx) {
- if (!SDPUtil.find_line(media, 'a=mid:' + name))
- return;
- sdp.media[idx] += lines;
- if (!self.addssrc[idx]) self.addssrc[idx] = '';
- self.addssrc[idx] += lines;
- });
- sdp.raw = sdp.session + sdp.media.join('');
- });
- this.modifySources();
- };
-
- JingleSession.prototype.removeSource = function (elem, fromJid) {
-
- var self = this;
- // FIXME: dirty waiting
- if (!this.peerconnection.localDescription)
- {
- console.warn("removeSource - localDescription not ready yet")
- setTimeout(function()
- {
- self.removeSource(elem, fromJid);
- },
- 200
- );
- return;
- }
-
- console.log('removessrc', new Date().getTime());
- console.log('ice', this.peerconnection.iceConnectionState);
- var sdp = new SDP(this.peerconnection.remoteDescription.sdp);
- var mySdp = new SDP(this.peerconnection.localDescription.sdp);
-
- $(elem).each(function (idx, content) {
- var name = $(content).attr('name');
- var lines = '';
- tmp = $(content).find('ssrc-group[xmlns="urn:xmpp:jingle:apps:rtp:ssma:0"]').each(function() {
- var semantics = this.getAttribute('semantics');
- var ssrcs = $(this).find('>source').map(function () {
- return this.getAttribute('ssrc');
- }).get();
-
- if (ssrcs.length != 0) {
- lines += 'a=ssrc-group:' + semantics + ' ' + ssrcs.join(' ') + '\r\n';
- }
- });
- tmp = $(content).find('source[xmlns="urn:xmpp:jingle:apps:rtp:ssma:0"]'); // can handle both >source and >description>source
- tmp.each(function () {
- var ssrc = $(this).attr('ssrc');
- // This should never happen, but can be useful for bug detection
- if(mySdp.containsSSRC(ssrc)){
- console.error("Got remove stream request for my own ssrc: "+ssrc);
- return;
- }
- $(this).find('>parameter').each(function () {
- lines += 'a=ssrc:' + ssrc + ' ' + $(this).attr('name');
- if ($(this).attr('value') && $(this).attr('value').length)
- lines += ':' + $(this).attr('value');
- lines += '\r\n';
- });
- });
- sdp.media.forEach(function(media, idx) {
- if (!SDPUtil.find_line(media, 'a=mid:' + name))
- return;
- sdp.media[idx] += lines;
- if (!self.removessrc[idx]) self.removessrc[idx] = '';
- self.removessrc[idx] += lines;
- });
- sdp.raw = sdp.session + sdp.media.join('');
- });
- this.modifySources();
- };
-
- JingleSession.prototype.modifySources = function (successCallback) {
- var self = this;
- if (this.peerconnection.signalingState == 'closed') return;
- if (!(this.addssrc.length || this.removessrc.length || this.pendingop !== null || this.switchstreams)){
- // There is nothing to do since scheduled job might have been executed by another succeeding call
- this.setLocalDescription();
- if(successCallback){
- successCallback();
- }
- return;
- }
-
- // FIXME: this is a big hack
- // https://code.google.com/p/webrtc/issues/detail?id=2688
- // ^ has been fixed.
- if (!(this.peerconnection.signalingState == 'stable' && this.peerconnection.iceConnectionState == 'connected')) {
- console.warn('modifySources not yet', this.peerconnection.signalingState, this.peerconnection.iceConnectionState);
- this.wait = true;
- window.setTimeout(function() { self.modifySources(successCallback); }, 250);
- return;
- }
- if (this.wait) {
- window.setTimeout(function() { self.modifySources(successCallback); }, 2500);
- this.wait = false;
- return;
- }
-
- // Reset switch streams flag
- this.switchstreams = false;
-
- var sdp = new SDP(this.peerconnection.remoteDescription.sdp);
-
- // add sources
- this.addssrc.forEach(function(lines, idx) {
- sdp.media[idx] += lines;
- });
- this.addssrc = [];
-
- // remove sources
- this.removessrc.forEach(function(lines, idx) {
- lines = lines.split('\r\n');
- lines.pop(); // remove empty last element;
- lines.forEach(function(line) {
- sdp.media[idx] = sdp.media[idx].replace(line + '\r\n', '');
- });
- });
- this.removessrc = [];
-
- // FIXME:
- // this was a hack for the situation when only one peer exists
- // in the conference.
- // check if still required and remove
- if (sdp.media[0])
- sdp.media[0] = sdp.media[0].replace('a=recvonly', 'a=sendrecv');
- if (sdp.media[1])
- sdp.media[1] = sdp.media[1].replace('a=recvonly', 'a=sendrecv');
-
- sdp.raw = sdp.session + sdp.media.join('');
- this.peerconnection.setRemoteDescription(new RTCSessionDescription({type: 'offer', sdp: sdp.raw}),
- function() {
-
- if(self.signalingState == 'closed') {
- console.error("createAnswer attempt on closed state");
- return;
- }
-
- self.peerconnection.createAnswer(
- function(modifiedAnswer) {
- // change video direction, see https://github.com/jitsi/jitmeet/issues/41
- if (self.pendingop !== null) {
- var sdp = new SDP(modifiedAnswer.sdp);
- if (sdp.media.length > 1) {
- switch(self.pendingop) {
- case 'mute':
- sdp.media[1] = sdp.media[1].replace('a=sendrecv', 'a=recvonly');
- break;
- case 'unmute':
- sdp.media[1] = sdp.media[1].replace('a=recvonly', 'a=sendrecv');
- break;
- }
- sdp.raw = sdp.session + sdp.media.join('');
- modifiedAnswer.sdp = sdp.raw;
- }
- self.pendingop = null;
- }
-
- // FIXME: pushing down an answer while ice connection state
- // is still checking is bad...
- //console.log(self.peerconnection.iceConnectionState);
-
- // trying to work around another chrome bug
- //modifiedAnswer.sdp = modifiedAnswer.sdp.replace(/a=setup:active/g, 'a=setup:actpass');
- self.peerconnection.setLocalDescription(modifiedAnswer,
- function() {
- //console.log('modified setLocalDescription ok');
- self.setLocalDescription();
- if(successCallback){
- successCallback();
- }
- },
- function(error) {
- console.error('modified setLocalDescription failed', error);
- }
- );
- },
- function(error) {
- console.error('modified answer failed', error);
- }
- );
- },
- function(error) {
- console.error('modify failed', error);
- }
- );
- };
-
- /**
- * Switches video streams.
- * @param new_stream new stream that will be used as video of this session.
- * @param oldStream old video stream of this session.
- * @param success_callback callback executed after successful stream switch.
- */
- JingleSession.prototype.switchStreams = function (new_stream, oldStream, success_callback) {
-
- var self = this;
-
- // Remember SDP to figure out added/removed SSRCs
- var oldSdp = null;
- if(self.peerconnection) {
- if(self.peerconnection.localDescription) {
- oldSdp = new SDP(self.peerconnection.localDescription.sdp);
- }
- self.peerconnection.removeStream(oldStream, true);
- self.peerconnection.addStream(new_stream);
- }
-
- RTC.switchVideoStreams(new_stream, oldStream);
-
- // Conference is not active
- if(!oldSdp || !self.peerconnection) {
- success_callback();
- return;
- }
-
- self.switchstreams = true;
- self.modifySources(function() {
- console.log('modify sources done');
-
- success_callback();
-
- var newSdp = new SDP(self.peerconnection.localDescription.sdp);
- console.log("SDPs", oldSdp, newSdp);
- self.notifyMySSRCUpdate(oldSdp, newSdp);
- });
- };
-
- /**
- * Figures out added/removed ssrcs and send update IQs.
- * @param old_sdp SDP object for old description.
- * @param new_sdp SDP object for new description.
- */
- JingleSession.prototype.notifyMySSRCUpdate = function (old_sdp, new_sdp) {
-
- if (!(this.peerconnection.signalingState == 'stable' &&
- this.peerconnection.iceConnectionState == 'connected')){
- console.log("Too early to send updates");
- return;
- }
-
- // send source-remove IQ.
- sdpDiffer = new SDPDiffer(new_sdp, old_sdp);
- var remove = $iq({to: this.peerjid, type: 'set'})
- .c('jingle', {
- xmlns: 'urn:xmpp:jingle:1',
- action: 'source-remove',
- initiator: this.initiator,
- sid: this.sid
- }
- );
- var removed = sdpDiffer.toJingle(remove);
- if (removed) {
- this.connection.sendIQ(remove,
- function (res) {
- console.info('got remove result', res);
- },
- function (err) {
- console.error('got remove error', err);
- }
- );
- } else {
- console.log('removal not necessary');
- }
-
- // send source-add IQ.
- var sdpDiffer = new SDPDiffer(old_sdp, new_sdp);
- var add = $iq({to: this.peerjid, type: 'set'})
- .c('jingle', {
- xmlns: 'urn:xmpp:jingle:1',
- action: 'source-add',
- initiator: this.initiator,
- sid: this.sid
- }
- );
- var added = sdpDiffer.toJingle(add);
- if (added) {
- this.connection.sendIQ(add,
- function (res) {
- console.info('got add result', res);
- },
- function (err) {
- console.error('got add error', err);
- }
- );
- } else {
- console.log('addition not necessary');
- }
- };
-
- /**
- * Determines whether the (local) video is mute i.e. all video tracks are
- * disabled.
- *
- * @return <tt>true</tt> if the (local) video is mute i.e. all video tracks are
- * disabled; otherwise, <tt>false</tt>
- */
- JingleSession.prototype.isVideoMute = function () {
- var tracks = RTC.localVideo.getVideoTracks();
- var mute = true;
-
- for (var i = 0; i < tracks.length; ++i) {
- if (tracks[i].enabled) {
- mute = false;
- break;
- }
- }
- return mute;
- };
-
- /**
- * Mutes/unmutes the (local) video i.e. enables/disables all video tracks.
- *
- * @param mute <tt>true</tt> to mute the (local) video i.e. to disable all video
- * tracks; otherwise, <tt>false</tt>
- * @param callback a function to be invoked with <tt>mute</tt> after all video
- * tracks have been enabled/disabled. The function may, optionally, return
- * another function which is to be invoked after the whole mute/unmute operation
- * has completed successfully.
- * @param options an object which specifies optional arguments such as the
- * <tt>boolean</tt> key <tt>byUser</tt> with default value <tt>true</tt> which
- * specifies whether the method was initiated in response to a user command (in
- * contrast to an automatic decision made by the application logic)
- */
- JingleSession.prototype.setVideoMute = function (mute, callback, options) {
- var byUser;
-
- if (options) {
- byUser = options.byUser;
- if (typeof byUser === 'undefined') {
- byUser = true;
- }
- } else {
- byUser = true;
- }
- // The user's command to mute the (local) video takes precedence over any
- // automatic decision made by the application logic.
- if (byUser) {
- this.videoMuteByUser = mute;
- } else if (this.videoMuteByUser) {
- return;
- }
-
- var self = this;
- var localCallback = function (mute) {
- self.connection.emuc.addVideoInfoToPresence(mute);
- self.connection.emuc.sendPresence();
- return callback(mute)
- };
-
- if (mute == RTC.localVideo.isMuted())
- {
- // Even if no change occurs, the specified callback is to be executed.
- // The specified callback may, optionally, return a successCallback
- // which is to be executed as well.
- var successCallback = localCallback(mute);
-
- if (successCallback) {
- successCallback();
- }
- } else {
- RTC.localVideo.setMute(!mute);
-
- this.hardMuteVideo(mute);
-
- this.modifySources(localCallback(mute));
- }
- };
-
- // SDP-based mute by going recvonly/sendrecv
- // FIXME: should probably black out the screen as well
- JingleSession.prototype.toggleVideoMute = function (callback) {
- this.service.setVideoMute(RTC.localVideo.isMuted(), callback);
- };
-
- JingleSession.prototype.hardMuteVideo = function (muted) {
- this.pendingop = muted ? 'mute' : 'unmute';
- };
-
- JingleSession.prototype.sendMute = function (muted, content) {
- var info = $iq({to: this.peerjid,
- type: 'set'})
- .c('jingle', {xmlns: 'urn:xmpp:jingle:1',
- action: 'session-info',
- initiator: this.initiator,
- sid: this.sid });
- info.c(muted ? 'mute' : 'unmute', {xmlns: 'urn:xmpp:jingle:apps:rtp:info:1'});
- info.attrs({'creator': this.me == this.initiator ? 'creator' : 'responder'});
- if (content) {
- info.attrs({'name': content});
- }
- this.connection.send(info);
- };
-
- JingleSession.prototype.sendRinging = function () {
- var info = $iq({to: this.peerjid,
- type: 'set'})
- .c('jingle', {xmlns: 'urn:xmpp:jingle:1',
- action: 'session-info',
- initiator: this.initiator,
- sid: this.sid });
- info.c('ringing', {xmlns: 'urn:xmpp:jingle:apps:rtp:info:1'});
- this.connection.send(info);
- };
-
- JingleSession.prototype.getStats = function (interval) {
- var self = this;
- var recv = {audio: 0, video: 0};
- var lost = {audio: 0, video: 0};
- var lastrecv = {audio: 0, video: 0};
- var lastlost = {audio: 0, video: 0};
- var loss = {audio: 0, video: 0};
- var delta = {audio: 0, video: 0};
- this.statsinterval = window.setInterval(function () {
- if (self && self.peerconnection && self.peerconnection.getStats) {
- self.peerconnection.getStats(function (stats) {
- var results = stats.result();
- // TODO: there are so much statistics you can get from this..
- for (var i = 0; i < results.length; ++i) {
- if (results[i].type == 'ssrc') {
- var packetsrecv = results[i].stat('packetsReceived');
- var packetslost = results[i].stat('packetsLost');
- if (packetsrecv && packetslost) {
- packetsrecv = parseInt(packetsrecv, 10);
- packetslost = parseInt(packetslost, 10);
-
- if (results[i].stat('googFrameRateReceived')) {
- lastlost.video = lost.video;
- lastrecv.video = recv.video;
- recv.video = packetsrecv;
- lost.video = packetslost;
- } else {
- lastlost.audio = lost.audio;
- lastrecv.audio = recv.audio;
- recv.audio = packetsrecv;
- lost.audio = packetslost;
- }
- }
- }
- }
- delta.audio = recv.audio - lastrecv.audio;
- delta.video = recv.video - lastrecv.video;
- loss.audio = (delta.audio > 0) ? Math.ceil(100 * (lost.audio - lastlost.audio) / delta.audio) : 0;
- loss.video = (delta.video > 0) ? Math.ceil(100 * (lost.video - lastlost.video) / delta.video) : 0;
- $(document).trigger('packetloss.jingle', [self.sid, loss]);
- });
- }
- }, interval || 3000);
- return this.statsinterval;
- };
-
- JingleSession.onJingleError = function (session, error)
- {
- console.error("Jingle error", error);
- }
-
- JingleSession.onJingleFatalError = function (session, error)
- {
- this.service.sessionTerminated = true;
- connection.emuc.doLeave();
- UI.messageHandler.showError( "Sorry",
- "Internal application error[setRemoteDescription]");
- }
-
- JingleSession.prototype.setLocalDescription = function () {
- // put our ssrcs into presence so other clients can identify our stream
- var newssrcs = [];
- var media = simulcast.parseMedia(this.peerconnection.localDescription);
- media.forEach(function (media) {
-
- if(Object.keys(media.sources).length > 0) {
- // TODO(gp) maybe exclude FID streams?
- Object.keys(media.sources).forEach(function (ssrc) {
- newssrcs.push({
- 'ssrc': ssrc,
- 'type': media.type,
- 'direction': media.direction
- });
- });
- }
- else if(this.localStreamsSSRC && this.localStreamsSSRC[media.type])
- {
- newssrcs.push({
- 'ssrc': this.localStreamsSSRC[media.type],
- 'type': media.type,
- 'direction': media.direction
- });
- }
-
- });
-
- console.log('new ssrcs', newssrcs);
-
- // Have to clear presence map to get rid of removed streams
- this.connection.emuc.clearPresenceMedia();
-
- if (newssrcs.length > 0) {
- for (var i = 1; i <= newssrcs.length; i ++) {
- // Change video type to screen
- if (newssrcs[i-1].type === 'video' && desktopsharing.isUsingScreenStream()) {
- newssrcs[i-1].type = 'screen';
- }
- this.connection.emuc.addMediaToPresence(i,
- newssrcs[i-1].type, newssrcs[i-1].ssrc, newssrcs[i-1].direction);
- }
-
- this.connection.emuc.sendPresence();
- }
- }
-
- // an attempt to work around https://github.com/jitsi/jitmeet/issues/32
- function sendKeyframe(pc) {
- console.log('sendkeyframe', pc.iceConnectionState);
- if (pc.iceConnectionState !== 'connected') return; // safe...
- pc.setRemoteDescription(
- pc.remoteDescription,
- function () {
- pc.createAnswer(
- function (modifiedAnswer) {
- pc.setLocalDescription(
- modifiedAnswer,
- function () {
- // noop
- },
- function (error) {
- console.log('triggerKeyframe setLocalDescription failed', error);
- UI.messageHandler.showError();
- }
- );
- },
- function (error) {
- console.log('triggerKeyframe createAnswer failed', error);
- UI.messageHandler.showError();
- }
- );
- },
- function (error) {
- console.log('triggerKeyframe setRemoteDescription failed', error);
- UI.messageHandler.showError();
- }
- );
- }
-
-
- JingleSession.prototype.remoteStreamAdded = function (data) {
- var self = this;
- var thessrc;
- var ssrc2jid = this.connection.emuc.ssrc2jid;
-
- // look up an associated JID for a stream id
- if (data.stream.id && data.stream.id.indexOf('mixedmslabel') === -1) {
- // look only at a=ssrc: and _not_ at a=ssrc-group: lines
-
- var ssrclines
- = SDPUtil.find_lines(this.peerconnection.remoteDescription.sdp, 'a=ssrc:');
- ssrclines = ssrclines.filter(function (line) {
- // NOTE(gp) previously we filtered on the mslabel, but that property
- // is not always present.
- // return line.indexOf('mslabel:' + data.stream.label) !== -1;
-
- return ((line.indexOf('msid:' + data.stream.id) !== -1));
- });
- if (ssrclines.length) {
- thessrc = ssrclines[0].substring(7).split(' ')[0];
-
- // We signal our streams (through Jingle to the focus) before we set
- // our presence (through which peers associate remote streams to
- // jids). So, it might arrive that a remote stream is added but
- // ssrc2jid is not yet updated and thus data.peerjid cannot be
- // successfully set. Here we wait for up to a second for the
- // presence to arrive.
-
- if (!ssrc2jid[thessrc]) {
- // TODO(gp) limit wait duration to 1 sec.
- setTimeout(function(d) {
- return function() {
- self.remoteStreamAdded(d);
- }
- }(data), 250);
- return;
- }
-
- // ok to overwrite the one from focus? might save work in colibri.js
- console.log('associated jid', ssrc2jid[thessrc], data.peerjid);
- if (ssrc2jid[thessrc]) {
- data.peerjid = ssrc2jid[thessrc];
- }
- }
- }
-
- //TODO: this code should be removed when firefox implement multistream support
- if(RTC.getBrowserType() == RTCBrowserType.RTC_BROWSER_FIREFOX)
- {
- if((JingleSession.notReceivedSSRCs.length == 0) ||
- !ssrc2jid[JingleSession.notReceivedSSRCs[JingleSession.notReceivedSSRCs.length - 1]])
- {
- // TODO(gp) limit wait duration to 1 sec.
- setTimeout(function(d) {
- return function() {
- self.remoteStreamAdded(d);
- }
- }(data), 250);
- return;
- }
-
- thessrc = JingleSession.notReceivedSSRCs.pop();
- if (ssrc2jid[thessrc]) {
- data.peerjid = ssrc2jid[thessrc];
- }
- }
-
- RTC.createRemoteStream(data, this.sid, thessrc);
-
- var isVideo = data.stream.getVideoTracks().length > 0;
- // an attempt to work around https://github.com/jitsi/jitmeet/issues/32
- if (isVideo &&
- data.peerjid && this.peerjid === data.peerjid &&
- data.stream.getVideoTracks().length === 0 &&
- RTC.localVideo.getTracks().length > 0) {
- window.setTimeout(function () {
- sendKeyframe(self.peerconnection);
- }, 3000);
- }
- }
-
- module.exports = JingleSession;
- },{"./SDP":2,"./SDPDiffer":3,"./SDPUtil":4,"./TraceablePeerConnection":5}],2:[function(require,module,exports){
- /* jshint -W117 */
- var SDPUtil = require("./SDPUtil");
-
- // SDP STUFF
- function SDP(sdp) {
- this.media = sdp.split('\r\nm=');
- for (var i = 1; i < this.media.length; i++) {
- this.media[i] = 'm=' + this.media[i];
- if (i != this.media.length - 1) {
- this.media[i] += '\r\n';
- }
- }
- this.session = this.media.shift() + '\r\n';
- this.raw = this.session + this.media.join('');
- }
- /**
- * Returns map of MediaChannel mapped per channel idx.
- */
- SDP.prototype.getMediaSsrcMap = function() {
- var self = this;
- var media_ssrcs = {};
- var tmp;
- for (var mediaindex = 0; mediaindex < self.media.length; mediaindex++) {
- tmp = SDPUtil.find_lines(self.media[mediaindex], 'a=ssrc:');
- var mid = SDPUtil.parse_mid(SDPUtil.find_line(self.media[mediaindex], 'a=mid:'));
- var media = {
- mediaindex: mediaindex,
- mid: mid,
- ssrcs: {},
- ssrcGroups: []
- };
- media_ssrcs[mediaindex] = media;
- tmp.forEach(function (line) {
- var linessrc = line.substring(7).split(' ')[0];
- // allocate new ChannelSsrc
- if(!media.ssrcs[linessrc]) {
- media.ssrcs[linessrc] = {
- ssrc: linessrc,
- lines: []
- };
- }
- media.ssrcs[linessrc].lines.push(line);
- });
- tmp = SDPUtil.find_lines(self.media[mediaindex], 'a=ssrc-group:');
- tmp.forEach(function(line){
- var semantics = line.substr(0, idx).substr(13);
- var ssrcs = line.substr(14 + semantics.length).split(' ');
- if (ssrcs.length != 0) {
- media.ssrcGroups.push({
- semantics: semantics,
- ssrcs: ssrcs
- });
- }
- });
- }
- return media_ssrcs;
- };
- /**
- * Returns <tt>true</tt> if this SDP contains given SSRC.
- * @param ssrc the ssrc to check.
- * @returns {boolean} <tt>true</tt> if this SDP contains given SSRC.
- */
- SDP.prototype.containsSSRC = function(ssrc) {
- var medias = this.getMediaSsrcMap();
- var contains = false;
- Object.keys(medias).forEach(function(mediaindex){
- var media = medias[mediaindex];
- //console.log("Check", channel, ssrc);
- if(Object.keys(media.ssrcs).indexOf(ssrc) != -1){
- contains = true;
- }
- });
- return contains;
- };
-
-
- // remove iSAC and CN from SDP
- SDP.prototype.mangle = function () {
- var i, j, mline, lines, rtpmap, newdesc;
- for (i = 0; i < this.media.length; i++) {
- lines = this.media[i].split('\r\n');
- lines.pop(); // remove empty last element
- mline = SDPUtil.parse_mline(lines.shift());
- if (mline.media != 'audio')
- continue;
- newdesc = '';
- mline.fmt.length = 0;
- for (j = 0; j < lines.length; j++) {
- if (lines[j].substr(0, 9) == 'a=rtpmap:') {
- rtpmap = SDPUtil.parse_rtpmap(lines[j]);
- if (rtpmap.name == 'CN' || rtpmap.name == 'ISAC')
- continue;
- mline.fmt.push(rtpmap.id);
- newdesc += lines[j] + '\r\n';
- } else {
- newdesc += lines[j] + '\r\n';
- }
- }
- this.media[i] = SDPUtil.build_mline(mline) + '\r\n';
- this.media[i] += newdesc;
- }
- this.raw = this.session + this.media.join('');
- };
-
- // remove lines matching prefix from session section
- SDP.prototype.removeSessionLines = function(prefix) {
- var self = this;
- var lines = SDPUtil.find_lines(this.session, prefix);
- lines.forEach(function(line) {
- self.session = self.session.replace(line + '\r\n', '');
- });
- this.raw = this.session + this.media.join('');
- return lines;
- }
- // remove lines matching prefix from a media section specified by mediaindex
- // TODO: non-numeric mediaindex could match mid
- SDP.prototype.removeMediaLines = function(mediaindex, prefix) {
- var self = this;
- var lines = SDPUtil.find_lines(this.media[mediaindex], prefix);
- lines.forEach(function(line) {
- self.media[mediaindex] = self.media[mediaindex].replace(line + '\r\n', '');
- });
- this.raw = this.session + this.media.join('');
- return lines;
- }
-
- // add content's to a jingle element
- SDP.prototype.toJingle = function (elem, thecreator, ssrcs) {
- // console.log("SSRC" + ssrcs["audio"] + " - " + ssrcs["video"]);
- var i, j, k, mline, ssrc, rtpmap, tmp, line, lines;
- var self = this;
- // new bundle plan
- if (SDPUtil.find_line(this.session, 'a=group:')) {
- lines = SDPUtil.find_lines(this.session, 'a=group:');
- for (i = 0; i < lines.length; i++) {
- tmp = lines[i].split(' ');
- var semantics = tmp.shift().substr(8);
- elem.c('group', {xmlns: 'urn:xmpp:jingle:apps:grouping:0', semantics:semantics});
- for (j = 0; j < tmp.length; j++) {
- elem.c('content', {name: tmp[j]}).up();
- }
- elem.up();
- }
- }
- for (i = 0; i < this.media.length; i++) {
- mline = SDPUtil.parse_mline(this.media[i].split('\r\n')[0]);
- if (!(mline.media === 'audio' ||
- mline.media === 'video' ||
- mline.media === 'application'))
- {
- continue;
- }
- if (SDPUtil.find_line(this.media[i], 'a=ssrc:')) {
- ssrc = SDPUtil.find_line(this.media[i], 'a=ssrc:').substring(7).split(' ')[0]; // take the first
- } else {
- if(ssrcs && ssrcs[mline.media])
- {
- ssrc = ssrcs[mline.media];
- }
- else
- ssrc = false;
- }
-
- elem.c('content', {creator: thecreator, name: mline.media});
- if (SDPUtil.find_line(this.media[i], 'a=mid:')) {
- // prefer identifier from a=mid if present
- var mid = SDPUtil.parse_mid(SDPUtil.find_line(this.media[i], 'a=mid:'));
- elem.attrs({ name: mid });
- }
-
- if (SDPUtil.find_line(this.media[i], 'a=rtpmap:').length)
- {
- elem.c('description',
- {xmlns: 'urn:xmpp:jingle:apps:rtp:1',
- media: mline.media });
- if (ssrc) {
- elem.attrs({ssrc: ssrc});
- }
- for (j = 0; j < mline.fmt.length; j++) {
- rtpmap = SDPUtil.find_line(this.media[i], 'a=rtpmap:' + mline.fmt[j]);
- elem.c('payload-type', SDPUtil.parse_rtpmap(rtpmap));
- // put any 'a=fmtp:' + mline.fmt[j] lines into <param name=foo value=bar/>
- if (SDPUtil.find_line(this.media[i], 'a=fmtp:' + mline.fmt[j])) {
- tmp = SDPUtil.parse_fmtp(SDPUtil.find_line(this.media[i], 'a=fmtp:' + mline.fmt[j]));
- for (k = 0; k < tmp.length; k++) {
- elem.c('parameter', tmp[k]).up();
- }
- }
- this.RtcpFbToJingle(i, elem, mline.fmt[j]); // XEP-0293 -- map a=rtcp-fb
-
- elem.up();
- }
- if (SDPUtil.find_line(this.media[i], 'a=crypto:', this.session)) {
- elem.c('encryption', {required: 1});
- var crypto = SDPUtil.find_lines(this.media[i], 'a=crypto:', this.session);
- crypto.forEach(function(line) {
- elem.c('crypto', SDPUtil.parse_crypto(line)).up();
- });
- elem.up(); // end of encryption
- }
-
- if (ssrc) {
- // new style mapping
- elem.c('source', { ssrc: ssrc, xmlns: 'urn:xmpp:jingle:apps:rtp:ssma:0' });
- // FIXME: group by ssrc and support multiple different ssrcs
- var ssrclines = SDPUtil.find_lines(this.media[i], 'a=ssrc:');
- if(ssrclines.length > 0) {
- ssrclines.forEach(function (line) {
- idx = line.indexOf(' ');
- var linessrc = line.substr(0, idx).substr(7);
- if (linessrc != ssrc) {
- elem.up();
- ssrc = linessrc;
- elem.c('source', { ssrc: ssrc, xmlns: 'urn:xmpp:jingle:apps:rtp:ssma:0' });
- }
- var kv = line.substr(idx + 1);
- elem.c('parameter');
- if (kv.indexOf(':') == -1) {
- elem.attrs({ name: kv });
- } else {
- elem.attrs({ name: kv.split(':', 2)[0] });
- elem.attrs({ value: kv.split(':', 2)[1] });
- }
- elem.up();
- });
- elem.up();
- }
- else
- {
- elem.up();
- elem.c('source', { ssrc: ssrc, xmlns: 'urn:xmpp:jingle:apps:rtp:ssma:0' });
- elem.c('parameter');
- elem.attrs({name: "cname", value:Math.random().toString(36).substring(7)});
- elem.up();
- var msid = null;
- if(mline.media == "audio")
- {
- msid = RTC.localAudio.getId();
- }
- else
- {
- msid = RTC.localVideo.getId();
- }
- if(msid != null)
- {
- msid = msid.replace(/[\{,\}]/g,"");
- elem.c('parameter');
- elem.attrs({name: "msid", value:msid});
- elem.up();
- elem.c('parameter');
- elem.attrs({name: "mslabel", value:msid});
- elem.up();
- elem.c('parameter');
- elem.attrs({name: "label", value:msid});
- elem.up();
- elem.up();
- }
-
-
- }
-
- // XEP-0339 handle ssrc-group attributes
- var ssrc_group_lines = SDPUtil.find_lines(this.media[i], 'a=ssrc-group:');
- ssrc_group_lines.forEach(function(line) {
- idx = line.indexOf(' ');
- var semantics = line.substr(0, idx).substr(13);
- var ssrcs = line.substr(14 + semantics.length).split(' ');
- if (ssrcs.length != 0) {
- elem.c('ssrc-group', { semantics: semantics, xmlns: 'urn:xmpp:jingle:apps:rtp:ssma:0' });
- ssrcs.forEach(function(ssrc) {
- elem.c('source', { ssrc: ssrc })
- .up();
- });
- elem.up();
- }
- });
- }
-
- if (SDPUtil.find_line(this.media[i], 'a=rtcp-mux')) {
- elem.c('rtcp-mux').up();
- }
-
- // XEP-0293 -- map a=rtcp-fb:*
- this.RtcpFbToJingle(i, elem, '*');
-
- // XEP-0294
- if (SDPUtil.find_line(this.media[i], 'a=extmap:')) {
- lines = SDPUtil.find_lines(this.media[i], 'a=extmap:');
- for (j = 0; j < lines.length; j++) {
- tmp = SDPUtil.parse_extmap(lines[j]);
- elem.c('rtp-hdrext', { xmlns: 'urn:xmpp:jingle:apps:rtp:rtp-hdrext:0',
- uri: tmp.uri,
- id: tmp.value });
- if (tmp.hasOwnProperty('direction')) {
- switch (tmp.direction) {
- case 'sendonly':
- elem.attrs({senders: 'responder'});
- break;
- case 'recvonly':
- elem.attrs({senders: 'initiator'});
- break;
- case 'sendrecv':
- elem.attrs({senders: 'both'});
- break;
- case 'inactive':
- elem.attrs({senders: 'none'});
- break;
- }
- }
- // TODO: handle params
- elem.up();
- }
- }
- elem.up(); // end of description
- }
-
- // map ice-ufrag/pwd, dtls fingerprint, candidates
- this.TransportToJingle(i, elem);
-
- if (SDPUtil.find_line(this.media[i], 'a=sendrecv', this.session)) {
- elem.attrs({senders: 'both'});
- } else if (SDPUtil.find_line(this.media[i], 'a=sendonly', this.session)) {
- elem.attrs({senders: 'initiator'});
- } else if (SDPUtil.find_line(this.media[i], 'a=recvonly', this.session)) {
- elem.attrs({senders: 'responder'});
- } else if (SDPUtil.find_line(this.media[i], 'a=inactive', this.session)) {
- elem.attrs({senders: 'none'});
- }
- if (mline.port == '0') {
- // estos hack to reject an m-line
- elem.attrs({senders: 'rejected'});
- }
- elem.up(); // end of content
- }
- elem.up();
- return elem;
- };
-
- SDP.prototype.TransportToJingle = function (mediaindex, elem) {
- var i = mediaindex;
- var tmp;
- var self = this;
- elem.c('transport');
-
- // XEP-0343 DTLS/SCTP
- if (SDPUtil.find_line(this.media[mediaindex], 'a=sctpmap:').length)
- {
- var sctpmap = SDPUtil.find_line(
- this.media[i], 'a=sctpmap:', self.session);
- if (sctpmap)
- {
- var sctpAttrs = SDPUtil.parse_sctpmap(sctpmap);
- elem.c('sctpmap',
- {
- xmlns: 'urn:xmpp:jingle:transports:dtls-sctp:1',
- number: sctpAttrs[0], /* SCTP port */
- protocol: sctpAttrs[1], /* protocol */
- });
- // Optional stream count attribute
- if (sctpAttrs.length > 2)
- elem.attrs({ streams: sctpAttrs[2]});
- elem.up();
- }
- }
- // XEP-0320
- var fingerprints = SDPUtil.find_lines(this.media[mediaindex], 'a=fingerprint:', this.session);
- fingerprints.forEach(function(line) {
- tmp = SDPUtil.parse_fingerprint(line);
- tmp.xmlns = 'urn:xmpp:jingle:apps:dtls:0';
- elem.c('fingerprint').t(tmp.fingerprint);
- delete tmp.fingerprint;
- line = SDPUtil.find_line(self.media[mediaindex], 'a=setup:', self.session);
- if (line) {
- tmp.setup = line.substr(8);
- }
- elem.attrs(tmp);
- elem.up(); // end of fingerprint
- });
- tmp = SDPUtil.iceparams(this.media[mediaindex], this.session);
- if (tmp) {
- tmp.xmlns = 'urn:xmpp:jingle:transports:ice-udp:1';
- elem.attrs(tmp);
- // XEP-0176
- if (SDPUtil.find_line(this.media[mediaindex], 'a=candidate:', this.session)) { // add any a=candidate lines
- var lines = SDPUtil.find_lines(this.media[mediaindex], 'a=candidate:', this.session);
- lines.forEach(function (line) {
- elem.c('candidate', SDPUtil.candidateToJingle(line)).up();
- });
- }
- }
- elem.up(); // end of transport
- }
-
- SDP.prototype.RtcpFbToJingle = function (mediaindex, elem, payloadtype) { // XEP-0293
- var lines = SDPUtil.find_lines(this.media[mediaindex], 'a=rtcp-fb:' + payloadtype);
- lines.forEach(function (line) {
- var tmp = SDPUtil.parse_rtcpfb(line);
- if (tmp.type == 'trr-int') {
- elem.c('rtcp-fb-trr-int', {xmlns: 'urn:xmpp:jingle:apps:rtp:rtcp-fb:0', value: tmp.params[0]});
- elem.up();
- } else {
- elem.c('rtcp-fb', {xmlns: 'urn:xmpp:jingle:apps:rtp:rtcp-fb:0', type: tmp.type});
- if (tmp.params.length > 0) {
- elem.attrs({'subtype': tmp.params[0]});
- }
- elem.up();
- }
- });
- };
-
- SDP.prototype.RtcpFbFromJingle = function (elem, payloadtype) { // XEP-0293
- var media = '';
- var tmp = elem.find('>rtcp-fb-trr-int[xmlns="urn:xmpp:jingle:apps:rtp:rtcp-fb:0"]');
- if (tmp.length) {
- media += 'a=rtcp-fb:' + '*' + ' ' + 'trr-int' + ' ';
- if (tmp.attr('value')) {
- media += tmp.attr('value');
- } else {
- media += '0';
- }
- media += '\r\n';
- }
- tmp = elem.find('>rtcp-fb[xmlns="urn:xmpp:jingle:apps:rtp:rtcp-fb:0"]');
- tmp.each(function () {
- media += 'a=rtcp-fb:' + payloadtype + ' ' + $(this).attr('type');
- if ($(this).attr('subtype')) {
- media += ' ' + $(this).attr('subtype');
- }
- media += '\r\n';
- });
- return media;
- };
-
- // construct an SDP from a jingle stanza
- SDP.prototype.fromJingle = function (jingle) {
- var self = this;
- this.raw = 'v=0\r\n' +
- 'o=- ' + '1923518516' + ' 2 IN IP4 0.0.0.0\r\n' +// FIXME
- 's=-\r\n' +
- 't=0 0\r\n';
- // http://tools.ietf.org/html/draft-ietf-mmusic-sdp-bundle-negotiation-04#section-8
- if ($(jingle).find('>group[xmlns="urn:xmpp:jingle:apps:grouping:0"]').length) {
- $(jingle).find('>group[xmlns="urn:xmpp:jingle:apps:grouping:0"]').each(function (idx, group) {
- var contents = $(group).find('>content').map(function (idx, content) {
- return content.getAttribute('name');
- }).get();
- if (contents.length > 0) {
- self.raw += 'a=group:' + (group.getAttribute('semantics') || group.getAttribute('type')) + ' ' + contents.join(' ') + '\r\n';
- }
- });
- }
-
- this.session = this.raw;
- jingle.find('>content').each(function () {
- var m = self.jingle2media($(this));
- self.media.push(m);
- });
-
- // reconstruct msid-semantic -- apparently not necessary
- /*
- var msid = SDPUtil.parse_ssrc(this.raw);
- if (msid.hasOwnProperty('mslabel')) {
- this.session += "a=msid-semantic: WMS " + msid.mslabel + "\r\n";
- }
- */
-
- this.raw = this.session + this.media.join('');
- };
-
- // translate a jingle content element into an an SDP media part
- SDP.prototype.jingle2media = function (content) {
- var media = '',
- desc = content.find('description'),
- ssrc = desc.attr('ssrc'),
- self = this,
- tmp;
- var sctp = content.find(
- '>transport>sctpmap[xmlns="urn:xmpp:jingle:transports:dtls-sctp:1"]');
-
- tmp = { media: desc.attr('media') };
- tmp.port = '1';
- if (content.attr('senders') == 'rejected') {
- // estos hack to reject an m-line.
- tmp.port = '0';
- }
- if (content.find('>transport>fingerprint').length || desc.find('encryption').length) {
- if (sctp.length)
- tmp.proto = 'DTLS/SCTP';
- else
- tmp.proto = 'RTP/SAVPF';
- } else {
- tmp.proto = 'RTP/AVPF';
- }
- if (!sctp.length)
- {
- tmp.fmt = desc.find('payload-type').map(
- function () { return this.getAttribute('id'); }).get();
- media += SDPUtil.build_mline(tmp) + '\r\n';
- }
- else
- {
- media += 'm=application 1 DTLS/SCTP ' + sctp.attr('number') + '\r\n';
- media += 'a=sctpmap:' + sctp.attr('number') +
- ' ' + sctp.attr('protocol');
-
- var streamCount = sctp.attr('streams');
- if (streamCount)
- media += ' ' + streamCount + '\r\n';
- else
- media += '\r\n';
- }
-
- media += 'c=IN IP4 0.0.0.0\r\n';
- if (!sctp.length)
- media += 'a=rtcp:1 IN IP4 0.0.0.0\r\n';
- tmp = content.find('>transport[xmlns="urn:xmpp:jingle:transports:ice-udp:1"]');
- if (tmp.length) {
- if (tmp.attr('ufrag')) {
- media += SDPUtil.build_iceufrag(tmp.attr('ufrag')) + '\r\n';
- }
- if (tmp.attr('pwd')) {
- media += SDPUtil.build_icepwd(tmp.attr('pwd')) + '\r\n';
- }
- tmp.find('>fingerprint').each(function () {
- // FIXME: check namespace at some point
- media += 'a=fingerprint:' + this.getAttribute('hash');
- media += ' ' + $(this).text();
- media += '\r\n';
- if (this.getAttribute('setup')) {
- media += 'a=setup:' + this.getAttribute('setup') + '\r\n';
- }
- });
- }
- switch (content.attr('senders')) {
- case 'initiator':
- media += 'a=sendonly\r\n';
- break;
- case 'responder':
- media += 'a=recvonly\r\n';
- break;
- case 'none':
- media += 'a=inactive\r\n';
- break;
- case 'both':
- media += 'a=sendrecv\r\n';
- break;
- }
- media += 'a=mid:' + content.attr('name') + '\r\n';
-
- // <description><rtcp-mux/></description>
- // see http://code.google.com/p/libjingle/issues/detail?id=309 -- no spec though
- // and http://mail.jabber.org/pipermail/jingle/2011-December/001761.html
- if (desc.find('rtcp-mux').length) {
- media += 'a=rtcp-mux\r\n';
- }
-
- if (desc.find('encryption').length) {
- desc.find('encryption>crypto').each(function () {
- media += 'a=crypto:' + this.getAttribute('tag');
- media += ' ' + this.getAttribute('crypto-suite');
- media += ' ' + this.getAttribute('key-params');
- if (this.getAttribute('session-params')) {
- media += ' ' + this.getAttribute('session-params');
- }
- media += '\r\n';
- });
- }
- desc.find('payload-type').each(function () {
- media += SDPUtil.build_rtpmap(this) + '\r\n';
- if ($(this).find('>parameter').length) {
- media += 'a=fmtp:' + this.getAttribute('id') + ' ';
- media += $(this).find('parameter').map(function () { return (this.getAttribute('name') ? (this.getAttribute('name') + '=') : '') + this.getAttribute('value'); }).get().join('; ');
- media += '\r\n';
- }
- // xep-0293
- media += self.RtcpFbFromJingle($(this), this.getAttribute('id'));
- });
-
- // xep-0293
- media += self.RtcpFbFromJingle(desc, '*');
-
- // xep-0294
- tmp = desc.find('>rtp-hdrext[xmlns="urn:xmpp:jingle:apps:rtp:rtp-hdrext:0"]');
- tmp.each(function () {
- media += 'a=extmap:' + this.getAttribute('id') + ' ' + this.getAttribute('uri') + '\r\n';
- });
-
- content.find('>transport[xmlns="urn:xmpp:jingle:transports:ice-udp:1"]>candidate').each(function () {
- media += SDPUtil.candidateFromJingle(this);
- });
-
- // XEP-0339 handle ssrc-group attributes
- tmp = content.find('description>ssrc-group[xmlns="urn:xmpp:jingle:apps:rtp:ssma:0"]').each(function() {
- var semantics = this.getAttribute('semantics');
- var ssrcs = $(this).find('>source').map(function() {
- return this.getAttribute('ssrc');
- }).get();
-
- if (ssrcs.length != 0) {
- media += 'a=ssrc-group:' + semantics + ' ' + ssrcs.join(' ') + '\r\n';
- }
- });
-
- tmp = content.find('description>source[xmlns="urn:xmpp:jingle:apps:rtp:ssma:0"]');
- tmp.each(function () {
- var ssrc = this.getAttribute('ssrc');
- $(this).find('>parameter').each(function () {
- media += 'a=ssrc:' + ssrc + ' ' + this.getAttribute('name');
- if (this.getAttribute('value') && this.getAttribute('value').length)
- media += ':' + this.getAttribute('value');
- media += '\r\n';
- });
- });
-
- return media;
- };
-
-
- module.exports = SDP;
-
-
- },{"./SDPUtil":4}],3:[function(require,module,exports){
- function SDPDiffer(mySDP, otherSDP) {
- this.mySDP = mySDP;
- this.otherSDP = otherSDP;
- }
-
- /**
- * Returns map of MediaChannel that contains only media not contained in <tt>otherSdp</tt>. Mapped by channel idx.
