author | jrose |
Wed, 13 Jan 2010 23:05:52 -0800 | |
changeset 4644 | 2b1a1bc98168 |
parent 4571 | 80b553bddc26 |
child 5547 | f4b087cbb361 |
permissions | -rw-r--r-- |
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/* |
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* Copyright 1999-2009 Sun Microsystems, Inc. All Rights Reserved. |
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
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* |
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* This code is free software; you can redistribute it and/or modify it |
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* under the terms of the GNU General Public License version 2 only, as |
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* published by the Free Software Foundation. |
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* |
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* This code is distributed in the hope that it will be useful, but WITHOUT |
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or |
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License |
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* version 2 for more details (a copy is included in the LICENSE file that |
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* accompanied this code). |
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* |
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* You should have received a copy of the GNU General Public License version |
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* 2 along with this work; if not, write to the Free Software Foundation, |
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. |
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* |
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* Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara, |
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* CA 95054 USA or visit www.sun.com if you need additional information or |
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* have any questions. |
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* |
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*/ |
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#include "incls/_precompiled.incl" |
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#include "incls/_ciField.cpp.incl" |
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// ciField |
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// |
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// This class represents the result of a field lookup in the VM. |
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// The lookup may not succeed, in which case the information in |
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// the ciField will be incomplete. |
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// The ciObjectFactory cannot create circular data structures in one query. |
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// To avoid vicious circularities, we initialize ciField::_type to NULL |
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// for reference types and derive it lazily from the ciField::_signature. |
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// Primitive types are eagerly initialized, and basic layout queries |
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// can succeed without initialization, using only the BasicType of the field. |
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// Notes on bootstrapping and shared CI objects: A field is shared if and |
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// only if it is (a) non-static and (b) declared by a shared instance klass. |
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// This allows non-static field lists to be cached on shared types. |
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// Because the _type field is lazily initialized, however, there is a |
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// special restriction that a shared field cannot cache an unshared type. |
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// This puts a small performance penalty on shared fields with unshared |
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// types, such as StackTraceElement[] Throwable.stackTrace. |
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// (Throwable is shared because ClassCastException is shared, but |
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// StackTraceElement is not presently shared.) |
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// It is not a vicious circularity for a ciField to recursively create |
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// the ciSymbols necessary to represent its name and signature. |
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// Therefore, these items are created eagerly, and the name and signature |
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// of a shared field are themselves shared symbols. This somewhat |
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// pollutes the set of shared CI objects: It grows from 50 to 93 items, |
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// with all of the additional 43 being uninteresting shared ciSymbols. |
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// This adds at most one step to the binary search, an amount which |
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// decreases for complex compilation tasks. |
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// ------------------------------------------------------------------ |
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// ciField::ciField |
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ciField::ciField(ciInstanceKlass* klass, int index): _known_to_link_with(NULL) { |
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ASSERT_IN_VM; |
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CompilerThread *thread = CompilerThread::current(); |
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assert(ciObjectFactory::is_initialized(), "not a shared field"); |
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assert(klass->get_instanceKlass()->is_linked(), "must be linked before using its constan-pool"); |
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_cp_index = index; |
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constantPoolHandle cpool(thread, klass->get_instanceKlass()->constants()); |
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// Get the field's name, signature, and type. |
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symbolHandle name (thread, cpool->name_ref_at(index)); |
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_name = ciEnv::current(thread)->get_object(name())->as_symbol(); |
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int nt_index = cpool->name_and_type_ref_index_at(index); |
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int sig_index = cpool->signature_ref_index_at(nt_index); |
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symbolHandle signature (thread, cpool->symbol_at(sig_index)); |
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_signature = ciEnv::current(thread)->get_object(signature())->as_symbol(); |
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BasicType field_type = FieldType::basic_type(signature()); |
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// If the field is a pointer type, get the klass of the |
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// field. |
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if (field_type == T_OBJECT || field_type == T_ARRAY) { |
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bool ignore; |
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// This is not really a class reference; the index always refers to the |
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// field's type signature, as a symbol. Linkage checks do not apply. |
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_type = ciEnv::current(thread)->get_klass_by_index(cpool, sig_index, ignore, klass); |
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} else { |
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_type = ciType::make(field_type); |
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} |
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_name = (ciSymbol*)ciEnv::current(thread)->get_object(name()); |
