- 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
535 lines
19 KiB
Go
535 lines
19 KiB
Go
package socket
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import (
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"context"
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"errors"
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"fmt"
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"strconv"
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"strings"
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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/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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// importDateLayout matches the YYYYMMDD date fields the import command carries,
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// mirroring the job payload date contract so the same dates reach the provider.
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const importDateLayout = "20060102"
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// unixMilliMs converts a time.Time to Unix milliseconds. Zero times return 0
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// to avoid negative epoch values that would mislead CLI output or client UI.
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func unixMilliMs(t time.Time) int64 {
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if t.IsZero() {
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return 0
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}
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return t.UnixMilli()
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}
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// validImportTimeframes defines the set of timeframes accepted for import_daily_bars.
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// Currently only daily is supported; minute values are intentionally rejected.
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var validImportTimeframes = map[string]bool{
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"daily": true,
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"minute_1": true,
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"minute_5": true,
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"monthly": true,
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}
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const (
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marketErrorInvalidRequest = "invalid_request"
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marketErrorUnavailable = "unavailable"
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marketErrorNotFound = "not_found"
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marketErrorTimeout = "timeout"
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marketErrorInternal = "internal"
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)
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func marketHandlers(deps Deps) []sessionHandler {
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handlers := []sessionHandler{
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{
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requestType: protoSocket.TypeNameOf(&altv1.ListInstrumentsRequest{}),
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register: func(client *protoSocket.WsClient) {
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protoSocket.AddRequestListenerTyped[*altv1.ListInstrumentsRequest, *altv1.ListInstrumentsResponse](
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&client.Communicator,
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func(req *altv1.ListInstrumentsRequest) (*altv1.ListInstrumentsResponse, error) {
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return handleListInstruments(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.ListBarsRequest{}),
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register: func(client *protoSocket.WsClient) {
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protoSocket.AddRequestListenerTyped[*altv1.ListBarsRequest, *altv1.ListBarsResponse](
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&client.Communicator,
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func(req *altv1.ListBarsRequest) (*altv1.ListBarsResponse, error) {
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return handleListBars(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.ImportDailyBarsRequest{}),
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register: func(client *protoSocket.WsClient) {
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protoSocket.AddRequestListenerTyped[*altv1.ImportDailyBarsRequest, *altv1.ImportDailyBarsResponse](
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&client.Communicator,
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func(req *altv1.ImportDailyBarsRequest) (*altv1.ImportDailyBarsResponse, error) {
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return handleImportDailyBars(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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if deps.MonthlyAggregator != nil {
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handlers = append(handlers, sessionHandler{
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requestType: protoSocket.TypeNameOf(&altv1.AggregateMonthlyBarsRequest{}),
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register: func(client *protoSocket.WsClient) {
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protoSocket.AddRequestListenerTyped[*altv1.AggregateMonthlyBarsRequest, *altv1.AggregateMonthlyBarsResponse](
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&client.Communicator,
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func(req *altv1.AggregateMonthlyBarsRequest) (*altv1.AggregateMonthlyBarsResponse, error) {
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return handleAggregateMonthlyBars(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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if deps.RefreshStatus != nil {
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handlers = append(handlers, sessionHandler{
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requestType: protoSocket.TypeNameOf(&altv1.SchedulerRefreshStatusRequest{}),
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register: func(client *protoSocket.WsClient) {
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protoSocket.AddRequestListenerTyped[*altv1.SchedulerRefreshStatusRequest, *altv1.SchedulerRefreshStatusResponse](
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&client.Communicator,
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func(req *altv1.SchedulerRefreshStatusRequest) (*altv1.SchedulerRefreshStatusResponse, error) {
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return handleSchedulerRefreshStatus(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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return handlers
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}
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// importTimeframeNormalise resolves the proto Timeframe into a string accepted
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// by the provider layer. Unspecified defaults to "daily"; known enum names are
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// mapped explicitly. Unknown enum values return ("", unknownTimeframeErr) so
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// that the caller can reject them as a typed invalid_request error instead of
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// panicking on slice operations.
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func importTimeframeNormalise(tf altv1.Timeframe) (string, error) {
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if tf == altv1.Timeframe_TIMEFRAME_UNSPECIFIED {
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return "daily", nil
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}
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// Map known proto enum values to their lowercase name (without TIMEFRAME_ prefix).
