src/cpu/x86/vm/templateInterpreter_x86_64.cpp

Sat, 12 Oct 2013 12:12:59 +0200

author
roland
date
Sat, 12 Oct 2013 12:12:59 +0200
changeset 5921
ce0cc25bc5e2
parent 5544
6725044c5725
child 5987
5ccbab1c69f3
permissions
-rw-r--r--

8026054: New type profiling points: type of return values at calls
Summary: x86 interpreter and c1 type profiling for return values at calls
Reviewed-by: kvn, twisti

duke@435 1 /*
jiangli@4936 2 * Copyright (c) 2003, 2013, Oracle and/or its affiliates. All rights reserved.
duke@435 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@435 4 *
duke@435 5 * This code is free software; you can redistribute it and/or modify it
duke@435 6 * under the terms of the GNU General Public License version 2 only, as
duke@435 7 * published by the Free Software Foundation.
duke@435 8 *
duke@435 9 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@435 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@435 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@435 12 * version 2 for more details (a copy is included in the LICENSE file that
duke@435 13 * accompanied this code).
duke@435 14 *
duke@435 15 * You should have received a copy of the GNU General Public License version
duke@435 16 * 2 along with this work; if not, write to the Free Software Foundation,
duke@435 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@435 18 *
trims@1907 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
trims@1907 20 * or visit www.oracle.com if you need additional information or have any
trims@1907 21 * questions.
duke@435 22 *
duke@435 23 */
duke@435 24
stefank@2314 25 #include "precompiled.hpp"
twisti@4318 26 #include "asm/macroAssembler.hpp"
stefank@2314 27 #include "interpreter/bytecodeHistogram.hpp"
stefank@2314 28 #include "interpreter/interpreter.hpp"
stefank@2314 29 #include "interpreter/interpreterGenerator.hpp"
stefank@2314 30 #include "interpreter/interpreterRuntime.hpp"
stefank@2314 31 #include "interpreter/templateTable.hpp"
stefank@2314 32 #include "oops/arrayOop.hpp"
coleenp@4037 33 #include "oops/methodData.hpp"
coleenp@4037 34 #include "oops/method.hpp"
stefank@2314 35 #include "oops/oop.inline.hpp"
stefank@2314 36 #include "prims/jvmtiExport.hpp"
stefank@2314 37 #include "prims/jvmtiThreadState.hpp"
stefank@2314 38 #include "runtime/arguments.hpp"
stefank@2314 39 #include "runtime/deoptimization.hpp"
stefank@2314 40 #include "runtime/frame.inline.hpp"
stefank@2314 41 #include "runtime/sharedRuntime.hpp"
stefank@2314 42 #include "runtime/stubRoutines.hpp"
stefank@2314 43 #include "runtime/synchronizer.hpp"
stefank@2314 44 #include "runtime/timer.hpp"
stefank@2314 45 #include "runtime/vframeArray.hpp"
stefank@2314 46 #include "utilities/debug.hpp"
jprovino@4542 47 #include "utilities/macros.hpp"
duke@435 48
duke@435 49 #define __ _masm->
duke@435 50
never@739 51 #ifndef CC_INTERP
never@739 52
duke@435 53 const int method_offset = frame::interpreter_frame_method_offset * wordSize;
duke@435 54 const int bci_offset = frame::interpreter_frame_bcx_offset * wordSize;
duke@435 55 const int locals_offset = frame::interpreter_frame_locals_offset * wordSize;
duke@435 56
duke@435 57 //-----------------------------------------------------------------------------
duke@435 58
duke@435 59 address TemplateInterpreterGenerator::generate_StackOverflowError_handler() {
duke@435 60 address entry = __ pc();
duke@435 61
duke@435 62 #ifdef ASSERT
duke@435 63 {
duke@435 64 Label L;
never@739 65 __ lea(rax, Address(rbp,
never@739 66 frame::interpreter_frame_monitor_block_top_offset *
never@739 67 wordSize));
never@739 68 __ cmpptr(rax, rsp); // rax = maximal rsp for current rbp (stack
never@739 69 // grows negative)
duke@435 70 __ jcc(Assembler::aboveEqual, L); // check if frame is complete
duke@435 71 __ stop ("interpreter frame not set up");
duke@435 72 __ bind(L);
duke@435 73 }
duke@435 74 #endif // ASSERT
duke@435 75 // Restore bcp under the assumption that the current frame is still
duke@435 76 // interpreted
duke@435 77 __ restore_bcp();
duke@435 78
duke@435 79 // expression stack must be empty before entering the VM if an
duke@435 80 // exception happened
duke@435 81 __ empty_expression_stack();
duke@435 82 // throw exception
duke@435 83 __ call_VM(noreg,
duke@435 84 CAST_FROM_FN_PTR(address,
duke@435 85 InterpreterRuntime::throw_StackOverflowError));
duke@435 86 return entry;
duke@435 87 }
duke@435 88
duke@435 89 address TemplateInterpreterGenerator::generate_ArrayIndexOutOfBounds_handler(
duke@435 90 const char* name) {
duke@435 91 address entry = __ pc();
duke@435 92 // expression stack must be empty before entering the VM if an
duke@435 93 // exception happened
duke@435 94 __ empty_expression_stack();
duke@435 95 // setup parameters
duke@435 96 // ??? convention: expect aberrant index in register ebx
duke@435 97 __ lea(c_rarg1, ExternalAddress((address)name));
duke@435 98 __ call_VM(noreg,
duke@435 99 CAST_FROM_FN_PTR(address,
duke@435 100 InterpreterRuntime::
duke@435 101 throw_ArrayIndexOutOfBoundsException),
duke@435 102 c_rarg1, rbx);
duke@435 103 return entry;
duke@435 104 }
duke@435 105
duke@435 106 address TemplateInterpreterGenerator::generate_ClassCastException_handler() {
duke@435 107 address entry = __ pc();
duke@435 108
duke@435 109 // object is at TOS
never@739 110 __ pop(c_rarg1);
duke@435 111
duke@435 112 // expression stack must be empty before entering the VM if an
duke@435 113 // exception happened
duke@435 114 __ empty_expression_stack();
duke@435 115
duke@435 116 __ call_VM(noreg,
duke@435 117 CAST_FROM_FN_PTR(address,
duke@435 118 InterpreterRuntime::
duke@435 119 throw_ClassCastException),
duke@435 120 c_rarg1);
duke@435 121 return entry;
duke@435 122 }
duke@435 123
duke@435 124 address TemplateInterpreterGenerator::generate_exception_handler_common(
duke@435 125 const char* name, const char* message, bool pass_oop) {
duke@435 126 assert(!pass_oop || message == NULL, "either oop or message but not both");
duke@435 127 address entry = __ pc();
duke@435 128 if (pass_oop) {
duke@435 129 // object is at TOS
never@739 130 __ pop(c_rarg2);
duke@435 131 }
duke@435 132 // expression stack must be empty before entering the VM if an
duke@435 133 // exception happened
duke@435 134 __ empty_expression_stack();
duke@435 135 // setup parameters
duke@435 136 __ lea(c_rarg1, ExternalAddress((address)name));
duke@435 137 if (pass_oop) {
duke@435 138 __ call_VM(rax, CAST_FROM_FN_PTR(address,
duke@435 139 InterpreterRuntime::
duke@435 140 create_klass_exception),
duke@435 141 c_rarg1, c_rarg2);
duke@435 142 } else {
duke@435 143 // kind of lame ExternalAddress can't take NULL because
duke@435 144 // external_word_Relocation will assert.
duke@435 145 if (message != NULL) {
duke@435 146 __ lea(c_rarg2, ExternalAddress((address)message));
duke@435 147 } else {
duke@435 148 __ movptr(c_rarg2, NULL_WORD);
duke@435 149 }
duke@435 150 __ call_VM(rax,
duke@435 151 CAST_FROM_FN_PTR(address, InterpreterRuntime::create_exception),
duke@435 152 c_rarg1, c_rarg2);
duke@435 153 }
duke@435 154 // throw exception
duke@435 155 __ jump(ExternalAddress(Interpreter::throw_exception_entry()));
duke@435 156 return entry;
duke@435 157 }
duke@435 158
duke@435 159
duke@435 160 address TemplateInterpreterGenerator::generate_continuation_for(TosState state) {
duke@435 161 address entry = __ pc();
duke@435 162 // NULL last_sp until next java call
never@739 163 __ movptr(Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize), (int32_t)NULL_WORD);
duke@435 164 __ dispatch_next(state);
duke@435 165 return entry;
duke@435 166 }
duke@435 167
duke@435 168
twisti@2552 169 address TemplateInterpreterGenerator::generate_return_entry_for(TosState state, int step) {
duke@435 170 address entry = __ pc();
duke@435 171
duke@435 172 // Restore stack bottom in case i2c adjusted stack
never@739 173 __ movptr(rsp, Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize));
duke@435 174 // and NULL it as marker that esp is now tos until next java call
never@739 175 __ movptr(Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize), (int32_t)NULL_WORD);
duke@435 176
duke@435 177 __ restore_bcp();
duke@435 178 __ restore_locals();
never@739 179
roland@5921 180 if (state == atos) {
roland@5921 181 Register mdp = rbx;
roland@5921 182 Register tmp = rcx;
roland@5921 183 __ profile_return_type(mdp, rax, tmp);
roland@5921 184 }
roland@5921 185
twisti@1543 186 Label L_got_cache, L_giant_index;
twisti@1543 187 if (EnableInvokeDynamic) {
twisti@1543 188 __ cmpb(Address(r13, 0), Bytecodes::_invokedynamic);
twisti@1543 189 __ jcc(Assembler::equal, L_giant_index);
twisti@1543 190 }
jrose@1920 191 __ get_cache_and_index_at_bcp(rbx, rcx, 1, sizeof(u2));
twisti@1543 192 __ bind(L_got_cache);
duke@435 193 __ movl(rbx, Address(rbx, rcx,
twisti@1543 194 Address::times_ptr,
coleenp@4037 195 in_bytes(ConstantPoolCache::base_offset()) +
duke@435 196 3 * wordSize));
duke@435 197 __ andl(rbx, 0xFF);
never@739 198 __ lea(rsp, Address(rsp, rbx, Address::times_8));
duke@435 199 __ dispatch_next(state, step);
twisti@1543 200
twisti@1543 201 // out of the main line of code...
twisti@1543 202 if (EnableInvokeDynamic) {
twisti@1543 203 __ bind(L_giant_index);
jrose@1920 204 __ get_cache_and_index_at_bcp(rbx, rcx, 1, sizeof(u4));
twisti@1543 205 __ jmp(L_got_cache);
twisti@1543 206 }
twisti@1543 207
duke@435 208 return entry;
duke@435 209 }
duke@435 210
duke@435 211
duke@435 212 address TemplateInterpreterGenerator::generate_deopt_entry_for(TosState state,
duke@435 213 int step) {
duke@435 214 address entry = __ pc();
duke@435 215 // NULL last_sp until next java call
never@739 216 __ movptr(Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize), (int32_t)NULL_WORD);
duke@435 217 __ restore_bcp();
duke@435 218 __ restore_locals();
duke@435 219 // handle exceptions
duke@435 220 {
duke@435 221 Label L;
never@739 222 __ cmpptr(Address(r15_thread, Thread::pending_exception_offset()), (int32_t) NULL_WORD);
duke@435 223 __ jcc(Assembler::zero, L);
duke@435 224 __ call_VM(noreg,
duke@435 225 CAST_FROM_FN_PTR(address,
duke@435 226 InterpreterRuntime::throw_pending_exception));
duke@435 227 __ should_not_reach_here();
duke@435 228 __ bind(L);
duke@435 229 }
duke@435 230 __ dispatch_next(state, step);
duke@435 231 return entry;
duke@435 232 }
duke@435 233
duke@435 234 int AbstractInterpreter::BasicType_as_index(BasicType type) {
duke@435 235 int i = 0;
duke@435 236 switch (type) {
duke@435 237 case T_BOOLEAN: i = 0; break;
duke@435 238 case T_CHAR : i = 1; break;
duke@435 239 case T_BYTE : i = 2; break;
duke@435 240 case T_SHORT : i = 3; break;
duke@435 241 case T_INT : i = 4; break;
duke@435 242 case T_LONG : i = 5; break;
duke@435 243 case T_VOID : i = 6; break;
duke@435 244 case T_FLOAT : i = 7; break;
duke@435 245 case T_DOUBLE : i = 8; break;
duke@435 246 case T_OBJECT : i = 9; break;
duke@435 247 case T_ARRAY : i = 9; break;
duke@435 248 default : ShouldNotReachHere();
duke@435 249 }
duke@435 250 assert(0 <= i && i < AbstractInterpreter::number_of_result_handlers,
duke@435 251 "index out of bounds");
duke@435 252 return i;
duke@435 253 }
duke@435 254
duke@435 255
duke@435 256 address TemplateInterpreterGenerator::generate_result_handler_for(
duke@435 257 BasicType type) {
duke@435 258 address entry = __ pc();
duke@435 259 switch (type) {
duke@435 260 case T_BOOLEAN: __ c2bool(rax); break;
duke@435 261 case T_CHAR : __ movzwl(rax, rax); break;
duke@435 262 case T_BYTE : __ sign_extend_byte(rax); break;
duke@435 263 case T_SHORT : __ sign_extend_short(rax); break;
duke@435 264 case T_INT : /* nothing to do */ break;
duke@435 265 case T_LONG : /* nothing to do */ break;
duke@435 266 case T_VOID : /* nothing to do */ break;
duke@435 267 case T_FLOAT : /* nothing to do */ break;
duke@435 268 case T_DOUBLE : /* nothing to do */ break;
duke@435 269 case T_OBJECT :
duke@435 270 // retrieve result from frame
never@739 271 __ movptr(rax, Address(rbp, frame::interpreter_frame_oop_temp_offset*wordSize));
duke@435 272 // and verify it
duke@435 273 __ verify_oop(rax);
duke@435 274 break;
duke@435 275 default : ShouldNotReachHere();
duke@435 276 }
duke@435 277 __ ret(0); // return from result handler
duke@435 278 return entry;
duke@435 279 }
duke@435 280
duke@435 281 address TemplateInterpreterGenerator::generate_safept_entry_for(
duke@435 282 TosState state,
duke@435 283 address runtime_entry) {
duke@435 284 address entry = __ pc();
duke@435 285 __ push(state);
duke@435 286 __ call_VM(noreg, runtime_entry);
duke@435 287 __ dispatch_via(vtos, Interpreter::_normal_table.table_for(vtos));
duke@435 288 return entry;
duke@435 289 }
duke@435 290
duke@435 291
duke@435 292
duke@435 293 // Helpers for commoning out cases in the various type of method entries.
