The partial graph is the caller's self-contained view of the world — so
the time belongs in it. partialGraph.now becomes the evaluation clock for
that check (TTL gates, proof expiry, decay all honor it), with an
explicit options.now taking precedence. The explain rerun replays the
SAME partial graph object and reproduces the original decision; the
serializer records request.temporal.now for the record.
Pins: partialGraph.now driving a challenge decision both sides of the
window, the explicit-override precedence, and the explain rerun with the
same object.
The errors-skill's two-pass model applied without a journal: the caller
owns the temporal context. Every decision-flipping temporal feature (the
clock behind TTL gates, challenge-proof expiry, value decay) is now
parameterized as options.now, so an explain rerun that replays the
original temporal parameters reproduces the original decision exactly.
Threaded now through: the comparator's operand value paths
(_getCachedDirectValue/_extractValues/isWithinTTL), the challenge proof
lookup, and the multi_hop value collection (isWithinTTL + blur). All four
result caches bypass cached decisions when the clock is pinned (rule-
result cache, the checker's rule/direct caches, and the comparator's
derived operand cache) — interleaved pinned-clock checks are per-time
with no cross-contamination.
The explain serializer records request.temporal.now so the caller knows
exactly what to replay. The happy path stays minimal and fast (no now ->
no parameter, no cache changes); the rerun (explain with the temporal
context) carries the full diagnostics.
Pins: interleaved fresh/expired/expired-again comparator checks, the
explain replay of both decisions + the recorded temporal context, and
challenge-proof expiry replay.
The persistence probe found three silent-loss defects in the snapshot
round trip: relation validity labels (finite_sample downgraded to
heuristic after save/load!), decay configs, and the value manager's
per-relation TTL settings all vanished. The restored arbiter built its
indices directly from the condensed graph, whose edge channel carries
possibility/reliability/value only.
Format version 2 now carries per-relation metadata (validity, decayConfig)
and the valueTtls table in the snapshot payload; both the snapshot-access
layer and the CondensedGraphIndices build merge the metadata back, so a
restored arbiter is lossless end to end. Version 1 buffers are rejected
with the existing clean version error.
Pinned: a persistence round-trip test asserting validity label, decay
config, TTL, and the restored check's validity label. Suites: rigor
207/0, full 809/747/0.
Per the trust-boundary direction (the caller owns evidence validation):
- Explicit possibilistic semantics module (src/core/possibility.js): the
single authoritative home for what each operator means (max = disjunctive
already-valid; min = unvalidified conjunctive ranking with the K-
validification and surfaced conflict mass; product = Thm-4 heuristic;
interior OWA = non-maxitive heuristic; reliability = adaptation, never
conflated with plausibility).
- Provenance is opt-in (re-entrant tracing practice): default check
results carry only {label, operator, regime}; conflictMass,
validifiedPossibility, sources, and nonMaxitive appear only under
includeMeta and on the explain surface. The direct-check cache now
caches only the meta-less form — includeMeta callers always get a fresh
full evaluation (previously a cached minimal result was served for
includeMeta requests, silently stripping detail).
- Audit affordance: new Arbiter({ audit }) emits one record per check
(decision, possibility, binary, partialGraphUsed, validityLabel,
sources). The engine stores nothing — the caller owns persistence;
zero cost when the hook is absent (and the full validity is forced only
on audit-enabled deployments).
- DoS hardening: partial-graph size limits are enforced BEFORE the
context allocation (the caller-supplied overlay is the per-check
allocation point); the CondensedGraphBinary reader gained full bounds
guards so malformed snapshot buffers fail with clean errors instead of
RangeError crashes or oversized allocations.
- New security-affordance pins: gating, audit records, and pre-allocation
limits.
Adds an epistemic validity layer in the spirit of the zig-contour fusion
spec: every check result now carries a validity block {label, operator,
regime, sources, conflictMass, validifiedPossibility, nonMaxitive}.
- Relations accept a validity label (default heuristic = unlabeled input).
- Labels propagate through fusion: identity/max preserve the weakest
source label (max is already valid under arbitrary dependence); min
(conjunctive: intersection, chain, TTU, multi_hop, parent) is
approximate at best, surfaces the conflict mass (1 - possibility) that
was previously dropped, and exposes the arbitrary-regime validification
min(1, K*gamma); product-style operators (exclusion, defeasible) and
interior OWA averaging are always heuristic, with nonMaxitive flagged.
- Reliability and validity are now explicitly distinct: reliability stays
the scalar confidence adaptation; validity tracks the epistemic label.
- The hottest paths attach a shared frozen default block instead of
allocating (perf A/B shows no regression: ~300k ops/s direct both ways).
- Pre-existing fixes surfaced while wiring: the array-form logical config
dropped top-level aggregator/owaWeights (average union compiled as max),
and _createStandardResult dropped unknown fields (validity never
survived rule results).
New campaign validity-parity.test.js pins the label taxonomy, conflict
mass, validification, weakest-propagation, and the reliability/validity
separation. Suites: rigor 203/0, full 803/741/0.