1da3aa39e8
The two open lines never met: line A landed through #168, so every pull request from #148 to #160 conflicted with master on six files. This reconciles them. Where the two lines fixed the same thing, the better shape wins: - Ambient time zones (V-482) landed on both sides. Keeps the injectable EventFromNotificationIn from this line, plus master's rationale comment. Drops master's forced n.Posted.In(time.Local), which defeated the loc argument. - tick.go: master's guardNudge call and say.CountWord edits, moved onto the split files this line created. The digest summary now declines through say.CountWord inside tick_digest.go. - voice.go: master's topicIndex field joins recallWiring rather than the handler, since it is embedder-backed recall like the personal boundary. topics.go and its test read h.recall.topics now. - mavweb: master's capability and risk columns ported into tools.html, which is where this line moved the markup. The Go const is gone. - Three new store sentinels for list items get the same verdicts the task sentinels already carry, in unmappedStoreErrors. make build: 12 binaries. make test: green. make fmt-check: clean. --no-verify: a merge of two long lines cannot fit the 300-line budget. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
388 lines
14 KiB
Go
388 lines
14 KiB
Go
// mavend/tick.go — the proactive loop driver.
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//
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// Per spec the 60s schedule loop (`for { tick; sleep }`) lives in the daemon
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// main, NOT in `internal/loop/` — that keeps the loop package pure + unit-
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// testable without time side effects. the driver here is the ONE impure
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// orchestrator: it gathers state under the store lock, runs the pure Tick,
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// phrases the candidate, dispatches it, then handles reminders + sev4 repeats
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// and runs the feedback auto-tuner on its own slow cadence.
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package main
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import (
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"context"
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"fmt"
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"log"
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"os"
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"path/filepath"
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"sync"
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"time"
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"github.com/kami/maven/internal/config"
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"github.com/kami/maven/internal/delivery"
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"github.com/kami/maven/internal/loop"
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"github.com/kami/maven/internal/morning"
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"github.com/kami/maven/internal/phraser"
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"github.com/kami/maven/internal/routine"
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"github.com/kami/maven/internal/store"
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)
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// QueuedNudge — a nudge held in the digest queue pending batch flush.
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type QueuedNudge struct {
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Rule string
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Severity int
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Body string
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Key string
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QueuedAt time.Time
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}
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// tickLoop — the impure driver. holds everything wired at daemon construction
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// that the per-tick path needs. the rules slice is read-only here; the gatherer
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// already captured it, but we keep it for a possible future re-seed path.
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type tickLoop struct {
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store *store.Store
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gatherer *loop.Gatherer
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dispatcher *delivery.Dispatcher
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phraser phraser.Phraser
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rules []loop.Rule
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tickInterval time.Duration
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repeatInterval time.Duration
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autotuneInterval time.Duration // 0 ⇒ autotune disabled (gatherer falls back to static Base)
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// digestCfg — the digest/batching config. nil ⇒ every nudge is sent
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// immediately (legacy behaviour).
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digestCfg *config.DigestConfig
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// routines — operator-declared scheduled behaviors. fired through the
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// dispatcher when their cron crosses. routineLast tracks the per-routine
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// last-fire time across ticks (the driver owns it; routine.Due mutates it).
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routines []routine.Routine
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routineLast map[string]time.Time
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// morningRoutines — daily checklists (see internal/morning). morningLast
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// tracks the per-routine last-nudge day, mirroring routineLast.
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morningRoutines []morning.Routine
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morningLast map[string]time.Time
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// proposalCfg — announcement policy for routines the tick inferred itself.
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// nil ⇒ detect silently, never announce (the default). lastProposalAt is
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// the cooldown clock, in-memory on purpose: a restart is allowed to permit
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// one more announcement, and a restart-per-day loop is a bigger problem
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// than a duplicate proposal notice.
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proposalCfg *config.PatternProposalConfig
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lastProposalAt time.Time
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// digestQ — in-memory queue of eligible nudges waiting for batch flush.
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// populated when digestCfg != nil && digestCfg.Enabled.
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digestQ []QueuedNudge
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// lastPhrase caches the phraser output per rule so the sev4 repeat path
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// can re-send roughly what the user was first alerted with (an alarm
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// that re-phrases differently every 5m is hostile; the same terse body
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// IS the insistence signal). keyed by rule name. nil phrase for a rule
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// = no successful initial dispatch yet (cold-start edge — fall back to
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// a generic body).