duke@435 294 //
duke@435 295
duke@435 296
duke@435 297 // increment invocation count & check for overflow
duke@435 298 //
duke@435 299 // Note: checking for negative value instead of overflow
duke@435 300 // so we have a 'sticky' overflow test
duke@435 301 //
duke@435 302 // rbx: method
duke@435 303 // ecx: invocation counter
duke@435 304 //
duke@435 305 void InterpreterGenerator::generate_counter_incr(
duke@435 306 Label* overflow,
duke@435 307 Label* profile_method,
duke@435 308 Label* profile_method_continue) {
jiangli@4936 309 Label done;
coleenp@4037 310 // Note: In tiered we increment either counters in Method* or in MDO depending if we're profiling or not.
iveresov@2138 311 if (TieredCompilation) {
iveresov@2138 312 int increment = InvocationCounter::count_increment;
iveresov@2138 313 int mask = ((1 << Tier0InvokeNotifyFreqLog) - 1) << InvocationCounter::count_shift;
jiangli@4936 314 Label no_mdo;
iveresov@2138 315 if (ProfileInterpreter) {
iveresov@2138 316 // Are we profiling?
coleenp@4037 317 __ movptr(rax, Address(rbx, Method::method_data_offset()));
iveresov@2138 318 __ testptr(rax, rax);
iveresov@2138 319 __ jccb(Assembler::zero, no_mdo);
iveresov@2138 320 // Increment counter in the MDO
coleenp@4037 321 const Address mdo_invocation_counter(rax, in_bytes(MethodData::invocation_counter_offset()) +
iveresov@2138 322 in_bytes(InvocationCounter::counter_offset()));
iveresov@2138 323 __ increment_mask_and_jump(mdo_invocation_counter, increment, mask, rcx, false, Assembler::zero, overflow);
jiangli@4973 324 __ jmp(done);
iveresov@2138 325 }
iveresov@2138 326 __ bind(no_mdo);
jiangli@4936 327 // Increment counter in MethodCounters
jiangli@4936 328 const Address invocation_counter(rax,
jiangli@4936 329 MethodCounters::invocation_counter_offset() +
jiangli@4936 330 InvocationCounter::counter_offset());
jiangli@4936 331 __ get_method_counters(rbx, rax, done);
jiangli@4936 332 __ increment_mask_and_jump(invocation_counter, increment, mask, rcx,
jiangli@4936 333 false, Assembler::zero, overflow);
iveresov@2138 334 __ bind(done);
iveresov@2138 335 } else {
jiangli@4936 336 const Address backedge_counter(rax,
jiangli@4936 337 MethodCounters::backedge_counter_offset() +
jiangli@4936 338 InvocationCounter::counter_offset());
jiangli@4936 339 const Address invocation_counter(rax,
jiangli@4936 340 MethodCounters::invocation_counter_offset() +
jiangli@4936 341 InvocationCounter::counter_offset());
duke@435 342
jiangli@4936 343 __ get_method_counters(rbx, rax, done);
jiangli@4936 344
jiangli@4936 345 if (ProfileInterpreter) {
jiangli@4936 346 __ incrementl(Address(rax,
jiangli@4936 347 MethodCounters::interpreter_invocation_counter_offset()));
iveresov@2138 348 }
iveresov@2138 349 // Update standard invocation counters
jiangli@4936 350 __ movl(rcx, invocation_counter);
jiangli@4936 351 __ incrementl(rcx, InvocationCounter::count_increment);
jiangli@4936 352 __ movl(invocation_counter, rcx); // save invocation count
jiangli@4936 353
iveresov@2138 354 __ movl(rax, backedge_counter); // load backedge counter
iveresov@2138 355 __ andl(rax, InvocationCounter::count_mask_value); // mask out the status bits
iveresov@2138 356
iveresov@2138 357 __ addl(rcx, rax); // add both counters
iveresov@2138 358
iveresov@2138 359 // profile_method is non-null only for interpreted method so
iveresov@2138 360 // profile_method != NULL == !native_call
iveresov@2138 361
iveresov@2138 362 if (ProfileInterpreter && profile_method != NULL) {
iveresov@2138 363 // Test to see if we should create a method data oop
iveresov@2138 364 __ cmp32(rcx, ExternalAddress((address)&InvocationCounter::InterpreterProfileLimit));
iveresov@2138 365 __ jcc(Assembler::less, *profile_method_continue);
iveresov@2138 366
iveresov@2138 367 // if no method data exists, go to profile_method
iveresov@2138 368 __ test_method_data_pointer(rax, *profile_method);
iveresov@2138 369 }
iveresov@2138 370
iveresov@2138 371 __ cmp32(rcx, ExternalAddress((address)&InvocationCounter::InterpreterInvocationLimit));
iveresov@2138 372 __ jcc(Assembler::aboveEqual, *overflow);
jiangli@4936 373 __ bind(done);
duke@435 374 }
duke@435 375 }
duke@435 376
duke@435 377 void InterpreterGenerator::generate_counter_overflow(Label* do_continue) {
duke@435 378
duke@435 379 // Asm interpreter on entry
duke@435 380 // r14 - locals
duke@435 381 // r13 - bcp
duke@435 382 // rbx - method
duke@435 383 // edx - cpool --- DOES NOT APPEAR TO BE TRUE
duke@435 384 // rbp - interpreter frame
duke@435 385
duke@435 386 // On return (i.e. jump to entry_point) [ back to invocation of interpreter ]
duke@435 387 // Everything as it was on entry
duke@435 388 // rdx is not restored. Doesn't appear to really be set.
duke@435 389
duke@435 390 // InterpreterRuntime::frequency_counter_overflow takes two
duke@435 391 // arguments, the first (thread) is passed by call_VM, the second
duke@435 392 // indicates if the counter overflow occurs at a backwards branch
duke@435 393 // (NULL bcp). We pass zero for it. The call returns the address
duke@435 394 // of the verified entry point for the method or NULL if the
duke@435 395 // compilation did not complete (either went background or bailed
duke@435 396 // out).
duke@435 397 __ movl(c_rarg1, 0);
duke@435 398 __ call_VM(noreg,
duke@435 399 CAST_FROM_FN_PTR(address,
duke@435 400 InterpreterRuntime::frequency_counter_overflow),
duke@435 401 c_rarg1);
duke@435 402
coleenp@4037 403 __ movptr(rbx, Address(rbp, method_offset)); // restore Method*
duke@435 404 // Preserve invariant that r13/r14 contain bcp/locals of sender frame
duke@435 405 // and jump to the interpreted entry.
duke@435 406 __ jmp(*do_continue, relocInfo::none);
duke@435 407 }
duke@435 408
duke@435 409 // See if we've got enough room on the stack for locals plus overhead.
duke@435 410 // The expression stack grows down incrementally, so the normal guard
duke@435 411 // page mechanism will work for that.
duke@435 412 //
duke@435 413 // NOTE: Since the additional locals are also always pushed (wasn't
duke@435 414 // obvious in generate_method_entry) so the guard should work for them
duke@435 415 // too.
duke@435 416 //
duke@435 417 // Args:
duke@435 418 // rdx: number of additional locals this frame needs (what we must check)
coleenp@4037 419 // rbx: Method*
duke@435 420 //
duke@435 421 // Kills:
duke@435 422 // rax
duke@435 423 void InterpreterGenerator::generate_stack_overflow_check(void) {
duke@435 424
duke@435 425 // monitor entry size: see picture of stack set
duke@435 426 // (generate_method_entry) and frame_amd64.hpp
duke@435 427 const int entry_size = frame::interpreter_frame_monitor_size() * wordSize;
duke@435 428
duke@435 429 // total overhead size: entry_size + (saved rbp through expr stack
duke@435 430 // bottom). be sure to change this if you add/subtract anything
duke@435 431 // to/from the overhead area
duke@435 432 const int overhead_size =
duke@435 433 -(frame::interpreter_frame_initial_sp_offset * wordSize) + entry_size;
duke@435 434
duke@435 435 const int page_size = os::vm_page_size();
duke@435 436
duke@435 437 Label after_frame_check;
duke@435 438
duke@435 439 // see if the frame is greater than one page in size. If so,
duke@435 440 // then we need to verify there is enough stack space remaining
duke@435 441 // for the additional locals.
twisti@1861 442 __ cmpl(rdx, (page_size - overhead_size) / Interpreter::stackElementSize);
duke@435 443 __ jcc(Assembler::belowEqual, after_frame_check);
duke@435 444
duke@435 445 // compute rsp as if this were going to be the last frame on
duke@435 446 // the stack before the red zone
duke@435 447
duke@435 448 const Address stack_base(r15_thread, Thread::stack_base_offset());
duke@435 449 const Address stack_size(r15_thread, Thread::stack_size_offset());
duke@435 450
duke@435 451 // locals + overhead, in bytes
never@739 452 __ mov(rax, rdx);
twisti@1861 453 __ shlptr(rax, Interpreter::logStackElementSize); // 2 slots per parameter.
never@739 454 __ addptr(rax, overhead_size);
duke@435 455
duke@435 456 #ifdef ASSERT
duke@435 457 Label stack_base_okay, stack_size_okay;
duke@435 458 // verify that thread stack base is non-zero
never@739 459 __ cmpptr(stack_base, (int32_t)NULL_WORD);
duke@435 460 __ jcc(Assembler::notEqual, stack_base_okay);
duke@435 461 __ stop("stack base is zero");
duke@435 462 __ bind(stack_base_okay);
duke@435 463 // verify that thread stack size is non-zero
never@739 464 __ cmpptr(stack_size, 0);
duke@435 465 __ jcc(Assembler::notEqual, stack_size_okay);
duke@435 466 __ stop("stack size is zero");
duke@435 467 __ bind(stack_size_okay);
duke@435 468 #endif
duke@435 469
duke@435 470 // Add stack base to locals and subtract stack size
never@739 471 __ addptr(rax, stack_base);
never@739 472 __ subptr(rax, stack_size);
duke@435 473
twisti@1570 474 // Use the maximum number of pages we might bang.
twisti@1570 475 const int max_pages = StackShadowPages > (StackRedPages+StackYellowPages) ? StackShadowPages :
twisti@1570 476 (StackRedPages+StackYellowPages);
twisti@1570 477
duke@435 478 // add in the red and yellow zone sizes
twisti@1570 479 __ addptr(rax, max_pages * page_size);
duke@435 480
duke@435 481 // check against the current stack bottom
never@739 482 __ cmpptr(rsp, rax);
duke@435 483 __ jcc(Assembler::above, after_frame_check);
duke@435 484
bdelsart@3372 485 // Restore sender's sp as SP. This is necessary if the sender's
bdelsart@3372 486 // frame is an extended compiled frame (see gen_c2i_adapter())
bdelsart@3372 487 // and safer anyway in case of JSR292 adaptations.
bdelsart@3372 488
bdelsart@3372 489 __ pop(rax); // return address must be moved if SP is changed
bdelsart@3372 490 __ mov(rsp, r13);
bdelsart@3372 491 __ push(rax);
bdelsart@3372 492
bdelsart@3372 493 // Note: the restored frame is not necessarily interpreted.
bdelsart@3372 494 // Use the shared runtime version of the StackOverflowError.
bdelsart@3372 495 assert(StubRoutines::throw_StackOverflowError_entry() != NULL, "stub not yet generated");
bdelsart@3372 496 __ jump(ExternalAddress(StubRoutines::throw_StackOverflowError_entry()));
duke@435 497
duke@435 498 // all done with frame size check
duke@435 499 __ bind(after_frame_check);
duke@435 500 }
duke@435 501
duke@435 502 // Allocate monitor and lock method (asm interpreter)
duke@435 503 //
duke@435 504 // Args:
coleenp@4037 505 // rbx: Method*
duke@435 506 // r14: locals
duke@435 507 //
duke@435 508 // Kills:
duke@435 509 // rax
duke@435 510 // c_rarg0, c_rarg1, c_rarg2, c_rarg3, ...(param regs)
duke@435 511 // rscratch1, rscratch2 (scratch regs)
duke@435 512 void InterpreterGenerator::lock_method(void) {
duke@435 513 // synchronize method
coleenp@4037 514 const Address access_flags(rbx, Method::access_flags_offset());
duke@435 515 const Address monitor_block_top(
duke@435 516 rbp,
duke@435 517 frame::interpreter_frame_monitor_block_top_offset * wordSize);
duke@435 518 const int entry_size = frame::interpreter_frame_monitor_size() * wordSize;
duke@435 519
duke@435 520 #ifdef ASSERT
duke@435 521 {
duke@435 522 Label L;
duke@435 523 __ movl(rax, access_flags);
duke@435 524 __ testl(rax, JVM_ACC_SYNCHRONIZED);
duke@435 525 __ jcc(Assembler::notZero, L);
duke@435 526 __ stop("method doesn't need synchronization");
duke@435 527 __ bind(L);
duke@435 528 }
duke@435 529 #endif // ASSERT
duke@435 530
duke@435 531 // get synchronization object
duke@435 532 {
stefank@3391 533 const int mirror_offset = in_bytes(Klass::java_mirror_offset());
duke@435 534 Label done;
duke@435 535 __ movl(rax, access_flags);
duke@435 536 __ testl(rax, JVM_ACC_STATIC);
duke@435 537 // get receiver (assume this is frequent case)
never@739 538 __ movptr(rax, Address(r14, Interpreter::local_offset_in_bytes(0)));
duke@435 539 __ jcc(Assembler::zero, done);
coleenp@4037 540 __ movptr(rax, Address(rbx, Method::const_offset()));
coleenp@4037 541 __ movptr(rax, Address(rax, ConstMethod::constants_offset()));
never@739 542 __ movptr(rax, Address(rax,
coleenp@4037 543 ConstantPool::pool_holder_offset_in_bytes()));
never@739 544 __ movptr(rax, Address(rax, mirror_offset));
duke@435 545
duke@435 546 #ifdef ASSERT
duke@435 547 {
duke@435 548 Label L;
never@739 549 __ testptr(rax, rax);
duke@435 550 __ jcc(Assembler::notZero, L);
duke@435 551 __ stop("synchronization object is NULL");
duke@435 552 __ bind(L);
duke@435 553 }
duke@435 554 #endif // ASSERT
duke@435 555
duke@435 556 __ bind(done);
duke@435 557 }
duke@435 558
duke@435 559 // add space for monitor & lock
never@739 560 __ subptr(rsp, entry_size); // add space for a monitor entry
never@739 561 __ movptr(monitor_block_top, rsp); // set new monitor block top
duke@435 562 // store object
never@739 563 __ movptr(Address(rsp, BasicObjectLock::obj_offset_in_bytes()), rax);
never@739 564 __ movptr(c_rarg1, rsp); // object address
duke@435 565 __ lock_object(c_rarg1);
duke@435 566 }
duke@435 567
duke@435 568 // Generate a fixed interpreter frame. This is identical setup for
duke@435 569 // interpreted methods and for native methods hence the shared code.
