src/cpu/sparc/vm/c1_CodeStubs_sparc.cpp

Tue, 12 Oct 2010 23:51:20 -0700

author
iveresov
date
Tue, 12 Oct 2010 23:51:20 -0700
changeset 2203
c393f046f4c5
parent 2174
f02a8bbe6ed4
child 2314
f95d63e2154a
permissions
-rw-r--r--

6991512: G1 barriers fail with 64bit C1
Summary: Fix compare-and-swap intrinsic problem with G1 post-barriers and issue with branch ranges in G1 stubs on sparc
Reviewed-by: never, kvn

duke@435 1 /*
trims@1907 2 * Copyright (c) 1999, 2010, Oracle and/or its affiliates. All rights reserved.
duke@435 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@435 4 *
duke@435 5 * This code is free software; you can redistribute it and/or modify it
duke@435 6 * under the terms of the GNU General Public License version 2 only, as
duke@435 7 * published by the Free Software Foundation.
duke@435 8 *
duke@435 9 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@435 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@435 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@435 12 * version 2 for more details (a copy is included in the LICENSE file that
duke@435 13 * accompanied this code).
duke@435 14 *
duke@435 15 * You should have received a copy of the GNU General Public License version
duke@435 16 * 2 along with this work; if not, write to the Free Software Foundation,
duke@435 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@435 18 *
trims@1907 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
trims@1907 20 * or visit www.oracle.com if you need additional information or have any
trims@1907 21 * questions.
duke@435 22 *
duke@435 23 */
duke@435 24
duke@435 25 #include "incls/_precompiled.incl"
duke@435 26 #include "incls/_c1_CodeStubs_sparc.cpp.incl"
duke@435 27
duke@435 28 #define __ ce->masm()->
duke@435 29
duke@435 30 RangeCheckStub::RangeCheckStub(CodeEmitInfo* info, LIR_Opr index,
duke@435 31 bool throw_index_out_of_bounds_exception)
duke@435 32 : _throw_index_out_of_bounds_exception(throw_index_out_of_bounds_exception)
duke@435 33 , _index(index)
duke@435 34 {
roland@2174 35 assert(info != NULL, "must have info");
duke@435 36 _info = new CodeEmitInfo(info);
duke@435 37 }
duke@435 38
duke@435 39
duke@435 40 void RangeCheckStub::emit_code(LIR_Assembler* ce) {
duke@435 41 __ bind(_entry);
duke@435 42
duke@435 43 if (_index->is_register()) {
duke@435 44 __ mov(_index->as_register(), G4);
duke@435 45 } else {
duke@435 46 __ set(_index->as_jint(), G4);
duke@435 47 }
duke@435 48 if (_throw_index_out_of_bounds_exception) {
duke@435 49 __ call(Runtime1::entry_for(Runtime1::throw_index_exception_id), relocInfo::runtime_call_type);
duke@435 50 } else {
duke@435 51 __ call(Runtime1::entry_for(Runtime1::throw_range_check_failed_id), relocInfo::runtime_call_type);
duke@435 52 }
duke@435 53 __ delayed()->nop();
duke@435 54 ce->add_call_info_here(_info);
duke@435 55 ce->verify_oop_map(_info);
duke@435 56 #ifdef ASSERT
duke@435 57 __ should_not_reach_here();
duke@435 58 #endif
duke@435 59 }
duke@435 60
duke@435 61
duke@435 62 void CounterOverflowStub::emit_code(LIR_Assembler* ce) {
duke@435 63 __ bind(_entry);
duke@435 64 __ set(_bci, G4);
duke@435 65 __ call(Runtime1::entry_for(Runtime1::counter_overflow_id), relocInfo::runtime_call_type);
iveresov@2138 66 __ delayed()->mov_or_nop(_method->as_register(), G5);
duke@435 67 ce->add_call_info_here(_info);
duke@435 68 ce->verify_oop_map(_info);
duke@435 69
duke@435 70 __ br(Assembler::always, true, Assembler::pt, _continuation);
duke@435 71 __ delayed()->nop();
duke@435 72 }
duke@435 73
duke@435 74
duke@435 75 void DivByZeroStub::emit_code(LIR_Assembler* ce) {
duke@435 76 if (_offset != -1) {
duke@435 77 ce->compilation()->implicit_exception_table()->append(_offset, __ offset());
duke@435 78 }
duke@435 79 __ bind(_entry);
duke@435 80 __ call(Runtime1::entry_for(Runtime1::throw_div0_exception_id), relocInfo::runtime_call_type);
duke@435 81 __ delayed()->nop();
