🛡️ CVE-2025-31130 — gitoxide

🟡 CVSS 6.8 — Medium ✅ No Known Exploit CWE-328 NVD
6.8
CVSS Score
0 Low4 Medium7 High9 Critical10

Description

gitoxide does not detect SHA-1 collision attacks

Summary

gitoxide uses SHA-1 hash implementations without any collision detection, leaving it vulnerable to hash collision attacks.

Details

gitoxide uses the sha1_smol or sha1 crate, both of which implement standard SHA-1 without any mitigations for collision attacks. This means that two distinct Git objects with colliding SHA-1 hashes would break the Git object model and integrity checks when used with gitoxide.

The SHA-1 function is considered cryptographically insecure. However, in the wake of the SHAttered attacks, this issue was mitigated in Git 2.13.0 in 2017 by using the [sha1collisiondetection](https://github.com/crmarcstevens/sha1collisiondetection) algorithm by default and producing an error when known SHA-1 collisions are detected. Git is in the process of migrating to using SHA-256 for object hashes, but this has not been rolled out widely yet and gitoxide does not support SHA-256 object hashes.

PoC

The following program demonstrates the problem, using the two [SHAttered PDFs](https://shattered.io/):

```rust

use sha1_checked::{CollisionResult, Digest};

fn sha1_oid_of_file(filename: &str) -> gix::ObjectId {

let mut hasher = gix::features::hash::hasher(gix::hash::Kind::Sha1);

hasher.update(&std::fs::read(filename).unwrap());

gix::ObjectId::Sha1(hasher.digest())

}

fn sha1dc_oid_of_file(filename: &str) -> Result<gix::ObjectId, String> {

// Matches Git’s behaviour.

let mut hasher = sha1_checked::Builder::default().safe_hash(false).build();

hasher.update(&std::fs::read(filename).unwrap());

match hasher.try_finalize() {

CollisionResult::Ok(digest) => Ok(gix::ObjectId::Sha1(digest.into())),

CollisionResult::Mitigated(_) => unreachable!(),

CollisionResult::Collision(digest) => Err(format!(

"Collision attack: {}",

gix::ObjectId::Sha1(digest.into()).to_hex()

)),

}

}

fn main() {

dbg!(sha1_oid_of_file("shattered-1.pdf"));

dbg!(sha1_oid_of_file("shattered-2.pdf"));

dbg!(sha1dc_oid_of_file("shattered-1.pdf"));

dbg!(sha1dc_oid_of_file("shattered-2.pdf"));

}

```

The output is as follows:

```

[src/main.rs:24:5] sha1_oid_of_file("shattered-1.pdf") = Sha1(38762cf7f55934b34d179ae6a4c80cadccbb7f0a)

[src/main.rs:25:5] sha1_oid_of_file("shattered-2.pdf") = Sha1(38762cf7f55934b34d179ae6a4c80cadccbb7f0a)

[src/main.rs:26:5] sha1dc_oid_of_file("shattered-1.pdf") = Err(

"Collision attack: 38762cf7f55934b34d179ae6a4c80cadccbb7f0a",

)

[src/main.rs:27:5] sha1dc_oid_of_file("shattered-2.pdf") = Err(

"Collision attack: 38762cf7f55934b34d179ae6a4c80cadccbb7f0a",

)

```

The latter behaviour matches Git.

Since the SHAttered PDFs are not in a valid format for Git objects, a direct proof‐of‐concept using higher‐level APIs cannot be immediately demonstrated without significant computational resources.

Impact

An attacker with the ability to mount a collision attack on SHA-1 like the [SHAttered](https://shattered.io/) or [SHA-1 is a Shambles](https://sha-mbles.github.io/) attacks could create two distinct Git objects with the same hash. This is becoming increasingly affordable for well‐resourced attackers, with the Shambles researchers in 2020 estimating $45k for a chosen‐prefix collision or $11k for a classical collision, and projecting less than $10k for a chosen‐prefix collision by 2025. The result could be used to disguise malicious repository contents, or potentially exploit assumptions in the logic of programs using gitoxide to cause further vulnerabilities.

This vulnerability affects any user of gitoxide, including gix-* library crates, that reads or writes Git objects.

How this vulnerability can be exploited

This issue can be reached over the network, attack complexity is high, an attacker needs no privileges on the target. No user interaction is required. The scope is changed, meaning a successful attack can affect components beyond the vulnerable one. Rated impact: confidentiality none, integrity high, availability none.

Weakness class

CVE-2025-31130 is classified as CWE-328: Use of Weak Hash. The product uses an algorithm that produces a digest (output value) that does not meet security expectations for a hash function that allows an adversary to reasonably determine the original input (preimage attack), find another input that can…

Affected software

CVE-2025-31130 is recorded against 28 packages.

  • gitoxide
  • gitoxide-core
  • gix
  • gix-archive
  • gix-blame
  • gix-commitgraph
  • gix-config
  • gix-diff
  • gix-dir
  • gix-discover
  • gix-features
  • gix-filter
  • gix-fsck
  • gix-index
  • gix-merge
  • gix-negotiate
  • gix-object
  • gix-odb
  • gix-pack
  • gix-protocol
  • gix-ref
  • gix-revision
  • gix-revwalk
  • gix-status
Show the remaining 4 packages
  • gix-traverse
  • gix-worktree
  • gix-worktree-state
  • unknown

Timeline and source

Published on 4 April 2025 and last revised on 4 February 2026. No public exploit is currently recorded for this entry. Record sourced from NVD.

References

github.com (Web)
nvd.nist.gov (Advisory)
github.com (Web)
github.com (Package)
rustsec.org (Web)

CVE-2025-31130 on other distributions

Each distribution ships its own build and its own fixed version. Pick the one you run:

Details

Severity Medium
CVSS Score 6.8
CVSS Vector CVSS:3.1/AV:N/AC:H/PR:N/UI:N/S:C/C:N/I:H/A:N
CWE CWE-328
Public Exploit ✅ No
Source NVD
Published 2025-04-04
Updated 2026-08-12
Modified 2026-02-04
Fix URL N/A

Affected Packages

Software From version Fixed in
gitoxide
gitoxide-core
gix
gix-archive
gix-blame
gix-commitgraph
gix-config
gix-diff
gix-dir
gix-discover
gix-features
gix-filter
gix-fsck
gix-index
gix-merge
gix-negotiate
gix-object
gix-odb
gix-pack
gix-protocol
gix-ref
gix-revision
gix-revwalk
gix-status
gix-traverse
gix-worktree
gix-worktree-state
unknown

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