! Last configuration change at 16:18:10 UTC Wed Feb 28 2018 I just swap my public IP with 1.2.3.4 Building configuration. It is just an example but can be adjusted to your configuration. Ip nat inside source list MY-PRIVATE-NETWORKS interface g0/0 overload ![]() Ip access-list standard MY-PRIVATE-NETWORKS Now the ip nat outside is configured under the exit interface in the most of the cases it is configured under the interface facing to the ISP or Internet. The ip nat inside is configured under the interface pointing or associated to your internal networks or corporate networks. Mgcp behavior comedia-check-media-src disable Ip ssh client algorithm encryption aes128-ctr aes192-ctr aes256-ctrĭialer watch-list 1 delay route-check initial 60 Ip ssh server algorithm encryption aes128-ctr aes192-ctr aes256-ctr Lte modem link-recovery rssi onset-threshold -110 Lte sim data-profile 1 attach-profile 1 slot 0 Username admin privilege 15 password 0 admin License udi pid C881G-4G-GA-K9 sn FCZ2147E2DH ! Last configuration change at 10:17:50 UTC Wed Feb 28 2018Ĭhat-script lte "" "AT!CALL" TIMEOUT 20 "OK"Ĭhat-script CellScript "" "AT!CALL" TIMEOUT 60 "OK"Ĭhat-script cdma "" "ATDT#777" TIMEOUT 60 "CONNECT" For example, to test whether Google is up and accessible from the local Windows system, use the following command. ![]() On the command prompt, type 'ping' and specify the IP address, hostname, or URL of the remote system and press the Enter key. My config is below, it is full of garbage because I have already tried to find a solution. To use the ping command in Windows, access the command prompt. I have Cisco 881 with SIM card and I cam not able to ping the internet. Technical Tip : How to control/change the FortiGate source IP for self-originating traffic : SNMP. Technical Note: Configuring BGP on a FortiGate with single-homed eBGP peering, iBGP peering, access. This is ordinarily implemented using only 127.0.0.1/32 for loopback, but no addresses within this block should ever appear on any network anywhere RFC1700, page 5. See more details about BGP peering with a loopback interface in the related article at the end of this page : "Technical Note: Configuring BGP on a FortiGate with single-homed eBGP peering, iBGP peering, access-list and OSPF" A datagram sent by a higher level protocol to an address anywhere within this block should loop back inside the host. The Management station has only single IP addresses for FGT1 and FGT2, that can be accessed from any interface, and routed by RTR2 (routing and firewall policies must permit). ![]() FGT2 and FGT1 can establish an iBGP peering to their respective loopback interface via Port4 or Port5 (routing and firewall policies must permit).The loopback interface is seen from the routing table as connected interface :Ĭ 10.0.0.2/32 is directly connected, loopback Note 2 : For blackhole static route, use the blackhole route type instead of the loopback interface.īGP peering and Management access scenario : Note 1 : Dynamic routing protocols can be enabled on loopback interfaces Good practice for OSPF : setting the OSPF router ID the same as loopback IP address makes it easier for troubleshooting OSPF and remember the management IP addresses (i.e.Some scenario where a loopback interface can be used: Note that using loopback interfaces requires the configuration of appropriate firewall policies to allow traffic to and from this (those) interface(s) Multiple loopback interfaces can be configured in either non-VDOM mode or in each VDOM. It allows connections to the FortiGate's loopback IP address without depending on one specific external port, and it is therefore possible to access it through several physical or VLAN interfaces (redundancy). The advantage of a interface it that this logical interface is always up (no physical link dependency) and the attached subnets always present in the routing table. This article describes some scenario where a loopback interface can be used.
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