7b9d6a79ac
Disable escape analysis when jvmti/debugger is used. Add support for EA ibto SA. Reviewed-by: never
661 lines
21 KiB
C++
661 lines
21 KiB
C++
/*
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* Copyright 1997-2008 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/_vframe.cpp.incl"
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vframe::vframe(const frame* fr, const RegisterMap* reg_map, JavaThread* thread)
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: _reg_map(reg_map), _thread(thread) {
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assert(fr != NULL, "must have frame");
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_fr = *fr;
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}
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vframe::vframe(const frame* fr, JavaThread* thread)
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: _reg_map(thread), _thread(thread) {
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assert(fr != NULL, "must have frame");
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_fr = *fr;
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}
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vframe* vframe::new_vframe(const frame* f, const RegisterMap* reg_map, JavaThread* thread) {
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// Interpreter frame
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if (f->is_interpreted_frame()) {
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return new interpretedVFrame(f, reg_map, thread);
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}
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// Compiled frame
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CodeBlob* cb = f->cb();
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if (cb != NULL) {
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if (cb->is_nmethod()) {
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nmethod* nm = (nmethod*)cb;
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return new compiledVFrame(f, reg_map, thread, nm);
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}
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if (f->is_runtime_frame()) {
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// Skip this frame and try again.
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RegisterMap temp_map = *reg_map;
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frame s = f->sender(&temp_map);
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return new_vframe(&s, &temp_map, thread);
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}
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}
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// External frame
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return new externalVFrame(f, reg_map, thread);
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}
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vframe* vframe::sender() const {
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RegisterMap temp_map = *register_map();
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assert(is_top(), "just checking");
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if (_fr.is_entry_frame() && _fr.is_first_frame()) return NULL;
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frame s = _fr.real_sender(&temp_map);
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if (s.is_first_frame()) return NULL;
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return vframe::new_vframe(&s, &temp_map, thread());
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}
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vframe* vframe::top() const {
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vframe* vf = (vframe*) this;
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while (!vf->is_top()) vf = vf->sender();
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return vf;
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}
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javaVFrame* vframe::java_sender() const {
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vframe* f = sender();
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while (f != NULL) {
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if (f->is_java_frame()) return javaVFrame::cast(f);
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f = f->sender();
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}
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return NULL;
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}
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// ------------- javaVFrame --------------
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GrowableArray<MonitorInfo*>* javaVFrame::locked_monitors() {
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assert(SafepointSynchronize::is_at_safepoint() || JavaThread::current() == thread(),
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"must be at safepoint or it's a java frame of the current thread");
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GrowableArray<MonitorInfo*>* mons = monitors();
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GrowableArray<MonitorInfo*>* result = new GrowableArray<MonitorInfo*>(mons->length());
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if (mons->is_empty()) return result;
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bool found_first_monitor = false;
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ObjectMonitor *pending_monitor = thread()->current_pending_monitor();
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ObjectMonitor *waiting_monitor = thread()->current_waiting_monitor();
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oop pending_obj = (pending_monitor != NULL ? (oop) pending_monitor->object() : NULL);
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oop waiting_obj = (waiting_monitor != NULL ? (oop) waiting_monitor->object() : NULL);
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for (int index = (mons->length()-1); index >= 0; index--) {
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MonitorInfo* monitor = mons->at(index);
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if (monitor->eliminated() && is_compiled_frame()) continue; // skip eliminated monitor
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oop obj = monitor->owner();
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if (obj == NULL) continue; // skip unowned monitor
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//
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// Skip the monitor that the thread is blocked to enter or waiting on
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//
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if (!found_first_monitor && (obj == pending_obj || obj == waiting_obj)) {
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continue;
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}
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found_first_monitor = true;
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result->append(monitor);
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}
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return result;
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}
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static void print_locked_object_class_name(outputStream* st, Handle obj, const char* lock_state) {
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if (obj.not_null()) {
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st->print("\t- %s <" INTPTR_FORMAT "> ", lock_state, (address)obj());
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if (obj->klass() == SystemDictionary::class_klass()) {
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klassOop target_klass = java_lang_Class::as_klassOop(obj());
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st->print_cr("(a java.lang.Class for %s)", instanceKlass::cast(target_klass)->external_name());
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} else {
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Klass* k = Klass::cast(obj->klass());
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st->print_cr("(a %s)", k->external_name());
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}
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}
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}
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void javaVFrame::print_lock_info_on(outputStream* st, int frame_count) {
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ResourceMark rm;
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// If this is the first frame, and java.lang.Object.wait(...) then print out the receiver.
