643 lines
18 KiB
Plaintext
643 lines
18 KiB
Plaintext
# A tree walk interpreter for ludus
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# for repl imports
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(try (os/cd "janet") ([_] nil))
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(import ./base :as b)
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(var interpret nil)
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(var match-pattern nil)
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(defn- todo [msg] (error (string "not yet implemented: " msg)))
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(defn- resolve-name [name ctx]
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# (print "resolving " name " in:")
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# (pp ctx)
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(when (not ctx) (break :^not-found))
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(if (has-key? ctx name)
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(ctx name)
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(resolve-name name (ctx :^parent))))
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(defn- match-word [word value ctx]
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(def name (word :data))
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# (print "matched " (b/show value) " to " name)
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(set (ctx name) value)
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{:success true :ctx ctx})
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(defn- typed [pattern value ctx]
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(def [type-ast word] (pattern :data))
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(def type (type-ast :data))
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(if (= type (b/ludus/type value))
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(match-word word value ctx)
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{:success false :miss [pattern value]}))
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(defn- match-tuple [pattern value ctx]
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(when (not (tuple? value))
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(break {:success false :miss [pattern value]}))
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(def val-len (length value))
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(var members (pattern :data))
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(def patt-len (length members))
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(when (empty? members)
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(break (if (empty? value)
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{:success true :ctx ctx}
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{:success false :miss [pattern value]})))
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(var splat nil)
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(def splat? (= :splat ((last members) :type)))
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(when splat?
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(when (< val-len patt-len)
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(print "mismatched splatted tuple lengths")
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(break {:success false :miss [pattern value]}))
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(print "splat!")
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(set splat (last members))
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(set members (slice members 0 (dec patt-len))))
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(when (and (not splat?) (not= val-len patt-len))
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(print "mismatched tuple lengths")
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(break {:success false :miss [pattern value]}))
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(var curr-mem :^nothing)
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(var curr-val :^nothing)
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(var success true)
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(for i 0 (length members)
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(set curr-mem (get members i))
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(set curr-val (get value i))
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(print "in tuple, matching " curr-val " with ")
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(pp curr-mem)
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(def match? (match-pattern curr-mem curr-val ctx))
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(pp match?)
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(when (not (match? :success))
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(set success false)
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(break)))
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(when (and splat? (splat :data))
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(def rest (array/slice value (length members)))
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(match-word (splat :data) rest ctx))
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(if success
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{:success true :ctx ctx}
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{:success false :miss [pattern value]}))
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(defn- match-list [pattern value ctx]
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(when (not (array? value))
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(break {:success false :miss [pattern value]}))
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(def val-len (length value))
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(var members (pattern :data))
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(def patt-len (length members))
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(var splat nil)
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(def splat? (= :splat ((last members) :type)))
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(when splat?
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(when (< val-len patt-len)
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(print "mismatched splatted list lengths")
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(break {:success false :miss [pattern value]}))
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(print "splat!")
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(set splat (last members))
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(set members (slice members 0 (dec patt-len))))
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(when (and (not splat?) (not= val-len patt-len))
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(print "mismatched list lengths")
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(break {:success false :miss [pattern value]}))
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(var curr-mem :^nothing)
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(var curr-val :^nothing)
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(var success true)
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(for i 0 (length members)
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(set curr-mem (get members i))
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(set curr-val (get value i))
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(print "in list, matching " curr-val " with ")
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(pp curr-mem)
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(def match? (match-pattern curr-mem curr-val ctx))
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(pp match?)
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(when (not (match? :success))
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(set success false)
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(break)))
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(when (and splat? (splat :data))
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(def rest (array/slice value (length members)))
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(match-word (splat :data) rest ctx))
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(if success
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{:success true :ctx ctx}
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{:success false :miss [pattern value]}))
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(defn- match-string [pattern value ctx]
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(when (not (string? value))
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(break {:success false :miss [pattern value]}))
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(def {:compiled compiled :bindings bindings} pattern)
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(print "matching " value " with")
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(pp (pattern :grammar))
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(def matches (peg/match compiled value))
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(when (not matches)
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(break {:success false :miss [pattern value]}))
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(when (not= (length matches) (length bindings))
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(error "oops: different number of matches and bindings"))
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(for i 0 (length matches)
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(set (ctx (bindings i)) (matches i)))
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{:success true :ctx ctx})
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(defn- match-dict [pattern value ctx]
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(when (not (table? value))
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(break {:success false :miss [pattern value]}))
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(def val-size (length value))
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(var members (pattern :data))
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(def patt-len (length members))
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(when (empty? members)
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(break (if (empty? value)
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{:success true :ctx ctx}
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{:success false :miss [pattern value]})))
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(var splat nil)
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(def splat? (= :splat ((last members) :type)))
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(when splat?
