MPLS Fundamentals

MPLS Fundamentals pdf epub mobi txt 电子书 下载 2026

出版者:Cisco Press
作者:Luc De Ghein
出品人:
页数:672
译者:
出版时间:2006-12-01
价格:USD 70.00
装帧:Paperback
isbn号码:9781587051975
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  • 计算机网络
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  • network
  • mpls
  • cisco
  • MPLS, Networking, Routing, Switching, Telecommunications, IP Networking, Cisco, Network Architecture, Data Communications, Enterprise Networks
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具体描述

A comprehensive introduction to all facets of MPLS theory and practice

Helps networking professionals choose the suitable MPLS application and design for their network

Provides MPLS theory and relates to basic IOS configuration examples

The Fundamentals Series from Cisco Press launches the basis to readers for understanding the purpose, application, and management of technologies

MPLS has emerged as the new networking layer for service providers throughout the world. For many service providers and enterprises MPLS is a way of delivering new applications on their IP networks, while consolidating data and voice networks. MPLS has grown to be the new default network layer for service providers and is finding its way into enterprise networks as well. This book focuses on the building blocks of MPLS (architecture, forwarding packets, LDP, MPLS and QoS, CEF, etc.). This book also reviews the different MPLS applications (MPLS VPN, MPLS Traffic Engineering, Carrying IPv6 over MPLS, AToM, VPLS, MPLS OAM

etc.).

You will get a comprehensive overview of all the aspects of MPLS, including the building blocks, its applications, troubleshooting and a perspective on the future of MPLS.

Customer Reviews

9 of 10 people found the following review helpful:

Good book. Misleading name., November 21, 2007

By Gaurav Taparia "just a reader" (CO USA) - See all my reviews

This review is from: MPLS Fundamentals (Paperback)

This is a fairly exhaustive book on cisco MPLS implementation. The name "MPLS Fundamentals" gives an idea that this is a good place to start with, ut unfortunately not. It starts at a basic level, but in no time dives in deep. Use this book only if you want to understand specific areas in depth and not for an overview. Also, if you have access to your own lab, you will find it much easier to follow along. Help other customers find the most helpful reviews

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5 of 5 people found the following review helpful:

Boring to read but easy to udnerstand, May 2, 2010

By Kambiz Agahian "Sr. Network Architect (CCIE R&S)" (USA (CA)) - See all my reviews

Amazon Verified Purchase(What's this?)

This review is from: MPLS Fundamentals (Paperback)

As a CCIE instructor I recommend this book in many of my classes but still the main problem with the book is that the author uses a veeeery boring and lengthy language to explain even easy and straightforward topics. I'd approve this kind of text for a CCNA book but when it comes to a CCIE level MPLS discussion it just takes more and more time and makes the reader bored until it actually gets a simple message through. This however might have been a great idea to make sure the reader remains thirsty on every single page, sadly the way this book is developed prevents this from happening so you read and read and always that very word/sentence seems to remain far away until the student loses the lead. This particular issue does occur multiple times in different chapters. I don't blame the authors but certainly the technical reviewers and editors could have pruned things off a little bit to make sure readers get the most out of their time. But from a technical stand point this book covers... Read more Help other customers find the most helpful reviews

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5 of 6 people found the following review helpful:

Excellent level of detail and insight, March 23, 2008

By Tawfiq K. Khan - See all my reviews

This review is from: MPLS Fundamentals (Paperback)

This is a book where you are given not only an in depth what it is and how its implemented of the protocol but you are also given great insight as to the why its done this way. You are given all of this in a very readable format. I agree with another reviewer that this is an exhaustive text into the internals of MPLS. I love the level of detail it goes into. Help other customers find the most helpful reviews

