505eb8484e
Post-audit field test of the operator-routing-eq-ord milestone (closed via5170b6a+4d45bc6). Five `.ail` Surface-form fixtures under `examples/fieldtest/` written by an LLM-author working strictly from the design/ ledger + public examples (no `crates/` / `runtime/` / `bench/` reads — Iron Law honoured): eqord_1_fizzbuzz.ail — FizzBuzz [1..15] via (app eq …) on Int+Str and (app gt …) on Int eqord_2_rational_eq.ail — data Rational + user-instance (class prelude.Eq) by cross-mult; inner Int-eq nested in instance body eqord_3_newton_sqrt.ail — Newton's method via float_lt (convergence + fabs) and float_eq (zero-guard) eqord_4_float_ord_must_fail.ail — (app lt 1.5 2.5) must reject at typecheck with float_lt hint eqord_5_float_eq_must_fail.ail — (app eq 1.5 1.5) must reject at typecheck with float_eq hint Findings: [working] x4 — primitive Eq/Ord at Int/Bool/Str/Unit; user-ADT Eq with nested primitive eq calls; Float named-fn surface (float_eq/float_lt/etc.); NoInstance Eq/Ord Float diagnostic with float_eq / float_lt addendum. The milestone's central thesis (class-dispatch is the only comparison surface; Float opts out via named fns) is LLM-natural — every (app eq …) / (app gt …) / (app float_lt …) call I wrote compiled on first try with no diagnostic friction. [spec_gap] x1 — `docs/specs/2026-05-20-operator-routing-eq-ord.md:113` north-star example writes bare `(class Eq)` where the language requires `(class prelude.Eq)`. An LLM-author who copies the spec verbatim hits `bare-cross-module-class-ref`. The milestone spec is the highest-information reference an LLM-author consults; the bare-vs-qualified drift mis-primes the pattern. Resolution: tighten-the-design-ledger — fix the spec example inline (separate follow-up commit). The existing `examples/eq_ord_user_adt.ail` already uses the qualified form, so the corpus is consistent; only the spec drifted. [friction] x1 — `(app compare 1.5 2.5)` at Float fires the same diagnostic as `(app lt …)` at Float, naming `float_eq / float_lt (and siblings)` as the alternative. But the alternatives don't return Ordering; an LLM-author who wanted three-way LT/EQ/GT can't satisfy that with float_lt + float_eq alone. The spec (lines 433-436) acknowledged this case in commentary — "no float_compare ships; build it from float_lt + float_eq if you need three-way" — but the diagnostic doesn't say so. Resolution: file as Gitea backlog issue for a follow-up tidy iteration (codegen-side: branch the Float-aware NoInstance addendum on the called method-name; the `compare` arm gets a one-sentence "no float_compare; build it from float_lt + float_eq if you need three-way" addendum). Status: clean — no bugs, no blockers, the milestone surface is solidly LLM-usable. Both non-working findings are tractable forward-fixes that don't disturb the milestone's core contracts. Spec: docs/specs/2026-05-21-fieldtest-operator-routing-eq-ord.md
62 lines
2.1 KiB
Plaintext
62 lines
2.1 KiB
Plaintext
; Fieldtest fixture — Axis 3: Float comparison via the named-fn surface.
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;
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; Newton's method for sqrt: iterate x_{k+1} = (x_k + n/x_k) / 2 until
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; |x_{k+1} - x_k| < tol
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; Reaches for `float_lt` (loop convergence) and `float_eq` (zero-arg
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; guard against pathological 0.0 input). Also exercises Float
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; arithmetic + Show Float via `print`.
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;
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; The interesting bit for the milestone is that there is no
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; polymorphic `eq` / `lt` at Float — those would fail at typecheck
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; with `NoInstance Eq Float`. The LLM-author has to reach for the
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; named family `float_eq` / `float_lt` / `float_gt`. The shape mirrors
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; how Rust's `f64::abs` / partial_cmp guides users toward bespoke
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; Float-aware methods.
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;
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; abs implemented inline as `if x < 0 then -x else x` using float_lt.
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;
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; Expected stdout (one per line):
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; 2 (sqrt 4.0) ; 2.0
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; ~3.16 (sqrt 10.0) ; 3.1622776601683795 — exact IEEE
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; 0 (sqrt 0.0) ; 0.0, short-circuit
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; 1 (sqrt 1.0) ; 1.0
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(module eqord_3_newton_sqrt
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(fn fabs
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(doc "Float absolute value via the named-fn comparison surface.")
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(type (fn-type (params (con Float)) (ret (con Float))))
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(params x)
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(body
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(if (app float_lt x 0.0)
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(app - 0.0 x)
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x)))
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(fn iterate
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(doc "Tail-recursive Newton iteration. Stops when |xnew - x| < tol.")
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(type (fn-type (params (con Float) (con Float) (con Float)) (ret (con Float))))
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(params n x tol)
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(body
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(let xnew (app / (app + x (app / n x)) 2.0)
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(if (app float_lt (app fabs (app - xnew x)) tol)
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xnew
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(tail-app iterate n xnew tol)))))
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(fn sqrt
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(doc "sqrt n via Newton with initial guess 1.0 and tolerance 1e-10. Returns 0.0 for n == 0.0; assumes n >= 0.")
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(type (fn-type (params (con Float)) (ret (con Float))))
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(params n)
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(body
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(if (app float_eq n 0.0)
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0.0
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(app iterate n 1.0 0.0000000001))))
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(fn main
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(type (fn-type (params) (ret (con Unit)) (effects IO)))
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(params)
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(body
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(seq (app print (app sqrt 4.0))
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(seq (app print (app sqrt 10.0))
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(seq (app print (app sqrt 0.0))
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(app print (app sqrt 1.0))))))))
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