玩转华为ENSP模拟器系列 | 两个网关之间通过IPSec VdPdNd互联并通过总部IPSec网关进行NAT后上网

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目标

本例介绍总部的出口网关同时为NAT设备,总部和分支机构都通过总部网关上网时如何建立IPSec隧道。

组网需求

图1所示,某企业分为总部(HQ)和两个分支机构(Branch 1和Branch 2)。组网如下:

  • 分支机构1和分支机构2分别通过FW_B和FW_C与Internet相连。
  • FW_A和FW_B以及FW_A和FW_C相互路由可达。
  • 总部FW_A和分支FW_B为固定公网地址,FW_C为动态公网IP地址。
  • FW_A为NAT网关。

要求实现如下组网需求:

  • 分支机构PC2、PC3能与总部PC1之间进行安全通信。
  • FW_A、FW_B以及FW_A、FW_C之间分别建立IPSec隧道。FW_B、FW_C不直接建立任何IPSec连接。
  • PC1可以直接访问公网,PC2和PC3通过总部网关访问公网。

配置思路

  1. 完成FW_A、FW_B和FW_C的接口、安全策略、路由等基本配置。
  1. 在FW_A、FW_B和FW_C上完成IPSec的配置。
  1. 在FW_A上完成源NAT的配置。总部和分支机构访问Internet的数据流都要经过NAT转换,而经过IPSec隧道的数据流不需要经过NAT转换,故要在NAT配置中进行区分。

操作步骤

  1. 配置FW_A的基础配置。

    1. 配置接口IP地址。
    2. <sysname> system-view
      [sysname] sysname FW_A
      [FW_A] interface gigabitethernet 1 / 0 / 3
      [FW_A-GigabitEthernet1/0/3] ip address 10.1.1.1  24
      [FW_A-GigabitEthernet1/0/3] quit [FW_A] interface gigabitethernet 1 / 0 / 1
      [FW_A-GigabitEthernet1/0/1] ip address 1.1.3.1  24
      [FW_A-GigabitEthernet1/0/1] quit
      复制代码
    3. 将接口加入相应的安全区域。
    4. [FW_A] firewall zone trust
      [FW_A-zone-trust] add interface gigabitethernet 1 / 0 / 3
      [FW_A-zone-trust] quit [FW_A] firewall zone untrust
      [FW_A-zone-untrust] add interface gigabitethernet 1 / 0 / 1
      [FW_A-zone-untrust] quit
      复制代码
    5. 配置Trust域与Untrust域之间的域间安全策略。
    6. [FW_A] security-policy
      [FW_A-policy-security] rule name policy1
      [FW_A-policy-security-rule-policy1] source-zone trust
      [FW_A-policy-security-rule-policy1] destination-zone untrust
      [FW_A-policy-security-rule-policy1] source-address 10.1.1.0  24
      [FW_A-policy-security-rule-policy1] destination-address 10.1.2.0  24
      [FW_A-policy-security-rule-policy1] destination-address 10.1.3.0  24
      [FW_A-policy-security-rule-policy1] action permit
      [FW_A-policy-security-rule-policy1] quit [FW_A-policy-security] rule name policy2
      [FW_A-policy-security-rule-policy2] source-zone untrust
      [FW_A-policy-security-rule-policy2] destination-zone trust
      [FW_A-policy-security-rule-policy2] source-address 10.1.2.0  24
      [FW_A-policy-security-rule-policy2] source-address 10.1.3.0  24
      [FW_A-policy-security-rule-policy2] destination-address 10.1.1.0  24
      [FW_A-policy-security-rule-policy2] action permit
      [FW_A-policy-security-rule-policy2] quit
      复制代码
    7. 配置Untrust域与Local域之间的域间安全策略。
    8. [FW_A-policy-security] rule name policy3
      [FW_A-policy-security-rule-policy3] source-zone local
      [FW_A-policy-security-rule-policy3] destination-zone untrust
      [FW_A-policy-security-rule-policy3] source-address 1.1.3.1  32
      [FW_A-policy-security-rule-policy3] action permit
      [FW_A-policy-security-rule-policy3] quit [FW_A-policy-security] rule name policy4
      [FW_A-policy-security-rule-policy4] source-zone untrust
      [FW_A-policy-security-rule-policy4] destination-zone local
      [FW_A-policy-security-rule-policy4] destination-address 1.1.3.1  32
      [FW_A-policy-security-rule-policy4] action permit
      [FW_A-policy-security-rule-policy4] quit
      [FW_A-policy-security] quit
      复制代码
    9. 配置到达分支机构的静态路由,此处假设下一跳地址为1.1.3.2。
    10. [FW_A] ip route- static  0.0.0.0  0.0.0.0  1.1.3.2
      复制代码
  1. 在FW_A上配置IPSec策略。

