src/share/vm/runtime/vframeArray.cpp

Thu, 26 Sep 2013 10:25:02 -0400

author
hseigel
date
Thu, 26 Sep 2013 10:25:02 -0400
changeset 5784
190899198332
parent 4727
0094485b46c7
child 6680
78bbf4d43a14
permissions
-rw-r--r--

7195622: CheckUnhandledOops has limited usefulness now
Summary: Enable CHECK_UNHANDLED_OOPS in fastdebug builds across all supported platforms.
Reviewed-by: coleenp, hseigel, dholmes, stefank, twisti, ihse, rdurbin
Contributed-by: lois.foltan@oracle.com

duke@435 1 /*
hseigel@5784 2 * Copyright (c) 1997, 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"
stefank@2314 26 #include "classfile/vmSymbols.hpp"
twisti@3969 27 #include "interpreter/bytecode.hpp"
stefank@2314 28 #include "interpreter/interpreter.hpp"
stefank@2314 29 #include "memory/allocation.inline.hpp"
stefank@2314 30 #include "memory/resourceArea.hpp"
stefank@2314 31 #include "memory/universe.inline.hpp"
coleenp@4037 32 #include "oops/methodData.hpp"
stefank@2314 33 #include "oops/oop.inline.hpp"
stefank@2314 34 #include "prims/jvmtiThreadState.hpp"
stefank@2314 35 #include "runtime/handles.inline.hpp"
stefank@2314 36 #include "runtime/monitorChunk.hpp"
stefank@2314 37 #include "runtime/sharedRuntime.hpp"
stefank@2314 38 #include "runtime/vframe.hpp"
stefank@2314 39 #include "runtime/vframeArray.hpp"
stefank@2314 40 #include "runtime/vframe_hp.hpp"
stefank@2314 41 #include "utilities/events.hpp"
stefank@2314 42 #ifdef COMPILER2
stefank@2314 43 #include "opto/runtime.hpp"
stefank@2314 44 #endif
duke@435 45
duke@435 46
duke@435 47 int vframeArrayElement:: bci(void) const { return (_bci == SynchronizationEntryBCI ? 0 : _bci); }
duke@435 48
duke@435 49 void vframeArrayElement::free_monitors(JavaThread* jt) {
duke@435 50 if (_monitors != NULL) {
duke@435 51 MonitorChunk* chunk = _monitors;
duke@435 52 _monitors = NULL;
duke@435 53 jt->remove_monitor_chunk(chunk);
duke@435 54 delete chunk;
duke@435 55 }
duke@435 56 }
duke@435 57
duke@435 58 void vframeArrayElement::fill_in(compiledVFrame* vf) {
duke@435 59
duke@435 60 // Copy the information from the compiled vframe to the
duke@435 61 // interpreter frame we will be creating to replace vf
duke@435 62
duke@435 63 _method = vf->method();
duke@435 64 _bci = vf->raw_bci();
cfang@1335 65 _reexecute = vf->should_reexecute();
duke@435 66
duke@435 67 int index;
duke@435 68
duke@435 69 // Get the monitors off-stack
duke@435 70
duke@435 71 GrowableArray<MonitorInfo*>* list = vf->monitors();
duke@435 72 if (list->is_empty()) {
duke@435 73 _monitors = NULL;
duke@435 74 } else {
duke@435 75
duke@435 76 // Allocate monitor chunk
duke@435 77 _monitors = new MonitorChunk(list->length());
duke@435 78 vf->thread()->add_monitor_chunk(_monitors);
duke@435 79
duke@435 80 // Migrate the BasicLocks from the stack to the monitor chunk
duke@435 81 for (index = 0; index < list->length(); index++) {
duke@435 82 MonitorInfo* monitor = list->at(index);
kvn@1253 83 assert(!monitor->owner_is_scalar_replaced(), "object should be reallocated already");
duke@435 84 assert(monitor->owner() == NULL || (!monitor->owner()->is_unlocked() && !monitor->owner()->has_bias_pattern()), "object must be null or locked, and unbiased");
duke@435 85 BasicObjectLock* dest = _monitors->at(index);
duke@435 86 dest->set_obj(monitor->owner());
duke@435 87 monitor->lock()->move_to(monitor->owner(), dest->lock());
duke@435 88 }
duke@435 89 }
duke@435 90
duke@435 91 // Convert the vframe locals and expressions to off stack
duke@435 92 // values. Because we will not gc all oops can be converted to
duke@435 93 // intptr_t (i.e. a stack slot) and we are fine. This is
duke@435 94 // good since we are inside a HandleMark and the oops in our
duke@435 95 // collection would go away between packing them here and
duke@435 96 // unpacking them in unpack_on_stack.
