Mercurial > hg > truffle
annotate src/share/vm/c1/c1_CodeStubs.hpp @ 14680:2dfa56e10640
8027124: [TESTBUG] NonTieredLevelsTest: java.lang.RuntimeException: private TestCase$Helper(java.lang.Object) must be osr_compiled
Reviewed-by: kvn, roland
author | iignatyev |
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date | Thu, 06 Mar 2014 12:47:45 +0400 |
parents | de6a9e811145 |
children | 4ca6dc0799b6 |
rev | line source |
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0 | 1 /* |
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2 * Copyright (c) 1999, 2013, Oracle and/or its affiliates. All rights reserved. |
0 | 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. |
4 * | |
5 * This code is free software; you can redistribute it and/or modify it | |
6 * under the terms of the GNU General Public License version 2 only, as | |
7 * published by the Free Software Foundation. | |
8 * | |
9 * This code is distributed in the hope that it will be useful, but WITHOUT | |
10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or | |
11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License | |
12 * version 2 for more details (a copy is included in the LICENSE file that | |
13 * accompanied this code). | |
14 * | |
15 * You should have received a copy of the GNU General Public License version | |
16 * 2 along with this work; if not, write to the Free Software Foundation, | |
17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. | |
18 * | |
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19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA |
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20 * or visit www.oracle.com if you need additional information or have any |
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21 * questions. |
0 | 22 * |
23 */ | |
24 | |
1972 | 25 #ifndef SHARE_VM_C1_C1_CODESTUBS_HPP |
26 #define SHARE_VM_C1_C1_CODESTUBS_HPP | |
27 | |
28 #include "c1/c1_FrameMap.hpp" | |
29 #include "c1/c1_IR.hpp" | |
30 #include "c1/c1_Instruction.hpp" | |
31 #include "c1/c1_LIR.hpp" | |
32 #include "c1/c1_Runtime1.hpp" | |
33 #include "utilities/array.hpp" | |
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34 #include "utilities/macros.hpp" |
1972 | 35 |
0 | 36 class CodeEmitInfo; |
37 class LIR_Assembler; | |
38 class LIR_OpVisitState; | |
39 | |
40 // CodeStubs are little 'out-of-line' pieces of code that | |
41 // usually handle slow cases of operations. All code stubs | |
42 // are collected and code is emitted at the end of the | |
43 // nmethod. | |
44 | |
45 class CodeStub: public CompilationResourceObj { | |
46 protected: | |
47 Label _entry; // label at the stub entry point | |
48 Label _continuation; // label where stub continues, if any | |
49 | |
50 public: | |
51 CodeStub() {} | |
52 | |
53 // code generation | |
54 void assert_no_unbound_labels() { assert(!_entry.is_unbound() && !_continuation.is_unbound(), "unbound label"); } | |
55 virtual void emit_code(LIR_Assembler* e) = 0; | |
56 virtual CodeEmitInfo* info() const { return NULL; } | |
57 virtual bool is_exception_throw_stub() const { return false; } | |
58 virtual bool is_range_check_stub() const { return false; } | |
59 virtual bool is_divbyzero_stub() const { return false; } | |
60 #ifndef PRODUCT | |
61 virtual void print_name(outputStream* out) const = 0; | |
62 #endif | |
63 | |
64 // label access | |
65 Label* entry() { return &_entry; } | |
66 Label* continuation() { return &_continuation; } | |
67 // for LIR | |
68 virtual void visit(LIR_OpVisitState* visit) { | |
69 #ifndef PRODUCT | |
70 if (LIRTracePeephole && Verbose) { | |
71 tty->print("no visitor for "); | |
72 print_name(tty); | |
