1 // resolve.cc - Code for linking and resolving classes and pool entries.
3 /* Copyright (C) 1999, 2000, 2001 Free Software Foundation
5 This file is part of libgcj.
7 This software is copyrighted work licensed under the terms of the
8 Libgcj License. Please consult the file "LIBGCJ_LICENSE" for
11 /* Author: Kresten Krab Thorup <krab@gnu.org> */
15 #include <java-interp.h>
20 #include <java-cpool.h>
21 #include <java/lang/Class.h>
22 #include <java/lang/String.h>
23 #include <java/lang/Thread.h>
24 #include <java/lang/InternalError.h>
25 #include <java/lang/VirtualMachineError.h>
26 #include <java/lang/NoSuchFieldError.h>
27 #include <java/lang/NoSuchMethodError.h>
28 #include <java/lang/ClassFormatError.h>
29 #include <java/lang/IllegalAccessError.h>
30 #include <java/lang/AbstractMethodError.h>
31 #include <java/lang/ClassNotFoundException.h>
32 #include <java/lang/IncompatibleClassChangeError.h>
33 #include <java/lang/reflect/Modifier.h>
36 _Jv_ResolveField (_Jv_Field
*field
, java::lang::ClassLoader
*loader
)
38 if (! field
->isResolved ())
40 _Jv_Utf8Const
*sig
= (_Jv_Utf8Const
*)field
->type
;
41 field
->type
= _Jv_FindClassFromSignature (sig
->data
, loader
);
42 field
->flags
&= ~_Jv_FIELD_UNRESOLVED_FLAG
;
48 static void throw_internal_error (char *msg
)
49 __attribute__ ((__noreturn__
));
50 static void throw_class_format_error (jstring msg
)
51 __attribute__ ((__noreturn__
));
52 static void throw_class_format_error (char *msg
)
53 __attribute__ ((__noreturn__
));
55 // Exceptional return values for _Jv_DetermineVTableIndex
56 #define METHOD_NOT_THERE (-2)
57 #define METHOD_INACCESSIBLE (-1)
59 static int get_alignment_from_class (jclass
);
61 static _Jv_ResolvedMethod
*
62 _Jv_BuildResolvedMethod (_Jv_Method
*,
68 // We need to know the name of a constructor.
69 static _Jv_Utf8Const
*init_name
= _Jv_makeUtf8Const ("<init>", 6);
71 static void throw_incompatible_class_change_error (jstring msg
)
73 JvThrow (new java::lang::IncompatibleClassChangeError (msg
));
77 _Jv_ResolvePoolEntry (jclass klass
, int index
)
79 using namespace java::lang::reflect
;
81 _Jv_Constants
*pool
= &klass
->constants
;
83 if ((pool
->tags
[index
] & JV_CONSTANT_ResolvedFlag
) != 0)
84 return pool
->data
[index
];
86 switch (pool
->tags
[index
]) {
87 case JV_CONSTANT_Class
:
89 _Jv_Utf8Const
*name
= pool
->data
[index
].utf8
;
92 if (name
->data
[0] == '[')
93 found
= _Jv_FindClassFromSignature (&name
->data
[0],
96 found
= _Jv_FindClass (name
, klass
->loader
);
100 jstring str
= _Jv_NewStringUTF (name
->data
);
101 JvThrow (new java::lang::ClassNotFoundException (str
));
104 if ((found
->accflags
& Modifier::PUBLIC
) == Modifier::PUBLIC
105 || (_Jv_ClassNameSamePackage (found
->name
,
108 pool
->data
[index
].clazz
= found
;
109 pool
->tags
[index
] |= JV_CONSTANT_ResolvedFlag
;
113 JvThrow (new java::lang::IllegalAccessError (found
->getName()));
118 case JV_CONSTANT_String
:
121 str
= _Jv_NewStringUtf8Const (pool
->data
[index
].utf8
);
122 pool
->data
[index
].o
= str
;
123 pool
->tags
[index
] |= JV_CONSTANT_ResolvedFlag
;
128 case JV_CONSTANT_Fieldref
:
130 _Jv_ushort class_index
, name_and_type_index
;
131 _Jv_loadIndexes (&pool
->data
[index
],
133 name_and_type_index
);
134 jclass owner
= (_Jv_ResolvePoolEntry (klass
, class_index
)).clazz
;
137 _Jv_InitClass (owner
);
139 _Jv_ushort name_index
, type_index
;
140 _Jv_loadIndexes (&pool
->data
[name_and_type_index
],
144 _Jv_Utf8Const
*field_name
= pool
->data
[name_index
].utf8
;
145 _Jv_Utf8Const
*field_type_name
= pool
->data
[type_index
].utf8
;
147 // FIXME: The implementation of this function
148 // (_Jv_FindClassFromSignature) will generate an instance of
149 // _Jv_Utf8Const for each call if the field type is a class name
150 // (Lxx.yy.Z;). This may be too expensive to do for each and
151 // every fieldref being resolved. For now, we fix the problem by
152 // only doing it when we have a loader different from the class
153 // declaring the field.
