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Copy file name to clipboardExpand all lines: content/cumulus-linux-511/Whats-New/rn.md
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| <aname="4964153"></a> [4964153](#4964153) <aname="4964153"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
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| <aname="4963280"></a> [4963280](#4963280) <aname="4963280"></a> <br /> | Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak. | 5.9.1-5.16.1 ||
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| <aname="4963277"></a> [4963277](#4963277) <aname="4963277"></a> <br /> | When many BFD sessions are configured at scale, <code>ptmd</code> might crash when one of the BFD sessions flaps. | 5.3.1-5.16.1 ||
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| <aname="4930152"></a> [4930152](#4930152) <aname="4930152"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
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| <aname="4964153"></a> [4964153](#4964153) <aname="4964153"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
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| <aname="4963280"></a> [4963280](#4963280) <aname="4963280"></a> <br /> | Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak. | 5.9.1-5.16.1 ||
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| <aname="4963277"></a> [4963277](#4963277) <aname="4963277"></a> <br /> | When many BFD sessions are configured at scale, <code>ptmd</code> might crash when one of the BFD sessions flaps. | 5.3.1-5.16.1 ||
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| <aname="4930152"></a> [4930152](#4930152) <aname="4930152"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
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| <aname="4964153"></a> [4964153](#4964153) <aname="4964153"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
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| <aname="4963280"></a> [4963280](#4963280) <aname="4963280"></a> <br /> | Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak. | 5.9.1-5.16.1 ||
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| <aname="4963277"></a> [4963277](#4963277) <aname="4963277"></a> <br /> | When many BFD sessions are configured at scale, <code>ptmd</code> might crash when one of the BFD sessions flaps. | 5.3.1-5.16.1 ||
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| <aname="4930152"></a> [4930152](#4930152) <aname="4930152"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
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<td>When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation.</td>
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<td>Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak.</td>
<td>When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation.</td>
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<td>Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak.</td>
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<td>When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation.</td>
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<td>Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak.</td>
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| <aname="4964153"></a> [4964153](#4964153) <aname="4964153"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
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| <aname="4963280"></a> [4963280](#4963280) <aname="4963280"></a> <br /> | Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak. | 5.9.1-5.16.1 ||
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| <aname="4963277"></a> [4963277](#4963277) <aname="4963277"></a> <br /> | When many BFD sessions are configured at scale, <code>ptmd</code> might crash when one of the BFD sessions flaps. | 5.3.1-5.16.1 ||
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| <aname="4930152"></a> [4930152](#4930152) <aname="4930152"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
<td>When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation.</td>
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<td>Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak.</td>
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| <aname="4964153"></a> [4964153](#4964153) <aname="4964153"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
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| <aname="4963280"></a> [4963280](#4963280) <aname="4963280"></a> <br /> | Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak. | 5.9.1-5.16.1 ||
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| <aname="4963277"></a> [4963277](#4963277) <aname="4963277"></a> <br /> | When many BFD sessions are configured at scale, <code>ptmd</code> might crash when one of the BFD sessions flaps. | 5.3.1-5.16.1 ||
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| <aname="4930152"></a> [4930152](#4930152) <aname="4930152"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
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| <aname="4964153"></a> [4964153](#4964153) <aname="4964153"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
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| <aname="4963280"></a> [4963280](#4963280) <aname="4963280"></a> <br /> | Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak. | 5.9.1-5.16.1 ||
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| <aname="4963277"></a> [4963277](#4963277) <aname="4963277"></a> <br /> | When many BFD sessions are configured at scale, <code>ptmd</code> might crash when one of the BFD sessions flaps. | 5.3.1-5.16.1 ||
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| <aname="4930152"></a> [4930152](#4930152) <aname="4930152"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
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<td>When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation.</td>
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<td>Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak.</td>
<td>When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation.</td>
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<td>Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak.</td>
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| <aname="4964153"></a> [4964153](#4964153) <aname="4964153"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
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| <aname="4963280"></a> [4963280](#4963280) <aname="4963280"></a> <br /> | Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak. | 5.9.1-5.16.1 ||
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| <aname="4963277"></a> [4963277](#4963277) <aname="4963277"></a> <br /> | When many BFD sessions are configured at scale, <code>ptmd</code> might crash when one of the BFD sessions flaps. | 5.3.1-5.16.1 ||
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| <aname="4930152"></a> [4930152](#4930152) <aname="4930152"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
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<td>When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation.</td>
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<td>Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak.</td>
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| <aname="4964154"></a> [4964154](#4964154) <aname="4964154"></a> <br /> | When you run the <code>nv config apply</code> command or the <code>sudo systemctl reload frr.service</code> command on a switch configured with VRF route leaking that has many BGP peers, VRFs, and BGP learned prefixes, FRR reload might time out. To work around this issue, run <code>sudo systemctl edit frr.service</code> to change the <code>TimeoutSec=2m</code> to a higher value and apply the changes with <code>sudo systemctl daemon-reload</code>. | 5.15.0-5.16.1 ||
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| <aname="4964153"></a> [4964153](#4964153) <aname="4964153"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
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| <aname="4963280"></a> [4963280](#4963280) <aname="4963280"></a> <br /> | Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak. | 5.9.1-5.16.1 ||
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| <aname="4963277"></a> [4963277](#4963277) <aname="4963277"></a> <br /> | When many BFD sessions are configured at scale, <code>ptmd</code> might crash when one of the BFD sessions flaps. | 5.3.1-5.16.1 ||
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| <aname="4963271"></a> [4963271](#4963271) <aname="4963271"></a> <br /> | PTM does not refresh certain entries and the PTM's neighbor status command (ptmctl -d) continues to show a neighbor that is already gone. This condition clears when the expected neighbor gets discovered. | 5.15.1-5.16.1 ||
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| <aname="4964154"></a> [4964154](#4964154) <aname="4964154"></a> <br /> | When you run the <code>nv config apply</code> command or the <code>sudo systemctl reload frr.service</code> command on a switch configured with VRF route leaking that has many BGP peers, VRFs, and BGP learned prefixes, FRR reload might time out. To work around this issue, run <code>sudo systemctl edit frr.service</code> to change the <code>TimeoutSec=2m</code> to a higher value and apply the changes with <code>sudo systemctl daemon-reload</code>. | 5.15.0-5.16.1 ||
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| <aname="4964153"></a> [4964153](#4964153) <aname="4964153"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
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| <aname="4963280"></a> [4963280](#4963280) <aname="4963280"></a> <br /> | Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak. | 5.9.1-5.16.1 ||
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| <aname="4963277"></a> [4963277](#4963277) <aname="4963277"></a> <br /> | When many BFD sessions are configured at scale, <code>ptmd</code> might crash when one of the BFD sessions flaps. | 5.3.1-5.16.1 ||
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| <aname="4930152"></a> [4930152](#4930152) <aname="4930152"></a> <br /> | When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation. | 5.11.3-5.16.1 ||
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<td>When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation.</td>
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<td>Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak.</td>
<td>When you configure layer 3 SVI interfaces with an anycast gateway (VRR) IP address only and no unique IP address, the connected route for the subnet is not programmed in the ASIC, causing packets destined for locally connected hosts to drop after decapsulation.</td>
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<td>Under certain scale scenarios, the switch might end up in a state where the PTM component's connection to LLDP breaks. This issue results in LLDP socket contention issues and, in turn, a PTM memory leak.</td>
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