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(when (< val-size patt-len)
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(print "mismatched splatted dict lengths")
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(break {:success false :miss [pattern value]}))
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(print "splat!")
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(set splat (last members))
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(set members (slice members 0 (dec patt-len))))
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(when (and (not splat?) (not= val-size patt-len))
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(print "mismatched dict lengths")
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(break {:success false :miss [pattern value]}))
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(var success true)
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(def matched-keys @[])
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(for i 0 (length members)
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(def curr-pair (get members i))
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(def [curr-key curr-patt] (curr-pair :data))
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(def key (interpret curr-key ctx))
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(def curr-val (value key))
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(def match? (match-pattern curr-patt curr-val ctx))
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(array/push matched-keys key)
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(when (not (match? :success))
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(set success false)
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(break)))
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(when (and splat? (splat :data) success)
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(def rest (merge value))
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(each key matched-keys
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(set (rest key) nil))
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(match-word (splat :data) rest ctx))
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(if success
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{:success true :ctx ctx}
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{:success false :miss [pattern value]}))
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(defn- match-pattern* [pattern value &opt ctx]
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(print "in match-pattern, matching " value " with:")
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(pp pattern)
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(default ctx @{})
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(def data (pattern :data))
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(case (pattern :type)
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# always match
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:placeholder {:success true :ctx ctx}
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:ignored {:success true :ctx ctx}
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:word (match-word pattern value ctx)
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# match on equality
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:nil {:success (nil? value) :ctx ctx}
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:bool {:success (= data value) :ctx ctx}
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:number {:success (= data value) :ctx ctx}
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:string {:success (= data value) :ctx ctx}
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:keyword {:success (= data value) :ctx ctx}
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# TODO: lists, dicts
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:tuple (match-tuple pattern value ctx)
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:list (match-list pattern value ctx)
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:dict (match-dict pattern value ctx)
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:interpolated (match-string pattern value ctx)
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:typed (typed pattern value ctx)
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))
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(set match-pattern match-pattern*)
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(defn- lett [ast ctx]
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(def [patt expr] (ast :data))
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(def value (interpret expr ctx))
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(def match? (match-pattern patt value))
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(if (match? :success)
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(do
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(merge-into ctx (match? :ctx))
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value)
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(error {:node ast :value value :msg "no match"})))
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(defn- matchh [ast ctx]
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(def [to-match clauses] (ast :data))
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(def value (interpret to-match ctx))
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(def len (length clauses))
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(when (ast :match) (break ((ast :match) 0 value ctx)))
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(defn match-fn [i value ctx]
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(when (= len i)
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(error {:node ast :value value :msg "no match"}))
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(def clause (clauses i))
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(def [patt guard expr] clause)
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(def match? (match-pattern patt value @{:^parent ctx}))
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(when (not (match? :success))
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(break (match-fn (inc i) value ctx)))
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(def body-ctx (match? :ctx))
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(def guard? (if guard
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(b/bool (interpret guard body-ctx)) true))
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(when (not guard?)
