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Map command

Skill beginnersinai/claude-skills-marketplace/plugins/the-44-percent-rule/skills/map-command

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npx -y skills add beginnersinai/claude-skills-marketplace --skill map-command

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This skill should be used when the user types '/map', asks to 'run an AI mapping audit', 'scan my workspace for AI gaps', 'find where AI should be in my business', or wants a full workspace AI audit. Runs a comprehensive AI Mapping Audit based on Kim, Kim & Koning (2026) research.

SKILL.md

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AI Mapping Audit — Full Workspace Scan

Run a comprehensive AI Mapping Audit based on the research paper "Mapping AI into Production: A Field Experiment on Firm Performance" (Kim, Kim & Koning, 2026).

Background for the user

Tell the user:

This audit is based on a field experiment with 515 startups that found the #1 bottleneck to getting value from AI isn't capability — it's discovering where to deploy it. Firms that were shown how others reorganized around AI found 44% more use cases, completed 12% more tasks, were 18% more likely to acquire paying customers, and generated 1.9x higher revenue — all while needing 39.5% less external capital.

I'm going to scan your workspace, map where you're already using AI, and identify the high-value gaps where AI could be creating value but isn't.

Step 1: Discovery Questions

Before scanning any files, ask the user these questions to understand their business. These mirror the intervention from the research paper — the act of thinking through these questions is itself valuable.

Ask these one at a time (not all at once):

  1. "Walk me through what your business does, step by step — from when a customer first finds you to when they pay you and get what they bought." (This maps their production chain end-to-end)

  2. "Where in that process do you spend time moving information between tools — copying from a spreadsheet into an email, updating a CRM after a call, transferring data between apps?" (This finds "glue work" — the FazeShift pattern from the paper)

  3. "What parts of your business do you currently outsource, or wish you could do faster or cheaper?" (This finds automation opportunities — the Ranger pattern)

  4. "If you could instantly test three different versions of something in your business, what would it be?" (This finds parallel prototyping opportunities — the RyzLabs pattern)

  5. "What decisions do you currently make based on gut feeling that you wish you had data for?" (This finds strategy and analytics gaps — the highest-value functions per the research)

Record the answers — they will inform the gap analysis in later steps.

Step 2: Venture Discovery

Use the Agent tool with subagent_type "Explore" to thoroughly scan the user's working directory and identify:

  • All projects, businesses, and ventures
  • Their current status (active, planned, dormant)
  • Any existing AI/automation configurations
  • Revenue-generating vs. developmental projects

Be thorough — check subdirectories, read READMEs, check for config files, package.json files, .env files, GitHub Actions, automation scripts, etc.

Step 3: AI Usage Mapping

For each discovered venture, map current AI usage across these 10 production functions:

#FunctionDescriptionWhat to Look For
1Product DevelopmentBuilding/improving the core productAI-generated features, synthetic testing, automated QA
2Strategy & PlanningBusiness decisions, roadmaps, competitive analysisAI-assisted research, market analysis, decision frameworks
3Marketing & GrowthCustomer acquisition, brand, social mediaAI content generation, ad optimization, social automation
4Sales & RevenueConverting prospects, closing deals, pricingAI outreach, lead scoring, pricing optimization
5Customer SuccessRetention, support, satisfactionAI segmentation, churn prediction, personalized journeys
6Finance & PricingRevenue tracking, cost optimization, forecastingAI analytics, attribution modeling, cash flow prediction
7Operations & LogisticsDay-to-day execution, workflows, processesAI workflow automation, scheduling, resource allocation
8Content ProductionCreating content assets (writing, video, design)AI writing, editing, image generation, video production
9Data & AnalyticsMeasuring, analyzing, reportingAI dashboards, anomaly detection, trend analysis
10System AdministrationMaintaining tools, infrastructure, integrationsAI monitoring, self-healing systems, optimization

For each function, assign one of these statuses:

  • Saturated — AI is deeply integrated, diminishing returns from more
  • Active — AI is used but could be expanded
  • Minimal — Some AI usage but mostly manual
  • Absent — No AI involvement at all

Step 4: Gap Analysis

Read these two reference files:

  • ${CLAUDE_PLUGIN_ROOT}/skills/ai-mapping-audit/references/examples-from-other-firms.md — examples of how firms deploy AI in each function
  • ${CLAUDE_PLUGIN_ROOT}/skills/ai-mapping-audit/references/case-studies-from-paper.md — the 4 real case studies from the Harvard/INSEAD research (Gamma, RyzLabs, FazeShift, Ranger)

For each function marked "Minimal" or "Absent", generate specific recommendations:

  • What Claude/AI could do in this function
  • How other firms have deployed AI here (from the examples and case studies)
  • Which case study pattern applies (process redesign like Gamma? Parallel prototyping like RyzLabs? Eliminating glue work like FazeShift? Services-first like Ranger?)
  • Expected impact (revenue, time saved, capital reduction)
  • Implementation complexity (Low/Medium/High)

O-Ring Warning

Check for the "partial automation trap": if AI is used in only one step of a multi-step process while the rest stays manual, flag it prominently:

Warning: Partial automation detected. AI is being used in [function] but the steps before and after it are still manual. Research shows that automating just one step in a chain preserves the bottleneck rather than relieving it. The biggest gains come from rethinking the entire process around AI — not just speeding up one piece.

Cross-reference with the user's answers from Step 1, especially their description of their step-by-step process and where they identified glue work.

Step 5: Priority Scoring

Score each opportunity on three dimensions (1-5 scale):

  • Revenue Impact: How much could this increase revenue or reduce costs?
  • Capital Reduction: Does this reduce need for external investment or hiring?
  • Ease of Implementation: How quickly can this be deployed with existing tools?

Calculate a composite score: (Revenue Impact x 2) + Capital Reduction + Ease of Implementation

Sort opportunities by composite score, highest first.

Step 6: Generate the AI Map (Markdown + HTML)

Create TWO files in the user's working directory:

File 1: AI-MAP-[date].md (text-readable report)

Markdown file with:

  1. Executive Summary — Total ventures scanned, current AI saturation %, number of gaps found, number of "press-send" wins
  2. Venture Inventory — List of all discovered ventures with status
  3. The AI Map — A table showing each venture × each function with status indicators (Saturated/Active/Minimal/Absent)
  4. Top 10 Opportunities — Prioritized list with scores and specific implementation steps
  5. Press-Send Wins — The subset of opportunities where infrastructure already exists (Ease = 5, Score ≥ 15)
  6. The Paper's Key Insight — Remind the user that gains are largest at the 90th percentile (AI amplifies winners, doesn't rescue losers)
  7. 30-Day Action Plan — Week-by-week implementation sequence starting with highest-impact items

File 2: AI-MAP-[date].html (full visual report)

Generate a self-contained, dark-theme HTML report. Use the template at:

${CLAUDE_PLUGIN_ROOT}/skills/ai-mapping-audit/templates/heat-map-template.html

The template includes a donut chart (SVG), color-coded stat cards, per-venture progress bars, a CSS-grid heat map, a radar/spider chart, a horizontal bar chart for the top 10, a vertical timeline for the 30-day plan, icon callouts, and a research footer. All visuals are pure HTML+CSS+SVG — no external assets, no JavaScript.

Step 6a — Calculate the donut chart

After classifying every (venture × function) cell, count each status across all cells.

total       = ventureCount × 10
sat_count   = cells marked Saturated
act_count   = cells marked Active
min_count   = cells marked Minimal
abs_count   = cells marked Absent

SAT_PCT = round(sat_count / total × 100)
ACT_PCT = round(act_count / total × 100)
MIN_PCT = round(min_count / total × 100)
ABS_PCT = round(abs_count / total × 100)

SATURATION_PERCENT = round((sat_count + act_count) / total × 100)

The donut uses a circle with r=70, so circumference = 2π × 70 ≈ 440. Each segment's length is its share of 440. Stack the segments by adding the previous lengths to the next segment's dashoffset:

DONUT_SAT_LEN    = (sat_count / total) × 440
DONUT_ACT_LEN    = (act_count / total) × 440
DONUT_MIN_LEN    = (min_count / total) × 440
DONUT_ABS_LEN    = (abs_count / total) × 440

DONUT_SAT_OFFSET = 0
DONUT_ACT_OFFSET = -DONUT_SAT_LEN
DONUT_MIN_OFFSET = -(DONUT_SAT_LEN + DONUT_ACT_LEN)
DONUT_ABS_OFFSET = -(DONUT_SAT_LEN + DONUT_ACT_LEN + DONUT_MIN_LEN)

Round all dasharray/offset values to 2 decimal places when substituting.