duke@435 570 //
duke@435 571 // Args:
duke@435 572 // rax: return address
coleenp@4037 573 // rbx: Method*
duke@435 574 // r14: pointer to locals
duke@435 575 // r13: sender sp
duke@435 576 // rdx: cp cache
duke@435 577 void TemplateInterpreterGenerator::generate_fixed_frame(bool native_call) {
duke@435 578 // initialize fixed part of activation frame
never@739 579 __ push(rax); // save return address
duke@435 580 __ enter(); // save old & set new rbp
never@739 581 __ push(r13); // set sender sp
never@739 582 __ push((int)NULL_WORD); // leave last_sp as null
coleenp@4037 583 __ movptr(r13, Address(rbx, Method::const_offset())); // get ConstMethod*
coleenp@4037 584 __ lea(r13, Address(r13, ConstMethod::codes_offset())); // get codebase
coleenp@4037 585 __ push(rbx); // save Method*
duke@435 586 if (ProfileInterpreter) {
duke@435 587 Label method_data_continue;
coleenp@4037 588 __ movptr(rdx, Address(rbx, in_bytes(Method::method_data_offset())));
never@739 589 __ testptr(rdx, rdx);
duke@435 590 __ jcc(Assembler::zero, method_data_continue);
coleenp@4037 591 __ addptr(rdx, in_bytes(MethodData::data_offset()));
duke@435 592 __ bind(method_data_continue);
never@739 593 __ push(rdx); // set the mdp (method data pointer)
duke@435 594 } else {
never@739 595 __ push(0);
duke@435 596 }
duke@435 597
coleenp@4037 598 __ movptr(rdx, Address(rbx, Method::const_offset()));
coleenp@4037 599 __ movptr(rdx, Address(rdx, ConstMethod::constants_offset()));
coleenp@4037 600 __ movptr(rdx, Address(rdx, ConstantPool::cache_offset_in_bytes()));
never@739 601 __ push(rdx); // set constant pool cache
never@739 602 __ push(r14); // set locals pointer
duke@435 603 if (native_call) {
never@739 604 __ push(0); // no bcp
duke@435 605 } else {
never@739 606 __ push(r13); // set bcp
duke@435 607 }
never@739 608 __ push(0); // reserve word for pointer to expression stack bottom
never@739 609 __ movptr(Address(rsp, 0), rsp); // set expression stack bottom
duke@435 610 }
duke@435 611
duke@435 612 // End of helpers
duke@435 613
never@739 614 // Various method entries
never@739 615 //------------------------------------------------------------------------------------------------------------------------
never@739 616 //
never@739 617 //
never@739 618
never@739 619 // Call an accessor method (assuming it is resolved, otherwise drop
never@739 620 // into vanilla (slow path) entry
never@739 621 address InterpreterGenerator::generate_accessor_entry(void) {
coleenp@4037 622 // rbx: Method*
never@739 623
never@739 624 // r13: senderSP must preserver for slow path, set SP to it on fast path
never@739 625
never@739 626 address entry_point = __ pc();
never@739 627 Label xreturn_path;
never@739 628
never@739 629 // do fastpath for resolved accessor methods
never@739 630 if (UseFastAccessorMethods) {
never@739 631 // Code: _aload_0, _(i|a)getfield, _(i|a)return or any rewrites
never@739 632 // thereof; parameter size = 1
never@739 633 // Note: We can only use this code if the getfield has been resolved
never@739 634 // and if we don't have a null-pointer exception => check for
never@739 635 // these conditions first and use slow path if necessary.
never@739 636 Label slow_path;
never@739 637 // If we need a safepoint check, generate full interpreter entry.
never@739 638 __ cmp32(ExternalAddress(SafepointSynchronize::address_of_state()),
never@739 639 SafepointSynchronize::_not_synchronized);
never@739 640
never@739 641 __ jcc(Assembler::notEqual, slow_path);
never@739 642 // rbx: method
never@739 643 __ movptr(rax, Address(rsp, wordSize));
never@739 644
never@739 645 // check if local 0 != NULL and read field
never@739 646 __ testptr(rax, rax);
never@739 647 __ jcc(Assembler::zero, slow_path);
never@739 648
never@739 649 // read first instruction word and extract bytecode @ 1 and index @ 2
coleenp@4037 650 __ movptr(rdx, Address(rbx, Method::const_offset()));
coleenp@4037 651 __ movptr(rdi, Address(rdx, ConstMethod::constants_offset()));
coleenp@4037 652 __ movl(rdx, Address(rdx, ConstMethod::codes_offset()));
never@739 653 // Shift codes right to get the index on the right.
never@739 654 // The bytecode fetched looks like <index><0xb4><0x2a>
never@739 655 __ shrl(rdx, 2 * BitsPerByte);
never@739 656 __ shll(rdx, exact_log2(in_words(ConstantPoolCacheEntry::size())));
coleenp@4037 657 __ movptr(rdi, Address(rdi, ConstantPool::cache_offset_in_bytes()));
never@739 658
never@739 659 // rax: local 0
never@739 660 // rbx: method
never@739 661 // rdx: constant pool cache index
never@739 662 // rdi: constant pool cache
never@739 663
never@739 664 // check if getfield has been resolved and read constant pool cache entry
never@739 665 // check the validity of the cache entry by testing whether _indices field
never@739 666 // contains Bytecode::_getfield in b1 byte.
never@739 667 assert(in_words(ConstantPoolCacheEntry::size()) == 4,
never@739 668 "adjust shift below");
never@739 669 __ movl(rcx,
never@739 670 Address(rdi,
never@739 671 rdx,
never@739 672 Address::times_8,
coleenp@4037 673 ConstantPoolCache::base_offset() +
never@739 674 ConstantPoolCacheEntry::indices_offset()));
never@739 675 __ shrl(rcx, 2 * BitsPerByte);
never@739 676 __ andl(rcx, 0xFF);
never@739 677 __ cmpl(rcx, Bytecodes::_getfield);
never@739 678 __ jcc(Assembler::notEqual, slow_path);
never@739 679
never@739 680 // Note: constant pool entry is not valid before bytecode is resolved
never@739 681 __ movptr(rcx,
never@739 682 Address(rdi,
never@739 683 rdx,
never@739 684 Address::times_8,
coleenp@4037 685 ConstantPoolCache::base_offset() +
never@739 686 ConstantPoolCacheEntry::f2_offset()));
never@739 687 // edx: flags
never@739 688 __ movl(rdx,
never@739 689 Address(rdi,
never@739 690 rdx,
never@739 691 Address::times_8,
coleenp@4037 692 ConstantPoolCache::base_offset() +
never@739 693 ConstantPoolCacheEntry::flags_offset()));
never@739 694
never@739 695 Label notObj, notInt, notByte, notShort;
never@739 696 const Address field_address(rax, rcx, Address::times_1);
never@739 697
never@739 698 // Need to differentiate between igetfield, agetfield, bgetfield etc.
never@739 699 // because they are different sizes.
never@739 700 // Use the type from the constant pool cache
twisti@3969 701 __ shrl(rdx, ConstantPoolCacheEntry::tos_state_shift);
twisti@3969 702 // Make sure we don't need to mask edx after the above shift
twisti@3969 703 ConstantPoolCacheEntry::verify_tos_state_shift();
never@739 704
never@739 705 __ cmpl(rdx, atos);
never@739 706 __ jcc(Assembler::notEqual, notObj);
never@739 707 // atos
never@739 708 __ load_heap_oop(rax, field_address);
never@739 709 __ jmp(xreturn_path);
never@739 710
never@739 711 __ bind(notObj);
never@739 712 __ cmpl(rdx, itos);
never@739 713 __ jcc(Assembler::notEqual, notInt);
never@739 714 // itos
never@739 715 __ movl(rax, field_address);
never@739 716 __ jmp(xreturn_path);
never@739 717
never@739 718 __ bind(notInt);
never@739 719 __ cmpl(rdx, btos);
never@739 720 __ jcc(Assembler::notEqual, notByte);
never@739 721 // btos
never@739 722 __ load_signed_byte(rax, field_address);
never@739 723 __ jmp(xreturn_path);
never@739 724
never@739 725 __ bind(notByte);
never@739 726 __ cmpl(rdx, stos);
never@739 727 __ jcc(Assembler::notEqual, notShort);
never@739 728 // stos
jrose@1057 729 __ load_signed_short(rax, field_address);
never@739 730 __ jmp(xreturn_path);
never@739 731
never@739 732 __ bind(notShort);
never@739 733 #ifdef ASSERT
never@739 734 Label okay;
never@739 735 __ cmpl(rdx, ctos);
never@739 736 __ jcc(Assembler::equal, okay);
never@739 737 __ stop("what type is this?");
never@739 738 __ bind(okay);
never@739 739 #endif
never@739 740 // ctos
jrose@1057 741 __ load_unsigned_short(rax, field_address);
never@739 742
never@739 743 __ bind(xreturn_path);
never@739 744
never@739 745 // _ireturn/_areturn
never@739 746 __ pop(rdi);
never@739 747 __ mov(rsp, r13);
never@739 748 __ jmp(rdi);
never@739 749 __ ret(0);
never@739 750
never@739 751 // generate a vanilla interpreter entry as the slow path
never@739 752 __ bind(slow_path);
never@739 753 (void) generate_normal_entry(false);
never@739 754 } else {
never@739 755 (void) generate_normal_entry(false);
never@739 756 }
never@739 757
never@739 758 return entry_point;
never@739 759 }
never@739 760
johnc@2781 761 // Method entry for java.lang.ref.Reference.get.
johnc@2781 762 address InterpreterGenerator::generate_Reference_get_entry(void) {
jprovino@4542 763 #if INCLUDE_ALL_GCS
johnc@2781 764 // Code: _aload_0, _getfield, _areturn
johnc@2781 765 // parameter size = 1
johnc@2781 766 //
johnc@2781 767 // The code that gets generated by this routine is split into 2 parts:
johnc@2781 768 // 1. The "intrinsified" code for G1 (or any SATB based GC),
johnc@2781 769 // 2. The slow path - which is an expansion of the regular method entry.
johnc@2781 770 //
johnc@2781 771 // Notes:-
johnc@2781 772 // * In the G1 code we do not check whether we need to block for
johnc@2781 773 // a safepoint. If G1 is enabled then we must execute the specialized
johnc@2781 774 // code for Reference.get (except when the Reference object is null)
johnc@2781 775 // so that we can log the value in the referent field with an SATB
johnc@2781 776 // update buffer.
johnc@2781 777 // If the code for the getfield template is modified so that the
johnc@2781 778 // G1 pre-barrier code is executed when the current method is
johnc@2781 779 // Reference.get() then going through the normal method entry
johnc@2781 780 // will be fine.
johnc@2781 781 // * The G1 code can, however, check the receiver object (the instance
johnc@2781 782 // of java.lang.Reference) and jump to the slow path if null. If the
johnc@2781 783 // Reference object is null then we obviously cannot fetch the referent
johnc@2781 784 // and so we don't need to call the G1 pre-barrier. Thus we can use the
johnc@2781 785 // regular method entry code to generate the NPE.
johnc@2781 786 //
johnc@2781 787 // This code is based on generate_accessor_enty.
johnc@2781 788 //
coleenp@4037 789 // rbx: Method*
johnc@2781 790
johnc@2781 791 // r13: senderSP must preserve for slow path, set SP to it on fast path
johnc@2781 792
johnc@2781 793 address entry = __ pc();
johnc@2781 794
johnc@2781 795 const int referent_offset = java_lang_ref_Reference::referent_offset;
johnc@2781 796 guarantee(referent_offset > 0, "referent offset not initialized");
johnc@2781 797
johnc@2781 798 if (UseG1GC) {
johnc@2781 799 Label slow_path;
johnc@2781 800 // rbx: method
johnc@2781 801
johnc@2781 802 // Check if local 0 != NULL
johnc@2781 803 // If the receiver is null then it is OK to jump to the slow path.
johnc@2781 804 __ movptr(rax, Address(rsp, wordSize));
johnc@2781 805
johnc@2781 806 __ testptr(rax, rax);
johnc@2781 807 __ jcc(Assembler::zero, slow_path);
johnc@2781 808
johnc@2781 809 // rax: local 0
johnc@2781 810 // rbx: method (but can be used as scratch now)
johnc@2781 811 // rdx: scratch
johnc@2781 812 // rdi: scratch
johnc@2781 813
johnc@2781 814 // Generate the G1 pre-barrier code to log the value of
johnc@2781 815 // the referent field in an SATB buffer.
johnc@2781 816
johnc@2781 817 // Load the value of the referent field.
johnc@2781 818 const Address field_address(rax, referent_offset);
johnc@2781 819 __ load_heap_oop(rax, field_address);
johnc@2781 820
johnc@2781 821 // Generate the G1 pre-barrier code to log the value of
johnc@2781 822 // the referent field in an SATB buffer.
