author | ehelin |
Tue, 25 Feb 2014 11:02:11 +0100 | |
changeset 22905 | 4b1549d69106 |
parent 13476 | 471200fb94fd |
child 25900 | a41d63a62923 |
permissions | -rw-r--r-- |
1 | 1 |
/* |
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* Copyright (c) 2003, 2012, Oracle and/or its affiliates. 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 Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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* or visit www.oracle.com if you need additional information or have any |
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* questions. |
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* |
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*/ |
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#include "precompiled.hpp" |
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#include "classfile/stackMapFrame.hpp" |
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#include "classfile/verifier.hpp" |
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#include "memory/resourceArea.hpp" |
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#include "oops/oop.inline.hpp" |
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#include "oops/symbol.hpp" |
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#include "runtime/handles.inline.hpp" |
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#include "utilities/globalDefinitions.hpp" |
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StackMapFrame::StackMapFrame(u2 max_locals, u2 max_stack, ClassVerifier* v) : |
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_offset(0), _locals_size(0), _stack_size(0), |
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_stack_mark(0), _flags(0), _max_locals(max_locals), |
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_max_stack(max_stack), _verifier(v) { |
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Thread* thr = v->thread(); |
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_locals = NEW_RESOURCE_ARRAY_IN_THREAD(thr, VerificationType, max_locals); |
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_stack = NEW_RESOURCE_ARRAY_IN_THREAD(thr, VerificationType, max_stack); |
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int32_t i; |
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for(i = 0; i < max_locals; i++) { |
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_locals[i] = VerificationType::bogus_type(); |
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} |
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for(i = 0; i < max_stack; i++) { |
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_stack[i] = VerificationType::bogus_type(); |
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} |
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} |
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||
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StackMapFrame* StackMapFrame::frame_in_exception_handler(u1 flags) { |
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Thread* thr = _verifier->thread(); |
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VerificationType* stack = NEW_RESOURCE_ARRAY_IN_THREAD(thr, VerificationType, 1); |
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StackMapFrame* frame = new StackMapFrame(_offset, flags, _locals_size, 0, _max_locals, _max_stack, _locals, stack, _verifier); |
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return frame; |
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} |
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bool StackMapFrame::has_new_object() const { |
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int32_t i; |
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for (i = 0; i < _max_locals; i++) { |
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if (_locals[i].is_uninitialized()) { |
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return true; |
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} |
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} |
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for (i = 0; i < _stack_size; i++) { |
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if (_stack[i].is_uninitialized()) { |
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return true; |
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} |
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} |
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return false; |
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} |
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void StackMapFrame::initialize_object( |
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VerificationType old_object, VerificationType new_object) { |
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int32_t i; |
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for (i = 0; i < _max_locals; i++) { |
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if (_locals[i].equals(old_object)) { |
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_locals[i] = new_object; |
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} |
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} |
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for (i = 0; i < _stack_size; i++) { |
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if (_stack[i].equals(old_object)) { |
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_stack[i] = new_object; |
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} |
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} |
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if (old_object == VerificationType::uninitialized_this_type()) { |
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// "this" has been initialized - reset flags |
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_flags = 0; |
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} |
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} |
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VerificationType StackMapFrame::set_locals_from_arg( |
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const methodHandle m, VerificationType thisKlass, TRAPS) { |
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SignatureStream ss(m->signature()); |
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int init_local_num = 0; |