- * @param otherSdp the other SDP to check ssrc with.
- */
- SDPDiffer.prototype.getNewMedia = function() {
-
- // this could be useful in Array.prototype.
- function arrayEquals(array) {
- // if the other array is a falsy value, return
- if (!array)
- return false;
-
- // compare lengths - can save a lot of time
- if (this.length != array.length)
- return false;
-
- for (var i = 0, l=this.length; i < l; i++) {
- // Check if we have nested arrays
- if (this[i] instanceof Array && array[i] instanceof Array) {
- // recurse into the nested arrays
- if (!this[i].equals(array[i]))
- return false;
- }
- else if (this[i] != array[i]) {
- // Warning - two different object instances will never be equal: {x:20} != {x:20}
- return false;
- }
- }
- return true;
- }
-
- var myMedias = this.mySDP.getMediaSsrcMap();
- var othersMedias = this.otherSDP.getMediaSsrcMap();
- var newMedia = {};
- Object.keys(othersMedias).forEach(function(othersMediaIdx) {
- var myMedia = myMedias[othersMediaIdx];
- var othersMedia = othersMedias[othersMediaIdx];
- if(!myMedia && othersMedia) {
- // Add whole channel
- newMedia[othersMediaIdx] = othersMedia;
- return;
- }
- // Look for new ssrcs accross the channel
- Object.keys(othersMedia.ssrcs).forEach(function(ssrc) {
- if(Object.keys(myMedia.ssrcs).indexOf(ssrc) === -1) {
- // Allocate channel if we've found ssrc that doesn't exist in our channel
- if(!newMedia[othersMediaIdx]){
- newMedia[othersMediaIdx] = {
- mediaindex: othersMedia.mediaindex,
- mid: othersMedia.mid,
- ssrcs: {},
- ssrcGroups: []
- };
- }
- newMedia[othersMediaIdx].ssrcs[ssrc] = othersMedia.ssrcs[ssrc];
- }
- });
-
- // Look for new ssrc groups across the channels
- othersMedia.ssrcGroups.forEach(function(otherSsrcGroup){
-
- // try to match the other ssrc-group with an ssrc-group of ours
- var matched = false;
- for (var i = 0; i < myMedia.ssrcGroups.length; i++) {
- var mySsrcGroup = myMedia.ssrcGroups[i];
- if (otherSsrcGroup.semantics == mySsrcGroup.semantics
- && arrayEquals.apply(otherSsrcGroup.ssrcs, [mySsrcGroup.ssrcs])) {
-
- matched = true;
- break;
- }
- }
-
- if (!matched) {
- // Allocate channel if we've found an ssrc-group that doesn't
- // exist in our channel
-
- if(!newMedia[othersMediaIdx]){
- newMedia[othersMediaIdx] = {
- mediaindex: othersMedia.mediaindex,
- mid: othersMedia.mid,
- ssrcs: {},
- ssrcGroups: []
- };
- }
- newMedia[othersMediaIdx].ssrcGroups.push(otherSsrcGroup);
- }
- });
- });
- return newMedia;
- };
-
- /**
- * Sends SSRC update IQ.
- * @param sdpMediaSsrcs SSRCs map obtained from SDP.getNewMedia. Cntains SSRCs to add/remove.
- * @param sid session identifier that will be put into the IQ.
- * @param initiator initiator identifier.
- * @param toJid destination Jid
- * @param isAdd indicates if this is remove or add operation.
- */
- SDPDiffer.prototype.toJingle = function(modify) {
- var sdpMediaSsrcs = this.getNewMedia();
- var self = this;
-
- // FIXME: only announce video ssrcs since we mix audio and dont need
- // the audio ssrcs therefore
- var modified = false;
- Object.keys(sdpMediaSsrcs).forEach(function(mediaindex){
- modified = true;
- var media = sdpMediaSsrcs[mediaindex];
- modify.c('content', {name: media.mid});
-
- modify.c('description', {xmlns:'urn:xmpp:jingle:apps:rtp:1', media: media.mid});
- // FIXME: not completly sure this operates on blocks and / or handles different ssrcs correctly
- // generate sources from lines
- Object.keys(media.ssrcs).forEach(function(ssrcNum) {
- var mediaSsrc = media.ssrcs[ssrcNum];
- modify.c('source', { xmlns: 'urn:xmpp:jingle:apps:rtp:ssma:0' });
- modify.attrs({ssrc: mediaSsrc.ssrc});
- // iterate over ssrc lines
- mediaSsrc.lines.forEach(function (line) {
- var idx = line.indexOf(' ');
- var kv = line.substr(idx + 1);
- modify.c('parameter');
- if (kv.indexOf(':') == -1) {
- modify.attrs({ name: kv });
- } else {
- modify.attrs({ name: kv.split(':', 2)[0] });
- modify.attrs({ value: kv.split(':', 2)[1] });
- }
- modify.up(); // end of parameter
- });
- modify.up(); // end of source
- });
-
- // generate source groups from lines
- media.ssrcGroups.forEach(function(ssrcGroup) {
- if (ssrcGroup.ssrcs.length != 0) {
-
- modify.c('ssrc-group', {
- semantics: ssrcGroup.semantics,
- xmlns: 'urn:xmpp:jingle:apps:rtp:ssma:0'
- });
-
- ssrcGroup.ssrcs.forEach(function (ssrc) {
- modify.c('source', { ssrc: ssrc })
- .up(); // end of source
- });
- modify.up(); // end of ssrc-group
- }
- });
-
- modify.up(); // end of description
- modify.up(); // end of content
- });
-
- return modified;
- };
-
- module.exports = SDPDiffer;
- },{}],4:[function(require,module,exports){
- SDPUtil = {
- iceparams: function (mediadesc, sessiondesc) {
- var data = null;
- if (SDPUtil.find_line(mediadesc, 'a=ice-ufrag:', sessiondesc) &&
- SDPUtil.find_line(mediadesc, 'a=ice-pwd:', sessiondesc)) {
- data = {
- ufrag: SDPUtil.parse_iceufrag(SDPUtil.find_line(mediadesc, 'a=ice-ufrag:', sessiondesc)),
- pwd: SDPUtil.parse_icepwd(SDPUtil.find_line(mediadesc, 'a=ice-pwd:', sessiondesc))
- };
- }
- return data;
- },
- parse_iceufrag: function (line) {
- return line.substring(12);
- },
- build_iceufrag: function (frag) {
- return 'a=ice-ufrag:' + frag;
- },
- parse_icepwd: function (line) {
- return line.substring(10);
- },
- build_icepwd: function (pwd) {
- return 'a=ice-pwd:' + pwd;
- },
- parse_mid: function (line) {
- return line.substring(6);
- },
- parse_mline: function (line) {
- var parts = line.substring(2).split(' '),
- data = {};
- data.media = parts.shift();
- data.port = parts.shift();
- data.proto = parts.shift();
- if (parts[parts.length - 1] === '') { // trailing whitespace
- parts.pop();
- }
- data.fmt = parts;
- return data;
- },
- build_mline: function (mline) {
- return 'm=' + mline.media + ' ' + mline.port + ' ' + mline.proto + ' ' + mline.fmt.join(' ');
- },
- parse_rtpmap: function (line) {
- var parts = line.substring(9).split(' '),
- data = {};
- data.id = parts.shift();
- parts = parts[0].split('/');
- data.name = parts.shift();
- data.clockrate = parts.shift();
- data.channels = parts.length ? parts.shift() : '1';
- return data;
- },
- /**
- * Parses SDP line "a=sctpmap:..." and extracts SCTP port from it.
- * @param line eg. "a=sctpmap:5000 webrtc-datachannel"
- * @returns [SCTP port number, protocol, streams]
- */
- parse_sctpmap: function (line)
- {
- var parts = line.substring(10).split(' ');
- var sctpPort = parts[0];
- var protocol = parts[1];
- // Stream count is optional
- var streamCount = parts.length > 2 ? parts[2] : null;
- return [sctpPort, protocol, streamCount];// SCTP port
- },
- build_rtpmap: function (el) {
- var line = 'a=rtpmap:' + el.getAttribute('id') + ' ' + el.getAttribute('name') + '/' + el.getAttribute('clockrate');
- if (el.getAttribute('channels') && el.getAttribute('channels') != '1') {
- line += '/' + el.getAttribute('channels');
- }
- return line;
- },
- parse_crypto: function (line) {
- var parts = line.substring(9).split(' '),
- data = {};
- data.tag = parts.shift();
- data['crypto-suite'] = parts.shift();
- data['key-params'] = parts.shift();
- if (parts.length) {
- data['session-params'] = parts.join(' ');
- }
- return data;
- },
- parse_fingerprint: function (line) { // RFC 4572
- var parts = line.substring(14).split(' '),
- data = {};
- data.hash = parts.shift();
- data.fingerprint = parts.shift();
- // TODO assert that fingerprint satisfies 2UHEX *(":" 2UHEX) ?
- return data;
- },
- parse_fmtp: function (line) {
- var parts = line.split(' '),
- i, key, value,
- data = [];
- parts.shift();
- parts = parts.join(' ').split(';');
- for (i = 0; i < parts.length; i++) {
- key = parts[i].split('=')[0];
- while (key.length && key[0] == ' ') {
- key = key.substring(1);
- }
- value = parts[i].split('=')[1];
- if (key && value) {
- data.push({name: key, value: value});
- } else if (key) {
- // rfc 4733 (DTMF) style stuff
- data.push({name: '', value: key});
- }
- }
- return data;
- },
- parse_icecandidate: function (line) {
- var candidate = {},
- elems = line.split(' ');
- candidate.foundation = elems[0].substring(12);
- candidate.component = elems[1];
- candidate.protocol = elems[2].toLowerCase();
- candidate.priority = elems[3];
- candidate.ip = elems[4];
- candidate.port = elems[5];
- // elems[6] => "typ"
- candidate.type = elems[7];
- candidate.generation = 0; // default value, may be overwritten below
- for (var i = 8; i < elems.length; i += 2) {
- switch (elems[i]) {
- case 'raddr':
- candidate['rel-addr'] = elems[i + 1];
- break;
- case 'rport':
- candidate['rel-port'] = elems[i + 1];
- break;
- case 'generation':
- candidate.generation = elems[i + 1];
- break;
- case 'tcptype':
- candidate.tcptype = elems[i + 1];
- break;
- default: // TODO
- console.log('parse_icecandidate not translating "' + elems[i] + '" = "' + elems[i + 1] + '"');
- }
- }
- candidate.network = '1';
- candidate.id = Math.random().toString(36).substr(2, 10); // not applicable to SDP -- FIXME: should be unique, not just random
- return candidate;
- },
- build_icecandidate: function (cand) {
- var line = ['a=candidate:' + cand.foundation, cand.component, cand.protocol, cand.priority, cand.ip, cand.port, 'typ', cand.type].join(' ');
- line += ' ';
- switch (cand.type) {
- case 'srflx':
- case 'prflx':
- case 'relay':
- if (cand.hasOwnAttribute('rel-addr') && cand.hasOwnAttribute('rel-port')) {
- line += 'raddr';
- line += ' ';
- line += cand['rel-addr'];
- line += ' ';
- line += 'rport';
- line += ' ';
- line += cand['rel-port'];
- line += ' ';
- }
- break;
- }
- if (cand.hasOwnAttribute('tcptype')) {
- line += 'tcptype';
- line += ' ';
- line += cand.tcptype;
- line += ' ';
- }
- line += 'generation';
- line += ' ';
- line += cand.hasOwnAttribute('generation') ? cand.generation : '0';
- return line;
- },
- parse_ssrc: function (desc) {
- // proprietary mapping of a=ssrc lines
- // TODO: see "Jingle RTP Source Description" by Juberti and P. Thatcher on google docs
- // and parse according to that
- var lines = desc.split('\r\n'),
- data = {};
- for (var i = 0; i < lines.length; i++) {
- if (lines[i].substring(0, 7) == 'a=ssrc:') {
- var idx = lines[i].indexOf(' ');
- data[lines[i].substr(idx + 1).split(':', 2)[0]] = lines[i].substr(idx + 1).split(':', 2)[1];
- }
- }
- return data;
- },
- parse_rtcpfb: function (line) {
- var parts = line.substr(10).split(' ');
- var data = {};
- data.pt = parts.shift();
- data.type = parts.shift();
- data.params = parts;
- return data;
- },
- parse_extmap: function (line) {
- var parts = line.substr(9).split(' ');
- var data = {};
- data.value = parts.shift();
- if (data.value.indexOf('/') != -1) {
- data.direction = data.value.substr(data.value.indexOf('/') + 1);
- data.value = data.value.substr(0, data.value.indexOf('/'));
- } else {
- data.direction = 'both';
- }
- data.uri = parts.shift();
- data.params = parts;
- return data;
- },
- find_line: function (haystack, needle, sessionpart) {
- var lines = haystack.split('\r\n');
- for (var i = 0; i < lines.length; i++) {
- if (lines[i].substring(0, needle.length) == needle) {
- return lines[i];
- }
- }
- if (!sessionpart) {
- return false;
- }
- // search session part
- lines = sessionpart.split('\r\n');
- for (var j = 0; j < lines.length; j++) {
- if (lines[j].substring(0, needle.length) == needle) {
- return lines[j];
- }
- }
- return false;
- },
- find_lines: function (haystack, needle, sessionpart) {
- var lines = haystack.split('\r\n'),
- needles = [];
- for (var i = 0; i < lines.length; i++) {
- if (lines[i].substring(0, needle.length) == needle)
- needles.push(lines[i]);
- }
- if (needles.length || !sessionpart) {
- return needles;
- }
- // search session part
- lines = sessionpart.split('\r\n');
- for (var j = 0; j < lines.length; j++) {
- if (lines[j].substring(0, needle.length) == needle) {
- needles.push(lines[j]);
- }
- }
- return needles;
- },
- candidateToJingle: function (line) {
- // a=candidate:2979166662 1 udp 2113937151 192.168.2.100 57698 typ host generation 0
- // <candidate component=... foundation=... generation=... id=... ip=... network=... port=... priority=... protocol=... type=.../>
- if (line.indexOf('candidate:') === 0) {
- line = 'a=' + line;
- } else if (line.substring(0, 12) != 'a=candidate:') {
- console.log('parseCandidate called with a line that is not a candidate line');
- console.log(line);
- return null;
- }
- if (line.substring(line.length - 2) == '\r\n') // chomp it
- line = line.substring(0, line.length - 2);
- var candidate = {},
- elems = line.split(' '),
- i;
- if (elems[6] != 'typ') {
- console.log('did not find typ in the right place');
- console.log(line);
- return null;
- }
- candidate.foundation = elems[0].substring(12);
- candidate.component = elems[1];
- candidate.protocol = elems[2].toLowerCase();
- candidate.priority = elems[3];
- candidate.ip = elems[4];
- candidate.port = elems[5];
- // elems[6] => "typ"
- candidate.type = elems[7];
-
- candidate.generation = '0'; // default, may be overwritten below
- for (i = 8; i < elems.length; i += 2) {
- switch (elems[i]) {
- case 'raddr':
- candidate['rel-addr'] = elems[i + 1];
- break;
- case 'rport':
- candidate['rel-port'] = elems[i + 1];
- break;
- case 'generation':
- candidate.generation = elems[i + 1];
- break;
- case 'tcptype':
- candidate.tcptype = elems[i + 1];
- break;
- default: // TODO
- console.log('not translating "' + elems[i] + '" = "' + elems[i + 1] + '"');
- }
- }
- candidate.network = '1';
- candidate.id = Math.random().toString(36).substr(2, 10); // not applicable to SDP -- FIXME: should be unique, not just random
- return candidate;
- },
- candidateFromJingle: function (cand) {
- var line = 'a=candidate:';
- line += cand.getAttribute('foundation');
- line += ' ';
- line += cand.getAttribute('component');
- line += ' ';
- line += cand.getAttribute('protocol'); //.toUpperCase(); // chrome M23 doesn't like this
- line += ' ';
- line += cand.getAttribute('priority');
- line += ' ';
- line += cand.getAttribute('ip');
- line += ' ';
- line += cand.getAttribute('port');
- line += ' ';
- line += 'typ';
- line += ' ' + cand.getAttribute('type');
- line += ' ';
- switch (cand.getAttribute('type')) {
- case 'srflx':
- case 'prflx':
- case 'relay':
- if (cand.getAttribute('rel-addr') && cand.getAttribute('rel-port')) {
- line += 'raddr';
- line += ' ';
- line += cand.getAttribute('rel-addr');
- line += ' ';
- line += 'rport';
- line += ' ';
- line += cand.getAttribute('rel-port');
- line += ' ';
- }
- break;
- }
- if (cand.getAttribute('protocol').toLowerCase() == 'tcp') {
- line += 'tcptype';
- line += ' ';
- line += cand.getAttribute('tcptype');
- line += ' ';
- }
- line += 'generation';
- line += ' ';
- line += cand.getAttribute('generation') || '0';
- return line + '\r\n';
- }
- };
- module.exports = SDPUtil;
- },{}],5:[function(require,module,exports){
- function TraceablePeerConnection(ice_config, constraints) {
- var self = this;
- var RTCPeerconnection = navigator.mozGetUserMedia ? mozRTCPeerConnection : webkitRTCPeerConnection;
- this.peerconnection = new RTCPeerconnection(ice_config, constraints);
- this.updateLog = [];
- this.stats = {};
- this.statsinterval = null;
- this.maxstats = 0; // limit to 300 values, i.e. 5 minutes; set to 0 to disable
-
- // override as desired
- this.trace = function (what, info) {
- //console.warn('WTRACE', what, info);
- self.updateLog.push({
- time: new Date(),
- type: what,
- value: info || ""
- });
- };
- this.onicecandidate = null;
- this.peerconnection.onicecandidate = function (event) {
- self.trace('onicecandidate', JSON.stringify(event.candidate, null, ' '));
- if (self.onicecandidate !== null) {
- self.onicecandidate(event);
- }
- };
- this.onaddstream = null;
- this.peerconnection.onaddstream = function (event) {
- self.trace('onaddstream', event.stream.id);
- if (self.onaddstream !== null) {
- self.onaddstream(event);
- }
- };
- this.onremovestream = null;
- this.peerconnection.onremovestream = function (event) {
- self.trace('onremovestream', event.stream.id);
- if (self.onremovestream !== null) {
- self.onremovestream(event);
- }
- };
- this.onsignalingstatechange = null;
- this.peerconnection.onsignalingstatechange = function (event) {
- self.trace('onsignalingstatechange', self.signalingState);
- if (self.onsignalingstatechange !== null) {
- self.onsignalingstatechange(event);
- }
- };
- this.oniceconnectionstatechange = null;
- this.peerconnection.oniceconnectionstatechange = function (event) {
- self.trace('oniceconnectionstatechange', self.iceConnectionState);
- if (self.oniceconnectionstatechange !== null) {
- self.oniceconnectionstatechange(event);
- }
- };
- this.onnegotiationneeded = null;
- this.peerconnection.onnegotiationneeded = function (event) {
- self.trace('onnegotiationneeded');
- if (self.onnegotiationneeded !== null) {
- self.onnegotiationneeded(event);
- }
- };
- self.ondatachannel = null;
- this.peerconnection.ondatachannel = function (event) {
- self.trace('ondatachannel', event);
- if (self.ondatachannel !== null) {
- self.ondatachannel(event);
- }
- };
- if (!navigator.mozGetUserMedia && this.maxstats) {
- this.statsinterval = window.setInterval(function() {
- self.peerconnection.getStats(function(stats) {
- var results = stats.result();
- for (var i = 0; i < results.length; ++i) {
- //console.log(results[i].type, results[i].id, results[i].names())
- var now = new Date();
- results[i].names().forEach(function (name) {
- var id = results[i].id + '-' + name;
- if (!self.stats[id]) {
- self.stats[id] = {
- startTime: now,
- endTime: now,
- values: [],
- times: []
- };
- }
- self.stats[id].values.push(results[i].stat(name));
- self.stats[id].times.push(now.getTime());
- if (self.stats[id].values.length > self.maxstats) {
- self.stats[id].values.shift();
- self.stats[id].times.shift();
- }
- self.stats[id].endTime = now;
- });
- }
- });
-
- }, 1000);
- }
- };
-
- dumpSDP = function(description) {
- return 'type: ' + description.type + '\r\n' + description.sdp;
- }
-
- if (TraceablePeerConnection.prototype.__defineGetter__ !== undefined) {
- TraceablePeerConnection.prototype.__defineGetter__('signalingState', function() { return this.peerconnection.signalingState; });
- TraceablePeerConnection.prototype.__defineGetter__('iceConnectionState', function() { return this.peerconnection.iceConnectionState; });
- TraceablePeerConnection.prototype.__defineGetter__('localDescription', function() {
- var publicLocalDescription = simulcast.reverseTransformLocalDescription(this.peerconnection.localDescription);
- return publicLocalDescription;
- });
- TraceablePeerConnection.prototype.__defineGetter__('remoteDescription', function() {
- var publicRemoteDescription = simulcast.reverseTransformRemoteDescription(this.peerconnection.remoteDescription);
- return publicRemoteDescription;
- });
- }
-
- TraceablePeerConnection.prototype.addStream = function (stream) {
- this.trace('addStream', stream.id);
- simulcast.resetSender();
- try
- {
- this.peerconnection.addStream(stream);
- }
- catch (e)
- {
- console.error(e);
- return;
- }
- };
-
- TraceablePeerConnection.prototype.removeStream = function (stream, stopStreams) {
- this.trace('removeStream', stream.id);
- simulcast.resetSender();
- if(stopStreams) {
- stream.getAudioTracks().forEach(function (track) {
- track.stop();
- });
- stream.getVideoTracks().forEach(function (track) {
- track.stop();
- });
- }
- this.peerconnection.removeStream(stream);
- };
-
- TraceablePeerConnection.prototype.createDataChannel = function (label, opts) {
- this.trace('createDataChannel', label, opts);
- return this.peerconnection.createDataChannel(label, opts);
- };
-
- TraceablePeerConnection.prototype.setLocalDescription = function (description, successCallback, failureCallback) {
- var self = this;
- description = simulcast.transformLocalDescription(description);
- this.trace('setLocalDescription', dumpSDP(description));
- this.peerconnection.setLocalDescription(description,
- function () {
- self.trace('setLocalDescriptionOnSuccess');
- successCallback();
- },
- function (err) {
- self.trace('setLocalDescriptionOnFailure', err);
- failureCallback(err);
- }
- );
- /*
- if (this.statsinterval === null && this.maxstats > 0) {
- // start gathering stats
- }
- */
- };
-
- TraceablePeerConnection.prototype.setRemoteDescription = function (description, successCallback, failureCallback) {
- var self = this;
- description = simulcast.transformRemoteDescription(description);
- this.trace('setRemoteDescription', dumpSDP(description));
- this.peerconnection.setRemoteDescription(description,
- function () {
- self.trace('setRemoteDescriptionOnSuccess');
- successCallback();
- },
- function (err) {
- self.trace('setRemoteDescriptionOnFailure', err);
- failureCallback(err);
- }
- );
- /*
- if (this.statsinterval === null && this.maxstats > 0) {
- // start gathering stats
- }
- */
- };
-
- TraceablePeerConnection.prototype.close = function () {
- this.trace('stop');
- if (this.statsinterval !== null) {
- window.clearInterval(this.statsinterval);
- this.statsinterval = null;
- }
- this.peerconnection.close();
- };
-
- TraceablePeerConnection.prototype.createOffer = function (successCallback, failureCallback, constraints) {
- var self = this;
- this.trace('createOffer', JSON.stringify(constraints, null, ' '));
- this.peerconnection.createOffer(
- function (offer) {
- self.trace('createOfferOnSuccess', dumpSDP(offer));
- successCallback(offer);
- },
- function(err) {
- self.trace('createOfferOnFailure', err);
- failureCallback(err);
- },
- constraints
- );
- };
-
- TraceablePeerConnection.prototype.createAnswer = function (successCallback, failureCallback, constraints) {
- var self = this;
- this.trace('createAnswer', JSON.stringify(constraints, null, ' '));
- this.peerconnection.createAnswer(
- function (answer) {
- answer = simulcast.transformAnswer(answer);
- self.trace('createAnswerOnSuccess', dumpSDP(answer));
- successCallback(answer);
- },
- function(err) {
- self.trace('createAnswerOnFailure', err);
- failureCallback(err);
- },
- constraints
- );
- };
-
- TraceablePeerConnection.prototype.addIceCandidate = function (candidate, successCallback, failureCallback) {
- var self = this;
- this.trace('addIceCandidate', JSON.stringify(candidate, null, ' '));
- this.peerconnection.addIceCandidate(candidate);
- /* maybe later
- this.peerconnection.addIceCandidate(candidate,
- function () {
- self.trace('addIceCandidateOnSuccess');
- successCallback();
- },
- function (err) {
- self.trace('addIceCandidateOnFailure', err);
- failureCallback(err);
- }
- );
- */
- };
-
- TraceablePeerConnection.prototype.getStats = function(callback, errback) {
- if (navigator.mozGetUserMedia) {
- // ignore for now...
- if(!errback)
- errback = function () {
-
- }
- this.peerconnection.getStats(null,callback,errback);
- } else {
- this.peerconnection.getStats(callback);
- }
- };
-
- module.exports = TraceablePeerConnection;
-
-
- },{}],6:[function(require,module,exports){
- /* global $, $iq, config, connection, UI, messageHandler,
- roomName, sessionTerminated, Strophe, Util */
- /**
- * Contains logic responsible for enabling/disabling functionality available
- * only to moderator users.
- */
- var connection = null;
- var focusUserJid;
- function createExpBackoffTimer(step) {
- var count = 1;
- return function (reset) {
- // Reset call
- if (reset) {
- count = 1;
- return;
- }
- // Calculate next timeout
- var timeout = Math.pow(2, count - 1);
- count += 1;
- return timeout * step;
- };
- }
-
- var getNextTimeout = createExpBackoffTimer(1000);
- var getNextErrorTimeout = createExpBackoffTimer(1000);
- // External authentication stuff
- var externalAuthEnabled = false;
- // Sip gateway can be enabled by configuring Jigasi host in config.js or
- // it will be enabled automatically if focus detects the component through
- // service discovery.
- var sipGatewayEnabled = config.hosts.call_control !== undefined;
-
- var eventEmitter = null;
-
- var Moderator = {
- isModerator: function () {
- return connection && connection.emuc.isModerator();
- },
-
- isPeerModerator: function (peerJid) {
- return connection &&
- connection.emuc.getMemberRole(peerJid) === 'moderator';
- },
-
- isExternalAuthEnabled: function () {
- return externalAuthEnabled;
- },
-
- isSipGatewayEnabled: function () {
- return sipGatewayEnabled;
- },
-
- setConnection: function (con) {
- connection = con;
- },
-
- init: function (xmpp, emitter) {
- this.xmppService = xmpp;
- eventEmitter = emitter;
- },
-
- onMucLeft: function (jid) {
- console.info("Someone left is it focus ? " + jid);
- var resource = Strophe.getResourceFromJid(jid);
- if (resource === 'focus' && !this.xmppService.sessionTerminated) {
- console.info(
- "Focus has left the room - leaving conference");
- //hangUp();
- // We'd rather reload to have everything re-initialized
- // FIXME: show some message before reload
- location.reload();
- }
- },
-
- setFocusUserJid: function (focusJid) {
- if (!focusUserJid) {
- focusUserJid = focusJid;
- console.info("Focus jid set to: " + focusUserJid);
- }
- },
-
- getFocusUserJid: function () {
- return focusUserJid;
- },
-
- getFocusComponent: function () {
- // Get focus component address
- var focusComponent = config.hosts.focus;
- // If not specified use default: 'focus.domain'
- if (!focusComponent) {
- focusComponent = 'focus.' + config.hosts.domain;
- }
- return focusComponent;
- },
-
- createConferenceIq: function (roomName) {
- // Generate create conference IQ
- var elem = $iq({to: Moderator.getFocusComponent(), type: 'set'});
- elem.c('conference', {
- xmlns: 'http://jitsi.org/protocol/focus',
- room: roomName
- });
- if (config.hosts.bridge !== undefined) {
- elem.c(
- 'property',
- { name: 'bridge', value: config.hosts.bridge})
- .up();
- }
- // Tell the focus we have Jigasi configured
- if (config.hosts.call_control !== undefined) {
- elem.c(
- 'property',
- { name: 'call_control', value: config.hosts.call_control})
- .up();
- }
- if (config.channelLastN !== undefined) {
- elem.c(
- 'property',
- { name: 'channelLastN', value: config.channelLastN})
- .up();
- }
- if (config.adaptiveLastN !== undefined) {
- elem.c(
- 'property',
- { name: 'adaptiveLastN', value: config.adaptiveLastN})
- .up();
- }
- if (config.adaptiveSimulcast !== undefined) {
- elem.c(
- 'property',
- { name: 'adaptiveSimulcast', value: config.adaptiveSimulcast})
- .up();
- }
- if (config.openSctp !== undefined) {
- elem.c(
- 'property',
- { name: 'openSctp', value: config.openSctp})
- .up();
- }
- if (config.enableFirefoxSupport !== undefined) {
- elem.c(
- 'property',
- { name: 'enableFirefoxHacks',
- value: config.enableFirefoxSupport})
- .up();
- }
- elem.up();
- return elem;
- },
-
- parseConfigOptions: function (resultIq) {
-
- Moderator.setFocusUserJid(
- $(resultIq).find('conference').attr('focusjid'));
-
- var extAuthParam
- = $(resultIq).find('>conference>property[name=\'externalAuth\']');
- if (extAuthParam.length) {
- externalAuthEnabled = extAuthParam.attr('value') === 'true';
- }
-
- console.info("External authentication enabled: " + externalAuthEnabled);
-
- // Check if focus has auto-detected Jigasi component(this will be also
- // included if we have passed our host from the config)
- if ($(resultIq).find(
- '>conference>property[name=\'sipGatewayEnabled\']').length) {
- sipGatewayEnabled = true;
- }
-
- console.info("Sip gateway enabled: " + sipGatewayEnabled);
- },
-
- // FIXME: we need to show the fact that we're waiting for the focus
- // to the user(or that focus is not available)
- allocateConferenceFocus: function (roomName, callback) {
- // Try to use focus user JID from the config
- Moderator.setFocusUserJid(config.focusUserJid);
- // Send create conference IQ
- var iq = Moderator.createConferenceIq(roomName);
- var self = this;
- connection.sendIQ(
- iq,
- function (result) {
- if ('true' === $(result).find('conference').attr('ready')) {
- // Reset both timers
- getNextTimeout(true);
- getNextErrorTimeout(true);
- // Setup config options
- Moderator.parseConfigOptions(result);
- // Exec callback
- callback();
- } else {
- var waitMs = getNextTimeout();
- console.info("Waiting for the focus... " + waitMs);
- // Reset error timeout
- getNextErrorTimeout(true);
- window.setTimeout(
- function () {
- Moderator.allocateConferenceFocus(
- roomName, callback);
- }, waitMs);
- }
- },
- function (error) {
- // Not authorized to create new room
- if ($(error).find('>error>not-authorized').length) {
- console.warn("Unauthorized to start the conference");
- var toDomain
- = Strophe.getDomainFromJid(error.getAttribute('to'));
- if (toDomain === config.hosts.anonymousdomain) {
- // we are connected with anonymous domain and
- // only non anonymous users can create rooms
- // we must authorize the user
-
- self.xmppService.promptLogin();
- } else {
-
- eventEmitter.emit(XMPPEvents.AUTHENTICATION_REQUIRED, // External authentication mode
- function () {
- Moderator.allocateConferenceFocus(
- roomName, callback);
- });
-
- }
- return;
- }
- var waitMs = getNextErrorTimeout();
- console.error("Focus error, retry after " + waitMs, error);
- // Show message
- UI.messageHandler.notify(
- 'Conference focus', 'disconnected',
- Moderator.getFocusComponent() +
- ' not available - retry in ' +
- (waitMs / 1000) + ' sec');
- // Reset response timeout
- getNextTimeout(true);
- window.setTimeout(
- function () {
- Moderator.allocateConferenceFocus(roomName, callback);
- }, waitMs);
- }
- );
- },
-
- getAuthUrl: function (roomName, urlCallback) {
- var iq = $iq({to: Moderator.getFocusComponent(), type: 'get'});
- iq.c('auth-url', {
- xmlns: 'http://jitsi.org/protocol/focus',
- room: roomName
- });
- connection.sendIQ(
- iq,
- function (result) {
- var url = $(result).find('auth-url').attr('url');
- if (url) {
- console.info("Got auth url: " + url);
- urlCallback(url);
- } else {
- console.error(
- "Failed to get auth url fro mthe focus", result);
- }
- },
- function (error) {
- console.error("Get auth url error", error);
- }
- );
- }
- };
-
- module.exports = Moderator;
-
-
-
-
- },{}],7:[function(require,module,exports){
- /* global $, $iq, config, connection, focusMucJid, messageHandler, Moderator,
- Toolbar, Util */
- var Moderator = require("./moderator");
-
-
- var recordingToken = null;
- var recordingEnabled;
-
- /**
- * Whether to use a jirecon component for recording, or use the videobridge
- * through COLIBRI.
- */
- var useJirecon = (typeof config.hosts.jirecon != "undefined");
-
- /**
- * The ID of the jirecon recording session. Jirecon generates it when we
- * initially start recording, and it needs to be used in subsequent requests
- * to jirecon.
- */
- var jireconRid = null;
-
- function setRecordingToken(token) {
- recordingToken = token;
- }
-
- function setRecording(state, token, callback, connection) {
- if (useJirecon){
- setRecordingJirecon(state, token, callback, connection);
- } else {
- setRecordingColibri(state, token, callback, connection);
- }
- }
-
- function setRecordingJirecon(state, token, callback, connection) {
- if (state == recordingEnabled){
- return;
- }
-
- var iq = $iq({to: config.hosts.jirecon, type: 'set'})
- .c('recording', {xmlns: 'http://jitsi.org/protocol/jirecon',
- action: state ? 'start' : 'stop',
- mucjid: connection.emuc.roomjid});
- if (!state){
- iq.attrs({rid: jireconRid});
- }
-
- console.log('Start recording');
-
- connection.sendIQ(
- iq,
- function (result) {
- // TODO wait for an IQ with the real status, since this is
- // provisional?
- jireconRid = $(result).find('recording').attr('rid');
- console.log('Recording ' + (state ? 'started' : 'stopped') +
- '(jirecon)' + result);
- recordingEnabled = state;
- if (!state){
- jireconRid = null;
- }
-
- callback(state);
- },
- function (error) {
- console.log('Failed to start recording, error: ', error);
- callback(recordingEnabled);
- });
- }
-
- // Sends a COLIBRI message which enables or disables (according to 'state')
- // the recording on the bridge. Waits for the result IQ and calls 'callback'
- // with the new recording state, according to the IQ.
- function setRecordingColibri(state, token, callback, connection) {
- var elem = $iq({to: connection.emuc.focusMucJid, type: 'set'});
- elem.c('conference', {
- xmlns: 'http://jitsi.org/protocol/colibri'
- });
- elem.c('recording', {state: state, token: token});
-
- connection.sendIQ(elem,
- function (result) {
- console.log('Set recording "', state, '". Result:', result);
- var recordingElem = $(result).find('>conference>recording');
- var newState = ('true' === recordingElem.attr('state'));
-
- recordingEnabled = newState;
- callback(newState);
- },
- function (error) {
- console.warn(error);
- callback(recordingEnabled);
- }
- );
- }
-
- var Recording = {
- toggleRecording: function (tokenEmptyCallback,
- startingCallback, startedCallback, connection) {
- if (!Moderator.isModerator()) {
- console.log(
- 'non-focus, or conference not yet organized:' +
- ' not enabling recording');
- return;
- }
-
- // Jirecon does not (currently) support a token.
- if (!recordingToken && !useJirecon) {
- tokenEmptyCallback(function (value) {
- setRecordingToken(value);
- this.toggleRecording();
- });
-
- return;
- }
-
- var oldState = recordingEnabled;
- startingCallback(!oldState);
- setRecording(!oldState,
- recordingToken,
- function (state) {
- console.log("New recording state: ", state);
- if (state === oldState) {
- // FIXME: new focus:
- // this will not work when moderator changes
- // during active session. Then it will assume that
- // recording status has changed to true, but it might have
- // been already true(and we only received actual status from
- // the focus).
- //
- // SO we start with status null, so that it is initialized
- // here and will fail only after second click, so if invalid
- // token was used we have to press the button twice before
- // current status will be fetched and token will be reset.
- //
- // Reliable way would be to return authentication error.
- // Or status update when moderator connects.
- // Or we have to stop recording session when current
- // moderator leaves the room.
-
- // Failed to change, reset the token because it might
- // have been wrong
- setRecordingToken(null);
- }
- startedCallback(state);
-
- },
- connection
- );
- }
-
- }
-
- module.exports = Recording;
- },{"./moderator":6}],8:[function(require,module,exports){
- /* jshint -W117 */
- /* a simple MUC connection plugin
- * can only handle a single MUC room
- */
-
- var bridgeIsDown = false;
-
- var Moderator = require("./moderator");
- var JingleSession = require("./JingleSession");
-
- module.exports = function(XMPP, eventEmitter) {
- Strophe.addConnectionPlugin('emuc', {
- connection: null,
- roomjid: null,
- myroomjid: null,
- members: {},
- list_members: [], // so we can elect a new focus
- presMap: {},
- preziMap: {},
- joined: false,
- isOwner: false,
- role: null,
- focusMucJid: null,
- ssrc2jid: {},
- init: function (conn) {
- this.connection = conn;
- },
- initPresenceMap: function (myroomjid) {
- this.presMap['to'] = myroomjid;
- this.presMap['xns'] = 'http://jabber.org/protocol/muc';
- },
- doJoin: function (jid, password) {
- this.myroomjid = jid;
-
- console.info("Joined MUC as " + this.myroomjid);
-
- this.initPresenceMap(this.myroomjid);
-
- if (!this.roomjid) {
- this.roomjid = Strophe.getBareJidFromJid(jid);
- // add handlers (just once)
- this.connection.addHandler(this.onPresence.bind(this), null, 'presence', null, null, this.roomjid, {matchBare: true});
- this.connection.addHandler(this.onPresenceUnavailable.bind(this), null, 'presence', 'unavailable', null, this.roomjid, {matchBare: true});
- this.connection.addHandler(this.onPresenceError.bind(this), null, 'presence', 'error', null, this.roomjid, {matchBare: true});
- this.connection.addHandler(this.onMessage.bind(this), null, 'message', null, null, this.roomjid, {matchBare: true});
- }
- if (password !== undefined) {
- this.presMap['password'] = password;
- }
- this.sendPresence();
- },
- doLeave: function () {
- console.log("do leave", this.myroomjid);
- var pres = $pres({to: this.myroomjid, type: 'unavailable' });
- this.presMap.length = 0;
- this.connection.send(pres);
- },
- createNonAnonymousRoom: function () {
- // http://xmpp.org/extensions/xep-0045.html#createroom-reserved
-
- var getForm = $iq({type: 'get', to: this.roomjid})
- .c('query', {xmlns: 'http://jabber.org/protocol/muc#owner'})
- .c('x', {xmlns: 'jabber:x:data', type: 'submit'});
-
- var self = this;
-
- this.connection.sendIQ(getForm, function (form) {
-
- if (!$(form).find(
- '>query>x[xmlns="jabber:x:data"]' +
- '>field[var="muc#roomconfig_whois"]').length) {
-
- console.error('non-anonymous rooms not supported');
- return;
- }
-
- var formSubmit = $iq({to: this.roomjid, type: 'set'})
- .c('query', {xmlns: 'http://jabber.org/protocol/muc#owner'});
-
- formSubmit.c('x', {xmlns: 'jabber:x:data', type: 'submit'});
-
- formSubmit.c('field', {'var': 'FORM_TYPE'})
- .c('value')
- .t('http://jabber.org/protocol/muc#roomconfig').up().up();
-
- formSubmit.c('field', {'var': 'muc#roomconfig_whois'})
- .c('value').t('anyone').up().up();
-
- self.connection.sendIQ(formSubmit);
-
- }, function (error) {
- console.error("Error getting room configuration form");
- });
- },
- onPresence: function (pres) {
- var from = pres.getAttribute('from');
-
- // What is this for? A workaround for something?
- if (pres.getAttribute('type')) {
- return true;
- }
-
- // Parse etherpad tag.
- var etherpad = $(pres).find('>etherpad');
- if (etherpad.length) {
- if (config.etherpad_base && !Moderator.isModerator()) {
- eventEmitter.emit(XMPPEvents.ETHERPAD, etherpad.text());
- }
- }
-
- // Parse prezi tag.
- var presentation = $(pres).find('>prezi');
- if (presentation.length) {
- var url = presentation.attr('url');
- var current = presentation.find('>current').text();
-
- console.log('presentation info received from', from, url);
-
- if (this.preziMap[from] == null) {
- this.preziMap[from] = url;
-
- $(document).trigger('presentationadded.muc', [from, url, current]);
- }
- else {
- $(document).trigger('gotoslide.muc', [from, url, current]);
- }
- }
- else if (this.preziMap[from] != null) {
- var url = this.preziMap[from];
- delete this.preziMap[from];
- $(document).trigger('presentationremoved.muc', [from, url]);
- }
-
- // Parse audio info tag.
- var audioMuted = $(pres).find('>audiomuted');
- if (audioMuted.length) {
- $(document).trigger('audiomuted.muc', [from, audioMuted.text()]);
- }
-
- // Parse video info tag.
- var videoMuted = $(pres).find('>videomuted');
- if (videoMuted.length) {
- $(document).trigger('videomuted.muc', [from, videoMuted.text()]);
- }
-
- var stats = $(pres).find('>stats');
- if (stats.length) {
- var statsObj = {};
- Strophe.forEachChild(stats[0], "stat", function (el) {
- statsObj[el.getAttribute("name")] = el.getAttribute("value");
- });
- eventEmitter.emit(XMPPEvents.REMOTE_STATS, from, statsObj);
- }
-
- // Parse status.
- if ($(pres).find('>x[xmlns="http://jabber.org/protocol/muc#user"]>status[code="201"]').length) {
- this.isOwner = true;
- this.createNonAnonymousRoom();
- }
-
- // Parse roles.
