High availability provides redundancy and reliability for packet-based communications.Â
| Feature hierarchy | Feature Name |
|---|---|
| High Availability & Redundancy / | HA for RPD: Warm standby mode for routing protocols process |
| High Availability & Redundancy / | HA: FPC self-healing |
| High Availability & Redundancy / | HA: Fabric to PFE Link Monitoring and Automatic Error Recovery (auto healing) |
| High Availability & Redundancy / | HA: Synchronization of Address Name Resolving Cache |
| High Availability & Redundancy / GRES / | Fabric GRES: No hard reset of SIBs during GRES, only soft initialization |
| High Availability & Redundancy / GRES / | GRES and L2TP Failover: LAC support |
| High Availability & Redundancy / GRES / | GRES and NSR support for pseudowire configurations |
| High Availability & Redundancy / GRES / | GRES: ARP entries |
| High Availability & Redundancy / GRES / | GRES: Commit check for Routing Engine switchover |
| High Availability & Redundancy / GRES / | GRES: Delay in removing subscriber routes after GRES |
| High Availability & Redundancy / GRES / | GRES: Dynamic DHCP subscriber access |
| High Availability & Redundancy / GRES / | GRES: Dynamically-created IP DEMUX interfaces |
| High Availability & Redundancy / GRES / | GRES: Extended DHCP relay agent |
| High Availability & Redundancy / GRES / | GRES: Forwarding database |
| High Availability & Redundancy / GRES / | GRES: IGMP snooping |
| High Availability & Redundancy / GRES / | GRES: LSQ interfaces |
| High Availability & Redundancy / GRES / | GRES: Layer 2 and Layer 3 VPN LSPs |
| High Availability & Redundancy / GRES / | GRES: Link fault management |
| High Availability & Redundancy / GRES / | GRES: Log warning message when the number of ifstate client reaches 60 |
| High Availability & Redundancy / GRES / | GRES: MAC address Persistence after a Routing Engine switchover |
| High Availability & Redundancy / GRES / | GRES: MPLS ingress and egress P2MP LSPs |
| High Availability & Redundancy / GRES / | GRES: Multicast protocols |
| High Availability & Redundancy / GRES / | GRES: Node by node upgrade |
| High Availability & Redundancy / GRES / | GRES: Port security |
| High Availability & Redundancy / GRES / | GRES: Stateful GRES on services PICs |
| High Availability & Redundancy / GRES / | GRES: VPLS |
| High Availability & Redundancy / GRES / | GRES: VRRP (IPv4) |
| High Availability & Redundancy / GRES / | GRES: VRRP (IPv6) |
| High Availability & Redundancy / GRES / | Graceful Routing Engine Switchover |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: BGP |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: BGP Helper Mode Enhancement |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: Disable Helper Mode During an Interface Failure |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: EVPN-VXLAN |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: FIP snooping |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: Fibre Channel |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: IS-IS |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: LDP |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: LDP Enhancements |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: Layer 2 VPNs, Layer 3 VPNs, and Labeled BGP |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: Long-lived BGP |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: OSPF |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: OSPF Enhancement |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: PIM Sparse Mode |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: Point-to-multipoint LSPs |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: RIP |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: RIPng |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: RSVP |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: RSVP Ingress Routers |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: Routing protocols |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: Unicast and Type 5 Routing on EVPN-VXLAN |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: Virtual Chassis |
| High Availability & Redundancy / Graceful Restart / | Graceful Restart: [edit routing-instances] values |
| High Availability & Redundancy / Graceful Restart / | Graceful restart |
| High Availability & Redundancy / ISSU / | ISSU: LACP with Fast Hellos |
| High Availability & Redundancy / ISSU / | ISSU: Operation details |
| High Availability & Redundancy / ISSU / | ISSU: Progress display |
| High Availability & Redundancy / ISSU / | ISSU: Upgrade from FreeBSD 6.1-based Junos OS to FreeBSD 10.x-based Junos OS |
| High Availability & Redundancy / ISSU / | ISSU: View status during an upgrade |
| High Availability & Redundancy / ISSU / | In-service hitless kernel warm reboot |
| High Availability & Redundancy / ISSU / | In-service software upgrade, ISSU |
| High Availability & Redundancy / ISSU / | Nonstop software upgrade, NSSU |
| High Availability & Redundancy / ISSU / | Unified ISSU for VRRPv3: Avoid adjacency flap |
| High Availability & Redundancy / ISSU / | Unified ISSU for multivendor networks: LACP inline support |
| High Availability & Redundancy / ISSU / | Unified ISSU: Abstracted fabric interfaces |
| High Availability & Redundancy / ISSU / | Unified ISSU: Additional protocols |
| High Availability & Redundancy / ISSU / | Unified ISSU: Automatic deactivation and activation of incompatible configurations |
| High Availability & Redundancy / ISSU / | Unified ISSU: BFD sessions |
| High Availability & Redundancy / ISSU / | Unified ISSU: ESE major version change |
| High Availability & Redundancy / ISSU / | Unified ISSU: EVPN and VXLAN |
| High Availability & Redundancy / ISSU / | Unified ISSU: Enhanced Scaling |
| High Availability & Redundancy / ISSU / | Unified ISSU: Enhanced mode |
| High Availability & Redundancy / ISSU / | Unified ISSU: GTP |
