Class InMemoryFlowRunStore
- Namespace
- FlowOrchestrator.InMemory
- Assembly
- FlowOrchestrator.InMemory.dll
Thread-safe in-memory implementation of all run storage interfaces. Uses ConcurrentDictionary<TKey, TValue> for concurrent access. All data is held in process memory and lost on restart.
public sealed class InMemoryFlowRunStore : IFlowRunStore, IFlowRunRuntimeStore, IFlowRunControlStore, IFlowRetentionStore
- Inheritance
-
InMemoryFlowRunStore
- Implements
- Inherited Members
Methods
AnnotateDispatchAsync(Guid, string, string, CancellationToken)
Stores the runtime job or message ID returned by the dispatcher alongside the dispatch record. Best-effort — implementations should not throw; failures are silently ignored by the engine.
public Task AnnotateDispatchAsync(Guid runId, string stepKey, string jobId, CancellationToken ct = default)
Parameters
runIdGuidstepKeystringjobIdstringctCancellationToken
Returns
CleanupAsync(DateTimeOffset, CancellationToken)
Deletes all run data (runs, steps, attempts, outputs, events) whose completion time
is older than cutoffUtc.
public Task CleanupAsync(DateTimeOffset cutoffUtc, CancellationToken cancellationToken)
Parameters
cutoffUtcDateTimeOffsetRuns completed before this timestamp are eligible for deletion.
cancellationTokenCancellationTokenPropagates cancellation from the host shutdown signal.
Returns
CompleteRunAsync(Guid, string)
Marks the run as complete (status: Succeeded, Failed, or Cancelled)
and sets CompletedAt.
public Task CompleteRunAsync(Guid runId, string status)
Parameters
Returns
CompleteRunIfActiveAsync(Guid, string)
Transitions the run to a terminal status only if it is still active
(Running), reporting whether this call performed the transition. Makes run completion
idempotent and safe against concurrent completers — notably the graph continuation and the
periodic timeout sweep (single- or multi-instance) — so a run's lifecycle event is published
exactly once and its terminal status is set by exactly one writer.
public Task<bool> CompleteRunIfActiveAsync(Guid runId, string status)
Parameters
Returns
- Task<bool>
true if this call transitioned a
Runningrun tostatus; false if the run was already in a terminal state (another writer won).
Remarks
Default implementation delegates to CompleteRunAsync(Guid, string) and reports true, so existing custom IFlowRunStore implementations compile unchanged (retaining their prior, non-idempotent completion behaviour).
ConfigureRunAsync(Guid, Guid, string, string?, DateTimeOffset?)
Persists the control record for a new run, including an optional idempotency key and an absolute timeout deadline.
public Task ConfigureRunAsync(Guid runId, Guid flowId, string triggerKey, string? idempotencyKey, DateTimeOffset? timeoutAtUtc)
Parameters
runIdGuidflowIdGuidtriggerKeystringidempotencyKeystringtimeoutAtUtcDateTimeOffset?
Returns
ExtendDeadlineAsync(Guid, DateTimeOffset?)
Grants a run a fresh execution window: sets TimeoutAtUtc to newTimeoutAtUtc
(or clears the deadline when null) and un-latches any timeout-induced
termination — clears TimedOutAtUtc and the cancellation fields that
MarkTimedOutAsync(Guid, string?) set. A genuine user cancellation (recorded via
RequestCancelAsync(Guid, string?) while the run had not timed out) is preserved.
public Task<bool> ExtendDeadlineAsync(Guid runId, DateTimeOffset? newTimeoutAtUtc)
Parameters
runIdGuidThe run whose deadline is being refreshed.
newTimeoutAtUtcDateTimeOffset?The new absolute deadline, or null to leave the run without a timeout bound.
Returns
Remarks
Called by FlowOrchestratorEngine.RetryStepAsync before re-dispatch so a step retried after
the run's deadline lapsed can actually re-execute instead of being skipped by the termination gate.
Default implementation is a no-op returning false so existing custom
IFlowRunControlStore implementations continue to compile.