- var member = {};
- member.show = $(pres).find('>show').text();
- member.status = $(pres).find('>status').text();
- var tmp = $(pres).find('>x[xmlns="http://jabber.org/protocol/muc#user"]>item');
- member.affiliation = tmp.attr('affiliation');
- member.role = tmp.attr('role');
-
- // Focus recognition
- member.jid = tmp.attr('jid');
- member.isFocus = false;
- if (member.jid
- && member.jid.indexOf(Moderator.getFocusUserJid() + "/") == 0) {
- member.isFocus = true;
- }
-
- var nicktag = $(pres).find('>nick[xmlns="http://jabber.org/protocol/nick"]');
- member.displayName = (nicktag.length > 0 ? nicktag.html() : null);
-
- if (from == this.myroomjid) {
- if (member.affiliation == 'owner') this.isOwner = true;
- if (this.role !== member.role) {
- this.role = member.role;
-
- eventEmitter.emit(XMPPEvents.LOCALROLE_CHANGED,
- from, member, pres, Moderator.isModerator(),
- Moderator.isExternalAuthEnabled());
- }
- if (!this.joined) {
- this.joined = true;
- eventEmitter.emit(XMPPEvents.MUC_JOINED, from, member);
- this.list_members.push(from);
- }
- } else if (this.members[from] === undefined) {
- // new participant
- this.members[from] = member;
- this.list_members.push(from);
- console.log('entered', from, member);
- if (member.isFocus) {
- this.focusMucJid = from;
- console.info("Ignore focus: " + from + ", real JID: " + member.jid);
- }
- else {
- var id = $(pres).find('>userID').text();
- var email = $(pres).find('>email');
- if (email.length > 0) {
- id = email.text();
- }
- eventEmitter.emit(XMPPEvents.MUC_ENTER, from, id, member.displayName);
- }
- } else {
- // Presence update for existing participant
- // Watch role change:
- if (this.members[from].role != member.role) {
- this.members[from].role = member.role;
- eventEmitter.emit(XMPPEvents.MUC_ROLE_CHANGED,
- member.role, member.displayName);
- }
- }
-
- // Always trigger presence to update bindings
- this.parsePresence(from, member, pres);
-
- // Trigger status message update
- if (member.status) {
- eventEmitter.emit(XMPPEvents.PRESENCE_STATUS, from, member);
- }
-
- return true;
- },
- onPresenceUnavailable: function (pres) {
- var from = pres.getAttribute('from');
- // Status code 110 indicates that this notification is "self-presence".
- if (!$(pres).find('>x[xmlns="http://jabber.org/protocol/muc#user"]>status[code="110"]').length) {
- delete this.members[from];
- this.list_members.splice(this.list_members.indexOf(from), 1);
- this.onParticipantLeft(from);
- }
- // If the status code is 110 this means we're leaving and we would like
- // to remove everyone else from our view, so we trigger the event.
- else if (this.list_members.length > 1) {
- for (var i = 0; i < this.list_members.length; i++) {
- var member = this.list_members[i];
- delete this.members[i];
- this.list_members.splice(i, 1);
- this.onParticipantLeft(member);
- }
- }
- if ($(pres).find('>x[xmlns="http://jabber.org/protocol/muc#user"]>status[code="307"]').length) {
- $(document).trigger('kicked.muc', [from]);
- if (this.myroomjid === from) {
- XMPP.disposeConference(false);
- eventEmitter.emit(XMPPEvents.KICKED);
- }
- }
- return true;
- },
- onPresenceError: function (pres) {
- var from = pres.getAttribute('from');
- if ($(pres).find('>error[type="auth"]>not-authorized[xmlns="urn:ietf:params:xml:ns:xmpp-stanzas"]').length) {
- console.log('on password required', from);
- var self = this;
- eventEmitter.emit(XMPPEvents.PASSWORD_REQUIRED, function (value) {
- self.doJoin(from, value);
- });
- } else if ($(pres).find(
- '>error[type="cancel"]>not-allowed[xmlns="urn:ietf:params:xml:ns:xmpp-stanzas"]').length) {
- var toDomain = Strophe.getDomainFromJid(pres.getAttribute('to'));
- if (toDomain === config.hosts.anonymousdomain) {
- // enter the room by replying with 'not-authorized'. This would
- // result in reconnection from authorized domain.
- // We're either missing Jicofo/Prosody config for anonymous
- // domains or something is wrong.
- // XMPP.promptLogin();
- UI.messageHandler.openReportDialog(null,
- 'Oops ! We couldn`t join the conference.' +
- ' There might be some problem with security' +
- ' configuration. Please contact service' +
- ' administrator.', pres);
- } else {
- console.warn('onPresError ', pres);
- UI.messageHandler.openReportDialog(null,
- 'Oops! Something went wrong and we couldn`t connect to the conference.',
- pres);
- }
- } else {
- console.warn('onPresError ', pres);
- UI.messageHandler.openReportDialog(null,
- 'Oops! Something went wrong and we couldn`t connect to the conference.',
- pres);
- }
- return true;
- },
- sendMessage: function (body, nickname) {
- var msg = $msg({to: this.roomjid, type: 'groupchat'});
- msg.c('body', body).up();
- if (nickname) {
- msg.c('nick', {xmlns: 'http://jabber.org/protocol/nick'}).t(nickname).up().up();
- }
- this.connection.send(msg);
- eventEmitter.emit(XMPPEvents.SENDING_CHAT_MESSAGE, body);
- },
- setSubject: function (subject) {
- var msg = $msg({to: this.roomjid, type: 'groupchat'});
- msg.c('subject', subject);
- this.connection.send(msg);
- console.log("topic changed to " + subject);
- },
- onMessage: function (msg) {
- // FIXME: this is a hack. but jingle on muc makes nickchanges hard
- var from = msg.getAttribute('from');
- var nick =
- $(msg).find('>nick[xmlns="http://jabber.org/protocol/nick"]')
- .text() ||
- Strophe.getResourceFromJid(from);
-
- var txt = $(msg).find('>body').text();
- var type = msg.getAttribute("type");
- if (type == "error") {
- eventEmitter.emit(XMPPEvents.CHAT_ERROR_RECEIVED,
- $(msg).find('>text').text(), txt);
- return true;
- }
-
- var subject = $(msg).find('>subject');
- if (subject.length) {
- var subjectText = subject.text();
- if (subjectText || subjectText == "") {
- eventEmitter.emit(XMPPEvents.SUBJECT_CHANGED, subjectText);
- console.log("Subject is changed to " + subjectText);
- }
- }
-
-
- if (txt) {
- console.log('chat', nick, txt);
- eventEmitter.emit(XMPPEvents.MESSAGE_RECEIVED,
- from, nick, txt, this.myroomjid);
- }
- return true;
- },
- lockRoom: function (key, onSuccess, onError, onNotSupported) {
- //http://xmpp.org/extensions/xep-0045.html#roomconfig
- var ob = this;
- this.connection.sendIQ($iq({to: this.roomjid, type: 'get'}).c('query', {xmlns: 'http://jabber.org/protocol/muc#owner'}),
- function (res) {
- if ($(res).find('>query>x[xmlns="jabber:x:data"]>field[var="muc#roomconfig_roomsecret"]').length) {
- var formsubmit = $iq({to: ob.roomjid, type: 'set'}).c('query', {xmlns: 'http://jabber.org/protocol/muc#owner'});
- formsubmit.c('x', {xmlns: 'jabber:x:data', type: 'submit'});
- formsubmit.c('field', {'var': 'FORM_TYPE'}).c('value').t('http://jabber.org/protocol/muc#roomconfig').up().up();
- formsubmit.c('field', {'var': 'muc#roomconfig_roomsecret'}).c('value').t(key).up().up();
- // Fixes a bug in prosody 0.9.+ https://code.google.com/p/lxmppd/issues/detail?id=373
- formsubmit.c('field', {'var': 'muc#roomconfig_whois'}).c('value').t('anyone').up().up();
- // FIXME: is muc#roomconfig_passwordprotectedroom required?
- ob.connection.sendIQ(formsubmit,
- onSuccess,
- onError);
- } else {
- onNotSupported();
- }
- }, onError);
- },
- kick: function (jid) {
- var kickIQ = $iq({to: this.roomjid, type: 'set'})
- .c('query', {xmlns: 'http://jabber.org/protocol/muc#admin'})
- .c('item', {nick: Strophe.getResourceFromJid(jid), role: 'none'})
- .c('reason').t('You have been kicked.').up().up().up();
-
- this.connection.sendIQ(
- kickIQ,
- function (result) {
- console.log('Kick participant with jid: ', jid, result);
- },
- function (error) {
- console.log('Kick participant error: ', error);
- });
- },
- sendPresence: function () {
- var pres = $pres({to: this.presMap['to'] });
- pres.c('x', {xmlns: this.presMap['xns']});
-
- if (this.presMap['password']) {
- pres.c('password').t(this.presMap['password']).up();
- }
-
- pres.up();
-
- // Send XEP-0115 'c' stanza that contains our capabilities info
- if (this.connection.caps) {
- this.connection.caps.node = config.clientNode;
- pres.c('c', this.connection.caps.generateCapsAttrs()).up();
- }
-
- pres.c('user-agent', {xmlns: 'http://jitsi.org/jitmeet/user-agent'})
- .t(navigator.userAgent).up();
-
- if (this.presMap['bridgeIsDown']) {
- pres.c('bridgeIsDown').up();
- }
-
- if (this.presMap['email']) {
- pres.c('email').t(this.presMap['email']).up();
- }
-
- if (this.presMap['userId']) {
- pres.c('userId').t(this.presMap['userId']).up();
- }
-
- if (this.presMap['displayName']) {
- // XEP-0172
- pres.c('nick', {xmlns: 'http://jabber.org/protocol/nick'})
- .t(this.presMap['displayName']).up();
- }
-
- if (this.presMap['audions']) {
- pres.c('audiomuted', {xmlns: this.presMap['audions']})
- .t(this.presMap['audiomuted']).up();
- }
-
- if (this.presMap['videons']) {
- pres.c('videomuted', {xmlns: this.presMap['videons']})
- .t(this.presMap['videomuted']).up();
- }
-
- if (this.presMap['statsns']) {
- var stats = pres.c('stats', {xmlns: this.presMap['statsns']});
- for (var stat in this.presMap["stats"])
- if (this.presMap["stats"][stat] != null)
- stats.c("stat", {name: stat, value: this.presMap["stats"][stat]}).up();
- pres.up();
- }
-
- if (this.presMap['prezins']) {
- pres.c('prezi',
- {xmlns: this.presMap['prezins'],
- 'url': this.presMap['preziurl']})
- .c('current').t(this.presMap['prezicurrent']).up().up();
- }
-
- if (this.presMap['etherpadns']) {
- pres.c('etherpad', {xmlns: this.presMap['etherpadns']})
- .t(this.presMap['etherpadname']).up();
- }
-
- if (this.presMap['medians']) {
- pres.c('media', {xmlns: this.presMap['medians']});
- var sourceNumber = 0;
- Object.keys(this.presMap).forEach(function (key) {
- if (key.indexOf('source') >= 0) {
- sourceNumber++;
- }
- });
- if (sourceNumber > 0)
- for (var i = 1; i <= sourceNumber / 3; i++) {
- pres.c('source',
- {type: this.presMap['source' + i + '_type'],
- ssrc: this.presMap['source' + i + '_ssrc'],
- direction: this.presMap['source' + i + '_direction']
- || 'sendrecv' }
- ).up();
- }
- }
-
- pres.up();
- this.connection.send(pres);
- },
- addDisplayNameToPresence: function (displayName) {
- this.presMap['displayName'] = displayName;
- },
- addMediaToPresence: function (sourceNumber, mtype, ssrcs, direction) {
- if (!this.presMap['medians'])
- this.presMap['medians'] = 'http://estos.de/ns/mjs';
-
- this.presMap['source' + sourceNumber + '_type'] = mtype;
- this.presMap['source' + sourceNumber + '_ssrc'] = ssrcs;
- this.presMap['source' + sourceNumber + '_direction'] = direction;
- },
- clearPresenceMedia: function () {
- var self = this;
- Object.keys(this.presMap).forEach(function (key) {
- if (key.indexOf('source') != -1) {
- delete self.presMap[key];
- }
- });
- },
- addPreziToPresence: function (url, currentSlide) {
- this.presMap['prezins'] = 'http://jitsi.org/jitmeet/prezi';
- this.presMap['preziurl'] = url;
- this.presMap['prezicurrent'] = currentSlide;
- },
- removePreziFromPresence: function () {
- delete this.presMap['prezins'];
- delete this.presMap['preziurl'];
- delete this.presMap['prezicurrent'];
- },
- addCurrentSlideToPresence: function (currentSlide) {
- this.presMap['prezicurrent'] = currentSlide;
- },
- getPrezi: function (roomjid) {
- return this.preziMap[roomjid];
- },
- addEtherpadToPresence: function (etherpadName) {
- this.presMap['etherpadns'] = 'http://jitsi.org/jitmeet/etherpad';
- this.presMap['etherpadname'] = etherpadName;
- },
- addAudioInfoToPresence: function (isMuted) {
- this.presMap['audions'] = 'http://jitsi.org/jitmeet/audio';
- this.presMap['audiomuted'] = isMuted.toString();
- },
- addVideoInfoToPresence: function (isMuted) {
- this.presMap['videons'] = 'http://jitsi.org/jitmeet/video';
- this.presMap['videomuted'] = isMuted.toString();
- },
- addConnectionInfoToPresence: function (stats) {
- this.presMap['statsns'] = 'http://jitsi.org/jitmeet/stats';
- this.presMap['stats'] = stats;
- },
- findJidFromResource: function (resourceJid) {
- if (resourceJid &&
- resourceJid === Strophe.getResourceFromJid(this.myroomjid)) {
- return this.myroomjid;
- }
- var peerJid = null;
- Object.keys(this.members).some(function (jid) {
- peerJid = jid;
- return Strophe.getResourceFromJid(jid) === resourceJid;
- });
- return peerJid;
- },
- addBridgeIsDownToPresence: function () {
- this.presMap['bridgeIsDown'] = true;
- },
- addEmailToPresence: function (email) {
- this.presMap['email'] = email;
- },
- addUserIdToPresence: function (userId) {
- this.presMap['userId'] = userId;
- },
- isModerator: function () {
- return this.role === 'moderator';
- },
- getMemberRole: function (peerJid) {
- if (this.members[peerJid]) {
- return this.members[peerJid].role;
- }
- return null;
- },
- onParticipantLeft: function (jid) {
-
- eventEmitter.emit(XMPPEvents.MUC_LEFT, jid);
-
- this.connection.jingle.terminateByJid(jid);
-
- if (this.getPrezi(jid)) {
- $(document).trigger('presentationremoved.muc',
- [jid, this.getPrezi(jid)]);
- }
-
- Moderator.onMucLeft(jid);
- },
- parsePresence: function (from, memeber, pres) {
- if($(pres).find(">bridgeIsDown").length > 0 && !bridgeIsDown) {
- bridgeIsDown = true;
- eventEmitter.emit(XMPPEvents.BRIDGE_DOWN);
- }
-
- if(memeber.isFocus)
- return;
-
- var self = this;
- // Remove old ssrcs coming from the jid
- Object.keys(this.ssrc2jid).forEach(function (ssrc) {
- if (self.ssrc2jid[ssrc] == jid) {
- delete self.ssrc2jid[ssrc];
- }
- });
-
- var changedStreams = [];
- $(pres).find('>media[xmlns="http://estos.de/ns/mjs"]>source').each(function (idx, ssrc) {
- //console.log(jid, 'assoc ssrc', ssrc.getAttribute('type'), ssrc.getAttribute('ssrc'));
- var ssrcV = ssrc.getAttribute('ssrc');
- self.ssrc2jid[ssrcV] = from;
- JingleSession.notReceivedSSRCs.push(ssrcV);
-
-
- var type = ssrc.getAttribute('type');
-
- var direction = ssrc.getAttribute('direction');
-
- changedStreams.push({type: type, direction: direction});
-
- });
-
- eventEmitter.emit(XMPPEvents.CHANGED_STREAMS, from, changedStreams);
-
- var displayName = !config.displayJids
- ? memeber.displayName : Strophe.getResourceFromJid(from);
-
- if (displayName && displayName.length > 0)
- {
- eventEmitter.emit(XMPPEvents.DISPLAY_NAME_CHANGED, from, displayName);
- }
-
-
- var id = $(pres).find('>userID').text();
- var email = $(pres).find('>email');
- if(email.length > 0) {
- id = email.text();
- }
-
- eventEmitter.emit(XMPPEvents.USER_ID_CHANGED, from, id);
- }
- });
- };
-
-
- },{"./JingleSession":1,"./moderator":6}],9:[function(require,module,exports){
- /* jshint -W117 */
-
- var JingleSession = require("./JingleSession");
-
- module.exports = function(XMPP, eventEmitter)
- {
- function CallIncomingJingle(sid, connection) {
- var sess = connection.jingle.sessions[sid];
-
- // TODO: do we check activecall == null?
- connection.jingle.activecall = sess;
-
- eventEmitter.emit(XMPPEvents.CALL_INCOMING, sess);
-
- // TODO: check affiliation and/or role
- console.log('emuc data for', sess.peerjid, connection.emuc.members[sess.peerjid]);
- sess.usedrip = true; // not-so-naive trickle ice
- sess.sendAnswer();
- sess.accept();
-
- };
-
- Strophe.addConnectionPlugin('jingle', {
- connection: null,
- sessions: {},
- jid2session: {},
- ice_config: {iceServers: []},
- pc_constraints: {},
- activecall: null,
- media_constraints: {
- mandatory: {
- 'OfferToReceiveAudio': true,
- 'OfferToReceiveVideo': true
- }
- // MozDontOfferDataChannel: true when this is firefox
- },
- init: function (conn) {
- this.connection = conn;
- if (this.connection.disco) {
- // http://xmpp.org/extensions/xep-0167.html#support
- // http://xmpp.org/extensions/xep-0176.html#support
- this.connection.disco.addFeature('urn:xmpp:jingle:1');
- this.connection.disco.addFeature('urn:xmpp:jingle:apps:rtp:1');
- this.connection.disco.addFeature('urn:xmpp:jingle:transports:ice-udp:1');
- this.connection.disco.addFeature('urn:xmpp:jingle:transports:dtls-sctp:1');
- this.connection.disco.addFeature('urn:xmpp:jingle:apps:rtp:audio');
- this.connection.disco.addFeature('urn:xmpp:jingle:apps:rtp:video');
-
-
- // this is dealt with by SDP O/A so we don't need to annouce this
- //this.connection.disco.addFeature('urn:xmpp:jingle:apps:rtp:rtcp-fb:0'); // XEP-0293
- //this.connection.disco.addFeature('urn:xmpp:jingle:apps:rtp:rtp-hdrext:0'); // XEP-0294
- if (config.useRtcpMux) {
- this.connection.disco.addFeature('urn:ietf:rfc:5761'); // rtcp-mux
- }
- if (config.useBundle) {
- this.connection.disco.addFeature('urn:ietf:rfc:5888'); // a=group, e.g. bundle
- }
- //this.connection.disco.addFeature('urn:ietf:rfc:5576'); // a=ssrc
- }
- this.connection.addHandler(this.onJingle.bind(this), 'urn:xmpp:jingle:1', 'iq', 'set', null, null);
- },
- onJingle: function (iq) {
- var sid = $(iq).find('jingle').attr('sid');
- var action = $(iq).find('jingle').attr('action');
- var fromJid = iq.getAttribute('from');
- // send ack first
- var ack = $iq({type: 'result',
- to: fromJid,
- id: iq.getAttribute('id')
- });
- console.log('on jingle ' + action + ' from ' + fromJid, iq);
- var sess = this.sessions[sid];
- if ('session-initiate' != action) {
- if (sess === null) {
- ack.type = 'error';
- ack.c('error', {type: 'cancel'})
- .c('item-not-found', {xmlns: 'urn:ietf:params:xml:ns:xmpp-stanzas'}).up()
- .c('unknown-session', {xmlns: 'urn:xmpp:jingle:errors:1'});
- this.connection.send(ack);
- return true;
- }
- // compare from to sess.peerjid (bare jid comparison for later compat with message-mode)
- // local jid is not checked
- if (Strophe.getBareJidFromJid(fromJid) != Strophe.getBareJidFromJid(sess.peerjid)) {
- console.warn('jid mismatch for session id', sid, fromJid, sess.peerjid);
- ack.type = 'error';
- ack.c('error', {type: 'cancel'})
- .c('item-not-found', {xmlns: 'urn:ietf:params:xml:ns:xmpp-stanzas'}).up()
- .c('unknown-session', {xmlns: 'urn:xmpp:jingle:errors:1'});
- this.connection.send(ack);
- return true;
- }
- } else if (sess !== undefined) {
- // existing session with same session id
- // this might be out-of-order if the sess.peerjid is the same as from
- ack.type = 'error';
- ack.c('error', {type: 'cancel'})
- .c('service-unavailable', {xmlns: 'urn:ietf:params:xml:ns:xmpp-stanzas'}).up();
- console.warn('duplicate session id', sid);
- this.connection.send(ack);
- return true;
- }
- // FIXME: check for a defined action
- this.connection.send(ack);
- // see http://xmpp.org/extensions/xep-0166.html#concepts-session
- switch (action) {
- case 'session-initiate':
- sess = new JingleSession(
- $(iq).attr('to'), $(iq).find('jingle').attr('sid'),
- this.connection, XMPP);
- // configure session
-
- sess.media_constraints = this.media_constraints;
- sess.pc_constraints = this.pc_constraints;
- sess.ice_config = this.ice_config;
-
- sess.initiate(fromJid, false);
- // FIXME: setRemoteDescription should only be done when this call is to be accepted
- sess.setRemoteDescription($(iq).find('>jingle'), 'offer');
-
- this.sessions[sess.sid] = sess;
- this.jid2session[sess.peerjid] = sess;
-
- // the callback should either
- // .sendAnswer and .accept
- // or .sendTerminate -- not necessarily synchronus
- CallIncomingJingle(sess.sid, this.connection);
- break;
- case 'session-accept':
- sess.setRemoteDescription($(iq).find('>jingle'), 'answer');
- sess.accept();
- $(document).trigger('callaccepted.jingle', [sess.sid]);
- break;
- case 'session-terminate':
- // If this is not the focus sending the terminate, we have
- // nothing more to do here.
- if (Object.keys(this.sessions).length < 1
- || !(this.sessions[Object.keys(this.sessions)[0]]
- instanceof JingleSession))
- {
- break;
- }
- console.log('terminating...', sess.sid);
- sess.terminate();
- this.terminate(sess.sid);
- if ($(iq).find('>jingle>reason').length) {
- $(document).trigger('callterminated.jingle', [
- sess.sid,
- sess.peerjid,
- $(iq).find('>jingle>reason>:first')[0].tagName,
- $(iq).find('>jingle>reason>text').text()
- ]);
- } else {
- $(document).trigger('callterminated.jingle',
- [sess.sid, sess.peerjid]);
- }
- break;
- case 'transport-info':
- sess.addIceCandidate($(iq).find('>jingle>content'));
- break;
- case 'session-info':
- var affected;
- if ($(iq).find('>jingle>ringing[xmlns="urn:xmpp:jingle:apps:rtp:info:1"]').length) {
- $(document).trigger('ringing.jingle', [sess.sid]);
- } else if ($(iq).find('>jingle>mute[xmlns="urn:xmpp:jingle:apps:rtp:info:1"]').length) {
- affected = $(iq).find('>jingle>mute[xmlns="urn:xmpp:jingle:apps:rtp:info:1"]').attr('name');
- $(document).trigger('mute.jingle', [sess.sid, affected]);
- } else if ($(iq).find('>jingle>unmute[xmlns="urn:xmpp:jingle:apps:rtp:info:1"]').length) {
- affected = $(iq).find('>jingle>unmute[xmlns="urn:xmpp:jingle:apps:rtp:info:1"]').attr('name');
- $(document).trigger('unmute.jingle', [sess.sid, affected]);
- }
- break;
- case 'addsource': // FIXME: proprietary, un-jingleish
- case 'source-add': // FIXME: proprietary
- sess.addSource($(iq).find('>jingle>content'), fromJid);
- break;
- case 'removesource': // FIXME: proprietary, un-jingleish
- case 'source-remove': // FIXME: proprietary
- sess.removeSource($(iq).find('>jingle>content'), fromJid);
- break;
- default:
- console.warn('jingle action not implemented', action);
- break;
- }
- return true;
- },
- initiate: function (peerjid, myjid) { // initiate a new jinglesession to peerjid
- var sess = new JingleSession(myjid || this.connection.jid,
- Math.random().toString(36).substr(2, 12), // random string
- this.connection, XMPP);
- // configure session
-
- sess.media_constraints = this.media_constraints;
- sess.pc_constraints = this.pc_constraints;
- sess.ice_config = this.ice_config;
-
- sess.initiate(peerjid, true);
- this.sessions[sess.sid] = sess;
- this.jid2session[sess.peerjid] = sess;
- sess.sendOffer();
- return sess;
- },
- terminate: function (sid, reason, text) { // terminate by sessionid (or all sessions)
- if (sid === null || sid === undefined) {
- for (sid in this.sessions) {
- if (this.sessions[sid].state != 'ended') {
- this.sessions[sid].sendTerminate(reason || (!this.sessions[sid].active()) ? 'cancel' : null, text);
- this.sessions[sid].terminate();
- }
- delete this.jid2session[this.sessions[sid].peerjid];
- delete this.sessions[sid];
- }
- } else if (this.sessions.hasOwnProperty(sid)) {
- if (this.sessions[sid].state != 'ended') {
- this.sessions[sid].sendTerminate(reason || (!this.sessions[sid].active()) ? 'cancel' : null, text);
- this.sessions[sid].terminate();
- }
- delete this.jid2session[this.sessions[sid].peerjid];
- delete this.sessions[sid];
- }
- },
- // Used to terminate a session when an unavailable presence is received.
- terminateByJid: function (jid) {
- if (this.jid2session.hasOwnProperty(jid)) {
- var sess = this.jid2session[jid];
- if (sess) {
- sess.terminate();
- console.log('peer went away silently', jid);
- delete this.sessions[sess.sid];
- delete this.jid2session[jid];
- $(document).trigger('callterminated.jingle',
- [sess.sid, jid], 'gone');
- }
- }
- },
- terminateRemoteByJid: function (jid, reason) {
- if (this.jid2session.hasOwnProperty(jid)) {
- var sess = this.jid2session[jid];
- if (sess) {
- sess.sendTerminate(reason || (!sess.active()) ? 'kick' : null);
- sess.terminate();
- console.log('terminate peer with jid', sess.sid, jid);
- delete this.sessions[sess.sid];
- delete this.jid2session[jid];
- $(document).trigger('callterminated.jingle',
- [sess.sid, jid, 'kicked']);
- }
- }
- },
- getStunAndTurnCredentials: function () {
- // get stun and turn configuration from server via xep-0215
- // uses time-limited credentials as described in
- // http://tools.ietf.org/html/draft-uberti-behave-turn-rest-00
- //
- // see https://code.google.com/p/prosody-modules/source/browse/mod_turncredentials/mod_turncredentials.lua
- // for a prosody module which implements this
- //
- // currently, this doesn't work with updateIce and therefore credentials with a long
- // validity have to be fetched before creating the peerconnection
- // TODO: implement refresh via updateIce as described in
- // https://code.google.com/p/webrtc/issues/detail?id=1650
- var self = this;
- this.connection.sendIQ(
- $iq({type: 'get', to: this.connection.domain})
- .c('services', {xmlns: 'urn:xmpp:extdisco:1'}).c('service', {host: 'turn.' + this.connection.domain}),
- function (res) {
- var iceservers = [];
- $(res).find('>services>service').each(function (idx, el) {
- el = $(el);
- var dict = {};
- var type = el.attr('type');
- switch (type) {
- case 'stun':
- dict.url = 'stun:' + el.attr('host');
- if (el.attr('port')) {
- dict.url += ':' + el.attr('port');
- }
- iceservers.push(dict);
- break;
- case 'turn':
- case 'turns':
- dict.url = type + ':';
- if (el.attr('username')) { // https://code.google.com/p/webrtc/issues/detail?id=1508
- if (navigator.userAgent.match(/Chrom(e|ium)\/([0-9]+)\./) && parseInt(navigator.userAgent.match(/Chrom(e|ium)\/([0-9]+)\./)[2], 10) < 28) {
- dict.url += el.attr('username') + '@';
- } else {
- dict.username = el.attr('username'); // only works in M28
- }
- }
- dict.url += el.attr('host');
- if (el.attr('port') && el.attr('port') != '3478') {
- dict.url += ':' + el.attr('port');
- }
- if (el.attr('transport') && el.attr('transport') != 'udp') {
- dict.url += '?transport=' + el.attr('transport');
- }
- if (el.attr('password')) {
- dict.credential = el.attr('password');
- }
- iceservers.push(dict);
- break;
- }
- });
- self.ice_config.iceServers = iceservers;
- },
- function (err) {
- console.warn('getting turn credentials failed', err);
- console.warn('is mod_turncredentials or similar installed?');
- }
- );
- // implement push?
- },
-
- /**
- * Populates the log data
- */
- populateData: function () {
- var data = {};
- Object.keys(this.sessions).forEach(function (sid) {
- var session = this.sessions[sid];
- if (session.peerconnection && session.peerconnection.updateLog) {
- // FIXME: should probably be a .dump call
- data["jingle_" + session.sid] = {
- updateLog: session.peerconnection.updateLog,
- stats: session.peerconnection.stats,
- url: window.location.href
- };
- }
- });
- return data;
- }
- });
- };
-
-
- },{"./JingleSession":1}],10:[function(require,module,exports){
- /* global Strophe */
- module.exports = function () {
-
- Strophe.addConnectionPlugin('logger', {
- // logs raw stanzas and makes them available for download as JSON
- connection: null,
- log: [],
- init: function (conn) {
- this.connection = conn;
- this.connection.rawInput = this.log_incoming.bind(this);
- this.connection.rawOutput = this.log_outgoing.bind(this);
- },
- log_incoming: function (stanza) {
- this.log.push([new Date().getTime(), 'incoming', stanza]);
- },
- log_outgoing: function (stanza) {
- this.log.push([new Date().getTime(), 'outgoing', stanza]);
- }
- });
- };
- },{}],11:[function(require,module,exports){
- /* global $, $iq, config, connection, focusMucJid, forceMuted,
- setAudioMuted, Strophe */
- /**
- * Moderate connection plugin.
- */
- module.exports = function (XMPP) {
- Strophe.addConnectionPlugin('moderate', {
- connection: null,
- init: function (conn) {
- this.connection = conn;
-
- this.connection.addHandler(this.onMute.bind(this),
- 'http://jitsi.org/jitmeet/audio',
- 'iq',
- 'set',
- null,
- null);
- },
- setMute: function (jid, mute) {
- console.info("set mute", mute);
- var iqToFocus = $iq({to: this.connection.emuc.focusMucJid, type: 'set'})
- .c('mute', {
- xmlns: 'http://jitsi.org/jitmeet/audio',
- jid: jid
- })
- .t(mute.toString())
- .up();
-
- this.connection.sendIQ(
- iqToFocus,
- function (result) {
- console.log('set mute', result);
- },
- function (error) {
- console.log('set mute error', error);
- });
- },
- onMute: function (iq) {
- var from = iq.getAttribute('from');
- if (from !== this.connection.emuc.focusMucJid) {
- console.warn("Ignored mute from non focus peer");
- return false;
- }
- var mute = $(iq).find('mute');
- if (mute.length) {
- var doMuteAudio = mute.text() === "true";
- UI.setAudioMuted(doMuteAudio);
- XMPP.forceMuted = doMuteAudio;
- }
- return true;
- },
- eject: function (jid) {
- // We're not the focus, so can't terminate
- //connection.jingle.terminateRemoteByJid(jid, 'kick');
- this.connection.emuc.kick(jid);
- }
- });
- }
- },{}],12:[function(require,module,exports){
- /* jshint -W117 */
- module.exports = function() {
- Strophe.addConnectionPlugin('rayo',
- {
- RAYO_XMLNS: 'urn:xmpp:rayo:1',
- connection: null,
- init: function (conn) {
- this.connection = conn;
- if (this.connection.disco) {
- this.connection.disco.addFeature('urn:xmpp:rayo:client:1');
- }
-
- this.connection.addHandler(
- this.onRayo.bind(this), this.RAYO_XMLNS, 'iq', 'set', null, null);
- },
- onRayo: function (iq) {
- console.info("Rayo IQ", iq);
- },
- dial: function (to, from, roomName, roomPass) {
- var self = this;
- var req = $iq(
- {
- type: 'set',
- to: this.connection.emuc.focusMucJid
- }
- );
- req.c('dial',
- {
- xmlns: this.RAYO_XMLNS,
- to: to,
- from: from
- });
- req.c('header',
- {
- name: 'JvbRoomName',
- value: roomName
- }).up();
-
- if (roomPass !== null && roomPass.length) {
-
- req.c('header',
- {
- name: 'JvbRoomPassword',
- value: roomPass
- }).up();
- }
-
- this.connection.sendIQ(
- req,
- function (result) {
- console.info('Dial result ', result);
-
- var resource = $(result).find('ref').attr('uri');
- this.call_resource = resource.substr('xmpp:'.length);
- console.info(
- "Received call resource: " + this.call_resource);
- },
- function (error) {
- console.info('Dial error ', error);
- }
- );
- },
- hang_up: function () {
- if (!this.call_resource) {
- console.warn("No call in progress");
- return;
- }
-
- var self = this;
- var req = $iq(
- {
- type: 'set',
- to: this.call_resource
- }
- );
- req.c('hangup',
- {
- xmlns: this.RAYO_XMLNS
- });
-
- this.connection.sendIQ(
- req,
- function (result) {
- console.info('Hangup result ', result);
- self.call_resource = null;
- },
- function (error) {
- console.info('Hangup error ', error);
- self.call_resource = null;
- }
- );
- }
- }
- );
- };
-
- },{}],13:[function(require,module,exports){
- /**
- * Strophe logger implementation. Logs from level WARN and above.
- */
- module.exports = function () {
-
- Strophe.log = function (level, msg) {
- switch (level) {
- case Strophe.LogLevel.WARN:
- console.warn("Strophe: " + msg);
- break;
- case Strophe.LogLevel.ERROR:
- case Strophe.LogLevel.FATAL:
- console.error("Strophe: " + msg);
- break;
- }
- };
-
- Strophe.getStatusString = function (status) {
- switch (status) {
- case Strophe.Status.ERROR:
- return "ERROR";
- case Strophe.Status.CONNECTING:
- return "CONNECTING";
- case Strophe.Status.CONNFAIL:
- return "CONNFAIL";
- case Strophe.Status.AUTHENTICATING:
- return "AUTHENTICATING";
- case Strophe.Status.AUTHFAIL:
- return "AUTHFAIL";
- case Strophe.Status.CONNECTED:
- return "CONNECTED";
- case Strophe.Status.DISCONNECTED:
- return "DISCONNECTED";
- case Strophe.Status.DISCONNECTING:
- return "DISCONNECTING";
- case Strophe.Status.ATTACHED:
- return "ATTACHED";
- default:
- return "unknown";
- }
- };
- };
-
- },{}],14:[function(require,module,exports){
- var Moderator = require("./moderator");
- var EventEmitter = require("events");
- var Recording = require("./recording");
- var SDP = require("./SDP");
- var Pako = require("pako");
-
- var eventEmitter = new EventEmitter();
- var connection = null;
- var authenticatedUser = false;
-
- function connect(jid, password, uiCredentials) {
- var bosh
- = uiCredentials.bosh || config.bosh || '/http-bind';
- connection = new Strophe.Connection(bosh);
- Moderator.setConnection(connection);
-
- var settings = UI.getSettings();
- var email = settings.email;
- var displayName = settings.displayName;
- if(email) {
- connection.emuc.addEmailToPresence(email);
- } else {
- connection.emuc.addUserIdToPresence(settings.uid);
- }
- if(displayName) {
- connection.emuc.addDisplayNameToPresence(displayName);
- }
-
- if (connection.disco) {
- // for chrome, add multistream cap
- }
- connection.jingle.pc_constraints = RTC.getPCConstraints();
- if (config.useIPv6) {
- // https://code.google.com/p/webrtc/issues/detail?id=2828
- if (!connection.jingle.pc_constraints.optional)
- connection.jingle.pc_constraints.optional = [];
- connection.jingle.pc_constraints.optional.push({googIPv6: true});
- }
-
- if(!password)
- password = uiCredentials.password;
-
- var anonymousConnectionFailed = false;
- connection.connect(jid, password, function (status, msg) {
- console.log('Strophe status changed to',
- Strophe.getStatusString(status));
- if (status === Strophe.Status.CONNECTED) {
- if (config.useStunTurn) {
- connection.jingle.getStunAndTurnCredentials();
- }
- UI.disableConnect();
-
- console.info("My Jabber ID: " + connection.jid);
-
- if(password)
- authenticatedUser = true;
- maybeDoJoin();
- } else if (status === Strophe.Status.CONNFAIL) {
- if(msg === 'x-strophe-bad-non-anon-jid') {
- anonymousConnectionFailed = true;
- }
- } else if (status === Strophe.Status.DISCONNECTED) {
- if(anonymousConnectionFailed) {
- // prompt user for username and password
- XMPP.promptLogin();
- }
- } else if (status === Strophe.Status.AUTHFAIL) {
- // wrong password or username, prompt user
- XMPP.promptLogin();
-
- }
- });
- }
-
-
-
- function maybeDoJoin() {
- if (connection && connection.connected &&
- Strophe.getResourceFromJid(connection.jid)
- && (RTC.localAudio || RTC.localVideo)) {
- // .connected is true while connecting?
- doJoin();
- }
- }
-
- function doJoin() {
- var roomName = UI.generateRoomName();
-
- Moderator.allocateConferenceFocus(
- roomName, UI.checkForNicknameAndJoin);
- }
-
- function initStrophePlugins()
- {
- require("./strophe.emuc")(XMPP, eventEmitter);
- require("./strophe.jingle")(XMPP, eventEmitter);
- require("./strophe.moderate")(XMPP);
- require("./strophe.util")();
- require("./strophe.rayo")();
- require("./strophe.logger")();
- }
-
- function registerListeners() {
- RTC.addStreamListener(maybeDoJoin,
- StreamEventTypes.EVENT_TYPE_LOCAL_CREATED);
- UI.addListener(UIEvents.NICKNAME_CHANGED, function (nickname) {
- XMPP.addToPresence("displayName", nickname);
- });
- }
-
- function setupEvents() {
- $(window).bind('beforeunload', function () {
- if (connection && connection.connected) {
- // ensure signout
- $.ajax({
- type: 'POST',
- url: config.bosh,
- async: false,
- cache: false,
- contentType: 'application/xml',
- data: "<body rid='" + (connection.rid || connection._proto.rid)
- + "' xmlns='http://jabber.org/protocol/httpbind' sid='"
- + (connection.sid || connection._proto.sid)
- + "' type='terminate'>" +
- "<presence xmlns='jabber:client' type='unavailable'/>" +
- "</body>",
- success: function (data) {
- console.log('signed out');
- console.log(data);
- },
- error: function (XMLHttpRequest, textStatus, errorThrown) {
- console.log('signout error',
- textStatus + ' (' + errorThrown + ')');
- }
- });
- }
- XMPP.disposeConference(true);
- });
- }
-
- var XMPP = {
- sessionTerminated: false,
- /**
- * Remembers if we were muted by the focus.
- * @type {boolean}
- */
- forceMuted: false,
- start: function (uiCredentials) {
- setupEvents();
- initStrophePlugins();
- registerListeners();
- Moderator.init();
- var configDomain = config.hosts.anonymousdomain || config.hosts.domain;
- // Force authenticated domain if room is appended with '?login=true'
- if (config.hosts.anonymousdomain &&
- window.location.search.indexOf("login=true") !== -1) {
- configDomain = config.hosts.domain;
- }
- var jid = uiCredentials.jid || configDomain || window.location.hostname;
- connect(jid, null, uiCredentials);
- },
- promptLogin: function () {
- UI.showLoginPopup(connect);
- },
- joinRoom: function(roomName, useNicks, nick)
- {
- var roomjid;
- roomjid = roomName;
-
- if (useNicks) {
- if (nick) {
- roomjid += '/' + nick;
- } else {
- roomjid += '/' + Strophe.getNodeFromJid(connection.jid);
- }
- } else {
-
- var tmpJid = Strophe.getNodeFromJid(connection.jid);
-
- if(!authenticatedUser)
- tmpJid = tmpJid.substr(0, 8);
-
- roomjid += '/' + tmpJid;
- }
- connection.emuc.doJoin(roomjid);
- },
- myJid: function () {
- if(!connection)
- return null;
- return connection.emuc.myroomjid;
- },
- myResource: function () {
- if(!connection || ! connection.emuc.myroomjid)
- return null;
- return Strophe.getResourceFromJid(connection.emuc.myroomjid);
- },
- disposeConference: function (onUnload) {
- eventEmitter.emit(XMPPEvents.DISPOSE_CONFERENCE, onUnload);
- var handler = connection.jingle.activecall;
- if (handler && handler.peerconnection) {
- // FIXME: probably removing streams is not required and close() should
- // be enough
- if (RTC.localAudio) {
- handler.peerconnection.removeStream(RTC.localAudio.getOriginalStream(), onUnload);
- }
- if (RTC.localVideo) {
- handler.peerconnection.removeStream(RTC.localVideo.getOriginalStream(), onUnload);
- }
- handler.peerconnection.close();
- }
- connection.jingle.activecall = null;
- if(!onUnload)
- {
- this.sessionTerminated = true;
- connection.emuc.doLeave();
- }
- },
- addListener: function(type, listener)
- {
- eventEmitter.on(type, listener);
- },
- removeListener: function (type, listener) {
- eventEmitter.removeListener(type, listener);
- },
- allocateConferenceFocus: function(roomName, callback) {
- Moderator.allocateConferenceFocus(roomName, callback);
- },
- isModerator: function () {
- return Moderator.isModerator();
- },
- isSipGatewayEnabled: function () {
- return Moderator.isSipGatewayEnabled();
- },
- isExternalAuthEnabled: function () {
- return Moderator.isExternalAuthEnabled();
- },
- switchStreams: function (stream, oldStream, callback) {
- if (connection && connection.jingle.activecall) {
- // FIXME: will block switchInProgress on true value in case of exception
- connection.jingle.activecall.switchStreams(stream, oldStream, callback);
- } else {
- // We are done immediately
- console.error("No conference handler");
- UI.messageHandler.showError('Error',
- 'Unable to switch video stream.');
- callback();
- }
- },
- setVideoMute: function (mute, callback, options) {
- if(connection && RTC.localVideo && connection.jingle.activecall)
- {
- connection.jingle.activecall.setVideoMute(mute, callback, options);
- }
- },
- setAudioMute: function (mute, callback) {
- if (!(connection && RTC.localAudio)) {
- return false;
- }
-
-
- if (this.forceMuted && !mute) {
- console.info("Asking focus for unmute");
- connection.moderate.setMute(connection.emuc.myroomjid, mute);
- // FIXME: wait for result before resetting muted status
- this.forceMuted = false;
- }
-
- if (mute == RTC.localAudio.isMuted()) {
- // Nothing to do
- return true;
- }
-
- // It is not clear what is the right way to handle multiple tracks.
- // So at least make sure that they are all muted or all unmuted and
- // that we send presence just once.
- RTC.localAudio.mute();
- // isMuted is the opposite of audioEnabled
- connection.emuc.addAudioInfoToPresence(mute);
- connection.emuc.sendPresence();
- callback();
- return true;
- },
- // Really mute video, i.e. dont even send black frames
- muteVideo: function (pc, unmute) {
- // FIXME: this probably needs another of those lovely state safeguards...
