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type oop = int
type body = Pointers of oop array | Bytes of Bytes.t | Float of float | Method of oop array * Bytes.t | Free
type known = {
mutable small_integer : oop;
mutable string : oop;
mutable symbol : oop;
mutable array : oop;
mutable float : oop;
mutable character : oop;
mutable compiled_method : oop;
mutable method_context : oop;
mutable block_context : oop;
mutable block_closure : oop;
mutable message : oop;
mutable association : oop;
mutable point : oop;
mutable large_positive : oop;
mutable large_negative : oop;
mutable metaclass : oop;
mutable method_dictionary : oop;
mutable true_ : oop;
mutable false_ : oop;
mutable smalltalk : oop;
mutable characters : oop array;
mutable special_selectors : oop array;
}
type t = {
mutable classes : oop array;
mutable bodies : body array;
mutable flags : Bytes.t;
mutable free : int list;
mutable top : int;
mutable in_use : int;
mutable allocated : int;
symbol_table : (string, oop) Hashtbl.t;
known : known;
}
let nil = 0
let empty_known () =
{
small_integer = 0;
string = 0;
symbol = 0;
array = 0;
float = 0;
character = 0;
compiled_method = 0;
method_context = 0;
block_context = 0;
block_closure = 0;
message = 0;
association = 0;
point = 0;
large_positive = 0;
large_negative = 0;
metaclass = 0;
method_dictionary = 0;
true_ = 0;
false_ = 0;
smalltalk = 0;
characters = [||];
special_selectors = [||];
}
let create () : t =
let n = 4096 in
let m =
{
classes = Array.make n 0;
bodies = Array.make n Free;
flags = Bytes.make n '\000';
free = [];
top = 1;
in_use = 1;
allocated = 0;
symbol_table = Hashtbl.create 1024;
known = empty_known ();
}
in
m.bodies.(0) <- Pointers [||];
m
let known (m : t) : known = m.known
let is_int (o : oop) : bool = o land 1 = 1
let int_of (o : oop) : int = o asr 1
let of_int (i : int) : oop = (i lsl 1) lor 1
let fits (i : int) : bool = i >= St_lexer.min_small && i <= St_lexer.max_small
let index (o : oop) : int = o lsr 1
let grow (m : t) : unit =
let n = Array.length m.classes in
let classes = Array.make (2 * n) 0 and bodies = Array.make (2 * n) Free and flags = Bytes.make (2 * n) '\000' in
Array.blit m.classes 0 classes 0 n;
Array.blit m.bodies 0 bodies 0 n;
Bytes.blit m.flags 0 flags 0 n;
m.classes <- classes;
m.bodies <- bodies;
m.flags <- flags
let alloc (m : t) ~(cls : oop) (b : body) : oop =
let i =
match m.free with
| i :: rest ->
m.free <- rest;
i
| [] ->
if m.top >= Array.length m.classes then grow m;
let i = m.top in
m.top <- m.top + 1;
i
in
m.classes.(i) <- cls;
m.bodies.(i) <- b;
Bytes.set m.flags i '\000';
m.in_use <- m.in_use + 1;
m.allocated <- m.allocated + 1;
i lsl 1
let escaped (m : t) (o : oop) : bool = Bytes.get m.flags (index o) <> '\000'
let escape (m : t) (o : oop) : unit = Bytes.set m.flags (index o) '\001'
let class_of (m : t) (o : oop) : oop = if is_int o then m.known.small_integer else m.classes.(index o)
let set_class (m : t) (o : oop) (c : oop) : unit = m.classes.(index o) <- c
let body (m : t) (o : oop) : body = if is_int o then Free else m.bodies.(index o)
let set_body (m : t) (o : oop) (b : body) : unit = m.bodies.(index o) <- b
let fields (m : t) (o : oop) : oop array =
match body m o with Pointers a | Method (a, _) -> a | Bytes _ | Float _ | Free -> [||]
let fetch (m : t) (o : oop) (i : int) : oop = (fields m o).(i)
let store (m : t) (o : oop) (i : int) (v : oop) : unit = (fields m o).(i) <- v
let size (m : t) (o : oop) : int =