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(break (match-fn (inc i) value ctx)))
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(interpret expr body-ctx))
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(set (ast :match) match-fn)
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(match-fn 0 value ctx))
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(defn- script [ast ctx]
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(def lines (ast :data))
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(def last-line (last lines))
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(for i 0 (-> lines length dec)
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(interpret (lines i) ctx))
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(interpret last-line ctx))
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(defn- block [ast parent]
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(def lines (ast :data))
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(def last-line (last lines))
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(def ctx @{:^parent parent})
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(for i 0 (-> lines length dec)
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(interpret (lines i) ctx))
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(interpret last-line ctx))
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(defn- to_string [ctx] (fn [x]
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(b/stringify (interpret x ctx))))
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(defn- interpolated [ast ctx]
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(def terms (ast :data))
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(def interpolations (map (to_string ctx) terms))
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(string/join interpolations))
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(defn- iff [ast ctx]
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(def [condition then else] (ast :data))
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(if (b/bool (interpret condition ctx))
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(interpret then ctx)
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(interpret else ctx)))
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# TODO: use a tail call here
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(defn- whenn [ast ctx]
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(def clauses (ast :data))
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(var result :^nothing)
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(each clause clauses
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(def [lhs rhs] clause)
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(when (b/bool (interpret lhs ctx))
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(set result (interpret rhs ctx))
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(break)))
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(when (= result :^nothing)
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(error {:node ast :msg "no match in when"}))
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result)
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(defn- word [ast ctx]
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(resolve-name (ast :data) ctx))
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(defn- tup [ast ctx]
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(def members (ast :data))
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(def the-tup @[])
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(each member members
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(array/push the-tup (interpret member ctx)))
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[;the-tup])
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(defn- args [ast ctx]
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(def members (ast :data))
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(def the-args @[])
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(each member members
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(array/push the-args (interpret member ctx)))
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(if (ast :partial)
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{:^type :partial :args the-args}
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[;the-args]))
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(defn- sett [ast ctx]
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(def members (ast :data))
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(def the-set @{:^type :set})
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(each member members
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(def value (interpret member ctx))
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(set (the-set member) true))
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the-set)
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(defn- list [ast ctx]
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(def members (ast :data))
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(def the-list @[])
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(each member members
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(if (= :splat (member :type))
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(do
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(def splatted (interpret (member :data) ctx))
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(when (not= :array (type splatted))
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(error {:node member :msg "cannot splat non-list into list"}))
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(array/concat the-list splatted))
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(array/push the-list (interpret member ctx))))
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the-list)
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(defn- dict [ast ctx]
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(def members (ast :data))
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(def the-dict @{})
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(each member members
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(if (= :splat (member :type))
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(do
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(def splatted (interpret (member :data) ctx))
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(when (or
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(not= :table (type splatted))
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(:^type splatted))
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(error {:node member :msg "cannot splat non-dict into dict"}))
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(merge-into the-dict splatted))
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(do
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(def [key-ast value-ast] (member :data))
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(print "dict key")
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(pp key-ast)
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(print "dict value")
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(pp value-ast)
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(def key (interpret key-ast ctx))
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(def value (interpret value-ast ctx))
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(set (the-dict key) value))))
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the-dict)
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(defn- ref [ast ctx]
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(def {:data value-ast :name name} ast)
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(def value (interpret value-ast ctx))
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(def box @{:^type :ref :^value value :name name})
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(set (ctx name) box)
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box)
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(defn- repeatt [ast ctx]
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(def [times-ast body] (ast :data))
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(def times (interpret times-ast ctx))
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(when (not (number? times))
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(error {:node times-ast :msg (string "repeat needs a `number` of times; you gave me a " (type times))}))
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(repeat times (interpret body ctx)))
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(defn- panic [ast ctx]
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(def info (interpret (ast :data) ctx))
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(error {:node ast :msg info}))
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# TODO: add docstrings & pattern docs to fns
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# Depends on: good string representation of patterns
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# For now, this should be enough to tall the thing
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(defn- fnn [ast ctx]
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(def {:name name :data clauses :doc doc} ast)
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(print "defining fn " name)
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(def closure (table/to-struct ctx))
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(def the-fn @{:name name :^type :fn :body clauses :ctx closure :doc doc})
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(when (not= :^not-found (resolve-name name ctx))
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(print "fn "name" was forward declared")
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(def fwd (resolve-name name ctx))
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(set (fwd :body) clauses)
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(set (fwd :ctx) closure)
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(set (fwd :doc) doc)
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(print "fn " name " has been defined")
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(pp fwd)
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(break fwd))
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(pp the-fn)
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(set (ctx name) the-fn)
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the-fn)
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(defn- is_placeholder [x] (= x :_))
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(var call-fn nil)
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(def name "foo")
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(eval ~(fn ,(symbol name) [] :foo))
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(defn- partial [the-fn partial-args]
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(print "calling partially applied function")
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(def args (partial-args :args))
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(pp args)
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(def pos (find-index is_placeholder args))
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(def name (string (the-fn :name) " *partial*"))
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(defn partial-fn [missing]
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(print "calling function with arg " (b/show missing))
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(pp partial-args)
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(def full-args (array/slice args))
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(set (full-args pos) missing)
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(print "all args: " (b/show full-args))
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(call-fn the-fn [;full-args]))
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{:^type :applied :name name :body partial-fn})
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(defn- call-fn* [the-fn args]
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(print "calling " (b/show the-fn))
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(print "with args " (b/show args))
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(when (or
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(= :function (type the-fn))
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(= :cfunction (type the-fn)))
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(print "Janet function")
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(break (the-fn ;args)))
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(def clauses (the-fn :body))
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(when (= :nothing clauses)
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(error {:node the-fn :value args :msg "cannot call function before it is defined"}))
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(def len (length clauses))
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(when (the-fn :match) (break ((the-fn :match) 0 args)))
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(defn match-fn [i args]
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(when (= len i)
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(error {:node the-fn :value args :msg "no match"}))
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(def clause (clauses i))
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(def [patt guard expr] clause)
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(def match?