- // which checks for iceconn == connected and sigstate == stable
- pc.setRemoteDescription(pc.remoteDescription,
- function () {
- pc.createAnswer(
- function (answer) {
- var sdp = new SDP(answer.sdp);
- if (sdp.media.length > 1) {
- if (unmute)
- sdp.media[1] = sdp.media[1].replace('a=recvonly', 'a=sendrecv');
- else
- sdp.media[1] = sdp.media[1].replace('a=sendrecv', 'a=recvonly');
- sdp.raw = sdp.session + sdp.media.join('');
- answer.sdp = sdp.raw;
- }
- pc.setLocalDescription(answer,
- function () {
- console.log('mute SLD ok');
- },
- function (error) {
- console.log('mute SLD error');
- UI.messageHandler.showError('Error',
- 'Oops! Something went wrong and we failed to ' +
- 'mute! (SLD Failure)');
- }
- );
- },
- function (error) {
- console.log(error);
- UI.messageHandler.showError();
- }
- );
- },
- function (error) {
- console.log('muteVideo SRD error');
- UI.messageHandler.showError('Error',
- 'Oops! Something went wrong and we failed to stop video!' +
- '(SRD Failure)');
-
- }
- );
- },
- toggleRecording: function (tokenEmptyCallback,
- startingCallback, startedCallback) {
- Recording.toggleRecording(tokenEmptyCallback,
- startingCallback, startedCallback, connection);
- },
- addToPresence: function (name, value, dontSend) {
- switch (name)
- {
- case "displayName":
- connection.emuc.addDisplayNameToPresence(value);
- break;
- case "etherpad":
- connection.emuc.addEtherpadToPresence(value);
- break;
- case "prezi":
- connection.emuc.addPreziToPresence(value, 0);
- break;
- case "preziSlide":
- connection.emuc.addCurrentSlideToPresence(value);
- break;
- case "connectionQuality":
- connection.emuc.addConnectionInfoToPresence(value);
- break;
- case "email":
- connection.emuc.addEmailToPresence(value);
- default :
- console.log("Unknown tag for presence.");
- return;
- }
- if(!dontSend)
- connection.emuc.sendPresence();
- },
- sendLogs: function (data) {
- if(!connection.emuc.focusMucJid)
- return;
-
- var deflate = true;
-
- var content = JSON.stringify(data);
- if (deflate) {
- content = String.fromCharCode.apply(null, Pako.deflateRaw(content));
- }
- content = Base64.encode(content);
- // XEP-0337-ish
- var message = $msg({to: connection.emuc.focusMucJid, type: 'normal'});
- message.c('log', { xmlns: 'urn:xmpp:eventlog',
- id: 'PeerConnectionStats'});
- message.c('message').t(content).up();
- if (deflate) {
- message.c('tag', {name: "deflated", value: "true"}).up();
- }
- message.up();
-
- connection.send(message);
- },
- populateData: function () {
- var data = {};
- if (connection.jingle) {
- data = connection.jingle.populateData();
- }
- return data;
- },
- getLogger: function () {
- if(connection.logger)
- return connection.logger.log;
- return null;
- },
- getPrezi: function () {
- return connection.emuc.getPrezi(this.myJid());
- },
- removePreziFromPresence: function () {
- connection.emuc.removePreziFromPresence();
- connection.emuc.sendPresence();
- },
- sendChatMessage: function (message, nickname) {
- connection.emuc.sendMessage(message, nickname);
- },
- setSubject: function (topic) {
- connection.emuc.setSubject(topic);
- },
- lockRoom: function (key, onSuccess, onError, onNotSupported) {
- connection.emuc.lockRoom(key, onSuccess, onError, onNotSupported);
- },
- dial: function (to, from, roomName,roomPass) {
- connection.rayo.dial(to, from, roomName,roomPass);
- },
- setMute: function (jid, mute) {
- connection.moderate.setMute(jid, mute);
- },
- eject: function (jid) {
- connection.moderate.eject(jid);
- },
- findJidFromResource: function (resource) {
- return connection.emuc.findJidFromResource(resource);
- },
- getMembers: function () {
- return connection.emuc.members;
- },
- getJidFromSSRC: function (ssrc) {
- if(!connection)
- return null;
- return connection.emuc.ssrc2jid[ssrc];
- }
-
- };
-
- module.exports = XMPP;
-
- },{"./SDP":2,"./moderator":6,"./recording":7,"./strophe.emuc":8,"./strophe.jingle":9,"./strophe.logger":10,"./strophe.moderate":11,"./strophe.rayo":12,"./strophe.util":13,"events":31,"pako":15}],15:[function(require,module,exports){
- // Top level file is just a mixin of submodules & constants
- 'use strict';
-
- var assign = require('./lib/utils/common').assign;
-
- var deflate = require('./lib/deflate');
- var inflate = require('./lib/inflate');
- var constants = require('./lib/zlib/constants');
-
- var pako = {};
-
- assign(pako, deflate, inflate, constants);
-
- module.exports = pako;
- },{"./lib/deflate":16,"./lib/inflate":17,"./lib/utils/common":18,"./lib/zlib/constants":21}],16:[function(require,module,exports){
- 'use strict';
-
-
- var zlib_deflate = require('./zlib/deflate.js');
- var utils = require('./utils/common');
- var strings = require('./utils/strings');
- var msg = require('./zlib/messages');
- var zstream = require('./zlib/zstream');
-
-
- /* Public constants ==========================================================*/
- /* ===========================================================================*/
-
- var Z_NO_FLUSH = 0;
- var Z_FINISH = 4;
-
- var Z_OK = 0;
- var Z_STREAM_END = 1;
-
- var Z_DEFAULT_COMPRESSION = -1;
-
- var Z_DEFAULT_STRATEGY = 0;
-
- var Z_DEFLATED = 8;
-
- /* ===========================================================================*/
-
-
- /**
- * class Deflate
- *
- * Generic JS-style wrapper for zlib calls. If you don't need
- * streaming behaviour - use more simple functions: [[deflate]],
- * [[deflateRaw]] and [[gzip]].
- **/
-
- /* internal
- * Deflate.chunks -> Array
- *
- * Chunks of output data, if [[Deflate#onData]] not overriden.
- **/
-
- /**
- * Deflate.result -> Uint8Array|Array
- *
- * Compressed result, generated by default [[Deflate#onData]]
- * and [[Deflate#onEnd]] handlers. Filled after you push last chunk
- * (call [[Deflate#push]] with `Z_FINISH` / `true` param).
- **/
-
- /**
- * Deflate.err -> Number
- *
- * Error code after deflate finished. 0 (Z_OK) on success.
- * You will not need it in real life, because deflate errors
- * are possible only on wrong options or bad `onData` / `onEnd`
- * custom handlers.
- **/
-
- /**
- * Deflate.msg -> String
- *
- * Error message, if [[Deflate.err]] != 0
- **/
-
-
- /**
- * new Deflate(options)
- * - options (Object): zlib deflate options.
- *
- * Creates new deflator instance with specified params. Throws exception
- * on bad params. Supported options:
- *
- * - `level`
- * - `windowBits`
- * - `memLevel`
- * - `strategy`
- *
- * [http://zlib.net/manual.html#Advanced](http://zlib.net/manual.html#Advanced)
- * for more information on these.
- *
- * Additional options, for internal needs:
- *
- * - `chunkSize` - size of generated data chunks (16K by default)
- * - `raw` (Boolean) - do raw deflate
- * - `gzip` (Boolean) - create gzip wrapper
- * - `to` (String) - if equal to 'string', then result will be "binary string"
- * (each char code [0..255])
- * - `header` (Object) - custom header for gzip
- * - `text` (Boolean) - true if compressed data believed to be text
- * - `time` (Number) - modification time, unix timestamp
- * - `os` (Number) - operation system code
- * - `extra` (Array) - array of bytes with extra data (max 65536)
- * - `name` (String) - file name (binary string)
- * - `comment` (String) - comment (binary string)
- * - `hcrc` (Boolean) - true if header crc should be added
- *
- * ##### Example:
- *
- * ```javascript
- * var pako = require('pako')
- * , chunk1 = Uint8Array([1,2,3,4,5,6,7,8,9])
- * , chunk2 = Uint8Array([10,11,12,13,14,15,16,17,18,19]);
- *
- * var deflate = new pako.Deflate({ level: 3});
- *
- * deflate.push(chunk1, false);
- * deflate.push(chunk2, true); // true -> last chunk
- *
- * if (deflate.err) { throw new Error(deflate.err); }
- *
- * console.log(deflate.result);
- * ```
- **/
- var Deflate = function(options) {
-
- this.options = utils.assign({
- level: Z_DEFAULT_COMPRESSION,
- method: Z_DEFLATED,
- chunkSize: 16384,
- windowBits: 15,
- memLevel: 8,
- strategy: Z_DEFAULT_STRATEGY,
- to: ''
- }, options || {});
-
- var opt = this.options;
-
- if (opt.raw && (opt.windowBits > 0)) {
- opt.windowBits = -opt.windowBits;
- }
-
- else if (opt.gzip && (opt.windowBits > 0) && (opt.windowBits < 16)) {
- opt.windowBits += 16;
- }
-
- this.err = 0; // error code, if happens (0 = Z_OK)
- this.msg = ''; // error message
- this.ended = false; // used to avoid multiple onEnd() calls
- this.chunks = []; // chunks of compressed data
-
- this.strm = new zstream();
- this.strm.avail_out = 0;
-
- var status = zlib_deflate.deflateInit2(
- this.strm,
- opt.level,
- opt.method,
- opt.windowBits,
- opt.memLevel,
- opt.strategy
- );
-
- if (status !== Z_OK) {
- throw new Error(msg[status]);
- }
-
- if (opt.header) {
- zlib_deflate.deflateSetHeader(this.strm, opt.header);
- }
- };
-
- /**
- * Deflate#push(data[, mode]) -> Boolean
- * - data (Uint8Array|Array|String): input data. Strings will be converted to
- * utf8 byte sequence.
- * - mode (Number|Boolean): 0..6 for corresponding Z_NO_FLUSH..Z_TREE modes.
- * See constants. Skipped or `false` means Z_NO_FLUSH, `true` meansh Z_FINISH.
- *
- * Sends input data to deflate pipe, generating [[Deflate#onData]] calls with
- * new compressed chunks. Returns `true` on success. The last data block must have
- * mode Z_FINISH (or `true`). That flush internal pending buffers and call
- * [[Deflate#onEnd]].
- *
- * On fail call [[Deflate#onEnd]] with error code and return false.
- *
- * We strongly recommend to use `Uint8Array` on input for best speed (output
- * array format is detected automatically). Also, don't skip last param and always
- * use the same type in your code (boolean or number). That will improve JS speed.
- *
- * For regular `Array`-s make sure all elements are [0..255].
- *
- * ##### Example
- *
- * ```javascript
- * push(chunk, false); // push one of data chunks
- * ...
- * push(chunk, true); // push last chunk
- * ```
- **/
- Deflate.prototype.push = function(data, mode) {
- var strm = this.strm;
- var chunkSize = this.options.chunkSize;
- var status, _mode;
-
- if (this.ended) { return false; }
-
- _mode = (mode === ~~mode) ? mode : ((mode === true) ? Z_FINISH : Z_NO_FLUSH);
-
- // Convert data if needed
- if (typeof data === 'string') {
- // If we need to compress text, change encoding to utf8.
- strm.input = strings.string2buf(data);
- } else {
- strm.input = data;
- }
-
- strm.next_in = 0;
- strm.avail_in = strm.input.length;
-
- do {
- if (strm.avail_out === 0) {
- strm.output = new utils.Buf8(chunkSize);
- strm.next_out = 0;
- strm.avail_out = chunkSize;
- }
- status = zlib_deflate.deflate(strm, _mode); /* no bad return value */
-
- if (status !== Z_STREAM_END && status !== Z_OK) {
- this.onEnd(status);
- this.ended = true;
- return false;
- }
- if (strm.avail_out === 0 || (strm.avail_in === 0 && _mode === Z_FINISH)) {
- if (this.options.to === 'string') {
- this.onData(strings.buf2binstring(utils.shrinkBuf(strm.output, strm.next_out)));
- } else {
- this.onData(utils.shrinkBuf(strm.output, strm.next_out));
- }
- }
- } while ((strm.avail_in > 0 || strm.avail_out === 0) && status !== Z_STREAM_END);
-
- // Finalize on the last chunk.
- if (_mode === Z_FINISH) {
- status = zlib_deflate.deflateEnd(this.strm);
- this.onEnd(status);
- this.ended = true;
- return status === Z_OK;
- }
-
- return true;
- };
-
-
- /**
- * Deflate#onData(chunk) -> Void
- * - chunk (Uint8Array|Array|String): ouput data. Type of array depends
- * on js engine support. When string output requested, each chunk
- * will be string.
- *
- * By default, stores data blocks in `chunks[]` property and glue
- * those in `onEnd`. Override this handler, if you need another behaviour.
- **/
- Deflate.prototype.onData = function(chunk) {
- this.chunks.push(chunk);
- };
-
-
- /**
- * Deflate#onEnd(status) -> Void
- * - status (Number): deflate status. 0 (Z_OK) on success,
- * other if not.
- *
- * Called once after you tell deflate that input stream complete
- * or error happenned. By default - join collected chunks,
- * free memory and fill `results` / `err` properties.
- **/
- Deflate.prototype.onEnd = function(status) {
- // On success - join
- if (status === Z_OK) {
- if (this.options.to === 'string') {
- this.result = this.chunks.join('');
- } else {
- this.result = utils.flattenChunks(this.chunks);
- }
- }
- this.chunks = [];
- this.err = status;
- this.msg = this.strm.msg;
- };
-
-
- /**
- * deflate(data[, options]) -> Uint8Array|Array|String
- * - data (Uint8Array|Array|String): input data to compress.
- * - options (Object): zlib deflate options.
- *
- * Compress `data` with deflate alrorythm and `options`.
- *
- * Supported options are:
- *
- * - level
- * - windowBits
- * - memLevel
- * - strategy
- *
- * [http://zlib.net/manual.html#Advanced](http://zlib.net/manual.html#Advanced)
- * for more information on these.
- *
- * Sugar (options):
- *
- * - `raw` (Boolean) - say that we work with raw stream, if you don't wish to specify
- * negative windowBits implicitly.
- * - `to` (String) - if equal to 'string', then result will be "binary string"
- * (each char code [0..255])
- *
- * ##### Example:
- *
- * ```javascript
- * var pako = require('pako')
- * , data = Uint8Array([1,2,3,4,5,6,7,8,9]);
- *
- * console.log(pako.deflate(data));
- * ```
- **/
- function deflate(input, options) {
- var deflator = new Deflate(options);
-
- deflator.push(input, true);
-
- // That will never happens, if you don't cheat with options :)
- if (deflator.err) { throw deflator.msg; }
-
- return deflator.result;
- }
-
-
- /**
- * deflateRaw(data[, options]) -> Uint8Array|Array|String
- * - data (Uint8Array|Array|String): input data to compress.
- * - options (Object): zlib deflate options.
- *
- * The same as [[deflate]], but creates raw data, without wrapper
- * (header and adler32 crc).
- **/
- function deflateRaw(input, options) {
- options = options || {};
- options.raw = true;
- return deflate(input, options);
- }
-
-
- /**
- * gzip(data[, options]) -> Uint8Array|Array|String
- * - data (Uint8Array|Array|String): input data to compress.
- * - options (Object): zlib deflate options.
- *
- * The same as [[deflate]], but create gzip wrapper instead of
- * deflate one.
- **/
- function gzip(input, options) {
- options = options || {};
- options.gzip = true;
- return deflate(input, options);
- }
-
-
- exports.Deflate = Deflate;
- exports.deflate = deflate;
- exports.deflateRaw = deflateRaw;
- exports.gzip = gzip;
- },{"./utils/common":18,"./utils/strings":19,"./zlib/deflate.js":23,"./zlib/messages":28,"./zlib/zstream":30}],17:[function(require,module,exports){
- 'use strict';
-
-
- var zlib_inflate = require('./zlib/inflate.js');
- var utils = require('./utils/common');
- var strings = require('./utils/strings');
- var c = require('./zlib/constants');
- var msg = require('./zlib/messages');
- var zstream = require('./zlib/zstream');
- var gzheader = require('./zlib/gzheader');
-
-
- /**
- * class Inflate
- *
- * Generic JS-style wrapper for zlib calls. If you don't need
- * streaming behaviour - use more simple functions: [[inflate]]
- * and [[inflateRaw]].
- **/
-
- /* internal
- * inflate.chunks -> Array
- *
- * Chunks of output data, if [[Inflate#onData]] not overriden.
- **/
-
- /**
- * Inflate.result -> Uint8Array|Array|String
- *
- * Uncompressed result, generated by default [[Inflate#onData]]
- * and [[Inflate#onEnd]] handlers. Filled after you push last chunk
- * (call [[Inflate#push]] with `Z_FINISH` / `true` param).
- **/
-
- /**
- * Inflate.err -> Number
- *
- * Error code after inflate finished. 0 (Z_OK) on success.
- * Should be checked if broken data possible.
- **/
-
- /**
- * Inflate.msg -> String
- *
- * Error message, if [[Inflate.err]] != 0
- **/
-
-
- /**
- * new Inflate(options)
- * - options (Object): zlib inflate options.
- *
- * Creates new inflator instance with specified params. Throws exception
- * on bad params. Supported options:
- *
- * - `windowBits`
- *
- * [http://zlib.net/manual.html#Advanced](http://zlib.net/manual.html#Advanced)
- * for more information on these.
- *
- * Additional options, for internal needs:
- *
- * - `chunkSize` - size of generated data chunks (16K by default)
- * - `raw` (Boolean) - do raw inflate
- * - `to` (String) - if equal to 'string', then result will be converted
- * from utf8 to utf16 (javascript) string. When string output requested,
- * chunk length can differ from `chunkSize`, depending on content.
- *
- * By default, when no options set, autodetect deflate/gzip data format via
- * wrapper header.
- *
- * ##### Example:
- *
- * ```javascript
- * var pako = require('pako')
- * , chunk1 = Uint8Array([1,2,3,4,5,6,7,8,9])
- * , chunk2 = Uint8Array([10,11,12,13,14,15,16,17,18,19]);
- *
- * var inflate = new pako.Inflate({ level: 3});
- *
- * inflate.push(chunk1, false);
- * inflate.push(chunk2, true); // true -> last chunk
- *
- * if (inflate.err) { throw new Error(inflate.err); }
- *
- * console.log(inflate.result);
- * ```
- **/
- var Inflate = function(options) {
-
- this.options = utils.assign({
- chunkSize: 16384,
- windowBits: 0,
- to: ''
- }, options || {});
-
- var opt = this.options;
-
- // Force window size for `raw` data, if not set directly,
- // because we have no header for autodetect.
- if (opt.raw && (opt.windowBits >= 0) && (opt.windowBits < 16)) {
- opt.windowBits = -opt.windowBits;
- if (opt.windowBits === 0) { opt.windowBits = -15; }
- }
-
- // If `windowBits` not defined (and mode not raw) - set autodetect flag for gzip/deflate
- if ((opt.windowBits >= 0) && (opt.windowBits < 16) &&
- !(options && options.windowBits)) {
- opt.windowBits += 32;
- }
-
- // Gzip header has no info about windows size, we can do autodetect only
- // for deflate. So, if window size not set, force it to max when gzip possible
- if ((opt.windowBits > 15) && (opt.windowBits < 48)) {
- // bit 3 (16) -> gzipped data
- // bit 4 (32) -> autodetect gzip/deflate
- if ((opt.windowBits & 15) === 0) {
- opt.windowBits |= 15;
- }
- }
-
- this.err = 0; // error code, if happens (0 = Z_OK)
- this.msg = ''; // error message
- this.ended = false; // used to avoid multiple onEnd() calls
- this.chunks = []; // chunks of compressed data
-
- this.strm = new zstream();
- this.strm.avail_out = 0;
-
- var status = zlib_inflate.inflateInit2(
- this.strm,
- opt.windowBits
- );
-
- if (status !== c.Z_OK) {
- throw new Error(msg[status]);
- }
-
- this.header = new gzheader();
-
- zlib_inflate.inflateGetHeader(this.strm, this.header);
- };
-
- /**
- * Inflate#push(data[, mode]) -> Boolean
- * - data (Uint8Array|Array|String): input data
- * - mode (Number|Boolean): 0..6 for corresponding Z_NO_FLUSH..Z_TREE modes.
- * See constants. Skipped or `false` means Z_NO_FLUSH, `true` meansh Z_FINISH.
- *
- * Sends input data to inflate pipe, generating [[Inflate#onData]] calls with
- * new output chunks. Returns `true` on success. The last data block must have
- * mode Z_FINISH (or `true`). That flush internal pending buffers and call
- * [[Inflate#onEnd]].
- *
- * On fail call [[Inflate#onEnd]] with error code and return false.
- *
- * We strongly recommend to use `Uint8Array` on input for best speed (output
- * format is detected automatically). Also, don't skip last param and always
- * use the same type in your code (boolean or number). That will improve JS speed.
- *
- * For regular `Array`-s make sure all elements are [0..255].
- *
- * ##### Example
- *
- * ```javascript
- * push(chunk, false); // push one of data chunks
- * ...
- * push(chunk, true); // push last chunk
- * ```
- **/
- Inflate.prototype.push = function(data, mode) {
- var strm = this.strm;
- var chunkSize = this.options.chunkSize;
- var status, _mode;
- var next_out_utf8, tail, utf8str;
-
- if (this.ended) { return false; }
- _mode = (mode === ~~mode) ? mode : ((mode === true) ? c.Z_FINISH : c.Z_NO_FLUSH);
-
- // Convert data if needed
- if (typeof data === 'string') {
- // Only binary strings can be decompressed on practice
- strm.input = strings.binstring2buf(data);
- } else {
- strm.input = data;
- }
-
- strm.next_in = 0;
- strm.avail_in = strm.input.length;
-
- do {
- if (strm.avail_out === 0) {
- strm.output = new utils.Buf8(chunkSize);
- strm.next_out = 0;
- strm.avail_out = chunkSize;
- }
-
- status = zlib_inflate.inflate(strm, c.Z_NO_FLUSH); /* no bad return value */
-
- if (status !== c.Z_STREAM_END && status !== c.Z_OK) {
- this.onEnd(status);
- this.ended = true;
- return false;
- }
-
- if (strm.next_out) {
- if (strm.avail_out === 0 || status === c.Z_STREAM_END || (strm.avail_in === 0 && _mode === c.Z_FINISH)) {
-
- if (this.options.to === 'string') {
-
- next_out_utf8 = strings.utf8border(strm.output, strm.next_out);
-
- tail = strm.next_out - next_out_utf8;
- utf8str = strings.buf2string(strm.output, next_out_utf8);
-
- // move tail
- strm.next_out = tail;
- strm.avail_out = chunkSize - tail;
- if (tail) { utils.arraySet(strm.output, strm.output, next_out_utf8, tail, 0); }
-
- this.onData(utf8str);
-
- } else {
- this.onData(utils.shrinkBuf(strm.output, strm.next_out));
- }
- }
- }
- } while ((strm.avail_in > 0) && status !== c.Z_STREAM_END);
-
- if (status === c.Z_STREAM_END) {
- _mode = c.Z_FINISH;
- }
- // Finalize on the last chunk.
- if (_mode === c.Z_FINISH) {
- status = zlib_inflate.inflateEnd(this.strm);
- this.onEnd(status);
- this.ended = true;
- return status === c.Z_OK;
- }
-
- return true;
- };
-
-
- /**
- * Inflate#onData(chunk) -> Void
- * - chunk (Uint8Array|Array|String): ouput data. Type of array depends
- * on js engine support. When string output requested, each chunk
- * will be string.
- *
- * By default, stores data blocks in `chunks[]` property and glue
- * those in `onEnd`. Override this handler, if you need another behaviour.
- **/
- Inflate.prototype.onData = function(chunk) {
- this.chunks.push(chunk);
- };
-
-
- /**
- * Inflate#onEnd(status) -> Void
- * - status (Number): inflate status. 0 (Z_OK) on success,
- * other if not.
- *
- * Called once after you tell inflate that input stream complete
- * or error happenned. By default - join collected chunks,
- * free memory and fill `results` / `err` properties.
- **/
- Inflate.prototype.onEnd = function(status) {
- // On success - join
- if (status === c.Z_OK) {
- if (this.options.to === 'string') {
- // Glue & convert here, until we teach pako to send
- // utf8 alligned strings to onData
- this.result = this.chunks.join('');
- } else {
- this.result = utils.flattenChunks(this.chunks);
- }
- }
- this.chunks = [];
- this.err = status;
- this.msg = this.strm.msg;
- };
-
-
- /**
- * inflate(data[, options]) -> Uint8Array|Array|String
- * - data (Uint8Array|Array|String): input data to decompress.
- * - options (Object): zlib inflate options.
- *
- * Decompress `data` with inflate/ungzip and `options`. Autodetect
- * format via wrapper header by default. That's why we don't provide
- * separate `ungzip` method.
- *
- * Supported options are:
- *
- * - windowBits
- *
- * [http://zlib.net/manual.html#Advanced](http://zlib.net/manual.html#Advanced)
- * for more information.
- *
- * Sugar (options):
- *
- * - `raw` (Boolean) - say that we work with raw stream, if you don't wish to specify
- * negative windowBits implicitly.
- * - `to` (String) - if equal to 'string', then result will be converted
- * from utf8 to utf16 (javascript) string. When string output requested,
- * chunk length can differ from `chunkSize`, depending on content.
- *
- *
- * ##### Example:
- *
- * ```javascript
- * var pako = require('pako')
- * , input = pako.deflate([1,2,3,4,5,6,7,8,9])
- * , output;
- *
- * try {
- * output = pako.inflate(input);
- * } catch (err)
- * console.log(err);
- * }
- * ```
- **/
- function inflate(input, options) {
- var inflator = new Inflate(options);
-
- inflator.push(input, true);
-
- // That will never happens, if you don't cheat with options :)
- if (inflator.err) { throw inflator.msg; }
-
- return inflator.result;
- }
-
-
- /**
- * inflateRaw(data[, options]) -> Uint8Array|Array|String
- * - data (Uint8Array|Array|String): input data to decompress.
- * - options (Object): zlib inflate options.
- *
- * The same as [[inflate]], but creates raw data, without wrapper
- * (header and adler32 crc).
- **/
- function inflateRaw(input, options) {
- options = options || {};
- options.raw = true;
- return inflate(input, options);
- }
-
-
- /**
- * ungzip(data[, options]) -> Uint8Array|Array|String
- * - data (Uint8Array|Array|String): input data to decompress.
- * - options (Object): zlib inflate options.
- *
- * Just shortcut to [[inflate]], because it autodetects format
- * by header.content. Done for convenience.
- **/
-
-
- exports.Inflate = Inflate;
- exports.inflate = inflate;
- exports.inflateRaw = inflateRaw;
- exports.ungzip = inflate;
-
- },{"./utils/common":18,"./utils/strings":19,"./zlib/constants":21,"./zlib/gzheader":24,"./zlib/inflate.js":26,"./zlib/messages":28,"./zlib/zstream":30}],18:[function(require,module,exports){
- 'use strict';
-
-
- var TYPED_OK = (typeof Uint8Array !== 'undefined') &&
- (typeof Uint16Array !== 'undefined') &&
- (typeof Int32Array !== 'undefined');
-
-
- exports.assign = function (obj /*from1, from2, from3, ...*/) {
- var sources = Array.prototype.slice.call(arguments, 1);
- while (sources.length) {
- var source = sources.shift();
- if (!source) { continue; }
-
- if (typeof(source) !== 'object') {
- throw new TypeError(source + 'must be non-object');
- }
-
- for (var p in source) {
- if (source.hasOwnProperty(p)) {
- obj[p] = source[p];
- }
- }
- }
-
- return obj;
- };
-
-
- // reduce buffer size, avoiding mem copy
- exports.shrinkBuf = function (buf, size) {
- if (buf.length === size) { return buf; }
- if (buf.subarray) { return buf.subarray(0, size); }
- buf.length = size;
- return buf;
- };
-
-
- var fnTyped = {
- arraySet: function (dest, src, src_offs, len, dest_offs) {
- if (src.subarray && dest.subarray) {
- dest.set(src.subarray(src_offs, src_offs+len), dest_offs);
- return;
- }
- // Fallback to ordinary array
- for(var i=0; i<len; i++) {
- dest[dest_offs + i] = src[src_offs + i];
- }
- },
- // Join array of chunks to single array.
- flattenChunks: function(chunks) {
- var i, l, len, pos, chunk, result;
-
- // calculate data length
- len = 0;
- for (i=0, l=chunks.length; i<l; i++) {
- len += chunks[i].length;
- }
-
- // join chunks
- result = new Uint8Array(len);
- pos = 0;
- for (i=0, l=chunks.length; i<l; i++) {
- chunk = chunks[i];
- result.set(chunk, pos);
- pos += chunk.length;
- }
-
- return result;
- }
- };
-
- var fnUntyped = {
- arraySet: function (dest, src, src_offs, len, dest_offs) {
- for(var i=0; i<len; i++) {
- dest[dest_offs + i] = src[src_offs + i];
- }
- },
- // Join array of chunks to single array.
- flattenChunks: function(chunks) {
- return [].concat.apply([], chunks);
- }
- };
-
-
- // Enable/Disable typed arrays use, for testing
- //
- exports.setTyped = function (on) {
- if (on) {
- exports.Buf8 = Uint8Array;
- exports.Buf16 = Uint16Array;
- exports.Buf32 = Int32Array;
- exports.assign(exports, fnTyped);
- } else {
- exports.Buf8 = Array;
- exports.Buf16 = Array;
- exports.Buf32 = Array;
- exports.assign(exports, fnUntyped);
- }
- };
-
- exports.setTyped(TYPED_OK);
- },{}],19:[function(require,module,exports){
- // String encode/decode helpers
- 'use strict';
-
-
- var utils = require('./common');
-
-
- // Quick check if we can use fast array to bin string conversion
- //
- // - apply(Array) can fail on Android 2.2
- // - apply(Uint8Array) can fail on iOS 5.1 Safary
- //
- var STR_APPLY_OK = true;
- var STR_APPLY_UIA_OK = true;
-
- try { String.fromCharCode.apply(null, [0]); } catch(__) { STR_APPLY_OK = false; }
- try { String.fromCharCode.apply(null, new Uint8Array(1)); } catch(__) { STR_APPLY_UIA_OK = false; }
-
-
- // Table with utf8 lengths (calculated by first byte of sequence)
- // Note, that 5 & 6-byte values and some 4-byte values can not be represented in JS,
- // because max possible codepoint is 0x10ffff
- var _utf8len = new utils.Buf8(256);
- for (var i=0; i<256; i++) {
- _utf8len[i] = (i >= 252 ? 6 : i >= 248 ? 5 : i >= 240 ? 4 : i >= 224 ? 3 : i >= 192 ? 2 : 1);
- }
- _utf8len[254]=_utf8len[254]=1; // Invalid sequence start
-
-
- // convert string to array (typed, when possible)
- exports.string2buf = function (str) {
- var buf, c, c2, m_pos, i, str_len = str.length, buf_len = 0;
-
- // count binary size
- for (m_pos = 0; m_pos < str_len; m_pos++) {
- c = str.charCodeAt(m_pos);
- if ((c & 0xfc00) === 0xd800 && (m_pos+1 < str_len)) {
- c2 = str.charCodeAt(m_pos+1);
- if ((c2 & 0xfc00) === 0xdc00) {
- c = 0x10000 + ((c - 0xd800) << 10) + (c2 - 0xdc00);
- m_pos++;
- }
- }
- buf_len += c < 0x80 ? 1 : c < 0x800 ? 2 : c < 0x10000 ? 3 : 4;
- }
-
- // allocate buffer
- buf = new utils.Buf8(buf_len);
-
- // convert
- for (i=0, m_pos = 0; i < buf_len; m_pos++) {
- c = str.charCodeAt(m_pos);
- if ((c & 0xfc00) === 0xd800 && (m_pos+1 < str_len)) {
- c2 = str.charCodeAt(m_pos+1);
- if ((c2 & 0xfc00) === 0xdc00) {
- c = 0x10000 + ((c - 0xd800) << 10) + (c2 - 0xdc00);
- m_pos++;
- }
- }
- if (c < 0x80) {
- /* one byte */
- buf[i++] = c;
- } else if (c < 0x800) {
- /* two bytes */
- buf[i++] = 0xC0 | (c >>> 6);
- buf[i++] = 0x80 | (c & 0x3f);
- } else if (c < 0x10000) {
- /* three bytes */
- buf[i++] = 0xE0 | (c >>> 12);
- buf[i++] = 0x80 | (c >>> 6 & 0x3f);
- buf[i++] = 0x80 | (c & 0x3f);
- } else {
- /* four bytes */
- buf[i++] = 0xf0 | (c >>> 18);
- buf[i++] = 0x80 | (c >>> 12 & 0x3f);
- buf[i++] = 0x80 | (c >>> 6 & 0x3f);
- buf[i++] = 0x80 | (c & 0x3f);
- }
- }
-
- return buf;
- };
-
- // Helper (used in 2 places)
- function buf2binstring(buf, len) {
- // use fallback for big arrays to avoid stack overflow
- if (len < 65537) {
- if ((buf.subarray && STR_APPLY_UIA_OK) || (!buf.subarray && STR_APPLY_OK)) {
- return String.fromCharCode.apply(null, utils.shrinkBuf(buf, len));
- }
- }
-
- var result = '';
- for(var i=0; i < len; i++) {
- result += String.fromCharCode(buf[i]);
- }
- return result;
- }
-
-
- // Convert byte array to binary string
- exports.buf2binstring = function(buf) {
- return buf2binstring(buf, buf.length);
- };
-
-
- // Convert binary string (typed, when possible)
- exports.binstring2buf = function(str) {
- var buf = new utils.Buf8(str.length);
- for(var i=0, len=buf.length; i < len; i++) {
- buf[i] = str.charCodeAt(i);
- }
- return buf;
- };
-
-
- // convert array to string
- exports.buf2string = function (buf, max) {
- var i, out, c, c_len;
- var len = max || buf.length;
-
- // Reserve max possible length (2 words per char)
- // NB: by unknown reasons, Array is significantly faster for
- // String.fromCharCode.apply than Uint16Array.
- var utf16buf = new Array(len*2);
-
- for (out=0, i=0; i<len;) {
- c = buf[i++];
- // quick process ascii
- if (c < 0x80) { utf16buf[out++] = c; continue; }
-
- c_len = _utf8len[c];
- // skip 5 & 6 byte codes
- if (c_len > 4) { utf16buf[out++] = 0xfffd; i += c_len-1; continue; }
-
- // apply mask on first byte
- c &= c_len === 2 ? 0x1f : c_len === 3 ? 0x0f : 0x07;
- // join the rest
- while (c_len > 1 && i < len) {
- c = (c << 6) | (buf[i++] & 0x3f);
- c_len--;
- }
-
- // terminated by end of string?
- if (c_len > 1) { utf16buf[out++] = 0xfffd; continue; }
-
- if (c < 0x10000) {
- utf16buf[out++] = c;
- } else {
- c -= 0x10000;
- utf16buf[out++] = 0xd800 | ((c >> 10) & 0x3ff);
- utf16buf[out++] = 0xdc00 | (c & 0x3ff);
- }
- }
-
- return buf2binstring(utf16buf, out);
- };
-
-
- // Calculate max possible position in utf8 buffer,
- // that will not break sequence. If that's not possible
- // - (very small limits) return max size as is.
- //
- // buf[] - utf8 bytes array
- // max - length limit (mandatory);
- exports.utf8border = function(buf, max) {
- var pos;
-
- max = max || buf.length;
- if (max > buf.length) { max = buf.length; }
-
- // go back from last position, until start of sequence found
- pos = max-1;
- while (pos >= 0 && (buf[pos] & 0xC0) === 0x80) { pos--; }
-
- // Fuckup - very small and broken sequence,
- // return max, because we should return something anyway.
- if (pos < 0) { return max; }
-
- // If we came to start of buffer - that means vuffer is too small,
- // return max too.
- if (pos === 0) { return max; }
-
- return (pos + _utf8len[buf[pos]] > max) ? pos : max;
- };
-
- },{"./common":18}],20:[function(require,module,exports){
- 'use strict';
-
- // Note: adler32 takes 12% for level 0 and 2% for level 6.
- // It doesn't worth to make additional optimizationa as in original.
- // Small size is preferable.
-
- function adler32(adler, buf, len, pos) {
- var s1 = (adler & 0xffff) |0
- , s2 = ((adler >>> 16) & 0xffff) |0
- , n = 0;
-
- while (len !== 0) {
- // Set limit ~ twice less than 5552, to keep
- // s2 in 31-bits, because we force signed ints.
- // in other case %= will fail.
- n = len > 2000 ? 2000 : len;
- len -= n;
-
- do {
- s1 = (s1 + buf[pos++]) |0;
- s2 = (s2 + s1) |0;
- } while (--n);
-
- s1 %= 65521;
- s2 %= 65521;
- }
-
- return (s1 | (s2 << 16)) |0;
- }
-
-
- module.exports = adler32;
- },{}],21:[function(require,module,exports){
- module.exports = {
-
- /* Allowed flush values; see deflate() and inflate() below for details */
- Z_NO_FLUSH: 0,
- Z_PARTIAL_FLUSH: 1,
- Z_SYNC_FLUSH: 2,
- Z_FULL_FLUSH: 3,
- Z_FINISH: 4,
- Z_BLOCK: 5,
- Z_TREES: 6,
-
- /* Return codes for the compression/decompression functions. Negative values
- * are errors, positive values are used for special but normal events.
- */
- Z_OK: 0,
- Z_STREAM_END: 1,
- Z_NEED_DICT: 2,
- Z_ERRNO: -1,
- Z_STREAM_ERROR: -2,
- Z_DATA_ERROR: -3,
- //Z_MEM_ERROR: -4,
- Z_BUF_ERROR: -5,
- //Z_VERSION_ERROR: -6,
-
- /* compression levels */
- Z_NO_COMPRESSION: 0,
- Z_BEST_SPEED: 1,
- Z_BEST_COMPRESSION: 9,
- Z_DEFAULT_COMPRESSION: -1,
-
-
- Z_FILTERED: 1,
- Z_HUFFMAN_ONLY: 2,
- Z_RLE: 3,
- Z_FIXED: 4,
- Z_DEFAULT_STRATEGY: 0,
-
- /* Possible values of the data_type field (though see inflate()) */
- Z_BINARY: 0,
- Z_TEXT: 1,
- //Z_ASCII: 1, // = Z_TEXT (deprecated)
- Z_UNKNOWN: 2,
-
- /* The deflate compression method */
- Z_DEFLATED: 8
- //Z_NULL: null // Use -1 or null inline, depending on var type
- };
- },{}],22:[function(require,module,exports){
- 'use strict';
-
- // Note: we can't get significant speed boost here.
- // So write code to minimize size - no pregenerated tables
- // and array tools dependencies.
-
-
- // Use ordinary array, since untyped makes no boost here
- function makeTable() {
- var c, table = [];
-
- for(var n =0; n < 256; n++){
- c = n;
- for(var k =0; k < 8; k++){
- c = ((c&1) ? (0xEDB88320 ^ (c >>> 1)) : (c >>> 1));
- }
- table[n] = c;
- }
-
- return table;
- }
-
- // Create table on load. Just 255 signed longs. Not a problem.
- var crcTable = makeTable();
-
-
- function crc32(crc, buf, len, pos) {
- var t = crcTable
- , end = pos + len;
-
- crc = crc ^ (-1);
-
- for (var i = pos; i < end; i++ ) {
- crc = (crc >>> 8) ^ t[(crc ^ buf[i]) & 0xFF];
- }
-
- return (crc ^ (-1)); // >>> 0;
- }
-
-
- module.exports = crc32;
- },{}],23:[function(require,module,exports){
- 'use strict';
-
- var utils = require('../utils/common');
- var trees = require('./trees');
- var adler32 = require('./adler32');
- var crc32 = require('./crc32');
- var msg = require('./messages');
-
- /* Public constants ==========================================================*/
- /* ===========================================================================*/
-
-
- /* Allowed flush values; see deflate() and inflate() below for details */
- var Z_NO_FLUSH = 0;
- var Z_PARTIAL_FLUSH = 1;
- //var Z_SYNC_FLUSH = 2;
- var Z_FULL_FLUSH = 3;
- var Z_FINISH = 4;
- var Z_BLOCK = 5;
- //var Z_TREES = 6;
-
-
- /* Return codes for the compression/decompression functions. Negative values
- * are errors, positive values are used for special but normal events.
- */
- var Z_OK = 0;
- var Z_STREAM_END = 1;
- //var Z_NEED_DICT = 2;
- //var Z_ERRNO = -1;
- var Z_STREAM_ERROR = -2;
- var Z_DATA_ERROR = -3;
- //var Z_MEM_ERROR = -4;
- var Z_BUF_ERROR = -5;
- //var Z_VERSION_ERROR = -6;
-
-
- /* compression levels */
- //var Z_NO_COMPRESSION = 0;
- //var Z_BEST_SPEED = 1;
- //var Z_BEST_COMPRESSION = 9;
- var Z_DEFAULT_COMPRESSION = -1;
-
-
- var Z_FILTERED = 1;
- var Z_HUFFMAN_ONLY = 2;
- var Z_RLE = 3;
- var Z_FIXED = 4;
- var Z_DEFAULT_STRATEGY = 0;
-
- /* Possible values of the data_type field (though see inflate()) */
- //var Z_BINARY = 0;
- //var Z_TEXT = 1;
- //var Z_ASCII = 1; // = Z_TEXT
- var Z_UNKNOWN = 2;
-
-
- /* The deflate compression method */
- var Z_DEFLATED = 8;
-
- /*============================================================================*/
-
-
- var MAX_MEM_LEVEL = 9;
- /* Maximum value for memLevel in deflateInit2 */
- var MAX_WBITS = 15;
- /* 32K LZ77 window */
- var DEF_MEM_LEVEL = 8;
-
-
- var LENGTH_CODES = 29;
- /* number of length codes, not counting the special END_BLOCK code */
- var LITERALS = 256;
- /* number of literal bytes 0..255 */
- var L_CODES = LITERALS + 1 + LENGTH_CODES;
- /* number of Literal or Length codes, including the END_BLOCK code */
- var D_CODES = 30;
- /* number of distance codes */
- var BL_CODES = 19;
- /* number of codes used to transfer the bit lengths */
- var HEAP_SIZE = 2*L_CODES + 1;
- /* maximum heap size */
- var MAX_BITS = 15;
- /* All codes must not exceed MAX_BITS bits */
-
- var MIN_MATCH = 3;
- var MAX_MATCH = 258;
- var MIN_LOOKAHEAD = (MAX_MATCH + MIN_MATCH + 1);
-
- var PRESET_DICT = 0x20;
-
- var INIT_STATE = 42;
- var EXTRA_STATE = 69;
- var NAME_STATE = 73;
- var COMMENT_STATE = 91;
- var HCRC_STATE = 103;
- var BUSY_STATE = 113;
- var FINISH_STATE = 666;
-
- var BS_NEED_MORE = 1; /* block not completed, need more input or more output */
- var BS_BLOCK_DONE = 2; /* block flush performed */
- var BS_FINISH_STARTED = 3; /* finish started, need only more output at next deflate */
- var BS_FINISH_DONE = 4; /* finish done, accept no more input or output */
-
- var OS_CODE = 0x03; // Unix :) . Don't detect, use this default.
-
- function err(strm, errorCode) {
- strm.msg = msg[errorCode];
- return errorCode;
- }
-
- function rank(f) {
- return ((f) << 1) - ((f) > 4 ? 9 : 0);
- }
-
- function zero(buf) { var len = buf.length; while (--len >= 0) { buf[len] = 0; } }
-
-
- /* =========================================================================
- * Flush as much pending output as possible. All deflate() output goes
- * through this function so some applications may wish to modify it
- * to avoid allocating a large strm->output buffer and copying into it.
- * (See also read_buf()).
- */
- function flush_pending(strm) {
- var s = strm.state;
-
- //_tr_flush_bits(s);
- var len = s.pending;
- if (len > strm.avail_out) {
- len = strm.avail_out;
- }
- if (len === 0) { return; }
-
- utils.arraySet(strm.output, s.pending_buf, s.pending_out, len, strm.next_out);
- strm.next_out += len;
- s.pending_out += len;
- strm.total_out += len;
- strm.avail_out -= len;
- s.pending -= len;
- if (s.pending === 0) {
- s.pending_out = 0;
- }
- }
-
-
- function flush_block_only (s, last) {
- trees._tr_flush_block(s, (s.block_start >= 0 ? s.block_start : -1), s.strstart - s.block_start, last);
- s.block_start = s.strstart;
- flush_pending(s.strm);
- }
-
-
- function put_byte(s, b) {
- s.pending_buf[s.pending++] = b;
- }
-
-
- /* =========================================================================
- * Put a short in the pending buffer. The 16-bit value is put in MSB order.
