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乾颐堂思科数据中心Data Center 3.0 第八期课程表 (周六班)

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发表于 2022-12-2 12:04:42 | 显示全部楼层 |阅读模式
乾颐堂思科数据中心Data Center 3.0 第八期课程表 (周六班)
开课时间: 20221231 - 2022 0506
讲师:马海波
上课时间:
上午:9:50~12:00
下午:13:20 ~17:20
《思科Nexus交换机》
1231
思科数据传统中心网络架构,
Nexus系列产品线,
Nexus 7K全系产品简介,
Nexus系列交换机端口密度,
Nexus系列交换机管理引擎介绍,
N77系列的Supervisor 3E引擎,
Virtual Output Queues
Nexus系列交换机管理连接方式,
Nexus 7000 产品标示命名规则
Nexus 7K以太网I/O模块分类
Nexus 7K以太网M系列模块
Nexus 7000 M2 I/O 模块
Nexus 7000/7700 M3 I/O 模块
Nexus 7K 以太网F系列模块
Nexus 7000 F3 I/O Modules
Fabric Services Accelerator (FSA) for F3 / M3
F3卡流量转发
Nexus 7700 F4 I/O Modules
I/O Modules 交互模式
Proxy Forwarding 方式
Lowest Common Denominator 方式
F/M Hardware Table 容量对比
Crossbar Switch Fabric 模块
Nexus 7000 Fabric 模块(1)
Nexus 7700 Fabric 2 模块
多层的交换矩阵
Layer 2 Hardware Forwarding
MAC Table Lookup
Layer 3 Hardware Forwarding
IP FIB TCAM Lookup
电源:6KW AC
电源:7.5KW AC
电源:6KW DC
电源非冗余模式及正确接线
电源冗余(N+1 Redundancy)
电网冗余(Grid Redundancy)
电源冗余(Full Redundancy)
Cisco NX-OS 模块架构
Nexus 7000 / Nexus 7700  NX-OS 特性一览
Cisco NX-OS 之Virtualization
Cisco NX-OS 之Continuous Operations / HA
Cisco NX-OS 之Security
Cisco NX-OS 之Operational Manageability
Cisco NX-OS 之L4-7 Services Integration
Cisco NX-OS授权(1)
Cisco NX-OS授权订购信息
Cisco NX-OS授权申请与激活
N5000/6000数据中心汇聚访问层交换机
Nexus 5500/5600/6000 使用场景
Nexus 5672UP
Nexus 5500 Data and Control Plane Elements
Nexus 5500 Data Plane Elements
Nexus 5500控制层面组件
NEXUS 5672UP内部结构
Nexus 5600 Key Forwarding Tables
Nexus 5600 Unicast Table Scaling
Host Table Carving Profiles
MAC/ARP Resource Carving CLI
NEXUS 5600 系列比较
NEXUS 5600/6000总结
N2K Fabric Extender(FEX
Cisco Nexus 2000 系列
Nexus 2232PP-10G Fabric Extender
N2K命名方式
Fabric Extender术语
包发送简介(VN-Tag技术)
Nexus 2000 拓扑
查看模块状态和版本信息
配置管理IP地址
配置CDP
配置电源冗余
配置NTP(Default VDC)
配置NTP(None-Default VDC)
Cisco Fabric Services
配置CFS同步NTP
Scheduler简介
配置Scheduler
Ethanalyzer简介
配置Ethanalyzer
Rollback简介
配置Rollback
激活密码强度检查
配置SSH服务器
SSH客户端
CoPP简介
SMARTnet简介
Call home简介
Alert Group  
The types of events that trigger alerts
配置Call home
Cisco VDC架构
Linux内核namespace机制
虚拟化的可扩展性
Default VDC
Non-Default VDC  普通VDC
Admin VDC
VDC故障域
VDC资源对象
VDC资源共享
Storage VDC
VDC模块关联限制
N7K-M132XP-12 Port Group介绍
N7K-F132XP-15 Port Group介绍
VDC之间的通讯
VDC Resource Template
VDC硬件利用:二层交换
VDC硬件利用:三层交换
带外VDC管理
带内VDC管理
配置Resource Template
创建VDC
限制VDC资源使用
限制关联模块
关联接口到VDC(DC2-N7K-3
CPU Share(CPU份额)
