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Aperture Oscillation

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Surface design tensions by oscillating scope levels.

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Free · Opens the source repo

What Aperture Oscillation does

Aperture Oscillation is a skill designed to help developers and designers analyze components within a larger system by shifting the scope of their inquiry through three structured passes. Each pass focuses on a different zoom level while maintaining a constant question, allowing for a nuanced exploration of design tensions and coherence assessments. The first pass examines the component in isolation, capturing its inherent logic and desired characteristics. The second pass shifts to a broader view, assessing how the component fits within the system's overall goals and constraints. Finally, the synthesis pass compares the outputs of the first two passes, revealing any discrepancies or tensions that may arise from the differing perspectives.

This skill is particularly useful in scenarios where a component's design must align with both its individual functionality and the overarching system requirements. By holding the question constant and oscillating between narrow and wide scopes, users can surface potential design conflicts before they lead to costly rework during the development process. The insights gained from this oscillation can inform architecture decisions, feature design, and system coherence checks, ensuring that both local and global perspectives are considered.

Aperture Oscillation is ideal for teams engaged in complex projects where understanding the interplay between specific components and the overall system vision is crucial. It aids in making informed design choices that respect both the integrity of individual components and the coherence of the entire system. By leveraging this skill, teams can enhance their design processes and mitigate the risks associated with scope misalignment.

When to use it

Use Aperture Oscillation when designing components that need to fit within a larger system, ensuring alignment with both tactical and strategic goals.

When not to use it

Avoid this skill if your tactical target and strategic context are the same, as it won't provide additional insights; in such cases, consider using IterativeDepth instead.

What you can build with it

Architecture Decisions

When deciding whether a component should be a service, library, or inline, use Aperture Oscillation to evaluate both tactical and strategic perspectives.

Feature Design

When a user requests a feature, oscillate between the specific request and the system's requirements to identify any gaps.

Design Reviews

Before finalizing a design approach, use this skill to ensure that the tactical plan aligns with the strategic vision.

How to install Aperture Oscillation

View source

1. Install with the skills CLI

npx skills add danielmiessler/lifeos/ApertureOscillation --agent claude-code

2. Or install it manually

Download the skill folder and drop it into ~/.claude/skills/ for all projects, or .claude/skills/ to scope it to one repo. Restart Claude Code so it picks up the new skill.

Anthropic's agentic coding CLI, and the reference implementation of Agent Skills. Drop a skill folder into ~/.claude/skills and Claude Code loads it automatically whenever a task matches the skill's description. Claude Code docs

Inside SKILL.md

Written by danielmiessler

Customization

Before executing, check for user customizations at: ~/.claude/LIFEOS/USER/CUSTOMIZATIONS/SKILLS/ApertureOscillation/

If this directory exists, load and apply any PREFERENCES.md, configurations, or resources found there. These override default behavior. If the directory does not exist, proceed with skill defaults.

ApertureOscillation

What It Does

Runs a question through 3 passes at different zoom levels — narrow/tactical, wide/strategic, then synthesis — while holding the question itself constant. The first pass captures what a component wants to be on its own. The second captures what the system needs it to be. The third finds where those two views disagree, and that gap is the output: design tensions, scope recommendations, coherence checks.

The Problem

A component designed in isolation gets its own clean logic. The same component designed inside a stated system vision inherits different constraints. Pick one zoom level and you miss the other — you ship something that works perfectly on its own but fights the system, or something that serves the system but ignores the component's natural shape. The most expensive rework comes from exactly this mismatch, discovered mid-build. Holding the question constant while varying the scope surfaces the mismatch before you commit.

How It Works

Grounded in the observation that LLMs (and humans) produce different outputs depending on the scope of the framing context. A component designed in isolation has its own logic. The same component designed within a stated system vision inherits different constraints. The delta between these two framings is where the insight lives.

Instead of rotating analytical lenses (IterativeDepth) or generating divergent ideas (BeCreative), ApertureOscillation holds the question constant but shifts the scope envelope around it across 3 structured passes:

  1. Narrow Aperture (Tactical-first): The specific thing is primary. Big-picture context is background. This captures what the component naturally wants to be — its own internal logic and shape.

  2. Wide Aperture (Strategic-first): The vision/system goal is primary. The specific thing is derived from it. This captures what the system needs the component to be — coherence, alignment, constraints you'd miss thinking locally.

  3. Oscillation (Synthesis): Feed both outputs. Ask where the tactical and strategic views diverge. The tensions, gaps, and surprises between the two framings are the output — the things neither pass alone would surface.

