mirror of
https://github.com/klzgrad/naiveproxy.git
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504 lines
15 KiB
C++
504 lines
15 KiB
C++
// Copyright (c) 2012 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "net/proxy/proxy_script_decider.h"
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#include <utility>
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#include "base/bind.h"
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#include "base/bind_helpers.h"
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#include "base/compiler_specific.h"
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#include "base/format_macros.h"
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#include "base/logging.h"
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#include "base/metrics/histogram_macros.h"
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#include "base/strings/string_util.h"
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#include "base/strings/utf_string_conversions.h"
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#include "base/values.h"
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#include "net/base/net_errors.h"
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#include "net/log/net_log_capture_mode.h"
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#include "net/log/net_log_event_type.h"
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#include "net/log/net_log_source_type.h"
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#include "net/proxy/dhcp_proxy_script_fetcher.h"
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#include "net/proxy/dhcp_proxy_script_fetcher_factory.h"
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#include "net/proxy/proxy_script_fetcher.h"
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#include "net/url_request/url_request_context.h"
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namespace net {
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namespace {
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bool LooksLikePacScript(const base::string16& script) {
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// Note: this is only an approximation! It may not always work correctly,
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// however it is very likely that legitimate scripts have this exact string,
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// since they must minimally define a function of this name. Conversely, a
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// file not containing the string is not likely to be a PAC script.
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//
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// An exact test would have to load the script in a javascript evaluator.
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return script.find(base::ASCIIToUTF16("FindProxyForURL")) !=
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base::string16::npos;
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}
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} // anonymous namespace
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// This is the hard-coded location used by the DNS portion of web proxy
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// auto-discovery.
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//
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// Note that we not use DNS devolution to find the WPAD host, since that could
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// be dangerous should our top level domain registry become out of date.
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//
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// Instead we directly resolve "wpad", and let the operating system apply the
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// DNS suffix search paths. This is the same approach taken by Firefox, and
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// compatibility hasn't been an issue.
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//
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// For more details, also check out this comment:
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// http://code.google.com/p/chromium/issues/detail?id=18575#c20
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namespace {
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const char kWpadUrl[] = "http://wpad/wpad.dat";
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const int kQuickCheckDelayMs = 1000;
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};
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std::unique_ptr<base::Value> ProxyScriptDecider::PacSource::NetLogCallback(
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const GURL* effective_pac_url,
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NetLogCaptureMode /* capture_mode */) const {
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std::unique_ptr<base::DictionaryValue> dict(new base::DictionaryValue());
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std::string source;
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switch (type) {
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case PacSource::WPAD_DHCP:
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source = "WPAD DHCP";
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break;
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case PacSource::WPAD_DNS:
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source = "WPAD DNS: ";
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source += effective_pac_url->possibly_invalid_spec();
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break;
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case PacSource::CUSTOM:
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source = "Custom PAC URL: ";
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source += effective_pac_url->possibly_invalid_spec();
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break;
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}
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dict->SetString("source", source);
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return std::move(dict);
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}
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ProxyScriptDecider::ProxyScriptDecider(
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ProxyScriptFetcher* proxy_script_fetcher,
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DhcpProxyScriptFetcher* dhcp_proxy_script_fetcher,
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NetLog* net_log)
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: proxy_script_fetcher_(proxy_script_fetcher),
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dhcp_proxy_script_fetcher_(dhcp_proxy_script_fetcher),
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current_pac_source_index_(0u),
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pac_mandatory_(false),
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next_state_(STATE_NONE),
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net_log_(NetLogWithSource::Make(net_log,
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NetLogSourceType::PROXY_SCRIPT_DECIDER)),
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fetch_pac_bytes_(false),
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quick_check_enabled_(true) {}
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ProxyScriptDecider::~ProxyScriptDecider() {
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if (next_state_ != STATE_NONE)
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Cancel();
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}
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int ProxyScriptDecider::Start(
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const ProxyConfig& config, const base::TimeDelta wait_delay,
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bool fetch_pac_bytes, const CompletionCallback& callback) {
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DCHECK_EQ(STATE_NONE, next_state_);
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DCHECK(!callback.is_null());
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DCHECK(config.HasAutomaticSettings());
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net_log_.BeginEvent(NetLogEventType::PROXY_SCRIPT_DECIDER);
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fetch_pac_bytes_ = fetch_pac_bytes;
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// Save the |wait_delay| as a non-negative value.
