src/share/vm/runtime/frame.cpp

Thu, 09 Dec 2010 15:04:26 -0500

author
kamg
date
Thu, 09 Dec 2010 15:04:26 -0500
changeset 2361
09b4dd4f152b
parent 2314
f95d63e2154a
child 2365
54f5dd2aa1d9
permissions
-rw-r--r--

7004582: Add GetThisObject() function to JVMTI 1.2
Summary: Add 'GetThisObject' function
Reviewed-by: never, coleenp

duke@435 1 /*
trims@1907 2 * Copyright (c) 1997, 2010, 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 "gc_interface/collectedHeap.inline.hpp"
stefank@2314 27 #include "interpreter/interpreter.hpp"
stefank@2314 28 #include "interpreter/oopMapCache.hpp"
stefank@2314 29 #include "memory/resourceArea.hpp"
stefank@2314 30 #include "memory/universe.inline.hpp"
stefank@2314 31 #include "oops/markOop.hpp"
stefank@2314 32 #include "oops/methodDataOop.hpp"
stefank@2314 33 #include "oops/methodOop.hpp"
stefank@2314 34 #include "oops/oop.inline.hpp"
stefank@2314 35 #include "oops/oop.inline2.hpp"
stefank@2314 36 #include "runtime/frame.inline.hpp"
stefank@2314 37 #include "runtime/handles.inline.hpp"
stefank@2314 38 #include "runtime/javaCalls.hpp"
stefank@2314 39 #include "runtime/monitorChunk.hpp"
stefank@2314 40 #include "runtime/sharedRuntime.hpp"
stefank@2314 41 #include "runtime/signature.hpp"
stefank@2314 42 #include "runtime/stubCodeGenerator.hpp"
stefank@2314 43 #include "runtime/stubRoutines.hpp"
stefank@2314 44 #ifdef TARGET_ARCH_x86
stefank@2314 45 # include "nativeInst_x86.hpp"
stefank@2314 46 #endif
stefank@2314 47 #ifdef TARGET_ARCH_sparc
stefank@2314 48 # include "nativeInst_sparc.hpp"
stefank@2314 49 #endif
stefank@2314 50 #ifdef TARGET_ARCH_zero
stefank@2314 51 # include "nativeInst_zero.hpp"
stefank@2314 52 #endif
duke@435 53
duke@435 54 RegisterMap::RegisterMap(JavaThread *thread, bool update_map) {
duke@435 55 _thread = thread;
duke@435 56 _update_map = update_map;
duke@435 57 clear();
duke@435 58 debug_only(_update_for_id = NULL;)
duke@435 59 #ifndef PRODUCT
duke@435 60 for (int i = 0; i < reg_count ; i++ ) _location[i] = NULL;
duke@435 61 #endif /* PRODUCT */
duke@435 62 }
duke@435 63
duke@435 64 RegisterMap::RegisterMap(const RegisterMap* map) {
duke@435 65 assert(map != this, "bad initialization parameter");
duke@435 66 assert(map != NULL, "RegisterMap must be present");
duke@435 67 _thread = map->thread();
duke@435 68 _update_map = map->update_map();
duke@435 69 _include_argument_oops = map->include_argument_oops();
duke@435 70 debug_only(_update_for_id = map->_update_for_id;)
duke@435 71 pd_initialize_from(map);
duke@435 72 if (update_map()) {
duke@435 73 for(int i = 0; i < location_valid_size; i++) {
duke@435 74 LocationValidType bits = !update_map() ? 0 : map->_location_valid[i];
duke@435 75 _location_valid[i] = bits;
duke@435 76 // for whichever bits are set, pull in the corresponding map->_location
duke@435 77 int j = i*location_valid_type_size;
duke@435 78 while (bits != 0) {
duke@435 79 if ((bits & 1) != 0) {
duke@435 80 assert(0 <= j && j < reg_count, "range check");
duke@435 81 _location[j] = map->_location[j];
duke@435 82 }
duke@435 83 bits >>= 1;
duke@435 84 j += 1;
duke@435 85 }
duke@435 86 }
duke@435 87 }
duke@435 88 }
duke@435 89
duke@435 90 void RegisterMap::clear() {
duke@435 91 set_include_argument_oops(true);
duke@435 92 if (_update_map) {
duke@435 93 for(int i = 0; i < location_valid_size; i++) {
duke@435 94 _location_valid[i] = 0;
duke@435 95 }
duke@435 96 pd_clear();
duke@435 97 } else {
duke@435 98 pd_initialize();
duke@435 99 }
duke@435 100 }
duke@435 101
duke@435 102 #ifndef PRODUCT
duke@435 103
duke@435 104 void RegisterMap::print_on(outputStream* st) const {
duke@435 105 st->print_cr("Register map");
duke@435 106 for(int i = 0; i < reg_count; i++) {
duke@435 107
duke@435 108 VMReg r = VMRegImpl::as_VMReg(i);
duke@435 109 intptr_t* src = (intptr_t*) location(r);
duke@435 110 if (src != NULL) {
duke@435 111
never@852 112 r->print_on(st);
never@852 113 st->print(" [" INTPTR_FORMAT "] = ", src);
duke@435 114 if (((uintptr_t)src & (sizeof(*src)-1)) != 0) {
never@852 115 st->print_cr("<misaligned>");
duke@435 116 } else {
never@852 117 st->print_cr(INTPTR_FORMAT, *src);
duke@435 118 }
duke@435 119 }
duke@435 120 }
duke@435 121 }
duke@435 122
duke@435 123 void RegisterMap::print() const {
duke@435 124 print_on(tty);
duke@435 125 }
duke@435 126
duke@435 127 #endif
duke@435 128 // This returns the pc that if you were in the debugger you'd see. Not
duke@435 129 // the idealized value in the frame object. This undoes the magic conversion
duke@435 130 // that happens for deoptimized frames. In addition it makes the value the
duke@435 131 // hardware would want to see in the native frame. The only user (at this point)
duke@435 132 // is deoptimization. It likely no one else should ever use it.