duke@435 97
duke@435 98 // First the locals go off-stack
duke@435 99
duke@435 100 // FIXME this seems silly it creates a StackValueCollection
duke@435 101 // in order to get the size to then copy them and
duke@435 102 // convert the types to intptr_t size slots. Seems like it
duke@435 103 // could do it in place... Still uses less memory than the
duke@435 104 // old way though
duke@435 105
duke@435 106 StackValueCollection *locs = vf->locals();
duke@435 107 _locals = new StackValueCollection(locs->size());
duke@435 108 for(index = 0; index < locs->size(); index++) {
duke@435 109 StackValue* value = locs->at(index);
duke@435 110 switch(value->type()) {
duke@435 111 case T_OBJECT:
kvn@1253 112 assert(!value->obj_is_scalar_replaced(), "object should be reallocated already");
duke@435 113 // preserve object type
hseigel@5784 114 _locals->add( new StackValue(cast_from_oop<intptr_t>((value->get_obj()())), T_OBJECT ));
duke@435 115 break;
duke@435 116 case T_CONFLICT:
duke@435 117 // A dead local. Will be initialized to null/zero.
duke@435 118 _locals->add( new StackValue());
duke@435 119 break;
duke@435 120 case T_INT:
duke@435 121 _locals->add( new StackValue(value->get_int()));
duke@435 122 break;
duke@435 123 default:
duke@435 124 ShouldNotReachHere();
duke@435 125 }
duke@435 126 }
duke@435 127
duke@435 128 // Now the expressions off-stack
duke@435 129 // Same silliness as above
duke@435 130
duke@435 131 StackValueCollection *exprs = vf->expressions();
duke@435 132 _expressions = new StackValueCollection(exprs->size());
duke@435 133 for(index = 0; index < exprs->size(); index++) {
duke@435 134 StackValue* value = exprs->at(index);
duke@435 135 switch(value->type()) {
duke@435 136 case T_OBJECT:
kvn@1253 137 assert(!value->obj_is_scalar_replaced(), "object should be reallocated already");
duke@435 138 // preserve object type
hseigel@5784 139 _expressions->add( new StackValue(cast_from_oop<intptr_t>((value->get_obj()())), T_OBJECT ));
duke@435 140 break;
duke@435 141 case T_CONFLICT:
duke@435 142 // A dead stack element. Will be initialized to null/zero.
duke@435 143 // This can occur when the compiler emits a state in which stack
duke@435 144 // elements are known to be dead (because of an imminent exception).