| High Availability & Redundancy / ISSU / | Unified ISSU: IEEE 802.1ag CFM |
| High Availability & Redundancy / ISSU / | Unified ISSU: Inline LSQ interfaces |
| High Availability & Redundancy / ISSU / | Unified ISSU: Junos Node Slicing |
| High Availability & Redundancy / ISSU / | Unified ISSU: L2TP LNS |
| High Availability & Redundancy / ISSU / | Unified ISSU: LACP |
| High Availability & Redundancy / ISSU / | Unified ISSU: LFM |
| High Availability & Redundancy / ISSU / | Unified ISSU: Layer 2 forwarding on AFT-based line cards |
| High Availability & Redundancy / ISSU / | Unified ISSU: Pause and resume options |
| High Availability & Redundancy / ISSU / | Unified ISSU: Routing protocols |
| High Availability & Redundancy / ISSU / | Unified ISSU: Statistics preservation on MPC/MIC interfaces |
| High Availability & Redundancy / ISSU / | Unified ISSU: Subscriber management DHCP access model |
| High Availability & Redundancy / ISSU / | Unified ISSU: Subscriber management PPPoE access model |
| High Availability & Redundancy / ISSU / | Unified ISSU: Virtual Chassis support |
| High Availability & Redundancy / MNHA / | MNHA: Active-Backup in Default Gateway Mode |
| High Availability & Redundancy / MNHA / | MNHA: Active-active Mode (SRG1+) |
| High Availability & Redundancy / MNHA / | MNHA: Active/backup Multinode High Availability for IPsec VPN on AWS and Azure Cloud |
| High Availability & Redundancy / MNHA / | MNHA: Application Identification |
| High Availability & Redundancy / MNHA / | MNHA: Application Quality of Service |
| High Availability & Redundancy / MNHA / | MNHA: Application Tracking |
| High Availability & Redundancy / MNHA / | MNHA: Associate IPsec VPN with an SRG |
| High Availability & Redundancy / MNHA / | MNHA: Asymmetric Routing for CGNAT, NAT, ALG, and GTP/SCTP |
| High Availability & Redundancy / MNHA / | MNHA: Asymmetric Traffic Flow |
| High Availability & Redundancy / MNHA / | MNHA: Authentication, Authorization, and Accounting (AAA) |
| High Availability & Redundancy / MNHA / | MNHA: Dynamic Routing Protocol for IPsec VPN |
| High Availability & Redundancy / MNHA / | MNHA: Firewall User Authentication |
| High Availability & Redundancy / MNHA / | MNHA: Flexible datapath failure detection |
| High Availability & Redundancy / MNHA / | MNHA: GTP and SCTP |
| High Availability & Redundancy / MNHA / | MNHA: Granular Monitoring Control |
| High Availability & Redundancy / MNHA / | MNHA: Hybrid Mode Deployment |
| High Availability & Redundancy / MNHA / | MNHA: ICL encryption to secure Multinode High Availability |
| High Availability & Redundancy / MNHA / | MNHA: Insert Additional SPC3 During Setup |
| High Availability & Redundancy / MNHA / | MNHA: Multi SRG (Active-Active Mode) |
| High Availability & Redundancy / MNHA / | MNHA: Redundancy domain |
| High Availability & Redundancy / MNHA / | MNHA: Security Policies |
| High Availability & Redundancy / MNHA / | MNHA: Selective session synchronization |
| High Availability & Redundancy / MNHA / | MNHA: Split-brain protection support for BFD- based probing |
| High Availability & Redundancy / MNHA / | MNHA: Support for Google Cloud Platform |
| High Availability & Redundancy / MNHA / | MNHA: User Firewall Authentication, Including UAC |
| High Availability & Redundancy / MNHA / | Multinode High Availability, MNHA |
| High Availability & Redundancy / NSB / | NSB: L2 control protocols |
| High Availability & Redundancy / NSB / | NSB: LAGs and LACP |
| High Availability & Redundancy / NSB / | NSB: LLDP and LLDP-MED |
| High Availability & Redundancy / NSB / | NSB: Spanning tree protocols (STP) |
| High Availability & Redundancy / NSB / | Nonstop Bridging, NSB |
| High Availability & Redundancy / NSR / | NSR RE Failover: on-re-to-fpc-stale |
| High Availability & Redundancy / NSR / | NSR RE failover: On internal component failure |
| High Availability & Redundancy / NSR / | NSR RE failover: on-disk-failure |
| High Availability & Redundancy / NSR / | NSR: IPv6 |
| High Availability & Redundancy / NSR / | NSR: LFM |
| High Availability & Redundancy / NSR / | NSR: Switchover with low hold timers |
| High Availability & Redundancy / NSR / | NSR: disk-read-threshold |
| High Availability & Redundancy / NSR / | Nonstop active routing (NSR) |
| High Availability & Redundancy / Resiliency / | Core Resiliency |
| High Availability & Redundancy / Resiliency / | Core resiliency: Control plane resiliency enhancements |
| High Availability & Redundancy / Resiliency / | Fabric OAM: Resiliency: Continuous Run Time Checks |
| High Availability & Redundancy / Resiliency / | Fabric Resiliency |
| High Availability & Redundancy / Resiliency / | Fabric resiliency: ARP cache protection to prevent DOS attacks |
| High Availability & Redundancy / Resiliency / | Fabric resiliency: Fabric null route detection and recovery |
| High Availability & Redundancy / Resiliency / | Flow control: Respond to pause frames |
| High Availability & Redundancy / Resiliency / | Infrastructure resiliency: PFE and hardware resiliency |
| High Availability & Redundancy / Resiliency / | Juniper Resiliency Interface for exception reporting and null route detection |
| High Availability & Redundancy / Resiliency / | Line Card Resiliency |
| High Availability & Redundancy / Resiliency / | PFE Restart: Restart forwarding applications for Layer 2 features |
| High Availability & Redundancy / Resiliency / | PFE resiliency: DMA recovery mechanism |
| High Availability & Redundancy / Resiliency / | PFE resiliency: Dynamic port swap from 40G to 100G without restarting the Packet Forwarding Engine (PFE) |
| High Availability & Redundancy / Resiliency / | PFE resiliency: FPC major alarm |
| High Availability & Redundancy / Resiliency / | PFE resiliency: Programmable flexible VXLAN tunnels |
| High Availability & Redundancy / Resiliency / | PIC Resiliency: 802.3X Ethernet PAUSE autonegotiation enhancements |
| High Availability & Redundancy / Resiliency / | PIC Resiliency: 802.3x - Send/receive |
