Chez parity: trailing-apostrophe symbols + arglist return hints (jolt-vgrp, jolt-5540)
Two Chez reader bugs, both JVM-parity gaps: inc'/+'/foo' (trailing apostrophe) were mis-read as a symbol followed by a quote macro, because the reader treated ' as a terminator. In Clojure ' is a NON-terminating macro char (constituent after the first char). Since the seed is minted on Chez, (def inc' inc) became (def inc 'inc), clobbering inc's var cell with its own symbol -- so (var-get (var inc)) returned the symbol, not the fn. Drop ' from the token terminator set; a leading ' still quotes. ^bytes [b] / ^String [x y] return-type hints: the Chez reader lowered ^meta on a collection to a (with-meta vec meta) form, but emitted a QUALIFIED clojure.core/with-meta while the Janet reader emits a bare with-meta -- so the fn/defn macros' unwrap logic (matching the bare head) slipped past it and choked on a non-vector arglist. Emit bare with-meta to match Janet, and unwrap a (with-meta <vec> _) arglist in analyze-fn as a backstop. Re-minted the seed. zero-janet 2699, prelude 2652, Janet gate 155/0, fixpoint 10/10, bootstrap 6/6, all 0 new divergences.
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5 changed files with 53 additions and 25 deletions
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@ -136,11 +136,28 @@
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;; but keeps a fixed arity a nil-free struct rather than a phm.
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(if rst (assoc arity :rest rst) arity)))
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;; A reader that lowers ^meta on a collection to a runtime (with-meta <coll> <meta>)
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;; form (the Chez data reader) wraps an arglist vector carrying a return-type hint
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;; (^bytes [b] / ^String [x y]). Unwrap to the underlying vector so fn parsing sees
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;; the params — the hint is ignored at runtime. Only the (with-meta <vec> _) shape
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;; matches, so a real arity clause (head is a vector) and the Janet reader's
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;; meta-on-tuple (already a vector) pass through unchanged.
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(defn- strip-arglist-meta [form]
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(if (form-list? form)
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(let [es (vec (form-elements form))]
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(if (and (= 3 (count es))
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(form-sym? (first es))
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(= "with-meta" (form-sym-name (first es)))
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(form-vec? (nth es 1)))
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(nth es 1)
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form))
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form))
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(defn- analyze-fn [ctx items env]
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(let [named (form-sym? (nth items 1))
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fn-name (when named (form-sym-name (nth items 1)))
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rest-items (if named (drop 2 items) (drop 1 items))
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first* (first rest-items)]
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first* (strip-arglist-meta (first rest-items))]
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(cond
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(form-vec? first*)
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(fn-node fn-name [(analyze-arity ctx first* (rest rest-items) env fn-name)])
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@ -148,7 +165,7 @@
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(fn-node fn-name
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(mapv (fn [clause]
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(let [cl (vec (form-elements clause))]
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(analyze-arity ctx (first cl) (rest cl) env fn-name)))
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(analyze-arity ctx (strip-arglist-meta (first cl)) (rest cl) env fn-name)))
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rest-items))
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:else (uncompilable "fn: bad params"))))
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