azure-ai-formrecognizer-java
Build document analysis applications using the Azure AI Document Intelligence SDK for Java.
azure-ai-ml-py
Azure Machine Learning SDK v2 for Python. Use for ML workspaces, jobs, models, datasets, compute, and pipelines.
azure-ai-openai-dotnet
Azure OpenAI SDK for .NET. Client library for Azure OpenAI and OpenAI services. Use for chat completions, embeddings, image generation, audio transcription, and assistants.
azure-ai-projects-dotnet
Azure AI Projects SDK for .NET. High-level client for Azure AI Foundry projects including agents, connections, datasets, deployments, evaluations, and indexes.
azure-ai-projects-java
Azure AI Projects SDK for Java. High-level SDK for Azure AI Foundry project management including connections, datasets, indexes, and evaluations.
azure-ai-projects-py
Build AI applications on Microsoft Foundry using the azure-ai-projects SDK.
azure-ai-projects-ts
High-level SDK for Azure AI Foundry projects with agents, connections, deployments, and evaluations.
azure-ai-search-python
Clean code patterns for Azure AI Search Python SDK (azure-search-documents). Use when building search applications, creating/managing indexes, implementing agentic retrieval with knowledge bases, or working with vector/hybrid search. Covers SearchClient, SearchIndexClient, SearchIndexerClient, and KnowledgeBaseRetrievalClient.
azure-ai-textanalytics-py
Azure AI Text Analytics SDK for sentiment analysis, entity recognition, key phrases, language detection, PII, and healthcare NLP. Use for natural language processing on text.
azure-ai-transcription-py
Azure AI Transcription SDK for Python. Use for real-time and batch speech-to-text transcription with timestamps and diarization.
compound
Capture learnings (problems, decisions, gotchas) from sessions to make future agents more effective
apex:debug
Systematic debugging with pattern learning. Applies hypothesis-driven investigation, evidence collection, and reflection to update pattern confidence.
execute
Orchestrator that runs the full APEX workflow (research → plan → implement → ship) in a single session. Use for tasks you want to complete without context switches.
implement
Build and validate loop (BUILDER + validation) - implements the architecture, runs tests, iterates until passing. Writes code following the plan.
plan
Architecture phase (ARCHITECT) - transforms research into rigorous technical architecture through 5 mandatory design artifacts. Interactive and iterative.
research
Intelligence gathering phase - spawns parallel agents to analyze codebase, patterns, git history, and web research. Creates or updates task file with findings.
review-plan
Use when a task already has research and plan sections and the plan needs adversarial review before implementation
ship
Review and finalize (REVIEWER + DOCUMENTER phases) - runs adversarial code review, commits changes, completes task, and records reflection to capture pattern outcomes.
my-skill
A brief description of what this skill does
adding-tauri-system-tray
Guides the user through implementing Tauri system tray functionality, including tray icon setup, tray menu creation, handling tray events, and updating the tray at runtime in the notification area.
distributing-tauri-for-android
Guides the user through distributing Tauri applications for Android, including Google Play Store submission, APK and AAB generation, build configuration, signing setup, and version management.
managing-tauri-app-resources
Assists with managing Tauri application resources including app icons setup and generation, embedding static files and assets, accessing bundled resources at runtime, and implementing thread-safe state management patterns.
understanding-tauri-architecture
Teaches Claude about Tauri's core architecture, including the Rust backend, webview integration, Core-Shell design pattern, IPC mechanisms, and security model fundamentals.
optimizing-tauri-binary-size
Guides users through Tauri binary size optimization techniques to produce small, efficient desktop application bundles using Cargo profile settings and build configurations.
calling-frontend-from-tauri-rust
Guides developers through Tauri v2 event system for calling frontend from Rust, covering emit functions, event payloads, IPC channels, and JavaScript evaluation for bi-directional Rust-frontend communication.
calling-rust-from-tauri-frontend
Guides the user through calling Rust backend functions from the Tauri frontend using the invoke function, defining commands with the #[tauri::command] attribute, passing arguments, returning values, handling errors, and implementing async IPC communication.
configuring-tauri-capabilities
Guides users through configuring Tauri capabilities for security and access control, covering capability files, permissions, per-window security boundaries, and platform-specific configurations.
signing-tauri-apps
Guides the user through Tauri application code signing and notarization for Android, iOS, Linux, macOS, and Windows platforms including certificate setup and configuration.
