MITRE ATT&CK T1548.002: Bypass User Account Control
When to use this skill
Use this skill when the task involves T1548.002, Bypass User Account Control, enterprise ATT&CK, TTP mapping, detection engineering, hunting, incident-response enrichment, control validation, or authorized adversary-emulation planning. Treat it as a defensive analysis aid: keep outputs focused on understanding, detecting, mitigating, and safely validating this ATT&CK sub-technique.
Technique context
- ATT&CK domain: enterprise
- ATT&CK ID: T1548.002
- Technique name: Bypass User Account Control
- Type: sub-technique
- ATT&CK URL: https://attack.mitre.org/techniques/T1548/002
- Tactics: privilege-escalation
- Platforms: Windows
- Required permissions: Not specified
- Effective permissions: Not specified
- Defenses bypassed: Not specified
ATT&CK description
Adversaries may bypass UAC mechanisms to elevate process privileges on system. Windows User Account Control (UAC) allows a program to elevate its privileges (tracked as integrity levels ranging from low to high) to perform a task under administrator-level permissions, possibly by prompting the user for confirmation. The impact to the user ranges from denying the operation under high enforcement to allowing the user to perform the action if they are in the local administrators group and click through the prompt or allowing them to enter an administrator password to complete the action.(Citation: TechNet How UAC Works)
If the UAC protection level of a computer is set to anything but the highest level, certain Windows programs can elevate privileges or execute some elevated Component Object Model objects without prompting the user through the UAC notification box.(Citation: TechNet Inside UAC)(Citation: MSDN COM Elevation) An example of this is use of Rundll32 to load a specifically crafted DLL which loads an auto-elevated Component Object Model object and performs a file operation in a protected directory which would typically require elevated access. Malicious software may also be injected into a trusted process to gain elevated privileges without prompting a user.(Citation: Davidson Windows)
Many methods have been discovered to bypass UAC. The Github readme page for UACME contains an extensive list of methods(Citation: Github UACMe) that have been discovered and implemented, but may not be a comprehensive list of bypasses. Additional bypass methods are regularly discovered and some used in the wild, such as:
- eventvwr.exe can auto-elevate and execute a specified binary or script.(Citation: enigma0x3 Fileless UAC Bypass)(Citation: Fortinet Fareit)
Another bypass is possible through some lateral movement techniques if credentials for an account with administrator privileges are known, since UAC is a single system security mechanism, and the privilege or integrity of a process running on one system will be unknown on remote systems and default to high integrity.(Citation: SANS UAC Bypass)
Agent workflow
- Clarify scope: identify the system, asset class, log sources, cloud or endpoint platform, and whether the user wants triage, detection, coverage assessment, or safe emulation planning.
- Load bundled resources as needed: use
references/technique-profile.json for structured metadata, references/detection-and-mitigation.md for triage and telemetry guidance, references/known-threat-context.md for ATT&CK relationship context, and templates/ for repeatable outputs.
- Map observations to ATT&CK: compare the user's evidence to the ATT&CK description, tactics, platforms, and known procedure patterns before asserting a match.
- Produce defensive outputs: prioritize hypotheses, telemetry requirements, detection logic ideas, validation steps, containment guidance, and mitigations.
- Preserve uncertainty: distinguish confirmed evidence, plausible indicators, assumptions, and gaps. Recommend what to collect next.
- Stay safe: do not provide malware, credential theft, persistence, evasion, destructive automation, or unauthorized exploitation instructions. For adversary emulation, keep steps bounded to approved lab or control-validation contexts and omit operational abuse details.
Bundled resources
references/technique-profile.json: machine-readable ATT&CK metadata for this technique.
references/detection-and-mitigation.md: detection notes, telemetry checklist, triage questions, mitigation candidates, and false-positive considerations.
references/known-threat-context.md: ATT&CK relationship context with attribution cautions.
templates/detection-brief.md: detection engineering brief template.
templates/hunt-plan.md: threat hunt plan template.
templates/incident-response-note.md: incident response note template.
templates/coverage-assessment.md: ATT&CK coverage assessment template.
scripts/render_brief.py: local helper that renders a Markdown defensive brief from technique-profile.json.
assets/output-schema.json: JSON schema for structured technique analysis outputs.