johnc@2781 823 __ g1_write_barrier_pre(noreg /* obj */,
johnc@2781 824 rax /* pre_val */,
johnc@2781 825 r15_thread /* thread */,
johnc@2781 826 rbx /* tmp */,
johnc@2781 827 true /* tosca_live */,
johnc@2781 828 true /* expand_call */);
johnc@2781 829
johnc@2781 830 // _areturn
johnc@2781 831 __ pop(rdi); // get return address
johnc@2781 832 __ mov(rsp, r13); // set sp to sender sp
johnc@2781 833 __ jmp(rdi);
johnc@2781 834 __ ret(0);
johnc@2781 835
johnc@2781 836 // generate a vanilla interpreter entry as the slow path
johnc@2781 837 __ bind(slow_path);
johnc@2781 838 (void) generate_normal_entry(false);
johnc@2781 839
johnc@2781 840 return entry;
johnc@2781 841 }
jprovino@4542 842 #endif // INCLUDE_ALL_GCS
johnc@2781 843
johnc@2781 844 // If G1 is not enabled then attempt to go through the accessor entry point
johnc@2781 845 // Reference.get is an accessor
johnc@2781 846 return generate_accessor_entry();
johnc@2781 847 }
johnc@2781 848
drchase@5353 849 /**
drchase@5353 850 * Method entry for static native methods:
drchase@5353 851 * int java.util.zip.CRC32.update(int crc, int b)
drchase@5353 852 */
drchase@5353 853 address InterpreterGenerator::generate_CRC32_update_entry() {
drchase@5353 854 if (UseCRC32Intrinsics) {
drchase@5353 855 address entry = __ pc();
drchase@5353 856
drchase@5353 857 // rbx,: Method*
bharadwaj@5538 858 // r13: senderSP must preserved for slow path, set SP to it on fast path
bharadwaj@5538 859 // c_rarg0: scratch (rdi on non-Win64, rcx on Win64)
bharadwaj@5538 860 // c_rarg1: scratch (rsi on non-Win64, rdx on Win64)
drchase@5353 861
drchase@5353 862 Label slow_path;
drchase@5353 863 // If we need a safepoint check, generate full interpreter entry.
drchase@5353 864 ExternalAddress state(SafepointSynchronize::address_of_state());
drchase@5353 865 __ cmp32(ExternalAddress(SafepointSynchronize::address_of_state()),
drchase@5353 866 SafepointSynchronize::_not_synchronized);
drchase@5353 867 __ jcc(Assembler::notEqual, slow_path);
drchase@5353 868
drchase@5353 869 // We don't generate local frame and don't align stack because
drchase@5353 870 // we call stub code and there is no safepoint on this path.
drchase@5353 871
drchase@5353 872 // Load parameters
drchase@5353 873 const Register crc = rax; // crc
bharadwaj@5538 874 const Register val = c_rarg0; // source java byte value
bharadwaj@5538 875 const Register tbl = c_rarg1; // scratch
drchase@5353 876
drchase@5353 877 // Arguments are reversed on java expression stack
drchase@5353 878 __ movl(val, Address(rsp, wordSize)); // byte value
drchase@5353 879 __ movl(crc, Address(rsp, 2*wordSize)); // Initial CRC
drchase@5353 880
drchase@5353 881 __ lea(tbl, ExternalAddress(StubRoutines::crc_table_addr()));
drchase@5353 882 __ notl(crc); // ~crc
drchase@5353 883 __ update_byte_crc32(crc, val, tbl);
drchase@5353 884 __ notl(crc); // ~crc
drchase@5353 885 // result in rax
drchase@5353 886
drchase@5353 887 // _areturn
drchase@5353 888 __ pop(rdi); // get return address
bharadwaj@5538 889 __ mov(rsp, r13); // set sp to sender sp
drchase@5353 890 __ jmp(rdi);
drchase@5353 891
drchase@5353 892 // generate a vanilla native entry as the slow path
drchase@5353 893 __ bind(slow_path);
drchase@5353 894
drchase@5353 895 (void) generate_native_entry(false);
drchase@5353 896
drchase@5353 897 return entry;
drchase@5353 898 }
drchase@5353 899 return generate_native_entry(false);
drchase@5353 900 }
drchase@5353 901
drchase@5353 902 /**
drchase@5353 903 * Method entry for static native methods:
drchase@5353 904 * int java.util.zip.CRC32.updateBytes(int crc, byte[] b, int off, int len)
drchase@5353 905 * int java.util.zip.CRC32.updateByteBuffer(int crc, long buf, int off, int len)
drchase@5353 906 */
drchase@5353 907 address InterpreterGenerator::generate_CRC32_updateBytes_entry(AbstractInterpreter::MethodKind kind) {
drchase@5353 908 if (UseCRC32Intrinsics) {
drchase@5353 909 address entry = __ pc();
drchase@5353 910
drchase@5353 911 // rbx,: Method*
drchase@5353 912 // r13: senderSP must preserved for slow path, set SP to it on fast path
drchase@5353 913
drchase@5353 914 Label slow_path;
drchase@5353 915 // If we need a safepoint check, generate full interpreter entry.
drchase@5353 916 ExternalAddress state(SafepointSynchronize::address_of_state());
drchase@5353 917 __ cmp32(ExternalAddress(SafepointSynchronize::address_of_state()),
drchase@5353 918 SafepointSynchronize::_not_synchronized);
drchase@5353 919 __ jcc(Assembler::notEqual, slow_path);
drchase@5353 920
drchase@5353 921 // We don't generate local frame and don't align stack because
drchase@5353 922 // we call stub code and there is no safepoint on this path.
drchase@5353 923
drchase@5353 924 // Load parameters
drchase@5353 925 const Register crc = c_rarg0; // crc
drchase@5353 926 const Register buf = c_rarg1; // source java byte array address
drchase@5353 927 const Register len = c_rarg2; // length
bharadwaj@5538 928 const Register off = len; // offset (never overlaps with 'len')
drchase@5353 929
drchase@5353 930 // Arguments are reversed on java expression stack
drchase@5353 931 // Calculate address of start element
drchase@5353 932 if (kind == Interpreter::java_util_zip_CRC32_updateByteBuffer) {
drchase@5353 933 __ movptr(buf, Address(rsp, 3*wordSize)); // long buf
bharadwaj@5538 934 __ movl2ptr(off, Address(rsp, 2*wordSize)); // offset
bharadwaj@5538 935 __ addq(buf, off); // + offset
drchase@5353 936 __ movl(crc, Address(rsp, 5*wordSize)); // Initial CRC
drchase@5353 937 } else {
drchase@5353 938 __ movptr(buf, Address(rsp, 3*wordSize)); // byte[] array
drchase@5353 939 __ addptr(buf, arrayOopDesc::base_offset_in_bytes(T_BYTE)); // + header size
bharadwaj@5538 940 __ movl2ptr(off, Address(rsp, 2*wordSize)); // offset
bharadwaj@5538 941 __ addq(buf, off); // + offset
drchase@5353 942 __ movl(crc, Address(rsp, 4*wordSize)); // Initial CRC
drchase@5353 943 }
bharadwaj@5538 944 // Can now load 'len' since we're finished with 'off'
bharadwaj@5538 945 __ movl(len, Address(rsp, wordSize)); // Length
drchase@5353 946
drchase@5353 947 __ super_call_VM_leaf(CAST_FROM_FN_PTR(address, StubRoutines::updateBytesCRC32()), crc, buf, len);
drchase@5353 948 // result in rax
drchase@5353 949
drchase@5353 950 // _areturn
drchase@5353 951 __ pop(rdi); // get return address
drchase@5353 952 __ mov(rsp, r13); // set sp to sender sp
drchase@5353 953 __ jmp(rdi);
drchase@5353 954
drchase@5353 955 // generate a vanilla native entry as the slow path
drchase@5353 956 __ bind(slow_path);
drchase@5353 957
drchase@5353 958 (void) generate_native_entry(false);
drchase@5353 959
drchase@5353 960 return entry;
drchase@5353 961 }
drchase@5353 962 return generate_native_entry(false);
drchase@5353 963 }
johnc@2781 964
duke@435 965 // Interpreter stub for calling a native method. (asm interpreter)
duke@435 966 // This sets up a somewhat different looking stack for calling the
duke@435 967 // native method than the typical interpreter frame setup.
duke@435 968 address InterpreterGenerator::generate_native_entry(bool synchronized) {
duke@435 969 // determine code generation flags
duke@435 970 bool inc_counter = UseCompiler || CountCompiledCalls;
duke@435 971
coleenp@4037 972 // rbx: Method*
duke@435 973 // r13: sender sp
duke@435 974
duke@435 975 address entry_point = __ pc();
duke@435 976
jiangli@4338 977 const Address constMethod (rbx, Method::const_offset());
coleenp@4037 978 const Address access_flags (rbx, Method::access_flags_offset());
jiangli@4338 979 const Address size_of_parameters(rcx, ConstMethod::
jiangli@4338 980 size_of_parameters_offset());
jiangli@4338 981
duke@435 982
duke@435 983 // get parameter size (always needed)
jiangli@4338 984 __ movptr(rcx, constMethod);
jrose@1057 985 __ load_unsigned_short(rcx, size_of_parameters);
duke@435 986
duke@435 987 // native calls don't need the stack size check since they have no
duke@435 988 // expression stack and the arguments are already on the stack and
duke@435 989 // we only add a handful of words to the stack
duke@435 990
coleenp@4037 991 // rbx: Method*
duke@435 992 // rcx: size of parameters
duke@435 993 // r13: sender sp
never@739 994 __ pop(rax); // get return address
duke@435 995
duke@435 996 // for natives the size of locals is zero
duke@435 997
duke@435 998 // compute beginning of parameters (r14)
never@739 999 __ lea(r14, Address(rsp, rcx, Address::times_8, -wordSize));
duke@435 1000
duke@435 1001 // add 2 zero-initialized slots for native calls
duke@435 1002 // initialize result_handler slot
never@739 1003 __ push((int) NULL_WORD);
duke@435 1004 // slot for oop temp
duke@435 1005 // (static native method holder mirror/jni oop result)
never@739 1006 __ push((int) NULL_WORD);
duke@435 1007
duke@435 1008 // initialize fixed part of activation frame
duke@435 1009 generate_fixed_frame(true);
duke@435 1010
duke@435 1011 // make sure method is native & not abstract
duke@435 1012 #ifdef ASSERT
duke@435 1013 __ movl(rax, access_flags);
duke@435 1014 {
duke@435 1015 Label L;
duke@435 1016 __ testl(rax, JVM_ACC_NATIVE);
duke@435 1017 __ jcc(Assembler::notZero, L);
duke@435 1018 __ stop("tried to execute non-native method as native");
duke@435 1019 __ bind(L);
duke@435 1020 }
duke@435 1021 {
duke@435 1022 Label L;
duke@435 1023 __ testl(rax, JVM_ACC_ABSTRACT);
duke@435 1024 __ jcc(Assembler::zero, L);
duke@435 1025 __ stop("tried to execute abstract method in interpreter");
duke@435 1026 __ bind(L);
duke@435 1027 }
duke@435 1028 #endif
duke@435 1029
duke@435 1030 // Since at this point in the method invocation the exception handler
duke@435 1031 // would try to exit the monitor of synchronized methods which hasn't
duke@435 1032 // been entered yet, we set the thread local variable
duke@435 1033 // _do_not_unlock_if_synchronized to true. The remove_activation will
duke@435 1034 // check this flag.
duke@435 1035
duke@435 1036 const Address do_not_unlock_if_synchronized(r15_thread,
duke@435 1037 in_bytes(JavaThread::do_not_unlock_if_synchronized_offset()));
duke@435 1038 __ movbool(do_not_unlock_if_synchronized, true);
duke@435 1039
duke@435 1040 // increment invocation count & check for overflow
duke@435 1041 Label invocation_counter_overflow;
duke@435 1042 if (inc_counter) {
duke@435 1043 generate_counter_incr(&invocation_counter_overflow, NULL, NULL);
duke@435 1044 }
duke@435 1045
duke@435 1046 Label continue_after_compile;
duke@435 1047 __ bind(continue_after_compile);
duke@435 1048
duke@435 1049 bang_stack_shadow_pages(true);
duke@435 1050
duke@435 1051 // reset the _do_not_unlock_if_synchronized flag
duke@435 1052 __ movbool(do_not_unlock_if_synchronized, false);
duke@435 1053
duke@435 1054 // check for synchronized methods
duke@435 1055 // Must happen AFTER invocation_counter check and stack overflow check,
duke@435 1056 // so method is not locked if overflows.
duke@435 1057 if (synchronized) {
duke@435 1058 lock_method();
duke@435 1059 } else {
duke@435 1060 // no synchronization necessary
duke@435 1061 #ifdef ASSERT
duke@435 1062 {
duke@435 1063 Label L;
duke@435 1064 __ movl(rax, access_flags);
duke@435 1065 __ testl(rax, JVM_ACC_SYNCHRONIZED);
duke@435 1066 __ jcc(Assembler::zero, L);
duke@435 1067 __ stop("method needs synchronization");
duke@435 1068 __ bind(L);
duke@435 1069 }
duke@435 1070 #endif
duke@435 1071 }
duke@435 1072
duke@435 1073 // start execution
duke@435 1074 #ifdef ASSERT
duke@435 1075 {
duke@435 1076 Label L;
duke@435 1077 const Address monitor_block_top(rbp,
duke@435 1078 frame::interpreter_frame_monitor_block_top_offset * wordSize);
never@739 1079 __ movptr(rax, monitor_block_top);
never@739 1080 __ cmpptr(rax, rsp);
duke@435 1081 __ jcc(Assembler::equal, L);
duke@435 1082 __ stop("broken stack frame setup in interpreter");
duke@435 1083 __ bind(L);
duke@435 1084 }
duke@435 1085 #endif
duke@435 1086
duke@435 1087 // jvmti support
duke@435 1088 __ notify_method_entry();
duke@435 1089
duke@435 1090 // work registers
duke@435 1091 const Register method = rbx;
coleenp@548 1092 const Register t = r11;
duke@435 1093
duke@435 1094 // allocate space for parameters
duke@435 1095 __ get_method(method);
jiangli@4338 1096 __ movptr(t, Address(method, Method::const_offset()));
jiangli@4338 1097 __ load_unsigned_short(t, Address(t, ConstMethod::size_of_parameters_offset()));
twisti@1861 1098 __ shll(t, Interpreter::logStackElementSize);
duke@435 1099
never@739 1100 __ subptr(rsp, t);
never@739 1101 __ subptr(rsp, frame::arg_reg_save_area_bytes); // windows
twisti@1040 1102 __ andptr(rsp, -16); // must be 16 byte boundary (see amd64 ABI)
duke@435 1103
duke@435 1104 // get signature handler
duke@435 1105 {
duke@435 1106 Label L;
coleenp@4037 1107 __ movptr(t, Address(method, Method::signature_handler_offset()));
never@739 1108 __ testptr(t, t);
duke@435 1109 __ jcc(Assembler::notZero, L);
duke@435 1110 __ call_VM(noreg,
duke@435 1111 CAST_FROM_FN_PTR(address,
duke@435 1112 InterpreterRuntime::prepare_native_call),
duke@435 1113 method);
duke@435 1114 __ get_method(method);
coleenp@4037 1115 __ movptr(t, Address(method, Method::signature_handler_offset()));
duke@435 1116 __ bind(L);
duke@435 1117 }
duke@435 1118
duke@435 1119 // call signature handler
duke@435 1120 assert(InterpreterRuntime::SignatureHandlerGenerator::from() == r14,
duke@435 1121 "adjust this code");
duke@435 1122 assert(InterpreterRuntime::SignatureHandlerGenerator::to() == rsp,
duke@435 1123 "adjust this code");
duke@435 1124 assert(InterpreterRuntime::SignatureHandlerGenerator::temp() == rscratch1,
duke@435 1125 "adjust this code");
duke@435 1126
duke@435 1127 // The generated handlers do not touch RBX (the method oop).