- * IN assertion: the stream state is correct and there is enough room in
- * pending_buf.
- */
- function putShortMSB(s, b) {
- // put_byte(s, (Byte)(b >> 8));
- // put_byte(s, (Byte)(b & 0xff));
- s.pending_buf[s.pending++] = (b >>> 8) & 0xff;
- s.pending_buf[s.pending++] = b & 0xff;
- }
-
-
- /* ===========================================================================
- * Read a new buffer from the current input stream, update the adler32
- * and total number of bytes read. All deflate() input goes through
- * this function so some applications may wish to modify it to avoid
- * allocating a large strm->input buffer and copying from it.
- * (See also flush_pending()).
- */
- function read_buf(strm, buf, start, size) {
- var len = strm.avail_in;
-
- if (len > size) { len = size; }
- if (len === 0) { return 0; }
-
- strm.avail_in -= len;
-
- utils.arraySet(buf, strm.input, strm.next_in, len, start);
- if (strm.state.wrap === 1) {
- strm.adler = adler32(strm.adler, buf, len, start);
- }
-
- else if (strm.state.wrap === 2) {
- strm.adler = crc32(strm.adler, buf, len, start);
- }
-
- strm.next_in += len;
- strm.total_in += len;
-
- return len;
- }
-
-
- /* ===========================================================================
- * Set match_start to the longest match starting at the given string and
- * return its length. Matches shorter or equal to prev_length are discarded,
- * in which case the result is equal to prev_length and match_start is
- * garbage.
- * IN assertions: cur_match is the head of the hash chain for the current
- * string (strstart) and its distance is <= MAX_DIST, and prev_length >= 1
- * OUT assertion: the match length is not greater than s->lookahead.
- */
- function longest_match(s, cur_match) {
- var chain_length = s.max_chain_length; /* max hash chain length */
- var scan = s.strstart; /* current string */
- var match; /* matched string */
- var len; /* length of current match */
- var best_len = s.prev_length; /* best match length so far */
- var nice_match = s.nice_match; /* stop if match long enough */
- var limit = (s.strstart > (s.w_size - MIN_LOOKAHEAD)) ?
- s.strstart - (s.w_size - MIN_LOOKAHEAD) : 0/*NIL*/;
-
- var _win = s.window; // shortcut
-
- var wmask = s.w_mask;
- var prev = s.prev;
-
- /* Stop when cur_match becomes <= limit. To simplify the code,
- * we prevent matches with the string of window index 0.
- */
-
- var strend = s.strstart + MAX_MATCH;
- var scan_end1 = _win[scan + best_len - 1];
- var scan_end = _win[scan + best_len];
-
- /* The code is optimized for HASH_BITS >= 8 and MAX_MATCH-2 multiple of 16.
- * It is easy to get rid of this optimization if necessary.
- */
- // Assert(s->hash_bits >= 8 && MAX_MATCH == 258, "Code too clever");
-
- /* Do not waste too much time if we already have a good match: */
- if (s.prev_length >= s.good_match) {
- chain_length >>= 2;
- }
- /* Do not look for matches beyond the end of the input. This is necessary
- * to make deflate deterministic.
- */
- if (nice_match > s.lookahead) { nice_match = s.lookahead; }
-
- // Assert((ulg)s->strstart <= s->window_size-MIN_LOOKAHEAD, "need lookahead");
-
- do {
- // Assert(cur_match < s->strstart, "no future");
- match = cur_match;
-
- /* Skip to next match if the match length cannot increase
- * or if the match length is less than 2. Note that the checks below
- * for insufficient lookahead only occur occasionally for performance
- * reasons. Therefore uninitialized memory will be accessed, and
- * conditional jumps will be made that depend on those values.
- * However the length of the match is limited to the lookahead, so
- * the output of deflate is not affected by the uninitialized values.
- */
-
- if (_win[match + best_len] !== scan_end ||
- _win[match + best_len - 1] !== scan_end1 ||
- _win[match] !== _win[scan] ||
- _win[++match] !== _win[scan + 1]) {
- continue;
- }
-
- /* The check at best_len-1 can be removed because it will be made
- * again later. (This heuristic is not always a win.)
- * It is not necessary to compare scan[2] and match[2] since they
- * are always equal when the other bytes match, given that
- * the hash keys are equal and that HASH_BITS >= 8.
- */
- scan += 2;
- match++;
- // Assert(*scan == *match, "match[2]?");
-
- /* We check for insufficient lookahead only every 8th comparison;
- * the 256th check will be made at strstart+258.
- */
- do {
- /*jshint noempty:false*/
- } while (_win[++scan] === _win[++match] && _win[++scan] === _win[++match] &&
- _win[++scan] === _win[++match] && _win[++scan] === _win[++match] &&
- _win[++scan] === _win[++match] && _win[++scan] === _win[++match] &&
- _win[++scan] === _win[++match] && _win[++scan] === _win[++match] &&
- scan < strend);
-
- // Assert(scan <= s->window+(unsigned)(s->window_size-1), "wild scan");
-
- len = MAX_MATCH - (strend - scan);
- scan = strend - MAX_MATCH;
-
- if (len > best_len) {
- s.match_start = cur_match;
- best_len = len;
- if (len >= nice_match) {
- break;
- }
- scan_end1 = _win[scan + best_len - 1];
- scan_end = _win[scan + best_len];
- }
- } while ((cur_match = prev[cur_match & wmask]) > limit && --chain_length !== 0);
-
- if (best_len <= s.lookahead) {
- return best_len;
- }
- return s.lookahead;
- }
-
-
- /* ===========================================================================
- * Fill the window when the lookahead becomes insufficient.
- * Updates strstart and lookahead.
- *
- * IN assertion: lookahead < MIN_LOOKAHEAD
- * OUT assertions: strstart <= window_size-MIN_LOOKAHEAD
- * At least one byte has been read, or avail_in == 0; reads are
- * performed for at least two bytes (required for the zip translate_eol
- * option -- not supported here).
- */
- function fill_window(s) {
- var _w_size = s.w_size;
- var p, n, m, more, str;
-
- //Assert(s->lookahead < MIN_LOOKAHEAD, "already enough lookahead");
-
- do {
- more = s.window_size - s.lookahead - s.strstart;
-
- // JS ints have 32 bit, block below not needed
- /* Deal with !@#$% 64K limit: */
- //if (sizeof(int) <= 2) {
- // if (more == 0 && s->strstart == 0 && s->lookahead == 0) {
- // more = wsize;
- //
- // } else if (more == (unsigned)(-1)) {
- // /* Very unlikely, but possible on 16 bit machine if
- // * strstart == 0 && lookahead == 1 (input done a byte at time)
- // */
- // more--;
- // }
- //}
-
-
- /* If the window is almost full and there is insufficient lookahead,
- * move the upper half to the lower one to make room in the upper half.
- */
- if (s.strstart >= _w_size + (_w_size - MIN_LOOKAHEAD)) {
-
- utils.arraySet(s.window, s.window, _w_size, _w_size, 0);
- s.match_start -= _w_size;
- s.strstart -= _w_size;
- /* we now have strstart >= MAX_DIST */
- s.block_start -= _w_size;
-
- /* Slide the hash table (could be avoided with 32 bit values
- at the expense of memory usage). We slide even when level == 0
- to keep the hash table consistent if we switch back to level > 0
- later. (Using level 0 permanently is not an optimal usage of
- zlib, so we don't care about this pathological case.)
- */
-
- n = s.hash_size;
- p = n;
- do {
- m = s.head[--p];
- s.head[p] = (m >= _w_size ? m - _w_size : 0);
- } while (--n);
-
- n = _w_size;
- p = n;
- do {
- m = s.prev[--p];
- s.prev[p] = (m >= _w_size ? m - _w_size : 0);
- /* If n is not on any hash chain, prev[n] is garbage but
- * its value will never be used.
- */
- } while (--n);
-
- more += _w_size;
- }
- if (s.strm.avail_in === 0) {
- break;
- }
-
- /* If there was no sliding:
- * strstart <= WSIZE+MAX_DIST-1 && lookahead <= MIN_LOOKAHEAD - 1 &&
- * more == window_size - lookahead - strstart
- * => more >= window_size - (MIN_LOOKAHEAD-1 + WSIZE + MAX_DIST-1)
- * => more >= window_size - 2*WSIZE + 2
- * In the BIG_MEM or MMAP case (not yet supported),
- * window_size == input_size + MIN_LOOKAHEAD &&
- * strstart + s->lookahead <= input_size => more >= MIN_LOOKAHEAD.
- * Otherwise, window_size == 2*WSIZE so more >= 2.
- * If there was sliding, more >= WSIZE. So in all cases, more >= 2.
- */
- //Assert(more >= 2, "more < 2");
- n = read_buf(s.strm, s.window, s.strstart + s.lookahead, more);
- s.lookahead += n;
-
- /* Initialize the hash value now that we have some input: */
- if (s.lookahead + s.insert >= MIN_MATCH) {
- str = s.strstart - s.insert;
- s.ins_h = s.window[str];
-
- /* UPDATE_HASH(s, s->ins_h, s->window[str + 1]); */
- s.ins_h = ((s.ins_h << s.hash_shift) ^ s.window[str + 1]) & s.hash_mask;
- //#if MIN_MATCH != 3
- // Call update_hash() MIN_MATCH-3 more times
- //#endif
- while (s.insert) {
- /* UPDATE_HASH(s, s->ins_h, s->window[str + MIN_MATCH-1]); */
- s.ins_h = ((s.ins_h << s.hash_shift) ^ s.window[str + MIN_MATCH-1]) & s.hash_mask;
-
- s.prev[str & s.w_mask] = s.head[s.ins_h];
- s.head[s.ins_h] = str;
- str++;
- s.insert--;
- if (s.lookahead + s.insert < MIN_MATCH) {
- break;
- }
- }
- }
- /* If the whole input has less than MIN_MATCH bytes, ins_h is garbage,
- * but this is not important since only literal bytes will be emitted.
- */
-
- } while (s.lookahead < MIN_LOOKAHEAD && s.strm.avail_in !== 0);
-
- /* If the WIN_INIT bytes after the end of the current data have never been
- * written, then zero those bytes in order to avoid memory check reports of
- * the use of uninitialized (or uninitialised as Julian writes) bytes by
- * the longest match routines. Update the high water mark for the next
- * time through here. WIN_INIT is set to MAX_MATCH since the longest match
- * routines allow scanning to strstart + MAX_MATCH, ignoring lookahead.
- */
- // if (s.high_water < s.window_size) {
- // var curr = s.strstart + s.lookahead;
- // var init = 0;
- //
- // if (s.high_water < curr) {
- // /* Previous high water mark below current data -- zero WIN_INIT
- // * bytes or up to end of window, whichever is less.
- // */
- // init = s.window_size - curr;
- // if (init > WIN_INIT)
- // init = WIN_INIT;
- // zmemzero(s->window + curr, (unsigned)init);
- // s->high_water = curr + init;
- // }
- // else if (s->high_water < (ulg)curr + WIN_INIT) {
- // /* High water mark at or above current data, but below current data
- // * plus WIN_INIT -- zero out to current data plus WIN_INIT, or up
- // * to end of window, whichever is less.
- // */
- // init = (ulg)curr + WIN_INIT - s->high_water;
- // if (init > s->window_size - s->high_water)
- // init = s->window_size - s->high_water;
- // zmemzero(s->window + s->high_water, (unsigned)init);
- // s->high_water += init;
- // }
- // }
- //
- // Assert((ulg)s->strstart <= s->window_size - MIN_LOOKAHEAD,
- // "not enough room for search");
- }
-
- /* ===========================================================================
- * Copy without compression as much as possible from the input stream, return
- * the current block state.
- * This function does not insert new strings in the dictionary since
- * uncompressible data is probably not useful. This function is used
- * only for the level=0 compression option.
- * NOTE: this function should be optimized to avoid extra copying from
- * window to pending_buf.
- */
- function deflate_stored(s, flush) {
- /* Stored blocks are limited to 0xffff bytes, pending_buf is limited
- * to pending_buf_size, and each stored block has a 5 byte header:
- */
- var max_block_size = 0xffff;
-
- if (max_block_size > s.pending_buf_size - 5) {
- max_block_size = s.pending_buf_size - 5;
- }
-
- /* Copy as much as possible from input to output: */
- for (;;) {
- /* Fill the window as much as possible: */
- if (s.lookahead <= 1) {
-
- //Assert(s->strstart < s->w_size+MAX_DIST(s) ||
- // s->block_start >= (long)s->w_size, "slide too late");
- // if (!(s.strstart < s.w_size + (s.w_size - MIN_LOOKAHEAD) ||
- // s.block_start >= s.w_size)) {
- // throw new Error("slide too late");
- // }
-
- fill_window(s);
- if (s.lookahead === 0 && flush === Z_NO_FLUSH) {
- return BS_NEED_MORE;
- }
-
- if (s.lookahead === 0) {
- break;
- }
- /* flush the current block */
- }
- //Assert(s->block_start >= 0L, "block gone");
- // if (s.block_start < 0) throw new Error("block gone");
-
- s.strstart += s.lookahead;
- s.lookahead = 0;
-
- /* Emit a stored block if pending_buf will be full: */
- var max_start = s.block_start + max_block_size;
-
- if (s.strstart === 0 || s.strstart >= max_start) {
- /* strstart == 0 is possible when wraparound on 16-bit machine */
- s.lookahead = s.strstart - max_start;
- s.strstart = max_start;
- /*** FLUSH_BLOCK(s, 0); ***/
- flush_block_only(s, false);
- if (s.strm.avail_out === 0) {
- return BS_NEED_MORE;
- }
- /***/
-
-
- }
- /* Flush if we may have to slide, otherwise block_start may become
- * negative and the data will be gone:
- */
- if (s.strstart - s.block_start >= (s.w_size - MIN_LOOKAHEAD)) {
- /*** FLUSH_BLOCK(s, 0); ***/
- flush_block_only(s, false);
- if (s.strm.avail_out === 0) {
- return BS_NEED_MORE;
- }
- /***/
- }
- }
-
- s.insert = 0;
-
- if (flush === Z_FINISH) {
- /*** FLUSH_BLOCK(s, 1); ***/
- flush_block_only(s, true);
- if (s.strm.avail_out === 0) {
- return BS_FINISH_STARTED;
- }
- /***/
- return BS_FINISH_DONE;
- }
-
- if (s.strstart > s.block_start) {
- /*** FLUSH_BLOCK(s, 0); ***/
- flush_block_only(s, false);
- if (s.strm.avail_out === 0) {
- return BS_NEED_MORE;
- }
- /***/
- }
-
- return BS_NEED_MORE;
- }
-
- /* ===========================================================================
- * Compress as much as possible from the input stream, return the current
- * block state.
- * This function does not perform lazy evaluation of matches and inserts
- * new strings in the dictionary only for unmatched strings or for short
- * matches. It is used only for the fast compression options.
- */
- function deflate_fast(s, flush) {
- var hash_head; /* head of the hash chain */
- var bflush; /* set if current block must be flushed */
-
- for (;;) {
- /* Make sure that we always have enough lookahead, except
- * at the end of the input file. We need MAX_MATCH bytes
- * for the next match, plus MIN_MATCH bytes to insert the
- * string following the next match.
- */
- if (s.lookahead < MIN_LOOKAHEAD) {
- fill_window(s);
- if (s.lookahead < MIN_LOOKAHEAD && flush === Z_NO_FLUSH) {
- return BS_NEED_MORE;
- }
- if (s.lookahead === 0) {
- break; /* flush the current block */
- }
- }
-
- /* Insert the string window[strstart .. strstart+2] in the
- * dictionary, and set hash_head to the head of the hash chain:
- */
- hash_head = 0/*NIL*/;
- if (s.lookahead >= MIN_MATCH) {
- /*** INSERT_STRING(s, s.strstart, hash_head); ***/
- s.ins_h = ((s.ins_h << s.hash_shift) ^ s.window[s.strstart + MIN_MATCH - 1]) & s.hash_mask;
- hash_head = s.prev[s.strstart & s.w_mask] = s.head[s.ins_h];
- s.head[s.ins_h] = s.strstart;
- /***/
- }
-
- /* Find the longest match, discarding those <= prev_length.
- * At this point we have always match_length < MIN_MATCH
- */
- if (hash_head !== 0/*NIL*/ && ((s.strstart - hash_head) <= (s.w_size - MIN_LOOKAHEAD))) {
- /* To simplify the code, we prevent matches with the string
- * of window index 0 (in particular we have to avoid a match
- * of the string with itself at the start of the input file).
- */
- s.match_length = longest_match(s, hash_head);
- /* longest_match() sets match_start */
- }
- if (s.match_length >= MIN_MATCH) {
- // check_match(s, s.strstart, s.match_start, s.match_length); // for debug only
-
- /*** _tr_tally_dist(s, s.strstart - s.match_start,
- s.match_length - MIN_MATCH, bflush); ***/
- bflush = trees._tr_tally(s, s.strstart - s.match_start, s.match_length - MIN_MATCH);
-
- s.lookahead -= s.match_length;
-
- /* Insert new strings in the hash table only if the match length
- * is not too large. This saves time but degrades compression.
- */
- if (s.match_length <= s.max_lazy_match/*max_insert_length*/ && s.lookahead >= MIN_MATCH) {
- s.match_length--; /* string at strstart already in table */
- do {
- s.strstart++;
- /*** INSERT_STRING(s, s.strstart, hash_head); ***/
- s.ins_h = ((s.ins_h << s.hash_shift) ^ s.window[s.strstart + MIN_MATCH - 1]) & s.hash_mask;
- hash_head = s.prev[s.strstart & s.w_mask] = s.head[s.ins_h];
- s.head[s.ins_h] = s.strstart;
- /***/
- /* strstart never exceeds WSIZE-MAX_MATCH, so there are
- * always MIN_MATCH bytes ahead.
- */
- } while (--s.match_length !== 0);
- s.strstart++;
- } else
- {
- s.strstart += s.match_length;
- s.match_length = 0;
- s.ins_h = s.window[s.strstart];
- /* UPDATE_HASH(s, s.ins_h, s.window[s.strstart+1]); */
- s.ins_h = ((s.ins_h << s.hash_shift) ^ s.window[s.strstart + 1]) & s.hash_mask;
-
- //#if MIN_MATCH != 3
- // Call UPDATE_HASH() MIN_MATCH-3 more times
- //#endif
- /* If lookahead < MIN_MATCH, ins_h is garbage, but it does not
- * matter since it will be recomputed at next deflate call.
- */
- }
- } else {
- /* No match, output a literal byte */
- //Tracevv((stderr,"%c", s.window[s.strstart]));
- /*** _tr_tally_lit(s, s.window[s.strstart], bflush); ***/
- bflush = trees._tr_tally(s, 0, s.window[s.strstart]);
-
- s.lookahead--;
- s.strstart++;
- }
- if (bflush) {
- /*** FLUSH_BLOCK(s, 0); ***/
- flush_block_only(s, false);
- if (s.strm.avail_out === 0) {
- return BS_NEED_MORE;
- }
- /***/
- }
- }
- s.insert = ((s.strstart < (MIN_MATCH-1)) ? s.strstart : MIN_MATCH-1);
- if (flush === Z_FINISH) {
- /*** FLUSH_BLOCK(s, 1); ***/
- flush_block_only(s, true);
- if (s.strm.avail_out === 0) {
- return BS_FINISH_STARTED;
- }
- /***/
- return BS_FINISH_DONE;
- }
- if (s.last_lit) {
- /*** FLUSH_BLOCK(s, 0); ***/
- flush_block_only(s, false);
- if (s.strm.avail_out === 0) {
- return BS_NEED_MORE;
- }
- /***/
- }
- return BS_BLOCK_DONE;
- }
-
- /* ===========================================================================
- * Same as above, but achieves better compression. We use a lazy
- * evaluation for matches: a match is finally adopted only if there is
- * no better match at the next window position.
- */
- function deflate_slow(s, flush) {
- var hash_head; /* head of hash chain */
- var bflush; /* set if current block must be flushed */
-
- var max_insert;
-
- /* Process the input block. */
- for (;;) {
- /* Make sure that we always have enough lookahead, except
- * at the end of the input file. We need MAX_MATCH bytes
- * for the next match, plus MIN_MATCH bytes to insert the
- * string following the next match.
- */
- if (s.lookahead < MIN_LOOKAHEAD) {
- fill_window(s);
- if (s.lookahead < MIN_LOOKAHEAD && flush === Z_NO_FLUSH) {
- return BS_NEED_MORE;
- }
- if (s.lookahead === 0) { break; } /* flush the current block */
- }
-
- /* Insert the string window[strstart .. strstart+2] in the
- * dictionary, and set hash_head to the head of the hash chain:
- */
- hash_head = 0/*NIL*/;
- if (s.lookahead >= MIN_MATCH) {
- /*** INSERT_STRING(s, s.strstart, hash_head); ***/
- s.ins_h = ((s.ins_h << s.hash_shift) ^ s.window[s.strstart + MIN_MATCH - 1]) & s.hash_mask;
- hash_head = s.prev[s.strstart & s.w_mask] = s.head[s.ins_h];
- s.head[s.ins_h] = s.strstart;
- /***/
- }
-
- /* Find the longest match, discarding those <= prev_length.
- */
- s.prev_length = s.match_length;
- s.prev_match = s.match_start;
- s.match_length = MIN_MATCH-1;
-
- if (hash_head !== 0/*NIL*/ && s.prev_length < s.max_lazy_match &&
- s.strstart - hash_head <= (s.w_size-MIN_LOOKAHEAD)/*MAX_DIST(s)*/) {
- /* To simplify the code, we prevent matches with the string
- * of window index 0 (in particular we have to avoid a match
- * of the string with itself at the start of the input file).
- */
- s.match_length = longest_match(s, hash_head);
- /* longest_match() sets match_start */
-
- if (s.match_length <= 5 &&
- (s.strategy === Z_FILTERED || (s.match_length === MIN_MATCH && s.strstart - s.match_start > 4096/*TOO_FAR*/))) {
-
- /* If prev_match is also MIN_MATCH, match_start is garbage
- * but we will ignore the current match anyway.
- */
- s.match_length = MIN_MATCH-1;
- }
- }
- /* If there was a match at the previous step and the current
- * match is not better, output the previous match:
- */
- if (s.prev_length >= MIN_MATCH && s.match_length <= s.prev_length) {
- max_insert = s.strstart + s.lookahead - MIN_MATCH;
- /* Do not insert strings in hash table beyond this. */
-
- //check_match(s, s.strstart-1, s.prev_match, s.prev_length);
-
- /***_tr_tally_dist(s, s.strstart - 1 - s.prev_match,
- s.prev_length - MIN_MATCH, bflush);***/
- bflush = trees._tr_tally(s, s.strstart - 1- s.prev_match, s.prev_length - MIN_MATCH);
- /* Insert in hash table all strings up to the end of the match.
- * strstart-1 and strstart are already inserted. If there is not
- * enough lookahead, the last two strings are not inserted in
- * the hash table.
- */
- s.lookahead -= s.prev_length-1;
- s.prev_length -= 2;
- do {
- if (++s.strstart <= max_insert) {
- /*** INSERT_STRING(s, s.strstart, hash_head); ***/
- s.ins_h = ((s.ins_h << s.hash_shift) ^ s.window[s.strstart + MIN_MATCH - 1]) & s.hash_mask;
- hash_head = s.prev[s.strstart & s.w_mask] = s.head[s.ins_h];
- s.head[s.ins_h] = s.strstart;
- /***/
- }
- } while (--s.prev_length !== 0);
- s.match_available = 0;
- s.match_length = MIN_MATCH-1;
- s.strstart++;
-
- if (bflush) {
- /*** FLUSH_BLOCK(s, 0); ***/
- flush_block_only(s, false);
- if (s.strm.avail_out === 0) {
- return BS_NEED_MORE;
- }
- /***/
- }
-
- } else if (s.match_available) {
- /* If there was no match at the previous position, output a
- * single literal. If there was a match but the current match
- * is longer, truncate the previous match to a single literal.
- */
- //Tracevv((stderr,"%c", s->window[s->strstart-1]));
- /*** _tr_tally_lit(s, s.window[s.strstart-1], bflush); ***/
- bflush = trees._tr_tally(s, 0, s.window[s.strstart-1]);
-
- if (bflush) {
- /*** FLUSH_BLOCK_ONLY(s, 0) ***/
- flush_block_only(s, false);
- /***/
- }
- s.strstart++;
- s.lookahead--;
- if (s.strm.avail_out === 0) {
- return BS_NEED_MORE;
- }
- } else {
- /* There is no previous match to compare with, wait for
- * the next step to decide.
- */
- s.match_available = 1;
- s.strstart++;
- s.lookahead--;
- }
- }
- //Assert (flush != Z_NO_FLUSH, "no flush?");
- if (s.match_available) {
- //Tracevv((stderr,"%c", s->window[s->strstart-1]));
- /*** _tr_tally_lit(s, s.window[s.strstart-1], bflush); ***/
- bflush = trees._tr_tally(s, 0, s.window[s.strstart-1]);
-
- s.match_available = 0;
- }
- s.insert = s.strstart < MIN_MATCH-1 ? s.strstart : MIN_MATCH-1;
- if (flush === Z_FINISH) {
- /*** FLUSH_BLOCK(s, 1); ***/
- flush_block_only(s, true);
- if (s.strm.avail_out === 0) {
- return BS_FINISH_STARTED;
- }
- /***/
- return BS_FINISH_DONE;
- }
- if (s.last_lit) {
- /*** FLUSH_BLOCK(s, 0); ***/
- flush_block_only(s, false);
- if (s.strm.avail_out === 0) {
- return BS_NEED_MORE;
- }
- /***/
- }
-
- return BS_BLOCK_DONE;
- }
-
-
- /* ===========================================================================
- * For Z_RLE, simply look for runs of bytes, generate matches only of distance
- * one. Do not maintain a hash table. (It will be regenerated if this run of
- * deflate switches away from Z_RLE.)
- */
- function deflate_rle(s, flush) {
- var bflush; /* set if current block must be flushed */
- var prev; /* byte at distance one to match */
- var scan, strend; /* scan goes up to strend for length of run */
-
- var _win = s.window;
-
- for (;;) {
- /* Make sure that we always have enough lookahead, except
- * at the end of the input file. We need MAX_MATCH bytes
- * for the longest run, plus one for the unrolled loop.
- */
- if (s.lookahead <= MAX_MATCH) {
- fill_window(s);
- if (s.lookahead <= MAX_MATCH && flush === Z_NO_FLUSH) {
- return BS_NEED_MORE;
- }
- if (s.lookahead === 0) { break; } /* flush the current block */
- }
-
- /* See how many times the previous byte repeats */
- s.match_length = 0;
- if (s.lookahead >= MIN_MATCH && s.strstart > 0) {
- scan = s.strstart - 1;
- prev = _win[scan];
- if (prev === _win[++scan] && prev === _win[++scan] && prev === _win[++scan]) {
- strend = s.strstart + MAX_MATCH;
- do {
- /*jshint noempty:false*/
- } while (prev === _win[++scan] && prev === _win[++scan] &&
- prev === _win[++scan] && prev === _win[++scan] &&
- prev === _win[++scan] && prev === _win[++scan] &&
- prev === _win[++scan] && prev === _win[++scan] &&
- scan < strend);
- s.match_length = MAX_MATCH - (strend - scan);
- if (s.match_length > s.lookahead) {
- s.match_length = s.lookahead;
- }
- }
- //Assert(scan <= s->window+(uInt)(s->window_size-1), "wild scan");
- }
-
- /* Emit match if have run of MIN_MATCH or longer, else emit literal */
- if (s.match_length >= MIN_MATCH) {
- //check_match(s, s.strstart, s.strstart - 1, s.match_length);
-
- /*** _tr_tally_dist(s, 1, s.match_length - MIN_MATCH, bflush); ***/
- bflush = trees._tr_tally(s, 1, s.match_length - MIN_MATCH);
-
- s.lookahead -= s.match_length;
- s.strstart += s.match_length;
- s.match_length = 0;
- } else {
- /* No match, output a literal byte */
- //Tracevv((stderr,"%c", s->window[s->strstart]));
- /*** _tr_tally_lit(s, s.window[s.strstart], bflush); ***/
- bflush = trees._tr_tally(s, 0, s.window[s.strstart]);
-
- s.lookahead--;
- s.strstart++;
- }
- if (bflush) {
- /*** FLUSH_BLOCK(s, 0); ***/
- flush_block_only(s, false);
- if (s.strm.avail_out === 0) {
- return BS_NEED_MORE;
- }
- /***/
- }
- }
- s.insert = 0;
- if (flush === Z_FINISH) {
- /*** FLUSH_BLOCK(s, 1); ***/
- flush_block_only(s, true);
- if (s.strm.avail_out === 0) {
- return BS_FINISH_STARTED;
- }
- /***/
- return BS_FINISH_DONE;
- }
- if (s.last_lit) {
- /*** FLUSH_BLOCK(s, 0); ***/
- flush_block_only(s, false);
- if (s.strm.avail_out === 0) {
- return BS_NEED_MORE;
- }
- /***/
- }
- return BS_BLOCK_DONE;
- }
-
- /* ===========================================================================
- * For Z_HUFFMAN_ONLY, do not look for matches. Do not maintain a hash table.
- * (It will be regenerated if this run of deflate switches away from Huffman.)
- */
- function deflate_huff(s, flush) {
- var bflush; /* set if current block must be flushed */
-
- for (;;) {
- /* Make sure that we have a literal to write. */
- if (s.lookahead === 0) {
- fill_window(s);
- if (s.lookahead === 0) {
- if (flush === Z_NO_FLUSH) {
- return BS_NEED_MORE;
- }
- break; /* flush the current block */
- }
- }
-
- /* Output a literal byte */
- s.match_length = 0;
- //Tracevv((stderr,"%c", s->window[s->strstart]));
- /*** _tr_tally_lit(s, s.window[s.strstart], bflush); ***/
- bflush = trees._tr_tally(s, 0, s.window[s.strstart]);
- s.lookahead--;
- s.strstart++;
- if (bflush) {
- /*** FLUSH_BLOCK(s, 0); ***/
- flush_block_only(s, false);
- if (s.strm.avail_out === 0) {
- return BS_NEED_MORE;
- }
- /***/
- }
- }
- s.insert = 0;
- if (flush === Z_FINISH) {
- /*** FLUSH_BLOCK(s, 1); ***/
- flush_block_only(s, true);
- if (s.strm.avail_out === 0) {
- return BS_FINISH_STARTED;
- }
- /***/
- return BS_FINISH_DONE;
- }
- if (s.last_lit) {
- /*** FLUSH_BLOCK(s, 0); ***/
- flush_block_only(s, false);
- if (s.strm.avail_out === 0) {
- return BS_NEED_MORE;
- }
- /***/
- }
- return BS_BLOCK_DONE;
- }
-
- /* Values for max_lazy_match, good_match and max_chain_length, depending on
- * the desired pack level (0..9). The values given below have been tuned to
- * exclude worst case performance for pathological files. Better values may be
- * found for specific files.
- */
- var Config = function (good_length, max_lazy, nice_length, max_chain, func) {
- this.good_length = good_length;
- this.max_lazy = max_lazy;
- this.nice_length = nice_length;
- this.max_chain = max_chain;
- this.func = func;
- };
-
- var configuration_table;
-
- configuration_table = [
- /* good lazy nice chain */
- new Config(0, 0, 0, 0, deflate_stored), /* 0 store only */
- new Config(4, 4, 8, 4, deflate_fast), /* 1 max speed, no lazy matches */
- new Config(4, 5, 16, 8, deflate_fast), /* 2 */
- new Config(4, 6, 32, 32, deflate_fast), /* 3 */
-
- new Config(4, 4, 16, 16, deflate_slow), /* 4 lazy matches */
- new Config(8, 16, 32, 32, deflate_slow), /* 5 */
- new Config(8, 16, 128, 128, deflate_slow), /* 6 */
- new Config(8, 32, 128, 256, deflate_slow), /* 7 */
- new Config(32, 128, 258, 1024, deflate_slow), /* 8 */
- new Config(32, 258, 258, 4096, deflate_slow) /* 9 max compression */
- ];
-
-
- /* ===========================================================================
- * Initialize the "longest match" routines for a new zlib stream
- */
- function lm_init(s) {
- s.window_size = 2 * s.w_size;
-
- /*** CLEAR_HASH(s); ***/
- zero(s.head); // Fill with NIL (= 0);
-
- /* Set the default configuration parameters:
- */
- s.max_lazy_match = configuration_table[s.level].max_lazy;
- s.good_match = configuration_table[s.level].good_length;
- s.nice_match = configuration_table[s.level].nice_length;
- s.max_chain_length = configuration_table[s.level].max_chain;
-
- s.strstart = 0;
- s.block_start = 0;
- s.lookahead = 0;
- s.insert = 0;
- s.match_length = s.prev_length = MIN_MATCH - 1;
- s.match_available = 0;
- s.ins_h = 0;
- }
-
-
- function DeflateState() {
- this.strm = null; /* pointer back to this zlib stream */
- this.status = 0; /* as the name implies */
- this.pending_buf = null; /* output still pending */
- this.pending_buf_size = 0; /* size of pending_buf */
- this.pending_out = 0; /* next pending byte to output to the stream */
- this.pending = 0; /* nb of bytes in the pending buffer */
- this.wrap = 0; /* bit 0 true for zlib, bit 1 true for gzip */
- this.gzhead = null; /* gzip header information to write */
- this.gzindex = 0; /* where in extra, name, or comment */
- this.method = Z_DEFLATED; /* can only be DEFLATED */
- this.last_flush = -1; /* value of flush param for previous deflate call */
-
- this.w_size = 0; /* LZ77 window size (32K by default) */
- this.w_bits = 0; /* log2(w_size) (8..16) */
- this.w_mask = 0; /* w_size - 1 */
-
- this.window = null;
- /* Sliding window. Input bytes are read into the second half of the window,
- * and move to the first half later to keep a dictionary of at least wSize
- * bytes. With this organization, matches are limited to a distance of
- * wSize-MAX_MATCH bytes, but this ensures that IO is always
- * performed with a length multiple of the block size.
- */
-
- this.window_size = 0;
- /* Actual size of window: 2*wSize, except when the user input buffer
- * is directly used as sliding window.
- */
-
- this.prev = null;
- /* Link to older string with same hash index. To limit the size of this
- * array to 64K, this link is maintained only for the last 32K strings.
- * An index in this array is thus a window index modulo 32K.
- */
-
- this.head = null; /* Heads of the hash chains or NIL. */
-
- this.ins_h = 0; /* hash index of string to be inserted */
- this.hash_size = 0; /* number of elements in hash table */
- this.hash_bits = 0; /* log2(hash_size) */
- this.hash_mask = 0; /* hash_size-1 */
-
- this.hash_shift = 0;
- /* Number of bits by which ins_h must be shifted at each input
- * step. It must be such that after MIN_MATCH steps, the oldest
- * byte no longer takes part in the hash key, that is:
- * hash_shift * MIN_MATCH >= hash_bits
- */
-
- this.block_start = 0;
- /* Window position at the beginning of the current output block. Gets
- * negative when the window is moved backwards.
- */
-
- this.match_length = 0; /* length of best match */
- this.prev_match = 0; /* previous match */
- this.match_available = 0; /* set if previous match exists */
- this.strstart = 0; /* start of string to insert */
- this.match_start = 0; /* start of matching string */
- this.lookahead = 0; /* number of valid bytes ahead in window */
-
- this.prev_length = 0;
- /* Length of the best match at previous step. Matches not greater than this
- * are discarded. This is used in the lazy match evaluation.
- */
-
- this.max_chain_length = 0;
- /* To speed up deflation, hash chains are never searched beyond this
- * length. A higher limit improves compression ratio but degrades the
- * speed.
- */
-
- this.max_lazy_match = 0;
- /* Attempt to find a better match only when the current match is strictly
- * smaller than this value. This mechanism is used only for compression
- * levels >= 4.
- */
- // That's alias to max_lazy_match, don't use directly
- //this.max_insert_length = 0;
- /* Insert new strings in the hash table only if the match length is not
- * greater than this length. This saves time but degrades compression.
- * max_insert_length is used only for compression levels <= 3.
- */
-
- this.level = 0; /* compression level (1..9) */
- this.strategy = 0; /* favor or force Huffman coding*/
-
- this.good_match = 0;
- /* Use a faster search when the previous match is longer than this */
-
- this.nice_match = 0; /* Stop searching when current match exceeds this */
-
- /* used by trees.c: */
-
- /* Didn't use ct_data typedef below to suppress compiler warning */
-
- // struct ct_data_s dyn_ltree[HEAP_SIZE]; /* literal and length tree */
- // struct ct_data_s dyn_dtree[2*D_CODES+1]; /* distance tree */
- // struct ct_data_s bl_tree[2*BL_CODES+1]; /* Huffman tree for bit lengths */
-
- // Use flat array of DOUBLE size, with interleaved fata,
- // because JS does not support effective
- this.dyn_ltree = new utils.Buf16(HEAP_SIZE * 2);
- this.dyn_dtree = new utils.Buf16((2*D_CODES+1) * 2);
- this.bl_tree = new utils.Buf16((2*BL_CODES+1) * 2);
- zero(this.dyn_ltree);
- zero(this.dyn_dtree);
- zero(this.bl_tree);
-
- this.l_desc = null; /* desc. for literal tree */
- this.d_desc = null; /* desc. for distance tree */
- this.bl_desc = null; /* desc. for bit length tree */
-
- //ush bl_count[MAX_BITS+1];
- this.bl_count = new utils.Buf16(MAX_BITS+1);
- /* number of codes at each bit length for an optimal tree */
-
- //int heap[2*L_CODES+1]; /* heap used to build the Huffman trees */
- this.heap = new utils.Buf16(2*L_CODES+1); /* heap used to build the Huffman trees */
- zero(this.heap);
-
- this.heap_len = 0; /* number of elements in the heap */
- this.heap_max = 0; /* element of largest frequency */
- /* The sons of heap[n] are heap[2*n] and heap[2*n+1]. heap[0] is not used.
- * The same heap array is used to build all trees.
- */
-
- this.depth = new utils.Buf16(2*L_CODES+1); //uch depth[2*L_CODES+1];
- zero(this.depth);
- /* Depth of each subtree used as tie breaker for trees of equal frequency
- */
-
- this.l_buf = 0; /* buffer index for literals or lengths */
-
- this.lit_bufsize = 0;
- /* Size of match buffer for literals/lengths. There are 4 reasons for
- * limiting lit_bufsize to 64K:
- * - frequencies can be kept in 16 bit counters
- * - if compression is not successful for the first block, all input
- * data is still in the window so we can still emit a stored block even
- * when input comes from standard input. (This can also be done for
- * all blocks if lit_bufsize is not greater than 32K.)
- * - if compression is not successful for a file smaller than 64K, we can
- * even emit a stored file instead of a stored block (saving 5 bytes).
- * This is applicable only for zip (not gzip or zlib).
- * - creating new Huffman trees less frequently may not provide fast
- * adaptation to changes in the input data statistics. (Take for
- * example a binary file with poorly compressible code followed by
- * a highly compressible string table.) Smaller buffer sizes give
- * fast adaptation but have of course the overhead of transmitting
- * trees more frequently.
- * - I can't count above 4
- */
-
- this.last_lit = 0; /* running index in l_buf */
-
- this.d_buf = 0;
- /* Buffer index for distances. To simplify the code, d_buf and l_buf have
- * the same number of elements. To use different lengths, an extra flag
- * array would be necessary.
- */
-
- this.opt_len = 0; /* bit length of current block with optimal trees */
- this.static_len = 0; /* bit length of current block with static trees */
- this.matches = 0; /* number of string matches in current block */
- this.insert = 0; /* bytes at end of window left to insert */
-
-
- this.bi_buf = 0;
- /* Output buffer. bits are inserted starting at the bottom (least
- * significant bits).
- */
- this.bi_valid = 0;
- /* Number of valid bits in bi_buf. All bits above the last valid bit
- * are always zero.
- */
-
- // Used for window memory init. We safely ignore it for JS. That makes
- // sense only for pointers and memory check tools.
- //this.high_water = 0;
- /* High water mark offset in window for initialized bytes -- bytes above
- * this are set to zero in order to avoid memory check warnings when
- * longest match routines access bytes past the input. This is then
- * updated to the new high water mark.
- */
- }
-
-
- function deflateResetKeep(strm) {
- var s;
-
- if (!strm || !strm.state) {
- return err(strm, Z_STREAM_ERROR);
- }
-
- strm.total_in = strm.total_out = 0;
- strm.data_type = Z_UNKNOWN;
-
- s = strm.state;
- s.pending = 0;
- s.pending_out = 0;
-
- if (s.wrap < 0) {
- s.wrap = -s.wrap;
- /* was made negative by deflate(..., Z_FINISH); */
- }
- s.status = (s.wrap ? INIT_STATE : BUSY_STATE);
- strm.adler = (s.wrap === 2) ?
- 0 // crc32(0, Z_NULL, 0)
- :
- 1; // adler32(0, Z_NULL, 0)
- s.last_flush = Z_NO_FLUSH;
- trees._tr_init(s);
- return Z_OK;
- }
-
-
- function deflateReset(strm) {
- var ret = deflateResetKeep(strm);
- if (ret === Z_OK) {
- lm_init(strm.state);
- }
- return ret;
- }
-
-
- function deflateSetHeader(strm, head) {
- if (!strm || !strm.state) { return Z_STREAM_ERROR; }
- if (strm.state.wrap !== 2) { return Z_STREAM_ERROR; }
- strm.state.gzhead = head;
- return Z_OK;
- }
-
-
- function deflateInit2(strm, level, method, windowBits, memLevel, strategy) {
- if (!strm) { // === Z_NULL
- return Z_STREAM_ERROR;
- }
- var wrap = 1;
-
- if (level === Z_DEFAULT_COMPRESSION) {
- level = 6;
- }
-
- if (windowBits < 0) { /* suppress zlib wrapper */
- wrap = 0;
- windowBits = -windowBits;
- }
-
- else if (windowBits > 15) {
- wrap = 2; /* write gzip wrapper instead */
- windowBits -= 16;
- }
-
-
- if (memLevel < 1 || memLevel > MAX_MEM_LEVEL || method !== Z_DEFLATED ||
- windowBits < 8 || windowBits > 15 || level < 0 || level > 9 ||
- strategy < 0 || strategy > Z_FIXED) {
- return err(strm, Z_STREAM_ERROR);
- }
-
-
- if (windowBits === 8) {
- windowBits = 9;
- }
- /* until 256-byte window bug fixed */
-
- var s = new DeflateState();
-
- strm.state = s;
- s.strm = strm;
-
- s.wrap = wrap;
- s.gzhead = null;
- s.w_bits = windowBits;
- s.w_size = 1 << s.w_bits;
- s.w_mask = s.w_size - 1;
-
- s.hash_bits = memLevel + 7;
- s.hash_size = 1 << s.hash_bits;
- s.hash_mask = s.hash_size - 1;
- s.hash_shift = ~~((s.hash_bits + MIN_MATCH - 1) / MIN_MATCH);
-
- s.window = new utils.Buf8(s.w_size * 2);
- s.head = new utils.Buf16(s.hash_size);
- s.prev = new utils.Buf16(s.w_size);
-
- // Don't need mem init magic for JS.