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switch tf {
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case altv1.Timeframe_TIMEFRAME_DAILY:
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return "daily", nil
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case altv1.Timeframe_TIMEFRAME_MINUTE_1:
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return "minute_1", nil
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case altv1.Timeframe_TIMEFRAME_MINUTE_5:
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return "minute_5", nil
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case altv1.Timeframe_TIMEFRAME_MONTHLY:
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return "monthly", nil
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default:
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// Unknown enum value: return the raw string name (if available) so the
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// caller can produce a stable error message. Do NOT panic on slice.
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name := tf.String()
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if strings.HasPrefix(name, "TIMEFRAME_") {
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return strings.ToLower(name[len("TIMEFRAME_"):]), fmt.Errorf("unsupported timeframe %q", strings.ToLower(name[len("TIMEFRAME_"):]))
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}
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return strings.ToLower(name), fmt.Errorf("unsupported timeframe %q", strings.ToLower(name))
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}
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}
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// handleImportDailyBars validates the import command, converts it into the
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// importer request, and runs the import. The worker owns provider fetch and
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// persistence; counts come back so the operator surface can confirm what landed.
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func handleImportDailyBars(deps Deps, req *altv1.ImportDailyBarsRequest) (*altv1.ImportDailyBarsResponse, error) {
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if req.GetProvider() == "" {
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return &altv1.ImportDailyBarsResponse{Error: marketInvalidRequest("provider is required")}, nil
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}
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if req.GetSelectorKind() == "" {
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return &altv1.ImportDailyBarsResponse{Error: marketInvalidRequest("selector_kind is required")}, nil
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}
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if len(req.GetSymbols()) == 0 {
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return &altv1.ImportDailyBarsResponse{Error: marketInvalidRequest("symbols is required")}, nil
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}
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// Normalise/validate the import timeframe. Daily (unspecified) is the only
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// accepted value for import_daily_bars at this stage; minute values are
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// rejected as a typed invalid_request so the operator sees a stable error.
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tfStr, tfErr := importTimeframeNormalise(req.GetTimeframe())
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if tfErr != nil {
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return &altv1.ImportDailyBarsResponse{
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Error: marketInvalidRequest(tfErr.Error()),
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}, nil
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}
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if !validImportTimeframes[tfStr] {
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return &altv1.ImportDailyBarsResponse{
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Error: marketInvalidRequest(fmt.Sprintf("import_daily_bars supports timeframe daily; got %s", tfStr)),
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}, nil
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}
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if tfStr != "daily" {
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return &altv1.ImportDailyBarsResponse{
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Error: marketInvalidRequest(fmt.Sprintf("import_daily_bars supports timeframe daily; got %s", tfStr)),
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}, nil
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}
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mkt, _, err := marketFilterFromProto(req.GetMarket())
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if err != nil {
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return &altv1.ImportDailyBarsResponse{Error: marketInvalidRequest(err.Error())}, nil
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}
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venue, err := venueFromProto(req.GetVenue())
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if err != nil {
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return &altv1.ImportDailyBarsResponse{Error: marketInvalidRequest(err.Error())}, nil
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}
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from, to, err := parseImportDateRange(req.GetFromYyyymmdd(), req.GetToYyyymmdd())
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if err != nil {
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return &altv1.ImportDailyBarsResponse{Error: marketInvalidRequest(err.Error())}, nil
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}
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if deps.DailyBarImporter == nil {
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return &altv1.ImportDailyBarsResponse{Error: marketUnavailableError("daily bar import 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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result, err := deps.DailyBarImporter.ImportDailyBars(ctx, importer.DailyBarRequest{
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Provider: market.Provider(req.GetProvider()),
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Selector: market.UniverseSelector{
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Kind: market.UniverseSelectorKind(req.GetSelectorKind()),
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Market: mkt,
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Venue: venue,
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Symbols: req.GetSymbols(),
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Name: req.GetName(),
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},
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From: from,
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To: to,
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})
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if err != nil {
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return &altv1.ImportDailyBarsResponse{Error: marketBackendErrorInfo(err)}, nil
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}
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return &altv1.ImportDailyBarsResponse{
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Provider: req.GetProvider(),
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InstrumentCount: int32(result.Instruments),
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BarCount: int32(result.Bars),
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}, nil
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}
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// parseImportDateRange requires both endpoints of the import date range and
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// returns them parsed for the importer request. The live KIS importer requires
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// a bounded from/to range and rejects an inverted range, so the worker closes
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// those operator-input errors here as invalid_request before reaching the
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// importer instead of letting them surface as an internal backend failure.