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(match-pattern patt args @{:^parent (the-fn :ctx)}))
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(when (not (match? :success))
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(break (match-fn (inc i) args)))
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(print "matched!")
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(def body-ctx (match? :ctx))
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(def guard? (if guard
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(b/bool (interpret guard body-ctx)) true))
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(print "passed guard")
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(when (not guard?)
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(break (match-fn (inc i) args)))
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(interpret expr body-ctx))
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(set (the-fn :match) match-fn)
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(match-fn 0 args))
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(set call-fn call-fn*)
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(defn- call-partial [the-fn arg] ((the-fn :body) ;arg))
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(defn- apply-synth-term [prev curr]
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(print "applying " (b/show prev))
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(print "to" (b/show curr))
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(def types [(b/ludus/type prev) (b/ludus/type curr)])
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(print "typle:")
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(pp types)
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(match types
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[:fn :tuple] (call-fn prev curr)
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[:fn :partial] (partial prev curr)
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[:function :tuple] (call-fn prev curr)
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[:applied :tuple] (call-partial prev curr)
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[:keyword :args] (get (first curr) prev :^nil)
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[:dict :keyword] (get prev curr :^nil)
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[:nil :keyword] :^nil
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[:pkg :keyword] (get prev curr :^nil)
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[:pkg :pkg-kw] (get prev curr :^nil)))
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(defn- synthetic [ast ctx]
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(def terms (ast :data))
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(print "interpreting synthetic")
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(pp ast)
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(pp terms)
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(def first-term (first terms))
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(def last-term (last terms))
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(var prev (interpret first-term ctx))
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(print "root term: ")
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(pp prev)
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(for i 1 (-> terms length dec)
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(def curr (interpret (terms i) ctx))
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(print "term " i ": " curr)
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(set prev (apply-synth-term prev curr)))
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(print "done with inner terms, applying last term")
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(apply-synth-term prev (interpret last-term ctx)))
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(defn- doo [ast ctx]
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(def terms (ast :data))
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(var prev (interpret (first terms) ctx))
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(def last-term (last terms))
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(for i 1 (-> terms length dec)
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(def curr (interpret (terms i) ctx))
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(set prev (call-fn curr [prev])))
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(def last-fn (interpret last-term ctx))
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(call-fn last-fn [prev]))
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(defn- pkg [ast ctx]
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(def members (ast :data))
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(def the-pkg @{:^name (ast :name) :^type :pkg})
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(each member members
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(def [key-ast value-ast] (member :data))
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(def key (interpret key-ast ctx))
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(def value (interpret value-ast ctx))
|
|
(set (the-pkg key) value))
|
|
(pp the-pkg)
|
|
(def out (table/to-struct the-pkg))
|
|
(set (ctx (ast :name)) out)
|
|
out)
|
|
|
|
(defn- loopp [ast ctx]
|
|
(print "looping!")
|
|
(def data (ast :data))
|
|
(def args (interpret (data 0) ctx))
|
|
(when (ast :match) (break ((ast :match) 0 args)))
|
|
(def clauses (data 1))
|
|
(def len (length clauses))
|
|
(def loop-ctx @{:^parent ctx})
|
|
(defn match-fn [i args]
|
|
(print "calling inner loop fn")
|
|
(print "for the " i "th time")
|
|
(when (= len i)
|
|
(error {:node ast :value args :msg "no match"}))
|
|
(def clause (clauses i))
|
|
(def [patt guard expr] clause)
|
|
(def match?
|
|
(match-pattern patt args loop-ctx))
|
|
(when (not (match? :success))
|
|
(print "no match")
|
|
(break (match-fn (inc i) args)))
|
|
(print "matched!")
|
|
(def body-ctx (match? :ctx))
|
|
(def guard? (if guard
|
|
(b/bool (interpret guard body-ctx)) true))
|
|
(print "passed guard")
|
|
(when (not guard?)