duke@435 1128 // However, large signatures cannot be cached and are generated
duke@435 1129 // each time here. The slow-path generator can do a GC on return,
duke@435 1130 // so we must reload it after the call.
duke@435 1131 __ call(t);
duke@435 1132 __ get_method(method); // slow path can do a GC, reload RBX
duke@435 1133
duke@435 1134
duke@435 1135 // result handler is in rax
duke@435 1136 // set result handler
never@739 1137 __ movptr(Address(rbp,
never@739 1138 (frame::interpreter_frame_result_handler_offset) * wordSize),
never@739 1139 rax);
duke@435 1140
duke@435 1141 // pass mirror handle if static call
duke@435 1142 {
duke@435 1143 Label L;
stefank@3391 1144 const int mirror_offset = in_bytes(Klass::java_mirror_offset());
coleenp@4037 1145 __ movl(t, Address(method, Method::access_flags_offset()));
duke@435 1146 __ testl(t, JVM_ACC_STATIC);
duke@435 1147 __ jcc(Assembler::zero, L);
duke@435 1148 // get mirror
coleenp@4037 1149 __ movptr(t, Address(method, Method::const_offset()));
coleenp@4037 1150 __ movptr(t, Address(t, ConstMethod::constants_offset()));
coleenp@4037 1151 __ movptr(t, Address(t, ConstantPool::pool_holder_offset_in_bytes()));
never@739 1152 __ movptr(t, Address(t, mirror_offset));
duke@435 1153 // copy mirror into activation frame
never@739 1154 __ movptr(Address(rbp, frame::interpreter_frame_oop_temp_offset * wordSize),
duke@435 1155 t);
duke@435 1156 // pass handle to mirror
never@739 1157 __ lea(c_rarg1,
never@739 1158 Address(rbp, frame::interpreter_frame_oop_temp_offset * wordSize));
duke@435 1159 __ bind(L);
duke@435 1160 }
duke@435 1161
duke@435 1162 // get native function entry point
duke@435 1163 {
duke@435 1164 Label L;
coleenp@4037 1165 __ movptr(rax, Address(method, Method::native_function_offset()));
duke@435 1166 ExternalAddress unsatisfied(SharedRuntime::native_method_throw_unsatisfied_link_error_entry());
duke@435 1167 __ movptr(rscratch2, unsatisfied.addr());
never@739 1168 __ cmpptr(rax, rscratch2);
duke@435 1169 __ jcc(Assembler::notEqual, L);
duke@435 1170 __ call_VM(noreg,
duke@435 1171 CAST_FROM_FN_PTR(address,
duke@435 1172 InterpreterRuntime::prepare_native_call),
duke@435 1173 method);
duke@435 1174 __ get_method(method);
coleenp@4037 1175 __ movptr(rax, Address(method, Method::native_function_offset()));
duke@435 1176 __ bind(L);
duke@435 1177 }
duke@435 1178
duke@435 1179 // pass JNIEnv
never@739 1180 __ lea(c_rarg0, Address(r15_thread, JavaThread::jni_environment_offset()));
duke@435 1181
duke@435 1182 // It is enough that the pc() points into the right code
duke@435 1183 // segment. It does not have to be the correct return pc.
duke@435 1184 __ set_last_Java_frame(rsp, rbp, (address) __ pc());
duke@435 1185
duke@435 1186 // change thread state
duke@435 1187 #ifdef ASSERT
duke@435 1188 {
duke@435 1189 Label L;
duke@435 1190 __ movl(t, Address(r15_thread, JavaThread::thread_state_offset()));
duke@435 1191 __ cmpl(t, _thread_in_Java);
duke@435 1192 __ jcc(Assembler::equal, L);
duke@435 1193 __ stop("Wrong thread state in native stub");
duke@435 1194 __ bind(L);
duke@435 1195 }
duke@435 1196 #endif
duke@435 1197
duke@435 1198 // Change state to native
duke@435 1199
duke@435 1200 __ movl(Address(r15_thread, JavaThread::thread_state_offset()),
duke@435 1201 _thread_in_native);
duke@435 1202
duke@435 1203 // Call the native method.
duke@435 1204 __ call(rax);
duke@435 1205 // result potentially in rax or xmm0
duke@435 1206
kvn@4873 1207 // Verify or restore cpu control state after JNI call
kvn@4873 1208 __ restore_cpu_control_state_after_jni();
duke@435 1209
duke@435 1210 // NOTE: The order of these pushes is known to frame::interpreter_frame_result
duke@435 1211 // in order to extract the result of a method call. If the order of these
duke@435 1212 // pushes change or anything else is added to the stack then the code in
duke@435 1213 // interpreter_frame_result must also change.
duke@435 1214
duke@435 1215 __ push(dtos);
duke@435 1216 __ push(ltos);
duke@435 1217
duke@435 1218 // change thread state
duke@435 1219 __ movl(Address(r15_thread, JavaThread::thread_state_offset()),
duke@435 1220 _thread_in_native_trans);
duke@435 1221
duke@435 1222 if (os::is_MP()) {
duke@435 1223 if (UseMembar) {
duke@435 1224 // Force this write out before the read below
duke@435 1225 __ membar(Assembler::Membar_mask_bits(
duke@435 1226 Assembler::LoadLoad | Assembler::LoadStore |
duke@435 1227 Assembler::StoreLoad | Assembler::StoreStore));
duke@435 1228 } else {
duke@435 1229 // Write serialization page so VM thread can do a pseudo remote membar.
duke@435 1230 // We use the current thread pointer to calculate a thread specific
duke@435 1231 // offset to write to within the page. This minimizes bus traffic
duke@435 1232 // due to cache line collision.
duke@435 1233 __ serialize_memory(r15_thread, rscratch2);
duke@435 1234 }
duke@435 1235 }
duke@435 1236
duke@435 1237 // check for safepoint operation in progress and/or pending suspend requests
duke@435 1238 {
duke@435 1239 Label Continue;
duke@435 1240 __ cmp32(ExternalAddress(SafepointSynchronize::address_of_state()),
duke@435 1241 SafepointSynchronize::_not_synchronized);
duke@435 1242
duke@435 1243 Label L;
duke@435 1244 __ jcc(Assembler::notEqual, L);
duke@435 1245 __ cmpl(Address(r15_thread, JavaThread::suspend_flags_offset()), 0);
duke@435 1246 __ jcc(Assembler::equal, Continue);
duke@435 1247 __ bind(L);
duke@435 1248
duke@435 1249 // Don't use call_VM as it will see a possible pending exception
duke@435 1250 // and forward it and never return here preventing us from
duke@435 1251 // clearing _last_native_pc down below. Also can't use
duke@435 1252 // call_VM_leaf either as it will check to see if r13 & r14 are
duke@435 1253 // preserved and correspond to the bcp/locals pointers. So we do a
duke@435 1254 // runtime call by hand.
duke@435 1255 //
never@739 1256 __ mov(c_rarg0, r15_thread);
coleenp@2318 1257 __ mov(r12, rsp); // remember sp (can only use r12 if not using call_VM)
never@739 1258 __ subptr(rsp, frame::arg_reg_save_area_bytes); // windows
never@739 1259 __ andptr(rsp, -16); // align stack as required by ABI
duke@435 1260 __ call(RuntimeAddress(CAST_FROM_FN_PTR(address, JavaThread::check_special_condition_for_native_trans)));
never@739 1261 __ mov(rsp, r12); // restore sp
coleenp@548 1262 __ reinit_heapbase();
duke@435 1263 __ bind(Continue);
duke@435 1264 }
duke@435 1265
duke@435 1266 // change thread state
duke@435 1267 __ movl(Address(r15_thread, JavaThread::thread_state_offset()), _thread_in_Java);
duke@435 1268
duke@435 1269 // reset_last_Java_frame
duke@435 1270 __ reset_last_Java_frame(true, true);
duke@435 1271
duke@435 1272 // reset handle block
never@739 1273 __ movptr(t, Address(r15_thread, JavaThread::active_handles_offset()));
never@739 1274 __ movptr(Address(t, JNIHandleBlock::top_offset_in_bytes()), (int32_t)NULL_WORD);
duke@435 1275
duke@435 1276 // If result is an oop unbox and store it in frame where gc will see it
duke@435 1277 // and result handler will pick it up
duke@435 1278
duke@435 1279 {
duke@435 1280 Label no_oop, store_result;
duke@435 1281 __ lea(t, ExternalAddress(AbstractInterpreter::result_handler(T_OBJECT)));
never@739 1282 __ cmpptr(t, Address(rbp, frame::interpreter_frame_result_handler_offset*wordSize));
duke@435 1283 __ jcc(Assembler::notEqual, no_oop);
duke@435 1284 // retrieve result
duke@435 1285 __ pop(ltos);
never@739 1286 __ testptr(rax, rax);
duke@435 1287 __ jcc(Assembler::zero, store_result);
never@739 1288 __ movptr(rax, Address(rax, 0));
duke@435 1289 __ bind(store_result);
never@739 1290 __ movptr(Address(rbp, frame::interpreter_frame_oop_temp_offset*wordSize), rax);
duke@435 1291 // keep stack depth as expected by pushing oop which will eventually be discarde
duke@435 1292 __ push(ltos);
duke@435 1293 __ bind(no_oop);
duke@435 1294 }
duke@435 1295
duke@435 1296
duke@435 1297 {
duke@435 1298 Label no_reguard;
duke@435 1299 __ cmpl(Address(r15_thread, JavaThread::stack_guard_state_offset()),
duke@435 1300 JavaThread::stack_guard_yellow_disabled);
duke@435 1301 __ jcc(Assembler::notEqual, no_reguard);
duke@435 1302
never@739 1303 __ pusha(); // XXX only save smashed registers
coleenp@2318 1304 __ mov(r12, rsp); // remember sp (can only use r12 if not using call_VM)
never@739 1305 __ subptr(rsp, frame::arg_reg_save_area_bytes); // windows
never@739 1306 __ andptr(rsp, -16); // align stack as required by ABI
duke@435 1307 __ call(RuntimeAddress(CAST_FROM_FN_PTR(address, SharedRuntime::reguard_yellow_pages)));
never@739 1308 __ mov(rsp, r12); // restore sp
never@739 1309 __ popa(); // XXX only restore smashed registers
coleenp@548 1310 __ reinit_heapbase();
duke@435 1311
duke@435 1312 __ bind(no_reguard);
duke@435 1313 }
duke@435 1314
duke@435 1315
duke@435 1316 // The method register is junk from after the thread_in_native transition
duke@435 1317 // until here. Also can't call_VM until the bcp has been
duke@435 1318 // restored. Need bcp for throwing exception below so get it now.
duke@435 1319 __ get_method(method);
duke@435 1320
duke@435 1321 // restore r13 to have legal interpreter frame, i.e., bci == 0 <=>
duke@435 1322 // r13 == code_base()
coleenp@4037 1323 __ movptr(r13, Address(method, Method::const_offset())); // get ConstMethod*
coleenp@4037 1324 __ lea(r13, Address(r13, ConstMethod::codes_offset())); // get codebase
duke@435 1325 // handle exceptions (exception handling will handle unlocking!)
duke@435 1326 {
duke@435 1327 Label L;
never@739 1328 __ cmpptr(Address(r15_thread, Thread::pending_exception_offset()), (int32_t) NULL_WORD);
duke@435 1329 __ jcc(Assembler::zero, L);
duke@435 1330 // Note: At some point we may want to unify this with the code
duke@435 1331 // used in call_VM_base(); i.e., we should use the
duke@435 1332 // StubRoutines::forward_exception code. For now this doesn't work
duke@435 1333 // here because the rsp is not correctly set at this point.
duke@435 1334 __ MacroAssembler::call_VM(noreg,
duke@435 1335 CAST_FROM_FN_PTR(address,
duke@435 1336 InterpreterRuntime::throw_pending_exception));
duke@435 1337 __ should_not_reach_here();
duke@435 1338 __ bind(L);
duke@435 1339 }
duke@435 1340
duke@435 1341 // do unlocking if necessary
duke@435 1342 {
duke@435 1343 Label L;
coleenp@4037 1344 __ movl(t, Address(method, Method::access_flags_offset()));
duke@435 1345 __ testl(t, JVM_ACC_SYNCHRONIZED);
duke@435 1346 __ jcc(Assembler::zero, L);
duke@435 1347 // the code below should be shared with interpreter macro
duke@435 1348 // assembler implementation
duke@435 1349 {
duke@435 1350 Label unlock;
duke@435 1351 // BasicObjectLock will be first in list, since this is a
duke@435 1352 // synchronized method. However, need to check that the object
duke@435 1353 // has not been unlocked by an explicit monitorexit bytecode.