155 jclass field_type
= 0;
157 if (owner
->loader
!= klass
->loader
)
158 field_type
= _Jv_FindClassFromSignature (field_type_name
->data
,
161 _Jv_Field
* the_field
= 0;
163 for (jclass cls
= owner
; cls
!= 0; cls
= cls
->getSuperclass ())
165 for (int i
= 0; i
< cls
->field_count
; i
++)
167 _Jv_Field
*field
= &cls
->fields
[i
];
168 if (! _Jv_equalUtf8Consts (field
->name
, field_name
))
171 // now, check field access.
174 || ((field
->flags
& Modifier::PUBLIC
) != 0)
175 || (((field
->flags
& Modifier::PROTECTED
) != 0)
176 && cls
->isAssignableFrom (klass
))
177 || (((field
->flags
& Modifier::PRIVATE
) == 0)
178 && _Jv_ClassNameSamePackage (cls
->name
,
181 /* resove the field using the class' own loader
184 if (!field
->isResolved ())
185 _Jv_ResolveField (field
, cls
->loader
);
187 if (field_type
!= 0 && field
->type
!= field_type
)
189 (new java::lang::LinkageError
191 ("field type mismatch with different loaders")));
194 goto end_of_field_search
;
198 JvThrow (new java::lang::IllegalAccessError
);
206 jstring msg
= JvNewStringLatin1 ("field ");
207 msg
= msg
->concat (owner
->getName ());
208 msg
= msg
->concat (JvNewStringLatin1("."));
209 msg
= msg
->concat (_Jv_NewStringUTF (field_name
->data
));
210 msg
= msg
->concat (JvNewStringLatin1(" was not found."));
211 throw_incompatible_class_change_error (msg
);
214 pool
->data
[index
].field
= the_field
;
215 pool
->tags
[index
] |= JV_CONSTANT_ResolvedFlag
;
219 case JV_CONSTANT_Methodref
:
220 case JV_CONSTANT_InterfaceMethodref
:
222 _Jv_ushort class_index
, name_and_type_index
;
223 _Jv_loadIndexes (&pool
->data
[index
],
225 name_and_type_index
);
226 jclass owner
= (_Jv_ResolvePoolEntry (klass
, class_index
)).clazz
;
229 _Jv_InitClass (owner
);
231 _Jv_ushort name_index
, type_index
;
232 _Jv_loadIndexes (&pool
->data
[name_and_type_index
],
236 _Jv_Utf8Const
*method_name
= pool
->data
[name_index
].utf8
;
237 _Jv_Utf8Const
*method_signature
= pool
->data
[type_index
].utf8
;
239 int vtable_index
= -1;
240 _Jv_Method
*the_method
= 0;
241 jclass found_class
= 0;
243 // First search the class itself.
244 the_method
= _Jv_SearchMethodInClass (owner
, klass
,
245 method_name
, method_signature
);
250 goto end_of_method_search
;
253 // If we are resolving an interface method, search the interface's
254 // superinterfaces (A superinterface is not an interface's superclass -
255 // a superinterface is implemented by the interface).
256 if (pool
->tags
[index
] == JV_CONSTANT_InterfaceMethodref
)
261 ifaces
.list
= (jclass
*) _Jv_Malloc (ifaces
.len
* sizeof (jclass
*));
263 _Jv_GetInterfaces (owner
, &ifaces
);
265 for (int i
=0; i
< ifaces
.count
; i
++)
267 jclass cls
= ifaces
.list
[i
];
268 the_method
= _Jv_SearchMethodInClass (cls
, klass
, method_name
,
277 _Jv_Free (ifaces
.list
);
280 goto end_of_method_search
;
283 // Finally, search superclasses.
