package operator import ( "google.golang.org/protobuf/proto" altv1 "git.toki-labs.com/toki/alt/packages/contracts/gen/go/alt/v1" protoSocket "git.toki-labs.com/toki/proto-socket/go" ) // messageFactories lists every ALT protobuf message the CLI API client must // decode. It mirrors the API/worker parser maps (services/api/internal/contracts // and services/worker/internal/contracts) because Go's internal boundary keeps // apps/cli from importing those packages. Keeping a single factory list here, as // the runtime rails do, ensures a contract message cannot be registered through // one runner path and missed in another. func messageFactories() []func() proto.Message { return []func() proto.Message{ func() proto.Message { return &altv1.HelloRequest{} }, func() proto.Message { return &altv1.HelloResponse{} }, // market read surface: instruments and bars func() proto.Message { return &altv1.ListInstrumentsRequest{} }, func() proto.Message { return &altv1.ListInstrumentsResponse{} }, func() proto.Message { return &altv1.ListBarsRequest{} }, func() proto.Message { return &altv1.ListBarsResponse{} }, // market import command: daily bars func() proto.Message { return &altv1.ImportDailyBarsRequest{} }, func() proto.Message { return &altv1.ImportDailyBarsResponse{} }, // backtest surface: start / list / detail / result / compare func() proto.Message { return &altv1.StartBacktestRequest{} }, func() proto.Message { return &altv1.StartBacktestResponse{} }, func() proto.Message { return &altv1.GetBacktestRunRequest{} }, func() proto.Message { return &altv1.GetBacktestRunResponse{} }, func() proto.Message { return &altv1.GetBacktestResultRequest{} }, func() proto.Message { return &altv1.GetBacktestResultResponse{} }, func() proto.Message { return &altv1.BacktestResult{} }, func() proto.Message { return &altv1.ListBacktestRunsRequest{} }, func() proto.Message { return &altv1.ListBacktestRunsResponse{} }, func() proto.Message { return &altv1.GetBacktestRunDetailRequest{} }, func() proto.Message { return &altv1.GetBacktestRunDetailResponse{} }, func() proto.Message { return &altv1.CompareBacktestRunsRequest{} }, func() proto.Message { return &altv1.CompareBacktestRunsResponse{} }, // paper trading surface: start / state func() proto.Message { return &altv1.StartPaperTradingRequest{} }, func() proto.Message { return &altv1.StartPaperTradingResponse{} }, func() proto.Message { return &altv1.GetPaperTradingStateRequest{} }, func() proto.Message { return &altv1.GetPaperTradingStateResponse{} }, func() proto.Message { return &altv1.PaperTradingState{} }, // paper order lifecycle surface: submit / cancel / fill func() proto.Message { return &altv1.SubmitPaperOrderRequest{} }, func() proto.Message { return &altv1.SubmitPaperOrderResponse{} }, func() proto.Message { return &altv1.CancelPaperOrderRequest{} }, func() proto.Message { return &altv1.CancelPaperOrderResponse{} }, func() proto.Message { return &altv1.FillPaperOrderRequest{} }, func() proto.Message { return &altv1.FillPaperOrderResponse{} }, // live trading surface: broker capability probe func() proto.Message { return &altv1.GetLiveBrokerCapabilitiesRequest{} }, func() proto.Message { return &altv1.GetLiveBrokerCapabilitiesResponse{} }, func() proto.Message { return &altv1.LiveBrokerCapability{} }, } } // ParserMap returns a fresh ParserMap populated with all ALT messages the CLI // runner can send or receive over the proto-socket API rail. func ParserMap() protoSocket.ParserMap { factories := messageFactories() pm := make(protoSocket.ParserMap, len(factories)) for _, factory := range factories { pm[protoSocket.TypeNameOf(factory())] = parserFor(factory) } return pm } func parserFor(factory func() proto.Message) func([]byte) (proto.Message, error) { return func(data []byte) (proto.Message, error) { msg := factory() if err := proto.Unmarshal(data, msg); err != nil { return nil, err } return msg, nil } }