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GHSA-xr93-pcq3-pxf8

MediumCVSS 6.3 / 10
Published Apr 18, 2026·Last modified May 5, 2026
Affected Components(0)

No affected components available

Description

CVE-2026-40881: addr/addrv2 Deserialization Resource Exhaustion

Summary

When deserializing addr or addrv2 messages, which contain vectors of addresses, Zebra would fully deserialize them up to a maximum length (over 233,000) that was derived from the 2 MiB message size limit. This is much larger than the actual limit of 1,000 messages from the specification. Zebra would eventually check that limit but, at that point, the memory for the larger vector was already allocated. An attacker could cause out-of-memory aborts in Zebra by sending multiple such messages over different connections.

Severity

Moderate - This is a Denial of Service Vulnerability that could allow an attacker to crash a Zebra node.

Affected Versions

All Zebra versions prior to version 4.3.1.

Description

The vulnerability exists in the read_addr/addrv2 functions in codec.rs. It deserializes a vector of addresses with the zcash_deserialize() trait method, which uses as a upper bound the result of T::max_allocation(). For theses types, it was derived from dividing the max message size (2 MiB) by the minimum serialized size of one entry. For AddrV1: 2_097_152 / 30 = 69,904. For AddrV2: 2_097_152 / 9 = 233,016. Only after deserialization was the MAX_ADDRS_IN_MESSAGE = 1000 limit checked.

An attacker could exploit this by:

  1. Creating addr or addrv2 messages with a large number of entries.
  2. Submitting them to a Zebra node, possibly through multiple connections, to attempt to get Zebra into an out-of-memory state.

Impact

Denial of Service

  • Attack Vector: Network.
  • Effect: Zebra node crash.
  • Scope: Any impacted Zebra node.

Fixed Versions

This issue is fixed in Zebra 4.3.1.

The fix changes the max_allocation() method for the relevant types to return 1,000, thus blocking larger values prior to deserialization.

Mitigation

Users should upgrade to Zebra 4.3.1 or later immediately.

There are no known workarounds for this issue. Immediate upgrade is the only way to ensure the node remains not vulnerable to the denial of service attack.

Credits

Thanks @Zk-nd3r for finding and reporting the issue, and suggesting the fix.

Risk Scores
Base Score
6.3

The vulnerability can be exploited over the network without needing physical access. It is easy for an attacker to exploit this vulnerability. An attacker does not need any special privileges or access rights. No user interaction is needed for the attacker to exploit this vulnerability.

Threat Intelligence
1.7

Limited exploitation activity has been observed. Close monitoring and planned remediation are recommended.

EPSS
0.26%

The exploit probability is very low. The vulnerability is unlikely to be exploited in the next 30 days.

Exploit
Not available

We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.

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