- Add parser_map for market data refresh configuration propagation (cli/worker/api) - Implement refresh status model with SQLite persistence (status_store.go) - Add scheduler refresh status headless output to CLI operator - Extend backfill scheduler with status tracking (start/complete/fail) - Add socket events for scheduler refresh status (start/complete/fail) - Update proto definitions for refresh status - Add generated PB files for client
332 lines
12 KiB
Go
332 lines
12 KiB
Go
package socket
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import (
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"context"
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"errors"
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"time"
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protoSocket "git.toki-labs.com/toki/proto-socket/go"
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altv1 "git.toki-labs.com/toki/alt/packages/contracts/gen/go/alt/v1"
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"git.toki-labs.com/toki/alt/packages/domain/backtest"
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"git.toki-labs.com/toki/alt/packages/domain/market"
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"git.toki-labs.com/toki/alt/services/worker/internal/marketdata/importer"
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"git.toki-labs.com/toki/alt/services/worker/internal/scheduler"
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"git.toki-labs.com/toki/alt/services/worker/internal/storage"
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)
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// handlerTimeout bounds a single worker-side backtest request. Execution itself
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// is detached through the starter, so this only guards the synchronous record
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// and read work against a wedged store call.
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const handlerTimeout = 10 * time.Second
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const (
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backtestErrorInvalidRequest = "invalid_request"
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backtestErrorUnavailable = "unavailable"
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backtestErrorNotFound = "not_found"
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backtestErrorTimeout = "timeout"
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backtestErrorInternal = "internal"
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)
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// ErrMonthlySourceBarsNotFound marks a monthly aggregation request whose
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// selected instruments have no stored daily source bars in the requested range.
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var ErrMonthlySourceBarsNotFound = errors.New("monthly aggregation source daily bars not found")
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// BacktestStarter records a pending run and schedules its execution. The worker
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// jobs package provides the concrete implementation; the interface keeps the
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// socket layer testable with a fake.
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type BacktestStarter interface {
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StartBacktest(ctx context.Context, spec backtest.RunSpec) (backtest.Run, error)
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}
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// DailyBarImporter runs a daily bar import command. The marketdata importer
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// provides the concrete implementation; the narrow interface keeps the socket
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// handler testable with a fake and decoupled from provider/storage wiring.
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type DailyBarImporter interface {
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ImportDailyBars(ctx context.Context, request importer.DailyBarRequest) (importer.Result, error)
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}
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// MonthlyBarAggregator aggregates daily bars into monthly bars and stores them.
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// The contract layer provides the concrete implementation; the narrow interface
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// keeps the socket handler testable with a fake.
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type MonthlyBarAggregator interface {
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AggregateMonthlyBars(ctx context.Context, request AggregateMonthlyRequest) (AggregateMonthlyResult, error)
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}
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// RefreshStatusQuerier provides read access to the runtime refresh status
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// recorded by the scheduler after each tick. The socket handler calls All or
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// Get to answer operator queries without importing the scheduler package.
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type RefreshStatusQuerier interface {
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All() []scheduler.RefreshStatus
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Get(name string) (scheduler.RefreshStatus, bool)
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}
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// AggregateMonthlyRequest carries the filter/range for a monthly aggregation.
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type AggregateMonthlyRequest struct {
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Provider market.Provider
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Selector market.UniverseSelector
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From time.Time
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To time.Time
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}
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// AggregateMonthlyResult holds the outcome of a monthly bar aggregation.
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type AggregateMonthlyResult struct {
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Instruments int
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SourceDailyCount int
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MonthlyBarCount int
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Provenance []MonthlyProvenanceEntry
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}
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// MonthlyProvenanceEntry records provenance for one instrument's monthly bars.
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type MonthlyProvenanceEntry struct {
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InstrumentID market.InstrumentID
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SourceDailyCount int
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MonthlyBarCount int
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SourceStart time.Time
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SourceEnd time.Time
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AggregationRuleID string
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}
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// Deps bundles the worker-owned capabilities socket handlers need. A nil field
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// disables only its related handler surface so the server can still run a
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// reduced surface (e.g. hello-only) without panicking.
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type Deps struct {
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Starter BacktestStarter
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Analysis storage.BacktestAnalysisStore
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Results storage.BacktestResultStore
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Instruments storage.InstrumentStore
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Bars storage.BarStore
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DailyBarImporter DailyBarImporter
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MonthlyAggregator MonthlyBarAggregator
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RefreshStatus RefreshStatusQuerier
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Paper PaperService
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Live LiveService
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}
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// BacktestDeps is retained for existing call sites while the socket dependency
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// bundle grows beyond backtest into market reads.
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type BacktestDeps = Deps
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// backtestHandlers returns the session handlers for the backtest command and
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// query surface, each closing over the shared dependencies.