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if (!m->is_static()) { |
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init_local_num++; |
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// add one extra argument for instance method |
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if (m->name() == vmSymbols::object_initializer_name() && |
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thisKlass.name() != vmSymbols::java_lang_Object()) { |
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_locals[0] = VerificationType::uninitialized_this_type(); |
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_flags |= FLAG_THIS_UNINIT; |
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} else { |
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_locals[0] = thisKlass; |
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} |
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} |
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// local num may be greater than size of parameters because long/double occupies two slots |
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while(!ss.at_return_type()) { |
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init_local_num += _verifier->change_sig_to_verificationType( |
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&ss, &_locals[init_local_num], |
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CHECK_VERIFY_(verifier(), VerificationType::bogus_type())); |
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ss.next(); |
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} |
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_locals_size = init_local_num; |
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switch (ss.type()) { |
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case T_OBJECT: |
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case T_ARRAY: |
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{ |
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Symbol* sig = ss.as_symbol(CHECK_(VerificationType::bogus_type())); |
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// Create another symbol to save as signature stream unreferences |
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// this symbol. |
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Symbol* sig_copy = |
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verifier()->create_temporary_symbol(sig, 0, sig->utf8_length(), |
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CHECK_(VerificationType::bogus_type())); |
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assert(sig_copy == sig, "symbols don't match"); |
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return VerificationType::reference_type(sig_copy); |
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} |
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case T_INT: return VerificationType::integer_type(); |
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case T_BYTE: return VerificationType::byte_type(); |
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case T_CHAR: return VerificationType::char_type(); |
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case T_SHORT: return VerificationType::short_type(); |
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case T_BOOLEAN: return VerificationType::boolean_type(); |
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case T_FLOAT: return VerificationType::float_type(); |
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case T_DOUBLE: return VerificationType::double_type(); |
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case T_LONG: return VerificationType::long_type(); |
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case T_VOID: return VerificationType::bogus_type(); |
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default: |
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ShouldNotReachHere(); |
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} |
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return VerificationType::bogus_type(); |
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} |
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void StackMapFrame::copy_locals(const StackMapFrame* src) { |
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int32_t len = src->locals_size() < _locals_size ? |
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src->locals_size() : _locals_size; |
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for (int32_t i = 0; i < len; i++) { |
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_locals[i] = src->locals()[i]; |
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} |
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} |
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void StackMapFrame::copy_stack(const StackMapFrame* src) { |
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int32_t len = src->stack_size() < _stack_size ? |
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src->stack_size() : _stack_size; |
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for (int32_t i = 0; i < len; i++) { |
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_stack[i] = src->stack()[i]; |
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} |
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} |
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// Returns the location of the first mismatch, or 'len' if there are no |
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// mismatches |
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int StackMapFrame::is_assignable_to( |
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VerificationType* from, VerificationType* to, int32_t len, TRAPS) const { |
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int32_t i = 0; |
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for (i = 0; i < len; i++) { |
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if (!to[i].is_assignable_from(from[i], verifier(), THREAD)) { |
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break; |
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} |
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} |
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return i; |
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} |
