Netflow Forward
These scenarios show how to configure and use Netflow to collect and export TCP forwarded flows. Different NAT topologies are described.
Netflow Without NAT
Description
Simple scenario without NAT configuration.
Scenario
Step 1: Set the following configuration in DUT0 :
set interfaces ethernet eth0 address 10.0.0.2/24 set interfaces ethernet eth0 flow egress selector TCP_SEL set interfaces ethernet eth0 flow ingress selector TCP_SEL set interfaces ethernet eth1 address 20.0.0.2/24 set system conntrack app-detect set system login user admin authentication encrypted-password '$6$GSjsCj8gHLv$/VcqU6FLi6CT2Oxn0MJQ2C2tqnRDrYKNF8HIYWJp68nvXvPdFccDsT04.WtigUONbKYrgKg8d6rEs8PjljMkH0' set system netflow app-id set system netflow destination 10.0.0.1 set system netflow engine-id 1111 set traffic selector TCP_SEL rule 1 protocol tcp
Step 2: Set the following configuration in DUT1 :
set interfaces ethernet eth0 address 10.0.0.1/24 set protocols static route 0.0.0.0/0 next-hop 10.0.0.2 set system conntrack app-detect set system login user admin authentication encrypted-password '$6$GSjsCj8gHLv$/VcqU6FLi6CT2Oxn0MJQ2C2tqnRDrYKNF8HIYWJp68nvXvPdFccDsT04.WtigUONbKYrgKg8d6rEs8PjljMkH0'
Step 3: Set the following configuration in DUT2 :
set interfaces ethernet eth0 address 20.0.0.1/24 set protocols static route 0.0.0.0/0 next-hop 20.0.0.2 set system login user admin authentication encrypted-password '$6$GSjsCj8gHLv$/VcqU6FLi6CT2Oxn0MJQ2C2tqnRDrYKNF8HIYWJp68nvXvPdFccDsT04.WtigUONbKYrgKg8d6rEs8PjljMkH0'
Step 4: Run command system conntrack clear at DUT1.
Step 5: Ping IP address 10.0.0.1 from DUT0:
admin@DUT0$ ping 10.0.0.1 count 1 size 56 timeout 1Show output
PING 10.0.0.1 (10.0.0.1) 56(84) bytes of data. 64 bytes from 10.0.0.1: icmp_seq=1 ttl=64 time=0.387 ms --- 10.0.0.1 ping statistics --- 1 packets transmitted, 1 received, 0% packet loss, time 0ms rtt min/avg/max/mdev = 0.387/0.387/0.387/0.000 ms
Step 6: Ping IP address 20.0.0.1 from DUT0:
admin@DUT0$ ping 20.0.0.1 count 1 size 56 timeout 1Show output
PING 20.0.0.1 (20.0.0.1) 56(84) bytes of data. 64 bytes from 20.0.0.1: icmp_seq=1 ttl=64 time=0.487 ms --- 20.0.0.1 ping statistics --- 1 packets transmitted, 1 received, 0% packet loss, time 0ms rtt min/avg/max/mdev = 0.487/0.487/0.487/0.000 ms
Step 7: Initiate a tcp connection from DUT1 to DUT2 and try to send some messages between both endpoints
admin@DUT2$ monitor test connection server 8080 tcp admin@DUT1$ monitor test connection client 20.0.0.1 8080 tcp
Step 8: Run command system netflow show flows detailed at DUT0 and check if output matches the following regular expressions:
2\s+3\s+10.0.0.1:\d+\s+20.0.0.1:\d+\s*\d*\s*\d+[^\[]*\[L4:8080\]Show output
------------------------------------------------------------------------------------------ Field Description ------------------------------------------------------------------------------------------ # Numeric flow identifier hash Hash of the flow a Shows if the flow is pending of being exported iif Input interface oif Output interface src Source IP:PORT dst Destination IP:PORT protocol Protocol identifier nexthop Next-hop [Layer 4:Port] tos Type of service identificator tcpflags TCP flags options Optional IP options tcpoptions TCP Options (MSS, Window Scaling, Selective Acknowledgements, Timestamps, Nop) pkts Packets counter bytes Bytes counter ts_first Timestamp of fist packet that passed through the flow ts_last Timestamp of last packet that passed through the flow ---------------------------------------------------------------------------------------------------------------------------------------------------- # hash a iif oif src dst protocol nexthop tos tcpflags options tcpoptions pkts bytes ts_first ts_last ---------------------------------------------------------------------------------------------------------------------------------------------------- 1 0351 0 3 2 20.0.0.1:8080 10.0.0.1:35714 35714 0.0.0.0[L4:8080] 0x0 0x1b 0x0 0xf1000000 11 680 397 28 2 e7b8 0 2 3 10.0.0.1:35714 20.0.0.1:8080 8080 0.0.0.0[L4:8080] 0x0 0x1b 0x0 0xf1000000 12 732 397 28