duke@435 133
duke@435 134 address frame::raw_pc() const {
duke@435 135 if (is_deoptimized_frame()) {
twisti@1639 136 nmethod* nm = cb()->as_nmethod_or_null();
twisti@1639 137 if (nm->is_method_handle_return(pc()))
twisti@1639 138 return nm->deopt_mh_handler_begin() - pc_return_offset;
twisti@1639 139 else
twisti@1639 140 return nm->deopt_handler_begin() - pc_return_offset;
duke@435 141 } else {
duke@435 142 return (pc() - pc_return_offset);
duke@435 143 }
duke@435 144 }
duke@435 145
duke@435 146 // Change the pc in a frame object. This does not change the actual pc in
duke@435 147 // actual frame. To do that use patch_pc.
duke@435 148 //
duke@435 149 void frame::set_pc(address newpc ) {
duke@435 150 #ifdef ASSERT
duke@435 151 if (_cb != NULL && _cb->is_nmethod()) {
duke@435 152 assert(!((nmethod*)_cb)->is_deopt_pc(_pc), "invariant violation");
duke@435 153 }
duke@435 154 #endif // ASSERT
duke@435 155
duke@435 156 // Unsafe to use the is_deoptimzed tester after changing pc
duke@435 157 _deopt_state = unknown;
duke@435 158 _pc = newpc;
duke@435 159 _cb = CodeCache::find_blob_unsafe(_pc);
duke@435 160
duke@435 161 }
duke@435 162
duke@435 163 // type testers
duke@435 164 bool frame::is_deoptimized_frame() const {
duke@435 165 assert(_deopt_state != unknown, "not answerable");
duke@435 166 return _deopt_state == is_deoptimized;
duke@435 167 }
duke@435 168
duke@435 169 bool frame::is_native_frame() const {
duke@435 170 return (_cb != NULL &&
duke@435 171 _cb->is_nmethod() &&
duke@435 172 ((nmethod*)_cb)->is_native_method());
duke@435 173 }
duke@435 174
duke@435 175 bool frame::is_java_frame() const {
duke@435 176 if (is_interpreted_frame()) return true;
duke@435 177 if (is_compiled_frame()) return true;
duke@435 178 return false;
duke@435 179 }
duke@435 180
duke@435 181
duke@435 182 bool frame::is_compiled_frame() const {
duke@435 183 if (_cb != NULL &&
duke@435 184 _cb->is_nmethod() &&
duke@435 185 ((nmethod*)_cb)->is_java_method()) {
duke@435 186 return true;
duke@435 187 }
duke@435 188 return false;
duke@435 189 }
duke@435 190
duke@435 191
duke@435 192 bool frame::is_runtime_frame() const {
duke@435 193 return (_cb != NULL && _cb->is_runtime_stub());
duke@435 194 }
duke@435 195
duke@435 196 bool frame::is_safepoint_blob_frame() const {
duke@435 197 return (_cb != NULL && _cb->is_safepoint_stub());
duke@435 198 }
duke@435 199
duke@435 200 // testers
duke@435 201
duke@435 202 bool frame::is_first_java_frame() const {
duke@435 203 RegisterMap map(JavaThread::current(), false); // No update
duke@435 204 frame s;
duke@435 205 for (s = sender(&map); !(s.is_java_frame() || s.is_first_frame()); s = s.sender(&map));
duke@435 206 return s.is_first_frame();
duke@435 207 }
duke@435 208
duke@435 209
duke@435 210 bool frame::entry_frame_is_first() const {
duke@435 211 return entry_frame_call_wrapper()->anchor()->last_Java_sp() == NULL;
duke@435 212 }
duke@435 213
duke@435 214
duke@435 215 bool frame::should_be_deoptimized() const {
duke@435 216 if (_deopt_state == is_deoptimized ||
duke@435 217 !is_compiled_frame() ) return false;
duke@435 218 assert(_cb != NULL && _cb->is_nmethod(), "must be an nmethod");
duke@435 219 nmethod* nm = (nmethod *)_cb;
duke@435 220 if (TraceDependencies) {
duke@435 221 tty->print("checking (%s) ", nm->is_marked_for_deoptimization() ? "true" : "false");
duke@435 222 nm->print_value_on(tty);
duke@435 223 tty->cr();
duke@435 224 }
duke@435 225
duke@435 226 if( !nm->is_marked_for_deoptimization() )
duke@435 227 return false;
duke@435 228
duke@435 229 // If at the return point, then the frame has already been popped, and
duke@435 230 // only the return needs to be executed. Don't deoptimize here.
