On both FortiGates, enable FEC and NPU offloading on the IPsec tunnel vd1-p1: The VPN overlay member (vd1-p1) must be included in the health-check and configured as the higher priority member in the SD-WAN rule. Technical Tip: Forward Error Correction (FEC). Forward Error Correction Three common methods for error detection: I Parity I Checksum I Cyclic . By default, this setting has the 'cl91-rs-fec' function enabled. Because FEC does not support NPU offloading, the ability to specify streams and policies that do not require FEC allows those traffic to be offloaded. The URL category must be specified on the traffic shaping policy. For example how many redundant packets are being sent. FEC is enabled on vd1-p1, and health-check works on vd1-p1. This features adds Forward Error Correction (FEC) to IPsec VPN. Adaptive FEC considers link conditions and dynamically adjusts the FEC packet ratio: The FEC base and redundant packet relationship is dynamically adjusted based on changes to the network SLA metrics defined in the SD-WAN SLA health checks. Question 1. ECE2305: Forward Error Correction Basics Error Detection vs. Does any one know how to build a FortiAnalyzer query for this? B. FEC transmits the original payload Which statement is correct about the SD-WAN and ADVPN? Forward error correction In telecommunications Forward error correction (FEC) is a special code for error detection and correction. Forward Error Correction (FEC) is used to lower the packet loss ratio by consuming more bandwidth. In this example, an IPsec tunnel is configured between two FortiGates that both have FEC enabled. Michael Pruett, CISSP has a wide range of cyber-security and network engineering expertise. On both FortiGates, enable FEC and NPU offloading on the IPsec tunnel vd1-p1: The VPN overlay member (vd1-p1) must be included in the health-check and configured as the higher priority member in the SD-WAN rule. Adaptive FEC considers link conditions and dynamically adjusts the FEC packet ratio: The FEC base and redundant packet relationship is dynamically adjusted based on changes to the network SLA metrics defined in the SD-WAN SLA health checks. FEC is disabled by default. Edited on Network Security. Forward Error Correction (FEC) is used to lower the packet loss ratio by consuming more bandwidth. The DMZ interface and IPsec tunnel vd1-p1 are SD-WAN members. FEC is a technique used to control and correct errors in data transmission by sending redundant data across the VPN. Please advice FortiGate FortiManager 430 0 Add real-time FortiView monitors for proxy traffic 7.0.4, Add options for API Preview, Edit in CLI, and References, Seven-day rolling counter for policy hit counters, FortiGate administrator log in using FortiCloud single sign-on, Export firewall policy list to CSV and JSON formats 7.0.2, GUI support for configuration save mode 7.0.2, Automatically enable FortiCloud single sign-on after product registration 7.0.4, Loading artifacts from a CDN for improved GUI performance 7.0.4, Security Fabric support in multi-VDOM environments, Enhance Security Fabric configuration for FortiSandbox Cloud, Show detailed user information about clients connected over a VPN through EMS, Add FortiDeceptor as a Security Fabric device, Improve communication performance between EMS and FortiGate with WebSockets, Simplify EMS pairing with Security Fabric so one approval is needed for all devices, FortiTester as a Security Fabric device 7.0.1, Simplify Fabric approval workflow for FortiAnalyzer 7.0.1, Allow deep inspection certificates to be synchronized to EMS and distributed to FortiClient 7.0.1, Add FortiMonitor as a Security Fabric device 7.0.2, Display EMS ZTNAand endpoint tags in user widgets and Asset Identity Center 7.0.4, Replace FSSO-based FortiNAC tag connector with REST API 7.0.4, Add WebSocket for Security Fabric events 7.0.4, FortiGate Cloud logging in the Security Fabric 7.0.4, Add support for multitenant FortiClient EMS deployments 7.0.8, STIX format for external threat feeds 7.0.2, Add test to check for two-factor authentication, Add test to check for activated FortiCloud services, Add tests for high priority vulnerabilities 7.0.1, Add FortiGuard outbreak alerts category 7.0.4, Usability enhancements to SD-WAN Network Monitor service, Hold down time to support SD-WAN service strategies, SD-WAN passive health check configurable on GUI 7.0.1, ECMP support for the longest match in SD-WAN rule matching 7.0.1, Override quality comparisons in SD-WAN longest match rule matching 7.0.1, Specify an SD-WAN zone in static routes and SD-WAN rules 7.0.1, Display ADVPN shortcut information in the GUI 7.0.1, Speed tests run from the hub to the spokes in dial-up IPsec