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...and remove remaining references to them Bug: webrtc:15846 Change-Id: Ica41c0d3cf7bc8698749a5ddb4b8f90a0c8c1162 Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/343784 Reviewed-by: Björn Terelius <terelius@webrtc.org> Commit-Queue: Tomas Gunnarsson <tommi@webrtc.org> Cr-Commit-Position: refs/heads/main@{#41968}
262 lines
10 KiB
C++
262 lines
10 KiB
C++
/*
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* Copyright 2017 The WebRTC Project Authors. All rights reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include "api/candidate.h"
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#include "absl/base/attributes.h"
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#include "p2p/base/p2p_constants.h"
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#include "rtc_base/crc32.h"
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#include "rtc_base/helpers.h"
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#include "rtc_base/ip_address.h"
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#include "rtc_base/logging.h"
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#include "rtc_base/strings/string_builder.h"
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using webrtc::IceCandidateType;
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namespace webrtc {
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absl::string_view IceCandidateTypeToString(IceCandidateType type) {
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switch (type) {
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case IceCandidateType::kHost:
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return "host";
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case IceCandidateType::kSrflx:
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return "srflx";
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case IceCandidateType::kPrflx:
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return "prflx";
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case IceCandidateType::kRelay:
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return "relay";
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}
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}
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} // namespace webrtc
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namespace cricket {
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Candidate::Candidate()
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: id_(rtc::CreateRandomString(8)),
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component_(ICE_CANDIDATE_COMPONENT_DEFAULT),
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priority_(0),
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network_type_(rtc::ADAPTER_TYPE_UNKNOWN),
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underlying_type_for_vpn_(rtc::ADAPTER_TYPE_UNKNOWN),
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generation_(0),
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network_id_(0),
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network_cost_(0) {}
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Candidate::Candidate(int component,
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absl::string_view protocol,
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const rtc::SocketAddress& address,
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uint32_t priority,
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absl::string_view username,
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absl::string_view password,
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webrtc::IceCandidateType type,
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uint32_t generation,
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absl::string_view foundation,
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uint16_t network_id /*= 0*/,
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uint16_t network_cost /*= 0*/)
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: id_(rtc::CreateRandomString(8)),
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component_(component),
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protocol_(protocol),
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address_(address),
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priority_(priority),
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username_(username),
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password_(password),
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type_(type),
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network_type_(rtc::ADAPTER_TYPE_UNKNOWN),
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underlying_type_for_vpn_(rtc::ADAPTER_TYPE_UNKNOWN),
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generation_(generation),
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foundation_(foundation),
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network_id_(network_id),
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network_cost_(network_cost) {}
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Candidate::Candidate(const Candidate&) = default;
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Candidate::~Candidate() = default;
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void Candidate::generate_id() {
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id_ = rtc::CreateRandomString(8);
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}
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bool Candidate::is_local() const {
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return type_ == IceCandidateType::kHost;
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}
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bool Candidate::is_stun() const {
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return type_ == IceCandidateType::kSrflx;
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}
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bool Candidate::is_prflx() const {
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return type_ == IceCandidateType::kPrflx;
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}
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bool Candidate::is_relay() const {
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return type_ == IceCandidateType::kRelay;
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}
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absl::string_view Candidate::type_name() const {
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return webrtc::IceCandidateTypeToString(type_);
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}
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bool Candidate::IsEquivalent(const Candidate& c) const {
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// We ignore the network name, since that is just debug information, and
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// the priority and the network cost, since they should be the same if the
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// rest are.
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return (component_ == c.component_) && (protocol_ == c.protocol_) &&
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(address_ == c.address_) && (username_ == c.username_) &&
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(password_ == c.password_) && (type_ == c.type_) &&
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(generation_ == c.generation_) && (foundation_ == c.foundation_) &&
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(related_address_ == c.related_address_) &&
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(network_id_ == c.network_id_);
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}
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bool Candidate::MatchesForRemoval(const Candidate& c) const {
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return component_ == c.component_ && protocol_ == c.protocol_ &&
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address_ == c.address_;
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}
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std::string Candidate::ToStringInternal(bool sensitive) const {
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rtc::StringBuilder ost;
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std::string address =
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sensitive ? address_.ToSensitiveString() : address_.ToString();
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std::string related_address = sensitive ? related_address_.ToSensitiveString()
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: related_address_.ToString();
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ost << "Cand[" << transport_name_ << ":" << foundation_ << ":" << component_
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<< ":" << protocol_ << ":" << priority_ << ":" << address << ":"
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<< type_name() << ":" << related_address << ":" << username_ << ":"
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<< password_ << ":" << network_id_ << ":" << network_cost_ << ":"
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<< generation_ << "]";
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return ost.Release();
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}
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uint32_t Candidate::GetPriority(uint32_t type_preference,
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int network_adapter_preference,
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int relay_preference,
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bool adjust_local_preference) const {
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// RFC 5245 - 4.1.2.1.
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// priority = (2^24)*(type preference) +
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// (2^8)*(local preference) +
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// (2^0)*(256 - component ID)
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// `local_preference` length is 2 bytes, 0-65535 inclusive.
