🎯 CVE-2023-30624 🧪 PoC 🇪🇺 EUVD
Social ReaktionenReagiere als Erste:r — dein Feedback zählt!

CVE-2023-30624 | Wasmtime is a standalone runtime for WebAssembly. Prior to versions 6.0.2, 7.0.1, and 8.0.1, Wasmtime's implementation of managing per-instance state, such as tables and memories, contains LLVM-level undefined behavior. This undefined behavior was found to cause runtime-level issues when compiled with LLVM 16 which causes some writes, which are critical for correctness, to be optimized away. Vulnerable versions of Wasmtime compiled with Rust 1.70, which is cu

Wasmtime is a standalone runtime for WebAssembly. Prior to versions 6.0.2, 7.0.1, and 8.0.1, Wasmtime's implementation of managing per-instance state, such as tables and memories, contains LLVM-level undefined behavior. This undefined behavior was found to cause runtime-level issues when compiled with LLVM 16 which causes some writes, which are critical for correctness, to be optimized away. Vulnerable versions of Wasmtime compiled with Rust 1.70, which is currently in beta, or later are known to have incorrectly compiled functions. Versions of Wasmtime compiled with the current Rust stable release, 1.69, and prior are not known at this time to have any issues, but can theoretically exhibit potential issues.

The underlying problem is that Wasmtime's runtime state for an instance involves a Rust-defined structure called `Instance` which has a trailing `VMContext` structure after it. This `VMContext` structure has a runtime-defined layout that is unique per-module. This representation cannot be expressed with safe code in Rust so `unsafe` code is required to maintain this state. The code doing this, however, has methods which take `&self` as an argument but modify data in the `VMContext` part of the allocation. This means that pointers derived from `&self` are mutated. This is typically not allowed, except in the presence of `UnsafeCell`, in Rust. When compiled to LLVM these functions have `noalias readonly` parameters which means it's UB to write through the pointers.

Wasmtime's internal representation and management of `VMContext` has been updated to use `&mut self` methods where appropriate. Additionally verification tools for `unsafe` code in Rust, such as `cargo miri`, are planned to be executed on the `main` branch soon to fix any Rust-level issues that may be exploited in future compiler versions.

Precomplied binaries available for Wasmtime from GitHub releases have been compiled with at most LLVM 15 so are not known to be vulnerable. As mentioned above, however, it's still recommended to update.

Wasmtime version 6.0.2, 7.0.1, and 8.0.1 have been issued which contain the patch necessary to work correctly on LLVM 16 and have no known UB on LLVM 15 and earlier. If Wasmtime is compiled with Rust 1.69 and prior, which use LLVM 15, then there are no known issues. There is a theoretical possibility for undefined behavior to exploited, however, so it's recommended that users upgrade to a patched version of Wasmtime. Users using beta Rust (1.70 at this time) or nightly Rust (1.71 at this time) must update to a patched version to work correctly.

Klassifikation & Betroffenheit:
bytecodealliance wasmtime = 7.0.0wasmtime < 6.0.2wasmtime = 8.0.0bytecodealliance wasmtime *bytecodealliance wasmtime 7.0.0bytecodealliance wasmtime 8.0.0
Improper Control of Generation of Code ('Code Injection') 🎯 Medium

The product constructs all or part of a code segment using externally-influenced input from an upstream component, but it does not neutralize or incorrectly neutralizes special elements that could modify the syntax or behavior of the intended code segment.

🛡️ Empfohlene Mitigation: Refactor your program so that you do not have to dynamically generate code.
Vollständige Definition bei MITRE ➔
🩹 Patch verfügbar (OSV):
🩹 00fd7bc4d1ce64feb3ca82161216721b740ec571 (Commit) 🩹 0977952dcd9d482bff7c288868ccb52769b3a92e (Commit)
📚 Referenzen & Quellen:
Ausnutzungs-Zeitleiste:
CVSS-Vektor-Analyse: 3.9
AV · Angriffsvektor Netzwerk
AC · Komplexität Hoch
PR · Privilegien Hoch
UI · Interaktion Erforderlich
S · Scope Unverändert
C · Vertraulichkeit Gering
I · Integrität Gering
A · Verfügbarkeit Gering
CVSS:3.1/AV:N/AC:H/PR:H/UI:R/S:U/C:L/I:L/A:L
Veröffentlicht:27.04.2023
Aktualisiert:17.06.2026 05:55
Assigner (CNA):GitHub_M
EUVD-ID:EUVD-2023-1270
Quellen: 🇪🇺 EUVD-Datenbank (ENISA) + 🇺🇸 NVD-Anreicherung · 24-h-Cache
CWE-94: Code Injection ✓ Offizieller Patch / Advisory verfügbar
💡 Gegenmaßnahme: Sicherheits-Update des Herstellers zeitnah einspielen und Netzwerksegmentierung prüfen.
🗨 Diskussion zu CVE-2023-30624 0 Beiträge
Antworten, Upvotes & Reaktionen — wie im Community-Feed. Markdown und ```Code``` unterstützt.