tunnels 7.0.1, Interface based QoS on individual child tunnels based on speed test results 7.0.1, Passive health-check measurement by internet service and application 7.0.2, Summarize source IP usage on the Local Out Routing page, Add option to select source interface and address for Telnet and SSH, ECMP routes for recursive BGP next hop resolution, BGP next hop recursive resolution using other BGP routes, Add SNMPOIDs for shaping-related statistics, PRP handling in NAT mode with virtual wire pair, NetFlow on FortiExtender and tunnel interfaces, Integration with carrier CPE management tools, BGP conditional advertisement for IPv6 7.0.1, Enable or disable updating policy routes when link health monitor fails 7.0.1, Add weight setting on each link health monitor server 7.0.1, Enhanced hashing for LAG member selection 7.0.1, Add GPS coordinates to REST API monitor output for FortiExtender and LTE modems 7.0.2, Configure IPAM locally on the FortiGate 7.0.2, Use DNS over TLS for default FortiGuard DNS servers 7.0.4, Accept multiple conditions in BGP conditional advertisements 7.0.4, Enhanced BGP next hop updates and ADVPN shortcut override 7.0.4, Allow per-prefix network import checking in BGP 7.0.4, Support QinQ 802.1Q in 802.1Q for FortiGate VMs 7.0.4, Allow only supported FEC implementations on 10G, 25G, 40G, and 100G interfaces 7.0.4, Support 802.1X on virtual switch for certain NP6 platforms 7.0.6, SNMP OIDs for port block allocations IP pool statistics 7.0.6, Increase the number of VRFs per VDOM 7.0.6, Support cross-VRF local-in and local-out traffic for local services 7.0.6, Configuring IPv6 multicast policies in the GUI, FortiGate as an IPv6 DDNS client for generic DDNS, FortiGate as an IPv6 DDNS client for FortiGuard DDNS, Allow backup and restore commands to use IPv6 addresses, IPv6 tunnel inherits MTU based on physical interface 7.0.2, Selectively forward web requests to a transparent web proxy, mTLS client certificate authentication 7.0.1, WAN optimization SSL proxy chaining 7.0.1, Support CORS protocol in explicit web proxy when using session-based, cookie-enabled, and captive portal-enabled SAML authentication 7.0.6, Allow administrators to define password policy with minimum character change, Add monitoring API to retrieve LTE modem statistics from 3G and 4G FortiGates 7.0.1, Add USB support for FortiExplorer Android 7.0.1, Enabling individual ciphers in the SSH administrative access protocol 7.0.2, Clear multiple sessions with REST API 7.0.2, Disable weak ciphers in the HTTPS protocol 7.0.2, Extend dedicated management CPU feature to 1U and desktop models 7.0.2, Improve admin-restrict-local handling of multiple authentication servers 7.0.8, Optimizing FGSP session synchronization and redundancy, Layer 3 unicast standalone configuration synchronization between peers, Improved link monitoring and HA failover time, HA monitor shows tables that are out of synchronization, Resume IPS scanning of ICCP traffic after HA failover 7.0.1, Applying the session synchronization filter only between FGSP peers in an FGCP over FGSP topology 7.0.6, FGCP over FGSP per-tunnel failover for IPsec 7.0.8, Allow IPsec DPD in FGSP members to support failovers 7.0.8, Add option to automatically update schedule frequency, Use only EU servers for FortiGuard updates 7.0.2, FDS-only ISDB package in firmware images 7.0.4, Establish device identity and trust context with FortiClient EMS, ZTNA HTTPS access proxy with basic authentication example, ZTNA proxy access with SAML authentication example, ZTNA TCP forwarding access proxy without encryption example 7.0.1, Migrating from SSL VPN to ZTNA HTTPS access proxy, Implicitly generate a firewall policy for a ZTNA rule 7.0.2, Posture check verification for active ZTNA proxy session 7.0.2, GUI support for multiple ZTNA features 7.0.2, Use FQDN with ZTNA TCP forwarding access proxy 7.0.4, UTM scanning on TCP forwarding access proxy traffic 7.0.4, Connect a ZTNA access proxy to an SSL VPN web portal 7.0.4, ZTNA FortiView and log enhancements 7.0.4, ZTNA session-based form authentication 7.0.4, Using the IP pool or client IP address in a ZTNA connection to backend servers 7.0.6, Filters for application control groups in NGFW mode, DNS health check monitor for server load balancing, Allow multiple virtual wire pairs in a virtual wire pair policy, Simplify NAT46 and NAT64 policy and routing configurations 7.0.1, Cisco Security Group Tag as policy matching criteria 7.0.1, Allow VIPs to be enabled or disabled in central NAT mode 7.0.1, Stream-based antivirus scan in proxy mode for FTP, SFTP, and SCP, Configure threat feed and outbreak prevention without AV engine scan, FortiAI inline blocking and integration with an AV