b64d5e4209
Use MDO to cache arguments escape state determined by the byte code escape analyzer. Reviewed-by: never
399 lines
13 KiB
C++
399 lines
13 KiB
C++
/*
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* Copyright 2001-2007 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/_ciMethodData.cpp.incl"
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// ciMethodData
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// ------------------------------------------------------------------
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// ciMethodData::ciMethodData
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//
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ciMethodData::ciMethodData(methodDataHandle h_md) : ciObject(h_md) {
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assert(h_md() != NULL, "no null method data");
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Copy::zero_to_words((HeapWord*) &_orig, sizeof(_orig) / sizeof(HeapWord));
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_data = NULL;
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_data_size = 0;
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_extra_data_size = 0;
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_current_mileage = 0;
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_state = empty_state;
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_saw_free_extra_data = false;
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// Set an initial hint. Don't use set_hint_di() because
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// first_di() may be out of bounds if data_size is 0.
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_hint_di = first_di();
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// Initialize the escape information (to "don't know.");
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_eflags = _arg_local = _arg_stack = _arg_returned = 0;
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}
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// ------------------------------------------------------------------
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// ciMethodData::ciMethodData
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//
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// No methodDataOop.
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ciMethodData::ciMethodData() : ciObject() {
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Copy::zero_to_words((HeapWord*) &_orig, sizeof(_orig) / sizeof(HeapWord));
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_data = NULL;
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_data_size = 0;
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_extra_data_size = 0;
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_current_mileage = 0;
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_state = empty_state;
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_saw_free_extra_data = false;
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// Set an initial hint. Don't use set_hint_di() because
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// first_di() may be out of bounds if data_size is 0.
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_hint_di = first_di();
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// Initialize the escape information (to "don't know.");
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_eflags = _arg_local = _arg_stack = _arg_returned = 0;
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}
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void ciMethodData::load_data() {
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methodDataOop mdo = get_methodDataOop();
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if (mdo == NULL) return;
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// To do: don't copy the data if it is not "ripe" -- require a minimum #
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// of invocations.
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// Snapshot the data -- actually, take an approximate snapshot of
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// the data. Any concurrently executing threads may be changing the
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// data as we copy it.
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int skip_header = oopDesc::header_size();
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Copy::disjoint_words((HeapWord*) mdo + skip_header,
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(HeapWord*) &_orig + skip_header,
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sizeof(_orig) / HeapWordSize - skip_header);
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DEBUG_ONLY(*_orig.adr_method() = NULL); // no dangling oops, please
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Arena* arena = CURRENT_ENV->arena();
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_data_size = mdo->data_size();
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_extra_data_size = mdo->extra_data_size();
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int total_size = _data_size + _extra_data_size;
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_data = (intptr_t *) arena->Amalloc(total_size);
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Copy::disjoint_words((HeapWord*) mdo->data_base(), (HeapWord*) _data, total_size / HeapWordSize);
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// Traverse the profile data, translating any oops into their
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// ci equivalents.
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ResourceMark rm;
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ciProfileData* ci_data = first_data();
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ProfileData* data = mdo->first_data();
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while (is_valid(ci_data)) {
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ci_data->translate_from(data);
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ci_data = next_data(ci_data);
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data = mdo->next_data(data);
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}
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// Note: Extra data are all BitData, and do not need translation.
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_current_mileage = methodDataOopDesc::mileage_of(mdo->method());
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_state = mdo->is_mature()? mature_state: immature_state;
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_eflags = mdo->eflags();
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_arg_local = mdo->arg_local();
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_arg_stack = mdo->arg_stack();
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_arg_returned = mdo->arg_returned();
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}
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void ciReceiverTypeData::translate_receiver_data_from(ProfileData* data) {
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for (uint row = 0; row < row_limit(); row++) {
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klassOop k = data->as_ReceiverTypeData()->receiver(row);
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if (k != NULL) {
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ciKlass* klass = CURRENT_ENV->get_object(k)->as_klass();
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set_receiver(row, klass);
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}
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}
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}
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// Get the data at an arbitrary (sort of) data index.
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ciProfileData* ciMethodData::data_at(int data_index) {
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if (out_of_bounds(data_index)) {
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return NULL;
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}
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DataLayout* data_layout = data_layout_at(data_index);
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switch (data_layout->tag()) {
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case DataLayout::no_tag:
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default:
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ShouldNotReachHere();
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return NULL;
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case DataLayout::bit_data_tag:
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return new ciBitData(data_layout);
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case DataLayout::counter_data_tag:
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return new ciCounterData(data_layout);
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case DataLayout::jump_data_tag:
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return new ciJumpData(data_layout);
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case DataLayout::receiver_type_data_tag:
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return new ciReceiverTypeData(data_layout);
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case DataLayout::virtual_call_data_tag:
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return new ciVirtualCallData(data_layout);
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case DataLayout::ret_data_tag:
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return new ciRetData(data_layout);
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case DataLayout::branch_data_tag:
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return new ciBranchData(data_layout);
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case DataLayout::multi_branch_data_tag:
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return new ciMultiBranchData(data_layout);
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case DataLayout::arg_info_data_tag:
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return new ciArgInfoData(data_layout);
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};
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}
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// Iteration over data.
