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MITRE D3FEND™ Learning Center

D3-NNI — Network Node Inventory

Network node inventorying identifies and records all the network nodes (hosts, routers, switches, firewalls, etc.) in the organization's architecture.

7Enterprise inferred
8ICS inferred
1Parent technique
1Related artifact

Model · D3FEND ontology 1.6.0 · Active

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Official D3FEND definition

Definition

Network node inventorying identifies and records all the network nodes (hosts, routers, switches, firewalls, etc.) in the organization's architecture.

Official D3FEND knowledge-base content

How it works

Administrators collect information on network nodes in their architecture using a variety of administrative and management tools that query network devices and nodes for information. In some cases, where such queries are not supported or provide specific information of interest, an administrator may also collect this information through network enumeration methods to include host discovery and scanning for active ports and services.

Considerations

  • Scanning and probing techniques using mapping tools can result in side effects to information technology (IT) and operational technology (OT) systems.
  • An adversary conducting network enumeration may engage in activities that parallel normal network node inventorying activities, but would require escalating to admin privileges for most of the operations requiting administrative tools

Examples

  • Link-layer discovery
  • Link-layer Discovery Protocol (LLDP)
  • Cisco Discovery Protocol (CDP)
  • Application-layer discovery
  • Simple Network Management Protocol (SNMP) collects MIB information
  • Web-based Enterprise Management (WBEM) collects CIM information
  • Windows Management Instrumentation (WMI)
  • Windows Management Infrastructure (MI)
Bare Metal Cyber interpretation

Implementation perspective

Network Node Inventory should be treated as a technical defensive capability rather than a product checkbox. In practice, teams should define the protected scope, the conditions under which the technique acts, and the observable evidence that demonstrates the intended behavior. For this technique, likely engineering context includes Network Node.

Use the technique to improve the shared model of systems, activities, dependencies, threats, or risk before making defensive decisions.

Questions to ask

  • What system, activity, relationship, or risk is being modeled, and where is the scope boundary?
  • Which authoritative data sources populate the model, and how is their quality assessed?
  • How often is the model refreshed after architectural, operational, or threat changes?
  • Which decisions, analyses, or engineering actions are expected to use the model?

Evidence and validation

  • Documented model scope, assumptions, and ownership
  • Source inventories, data-quality checks, and refresh records
  • Version history showing material changes to the model
  • Examples of decisions or analyses that used the model

Common failure patterns

  • The model is treated as a one-time diagram rather than a maintained decision aid.
  • Unverified or stale source data is accepted without recording uncertainty.
  • The model is comprehensive in appearance but disconnected from engineering or operational decisions.

This implementation perspective is original Bare Metal Cyber educational content. It does not replace the official D3FEND definition or establish that a specific product implements the technique.

Ontology hierarchy

Technique hierarchy

Top-level family

Parent techniques

Direct child techniques

None listed at this level.

D3FEND graph relationships

Artifacts and ontology entities

These relationships describe how D3FEND connects a defensive technique to artifacts or other ontology entities. They describe graph semantics, not a product certification.

Explicit technique relationships

inventoriesNetwork Node
Show inferred artifact relationship paths (1)
Network Node InventoryinventoriesNetwork Node
Inferred and experimental

Offensive-technique relationships

These relationships are generated from D3FEND graph paths and are explicitly experimental. They should be treated as hypotheses for defensive analysis—not as proof that the technique prevents, detects, or removes an offensive behavior.

ATT&CK Enterprise (7)
ATT&CK for ICS (8)
T0807Command-Line InterfaceExecution
T0809Data DestructionInhibit Response Function
T0816Device Restart/ShutdownInhibit Response Function
T0848Rogue MasterInitial Access
T0857System FirmwareInhibit Response Function, Persistence
T0864Transient Cyber AssetInitial Access
T0866Exploitation of Remote ServicesInitial Access, Lateral Movement
T0867Lateral Tool TransferLateral Movement
Source record

Authoritative sources