duke@435 231 return !nm->is_at_poll_return(pc());
duke@435 232 }
duke@435 233
duke@435 234 bool frame::can_be_deoptimized() const {
duke@435 235 if (!is_compiled_frame()) return false;
duke@435 236 nmethod* nm = (nmethod*)_cb;
duke@435 237
duke@435 238 if( !nm->can_be_deoptimized() )
duke@435 239 return false;
duke@435 240
duke@435 241 return !nm->is_at_poll_return(pc());
duke@435 242 }
duke@435 243
never@2082 244 void frame::deoptimize(JavaThread* thread) {
never@2082 245 // Schedule deoptimization of an nmethod activation with this frame.
duke@435 246 assert(_cb != NULL && _cb->is_nmethod(), "must be");
duke@435 247 nmethod* nm = (nmethod*)_cb;
duke@435 248
duke@435 249 // This is a fix for register window patching race
never@2082 250 if (NeedsDeoptSuspend && Thread::current() != thread) {
never@2082 251 assert(SafepointSynchronize::is_at_safepoint(),
never@2082 252 "patching other threads for deopt may only occur at a safepoint");
duke@435 253
duke@435 254 // It is possible especially with DeoptimizeALot/DeoptimizeRandom that
duke@435 255 // we could see the frame again and ask for it to be deoptimized since
duke@435 256 // it might move for a long time. That is harmless and we just ignore it.
duke@435 257 if (id() == thread->must_deopt_id()) {
duke@435 258 assert(thread->is_deopt_suspend(), "lost suspension");
duke@435 259 return;
duke@435 260 }
duke@435 261
duke@435 262 // We are at a safepoint so the target thread can only be
duke@435 263 // in 4 states:
duke@435 264 // blocked - no problem
duke@435 265 // blocked_trans - no problem (i.e. could have woken up from blocked
duke@435 266 // during a safepoint).
duke@435 267 // native - register window pc patching race
duke@435 268 // native_trans - momentary state
duke@435 269 //
duke@435 270 // We could just wait out a thread in native_trans to block.
duke@435 271 // Then we'd have all the issues that the safepoint code has as to
duke@435 272 // whether to spin or block. It isn't worth it. Just treat it like
duke@435 273 // native and be done with it.
duke@435 274 //
never@2082 275 // Examine the state of the thread at the start of safepoint since
never@2082 276 // threads that were in native at the start of the safepoint could
never@2082 277 // come to a halt during the safepoint, changing the current value
never@2082 278 // of the safepoint_state.
never@2082 279 JavaThreadState state = thread->safepoint_state()->orig_thread_state();
duke@435 280 if (state == _thread_in_native || state == _thread_in_native_trans) {
duke@435 281 // Since we are at a safepoint the target thread will stop itself
duke@435 282 // before it can return to java as long as we remain at the safepoint.
duke@435 283 // Therefore we can put an additional request for the thread to stop
duke@435 284 // no matter what no (like a suspend). This will cause the thread
duke@435 285 // to notice it needs to do the deopt on its own once it leaves native.
duke@435 286 //
duke@435 287 // The only reason we must do this is because on machine with register
duke@435 288 // windows we have a race with patching the return address and the
duke@435 289 // window coming live as the thread returns to the Java code (but still
duke@435 290 // in native mode) and then blocks. It is only this top most frame
duke@435 291 // that is at risk. So in truth we could add an additional check to
duke@435 292 // see if this frame is one that is at risk.
duke@435 293 RegisterMap map(thread, false);
duke@435 294 frame at_risk = thread->last_frame().sender(&map);
duke@435 295 if (id() == at_risk.id()) {
duke@435 296 thread->set_must_deopt_id(id());
duke@435 297 thread->set_deopt_suspend();
duke@435 298 return;
duke@435 299 }
duke@435 300 }
duke@435 301 } // NeedsDeoptSuspend
duke@435 302
duke@435 303
twisti@1639 304 // If the call site is a MethodHandle call site use the MH deopt
twisti@1639 305 // handler.