Step 9: Run command system netflow show flows detailed at DUT0 and check if output matches the following regular expressions:
3\s+2\s+20.0.0.1:\d+\s+10.0.0.1:\d+\s*\d*\s*\d+[^\[]*\[L4:8080\]Show output
------------------------------------------------------------------------------------------ Field Description ------------------------------------------------------------------------------------------ # Numeric flow identifier hash Hash of the flow a Shows if the flow is pending of being exported iif Input interface oif Output interface src Source IP:PORT dst Destination IP:PORT protocol Protocol identifier nexthop Next-hop [Layer 4:Port] tos Type of service identificator tcpflags TCP flags options Optional IP options tcpoptions TCP Options (MSS, Window Scaling, Selective Acknowledgements, Timestamps, Nop) pkts Packets counter bytes Bytes counter ts_first Timestamp of fist packet that passed through the flow ts_last Timestamp of last packet that passed through the flow ---------------------------------------------------------------------------------------------------------------------------------------------------- # hash a iif oif src dst protocol nexthop tos tcpflags options tcpoptions pkts bytes ts_first ts_last ---------------------------------------------------------------------------------------------------------------------------------------------------- 1 0351 0 3 2 20.0.0.1:8080 10.0.0.1:35714 35714 0.0.0.0[L4:8080] 0x0 0x1b 0x0 0xf1000000 11 680 416 47 2 e7b8 0 2 3 10.0.0.1:35714 20.0.0.1:8080 8080 0.0.0.0[L4:8080] 0x0 0x1b 0x0 0xf1000000 12 732 416 47
Step 10: Run command system netflow show status at DUT0 and check if output matches the following regular expressions:
Protocol\sversion\s10\s\(ipfix\) Export:.*Errors 0 pkts sock0:\s127.0.0.1:2055,.*err: sndbuf reached 0, connect 0, cberr \d+, other 0Show output
ipt_NETFLOW 2.6, srcversion AF9266EDD4076E96F54FE6F; dir Protocol version 10 (ipfix), refresh-rate 20, timeout-rate 30, (templates 0, active 1). Timeouts: active 1800s, inactive 15s. Maxflows 2000000 Flows: active 2 (peak 2 reached 0d0h0m ago), mem 492K, worker delay 25/250 [1..25] (72 ms, 0 us, 2:0 [cpu3]). Hash: size 62967 (mem 491K), metric 1.00 [1.00, 1.00, 1.00]. InHash: 23 pkt, 1 K, InPDU 0, 0. Rate: 0 bits/sec, 0 packets/sec; Avg 1 min: 239 bps, 0 pps; 5 min: 59 bps, 0 pps cpu# pps; <search found new [metric], trunc frag alloc maxflows>, traffic: <pkt, bytes>, drop: <pkt, bytes> Total 0; 0 51 4 [1.00], 0 0 0 0, traffic: 43, 0 MB, drop: 0, 0 K cpu0 0; 0 35 2 [1.00], 0 0 0 0, traffic: 25, 0 MB, drop: 0, 0 K cpu1 0; 0 10 1 [1.00], 0 0 0 0, traffic: 11, 0 MB, drop: 0, 0 K cpu2 0; 0 6 1 [1.00], 0 0 0 0, traffic: 7, 0 MB, drop: 0, 0 K cpu3 0; 0 0 0 [1.00], 0 0 0 0, traffic: 0, 0 MB, drop: 0, 0 K Export: Rate 117 bytes/s; Total 6 pkts, 0 MB, 0 flows; Errors 0 pkts; Traffic lost 20 pkts, 1 Kbytes, 2 flows. sock0: 127.0.0.1:2055, sndbuf 212992, filled 1, peak 1; err: sndbuf reached 0, connect 0, cberr 0, other 0
Netflow With SNAT
Description
Scenario with SNAT in DUT0 WAN interface (eth1).