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bool StackMapFrame::has_flag_match_exception( |
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const StackMapFrame* target) const { |
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// We allow flags of {UninitThis} to assign to {} if-and-only-if the |
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// target frame does not depend upon the current type. |
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// This is slightly too strict, as we need only enforce that the |
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// slots that were initialized by the <init> (the things that were |
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// UninitializedThis before initialize_object() converted them) are unused. |
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// However we didn't save that information so we'll enforce this upon |
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// anything that might have been initialized. This is a rare situation |
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// and javac never generates code that would end up here, but some profilers |
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// (such as NetBeans) might, when adding exception handlers in <init> |
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// methods to cover the invokespecial instruction. See 7020118. |
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assert(max_locals() == target->max_locals() && |
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stack_size() == target->stack_size(), "StackMap sizes must match"); |
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VerificationType top = VerificationType::top_type(); |
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VerificationType this_type = verifier()->current_type(); |
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if (!flag_this_uninit() || target->flags() != 0) { |
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return false; |
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} |
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for (int i = 0; i < target->locals_size(); ++i) { |
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if (locals()[i] == this_type && target->locals()[i] != top) { |
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return false; |
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} |
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} |
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for (int i = 0; i < target->stack_size(); ++i) { |
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if (stack()[i] == this_type && target->stack()[i] != top) { |
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return false; |
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} |
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} |
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return true; |
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} |
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bool StackMapFrame::is_assignable_to( |
13476 | 212 |
const StackMapFrame* target, bool is_exception_handler, |
213 |
ErrorContext* ctx, TRAPS) const { |
|
214 |
if (_max_locals != target->max_locals()) { |
|
215 |
*ctx = ErrorContext::locals_size_mismatch( |
|
216 |
_offset, (StackMapFrame*)this, (StackMapFrame*)target); |
|
217 |
return false; |
|
218 |
} |
|
219 |
if (_stack_size != target->stack_size()) { |
|
220 |
*ctx = ErrorContext::stack_size_mismatch( |
|
221 |
_offset, (StackMapFrame*)this, (StackMapFrame*)target); |
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1 | 222 |
return false; |
223 |
} |
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224 |
// Only need to compare type elements up to target->locals() or target->stack(). |
|
225 |
// The remaining type elements in this state can be ignored because they are |
|
226 |
// assignable to bogus type. |
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int mismatch_loc; |
228 |
mismatch_loc = is_assignable_to( |
|
229 |
_locals, target->locals(), target->locals_size(), THREAD); |
|
230 |
if (mismatch_loc != target->locals_size()) { |
|
231 |
*ctx = ErrorContext::bad_type(target->offset(), |
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TypeOrigin::local(mismatch_loc, (StackMapFrame*)this), |
|
233 |
TypeOrigin::sm_local(mismatch_loc, (StackMapFrame*)target)); |
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return false; |
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235 |
} |
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mismatch_loc = is_assignable_to(_stack, target->stack(), _stack_size, THREAD); |
|
237 |
if (mismatch_loc != _stack_size) { |
|
238 |
*ctx = ErrorContext::bad_type(target->offset(), |
|
239 |
TypeOrigin::stack(mismatch_loc, (StackMapFrame*)this), |
|
240 |
TypeOrigin::sm_stack(mismatch_loc, (StackMapFrame*)target)); |
|
241 |
return false; |
|
242 |
} |
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243 |
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bool match_flags = (_flags | target->flags()) == target->flags(); |
13476 | 245 |
if (match_flags || is_exception_handler && has_flag_match_exception(target)) { |
246 |
return true; |
|
247 |
} else { |
|
248 |
*ctx = ErrorContext::bad_flags(target->offset(), |
|
249 |
(StackMapFrame*)this, (StackMapFrame*)target); |
|
250 |
return false; |
|
251 |
} |
|
1 | 252 |
} |
253 |
||
254 |
VerificationType StackMapFrame::pop_stack_ex(VerificationType type, TRAPS) { |
|
255 |
if (_stack_size <= 0) { |
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13476 | 256 |
verifier()->verify_error( |
257 |
ErrorContext::stack_underflow(_offset, this), |
|
258 |
"Operand stack underflow"); |
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1 | 259 |
return VerificationType::bogus_type(); |
260 |
} |
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261 |
VerificationType top = _stack[--_stack_size]; |
|
262 |
bool subtype = type.is_assignable_from( |
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top, verifier(), CHECK_(VerificationType::bogus_type())); |
1 | 264 |
if (!subtype) { |
13476 | 265 |
verifier()->verify_error( |
266 |
ErrorContext::bad_type(_offset, stack_top_ctx(), |
|
267 |
TypeOrigin::implicit(type)), |
|
268 |