    1. 定义被保护的数据流。

      1. 配置高级ACL 3000,定义总部到网络B的数据流。
      2. [FW_A] acl 3000
        [FW_A-acl-adv-3000] rule 5 permit ip source 10.1.1.0  0.0.0.255 destination 10.1.2.0  0.0.0.255
        [FW_A-acl-adv-3000] rule 10 permit ip source 10.1.1.0  0.0.0.255 destination 10.1.3.0  0.0.0.255
        [FW_A-acl-adv-3000] quit
        复制代码
    2. 配置IPSec安全提议tran1。采用默认参数。

    3. [FW_A] ipsec proposal tran1
      [FW_A-ipsec-proposal-tran1] esp authentication-algorithm sha2- 256
      [FW_A-ipsec-proposal-tran1] esp encryption-algorithm aes- 256
      [FW_A-ipsec-proposal-tran1] quit
      复制代码
    4. 配置IKE安全提议。采用默认参数。

    5. [FW_A] ike proposal 10
      [FW_A-ike-proposal-10] authentication-method pre-share
      [FW_A-ike-proposal-10] prf hmac-sha2- 256
      [FW_A-ike-proposal-10] encryption-algorithm aes- 256
      [FW_A-ike-proposal-10] dh group2
      [FW_A-ike-proposal-10] integrity-algorithm hmac-sha2- 256
      [FW_A-ike-proposal-10] quit
      复制代码
    6. 配置IKE Peer。

    7. [FW_A] ike peer c
      [FW_A-ike-peer-c] ike-proposal 10
      [FW_A-ike-peer-c] pre-shared-key Test ! 1234
      [FW_A-ike-peer-c] quit
      复制代码
    8. 配置IPSec策略模板temp。

    9. [FW_A] ipsec policy-template temp 1
      [FW_A-ipsec-policy-templet-temp-1] security acl 3000
      [FW_A-ipsec-policy-templet-temp-1] proposal tran1
      [FW_A-ipsec-policy-templet-temp-1] ike-peer c
      [FW_A-ipsec-policy-templet-temp-1] quit
      复制代码
    10. 创建IPSec策略map1,在安全策略中引用安全策略模板temp。

    11. [FW_A] ipsec policy map1 10 isakmp template temp
      复制代码
    12. 在接口GE1/0/1上应用IPSec策略map1。

    13. [FW_A] interface gigabitethernet 1 / 0 / 1
      [FW_A-GigabitEthernet1/0/1] ipsec policy map1
      [FW_A-GigabitEthernet1/0/1] quit
      复制代码
  1. FW_A上配置NAT。
[FW_A] nat-policy
[FW_A-policy-nat] rule name policy_nat1
[FW_A-policy-nat-rule-policy_nat1] source-zone trust
[FW_A-policy-nat-rule-policy_nat1] destination-zone untrust
[FW_A-policy-nat-rule-policy_nat1] source-address 10.1.1.0  24
[FW_A-policy-nat-rule-policy_nat1] destination-address 10.1.2.0  24
[FW_A-policy-nat-rule-policy_nat1] destination-address 10.1.3.0  24
[FW_A-policy-nat-rule-policy_nat1] action no-nat
[FW_A-policy-nat-rule-policy_nat1] quit
[FW_A-policy-nat] rule name policy_nat2
[FW_A-policy-nat-rule-policy_nat2] source-zone trust
[FW_A-policy-nat-rule-policy_nat2] destination-zone untrust
[FW_A-policy-nat-rule-policy_nat2] source-address 10.1.1.0  24
[FW_A-policy-nat-rule-policy_nat2] action nat easy-ip
[FW_A-policy-nat-rule-policy_nat2] quit
[FW_A-policy-nat] quit
复制代码
  1. 配置FW_B的基础配置。

    1. 配置接口IP地址,并将接口加入域。 请根据图1的数据配置接口IP地址。 将接口GE1/0/3加入Trust区域,接口GE1/0/1加入Untrust区域。 详细步骤可参见FW_A的配置。