284 for (jclass cls
= owner
->getSuperclass (); cls
!= 0;
285 cls
= cls
->getSuperclass ())
287 the_method
= _Jv_SearchMethodInClass (cls
, klass
,
288 method_name
, method_signature
);
296 end_of_method_search
:
298 // FIXME: if (cls->loader != klass->loader), then we
299 // must actually check that the types of arguments
300 // correspond. That is, for each argument type, and
301 // the return type, doing _Jv_FindClassFromSignature
302 // with either loader should produce the same result,
303 // i.e., exactly the same jclass object. JVMS 5.4.3.3
305 if (pool
->tags
[index
] == JV_CONSTANT_InterfaceMethodref
)
308 vtable_index
= _Jv_DetermineVTableIndex
309 (found_class
, method_name
, method_signature
);
311 if (vtable_index
== METHOD_NOT_THERE
)
312 throw_incompatible_class_change_error
313 (JvNewStringLatin1 ("method not found"));
317 jstring msg
= JvNewStringLatin1 ("method ");
318 msg
= msg
->concat (owner
->getName ());
319 msg
= msg
->concat (JvNewStringLatin1("."));
320 msg
= msg
->concat (_Jv_NewStringUTF (method_name
->data
));
321 msg
= msg
->concat (JvNewStringLatin1(" was not found."));
322 JvThrow(new java::lang::NoSuchMethodError (msg
));
325 pool
->data
[index
].rmethod
=
326 _Jv_BuildResolvedMethod(the_method
,
328 (the_method
->accflags
& Modifier::STATIC
) != 0,
330 pool
->tags
[index
] |= JV_CONSTANT_ResolvedFlag
;
336 return pool
->data
[index
];
339 // Find a method declared in the cls that is referenced from klass and
340 // perform access checks.
342 _Jv_SearchMethodInClass (jclass cls
, jclass klass
,
343 _Jv_Utf8Const
*method_name
,
344 _Jv_Utf8Const
*method_signature
)
346 using namespace java::lang::reflect
;
348 for (int i
= 0; i
< cls
->method_count
; i
++)
350 _Jv_Method
*method
= &cls
->methods
[i
];
351 if ( (!_Jv_equalUtf8Consts (method
->name
,
353 || (!_Jv_equalUtf8Consts (method
->signature
,
358 || ((method
->accflags
& Modifier::PUBLIC
) != 0)
359 || (((method
->accflags
& Modifier::PROTECTED
) != 0)
360 && cls
->isAssignableFrom (klass
))
361 || (((method
->accflags
& Modifier::PRIVATE
) == 0)
362 && _Jv_ClassNameSamePackage (cls
->name
,
369 JvThrow (new java::lang::IllegalAccessError
);
375 /** FIXME: this is a terribly inefficient algorithm! It would improve
376 things if compiled classes to know vtable offset, and _Jv_Method had
379 Returns METHOD_NOT_THERE if this class does not declare the given method.
380 Returns METHOD_INACCESSIBLE if the given method does not appear in the
381 vtable, i.e., it is static, private, final or a constructor.
382 Otherwise, returns the vtable index. */
384 _Jv_DetermineVTableIndex (jclass klass
,
386 _Jv_Utf8Const
*signature
)
388 using namespace java::lang::reflect
;
390 jclass super_class
= klass
->getSuperclass ();
392 if (super_class
!= NULL
)
394 int prev
= _Jv_DetermineVTableIndex (super_class
,
397 if (prev
!= METHOD_NOT_THERE
)
401 /* at this point, we know that the super-class does not declare
402 * the method. Otherwise, the above call would have found it, and
403 * determined the result of this function (-1 or some positive
407 _Jv_Method
*meth
= _Jv_GetMethodLocal (klass
, name
, signature
);
409 /* now, if we do not declare this method, return zero */
411 return METHOD_NOT_THERE
;
413 /* so now, we know not only that the super class does not declare the
414 * method, but we do! So, this is a first declaration of the method. */
416 /* now, the checks for things that are declared in this class, but do
417 * not go into the vtable. There are three cases.