profile 7.0.1, FortiGuard web filter categories to block child sexual abuse and terrorism, Add categories for URL shortening, crypto mining, and potentially unwanted programs 7.0.2, HTTP/2 support in proxy mode SSL inspection, Define multiple certificates in an SSL profile in replace mode, Add TCP connection pool for connections to ICAP server, DNS filter handled by IPS engine in flow mode, Allow the YouTube channel override action to take precedence 7.0.6, Packet distribution for aggregate dial-up IPsec tunnels, Dual stack IPv4 and IPv6 support for SSL VPN, Disable the clipboard in SSL VPN web mode RDP connections 7.0.1, SSL VPN and IPsec VPN IP address assignments 7.0.1, Dedicated tunnel ID for IPsec tunnels 7.0.1, Allow customization of RDP display size for SSL VPN web mode 7.0.4, Integrate user information from EMS connector and Exchange connector in the user store, Improve FortiToken Cloud visibility 7.0.1, Use a browser as an external user-agent for SAML authentication in an SSL VPN connection 7.0.1, Add configurable FSSO timeout when connection to collector agent fails 7.0.1, Track users in each Active Directory LDAP group 7.0.2, Migrating FortiToken Mobile users from FortiOS to FortiToken Cloud 7.0.4, Synchronizing LDAP Active Directory users to FortiToken Cloud using the group filter 7.0.6, Captive portal authentication when bridged via software switch, Increase maximum number of supported VLANs, Station mode on FortiAP radios to initiate tests against other APs, Allow indoor and outdoor flags to be overridden 7.0.1, DNS configuration for local standalone NAT VAPs 7.0.1, Backward compatibility with FortiAP models that uses weaker ciphers 7.0.1, Disable console access on managed FortiAP devices 7.0.1, Captive portal authentication in service assurance management (SAM) mode 7.0.1, Support CAPWAP hitless failover using FGCP 7.0.1, Provide LBS station information with REST API 7.0.2, Allow users to select individual security profiles in bridged SSID 7.0.2, Wireless client MAC authentication and MPSK returned through RADIUS 7.0.2, FQDN for FortiPresence server IP address in FortiAP profiles 7.0.2, Wi-Fi Alliance Hotspot 2.0 Release 3 support 7.0.2, Syslog profile to send logs to the syslog server 7.0.4, Support Dynamic VLAN assignment by Name Tag 7.0.4, DAARP to consider full channel bandwidth in channel selection 7.0.4, Support multiple DARRP profiles and per profile optimize schedule 7.0.4, Support WPA3 on FortiWiFi F-series models 7.0.4, Support advertising vendor specific element in beacon frames 7.0.4, GUI support for Wireless client MAC authentication and MPSK returned through RADIUS 7.0.4, GUI enhancements to distinguish UTM capable FortiAP models 7.0.4, Upgrade FortiAP firmware on authorization 7.0.4, Wireless Authentication using SAML Credentials 7.0.5, Add profile support for FortiAP G-series models supporting WiFi 6E Tri-band and Dual 5 GHz modes 7.0.8, Forward error correction settings on switch ports, Cancel pending or downloading FortiSwitch upgrades, Automatic provisioning of FortiSwitch firmware upon authorization, Additional FortiSwitch recommendations in Security Rating, PoE pre-standard detection disabled by default, Cloud icon indicates that the FortiSwitch unit is managed over layer 3, GUI support for viewing and configuring shared FortiSwitch ports, Ability to re-order FortiSwitch units in the Topology view 7.0.1, Support of the DHCP server access list 7.0.1, SNMP OIDs added for switch statistics and port status 7.0.1, Display port properties of managed FortiSwitch units 7.0.1, IGMP-snooping querier and per-VLAN IGMP-snooping proxy configuration 7.0.2, Managing DSL transceivers (FN-TRAN-DSL) 7.0.2, One-time automatic upgrade to the latest FortiSwitch firmware 7.0.4, Support hardware vendor matching in dynamic port policies 7.0.4, Configure the frequency of IGMP queries 7.0.8, Use wildcards in a MAC address in a NAC policy, Dynamic port profiles for FortiSwitch ports, Support dynamic firewall addresses in NAC policies 7.0.1, Specify FortiSwitch groups in NAC policies 7.0.2, Introduce LAN extension mode for FortiExtender 7.0.2, Using the backhaul IP when the FortiGate access controller is behind NAT 7.0.2, Bandwidth limits on the FortiExtender Thin Edge 7.0.2, IPAM in FortiExtender LAN extension mode 7.0.4, FortiExtender LAN extension in public cloud FGT-VM 7.0.4, Add logs for the execution of CLI commands, Logging IP address threat feeds in sniffer mode, Generate unique user name for anonymized logs 7.0.2, Collect only node IP addresses with Kubernetes SDN connectors, Update AliCloud SDN connector to support Kubernetes filters, Synchronize wildcard FQDN resolved addresses to autoscale peers, Obtain