Mercurial > hg > truffle
annotate src/cpu/x86/vm/templateInterpreter_x86_64.cpp @ 8325:330b455f18be
Make scheduling phase customizable.
author | Thomas Wuerthinger <thomas.wuerthinger@oracle.com> |
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date | Sun, 17 Mar 2013 19:39:28 +0100 |
parents | 5fc51c1ecdeb |
children | 6b6cbd8b8914 |
rev | line source |
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0 | 1 /* |
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2 * Copyright (c) 2003, 2012, 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 #include "precompiled.hpp" |
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26 #include "asm/macroAssembler.hpp" |
1972 | 27 #include "interpreter/bytecodeHistogram.hpp" |
28 #include "interpreter/interpreter.hpp" | |
29 #include "interpreter/interpreterGenerator.hpp" | |
30 #include "interpreter/interpreterRuntime.hpp" | |
31 #include "interpreter/templateTable.hpp" | |
32 #include "oops/arrayOop.hpp" | |
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33 #include "oops/methodData.hpp" |
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34 #include "oops/method.hpp" |
1972 | 35 #include "oops/oop.inline.hpp" |
36 #include "prims/jvmtiExport.hpp" | |
37 #include "prims/jvmtiThreadState.hpp" | |
38 #include "runtime/arguments.hpp" | |
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39 #include "runtime/compilationPolicy.hpp" |
1972 | 40 #include "runtime/deoptimization.hpp" |
41 #include "runtime/frame.inline.hpp" | |
42 #include "runtime/sharedRuntime.hpp" | |
43 #include "runtime/stubRoutines.hpp" | |
44 #include "runtime/synchronizer.hpp" | |
45 #include "runtime/timer.hpp" | |
46 #include "runtime/vframeArray.hpp" | |
47 #include "utilities/debug.hpp" | |
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48 #include "utilities/macros.hpp" |
0 | 49 |
50 #define __ _masm-> | |
51 | |
304 | 52 #ifndef CC_INTERP |
53 | |
0 | 54 const int method_offset = frame::interpreter_frame_method_offset * wordSize; |
55 const int bci_offset = frame::interpreter_frame_bcx_offset * wordSize; | |
56 const int locals_offset = frame::interpreter_frame_locals_offset * wordSize; | |
57 | |
58 //----------------------------------------------------------------------------- | |
59 | |
60 address TemplateInterpreterGenerator::generate_StackOverflowError_handler() { | |
61 address entry = __ pc(); | |
62 | |
63 #ifdef ASSERT | |
64 { | |
65 Label L; | |
304 | 66 __ lea(rax, Address(rbp, |
67 frame::interpreter_frame_monitor_block_top_offset * | |
68 wordSize)); | |
69 __ cmpptr(rax, rsp); // rax = maximal rsp for current rbp (stack | |
70 // grows negative) | |
0 | 71 __ jcc(Assembler::aboveEqual, L); // check if frame is complete |
72 __ stop ("interpreter frame not set up"); | |
73 __ bind(L); | |
74 } | |
75 #endif // ASSERT | |
76 // Restore bcp under the assumption that the current frame is still | |
77 // interpreted | |
78 __ restore_bcp(); | |
79 | |
80 // expression stack must be empty before entering the VM if an | |
81 // exception happened | |
82 __ empty_expression_stack(); | |
83 // throw exception | |
84 __ call_VM(noreg, | |
85 CAST_FROM_FN_PTR(address, | |
86 InterpreterRuntime::throw_StackOverflowError)); | |
87 return entry; | |
88 } | |
89 | |
90 address TemplateInterpreterGenerator::generate_ArrayIndexOutOfBounds_handler( | |
91 const char* name) { | |
92 address entry = __ pc(); | |
93 // expression stack must be empty before entering the VM if an | |
94 // exception happened | |
95 __ empty_expression_stack(); | |
96 // setup parameters | |
97 // ??? convention: expect aberrant index in register ebx | |
98 __ lea(c_rarg1, ExternalAddress((address)name)); | |
99 __ call_VM(noreg, | |
100 CAST_FROM_FN_PTR(address, | |
101 InterpreterRuntime:: | |
102 throw_ArrayIndexOutOfBoundsException), | |
103 c_rarg1, rbx); | |
104 return entry; | |
105 } | |
106 | |
107 address TemplateInterpreterGenerator::generate_ClassCastException_handler() { | |
108 address entry = __ pc(); | |
109 | |
110 // object is at TOS | |
304 | 111 __ pop(c_rarg1); |
0 | 112 |
113 // expression stack must be empty before entering the VM if an | |
114 // exception happened | |
115 __ empty_expression_stack(); | |
116 | |
117 __ call_VM(noreg, | |
118 CAST_FROM_FN_PTR(address, | |
119 InterpreterRuntime:: | |
120 throw_ClassCastException), | |
121 c_rarg1); | |
122 return entry; | |
123 } | |
124 | |
125 address TemplateInterpreterGenerator::generate_exception_handler_common( | |
126 const char* name, const char* message, bool pass_oop) { | |
127 assert(!pass_oop || message == NULL, "either oop or message but not both"); | |
128 address entry = __ pc(); | |
129 if (pass_oop) { | |
130 // object is at TOS | |
304 | 131 __ pop(c_rarg2); |
0 | 132 } |
133 // expression stack must be empty before entering the VM if an | |
134 // exception happened | |
135 __ empty_expression_stack(); | |
136 // setup parameters | |
137 __ lea(c_rarg1, ExternalAddress((address)name)); | |
138 if (pass_oop) { | |
139 __ call_VM(rax, CAST_FROM_FN_PTR(address, | |
140 InterpreterRuntime:: | |
141 create_klass_exception), | |
142 c_rarg1, c_rarg2); | |
143 } else { | |
144 // kind of lame ExternalAddress can't take NULL because | |
145 // external_word_Relocation will assert. | |
146 if (message != NULL) { | |
147 __ lea(c_rarg2, ExternalAddress((address)message)); | |
148 } else { | |
149 __ movptr(c_rarg2, NULL_WORD); | |
150 } | |
151 __ call_VM(rax, | |
152 CAST_FROM_FN_PTR(address, InterpreterRuntime::create_exception), | |
153 c_rarg1, c_rarg2); | |
154 } | |
155 // throw exception | |
156 __ jump(ExternalAddress(Interpreter::throw_exception_entry())); | |
157 return entry; | |
158 } | |
159 | |
160 | |
161 address TemplateInterpreterGenerator::generate_continuation_for(TosState state) { | |
162 address entry = __ pc(); | |
163 // NULL last_sp until next java call | |
304 | 164 __ movptr(Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize), (int32_t)NULL_WORD); |
0 | 165 __ dispatch_next(state); |
166 return entry; | |
167 } | |
168 | |
169 | |
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170 address TemplateInterpreterGenerator::generate_return_entry_for(TosState state, int step) { |
0 | 171 address entry = __ pc(); |
172 | |
173 // Restore stack bottom in case i2c adjusted stack | |
304 | 174 __ movptr(rsp, Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize)); |
0 | 175 // and NULL it as marker that esp is now tos until next java call |
304 | 176 __ movptr(Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize), (int32_t)NULL_WORD); |
0 | 177 |
178 __ restore_bcp(); | |
179 __ restore_locals(); | |
304 | 180 |
1108 | 181 Label L_got_cache, L_giant_index; |
182 if (EnableInvokeDynamic) { | |
183 __ cmpb(Address(r13, 0), Bytecodes::_invokedynamic); | |
184 __ jcc(Assembler::equal, L_giant_index); | |
185 } | |
1565 | 186 __ get_cache_and_index_at_bcp(rbx, rcx, 1, sizeof(u2)); |
1108 | 187 __ bind(L_got_cache); |
0 | 188 __ movl(rbx, Address(rbx, rcx, |
1108 | 189 Address::times_ptr, |
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190 in_bytes(ConstantPoolCache::base_offset()) + |
0 | 191 3 * wordSize)); |
192 __ andl(rbx, 0xFF); | |
304 | 193 __ lea(rsp, Address(rsp, rbx, Address::times_8)); |
0 | 194 __ dispatch_next(state, step); |
1108 | 195 |
196 // out of the main line of code... | |
197 if (EnableInvokeDynamic) { | |
198 __ bind(L_giant_index); | |
1565 | 199 __ get_cache_and_index_at_bcp(rbx, rcx, 1, sizeof(u4)); |
1108 | 200 __ jmp(L_got_cache); |
201 } | |
202 | |
0 | 203 return entry; |
204 } | |
205 | |
206 | |
207 address TemplateInterpreterGenerator::generate_deopt_entry_for(TosState state, | |
208 int step) { | |
209 address entry = __ pc(); | |
210 // NULL last_sp until next java call | |
304 | 211 __ movptr(Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize), (int32_t)NULL_WORD); |
0 | 212 __ restore_bcp(); |
213 __ restore_locals(); | |
214 // handle exceptions | |
215 { | |
216 Label L; | |
304 | 217 __ cmpptr(Address(r15_thread, Thread::pending_exception_offset()), (int32_t) NULL_WORD); |
0 | 218 __ jcc(Assembler::zero, L); |
219 __ call_VM(noreg, | |
220 CAST_FROM_FN_PTR(address, | |
221 InterpreterRuntime::throw_pending_exception)); | |
222 __ should_not_reach_here(); | |
223 __ bind(L); | |
224 } | |
225 __ dispatch_next(state, step); | |
226 return entry; | |
227 } | |
228 | |
229 int AbstractInterpreter::BasicType_as_index(BasicType type) { | |
230 int i = 0; | |
231 switch (type) { | |
232 case T_BOOLEAN: i = 0; break; | |
233 case T_CHAR : i = 1; break; | |
234 case T_BYTE : i = 2; break; | |
235 case T_SHORT : i = 3; break; | |
236 case T_INT : i = 4; break; | |
237 case T_LONG : i = 5; break; | |
238 case T_VOID : i = 6; break; | |
239 case T_FLOAT : i = 7; break; | |
240 case T_DOUBLE : i = 8; break; | |
241 case T_OBJECT : i = 9; break; | |
242 case T_ARRAY : i = 9; break; | |
243 default : ShouldNotReachHere(); | |
244 } | |
245 assert(0 <= i && i < AbstractInterpreter::number_of_result_handlers, | |
246 "index out of bounds"); | |
247 return i; | |
248 } | |
249 | |
250 | |
251 address TemplateInterpreterGenerator::generate_result_handler_for( | |
252 BasicType type) { | |
253 address entry = __ pc(); | |
254 switch (type) { | |
255 case T_BOOLEAN: __ c2bool(rax); break; | |
256 case T_CHAR : __ movzwl(rax, rax); break; | |
257 case T_BYTE : __ sign_extend_byte(rax); break; | |
258 case T_SHORT : __ sign_extend_short(rax); break; | |
259 case T_INT : /* nothing to do */ break; | |
260 case T_LONG : /* nothing to do */ break; | |
261 case T_VOID : /* nothing to do */ break; | |
262 case T_FLOAT : /* nothing to do */ break; | |
263 case T_DOUBLE : /* nothing to do */ break; | |
264 case T_OBJECT : | |
265 // retrieve result from frame | |
304 | 266 __ movptr(rax, Address(rbp, frame::interpreter_frame_oop_temp_offset*wordSize)); |
0 | 267 // and verify it |
268 __ verify_oop(rax); | |
269 break; | |
270 default : ShouldNotReachHere(); | |
271 } | |
272 __ ret(0); // return from result handler | |
273 return entry; | |
274 } | |
275 | |
276 address TemplateInterpreterGenerator::generate_safept_entry_for( | |
277 TosState state, | |
278 address runtime_entry) { | |
279 address entry = __ pc(); | |
280 __ push(state); | |
281 __ call_VM(noreg, runtime_entry); | |
282 __ dispatch_via(vtos, Interpreter::_normal_table.table_for(vtos)); | |
283 return entry; | |
284 } | |
285 | |
286 | |
287 | |
288 // Helpers for commoning out cases in the various type of method entries. | |
289 // | |
290 | |
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291 #ifdef GRAAL |
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292 |
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293 void graal_initialize_time(JavaThread* thread) { |
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294 frame fr = thread->last_frame(); |
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295 assert(fr.is_interpreted_frame(), "must come from interpreter"); |
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296 fr.interpreter_frame_method()->set_graal_invocation_time(os::javaTimeNanos()); |
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297 } |
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298 |
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299 #endif // GRAAL |
0 | 300 |
301 // increment invocation count & check for overflow | |
302 // | |
303 // Note: checking for negative value instead of overflow | |
304 // so we have a 'sticky' overflow test | |
305 // | |
306 // rbx: method | |
307 // ecx: invocation counter | |
308 // | |
309 void InterpreterGenerator::generate_counter_incr( | |
310 Label* overflow, | |
311 Label* profile_method, | |
312 Label* profile_method_continue) { | |
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313 const Address invocation_counter(rbx, in_bytes(Method::invocation_counter_offset()) + |