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Index

Download - 86.3 KB -- Index

Table of Contents

Introduction

Part I: Fundamentals of MPLS

Chapter 1 The Evolution of MPLS

Definition of MPLS

Pre-MPLS Protocols

Benefits of MPLS

Bogus Benefit

The Use of One Unified Network Infrastructure

Better IP over ATM Integration

BGP-Free Core

Peer-to-Peer VPN Model Versus Overlay VPN Model0

Overlay VPN Model0

Peer-to-Peer VPN Model

Optimal Traffic Flow

Traffic Engineering

History of MPLS in Cisco IOS

Tag Switching to MPLS

MPLS Applications

Summary

Chapter Review Questions

Chapter 2 MPLS Architecture

Introducing MPLS Labels

Label Stacking

Encoding of MPLS

MPLS and the OSI Reference Model

Label Switch Router

Label Switched Path

Forwarding Equivalence Class

Label Distribution

Piggyback the Labels on an Existing IP Routing Protocol

Running a Separate Protocol for Label Distribution

Label Distribution with LDP

Label Forwarding Instance Base

MPLS Payload

MPLS Label Spaces

Different MPLS Modes

Label Distribution Modes

Label Retention Modes

LSP Control Modes

Summary

Chapter Review Questions

Chapter 3 Forwarding Labeled Packets

Forwarding of Labeled Packets

Label Operation

IP Lookup Versus Label Lookup

Load Balancing Labeled Packets

Unknown Label

Reserved Labels

Implicit NULL Label

Explicit NULL Label

Router Alert Label

OAM Alert Label

Unreserved Labels

TTL Behavior of Labeled Packets

TTL Behavior in the Case of IP-to-Label or Label-to-IP

TTL Behavior in the Case of Label-to-Label

TTL Expiration

MPLS MTU

MPLS MTU Command

Giant and Baby Giant Frames

Giant Frames on Switches

MPLS Maximum Receive Unit

Fragmentation of MPLS Packets

Path MTU Discovery

Summary

Chapter Review Questions

Chapter 4 Label Distribution Protocol

LDP Overview

LDP Operation

The Discovery of LSRs That Are Running LDP

LDP Session Establishment and Maintenance

Number of LDP Sessions

Advertising of Label Mappings

Label Withdrawing

Housekeeping by Means of Notification

Targeted LDP Session

LDP Authentication

Controlling the Advertisement of Labels via LDP

MPLS LDP Inbound Label Binding Filtering

LDP Autoconfiguration

MPLS LDP-IGP Synchronization

How MPLS LDP-IGP Synchronization Works

MPLS LDP-IGP Synchronization Configuration

MPLS LDP Session Protection

Summary

Chapter Review Questions

Chapter 5 MPLS and ATM Architecture

Brief Introduction to ATM

Label Encoding

Label Advertisement

Downstream-on-Demand Label Advertisement

LDP Control Mode for ATM

LDP for LC-ATM

Label Space

Loop Detection by LDP

Loop Detection by Hop Count TLV

TTL Manipulation

Loop Detection by Path Vector TLV

LDP Address Messages

Blocking Label Requests

Aggregate Labels

VC-Merge

Non MPLS-Aware ATM Switches

Label Switch Controller

Multi-Virtual Circuit Tagged Bit Rate

MPLS CoS

Frame Mode ATM

Reducing the Number of LVCs

Summary

Chapter Review Questions

Chapter 6 Cisco Express Forwarding

Overview of Cisco IOS Switching Methods

Process Switching

Fast Switching

CEF Switching

Why Is CEF Needed in MPLS Networks?

What Are the Components of CEF?

The Adjacency Table

The CEF Table

Operation of CEF

Distributed CEF (DCEF)

