src/cpu/mips/vm/templateTable_mips_64.cpp

Mon, 18 Sep 2017 16:49:35 +0800

author
aoqi
date
Mon, 18 Sep 2017 16:49:35 +0800
changeset 6883
57b216e5c8e3
parent 6881
633080c2ba82
child 6884
37fd1c756f31
permissions
-rw-r--r--

#5358 fixed jvmti_post_field_mod and jvmti_post_field_access
runtime/7158988/FieldMonitor.java pass

aoqi@1 1 /*
aoqi@1 2 * Copyright (c) 2003, 2013, Oracle and/or its affiliates. All rights reserved.
aoqi@1 3 * Copyright (c) 2015, 2016, Loongson Technology. All rights reserved.
aoqi@1 4 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
aoqi@1 5 *
aoqi@1 6 * This code is free software; you can redistribute it and/or modify it
aoqi@1 7 * under the terms of the GNU General Public License version 2 only, as
aoqi@1 8 * published by the Free Software Foundation.
aoqi@1 9 *
aoqi@1 10 * This code is distributed in the hope that it will be useful, but WITHOUT
aoqi@1 11 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
aoqi@1 12 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
aoqi@1 13 * version 2 for more details (a copy is included in the LICENSE file that
aoqi@1 14 * accompanied this code).
aoqi@1 15 *
aoqi@1 16 * You should have received a copy of the GNU General Public License version
aoqi@1 17 * 2 along with this work; if not, write to the Free Software Foundation,
aoqi@1 18 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
aoqi@1 19 *
aoqi@1 20 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
aoqi@1 21 * or visit www.oracle.com if you need additional information or have any
aoqi@1 22 * questions.
aoqi@1 23 *
aoqi@1 24 */
aoqi@1 25
aoqi@1 26 #include "precompiled.hpp"
aoqi@1 27 #include "asm/macroAssembler.hpp"
aoqi@1 28 #include "interpreter/interpreter.hpp"
aoqi@1 29 #include "interpreter/interpreterRuntime.hpp"
aoqi@1 30 #include "interpreter/templateTable.hpp"
aoqi@1 31 #include "memory/universe.inline.hpp"
aoqi@1 32 #include "oops/methodData.hpp"
aoqi@1 33 #include "oops/objArrayKlass.hpp"
aoqi@1 34 #include "oops/oop.inline.hpp"
aoqi@1 35 #include "prims/methodHandles.hpp"
aoqi@1 36 #include "runtime/sharedRuntime.hpp"
aoqi@1 37 #include "runtime/stubRoutines.hpp"
aoqi@1 38 #include "runtime/synchronizer.hpp"
aoqi@1 39
aoqi@1 40
aoqi@1 41 #ifndef CC_INTERP
aoqi@1 42
aoqi@1 43 #define __ _masm->
aoqi@1 44
aoqi@1 45 // Platform-dependent initialization
aoqi@1 46
aoqi@1 47 void TemplateTable::pd_initialize() {
aoqi@1 48 // No mips specific initialization
aoqi@1 49 }
aoqi@1 50
aoqi@1 51 // Address computation: local variables
aoqi@6880 52
aoqi@1 53 static inline Address iaddress(int n) {
aoqi@1 54 return Address(LVP, Interpreter::local_offset_in_bytes(n));
aoqi@1 55 }
aoqi@1 56
aoqi@1 57 static inline Address laddress(int n) {
aoqi@1 58 return iaddress(n + 1);
aoqi@1 59 }
aoqi@1 60
aoqi@1 61 static inline Address faddress(int n) {
aoqi@1 62 return iaddress(n);
aoqi@1 63 }
aoqi@1 64
aoqi@1 65 static inline Address daddress(int n) {
aoqi@1 66 return laddress(n);
aoqi@1 67 }
aoqi@1 68
aoqi@1 69 static inline Address aaddress(int n) {
aoqi@1 70 return iaddress(n);
aoqi@1 71 }
aoqi@1 72 static inline Address haddress(int n) { return iaddress(n + 0); }
aoqi@1 73
aoqi@6880 74
aoqi@6880 75 static inline Address at_sp() { return Address(SP, 0); }
aoqi@1 76 static inline Address at_sp_p1() { return Address(SP, 1 * wordSize); }
aoqi@1 77 static inline Address at_sp_p2() { return Address(SP, 2 * wordSize); }
aoqi@1 78
aoqi@1 79 // At top of Java expression stack which may be different than esp(). It
aoqi@1 80 // isn't for category 1 objects.
aoqi@1 81 static inline Address at_tos () {
aoqi@1 82 Address tos = Address(SP, Interpreter::expr_offset_in_bytes(0));
aoqi@1 83 return tos;
aoqi@1 84 }
aoqi@1 85
aoqi@1 86 static inline Address at_tos_p1() {
aoqi@1 87 return Address(SP, Interpreter::expr_offset_in_bytes(1));
aoqi@1 88 }
aoqi@1 89
aoqi@1 90 static inline Address at_tos_p2() {
aoqi@1 91 return Address(SP, Interpreter::expr_offset_in_bytes(2));
aoqi@1 92 }
aoqi@1 93
aoqi@1 94 static inline Address at_tos_p3() {
aoqi@1 95 return Address(SP, Interpreter::expr_offset_in_bytes(3));
aoqi@1 96 }
aoqi@1 97
aoqi@6880 98 // we use S0 as bcp, be sure you have bcp in S0 before you call any of the Template generator
aoqi@1 99 Address TemplateTable::at_bcp(int offset) {
aoqi@1 100 assert(_desc->uses_bcp(), "inconsistent uses_bcp information");
aoqi@1 101 return Address(BCP, offset);
aoqi@1 102 }
aoqi@1 103
aoqi@1 104 // bytecode folding
aoqi@1 105 void TemplateTable::patch_bytecode(Bytecodes::Code bc, Register bc_reg,
aoqi@6880 106 Register tmp_reg, bool load_bc_into_bc_reg/*=true*/,
aoqi@1 107 int byte_no) {
aoqi@6880 108 if (!RewriteBytecodes) return;
aoqi@1 109 Label L_patch_done;
aoqi@6880 110
aoqi@1 111 switch (bc) {
aoqi@1 112 case Bytecodes::_fast_aputfield:
aoqi@1 113 case Bytecodes::_fast_bputfield:
aoqi@1 114 case Bytecodes::_fast_cputfield:
aoqi@1 115 case Bytecodes::_fast_dputfield:
aoqi@1 116 case Bytecodes::_fast_fputfield:
aoqi@1 117 case Bytecodes::_fast_iputfield:
aoqi@1 118 case Bytecodes::_fast_lputfield:
aoqi@1 119 case Bytecodes::_fast_sputfield:
aoqi@1 120 {
aoqi@6880 121 // We skip bytecode quickening for putfield instructions when
aoqi@6880 122 // the put_code written to the constant pool cache is zero.
aoqi@6880 123 // This is required so that every execution of this instruction
aoqi@6880 124 // calls out to InterpreterRuntime::resolve_get_put to do
aoqi@6880 125 // additional, required work.
aoqi@6880 126 assert(byte_no == f1_byte || byte_no == f2_byte, "byte_no out of range");
aoqi@6880 127 assert(load_bc_into_bc_reg, "we use bc_reg as temp");
aoqi@6880 128 __ get_cache_and_index_and_bytecode_at_bcp(tmp_reg, bc_reg, tmp_reg, byte_no, 1);
aoqi@6880 129 __ daddi(bc_reg, R0, bc);
aoqi@6880 130 __ beq(tmp_reg, R0, L_patch_done);
aoqi@6880 131 __ delayed()->nop();
aoqi@1 132 }
aoqi@1 133 break;
aoqi@1 134 default:
aoqi@1 135 assert(byte_no == -1, "sanity");
aoqi@6880 136 // the pair bytecodes have already done the load.
aoqi@6880 137 if (load_bc_into_bc_reg) {
aoqi@6880 138 __ move(bc_reg, bc);
aoqi@6880 139 }
aoqi@1 140 }
aoqi@1 141
aoqi@1 142 if (JvmtiExport::can_post_breakpoint()) {
aoqi@1 143 Label L_fast_patch;
aoqi@1 144 // if a breakpoint is present we can't rewrite the stream directly
aoqi@1 145 __ lbu(tmp_reg, at_bcp(0));
aoqi@1 146 __ move(AT, Bytecodes::_breakpoint);
aoqi@1 147 __ bne(tmp_reg, AT, L_fast_patch);
aoqi@1 148 __ delayed()->nop();
aoqi@1 149
aoqi@1 150 __ get_method(tmp_reg);
aoqi@6880 151 // Let breakpoint table handling rewrite to quicker bytecode
aoqi@6880 152 __ call_VM(NOREG, CAST_FROM_FN_PTR(address,
aoqi@6880 153 InterpreterRuntime::set_original_bytecode_at), tmp_reg, BCP, bc_reg);
aoqi@1 154
aoqi@1 155 __ b(L_patch_done);
aoqi@1 156 __ delayed()->nop();
aoqi@1 157 __ bind(L_fast_patch);
aoqi@1 158 }
aoqi@1 159
aoqi@1 160 #ifdef ASSERT
aoqi@1 161 Label L_okay;
aoqi@1 162 __ lbu(tmp_reg, at_bcp(0));
aoqi@1 163 __ move(AT, (int)Bytecodes::java_code(bc));
aoqi@1 164 __ beq(tmp_reg, AT, L_okay);
aoqi@1 165 __ delayed()->nop();
aoqi@1 166 __ beq(tmp_reg, bc_reg, L_patch_done);
aoqi@1 167 __ delayed()->nop();
aoqi@1 168 __ stop("patching the wrong bytecode");
aoqi@1 169 __ bind(L_okay);
aoqi@1 170 #endif
aoqi@1 171
aoqi@1 172 // patch bytecode
aoqi@1 173 __ sb(bc_reg, at_bcp(0));
aoqi@1 174 __ bind(L_patch_done);
aoqi@1 175 }
aoqi@1 176
aoqi@1 177
aoqi@1 178 // Individual instructions
aoqi@1 179
aoqi@1 180 void TemplateTable::nop() {
aoqi@1 181 transition(vtos, vtos);
aoqi@1 182 // nothing to do
aoqi@1 183 }
aoqi@1 184
aoqi@1 185 void TemplateTable::shouldnotreachhere() {
aoqi@1 186 transition(vtos, vtos);
aoqi@1 187 __ stop("shouldnotreachhere bytecode");
aoqi@1 188 }
aoqi@1 189
aoqi@1 190 void TemplateTable::aconst_null() {
aoqi@1 191 transition(vtos, atos);
aoqi@1 192 __ move(FSR, R0);
aoqi@1 193 }
aoqi@1 194
aoqi@1 195 void TemplateTable::iconst(int value) {
aoqi@1 196 transition(vtos, itos);
aoqi@1 197 if (value == 0) {
aoqi@1 198 __ move(FSR, R0);
aoqi@1 199 } else {
aoqi@1 200 __ move(FSR, value);
aoqi@1 201 }
aoqi@1 202 }
aoqi@1 203
aoqi@1 204 void TemplateTable::lconst(int value) {
aoqi@1 205 transition(vtos, ltos);
aoqi@1 206 if (value == 0) {
aoqi@1 207 __ move(FSR, R0);
aoqi@1 208 } else {
aoqi@1 209 __ move(FSR, value);
aoqi@1 210 }
aoqi@1 211 assert(value >= 0, "check this code");
aoqi@1 212 //__ move(SSR, R0);
aoqi@1 213 }
aoqi@1 214
aoqi@1 215 void TemplateTable::fconst(int value) {
aoqi@1 216 static float _f1 = 1.0, _f2 = 2.0;
aoqi@1 217 transition(vtos, ftos);
aoqi@1 218 float* p;
aoqi@1 219 switch( value ) {
aoqi@1 220 default: ShouldNotReachHere();
aoqi@1 221 case 0: __ dmtc1(R0, FSF); return;
aoqi@1 222 case 1: p = &_f1; break;
aoqi@1 223 case 2: p = &_f2; break;
aoqi@1 224 }
aoqi@1 225 __ li(AT, (address)p);
aoqi@1 226 __ lwc1(FSF, AT, 0);
aoqi@1 227 }
aoqi@1 228
aoqi@1 229 void TemplateTable::dconst(int value) {
aoqi@1 230 static double _d1 = 1.0;
aoqi@1 231 transition(vtos, dtos);
aoqi@1 232 double* p;
aoqi@1 233 switch( value ) {
aoqi@1 234 default: ShouldNotReachHere();
aoqi@1 235 case 0: __ dmtc1(R0, FSF); return;
aoqi@1 236 case 1: p = &_d1; break;
aoqi@1 237 }
aoqi@1 238 __ li(AT, (address)p);
aoqi@1 239 __ ldc1(FSF, AT, 0);
aoqi@1 240 }
aoqi@1 241
aoqi@1 242 void TemplateTable::bipush() {
aoqi@1 243 transition(vtos, itos);
aoqi@1 244 __ lb(FSR, at_bcp(1));
aoqi@1 245 }
aoqi@1 246
aoqi@1 247 void TemplateTable::sipush() {
aoqi@6880 248 transition(vtos, itos);
aoqi@6880 249 __ get_2_byte_integer_at_bcp(FSR, AT, 1);
aoqi@6880 250 __ hswap(FSR);
aoqi@1 251 }
aoqi@1 252
aoqi@1 253 // T1 : tags
aoqi@1 254 // T2 : index
aoqi@1 255 // T3 : cpool
aoqi@1 256 // T8 : tag
aoqi@1 257 void TemplateTable::ldc(bool wide) {
aoqi@1 258 transition(vtos, vtos);
aoqi@1 259 Label call_ldc, notFloat, notClass, Done;
aoqi@1 260 // get index in cpool
aoqi@1 261 if (wide) {
aoqi@16 262 __ get_2_byte_integer_at_bcp(T2, AT, 1);
aoqi@1 263 __ huswap(T2);
aoqi@1 264 } else {
aoqi@1 265 __ lbu(T2, at_bcp(1));
aoqi@1 266 }
aoqi@1 267
aoqi@1 268 __ get_cpool_and_tags(T3, T1);
aoqi@1 269
aoqi@1 270 const int base_offset = ConstantPool::header_size() * wordSize;
aoqi@1 271 const int tags_offset = Array<u1>::base_offset_in_bytes();
aoqi@1 272
aoqi@1 273 // get type
aoqi@1 274 __ dadd(AT, T1, T2);
aoqi@1 275 __ lb(T1, AT, tags_offset);
aoqi@1 276 //now T1 is the tag
aoqi@1 277
aoqi@1 278 // unresolved class - get the resolved class
aoqi@1 279 __ daddiu(AT, T1, - JVM_CONSTANT_UnresolvedClass);
aoqi@1 280 __ beq(AT, R0, call_ldc);
aoqi@1 281 __ delayed()->nop();
aoqi@1 282
aoqi@1 283 // unresolved class in error (resolution failed) - call into runtime
aoqi@1 284 // so that the same error from first resolution attempt is thrown.
aoqi@6880 285 __ daddiu(AT, T1, -JVM_CONSTANT_UnresolvedClassInError);
aoqi@1 286 __ beq(AT, R0, call_ldc);
aoqi@1 287 __ delayed()->nop();
aoqi@1 288
aoqi@1 289 // resolved class - need to call vm to get java mirror of the class
aoqi@1 290 __ daddiu(AT, T1, - JVM_CONSTANT_Class);
aoqi@1 291 __ bne(AT, R0, notClass);
aoqi@1 292 __ delayed()->dsll(T2, T2, Address::times_8);
aoqi@1 293
aoqi@1 294 __ bind(call_ldc);
aoqi@1 295
aoqi@1 296 __ move(A1, wide);
aoqi@1 297 call_VM(FSR, CAST_FROM_FN_PTR(address, InterpreterRuntime::ldc), A1);
aoqi@6880 298 __ push(atos);
aoqi@1 299 __ b(Done);
aoqi@1 300 __ delayed()->nop();
aoqi@1 301 __ bind(notClass);
aoqi@1 302
aoqi@1 303 __ daddiu(AT, T1, -JVM_CONSTANT_Float);
aoqi@1 304 __ bne(AT, R0, notFloat);
aoqi@1 305 __ delayed()->nop();
aoqi@1 306 // ftos
aoqi@1 307 __ dadd(AT, T3, T2);
aoqi@1 308 __ lwc1(FSF, AT, base_offset);
aoqi@1 309 __ push_f();
aoqi@1 310 __ b(Done);
aoqi@1 311 __ delayed()->nop();
aoqi@1 312
aoqi@1 313 __ bind(notFloat);
aoqi@1 314 #ifdef ASSERT
aoqi@6880 315 {
aoqi@1 316 Label L;
aoqi@1 317 __ daddiu(AT, T1, -JVM_CONSTANT_Integer);
aoqi@1 318 __ beq(AT, R0, L);
aoqi@1 319 __ delayed()->nop();
aoqi@1 320 __ stop("unexpected tag type in ldc");
aoqi@1 321 __ bind(L);
aoqi@1 322 }
aoqi@1 323 #endif
aoqi@1 324 // atos and itos
aoqi@1 325 __ dadd(T0, T3, T2);
aoqi@1 326 __ lw(FSR, T0, base_offset);
aoqi@1 327 __ push(itos);
aoqi@1 328 __ b(Done);
aoqi@6880 329 __ delayed()->nop();
aoqi@1 330
aoqi@1 331
aoqi@1 332 if (VerifyOops) {
aoqi@1 333 __ verify_oop(FSR);
aoqi@1 334 }
aoqi@1 335
aoqi@1 336 __ bind(Done);
aoqi@1 337 }
aoqi@1 338
aoqi@1 339 // Fast path for caching oop constants.
aoqi@1 340 void TemplateTable::fast_aldc(bool wide) {
aoqi@1 341 transition(vtos, atos);
aoqi@1 342
aoqi@1 343 Register result = FSR;
aoqi@1 344 Register tmp = SSR;
aoqi@1 345 int index_size = wide ? sizeof(u2) : sizeof(u1);
aoqi@1 346
aoqi@1 347 Label resolved;
aoqi@6880 348
aoqi@6880 349 // We are resolved if the resolved reference cache entry contains a
aoqi@6880 350 // non-null object (String, MethodType, etc.)
aoqi@1 351 assert_different_registers(result, tmp);
aoqi@1 352 __ get_cache_index_at_bcp(tmp, 1, index_size);
aoqi@1 353 __ load_resolved_reference_at_index(result, tmp);
aoqi@1 354 __ bne(result, R0, resolved);
aoqi@1 355 __ delayed()->nop();
aoqi@1 356
aoqi@1 357 address entry = CAST_FROM_FN_PTR(address, InterpreterRuntime::resolve_ldc);
aoqi@1 358 // first time invocation - must resolve first
aoqi@1 359 int i = (int)bytecode();
aoqi@1 360 __ move(tmp, i);
aoqi@1 361 __ call_VM(result, entry, tmp);
aoqi@1 362
aoqi@1 363 __ bind(resolved);
aoqi@1 364
aoqi@1 365 if (VerifyOops) {
aoqi@1 366 __ verify_oop(result);
aoqi@1 367 }
aoqi@1 368 }
aoqi@1 369
aoqi@1 370
aoqi@1 371 // used register: T2, T3, T1
aoqi@1 372 // T2 : index
aoqi@1 373 // T3 : cpool
aoqi@1 374 // T1 : tag
aoqi@1 375 void TemplateTable::ldc2_w() {
aoqi@1 376 transition(vtos, vtos);
aoqi@1 377 Label Long, Done;
aoqi@1 378
aoqi@1 379 // get index in cpool
aoqi@16 380 __ get_2_byte_integer_at_bcp(T2, AT, 1);
aoqi@1 381 __ huswap(T2);
aoqi@1 382
aoqi@1 383 __ get_cpool_and_tags(T3, T1);
aoqi@1 384
aoqi@1 385 const int base_offset = ConstantPool::header_size() * wordSize;
aoqi@1 386 const int tags_offset = Array<u1>::base_offset_in_bytes();
aoqi@1 387
aoqi@1 388 // get type in T1
aoqi@1 389 __ dadd(AT, T1, T2);
aoqi@1 390 __ lb(T1, AT, tags_offset);
aoqi@1 391
aoqi@1 392 __ daddiu(AT, T1, - JVM_CONSTANT_Double);
aoqi@1 393 __ bne(AT, R0, Long);
aoqi@1 394 __ delayed()->dsll(T2, T2, Address::times_8);
aoqi@6880 395 // dtos
aoqi@1 396 __ daddu(AT, T3, T2);
aoqi@1 397 __ ldc1(FSF, AT, base_offset + 0 * wordSize);
aoqi@1 398 __ sdc1(FSF, SP, - 2 * wordSize);
aoqi@1 399 __ b(Done);
aoqi@1 400 __ delayed()->daddi(SP, SP, - 2 * wordSize);
aoqi@1 401
aoqi@1 402 // ltos
aoqi@1 403 __ bind(Long);
aoqi@6880 404 __ dadd(AT, T3, T2);
aoqi@1 405 __ ld(FSR, AT, base_offset + 0 * wordSize);
aoqi@1 406 __ push(ltos);
aoqi@1 407
aoqi@1 408 __ bind(Done);
aoqi@1 409 }
aoqi@1 410
aoqi@1 411 // we compute the actual local variable address here
aoqi@1 412 // the x86 dont do so for it has scaled index memory access model, we dont have, so do here
aoqi@1 413 void TemplateTable::locals_index(Register reg, int offset) {
aoqi@1 414 __ lbu(reg, at_bcp(offset));
aoqi@1 415 __ dsll(reg, reg, Address::times_8);
aoqi@1 416 __ dsub(reg, LVP, reg);
aoqi@1 417 }
aoqi@1 418
aoqi@1 419 // this method will do bytecode folding of the two form:
aoqi@6880 420 // iload iload iload caload
aoqi@1 421 // used register : T2, T3
aoqi@1 422 // T2 : bytecode
aoqi@1 423 // T3 : folded code
aoqi@1 424 void TemplateTable::iload() {
aoqi@1 425 transition(vtos, itos);
aoqi@6880 426 if (RewriteFrequentPairs) {
aoqi@1 427 Label rewrite, done;
aoqi@1 428 // get the next bytecode in T2
aoqi@1 429 __ lbu(T2, at_bcp(Bytecodes::length_for(Bytecodes::_iload)));
aoqi@1 430 // if _iload, wait to rewrite to iload2. We only want to rewrite the
aoqi@1 431 // last two iloads in a pair. Comparing against fast_iload means that
aoqi@1 432 // the next bytecode is neither an iload or a caload, and therefore
aoqi@1 433 // an iload pair.
aoqi@1 434 __ move(AT, Bytecodes::_iload);
aoqi@1 435 __ beq(AT, T2, done);
aoqi@1 436 __ delayed()->nop();
aoqi@1 437
aoqi@1 438 __ move(T3, Bytecodes::_fast_iload2);
aoqi@1 439 __ move(AT, Bytecodes::_fast_iload);
aoqi@1 440 __ beq(AT, T2, rewrite);
aoqi@1 441 __ delayed()->nop();
aoqi@1 442
aoqi@1 443 // if _caload, rewrite to fast_icaload
aoqi@1 444 __ move(T3, Bytecodes::_fast_icaload);
aoqi@1 445 __ move(AT, Bytecodes::_caload);
aoqi@1 446 __ beq(AT, T2, rewrite);
aoqi@1 447 __ delayed()->nop();
aoqi@1 448
aoqi@1 449 // rewrite so iload doesn't check again.
aoqi@1 450 __ move(T3, Bytecodes::_fast_iload);
aoqi@1 451
aoqi@1 452 // rewrite
aoqi@1 453 // T3 : fast bytecode
aoqi@1 454 __ bind(rewrite);
aoqi@1 455 patch_bytecode(Bytecodes::_iload, T3, T2, false);
aoqi@1 456 __ bind(done);
aoqi@1 457 }
aoqi@1 458
aoqi@1 459 // Get the local value into tos
aoqi@1 460 locals_index(T2);
aoqi@1 461 __ lw(FSR, T2, 0);
aoqi@1 462 }
aoqi@1 463
aoqi@1 464 // used register T2
aoqi@1 465 // T2 : index
aoqi@1 466 void TemplateTable::fast_iload2() {
aoqi@6880 467 transition(vtos, itos);
aoqi@6880 468 locals_index(T2);
aoqi@6880 469 __ lw(FSR, T2, 0);
aoqi@6880 470 __ push(itos);
aoqi@6880 471 locals_index(T2, 3);
aoqi@6880 472 __ lw(FSR, T2, 0);
aoqi@1 473 }
aoqi@6880 474
aoqi@1 475 // used register T2
aoqi@1 476 // T2 : index
aoqi@1 477 void TemplateTable::fast_iload() {
aoqi@1 478 transition(vtos, itos);
aoqi@1 479 locals_index(T2);
aoqi@1 480 __ lw(FSR, T2, 0);
aoqi@1 481 }
aoqi@1 482
aoqi@1 483 // used register T2
aoqi@1 484 // T2 : index
aoqi@1 485 void TemplateTable::lload() {
aoqi@1 486 transition(vtos, ltos);
aoqi@1 487 locals_index(T2);
aoqi@1 488 __ ld(FSR, T2, -wordSize);
aoqi@1 489 __ ld(SSR, T2, 0);
aoqi@1 490 }
aoqi@1 491
aoqi@1 492 // used register T2
aoqi@1 493 // T2 : index
aoqi@1 494 void TemplateTable::fload() {
aoqi@1 495 transition(vtos, ftos);
aoqi@1 496 locals_index(T2);
aoqi@1 497 __ lwc1(FSF, T2, 0);
aoqi@1 498 }
aoqi@1 499
aoqi@1 500 // used register T2
aoqi@1 501 // T2 : index
aoqi@1 502 void TemplateTable::dload() {
aoqi@1 503 transition(vtos, dtos);
aoqi@1 504 locals_index(T2);
aoqi@6880 505 __ ldc1(FSF, T2, -wordSize);
aoqi@6880 506 __ ldc1(SSF, T2, 0);
aoqi@1 507 }
aoqi@1 508
aoqi@1 509 // used register T2
aoqi@1 510 // T2 : index
aoqi@6880 511 void TemplateTable::aload() {
aoqi@1 512 transition(vtos, atos);
aoqi@1 513 locals_index(T2);
aoqi@1 514 __ ld(FSR, T2, 0);
aoqi@1 515 }
aoqi@1 516
aoqi@1 517 void TemplateTable::locals_index_wide(Register reg) {
aoqi@16 518 __ get_2_byte_integer_at_bcp(reg, AT, 2);
aoqi@1 519 __ huswap(reg);
aoqi@1 520 __ dsll(reg, reg, Address::times_8);
aoqi@1 521 __ dsub(reg, LVP, reg);
aoqi@1 522 }
aoqi@1 523
aoqi@1 524 // used register T2
aoqi@1 525 // T2 : index
aoqi@1 526 void TemplateTable::wide_iload() {
aoqi@6880 527 transition(vtos, itos);
aoqi@6880 528 locals_index_wide(T2);
aoqi@6880 529 __ ld(FSR, T2, 0);
aoqi@1 530 }
aoqi@1 531
aoqi@1 532 // used register T2
aoqi@1 533 // T2 : index
aoqi@1 534 void TemplateTable::wide_lload() {
aoqi@6880 535 transition(vtos, ltos);
aoqi@6880 536 locals_index_wide(T2);
wangxue@6881 537 __ ld(FSR, T2, -wordSize);
aoqi@1 538 }
aoqi@1 539
aoqi@1 540 // used register T2
aoqi@1 541 // T2 : index
aoqi@1 542 void TemplateTable::wide_fload() {
aoqi@6880 543 transition(vtos, ftos);
aoqi@6880 544 locals_index_wide(T2);
aoqi@6880 545 __ lwc1(FSF, T2, 0);
aoqi@1 546 }
aoqi@1 547
aoqi@1 548 // used register T2
aoqi@1 549 // T2 : index
aoqi@1 550 void TemplateTable::wide_dload() {
aoqi@6880 551 transition(vtos, dtos);
aoqi@6880 552 locals_index_wide(T2);
wangxue@6881 553 __ ldc1(FSF, T2, -wordSize);
aoqi@1 554 }
aoqi@1 555
aoqi@1 556 // used register T2
aoqi@1 557 // T2 : index
aoqi@1 558 void TemplateTable::wide_aload() {
aoqi@6880 559 transition(vtos, atos);
aoqi@6880 560 locals_index_wide(T2);
aoqi@6880 561 __ ld(FSR, T2, 0);
aoqi@1 562 }
aoqi@1 563
aoqi@1 564 // we use A2 as the regiser for index, BE CAREFUL!
