CWE-1189 Base Stable

Improper Isolation of Shared Resources on System-on-a-Chip (SoC)

This vulnerability occurs when a System-on-a-Chip (SoC) fails to properly separate shared hardware resources between secure (trusted) and non-secure (untrusted) components.

Définition

What is CWE-1189?

This vulnerability occurs when a System-on-a-Chip (SoC) fails to properly separate shared hardware resources between secure (trusted) and non-secure (untrusted) components.
Modern SoCs pack many features but have a limited number of physical connections (pins). To overcome this, they use a technique called pin multiplexing, where a single pin can be configured for different functions at different times. Similarly, internal resources like memory buses or hardware accelerators are often shared across the chip. When these shared resources aren't rigorously isolated, an untrusted agent (like a low-privilege app or peripheral) can potentially access or interfere with resources reserved for trusted system functions, leading to data leaks or system compromise. For developers, this means security cannot rely solely on software boundaries; hardware-level isolation mechanisms must be correctly configured and audited. Managing these low-level configurations at scale across an entire product fleet is challenging. An ASPM platform like Plexicus can help by detecting such insecure hardware/software interactions and providing prioritized, actionable insights for remediation across your entire application stack.
Impact réel

Real-world CVEs caused by CWE-1189

  • Processor has improper isolation of shared resources allowing for information disclosure.

  • Baseboard Management Controller (BMC) device implements Advanced High-performance Bus (AHB) bridges that do not require authentication for arbitrary read and write access to the BMC's physical address space from the host, and possibly the network [REF-1138].

Comment les attaquants l'exploitent

Parcours de l'attaquant étape par étape

  1. 1

    Identifier un chemin de code qui traite des entrées non fiables sans validation.

  2. 2

    Élaborer une charge utile qui exploite le comportement non sécurisé — injection, traversal, débordement ou abus de logique.

  3. 3

    Délivrer la charge utile via une requête normale et observer la réaction de l'application.

  4. 4

    Itérer jusqu'à ce que la réponse divulgue des données, exécute le code de l'attaquant ou élève les privilèges.

Exemple de code vulnérable

Vulnerable pseudo

MITRE n'a pas publié d'exemple de code pour ce CWE. Le motif ci-dessous est illustratif — voir Ressources pour les références canoniques.

Vulnérable pseudo
// Example pattern — see MITRE for the canonical references.
function handleRequest(input) {
  // Untrusted input flows directly into the sensitive sink.
  return executeUnsafe(input);
}
Exemple de code sécurisé

Secure pseudo

Sécurisé pseudo
// Validate, sanitize, or use a safe API before reaching the sink.
function handleRequest(input) {
  const safe = validateAndEscape(input);
  return executeWithGuards(safe);
}
What changed: the unsafe sink is replaced (or the input is validated/escaped) so the same payload no longer triggers the weakness.
Liste de contrôle de prévention

How to prevent CWE-1189

  • Architecture and Design When sharing resources, avoid mixing agents of varying trust levels. Untrusted agents should not share resources with trusted agents.
Signaux de détection

How to detect CWE-1189

Automated Dynamic Analysis High

Pre-silicon / post-silicon: Test access to shared systems resources (memory ranges, control registers, etc.) from untrusted software to verify that the assets are not incorrectly exposed to untrusted agents. Note that access to shared resources can be dynamically allowed or revoked based on system flows. Security testing should cover such dynamic shared resource allocation and access control modification flows.

CWE-1189

Don't catalog this weakness. Prove it's reachable.

Plexicus turns CWE catalogs into evidence: every CWE-pattern is matched against your real code graph, reach is proven on a sandbox clone, and verified findings ship as reviewed PRs.

Questions fréquentes

Frequently asked questions

Qu'est-ce que CWE-1189 ?

This vulnerability occurs when a System-on-a-Chip (SoC) fails to properly separate shared hardware resources between secure (trusted) and non-secure (untrusted) components.

Quelle est la gravité de CWE-1189 ?

MITRE n'a pas publié de note de probabilité d'exploitation pour cette faiblesse. Traitez-la comme un impact moyen jusqu'à ce que votre modèle de menace prouve le contraire.

Quels langages ou plateformes sont affectés par CWE-1189 ?

MITRE lists the following affected platforms: System on Chip.

Comment puis-je prévenir CWE-1189 ?

When sharing resources, avoid mixing agents of varying trust levels. Untrusted agents should not share resources with trusted agents.

Comment Plexicus détecte et corrige CWE-1189 ?

Le moteur SAST de Plexicus reconnaît la signature de flux de données de CWE-1189 à chaque commit. Lorsqu'une correspondance est trouvée, notre agent Codex Remedium ouvre une PR de correction avec le code corrigé, les tests et un résumé d'une ligne pour le relecteur.

Où puis-je en savoir plus sur CWE-1189 ?

MITRE publie la définition canonique à https://cwe.mitre.org/data/definitions/1189.html. Vous pouvez également consulter la documentation OWASP et NIST pour des conseils adjacents.

Prêt à valider l'essentiel ?

Prêt à valider ce qui compte.

Plexicus est Proof-Driven AppSec : findings validés, compréhension contextuelle et remédiation relue — ancrée dans la preuve, scopée avec vous.

Qualification

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Partagez le contexte minimum. Nous vérifierons le périmètre et indiquerons la prochaine étape commerciale.

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Sans engagement. Si vous ne correspondez pas, nous vous le dirons.

SAMPLE HANDOVER · ILLUSTRATIVE

Sample evidence handover

A trimmed view of what your team receives at the end of an AI Swarm Pentest engagement. Real engagements include full technical evidence, executive narrative, and a remediation plan.

VALIDATED FINDING Evidence attached

Server-Side Request Forgery in webhooks/receiver

demo-project/sample-app · src/webhooks/receiver.py:42

SeverityHigh CVSS 3.18.6 Priority79 Confirmedvia replay

Untrusted caller-supplied URLs reach an internal egress without an allowlist. Replayed in a sandbox against a fresh authorized target — the same control was validated to fail twice.

REVIEWER-READY REMEDIATION Merge-ready PR

Validate the target URL against an allowlist of permitted hostnames. Reject private/internal IP ranges. Enforce HTTPS only.

plexicus/remediation/webhooks-ssrf 3 changed · 0 new files
42resp = requests.get(target_url)
42+if not is_allowed_host(target_url):
43+  raise WebhookRejected(target_url)
44+resp = requests.get(target_url, timeout=5)
Every engagement hands over:
  • Executive briefing
  • Validated findings list
  • Merge-ready PRs
  • Compliance mapping (NIS2 · DORA · CRA)
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