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func parseImportDateRange(fromValue, toValue string) (time.Time, time.Time, error) {
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if fromValue == "" {
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return time.Time{}, time.Time{}, errors.New("from_yyyymmdd is required")
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}
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if toValue == "" {
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return time.Time{}, time.Time{}, errors.New("to_yyyymmdd is required")
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}
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from, err := time.Parse(importDateLayout, fromValue)
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if err != nil {
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return time.Time{}, time.Time{}, errors.New("from_yyyymmdd must be YYYYMMDD")
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}
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to, err := time.Parse(importDateLayout, toValue)
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if err != nil {
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return time.Time{}, time.Time{}, errors.New("to_yyyymmdd must be YYYYMMDD")
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}
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if from.After(to) {
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return time.Time{}, time.Time{}, errors.New("from_yyyymmdd cannot be after to_yyyymmdd")
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}
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return from.UTC(), to.UTC(), nil
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}
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func handleListInstruments(deps Deps, req *altv1.ListInstrumentsRequest) (*altv1.ListInstrumentsResponse, error) {
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marketFilter, hasMarketFilter, err := marketFilterFromProto(req.GetMarket())
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if err != nil {
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return &altv1.ListInstrumentsResponse{Error: marketInvalidRequest(err.Error())}, nil
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}
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if deps.Instruments == nil {
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return &altv1.ListInstrumentsResponse{Error: marketUnavailableError("instrument store 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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insts, err := deps.Instruments.ListInstruments(ctx)
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if err != nil {
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return &altv1.ListInstrumentsResponse{Error: marketBackendErrorInfo(err)}, nil
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}
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filtered := filterInstruments(insts, marketFilter, hasMarketFilter, req.GetProvider())
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return &altv1.ListInstrumentsResponse{Instruments: instrumentsToProto(filtered)}, nil
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}
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func handleListBars(deps Deps, req *altv1.ListBarsRequest) (*altv1.ListBarsResponse, error) {
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if req.GetInstrumentId() == "" {
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return &altv1.ListBarsResponse{Error: marketInvalidRequest("instrument_id is required")}, nil
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}
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timeframe, err := timeframeFromProto(req.GetTimeframe())
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if err != nil {
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return &altv1.ListBarsResponse{Error: marketInvalidRequest(err.Error())}, nil
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}
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if req.GetFromUnixMs() == 0 {
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return &altv1.ListBarsResponse{Error: marketInvalidRequest("from_unix_ms is required")}, nil
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}
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if req.GetToUnixMs() == 0 {
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return &altv1.ListBarsResponse{Error: marketInvalidRequest("to_unix_ms is required")}, nil
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}
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if req.GetFromUnixMs() > req.GetToUnixMs() {
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return &altv1.ListBarsResponse{Error: marketInvalidRequest("from_unix_ms cannot be after to_unix_ms")}, nil
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}
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if deps.Bars == nil {
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return &altv1.ListBarsResponse{Error: marketUnavailableError("bar store 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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from := time.UnixMilli(req.GetFromUnixMs()).UTC()
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to := time.UnixMilli(req.GetToUnixMs()).UTC()
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bars, err := deps.Bars.GetBars(ctx, market.InstrumentID(req.GetInstrumentId()), timeframe, from, to)
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if err != nil {
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return &altv1.ListBarsResponse{Error: marketBackendErrorInfo(err)}, nil
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}
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return &altv1.ListBarsResponse{Bars: barsToProto(bars)}, nil
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}
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func marketFilterFromProto(m altv1.Market) (market.Market, bool, error) {
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switch m {
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case altv1.Market_MARKET_UNSPECIFIED:
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return "", false, nil
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case altv1.Market_MARKET_KR, altv1.Market_MARKET_US:
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converted, err := marketFromProto(m)
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return converted, true, err
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default:
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return "", false, errors.New("market filter is unsupported")
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}
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}
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func filterInstruments(insts []market.Instrument, marketFilter market.Market, hasMarketFilter bool, provider string) []market.Instrument {
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if !hasMarketFilter && provider == "" {
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return insts
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}
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out := make([]market.Instrument, 0, len(insts))
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for _, inst := range insts {
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if hasMarketFilter && inst.Market != marketFilter {
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continue
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}
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if provider != "" && inst.ProviderSymbols[provider] == "" {
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continue
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}
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out = append(out, inst)
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}
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return out
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}
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func marketInvalidRequest(reason string) *altv1.ErrorInfo {
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return errorInfo(marketErrorInvalidRequest, "invalid market request: "+reason)
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}
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func marketUnavailableError(message string) *altv1.ErrorInfo {
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return errorInfo(marketErrorUnavailable, message)
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}
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func handleSchedulerRefreshStatus(deps Deps, req *altv1.SchedulerRefreshStatusRequest) (*altv1.SchedulerRefreshStatusResponse, error) {
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var statuses []scheduler.RefreshStatus
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if name := req.GetScheduleName(); name != "" {
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s, ok := deps.RefreshStatus.Get(name)
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if ok {