Scenario
Step 1: Set the following configuration in DUT0 :
set interfaces ethernet eth0 address 10.0.0.2/24 set interfaces ethernet eth0 flow egress selector TCP_SEL set interfaces ethernet eth0 flow ingress selector TCP_SEL set interfaces ethernet eth1 address 20.0.0.2/24 set interfaces ethernet eth1 traffic nat source rule 1 address masquerade set interfaces ethernet eth1 traffic nat source rule 1 selector TCP_SEL set system conntrack app-detect set system login user admin authentication encrypted-password '$6$GSjsCj8gHLv$/VcqU6FLi6CT2Oxn0MJQ2C2tqnRDrYKNF8HIYWJp68nvXvPdFccDsT04.WtigUONbKYrgKg8d6rEs8PjljMkH0' set system netflow app-id set system netflow destination 10.0.0.1 set system netflow engine-id 1111 set traffic selector TCP_SEL rule 1 protocol tcp
Step 2: Set the following configuration in DUT1 :
set interfaces ethernet eth0 address 10.0.0.1/24 set protocols static route 0.0.0.0/0 next-hop 10.0.0.2 set system conntrack app-detect set system login user admin authentication encrypted-password '$6$GSjsCj8gHLv$/VcqU6FLi6CT2Oxn0MJQ2C2tqnRDrYKNF8HIYWJp68nvXvPdFccDsT04.WtigUONbKYrgKg8d6rEs8PjljMkH0'
Step 3: Set the following configuration in DUT2 :
set interfaces ethernet eth0 address 20.0.0.1/24 set system login user admin authentication encrypted-password '$6$GSjsCj8gHLv$/VcqU6FLi6CT2Oxn0MJQ2C2tqnRDrYKNF8HIYWJp68nvXvPdFccDsT04.WtigUONbKYrgKg8d6rEs8PjljMkH0'
Step 4: Run command system conntrack clear at DUT1.
Step 5: Ping IP address 10.0.0.1 from DUT0:
admin@DUT0$ ping 10.0.0.1 count 1 size 56 timeout 1Show output
PING 10.0.0.1 (10.0.0.1) 56(84) bytes of data. 64 bytes from 10.0.0.1: icmp_seq=1 ttl=64 time=75.3 ms --- 10.0.0.1 ping statistics --- 1 packets transmitted, 1 received, 0% packet loss, time 0ms rtt min/avg/max/mdev = 75.279/75.279/75.279/0.000 ms
Step 6: Ping IP address 20.0.0.1 from DUT0:
admin@DUT0$ ping 20.0.0.1 count 1 size 56 timeout 1Show output
PING 20.0.0.1 (20.0.0.1) 56(84) bytes of data. 64 bytes from 20.0.0.1: icmp_seq=1 ttl=64 time=0.474 ms --- 20.0.0.1 ping statistics --- 1 packets transmitted, 1 received, 0% packet loss, time 0ms rtt min/avg/max/mdev = 0.474/0.474/0.474/0.000 ms
Step 7: Initiate a tcp connection from DUT1 to DUT2 and try to send some messages between both endpoints
admin@DUT2$ monitor test connection server 8080 tcp admin@DUT1$ monitor test connection client 20.0.0.1 8080 tcp
Step 8: Run command system netflow show flows detailed at DUT0 and check if output matches the following regular expressions:
2\s+3\s+10.0.0.1:\d+\s+20.0.0.1:\d+\s*\d*\s*\d+[^\[]*\[L4:8080\]Show output
------------------------------------------------------------------------------------------ Field Description ------------------------------------------------------------------------------------------ # Numeric flow identifier hash Hash of the flow a Shows if the flow is pending of being exported iif Input interface oif Output interface src Source IP:PORT dst Destination IP:PORT protocol Protocol identifier nexthop Next-hop [Layer 4:Port] tos Type of service identificator tcpflags TCP flags options Optional IP options tcpoptions TCP Options (MSS, Window Scaling, Selective Acknowledgements, Timestamps, Nop) pkts Packets counter bytes Bytes counter ts_first Timestamp of fist packet that passed through the flow ts_last Timestamp of last packet that passed through the flow ---------------------------------------------------------------------------------------------------------------------------------------------------- # hash a iif oif src dst protocol nexthop tos tcpflags options tcpoptions pkts bytes ts_first ts_last ---------------------------------------------------------------------------------------------------------------------------------------------------- 1 4847 0 2 3 10.0.0.1:46428 20.0.0.1:8080 8080 0.0.0.0[L4:8080] 0x0 0x1b 0x0 0xf1000000 10 628 376 27 2 948f 0 3 2 20.0.0.1:8080 10.0.0.1:46428 46428 0.0.0.0[L4:8080] 0x0 0x1b 0x0 0xf1000000 9 576 376 27