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// Get the field's declared holder. |
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// |
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// Note: we actually create a ciInstanceKlass for this klass, |
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// even though we may not need to. |
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int holder_index = cpool->klass_ref_index_at(index); |
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bool holder_is_accessible; |
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ciInstanceKlass* declared_holder = |
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ciEnv::current(thread)->get_klass_by_index(cpool, holder_index, |
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holder_is_accessible, |
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klass)->as_instance_klass(); |
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// The declared holder of this field may not have been loaded. |
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// Bail out with partial field information. |
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if (!holder_is_accessible) { |
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// _cp_index and _type have already been set. |
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// The default values for _flags and _constant_value will suffice. |
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// We need values for _holder, _offset, and _is_constant, |
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_holder = declared_holder; |
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_offset = -1; |
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_is_constant = false; |
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return; |
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} |
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instanceKlass* loaded_decl_holder = declared_holder->get_instanceKlass(); |
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// Perform the field lookup. |
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fieldDescriptor field_desc; |
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klassOop canonical_holder = |
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loaded_decl_holder->find_field(name(), signature(), &field_desc); |
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if (canonical_holder == NULL) { |
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// Field lookup failed. Will be detected by will_link. |
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_holder = declared_holder; |
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_offset = -1; |
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_is_constant = false; |
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return; |
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} |
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assert(canonical_holder == field_desc.field_holder(), "just checking"); |
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initialize_from(&field_desc); |
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} |
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ciField::ciField(fieldDescriptor *fd): _known_to_link_with(NULL) { |
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ASSERT_IN_VM; |
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_cp_index = -1; |
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// Get the field's name, signature, and type. |
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ciEnv* env = CURRENT_ENV; |
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_name = env->get_object(fd->name())->as_symbol(); |
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_signature = env->get_object(fd->signature())->as_symbol(); |
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BasicType field_type = fd->field_type(); |
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// If the field is a pointer type, get the klass of the |
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// field. |
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if (field_type == T_OBJECT || field_type == T_ARRAY) { |
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_type = NULL; // must call compute_type on first access |
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} else { |
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_type = ciType::make(field_type); |
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} |
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initialize_from(fd); |
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// Either (a) it is marked shared, or else (b) we are done bootstrapping. |
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assert(is_shared() || ciObjectFactory::is_initialized(), |
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"bootstrap classes must not create & cache unshared fields"); |
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} |
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static bool trust_final_non_static_fields(ciInstanceKlass* holder) { |
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if (holder == NULL) |
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return false; |
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if (holder->name() == ciSymbol::java_lang_System()) |
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// Never trust strangely unstable finals: System.out, etc. |
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return false; |
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// Even if general trusting is disabled, trust system-built closures in these packages. |
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if (holder->is_in_package("java/dyn") || holder->is_in_package("sun/dyn")) |
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return true; |
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return TrustFinalNonStaticFields; |
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} |
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void ciField::initialize_from(fieldDescriptor* fd) { |
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// Get the flags, offset, and canonical holder of the field. |
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_flags = ciFlags(fd->access_flags()); |
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_offset = fd->offset(); |
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_holder = CURRENT_ENV->get_object(fd->field_holder())->as_instance_klass(); |
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// Check to see if the field is constant. |
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if (_holder->is_initialized() && this->is_final()) { |
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if (!this->is_static()) { |
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// A field can be constant if it's a final static field or if it's |
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// a final non-static field of a trusted class ({java,sun}.dyn). |
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if (trust_final_non_static_fields(_holder)) { |
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_is_constant = true; |
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return; |
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} |
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_is_constant = false; |
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return; |
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} |
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// This field just may be constant. The only cases where it will |
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// not be constant are: |
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// |
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// 1. The field holds a non-perm-space oop. The field is, strictly |
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// speaking, constant but we cannot embed non-perm-space oops into |
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// generated code. For the time being we need to consider the |
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// field to be not constant. |