配置CPU Share
配置Boot Order
VDC高可用性介绍(1)
配置VDC高可用性
Default VDC转换Admin VDC
VDC之间的切换
0107
端口的默认模式
基本接口配置实验
N7K基本接口配置
N5K基本接口配置
接口描述与beacon
MTU配置介绍
配置MTU
理解UDLD技术
配置UDLD
模拟UDLD故障
UDLD注意事项
在DC1-N7K-3上配置OSPF
The IP unnumbered feature
为OSPF配置BFD技术
BFD邻居关系的建立
BFD 理论介绍
PSS简介
Graceful Restart介绍
DC1-N7K-1上配置Trunk,VLAN和VTP
DC1-N5K-1上配置Trunk和VTP
调整STP
配置MST
配置HSRP与VRRP
L2 / L3知识点总结
Cisco Nexus交换机使用Fabric Extenders
Top of Rack接线与End of Row管理
Cisco Nexus 7000支持FEX的模块
Cisco Nexus 9000支持FEX的模块
Nexus 2348UPQ Overview
Nexus 2232PP-10GE Fabric Extender
包发送过程简介
Network Interface Virtualization(NIV)架构
VN-Tag端口扩展
Cisco N7K FEX与VDC
Nexus 2000 SPAN
Staic Pinning介绍
EtherChannel介绍
端口命令的规则
N7K与N5K支持的FEX拓扑
N5K FEX实验一:单宿主FEX(Static Pinning)
N5K FEX实验二:单宿主FEX(EtherChannel)
0218
Port Channel简介
Port Channel模式
Hash Options(散列选项)
实验一:Switchport Access
实验二 :Switchport Trunk
实验三 :Routed Interface
实验四 :Routed subinterfaces
vPCs 简介
STP vs vPC
最多32路Port-Channel(Double-Sided vPC)
vPC 架构的组件(1)
vPC 架构的组件(2)
vPC 架构的组件(3)
配置vPC原则
vPC与N7K模块设计图
vPC 控制层面操作
vPC数据层面操作
数据层防环 (vPC Check)
vPC Peer Link Device Failure
vPC Peer Failure — Peer-keepalive Link
配置vPCs
实验五:N7K的vPC(拓扑介绍)
实验五:配置HSRP
vPC and STP BPDU
Spanning Tree推荐
调整Spanning Tree配置
vPC Peer Switch特性介绍
Autorecovery
Delay Restore
vPC Object Tracking
ARP Synchronization
vPC Peer-Gateway
配置 N5K vs N7K vPC
配置EvPC
vPC Domain
System MAC
vPC Role
vPC Peer Link介绍
vPC Member Port介绍
vPC VDC
三层和vPC的相互影响
三层和vPC的设计
三层和vPC支持的设计
STP和vPC的互操作
多层vPC和数据中心互联
FHRP与vPC
Orphan-Port Suspend
vPC与FEX的设计
Switch Port Analyzer (SPAN)
Encapsulated Remote SPAN (ERSPAN)
ERSPAN配置
NetFlow介绍
NetFolw配置
0225
什么是Overlays
Overlays虚拟化种类
VXLAN Overview
VXLAN Frame Format
VXLAN VTEP
VXLAN Underlay Network – IP Routing
VXLAN Forwarding Plane
VXLAN Forwarding Packet
VXLAN BUM Traffic Handling
VTEP Discovery & Address Learning
Challenges with Flood-&-Learn VXLAN Deployments
What is VXLAN/EVPN
Functions of VXLAN/EVPN
VXLAN: Flood-&-Learn vs EVPN Control Plane
EVPN Primer --- MP-BGP Review
EVPN Control Plane – Reachability Distribution
EVPN Control Plane -- Host Advertisement
EVPN Control Plane -- Host Movement
Distributed Anycast Gateway in MP-BGP EVPN
VXLAN Routing
Symmetric Integrated Routing & Bridging (IRB)
Packet Forwarding (Bridge)
Packet Forwarding (Route)
EVPN Control Plane -- ARP Suppression
EVPN Control Plane -- Head-end Replication
Flood-&-Learn  VS  EVPN Control Plane
0304
VxLAN EVPN Parameters
Route Distinguishers (RDs).