duke@435 1354 const Address monitor(rbp,
duke@435 1355 (intptr_t)(frame::interpreter_frame_initial_sp_offset *
duke@435 1356 wordSize - sizeof(BasicObjectLock)));
duke@435 1357
duke@435 1358 // monitor expect in c_rarg1 for slow unlock path
never@739 1359 __ lea(c_rarg1, monitor); // address of first monitor
duke@435 1360
never@739 1361 __ movptr(t, Address(c_rarg1, BasicObjectLock::obj_offset_in_bytes()));
never@739 1362 __ testptr(t, t);
duke@435 1363 __ jcc(Assembler::notZero, unlock);
duke@435 1364
duke@435 1365 // Entry already unlocked, need to throw exception
duke@435 1366 __ MacroAssembler::call_VM(noreg,
duke@435 1367 CAST_FROM_FN_PTR(address,
duke@435 1368 InterpreterRuntime::throw_illegal_monitor_state_exception));
duke@435 1369 __ should_not_reach_here();
duke@435 1370
duke@435 1371 __ bind(unlock);
duke@435 1372 __ unlock_object(c_rarg1);
duke@435 1373 }
duke@435 1374 __ bind(L);
duke@435 1375 }
duke@435 1376
duke@435 1377 // jvmti support
duke@435 1378 // Note: This must happen _after_ handling/throwing any exceptions since
duke@435 1379 // the exception handler code notifies the runtime of method exits
duke@435 1380 // too. If this happens before, method entry/exit notifications are
duke@435 1381 // not properly paired (was bug - gri 11/22/99).
duke@435 1382 __ notify_method_exit(vtos, InterpreterMacroAssembler::NotifyJVMTI);
duke@435 1383
duke@435 1384 // restore potential result in edx:eax, call result handler to
duke@435 1385 // restore potential result in ST0 & handle result
duke@435 1386
duke@435 1387 __ pop(ltos);
duke@435 1388 __ pop(dtos);
duke@435 1389
never@739 1390 __ movptr(t, Address(rbp,
never@739 1391 (frame::interpreter_frame_result_handler_offset) * wordSize));
duke@435 1392 __ call(t);
duke@435 1393
duke@435 1394 // remove activation
never@739 1395 __ movptr(t, Address(rbp,
never@739 1396 frame::interpreter_frame_sender_sp_offset *
never@739 1397 wordSize)); // get sender sp
duke@435 1398 __ leave(); // remove frame anchor
never@739 1399 __ pop(rdi); // get return address
never@739 1400 __ mov(rsp, t); // set sp to sender sp
duke@435 1401 __ jmp(rdi);
duke@435 1402
duke@435 1403 if (inc_counter) {
duke@435 1404 // Handle overflow of counter and compile method
duke@435 1405 __ bind(invocation_counter_overflow);
duke@435 1406 generate_counter_overflow(&continue_after_compile);
duke@435 1407 }
duke@435 1408
duke@435 1409 return entry_point;
duke@435 1410 }
duke@435 1411
duke@435 1412 //
duke@435 1413 // Generic interpreted method entry to (asm) interpreter
duke@435 1414 //
duke@435 1415 address InterpreterGenerator::generate_normal_entry(bool synchronized) {
duke@435 1416 // determine code generation flags
duke@435 1417 bool inc_counter = UseCompiler || CountCompiledCalls;
duke@435 1418
coleenp@4037 1419 // ebx: Method*
duke@435 1420 // r13: sender sp
duke@435 1421 address entry_point = __ pc();
duke@435 1422
jiangli@4338 1423 const Address constMethod(rbx, Method::const_offset());
coleenp@4037 1424 const Address access_flags(rbx, Method::access_flags_offset());
jiangli@4338 1425 const Address size_of_parameters(rdx,
jiangli@4338 1426 ConstMethod::size_of_parameters_offset());
jiangli@4338 1427 const Address size_of_locals(rdx, ConstMethod::size_of_locals_offset());
jiangli@4338 1428
duke@435 1429
duke@435 1430 // get parameter size (always needed)
jiangli@4338 1431 __ movptr(rdx, constMethod);
jrose@1057 1432 __ load_unsigned_short(rcx, size_of_parameters);
duke@435 1433
coleenp@4037 1434 // rbx: Method*
duke@435 1435 // rcx: size of parameters
duke@435 1436 // r13: sender_sp (could differ from sp+wordSize if we were called via c2i )
duke@435 1437
jrose@1057 1438 __ load_unsigned_short(rdx, size_of_locals); // get size of locals in words
duke@435 1439 __ subl(rdx, rcx); // rdx = no. of additional locals
duke@435 1440
duke@435 1441 // YYY
duke@435 1442 // __ incrementl(rdx);
duke@435 1443 // __ andl(rdx, -2);
duke@435 1444
duke@435 1445 // see if we've got enough room on the stack for locals plus overhead.
duke@435 1446 generate_stack_overflow_check();
duke@435 1447
duke@435 1448 // get return address
never@739 1449 __ pop(rax);
duke@435 1450
duke@435 1451 // compute beginning of parameters (r14)
never@739 1452 __ lea(r14, Address(rsp, rcx, Address::times_8, -wordSize));
duke@435 1453
duke@435 1454 // rdx - # of additional locals
duke@435 1455 // allocate space for locals
duke@435 1456 // explicitly initialize locals
duke@435 1457 {
duke@435 1458 Label exit, loop;
duke@435 1459 __ testl(rdx, rdx);
duke@435 1460 __ jcc(Assembler::lessEqual, exit); // do nothing if rdx <= 0
duke@435 1461 __ bind(loop);
never@739 1462 __ push((int) NULL_WORD); // initialize local variables
duke@435 1463 __ decrementl(rdx); // until everything initialized
duke@435 1464 __ jcc(Assembler::greater, loop);
duke@435 1465 __ bind(exit);
duke@435 1466 }
duke@435 1467
duke@435 1468 // initialize fixed part of activation frame
duke@435 1469 generate_fixed_frame(false);
duke@435 1470
duke@435 1471 // make sure method is not native & not abstract
duke@435 1472 #ifdef ASSERT
duke@435 1473 __ movl(rax, access_flags);
duke@435 1474 {
duke@435 1475 Label L;
duke@435 1476 __ testl(rax, JVM_ACC_NATIVE);
duke@435 1477 __ jcc(Assembler::zero, L);
duke@435 1478 __ stop("tried to execute native method as non-native");
duke@435 1479 __ bind(L);
duke@435 1480 }
duke@435 1481 {
duke@435 1482 Label L;
duke@435 1483 __ testl(rax, JVM_ACC_ABSTRACT);
duke@435 1484 __ jcc(Assembler::zero, L);
duke@435 1485 __ stop("tried to execute abstract method in interpreter");
duke@435 1486 __ bind(L);
duke@435 1487 }
duke@435 1488 #endif
duke@435 1489
duke@435 1490 // Since at this point in the method invocation the exception
duke@435 1491 // handler would try to exit the monitor of synchronized methods
duke@435 1492 // which hasn't been entered yet, we set the thread local variable
duke@435 1493 // _do_not_unlock_if_synchronized to true. The remove_activation
duke@435 1494 // will check this flag.
duke@435 1495
duke@435 1496 const Address do_not_unlock_if_synchronized(r15_thread,
duke@435 1497 in_bytes(JavaThread::do_not_unlock_if_synchronized_offset()));
duke@435 1498 __ movbool(do_not_unlock_if_synchronized, true);
duke@435 1499
duke@435 1500 // increment invocation count & check for overflow
duke@435 1501 Label invocation_counter_overflow;
duke@435 1502 Label profile_method;
duke@435 1503 Label profile_method_continue;
duke@435 1504 if (inc_counter) {
duke@435 1505 generate_counter_incr(&invocation_counter_overflow,
duke@435 1506 &profile_method,
duke@435 1507 &profile_method_continue);
duke@435 1508 if (ProfileInterpreter) {
duke@435 1509 __ bind(profile_method_continue);
duke@435 1510 }
duke@435 1511 }
duke@435 1512
duke@435 1513 Label continue_after_compile;
duke@435 1514 __ bind(continue_after_compile);
duke@435 1515
duke@435 1516 // check for synchronized interpreted methods
duke@435 1517 bang_stack_shadow_pages(false);
duke@435 1518
duke@435 1519 // reset the _do_not_unlock_if_synchronized flag
duke@435 1520 __ movbool(do_not_unlock_if_synchronized, false);
duke@435 1521
duke@435 1522 // check for synchronized methods
duke@435 1523 // Must happen AFTER invocation_counter check and stack overflow check,
duke@435 1524 // so method is not locked if overflows.
duke@435 1525 if (synchronized) {
duke@435 1526 // Allocate monitor and lock method
duke@435 1527 lock_method();
duke@435 1528 } else {
duke@435 1529 // no synchronization necessary
duke@435 1530 #ifdef ASSERT
duke@435 1531 {
duke@435 1532 Label L;
duke@435 1533 __ movl(rax, access_flags);
duke@435 1534 __ testl(rax, JVM_ACC_SYNCHRONIZED);
duke@435 1535 __ jcc(Assembler::zero, L);
duke@435 1536 __ stop("method needs synchronization");
duke@435 1537 __ bind(L);
duke@435 1538 }
duke@435 1539 #endif
duke@435 1540 }
duke@435 1541
duke@435 1542 // start execution
duke@435 1543 #ifdef ASSERT
duke@435 1544 {
duke@435 1545 Label L;
duke@435 1546 const Address monitor_block_top (rbp,
duke@435 1547 frame::interpreter_frame_monitor_block_top_offset * wordSize);
never@739 1548 __ movptr(rax, monitor_block_top);
never@739 1549 __ cmpptr(rax, rsp);
duke@435 1550 __ jcc(Assembler::equal, L);
duke@435 1551 __ stop("broken stack frame setup in interpreter");
duke@435 1552 __ bind(L);
duke@435 1553 }
duke@435 1554 #endif
duke@435 1555
duke@435 1556 // jvmti support
duke@435 1557 __ notify_method_entry();
duke@435 1558
duke@435 1559 __ dispatch_next(vtos);
duke@435 1560
duke@435 1561 // invocation counter overflow
duke@435 1562 if (inc_counter) {
duke@435 1563 if (ProfileInterpreter) {
duke@435 1564 // We have decided to profile this method in the interpreter
duke@435 1565 __ bind(profile_method);
iveresov@2438 1566 __ call_VM(noreg, CAST_FROM_FN_PTR(address, InterpreterRuntime::profile_method));
iveresov@2438 1567 __ set_method_data_pointer_for_bcp();
iveresov@2461 1568 __ get_method(rbx);
duke@435 1569 __ jmp(profile_method_continue);
duke@435 1570 }
duke@435 1571 // Handle overflow of counter and compile method
duke@435 1572 __ bind(invocation_counter_overflow);
duke@435 1573 generate_counter_overflow(&continue_after_compile);
duke@435 1574 }
duke@435 1575
duke@435 1576 return entry_point;
duke@435 1577 }
duke@435 1578
duke@435 1579 // Entry points
duke@435 1580 //
duke@435 1581 // Here we generate the various kind of entries into the interpreter.
duke@435 1582 // The two main entry type are generic bytecode methods and native
duke@435 1583 // call method. These both come in synchronized and non-synchronized
duke@435 1584 // versions but the frame layout they create is very similar. The
duke@435 1585 // other method entry types are really just special purpose entries
duke@435 1586 // that are really entry and interpretation all in one. These are for
duke@435 1587 // trivial methods like accessor, empty, or special math methods.
duke@435 1588 //
duke@435 1589 // When control flow reaches any of the entry types for the interpreter
duke@435 1590 // the following holds ->
duke@435 1591 //
duke@435 1592 // Arguments:
duke@435 1593 //
coleenp@4037 1594 // rbx: Method*
duke@435 1595 //
duke@435 1596 // Stack layout immediately at entry
duke@435 1597 //
duke@435 1598 // [ return address ] <--- rsp
duke@435 1599 // [ parameter n ]
duke@435 1600 // ...
duke@435 1601 // [ parameter 1 ]
duke@435 1602 // [ expression stack ] (caller's java expression stack)
duke@435 1603
duke@435 1604 // Assuming that we don't go to one of the trivial specialized entries
duke@435 1605 // the stack will look like below when we are ready to execute the
duke@435 1606 // first bytecode (or call the native routine). The register usage
duke@435 1607 // will be as the template based interpreter expects (see
duke@435 1608 // interpreter_amd64.hpp).
duke@435 1609 //
duke@435 1610 // local variables follow incoming parameters immediately; i.e.
duke@435 1611 // the return address is moved to the end of the locals).
duke@435 1612 //
duke@435 1613 // [ monitor entry ] <--- rsp
duke@435 1614 // ...
duke@435 1615 // [ monitor entry ]
duke@435 1616 // [ expr. stack bottom ]
duke@435 1617 // [ saved r13 ]
duke@435 1618 // [ current r14 ]
coleenp@4037 1619 // [ Method* ]
duke@435 1620 // [ saved ebp ] <--- rbp
duke@435 1621 // [ return address ]
duke@435 1622 // [ local variable m ]
duke@435 1623 // ...
duke@435 1624 // [ local variable 1 ]
duke@435 1625 // [ parameter n ]
duke@435 1626 // ...