1783 | 314 in_bytes(InvocationCounter::counter_offset())); |
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315 // Note: In tiered we increment either counters in Method* or in MDO depending if we're profiling or not. |
1783 | 316 if (TieredCompilation) { |
317 int increment = InvocationCounter::count_increment; | |
318 int mask = ((1 << Tier0InvokeNotifyFreqLog) - 1) << InvocationCounter::count_shift; | |
319 Label no_mdo, done; | |
320 if (ProfileInterpreter) { | |
321 // Are we profiling? | |
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322 __ movptr(rax, Address(rbx, Method::method_data_offset())); |
1783 | 323 __ testptr(rax, rax); |
324 __ jccb(Assembler::zero, no_mdo); | |
325 // Increment counter in the MDO | |
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326 const Address mdo_invocation_counter(rax, in_bytes(MethodData::invocation_counter_offset()) + |
1783 | 327 in_bytes(InvocationCounter::counter_offset())); |
328 __ increment_mask_and_jump(mdo_invocation_counter, increment, mask, rcx, false, Assembler::zero, overflow); | |
329 __ jmpb(done); | |
330 } | |
331 __ bind(no_mdo); | |
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332 // Increment counter in Method* (we don't need to load it, it's in ecx). |
1783 | 333 __ increment_mask_and_jump(invocation_counter, increment, mask, rcx, true, Assembler::zero, overflow); |
334 __ bind(done); | |
335 } else { | |
336 const Address backedge_counter(rbx, | |
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337 Method::backedge_counter_offset() + |
0 | 338 InvocationCounter::counter_offset()); |
339 | |
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340 if (ProfileInterpreter) { // %%% Merge this into MethodData* |
1783 | 341 __ incrementl(Address(rbx, |
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342 Method::interpreter_invocation_counter_offset())); |
1783 | 343 } |
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344 |
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345 #ifdef GRAAL |
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346 if (CompilationPolicyChoice == 4) { |
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347 Label not_zero; |
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348 __ testl(rcx, InvocationCounter::count_mask_value); |
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349 __ jcc(Assembler::notZero, not_zero); |
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350 |
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351 __ push(rcx); |
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352 __ call_VM(noreg, CAST_FROM_FN_PTR(address, graal_initialize_time), rdx, false); |
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353 __ set_method_data_pointer_for_bcp(); |
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354 __ get_method(rbx); |
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355 __ pop(rcx); |
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356 |
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357 __ testl(rcx, InvocationCounter::count_mask_value); |
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358 __ jcc(Assembler::zero, not_zero); |
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359 __ stop("unexpected counter value in rcx"); |
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360 |
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361 __ bind(not_zero); |
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362 } |
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363 #endif // GRAAL |
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364 |
1783 | 365 // Update standard invocation counters |
366 __ movl(rax, backedge_counter); // load backedge counter | |
0 | 367 |
1783 | 368 __ incrementl(rcx, InvocationCounter::count_increment); |
369 __ andl(rax, InvocationCounter::count_mask_value); // mask out the status bits | |
0 | 370 |
1783 | 371 __ movl(invocation_counter, rcx); // save invocation count |
372 __ addl(rcx, rax); // add both counters | |
0 | 373 |
1783 | 374 // profile_method is non-null only for interpreted method so |
375 // profile_method != NULL == !native_call | |
376 | |
377 if (ProfileInterpreter && profile_method != NULL) { | |
378 // Test to see if we should create a method data oop | |
379 __ cmp32(rcx, ExternalAddress((address)&InvocationCounter::InterpreterProfileLimit)); | |
380 __ jcc(Assembler::less, *profile_method_continue); | |
0 | 381 |
1783 | 382 // if no method data exists, go to profile_method |
383 __ test_method_data_pointer(rax, *profile_method); | |
384 } | |
385 | |
386 __ cmp32(rcx, ExternalAddress((address)&InvocationCounter::InterpreterInvocationLimit)); | |
387 __ jcc(Assembler::aboveEqual, *overflow); | |
0 | 388 } |
389 } | |
390 | |
391 void InterpreterGenerator::generate_counter_overflow(Label* do_continue) { | |
392 | |
393 // Asm interpreter on entry | |
394 // r14 - locals | |
395 // r13 - bcp | |
396 // rbx - method | |
397 // edx - cpool --- DOES NOT APPEAR TO BE TRUE | |
398 // rbp - interpreter frame | |
399 | |
400 // On return (i.e. jump to entry_point) [ back to invocation of interpreter ] | |
401 // Everything as it was on entry | |
402 // rdx is not restored. Doesn't appear to really be set. | |
403 | |
404 // InterpreterRuntime::frequency_counter_overflow takes two | |
405 // arguments, the first (thread) is passed by call_VM, the second | |
406 // indicates if the counter overflow occurs at a backwards branch | |
407 // (NULL bcp). We pass zero for it. The call returns the address | |
408 // of the verified entry point for the method or NULL if the | |
409 // compilation did not complete (either went background or bailed | |
410 // out). | |
411 __ movl(c_rarg1, 0); | |
412 __ call_VM(noreg, | |
413 CAST_FROM_FN_PTR(address, | |
414 InterpreterRuntime::frequency_counter_overflow), | |
415 c_rarg1); | |
416 | |
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417 __ movptr(rbx, Address(rbp, method_offset)); // restore Method* |
0 | 418 // Preserve invariant that r13/r14 contain bcp/locals of sender frame |
419 // and jump to the interpreted entry. | |
420 __ jmp(*do_continue, relocInfo::none); | |
421 } | |
422 | |
423 // See if we've got enough room on the stack for locals plus overhead. | |
424 // The expression stack grows down incrementally, so the normal guard | |
425 // page mechanism will work for that. | |
426 // | |
427 // NOTE: Since the additional locals are also always pushed (wasn't | |
428 // obvious in generate_method_entry) so the guard should work for them | |
429 // too. | |
430 // | |
431 // Args: | |
432 // rdx: number of additional locals this frame needs (what we must check) | |
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433 // rbx: Method* |
0 | 434 // |
435 // Kills: | |
436 // rax | |
437 void InterpreterGenerator::generate_stack_overflow_check(void) { | |
438 | |
439 // monitor entry size: see picture of stack set | |
440 // (generate_method_entry) and frame_amd64.hpp | |
441 const int entry_size = frame::interpreter_frame_monitor_size() * wordSize; | |
442 | |
443 // total overhead size: entry_size + (saved rbp through expr stack | |
444 // bottom). be sure to change this if you add/subtract anything | |
445 // to/from the overhead area | |
446 const int overhead_size = | |
447 -(frame::interpreter_frame_initial_sp_offset * wordSize) + entry_size; | |
448 | |
449 const int page_size = os::vm_page_size(); | |
450 | |
451 Label after_frame_check; | |
452 | |
453 // see if the frame is greater than one page in size. If so, | |
454 // then we need to verify there is enough stack space remaining | |
455 // for the additional locals. | |
1506 | 456 __ cmpl(rdx, (page_size - overhead_size) / Interpreter::stackElementSize); |
0 | 457 __ jcc(Assembler::belowEqual, after_frame_check); |
458 | |
459 // compute rsp as if this were going to be the last frame on | |
460 // the stack before the red zone | |
461 | |
462 const Address stack_base(r15_thread, Thread::stack_base_offset()); | |
463 const Address stack_size(r15_thread, Thread::stack_size_offset()); | |
464 | |
465 // locals + overhead, in bytes | |
304 | 466 __ mov(rax, rdx); |
1506 | 467 __ shlptr(rax, Interpreter::logStackElementSize); // 2 slots per parameter. |
304 | 468 __ addptr(rax, overhead_size); |
0 | 469 |
470 #ifdef ASSERT | |
471 Label stack_base_okay, stack_size_okay; | |
472 // verify that thread stack base is non-zero | |
304 | 473 __ cmpptr(stack_base, (int32_t)NULL_WORD); |
0 | 474 __ jcc(Assembler::notEqual, stack_base_okay); |
475 __ stop("stack base is zero"); | |
476 __ bind(stack_base_okay); | |
477 // verify that thread stack size is non-zero | |
304 | 478 __ cmpptr(stack_size, 0); |
0 | 479 __ jcc(Assembler::notEqual, stack_size_okay); |
480 __ stop("stack size is zero"); | |
481 __ bind(stack_size_okay); | |
482 #endif | |
483 | |
484 // Add stack base to locals and subtract stack size | |
304 | 485 __ addptr(rax, stack_base); |
486 __ subptr(rax, stack_size); | |
0 | 487 |
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488 // Use the maximum number of pages we might bang. |
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489 const int max_pages = StackShadowPages > (StackRedPages+StackYellowPages) ? StackShadowPages : |
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490 (StackRedPages+StackYellowPages); |
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491 |
0 | 492 // add in the red and yellow zone sizes |
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493 __ addptr(rax, max_pages * page_size); |
0 | 494 |
495 // check against the current stack bottom | |
304 | 496 __ cmpptr(rsp, rax); |
0 | 497 __ jcc(Assembler::above, after_frame_check); |
498 | |
4743 | 499 // Restore sender's sp as SP. This is necessary if the sender's |
500 // frame is an extended compiled frame (see gen_c2i_adapter()) | |
501 // and safer anyway in case of JSR292 adaptations. | |
502 | |
503 __ pop(rax); // return address must be moved if SP is changed | |
504 __ mov(rsp, r13); | |
505 __ push(rax); | |
506 | |
507 // Note: the restored frame is not necessarily interpreted. | |
508 // Use the shared runtime version of the StackOverflowError. | |
509 assert(StubRoutines::throw_StackOverflowError_entry() != NULL, "stub not yet generated"); | |
510 __ jump(ExternalAddress(StubRoutines::throw_StackOverflowError_entry())); | |
0 | 511 |
512 // all done with frame size check | |
513 __ bind(after_frame_check); | |
514 } | |
515 | |
516 // Allocate monitor and lock method (asm interpreter) | |
517 // | |
518 // Args: | |
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519 // rbx: Method* |
0 | 520 // r14: locals |
521 // | |
522 // Kills: | |
523 // rax | |
524 // c_rarg0, c_rarg1, c_rarg2, c_rarg3, ...(param regs) | |
525 // rscratch1, rscratch2 (scratch regs) | |
526 void InterpreterGenerator::lock_method(void) { | |
527 // synchronize method | |
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528 const Address access_flags(rbx, Method::access_flags_offset()); |
0 | 529 const Address monitor_block_top( |
530 rbp, | |
531 frame::interpreter_frame_monitor_block_top_offset * wordSize); | |
532 const int entry_size = frame::interpreter_frame_monitor_size() * wordSize; | |
533 | |
534 #ifdef ASSERT | |
535 { | |
536 Label L; | |
537 __ movl(rax, access_flags); | |
538 __ testl(rax, JVM_ACC_SYNCHRONIZED); | |
539 __ jcc(Assembler::notZero, L); | |
540 __ stop("method doesn't need synchronization"); | |
541 __ bind(L); | |
542 } | |
543 #endif // ASSERT | |
544 | |
545 // get synchronization object | |
546 { | |
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547 const int mirror_offset = in_bytes(Klass::java_mirror_offset()); |
0 | 548 Label done; |
549 __ movl(rax, access_flags); | |
550 __ testl(rax, JVM_ACC_STATIC); | |
551 // get receiver (assume this is frequent case) | |
