mirror of
https://github.com/classilla/tenfourfox.git
synced 2024-11-20 10:33:36 +00:00
253 lines
8.4 KiB
JavaScript
253 lines
8.4 KiB
JavaScript
"use strict";
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Cu.import("resource://testing-common/httpd.js");
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Cu.import("resource://gre/modules/NetUtil.jsm");
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Cu.import("resource://gre/modules/XPCOMUtils.jsm");
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Cu.import("resource://gre/modules/Services.jsm");
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XPCOMUtils.defineLazyGetter(this, "URL", function() {
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return "http://localhost:" + httpServer.identity.primaryPort;
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});
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var httpServer = null;
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function make_uri(url) {
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var ios = Cc["@mozilla.org/network/io-service;1"].
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getService(Ci.nsIIOService);
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return ios.newURI(url, null, null);
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}
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// ensure the cache service is prepped when running the test
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Cc["@mozilla.org/netwerk/cache-storage-service;1"].getService(Ci.nsICacheStorageService);
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var gotOnProgress;
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var gotOnStatus;
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function make_channel(url, body, cb) {
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gotOnProgress = false;
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gotOnStatus = false;
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var ios = Cc["@mozilla.org/network/io-service;1"].getService(Ci.nsIIOService);
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var chan = ios.newChannel2(url,
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null,
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null,
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null, // aLoadingNode
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Services.scriptSecurityManager.getSystemPrincipal(),
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null, // aTriggeringPrincipal
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Ci.nsILoadInfo.SEC_NORMAL,
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Ci.nsIContentPolicy.TYPE_OTHER)
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.QueryInterface(Ci.nsIHttpChannel);
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chan.notificationCallbacks = {
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numChecks: 0,
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QueryInterface: XPCOMUtils.generateQI([Ci.nsINetworkInterceptController,
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Ci.nsIInterfaceRequestor,
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Ci.nsIProgressEventSink]),
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getInterface: function(iid) {
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return this.QueryInterface(iid);
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},
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onProgress: function(request, context, progress, progressMax) {
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gotOnProgress = true;
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},
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onStatus: function(request, context, status, statusArg) {
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gotOnStatus = true;
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},
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shouldPrepareForIntercept: function() {
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do_check_eq(this.numChecks, 0);
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this.numChecks++;
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return true;
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},
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channelIntercepted: function(channel) {
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channel.QueryInterface(Ci.nsIInterceptedChannel);
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if (body) {
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var synthesized = Cc["@mozilla.org/io/string-input-stream;1"]
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.createInstance(Ci.nsIStringInputStream);
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synthesized.data = body;
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NetUtil.asyncCopy(synthesized, channel.responseBody, function() {
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channel.finishSynthesizedResponse('');
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});
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}
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if (cb) {
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cb(channel);
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}
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return {
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dispatch: function() { }
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};
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},
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};
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return chan;
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}
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const REMOTE_BODY = "http handler body";
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const NON_REMOTE_BODY = "synthesized body";
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const NON_REMOTE_BODY_2 = "synthesized body #2";
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function bodyHandler(metadata, response) {
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response.setHeader('Content-Type', 'text/plain');
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response.write(REMOTE_BODY);
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}
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function run_test() {
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httpServer = new HttpServer();
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httpServer.registerPathHandler('/body', bodyHandler);
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httpServer.start(-1);
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run_next_test();
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}
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function handle_synthesized_response(request, buffer) {
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do_check_eq(buffer, NON_REMOTE_BODY);
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do_check_true(gotOnStatus);
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do_check_true(gotOnProgress);
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run_next_test();
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}
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function handle_synthesized_response_2(request, buffer) {
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do_check_eq(buffer, NON_REMOTE_BODY_2);
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do_check_true(gotOnStatus);
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do_check_true(gotOnProgress);
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run_next_test();
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}
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function handle_remote_response(request, buffer) {
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do_check_eq(buffer, REMOTE_BODY);
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do_check_true(gotOnStatus);
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do_check_true(gotOnProgress);
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run_next_test();
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}
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// hit the network instead of synthesizing
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add_test(function() {
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var chan = make_channel(URL + '/body', null, function(chan) {
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chan.resetInterception();
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});
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chan.asyncOpen(new ChannelListener(handle_remote_response, null), null);
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});
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// synthesize a response
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add_test(function() {
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var chan = make_channel(URL + '/body', NON_REMOTE_BODY);
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chan.asyncOpen(new ChannelListener(handle_synthesized_response, null, CL_ALLOW_UNKNOWN_CL), null);
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});
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// hit the network instead of synthesizing, to test that no previous synthesized
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// cache entry is used.
