143-java-functional-exception-handling
Use when you need to apply functional exception handling best practices in Java — including replacing exception overuse with Optional and VAVR Either types, designing error type hierarchies using sealed classes and enums, implementing monadic error composition pipelines, establishing functional control flow patterns, and reserving exceptions only for truly exceptional system-level failures. This should trigger for requests such as Improve the code with Functional Exception Handling; Apply Functional Exception Handling; Refactor the code with Functional Exception Handling; Model Java errors with Result or Either types; Replace exception-heavy flows with functional error handling. Part of Plinth Toolkit
git clone --depth 1 https://github.com/jabrena/plinth /tmp/143-java-functional-exception-handling && cp -r /tmp/143-java-functional-exception-handling/skills/143-java-functional-exception-handling ~/.claude/skills/143-java-functional-exception-handlingSKILL.md
# Java Functional Exception handling Best Practices Identify and apply functional exception handling best practices in Java to improve error clarity, maintainability, and performance by eliminating exception overuse in favour of monadic error types. **What is covered in this Skill?** - `Optional<T>` for nullable values over throwing `NullPointerException` or `NotFoundException` - VAVR `Either<L,R>` for predictable business-logic failures - `CompletableFuture<T>` for async error handling - Sealed classes and records for rich error type hierarchies with exhaustive pattern matching - Enum-based error types for simple failure cases - Functional composition: `flatMap`/`map`/`peek`/`peekLeft` for chaining operations that can fail - Structured logging: warn/info for business failures, error for system failures - Checked vs unchecked exception discipline - Exception chaining with full causal context when exceptions are unavoidable **Scope:** The reference is organized by examples (good/bad code patterns) for each core area. Apply recommendations based on applicable examples. ## Constraints Before applying any functional exception handling changes, ensure the project validates. When introducing Either types, confirm the VAVR dependency (io.vavr:vavr) and SLF4J are present. - **MANDATORY**: Run `./mvnw validate` or `mvn validate` before applying any changes - **SAFETY**: If validation fails, stop immediately — do not proceed until the project is in a valid state - **DEPENDENCY**: When introducing `Either` types, confirm VAVR (`io.vavr:vavr`) and SLF4J are present - **VERIFY**: Run `./mvnw clean verify` or `mvn clean verify` after applying improvements - **BEFORE APPLYING**: Read the reference for detailed good/bad examples, constraints, and safeguards for each functional exception handling pattern ## When to use this skill - Improve the code with Functional Exception Handling - Apply Functional Exception Handling - Refactor the code with Functional Exception Handling - Model Java errors with Result or Either types - Replace exception-heavy flows with functional error handling ## Workflow 1. **Validate project before functional-exception changes** Run `./mvnw validate` or `mvn validate` and stop immediately if validation fails. 2. **Check required dependencies** When introducing `Either`, confirm VAVR (`io.vavr:vavr`) and SLF4J are present before implementation. 3. **Read functional-exception reference and identify targets** Read `references/143-java-functional-exception-handling.md` and identify places to replace exception-heavy control flow with monadic error types. 4. **Apply functional exception-handling refactorings** Implement selected `Optional`/`Either`/async error patterns with structured logging and clear error contracts. 5. **Verify with full build** Run `./mvnw clean verify` or `mvn clean verify` after applying improvements. ## Reference For detailed guidance, examples, and constraints, see [references/143-java-functional-exception-handling.md](references/143-java-functional-exception-handling.md).
Propose a new change with all artifacts generated in one step. Use when the user wants to quickly describe what they want to build and get a complete proposal with design, specs, and tasks ready for implementation.
Use when you need to generate a checklist document with embedded commands inventory, following the embedded template exactly and producing INVENTORY-COMMANDS-JAVA.md in the project root. This should trigger for requests such as Create embedded commands inventory checklist; Generate INVENTORY-COMMANDS-JAVA.md; Use @001-commands-inventory; Inventory embedded Java project commands; List command files bundled for Java agents. Part of Plinth Toolkit
Use when you need to generate a checklist document with embedded agents inventory, following the embedded template exactly and producing INVENTORY-AGENTS-JAVA.md in the project root. This should trigger for requests such as Create embedded agents inventory checklist; Generate INVENTORY-AGENTS-JAVA.md; Use @002-agents-inventory; Inventory embedded Java agent definitions; List generated agent roles for Java development. Part of Plinth Toolkit
Use when you need to generate a checklist document with Java system prompts from skills.xml, following the embedded section template and producing INVENTORY-SKILLS-JAVA.md. This should trigger for requests such as Create Java system prompts checklist; Generate INVENTORY-SKILLS-JAVA.md; Use @003-skills-inventory; Inventory Java cursor rule skills; List available Java system prompt skills. Part of Plinth Toolkit
Use when you need to install the embedded project commands into command directories (.github/commands, .claude/commands, .cursor/command, .codex/commands), selecting the destination interactively and copying the embedded command definitions from project assets. This should trigger for requests such as Install embedded commands; Bootstrap .cursor/command; Bootstrap .claude/commands; Copy project commands; Install project command suite. Part of Plinth Toolkit
Use when you need to install the embedded robot agents into .github/agents, .claude/agents, .cursor/agents, or .codex/agents, selecting the destination interactively and copying the embedded agent definitions from project assets. This should trigger for requests such as Install embedded agents; Bootstrap .github/agents; Bootstrap .cursor/agents; Bootstrap .claude/agents; Bootstrap .codex/agents; Copy robot agents. Part of Plinth Toolkit
Guides the creation of agile epics with comprehensive definition including business value, success criteria, and breakdown into user stories. Use when the user wants to create an agile epic, define large bodies of work, break down features into user stories, or document strategic initiatives. This should trigger for requests such as Create an agile epic; Write an epic; I need to create an epic; Define an epic; Epic definition. Part of Plinth Toolkit
Guides the creation of detailed agile feature documentation from an existing epic. Use when the user wants to split an epic into feature files, derive features with scope and acceptance criteria, or plan feature documentation for stakeholders or engineering. This should trigger for requests such as Create features from an epic; Split epic into features; Feature files from epic; Derive features from epic; Break down an agile epic into deliverable features. Part of Plinth Toolkit