"Bad type on operand stack"); |
|
1 | 269 |
return VerificationType::bogus_type(); |
270 |
} |
|
271 |
return top; |
|
272 |
} |
|
273 |
||
274 |
VerificationType StackMapFrame::get_local( |
|
275 |
int32_t index, VerificationType type, TRAPS) { |
|
276 |
if (index >= _max_locals) { |
|
13476 | 277 |
verifier()->verify_error( |
278 |
ErrorContext::bad_local_index(_offset, index), |
|
279 |
"Local variable table overflow"); |
|
1 | 280 |
return VerificationType::bogus_type(); |
281 |
} |
|
282 |
bool subtype = type.is_assignable_from(_locals[index], |
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6990754: Use native memory and reference counting to implement SymbolTable
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|
283 |
verifier(), CHECK_(VerificationType::bogus_type())); |
1 | 284 |
if (!subtype) { |
13476 | 285 |
verifier()->verify_error( |
286 |
ErrorContext::bad_type(_offset, |
|
287 |
TypeOrigin::local(index, this), |
|
288 |
TypeOrigin::implicit(type)), |
|
289 |
"Bad local variable type"); |
|
1 | 290 |
return VerificationType::bogus_type(); |
291 |
} |
|
292 |
if(index >= _locals_size) { _locals_size = index + 1; } |
|
293 |
return _locals[index]; |
|
294 |
} |
|
295 |
||
296 |
void StackMapFrame::get_local_2( |
|
297 |
int32_t index, VerificationType type1, VerificationType type2, TRAPS) { |
|
298 |
assert(type1.is_long() || type1.is_double(), "must be long/double"); |
|
299 |
assert(type2.is_long2() || type2.is_double2(), "must be long/double_2"); |
|
300 |
if (index >= _locals_size - 1) { |
|
13476 | 301 |
verifier()->verify_error( |
302 |
ErrorContext::bad_local_index(_offset, index), |
|
303 |
"get long/double overflows locals"); |
|
1 | 304 |
return; |
305 |
} |
|
13476 | 306 |
bool subtype = type1.is_assignable_from(_locals[index], verifier(), CHECK); |
307 |
if (!subtype) { |
|
308 |
verifier()->verify_error( |
|
309 |
ErrorContext::bad_type(_offset, |
|
310 |
TypeOrigin::local(index, this), TypeOrigin::implicit(type1)), |
|
311 |
"Bad local variable type"); |
|
312 |
} else { |
|
313 |
subtype = type2.is_assignable_from(_locals[index + 1], verifier(), CHECK); |
|
314 |
if (!subtype) { |
|
315 |
/* Unreachable? All local store routines convert a split long or double |
|
316 |
* into a TOP during the store. So we should never end up seeing an |
|
317 |
* orphaned half. */ |
|
318 |
verifier()->verify_error( |
|
319 |
ErrorContext::bad_type(_offset, |
|
320 |
TypeOrigin::local(index + 1, this), TypeOrigin::implicit(type2)), |
|
321 |
"Bad local variable type"); |
|
322 |
} |
|
1 | 323 |
} |
324 |
} |
|
325 |
||
326 |
void StackMapFrame::set_local(int32_t index, VerificationType type, TRAPS) { |
|
327 |
assert(!type.is_check(), "Must be a real type"); |
|
328 |
if (index >= _max_locals) { |
|
13476 | 329 |
verifier()->verify_error( |
330 |
ErrorContext::bad_local_index(_offset, index), |
|
331 |
"Local variable table overflow"); |
|
1 | 332 |
return; |
333 |
} |
|
334 |
// If type at index is double or long, set the next location to be unusable |
|
335 |
if (_locals[index].is_double() || _locals[index].is_long()) { |
|
336 |
assert((index + 1) < _locals_size, "Local variable table overflow"); |
|
337 |
_locals[index + 1] = VerificationType::bogus_type(); |
|
338 |
} |
|
339 |
// If type at index is double_2 or long_2, set the previous location to be unusable |
|
340 |
if (_locals[index].is_double2() || _locals[index].is_long2()) { |
|
341 |
assert(index >= 1, "Local variable table underflow"); |
|
342 |
_locals[index - 1] = VerificationType::bogus_type(); |
|
343 |
} |
|
344 |
_locals[index] = type; |
|
345 |
if (index >= _locals_size) { |
|
346 |
#ifdef ASSERT |
|
347 |
for (int i=_locals_size; i<index; i++) { |
|
348 |
assert(_locals[i] == VerificationType::bogus_type(), |
|
349 |
"holes must be bogus type"); |
|
350 |
} |
|
351 |
#endif |
|
352 |
_locals_size = index + 1; |
|
353 |
} |
|
354 |
} |
|
355 |
||
356 |
void StackMapFrame::set_local_2( |
|
357 |
int32_t index, VerificationType type1, VerificationType type2, TRAPS) { |
|
358 |
assert(type1.is_long() || type1.is_double(), "must be long/double"); |
|
359 |
assert(type2.is_long2() || type2.is_double2(), "must be long/double_2"); |
|
360 |
if (index >= _max_locals - 1) { |
|
13476 | 361 |
verifier()->verify_error( |
362 |
ErrorContext::bad_local_index(_offset, index), |
|
363 |
"Local variable table overflow"); |
|
1 | 364 |
return; |
365 |
} |
|
366 |
// If type at index+1 is double or long, set the next location to be unusable |
|
367 |
if (_locals[index+1].is_double() || _locals[index+1].is_long()) { |
|
368 |
assert((index + 2) < _locals_size, "Local variable table overflow"); |
|
369 |
_locals[index + 2] = VerificationType::bogus_type(); |
|
370 |
} |
|
371 |
// If type at index is double_2 or long_2, set the previous location to be unusable |
|
372 |
if (_locals[index].is_double2() || _locals[index].is_long2()) { |
|
373 |
assert(index >= 1, "Local variable table underflow"); |
|
374 |
_locals[index - 1] = VerificationType::bogus_type(); |
|
375 |
} |
|
376 |
_locals[index] = type1; |
|
377 |
_locals[index+1] = type2; |
|
378 |
if (index >= _locals_size - 1) { |
|
379 |
#ifdef ASSERT |
|
380 |
for (int i=_locals_size; i<index; i++) { |
|
381 |
assert(_locals[i] == VerificationType::bogus_type(), |
|
382 |
"holes must be bogus type"); |
|
383 |
} |
|
384 |
#endif |
|
385 |
_locals_size = index + 2; |
|
386 |
} |
|
387 |
} |
|
388 |
||
13476 | 389 |
TypeOrigin StackMapFrame::stack_top_ctx() { |
390 |
return TypeOrigin::stack(_stack_size, this); |
|
1 | 391 |
} |
392 |
||
13476 | 393 |
void StackMapFrame::print_on(outputStream* str) const { |
394 |
str->indent().print_cr("bci: @%d", _offset); |
|
395 |
str->indent().print_cr("flags: {%s }", |
|
396 |
flag_this_uninit() ? " flagThisUninit" : ""); |
|
397 |
str->indent().print("locals: {"); |
|
398 |
for (int32_t i = 0; i < _locals_size; ++i) { |
|
399 |
str->print(" "); |
|
400 |
_locals[i].print_on(str); |
|
401 |
if (i != _locals_size - 1) { |
|
402 |
str->print(","); |
|
403 |
} |
|
404 |
} |
|
405 |
str->print_cr(" }"); |
|
406 |
str->indent().print("stack: {"); |
|
407 |
for (int32_t j = 0; j < _stack_size; ++j) { |
|
408 |
str->print(" "); |
|
409 |
_stack[j].print_on(str); |
|
410 |
if (j != _stack_size - 1) { |
|
411 |
str->print(","); |
|
412 |
} |
|
413 |
} |
|
414 |
str->print_cr(" }"); |
|
415 |
} |