FortiCare-generated license and certificates for GCP PAYG instances, FortiGate VM on KVM running ARM processors 7.0.1, Support MIME multipart bootstrapping on KVM with config drive 7.0.1, FIPS cipher mode for OCI and GCP FortiGate VMs 7.0.1, SD-WAN transit routing with Google Network Connectivity Center 7.0.1, Support C5d instance type for AWS Outposts 7.0.1, FGSP session sync on FortiGate-VMs on Azure with autoscaling enabled 7.0.1, Flex-VM token and bootstrap configuration file fields in custom OVF template 7.0.2, Subscription-based VDOM license for FortiGate-VM S-series 7.0.2, Multitenancy support with AWS GWLB enhancement 7.0.4, FortiCarrier upgrade license for FortiGate-VM S-series 7.0.4, Injecting Flex-VM license via web proxy 7.0.4, Support Graviton c7g and c6gn instance types on AWS 7.0.8, Support Ampere A1 Compute instances on OCI 7.0.8. For example, when there is no or low packet loss in the network, FEC can work on a low redundant level sending only one redundant packet for every 10 base packets. 08:54 AM It uses six parameters in IPsec phase1/phase1-interface settings: Enable/disable Forward Error Correction for ingress IPsec traffic (default = disable). Refer to the exhibit. Copyright 2023 Fortinet, Inc. All Rights Reserved. FG22E1-2 (port25) # set forward-error-correction ?disable <----- Disable forward error correction (FEC).cl91-rs-fec <----- Reed-Solomon (FEC CL91).cl74-fc-fec <----- Fire-Code (FEC CL74). In order to correct the errors, one has to know the exact position of the error. It is important to keep FEC settings the same on both FortiGate and switch sides, otherwise, ports will not get up due to mismatch. The tunnel is an SD-WAN zone, and an SLA health-check is used to monitor the quality of the VPN overlay. On FortiGate A, create a policy to specify performing FEC on UDP traffic, and a policy for other traffic: On FortiGate A, configure FEC mapping to bind network SLA metrics and FEC base and redundant packets: The mappings are matched from top to bottom: packet loss greater than 10% with eight base and two redundant packets, and then uploading bandwidth greater than 950 Mbps with nine base and three redundant packets. Forward Error Correction (FEC) is used to control and correct errors in data transmission by sending redundant data across the VPN in anticipation of dropped packets occurring during transit. Forward error connection is not supported for interfaces in FortiGates with NP7 processors operating at any other speeds. FortiGate Cloud / FDN communication through an explicit proxy FDS-only ISDB package in firmware images Licensing in air-gap environments On FortiGate A, create a policy to specify performing FEC on UDP traffic, and a policy for other traffic: On FortiGate A, configure FEC mapping to bind network SLA metrics and FEC base and redundant packets: The mappings are matched from top to bottom: packet loss greater than 10% with eight base and two redundant packets, and then uploading bandwidth greater than 950 Mbps with nine base and three redundant packets. Fortinet Community Knowledge Base FortiGate Send TCP and UDP traffic from PC1 to PC2, then check the sessions on FortiGate A: Non-FEC protected TCP traffic is offloaded, while FEC protected UDP traffic is not offloaded. Which two statements about the debug output are correct? Forward Error Correction (FEC) is a mechanism to recover lost packets on a link by sending extra "parity" packets for every group (N) of packets. FEC provides the receiver with the ability to correct errors without a reverse channel to request the retransmission of data. Copyright 2023 Fortinet, Inc. All Rights Reserved. FortiGate Cloud; Enterprise Networking. FG22E1-2 (port25) # set forward-error-correction ?enable <----- Enable forward error correction (FEC).disable <----- Disable forward error correction (FEC). Forward-looking statements in this report, including without limitation, statements related to the Company's plans, strategies, objectives, expectations, intentions and adequacy of resources, are made pursuant to the safe harbor provisions of the Private Securities Litigation Reform Act of 1995. The Fortinet Security Fabric brings together the concepts of convergence and consolidation to provide comprehensive cybersecurity protection for all users, devices, and applications and across all network edges.. FortiGate is not performing traffic shaping as expected, based on the policies shown in the exhibits. The tunnel is an SD-WAN zone, and an SLA health-check is used to monitor the quality of the VPN overlay. B This traffic shaper drops traffic that exceeds the set limits. The number of redundant Forward Error Correction packets (1 - 100, default = 10). Lastly, it is