duke@435 145 _expressions->add( new StackValue());
duke@435 146 break;
duke@435 147 case T_INT:
duke@435 148 _expressions->add( new StackValue(value->get_int()));
duke@435 149 break;
duke@435 150 default:
duke@435 151 ShouldNotReachHere();
duke@435 152 }
duke@435 153 }
duke@435 154 }
duke@435 155
duke@435 156 int unpack_counter = 0;
duke@435 157
never@2901 158 void vframeArrayElement::unpack_on_stack(int caller_actual_parameters,
never@2901 159 int callee_parameters,
duke@435 160 int callee_locals,
duke@435 161 frame* caller,
duke@435 162 bool is_top_frame,
roland@4727 163 bool is_bottom_frame,
duke@435 164 int exec_mode) {
duke@435 165 JavaThread* thread = (JavaThread*) Thread::current();
duke@435 166
duke@435 167 // Look at bci and decide on bcp and continuation pc
duke@435 168 address bcp;
duke@435 169 // C++ interpreter doesn't need a pc since it will figure out what to do when it
duke@435 170 // begins execution
duke@435 171 address pc;
cfang@1335 172 bool use_next_mdp = false; // true if we should use the mdp associated with the next bci
cfang@1335 173 // rather than the one associated with bcp
duke@435 174 if (raw_bci() == SynchronizationEntryBCI) {
duke@435 175 // We are deoptimizing while hanging in prologue code for synchronized method
duke@435 176 bcp = method()->bcp_from(0); // first byte code
duke@435 177 pc = Interpreter::deopt_entry(vtos, 0); // step = 0 since we don't skip current bytecode
cfang@1335 178 } else if (should_reexecute()) { //reexecute this bytecode
cfang@1335 179 assert(is_top_frame, "reexecute allowed only for the top frame");
cfang@1335 180 bcp = method()->bcp_from(bci());
cfang@1335 181 pc = Interpreter::deopt_reexecute_entry(method(), bcp);
duke@435 182 } else {
duke@435 183 bcp = method()->bcp_from(bci());
cfang@1335 184 pc = Interpreter::deopt_continue_after_entry(method(), bcp, callee_parameters, is_top_frame);
cfang@1335 185 use_next_mdp = true;
duke@435 186 }
duke@435 187 assert(Bytecodes::is_defined(*bcp), "must be a valid bytecode");
duke@435 188
duke@435 189 // Monitorenter and pending exceptions:
duke@435 190 //
duke@435 191 // For Compiler2, there should be no pending exception when deoptimizing at monitorenter
duke@435 192 // because there is no safepoint at the null pointer check (it is either handled explicitly
duke@435 193 // or prior to the monitorenter) and asynchronous exceptions are not made "pending" by the
duke@435 194 // runtime interface for the slow case (see JRT_ENTRY_FOR_MONITORENTER). If an asynchronous
duke@435 195 // exception was processed, the bytecode pointer would have to be extended one bytecode beyond
duke@435 196 // the monitorenter to place it in the proper exception range.
duke@435 197 //
duke@435 198 // For Compiler1, deoptimization can occur while throwing a NullPointerException at monitorenter,
duke@435 199 // in which case bcp should point to the monitorenter since it is within the exception's range.
duke@435 200
duke@435 201 assert(*bcp != Bytecodes::_monitorenter || is_top_frame, "a _monitorenter must be a top frame");
iveresov@2169 202 assert(thread->deopt_nmethod() != NULL, "nmethod should be known");
iveresov@2169 203 guarantee(!(thread->deopt_nmethod()->is_compiled_by_c2() &&
iveresov@2169 204 *bcp == Bytecodes::_monitorenter &&
iveresov@2169 205 exec_mode == Deoptimization::Unpack_exception),
iveresov@2169 206 "shouldn't get exception during monitorenter");
duke@435 207
duke@435 208 int popframe_preserved_args_size_in_bytes = 0;
duke@435 209 int popframe_preserved_args_size_in_words = 0;
duke@435 210 if (is_top_frame) {
kvn@1690 211 JvmtiThreadState *state = thread->jvmti_thread_state();
duke@435 212 if (JvmtiExport::can_pop_frame() &&
duke@435 213 (thread->has_pending_popframe() || thread->popframe_forcing_deopt_reexecution())) {
duke@435 214 if (thread->has_pending_popframe()) {
