ocaml/byterun/weak.c

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/***********************************************************************/
/* */
/* Objective Caml */
/* */
/* Damien Doligez, projet Para, INRIA Rocquencourt */
/* */
/* Copyright 1997 Institut National de Recherche en Informatique et */
/* en Automatique. Distributed only by permission. */
/* */
/***********************************************************************/
/* $Id$ */
/* Operations on weak arrays */
#include "alloc.h"
#include "fail.h"
#include "memory.h"
#include "mlvalues.h"
value weak_list_head = 0;
value weak_create (value len) /* ML */
{
mlsize_t size, i;
value res;
size = Long_val (len) + 1;
if (size > Max_wosize) invalid_argument ("Weak.create");
res = alloc_shr (size, Abstract_tag);
for (i = 1; i < size; i++) Field (res, i) = 0;
Field (res, 0) = weak_list_head;
weak_list_head = res;
return res;
}
#define None_val Val_int(0)
#define Some_tag 0
value weak_set (value ar, value n, value el) /* ML */
{
mlsize_t offset = Long_val (n) + 1;
Assert (Is_in_heap (ar));
if (offset < 1 || offset >= Wosize_val (ar)) invalid_argument ("Weak.set");
Field (ar, offset) = 0;
if (el != None_val){ Assert (Wosize_val (el) == 1);
Modify (&Field (ar, offset), Field (el, 0));
}
return Val_unit;
}
#define Setup_for_gc
#define Restore_after_gc
value weak_get (value ar, value n) /* ML */
{
mlsize_t offset = Long_val (n) + 1;
value res;
value elt;
Assert (Is_in_heap (ar));
if (offset < 1 || offset >= Wosize_val (ar)) invalid_argument ("Weak.get");
if (Field (ar, offset) == 0){
res = None_val;
}else{
elt = Field (ar, offset);
if (gc_phase == Phase_mark) darken (elt, NULL);
Begin_root(elt);
res = alloc_small (1, Some_tag);
End_roots ();
Field (res, 0) = elt;
}
return res;
}
#undef Setup_for_gc
#undef Restore_after_gc