Route Target (RT)
EVPN Route types
Route type 2 (MAC Only)
Route type 2 (MAC/IP)
Inclusive Multicast
Route type 5 (IP)
Route type 5 (IP) 两种用途
Sample EVPN-Related VRF Configuration for Layer 3 Multitenancy
ARP lookup miss with ARP Suppression
Multi-pod
Multi-fabric/Multi-site
Interfabric Option 1: Multi-pod
Interfabric Option 2: Multifabric
Interfabric Option 3 (Multisite for Layer 3)
Interfabric Option 4 (Multisite for Layer 2)
VXLAN EVPN MultiPod实验拓扑
Loopback配置
Interface配置
Ospf路由配置
Pim组播配置
MP-BGP配置
VXLAN相关配置
0311
VXLAN Evolves as the Control Plane Evolves
Inter-X Connectivity
Multi-Pod Characteristics – ”The Single”
Multi-Pod End-to-End Encapsulation
Multi-Pod VXLAN Tunnel Adjacencies
Multi-Pod Underlay Extension
Multi-Pod BUM Replication
Multi-Pod Challenges – ”The Single”
Multi-Site Overlay Forwarding
VXLAN Multi-Site
VXLAN Multi-Site Characteristics
VXLAN Multi-Site Underlay Isolation
Introducing the Border Gateway
VXLAN Tunnel Adjacencies
HW/SW Support and Scalability Values
BGW-to-Cloud
Anycast Border Gateway
BUM Replication Modes
Control Plane Deployment Considerations
Overlay Control Plane (L3 Core, no RS)
Selective Advertisements
Multi-Site Packet Walk (BUM)
VXLAN Multi-Site Packet Walk(Bridging)
VXLAN Multi-Site Packet Walk(Routing)
VXLAN Multi-Site 拓扑
VXLAN Multi-Site 配置
VXLAN Multi-Site 双BGW场景
VXLAN Multi-Site PIP和VIP
VXLAN Multi-Site Route-Type 4
VXLAN Multi-Site Route-Type 3
VXLAN Multi-Site Fabric链路故障
VXLAN Multi-Site DCI链路故障
实现VXLAN不同租户间Route Leaking(上期已加,不再单讲)
《思科Nexus 9000 ACI 架构 》
0318
软件定义网络(SDN(X)
不同厂家的SDN
SDN认识的误区
两种不同的网络需求
ACI Data Center Product
Cisco ACI技术解析
SDN市场预测
关于SDN的定义
三大SDN标准化组织
什么是OpenFlow
思科的挑战和机遇
SDN架构核心组件
SDN和OpenFlow解决的问题
OpenFlow的局限
SDN三个主要组件和目标
NFV概述
ETSI NFV 参考架构
NFV和SDN的分工
NFV 架构中 SDN 的应用示例
综合性SDN解决方案
Cisco One 解决方案
Cisco ACI Data Center
部署应用面临的问题
Policy Driven Data Center Approach
ACI Fabric互联矩阵
Application Definition
Example of an “Application”
The Policy Theory
ACI Logical Architecture
Relationship between Consumer and Provider
ACI Fabric Design
Data center network characteristic
Spine-Leaf Architecture
Why Spine and Leaf
IS-IS Fabric Infrastructure Routing
VXLAN Overlay 叠加网络
ACI VXLAN Header
Additional ACI VXLAN Header Details
VXLAN Tunnel Endpoint (VTEP)
ACI Fabric Addressing
ACI Fabric Integrated Overlay
Decoupled Identity,Location, and Policy
Leaf Packet Flow
Distributed Forwarding Control Plane - Station Tables
Layer 2 and Layer 3 Handing
Hardware-based Directed ARP Forwarding
Gratuitous ARP and Device Movement
Forwarding Bounce
ACI Fabric Unicast Forwarding Overview
Fast Re-Route  Unicast
ACI Fabric Multicast Forwarding Overview
Endpoint  Learning & Lookup
EPG Operational Tab - Client Endpoints
EPG Operational Tab - Global Endpoints
Endpoint Identity Location Learning Example
ACI Policy Identification and Enforcement
Nexus 9000 Platform: Two Modes
Merchant and Custom ASICs
Nexus 9508 Hardware Overview
Nexus 9500 Platform System Controller
Nexus 9500 Platform Supervisor
Hardware 8-Slot Modular Chassis Air Flow
Fabric Module – Data Plane Scaling for 8-Slot Chassis
