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1(* L3 Compiler
2 * AST -> IR Translator
3 * Author: Kaustuv Chaudhuri <kaustuv+@cs.cmu.edu>
4 * Modified by: Alex Vaynberg <alv@andrew.cmu.edu>
5 * Modified: Frank Pfenning <fp@cs.cmu.edu>
6 * Modified: Chris Lu <czl@andrew.cmu.edu>
7 * Modified: Joshua Wise <jwise@andrew.cmu.edu>
8 *)
9
10signature TRANS =
11sig
12 (* translate abstract syntax tree to IR tree *)
13 val translate : Ast.program -> Tree.program
14end
15
16structure Trans :> TRANS =
17struct
18
19 structure A = Ast
20 structure T = Tree
21
22 fun trans_oper A.PLUS = T.ADD
23 | trans_oper A.MINUS = T.SUB
24 | trans_oper A.TIMES = T.MUL
25 | trans_oper A.DIVIDEDBY = T.DIV
26 | trans_oper A.MODULO = T.MOD
27 | trans_oper A.LSH = T.LSH
28 | trans_oper A.RSH = T.RSH
29 | trans_oper A.LOGOR = T.LOGOR
30 | trans_oper A.LOGAND = T.LOGAND
31 | trans_oper A.BITOR = T.BITOR
32 | trans_oper A.BITXOR = T.BITXOR
33 | trans_oper A.BITAND = T.BITAND
34 | trans_oper A.NEQ = T.NEQ
35 | trans_oper A.EQ = T.EQ
36 | trans_oper A.LT = T.LT
37 | trans_oper A.LE = T.LE
38 | trans_oper A.GE = T.GE
39 | trans_oper A.GT = T.GT
40 | trans_oper _ = raise ErrorMsg.InternalError "expected AST binop, got AST unop"
41
42 fun translate (defs, funcs) =
43 let
44 val funclist = Symbol.elemsi funcs
45 val _ = Type.alignment_reset()
46 val _ = Type.sizeof_reset()
47 fun sizeof a = Type.sizeof defs a
48 fun alignment a = Type.alignment defs a
49 fun align t curpos = Type.align defs t curpos
50
51 fun offset_s id (Type.Typedef(id')) =
52 let
53 val shit = Symbol.look' defs id'
54 fun eat (Type.Struct(l)) = l
55 | eat (Type.MarkedTypedef(a)) = eat (Mark.data a)
56 fun offset_s' ((id1,t)::l') curofs =
57 let
58 val a = align t curofs
59 in
60 if Symbol.compare(id,id1) = EQUAL
61 then a
62 else offset_s' l' (a + sizeof t)
63 end
64 | offset_s' nil _ = raise ErrorMsg.InternalError "looking for offset of something that isn't in the structure"
65 in
66 offset_s' (eat shit) 0
67 end
68 | offset_s _ _ = raise ErrorMsg.InternalError "cannot find offset into non-typedef"
69
70 fun type_s id (Type.Typedef id') =
71 let
72 val td =
73 case Type.defdata (Symbol.look' defs id')
74 of Type.Struct d => d
75 | _ => raise ErrorMsg.InternalError "data didn't return struct"
76 fun type_s' ((id',t)::l) =
77 if (Symbol.compare (id, id') = EQUAL)
78 then t
79 else type_s' l
80 | type_s' nil = raise ErrorMsg.InternalError "struct member not found in type_s"
81 in
82 type_s' td
83 end
84 | type_s id _ = raise ErrorMsg.InternalError "cannot find internal type non-typedef"
85
86 fun deref (Type.Pointer i) = i
87 | deref (Type.Array i) = i
88 | deref _ = raise ErrorMsg.InternalError "cannot deref non-pointer"
89
90 fun trans_unop A.NEGATIVE = T.NEG
91 | trans_unop A.BITNOT = T.BITNOT
92 | trans_unop A.BANG = T.BANG
93 | trans_unop _ = raise ErrorMsg.InternalError "expected AST unop, got AST binop"
94
95 fun typeof' vartypes exp = TypeChecker.typeof (defs, funcs) vartypes NONE exp
96
97 fun trans_exp env vartypes (A.Var(id)) =
98 (* after type-checking, id must be declared; do not guard lookup *)
99 T.TEMP (Symbol.look' env id)
100 | trans_exp env vartypes (A.ConstExp c) = T.CONST(c)
101 | trans_exp env vartypes (A.OpExp(oper, [e1, e2])) =
102 T.BINOP(trans_oper oper, trans_exp env vartypes e1, trans_exp env vartypes e2)
103 | trans_exp env vartypes (A.OpExp(oper, [e])) =
104 T.UNOP(trans_unop oper, trans_exp env vartypes e)
105 | trans_exp env vartypes (A.OpExp(oper, _)) =
106 raise ErrorMsg.InternalError "expected one or two operands, got it in the oven"
107 | trans_exp env vartypes (A.Marked(marked_exp)) =
108 trans_exp env vartypes (Mark.data marked_exp)
109 | trans_exp env vartypes (A.FuncCall(func, stms)) =