match body m o with Pointers a | Method (a, _) -> Array.length a | Bytes b -> Bytes.length b | Float _ | Free -> 0
let string_of (m : t) (o : oop) : string = match body m o with Bytes b -> Bytes.to_string b | _ -> ""
let new_string (m : t) (s : string) : oop = alloc m ~cls:m.known.string (Bytes (Bytes.of_string s))
let new_array (m : t) (a : oop array) : oop = alloc m ~cls:m.known.array (Pointers a)
let new_float (m : t) (f : float) : oop = alloc m ~cls:m.known.float (Float f)
let float_of (m : t) (o : oop) : float = match body m o with Float f -> f | _ -> nan
let symbol (m : t) (s : string) : oop =
match Hashtbl.find_opt m.symbol_table s with
| Some o -> o
| None ->
let o = alloc m ~cls:m.known.symbol (Bytes (Bytes.of_string s)) in
Hashtbl.replace m.symbol_table s o;
o
let symbols (m : t) : (string * oop) list = Hashtbl.fold (fun s o acc -> (s, o) :: acc) m.symbol_table []
let become (m : t) (a : oop) (b : oop) : unit =
let i = index a and j = index b in
let c = m.classes.(i) and bd = m.bodies.(i) in
m.classes.(i) <- m.classes.(j);
m.bodies.(i) <- m.bodies.(j);
m.classes.(j) <- c;
m.bodies.(j) <- bd
let instances (m : t) (cls : oop) : oop list =
let acc = ref [] in
for i = m.top - 1 downto 0 do
if m.classes.(i) = cls && m.bodies.(i) <> Free then acc := (i lsl 1) :: !acc
done;
!acc
let live (m : t) : int = m.in_use
let allocated (m : t) : int = m.allocated
let gc (m : t) ~(roots : oop list) : int =
let marks = Bytes.make m.top '\000' in
let k = m.known in
let stack = ref [] in
let push o =
if (not (is_int o)) && index o < m.top && Bytes.get marks (index o) = '\000' then begin
Bytes.set marks (index o) '\001';
stack := o :: !stack
end
in
let scan o =
let i = index o in
push m.classes.(i);
match m.bodies.(i) with
| Pointers a ->
let cls = m.classes.(i) in
let last =
if (cls = k.method_context || cls = k.block_context) && Array.length a > 2 && is_int a.(2) then
min (Array.length a - 1) (int_of a.(2))
else Array.length a - 1
in
for f = 0 to last do
push a.(f)
done
| Method (a, _) -> Array.iter push a
| Bytes _ | Float _ | Free -> ()
in
push nil;
List.iter push [ k.true_; k.false_; k.smalltalk ];
Array.iter push k.characters;
Array.iter push k.special_selectors;
Hashtbl.iter (fun _ o -> push o) m.symbol_table;
List.iter push roots;
let rec drain () =
match !stack with
| [] -> ()
| o :: rest ->
stack := rest;
scan o;
drain ()
in
drain ();
let freed = ref 0 in
for i = 1 to m.top - 1 do
if Bytes.get marks i = '\000' && m.bodies.(i) <> Free then begin
m.bodies.(i) <- Free;
m.classes.(i) <- 0;
m.free <- i :: m.free;
incr freed
end
done;
m.in_use <- m.in_use - !freed;
m.allocated <- 0;
!freed
let entries (m : t) : (int * oop * body) list =
let acc = ref [] in
for i = m.top - 1 downto 0 do
if m.bodies.(i) <> Free then acc := (i, m.classes.(i), m.bodies.(i)) :: !acc
done;
!acc
let restore (known : known) (es : (int * oop * body) list) : t =
let top = List.fold_left (fun acc (i, _, _) -> max acc (i + 1)) 1 es in
let n = ref 4096 in
while !n < top + 1 do
n := 2 * !n
done;
let m =
{
classes = Array.make !n 0;
bodies = Array.make !n Free;
flags = Bytes.make !n '\000';
free = [];
top;
in_use = 0;
allocated = 0;
symbol_table = Hashtbl.create 1024;
known;
}
in
List.iter
(fun (i, c, b) ->
m.classes.(i) <- c;
m.bodies.(i) <- b;
m.in_use <- m.in_use + 1)
es;
for i = top - 1 downto 1 do
if m.bodies.(i) = Free then m.free <- i :: m.free
done;
List.iter
(fun (i, c, b) -> match b with Bytes s when c = known.symbol -> Hashtbl.replace m.symbol_table (Bytes.to_string s) (i lsl 1) | _ -> ())
es;
m