418 * 1) the method is static, private or final
419 * 2) the class itself is final, or
420 * 3) it is the method <init>
423 if ((meth
->accflags
& (Modifier::STATIC
425 | Modifier::FINAL
)) != 0
426 || (klass
->accflags
& Modifier::FINAL
) != 0
427 || _Jv_equalUtf8Consts (name
, init_name
))
428 return METHOD_INACCESSIBLE
;
430 /* reaching this point, we know for sure, that the method in question
431 * will be in the vtable. The question is where. */
433 /* the base offset, is where we will start assigning vtable
434 * indexes for this class. It is 0 for base classes
435 * and for non-base classes it is the
436 * number of entries in the super class' vtable. */
439 if (super_class
== 0)
442 base_offset
= super_class
->vtable_method_count
;
444 /* we will consider methods 0..this_method_index-1. And for each one,
445 * determine if it is new (i.e., if it appears in the super class),
446 * and if it should go in the vtable. If so, increment base_offset */
448 int this_method_index
= meth
- (&klass
->methods
[0]);
450 for (int i
= 0; i
< this_method_index
; i
++)
452 _Jv_Method
*m
= &klass
->methods
[i
];
454 /* fist some checks for things that surely do not go in the
457 if ((m
->accflags
& (Modifier::STATIC
| Modifier::PRIVATE
)) != 0)
459 if (_Jv_equalUtf8Consts (m
->name
, init_name
))
462 /* Then, we need to know if this method appears in the
463 superclass. (This is where this function gets expensive) */
464 _Jv_Method
*sm
= _Jv_LookupDeclaredMethod (super_class
,
468 /* if it was somehow declared in the superclass, skip this */
472 /* but if it is final, and not declared in the super class,
473 * then we also skip it */
474 if ((m
->accflags
& Modifier::FINAL
) != 0)
477 /* finally, we can assign the index of this method */
478 /* m->vtable_index = base_offset */
485 /* this is installed in place of abstract methods */
487 _Jv_abstractMethodError ()
489 JvThrow (new java::lang::AbstractMethodError
);
493 _Jv_PrepareClass(jclass klass
)
495 using namespace java::lang::reflect
;
498 * The job of this function is to: 1) assign storage to fields, and 2)
499 * build the vtable. static fields are assigned real memory, instance
500 * fields are assigned offsets.
502 * NOTE: we have a contract with the garbage collector here. Static
503 * reference fields must not be resolved, until after they have storage
504 * assigned which is the check used by the collector to see if it
505 * should indirect the static field reference and mark the object
508 * Most fields are resolved lazily (i.e. have their class-type
509 * assigned) when they are accessed the first time by calling as part
510 * of _Jv_ResolveField, which is allways called after _Jv_PrepareClass.
511 * Static fields with initializers are resolved as part of this
512 * function, as are fields with primitive types.
515 if (! _Jv_IsInterpretedClass (klass
))
518 if (klass
->state
>= JV_STATE_PREPARED
)
521 // make sure super-class is linked. This involves taking a lock on
522 // the super class, so we use the Java method resolveClass, which will
523 // unlock it properly, should an exception happen.
525 java::lang::ClassLoader::resolveClass0 (klass
->superclass
);
527 _Jv_InterpClass
*clz
= (_Jv_InterpClass
*)klass
;
529 /************ PART ONE: OBJECT LAYOUT ***************/
534 // java.lang.Object is never interpreted!
535 instance_size
= clz
->superclass
->size ();
538 for (int i
= 0; i
< clz
->field_count
; i
++)
543 _Jv_Field
*field
= &clz
->fields
[i
];
545 if (! field
->isRef ())
547 // it's safe to resolve the field here, since it's
548 // a primitive class, which does not cause loading to happen.
549 _Jv_ResolveField (field
, clz
->loader
);
551 field_size
= field
->type
->size ();
552 field_align
= get_alignment_from_class (field
->type
);
556 field_size
= sizeof (jobject
);
557 field_align
= __alignof__ (jobject
);
560 #ifndef COMPACT_FIELDS
561 field
->bsize
= field_size
;
564 if (field
->flags
& Modifier::STATIC
)
566 /* this computes an offset into a region we'll allocate
567 shortly, and then add this offset to the start address */
569 static_size
= ROUND (static_size
, field_align
);
570 field
->u
.boffset
= static_size
;
571 static_size
+= field_size
;
575 instance_size
= ROUND (instance_size
, field_align
);
576 field
->u
.boffset
= instance_size
;
577 instance_size
+= field_size
;
581 // set the instance size for the class
582 clz
->size_in_bytes
= instance_size
;
584 // allocate static memory
585 if (static_size
!= 0)
587 char *static_data
= (char*)_Jv_AllocBytesChecked (static_size
);
589 memset (static_data
, 0, static_size
);
591 for (int i
= 0; i
< clz
->field_count
; i
++)
593 _Jv_Field
*field
= &clz
->fields
[i
];
595 if ((field
->flags
& Modifier::STATIC
) != 0)
597 field
->u
.addr
= static_data
+ field
->u
.boffset
;
599 if (clz
->field_initializers
[i
] != 0)
601 _Jv_ResolveField (field
, clz
->loader
);
602 _Jv_InitField (0, clz
, i
);
607 // now we don't need the field_initializers anymore, so let the
608 // collector get rid of it!