aoqi@1 565 // we dont use our tge 29 now, for later optimization
aoqi@1 566 void TemplateTable::index_check(Register array, Register index) {
aoqi@1 567 // Pop ptr into array
aoqi@1 568 __ pop_ptr(array);
aoqi@1 569 index_check_without_pop(array, index);
aoqi@1 570 }
aoqi@1 571
aoqi@1 572 void TemplateTable::index_check_without_pop(Register array, Register index) {
aoqi@1 573 // destroys ebx
aoqi@1 574 // check array
aoqi@1 575 __ null_check(array, arrayOopDesc::length_offset_in_bytes());
aoqi@1 576
fujie@108 577 #ifdef _LP64
fujie@108 578 // sign extend since tos (index) might contain garbage in upper bits
fujie@108 579 __ sll(index, index, 0);
fujie@108 580 #endif // _LP64
fujie@108 581
aoqi@1 582 // check index
aoqi@1 583 Label ok;
aoqi@1 584 __ lw(AT, array, arrayOopDesc::length_offset_in_bytes());
aoqi@1 585 #ifndef OPT_RANGECHECK
aoqi@1 586 __ sltu(AT, index, AT);
aoqi@1 587 __ bne(AT, R0, ok);
aoqi@6880 588 __ delayed()->nop();
aoqi@1 589
aoqi@1 590 //throw_ArrayIndexOutOfBoundsException assume abberrant index in A2
aoqi@6880 591 if (A2 != index) __ move(A2, index);
aoqi@1 592 __ jmp(Interpreter::_throw_ArrayIndexOutOfBoundsException_entry);
aoqi@1 593 __ delayed()->nop();
aoqi@1 594 __ bind(ok);
aoqi@1 595 #else
aoqi@1 596 __ lw(AT, array, arrayOopDesc::length_offset_in_bytes());
aoqi@1 597 __ move(A2, index);
aoqi@1 598 __ tgeu(A2, AT, 29);
aoqi@1 599 #endif
aoqi@1 600 }
aoqi@1 601
aoqi@1 602 void TemplateTable::iaload() {
aoqi@1 603 transition(itos, itos);
aoqi@6880 604 if(UseBoundCheckInstruction) {
jiangshaofeng@362 605 __ pop(SSR); //SSR:array FSR: index
jiangshaofeng@362 606 __ dsll(FSR, FSR, 2);
jiangshaofeng@362 607 __ dadd(FSR, SSR, FSR);
jiangshaofeng@362 608 __ addi(FSR, FSR, arrayOopDesc::base_offset_in_bytes(T_INT));
aoqi@6880 609
jiangshaofeng@362 610 __ lw(AT, SSR, arrayOopDesc::length_offset_in_bytes()); //bound
jiangshaofeng@362 611 __ dsll(AT, AT, 2);
jiangshaofeng@362 612 __ dadd(AT, SSR, AT);
jiangshaofeng@362 613 __ addi(AT, AT, arrayOopDesc::base_offset_in_bytes(T_INT));
aoqi@6880 614
jiangshaofeng@362 615 __ gslwle(FSR, FSR, AT);
jiangshaofeng@362 616 } else {
jiangshaofeng@362 617 index_check(SSR, FSR);
jiangshaofeng@362 618 __ dsll(FSR, FSR, 2);
jiangshaofeng@362 619 __ dadd(FSR, SSR, FSR);
jiangshaofeng@362 620 //FSR: index
jiangshaofeng@362 621 __ lw(FSR, FSR, arrayOopDesc::base_offset_in_bytes(T_INT));
jiangshaofeng@362 622 }
aoqi@1 623 }
aoqi@1 624
aoqi@1 625 void TemplateTable::laload() {
aoqi@1 626 transition(itos, ltos);
jiangshaofeng@362 627 if(UseBoundCheckInstruction) {
jiangshaofeng@362 628 __ pop(SSR); //SSR:array FSR: index
jiangshaofeng@362 629 __ dsll(FSR, FSR, Address::times_8);
jiangshaofeng@362 630 __ dadd(FSR, SSR, FSR);
jiangshaofeng@362 631 __ addi(FSR, FSR, arrayOopDesc::base_offset_in_bytes(T_LONG) + 0 * wordSize);
aoqi@6880 632
jiangshaofeng@362 633 __ lw(AT, SSR, arrayOopDesc::length_offset_in_bytes()); //bound
jiangshaofeng@362 634 __ dsll(AT, AT, Address::times_8);
jiangshaofeng@362 635 __ dadd(AT, SSR, AT);
jiangshaofeng@362 636 __ addi(AT, AT, arrayOopDesc::base_offset_in_bytes(T_LONG) + 0 * wordSize);
aoqi@6880 637
aoqi@6880 638 __ gsldle(FSR, FSR, AT);
jiangshaofeng@362 639 } else {
jiangshaofeng@362 640 index_check(SSR, FSR);
jiangshaofeng@362 641 __ dsll(AT, FSR, Address::times_8);
jiangshaofeng@362 642 __ dadd(AT, SSR, AT);
jiangshaofeng@362 643 __ ld(FSR, AT, arrayOopDesc::base_offset_in_bytes(T_LONG) + 0 * wordSize);
jiangshaofeng@362 644 }
aoqi@1 645 }
aoqi@1 646
aoqi@1 647 void TemplateTable::faload() {
jiangshaofeng@362 648 transition(itos, ftos);
jiangshaofeng@362 649 if(UseBoundCheckInstruction) {
jiangshaofeng@362 650 __ pop(SSR); //SSR:array FSR: index
jiangshaofeng@362 651 __ shl(FSR, 2);
jiangshaofeng@362 652 __ dadd(FSR, SSR, FSR);
jiangshaofeng@362 653 __ addi(FSR, FSR, arrayOopDesc::base_offset_in_bytes(T_FLOAT));
aoqi@6880 654
jiangshaofeng@362 655 __ lw(AT, SSR, arrayOopDesc::length_offset_in_bytes()); //bound
jiangshaofeng@362 656 __ shl(AT, 2);
jiangshaofeng@362 657 __ dadd(AT, SSR, AT);
jiangshaofeng@362 658 __ addi(AT, AT, arrayOopDesc::base_offset_in_bytes(T_FLOAT));
aoqi@6880 659
jiangshaofeng@362 660 __ gslwlec1(FSF, FSR, AT);
jiangshaofeng@362 661 } else {
aoqi@6880 662 index_check(SSR, FSR);
jiangshaofeng@362 663 __ shl(FSR, 2);
jiangshaofeng@362 664 __ dadd(FSR, SSR, FSR);
jiangshaofeng@362 665 __ lwc1(FSF, FSR, arrayOopDesc::base_offset_in_bytes(T_FLOAT));
jiangshaofeng@362 666 }
aoqi@1 667 }
aoqi@1 668
aoqi@1 669 void TemplateTable::daload() {
jiangshaofeng@362 670 transition(itos, dtos);
jiangshaofeng@362 671 if(UseBoundCheckInstruction) {
jiangshaofeng@362 672 __ pop(SSR); //SSR:array FSR: index
jiangshaofeng@362 673 __ dsll(FSR, FSR, 3);
jiangshaofeng@362 674 __ dadd(FSR, SSR, FSR);
jiangshaofeng@362 675 __ addi(FSR, FSR, arrayOopDesc::base_offset_in_bytes(T_DOUBLE) + 0 * wordSize);
aoqi@6880 676
jiangshaofeng@362 677 __ lw(AT, SSR, arrayOopDesc::length_offset_in_bytes()); //bound
jiangshaofeng@362 678 __ dsll(AT, AT, 3);
jiangshaofeng@362 679 __ dadd(AT, SSR, AT);
jiangshaofeng@362 680 __ addi(AT, AT, arrayOopDesc::base_offset_in_bytes(T_DOUBLE) + 0 * wordSize);
aoqi@6880 681
jiangshaofeng@362 682 __ gsldlec1(FSF, FSR, AT);
jiangshaofeng@362 683 } else {
aoqi@6880 684 index_check(SSR, FSR);
jiangshaofeng@362 685 __ dsll(AT, FSR, 3);
jiangshaofeng@362 686 __ dadd(AT, SSR, AT);
jiangshaofeng@362 687 __ ldc1(FSF, AT, arrayOopDesc::base_offset_in_bytes(T_DOUBLE) + 0 * wordSize);
jiangshaofeng@362 688 }
aoqi@1 689 }
aoqi@1 690
aoqi@1 691 void TemplateTable::aaload() {
aoqi@1 692 transition(itos, atos);
aoqi@1 693 index_check(SSR, FSR);
aoqi@1 694 __ dsll(FSR, FSR, UseCompressedOops ? Address::times_4 : Address::times_8);
aoqi@1 695 __ dadd(FSR, SSR, FSR);
aoqi@1 696 //add for compressedoops
aoqi@1 697 __ load_heap_oop(FSR, Address(FSR, arrayOopDesc::base_offset_in_bytes(T_OBJECT)));
aoqi@1 698 }
aoqi@1 699
aoqi@1 700 void TemplateTable::baload() {
aoqi@1 701 transition(itos, itos);
jiangshaofeng@362 702 if(UseBoundCheckInstruction) {
jiangshaofeng@362 703 __ pop(SSR); //SSR:array FSR:index
jiangshaofeng@362 704 __ dadd(FSR, SSR, FSR);
jiangshaofeng@362 705 __ addi(FSR, FSR, arrayOopDesc::base_offset_in_bytes(T_BYTE)); //base
jiangshaofeng@362 706
aoqi@6880 707 __ lw(AT, SSR, arrayOopDesc::length_offset_in_bytes());
jiangshaofeng@362 708 __ dadd(AT, SSR, AT);
jiangshaofeng@362 709 __ addi(AT, AT, arrayOopDesc::base_offset_in_bytes(T_BYTE)); //bound
jiangshaofeng@362 710
jiangshaofeng@362 711 __ gslble(FSR, FSR, AT);
jiangshaofeng@362 712 } else {
aoqi@6880 713 index_check(SSR, FSR);
jiangshaofeng@362 714 __ dadd(FSR, SSR, FSR);
jiangshaofeng@362 715 __ lb(FSR, FSR, arrayOopDesc::base_offset_in_bytes(T_BYTE));
jiangshaofeng@362 716 }
aoqi@1 717 }
aoqi@1 718
aoqi@1 719 void TemplateTable::caload() {
aoqi@1 720 transition(itos, itos);
aoqi@1 721 index_check(SSR, FSR);
aoqi@1 722 __ dsll(FSR, FSR, Address::times_2);
aoqi@1 723 __ dadd(FSR, SSR, FSR);
aoqi@1 724 __ lhu(FSR, FSR, arrayOopDesc::base_offset_in_bytes(T_CHAR));
aoqi@1 725 }
aoqi@1 726
aoqi@1 727 // iload followed by caload frequent pair
aoqi@1 728 // used register : T2
aoqi@1 729 // T2 : index
aoqi@1 730 void TemplateTable::fast_icaload() {
aoqi@1 731 transition(vtos, itos);
aoqi@1 732 // load index out of locals
aoqi@1 733 locals_index(T2);
aoqi@1 734 __ lw(FSR, T2, 0);
aoqi@1 735 index_check(SSR, FSR);
aoqi@1 736 __ dsll(FSR, FSR, 1);
aoqi@1 737 __ dadd(FSR, SSR, FSR);
aoqi@1 738 __ lhu(FSR, FSR, arrayOopDesc::base_offset_in_bytes(T_CHAR));
aoqi@1 739 }
aoqi@1 740
aoqi@1 741 void TemplateTable::saload() {
aoqi@1 742 transition(itos, itos);
jiangshaofeng@362 743 if(UseBoundCheckInstruction) {
jiangshaofeng@362 744 __ pop(SSR); //SSR:array FSR: index
jiangshaofeng@362 745 __ dsll(FSR, FSR, Address::times_2);
jiangshaofeng@362 746 __ dadd(FSR, SSR, FSR);
jiangshaofeng@362 747 __ addi(FSR, FSR, arrayOopDesc::base_offset_in_bytes(T_SHORT));
aoqi@6880 748
jiangshaofeng@362 749 __ lw(AT, SSR, arrayOopDesc::length_offset_in_bytes()); //bound
jiangshaofeng@362 750 __ dsll(AT, AT, Address::times_2);
jiangshaofeng@362 751 __ dadd(AT, SSR, AT);
jiangshaofeng@362 752 __ addi(AT, AT, arrayOopDesc::base_offset_in_bytes(T_SHORT));
aoqi@6880 753
aoqi@6880 754 __ gslhle(FSR, FSR, AT);
jiangshaofeng@362 755 } else {
aoqi@6880 756 index_check(SSR, FSR);
jiangshaofeng@362 757 __ dsll(FSR, FSR, Address::times_2);
jiangshaofeng@362 758 __ dadd(FSR, SSR, FSR);
jiangshaofeng@362 759 __ lh(FSR, FSR, arrayOopDesc::base_offset_in_bytes(T_SHORT));
jiangshaofeng@362 760 }
aoqi@1 761 }
aoqi@1 762
aoqi@1 763 void TemplateTable::iload(int n) {
aoqi@6880 764 transition(vtos, itos);
aoqi@6880 765 __ lw(FSR, iaddress(n));
aoqi@1 766 }
aoqi@1 767
aoqi@1 768 void TemplateTable::lload(int n) {
aoqi@6880 769 transition(vtos, ltos);
aoqi@6880 770 __ ld(FSR, laddress(n));
aoqi@1 771 }
aoqi@1 772
aoqi@1 773 void TemplateTable::fload(int n) {
aoqi@1 774 transition(vtos, ftos);
aoqi@1 775 __ lwc1(FSF, faddress(n));
aoqi@1 776 }
aoqi@6880 777
aoqi@1 778 void TemplateTable::dload(int n) {
aoqi@6880 779 transition(vtos, dtos);
aoqi@6880 780 __ ldc1(FSF, laddress(n));
aoqi@1 781 }
aoqi@1 782
aoqi@1 783 void TemplateTable::aload(int n) {
aoqi@1 784 transition(vtos, atos);
aoqi@1 785 __ ld(FSR, aaddress(n));
aoqi@1 786 }
aoqi@1 787
aoqi@1 788 // used register : T2, T3
aoqi@1 789 // T2 : bytecode
aoqi@1 790 // T3 : folded code
aoqi@1 791 void TemplateTable::aload_0() {
aoqi@6880 792 transition(vtos, atos);
aoqi@6880 793 // According to bytecode histograms, the pairs:
aoqi@6880 794 //
aoqi@6880 795 // _aload_0, _fast_igetfield
aoqi@6880 796 // _aload_0, _fast_agetfield
aoqi@6880 797 // _aload_0, _fast_fgetfield
aoqi@6880 798 //
aoqi@6880 799 // occur frequently. If RewriteFrequentPairs is set, the (slow)
aoqi@6880 800 // _aload_0 bytecode checks if the next bytecode is either
aoqi@6880 801 // _fast_igetfield, _fast_agetfield or _fast_fgetfield and then
aoqi@6880 802 // rewrites the current bytecode into a pair bytecode; otherwise it
aoqi@6880 803 // rewrites the current bytecode into _fast_aload_0 that doesn't do
aoqi@6880 804 // the pair check anymore.
aoqi@6880 805 //
aoqi@6880 806 // Note: If the next bytecode is _getfield, the rewrite must be
aoqi@6880 807 // delayed, otherwise we may miss an opportunity for a pair.
aoqi@6880 808 //
aoqi@6880 809 // Also rewrite frequent pairs
aoqi@6880 810 // aload_0, aload_1
aoqi@6880 811 // aload_0, iload_1
aoqi@6880 812 // These bytecodes with a small amount of code are most profitable
aoqi@6880 813 // to rewrite
aoqi@6880 814 if (RewriteFrequentPairs) {
aoqi@6880 815 Label rewrite, done;
aoqi@6880 816 // get the next bytecode in T2
aoqi@6880 817 __ lbu(T2, at_bcp(Bytecodes::length_for(Bytecodes::_aload_0)));
aoqi@6880 818
aoqi@6880 819 // do actual aload_0
aoqi@6880 820 aload(0);
aoqi@6880 821
aoqi@6880 822 // if _getfield then wait with rewrite
aoqi@6880 823 __ move(AT, Bytecodes::_getfield);
aoqi@6880 824 __ beq(AT, T2, done);
aoqi@6880 825 __ delayed()->nop();
aoqi@6880 826
aoqi@6880 827 // if _igetfield then reqrite to _fast_iaccess_0
aoqi@6880 828 assert(Bytecodes::java_code(Bytecodes::_fast_iaccess_0) ==
aoqi@6880 829 Bytecodes::_aload_0,
aoqi@6880 830 "fix bytecode definition");
aoqi@6880 831 __ move(T3, Bytecodes::_fast_iaccess_0);
aoqi@6880 832 __ move(AT, Bytecodes::_fast_igetfield);
aoqi@6880 833 __ beq(AT, T2, rewrite);
aoqi@6880 834 __ delayed()->nop();
aoqi@6880 835
aoqi@6880 836 // if _agetfield then reqrite to _fast_aaccess_0
aoqi@6880 837 assert(Bytecodes::java_code(Bytecodes::_fast_aaccess_0) ==
aoqi@6880 838 Bytecodes::_aload_0,
aoqi@6880 839 "fix bytecode definition");
aoqi@6880 840 __ move(T3, Bytecodes::_fast_aaccess_0);
aoqi@6880 841 __ move(AT, Bytecodes::_fast_agetfield);
aoqi@6880 842 __ beq(AT, T2, rewrite);
aoqi@6880 843 __ delayed()->nop();
aoqi@6880 844
aoqi@6880 845 // if _fgetfield then reqrite to _fast_faccess_0
aoqi@6880 846 assert(Bytecodes::java_code(Bytecodes::_fast_faccess_0) ==
aoqi@6880 847 Bytecodes::_aload_0,
aoqi@6880 848 "fix bytecode definition");
aoqi@6880 849 __ move(T3, Bytecodes::_fast_faccess_0);
aoqi@6880 850 __ move(AT, Bytecodes::_fast_fgetfield);
aoqi@6880 851 __ beq(AT, T2, rewrite);
aoqi@6880 852 __ delayed()->nop();
aoqi@6880 853
aoqi@6880 854 // else rewrite to _fast_aload0
aoqi@6880 855 assert(Bytecodes::java_code(Bytecodes::_fast_aload_0) ==
aoqi@6880 856 Bytecodes::_aload_0,
aoqi@6880 857 "fix bytecode definition");
aoqi@6880 858 __ move(T3, Bytecodes::_fast_aload_0);
aoqi@6880 859
aoqi@6880 860 // rewrite
aoqi@6880 861 __ bind(rewrite);
aoqi@6880 862 patch_bytecode(Bytecodes::_aload_0, T3, T2, false);
aoqi@6880 863
aoqi@6880 864 __ bind(done);
aoqi@6880 865 } else {
aoqi@6880 866 aload(0);
aoqi@6880 867 }
aoqi@1 868 }
aoqi@1 869
aoqi@1 870 void TemplateTable::istore() {
aoqi@6880 871 transition(itos, vtos);
aoqi@6880 872 locals_index(T2);
aoqi@6880 873 __ sw(FSR, T2, 0);
aoqi@1 874 }
aoqi@1 875
aoqi@1 876 void TemplateTable::lstore() {
aoqi@1 877 transition(ltos, vtos);
aoqi@1 878 locals_index(T2);
aoqi@1 879 __ sd(FSR, T2, -wordSize);
aoqi@1 880 }
aoqi@1 881
aoqi@1 882 void TemplateTable::fstore() {
aoqi@6880 883 transition(ftos, vtos);
aoqi@6880 884 locals_index(T2);
aoqi@6880 885 __ swc1(FSF, T2, 0);
aoqi@1 886 }
aoqi@1 887
aoqi@1 888 void TemplateTable::dstore() {
aoqi@1 889 transition(dtos, vtos);
aoqi@1 890 locals_index(T2);
aoqi@1 891 __ sdc1(FSF, T2, -wordSize);
aoqi@1 892 }
aoqi@1 893
aoqi@1 894 void TemplateTable::astore() {
aoqi@1 895 transition(vtos, vtos);
aoqi@1 896 __ pop_ptr(FSR);
aoqi@1 897 locals_index(T2);
aoqi@1 898 __ sd(FSR, T2, 0);
aoqi@1 899 }
aoqi@1 900
aoqi@1 901 void TemplateTable::wide_istore() {
aoqi@6880 902 transition(vtos, vtos);
aoqi@6880 903 __ pop_i(FSR);
aoqi@6880 904 locals_index_wide(T2);
aoqi@6880 905 __ sd(FSR, T2, 0);
aoqi@1 906 }
aoqi@1 907
aoqi@1 908 void TemplateTable::wide_lstore() {
aoqi@6880 909 transition(vtos, vtos);
aoqi@6880 910 __ pop_l(FSR);
aoqi@6880 911 locals_index_wide(T2);
wangxue@6881 912 __ sd(FSR, T2, -wordSize);
aoqi@1 913 }
aoqi@1 914
aoqi@1 915 void TemplateTable::wide_fstore() {
aoqi@6880 916 wide_istore();
aoqi@1 917 }
aoqi@1 918
aoqi@1 919 void TemplateTable::wide_dstore() {
aoqi@6880 920 wide_lstore();
aoqi@1 921 }
aoqi@1 922
aoqi@1 923 void TemplateTable::wide_astore() {
aoqi@6880 924 transition(vtos, vtos);
aoqi@6880 925 __ pop_ptr(FSR);
aoqi@6880 926 locals_index_wide(T2);
aoqi@6880 927 __ sd(FSR, T2, 0);
aoqi@1 928 }
aoqi@1 929
aoqi@1 930 // used register : T2
aoqi@1 931 void TemplateTable::iastore() {
aoqi@1 932 transition(itos, vtos);
jiangshaofeng@362 933 __ pop_i(SSR); // T2: array SSR: index
jiangshaofeng@362 934 if(UseBoundCheckInstruction) {
aoqi@6880 935 __ pop_ptr(T2);
jiangshaofeng@362 936 __ dsll(SSR, SSR, Address::times_4);
jiangshaofeng@362 937 __ dadd(SSR, T2, SSR);
jiangshaofeng@362 938 __ addi(SSR, SSR, arrayOopDesc::base_offset_in_bytes(T_INT)); // base
aoqi@6880 939
aoqi@6880 940 __ lw(AT, T2, arrayOopDesc::length_offset_in_bytes());
jiangshaofeng@362 941 __ dsll(AT, AT, Address::times_4);
jiangshaofeng@362 942 __ dadd(AT, T2, AT);
jiangshaofeng@362 943 __ addi(AT, AT, arrayOopDesc::base_offset_in_bytes(T_INT)); //bound
aoqi@6880 944
jiangshaofeng@362 945 __ gsswle(FSR, SSR, AT);
jiangshaofeng@362 946 } else {
jiangshaofeng@362 947 index_check(T2, SSR); // prefer index in ebx
jiangshaofeng@362 948 __ dsll(SSR, SSR, Address::times_4);
jiangshaofeng@362 949 __ dadd(T2, T2, SSR);
jiangshaofeng@362 950 __ sw(FSR, T2, arrayOopDesc::base_offset_in_bytes(T_INT));
jiangshaofeng@362 951 }
aoqi@1 952 }
aoqi@1 953
aoqi@1 954
aoqi@1 955
aoqi@1 956 // used register T2, T3
aoqi@1 957 void TemplateTable::lastore() {
aoqi@1 958 transition(ltos, vtos);
aoqi@1 959 __ pop_i (T2);
jiangshaofeng@362 960 if(UseBoundCheckInstruction) {
aoqi@6880 961 __ pop_ptr(T3);
jiangshaofeng@362 962 __ dsll(T2, T2, Address::times_8);
jiangshaofeng@362 963 __ dadd(T2, T3, T2);
jiangshaofeng@362 964 __ addi(T2, T2, arrayOopDesc::base_offset_in_bytes(T_LONG) + 0 * wordSize); // base
aoqi@6880 965
aoqi@6880 966 __ lw(AT, T3, arrayOopDesc::length_offset_in_bytes());
jiangshaofeng@362 967 __ dsll(AT, AT, Address::times_8);
jiangshaofeng@362 968 __ dadd(AT, T3, AT);
jiangshaofeng@362 969 __ addi(AT, AT, arrayOopDesc::base_offset_in_bytes(T_LONG) + 0 * wordSize); //bound
aoqi@6880 970
jiangshaofeng@362 971 __ gssdle(FSR, T2, AT);
jiangshaofeng@362 972 } else {
jiangshaofeng@362 973 index_check(T3, T2);
jiangshaofeng@362 974 __ dsll(T2, T2, Address::times_8);
jiangshaofeng@362 975 __ dadd(T3, T3, T2);
jiangshaofeng@362 976 __ sd(FSR, T3, arrayOopDesc::base_offset_in_bytes(T_LONG) + 0 * wordSize);
jiangshaofeng@362 977 }
aoqi@1 978 }
aoqi@1 979
aoqi@1 980 // used register T2
aoqi@1 981 void TemplateTable::fastore() {
aoqi@1 982 transition(ftos, vtos);
aoqi@6880 983 __ pop_i(SSR);
jiangshaofeng@362 984 if(UseBoundCheckInstruction) {
aoqi@6880 985 __ pop_ptr(T2);
jiangshaofeng@362 986 __ dsll(SSR, SSR, Address::times_4);
jiangshaofeng@362 987 __ dadd(SSR, T2, SSR);
jiangshaofeng@362 988 __ addi(SSR, SSR, arrayOopDesc::base_offset_in_bytes(T_FLOAT)); // base
aoqi@6880 989
aoqi@6880 990 __ lw(AT, T2, arrayOopDesc::length_offset_in_bytes());
jiangshaofeng@362 991 __ dsll(AT, AT, Address::times_4);
jiangshaofeng@362 992 __ dadd(AT, T2, AT);
jiangshaofeng@362 993 __ addi(AT, AT, arrayOopDesc::base_offset_in_bytes(T_FLOAT)); //bound
aoqi@6880 994
jiangshaofeng@362 995 __ gsswlec1(FSF, SSR, AT);
jiangshaofeng@362 996 } else {
aoqi@6880 997 index_check(T2, SSR);
jiangshaofeng@362 998 __ dsll(SSR, SSR, Address::times_4);
jiangshaofeng@362 999 __ dadd(T2, T2, SSR);
jiangshaofeng@362 1000 __ swc1(FSF, T2, arrayOopDesc::base_offset_in_bytes(T_FLOAT));
jiangshaofeng@362 1001 }
aoqi@1 1002 }
aoqi@1 1003
aoqi@1 1004 // used register T2, T3
aoqi@1 1005 void TemplateTable::dastore() {
aoqi@1 1006 transition(dtos, vtos);
aoqi@6880 1007 __ pop_i (T2);
jiangshaofeng@362 1008 if(UseBoundCheckInstruction) {
aoqi@6880 1009 __ pop_ptr(T3);
jiangshaofeng@362 1010 __ dsll(T2, T2, Address::times_8);
jiangshaofeng@362 1011 __ dadd(T2, T3, T2);
jiangshaofeng@362 1012 __ addi(T2, T2, arrayOopDesc::base_offset_in_bytes(T_DOUBLE) + 0 * wordSize); // base
aoqi@6880 1013
aoqi@6880 1014 __ lw(AT, T3, arrayOopDesc::length_offset_in_bytes());
jiangshaofeng@362 1015 __ dsll(AT, AT, Address::times_8);
jiangshaofeng@362 1016 __ dadd(AT, T3, AT);
jiangshaofeng@362 1017 __ addi(AT, AT, arrayOopDesc::base_offset_in_bytes(T_DOUBLE) + 0 * wordSize); //bound
aoqi@6880 1018
jiangshaofeng@362 1019 __ gssdlec1(FSF, T2, AT);
jiangshaofeng@362 1020 } else {
aoqi@6880 1021 index_check(T3, T2);
jiangshaofeng@362 1022 __ dsll(T2, T2, Address::times_8);
jiangshaofeng@362 1023 __ daddu(T3, T3, T2);
jiangshaofeng@362 1024 __ sdc1(FSF, T3, arrayOopDesc::base_offset_in_bytes(T_DOUBLE) + 0 * wordSize);
jiangshaofeng@362 1025 }
aoqi@1 1026 }
aoqi@1 1027
aoqi@1 1028 // used register : T2, T3, T8
aoqi@1 1029 // T2 : array
aoqi@1 1030 // T3 : subklass
aoqi@1 1031 // T8 : supklass
aoqi@1 1032 void TemplateTable::aastore() {
aoqi@1 1033 Label is_null, ok_is_subtype, done;
aoqi@1 1034 transition(vtos, vtos);
aoqi@1 1035 // stack: ..., array, index, value
aoqi@1 1036 __ ld(FSR, at_tos()); // Value
aoqi@1 1037 __ lw(SSR, at_tos_p1()); // Index
aoqi@1 1038 __ ld(T2, at_tos_p2()); // Array
aoqi@1 1039
aoqi@1 1040 // index_check(T2, SSR);
aoqi@1 1041 index_check_without_pop(T2, SSR);
aoqi@1 1042 // do array store check - check for NULL value first
aoqi@1 1043 __ beq(FSR, R0, is_null);
aoqi@1 1044 __ delayed()->nop();
aoqi@1 1045
aoqi@1 1046 // Move subklass into T3
aoqi@1 1047 //add for compressedoops
aoqi@1 1048 __ load_klass(T3, FSR);
aoqi@1 1049 // Move superklass into T8
aoqi@1 1050 //add for compressedoops
aoqi@1 1051 __ load_klass(T8, T2);
aoqi@1 1052 __ ld(T8, Address(T8, ObjArrayKlass::element_klass_offset()));
aoqi@1 1053 // Compress array+index*4+12 into a single register. T2
aoqi@1 1054 __ dsll(AT, SSR, UseCompressedOops? Address::times_4 : Address::times_8);
aoqi@1 1055 __ dadd(T2, T2, AT);
aoqi@1 1056 __ daddi(T2, T2, arrayOopDesc::base_offset_in_bytes(T_OBJECT));
aoqi@1 1057
aoqi@1 1058 // Generate subtype check.
aoqi@1 1059 // Superklass in T8. Subklass in T3.