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s = enrichWithNextRun(s, deps.RefreshStatus)
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statuses = []scheduler.RefreshStatus{s}
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}
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} else {
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all := deps.RefreshStatus.All()
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for _, s := range all {
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s = enrichWithNextRun(s, deps.RefreshStatus)
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statuses = append(statuses, s)
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}
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}
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entries := make([]*altv1.SchedulerRefreshStatusEntry, 0, len(statuses))
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for _, s := range statuses {
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entries = append(entries, &altv1.SchedulerRefreshStatusEntry{
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Schedule: s.Schedule,
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Status: s.Status,
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LastSuccessUnixMs: unixMilliMs(s.LastSuccess),
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LastError: s.LastError,
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NextRunUnixMs: unixMilliMs(s.NextRun),
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ImportedBarCount: int32(s.ImportedBarCount),
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MissingCount: int32(s.MissingCount),
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GapCount: int32(s.GapCount),
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DuplicateCount: int32(s.DuplicateCount),
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ProviderDelayDays: int32(s.ProviderDelay),
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})
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}
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return &altv1.SchedulerRefreshStatusResponse{Entries: entries}, nil
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}
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// enrichWithNextRun computes the next_run time from the stored schedule config
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// for the given status. If the config is not set or the schedule is not found,
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// NextRun is left as zero (rendered as 0 / "NONE").
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func enrichWithNextRun(s scheduler.RefreshStatus, qr RefreshStatusQuerier) scheduler.RefreshStatus {
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// The store implements ScheduleConfig() via the underlying *RefreshStatusStore.
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type configStore interface {
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ScheduleConfig() scheduler.Config
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}
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if cs, ok := qr.(configStore); ok {
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cfg := cs.ScheduleConfig()
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for _, sc := range cfg.Schedules {
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if sc.Name != s.Schedule {
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continue
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}
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loc, err := time.LoadLocation(sc.Timezone)
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if err != nil {
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return s
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}
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cadence, err := parseWindowDuration(sc.Cadence)
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if err != nil {
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return s
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}
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next := nextWindowForStatus(s, loc, cadence)
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if !next.IsZero() && next.After(s.NextRun) {
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s.NextRun = next
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}
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return s
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}
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}
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return s
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}
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// parseWindowDuration converts a cadence string like "daily", "7d", or a Go
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// duration string into time.Duration. Mirrors scheduler.parseWindow.
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func parseWindowDuration(value string) (time.Duration, error) {
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trimmed := strings.TrimSpace(strings.ToLower(value))
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if trimmed == "daily" {
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return 24 * time.Hour, nil
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}
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if strings.HasSuffix(trimmed, "d") && len(trimmed) > 1 {
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days, err := strconv.Atoi(strings.TrimSuffix(trimmed, "d"))
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if err != nil || days <= 0 {
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return 0, fmt.Errorf("expected positive day count")
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}
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return time.Duration(days) * 24 * time.Hour, nil
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}
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d, err := time.ParseDuration(trimmed)
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if err != nil {
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return 0, err
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}
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if d <= 0 {
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return 0, fmt.Errorf("expected positive duration")
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}
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return d, nil
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}
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// nextWindowForStatus computes the next run window based on the last success
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// time. If LastSuccess is zero, it uses the current now (passed via opts).
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func nextWindowForStatus(s scheduler.RefreshStatus, loc *time.Location, cadence time.Duration) time.Time {
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if s.LastSuccess.IsZero() {
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// First run: next window from now
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return computeNextWindow(time.Now(), loc, cadence)
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}
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// Subsequent runs: next window after last success
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return computeNextWindow(s.LastSuccess, loc, cadence)
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}
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func computeNextWindow(now time.Time, loc *time.Location, cadence time.Duration) time.Time {
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localNow := now.In(loc)
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dayStart := time.Date(localNow.Year(), localNow.Month(), localNow.Day(), 0, 0, 0, 0, loc)
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if !localNow.After(dayStart) {
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return dayStart
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}
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elapsed := localNow.Sub(dayStart)
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steps := elapsed/cadence + 1
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return dayStart.Add(steps * cadence)
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}
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func marketBackendErrorInfo(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.ErrInstrumentNotFound):
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|
return errorInfo(marketErrorNotFound, err.Error())
|
|
case errors.Is(err, ErrMonthlySourceBarsNotFound):
|
|
return errorInfo(marketErrorNotFound, err.Error())
|
|
case errors.Is(err, context.DeadlineExceeded):
|
|
return errorInfo(marketErrorTimeout, err.Error())
|
|
default:
|
|
return errorInfo(marketErrorInternal, err.Error())
|
|
}
|
|
}
|
|
|
|
// handleAggregateMonthlyBars validates the aggregation request, converts it
|
|
// into an AggregateMonthlyRequest and delegates to the MonthlyBarAggregator.