| High Availability & Redundancy / Resiliency / | PIC Resiliency: Alarm for PIC offline at start time |
| High Availability & Redundancy / Resiliency / | PIC Resiliency: Configuring chassis temperature thresholds |
| High Availability & Redundancy / Resiliency / | PIC Resiliency: Improved performance of small packets |
| High Availability & Redundancy / Resiliency / | PIC Resiliency: Increase available bandwidth by bypassing the queuing chip |
| High Availability & Redundancy / Resiliency / | PIC Resiliency: Inter-chassis high availability provides stateful redundancy |
| High Availability & Redundancy / Resiliency / | PIC Resiliency: Juniper Resiliency Interface |
| High Availability & Redundancy / Resiliency / | PIC Resiliency: Resource monitor support for PS and RLT interfaces |
| High Availability & Redundancy / Resiliency / | PIC Resiliency: Subscriber services uplink |
| High Availability & Redundancy / Resiliency / | PIC Resiliency: Upgrading MPC8E bandwidth from 960 Gbps to 1600 Gbps |
| High Availability & Redundancy / Resiliency / | Platform resiliency |
| High Availability & Redundancy / Resiliency / | Power management: Individual Packet Forwarding Engine restart |
| High Availability & Redundancy / Resiliency / | Power management: Individual Packet Forwarding Engine shutdown |
| High Availability & Redundancy / Resiliency / | RCB Resiliency: Dying gasp support through SNMP |
| High Availability & Redundancy / Resiliency / | RCB Resiliency: Routing Control Board (RCB) resiliency |
| High Availability & Redundancy / Resiliency / | RCB Resiliency:Network attack protection |
| High Availability & Redundancy / Routing Engine Redundancy / | RE Redundancy: Failover detection |
| High Availability & Redundancy / Routing Engine Redundancy / | RE Redundancy: Redundancy across multiple gateways |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Active-Active - Data Redundancy Groups (RGx) |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Active-Passive - Routing Engine Group (RG0) |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Autorecovery of fabric link |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Chassis Cluster HA control link encryption |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Chassis Cluster Resiliency Improvement |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Chassis Cluster SPC Insert |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Chassis cluster extended cluster ID |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Chassis cluster formation |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Chassis cluster secure login |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Chassis cluster: Active-active |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Chassis cluster: Active-passive |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Chassis cluster: Multicast flow |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Chassis clusters (active/passive and active/active) |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Control plane failover |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | DHCP Server with chassis cluster support |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | DHCP relay in chassis cluster |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Damping time between back-to-back redundancy group failovers |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Data plane |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Data plane failover |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Dedicated fabric ports support |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Dual Control Links (redundant link for failover) |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Dual Data Links |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Dual Primary Role Auto-Recovery (Control link) |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Dual Primary Role Detection(Split Brain) |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Dual active-backup IPsec VPN chassis clusters |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Dual fabric links |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Enabling and disabling control link |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Encrypted control link |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Enhanced Monitoring: track-ip |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Enhanced Monitoring: track-ip ping from backup interface |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Enhanced debugging support for chassis cluster |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | External 10GbE ports on SCB2, SCB3, SCB4 |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Flow forwarding |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | HA Enhancement: L2 Switching with HA |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | HA Fabric forwarded packet reordering |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | HA cluster support |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | IP Monitoring with route failover (for standalone devices and redundant Ethernet interfaces) |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | IP monitoring with interface as next-hop option |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | IP monitoring with interface failover (for standalone devices) |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | IPV6 HA Active/Active |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | IPv6 Firewall Policy HA Active/Active Support |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Increasing IP monitoring capacity |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Interface Monitoring Enhancement for HA |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | J-Flow version 5 with chassis cluster support |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | J-Flow version 8 with chassis cluster