Root cause: fn* multi-arity detection checks (array? (in form 1)) — defprotocol used @[...] for args, triggering multi-arity path that treated the body form as a second arity pair. Fixes applied: - defprotocol: change fn* args from @[...] to [...] (tuple) so single-arity fn* path is used with [this & rest-args] - defprotocol: remove quote wrappers from protocol-dispatch call (protocol-name and method-name passed directly as symbols) - extend-type/extend-protocol: remove quote wrappers from register-method call (symbols passed directly, not via quote) - protocol-dispatch: use (in form ...) directly for proto/method symbols (no eval-form needed after quote removal) - satisfy?: extract name string from protocol value's :name field (which is a symbol struct, not a plain string) - make-reified: remove spurious (apply fn []) call - core-reify: fix (keyword struct) → extract :name string first - core-extend-protocol: handle single method spec vs multi 5 test sections (35-39) covering: defprotocol, extend-type, extend-protocol, satisfies?, reify — all pass 315 ok, 2 fail (pre-existing, unchanged)
50 lines
2.1 KiB
Text
50 lines
2.1 KiB
Text
# Phase 12: Protocol System Tests
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(use ../src/jolt/api)
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(defn ct-eval [ctx s] (eval-string ctx s))
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(print "35: defprotocol...")
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(let [ctx (init)]
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(ct-eval ctx "(defprotocol Greet (greet [this]))")
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(let [p (ct-eval ctx "Greet")]
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(assert (not (nil? p)) "protocol var exists")
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(assert (= :jolt/protocol (get p :jolt/type)) "protocol type tag")
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(assert (get (get p :methods) :greet) "protocol has greet method"))
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(assert (or (function? (ct-eval ctx "greet")) (cfunction? (ct-eval ctx "greet"))) "method fn exists"))
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(print " passed")
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(print "36: extend-type...")
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(let [ctx (init)]
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(ct-eval ctx "(deftype Person [name])")
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(ct-eval ctx "(defprotocol Namable (get-name [this]))")
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(ct-eval ctx "(extend-type Person Namable (get-name [this] (.-name this)))")
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(assert (= "Alice" (ct-eval ctx "(get-name (Person. \"Alice\"))")) "extend-type works"))
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(print " passed")
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(print "37: extend-protocol...")
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(let [ctx (init)]
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(ct-eval ctx "(deftype Dog [breed])")
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(ct-eval ctx "(deftype Cat [color])")
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(ct-eval ctx "(defprotocol Animal (speak [this]))")
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(ct-eval ctx "(extend-protocol Animal
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Dog (speak [this] (str \"woof from \" (.-breed this)))
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Cat (speak [this] (str \"meow from \" (.-color this))))")
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(assert (= "woof from poodle" (ct-eval ctx "(speak (Dog. \"poodle\"))")) "dog speak")
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(assert (= "meow from black" (ct-eval ctx "(speak (Cat. \"black\"))")) "cat speak"))
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(print " passed")
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(print "38: satisfies?...")
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(let [ctx (init)]
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(ct-eval ctx "(deftype Point [x y])")
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(ct-eval ctx "(defprotocol Locatable (location [this]))")
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(ct-eval ctx "(extend-type Point Locatable (location [this] [(.-x this) (.-y this)]))")
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(assert (= true (ct-eval ctx "(satisfies? Locatable (Point. 3 4))")) "satisfies? true")
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(assert (= false (ct-eval ctx "(satisfies? Locatable {:x 1})")) "satisfies? false"))
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(print " passed")
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(print "39: reify...")
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(let [ctx (init)]
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(ct-eval ctx "(defprotocol Stringable (to-str [this]))")
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(assert (= "works" (ct-eval ctx "(to-str (reify Stringable (to-str [this] \"works\")))")) "reify single method"))
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(print " passed")
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(print "\nAll Phase 12 tests passed!")
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