twisti@1639 306 address deopt = nm->is_method_handle_return(pc()) ?
twisti@1639 307 nm->deopt_mh_handler_begin() :
twisti@1639 308 nm->deopt_handler_begin();
twisti@1639 309
duke@435 310 // Save the original pc before we patch in the new one
duke@435 311 nm->set_original_pc(this, pc());
duke@435 312 patch_pc(thread, deopt);
twisti@1639 313
duke@435 314 #ifdef ASSERT
duke@435 315 {
duke@435 316 RegisterMap map(thread, false);
duke@435 317 frame check = thread->last_frame();
duke@435 318 while (id() != check.id()) {
duke@435 319 check = check.sender(&map);
duke@435 320 }
duke@435 321 assert(check.is_deoptimized_frame(), "missed deopt");
duke@435 322 }
duke@435 323 #endif // ASSERT
duke@435 324 }
duke@435 325
duke@435 326 frame frame::java_sender() const {
duke@435 327 RegisterMap map(JavaThread::current(), false);
duke@435 328 frame s;
duke@435 329 for (s = sender(&map); !(s.is_java_frame() || s.is_first_frame()); s = s.sender(&map)) ;
duke@435 330 guarantee(s.is_java_frame(), "tried to get caller of first java frame");
duke@435 331 return s;
duke@435 332 }
duke@435 333
duke@435 334 frame frame::real_sender(RegisterMap* map) const {
duke@435 335 frame result = sender(map);
duke@435 336 while (result.is_runtime_frame()) {
duke@435 337 result = result.sender(map);
duke@435 338 }
duke@435 339 return result;
duke@435 340 }
duke@435 341
duke@435 342 // Note: called by profiler - NOT for current thread
duke@435 343 frame frame::profile_find_Java_sender_frame(JavaThread *thread) {
duke@435 344 // If we don't recognize this frame, walk back up the stack until we do
duke@435 345 RegisterMap map(thread, false);
duke@435 346 frame first_java_frame = frame();
duke@435 347
duke@435 348 // Find the first Java frame on the stack starting with input frame
duke@435 349 if (is_java_frame()) {
duke@435 350 // top frame is compiled frame or deoptimized frame
duke@435 351 first_java_frame = *this;
duke@435 352 } else if (safe_for_sender(thread)) {
duke@435 353 for (frame sender_frame = sender(&map);
duke@435 354 sender_frame.safe_for_sender(thread) && !sender_frame.is_first_frame();
duke@435 355 sender_frame = sender_frame.sender(&map)) {
duke@435 356 if (sender_frame.is_java_frame()) {
duke@435 357 first_java_frame = sender_frame;
duke@435 358 break;
duke@435 359 }
duke@435 360 }
duke@435 361 }
duke@435 362 return first_java_frame;
duke@435 363 }
duke@435 364
duke@435 365 // Interpreter frames
duke@435 366
duke@435 367
duke@435 368 void frame::interpreter_frame_set_locals(intptr_t* locs) {
duke@435 369 assert(is_interpreted_frame(), "Not an interpreted frame");
duke@435 370 *interpreter_frame_locals_addr() = locs;
duke@435 371 }
duke@435 372
duke@435 373 methodOop frame::interpreter_frame_method() const {
duke@435 374 assert(is_interpreted_frame(), "interpreted frame expected");
duke@435 375 methodOop m = *interpreter_frame_method_addr();
duke@435 376 assert(m->is_perm(), "bad methodOop in interpreter frame");
duke@435 377 assert(m->is_method(), "not a methodOop");
duke@435 378 return m;
duke@435 379 }
duke@435 380
duke@435 381 void frame::interpreter_frame_set_method(methodOop method) {
duke@435 382 assert(is_interpreted_frame(), "interpreted frame expected");
duke@435 383 *interpreter_frame_method_addr() = method;
duke@435 384 }
duke@435 385
duke@435 386 void frame::interpreter_frame_set_bcx(intptr_t bcx) {
duke@435 387 assert(is_interpreted_frame(), "Not an interpreted frame");
duke@435 388 if (ProfileInterpreter) {
duke@435 389 bool formerly_bci = is_bci(interpreter_frame_bcx());
duke@435 390 bool is_now_bci = is_bci(bcx);
duke@435 391 *interpreter_frame_bcx_addr() = bcx;
duke@435 392
duke@435 393 intptr_t mdx = interpreter_frame_mdx();
duke@435 394
duke@435 395 if (mdx != 0) {
duke@435 396 if (formerly_bci) {
duke@435 397 if (!is_now_bci) {
duke@435 398 // The bcx was just converted from bci to bcp.
duke@435 399 // Convert the mdx in parallel.
duke@435 400 methodDataOop mdo = interpreter_frame_method()->method_data();
duke@435 401 assert(mdo != NULL, "");
duke@435 402 int mdi = mdx - 1; // We distinguish valid mdi from zero by adding one.