73 tty->cr(); | |
74 } | |
75 #endif | |
76 } | |
77 }; | |
78 | |
79 | |
80 define_array(CodeStubArray, CodeStub*) | |
81 define_stack(_CodeStubList, CodeStubArray) | |
82 | |
83 class CodeStubList: public _CodeStubList { | |
84 public: | |
85 CodeStubList(): _CodeStubList() {} | |
86 | |
87 void append(CodeStub* stub) { | |
88 if (!contains(stub)) { | |
89 _CodeStubList::append(stub); | |
90 } | |
91 } | |
92 }; | |
93 | |
94 class CounterOverflowStub: public CodeStub { | |
95 private: | |
96 CodeEmitInfo* _info; | |
97 int _bci; | |
1783 | 98 LIR_Opr _method; |
0 | 99 |
100 public: | |
1783 | 101 CounterOverflowStub(CodeEmitInfo* info, int bci, LIR_Opr method) : _info(info), _bci(bci), _method(method) { |
0 | 102 } |
103 | |
104 virtual void emit_code(LIR_Assembler* e); | |
105 | |
106 virtual void visit(LIR_OpVisitState* visitor) { | |
107 visitor->do_slow_case(_info); | |
1783 | 108 visitor->do_input(_method); |
0 | 109 } |
110 | |
111 #ifndef PRODUCT | |
112 virtual void print_name(outputStream* out) const { out->print("CounterOverflowStub"); } | |
113 #endif // PRODUCT | |
114 | |
115 }; | |
116 | |
117 class ConversionStub: public CodeStub { | |
118 private: | |
119 Bytecodes::Code _bytecode; | |
120 LIR_Opr _input; | |
121 LIR_Opr _result; | |
122 | |
123 static float float_zero; | |
124 static double double_zero; | |
125 public: | |
126 ConversionStub(Bytecodes::Code bytecode, LIR_Opr input, LIR_Opr result) | |
127 : _bytecode(bytecode), _input(input), _result(result) { | |
128 } | |
129 | |
130 Bytecodes::Code bytecode() { return _bytecode; } | |
131 LIR_Opr input() { return _input; } | |
132 LIR_Opr result() { return _result; } | |
133 | |
134 virtual void emit_code(LIR_Assembler* e); | |
135 virtual void visit(LIR_OpVisitState* visitor) { | |
136 visitor->do_slow_case(); | |
137 visitor->do_input(_input); | |
138 visitor->do_output(_result); | |
139 } | |
140 #ifndef PRODUCT | |
141 virtual void print_name(outputStream* out) const { out->print("ConversionStub"); } | |
142 #endif // PRODUCT | |
143 }; | |
144 | |
145 | |
146 // Throws ArrayIndexOutOfBoundsException by default but can be | |
147 // configured to throw IndexOutOfBoundsException in constructor | |
148 class RangeCheckStub: public CodeStub { | |
149 private: | |
150 CodeEmitInfo* _info; | |
151 LIR_Opr _index; | |
152 bool _throw_index_out_of_bounds_exception; | |
153 | |
154 public: | |
155 RangeCheckStub(CodeEmitInfo* info, LIR_Opr index, bool throw_index_out_of_bounds_exception = false); | |
156 virtual void emit_code(LIR_Assembler* e); | |
157 virtual CodeEmitInfo* info() const { return _info; } | |
158 virtual bool is_exception_throw_stub() const { return true; } | |
159 virtual bool is_range_check_stub() const { return true; } | |
160 virtual void visit(LIR_OpVisitState* visitor) { | |
161 visitor->do_slow_case(_info); | |
162 visitor->do_input(_index); | |
163 } | |
164 #ifndef PRODUCT | |
165 virtual void print_name(outputStream* out) const { out->print("RangeCheckStub"); } | |
166 #endif // PRODUCT | |
167 }; | |
168 | |
8860 | 169 // stub used when predicate fails and deoptimization is needed |
170 class PredicateFailedStub: public CodeStub { | |
171 private: | |
172 CodeEmitInfo* _info; | |
173 | |
174 public: | |
175 PredicateFailedStub(CodeEmitInfo* info); | |
176 virtual void emit_code(LIR_Assembler* e); | |
177 virtual CodeEmitInfo* info() const { return _info; } | |
178 virtual void visit(LIR_OpVisitState* visitor) { | |
179 visitor->do_slow_case(_info); | |
180 } | |
181 #ifndef PRODUCT | |
182 virtual void print_name(outputStream* out) const { out->print("PredicateFailedStub"); } | |
183 #endif // PRODUCT | |
184 }; | |