CEF Switching Packets in Hardware

Load Balancing in CEF

Unequal Cost Load Balancing

Labeling IP Packets by CEF

Load Balancing Labeled Packets

Troubleshooting CEF

Summary

Chapter Review Questions

Part II: Advanced MPLS Topics

Chapter 7 MPLS VPN

Introduction to MPLS VPN

Definition of a VPN

VPN Models

MPLS VPN Model

Architectural Overview of MPLS VPN

Virtual Routing Forwarding

RD

RTs

VPNv4 Route Propagation in the MPLS VPN Network

Packet Forwarding in an MPLS VPN Network

BGP

BGP Multiprotocol Extensions and Capabilities

BGP Extended Community: RT

VPNv4 Routes

BGP Carrying the Label

RRs

RR Group

BGP Route Selection

BGP Multipath

Using Multiple RDs

Packet Forwarding

PE-CE Routing Protocols

Connected Routes

Static Routing

RIP Version 2

OSPF

OSPF VRF Configuration

OSPF Metric Propagation

BGP Extended Communities for OSPF

OSPF Network Design

Sham Link

Down Bit and Domain Tag

EIGRP

Configuration

Pre-Bestpath POI

EIGRP PE-CE with Backdoor Links

IS-IS

eBGP

Autonomous System Override

allowas-in

Hub-and-Spoke

SOO

VRF Access

Internet Access

Internet in a VPN

Internet Access Through the Global Routing Table

Internet Access Through the Global Routing Table with Static Routes

Internet Access Through a Central VRF Site

Multi-VRF CE

OSPF VRF-Lite Command

CE Management

Summary

Chapter Review Questions

Chapter 8 MPLS Traffic Engineering

The Need for MPLS TE

Overview of the Operation of MPLS TE

Distribution of TE Information

Requirements for the IGP

OSPF Extensions for TE

IS-IS Extensions for TE

Flooding by the IGP

Routing and Cost of a TE LSP

Link TE Attributes

Maximum Reservable Bandwidth

Attribute Flags

TE Metric

Shared Risk Link Groups

Maximum Reservable Sub-Pool Bandwidth

MPLS TE Tunnel (Trunk) Attributes

TE Tunnel Path Calculation

Path Setup Option

IP Explicit Address Exclusion

Setup and Holding Priority

Reoptimization

Periodic Reoptimization

Event-Driven Reoptimization

Manual Reoptimization

Dual TE Metrics

PCALC

RSVP

RSVP and Labels

Record Route Object

Other Information Carried by RSVP

Putting It All Together

Shared Explicit Style

RSVP Messages

PathTear

ResvTear

PathErr

ResvErr

Link Manager

FRR

FRR–Link Protection

FRR–Node Protection

SRLG Used by Backup Tunnels

Multiple Backup Tunnels

Forwarding Traffic onto MPLS TE Tunnels

Static Routing

Policy-Based Routing

Autoroute Announce

Forwarding Adjacency

Direct Mapping of AToM Traffic onto TE Tunnels

Class-Based Tunnel Selection

Cost Calculation of IGP Routes over TE Tunnels

Default Cost Calculation

Adjusting the Cost Calculation

Load Balancing

MPLS TE and MPLS VPN

TE Tunnels Between PE Routers

TE Tunnel with P Router as Tail End Router

VRF-to-TE Tunnel Routing

Summary

Chapter Review Questions

Chapter 9 IPv6 over MPLS

Introduction to IPv6

The Driving Forces for IPv6

Overview of the IPv6 Protocol

The IPv6 Header

The IPv6 Addressing

Other IPv6 Novelties

Overview of IPv6 Unicast Routing in Cisco IOS

IPv6 RIP (RIPng)

OSPF for IPv6 or OSPFv3

IS-IS for IPv6

EIGRP for IPv6

Multiprotocol BGP Extensions for IPv6

CEFv6

Carrying IPv6 over an MPLS Backbone

MPLS VPN Network Using IPv6 over IPv4 Tunnels on the CE Routers

Carrying IPv6 over an MPLS Backbone (6PE)

Operation of 6PE

Configuration of 6PE

Verifying 6PE Operation

Carrying IPv6 in VPNs Across an MPLS Backbone (6VPE)

Operation of 6VPE

Configuration of 6VPE

Verifying 6VPE Operation

IPv6 Internet Access Through 6VPE

Supported Features for 6VPE

Remarks for Both 6PE and 6VPE

Route Reflectors

Turning Off TTL Propagation on the PE Routers

Load Balancing Labeled IPv6 Packets

PHP

BGP Functionality

Summary

Chapter Review Questions

Chapter 10 Any Transport over MPLS

Understanding the Need for AToM

Transporting Layer 2 Frames

AToM Architecture

Data Plane of AToM

Signaling the Pseudowire

C-Bit

PW Type

Group ID

PW ID

Interface Parameters

Signaling the Status of the Pseudowire

The Control Word

Control Word Functions

Pad Small Packets

Carry Control Bits of the Layer 2 Header of the Transported Protocol

Preserve the Sequence of the Transported Frames

Facilitate the Correct Load Balancing of AToM Packets in the MPLS Backbone Network