duke@435 403 address mdp = mdo->di_to_dp(mdi);
duke@435 404 interpreter_frame_set_mdx((intptr_t)mdp);
duke@435 405 }
duke@435 406 } else {
duke@435 407 if (is_now_bci) {
duke@435 408 // The bcx was just converted from bcp to bci.
duke@435 409 // Convert the mdx in parallel.
duke@435 410 methodDataOop mdo = interpreter_frame_method()->method_data();
duke@435 411 assert(mdo != NULL, "");
duke@435 412 int mdi = mdo->dp_to_di((address)mdx);
duke@435 413 interpreter_frame_set_mdx((intptr_t)mdi + 1); // distinguish valid from 0.
duke@435 414 }
duke@435 415 }
duke@435 416 }
duke@435 417 } else {
duke@435 418 *interpreter_frame_bcx_addr() = bcx;
duke@435 419 }
duke@435 420 }
duke@435 421
duke@435 422 jint frame::interpreter_frame_bci() const {
duke@435 423 assert(is_interpreted_frame(), "interpreted frame expected");
duke@435 424 intptr_t bcx = interpreter_frame_bcx();
duke@435 425 return is_bci(bcx) ? bcx : interpreter_frame_method()->bci_from((address)bcx);
duke@435 426 }
duke@435 427
duke@435 428 void frame::interpreter_frame_set_bci(jint bci) {
duke@435 429 assert(is_interpreted_frame(), "interpreted frame expected");
duke@435 430 assert(!is_bci(interpreter_frame_bcx()), "should not set bci during GC");
duke@435 431 interpreter_frame_set_bcx((intptr_t)interpreter_frame_method()->bcp_from(bci));
duke@435 432 }
duke@435 433
duke@435 434 address frame::interpreter_frame_bcp() const {
duke@435 435 assert(is_interpreted_frame(), "interpreted frame expected");
duke@435 436 intptr_t bcx = interpreter_frame_bcx();
duke@435 437 return is_bci(bcx) ? interpreter_frame_method()->bcp_from(bcx) : (address)bcx;
duke@435 438 }
duke@435 439
duke@435 440 void frame::interpreter_frame_set_bcp(address bcp) {
duke@435 441 assert(is_interpreted_frame(), "interpreted frame expected");
duke@435 442 assert(!is_bci(interpreter_frame_bcx()), "should not set bcp during GC");
duke@435 443 interpreter_frame_set_bcx((intptr_t)bcp);
duke@435 444 }
duke@435 445
duke@435 446 void frame::interpreter_frame_set_mdx(intptr_t mdx) {
duke@435 447 assert(is_interpreted_frame(), "Not an interpreted frame");
duke@435 448 assert(ProfileInterpreter, "must be profiling interpreter");
duke@435 449 *interpreter_frame_mdx_addr() = mdx;
duke@435 450 }
duke@435 451
duke@435 452 address frame::interpreter_frame_mdp() const {
duke@435 453 assert(ProfileInterpreter, "must be profiling interpreter");
duke@435 454 assert(is_interpreted_frame(), "interpreted frame expected");
duke@435 455 intptr_t bcx = interpreter_frame_bcx();
duke@435 456 intptr_t mdx = interpreter_frame_mdx();
duke@435 457
duke@435 458 assert(!is_bci(bcx), "should not access mdp during GC");
duke@435 459 return (address)mdx;
duke@435 460 }
duke@435 461
duke@435 462 void frame::interpreter_frame_set_mdp(address mdp) {
duke@435 463 assert(is_interpreted_frame(), "interpreted frame expected");
duke@435 464 if (mdp == NULL) {
duke@435 465 // Always allow the mdp to be cleared.
duke@435 466 interpreter_frame_set_mdx((intptr_t)mdp);
duke@435 467 }
duke@435 468 intptr_t bcx = interpreter_frame_bcx();
duke@435 469 assert(!is_bci(bcx), "should not set mdp during GC");
duke@435 470 interpreter_frame_set_mdx((intptr_t)mdp);
duke@435 471 }
duke@435 472
duke@435 473 BasicObjectLock* frame::next_monitor_in_interpreter_frame(BasicObjectLock* current) const {
duke@435 474 assert(is_interpreted_frame(), "Not an interpreted frame");
duke@435 475 #ifdef ASSERT
duke@435 476 interpreter_frame_verify_monitor(current);
duke@435 477 #endif
duke@435 478 BasicObjectLock* next = (BasicObjectLock*) (((intptr_t*) current) + interpreter_frame_monitor_size());
duke@435 479 return next;
duke@435 480 }
duke@435 481
duke@435 482 BasicObjectLock* frame::previous_monitor_in_interpreter_frame(BasicObjectLock* current) const {
duke@435 483 assert(is_interpreted_frame(), "Not an interpreted frame");
duke@435 484 #ifdef ASSERT
duke@435 485 // // This verification needs to be checked before being enabled
duke@435 486 // interpreter_frame_verify_monitor(current);
duke@435 487 #endif
duke@435 488 BasicObjectLock* previous = (BasicObjectLock*) (((intptr_t*) current) - interpreter_frame_monitor_size());
duke@435 489 return previous;
duke@435 490 }
duke@435 491
duke@435 492 // Interpreter locals and expression stack locations.