necessary to make sure the correct media type is configured on the interface settings. In this example, an IPsec tunnel is configured between two FortiGates that both have FEC enabled. This means that all traffic suffers a performance impact. The intention is to apply FEC to UDP traffic that is passing through the VPN overlay, while allowing all other traffic to pass through without FEC. Technical Tip: Forward Error Correction (FEC) - Fortinet Community FortiGate FortiGate Next Generation Firewall utilizes purpose-built security processors and threat intelligence security services from FortiGuard labs to deliver top-rated protection and high performance, including encrypted traffic. The mechanism sends out x number of redundant packets for every y number of base packets. For example, when there is no or low packet loss in the network, FEC can work on a low redundant level sending only one redundant packet for every 10 base packets. FortiGate Next Generation Firewall utilizes purpose-built security processors and threat intelligence security services from FortiGuard labs to deliver top-rated protection and high performance, including encrypted traffic. As packet loss increases, the number of redundant packets sent can rise accordingly. FEC can be applied only to streams that are sensitive to packet loss. In case the port does not support FEC, the link_fec and link_fec_cap values are None (0x0). 10-29-2019 Email Login IAM Login. 11-29-2022 For every fec-base number of sent packets, the tunnel will send fec-redundant number of redundant packets. FortiAnalyzer FortiGate 74 0 Share Reply All forum topics Previous Topic Next Topic If fec-codec is set to xor the base and redundant packet values will not be updated. 01:43 AM, The Fortinet Security Fabric brings together the concepts of convergence and consolidation to provide comprehensive cybersecurity protection for all users, devices, and applications and across all network edges.. The DMZ interface and IPsec tunnel vd1-p1 are SD-WAN members. The time before dropping Forward Error Correction packets, in milliseconds (1 - 1000, default = 5000). Technical Tip: changes in Forward Error Correct (FEC) settings Description This article describes how to cover the changes in FEC settings for some FortiGates. On FortiGate A, apply the FEC mappings on vd1-p1: The FEC base and redundant values are used when the link quality has not exceeded the limits specified in the FEC profile mapping. FEC is a technique used to control and correct errors in data transmission by sending redundant data across the VPN. Forward error correction (FEC) is a digital signal processing technique used to enhance data reliability. With the default register settings in AT86RF215, FEC can be enabled with FSKPHRTX.SFD = 1. I was only able to enable FEC by disabling ASIC offload for the IPsec tunnel. For Example, policies that allow the UDP based VoIP protocol can enable FEC, while TCP based traffic policies do not. It is important to keep FEC settings the same on both FortiGate and switch sides, otherwise, ports will not get up due to mismatch. Adaptive FEC considers link conditions and dynamically adjusts the FEC packet ratio: The FEC base and redundant packet relationship is dynamically adjusted based on changes to the network SLA metrics defined in the SD-WAN SLA health checks. Created on On FortiGate A, check the health-check result and the corresponding FEC base and redundant packets: Because bandwidth-up is more than 950000kbps, base and redundant are set to 9 and 3: Make packet loss more than 10%, then check the health-check result and the corresponding FEC base and redundant packets again: Because packet loss is more than 10%, entry one in FEC mapping is first matched, and base and redundant are set to 8 and 2: Connecting FortiExplorer to a FortiGate with WiFi, Configure FortiGate with FortiExplorer using BLE, Transfer a device to another FortiCloud account, Viewing device dashboards in the Security Fabric, Creating a fabric system and license dashboard, Viewing session information for a compromised host, FortiView Top Source and Top Destination Firewall Objects monitors, Viewing top websites and sources by category, Enhanced hashing for LAG member selection, Failure detection for aggregate and redundant interfaces, PRP handling in NAT mode with virtual wire pair, Using VLAN sub-interfaces in virtual wire pairs, General VXLAN configuration and topologies, VXLAN over IPsec tunnel with virtual wire pair, VXLAN over IPsec using a VXLAN tunnel endpoint, Upstream proxy authentication in transparent proxy mode, Agentless NTLM authentication for web proxy, Multiple LDAP servers in Kerberos keytabs and agentless NTLM domain