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Kotlin MCP Server Generator

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Quickly generate a Kotlin MCP server project.

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Free · Opens the source repo

What Kotlin MCP Server Generator does

The Kotlin MCP Server Generator is a tool designed for developers looking to create a fully functional Model Context Protocol (MCP) server project in Kotlin. This skill automates the setup process, providing a structured Gradle-based project layout that adheres to Kotlin conventions. By leveraging the official io.modelcontextprotocol:kotlin-sdk library, it ensures that your server is equipped with the necessary dependencies and configurations to get started quickly.

Upon generation, the project includes essential components such as a main server file, configuration handling, and tool registration. The provided templates cover everything from the build configuration to the server implementation, making it easy to customize and extend. The skill also emphasizes best practices by incorporating error handling, validation, and a basic testing structure using Kotlin coroutines, which is crucial for maintaining code quality in production environments.

This skill is particularly useful for backend developers or teams working on applications that require a robust server architecture. It streamlines the initial setup process, allowing developers to focus on implementing business logic instead of boilerplate code. With clear documentation and a straightforward project structure, it serves as an excellent starting point for anyone looking to build an MCP server in Kotlin.

In summary, the Kotlin MCP Server Generator simplifies the creation of Kotlin-based MCP servers by providing a comprehensive template that includes project structure, dependencies, and essential components, enabling developers to quickly launch their projects with confidence.

When to use it

Use this skill when you need to quickly generate a boilerplate for a Kotlin MCP server project.

When not to use it

This skill is not suitable for projects that require extensive custom server logic or non-MCP architectures.

What you can build with it

Quick Server Setup

Generate a boilerplate Kotlin MCP server project to kickstart development without manual setup.

Learning Kotlin MCP

Use the generated project as a learning tool to understand the structure and components of an MCP server.

Prototype Development

Rapidly prototype server functionalities with a ready-to-use project structure and dependencies.

How to install Kotlin MCP Server Generator

View source

1. Install with the skills CLI

npx skills add github/awesome-copilot/kotlin-mcp-server-generator --agent claude-code

2. Or install it manually

Download the skill folder and drop it into ~/.claude/skills/ for all projects, or .claude/skills/ to scope it to one repo. Restart Claude Code so it picks up the new skill.

Anthropic's agentic coding CLI, and the reference implementation of Agent Skills. Drop a skill folder into ~/.claude/skills and Claude Code loads it automatically whenever a task matches the skill's description. Claude Code docs

Inside SKILL.md

Written by github

Kotlin MCP Server Project Generator

Generate a complete, production-ready Model Context Protocol (MCP) server project in Kotlin.

Project Requirements

You will create a Kotlin MCP server with:

  1. Project Structure: Gradle-based Kotlin project layout
  2. Dependencies: Official MCP SDK, Ktor, and kotlinx libraries
  3. Server Setup: Configured MCP server with transports
  4. Tools: At least 2-3 useful tools with typed inputs/outputs
  5. Error Handling: Proper exception handling and validation
  6. Documentation: README with setup and usage instructions
  7. Testing: Basic test structure with coroutines

Template Structure

myserver/
├── build.gradle.kts
├── settings.gradle.kts
├── gradle.properties
├── src/
│   ├── main/
│   │   └── kotlin/
│   │       └── com/example/myserver/
│   │           ├── Main.kt
│   │           ├── Server.kt
│   │           ├── config/
│   │           │   └── Config.kt
│   │           └── tools/
│   │               ├── Tool1.kt
│   │               └── Tool2.kt
│   └── test/
│       └── kotlin/
│           └── com/example/myserver/
│               └── ServerTest.kt
└── README.md

build.gradle.kts Template

plugins {
    kotlin("jvm") version "2.1.0"
    kotlin("plugin.serialization") version "2.1.0"
    application
}

group = "com.example"
version = "1.0.0"

repositories {
    mavenCentral()
}

dependencies {
    implementation("io.modelcontextprotocol:kotlin-sdk:0.7.2")
    
    // Ktor for transports
    implementation("io.ktor:ktor-server-netty:3.0.0")
    implementation("io.ktor:ktor-client-cio:3.0.0")
    
    // Serialization
    implementation("org.jetbrains.kotlinx:kotlinx-serialization-json:1.7.3")
    
