Source file recover_trycatch.ml
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open Wax_lang
open Ast
let no_params (t : functype) = t.params = [||]
let target_labels (desc : location instr_desc) : label list =
match desc with
| Br (l, _)
| Br_if (l, _)
| Br_on_null (l, _)
| Br_on_non_null (l, _)
| Br_on_cast (l, _, _)
| Br_on_cast_fail (l, _, _)
| Br_on_cast_desc_eq (l, _, _, _)
| Br_on_cast_desc_eq_fail (l, _, _, _) ->
[ l ]
| Br_table (ls, _) -> ls
| Dispatch { cases; default; _ } -> cases @ [ default ]
| TryTable { catches; _ } ->
List.map
(function
| Catch (_, l) | CatchRef (_, l) | CatchAll l | CatchAllRef l -> l)
catches
| Resume (_, hs, _)
| ResumeThrow (_, _, hs, _)
| ResumeThrowRef (_, hs, _)
| On (_, hs) ->
List.filter_map
(function OnLabel (_, l) -> Some l | OnSwitch _ -> None)
hs
| _ -> []
let targets name instrs =
let found = ref false in
List.iter
(Ast_utils.iter_instr (fun i ->
if
List.exists (fun (l : label) -> l.desc = name) (target_labels i.desc)
then found := true))
instrs;
!found
let rec (i : location instr) =
let sub e rebuild =
Option.map
(fun (l, t, inner, e') -> (l, t, inner, { i with desc = rebuild e' }))
(extract_first_block e)
in
match i.desc with
| Block { label = Some l; typ; block = { desc = inner; _ } } ->
Some (l, typ, inner, { i with desc = Hole })
| Let (pats, Some e) -> sub e (fun e' -> Let (pats, Some e'))
| Br (lb, Some e) -> sub e (fun e' -> Br (lb, Some e'))
| Br_if (lb, e) -> sub e (fun e' -> Br_if (lb, e'))
| Br_table (ls, e) -> sub e (fun e' -> Br_table (ls, e'))
| Return (Some e) -> sub e (fun e' -> Return (Some e'))
| Set (x, op, e) -> sub e (fun e' -> Set (x, op, e'))
| Tee (x, e) -> sub e (fun e' -> Tee (x, e'))
| Cast (e, ty) -> sub e (fun e' -> Cast (e', ty))
| Test (e, ty) -> sub e (fun e' -> Test (e', ty))
| NonNull e -> sub e (fun e' -> NonNull e')
| StructGet (e, f) -> sub e (fun e' -> StructGet (e', f))
| GetDescriptor e -> sub e (fun e' -> GetDescriptor e')
| UnOp (op, e) -> sub e (fun e' -> UnOp (op, e'))
| BinOp (op, a, b) -> sub a (fun a' -> BinOp (op, a', b))
| ThrowRef e -> sub e (fun e' -> ThrowRef e')
| Throw (t, a :: args) -> sub a (fun a' -> Throw (t, a' :: args))
| Call (({ desc = Get _; _ } as f), a :: args) ->
sub a (fun a' -> Call (f, a' :: args))
| TailCall (({ desc = Get _; _ } as f), a :: args) ->
sub a (fun a' -> TailCall (f, a' :: args))
| _ -> None
let rec descend join block =
match block with
| [
{
desc =
Br
( (j : label),
Some { desc = TryTable { label = None; typ; catches; block }; _ } );
_;
};
]
when j.desc = join && no_params typ && typ.results <> [||] ->
Some ([], typ, catches, block)
| [
{ desc = TryTable { label = None; typ; catches; block }; _ };
{ desc = Br ((j : label), None); _ };
]
when j.desc = join && no_params typ && typ.results = [||] ->
Some ([], typ, catches, block)
| { desc = Block { label = Some l; typ; block = { desc = inner; _ } }; _ }
:: body
when no_params typ -> (
match descend join inner with
| Some (arms, ttyp, catches, tbody) ->
Some ((l, typ.results, body) :: arms, ttyp, catches, tbody)
| None -> None)
| first :: body -> (
match extract_first_block first with
| Some (l, typ, inner, first') when no_params typ -> (
match descend join inner with
| Some (arms, ttyp, catches, tbody) ->
Some
((l, typ.results, first' :: body) :: arms, ttyp, catches, tbody)
| None -> None)
| _ -> None)
| [] -> None
let rec rewrite_instr (i : location instr) : location instr =
match try_fold i with
| Some folded -> folded
| None -> { i with desc = rewrite_desc i.desc }
and rewrite_list l = List.map rewrite_instr l
and try_fold (i : location instr) : location instr option =
match i.desc with
| Block { label = Some join; typ; block } when no_params typ -> (
match descend join.desc block.desc with