610 clz
->field_initializers
= 0;
613 /************ PART TWO: VTABLE LAYOUT ***************/
615 /* preparation: build the vtable stubs (even interfaces can)
616 have code -- for static constructors. */
617 for (int i
= 0; i
< clz
->method_count
; i
++)
619 _Jv_MethodBase
*imeth
= clz
->interpreted_methods
[i
];
621 if ((clz
->methods
[i
].accflags
& Modifier::NATIVE
) != 0)
623 // You might think we could use a virtual `ncode' method in
624 // the _Jv_MethodBase and unify the native and non-native
625 // cases. Well, we can't, because we don't allocate these
626 // objects using `new', and thus they don't get a vtable.
627 _Jv_JNIMethod
*jnim
= reinterpret_cast<_Jv_JNIMethod
*> (imeth
);
628 clz
->methods
[i
].ncode
= jnim
->ncode ();
630 else if (imeth
!= 0) // it could be abstract
632 _Jv_InterpMethod
*im
= reinterpret_cast<_Jv_InterpMethod
*> (imeth
);
633 clz
->methods
[i
].ncode
= im
->ncode ();
637 if (clz
->accflags
& Modifier::INTERFACE
)
639 clz
->state
= JV_STATE_PREPARED
;
644 /* Now onto the actual job: vtable layout. First, count how many new
646 int new_method_count
= 0;
648 jclass super_class
= clz
->getSuperclass ();
650 if (super_class
== 0)
651 throw_internal_error ("cannot handle interpreted base classes");
653 for (int i
= 0; i
< clz
->method_count
; i
++)
655 _Jv_Method
*this_meth
= &clz
->methods
[i
];
657 if ((this_meth
->accflags
& (Modifier::STATIC
| Modifier::PRIVATE
)) != 0
658 || _Jv_equalUtf8Consts (this_meth
->name
, init_name
))
660 /* skip this, it doesn't go in the vtable */
664 _Jv_Method
*orig_meth
= _Jv_LookupDeclaredMethod (super_class
,
666 this_meth
->signature
);
670 // new methods that are final, also don't go in the vtable
671 if ((this_meth
->accflags
& Modifier::FINAL
) != 0)
674 new_method_count
+= 1;
678 if ((orig_meth
->accflags
& (Modifier::STATIC
680 | Modifier::FINAL
)) != 0
681 || ((orig_meth
->accflags
& Modifier::ABSTRACT
) == 0
682 && (this_meth
->accflags
& Modifier::ABSTRACT
) != 0
683 && (klass
->accflags
& Modifier::ABSTRACT
) == 0))
685 clz
->state
= JV_STATE_ERROR
;
687 JvThrow (new java::lang::IncompatibleClassChangeError
691 /* FIXME: At this point, if (loader != super_class->loader), we
692 * need to "impose class loader constraints" for the types
693 * involved in the signature of this method */
697 int vtable_count
= (super_class
->vtable_method_count
) + new_method_count
;
698 clz
->vtable_method_count
= vtable_count
;
700 /* allocate vtable structure */
701 _Jv_VTable
*vtable
= (_Jv_VTable
*)
702 _Jv_AllocBytesChecked (sizeof (_Jv_VTable
)
703 + (sizeof (void*) * (vtable_count
)));
705 vtable
->gc_descr
= _Jv_BuildGCDescr(clz
);
708 jclass effective_superclass
= super_class
;
710 /* If super_class is abstract or an interface it has no vtable.