aoqi@6880 1060 __ gen_subtype_check(T8, T3, ok_is_subtype); // <-- Jin
aoqi@1 1061 // Come here on failure
aoqi@1 1062 // object is at FSR
aoqi@1 1063 __ jmp(Interpreter::_throw_ArrayStoreException_entry); // <-- Jin
aoqi@1 1064 __ delayed()->nop();
aoqi@1 1065 // Come here on success
aoqi@1 1066 __ bind(ok_is_subtype);
aoqi@1 1067 //replace with do_oop_store->store_heap_oop
aoqi@6880 1068 __ store_heap_oop(Address(T2, 0), FSR); // <-- Jin
aoqi@1 1069 __ store_check(T2);
aoqi@1 1070 __ b(done);
aoqi@1 1071 __ delayed()->nop();
aoqi@1 1072
aoqi@1 1073 // Have a NULL in FSR, EDX=T2, SSR=index. Store NULL at ary[idx]
aoqi@1 1074 __ bind(is_null);
aoqi@1 1075 __ profile_null_seen(T9);
aoqi@1 1076 __ dsll(AT, SSR, UseCompressedOops? Address::times_4 : Address::times_8);
aoqi@1 1077 __ dadd(T2, T2, AT);
aoqi@6880 1078 __ store_heap_oop(Address(T2, arrayOopDesc::base_offset_in_bytes(T_OBJECT)), FSR); /* FSR is null here */
aoqi@1 1079
aoqi@1 1080 __ bind(done);
aoqi@1 1081 __ daddi(SP, SP, 3 * Interpreter::stackElementSize);
aoqi@1 1082 }
aoqi@1 1083
aoqi@1 1084 void TemplateTable::bastore() {
aoqi@1 1085 transition(itos, vtos);
aoqi@6880 1086 __ pop_i(SSR);
jiangshaofeng@362 1087 if(UseBoundCheckInstruction) {
aoqi@6880 1088 __ pop_ptr(T2);
jiangshaofeng@362 1089 __ dadd(SSR, T2, SSR);
jiangshaofeng@362 1090 __ addi(SSR, SSR, arrayOopDesc::base_offset_in_bytes(T_BYTE)); // base
aoqi@6880 1091
aoqi@6880 1092 __ lw(AT, T2, arrayOopDesc::length_offset_in_bytes());
jiangshaofeng@362 1093 __ dadd(AT, T2, AT);
jiangshaofeng@362 1094 __ addi(AT, AT, arrayOopDesc::base_offset_in_bytes(T_BYTE)); //bound
aoqi@6880 1095
jiangshaofeng@362 1096 __ gssble(FSR, SSR, AT);
jiangshaofeng@362 1097 } else {
jiangshaofeng@362 1098 index_check(T2, SSR);
jiangshaofeng@362 1099 __ dadd(SSR, T2, SSR);
jiangshaofeng@362 1100 __ sb(FSR, SSR, arrayOopDesc::base_offset_in_bytes(T_BYTE));
jiangshaofeng@362 1101 }
aoqi@1 1102 }
aoqi@1 1103
aoqi@1 1104 void TemplateTable::castore() {
aoqi@1 1105 transition(itos, vtos);
aoqi@6880 1106 __ pop_i(SSR);
jiangshaofeng@362 1107 if(UseBoundCheckInstruction) {
aoqi@6880 1108 __ pop_ptr(T2);
jiangshaofeng@362 1109 __ dsll(SSR, SSR, Address::times_2);
jiangshaofeng@362 1110 __ dadd(SSR, T2, SSR);
jiangshaofeng@362 1111 __ addi(SSR, SSR, arrayOopDesc::base_offset_in_bytes(T_CHAR)); // base
aoqi@6880 1112
aoqi@6880 1113 __ lw(AT, T2, arrayOopDesc::length_offset_in_bytes());
jiangshaofeng@362 1114 __ dsll(AT, AT, Address::times_2);
jiangshaofeng@362 1115 __ dadd(AT, T2, AT);
jiangshaofeng@362 1116 __ addi(AT, AT, arrayOopDesc::base_offset_in_bytes(T_CHAR)); //bound
aoqi@6880 1117
jiangshaofeng@362 1118 __ gsshle(FSR, SSR, AT);
jiangshaofeng@362 1119 } else {
aoqi@6880 1120 index_check(T2, SSR);
jiangshaofeng@362 1121 __ dsll(SSR, SSR, Address::times_2);
jiangshaofeng@362 1122 __ dadd(SSR, T2, SSR);
jiangshaofeng@362 1123 __ sh(FSR, SSR, arrayOopDesc::base_offset_in_bytes(T_CHAR));
jiangshaofeng@362 1124 }
aoqi@1 1125 }
aoqi@1 1126
aoqi@1 1127 void TemplateTable::sastore() {
aoqi@1 1128 castore();
aoqi@1 1129 }
aoqi@1 1130
aoqi@1 1131 void TemplateTable::istore(int n) {
aoqi@1 1132 transition(itos, vtos);
aoqi@1 1133 __ sw(FSR, iaddress(n));
aoqi@1 1134 }
aoqi@1 1135
aoqi@1 1136 void TemplateTable::lstore(int n) {
aoqi@1 1137 transition(ltos, vtos);
aoqi@1 1138 __ sd(FSR, laddress(n));
aoqi@1 1139 }
aoqi@1 1140
aoqi@1 1141 void TemplateTable::fstore(int n) {
aoqi@1 1142 transition(ftos, vtos);
aoqi@1 1143 __ swc1(FSF, faddress(n));
aoqi@1 1144 }
aoqi@1 1145
aoqi@1 1146 void TemplateTable::dstore(int n) {
aoqi@1 1147 transition(dtos, vtos);
aoqi@1 1148 __ sdc1(FSF, laddress(n));
aoqi@1 1149 }
aoqi@1 1150
aoqi@1 1151 void TemplateTable::astore(int n) {
aoqi@1 1152 transition(vtos, vtos);
aoqi@1 1153 __ pop_ptr(FSR);
aoqi@1 1154 __ sd(FSR, aaddress(n));
aoqi@1 1155 }
aoqi@1 1156
aoqi@1 1157 void TemplateTable::pop() {
aoqi@1 1158 transition(vtos, vtos);
aoqi@1 1159 __ daddi(SP, SP, Interpreter::stackElementSize);
aoqi@1 1160 }
aoqi@1 1161
aoqi@1 1162 void TemplateTable::pop2() {
aoqi@1 1163 transition(vtos, vtos);
aoqi@1 1164 __ daddi(SP, SP, 2 * Interpreter::stackElementSize);
aoqi@1 1165 }
aoqi@1 1166
aoqi@1 1167 void TemplateTable::dup() {
aoqi@1 1168 transition(vtos, vtos);
aoqi@1 1169 // stack: ..., a
aoqi@1 1170 __ load_ptr(0, FSR);
aoqi@1 1171 __ push_ptr(FSR);
aoqi@1 1172 // stack: ..., a, a
aoqi@1 1173 }
aoqi@1 1174
aoqi@1 1175 // blows FSR
aoqi@1 1176 void TemplateTable::dup_x1() {
aoqi@6880 1177 transition(vtos, vtos);
aoqi@6880 1178 // stack: ..., a, b
aoqi@6880 1179 __ load_ptr(0, FSR); // load b
aoqi@6880 1180 __ load_ptr(1, A5); // load a
aoqi@6880 1181 __ store_ptr(1, FSR); // store b
aoqi@6880 1182 __ store_ptr(0, A5); // store a
aoqi@6880 1183 __ push_ptr(FSR); // push b
aoqi@6880 1184 // stack: ..., b, a, b
aoqi@1 1185 }
aoqi@1 1186
aoqi@1 1187 // blows FSR
aoqi@1 1188 void TemplateTable::dup_x2() {
aoqi@6880 1189 transition(vtos, vtos);
aoqi@6880 1190 // stack: ..., a, b, c
aoqi@6880 1191 __ load_ptr(0, FSR); // load c
aoqi@6880 1192 __ load_ptr(2, A5); // load a
aoqi@6880 1193 __ store_ptr(2, FSR); // store c in a
aoqi@6880 1194 __ push_ptr(FSR); // push c
aoqi@6880 1195 // stack: ..., c, b, c, c
aoqi@6880 1196 __ load_ptr(2, FSR); // load b
aoqi@6880 1197 __ store_ptr(2, A5); // store a in b
aoqi@6880 1198 // stack: ..., c, a, c, c
aoqi@6880 1199 __ store_ptr(1, FSR); // store b in c
aoqi@6880 1200 // stack: ..., c, a, b, c
aoqi@1 1201 }
aoqi@1 1202
aoqi@1 1203 // blows FSR
aoqi@1 1204 void TemplateTable::dup2() {
aoqi@6880 1205 transition(vtos, vtos);
aoqi@6880 1206 // stack: ..., a, b
aoqi@6880 1207 __ load_ptr(1, FSR); // load a
aoqi@6880 1208 __ push_ptr(FSR); // push a
aoqi@6880 1209 __ load_ptr(1, FSR); // load b
aoqi@6880 1210 __ push_ptr(FSR); // push b
aoqi@6880 1211 // stack: ..., a, b, a, b
aoqi@1 1212 }
aoqi@1 1213
aoqi@1 1214 // blows FSR
aoqi@1 1215 void TemplateTable::dup2_x1() {
aoqi@6880 1216 transition(vtos, vtos);
aoqi@6880 1217 // stack: ..., a, b, c
aoqi@6880 1218 __ load_ptr(0, T2); // load c
aoqi@6880 1219 __ load_ptr(1, FSR); // load b
aoqi@6880 1220 __ push_ptr(FSR); // push b
aoqi@6880 1221 __ push_ptr(T2); // push c
aoqi@6880 1222 // stack: ..., a, b, c, b, c
aoqi@6880 1223 __ store_ptr(3, T2); // store c in b
aoqi@6880 1224 // stack: ..., a, c, c, b, c
aoqi@6880 1225 __ load_ptr(4, T2); // load a
aoqi@6880 1226 __ store_ptr(2, T2); // store a in 2nd c
aoqi@6880 1227 // stack: ..., a, c, a, b, c
aoqi@6880 1228 __ store_ptr(4, FSR); // store b in a
aoqi@6880 1229 // stack: ..., b, c, a, b, c
aoqi@6880 1230
aoqi@6880 1231 // stack: ..., b, c, a, b, c
aoqi@1 1232 }
aoqi@1 1233
aoqi@1 1234 // blows FSR, SSR
aoqi@1 1235 void TemplateTable::dup2_x2() {
aoqi@6880 1236 transition(vtos, vtos);
aoqi@6880 1237 // stack: ..., a, b, c, d
aoqi@6880 1238 // stack: ..., a, b, c, d
aoqi@6880 1239 __ load_ptr(0, T2); // load d
aoqi@6880 1240 __ load_ptr(1, FSR); // load c
aoqi@6880 1241 __ push_ptr(FSR); // push c
aoqi@6880 1242 __ push_ptr(T2); // push d
aoqi@6880 1243 // stack: ..., a, b, c, d, c, d
aoqi@6880 1244 __ load_ptr(4, FSR); // load b
aoqi@6880 1245 __ store_ptr(2, FSR); // store b in d
aoqi@6880 1246 __ store_ptr(4, T2); // store d in b
aoqi@6880 1247 // stack: ..., a, d, c, b, c, d
aoqi@6880 1248 __ load_ptr(5, T2); // load a
aoqi@6880 1249 __ load_ptr(3, FSR); // load c
aoqi@6880 1250 __ store_ptr(3, T2); // store a in c
aoqi@6880 1251 __ store_ptr(5, FSR); // store c in a
aoqi@6880 1252 // stack: ..., c, d, a, b, c, d
aoqi@6880 1253
aoqi@6880 1254 // stack: ..., c, d, a, b, c, d
aoqi@1 1255 }
aoqi@1 1256
aoqi@1 1257 // blows FSR
aoqi@1 1258 void TemplateTable::swap() {
aoqi@6880 1259 transition(vtos, vtos);
aoqi@6880 1260 // stack: ..., a, b
aoqi@6880 1261
aoqi@6880 1262 __ load_ptr(1, A5); // load a
aoqi@6880 1263 __ load_ptr(0, FSR); // load b
aoqi@6880 1264 __ store_ptr(0, A5); // store a in b
aoqi@6880 1265 __ store_ptr(1, FSR); // store b in a
aoqi@6880 1266
aoqi@6880 1267 // stack: ..., b, a
aoqi@1 1268 }
aoqi@1 1269
aoqi@1 1270 void TemplateTable::iop2(Operation op) {
aoqi@6880 1271 transition(itos, itos);
aoqi@6880 1272 switch (op) {
aoqi@6880 1273 case add :
aoqi@6880 1274 __ pop_i(SSR);
aoqi@6880 1275 __ addu32(FSR, SSR, FSR);
aoqi@6880 1276 break;
aoqi@6880 1277 case sub :
aoqi@6880 1278 __ pop_i(SSR);
aoqi@6880 1279 __ subu32(FSR, SSR, FSR);
aoqi@6880 1280 break;
aoqi@6880 1281 case mul :
aoqi@6880 1282 __ lw(SSR, SP, 0);
aoqi@6880 1283 __ daddi(SP, SP, wordSize);
fujie@42 1284 __ mul(FSR, SSR, FSR);
aoqi@6880 1285 break;
aoqi@6880 1286 case _and :
aoqi@6880 1287 __ pop_i(SSR);
aoqi@6880 1288 __ andr(FSR, SSR, FSR);
aoqi@6880 1289 break;
aoqi@6880 1290 case _or :
aoqi@6880 1291 __ pop_i(SSR);
aoqi@6880 1292 __ orr(FSR, SSR, FSR);
aoqi@6880 1293 break;
aoqi@6880 1294 case _xor :
aoqi@6880 1295 __ pop_i(SSR);
aoqi@6880 1296 __ xorr(FSR, SSR, FSR);
aoqi@6880 1297 break;
aoqi@6880 1298 case shl :
aoqi@6880 1299 __ pop_i(SSR);
aoqi@6880 1300 __ sllv(FSR, SSR, FSR);
aoqi@6880 1301 break; // implicit masking of lower 5 bits by Intel shift instr. mips also
aoqi@6880 1302 case shr :
aoqi@6880 1303 __ pop_i(SSR);
aoqi@6880 1304 __ srav(FSR, SSR, FSR);
aoqi@6880 1305 break; // implicit masking of lower 5 bits by Intel shift instr. mips also
aoqi@6880 1306 case ushr :
aoqi@6880 1307 __ pop_i(SSR);
aoqi@6880 1308 __ srlv(FSR, SSR, FSR);
aoqi@6880 1309 break; // implicit masking of lower 5 bits by Intel shift instr. mips also
aoqi@6880 1310 default : ShouldNotReachHere();
aoqi@6880 1311 }
aoqi@1 1312 }
aoqi@1 1313
aoqi@1 1314 // the result stored in FSR, SSR,
aoqi@1 1315 // used registers : T2, T3
aoqi@1 1316 void TemplateTable::lop2(Operation op) {
aoqi@1 1317 transition(ltos, ltos);
aoqi@1 1318 __ pop_l(T2, T3);
aoqi@1 1319 #ifdef ASSERT
aoqi@1 1320 {
aoqi@1 1321 Label L;
aoqi@1 1322 __ beq(T3, R0, L);
aoqi@1 1323 __ delayed()->nop();
aoqi@1 1324 __ bind(L);
aoqi@1 1325 }
aoqi@1 1326 #endif
aoqi@1 1327 switch (op) {
aoqi@6880 1328 case add :
aoqi@1 1329 __ daddu(FSR, T2, FSR);
aoqi@1 1330 break;
aoqi@1 1331 case sub :
aoqi@1 1332 __ dsubu(FSR, T2, FSR);
aoqi@1 1333 break;
aoqi@6880 1334 case _and:
aoqi@6880 1335 __ andr(FSR, T2, FSR);
aoqi@1 1336 break;
aoqi@6880 1337 case _or :
aoqi@6880 1338 __ orr(FSR, T2, FSR);
aoqi@1 1339 break;
aoqi@6880 1340 case _xor:
aoqi@6880 1341 __ xorr(FSR, T2, FSR);
aoqi@1 1342 break;
aoqi@1 1343 default : ShouldNotReachHere();
aoqi@1 1344 }
aoqi@1 1345 }
aoqi@1 1346
aoqi@6880 1347 // java require this bytecode could handle 0x80000000/-1, dont cause a overflow exception,
aoqi@1 1348 // the result is 0x80000000
aoqi@1 1349 // the godson2 cpu do the same, so we need not handle this specially like x86
aoqi@1 1350 void TemplateTable::idiv() {
aoqi@6880 1351 transition(itos, itos);
aoqi@6880 1352 Label not_zero;
aoqi@6880 1353
aoqi@6880 1354 __ bne(FSR, R0, not_zero);
aoqi@6880 1355 __ delayed()->nop();
aoqi@6880 1356 __ jmp(Interpreter::_throw_ArithmeticException_entry);
aoqi@6880 1357 __ delayed()->nop();
aoqi@6880 1358 __ bind(not_zero);
aoqi@6880 1359
aoqi@6880 1360 __ pop_i(SSR);
aoqi@6880 1361 if (UseLoongsonISA) {
aoqi@6880 1362 __ gsdiv(FSR, SSR, FSR);
aoqi@6880 1363 } else {
aoqi@6880 1364 __ div(SSR, FSR);
aoqi@6880 1365 __ mflo(FSR);
aoqi@6880 1366 }
aoqi@1 1367 }
aoqi@1 1368
aoqi@1 1369 void TemplateTable::irem() {
aoqi@6880 1370 transition(itos, itos);
aoqi@6880 1371 Label not_zero;
aoqi@6880 1372 __ pop_i(SSR);
aoqi@6880 1373 __ div(SSR, FSR);
aoqi@6880 1374
aoqi@6880 1375 __ bne(FSR, R0, not_zero);
aoqi@6880 1376 __ delayed()->nop();
aoqi@6880 1377 //__ brk(7);
aoqi@6880 1378 __ jmp(Interpreter::_throw_ArithmeticException_entry);
aoqi@6880 1379 __ delayed()->nop();
aoqi@6880 1380
aoqi@6880 1381 __ bind(not_zero);
aoqi@6880 1382 __ mfhi(FSR);
aoqi@1 1383 }
aoqi@1 1384
aoqi@1 1385 void TemplateTable::lmul() {
aoqi@1 1386 transition(ltos, ltos);
jiangshaofeng@89 1387 __ pop_l(T2);
jiangshaofeng@89 1388 if(UseLoongsonISA){
jiangshaofeng@89 1389 __ gsdmult(FSR, T2, FSR);
jiangshaofeng@89 1390 } else {
aoqi@6880 1391 __ dmult(T2, FSR);
aoqi@6880 1392 __ mflo(FSR);
aoqi@6880 1393 }
aoqi@6880 1394 }
aoqi@1 1395
aoqi@1 1396 // NOTE: i DONT use the Interpreter::_throw_ArithmeticException_entry
aoqi@1 1397 void TemplateTable::ldiv() {
aoqi@1 1398 transition(ltos, ltos);
aoqi@1 1399 Label normal;
aoqi@1 1400
aoqi@1 1401 __ bne(FSR, R0, normal);
aoqi@1 1402 __ delayed()->nop();
aoqi@1 1403
aoqi@6880 1404 //__ brk(7); //generate FPE
aoqi@1 1405 __ jmp(Interpreter::_throw_ArithmeticException_entry);
aoqi@1 1406 __ delayed()->nop();
aoqi@1 1407
aoqi@1 1408 __ bind(normal);
chenhaoxuan@87 1409 __ pop_l(A2, A3);
chenhaoxuan@87 1410 if (UseLoongsonISA) {
aoqi@6880 1411 __ gsddiv(FSR, A2, FSR);
chenhaoxuan@87 1412 } else {
chenhaoxuan@87 1413 __ ddiv(A2, FSR);
chenhaoxuan@87 1414 __ mflo(FSR);
chenhaoxuan@87 1415 }
aoqi@1 1416 }
aoqi@1 1417
aoqi@1 1418 // NOTE: i DONT use the Interpreter::_throw_ArithmeticException_entry
aoqi@1 1419 void TemplateTable::lrem() {
aoqi@1 1420 transition(ltos, ltos);
aoqi@1 1421 Label normal;
aoqi@1 1422
aoqi@1 1423 __ bne(FSR, R0, normal);
aoqi@1 1424 __ delayed()->nop();
aoqi@1 1425
aoqi@1 1426 __ jmp(Interpreter::_throw_ArithmeticException_entry);
aoqi@1 1427 __ delayed()->nop();
aoqi@1 1428
aoqi@1 1429 __ bind(normal);
aoqi@6880 1430 __ pop_l (A2, A3);
lifangyuan@88 1431
lifangyuan@88 1432 if(UseLoongsonISA){
lifangyuan@88 1433 __ gsdmod(FSR, A2, FSR);
aoqi@6880 1434 } else {
lifangyuan@88 1435 __ ddiv(A2, FSR);
lifangyuan@88 1436 __ mfhi(FSR);
lifangyuan@88 1437 }
aoqi@1 1438 }
aoqi@1 1439
aoqi@1 1440 // result in FSR
aoqi@1 1441 // used registers : T0
aoqi@1 1442 void TemplateTable::lshl() {
aoqi@1 1443 transition(itos, ltos);
aoqi@6880 1444 __ pop_l(T0, T1);
aoqi@1 1445 #ifdef ASSERT
aoqi@1 1446 {
aoqi@1 1447 Label L;
aoqi@1 1448 __ beq(T1, R0, L);
aoqi@1 1449 __ delayed()->nop();
aoqi@6880 1450 //__ stop("lshl, wrong stack"); // <-- Fu 20130930
aoqi@1 1451 __ bind(L);
aoqi@1 1452 }
aoqi@1 1453 #endif
aoqi@6880 1454 __ andi(FSR, FSR, 0x3f); // the bit to be shifted
aoqi@1 1455 __ dsllv(FSR, T0, FSR);
aoqi@1 1456 }
aoqi@1 1457
aoqi@1 1458 // used registers : T0
aoqi@1 1459 void TemplateTable::lshr() {
aoqi@1 1460 transition(itos, ltos);
aoqi@6880 1461 __ pop_l(T0, T1);
aoqi@1 1462 #ifdef ASSERT
aoqi@1 1463 {
aoqi@1 1464 Label L;
aoqi@1 1465 __ beq(T1, R0, L);
aoqi@1 1466 __ delayed()->nop();
aoqi@1 1467 __ stop("lshr, wrong stack");
aoqi@1 1468 __ bind(L);
aoqi@1 1469 }
aoqi@1 1470 #endif
aoqi@6880 1471 __ andi(FSR, FSR, 0x3f); // the bit to be shifted
aoqi@1 1472 __ dsrav(FSR, T0, FSR);
aoqi@1 1473 }
aoqi@1 1474
aoqi@1 1475 // used registers : T0
aoqi@1 1476 void TemplateTable::lushr() {
aoqi@1 1477 transition(itos, ltos);
aoqi@6880 1478 __ pop_l(T0, T1);
aoqi@1 1479 #ifdef ASSERT
aoqi@1 1480 {
aoqi@1 1481 Label L;
aoqi@1 1482 __ beq(T1, R0, L);
aoqi@1 1483 __ delayed()->nop();
aoqi@1 1484 __ stop("lushr, wrong stack");
aoqi@1 1485 __ bind(L);
aoqi@1 1486 }
aoqi@1 1487 #endif
aoqi@6880 1488 __ andi(FSR, FSR, 0x3f); // the bit to be shifted
aoqi@1 1489 __ dsrlv(FSR, T0, FSR);
aoqi@1 1490 }
aoqi@1 1491
aoqi@1 1492 // result in FSF
aoqi@1 1493 void TemplateTable::fop2(Operation op) {
aoqi@6880 1494 transition(ftos, ftos);
aoqi@6880 1495 switch (op) {
aoqi@6880 1496 case add:
aoqi@6880 1497 __ lwc1(FTF, at_sp());
aoqi@6880 1498 __ add_s(FSF, FTF, FSF);
aoqi@6880 1499 break;
aoqi@6880 1500 case sub:
aoqi@6880 1501 __ lwc1(FTF, at_sp());
aoqi@6880 1502 __ sub_s(FSF, FTF, FSF);
aoqi@6880 1503 break;
aoqi@6880 1504 case mul:
aoqi@6880 1505 __ lwc1(FTF, at_sp());
aoqi@6880 1506 __ mul_s(FSF, FTF, FSF);
aoqi@6880 1507 break;
aoqi@6880 1508 case div:
aoqi@6880 1509 __ lwc1(FTF, at_sp());
aoqi@6880 1510 __ div_s(FSF, FTF, FSF);
aoqi@6880 1511 break;
aoqi@6880 1512 case rem:
aoqi@6880 1513 __ mov_s(F13, FSF);
aoqi@6880 1514 __ lwc1(F12, at_sp());
aoqi@6880 1515 __ call_VM_leaf(CAST_FROM_FN_PTR(address, SharedRuntime::frem), 2);
aoqi@6880 1516 break;
aoqi@6880 1517 default : ShouldNotReachHere();
aoqi@6880 1518 }
aoqi@6880 1519
aoqi@6880 1520 __ daddi(SP, SP, 1 * wordSize);
aoqi@1 1521 }
aoqi@1 1522
aoqi@1 1523 // result in SSF||FSF
aoqi@1 1524 // i dont handle the strict flags
aoqi@1 1525 void TemplateTable::dop2(Operation op) {
aoqi@6880 1526 transition(dtos, dtos);
aoqi@6880 1527 switch (op) {
aoqi@6880 1528 case add:
aoqi@6880 1529 __ ldc1(FTF, at_sp());
aoqi@6880 1530 __ add_d(FSF, FTF, FSF);
aoqi@6880 1531 break;
aoqi@6880 1532 case sub:
aoqi@6880 1533 __ ldc1(FTF, at_sp());
aoqi@6880 1534 __ sub_d(FSF, FTF, FSF);
aoqi@6880 1535 break;
aoqi@6880 1536 case mul:
aoqi@6880 1537 __ ldc1(FTF, at_sp());
aoqi@6880 1538 __ mul_d(FSF, FTF, FSF);
aoqi@6880 1539 break;
aoqi@6880 1540 case div:
aoqi@6880 1541 __ ldc1(FTF, at_sp());
aoqi@6880 1542 __ div_d(FSF, FTF, FSF);
aoqi@6880 1543 break;
aoqi@6880 1544 case rem:
aoqi@6880 1545 __ mov_d(F13, FSF);
aoqi@6880 1546 __ ldc1(F12, at_sp());
aoqi@6880 1547 __ call_VM_leaf(CAST_FROM_FN_PTR(address, SharedRuntime::drem), 2);
aoqi@6880 1548 break;
aoqi@6880 1549 default : ShouldNotReachHere();
aoqi@6880 1550 }
aoqi@6880 1551
aoqi@6880 1552 __ daddi(SP, SP, 2 * wordSize);
aoqi@1 1553 }
aoqi@1 1554
aoqi@1 1555 void TemplateTable::ineg() {
aoqi@6880 1556 transition(itos, itos);
aoqi@6880 1557 __ neg(FSR);
aoqi@1 1558 }
aoqi@1 1559
aoqi@1 1560 void TemplateTable::lneg() {
aoqi@6880 1561 transition(ltos, ltos);
aoqi@6880 1562 __ dsubu(FSR, R0, FSR);
aoqi@1 1563 }
aoqi@6880 1564
aoqi@6880 1565 void TemplateTable::fneg() {
aoqi@6880 1566 transition(ftos, ftos);
aoqi@6880 1567 __ neg_s(FSF, FSF);
aoqi@1 1568 }
aoqi@1 1569
aoqi@1 1570 void TemplateTable::dneg() {
aoqi@6880 1571 transition(dtos, dtos);
aoqi@6880 1572 __ neg_d(FSF, FSF);
aoqi@1 1573 }
aoqi@1 1574
aoqi@1 1575 // used registers : T2
aoqi@1 1576 void TemplateTable::iinc() {
aoqi@6880 1577 transition(vtos, vtos);
aoqi@6880 1578 locals_index(T2);
aoqi@6880 1579 __ lw(FSR, T2, 0);
aoqi@6880 1580 __ lb(AT, at_bcp(2)); // get constant
aoqi@6880 1581 __ daddu(FSR, FSR, AT);
aoqi@6880 1582 __ sw(FSR, T2, 0);
aoqi@1 1583 }
aoqi@1 1584
aoqi@1 1585 // used register : T2
aoqi@1 1586 void TemplateTable::wide_iinc() {
aoqi@6880 1587 transition(vtos, vtos);
aoqi@6880 1588 locals_index_wide(T2);
aoqi@6880 1589 __ get_2_byte_integer_at_bcp(FSR, AT, 4);
aoqi@6880 1590 __ hswap(FSR);
aoqi@6880 1591 __ lw(AT, T2, 0);
aoqi@6880 1592 __ daddu(FSR, AT, FSR);
aoqi@6880 1593 __ sw(FSR, T2, 0);
aoqi@1 1594 }
aoqi@1 1595
aoqi@1 1596 void TemplateTable::convert() {
aoqi@1 1597 // Checking
aoqi@1 1598 #ifdef ASSERT
aoqi@6880 1599 {
aoqi@6880 1600 TosState tos_in = ilgl;
aoqi@1 1601 TosState tos_out = ilgl;
aoqi@1 1602 switch (bytecode()) {
aoqi@1 1603 case Bytecodes::_i2l: // fall through
aoqi@1 1604 case Bytecodes::_i2f: // fall through
aoqi@1 1605 case Bytecodes::_i2d: // fall through
aoqi@1 1606 case Bytecodes::_i2b: // fall through
aoqi@1 1607 case Bytecodes::_i2c: // fall through
aoqi@1 1608 case Bytecodes::_i2s: tos_in = itos; break;
aoqi@1 1609 case Bytecodes::_l2i: // fall through
aoqi@1 1610 case Bytecodes::_l2f: // fall through
aoqi@1 1611 case Bytecodes::_l2d: tos_in = ltos; break;
aoqi@1 1612 case Bytecodes::_f2i: // fall through
aoqi@1 1613 case Bytecodes::_f2l: // fall through
aoqi@1 1614 case Bytecodes::_f2d: tos_in = ftos; break;
aoqi@1 1615 case Bytecodes::_d2i: // fall through
aoqi@1 1616 case Bytecodes::_d2l: // fall through
aoqi@1 1617 case Bytecodes::_d2f: tos_in = dtos; break;
aoqi@1 1618 default : ShouldNotReachHere();
aoqi@1 1619 }
aoqi@1 1620 switch (bytecode()) {
aoqi@1 1621 case Bytecodes::_l2i: // fall through
aoqi@1 1622 case Bytecodes::_f2i: // fall through
aoqi@1 1623 case Bytecodes::_d2i: // fall through
aoqi@1 1624 case Bytecodes::_i2b: // fall through
aoqi@1 1625 case Bytecodes::_i2c: // fall through
aoqi@1 1626 case Bytecodes::_i2s: tos_out = itos; break;
aoqi@1 1627 case Bytecodes::_i2l: // fall through
aoqi@1 1628 case Bytecodes::_f2l: // fall through
aoqi@1 1629 case Bytecodes::_d2l: tos_out = ltos; break;
aoqi@1 1630 case Bytecodes::_i2f: // fall through
aoqi@1 1631 case Bytecodes::_l2f: // fall through
aoqi@1 1632 case Bytecodes::_d2f: tos_out = ftos; break;
aoqi@1 1633 case Bytecodes::_i2d: // fall through
aoqi@1 1634 case Bytecodes::_l2d: // fall through
aoqi@1 1635 case Bytecodes::_f2d: tos_out = dtos; break;
aoqi@1 1636 default : ShouldNotReachHere();
aoqi@1 1637 }
aoqi@1 1638 transition(tos_in, tos_out);
aoqi@1 1639 }
aoqi@1 1640 #endif // ASSERT
aoqi@1 1641
aoqi@1 1642 // Conversion
aoqi@1 1643 // (Note: use pushl(ecx)/popl(ecx) for 1/2-word stack-ptr manipulation)
aoqi@1 1644 switch (bytecode()) {
aoqi@1 1645 case Bytecodes::_i2l:
aoqi@1 1646 __ sll(FSR, FSR, 0);
aoqi@1 1647 break;
aoqi@1 1648 case Bytecodes::_i2f:
aoqi@1 1649 __ mtc1(FSR, FSF);
aoqi@1 1650 __ cvt_s_w(FSF, FSF);
aoqi@1 1651 break;
aoqi@1 1652 case Bytecodes::_i2d:
aoqi@1 1653 __ mtc1(FSR, FSF);
aoqi@1 1654 __ cvt_d_w(FSF, FSF);
aoqi@1 1655 break;
aoqi@1 1656 case Bytecodes::_i2b:
fujie@256 1657 __ seb(FSR, FSR);
aoqi@1 1658 break;
aoqi@1 1659 case Bytecodes::_i2c:
aoqi@1 1660 __ andi(FSR, FSR, 0xFFFF); // truncate upper 56 bits
aoqi@1 1661 break;
aoqi@1 1662 case Bytecodes::_i2s:
fujie@256 1663 __ seh(FSR, FSR);
aoqi@1 1664 break;
aoqi@1 1665 case Bytecodes::_l2i:
fujie@257 1666 __ sll(FSR, FSR, 0);
aoqi@1 1667 break;
aoqi@1 1668 case Bytecodes::_l2f:
aoqi@1 1669 __ dmtc1(FSR, FSF);
aoqi@1 1670 __ cvt_s_l(FSF, FSF);
aoqi@1 1671 break;
aoqi@1 1672 case Bytecodes::_l2d:
aoqi@1 1673 __ dmtc1(FSR, FSF);
aoqi@1 1674 __ cvt_d_l(FSF, FSF);
aoqi@1 1675 break;
aoqi@1 1676 case Bytecodes::_f2i:
aoqi@6880 1677 {
aoqi@6880 1678 Label L;
aoqi@6880 1679
aoqi@6880 1680 __ trunc_w_s(F12, FSF);
aoqi@6880 1681 __ move(AT, 0x7fffffff);
aoqi@6880 1682 __ mfc1(FSR, F12);
aoqi@6880 1683 __ c_un_s(FSF, FSF); //NaN?