duke@435 493
duke@435 494 intptr_t* frame::interpreter_frame_local_at(int index) const {
duke@435 495 const int n = Interpreter::local_offset_in_bytes(index)/wordSize;
duke@435 496 return &((*interpreter_frame_locals_addr())[n]);
duke@435 497 }
duke@435 498
duke@435 499 intptr_t* frame::interpreter_frame_expression_stack_at(jint offset) const {
duke@435 500 const int i = offset * interpreter_frame_expression_stack_direction();
twisti@1861 501 const int n = i * Interpreter::stackElementWords;
duke@435 502 return &(interpreter_frame_expression_stack()[n]);
duke@435 503 }
duke@435 504
duke@435 505 jint frame::interpreter_frame_expression_stack_size() const {
duke@435 506 // Number of elements on the interpreter expression stack
duke@435 507 // Callers should span by stackElementWords
twisti@1861 508 int element_size = Interpreter::stackElementWords;
duke@435 509 if (frame::interpreter_frame_expression_stack_direction() < 0) {
duke@435 510 return (interpreter_frame_expression_stack() -
duke@435 511 interpreter_frame_tos_address() + 1)/element_size;
duke@435 512 } else {
duke@435 513 return (interpreter_frame_tos_address() -
duke@435 514 interpreter_frame_expression_stack() + 1)/element_size;
duke@435 515 }
duke@435 516 }
duke@435 517
duke@435 518
duke@435 519 // (frame::interpreter_frame_sender_sp accessor is in frame_<arch>.cpp)
duke@435 520
duke@435 521 const char* frame::print_name() const {
duke@435 522 if (is_native_frame()) return "Native";
duke@435 523 if (is_interpreted_frame()) return "Interpreted";
duke@435 524 if (is_compiled_frame()) {
duke@435 525 if (is_deoptimized_frame()) return "Deoptimized";
duke@435 526 return "Compiled";
duke@435 527 }
duke@435 528 if (sp() == NULL) return "Empty";
duke@435 529 return "C";
duke@435 530 }
duke@435 531
duke@435 532 void frame::print_value_on(outputStream* st, JavaThread *thread) const {
duke@435 533 NOT_PRODUCT(address begin = pc()-40;)
duke@435 534 NOT_PRODUCT(address end = NULL;)
duke@435 535
duke@435 536 st->print("%s frame (sp=" INTPTR_FORMAT " unextended sp=" INTPTR_FORMAT, print_name(), sp(), unextended_sp());
duke@435 537 if (sp() != NULL)
duke@435 538 st->print(", fp=" INTPTR_FORMAT ", pc=" INTPTR_FORMAT, fp(), pc());
duke@435 539
duke@435 540 if (StubRoutines::contains(pc())) {
duke@435 541 st->print_cr(")");
duke@435 542 st->print("(");
duke@435 543 StubCodeDesc* desc = StubCodeDesc::desc_for(pc());
duke@435 544 st->print("~Stub::%s", desc->name());
duke@435 545 NOT_PRODUCT(begin = desc->begin(); end = desc->end();)
duke@435 546 } else if (Interpreter::contains(pc())) {
duke@435 547 st->print_cr(")");
duke@435 548 st->print("(");
duke@435 549 InterpreterCodelet* desc = Interpreter::codelet_containing(pc());
duke@435 550 if (desc != NULL) {
duke@435 551 st->print("~");
duke@435 552 desc->print();
duke@435 553 NOT_PRODUCT(begin = desc->code_begin(); end = desc->code_end();)
duke@435 554 } else {
duke@435 555 st->print("~interpreter");
duke@435 556 }
duke@435 557 }
duke@435 558 st->print_cr(")");
duke@435 559
duke@435 560 if (_cb != NULL) {
duke@435 561 st->print(" ");
duke@435 562 _cb->print_value_on(st);
duke@435 563 st->cr();
duke@435 564 #ifndef PRODUCT
duke@435 565 if (end == NULL) {
twisti@2103 566 begin = _cb->code_begin();
twisti@2103 567 end = _cb->code_end();
duke@435 568 }
duke@435 569 #endif
duke@435 570 }
duke@435 571 NOT_PRODUCT(if (WizardMode && Verbose) Disassembler::decode(begin, end);)
duke@435 572 }
duke@435 573
duke@435 574
duke@435 575 void frame::print_on(outputStream* st) const {
duke@435 576 print_value_on(st,NULL);
duke@435 577 if (is_interpreted_frame()) {
duke@435 578 interpreter_frame_print_on(st);
duke@435 579 }
duke@435 580 }
duke@435 581
duke@435 582
duke@435 583 void frame::interpreter_frame_print_on(outputStream* st) const {