duke@435 215 // Pop top frame after deoptimization
duke@435 216 #ifndef CC_INTERP
duke@435 217 pc = Interpreter::remove_activation_preserving_args_entry();
duke@435 218 #else
duke@435 219 // Do an uncommon trap type entry. c++ interpreter will know
duke@435 220 // to pop frame and preserve the args
duke@435 221 pc = Interpreter::deopt_entry(vtos, 0);
duke@435 222 use_next_mdp = false;
duke@435 223 #endif
duke@435 224 } else {
duke@435 225 // Reexecute invoke in top frame
duke@435 226 pc = Interpreter::deopt_entry(vtos, 0);
duke@435 227 use_next_mdp = false;
duke@435 228 popframe_preserved_args_size_in_bytes = in_bytes(thread->popframe_preserved_args_size());
duke@435 229 // Note: the PopFrame-related extension of the expression stack size is done in
duke@435 230 // Deoptimization::fetch_unroll_info_helper
duke@435 231 popframe_preserved_args_size_in_words = in_words(thread->popframe_preserved_args_size_in_words());
duke@435 232 }
duke@435 233 } else if (JvmtiExport::can_force_early_return() && state != NULL && state->is_earlyret_pending()) {
duke@435 234 // Force early return from top frame after deoptimization
duke@435 235 #ifndef CC_INTERP
duke@435 236 pc = Interpreter::remove_activation_early_entry(state->earlyret_tos());
duke@435 237 #endif
duke@435 238 } else {
duke@435 239 // Possibly override the previous pc computation of the top (youngest) frame
duke@435 240 switch (exec_mode) {
duke@435 241 case Deoptimization::Unpack_deopt:
duke@435 242 // use what we've got
duke@435 243 break;
duke@435 244 case Deoptimization::Unpack_exception:
duke@435 245 // exception is pending
twisti@1730 246 pc = SharedRuntime::raw_exception_handler_for_return_address(thread, pc);
duke@435 247 // [phh] We're going to end up in some handler or other, so it doesn't
duke@435 248 // matter what mdp we point to. See exception_handler_for_exception()
duke@435 249 // in interpreterRuntime.cpp.
duke@435 250 break;
duke@435 251 case Deoptimization::Unpack_uncommon_trap:
duke@435 252 case Deoptimization::Unpack_reexecute:
duke@435 253 // redo last byte code
duke@435 254 pc = Interpreter::deopt_entry(vtos, 0);
duke@435 255 use_next_mdp = false;
duke@435 256 break;
duke@435 257 default:
duke@435 258 ShouldNotReachHere();
duke@435 259 }
duke@435 260 }
duke@435 261 }
duke@435 262
duke@435 263 // Setup the interpreter frame
duke@435 264
duke@435 265 assert(method() != NULL, "method must exist");
duke@435 266 int temps = expressions()->size();
duke@435 267
duke@435 268 int locks = monitors() == NULL ? 0 : monitors()->number_of_monitors();
duke@435 269
duke@435 270 Interpreter::layout_activation(method(),
duke@435 271 temps + callee_parameters,
duke@435 272 popframe_preserved_args_size_in_words,
duke@435 273 locks,
never@2901 274 caller_actual_parameters,
duke@435 275 callee_parameters,
duke@435 276 callee_locals,
duke@435 277 caller,
duke@435 278 iframe(),
roland@4727 279 is_top_frame,
roland@4727 280 is_bottom_frame);
duke@435 281
duke@435 282 // Update the pc in the frame object and overwrite the temporary pc
duke@435 283 // we placed in the skeletal frame now that we finally know the
duke@435 284 // exact interpreter address we should use.
duke@435 285
duke@435 286 _frame.patch_pc(thread, pc);
duke@435 287
duke@435 288 assert (!method()->is_synchronized() || locks > 0, "synchronized methods must have monitors");
duke@435 289
duke@435 290 BasicObjectLock* top = iframe()->interpreter_frame_monitor_begin();
duke@435 291 for (int index = 0; index < locks; index++) {
duke@435 292 top = iframe()->previous_monitor_in_interpreter_frame(top);
duke@435 293 BasicObjectLock* src = _monitors->at(index);
duke@435 294 top->set_obj(src->obj());
duke@435 295 src->lock()->move_to(src->obj(), top->lock());
duke@435 296 }
duke@435 297 if (ProfileInterpreter) {
duke@435 298 iframe()->interpreter_frame_set_mdx(0); // clear out the mdp.
