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CVE Vendors Products Updated CVSS v3.1
CVE-2024-5535 2 Openssl, Redhat 7 Openssl, Enterprise Linux, Jboss Core Services and 4 more 2025-11-03 9.1 Critical
Issue summary: Calling the OpenSSL API function SSL_select_next_proto with an empty supported client protocols buffer may cause a crash or memory contents to be sent to the peer. Impact summary: A buffer overread can have a range of potential consequences such as unexpected application beahviour or a crash. In particular this issue could result in up to 255 bytes of arbitrary private data from memory being sent to the peer leading to a loss of confidentiality. However, only applications that directly call the SSL_select_next_proto function with a 0 length list of supported client protocols are affected by this issue. This would normally never be a valid scenario and is typically not under attacker control but may occur by accident in the case of a configuration or programming error in the calling application. The OpenSSL API function SSL_select_next_proto is typically used by TLS applications that support ALPN (Application Layer Protocol Negotiation) or NPN (Next Protocol Negotiation). NPN is older, was never standardised and is deprecated in favour of ALPN. We believe that ALPN is significantly more widely deployed than NPN. The SSL_select_next_proto function accepts a list of protocols from the server and a list of protocols from the client and returns the first protocol that appears in the server list that also appears in the client list. In the case of no overlap between the two lists it returns the first item in the client list. In either case it will signal whether an overlap between the two lists was found. In the case where SSL_select_next_proto is called with a zero length client list it fails to notice this condition and returns the memory immediately following the client list pointer (and reports that there was no overlap in the lists). This function is typically called from a server side application callback for ALPN or a client side application callback for NPN. In the case of ALPN the list of protocols supplied by the client is guaranteed by libssl to never be zero in length. The list of server protocols comes from the application and should never normally be expected to be of zero length. In this case if the SSL_select_next_proto function has been called as expected (with the list supplied by the client passed in the client/client_len parameters), then the application will not be vulnerable to this issue. If the application has accidentally been configured with a zero length server list, and has accidentally passed that zero length server list in the client/client_len parameters, and has additionally failed to correctly handle a "no overlap" response (which would normally result in a handshake failure in ALPN) then it will be vulnerable to this problem. In the case of NPN, the protocol permits the client to opportunistically select a protocol when there is no overlap. OpenSSL returns the first client protocol in the no overlap case in support of this. The list of client protocols comes from the application and should never normally be expected to be of zero length. However if the SSL_select_next_proto function is accidentally called with a client_len of 0 then an invalid memory pointer will be returned instead. If the application uses this output as the opportunistic protocol then the loss of confidentiality will occur. This issue has been assessed as Low severity because applications are most likely to be vulnerable if they are using NPN instead of ALPN - but NPN is not widely used. It also requires an application configuration or programming error. Finally, this issue would not typically be under attacker control making active exploitation unlikely. The FIPS modules in 3.3, 3.2, 3.1 and 3.0 are not affected by this issue. Due to the low severity of this issue we are not issuing new releases of OpenSSL at this time. The fix will be included in the next releases when they become available.
CVE-2024-5458 3 Fedoraproject, Php, Redhat 3 Fedora, Php, Enterprise Linux 2025-11-03 5.3 Medium
In PHP versionsĀ 8.1.* before 8.1.29, 8.2.* before 8.2.20, 8.3.* before 8.3.8, due to a code logic error, filtering functions such as filter_var when validating URLsĀ (FILTER_VALIDATE_URL) for certain types of URLs the function will result in invalid user information (username + password part of URLs) being treated as valid user information. This may lead to the downstream code accepting invalid URLs as valid and parsing them incorrectly.
CVE-2024-54534 2 Apple, Redhat 13 Ipados, Iphone Os, Macos and 10 more 2025-11-03 8.8 High
The issue was addressed with improved memory handling. This issue is fixed in watchOS 11.2, visionOS 2.2, tvOS 18.2, macOS Sequoia 15.2, Safari 18.2, iOS 18.2 and iPadOS 18.2. Processing maliciously crafted web content may lead to memory corruption.
CVE-2024-54531 1 Apple 1 Macos 2025-11-03 5.5 Medium
The issue was addressed with improved memory handling. This issue is fixed in macOS Sequoia 15.2. An app may be able to bypass kASLR.
CVE-2024-54529 1 Apple 1 Macos 2025-11-03 7.8 High
A logic issue was addressed with improved checks. This issue is fixed in macOS Sequoia 15.2, macOS Ventura 13.7.2, macOS Sonoma 14.7.2. An app may be able to execute arbitrary code with kernel privileges.
CVE-2024-54528 1 Apple 1 Macos 2025-11-03 7.1 High
A logic issue was addressed with improved restrictions. This issue is fixed in macOS Sequoia 15.2, macOS Ventura 13.7.2, macOS Sonoma 14.7.2. An app may be able to overwrite arbitrary files.