Step 6b — Build per-venture progress bars

For each venture, compute its own saturation:

venture_score = (sat_in_venture × 1.0) + (act_in_venture × 0.6) + (min_in_venture × 0.25)
venture_pct   = round(venture_score / 10 × 100)
functions_active = sat_in_venture + act_in_venture

Pick the bar color class based on venture_pct:

  • 0–15%r (red)
  • 16–30%y (yellow)
  • 31–60%b (blue)
  • 61%+g (green)

Emit one card per venture into {{VENTURE_BARS}}:

<div class="venture-card">
  <div class="vc-name">VentureName</div>
  <div class="vc-meta">FUNCTIONS_ACTIVE / 10 functions covered</div>
  <div class="vc-bar-wrap"><div class="vc-bar b" style="width:42%"></div></div>
  <div class="vc-pct"><span>AI Saturation</span><strong>42%</strong></div>
</div>

Step 6c — Build the heat map grid

The heat map is functions × ventures (10 rows, N columns where N = venture count). Replace {{HM_COLS}} in the CSS grid with the venture count.

Replace {{HEATMAP_VENTURE_HEADERS}} with one <div class="hm-vh">VentureName</div> per venture, in the same column order you'll use for the cells.

Replace {{HEATMAP_ROWS}} with 10 rows in this exact function order: Product Dev, Strategy, Marketing, Sales, Customer Success, Finance, Operations, Content, Data, System Admin.

<div class="hm-row">
  <div class="hm-fn-label">Product Dev</div>
  <div class="hm-cell hm-saturated">SATURATED</div>
  <div class="hm-cell hm-active">ACTIVE</div>
  <div class="hm-cell hm-absent">ABSENT<span class="star">★</span></div>
  <!-- one cell per venture, in the same order as the headers -->
</div>

Cell class + label mapping:

  • Saturated → hm-saturated / "SATURATED"
  • Active → hm-active / "ACTIVE"
  • Minimal → hm-minimal / "MINIMAL"
  • Absent → hm-absent / "ABSENT"

Add <span class="star">★</span> inside any cell whose (venture × function) intersection appears in the top-10 priority list with composite score ≥ 12.

Step 6d — Calculate the radar/spider chart polygon points

The radar has 10 axes (one per function), with the first axis pointing straight up. Score every function on a 0–1 scale based on the BEST status that function reaches across all ventures (or the average — pick one and be consistent):

Absent    → 0.0
Minimal   → 0.25
Active    → 0.6
Saturated → 0.9

For each function i (0–9), compute the radar point:

angle_deg = (i × 36) − 90        # -90 so first spoke points up
angle_rad = angle_deg × π / 180
x = 250 + (score × 180) × cos(angle_rad)
y = 250 + (score × 180) × sin(angle_rad)

Function index order (must match the spoke positions in the SVG): 0=Product Dev, 1=Strategy, 2=Marketing, 3=Sales, 4=Customer Success, 5=Finance, 6=Operations, 7=Content, 8=Data, 9=System Admin.

Concatenate all 10 points into a points string:

"x0,y0 x1,y1 x2,y2 ... x9,y9"

Substitute into {{RADAR_CUR_POINTS}}.

For {{RADAR_TOP_POINTS}} (the 90th-percentile reference polygon), use score = 0.85 for every function — this represents the "top performers" from the research. The polygon will be a near-perfect circle, making the gap between blue (current) and green (top performers) immediately visible.

Step 6e — Build the horizontal bar chart for top 10 opportunities

For each opportunity in the top 10, compute the bar width:

bar_width_pct = (composite_score / 20) × 100

Apply the top class (red gradient) to the top 2 highest-scoring opportunities — these are the visual "press send" callouts.

Emit into {{OPPORTUNITY_BARS}}:

<div class="bar-row">
  <div class="bar-label"><span class="rk">1</span>VentureName × Function</div>
  <div class="bar-track"><div class="bar-fill top" style="width:90%"></div></div>
  <div class="bar-score">18/20</div>
</div>

(Use bar-fill without top for ranks 3–10.)

Step 6f — Build the priority detail list

{{PRIORITY_LIST}} is the same top 10 opportunities with full explanation:

<div class="priority-detail-item">
  <div class="pdi-head">
    <span class="rank">1</span>
    <span class="pdi-title">VentureName × Function: short action description</span>
    <span class="pdi-score">18/20</span>
  </div>
  <p class="pdi-body">Why this matters in plain language. Which case study pattern applies (Gamma's process redesign / RyzLabs's parallel prototyping / FazeShift's glue-work elimination / Ranger's services-first). The first concrete step to take this week.</p>
</div>

Step 6g — Build the press-send list

Filter the priority list to opportunities with composite_score ≥ 15 AND Ease = 5. Emit into {{PRESS_SEND_LIST}}:

<div class="ps-item">
  <strong>VentureName × Function:</strong> What to activate
  <small>Why it's "press send": infrastructure already exists because [specific reason]</small>
</div>

Step 6h — Group the timeline into 4 weekly themes

Group the top opportunities into 4 weekly buckets by theme:

  • Week 1 — Activate (w1, red): Press-send wins. Anything with Ease=5 and infrastructure already in place.
  • Week 2 — Customer (w2, orange): Customer-facing opportunities (Sales, Marketing, Customer Success).
  • Week 3 — Finance (w3, yellow): Finance & Pricing, Data & Analytics, Operations.
  • Week 4 — Strategy (w4, green): Product Dev and Strategy & Planning — the highest-value functions per the research.