duke@435 299 }
duke@435 300 iframe()->interpreter_frame_set_bcx((intptr_t)bcp); // cannot use bcp because frame is not initialized yet
duke@435 301 if (ProfileInterpreter) {
coleenp@4037 302 MethodData* mdo = method()->method_data();
duke@435 303 if (mdo != NULL) {
duke@435 304 int bci = iframe()->interpreter_frame_bci();
duke@435 305 if (use_next_mdp) ++bci;
duke@435 306 address mdp = mdo->bci_to_dp(bci);
duke@435 307 iframe()->interpreter_frame_set_mdp(mdp);
duke@435 308 }
duke@435 309 }
duke@435 310
duke@435 311 // Unpack expression stack
duke@435 312 // If this is an intermediate frame (i.e. not top frame) then this
duke@435 313 // only unpacks the part of the expression stack not used by callee
duke@435 314 // as parameters. The callee parameters are unpacked as part of the
duke@435 315 // callee locals.
duke@435 316 int i;
duke@435 317 for(i = 0; i < expressions()->size(); i++) {
duke@435 318 StackValue *value = expressions()->at(i);
duke@435 319 intptr_t* addr = iframe()->interpreter_frame_expression_stack_at(i);
duke@435 320 switch(value->type()) {
duke@435 321 case T_INT:
duke@435 322 *addr = value->get_int();
duke@435 323 break;
duke@435 324 case T_OBJECT:
duke@435 325 *addr = value->get_int(T_OBJECT);
duke@435 326 break;
duke@435 327 case T_CONFLICT:
duke@435 328 // A dead stack slot. Initialize to null in case it is an oop.
duke@435 329 *addr = NULL_WORD;
duke@435 330 break;
duke@435 331 default:
duke@435 332 ShouldNotReachHere();
duke@435 333 }
duke@435 334 }
duke@435 335
duke@435 336
duke@435 337 // Unpack the locals
duke@435 338 for(i = 0; i < locals()->size(); i++) {
duke@435 339 StackValue *value = locals()->at(i);
duke@435 340 intptr_t* addr = iframe()->interpreter_frame_local_at(i);
duke@435 341 switch(value->type()) {
duke@435 342 case T_INT:
duke@435 343 *addr = value->get_int();
duke@435 344 break;
duke@435 345 case T_OBJECT:
duke@435 346 *addr = value->get_int(T_OBJECT);
duke@435 347 break;
duke@435 348 case T_CONFLICT:
duke@435 349 // A dead location. If it is an oop then we need a NULL to prevent GC from following it
duke@435 350 *addr = NULL_WORD;
duke@435 351 break;
duke@435 352 default:
duke@435 353 ShouldNotReachHere();
duke@435 354 }
duke@435 355 }
duke@435 356
duke@435 357 if (is_top_frame && JvmtiExport::can_pop_frame() && thread->popframe_forcing_deopt_reexecution()) {
duke@435 358 // An interpreted frame was popped but it returns to a deoptimized
duke@435 359 // frame. The incoming arguments to the interpreted activation
duke@435 360 // were preserved in thread-local storage by the
duke@435 361 // remove_activation_preserving_args_entry in the interpreter; now
duke@435 362 // we put them back into the just-unpacked interpreter frame.
duke@435 363 // Note that this assumes that the locals arena grows toward lower
duke@435 364 // addresses.