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func backtestHandlers(deps Deps) []sessionHandler {
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return []sessionHandler{
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{
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requestType: protoSocket.TypeNameOf(&altv1.StartBacktestRequest{}),
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register: func(client *protoSocket.WsClient) {
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protoSocket.AddRequestListenerTyped[*altv1.StartBacktestRequest, *altv1.StartBacktestResponse](
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&client.Communicator,
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func(req *altv1.StartBacktestRequest) (*altv1.StartBacktestResponse, error) {
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return handleStartBacktest(deps, req)
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},
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)
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},
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},
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{
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requestType: protoSocket.TypeNameOf(&altv1.GetBacktestRunRequest{}),
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register: func(client *protoSocket.WsClient) {
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protoSocket.AddRequestListenerTyped[*altv1.GetBacktestRunRequest, *altv1.GetBacktestRunResponse](
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&client.Communicator,
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func(req *altv1.GetBacktestRunRequest) (*altv1.GetBacktestRunResponse, error) {
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return handleGetBacktestRun(deps, req)
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},
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)
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},
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},
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{
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requestType: protoSocket.TypeNameOf(&altv1.ListBacktestRunsRequest{}),
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register: func(client *protoSocket.WsClient) {
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protoSocket.AddRequestListenerTyped[*altv1.ListBacktestRunsRequest, *altv1.ListBacktestRunsResponse](
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&client.Communicator,
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func(req *altv1.ListBacktestRunsRequest) (*altv1.ListBacktestRunsResponse, error) {
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return handleListBacktestRuns(deps, req)
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},
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)
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},
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},
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{
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requestType: protoSocket.TypeNameOf(&altv1.GetBacktestRunDetailRequest{}),
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register: func(client *protoSocket.WsClient) {
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protoSocket.AddRequestListenerTyped[*altv1.GetBacktestRunDetailRequest, *altv1.GetBacktestRunDetailResponse](
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&client.Communicator,
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func(req *altv1.GetBacktestRunDetailRequest) (*altv1.GetBacktestRunDetailResponse, error) {
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return handleGetBacktestRunDetail(deps, req)
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},
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)
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},
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},
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{
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requestType: protoSocket.TypeNameOf(&altv1.GetBacktestResultRequest{}),
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register: func(client *protoSocket.WsClient) {
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protoSocket.AddRequestListenerTyped[*altv1.GetBacktestResultRequest, *altv1.GetBacktestResultResponse](
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&client.Communicator,
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func(req *altv1.GetBacktestResultRequest) (*altv1.GetBacktestResultResponse, error) {
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return handleGetBacktestResult(deps, req)
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},
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)
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},
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},
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{
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requestType: protoSocket.TypeNameOf(&altv1.CompareBacktestRunsRequest{}),
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register: func(client *protoSocket.WsClient) {
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protoSocket.AddRequestListenerTyped[*altv1.CompareBacktestRunsRequest, *altv1.CompareBacktestRunsResponse](
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&client.Communicator,
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func(req *altv1.CompareBacktestRunsRequest) (*altv1.CompareBacktestRunsResponse, error) {
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return handleCompareBacktestRuns(deps, req)
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},
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)
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},
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},
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}
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}
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func handleStartBacktest(deps Deps, req *altv1.StartBacktestRequest) (*altv1.StartBacktestResponse, error) {
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spec, err := runSpecFromProto(req.GetSpec())
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if err != nil {
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return &altv1.StartBacktestResponse{Error: invalidRequest(err.Error())}, nil
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}
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if deps.Starter == nil {
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return &altv1.StartBacktestResponse{Error: unavailableError("backtest start is not available")}, nil
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}
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ctx, cancel := context.WithTimeout(context.Background(), handlerTimeout)
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defer cancel()
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run, err := deps.Starter.StartBacktest(ctx, spec)
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if err != nil {
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return &altv1.StartBacktestResponse{Error: backendErrorInfo(err)}, nil
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}
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return &altv1.StartBacktestResponse{Run: runToProto(run)}, nil
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}
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// handleGetBacktestRun answers a single-run poll. It reads through the analysis
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// store's run detail so polling reuses the same store-backed read path as
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// list/detail instead of growing a second run-store dependency on Deps.