FindRunIdByIdempotencyKeyAsync(Guid, string, string)
Looks up an existing run that was started with the given idempotency key. Returns the RunId of the existing run, or null if none exists.
public Task<Guid?> FindRunIdByIdempotencyKeyAsync(Guid flowId, string triggerKey, string idempotencyKey)
Parameters
Returns
GetActiveRunsAsync()
Returns all runs currently in Running status (used for timeout enforcement).
public Task<IReadOnlyList<FlowRunRecord>> GetActiveRunsAsync()
Returns
GetClaimedStepKeysAsync(Guid)
Returns the set of step keys that have been claimed (locked) for execution but not yet completed, used to detect in-progress steps.
public Task<IReadOnlyCollection<string>> GetClaimedStepKeysAsync(Guid runId)
Parameters
runIdGuid
Returns
GetDerivedRunsAsync(Guid)
Returns runs whose SourceRunId equals sourceRunId,
i.e. all re-runs derived from a given run. Used by the dashboard to render lineage.
public Task<IReadOnlyList<FlowRunRecord>> GetDerivedRunsAsync(Guid sourceRunId)
Parameters
sourceRunIdGuid
Returns
GetDispatchedStepKeysAsync(Guid)
Returns the set of step keys that have been dispatched (and not yet released) for a run. Used by the recovery service to avoid re-dispatching already-in-flight steps.
public Task<IReadOnlySet<string>> GetDispatchedStepKeysAsync(Guid runId)
Parameters
runIdGuid
Returns
GetRunControlAsync(Guid)
Returns the control record for the given run, or null if not found.
public Task<FlowRunControlRecord?> GetRunControlAsync(Guid runId)
Parameters
runIdGuid
Returns
GetRunDetailAsync(Guid)
Returns full run detail including all step records and their attempt history,
or null if no run with runId exists.
public Task<FlowRunRecord?> GetRunDetailAsync(Guid runId)
Parameters
runIdGuid
Returns
GetRunStatusAsync(Guid)
Returns the current overall status of the run ("Running", "Succeeded", etc.),
or null if the run does not exist.
public Task<string?> GetRunStatusAsync(Guid runId)
Parameters
runIdGuid
Returns
GetRunTimeseriesAsync(RunTimeseriesGranularity, DateTimeOffset, DateTimeOffset, Guid?)
Returns time-bucketed run counts and duration percentiles for the half-open
interval [since, until). Buckets that contain
no runs are still returned (with zero counts) so the caller can render a contiguous
timeline without gap-filling. When flowId is supplied, only runs
for that flow are included.
public Task<IReadOnlyList<RunTimeseriesBucket>> GetRunTimeseriesAsync(RunTimeseriesGranularity granularity, DateTimeOffset since, DateTimeOffset until, Guid? flowId = null)
Parameters
granularityRunTimeseriesGranularityHour or Day bucket size.
sinceDateTimeOffsetUTC start of the window (inclusive). Aligned to the granularity boundary.
untilDateTimeOffsetUTC end of the window (exclusive). Aligned to the granularity boundary.
flowIdGuid?Optional filter — when non-null, only runs for this flow are counted.
Returns
GetRunsAsync(Guid?, int, int)
Returns a page of run records, optionally filtered by flowId.
Results are ordered by start time descending.
public Task<IReadOnlyList<FlowRunRecord>> GetRunsAsync(Guid? flowId = null, int skip = 0, int take = 50)
Parameters
Returns
GetRunsPageAsync(Guid?, string?, int, int, string?)
Returns a paginated run list with total count, optionally filtered by flow, status, and free-text search.
public Task<(IReadOnlyList<FlowRunRecord> Runs, int TotalCount)> GetRunsPageAsync(Guid? flowId = null, string? status = null, int skip = 0, int take = 50, string? search = null)
Parameters
flowIdGuid?Restricts results to a single flow when set.
statusstringRestricts results to runs in the given status when set.
skipintNumber of leading rows to skip (offset pagination).
takeintMaximum number of rows to return.
searchstringFree-text term matched (case-insensitively) against run identity columns and the current step records (step key, error message, output JSON). Step attempt history is intentionally not searched — its output duplicates the current step row.
Returns
GetRunsPageAsync(Guid?, string?, int, int, string?, bool, DateTimeOffset?, DateTimeOffset?)