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ciProfileData* ciMethodData::next_data(ciProfileData* current) {
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int current_index = dp_to_di(current->dp());
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int next_index = current_index + current->size_in_bytes();
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ciProfileData* next = data_at(next_index);
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return next;
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}
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// Translate a bci to its corresponding data, or NULL.
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ciProfileData* ciMethodData::bci_to_data(int bci) {
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ciProfileData* data = data_before(bci);
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for ( ; is_valid(data); data = next_data(data)) {
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if (data->bci() == bci) {
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set_hint_di(dp_to_di(data->dp()));
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return data;
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} else if (data->bci() > bci) {
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break;
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}
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}
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// bci_to_extra_data(bci) ...
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DataLayout* dp = data_layout_at(data_size());
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DataLayout* end = data_layout_at(data_size() + extra_data_size());
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for (; dp < end; dp = methodDataOopDesc::next_extra(dp)) {
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if (dp->tag() == DataLayout::no_tag) {
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_saw_free_extra_data = true; // observed an empty slot (common case)
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return NULL;
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}
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if (dp->tag() == DataLayout::arg_info_data_tag) {
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break; // ArgInfoData is at the end of extra data section.
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}
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if (dp->bci() == bci) {
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assert(dp->tag() == DataLayout::bit_data_tag, "sane");
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return new ciBitData(dp);
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}
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}
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return NULL;
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}
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// Conservatively decode the trap_state of a ciProfileData.
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int ciMethodData::has_trap_at(ciProfileData* data, int reason) {
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typedef Deoptimization::DeoptReason DR_t;
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int per_bc_reason
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= Deoptimization::reason_recorded_per_bytecode_if_any((DR_t) reason);
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if (trap_count(reason) == 0) {
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// Impossible for this trap to have occurred, regardless of trap_state.
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// Note: This happens if the MDO is empty.
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return 0;
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} else if (per_bc_reason == Deoptimization::Reason_none) {
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// We cannot conclude anything; a trap happened somewhere, maybe here.
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return -1;
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} else if (data == NULL) {
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// No profile here, not even an extra_data record allocated on the fly.
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// If there are empty extra_data records, and there had been a trap,
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// there would have been a non-null data pointer. If there are no
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// free extra_data records, we must return a conservative -1.
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if (_saw_free_extra_data)
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return 0; // Q.E.D.
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else
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return -1; // bail with a conservative answer
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} else {
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return Deoptimization::trap_state_has_reason(data->trap_state(), per_bc_reason);
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}
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}
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int ciMethodData::trap_recompiled_at(ciProfileData* data) {
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if (data == NULL) {
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return (_saw_free_extra_data? 0: -1); // (see previous method)
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} else {
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return Deoptimization::trap_state_is_recompiled(data->trap_state())? 1: 0;
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}
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}
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void ciMethodData::clear_escape_info() {
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VM_ENTRY_MARK;
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methodDataOop mdo = get_methodDataOop();
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if (mdo != NULL) {
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mdo->clear_escape_info();
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ArgInfoData *aid = arg_info();
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int arg_count = (aid == NULL) ? 0 : aid->number_of_args();
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for (int i = 0; i < arg_count; i++) {
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set_arg_modified(i, 0);
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}
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}
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_eflags = _arg_local = _arg_stack = _arg_returned = 0;
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}
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// copy our escape info to the methodDataOop if it exists
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void ciMethodData::update_escape_info() {
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VM_ENTRY_MARK;
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methodDataOop mdo = get_methodDataOop();
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if ( mdo != NULL) {
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mdo->set_eflags(_eflags);
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mdo->set_arg_local(_arg_local);
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mdo->set_arg_stack(_arg_stack);
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mdo->set_arg_returned(_arg_returned);
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int arg_count = mdo->method()->size_of_parameters();
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for (int i = 0; i < arg_count; i++) {
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mdo->set_arg_modified(i, arg_modified(i));
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}
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}
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}
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bool ciMethodData::has_escape_info() {
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return eflag_set(methodDataOopDesc::estimated);
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}
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void ciMethodData::set_eflag(methodDataOopDesc::EscapeFlag f) {
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set_bits(_eflags, f);
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}
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void ciMethodData::clear_eflag(methodDataOopDesc::EscapeFlag f) {
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clear_bits(_eflags, f);
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}
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bool ciMethodData::eflag_set(methodDataOopDesc::EscapeFlag f) const {
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return mask_bits(_eflags, f) != 0;
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}
