SEPTEMBER 7, 2026
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Case File

CVE-2026-53994

HIGH · CVSS 7.5 EPSS 0.42% Public Exploit

Source: NVD + CISA KEV + EPSS · Published 2026-07-18 · Last synced 2026-08-17

CyberRota Analysis

AI-Generated

ProFTPD's mod_sftp is vulnerable to a heap-based buffer overflow due to inadequate validation of SFTP packet lengths, allowing authenticated users to exploit this flaw. By sending a specially crafted packet, an attacker can trigger a denial of service by crashing the ProFTPD session, with the potential for further exploitation depending on the heap layout. Organizations using ProFTPD with SFTP enabled should prioritize patching this vulnerability to mitigate risks of service disruption and possible exploitation.

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.

CVE
CVE-2026-53994
Severity
HIGH
CVSS
7.5
EPSS
0.42%

Original NVD Description

ProFTPD mod_sftp contains a heap-based buffer overflow reachable by an authenticated SFTP user. The fxp_packet_read() function accepts the attacker-supplied 32-bit big-endian SFTP packet length without a minimum sanity check. A value of 0 causes an unsigned subtraction elsewhere in the read path to underflow to approximately 4 GB. That oversized request reaches the core memory allocator, where the rounded size is computed in size_t but passed to new_block() as a 32-bit int; the low 32 bits of 0x100000000 are 0, so new_block() returns a small (~512-byte) block while the caller is told it received ~4 GB. The subsequent fill loop then streams attacker-controlled bytes past the end of the 544-byte allocation, producing an attacker-controlled heap buffer overflow. An authenticated user can crash the per-connection ProFTPD session child on demand with a single malformed SFTP packet (packet_len=0 followed by a body greater than approximately 544 bytes), producing reliable authenticated remote denial of service. Depending on heap layout and adjacent allocations, heap metadata corruption and further consequences beyond denial of service may be possible, though only denial of service is demonstrated by the supplied proof of concept.

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