304 | 552 __ movptr(rax, Address(r14, Interpreter::local_offset_in_bytes(0))); |
0 | 553 __ jcc(Assembler::zero, done); |
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554 __ movptr(rax, Address(rbx, Method::const_offset())); |
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555 __ movptr(rax, Address(rax, ConstMethod::constants_offset())); |
304 | 556 __ movptr(rax, Address(rax, |
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557 ConstantPool::pool_holder_offset_in_bytes())); |
304 | 558 __ movptr(rax, Address(rax, mirror_offset)); |
0 | 559 |
560 #ifdef ASSERT | |
561 { | |
562 Label L; | |
304 | 563 __ testptr(rax, rax); |
0 | 564 __ jcc(Assembler::notZero, L); |
565 __ stop("synchronization object is NULL"); | |
566 __ bind(L); | |
567 } | |
568 #endif // ASSERT | |
569 | |
570 __ bind(done); | |
571 } | |
572 | |
573 // add space for monitor & lock | |
304 | 574 __ subptr(rsp, entry_size); // add space for a monitor entry |
575 __ movptr(monitor_block_top, rsp); // set new monitor block top | |
0 | 576 // store object |
304 | 577 __ movptr(Address(rsp, BasicObjectLock::obj_offset_in_bytes()), rax); |
578 __ movptr(c_rarg1, rsp); // object address | |
0 | 579 __ lock_object(c_rarg1); |
580 } | |
581 | |
582 // Generate a fixed interpreter frame. This is identical setup for | |
583 // interpreted methods and for native methods hence the shared code. | |
584 // | |
585 // Args: | |
586 // rax: return address | |
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587 // rbx: Method* |
0 | 588 // r14: pointer to locals |
589 // r13: sender sp | |
590 // rdx: cp cache | |
591 void TemplateInterpreterGenerator::generate_fixed_frame(bool native_call) { | |
592 // initialize fixed part of activation frame | |
304 | 593 __ push(rax); // save return address |
0 | 594 __ enter(); // save old & set new rbp |
304 | 595 __ push(r13); // set sender sp |
596 __ push((int)NULL_WORD); // leave last_sp as null | |
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597 __ movptr(r13, Address(rbx, Method::const_offset())); // get ConstMethod* |
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598 __ lea(r13, Address(r13, ConstMethod::codes_offset())); // get codebase |
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599 __ push(rbx); // save Method* |
0 | 600 if (ProfileInterpreter) { |
601 Label method_data_continue; | |
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602 __ movptr(rdx, Address(rbx, in_bytes(Method::method_data_offset()))); |
304 | 603 __ testptr(rdx, rdx); |
0 | 604 __ jcc(Assembler::zero, method_data_continue); |
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605 __ addptr(rdx, in_bytes(MethodData::data_offset())); |
0 | 606 __ bind(method_data_continue); |
304 | 607 __ push(rdx); // set the mdp (method data pointer) |
0 | 608 } else { |
304 | 609 __ push(0); |
0 | 610 } |
611 | |
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612 __ movptr(rdx, Address(rbx, Method::const_offset())); |
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613 __ movptr(rdx, Address(rdx, ConstMethod::constants_offset())); |
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614 __ movptr(rdx, Address(rdx, ConstantPool::cache_offset_in_bytes())); |
304 | 615 __ push(rdx); // set constant pool cache |
616 __ push(r14); // set locals pointer | |
0 | 617 if (native_call) { |
304 | 618 __ push(0); // no bcp |
0 | 619 } else { |
304 | 620 __ push(r13); // set bcp |
0 | 621 } |
304 | 622 __ push(0); // reserve word for pointer to expression stack bottom |
623 __ movptr(Address(rsp, 0), rsp); // set expression stack bottom | |
0 | 624 } |
625 | |
626 // End of helpers | |
627 | |
304 | 628 // Various method entries |
629 //------------------------------------------------------------------------------------------------------------------------ | |
630 // | |
631 // | |
632 | |
633 // Call an accessor method (assuming it is resolved, otherwise drop | |
634 // into vanilla (slow path) entry | |
635 address InterpreterGenerator::generate_accessor_entry(void) { | |
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636 // rbx: Method* |
304 | 637 |
638 // r13: senderSP must preserver for slow path, set SP to it on fast path | |
639 | |
640 address entry_point = __ pc(); | |
641 Label xreturn_path; | |
642 | |
643 // do fastpath for resolved accessor methods | |
644 if (UseFastAccessorMethods) { | |
645 // Code: _aload_0, _(i|a)getfield, _(i|a)return or any rewrites | |
646 // thereof; parameter size = 1 | |
647 // Note: We can only use this code if the getfield has been resolved | |
648 // and if we don't have a null-pointer exception => check for | |
649 // these conditions first and use slow path if necessary. | |
650 Label slow_path; | |
651 // If we need a safepoint check, generate full interpreter entry. | |
652 __ cmp32(ExternalAddress(SafepointSynchronize::address_of_state()), | |
653 SafepointSynchronize::_not_synchronized); | |
654 | |
655 __ jcc(Assembler::notEqual, slow_path); | |
656 // rbx: method | |
657 __ movptr(rax, Address(rsp, wordSize)); | |
658 | |
659 // check if local 0 != NULL and read field | |
660 __ testptr(rax, rax); | |
661 __ jcc(Assembler::zero, slow_path); | |
662 | |
663 // read first instruction word and extract bytecode @ 1 and index @ 2 | |
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664 __ movptr(rdx, Address(rbx, Method::const_offset())); |
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665 __ movptr(rdi, Address(rdx, ConstMethod::constants_offset())); |
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666 __ movl(rdx, Address(rdx, ConstMethod::codes_offset())); |
304 | 667 // Shift codes right to get the index on the right. |
668 // The bytecode fetched looks like <index><0xb4><0x2a> | |
669 __ shrl(rdx, 2 * BitsPerByte); | |
670 __ shll(rdx, exact_log2(in_words(ConstantPoolCacheEntry::size()))); | |
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671 __ movptr(rdi, Address(rdi, ConstantPool::cache_offset_in_bytes())); |
304 | 672 |
673 // rax: local 0 | |
674 // rbx: method | |
675 // rdx: constant pool cache index | |
676 // rdi: constant pool cache | |
677 | |
678 // check if getfield has been resolved and read constant pool cache entry | |
679 // check the validity of the cache entry by testing whether _indices field | |
680 // contains Bytecode::_getfield in b1 byte. | |
681 assert(in_words(ConstantPoolCacheEntry::size()) == 4, | |
682 "adjust shift below"); | |
683 __ movl(rcx, | |
684 Address(rdi, | |
685 rdx, | |
686 Address::times_8, | |
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687 ConstantPoolCache::base_offset() + |
304 | 688 ConstantPoolCacheEntry::indices_offset())); |
689 __ shrl(rcx, 2 * BitsPerByte); | |
690 __ andl(rcx, 0xFF); | |
691 __ cmpl(rcx, Bytecodes::_getfield); | |
692 __ jcc(Assembler::notEqual, slow_path); | |
693 | |
694 // Note: constant pool entry is not valid before bytecode is resolved | |
695 __ movptr(rcx, | |
696 Address(rdi, | |
697 rdx, | |
698 Address::times_8, | |
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699 ConstantPoolCache::base_offset() + |
304 | 700 ConstantPoolCacheEntry::f2_offset())); |
701 // edx: flags | |
702 __ movl(rdx, | |
703 Address(rdi, | |
704 rdx, | |
705 Address::times_8, | |
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706 ConstantPoolCache::base_offset() + |
304 | 707 ConstantPoolCacheEntry::flags_offset())); |
708 | |
709 Label notObj, notInt, notByte, notShort; | |
710 const Address field_address(rax, rcx, Address::times_1); | |
711 | |
712 // Need to differentiate between igetfield, agetfield, bgetfield etc. | |
713 // because they are different sizes. | |
714 // Use the type from the constant pool cache | |
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715 __ shrl(rdx, ConstantPoolCacheEntry::tos_state_shift); |
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716 // Make sure we don't need to mask edx after the above shift |
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717 ConstantPoolCacheEntry::verify_tos_state_shift(); |
304 | 718 |
719 __ cmpl(rdx, atos); | |
720 __ jcc(Assembler::notEqual, notObj); | |
721 // atos | |
722 __ load_heap_oop(rax, field_address); | |
723 __ jmp(xreturn_path); | |
724 | |
725 __ bind(notObj); | |
726 __ cmpl(rdx, itos); | |
727 __ jcc(Assembler::notEqual, notInt); | |
728 // itos | |
729 __ movl(rax, field_address); | |
730 __ jmp(xreturn_path); | |
731 | |
732 __ bind(notInt); | |
733 __ cmpl(rdx, btos); | |
734 __ jcc(Assembler::notEqual, notByte); | |
735 // btos | |
736 __ load_signed_byte(rax, field_address); | |
737 __ jmp(xreturn_path); | |
738 | |
739 __ bind(notByte); | |
740 __ cmpl(rdx, stos); | |
741 __ jcc(Assembler::notEqual, notShort); | |
742 // stos | |
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743 __ load_signed_short(rax, field_address); |
304 | 744 __ jmp(xreturn_path); |
745 | |
746 __ bind(notShort); | |
747 #ifdef ASSERT | |
748 Label okay; | |
749 __ cmpl(rdx, ctos); | |
750 __ jcc(Assembler::equal, okay); | |
751 __ stop("what type is this?"); | |
752 __ bind(okay); | |
753 #endif | |
754 // ctos | |
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755 __ load_unsigned_short(rax, field_address); |
304 | 756 |
757 __ bind(xreturn_path); | |
758 | |
759 // _ireturn/_areturn | |
760 __ pop(rdi); | |
761 __ mov(rsp, r13); | |
762 __ jmp(rdi); | |
763 __ ret(0); | |
764 | |
765 // generate a vanilla interpreter entry as the slow path | |
766 __ bind(slow_path); | |
767 (void) generate_normal_entry(false); | |
768 } else { | |
769 (void) generate_normal_entry(false); | |
770 } | |
771 | |
772 return entry_point; | |
773 } | |
774 | |
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775 // Method entry for java.lang.ref.Reference.get. |
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776 address InterpreterGenerator::generate_Reference_get_entry(void) { |
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777 #if INCLUDE_ALL_GCS |
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778 // Code: _aload_0, _getfield, _areturn |
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779 // parameter size = 1 |
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780 // |
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781 // The code that gets generated by this routine is split into 2 parts: |
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782 // 1. The "intrinsified" code for G1 (or any SATB based GC), |
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783 // 2. The slow path - which is an expansion of the regular method entry. |
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784 // |
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785 // Notes:- |
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786 // * In the G1 code we do not check whether we need to block for |
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787 // a safepoint. If G1 is enabled then we must execute the specialized |
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788 // code for Reference.get (except when the Reference object is null) |
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789 // so that we can log the value in the referent field with an SATB |
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790 // update buffer. |
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791 // If the code for the getfield template is modified so that the |
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792 // G1 pre-barrier code is executed when the current method is |
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793 // Reference.get() then going through the normal method entry |
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794 // will be fine. |
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795 // * The G1 code can, however, check the receiver object (the instance |
