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/*
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* Copyright 1997-2007 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/_rframe.cpp.incl"
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static RFrame*const noCaller = (RFrame*) 0x1; // no caller (i.e., initial frame)
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static RFrame*const noCallerYet = (RFrame*) 0x0; // caller not yet computed
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RFrame::RFrame(frame fr, JavaThread* thread, RFrame*const callee) :
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_fr(fr), _thread(thread), _callee(callee), _num(callee ? callee->num() + 1 : 0) {
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_caller = (RFrame*)noCallerYet;
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_invocations = 0;
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_distance = 0;
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}
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void RFrame::set_distance(int d) {
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assert(is_compiled() || d >= 0, "should be positive");
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_distance = d;
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}
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InterpretedRFrame::InterpretedRFrame(frame fr, JavaThread* thread, RFrame*const callee)
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: RFrame(fr, thread, callee) {
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RegisterMap map(thread, false);
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_vf = javaVFrame::cast(vframe::new_vframe(&_fr, &map, thread));
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_method = methodHandle(thread, _vf->method());
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assert( _vf->is_interpreted_frame(), "must be interpreted");
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init();
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}
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InterpretedRFrame::InterpretedRFrame(frame fr, JavaThread* thread, methodHandle m)
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: RFrame(fr, thread, NULL) {
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RegisterMap map(thread, false);
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_vf = javaVFrame::cast(vframe::new_vframe(&_fr, &map, thread));
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_method = m;
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assert( _vf->is_interpreted_frame(), "must be interpreted");
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init();
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}
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CompiledRFrame::CompiledRFrame(frame fr, JavaThread* thread, RFrame*const callee)
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: RFrame(fr, thread, callee) {
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init();
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}
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CompiledRFrame::CompiledRFrame(frame fr, JavaThread* thread)
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: RFrame(fr, thread, NULL) {
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init();
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}
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DeoptimizedRFrame::DeoptimizedRFrame(frame fr, JavaThread* thread, RFrame*const callee)
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: InterpretedRFrame(fr, thread, callee) {}
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RFrame* RFrame::new_RFrame(frame fr, JavaThread* thread, RFrame*const callee) {
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RFrame* rf;
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int dist = callee ? callee->distance() : -1;
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if (fr.is_interpreted_frame()) {
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rf = new InterpretedRFrame(fr, thread, callee);
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dist++;
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} else if (fr.is_compiled_frame()) {
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// Even deopted frames look compiled because the deopt
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// is invisible until it happens.
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rf = new CompiledRFrame(fr, thread, callee);
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} else {
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assert(false, "Unhandled frame type");
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}
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rf->set_distance(dist);
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rf->init();
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return rf;
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}
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RFrame* RFrame::caller() {
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if (_caller != noCallerYet) return (_caller == noCaller) ? NULL : _caller; // already computed caller
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// caller not yet computed; do it now
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if (_fr.is_first_java_frame()) {
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_caller = (RFrame*)noCaller;
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return NULL;
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}
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RegisterMap map(_thread, false);
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frame sender = _fr.real_sender(&map);
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if (sender.is_java_frame()) {
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_caller = new_RFrame(sender, thread(), this);
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return _caller;
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}
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// Real caller is not java related
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_caller = (RFrame*)noCaller;
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return NULL;
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}
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int InterpretedRFrame::cost() const {
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return _method->code_size(); // fix this
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//return _method->estimated_inline_cost(_receiverKlass);
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}
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int CompiledRFrame::cost() const {
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nmethod* nm = top_method()->code();
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if (nm != NULL) {
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return nm->code_size();
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} else {
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return top_method()->code_size();
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}
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}
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void CompiledRFrame::init() {
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RegisterMap map(thread(), false);
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vframe* vf = vframe::new_vframe(&_fr, &map, thread());
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assert(vf->is_compiled_frame(), "must be compiled");
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_nm = compiledVFrame::cast(vf)->code();
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vf = vf->top();
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_vf = javaVFrame::cast(vf);
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_method = methodHandle(thread(), CodeCache::find_nmethod(_fr.pc())->method());
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assert(_method(), "should have found a method");
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#ifndef PRODUCT
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_invocations = _method->compiled_invocation_count();
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#endif
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}
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void InterpretedRFrame::init() {
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_invocations = _method->invocation_count() + _method->backedge_count();
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}
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void RFrame::print(const char* kind) {
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#ifndef PRODUCT
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#ifdef COMPILER2
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int cnt = top_method()->interpreter_invocation_count();
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#else
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int cnt = top_method()->invocation_count();
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#endif
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tty->print("%3d %s ", _num, is_interpreted() ? "I" : "C");
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top_method()->print_short_name(tty);
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tty->print_cr(": inv=%5d(%d) cst=%4d", _invocations, cnt, cost());
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#endif
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}
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void CompiledRFrame::print() {
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RFrame::print("comp");
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}
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void InterpretedRFrame::print() {
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RFrame::print("int.");
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}
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void DeoptimizedRFrame::print() {
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RFrame::print("deopt.");
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}
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