Dependency Graph
SkillAI & modelsGenerates a Mermaid dependency graph showing import relationships between modules. Use when analyzing coupling, finding circular deps, or planning refactors.
Available today. Use it from your connected AI after setup.
No other account needed.
Connect ahel once, and every AI you use reads what you have installed.
Then ask your AI: use the Dependency Graph skill
What this skill tells your AI
The instructions your AI receives, as published by athola/claude-night-market in plugins/cartograph/skills/dependency-graph/SKILL.md and read by ahel’s review.
Generate a Mermaid flowchart showing import and dependency relationships between modules, packages, or plugins.
When To Use
- Understanding what depends on what
- Finding circular dependencies
- Analyzing coupling between modules
- Planning refactoring by seeing dependency impact
- Answering "what breaks if I change this?"
When NOT To Use
- Runtime call paths (use
cartograph:call-chain) - Type hierarchies (use
cartograph:class-diagram)
Workflow
Step 1: Explore the Codebase
Dispatch the codebase explorer agent:
Agent(cartograph:codebase-explorer)
Prompt: Explore [scope] and return a structural model.
Focus on import statements and cross-module dependencies
for a dependency graph. Track both internal and external
imports.
Step 2: Generate Mermaid Syntax
Transform the structural model into a Mermaid flowchart with directed edges representing dependencies.
Rules for dependency graphs:
- Use
flowchart LR(left-right) for dependency direction - Each node is a module or package
- Edges point from dependent to dependency (A --> B means "A depends on B")
- Color-code by dependency type:
- Default arrows for internal dependencies
- Dotted arrows (
-.->) for external/optional deps - Thick arrows (
==>) for critical path dependencies
- Group into subgraphs by package/plugin
- If depth parameter given, limit transitive dependencies
- Highlight circular dependencies with red styling
Example output:
flowchart LR
subgraph sanctum[Sanctum]
commit[commit]
pr_prep[pr_prep]
workspace[workspace]
end
subgraph leyline[Leyline]
git[git_platform]
errors[error_patterns]
end
subgraph external[External]
subprocess[subprocess]
json[json]
end
commit --> git
commit --> json
pr_prep --> workspace
pr_prep --> git
workspace --> errors
workspace -.-> subprocess
Step 3: Render via MCP
Call the Mermaid Chart MCP to render:
mcp__claude_ai_Mermaid_Chart__validate_and_render_mermaid_diagram
prompt: "Dependency graph of [scope]"
mermaidCode: [generated syntax]
diagramType: "flowchart"
clientName: "claude-code"
If rendering fails, fix syntax and retry (max 2 retries).
Step 4: Present Results
Show the rendered diagram with analysis notes:
- Total modules and dependency count
- Most-depended-on modules (high fan-in)
- Modules with most dependencies (high fan-out)
- Circular dependencies if any detected
Exit Criteria
- Mermaid
flowchart LRsyntax generated with directed edges from dependent to dependency (A --> B means "A depends on B") -
mcp__claude_ai_Mermaid_Chart__validate_and_render_mermaid_diagramcalled and returns without error - Analysis notes include total module count, highest fan-in modules, and highest fan-out modules
- Circular dependencies, if detected, are highlighted with red styling and listed explicitly in the analysis notes
- External dependencies use dotted arrows (
-.->) distinct from internal dependency arrows
Signals
- GitHub stars
- 337
- Forks
- 34
- Last commit
- Sep 2026
Advanced
- Catalog kind
- skill
- Gateway key
dependency-graph- Source
- github.com/athola/claude-night-market