aoqi@6880 1684 __ movt(FSR, R0);
aoqi@6880 1685
aoqi@6880 1686 __ bne(AT, FSR, L);
aoqi@6880 1687 __ delayed()->lui(T9, 0x8000);
aoqi@6880 1688
aoqi@6880 1689 __ mfc1(AT, FSF);
aoqi@6880 1690 __ andr(AT, AT, T9);
aoqi@6880 1691
aoqi@6880 1692 __ movn(FSR, T9, AT);
aoqi@6880 1693
aoqi@6880 1694 __ bind(L);
aoqi@6880 1695 }
aoqi@1 1696 break;
aoqi@1 1697 case Bytecodes::_f2l:
aoqi@6880 1698 {
aoqi@6880 1699 Label L;
aoqi@6880 1700
aoqi@6880 1701 __ trunc_l_s(F12, FSF);
aoqi@6880 1702 __ daddiu(AT, R0, -1);
aoqi@6880 1703 __ dsrl(AT, AT, 1);
aoqi@6880 1704 __ dmfc1(FSR, F12);
aoqi@6880 1705 __ c_un_s(FSF, FSF); //NaN?
aoqi@6880 1706 __ movt(FSR, R0);
aoqi@6880 1707
aoqi@6880 1708 __ bne(AT, FSR, L);
aoqi@6880 1709 __ delayed()->lui(T9, 0x8000);
aoqi@6880 1710
aoqi@6880 1711 __ mfc1(AT, FSF);
aoqi@6880 1712 __ andr(AT, AT, T9);
aoqi@6880 1713
aoqi@6880 1714 __ dsll32(T9, T9, 0);
aoqi@6880 1715 __ movn(FSR, T9, AT);
aoqi@6880 1716
aoqi@6880 1717 __ bind(L);
aoqi@6880 1718 }
aoqi@1 1719 break;
aoqi@1 1720 case Bytecodes::_f2d:
aoqi@1 1721 __ cvt_d_s(FSF, FSF);
aoqi@1 1722 break;
aoqi@1 1723 case Bytecodes::_d2i:
aoqi@6880 1724 {
aoqi@6880 1725 Label L;
aoqi@6880 1726
aoqi@6880 1727 __ trunc_w_d(F12, FSF);
aoqi@6880 1728 __ move(AT, 0x7fffffff);
aoqi@6880 1729 __ mfc1(FSR, F12);
aoqi@6880 1730
aoqi@6880 1731 __ bne(FSR, AT, L);
aoqi@6880 1732 __ delayed()->mtc1(R0, F12);
aoqi@6880 1733
aoqi@6880 1734 __ cvt_d_w(F12, F12);
aoqi@6880 1735 __ c_ult_d(FSF, F12);
aoqi@6880 1736 __ bc1f(L);
aoqi@6880 1737 __ delayed()->addiu(T9, R0, -1);
aoqi@6880 1738
aoqi@6880 1739 __ c_un_d(FSF, FSF); //NaN?
aoqi@6880 1740 __ subu32(FSR, T9, AT);
aoqi@6880 1741 __ movt(FSR, R0);
aoqi@6880 1742
aoqi@6880 1743 __ bind(L);
aoqi@6880 1744 }
aoqi@1 1745 break;
aoqi@1 1746 case Bytecodes::_d2l:
aoqi@6880 1747 {
aoqi@6880 1748 Label L;
aoqi@6880 1749
aoqi@6880 1750 __ trunc_l_d(F12, FSF);
aoqi@6880 1751 __ daddiu(AT, R0, -1);
aoqi@6880 1752 __ dsrl(AT, AT, 1);
aoqi@6880 1753 __ dmfc1(FSR, F12);
aoqi@6880 1754
aoqi@6880 1755 __ bne(FSR, AT, L);
aoqi@6880 1756 __ delayed()->mtc1(R0, F12);
aoqi@6880 1757
aoqi@6880 1758 __ cvt_d_w(F12, F12);
aoqi@6880 1759 __ c_ult_d(FSF, F12);
aoqi@6880 1760 __ bc1f(L);
aoqi@6880 1761 __ delayed()->daddiu(T9, R0, -1);
aoqi@6880 1762
aoqi@6880 1763 __ c_un_d(FSF, FSF); //NaN?
aoqi@6880 1764 __ subu(FSR, T9, AT);
aoqi@6880 1765 __ movt(FSR, R0);
aoqi@6880 1766
aoqi@6880 1767 __ bind(L);
aoqi@6880 1768 }
aoqi@1 1769 break;
aoqi@1 1770 case Bytecodes::_d2f:
aoqi@1 1771 __ cvt_s_d(FSF, FSF);
aoqi@1 1772 break;
aoqi@1 1773 default :
aoqi@1 1774 ShouldNotReachHere();
aoqi@1 1775 }
aoqi@1 1776 }
aoqi@1 1777
aoqi@1 1778 void TemplateTable::lcmp() {
aoqi@1 1779 transition(ltos, itos);
aoqi@1 1780
aoqi@1 1781 Label low, high, done;
aoqi@1 1782 __ pop(T0);
aoqi@1 1783 __ pop(R0);
aoqi@1 1784 __ slt(AT, T0, FSR);
aoqi@1 1785 __ bne(AT, R0, low);
aoqi@1 1786 __ delayed()->nop();
aoqi@1 1787
aoqi@1 1788 __ bne(T0, FSR, high);
aoqi@1 1789 __ delayed()->nop();
aoqi@1 1790
aoqi@1 1791 __ li(FSR, (long)0);
aoqi@1 1792 __ b(done);
aoqi@1 1793 __ delayed()->nop();
aoqi@1 1794
aoqi@1 1795 __ bind(low);
aoqi@1 1796 __ li(FSR, (long)-1);
aoqi@1 1797 __ b(done);
aoqi@1 1798 __ delayed()->nop();
aoqi@1 1799
aoqi@1 1800 __ bind(high);
aoqi@1 1801 __ li(FSR, (long)1);
aoqi@1 1802 __ b(done);
aoqi@1 1803 __ delayed()->nop();
aoqi@1 1804
aoqi@1 1805 __ bind(done);
aoqi@1 1806 }
aoqi@1 1807
aoqi@1 1808 void TemplateTable::float_cmp(bool is_float, int unordered_result) {
aoqi@6880 1809 Label less, done;
aoqi@6880 1810
aoqi@6880 1811 __ move(FSR, R0);
aoqi@6880 1812
aoqi@6880 1813 if (is_float) {
aoqi@6880 1814 __ lwc1(FTF, at_sp());
aoqi@6880 1815 __ c_eq_s(FTF, FSF);
aoqi@6880 1816 __ bc1t(done);
aoqi@6880 1817 __ delayed()->daddi(SP, SP, 1 * wordSize);
aoqi@6880 1818
aoqi@6880 1819 if (unordered_result<0)
aoqi@6880 1820 __ c_ult_s(FTF, FSF);
aoqi@6880 1821 else
aoqi@6880 1822 __ c_olt_s(FTF, FSF);
aoqi@6880 1823 } else {
aoqi@6880 1824 __ ldc1(FTF, at_sp());
aoqi@6880 1825 __ c_eq_d(FTF, FSF);
aoqi@6880 1826 __ bc1t(done);
aoqi@6880 1827 __ delayed()->daddi(SP, SP, 2 * wordSize);
aoqi@6880 1828
aoqi@6880 1829 if (unordered_result<0)
aoqi@6880 1830 __ c_ult_d(FTF, FSF);
aoqi@6880 1831 else
aoqi@6880 1832 __ c_olt_d(FTF, FSF);
aoqi@6880 1833 }
aoqi@6880 1834 __ bc1t(less);
aoqi@6880 1835 __ delayed()->nop();
aoqi@6880 1836 __ move(FSR, 1);
aoqi@6880 1837 __ b(done);
aoqi@6880 1838 __ delayed()->nop();
aoqi@6880 1839 __ bind(less);
aoqi@6880 1840 __ move(FSR, -1);
aoqi@6880 1841 __ bind(done);
aoqi@1 1842 }
aoqi@1 1843
aoqi@1 1844
aoqi@1 1845 // used registers : T3, A7, Rnext
aoqi@1 1846 // FSR : return bci, this is defined by the vm specification
aoqi@1 1847 // T2 : MDO taken count
aoqi@1 1848 // T3 : method
aoqi@1 1849 // A7 : offset
aoqi@1 1850 // Rnext : next bytecode, this is required by dispatch_base
aoqi@1 1851 void TemplateTable::branch(bool is_jsr, bool is_wide) {
aoqi@1 1852 __ get_method(T3);
aoqi@6880 1853 __ profile_taken_branch(A7, T2); // only C2 meaningful
aoqi@1 1854
aoqi@1 1855 #ifndef CORE
aoqi@6880 1856 const ByteSize be_offset = MethodCounters::backedge_counter_offset() +
aoqi@6880 1857 InvocationCounter::counter_offset();
aoqi@6880 1858 const ByteSize inv_offset = MethodCounters::invocation_counter_offset() +
aoqi@6880 1859 InvocationCounter::counter_offset();
aoqi@1 1860 #endif // CORE
aoqi@1 1861
aoqi@1 1862 // Load up T4 with the branch displacement
aoqi@1 1863 if (!is_wide) {
aoqi@16 1864 __ get_2_byte_integer_at_bcp(A7, AT, 1);
aoqi@1 1865 __ hswap(A7);
aoqi@1 1866 } else {
aoqi@15 1867 __ get_4_byte_integer_at_bcp(A7, AT, 1);
aoqi@1 1868 __ swap(A7);
aoqi@1 1869 }
aoqi@1 1870
aoqi@1 1871 // Handle all the JSR stuff here, then exit.
aoqi@6880 1872 // It's much shorter and cleaner than intermingling with the non-JSR
aoqi@6880 1873 // normal-branch stuff occuring below.
aoqi@1 1874 if (is_jsr) {
aoqi@1 1875 // Pre-load the next target bytecode into Rnext
aoqi@1 1876 __ dadd(AT, BCP, A7);
aoqi@1 1877 __ lbu(Rnext, AT, 0);
aoqi@1 1878
aoqi@1 1879 // compute return address as bci in FSR
aoqi@1 1880 __ daddi(FSR, BCP, (is_wide?5:3) - in_bytes(ConstMethod::codes_offset()));
aoqi@1 1881 __ ld(AT, T3, in_bytes(Method::const_offset()));
aoqi@1 1882 __ dsub(FSR, FSR, AT);
aoqi@1 1883 // Adjust the bcp in BCP by the displacement in A7
aoqi@1 1884 __ dadd(BCP, BCP, A7);
aoqi@1 1885 // jsr returns atos that is not an oop
aoqi@1 1886 // Push return address
aoqi@1 1887 __ push_i(FSR);
aoqi@1 1888 // jsr returns vtos
aoqi@1 1889 __ dispatch_only_noverify(vtos);
aoqi@1 1890
aoqi@1 1891 return;
aoqi@1 1892 }
aoqi@1 1893
aoqi@1 1894 // Normal (non-jsr) branch handling
aoqi@1 1895
aoqi@1 1896 // Adjust the bcp in S0 by the displacement in T4
aoqi@1 1897 __ dadd(BCP, BCP, A7);
aoqi@1 1898
aoqi@1 1899 #ifdef CORE
aoqi@1 1900 // Pre-load the next target bytecode into EBX
aoqi@1 1901 __ lbu(Rnext, BCP, 0);
aoqi@1 1902 // continue with the bytecode @ target
aoqi@1 1903 __ dispatch_only(vtos);
aoqi@1 1904 #else
aoqi@1 1905 assert(UseLoopCounter || !UseOnStackReplacement, "on-stack-replacement requires loop counters");
aoqi@1 1906 Label backedge_counter_overflow;
aoqi@1 1907 Label profile_method;
aoqi@1 1908 Label dispatch;
aoqi@1 1909 if (UseLoopCounter) {
aoqi@1 1910 // increment backedge counter for backward branches
aoqi@1 1911 // eax: MDO
aoqi@1 1912 // ebx: MDO bumped taken-count
aoqi@1 1913 // T3: method
aoqi@1 1914 // T4: target offset
aoqi@1 1915 // BCP: target bcp
aoqi@1 1916 // LVP: locals pointer
aoqi@6880 1917 __ bgtz(A7, dispatch); // check if forward or backward branch
aoqi@1 1918 __ delayed()->nop();
aoqi@1 1919
aoqi@1 1920 // check if MethodCounters exists
aoqi@1 1921 Label has_counters;
aoqi@6880 1922 __ ld(AT, T3, in_bytes(Method::method_counters_offset())); // use AT as MDO, TEMP
aoqi@1 1923 __ bne(AT, R0, has_counters);
aoqi@1 1924 __ nop();
aoqi@418 1925 __ push(T3);
aoqi@1 1926 //__ push(A7);
aoqi@1 1927 __ call_VM(noreg, CAST_FROM_FN_PTR(address, InterpreterRuntime::build_method_counters),
aoqi@1 1928 T3);
aoqi@1 1929 //__ pop(A7);
aoqi@418 1930 __ pop(T3);
aoqi@1 1931 __ ld(AT, T3, in_bytes(Method::method_counters_offset())); // use AT as MDO, TEMP
aoqi@1 1932 __ beq(AT, R0, dispatch);
aoqi@1 1933 __ nop();
aoqi@1 1934 __ bind(has_counters);
aoqi@1 1935
aoqi@6880 1936 // increment back edge counter
aoqi@1 1937 __ ld(T1, T3, in_bytes(Method::method_counters_offset()));
aoqi@1 1938 __ lw(T0, T1, in_bytes(be_offset));
aoqi@1 1939 __ increment(T0, InvocationCounter::count_increment);
aoqi@1 1940 __ sw(T0, T1, in_bytes(be_offset));
aoqi@1 1941
aoqi@1 1942 // load invocation counter
aoqi@1 1943 __ lw(T1, T1, in_bytes(inv_offset));
aoqi@1 1944 // buffer bit added, mask no needed
aoqi@1 1945
aoqi@1 1946 // dadd backedge counter & invocation counter
aoqi@1 1947 __ dadd(T1, T1, T0);
aoqi@1 1948
aoqi@1 1949 if (ProfileInterpreter) {
aoqi@1 1950 // Test to see if we should create a method data oop
aoqi@1 1951 //__ lui(AT, Assembler::split_high(int(&InvocationCounter::InterpreterProfileLimit)));
aoqi@1 1952 //__ lw(AT, AT, Assembler::split_low(int(&InvocationCounter::InterpreterProfileLimit)));
aoqi@1 1953 // T1 : backedge counter & invocation counter
aoqi@1 1954 __ li(AT, (long)&InvocationCounter::InterpreterProfileLimit);
aoqi@1 1955 __ lw(AT, AT, 0);
aoqi@1 1956 __ slt(AT, T1, AT);
aoqi@1 1957 __ bne(AT, R0, dispatch);
aoqi@1 1958 __ delayed()->nop();
aoqi@1 1959
aoqi@1 1960 // if no method data exists, go to profile method
aoqi@1 1961 __ test_method_data_pointer(T1, profile_method);
aoqi@1 1962
aoqi@1 1963 if (UseOnStackReplacement) {
aoqi@6880 1964 // check for overflow against ebx which is the MDO taken count
aoqi@6880 1965 __ li(AT, (long)&InvocationCounter::InterpreterBackwardBranchLimit);
aoqi@6880 1966 __ lw(AT, AT, 0);
aoqi@6880 1967 // the value Rnext Is get from the beginning profile_taken_branch
aoqi@6880 1968 __ slt(AT, T2, AT);
aoqi@6880 1969 __ bne(AT, R0, dispatch);
aoqi@6880 1970 __ delayed()->nop();
aoqi@6880 1971
aoqi@6880 1972 // When ProfileInterpreter is on, the backedge_count comes
aoqi@6880 1973 // from the methodDataOop, which value does not get reset on
aoqi@6880 1974 // the call to frequency_counter_overflow().
aoqi@6880 1975 // To avoid excessive calls to the overflow routine while
aoqi@6880 1976 // the method is being compiled, dadd a second test to make
aoqi@6880 1977 // sure the overflow function is called only once every
aoqi@6880 1978 // overflow_frequency.
aoqi@6880 1979 const int overflow_frequency = 1024;
aoqi@6880 1980 __ andi(AT, T2, overflow_frequency-1);
aoqi@6880 1981 __ beq(AT, R0, backedge_counter_overflow);
aoqi@6880 1982 __ delayed()->nop();
aoqi@1 1983 }
aoqi@1 1984 } else {
aoqi@1 1985 if (UseOnStackReplacement) {
aoqi@6880 1986 // check for overflow against eax, which is the sum of the counters
aoqi@6880 1987 __ li(AT, (long)&InvocationCounter::InterpreterBackwardBranchLimit);
aoqi@6880 1988 __ lw(AT, AT, 0);
aoqi@6880 1989 __ slt(AT, T1, AT);
aoqi@6880 1990 __ beq(AT, R0, backedge_counter_overflow);
aoqi@6880 1991 __ delayed()->nop();
aoqi@1 1992 }
aoqi@1 1993 }
aoqi@1 1994 __ bind(dispatch);
aoqi@1 1995 }
aoqi@1 1996
aoqi@1 1997 // Pre-load the next target bytecode into Rnext
aoqi@1 1998 __ lbu(Rnext, BCP, 0);
aoqi@1 1999
aoqi@1 2000 // continue with the bytecode @ target
aoqi@1 2001 // FSR: return bci for jsr's, unused otherwise
aoqi@1 2002 // Rnext: target bytecode
aoqi@1 2003 // BCP: target bcp
aoqi@1 2004 __ dispatch_only(vtos);
aoqi@1 2005
aoqi@1 2006 if (UseLoopCounter) {
aoqi@1 2007 if (ProfileInterpreter) {
aoqi@1 2008 // Out-of-line code to allocate method data oop.
aoqi@1 2009 __ bind(profile_method);
aoqi@1 2010 __ call_VM(NOREG, CAST_FROM_FN_PTR(address, InterpreterRuntime::profile_method));
aoqi@1 2011 __ lbu(Rnext, BCP, 0);
aoqi@1 2012 __ set_method_data_pointer_for_bcp();
aoqi@1 2013 __ b(dispatch);
aoqi@1 2014 __ delayed()->nop();
aoqi@1 2015 }
aoqi@1 2016
aoqi@1 2017 if (UseOnStackReplacement) {
aoqi@1 2018 // invocation counter overflow
aoqi@1 2019 __ bind(backedge_counter_overflow);
aoqi@6880 2020 __ sub(A7, BCP, A7); // branch bcp
aoqi@6880 2021 call_VM(NOREG, CAST_FROM_FN_PTR(address,
aoqi@6880 2022 InterpreterRuntime::frequency_counter_overflow), A7);
aoqi@1 2023 __ lbu(Rnext, BCP, 0);
aoqi@1 2024
aoqi@1 2025 // V0: osr nmethod (osr ok) or NULL (osr not possible)
aoqi@1 2026 // V1: osr adapter frame return address
aoqi@1 2027 // Rnext: target bytecode
aoqi@1 2028 // LVP: locals pointer
aoqi@1 2029 // BCP: bcp
aoqi@1 2030 __ beq(V0, R0, dispatch);
aoqi@1 2031 __ delayed()->nop();
aoqi@1 2032 // nmethod may have been invalidated (VM may block upon call_VM return)
aoqi@1 2033 __ lw(T3, V0, nmethod::entry_bci_offset());
aoqi@1 2034 __ move(AT, InvalidOSREntryBci);
aoqi@1 2035 __ beq(AT, T3, dispatch);
aoqi@1 2036 __ delayed()->nop();
aoqi@1 2037 // We need to prepare to execute the OSR method. First we must
aoqi@1 2038 // migrate the locals and monitors off of the stack.
aoqi@1 2039 //eax V0: osr nmethod (osr ok) or NULL (osr not possible)
aoqi@1 2040 //ebx V1: osr adapter frame return address
aoqi@1 2041 //edx Rnext: target bytecode
aoqi@1 2042 //edi LVP: locals pointer
aoqi@1 2043 //esi BCP: bcp
aoqi@6880 2044 __ move(BCP, V0);
aoqi@1 2045 // const Register thread = ecx;
aoqi@1 2046 const Register thread = TREG;
aoqi@1 2047 #ifndef OPT_THREAD
aoqi@1 2048 __ get_thread(thread);
aoqi@1 2049 #endif
aoqi@6880 2050 call_VM(noreg, CAST_FROM_FN_PTR(address,
aoqi@6880 2051 SharedRuntime::OSR_migration_begin));
aoqi@1 2052 // eax is OSR buffer, move it to expected parameter location
aoqi@6880 2053 //refer to osrBufferPointer in c1_LIRAssembler_mips.cpp
aoqi@1 2054 __ move(T0, V0);
aoqi@1 2055
aoqi@1 2056 // pop the interpreter frame
aoqi@6880 2057 __ ld(A7, Address(FP, frame::interpreter_frame_sender_sp_offset * wordSize));
aoqi@6880 2058 //FIXME, shall we keep the return address on the stack?
aoqi@1 2059 __ leave(); // remove frame anchor
aoqi@6880 2060 __ move(LVP, RA);
aoqi@1 2061 __ move(SP, A7);
aoqi@1 2062
aoqi@6880 2063 __ move(AT, -(StackAlignmentInBytes));
aoqi@6880 2064 __ andr(SP , SP , AT);
aoqi@6880 2065
aoqi@6880 2066 // push the (possibly adjusted) return address
aoqi@6880 2067 //refer to osr_entry in c1_LIRAssembler_mips.cpp
aoqi@6880 2068 __ ld(AT, BCP, nmethod::osr_entry_point_offset());
aoqi@6880 2069 __ jr(AT);
aoqi@1 2070 __ delayed()->nop();
aoqi@1 2071 }
aoqi@1 2072 }
aoqi@1 2073 #endif // not CORE
aoqi@1 2074 }
aoqi@1 2075
aoqi@6880 2076
aoqi@1 2077 void TemplateTable::if_0cmp(Condition cc) {
aoqi@1 2078 transition(itos, vtos);
aoqi@1 2079 // assume branch is more often taken than not (loops use backward branches)
aoqi@1 2080 Label not_taken;
aoqi@1 2081 switch(cc) {
aoqi@1 2082 case not_equal:
aoqi@1 2083 __ beq(FSR, R0, not_taken);
aoqi@1 2084 break;
aoqi@1 2085 case equal:
aoqi@1 2086 __ bne(FSR, R0, not_taken);
aoqi@1 2087 break;
aoqi@1 2088 case less:
aoqi@1 2089 __ bgez(FSR, not_taken);
aoqi@1 2090 break;
aoqi@1 2091 case less_equal:
aoqi@1 2092 __ bgtz(FSR, not_taken);
aoqi@1 2093 break;
aoqi@1 2094 case greater:
aoqi@1 2095 __ blez(FSR, not_taken);
aoqi@1 2096 break;
aoqi@1 2097 case greater_equal:
aoqi@1 2098 __ bltz(FSR, not_taken);
aoqi@1 2099 break;
aoqi@1 2100 }
aoqi@1 2101 __ delayed()->nop();
aoqi@1 2102
aoqi@1 2103 branch(false, false);
aoqi@1 2104
aoqi@1 2105 __ bind(not_taken);
aoqi@1 2106 __ profile_not_taken_branch(FSR);
aoqi@1 2107 }
aoqi@1 2108
aoqi@1 2109 void TemplateTable::if_icmp(Condition cc) {
aoqi@1 2110 transition(itos, vtos);
aoqi@1 2111 // assume branch is more often taken than not (loops use backward branches)
aoqi@1 2112 Label not_taken;
aoqi@1 2113
aoqi@6880 2114 __ pop_i(SSR);
aoqi@1 2115 switch(cc) {
aoqi@1 2116 case not_equal:
aoqi@1 2117 __ beq(SSR, FSR, not_taken);
aoqi@1 2118 break;
aoqi@1 2119 case equal:
aoqi@1 2120 __ bne(SSR, FSR, not_taken);
aoqi@1 2121 break;
aoqi@1 2122 case less:
aoqi@1 2123 __ slt(AT, SSR, FSR);
aoqi@1 2124 __ beq(AT, R0, not_taken);
aoqi@1 2125 break;
aoqi@1 2126 case less_equal:
aoqi@1 2127 __ slt(AT, FSR, SSR);
aoqi@1 2128 __ bne(AT, R0, not_taken);
aoqi@1 2129 break;
aoqi@1 2130 case greater:
aoqi@1 2131 __ slt(AT, FSR, SSR);
aoqi@1 2132 __ beq(AT, R0, not_taken);
aoqi@1 2133 break;
aoqi@1 2134 case greater_equal:
aoqi@1 2135 __ slt(AT, SSR, FSR);
aoqi@1 2136 __ bne(AT, R0, not_taken);
aoqi@1 2137 break;
aoqi@1 2138 }
aoqi@1 2139 __ delayed()->nop();
aoqi@1 2140
aoqi@1 2141 branch(false, false);
aoqi@1 2142 __ bind(not_taken);
aoqi@1 2143 __ profile_not_taken_branch(FSR);
aoqi@1 2144 }
aoqi@1 2145
aoqi@1 2146 void TemplateTable::if_nullcmp(Condition cc) {
aoqi@1 2147 transition(atos, vtos);
aoqi@1 2148 // assume branch is more often taken than not (loops use backward branches)
aoqi@1 2149 Label not_taken;
aoqi@1 2150 switch(cc) {
aoqi@1 2151 case not_equal:
aoqi@1 2152 __ beq(FSR, R0, not_taken);
aoqi@1 2153 break;
aoqi@1 2154 case equal:
aoqi@1 2155 __ bne(FSR, R0, not_taken);
aoqi@1 2156 break;
aoqi@1 2157 default:
aoqi@1 2158 ShouldNotReachHere();
aoqi@1 2159 }
aoqi@1 2160 __ delayed()->nop();
aoqi@1 2161
aoqi@1 2162 branch(false, false);
aoqi@1 2163 __ bind(not_taken);
aoqi@1 2164 __ profile_not_taken_branch(FSR);
aoqi@1 2165 }
aoqi@1 2166
aoqi@1 2167
aoqi@1 2168 void TemplateTable::if_acmp(Condition cc) {
aoqi@6880 2169 transition(atos, vtos);
aoqi@6880 2170 // assume branch is more often taken than not (loops use backward branches)
aoqi@6880 2171 Label not_taken;
aoqi@6880 2172 // __ lw(SSR, SP, 0);
aoqi@6880 2173 __ pop_ptr(SSR);
aoqi@6880 2174 switch(cc) {
aoqi@6880 2175 case not_equal:
aoqi@6880 2176 __ beq(SSR, FSR, not_taken);
aoqi@6880 2177 break;
aoqi@6880 2178 case equal:
aoqi@6880 2179 __ bne(SSR, FSR, not_taken);
aoqi@6880 2180 break;
aoqi@6880 2181 default:
aoqi@6880 2182 ShouldNotReachHere();
aoqi@6880 2183 }
aoqi@6880 2184 __ delayed()->nop();
aoqi@6880 2185
aoqi@6880 2186 branch(false, false);
aoqi@6880 2187
aoqi@6880 2188 __ bind(not_taken);
aoqi@6880 2189 __ profile_not_taken_branch(FSR);
aoqi@1 2190 }
aoqi@1 2191
aoqi@1 2192 // used registers : T1, T2, T3
aoqi@1 2193 // T1 : method
aoqi@1 2194 // T2 : returb bci
aoqi@1 2195 void TemplateTable::ret() {
aoqi@6880 2196 transition(vtos, vtos);
aoqi@6880 2197
aoqi@6880 2198 locals_index(T2);
aoqi@6880 2199 __ ld(T2, T2, 0);
aoqi@6880 2200 __ profile_ret(T2, T3);
aoqi@6880 2201
aoqi@6880 2202 __ get_method(T1);
aoqi@6880 2203 __ ld(BCP, T1, in_bytes(Method::const_offset()));
aoqi@6880 2204 __ dadd(BCP, BCP, T2);
aoqi@6880 2205 __ daddi(BCP, BCP, in_bytes(ConstMethod::codes_offset()));
aoqi@6880 2206
aoqi@6880 2207 __ dispatch_next(vtos);
aoqi@1 2208 }
aoqi@1 2209
aoqi@1 2210 // used registers : T1, T2, T3
aoqi@1 2211 // T1 : method
aoqi@1 2212 // T2 : returb bci
aoqi@1 2213 void TemplateTable::wide_ret() {
aoqi@6880 2214 transition(vtos, vtos);
aoqi@6880 2215
aoqi@6880 2216 locals_index_wide(T2);
aoqi@6880 2217 __ ld(T2, T2, 0); // get return bci, compute return bcp
aoqi@6880 2218 __ profile_ret(T2, T3);
aoqi@6880 2219
aoqi@6880 2220 __ get_method(T1);
aoqi@6880 2221 __ ld(BCP, T1, in_bytes(Method::const_offset()));
aoqi@6880 2222 __ dadd(BCP, BCP, T2);
aoqi@6880 2223 __ daddi(BCP, BCP, in_bytes(ConstMethod::codes_offset()));
aoqi@6880 2224
aoqi@6880 2225 __ dispatch_next(vtos);
aoqi@1 2226 }
aoqi@1 2227
aoqi@1 2228 // used register T2, T3, A7, Rnext
aoqi@1 2229 // T2 : bytecode pointer
aoqi@1 2230 // T3 : low
aoqi@1 2231 // A7 : high
aoqi@1 2232 // Rnext : dest bytecode, required by dispatch_base
aoqi@1 2233 void TemplateTable::tableswitch() {
aoqi@6880 2234 Label default_case, continue_execution;
aoqi@6880 2235 transition(itos, vtos);
aoqi@6880 2236
aoqi@6880 2237 // align BCP
aoqi@6880 2238 __ daddi(T2, BCP, BytesPerInt);
aoqi@6880 2239 __ li(AT, -BytesPerInt);
aoqi@6880 2240 __ andr(T2, T2, AT);
aoqi@6880 2241
aoqi@6880 2242 // load lo & hi
aoqi@6880 2243 __ lw(T3, T2, 1 * BytesPerInt);
aoqi@6880 2244 __ swap(T3);
aoqi@6880 2245 __ lw(A7, T2, 2 * BytesPerInt);
aoqi@6880 2246 __ swap(A7);
aoqi@6880 2247
aoqi@6880 2248 // check against lo & hi
aoqi@6880 2249 __ slt(AT, FSR, T3);
aoqi@6880 2250 __ bne(AT, R0, default_case);
aoqi@6880 2251 __ delayed()->nop();
aoqi@6880 2252
aoqi@6880 2253 __ slt(AT, A7, FSR);
aoqi@6880 2254 __ bne(AT, R0, default_case);
aoqi@6880 2255 __ delayed()->nop();
aoqi@6880 2256
aoqi@6880 2257 // lookup dispatch offset, in A7 big endian
aoqi@6880 2258 __ dsub(FSR, FSR, T3);
aoqi@6880 2259 __ dsll(AT, FSR, Address::times_4);
aoqi@6880 2260 __ dadd(AT, T2, AT);
aoqi@6880 2261 __ lw(A7, AT, 3 * BytesPerInt);
aoqi@6880 2262 __ profile_switch_case(FSR, T9, T3);
aoqi@6880 2263
aoqi@6880 2264 __ bind(continue_execution);
aoqi@6880 2265 __ swap(A7);
aoqi@6880 2266 __ dadd(BCP, BCP, A7);
aoqi@6880 2267 __ lbu(Rnext, BCP, 0);
aoqi@6880 2268 __ dispatch_only(vtos);
aoqi@6880 2269
aoqi@6880 2270 // handle default
aoqi@6880 2271 __ bind(default_case);
aoqi@6880 2272 __ profile_switch_default(FSR);
aoqi@6880 2273 __ lw(A7, T2, 0);
aoqi@6880 2274 __ b(continue_execution);
aoqi@6880 2275 __ delayed()->nop();
aoqi@1 2276 }
aoqi@1 2277
aoqi@1 2278 void TemplateTable::lookupswitch() {
aoqi@6880 2279 transition(itos, itos);
aoqi@6880 2280 __ stop("lookupswitch bytecode should have been rewritten");
aoqi@1 2281 }
aoqi@1 2282
aoqi@1 2283 // used registers : T2, T3, A7, Rnext
aoqi@1 2284 // T2 : bytecode pointer
aoqi@1 2285 // T3 : pair index
aoqi@1 2286 // A7 : offset
aoqi@1 2287 // Rnext : dest bytecode
aoqi@1 2288 // the data after the opcode is the same as lookupswitch
aoqi@1 2289 // see Rewriter::rewrite_method for more information
aoqi@1 2290 void TemplateTable::fast_linearswitch() {
aoqi@1 2291 transition(itos, vtos);
aoqi@6880 2292 Label loop_entry, loop, found, continue_execution;
aoqi@1 2293
aoqi@1 2294 // swap eax so we can avoid swapping the table entries
aoqi@1 2295 __ swap(FSR);
aoqi@1 2296
aoqi@1 2297 // align BCP
aoqi@1 2298 __ daddi(T2, BCP, BytesPerInt);
aoqi@1 2299 __ li(AT, -BytesPerInt);
aoqi@1 2300 __ andr(T2, T2, AT);
aoqi@1 2301
aoqi@1 2302 // set counter
aoqi@1 2303 __ lw(T3, T2, BytesPerInt);
aoqi@1 2304 __ swap(T3);
aoqi@1 2305 __ b(loop_entry);
aoqi@1 2306 __ delayed()->nop();
aoqi@1 2307
aoqi@1 2308 // table search
aoqi@1 2309 __ bind(loop);
aoqi@1 2310 // get the entry value
aoqi@1 2311 __ dsll(AT, T3, Address::times_8);
aoqi@1 2312 __ dadd(AT, T2, AT);
aoqi@1 2313 __ lw(AT, AT, 2 * BytesPerInt);
aoqi@1 2314
aoqi@1 2315 // found?