Noch keine Analyse zu CVE-2023-30624

Sei der Erste: Einschätzung, Betroffenheit, Workaround oder PoC — mit Antworten im Thread.

↩️ Antworten auf:

Beitrag zu CVE-2023-30624 verfassen

Neu hier? Als Mitglied sammelst du Karma für Beiträge und Answers.
📧
Code-Formatierung: ```bash ... ``` oder `inline code` 0 / 2000
🔴 Live Security Advisory & EPSS Exploit Radar

Zero-Day & Vulnerability Intelligence Hub

Echtzeit-Tracking mit EPSS Exploit-Wahrscheinlichkeiten, Angriffsvektor-Decodern und KI-Patch-Anleitungen.

375k+ 🇪🇺 EUVD-Datenbank
0 🔴 Critical im Radar
0 ⚠️ CISA KEV
0 🔓 Aktiv ausgenutzt
1 🧪 PoC verfügbar
📊 Historien-Charts — Criticals-Trend · Vendors · EPSS-Verteilung
🔴 Criticals pro Monat (12 M) 2025-11: 257 Nov 25 2025-12: 426 2026-01: 431 Jan 26 2026-02: 417 2026-03: 649 Mär 26 2026-04: 574 2026-05: 682 Mai 26 2026-06: 941 2026-07: 1327 Jul 26 2026-08: 1827 2026-09: 1511 Sep 26 2026-10: 350 9.392 Criticals gesamt
🏢 Top-Vendor-Veröffentlichungen (6 M) Apache Software Foundation Google IBM Linux Microsoft Oracle Corporation
● Apache ● Google ● IBM ● Linux ● Microsoft ● Oracle
📈 EPSS-Verteilung (Messungen)
TierCVEsAnteil
≥90 %7200,2 %
≥50 %3.2230,9 %
≥10 %22.1146,0 %
<10 %341.96892,9 %
368.025 CVEs mit EPSS-Score (FIRST.org) · Stand 09.10.2026
Datenquellen & Methodik: Primärquelle ist die EUVD der ENISA (laufender Datenbank-Sync, alle 15 Minuten), abgeglichen mit dem CISA-KEV-Katalog und der NVD — Detail-Dossiers reichern fehlende Felder live per NVD an — mit Fallback auf CIRCL vulnerability-lookup (EU/Non-Profit, aggregiert CVE-, GitHub- und OSV-Advisories). Der CISA-KEV-Katalog (Known Exploited Vulnerabilities, ~1.700 aktiv ausgenutzte Schwachstellen) wird bei jedem Sync vollständig neu geladen und kreuzreferenziert — filterbar über die KEV-Pille. CVSS 3.1 wird nach Ampel-Logik aus Verteidigersicht dekodiert; EPSS bezeichnet die 30-Tage-Exploit-Wahrscheinlichkeit (FIRST.org).
🇪🇺 ENISA EUVD 🇺🇸 NVD ⚠️ CISA KEV ⚡ EPSS
Ökosystem & Hersteller Bedrohungs-Matrix:
Schweregrad & Status:
Hersteller (Datenbank-weit, 99.142 Einträge):
Quelle:
Schwachstellen-Kategorie (CWE):
🔍
3.9 LOW
EPSS 0.4%
CVE-2023-30624 🌐 Netzwerk (Remote) 🔐 Admin-Rechte nötig
bytecodealliance

CVE-2023-30624 | Wasmtime is a standalone runtime for WebAssembly. Prior to versions 6.0.2, 7.0.1, and 8.0.1, Wasmtime's implementation of managing per-instance state, such as tables and memories, contains LLVM-level undefined behavior. This undefined behavior was found to cause runtime-level issues when compiled with LLVM 16 which causes some writes, which are critical for correctness, to be optimized away. Vulnerable versions of Wasmtime compiled with Rust 1.70, which is cu

Wasmtime is a standalone runtime for WebAssembly. Prior to versions 6.0.2, 7.0.1, and 8.0.1, Wasmtime's implementation of managing per-instance state, such as tables and memories, contains LLVM-level undefined behavior. This undefined behav

CWE-94: Code Injection ✓ Offizieller Patch / Advisory verfügbar
💡 Gegenmaßnahme: Sicherheits-Update des Herstellers zeitnah einspielen und Netzwerksegmentierung prüfen.
1 von ~1 Einträgen geladen Ende der Trefferliste — 1 Einträge geladen. Tipp: Filter leichtern für tieferes Blättern.