controllers, CORS protocol in explicit web proxy when using session-based, cookie-enabled, and captive portal-enabled SAML authentication, HTTP connection coalescing and concurrent multiplexing for explicit proxy, IP address assignment with relay agent information option, OSPF graceful restart upon a topology change, Next hop recursive resolution using other BGP routes, Next hop recursive resolution using ECMP routes, Support cross-VRF local-in and local-out traffic for local services, NetFlow on FortiExtender and tunnel interfaces, Enable or disable updating policy routes when link health monitor fails, Add weight setting on each link health monitor server, SLA link monitoring for dynamic IPsec and SSL VPN tunnels, IPv6 tunnel inherits MTU based on physical interface, Configuring IPv4 over IPv6 DS-Lite service, Specify an SD-WAN zone in static routes and SD-WAN rules, Passive health-check measurement by internet service and application, Mean opinion score calculation and logging in performance SLA health checks, Embedded SD-WAN SLA information in ICMP probes, Additional fields for configuring WAN intelligence, SDN dynamic connector addresses in SD-WAN rules, Static application steering with a manual strategy, Dynamic application steering with lowest cost and best quality strategies, SD-WAN application monitor using FortiMonitor, DSCP tag-based traffic steering in SD-WAN, ECMP support for the longest match in SD-WAN rule matching, Override quality comparisons in SD-WAN longest match rule matching, Use an application category as an SD-WAN rule destination, Controlling traffic with BGP route mapping and service rules, Applying BGP route-map to multiple BGP neighbors, Using multiple members per SD-WAN neighbor configuration, Hold down time to support SD-WAN service strategies, Speed tests run from the hub to the spokes in dial-up IPsec tunnels, Interface based QoS on individual child tunnels based on speed test results, Configuring SD-WAN in an HA cluster using internal hardware switches, SD-WAN segmentation over a single overlay, Matching BGP extended community route targets in route maps, Copying the DSCP value from the session original direction to its reply direction, Configuring the VPN overlay between the HQ FortiGate and cloud FortiGate-VM, Configuring the VPN overlay between the HQ FortiGate and AWS native VPN gateway, Configuring the VIP to access the remote servers, Configuring the SD-WAN to steer traffic between the overlays, HTTP2 connection coalescing and concurrent multiplexing for virtual server load balancing, NAT46 and NAT64 policy and routing configurations, Recognize anycast addresses in geo-IP blocking, Matching GeoIP by registered and physical location, HTTP to HTTPS redirect for load balancing, Use Active Directory objects directly in policies, Seven-day rolling counter for policy hit counters, Cisco Security Group Tag as policy matching criteria, Virtual patching on the local-in management interface, Using wildcard FQDN addresses in firewall policies, ClearPass integration for dynamic address objects, IPv6 MAC addresses and usage in firewall policies, Traffic shaping with queuing using a traffic shaping profile, Changing traffic shaper bandwidth unit of measurement, Multi-stage DSCP marking and class ID in traffic shapers, Adding traffic shapers to multicast policies, Interface-based traffic shaping with NP acceleration, QoS assignment and rate limiting for FortiSwitch quarantined VLANs, Establish device identity and trust context with FortiClient EMS, ZTNA HTTPS access proxy with basic authentication example, ZTNA TCP forwarding access proxy without encryption example, ZTNA proxy access with SAML authentication example, ZTNA access proxy with SAML and MFA using FortiAuthenticator example, ZTNA access proxy with SSL VPN web portal example, Posture check verification for active ZTNA proxy session examples, ZTNA TCP forwarding access proxy with FQDN example, ZTNAdevice certificate verification from EMS for SSL VPN connections, Mapping ZTNA virtual host and TCP forwarding domains to the DNS database, ZTNA policy access control of unmanageable and unknown devices with dynamic address local tags, Publishing ZTNA services through the ZTNA portal, ZTNA inline CASB for SaaS application access control, ZTNA scalability support for up to 50 thousand concurrent endpoints, HTTP2 connection coalescing and concurrent multiplexing for ZTNA, Using extension Internet Service in policy, Allow creation of ISDB objects with regional information, Look up IP address information from the Internet Service Database page, Using FortiSandbox post-transfer scanning with antivirus, Using FortiSandbox inline scanning with antivirus, Using FortiNDR