0 | 185 |
186 class DivByZeroStub: public CodeStub { | |
187 private: | |
188 CodeEmitInfo* _info; | |
189 int _offset; | |
190 | |
191 public: | |
192 DivByZeroStub(CodeEmitInfo* info) | |
193 : _info(info), _offset(-1) { | |
194 } | |
195 DivByZeroStub(int offset, CodeEmitInfo* info) | |
196 : _info(info), _offset(offset) { | |
197 } | |
198 virtual void emit_code(LIR_Assembler* e); | |
199 virtual CodeEmitInfo* info() const { return _info; } | |
200 virtual bool is_exception_throw_stub() const { return true; } | |
201 virtual bool is_divbyzero_stub() const { return true; } | |
202 virtual void visit(LIR_OpVisitState* visitor) { | |
203 visitor->do_slow_case(_info); | |
204 } | |
205 #ifndef PRODUCT | |
206 virtual void print_name(outputStream* out) const { out->print("DivByZeroStub"); } | |
207 #endif // PRODUCT | |
208 }; | |
209 | |
210 | |
211 class ImplicitNullCheckStub: public CodeStub { | |
212 private: | |
213 CodeEmitInfo* _info; | |
214 int _offset; | |
215 | |
216 public: | |
217 ImplicitNullCheckStub(int offset, CodeEmitInfo* info) | |
218 : _offset(offset), _info(info) { | |
219 } | |
220 virtual void emit_code(LIR_Assembler* e); | |
221 virtual CodeEmitInfo* info() const { return _info; } | |
222 virtual bool is_exception_throw_stub() const { return true; } | |
223 virtual void visit(LIR_OpVisitState* visitor) { | |
224 visitor->do_slow_case(_info); | |
225 } | |
226 #ifndef PRODUCT | |
227 virtual void print_name(outputStream* out) const { out->print("ImplicitNullCheckStub"); } | |
228 #endif // PRODUCT | |
229 }; | |
230 | |
231 | |
232 class NewInstanceStub: public CodeStub { | |
233 private: | |
234 ciInstanceKlass* _klass; | |
235 LIR_Opr _klass_reg; | |
236 LIR_Opr _result; | |
237 CodeEmitInfo* _info; | |
238 Runtime1::StubID _stub_id; | |
239 | |
240 public: | |
241 NewInstanceStub(LIR_Opr klass_reg, LIR_Opr result, ciInstanceKlass* klass, CodeEmitInfo* info, Runtime1::StubID stub_id); | |
242 virtual void emit_code(LIR_Assembler* e); | |
243 virtual CodeEmitInfo* info() const { return _info; } | |
244 virtual void visit(LIR_OpVisitState* visitor) { | |
245 visitor->do_slow_case(_info); | |
246 visitor->do_input(_klass_reg); | |
247 visitor->do_output(_result); | |
248 } | |
249 #ifndef PRODUCT | |
250 virtual void print_name(outputStream* out) const { out->print("NewInstanceStub"); } | |
251 #endif // PRODUCT | |
252 }; | |
253 | |
254 | |
255 class NewTypeArrayStub: public CodeStub { | |
256 private: | |
257 LIR_Opr _klass_reg; | |
258 LIR_Opr _length; | |
259 LIR_Opr _result; | |
260 CodeEmitInfo* _info; | |
261 | |
262 public: | |
263 NewTypeArrayStub(LIR_Opr klass_reg, LIR_Opr length, LIR_Opr result, CodeEmitInfo* info); | |
264 virtual void emit_code(LIR_Assembler* e); | |
265 virtual CodeEmitInfo* info() const { return _info; } | |
266 virtual void visit(LIR_OpVisitState* visitor) { | |
267 visitor->do_slow_case(_info); | |
268 visitor->do_input(_klass_reg); | |
269 visitor->do_input(_length); | |
270 assert(_result->is_valid(), "must be valid"); visitor->do_output(_result); | |
271 } | |
272 #ifndef PRODUCT | |
273 virtual void print_name(outputStream* out) const { out->print("NewTypeArrayStub"); } | |
274 #endif // PRODUCT | |
275 }; | |
276 | |
277 | |
278 class NewObjectArrayStub: public CodeStub { | |
279 private: | |
280 LIR_Opr _klass_reg; | |
281 LIR_Opr _length; | |
282 LIR_Opr _result; | |
283 CodeEmitInfo* _info; | |
284 | |
285 public: | |
286 NewObjectArrayStub(LIR_Opr klass_reg, LIR_Opr length, LIR_Opr result, CodeEmitInfo* info); | |
287 virtual void emit_code(LIR_Assembler* e); | |
288 virtual CodeEmitInfo* info() const { return _info; } | |
289 virtual void visit(LIR_OpVisitState* visitor) { | |
