| name | dependency |
| version | 2.0.0 |
| description | [Project Management] Use when you need to map and visualize feature dependencies between modules, services, and work items. |
Quick Summary
Goal: Analyze and visualize dependencies between features, services, or work items to identify blockers and critical paths.
Workflow:
- Identify Scope — Single feature, module, or full release
- Classify Dependencies — Data, Service, UI, or Infrastructure types
- Build Graph — Create Mermaid dependency diagram
- Find Critical Path — Longest blocking chain; mark ready-to-start items
- Deliver Report — Summary, graph, critical path, risks
Key Rules:
- Respect microservice boundaries (cross-service = message bus only)
- Flag circular dependencies as errors
- Not for package/npm upgrades (use
package-upgrade instead)
Be skeptical. Apply critical thinking, sequential thinking. Every claim needs traced proof, confidence percentages (Idea should be more than 80%).
Dependency Mapping
Purpose
Analyze and visualize dependencies between features, services, modules, or work items to identify blockers, critical paths, and safe execution order.
When to Use
- Planning feature implementation sequence across modules
- Identifying what blocks a specific feature or work item
- Mapping cross-service dependencies (backend-to-backend, frontend-to-backend)
- Understanding critical path for a release or milestone
- Analyzing impact of changing a shared module or entity
When NOT to Use
- Single-service code changes with no cross-boundary impact -- just implement directly
- Performance analysis -- use
performance instead
- Security dependency auditing -- use
security-review instead
- Package/npm dependency upgrades -- use
package-upgrade instead
Prerequisites
- Read the feature/PBI/plan files to understand scope
- Access to
docs/project-reference/project-structure-reference.md for service boundary reference
- Understand the project's microservice boundaries (read the project's structure reference /
docs/project-config.json for the service-root location, then list the services under it)
Workflow
Step 1: Identify Scope
Determine what to map:
- Single feature: Find all files, services, and entities it touches
- Module/service: Map all inbound and outbound dependencies
- Release/milestone: Map all features and their inter-dependencies
Step 2: Classify Dependencies
For each dependency found, classify by type:
| Type | Direction | Description | Example |
|---|
| Data | Entity A requires Entity B | Foreign key, navigation property, shared ID | Order requires Customer |
| Service | Service A calls Service B | Message bus, API call, event consumer | Service A consumes entity events from Service B |
| UI | Component A embeds Component B | Shared component, library dependency | Feature form uses shared component library select |
| Infrastructure | Feature needs infra change | Database migration, config, new queue | New feature needs Redis cache key |
Step 3: Build Dependency Graph
Use Mermaid syntax for visualization:
graph TD
A[Feature A] -->|data| B[Feature B]
A -->|service| C[Feature C]
B -->|blocks| D[Feature D]
C -->|blocks| D
style D fill:#f96,stroke:#333
Step 4: Identify Critical Path
- Find the longest chain of blocking dependencies
- Mark items with no blockers as "ready to start"
- Flag circular dependencies as errors
Step 5: Deliver Report
Output structured dependency report (see Output Format).
Output Format
## Dependency Map: [Feature/Module Name]
### Summary
- Total items: N
- Ready to start: N (no blockers)
- Blocked: N
- Critical path length: N steps
### Dependency Graph
[Mermaid diagram]
### Critical Path
1. [Item A] -- no blockers, estimated: Xd
2. [Item B] -- blocked by: A, estimated: Xd
3. [Item C] -- blocked by: B, estimated: Xd
### Dependency Details
| Item | Type | Depends On | Blocks | Status |
| ---- | --------------------- | ---------- | ------ | ------------- |
| ... | data/service/UI/infra | ... | ... | ready/blocked |
### Risks
- [Circular dependency / tight coupling / single point of failure]
Examples
Example 1: Backend Cross-Service Feature
Input: "Map dependencies for adding a new Shipment feature in {ServiceA}"
Analysis:
graph TD
E[Order Entity - ServiceA] -->|data| C[Shipment Entity]
U[User Entity - AuthService] -->|service| C
C -->|service| N[Notification - ServiceB]
C -->|UI| CF[Shipment Form Component]
CF -->|UI| BC[shared-components select]
Critical path: Order Entity -> Shipment Entity -> Shipment API -> Shipment Form
Ready to start: Order Entity already exists, shared component select exists
Blocked: Shipment Entity creation, then API, then UI
Example 2: Frontend Module Dependency
Input: "What blocks the new Dashboard widget in {AnalyticsService}?"
