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GHSA-qwgh-2vcv-g2f7
Summary
A caught panic may leave the cursor position of EagerBuffer or ReadBuffer in a corrupted state; this in turn allows out-of-bounds reads/writes.
Details & PoC
The following two tests fail miri:
#[cfg(miri)]
#[test]
fn eager_digest_blocks_panic_corrupts_inline_position() {
// `EagerBuffer` stores its cursor in the last byte of the internal block.
// When `digest_blocks` completes a previously partial block, it overwrites
// that byte with input data before invoking the caller-provided `compress`
// callback. If the callback panics, safe code can catch the panic and keep
// using the buffer while its cursor byte no longer satisfies the internal
// `pos < block_size` invariant. Under Miri this `get_pos` call reaches the
// `unreachable_unchecked` used for the assumed-valid cursor.
let mut buf = EagerBuffer::<U4>::new(&[1, 2]);
let _ = std::panic::catch_unwind(std::panic::AssertUnwindSafe(|| {
buf.digest_blocks(&[3, 0xff], |_| panic!("simulated compression failure"));
}));
let _ = buf.get_pos();
}
#[cfg(miri)]
#[test]
fn read_buffer_generator_panic_corrupts_inline_position() {
// `ReadBuffer` stores its cursor in `buffer[0]`, but `write_block` gives
// `gen_block` mutable access to the whole internal block before restoring
// `buffer[0]` to a valid cursor. If `gen_block` writes an arbitrary first
// byte and panics, safe code can catch the panic and later observe an
// invalid cursor. Under Miri this `get_pos` call reaches the
// `unreachable_unchecked` used for the assumed-valid cursor.
let mut buf = ReadBuffer::<U4>::default();
let _ = std::panic::catch_unwind(std::panic::AssertUnwindSafe(|| {
buf.write_block(
1,
|block| {
block[0] = 0xff;
panic!("simulated block generation failure");
},
|_| {},
);
}));
let _ = buf.get_pos();
}
They fail on an unreachable_unchecked!() under the invariant for the pos to always be within bounds of the block.
Impact
While the byte that overwrites pos may come from untrusted input and is therefore attacker-controlled, this still relies on the surrounding code catching the panic and carrying on, which should be uncommon in practice.
For this to be exploitable, the attacker also needs a way to trigger a panic here; I have not investigated how feasible that is.
Credits
The issue was discovered by GPT-5.5
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The vulnerability can be exploited over the network without needing physical access. 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.
Limited exploitation activity has been observed. Close monitoring and planned remediation are recommended.
Probability that this vulnerability will be exploited in the wild within the next 30 days.
We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.
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