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796 // of java.lang.Reference) and jump to the slow path if null. If the |
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797 // Reference object is null then we obviously cannot fetch the referent |
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798 // and so we don't need to call the G1 pre-barrier. Thus we can use the |
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799 // regular method entry code to generate the NPE. |
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800 // |
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801 // This code is based on generate_accessor_enty. |
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802 // |
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803 // rbx: Method* |
3249
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804 |
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805 // r13: senderSP must preserve for slow path, set SP to it on fast path |
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806 |
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807 address entry = __ pc(); |
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808 |
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809 const int referent_offset = java_lang_ref_Reference::referent_offset; |
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810 guarantee(referent_offset > 0, "referent offset not initialized"); |
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811 |
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812 if (UseG1GC) { |
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813 Label slow_path; |
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814 // rbx: method |
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815 |
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816 // Check if local 0 != NULL |
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817 // If the receiver is null then it is OK to jump to the slow path. |
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818 __ movptr(rax, Address(rsp, wordSize)); |
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819 |
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820 __ testptr(rax, rax); |
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821 __ jcc(Assembler::zero, slow_path); |
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822 |
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823 // rax: local 0 |
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824 // rbx: method (but can be used as scratch now) |
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825 // rdx: scratch |
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826 // rdi: scratch |
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827 |
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828 // Generate the G1 pre-barrier code to log the value of |
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829 // the referent field in an SATB buffer. |
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830 |
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831 // Load the value of the referent field. |
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832 const Address field_address(rax, referent_offset); |
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833 __ load_heap_oop(rax, field_address); |
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834 |
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835 // Generate the G1 pre-barrier code to log the value of |
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836 // the referent field in an SATB buffer. |
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837 __ g1_write_barrier_pre(noreg /* obj */, |
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838 rax /* pre_val */, |
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839 r15_thread /* thread */, |
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840 rbx /* tmp */, |
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841 true /* tosca_live */, |
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842 true /* expand_call */); |
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843 |
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844 // _areturn |
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845 __ pop(rdi); // get return address |
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846 __ mov(rsp, r13); // set sp to sender sp |
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847 __ jmp(rdi); |
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848 __ ret(0); |
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849 |
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850 // generate a vanilla interpreter entry as the slow path |
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851 __ bind(slow_path); |
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852 (void) generate_normal_entry(false); |
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853 |
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854 return entry; |
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855 } |
8001
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856 #endif // INCLUDE_ALL_GCS |
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857 |
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858 // If G1 is not enabled then attempt to go through the accessor entry point |
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859 // Reference.get is an accessor |
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860 return generate_accessor_entry(); |
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861 } |
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862 |
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863 |
0 | 864 // Interpreter stub for calling a native method. (asm interpreter) |
865 // This sets up a somewhat different looking stack for calling the | |
866 // native method than the typical interpreter frame setup. | |
867 address InterpreterGenerator::generate_native_entry(bool synchronized) { | |
868 // determine code generation flags | |
869 bool inc_counter = UseCompiler || CountCompiledCalls; | |
870 | |
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871 // rbx: Method* |
0 | 872 // r13: sender sp |
873 | |
874 address entry_point = __ pc(); | |
875 | |
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876 const Address constMethod (rbx, Method::const_offset()); |
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877 const Address invocation_counter(rbx, Method:: |
0 | 878 invocation_counter_offset() + |
879 InvocationCounter::counter_offset()); | |
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880 const Address access_flags (rbx, Method::access_flags_offset()); |
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881 const Address size_of_parameters(rcx, ConstMethod:: |
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882 size_of_parameters_offset()); |
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883 |
0 | 884 |
885 // get parameter size (always needed) | |
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886 __ movptr(rcx, constMethod); |
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887 __ load_unsigned_short(rcx, size_of_parameters); |
0 | 888 |
889 // native calls don't need the stack size check since they have no | |
890 // expression stack and the arguments are already on the stack and | |
891 // we only add a handful of words to the stack | |
892 | |
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893 // rbx: Method* |
0 | 894 // rcx: size of parameters |
895 // r13: sender sp | |
304 | 896 __ pop(rax); // get return address |
0 | 897 |
898 // for natives the size of locals is zero | |
899 | |
900 // compute beginning of parameters (r14) | |
304 | 901 __ lea(r14, Address(rsp, rcx, Address::times_8, -wordSize)); |
0 | 902 |
903 // add 2 zero-initialized slots for native calls | |
904 // initialize result_handler slot | |
304 | 905 __ push((int) NULL_WORD); |
0 | 906 // slot for oop temp |
907 // (static native method holder mirror/jni oop result) | |
304 | 908 __ push((int) NULL_WORD); |
0 | 909 |
910 if (inc_counter) { | |
911 __ movl(rcx, invocation_counter); // (pre-)fetch invocation count | |
912 } | |
913 | |
914 // initialize fixed part of activation frame | |
915 generate_fixed_frame(true); | |
916 | |
917 // make sure method is native & not abstract | |
918 #ifdef ASSERT | |
919 __ movl(rax, access_flags); | |
920 { | |
921 Label L; | |
922 __ testl(rax, JVM_ACC_NATIVE); | |
923 __ jcc(Assembler::notZero, L); | |
924 __ stop("tried to execute non-native method as native"); | |
925 __ bind(L); | |
926 } | |
927 { | |
928 Label L; | |
929 __ testl(rax, JVM_ACC_ABSTRACT); | |
930 __ jcc(Assembler::zero, L); | |
931 __ stop("tried to execute abstract method in interpreter"); | |
932 __ bind(L); | |
933 } | |
934 #endif | |
935 | |
936 // Since at this point in the method invocation the exception handler | |
937 // would try to exit the monitor of synchronized methods which hasn't | |
938 // been entered yet, we set the thread local variable | |
939 // _do_not_unlock_if_synchronized to true. The remove_activation will | |
940 // check this flag. | |
941 | |
942 const Address do_not_unlock_if_synchronized(r15_thread, | |
943 in_bytes(JavaThread::do_not_unlock_if_synchronized_offset())); | |
944 __ movbool(do_not_unlock_if_synchronized, true); | |
945 | |
946 // increment invocation count & check for overflow | |
947 Label invocation_counter_overflow; | |
948 if (inc_counter) { | |
949 generate_counter_incr(&invocation_counter_overflow, NULL, NULL); | |
950 } | |
951 | |
952 Label continue_after_compile; | |
953 __ bind(continue_after_compile); | |
954 | |
955 bang_stack_shadow_pages(true); | |
956 | |
957 // reset the _do_not_unlock_if_synchronized flag | |
958 __ movbool(do_not_unlock_if_synchronized, false); | |
959 | |
960 // check for synchronized methods | |
961 // Must happen AFTER invocation_counter check and stack overflow check, | |
962 // so method is not locked if overflows. | |
963 if (synchronized) { | |
964 lock_method(); | |
965 } else { | |
966 // no synchronization necessary | |
967 #ifdef ASSERT | |
968 { | |
969 Label L; | |
970 __ movl(rax, access_flags); | |
971 __ testl(rax, JVM_ACC_SYNCHRONIZED); | |
972 __ jcc(Assembler::zero, L); | |
973 __ stop("method needs synchronization"); | |
974 __ bind(L); | |
975 } | |
976 #endif | |
977 } | |
978 | |
979 // start execution | |
980 #ifdef ASSERT | |
981 { | |
982 Label L; | |
983 const Address monitor_block_top(rbp, | |
984 frame::interpreter_frame_monitor_block_top_offset * wordSize); | |
304 | 985 __ movptr(rax, monitor_block_top); |
986 __ cmpptr(rax, rsp); | |
0 | 987 __ jcc(Assembler::equal, L); |
988 __ stop("broken stack frame setup in interpreter"); | |
989 __ bind(L); | |
990 } | |
991 #endif | |
992 | |
993 // jvmti support | |
994 __ notify_method_entry(); | |
995 | |
996 // work registers | |
997 const Register method = rbx; | |
113
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998 const Register t = r11; |
0 | 999 |
1000 // allocate space for parameters | |
1001 __ get_method(method); | |
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1002 __ movptr(t, Address(method, Method::const_offset())); |
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1003 __ load_unsigned_short(t, Address(t, ConstMethod::size_of_parameters_offset())); |
1506 | 1004 __ shll(t, Interpreter::logStackElementSize); |
0 | 1005 |
304 | 1006 __ subptr(rsp, t); |
1007 __ subptr(rsp, frame::arg_reg_save_area_bytes); // windows | |
605 | 1008 __ andptr(rsp, -16); // must be 16 byte boundary (see amd64 ABI) |
0 | 1009 |
1010 // get signature handler | |
1011 { | |
1012 Label L; | |
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1013 __ movptr(t, Address(method, Method::signature_handler_offset())); |