aoqi@1 2316 __ beq(FSR, AT, found);
aoqi@1 2317 __ delayed()->nop();
aoqi@1 2318
aoqi@1 2319 __ bind(loop_entry);
aoqi@1 2320 __ bgtz(T3, loop);
aoqi@1 2321 __ delayed()->daddiu(T3, T3, -1);
aoqi@1 2322
aoqi@1 2323 // default case
aoqi@1 2324 __ profile_switch_default(FSR);
aoqi@1 2325 __ lw(A7, T2, 0);
aoqi@1 2326 __ b(continue_execution);
aoqi@1 2327 __ delayed()->nop();
aoqi@1 2328
aoqi@1 2329 // entry found -> get offset
aoqi@1 2330 __ bind(found);
aoqi@1 2331 __ dsll(AT, T3, Address::times_8);
aoqi@1 2332 __ dadd(AT, T2, AT);
aoqi@1 2333 __ lw(A7, AT, 3 * BytesPerInt);
aoqi@1 2334 __ profile_switch_case(T3, FSR, T2);
aoqi@1 2335
aoqi@1 2336 // continue execution
aoqi@6880 2337 __ bind(continue_execution);
aoqi@1 2338 __ swap(A7);
aoqi@1 2339 __ dadd(BCP, BCP, A7);
aoqi@1 2340 __ lbu(Rnext, BCP, 0);
aoqi@1 2341 __ dispatch_only(vtos);
aoqi@1 2342 }
aoqi@1 2343
aoqi@1 2344 // used registers : T0, T1, T2, T3, A7, Rnext
aoqi@1 2345 // T2 : pairs address(array)
aoqi@1 2346 // Rnext : dest bytecode
aoqi@1 2347 // the data after the opcode is the same as lookupswitch
aoqi@1 2348 // see Rewriter::rewrite_method for more information
aoqi@1 2349 void TemplateTable::fast_binaryswitch() {
aoqi@1 2350 transition(itos, vtos);
aoqi@1 2351 // Implementation using the following core algorithm:
aoqi@1 2352 //
aoqi@1 2353 // int binary_search(int key, LookupswitchPair* array, int n) {
aoqi@1 2354 // // Binary search according to "Methodik des Programmierens" by
aoqi@1 2355 // // Edsger W. Dijkstra and W.H.J. Feijen, Addison Wesley Germany 1985.
aoqi@1 2356 // int i = 0;
aoqi@1 2357 // int j = n;
aoqi@1 2358 // while (i+1 < j) {
aoqi@1 2359 // // invariant P: 0 <= i < j <= n and (a[i] <= key < a[j] or Q)
aoqi@1 2360 // // with Q: for all i: 0 <= i < n: key < a[i]
aoqi@1 2361 // // where a stands for the array and assuming that the (inexisting)
aoqi@1 2362 // // element a[n] is infinitely big.
aoqi@1 2363 // int h = (i + j) >> 1;
aoqi@1 2364 // // i < h < j
aoqi@1 2365 // if (key < array[h].fast_match()) {
aoqi@1 2366 // j = h;
aoqi@1 2367 // } else {
aoqi@1 2368 // i = h;
aoqi@1 2369 // }
aoqi@1 2370 // }
aoqi@1 2371 // // R: a[i] <= key < a[i+1] or Q
aoqi@1 2372 // // (i.e., if key is within array, i is the correct index)
aoqi@1 2373 // return i;
aoqi@1 2374 // }
aoqi@1 2375
aoqi@1 2376 // register allocation
aoqi@1 2377 const Register array = T2;
aoqi@1 2378 const Register i = T3, j = A7;
aoqi@1 2379 const Register h = T1;
aoqi@1 2380 const Register temp = T0;
aoqi@1 2381 const Register key = FSR;
aoqi@1 2382
aoqi@1 2383 // setup array
aoqi@1 2384 __ daddi(array, BCP, 3*BytesPerInt);
aoqi@1 2385 __ li(AT, -BytesPerInt);
aoqi@1 2386 __ andr(array, array, AT);
aoqi@1 2387
aoqi@1 2388 // initialize i & j
aoqi@1 2389 __ move(i, R0);
aoqi@1 2390 __ lw(j, array, - 1 * BytesPerInt);
aoqi@6880 2391 // Convert j into native byteordering
aoqi@1 2392 __ swap(j);
aoqi@1 2393
aoqi@1 2394 // and start
aoqi@1 2395 Label entry;
aoqi@1 2396 __ b(entry);
aoqi@1 2397 __ delayed()->nop();
aoqi@1 2398
aoqi@1 2399 // binary search loop
aoqi@6880 2400 {
aoqi@1 2401 Label loop;
aoqi@1 2402 __ bind(loop);
aoqi@1 2403 // int h = (i + j) >> 1;
aoqi@1 2404 __ dadd(h, i, j);
aoqi@1 2405 __ dsrl(h, h, 1);
aoqi@1 2406 // if (key < array[h].fast_match()) {
aoqi@1 2407 // j = h;
aoqi@1 2408 // } else {
aoqi@1 2409 // i = h;
aoqi@1 2410 // }
aoqi@1 2411 // Convert array[h].match to native byte-ordering before compare
aoqi@1 2412 __ dsll(AT, h, Address::times_8);
aoqi@1 2413 __ dadd(AT, array, AT);
aoqi@1 2414 __ lw(temp, AT, 0 * BytesPerInt);
aoqi@1 2415 __ swap(temp);
aoqi@1 2416
aoqi@1 2417 {
aoqi@1 2418 Label set_i, end_of_if;
aoqi@1 2419 __ slt(AT, key, temp);
aoqi@1 2420 __ beq(AT, R0, set_i);
aoqi@6880 2421 __ delayed()->nop();
aoqi@1 2422
aoqi@1 2423 __ b(end_of_if);
aoqi@1 2424 __ delayed(); __ move(j, h);
aoqi@1 2425
aoqi@1 2426 __ bind(set_i);
aoqi@1 2427 __ move(i, h);
aoqi@1 2428
aoqi@1 2429 __ bind(end_of_if);
aoqi@1 2430 }
aoqi@1 2431 // while (i+1 < j)
aoqi@1 2432 __ bind(entry);
aoqi@1 2433 __ daddi(h, i, 1);
aoqi@1 2434 __ slt(AT, h, j);
aoqi@1 2435 __ bne(AT, R0, loop);
aoqi@1 2436 __ delayed()->nop();
aoqi@1 2437 }
aoqi@1 2438
aoqi@1 2439 // end of binary search, result index is i (must check again!)
aoqi@1 2440 Label default_case;
aoqi@1 2441 // Convert array[i].match to native byte-ordering before compare
aoqi@1 2442 __ dsll(AT, i, Address::times_8);
aoqi@1 2443 __ dadd(AT, array, AT);
aoqi@1 2444 __ lw(temp, AT, 0 * BytesPerInt);
aoqi@1 2445 __ swap(temp);
aoqi@1 2446 __ bne(key, temp, default_case);
aoqi@1 2447 __ delayed()->nop();
aoqi@1 2448
aoqi@1 2449 // entry found -> j = offset
aoqi@1 2450 __ dsll(AT, i, Address::times_8);
aoqi@1 2451 __ dadd(AT, array, AT);
aoqi@1 2452 __ lw(j, AT, 1 * BytesPerInt);
aoqi@1 2453 __ profile_switch_case(i, key, array);
aoqi@1 2454 __ swap(j);
aoqi@1 2455
aoqi@1 2456 __ dadd(BCP, BCP, j);
aoqi@1 2457 __ lbu(Rnext, BCP, 0);
aoqi@1 2458 __ dispatch_only(vtos);
aoqi@1 2459
aoqi@1 2460 // default case -> j = default offset
aoqi@1 2461 __ bind(default_case);
aoqi@1 2462 __ profile_switch_default(i);
aoqi@1 2463 __ lw(j, array, - 2 * BytesPerInt);
aoqi@1 2464 __ swap(j);
aoqi@1 2465 __ dadd(BCP, BCP, j);
aoqi@1 2466 __ lbu(Rnext, BCP, 0);
aoqi@1 2467 __ dispatch_only(vtos);
aoqi@1 2468 }
aoqi@1 2469
aoqi@1 2470 void TemplateTable::_return(TosState state) {
aoqi@1 2471 transition(state, state);
aoqi@6880 2472 assert(_desc->calls_vm(),
aoqi@6880 2473 "inconsistent calls_vm information"); // call in remove_activation
aoqi@6880 2474
aoqi@1 2475 if (_desc->bytecode() == Bytecodes::_return_register_finalizer) {
aoqi@1 2476 assert(state == vtos, "only valid state");
aoqi@1 2477 __ ld(T1, aaddress(0));
aoqi@1 2478 __ load_klass(LVP, T1);
aoqi@1 2479 __ lw(LVP, LVP, in_bytes(Klass::access_flags_offset()));
aoqi@6880 2480 __ move(AT, JVM_ACC_HAS_FINALIZER);
aoqi@1 2481 __ andr(AT, AT, LVP);//by_css
aoqi@1 2482 Label skip_register_finalizer;
aoqi@1 2483 __ beq(AT, R0, skip_register_finalizer);
aoqi@6880 2484 __ delayed()->nop();
aoqi@6880 2485 __ call_VM(noreg, CAST_FROM_FN_PTR(address,
aoqi@6880 2486 InterpreterRuntime::register_finalizer), T1);
aoqi@1 2487 __ bind(skip_register_finalizer);
aoqi@1 2488 }
aoqi@1 2489 __ remove_activation(state, T9);
fujie@32 2490 __ sync();
aoqi@1 2491
aoqi@1 2492 __ jr(T9);
aoqi@1 2493 __ delayed()->nop();
aoqi@1 2494 }
aoqi@1 2495
aoqi@1 2496 // ----------------------------------------------------------------------------
aoqi@1 2497 // Volatile variables demand their effects be made known to all CPU's
aoqi@1 2498 // in order. Store buffers on most chips allow reads & writes to
aoqi@1 2499 // reorder; the JMM's ReadAfterWrite.java test fails in -Xint mode
aoqi@1 2500 // without some kind of memory barrier (i.e., it's not sufficient that
aoqi@1 2501 // the interpreter does not reorder volatile references, the hardware
aoqi@1 2502 // also must not reorder them).
aoqi@1 2503 //
aoqi@1 2504 // According to the new Java Memory Model (JMM):
aoqi@1 2505 // (1) All volatiles are serialized wrt to each other. ALSO reads &
aoqi@1 2506 // writes act as aquire & release, so:
aoqi@1 2507 // (2) A read cannot let unrelated NON-volatile memory refs that
aoqi@1 2508 // happen after the read float up to before the read. It's OK for
aoqi@1 2509 // non-volatile memory refs that happen before the volatile read to
aoqi@1 2510 // float down below it.
aoqi@1 2511 // (3) Similar a volatile write cannot let unrelated NON-volatile
aoqi@1 2512 // memory refs that happen BEFORE the write float down to after the
aoqi@1 2513 // write. It's OK for non-volatile memory refs that happen after the
aoqi@1 2514 // volatile write to float up before it.
aoqi@1 2515 //
aoqi@1 2516 // We only put in barriers around volatile refs (they are expensive),
aoqi@1 2517 // not _between_ memory refs (that would require us to track the
aoqi@1 2518 // flavor of the previous memory refs). Requirements (2) and (3)
aoqi@1 2519 // require some barriers before volatile stores and after volatile
aoqi@1 2520 // loads. These nearly cover requirement (1) but miss the
aoqi@1 2521 // volatile-store-volatile-load case. This final case is placed after
aoqi@1 2522 // volatile-stores although it could just as well go before
aoqi@1 2523 // volatile-loads.
aoqi@1 2524 //void TemplateTable::volatile_barrier(Assembler::Membar_mask_bits
aoqi@1 2525 // order_constraint) {
aoqi@1 2526 void TemplateTable::volatile_barrier( ) {
aoqi@1 2527 // Helper function to insert a is-volatile test and memory barrier
aoqi@1 2528 //if (os::is_MP()) { // Not needed on single CPU
aoqi@1 2529 // __ membar(order_constraint);
aoqi@1 2530 //}
aoqi@6880 2531 if( !os::is_MP() ) return; // Not needed on single CPU
aoqi@6880 2532 __ sync();
aoqi@1 2533 }
aoqi@1 2534
aoqi@1 2535 // we dont shift left 2 bits in get_cache_and_index_at_bcp
aoqi@6880 2536 // for we always need shift the index we use it. the ConstantPoolCacheEntry
aoqi@6880 2537 // is 16-byte long, index is the index in
aoqi@6880 2538 // ConstantPoolCache, so cache + base_offset() + index * 16 is
aoqi@1 2539 // the corresponding ConstantPoolCacheEntry
aoqi@1 2540 // used registers : T2
aoqi@1 2541 // NOTE : the returned index need also shift left 4 to get the address!
aoqi@1 2542 void TemplateTable::resolve_cache_and_index(int byte_no,
aoqi@1 2543 Register Rcache,
aoqi@6880 2544 Register index,
aoqi@1 2545 size_t index_size) {
aoqi@1 2546 assert(byte_no == f1_byte || byte_no == f2_byte, "byte_no out of range");
aoqi@1 2547 const Register temp = A1;
aoqi@1 2548 assert_different_registers(Rcache, index);
aoqi@6880 2549
aoqi@1 2550 Label resolved;
aoqi@1 2551 __ get_cache_and_index_and_bytecode_at_bcp(Rcache, index, temp, byte_no, 1, index_size);
aoqi@1 2552 // is resolved?
aoqi@1 2553 int i = (int)bytecode();
aoqi@1 2554 __ addi(temp, temp, -i);
aoqi@1 2555 __ beq(temp, R0, resolved);
aoqi@1 2556 __ delayed()->nop();
aoqi@1 2557 // resolve first time through
aoqi@1 2558 address entry;
aoqi@1 2559 switch (bytecode()) {
aoqi@1 2560 case Bytecodes::_getstatic : // fall through
aoqi@1 2561 case Bytecodes::_putstatic : // fall through
aoqi@1 2562 case Bytecodes::_getfield : // fall through
aoqi@6880 2563 case Bytecodes::_putfield :
aoqi@6880 2564 entry = CAST_FROM_FN_PTR(address, InterpreterRuntime::resolve_get_put);
aoqi@1 2565 break;
aoqi@1 2566 case Bytecodes::_invokevirtual : // fall through
aoqi@1 2567 case Bytecodes::_invokespecial : // fall through
aoqi@1 2568 case Bytecodes::_invokestatic : // fall through
aoqi@6880 2569 case Bytecodes::_invokeinterface:
aoqi@6880 2570 entry = CAST_FROM_FN_PTR(address, InterpreterRuntime::resolve_invoke);
aoqi@1 2571 break;
aoqi@1 2572 case Bytecodes::_invokehandle:
aoqi@1 2573 entry = CAST_FROM_FN_PTR(address, InterpreterRuntime::resolve_invokehandle);
aoqi@1 2574 break;
aoqi@1 2575 case Bytecodes::_invokedynamic:
aoqi@1 2576 entry = CAST_FROM_FN_PTR(address, InterpreterRuntime::resolve_invokedynamic);
aoqi@1 2577 break;
aoqi@6880 2578 default :
aoqi@1 2579 fatal(err_msg("unexpected bytecode: %s", Bytecodes::name(bytecode())));
aoqi@6880 2580 break;
aoqi@1 2581 }
aoqi@1 2582
aoqi@1 2583 __ move(temp, i);
aoqi@1 2584 __ call_VM(NOREG, entry, temp);
aoqi@1 2585
aoqi@1 2586 // Update registers with resolved info
aoqi@1 2587 __ get_cache_and_index_at_bcp(Rcache, index, 1, index_size);
aoqi@1 2588 __ bind(resolved);
aoqi@1 2589 }
aoqi@1 2590
aoqi@1 2591 // The Rcache and index registers must be set before call
aoqi@1 2592 void TemplateTable::load_field_cp_cache_entry(Register obj,
aoqi@1 2593 Register cache,
aoqi@1 2594 Register index,
aoqi@1 2595 Register off,
aoqi@1 2596 Register flags,
aoqi@1 2597 bool is_static = false) {
aoqi@1 2598 assert_different_registers(cache, index, flags, off);
aoqi@6880 2599
aoqi@1 2600 ByteSize cp_base_offset = ConstantPoolCache::base_offset();
aoqi@1 2601 // Field offset
aoqi@1 2602 __ dsll(AT, index, Address::times_ptr);
aoqi@1 2603 __ dadd(AT, cache, AT);
aoqi@1 2604 __ ld(off, AT, in_bytes(cp_base_offset + ConstantPoolCacheEntry::f2_offset()));
aoqi@6880 2605 // Flags
aoqi@1 2606 __ ld(flags, AT, in_bytes(cp_base_offset + ConstantPoolCacheEntry::flags_offset()));
aoqi@1 2607
aoqi@6880 2608 // klass overwrite register
aoqi@1 2609 if (is_static) {
aoqi@6880 2610 __ ld(obj, AT, in_bytes(cp_base_offset + ConstantPoolCacheEntry::f1_offset()));
aoqi@1 2611 const int mirror_offset = in_bytes(Klass::java_mirror_offset());
aoqi@1 2612 __ ld(obj, Address(obj, mirror_offset));
aoqi@1 2613
aoqi@6880 2614 __ verify_oop(obj);
aoqi@1 2615 }
aoqi@1 2616 }
aoqi@1 2617
aoqi@1 2618 // get the method, itable_index and flags of the current invoke
aoqi@1 2619 void TemplateTable::load_invoke_cp_cache_entry(int byte_no,
aoqi@1 2620 Register method,
aoqi@1 2621 Register itable_index,
aoqi@1 2622 Register flags,
aoqi@1 2623 bool is_invokevirtual,
aoqi@1 2624 bool is_invokevfinal, /*unused*/
aoqi@1 2625 bool is_invokedynamic) {
aoqi@1 2626 // setup registers
aoqi@1 2627 const Register cache = T3;
aoqi@1 2628 const Register index = T1;
aoqi@1 2629 assert_different_registers(method, flags);
aoqi@1 2630 assert_different_registers(method, cache, index);
aoqi@1 2631 assert_different_registers(itable_index, flags);
aoqi@1 2632 assert_different_registers(itable_index, cache, index);
aoqi@1 2633 assert(is_invokevirtual == (byte_no == f2_byte), "is invokevirtual flag redundant");
aoqi@1 2634 // determine constant pool cache field offsets
aoqi@1 2635 const int method_offset = in_bytes(
aoqi@6880 2636 ConstantPoolCache::base_offset() +
aoqi@1 2637 ((byte_no == f2_byte)
aoqi@1 2638 ? ConstantPoolCacheEntry::f2_offset()
aoqi@6880 2639 : ConstantPoolCacheEntry::f1_offset()));
aoqi@1 2640 const int flags_offset = in_bytes(ConstantPoolCache::base_offset() +
aoqi@6880 2641 ConstantPoolCacheEntry::flags_offset());
aoqi@1 2642 // access constant pool cache fields
aoqi@1 2643 const int index_offset = in_bytes(ConstantPoolCache::base_offset() +
aoqi@6880 2644 ConstantPoolCacheEntry::f2_offset());
aoqi@6880 2645
aoqi@1 2646 size_t index_size = (is_invokedynamic ? sizeof(u4): sizeof(u2));
aoqi@1 2647 resolve_cache_and_index(byte_no, cache, index, index_size);
aoqi@1 2648
aoqi@1 2649 //assert(wordSize == 8, "adjust code below");
aoqi@6880 2650 // note we shift 4 not 2, for we get is the true inde
aoqi@1 2651 // of ConstantPoolCacheEntry, not the shifted 2-bit index as x86 version
aoqi@1 2652 __ dsll(AT, index, Address::times_ptr);
aoqi@1 2653 __ dadd(AT, cache, AT);
aoqi@1 2654 __ ld(method, AT, method_offset);
aoqi@1 2655
aoqi@1 2656 if (itable_index != NOREG) {
aoqi@1 2657 __ ld(itable_index, AT, index_offset);
aoqi@1 2658 }
aoqi@1 2659 __ ld(flags, AT, flags_offset);
aoqi@1 2660 }
aoqi@1 2661
aoqi@1 2662 // The registers cache and index expected to be set before call.
aoqi@1 2663 // Correct values of the cache and index registers are preserved.
aoqi@1 2664 void TemplateTable::jvmti_post_field_access(Register cache, Register index,
aoqi@1 2665 bool is_static, bool has_tos) {
aoqi@1 2666 // do the JVMTI work here to avoid disturbing the register state below
aoqi@1 2667 // We use c_rarg registers here because we want to use the register used in
aoqi@1 2668 // the call to the VM
aoqi@6880 2669 if (JvmtiExport::can_post_field_access()) {
aoqi@6880 2670 // Check to see if a field access watch has been set before we
aoqi@6880 2671 // take the time to call into the VM.
aoqi@6880 2672 Label L1;
aoqi@6883 2673 // kill FSR
aoqi@6883 2674 Register tmp1 = T2;
aoqi@6883 2675 Register tmp2 = T1;
aoqi@6883 2676 Register tmp3 = T3;
aoqi@6883 2677 assert_different_registers(cache, index, AT);
aoqi@6880 2678 __ li(AT, (intptr_t)JvmtiExport::get_field_access_count_addr());
aoqi@6883 2679 __ lw(AT, AT, 0);
aoqi@6883 2680 __ beq(AT, R0, L1);
aoqi@6880 2681 __ delayed()->nop();
aoqi@6880 2682
aoqi@6883 2683 __ get_cache_and_index_at_bcp(tmp2, tmp3, 1);
aoqi@6883 2684
aoqi@6880 2685 // cache entry pointer
aoqi@6883 2686 __ daddi(tmp2, tmp2, in_bytes(ConstantPoolCache::base_offset()));
aoqi@6883 2687 __ shl(tmp3, LogBytesPerWord);
aoqi@6883 2688 __ dadd(tmp2, tmp2, tmp3);
aoqi@6880 2689 if (is_static) {
aoqi@6883 2690 __ move(tmp1, R0);
aoqi@6880 2691 } else {
aoqi@6883 2692 __ ld(tmp1, SP, 0);
aoqi@6883 2693 __ verify_oop(tmp1);
aoqi@6880 2694 }
aoqi@6883 2695 // tmp1: object pointer or NULL
aoqi@6883 2696 // tmp2: cache entry pointer
aoqi@6883 2697 // tmp3: jvalue object on the stack
aoqi@6880 2698 __ call_VM(NOREG, CAST_FROM_FN_PTR(address,
aoqi@6883 2699 InterpreterRuntime::post_field_access),
aoqi@6883 2700 tmp1, tmp2, tmp3);
aoqi@6880 2701 __ get_cache_and_index_at_bcp(cache, index, 1);
aoqi@6880 2702 __ bind(L1);
aoqi@6880 2703 }
aoqi@1 2704 }
aoqi@1 2705
aoqi@1 2706 void TemplateTable::pop_and_check_object(Register r) {
aoqi@1 2707 __ pop_ptr(r);
aoqi@1 2708 __ null_check(r); // for field access must check obj.
aoqi@1 2709 __ verify_oop(r);
aoqi@1 2710 }
aoqi@1 2711
aoqi@1 2712 // used registers : T1, T2, T3, T1
aoqi@1 2713 // T1 : flags
aoqi@1 2714 // T2 : off
aoqi@1 2715 // T3 : obj
aoqi@1 2716 // T1 : field address
aoqi@1 2717 // The flags 31, 30, 29, 28 together build a 4 bit number 0 to 8 with the
aoqi@1 2718 // following mapping to the TosState states:
aoqi@1 2719 // btos: 0
aoqi@1 2720 // ctos: 1
aoqi@1 2721 // stos: 2
aoqi@1 2722 // itos: 3
aoqi@1 2723 // ltos: 4
aoqi@1 2724 // ftos: 5
aoqi@1 2725 // dtos: 6
aoqi@1 2726 // atos: 7
aoqi@1 2727 // vtos: 8
aoqi@1 2728 // see ConstantPoolCacheEntry::set_field for more info
aoqi@1 2729 void TemplateTable::getfield_or_static(int byte_no, bool is_static) {
aoqi@1 2730 transition(vtos, vtos);
aoqi@1 2731
aoqi@1 2732 const Register cache = T3;
aoqi@1 2733 const Register index = T0;
aoqi@1 2734
aoqi@1 2735 const Register obj = T3;
aoqi@1 2736 const Register off = T2;
aoqi@1 2737 const Register flags = T1;
aoqi@1 2738 resolve_cache_and_index(byte_no, cache, index, sizeof(u2));
aoqi@6883 2739 jvmti_post_field_access(cache, index, is_static, false);
aoqi@1 2740 load_field_cp_cache_entry(obj, cache, index, off, flags, is_static);
aoqi@1 2741
aoqi@1 2742 if (!is_static) pop_and_check_object(obj);
aoqi@1 2743 __ dadd(index, obj, off);
aoqi@1 2744
aoqi@1 2745
aoqi@6880 2746 Label Done, notByte, notInt, notShort, notChar,
aoqi@6880 2747 notLong, notFloat, notObj, notDouble;
aoqi@1 2748
aoqi@1 2749 assert(btos == 0, "change code, btos != 0");
aoqi@1 2750 __ dsrl(flags, flags, ConstantPoolCacheEntry::tos_state_shift);
aoqi@1 2751 __ andi(flags, flags, 0xf);
aoqi@1 2752 __ bne(flags, R0, notByte);
aoqi@1 2753 __ delayed()->nop();
aoqi@1 2754
aoqi@1 2755 // btos
aoqi@6880 2756 __ lb(FSR, index, 0);
aoqi@1 2757 __ sd(FSR, SP, - wordSize);
aoqi@1 2758
aoqi@1 2759 // Rewrite bytecode to be faster
aoqi@1 2760 if (!is_static) {
aoqi@1 2761 patch_bytecode(Bytecodes::_fast_bgetfield, T3, T2);
aoqi@1 2762 }
aoqi@1 2763 __ b(Done);
aoqi@1 2764 __ delayed()->daddi(SP, SP, - wordSize);
aoqi@1 2765
aoqi@1 2766 __ bind(notByte);
aoqi@1 2767 __ move(AT, itos);
aoqi@1 2768 __ bne(flags, AT, notInt);
aoqi@1 2769 __ delayed()->nop();
aoqi@1 2770
aoqi@1 2771 // itos
aoqi@1 2772 __ lw(FSR, index, 0);
aoqi@1 2773 __ sd(FSR, SP, - wordSize);
aoqi@1 2774
aoqi@1 2775 // Rewrite bytecode to be faster
aoqi@1 2776 if (!is_static) {
aoqi@1 2777 // patch_bytecode(Bytecodes::_fast_igetfield, T3, T2);
aoqi@1 2778 patch_bytecode(Bytecodes::_fast_igetfield, T3, T2);
aoqi@1 2779 }
aoqi@1 2780 __ b(Done);
aoqi@1 2781 __ delayed()->daddi(SP, SP, - wordSize);
aoqi@1 2782
aoqi@1 2783 __ bind(notInt);
aoqi@1 2784 __ move(AT, atos);
aoqi@1 2785 __ bne(flags, AT, notObj);
aoqi@1 2786 __ delayed()->nop();
aoqi@1 2787
aoqi@1 2788 // atos
aoqi@1 2789 //add for compressedoops
aoqi@1 2790 __ load_heap_oop(FSR, Address(index, 0));
aoqi@1 2791 __ sd(FSR, SP, - wordSize);
aoqi@1 2792
aoqi@1 2793 if (!is_static) {
aoqi@1 2794 //patch_bytecode(Bytecodes::_fast_agetfield, T3, T2);
aoqi@1 2795 patch_bytecode(Bytecodes::_fast_agetfield, T3, T2);
aoqi@1 2796 }
aoqi@1 2797 __ b(Done);
aoqi@1 2798 __ delayed()->daddi(SP, SP, - wordSize);
aoqi@1 2799
aoqi@1 2800 __ bind(notObj);
aoqi@1 2801 __ move(AT, ctos);
aoqi@1 2802 __ bne(flags, AT, notChar);
aoqi@1 2803 __ delayed()->nop();
aoqi@1 2804
aoqi@1 2805 // ctos
aoqi@1 2806 __ lhu(FSR, index, 0);
aoqi@1 2807 __ sd(FSR, SP, - wordSize);
aoqi@1 2808
aoqi@1 2809 if (!is_static) {
aoqi@1 2810 patch_bytecode(Bytecodes::_fast_cgetfield, T3, T2);
aoqi@1 2811 }
aoqi@1 2812 __ b(Done);
aoqi@1 2813 __ delayed()->daddi(SP, SP, - wordSize);
aoqi@1 2814
aoqi@1 2815 __ bind(notChar);
aoqi@1 2816 __ move(AT, stos);
aoqi@1 2817 __ bne(flags, AT, notShort);
aoqi@1 2818 __ delayed()->nop();
aoqi@1 2819
aoqi@1 2820 // stos
aoqi@1 2821 __ lh(FSR, index, 0);
aoqi@1 2822 __ sd(FSR, SP, - wordSize);
aoqi@1 2823
aoqi@1 2824 if (!is_static) {
aoqi@1 2825 patch_bytecode(Bytecodes::_fast_sgetfield, T3, T2);
aoqi@1 2826 }
aoqi@1 2827 __ b(Done);
aoqi@1 2828 __ delayed()->daddi(SP, SP, - wordSize);
aoqi@1 2829
aoqi@1 2830 __ bind(notShort);
aoqi@1 2831 __ move(AT, ltos);
aoqi@1 2832 __ bne(flags, AT, notLong);
aoqi@1 2833 __ delayed()->nop();
aoqi@1 2834
aoqi@1 2835 // FIXME : the load/store should be atomic, we have no simple method to do this in mips32
aoqi@1 2836 // ltos
aoqi@1 2837 __ ld(FSR, index, 0 * wordSize);
aoqi@1 2838 __ sd(FSR, SP, -2 * wordSize);
aoqi@1 2839 __ sd(R0, SP, -1 * wordSize);
aoqi@1 2840
aoqi@1 2841 // Don't rewrite to _fast_lgetfield for potential volatile case.
