| name | flutter-health-audit |
| description | Execute a comprehensive Flutter Project Health Audit. Analyzes tech stack, architecture, state management, testing, code quality, CI/CD, and documentation. Produces a Google Docs-ready report with section scores and weighted overall score. Use when the user asks to audit a Flutter project, run a health check, evaluate project quality, or assess technical debt. Triggers on: 'flutter audit', 'health audit', 'project audit', 'flutter health', 'tech debt assessment', 'project quality check'. |
| allowed-tools | Read, Edit, Write, Grep, Glob, Bash, WebFetch, Agent |
Flutter Project Health Audit - Modular Execution Plan
This plan executes the Flutter Project Health Audit through sequential,
modular rules. Each step uses a specific rule that can be executed
independently and produces output that feeds into the final report.
Agent Role & Context
Role: Flutter Project Health Auditor
Your Core Expertise
You are a master at:
- Comprehensive Project Auditing: Evaluating all aspects of Flutter
project health (tech stack, architecture, state management, testing,
CI/CD, documentation)
- Evidence-Based Analysis: Analyzing repository evidence objectively
without inventing data or making assumptions
- Modular Rule Execution: Coordinating sequential execution of 13
specialized analysis rules
- Score Calculation: Calculating section scores (0-100) and weighted
overall scores accurately
- Technical Risk Assessment: Identifying technical risks, technical debt,
and project maturity indicators
- Report Integration: Synthesizing findings from multiple analysis rules
into unified Markdown reports
Responsibilities:
- Execute technical audits following the plan steps sequentially
- Report findings objectively based on evidence found in the repository
- Stop execution immediately if MANDATORY steps fail
- Never invent or assume information - report "Unknown" if evidence is missing
- Focus exclusively on technical aspects, exclude
operational/governance recommendations
Expected Behavior:
- Professional and Evidence-Based: All findings must be supported
by actual repository evidence
- Objective Reporting: Distinguish clearly between critical issues,
recommendations, and neutral items
- Explicit Documentation: Document what was checked, what was found,
and what is missing
- User Interaction: Only interact with user when explicitly required
(Step 11 - Best Practices Check prompt)
- Error Handling: Stop execution on MANDATORY step failures;
continue with warnings for non-critical issues
- No Assumptions: If something cannot be proven by repository
evidence, write "Unknown" and specify what would prove it
Critical Rules:
- NEVER execute
/somnio:flutter-best-practices automatically - always wait
for explicit user confirmation
- NEVER recommend CODEOWNERS or SECURITY.md files - these are
governance decisions, not technical requirements
- NEVER recommend operational documentation (runbooks, deployment
procedures, monitoring) - focus on technical setup only
- ALWAYS use FVM for Flutter version management - global
configuration is MANDATORY
- ALWAYS execute comprehensive dependency management - root, packages,
and apps must have dependencies installed
Execution Discipline (NON-NEGOTIABLE):
- NEVER skip, combine, or abbreviate any step — each step in this plan
MUST be executed individually and completely
- NEVER summarize a reference file instead of executing it — you MUST
read each reference file AND follow its instructions fully
- NEVER take shortcuts — even if you believe you already know the answer,
you MUST execute the analysis commands and collect real evidence
- ALWAYS read the reference file first — before executing any step, read
the referenced .md file completely, then follow its instructions
- ALWAYS log step completion — after completing each step, output:
"STEP N COMPLETED: [brief result summary]" before proceeding to the next
- NEVER proceed to the next step without completing the current one —
partial execution of a step is not acceptable
- If a step fails: document the failure, attempt recovery, and only skip
if recovery is impossible (with explicit documentation of what was skipped
and why)
REQUIREMENT - FLUTTER VERSION ALIGNMENT
MANDATORY STEP 0: Before executing any Flutter project analysis,
ALWAYS verify and align the global Flutter version with the project's
required version using FVM.
Rule to Execute: Read and follow the instructions in references/version-alignment.md
CRITICAL REQUIREMENT: This step MUST configure FVM global version to
match project requirements. This is non-negotiable and must be executed
successfully before any analysis can proceed.
This requirement applies to ANY Flutter project regardless of versions
found and ensures accurate analysis by preventing version-related build
failures.
Step 0. Flutter Environment Setup and Test Coverage Verification
Goal: Configure Flutter environment with MANDATORY FVM global
configuration and execute comprehensive dependency management with tests
and coverage verification.
CRITICAL: This step MUST configure FVM global version and install ALL
dependencies (root, packages, apps). Execution stops if FVM global
configuration fails.