304 | 1014 __ testptr(t, t); |
0 | 1015 __ jcc(Assembler::notZero, L); |
1016 __ call_VM(noreg, | |
1017 CAST_FROM_FN_PTR(address, | |
1018 InterpreterRuntime::prepare_native_call), | |
1019 method); | |
1020 __ get_method(method); | |
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1021 __ movptr(t, Address(method, Method::signature_handler_offset())); |
0 | 1022 __ bind(L); |
1023 } | |
1024 | |
1025 // call signature handler | |
1026 assert(InterpreterRuntime::SignatureHandlerGenerator::from() == r14, | |
1027 "adjust this code"); | |
1028 assert(InterpreterRuntime::SignatureHandlerGenerator::to() == rsp, | |
1029 "adjust this code"); | |
1030 assert(InterpreterRuntime::SignatureHandlerGenerator::temp() == rscratch1, | |
1031 "adjust this code"); | |
1032 | |
1033 // The generated handlers do not touch RBX (the method oop). | |
1034 // However, large signatures cannot be cached and are generated | |
1035 // each time here. The slow-path generator can do a GC on return, | |
1036 // so we must reload it after the call. | |
1037 __ call(t); | |
1038 __ get_method(method); // slow path can do a GC, reload RBX | |
1039 | |
1040 | |
1041 // result handler is in rax | |
1042 // set result handler | |
304 | 1043 __ movptr(Address(rbp, |
1044 (frame::interpreter_frame_result_handler_offset) * wordSize), | |
1045 rax); | |
0 | 1046 |
1047 // pass mirror handle if static call | |
1048 { | |
1049 Label L; | |
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1050 const int mirror_offset = in_bytes(Klass::java_mirror_offset()); |
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1051 __ movl(t, Address(method, Method::access_flags_offset())); |
0 | 1052 __ testl(t, JVM_ACC_STATIC); |
1053 __ jcc(Assembler::zero, L); | |
1054 // get mirror | |
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1055 __ movptr(t, Address(method, Method::const_offset())); |
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1056 __ movptr(t, Address(t, ConstMethod::constants_offset())); |
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1057 __ movptr(t, Address(t, ConstantPool::pool_holder_offset_in_bytes())); |
304 | 1058 __ movptr(t, Address(t, mirror_offset)); |
0 | 1059 // copy mirror into activation frame |
304 | 1060 __ movptr(Address(rbp, frame::interpreter_frame_oop_temp_offset * wordSize), |
0 | 1061 t); |
1062 // pass handle to mirror | |
304 | 1063 __ lea(c_rarg1, |
1064 Address(rbp, frame::interpreter_frame_oop_temp_offset * wordSize)); | |
0 | 1065 __ bind(L); |
1066 } | |
1067 | |
1068 // get native function entry point | |
1069 { | |
1070 Label L; | |
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1071 __ movptr(rax, Address(method, Method::native_function_offset())); |
0 | 1072 ExternalAddress unsatisfied(SharedRuntime::native_method_throw_unsatisfied_link_error_entry()); |
1073 __ movptr(rscratch2, unsatisfied.addr()); | |
304 | 1074 __ cmpptr(rax, rscratch2); |
0 | 1075 __ jcc(Assembler::notEqual, L); |
1076 __ call_VM(noreg, | |
1077 CAST_FROM_FN_PTR(address, | |
1078 InterpreterRuntime::prepare_native_call), | |
1079 method); | |
1080 __ get_method(method); | |
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1081 __ movptr(rax, Address(method, Method::native_function_offset())); |
0 | 1082 __ bind(L); |
1083 } | |
1084 | |
1085 // pass JNIEnv | |
304 | 1086 __ lea(c_rarg0, Address(r15_thread, JavaThread::jni_environment_offset())); |
0 | 1087 |
1088 // It is enough that the pc() points into the right code | |
1089 // segment. It does not have to be the correct return pc. | |
1090 __ set_last_Java_frame(rsp, rbp, (address) __ pc()); | |
1091 | |
1092 // change thread state | |
1093 #ifdef ASSERT | |
1094 { | |
1095 Label L; | |
1096 __ movl(t, Address(r15_thread, JavaThread::thread_state_offset())); | |
1097 __ cmpl(t, _thread_in_Java); | |
1098 __ jcc(Assembler::equal, L); | |
1099 __ stop("Wrong thread state in native stub"); | |
1100 __ bind(L); | |
1101 } | |
1102 #endif | |
1103 | |
1104 // Change state to native | |
1105 | |
1106 __ movl(Address(r15_thread, JavaThread::thread_state_offset()), | |
1107 _thread_in_native); | |
1108 | |
1109 // Call the native method. | |
1110 __ call(rax); | |
1111 // result potentially in rax or xmm0 | |
1112 | |
1113 // Depending on runtime options, either restore the MXCSR | |
1114 // register after returning from the JNI Call or verify that | |
1115 // it wasn't changed during -Xcheck:jni. | |
1116 if (RestoreMXCSROnJNICalls) { | |
304 | 1117 __ ldmxcsr(ExternalAddress(StubRoutines::x86::mxcsr_std())); |
0 | 1118 } |
1119 else if (CheckJNICalls) { | |
304 | 1120 __ call(RuntimeAddress(CAST_FROM_FN_PTR(address, StubRoutines::x86::verify_mxcsr_entry()))); |
0 | 1121 } |
1122 | |
1123 // NOTE: The order of these pushes is known to frame::interpreter_frame_result | |
1124 // in order to extract the result of a method call. If the order of these | |
1125 // pushes change or anything else is added to the stack then the code in | |
1126 // interpreter_frame_result must also change. | |
1127 | |
1128 __ push(dtos); | |
1129 __ push(ltos); | |
1130 | |
1131 // change thread state | |
1132 __ movl(Address(r15_thread, JavaThread::thread_state_offset()), | |
1133 _thread_in_native_trans); | |
1134 | |
1135 if (os::is_MP()) { | |
1136 if (UseMembar) { | |
1137 // Force this write out before the read below | |
1138 __ membar(Assembler::Membar_mask_bits( | |
1139 Assembler::LoadLoad | Assembler::LoadStore | | |
1140 Assembler::StoreLoad | Assembler::StoreStore)); | |
1141 } else { | |
1142 // Write serialization page so VM thread can do a pseudo remote membar. | |
1143 // We use the current thread pointer to calculate a thread specific | |
1144 // offset to write to within the page. This minimizes bus traffic | |
1145 // due to cache line collision. | |
1146 __ serialize_memory(r15_thread, rscratch2); | |
1147 } | |
1148 } | |
1149 | |
1150 // check for safepoint operation in progress and/or pending suspend requests | |
1151 { | |
1152 Label Continue; | |
1153 __ cmp32(ExternalAddress(SafepointSynchronize::address_of_state()), | |
1154 SafepointSynchronize::_not_synchronized); | |
1155 | |
1156 Label L; | |
1157 __ jcc(Assembler::notEqual, L); | |
1158 __ cmpl(Address(r15_thread, JavaThread::suspend_flags_offset()), 0); | |
1159 __ jcc(Assembler::equal, Continue); | |
1160 __ bind(L); | |
1161 | |
1162 // Don't use call_VM as it will see a possible pending exception | |
1163 // and forward it and never return here preventing us from | |
1164 // clearing _last_native_pc down below. Also can't use | |
1165 // call_VM_leaf either as it will check to see if r13 & r14 are | |
1166 // preserved and correspond to the bcp/locals pointers. So we do a | |
1167 // runtime call by hand. | |
1168 // | |
304 | 1169 __ mov(c_rarg0, r15_thread); |
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1170 __ mov(r12, rsp); // remember sp (can only use r12 if not using call_VM) |
304 | 1171 __ subptr(rsp, frame::arg_reg_save_area_bytes); // windows |
1172 __ andptr(rsp, -16); // align stack as required by ABI | |
0 | 1173 __ call(RuntimeAddress(CAST_FROM_FN_PTR(address, JavaThread::check_special_condition_for_native_trans))); |
304 | 1174 __ mov(rsp, r12); // restore sp |
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1175 __ reinit_heapbase(); |
0 | 1176 __ bind(Continue); |
1177 } | |
1178 | |
1179 // change thread state | |
1180 __ movl(Address(r15_thread, JavaThread::thread_state_offset()), _thread_in_Java); | |
1181 | |
1182 // reset_last_Java_frame | |
1183 __ reset_last_Java_frame(true, true); | |
1184 | |
1185 // reset handle block | |
304 | 1186 __ movptr(t, Address(r15_thread, JavaThread::active_handles_offset())); |
1187 __ movptr(Address(t, JNIHandleBlock::top_offset_in_bytes()), (int32_t)NULL_WORD); | |
0 | 1188 |
1189 // If result is an oop unbox and store it in frame where gc will see it | |
1190 // and result handler will pick it up | |
1191 | |
1192 { | |
1193 Label no_oop, store_result; | |
1194 __ lea(t, ExternalAddress(AbstractInterpreter::result_handler(T_OBJECT))); | |
304 | 1195 __ cmpptr(t, Address(rbp, frame::interpreter_frame_result_handler_offset*wordSize)); |
0 | 1196 __ jcc(Assembler::notEqual, no_oop); |
1197 // retrieve result | |
1198 __ pop(ltos); | |
304 | 1199 __ testptr(rax, rax); |
0 | 1200 __ jcc(Assembler::zero, store_result); |
304 | 1201 __ movptr(rax, Address(rax, 0)); |
0 | 1202 __ bind(store_result); |
304 | 1203 __ movptr(Address(rbp, frame::interpreter_frame_oop_temp_offset*wordSize), rax); |
0 | 1204 // keep stack depth as expected by pushing oop which will eventually be discarde |
1205 __ push(ltos); | |
1206 __ bind(no_oop); | |
1207 } | |
1208 | |
1209 | |
1210 { | |
1211 Label no_reguard; | |
1212 __ cmpl(Address(r15_thread, JavaThread::stack_guard_state_offset()), | |
1213 JavaThread::stack_guard_yellow_disabled); | |
1214 __ jcc(Assembler::notEqual, no_reguard); | |
1215 | |
304 | 1216 __ pusha(); // XXX only save smashed registers |
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1217 __ mov(r12, rsp); // remember sp (can only use r12 if not using call_VM) |
304 | 1218 __ subptr(rsp, frame::arg_reg_save_area_bytes); // windows |
1219 __ andptr(rsp, -16); // align stack as required by ABI | |
0 | 1220 __ call(RuntimeAddress(CAST_FROM_FN_PTR(address, SharedRuntime::reguard_yellow_pages))); |
304 | 1221 __ mov(rsp, r12); // restore sp |
1222 __ popa(); // XXX only restore smashed registers | |
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1223 __ reinit_heapbase(); |
0 | 1224 |
1225 __ bind(no_reguard); | |
1226 } | |
1227 | |
1228 | |
1229 // The method register is junk from after the thread_in_native transition | |
1230 // until here. Also can't call_VM until the bcp has been | |
1231 // restored. Need bcp for throwing exception below so get it now. | |
1232 __ get_method(method); | |
1233 | |
1234 // restore r13 to have legal interpreter frame, i.e., bci == 0 <=> | |
1235 // r13 == code_base() | |
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1236 __ movptr(r13, Address(method, Method::const_offset())); // get ConstMethod* |
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1237 __ lea(r13, Address(r13, ConstMethod::codes_offset())); // get codebase |
0 | 1238 // handle exceptions (exception handling will handle unlocking!) |
1239 { | |
1240 Label L; | |
304 | 1241 __ cmpptr(Address(r15_thread, Thread::pending_exception_offset()), (int32_t) NULL_WORD); |
0 | 1242 __ jcc(Assembler::zero, L); |
1243 // Note: At some point we may want to unify this with the code | |
1244 // used in call_VM_base(); i.e., we should use the | |
1245 // StubRoutines::forward_exception code. For now this doesn't work | |
1246 // here because the rsp is not correctly set at this point. | |
1247 __ MacroAssembler::call_VM(noreg, | |
1248 CAST_FROM_FN_PTR(address, | |
1249 InterpreterRuntime::throw_pending_exception)); | |
1250 __ should_not_reach_here(); | |
1251 __ bind(L); | |
1252 } | |
1253 | |
1254 // do unlocking if necessary | |
1255 { | |
1256 Label L; | |
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1257 __ movl(t, Address(method, Method::access_flags_offset())); |
0 | 1258 __ testl(t, JVM_ACC_SYNCHRONIZED); |
1259 __ jcc(Assembler::zero, L); | |
1260 // the code below should be shared with interpreter macro | |
1261 // assembler implementation | |
1262 { | |
1263 Label unlock; | |
1264 // BasicObjectLock will be first in list, since this is a | |
1265 // synchronized method. However, need to check that the object | |
1266 // has not been unlocked by an explicit monitorexit bytecode. | |
1267 const Address monitor(rbp, | |
1268 (intptr_t)(frame::interpreter_frame_initial_sp_offset * | |
1269 wordSize - sizeof(BasicObjectLock))); | |
1270 | |
1271 // monitor expect in c_rarg1 for slow unlock path | |
304 | 1272 __ lea(c_rarg1, monitor); // address of first monitor |
0 | 1273 |