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if (frame_count == 0) {
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if (method()->name() == vmSymbols::wait_name() &&
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instanceKlass::cast(method()->method_holder())->name() == vmSymbols::java_lang_Object()) {
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StackValueCollection* locs = locals();
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if (!locs->is_empty()) {
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StackValue* sv = locs->at(0);
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if (sv->type() == T_OBJECT) {
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Handle o = locs->at(0)->get_obj();
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print_locked_object_class_name(st, o, "waiting on");
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}
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}
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} else if (thread()->current_park_blocker() != NULL) {
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oop obj = thread()->current_park_blocker();
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Klass* k = Klass::cast(obj->klass());
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st->print_cr("\t- %s <" INTPTR_FORMAT "> (a %s)", "parking to wait for ", (address)obj, k->external_name());
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}
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}
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// Print out all monitors that we have locked or are trying to lock
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GrowableArray<MonitorInfo*>* mons = monitors();
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if (!mons->is_empty()) {
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bool found_first_monitor = false;
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for (int index = (mons->length()-1); index >= 0; index--) {
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MonitorInfo* monitor = mons->at(index);
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if (monitor->eliminated() && is_compiled_frame()) { // Eliminated in compiled code
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if (monitor->owner_is_scalar_replaced()) {
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Klass* k = Klass::cast(monitor->owner_klass());
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st->print("\t- eliminated <owner is scalar replaced> (a %s)", k->external_name());
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} else {
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oop obj = monitor->owner();
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if (obj != NULL) {
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print_locked_object_class_name(st, obj, "eliminated");
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}
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}
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continue;
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}
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if (monitor->owner() != NULL) {
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// First, assume we have the monitor locked. If we haven't found an
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// owned monitor before and this is the first frame, then we need to
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// see if we have completed the lock or we are blocked trying to
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// acquire it - we can only be blocked if the monitor is inflated
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const char *lock_state = "locked"; // assume we have the monitor locked
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if (!found_first_monitor && frame_count == 0) {
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markOop mark = monitor->owner()->mark();
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if (mark->has_monitor() &&
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mark->monitor() == thread()->current_pending_monitor()) {
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lock_state = "waiting to lock";
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}
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}
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found_first_monitor = true;
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print_locked_object_class_name(st, monitor->owner(), lock_state);
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}
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}
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}
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}
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// ------------- interpretedVFrame --------------
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u_char* interpretedVFrame::bcp() const {
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return fr().interpreter_frame_bcp();
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}
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void interpretedVFrame::set_bcp(u_char* bcp) {
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fr().interpreter_frame_set_bcp(bcp);
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}
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intptr_t* interpretedVFrame::locals_addr_at(int offset) const {
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assert(fr().is_interpreted_frame(), "frame should be an interpreted frame");
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return fr().interpreter_frame_local_at(offset);
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}
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GrowableArray<MonitorInfo*>* interpretedVFrame::monitors() const {
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GrowableArray<MonitorInfo*>* result = new GrowableArray<MonitorInfo*>(5);
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for (BasicObjectLock* current = (fr().previous_monitor_in_interpreter_frame(fr().interpreter_frame_monitor_begin()));
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current >= fr().interpreter_frame_monitor_end();
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current = fr().previous_monitor_in_interpreter_frame(current)) {
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result->push(new MonitorInfo(current->obj(), current->lock(), false, false));
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}
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return result;
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}
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int interpretedVFrame::bci() const {
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return method()->bci_from(bcp());
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}
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methodOop interpretedVFrame::method() const {
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return fr().interpreter_frame_method();
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}
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StackValueCollection* interpretedVFrame::locals() const {
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int length = method()->max_locals();
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if (method()->is_native()) {
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// If the method is native, max_locals is not telling the truth.
