autoscaling-and-right-sizing
See the main Infrastructure Sizing skill for comprehensive coverage of right-sizing and autoscaling strategies.
SKILL.md
| Name | autoscaling-and-right-sizing |
| Description | See the main Infrastructure Sizing skill for comprehensive coverage of right-sizing and autoscaling strategies. |
id: SKL-autoscaling-AUTOSCALINGANDRIGHTSIZING name: Autoscaling And Rightsizing description: This skill provides strategies for automatic scaling and optimal resource sizing. For comprehensive coverage of right-sizing principles, compute/database/cache sizing, and real-world scenarios, please version: 1.0.0 status: active owner: '@cerebra-team' last_updated: '2026-02-22' category: Backend tags:
- api
- backend
- server
- database stack:
- Python
- Node.js
- REST API
- GraphQL difficulty: Intermediate
Autoscaling And Rightsizing
Skill Profile
(Select at least one profile to enable specific modules)
- DevOps
- Backend
- Frontend
- AI-RAG
- Security Critical
Overview
This skill provides strategies for automatic scaling and optimal resource sizing. For comprehensive coverage of right-sizing principles, compute/database/cache sizing, and real-world scenarios, please refer to the main Infrastructure Sizing skill.
Core Principle: "Scale to demand, not to fear. Right-size continuously."
Why This Matters
- Cost Savings: Right-sizing reduces over-provisioning costs
- Performance: Proper sizing ensures adequate resources
- Scalability: Autoscaling handles demand fluctuations
- Efficiency: Optimal resource utilization
Core Concepts & Rules
1. Core Principles
- Follow established patterns and conventions
- Maintain consistency across codebase
- Document decisions and trade-offs
2. Implementation Guidelines
- Start with the simplest viable solution
- Iterate based on feedback and requirements
- Test thoroughly before deployment
Inputs / Outputs / Contracts
- Inputs:
- Current resource utilization metrics
- Workload patterns and demand
- Performance requirements
- Cost constraints
- Entry Conditions:
- Monitoring provides utilization data
- Autoscaling configured
- Right-sizing criteria defined
- Outputs:
- Autoscaling policies
- Right-sizing recommendations
- Cost savings projections
- Implementation plans
- Artifacts Required (Deliverables):
- Autoscaling configuration
- Right-sizing analysis
- Cost savings report
- Monitoring dashboards
- Acceptance Evidence:
- Autoscaling working as expected
- Resources right-sized appropriately
- Cost savings achieved
- Success Criteria:
- Autoscaling responds to demand changes
- Resource utilization in target range
- Cost savings > 20%
Skill Composition
- Depends on: Infrastructure Sizing
- Compatible with: Cloud Cost Models, Cost Observability
- Conflicts with: Static resource allocation
- Related Skills:
- 42-cost-engineering/infra-sizing - Main skill with comprehensive sizing coverage
- 42-cost-engineering/cloud-cost-models - Understanding cloud costs
- 42-cost-engineering/cost-observability - Monitoring costs
Quick Start / Implementation Example
- Review requirements and constraints
- Set up development environment
- Implement core functionality following patterns
- Write tests for critical paths
- Run tests and fix issues
- Document any deviations or decisions
# Example implementation following best practices
def example_function():
# Your implementation here
pass
Assumptions / Constraints / Non-goals
- Assumptions:
- Development environment is properly configured
- Required dependencies are available
- Team has basic understanding of domain
- Constraints:
- Must follow existing codebase conventions
- Time and resource limitations
- Compatibility requirements
- Non-goals:
- This skill does not cover edge cases outside scope
- Not a replacement for formal training
Compatibility & Prerequisites
- Supported Versions:
- Python 3.8+
- Node.js 16+
- Modern browsers (Chrome, Firefox, Safari, Edge)
- Required AI Tools:
- Code editor (VS Code recommended)
- Testing framework appropriate for language
- Version control (Git)
- Dependencies:
- Language-specific package manager
- Build tools
- Testing libraries
- Environment Setup:
.env.examplekeys:API_KEY,DATABASE_URL(no values)
Test Scenario Matrix (QA Strategy)
| Type | Focus Area | Required Scenarios / Mocks |
|---|---|---|
| Unit | Core Logic | Must cover primary logic and at least 3 edge/error cases. Target minimum 80% coverage |
| Integration | DB / API | All external API calls or database connections must be mocked during unit tests |
| E2E | User Journey | Critical user flows to test |
| Performance | Latency / Load | Benchmark requirements |
| Security | Vuln / Auth | SAST/DAST or dependency audit |
| Frontend | UX / A11y | Accessibility checklist (WCAG), Performance Budget (Lighthouse score) |
Technical Guardrails & Security Threat Model
1. Security & Privacy (Threat Model)
- Top Threats: Injection attacks, authentication bypass, data exposure
- Data Handling: Sanitize all user inputs to prevent Injection attacks. Never log raw PII
- Secrets Management: No hardcoded API keys. Use Env Vars/Secrets Manager
- Authorization: Validate user permissions before state changes
2. Performance & Resources
- Execution Efficiency: Consider time complexity for algorithms
- Memory Management: Use streams/pagination for large data
- Resource Cleanup: Close DB connections/file handlers in finally blocks
3. Architecture & Scalability
- Design Pattern: Follow SOLID principles, use Dependency Injection
- Modularity: Decouple logic from UI/Frameworks
4. Observability & Reliability
- Logging Standards: Structured JSON, include trace IDs
request_id - Metrics: Track
error_rate,latency,queue_depth - Error Handling: Standardized error codes, no bare except
- Observability Artifacts:
- Log Fields: timestamp, level, message, request_id
- Metrics: request_count, error_count, response_time
- Dashboards/Alerts: High Error Rate > 5%
Agent Directives & Error Recovery
(ข้อกำหนดสำหรับ AI Agent ในการคิดและแก้ปัญหาเมื่อเกิดข้อผิดพลาด)
- Thinking Process: Analyze root cause before fixing. Do not brute-force.
- Fallback Strategy: Stop after 3 failed test attempts. Output root cause and ask for human intervention/clarification.
- Self-Review: Check against Guardrails & Anti-patterns before finalizing.
- Output Constraints: Output ONLY the modified code block. Do not explain unless asked.
Definition of Done (DoD) Checklist
- Tests passed + coverage met
- Lint/Typecheck passed
- Logging/Metrics/Trace implemented
- Security checks passed
- Documentation/Changelog updated
- Accessibility/Performance requirements met (if frontend)
Anti-patterns / Pitfalls
- ⛔ Don't: Log PII, catch-all exception, N+1 queries
- ⚠️ Watch out for: Common symptoms and quick fixes
- 💡 Instead: Use proper error handling, pagination, and logging
Reference Links & Examples
- Internal documentation and examples
- Official documentation and best practices
- Community resources and discussions
Versioning & Changelog
- Version: 1.0.0
- Changelog:
- 2026-02-22: Initial version with complete template structure