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void ciMethodData::set_arg_local(int i) {
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set_nth_bit(_arg_local, i);
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}
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void ciMethodData::set_arg_stack(int i) {
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set_nth_bit(_arg_stack, i);
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}
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void ciMethodData::set_arg_returned(int i) {
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set_nth_bit(_arg_returned, i);
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}
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void ciMethodData::set_arg_modified(int arg, uint val) {
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ArgInfoData *aid = arg_info();
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if (aid == NULL)
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return;
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assert(arg >= 0 && arg < aid->number_of_args(), "valid argument number");
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aid->set_arg_modified(arg, val);
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}
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bool ciMethodData::is_arg_local(int i) const {
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return is_set_nth_bit(_arg_local, i);
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}
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bool ciMethodData::is_arg_stack(int i) const {
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return is_set_nth_bit(_arg_stack, i);
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}
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bool ciMethodData::is_arg_returned(int i) const {
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return is_set_nth_bit(_arg_returned, i);
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}
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uint ciMethodData::arg_modified(int arg) const {
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ArgInfoData *aid = arg_info();
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if (aid == NULL)
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return 0;
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assert(arg >= 0 && arg < aid->number_of_args(), "valid argument number");
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return aid->arg_modified(arg);
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}
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ByteSize ciMethodData::offset_of_slot(ciProfileData* data, ByteSize slot_offset_in_data) {
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// Get offset within methodDataOop of the data array
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ByteSize data_offset = methodDataOopDesc::data_offset();
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// Get cell offset of the ProfileData within data array
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int cell_offset = dp_to_di(data->dp());
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// Add in counter_offset, the # of bytes into the ProfileData of counter or flag
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int offset = in_bytes(data_offset) + cell_offset + in_bytes(slot_offset_in_data);
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return in_ByteSize(offset);
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}
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ciArgInfoData *ciMethodData::arg_info() const {
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// Should be last, have to skip all traps.
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DataLayout* dp = data_layout_at(data_size());
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DataLayout* end = data_layout_at(data_size() + extra_data_size());
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for (; dp < end; dp = methodDataOopDesc::next_extra(dp)) {
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if (dp->tag() == DataLayout::arg_info_data_tag)
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return new ciArgInfoData(dp);
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}
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return NULL;
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}
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// Implementation of the print method.
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void ciMethodData::print_impl(outputStream* st) {
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ciObject::print_impl(st);
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}
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#ifndef PRODUCT
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void ciMethodData::print() {
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print_data_on(tty);
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}
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void ciMethodData::print_data_on(outputStream* st) {
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ResourceMark rm;
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ciProfileData* data;
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for (data = first_data(); is_valid(data); data = next_data(data)) {
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st->print("%d", dp_to_di(data->dp()));
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st->fill_to(6);
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data->print_data_on(st);
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}
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st->print_cr("--- Extra data:");
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DataLayout* dp = data_layout_at(data_size());
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DataLayout* end = data_layout_at(data_size() + extra_data_size());
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for (; dp < end; dp = methodDataOopDesc::next_extra(dp)) {
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if (dp->tag() == DataLayout::no_tag) continue;
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if (dp->tag() == DataLayout::bit_data_tag) {
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data = new BitData(dp);
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} else {
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assert(dp->tag() == DataLayout::arg_info_data_tag, "must be BitData or ArgInfo");
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data = new ciArgInfoData(dp);
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dp = end; // ArgInfoData is at the end of extra data section.
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}
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st->print("%d", dp_to_di(data->dp()));
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st->fill_to(6);
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data->print_data_on(st);
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}
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}
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void ciReceiverTypeData::print_receiver_data_on(outputStream* st) {
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uint row;
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int entries = 0;
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for (row = 0; row < row_limit(); row++) {
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if (receiver(row) != NULL) entries++;
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}
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st->print_cr("count(%u) entries(%u)", count(), entries);
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for (row = 0; row < row_limit(); row++) {
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if (receiver(row) != NULL) {
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tab(st);
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receiver(row)->print_name_on(st);
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st->print_cr("(%u)", receiver_count(row));
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}
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}
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}
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void ciReceiverTypeData::print_data_on(outputStream* st) {
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print_shared(st, "ciReceiverTypeData");
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print_receiver_data_on(st);
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}
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void ciVirtualCallData::print_data_on(outputStream* st) {
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print_shared(st, "ciVirtualCallData");
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rtd_super()->print_receiver_data_on(st);
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}
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#endif
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