Deployment of Line Cards in the ACI Fabric
Cisco Nexus ACI Modular Line Cards
Cisco Nexus ACI Modular Line Cards - Reference
Cisco Nexus 9300 Spine Platform
Cisco Nexus 9300 Leaf Platform
ACI Customer Bundles Configuration
Switch Installation best practices
0325
什么是APIC
APIC controller is attached in-band
APIC Clustering -Sharding Technology
Effect of Sharding on Reliability
APIC Clustering
RESTful API Overview
Creating an App Network Profile
APIC Hardware Ports
Fabric Initialization & Maintenance
Fabric Login
Fabric GUI overview
Fabric Initialization & Maintenance
ACI Initial Configuration Steps
Management Networks
配置OOB and Inband MGMT
配置NTP
ACI Policy Types
Fabric Policy and Access Policy
面向外部接口配置
配置接口policy
配置接口policy group
配置接口 profile
配置交换机 profile
配置ACI Pools
配置VLANs Pool
EPG Mapped to Multiple Ports and VLANs
配置Physical and External Domain
Concept of Domain
配置Physical Domain
配置Attachable Entity Profile(AEP)
配置AEP with Interface Policy Group
配置vPC in ACI Fabric
ACI 逻辑模型
Application Network Profiles (ANP)
ACI Connection to Outside Network
Extend L2 Domain Out of ACI
Option A Extend EPG
Option B Extend Bridge Domain
ACI L2 External Connection - STP Interaction
ACI Layer 3 outside connections
Border Leaves
Route Distribution within the ACI Fabric
OSPF Peering between ACI and the External Router
OSPF High-Availability Design
Layer 3 Outside Connection with OSPF Example
集成L4-L7 Service Graphs
Service Graph Definition
ACI Terminology
With service graph the operational model changes
How to Use Sevice Graph
Device Definition and Package
0401
清空APIC现有配置
清空leaf1现有配置
清空spine1现有配置
初始化APIC配置
注册Leaf Spine 节点
配置Leaf Spine 节点管理地址
配置Leaf Spine NTP地址
应用层自上而下的设计
应用层整体设计
应用层需求
恢复APIC空配置
创建租户和VRF
创建桥域T1-BD1
创建T1租户HTTP合约
创建Common租户ICMP合约
创建T1租户下T1-ANP
EPG访问关系图
通过vCenter domain注册到APIC
配置Vmware ESXi主机使用APICDVS
配置连接主机的接口AEP
关联EPGVmware vCenter Domain
关联VMEPGPort Group
测试ping Gateway
DC2-N7K2上OSPF 和 Interface的配置
ACI Fabric内开启MP-BGP
根据情况决定创建和N7K连接的端口的AEP
创建L3Out外部网络(L3Out类型的EPG)
与N7K建立OSPF邻居
L3Out EPG调用访问到 EPG NGINX的合约
多租户多层应用互通实现
新增ACIMulti-Pod 理论和实验讲解
《思科存储网络》
0408
SAN, LAN, and Compute
Cisco’s Commitment to FC
Cisco MDS 9706, 9710 and 9718 Product Portfolio
Unmatched Flexibility with Multi-Protocol Innovations
Boosting Scale for SAN InfrastructuresThousands of Devices
Cisco MDS 9710 Multilayer Director
Cisco MDS 9000 16G Fibre Channel Family
MDS 9250i Multiservice Fabric Switch
Cisco Nexus 5672UP-16G
Evolving the Datacenter in Phases
MDS 9718 USE CASE
CISCO 40G QSFP BIDITRANSCEIVERS
40GE ISL USE CASE
Large-Scale Converged Ethernet Deployments
The Power of Ecosystem
存储技术发展史
什么是DAS,NAS 和SAN
硬盘接口协议
NAS架构
Block I/O vs. File I/O
Block-Based Protocols
SCSI Overview
SCSI 协议
Storage Area Network (SAN)
存储协议技术示意图
Fibre Channel Overview
标准的FC端口类型
Fibre Channel物理地址
编址 FCID
知名地址
N_Port Virtualization(NPIV)
N Port Virtualization(NPV)
NPV与NPIV关系
FC帧头部结构
FC头部字段详细介绍
Fibre Channel FC-2 层次
Fibre Channel帧结构
以太网流控
Fibre Channel Flow Control
Fabric Login(FLOGI)
Port Login(PLOGI)
Process Login(PRLI)
Fabric Short Path First
