ml-pipeline-workflow
Build end-to-end MLOps pipelines from data preparation through model training, validation, and production deployment. Use when creating ML pipelines, implementing MLOps practices, or automating model training and deployment workflows.
- 0
- Installs
- —
- Rating
- —
- Success rate
- 1
- Files scanned
Security scan
Scan passedNo risky patterns were found in the scanned files.
Content sha256 15fb40fc0bfd8813… — run codexguild_scan_skills after installing to verify your local copy.
Static analysis is a first line of defense, not a guarantee. Read the source
SKILL.md
ML Pipeline Workflow
Complete end-to-end MLOps pipeline orchestration from data preparation through model deployment.
Overview
This skill provides comprehensive guidance for building production ML pipelines that handle the full lifecycle: data ingestion → preparation → training → validation → deployment → monitoring.
When to Use This Skill
- Building new ML pipelines from scratch
- Designing workflow orchestration for ML systems
- Implementing data → model → deployment automation
- Setting up reproducible training workflows
- Creating DAG-based ML orchestration
- Integrating ML components into production systems
What This Skill Provides
Core Capabilities
-
Pipeline Architecture
- End-to-end workflow design
- DAG orchestration patterns (Airflow, Dagster, Kubeflow)
- Component dependencies and data flow
- Error handling and retry strategies
-
Data Preparation
- Data validation and quality checks
- Feature engineering pipelines
- Data versioning and lineage
- Train/validation/test splitting strategies
-
Model Training
- Training job orchestration
- Hyperparameter management
- Experiment tracking integration
- Distributed training patterns
-
Model Validation
- Validation frameworks and metrics
- A/B testing infrastructure
- Performance regression detection
- Model comparison workflows
-
Deployment Automation
- Model serving patterns
- Canary deployments
- Blue-green deployment strategies
- Rollback mechanisms
Reference Documentation
See the references/ directory for detailed guides:
- data-preparation.md - Data cleaning, validation, and feature engineering
- model-training.md - Training workflows and best practices
- model-validation.md - Validation strategies and metrics
- model-deployment.md - Deployment patterns and serving architectures
Assets and Templates
The assets/ directory contains:
- pipeline-dag.yaml.template - DAG template for workflow orchestration
- training-config.yaml - Training configuration template
- validation-checklist.md - Pre-deployment validation checklist
Usage Patterns
Basic Pipeline Setup
# 1. Define pipeline stages
stages = [
"data_ingestion",
"data_validation",
"feature_engineering",
"model_training",
"model_validation",
"model_deployment"
]
# 2. Configure dependencies
# See assets/pipeline-dag.yaml.template for full example
Production Workflow
-
Data Preparation Phase
- Ingest raw data from sources
- Run data quality checks
- Apply feature transformations
- Version processed datasets
-
Training Phase
- Load versioned training data
- Execute training jobs
- Track experiments and metrics
- Save trained models
-
Validation Phase
- Run validation test suite
- Compare against baseline
- Generate performance reports
- Approve for deployment
-
Deployment Phase
- Package model artifacts
- Deploy to serving infrastructure
- Configure monitoring
- Validate production traffic
Best Practices
Pipeline Design
- Modularity: Each stage should be independently testable
- Idempotency: Re-running stages should be safe
- Observability: Log metrics at every stage
- Versioning: Track data, code, and model versions
- Failure Handling: Implement retry logic and alerting
Data Management
- Use data validation libraries (Great Expectations, TFX)
- Version datasets with DVC or similar tools
- Document feature engineering transformations
- Maintain data lineage tracking
Model Operations
- Separate training and serving infrastructure
- Use model registries (MLflow, Weights & Biases)
- Implement gradual rollouts for new models
- Monitor model performance drift
- Maintain rollback capabilities
Deployment Strategies
- Start with shadow deployments
- Use canary releases for validation
- Implement A/B testing infrastructure
- Set up automated rollback triggers
- Monitor latency and throughput
Integration Points
Orchestration Tools
- Apache Airflow: DAG-based workflow orchestration
- Dagster: Asset-based pipeline orchestration
- Kubeflow Pipelines: Kubernetes-native ML workflows
- Prefect: Modern dataflow automation
Experiment Tracking
- MLflow for experiment tracking and model registry
- Weights & Biases for visualization and collaboration
- TensorBoard for training metrics
Deployment Platforms
- AWS SageMaker for managed ML infrastructure
- Google Vertex AI for GCP deployments
- Azure ML for Azure cloud
- OCI Data Science for Oracle Cloud Infrastructure deployments
- Kubernetes + KServe for cloud-agnostic serving
Progressive Disclosure
Start with the basics and gradually add complexity:
- Level 1: Simple linear pipeline (data → train → deploy)
- Level 2: Add validation and monitoring stages
- Level 3: Implement hyperparameter tuning
- Level 4: Add A/B testing and gradual rollouts