To generate a quick brief, run python scripts/render_brief.py --output brief.md from inside this skill directory, or adapt the templates directly.
Detection guidance
No ATT&CK detection guidance was present in the source STIX object.
Useful telemetry and data sources
- Not specified in the STIX object.
Mitigations to consider
- Audit
- Privileged Account Management
- Update Software
- User Account Control
Known threat context
Use these examples only as contextual leads, not as proof that an observed event is this technique:
- APT29 (intrusion-set)
- APT37 (intrusion-set)
- APT38 (intrusion-set)
- AppleJeus (malware)
- AutoIt backdoor (malware)
- Avaddon (malware)
- BADHATCH (malware)
- BRONZE BUTLER (intrusion-set)
- Bad Rabbit (malware)
- BitPaymer (malware)
- BlackCat (malware)
- BlackEnergy (malware)
- Bumblebee (malware)
- CHIMNEYSWEEP (malware)
- CSPY Downloader (tool)
- Clambling (malware)
- Cobalt Group (intrusion-set)
- Cobalt Strike (malware)
- DarkGate (malware)
- Downdelph (malware)
Recommended output pattern
When responding with this skill, structure the answer as:
- Assessment: whether the evidence supports this ATT&CK mapping and why.
- Evidence: specific indicators, logs, behaviors, and assumptions.
- Detection: telemetry sources, analytic logic, and tuning considerations.
- Response: containment, eradication, recovery, and validation actions.
- Coverage gaps: missing logs, sensors, controls, or environmental details.
- References: include the ATT&CK URL and any user-provided evidence references.
ATT&CK contributors
- Stefan Kanthak
- Casey Smith
1---2name: attack-ent-t1548-002-bypass-user-account-control3description: Analyze MITRE ATT&CK T1548.002 Bypass User Account Control in the enterprise matrix. Use for TTP triage, detection engineering, hunting, defensive emulation planning, mitigations, incident response mapping, ATT&CK coverage, or questions mentioning T1548.002, Bypass User Account Control, or enterprise ATT&CK. Adversaries may bypass UAC mechanisms to elevate process privileges on system.4license: MITRE ATT&CK Terms of Use apply to ATT&CK-derived content. See h5---67# MITRE ATT&CK T1548.002: Bypass User Account Control89## When to use this skill1011Use this skill when the task involves T1548.002, Bypass User Account Control, enterprise ATT&CK, TTP mapping, detection engineering, hunting, incident-response enrichment, control validation, or authorized adversary-emulation planning. Treat it as a defensive analysis aid: keep outputs focused on understanding, detecting, mitigating, and safely validating this ATT&CK sub-technique.1213## Technique context1415- ATT&CK domain: enterprise16- ATT&CK ID: T1548.00217- Technique name: Bypass User Account Control18- Type: sub-technique19- ATT&CK URL: https://attack.mitre.org/techniques/T1548/00220- Tactics: privilege-escalation21- Platforms: Windows22- Required permissions: Not specified23- Effective permissions: Not specified24- Defenses bypassed: Not specified2526## ATT&CK description2728Adversaries may bypass UAC mechanisms to elevate process privileges on system. Windows User Account Control (UAC) allows a program to elevate its privileges (tracked as integrity levels ranging from low to high) to perform a task under administrator-level permissions, possibly by prompting the user for confirmation. The impact to the user ranges from denying the operation under high enforcement to allowing the user to perform the action if they are in the local administrators group and click through the prompt or allowing them to enter an administrator password to complete the action.(Citation: TechNet How UAC Works)2930If the UAC protection level of a computer is set to anything but the highest level, certain Windows programs can elevate privileges or execute some elevated [Component Object Model](https://attack.mitre.org/techniques/T1559/001) objects without prompting the user through the UAC notification box.(Citation: TechNet Inside UAC)(Citation: MSDN COM Elevation) An example of this is use of [Rundll32](https://attack.mitre.org/techniques/T1218/011) to load a specifically crafted DLL which loads an auto-elevated [Component Object Model](https://attack.mitre.org/techniques/T1559/001) object and performs a file operation in a protected directory which would typically require elevated access. Malicious software may also be injected into a trusted process to gain elevated privileges without prompting a user.