pub struct FilteredBatch<T, K> {
pub messages: Vec<T>,
pub dlq_entries: Vec<FilteredDlqEntry>,
pub drop_count: u64,
pub filtered_tokens: Vec<K>,
}transport only.Expand description
Result of partitioning a batch of messages through inbound filters.
Drop and DLQ messages are removed from messages; their commit tokens are
preserved in filtered_tokens. The engine does NOT send to DLQ directly
(transports hold no DLQ handle) – the caller routes dlq_entries.
Fields§
§messages: Vec<T>Messages that passed all filters.
dlq_entries: Vec<FilteredDlqEntry>Messages matched by filters with action: dlq. Caller routes to DLQ.
drop_count: u64Count of messages dropped (matched by action: drop filters).
filtered_tokens: Vec<K>Commit tokens of the messages removed by drop/dlq filters.
A filtered record WAS handled, so its source ack must still commit.
Dropping these tokens stalls the Kafka offset behind any all-filtered
stretch (replay storms + phantom KEDA lag) and leaks the Redis PEL
forever (unbounded growth + duplicate dead-letters on every restart). The
caller carries them into WorkBatch.commit_tokens so the block commit
covers them once inbound-DLQ routing succeeds.
Implementations§
Source§impl<T, K> FilteredBatch<T, K>
impl<T, K> FilteredBatch<T, K>
Sourcepub fn passthrough(messages: Vec<T>) -> Self
pub fn passthrough(messages: Vec<T>) -> Self
Create a FilteredBatch containing only passing messages (no filtering).
Used when there are no inbound filters configured.
Trait Implementations§
Auto Trait Implementations§
impl<T, K> Freeze for FilteredBatch<T, K>
impl<T, K> RefUnwindSafe for FilteredBatch<T, K>where
T: RefUnwindSafe,
K: RefUnwindSafe,
impl<T, K> Send for FilteredBatch<T, K>
impl<T, K> Sync for FilteredBatch<T, K>
impl<T, K> Unpin for FilteredBatch<T, K>
impl<T, K> UnsafeUnpin for FilteredBatch<T, K>
impl<T, K> UnwindSafe for FilteredBatch<T, K>where
T: UnwindSafe,
K: UnwindSafe,
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