CyberRota Analysis
AI-GeneratedThe vulnerability arises in the msgpack_unpacker_expand_buffer function, where unchecked size calculations can lead to heap buffer overflows due to integer wrapping when allocating memory. This flaw allows attackers to manipulate the buffer size, potentially leading to arbitrary code execution or data corruption. Organizations utilizing the msgpack library, especially those integrating it with untrusted input sources, should prioritize addressing this vulnerability to mitigate risks associated with memory management errors.
Public Exploit Signal
A public exploit, PoC, GitHub repository or Metasploit reference was detected for this CVE.
Note: these links are listed for security research and verification purposes only.
Original NVD Description
msgpack_unpacker_expand_buffer in src/unpack.c, reached through the public msgpack_unpacker_reserve_buffer API, computes its new buffer size using an unchecked size_t addition of the requested size and the amount already used. The doubling loop guards its own multiplication against overflow, but the addition in the loop condition is unguarded, so a request near SIZE_MAX wraps: the loop condition is already satisfied, the allocation is performed at the small pre-wrap size, and the function returns true. The caller is told the requested capacity was reserved when it was not, so a subsequent write of the requested length overflows the heap buffer. The library's own example/lib_buffer_unpack.c demonstrates the reserve-then-write pattern, and its defensive assert comparing capacity against the request is compiled out under NDEBUG. msgpack-c's own decode entry points do not derive the reservation size from untrusted input, so reaching this requires an integration that passes an attacker-influenced length to the reservation API, such as a length-prefixed streaming transport.