aoqi@1 2842 __ b(Done);
aoqi@1 2843 __ delayed()->daddi(SP, SP, - 2 * wordSize);
aoqi@1 2844
aoqi@1 2845 __ bind(notLong);
aoqi@1 2846 __ move(AT, ftos);
aoqi@1 2847 __ bne(flags, AT, notFloat);
aoqi@1 2848 __ delayed()->nop();
aoqi@1 2849
aoqi@1 2850 // ftos
aoqi@1 2851 __ lwc1(FSF, index, 0);
aoqi@1 2852 __ sdc1(FSF, SP, - wordSize);
aoqi@1 2853
aoqi@1 2854 if (!is_static) {
aoqi@1 2855 patch_bytecode(Bytecodes::_fast_fgetfield, T3, T2);
aoqi@1 2856 }
aoqi@1 2857 __ b(Done);
aoqi@1 2858 __ delayed()->daddi(SP, SP, - wordSize);
aoqi@1 2859
aoqi@1 2860 __ bind(notFloat);
aoqi@1 2861 __ move(AT, dtos);
aoqi@1 2862 __ bne(flags, AT, notDouble);
aoqi@1 2863 __ delayed()->nop();
aoqi@1 2864
aoqi@1 2865 // dtos
aoqi@1 2866 __ ldc1(FSF, index, 0 * wordSize);
aoqi@1 2867 __ sdc1(FSF, SP, - 2 * wordSize);
aoqi@1 2868 __ sd(R0, SP, - 1 * wordSize);
aoqi@1 2869
aoqi@1 2870 if (!is_static) {
aoqi@1 2871 patch_bytecode(Bytecodes::_fast_dgetfield, T3, T2);
aoqi@1 2872 }
aoqi@1 2873 __ b(Done);
aoqi@1 2874 __ delayed()->daddi(SP, SP, - 2 * wordSize);
aoqi@1 2875
aoqi@1 2876 __ bind(notDouble);
aoqi@1 2877
aoqi@1 2878 __ stop("Bad state");
aoqi@1 2879
aoqi@1 2880 __ bind(Done);
aoqi@1 2881 }
aoqi@1 2882
aoqi@6880 2883
aoqi@1 2884 void TemplateTable::getfield(int byte_no) {
aoqi@1 2885 getfield_or_static(byte_no, false);
aoqi@1 2886 }
aoqi@1 2887
aoqi@1 2888 void TemplateTable::getstatic(int byte_no) {
aoqi@1 2889 getfield_or_static(byte_no, true);
aoqi@1 2890 }
aoqi@1 2891
aoqi@1 2892 // The registers cache and index expected to be set before call.
aoqi@1 2893 // The function may destroy various registers, just not the cache and index registers.
aoqi@1 2894 void TemplateTable::jvmti_post_field_mod(Register cache, Register index, bool is_static) {
aoqi@6883 2895 transition(vtos, vtos);
aoqi@6883 2896
aoqi@6880 2897 ByteSize cp_base_offset = ConstantPoolCache::base_offset();
aoqi@6880 2898
aoqi@6880 2899 if (JvmtiExport::can_post_field_modification()) {
aoqi@6883 2900 // Check to see if a field modification watch has been set before
aoqi@6883 2901 // we take the time to call into the VM.
aoqi@6880 2902 Label L1;
aoqi@6883 2903 //kill AT, T1, T2, T3, T9
aoqi@6883 2904 Register tmp1 = T2;
aoqi@6883 2905 Register tmp2 = T1;
aoqi@6883 2906 Register tmp3 = T3;
aoqi@6883 2907 Register tmp4 = T9;
aoqi@6883 2908 assert_different_registers(cache, index, tmp4);
aoqi@6880 2909
aoqi@6880 2910 __ li(AT, JvmtiExport::get_field_modification_count_addr());
aoqi@6883 2911 __ lw(AT, AT, 0);
aoqi@6883 2912 __ beq(AT, R0, L1);
aoqi@6880 2913 __ delayed()->nop();
aoqi@6880 2914
aoqi@6883 2915 __ get_cache_and_index_at_bcp(tmp2, tmp4, 1);
aoqi@6880 2916
aoqi@6880 2917 if (is_static) {
aoqi@6883 2918 __ move(tmp1, R0);
aoqi@6880 2919 } else {
aoqi@6883 2920 // Life is harder. The stack holds the value on top, followed by
aoqi@6883 2921 // the object. We don't know the size of the value, though; it
aoqi@6883 2922 // could be one or two words depending on its type. As a result,
aoqi@6883 2923 // we must find the type to determine where the object is.
aoqi@6880 2924 Label two_word, valsize_known;
aoqi@6883 2925 __ dsll(AT, tmp4, Address::times_8);
aoqi@6883 2926 __ dadd(AT, tmp2, AT);
aoqi@6883 2927 __ ld(tmp3, AT, in_bytes(cp_base_offset +
aoqi@6883 2928 ConstantPoolCacheEntry::flags_offset()));
aoqi@6883 2929 __ shr(tmp3, ConstantPoolCacheEntry::tos_state_shift);
aoqi@6880 2930
aoqi@6880 2931 // Make sure we don't need to mask ecx for tos_state_shift
aoqi@6880 2932 // after the above shift
aoqi@6880 2933 ConstantPoolCacheEntry::verify_tos_state_shift();
aoqi@6883 2934 __ move(tmp1, SP);
aoqi@6880 2935 __ move(AT, ltos);
aoqi@6883 2936 __ beq(tmp3, AT, two_word);
aoqi@6880 2937 __ delayed()->nop();
aoqi@6880 2938 __ move(AT, dtos);
aoqi@6883 2939 __ beq(tmp3, AT, two_word);
aoqi@6880 2940 __ delayed()->nop();
aoqi@6880 2941 __ b(valsize_known);
aoqi@6883 2942 __ delayed()->daddi(tmp1, tmp1, Interpreter::expr_offset_in_bytes(1) );
aoqi@6880 2943
aoqi@6880 2944 __ bind(two_word);
aoqi@6883 2945 __ daddi(tmp1, tmp1, Interpreter::expr_offset_in_bytes(2));
aoqi@6880 2946
aoqi@6880 2947 __ bind(valsize_known);
aoqi@6880 2948 // setup object pointer
aoqi@6883 2949 __ ld(tmp1, tmp1, 0*wordSize);
aoqi@6880 2950 }
aoqi@6880 2951 // cache entry pointer
aoqi@6883 2952 __ daddi(tmp2, tmp2, in_bytes(cp_base_offset));
aoqi@6883 2953 __ shl(tmp4, LogBytesPerWord);
aoqi@6883 2954 __ daddu(tmp2, tmp2, tmp4);
aoqi@6880 2955 // object (tos)
aoqi@6883 2956 __ move(tmp3, SP);
aoqi@6883 2957 // tmp1: object pointer set up above (NULL if static)
aoqi@6883 2958 // tmp2: cache entry pointer
aoqi@6883 2959 // tmp3: jvalue object on the stack
aoqi@6883 2960 __ call_VM(NOREG,
aoqi@6883 2961 CAST_FROM_FN_PTR(address,
aoqi@6883 2962 InterpreterRuntime::post_field_modification),
aoqi@6883 2963 tmp1, tmp2, tmp3);
aoqi@6880 2964 __ get_cache_and_index_at_bcp(cache, index, 1);
aoqi@6880 2965 __ bind(L1);
aoqi@6880 2966 }
aoqi@1 2967 }
aoqi@1 2968
aoqi@1 2969 // used registers : T0, T1, T2, T3, T8
aoqi@1 2970 // T1 : flags
aoqi@1 2971 // T2 : off
aoqi@1 2972 // T3 : obj
aoqi@1 2973 // T8 : volatile bit
aoqi@1 2974 // see ConstantPoolCacheEntry::set_field for more info
aoqi@1 2975 void TemplateTable::putfield_or_static(int byte_no, bool is_static) {
aoqi@1 2976 transition(vtos, vtos);
aoqi@1 2977
aoqi@1 2978 const Register cache = T3;
aoqi@1 2979 const Register index = T0;
aoqi@1 2980 const Register obj = T3;
aoqi@1 2981 const Register off = T2;
aoqi@1 2982 const Register flags = T1;
aoqi@1 2983 const Register bc = T3;
aoqi@1 2984
aoqi@1 2985 resolve_cache_and_index(byte_no, cache, index, sizeof(u2));
aoqi@6883 2986 jvmti_post_field_mod(cache, index, is_static);
aoqi@1 2987 load_field_cp_cache_entry(obj, cache, index, off, flags, is_static);
aoqi@1 2988
aoqi@1 2989 Label notVolatile, Done;
aoqi@1 2990 __ move(AT, 1<<ConstantPoolCacheEntry::is_volatile_shift);
aoqi@1 2991 __ andr(T8, flags, AT);
aoqi@1 2992
aoqi@1 2993 Label notByte, notInt, notShort, notChar, notLong, notFloat, notObj, notDouble;
aoqi@6880 2994
aoqi@1 2995 assert(btos == 0, "change code, btos != 0");
aoqi@1 2996 // btos
aoqi@1 2997 __ dsrl(flags, flags, ConstantPoolCacheEntry::tos_state_shift);
aoqi@1 2998 __ andi(flags, flags, ConstantPoolCacheEntry::tos_state_mask);
aoqi@1 2999 __ bne(flags, R0, notByte);
aoqi@1 3000 __ delayed()->nop();
aoqi@1 3001
aoqi@1 3002 __ pop(btos);
aoqi@1 3003 if (!is_static) {
aoqi@6880 3004 pop_and_check_object(obj);
aoqi@1 3005 }
aoqi@1 3006 __ dadd(AT, obj, off);
aoqi@1 3007 __ sb(FSR, AT, 0);
aoqi@1 3008
aoqi@1 3009 if (!is_static) {
aoqi@1 3010 patch_bytecode(Bytecodes::_fast_bputfield, bc, off, true, byte_no);
aoqi@1 3011 }
aoqi@1 3012 __ b(Done);
aoqi@1 3013 __ delayed()->nop();
aoqi@1 3014
aoqi@1 3015 __ bind(notByte);
aoqi@1 3016 // itos
aoqi@1 3017 __ move(AT, itos);
aoqi@1 3018 __ bne(flags, AT, notInt);
aoqi@1 3019 __ delayed()->nop();
aoqi@1 3020
aoqi@1 3021 __ pop(itos);
aoqi@1 3022 if (!is_static) {
aoqi@6880 3023 pop_and_check_object(obj);
aoqi@1 3024 }
aoqi@1 3025 __ dadd(AT, obj, off);
aoqi@1 3026 __ sw(FSR, AT, 0);
aoqi@1 3027
aoqi@1 3028 if (!is_static) {
aoqi@1 3029 patch_bytecode(Bytecodes::_fast_iputfield, bc, off, true, byte_no);
aoqi@1 3030 }
aoqi@1 3031 __ b(Done);
aoqi@6880 3032 __ delayed()->nop();
aoqi@1 3033 __ bind(notInt);
aoqi@1 3034 // atos
aoqi@1 3035 __ move(AT, atos);
aoqi@1 3036 __ bne(flags, AT, notObj);
aoqi@1 3037 __ delayed()->nop();
aoqi@1 3038
aoqi@1 3039 __ pop(atos);
aoqi@1 3040 if (!is_static) {
aoqi@6880 3041 pop_and_check_object(obj);
aoqi@1 3042 }
aoqi@1 3043
aoqi@1 3044 __ dadd(AT, obj, off);
aoqi@1 3045 __ store_heap_oop(Address(AT, 0), FSR);
aoqi@1 3046 __ store_check(obj);
aoqi@1 3047
aoqi@1 3048 if (!is_static) {
aoqi@1 3049 patch_bytecode(Bytecodes::_fast_aputfield, bc, off, true, byte_no);
aoqi@1 3050 }
aoqi@1 3051 __ b(Done);
aoqi@1 3052 __ delayed()->nop();
aoqi@1 3053 __ bind(notObj);
aoqi@1 3054 // ctos
aoqi@1 3055 __ move(AT, ctos);
aoqi@1 3056 __ bne(flags, AT, notChar);
aoqi@1 3057 __ delayed()->nop();
aoqi@1 3058
aoqi@1 3059 __ pop(ctos);
aoqi@1 3060 if (!is_static) {
aoqi@6880 3061 pop_and_check_object(obj);
aoqi@1 3062 }
aoqi@1 3063 __ dadd(AT, obj, off);
aoqi@1 3064 __ sh(FSR, AT, 0);
aoqi@1 3065 if (!is_static) {
aoqi@1 3066 patch_bytecode(Bytecodes::_fast_cputfield, bc, off, true, byte_no);
aoqi@1 3067 }
aoqi@1 3068 __ b(Done);
aoqi@1 3069 __ delayed()->nop();
aoqi@1 3070 __ bind(notChar);
aoqi@1 3071 // stos
aoqi@1 3072 __ move(AT, stos);
aoqi@1 3073 __ bne(flags, AT, notShort);
aoqi@1 3074 __ delayed()->nop();
aoqi@1 3075
aoqi@1 3076 __ pop(stos);
aoqi@1 3077 if (!is_static) {
aoqi@6880 3078 pop_and_check_object(obj);
aoqi@1 3079 }
aoqi@1 3080 __ dadd(AT, obj, off);
aoqi@1 3081 __ sh(FSR, AT, 0);
aoqi@1 3082 if (!is_static) {
aoqi@1 3083 patch_bytecode(Bytecodes::_fast_sputfield, bc, off, true, byte_no);
aoqi@1 3084 }
aoqi@1 3085 __ b(Done);
aoqi@1 3086 __ delayed()->nop();
aoqi@1 3087 __ bind(notShort);
aoqi@1 3088 // ltos
aoqi@1 3089 __ move(AT, ltos);
aoqi@1 3090 __ bne(flags, AT, notLong);
aoqi@1 3091 __ delayed()->nop();
aoqi@1 3092
aoqi@1 3093 // FIXME: there is no simple method to load/store 64-bit data in a atomic operation
aoqi@1 3094 // we just ignore the volatile flag.
aoqi@1 3095 //Label notVolatileLong;
aoqi@1 3096 //__ beq(T1, R0, notVolatileLong);
aoqi@1 3097 //__ delayed()->nop();
aoqi@1 3098
aoqi@1 3099 //addent = 2 * wordSize;
aoqi@1 3100 // no need
aoqi@1 3101 //__ lw(FSR, SP, 0);
aoqi@1 3102 //__ lw(SSR, SP, 1 * wordSize);
aoqi@1 3103 //if (!is_static) {
aoqi@6880 3104 // __ lw(T3, SP, addent);
aoqi@6880 3105 // addent += 1 * wordSize;
aoqi@6880 3106 // __ verify_oop(T3);
aoqi@1 3107 //}
aoqi@1 3108
aoqi@1 3109 //__ daddu(AT, T3, T2);
aoqi@1 3110
aoqi@1 3111 // Replace with real volatile test
aoqi@1 3112 // NOTE : we assume that sdc1&ldc1 operate in 32-bit, this is true for Godson2 even in 64-bit kernel
aoqi@1 3113 // last modified by yjl 7/12/2005
aoqi@6880 3114 //__ ldc1(FSF, SP, 0);
aoqi@1 3115 //__ sdc1(FSF, AT, 0);
aoqi@1 3116 //volatile_barrier();
aoqi@1 3117
aoqi@1 3118 // Don't rewrite volatile version
aoqi@1 3119 //__ b(notVolatile);
aoqi@1 3120 //__ delayed()->addiu(SP, SP, addent);
aoqi@1 3121
aoqi@1 3122 //__ bind(notVolatileLong);
aoqi@1 3123
aoqi@1 3124 //__ pop(ltos); // overwrites edx
aoqi@6880 3125 // __ lw(FSR, SP, 0 * wordSize);
aoqi@6880 3126 // __ lw(SSR, SP, 1 * wordSize);
aoqi@6880 3127 // __ daddi(SP, SP, 2*wordSize);
aoqi@1 3128 __ pop(ltos);
aoqi@1 3129 if (!is_static) {
aoqi@6880 3130 pop_and_check_object(obj);
aoqi@1 3131 }
aoqi@1 3132 __ dadd(AT, obj, off);
aoqi@1 3133 __ sd(FSR, AT, 0);
aoqi@1 3134 if (!is_static) {
aoqi@1 3135 patch_bytecode(Bytecodes::_fast_lputfield, bc, off, true, byte_no);
aoqi@1 3136 }
aoqi@1 3137 __ b(notVolatile);
aoqi@1 3138 __ delayed()->nop();
aoqi@1 3139
aoqi@1 3140 __ bind(notLong);
aoqi@1 3141 // ftos
aoqi@1 3142 __ move(AT, ftos);
aoqi@1 3143 __ bne(flags, AT, notFloat);
aoqi@1 3144 __ delayed()->nop();
aoqi@1 3145
aoqi@1 3146 __ pop(ftos);
aoqi@1 3147 if (!is_static) {
aoqi@6880 3148 pop_and_check_object(obj);
aoqi@1 3149 }
aoqi@1 3150 __ dadd(AT, obj, off);
aoqi@1 3151 __ swc1(FSF, AT, 0);
aoqi@1 3152 if (!is_static) {
aoqi@1 3153 patch_bytecode(Bytecodes::_fast_fputfield, bc, off, true, byte_no);
aoqi@1 3154 }
aoqi@1 3155 __ b(Done);
aoqi@1 3156 __ delayed()->nop();
aoqi@1 3157 __ bind(notFloat);
aoqi@1 3158 // dtos
aoqi@1 3159 __ move(AT, dtos);
aoqi@1 3160 __ bne(flags, AT, notDouble);
aoqi@1 3161 __ delayed()->nop();
aoqi@1 3162
aoqi@1 3163 __ pop(dtos);
aoqi@1 3164 if (!is_static) {
aoqi@6880 3165 pop_and_check_object(obj);
aoqi@1 3166 }
aoqi@1 3167 __ dadd(AT, obj, off);
aoqi@1 3168 __ sdc1(FSF, AT, 0);
aoqi@1 3169 if (!is_static) {
aoqi@1 3170 patch_bytecode(Bytecodes::_fast_dputfield, bc, off, true, byte_no);
aoqi@1 3171 }
aoqi@6880 3172
aoqi@6880 3173 #ifdef ASSERT
aoqi@1 3174 __ b(Done);
aoqi@1 3175 __ delayed()->nop();
aoqi@6880 3176
aoqi@1 3177 __ bind(notDouble);
aoqi@1 3178 __ stop("Bad state");
aoqi@6880 3179 #endif
aoqi@1 3180
aoqi@1 3181 __ bind(Done);
aoqi@1 3182
aoqi@1 3183 // Check for volatile store
aoqi@1 3184 __ beq(T8, R0, notVolatile);
aoqi@1 3185 __ delayed()->nop();
aoqi@1 3186 volatile_barrier( );
aoqi@1 3187 __ bind(notVolatile);
aoqi@1 3188 }
aoqi@1 3189
aoqi@1 3190 void TemplateTable::putfield(int byte_no) {
aoqi@1 3191 putfield_or_static(byte_no, false);
aoqi@1 3192 }
aoqi@1 3193
aoqi@1 3194 void TemplateTable::putstatic(int byte_no) {
aoqi@1 3195 putfield_or_static(byte_no, true);
aoqi@1 3196 }
aoqi@1 3197
aoqi@1 3198 // used registers : T1, T2, T3
aoqi@1 3199 // T1 : cp_entry
aoqi@1 3200 // T2 : obj
aoqi@1 3201 // T3 : value pointer
aoqi@1 3202 void TemplateTable::jvmti_post_fast_field_mod() {
aoqi@6880 3203 if (JvmtiExport::can_post_field_modification()) {
aoqi@6880 3204 // Check to see if a field modification watch has been set before
aoqi@6880 3205 // we take the time to call into the VM.
aoqi@6880 3206 Label L2;
aoqi@6883 3207 //kill AT, T1, T2, T3, T9
aoqi@6883 3208 Register tmp1 = T2;
aoqi@6883 3209 Register tmp2 = T1;
aoqi@6883 3210 Register tmp3 = T3;
aoqi@6883 3211 Register tmp4 = T9;
aoqi@6880 3212 __ li(AT, JvmtiExport::get_field_modification_count_addr());
aoqi@6883 3213 __ lw(tmp3, AT, 0);
aoqi@6883 3214 __ beq(tmp3, R0, L2);
aoqi@6880 3215 __ delayed()->nop();
aoqi@6883 3216 __ pop_ptr(tmp1);
aoqi@6883 3217 __ verify_oop(tmp1);
aoqi@6883 3218 __ push_ptr(tmp1);
aoqi@6880 3219 switch (bytecode()) { // load values into the jvalue object
aoqi@6883 3220 case Bytecodes::_fast_aputfield: __ push_ptr(FSR); break;
aoqi@6883 3221 case Bytecodes::_fast_bputfield: // fall through
aoqi@6883 3222 case Bytecodes::_fast_sputfield: // fall through
aoqi@6883 3223 case Bytecodes::_fast_cputfield: // fall through
aoqi@6883 3224 case Bytecodes::_fast_iputfield: __ push_i(FSR); break;
aoqi@6883 3225 case Bytecodes::_fast_dputfield: __ push_d(FSF); break;
aoqi@6883 3226 case Bytecodes::_fast_fputfield: __ push_f(); break;
aoqi@6883 3227 case Bytecodes::_fast_lputfield: __ push_l(FSR); break;
aoqi@6880 3228 default: ShouldNotReachHere();
aoqi@6880 3229 }
aoqi@6883 3230 __ move(tmp3, SP);
aoqi@6880 3231 // access constant pool cache entry
aoqi@6883 3232 __ get_cache_entry_pointer_at_bcp(tmp2, FSR, 1);
aoqi@6883 3233 __ verify_oop(tmp1);
aoqi@6883 3234 // tmp1: object pointer copied above
aoqi@6883 3235 // tmp2: cache entry pointer
aoqi@6883 3236 // tmp3: jvalue object on the stack
aoqi@6883 3237 __ call_VM(NOREG,
aoqi@6883 3238 CAST_FROM_FN_PTR(address,
aoqi@6883 3239 InterpreterRuntime::post_field_modification),
aoqi@6883 3240 tmp1, tmp2, tmp3);
aoqi@6883 3241
aoqi@6883 3242 switch (bytecode()) { // restore tos values
aoqi@6883 3243 case Bytecodes::_fast_aputfield: __ pop_ptr(FSR); break;
aoqi@6883 3244 case Bytecodes::_fast_bputfield: // fall through
aoqi@6883 3245 case Bytecodes::_fast_sputfield: // fall through
aoqi@6883 3246 case Bytecodes::_fast_cputfield: // fall through
aoqi@6883 3247 case Bytecodes::_fast_iputfield: __ pop_i(FSR); break;
aoqi@6883 3248 case Bytecodes::_fast_dputfield: __ pop_d(); break;
aoqi@6883 3249 case Bytecodes::_fast_fputfield: __ pop_f(); break;
aoqi@6883 3250 case Bytecodes::_fast_lputfield: __ pop_l(FSR); break;
aoqi@6883 3251 }
aoqi@6880 3252 __ bind(L2);
aoqi@6880 3253 }
aoqi@1 3254 }
aoqi@1 3255
aoqi@1 3256 // used registers : T2, T3, T1
aoqi@1 3257 // T2 : index & off & field address
aoqi@1 3258 // T3 : cache & obj
aoqi@1 3259 // T1 : flags
aoqi@1 3260 void TemplateTable::fast_storefield(TosState state) {
aoqi@1 3261 transition(state, vtos);
aoqi@1 3262
aoqi@1 3263 ByteSize base = ConstantPoolCache::base_offset();
aoqi@1 3264
aoqi@1 3265 jvmti_post_fast_field_mod();
aoqi@1 3266
aoqi@1 3267 // access constant pool cache
aoqi@1 3268 __ get_cache_and_index_at_bcp(T3, T2, 1);
aoqi@1 3269
aoqi@1 3270 // test for volatile with edx but edx is tos register for lputfield.
aoqi@6880 3271 __ dsll(AT, T2, Address::times_8);
aoqi@1 3272 __ dadd(AT, T3, AT);
aoqi@1 3273 __ ld(T1, AT, in_bytes(base + ConstantPoolCacheEntry::flags_offset()));
aoqi@1 3274
aoqi@1 3275 // replace index with field offset from cache entry
aoqi@1 3276 __ ld(T2, AT, in_bytes(base + ConstantPoolCacheEntry::f2_offset()));
aoqi@1 3277
aoqi@1 3278 // Doug Lea believes this is not needed with current Sparcs (TSO) and Intel (PSO).
aoqi@1 3279 // volatile_barrier( );
aoqi@1 3280
aoqi@1 3281 Label notVolatile, Done;
aoqi@1 3282 // Check for volatile store
aoqi@1 3283 __ move(AT, 1<<ConstantPoolCacheEntry::is_volatile_shift);
aoqi@1 3284 __ andr(AT, T1, AT);
aoqi@1 3285 __ beq(AT, R0, notVolatile);
aoqi@1 3286 __ delayed()->nop();
aoqi@1 3287
aoqi@1 3288
aoqi@1 3289 // Get object from stack
aoqi@1 3290 pop_and_check_object(T3);
aoqi@6880 3291
aoqi@6880 3292 // field address
aoqi@1 3293 __ dadd(T2, T3, T2);
aoqi@1 3294
aoqi@1 3295 // access field
aoqi@1 3296 switch (bytecode()) {
aoqi@6880 3297 case Bytecodes::_fast_bputfield:
aoqi@1 3298 __ sb(FSR, T2, 0);
aoqi@1 3299 break;
aoqi@1 3300 case Bytecodes::_fast_sputfield: // fall through
aoqi@6880 3301 case Bytecodes::_fast_cputfield:
aoqi@1 3302 __ sh(FSR, T2, 0);
aoqi@1 3303 break;
aoqi@6880 3304 case Bytecodes::_fast_iputfield:
aoqi@1 3305 __ sw(FSR, T2, 0);
aoqi@1 3306 break;
aoqi@6880 3307 case Bytecodes::_fast_lputfield:
aoqi@1 3308 __ sd(FSR, T2, 0 * wordSize);
aoqi@1 3309 break;
aoqi@6880 3310 case Bytecodes::_fast_fputfield:
aoqi@1 3311 __ swc1(FSF, T2, 0);
aoqi@1 3312 break;
aoqi@6880 3313 case Bytecodes::_fast_dputfield:
aoqi@1 3314 __ sdc1(FSF, T2, 0 * wordSize);
aoqi@1 3315 break;
aoqi@6880 3316 case Bytecodes::_fast_aputfield:
aoqi@1 3317 __ store_heap_oop(Address(T2, 0), FSR);
aoqi@1 3318 __ store_check(T3);
aoqi@1 3319 break;
aoqi@1 3320 default:
aoqi@1 3321 ShouldNotReachHere();
aoqi@1 3322 }
aoqi@1 3323
aoqi@1 3324 Label done;
aoqi@1 3325 volatile_barrier( );
aoqi@1 3326 __ b(done);
aoqi@1 3327 __ delayed()->nop();
aoqi@1 3328
aoqi@1 3329 // Same code as above, but don't need edx to test for volatile.
aoqi@1 3330 __ bind(notVolatile);
aoqi@1 3331 pop_and_check_object(T3);
aoqi@1 3332 //get the field address
aoqi@1 3333 __ dadd(T2, T3, T2);
aoqi@1 3334
aoqi@1 3335 // access field
aoqi@1 3336 switch (bytecode()) {
aoqi@6880 3337 case Bytecodes::_fast_bputfield:
aoqi@6880 3338 __ sb(FSR, T2, 0);
aoqi@1 3339 break;
aoqi@1 3340 case Bytecodes::_fast_sputfield: // fall through
aoqi@6880 3341 case Bytecodes::_fast_cputfield:
aoqi@1 3342 __ sh(FSR, T2, 0);
aoqi@1 3343 break;
aoqi@6880 3344 case Bytecodes::_fast_iputfield:
aoqi@1 3345 __ sw(FSR, T2, 0);
aoqi@1 3346 break;
aoqi@6880 3347 case Bytecodes::_fast_lputfield:
aoqi@1 3348 __ sd(FSR, T2, 0 * wordSize);
aoqi@1 3349 break;
aoqi@6880 3350 case Bytecodes::_fast_fputfield:
aoqi@1 3351 __ swc1(FSF, T2, 0);
aoqi@1 3352 break;
aoqi@6880 3353 case Bytecodes::_fast_dputfield:
aoqi@1 3354 __ sdc1(FSF, T2, 0 * wordSize);
aoqi@1 3355 break;
aoqi@6880 3356 case Bytecodes::_fast_aputfield:
aoqi@1 3357 //add for compressedoops
aoqi@1 3358 __ store_heap_oop(Address(T2, 0), FSR);
aoqi@1 3359 __ store_check(T3);
aoqi@1 3360 break;
aoqi@1 3361 default:
aoqi@1 3362 ShouldNotReachHere();
aoqi@1 3363 }
aoqi@1 3364 __ bind(done);
aoqi@1 3365 }
aoqi@1 3366
aoqi@1 3367 // used registers : T2, T3, T1
aoqi@1 3368 // T3 : cp_entry & cache
aoqi@1 3369 // T2 : index & offset
aoqi@1 3370 void TemplateTable::fast_accessfield(TosState state) {
aoqi@1 3371 transition(atos, state);
aoqi@1 3372
aoqi@1 3373 // do the JVMTI work here to avoid disturbing the register state below
aoqi@1 3374 if (JvmtiExport::can_post_field_access()) {
aoqi@1 3375 // Check to see if a field access watch has been set before we take
aoqi@1 3376 // the time to call into the VM.