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wait_delay_ = wait_delay;
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if (wait_delay_ < base::TimeDelta())
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wait_delay_ = base::TimeDelta();
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pac_mandatory_ = config.pac_mandatory();
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have_custom_pac_url_ = config.has_pac_url();
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pac_sources_ = BuildPacSourcesFallbackList(config);
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DCHECK(!pac_sources_.empty());
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next_state_ = STATE_WAIT;
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int rv = DoLoop(OK);
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if (rv == ERR_IO_PENDING)
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callback_ = callback;
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else
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DidComplete();
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return rv;
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}
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void ProxyScriptDecider::OnShutdown() {
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// Don't do anything if idle.
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if (next_state_ == STATE_NONE)
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return;
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CompletionCallback callback = std::move(callback_);
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// Just cancel any pending work.
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Cancel();
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if (callback)
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callback.Run(ERR_CONTEXT_SHUT_DOWN);
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}
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const ProxyConfig& ProxyScriptDecider::effective_config() const {
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DCHECK_EQ(STATE_NONE, next_state_);
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return effective_config_;
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}
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const scoped_refptr<ProxyResolverScriptData>&
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ProxyScriptDecider::script_data() const {
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DCHECK_EQ(STATE_NONE, next_state_);
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return script_data_;
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}
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// Initialize the fallback rules.
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// (1) WPAD (DHCP).
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// (2) WPAD (DNS).
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// (3) Custom PAC URL.
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ProxyScriptDecider::PacSourceList ProxyScriptDecider::
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BuildPacSourcesFallbackList(
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const ProxyConfig& config) const {
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PacSourceList pac_sources;
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if (config.auto_detect()) {
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pac_sources.push_back(PacSource(PacSource::WPAD_DHCP, GURL(kWpadUrl)));
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pac_sources.push_back(PacSource(PacSource::WPAD_DNS, GURL(kWpadUrl)));
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}
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if (config.has_pac_url())
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pac_sources.push_back(PacSource(PacSource::CUSTOM, config.pac_url()));
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return pac_sources;
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}
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void ProxyScriptDecider::OnIOCompletion(int result) {
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DCHECK_NE(STATE_NONE, next_state_);
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int rv = DoLoop(result);
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if (rv != ERR_IO_PENDING) {
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DidComplete();
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DoCallback(rv);
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}
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}
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int ProxyScriptDecider::DoLoop(int result) {
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DCHECK_NE(next_state_, STATE_NONE);
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int rv = result;
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do {
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State state = next_state_;
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next_state_ = STATE_NONE;
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switch (state) {
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case STATE_WAIT:
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DCHECK_EQ(OK, rv);
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rv = DoWait();
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break;
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case STATE_WAIT_COMPLETE:
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rv = DoWaitComplete(rv);
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break;
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case STATE_QUICK_CHECK:
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DCHECK_EQ(OK, rv);
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rv = DoQuickCheck();
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break;
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case STATE_QUICK_CHECK_COMPLETE:
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rv = DoQuickCheckComplete(rv);
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break;
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case STATE_FETCH_PAC_SCRIPT:
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DCHECK_EQ(OK, rv);
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rv = DoFetchPacScript();
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break;
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case STATE_FETCH_PAC_SCRIPT_COMPLETE:
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rv = DoFetchPacScriptComplete(rv);
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break;
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case STATE_VERIFY_PAC_SCRIPT:
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DCHECK_EQ(OK, rv);
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rv = DoVerifyPacScript();
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break;
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case STATE_VERIFY_PAC_SCRIPT_COMPLETE:
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rv = DoVerifyPacScriptComplete(rv);
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break;
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default:
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NOTREACHED() << "bad state";
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rv = ERR_UNEXPECTED;
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break;
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}
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} while (rv != ERR_IO_PENDING && next_state_ != STATE_NONE);
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return rv;
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}
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void ProxyScriptDecider::DoCallback(int result) {
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DCHECK_NE(ERR_IO_PENDING, result);
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DCHECK(!callback_.is_null());
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callback_.Run(result);
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}
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int ProxyScriptDecider::DoWait() {
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next_state_ = STATE_WAIT_COMPLETE;
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// If no waiting is required, continue on to the next state.
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if (wait_delay_.ToInternalValue() == 0)
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return OK;
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// Otherwise wait the specified amount of time.