    // Coroutines
    implementation("org.jetbrains.kotlinx:kotlinx-coroutines-core:1.9.0")
    
    // Logging
    implementation("io.github.oshai:kotlin-logging-jvm:7.0.0")
    implementation("ch.qos.logback:logback-classic:1.5.12")
    
    // Testing
    testImplementation(kotlin("test"))
    testImplementation("org.jetbrains.kotlinx:kotlinx-coroutines-test:1.9.0")
}

application {
    mainClass.set("com.example.myserver.MainKt")
}

tasks.test {
    useJUnitPlatform()
}

kotlin {
    jvmToolchain(17)
}

settings.gradle.kts Template

rootProject.name = "{{PROJECT_NAME}}"

Main.kt Template

package com.example.myserver

import io.modelcontextprotocol.kotlin.sdk.server.StdioServerTransport
import kotlinx.coroutines.runBlocking
import io.github.oshai.kotlinlogging.KotlinLogging

private val logger = KotlinLogging.logger {}

fun main() = runBlocking {
    logger.info { "Starting MCP server..." }
    
    val config = loadConfig()
    val server = createServer(config)
    
    // Use stdio transport
    val transport = StdioServerTransport()
    
    logger.info { "Server '${config.name}' v${config.version} ready" }
    server.connect(transport)
}

Server.kt Template

package com.example.myserver

import io.modelcontextprotocol.kotlin.sdk.server.Server
import io.modelcontextprotocol.kotlin.sdk.server.ServerOptions
import io.modelcontextprotocol.kotlin.sdk.Implementation
import io.modelcontextprotocol.kotlin.sdk.ServerCapabilities
import com.example.myserver.tools.registerTools

fun createServer(config: Config): Server {
    val server = Server(
        serverInfo = Implementation(
            name = config.name,
            version = config.version
        ),
        options = ServerOptions(
            capabilities = ServerCapabilities(
                tools = ServerCapabilities.Tools(),
                resources = ServerCapabilities.Resources(
                    subscribe = true,
                    listChanged = true
                ),
                prompts = ServerCapabilities.Prompts(listChanged = true)
            )
        )
    ) {
        config.description
    }
    
    // Register all tools
    server.registerTools()
    
    return server
}

Config.kt Template

package com.example.myserver.config

import kotlinx.serialization.Serializable

@Serializable
data class Config(
    val name: String = "{{PROJECT_NAME}}",
    val version: String = "1.0.0",
    val description: String = "{{PROJECT_DESCRIPTION}}"
)

fun loadConfig(): Config {
    return Config(
        name = System.getenv("SERVER_NAME") ?: "{{PROJECT_NAME}}",
        version = System.getenv("VERSION") ?: "1.0.0",
        description = System.getenv("DESCRIPTION") ?: "{{PROJECT_DESCRIPTION}}"
    )
}

Tool1.kt Template

package com.example.myserver.tools

import io.modelcontextprotocol.kotlin.sdk.server.Server
import io.modelcontextprotocol.kotlin.sdk.CallToolRequest
import io.modelcontextprotocol.kotlin.sdk.CallToolResult
import io.modelcontextprotocol.kotlin.sdk.TextContent
import kotlinx.serialization.json.buildJsonObject
import kotlinx.serialization.json.put
import kotlinx.serialization.json.putJsonObject
import kotlinx.serialization.json.putJsonArray

fun Server.registerTool1() {
    addTool(
        name = "tool1",
        description = "Description of what tool1 does",
        inputSchema = buildJsonObject {
            put("type", "object")
            putJsonObject("properties") {
                putJsonObject("param1") {
                    put("type", "string")
                    put("description", "First parameter")
                }
                putJsonObject("param2") {
                    put("type", "integer")
                    put("description", "Optional second parameter")
                }
            }
            putJsonArray("required") {
                add("param1")
            }
        }
    ) { request: CallToolRequest ->
        // Extract and validate parameters
        val param1 = request.params.arguments["param1"] as? String
            ?: throw IllegalArgumentException("param1 is required")
        val param2 = (request.params.arguments["param2"] as? Number)?.toInt() ?: 0
        
        // Perform tool logic
        val result = performTool1Logic(param1, param2)
        