711 We need to find a real one... */
712 while (effective_superclass
&& effective_superclass
->vtable
== NULL
)
713 effective_superclass
= effective_superclass
->superclass
;
715 /* copy super class' vtable entries. */
716 if (effective_superclass
&& effective_superclass
->vtable
)
717 memcpy ((void*)&vtable
->method
[0],
718 (void*)&effective_superclass
->vtable
->method
[0],
719 sizeof (void*) * effective_superclass
->vtable_method_count
);
722 /* now, install our own vtable entries, reprise... */
723 for (int i
= 0; i
< clz
->method_count
; i
++)
725 _Jv_Method
*this_meth
= &clz
->methods
[i
];
727 int index
= _Jv_DetermineVTableIndex (clz
,
729 this_meth
->signature
);
731 if (index
== METHOD_NOT_THERE
)
732 throw_internal_error ("method now found in own class");
734 if (index
!= METHOD_INACCESSIBLE
)
736 if (index
> clz
->vtable_method_count
)
737 throw_internal_error ("vtable problem...");
739 if (clz
->interpreted_methods
[i
] == 0)
740 vtable
->method
[index
] = (void*)&_Jv_abstractMethodError
;
742 vtable
->method
[index
] = this_meth
->ncode
;
746 /* finally, assign the vtable! */
747 clz
->vtable
= vtable
;
749 /* wooha! we're done. */
750 clz
->state
= JV_STATE_PREPARED
;
754 /** Do static initialization for fields with a constant initializer */
756 _Jv_InitField (jobject obj
, jclass klass
, int index
)
758 using namespace java::lang::reflect
;
760 if (obj
!= 0 && klass
== 0)
761 klass
= obj
->getClass ();
763 if (!_Jv_IsInterpretedClass (klass
))
766 _Jv_InterpClass
*clz
= (_Jv_InterpClass
*)klass
;
768 _Jv_Field
* field
= (&clz
->fields
[0]) + index
;
770 if (index
> clz
->field_count
)
771 throw_internal_error ("field out of range");
773 int init
= clz
->field_initializers
[index
];
777 _Jv_Constants
*pool
= &clz
->constants
;
778 int tag
= pool
->tags
[init
];
780 if (! field
->isResolved ())
781 throw_internal_error ("initializing unresolved field");
783 if (obj
==0 && ((field
->flags
& Modifier::STATIC
) == 0))
784 throw_internal_error ("initializing non-static field with no object");
788 if ((field
->flags
& Modifier::STATIC
) != 0)
789 addr
= (void*) field
->u
.addr
;
791 addr
= (void*) (((char*)obj
) + field
->u
.boffset
);
795 case JV_CONSTANT_String
:
797 _Jv_MonitorEnter (clz
);
799 str
= _Jv_NewStringUtf8Const (pool
->data
[init
].utf8
);
800 pool
->data
[init
].string
= str
;
801 pool
->tags
[init
] = JV_CONSTANT_ResolvedString
;
802 _Jv_MonitorExit (clz
);
806 case JV_CONSTANT_ResolvedString
:
807 if (! (field
->type
== &StringClass
808 || field
->type
== &java::lang::Class::class$
))
809 throw_class_format_error ("string initialiser to non-string field");
811 *(jstring
*)addr
= pool
->data
[init
].string
;
814 case JV_CONSTANT_Integer
:
816 int value
= pool
->data
[init
].i
;
818 if (field
->type
== JvPrimClass (boolean
))
819 *(jboolean
*)addr
= (jboolean
)value
;
821 else if (field
->type
== JvPrimClass (byte
))
822 *(jbyte
*)addr
= (jbyte
)value
;
824 else if (field
->type
== JvPrimClass (char))
825 *(jchar
*)addr
= (jchar
)value
;
827 else if (field
->type
== JvPrimClass (short))
828 *(jshort
*)addr
= (jshort
)value
;
830 else if (field
->type
== JvPrimClass (int))
831 *(jint
*)addr
= (jint
)value
;
834 throw_class_format_error ("erroneous field initializer");
838 case JV_CONSTANT_Long
:
839 if (field
->type
!= JvPrimClass (long))
840 throw_class_format_error ("erroneous field initializer");
842 *(jlong
*)addr
= _Jv_loadLong (&pool
->data
[init
]);
845 case JV_CONSTANT_Float
:
846 if (field
->type
!= JvPrimClass (float))
847 throw_class_format_error ("erroneous field initializer");
849 *(jfloat
*)addr
= pool
->data
[init
].f
;
852 case JV_CONSTANT_Double
:
853 if (field
->type
!= JvPrimClass (double))
854 throw_class_format_error ("erroneous field initializer");
856 *(jdouble
*)addr
= _Jv_loadDouble (&pool
->data
[init
]);
860 throw_class_format_error ("erroneous field initializer");
865 get_alignment_from_class (jclass klass
)
867 if (klass
== JvPrimClass (byte
))
868 return __alignof__ (jbyte
);
869 else if (klass
== JvPrimClass (short))
870 return __alignof__ (jshort
);
871 else if (klass
== JvPrimClass (int))
872 return __alignof__ (jint
);
873 else if (klass
== JvPrimClass (long))
874 return __alignof__ (jlong
);
875 else if (klass
== JvPrimClass (boolean
))
876 return __alignof__ (jboolean
);
877 else if (klass
== JvPrimClass (char))
878 return __alignof__ (jchar
);
879 else if (klass
== JvPrimClass (float))
880 return __alignof__ (jfloat
);
881 else if (klass
== JvPrimClass (double))
882 return __alignof__ (jdouble
);
884 return __alignof__ (jobject
);
888 inline static unsigned char*
889 skip_one_type (unsigned char* ptr
)
900 do { ch
= *ptr
++; } while (ch
!= ';');
907 get_ffi_type_from_signature (unsigned char* ptr
)
913 return &ffi_type_pointer
;
917 // On some platforms a bool is a byte, on others an int.