| Some (rev_arms, ttyp, catches, tbody) when catches <> [] -> (
let blocks = List.rev rev_arms in
if List.length blocks <> List.length catches then None
else if
not (Array.length ttyp.results = Array.length typ.results)
then None
else
let arm (catch : catch) ((l : label), types, body) =
let tag, ref_, target =
match catch with
| Catch (t, tl) -> (Some t, false, tl)
| CatchRef (t, tl) -> (Some t, true, tl)
| CatchAll tl -> (None, false, tl)
| CatchAllRef tl -> (None, true, tl)
in
if target.desc <> l.desc then None
else
Some
{
arm_tag = tag;
arm_ref = ref_;
arm_types = types;
arm_body = no_loc body;
}
in
let rec build catches blocks =
match (catches, blocks) with
| [], [] -> Some []
| c :: cs, b :: bs -> (
match (arm c b, build cs bs) with
| Some a, Some rest -> Some (a :: rest)
| _ -> None)
| _ -> None
in
match build catches blocks with
| Some arms
when
List.for_all
(fun a -> a.arm_tag <> None)
(match List.rev arms with
| [] -> []
| _ :: init_rev -> init_rev)
&& (let all_bodies =
tbody.desc
@ List.concat_map (fun a -> a.arm_body.desc) arms
in
List.for_all
(fun ((l : label), _, _) ->
not (targets l.desc all_bodies))
blocks)
&&
let names =
List.map (fun ((l : label), _, _) -> l.desc) blocks
in
List.length (List.sort_uniq compare names)
= List.length names ->
let all_bodies =
tbody.desc @ List.concat_map (fun a -> a.arm_body.desc) arms
in
let label =
if targets join.desc all_bodies then Some join else None
in
Some
{
i with
desc =
TryCatch
{
label;
typ;
block = { tbody with desc = rewrite_list tbody.desc };
arms =
List.map
(fun a ->
{
a with
arm_body =
{
a.arm_body with
desc = rewrite_list a.arm_body.desc;
};
})
arms;
};
}
| _ -> None)
| _ -> None)
| _ -> None
and rewrite_desc (desc : location instr_desc) : location instr_desc =
match desc with
| Block { label; typ; block } ->
Block
{ label; typ; block = { block with desc = rewrite_list block.desc } }
| Loop { label; typ; block } ->
Loop { label; typ; block = { block with desc = rewrite_list block.desc } }
| While { label; cond; step; block } ->
While
{
label;
cond = rewrite_instr cond;
step = Option.map rewrite_instr step;
block = { block with desc = rewrite_list block.desc };
}
| If { label; typ; cond; if_block; else_block } ->
If
{
label;
typ;
cond = rewrite_instr cond;
if_block = { if_block with desc = rewrite_list if_block.desc };
else_block =
Option.map
(fun b -> { b with desc = rewrite_list b.desc })
else_block;
}
| TryTable { label; typ; catches; block } ->
TryTable
{
label;
typ;
catches;
block = { block with desc = rewrite_list block.desc };
}
| TryCatch { label; typ; block; arms } ->
TryCatch
{
label;
typ;
block = { block with desc = rewrite_list block.desc };
arms =
List.map
(fun a ->
{
a with
arm_body =
{ a.arm_body with desc = rewrite_list a.arm_body.desc };
})
arms;
}
| Try { label; typ; block; catches; catch_all } ->
Try
{
label;
typ;
block = { block with desc = rewrite_list block.desc };
catches =
List.map
(fun (t, l) -> (t, { l with desc = rewrite_list l.desc }))
catches;
catch_all =
Option.map
(fun b -> { b with desc = rewrite_list b.desc })
catch_all;
}
| Dispatch { index; cases; default; arms } ->
Dispatch
{
index = rewrite_instr index;
cases;
default;
arms =
List.map
(fun (l, b) -> (l, { b with desc = rewrite_list b.desc }))
arms;
}
| Match { scrutinee; arms; default } ->
Match
{
scrutinee = rewrite_instr scrutinee;
arms =
List.map
(fun (p, b) -> (p, { b with desc = rewrite_list b.desc }))
arms;
default = { default with desc = rewrite_list default.desc };
}
| If_annotation { cond; then_body; else_body } ->
If_annotation
{
cond;
then_body = { then_body with desc = rewrite_list then_body.desc };
else_body =
Option.map
(fun b -> { b with desc = rewrite_list b.desc })
else_body;
}
| Set (x, op, e) -> Set (x, op, rewrite_instr e)
| Tee (x, e) -> Tee (x, rewrite_instr e)