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wait_timer_.Start(FROM_HERE, wait_delay_, this,
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&ProxyScriptDecider::OnWaitTimerFired);
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net_log_.BeginEvent(NetLogEventType::PROXY_SCRIPT_DECIDER_WAIT);
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return ERR_IO_PENDING;
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}
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int ProxyScriptDecider::DoWaitComplete(int result) {
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DCHECK_EQ(OK, result);
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if (wait_delay_.ToInternalValue() != 0) {
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net_log_.EndEventWithNetErrorCode(
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NetLogEventType::PROXY_SCRIPT_DECIDER_WAIT, result);
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}
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if (quick_check_enabled_ && current_pac_source().type == PacSource::WPAD_DNS)
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next_state_ = STATE_QUICK_CHECK;
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else
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next_state_ = GetStartState();
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return OK;
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}
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int ProxyScriptDecider::DoQuickCheck() {
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DCHECK(quick_check_enabled_);
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if (!proxy_script_fetcher_ || !proxy_script_fetcher_->GetRequestContext() ||
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!proxy_script_fetcher_->GetRequestContext()->host_resolver()) {
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// If we have no resolver, skip QuickCheck altogether.
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next_state_ = GetStartState();
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return OK;
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}
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quick_check_start_time_ = base::Time::Now();
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std::string host = current_pac_source().url.host();
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HostResolver::RequestInfo reqinfo(HostPortPair(host, 80));
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reqinfo.set_host_resolver_flags(HOST_RESOLVER_SYSTEM_ONLY);
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CompletionCallback callback = base::Bind(
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&ProxyScriptDecider::OnIOCompletion,
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base::Unretained(this));
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next_state_ = STATE_QUICK_CHECK_COMPLETE;
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quick_check_timer_.Start(FROM_HERE,
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base::TimeDelta::FromMilliseconds(
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kQuickCheckDelayMs),
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base::Bind(callback, ERR_NAME_NOT_RESOLVED));
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HostResolver* host_resolver =
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proxy_script_fetcher_->GetRequestContext()->host_resolver();
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// We use HIGHEST here because proxy decision blocks doing any other requests.
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return host_resolver->Resolve(reqinfo, HIGHEST, &wpad_addresses_, callback,
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&request_, net_log_);
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}
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int ProxyScriptDecider::DoQuickCheckComplete(int result) {
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DCHECK(quick_check_enabled_);
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base::TimeDelta delta = base::Time::Now() - quick_check_start_time_;
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if (result == OK)
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UMA_HISTOGRAM_TIMES("Net.WpadQuickCheckSuccess", delta);
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else
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UMA_HISTOGRAM_TIMES("Net.WpadQuickCheckFailure", delta);
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request_.reset();
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quick_check_timer_.Stop();
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if (result != OK)
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return TryToFallbackPacSource(result);
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next_state_ = GetStartState();
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return result;
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}
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int ProxyScriptDecider::DoFetchPacScript() {
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DCHECK(fetch_pac_bytes_);
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next_state_ = STATE_FETCH_PAC_SCRIPT_COMPLETE;
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const PacSource& pac_source = current_pac_source();
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GURL effective_pac_url;
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DetermineURL(pac_source, &effective_pac_url);
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net_log_.BeginEvent(
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NetLogEventType::PROXY_SCRIPT_DECIDER_FETCH_PAC_SCRIPT,
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base::Bind(&PacSource::NetLogCallback, base::Unretained(&pac_source),
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&effective_pac_url));
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if (pac_source.type == PacSource::WPAD_DHCP) {
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if (!dhcp_proxy_script_fetcher_) {
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net_log_.AddEvent(NetLogEventType::PROXY_SCRIPT_DECIDER_HAS_NO_FETCHER);
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return ERR_UNEXPECTED;
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}
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return dhcp_proxy_script_fetcher_->Fetch(
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&pac_script_, base::Bind(&ProxyScriptDecider::OnIOCompletion,
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base::Unretained(this)));
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}
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if (!proxy_script_fetcher_) {
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net_log_.AddEvent(NetLogEventType::PROXY_SCRIPT_DECIDER_HAS_NO_FETCHER);
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return ERR_UNEXPECTED;
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}
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return proxy_script_fetcher_->Fetch(
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effective_pac_url, &pac_script_,
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base::Bind(&ProxyScriptDecider::OnIOCompletion, base::Unretained(this)));
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}
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int ProxyScriptDecider::DoFetchPacScriptComplete(int result) {
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DCHECK(fetch_pac_bytes_);
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net_log_.EndEventWithNetErrorCode(
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NetLogEventType::PROXY_SCRIPT_DECIDER_FETCH_PAC_SCRIPT, result);
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if (result != OK)
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return TryToFallbackPacSource(result);
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next_state_ = STATE_VERIFY_PAC_SCRIPT;
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return result;
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}
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int ProxyScriptDecider::DoVerifyPacScript() {
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next_state_ = STATE_VERIFY_PAC_SCRIPT_COMPLETE;
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// This is just a heuristic. Ideally we would try to parse the script.