(Citation: Davidson Windows)3132Many methods have been discovered to bypass UAC. The Github readme page for UACME contains an extensive list of methods(Citation: Github UACMe) that have been discovered and implemented, but may not be a comprehensive list of bypasses. Additional bypass methods are regularly discovered and some used in the wild, such as:3334* <code>eventvwr.exe</code> can auto-elevate and execute a specified binary or script.(Citation: enigma0x3 Fileless UAC Bypass)(Citation: Fortinet Fareit)3536Another bypass is possible through some lateral movement techniques if credentials for an account with administrator privileges are known, since UAC is a single system security mechanism, and the privilege or integrity of a process running on one system will be unknown on remote systems and default to high integrity.(Citation: SANS UAC Bypass)3738## Agent workflow39401. Clarify scope: identify the system, asset class, log sources, cloud or endpoint platform, and whether the user wants triage, detection, coverage assessment, or safe emulation planning.412. Load bundled resources as needed: use `references/technique-profile.json` for structured metadata, `references/detection-and-mitigation.md` for triage and telemetry guidance, `references/known-threat-context.md` for ATT&CK relationship context, and `templates/` for repeatable outputs.423. Map observations to ATT&CK: compare the user's evidence to the ATT&CK description, tactics, platforms, and known procedure patterns before asserting a match.434. Produce defensive outputs: prioritize hypotheses, telemetry requirements, detection logic ideas, validation steps, containment guidance, and mitigations.445. Preserve uncertainty: distinguish confirmed evidence, plausible indicators, assumptions, and gaps. Recommend what to collect next.456. Stay safe: do not provide malware, credential theft, persistence, evasion, destructive automation, or unauthorized exploitation instructions. For adversary emulation, keep steps bounded to approved lab or control-validation contexts and omit operational abuse details.4647## Bundled resources4849- `references/technique-profile.json`: machine-readable ATT&CK metadata for this technique.50- `references/detection-and-mitigation.md`: detection notes, telemetry checklist, triage questions, mitigation candidates, and false-positive considerations.51- `references/known-threat-context.md`: ATT&CK relationship context with attribution cautions.52- `templates/detection-brief.md`: detection engineering brief template.53- `templates/hunt-plan.md`: threat hunt plan template.54- `templates/incident-response-note.md`: incident response note template.55- `templates/coverage-assessment.md`: ATT&CK coverage assessment template.56- `scripts/render_brief.py`: local helper that renders a Markdown defensive brief from `technique-profile.json`.57- `assets/output-schema.json`: JSON schema for structured technique analysis outputs.5859To generate a quick brief, run `python scripts/render_brief.py --output brief.md` from inside this skill directory, or adapt the templates directly.6061## Detection guidance6263No ATT&CK detection guidance was present in the source STIX object.6465## Useful telemetry and data sources6667- Not specified in the STIX object.6869## Mitigations to consider7071- Audit72- Privileged Account Management73- Update Software74- User Account Control7576## Known threat context7778Use these examples only as contextual leads, not as proof that an observed event is this technique:7980- APT29 (intrusion-set)81- APT37 (intrusion-set)82- APT38 (intrusion-set)83- AppleJeus (malware)84- AutoIt backdoor (malware)85- Avaddon (malware)86- BADHATCH (malware)87- BRONZE BUTLER (intrusion-set)88- Bad Rabbit (malware)89- BitPaymer (malware)90- BlackCat (malware)91- BlackEnergy (malware)92- Bumblebee (malware)93- CHIMNEYSWEEP (malware)94- CSPY Downloader (tool)95- Clambling (malware)96- Cobalt Group (intrusion-set)97- Cobalt Strike (malware)98- DarkGate (malware)99- Downdelph (malware)100101## Recommended output pattern102103When responding with this skill, structure the answer as:104105- Assessment: whether the evidence supports this ATT&CK mapping and why.106- Evidence: specific indicators, logs, behaviors, and assumptions.107- Detection: telemetry sources, analytic logic, and tuning considerations.108- Response: containment, eradication, recovery, and validation actions.109- Coverage gaps: missing logs, sensors, controls, or environmental details.110- References: include the ATT&CK URL and any user-provided evidence references.111112## ATT&CK contributors113114- Stefan Kanthak115- Casey Smith