| Labelled (l, e) -> Labelled (l, rewrite_instr e)
| Call (t, args) -> Call (rewrite_instr t, List.map rewrite_instr args)
| TailCall (t, args) -> TailCall (rewrite_instr t, List.map rewrite_instr args)
| Cast (e, t) -> Cast (rewrite_instr e, t)
| CastDesc (e, t, d) -> CastDesc (rewrite_instr e, t, rewrite_instr d)
| Test (e, t) -> Test (rewrite_instr e, t)
| NonNull e -> NonNull (rewrite_instr e)
| Struct (idx, fs) ->
Struct (idx, List.map (fun (n, e) -> (n, Option.map rewrite_instr e)) fs)
| StructDesc (d, fs) ->
StructDesc
( rewrite_instr d,
List.map (fun (n, e) -> (n, Option.map rewrite_instr e)) fs )
| StructDefaultDesc d -> StructDefaultDesc (rewrite_instr d)
| StructGet (e, x) -> StructGet (rewrite_instr e, x)
| GetDescriptor e -> GetDescriptor (rewrite_instr e)
| StructSet (e, x, v) -> StructSet (rewrite_instr e, x, rewrite_instr v)
| Array (idx, a, b) -> Array (idx, rewrite_instr a, rewrite_instr b)
| ArrayDefault (idx, e) -> ArrayDefault (idx, rewrite_instr e)
| ArrayFixed (idx, l) -> ArrayFixed (idx, List.map rewrite_instr l)
| ArraySegment (idx, d, a, b) ->
ArraySegment (idx, d, rewrite_instr a, rewrite_instr b)
| ArrayGet (a, b) -> ArrayGet (rewrite_instr a, rewrite_instr b)
| ArraySet (a, b, c) ->
ArraySet (rewrite_instr a, rewrite_instr b, rewrite_instr c)
| BinOp (op, a, b) -> BinOp (op, rewrite_instr a, rewrite_instr b)
| UnOp (op, e) -> UnOp (op, rewrite_instr e)
| Let (bs, e) -> Let (bs, Option.map rewrite_instr e)
| Br (l, e) -> Br (l, Option.map rewrite_instr e)
| Br_if (l, e) -> Br_if (l, rewrite_instr e)
| Hinted (h, e) -> Hinted (h, rewrite_instr e)
| On (e, h) -> On (rewrite_instr e, h)
| Br_table (ls, e) -> Br_table (ls, rewrite_instr e)
| Br_on_null (l, e) -> Br_on_null (l, rewrite_instr e)
| Br_on_non_null (l, e) -> Br_on_non_null (l, rewrite_instr e)
| Br_on_cast (l, t, e) -> Br_on_cast (l, t, rewrite_instr e)
| Br_on_cast_fail (l, t, e) -> Br_on_cast_fail (l, t, rewrite_instr e)
| Br_on_cast_desc_eq (l, t, e, d) ->
Br_on_cast_desc_eq (l, t, rewrite_instr e, rewrite_instr d)
| Br_on_cast_desc_eq_fail (l, t, e, d) ->
Br_on_cast_desc_eq_fail (l, t, rewrite_instr e, rewrite_instr d)
| Throw (idx, e) -> Throw (idx, List.map rewrite_instr e)
| ThrowRef e -> ThrowRef (rewrite_instr e)
| ContNew (ct, e) -> ContNew (ct, rewrite_instr e)
| ContBind (src, dst, l) -> ContBind (src, dst, List.map rewrite_instr l)
| Suspend (tag, l) -> Suspend (tag, List.map rewrite_instr l)
| Resume (ct, h, l) -> Resume (ct, h, List.map rewrite_instr l)
| ResumeThrow (ct, tag, h, l) ->
ResumeThrow (ct, tag, h, List.map rewrite_instr l)
| ResumeThrowRef (ct, h, l) -> ResumeThrowRef (ct, h, List.map rewrite_instr l)
| Switch (ct, tag, l) -> Switch (ct, tag, List.map rewrite_instr l)
| Return e -> Return (Option.map rewrite_instr e)
| Sequence l -> Sequence (List.map rewrite_instr l)
| Select (a, b, c) ->
Select (rewrite_instr a, rewrite_instr b, rewrite_instr c)
| ( Unreachable | Nop | Hole | Null | Get _ | Path _ | Char _ | String _
| Int _ | Float _ | StructDefault _ ) as x ->
x
let rec field_desc (f : location modulefield) =
let map_fields = List.map (fun a -> { a with desc = field_desc a.desc }) in
match f with
| Func ({ body = label, instrs; _ } as r) ->
Func { r with body = (label, rewrite_list instrs) }
| Conditional ({ then_fields; else_fields; _ } as r) ->
Conditional
{
r with
then_fields = { then_fields with desc = map_fields then_fields.desc };
else_fields =
Option.map
(fun b -> { b with desc = map_fields b.desc })
else_fields;
}
| ( Type _ | Module_annotation _ | Import _ | Import_group _ | Global _
| Tag _ | Memory _ | Data _ | Table _ | Elem _ ) as f ->
f
let module_ (m : location module_) : location module_ =
List.map (fun a -> { a with desc = field_desc a.desc }) m