Einführungsmodi
Implementation
Anwendbare Plattformen
Sprache
Class: Not Language-Specific (Undetermined)
Betriebssysteme
Class: Not OS-Specific (Undetermined)
Architekturen
Class: Not Architecture-Specific (Undetermined)
Technologien
Class: Not Technology-Specific (Undetermined)
Häufige Konsequenzen
| Bereich |
Auswirkung |
Wahrscheinlichkeit |
Confidentiality Integrity Availability Access Control Accountability Authentication Authorization Non-Repudiation | Read Memory, Bypass Protection Mechanism, Gain Privileges or Assume Identity, Varies by Context | Medium |
Beobachtete Beispiele
| Referenzen |
Beschreibung |
| Digital Rights Management (DRM) capability for mobile platform leaks pointer information, simplifying ASLR bypass |
| Processor generates debug message that contains sensitive information ("addresses of memory transactions"). |
| modem debug messages include cryptographic keys |
Mögliche Gegenmaßnahmen
Phases : Implementation
Ensure that a debug message does not reveal any unnecessary information during the debug process for the intended response.
Erkennungsmethoden
Automated Static Analysis
Automated static analysis, commonly referred to as Static Application Security Testing (SAST), can find some instances of this weakness by analyzing source code (or binary/compiled code) without having to execute it. Typically, this is done by building a model of data flow and control flow, then searching for potentially-vulnerable patterns that connect "sources" (origins of input) with "sinks" (destinations where the data interacts with external components, a lower layer such as the OS, etc.)
Hinweise zur Schwachstellen-Zuordnung
Begründung : This CWE entry is at the Base level of abstraction, which is a preferred level of abstraction for mapping to the root causes of vulnerabilities.
Kommentar : Carefully read both the name and description to ensure that this mapping is an appropriate fit. Do not try to 'force' a mapping to a lower-level Base/Variant simply to comply with this preferred level of abstraction.
Verwandte Angriffsmuster
| CAPEC-ID |
Name des Angriffsmusters |
| CAPEC-121 |
Exploit Non-Production Interfaces
|
Referenzen
REF-1112
Android Security Bulletin - December 2018
https://source.android.com/docs/security/bulletin/2018-12-01
Einreichung
| Name |
Organisation |
Datum |
Veröffentlichungsdatum |
Version |
| Parbati Kumar Manna, Hareesh Khattri, Arun Kanuparthi |
Intel Corporation |
2020-05-31 +00:00 |
2020-08-20 +00:00 |
4.2 |
Änderungen
| Name |
Organisation |
Datum |
Kommentar |
| CWE Content Team |
MITRE |
2021-07-20 +00:00 |
updated Observed_Examples, Related_Attack_Patterns, Relationships |
| CWE Content Team |
MITRE |
2022-10-13 +00:00 |
updated References |
| CWE Content Team |
MITRE |
2023-04-27 +00:00 |
updated Observed_Examples, References, Relationships |
| CWE Content Team |
MITRE |
2023-06-29 +00:00 |
updated Mapping_Notes |
| CWE Content Team |
MITRE |
2023-10-26 +00:00 |
updated Observed_Examples |
| CWE Content Team |
MITRE |
2025-09-09 +00:00 |
updated References |
| CWE Content Team |
MITRE |
2025-12-11 +00:00 |
updated Detection_Factors, Weakness_Ordinalities |