duke@435 82 ce->add_call_info_here(_info);
duke@435 83 ce->verify_oop_map(_info);
duke@435 84 #ifdef ASSERT
duke@435 85 __ should_not_reach_here();
duke@435 86 #endif
duke@435 87 }
duke@435 88
duke@435 89
duke@435 90 void ImplicitNullCheckStub::emit_code(LIR_Assembler* ce) {
duke@435 91 ce->compilation()->implicit_exception_table()->append(_offset, __ offset());
duke@435 92 __ bind(_entry);
duke@435 93 __ call(Runtime1::entry_for(Runtime1::throw_null_pointer_exception_id),
duke@435 94 relocInfo::runtime_call_type);
duke@435 95 __ delayed()->nop();
duke@435 96 ce->add_call_info_here(_info);
duke@435 97 ce->verify_oop_map(_info);
duke@435 98 #ifdef ASSERT
duke@435 99 __ should_not_reach_here();
duke@435 100 #endif
duke@435 101 }
duke@435 102
duke@435 103
duke@435 104 // Implementation of SimpleExceptionStub
duke@435 105 // Note: %g1 and %g3 are already in use
duke@435 106 void SimpleExceptionStub::emit_code(LIR_Assembler* ce) {
duke@435 107 __ bind(_entry);
duke@435 108 __ call(Runtime1::entry_for(_stub), relocInfo::runtime_call_type);
duke@435 109
duke@435 110 if (_obj->is_valid()) {
duke@435 111 __ delayed()->mov(_obj->as_register(), G4); // _obj contains the optional argument to the stub
duke@435 112 } else {
duke@435 113 __ delayed()->mov(G0, G4);
duke@435 114 }
duke@435 115 ce->add_call_info_here(_info);
duke@435 116 #ifdef ASSERT
duke@435 117 __ should_not_reach_here();
duke@435 118 #endif
duke@435 119 }
duke@435 120
duke@435 121
duke@435 122 // Implementation of ArrayStoreExceptionStub
duke@435 123
duke@435 124 ArrayStoreExceptionStub::ArrayStoreExceptionStub(CodeEmitInfo* info):
duke@435 125 _info(info) {
duke@435 126 }
duke@435 127
duke@435 128
duke@435 129 void ArrayStoreExceptionStub::emit_code(LIR_Assembler* ce) {
duke@435 130 __ bind(_entry);
duke@435 131 __ call(Runtime1::entry_for(Runtime1::throw_array_store_exception_id), relocInfo::runtime_call_type);
duke@435 132 __ delayed()->nop();
duke@435 133 ce->add_call_info_here(_info);
duke@435 134 ce->verify_oop_map(_info);
duke@435 135 #ifdef ASSERT
duke@435 136 __ should_not_reach_here();
duke@435 137 #endif
duke@435 138 }
duke@435 139
duke@435 140
duke@435 141
duke@435 142
duke@435 143 // Implementation of NewInstanceStub
duke@435 144
duke@435 145 NewInstanceStub::NewInstanceStub(LIR_Opr klass_reg, LIR_Opr result, ciInstanceKlass* klass, CodeEmitInfo* info, Runtime1::StubID stub_id) {
duke@435 146 _result = result;
duke@435 147 _klass = klass;
duke@435 148 _klass_reg = klass_reg;
duke@435 149 _info = new CodeEmitInfo(info);
duke@435 150 assert(stub_id == Runtime1::new_instance_id ||
duke@435 151 stub_id == Runtime1::fast_new_instance_id ||
duke@435 152 stub_id == Runtime1::fast_new_instance_init_check_id,
duke@435 153 "need new_instance id");
duke@435 154 _stub_id = stub_id;
duke@435 155 }
duke@435 156
duke@435 157
duke@435 158 void NewInstanceStub::emit_code(LIR_Assembler* ce) {
duke@435 159 __ bind(_entry);
duke@435 160 __ call(Runtime1::entry_for(_stub_id), relocInfo::runtime_call_type);
duke@435 161 __ delayed()->mov_or_nop(_klass_reg->as_register(), G5);
duke@435 162 ce->add_call_info_here(_info);
duke@435 163 ce->verify_oop_map(_info);
duke@435 164 __ br(Assembler::always, false, Assembler::pt, _continuation);
duke@435 165 __ delayed()->mov_or_nop(O0, _result->as_register());
duke@435 166 }
duke@435 167
duke@435 168
duke@435 169 // Implementation of NewTypeArrayStub
duke@435 170 NewTypeArrayStub::NewTypeArrayStub(LIR_Opr klass_reg, LIR_Opr length, LIR_Opr result, CodeEmitInfo* info) {
duke@435 171 _klass_reg = klass_reg;
duke@435 172 _length = length;
duke@435 173 _result = result;
duke@435 174 _info = new CodeEmitInfo(info);
duke@435 175 }
duke@435 176
duke@435 177
duke@435 178 void NewTypeArrayStub::emit_code(LIR_Assembler* ce) {
duke@435 179 __ bind(_entry);
duke@435 180
duke@435 181 __ mov(_length->as_register(), G4);