290 visitor->do_slow_case(_info); | |
291 visitor->do_input(_klass_reg); | |
292 visitor->do_input(_length); | |
293 assert(_result->is_valid(), "must be valid"); visitor->do_output(_result); | |
294 } | |
295 #ifndef PRODUCT | |
296 virtual void print_name(outputStream* out) const { out->print("NewObjectArrayStub"); } | |
297 #endif // PRODUCT | |
298 }; | |
299 | |
300 | |
301 class MonitorAccessStub: public CodeStub { | |
302 protected: | |
303 LIR_Opr _obj_reg; | |
304 LIR_Opr _lock_reg; | |
305 | |
306 public: | |
307 MonitorAccessStub(LIR_Opr obj_reg, LIR_Opr lock_reg) { | |
308 _obj_reg = obj_reg; | |
309 _lock_reg = lock_reg; | |
310 } | |
311 | |
312 #ifndef PRODUCT | |
313 virtual void print_name(outputStream* out) const { out->print("MonitorAccessStub"); } | |
314 #endif // PRODUCT | |
315 }; | |
316 | |
317 | |
318 class MonitorEnterStub: public MonitorAccessStub { | |
319 private: | |
320 CodeEmitInfo* _info; | |
321 | |
322 public: | |
323 MonitorEnterStub(LIR_Opr obj_reg, LIR_Opr lock_reg, CodeEmitInfo* info); | |
324 | |
325 virtual void emit_code(LIR_Assembler* e); | |
326 virtual CodeEmitInfo* info() const { return _info; } | |
327 virtual void visit(LIR_OpVisitState* visitor) { | |
328 visitor->do_input(_obj_reg); | |
329 visitor->do_input(_lock_reg); | |
330 visitor->do_slow_case(_info); | |
331 } | |
332 #ifndef PRODUCT | |
333 virtual void print_name(outputStream* out) const { out->print("MonitorEnterStub"); } | |
334 #endif // PRODUCT | |
335 }; | |
336 | |
337 | |
338 class MonitorExitStub: public MonitorAccessStub { | |
339 private: | |
340 bool _compute_lock; | |
341 int _monitor_ix; | |
342 | |
343 public: | |
344 MonitorExitStub(LIR_Opr lock_reg, bool compute_lock, int monitor_ix) | |
345 : MonitorAccessStub(LIR_OprFact::illegalOpr, lock_reg), | |
346 _compute_lock(compute_lock), _monitor_ix(monitor_ix) { } | |
347 virtual void emit_code(LIR_Assembler* e); | |
348 virtual void visit(LIR_OpVisitState* visitor) { | |
349 assert(_obj_reg->is_illegal(), "unused"); | |
350 if (_compute_lock) { | |
351 visitor->do_temp(_lock_reg); | |
352 } else { | |
353 visitor->do_input(_lock_reg); | |
354 } | |
355 } | |
356 #ifndef PRODUCT | |
357 virtual void print_name(outputStream* out) const { out->print("MonitorExitStub"); } | |
358 #endif // PRODUCT | |
359 }; | |
360 | |
361 | |
362 class PatchingStub: public CodeStub { | |
363 public: | |
364 enum PatchID { | |
365 access_field_id, | |
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366 load_klass_id, |
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367 load_mirror_id, |
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368 load_appendix_id |
0 | 369 }; |
370 enum constants { | |
371 patch_info_size = 3 | |
372 }; | |
373 private: | |
374 PatchID _id; | |
375 address _pc_start; | |
376 int _bytes_to_copy; | |
377 Label _patched_code_entry; | |
378 Label _patch_site_entry; | |
379 Label _patch_site_continuation; | |
380 Register _obj; | |
381 CodeEmitInfo* _info; | |
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382 int _index; // index of the patchable oop or Klass* in nmethod oop or metadata table if needed |
0 | 383 static int _patch_info_offset; |
384 | |
385 void align_patch_site(MacroAssembler* masm); | |
386 | |
387 public: | |
388 static int patch_info_offset() { return _patch_info_offset; } | |
389 | |
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390 PatchingStub(MacroAssembler* masm, PatchID id, int index = -1): |
0 | 391 _id(id) |
392 , _info(NULL) | |
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393 , _index(index) { |
0 | 394 if (os::is_MP()) { |
