chore(deps): update dependency cryptography to v46 [security]#278
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This PR contains the following updates:
==44.0.3→==46.0.6GitHub Vulnerability Alerts
CVE-2026-26007
Vulnerability Summary
The
public_key_from_numbers(orEllipticCurvePublicNumbers.public_key()),EllipticCurvePublicNumbers.public_key(),load_der_public_key()andload_pem_public_key()functions do not verify that the point belongs to the expected prime-order subgroup of the curve.This missing validation allows an attacker to provide a public key point
Pfrom a small-order subgroup. This can lead to security issues in various situations, such as the most commonly used signature verification (ECDSA) and shared key negotiation (ECDH). When the victim computes the shared secret asS = [victim_private_key]Pvia ECDH, this leaks information aboutvictim_private_key mod (small_subgroup_order). For curves with cofactor > 1, this reveals the least significant bits of the private key. When these weak public keys are used in ECDSA , it's easy to forge signatures on the small subgroup.Only SECT curves are impacted by this.
Credit
This vulnerability was discovered by:
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.comto validate against a wildcard leaf certificate for*.example.com, even if the leaf's parent certificate (or upwards) contained an excluded subtree constraint forbar.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
cryptography Vulnerable to a Subgroup Attack Due to Missing Subgroup Validation for SECT Curves
CVE-2026-26007 / GHSA-r6ph-v2qm-q3c2
More information
Details
Vulnerability Summary
The
public_key_from_numbers(orEllipticCurvePublicNumbers.public_key()),EllipticCurvePublicNumbers.public_key(),load_der_public_key()andload_pem_public_key()functions do not verify that the point belongs to the expected prime-order subgroup of the curve.This missing validation allows an attacker to provide a public key point
Pfrom a small-order subgroup. This can lead to security issues in various situations, such as the most commonly used signature verification (ECDSA) and shared key negotiation (ECDH). When the victim computes the shared secret asS = [victim_private_key]Pvia ECDH, this leaks information aboutvictim_private_key mod (small_subgroup_order). For curves with cofactor > 1, this reveals the least significant bits of the private key. When these weak public keys are used in ECDSA , it's easy to forge signatures on the small subgroup.Only SECT curves are impacted by this.
Credit
This vulnerability was discovered by:
Severity
CVSS:4.0/AV:N/AC:H/AT:N/PR:N/UI:N/VC:H/VI:N/VA:N/SC:N/SI:N/SA:N/E:X/CR:X/IR:X/AR:X/MAV:X/MAC:X/MAT:X/MPR:X/MUI:X/MVC:X/MVI:X/MVA:X/MSC:X/MSI:X/MSA:X/S:X/AU:X/R:X/V:X/RE:X/U:XReferences
This data is provided by OSV and the GitHub Advisory Database (CC-BY 4.0).
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.comto validate against a wildcard leaf certificate for*.example.com, even if the leaf's parent certificate (or upwards) contained an excluded subtree constraint forbar.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: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:UReferences
This data is provided by OSV and the GitHub Advisory Database (CC-BY 4.0).
Release Notes
pyca/cryptography (cryptography)
v46.0.6Compare Source
v46.0.5Compare Source
v46.0.4Compare Source
v46.0.3Compare Source
v46.0.2Compare Source
v46.0.1Compare Source
v46.0.0Compare Source
v45.0.7Compare Source
v45.0.6Compare Source
v45.0.5Compare Source
v45.0.4Compare Source
v45.0.3Compare Source
v45.0.2Compare Source
v45.0.1Compare Source
v45.0.0Compare Source
Configuration
📅 Schedule: Branch creation - "" in timezone US/Eastern, Automerge - At any time (no schedule defined).
🚦 Automerge: Disabled by config. Please merge this manually once you are satisfied.
♻ Rebasing: Whenever PR is behind base branch, or you tick the rebase/retry checkbox.
🔕 Ignore: Close this PR and you won't be reminded about this update again.
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