283 lines
8.7 KiB
C++
283 lines
8.7 KiB
C++
// Copyright (c) 2012 The Chromium Embedded Framework Authors. All rights
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// reserved. Use of this source code is governed by a BSD-style license that can
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// be found in the LICENSE file.
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#include "libcef/cookie_manager_impl.h"
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#include <string>
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#include "libcef/cef_context.h"
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#include "libcef/cef_thread.h"
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#include "libcef/cef_time_util.h"
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#include "base/bind.h"
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#include "base/logging.h"
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#include "chrome/browser/net/sqlite_persistent_cookie_store.h"
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namespace {
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// Callback class for visiting cookies.
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class VisitCookiesCallback : public base::RefCounted<VisitCookiesCallback> {
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public:
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explicit VisitCookiesCallback(net::CookieMonster* cookie_monster,
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CefRefPtr<CefCookieVisitor> visitor)
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: cookie_monster_(cookie_monster),
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visitor_(visitor) {
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}
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void Run(const net::CookieList& list) {
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REQUIRE_IOT();
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int total = list.size(), count = 0;
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net::CookieList::const_iterator it = list.begin();
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for (; it != list.end(); ++it, ++count) {
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CefCookie cookie;
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const net::CanonicalCookie& cc = *(it);
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CefString(&cookie.name).FromString(cc.Name());
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CefString(&cookie.value).FromString(cc.Value());
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CefString(&cookie.domain).FromString(cc.Domain());
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CefString(&cookie.path).FromString(cc.Path());
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cookie.secure = cc.IsSecure();
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cookie.httponly = cc.IsHttpOnly();
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cef_time_from_basetime(cc.CreationDate(), cookie.creation);
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cef_time_from_basetime(cc.LastAccessDate(), cookie.last_access);
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cookie.has_expires = cc.IsPersistent();
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if (cookie.has_expires)
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cef_time_from_basetime(cc.ExpiryDate(), cookie.expires);
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bool deleteCookie = false;
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bool keepLooping = visitor_->Visit(cookie, count, total, deleteCookie);
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if (deleteCookie) {
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cookie_monster_->DeleteCanonicalCookieAsync(cc,
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net::CookieMonster::DeleteCookieCallback());
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}
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if (!keepLooping)
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break;
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}
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}
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private:
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scoped_refptr<net::CookieMonster> cookie_monster_;
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CefRefPtr<CefCookieVisitor> visitor_;
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};
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} // namespace
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CefCookieManagerImpl::CefCookieManagerImpl(bool is_global)
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: is_global_(is_global) {
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if (is_global) {
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cookie_monster_ =
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static_cast<net::CookieMonster*>(
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_Context->request_context()->cookie_store());
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DCHECK(cookie_monster_);
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}
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}
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CefCookieManagerImpl::~CefCookieManagerImpl() {
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}
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void CefCookieManagerImpl::SetSupportedSchemes(
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const std::vector<CefString>& schemes) {
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if (CefThread::CurrentlyOn(CefThread::IO)) {
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if (schemes.empty())
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return;
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std::set<std::string> scheme_set;
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std::vector<CefString>::const_iterator it = schemes.begin();
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for (; it != schemes.end(); ++it)
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scheme_set.insert(*it);
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const char** arr = new const char*[scheme_set.size()];
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std::set<std::string>::const_iterator it2 = scheme_set.begin();
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for (int i = 0; it2 != scheme_set.end(); ++it2, ++i)
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arr[i] = it2->c_str();
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cookie_monster_->SetCookieableSchemes(arr, scheme_set.size());
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delete [] arr;
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} else {
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// Execute on the IO thread.
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CefThread::PostTask(CefThread::IO, FROM_HERE,
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base::Bind(&CefCookieManagerImpl::SetSupportedSchemes,
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this, schemes));
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}
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}
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bool CefCookieManagerImpl::VisitAllCookies(
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CefRefPtr<CefCookieVisitor> visitor) {
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if (CefThread::CurrentlyOn(CefThread::IO)) {
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scoped_refptr<VisitCookiesCallback> callback(
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new VisitCookiesCallback(cookie_monster_, visitor));
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cookie_monster_->GetAllCookiesAsync(
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base::Bind(&VisitCookiesCallback::Run, callback.get()));
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} else {
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// Execute on the IO thread.
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CefThread::PostTask(CefThread::IO, FROM_HERE,
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base::Bind(base::IgnoreResult(&CefCookieManagerImpl::VisitAllCookies),
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this, visitor));
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}
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return true;
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}
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bool CefCookieManagerImpl::VisitUrlCookies(
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const CefString& url, bool includeHttpOnly,
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CefRefPtr<CefCookieVisitor> visitor) {
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if (CefThread::CurrentlyOn(CefThread::IO)) {
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net::CookieOptions options;
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if (includeHttpOnly)
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options.set_include_httponly();
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scoped_refptr<VisitCookiesCallback> callback(
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new VisitCookiesCallback(cookie_monster_, visitor));
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GURL gurl = GURL(url.ToString());
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cookie_monster_->GetAllCookiesForURLWithOptionsAsync(gurl, options,
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base::Bind(&VisitCookiesCallback::Run, callback.get()));
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} else {
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// Execute on the IO thread.