How It Differs from IterativeDepth

DimensionIterativeDepthApertureOscillation
What variesAnalytical lens (failure, stakeholder, temporal...)Scope/zoom level (narrow, wide, synthesized)
Pass count2-83 (fixed)
InputSingle problem statementTwo inputs: tactical target + strategic context
OutputRicher requirements from multiple anglesDesign tensions between local and system-level views
Best forRequirement discovery, blind spot eliminationArchitecture decisions, feature design, system coherence
When to combineUse IterativeDepth first (understand the problem), then ApertureOscillation (understand where the solution fits)

Use / Win

When to use: Any time you're building something specific within a larger system and need to ensure the local design serves the global vision — without losing the component's own logic.

Concrete triggers:

  • Architecture decisions — "Should this be a service, a library, or inline?" depends entirely on whether you're zoomed into the component or zoomed out to the system.
  • Feature design — The feature a user asks for vs. the feature the product needs are often subtly different. Oscillation surfaces the gap.
  • System coherence checks — When adding to existing infrastructure, the new piece must serve both its own purpose and the system's. Single-scope framing misses one or the other.
  • Design reviews — Before committing to an approach, oscillate scope to check that the tactical plan and the strategic vision agree.
  • Scope negotiation — When the user says "build X" and X could be simple or complex depending on context, oscillation reveals which scope is appropriate.

What you win:

  • Design tensions surfaced before they become mid-build surprises. The most expensive rework comes from a component that works perfectly on its own but doesn't serve the system.
  • Scope clarity. Seeing the same question at narrow and wide aperture often reveals that the obvious scope is wrong.
  • Coherence confidence. When tactical and strategic views align, you can build with conviction. When they diverge, you know exactly where to make tradeoffs.

Workflow Routing

WorkflowTriggerFile
Oscillate"aperture oscillation", "oscillate scope", "zoom in/out", "tactical vs strategic"Workflows/Oscillate.md
OscillateAlgorithm OBSERVE/THINK selects ApertureOscillation capabilityWorkflows/Oscillate.md

Quick Reference

  • 3 passes — always 3 (narrow, wide, synthesis)
  • 2 inputs — tactical target (what you're building) + strategic context (why, the bigger picture)
  • Output — design tensions, scope recommendations, coherence assessment
  • Integration point — OBSERVE (before ISC) or THINK (before approach commitment)

Gotchas

  • Requires two distinct inputs. If the tactical target and strategic context are the same thing, ApertureOscillation adds no value — use IterativeDepth instead.
  • 3 passes is the right number. Unlike IterativeDepth (2-8), the narrow/wide/synthesis structure is complete at 3. Adding passes would just be lens rotation, which is IterativeDepth's job.
  • The synthesis pass is where the value lives. Passes 1 and 2 are setup. If the synthesis finds no divergence, that's a valid (and valuable) finding — it means the tactical and strategic views are already aligned.
  • This is a BPE-fragile skill. Monitor whether smarter models naturally oscillate scope without being prompted. Quarterly test recommended.

Examples

Example 1: Feature design within a system

Tactical target: "Build a caching layer for session data"
Strategic context: "LifeOS is a Life OS that needs responsive, session-spanning AI assistance"

Pass 1 (Narrow): Redis with TTL, standard session cache patterns
Pass 2 (Wide): Cache must survive session boundaries, integrate with memory system, serve the Life OS vision
Pass 3 (Synthesis): Tension — standard session cache expires data that the Life OS needs to persist. Resolution: hybrid cache with session-scoped fast layer + memory-backed persistent layer.

Example 2: Architecture decision

Tactical target: "Add webhook support to the Feed system"
Strategic context: "Feed is one pipeline in Arbol, which processes content for Surface"

Pass 1 (Narrow): Standard webhook receiver, queue, retry logic
Pass 2 (Wide): Webhooks must flow through Arbol's action/function pattern, integrate with existing queue infrastructure
Pass 3 (Synthesis): Tension — standalone webhook service vs. Arbol action. Resolution: implement as Arbol action, not standalone service, because the strategic context demands pipeline coherence over component independence.

Execution Log

After completing any workflow, append a single JSONL entry:

echo '{"ts":"'$(date -u +%Y-%m-%dT%H:%M:%SZ)'","skill":"ApertureOscillation","workflow":"Oscillate","input":"8_WORD_SUMMARY","status":"ok|error","duration_s":SECONDS}' >> ~/.claude/LIFEOS/MEMORY/SKILLS/execution.jsonl

Replace 8_WORD_SUMMARY with a brief input description, and SECONDS with approximate wall-clock time. Log status: "error" if the workflow failed.

Frequently asked questions about Aperture Oscillation

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