Step 9: Run command system netflow show flows detailed at DUT0 and check if output matches the following regular expressions:
3\s+2\s+20.0.0.1:\d+\s+10.0.0.1:\d+\s*\d*\s*\d+[^\[]*\[L4:8080\]Show output
------------------------------------------------------------------------------------------ Field Description ------------------------------------------------------------------------------------------ # Numeric flow identifier hash Hash of the flow a Shows if the flow is pending of being exported iif Input interface oif Output interface src Source IP:PORT dst Destination IP:PORT protocol Protocol identifier nexthop Next-hop [Layer 4:Port] tos Type of service identificator tcpflags TCP flags options Optional IP options tcpoptions TCP Options (MSS, Window Scaling, Selective Acknowledgements, Timestamps, Nop) pkts Packets counter bytes Bytes counter ts_first Timestamp of fist packet that passed through the flow ts_last Timestamp of last packet that passed through the flow ---------------------------------------------------------------------------------------------------------------------------------------------------- # hash a iif oif src dst protocol nexthop tos tcpflags options tcpoptions pkts bytes ts_first ts_last ---------------------------------------------------------------------------------------------------------------------------------------------------- 1 4847 0 2 3 10.0.0.1:46428 20.0.0.1:8080 8080 0.0.0.0[L4:8080] 0x0 0x1b 0x0 0xf1000000 10 628 397 48 2 948f 0 3 2 20.0.0.1:8080 10.0.0.1:46428 46428 0.0.0.0[L4:8080] 0x0 0x1b 0x0 0xf1000000 9 576 397 48
Step 10: Run command system netflow show status at DUT0 and check if output matches the following regular expressions:
Protocol\sversion\s10\s\(ipfix\) Export:.*Errors 0 pkts sock0:\s127.0.0.1:2055,.*err: sndbuf reached 0, connect 0, cberr \d+, other 0Show output
ipt_NETFLOW 2.6, srcversion AF9266EDD4076E96F54FE6F; dir Protocol version 10 (ipfix), refresh-rate 20, timeout-rate 30, (templates 0, active 1). Timeouts: active 1800s, inactive 15s. Maxflows 2000000 Flows: active 2 (peak 2 reached 0d0h0m ago), mem 492K, worker delay 25/250 [1..25] (36 ms, 0 us, 2:0 [cpu3]). Hash: size 62967 (mem 491K), metric 1.00 [1.00, 1.00, 1.00]. InHash: 19 pkt, 1 K, InPDU 0, 0. Rate: 0 bits/sec, 0 packets/sec; Avg 1 min: 429 bps, 0 pps; 5 min: 121 bps, 0 pps cpu# pps; <search found new [metric], trunc frag alloc maxflows>, traffic: <pkt, bytes>, drop: <pkt, bytes> Total 0; 0 78 6 [1.00], 0 0 0 0, traffic: 62, 0 MB, drop: 0, 0 K cpu0 0; 0 54 3 [1.00], 0 0 0 0, traffic: 35, 0 MB, drop: 0, 0 K cpu1 0; 0 18 2 [1.00], 0 0 0 0, traffic: 20, 0 MB, drop: 0, 0 K cpu2 0; 0 6 1 [1.00], 0 0 0 0, traffic: 7, 0 MB, drop: 0, 0 K cpu3 0; 0 0 0 [1.00], 0 0 0 0, traffic: 0, 0 MB, drop: 0, 0 K Export: Rate 117 bytes/s; Total 10 pkts, 0 MB, 0 flows; Errors 0 pkts; Traffic lost 43 pkts, 2 Kbytes, 4 flows. sock0: 127.0.0.1:2055, sndbuf 212992, filled 1, peak 1; err: sndbuf reached 0, connect 0, cberr 0, other 0
Netflow With DNAT
Description
Scenario with DNAT in DUT0 LAN interface (eth0).