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// 2. The field is a *special* static&final field whose value |
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// may change. The three examples are java.lang.System.in, |
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// java.lang.System.out, and java.lang.System.err. |
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206 |
klassOop k = _holder->get_klassOop(); |
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assert( SystemDictionary::System_klass() != NULL, "Check once per vm"); |
208 |
if( k == SystemDictionary::System_klass() ) { |
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// Check offsets for case 2: System.in, System.out, or System.err |
210 |
if( _offset == java_lang_System::in_offset_in_bytes() || |
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_offset == java_lang_System::out_offset_in_bytes() || |
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_offset == java_lang_System::err_offset_in_bytes() ) { |
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_is_constant = false; |
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return; |
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215 |
} |
|
216 |
} |
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217 |
||
218 |
_is_constant = true; |
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219 |
switch(type()->basic_type()) { |
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220 |
case T_BYTE: |
|
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_constant_value = ciConstant(type()->basic_type(), k->byte_field(_offset)); |
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222 |
break; |
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case T_CHAR: |
|
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_constant_value = ciConstant(type()->basic_type(), k->char_field(_offset)); |
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break; |
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case T_SHORT: |
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_constant_value = ciConstant(type()->basic_type(), k->short_field(_offset)); |
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228 |
break; |
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229 |
case T_BOOLEAN: |
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230 |
_constant_value = ciConstant(type()->basic_type(), k->bool_field(_offset)); |
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break; |
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232 |
case T_INT: |
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_constant_value = ciConstant(type()->basic_type(), k->int_field(_offset)); |
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break; |
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235 |
case T_FLOAT: |
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_constant_value = ciConstant(k->float_field(_offset)); |
|
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break; |
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238 |
case T_DOUBLE: |
|
239 |
_constant_value = ciConstant(k->double_field(_offset)); |
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240 |
break; |
|
241 |
case T_LONG: |
|
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_constant_value = ciConstant(k->long_field(_offset)); |
|
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break; |
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244 |
case T_OBJECT: |
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case T_ARRAY: |
|
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{ |
|
247 |
oop o = k->obj_field(_offset); |
|
248 |
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249 |
// A field will be "constant" if it is known always to be |
|
250 |
// a non-null reference to an instance of a particular class, |
|
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// or to a particular array. This can happen even if the instance |
|
252 |
// or array is not perm. In such a case, an "unloaded" ciArray |
|
253 |
// or ciInstance is created. The compiler may be able to use |
|
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// information about the object's class (which is exact) or length. |
|
255 |
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256 |
if (o == NULL) { |
|
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_constant_value = ciConstant(type()->basic_type(), ciNullObject::make()); |
|
258 |
} else { |
|
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_constant_value = ciConstant(type()->basic_type(), CURRENT_ENV->get_object(o)); |
|
260 |
assert(_constant_value.as_object() == CURRENT_ENV->get_object(o), "check interning"); |
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261 |
} |
|
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} |
|
263 |
} |
|
264 |
} else { |
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_is_constant = false; |
|
266 |
} |
|
267 |
} |
|
268 |
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269 |
// ------------------------------------------------------------------ |
|
270 |
// ciField::compute_type |
|
271 |
// |
|
272 |
// Lazily compute the type, if it is an instance klass. |
|
273 |
ciType* ciField::compute_type() { |
|
274 |
GUARDED_VM_ENTRY(return compute_type_impl();) |
|
275 |
} |
|
276 |
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277 |
ciType* ciField::compute_type_impl() { |
|
278 |
ciKlass* type = CURRENT_ENV->get_klass_by_name_impl(_holder, _signature, false); |
|
279 |
if (!type->is_primitive_type() && is_shared()) { |
|
280 |
// We must not cache a pointer to an unshared type, in a shared field. |
|
281 |
bool type_is_also_shared = false; |
|
282 |
if (type->is_type_array_klass()) { |
|
283 |
type_is_also_shared = true; // int[] etc. are explicitly bootstrapped |
|
284 |
} else if (type->is_instance_klass()) { |
|
285 |
type_is_also_shared = type->as_instance_klass()->is_shared(); |
|
286 |
} else { |
|
287 |
// Currently there is no 'shared' query for array types. |
|
288 |
type_is_also_shared = !ciObjectFactory::is_initialized(); |
|
289 |
} |
|
290 |
if (!type_is_also_shared) |
|
291 |
return type; // Bummer. |
|
292 |
} |
|
293 |
_type = type; |
|
294 |
return type; |
|
295 |
} |
|
296 |
||
297 |
||
298 |
// ------------------------------------------------------------------ |
|
299 |
// ciField::will_link |
|
300 |
// |
|
301 |
// Can a specific access to this field be made without causing |
|
302 |
// link errors? |
|
303 |
bool ciField::will_link(ciInstanceKlass* accessing_klass, |
|
304 |
Bytecodes::Code bc) { |
|
305 |
VM_ENTRY_MARK; |
|
306 |
if (_offset == -1) { |
|
307 |
// at creation we couldn't link to our holder so we need to |
|
308 |
// maintain that stance, otherwise there's no safe way to use this |
|
309 |
// ciField. |
|
310 |
return false; |
|
311 |
} |
|
312 |
||
313 |
if (_known_to_link_with == accessing_klass) { |
|
314 |
return true; |
|
315 |
} |
|
316 |
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317 |
FieldAccessInfo result; |
|
318 |
constantPoolHandle c_pool(THREAD, |
|
319 |
accessing_klass->get_instanceKlass()->constants()); |
|
320 |
LinkResolver::resolve_field(result, c_pool, _cp_index, |
|
321 |
Bytecodes::java_code(bc), |
|
322 |
true, false, KILL_COMPILE_ON_FATAL_(false)); |
|
323 |
||
324 |
// update the hit-cache, unless there is a problem with memory scoping: |
|
325 |
if (accessing_klass->is_shared() || !is_shared()) |
|
326 |
_known_to_link_with = accessing_klass; |
|
327 |
||
328 |
return true; |
|
329 |
} |
|
330 |
||
331 |
// ------------------------------------------------------------------ |
|
332 |
// ciField::print |
|
333 |
void ciField::print() { |
|
334 |
tty->print("<ciField "); |
|
335 |
_holder->print_name(); |
|
336 |
tty->print("."); |
|
337 |
_name->print_symbol(); |
|
338 |
tty->print(" offset=%d type=", _offset); |
|
339 |
if (_type != NULL) _type->print_name(); |
|
340 |
else tty->print("(reference)"); |
|
341 |
tty->print(" is_constant=%s", bool_to_str(_is_constant)); |
|
342 |
if (_is_constant) { |
|
343 |
tty->print(" constant_value="); |
|
344 |
_constant_value.print(); |
|
345 |
} |
|
346 |
tty->print(">"); |
|
347 |
} |
|
348 |
||
349 |
// ------------------------------------------------------------------ |
|
350 |
// ciField::print_name_on |
|
351 |
// |
|
352 |
// Print the name of this field |
|
353 |
void ciField::print_name_on(outputStream* st) { |
|
354 |
name()->print_symbol_on(st); |
|
355 |
} |