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GHSA-96xm-fv9w-pf3f

MediumCVSS 5.3 / 10
Published Jan 28, 2026·Last modified Feb 3, 2026
Affected Components(0)

No affected components available

Description

Impact

Arithmetic overflow can be triggered in the Bytes::slice, Vec::slice, and Prng::gen_range (for u64) methods in the soroban-sdk in versions prior to and including 25.0.1.

Contracts that pass user-controlled or computed range bounds to Bytes::slice, Vec::slice, or Prng::gen_range may silently operate on incorrect data ranges or generate random numbers from an unintended range, potentially resulting in corrupted contract state.

Note that the best practice when using the soroban-sdk and building Soroban contracts is to always enable overflow-checks = true. The stellar contract init tool that prepares the boiler plate for a Soroban contract, as well as all examples and docs, encourage the use of configuring overflow-checks = true on release profiles so that these arithmetic operations fail rather than silently wrap. Contracts are only impacted if they use overflow-checks = false either explicitly or implicitly. It is anticipated the majority of contracts could not be impacted because the best practice encouraged by tooling is to enable overflow-checks.

Detail

When compiled with overflow-checks = false (the default for release builds), the bare arithmetic in those functions silently wraps on boundary values like u32::MAX or u64::MAX. This causes the range passed to the host to differ from the caller's intent:

Bytes::slice:

  • Bytes::slice(0..=u32::MAX) — end u32::MAX + 1 wraps to 0, producing slice(0..0) returning empty instead of the full range.
  • Bytes::slice((Bound::Excluded(u32::MAX), Bound::Unbounded)) — start u32::MAX + 1 wraps to 0, producing slice(0..) instead of an empty/invalid range.

Vec::slice:

  • Vec::slice(0..=u32::MAX) — same as Bytes, end wraps to 0, returning empty.
  • Vec::slice((Bound::Excluded(u32::MAX), Bound::Unbounded)) — same as Bytes, start wraps to 0.

Prng::gen_range:

  • Prng::gen_range((Bound::Unbounded, Bound::Excluded(0))) — end 0 - 1 wraps to u64::MAX, producing range 0..=u64::MAX instead of an empty/invalid range.
  • Prng::gen_range((Bound::Excluded(u64::MAX), Bound::Unbounded)) — start u64::MAX + 1 wraps to 0, producing range 0..=u64::MAX instead of an empty/invalid range.

Note that some cases where the overflow was permitted and wrapped on the guest side are caught by the Soroban Env Host and cause a trap host side with error HostError: Error(Object, IndexBounds) object index out of bounds, because the wrapped values create invalid inputs:

  • Bytes::slice(u32::MAX..=u32::MAX) — both start u32::MAX + 1 and end u32::MAX + 1 wrap to 0, producing slice(0..0).
  • Vec::slice(u32::MAX..=u32::MAX) — same as Bytes, both wrap to 0.

Patches

The fix replaces bare arithmetic with checked_add / checked_sub, ensuring overflow traps regardless of the overflow-checks profile setting.

Workarounds

Contract workspaces can be configured with the following profile to enable overflow checks on the arithmetic operations. This is the best practice when developing Soroban contracts, and the default if using the contract boilerplate generated using stellar contract init:

[profile.release]
overflow-checks = true

Alternatively, contracts can validate range bounds before passing them to slice or gen_range to ensure the conversions cannot overflow:

  • Do not pass Bound::Excluded(u32::MAX) or Bound::Included(u32::MAX) to Bytes::slice or Vec::slice.
  • Do not pass Bound::Excluded(u64::MAX) as a start bound or Bound::Excluded(0) as an end bound to Prng::gen_range::<u64>.

References

  • https://github.com/stellar/rs-soroban-sdk/pull/1703
  • https://github.com/stellar/rs-soroban-sdk/releases/tag/v25.0.2
  • https://github.com/stellar/rs-soroban-sdk/releases/tag/v23.5.1
  • https://github.com/stellar/rs-soroban-sdk/releases/tag/v22.0.9
Risk Scores
Base Score
5.3

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. The impact is confined to the system where the vulnerability exists. There is a low impact on the integrity of the data.

Threat Intelligence
4.9

Exploitation attempts have been detected. Elevated vigilance and prompt remediation are advised.

EPSS
0.35%

The exploit probability is very low. The vulnerability is unlikely to be exploited in the next 30 days.

Exploit
Not available

We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.

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