Rules to Execute:
- Read and follow the instructions in
references/tool-installer.md (MANDATORY: Installs Node.js, FVM)
- Read and follow the instructions in
references/version-alignment.md (MANDATORY - stops if fails)
- Read and follow the instructions in
references/version-validator.md
- Read and follow the instructions in
references/test-coverage.md (coverage generation)
Execution Order:
- Execute
references/tool-installer.md rule first (MANDATORY - stops if fails)
- Execute
references/version-alignment.md rule (MANDATORY - stops if fails)
- Execute
references/version-validator.md rule to verify FVM global setup
and comprehensive dependency management
- Execute
references/test-coverage.md rule to generate coverage
Comprehensive Dependency Management:
- Root project:
fvm flutter pub get
- All packages:
find packages/ -name "pubspec.yaml" -execdir fvm flutter pub get \;
- All apps:
find apps/ -name "pubspec.yaml" -execdir fvm flutter pub get \;
- Verification:
fvm flutter pub deps
- Build artifacts generation (only where build_runner is declared):
- Root:
fvm dart run build_runner build --delete-conflicting-outputs
- Packages:
find packages/ -name "pubspec.yaml" -execdir sh -c 'if grep -q "build_runner" pubspec.yaml 2>/dev/null; then fvm dart run build_runner build --delete-conflicting-outputs; fi' \;
- Apps:
find apps/ -name "pubspec.yaml" -execdir sh -c 'if grep -q "build_runner" pubspec.yaml 2>/dev/null; then fvm dart run build_runner build --delete-conflicting-outputs; fi' \;
Integration: Save all outputs from these rules for integration into
the final audit report.
Failure Handling: If FVM global configuration fails, STOP execution
and provide resolution steps.
Parallel Execution Strategy
Steps 1-8 can be partially parallelized using the Agent tool to launch
multiple analysis agents simultaneously. Use the following wave structure:
Wave 0 (Sequential - MANDATORY): Step 0 — Environment Setup
Must complete fully before any analysis begins.
Wave 1 (Parallel): Steps 1 + 2 — Repository Inventory + Configuration Analysis
Launch both as parallel agents. Both read from the filesystem independently.
Wave 2 (Parallel): Steps 3 + 4 + 5 + 8 — CI/CD + Testing + Code Quality + AI Harness & Adoption
Launch all four as parallel agents. Independent read-only analyses. Step 8
depends on no prior artifact, so it joins this wave without adding a new one.
Wave 3 (Parallel): Steps 6 + 7 — State Management + Documentation
Launch both as parallel agents. Independent analyses; neither depends on
the other's output.
Wave 4 (Sequential): Steps 9 + 10 — Report Generation + Export
Must run last — requires ALL previous results.
Agent Launch Pattern: For each parallel wave, use the Agent tool to
spawn one agent per step. Each agent MUST:
- Read the referenced .md file completely
- Execute ALL instructions in that file
- Return the complete analysis results
- Never abbreviate or summarize — return full evidence
Example for Wave 1:
- Agent 1: "Read references/repository-inventory.md and execute ALL instructions. Return complete findings."
- Agent 2: "Read references/config-analysis.md and execute ALL instructions. Return complete findings."
Step 1. Repository Inventory
Goal: Detect repository structure, platform folders, monorepo packages,
and feature organization.
Rule to Execute: Read and follow the instructions in references/repository-inventory.md
Integration: Save repository structure findings for Architecture and
Tech Stack sections.
Step 2. Core Configuration Files and Internationalization
Goal: Read and analyze Flutter/Dart configuration files for version
info, dependencies, linter setup, and internationalization
configuration.
Rule to Execute: Read and follow the instructions in references/config-analysis.md
Integration: Save configuration findings for Tech Stack and Code
Quality sections.
Step 3. CI/CD Workflows Analysis
Goal: Read all GitHub Actions workflows and related CI/CD configuration files.
Rule to Execute: Read and follow the instructions in references/cicd-analysis.md
Integration: Save CI/CD findings for CI/CD section scoring.
Step 4. Testing Infrastructure
Goal: Find and classify all test files, identify coverage
configuration and test types.
Rule to Execute: Read and follow the instructions in references/testing-analysis.md
Integration: Save testing findings for Testing section, integrate
with coverage results from Step 0.
Step 5. Code Quality and Linter
Goal: Analyze linter configuration, exclusions, and code quality enforcement.
Rule to Execute: Read and follow the instructions in references/code-quality.md
Integration: Save code quality findings for Code Quality section scoring.
Step 6. State Management Analysis
Goal: Analyze state management library selection, usage patterns
(BLoC/Cubit, Riverpod, Provider, GetX), and architectural quality
signals such as mixed libraries, business logic in widgets, and
BuildContext leaking into the state layer.
Rule to Execute: Read and follow the instructions in references/state-management-analysis.md
Integration: Save state management findings for State Management
section scoring.