    2. 配置域间安全策略。

      1. 配置Trust域与Untrust域之间的域间安全策略。
      2. [FW_B] security-policy
        [FW_B-policy-security] rule name policy1
        [FW_B-policy-security-rule-policy1] source-zone trust
        [FW_B-policy-security-rule-policy1] destination-zone untrust
        [FW_B-policy-security-rule-policy1] source-address 10.1.2.0  24
        [FW_B-policy-security-rule-policy1] destination-address 10.1.1.0  24
        [FW_B-policy-security-rule-policy1] destination-address 10.1.3.0  24
        [FW_B-policy-security-rule-policy1] action permit
        [FW_B-policy-security-rule-policy1] quit [FW_B-policy-security] rule name policy2
        [FW_B-policy-security-rule-policy2] source-zone untrust
        [FW_B-policy-security-rule-policy2] destination-zone trust
        [FW_B-policy-security-rule-policy2] source-address 10.1.1.0  24
        [FW_B-policy-security-rule-policy2] source-address 10.1.3.0  24
        [FW_B-policy-security-rule-policy2] destination-address 10.1.2.0  24
        [FW_B-policy-security-rule-policy2] action permit
        [FW_B-policy-security-rule-policy2] quit
        复制代码
      3. 配置Untrust域与Local域之间的域间安全策略。
      4. [FW_B-policy-security] rule name policy3
        [FW_B-policy-security-rule-policy3] source-zone local
        [FW_B-policy-security-rule-policy3] destination-zone untrust
        [FW_B-policy-security-rule-policy3] source-address 1.1.5.1  32
        [FW_B-policy-security-rule-policy3] destination-address 1.1.3.1  32
        [FW_B-policy-security-rule-policy3] action permit
        [FW_B-policy-security-rule-policy3] quit [FW_B-policy-security] rule name policy4
        [FW_B-policy-security-rule-policy4] source-zone untrust
        [FW_B-policy-security-rule-policy4] destination-zone local
        [FW_B-policy-security-rule-policy4] source-address 1.1.3.1  32
        [FW_B-policy-security-rule-policy4] destination-address 1.1.5.1  32
        [FW_B-policy-security-rule-policy4] action permit
        [FW_B-policy-security-rule-policy4] quit
        [FW_B-policy-security] quit
        复制代码
    3. 配置达到总部和其他分支机构的静态路由。

    4. [FW_B] ip route- static  10.1.0.0  255.255.0.0  GigabiteEthernet  1 / 0 / 1
      复制代码
  1. 在FW_B上配置IPSec策略,并在接口上应用此安全策略。

    1. 定义被保护的数据流。
    2. [FW_B] acl 3000
      [FW_B-acl-adv-3000] rule 5 permit ip source 10.1.2.0  0.0.0.255 destination 10.1.1.0  0.0.0.255
      [FW_B-acl-adv-3000] quit
      复制代码
    3. 配置IPSec安全提议tran1。采用默认参数。
    4. [FW_B] ipsec proposal tran1
      [FW_B-ipsec-proposal-tran1] esp authentication-algorithm sha2- 256
      [FW_B-ipsec-proposal-tran1] esp encryption-algorithm aes- 256
      [FW_B-ipsec-proposal-tran1] quit
      复制代码
    5. 配置IKE安全提议。采用默认参数。
    6. [FW_B] ike proposal 10
      [FW_B-ike-proposal-10] authentication-method pre-share
      [FW_B-ike-proposal-10] prf hmac-sha2- 256
      [FW_B-ike-proposal-10] encryption-algorithm aes- 256
      [FW_B-ike-proposal-10] dh group2
      [FW_B-ike-proposal-10] integrity-algorithm hmac-sha2- 256  
      [FW_B-ike-proposal-10] quit
      复制代码
    7. 配置IKE Peer。
    8. [FW_B] ike peer a
      [FW_B-ike-peer-a] ike-proposal 10
      [FW_B-ike-peer-a] remote-address 1.1.3.1
      [FW_B-ike-peer-a] pre-shared-key Test ! 1234
      [FW_B-ike-peer-a] quit
      复制代码
    9. 配置IPSec策略map1。
    10. [FW_B] ipsec policy map1 10 isakmp
      [FW_B-ipsec-policy-isakmp-map1-10] security acl 3000
      [FW_B-ipsec-policy-isakmp-map1-10] proposal tran1
      [FW_B-ipsec-policy-isakmp-map1-10] ike-peer a
      [FW_B-ipsec-policy-isakmp-map1-10] quit
      复制代码
    11. 在接口GE1/0/1上应用IPSec策略map1。
    12. [FW_B] interface gigabitethernet 1 / 0 / 1
      [FW_B-GigabitEthernet1/0/1] ipsec policy map1
      [FW_B-GigabitEthernet1/0/1] quit
      复制代码
  1. 配置FW_C。 详细配置请参见FW_B。