Tiered, time-bounded variant of GetRunsPageAsync(Guid?, string?, int, int, string?).
public Task<(IReadOnlyList<FlowRunRecord> Runs, int TotalCount)> GetRunsPageAsync(Guid? flowId, string? status, int skip, int take, string? search, bool deepSearch, DateTimeOffset? startedFrom = null, DateTimeOffset? startedTo = null)
Parameters
flowIdGuid?statusstringskipinttakeintsearchstringdeepSearchboolstartedFromDateTimeOffset?startedToDateTimeOffset?
Returns
Remarks
deepSearch: true (the behaviour of the five-argument overload) also matches the current
step records; deepSearch: false matches only the top-level run columns (id, flow name,
trigger key, status, background job id) — index-friendlier, suited to typeahead such as the
command palette. startedFrom / startedTo bound the scan to a start-time window
when set.
The default implementation delegates to the five-argument overload, so existing
IFlowRunStore providers keep compiling and stay correct (they simply do not get
the quick-search or time-window optimisations until they override this method).
GetStatisticsAsync()
Returns aggregate counts used by the dashboard overview panel.
public Task<DashboardStatistics> GetStatisticsAsync()
Returns
GetStepStatusesAsync(Guid)
Returns the current StepStatus for every step in the run.
public Task<IReadOnlyDictionary<string, StepStatus>> GetStepStatusesAsync(Guid runId)
Parameters
runIdGuid
Returns
MarkTimedOutAsync(Guid, string?)
Marks the run as timed out.
public Task<bool> MarkTimedOutAsync(Guid runId, string? reason)
Parameters
Returns
Remarks
Invoked from two places: lazily by the engine when a step is dispatched after the deadline has
passed, and proactively by the periodic timeout-enforcement hosted service
(FlowTimeoutEnforcementHostedService). Also sets the cancellation latch so in-flight
steps short-circuit on their next dispatch — a fresh execution window can be granted afterwards
via ExtendDeadlineAsync(Guid, DateTimeOffset?).
RecordSkippedStepAsync(Guid, string, string, string?)
Records a step as Skipped without executing it,
used when runAfter conditions cannot be satisfied.
public Task RecordSkippedStepAsync(Guid runId, string stepKey, string stepType, string? reason)
Parameters
Returns
RecordSkippedStepAsync(Guid, string, string, string?, string?)
Records a step as Skipped and persists a
WhenEvaluationTrace describing why a When
clause evaluated to false.
public Task RecordSkippedStepAsync(Guid runId, string stepKey, string stepType, string? reason, string? evaluationTraceJson)
Parameters
Returns
Remarks
Default implementation falls back to RecordSkippedStepAsync(Guid, string, string, string?) so existing custom storage providers continue to compile without modification.
RecordStepCompleteAsync(Guid, string, string, string?, string?)
Records the outcome of a step attempt: updates status, persists output JSON, and sets error message on failure.
public Task RecordStepCompleteAsync(Guid runId, string stepKey, string status, string? outputJson, string? errorMessage)
Parameters
Returns
RecordStepStartAsync(Guid, string, string, string?, string?)
Records the start of a step attempt: sets status to Running, persists inputs, and associates the Hangfire job ID.
public Task RecordStepStartAsync(Guid runId, string stepKey, string stepType, string? inputJson, string? jobId)
Parameters
Returns
ReleaseDispatchAsync(Guid, string, CancellationToken)
Removes the dispatch record for a step, allowing it to be re-dispatched. Called by the engine before rescheduling a Pending (polling) step.
public Task ReleaseDispatchAsync(Guid runId, string stepKey, CancellationToken ct = default)
Parameters
runIdGuidstepKeystringctCancellationToken
Returns
ReleaseStepClaimAsync(Guid, string)
Releases a previously-acquired step claim so a future TryClaimStepAsync(Guid, string) for the
same (runId, stepKey) can succeed. Called by the engine on Pending re-schedule and
retry paths, where the same logical step needs to run again.
public Task ReleaseStepClaimAsync(Guid runId, string stepKey)
Parameters
Returns
Remarks
Idempotent — calling for a key with no claim is a no-op. Default implementation is a no-op so existing custom runtime stores continue to compile; in that case retry/Pending paths behave as before v1.22 (the schedule-time claim was non-strict). New implementations should remove the claim row atomically.