inline scanning with antivirus, Exempt list for files based on individual hash, FortiGuard category-based DNS domain filtering, Applying DNS filter to FortiGate DNS server, Excluding signatures in application control profiles, SSL-based application detection over decrypted traffic in a sandwich topology, Matching multiple parameters on application control signatures, IPS signatures for the industrial security service, Protecting a server running web applications, Handling SSL offloaded traffic from an external decryption device, Redirect to WAD after handshake completion, HTTP/2 support in proxy mode SSL inspection, Define multiple certificates in an SSL profile in replace mode, Disabling the FortiGuard IP address rating, Blocking applications with custom signatures, Application groups in traffic shaping policies, Blocking unwanted IKE negotiations and ESP packets with a local-in policy, Basic site-to-site VPN with pre-shared key, Site-to-site VPN with digital certificate, Site-to-site VPN with overlapping subnets, IKEv2 IPsec site-to-site VPN to an AWS VPN gateway, IPsec VPN to Azure with virtual network gateway, IPSec VPN between a FortiGate and a Cisco ASA with multiple subnets, Add FortiToken multi-factor authentication, Dialup IPsec VPN with certificate authentication, OSPF with IPsec VPN for network redundancy, Packet distribution and redundancy for aggregate IPsec tunnels, Packet distribution for aggregate dial-up IPsec tunnels using location ID, Packet distribution for aggregate static IPsec tunnels in SD-WAN, Packet distribution for aggregate IPsec tunnels using weighted round robin, Hub-spoke OCVPN with inter-overlay source NAT, IPsec VPN wizard hub-and-spoke ADVPN support, Fragmenting IP packets before IPsec encapsulation, Defining gateway IP addresses in IPsec with mode-config and DHCP, Windows IKEv2 native VPN with user certificate, Set up FortiToken multi-factor authentication, Connecting from FortiClient with FortiToken, Showing the SSL VPN portal login page in the browser's language, SSL VPN with LDAP-integrated certificate authentication, SSL VPN for remote users with MFA and user sensitivity, SSL VPN with FortiToken mobile push authentication, SSL VPN with RADIUS on FortiAuthenticator, SSL VPN with RADIUS and FortiToken mobile push on FortiAuthenticator, SSL VPN with RADIUS password renew on FortiAuthenticator, Dynamic address support for SSL VPN policies, Dual stack IPv4 and IPv6 support for SSL VPN, Disable the clipboard in SSL VPN web mode RDP connections, Running a file system check automatically, FortiGuard distribution of updated Apple certificates, Integrate user information from EMS and Exchange connectors in the user store, Enabling Active Directory recursive search, Configuring LDAP dial-in using a member attribute, Configuring least privileges for LDAP admin account authentication in Active Directory, Tracking users in each Active Directory LDAP group, Tracking rolling historical records of LDAP user logins, Configuring client certificate authentication on the LDAP server, Restricting RADIUS user groups to match selective users on the RADIUS server, Support for Okta RADIUS attributes filter-Id and class, Sending multiple RADIUS attribute values in a single RADIUS Access-Request, Traffic shaping based on dynamic RADIUS VSAs, RADIUS Termination-Action AVP in wired and wireless scenarios, Outbound firewall authentication for a SAML user, SSL VPN with FortiAuthenticator as a SAML IdP, Using a browser as an external user-agent for SAML authentication in an SSL VPN connection, Outbound firewall authentication with Azure AD as a SAML IdP, Activating FortiToken Mobile on a mobile phone, Synchronizing LDAP Active Directory users to FortiToken Cloud using the two-factor filter, Configuring the maximum log in attempts and lockout period, Using the SAN field for LDAP-integrated certificate authentication, FSSO polling connector agent installation, Configuring the FSSO timeout when the collector agent connection fails, Configuring the FortiGate to act as an 802.1X supplicant, Allowing the FortiGate to override FortiCloud SSO administrator user permissions, Restricting SSH and Telnet jump host capabilities, Remote administrators with TACACS VSA attributes, Upgrading individual device firmware by following the upgrade path (federated update), Upgrading all device firmware by following the upgrade path (federated update), Setting the administrator password retries and lockout time, Controlling return path with auxiliary session, Configuring the persistency for a banned IP list, Using the default certificate for HTTPS administrative access, Backing up and restoring configurations in multi VDOM mode, Inter-VDOM routing