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// maxlocals then equals the size of parameters
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length = method()->size_of_parameters();
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}
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StackValueCollection* result = new StackValueCollection(length);
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// Get oopmap describing oops and int for current bci
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if (TaggedStackInterpreter) {
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for(int i=0; i < length; i++) {
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// Find stack location
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intptr_t *addr = locals_addr_at(i);
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// Depending on oop/int put it in the right package
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StackValue *sv;
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frame::Tag tag = fr().interpreter_frame_local_tag(i);
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if (tag == frame::TagReference) {
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// oop value
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Handle h(*(oop *)addr);
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sv = new StackValue(h);
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} else {
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// integer
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sv = new StackValue(*addr);
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}
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assert(sv != NULL, "sanity check");
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result->add(sv);
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}
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} else {
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InterpreterOopMap oop_mask;
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if (TraceDeoptimization && Verbose) {
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methodHandle m_h(thread(), method());
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OopMapCache::compute_one_oop_map(m_h, bci(), &oop_mask);
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} else {
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method()->mask_for(bci(), &oop_mask);
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}
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// handle locals
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for(int i=0; i < length; i++) {
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// Find stack location
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intptr_t *addr = locals_addr_at(i);
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// Depending on oop/int put it in the right package
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StackValue *sv;
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if (oop_mask.is_oop(i)) {
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// oop value
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Handle h(*(oop *)addr);
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sv = new StackValue(h);
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} else {
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// integer
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sv = new StackValue(*addr);
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}
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assert(sv != NULL, "sanity check");
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result->add(sv);
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}
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}
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return result;
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}
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void interpretedVFrame::set_locals(StackValueCollection* values) const {
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if (values == NULL || values->size() == 0) return;
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int length = method()->max_locals();
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if (method()->is_native()) {
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// If the method is native, max_locals is not telling the truth.
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// maxlocals then equals the size of parameters
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length = method()->size_of_parameters();
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}
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assert(length == values->size(), "Mismatch between actual stack format and supplied data");
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// handle locals
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for (int i = 0; i < length; i++) {
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// Find stack location
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intptr_t *addr = locals_addr_at(i);
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// Depending on oop/int put it in the right package
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StackValue *sv = values->at(i);
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assert(sv != NULL, "sanity check");
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if (sv->type() == T_OBJECT) {
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*(oop *) addr = (sv->get_obj())();
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} else { // integer
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*addr = sv->get_int();
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}
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}
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}
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StackValueCollection* interpretedVFrame::expressions() const {