395 // force alignment of patch sites on MP hardware so we | |
396 // can guarantee atomic writes to the patch site. | |
397 align_patch_site(masm); | |
398 } | |
399 _pc_start = masm->pc(); | |
400 masm->bind(_patch_site_entry); | |
401 } | |
402 | |
403 void install(MacroAssembler* masm, LIR_PatchCode patch_code, Register obj, CodeEmitInfo* info) { | |
404 _info = info; | |
405 _obj = obj; | |
406 masm->bind(_patch_site_continuation); | |
407 _bytes_to_copy = masm->pc() - pc_start(); | |
408 if (_id == PatchingStub::access_field_id) { | |
409 // embed a fixed offset to handle long patches which need to be offset by a word. | |
410 // the patching code will just add the field offset field to this offset so | |
411 // that we can refernce either the high or low word of a double word field. | |
412 int field_offset = 0; | |
413 switch (patch_code) { | |
414 case lir_patch_low: field_offset = lo_word_offset_in_bytes; break; | |
415 case lir_patch_high: field_offset = hi_word_offset_in_bytes; break; | |
416 case lir_patch_normal: field_offset = 0; break; | |
417 default: ShouldNotReachHere(); | |
418 } | |
419 NativeMovRegMem* n_move = nativeMovRegMem_at(pc_start()); | |
420 n_move->set_offset(field_offset); | |
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421 } else if (_id == load_klass_id || _id == load_mirror_id || _id == load_appendix_id) { |
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422 assert(_obj != noreg, "must have register object for load_klass/load_mirror"); |
0 | 423 #ifdef ASSERT |
424 // verify that we're pointing at a NativeMovConstReg | |
425 nativeMovConstReg_at(pc_start()); | |
426 #endif | |
427 } else { | |
428 ShouldNotReachHere(); | |
429 } | |
430 assert(_bytes_to_copy <= (masm->pc() - pc_start()), "not enough bytes"); | |
431 } | |
432 | |
433 address pc_start() const { return _pc_start; } | |
434 PatchID id() const { return _id; } | |
435 | |
436 virtual void emit_code(LIR_Assembler* e); | |
437 virtual CodeEmitInfo* info() const { return _info; } | |
438 virtual void visit(LIR_OpVisitState* visitor) { | |
439 visitor->do_slow_case(_info); | |
440 } | |
441 #ifndef PRODUCT | |
442 virtual void print_name(outputStream* out) const { out->print("PatchingStub"); } | |
443 #endif // PRODUCT | |
444 }; | |
445 | |
446 | |
1295 | 447 //------------------------------------------------------------------------------ |
448 // DeoptimizeStub | |
449 // | |
450 class DeoptimizeStub : public CodeStub { | |
451 private: | |
452 CodeEmitInfo* _info; | |
453 | |
454 public: | |
455 DeoptimizeStub(CodeEmitInfo* info) : _info(new CodeEmitInfo(info)) {} | |
456 | |
457 virtual void emit_code(LIR_Assembler* e); | |
458 virtual CodeEmitInfo* info() const { return _info; } | |
459 virtual bool is_exception_throw_stub() const { return true; } | |
460 virtual void visit(LIR_OpVisitState* visitor) { | |
461 visitor->do_slow_case(_info); | |
462 } | |
463 #ifndef PRODUCT | |
464 virtual void print_name(outputStream* out) const { out->print("DeoptimizeStub"); } | |
465 #endif // PRODUCT | |
466 }; | |
467 | |
468 | |
0 | 469 class SimpleExceptionStub: public CodeStub { |
470 private: | |
471 LIR_Opr _obj; | |
472 Runtime1::StubID _stub; | |
473 CodeEmitInfo* _info; | |
474 | |
475 public: | |
476 SimpleExceptionStub(Runtime1::StubID stub, LIR_Opr obj, CodeEmitInfo* info): | |
477 _obj(obj), _info(info), _stub(stub) { | |
478 } | |
479 | |
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480 void set_obj(LIR_Opr obj) { |
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481 _obj = obj; |
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482 } |
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483 |