duke@435 182 __ call(Runtime1::entry_for(Runtime1::new_type_array_id), relocInfo::runtime_call_type);
duke@435 183 __ delayed()->mov_or_nop(_klass_reg->as_register(), G5);
duke@435 184 ce->add_call_info_here(_info);
duke@435 185 ce->verify_oop_map(_info);
duke@435 186 __ br(Assembler::always, false, Assembler::pt, _continuation);
duke@435 187 __ delayed()->mov_or_nop(O0, _result->as_register());
duke@435 188 }
duke@435 189
duke@435 190
duke@435 191 // Implementation of NewObjectArrayStub
duke@435 192
duke@435 193 NewObjectArrayStub::NewObjectArrayStub(LIR_Opr klass_reg, LIR_Opr length, LIR_Opr result, CodeEmitInfo* info) {
duke@435 194 _klass_reg = klass_reg;
duke@435 195 _length = length;
duke@435 196 _result = result;
duke@435 197 _info = new CodeEmitInfo(info);
duke@435 198 }
duke@435 199
duke@435 200
duke@435 201 void NewObjectArrayStub::emit_code(LIR_Assembler* ce) {
duke@435 202 __ bind(_entry);
duke@435 203
duke@435 204 __ mov(_length->as_register(), G4);
duke@435 205 __ call(Runtime1::entry_for(Runtime1::new_object_array_id), relocInfo::runtime_call_type);
duke@435 206 __ delayed()->mov_or_nop(_klass_reg->as_register(), G5);
duke@435 207 ce->add_call_info_here(_info);
duke@435 208 ce->verify_oop_map(_info);
duke@435 209 __ br(Assembler::always, false, Assembler::pt, _continuation);
duke@435 210 __ delayed()->mov_or_nop(O0, _result->as_register());
duke@435 211 }
duke@435 212
duke@435 213
duke@435 214 // Implementation of MonitorAccessStubs
duke@435 215 MonitorEnterStub::MonitorEnterStub(LIR_Opr obj_reg, LIR_Opr lock_reg, CodeEmitInfo* info)
duke@435 216 : MonitorAccessStub(obj_reg, lock_reg) {
duke@435 217 _info = new CodeEmitInfo(info);
duke@435 218 }
duke@435 219
duke@435 220
duke@435 221 void MonitorEnterStub::emit_code(LIR_Assembler* ce) {
duke@435 222 __ bind(_entry);
duke@435 223 __ mov(_obj_reg->as_register(), G4);
duke@435 224 if (ce->compilation()->has_fpu_code()) {
duke@435 225 __ call(Runtime1::entry_for(Runtime1::monitorenter_id), relocInfo::runtime_call_type);
duke@435 226 } else {
duke@435 227 __ call(Runtime1::entry_for(Runtime1::monitorenter_nofpu_id), relocInfo::runtime_call_type);
duke@435 228 }
duke@435 229 __ delayed()->mov_or_nop(_lock_reg->as_register(), G5);
duke@435 230 ce->add_call_info_here(_info);
duke@435 231 ce->verify_oop_map(_info);
duke@435 232 __ br(Assembler::always, true, Assembler::pt, _continuation);
duke@435 233 __ delayed()->nop();
duke@435 234 }
duke@435 235
duke@435 236
duke@435 237 void MonitorExitStub::emit_code(LIR_Assembler* ce) {
duke@435 238 __ bind(_entry);
duke@435 239 if (_compute_lock) {
duke@435 240 ce->monitor_address(_monitor_ix, _lock_reg);
duke@435 241 }
duke@435 242 if (ce->compilation()->has_fpu_code()) {
duke@435 243 __ call(Runtime1::entry_for(Runtime1::monitorexit_id), relocInfo::runtime_call_type);
duke@435 244 } else {
duke@435 245 __ call(Runtime1::entry_for(Runtime1::monitorexit_nofpu_id), relocInfo::runtime_call_type);
duke@435 246 }
duke@435 247
duke@435 248 __ delayed()->mov_or_nop(_lock_reg->as_register(), G4);
duke@435 249 __ br(Assembler::always, true, Assembler::pt, _continuation);
duke@435 250 __ delayed()->nop();
duke@435 251 }
duke@435 252
duke@435 253 // Implementation of patching:
duke@435 254 // - Copy the code at given offset to an inlined buffer (first the bytes, then the number of bytes)
duke@435 255 // - Replace original code with a call to the stub
duke@435 256 // At Runtime:
duke@435 257 // - call to stub, jump to runtime
duke@435 258 // - in runtime: preserve all registers (especially objects, i.e., source and destination object)
duke@435 259 // - in runtime: after initializing class, restore original code, reexecute instruction
duke@435 260
duke@435 261 int PatchingStub::_patch_info_offset = -NativeGeneralJump::instruction_size;
duke@435 262
duke@435 263 void PatchingStub::align_patch_site(MacroAssembler* ) {
duke@435 264 // patch sites on sparc are always properly aligned.
