بنقرة واحدة
octopus-architecture
System architecture and API design with multi-AI consensus
التثبيت باستخدام Codex أو Claude انسخ هذا Prompt والصقه في Codex أو Claude أو مساعد آخر ليراجع صفحة Skill ويثبّتها لك.
القائمة
System architecture and API design with multi-AI consensus
التثبيت باستخدام Codex أو Claude انسخ هذا Prompt والصقه في Codex أو Claude أو مساعد آخر ليراجع صفحة Skill ويثبّتها لك.
استنادا إلى تصنيف SOC المهني
Smoke-test fixture for the stdio MCP integration tests. Returns a constant body when called.
Multi-AI requirements scoping using Codex and Gemini CLIs (Double Diamond Define phase). Use when: AUTOMATICALLY ACTIVATE when user requests clarification or scoping:. "define the requirements for X". "clarify the scope of Y"
Multi-AI validation, scoring, and review using Codex and Gemini CLIs (Double Diamond Deliver phase). Use when: AUTOMATICALLY ACTIVATE when user requests validation, scoring, or review:. "review X" or "validate Y" or "test Z". "score this", "quality check", "validate before shipping"
Multi-AI implementation using Codex and Gemini CLIs (Double Diamond Develop phase). Use when: AUTOMATICALLY ACTIVATE when user requests building or implementation:. "build X" or "implement Y" or "create Z". "develop a feature for X"
Multi-AI research using Codex and Gemini CLIs (Double Diamond Discover phase). Use when: AUTOMATICALLY ACTIVATE when user requests research or exploration:. "research X" or "explore Y" or "investigate Z". "what are the options for X" or "what are my choices for Y"
NLSpec authoring — structured specification from multi-AI research
| name | octopus-architecture |
| version | 1.0.0 |
| description | System architecture and API design with multi-AI consensus |
This skill uses ENFORCED execution mode. You MUST follow this exact sequence.
MANDATORY: Run the centralized provider check BEFORE displaying the banner:
bash "${HOME}/.claude-octopus/plugin/scripts/helpers/check-providers.sh"
Use the ACTUAL results. PROHIBITED: Showing only "🔵 Claude: Available ✓" without listing all providers.
Display this banner BEFORE orchestrate.sh execution (list ALL providers from check output):
🐙 **CLAUDE OCTOPUS ACTIVATED** - Architecture design mode
🏗️ Architecture: [Brief description of system to design]
Provider Availability:
🔴 Codex CLI: [status from check] - Backend architecture patterns
🟡 Gemini CLI: [status from check] - Alternative approaches
🟢 Copilot CLI: [status from check] - GitHub integration
🟣 Qwen CLI: [status from check] - Additional perspective
🟤 OpenCode CLI: [status from check] - Multi-provider routing
🔵 Claude: Available ✓ - Synthesis and recommendations
💰 Estimated Cost: $0.02-0.08
⏱️ Estimated Time: 3-7 minutes
Validation:
/octo:setupDO NOT PROCEED TO STEP 2 until banner displayed.
You MUST execute this command via the Bash tool:
${HOME}/.claude-octopus/plugin/scripts/orchestrate.sh spawn backend-architect "<user's architecture request>"
CRITICAL: You are PROHIBITED from:
This is NOT optional. You MUST use the Bash tool to invoke orchestrate.sh.
After orchestrate.sh completes, verify it succeeded:
# Check for persona output (varies by persona type)
# For spawn commands, check exit code and output
if [ $? -ne 0 ]; then
echo "❌ VALIDATION FAILED: orchestrate.sh spawn failed"
exit 1
fi
echo "✅ VALIDATION PASSED: Architecture design completed"
If validation fails:
~/.claude-octopus/logs/Present the architecture design from the persona execution.
Include attribution:
---
*Multi-AI Architecture Design powered by Claude Octopus*
*Providers: 🔴 Codex | 🟡 Gemini | 🔵 Claude*
Invokes the backend-architect persona for system design during the grasp (define) and tangle (develop) phases.
# Via orchestrate.sh
${HOME}/.claude-octopus/plugin/scripts/orchestrate.sh spawn backend-architect "Design a scalable notification system"
# Via auto-routing (detects architecture intent)
${HOME}/.claude-octopus/plugin/scripts/orchestrate.sh auto "architect the event-driven messaging system"
This skill wraps the backend-architect persona defined in:
agents/personas/backend-architect.mdcodexgpt-5.3-codexgrasp, tangleapi-design, microservices, distributed-systems"Design the API contract for the user service"
"Plan the event sourcing architecture"
"Design the caching strategy for the product catalog"
"Create a microservices decomposition plan"
For enhanced structural awareness during architecture design, leverage Claude Code's LSP tools:
Before defining architecture, gather structural context:
lsp_document_symbols - Understand existing module structure
lsp_find_references - Identify current dependencies
lsp_workspace_symbols - Find related patterns across codebase
During design validation:
lsp_goto_definition - Verify interface contracts
lsp_hover - Check type signatures
lsp_diagnostics - Identify type/interface mismatches
// Step 1: Understand existing structure
const symbols = await lsp_document_symbols("src/services/user.ts")
const references = await lsp_find_references("UserService", line=5, char=10)
// Step 2: Identify patterns in codebase
const patterns = await lsp_workspace_symbols("Service")
// Step 3: Design new architecture informed by existing patterns
// ... architecture design ...
// Step 4: Validate design with diagnostics
const issues = await lsp_diagnostics("src/services/*.ts")
This ensures architecture recommendations align with existing codebase patterns and type contracts.