0 | 484 virtual void emit_code(LIR_Assembler* e); |
485 virtual CodeEmitInfo* info() const { return _info; } | |
486 virtual bool is_exception_throw_stub() const { return true; } | |
487 virtual void visit(LIR_OpVisitState* visitor) { | |
488 if (_obj->is_valid()) visitor->do_input(_obj); | |
489 visitor->do_slow_case(_info); | |
490 } | |
491 #ifndef PRODUCT | |
492 virtual void print_name(outputStream* out) const { out->print("SimpleExceptionStub"); } | |
493 #endif // PRODUCT | |
494 }; | |
495 | |
496 | |
497 | |
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498 class ArrayStoreExceptionStub: public SimpleExceptionStub { |
0 | 499 private: |
500 CodeEmitInfo* _info; | |
501 | |
502 public: | |
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503 ArrayStoreExceptionStub(LIR_Opr obj, CodeEmitInfo* info): SimpleExceptionStub(Runtime1::throw_array_store_exception_id, obj, info) {} |
0 | 504 #ifndef PRODUCT |
505 virtual void print_name(outputStream* out) const { out->print("ArrayStoreExceptionStub"); } | |
506 #endif // PRODUCT | |
507 }; | |
508 | |
509 | |
510 class ArrayCopyStub: public CodeStub { | |
511 private: | |
512 LIR_OpArrayCopy* _op; | |
513 | |
514 public: | |
515 ArrayCopyStub(LIR_OpArrayCopy* op): _op(op) { } | |
516 | |
517 LIR_Opr src() const { return _op->src(); } | |
518 LIR_Opr src_pos() const { return _op->src_pos(); } | |
519 LIR_Opr dst() const { return _op->dst(); } | |
520 LIR_Opr dst_pos() const { return _op->dst_pos(); } | |
521 LIR_Opr length() const { return _op->length(); } | |
522 LIR_Opr tmp() const { return _op->tmp(); } | |
523 | |
524 virtual void emit_code(LIR_Assembler* e); | |
525 virtual CodeEmitInfo* info() const { return _op->info(); } | |
526 virtual void visit(LIR_OpVisitState* visitor) { | |
527 // don't pass in the code emit info since it's processed in the fast path | |
528 visitor->do_slow_case(); | |
529 } | |
530 #ifndef PRODUCT | |
531 virtual void print_name(outputStream* out) const { out->print("ArrayCopyStub"); } | |
532 #endif // PRODUCT | |
533 }; | |
342 | 534 |
535 ////////////////////////////////////////////////////////////////////////////////////////// | |
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536 #if INCLUDE_ALL_GCS |
342 | 537 |
538 // Code stubs for Garbage-First barriers. | |
539 class G1PreBarrierStub: public CodeStub { | |
540 private: | |
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541 bool _do_load; |
342 | 542 LIR_Opr _addr; |
543 LIR_Opr _pre_val; | |
544 LIR_PatchCode _patch_code; | |
545 CodeEmitInfo* _info; | |
546 | |
547 public: | |
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548 // Version that _does_ generate a load of the previous value from addr. |
342 | 549 // addr (the address of the field to be read) must be a LIR_Address |
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550 // pre_val (a temporary register) must be a register; |
342 | 551 G1PreBarrierStub(LIR_Opr addr, LIR_Opr pre_val, LIR_PatchCode patch_code, CodeEmitInfo* info) : |
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552 _addr(addr), _pre_val(pre_val), _do_load(true), |
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553 _patch_code(patch_code), _info(info) |
342 | 554 { |
555 assert(_pre_val->is_register(), "should be temporary register"); | |
556 assert(_addr->is_address(), "should be the address of the field"); | |
557 } | |
558 | |
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559 // Version that _does not_ generate load of the previous value; the |
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560 // previous value is assumed to have already been loaded into pre_val. |
