skills/proffesor-for-testing/agentic-qe/qcsd-development-swarm

qcsd-development-swarm

SKILL.md

QCSD Development Swarm v1.0

Shift-left quality engineering swarm for in-sprint code quality assurance.


Overview

The Development Swarm takes refined stories (that passed Refinement) and validates code quality during sprint execution. Where the Ideation Swarm asks "Should we build this?" and the Refinement Swarm asks "How should we test this?", the Development Swarm asks "Is the code quality sufficient to ship?"

QCSD Phase Positioning

Phase Swarm Decision When
Ideation qcsd-ideation-swarm GO / CONDITIONAL / NO-GO PI/Sprint Planning
Refinement qcsd-refinement-swarm READY / CONDITIONAL / NOT-READY Sprint Refinement
Development qcsd-development-swarm SHIP / CONDITIONAL / HOLD During Sprint
Verification qcsd-cicd-swarm RELEASE / REMEDIATE / BLOCK Pre-Release / CI-CD
Production qcsd-production-swarm HEALTHY / DEGRADED / CRITICAL Post-Release

Parameters

  • SOURCE_PATH: Source code directory to analyze (required, e.g., src/auth/)
  • TEST_PATH: Test directory for coverage analysis (optional, e.g., tests/auth/)
  • OUTPUT_FOLDER: Where to save reports (default: ${PROJECT_ROOT}/Agentic QCSD/development/)

ENFORCEMENT RULES - READ FIRST

Rule Enforcement
E1 You MUST spawn ALL THREE core agents (qe-tdd-specialist, qe-code-complexity, qe-coverage-specialist) in Step 2. No exceptions.
E2 You MUST put all parallel Task calls in a SINGLE message.
E3 You MUST STOP and WAIT after each batch. No proceeding early.
E4 You MUST spawn conditional agents if flags are TRUE. No skipping.
E5 You MUST apply SHIP/CONDITIONAL/HOLD logic exactly as specified in Step 5.
E6 You MUST generate the full report structure. No abbreviated versions.
E7 Each agent MUST read its reference files before analysis.
E8 You MUST apply qe-defect-predictor analysis on ALL code changes in Step 8. Always.
E9 You MUST execute Step 7 learning persistence. No skipping.

PROHIBITED BEHAVIORS:

  • Summarizing instead of spawning agents
  • Skipping agents "for brevity"
  • Proceeding before background tasks complete
  • Providing your own analysis instead of spawning specialists
  • Omitting report sections or using placeholder text

Step Execution Protocol

This skill uses a micro-file step architecture. Each step is a self-contained file loaded one at a time to avoid "lost in the middle" context degradation.

Execute steps sequentially by reading each step file with the Read tool.

Steps

  1. Flag Detection -- steps/01-flag-detection.md -- Scan source code and tests, detect all 6 flags
  2. Core Agents -- steps/02-core-agents.md -- Spawn qe-tdd-specialist, qe-code-complexity, qe-coverage-specialist in parallel
  3. Batch 1 Results -- steps/03-batch1-results.md -- Wait for core agents, extract all metrics
  4. Conditional Agents -- steps/04-conditional-agents.md -- Spawn flagged conditional agents in parallel
  5. Decision Synthesis -- steps/05-decision-synthesis.md -- Apply SHIP/CONDITIONAL/HOLD logic
  6. Report Generation -- steps/06-report-generation.md -- Generate executive summary and full report
  7. Learning Persistence -- steps/07-learning-persistence.md -- Store findings to memory, save persistence record
  8. Defect Predictor -- steps/08-defect-predictor.md -- Run qe-defect-predictor analysis on all code changes
  9. Final Output -- steps/09-final-output.md -- Display completion summary with all scores

Execution Instructions

  1. Use the Read tool to load the current step file (e.g., Read({ file_path: ".claude/skills/qcsd-development-swarm/steps/01-flag-detection.md" }))
  2. Execute the step's instructions completely
  3. Verify all success criteria are met before proceeding
  4. Pass the step's output as context to the next step
  5. If a step fails, halt and report the failure point -- do not skip ahead

Resume Support

To resume from a specific step: specify --from-step N and the orchestrator will skip to step N. Ensure you have the required prerequisite data from prior steps.


Agent Inventory

Agent Type Domain Batch
qe-tdd-specialist Core (always) test-generation 1
qe-code-complexity Core (always) code-intelligence 1
qe-coverage-specialist Core (always) coverage-analysis 1
qe-security-scanner Conditional (HAS_SECURITY_CODE) security-compliance 2
qe-performance-tester Conditional (HAS_PERFORMANCE_CODE) chaos-resilience 2
qe-mutation-tester Conditional (HAS_CRITICAL_CODE) test-generation 2
qe-message-broker-tester Conditional (HAS_MIDDLEWARE) enterprise-integration 2
qe-sap-idoc-tester Conditional (HAS_SAP_INTEGRATION) enterprise-integration 2
qe-sod-analyzer Conditional (HAS_AUTHORIZATION) enterprise-integration 2
qe-defect-predictor Analysis (always) defect-intelligence 3

Total: 10 agents (3 core + 6 conditional + 1 analysis)


Quality Gate Thresholds

Metric SHIP CONDITIONAL HOLD
TDD Adherence >= 80% 60 - 79% < 60%
Code Complexity Avg <= 10 Avg 11-15 Avg > 15
Test Coverage >= 80% 60 - 79% < 60%
Mutation Score >= 70% 50 - 69% < 50%
Security Issues No HIGH/CRITICAL MEDIUM only HIGH/CRITICAL found

Report Filename Mapping

Agent Report Filename Step
qe-tdd-specialist 02-tdd-analysis.md 2
qe-code-complexity 03-complexity-analysis.md 2
qe-coverage-specialist 04-coverage-analysis.md 2
qe-security-scanner 05-security-scan.md 4
qe-performance-tester 06-performance-analysis.md 4
qe-mutation-tester 07-mutation-testing.md 4
qe-message-broker-tester 08-middleware-health.md 4
qe-sap-idoc-tester 09-sap-integration.md 4
qe-sod-analyzer 10-sod-compliance.md 4
Learning Persistence 11-learning-persistence.json 7
qe-defect-predictor 12-defect-prediction.md 8
Synthesis 01-executive-summary.md 6

Execution Model Options

Model When to Use Agent Spawn
Task Tool (PRIMARY) Claude Code sessions Task({ subagent_type, run_in_background: true })
MCP Tools MCP server available fleet_init({}) / task_submit({})
CLI Terminal/scripts swarm init / agent spawn

Key Principle

Code quality is measured by evidence, not intentions. This swarm provides in-sprint quality assessment to ensure code meets engineering standards before entering the CI/CD pipeline.

Weekly Installs
38
GitHub Stars
254
First Seen
Feb 11, 2026
Installed on
opencode38
github-copilot38
codex38
gemini-cli38
cursor38
kimi-cli37