|
|
// The response carries instrument counts, source daily bar counts, monthly bar
|
|
// counts, and per-instrument provenance entries.
|
|
func handleAggregateMonthlyBars(deps Deps, req *altv1.AggregateMonthlyBarsRequest) (*altv1.AggregateMonthlyBarsResponse, error) {
|
|
if req.GetProvider() == "" {
|
|
return &altv1.AggregateMonthlyBarsResponse{Error: marketInvalidRequest("provider is required")}, nil
|
|
}
|
|
if req.GetSelectorKind() == "" {
|
|
return &altv1.AggregateMonthlyBarsResponse{Error: marketInvalidRequest("selector_kind is required")}, nil
|
|
}
|
|
if len(req.GetSymbols()) == 0 {
|
|
return &altv1.AggregateMonthlyBarsResponse{Error: marketInvalidRequest("symbols is required")}, nil
|
|
}
|
|
|
|
mkt, _, err := marketFilterFromProto(req.GetMarket())
|
|
if err != nil {
|
|
return &altv1.AggregateMonthlyBarsResponse{Error: marketInvalidRequest(err.Error())}, nil
|
|
}
|
|
venue, err := venueFromProto(req.GetVenue())
|
|
if err != nil {
|
|
return &altv1.AggregateMonthlyBarsResponse{Error: marketInvalidRequest(err.Error())}, nil
|
|
}
|
|
from, to, err := parseImportDateRange(req.GetFromYyyymmdd(), req.GetToYyyymmdd())
|
|
if err != nil {
|
|
return &altv1.AggregateMonthlyBarsResponse{Error: marketInvalidRequest(err.Error())}, nil
|
|
}
|
|
if deps.MonthlyAggregator == nil {
|
|
return &altv1.AggregateMonthlyBarsResponse{Error: marketUnavailableError("monthly aggregation is not available")}, nil
|
|
}
|
|
|
|
ctx, cancel := context.WithTimeout(context.Background(), handlerTimeout)
|
|
defer cancel()
|
|
|
|
result, err := deps.MonthlyAggregator.AggregateMonthlyBars(ctx, AggregateMonthlyRequest{
|
|
Provider: market.Provider(req.GetProvider()),
|
|
Selector: market.UniverseSelector{
|
|
Kind: market.UniverseSelectorKind(req.GetSelectorKind()),
|
|
Market: mkt,
|
|
Venue: venue,
|
|
Symbols: req.GetSymbols(),
|
|
Name: req.GetName(),
|
|
},
|
|
From: from,
|
|
To: to,
|
|
})
|
|
if err != nil {
|
|
return &altv1.AggregateMonthlyBarsResponse{Error: marketBackendErrorInfo(err)}, nil
|
|
}
|
|
|
|
provenance := make([]*altv1.MonthlyProvenance, 0, len(result.Provenance))
|
|
for _, p := range result.Provenance {
|
|
provenance = append(provenance, &altv1.MonthlyProvenance{
|
|
InstrumentId: string(p.InstrumentID),
|
|
SourceDailyBarCount: int32(p.SourceDailyCount),
|
|
MonthlyBarCount: int32(p.MonthlyBarCount),
|
|
SourceStartYyyymmdd: p.SourceStart.Format(importDateLayout),
|
|
SourceEndYyyymmdd: p.SourceEnd.Format(importDateLayout),
|
|
AggregationRuleId: p.AggregationRuleID,
|
|
SourceTimeframe: altv1.Timeframe_TIMEFRAME_DAILY,
|
|
TargetTimeframe: altv1.Timeframe_TIMEFRAME_MONTHLY,
|
|
})
|
|
}
|
|
|
|
return &altv1.AggregateMonthlyBarsResponse{
|
|
Provider: req.GetProvider(),
|
|
InstrumentCount: int32(result.Instruments),
|
|
SourceDailyBarCount: int32(result.SourceDailyCount),
|
|
MonthlyBarCount: int32(result.MonthlyBarCount),
|
|
Provenance: provenance,
|
|
}, nil
|
|
}
|