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561 G1PreBarrierStub(LIR_Opr pre_val) : |
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562 _addr(LIR_OprFact::illegalOpr), _pre_val(pre_val), _do_load(false), |
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563 _patch_code(lir_patch_none), _info(NULL) |
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564 { |
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565 assert(_pre_val->is_register(), "should be a register"); |
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566 } |
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567 |
342 | 568 LIR_Opr addr() const { return _addr; } |
569 LIR_Opr pre_val() const { return _pre_val; } | |
570 LIR_PatchCode patch_code() const { return _patch_code; } | |
571 CodeEmitInfo* info() const { return _info; } | |
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572 bool do_load() const { return _do_load; } |
342 | 573 |
574 virtual void emit_code(LIR_Assembler* e); | |
575 virtual void visit(LIR_OpVisitState* visitor) { | |
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576 if (_do_load) { |
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577 // don't pass in the code emit info since it's processed in the fast |
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578 // path |
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579 if (_info != NULL) |
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580 visitor->do_slow_case(_info); |
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581 else |
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582 visitor->do_slow_case(); |
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583 |
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584 visitor->do_input(_addr); |
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585 visitor->do_temp(_pre_val); |
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586 } else { |
342 | 587 visitor->do_slow_case(); |
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588 visitor->do_input(_pre_val); |
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589 } |
342 | 590 } |
591 #ifndef PRODUCT | |
592 virtual void print_name(outputStream* out) const { out->print("G1PreBarrierStub"); } | |
593 #endif // PRODUCT | |
594 }; | |
595 | |
596 class G1PostBarrierStub: public CodeStub { | |
597 private: | |
598 LIR_Opr _addr; | |
599 LIR_Opr _new_val; | |
600 | |
601 static jbyte* _byte_map_base; | |
602 static jbyte* byte_map_base_slow(); | |
603 static jbyte* byte_map_base() { | |
604 if (_byte_map_base == NULL) { | |
605 _byte_map_base = byte_map_base_slow(); | |
606 } | |
607 return _byte_map_base; | |
608 } | |
609 | |
610 public: | |
611 // addr (the address of the object head) and new_val must be registers. | |
612 G1PostBarrierStub(LIR_Opr addr, LIR_Opr new_val): _addr(addr), _new_val(new_val) { } | |
613 | |
614 LIR_Opr addr() const { return _addr; } | |
615 LIR_Opr new_val() const { return _new_val; } | |
616 | |
617 virtual void emit_code(LIR_Assembler* e); | |
618 virtual void visit(LIR_OpVisitState* visitor) { | |
619 // don't pass in the code emit info since it's processed in the fast path | |
620 visitor->do_slow_case(); | |
621 visitor->do_input(_addr); | |
622 visitor->do_input(_new_val); | |
623 } | |
624 #ifndef PRODUCT | |
625 virtual void print_name(outputStream* out) const { out->print("G1PostBarrierStub"); } | |
626 #endif // PRODUCT | |
627 }; | |
628 | |
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629 #endif // INCLUDE_ALL_GCS |
342 | 630 ////////////////////////////////////////////////////////////////////////////////////////// |
1972 | 631 |
632 #endif // SHARE_VM_C1_C1_CODESTUBS_HPP |