CVE-2024-54527 1 Apple 5 Ipados, Iphone Os, Macos and 2 more 2025-11-03 5.5 Medium
This issue was addressed with improved checks. This issue is fixed in watchOS 11.2, tvOS 18.2, macOS Sequoia 15.2, iOS 18.2 and iPadOS 18.2, macOS Ventura 13.7.2, macOS Sonoma 14.7.2. An app may be able to access sensitive user data.
CVE-2024-54526 1 Apple 5 Ipados, Iphone Os, Macos and 2 more 2025-11-03 5.5 Medium
The issue was addressed with improved checks. This issue is fixed in watchOS 11.2, tvOS 18.2, macOS Sequoia 15.2, iOS 18.2 and iPadOS 18.2, macOS Ventura 13.7.2, macOS Sonoma 14.7.2. A malicious app may be able to access private information.
CVE-2024-54524 1 Apple 1 Macos 2025-11-03 5.5 Medium
A logic issue was addressed with improved file handling. This issue is fixed in macOS Sequoia 15.2. A malicious app may be able to access arbitrary files.
CVE-2024-54515 1 Apple 1 Macos 2025-11-03 7.8 High
A logic issue was addressed with improved restrictions. This issue is fixed in macOS Sequoia 15.2. A malicious app may be able to gain root privileges.
CVE-2024-54514 1 Apple 5 Ipados, Iphone Os, Macos and 2 more 2025-11-03 8.2 High
The issue was addressed with improved checks. This issue is fixed in watchOS 11.2, tvOS 18.2, macOS Sequoia 15.2, iOS 18.2 and iPadOS 18.2, macOS Ventura 13.7.2, macOS Sonoma 14.7.2. An app may be able to break out of its sandbox.
CVE-2024-54513 1 Apple 6 Ipados, Iphone Os, Macos and 3 more 2025-11-03 5.7 Medium
A permissions issue was addressed with additional restrictions. This issue is fixed in watchOS 11.2, visionOS 2.2, tvOS 18.2, macOS Sequoia 15.2, iOS 18.2 and iPadOS 18.2. An app may be able to access sensitive user data.
CVE-2024-54510 1 Apple 5 Ipados, Iphone Os, Macos and 2 more 2025-11-03 5.1 Medium
A race condition was addressed with improved locking. This issue is fixed in iPadOS 17.7.3, watchOS 11.2, tvOS 18.2, macOS Sequoia 15.2, iOS 18.2 and iPadOS 18.2, macOS Ventura 13.7.2, macOS Sonoma 14.7.2. An app may be able to leak sensitive kernel state.
CVE-2024-54508 2 Apple, Redhat 13 Ipados, Iphone Os, Macos and 10 more 2025-11-03 7.5 High
The issue was addressed with improved memory handling. This issue is fixed in watchOS 11.2, visionOS 2.2, tvOS 18.2, macOS Sequoia 15.2, Safari 18.2, iOS 18.2 and iPadOS 18.2. Processing maliciously crafted web content may lead to an unexpected process crash.
CVE-2024-54506 1 Apple 1 Macos 2025-11-03 9.8 Critical
An out-of-bounds access issue was addressed with improved bounds checking. This issue is fixed in macOS Sequoia 15.2. An attacker may be able to cause unexpected system termination or arbitrary code execution in DCP firmware.
CVE-2024-54505 2 Apple, Redhat 13 Ipados, Iphone Os, Macos and 10 more 2025-11-03 6.5 Medium
A type confusion issue was addressed with improved memory handling. This issue is fixed in iPadOS 17.7.3, watchOS 11.2, visionOS 2.2, tvOS 18.2, macOS Sequoia 15.2, Safari 18.2, iOS 18.2 and iPadOS 18.2. Processing maliciously crafted web content may lead to memory corruption.
CVE-2024-54504 1 Apple 1 Macos 2025-11-03 5.5 Medium
A privacy issue was addressed with improved private data redaction for log entries. This issue is fixed in macOS Sequoia 15.2. An app may be able to access user-sensitive data.
CVE-2024-54503 1 Apple 2 Ipados, Iphone Os 2025-11-03 3.3 Low
An inconsistent user interface issue was addressed with improved state management. This issue is fixed in iOS 18.2 and iPadOS 18.2. Muting a call while ringing may not result in mute being enabled.
CVE-2024-54502 2 Apple, Redhat 13 Ipados, Iphone Os, Macos and 10 more 2025-11-03 6.5 Medium
The issue was addressed with improved checks. This issue is fixed in watchOS 11.2, visionOS 2.2, tvOS 18.2, macOS Sequoia 15.2, Safari 18.2, iOS 18.2 and iPadOS 18.2. Processing maliciously crafted web content may lead to an unexpected process crash.
CVE-2024-54501 1 Apple 6 Ipados, Iphone Os, Macos and 3 more 2025-11-03 5.5 Medium
The issue was addressed with improved checks. This issue is fixed in iPadOS 17.7.3, watchOS 11.2, visionOS 2.2, tvOS 18.2, macOS Sequoia 15.2, iOS 18.2 and iPadOS 18.2, macOS Ventura 13.7.2, macOS Sonoma 14.7.2. Processing a maliciously crafted file may lead to a denial of service.