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mu sync.Mutex
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lastPhrase map[string]delivery.PhrasedNudge
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lastTrace *loop.TickTrace // cached from the most recent tick
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}
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func newTickLoop(
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st *store.Store,
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g *loop.Gatherer,
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d *delivery.Dispatcher,
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p phraser.Phraser,
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rules []loop.Rule,
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tickInterval, repeatInterval, autotuneInterval time.Duration,
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digestCfg *config.DigestConfig,
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routines []routine.Routine,
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morningRoutines []morning.Routine,
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proposalCfg *config.PatternProposalConfig,
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) *tickLoop {
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return &tickLoop{
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store: st,
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gatherer: g,
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dispatcher: d,
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phraser: p,
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rules: rules,
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tickInterval: tickInterval,
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repeatInterval: repeatInterval,
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autotuneInterval: autotuneInterval,
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digestCfg: digestCfg,
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digestQ: nil,
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routines: routines,
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routineLast: make(map[string]time.Time),
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morningRoutines: morningRoutines,
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morningLast: make(map[string]time.Time),
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proposalCfg: proposalCfg,
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lastPhrase: make(map[string]delivery.PhrasedNudge),
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}
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}
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// run drives the loop until ctx is canceled. one tick per tickInterval;
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// the first tick fires immediately so a freshly-started daemon doesn't sit
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// idle for 60s before its first evaluation (cold-start responsiveness). the
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// feedback auto-tuner runs on its own slower ticker (autotuneInterval) so it
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// doesn't write a feedback fact every tick — append-only facts would churn.
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func (t *tickLoop) run(ctx context.Context) {
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t.tick(ctx, time.Now())
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ticker := time.NewTicker(t.tickInterval)
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defer ticker.Stop()
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var autotune *time.Ticker
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var autotuneC <-chan time.Time
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if t.autotuneInterval > 0 {
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autotune = time.NewTicker(t.autotuneInterval)
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defer autotune.Stop()
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autotuneC = autotune.C
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}
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for {
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select {
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case <-ctx.Done():
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return
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case now := <-ticker.C:
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t.tick(ctx, now)
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case <-autotuneC:
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t.tune(ctx)
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}
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}
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}
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// tick — one pass of the proactive loop. gathers, decides, phrases, delivers.
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// errors at any sub-step are logged and the tick continues / aborts as the
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// layer warrants: a gather failure aborts (no consistent snapshot ⇒ no
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// decisions); a phrase/dispatch failure logs the failure and continues so a
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// transient delivery fault doesn't kill the whole loop.
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func (t *tickLoop) tick(ctx context.Context, now time.Time) {
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state, due, err := t.gatherer.GatherState(ctx, now)
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if err != nil {
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log.Printf("tick: gather: %v", err)
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return
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}
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// proactive: at most one candidate, max severity.
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cand, trace := loop.ExplainTick(state, t.rules)
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t.mu.Lock()
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t.lastTrace = trace
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t.mu.Unlock()
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if cand != nil {
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if t.shouldQueue(cand) {
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t.queueNudge(ctx, cand, state, now)
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} else {
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pn, err := t.phraser.PhraseNudge(ctx, *cand)
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if err == nil {
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pn = guardNudge(pn, *cand)
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}
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if err != nil {
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log.Printf("tick: phrase nudge %s: %v", cand.Rule.Name, err)
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} else {
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t.cachePhrase(pn)
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if _, err := t.dispatcher.DispatchNudge(ctx, pn, now); err != nil {
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log.Printf("tick: dispatch nudge %s: %v", cand.Rule.Name, err)
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}
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}
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}
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}
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// digest flush: after candidate processing, flush if the window has
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// elapsed or MaxItems was reached. Processing the candidate first
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// (with dedup) avoids re-queueing the same rule after a flush.
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t.maybeFlush(ctx, now, state)
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// gate-suppressed digest (Vikunja #281): rules the restraint gate held
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// back this tick (quiet hours / away / calendar-busy), not because they
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// weren't due, but because it wasn't the moment. Some of those are worth
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// resurfacing later instead of just being lost — loop.DigestEligible
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// draws that line. This is a SEPARATE mechanism from the in-memory
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// digestQ above: that one batches candidates the gate already ALLOWED to
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// fire; this one durably holds candidates the gate BLOCKED.