110 T.CALL(func,
111 List.map
112 (fn exp => (trans_exp env vartypes exp))
113 stms)
114 | trans_exp env vartypes (A.Member (exp, id)) =
115 let
116 val apk = T.BINOP (T.ADD, trans_exp env vartypes exp, T.CONST (Word32.fromInt (offset_s id (typeof' vartypes exp))))
117 val tipo = type_s id (typeof' vartypes exp)
118 in
119 if Type.issmall tipo
120 then T.MEMORY(apk)
121 else apk
122 end
123 | trans_exp env vartypes (A.DerefMember (exp, id)) =
124 trans_exp env vartypes (A.Member (A.Dereference (exp), id))
125 | trans_exp env vartypes (A.Dereference(exp)) =
126 if (Type.issmall (deref (typeof' vartypes exp)))
127 then T.MEMORY(trans_exp env vartypes exp)
128 else trans_exp env vartypes exp
129 | trans_exp env vartypes (A.ArrIndex(exp1, exp2)) =
130 let
131 val asubk = T.BINOP(T.ADD, trans_exp env vartypes exp1,
132 T.BINOP(T.MUL, trans_exp env vartypes exp2,
133 T.CONST(Word32.fromInt(sizeof (deref (typeof' vartypes exp1))))))
134 val tipo = deref (typeof' vartypes exp1)
135 val d =
136 if not (Flag.isset Flags.safe)
137 then asubk
138 else T.COND (T.BINOP
139 (T.BE,
140 T.MEMORY (T.BINOP (
141 T.SUB,
142 trans_exp env vartypes exp1,
143 T.CONST 0w8)),
144 trans_exp env vartypes exp2),
145 T.NULLPTR,
146 asubk)
147 in
148 if Type.issmall tipo
149 then T.MEMORY(d)
150 else d
151 end
152 | trans_exp env vartypes (A.New(tipo)) =
153 let
154 val t1 = T.TEMP (Temp.new "result")
155 in
156 T.STMVAR (
157 [T.MOVE (t1, T.ALLOC (T.CONST (Word32.fromInt(sizeof tipo)))),
158 T.EFFECT (T.MEMORY (t1))],
159 t1)
160 end
161 | trans_exp env vartypes (A.NewArr(tipo, exp)) =
162 let
163 val size = T.BINOP(T.MUL, trans_exp env vartypes exp, T.CONST(Word32.fromInt(sizeof tipo)))
164 val t1 = T.TEMP (Temp.new "allocated address")
165 val ts = T.TEMP (Temp.new "size")
166 in
167 if not (Flag.isset Flags.safe)
168 then T.STMVAR ([T.MOVE (t1, T.ALLOC size),
169 T.EFFECT (T.COND (T.BINOP (T.EQ, trans_exp env vartypes exp, T.CONST 0w0), T.CONST 0w0, T.MEMORY (t1)))],
170 t1)
171 else T.COND (T.BINOP(T.EQ, size, T.CONST 0w0),
172 T.NULLPTR,
173 T.STMVAR (
174 [T.MOVE(t1,
175 T.COND(
176 T.BINOP(T.LT, size, T.CONST 0w0),
177 T.NULLPTR,
178 T.ALLOC (T.BINOP (T.ADD, size, T.CONST 0w8)))
179 ),
180 T.MOVE(T.MEMORY (t1), trans_exp env vartypes exp)],
181 T.BINOP(T.ADD, t1, T.CONST 0w8)))
182 end
183 | trans_exp env vartypes (A.Null) = T.NULLPTR
184 | trans_exp env vartypes (A.Conditional(c,e1,e2)) = T.COND(trans_exp env vartypes c, trans_exp env vartypes e1, trans_exp env vartypes e2)
185
186 (* anything else should be impossible *)
187
188 (* trans_stms : Temp.temp Symbol.table -> (Label.label * Label.label) option -> A.stm list -> Tree.stm list
189 * translates a statement to the corresponding IR
190 * we pass around the environment and the current loop context, if any
191 * (usually called ls, which contains a continue label and a break label)
192 *)
193 fun trans_stms vars vartypes ls (A.Assign(e1,e2)::stms) = T.MOVE(trans_exp vars vartypes e1, trans_exp vars vartypes e2)::(trans_stms vars vartypes ls stms)
194 | trans_stms vars vartypes ls (A.AsnOp(oop,e1,e2)::stms) =
195 let
196 val te1 = trans_exp vars vartypes e1
197 val te2 = trans_exp vars vartypes e2
198 val t1 = T.TEMP (Temp.new "memory deref cache")
199 in
200 case te1
201 of T.MEMORY(m) => T.MOVE(t1, m) :: T.MOVE (T.MEMORY(t1), T.BINOP(trans_oper oop, T.MEMORY(t1), te2)) :: (trans_stms vars vartypes ls stms)
202 | _ => T.MOVE(te1, T.BINOP(trans_oper oop, te1, te2)) :: (trans_stms vars vartypes ls stms)
203 end
204 | trans_stms vars vartypes ls (A.Return e::stms) =
205 let
206 val remainder = trans_stms vars vartypes ls stms
207 in
208 T.RETURN (trans_exp vars vartypes e)
209 :: remainder
210 end