        CallToolResult(
            content = listOf(
                TextContent(text = result)
            )
        )
    }
}

private fun performTool1Logic(param1: String, param2: Int): String {
    // Implement tool logic here
    return "Processed: $param1 with value $param2"
}

tools/ToolRegistry.kt Template

package com.example.myserver.tools

import io.modelcontextprotocol.kotlin.sdk.server.Server

fun Server.registerTools() {
    registerTool1()
    registerTool2()
    // Register additional tools here
}

ServerTest.kt Template

package com.example.myserver

import kotlinx.coroutines.test.runTest
import kotlin.test.Test
import kotlin.test.assertEquals
import kotlin.test.assertFalse

class ServerTest {
    
    @Test
    fun `test server creation`() = runTest {
        val config = Config(
            name = "test-server",
            version = "1.0.0",
            description = "Test server"
        )
        
        val server = createServer(config)
        
        assertEquals("test-server", server.serverInfo.name)
        assertEquals("1.0.0", server.serverInfo.version)
    }
    
    @Test
    fun `test tool1 execution`() = runTest {
        val config = Config()
        val server = createServer(config)
        
        // Test tool execution
        // Note: You'll need to implement proper testing utilities
        // for calling tools in the server
    }
}

README.md Template

# {{PROJECT_NAME}}

A Model Context Protocol (MCP) server built with Kotlin.

## Description

{{PROJECT_DESCRIPTION}}

## Requirements

- Java 17 or higher
- Kotlin 2.1.0

## Installation

Build the project:

\`\`\`bash
./gradlew build
\`\`\`

## Usage

Run the server with stdio transport:

\`\`\`bash
./gradlew run
\`\`\`

Or build and run the jar:

\`\`\`bash
./gradlew installDist
./build/install/{{PROJECT_NAME}}/bin/{{PROJECT_NAME}}
\`\`\`

## Configuration

Configure via environment variables:

- `SERVER_NAME`: Server name (default: "{{PROJECT_NAME}}")
- `VERSION`: Server version (default: "1.0.0")
- `DESCRIPTION`: Server description

## Available Tools

### tool1
{{TOOL1_DESCRIPTION}}

**Input:**
- `param1` (string, required): First parameter
- `param2` (integer, optional): Second parameter

**Output:**
- Text result of the operation

## Development

Run tests:

\`\`\`bash
./gradlew test
\`\`\`

Build:

\`\`\`bash
./gradlew build
\`\`\`

Run with auto-reload (development):

\`\`\`bash
./gradlew run --continuous
\`\`\`

## Multiplatform

This project uses Kotlin Multiplatform and can target JVM, Wasm, and iOS.
See `build.gradle.kts` for platform configuration.

## License

MIT

Generation Instructions

When generating a Kotlin MCP server:

  1. Gradle Setup: Create proper build.gradle.kts with all dependencies
  2. Package Structure: Follow Kotlin package conventions
  3. Type Safety: Use data classes and kotlinx.serialization
  4. Coroutines: All operations should be suspending functions
  5. Error Handling: Use Kotlin exceptions and validation
  6. JSON Schemas: Use buildJsonObject for tool schemas
  7. Testing: Include coroutine test utilities
  8. Logging: Use kotlin-logging for structured logging
  9. Configuration: Use data classes and environment variables
  10. Documentation: KDoc comments for public APIs

Best Practices

  • Use suspending functions for all async operations
  • Leverage Kotlin's null safety and type system
  • Use data classes for structured data
  • Apply kotlinx.serialization for JSON handling
  • Use sealed classes for result types
  • Implement proper error handling with Result/Either patterns
  • Write tests using kotlinx-coroutines-test
  • Use dependency injection for testability
  • Follow Kotlin coding conventions
  • Use meaningful names and KDoc comments

Transport Options

Stdio Transport

val transport = StdioServerTransport()
server.connect(transport)

SSE Transport (Ktor)

embeddedServer(Netty, port = 8080) {
    mcp {
        Server(/*...*/) { "Description" }
    }
}.start(wait = true)

Multiplatform Configuration

For multiplatform projects, add to build.gradle.kts:

kotlin {
    jvm()
    js(IR) { nodejs() }
    wasmJs()
    
    sourceSets {
        commonMain.dependencies {
            implementation("io.modelcontextprotocol:kotlin-sdk:0.7.2")
        }
    }
}

Frequently asked questions about Kotlin MCP Server Generator

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