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add_test(function() {
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var chan = make_channel(URL + '/body', null, function(chan) {
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chan.resetInterception();
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});
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chan.asyncOpen(new ChannelListener(handle_remote_response, null), null);
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});
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// synthesize a different response to ensure no previous response is cached
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add_test(function() {
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var chan = make_channel(URL + '/body', NON_REMOTE_BODY_2);
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chan.asyncOpen(new ChannelListener(handle_synthesized_response_2, null, CL_ALLOW_UNKNOWN_CL), null);
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});
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// ensure that the channel waits for a decision and synthesizes headers correctly
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add_test(function() {
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var chan = make_channel(URL + '/body', null, function(channel) {
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do_timeout(100, function() {
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var synthesized = Cc["@mozilla.org/io/string-input-stream;1"]
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.createInstance(Ci.nsIStringInputStream);
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synthesized.data = NON_REMOTE_BODY;
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NetUtil.asyncCopy(synthesized, channel.responseBody, function() {
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channel.synthesizeHeader("Content-Length", NON_REMOTE_BODY.length);
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channel.finishSynthesizedResponse('');
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});
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});
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});
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chan.asyncOpen(new ChannelListener(handle_synthesized_response, null), null);
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});
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// ensure that the channel waits for a decision
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add_test(function() {
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var chan = make_channel(URL + '/body', null, function(chan) {
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do_timeout(100, function() {
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chan.resetInterception();
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});
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});
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chan.asyncOpen(new ChannelListener(handle_remote_response, null), null);
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});
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// ensure that the intercepted channel supports suspend/resume
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add_test(function() {
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var chan = make_channel(URL + '/body', null, function(intercepted) {
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var synthesized = Cc["@mozilla.org/io/string-input-stream;1"]
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.createInstance(Ci.nsIStringInputStream);
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synthesized.data = NON_REMOTE_BODY;
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NetUtil.asyncCopy(synthesized, intercepted.responseBody, function() {
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// set the content-type to ensure that the stream converter doesn't hold up notifications
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// and cause the test to fail
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intercepted.synthesizeHeader("Content-Type", "text/plain");
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intercepted.finishSynthesizedResponse('');
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});
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});
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chan.asyncOpen(new ChannelListener(handle_synthesized_response, null,
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CL_ALLOW_UNKNOWN_CL | CL_SUSPEND | CL_EXPECT_3S_DELAY), null);
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});
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// ensure that the intercepted channel can be cancelled
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add_test(function() {
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var chan = make_channel(URL + '/body', null, function(intercepted) {
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intercepted.cancel(Cr.NS_BINDING_ABORTED);
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});
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chan.asyncOpen(new ChannelListener(run_next_test, null,
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CL_EXPECT_FAILURE), null);
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});
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// ensure that the channel can't be cancelled via nsIInterceptedChannel after making a decision
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add_test(function() {
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var chan = make_channel(URL + '/body', null, function(chan) {
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chan.resetInterception();
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do_timeout(0, function() {
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var gotexception = false;
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try {
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chan.cancel();
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} catch (x) {
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gotexception = true;
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}
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do_check_true(gotexception);
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});
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});
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chan.asyncOpen(new ChannelListener(handle_remote_response, null), null);
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});
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// ensure that the intercepted channel can be canceled during the response
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add_test(function() {
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var chan = make_channel(URL + '/body', null, function(intercepted) {
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var synthesized = Cc["@mozilla.org/io/string-input-stream;1"]
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.createInstance(Ci.nsIStringInputStream);
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synthesized.data = NON_REMOTE_BODY;
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NetUtil.asyncCopy(synthesized, intercepted.responseBody, function() {
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let channel = intercepted.channel;
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intercepted.finishSynthesizedResponse('');
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channel.cancel(Cr.NS_BINDING_ABORTED);
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});
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});
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chan.asyncOpen(new ChannelListener(run_next_test, null,
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CL_EXPECT_FAILURE | CL_ALLOW_UNKNOWN_CL), null);
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});
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// ensure that the intercepted channel can be canceled before the response
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add_test(function() {
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var chan = make_channel(URL + '/body', null, function(intercepted) {
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var synthesized = Cc["@mozilla.org/io/string-input-stream;1"]
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.createInstance(Ci.nsIStringInputStream);
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synthesized.data = NON_REMOTE_BODY;
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NetUtil.asyncCopy(synthesized, intercepted.responseBody, function() {
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intercepted.channel.cancel(Cr.NS_BINDING_ABORTED);
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intercepted.finishSynthesizedResponse('');
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});
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});
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chan.asyncOpen(new ChannelListener(run_next_test, null,
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CL_EXPECT_FAILURE | CL_ALLOW_UNKNOWN_CL), null);
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});
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add_test(function() {
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httpServer.stop(run_next_test);
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});
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