Scenario
Step 1: Set the following configuration in DUT0 :
set interfaces ethernet eth0 address 10.0.0.2/24 set interfaces ethernet eth0 flow egress selector TCP_SEL set interfaces ethernet eth0 flow ingress selector TCP_SEL set interfaces ethernet eth0 traffic nat destination rule 1 address 20.0.0.1 set interfaces ethernet eth0 traffic nat destination rule 1 selector TCP_SEL set interfaces ethernet eth1 address 20.0.0.2/24 set system conntrack app-detect set system login user admin authentication encrypted-password '$6$GSjsCj8gHLv$/VcqU6FLi6CT2Oxn0MJQ2C2tqnRDrYKNF8HIYWJp68nvXvPdFccDsT04.WtigUONbKYrgKg8d6rEs8PjljMkH0' set system netflow app-id set system netflow destination 10.0.0.1 set system netflow engine-id 1111 set traffic selector TCP_SEL rule 1 protocol tcp
Step 2: Set the following configuration in DUT1 :
set interfaces ethernet eth0 address 10.0.0.1/24 set system conntrack app-detect set system login user admin authentication encrypted-password '$6$GSjsCj8gHLv$/VcqU6FLi6CT2Oxn0MJQ2C2tqnRDrYKNF8HIYWJp68nvXvPdFccDsT04.WtigUONbKYrgKg8d6rEs8PjljMkH0'
Step 3: Set the following configuration in DUT2 :
set interfaces ethernet eth0 address 20.0.0.1/24 set protocols static route 0.0.0.0/0 next-hop 20.0.0.2 set system login user admin authentication encrypted-password '$6$GSjsCj8gHLv$/VcqU6FLi6CT2Oxn0MJQ2C2tqnRDrYKNF8HIYWJp68nvXvPdFccDsT04.WtigUONbKYrgKg8d6rEs8PjljMkH0'
Step 4: Run command system conntrack clear at DUT1.
Step 5: Ping IP address 10.0.0.1 from DUT0:
admin@DUT0$ ping 10.0.0.1 count 1 size 56 timeout 1Show output
PING 10.0.0.1 (10.0.0.1) 56(84) bytes of data. 64 bytes from 10.0.0.1: icmp_seq=1 ttl=64 time=1.62 ms --- 10.0.0.1 ping statistics --- 1 packets transmitted, 1 received, 0% packet loss, time 0ms rtt min/avg/max/mdev = 1.622/1.622/1.622/0.000 ms
Step 6: Ping IP address 20.0.0.1 from DUT0:
admin@DUT0$ ping 20.0.0.1 count 1 size 56 timeout 1Show output
PING 20.0.0.1 (20.0.0.1) 56(84) bytes of data. 64 bytes from 20.0.0.1: icmp_seq=1 ttl=64 time=0.350 ms --- 20.0.0.1 ping statistics --- 1 packets transmitted, 1 received, 0% packet loss, time 0ms rtt min/avg/max/mdev = 0.350/0.350/0.350/0.000 ms
Step 7: Initiate a tcp connection from DUT1 to DUT2 and try to send some messages between both endpoints
admin@DUT2$ monitor test connection server 8080 tcp admin@DUT1$ monitor test connection client 10.0.0.2 8080 tcp
Step 8: Run command system netflow show flows detailed at DUT0 and check if output matches the following regular expressions:
2\s+3\s+10.0.0.1:\d+\s+20.0.0.1:\d+\s*\d*\s*\d+[^\[]*\[L4:8080\]Show output
------------------------------------------------------------------------------------------ Field Description ------------------------------------------------------------------------------------------ # Numeric flow identifier hash Hash of the flow a Shows if the flow is pending of being exported iif Input interface oif Output interface src Source IP:PORT dst Destination IP:PORT protocol Protocol identifier nexthop Next-hop [Layer 4:Port] tos Type of service identificator tcpflags TCP flags options Optional IP options tcpoptions TCP Options (MSS, Window Scaling, Selective Acknowledgements, Timestamps, Nop) pkts Packets counter bytes Bytes counter ts_first Timestamp of fist packet that passed through the flow ts_last Timestamp of last packet that passed through the flow ---------------------------------------------------------------------------------------------------------------------------------------------------- # hash a iif oif src dst protocol nexthop tos tcpflags options tcpoptions pkts bytes ts_first ts_last ---------------------------------------------------------------------------------------------------------------------------------------------------- 1 9b57 0 2 3 10.0.0.1:35288 20.0.0.1:8080 8080 0.0.0.0[L4:8080] 0x0 0x1b 0x0 0xf1000000 10 628 370 27 2 9797 0 3 2 20.0.0.1:8080 10.0.0.1:35288 35288 0.0.0.0[L4:8080] 0x0 0x1b 0x0 0xf1000000 9 576 369 27