- //s.high_water = 0; /* nothing written to s->window yet */
-
- s.lit_bufsize = 1 << (memLevel + 6); /* 16K elements by default */
-
- s.pending_buf_size = s.lit_bufsize * 4;
- s.pending_buf = new utils.Buf8(s.pending_buf_size);
-
- s.d_buf = s.lit_bufsize >> 1;
- s.l_buf = (1 + 2) * s.lit_bufsize;
-
- s.level = level;
- s.strategy = strategy;
- s.method = method;
-
- return deflateReset(strm);
- }
-
- function deflateInit(strm, level) {
- return deflateInit2(strm, level, Z_DEFLATED, MAX_WBITS, DEF_MEM_LEVEL, Z_DEFAULT_STRATEGY);
- }
-
-
- function deflate(strm, flush) {
- var old_flush, s;
- var beg, val; // for gzip header write only
-
- if (!strm || !strm.state ||
- flush > Z_BLOCK || flush < 0) {
- return strm ? err(strm, Z_STREAM_ERROR) : Z_STREAM_ERROR;
- }
-
- s = strm.state;
-
- if (!strm.output ||
- (!strm.input && strm.avail_in !== 0) ||
- (s.status === FINISH_STATE && flush !== Z_FINISH)) {
- return err(strm, (strm.avail_out === 0) ? Z_BUF_ERROR : Z_STREAM_ERROR);
- }
-
- s.strm = strm; /* just in case */
- old_flush = s.last_flush;
- s.last_flush = flush;
-
- /* Write the header */
- if (s.status === INIT_STATE) {
-
- if (s.wrap === 2) { // GZIP header
- strm.adler = 0; //crc32(0L, Z_NULL, 0);
- put_byte(s, 31);
- put_byte(s, 139);
- put_byte(s, 8);
- if (!s.gzhead) { // s->gzhead == Z_NULL
- put_byte(s, 0);
- put_byte(s, 0);
- put_byte(s, 0);
- put_byte(s, 0);
- put_byte(s, 0);
- put_byte(s, s.level === 9 ? 2 :
- (s.strategy >= Z_HUFFMAN_ONLY || s.level < 2 ?
- 4 : 0));
- put_byte(s, OS_CODE);
- s.status = BUSY_STATE;
- }
- else {
- put_byte(s, (s.gzhead.text ? 1 : 0) +
- (s.gzhead.hcrc ? 2 : 0) +
- (!s.gzhead.extra ? 0 : 4) +
- (!s.gzhead.name ? 0 : 8) +
- (!s.gzhead.comment ? 0 : 16)
- );
- put_byte(s, s.gzhead.time & 0xff);
- put_byte(s, (s.gzhead.time >> 8) & 0xff);
- put_byte(s, (s.gzhead.time >> 16) & 0xff);
- put_byte(s, (s.gzhead.time >> 24) & 0xff);
- put_byte(s, s.level === 9 ? 2 :
- (s.strategy >= Z_HUFFMAN_ONLY || s.level < 2 ?
- 4 : 0));
- put_byte(s, s.gzhead.os & 0xff);
- if (s.gzhead.extra && s.gzhead.extra.length) {
- put_byte(s, s.gzhead.extra.length & 0xff);
- put_byte(s, (s.gzhead.extra.length >> 8) & 0xff);
- }
- if (s.gzhead.hcrc) {
- strm.adler = crc32(strm.adler, s.pending_buf, s.pending, 0);
- }
- s.gzindex = 0;
- s.status = EXTRA_STATE;
- }
- }
- else // DEFLATE header
- {
- var header = (Z_DEFLATED + ((s.w_bits - 8) << 4)) << 8;
- var level_flags = -1;
-
- if (s.strategy >= Z_HUFFMAN_ONLY || s.level < 2) {
- level_flags = 0;
- } else if (s.level < 6) {
- level_flags = 1;
- } else if (s.level === 6) {
- level_flags = 2;
- } else {
- level_flags = 3;
- }
- header |= (level_flags << 6);
- if (s.strstart !== 0) { header |= PRESET_DICT; }
- header += 31 - (header % 31);
-
- s.status = BUSY_STATE;
- putShortMSB(s, header);
-
- /* Save the adler32 of the preset dictionary: */
- if (s.strstart !== 0) {
- putShortMSB(s, strm.adler >>> 16);
- putShortMSB(s, strm.adler & 0xffff);
- }
- strm.adler = 1; // adler32(0L, Z_NULL, 0);
- }
- }
-
- //#ifdef GZIP
- if (s.status === EXTRA_STATE) {
- if (s.gzhead.extra/* != Z_NULL*/) {
- beg = s.pending; /* start of bytes to update crc */
-
- while (s.gzindex < (s.gzhead.extra.length & 0xffff)) {
- if (s.pending === s.pending_buf_size) {
- if (s.gzhead.hcrc && s.pending > beg) {
- strm.adler = crc32(strm.adler, s.pending_buf, s.pending - beg, beg);
- }
- flush_pending(strm);
- beg = s.pending;
- if (s.pending === s.pending_buf_size) {
- break;
- }
- }
- put_byte(s, s.gzhead.extra[s.gzindex] & 0xff);
- s.gzindex++;
- }
- if (s.gzhead.hcrc && s.pending > beg) {
- strm.adler = crc32(strm.adler, s.pending_buf, s.pending - beg, beg);
- }
- if (s.gzindex === s.gzhead.extra.length) {
- s.gzindex = 0;
- s.status = NAME_STATE;
- }
- }
- else {
- s.status = NAME_STATE;
- }
- }
- if (s.status === NAME_STATE) {
- if (s.gzhead.name/* != Z_NULL*/) {
- beg = s.pending; /* start of bytes to update crc */
- //int val;
-
- do {
- if (s.pending === s.pending_buf_size) {
- if (s.gzhead.hcrc && s.pending > beg) {
- strm.adler = crc32(strm.adler, s.pending_buf, s.pending - beg, beg);
- }
- flush_pending(strm);
- beg = s.pending;
- if (s.pending === s.pending_buf_size) {
- val = 1;
- break;
- }
- }
- // JS specific: little magic to add zero terminator to end of string
- if (s.gzindex < s.gzhead.name.length) {
- val = s.gzhead.name.charCodeAt(s.gzindex++) & 0xff;
- } else {
- val = 0;
- }
- put_byte(s, val);
- } while (val !== 0);
-
- if (s.gzhead.hcrc && s.pending > beg){
- strm.adler = crc32(strm.adler, s.pending_buf, s.pending - beg, beg);
- }
- if (val === 0) {
- s.gzindex = 0;
- s.status = COMMENT_STATE;
- }
- }
- else {
- s.status = COMMENT_STATE;
- }
- }
- if (s.status === COMMENT_STATE) {
- if (s.gzhead.comment/* != Z_NULL*/) {
- beg = s.pending; /* start of bytes to update crc */
- //int val;
-
- do {
- if (s.pending === s.pending_buf_size) {
- if (s.gzhead.hcrc && s.pending > beg) {
- strm.adler = crc32(strm.adler, s.pending_buf, s.pending - beg, beg);
- }
- flush_pending(strm);
- beg = s.pending;
- if (s.pending === s.pending_buf_size) {
- val = 1;
- break;
- }
- }
- // JS specific: little magic to add zero terminator to end of string
- if (s.gzindex < s.gzhead.comment.length) {
- val = s.gzhead.comment.charCodeAt(s.gzindex++) & 0xff;
- } else {
- val = 0;
- }
- put_byte(s, val);
- } while (val !== 0);
-
- if (s.gzhead.hcrc && s.pending > beg) {
- strm.adler = crc32(strm.adler, s.pending_buf, s.pending - beg, beg);
- }
- if (val === 0) {
- s.status = HCRC_STATE;
- }
- }
- else {
- s.status = HCRC_STATE;
- }
- }
- if (s.status === HCRC_STATE) {
- if (s.gzhead.hcrc) {
- if (s.pending + 2 > s.pending_buf_size) {
- flush_pending(strm);
- }
- if (s.pending + 2 <= s.pending_buf_size) {
- put_byte(s, strm.adler & 0xff);
- put_byte(s, (strm.adler >> 8) & 0xff);
- strm.adler = 0; //crc32(0L, Z_NULL, 0);
- s.status = BUSY_STATE;
- }
- }
- else {
- s.status = BUSY_STATE;
- }
- }
- //#endif
-
- /* Flush as much pending output as possible */
- if (s.pending !== 0) {
- flush_pending(strm);
- if (strm.avail_out === 0) {
- /* Since avail_out is 0, deflate will be called again with
- * more output space, but possibly with both pending and
- * avail_in equal to zero. There won't be anything to do,
- * but this is not an error situation so make sure we
- * return OK instead of BUF_ERROR at next call of deflate:
- */
- s.last_flush = -1;
- return Z_OK;
- }
-
- /* Make sure there is something to do and avoid duplicate consecutive
- * flushes. For repeated and useless calls with Z_FINISH, we keep
- * returning Z_STREAM_END instead of Z_BUF_ERROR.
- */
- } else if (strm.avail_in === 0 && rank(flush) <= rank(old_flush) &&
- flush !== Z_FINISH) {
- return err(strm, Z_BUF_ERROR);
- }
-
- /* User must not provide more input after the first FINISH: */
- if (s.status === FINISH_STATE && strm.avail_in !== 0) {
- return err(strm, Z_BUF_ERROR);
- }
-
- /* Start a new block or continue the current one.
- */
- if (strm.avail_in !== 0 || s.lookahead !== 0 ||
- (flush !== Z_NO_FLUSH && s.status !== FINISH_STATE)) {
- var bstate = (s.strategy === Z_HUFFMAN_ONLY) ? deflate_huff(s, flush) :
- (s.strategy === Z_RLE ? deflate_rle(s, flush) :
- configuration_table[s.level].func(s, flush));
-
- if (bstate === BS_FINISH_STARTED || bstate === BS_FINISH_DONE) {
- s.status = FINISH_STATE;
- }
- if (bstate === BS_NEED_MORE || bstate === BS_FINISH_STARTED) {
- if (strm.avail_out === 0) {
- s.last_flush = -1;
- /* avoid BUF_ERROR next call, see above */
- }
- return Z_OK;
- /* If flush != Z_NO_FLUSH && avail_out == 0, the next call
- * of deflate should use the same flush parameter to make sure
- * that the flush is complete. So we don't have to output an
- * empty block here, this will be done at next call. This also
- * ensures that for a very small output buffer, we emit at most
- * one empty block.
- */
- }
- if (bstate === BS_BLOCK_DONE) {
- if (flush === Z_PARTIAL_FLUSH) {
- trees._tr_align(s);
- }
- else if (flush !== Z_BLOCK) { /* FULL_FLUSH or SYNC_FLUSH */
-
- trees._tr_stored_block(s, 0, 0, false);
- /* For a full flush, this empty block will be recognized
- * as a special marker by inflate_sync().
- */
- if (flush === Z_FULL_FLUSH) {
- /*** CLEAR_HASH(s); ***/ /* forget history */
- zero(s.head); // Fill with NIL (= 0);
-
- if (s.lookahead === 0) {
- s.strstart = 0;
- s.block_start = 0;
- s.insert = 0;
- }
- }
- }
- flush_pending(strm);
- if (strm.avail_out === 0) {
- s.last_flush = -1; /* avoid BUF_ERROR at next call, see above */
- return Z_OK;
- }
- }
- }
- //Assert(strm->avail_out > 0, "bug2");
- //if (strm.avail_out <= 0) { throw new Error("bug2");}
-
- if (flush !== Z_FINISH) { return Z_OK; }
- if (s.wrap <= 0) { return Z_STREAM_END; }
-
- /* Write the trailer */
- if (s.wrap === 2) {
- put_byte(s, strm.adler & 0xff);
- put_byte(s, (strm.adler >> 8) & 0xff);
- put_byte(s, (strm.adler >> 16) & 0xff);
- put_byte(s, (strm.adler >> 24) & 0xff);
- put_byte(s, strm.total_in & 0xff);
- put_byte(s, (strm.total_in >> 8) & 0xff);
- put_byte(s, (strm.total_in >> 16) & 0xff);
- put_byte(s, (strm.total_in >> 24) & 0xff);
- }
- else
- {
- putShortMSB(s, strm.adler >>> 16);
- putShortMSB(s, strm.adler & 0xffff);
- }
-
- flush_pending(strm);
- /* If avail_out is zero, the application will call deflate again
- * to flush the rest.
- */
- if (s.wrap > 0) { s.wrap = -s.wrap; }
- /* write the trailer only once! */
- return s.pending !== 0 ? Z_OK : Z_STREAM_END;
- }
-
- function deflateEnd(strm) {
- var status;
-
- if (!strm/*== Z_NULL*/ || !strm.state/*== Z_NULL*/) {
- return Z_STREAM_ERROR;
- }
-
- status = strm.state.status;
- if (status !== INIT_STATE &&
- status !== EXTRA_STATE &&
- status !== NAME_STATE &&
- status !== COMMENT_STATE &&
- status !== HCRC_STATE &&
- status !== BUSY_STATE &&
- status !== FINISH_STATE
- ) {
- return err(strm, Z_STREAM_ERROR);
- }
-
- strm.state = null;
-
- return status === BUSY_STATE ? err(strm, Z_DATA_ERROR) : Z_OK;
- }
-
- /* =========================================================================
- * Copy the source state to the destination state
- */
- //function deflateCopy(dest, source) {
- //
- //}
-
- exports.deflateInit = deflateInit;
- exports.deflateInit2 = deflateInit2;
- exports.deflateReset = deflateReset;
- exports.deflateResetKeep = deflateResetKeep;
- exports.deflateSetHeader = deflateSetHeader;
- exports.deflate = deflate;
- exports.deflateEnd = deflateEnd;
- exports.deflateInfo = 'pako deflate (from Nodeca project)';
-
- /* Not implemented
- exports.deflateBound = deflateBound;
- exports.deflateCopy = deflateCopy;
- exports.deflateSetDictionary = deflateSetDictionary;
- exports.deflateParams = deflateParams;
- exports.deflatePending = deflatePending;
- exports.deflatePrime = deflatePrime;
- exports.deflateTune = deflateTune;
- */
- },{"../utils/common":18,"./adler32":20,"./crc32":22,"./messages":28,"./trees":29}],24:[function(require,module,exports){
- 'use strict';
-
-
- function GZheader() {
- /* true if compressed data believed to be text */
- this.text = 0;
- /* modification time */
- this.time = 0;
- /* extra flags (not used when writing a gzip file) */
- this.xflags = 0;
- /* operating system */
- this.os = 0;
- /* pointer to extra field or Z_NULL if none */
- this.extra = null;
- /* extra field length (valid if extra != Z_NULL) */
- this.extra_len = 0; // Actually, we don't need it in JS,
- // but leave for few code modifications
-
- //
- // Setup limits is not necessary because in js we should not preallocate memory
- // for inflate use constant limit in 65536 bytes
- //
-
- /* space at extra (only when reading header) */
- // this.extra_max = 0;
- /* pointer to zero-terminated file name or Z_NULL */
- this.name = '';
- /* space at name (only when reading header) */
- // this.name_max = 0;
- /* pointer to zero-terminated comment or Z_NULL */
- this.comment = '';
- /* space at comment (only when reading header) */
- // this.comm_max = 0;
- /* true if there was or will be a header crc */
- this.hcrc = 0;
- /* true when done reading gzip header (not used when writing a gzip file) */
- this.done = false;
- }
-
- module.exports = GZheader;
- },{}],25:[function(require,module,exports){
- 'use strict';
-
- // See state defs from inflate.js
- var BAD = 30; /* got a data error -- remain here until reset */
- var TYPE = 12; /* i: waiting for type bits, including last-flag bit */
-
- /*
- Decode literal, length, and distance codes and write out the resulting
- literal and match bytes until either not enough input or output is
- available, an end-of-block is encountered, or a data error is encountered.
- When large enough input and output buffers are supplied to inflate(), for
- example, a 16K input buffer and a 64K output buffer, more than 95% of the
- inflate execution time is spent in this routine.
-
- Entry assumptions:
-
- state.mode === LEN
- strm.avail_in >= 6
- strm.avail_out >= 258
- start >= strm.avail_out
- state.bits < 8
-
- On return, state.mode is one of:
-
- LEN -- ran out of enough output space or enough available input
- TYPE -- reached end of block code, inflate() to interpret next block
- BAD -- error in block data
-
- Notes:
-
- - The maximum input bits used by a length/distance pair is 15 bits for the
- length code, 5 bits for the length extra, 15 bits for the distance code,
- and 13 bits for the distance extra. This totals 48 bits, or six bytes.
- Therefore if strm.avail_in >= 6, then there is enough input to avoid
- checking for available input while decoding.
-
- - The maximum bytes that a single length/distance pair can output is 258
- bytes, which is the maximum length that can be coded. inflate_fast()
- requires strm.avail_out >= 258 for each loop to avoid checking for
- output space.
- */
- module.exports = function inflate_fast(strm, start) {
- var state;
- var _in; /* local strm.input */
- var last; /* have enough input while in < last */
- var _out; /* local strm.output */
- var beg; /* inflate()'s initial strm.output */
- var end; /* while out < end, enough space available */
- //#ifdef INFLATE_STRICT
- var dmax; /* maximum distance from zlib header */
- //#endif
- var wsize; /* window size or zero if not using window */
- var whave; /* valid bytes in the window */
- var wnext; /* window write index */
- var window; /* allocated sliding window, if wsize != 0 */
- var hold; /* local strm.hold */
- var bits; /* local strm.bits */
- var lcode; /* local strm.lencode */
- var dcode; /* local strm.distcode */
- var lmask; /* mask for first level of length codes */
- var dmask; /* mask for first level of distance codes */
- var here; /* retrieved table entry */
- var op; /* code bits, operation, extra bits, or */
- /* window position, window bytes to copy */
- var len; /* match length, unused bytes */
- var dist; /* match distance */
- var from; /* where to copy match from */
- var from_source;
-
-
- var input, output; // JS specific, because we have no pointers
-
- /* copy state to local variables */
- state = strm.state;
- //here = state.here;
- _in = strm.next_in;
- input = strm.input;
- last = _in + (strm.avail_in - 5);
- _out = strm.next_out;
- output = strm.output;
- beg = _out - (start - strm.avail_out);
- end = _out + (strm.avail_out - 257);
- //#ifdef INFLATE_STRICT
- dmax = state.dmax;
- //#endif
- wsize = state.wsize;
- whave = state.whave;
- wnext = state.wnext;
- window = state.window;
- hold = state.hold;
- bits = state.bits;
- lcode = state.lencode;
- dcode = state.distcode;
- lmask = (1 << state.lenbits) - 1;
- dmask = (1 << state.distbits) - 1;
-
-
- /* decode literals and length/distances until end-of-block or not enough
- input data or output space */
-
- top:
- do {
- if (bits < 15) {
- hold += input[_in++] << bits;
- bits += 8;
- hold += input[_in++] << bits;
- bits += 8;
- }
-
- here = lcode[hold & lmask];
-
- dolen:
- for (;;) { // Goto emulation
- op = here >>> 24/*here.bits*/;
- hold >>>= op;
- bits -= op;
- op = (here >>> 16) & 0xff/*here.op*/;
- if (op === 0) { /* literal */
- //Tracevv((stderr, here.val >= 0x20 && here.val < 0x7f ?
- // "inflate: literal '%c'\n" :
- // "inflate: literal 0x%02x\n", here.val));
- output[_out++] = here & 0xffff/*here.val*/;
- }
- else if (op & 16) { /* length base */
- len = here & 0xffff/*here.val*/;
- op &= 15; /* number of extra bits */
- if (op) {
- if (bits < op) {
- hold += input[_in++] << bits;
- bits += 8;
- }
- len += hold & ((1 << op) - 1);
- hold >>>= op;
- bits -= op;
- }
- //Tracevv((stderr, "inflate: length %u\n", len));
- if (bits < 15) {
- hold += input[_in++] << bits;
- bits += 8;
- hold += input[_in++] << bits;
- bits += 8;
- }
- here = dcode[hold & dmask];
-
- dodist:
- for (;;) { // goto emulation
- op = here >>> 24/*here.bits*/;
- hold >>>= op;
- bits -= op;
- op = (here >>> 16) & 0xff/*here.op*/;
-
- if (op & 16) { /* distance base */
- dist = here & 0xffff/*here.val*/;
- op &= 15; /* number of extra bits */
- if (bits < op) {
- hold += input[_in++] << bits;
- bits += 8;
- if (bits < op) {
- hold += input[_in++] << bits;
- bits += 8;
- }
- }
- dist += hold & ((1 << op) - 1);
- //#ifdef INFLATE_STRICT
- if (dist > dmax) {
- strm.msg = 'invalid distance too far back';
- state.mode = BAD;
- break top;
- }
- //#endif
- hold >>>= op;
- bits -= op;
- //Tracevv((stderr, "inflate: distance %u\n", dist));
- op = _out - beg; /* max distance in output */
- if (dist > op) { /* see if copy from window */
- op = dist - op; /* distance back in window */
- if (op > whave) {
- if (state.sane) {
- strm.msg = 'invalid distance too far back';
- state.mode = BAD;
- break top;
- }
-
- // (!) This block is disabled in zlib defailts,
- // don't enable it for binary compatibility
- //#ifdef INFLATE_ALLOW_INVALID_DISTANCE_TOOFAR_ARRR
- // if (len <= op - whave) {
- // do {
- // output[_out++] = 0;
- // } while (--len);
- // continue top;
- // }
- // len -= op - whave;
- // do {
- // output[_out++] = 0;
- // } while (--op > whave);
- // if (op === 0) {
- // from = _out - dist;
- // do {
- // output[_out++] = output[from++];
- // } while (--len);
- // continue top;
- // }
- //#endif
- }
- from = 0; // window index
- from_source = window;
- if (wnext === 0) { /* very common case */
- from += wsize - op;
- if (op < len) { /* some from window */
- len -= op;
- do {
- output[_out++] = window[from++];
- } while (--op);
- from = _out - dist; /* rest from output */
- from_source = output;
- }
- }
- else if (wnext < op) { /* wrap around window */
- from += wsize + wnext - op;
- op -= wnext;
- if (op < len) { /* some from end of window */
- len -= op;
- do {
- output[_out++] = window[from++];
- } while (--op);
- from = 0;
- if (wnext < len) { /* some from start of window */
- op = wnext;
- len -= op;
- do {
- output[_out++] = window[from++];
- } while (--op);
- from = _out - dist; /* rest from output */
- from_source = output;
- }
- }
- }
- else { /* contiguous in window */
- from += wnext - op;
- if (op < len) { /* some from window */
- len -= op;
- do {
- output[_out++] = window[from++];
- } while (--op);
- from = _out - dist; /* rest from output */
- from_source = output;
- }
- }
- while (len > 2) {
- output[_out++] = from_source[from++];
- output[_out++] = from_source[from++];
- output[_out++] = from_source[from++];
- len -= 3;
- }
- if (len) {
- output[_out++] = from_source[from++];
- if (len > 1) {
- output[_out++] = from_source[from++];
- }
- }
- }
- else {
- from = _out - dist; /* copy direct from output */
- do { /* minimum length is three */
- output[_out++] = output[from++];
- output[_out++] = output[from++];
- output[_out++] = output[from++];
- len -= 3;
- } while (len > 2);
- if (len) {
- output[_out++] = output[from++];
- if (len > 1) {
- output[_out++] = output[from++];
- }
- }
- }
- }
- else if ((op & 64) === 0) { /* 2nd level distance code */
- here = dcode[(here & 0xffff)/*here.val*/ + (hold & ((1 << op) - 1))];
- continue dodist;
- }
- else {
- strm.msg = 'invalid distance code';
- state.mode = BAD;
- break top;
- }
-
- break; // need to emulate goto via "continue"
- }
- }
- else if ((op & 64) === 0) { /* 2nd level length code */
- here = lcode[(here & 0xffff)/*here.val*/ + (hold & ((1 << op) - 1))];
- continue dolen;
- }
- else if (op & 32) { /* end-of-block */
- //Tracevv((stderr, "inflate: end of block\n"));
- state.mode = TYPE;
- break top;
- }
- else {
- strm.msg = 'invalid literal/length code';
- state.mode = BAD;
- break top;
- }
-
- break; // need to emulate goto via "continue"
- }
- } while (_in < last && _out < end);
-
- /* return unused bytes (on entry, bits < 8, so in won't go too far back) */
- len = bits >> 3;
- _in -= len;
- bits -= len << 3;
- hold &= (1 << bits) - 1;
-
- /* update state and return */
- strm.next_in = _in;
- strm.next_out = _out;
- strm.avail_in = (_in < last ? 5 + (last - _in) : 5 - (_in - last));
- strm.avail_out = (_out < end ? 257 + (end - _out) : 257 - (_out - end));
- state.hold = hold;
- state.bits = bits;
- return;
- };
-
- },{}],26:[function(require,module,exports){
- 'use strict';
-
-
- var utils = require('../utils/common');
- var adler32 = require('./adler32');
- var crc32 = require('./crc32');
- var inflate_fast = require('./inffast');
- var inflate_table = require('./inftrees');
-
- var CODES = 0;
- var LENS = 1;
- var DISTS = 2;
-
- /* Public constants ==========================================================*/
- /* ===========================================================================*/
-
-
- /* Allowed flush values; see deflate() and inflate() below for details */
- //var Z_NO_FLUSH = 0;
- //var Z_PARTIAL_FLUSH = 1;
- //var Z_SYNC_FLUSH = 2;
- //var Z_FULL_FLUSH = 3;
- var Z_FINISH = 4;
- var Z_BLOCK = 5;
- var Z_TREES = 6;
-
-
- /* Return codes for the compression/decompression functions. Negative values
- * are errors, positive values are used for special but normal events.
- */
- var Z_OK = 0;
- var Z_STREAM_END = 1;
- var Z_NEED_DICT = 2;
- //var Z_ERRNO = -1;
- var Z_STREAM_ERROR = -2;
- var Z_DATA_ERROR = -3;
- var Z_MEM_ERROR = -4;
- var Z_BUF_ERROR = -5;
- //var Z_VERSION_ERROR = -6;
-
- /* The deflate compression method */
- var Z_DEFLATED = 8;
-
-
- /* STATES ====================================================================*/
- /* ===========================================================================*/
-
-
- var HEAD = 1; /* i: waiting for magic header */
- var FLAGS = 2; /* i: waiting for method and flags (gzip) */
- var TIME = 3; /* i: waiting for modification time (gzip) */
- var OS = 4; /* i: waiting for extra flags and operating system (gzip) */
- var EXLEN = 5; /* i: waiting for extra length (gzip) */
- var EXTRA = 6; /* i: waiting for extra bytes (gzip) */
- var NAME = 7; /* i: waiting for end of file name (gzip) */
- var COMMENT = 8; /* i: waiting for end of comment (gzip) */
- var HCRC = 9; /* i: waiting for header crc (gzip) */
- var DICTID = 10; /* i: waiting for dictionary check value */
- var DICT = 11; /* waiting for inflateSetDictionary() call */
- var TYPE = 12; /* i: waiting for type bits, including last-flag bit */
- var TYPEDO = 13; /* i: same, but skip check to exit inflate on new block */
- var STORED = 14; /* i: waiting for stored size (length and complement) */
- var COPY_ = 15; /* i/o: same as COPY below, but only first time in */
- var COPY = 16; /* i/o: waiting for input or output to copy stored block */
- var TABLE = 17; /* i: waiting for dynamic block table lengths */
- var LENLENS = 18; /* i: waiting for code length code lengths */
- var CODELENS = 19; /* i: waiting for length/lit and distance code lengths */
- var LEN_ = 20; /* i: same as LEN below, but only first time in */
- var LEN = 21; /* i: waiting for length/lit/eob code */
- var LENEXT = 22; /* i: waiting for length extra bits */
- var DIST = 23; /* i: waiting for distance code */
- var DISTEXT = 24; /* i: waiting for distance extra bits */
- var MATCH = 25; /* o: waiting for output space to copy string */
- var LIT = 26; /* o: waiting for output space to write literal */
- var CHECK = 27; /* i: waiting for 32-bit check value */
- var LENGTH = 28; /* i: waiting for 32-bit length (gzip) */
- var DONE = 29; /* finished check, done -- remain here until reset */
- var BAD = 30; /* got a data error -- remain here until reset */
- var MEM = 31; /* got an inflate() memory error -- remain here until reset */
- var SYNC = 32; /* looking for synchronization bytes to restart inflate() */
-
- /* ===========================================================================*/
-
-
-
- var ENOUGH_LENS = 852;
- var ENOUGH_DISTS = 592;
- //var ENOUGH = (ENOUGH_LENS+ENOUGH_DISTS);
-
- var MAX_WBITS = 15;
- /* 32K LZ77 window */
- var DEF_WBITS = MAX_WBITS;
-
-
- function ZSWAP32(q) {
- return (((q >>> 24) & 0xff) +
- ((q >>> 8) & 0xff00) +
- ((q & 0xff00) << 8) +
- ((q & 0xff) << 24));
- }
-
-
- function InflateState() {
- this.mode = 0; /* current inflate mode */
- this.last = false; /* true if processing last block */
- this.wrap = 0; /* bit 0 true for zlib, bit 1 true for gzip */
- this.havedict = false; /* true if dictionary provided */
- this.flags = 0; /* gzip header method and flags (0 if zlib) */
- this.dmax = 0; /* zlib header max distance (INFLATE_STRICT) */
- this.check = 0; /* protected copy of check value */
- this.total = 0; /* protected copy of output count */
- // TODO: may be {}
- this.head = null; /* where to save gzip header information */
-
- /* sliding window */
- this.wbits = 0; /* log base 2 of requested window size */
- this.wsize = 0; /* window size or zero if not using window */
- this.whave = 0; /* valid bytes in the window */
- this.wnext = 0; /* window write index */
- this.window = null; /* allocated sliding window, if needed */
-
- /* bit accumulator */
- this.hold = 0; /* input bit accumulator */
- this.bits = 0; /* number of bits in "in" */
-
- /* for string and stored block copying */
- this.length = 0; /* literal or length of data to copy */
- this.offset = 0; /* distance back to copy string from */
-
- /* for table and code decoding */
- this.extra = 0; /* extra bits needed */
-
- /* fixed and dynamic code tables */
- this.lencode = null; /* starting table for length/literal codes */
- this.distcode = null; /* starting table for distance codes */
- this.lenbits = 0; /* index bits for lencode */
- this.distbits = 0; /* index bits for distcode */
-
- /* dynamic table building */
- this.ncode = 0; /* number of code length code lengths */
- this.nlen = 0; /* number of length code lengths */
- this.ndist = 0; /* number of distance code lengths */
- this.have = 0; /* number of code lengths in lens[] */
- this.next = null; /* next available space in codes[] */
-
- this.lens = new utils.Buf16(320); /* temporary storage for code lengths */
- this.work = new utils.Buf16(288); /* work area for code table building */
-
- /*
- because we don't have pointers in js, we use lencode and distcode directly
- as buffers so we don't need codes
- */
- //this.codes = new utils.Buf32(ENOUGH); /* space for code tables */
- this.lendyn = null; /* dynamic table for length/literal codes (JS specific) */
- this.distdyn = null; /* dynamic table for distance codes (JS specific) */
- this.sane = 0; /* if false, allow invalid distance too far */
- this.back = 0; /* bits back of last unprocessed length/lit */
- this.was = 0; /* initial length of match */
- }
-
- function inflateResetKeep(strm) {
- var state;
-
- if (!strm || !strm.state) { return Z_STREAM_ERROR; }
- state = strm.state;
- strm.total_in = strm.total_out = state.total = 0;
- strm.msg = ''; /*Z_NULL*/
- if (state.wrap) { /* to support ill-conceived Java test suite */
- strm.adler = state.wrap & 1;
- }
- state.mode = HEAD;
- state.last = 0;
- state.havedict = 0;
- state.dmax = 32768;
- state.head = null/*Z_NULL*/;
- state.hold = 0;
- state.bits = 0;
- //state.lencode = state.distcode = state.next = state.codes;
- state.lencode = state.lendyn = new utils.Buf32(ENOUGH_LENS);
- state.distcode = state.distdyn = new utils.Buf32(ENOUGH_DISTS);
-
- state.sane = 1;
- state.back = -1;
- //Tracev((stderr, "inflate: reset\n"));
- return Z_OK;
- }
-
- function inflateReset(strm) {
- var state;
-
- if (!strm || !strm.state) { return Z_STREAM_ERROR; }
- state = strm.state;
- state.wsize = 0;
- state.whave = 0;
- state.wnext = 0;
- return inflateResetKeep(strm);
-
- }
-
- function inflateReset2(strm, windowBits) {
- var wrap;
- var state;
-
- /* get the state */
- if (!strm || !strm.state) { return Z_STREAM_ERROR; }
- state = strm.state;
-
- /* extract wrap request from windowBits parameter */
- if (windowBits < 0) {
- wrap = 0;
- windowBits = -windowBits;
- }
- else {
- wrap = (windowBits >> 4) + 1;
- if (windowBits < 48) {
- windowBits &= 15;
- }
- }
-
- /* set number of window bits, free window if different */
- if (windowBits && (windowBits < 8 || windowBits > 15)) {
- return Z_STREAM_ERROR;
- }
- if (state.window !== null && state.wbits !== windowBits) {
- state.window = null;
- }
-
- /* update state and reset the rest of it */
- state.wrap = wrap;
- state.wbits = windowBits;
- return inflateReset(strm);
- }
-
- function inflateInit2(strm, windowBits) {
- var ret;
- var state;
-
- if (!strm) { return Z_STREAM_ERROR; }
- //strm.msg = Z_NULL; /* in case we return an error */
-
- state = new InflateState();
-
- //if (state === Z_NULL) return Z_MEM_ERROR;
- //Tracev((stderr, "inflate: allocated\n"));
- strm.state = state;
- state.window = null/*Z_NULL*/;
- ret = inflateReset2(strm, windowBits);
- if (ret !== Z_OK) {
- strm.state = null/*Z_NULL*/;
- }
- return ret;
- }
-
- function inflateInit(strm) {
- return inflateInit2(strm, DEF_WBITS);
- }
-
-
- /*
- Return state with length and distance decoding tables and index sizes set to
- fixed code decoding. Normally this returns fixed tables from inffixed.h.
- If BUILDFIXED is defined, then instead this routine builds the tables the
- first time it's called, and returns those tables the first time and
- thereafter. This reduces the size of the code by about 2K bytes, in
- exchange for a little execution time. However, BUILDFIXED should not be
- used for threaded applications, since the rewriting of the tables and virgin
- may not be thread-safe.
- */
- var virgin = true;
-
- var lenfix, distfix; // We have no pointers in JS, so keep tables separate
-
- function fixedtables(state) {
- /* build fixed huffman tables if first call (may not be thread safe) */
- if (virgin) {
- var sym;
-
- lenfix = new utils.Buf32(512);
- distfix = new utils.Buf32(32);
-
- /* literal/length table */
- sym = 0;
- while (sym < 144) { state.lens[sym++] = 8; }
- while (sym < 256) { state.lens[sym++] = 9; }
- while (sym < 280) { state.lens[sym++] = 7; }
- while (sym < 288) { state.lens[sym++] = 8; }
-
- inflate_table(LENS, state.lens, 0, 288, lenfix, 0, state.work, {bits: 9});
-
- /* distance table */
- sym = 0;
- while (sym < 32) { state.lens[sym++] = 5; }
-
- inflate_table(DISTS, state.lens, 0, 32, distfix, 0, state.work, {bits: 5});
-
- /* do this just once */
- virgin = false;
- }
-
- state.lencode = lenfix;
- state.lenbits = 9;
- state.distcode = distfix;
- state.distbits = 5;
- }
-
-
- /*
- Update the window with the last wsize (normally 32K) bytes written before
- returning. If window does not exist yet, create it. This is only called
- when a window is already in use, or when output has been written during this
- inflate call, but the end of the deflate stream has not been reached yet.
- It is also called to create a window for dictionary data when a dictionary
- is loaded.
-
- Providing output buffers larger than 32K to inflate() should provide a speed
- advantage, since only the last 32K of output is copied to the sliding window
- upon return from inflate(), and since all distances after the first 32K of
- output will fall in the output data, making match copies simpler and faster.
- The advantage may be dependent on the size of the processor's data caches.
- */
- function updatewindow(strm, src, end, copy) {
- var dist;
- var state = strm.state;
-
- /* if it hasn't been done already, allocate space for the window */
- if (state.window === null) {
- state.wsize = 1 << state.wbits;
- state.wnext = 0;
- state.whave = 0;
-
- state.window = new utils.Buf8(state.wsize);
- }
-
- /* copy state->wsize or less output bytes into the circular window */
- if (copy >= state.wsize) {
- utils.arraySet(state.window,src, end - state.wsize, state.wsize, 0);
- state.wnext = 0;
- state.whave = state.wsize;
- }
- else {
- dist = state.wsize - state.wnext;
- if (dist > copy) {
- dist = copy;
- }
- //zmemcpy(state->window + state->wnext, end - copy, dist);
- utils.arraySet(state.window,src, end - copy, dist, state.wnext);
- copy -= dist;
- if (copy) {
- //zmemcpy(state->window, end - copy, copy);
- utils.arraySet(state.window,src, end - copy, copy, 0);
- state.wnext = copy;
- state.whave = state.wsize;
- }
- else {
- state.wnext += dist;
- if (state.wnext === state.wsize) { state.wnext = 0; }
- if (state.whave < state.wsize) { state.whave += dist; }
- }
- }
- return 0;
- }
-
- function inflate(strm, flush) {
- var state;
- var input, output; // input/output buffers
- var next; /* next input INDEX */
- var put; /* next output INDEX */
- var have, left; /* available input and output */
- var hold; /* bit buffer */
- var bits; /* bits in bit buffer */
- var _in, _out; /* save starting available input and output */
- var copy; /* number of stored or match bytes to copy */
- var from; /* where to copy match bytes from */
- var from_source;
- var here = 0; /* current decoding table entry */
- var here_bits, here_op, here_val; // paked "here" denormalized (JS specific)
- //var last; /* parent table entry */
- var last_bits, last_op, last_val; // paked "last" denormalized (JS specific)
- var len; /* length to copy for repeats, bits to drop */
- var ret; /* return code */
- var hbuf = new utils.Buf8(4); /* buffer for gzip header crc calculation */
- var opts;
-
- var n; // temporary var for NEED_BITS
-
- var order = /* permutation of code lengths */
- [16, 17, 18, 0, 8, 7, 9, 6, 10, 5, 11, 4, 12, 3, 13, 2, 14, 1, 15];
-
-
- if (!strm || !strm.state || !strm.output ||
- (!strm.input && strm.avail_in !== 0)) {
- return Z_STREAM_ERROR;
- }
-
- state = strm.state;
- if (state.mode === TYPE) { state.mode = TYPEDO; } /* skip check */
-
-
- //--- LOAD() ---
- put = strm.next_out;
- output = strm.output;
- left = strm.avail_out;
- next = strm.next_in;
- input = strm.input;
- have = strm.avail_in;
- hold = state.hold;
- bits = state.bits;
- //---
-
- _in = have;
- _out = left;
- ret = Z_OK;
-
- inf_leave: // goto emulation
- for (;;) {
- switch (state.mode) {
- case HEAD:
- if (state.wrap === 0) {
- state.mode = TYPEDO;
- break;
- }
- //=== NEEDBITS(16);
- while (bits < 16) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- if ((state.wrap & 2) && hold === 0x8b1f) { /* gzip header */
- state.check = 0/*crc32(0L, Z_NULL, 0)*/;
- //=== CRC2(state.check, hold);
- hbuf[0] = hold & 0xff;
- hbuf[1] = (hold >>> 8) & 0xff;
- state.check = crc32(state.check, hbuf, 2, 0);
- //===//
-
- //=== INITBITS();
- hold = 0;
- bits = 0;
- //===//
- state.mode = FLAGS;
- break;
- }
- state.flags = 0; /* expect zlib header */
- if (state.head) {
- state.head.done = false;
- }
- if (!(state.wrap & 1) || /* check if zlib header allowed */
- (((hold & 0xff)/*BITS(8)*/ << 8) + (hold >> 8)) % 31) {
- strm.msg = 'incorrect header check';
- state.mode = BAD;
- break;
- }
- if ((hold & 0x0f)/*BITS(4)*/ !== Z_DEFLATED) {
- strm.msg = 'unknown compression method';
- state.mode = BAD;
- break;
- }
- //--- DROPBITS(4) ---//
- hold >>>= 4;
- bits -= 4;
- //---//
- len = (hold & 0x0f)/*BITS(4)*/ + 8;
- if (state.wbits === 0) {
- state.wbits = len;
- }
- else if (len > state.wbits) {
- strm.msg = 'invalid window size';
- state.mode = BAD;
- break;
- }
- state.dmax = 1 << len;
- //Tracev((stderr, "inflate: zlib header ok\n"));
- strm.adler = state.check = 1/*adler32(0L, Z_NULL, 0)*/;
- state.mode = hold & 0x200 ? DICTID : TYPE;
- //=== INITBITS();
- hold = 0;
- bits = 0;
- //===//
- break;
- case FLAGS:
- //=== NEEDBITS(16); */
- while (bits < 16) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- state.flags = hold;
- if ((state.flags & 0xff) !== Z_DEFLATED) {
- strm.msg = 'unknown compression method';
- state.mode = BAD;
- break;
- }
- if (state.flags & 0xe000) {
- strm.msg = 'unknown header flags set';
- state.mode = BAD;
- break;
- }
- if (state.head) {
- state.head.text = ((hold >> 8) & 1);
- }
- if (state.flags & 0x0200) {
- //=== CRC2(state.check, hold);
- hbuf[0] = hold & 0xff;
- hbuf[1] = (hold >>> 8) & 0xff;
- state.check = crc32(state.check, hbuf, 2, 0);
- //===//
- }
- //=== INITBITS();
- hold = 0;
- bits = 0;
- //===//
- state.mode = TIME;
- /* falls through */
- case TIME:
- //=== NEEDBITS(32); */
- while (bits < 32) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- if (state.head) {
- state.head.time = hold;
- }
- if (state.flags & 0x0200) {
- //=== CRC4(state.check, hold)
- hbuf[0] = hold & 0xff;
- hbuf[1] = (hold >>> 8) & 0xff;
- hbuf[2] = (hold >>> 16) & 0xff;
- hbuf[3] = (hold >>> 24) & 0xff;
- state.check = crc32(state.check, hbuf, 4, 0);
- //===
- }
- //=== INITBITS();
- hold = 0;
- bits = 0;
- //===//
- state.mode = OS;
- /* falls through */
- case OS:
- //=== NEEDBITS(16); */
- while (bits < 16) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- if (state.head) {
- state.head.xflags = (hold & 0xff);
- state.head.os = (hold >> 8);
- }
- if (state.flags & 0x0200) {
- //=== CRC2(state.check, hold);
- hbuf[0] = hold & 0xff;
- hbuf[1] = (hold >>> 8) & 0xff;
- state.check = crc32(state.check, hbuf, 2, 0);
- //===//
- }
- //=== INITBITS();
- hold = 0;
- bits = 0;
- //===//
- state.mode = EXLEN;
- /* falls through */
- case EXLEN:
- if (state.flags & 0x0400) {
- //=== NEEDBITS(16); */
- while (bits < 16) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- state.length = hold;
- if (state.head) {
- state.head.extra_len = hold;
- }
- if (state.flags & 0x0200) {
- //=== CRC2(state.check, hold);
- hbuf[0] = hold & 0xff;
- hbuf[1] = (hold >>> 8) & 0xff;
- state.check = crc32(state.check, hbuf, 2, 0);
- //===//
- }
- //=== INITBITS();
- hold = 0;
- bits = 0;
- //===//
- }
- else if (state.head) {
- state.head.extra = null/*Z_NULL*/;
- }
- state.mode = EXTRA;
- /* falls through */
- case EXTRA:
- if (state.flags & 0x0400) {
- copy = state.length;
- if (copy > have) { copy = have; }
- if (copy) {
- if (state.head) {
- len = state.head.extra_len - state.length;
- if (!state.head.extra) {
- // Use untyped array for more conveniend processing later
- state.head.extra = new Array(state.head.extra_len);
- }
- utils.arraySet(
- state.head.extra,
- input,
- next,
- // extra field is limited to 65536 bytes
- // - no need for additional size check
- copy,
- /*len + copy > state.head.extra_max - len ? state.head.extra_max : copy,*/
- len
- );
- //zmemcpy(state.head.extra + len, next,
- // len + copy > state.head.extra_max ?