Facilitate Fragmentation and Reassembly

MPLS MTU in the MPLS Backbone

The Basic AToM Configuration

Transported Layer 2 Protocols

HDLC

PPP

Frame Relay

DLCI-to-DLCI

Port-to-Port Mode (Port Trunking)

ATM

ATM AAL5

ATM Cell Relay

Single Cell Relay Mode

Packed Cell Relay Mode

Ethernet

Ethernet Frame Format

EoMPLS Forwarding

VLAN ID Rewrite

EoMPLS Scenario Examples

Dot1q Tunneling (QinQ) over AToM

AToM Tunnel Selection

AToM and QoS

Summary

Chapter Review Questions

Chapter 11 Virtual Private LAN Service

The Need for VPLS

VPLS Architecture

VPLS Data Plane

VPLS Signaling

The Basic VPLS Configuration

Verifying the VPLS Operation

VPLS and Tunneling Layer 2 Protocols

Tunneling Cisco Discovery Protocol

Tunneling Spanning Tree Protocol

Trunk Port Between the CE and PE

Hierarchical VPLS

H-VPLS with Dot1q Tunneling (QinQ) in the Access Layer

H-VPLS with MPLS in the Access Layer

Quality of Service

Limiting MAC Addresses

Routing Peering

Summary

Chapter Review Questions

Chapter 12 MPLS and Quality of Service

DiffServ with IP Packets

DiffServ with MPLS Packets

Default MPLS QoS Behavior in Cisco IOS

DiffServ Tunneling Models

Pipe Model

Short Pipe Model

Uniform Model

Advantages of the DiffServ Tunneling Models

How to Implement the Three DiffServ Tunneling Models

Recoloring the Packet

MQC Commands for MPLS QoS

Moving MPLS QoS from the PE to the CE Router

Implementing the DiffServ Tunneling Models in Cisco IOS

The Table-Map Feature

The Use of MPLS QoS for Ethernet over MPLS

Summary

Chapter Review Questions

Chapter 13 Troubleshooting MPLS Networks

Label Stack Depth

Verifying Label Switched Path

Tracerouting in MPLS Networks

Tracerouting in an IP Network

Label-Aware ICMP

TTL Behavior in MPLS Networks

Tracerouting in MPLS Networks

Problems with Tracerouting in MPLS Networks

mpls ip ttl-expiration pop Command

no mpls ip propagate-ttl

MPLS MTU

Ping

Debug MPLS Packets

Debugging Load Balancing of Labeled Packets

Verifying MPLS on the Interface

Verifying Number of Bytes Label Switched

MPLS-Aware Netflow

Summary

Chapter Review Questions

Chapter 14 MPLS Operation and Maintenance

Requirements of MPLS OAM

Detection and Diagnosis of Control and Data Plane Defects

Detection of a Defect in a Label Switched Path (LSP)

OAM Packets Flowing on the Same Path as MPLS Data Traffic

Path Characterization

Measurement of SLAs

OAM Interworking

MIBs

Accounting

Router Alert Option and Router Alert Label

Router Alert Label

OAM Alert Label

MPLS LSP Ping

LSP Ping Protocol Details

Target FEC Stack

Downstream Mapping

Interface and Label Stack TLV

Errored TLVs TLV

Reply TOS Byte

LSP Ping Operation

LSP Verification

MPLS Ping in Cisco IOS

MPLS LSP Traceroute

MPLS Traceroute in Cisco IOS

Router Alert Label

Load Balancing

VCCV

IP Service Level Agreement

VRF-Aware IP SLA

Netflow Accounting

SNMP/MIBs

Context-Based Access for SNMP over MPLS VPN

MPLS VPN MIBs

Syslog

OAM Message Mapping

Summary

Chapter Review Questions

Chapter 15 The Future of MPLS

New MPLS Applications

Work at IETF

MPLS Control Word

FCS Retention

AToM Fragmentation and Reassembly

Circuit Emulation

GMPLS

OAM Protocols

MPLS Labeled Multicast

The Proliferation of MPLS

Summary

Part III: Appendixes

Appendix A Answers to Chapter Review Questions

Appendix B Static MPLS Labels (online)