duke@435 265 }
duke@435 266
duke@435 267 void PatchingStub::emit_code(LIR_Assembler* ce) {
duke@435 268 // copy original code here
duke@435 269 assert(NativeCall::instruction_size <= _bytes_to_copy && _bytes_to_copy <= 0xFF,
duke@435 270 "not enough room for call");
duke@435 271 assert((_bytes_to_copy & 0x3) == 0, "must copy a multiple of four bytes");
duke@435 272
duke@435 273 Label call_patch;
duke@435 274
duke@435 275 int being_initialized_entry = __ offset();
duke@435 276
duke@435 277 if (_id == load_klass_id) {
duke@435 278 // produce a copy of the load klass instruction for use by the being initialized case
twisti@1162 279 #ifdef ASSERT
duke@435 280 address start = __ pc();
twisti@1162 281 #endif
twisti@1162 282 AddressLiteral addrlit(NULL, oop_Relocation::spec(_oop_index));
twisti@1162 283 __ patchable_set(addrlit, _obj);
duke@435 284
duke@435 285 #ifdef ASSERT
duke@435 286 for (int i = 0; i < _bytes_to_copy; i++) {
duke@435 287 address ptr = (address)(_pc_start + i);
duke@435 288 int a_byte = (*ptr) & 0xFF;
duke@435 289 assert(a_byte == *start++, "should be the same code");
duke@435 290 }
duke@435 291 #endif
duke@435 292 } else {
duke@435 293 // make a copy the code which is going to be patched.
duke@435 294 for (int i = 0; i < _bytes_to_copy; i++) {
duke@435 295 address ptr = (address)(_pc_start + i);
duke@435 296 int a_byte = (*ptr) & 0xFF;
duke@435 297 __ a_byte (a_byte);
duke@435 298 }
duke@435 299 }
duke@435 300
duke@435 301 address end_of_patch = __ pc();
duke@435 302 int bytes_to_skip = 0;
duke@435 303 if (_id == load_klass_id) {
duke@435 304 int offset = __ offset();
duke@435 305 if (CommentedAssembly) {
duke@435 306 __ block_comment(" being_initialized check");
duke@435 307 }
duke@435 308
duke@435 309 // static field accesses have special semantics while the class
duke@435 310 // initializer is being run so we emit a test which can be used to
duke@435 311 // check that this code is being executed by the initializing
duke@435 312 // thread.
duke@435 313 assert(_obj != noreg, "must be a valid register");
duke@435 314 assert(_oop_index >= 0, "must have oop index");
duke@435 315 __ ld_ptr(_obj, instanceKlass::init_thread_offset_in_bytes() + sizeof(klassOopDesc), G3);
duke@435 316 __ cmp(G2_thread, G3);
duke@435 317 __ br(Assembler::notEqual, false, Assembler::pn, call_patch);
duke@435 318 __ delayed()->nop();
duke@435 319
duke@435 320 // load_klass patches may execute the patched code before it's
duke@435 321 // copied back into place so we need to jump back into the main
duke@435 322 // code of the nmethod to continue execution.