duke@435 365 if (popframe_preserved_args_size_in_words != 0) {
duke@435 366 void* saved_args = thread->popframe_preserved_args();
duke@435 367 assert(saved_args != NULL, "must have been saved by interpreter");
duke@435 368 #ifdef ASSERT
duke@435 369 assert(popframe_preserved_args_size_in_words <=
twisti@1861 370 iframe()->interpreter_frame_expression_stack_size()*Interpreter::stackElementWords,
duke@435 371 "expression stack size should have been extended");
duke@435 372 #endif // ASSERT
duke@435 373 int top_element = iframe()->interpreter_frame_expression_stack_size()-1;
duke@435 374 intptr_t* base;
duke@435 375 if (frame::interpreter_frame_expression_stack_direction() < 0) {
duke@435 376 base = iframe()->interpreter_frame_expression_stack_at(top_element);
duke@435 377 } else {
duke@435 378 base = iframe()->interpreter_frame_expression_stack();
duke@435 379 }
kvn@1958 380 Copy::conjoint_jbytes(saved_args,
kvn@1958 381 base,
kvn@1958 382 popframe_preserved_args_size_in_bytes);
duke@435 383 thread->popframe_free_preserved_args();
duke@435 384 }
duke@435 385 }
duke@435 386
duke@435 387 #ifndef PRODUCT
duke@435 388 if (TraceDeoptimization && Verbose) {
duke@435 389 ttyLocker ttyl;
duke@435 390 tty->print_cr("[%d Interpreted Frame]", ++unpack_counter);
duke@435 391 iframe()->print_on(tty);
duke@435 392 RegisterMap map(thread);
duke@435 393 vframe* f = vframe::new_vframe(iframe(), &map, thread);
duke@435 394 f->print();
duke@435 395
duke@435 396 tty->print_cr("locals size %d", locals()->size());
duke@435 397 tty->print_cr("expression size %d", expressions()->size());
duke@435 398
duke@435 399 method()->print_value();
duke@435 400 tty->cr();
duke@435 401 // method()->print_codes();
duke@435 402 } else if (TraceDeoptimization) {
duke@435 403 tty->print(" ");
duke@435 404 method()->print_value();
never@2462 405 Bytecodes::Code code = Bytecodes::java_code_at(method(), bcp);
duke@435 406 int bci = method()->bci_from(bcp);
duke@435 407 tty->print(" - %s", Bytecodes::name(code));
duke@435 408 tty->print(" @ bci %d ", bci);
duke@435 409 tty->print_cr("sp = " PTR_FORMAT, iframe()->sp());
duke@435 410 }
duke@435 411 #endif // PRODUCT
duke@435 412
duke@435 413 // The expression stack and locals are in the resource area don't leave
duke@435 414 // a dangling pointer in the vframeArray we leave around for debug
duke@435 415 // purposes
duke@435 416
duke@435 417 _locals = _expressions = NULL;
duke@435 418
duke@435 419 }
duke@435 420
never@2901 421 int vframeArrayElement::on_stack_size(int caller_actual_parameters,
never@2901 422 int callee_parameters,
duke@435 423 int callee_locals,
duke@435 424 bool is_top_frame,
roland@4727 425 bool is_bottom_frame,
duke@435 426 int popframe_extra_stack_expression_els) const {
duke@435 427 assert(method()->max_locals() == locals()->size(), "just checking");
duke@435 428 int locks = monitors() == NULL ? 0 : monitors()->number_of_monitors();
duke@435 429 int temps = expressions()->size();
duke@435 430 return Interpreter::size_activation(method(),
duke@435 431 temps + callee_parameters,
duke@435 432 popframe_extra_stack_expression_els,
duke@435 433 locks,
never@2901 434 caller_actual_parameters,
duke@435 435 callee_parameters,
duke@435 436 callee_locals,
roland@4727 437 is_top_frame,
roland@4727 438 is_bottom_frame);
duke@435 439 }
duke@435 440
duke@435 441
duke@435 442
duke@435 443 vframeArray* vframeArray::allocate(JavaThread* thread, int frame_size, GrowableArray<compiledVFrame*>* chunk,
duke@435 444 RegisterMap *reg_map, frame sender, frame caller, frame self) {
duke@435 445
duke@435 446 // Allocate the vframeArray
duke@435 447 vframeArray * result = (vframeArray*) AllocateHeap(sizeof(vframeArray) + // fixed part
duke@435 448 sizeof(vframeArrayElement) * (chunk->length() - 1), // variable part
zgu@3900 449 mtCompiler);
duke@435 450 result->_frames = chunk->length();
duke@435 451 result->_owner_thread = thread;
duke@435 452 result->_sender = sender;
duke@435 453 result->_caller = caller;
duke@435 454 result->_original = self;
duke@435 455 result->set_unroll_block(NULL); // initialize it
duke@435 456 result->fill_in(thread, frame_size, chunk, reg_map);
duke@435 457 return result;
duke@435 458 }
duke@435 459
duke@435 460 void vframeArray::fill_in(JavaThread* thread,
duke@435 461 int frame_size,
duke@435 462 GrowableArray<compiledVFrame*>* chunk,
duke@435 463 const RegisterMap *reg_map) {
duke@435 464 // Set owner first, it is used when adding monitor chunks
duke@435 465
duke@435 466 _frame_size = frame_size;
duke@435 467 for(int i = 0; i < chunk->length(); i++) {
duke@435 468 element(i)->fill_in(chunk->at(i));
duke@435 469 }
duke@435 470
duke@435 471 // Copy registers for callee-saved registers
duke@435 472 if (reg_map != NULL) {
duke@435 473 for(int i = 0; i < RegisterMap::reg_count; i++) {
duke@435 474 #ifdef AMD64
duke@435 475 // The register map has one entry for every int (32-bit value), so
duke@435 476 // 64-bit physical registers have two entries in the map, one for
duke@435 477 // each half. Ignore the high halves of 64-bit registers, just like
duke@435 478 // frame::oopmapreg_to_location does.