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int length = fr().interpreter_frame_expression_stack_size();
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if (method()->is_native()) {
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// If the method is native, there is no expression stack
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length = 0;
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}
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int nof_locals = method()->max_locals();
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StackValueCollection* result = new StackValueCollection(length);
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if (TaggedStackInterpreter) {
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// handle expressions
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for(int i=0; i < length; i++) {
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// Find stack location
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intptr_t *addr = fr().interpreter_frame_expression_stack_at(i);
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frame::Tag tag = fr().interpreter_frame_expression_stack_tag(i);
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// Depending on oop/int put it in the right package
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StackValue *sv;
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if (tag == frame::TagReference) {
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// oop value
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Handle h(*(oop *)addr);
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sv = new StackValue(h);
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} else {
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// otherwise
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sv = new StackValue(*addr);
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}
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assert(sv != NULL, "sanity check");
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result->add(sv);
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}
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} else {
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InterpreterOopMap oop_mask;
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// Get oopmap describing oops and int for current bci
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if (TraceDeoptimization && Verbose) {
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methodHandle m_h(method());
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OopMapCache::compute_one_oop_map(m_h, bci(), &oop_mask);
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} else {
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method()->mask_for(bci(), &oop_mask);
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}
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// handle expressions
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for(int i=0; i < length; i++) {
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// Find stack location
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intptr_t *addr = fr().interpreter_frame_expression_stack_at(i);
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// Depending on oop/int put it in the right package
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StackValue *sv;
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if (oop_mask.is_oop(i + nof_locals)) {
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// oop value
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Handle h(*(oop *)addr);
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sv = new StackValue(h);
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} else {
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// integer
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sv = new StackValue(*addr);
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}
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assert(sv != NULL, "sanity check");
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result->add(sv);
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}
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}
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return result;
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}
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// ------------- cChunk --------------
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entryVFrame::entryVFrame(const frame* fr, const RegisterMap* reg_map, JavaThread* thread)
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: externalVFrame(fr, reg_map, thread) {}
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void vframeStreamCommon::found_bad_method_frame() {
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// 6379830 Cut point for an assertion that occasionally fires when
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// we are using the performance analyzer.
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// Disable this assert when testing the analyzer with fastdebug.
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// -XX:SuppressErrorAt=vframe.cpp:XXX (XXX=following line number)
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assert(false, "invalid bci or invalid scope desc");
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}
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// top-frame will be skipped
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vframeStream::vframeStream(JavaThread* thread, frame top_frame,
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bool stop_at_java_call_stub) : vframeStreamCommon(thread) {
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_stop_at_java_call_stub = stop_at_java_call_stub;
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// skip top frame, as it may not be at safepoint
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_frame = top_frame.sender(&_reg_map);