duke@435 323 __ br(Assembler::always, false, Assembler::pt, _patch_site_continuation);
duke@435 324 __ delayed()->nop();
duke@435 325
duke@435 326 // make sure this extra code gets skipped
duke@435 327 bytes_to_skip += __ offset() - offset;
duke@435 328 }
duke@435 329
duke@435 330 // Now emit the patch record telling the runtime how to find the
duke@435 331 // pieces of the patch. We only need 3 bytes but it has to be
duke@435 332 // aligned as an instruction so emit 4 bytes.
duke@435 333 int sizeof_patch_record = 4;
duke@435 334 bytes_to_skip += sizeof_patch_record;
duke@435 335
duke@435 336 // emit the offsets needed to find the code to patch
duke@435 337 int being_initialized_entry_offset = __ offset() - being_initialized_entry + sizeof_patch_record;
duke@435 338
duke@435 339 // Emit the patch record. We need to emit a full word, so emit an extra empty byte
duke@435 340 __ a_byte(0);
duke@435 341 __ a_byte(being_initialized_entry_offset);
duke@435 342 __ a_byte(bytes_to_skip);
duke@435 343 __ a_byte(_bytes_to_copy);
duke@435 344 address patch_info_pc = __ pc();
duke@435 345 assert(patch_info_pc - end_of_patch == bytes_to_skip, "incorrect patch info");
duke@435 346
duke@435 347 address entry = __ pc();
duke@435 348 NativeGeneralJump::insert_unconditional((address)_pc_start, entry);
duke@435 349 address target = NULL;
duke@435 350 switch (_id) {
duke@435 351 case access_field_id: target = Runtime1::entry_for(Runtime1::access_field_patching_id); break;
duke@435 352 case load_klass_id: target = Runtime1::entry_for(Runtime1::load_klass_patching_id); break;
duke@435 353 default: ShouldNotReachHere();
duke@435 354 }
duke@435 355 __ bind(call_patch);
duke@435 356
duke@435 357 if (CommentedAssembly) {
duke@435 358 __ block_comment("patch entry point");
duke@435 359 }
duke@435 360 __ call(target, relocInfo::runtime_call_type);
duke@435 361 __ delayed()->nop();
duke@435 362 assert(_patch_info_offset == (patch_info_pc - __ pc()), "must not change");
duke@435 363 ce->add_call_info_here(_info);
duke@435 364 __ br(Assembler::always, false, Assembler::pt, _patch_site_entry);
duke@435 365 __ delayed()->nop();
duke@435 366 if (_id == load_klass_id) {
duke@435 367 CodeSection* cs = __ code_section();
duke@435 368 address pc = (address)_pc_start;
duke@435 369 RelocIterator iter(cs, pc, pc + 1);
duke@435 370 relocInfo::change_reloc_info_for_address(&iter, (address) pc, relocInfo::oop_type, relocInfo::none);
duke@435 371
duke@435 372 pc = (address)(_pc_start + NativeMovConstReg::add_offset);
duke@435 373 RelocIterator iter2(cs, pc, pc+1);
duke@435 374 relocInfo::change_reloc_info_for_address(&iter2, (address) pc, relocInfo::oop_type, relocInfo::none);
duke@435 375 }
duke@435 376
duke@435 377 }
duke@435 378
twisti@1730 379
twisti@1730 380 void DeoptimizeStub::emit_code(LIR_Assembler* ce) {
twisti@1730 381 __ bind(_entry);
twisti@1730 382 __ call(SharedRuntime::deopt_blob()->unpack_with_reexecution());
twisti@1730 383 __ delayed()->nop();
twisti@1730 384 ce->add_call_info_here(_info);
twisti@1730 385 debug_only(__ should_not_reach_here());
twisti@1730 386 }
twisti@1730 387
twisti@1730 388
duke@435 389 void ArrayCopyStub::emit_code(LIR_Assembler* ce) {
duke@435 390 //---------------slow case: call to native-----------------
duke@435 391 __ bind(_entry);
duke@435 392 __ mov(src()->as_register(), O0);
duke@435 393 __ mov(src_pos()->as_register(), O1);
duke@435 394 __ mov(dst()->as_register(), O2);
duke@435 395 __ mov(dst_pos()->as_register(), O3);