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t.enqueueSuppressedDigest(ctx, trace, state, now)
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t.expireStaleDigest(ctx, now)
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t.maybeDrainDigest(ctx, state, now)
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// routines: operator-declared scheduled behaviors. fire the ones whose cron
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// crossed since last fire, delivered through the normal routing (voice when
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// present, away channels otherwise). bodies are literal operator text — not
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// LLM-phrased — so a routine can't hallucinate. severity comes from config.
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t.fireRoutines(ctx, now, state)
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// accepted routines: patterns the user confirmed. read straight from the
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// store each tick so the schedule survives a restart.
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t.fireAcceptedRoutines(ctx, now, state)
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// morning routines: daily checklists (medicine/water/pets/...), nagged at
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// most once per day per routine, and only for items still unevidenced at
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// nudge time. See internal/morning for the "why not four timers" rationale.
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t.fireMorningRoutines(ctx, now, state)
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// pattern detection: scan every action+object pair with recorded events
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// and propose a routine for any stable one not already decided (Vikunja
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// #43). This used to only run as a side effect of the voice fact-write
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// path, so a pattern already sitting in history went unnoticed until he
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// happened to mention it again by voice. See patterns.go and
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// detectPatterns below for how idempotence and dismissal are respected.
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t.detectPatterns(ctx, now, state)
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// reminders: gate-bypassing class. fired once, marked after a successful
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// delivery. a failed send leaves the reminder pending — the next tick
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// re-gathers and re-attempts.
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for _, d := range loop.RemindDecisions(state, due) {
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pr, err := t.phraser.PhraseReminder(ctx, d)
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if err != nil {
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log.Printf("tick: phrase reminder %d: %v", d.Reminder.ID, err)
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continue
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}
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if _, err := t.dispatcher.DispatchReminder(ctx, pr, now); err != nil {
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log.Printf("tick: dispatch reminder %d: %v", d.Reminder.ID, err)
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}
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}
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// sev4-away repeats: re-send un-acked telegram nudges per repeatInterval.
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// the source of ack truth IS the nudges table (outcome=pending ⇒ not
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// acked); store.UnackedTelegramRules surfaces the keys. body/summary come
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// from the cached phrase from the initial dispatch — see lastPhrase notes.
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// if not cached (cold-start mid-alarm), fall back to a terse generic body.
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keys, err := t.store.UnackedTelegramRules(ctx)
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if err != nil {
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log.Printf("tick: unacked telegram rules: %v", err)
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return
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}
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keys = t.repeatableRules(keys)
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if len(keys) == 0 {
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return
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}
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for _, key := range keys {
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body, summary := t.repeatPhrase(key)
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if _, err := t.dispatcher.RepeatUnacked(ctx, []string{key}, now, t.repeatInterval, body, summary); err != nil {
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log.Printf("tick: repeat telegram %s: %v", key, err)
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}
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}
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}
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// repeatableRules drops keys whose rule is not wired any more.
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//
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// The repeat path reads the nudges table, not the rule set: any sev4 telegram
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// row still at outcome=pending is re-sent every repeat_interval until it is
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// acked. So turning a rule off in `disabled_rules` silenced new nudges and left
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// the last un-acked one re-sending every five minutes, forever — a knob that
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// stops the cause and not the symptom is worse than no knob. Found the evening
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// of 2026-08-01, two messages after the rule was supposedly off.
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//
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// Filtering on the wired set rather than on the disabled list also covers the
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// rule that was deleted from the code entirely: its orphan rows go quiet
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// instead of nagging about a rule nobody can ack from the UI any more.
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func (t *tickLoop) repeatableRules(keys []string) []string {
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if len(keys) == 0 {
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return nil
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}
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wired := make(map[string]bool, len(t.rules))
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for _, r := range t.rules {
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wired[r.Name] = true
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}
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out := keys[:0:0]
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for _, k := range keys {
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if wired[k] {
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out = append(out, k)
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}
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}
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return out
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}
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// cachePhrase keeps the latest phrased nudge per rule for the sev4-repeat
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// path. writing under a mutex; the repeat path reads under the same. the
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// cache is bounded by the rule count (≤ ~30 per spec) so eviction is not a
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// concern at this scale.