- // state.head.extra_max - len : copy);
- }
- if (state.flags & 0x0200) {
- state.check = crc32(state.check, input, copy, next);
- }
- have -= copy;
- next += copy;
- state.length -= copy;
- }
- if (state.length) { break inf_leave; }
- }
- state.length = 0;
- state.mode = NAME;
- /* falls through */
- case NAME:
- if (state.flags & 0x0800) {
- if (have === 0) { break inf_leave; }
- copy = 0;
- do {
- // TODO: 2 or 1 bytes?
- len = input[next + copy++];
- /* use constant limit because in js we should not preallocate memory */
- if (state.head && len &&
- (state.length < 65536 /*state.head.name_max*/)) {
- state.head.name += String.fromCharCode(len);
- }
- } while (len && copy < have);
-
- if (state.flags & 0x0200) {
- state.check = crc32(state.check, input, copy, next);
- }
- have -= copy;
- next += copy;
- if (len) { break inf_leave; }
- }
- else if (state.head) {
- state.head.name = null;
- }
- state.length = 0;
- state.mode = COMMENT;
- /* falls through */
- case COMMENT:
- if (state.flags & 0x1000) {
- if (have === 0) { break inf_leave; }
- copy = 0;
- do {
- len = input[next + copy++];
- /* use constant limit because in js we should not preallocate memory */
- if (state.head && len &&
- (state.length < 65536 /*state.head.comm_max*/)) {
- state.head.comment += String.fromCharCode(len);
- }
- } while (len && copy < have);
- if (state.flags & 0x0200) {
- state.check = crc32(state.check, input, copy, next);
- }
- have -= copy;
- next += copy;
- if (len) { break inf_leave; }
- }
- else if (state.head) {
- state.head.comment = null;
- }
- state.mode = HCRC;
- /* falls through */
- case HCRC:
- if (state.flags & 0x0200) {
- //=== NEEDBITS(16); */
- while (bits < 16) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- if (hold !== (state.check & 0xffff)) {
- strm.msg = 'header crc mismatch';
- state.mode = BAD;
- break;
- }
- //=== INITBITS();
- hold = 0;
- bits = 0;
- //===//
- }
- if (state.head) {
- state.head.hcrc = ((state.flags >> 9) & 1);
- state.head.done = true;
- }
- strm.adler = state.check = 0 /*crc32(0L, Z_NULL, 0)*/;
- state.mode = TYPE;
- break;
- case DICTID:
- //=== NEEDBITS(32); */
- while (bits < 32) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- strm.adler = state.check = ZSWAP32(hold);
- //=== INITBITS();
- hold = 0;
- bits = 0;
- //===//
- state.mode = DICT;
- /* falls through */
- case DICT:
- if (state.havedict === 0) {
- //--- RESTORE() ---
- strm.next_out = put;
- strm.avail_out = left;
- strm.next_in = next;
- strm.avail_in = have;
- state.hold = hold;
- state.bits = bits;
- //---
- return Z_NEED_DICT;
- }
- strm.adler = state.check = 1/*adler32(0L, Z_NULL, 0)*/;
- state.mode = TYPE;
- /* falls through */
- case TYPE:
- if (flush === Z_BLOCK || flush === Z_TREES) { break inf_leave; }
- /* falls through */
- case TYPEDO:
- if (state.last) {
- //--- BYTEBITS() ---//
- hold >>>= bits & 7;
- bits -= bits & 7;
- //---//
- state.mode = CHECK;
- break;
- }
- //=== NEEDBITS(3); */
- while (bits < 3) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- state.last = (hold & 0x01)/*BITS(1)*/;
- //--- DROPBITS(1) ---//
- hold >>>= 1;
- bits -= 1;
- //---//
-
- switch ((hold & 0x03)/*BITS(2)*/) {
- case 0: /* stored block */
- //Tracev((stderr, "inflate: stored block%s\n",
- // state.last ? " (last)" : ""));
- state.mode = STORED;
- break;
- case 1: /* fixed block */
- fixedtables(state);
- //Tracev((stderr, "inflate: fixed codes block%s\n",
- // state.last ? " (last)" : ""));
- state.mode = LEN_; /* decode codes */
- if (flush === Z_TREES) {
- //--- DROPBITS(2) ---//
- hold >>>= 2;
- bits -= 2;
- //---//
- break inf_leave;
- }
- break;
- case 2: /* dynamic block */
- //Tracev((stderr, "inflate: dynamic codes block%s\n",
- // state.last ? " (last)" : ""));
- state.mode = TABLE;
- break;
- case 3:
- strm.msg = 'invalid block type';
- state.mode = BAD;
- }
- //--- DROPBITS(2) ---//
- hold >>>= 2;
- bits -= 2;
- //---//
- break;
- case STORED:
- //--- BYTEBITS() ---// /* go to byte boundary */
- hold >>>= bits & 7;
- bits -= bits & 7;
- //---//
- //=== NEEDBITS(32); */
- while (bits < 32) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- if ((hold & 0xffff) !== ((hold >>> 16) ^ 0xffff)) {
- strm.msg = 'invalid stored block lengths';
- state.mode = BAD;
- break;
- }
- state.length = hold & 0xffff;
- //Tracev((stderr, "inflate: stored length %u\n",
- // state.length));
- //=== INITBITS();
- hold = 0;
- bits = 0;
- //===//
- state.mode = COPY_;
- if (flush === Z_TREES) { break inf_leave; }
- /* falls through */
- case COPY_:
- state.mode = COPY;
- /* falls through */
- case COPY:
- copy = state.length;
- if (copy) {
- if (copy > have) { copy = have; }
- if (copy > left) { copy = left; }
- if (copy === 0) { break inf_leave; }
- //--- zmemcpy(put, next, copy); ---
- utils.arraySet(output, input, next, copy, put);
- //---//
- have -= copy;
- next += copy;
- left -= copy;
- put += copy;
- state.length -= copy;
- break;
- }
- //Tracev((stderr, "inflate: stored end\n"));
- state.mode = TYPE;
- break;
- case TABLE:
- //=== NEEDBITS(14); */
- while (bits < 14) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- state.nlen = (hold & 0x1f)/*BITS(5)*/ + 257;
- //--- DROPBITS(5) ---//
- hold >>>= 5;
- bits -= 5;
- //---//
- state.ndist = (hold & 0x1f)/*BITS(5)*/ + 1;
- //--- DROPBITS(5) ---//
- hold >>>= 5;
- bits -= 5;
- //---//
- state.ncode = (hold & 0x0f)/*BITS(4)*/ + 4;
- //--- DROPBITS(4) ---//
- hold >>>= 4;
- bits -= 4;
- //---//
- //#ifndef PKZIP_BUG_WORKAROUND
- if (state.nlen > 286 || state.ndist > 30) {
- strm.msg = 'too many length or distance symbols';
- state.mode = BAD;
- break;
- }
- //#endif
- //Tracev((stderr, "inflate: table sizes ok\n"));
- state.have = 0;
- state.mode = LENLENS;
- /* falls through */
- case LENLENS:
- while (state.have < state.ncode) {
- //=== NEEDBITS(3);
- while (bits < 3) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- state.lens[order[state.have++]] = (hold & 0x07);//BITS(3);
- //--- DROPBITS(3) ---//
- hold >>>= 3;
- bits -= 3;
- //---//
- }
- while (state.have < 19) {
- state.lens[order[state.have++]] = 0;
- }
- // We have separate tables & no pointers. 2 commented lines below not needed.
- //state.next = state.codes;
- //state.lencode = state.next;
- // Switch to use dynamic table
- state.lencode = state.lendyn;
- state.lenbits = 7;
-
- opts = {bits: state.lenbits};
- ret = inflate_table(CODES, state.lens, 0, 19, state.lencode, 0, state.work, opts);
- state.lenbits = opts.bits;
-
- if (ret) {
- strm.msg = 'invalid code lengths set';
- state.mode = BAD;
- break;
- }
- //Tracev((stderr, "inflate: code lengths ok\n"));
- state.have = 0;
- state.mode = CODELENS;
- /* falls through */
- case CODELENS:
- while (state.have < state.nlen + state.ndist) {
- for (;;) {
- here = state.lencode[hold & ((1 << state.lenbits) - 1)];/*BITS(state.lenbits)*/
- here_bits = here >>> 24;
- here_op = (here >>> 16) & 0xff;
- here_val = here & 0xffff;
-
- if ((here_bits) <= bits) { break; }
- //--- PULLBYTE() ---//
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- //---//
- }
- if (here_val < 16) {
- //--- DROPBITS(here.bits) ---//
- hold >>>= here_bits;
- bits -= here_bits;
- //---//
- state.lens[state.have++] = here_val;
- }
- else {
- if (here_val === 16) {
- //=== NEEDBITS(here.bits + 2);
- n = here_bits + 2;
- while (bits < n) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- //--- DROPBITS(here.bits) ---//
- hold >>>= here_bits;
- bits -= here_bits;
- //---//
- if (state.have === 0) {
- strm.msg = 'invalid bit length repeat';
- state.mode = BAD;
- break;
- }
- len = state.lens[state.have - 1];
- copy = 3 + (hold & 0x03);//BITS(2);
- //--- DROPBITS(2) ---//
- hold >>>= 2;
- bits -= 2;
- //---//
- }
- else if (here_val === 17) {
- //=== NEEDBITS(here.bits + 3);
- n = here_bits + 3;
- while (bits < n) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- //--- DROPBITS(here.bits) ---//
- hold >>>= here_bits;
- bits -= here_bits;
- //---//
- len = 0;
- copy = 3 + (hold & 0x07);//BITS(3);
- //--- DROPBITS(3) ---//
- hold >>>= 3;
- bits -= 3;
- //---//
- }
- else {
- //=== NEEDBITS(here.bits + 7);
- n = here_bits + 7;
- while (bits < n) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- //--- DROPBITS(here.bits) ---//
- hold >>>= here_bits;
- bits -= here_bits;
- //---//
- len = 0;
- copy = 11 + (hold & 0x7f);//BITS(7);
- //--- DROPBITS(7) ---//
- hold >>>= 7;
- bits -= 7;
- //---//
- }
- if (state.have + copy > state.nlen + state.ndist) {
- strm.msg = 'invalid bit length repeat';
- state.mode = BAD;
- break;
- }
- while (copy--) {
- state.lens[state.have++] = len;
- }
- }
- }
-
- /* handle error breaks in while */
- if (state.mode === BAD) { break; }
-
- /* check for end-of-block code (better have one) */
- if (state.lens[256] === 0) {
- strm.msg = 'invalid code -- missing end-of-block';
- state.mode = BAD;
- break;
- }
-
- /* build code tables -- note: do not change the lenbits or distbits
- values here (9 and 6) without reading the comments in inftrees.h
- concerning the ENOUGH constants, which depend on those values */
- state.lenbits = 9;
-
- opts = {bits: state.lenbits};
- ret = inflate_table(LENS, state.lens, 0, state.nlen, state.lencode, 0, state.work, opts);
- // We have separate tables & no pointers. 2 commented lines below not needed.
- // state.next_index = opts.table_index;
- state.lenbits = opts.bits;
- // state.lencode = state.next;
-
- if (ret) {
- strm.msg = 'invalid literal/lengths set';
- state.mode = BAD;
- break;
- }
-
- state.distbits = 6;
- //state.distcode.copy(state.codes);
- // Switch to use dynamic table
- state.distcode = state.distdyn;
- opts = {bits: state.distbits};
- ret = inflate_table(DISTS, state.lens, state.nlen, state.ndist, state.distcode, 0, state.work, opts);
- // We have separate tables & no pointers. 2 commented lines below not needed.
- // state.next_index = opts.table_index;
- state.distbits = opts.bits;
- // state.distcode = state.next;
-
- if (ret) {
- strm.msg = 'invalid distances set';
- state.mode = BAD;
- break;
- }
- //Tracev((stderr, 'inflate: codes ok\n'));
- state.mode = LEN_;
- if (flush === Z_TREES) { break inf_leave; }
- /* falls through */
- case LEN_:
- state.mode = LEN;
- /* falls through */
- case LEN:
- if (have >= 6 && left >= 258) {
- //--- RESTORE() ---
- strm.next_out = put;
- strm.avail_out = left;
- strm.next_in = next;
- strm.avail_in = have;
- state.hold = hold;
- state.bits = bits;
- //---
- inflate_fast(strm, _out);
- //--- LOAD() ---
- put = strm.next_out;
- output = strm.output;
- left = strm.avail_out;
- next = strm.next_in;
- input = strm.input;
- have = strm.avail_in;
- hold = state.hold;
- bits = state.bits;
- //---
-
- if (state.mode === TYPE) {
- state.back = -1;
- }
- break;
- }
- state.back = 0;
- for (;;) {
- here = state.lencode[hold & ((1 << state.lenbits) -1)]; /*BITS(state.lenbits)*/
- here_bits = here >>> 24;
- here_op = (here >>> 16) & 0xff;
- here_val = here & 0xffff;
-
- if (here_bits <= bits) { break; }
- //--- PULLBYTE() ---//
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- //---//
- }
- if (here_op && (here_op & 0xf0) === 0) {
- last_bits = here_bits;
- last_op = here_op;
- last_val = here_val;
- for (;;) {
- here = state.lencode[last_val +
- ((hold & ((1 << (last_bits + last_op)) -1))/*BITS(last.bits + last.op)*/ >> last_bits)];
- here_bits = here >>> 24;
- here_op = (here >>> 16) & 0xff;
- here_val = here & 0xffff;
-
- if ((last_bits + here_bits) <= bits) { break; }
- //--- PULLBYTE() ---//
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- //---//
- }
- //--- DROPBITS(last.bits) ---//
- hold >>>= last_bits;
- bits -= last_bits;
- //---//
- state.back += last_bits;
- }
- //--- DROPBITS(here.bits) ---//
- hold >>>= here_bits;
- bits -= here_bits;
- //---//
- state.back += here_bits;
- state.length = here_val;
- if (here_op === 0) {
- //Tracevv((stderr, here.val >= 0x20 && here.val < 0x7f ?
- // "inflate: literal '%c'\n" :
- // "inflate: literal 0x%02x\n", here.val));
- state.mode = LIT;
- break;
- }
- if (here_op & 32) {
- //Tracevv((stderr, "inflate: end of block\n"));
- state.back = -1;
- state.mode = TYPE;
- break;
- }
- if (here_op & 64) {
- strm.msg = 'invalid literal/length code';
- state.mode = BAD;
- break;
- }
- state.extra = here_op & 15;
- state.mode = LENEXT;
- /* falls through */
- case LENEXT:
- if (state.extra) {
- //=== NEEDBITS(state.extra);
- n = state.extra;
- while (bits < n) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- state.length += hold & ((1 << state.extra) -1)/*BITS(state.extra)*/;
- //--- DROPBITS(state.extra) ---//
- hold >>>= state.extra;
- bits -= state.extra;
- //---//
- state.back += state.extra;
- }
- //Tracevv((stderr, "inflate: length %u\n", state.length));
- state.was = state.length;
- state.mode = DIST;
- /* falls through */
- case DIST:
- for (;;) {
- here = state.distcode[hold & ((1 << state.distbits) -1)];/*BITS(state.distbits)*/
- here_bits = here >>> 24;
- here_op = (here >>> 16) & 0xff;
- here_val = here & 0xffff;
-
- if ((here_bits) <= bits) { break; }
- //--- PULLBYTE() ---//
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- //---//
- }
- if ((here_op & 0xf0) === 0) {
- last_bits = here_bits;
- last_op = here_op;
- last_val = here_val;
- for (;;) {
- here = state.distcode[last_val +
- ((hold & ((1 << (last_bits + last_op)) -1))/*BITS(last.bits + last.op)*/ >> last_bits)];
- here_bits = here >>> 24;
- here_op = (here >>> 16) & 0xff;
- here_val = here & 0xffff;
-
- if ((last_bits + here_bits) <= bits) { break; }
- //--- PULLBYTE() ---//
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- //---//
- }
- //--- DROPBITS(last.bits) ---//
- hold >>>= last_bits;
- bits -= last_bits;
- //---//
- state.back += last_bits;
- }
- //--- DROPBITS(here.bits) ---//
- hold >>>= here_bits;
- bits -= here_bits;
- //---//
- state.back += here_bits;
- if (here_op & 64) {
- strm.msg = 'invalid distance code';
- state.mode = BAD;
- break;
- }
- state.offset = here_val;
- state.extra = (here_op) & 15;
- state.mode = DISTEXT;
- /* falls through */
- case DISTEXT:
- if (state.extra) {
- //=== NEEDBITS(state.extra);
- n = state.extra;
- while (bits < n) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- state.offset += hold & ((1 << state.extra) -1)/*BITS(state.extra)*/;
- //--- DROPBITS(state.extra) ---//
- hold >>>= state.extra;
- bits -= state.extra;
- //---//
- state.back += state.extra;
- }
- //#ifdef INFLATE_STRICT
- if (state.offset > state.dmax) {
- strm.msg = 'invalid distance too far back';
- state.mode = BAD;
- break;
- }
- //#endif
- //Tracevv((stderr, "inflate: distance %u\n", state.offset));
- state.mode = MATCH;
- /* falls through */
- case MATCH:
- if (left === 0) { break inf_leave; }
- copy = _out - left;
- if (state.offset > copy) { /* copy from window */
- copy = state.offset - copy;
- if (copy > state.whave) {
- if (state.sane) {
- strm.msg = 'invalid distance too far back';
- state.mode = BAD;
- break;
- }
- // (!) This block is disabled in zlib defailts,
- // don't enable it for binary compatibility
- //#ifdef INFLATE_ALLOW_INVALID_DISTANCE_TOOFAR_ARRR
- // Trace((stderr, "inflate.c too far\n"));
- // copy -= state.whave;
- // if (copy > state.length) { copy = state.length; }
- // if (copy > left) { copy = left; }
- // left -= copy;
- // state.length -= copy;
- // do {
- // output[put++] = 0;
- // } while (--copy);
- // if (state.length === 0) { state.mode = LEN; }
- // break;
- //#endif
- }
- if (copy > state.wnext) {
- copy -= state.wnext;
- from = state.wsize - copy;
- }
- else {
- from = state.wnext - copy;
- }
- if (copy > state.length) { copy = state.length; }
- from_source = state.window;
- }
- else { /* copy from output */
- from_source = output;
- from = put - state.offset;
- copy = state.length;
- }
- if (copy > left) { copy = left; }
- left -= copy;
- state.length -= copy;
- do {
- output[put++] = from_source[from++];
- } while (--copy);
- if (state.length === 0) { state.mode = LEN; }
- break;
- case LIT:
- if (left === 0) { break inf_leave; }
- output[put++] = state.length;
- left--;
- state.mode = LEN;
- break;
- case CHECK:
- if (state.wrap) {
- //=== NEEDBITS(32);
- while (bits < 32) {
- if (have === 0) { break inf_leave; }
- have--;
- // Use '|' insdead of '+' to make sure that result is signed
- hold |= input[next++] << bits;
- bits += 8;
- }
- //===//
- _out -= left;
- strm.total_out += _out;
- state.total += _out;
- if (_out) {
- strm.adler = state.check =
- /*UPDATE(state.check, put - _out, _out);*/
- (state.flags ? crc32(state.check, output, _out, put - _out) : adler32(state.check, output, _out, put - _out));
-
- }
- _out = left;
- // NB: crc32 stored as signed 32-bit int, ZSWAP32 returns signed too
- if ((state.flags ? hold : ZSWAP32(hold)) !== state.check) {
- strm.msg = 'incorrect data check';
- state.mode = BAD;
- break;
- }
- //=== INITBITS();
- hold = 0;
- bits = 0;
- //===//
- //Tracev((stderr, "inflate: check matches trailer\n"));
- }
- state.mode = LENGTH;
- /* falls through */
- case LENGTH:
- if (state.wrap && state.flags) {
- //=== NEEDBITS(32);
- while (bits < 32) {
- if (have === 0) { break inf_leave; }
- have--;
- hold += input[next++] << bits;
- bits += 8;
- }
- //===//
- if (hold !== (state.total & 0xffffffff)) {
- strm.msg = 'incorrect length check';
- state.mode = BAD;
- break;
- }
- //=== INITBITS();
- hold = 0;
- bits = 0;
- //===//
- //Tracev((stderr, "inflate: length matches trailer\n"));
- }
- state.mode = DONE;
- /* falls through */
- case DONE:
- ret = Z_STREAM_END;
- break inf_leave;
- case BAD:
- ret = Z_DATA_ERROR;
- break inf_leave;
- case MEM:
- return Z_MEM_ERROR;
- case SYNC:
- /* falls through */
- default:
- return Z_STREAM_ERROR;
- }
- }
-
- // inf_leave <- here is real place for "goto inf_leave", emulated via "break inf_leave"
-
- /*
- Return from inflate(), updating the total counts and the check value.
- If there was no progress during the inflate() call, return a buffer
- error. Call updatewindow() to create and/or update the window state.
- Note: a memory error from inflate() is non-recoverable.
- */
-
- //--- RESTORE() ---
- strm.next_out = put;
- strm.avail_out = left;
- strm.next_in = next;
- strm.avail_in = have;
- state.hold = hold;
- state.bits = bits;
- //---
-
- if (state.wsize || (_out !== strm.avail_out && state.mode < BAD &&
- (state.mode < CHECK || flush !== Z_FINISH))) {
- if (updatewindow(strm, strm.output, strm.next_out, _out - strm.avail_out)) {
- state.mode = MEM;
- return Z_MEM_ERROR;
- }
- }
- _in -= strm.avail_in;
- _out -= strm.avail_out;
- strm.total_in += _in;
- strm.total_out += _out;
- state.total += _out;
- if (state.wrap && _out) {
- strm.adler = state.check = /*UPDATE(state.check, strm.next_out - _out, _out);*/
- (state.flags ? crc32(state.check, output, _out, strm.next_out - _out) : adler32(state.check, output, _out, strm.next_out - _out));
- }
- strm.data_type = state.bits + (state.last ? 64 : 0) +
- (state.mode === TYPE ? 128 : 0) +
- (state.mode === LEN_ || state.mode === COPY_ ? 256 : 0);
- if (((_in === 0 && _out === 0) || flush === Z_FINISH) && ret === Z_OK) {
- ret = Z_BUF_ERROR;
- }
- return ret;
- }
-
- function inflateEnd(strm) {
-
- if (!strm || !strm.state /*|| strm->zfree == (free_func)0*/) {
- return Z_STREAM_ERROR;
- }
-
- var state = strm.state;
- if (state.window) {
- state.window = null;
- }
- strm.state = null;
- return Z_OK;
- }
-
- function inflateGetHeader(strm, head) {
- var state;
-
- /* check state */
- if (!strm || !strm.state) { return Z_STREAM_ERROR; }
- state = strm.state;
- if ((state.wrap & 2) === 0) { return Z_STREAM_ERROR; }
-
- /* save header structure */
- state.head = head;
- head.done = false;
- return Z_OK;
- }
-
-
- exports.inflateReset = inflateReset;
- exports.inflateReset2 = inflateReset2;
- exports.inflateResetKeep = inflateResetKeep;
- exports.inflateInit = inflateInit;
- exports.inflateInit2 = inflateInit2;
- exports.inflate = inflate;
- exports.inflateEnd = inflateEnd;
- exports.inflateGetHeader = inflateGetHeader;
- exports.inflateInfo = 'pako inflate (from Nodeca project)';
-
- /* Not implemented
- exports.inflateCopy = inflateCopy;
- exports.inflateGetDictionary = inflateGetDictionary;
- exports.inflateMark = inflateMark;
- exports.inflatePrime = inflatePrime;
- exports.inflateSetDictionary = inflateSetDictionary;
- exports.inflateSync = inflateSync;
- exports.inflateSyncPoint = inflateSyncPoint;
- exports.inflateUndermine = inflateUndermine;
- */
- },{"../utils/common":18,"./adler32":20,"./crc32":22,"./inffast":25,"./inftrees":27}],27:[function(require,module,exports){
- 'use strict';
-
-
- var utils = require('../utils/common');
-
- var MAXBITS = 15;
- var ENOUGH_LENS = 852;
- var ENOUGH_DISTS = 592;
- //var ENOUGH = (ENOUGH_LENS+ENOUGH_DISTS);
-
- var CODES = 0;
- var LENS = 1;
- var DISTS = 2;
-
- var lbase = [ /* Length codes 257..285 base */
- 3, 4, 5, 6, 7, 8, 9, 10, 11, 13, 15, 17, 19, 23, 27, 31,
- 35, 43, 51, 59, 67, 83, 99, 115, 131, 163, 195, 227, 258, 0, 0
- ];
-
- var lext = [ /* Length codes 257..285 extra */
- 16, 16, 16, 16, 16, 16, 16, 16, 17, 17, 17, 17, 18, 18, 18, 18,
- 19, 19, 19, 19, 20, 20, 20, 20, 21, 21, 21, 21, 16, 72, 78
- ];
-
- var dbase = [ /* Distance codes 0..29 base */
- 1, 2, 3, 4, 5, 7, 9, 13, 17, 25, 33, 49, 65, 97, 129, 193,
- 257, 385, 513, 769, 1025, 1537, 2049, 3073, 4097, 6145,
- 8193, 12289, 16385, 24577, 0, 0
- ];
-
- var dext = [ /* Distance codes 0..29 extra */
- 16, 16, 16, 16, 17, 17, 18, 18, 19, 19, 20, 20, 21, 21, 22, 22,
- 23, 23, 24, 24, 25, 25, 26, 26, 27, 27,
- 28, 28, 29, 29, 64, 64
- ];
-
- module.exports = function inflate_table(type, lens, lens_index, codes, table, table_index, work, opts)
- {
- var bits = opts.bits;
- //here = opts.here; /* table entry for duplication */
-
- var len = 0; /* a code's length in bits */
- var sym = 0; /* index of code symbols */
- var min = 0, max = 0; /* minimum and maximum code lengths */
- var root = 0; /* number of index bits for root table */
- var curr = 0; /* number of index bits for current table */
- var drop = 0; /* code bits to drop for sub-table */
- var left = 0; /* number of prefix codes available */
- var used = 0; /* code entries in table used */
- var huff = 0; /* Huffman code */
- var incr; /* for incrementing code, index */
- var fill; /* index for replicating entries */
- var low; /* low bits for current root entry */
- var mask; /* mask for low root bits */
- var next; /* next available space in table */
- var base = null; /* base value table to use */
- var base_index = 0;
- // var shoextra; /* extra bits table to use */
- var end; /* use base and extra for symbol > end */
- var count = new utils.Buf16(MAXBITS+1); //[MAXBITS+1]; /* number of codes of each length */
- var offs = new utils.Buf16(MAXBITS+1); //[MAXBITS+1]; /* offsets in table for each length */
- var extra = null;
- var extra_index = 0;
-
- var here_bits, here_op, here_val;
-
- /*
- Process a set of code lengths to create a canonical Huffman code. The
- code lengths are lens[0..codes-1]. Each length corresponds to the
- symbols 0..codes-1. The Huffman code is generated by first sorting the
- symbols by length from short to long, and retaining the symbol order
- for codes with equal lengths. Then the code starts with all zero bits
- for the first code of the shortest length, and the codes are integer
- increments for the same length, and zeros are appended as the length
- increases. For the deflate format, these bits are stored backwards
- from their more natural integer increment ordering, and so when the
- decoding tables are built in the large loop below, the integer codes
- are incremented backwards.
-
- This routine assumes, but does not check, that all of the entries in
- lens[] are in the range 0..MAXBITS. The caller must assure this.
- 1..MAXBITS is interpreted as that code length. zero means that that
- symbol does not occur in this code.
-
- The codes are sorted by computing a count of codes for each length,
- creating from that a table of starting indices for each length in the
- sorted table, and then entering the symbols in order in the sorted
- table. The sorted table is work[], with that space being provided by
- the caller.
-
- The length counts are used for other purposes as well, i.e. finding
- the minimum and maximum length codes, determining if there are any
- codes at all, checking for a valid set of lengths, and looking ahead
- at length counts to determine sub-table sizes when building the
- decoding tables.
- */
-
- /* accumulate lengths for codes (assumes lens[] all in 0..MAXBITS) */
- for (len = 0; len <= MAXBITS; len++) {
- count[len] = 0;
- }
- for (sym = 0; sym < codes; sym++) {
- count[lens[lens_index + sym]]++;
- }
-
- /* bound code lengths, force root to be within code lengths */
- root = bits;
- for (max = MAXBITS; max >= 1; max--) {
- if (count[max] !== 0) { break; }
- }
- if (root > max) {
- root = max;
- }
- if (max === 0) { /* no symbols to code at all */
- //table.op[opts.table_index] = 64; //here.op = (var char)64; /* invalid code marker */
- //table.bits[opts.table_index] = 1; //here.bits = (var char)1;
- //table.val[opts.table_index++] = 0; //here.val = (var short)0;
- table[table_index++] = (1 << 24) | (64 << 16) | 0;
-
-
- //table.op[opts.table_index] = 64;
- //table.bits[opts.table_index] = 1;
- //table.val[opts.table_index++] = 0;
- table[table_index++] = (1 << 24) | (64 << 16) | 0;
-
- opts.bits = 1;
- return 0; /* no symbols, but wait for decoding to report error */
- }
- for (min = 1; min < max; min++) {
- if (count[min] !== 0) { break; }
- }
- if (root < min) {
- root = min;
- }
-
- /* check for an over-subscribed or incomplete set of lengths */
- left = 1;
- for (len = 1; len <= MAXBITS; len++) {
- left <<= 1;
- left -= count[len];
- if (left < 0) {
- return -1;
- } /* over-subscribed */
- }
- if (left > 0 && (type === CODES || max !== 1)) {
- return -1; /* incomplete set */
- }
-
- /* generate offsets into symbol table for each length for sorting */
- offs[1] = 0;
- for (len = 1; len < MAXBITS; len++) {
- offs[len + 1] = offs[len] + count[len];
- }
-
- /* sort symbols by length, by symbol order within each length */
- for (sym = 0; sym < codes; sym++) {
- if (lens[lens_index + sym] !== 0) {
- work[offs[lens[lens_index + sym]]++] = sym;
- }
- }
-
- /*
- Create and fill in decoding tables. In this loop, the table being
- filled is at next and has curr index bits. The code being used is huff
- with length len. That code is converted to an index by dropping drop
- bits off of the bottom. For codes where len is less than drop + curr,
- those top drop + curr - len bits are incremented through all values to
- fill the table with replicated entries.
-
- root is the number of index bits for the root table. When len exceeds
- root, sub-tables are created pointed to by the root entry with an index
- of the low root bits of huff. This is saved in low to check for when a
- new sub-table should be started. drop is zero when the root table is
- being filled, and drop is root when sub-tables are being filled.
-
- When a new sub-table is needed, it is necessary to look ahead in the
- code lengths to determine what size sub-table is needed. The length
- counts are used for this, and so count[] is decremented as codes are
- entered in the tables.
-
- used keeps track of how many table entries have been allocated from the
- provided *table space. It is checked for LENS and DIST tables against
- the constants ENOUGH_LENS and ENOUGH_DISTS to guard against changes in
- the initial root table size constants. See the comments in inftrees.h
- for more information.
-
- sym increments through all symbols, and the loop terminates when
- all codes of length max, i.e. all codes, have been processed. This
- routine permits incomplete codes, so another loop after this one fills
- in the rest of the decoding tables with invalid code markers.
- */
-
- /* set up for code type */
- // poor man optimization - use if-else instead of switch,
- // to avoid deopts in old v8
- if (type === CODES) {
- base = extra = work; /* dummy value--not used */
- end = 19;
- } else if (type === LENS) {
- base = lbase;
- base_index -= 257;
- extra = lext;
- extra_index -= 257;
- end = 256;
- } else { /* DISTS */
- base = dbase;
- extra = dext;
- end = -1;
- }
-
- /* initialize opts for loop */
- huff = 0; /* starting code */
- sym = 0; /* starting code symbol */
- len = min; /* starting code length */
- next = table_index; /* current table to fill in */
- curr = root; /* current table index bits */
- drop = 0; /* current bits to drop from code for index */
- low = -1; /* trigger new sub-table when len > root */
- used = 1 << root; /* use root table entries */
- mask = used - 1; /* mask for comparing low */
-
- /* check available table space */
- if ((type === LENS && used > ENOUGH_LENS) ||
- (type === DISTS && used > ENOUGH_DISTS)) {
- return 1;
- }
-
- var i=0;
- /* process all codes and make table entries */
- for (;;) {
- i++;
- /* create table entry */
- here_bits = len - drop;
- if (work[sym] < end) {
- here_op = 0;
- here_val = work[sym];
- }
- else if (work[sym] > end) {
- here_op = extra[extra_index + work[sym]];
- here_val = base[base_index + work[sym]];
- }
- else {
- here_op = 32 + 64; /* end of block */
- here_val = 0;
- }
-
- /* replicate for those indices with low len bits equal to huff */
- incr = 1 << (len - drop);
- fill = 1 << curr;
- min = fill; /* save offset to next table */
- do {
- fill -= incr;
- table[next + (huff >> drop) + fill] = (here_bits << 24) | (here_op << 16) | here_val |0;
- } while (fill !== 0);
-
- /* backwards increment the len-bit code huff */
- incr = 1 << (len - 1);
- while (huff & incr) {
- incr >>= 1;
- }
- if (incr !== 0) {
- huff &= incr - 1;
- huff += incr;
- } else {
- huff = 0;
- }
-
- /* go to next symbol, update count, len */
- sym++;
- if (--count[len] === 0) {
- if (len === max) { break; }
- len = lens[lens_index + work[sym]];
- }
-
- /* create new sub-table if needed */
- if (len > root && (huff & mask) !== low) {
- /* if first time, transition to sub-tables */
- if (drop === 0) {
- drop = root;
- }
-
- /* increment past last table */
- next += min; /* here min is 1 << curr */
-
- /* determine length of next table */
- curr = len - drop;
- left = 1 << curr;
- while (curr + drop < max) {
- left -= count[curr + drop];
- if (left <= 0) { break; }
- curr++;
- left <<= 1;
- }
-
- /* check for enough space */
- used += 1 << curr;
- if ((type === LENS && used > ENOUGH_LENS) ||
- (type === DISTS && used > ENOUGH_DISTS)) {
- return 1;
- }
-
- /* point entry in root table to sub-table */
- low = huff & mask;
- /*table.op[low] = curr;
- table.bits[low] = root;
- table.val[low] = next - opts.table_index;*/
- table[low] = (root << 24) | (curr << 16) | (next - table_index) |0;
- }
- }
-
- /* fill in remaining table entry if code is incomplete (guaranteed to have
- at most one remaining entry, since if the code is incomplete, the
- maximum code length that was allowed to get this far is one bit) */
- if (huff !== 0) {
- //table.op[next + huff] = 64; /* invalid code marker */
- //table.bits[next + huff] = len - drop;
- //table.val[next + huff] = 0;
- table[next + huff] = ((len - drop) << 24) | (64 << 16) |0;
- }
-
- /* set return parameters */
- //opts.table_index += used;
- opts.bits = root;
- return 0;
- };
-
- },{"../utils/common":18}],28:[function(require,module,exports){
- 'use strict';
-
- module.exports = {
- '2': 'need dictionary', /* Z_NEED_DICT 2 */
- '1': 'stream end', /* Z_STREAM_END 1 */
- '0': '', /* Z_OK 0 */
- '-1': 'file error', /* Z_ERRNO (-1) */
- '-2': 'stream error', /* Z_STREAM_ERROR (-2) */
- '-3': 'data error', /* Z_DATA_ERROR (-3) */
- '-4': 'insufficient memory', /* Z_MEM_ERROR (-4) */
- '-5': 'buffer error', /* Z_BUF_ERROR (-5) */
- '-6': 'incompatible version' /* Z_VERSION_ERROR (-6) */
- };
- },{}],29:[function(require,module,exports){
- 'use strict';
-
-
- var utils = require('../utils/common');
-
- /* Public constants ==========================================================*/
- /* ===========================================================================*/
-
-
- //var Z_FILTERED = 1;
- //var Z_HUFFMAN_ONLY = 2;
- //var Z_RLE = 3;
- var Z_FIXED = 4;
- //var Z_DEFAULT_STRATEGY = 0;
-
- /* Possible values of the data_type field (though see inflate()) */
- var Z_BINARY = 0;
- var Z_TEXT = 1;
- //var Z_ASCII = 1; // = Z_TEXT
- var Z_UNKNOWN = 2;
-
- /*============================================================================*/
-
-
- function zero(buf) { var len = buf.length; while (--len >= 0) { buf[len] = 0; } }
-
- // From zutil.h
-
- var STORED_BLOCK = 0;
- var STATIC_TREES = 1;
- var DYN_TREES = 2;
- /* The three kinds of block type */
-
- var MIN_MATCH = 3;
- var MAX_MATCH = 258;
- /* The minimum and maximum match lengths */
-
- // From deflate.h
- /* ===========================================================================
- * Internal compression state.
- */
-
- var LENGTH_CODES = 29;
- /* number of length codes, not counting the special END_BLOCK code */
-
- var LITERALS = 256;
- /* number of literal bytes 0..255 */
-
- var L_CODES = LITERALS + 1 + LENGTH_CODES;
- /* number of Literal or Length codes, including the END_BLOCK code */
-
- var D_CODES = 30;
- /* number of distance codes */
-
- var BL_CODES = 19;
- /* number of codes used to transfer the bit lengths */
-
- var HEAP_SIZE = 2*L_CODES + 1;
- /* maximum heap size */
-
- var MAX_BITS = 15;
- /* All codes must not exceed MAX_BITS bits */
-
- var Buf_size = 16;
- /* size of bit buffer in bi_buf */
-
-
- /* ===========================================================================
- * Constants
- */
-
- var MAX_BL_BITS = 7;
- /* Bit length codes must not exceed MAX_BL_BITS bits */
-
- var END_BLOCK = 256;
- /* end of block literal code */
-
- var REP_3_6 = 16;
- /* repeat previous bit length 3-6 times (2 bits of repeat count) */
-
- var REPZ_3_10 = 17;
- /* repeat a zero length 3-10 times (3 bits of repeat count) */
-
- var REPZ_11_138 = 18;
- /* repeat a zero length 11-138 times (7 bits of repeat count) */
-
- var extra_lbits = /* extra bits for each length code */
- [0,0,0,0,0,0,0,0,1,1,1,1,2,2,2,2,3,3,3,3,4,4,4,4,5,5,5,5,0];
-
- var extra_dbits = /* extra bits for each distance code */
- [0,0,0,0,1,1,2,2,3,3,4,4,5,5,6,6,7,7,8,8,9,9,10,10,11,11,12,12,13,13];
-
- var extra_blbits = /* extra bits for each bit length code */
- [0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,2,3,7];
-
- var bl_order =
- [16,17,18,0,8,7,9,6,10,5,11,4,12,3,13,2,14,1,15];
- /* The lengths of the bit length codes are sent in order of decreasing
- * probability, to avoid transmitting the lengths for unused bit length codes.
- */
-
- /* ===========================================================================
- * Local data. These are initialized only once.
- */
-
- // We pre-fill arrays with 0 to avoid uninitialized gaps
-
- var DIST_CODE_LEN = 512; /* see definition of array dist_code below */
-
- // !!!! Use flat array insdead of structure, Freq = i*2, Len = i*2+1
- var static_ltree = new Array((L_CODES+2) * 2);
- zero(static_ltree);
- /* The static literal tree. Since the bit lengths are imposed, there is no
- * need for the L_CODES extra codes used during heap construction. However
- * The codes 286 and 287 are needed to build a canonical tree (see _tr_init
- * below).
- */
-
- var static_dtree = new Array(D_CODES * 2);
- zero(static_dtree);
- /* The static distance tree. (Actually a trivial tree since all codes use
- * 5 bits.)
- */
-
- var _dist_code = new Array(DIST_CODE_LEN);
- zero(_dist_code);
- /* Distance codes. The first 256 values correspond to the distances
- * 3 .. 258, the last 256 values correspond to the top 8 bits of
- * the 15 bit distances.
- */
-
- var _length_code = new Array(MAX_MATCH-MIN_MATCH+1);
- zero(_length_code);
- /* length code for each normalized match length (0 == MIN_MATCH) */
-
- var base_length = new Array(LENGTH_CODES);
- zero(base_length);
- /* First normalized length for each code (0 = MIN_MATCH) */
-
- var base_dist = new Array(D_CODES);
- zero(base_dist);
- /* First normalized distance for each code (0 = distance of 1) */
-
-
- var StaticTreeDesc = function (static_tree, extra_bits, extra_base, elems, max_length) {
-
- this.static_tree = static_tree; /* static tree or NULL */
- this.extra_bits = extra_bits; /* extra bits for each code or NULL */
- this.extra_base = extra_base; /* base index for extra_bits */
- this.elems = elems; /* max number of elements in the tree */
- this.max_length = max_length; /* max bit length for the codes */
-
- // show if `static_tree` has data or dummy - needed for monomorphic objects
- this.has_stree = static_tree && static_tree.length;
- };
-
-
- var static_l_desc;
- var static_d_desc;
- var static_bl_desc;
-
-
- var TreeDesc = function(dyn_tree, stat_desc) {
- this.dyn_tree = dyn_tree; /* the dynamic tree */
- this.max_code = 0; /* largest code with non zero frequency */
- this.stat_desc = stat_desc; /* the corresponding static tree */
- };
-
-
-
- function d_code(dist) {
- return dist < 256 ? _dist_code[dist] : _dist_code[256 + (dist >>> 7)];
- }
-
-
- /* ===========================================================================
- * Output a short LSB first on the stream.
- * IN assertion: there is enough room in pendingBuf.
- */
- function put_short (s, w) {
- // put_byte(s, (uch)((w) & 0xff));
- // put_byte(s, (uch)((ush)(w) >> 8));
- s.pending_buf[s.pending++] = (w) & 0xff;
- s.pending_buf[s.pending++] = (w >>> 8) & 0xff;
- }
-
-
- /* ===========================================================================
- * Send a value on a given number of bits.
- * IN assertion: length <= 16 and value fits in length bits.
- */
- function send_bits(s, value, length) {
- if (s.bi_valid > (Buf_size - length)) {
- s.bi_buf |= (value << s.bi_valid) & 0xffff;
- put_short(s, s.bi_buf);
- s.bi_buf = value >> (Buf_size - s.bi_valid);
- s.bi_valid += length - Buf_size;
- } else {
- s.bi_buf |= (value << s.bi_valid) & 0xffff;
- s.bi_valid += length;
- }
- }
-
-
- function send_code(s, c, tree) {
- send_bits(s, tree[c*2]/*.Code*/, tree[c*2 + 1]/*.Len*/);
- }
-
-
- /* ===========================================================================
- * Reverse the first len bits of a code, using straightforward code (a faster
- * method would use a table)
- * IN assertion: 1 <= len <= 15
- */
- function bi_reverse(code, len) {
- var res = 0;
- do {
- res |= code & 1;
- code >>>= 1;
- res <<= 1;
- } while (--len > 0);
- return res >>> 1;
- }
-
-
- /* ===========================================================================
- * Flush the bit buffer, keeping at most 7 bits in it.