Index

Downloadable Sample Chapter

Download - 712 KB -- Chapter 3: Forwarding Labeled Packets

MPLS (Multiprotocol Label Switching) 是一种网络技术,旨在提高IP网络的转发效率和扩展性。它通过在网络设备之间传递简短的标签来替代对IP头进行复杂的查找,从而加速数据包的转发。 MPLS Fundamentals 深入剖析了MPLS的核心概念、工作原理以及其在现代网络架构中的关键作用。本书并非仅仅罗列技术术语,而是旨在为读者提供一个清晰、系统性的理解框架,使他们能够真正掌握MPLS的精髓。 本书涵盖了以下核心内容: MPLS基础概念与架构: 数据包转发的挑战: 本章首先回顾了传统IP路由的局限性,例如逐跳查找、对网络流量控制和QoS实现的复杂性,为引入MPLS的必要性奠定基础。 MPLS的定义与目标: 详细阐述了MPLS的核心理念,即“标签交换”,以及它如何克服传统IP路由的瓶颈,实现更快的转发和更灵活的服务。 MPLS架构剖析: 深入介绍MPLS网络中的关键组件,包括标签交换路径(LSP)、标签分发协议(LDP)、MPLS节点(LER、LSR)等,并解释它们之间的协作关系。 核心工作原理详解: 标签的生成与分发: 详细解释标签是如何在MPLS网络中生成的,以及LDP等标签分发协议如何工作,确保标签信息在网络中正确传播。 标签交换过程: 逐步解析数据包如何在MPLS网络中被标签化、转发和解标签,重点阐述标签压栈、出栈、交换等操作,以及它们如何实现高效的转发。 标签绑定与路由: 探讨标签与IP路由信息是如何关联的,以及MPLS如何在IP路由的基础上提供更高级的服务。 MPLS在网络中的应用: MPLS VPN(虚拟专用网): 深入讲解MPLS如何实现多租户的VPN服务,包括VPN类型(如BGP/MPLS IP VPN)、技术细节(如VRF)以及其在企业互联中的优势。 MPLS Traffic Engineering(流量工程): 阐述MPLS如何通过控制LSP的路径来优化网络流量,避免拥塞,提高网络资源的利用率,并介绍相关的技术和工具。 MPLS QoS(服务质量): 探讨MPLS如何实现不同业务流的优先级区分和带宽保障,满足语音、视频等对时延和带宽敏感的应用需求。 MPLS与其他技术的结合: 介绍MPLS与SDN、NFV等新兴技术的融合,以及MPLS在构建下一代网络中的地位。 MPLS的实现与管理: 主流厂商的MPLS实现: 简要介绍思科、Juniper等主流厂商的MPLS平台和相关命令,帮助读者理解实际设备上的配置和操作。 MPLS网络的排查与优化: 提供常见MPLS网络问题的诊断方法和优化建议,帮助读者解决实际工作中遇到的挑战。 本书的目标读者: 网络工程师、系统管理员,希望深入了解MPLS技术,提升网络设计、部署和管理能力。 对网络通信有浓厚兴趣的学习者,希望系统性地学习MPLS这一核心技术。 IT经理、技术决策者,希望了解MPLS的优势和应用场景,为网络基础设施的规划和升级提供参考。 通过对 MPLS Fundamentals 的学习,您将能够: 理解MPLS的核心优势:为何MPLS能在某些场景下提供比传统IP路由更优的性能。 掌握MPLS的运行机制:从数据包的生命周期到标签的生成与交换,都能了然于心。 熟练应用MPLS技术:自信地设计、部署和管理支持VPN、流量工程和QoS的MPLS网络。 为复杂网络挑战提供解决方案:能够利用MPLS的灵活性和效率来应对日益增长的网络需求。 本书致力于提供一套全面、准确且易于理解的MPLS知识体系,帮助您在快速发展的网络技术领域中建立坚实的基础。