aoqi@1 3377 Label L1;
aoqi@1 3378 __ li(AT, (intptr_t)JvmtiExport::get_field_access_count_addr());
aoqi@1 3379 __ lw(T3, AT, 0);
aoqi@1 3380 __ beq(T3, R0, L1);
aoqi@1 3381 __ delayed()->nop();
aoqi@1 3382 // access constant pool cache entry
aoqi@1 3383 __ get_cache_entry_pointer_at_bcp(T3, T1, 1);
aoqi@1 3384 __ move(TSR, FSR);
aoqi@1 3385 __ verify_oop(FSR);
aoqi@1 3386 // FSR: object pointer copied above
aoqi@1 3387 // T3: cache entry pointer
aoqi@6880 3388 __ call_VM(NOREG,
aoqi@6880 3389 CAST_FROM_FN_PTR(address, InterpreterRuntime::post_field_access),
aoqi@6880 3390 FSR, T3);
aoqi@1 3391 __ move(FSR, TSR);
aoqi@1 3392 __ bind(L1);
aoqi@1 3393 }
aoqi@1 3394
aoqi@1 3395 // access constant pool cache
aoqi@1 3396 __ get_cache_and_index_at_bcp(T3, T2, 1);
aoqi@1 3397 // replace index with field offset from cache entry
aoqi@1 3398 __ dsll(AT, T2, Address::times_8);
aoqi@1 3399 __ dadd(AT, T3, AT);
aoqi@6880 3400 __ ld(T2, AT, in_bytes(ConstantPoolCache::base_offset()
aoqi@6880 3401 + ConstantPoolCacheEntry::f2_offset()));
aoqi@1 3402
aoqi@1 3403 // eax: object
aoqi@1 3404 __ verify_oop(FSR);
aoqi@1 3405 __ null_check(FSR);
aoqi@1 3406 // field addresses
aoqi@1 3407 __ dadd(FSR, FSR, T2);
aoqi@1 3408
aoqi@1 3409 // access field
aoqi@1 3410 switch (bytecode()) {
aoqi@6880 3411 case Bytecodes::_fast_bgetfield:
aoqi@1 3412 __ lb(FSR, FSR, 0);
aoqi@1 3413 break;
aoqi@6880 3414 case Bytecodes::_fast_sgetfield:
aoqi@1 3415 __ lh(FSR, FSR, 0);
aoqi@1 3416 break;
aoqi@6880 3417 case Bytecodes::_fast_cgetfield:
aoqi@1 3418 __ lhu(FSR, FSR, 0);
aoqi@1 3419 break;
aoqi@1 3420 case Bytecodes::_fast_igetfield:
aoqi@1 3421 __ lw(FSR, FSR, 0);
aoqi@1 3422 break;
aoqi@6880 3423 case Bytecodes::_fast_lgetfield:
aoqi@6880 3424 __ stop("should not be rewritten");
aoqi@1 3425 break;
aoqi@6880 3426 case Bytecodes::_fast_fgetfield:
aoqi@1 3427 __ lwc1(FSF, FSR, 0);
aoqi@1 3428 break;
aoqi@6880 3429 case Bytecodes::_fast_dgetfield:
aoqi@1 3430 __ ldc1(FSF, FSR, 0);
aoqi@1 3431 break;
aoqi@1 3432 case Bytecodes::_fast_agetfield:
aoqi@1 3433 //add for compressedoops
aoqi@1 3434 __ load_heap_oop(FSR, Address(FSR, 0));
aoqi@1 3435 __ verify_oop(FSR);
aoqi@1 3436 break;
aoqi@1 3437 default:
aoqi@1 3438 ShouldNotReachHere();
aoqi@1 3439 }
aoqi@1 3440
aoqi@1 3441 // Doug Lea believes this is not needed with current Sparcs(TSO) and Intel(PSO)
aoqi@1 3442 // volatile_barrier( );
aoqi@1 3443 }
aoqi@1 3444
aoqi@1 3445 // generator for _fast_iaccess_0, _fast_aaccess_0, _fast_faccess_0
aoqi@1 3446 // used registers : T1, T2, T3, T1
aoqi@1 3447 // T1 : obj & field address
aoqi@1 3448 // T2 : off
aoqi@1 3449 // T3 : cache
aoqi@1 3450 // T1 : index
aoqi@1 3451 void TemplateTable::fast_xaccess(TosState state) {
aoqi@1 3452 transition(vtos, state);
aoqi@6880 3453
aoqi@1 3454 // get receiver
aoqi@1 3455 __ ld(T1, aaddress(0));
aoqi@1 3456 // access constant pool cache
aoqi@1 3457 __ get_cache_and_index_at_bcp(T3, T2, 2);
aoqi@1 3458 __ dsll(AT, T2, Address::times_8);
aoqi@1 3459 __ dadd(AT, T3, AT);
aoqi@6880 3460 __ ld(T2, AT, in_bytes(ConstantPoolCache::base_offset() + ConstantPoolCacheEntry::f2_offset()));
aoqi@6880 3461
aoqi@6880 3462 // make sure exception is reported in correct bcp range (getfield is
aoqi@6880 3463 // next instruction)
aoqi@1 3464 __ daddi(BCP, BCP, 1);
aoqi@1 3465 __ null_check(T1);
aoqi@1 3466 __ dadd(T1, T1, T2);
aoqi@1 3467
aoqi@1 3468 if (state == itos) {
aoqi@1 3469 __ lw(FSR, T1, 0);
aoqi@1 3470 } else if (state == atos) {
aoqi@1 3471 __ load_heap_oop(FSR, Address(T1, 0));
aoqi@1 3472 __ verify_oop(FSR);
aoqi@1 3473 } else if (state == ftos) {
aoqi@1 3474 __ lwc1(FSF, T1, 0);
aoqi@1 3475 } else {
aoqi@1 3476 ShouldNotReachHere();
aoqi@1 3477 }
aoqi@1 3478 __ daddi(BCP, BCP, -1);
aoqi@1 3479 }
aoqi@1 3480
aoqi@6880 3481
aoqi@6880 3482
aoqi@6880 3483 //-----------------------------------------------------------------------------
aoqi@1 3484 // Calls
aoqi@1 3485
aoqi@6880 3486 void TemplateTable::count_calls(Register method, Register temp) {
aoqi@6880 3487 // implemented elsewhere
aoqi@6880 3488 ShouldNotReachHere();
aoqi@1 3489 }
aoqi@1 3490
aoqi@1 3491 // method, index, recv, flags: T1, T2, T3, T1
aoqi@1 3492 // byte_no = 2 for _invokevirtual, 1 else
aoqi@1 3493 // T0 : return address
aoqi@6880 3494 // get the method & index of the invoke, and push the return address of
aoqi@1 3495 // the invoke(first word in the frame)
aoqi@1 3496 // this address is where the return code jmp to.
aoqi@1 3497 // NOTE : this method will set T3&T1 as recv&flags
aoqi@1 3498 void TemplateTable::prepare_invoke(int byte_no,
aoqi@6880 3499 Register method, // linked method (or i-klass)
aoqi@6880 3500 Register index, // itable index, MethodType, etc.
aoqi@6880 3501 Register recv, // if caller wants to see it
aoqi@6880 3502 Register flags // if caller wants to test it
aoqi@6880 3503 ) {
aoqi@1 3504 // determine flags
aoqi@1 3505 const Bytecodes::Code code = bytecode();
aoqi@1 3506 const bool is_invokeinterface = code == Bytecodes::_invokeinterface;
aoqi@1 3507 const bool is_invokedynamic = code == Bytecodes::_invokedynamic;
aoqi@1 3508 const bool is_invokehandle = code == Bytecodes::_invokehandle;
aoqi@1 3509 const bool is_invokevirtual = code == Bytecodes::_invokevirtual;
aoqi@1 3510 const bool is_invokespecial = code == Bytecodes::_invokespecial;
aoqi@1 3511 const bool load_receiver = (recv != noreg);
aoqi@1 3512 const bool save_flags = (flags != noreg);
aoqi@1 3513 assert(load_receiver == (code != Bytecodes::_invokestatic && code != Bytecodes::_invokedynamic),"");
aoqi@1 3514 assert(save_flags == (is_invokeinterface || is_invokevirtual), "need flags for vfinal");
aoqi@1 3515 assert(flags == noreg || flags == T1, "error flags reg.");
aoqi@1 3516 assert(recv == noreg || recv == T3, "error recv reg.");
aoqi@6880 3517
aoqi@1 3518 // setup registers & access constant pool cache
aoqi@1 3519 if(recv == noreg) recv = T3;
aoqi@1 3520 if(flags == noreg) flags = T1;
aoqi@1 3521 assert_different_registers(method, index, recv, flags);
aoqi@1 3522
aoqi@1 3523 // save 'interpreter return address'
aoqi@1 3524 __ save_bcp();
aoqi@1 3525
aoqi@1 3526 load_invoke_cp_cache_entry(byte_no, method, index, flags, is_invokevirtual, false, is_invokedynamic);
aoqi@6880 3527
aoqi@1 3528 if (is_invokedynamic || is_invokehandle) {
aoqi@1 3529 Label L_no_push;
aoqi@1 3530 __ move(AT, (1 << ConstantPoolCacheEntry::has_appendix_shift));
aoqi@1 3531 __ andr(AT, AT, flags);
aoqi@1 3532 __ beq(AT, R0, L_no_push);
aoqi@1 3533 __ delayed()->nop();
aoqi@1 3534 // Push the appendix as a trailing parameter.
aoqi@1 3535 // This must be done before we get the receiver,
aoqi@1 3536 // since the parameter_size includes it.
aoqi@1 3537 Register tmp = SSR;
aoqi@1 3538 __ push(tmp);
aoqi@1 3539 __ move(tmp, index);
aoqi@1 3540 assert(ConstantPoolCacheEntry::_indy_resolved_references_appendix_offset == 0, "appendix expected at index+0");
aoqi@1 3541 __ load_resolved_reference_at_index(index, tmp);
aoqi@1 3542 __ pop(tmp);
aoqi@1 3543 __ push(index); // push appendix (MethodType, CallSite, etc.)
aoqi@1 3544 __ bind(L_no_push);
aoqi@1 3545 }
aoqi@1 3546
aoqi@6880 3547 // load receiver if needed (after appendix is pushed so parameter size is correct)
aoqi@6880 3548 // Note: no return address pushed yet
aoqi@1 3549 if (load_receiver) {
aoqi@6880 3550 __ move(AT, ConstantPoolCacheEntry::parameter_size_mask);
aoqi@6880 3551 __ andr(recv, flags, AT);
aoqi@6880 3552 // 2014/07/31 Fu: Since we won't push RA on stack, no_return_pc_pushed_yet should be 0.
aoqi@6880 3553 const int no_return_pc_pushed_yet = 0; // argument slot correction before we push return address
aoqi@6880 3554 const int receiver_is_at_end = -1; // back off one slot to get receiver
aoqi@6880 3555 Address recv_addr = __ argument_address(recv, no_return_pc_pushed_yet + receiver_is_at_end);
aoqi@6880 3556 __ ld(recv, recv_addr);
aoqi@6880 3557 __ verify_oop(recv);
aoqi@1 3558 }
aoqi@1 3559 if(save_flags) {
aoqi@1 3560 __ move(BCP, flags);
aoqi@1 3561 }
aoqi@6880 3562
aoqi@1 3563 // compute return type
aoqi@1 3564 __ dsrl(flags, flags, ConstantPoolCacheEntry::tos_state_shift);
aoqi@1 3565 __ andi(flags, flags, 0xf);
aoqi@1 3566
aoqi@1 3567 // Make sure we don't need to mask flags for tos_state_shift after the above shift
aoqi@1 3568 ConstantPoolCacheEntry::verify_tos_state_shift();
aoqi@1 3569 // load return address
aoqi@6880 3570 {
aoqi@1 3571 const address table = (address) Interpreter::invoke_return_entry_table_for(code);
aoqi@1 3572 __ li(AT, (long)table);
aoqi@1 3573 __ dsll(flags, flags, LogBytesPerWord);
aoqi@1 3574 __ dadd(AT, AT, flags);
aoqi@1 3575 __ ld(RA, AT, 0);
aoqi@1 3576 }
aoqi@6880 3577
aoqi@1 3578 if (save_flags) {
aoqi@1 3579 __ move(flags, BCP);
aoqi@1 3580 __ restore_bcp();
aoqi@1 3581 }
aoqi@1 3582 }
aoqi@1 3583
aoqi@1 3584 // used registers : T0, T3, T1, T2
aoqi@1 3585 // T3 : recv, this two register using convention is by prepare_invoke
aoqi@1 3586 // T1 : flags, klass
aoqi@1 3587 // Rmethod : method, index must be Rmethod
aoqi@6880 3588 void TemplateTable::invokevirtual_helper(Register index,
aoqi@6880 3589 Register recv,
aoqi@6880 3590 Register flags) {
aoqi@1 3591
aoqi@1 3592 assert_different_registers(index, recv, flags, T2);
aoqi@1 3593
aoqi@1 3594 // Test for an invoke of a final method
aoqi@1 3595 Label notFinal;
aoqi@1 3596 __ move(AT, (1 << ConstantPoolCacheEntry::is_vfinal_shift));
aoqi@1 3597 __ andr(AT, flags, AT);
aoqi@1 3598 __ beq(AT, R0, notFinal);
aoqi@1 3599 __ delayed()->nop();
aoqi@1 3600
aoqi@1 3601 Register method = index; // method must be Rmethod
aoqi@1 3602 assert(method == Rmethod, "methodOop must be Rmethod for interpreter calling convention");
aoqi@1 3603
aoqi@1 3604 // do the call - the index is actually the method to call
aoqi@6880 3605 // the index is indeed methodOop, for this is vfinal,
aoqi@1 3606 // see ConstantPoolCacheEntry::set_method for more info
aoqi@1 3607
aoqi@1 3608 __ verify_oop(method);
aoqi@1 3609
aoqi@1 3610 // It's final, need a null check here!
aoqi@1 3611 __ null_check(recv);
aoqi@1 3612
aoqi@1 3613 // profile this call
aoqi@1 3614 __ profile_final_call(T2);
aoqi@1 3615
aoqi@6880 3616 // 2014/11/24 Fu
aoqi@1 3617 // T2: tmp, used for mdp
aoqi@1 3618 // method: callee
aoqi@1 3619 // T9: tmp
aoqi@6880 3620 // is_virtual: true
aoqi@1 3621 __ profile_arguments_type(T2, method, T9, true);
aoqi@1 3622
aoqi@1 3623 __ jump_from_interpreted(method, T2);
aoqi@1 3624
aoqi@1 3625 __ bind(notFinal);
aoqi@1 3626
aoqi@1 3627 // get receiver klass
aoqi@1 3628 __ null_check(recv, oopDesc::klass_offset_in_bytes());
aoqi@1 3629 __ load_klass(T2, recv);
aoqi@1 3630 __ verify_oop(T2);
aoqi@6880 3631
aoqi@1 3632 // profile this call
aoqi@1 3633 __ profile_virtual_call(T2, T0, T1);
aoqi@1 3634
aoqi@1 3635 // get target methodOop & entry point
aoqi@6880 3636 const int base = InstanceKlass::vtable_start_offset() * wordSize;
fujie@211 3637 assert(vtableEntry::size() * wordSize == wordSize, "adjust the scaling in the code below");
fujie@211 3638 __ dsll(AT, index, Address::times_ptr);
fujie@211 3639 // T2: receiver
aoqi@1 3640 __ dadd(AT, T2, AT);
aoqi@6880 3641 //this is a ualign read
aoqi@1 3642 __ ld(method, AT, base + vtableEntry::method_offset_in_bytes());
fujie@211 3643 __ profile_arguments_type(T2, method, T9, true);
aoqi@1 3644 __ jump_from_interpreted(method, T2);
aoqi@1 3645
aoqi@1 3646 }
aoqi@1 3647
aoqi@1 3648 void TemplateTable::invokevirtual(int byte_no) {
aoqi@1 3649 transition(vtos, vtos);
aoqi@1 3650 assert(byte_no == f2_byte, "use this argument");
aoqi@1 3651 prepare_invoke(byte_no, Rmethod, NOREG, T3, T1);
aoqi@1 3652 // now recv & flags in T3, T1
aoqi@1 3653 invokevirtual_helper(Rmethod, T3, T1);
aoqi@1 3654 }
aoqi@1 3655
aoqi@1 3656 // T9 : entry
aoqi@1 3657 // Rmethod : method
aoqi@1 3658 void TemplateTable::invokespecial(int byte_no) {
aoqi@1 3659 transition(vtos, vtos);
aoqi@1 3660 assert(byte_no == f1_byte, "use this argument");
aoqi@1 3661 prepare_invoke(byte_no, Rmethod, NOREG, T3);
aoqi@1 3662 // now recv & flags in T3, T1
aoqi@1 3663 __ verify_oop(T3);
aoqi@1 3664 __ null_check(T3);
aoqi@1 3665 __ profile_call(T9);
aoqi@1 3666
aoqi@6880 3667 // 2014/11/24 Fu
aoqi@1 3668 // T8: tmp, used for mdp
aoqi@1 3669 // Rmethod: callee
aoqi@1 3670 // T9: tmp
aoqi@6880 3671 // is_virtual: false
aoqi@1 3672 __ profile_arguments_type(T8, Rmethod, T9, false);
aoqi@1 3673
aoqi@1 3674 __ jump_from_interpreted(Rmethod, T9);
aoqi@1 3675 __ move(T0, T3);//aoqi ?
aoqi@1 3676 }
aoqi@1 3677
aoqi@1 3678 void TemplateTable::invokestatic(int byte_no) {
aoqi@1 3679 transition(vtos, vtos);
aoqi@1 3680 assert(byte_no == f1_byte, "use this argument");
aoqi@1 3681 prepare_invoke(byte_no, Rmethod, NOREG);
aoqi@1 3682 __ verify_oop(Rmethod);
aoqi@1 3683
aoqi@1 3684 __ profile_call(T9);
aoqi@1 3685
aoqi@6880 3686 // 2014/11/24 Fu
aoqi@1 3687 // T8: tmp, used for mdp
aoqi@1 3688 // Rmethod: callee
aoqi@1 3689 // T9: tmp
aoqi@6880 3690 // is_virtual: false
aoqi@1 3691 __ profile_arguments_type(T8, Rmethod, T9, false);
aoqi@1 3692
aoqi@1 3693 __ jump_from_interpreted(Rmethod, T9);
aoqi@1 3694 }
aoqi@1 3695
aoqi@6880 3696 // i have no idea what to do here, now. for future change. FIXME.
aoqi@1 3697 void TemplateTable::fast_invokevfinal(int byte_no) {
aoqi@6880 3698 transition(vtos, vtos);
aoqi@6880 3699 assert(byte_no == f2_byte, "use this argument");
aoqi@6880 3700 __ stop("fast_invokevfinal not used on mips64");
aoqi@1 3701 }
aoqi@1 3702
aoqi@1 3703 // used registers : T0, T1, T2, T3, T1, A7
aoqi@1 3704 // T0 : itable, vtable, entry
aoqi@1 3705 // T1 : interface
aoqi@1 3706 // T3 : receiver
aoqi@1 3707 // T1 : flags, klass
aoqi@1 3708 // Rmethod : index, method, this is required by interpreter_entry
aoqi@1 3709 void TemplateTable::invokeinterface(int byte_no) {
aoqi@1 3710 transition(vtos, vtos);
aoqi@1 3711 //this method will use T1-T4 and T0
aoqi@1 3712 assert(byte_no == f1_byte, "use this argument");
aoqi@1 3713 prepare_invoke(byte_no, T2, Rmethod, T3, T1);
aoqi@1 3714 // T2: Interface
aoqi@1 3715 // Rmethod: index
aoqi@6880 3716 // T3: receiver
aoqi@1 3717 // T1: flags
aoqi@6880 3718
aoqi@6880 3719 // Special case of invokeinterface called for virtual method of
aoqi@6880 3720 // java.lang.Object. See cpCacheOop.cpp for details.
aoqi@6880 3721 // This code isn't produced by javac, but could be produced by
aoqi@6880 3722 // another compliant java compiler.
aoqi@1 3723 Label notMethod;
aoqi@1 3724 __ move(AT, (1 << ConstantPoolCacheEntry::is_forced_virtual_shift));
aoqi@1 3725 __ andr(AT, T1, AT);
aoqi@1 3726 __ beq(AT, R0, notMethod);
aoqi@1 3727 __ delayed()->nop();
aoqi@1 3728
aoqi@1 3729 invokevirtual_helper(Rmethod, T3, T1);
aoqi@1 3730 __ bind(notMethod);
aoqi@1 3731 // Get receiver klass into T1 - also a null check
aoqi@1 3732 //add for compressedoops
aoqi@1 3733 __ load_klass(T1, T3);
aoqi@1 3734 __ verify_oop(T1);
aoqi@1 3735
aoqi@1 3736 // profile this call
aoqi@1 3737 __ profile_virtual_call(T1, T0, FSR);
aoqi@1 3738
aoqi@1 3739 // Compute start of first itableOffsetEntry (which is at the end of the vtable)
aoqi@1 3740 // TODO: x86 add a new method lookup_interface_method // LEE
aoqi@6880 3741 const int base = InstanceKlass::vtable_start_offset() * wordSize;
aoqi@1 3742 assert(vtableEntry::size() * wordSize == 8, "adjust the scaling in the code below");
aoqi@1 3743 __ lw(AT, T1, InstanceKlass::vtable_length_offset() * wordSize);
aoqi@1 3744 __ dsll(AT, AT, Address::times_8);
aoqi@1 3745 __ dadd(T0, T1, AT);
aoqi@1 3746 __ daddi(T0, T0, base);
aoqi@1 3747 if (HeapWordsPerLong > 1) {
aoqi@1 3748 // Round up to align_object_offset boundary
aoqi@1 3749 __ round_to(T0, BytesPerLong);
aoqi@1 3750 }
aoqi@1 3751 // now T0 is the begin of the itable
aoqi@1 3752
aoqi@1 3753 Label entry, search, interface_ok;
aoqi@1 3754
aoqi@6880 3755 ///__ jmp(entry);
aoqi@1 3756 __ b(entry);
aoqi@1 3757 __ delayed()->nop();
aoqi@1 3758
aoqi@1 3759 __ bind(search);
aoqi@1 3760 __ increment(T0, itableOffsetEntry::size() * wordSize);
aoqi@1 3761
aoqi@1 3762 __ bind(entry);
aoqi@1 3763
aoqi@1 3764 // Check that the entry is non-null. A null entry means that the receiver
aoqi@1 3765 // class doesn't implement the interface, and wasn't the same as the
aoqi@1 3766 // receiver class checked when the interface was resolved.
aoqi@1 3767 __ ld(AT, T0, itableOffsetEntry::interface_offset_in_bytes());
aoqi@1 3768 __ bne(AT, R0, interface_ok);
aoqi@1 3769 __ delayed()->nop();
aoqi@1 3770 // throw exception
aoqi@1 3771 // the call_VM checks for exception, so we should never return here.
aoqi@1 3772
aoqi@6880 3773 //__ pop();//FIXME here,
aoqi@6880 3774 // pop return address (pushed by prepare_invoke).
aoqi@1 3775 // no need now, we just save the value in RA now
aoqi@1 3776
aoqi@1 3777 __ call_VM(NOREG, CAST_FROM_FN_PTR(address, InterpreterRuntime::throw_IncompatibleClassChangeError));
aoqi@1 3778 __ should_not_reach_here();
aoqi@1 3779
aoqi@1 3780 __ bind(interface_ok);
aoqi@6880 3781 //NOTICE here, no pop as x86 do
aoqi@1 3782 __ bne(AT, T2, search);
aoqi@1 3783 __ delayed()->nop();
aoqi@1 3784
aoqi@1 3785 // now we get vtable of the interface
aoqi@1 3786 __ ld(T0, T0, itableOffsetEntry::offset_offset_in_bytes());
aoqi@1 3787 __ daddu(T0, T1, T0);
aoqi@1 3788 assert(itableMethodEntry::size() * wordSize == 8, "adjust the scaling in the code below");
aoqi@1 3789 __ dsll(AT, Rmethod, Address::times_8);
aoqi@1 3790 __ daddu(AT, T0, AT);
aoqi@1 3791 // now we get the method
aoqi@1 3792 __ ld(Rmethod, AT, 0);
aoqi@1 3793 // Rnext: methodOop to call
aoqi@1 3794 // T3: receiver
aoqi@1 3795 // Check for abstract method error
aoqi@1 3796 // Note: This should be done more efficiently via a throw_abstract_method_error
aoqi@1 3797 // interpreter entry point and a conditional jump to it in case of a null
aoqi@1 3798 // method.
aoqi@6880 3799 {
aoqi@1 3800 Label L;
aoqi@1 3801 __ bne(Rmethod, R0, L);
aoqi@1 3802 __ delayed()->nop();
aoqi@1 3803
aoqi@1 3804 // throw exception
aoqi@1 3805 // note: must restore interpreter registers to canonical
aoqi@1 3806 // state for exception handling to work correctly!
aoqi@1 3807 ///__ popl(ebx); // pop return address (pushed by prepare_invoke)
aoqi@6880 3808 //__ restore_bcp(); // esi must be correct for exception handler
aoqi@1 3809 //(was destroyed)
aoqi@6880 3810 //__ restore_locals(); // make sure locals pointer
aoqi@1 3811 //is correct as well (was destroyed)
aoqi@6880 3812 ///__ call_VM(noreg, CAST_FROM_FN_PTR(address,
aoqi@1 3813 //InterpreterRuntime::throw_AbstractMethodError));
aoqi@1 3814 __ call_VM(NOREG, CAST_FROM_FN_PTR(address, InterpreterRuntime::throw_AbstractMethodError));
aoqi@1 3815 // the call_VM checks for exception, so we should never return here.
aoqi@1 3816 __ should_not_reach_here();
aoqi@1 3817 __ bind(L);
aoqi@1 3818 }
aoqi@6880 3819
aoqi@6880 3820 // 2014/11/24 Fu
aoqi@1 3821 // T8: tmp, used for mdp
aoqi@1 3822 // Rmethod: callee
aoqi@1 3823 // T9: tmp
aoqi@1 3824 // is_virtual: true
aoqi@1 3825 __ profile_arguments_type(T8, Rmethod, T9, true);
aoqi@1 3826
aoqi@1 3827 __ jump_from_interpreted(Rmethod, T9);
aoqi@1 3828 }
aoqi@1 3829
aoqi@6880 3830
aoqi@1 3831 void TemplateTable::invokehandle(int byte_no) {
aoqi@1 3832 transition(vtos, vtos);
aoqi@1 3833 assert(byte_no == f1_byte, "use this argument");
aoqi@1 3834 const Register T2_method = Rmethod;
aoqi@1 3835 const Register FSR_mtype = FSR;
aoqi@1 3836 const Register T3_recv = T3;
aoqi@1 3837
aoqi@1 3838 if (!EnableInvokeDynamic) {
aoqi@1 3839 // rewriter does not generate this bytecode
aoqi@1 3840 __ should_not_reach_here();
aoqi@1 3841 return;
aoqi@1 3842 }
aoqi@6880 3843
aoqi@1 3844 prepare_invoke(byte_no, T2_method, FSR_mtype, T3_recv);
aoqi@1 3845 //??__ verify_method_ptr(T2_method);
aoqi@1 3846 __ verify_oop(T3_recv);
aoqi@1 3847 __ null_check(T3_recv);
aoqi@6880 3848
aoqi@1 3849 // rax: MethodType object (from cpool->resolved_references[f1], if necessary)
aoqi@1 3850 // rbx: MH.invokeExact_MT method (from f2)
aoqi@6880 3851
aoqi@1 3852 // Note: rax_mtype is already pushed (if necessary) by prepare_invoke
aoqi@6880 3853
aoqi@1 3854 // FIXME: profile the LambdaForm also
aoqi@1 3855 __ profile_final_call(T9);
aoqi@1 3856
aoqi@6880 3857 // 2014/11/24 Fu
aoqi@1 3858 // T8: tmp, used for mdp
aoqi@1 3859 // T2_method: callee
aoqi@1 3860 // T9: tmp
aoqi@1 3861 // is_virtual: true
aoqi@1 3862 __ profile_arguments_type(T8, T2_method, T9, true);
aoqi@6880 3863
aoqi@1 3864 __ jump_from_interpreted(T2_method, T9);
aoqi@1 3865 }
aoqi@1 3866
aoqi@1 3867 void TemplateTable::invokedynamic(int byte_no) {
aoqi@1 3868 transition(vtos, vtos);
aoqi@1 3869 assert(byte_no == f1_byte, "use this argument");
aoqi@6880 3870
aoqi@1 3871 if (!EnableInvokeDynamic) {
aoqi@1 3872 // We should not encounter this bytecode if !EnableInvokeDynamic.
aoqi@1 3873 // The verifier will stop it. However, if we get past the verifier,
aoqi@1 3874 // this will stop the thread in a reasonable way, without crashing the JVM.
aoqi@1 3875 __ call_VM(noreg, CAST_FROM_FN_PTR(address,
aoqi@1 3876 InterpreterRuntime::throw_IncompatibleClassChangeError));
aoqi@1 3877 // the call_VM checks for exception, so we should never return here.
aoqi@1 3878 __ should_not_reach_here();
aoqi@1 3879 return;
aoqi@1 3880 }
aoqi@6880 3881
aoqi@1 3882 //const Register Rmethod = T2;
aoqi@1 3883 const Register T2_callsite = T2;
aoqi@6880 3884
aoqi@1 3885 prepare_invoke(byte_no, Rmethod, T2_callsite);
aoqi@6880 3886
aoqi@1 3887 // rax: CallSite object (from cpool->resolved_references[f1])
aoqi@1 3888 // rbx: MH.linkToCallSite method (from f2)
aoqi@6880 3889
aoqi@1 3890 // Note: rax_callsite is already pushed by prepare_invoke
aoqi@1 3891 // %%% should make a type profile for any invokedynamic that takes a ref argument
aoqi@1 3892 // profile this call
aoqi@1 3893 __ profile_call(T9);
aoqi@1 3894
aoqi@6880 3895 // 2014/11/24 Fu
aoqi@1 3896 // T8: tmp, used for mdp
aoqi@1 3897 // Rmethod: callee
aoqi@1 3898 // T9: tmp
aoqi@6880 3899 // is_virtual: false
aoqi@1 3900 __ profile_arguments_type(T8, Rmethod, T9, false);
aoqi@1 3901
aoqi@1 3902 __ verify_oop(T2_callsite);
aoqi@6880 3903
aoqi@1 3904 __ jump_from_interpreted(Rmethod, T9);
aoqi@1 3905 }
aoqi@1 3906
aoqi@6880 3907 //-----------------------------------------------------------------------------
aoqi@1 3908 // Allocation
aoqi@1 3909 // T1 : tags & buffer end & thread
aoqi@1 3910 // T2 : object end
aoqi@1 3911 // T3 : klass
aoqi@1 3912 // T1 : object size
aoqi@1 3913 // A1 : cpool
aoqi@1 3914 // A2 : cp index
aoqi@1 3915 // return object in FSR
aoqi@1 3916 void TemplateTable::_new() {
aoqi@1 3917 transition(vtos, atos);
aoqi@16 3918 __ get_2_byte_integer_at_bcp(A2, AT, 1);
aoqi@1 3919 __ huswap(A2);
aoqi@1 3920
aoqi@1 3921 Label slow_case;
aoqi@1 3922 Label done;
aoqi@1 3923 Label initialize_header;
aoqi@6880 3924 Label initialize_object; // including clearing the fields
aoqi@1 3925 Label allocate_shared;
aoqi@1 3926
aoqi@1 3927 // get InstanceKlass in T3
aoqi@1 3928 __ get_cpool_and_tags(A1, T1);
aoqi@1 3929 __ dsll(AT, A2, Address::times_8);
aoqi@1 3930 __ dadd(AT, A1, AT);
aoqi@1 3931 __ ld(T3, AT, sizeof(ConstantPool));
aoqi@1 3932
aoqi@6880 3933 // make sure the class we're about to instantiate has been resolved.