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while (!fill_from_frame()) {
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_frame = _frame.sender(&_reg_map);
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}
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}
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// Step back n frames, skip any pseudo frames in between.
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// This function is used in Class.forName, Class.newInstance, Method.Invoke,
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// AccessController.doPrivileged.
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//
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// NOTE that in JDK 1.4 this has been exposed to Java as
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// sun.reflect.Reflection.getCallerClass(), which can be inlined.
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// Inlined versions must match this routine's logic.
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// Native method prefixing logic does not need to match since
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// the method names don't match and inlining will not occur.
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// See, for example,
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// Parse::inline_native_Reflection_getCallerClass in
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// opto/library_call.cpp.
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void vframeStreamCommon::security_get_caller_frame(int depth) {
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bool use_new_reflection = JDK_Version::is_gte_jdk14x_version() && UseNewReflection;
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while (!at_end()) {
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if (Universe::reflect_invoke_cache()->is_same_method(method())) {
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// This is Method.invoke() -- skip it
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} else if (use_new_reflection &&
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Klass::cast(method()->method_holder())
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->is_subclass_of(SystemDictionary::reflect_method_accessor_klass())) {
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// This is an auxilary frame -- skip it
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} else {
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// This is non-excluded frame, we need to count it against the depth
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if (depth-- <= 0) {
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// we have reached the desired depth, we are done
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break;
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}
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}
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if (method()->is_prefixed_native()) {
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skip_prefixed_method_and_wrappers();
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} else {
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next();
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}
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}
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}
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void vframeStreamCommon::skip_prefixed_method_and_wrappers() {
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ResourceMark rm;
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HandleMark hm;
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int method_prefix_count = 0;
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char** method_prefixes = JvmtiExport::get_all_native_method_prefixes(&method_prefix_count);
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KlassHandle prefixed_klass(method()->method_holder());
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const char* prefixed_name = method()->name()->as_C_string();
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size_t prefixed_name_len = strlen(prefixed_name);
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int prefix_index = method_prefix_count-1;
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while (!at_end()) {
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next();
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if (method()->method_holder() != prefixed_klass()) {
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break; // classes don't match, can't be a wrapper
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}
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const char* name = method()->name()->as_C_string();
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size_t name_len = strlen(name);
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size_t prefix_len = prefixed_name_len - name_len;
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if (prefix_len <= 0 || strcmp(name, prefixed_name + prefix_len) != 0) {
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break; // prefixed name isn't prefixed version of method name, can't be a wrapper
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}
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for (; prefix_index >= 0; --prefix_index) {
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const char* possible_prefix = method_prefixes[prefix_index];
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size_t possible_prefix_len = strlen(possible_prefix);
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if (possible_prefix_len == prefix_len &&
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strncmp(possible_prefix, prefixed_name, prefix_len) == 0) {
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break; // matching prefix found
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}
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}
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if (prefix_index < 0) {
