Thinking about that chapter 3 interpreter from the book.
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@ -3,6 +3,173 @@ readline = require "readline"
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{inspect} = require "util"
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{inspect} = require "util"
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print = require "./print"
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print = require "./print"
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class Value
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class Environment
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class Continuation
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constructor: (@k) ->
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class NullEnv extends Environment
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lookup: -> throw "Unknown variable"
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update: -> throw "Unknown variable"
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class FullEnv extends Environment
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constructor: (@others, @name) ->
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lookup: (name, kont) ->
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@others.lookup name, kont
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update: (name, kont, value) ->
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@others.update name, kont, value
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class VariableEnv extends FullEnv
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constructor: (@others, @name, @value) ->
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lookup: (name, kont) ->
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if name == @name
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resume kont, @value
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else
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@others.lookup name, kont
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update: (nam, kont, value) ->
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if name == @name
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@value = value
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resume kont, value
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else
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@others.update name, kont, value
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# QUOTE
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evaluateQuote = (v, env, kont) ->
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resume kont, v
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# IF
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evaluateIf = (exps, env, kont) ->
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evaluate (car e), env, new IfCont(kont, (cadr e), (caddr e), env)
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class IfCont extends Continuation
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constructor: (@k, @ift, @iff, @env) ->
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resume: (v) -> evaluate (if v then @ift else @iff), @env, @k
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# BEGIN
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evaluateBegin = (exps, env, kont) ->
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if (pairp exps)
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if pairp (cdr exps)
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evaluate (car exps), env, (new BeginCont kont, exps, env)
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else
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evaluate (car exps), env, kont
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else
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resume kont, "Begin empty value"
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class BeginCont extends Continuation
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constructor: (@k, @exps, @env) ->
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resume: (v) -> evaluateBegin (cdr @exps), @env, @k
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# VARIABLE
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evaluateVariable = (name, env, kont) ->
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env.lookup(name, kont)
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# SET
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evaluateSet = (name, exp, env, kont) ->
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evaluate exp, env, (new setCont(kont, name, env))
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class SetCont extend Continuation
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constructor: (@k, @name, @env) ->
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resume: (value) ->
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update @env, @name, @k, value
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# LAMBDA
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evaluateLambda = (name, exp, env, kont) ->
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resume kont, new Function names, exp, env
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class Function extends Value
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constructor: (@variables, @body, @env) ->
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invoke: (values, env, kont) ->
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evaluateBegin @body, (extend @env, @variables, values), kont
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extend = (env, names, values) ->
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if (pairp names) and (pairp values)
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new VariableEnv (extend env (cdr names) (cdr values)), (car names), (car values)
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else if (nilp names)
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if (nilp values) then env else throw "Arity mismatch"
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else
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new VariableEnv env, names, values
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# APPLICATION
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evaluateApplication = (exp, exps, env, kont) ->
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evaluate exp, env, (new EvFunCont kont, exps, env)
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class EvFunCont extends Continuation
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constructor: (@k, @exp, @env) ->
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resume: (f) ->
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evaluateArguments (@exp, @k, new ApplyCont @k, f, @env)
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evaluateArguments = (exp, env, kont) ->
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if (pairp exp)
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evaluate (car exp), env, (new ArgumentCont kont, exp, env)
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else
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resume kont, "No more arguments"
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class ApplyCont extends Continuation
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constructor: (@k, @fn, @env) ->
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resume: (v) ->
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invoke @fn, v, @env, @k
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class ArgumentCont extends Continuation
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constructor: (@k, @exp, @env) ->
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resume: (v) ->
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evaluateArguments (cdr @env, @env, new GatherCont @k, v)
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class GatherCont extends Continuation
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constructor: (@k, @v) ->
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resume: (v) ->
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@k.resume (cons @v, v)
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class BottomCont extends Continuation
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constructor: (@k, @f) ->
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resume: (v) ->
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@f(v)
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class Primitive extends Value
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constructor: (@name, @address) ->
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evaluate = (e, env, kont) ->
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[type, exp] = [(ntype e), (nvalu e)]
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if type == "symbol"
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return variables.evaluate exp, env, kont
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if type in ["number", "string", "boolean", "vector"]
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return exp
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if type == "list"
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head = car exp
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if (ntype head) == 'symbol'
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switch (nvalu head)
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when "quote" then resume (cdr exp), kont
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when "if" then evaluateIf (cdr exp), env, kont
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evaluate (cadr e), env, new Ifs((-> (caddr e)), (->(cadddr e)), env, kont)
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when "begin" then eprogn (cdr exp), env
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when "set!" then update (nvalu cadr exp), env, (evaluate (caddr exp), env)
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when "lambda" then make_function (astSymbolsToLispSymbols cadr exp), (cddr exp), env
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else invoke (evaluate (car exp), env), (evlis (cdr exp), env)
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else
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invoke (evaluate (car exp), env), (evlis (cdr exp), env)
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else
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throw new Error("Can't handle a #{type}")
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class Ifs:
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evaluate: (cond, pass, alt, env, kont) ->
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if cond then
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resume: (
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env_init = nil
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env_init = nil
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env_global = env_init
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env_global = env_init
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@ -45,6 +212,13 @@ defprimitive "/", ((a, b) -> a / b), 2
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defpredicate "lt", ((a, b) -> a < b), 2
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defpredicate "lt", ((a, b) -> a < b), 2
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defpredicate "eq?", ((a, b) -> a == b), 2
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defpredicate "eq?", ((a, b) -> a == b), 2
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extend = (env, variables, values) ->
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extend = (env, variables, values) ->
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if (pairp variables)
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if (pairp variables)
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if (pairp values)
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if (pairp values)
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@ -124,29 +298,27 @@ astSymbolsToLispSymbols = (node) ->
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cadddr = metacadr('cadddr')
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cadddr = metacadr('cadddr')
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evaluate = (e, env) ->
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class Component
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[type, exp] = [(ntype e), (nvalu e)]
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invoke: -> throw "Not a function"
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if type == "symbol"
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return lookup exp, env
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class Environment
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else if type in ["number", "string", "boolean", "vector"]
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lookup: -> throw "Not an environment"
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return exp
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else if type == "list"
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class NullEnv extends Environment
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head = car exp
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lookup: -> throw "Unknown Variable"
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if (ntype head) == 'symbol'
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switch (nvalu head)
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class FullEnv extends Environment
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when "quote" then cdr exp
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constructor: (@others, @name) ->
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when "if"
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lookup: (id) -> lookup id, @others
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unless (evaluate (cadr exp), env) == the_false_value
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evaluate (caddr exp), env
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class VariableEnv extends FullEnv
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else
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constructor:(@others, @name, @value) ->
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evaluate (cadddr exp), env
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lookup: (id) ->
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when "begin" then eprogn (cdr exp), env
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when "set!" then update (nvalu cadr exp), env, (evaluate (caddr exp), env)
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class Primitive extends Invokable
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when "lambda" then make_function (astSymbolsToLispSymbols cadr exp), (cddr exp), env
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invoke: (args, kont) -> @fn args, kont
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else invoke (evaluate (car exp), env), (evlis (cdr exp), env)
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else
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invoke (evaluate (car exp), env), (evlis (cdr exp), env)
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else
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throw new Error("Can't handle a #{type}")
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module.exports = (c) -> evaluate c, env_global
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module.exports = (c) -> evaluate c, env_global
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