211 | trans_stms vars vartypes ls (A.If(e, s, NONE)::stms) =
212 let
213 val l = Label.new ()
214 val strans = trans_stms vars vartypes ls s
215 val remainder = trans_stms vars vartypes ls stms
216 in
217 (T.JUMPIFN(trans_exp vars vartypes e, l)
218 :: strans
219 @ [T.LABEL (l)]
220 @ remainder)
221 end
222 | trans_stms vars vartypes ls (A.If(e, s, SOME s2)::stms) =
223 let
224 val l = Label.new ()
225 val l2 = Label.new ()
226 val s1trans = trans_stms vars vartypes ls s
227 val s2trans = trans_stms vars vartypes ls s2
228 val remainder = trans_stms vars vartypes ls stms
229 in
230 (T.JUMPIFN(trans_exp vars vartypes e, l)
231 :: s1trans
232 @ [T.JUMP (l2), T.LABEL (l)]
233 @ s2trans
234 @ [T.LABEL (l2)]
235 @ remainder)
236 end
237 | trans_stms vars vartypes ls (A.For(s1, e, s2, s)::stms) =
238 let
239 val head = Label.new ()
240 val tail = Label.new ()
241 val loop = Label.new ()
242 val stm1 = if isSome s1 then trans_stms vars vartypes NONE [valOf s1] else nil
243 val strans = trans_stms vars vartypes (SOME(loop,tail)) s
244 val stm2 = if isSome s2 then trans_stms vars vartypes NONE [valOf s2] else nil
245 val remainder = trans_stms vars vartypes ls stms
246 in
247 (stm1
248 @ [T.LABEL head, T.JUMPIFN(trans_exp vars vartypes e, tail)]
249 @ strans
250 @ [T.LABEL loop]
251 @ stm2
252 @ [T.JUMP head, T.LABEL tail]
253 @ remainder)
254 end
255 | trans_stms vars vartypes ls (A.While(e, s)::stms) =
256 let
257 val head = Label.new ()
258 val tail = Label.new ()
259 val strans = trans_stms vars vartypes (SOME(head,tail)) s
260 val remainder = trans_stms vars vartypes ls stms
261 in
262 (T.LABEL head
263 :: T.JUMPIFN(trans_exp vars vartypes e, tail)
264 :: strans
265 @ [T.JUMP head, T.LABEL tail]
266 @ remainder)
267 end
268 | trans_stms vars vartypes ls (A.Effect(e)::stms) = (T.EFFECT (trans_exp vars vartypes e)) :: (trans_stms vars vartypes ls stms)
269 | trans_stms vars vartypes (SOME(b,e)) (A.Break::stms) =
270 let
271 val remainder = trans_stms vars vartypes (SOME(b,e)) stms
272 in
273 ((T.JUMP e) :: remainder)
274 end
275 | trans_stms vars vartypes NONE (A.Break::_) = raise ErrorMsg.InternalError "Break from invalid location... should have been caught in typechecker"
276 | trans_stms vars vartypes (SOME(b,e)) (A.Continue::stms) =
277 let
278 val remainder = trans_stms vars vartypes (SOME(b,e)) stms
279 in
280 ((T.JUMP b) :: remainder)
281 end
282 | trans_stms vars vartypes NONE (A.Continue::_) = raise ErrorMsg.InternalError "Continue from invalid location... should have been caught in typechecker"
283 | trans_stms vars vartypes ls (A.Nop::stms) = trans_stms vars vartypes ls stms
284 | trans_stms vars vartypes ls (A.MarkedStm m :: stms) = trans_stms vars vartypes ls ((Mark.data m) :: stms)
285 | trans_stms vars vartypes _ nil = nil
286
287 fun trans_funcs ((id, A.Extern(_, _))::l) = trans_funcs l
288 | trans_funcs ((id, A.MarkedFunction a)::l) = trans_funcs ((id, Mark.data a)::l)
289 | trans_funcs ((id, A.Function(t, args, vars, body))::l) =
290 let
291 val allvars = foldr
292 (fn ((name, t),b) =>
293 Symbol.bind b (name, Temp.new (Symbol.name(name))))
294 Symbol.empty
295 (args @ vars)
296 val vartypes = foldr (fn ((i, t), b) => Symbol.bind b (i, t)) Symbol.empty (args @ vars)
297 val b = trans_stms allvars vartypes NONE body
298 val (argn,_) = ListPair.unzip args
299 val numberedargs = ListPair.zip (List.tabulate (length argn, fn x => x), argn)
300 val argmv = map
301 (fn (n, argname) => T.MOVE(T.TEMP (Symbol.look' allvars argname), T.ARG (n)))
302 numberedargs
303 in
304 (T.FUNCTION(id, argmv @ b)) :: (trans_funcs l)
305 end
306 | trans_funcs nil = nil
307
308 in
309 trans_funcs funclist
310 end
311end
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