duke@435 479 //
duke@435 480 // [phh] FIXME: this is a temporary hack! This code *should* work
duke@435 481 // correctly w/o this hack, possibly by changing RegisterMap::pd_location
duke@435 482 // in frame_amd64.cpp and the values of the phantom high half registers
duke@435 483 // in amd64.ad.
duke@435 484 // if (VMReg::Name(i) < SharedInfo::stack0 && is_even(i)) {
duke@435 485 intptr_t* src = (intptr_t*) reg_map->location(VMRegImpl::as_VMReg(i));
duke@435 486 _callee_registers[i] = src != NULL ? *src : NULL_WORD;
duke@435 487 // } else {
duke@435 488 // jint* src = (jint*) reg_map->location(VMReg::Name(i));
duke@435 489 // _callee_registers[i] = src != NULL ? *src : NULL_WORD;
duke@435 490 // }
duke@435 491 #else
duke@435 492 jint* src = (jint*) reg_map->location(VMRegImpl::as_VMReg(i));
duke@435 493 _callee_registers[i] = src != NULL ? *src : NULL_WORD;
duke@435 494 #endif
duke@435 495 if (src == NULL) {
duke@435 496 set_location_valid(i, false);
duke@435 497 } else {
duke@435 498 set_location_valid(i, true);
duke@435 499 jint* dst = (jint*) register_location(i);
duke@435 500 *dst = *src;
duke@435 501 }
duke@435 502 }
duke@435 503 }
duke@435 504 }
duke@435 505
never@2901 506 void vframeArray::unpack_to_stack(frame &unpack_frame, int exec_mode, int caller_actual_parameters) {
duke@435 507 // stack picture
duke@435 508 // unpack_frame
duke@435 509 // [new interpreter frames ] (frames are skeletal but walkable)
duke@435 510 // caller_frame
duke@435 511 //
duke@435 512 // This routine fills in the missing data for the skeletal interpreter frames
duke@435 513 // in the above picture.
duke@435 514
duke@435 515 // Find the skeletal interpreter frames to unpack into
twisti@3969 516 JavaThread* THREAD = JavaThread::current();
twisti@3969 517 RegisterMap map(THREAD, false);
duke@435 518 // Get the youngest frame we will unpack (last to be unpacked)
duke@435 519 frame me = unpack_frame.sender(&map);
duke@435 520 int index;
duke@435 521 for (index = 0; index < frames(); index++ ) {
duke@435 522 *element(index)->iframe() = me;
duke@435 523 // Get the caller frame (possibly skeletal)
duke@435 524 me = me.sender(&map);
duke@435 525 }
duke@435 526
twisti@3969 527 // Do the unpacking of interpreter frames; the frame at index 0 represents the top activation, so it has no callee
twisti@3969 528 // Unpack the frames from the oldest (frames() -1) to the youngest (0)
roland@4727 529 frame* caller_frame = &me;
duke@435 530 for (index = frames() - 1; index >= 0 ; index--) {
twisti@3969 531 vframeArrayElement* elem = element(index); // caller
twisti@3969 532 int callee_parameters, callee_locals;
twisti@3969 533 if (index == 0) {
twisti@3969 534 callee_parameters = callee_locals = 0;
twisti@3969 535 } else {
twisti@3969 536 methodHandle caller = elem->method();
twisti@3969 537 methodHandle callee = element(index - 1)->method();
twisti@3969 538 Bytecode_invoke inv(caller, elem->bci());
twisti@3969 539 // invokedynamic instructions don't have a class but obviously don't have a MemberName appendix.
