jdk/src/hotspot/cpu/x86/gc/shared/cardTableBarrierSetAssembler_x86.cpp
Aleksey Shipilev 88c8a55a43 8373266: Strengthen constant CardTable base accesses
Reviewed-by: tschatzl, xpeng
2026-01-28 07:44:31 +00:00

184 lines
6.9 KiB
C++

/*
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
*
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* version 2 for more details (a copy is included in the LICENSE file that
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*
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* 2 along with this work; if not, write to the Free Software Foundation,
* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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#include "asm/macroAssembler.inline.hpp"
#include "gc/shared/barrierSet.hpp"
#include "gc/shared/cardTable.hpp"
#include "gc/shared/cardTableBarrierSet.hpp"
#include "gc/shared/cardTableBarrierSetAssembler.hpp"
#include "gc/shared/gc_globals.hpp"
#define __ masm->
#ifdef PRODUCT
#define BLOCK_COMMENT(str) /* nothing */
#else
#define BLOCK_COMMENT(str) __ block_comment(str)
#endif
#define BIND(label) bind(label); BLOCK_COMMENT(#label ":")
#define TIMES_OOP (UseCompressedOops ? Address::times_4 : Address::times_8)
void CardTableBarrierSetAssembler::arraycopy_prologue(MacroAssembler* masm, DecoratorSet decorators, BasicType type,
Register src, Register dst, Register count) {
bool checkcast = (decorators & ARRAYCOPY_CHECKCAST) != 0;
bool disjoint = (decorators & ARRAYCOPY_DISJOINT) != 0;
bool obj_int = (type == T_OBJECT) && UseCompressedOops;
if (is_reference_type(type)) {
if (!checkcast) {
if (!obj_int) {
// Save count for barrier
__ movptr(r11, count);
} else if (disjoint) {
// Save dst in r11 in the disjoint case
__ movq(r11, dst);
}
}
gen_write_ref_array_pre_barrier(masm, decorators, dst, count);
}
}
void CardTableBarrierSetAssembler::arraycopy_epilogue(MacroAssembler* masm, DecoratorSet decorators, BasicType type,
Register src, Register dst, Register count) {
bool checkcast = (decorators & ARRAYCOPY_CHECKCAST) != 0;
bool disjoint = (decorators & ARRAYCOPY_DISJOINT) != 0;
bool obj_int = (type == T_OBJECT) && UseCompressedOops;
Register tmp = rax;
if (is_reference_type(type)) {
if (!checkcast) {
if (!obj_int) {
// Save count for barrier
count = r11;
} else if (disjoint) {
// Use the saved dst in the disjoint case
dst = r11;
}
} else {
tmp = rscratch1;
}
gen_write_ref_array_post_barrier(masm, decorators, dst, count, tmp);
}
}
void CardTableBarrierSetAssembler::store_at(MacroAssembler* masm, DecoratorSet decorators, BasicType type,
Address dst, Register val, Register tmp1, Register tmp2, Register tmp3) {
if (is_reference_type(type)) {
oop_store_at(masm, decorators, type, dst, val, tmp1, tmp2, tmp3);
} else {
BarrierSetAssembler::store_at(masm, decorators, type, dst, val, tmp1, tmp2, tmp3);
}
}
void CardTableBarrierSetAssembler::gen_write_ref_array_post_barrier(MacroAssembler* masm, DecoratorSet decorators,
Register addr, Register count, Register tmp) {
CardTableBarrierSet* ctbs = CardTableBarrierSet::barrier_set();
Label L_loop, L_done;
const Register end = count;
assert_different_registers(addr, end);
__ testl(count, count);
__ jcc(Assembler::zero, L_done); // zero count - nothing to do
__ leaq(end, Address(addr, count, TIMES_OOP, 0)); // end == addr+count*oop_size
__ subptr(end, BytesPerHeapOop); // end - 1 to make inclusive
__ shrptr(addr, CardTable::card_shift());
__ shrptr(end, CardTable::card_shift());
__ subptr(end, addr); // end --> cards count
__ mov64(tmp, (intptr_t)ctbs->card_table_base_const());
__ addptr(addr, tmp);
__ BIND(L_loop);
__ movb(Address(addr, count, Address::times_1), 0);
__ decrement(count);
__ jcc(Assembler::greaterEqual, L_loop);
__ BIND(L_done);
}
void CardTableBarrierSetAssembler::store_check(MacroAssembler* masm, Register obj, Address dst) {
// Does a store check for the oop in register obj. The content of
// register obj is destroyed afterwards.
CardTableBarrierSet* ctbs = CardTableBarrierSet::barrier_set();
__ shrptr(obj, CardTable::card_shift());
Address card_addr;
// The calculation for byte_map_base is as follows:
// byte_map_base = _byte_map - (uintptr_t(low_bound) >> card_shift);
// So this essentially converts an address to a displacement and it will
// never need to be relocated. On 64bit however the value may be too
// large for a 32bit displacement.
intptr_t byte_map_base = (intptr_t)ctbs->card_table_base_const();
if (__ is_simm32(byte_map_base)) {
card_addr = Address(noreg, obj, Address::times_1, byte_map_base);
} else {
// By doing it as an ExternalAddress 'byte_map_base' could be converted to a rip-relative
// displacement and done in a single instruction given favorable mapping and a
// smarter version of as_Address. However, 'ExternalAddress' generates a relocation
// entry and that entry is not properly handled by the relocation code.
AddressLiteral cardtable((address)byte_map_base, relocInfo::none);
Address index(noreg, obj, Address::times_1);
card_addr = __ as_Address(ArrayAddress(cardtable, index), rscratch1);
}
int dirty = CardTable::dirty_card_val();
if (UseCondCardMark) {
Label L_already_dirty;
__ cmpb(card_addr, dirty);
__ jccb(Assembler::equal, L_already_dirty);
__ movb(card_addr, dirty);
__ bind(L_already_dirty);
} else {
__ movb(card_addr, dirty);
}
}
void CardTableBarrierSetAssembler::oop_store_at(MacroAssembler* masm, DecoratorSet decorators, BasicType type,
Address dst, Register val, Register tmp1, Register tmp2, Register tmp3) {
bool in_heap = (decorators & IN_HEAP) != 0;
bool is_array = (decorators & IS_ARRAY) != 0;
bool on_anonymous = (decorators & ON_UNKNOWN_OOP_REF) != 0;
bool precise = is_array || on_anonymous;
bool needs_post_barrier = val != noreg && in_heap;
BarrierSetAssembler::store_at(masm, decorators, type, dst, val, noreg, noreg, noreg);
if (needs_post_barrier) {
// flatten object address if needed
if (!precise || (dst.index() == noreg && dst.disp() == 0)) {
store_check(masm, dst.base(), dst);
} else {
__ lea(tmp1, dst);
store_check(masm, tmp1, dst);
}
}
}