Load Balancing over equal cost paths
Common Design Practice - Redundant Fabrics
Virtual SANs (VSANs)
Two Primary Functions of VSANs
VSANs and Zones
FC 配置实验部分
0415
The Evolving Data Center Architecture
FC over Ethernet (FCoE)
FCoE Enables Unified Fabric
Before I/O Consolidation
After I/O Consolidation
High-Speed Ethernet Server Adoption
使用PAUSE技术实现无丢包( 802.3x)
Data Center Bridging四大组成技术
Priority Flow Control
Enhanced Transmission Selection
DCBX: Data Center Bridging eXchange
BCN/QCN
FCoE Mapping
FCoE的封装
FCoE与FIP
Fibre Channel Forwarder
Fibre Channel Port Types
FIP简介
FC   FCoE 配置实例对比
FIP Virtual Link Establishment
FIP VLAN Discovery
FIP VLAN Request
FIP VLAN Response
FIP FCF Discovery
FIP FCF discovery solicitation
FIP Virtual Link Instantiation
FIP FLOGI Request
FIP FLOGI ACC
FIP Virtual Link Maintenance
FIP KeepAlive
FCF MAC地址
FPMAs and SPMAs
FCoE接口示意图
What is FCoE-NPV
FCoE-NPV configuration Details
Single Hop Design-OverView
Single Hop Design - The CNA Point of View
Single Hop Design- The FCoE VLAN  
Single Hop Design - Converged Links and vPC
Multi - Hop Design
FCoE 配置实验部分
配置VFC
配置N5K1和N5K3之间的FCoE 链路
配置N5K1和N5K3 之间的zone
《思科UCS统一计算系统》
0422
服务器部署:机架式
服务器部署:刀片式
刀片式服务器部属:管理
刀片式服务器部属:应用
服务器部署虚拟化
Cisco的解决方案
传统刀片服务器架构
思科统一计算系统UCS
重要革新之一:嵌入式管理
重要革新之二:Unified Fabric
重要革新之三:优化的虚拟化环境
重要革新之四:内存扩展技术
重要革新之五:无状态服务器
重要革新之六:混合服务器
UCS组件简介
UCS 系列整体架构
UCS Fabric Interconnects
Fabric Interconnects-6300系列
Fabric Interconnects-6400系列
Fabric Extender
Fabric Extender – 2304XP
Fabric Extender详细介绍
Blade Servers: UCS B-Series
Chassis – 5108
UCS系统背面
UCS系统正面
UCS架构物理视图
UCS架构逻辑视图
Blade Servers: UCS B-Series
Rack Servers: UCS C-Series
Server Adaper
Cisco UCS VIC 1340
Cisco UCS VIC 1227
UCS S3260 Storage Server
Cisco UCS E-Series Servers
UCS模拟器安装与初始化
UCS模拟器下载地址
UCS模拟器初始化
UCS模拟器基本选项
配置Fabric Interconnect
配置FI的高可用性
登陆UCSM
0429
高可用性FI连接
高可用性集群
高可用性集群初始化
Equipment面板
Servers面板
LAN面板
SAN面板
VM面板
Admin面板
Global Policies
Chassis Discovery Policy
Power Policy
配置DNS
配置时区与NTP
配置Server Port
发现B200M2
Ethernet End Host Mode
disjoint layer-2
Soft-Pinning
Hard-Pinning
EHM发送规则
Ethernet Switching Mode
Uplink配置指南
UCSM创建VLAN
创建Port-Channel(FI-A)
配置LAN Uplinks Manager
UCS支持的存储
FC End-Host Mode
创建VSAN与VLAN
设备间FC链路配置
配置FI-A Uplink
配置FCoE Uplink
创建UUID Pools
创建MAC Address Pools
创建WWNN Pools
创建WWPN Pools
创建Management IP Address Pool
创建Server Pools
0506
Service Profile
Opt-In Models
Identify Service Profile
Storage
Networking
SAN  Connectivity
vNIC/vHBA Placement
vMedia Policy
Server Boot Order
确定Target PWWN
Maintenance Policy
Operational Policies
关联Service Profile到服务器
N5K3 Zone配置
Open-E 配置
SANBOOT 启动成功
Service Profile Template
组织关系与策略设计
两种类型的Templates
安装B200M2 ESXi
配置B200M2 vSwitch1
思科数据中心3.0更新公告:视频汇总网盘目录里(DC优质群公告有链接地址)
如何快速有效学习思科数据中心3.0:视频汇总网盘目录里
下列扩展课视频课程(限直通车学员)需要自己额外时间学习
VMware vSphere 7.0虚拟化 ---- 上正课前必学课程!
VMware NSX网络虚拟化
Cisco HyperFlex超融合
《开源KVM虚拟化》
LISP in SDA  ----  推荐学习
《云管理平台OpenStack部署》
F5 应用交付网络2020版》  ---- 重点推荐学习
Docker&Kubernetes 2021版》现已加入直通车扩展课程 ---- 重点推荐学习
SDNOpenFlow + OpenDaylight 2022版》最新录制
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