结果验证

  1. 配置完成后,PC1在任何时候都可以访问公网,可以ping通FW_B的1.1.5.1,同时在FW_A上可以查看NAT转换session表项。
<FW_A> display firewall session table
 Current Total Sessions : 5
  icmp  VPN:public --> public 10.1.1.2:61251[1.1.3.1:2048]-->1.1.5.1:2048
  icmp  VPN:public --> public 10.1.1.2:62019[1.1.3.1:2049]-->1.1.5.1:2048
  icmp  VPN:public --> public 10.1.1.2:62275[1.1.3.1:2050]-->1.1.5.1:2048
  icmp  VPN:public --> public 10.1.1.2:62531[1.1.3.1:2051]-->1.1.5.1:2048
  icmp  VPN:public --> public 10.1.1.2:62787[1.1.3.1:2052]-->1.1.5.1:2048
复制代码
  1. PC2在任何时候可以访问到公网,可以ping通公网的IP地址(假设为1.1.6.1),同时在FW_A上可以查看NAT转换session表项。
<FW_A> display firewall session table 
Current Total Sessions : 5
  icmp  VPN:public --> public 10.1.2.2:61251[1.1.3.1:2053]-->1.1.6.1:2048
  icmp  VPN:public --> public 10.1.2.2:62019[1.1.3.1:2054]-->1.1.6.1:2048
  icmp  VPN:public --> public 10.1.2.2:62275[1.1.3.1:2055]-->1.1.6.1:2048
  icmp  VPN:public --> public 10.1.2.2:62531[1.1.3.1:2056]-->1.1.6.1:2048
  icmp  VPN:public --> public 10.1.2.2:62787[1.1.3.1:2057]-->1.1.6.1:2048
复制代码
  1. PC2发起访问,之后PC1与PC2之间可以相互访问。
  1. 总部防火墙FW_A上可以查看到对应的IKE SA。
<FW_A> display ike sa      

Ike sa information :                                    
    Conn-ID        Peer          VPN   Flag(s)     Phase                 
  ---------------------------------------------------------------  
     83887864      1.1.5.1             RD|A        v2:2        
     83887652      1.1.5.1             RD|A        v2:1      
                                                                                
  Number of SA entries  : 2                                                     
                                                                                
  Number of SA entries of all cpu : 2                                           
                                                                                
  Flag Description:                                                             
  RD--READY   ST--STAYALIVE   RL--REPLACED   FD--FADING   TO--TIMEOUT           
  HRT--HEARTBEAT   LKG--LAST KNOWN GOOD SEQ NO.   BCK--BACKED UP                
  M--ACTIVE   S--STANDBY   A--ALONE  NEG--NEGOTIATING
复制代码
  1. 分支上FW_B可以查看到对端为总部的IKE SA,FW_B是发起方,标志位为ST。
<FW_B> display ike sa

Ike sa information :                                    
    Conn-ID        Peer          VPN   Flag(s)     Phase                 
  ---------------------------------------------------------------  
     62887864      1.1.3.1             RD|A        v2:2      
     62887652      1.1.3.1             RD|A        v2:1  
                                                                                
  Number of SA entries  : 2                                                     
                                                                                
  Number of SA entries of all cpu : 2                                           
                                                                                
  Flag Description:                                                             
  RD--READY   ST--STAYALIVE   RL--REPLACED   FD--FADING   TO--TIMEOUT           
  HRT--HEARTBEAT   LKG--LAST KNOWN GOOD SEQ NO.   BCK--BACKED UP                
  M--ACTIVE   S--STANDBY   A--ALONE  NEG--NEGOTIATING
复制代码
  1. 总部防火墙FW_A上可以查看到一对双向的IPSec SA,对应分支FW_B。
<FW_A> display ipsec sa brief 
Current ipsec sa num:2

Spu board slot 1, cpu 1 ipsec sa information:                                   
Number of SAs:2                                                              
    Src address   Dst address     SPI      VPN  Protocol     Algorithm       
------------------------------------------------------------------------------- 
     1.1.5.1        1.1.3.1    3923280450        ESP       E:AES-256 A:SHA2_256_128 
     1.1.3.1        1.1.5.1    787858613         ESP       E:AES-256 A:SHA2_256_128 
复制代码
  1. 分支节点FW_B上可以查看到一对双向IPSec SA。
<FW_B> display ipsec sa brief 
Current ipsec sa num:2

Spu board slot 1, cpu 1 ipsec sa information:                                   
Number of SAs:2                                                              
    Src address   Dst address     SPI      VPN  Protocol     Algorithm       
------------------------------------------------------------------------------- 
     1.1.3.1        1.1.5.1    787858613          ESP       E:AES-256 A:SHA2_256_128 
     1.1.5.1        1.1.3.1    3923280450         ESP       E:AES-256 A:SHA2_256_128 


 

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