- */
- function bi_flush(s) {
- if (s.bi_valid === 16) {
- put_short(s, s.bi_buf);
- s.bi_buf = 0;
- s.bi_valid = 0;
-
- } else if (s.bi_valid >= 8) {
- s.pending_buf[s.pending++] = s.bi_buf & 0xff;
- s.bi_buf >>= 8;
- s.bi_valid -= 8;
- }
- }
-
-
- /* ===========================================================================
- * Compute the optimal bit lengths for a tree and update the total bit length
- * for the current block.
- * IN assertion: the fields freq and dad are set, heap[heap_max] and
- * above are the tree nodes sorted by increasing frequency.
- * OUT assertions: the field len is set to the optimal bit length, the
- * array bl_count contains the frequencies for each bit length.
- * The length opt_len is updated; static_len is also updated if stree is
- * not null.
- */
- function gen_bitlen(s, desc)
- // deflate_state *s;
- // tree_desc *desc; /* the tree descriptor */
- {
- var tree = desc.dyn_tree;
- var max_code = desc.max_code;
- var stree = desc.stat_desc.static_tree;
- var has_stree = desc.stat_desc.has_stree;
- var extra = desc.stat_desc.extra_bits;
- var base = desc.stat_desc.extra_base;
- var max_length = desc.stat_desc.max_length;
- var h; /* heap index */
- var n, m; /* iterate over the tree elements */
- var bits; /* bit length */
- var xbits; /* extra bits */
- var f; /* frequency */
- var overflow = 0; /* number of elements with bit length too large */
-
- for (bits = 0; bits <= MAX_BITS; bits++) {
- s.bl_count[bits] = 0;
- }
-
- /* In a first pass, compute the optimal bit lengths (which may
- * overflow in the case of the bit length tree).
- */
- tree[s.heap[s.heap_max]*2 + 1]/*.Len*/ = 0; /* root of the heap */
-
- for (h = s.heap_max+1; h < HEAP_SIZE; h++) {
- n = s.heap[h];
- bits = tree[tree[n*2 +1]/*.Dad*/ * 2 + 1]/*.Len*/ + 1;
- if (bits > max_length) {
- bits = max_length;
- overflow++;
- }
- tree[n*2 + 1]/*.Len*/ = bits;
- /* We overwrite tree[n].Dad which is no longer needed */
-
- if (n > max_code) { continue; } /* not a leaf node */
-
- s.bl_count[bits]++;
- xbits = 0;
- if (n >= base) {
- xbits = extra[n-base];
- }
- f = tree[n * 2]/*.Freq*/;
- s.opt_len += f * (bits + xbits);
- if (has_stree) {
- s.static_len += f * (stree[n*2 + 1]/*.Len*/ + xbits);
- }
- }
- if (overflow === 0) { return; }
-
- // Trace((stderr,"\nbit length overflow\n"));
- /* This happens for example on obj2 and pic of the Calgary corpus */
-
- /* Find the first bit length which could increase: */
- do {
- bits = max_length-1;
- while (s.bl_count[bits] === 0) { bits--; }
- s.bl_count[bits]--; /* move one leaf down the tree */
- s.bl_count[bits+1] += 2; /* move one overflow item as its brother */
- s.bl_count[max_length]--;
- /* The brother of the overflow item also moves one step up,
- * but this does not affect bl_count[max_length]
- */
- overflow -= 2;
- } while (overflow > 0);
-
- /* Now recompute all bit lengths, scanning in increasing frequency.
- * h is still equal to HEAP_SIZE. (It is simpler to reconstruct all
- * lengths instead of fixing only the wrong ones. This idea is taken
- * from 'ar' written by Haruhiko Okumura.)
- */
- for (bits = max_length; bits !== 0; bits--) {
- n = s.bl_count[bits];
- while (n !== 0) {
- m = s.heap[--h];
- if (m > max_code) { continue; }
- if (tree[m*2 + 1]/*.Len*/ !== bits) {
- // Trace((stderr,"code %d bits %d->%d\n", m, tree[m].Len, bits));
- s.opt_len += (bits - tree[m*2 + 1]/*.Len*/)*tree[m*2]/*.Freq*/;
- tree[m*2 + 1]/*.Len*/ = bits;
- }
- n--;
- }
- }
- }
-
-
- /* ===========================================================================
- * Generate the codes for a given tree and bit counts (which need not be
- * optimal).
- * IN assertion: the array bl_count contains the bit length statistics for
- * the given tree and the field len is set for all tree elements.
- * OUT assertion: the field code is set for all tree elements of non
- * zero code length.
- */
- function gen_codes(tree, max_code, bl_count)
- // ct_data *tree; /* the tree to decorate */
- // int max_code; /* largest code with non zero frequency */
- // ushf *bl_count; /* number of codes at each bit length */
- {
- var next_code = new Array(MAX_BITS+1); /* next code value for each bit length */
- var code = 0; /* running code value */
- var bits; /* bit index */
- var n; /* code index */
-
- /* The distribution counts are first used to generate the code values
- * without bit reversal.
- */
- for (bits = 1; bits <= MAX_BITS; bits++) {
- next_code[bits] = code = (code + bl_count[bits-1]) << 1;
- }
- /* Check that the bit counts in bl_count are consistent. The last code
- * must be all ones.
- */
- //Assert (code + bl_count[MAX_BITS]-1 == (1<<MAX_BITS)-1,
- // "inconsistent bit counts");
- //Tracev((stderr,"\ngen_codes: max_code %d ", max_code));
-
- for (n = 0; n <= max_code; n++) {
- var len = tree[n*2 + 1]/*.Len*/;
- if (len === 0) { continue; }
- /* Now reverse the bits */
- tree[n*2]/*.Code*/ = bi_reverse(next_code[len]++, len);
-
- //Tracecv(tree != static_ltree, (stderr,"\nn %3d %c l %2d c %4x (%x) ",
- // n, (isgraph(n) ? n : ' '), len, tree[n].Code, next_code[len]-1));
- }
- }
-
-
- /* ===========================================================================
- * Initialize the various 'constant' tables.
- */
- function tr_static_init() {
- var n; /* iterates over tree elements */
- var bits; /* bit counter */
- var length; /* length value */
- var code; /* code value */
- var dist; /* distance index */
- var bl_count = new Array(MAX_BITS+1);
- /* number of codes at each bit length for an optimal tree */
-
- // do check in _tr_init()
- //if (static_init_done) return;
-
- /* For some embedded targets, global variables are not initialized: */
- /*#ifdef NO_INIT_GLOBAL_POINTERS
- static_l_desc.static_tree = static_ltree;
- static_l_desc.extra_bits = extra_lbits;
- static_d_desc.static_tree = static_dtree;
- static_d_desc.extra_bits = extra_dbits;
- static_bl_desc.extra_bits = extra_blbits;
- #endif*/
-
- /* Initialize the mapping length (0..255) -> length code (0..28) */
- length = 0;
- for (code = 0; code < LENGTH_CODES-1; code++) {
- base_length[code] = length;
- for (n = 0; n < (1<<extra_lbits[code]); n++) {
- _length_code[length++] = code;
- }
- }
- //Assert (length == 256, "tr_static_init: length != 256");
- /* Note that the length 255 (match length 258) can be represented
- * in two different ways: code 284 + 5 bits or code 285, so we
- * overwrite length_code[255] to use the best encoding:
- */
- _length_code[length-1] = code;
-
- /* Initialize the mapping dist (0..32K) -> dist code (0..29) */
- dist = 0;
- for (code = 0 ; code < 16; code++) {
- base_dist[code] = dist;
- for (n = 0; n < (1<<extra_dbits[code]); n++) {
- _dist_code[dist++] = code;
- }
- }
- //Assert (dist == 256, "tr_static_init: dist != 256");
- dist >>= 7; /* from now on, all distances are divided by 128 */
- for ( ; code < D_CODES; code++) {
- base_dist[code] = dist << 7;
- for (n = 0; n < (1<<(extra_dbits[code]-7)); n++) {
- _dist_code[256 + dist++] = code;
- }
- }
- //Assert (dist == 256, "tr_static_init: 256+dist != 512");
-
- /* Construct the codes of the static literal tree */
- for (bits = 0; bits <= MAX_BITS; bits++) {
- bl_count[bits] = 0;
- }
-
- n = 0;
- while (n <= 143) {
- static_ltree[n*2 + 1]/*.Len*/ = 8;
- n++;
- bl_count[8]++;
- }
- while (n <= 255) {
- static_ltree[n*2 + 1]/*.Len*/ = 9;
- n++;
- bl_count[9]++;
- }
- while (n <= 279) {
- static_ltree[n*2 + 1]/*.Len*/ = 7;
- n++;
- bl_count[7]++;
- }
- while (n <= 287) {
- static_ltree[n*2 + 1]/*.Len*/ = 8;
- n++;
- bl_count[8]++;
- }
- /* Codes 286 and 287 do not exist, but we must include them in the
- * tree construction to get a canonical Huffman tree (longest code
- * all ones)
- */
- gen_codes(static_ltree, L_CODES+1, bl_count);
-
- /* The static distance tree is trivial: */
- for (n = 0; n < D_CODES; n++) {
- static_dtree[n*2 + 1]/*.Len*/ = 5;
- static_dtree[n*2]/*.Code*/ = bi_reverse(n, 5);
- }
-
- // Now data ready and we can init static trees
- static_l_desc = new StaticTreeDesc(static_ltree, extra_lbits, LITERALS+1, L_CODES, MAX_BITS);
- static_d_desc = new StaticTreeDesc(static_dtree, extra_dbits, 0, D_CODES, MAX_BITS);
- static_bl_desc =new StaticTreeDesc(new Array(0), extra_blbits, 0, BL_CODES, MAX_BL_BITS);
-
- //static_init_done = true;
- }
-
-
- /* ===========================================================================
- * Initialize a new block.
- */
- function init_block(s) {
- var n; /* iterates over tree elements */
-
- /* Initialize the trees. */
- for (n = 0; n < L_CODES; n++) { s.dyn_ltree[n*2]/*.Freq*/ = 0; }
- for (n = 0; n < D_CODES; n++) { s.dyn_dtree[n*2]/*.Freq*/ = 0; }
- for (n = 0; n < BL_CODES; n++) { s.bl_tree[n*2]/*.Freq*/ = 0; }
-
- s.dyn_ltree[END_BLOCK*2]/*.Freq*/ = 1;
- s.opt_len = s.static_len = 0;
- s.last_lit = s.matches = 0;
- }
-
-
- /* ===========================================================================
- * Flush the bit buffer and align the output on a byte boundary
- */
- function bi_windup(s)
- {
- if (s.bi_valid > 8) {
- put_short(s, s.bi_buf);
- } else if (s.bi_valid > 0) {
- //put_byte(s, (Byte)s->bi_buf);
- s.pending_buf[s.pending++] = s.bi_buf;
- }
- s.bi_buf = 0;
- s.bi_valid = 0;
- }
-
- /* ===========================================================================
- * Copy a stored block, storing first the length and its
- * one's complement if requested.
- */
- function copy_block(s, buf, len, header)
- //DeflateState *s;
- //charf *buf; /* the input data */
- //unsigned len; /* its length */
- //int header; /* true if block header must be written */
- {
- bi_windup(s); /* align on byte boundary */
-
- if (header) {
- put_short(s, len);
- put_short(s, ~len);
- }
- // while (len--) {
- // put_byte(s, *buf++);
- // }
- utils.arraySet(s.pending_buf, s.window, buf, len, s.pending);
- s.pending += len;
- }
-
- /* ===========================================================================
- * Compares to subtrees, using the tree depth as tie breaker when
- * the subtrees have equal frequency. This minimizes the worst case length.
- */
- function smaller(tree, n, m, depth) {
- var _n2 = n*2;
- var _m2 = m*2;
- return (tree[_n2]/*.Freq*/ < tree[_m2]/*.Freq*/ ||
- (tree[_n2]/*.Freq*/ === tree[_m2]/*.Freq*/ && depth[n] <= depth[m]));
- }
-
- /* ===========================================================================
- * Restore the heap property by moving down the tree starting at node k,
- * exchanging a node with the smallest of its two sons if necessary, stopping
- * when the heap property is re-established (each father smaller than its
- * two sons).
- */
- function pqdownheap(s, tree, k)
- // deflate_state *s;
- // ct_data *tree; /* the tree to restore */
- // int k; /* node to move down */
- {
- var v = s.heap[k];
- var j = k << 1; /* left son of k */
- while (j <= s.heap_len) {
- /* Set j to the smallest of the two sons: */
- if (j < s.heap_len &&
- smaller(tree, s.heap[j+1], s.heap[j], s.depth)) {
- j++;
- }
- /* Exit if v is smaller than both sons */
- if (smaller(tree, v, s.heap[j], s.depth)) { break; }
-
- /* Exchange v with the smallest son */
- s.heap[k] = s.heap[j];
- k = j;
-
- /* And continue down the tree, setting j to the left son of k */
- j <<= 1;
- }
- s.heap[k] = v;
- }
-
-
- // inlined manually
- // var SMALLEST = 1;
-
- /* ===========================================================================
- * Send the block data compressed using the given Huffman trees
- */
- function compress_block(s, ltree, dtree)
- // deflate_state *s;
- // const ct_data *ltree; /* literal tree */
- // const ct_data *dtree; /* distance tree */
- {
- var dist; /* distance of matched string */
- var lc; /* match length or unmatched char (if dist == 0) */
- var lx = 0; /* running index in l_buf */
- var code; /* the code to send */
- var extra; /* number of extra bits to send */
-
- if (s.last_lit !== 0) {
- do {
- dist = (s.pending_buf[s.d_buf + lx*2] << 8) | (s.pending_buf[s.d_buf + lx*2 + 1]);
- lc = s.pending_buf[s.l_buf + lx];
- lx++;
-
- if (dist === 0) {
- send_code(s, lc, ltree); /* send a literal byte */
- //Tracecv(isgraph(lc), (stderr," '%c' ", lc));
- } else {
- /* Here, lc is the match length - MIN_MATCH */
- code = _length_code[lc];
- send_code(s, code+LITERALS+1, ltree); /* send the length code */
- extra = extra_lbits[code];
- if (extra !== 0) {
- lc -= base_length[code];
- send_bits(s, lc, extra); /* send the extra length bits */
- }
- dist--; /* dist is now the match distance - 1 */
- code = d_code(dist);
- //Assert (code < D_CODES, "bad d_code");
-
- send_code(s, code, dtree); /* send the distance code */
- extra = extra_dbits[code];
- if (extra !== 0) {
- dist -= base_dist[code];
- send_bits(s, dist, extra); /* send the extra distance bits */
- }
- } /* literal or match pair ? */
-
- /* Check that the overlay between pending_buf and d_buf+l_buf is ok: */
- //Assert((uInt)(s->pending) < s->lit_bufsize + 2*lx,
- // "pendingBuf overflow");
-
- } while (lx < s.last_lit);
- }
-
- send_code(s, END_BLOCK, ltree);
- }
-
-
- /* ===========================================================================
- * Construct one Huffman tree and assigns the code bit strings and lengths.
- * Update the total bit length for the current block.
- * IN assertion: the field freq is set for all tree elements.
- * OUT assertions: the fields len and code are set to the optimal bit length
- * and corresponding code. The length opt_len is updated; static_len is
- * also updated if stree is not null. The field max_code is set.
- */
- function build_tree(s, desc)
- // deflate_state *s;
- // tree_desc *desc; /* the tree descriptor */
- {
- var tree = desc.dyn_tree;
- var stree = desc.stat_desc.static_tree;
- var has_stree = desc.stat_desc.has_stree;
- var elems = desc.stat_desc.elems;
- var n, m; /* iterate over heap elements */
- var max_code = -1; /* largest code with non zero frequency */
- var node; /* new node being created */
-
- /* Construct the initial heap, with least frequent element in
- * heap[SMALLEST]. The sons of heap[n] are heap[2*n] and heap[2*n+1].
- * heap[0] is not used.
- */
- s.heap_len = 0;
- s.heap_max = HEAP_SIZE;
-
- for (n = 0; n < elems; n++) {
- if (tree[n * 2]/*.Freq*/ !== 0) {
- s.heap[++s.heap_len] = max_code = n;
- s.depth[n] = 0;
-
- } else {
- tree[n*2 + 1]/*.Len*/ = 0;
- }
- }
-
- /* The pkzip format requires that at least one distance code exists,
- * and that at least one bit should be sent even if there is only one
- * possible code. So to avoid special checks later on we force at least
- * two codes of non zero frequency.
- */
- while (s.heap_len < 2) {
- node = s.heap[++s.heap_len] = (max_code < 2 ? ++max_code : 0);
- tree[node * 2]/*.Freq*/ = 1;
- s.depth[node] = 0;
- s.opt_len--;
-
- if (has_stree) {
- s.static_len -= stree[node*2 + 1]/*.Len*/;
- }
- /* node is 0 or 1 so it does not have extra bits */
- }
- desc.max_code = max_code;
-
- /* The elements heap[heap_len/2+1 .. heap_len] are leaves of the tree,
- * establish sub-heaps of increasing lengths:
- */
- for (n = (s.heap_len >> 1/*int /2*/); n >= 1; n--) { pqdownheap(s, tree, n); }
-
- /* Construct the Huffman tree by repeatedly combining the least two
- * frequent nodes.
- */
- node = elems; /* next internal node of the tree */
- do {
- //pqremove(s, tree, n); /* n = node of least frequency */
- /*** pqremove ***/
- n = s.heap[1/*SMALLEST*/];
- s.heap[1/*SMALLEST*/] = s.heap[s.heap_len--];
- pqdownheap(s, tree, 1/*SMALLEST*/);
- /***/
-
- m = s.heap[1/*SMALLEST*/]; /* m = node of next least frequency */
-
- s.heap[--s.heap_max] = n; /* keep the nodes sorted by frequency */
- s.heap[--s.heap_max] = m;
-
- /* Create a new node father of n and m */
- tree[node * 2]/*.Freq*/ = tree[n * 2]/*.Freq*/ + tree[m * 2]/*.Freq*/;
- s.depth[node] = (s.depth[n] >= s.depth[m] ? s.depth[n] : s.depth[m]) + 1;
- tree[n*2 + 1]/*.Dad*/ = tree[m*2 + 1]/*.Dad*/ = node;
-
- /* and insert the new node in the heap */
- s.heap[1/*SMALLEST*/] = node++;
- pqdownheap(s, tree, 1/*SMALLEST*/);
-
- } while (s.heap_len >= 2);
-
- s.heap[--s.heap_max] = s.heap[1/*SMALLEST*/];
-
- /* At this point, the fields freq and dad are set. We can now
- * generate the bit lengths.
- */
- gen_bitlen(s, desc);
-
- /* The field len is now set, we can generate the bit codes */
- gen_codes(tree, max_code, s.bl_count);
- }
-
-
- /* ===========================================================================
- * Scan a literal or distance tree to determine the frequencies of the codes
- * in the bit length tree.
- */
- function scan_tree(s, tree, max_code)
- // deflate_state *s;
- // ct_data *tree; /* the tree to be scanned */
- // int max_code; /* and its largest code of non zero frequency */
- {
- var n; /* iterates over all tree elements */
- var prevlen = -1; /* last emitted length */
- var curlen; /* length of current code */
-
- var nextlen = tree[0*2 + 1]/*.Len*/; /* length of next code */
-
- var count = 0; /* repeat count of the current code */
- var max_count = 7; /* max repeat count */
- var min_count = 4; /* min repeat count */
-
- if (nextlen === 0) {
- max_count = 138;
- min_count = 3;
- }
- tree[(max_code+1)*2 + 1]/*.Len*/ = 0xffff; /* guard */
-
- for (n = 0; n <= max_code; n++) {
- curlen = nextlen;
- nextlen = tree[(n+1)*2 + 1]/*.Len*/;
-
- if (++count < max_count && curlen === nextlen) {
- continue;
-
- } else if (count < min_count) {
- s.bl_tree[curlen * 2]/*.Freq*/ += count;
-
- } else if (curlen !== 0) {
-
- if (curlen !== prevlen) { s.bl_tree[curlen * 2]/*.Freq*/++; }
- s.bl_tree[REP_3_6*2]/*.Freq*/++;
-
- } else if (count <= 10) {
- s.bl_tree[REPZ_3_10*2]/*.Freq*/++;
-
- } else {
- s.bl_tree[REPZ_11_138*2]/*.Freq*/++;
- }
-
- count = 0;
- prevlen = curlen;
-
- if (nextlen === 0) {
- max_count = 138;
- min_count = 3;
-
- } else if (curlen === nextlen) {
- max_count = 6;
- min_count = 3;
-
- } else {
- max_count = 7;
- min_count = 4;
- }
- }
- }
-
-
- /* ===========================================================================
- * Send a literal or distance tree in compressed form, using the codes in
- * bl_tree.
- */
- function send_tree(s, tree, max_code)
- // deflate_state *s;
- // ct_data *tree; /* the tree to be scanned */
- // int max_code; /* and its largest code of non zero frequency */
- {
- var n; /* iterates over all tree elements */
- var prevlen = -1; /* last emitted length */
- var curlen; /* length of current code */
-
- var nextlen = tree[0*2 + 1]/*.Len*/; /* length of next code */
-
- var count = 0; /* repeat count of the current code */
- var max_count = 7; /* max repeat count */
- var min_count = 4; /* min repeat count */
-
- /* tree[max_code+1].Len = -1; */ /* guard already set */
- if (nextlen === 0) {
- max_count = 138;
- min_count = 3;
- }
-
- for (n = 0; n <= max_code; n++) {
- curlen = nextlen;
- nextlen = tree[(n+1)*2 + 1]/*.Len*/;
-
- if (++count < max_count && curlen === nextlen) {
- continue;
-
- } else if (count < min_count) {
- do { send_code(s, curlen, s.bl_tree); } while (--count !== 0);
-
- } else if (curlen !== 0) {
- if (curlen !== prevlen) {
- send_code(s, curlen, s.bl_tree);
- count--;
- }
- //Assert(count >= 3 && count <= 6, " 3_6?");
- send_code(s, REP_3_6, s.bl_tree);
- send_bits(s, count-3, 2);
-
- } else if (count <= 10) {
- send_code(s, REPZ_3_10, s.bl_tree);
- send_bits(s, count-3, 3);
-
- } else {
- send_code(s, REPZ_11_138, s.bl_tree);
- send_bits(s, count-11, 7);
- }
-
- count = 0;
- prevlen = curlen;
- if (nextlen === 0) {
- max_count = 138;
- min_count = 3;
-
- } else if (curlen === nextlen) {
- max_count = 6;
- min_count = 3;
-
- } else {
- max_count = 7;
- min_count = 4;
- }
- }
- }
-
-
- /* ===========================================================================
- * Construct the Huffman tree for the bit lengths and return the index in
- * bl_order of the last bit length code to send.
- */
- function build_bl_tree(s) {
- var max_blindex; /* index of last bit length code of non zero freq */
-
- /* Determine the bit length frequencies for literal and distance trees */
- scan_tree(s, s.dyn_ltree, s.l_desc.max_code);
- scan_tree(s, s.dyn_dtree, s.d_desc.max_code);
-
- /* Build the bit length tree: */
- build_tree(s, s.bl_desc);
- /* opt_len now includes the length of the tree representations, except
- * the lengths of the bit lengths codes and the 5+5+4 bits for the counts.
- */
-
- /* Determine the number of bit length codes to send. The pkzip format
- * requires that at least 4 bit length codes be sent. (appnote.txt says
- * 3 but the actual value used is 4.)
- */
- for (max_blindex = BL_CODES-1; max_blindex >= 3; max_blindex--) {
- if (s.bl_tree[bl_order[max_blindex]*2 + 1]/*.Len*/ !== 0) {
- break;
- }
- }
- /* Update opt_len to include the bit length tree and counts */
- s.opt_len += 3*(max_blindex+1) + 5+5+4;
- //Tracev((stderr, "\ndyn trees: dyn %ld, stat %ld",
- // s->opt_len, s->static_len));
-
- return max_blindex;
- }
-
-
- /* ===========================================================================
- * Send the header for a block using dynamic Huffman trees: the counts, the
- * lengths of the bit length codes, the literal tree and the distance tree.
- * IN assertion: lcodes >= 257, dcodes >= 1, blcodes >= 4.
- */
- function send_all_trees(s, lcodes, dcodes, blcodes)
- // deflate_state *s;
- // int lcodes, dcodes, blcodes; /* number of codes for each tree */
- {
- var rank; /* index in bl_order */
-
- //Assert (lcodes >= 257 && dcodes >= 1 && blcodes >= 4, "not enough codes");
- //Assert (lcodes <= L_CODES && dcodes <= D_CODES && blcodes <= BL_CODES,
- // "too many codes");
- //Tracev((stderr, "\nbl counts: "));
- send_bits(s, lcodes-257, 5); /* not +255 as stated in appnote.txt */
- send_bits(s, dcodes-1, 5);
- send_bits(s, blcodes-4, 4); /* not -3 as stated in appnote.txt */
- for (rank = 0; rank < blcodes; rank++) {
- //Tracev((stderr, "\nbl code %2d ", bl_order[rank]));
- send_bits(s, s.bl_tree[bl_order[rank]*2 + 1]/*.Len*/, 3);
- }
- //Tracev((stderr, "\nbl tree: sent %ld", s->bits_sent));
-
- send_tree(s, s.dyn_ltree, lcodes-1); /* literal tree */
- //Tracev((stderr, "\nlit tree: sent %ld", s->bits_sent));
-
- send_tree(s, s.dyn_dtree, dcodes-1); /* distance tree */
- //Tracev((stderr, "\ndist tree: sent %ld", s->bits_sent));
- }
-
-
- /* ===========================================================================
- * Check if the data type is TEXT or BINARY, using the following algorithm:
- * - TEXT if the two conditions below are satisfied:
- * a) There are no non-portable control characters belonging to the
- * "black list" (0..6, 14..25, 28..31).
- * b) There is at least one printable character belonging to the
- * "white list" (9 {TAB}, 10 {LF}, 13 {CR}, 32..255).
- * - BINARY otherwise.
- * - The following partially-portable control characters form a
- * "gray list" that is ignored in this detection algorithm:
- * (7 {BEL}, 8 {BS}, 11 {VT}, 12 {FF}, 26 {SUB}, 27 {ESC}).
- * IN assertion: the fields Freq of dyn_ltree are set.
- */
- function detect_data_type(s) {
- /* black_mask is the bit mask of black-listed bytes
- * set bits 0..6, 14..25, and 28..31
- * 0xf3ffc07f = binary 11110011111111111100000001111111
- */
- var black_mask = 0xf3ffc07f;
- var n;
-
- /* Check for non-textual ("black-listed") bytes. */
- for (n = 0; n <= 31; n++, black_mask >>>= 1) {
- if ((black_mask & 1) && (s.dyn_ltree[n*2]/*.Freq*/ !== 0)) {
- return Z_BINARY;
- }
- }
-
- /* Check for textual ("white-listed") bytes. */
- if (s.dyn_ltree[9 * 2]/*.Freq*/ !== 0 || s.dyn_ltree[10 * 2]/*.Freq*/ !== 0 ||
- s.dyn_ltree[13 * 2]/*.Freq*/ !== 0) {
- return Z_TEXT;
- }
- for (n = 32; n < LITERALS; n++) {
- if (s.dyn_ltree[n * 2]/*.Freq*/ !== 0) {
- return Z_TEXT;
- }
- }
-
- /* There are no "black-listed" or "white-listed" bytes:
- * this stream either is empty or has tolerated ("gray-listed") bytes only.
- */
- return Z_BINARY;
- }
-
-
- var static_init_done = false;
-
- /* ===========================================================================
- * Initialize the tree data structures for a new zlib stream.
- */
- function _tr_init(s)
- {
-
- if (!static_init_done) {
- tr_static_init();
- static_init_done = true;
- }
-
- s.l_desc = new TreeDesc(s.dyn_ltree, static_l_desc);
- s.d_desc = new TreeDesc(s.dyn_dtree, static_d_desc);
- s.bl_desc = new TreeDesc(s.bl_tree, static_bl_desc);
-
- s.bi_buf = 0;
- s.bi_valid = 0;
-
- /* Initialize the first block of the first file: */
- init_block(s);
- }
-
-
- /* ===========================================================================
- * Send a stored block
- */
- function _tr_stored_block(s, buf, stored_len, last)
- //DeflateState *s;
- //charf *buf; /* input block */
- //ulg stored_len; /* length of input block */
- //int last; /* one if this is the last block for a file */
- {
- send_bits(s, (STORED_BLOCK<<1)+(last ? 1 : 0), 3); /* send block type */
- copy_block(s, buf, stored_len, true); /* with header */
- }
-
-
- /* ===========================================================================
- * Send one empty static block to give enough lookahead for inflate.
- * This takes 10 bits, of which 7 may remain in the bit buffer.
- */
- function _tr_align(s) {
- send_bits(s, STATIC_TREES<<1, 3);
- send_code(s, END_BLOCK, static_ltree);
- bi_flush(s);
- }
-
-
- /* ===========================================================================
- * Determine the best encoding for the current block: dynamic trees, static
- * trees or store, and output the encoded block to the zip file.
- */
- function _tr_flush_block(s, buf, stored_len, last)
- //DeflateState *s;
- //charf *buf; /* input block, or NULL if too old */
- //ulg stored_len; /* length of input block */
- //int last; /* one if this is the last block for a file */
- {
- var opt_lenb, static_lenb; /* opt_len and static_len in bytes */
- var max_blindex = 0; /* index of last bit length code of non zero freq */
-
- /* Build the Huffman trees unless a stored block is forced */
- if (s.level > 0) {
-
- /* Check if the file is binary or text */
- if (s.strm.data_type === Z_UNKNOWN) {
- s.strm.data_type = detect_data_type(s);
- }
-
- /* Construct the literal and distance trees */
- build_tree(s, s.l_desc);
- // Tracev((stderr, "\nlit data: dyn %ld, stat %ld", s->opt_len,
- // s->static_len));
-
- build_tree(s, s.d_desc);
- // Tracev((stderr, "\ndist data: dyn %ld, stat %ld", s->opt_len,
- // s->static_len));
- /* At this point, opt_len and static_len are the total bit lengths of
- * the compressed block data, excluding the tree representations.
- */
-
- /* Build the bit length tree for the above two trees, and get the index
- * in bl_order of the last bit length code to send.
- */
- max_blindex = build_bl_tree(s);
-
- /* Determine the best encoding. Compute the block lengths in bytes. */
- opt_lenb = (s.opt_len+3+7) >>> 3;
- static_lenb = (s.static_len+3+7) >>> 3;
-
- // Tracev((stderr, "\nopt %lu(%lu) stat %lu(%lu) stored %lu lit %u ",
- // opt_lenb, s->opt_len, static_lenb, s->static_len, stored_len,
- // s->last_lit));
-
- if (static_lenb <= opt_lenb) { opt_lenb = static_lenb; }
-
- } else {
- // Assert(buf != (char*)0, "lost buf");
- opt_lenb = static_lenb = stored_len + 5; /* force a stored block */
- }
-
- if ((stored_len+4 <= opt_lenb) && (buf !== -1)) {
- /* 4: two words for the lengths */
-
- /* The test buf != NULL is only necessary if LIT_BUFSIZE > WSIZE.
- * Otherwise we can't have processed more than WSIZE input bytes since
- * the last block flush, because compression would have been
- * successful. If LIT_BUFSIZE <= WSIZE, it is never too late to
- * transform a block into a stored block.
- */
- _tr_stored_block(s, buf, stored_len, last);
-
- } else if (s.strategy === Z_FIXED || static_lenb === opt_lenb) {
-
- send_bits(s, (STATIC_TREES<<1) + (last ? 1 : 0), 3);
- compress_block(s, static_ltree, static_dtree);
-
- } else {
- send_bits(s, (DYN_TREES<<1) + (last ? 1 : 0), 3);
- send_all_trees(s, s.l_desc.max_code+1, s.d_desc.max_code+1, max_blindex+1);
- compress_block(s, s.dyn_ltree, s.dyn_dtree);
- }
- // Assert (s->compressed_len == s->bits_sent, "bad compressed size");
- /* The above check is made mod 2^32, for files larger than 512 MB
- * and uLong implemented on 32 bits.
- */
- init_block(s);
-
- if (last) {
- bi_windup(s);
- }
- // Tracev((stderr,"\ncomprlen %lu(%lu) ", s->compressed_len>>3,
- // s->compressed_len-7*last));
- }
-
- /* ===========================================================================
- * Save the match info and tally the frequency counts. Return true if
- * the current block must be flushed.
- */
- function _tr_tally(s, dist, lc)
- // deflate_state *s;
- // unsigned dist; /* distance of matched string */
- // unsigned lc; /* match length-MIN_MATCH or unmatched char (if dist==0) */
- {
- //var out_length, in_length, dcode;
-
- s.pending_buf[s.d_buf + s.last_lit * 2] = (dist >>> 8) & 0xff;
- s.pending_buf[s.d_buf + s.last_lit * 2 + 1] = dist & 0xff;
-
- s.pending_buf[s.l_buf + s.last_lit] = lc & 0xff;
- s.last_lit++;
-
- if (dist === 0) {
- /* lc is the unmatched char */
- s.dyn_ltree[lc*2]/*.Freq*/++;
- } else {
- s.matches++;
- /* Here, lc is the match length - MIN_MATCH */
- dist--; /* dist = match distance - 1 */
- //Assert((ush)dist < (ush)MAX_DIST(s) &&
- // (ush)lc <= (ush)(MAX_MATCH-MIN_MATCH) &&
- // (ush)d_code(dist) < (ush)D_CODES, "_tr_tally: bad match");
-
- s.dyn_ltree[(_length_code[lc]+LITERALS+1) * 2]/*.Freq*/++;
- s.dyn_dtree[d_code(dist) * 2]/*.Freq*/++;
- }
-
- // (!) This block is disabled in zlib defailts,
- // don't enable it for binary compatibility
-
- //#ifdef TRUNCATE_BLOCK
- // /* Try to guess if it is profitable to stop the current block here */
- // if ((s.last_lit & 0x1fff) === 0 && s.level > 2) {
- // /* Compute an upper bound for the compressed length */
- // out_length = s.last_lit*8;
- // in_length = s.strstart - s.block_start;
- //
- // for (dcode = 0; dcode < D_CODES; dcode++) {
- // out_length += s.dyn_dtree[dcode*2]/*.Freq*/ * (5 + extra_dbits[dcode]);
- // }
- // out_length >>>= 3;
- // //Tracev((stderr,"\nlast_lit %u, in %ld, out ~%ld(%ld%%) ",
- // // s->last_lit, in_length, out_length,
- // // 100L - out_length*100L/in_length));
- // if (s.matches < (s.last_lit>>1)/*int /2*/ && out_length < (in_length>>1)/*int /2*/) {
- // return true;
- // }
- // }
- //#endif
-
- return (s.last_lit === s.lit_bufsize-1);
- /* We avoid equality with lit_bufsize because of wraparound at 64K
- * on 16 bit machines and because stored blocks are restricted to
- * 64K-1 bytes.
- */
- }
-
- exports._tr_init = _tr_init;
- exports._tr_stored_block = _tr_stored_block;
- exports._tr_flush_block = _tr_flush_block;
- exports._tr_tally = _tr_tally;
- exports._tr_align = _tr_align;
- },{"../utils/common":18}],30:[function(require,module,exports){
- 'use strict';
-
-
- function ZStream() {
- /* next input byte */
- this.input = null; // JS specific, because we have no pointers
- this.next_in = 0;
- /* number of bytes available at input */
- this.avail_in = 0;
- /* total number of input bytes read so far */
- this.total_in = 0;
- /* next output byte should be put there */
- this.output = null; // JS specific, because we have no pointers
- this.next_out = 0;
- /* remaining free space at output */
- this.avail_out = 0;
- /* total number of bytes output so far */
- this.total_out = 0;
- /* last error message, NULL if no error */
- this.msg = ''/*Z_NULL*/;
- /* not visible by applications */
- this.state = null;
- /* best guess about the data type: binary or text */
- this.data_type = 2/*Z_UNKNOWN*/;
- /* adler32 value of the uncompressed data */
- this.adler = 0;
- }
-
- module.exports = ZStream;
- },{}],31:[function(require,module,exports){
- // Copyright Joyent, Inc. and other Node contributors.
- //
- // Permission is hereby granted, free of charge, to any person obtaining a
- // copy of this software and associated documentation files (the
- // "Software"), to deal in the Software without restriction, including
- // without limitation the rights to use, copy, modify, merge, publish,
- // distribute, sublicense, and/or sell copies of the Software, and to permit
- // persons to whom the Software is furnished to do so, subject to the
- // following conditions:
- //
- // The above copyright notice and this permission notice shall be included
- // in all copies or substantial portions of the Software.
- //
- // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
- // OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
- // MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN
- // NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM,
- // DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
- // OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
- // USE OR OTHER DEALINGS IN THE SOFTWARE.
-
- function EventEmitter() {
- this._events = this._events || {};
- this._maxListeners = this._maxListeners || undefined;
- }
- module.exports = EventEmitter;
-
- // Backwards-compat with node 0.10.x
- EventEmitter.EventEmitter = EventEmitter;
-
- EventEmitter.prototype._events = undefined;
- EventEmitter.prototype._maxListeners = undefined;
-
- // By default EventEmitters will print a warning if more than 10 listeners are
- // added to it. This is a useful default which helps finding memory leaks.
- EventEmitter.defaultMaxListeners = 10;
-
- // Obviously not all Emitters should be limited to 10. This function allows
- // that to be increased. Set to zero for unlimited.
- EventEmitter.prototype.setMaxListeners = function(n) {
- if (!isNumber(n) || n < 0 || isNaN(n))
- throw TypeError('n must be a positive number');
- this._maxListeners = n;
- return this;
- };
-
- EventEmitter.prototype.emit = function(type) {
- var er, handler, len, args, i, listeners;
-
- if (!this._events)
- this._events = {};
-
- // If there is no 'error' event listener then throw.
- if (type === 'error') {
- if (!this._events.error ||
- (isObject(this._events.error) && !this._events.error.length)) {
- er = arguments[1];
- if (er instanceof Error) {
- throw er; // Unhandled 'error' event
- }
- throw TypeError('Uncaught, unspecified "error" event.');
- }
- }
-
- handler = this._events[type];
-
- if (isUndefined(handler))
- return false;
-
- if (isFunction(handler)) {
- switch (arguments.length) {
- // fast cases
- case 1:
- handler.call(this);
- break;
- case 2:
- handler.call(this, arguments[1]);
- break;
- case 3:
- handler.call(this, arguments[1], arguments[2]);
- break;
- // slower
- default:
- len = arguments.length;
- args = new Array(len - 1);
- for (i = 1; i < len; i++)
- args[i - 1] = arguments[i];
- handler.apply(this, args);
- }
- } else if (isObject(handler)) {
- len = arguments.length;
- args = new Array(len - 1);
- for (i = 1; i < len; i++)
- args[i - 1] = arguments[i];
-
- listeners = handler.slice();
- len = listeners.length;
- for (i = 0; i < len; i++)
- listeners[i].apply(this, args);
- }
-
- return true;
- };
-
- EventEmitter.prototype.addListener = function(type, listener) {
- var m;
-
- if (!isFunction(listener))
- throw TypeError('listener must be a function');
-
- if (!this._events)
- this._events = {};
-
- // To avoid recursion in the case that type === "newListener"! Before
- // adding it to the listeners, first emit "newListener".
- if (this._events.newListener)
- this.emit('newListener', type,
- isFunction(listener.listener) ?
- listener.listener : listener);
-
- if (!this._events[type])
- // Optimize the case of one listener. Don't need the extra array object.
- this._events[type] = listener;
- else if (isObject(this._events[type]))
- // If we've already got an array, just append.
- this._events[type].push(listener);
- else
- // Adding the second element, need to change to array.
- this._events[type] = [this._events[type], listener];
-
- // Check for listener leak
- if (isObject(this._events[type]) && !this._events[type].warned) {
- var m;
- if (!isUndefined(this._maxListeners)) {
- m = this._maxListeners;
- } else {
- m = EventEmitter.defaultMaxListeners;
- }
-
- if (m && m > 0 && this._events[type].length > m) {
- this._events[type].warned = true;
- console.error('(node) warning: possible EventEmitter memory ' +
- 'leak detected. %d listeners added. ' +
- 'Use emitter.setMaxListeners() to increase limit.',
- this._events[type].length);
- if (typeof console.trace === 'function') {
- // not supported in IE 10
- console.trace();
- }
- }
- }
-
- return this;
- };
-
- EventEmitter.prototype.on = EventEmitter.prototype.addListener;
-
- EventEmitter.prototype.once = function(type, listener) {
- if (!isFunction(listener))
- throw TypeError('listener must be a function');
-
- var fired = false;
-
- function g() {
- this.removeListener(type, g);
-
- if (!fired) {
- fired = true;
- listener.apply(this, arguments);
- }
- }
-
- g.listener = listener;
- this.on(type, g);
-
- return this;
- };
-
- // emits a 'removeListener' event iff the listener was removed
- EventEmitter.prototype.removeListener = function(type, listener) {
- var list, position, length, i;
-
- if (!isFunction(listener))
- throw TypeError('listener must be a function');
-
- if (!this._events || !this._events[type])
- return this;
-
- list = this._events[type];
- length = list.length;
- position = -1;
-
- if (list === listener ||
- (isFunction(list.listener) && list.listener === listener)) {
- delete this._events[type];
- if (this._events.removeListener)
- this.emit('removeListener', type, listener);
-
- } else if (isObject(list)) {
- for (i = length; i-- > 0;) {
- if (list[i] === listener ||
- (list[i].listener && list[i].listener === listener)) {
- position = i;
- break;
- }
- }
-
- if (position < 0)
- return this;
-
- if (list.length === 1) {
- list.length = 0;
- delete this._events[type];
- } else {
- list.splice(position, 1);
- }
-
- if (this._events.removeListener)
- this.emit('removeListener', type, listener);
- }
-
- return this;
- };
-
- EventEmitter.prototype.removeAllListeners = function(type) {
- var key, listeners;
-
- if (!this._events)
- return this;
-
- // not listening for removeListener, no need to emit
- if (!this._events.removeListener) {
- if (arguments.length === 0)
- this._events = {};
- else if (this._events[type])
- delete this._events[type];
- return this;
- }
-
- // emit removeListener for all listeners on all events
- if (arguments.length === 0) {
- for (key in this._events) {
- if (key === 'removeListener') continue;
- this.removeAllListeners(key);
- }
- this.removeAllListeners('removeListener');
- this._events = {};
- return this;
- }
-
- listeners = this._events[type];
-
- if (isFunction(listeners)) {
- this.removeListener(type, listeners);
- } else {
- // LIFO order
- while (listeners.length)
- this.removeListener(type, listeners[listeners.length - 1]);
- }
- delete this._events[type];
-
- return this;
- };
-
- EventEmitter.prototype.listeners = function(type) {
- var ret;
- if (!this._events || !this._events[type])
- ret = [];
- else if (isFunction(this._events[type]))
- ret = [this._events[type]];
- else
- ret = this._events[type].slice();
- return ret;
- };
-
- EventEmitter.listenerCount = function(emitter, type) {
- var ret;
- if (!emitter._events || !emitter._events[type])
- ret = 0;
- else if (isFunction(emitter._events[type]))
- ret = 1;
- else
- ret = emitter._events[type].length;
- return ret;
- };
-
- function isFunction(arg) {
- return typeof arg === 'function';
- }
-
- function isNumber(arg) {
- return typeof arg === 'number';
- }
-
- function isObject(arg) {
- return typeof arg === 'object' && arg !== null;
- }
-
- function isUndefined(arg) {
- return arg === void 0;
- }
-
- },{}]},{},[14])(14)
- });
|