作者简介

Luc De Ghein, CCIE No. 1897, is an escalation engineer for Cisco Systems in EMEA. Luc has been

in the networking industry for 13 years and has been with Cisco for more than 11 years. He provides

escalation support to Cisco engineers worldwide and teaches others about IP routing protocols and

MPLS technologies. Luc has been a speaker at several Networkers conferences. During the past 7

years, Luc has specialized in the area of MPLS technologies. Before moving to his current position,

Luc was a Technical Assistance Center (TAC) customer support engineer for two and a half years,

specializing in routing. He has been an escalation engineer for routing and MPLS technologies for

more than eight years. Since 1996, Luc has been a Cisco Certified Internetwork Expert (CCIE). He

is certified as both a Routing and Switching CCIE and as a Service Provider CCIE.

目录信息

Part I Fundamentals of MPLS 2
Chapter 1 The Evolution of MPLS 4
Chapter 2 MPLS Architecture 24
Chapter 3 Forwarding Labeled Packets 42
Chapter 4 Label Distribution Protocol 66
Chapter 5 MPLS and ATM Architecture 104
Chapter 6 Cisco Express Forwarding 146
Part II Advanced MPLS Topics 170
Chapter 7 MPLS VPN 172
Chapter 8 MPLS Traffic Engineering 248
Chapter 9 IPv6 over MPLS 328
Chapter 10 Any Transport over MPLS 382
Chapter 11 Virtual Private LAN Service 434
Chapter 12 MPLS and Quality of Service 456
Chapter 13 Troubleshooting MPLS Networks 492
Chapter 14 MPLS Operation and Maintenance 522
Chapter 15 The Future of MPLS 578
Part III Appendixes 586
Appendix A Answers to Chapter Review Questions 588
Index 608
· · · · · · (收起)

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《MPLS Fundamentals》这本书的编排结构给我留下了深刻的印象。它不是零散地介绍MPLS的各个方面,而是将相关的概念和技术串联起来,形成了一个完整的知识体系。从基础的IP路由讲起,到MPLS的核心原理,再到具体的应用场景,如VPN和流量工程,每一个章节都承上启下,逻辑清晰。 我尤其欣赏书中在介绍完一个概念后,会立即给出相关的配置示例,或者是一个实际的网络场景分析。这让我在学习理论知识的同时,也能够立即看到这些知识在实际网络中的应用,从而加深理解。这种理论与实践相结合的学习方式,极大地提高了我的学习效率。

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作为一名对网络技术充满好奇的读者,《MPLS Fundamentals》这本书为我打开了一扇通往MPLS世界的大门。我一直觉得MPLS是一个非常高深的技术,但是这本书用非常平易近人的语言,配合大量精美的图示,将原本复杂的概念变得生动形象。我特别喜欢书中关于“标签”如何工作的比喻,它将一个抽象的标识符,生动地描绘成网络中的“高速通道通行证”,让我在脑海中可以轻松地构建出数据包在MPLS网络中快速穿梭的画面。 书中对于MPLS在服务质量(QoS)方面的应用,也给我留下了深刻的印象。我一直对如何保证不同类型流量的服务质量感到困惑,而这本书则详细地介绍了MPLS如何通过区分服务(DiffServ)和标签交换路径(LSP)的优先级,来实现对不同业务流量的差异化处理,从而保证关键业务的低延迟和高带宽。

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我一直认为,一本好的技术书籍,不仅要讲解“是什么”,更要解释“为什么”和“怎么做”。《MPLS Fundamentals》在这方面做得非常出色。在讲解MPLS的核心概念时,作者总是会先铺垫相关的背景知识,例如IP路由的局限性,以及为什么需要MPLS来解决这些问题。这种循序渐进的讲解方式,让我在理解MPLS的优势和必要性方面,有了更清晰的认识。 而且,书中对于每一个概念的解释,都力求准确和详尽。比如,在讲解标签分发协议(LDP)时,作者不仅解释了LDP的报文类型和状态机,还深入分析了LDP的发现机制、会话建立过程以及标签绑定和交换的流程。这种严谨的学术态度,让我对MPLS有了扎实的基础。

