- Added WarBattleMetrics interface to track attacker and defender skills during battles.
- Enhanced WarUnit class with method to log activated skills.
- Introduced environment setup for battle simulation, including unit set loading and configuration resolution.
- Developed in-memory and Redis transport layers for handling battle simulation requests and results.
- Created types and interfaces for battle simulation payloads and responses.
- Implemented battle simulation processing logic, including logging and skill tracking.
- Added tests for battle simulation processor to ensure functionality and correctness.
- Added types for war engine configuration, battle input, and outcomes.
- Implemented core war unit classes for generals and cities, including combat logic.
- Introduced utility functions for managing meta data and conflict resolution.
- Developed tests for war triggers and battle resolution scenarios.
- Added `atmos` property to the `General` interface in `entities.ts`.
- Initialized `atmos` to 0 in the `buildGeneralSeeds` function in `bootstrap.ts`.
- Updated exports in `index.ts` to include `unitSet.js`.
- Introduced new types for crew types and their requirements in `types.ts`.
- Implemented `unitSetLoader.ts` for loading unit set definitions from JSON files.
- Created `che_징병.ts` action for recruiting crew types with cost and training calculations.
- Developed `unitSet.ts` for handling crew type availability and requirements.
- Added tests for crew type availability and unit set parsing in `crewType.test.ts`.
- Created a new unit set for "siegetank" with various crew types and their attributes.
- Implemented a messaging system with types, payloads, and storage functionality.
- Added tests for the messaging system to ensure correct behavior for different message types (private, national, public, diplomacy).
- Introduced GeneralTurn and NationTurn models in Prisma schema.
- Implemented reserved turns management in the game API, including loading, setting, and shifting turns for generals and nations.
- Created unit tests for reserved turns functionality to ensure correctness.
- Developed reserved turn handler to process actions based on reserved turns.
- Established in-memory storage for reserved turns with persistence to the database.
- Added Kakao OAuth client implementation for handling authentication flows.
- Updated user repository to support OAuth-based user creation and retrieval.
- Introduced Redis-based session management for OAuth sessions.
- Enhanced in-memory user repository to handle OAuth user data.
- Updated environment configuration files to include new OAuth settings.
- Modified API routes to support Kakao login and registration flows.
- Added Prisma schema updates for user model to accommodate OAuth fields.
- Implemented tests for the new authentication flow and user repository methods.
- Added GameApiConfig interface and configuration resolver from environment variables.
- Created GameApiContext for managing database and transport dependencies.
- Implemented InMemoryTurnDaemonTransport for testing purposes.
- Developed RedisTurnDaemonTransport for command and status handling via Redis streams.
- Defined TurnDaemonStreamKeys for namespacing Redis streams by profile.
- Established TRPC router with endpoints for health check, world state retrieval, and turn daemon commands (run, pause, resume, status).
- Integrated Fastify server with TRPC and Redis transport.
- Added unit tests for router functionality and stream key generation.
- Configured Vitest for testing environment.
- Implemented the 화계 action in the general turn actions, allowing generals to perform sabotage on enemy cities.
- Created CommandResolver and ActionResolver classes to handle the logic and resolution of the action.
- Added necessary constraints to ensure valid conditions for executing the action, including checks for city occupation and resource requirements.
- Updated the general action index to include the new 화계 action.
- Introduced evaluation functions for constraints to manage action prerequisites effectively.
- Enhanced logging for successful and failed attempts of the 화계 action, providing detailed feedback on outcomes.
- Introduced a new JSON file `map_pokemon_v1.json` containing detailed city data for the Pokémon map, including attributes like population, agriculture, commerce, and connections.
- Implemented a map loader in `mapLoader.ts` to read and parse map definitions from JSON files, allowing for dynamic loading of map data.
- Created a script `generate-map-data.mjs` to convert legacy PHP map data into the new JSON format, ensuring compatibility with the updated map system.
- Updated check-connections.mts to use Prisma with PostgreSQL adapter.
- Introduced databaseUrl.ts for resolving database URLs from environment variables.
- Added legacyMapLoader.ts to load and parse legacy map data.
- Implemented scenarioSeeder.ts to seed scenario data into the database.
- Created tests for scenario seeding in scenarioSeeder.test.ts.
- Configured Prisma datasource in prisma.config.ts to support dynamic database URLs.