304 | 1274 __ movptr(t, Address(c_rarg1, BasicObjectLock::obj_offset_in_bytes())); |
1275 __ testptr(t, t); | |
0 | 1276 __ jcc(Assembler::notZero, unlock); |
1277 | |
1278 // Entry already unlocked, need to throw exception | |
1279 __ MacroAssembler::call_VM(noreg, | |
1280 CAST_FROM_FN_PTR(address, | |
1281 InterpreterRuntime::throw_illegal_monitor_state_exception)); | |
1282 __ should_not_reach_here(); | |
1283 | |
1284 __ bind(unlock); | |
1285 __ unlock_object(c_rarg1); | |
1286 } | |
1287 __ bind(L); | |
1288 } | |
1289 | |
1290 // jvmti support | |
1291 // Note: This must happen _after_ handling/throwing any exceptions since | |
1292 // the exception handler code notifies the runtime of method exits | |
1293 // too. If this happens before, method entry/exit notifications are | |
1294 // not properly paired (was bug - gri 11/22/99). | |
1295 __ notify_method_exit(vtos, InterpreterMacroAssembler::NotifyJVMTI); | |
1296 | |
1297 // restore potential result in edx:eax, call result handler to | |
1298 // restore potential result in ST0 & handle result | |
1299 | |
1300 __ pop(ltos); | |
1301 __ pop(dtos); | |
1302 | |
304 | 1303 __ movptr(t, Address(rbp, |
1304 (frame::interpreter_frame_result_handler_offset) * wordSize)); | |
0 | 1305 __ call(t); |
1306 | |
1307 // remove activation | |
304 | 1308 __ movptr(t, Address(rbp, |
1309 frame::interpreter_frame_sender_sp_offset * | |
1310 wordSize)); // get sender sp | |
0 | 1311 __ leave(); // remove frame anchor |
304 | 1312 __ pop(rdi); // get return address |
1313 __ mov(rsp, t); // set sp to sender sp | |
0 | 1314 __ jmp(rdi); |
1315 | |
1316 if (inc_counter) { | |
1317 // Handle overflow of counter and compile method | |
1318 __ bind(invocation_counter_overflow); | |
1319 generate_counter_overflow(&continue_after_compile); | |
1320 } | |
1321 | |
1322 return entry_point; | |
1323 } | |
1324 | |
1325 // | |
1326 // Generic interpreted method entry to (asm) interpreter | |
1327 // | |
1328 address InterpreterGenerator::generate_normal_entry(bool synchronized) { | |
1329 // determine code generation flags | |
1330 bool inc_counter = UseCompiler || CountCompiledCalls; | |
1331 | |
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1332 // ebx: Method* |
0 | 1333 // r13: sender sp |
1334 address entry_point = __ pc(); | |
1335 | |
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1336 const Address constMethod(rbx, Method::const_offset()); |
0 | 1337 const Address invocation_counter(rbx, |
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1338 Method::invocation_counter_offset() + |
0 | 1339 InvocationCounter::counter_offset()); |
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1340 const Address access_flags(rbx, Method::access_flags_offset()); |
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1341 const Address size_of_parameters(rdx, |
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1342 ConstMethod::size_of_parameters_offset()); |
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1343 const Address size_of_locals(rdx, ConstMethod::size_of_locals_offset()); |
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1344 |
0 | 1345 |
1346 // get parameter size (always needed) | |
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1347 __ movptr(rdx, constMethod); |
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1348 __ load_unsigned_short(rcx, size_of_parameters); |
0 | 1349 |
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1350 // rbx: Method* |
0 | 1351 // rcx: size of parameters |
1352 // r13: sender_sp (could differ from sp+wordSize if we were called via c2i ) | |
1353 | |
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1354 __ load_unsigned_short(rdx, size_of_locals); // get size of locals in words |
0 | 1355 __ subl(rdx, rcx); // rdx = no. of additional locals |
1356 | |
1357 // YYY | |
1358 // __ incrementl(rdx); | |
1359 // __ andl(rdx, -2); | |
1360 | |
1361 // see if we've got enough room on the stack for locals plus overhead. | |
1362 generate_stack_overflow_check(); | |
1363 | |
1364 // get return address | |
304 | 1365 __ pop(rax); |
0 | 1366 |
1367 // compute beginning of parameters (r14) | |
304 | 1368 __ lea(r14, Address(rsp, rcx, Address::times_8, -wordSize)); |
0 | 1369 |
1370 // rdx - # of additional locals | |
1371 // allocate space for locals | |
1372 // explicitly initialize locals | |
1373 { | |
1374 Label exit, loop; | |
1375 __ testl(rdx, rdx); | |
1376 __ jcc(Assembler::lessEqual, exit); // do nothing if rdx <= 0 | |
1377 __ bind(loop); | |
304 | 1378 __ push((int) NULL_WORD); // initialize local variables |
0 | 1379 __ decrementl(rdx); // until everything initialized |
1380 __ jcc(Assembler::greater, loop); | |
1381 __ bind(exit); | |
1382 } | |
1383 | |
1384 // (pre-)fetch invocation count | |
1385 if (inc_counter) { | |
1386 __ movl(rcx, invocation_counter); | |
1387 } | |
1388 // initialize fixed part of activation frame | |
1389 generate_fixed_frame(false); | |
1390 | |
1391 // make sure method is not native & not abstract | |
1392 #ifdef ASSERT | |
1393 __ movl(rax, access_flags); | |
1394 { | |
1395 Label L; | |
1396 __ testl(rax, JVM_ACC_NATIVE); | |
1397 __ jcc(Assembler::zero, L); | |
1398 __ stop("tried to execute native method as non-native"); | |
1399 __ bind(L); | |
1400 } | |
1401 { | |
1402 Label L; | |
1403 __ testl(rax, JVM_ACC_ABSTRACT); | |
1404 __ jcc(Assembler::zero, L); | |
1405 __ stop("tried to execute abstract method in interpreter"); | |
1406 __ bind(L); | |
1407 } | |
1408 #endif | |
1409 | |
1410 // Since at this point in the method invocation the exception | |
1411 // handler would try to exit the monitor of synchronized methods | |
1412 // which hasn't been entered yet, we set the thread local variable | |
1413 // _do_not_unlock_if_synchronized to true. The remove_activation | |
1414 // will check this flag. | |
1415 | |
1416 const Address do_not_unlock_if_synchronized(r15_thread, | |
1417 in_bytes(JavaThread::do_not_unlock_if_synchronized_offset())); | |
1418 __ movbool(do_not_unlock_if_synchronized, true); | |
1419 | |
1420 // increment invocation count & check for overflow | |
1421 Label invocation_counter_overflow; | |
1422 Label profile_method; | |
1423 Label profile_method_continue; | |
1424 if (inc_counter) { | |
1425 generate_counter_incr(&invocation_counter_overflow, | |
1426 &profile_method, | |
1427 &profile_method_continue); | |
1428 if (ProfileInterpreter) { | |
1429 __ bind(profile_method_continue); | |
1430 } | |
1431 } | |
1432 | |
1433 Label continue_after_compile; | |
1434 __ bind(continue_after_compile); | |
1435 | |
1436 // check for synchronized interpreted methods | |
1437 bang_stack_shadow_pages(false); | |
1438 | |
1439 // reset the _do_not_unlock_if_synchronized flag | |
1440 __ movbool(do_not_unlock_if_synchronized, false); | |
1441 | |
1442 // check for synchronized methods | |
1443 // Must happen AFTER invocation_counter check and stack overflow check, | |
1444 // so method is not locked if overflows. | |
1445 if (synchronized) { | |
1446 // Allocate monitor and lock method | |
1447 lock_method(); | |
1448 } else { | |
1449 // no synchronization necessary | |
1450 #ifdef ASSERT | |
1451 { | |
1452 Label L; | |
1453 __ movl(rax, access_flags); | |
1454 __ testl(rax, JVM_ACC_SYNCHRONIZED); | |
1455 __ jcc(Assembler::zero, L); | |
1456 __ stop("method needs synchronization"); | |
1457 __ bind(L); | |
1458 } | |
1459 #endif | |
1460 } | |
1461 | |
1462 // start execution | |
1463 #ifdef ASSERT | |
1464 { | |
1465 Label L; | |
1466 const Address monitor_block_top (rbp, | |
1467 frame::interpreter_frame_monitor_block_top_offset * wordSize); | |
304 | 1468 __ movptr(rax, monitor_block_top); |
1469 __ cmpptr(rax, rsp); | |
0 | 1470 __ jcc(Assembler::equal, L); |
1471 __ stop("broken stack frame setup in interpreter"); | |
1472 __ bind(L); | |
1473 } | |
1474 #endif | |
1475 | |
1476 // jvmti support | |
1477 __ notify_method_entry(); | |
1478 | |
1479 __ dispatch_next(vtos); | |
1480 | |
1481 // invocation counter overflow | |
1482 if (inc_counter) { | |
1483 if (ProfileInterpreter) { | |
1484 // We have decided to profile this method in the interpreter | |
1485 __ bind(profile_method); | |
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1486 __ call_VM(noreg, CAST_FROM_FN_PTR(address, InterpreterRuntime::profile_method)); |
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1487 __ set_method_data_pointer_for_bcp(); |
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1488 __ get_method(rbx); |
0 | 1489 __ jmp(profile_method_continue); |
1490 } | |
1491 // Handle overflow of counter and compile method | |
1492 __ bind(invocation_counter_overflow); | |
1493 generate_counter_overflow(&continue_after_compile); | |
1494 } | |
1495 | |
1496 return entry_point; | |
1497 } | |
1498 | |
1499 // Entry points | |
1500 // | |
1501 // Here we generate the various kind of entries into the interpreter. | |
1502 // The two main entry type are generic bytecode methods and native | |
1503 // call method. These both come in synchronized and non-synchronized | |
1504 // versions but the frame layout they create is very similar. The | |
1505 // other method entry types are really just special purpose entries | |
1506 // that are really entry and interpretation all in one. These are for | |
1507 // trivial methods like accessor, empty, or special math methods. | |
1508 // | |
1509 // When control flow reaches any of the entry types for the interpreter | |
1510 // the following holds -> | |
1511 // | |
1512 // Arguments: | |
1513 // | |
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1514 // rbx: Method* |
0 | 1515 // |
1516 // Stack layout immediately at entry | |
1517 // | |
1518 // [ return address ] <--- rsp | |
1519 // [ parameter n ] | |
1520 // ... | |
1521 // [ parameter 1 ] | |
1522 // [ expression stack ] (caller's java expression stack) | |
1523 | |
1524 // Assuming that we don't go to one of the trivial specialized entries | |
1525 // the stack will look like below when we are ready to execute the | |
1526 // first bytecode (or call the native routine). The register usage | |
1527 // will be as the template based interpreter expects (see | |
1528 // interpreter_amd64.hpp). | |
1529 // | |
1530 // local variables follow incoming parameters immediately; i.e. | |
1531 // the return address is moved to the end of the locals). | |
1532 // | |
1533 // [ monitor entry ] <--- rsp | |
1534 // ... | |
1535 // [ monitor entry ] | |
1536 // [ expr. stack bottom ] | |
1537 // [ saved r13 ] | |
1538 // [ current r14 ] | |
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1539 // [ Method* ] |
0 | 1540 // [ saved ebp ] <--- rbp |
1541 // [ return address ] | |
1542 // [ local variable m ] | |
1543 // ... | |
1544 // [ local variable 1 ] | |
1545 // [ parameter n ] | |
1546 // ... | |
1547 // [ parameter 1 ] <--- r14 | |
1548 | |
1549 address AbstractInterpreterGenerator::generate_method_entry( | |
1550 AbstractInterpreter::MethodKind kind) { | |
1551 // determine code generation flags | |
1552 bool synchronized = false; | |
1553 address entry_point = NULL; | |
1554 | |
1555 switch (kind) { | |
1556 case Interpreter::zerolocals : break; | |
1557 case Interpreter::zerolocals_synchronized: synchronized = true; break; | |
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1558 case Interpreter::native : entry_point = ((InterpreterGenerator*)this)->generate_native_entry(false); break; |
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1559 case Interpreter::native_synchronized : entry_point = ((InterpreterGenerator*)this)->generate_native_entry(true); break; |
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1560 case Interpreter::empty : entry_point = ((InterpreterGenerator*)this)->generate_empty_entry(); break; |
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1561 case Interpreter::accessor : entry_point = ((InterpreterGenerator*)this)->generate_accessor_entry(); break; |