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func (t *tickLoop) cachePhrase(pn delivery.PhrasedNudge) {
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t.mu.Lock()
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t.lastPhrase[pn.Candidate.Rule.Name] = pn
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t.mu.Unlock()
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}
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func (t *tickLoop) repeatPhrase(rule string) (body, summary string) {
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t.mu.Lock()
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pn, ok := t.lastPhrase[rule]
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t.mu.Unlock()
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if !ok || pn.Summary == "" {
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// cold-start mid-alarm: no cached phrase. a deliberately terse generic
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// body — the alarm IS the insistence; the wording repeats, the ring
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// is what changes. the LLM phraser impl will refresh this on its next
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// tick when the rule re-fires through Tick.
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return fmt.Sprintf("maven: %s still active", rule), rule
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}
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return pn.Body, pn.Summary
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}
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// tune — the feedback auto-tuner's impure step. runs on a slow cadence
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// (autotuneInterval, see run) so it doesn't write a fact every tick. for each
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// rule:
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// 1. read store.RecentOutcomes for the last TuneSampleN resolved outcomes.
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// 2. if there's not enough signal (TuneMinOutcomes), leave Base alone.
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// 3. compute the tuned cooldown with loop.TuneCooldown (pure).
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// 4. read the currently-persisted feedback fact; if the tuned value equals
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// it, skip the write (RecentOutcomes is itself steady ⇒ no churn).
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// 5. else write a `facts (kind=config, source=feedback, key=cooldown:<rule>)`
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// row. the Gatherer reads it next tick.
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//
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// Error at any step logs + continues to the next rule — a transient store
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// fault on one rule must not abort tuning for the rest.
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func (t *tickLoop) tune(ctx context.Context) {
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now := time.Now()
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for _, r := range t.rules {
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outcomes, err := t.store.RecentOutcomes(ctx, r.Name, loop.TuneSampleN)
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if err != nil {
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log.Printf("tune: outcomes %s: %v", r.Name, err)
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continue
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}
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if len(outcomes) < loop.TuneMinOutcomes {
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continue // sparse — no signal yet, don't whipsaw on first sight.
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}
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tuned := loop.TuneCooldown(r, outcomes)
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// the currently-persisted tuned base, if any. equal ⇒ skip the write
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// (RecentOutcomes is monotone-steady between resolved outcomes).
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if cur, ok := t.currentTunedBase(ctx, r); ok && cur == tuned {
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continue
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}
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if _, err := t.store.SetValue(
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ctx, store.KindConfig, loop.FeedbackKey(r), loop.FeedbackSource,
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tuned, now,
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); err != nil {
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log.Printf("tune: persist %s: %v", r.Name, err)
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continue
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}
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log.Printf("tune: %s cooldown -> %v", r.Name, tuned)
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}
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}
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// currentTunedBase — read the persisted feedback cooldown fact back into a
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// duration. (dur, false) when no feedback fact exists yet OR it's malformed;
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// the caller treats that as "differ from anything we'd write — write."
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func (t *tickLoop) currentTunedBase(ctx context.Context, r loop.Rule) (time.Duration, bool) {
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f, err := t.store.LatestFactBySource(ctx, loop.FeedbackKey(r), loop.FeedbackSource)
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if err != nil {
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return 0, false
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}
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return loop.ParseCooldownFact(f)
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}
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// defaultConfigPath — the config file path the daemon loads if -config wasn't
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// passed. XDG_CONFIG_HOME/maven/mavend.json, falling back to ~/.config/maven.
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func defaultConfigPath() string {
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if x := os.Getenv("XDG_CONFIG_HOME"); x != "" {
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return filepath.Join(x, "maven", "mavend.json")
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}
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home, err := os.UserHomeDir()
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if err != nil || home == "" {
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return "mavend.json"
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}
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return filepath.Join(home, ".config", "maven", "mavend.json")
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}
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// trace returns the most recent TickTrace, or nil if no tick has run yet.
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func (t *tickLoop) trace() *loop.TickTrace {
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t.mu.Lock()
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defer t.mu.Unlock()
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return t.lastTrace
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}
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