support |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | JSRP with IPv6 |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Layer 2 LAG |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Layer 3 LAG |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Local interface support (non-Reth) |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Logical interface scaling |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Logical interfaces on redundant Ethernet interface scaling |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Loopback interface for chassis cluster VPN |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Low impact cluster upgrade |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Low-impact cluster upgrade (ISSU light) |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Monitoring support for control links |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Multicast in HA mode |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Preemt delay timer |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Redundancy groups |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Routing mode: LACP in chassis cluster mode |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Routing mode: Link aggregation in chassis cluster mode |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Routing mode: Static LAG in chassis cluster mode |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Second Routing Engine Startup Details |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Stateful Failover - ALGs |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Stateful Failover - Firewall |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Stateful Failover - IPSec VPN (Policy based) |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Stateful Failover - IPSec VPN (Route based) |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Stateful Failover - NAT |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Stateful Failover - Self-signed Certificate support |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Switching mode: LACP in chassis cluster mode |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Switching mode: Static LAG in chassis cluster mode |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Sync backup node configuration from primary node |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Synchronization - Configuration |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Synchronization - Dynamic Routing Protocols (DRP) |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Synchronization - Policies |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Synchronization - Session State Sync (RTO Sync) |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Synchronizing application identification package in a chassis cluster |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Traffic Prioritization for flow on Viking infrastructure of HA |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Upstream device IP address monitoring |
| High Availability & Redundancy / System Partitioning & Clustering / Chassis Clustering / | Upstream device IP address monitoring on a backup interface |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Fusion / | Cascade port support |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Node Slicing / | In-chassis Junos Node Slicing |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Node Slicing / | In-chassis Junos node slicing: CoS, port mirroring, tunnel services, and firewall filters |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Node Slicing / | In-chassis Junos node slicing: Multiversion software support |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Node Slicing / | In-chassis Junos node slicing: Software resiliency |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Node Slicing / | In-chassis Junos node slicing: Subscriber management |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Node Slicing / | In-chassis Junos node slicing: Upgrade JDM to support WRL 9-based VM host |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Node Slicing / | Junos node slicing |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Node Slicing / | Junos node slicing: Abstracted fabric interface |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Node Slicing / | Junos node slicing: Configure SLCs and assign them to GNFs |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Node Slicing / | Junos node slicing: Error recovery, fault handling, and resiliency |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Node Slicing / | Junos node slicing: Improved debugging ability and serviceability for JDM |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Node Slicing / | Junos node slicing: Multiversion software support |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Node Slicing / | Junos node slicing: Software support |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Node Slicing / | Junos node slicing: Subscriber management |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Node Slicing / | Junos node slicing: Ubuntu 20.04 |