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1562 case Interpreter::abstract : entry_point = ((InterpreterGenerator*)this)->generate_abstract_entry(); break; |
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1563 |
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1564 case Interpreter::java_lang_math_sin : // fall thru |
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1565 case Interpreter::java_lang_math_cos : // fall thru |
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1566 case Interpreter::java_lang_math_tan : // fall thru |
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1567 case Interpreter::java_lang_math_abs : // fall thru |
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1568 case Interpreter::java_lang_math_log : // fall thru |
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1569 case Interpreter::java_lang_math_log10 : // fall thru |
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1570 case Interpreter::java_lang_math_sqrt : // fall thru |
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1571 case Interpreter::java_lang_math_pow : // fall thru |
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1572 case Interpreter::java_lang_math_exp : entry_point = ((InterpreterGenerator*)this)->generate_math_entry(kind); break; |
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1573 case Interpreter::java_lang_ref_reference_get |
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1574 : entry_point = ((InterpreterGenerator*)this)->generate_Reference_get_entry(); break; |
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1575 default: |
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1576 fatal(err_msg("unexpected method kind: %d", kind)); |
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1577 break; |
0 | 1578 } |
1579 | |
1580 if (entry_point) { | |
1581 return entry_point; | |
1582 } | |
1583 | |
1584 return ((InterpreterGenerator*) this)-> | |
1585 generate_normal_entry(synchronized); | |
1586 } | |
1587 | |
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1588 // These should never be compiled since the interpreter will prefer |
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1589 // the compiled version to the intrinsic version. |
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1590 bool AbstractInterpreter::can_be_compiled(methodHandle m) { |
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1591 switch (method_kind(m)) { |
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1592 case Interpreter::java_lang_math_sin : // fall thru |
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1593 case Interpreter::java_lang_math_cos : // fall thru |
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1594 case Interpreter::java_lang_math_tan : // fall thru |
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1595 case Interpreter::java_lang_math_abs : // fall thru |
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1596 case Interpreter::java_lang_math_log : // fall thru |
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1597 case Interpreter::java_lang_math_log10 : // fall thru |
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1598 case Interpreter::java_lang_math_sqrt : // fall thru |
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1599 case Interpreter::java_lang_math_pow : // fall thru |
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1600 case Interpreter::java_lang_math_exp : |
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1601 return false; |
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1602 default: |
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1603 return true; |
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1604 } |
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1605 } |
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1606 |
0 | 1607 // How much stack a method activation needs in words. |
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1608 int AbstractInterpreter::size_top_interpreter_activation(Method* method) { |
0 | 1609 const int entry_size = frame::interpreter_frame_monitor_size(); |
1610 | |
1611 // total overhead size: entry_size + (saved rbp thru expr stack | |
1612 // bottom). be sure to change this if you add/subtract anything | |
1613 // to/from the overhead area | |
1614 const int overhead_size = | |
1615 -(frame::interpreter_frame_initial_sp_offset) + entry_size; | |
1616 | |
1617 const int stub_code = frame::entry_frame_after_call_words; | |
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1618 const int extra_stack = Method::extra_stack_entries(); |
710 | 1619 const int method_stack = (method->max_locals() + method->max_stack() + extra_stack) * |
1506 | 1620 Interpreter::stackElementWords; |
0 | 1621 return (overhead_size + method_stack + stub_code); |
1622 } | |
1623 | |
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1624 int AbstractInterpreter::layout_activation(Method* method, |
0 | 1625 int tempcount, |
1626 int popframe_extra_args, | |
1627 int moncount, | |
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1628 int caller_actual_parameters, |
0 | 1629 int callee_param_count, |
1630 int callee_locals, | |
1631 frame* caller, | |
1632 frame* interpreter_frame, | |
1633 bool is_top_frame) { | |
1634 // Note: This calculation must exactly parallel the frame setup | |
1635 // in AbstractInterpreterGenerator::generate_method_entry. | |
1636 // If interpreter_frame!=NULL, set up the method, locals, and monitors. | |
1637 // The frame interpreter_frame, if not NULL, is guaranteed to be the | |
1638 // right size, as determined by a previous call to this method. | |
1639 // It is also guaranteed to be walkable even though it is in a skeletal state | |
1640 | |
1641 // fixed size of an interpreter frame: | |
1506 | 1642 int max_locals = method->max_locals() * Interpreter::stackElementWords; |
0 | 1643 int extra_locals = (method->max_locals() - method->size_of_parameters()) * |
1506 | 1644 Interpreter::stackElementWords; |
0 | 1645 |
1646 int overhead = frame::sender_sp_offset - | |
1647 frame::interpreter_frame_initial_sp_offset; | |
1648 // Our locals were accounted for by the caller (or last_frame_adjust | |
1649 // on the transistion) Since the callee parameters already account | |
1650 // for the callee's params we only need to account for the extra | |
1651 // locals. | |
1652 int size = overhead + | |
1506 | 1653 (callee_locals - callee_param_count)*Interpreter::stackElementWords + |
0 | 1654 moncount * frame::interpreter_frame_monitor_size() + |
1506 | 1655 tempcount* Interpreter::stackElementWords + popframe_extra_args; |
0 | 1656 if (interpreter_frame != NULL) { |
1657 #ifdef ASSERT | |
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1658 if (!EnableInvokeDynamic) |
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1659 // @@@ FIXME: Should we correct interpreter_frame_sender_sp in the calling sequences? |
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1660 // Probably, since deoptimization doesn't work yet. |
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1661 assert(caller->unextended_sp() == interpreter_frame->interpreter_frame_sender_sp(), "Frame not properly walkable"); |
0 | 1662 assert(caller->sp() == interpreter_frame->sender_sp(), "Frame not properly walkable(2)"); |
1663 #endif | |
1664 | |
1665 interpreter_frame->interpreter_frame_set_method(method); | |
1666 // NOTE the difference in using sender_sp and | |
1667 // interpreter_frame_sender_sp interpreter_frame_sender_sp is | |
1668 // the original sp of the caller (the unextended_sp) and | |
1669 // sender_sp is fp+16 XXX | |
1670 intptr_t* locals = interpreter_frame->sender_sp() + max_locals - 1; | |
1671 | |
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1672 #ifdef ASSERT |
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1673 if (caller->is_interpreted_frame()) { |
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1674 assert(locals < caller->fp() + frame::interpreter_frame_initial_sp_offset, "bad placement"); |
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1675 } |
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1676 #endif |
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1677 |
0 | 1678 interpreter_frame->interpreter_frame_set_locals(locals); |
1679 BasicObjectLock* montop = interpreter_frame->interpreter_frame_monitor_begin(); | |
1680 BasicObjectLock* monbot = montop - moncount; | |
1681 interpreter_frame->interpreter_frame_set_monitor_end(monbot); | |
1682 | |
1683 // Set last_sp | |
1684 intptr_t* esp = (intptr_t*) monbot - | |
1506 | 1685 tempcount*Interpreter::stackElementWords - |
0 | 1686 popframe_extra_args; |
1687 interpreter_frame->interpreter_frame_set_last_sp(esp); | |
1688 | |
1689 // All frames but the initial (oldest) interpreter frame we fill in have | |
1690 // a value for sender_sp that allows walking the stack but isn't | |
1691 // truly correct. Correct the value here. | |
1692 if (extra_locals != 0 && | |
1693 interpreter_frame->sender_sp() == | |
1694 interpreter_frame->interpreter_frame_sender_sp()) { | |
1695 interpreter_frame->set_interpreter_frame_sender_sp(caller->sp() + | |
1696 extra_locals); | |
1697 } | |
1698 *interpreter_frame->interpreter_frame_cache_addr() = | |
1699 method->constants()->cache(); | |
1700 } | |
1701 return size; | |
1702 } | |
1703 | |
1704 //----------------------------------------------------------------------------- | |
1705 // Exceptions | |
1706 | |
1707 void TemplateInterpreterGenerator::generate_throw_exception() { | |
1708 // Entry point in previous activation (i.e., if the caller was | |
1709 // interpreted) | |
1710 Interpreter::_rethrow_exception_entry = __ pc(); | |
1711 // Restore sp to interpreter_frame_last_sp even though we are going | |
1712 // to empty the expression stack for the exception processing. | |
304 | 1713 __ movptr(Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize), (int32_t)NULL_WORD); |
0 | 1714 // rax: exception |
1715 // rdx: return address/pc that threw exception | |
1716 __ restore_bcp(); // r13 points to call/send | |
1717 __ restore_locals(); | |
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1718 __ reinit_heapbase(); // restore r12 as heapbase. |
0 | 1719 // Entry point for exceptions thrown within interpreter code |
1720 Interpreter::_throw_exception_entry = __ pc(); | |
1721 // expression stack is undefined here | |
1722 // rax: exception | |
1723 // r13: exception bcp | |
1724 __ verify_oop(rax); | |
304 | 1725 __ mov(c_rarg1, rax); |
0 | 1726 |
1727 // expression stack must be empty before entering the VM in case of | |
1728 // an exception | |
1729 __ empty_expression_stack(); | |
1730 // find exception handler address and preserve exception oop | |
1731 __ call_VM(rdx, | |
1732 CAST_FROM_FN_PTR(address, | |
1733 InterpreterRuntime::exception_handler_for_exception), | |
1734 c_rarg1); | |
1735 // rax: exception handler entry point | |
1736 // rdx: preserved exception oop | |
1737 // r13: bcp for exception handler | |
1738 __ push_ptr(rdx); // push exception which is now the only value on the stack | |
1739 __ jmp(rax); // jump to exception handler (may be _remove_activation_entry!) | |
1740 | |
1741 // If the exception is not handled in the current frame the frame is | |
1742 // removed and the exception is rethrown (i.e. exception | |
1743 // continuation is _rethrow_exception). | |
1744 // | |
1745 // Note: At this point the bci is still the bxi for the instruction | |
1746 // which caused the exception and the expression stack is | |
1747 // empty. Thus, for any VM calls at this point, GC will find a legal | |
1748 // oop map (with empty expression stack). | |
1749 | |
1750 // In current activation | |
1751 // tos: exception | |
1752 // esi: exception bcp | |
1753 | |
1754 // | |
1755 // JVMTI PopFrame support | |