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CefThread::PostTask(CefThread::IO, FROM_HERE,
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base::Bind(base::IgnoreResult(&CefCookieManagerImpl::VisitUrlCookies),
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this, url, includeHttpOnly, visitor));
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}
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return true;
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}
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bool CefCookieManagerImpl::SetCookie(const CefString& url,
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const CefCookie& cookie) {
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// Verify that this function is being called on the IO thread.
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if (!CefThread::CurrentlyOn(CefThread::IO)) {
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NOTREACHED() << "called on invalid thread";
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return false;
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}
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GURL gurl = GURL(url.ToString());
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if (!gurl.is_valid())
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return false;
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std::string name = CefString(&cookie.name).ToString();
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std::string value = CefString(&cookie.value).ToString();
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std::string domain = CefString(&cookie.domain).ToString();
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std::string path = CefString(&cookie.path).ToString();
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base::Time expiration_time;
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if (cookie.has_expires)
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cef_time_to_basetime(cookie.expires, expiration_time);
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cookie_monster_->SetCookieWithDetailsAsync(gurl, name, value, domain, path,
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expiration_time, cookie.secure, cookie.httponly,
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net::CookieStore::SetCookiesCallback());
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return true;
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}
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bool CefCookieManagerImpl::DeleteCookies(const CefString& url,
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const CefString& cookie_name) {
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// Verify that this function is being called on the IO thread.
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if (!CefThread::CurrentlyOn(CefThread::IO)) {
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NOTREACHED() << "called on invalid thread";
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return false;
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}
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if (url.empty()) {
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// Delete all cookies.
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cookie_monster_->DeleteAllAsync(net::CookieMonster::DeleteCallback());
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return true;
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}
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GURL gurl = GURL(url.ToString());
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if (!gurl.is_valid())
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return false;
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if (cookie_name.empty()) {
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// Delete all matching host cookies.
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cookie_monster_->DeleteAllForHostAsync(gurl,
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net::CookieMonster::DeleteCallback());
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} else {
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// Delete all matching host and domain cookies.
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cookie_monster_->DeleteCookieAsync(gurl, cookie_name, base::Closure());
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}
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return true;
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}
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bool CefCookieManagerImpl::SetStoragePath(const CefString& path) {
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if (CefThread::CurrentlyOn(CefThread::IO)) {
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FilePath new_path;
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if (!path.empty())
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new_path = FilePath(path);
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if (is_global_) {
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// Global path changes are handled by the request context.
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_Context->request_context()->SetCookieStoragePath(new_path);
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cookie_monster_ =
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static_cast<net::CookieMonster*>(
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_Context->request_context()->cookie_store());
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return true;
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}
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if (cookie_monster_ && ((storage_path_.empty() && path.empty()) ||
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storage_path_ == new_path)) {
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// The path has not changed so don't do anything.
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return true;
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}
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scoped_refptr<SQLitePersistentCookieStore> persistent_store;
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if (!new_path.empty()) {
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if (!file_util::PathExists(new_path) &&
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!file_util::CreateDirectory(new_path)) {
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NOTREACHED() << "Failed to create cookie storage directory";
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new_path.clear();
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} else {
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FilePath cookie_path = new_path.Append(FILE_PATH_LITERAL("Cookies"));
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persistent_store =
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new SQLitePersistentCookieStore(cookie_path, false, NULL);
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}
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}
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// Set the new cookie store that will be used for all new requests. The old
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// cookie store, if any, will be automatically flushed and closed when no
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// longer referenced.
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cookie_monster_ = new net::CookieMonster(persistent_store.get(), NULL);
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storage_path_ = new_path;
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} else {
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// Execute on the IO thread.
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CefThread::PostTask(CefThread::IO, FROM_HERE,
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base::Bind(base::IgnoreResult(&CefCookieManagerImpl::SetStoragePath),
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this, path));
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}
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return true;
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}
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// CefCookieManager methods ----------------------------------------------------
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// static
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CefRefPtr<CefCookieManager> CefCookieManager::GetGlobalManager() {
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// Verify that the context is in a valid state.
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if (!CONTEXT_STATE_VALID()) {
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NOTREACHED() << "context not valid";
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return NULL;
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}
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return new CefCookieManagerImpl(true);
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}
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// static
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CefRefPtr<CefCookieManager> CefCookieManager::CreateManager(
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const CefString& path) {
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// Verify that the context is in a valid state.
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if (!CONTEXT_STATE_VALID()) {
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NOTREACHED() << "context not valid";
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return NULL;
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}
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CefRefPtr<CefCookieManager> manager(new CefCookieManagerImpl(false));
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manager->SetStoragePath(path);
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return manager;
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}
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