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break; // didn't find the prefix, can't be a wrapper
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}
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prefixed_name = name;
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prefixed_name_len = name_len;
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}
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}
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|
|
|
void vframeStreamCommon::skip_reflection_related_frames() {
|
|
while (!at_end() &&
|
|
(JDK_Version::is_gte_jdk14x_version() && UseNewReflection &&
|
|
(Klass::cast(method()->method_holder())->is_subclass_of(SystemDictionary::reflect_method_accessor_klass()) ||
|
|
Klass::cast(method()->method_holder())->is_subclass_of(SystemDictionary::reflect_constructor_accessor_klass())))) {
|
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next();
|
|
}
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|
}
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|
|
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#ifndef PRODUCT
|
|
void vframe::print() {
|
|
if (WizardMode) _fr.print_value_on(tty,NULL);
|
|
}
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|
|
|
|
|
void vframe::print_value() const {
|
|
((vframe*)this)->print();
|
|
}
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|
|
|
|
|
void entryVFrame::print_value() const {
|
|
((entryVFrame*)this)->print();
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|
}
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|
|
|
void entryVFrame::print() {
|
|
vframe::print();
|
|
tty->print_cr("C Chunk inbetween Java");
|
|
tty->print_cr("C link " INTPTR_FORMAT, _fr.link());
|
|
}
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|
|
|
|
|
// ------------- javaVFrame --------------
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|
|
|
static void print_stack_values(const char* title, StackValueCollection* values) {
|
|
if (values->is_empty()) return;
|
|
tty->print_cr("\t%s:", title);
|
|
values->print();
|
|
}
|
|
|
|
|
|
void javaVFrame::print() {
|
|
ResourceMark rm;
|
|
vframe::print();
|
|
tty->print("\t");
|
|
method()->print_value();
|
|
tty->cr();
|
|
tty->print_cr("\tbci: %d", bci());
|
|
|
|
print_stack_values("locals", locals());
|
|
print_stack_values("expressions", expressions());
|
|
|
|
GrowableArray<MonitorInfo*>* list = monitors();
|
|
if (list->is_empty()) return;
|
|
tty->print_cr("\tmonitor list:");
|
|
for (int index = (list->length()-1); index >= 0; index--) {
|
|
MonitorInfo* monitor = list->at(index);
|
|
tty->print("\t obj\t");
|
|
if (monitor->owner_is_scalar_replaced()) {
|
|
Klass* k = Klass::cast(monitor->owner_klass());
|
|
tty->print("( is scalar replaced %s)", k->external_name());
|
|
} else if (monitor->owner() == NULL) {
|
|
tty->print("( null )");
|
|
} else {
|
|
monitor->owner()->print_value();
|
|
tty->print("(" INTPTR_FORMAT ")", (address)monitor->owner());
|
|
}
|
|
if (monitor->eliminated() && is_compiled_frame())
|
|
tty->print(" ( lock is eliminated )");
|
|
tty->cr();
|
|
tty->print("\t ");
|
|
monitor->lock()->print_on(tty);
|
|
tty->cr();
|
|
}
|
|
}
|
|
|
|
|
|
void javaVFrame::print_value() const {
|
|
methodOop m = method();
|
|
klassOop k = m->method_holder();
|
|
tty->print_cr("frame( sp=" INTPTR_FORMAT ", unextended_sp=" INTPTR_FORMAT ", fp=" INTPTR_FORMAT ", pc=" INTPTR_FORMAT ")",
|
|
_fr.sp(), _fr.unextended_sp(), _fr.fp(), _fr.pc());
|
|
tty->print("%s.%s", Klass::cast(k)->internal_name(), m->name()->as_C_string());
|
|
|
|
if (!m->is_native()) {
|
|
symbolOop source_name = instanceKlass::cast(k)->source_file_name();
|
|
int line_number = m->line_number_from_bci(bci());
|
|
if (source_name != NULL && (line_number != -1)) {
|
|
tty->print("(%s:%d)", source_name->as_C_string(), line_number);
|
|
}
|
|
} else {
|
|
tty->print("(Native Method)");
|
|
}
|
|
// Check frame size and print warning if it looks suspiciously large
|
|
if (fr().sp() != NULL) {
|
|
RegisterMap map = *register_map();
|
|
uint size = fr().frame_size(&map);
|
|
#ifdef _LP64
|
|
if (size > 8*K) warning("SUSPICIOUSLY LARGE FRAME (%d)", size);
|
|
#else
|
|
if (size > 4*K) warning("SUSPICIOUSLY LARGE FRAME (%d)", size);
|
|
#endif
|
|
}
|
|
}
|
|
|
|
|
|
bool javaVFrame::structural_compare(javaVFrame* other) {
|
|
// Check static part
|
|
if (method() != other->method()) return false;
|
|
if (bci() != other->bci()) return false;
|
|
|
|
// Check locals
|
|
StackValueCollection *locs = locals();
|
|
StackValueCollection *other_locs = other->locals();
|
|
assert(locs->size() == other_locs->size(), "sanity check");
|
|
int i;
|
|
for(i = 0; i < locs->size(); i++) {
|
|
// it might happen the compiler reports a conflict and
|
|
// the interpreter reports a bogus int.
|
|
if ( is_compiled_frame() && locs->at(i)->type() == T_CONFLICT) continue;
|
|
if (other->is_compiled_frame() && other_locs->at(i)->type() == T_CONFLICT) continue;
|
|
|
|
if (!locs->at(i)->equal(other_locs->at(i)))
|
|
return false;
|
|
}
|
|
|
|
// Check expressions
|
|
StackValueCollection* exprs = expressions();
|
|
StackValueCollection* other_exprs = other->expressions();
|
|
assert(exprs->size() == other_exprs->size(), "sanity check");
|
|
for(i = 0; i < exprs->size(); i++) {
|
|
if (!exprs->at(i)->equal(other_exprs->at(i)))
|
|
return false;
|
|
}
|
|
|
|
return true;
|
|
}
|
|
|
|
|
|
void javaVFrame::print_activation(int index) const {
|
|
// frame number and method
|
|
tty->print("%2d - ", index);
|
|
((vframe*)this)->print_value();
|
|
tty->cr();
|
|
|
|
if (WizardMode) {
|
|
((vframe*)this)->print();
|
|
tty->cr();
|
|
}
|
|
}
|
|
|
|
|
|
void javaVFrame::verify() const {
|
|
}
|
|
|
|
|
|
void interpretedVFrame::verify() const {
|
|
}
|
|
|
|
|
|
// ------------- externalVFrame --------------
|
|
|
|
void externalVFrame::print() {
|
|
_fr.print_value_on(tty,NULL);
|
|
}
|
|
|
|
|
|
void externalVFrame::print_value() const {
|
|
((vframe*)this)->print();
|
|
}
|
|
#endif // PRODUCT
|