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OWASP pytm is a Pythonic framework for threat modeling and the first Threat-Model-as-Code tool: The system is first defined in Python using the elements and properties described in the pytm framework. Based on this definition, pytm can generate a Data Flow Diagram (DFD), a Sequence Diagram and most important of all, threats to the system.
It was initially proposed for threat modeling but was abandoned when it was discovered that the ratings are not very consistent and are subject to debate. It was discontinued at Microsoft by 2008. [2] When a given threat is assessed using DREAD, each category is given a rating from 1 to 10. [3]
Threat modeling: simulations are designed based on real adversarial tactics, techniques and procedures. Attack surface coverage: can test internal and external-facing assets. Security control validation: integrates with other security tools to test efficacy. Reporting: identifies vulnerabilities and prioritizes remediation efforts.
The STRIDE was initially created as part of the process of threat modeling. STRIDE is a model of threats, used to help reason and find threats to a system. It is used in conjunction with a model of the target system that can be constructed in parallel. This includes a full breakdown of processes, data stores, data flows, and trust boundaries. [5]
Industroyer [1] (also referred to as Crashoverride) is a malware framework considered to have been used in the cyberattack on Ukraine’s power grid on 17 December 2016. [2] [3] [4] The attack cut a fifth of Kyiv, the capital, off power for one hour and is considered to have been a large-scale test.
Attack trees are conceptual diagrams showing how an asset, or target, might be attacked. [1] Attack trees have been used in a variety of applications. In the field of information technology, they have been used to describe threats on computer systems and possible attacks to realize those threats.
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