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func handleGetBacktestRun(deps Deps, req *altv1.GetBacktestRunRequest) (*altv1.GetBacktestRunResponse, error) {
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if req.GetRunId() == "" {
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return &altv1.GetBacktestRunResponse{Error: invalidRequest("run_id is required")}, nil
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}
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if deps.Analysis == nil {
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return &altv1.GetBacktestRunResponse{Error: unavailableError("backtest analysis is not available")}, nil
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}
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ctx, cancel := context.WithTimeout(context.Background(), handlerTimeout)
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defer cancel()
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detail, err := deps.Analysis.GetRunDetail(ctx, backtest.RunID(req.GetRunId()))
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if err != nil {
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return &altv1.GetBacktestRunResponse{Error: backendErrorInfo(err)}, nil
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}
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return &altv1.GetBacktestRunResponse{Run: runToProto(detail.Run)}, nil
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}
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func handleListBacktestRuns(deps Deps, req *altv1.ListBacktestRunsRequest) (*altv1.ListBacktestRunsResponse, error) {
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if deps.Analysis == nil {
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return &altv1.ListBacktestRunsResponse{Error: unavailableError("backtest analysis is not available")}, nil
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}
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ctx, cancel := context.WithTimeout(context.Background(), handlerTimeout)
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defer cancel()
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runs, err := deps.Analysis.ListRuns(ctx, runStatusFromProto(req.GetStatus()))
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if err != nil {
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return &altv1.ListBacktestRunsResponse{Error: backendErrorInfo(err)}, nil
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}
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return &altv1.ListBacktestRunsResponse{Runs: runsToProto(runs)}, nil
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}
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func handleGetBacktestRunDetail(deps Deps, req *altv1.GetBacktestRunDetailRequest) (*altv1.GetBacktestRunDetailResponse, error) {
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if req.GetRunId() == "" {
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return &altv1.GetBacktestRunDetailResponse{Error: invalidRequest("run_id is required")}, nil
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}
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if deps.Analysis == nil {
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return &altv1.GetBacktestRunDetailResponse{Error: unavailableError("backtest analysis is not available")}, nil
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}
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ctx, cancel := context.WithTimeout(context.Background(), handlerTimeout)
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defer cancel()
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detail, err := deps.Analysis.GetRunDetail(ctx, backtest.RunID(req.GetRunId()))
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if err != nil {
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return &altv1.GetBacktestRunDetailResponse{Error: backendErrorInfo(err)}, nil
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}
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resp := &altv1.GetBacktestRunDetailResponse{Run: runToProto(detail.Run)}
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// A run can exist before it produces a result; leave the result field nil in
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// that case so callers can distinguish "no result yet" from an empty result.
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if detail.HasResult {
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resp.Result = resultToProto(detail.Result)
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}
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return resp, nil
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}
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func handleGetBacktestResult(deps Deps, req *altv1.GetBacktestResultRequest) (*altv1.GetBacktestResultResponse, error) {
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if req.GetRunId() == "" {
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return &altv1.GetBacktestResultResponse{Error: invalidRequest("run_id is required")}, nil
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}
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if deps.Results == nil {
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return &altv1.GetBacktestResultResponse{Error: unavailableError("backtest results are not available")}, nil
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}
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ctx, cancel := context.WithTimeout(context.Background(), handlerTimeout)
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defer cancel()
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result, err := deps.Results.GetResult(ctx, backtest.RunID(req.GetRunId()))
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if err != nil {
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return &altv1.GetBacktestResultResponse{Error: backendErrorInfo(err)}, nil
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}
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return &altv1.GetBacktestResultResponse{Result: resultToProto(result)}, nil
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}
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func handleCompareBacktestRuns(deps Deps, req *altv1.CompareBacktestRunsRequest) (*altv1.CompareBacktestRunsResponse, error) {
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ids := make([]backtest.RunID, 0, len(req.GetRunIds()))
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for _, id := range req.GetRunIds() {
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if id == "" {
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return &altv1.CompareBacktestRunsResponse{Error: invalidRequest("run_ids must not contain empty values")}, nil
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}
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ids = append(ids, backtest.RunID(id))
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}
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// An empty compare request is a no-op rather than an error: the response just
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// carries an empty result list.
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if len(ids) == 0 {
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return &altv1.CompareBacktestRunsResponse{}, nil
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}
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if deps.Analysis == nil {
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return &altv1.CompareBacktestRunsResponse{Error: unavailableError("backtest analysis is not available")}, nil
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}
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ctx, cancel := context.WithTimeout(context.Background(), handlerTimeout)
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defer cancel()
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results, err := deps.Analysis.CompareResults(ctx, ids)
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if err != nil {
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return &altv1.CompareBacktestRunsResponse{Error: backendErrorInfo(err)}, nil
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}
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return &altv1.CompareBacktestRunsResponse{Results: resultsToProto(results)}, nil
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}
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func invalidRequest(reason string) *altv1.ErrorInfo {
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return errorInfo(backtestErrorInvalidRequest, "invalid backtest request: "+reason)
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}
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func unavailableError(message string) *altv1.ErrorInfo {
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return errorInfo(backtestErrorUnavailable, message)
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}
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func backendErrorInfo(err error) *altv1.ErrorInfo {
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if err == nil {
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return nil
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}
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switch {
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case errors.Is(err, storage.ErrRunNotFound), errors.Is(err, storage.ErrResultNotFound):
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return errorInfo(backtestErrorNotFound, err.Error())
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case errors.Is(err, context.DeadlineExceeded):
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return errorInfo(backtestErrorTimeout, err.Error())
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default:
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return errorInfo(backtestErrorInternal, err.Error())
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}
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}
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func errorInfo(code, message string) *altv1.ErrorInfo {
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return &altv1.ErrorInfo{Code: code, Message: message}
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}
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