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这本书在阐述MPLS VPN(Virtual Private Network)部分,无疑是我的“救星”。在我开始阅读这本书之前,我对VPN的概念虽然有所了解,但对于MPLS如何实现各种类型的VPN,如L2VPN和L3VPN,以及它们之间的区别和应用场景,一直感到模糊不清。然而,《MPLS Fundamentals》通过清晰的逻辑和丰富的图例,将这些复杂的概念一一剖析。 书中详细介绍了MPLS L3VPN的实现原理,包括PE(Provider Edge)和CE(Customer Edge)设备的角色,BGP VPNv4/VPNv6地址族的运用,以及RT(Route Target)和RD(Route Distinguisher)的作用。让我茅塞顿开的是,PE设备如何利用MPLS标签将不同VPN的流量隔离开来,实现安全、高效的互联。此外,对于L2VPN,如VPLS(Virtual Private LAN Service)和VPWS(Virtual Private Wire Service),书中也进行了深入的讲解,让我理解了如何在MPLS网络中模拟二层连接,满足一些特殊的业务需求。

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这本书的内容深度和广度都让我非常满意。它不仅涵盖了MPLS的基础知识,还深入探讨了许多高级的应用和技术。比如,书中对于MPLS的安全性,包括如何防范标签泄露、标签劫持等攻击,也进行了详细的阐述。这让我意识到,在享受MPLS带来的高性能的同时,也需要关注网络安全的问题。 此外,书中还简要介绍了MPLS在其他领域的应用,例如MPLS-TP(Transport Profile)在承载网络中的应用。这让我看到了MPLS技术的生命力和适应性,它能够不断地适应新的网络环境和技术需求。总而言之,《MPLS Fundamentals》是一本值得所有希望深入了解MPLS技术的读者阅读的书籍。

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读完《MPLS Fundamentals》后,我最大的感受是,这本书不仅如其名,深入浅出地讲解了MPLS的方方面面,更重要的是,它成功地将一个可能令人生畏的技术概念,转化成了我能够理解和掌握的知识体系。在翻开这本书之前,我对MPLS的认知仅限于“一种用于网络传输的技术”,但阅读过程中,作者循序渐进的讲解,从最基础的IP路由原理开始,逐步引入MPLS的核心概念,如标签交换(Label Switching)、标签分发协议(LDP)、资源预留协议(RSVP)等,并且用大量的图示和实例来佐证理论,这让我在面对那些看似复杂的协议和流程时,总能找到一个清晰的切入点。 我特别欣赏书中对于“标签”这一核心元素的阐述。作者没有仅仅停留在“数据包上附加一个标签”这个层面,而是深入分析了标签的生成、分发、交换以及退役等生命周期,以及标签如何实现快速转发、流量工程、VPN服务等一系列关键功能。我甚至能想象到,当数据包在网络中穿梭时,每一个标签都在扮演着引导者和决策者的角色,指引着数据流向正确的下一跳,而不必像传统的IP路由那样,在每一个节点都进行复杂的路由查找。这种对细节的深入挖掘,让我对MPLS的工作机制有了更深刻的认知,也让我能够更好地将其与我熟悉的TCP/IP协议栈进行对比和理解,从而看到MPLS在网络性能优化和功能扩展方面的巨大潜力。

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《MPLS Fundamentals》在讲解MPLS的流量工程(Traffic Engineering)方面,可以说是做到了极致。我之前对流量工程的理解,更多的是停留在“如何优化网络路径”这个模糊的概念上,但这本书让我清晰地认识到,MPLS是如何通过其特有的标签交换机制,以及结合RSVP-TE等协议,实现对网络流量的精细控制和路径优化。作者详细地解释了如何设置约束路径(Constraint-based Routing)、如何创建流量工程标签交换路径(TE LSP),以及如何利用这些路径来规避拥塞、平衡负载。 我尤其被书中关于“路径选择”的描述所吸引。它不再是简单的“最短路径”,而是可以根据带宽、延迟、跳数甚至自定义的策略来选择最优路径。这让我看到了MPLS在构建高性能、高可靠性网络方面的巨大优势,尤其是在企业级网络和运营商网络中,流量工程的重要性不言而喻。书中提供的实际配置案例,更是让我跃跃欲试,希望能在实际环境中验证这些强大的流量工程能力。