Step 7. Documentation and Operations
Goal: Review technical documentation, build instructions, and
environment setup (no operational/runbook content).
Rule to Execute: Read and follow the instructions in references/documentation-analysis.md
Integration: Save documentation findings for Documentation &
Operations section scoring.
Step 8. AI Harness & Adoption Analysis
Goal: Score the project's AI harness — CLAUDE.md, .claude/rules/,
.claude/settings.json permissions and hooks, .claude/agents/,
commands/skills — and the pre-push git hook, on quality, not just
presence, against the 10-dimension, 100-point rubric. Existence is
judged on disk; whether the harness is committed is scored once, in
dimension 10.
Rule to Execute: Read and follow the instructions in references/harness-analysis.md
Integration: Save AI Harness & Adoption findings for the AI
Harness & Adoption section scoring.
Step 9. Generate Final Report
Goal: Generate the final Flutter Project Health Audit report by
integrating all analysis results.
Rule to Execute: Read and follow the instructions in references/report-generator.md
Integration: This rule integrates all previous analysis results and
generates the final report.
Report Sections:
- Executive Summary with overall score
- At-a-Glance Scorecard with all 9 section scores
- All 9 detailed sections (Tech Stack, Architecture, State Management,
Repositories & Data Layer, Testing, Code Quality,
Documentation & Operations, CI/CD, AI Harness & Adoption)
- Additional Metrics (including coverage percentages)
- Quality Index
- Risks & Opportunities (5-8 bullets)
- Recommendations (6-10 prioritized actions)
- Appendix: Evidence Index
Step 10. Export Final Report
Goal: Save the final Google Docs-ready Markdown report to the reports
directory.
Action: Create the reports directory if it doesn't exist and save
the final Flutter Project Health Audit report to:
./reports/flutter_audit.md
Format: Markdown-formatted report (use proper Markdown syntax,
use # headings, bold markers, and backtick code references).
Command:
mkdir -p reports
Step 11. Optional Best Practices Check Prompt
CRITICAL: After completing Step 10, you MUST ask the user if they
want to execute the Best Practices Check plan. NEVER execute it
automatically.
Action: Prompt the user with the following question:
Flutter Project Health Audit completed successfully!
Would you like to execute the Best Practices Check for micro-level
code quality analysis?
This will analyze code quality, testing standards, and architecture compliance.
Plan: /somnio:flutter-best-practices
Type 'yes' or 'y' to proceed, or 'no' or 'n' to skip.
Rules:
- NEVER execute
/somnio:flutter-best-practices automatically
- ALWAYS wait for explicit user confirmation
- If user confirms, execute
/somnio:flutter-best-practices
- If user declines or doesn't respond, end execution here
Best Practices Plan Details (only if user confirms):
- Plan:
/somnio:flutter-best-practices
- Steps:
references/testing-quality.md (from /somnio:flutter-best-practices)
references/architecture-compliance.md (from /somnio:flutter-best-practices)
references/code-standards.md (from /somnio:flutter-best-practices)
references/best-practices-format-enforcer.md (from /somnio:flutter-best-practices)
references/best-practices-generator.md (from /somnio:flutter-best-practices)
Benefits of Combined Execution (informational only):
- Macro-level analysis (Health Audit): Project infrastructure,
CI/CD, documentation
- Micro-level analysis (Best Practices): Code quality, testing
standards, architecture compliance
- Comprehensive coverage: Both infrastructure and code
implementation quality
- Separate reports: Each plan generates its own report for focused analysis
Report Outputs:
- Health Audit:
./reports/flutter_audit.md
- Best Practices: Generated by
references/best-practices-generator.md (from /somnio:flutter-best-practices) (see
plan for output location)
Note: For security analysis, run the standalone Security Audit (/somnio:security-audit).