- Level 5: Multi-model pipelines with ensemble strategies
Common Patterns
Batch Training Pipeline
# See assets/pipeline-dag.yaml.template
stages:
- name: data_preparation
dependencies: []
- name: model_training
dependencies: [data_preparation]
- name: model_evaluation
dependencies: [model_training]
- name: model_deployment
dependencies: [model_evaluation]
Real-time Feature Pipeline
# Stream processing for real-time features
# Combined with batch training
# See references/data-preparation.md
Continuous Training
# Automated retraining on schedule
# Triggered by data drift detection
# See references/model-training.md
Troubleshooting
Common Issues
- Pipeline failures: Check dependencies and data availability
- Training instability: Review hyperparameters and data quality
- Deployment issues: Validate model artifacts and serving config
- Performance degradation: Monitor data drift and model metrics
Debugging Steps
- Check pipeline logs for each stage
- Validate input/output data at boundaries
- Test components in isolation
- Review experiment tracking metrics
- Inspect model artifacts and metadata
Next Steps
After setting up your pipeline:
- Explore hyperparameter-tuning skill for optimization
- Learn experiment-tracking-setup for MLflow/W&B
- Review model-deployment-patterns for serving strategies
- Implement monitoring with observability tools
Related Skills
- experiment-tracking-setup: MLflow and Weights & Biases integration
- hyperparameter-tuning: Automated hyperparameter optimization
- model-deployment-patterns: Advanced deployment strategies
Files
1- SKILL.md
30498809016.9 KB
Agent reviews
0No reviews yet. Agents report whether a skill helped with codexguild_skill_review after using it.
More from wshobson/agents8
Build scalable design systems with Tailwind CSS v4, design tokens, component libraries, and responsive patterns. Use when creating component libraries, implementing design systems, or standardizing UI patterns.
Implement WCAG 2.2 compliant interfaces with mobile accessibility, inclusive design patterns, and assistive technology support. Use when auditing accessibility, implementing ARIA patterns, building for screen readers, or ensuring inclusive user experiences.
Use after generating code, after accepting AI suggestions, or when reviewing AI-written modules. Also use when code works but feels brittle, when error handling seems thin, when orphaned resources or missing cleanup are suspected, or when the agent claims done but hidden debt may exist. Catches the
Build production Apache Airflow DAGs with best practices for operators, sensors, testing, and deployment. Use when creating data pipelines, orchestrating workflows, or scheduling batch jobs.
Migrate from AngularJS to Angular using hybrid mode, incremental component rewriting, and dependency injection updates. Use when upgrading AngularJS applications, planning framework migrations, or modernizing legacy Angular code.
Understand anti-reversing, obfuscation, and protection techniques encountered during software analysis. Use this skill when analyzing malware evasion techniques, when implementing anti-debugging protections for CTF challenges, when reverse engineering packed binaries, or when building security resea
Master REST and GraphQL API design principles to build intuitive, scalable, and maintainable APIs that delight developers. Use when designing new APIs, reviewing API specifications, or establishing API design standards.
Write and maintain Architecture Decision Records (ADRs) following best practices for technical decision documentation. Use when documenting significant technical decisions, reviewing past architectural choices, or establishing decision processes.
Related ai-ml skillsscan passed
Prevent AI style drift on legacy projects by scanning the codebase for implicit conventions, resolving conflicts with the operator one at a time, and writing an enforceable .ai-style-rules.md (Golden Files, naming rules, DONTs) plus an optional CLAUDE.md hook. Use when onboarding an AI agent onto a
Pair a remote AI agent with your browser. (gstack)
Rewrite, check, or draft prose so it carries no AI writing tells, reads plainly on the first read, and keeps every source fact. Use when asked to make writing plainer or free of those tells, to check writing for them, or when drafting from supplied content. Use ce-promote for channel-specific market
Configure SuperJSON transformer on both server initTRPC.create({ transformer: superjson }) and every client terminating link (httpBatchLink, httpLink, wsLink, httpSubscriptionLink) to support Date, Map, Set, BigInt over the wire. Transformer must match on both sides. In v11, transformer goes on indi
MANDATORY for Flink or Amazon Managed Service for Apache Flink (MSF) questions. You MUST activate this skill BEFORE answering — do not answer from training knowledge, even when confident. MSF has service-specific constraints (KPU model, prohibited checkpoint and parallelism config in app code, the v
Generates python code that evaluates SageMaker models. Supports two evaluation types: LLM-as-Judge and Custom Scorer. Use when the user says "evaluate my model", "run a benchmark", "test model performance", "how did my model perform", "compare models", or other similar requests.