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Update dependency cryptography to v46.0.7 [SECURITY]#1883

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Update dependency cryptography to v46.0.7 [SECURITY]#1883
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renovate/pypi-cryptography-vulnerability

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@renovate renovate bot commented Mar 28, 2026

This PR contains the following updates:

Package Update Change OpenSSF
cryptography (changelog) patch ==46.0.5==46.0.7 OpenSSF Scorecard

GitHub Vulnerability Alerts

CVE-2026-34073

Summary

In versions of cryptography prior to 46.0.5, DNS name constraints were only validated against SANs within child certificates, and not the "peer name" presented during each validation. Consequently, cryptography would allow a peer named bar.example.com to validate against a wildcard leaf certificate for *.example.com, even if the leaf's parent certificate (or upwards) contained an excluded subtree constraint for bar.example.com.

This behavior resulted from a gap between RFC 5280 (which defines Name Constraint semantics) and RFC 9525 (which defines service identity semantics): put together, neither states definitively whether Name Constraints should be applied to peer names. To close this gap, cryptography now conservatively rejects any validation where the peer name would be rejected by a name constraint if it were a SAN instead.

In practice, exploitation of this bypass requires an uncommon X.509 topology, one that the Web PKI avoids because it exhibits these kinds of problems. Consequently, we consider this a medium-to-low impact severity.

See CVE-2025-61727 for a similar bypass in Go's crypto/x509.

Remediation

Users should upgrade to 46.0.6 or newer.

Attribution

Reporter: @​1seal

CVE-2026-39892

If a non-contiguous buffer was passed to APIs which accepted Python buffers (e.g. Hash.update()), this could lead to buffer overflows. For example:

h = Hash(SHA256())
b.update(buf[::-1])

would read past the end of the buffer on Python >3.11


cryptography has incomplete DNS name constraint enforcement on peer names

CVE-2026-34073 / GHSA-m959-cc7f-wv43

More information

Details

Summary

In versions of cryptography prior to 46.0.5, DNS name constraints were only validated against SANs within child certificates, and not the "peer name" presented during each validation. Consequently, cryptography would allow a peer named bar.example.com to validate against a wildcard leaf certificate for *.example.com, even if the leaf's parent certificate (or upwards) contained an excluded subtree constraint for bar.example.com.

This behavior resulted from a gap between RFC 5280 (which defines Name Constraint semantics) and RFC 9525 (which defines service identity semantics): put together, neither states definitively whether Name Constraints should be applied to peer names. To close this gap, cryptography now conservatively rejects any validation where the peer name would be rejected by a name constraint if it were a SAN instead.

In practice, exploitation of this bypass requires an uncommon X.509 topology, one that the Web PKI avoids because it exhibits these kinds of problems. Consequently, we consider this a medium-to-low impact severity.

See CVE-2025-61727 for a similar bypass in Go's crypto/x509.

Remediation

Users should upgrade to 46.0.6 or newer.

Attribution

Reporter: @​1seal

Severity

  • CVSS Score: 1.7 / 10 (Low)
  • Vector String: CVSS:4.0/AV:N/AC:H/AT:P/PR:N/UI:N/VC:N/VI:L/VA:N/SC:N/SI:N/SA:N/E:U

References

This data is provided by OSV and the GitHub Advisory Database (CC-BY 4.0).


Cryptography vulnerable to buffer overflow if non-contiguous buffers were passed to APIs

CVE-2026-39892 / GHSA-p423-j2cm-9vmq

More information

Details

If a non-contiguous buffer was passed to APIs which accepted Python buffers (e.g. Hash.update()), this could lead to buffer overflows. For example:

h = Hash(SHA256())
b.update(buf[::-1])

would read past the end of the buffer on Python >3.11

Severity

  • CVSS Score: 6.9 / 10 (Medium)
  • Vector String: CVSS:4.0/AV:N/AC:L/AT:N/PR:N/UI:N/VC:N/VI:N/VA:L/SC:N/SI:N/SA:N

References

This data is provided by OSV and the GitHub Advisory Database (CC-BY 4.0).


Release Notes

pyca/cryptography (cryptography)

v46.0.7

Compare Source

v46.0.6

Compare Source


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This PR was generated by Mend Renovate. View the repository job log.

@renovate renovate bot temporarily deployed to Vespa Cloud CD March 28, 2026 00:17 Inactive
@renovate renovate bot changed the title chore(deps): update dependency cryptography to v46.0.6 [security] Update dependency cryptography to v46.0.6 [SECURITY] Mar 31, 2026
@renovate renovate bot force-pushed the renovate/pypi-cryptography-vulnerability branch from 17941ad to 692dfbe Compare April 8, 2026 20:19
@renovate renovate bot changed the title Update dependency cryptography to v46.0.6 [SECURITY] Update dependency cryptography to v46.0.7 [SECURITY] Apr 8, 2026
@renovate renovate bot temporarily deployed to Vespa Cloud CD April 8, 2026 20:21 Inactive
@renovate renovate bot changed the title Update dependency cryptography to v46.0.7 [SECURITY] Update dependency cryptography to v46.0.7 [SECURITY] - autoclosed Apr 9, 2026
@renovate renovate bot closed this Apr 9, 2026
@renovate renovate bot deleted the renovate/pypi-cryptography-vulnerability branch April 9, 2026 08:17
@renovate renovate bot changed the title Update dependency cryptography to v46.0.7 [SECURITY] - autoclosed Update dependency cryptography to v46.0.7 [SECURITY] Apr 9, 2026
@renovate renovate bot reopened this Apr 9, 2026
@renovate renovate bot force-pushed the renovate/pypi-cryptography-vulnerability branch 2 times, most recently from 692dfbe to b876c12 Compare April 9, 2026 11:56
@renovate renovate bot temporarily deployed to Vespa Cloud CD April 9, 2026 11:57 Inactive
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