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|
structure CPS =
struct
fun toCPS (e : Syntax.lexp) (cont : Syntax.value -> Syntax.cexp) : Syntax.cexp =
case e of
Syntax.LApp (Syntax.LPrim primop, Syntax.LRecord args) =>
let
val temp = Gensym.new ()
fun go [] acc = Syntax.CPrimop (primop, rev acc, [temp], [cont (Syntax.VVar temp)])
| go (arg :: args) acc = toCPS arg (fn arg' => go args (arg' :: acc))
in go args []
end
| Syntax.LApp (Syntax.LPrim primop, arg) => toCPS (Syntax.LApp (Syntax.LPrim primop, Syntax.LRecord [arg])) cont
| Syntax.LApp (f, x) =>
let
val addr = Gensym.new ()
val arg = Gensym.new ()
in Syntax.CFix
([(addr, [arg], cont (Syntax.VVar arg))],
toCPS f (fn f' =>
toCPS x (fn x' =>
Syntax.CApp (f', [x', Syntax.VVar addr]))))
end
| Syntax.LInt i => cont (Syntax.VInt i)
| Syntax.LString s => cont (Syntax.VString s)
| Syntax.LRecord [] => cont (Syntax.VInt 0)
| Syntax.LRecord exprs =>
let
fun go [] vars =
let val temp = Gensym.new ()
in Syntax.CRecord (map (fn v => (v, [])) (rev vars), temp, cont (Syntax.VVar temp))
end
| go (expr :: exprs) vars =
toCPS expr (fn v => go exprs (v :: vars))
in go exprs []
end
| _ => raise Fail ("malformed expression " ^ Syntax.lexpToString e)
fun hoist (expr : Syntax.cexp) : Syntax.cexp =
let
fun funs (Syntax.CRecord (_, _, k)) acc = funs k acc
| funs (Syntax.CSelect (_, _, _, k)) acc = funs k acc
| funs (Syntax.CApp _) acc = acc
| funs (Syntax.CFix (fs, body)) acc = funs body (fs @ acc)
| funs (Syntax.CPrimop (_, _, _, ks)) acc = foldl (fn (x, acc) => funs x acc) acc ks
fun exprs (Syntax.CRecord (args, res, k)) = Syntax.CRecord (args, res, exprs k)
| exprs (Syntax.CSelect (i, arg, res, k)) = Syntax.CSelect (i, arg, res, exprs k)
| exprs (expr as Syntax.CApp (func, args)) = expr
| exprs (Syntax.CFix (_, body)) = body
| exprs (Syntax.CPrimop (p, args, res, ks)) = Syntax.CPrimop (p, args, res, (map exprs ks))
val entryPoint = Gensym.new ()
in
Syntax.CFix ((entryPoint, [], exprs expr) :: funs expr [], Syntax.CApp (Syntax.VLabel entryPoint, []))
end
structure VarMap = Map (type k = Syntax.var
val cmp = Int.compare)
fun varSet (l : Syntax.var list) : unit VarMap.map = VarMap.fromList (map (fn x => (x, ())) l)
fun freeVars (expr : Syntax.cexp) : unit VarMap.map =
case expr of
Syntax.CRecord (args, res, k) =>
let
val argFreeVars = varSet (List.mapPartial (fn (Syntax.VVar v, _) => SOME v | _ => NONE) args)
val kFreeVars = VarMap.delete res (freeVars k)
in
VarMap.union argFreeVars kFreeVars
end
| Syntax.CSelect (_, arg, res, k) =>
let
val argFreeVars =
case arg of
Syntax.VVar v => varSet [v]
| _ => VarMap.empty
val kFreeVars = VarMap.delete res (freeVars k)
in
VarMap.union argFreeVars kFreeVars
end
| Syntax.CApp (func, args) =>
let
val funcFreeVars =
case func of
Syntax.VVar v => varSet [v]
| _ => VarMap.empty
val argFreeVars = varSet (List.mapPartial (fn Syntax.VVar v => SOME v | _ => NONE) args)
in
VarMap.union funcFreeVars argFreeVars
end
| Syntax.CFix (funs, body) =>
let
val names = varSet (map (fn (name, _, _) => name) funs)
val funsFreeVars = map (fn (name, args, fixBody) => VarMap.difference (freeVars fixBody) (varSet args)) funs
val bodyFreeVars = freeVars body
in
foldl (fn (x, acc) => VarMap.union acc (VarMap.difference x names)) VarMap.empty (bodyFreeVars :: funsFreeVars)
end
| Syntax.CPrimop (_, args, res, ks) =>
let
val argFreeVars = varSet (List.mapPartial (fn Syntax.VVar v => SOME v | _ => NONE) args)
val boundVars = varSet res
val kFreeVars = foldl (fn (x, acc) => VarMap.union acc x) VarMap.empty (map (fn k => VarMap.difference (freeVars k) boundVars) ks)
in
VarMap.union argFreeVars kFreeVars
end
fun freeVarsClosure (name, args, body) = map (fn (x, _) => x) (VarMap.toList (VarMap.difference (freeVars body) (varSet (name :: args))))
fun enumerate l = ListPair.zip (List.tabulate (length l, (fn x => x)), l)
fun convertExpr varMap expr =
let
fun translate var = getOpt (VarMap.lookup var varMap, var)
fun translateValue (Syntax.VVar v) = Syntax.VVar (translate v)
| translateValue v = v
in
case expr of
Syntax.CRecord (args, res, k) =>
Syntax.CRecord (map (fn (v, p) => (translateValue v, p)) args, res, convertExpr varMap k)
| Syntax.CSelect (i, arg, res, k) =>
Syntax.CSelect (i, translateValue arg, res, convertExpr varMap k)
| Syntax.CApp (func, args) =>
let val temp = Gensym.new ()
in Syntax.CSelect (0, translateValue func, temp,
Syntax.CApp (Syntax.VVar temp, map translateValue args))
end
| Syntax.CFix (funcs, body) =>
let
val convertedFuncs =
map
(fn this as (name, args, body) =>
let
val funcFreeVars = freeVarsClosure this
val varMap' = VarMap.union varMap (VarMap.fromList (map (fn v => (v, Gensym.new ())) funcFreeVars))
val closure = Gensym.new ()
val newBody =
foldl
(fn ((i, x), acc) => Syntax.CSelect (i + 1, Syntax.VVar closure, valOf (VarMap.lookup x varMap'), acc))
(convertExpr varMap' body)
(enumerate funcFreeVars)
in
(Gensym.new (), closure :: args, newBody)
end)
funcs
val newBody =
foldl
(fn ((old as (oldName, args, body), (newName, _, _)), acc) =>
let val funcFreeVars = freeVarsClosure old
in Syntax.CRecord ((Syntax.VLabel newName, []) :: map (fn v => (Syntax.VVar v, [])) funcFreeVars, oldName, acc)
end)
body
(ListPair.zip (funcs, convertedFuncs))
in
Syntax.CFix (convertedFuncs, newBody)
end
| Syntax.CPrimop (p, args, res, ks) =>
Syntax.CPrimop (p, map translateValue args, res, map (convertExpr varMap) ks)
end
fun convertClosures (expr : Syntax.cexp) : Syntax.cexp = hoist (convertExpr VarMap.empty expr)
end
|