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// In our implemenation we will partion local_preference into
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// 0 1
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// 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5
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// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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// | NIC Pref | Addr Pref |
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// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
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// NIC Type - Type of the network adapter e.g. 3G/Wifi/Wired.
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// Addr Pref - Address preference value as per RFC 3484.
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// local preference = (NIC Type << 8 | Addr_Pref) + relay preference.
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// The relay preference is based on the number of TURN servers, the
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// first TURN server gets the highest preference.
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int addr_pref = IPAddressPrecedence(address_.ipaddr());
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int local_preference =
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((network_adapter_preference << 8) | addr_pref) + relay_preference;
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// Ensure that the added relay preference will not result in a relay candidate
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// whose STUN priority attribute has a higher priority than a server-reflexive
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// candidate.
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// The STUN priority attribute is calculated as
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// (peer-reflexive type preference) << 24 | (priority & 0x00FFFFFF)
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// as described in
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// https://www.rfc-editor.org/rfc/rfc5245#section-7.1.2.1
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// To satisfy that condition, add kMaxTurnServers to the local preference.
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// This can not overflow the field width since the highest "NIC pref"
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// assigned is kHighestNetworkPreference = 127
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RTC_DCHECK_LT(local_preference + kMaxTurnServers, 0x10000);
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if (adjust_local_preference && relay_protocol_.empty()) {
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local_preference += kMaxTurnServers;
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}
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return (type_preference << 24) | (local_preference << 8) | (256 - component_);
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}
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bool Candidate::operator==(const Candidate& o) const {
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return id_ == o.id_ && component_ == o.component_ &&
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protocol_ == o.protocol_ && relay_protocol_ == o.relay_protocol_ &&
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address_ == o.address_ && priority_ == o.priority_ &&
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username_ == o.username_ && password_ == o.password_ &&
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type_ == o.type_ && network_name_ == o.network_name_ &&
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network_type_ == o.network_type_ && generation_ == o.generation_ &&
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foundation_ == o.foundation_ &&
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related_address_ == o.related_address_ && tcptype_ == o.tcptype_ &&
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transport_name_ == o.transport_name_ && network_id_ == o.network_id_;
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}
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bool Candidate::operator!=(const Candidate& o) const {
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return !(*this == o);
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}
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Candidate Candidate::ToSanitizedCopy(bool use_hostname_address,
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bool filter_related_address) const {
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Candidate copy(*this);
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if (use_hostname_address) {
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rtc::IPAddress ip;
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if (address().hostname().empty()) {
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// IP needs to be redacted, but no hostname available.
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rtc::SocketAddress redacted_addr("redacted-ip.invalid", address().port());
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copy.set_address(redacted_addr);
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} else if (IPFromString(address().hostname(), &ip)) {
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// The hostname is an IP literal, and needs to be redacted too.
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rtc::SocketAddress redacted_addr("redacted-literal.invalid",
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address().port());
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copy.set_address(redacted_addr);
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} else {
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rtc::SocketAddress hostname_only_addr(address().hostname(),
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address().port());
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copy.set_address(hostname_only_addr);
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}
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}
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if (filter_related_address) {
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copy.set_related_address(
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rtc::EmptySocketAddressWithFamily(copy.address().family()));
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}
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return copy;
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}
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void Candidate::ComputeFoundation(const rtc::SocketAddress& base_address,
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uint64_t tie_breaker) {
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// https://www.rfc-editor.org/rfc/rfc5245#section-4.1.1.3
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// The foundation is an identifier, scoped within a session. Two candidates
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// MUST have the same foundation ID when all of the following are true:
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//
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// o they are of the same type.
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// o their bases have the same IP address (the ports can be different).
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// o for reflexive and relayed candidates, the STUN or TURN servers used to
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// obtain them have the same IP address.
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// o they were obtained using the same transport protocol (TCP, UDP, etc.).
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//
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// Similarly, two candidates MUST have different foundations if their
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// types are different, their bases have different IP addresses, the STUN or
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// TURN servers used to obtain them have different IP addresses, or their
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// transport protocols are different.
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rtc::StringBuilder sb;
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sb << type_name() << base_address.ipaddr().ToString() << protocol_
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<< relay_protocol_;
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// https://www.rfc-editor.org/rfc/rfc5245#section-5.2
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// [...] it is possible for both agents to mistakenly believe they are
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// controlled or controlling. To resolve this, each agent MUST select a random
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// number, called the tie-breaker, uniformly distributed between 0 and (2**64)
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// - 1 (that is, a 64-bit positive integer). This number is used in
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// connectivity checks to detect and repair this case [...]
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sb << rtc::ToString(tie_breaker);
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foundation_ = rtc::ToString(rtc::ComputeCrc32(sb.Release()));
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}
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void Candidate::ComputePrflxFoundation() {
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RTC_DCHECK(is_prflx());
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RTC_DCHECK(!id_.empty());
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foundation_ = rtc::ToString(rtc::ComputeCrc32(id_));
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}
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void Candidate::Assign(std::string& s, absl::string_view view) {
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// Assigning via a temporary object, like s = std::string(view), results in
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// binary size bloat. To avoid that, extract pointer and size from the
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// string view, and use std::string::assign method.
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s.assign(view.data(), view.size());
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}
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} // namespace cricket
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