1756 // | |
1757 | |
1758 Interpreter::_remove_activation_preserving_args_entry = __ pc(); | |
1759 __ empty_expression_stack(); | |
1760 // Set the popframe_processing bit in pending_popframe_condition | |
1761 // indicating that we are currently handling popframe, so that | |
1762 // call_VMs that may happen later do not trigger new popframe | |
1763 // handling cycles. | |
1764 __ movl(rdx, Address(r15_thread, JavaThread::popframe_condition_offset())); | |
1765 __ orl(rdx, JavaThread::popframe_processing_bit); | |
1766 __ movl(Address(r15_thread, JavaThread::popframe_condition_offset()), rdx); | |
1767 | |
1768 { | |
1769 // Check to see whether we are returning to a deoptimized frame. | |
1770 // (The PopFrame call ensures that the caller of the popped frame is | |
1771 // either interpreted or compiled and deoptimizes it if compiled.) | |
1772 // In this case, we can't call dispatch_next() after the frame is | |
1773 // popped, but instead must save the incoming arguments and restore | |
1774 // them after deoptimization has occurred. | |
1775 // | |
1776 // Note that we don't compare the return PC against the | |
1777 // deoptimization blob's unpack entry because of the presence of | |
1778 // adapter frames in C2. | |
1779 Label caller_not_deoptimized; | |
304 | 1780 __ movptr(c_rarg1, Address(rbp, frame::return_addr_offset * wordSize)); |
0 | 1781 __ super_call_VM_leaf(CAST_FROM_FN_PTR(address, |
1782 InterpreterRuntime::interpreter_contains), c_rarg1); | |
1783 __ testl(rax, rax); | |
1784 __ jcc(Assembler::notZero, caller_not_deoptimized); | |
1785 | |
1786 // Compute size of arguments for saving when returning to | |
1787 // deoptimized caller | |
1788 __ get_method(rax); | |
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1789 __ movptr(rax, Address(rax, Method::const_offset())); |
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1790 __ load_unsigned_short(rax, Address(rax, in_bytes(ConstMethod:: |
0 | 1791 size_of_parameters_offset()))); |
1506 | 1792 __ shll(rax, Interpreter::logStackElementSize); |
0 | 1793 __ restore_locals(); // XXX do we need this? |
304 | 1794 __ subptr(r14, rax); |
1795 __ addptr(r14, wordSize); | |
0 | 1796 // Save these arguments |
1797 __ super_call_VM_leaf(CAST_FROM_FN_PTR(address, | |
1798 Deoptimization:: | |
1799 popframe_preserve_args), | |
1800 r15_thread, rax, r14); | |
1801 | |
1802 __ remove_activation(vtos, rdx, | |
1803 /* throw_monitor_exception */ false, | |
1804 /* install_monitor_exception */ false, | |
1805 /* notify_jvmdi */ false); | |
1806 | |
1807 // Inform deoptimization that it is responsible for restoring | |
1808 // these arguments | |
1809 __ movl(Address(r15_thread, JavaThread::popframe_condition_offset()), | |
1810 JavaThread::popframe_force_deopt_reexecution_bit); | |
1811 | |
1812 // Continue in deoptimization handler | |
1813 __ jmp(rdx); | |
1814 | |
1815 __ bind(caller_not_deoptimized); | |
1816 } | |
1817 | |
1818 __ remove_activation(vtos, rdx, /* rdx result (retaddr) is not used */ | |
1819 /* throw_monitor_exception */ false, | |
1820 /* install_monitor_exception */ false, | |
1821 /* notify_jvmdi */ false); | |
1822 | |
1823 // Finish with popframe handling | |
1824 // A previous I2C followed by a deoptimization might have moved the | |
1825 // outgoing arguments further up the stack. PopFrame expects the | |
1826 // mutations to those outgoing arguments to be preserved and other | |
1827 // constraints basically require this frame to look exactly as | |
1828 // though it had previously invoked an interpreted activation with | |
1829 // no space between the top of the expression stack (current | |
1830 // last_sp) and the top of stack. Rather than force deopt to | |
1831 // maintain this kind of invariant all the time we call a small | |
1832 // fixup routine to move the mutated arguments onto the top of our | |
1833 // expression stack if necessary. | |
304 | 1834 __ mov(c_rarg1, rsp); |
1835 __ movptr(c_rarg2, Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize)); | |
0 | 1836 // PC must point into interpreter here |
1837 __ set_last_Java_frame(noreg, rbp, __ pc()); | |
1838 __ super_call_VM_leaf(CAST_FROM_FN_PTR(address, InterpreterRuntime::popframe_move_outgoing_args), r15_thread, c_rarg1, c_rarg2); | |
1839 __ reset_last_Java_frame(true, true); | |
1840 // Restore the last_sp and null it out | |
304 | 1841 __ movptr(rsp, Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize)); |
1842 __ movptr(Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize), (int32_t)NULL_WORD); | |
0 | 1843 |
1844 __ restore_bcp(); // XXX do we need this? | |
1845 __ restore_locals(); // XXX do we need this? | |
1846 // The method data pointer was incremented already during | |
1847 // call profiling. We have to restore the mdp for the current bcp. | |
1848 if (ProfileInterpreter) { | |
1849 __ set_method_data_pointer_for_bcp(); | |
1850 } | |
1851 | |
1852 // Clear the popframe condition flag | |
1853 __ movl(Address(r15_thread, JavaThread::popframe_condition_offset()), | |
1854 JavaThread::popframe_inactive); | |
1855 | |
1856 __ dispatch_next(vtos); | |
1857 // end of PopFrame support | |
1858 | |
1859 Interpreter::_remove_activation_entry = __ pc(); | |
1860 | |
1861 // preserve exception over this code sequence | |
1862 __ pop_ptr(rax); | |
304 | 1863 __ movptr(Address(r15_thread, JavaThread::vm_result_offset()), rax); |
0 | 1864 // remove the activation (without doing throws on illegalMonitorExceptions) |
1865 __ remove_activation(vtos, rdx, false, true, false); | |
1866 // restore exception | |
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1867 __ get_vm_result(rax, r15_thread); |
0 | 1868 |
1869 // In between activations - previous activation type unknown yet | |
1870 // compute continuation point - the continuation point expects the | |
1871 // following registers set up: | |
1872 // | |
1873 // rax: exception | |
1874 // rdx: return address/pc that threw exception | |
1875 // rsp: expression stack of caller | |
1876 // rbp: ebp of caller | |
304 | 1877 __ push(rax); // save exception |
1878 __ push(rdx); // save return address | |
0 | 1879 __ super_call_VM_leaf(CAST_FROM_FN_PTR(address, |
1880 SharedRuntime::exception_handler_for_return_address), | |
1295 | 1881 r15_thread, rdx); |
304 | 1882 __ mov(rbx, rax); // save exception handler |
1883 __ pop(rdx); // restore return address | |
1884 __ pop(rax); // restore exception | |
0 | 1885 // Note that an "issuing PC" is actually the next PC after the call |
1886 __ jmp(rbx); // jump to exception | |
1887 // handler of caller | |
1888 } | |
1889 | |
1890 | |
1891 // | |
1892 // JVMTI ForceEarlyReturn support | |
1893 // | |
1894 address TemplateInterpreterGenerator::generate_earlyret_entry_for(TosState state) { | |
1895 address entry = __ pc(); | |
1896 | |
1897 __ restore_bcp(); | |
1898 __ restore_locals(); | |
1899 __ empty_expression_stack(); | |
1900 __ load_earlyret_value(state); | |
1901 | |
304 | 1902 __ movptr(rdx, Address(r15_thread, JavaThread::jvmti_thread_state_offset())); |
0 | 1903 Address cond_addr(rdx, JvmtiThreadState::earlyret_state_offset()); |
1904 | |
1905 // Clear the earlyret state | |
1906 __ movl(cond_addr, JvmtiThreadState::earlyret_inactive); | |
1907 | |
1908 __ remove_activation(state, rsi, | |
1909 false, /* throw_monitor_exception */ | |
1910 false, /* install_monitor_exception */ | |
1911 true); /* notify_jvmdi */ | |
1912 __ jmp(rsi); | |
1913 | |
1914 return entry; | |
1915 } // end of ForceEarlyReturn support | |
1916 | |
1917 | |
1918 //----------------------------------------------------------------------------- | |
1919 // Helper for vtos entry point generation | |
1920 | |
1921 void TemplateInterpreterGenerator::set_vtos_entry_points(Template* t, | |
1922 address& bep, | |
1923 address& cep, | |
1924 address& sep, | |
1925 address& aep, | |
1926 address& iep, | |
1927 address& lep, | |
1928 address& fep, | |
1929 address& dep, | |
1930 address& vep) { | |
1931 assert(t->is_valid() && t->tos_in() == vtos, "illegal template"); | |
1932 Label L; | |
1933 aep = __ pc(); __ push_ptr(); __ jmp(L); | |
1934 fep = __ pc(); __ push_f(); __ jmp(L); | |
1935 dep = __ pc(); __ push_d(); __ jmp(L); | |
1936 lep = __ pc(); __ push_l(); __ jmp(L); | |
1937 bep = cep = sep = | |
1938 iep = __ pc(); __ push_i(); | |
1939 vep = __ pc(); | |
1940 __ bind(L); | |
1941 generate_and_dispatch(t); | |
1942 } | |
1943 | |
1944 | |
1945 //----------------------------------------------------------------------------- | |
1946 // Generation of individual instructions | |
1947 | |
1948 // helpers for generate_and_dispatch | |
1949 | |
1950 | |
1951 InterpreterGenerator::InterpreterGenerator(StubQueue* code) | |
1952 : TemplateInterpreterGenerator(code) { | |
1953 generate_all(); // down here so it can be "virtual" | |
1954 } | |
1955 | |
1956 //----------------------------------------------------------------------------- | |
1957 | |
1958 // Non-product code | |
1959 #ifndef PRODUCT | |
1960 address TemplateInterpreterGenerator::generate_trace_code(TosState state) { | |
1961 address entry = __ pc(); | |
1962 | |
1963 __ push(state); | |
304 | 1964 __ push(c_rarg0); |
1965 __ push(c_rarg1); | |
1966 __ push(c_rarg2); | |
1967 __ push(c_rarg3); | |
1968 __ mov(c_rarg2, rax); // Pass itos | |
0 | 1969 #ifdef _WIN64 |
1970 __ movflt(xmm3, xmm0); // Pass ftos | |
1971 #endif | |
1972 __ call_VM(noreg, | |
1973 CAST_FROM_FN_PTR(address, SharedRuntime::trace_bytecode), | |
1974 c_rarg1, c_rarg2, c_rarg3); | |
304 | 1975 __ pop(c_rarg3); |
1976 __ pop(c_rarg2); | |
1977 __ pop(c_rarg1); | |
1978 __ pop(c_rarg0); | |
0 | 1979 __ pop(state); |
1980 __ ret(0); // return from result handler | |
1981 | |
1982 return entry; | |
1983 } | |
1984 | |
1985 void TemplateInterpreterGenerator::count_bytecode() { | |
1986 __ incrementl(ExternalAddress((address) &BytecodeCounter::_counter_value)); | |
1987 } | |
1988 | |
1989 void TemplateInterpreterGenerator::histogram_bytecode(Template* t) { | |
1990 __ incrementl(ExternalAddress((address) &BytecodeHistogram::_counters[t->bytecode()])); | |
1991 } | |
1992 | |
1993 void TemplateInterpreterGenerator::histogram_bytecode_pair(Template* t) { | |
1994 __ mov32(rbx, ExternalAddress((address) &BytecodePairHistogram::_index)); | |
1995 __ shrl(rbx, BytecodePairHistogram::log2_number_of_codes); | |
1996 __ orl(rbx, | |
1997 ((int) t->bytecode()) << | |
1998 BytecodePairHistogram::log2_number_of_codes); | |
1999 __ mov32(ExternalAddress((address) &BytecodePairHistogram::_index), rbx); | |
2000 __ lea(rscratch1, ExternalAddress((address) BytecodePairHistogram::_counters)); | |
2001 __ incrementl(Address(rscratch1, rbx, Address::times_4)); | |
2002 } | |
2003 | |
2004 | |
2005 void TemplateInterpreterGenerator::trace_bytecode(Template* t) { | |
2006 // Call a little run-time stub to avoid blow-up for each bytecode. | |
2007 // The run-time runtime saves the right registers, depending on | |
2008 // the tosca in-state for the given template. | |
2009 | |
2010 assert(Interpreter::trace_code(t->tos_in()) != NULL, | |
2011 "entry must have been generated"); | |
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2012 __ mov(r12, rsp); // remember sp (can only use r12 if not using call_VM) |
304 | 2013 __ andptr(rsp, -16); // align stack as required by ABI |
0 | 2014 __ call(RuntimeAddress(Interpreter::trace_code(t->tos_in()))); |
304 | 2015 __ mov(rsp, r12); // restore sp |
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2016 __ reinit_heapbase(); |
0 | 2017 } |
2018 | |
2019 | |
2020 void TemplateInterpreterGenerator::stop_interpreter_at() { | |
2021 Label L; | |
2022 __ cmp32(ExternalAddress((address) &BytecodeCounter::_counter_value), | |
2023 StopInterpreterAt); | |
2024 __ jcc(Assembler::notEqual, L); | |
2025 __ int3(); | |
2026 __ bind(L); | |
2027 } | |
2028 #endif // !PRODUCT | |
304 | 2029 #endif // ! CC_INTERP |