918 if (sizeof (jboolean
) == sizeof (jbyte
))
919 return &ffi_type_sint8
;
922 JvAssert (sizeof (jbyte
) == sizeof (jint
));
923 return &ffi_type_sint32
;
928 return &ffi_type_sint8
;
932 return &ffi_type_uint16
;
936 return &ffi_type_sint16
;
940 return &ffi_type_sint32
;
944 return &ffi_type_sint64
;
948 return &ffi_type_float
;
952 return &ffi_type_double
;
956 return &ffi_type_void
;
960 throw_internal_error ("unknown type in signature");
963 /* this function yields the number of actual arguments, that is, if the
964 * function is non-static, then one is added to the number of elements
965 * found in the signature */
968 count_arguments (_Jv_Utf8Const
*signature
,
971 unsigned char *ptr
= (unsigned char*) signature
->data
;
972 int arg_count
= staticp
? 0 : 1;
974 /* first, count number of arguments */
982 ptr
= skip_one_type (ptr
);
989 /* This beast will build a cif, given the signature. Memory for
990 * the cif itself and for the argument types must be allocated by the
995 init_cif (_Jv_Utf8Const
* signature
,
999 ffi_type
**arg_types
,
1002 unsigned char *ptr
= (unsigned char*) signature
->data
;
1004 int arg_index
= 0; // arg number
1005 int item_count
= 0; // stack-item count
1010 arg_types
[arg_index
++] = &ffi_type_pointer
;
1020 arg_types
[arg_index
++] = get_ffi_type_from_signature (ptr
);
1022 if (*ptr
== 'J' || *ptr
== 'D')
1027 ptr
= skip_one_type (ptr
);
1032 ffi_type
*rtype
= get_ffi_type_from_signature (ptr
);
1034 ptr
= skip_one_type (ptr
);
1035 if (ptr
!= (unsigned char*)signature
->data
+ signature
->length
)
1036 throw_internal_error ("did not find end of signature");
1038 if (ffi_prep_cif (cif
, FFI_DEFAULT_ABI
,
1039 arg_count
, rtype
, arg_types
) != FFI_OK
)
1040 throw_internal_error ("ffi_prep_cif failed");
1042 if (rtype_p
!= NULL
)
1048 #if FFI_NATIVE_RAW_API
1049 # define FFI_PREP_RAW_CLOSURE ffi_prep_raw_closure
1050 # define FFI_RAW_SIZE ffi_raw_size
1052 # define FFI_PREP_RAW_CLOSURE ffi_prep_java_raw_closure
1053 # define FFI_RAW_SIZE ffi_java_raw_size
1056 /* we put this one here, and not in interpret.cc because it
1057 * calls the utility routines count_arguments
1058 * which are static to this module. The following struct defines the
1059 * layout we use for the stubs, it's only used in the ncode method. */
1062 ffi_raw_closure closure
;
1064 ffi_type
*arg_types
[0];
1067 typedef void (*ffi_closure_fun
) (ffi_cif
*,void*,ffi_raw
*,void*);
1070 _Jv_InterpMethod::ncode ()
1072 using namespace java::lang::reflect
;
1074 if (self
->ncode
!= 0)
1077 jboolean staticp
= (self
->accflags
& Modifier::STATIC
) != 0;
1078 int arg_count
= count_arguments (self
->signature
, staticp
);
1080 ncode_closure
*closure
=
1081 (ncode_closure
*)_Jv_AllocBytesChecked (sizeof (ncode_closure
)
1082 + arg_count
* sizeof (ffi_type
*));
1084 init_cif (self
->signature
,
1088 &closure
->arg_types
[0],
1091 ffi_closure_fun fun
;
1093 args_raw_size
= FFI_RAW_SIZE (&closure