duke@435 584 #ifndef PRODUCT
duke@435 585 assert(is_interpreted_frame(), "Not an interpreted frame");
duke@435 586 jint i;
duke@435 587 for (i = 0; i < interpreter_frame_method()->max_locals(); i++ ) {
duke@435 588 intptr_t x = *interpreter_frame_local_at(i);
duke@435 589 st->print(" - local [" INTPTR_FORMAT "]", x);
duke@435 590 st->fill_to(23);
duke@435 591 st->print_cr("; #%d", i);
duke@435 592 }
duke@435 593 for (i = interpreter_frame_expression_stack_size() - 1; i >= 0; --i ) {
duke@435 594 intptr_t x = *interpreter_frame_expression_stack_at(i);
duke@435 595 st->print(" - stack [" INTPTR_FORMAT "]", x);
duke@435 596 st->fill_to(23);
duke@435 597 st->print_cr("; #%d", i);
duke@435 598 }
duke@435 599 // locks for synchronization
duke@435 600 for (BasicObjectLock* current = interpreter_frame_monitor_end();
duke@435 601 current < interpreter_frame_monitor_begin();
duke@435 602 current = next_monitor_in_interpreter_frame(current)) {
kvn@1690 603 st->print(" - obj [");
duke@435 604 current->obj()->print_value_on(st);
kvn@1690 605 st->print_cr("]");
kvn@1690 606 st->print(" - lock [");
duke@435 607 current->lock()->print_on(st);
kvn@1690 608 st->print_cr("]");
duke@435 609 }
duke@435 610 // monitor
duke@435 611 st->print_cr(" - monitor[" INTPTR_FORMAT "]", interpreter_frame_monitor_begin());
duke@435 612 // bcp
duke@435 613 st->print(" - bcp [" INTPTR_FORMAT "]", interpreter_frame_bcp());
duke@435 614 st->fill_to(23);
duke@435 615 st->print_cr("; @%d", interpreter_frame_bci());
duke@435 616 // locals
duke@435 617 st->print_cr(" - locals [" INTPTR_FORMAT "]", interpreter_frame_local_at(0));
duke@435 618 // method
duke@435 619 st->print(" - method [" INTPTR_FORMAT "]", (address)interpreter_frame_method());
duke@435 620 st->fill_to(23);
duke@435 621 st->print("; ");
duke@435 622 interpreter_frame_method()->print_name(st);
duke@435 623 st->cr();
duke@435 624 #endif
duke@435 625 }
duke@435 626
duke@435 627 // Return whether the frame is in the VM or os indicating a Hotspot problem.
duke@435 628 // Otherwise, it's likely a bug in the native library that the Java code calls,
duke@435 629 // hopefully indicating where to submit bugs.
duke@435 630 static void print_C_frame(outputStream* st, char* buf, int buflen, address pc) {
duke@435 631 // C/C++ frame
duke@435 632 bool in_vm = os::address_is_in_vm(pc);
duke@435 633 st->print(in_vm ? "V" : "C");
duke@435 634
duke@435 635 int offset;
duke@435 636 bool found;
duke@435 637
duke@435 638 // libname
duke@435 639 found = os::dll_address_to_library_name(pc, buf, buflen, &offset);
duke@435 640 if (found) {
duke@435 641 // skip directory names
duke@435 642 const char *p1, *p2;
duke@435 643 p1 = buf;
duke@435 644 int len = (int)strlen(os::file_separator());
duke@435 645 while ((p2 = strstr(p1, os::file_separator())) != NULL) p1 = p2 + len;
duke@435 646 st->print(" [%s+0x%x]", p1, offset);
duke@435 647 } else {
duke@435 648 st->print(" " PTR_FORMAT, pc);
duke@435 649 }
duke@435 650
duke@435 651 // function name - os::dll_address_to_function_name() may return confusing
duke@435 652 // names if pc is within jvm.dll or libjvm.so, because JVM only has
duke@435 653 // JVM_xxxx and a few other symbols in the dynamic symbol table. Do this
duke@435 654 // only for native libraries.
duke@435 655 if (!in_vm) {
duke@435 656 found = os::dll_address_to_function_name(pc, buf, buflen, &offset);
duke@435 657
duke@435 658 if (found) {
duke@435 659 st->print(" %s+0x%x", buf, offset);
duke@435 660 }
duke@435 661 }
duke@435 662 }
duke@435 663
duke@435 664 // frame::print_on_error() is called by fatal error handler. Notice that we may
duke@435 665 // crash inside this function if stack frame is corrupted. The fatal error
duke@435 666 // handler can catch and handle the crash. Here we assume the frame is valid.