Step 9: Run command system netflow show flows detailed at DUT0 and check if output matches the following regular expressions:
3\s+2\s+20.0.0.1:\d+\s+10.0.0.1:\d+\s*\d*\s*\d+[^\[]*\[L4:8080\]Show output
------------------------------------------------------------------------------------------ Field Description ------------------------------------------------------------------------------------------ # Numeric flow identifier hash Hash of the flow a Shows if the flow is pending of being exported iif Input interface oif Output interface src Source IP:PORT dst Destination IP:PORT protocol Protocol identifier nexthop Next-hop [Layer 4:Port] tos Type of service identificator tcpflags TCP flags options Optional IP options tcpoptions TCP Options (MSS, Window Scaling, Selective Acknowledgements, Timestamps, Nop) pkts Packets counter bytes Bytes counter ts_first Timestamp of fist packet that passed through the flow ts_last Timestamp of last packet that passed through the flow ---------------------------------------------------------------------------------------------------------------------------------------------------- # hash a iif oif src dst protocol nexthop tos tcpflags options tcpoptions pkts bytes ts_first ts_last ---------------------------------------------------------------------------------------------------------------------------------------------------- 1 9b57 0 2 3 10.0.0.1:35288 20.0.0.1:8080 8080 0.0.0.0[L4:8080] 0x0 0x1b 0x0 0xf1000000 10 628 389 46 2 9797 0 3 2 20.0.0.1:8080 10.0.0.1:35288 35288 0.0.0.0[L4:8080] 0x0 0x1b 0x0 0xf1000000 9 576 388 46
Step 10: Run command system netflow show status at DUT0 and check if output matches the following regular expressions:
Protocol\sversion\s10\s\(ipfix\) Export:.*Errors 0 pkts sock0:\s127.0.0.1:2055,.*err: sndbuf reached 0, connect 0, cberr \d+, other 0Show output
ipt_NETFLOW 2.6, srcversion AF9266EDD4076E96F54FE6F; dir Protocol version 10 (ipfix), refresh-rate 20, timeout-rate 30, (templates 0, active 1). Timeouts: active 1800s, inactive 15s. Maxflows 2000000 Flows: active 2 (peak 2 reached 0d0h0m ago), mem 492K, worker delay 25/250 [1..25] (100 ms, 0 us, 2:0 [cpu2]). Hash: size 62967 (mem 491K), metric 1.00 [1.00, 1.00, 1.00]. InHash: 19 pkt, 1 K, InPDU 0, 0. Rate: 0 bits/sec, 0 packets/sec; Avg 1 min: 517 bps, 0 pps; 5 min: 169 bps, 0 pps cpu# pps; <search found new [metric], trunc frag alloc maxflows>, traffic: <pkt, bytes>, drop: <pkt, bytes> Total 0; 0 105 8 [1.00], 0 0 0 0, traffic: 81, 0 MB, drop: 0, 0 K cpu0 0; 0 73 4 [1.00], 0 0 0 0, traffic: 45, 0 MB, drop: 0, 0 K cpu1 0; 0 26 3 [1.00], 0 0 0 0, traffic: 29, 0 MB, drop: 0, 0 K cpu2 0; 0 6 1 [1.00], 0 0 0 0, traffic: 7, 0 MB, drop: 0, 0 K cpu3 0; 0 0 0 [1.00], 0 0 0 0, traffic: 0, 0 MB, drop: 0, 0 K Export: Rate 118 bytes/s; Total 14 pkts, 0 MB, 0 flows; Errors 0 pkts; Traffic lost 62 pkts, 3 Kbytes, 6 flows. sock0: 127.0.0.1:2055, sndbuf 212992, filled 1, peak 1; err: sndbuf reached 0, connect 0, cberr 0, other 0
Netflow With SDNAT
Description
Scenario with SNAT in DUT0 WAN interface (eth1)
and DNAT in DUT0 LAN interface (eth0).