->cif
);
1095 JvAssert ((self
->accflags
& Modifier::NATIVE
) == 0);
1097 if ((self
->accflags
& Modifier::SYNCHRONIZED
) != 0)
1100 fun
= (ffi_closure_fun
)&_Jv_InterpMethod::run_synch_class
;
1102 fun
= (ffi_closure_fun
)&_Jv_InterpMethod::run_synch_object
;
1106 fun
= (ffi_closure_fun
)&_Jv_InterpMethod::run_normal
;
1109 FFI_PREP_RAW_CLOSURE (&closure
->closure
,
1114 self
->ncode
= (void*)closure
;
1120 _Jv_JNIMethod::ncode ()
1122 using namespace java::lang::reflect
;
1124 if (self
->ncode
!= 0)
1127 jboolean staticp
= (self
->accflags
& Modifier::STATIC
) != 0;
1128 int arg_count
= count_arguments (self
->signature
, staticp
);
1130 ncode_closure
*closure
=
1131 (ncode_closure
*)_Jv_AllocBytesChecked (sizeof (ncode_closure
)
1132 + arg_count
* sizeof (ffi_type
*));
1135 init_cif (self
->signature
,
1139 &closure
->arg_types
[0],
1142 ffi_closure_fun fun
;
1144 args_raw_size
= FFI_RAW_SIZE (&closure
->cif
);
1146 // Initialize the argument types and CIF that represent the actual
1147 // underlying JNI function.
1149 if ((self
->accflags
& Modifier::STATIC
))
1151 jni_arg_types
= (ffi_type
**) _Jv_Malloc ((extra_args
+ arg_count
)
1152 * sizeof (ffi_type
*));
1154 jni_arg_types
[offset
++] = &ffi_type_pointer
;
1155 if ((self
->accflags
& Modifier::STATIC
))
1156 jni_arg_types
[offset
++] = &ffi_type_pointer
;
1157 memcpy (&jni_arg_types
[offset
], &closure
->arg_types
[0],
1158 arg_count
* sizeof (ffi_type
*));
1160 if (ffi_prep_cif (&jni_cif
, FFI_DEFAULT_ABI
,
1161 extra_args
+ arg_count
, rtype
,
1162 jni_arg_types
) != FFI_OK
)
1163 throw_internal_error ("ffi_prep_cif failed for JNI function");
1165 JvAssert ((self
->accflags
& Modifier::NATIVE
) != 0);
1167 // FIXME: for now we assume that all native methods for
1168 // interpreted code use JNI.
1169 fun
= (ffi_closure_fun
) &_Jv_JNIMethod::call
;
1171 FFI_PREP_RAW_CLOSURE (&closure
->closure
,
1176 self
->ncode
= (void *) closure
;
1181 /* A _Jv_ResolvedMethod is what is put in the constant pool for a
1182 * MethodRef or InterfacemethodRef. */
1183 static _Jv_ResolvedMethod
*
1184 _Jv_BuildResolvedMethod (_Jv_Method
* method
,
1189 int arg_count
= count_arguments (method
->signature
, staticp
);
1191 _Jv_ResolvedMethod
* result
= (_Jv_ResolvedMethod
*)
1192 _Jv_AllocBytesChecked (sizeof (_Jv_ResolvedMethod
)
1193 + arg_count
*sizeof (ffi_type
*));
1195 result
->stack_item_count
1196 = init_cif (method
->signature
,
1200 &result
->arg_types
[0],
1203 result
->vtable_index
= vtable_index
;
1204 result
->method
= method
;
1205 result
->klass
= klass
;
1212 throw_class_format_error (jstring msg
)
1215 JvThrow (new java::lang::ClassFormatError
);
1217 JvThrow (new java::lang::ClassFormatError (msg
));
1221 throw_class_format_error (char *msg
)
1223 throw_class_format_error (JvNewStringLatin1 (msg
));
1227 throw_internal_error (char *msg
)
1230 (new java::lang::InternalError (JvNewStringLatin1 (msg
)));
1234 #endif /* INTERPRETER */