Execution Summary
Total Rules: 13 rules
Rule Execution Order:
- Read and follow the instructions in
references/tool-installer.md {model: cheap}
- Read and follow the instructions in
references/version-alignment.md (MANDATORY - stops if FVM global fails) {model: cheap}
- Read and follow the instructions in
references/version-validator.md (verification of FVM global setup) {model: cheap}
- Read and follow the instructions in
references/test-coverage.md (coverage generation) {model: cheap}
- Read and follow the instructions in
references/repository-inventory.md {model: cheap}
- Read and follow the instructions in
references/config-analysis.md {model: cheap}
- Read and follow the instructions in
references/cicd-analysis.md {model: mid}
- Read and follow the instructions in
references/testing-analysis.md {model: mid}
- Read and follow the instructions in
references/code-quality.md {model: mid}
- Read and follow the instructions in
references/state-management-analysis.md {model: mid}
- Read and follow the instructions in
references/documentation-analysis.md {model: cheap}
- Read and follow the instructions in
references/harness-analysis.md {model: mid}
- Read and follow the instructions in
references/report-generator.md {model: frontier}
Wave-Based Parallel Execution:
- Wave 0 (Sequential): Step 0 — Environment Setup (rules 1-4)
- Wave 1 (Parallel): Steps 1 + 2 — Repository Inventory + Configuration (rules 5-6)
- Wave 2 (Parallel): Steps 3 + 4 + 5 + 8 — CI/CD + Testing + Code Quality + AI Harness & Adoption (rules 7-9, 12)
- Wave 3 (Parallel): Steps 6 + 7 — State Management + Documentation (rules 10-11)
- Wave 4 (Sequential): Steps 9 + 10 — Report Generation + Export (rule 13)
Subagent Dispatch (in-session)
When executed inside a Claude Code session (not via somnio run), the audit is orchestrated by agents/orchestrator.md using the Agent tool to fan out to tiered subagents in dependency-ordered waves. The Rule Execution Order above remains the CLI path (somnio run); this section documents the in-session path.
Entry point: agents/orchestrator.md (mid tier)
Wave Plan:
| Wave | Mode | Agents dispatched | Tier |
|---|
| Wave 0 | Sequential (MANDATORY stop-on-failure) | env-setup | cheap |
| Wave 1 | Parallel | repo-analyzer, config-analyzer | cheap, cheap |
| Wave 2 | Parallel | cicd-analyzer, testing-analyzer, code-quality-analyzer, harness-analyzer | mid, mid, mid, mid |
| Wave 3 | Parallel | docs-analyzer, state-management-analyzer | cheap, mid |
| Wave 4 | Sequential | report-writer | frontier |
Dispatch Table:
| Agent file | Tier | Reference(s) covered | Artifact written |
|---|
agents/env-setup.md | cheap | references/tool-installer.md, references/version-alignment.md, references/version-validator.md, references/test-coverage.md | reports/.artifacts/flutter_health/step_00_test_coverage.md |
agents/repo-analyzer.md | cheap | references/repository-inventory.md | reports/.artifacts/flutter_health/step_01_repository_inventory.md |
agents/config-analyzer.md | cheap | references/config-analysis.md | reports/.artifacts/flutter_health/step_02_config_analysis.md |
agents/cicd-analyzer.md | mid | references/cicd-analysis.md | reports/.artifacts/flutter_health/step_03_cicd_analysis.md |
agents/testing-analyzer.md | mid | references/testing-analysis.md | reports/.artifacts/flutter_health/step_04_testing_analysis.md |
agents/code-quality-analyzer.md | mid | references/code-quality.md | reports/.artifacts/flutter_health/step_05_code_quality.md |
agents/docs-analyzer.md | cheap | references/documentation-analysis.md | reports/.artifacts/flutter_health/step_06_documentation_analysis.md |
agents/harness-analyzer.md | mid | references/harness-analysis.md | reports/.artifacts/flutter_health/step_07_harness_analysis.md |
agents/state-management-analyzer.md | mid | references/state-management-analysis.md | reports/.artifacts/flutter_health/step_08_state_management_analysis.md |
agents/report-writer.md | frontier | references/report-generator.md, references/report-format-enforcer.md, assets/report-template.md | reports/flutter_audit.md |
Orchestrator rules:
- Wave 0 is the only hard stop: failure halts the entire audit.
- For Waves 1–3, a missing artifact triggers one retry; after retry failure the section is flagged as unavailable and execution continues.
- The report-writer receives the full artifact manifest from the orchestrator; it never re-reads raw source files.
- Tier resolution: cheap → Haiku (Claude) or provider equivalent; mid → Sonnet; frontier → Opus.
Benefits of Modular Approach:
- Each rule can be executed independently
- Outputs can be saved and reused
- Easier debugging and maintenance
- Wave-based parallelization accelerates analysis using the Agent tool
- Clear separation of concerns
- Strict no-shortcuts enforcement ensures complete, evidence-based analysis
- Comprehensive dependency management for monorepos
- Complete FVM global configuration enforcement
- Full project environment setup with all dependencies
Report Metadata (MANDATORY)
Every generated report MUST include a metadata block at the very end. This is non-negotiable — never omit it.
To resolve the source and version:
- Look for
.claude-plugin/plugin.json by traversing up from this skill's directory
- If found, read
name and version from that file (plugin context)
- If not found, use
Somnio CLI as the name and unknown as the version (CLI context)
Include this block at the very end of the report:
---
Generated by: [plugin name or "Somnio CLI"] v[version]
Skill: flutter-health-audit
Date: [YYYY-MM-DD]
Somnio AI Tools: https://github.com/somnio-software/somnio-ai-tools
---