Total
5566 CVE
| CVE | Vendors | Products | Updated | CVSS v2 | CVSS v3 |
|---|---|---|---|---|---|
| CVE-2020-10016 | 1 Apple | 6 Ipados, Iphone Os, Mac Os X and 3 more | 2026-06-17 | 9.3 HIGH | 7.8 HIGH |
| A memory corruption issue was addressed with improved state management. This issue is fixed in macOS Big Sur 11.0.1, iOS 14.2 and iPadOS 14.2, tvOS 14.2, watchOS 7.1. An application may be able to execute arbitrary code with kernel privileges. | |||||
| CVE-2020-10015 | 1 Apple | 2 Mac Os X, Macos | 2026-06-17 | 9.3 HIGH | 7.8 HIGH |
| An out-of-bounds write issue was addressed with improved bounds checking. This issue is fixed in macOS Big Sur 11.1, Security Update 2020-001 Catalina, Security Update 2020-007 Mojave, macOS Big Sur 11.0.1. An application may be able to execute arbitrary code with kernel privileges. | |||||
| CVE-2020-10014 | 1 Apple | 2 Mac Os X, Macos | 2026-06-17 | 4.3 MEDIUM | 6.3 MEDIUM |
| A parsing issue in the handling of directory paths was addressed with improved path validation. This issue is fixed in macOS Big Sur 11.0.1. A malicious application may be able to break out of its sandbox. | |||||
| CVE-2020-10013 | 1 Apple | 4 Ipados, Iphone Os, Mac Os X and 1 more | 2026-06-17 | 9.3 HIGH | 7.8 HIGH |
| A logic issue was addressed with improved state management. This issue is fixed in tvOS 14.0, iOS 14.0 and iPadOS 14.0. An application may be able to execute arbitrary code with kernel privileges. | |||||
| CVE-2020-10012 | 1 Apple | 2 Mac Os X, Macos | 2026-06-17 | 4.3 MEDIUM | 6.1 MEDIUM |
| An access issue was addressed with improved access restrictions. This issue is fixed in macOS Big Sur 11.0.1. Processing a maliciously crafted document may lead to a cross site scripting attack. | |||||
| CVE-2020-10011 | 1 Apple | 4 Ipados, Iphone Os, Mac Os X and 1 more | 2026-06-17 | 6.8 MEDIUM | 7.8 HIGH |
| An out-of-bounds read was addressed with improved bounds checking. This issue is fixed in iOS 14.2 and iPadOS 14.2, macOS Catalina 10.15.7, Security Update 2020-005 High Sierra, Security Update 2020-005 Mojave. Processing a maliciously crafted USD file may lead to unexpected application termination or arbitrary code execution. | |||||
| CVE-2020-10010 | 1 Apple | 5 Ipados, Iphone Os, Mac Os X and 2 more | 2026-06-17 | 4.6 MEDIUM | 7.8 HIGH |
| A path handling issue was addressed with improved validation. This issue is fixed in macOS Big Sur 11.0.1, iOS 14.2 and iPadOS 14.2, tvOS 14.2, watchOS 7.1. A local attacker may be able to elevate their privileges. | |||||
| CVE-2020-10009 | 1 Apple | 1 Mac Os X | 2026-06-17 | 4.3 MEDIUM | 5.5 MEDIUM |
| A logic issue was addressed with improved state management. This issue is fixed in macOS Big Sur 11.0.1. A sandboxed process may be able to circumvent sandbox restrictions. | |||||
| CVE-2020-10007 | 1 Apple | 1 Mac Os X | 2026-06-17 | 2.1 LOW | 5.5 MEDIUM |
| A logic issue was addressed with improved state management. This issue is fixed in macOS Big Sur 11.0.1. A malicious application may be able to determine kernel memory layout. | |||||
| CVE-2020-10006 | 1 Apple | 1 Mac Os X | 2026-06-17 | 4.3 MEDIUM | 5.5 MEDIUM |
| This issue was addressed with improved entitlements. This issue is fixed in macOS Big Sur 11.0.1. A malicious application may be able to access restricted files. | |||||
| CVE-2020-10004 | 1 Apple | 4 Ipados, Iphone Os, Mac Os X and 1 more | 2026-06-17 | 6.8 MEDIUM | 7.8 HIGH |
| A logic issue was addressed with improved state management. This issue is fixed in macOS Big Sur 11.0.1, iOS 14.2 and iPadOS 14.2. Opening a maliciously crafted file may lead to unexpected application termination or arbitrary code execution. | |||||
| CVE-2020-10003 | 1 Apple | 5 Ipados, Iphone Os, Mac Os X and 2 more | 2026-06-17 | 4.6 MEDIUM | 7.8 HIGH |
| An issue existed within the path validation logic for symlinks. This issue was addressed with improved path sanitization. This issue is fixed in macOS Big Sur 11.0.1, iOS 14.2 and iPadOS 14.2, tvOS 14.2, watchOS 7.1. A local attacker may be able to elevate their privileges. | |||||