aoqi@1 3934 // Note: slow_case does a pop of stack, which is why we loaded class/pushed above
aoqi@1 3935 const int tags_offset = Array<u1>::base_offset_in_bytes();
aoqi@1 3936 __ dadd(T1, T1, A2);
aoqi@1 3937 __ lb(AT, T1, tags_offset);
aoqi@1 3938 __ daddiu(AT, AT, - (int)JVM_CONSTANT_Class);
aoqi@1 3939 __ bne(AT, R0, slow_case);
aoqi@1 3940 __ delayed()->nop();
aoqi@1 3941
aoqi@6880 3942
aoqi@6880 3943 // make sure klass is initialized & doesn't have finalizer
aoqi@1 3944 // make sure klass is fully initialized
Jin@2 3945 __ lhu(T1, T3, in_bytes(InstanceKlass::init_state_offset()));
aoqi@1 3946 __ daddiu(AT, T1, - (int)InstanceKlass::fully_initialized);
aoqi@1 3947 __ bne(AT, R0, slow_case);
aoqi@1 3948 __ delayed()->nop();
aoqi@1 3949
aoqi@1 3950 // has_finalizer
aoqi@1 3951 //__ lw(T1, T3, Klass::access_flags_offset() + sizeof(oopDesc));
aoqi@1 3952 //__ move(AT, JVM_ACC_CAN_BE_FASTPATH_ALLOCATED);
aoqi@1 3953 //__ andr(AT, T1, AT);
aoqi@1 3954 __ lw(T1, T3, in_bytes(Klass::layout_helper_offset()) );
aoqi@1 3955 __ andi(AT, T1, Klass::_lh_instance_slow_path_bit);
aoqi@1 3956 __ bne(AT, R0, slow_case);
aoqi@1 3957 __ delayed()->nop();
aoqi@1 3958
aoqi@6880 3959 // get instance_size in InstanceKlass (already aligned) in T0,
aoqi@6880 3960 // be sure to preserve this value
aoqi@1 3961 __ lw(T0, T3, in_bytes(Klass::layout_helper_offset()) );
aoqi@1 3962
aoqi@1 3963 // Allocate the instance
aoqi@1 3964 // 1) Try to allocate in the TLAB
aoqi@1 3965 // 2) if fail and the object is large allocate in the shared Eden
aoqi@1 3966 // 3) if the above fails (or is not applicable), go to a slow case
aoqi@1 3967 // (creates a new TLAB, etc.)
aoqi@1 3968
aoqi@1 3969 const bool allow_shared_alloc =
aoqi@1 3970 Universe::heap()->supports_inline_contig_alloc() && !CMSIncrementalMode;
aoqi@1 3971
aoqi@1 3972 if (UseTLAB) {
aoqi@1 3973 #ifndef OPT_THREAD
aoqi@1 3974 const Register thread = T8;
aoqi@1 3975 __ get_thread(thread);
aoqi@1 3976 #else
aoqi@1 3977 const Register thread = TREG;
aoqi@1 3978 #endif
aoqi@1 3979 // get tlab_top
aoqi@1 3980 __ ld(FSR, thread, in_bytes(JavaThread::tlab_top_offset()));
aoqi@1 3981 __ dadd(T2, FSR, T0);
aoqi@1 3982 // get tlab_end
aoqi@1 3983 __ ld(AT, thread, in_bytes(JavaThread::tlab_end_offset()));
aoqi@1 3984 __ slt(AT, AT, T2);
aoqi@1 3985 __ bne(AT, R0, allow_shared_alloc ? allocate_shared : slow_case);
aoqi@1 3986 __ delayed()->nop();
aoqi@1 3987 __ sd(T2, thread, in_bytes(JavaThread::tlab_top_offset()));
aoqi@1 3988
aoqi@1 3989 if (ZeroTLAB) {
aoqi@1 3990 // the fields have been already cleared
aoqi@1 3991 __ b_far(initialize_header);
aoqi@1 3992 } else {
aoqi@1 3993 // initialize both the header and fields
aoqi@1 3994 __ b_far(initialize_object);
aoqi@1 3995 }
aoqi@1 3996 __ delayed()->nop();
aoqi@1 3997 }
aoqi@1 3998
aoqi@1 3999 // Allocation in the shared Eden , if allowed
aoqi@1 4000 // T0 : instance size in words
aoqi@6880 4001 if(allow_shared_alloc){
aoqi@1 4002 __ bind(allocate_shared);
aoqi@6880 4003
aoqi@1 4004 Label retry;
aoqi@1 4005 Address heap_top(T1);
aoqi@1 4006 __ li(T1, (long)Universe::heap()->top_addr());
aoqi@1 4007
aoqi@1 4008 __ ld(FSR, heap_top);
aoqi@1 4009 __ bind(retry);
aoqi@1 4010 __ dadd(T2, FSR, T0);
aoqi@1 4011 __ li(AT, (long)Universe::heap()->end_addr());
aoqi@1 4012 __ ld(AT, AT, 0);
aoqi@1 4013 __ slt(AT, AT, T2);
aoqi@1 4014 __ bne(AT, R0, slow_case);
aoqi@1 4015 __ delayed()->nop();
aoqi@1 4016
aoqi@1 4017 // Compare FSR with the top addr, and if still equal, store the new
aoqi@1 4018 // top addr in ebx at the address of the top addr pointer. Sets ZF if was
aoqi@1 4019 // equal, and clears it otherwise. Use lock prefix for atomicity on MPs.
aoqi@1 4020 //
aoqi@1 4021 // FSR: object begin
aoqi@1 4022 // T2: object end
aoqi@1 4023 // T0: instance size in words
aoqi@1 4024
aoqi@6880 4025 // if someone beat us on the allocation, try again, otherwise continue
aoqi@1 4026 __ cmpxchg(T2, heap_top, FSR);
aoqi@1 4027 __ beq(AT, R0, retry);
aoqi@1 4028 __ delayed()->nop();
aoqi@1 4029 }
aoqi@1 4030
aoqi@1 4031 if (UseTLAB || Universe::heap()->supports_inline_contig_alloc()) {
aoqi@1 4032 // The object is initialized before the header. If the object size is
aoqi@1 4033 // zero, go directly to the header initialization.
aoqi@1 4034 __ bind(initialize_object);
aoqi@1 4035 __ li(AT, - sizeof(oopDesc));
aoqi@1 4036 __ daddu(T0, T0, AT);
aoqi@1 4037 __ beq_far(T0, R0, initialize_header);
aoqi@1 4038 __ delayed()->nop();
aoqi@1 4039
aoqi@1 4040
aoqi@1 4041 // T0 must have been multiple of 2
aoqi@1 4042 #ifdef ASSERT
aoqi@1 4043 // make sure T0 was multiple of 2
aoqi@1 4044 Label L;
aoqi@1 4045 __ andi(AT, T0, 1);
aoqi@1 4046 __ beq(AT, R0, L);
aoqi@1 4047 __ delayed()->nop();
aoqi@1 4048 __ stop("object size is not multiple of 2 - adjust this code");
aoqi@1 4049 __ bind(L);
aoqi@1 4050 // edx must be > 0, no extra check needed here
aoqi@1 4051 #endif
aoqi@1 4052
aoqi@1 4053 // initialize remaining object fields: T0 is a multiple of 2
aoqi@6880 4054 {
aoqi@1 4055 Label loop;
aoqi@1 4056 __ dadd(T1, FSR, T0);
aoqi@1 4057 __ daddi(T1, T1, -oopSize);
aoqi@1 4058
aoqi@1 4059 __ bind(loop);
aoqi@1 4060 __ sd(R0, T1, sizeof(oopDesc) + 0 * oopSize);
aoqi@1 4061 __ bne(T1, FSR, loop); //dont clear header
aoqi@1 4062 __ delayed()->daddi(T1, T1, -oopSize);
aoqi@6880 4063 // actually sizeof(oopDesc)==8, so we can move
aoqi@1 4064 // __ addiu(AT, AT, -8) to delay slot, and compare FSR with T1
aoqi@1 4065 }
aoqi@6880 4066 //klass in T3,
aoqi@1 4067 // initialize object header only.
aoqi@1 4068 __ bind(initialize_header);
aoqi@1 4069 if (UseBiasedLocking) {
aoqi@6880 4070 __ ld(AT, T3, in_bytes(Klass::prototype_header_offset()));
aoqi@6880 4071 __ sd(AT, FSR, oopDesc::mark_offset_in_bytes ());
aoqi@1 4072 } else {
aoqi@1 4073 __ li(AT, (long)markOopDesc::prototype());
aoqi@1 4074 __ sd(AT, FSR, oopDesc::mark_offset_in_bytes());
aoqi@1 4075 }
aoqi@1 4076
aoqi@1 4077 __ store_klass_gap(FSR, R0);
aoqi@1 4078 __ store_klass(FSR, T3);
aoqi@1 4079
aoqi@1 4080 {
aoqi@1 4081 SkipIfEqual skip_if(_masm, &DTraceAllocProbes, 0);
aoqi@1 4082 // Trigger dtrace event for fastpath
aoqi@1 4083 __ push(atos);
aoqi@1 4084 __ call_VM_leaf(
aoqi@6880 4085 CAST_FROM_FN_PTR(address, SharedRuntime::dtrace_object_alloc), FSR);
aoqi@1 4086 __ pop(atos);
aoqi@6880 4087
aoqi@1 4088 }
aoqi@1 4089 __ b(done);
aoqi@1 4090 __ delayed()->nop();
aoqi@6880 4091 }
aoqi@6880 4092
aoqi@1 4093 // slow case
aoqi@1 4094 __ bind(slow_case);
aoqi@1 4095 call_VM(FSR, CAST_FROM_FN_PTR(address, InterpreterRuntime::_new), A1, A2);
aoqi@1 4096
aoqi@1 4097 // continue
aoqi@1 4098 __ bind(done);
fujie@32 4099 __ sync();
aoqi@1 4100 }
aoqi@1 4101
aoqi@1 4102 void TemplateTable::newarray() {
aoqi@6880 4103 transition(itos, atos);
aoqi@6880 4104 __ lbu(A1, at_bcp(1));
aoqi@6880 4105 //type, count
aoqi@6880 4106 call_VM(FSR, CAST_FROM_FN_PTR(address, InterpreterRuntime::newarray), A1, FSR);
aoqi@6880 4107 __ sync();
aoqi@1 4108 }
aoqi@1 4109
aoqi@1 4110 void TemplateTable::anewarray() {
aoqi@1 4111 transition(itos, atos);
aoqi@16 4112 __ get_2_byte_integer_at_bcp(A2, AT, 1);
aoqi@1 4113 __ huswap(A2);
aoqi@1 4114 __ get_constant_pool(A1);
aoqi@1 4115 // cp, index, count
aoqi@1 4116 call_VM(FSR, CAST_FROM_FN_PTR(address, InterpreterRuntime::anewarray), A1, A2, FSR);
fujie@32 4117 __ sync();
aoqi@1 4118 }
aoqi@1 4119
aoqi@1 4120 void TemplateTable::arraylength() {
aoqi@1 4121 transition(atos, itos);
aoqi@1 4122 __ null_check(FSR, arrayOopDesc::length_offset_in_bytes());
aoqi@1 4123 __ lw(FSR, FSR, arrayOopDesc::length_offset_in_bytes());
aoqi@1 4124 }
aoqi@1 4125
aoqi@1 4126 // i use T2 as ebx, T3 as ecx, T1 as edx
aoqi@1 4127 // when invoke gen_subtype_check, super in T3, sub in T2, object in FSR(it's always)
aoqi@1 4128 // T2 : sub klass
aoqi@1 4129 // T3 : cpool
aoqi@1 4130 // T3 : super klass
aoqi@1 4131 void TemplateTable::checkcast() {
aoqi@1 4132 transition(atos, atos);
aoqi@1 4133 Label done, is_null, ok_is_subtype, quicked, resolved;
aoqi@1 4134 __ beq(FSR, R0, is_null);
aoqi@1 4135 __ delayed()->nop();
aoqi@1 4136
aoqi@1 4137 // Get cpool & tags index
aoqi@1 4138 __ get_cpool_and_tags(T3, T1);
aoqi@16 4139 __ get_2_byte_integer_at_bcp(T2, AT, 1);
aoqi@1 4140 __ huswap(T2);
aoqi@1 4141
aoqi@1 4142 // See if bytecode has already been quicked
aoqi@1 4143 __ dadd(AT, T1, T2);
aoqi@1 4144 __ lb(AT, AT, Array<u1>::base_offset_in_bytes());
aoqi@1 4145 __ daddiu(AT, AT, - (int)JVM_CONSTANT_Class);
aoqi@1 4146 __ beq(AT, R0, quicked);
aoqi@1 4147 __ delayed()->nop();
aoqi@1 4148
aoqi@1 4149 /* 2012/6/2 Jin: In InterpreterRuntime::quicken_io_cc, lots of new classes may be loaded.
aoqi@1 4150 * Then, GC will move the object in V0 to another places in heap.
aoqi@1 4151 * Therefore, We should never save such an object in register.
aoqi@1 4152 * Instead, we should save it in the stack. It can be modified automatically by the GC thread.
aoqi@1 4153 * After GC, the object address in FSR is changed to a new place.
aoqi@1 4154 */
aoqi@1 4155 __ push(atos);
aoqi@1 4156 const Register thread = TREG;
aoqi@1 4157 #ifndef OPT_THREAD
aoqi@1 4158 __ get_thread(thread);
aoqi@1 4159 #endif
aoqi@1 4160 call_VM(NOREG, CAST_FROM_FN_PTR(address, InterpreterRuntime::quicken_io_cc));
aoqi@1 4161 __ get_vm_result_2(T3, thread);
aoqi@1 4162 __ pop_ptr(FSR);
aoqi@1 4163 __ b(resolved);
aoqi@1 4164 __ delayed()->nop();
aoqi@1 4165
aoqi@1 4166 // klass already in cp, get superklass in T3
aoqi@1 4167 __ bind(quicked);
aoqi@1 4168 __ dsll(AT, T2, Address::times_8);
aoqi@1 4169 __ dadd(AT, T3, AT);
aoqi@1 4170 __ ld(T3, AT, sizeof(ConstantPool));
aoqi@1 4171
aoqi@1 4172 __ bind(resolved);
aoqi@1 4173
aoqi@1 4174 // get subklass in T2
aoqi@1 4175 //add for compressedoops
aoqi@1 4176 __ load_klass(T2, FSR);
aoqi@1 4177 // Superklass in T3. Subklass in T2.
aoqi@1 4178 __ gen_subtype_check(T3, T2, ok_is_subtype);
aoqi@1 4179
aoqi@1 4180 // Come here on failure
aoqi@1 4181 // object is at FSR
aoqi@1 4182 __ jmp(Interpreter::_throw_ClassCastException_entry);
aoqi@1 4183 __ delayed()->nop();
aoqi@1 4184
aoqi@1 4185 // Come here on success
aoqi@1 4186 __ bind(ok_is_subtype);
aoqi@1 4187
aoqi@1 4188 // Collect counts on whether this check-cast sees NULLs a lot or not.
aoqi@1 4189 if (ProfileInterpreter) {
aoqi@6880 4190 __ b(done);
aoqi@6880 4191 __ delayed()->nop();
aoqi@6880 4192 __ bind(is_null);
aoqi@6880 4193 __ profile_null_seen(T3);
aoqi@1 4194 } else {
aoqi@6880 4195 __ bind(is_null);
aoqi@1 4196 }
aoqi@1 4197 __ bind(done);
aoqi@1 4198 }
aoqi@1 4199
aoqi@1 4200 // i use T3 as cpool, T1 as tags, T2 as index
aoqi@1 4201 // object always in FSR, superklass in T3, subklass in T2
aoqi@1 4202 void TemplateTable::instanceof() {
aoqi@1 4203 transition(atos, itos);
aoqi@1 4204 Label done, is_null, ok_is_subtype, quicked, resolved;
aoqi@1 4205
aoqi@1 4206 __ beq(FSR, R0, is_null);
aoqi@1 4207 __ delayed()->nop();
aoqi@1 4208
aoqi@1 4209 // Get cpool & tags index
aoqi@1 4210 __ get_cpool_and_tags(T3, T1);
aoqi@1 4211 // get index
aoqi@16 4212 __ get_2_byte_integer_at_bcp(T2, AT, 1);
aoqi@1 4213 __ hswap(T2);
aoqi@1 4214
aoqi@1 4215 // See if bytecode has already been quicked
aoqi@1 4216 // quicked
aoqi@1 4217 __ daddu(AT, T1, T2);
aoqi@1 4218 __ lb(AT, AT, Array<u1>::base_offset_in_bytes());
aoqi@1 4219 __ daddiu(AT, AT, - (int)JVM_CONSTANT_Class);
aoqi@1 4220 __ beq(AT, R0, quicked);
aoqi@1 4221 __ delayed()->nop();
aoqi@1 4222
aoqi@1 4223 __ push(atos);
aoqi@1 4224 const Register thread = TREG;
aoqi@1 4225 #ifndef OPT_THREAD
aoqi@1 4226 __ get_thread(thread);
aoqi@1 4227 #endif
aoqi@1 4228 call_VM(NOREG, CAST_FROM_FN_PTR(address, InterpreterRuntime::quicken_io_cc));
aoqi@1 4229 __ get_vm_result_2(T3, thread);
aoqi@6880 4230 __ pop_ptr(FSR);
aoqi@1 4231 __ b(resolved);
aoqi@1 4232 __ delayed()->nop();
aoqi@1 4233
aoqi@1 4234 // get superklass in T3, subklass in T2
aoqi@1 4235 __ bind(quicked);
aoqi@1 4236 __ dsll(AT, T2, Address::times_8);
aoqi@1 4237 __ daddu(AT, T3, AT);
aoqi@6880 4238 __ ld(T3, AT, sizeof(ConstantPool));
aoqi@1 4239
aoqi@1 4240 __ bind(resolved);
aoqi@1 4241 // get subklass in T2
aoqi@1 4242 //add for compressedoops
aoqi@1 4243 __ load_klass(T2, FSR);
aoqi@6880 4244
aoqi@1 4245 // Superklass in T3. Subklass in T2.
aoqi@1 4246 __ gen_subtype_check(T3, T2, ok_is_subtype);
aoqi@1 4247 // Come here on failure
aoqi@1 4248 __ b(done);
aoqi@1 4249 __ delayed(); __ move(FSR, R0);
aoqi@1 4250
aoqi@1 4251 // Come here on success
aoqi@1 4252 __ bind(ok_is_subtype);
aoqi@1 4253 __ move(FSR, 1);
aoqi@1 4254
aoqi@1 4255 // Collect counts on whether this test sees NULLs a lot or not.
aoqi@1 4256 if (ProfileInterpreter) {
aoqi@6880 4257 __ beq(R0, R0, done);
aoqi@6880 4258 __ nop();
aoqi@6880 4259 __ bind(is_null);
aoqi@6880 4260 __ profile_null_seen(T3);
aoqi@1 4261 } else {
aoqi@6880 4262 __ bind(is_null); // same as 'done'
aoqi@1 4263 }
aoqi@1 4264 __ bind(done);
aoqi@1 4265 // FSR = 0: obj == NULL or obj is not an instanceof the specified klass
aoqi@1 4266 // FSR = 1: obj != NULL and obj is an instanceof the specified klass
aoqi@1 4267 }
aoqi@1 4268
aoqi@1 4269 //--------------------------------------------------------
aoqi@1 4270 //--------------------------------------------
aoqi@1 4271 // Breakpoints
aoqi@1 4272 void TemplateTable::_breakpoint() {
aoqi@6880 4273 // Note: We get here even if we are single stepping..
aoqi@6880 4274 // jbug inists on setting breakpoints at every bytecode
aoqi@6880 4275 // even if we are in single step mode.
aoqi@6880 4276
aoqi@6880 4277 transition(vtos, vtos);
aoqi@6880 4278
aoqi@6880 4279 // get the unpatched byte code
aoqi@6880 4280 __ get_method(A1);
aoqi@6880 4281 __ call_VM(NOREG,
aoqi@6880 4282 CAST_FROM_FN_PTR(address,
aoqi@6880 4283 InterpreterRuntime::get_original_bytecode_at),
aoqi@6880 4284 A1, BCP);
aoqi@6880 4285 __ move(Rnext, V0); // Jin: Rnext will be used in dispatch_only_normal
aoqi@6880 4286
aoqi@6880 4287 // post the breakpoint event
aoqi@6880 4288 __ get_method(A1);
aoqi@6880 4289 __ call_VM(NOREG, CAST_FROM_FN_PTR(address, InterpreterRuntime::_breakpoint), A1, BCP);
aoqi@6880 4290
aoqi@6880 4291 // complete the execution of original bytecode
aoqi@6880 4292 __ dispatch_only_normal(vtos);
aoqi@6880 4293 }
aoqi@6880 4294
aoqi@6880 4295 //-----------------------------------------------------------------------------
aoqi@1 4296 // Exceptions
aoqi@1 4297
aoqi@1 4298 void TemplateTable::athrow() {
aoqi@6880 4299 transition(atos, vtos);
aoqi@6880 4300 __ null_check(FSR);
aoqi@6880 4301 __ jmp(Interpreter::throw_exception_entry());
aoqi@6880 4302 __ delayed()->nop();
aoqi@1 4303 }
aoqi@1 4304
aoqi@6880 4305 //-----------------------------------------------------------------------------
aoqi@1 4306 // Synchronization
aoqi@1 4307 //
aoqi@1 4308 // Note: monitorenter & exit are symmetric routines; which is reflected
aoqi@1 4309 // in the assembly code structure as well
aoqi@1 4310 //
aoqi@1 4311 // Stack layout:
aoqi@1 4312 //
aoqi@1 4313 // [expressions ] <--- SP = expression stack top
aoqi@1 4314 // ..
aoqi@1 4315 // [expressions ]
aoqi@1 4316 // [monitor entry] <--- monitor block top = expression stack bot
aoqi@1 4317 // ..
aoqi@1 4318 // [monitor entry]
aoqi@1 4319 // [frame data ] <--- monitor block bot
aoqi@1 4320 // ...
aoqi@1 4321 // [return addr ] <--- FP
aoqi@1 4322
aoqi@1 4323 // we use T2 as monitor entry pointer, T3 as monitor top pointer, c_rarg0 as free slot pointer
aoqi@1 4324 // object always in FSR
aoqi@1 4325 void TemplateTable::monitorenter() {
aoqi@1 4326 transition(atos, vtos);
aoqi@6880 4327
aoqi@1 4328 // check for NULL object
aoqi@1 4329 __ null_check(FSR);
aoqi@1 4330
aoqi@6880 4331 const Address monitor_block_top(FP, frame::interpreter_frame_monitor_block_top_offset
aoqi@1 4332 * wordSize);
aoqi@1 4333 const int entry_size = (frame::interpreter_frame_monitor_size()* wordSize);
aoqi@1 4334 Label allocated;
aoqi@1 4335
aoqi@1 4336 // initialize entry pointer
aoqi@1 4337 __ move(c_rarg0, R0);
aoqi@1 4338
aoqi@1 4339 // find a free slot in the monitor block (result in edx)
aoqi@6880 4340 {
aoqi@1 4341 Label entry, loop, exit, next;
aoqi@1 4342 __ ld(T2, monitor_block_top);
aoqi@1 4343 __ b(entry);
aoqi@1 4344 __ delayed()->daddi(T3, FP, frame::interpreter_frame_initial_sp_offset * wordSize);
aoqi@1 4345
aoqi@1 4346 // free slot?
aoqi@1 4347 __ bind(loop);
aoqi@1 4348 __ ld(AT, T2, BasicObjectLock::obj_offset_in_bytes());
aoqi@1 4349 __ bne(AT, R0, next);
aoqi@1 4350 __ delayed()->nop();
aoqi@1 4351 __ move(c_rarg0, T2);
aoqi@1 4352
aoqi@1 4353 __ bind(next);
aoqi@1 4354 __ beq(FSR, AT, exit);
aoqi@1 4355 __ delayed()->nop();
aoqi@1 4356 __ daddi(T2, T2, entry_size);
aoqi@1 4357
aoqi@1 4358 __ bind(entry);
aoqi@1 4359 __ bne(T3, T2, loop);
aoqi@1 4360 __ delayed()->nop();
aoqi@1 4361 __ bind(exit);
aoqi@1 4362 }
aoqi@1 4363
aoqi@1 4364 __ bne(c_rarg0, R0, allocated);
aoqi@1 4365 __ delayed()->nop();
aoqi@1 4366
aoqi@1 4367 // allocate one if there's no free slot
aoqi@6880 4368 {
aoqi@1 4369 Label entry, loop;
aoqi@1 4370 // 1. compute new pointers // SP: old expression stack top
aoqi@1 4371 __ ld(c_rarg0, monitor_block_top);
aoqi@1 4372 __ daddi(SP, SP, - entry_size);
aoqi@1 4373 __ daddi(c_rarg0, c_rarg0, - entry_size);
aoqi@1 4374 __ sd(c_rarg0, monitor_block_top);
aoqi@1 4375 __ b(entry);
aoqi@1 4376 __ delayed(); __ move(T3, SP);
aoqi@1 4377
aoqi@1 4378 // 2. move expression stack contents
aoqi@1 4379 __ bind(loop);
aoqi@1 4380 __ ld(AT, T3, entry_size);
aoqi@1 4381 __ sd(AT, T3, 0);
aoqi@6880 4382 __ daddi(T3, T3, wordSize);
aoqi@1 4383 __ bind(entry);
aoqi@1 4384 __ bne(T3, c_rarg0, loop);
aoqi@1 4385 __ delayed()->nop();
aoqi@1 4386 }
aoqi@1 4387
aoqi@1 4388 __ bind(allocated);
aoqi@6880 4389 // Increment bcp to point to the next bytecode,
aoqi@6880 4390 // so exception handling for async. exceptions work correctly.
aoqi@6880 4391 // The object has already been poped from the stack, so the
aoqi@1 4392 // expression stack looks correct.
aoqi@6880 4393 __ daddi(BCP, BCP, 1);
aoqi@1 4394 __ sd(FSR, c_rarg0, BasicObjectLock::obj_offset_in_bytes());
aoqi@1 4395 __ lock_object(c_rarg0);
aoqi@1 4396 // check to make sure this monitor doesn't cause stack overflow after locking
aoqi@1 4397 __ save_bcp(); // in case of exception
aoqi@1 4398 __ generate_stack_overflow_check(0);
aoqi@1 4399 // The bcp has already been incremented. Just need to dispatch to next instruction.
aoqi@1 4400
aoqi@1 4401 __ dispatch_next(vtos);
aoqi@1 4402 }
aoqi@1 4403
aoqi@1 4404 // T2 : top
aoqi@1 4405 // c_rarg0 : entry
aoqi@1 4406 void TemplateTable::monitorexit() {
aoqi@1 4407 transition(atos, vtos);
aoqi@1 4408
aoqi@1 4409 __ null_check(FSR);
aoqi@1 4410
aoqi@1 4411 const int entry_size =(frame::interpreter_frame_monitor_size()* wordSize);
aoqi@1 4412 Label found;
aoqi@1 4413
aoqi@1 4414 // find matching slot
aoqi@6880 4415 {
aoqi@1 4416 Label entry, loop;
aoqi@1 4417 __ ld(c_rarg0, FP, frame::interpreter_frame_monitor_block_top_offset * wordSize);
aoqi@1 4418 __ b(entry);
aoqi@1 4419 __ delayed()->daddiu(T2, FP, frame::interpreter_frame_initial_sp_offset * wordSize);
aoqi@1 4420
aoqi@1 4421 __ bind(loop);
aoqi@1 4422 __ ld(AT, c_rarg0, BasicObjectLock::obj_offset_in_bytes());
aoqi@1 4423 __ beq(FSR, AT, found);
aoqi@1 4424 __ delayed()->nop();
aoqi@1 4425 __ daddiu(c_rarg0, c_rarg0, entry_size);
aoqi@1 4426 __ bind(entry);
aoqi@1 4427 __ bne(T2, c_rarg0, loop);
aoqi@1 4428 __ delayed()->nop();
aoqi@1 4429 }
aoqi@1 4430
aoqi@1 4431 // error handling. Unlocking was not block-structured
aoqi@1 4432 Label end;
aoqi@6880 4433 __ call_VM(NOREG, CAST_FROM_FN_PTR(address,
aoqi@6880 4434 InterpreterRuntime::throw_illegal_monitor_state_exception));
aoqi@1 4435 __ should_not_reach_here();
aoqi@1 4436
aoqi@1 4437 // call run-time routine
aoqi@1 4438 // c_rarg0: points to monitor entry
aoqi@1 4439 __ bind(found);
aoqi@1 4440 __ move(TSR, FSR);
aoqi@1 4441 __ unlock_object(c_rarg0);
aoqi@1 4442 __ move(FSR, TSR);
aoqi@1 4443 __ bind(end);
aoqi@1 4444 }
aoqi@1 4445
aoqi@6880 4446
aoqi@6880 4447 // Wide instructions
aoqi@1 4448 void TemplateTable::wide() {
aoqi@1 4449 transition(vtos, vtos);
aoqi@1 4450 // Note: the esi increment step is part of the individual wide bytecode implementations
aoqi@1 4451 __ lbu(Rnext, at_bcp(1));
aoqi@1 4452 __ dsll(T9, Rnext, Address::times_8);
aoqi@1 4453 __ li(AT, (long)Interpreter::_wentry_point);
aoqi@1 4454 __ dadd(AT, T9, AT);
aoqi@1 4455 __ ld(T9, AT, 0);
aoqi@1 4456 __ jr(T9);
aoqi@1 4457 __ delayed()->nop();
aoqi@1 4458 }
aoqi@1 4459
aoqi@1 4460
aoqi@1 4461 void TemplateTable::multianewarray() {
aoqi@1 4462 transition(vtos, atos);
aoqi@1 4463 // last dim is on top of stack; we want address of first one:
aoqi@1 4464 // first_addr = last_addr + (ndims - 1) * wordSize
aoqi@6880 4465 __ lbu(A1, at_bcp(3)); // dimension
aoqi@6880 4466 __ daddi(A1, A1, -1);
aoqi@1 4467 __ dsll(A1, A1, Address::times_8);
aoqi@6880 4468 __ dadd(A1, SP, A1); // now A1 pointer to the count array on the stack
aoqi@1 4469 call_VM(FSR, CAST_FROM_FN_PTR(address, InterpreterRuntime::multianewarray), A1);
aoqi@1 4470 __ lbu(AT, at_bcp(3));
aoqi@1 4471 __ dsll(AT, AT, Address::times_8);
aoqi@1 4472 __ dadd(SP, SP, AT);
fujie@32 4473 __ sync();
aoqi@1 4474 }
aoqi@1 4475 #endif // !CC_INTERP

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