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《MPLS Fundamentals》对于MPLS在运营商网络中的角色和应用,进行了非常全面的阐述。在我看来,MPLS技术之所以能够成为现代通信网络的核心,很大程度上在于它能够为运营商提供强大的支持,无论是服务质量(QoS)的保证,还是网络的可扩展性和灵活性。书中详细讲解了MPLS如何与BGP等路由协议协同工作,如何构建大规模的骨干网络,以及如何为各种增值服务(如IPTV、VoIP)提供低延迟、高可靠性的传输通道。 我特别欣赏书中对于MPLS在支持下一代网络技术,如SDN(Software-Defined Networking)和NFV(Network Functions Virtualization)中的作用的讨论。这让我看到了MPLS技术的前瞻性,以及它如何与时俱进,在不断演进的网络环境中继续发挥关键作用。这本书不仅教授了我MPLS的基础知识,更让我对MPLS在未来网络架构中的地位有了更深入的理解。

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在阅读《MPLS Fundamentals》的过程中,我发现它非常注重将理论知识与实际应用相结合。书中不仅仅罗列了各种协议和概念,而是通过大量的案例分析,展示了MPLS在不同场景下的具体实现和优势。例如,在讲解流量工程时,书中就模拟了一个拥塞的网络场景,并展示了如何通过配置MPLS TE来优化流量路径,从而缓解拥塞。这种“知其然,更知其所以然”的学习方式,让我受益匪浅。 我也注意到,书中对于一些相对较新的MPLS相关技术,如MPLS over GRE, MPLS over IPsec等,也进行了简要的介绍。这让我了解到MPLS技术也在不断发展和演进,并且能够与其他技术相结合,以满足更复杂的网络需求。虽然这些内容只是点到为止,但足以引起我对这些技术的进一步兴趣,并让我知道在未来的学习中可以关注哪些方向。

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这本书对于MPLS in Practice的着墨之深,着实让我惊艳。它不仅仅停留在理论层面,而是花费了大量的篇幅来讲解如何在实际的网络环境中部署和配置MPLS。从早期的Cisco IOS命令行,到后来的Juniper Junos,书中都提供了详尽的操作指南和配置示例。我跟着书中的步骤,一步步地在模拟环境中搭建了一个简单的MPLS网络,并尝试了不同的配置,比如如何设置LDP邻居,如何分发标签,如何实现一个基本的L3VPN。这个过程让我从“知道”MPLS,变成了“会用”MPLS。 尤其让我印象深刻的是,书中对于MPLS网络故障排除的讨论。网络工程师都知道,理论再好,最终还是要面对实际的网络问题。这本书提供了许多关于如何诊断MPLS网络故障的实用技巧和工具,比如如何使用ping和traceroute来验证MPLS路径,如何查看LDP和BGP的状态,以及如何分析标签交换过程中的异常。这些内容对于我来说是无价之宝,因为它们直接解决了我在实际工作中可能遇到的问题,让我不再对MPLS故障感到束手无策。

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如果把MPLS理解为IP和ATM之间的桥梁,就比较容易得出MPLS位于七层模型中的2.5层。对流量工程等术语有了点概念。

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简单读了一遍,了解基本知识;也可与红茶三杯的文档结合着来看。

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简单读了一遍,了解基本知识;也可与红茶三杯的文档结合着来看。

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如果把MPLS理解为IP和ATM之间的桥梁,就比较容易得出MPLS位于七层模型中的2.5层。对流量工程等术语有了点概念。

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如果把MPLS理解为IP和ATM之间的桥梁,就比较容易得出MPLS位于七层模型中的2.5层。对流量工程等术语有了点概念。

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