|
|
(break (match-fn (inc i) args)))
|
|
(interpret expr body-ctx))
|
|
(set (ast :match) match-fn)
|
|
(set (loop-ctx :^recur) match-fn)
|
|
(print "ATTACHED MATCH-FN")
|
|
(match-fn 0 args))
|
|
|
|
(defn- recur [ast ctx]
|
|
(print "recurring!")
|
|
(def passed (ast :data))
|
|
(def args (interpret passed ctx))
|
|
(def match-fn (resolve-name :^recur ctx))
|
|
(print "match fn in ctx:")
|
|
(pp (ctx :^recur))
|
|
(pp match-fn)
|
|
(pp ctx)
|
|
(match-fn 0 args))
|
|
|
|
# TODO for 0.1.0
|
|
(defn- testt [ast ctx] (todo "test"))
|
|
|
|
(defn- ns [ast ctx] (todo "nses"))
|
|
|
|
(defn- importt [ast ctx] (todo "imports"))
|
|
|
|
(defn- withh [ast ctx] (todo "with"))
|
|
|
|
(defn- usee [ast ctx] (todo "use"))
|
|
|
|
(defn- interpret* [ast ctx]
|
|
(print "interpreting node " (ast :type))
|
|
(case (ast :type)
|
|
# literals
|
|
:nil :^nil
|
|
:number (ast :data)
|
|
:bool (ast :data)
|
|
:string (ast :data)
|
|
:keyword (ast :data)
|
|
:placeholder :_
|
|
|
|
# collections
|
|
:tuple (tup ast ctx)
|
|
:args (args ast ctx)
|
|
:list (list ast ctx)
|
|
:set (sett ast ctx)
|
|
:dict (dict ast ctx)
|
|
|
|
# composite forms
|
|
:if (iff ast ctx)
|
|
:block (block ast ctx)
|
|
:when (whenn ast ctx)
|
|
:script (script ast ctx)
|
|
:panic (panic ast ctx)
|
|
|
|
# looping forms
|
|
:loop (loopp ast ctx)
|
|
:recur (recur ast ctx)
|
|
:repeat (repeatt ast ctx)
|
|
|
|
# named/naming forms
|
|
:word (word ast ctx)
|
|
:interpolated (interpolated ast ctx)
|
|
:ref (ref ast ctx)
|
|
:pkg (pkg ast ctx)
|
|
:pkg-name (word ast ctx)
|
|
|
|
# patterned forms
|
|
:let (lett ast ctx)
|
|
:match (matchh ast ctx)
|
|
|
|
# functions
|
|
:fn (fnn ast ctx)
|
|
|
|
# synthetic
|
|
:synthetic (synthetic ast ctx)
|
|
|
|
# do
|
|
:do (doo ast ctx)
|
|
|
|
# deferred until after computer class
|
|
# :with (withh ast ctx)
|
|
# :import (importt ast ctx)
|
|
# :ns (ns ast ctx)
|
|
# :use (usee ast ctx)
|
|
# :test (testt ast ctx)
|
|
|
|
))
|
|
|
|
(set interpret interpret*)
|
|
|
|
# repl
|
|
(import ./scanner :as s)
|
|
(import ./parser :as p)
|
|
(import ./validate :as v)
|
|
|
|
(var source nil)
|
|
|
|
(defn- has-errors? [{:errors errors}] (and errors (not (empty? errors))))
|
|
|
|
(defn run []
|
|
(def scanned (s/scan source))
|
|
(when (has-errors? scanned) (break (scanned :errors)))
|
|
(def parsed (p/parse scanned))
|
|
(when (has-errors? parsed) (break (parsed :errors)))
|
|
(def validated (v/valid parsed b/ctx))
|
|
# (when (has-errors? validated) (break (validated :errors)))
|
|
# (def cleaned (get-in parsed [:ast :data 1]))
|
|
# (pp cleaned)
|
|
# (interpret (parsed :ast) @{:^parent b/ctx})
|
|
(try (interpret (parsed :ast) @{:^parent b/ctx})
|
|
([e] (print "Ludus panicked!: "
|
|
(if (struct? e) (error (e :msg)) (error e)))))
|
|
)
|
|
|
|
(do
|
|
(set source `
|
|
box foo = :bar
|
|
`)
|
|
(def result (run))
|
|
(b/show result)
|
|
)
|
|
|