configuring-tauri-apps
Guides developers through Tauri v2 configuration including tauri.conf.json structure, Cargo.toml settings, environment-specific configs, and common configuration options for desktop and mobile applications.
using-crabnebula-cloud-with-tauri
Guides the user through distributing Tauri applications via CrabNebula Cloud, including pipeline setup, cloud configuration, auto-updates integration, and CI/CD workflows for seamless app distribution.
configuring-tauri-csp
Guides users through configuring Content Security Policy (CSP) in Tauri v2 applications to prevent XSS attacks and enhance security by restricting resource loading.
debugging-tauri-apps
Helps users debug Tauri v2 applications across VS Code, RustRover, IntelliJ, and Neovim. Covers console debugging, WebView DevTools, Rust backtrace, CrabNebula DevTools integration, and IDE-specific launch configurations.
understanding-tauri-ecosystem-security
Guides developers through Tauri ecosystem security practices including security auditing, dependency management, vulnerability reporting, and organizational security measures for building secure desktop applications.
listening-to-tauri-events
Teaches how to subscribe to and listen for Tauri events in the frontend using the events API, including typed event handlers and cleanup patterns.
integrating-tauri-js-frontends
Guides Claude through configuring JavaScript frontend frameworks for Tauri v2 desktop applications, including Next.js, Nuxt, Qwik, SvelteKit, and Vite with proper SSG setup, tauri.conf.json settings, and framework-specific configurations.
integrating-tauri-rust-frontends
Guides the user through integrating Rust-based WASM frontend frameworks with Tauri v2, covering Leptos and Trunk setup, WASM compilation configuration, Cargo.toml dependencies, Trunk.toml bundler settings, and withGlobalTauri API access.
configuring-tauri-http-headers
Guides developers through configuring HTTP headers security in Tauri v2 applications, covering security headers, custom headers, and CORS configuration for secure cross-origin resource handling.
distributing-tauri-for-ios
Guides users through distributing Tauri applications to the iOS App Store, including Apple Developer enrollment, Xcode configuration, provisioning profiles, code signing, TestFlight beta testing, and App Store submission processes.
understanding-tauri-ipc
Teaches the assistant about Tauri IPC (Inter-Process Communication) patterns including brownfield and isolation approaches for secure message passing between frontend and Rust backend.
understanding-tauri-lifecycle-security
Assists developers with understanding Tauri application lifecycle security threats spanning development, build, distribution, and runtime phases, including threat mitigation strategies and security best practices.
packaging-tauri-for-linux
Guides users through packaging Tauri v2 applications for Linux distributions including AppImage, Debian (.deb), RPM, Flatpak, Snap, and AUR submission.
distributing-tauri-for-macos
Guides users through distributing Tauri applications on macOS, including creating DMG installers, configuring app bundles, setting up entitlements, and customizing Info.plist files for proper macOS distribution.
migrating-tauri-apps
Assists users with migrating Tauri applications from v1 to v2 stable, and from v2 beta to v2 stable, covering breaking changes, configuration updates, API migrations, and plugin system changes.
running-nodejs-sidecar-in-tauri
Guides users through running Node.js as a sidecar process in Tauri applications, enabling JavaScript backend functionality without requiring end-user Node.js installations.
configuring-tauri-permissions
Guides the user through configuring Tauri permissions, including the security permission system, allow and deny lists, plugin permissions, permission identifiers, scopes, and capability integration.
building-tauri-with-github-actions
Guides users through setting up Tauri GitHub Actions CI/CD pipelines and workflows for automated building, testing, and releasing cross-platform desktop applications.
managing-tauri-plugin-permissions
Guides users through configuring Tauri plugin permissions, capabilities, and security. Covers platform-specific capabilities, window-targeted permissions, using official and community plugin permissions, and writing custom plugin permissions with scopes.
developing-tauri-plugins
Guides the user through Tauri plugin development, including creating plugin extensions, configuring permissions, and building mobile plugins for iOS and Android platforms.
understanding-tauri-process-model
Explains the Tauri process model architecture including the Core process, WebView process, inter-process communication, multiwindow handling, and process isolation security patterns.
setting-up-tauri-projects
Helps users create and initialize new Tauri v2 projects for building cross-platform desktop and mobile applications. Covers system prerequisites and setup requirements for macOS, Windows, and Linux. Guides through project creation using create-tauri-app or manual Tauri CLI initialization. Explains project directory structure and configuration files. Supports vanilla JavaScript, TypeScript, React, Vue, Svelte, Angular, SolidJS, and Rust-based frontends.
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