| High Availability & Redundancy / System Partitioning & Clustering / Junos Node Slicing / | Ubuntu 24.04 in Junos node slicing |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: ALGs |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Admin operations (Telnet, SSH, HTTPS, and so on.) |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Administration |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: AppID enhancement |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: AppID on HSS platforms |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: AppTrack on HSS platforms |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Application firewalls |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Application quality of services (AppQos) |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Basic profiling |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: CPU usage allocation and control |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Chassis clusters |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Content security (UTM) |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Control plane infrastructure |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: DNS cache (display and clear) |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: DNS sinkhole enhancements |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Data path debugging |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Data plane infrastructure |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: FLOW |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Firewall authentication |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Flow trace |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Flows |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: ICAP redirect profiles |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: IDP policies |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Interconnect logical system flow enhancement |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Interfaces |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: LSYS |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Layer 2 address learning |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Layer 2 traffic and firewall sessions |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Licensing HSS platforms |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Multicast |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Multicast traffic |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: NAT |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: NAT (except interface NAT) |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: NAT - Source NAT interface |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Nonstop active routing |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Off-box logging |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: On-box logging |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: On-box reporting |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Platform support (HSS, inter-lsys) |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Policies |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Routing (dynamic and static) |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Screen options |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Screens |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Secure wire |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Security log names |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Security virtualization |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Separate multicast snooping domains for different logical systems |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Sessions |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Storm control |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: User firewall authentication in customized model |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: User firewall enhanced support |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: VPN tunnel interface |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: VPN tunnels |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Zones |
| High Availability & Redundancy / System Partitioning & Clustering / Logical Systems / | Logical systems: Zones and security policies |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Layer 2 virtual switch |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Virtual Router Instance: ALGs |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Virtual Router Instance: BGP |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Virtual Router Instance: Flow Management |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Virtual Router Instance: IGMP |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Virtual Router Instance: IPv4 |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Virtual Router Instance: IS-IS |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Virtual Router Instance: MSDP |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Virtual Router Instance: Multicast |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Virtual Router Instance: OSPF |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Virtual Router Instance: OSPFv3 |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Virtual Router Instance: PIM |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Virtual Router Instance: PIM Bidirectional |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Virtual Router Instance: RIP |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Virtual Router Instance: RIPng |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Virtual Router Instance: Traffic Management |
| High Availability & Redundancy / System Partitioning & Clustering / Routing Instances / | Virtual Router Instance: Unicast |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | ALG for Tenant Systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | AppID support for tenant systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | Application Firewall for Tenant Systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | Application quality of services (AppQoS) for tenant systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | DHCP for Tenant Systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | Default routing-instance support for tenant systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | Dynamic address for tenant systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | Firewall Authentication for Tenant Systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | Flow trace for tenant systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | ICAP service redirect support for tenant systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | IDP for Tenant System |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | Interfaces support enhancement on tenant systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | Logical tunnel interfaces and GRE tunnels |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | NAT for Tenant Systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | Off-box logging for Tenant Systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | On-Box Logging for Tenant System |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | On-Box Reporting for Tenant Systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | Root system's stream configuration for user logical systems and tenant systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | Screen for Tenant Systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | Security Policies for Tenant Systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | Security Zones for Tenant Systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | Tenant Systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | UTM for Tenant Systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | User Firewall UAC authentication entries in shared mode for logical systems and tenant systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | User authentication support for tenant systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | User firewall authentication in customized model on tenant systems |
| High Availability & Redundancy / System Partitioning & Clustering / Tenant Systems / | User firewall enhanced support for tenant systems |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / | Synchronize Virtual Chassis configs using SCP |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | Command forwarding support for MX Series Virtual Chassis |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | Enable Ifstate, peer infra, and TCP/IP stack parallelization on Virtual chassis |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | Faster PFE Acks |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | Interchassis redundancy support using Virtual Chassis |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | Layer 2 bridging support for MX Series Virtual Chassis |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | MX Series Virtual Chassis |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | MX Series Virtual Chassis commit time improvements |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | MX Series Virtual Chassis support for Layer 2 spanning-tree protocols |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | MX Series Virtual Chassis support for MX240 and MX480 member routers in a VC containing MX2010 or MX2020 member routers |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | MX Series Virtual Chassis support for determining member router health |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | MX Series Virtual Chassis support for inline flow monitoring |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | MX Series Virtual Chassis support for locality bias |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | MX Series Virtual Chassis support for logical systems |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | MX Series Virtual Chassis support for targeted traffic distribution and redundancy mechanisms |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | MX Series Virtual Chassis support for the ephemeral database |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | Member specification support in file commands for MX Series Virtual Chassis |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | Relay daemon code removed for MX Series Virtual Chassis |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | Sequential upgrade for Virtual Chassis |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | Virtual Chassis DS-Lite support |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | Virtual Chassis NAT and BNG support |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for MX Series / | Virtual Chassis support for L2TP LNS |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Active/active and active/standby support |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Alias support for Virtual Chassis and Virtual Chassis Fabric nodes |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Commit process optimization (Virtual Chassis, Switches) |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Dedicated Virtual Chassis port link aggregation |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Digital optical monitoring (DOM) on Virtual Chassis ports (VCPs) |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Link aggregation groups (LAGs) over Virtual Chassis ports (VCPs) |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Local Link Bias |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Synchronize Virtual Chassis configuration using SCP |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Virtual Chassis Support through HGoE |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Virtual Chassis member support |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Virtual Chassis preprovisioning |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Virtual Chassis split and merge |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Virtual Chassis support |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Virtual Chassis-Automatic software update on prospective member switches |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Virtual Chassis-Autoprovisioning of Virtual Chassis ports (VCPs) |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Virtual Chassis-Front-panel configuration of uplink module ports as Virtual Chassis ports (VCPs) |
| High Availability & Redundancy / System Partitioning & Clustering / Virtual Chassis / Virtual Chassis for Switches / | Virtual Chassis-SFP uplink module port interconnection of member switches |