Analysis:
graph TD
GA[Source API - ServiceA] -->|service| GE[Event Bus Message]
GE -->|service| GC[Consumer - AnalyticsService]
GC -->|data| GS[Summary Entity]
GS -->|UI| GW[Dashboard Widget]
GW -->|UI| DC[Dashboard Container]
Blockers identified:
- Event Bus Message producer must exist in ServiceA (exists: yes)
- Consumer must be created in AnalyticsService (exists: no -- BLOCKER)
- Summary Entity for aggregated data (exists: no -- BLOCKER)
Related Skills
project-manager -- for sprint planning and status tracking
workflow-feature -- for implementing features after dependency analysis
package-upgrade -- for npm/NuGet package dependency upgrades
[IMPORTANT] Use TaskCreate to break ALL work into small tasks BEFORE starting — including tasks for each file read. This prevents context loss from long files. For simple tasks, AI MUST ATTENTION ask user whether to skip.
Prerequisites: MUST ATTENTION READ before executing:
AI Mistake Prevention — Failure modes to avoid on every task:
Re-read files after context changes. Context compaction, resume, or long-running work can make memory stale; verify current files before acting.
Verify generated content against source evidence. AI hallucinates APIs, names, claims, and document facts. Check the relevant source before documenting or referencing.
Check downstream references before deleting or renaming. Removing an artifact can stale docs, generated mirrors, configs, and callers; map references first.
Trace the full impact chain after edits. Changing a definition can miss derived outputs and consumers. Follow the affected chain before declaring done.
Verify ALL affected outputs, not just the first. One green check is not all green checks; validate every output surface the change can affect.
Assume existing values are intentional — ask WHY before changing. Before changing a constant, limit, flag, wording, or pattern, read nearby context and history.
Surface ambiguity before acting — don't pick silently. Multiple valid interpretations require an explicit question or stated assumption with risk.
Keep shared guidance role-relevant. Universal guidance must help every receiving skill or agent; code-specific obligations belong only in code-specific protocols.
Critical Thinking Mindset — Apply critical thinking, sequential thinking. Every claim needs traced proof, confidence >80% to act.
Anti-hallucination: Never present guess as fact — cite sources for every claim, admit uncertainty freely, self-check output for errors, cross-reference independently, stay skeptical of own confidence — certainty without evidence root of all hallucination.
Understand Code First — HARD-GATE: Do NOT write, plan, or fix until you READ existing code.
- Search 3+ similar patterns (
grep/glob) — cite file:line evidence
- Read existing files in target area — understand structure, base classes, conventions
- Run
python .claude/scripts/code_graph trace <file> --direction both --json when .code-graph/graph.db exists
- Map dependencies via
connections or callers_of — know what depends on your target
- Write investigation to
.ai/workspace/analysis/ for non-trivial tasks (3+ files)
- Re-read analysis file before implementing — never work from memory alone. — why: long context drifts from the file; the file is ground truth
- NEVER invent new patterns when existing ones work — match exactly or document deviation. — why: divergent patterns fragment the codebase and slow every future reader
BLOCKED until: - [ ] Read target files - [ ] Grep 3+ patterns - [ ] Graph trace (if graph.db exists) - [ ] Assumptions verified with evidence
- MANDATORY IMPORTANT MUST ATTENTION search 3+ existing patterns and read code BEFORE any modification. Run graph trace when graph.db exists.
- MANDATORY IMPORTANT MUST ATTENTION cite
file:line evidence for every claim. Confidence >80% to act, <60% = do NOT recommend.
MUST ATTENTION apply critical + sequential thinking — every claim needs appropriate traced evidence (file:line for repo/code claims; source URL or artifact section for research, product, content, and docs claims); confidence >80% to act, <60% DO NOT recommend. Anti-hallucination: never present guess as fact, admit uncertainty freely, cross-reference independently, stay skeptical of own confidence.
MUST ATTENTION apply AI mistake prevention — verify generated content against evidence, trace downstream references before deleting or renaming, verify all affected outputs, re-read files after context loss, and surface ambiguity before acting.
Closing Reminders
Protocols in force (concise digest of the SYNC/shared blocks this skill carries):
-
AI Mistakes: holistic-first debug, fix at responsible layer, surgical diff, verify all outputs.
-
Critical Thinking: traced proof per claim, confidence >80% to act, NEVER guess.
-
Understand Code: read code and grep 3+ patterns before any modification.
-
MANDATORY IMPORTANT MUST ATTENTION break work into small todo tasks using TaskCreate BEFORE starting
-
MANDATORY IMPORTANT MUST ATTENTION search codebase for 3+ similar patterns before creating new code
-
MANDATORY IMPORTANT MUST ATTENTION cite file:line evidence for every claim (confidence >80% to act)
-
MANDATORY IMPORTANT MUST ATTENTION add a final review todo task to verify work quality
MANDATORY IMPORTANT MUST ATTENTION READ the following files before starting:
[TASK-PLANNING] Before acting, analyze task scope and systematically break it into small todo tasks and sub-tasks using TaskCreate.