configuration example: Internet access, Inter-VDOM routing configuration example: Partial-mesh VDOMs, Out-of-band management with reserved management interfaces, HA between remote sites over managed FortiSwitches, HA using a hardware switch to replace a physical switch, Override FortiAnalyzer and syslog server settings, Routing NetFlow data over the HA management interface, Force HA failover for testing and demonstrations, Resume IPS scanning of ICCP traffic after HA failover, Querying autoscale clusters for FortiGate VM, Abbreviated TLS handshake after HA failover, Session synchronization during HA failover for ZTNA proxy sessions, Synchronizing sessions between FGCP clusters, Session synchronization interfaces in FGSP, UTM inspection on asymmetric traffic in FGSP, UTM inspection on asymmetric traffic on L3, Encryption for L3 on asymmetric traffic in FGSP, Optimizing FGSP session synchronization and redundancy, FGSP session synchronization between different FortiGate models or firmware versions, Applying the session synchronization filter only between FGSP peers in an FGCP over FGSP topology, FGCP over FGSP per-tunnel failover for IPsec, Allow IPsec DPD in FGSP members to support failovers, Layer 3 unicast standalone configuration synchronization, Adding IPv4 and IPv6 virtual routers to an interface, SNMP traps and query for monitoring DHCP pool, Configuring a proxy server for FortiGuard updates, Using FortiManager as a local FortiGuard server, FortiAP query to FortiGuard IoT service to determine device details, FortiGate Cloud / FDNcommunication through an explicit proxy, Procuring and importing a signed SSL certificate, FortiGate encryption algorithm cipher suites, Configuring the root FortiGate and downstream FortiGates, Deploying the Security Fabric in a multi-VDOM environment, Synchronizing objects across the Security Fabric, Group address objects synchronized from FortiManager, Leveraging LLDP to simplify Security Fabric negotiation, Configuring the Security Fabric with SAML, Configuring single-sign-on in the Security Fabric, Configuring the root FortiGate as the IdP, Configuring a downstream FortiGate as an SP, Verifying the single-sign-on configuration, Navigating between Security Fabric members with SSO, Integrating FortiAnalyzer management using SAML SSO, Integrating FortiManager management using SAML SSO, Execute a CLI script based on CPU and memory thresholds, Webhook action with Twilio for SMS text messages, Getting started with public and private SDN connectors, Azure SDN connector using service principal, Cisco ACI SDN connector using a standalone connector, ClearPass endpoint connector via FortiManager, AliCloud Kubernetes SDN connector using access key, AWS Kubernetes (EKS)SDNconnector using access key, Azure Kubernetes (AKS)SDNconnector using client secret, GCP Kubernetes (GKE)SDNconnector using service account, Oracle Kubernetes (OKE) SDNconnector using certificates, Private cloud K8s SDNconnector using secret token, Nuage SDN connector using server credentials, Nutanix SDN connector using server credentials, OpenStack SDN connector using node credentials, VMware ESXi SDNconnector using server credentials, VMware NSX-T Manager SDNconnector using NSX-T Manager credentials, Support for wildcard SDN connectors in filter configurations, Monitoring the Security Fabric using FortiExplorer for Apple TV, Adding the root FortiGate to FortiExplorer for Apple TV, Viewing a summary of all connected FortiGates in a Security Fabric, Configuring multiple FortiAnalyzers (or syslog servers) per VDOM, Configuring multiple FortiAnalyzers on a FortiGate in multi-VDOM mode, Log buffer on FortiGates with an SSD disk, Configuring and debugging the free-style filter, Logging the signal-to-noise ratio and signal strength per client, RSSO information for authenticated destination users in logs, Backing up log files or dumping log messages, System and feature operation with WAN optimization, Manual (peer-to-peer) WAN optimization configuration example, Active-passive WAN optimization configuration example, Testing and troubleshooting the configuration, PFand VFSR-IOV driver and virtual SPU support, FIPS cipher mode for AWS, Azure, OCI, and GCP FortiGate-VMs, Troubleshooting CPU and network resources, Verifying routing table contents in NAT mode, Verifying the correct route is being used, Verifying the correct firewall policy is being used, Checking the bridging information in transparent mode, Performing a sniffer trace or packet capture, Displaying detail Hardware NIC information, Identifying the XAUI link used for a specific traffic stream, Troubleshooting process for FortiGuard updates.
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