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if (fetch_pac_bytes_ && !LooksLikePacScript(pac_script_))
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return ERR_PAC_SCRIPT_FAILED;
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return OK;
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}
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int ProxyScriptDecider::DoVerifyPacScriptComplete(int result) {
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if (result != OK)
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return TryToFallbackPacSource(result);
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const PacSource& pac_source = current_pac_source();
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// Extract the current script data.
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if (fetch_pac_bytes_) {
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script_data_ = ProxyResolverScriptData::FromUTF16(pac_script_);
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} else {
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script_data_ = pac_source.type == PacSource::CUSTOM ?
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ProxyResolverScriptData::FromURL(pac_source.url) :
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ProxyResolverScriptData::ForAutoDetect();
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}
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// Let the caller know which automatic setting we ended up initializing the
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// resolver for (there may have been multiple fallbacks to choose from.)
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if (current_pac_source().type == PacSource::CUSTOM) {
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effective_config_ =
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ProxyConfig::CreateFromCustomPacURL(current_pac_source().url);
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effective_config_.set_pac_mandatory(pac_mandatory_);
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} else {
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if (fetch_pac_bytes_) {
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GURL auto_detected_url;
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switch (current_pac_source().type) {
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case PacSource::WPAD_DHCP:
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auto_detected_url = dhcp_proxy_script_fetcher_->GetPacURL();
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break;
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case PacSource::WPAD_DNS:
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auto_detected_url = GURL(kWpadUrl);
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break;
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default:
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NOTREACHED();
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}
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effective_config_ =
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ProxyConfig::CreateFromCustomPacURL(auto_detected_url);
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} else {
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// The resolver does its own resolution so we cannot know the
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// URL. Just do the best we can and state that the configuration
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// is to auto-detect proxy settings.
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effective_config_ = ProxyConfig::CreateAutoDetect();
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}
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}
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return OK;
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}
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int ProxyScriptDecider::TryToFallbackPacSource(int error) {
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DCHECK_LT(error, 0);
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if (current_pac_source_index_ + 1 >= pac_sources_.size()) {
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// Nothing left to fall back to.
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return error;
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}
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// Advance to next URL in our list.
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++current_pac_source_index_;
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net_log_.AddEvent(
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NetLogEventType::PROXY_SCRIPT_DECIDER_FALLING_BACK_TO_NEXT_PAC_SOURCE);
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if (quick_check_enabled_ && current_pac_source().type == PacSource::WPAD_DNS)
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next_state_ = STATE_QUICK_CHECK;
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else
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next_state_ = GetStartState();
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return OK;
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}
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ProxyScriptDecider::State ProxyScriptDecider::GetStartState() const {
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return fetch_pac_bytes_ ? STATE_FETCH_PAC_SCRIPT : STATE_VERIFY_PAC_SCRIPT;
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}
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void ProxyScriptDecider::DetermineURL(const PacSource& pac_source,
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GURL* effective_pac_url) {
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DCHECK(effective_pac_url);
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switch (pac_source.type) {
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case PacSource::WPAD_DHCP:
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break;
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case PacSource::WPAD_DNS:
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*effective_pac_url = GURL(kWpadUrl);
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break;
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case PacSource::CUSTOM:
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*effective_pac_url = pac_source.url;
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break;
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}
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}
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const ProxyScriptDecider::PacSource&
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ProxyScriptDecider::current_pac_source() const {
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DCHECK_LT(current_pac_source_index_, pac_sources_.size());
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return pac_sources_[current_pac_source_index_];
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}
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void ProxyScriptDecider::OnWaitTimerFired() {
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OnIOCompletion(OK);
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}
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void ProxyScriptDecider::DidComplete() {
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net_log_.EndEvent(NetLogEventType::PROXY_SCRIPT_DECIDER);
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}
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void ProxyScriptDecider::Cancel() {
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DCHECK_NE(STATE_NONE, next_state_);
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net_log_.AddEvent(NetLogEventType::CANCELLED);
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switch (next_state_) {
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case STATE_QUICK_CHECK_COMPLETE:
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request_.reset();
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break;
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case STATE_WAIT_COMPLETE:
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wait_timer_.Stop();
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break;
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case STATE_FETCH_PAC_SCRIPT_COMPLETE:
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proxy_script_fetcher_->Cancel();
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break;
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default:
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break;
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}
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next_state_ = STATE_NONE;
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// This is safe to call in any state.
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if (dhcp_proxy_script_fetcher_)
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dhcp_proxy_script_fetcher_->Cancel();
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DCHECK(!request_);
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DidComplete();
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}
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} // namespace net
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