| CVE-2020-10002 | 1 Apple | 7 Icloud, Ipados, Iphone Os and 4 more | 2026-06-17 | 2.1 LOW | 5.5 MEDIUM |
| A logic issue was addressed with improved state management. This issue is fixed in macOS Big Sur 11.0.1, watchOS 7.1, iOS 14.2 and iPadOS 14.2, iCloud for Windows 11.5, tvOS 14.2, iTunes 12.11 for Windows. A local user may be able to read arbitrary files. | |||||
| CVE-2020-10001 | 2 Apple, Debian | 2 Mac Os X, Debian Linux | 2026-06-17 | 4.3 MEDIUM | 5.5 MEDIUM |
| An input validation issue was addressed with improved memory handling. This issue is fixed in macOS Big Sur 11.1, Security Update 2020-001 Catalina, Security Update 2020-007 Mojave. A malicious application may be able to read restricted memory. | |||||
| CVE-2019-9804 | 2 Apple, Mozilla | 2 Mac Os X, Firefox | 2026-06-17 | 7.5 HIGH | 9.8 CRITICAL |
| In Firefox Developer Tools it is possible that pasting the result of the 'Copy as cURL' command into a command shell on macOS will cause the execution of unintended additional bash script commands if the URL was maliciously crafted. This is the result of an issue with the native version of Bash on macOS. *Note: This issue only affects macOS. Other operating systems are unaffected.*. This vulnerability affects Firefox < 66. | |||||
| CVE-2019-9518 | 11 Apache, Apple, Canonical and 8 more | 20 Traffic Server, Mac Os X, Swiftnio and 17 more | 2026-06-17 | 7.8 HIGH | 7.5 HIGH |
| Some HTTP/2 implementations are vulnerable to a flood of empty frames, potentially leading to a denial of service. The attacker sends a stream of frames with an empty payload and without the end-of-stream flag. These frames can be DATA, HEADERS, CONTINUATION and/or PUSH_PROMISE. The peer spends time processing each frame disproportionate to attack bandwidth. This can consume excess CPU. | |||||
| CVE-2019-9517 | 12 Apache, Apple, Canonical and 9 more | 25 Http Server, Traffic Server, Mac Os X and 22 more | 2026-06-17 | 7.8 HIGH | 7.5 HIGH |
| Some HTTP/2 implementations are vulnerable to unconstrained interal data buffering, potentially leading to a denial of service. The attacker opens the HTTP/2 window so the peer can send without constraint; however, they leave the TCP window closed so the peer cannot actually write (many of) the bytes on the wire. The attacker then sends a stream of requests for a large response object. Depending on how the servers queue the responses, this can consume excess memory, CPU, or both. | |||||
| CVE-2019-9516 | 12 Apache, Apple, Canonical and 9 more | 21 Traffic Server, Mac Os X, Swiftnio and 18 more | 2026-06-17 | 6.8 MEDIUM | 6.5 MEDIUM |
| Some HTTP/2 implementations are vulnerable to a header leak, potentially leading to a denial of service. The attacker sends a stream of headers with a 0-length header name and 0-length header value, optionally Huffman encoded into 1-byte or greater headers. Some implementations allocate memory for these headers and keep the allocation alive until the session dies. This can consume excess memory. | |||||
| CVE-2019-9515 | 12 Apache, Apple, Canonical and 9 more | 24 Traffic Server, Mac Os X, Swiftnio and 21 more | 2026-06-17 | 7.8 HIGH | 7.5 HIGH |
| Some HTTP/2 implementations are vulnerable to a settings flood, potentially leading to a denial of service. The attacker sends a stream of SETTINGS frames to the peer. Since the RFC requires that the peer reply with one acknowledgement per SETTINGS frame, an empty SETTINGS frame is almost equivalent in behavior to a ping. Depending on how efficiently this data is queued, this can consume excess CPU, memory, or both. | |||||
| CVE-2019-9514 | 13 Apache, Apple, Canonical and 10 more | 30 Traffic Server, Mac Os X, Swiftnio and 27 more | 2026-06-17 | 7.8 HIGH | 7.5 HIGH |
| Some HTTP/2 implementations are vulnerable to a reset flood, potentially leading to a denial of service. The attacker opens a number of streams and sends an invalid request over each stream that should solicit a stream of RST_STREAM frames from the peer. Depending on how the peer queues the RST_STREAM frames, this can consume excess memory, CPU, or both. | |||||