Scenario
Step 1: Set the following configuration in DUT0 :
set interfaces ethernet eth0 address 10.0.0.2/24 set interfaces ethernet eth0 flow egress selector TCP_SEL set interfaces ethernet eth0 flow ingress selector TCP_SEL set interfaces ethernet eth0 traffic nat destination rule 1 address 20.0.0.1 set interfaces ethernet eth0 traffic nat destination rule 1 selector TCP_SEL set interfaces ethernet eth1 address 20.0.0.2/24 set interfaces ethernet eth1 traffic nat source rule 1 address masquerade set interfaces ethernet eth1 traffic nat source rule 1 selector TCP_SEL set system conntrack app-detect set system login user admin authentication encrypted-password '$6$GSjsCj8gHLv$/VcqU6FLi6CT2Oxn0MJQ2C2tqnRDrYKNF8HIYWJp68nvXvPdFccDsT04.WtigUONbKYrgKg8d6rEs8PjljMkH0' set system netflow app-id set system netflow destination 10.0.0.1 set system netflow engine-id 1111 set traffic selector TCP_SEL rule 1 protocol tcp
Step 2: Set the following configuration in DUT1 :
set interfaces ethernet eth0 address 10.0.0.1/24 set system conntrack app-detect set system login user admin authentication encrypted-password '$6$GSjsCj8gHLv$/VcqU6FLi6CT2Oxn0MJQ2C2tqnRDrYKNF8HIYWJp68nvXvPdFccDsT04.WtigUONbKYrgKg8d6rEs8PjljMkH0'
Step 3: Set the following configuration in DUT2 :
set interfaces ethernet eth0 address 20.0.0.1/24 set system login user admin authentication encrypted-password '$6$GSjsCj8gHLv$/VcqU6FLi6CT2Oxn0MJQ2C2tqnRDrYKNF8HIYWJp68nvXvPdFccDsT04.WtigUONbKYrgKg8d6rEs8PjljMkH0'
Step 4: Run command system conntrack clear at DUT1.
Step 5: Ping IP address 10.0.0.1 from DUT0:
admin@DUT0$ ping 10.0.0.1 count 1 size 56 timeout 1Show output
PING 10.0.0.1 (10.0.0.1) 56(84) bytes of data. 64 bytes from 10.0.0.1: icmp_seq=1 ttl=64 time=105 ms --- 10.0.0.1 ping statistics --- 1 packets transmitted, 1 received, 0% packet loss, time 0ms rtt min/avg/max/mdev = 104.504/104.504/104.504/0.000 ms
Step 6: Ping IP address 20.0.0.1 from DUT0:
admin@DUT0$ ping 20.0.0.1 count 1 size 56 timeout 1Show output
PING 20.0.0.1 (20.0.0.1) 56(84) bytes of data. 64 bytes from 20.0.0.1: icmp_seq=1 ttl=64 time=0.400 ms --- 20.0.0.1 ping statistics --- 1 packets transmitted, 1 received, 0% packet loss, time 0ms rtt min/avg/max/mdev = 0.400/0.400/0.400/0.000 ms
Step 7: Initiate a tcp connection from DUT1 to DUT2 and try to send some messages between both endpoints
admin@DUT2$ monitor test connection server 8080 tcp admin@DUT1$ monitor test connection client 10.0.0.2 8080 tcp
Step 8: Run command system netflow show flows detailed at DUT0 and check if output matches the following regular expressions:
2\s+3\s+10.0.0.1:\d+\s+20.0.0.1:\d+\s*\d*\s*\d+[^\[]*\[L4:8080\]Show output
------------------------------------------------------------------------------------------ Field Description ------------------------------------------------------------------------------------------ # Numeric flow identifier hash Hash of the flow a Shows if the flow is pending of being exported iif Input interface oif Output interface src Source IP:PORT dst Destination IP:PORT protocol Protocol identifier nexthop Next-hop [Layer 4:Port] tos Type of service identificator tcpflags TCP flags options Optional IP options tcpoptions TCP Options (MSS, Window Scaling, Selective Acknowledgements, Timestamps, Nop) pkts Packets counter bytes Bytes counter ts_first Timestamp of fist packet that passed through the flow ts_last Timestamp of last packet that passed through the flow ---------------------------------------------------------------------------------------------------------------------------------------------------- # hash a iif oif src dst protocol nexthop tos tcpflags options tcpoptions pkts bytes ts_first ts_last ---------------------------------------------------------------------------------------------------------------------------------------------------- 1 a7ce 0 2 3 10.0.0.1:50484 20.0.0.1:8080 8080 0.0.0.0[L4:8080] 0x0 0x1b 0x0 0xf1000000 10 628 365 27 2 e6d5 0 3 2 20.0.0.1:8080 10.0.0.1:50484 50484 0.0.0.0[L4:8080] 0x0 0x1b 0x0 0xf1000000 9 576 365 27
Step 9: Run command system netflow show flows detailed at DUT0 and check if output matches the following regular expressions:
3\s+2\s+20.0.0.1:\d+\s+10.0.0.1:\d+\s*\d*\s*\d+[^\[]*\[L4:8080\]Show output
------------------------------------------------------------------------------------------ Field Description ------------------------------------------------------------------------------------------ # Numeric flow identifier hash Hash of the flow a Shows if the flow is pending of being exported iif Input interface oif Output interface src Source IP:PORT dst Destination IP:PORT protocol Protocol identifier nexthop Next-hop [Layer 4:Port] tos Type of service identificator tcpflags TCP flags options Optional IP options tcpoptions TCP Options (MSS, Window Scaling, Selective Acknowledgements, Timestamps, Nop) pkts Packets counter bytes Bytes counter ts_first Timestamp of fist packet that passed through the flow ts_last Timestamp of last packet that passed through the flow ---------------------------------------------------------------------------------------------------------------------------------------------------- # hash a iif oif src dst protocol nexthop tos tcpflags options tcpoptions pkts bytes ts_first ts_last ---------------------------------------------------------------------------------------------------------------------------------------------------- 1 a7ce 0 2 3 10.0.0.1:50484 20.0.0.1:8080 8080 0.0.0.0[L4:8080] 0x0 0x1b 0x0 0xf1000000 10 628 385 47 2 e6d5 0 3 2 20.0.0.1:8080 10.0.0.1:50484 50484 0.0.0.0[L4:8080] 0x0 0x1b 0x0 0xf1000000 9 576 385 47
Step 10: Run command system netflow show status at DUT0 and check if output matches the following regular expressions:
Protocol\sversion\s10\s\(ipfix\) Export:.*Errors 0 pkts sock0:\s127.0.0.1:2055,.*err: sndbuf reached 0, connect 0, cberr \d+, other 0Show output
ipt_NETFLOW 2.6, srcversion AF9266EDD4076E96F54FE6F; dir Protocol version 10 (ipfix), refresh-rate 20, timeout-rate 30, (templates 0, active 1). Timeouts: active 1800s, inactive 15s. Maxflows 2000000 Flows: active 2 (peak 2 reached 0d0h0m ago), mem 492K, worker delay 25/250 [1..25] (8 ms, 0 us, 2:0 [cpu1]). Hash: size 62967 (mem 491K), metric 1.00 [1.00, 1.00, 1.00]. InHash: 19 pkt, 1 K, InPDU 0, 0. Rate: 0 bits/sec, 0 packets/sec; Avg 1 min: 575 bps, 0 pps; 5 min: 213 bps, 0 pps cpu# pps; <search found new [metric], trunc frag alloc maxflows>, traffic: <pkt, bytes>, drop: <pkt, bytes> Total 0; 0 132 10 [1.00], 0 0 0 0, traffic: 100, 0 MB, drop: 0, 0 K cpu0 0; 0 92 5 [1.00], 0 0 0 0, traffic: 55, 0 MB, drop: 0, 0 K cpu1 0; 0 34 4 [1.00], 0 0 0 0, traffic: 38, 0 MB, drop: 0, 0 K cpu2 0; 0 6 1 [1.00], 0 0 0 0, traffic: 7, 0 MB, drop: 0, 0 K cpu3 0; 0 0 0 [1.00], 0 0 0 0, traffic: 0, 0 MB, drop: 0, 0 K Export: Rate 117 bytes/s; Total 18 pkts, 0 MB, 0 flows; Errors 0 pkts; Traffic lost 81 pkts, 4 Kbytes, 8 flows. sock0: 127.0.0.1:2055, sndbuf 212992, filled 1, peak 1; err: sndbuf reached 0, connect 0, cberr 0, other 0