duke@435 1627 // [ parameter 1 ] <--- r14
duke@435 1628
duke@435 1629 address AbstractInterpreterGenerator::generate_method_entry(
duke@435 1630 AbstractInterpreter::MethodKind kind) {
duke@435 1631 // determine code generation flags
duke@435 1632 bool synchronized = false;
duke@435 1633 address entry_point = NULL;
drchase@5353 1634 InterpreterGenerator* ig_this = (InterpreterGenerator*)this;
duke@435 1635
duke@435 1636 switch (kind) {
drchase@5353 1637 case Interpreter::zerolocals : break;
drchase@5353 1638 case Interpreter::zerolocals_synchronized: synchronized = true; break;
drchase@5353 1639 case Interpreter::native : entry_point = ig_this->generate_native_entry(false); break;
drchase@5353 1640 case Interpreter::native_synchronized : entry_point = ig_this->generate_native_entry(true); break;
drchase@5353 1641 case Interpreter::empty : entry_point = ig_this->generate_empty_entry(); break;
drchase@5353 1642 case Interpreter::accessor : entry_point = ig_this->generate_accessor_entry(); break;
drchase@5353 1643 case Interpreter::abstract : entry_point = ig_this->generate_abstract_entry(); break;
never@1141 1644
never@1141 1645 case Interpreter::java_lang_math_sin : // fall thru
never@1141 1646 case Interpreter::java_lang_math_cos : // fall thru
never@1141 1647 case Interpreter::java_lang_math_tan : // fall thru
never@1141 1648 case Interpreter::java_lang_math_abs : // fall thru
never@1141 1649 case Interpreter::java_lang_math_log : // fall thru
never@1141 1650 case Interpreter::java_lang_math_log10 : // fall thru
roland@3787 1651 case Interpreter::java_lang_math_sqrt : // fall thru
roland@3787 1652 case Interpreter::java_lang_math_pow : // fall thru
drchase@5353 1653 case Interpreter::java_lang_math_exp : entry_point = ig_this->generate_math_entry(kind); break;
johnc@2781 1654 case Interpreter::java_lang_ref_reference_get
drchase@5353 1655 : entry_point = ig_this->generate_Reference_get_entry(); break;
drchase@5353 1656 case Interpreter::java_util_zip_CRC32_update
drchase@5353 1657 : entry_point = ig_this->generate_CRC32_update_entry(); break;
drchase@5353 1658 case Interpreter::java_util_zip_CRC32_updateBytes
drchase@5353 1659 : // fall thru
drchase@5353 1660 case Interpreter::java_util_zip_CRC32_updateByteBuffer
drchase@5353 1661 : entry_point = ig_this->generate_CRC32_updateBytes_entry(kind); break;
twisti@3969 1662 default:
twisti@3969 1663 fatal(err_msg("unexpected method kind: %d", kind));
twisti@3969 1664 break;
duke@435 1665 }
duke@435 1666
duke@435 1667 if (entry_point) {
duke@435 1668 return entry_point;
duke@435 1669 }
duke@435 1670
drchase@5353 1671 return ig_this->generate_normal_entry(synchronized);
duke@435 1672 }
duke@435 1673
never@1609 1674 // These should never be compiled since the interpreter will prefer
never@1609 1675 // the compiled version to the intrinsic version.
never@1609 1676 bool AbstractInterpreter::can_be_compiled(methodHandle m) {
never@1609 1677 switch (method_kind(m)) {
never@1609 1678 case Interpreter::java_lang_math_sin : // fall thru
never@1609 1679 case Interpreter::java_lang_math_cos : // fall thru
never@1609 1680 case Interpreter::java_lang_math_tan : // fall thru
never@1609 1681 case Interpreter::java_lang_math_abs : // fall thru
never@1609 1682 case Interpreter::java_lang_math_log : // fall thru
never@1609 1683 case Interpreter::java_lang_math_log10 : // fall thru
roland@3787 1684 case Interpreter::java_lang_math_sqrt : // fall thru
roland@3787 1685 case Interpreter::java_lang_math_pow : // fall thru
roland@3787 1686 case Interpreter::java_lang_math_exp :
never@1609 1687 return false;
never@1609 1688 default:
never@1609 1689 return true;
never@1609 1690 }
never@1609 1691 }
never@1609 1692
duke@435 1693 // How much stack a method activation needs in words.
coleenp@4037 1694 int AbstractInterpreter::size_top_interpreter_activation(Method* method) {
duke@435 1695 const int entry_size = frame::interpreter_frame_monitor_size();
duke@435 1696
duke@435 1697 // total overhead size: entry_size + (saved rbp thru expr stack
duke@435 1698 // bottom). be sure to change this if you add/subtract anything
duke@435 1699 // to/from the overhead area
duke@435 1700 const int overhead_size =
duke@435 1701 -(frame::interpreter_frame_initial_sp_offset) + entry_size;
duke@435 1702
duke@435 1703 const int stub_code = frame::entry_frame_after_call_words;
roland@5225 1704 const int method_stack = (method->max_locals() + method->max_stack()) *
twisti@1861 1705 Interpreter::stackElementWords;
duke@435 1706 return (overhead_size + method_stack + stub_code);
duke@435 1707 }
duke@435 1708
coleenp@4037 1709 int AbstractInterpreter::layout_activation(Method* method,
duke@435 1710 int tempcount,
duke@435 1711 int popframe_extra_args,
duke@435 1712 int moncount,
never@2901 1713 int caller_actual_parameters,
duke@435 1714 int callee_param_count,
duke@435 1715 int callee_locals,
duke@435 1716 frame* caller,
duke@435 1717 frame* interpreter_frame,
roland@4727 1718 bool is_top_frame,
roland@4727 1719 bool is_bottom_frame) {
duke@435 1720 // Note: This calculation must exactly parallel the frame setup
duke@435 1721 // in AbstractInterpreterGenerator::generate_method_entry.
duke@435 1722 // If interpreter_frame!=NULL, set up the method, locals, and monitors.
duke@435 1723 // The frame interpreter_frame, if not NULL, is guaranteed to be the
duke@435 1724 // right size, as determined by a previous call to this method.
duke@435 1725 // It is also guaranteed to be walkable even though it is in a skeletal state
duke@435 1726
duke@435 1727 // fixed size of an interpreter frame:
twisti@1861 1728 int max_locals = method->max_locals() * Interpreter::stackElementWords;
duke@435 1729 int extra_locals = (method->max_locals() - method->size_of_parameters()) *
twisti@1861 1730 Interpreter::stackElementWords;
duke@435 1731
duke@435 1732 int overhead = frame::sender_sp_offset -
duke@435 1733 frame::interpreter_frame_initial_sp_offset;
duke@435 1734 // Our locals were accounted for by the caller (or last_frame_adjust
duke@435 1735 // on the transistion) Since the callee parameters already account
duke@435 1736 // for the callee's params we only need to account for the extra
duke@435 1737 // locals.
duke@435 1738 int size = overhead +
twisti@1861 1739 (callee_locals - callee_param_count)*Interpreter::stackElementWords +
duke@435 1740 moncount * frame::interpreter_frame_monitor_size() +
twisti@1861 1741 tempcount* Interpreter::stackElementWords + popframe_extra_args;
duke@435 1742 if (interpreter_frame != NULL) {
duke@435 1743 #ifdef ASSERT
twisti@2698 1744 if (!EnableInvokeDynamic)
twisti@1570 1745 // @@@ FIXME: Should we correct interpreter_frame_sender_sp in the calling sequences?
twisti@1570 1746 // Probably, since deoptimization doesn't work yet.
twisti@1570 1747 assert(caller->unextended_sp() == interpreter_frame->interpreter_frame_sender_sp(), "Frame not properly walkable");
duke@435 1748 assert(caller->sp() == interpreter_frame->sender_sp(), "Frame not properly walkable(2)");
duke@435 1749 #endif
duke@435 1750
duke@435 1751 interpreter_frame->interpreter_frame_set_method(method);
duke@435 1752 // NOTE the difference in using sender_sp and
duke@435 1753 // interpreter_frame_sender_sp interpreter_frame_sender_sp is
duke@435 1754 // the original sp of the caller (the unextended_sp) and
duke@435 1755 // sender_sp is fp+16 XXX
duke@435 1756 intptr_t* locals = interpreter_frame->sender_sp() + max_locals - 1;
duke@435 1757
twisti@3238 1758 #ifdef ASSERT
twisti@3238 1759 if (caller->is_interpreted_frame()) {
twisti@3238 1760 assert(locals < caller->fp() + frame::interpreter_frame_initial_sp_offset, "bad placement");
twisti@3238 1761 }
twisti@3238 1762 #endif
twisti@3238 1763
duke@435 1764 interpreter_frame->interpreter_frame_set_locals(locals);
duke@435 1765 BasicObjectLock* montop = interpreter_frame->interpreter_frame_monitor_begin();
duke@435 1766 BasicObjectLock* monbot = montop - moncount;
duke@435 1767 interpreter_frame->interpreter_frame_set_monitor_end(monbot);
duke@435 1768
duke@435 1769 // Set last_sp
duke@435 1770 intptr_t* esp = (intptr_t*) monbot -
twisti@1861 1771 tempcount*Interpreter::stackElementWords -
duke@435 1772 popframe_extra_args;
duke@435 1773 interpreter_frame->interpreter_frame_set_last_sp(esp);
duke@435 1774
duke@435 1775 // All frames but the initial (oldest) interpreter frame we fill in have
duke@435 1776 // a value for sender_sp that allows walking the stack but isn't
duke@435 1777 // truly correct. Correct the value here.
duke@435 1778 if (extra_locals != 0 &&
duke@435 1779 interpreter_frame->sender_sp() ==
duke@435 1780 interpreter_frame->interpreter_frame_sender_sp()) {
duke@435 1781 interpreter_frame->set_interpreter_frame_sender_sp(caller->sp() +
duke@435 1782 extra_locals);
duke@435 1783 }
duke@435 1784 *interpreter_frame->interpreter_frame_cache_addr() =
duke@435 1785 method->constants()->cache();
duke@435 1786 }
duke@435 1787 return size;
duke@435 1788 }
duke@435 1789
duke@435 1790 //-----------------------------------------------------------------------------
duke@435 1791 // Exceptions
duke@435 1792
duke@435 1793 void TemplateInterpreterGenerator::generate_throw_exception() {
duke@435 1794 // Entry point in previous activation (i.e., if the caller was
duke@435 1795 // interpreted)
duke@435 1796 Interpreter::_rethrow_exception_entry = __ pc();
duke@435 1797 // Restore sp to interpreter_frame_last_sp even though we are going
duke@435 1798 // to empty the expression stack for the exception processing.
never@739 1799 __ movptr(Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize), (int32_t)NULL_WORD);
duke@435 1800 // rax: exception
duke@435 1801 // rdx: return address/pc that threw exception
duke@435 1802 __ restore_bcp(); // r13 points to call/send
duke@435 1803 __ restore_locals();
coleenp@548 1804 __ reinit_heapbase(); // restore r12 as heapbase.
duke@435 1805 // Entry point for exceptions thrown within interpreter code
duke@435 1806 Interpreter::_throw_exception_entry = __ pc();
duke@435 1807 // expression stack is undefined here
duke@435 1808 // rax: exception
duke@435 1809 // r13: exception bcp
duke@435 1810 __ verify_oop(rax);
never@739 1811 __ mov(c_rarg1, rax);
duke@435 1812
duke@435 1813 // expression stack must be empty before entering the VM in case of
duke@435 1814 // an exception
duke@435 1815 __ empty_expression_stack();
duke@435 1816 // find exception handler address and preserve exception oop
duke@435 1817 __ call_VM(rdx,
duke@435 1818 CAST_FROM_FN_PTR(address,
duke@435 1819 InterpreterRuntime::exception_handler_for_exception),
duke@435 1820 c_rarg1);
duke@435 1821 // rax: exception handler entry point
duke@435 1822 // rdx: preserved exception oop
duke@435 1823 // r13: bcp for exception handler
duke@435 1824 __ push_ptr(rdx); // push exception which is now the only value on the stack
duke@435 1825 __ jmp(rax); // jump to exception handler (may be _remove_activation_entry!)
duke@435 1826
duke@435 1827 // If the exception is not handled in the current frame the frame is
duke@435 1828 // removed and the exception is rethrown (i.e. exception
duke@435 1829 // continuation is _rethrow_exception).
duke@435 1830 //
duke@435 1831 // Note: At this point the bci is still the bxi for the instruction
duke@435 1832 // which caused the exception and the expression stack is
duke@435 1833 // empty. Thus, for any VM calls at this point, GC will find a legal
duke@435 1834 // oop map (with empty expression stack).
duke@435 1835
duke@435 1836 // In current activation
duke@435 1837 // tos: exception
duke@435 1838 // esi: exception bcp
duke@435 1839
duke@435 1840 //
duke@435 1841 // JVMTI PopFrame support
duke@435 1842 //
duke@435 1843
duke@435 1844 Interpreter::_remove_activation_preserving_args_entry = __ pc();
duke@435 1845 __ empty_expression_stack();
duke@435 1846 // Set the popframe_processing bit in pending_popframe_condition
duke@435 1847 // indicating that we are currently handling popframe, so that
duke@435 1848 // call_VMs that may happen later do not trigger new popframe
duke@435 1849 // handling cycles.
duke@435 1850 __ movl(rdx, Address(r15_thread, JavaThread::popframe_condition_offset()));
duke@435 1851 __ orl(rdx, JavaThread::popframe_processing_bit);
duke@435 1852 __ movl(Address(r15_thread, JavaThread::popframe_condition_offset()), rdx);
duke@435 1853
duke@435 1854 {
duke@435 1855 // Check to see whether we are returning to a deoptimized frame.
duke@435 1856 // (The PopFrame call ensures that the caller of the popped frame is
duke@435 1857 // either interpreted or compiled and deoptimizes it if compiled.)
duke@435 1858 // In this case, we can't call dispatch_next() after the frame is
duke@435 1859 // popped, but instead must save the incoming arguments and restore
duke@435 1860 // them after deoptimization has occurred.
duke@435 1861 //
duke@435 1862 // Note that we don't compare the return PC against the
duke@435 1863 // deoptimization blob's unpack entry because of the presence of
duke@435 1864 // adapter frames in C2.
duke@435 1865 Label caller_not_deoptimized;
never@739 1866 __ movptr(c_rarg1, Address(rbp, frame::return_addr_offset * wordSize));
duke@435 1867 __ super_call_VM_leaf(CAST_FROM_FN_PTR(address,
duke@435 1868 InterpreterRuntime::interpreter_contains), c_rarg1);
duke@435 1869 __ testl(rax, rax);
duke@435 1870 __ jcc(Assembler::notZero, caller_not_deoptimized);
duke@435 1871
duke@435 1872 // Compute size of arguments for saving when returning to
duke@435 1873 // deoptimized caller
duke@435 1874 __ get_method(rax);
jiangli@4338 1875 __ movptr(rax, Address(rax, Method::const_offset()));
jiangli@4338 1876 __ load_unsigned_short(rax, Address(rax, in_bytes(ConstMethod::
duke@435 1877 size_of_parameters_offset())));
twisti@1861 1878 __ shll(rax, Interpreter::logStackElementSize);
duke@435 1879 __ restore_locals(); // XXX do we need this?
