make progress; WIP: interpreting pattern matching
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# A base library for Ludus
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# Only loaded in the prelude
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(defn- stringify [value]
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(def typed? (when (table? value) (:^type value))
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(def type (if typed? typed? (type value))
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(case type
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:nil ""
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:number (string value)
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:
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)
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)
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(def show {
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:name "show"
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:fn ()
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})
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@ -1,6 +1,107 @@
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# A tree walk interpreter for ludus
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(var interpret nil)
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(var stringify nil)
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(var match-pattern nil)
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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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{:success true :ctx (set (ctx name) value)})
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(defn- match-pattern [pattern value &opt ctx]
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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 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: tuples, lists, dicts
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# TODO: string-patterns
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# TODO: typed
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)
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)
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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 expr value))
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(if match?
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(do
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)
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(error {:node ast :msg (string "could not match " (stringify value) " with " )})
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)
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)
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(defn- script [ast ctx]
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(def lines (ast :data))
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(var result nil)
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(each line lines
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(set result (interpret line ctx)))
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result)
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(defn- block [ast parent]
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(def lines (ast :data))
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(var result nil)
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(def ctx @{:^parent parent})
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(each line lines
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(set result (interpret line ctx)))
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result)
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(defn- dict-str [dict]
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(string/join
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(map
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(fn [[k v]] (string (stringify k) " " (stringify v)))
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dict)
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", "))
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(defn- stringify* [value]
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(def typed? (when (table? value) (:^type value)))
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(def type (if typed? typed? (type value)))
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(case type
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:nil ""
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:number (string value)
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:bool (string value)
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:keyword (string ":" value)
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:string value
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:tuple
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(string/join (map stringify value) ", ")
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:array
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(string/join (map stringify value) ", ")
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:table (dict-str value)
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:set
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(string/join (map stringify (keys value)) ", ")
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:ref (stringify (value :^value))
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# XXX: pkg, fn,
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))
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(set stringify stringify*)
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(defn- interpolated [ast ctx]
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(def terms (ast :data))
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(def interpolations
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(map (fn [x]
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(if (string? x) x (stringify (interpret x ctx))))
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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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@ -8,25 +109,109 @@
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(interpret then ctx)
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(interpret else ctx)))
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(defn- script [ast ctx]
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(print "interpreting script")
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(def lines (ast :data))
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(var result nil)
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(each line lines
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(print "interpreting script line")
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(set result (interpret line ctx)))
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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 (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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(def name (ast :data))
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(resolve-name name 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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(tuple ;the-tup))
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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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(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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(set (ctx name) @{:^type :ref :^value value :^name name})
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value)
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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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(defn- interpret* [ast ctx]
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(print "interpreting ast node " (ast :type))
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(print "interpreting node " (ast :type))
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(case (ast :type)
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:nil nil
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:number (ast :data)
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:bool (ast :data)
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:string (ast :data)
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:interpolated (interpolated ast ctx)
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:keyword (ast :data)
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:if (iff ast ctx)
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:script (script ast ctx)))
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:block (block ast ctx)
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:word (word ast ctx)
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:tuple (tup ast ctx)
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:list (list ast ctx)
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:set (sett ast ctx)
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:dict (dict ast ctx)
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:when (whenn ast ctx)
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:ref (ref ast ctx)
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:script (script ast ctx)
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:panic (panic ast ctx)
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:let (lett ast ctx)
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))
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(set interpret interpret*)
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(def scanned (s/scan source))
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(def parsed (p/parse scanned))
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(def validated (v/valid parsed))
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(pp parsed)
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(interpret (parsed :ast) @{}))
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(do
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(set source `
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if false then :bar else :baz
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when {
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3 -> :foo
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true -> :bar
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}
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`)
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(run)
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)
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@ -4,6 +4,7 @@
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Tracking here, before I start writing this code, the kinds of validation we're hoping to accomplish:
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* [ ] validate `with` forms
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* [ ] first-level property access with pkg, e.g. `Foo :bar`--bar must be on Foo
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- [ ] accept pkg-kws
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* [x] `loop` form arity checking
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