twisti@3969 540 // NOTE: Use machinery here that avoids resolving of any kind.
twisti@3969 541 const bool has_member_arg =
twisti@3969 542 !inv.is_invokedynamic() && MethodHandles::has_member_arg(inv.klass(), inv.name());
twisti@3969 543 callee_parameters = callee->size_of_parameters() + (has_member_arg ? 1 : 0);
twisti@3969 544 callee_locals = callee->max_locals();
twisti@3969 545 }
twisti@3969 546 elem->unpack_on_stack(caller_actual_parameters,
twisti@3969 547 callee_parameters,
twisti@3969 548 callee_locals,
roland@4727 549 caller_frame,
twisti@3969 550 index == 0,
roland@4727 551 index == frames() - 1,
twisti@3969 552 exec_mode);
duke@435 553 if (index == frames() - 1) {
twisti@3969 554 Deoptimization::unwind_callee_save_values(elem->iframe(), this);
duke@435 555 }
roland@4727 556 caller_frame = elem->iframe();
never@2901 557 caller_actual_parameters = callee_parameters;
duke@435 558 }
duke@435 559 deallocate_monitor_chunks();
duke@435 560 }
duke@435 561
duke@435 562 void vframeArray::deallocate_monitor_chunks() {
duke@435 563 JavaThread* jt = JavaThread::current();
duke@435 564 for (int index = 0; index < frames(); index++ ) {
duke@435 565 element(index)->free_monitors(jt);
duke@435 566 }
duke@435 567 }
duke@435 568
duke@435 569 #ifndef PRODUCT
duke@435 570
duke@435 571 bool vframeArray::structural_compare(JavaThread* thread, GrowableArray<compiledVFrame*>* chunk) {
duke@435 572 if (owner_thread() != thread) return false;
duke@435 573 int index = 0;
duke@435 574 #if 0 // FIXME can't do this comparison
duke@435 575
duke@435 576 // Compare only within vframe array.
duke@435 577 for (deoptimizedVFrame* vf = deoptimizedVFrame::cast(vframe_at(first_index())); vf; vf = vf->deoptimized_sender_or_null()) {
duke@435 578 if (index >= chunk->length() || !vf->structural_compare(chunk->at(index))) return false;
duke@435 579 index++;
duke@435 580 }
duke@435 581 if (index != chunk->length()) return false;
duke@435 582 #endif
duke@435 583
duke@435 584 return true;
duke@435 585 }
duke@435 586
duke@435 587 #endif
duke@435 588
duke@435 589 address vframeArray::register_location(int i) const {
duke@435 590 assert(0 <= i && i < RegisterMap::reg_count, "index out of bounds");
duke@435 591 return (address) & _callee_registers[i];
duke@435 592 }
duke@435 593
duke@435 594
duke@435 595 #ifndef PRODUCT
duke@435 596
duke@435 597 // Printing
duke@435 598
duke@435 599 // Note: we cannot have print_on as const, as we allocate inside the method
duke@435 600 void vframeArray::print_on_2(outputStream* st) {
duke@435 601 st->print_cr(" - sp: " INTPTR_FORMAT, sp());
duke@435 602 st->print(" - thread: ");
duke@435 603 Thread::current()->print();
duke@435 604 st->print_cr(" - frame size: %d", frame_size());
duke@435 605 for (int index = 0; index < frames() ; index++ ) {
duke@435 606 element(index)->print(st);
duke@435 607 }
duke@435 608 }
duke@435 609
duke@435 610 void vframeArrayElement::print(outputStream* st) {
kvn@1690 611 st->print_cr(" - interpreter_frame -> sp: " INTPTR_FORMAT, iframe()->sp());
duke@435 612 }
duke@435 613
duke@435 614 void vframeArray::print_value_on(outputStream* st) const {
duke@435 615 st->print_cr("vframeArray [%d] ", frames());
duke@435 616 }
duke@435 617
duke@435 618
duke@435 619 #endif

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