Implement the security design principle of reduced complexity in [organization-defined].
Scanned 9/3/2026
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---
name: "SA-8(7)_reduced-complexity"
description: "Implement the security design principle of reduced complexity in [organization-defined]."
category: "configuration"
version: "5.2.0"
author: "cyberstrike-official"
tags:
- nist
- sp800-53
- rev5
- sa-8-7
- sa
- enhancement
tech_stack:
- any
cwe_ids:
- CWE-16
chains_with: []
prerequisites:
- SA-8
severity_boost: {}
---
# SA-8(7) Reduced Complexity
> **Enhancement of:** SA-8
## High-Level Description
**Family:** System and Services Acquisition (SA)
**Framework:** NIST SP 800-53 Rev 5
The principle of reduced complexity states that the system design is as simple and small as possible. A small and simple design is more understandable, more analyzable, and less prone to error. The reduced complexity principle applies to any aspect of a system, but it has particular importance for security due to the various analyses performed to obtain evidence about the emergent security property of the system. For such analyses to be successful, a small and simple design is essential. Application of the principle of reduced complexity contributes to the ability of system developers to understand the correctness and completeness of system security functions. It also facilitates the identification of potential vulnerabilities. The corollary of reduced complexity states that the simplicity of the system is directly related to the number of vulnerabilities it will contain; that is, simpler systems contain fewer vulnerabilities. An benefit of reduced complexity is that it is easier to understand whether the intended security policy has been captured in the system design and that fewer vulnerabilities are likely to be introduced during engineering development. An additional benefit is that any such conclusion about correctness, completeness, and the existence of vulnerabilities can be reached with a higher degree of assurance in contrast to conclusions reached in situations where the system design is inherently more complex. Transitioning from older technologies to newer technologies (e.g., transitioning from IPv4 to IPv6) may require implementing the older and newer technologies simultaneously during the transition period. This may result in a temporary increase in system complexity during the transition.
## What to Check
- [ ] Verify SA-8(7) Reduced Complexity is documented in SSP
- [ ] Confirm control is operating effectively
- [ ] Review evidence of continuous monitoring for SA-8(7)
- [ ] Verify enhancement builds upon base control SA-8
## How to Test
### Step 1: Review Documentation
Examine the System Security Plan (SSP) and related artifacts for SA-8(7) implementation details. Verify the organization has documented how this control is satisfied.
### Step 2: Validate Implementation
```
# For cloud environments, use cloud-audit-mcp tools
# For on-premises, review system configurations directly
# Example: Check if account management policies exist
grep -r "account.management\|access.control" /etc/security/ 2>/dev/null
```
### Step 3: Test Operating Effectiveness
Verify the control is actively functioning, not just documented. Check logs, configurations, and operational evidence.
## Tools
| Tool | Purpose | Usage |
| ------------- | --------------------------------- | ----- |
| Manual Review | Documentation and interview-based | N/A |
## Remediation Guide
### Control Statement
Implement the security design principle of reduced complexity in [organization-defined].
### Implementation Guidance
The principle of reduced complexity states that the system design is as simple and small as possible. A small and simple design is more understandable, more analyzable, and less prone to error. The reduced complexity principle applies to any aspect of a system, but it has particular importance for security due to the various analyses performed to obtain evidence about the emergent security property of the system. For such analyses to be successful, a small and simple design is essential. Application of the principle of reduced complexity contributes to the ability of system developers to understand the correctness and completeness of system security functions. It also facilitates the identification of potential vulnerabilities. The corollary of reduced complexity states that the simplicity of the system is directly related to the number of vulnerabilities it will contain; that is, simpler systems contain fewer vulnerabilities. An benefit of reduced complexity is that it is easier to understand whether the intended security policy has been captured in the system design and that fewer vulnerabilities are likely to be introduced during engineering development. An additional benefit is that any such conclusion about correctness, completeness, and the existence of vulnerabilities can be reached with a higher degree of assurance in contrast to conclusions reached in situations where the system design is inherently more complex. Transitioning from older technologies to newer technologies (e.g., transitioning from IPv4 to IPv6) may require implementing the older and newer technologies simultaneously during the transition period. This may result in a temporary increase in system complexity during the transition.
## Risk Assessment
| Finding | Severity | Impact |
| ------------------------------------------ | -------- | ------------------------------------------ |
| SA-8(7) Reduced Complexity not implemented | Medium | System and Services Acquisition |
| SA-8(7) partially implemented | Low | Incomplete System and Services Acquisition |
## CWE Categories
| CWE ID | Title |
| ------ | ------------- |
| CWE-16 | Configuration |
## References
- [NIST SP 800-53 Rev 5 - SA-8(7)](https://csrc.nist.gov/projects/cprt/catalog#/cprt/framework/version/SP_800_53_5_1_1/home?element=sa-8.7)
- [NIST SP 800-53A Rev 5 (Assessment Procedures)](https://csrc.nist.gov/pubs/sp/800/53/a/r5/final)
- [NIST SP 800-53 Rev 5 Full Catalog](https://csrc.nist.gov/pubs/sp/800/53/r5/upd1/final)
## Checklist
- [ ] Control documented in SSP
- [ ] Implementation evidence collected
- [ ] Operating effectiveness validated
- [ ] Continuous monitoring in place
- [ ] Related controls (none) reviewed
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