If a theme has no relevant top-10 opportunities, fill it with the next-highest-scoring opportunity that fits.

Emit into {{TIMELINE_WEEKS}}:

<div class="timeline-week w1">
  <span class="tw-tag">Week 1 · Activate</span>
  <h3 class="tw-title">Highest-impact press-send wins</h3>
  <ul class="tw-tasks">
    <li>Specific action 1 from this theme</li>
    <li>Specific action 2 from this theme</li>
  </ul>
</div>

Repeat for w2, w3, w4.

Step 6i — Substitute the remaining placeholders

PlaceholderReplace With
{{BUSINESS_NAME}}Best-guess from workspace (parent folder, README title, or "Your Business")
{{DATE}}Today's date in format like "April 6, 2026"
{{VENTURE_COUNT}}Number of ventures discovered in Step 2
{{GAP_COUNT}}Cells marked Absent or Minimal
{{PRESS_SEND_COUNT}}Opportunities scoring ≥ 15 with Ease = 5
{{TOP_SCORE}}The composite score of the #1 opportunity
{{TOP_OPPORTUNITY_LABEL}}Short label like "VentureName × Strategy"
{{SATURATION_PERCENT}}Big number in donut center
{{SAT_PCT}} {{ACT_PCT}} {{MIN_PCT}} {{ABS_PCT}}Donut legend percentages
{{DONUT_SAT_LEN}} {{DONUT_ACT_LEN}} {{DONUT_MIN_LEN}} {{DONUT_ABS_LEN}}Donut dasharray lengths (Step 6a)
{{DONUT_SAT_OFFSET}} {{DONUT_ACT_OFFSET}} {{DONUT_MIN_OFFSET}} {{DONUT_ABS_OFFSET}}Donut dashoffset values (Step 6a)
{{HM_COLS}}Venture count (for the CSS grid template)
{{HEATMAP_VENTURE_HEADERS}}One <div class="hm-vh">...</div> per venture (Step 6c)
{{HEATMAP_ROWS}}10 function rows (Step 6c)
{{VENTURE_BARS}}One progress card per venture (Step 6b)
{{RADAR_CUR_POINTS}}10 x,y pairs for current state polygon (Step 6d)
{{RADAR_TOP_POINTS}}10 x,y pairs for top performers polygon (Step 6d)
{{OPPORTUNITY_BARS}}Top 10 bar rows (Step 6e)
{{PRIORITY_LIST}}Top 10 detailed items (Step 6f)
{{PRESS_SEND_LIST}}Press-send opportunity items (Step 6g)
{{TIMELINE_WEEKS}}4 weekly theme blocks (Step 6h)

Why both formats

  • Markdown is easy for the user to read in their editor, version-control friendly, can be re-processed by other tools
  • HTML opens directly in any browser with a styled visual heat map — much easier to share with co-founders, investors, or team members who don't read markdown
  • The HTML file is self-contained (all CSS inline, no external assets) so it works offline and can be emailed as an attachment

After generating both files, tell the user:

I've generated two files in your working directory:

  1. AI-MAP-[date].md — text report with the full analysis (open in your editor)
  2. AI-MAP-[date].html — visual heat map (open in any browser by double-clicking it)

The heat map color-codes every venture × function intersection — green where AI is active, red where it's absent. Stars (★) mark the highest-impact gaps to fill first.

Your top opportunity is: [briefly describe #1 from the priority list]

Want me to run /the-44-percent-rule:map-score to drill into the prioritization, or /the-44-percent-rule:map-venture [name] to do a deep audit of a specific project?

Important Notes

  • Focus recommendations on areas where AI is ABSENT, not where it's already active
  • Be specific — don't say "use AI for analytics", say "connect Beehiiv MCP get_post_stats to a weekly Claude agent that identifies which content topics drive the most ad revenue"
  • Reference the paper's findings throughout to ground recommendations in evidence
  • The biggest wins come from product development and strategy — weight those functions higher
  • Always check: if a venture only uses AI for writing/content, it has a mapping problem

What ships with it

Read from the repository

Just SKILL.md. No reference files, no scripts.

Keep looking

Skills are one crate of 328,083. Ordering is by how many stacks a row turns up in, so the top of any crate is what has actually been picked rather than what has the most stars.