RequestCancelAsync(Guid, string?)
Marks a cancellation request for the run. Steps check this flag before executing.
public Task<bool> RequestCancelAsync(Guid runId, string? reason)
Parameters
Returns
ResetCascadeSkippedDependentsAsync(Guid, IReadOnlyCollection<string>)
Clears cascade-skip records (PrerequisitesUnmet) for the
given step keys so the DAG planner re-evaluates them after a manual retry of an
upstream step. Removes the step row, claim row, and dispatch-ledger row for any
matching descendant — the attempt history (FlowStepAttempts) is preserved so
the dashboard still surfaces the prior "Skipped" attempt as audit trail.
public Task ResetCascadeSkippedDependentsAsync(Guid runId, IReadOnlyCollection<string> stepKeys)
Parameters
runIdGuidstepKeysIReadOnlyCollection<string>
Returns
Remarks
Only rows whose status is Skipped AND whose error message exactly matches
PrerequisitesUnmet are cleared. Steps skipped via
When-clause evaluation carry a different reason and are intentionally left
untouched. Idempotent — calling with keys that have no matching row is a no-op.
Default implementation is a no-op so external IFlowRunStore
implementations continue to compile; in that case the post-retry DAG advance
behaves as pre-fix (downstream steps stay Skipped).
RetryStepAsync(Guid, string)
Resets a step back to a re-runnable state so it can be re-enqueued by the retry flow.
Clears Running/Failed status and increments attempt count.
public Task RetryStepAsync(Guid runId, string stepKey)
Parameters
Returns
StartRunAsync(Guid, string, Guid, string, string?, string?, Guid?)
Creates a new run record in Running status and returns it.
Called once per TriggerAsync invocation.
public Task<FlowRunRecord> StartRunAsync(Guid flowId, string flowName, Guid runId, string triggerKey, string? triggerData, string? jobId, Guid? sourceRunId = null)
Parameters
flowIdGuidThe flow definition this run belongs to.
flowNamestringDisplay name of the flow at trigger time.
runIdGuidUnique identifier for this run, generated by the engine.
triggerKeystringThe manifest trigger key that fired (e.g.
"manual","schedule").triggerDatastringJSON-serialised trigger payload, or null.
jobIdstringRuntime job ID (e.g. Hangfire BackgroundJobId) for cross-referencing, or null.
sourceRunIdGuid?When this run was created via "Re-run all" on a previous run, the ID of that run; otherwise null.
Returns
TryClaimStepAsync(Guid, string)
Atomically claims a step for execution, returning true if this caller acquired the claim or false if another worker already claimed it.
public Task<bool> TryClaimStepAsync(Guid runId, string stepKey)
Parameters
Returns
Remarks
This is the primary guard against duplicate step execution. Since v1.22 the engine calls
this at the top of RunStepAsync (execute time) rather than at schedule time, so it
correctly prevents concurrent execution under at-least-once delivery — including the
Service Bus topic-broadcast case where a single dispatched message reaches multiple
subscriptions. Implementations must use an atomic compare-and-set or equivalent database
primitive. Pair with ReleaseStepClaimAsync(Guid, string) on retry / Pending
re-schedule paths so the SAME step can claim again on a fresh attempt.
TryRecordDispatchAsync(Guid, string, CancellationToken)
Atomically records that a step has been dispatched for execution. Returns true if this is the first dispatch for this step in this run; false if the step was already dispatched (idempotent guard — caller should skip).
public Task<bool> TryRecordDispatchAsync(Guid runId, string stepKey, CancellationToken ct = default)
Parameters
runIdGuidstepKeystringctCancellationToken
Returns
Remarks
Must use an atomic INSERT-if-not-exists primitive (SQL WHERE NOT EXISTS,
PostgreSQL ON CONFLICT DO NOTHING, or TryAdd(TKey, TValue)).
TryRegisterIdempotencyKeyAsync(Guid, string, string, Guid)
Atomically registers an idempotency key for the given run.
public Task<bool> TryRegisterIdempotencyKeyAsync(Guid flowId, string triggerKey, string idempotencyKey, Guid runId)