never@739 1880 __ subptr(r14, rax);
never@739 1881 __ addptr(r14, wordSize);
duke@435 1882 // Save these arguments
duke@435 1883 __ super_call_VM_leaf(CAST_FROM_FN_PTR(address,
duke@435 1884 Deoptimization::
duke@435 1885 popframe_preserve_args),
duke@435 1886 r15_thread, rax, r14);
duke@435 1887
duke@435 1888 __ remove_activation(vtos, rdx,
duke@435 1889 /* throw_monitor_exception */ false,
duke@435 1890 /* install_monitor_exception */ false,
duke@435 1891 /* notify_jvmdi */ false);
duke@435 1892
duke@435 1893 // Inform deoptimization that it is responsible for restoring
duke@435 1894 // these arguments
duke@435 1895 __ movl(Address(r15_thread, JavaThread::popframe_condition_offset()),
duke@435 1896 JavaThread::popframe_force_deopt_reexecution_bit);
duke@435 1897
duke@435 1898 // Continue in deoptimization handler
duke@435 1899 __ jmp(rdx);
duke@435 1900
duke@435 1901 __ bind(caller_not_deoptimized);
duke@435 1902 }
duke@435 1903
duke@435 1904 __ remove_activation(vtos, rdx, /* rdx result (retaddr) is not used */
duke@435 1905 /* throw_monitor_exception */ false,
duke@435 1906 /* install_monitor_exception */ false,
duke@435 1907 /* notify_jvmdi */ false);
duke@435 1908
duke@435 1909 // Finish with popframe handling
duke@435 1910 // A previous I2C followed by a deoptimization might have moved the
duke@435 1911 // outgoing arguments further up the stack. PopFrame expects the
duke@435 1912 // mutations to those outgoing arguments to be preserved and other
duke@435 1913 // constraints basically require this frame to look exactly as
duke@435 1914 // though it had previously invoked an interpreted activation with
duke@435 1915 // no space between the top of the expression stack (current
duke@435 1916 // last_sp) and the top of stack. Rather than force deopt to
duke@435 1917 // maintain this kind of invariant all the time we call a small
duke@435 1918 // fixup routine to move the mutated arguments onto the top of our
duke@435 1919 // expression stack if necessary.
never@739 1920 __ mov(c_rarg1, rsp);
never@739 1921 __ movptr(c_rarg2, Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize));
duke@435 1922 // PC must point into interpreter here
duke@435 1923 __ set_last_Java_frame(noreg, rbp, __ pc());
duke@435 1924 __ super_call_VM_leaf(CAST_FROM_FN_PTR(address, InterpreterRuntime::popframe_move_outgoing_args), r15_thread, c_rarg1, c_rarg2);
duke@435 1925 __ reset_last_Java_frame(true, true);
duke@435 1926 // Restore the last_sp and null it out
never@739 1927 __ movptr(rsp, Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize));
never@739 1928 __ movptr(Address(rbp, frame::interpreter_frame_last_sp_offset * wordSize), (int32_t)NULL_WORD);
duke@435 1929
duke@435 1930 __ restore_bcp(); // XXX do we need this?
duke@435 1931 __ restore_locals(); // XXX do we need this?
duke@435 1932 // The method data pointer was incremented already during
duke@435 1933 // call profiling. We have to restore the mdp for the current bcp.
duke@435 1934 if (ProfileInterpreter) {
duke@435 1935 __ set_method_data_pointer_for_bcp();
duke@435 1936 }
duke@435 1937
duke@435 1938 // Clear the popframe condition flag
duke@435 1939 __ movl(Address(r15_thread, JavaThread::popframe_condition_offset()),
duke@435 1940 JavaThread::popframe_inactive);
duke@435 1941
sspitsyn@5496 1942 #if INCLUDE_JVMTI
sspitsyn@5496 1943 if (EnableInvokeDynamic) {
sspitsyn@5496 1944 Label L_done;
sspitsyn@5496 1945 const Register local0 = r14;
sspitsyn@5496 1946
sspitsyn@5496 1947 __ cmpb(Address(r13, 0), Bytecodes::_invokestatic);
sspitsyn@5496 1948 __ jcc(Assembler::notEqual, L_done);
sspitsyn@5496 1949
sspitsyn@5496 1950 // The member name argument must be restored if _invokestatic is re-executed after a PopFrame call.
sspitsyn@5496 1951 // Detect such a case in the InterpreterRuntime function and return the member name argument, or NULL.
sspitsyn@5496 1952
sspitsyn@5496 1953 __ get_method(rdx);
sspitsyn@5496 1954 __ movptr(rax, Address(local0, 0));
sspitsyn@5496 1955 __ call_VM(rax, CAST_FROM_FN_PTR(address, InterpreterRuntime::member_name_arg_or_null), rax, rdx, r13);
sspitsyn@5496 1956
sspitsyn@5496 1957 __ testptr(rax, rax);
sspitsyn@5496 1958 __ jcc(Assembler::zero, L_done);
sspitsyn@5496 1959
sspitsyn@5496 1960 __ movptr(Address(rbx, 0), rax);
sspitsyn@5496 1961 __ bind(L_done);
sspitsyn@5496 1962 }
sspitsyn@5496 1963 #endif // INCLUDE_JVMTI
sspitsyn@5496 1964
duke@435 1965 __ dispatch_next(vtos);
duke@435 1966 // end of PopFrame support
duke@435 1967
duke@435 1968 Interpreter::_remove_activation_entry = __ pc();
duke@435 1969
duke@435 1970 // preserve exception over this code sequence
duke@435 1971 __ pop_ptr(rax);
never@739 1972 __ movptr(Address(r15_thread, JavaThread::vm_result_offset()), rax);
duke@435 1973 // remove the activation (without doing throws on illegalMonitorExceptions)
duke@435 1974 __ remove_activation(vtos, rdx, false, true, false);
duke@435 1975 // restore exception
coleenp@4037 1976 __ get_vm_result(rax, r15_thread);
duke@435 1977
duke@435 1978 // In between activations - previous activation type unknown yet
duke@435 1979 // compute continuation point - the continuation point expects the
duke@435 1980 // following registers set up:
duke@435 1981 //
duke@435 1982 // rax: exception
duke@435 1983 // rdx: return address/pc that threw exception
duke@435 1984 // rsp: expression stack of caller
duke@435 1985 // rbp: ebp of caller
never@739 1986 __ push(rax); // save exception
never@739 1987 __ push(rdx); // save return address
duke@435 1988 __ super_call_VM_leaf(CAST_FROM_FN_PTR(address,
duke@435 1989 SharedRuntime::exception_handler_for_return_address),
twisti@1730 1990 r15_thread, rdx);
never@739 1991 __ mov(rbx, rax); // save exception handler
never@739 1992 __ pop(rdx); // restore return address
never@739 1993 __ pop(rax); // restore exception
duke@435 1994 // Note that an "issuing PC" is actually the next PC after the call
duke@435 1995 __ jmp(rbx); // jump to exception
duke@435 1996 // handler of caller
duke@435 1997 }
duke@435 1998
duke@435 1999
duke@435 2000 //
duke@435 2001 // JVMTI ForceEarlyReturn support
duke@435 2002 //
duke@435 2003 address TemplateInterpreterGenerator::generate_earlyret_entry_for(TosState state) {
duke@435 2004 address entry = __ pc();
duke@435 2005
duke@435 2006 __ restore_bcp();
duke@435 2007 __ restore_locals();
duke@435 2008 __ empty_expression_stack();
duke@435 2009 __ load_earlyret_value(state);
duke@435 2010
never@739 2011 __ movptr(rdx, Address(r15_thread, JavaThread::jvmti_thread_state_offset()));
duke@435 2012 Address cond_addr(rdx, JvmtiThreadState::earlyret_state_offset());
duke@435 2013
duke@435 2014 // Clear the earlyret state
duke@435 2015 __ movl(cond_addr, JvmtiThreadState::earlyret_inactive);
duke@435 2016
duke@435 2017 __ remove_activation(state, rsi,
duke@435 2018 false, /* throw_monitor_exception */
duke@435 2019 false, /* install_monitor_exception */
duke@435 2020 true); /* notify_jvmdi */
duke@435 2021 __ jmp(rsi);
duke@435 2022
duke@435 2023 return entry;
duke@435 2024 } // end of ForceEarlyReturn support
duke@435 2025
duke@435 2026
duke@435 2027 //-----------------------------------------------------------------------------
duke@435 2028 // Helper for vtos entry point generation
duke@435 2029
duke@435 2030 void TemplateInterpreterGenerator::set_vtos_entry_points(Template* t,
duke@435 2031 address& bep,
duke@435 2032 address& cep,
duke@435 2033 address& sep,
duke@435 2034 address& aep,
duke@435 2035 address& iep,
duke@435 2036 address& lep,
duke@435 2037 address& fep,
duke@435 2038 address& dep,
duke@435 2039 address& vep) {
duke@435 2040 assert(t->is_valid() && t->tos_in() == vtos, "illegal template");
duke@435 2041 Label L;
duke@435 2042 aep = __ pc(); __ push_ptr(); __ jmp(L);
duke@435 2043 fep = __ pc(); __ push_f(); __ jmp(L);
duke@435 2044 dep = __ pc(); __ push_d(); __ jmp(L);
duke@435 2045 lep = __ pc(); __ push_l(); __ jmp(L);
duke@435 2046 bep = cep = sep =
duke@435 2047 iep = __ pc(); __ push_i();
duke@435 2048 vep = __ pc();
duke@435 2049 __ bind(L);
duke@435 2050 generate_and_dispatch(t);
duke@435 2051 }
duke@435 2052
duke@435 2053
duke@435 2054 //-----------------------------------------------------------------------------
duke@435 2055 // Generation of individual instructions
duke@435 2056
duke@435 2057 // helpers for generate_and_dispatch
duke@435 2058
duke@435 2059
duke@435 2060 InterpreterGenerator::InterpreterGenerator(StubQueue* code)
duke@435 2061 : TemplateInterpreterGenerator(code) {
duke@435 2062 generate_all(); // down here so it can be "virtual"
duke@435 2063 }
duke@435 2064
duke@435 2065 //-----------------------------------------------------------------------------
duke@435 2066
duke@435 2067 // Non-product code
duke@435 2068 #ifndef PRODUCT
duke@435 2069 address TemplateInterpreterGenerator::generate_trace_code(TosState state) {
duke@435 2070 address entry = __ pc();
duke@435 2071
duke@435 2072 __ push(state);
never@739 2073 __ push(c_rarg0);
never@739 2074 __ push(c_rarg1);
never@739 2075 __ push(c_rarg2);
never@739 2076 __ push(c_rarg3);
never@739 2077 __ mov(c_rarg2, rax); // Pass itos
duke@435 2078 #ifdef _WIN64
duke@435 2079 __ movflt(xmm3, xmm0); // Pass ftos
duke@435 2080 #endif
duke@435 2081 __ call_VM(noreg,
duke@435 2082 CAST_FROM_FN_PTR(address, SharedRuntime::trace_bytecode),
duke@435 2083 c_rarg1, c_rarg2, c_rarg3);
never@739 2084 __ pop(c_rarg3);
never@739 2085 __ pop(c_rarg2);
never@739 2086 __ pop(c_rarg1);
never@739 2087 __ pop(c_rarg0);
duke@435 2088 __ pop(state);
duke@435 2089 __ ret(0); // return from result handler
duke@435 2090
duke@435 2091 return entry;
duke@435 2092 }
duke@435 2093
duke@435 2094 void TemplateInterpreterGenerator::count_bytecode() {
duke@435 2095 __ incrementl(ExternalAddress((address) &BytecodeCounter::_counter_value));
duke@435 2096 }
duke@435 2097
duke@435 2098 void TemplateInterpreterGenerator::histogram_bytecode(Template* t) {
duke@435 2099 __ incrementl(ExternalAddress((address) &BytecodeHistogram::_counters[t->bytecode()]));
duke@435 2100 }
duke@435 2101
duke@435 2102 void TemplateInterpreterGenerator::histogram_bytecode_pair(Template* t) {
duke@435 2103 __ mov32(rbx, ExternalAddress((address) &BytecodePairHistogram::_index));
duke@435 2104 __ shrl(rbx, BytecodePairHistogram::log2_number_of_codes);
duke@435 2105 __ orl(rbx,
duke@435 2106 ((int) t->bytecode()) <<
duke@435 2107 BytecodePairHistogram::log2_number_of_codes);
duke@435 2108 __ mov32(ExternalAddress((address) &BytecodePairHistogram::_index), rbx);
duke@435 2109 __ lea(rscratch1, ExternalAddress((address) BytecodePairHistogram::_counters));
duke@435 2110 __ incrementl(Address(rscratch1, rbx, Address::times_4));
duke@435 2111 }
duke@435 2112
duke@435 2113
duke@435 2114 void TemplateInterpreterGenerator::trace_bytecode(Template* t) {
duke@435 2115 // Call a little run-time stub to avoid blow-up for each bytecode.
duke@435 2116 // The run-time runtime saves the right registers, depending on
duke@435 2117 // the tosca in-state for the given template.
duke@435 2118
duke@435 2119 assert(Interpreter::trace_code(t->tos_in()) != NULL,
duke@435 2120 "entry must have been generated");
coleenp@2318 2121 __ mov(r12, rsp); // remember sp (can only use r12 if not using call_VM)
never@739 2122 __ andptr(rsp, -16); // align stack as required by ABI
duke@435 2123 __ call(RuntimeAddress(Interpreter::trace_code(t->tos_in())));
never@739 2124 __ mov(rsp, r12); // restore sp
coleenp@548 2125 __ reinit_heapbase();
duke@435 2126 }
duke@435 2127
duke@435 2128
duke@435 2129 void TemplateInterpreterGenerator::stop_interpreter_at() {
duke@435 2130 Label L;
duke@435 2131 __ cmp32(ExternalAddress((address) &BytecodeCounter::_counter_value),
duke@435 2132 StopInterpreterAt);
duke@435 2133 __ jcc(Assembler::notEqual, L);
duke@435 2134 __ int3();
duke@435 2135 __ bind(L);
duke@435 2136 }
duke@435 2137 #endif // !PRODUCT
never@739 2138 #endif // ! CC_INTERP

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