duke@435 396 __ mov(length()->as_register(), O4);
duke@435 397
duke@435 398 ce->emit_static_call_stub();
duke@435 399
duke@435 400 __ call(SharedRuntime::get_resolve_static_call_stub(), relocInfo::static_call_type);
duke@435 401 __ delayed()->nop();
duke@435 402 ce->add_call_info_here(info());
duke@435 403 ce->verify_oop_map(info());
duke@435 404
duke@435 405 #ifndef PRODUCT
duke@435 406 __ set((intptr_t)&Runtime1::_arraycopy_slowcase_cnt, O0);
duke@435 407 __ ld(O0, 0, O1);
duke@435 408 __ inc(O1);
duke@435 409 __ st(O1, 0, O0);
duke@435 410 #endif
duke@435 411
duke@435 412 __ br(Assembler::always, false, Assembler::pt, _continuation);
duke@435 413 __ delayed()->nop();
duke@435 414 }
duke@435 415
duke@435 416
ysr@777 417 ///////////////////////////////////////////////////////////////////////////////////
ysr@777 418 #ifndef SERIALGC
ysr@777 419
ysr@777 420 void G1PreBarrierStub::emit_code(LIR_Assembler* ce) {
ysr@777 421 __ bind(_entry);
ysr@777 422
ysr@777 423 assert(pre_val()->is_register(), "Precondition.");
ysr@777 424
ysr@777 425 Register pre_val_reg = pre_val()->as_register();
ysr@777 426
ysr@777 427 ce->mem2reg(addr(), pre_val(), T_OBJECT, patch_code(), info(), false);
iveresov@2203 428 if (__ is_in_wdisp16_range(_continuation)) {
iveresov@2203 429 __ br_on_reg_cond(Assembler::rc_z, /*annul*/false, Assembler::pt,
iveresov@2203 430 pre_val_reg, _continuation);
iveresov@2203 431 } else {
iveresov@2203 432 __ cmp(pre_val_reg, G0);
iveresov@2203 433 __ brx(Assembler::equal, false, Assembler::pn, _continuation);
iveresov@2203 434 }
ysr@777 435 __ delayed()->nop();
ysr@777 436
ysr@777 437 __ call(Runtime1::entry_for(Runtime1::Runtime1::g1_pre_barrier_slow_id));
ysr@777 438 __ delayed()->mov(pre_val_reg, G4);
ysr@777 439 __ br(Assembler::always, false, Assembler::pt, _continuation);
ysr@777 440 __ delayed()->nop();
ysr@777 441
ysr@777 442 }
ysr@777 443
ysr@777 444 jbyte* G1PostBarrierStub::_byte_map_base = NULL;
ysr@777 445
ysr@777 446 jbyte* G1PostBarrierStub::byte_map_base_slow() {
ysr@777 447 BarrierSet* bs = Universe::heap()->barrier_set();
ysr@777 448 assert(bs->is_a(BarrierSet::G1SATBCTLogging),
ysr@777 449 "Must be if we're using this.");
ysr@777 450 return ((G1SATBCardTableModRefBS*)bs)->byte_map_base;
ysr@777 451 }
ysr@777 452
ysr@777 453 void G1PostBarrierStub::emit_code(LIR_Assembler* ce) {
ysr@777 454 __ bind(_entry);
ysr@777 455
ysr@777 456 assert(addr()->is_register(), "Precondition.");
ysr@777 457 assert(new_val()->is_register(), "Precondition.");
ysr@777 458 Register addr_reg = addr()->as_pointer_register();
ysr@777 459 Register new_val_reg = new_val()->as_register();
iveresov@2203 460 if (__ is_in_wdisp16_range(_continuation)) {
iveresov@2203 461 __ br_on_reg_cond(Assembler::rc_z, /*annul*/false, Assembler::pt,
iveresov@2203 462 new_val_reg, _continuation);
iveresov@2203 463 } else {
iveresov@2203 464 __ cmp(new_val_reg, G0);
iveresov@2203 465 __ brx(Assembler::equal, false, Assembler::pn, _continuation);
iveresov@2203 466 }
ysr@777 467 __ delayed()->nop();
ysr@777 468
ysr@777 469 __ call(Runtime1::entry_for(Runtime1::Runtime1::g1_post_barrier_slow_id));
ysr@777 470 __ delayed()->mov(addr_reg, G4);
ysr@777 471 __ br(Assembler::always, false, Assembler::pt, _continuation);
ysr@777 472 __ delayed()->nop();
ysr@777 473 }
ysr@777 474
ysr@777 475 #endif // SERIALGC
ysr@777 476 ///////////////////////////////////////////////////////////////////////////////////
ysr@777 477
duke@435 478 #undef __

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