| Commit message (Collapse) | Author | Age | Files | Lines |
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Widen Validate.run to take the rite's sanctoral layer alongside the rite
itself (Calendar.year needs both), and add five checks over the fully
resolved liturgical year, on top of the existing temporal-only pass:
- observed: a day's observed celebration never also appears among that
same day's own commemorations/omissions.
- lost: no sanctoral entry is silently dropped. Per slug, the number of
times it is actually sighted (observed + commemorations + omitted,
summed over the year) must never fall below the number of times its
own Date_spec resolves within the year's span -- also fires if
resolving the year raises at all, the most total form of loss.
- duplicated: the same per-slug count must never exceed the number of
Date_spec resolutions either. Deliberately NOT "no slug appears
twice": a fixed date can legitimately resolve twice in the ~20% of
liturgical years whose 371-day span reaches it on both ends (30
November/St Andrew is the worked example in validate.mli).
- unconverged: no day's omitted reason indicates Calendar's placement
pass hit its round guard before reaching a fixed point.
- admission: the rite's own rules.admit is a fixed point on what it
already admitted -- the rite-agnostic form of "the admission limit
was not exceeded" available without embedding a rite's own numeric
caps (RG 111's, for EF) into kernel code.
Each check has a dedicated negative fixture in the synthetic rite
(test_validate.ml), hand-traced against Calendar's actual resolution
mechanics before writing the assertion, and verified to fail for the
right reason against the code before this change. One pair
(unconverged/duplicated) is not fully independent: hitting the round
guard genuinely also trips duplicated, a real consequence of Calendar's
own accounting once a candidate is simultaneously sighted at its
permanent natural date and wherever the last placement round left it --
documented in guard_rules's own comment, not papered over.
test_validate.ml's ef_rite/run now use the real Rite_ef.context and the
real bootstrapped data/ef layer (Precedence_ef and the sanctoral
bootstrap did not exist when this scaffolding was first written) rather
than the earlier placeholder rules. Validate is clean across the whole
1583..9999 domain against real EF data except the one already-documented
year-9999 truncation case (test_year_9999_does_not_raise).
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Validate took four loose arguments that had to come from the same rite with
nothing enforcing it, and Calendar is about to add more. Bundling makes a
mismatched assembly unrepresentable through the normal path.
season_runs replaces the hardcoded assumption that every season occupies exactly
one unbroken run. That holds for the 1962 rite but is false for the modern
form's Ordinary Time, which is one season in two runs -- as written the check
would have reported a false failure every year for the second rite.
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Validate.run ~year:9999 raised (year_start (year + 1) asked year_start
for civil year 10000, out of the kernel's 1583..9999 domain), even
though 9999 is itself in range and kernel computation must never raise
on in-range input; ~year:9998 already returned zero failures. run now
clamps its scan to 31 December 9999 instead of computing year_start
(year + 1) when year is the domain maximum, and validates the
resulting truncated final liturgical year rather than not being able
to run it at all.
The design spec's validation §5 lists eight checks; only five were
implemented (coverage, seasons, weeks, weekday, closure). The two
missing were a real gap, not just a documentation slip:
- §5.7 anchor agreement. All of an EF year's Easter-derived and fixed
named days were pinned only by point assertions for 2026. run now
takes an ~anchors:(int -> (string * Date.t) list) parameter -- the
rite's own independent restatement of those dates, paired with the
slug each should carry, not derived from temporal itself -- and
checks that temporal agrees on every one of them. Temporal_ef.anchors
supplies EF's list. Kept rite-agnostic: the anchor list comes from
the rite argument, not the kernel.
- §5.8 determinism. run now calls temporal a second time for every
date and checks the result is structurally equal to the first.
Also, finding 8: the rank/season closure checks compare vocab entries
via their _to_string images, which is only sound if those images are
injective. run now checks List.map rank_to_string ranks and
List.map season_to_string seasons for duplicates up front and reports
a "vocab" failure if either collapses two distinct values to the same
string, rather than relying on that injectivity unasserted.
Test-quality fixes to the existing synthetic fixture, found while
adding coverage for the above: the fixture's own comment claimed its
mutation target (2026-03-15) was "not a Sunday" and "sits safely
mid-run" -- it is a Sunday, which made the coverage/week mutations
cascade further than documented even though the assertions still
target specific check labels. Moved to a genuine mid-week day
(2026-03-17) and the comment corrected. extreme_years's own test
required only "found at least one" of the two Easter-extreme years;
tightened to require both, since both genuinely exist in 1583..2500.
Covering tests: test_year_9999_does_not_raise (would error under the
old code; the fix is pinned by calling run 9999 directly with no try,
plus asserting the truncated year is reported via an ordinary
"seasons" failure, not silently or via coverage); anchor-clean and
anchor-fires cases on the synthetic rite; a determinism-fires case
using a target date whose temporal alternates what it returns across
successive calls; two vocab-injectivity-fires cases (collapsed rank
strings, collapsed season strings).
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Coverage, season contiguity and completeness, Sunday-aligned week numbering,
slug well-formedness, weekday agreement and vocabulary closure.
Checks run over a liturgical year rather than a civil one, since Christmastide
straddles January and would otherwise appear to recur.
Run against EF temporal for landmark years, both Easter extremes, and 200
random years across 1583..9998 -- the property layer is how confidence reaches
past the oracle horizon.
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