duke@435 667 //
duke@435 668 // First letter indicates type of the frame:
duke@435 669 // J: Java frame (compiled)
duke@435 670 // j: Java frame (interpreted)
duke@435 671 // V: VM frame (C/C++)
duke@435 672 // v: Other frames running VM generated code (e.g. stubs, adapters, etc.)
duke@435 673 // C: C/C++ frame
duke@435 674 //
duke@435 675 // We don't need detailed frame type as that in frame::print_name(). "C"
duke@435 676 // suggests the problem is in user lib; everything else is likely a VM bug.
duke@435 677
duke@435 678 void frame::print_on_error(outputStream* st, char* buf, int buflen, bool verbose) const {
duke@435 679 if (_cb != NULL) {
duke@435 680 if (Interpreter::contains(pc())) {
duke@435 681 methodOop m = this->interpreter_frame_method();
duke@435 682 if (m != NULL) {
duke@435 683 m->name_and_sig_as_C_string(buf, buflen);
duke@435 684 st->print("j %s", buf);
duke@435 685 st->print("+%d", this->interpreter_frame_bci());
duke@435 686 } else {
duke@435 687 st->print("j " PTR_FORMAT, pc());
duke@435 688 }
duke@435 689 } else if (StubRoutines::contains(pc())) {
duke@435 690 StubCodeDesc* desc = StubCodeDesc::desc_for(pc());
duke@435 691 if (desc != NULL) {
duke@435 692 st->print("v ~StubRoutines::%s", desc->name());
duke@435 693 } else {
duke@435 694 st->print("v ~StubRoutines::" PTR_FORMAT, pc());
duke@435 695 }
duke@435 696 } else if (_cb->is_buffer_blob()) {
duke@435 697 st->print("v ~BufferBlob::%s", ((BufferBlob *)_cb)->name());
duke@435 698 } else if (_cb->is_nmethod()) {
duke@435 699 methodOop m = ((nmethod *)_cb)->method();
duke@435 700 if (m != NULL) {
duke@435 701 m->name_and_sig_as_C_string(buf, buflen);
duke@435 702 st->print("J %s", buf);
duke@435 703 } else {
duke@435 704 st->print("J " PTR_FORMAT, pc());
duke@435 705 }
duke@435 706 } else if (_cb->is_runtime_stub()) {
duke@435 707 st->print("v ~RuntimeStub::%s", ((RuntimeStub *)_cb)->name());
duke@435 708 } else if (_cb->is_deoptimization_stub()) {
duke@435 709 st->print("v ~DeoptimizationBlob");
duke@435 710 } else if (_cb->is_exception_stub()) {
duke@435 711 st->print("v ~ExceptionBlob");
duke@435 712 } else if (_cb->is_safepoint_stub()) {
duke@435 713 st->print("v ~SafepointBlob");
duke@435 714 } else {
duke@435 715 st->print("v blob " PTR_FORMAT, pc());
duke@435 716 }
duke@435 717 } else {
duke@435 718 print_C_frame(st, buf, buflen, pc());
duke@435 719 }
duke@435 720 }
duke@435 721
duke@435 722
duke@435 723 /*
duke@435 724 The interpreter_frame_expression_stack_at method in the case of SPARC needs the
duke@435 725 max_stack value of the method in order to compute the expression stack address.
duke@435 726 It uses the methodOop in order to get the max_stack value but during GC this
duke@435 727 methodOop value saved on the frame is changed by reverse_and_push and hence cannot
duke@435 728 be used. So we save the max_stack value in the FrameClosure object and pass it
duke@435 729 down to the interpreter_frame_expression_stack_at method
duke@435 730 */
duke@435 731 class InterpreterFrameClosure : public OffsetClosure {
duke@435 732 private:
duke@435 733 frame* _fr;
duke@435 734 OopClosure* _f;
duke@435 735 int _max_locals;
duke@435 736 int _max_stack;
duke@435 737
duke@435 738 public:
duke@435 739 InterpreterFrameClosure(frame* fr, int max_locals, int max_stack,
duke@435 740 OopClosure* f) {
duke@435 741 _fr = fr;
duke@435 742 _max_locals = max_locals;
duke@435 743 _max_stack = max_stack;
duke@435 744 _f = f;
duke@435 745 }
duke@435 746
duke@435 747 void offset_do(int offset) {
duke@435 748 oop* addr;
duke@435 749 if (offset < _max_locals) {
duke@435 750 addr = (oop*) _fr->interpreter_frame_local_at(offset);
duke@435 751 assert((intptr_t*)addr >= _fr->sp(), "must be inside the frame");
duke@435 752 _f->do_oop(addr);
duke@435 753 } else {
duke@435 754 addr = (oop*) _fr->interpreter_frame_expression_stack_at((offset - _max_locals));
duke@435 755 // In case of exceptions, the expression stack is invalid and the esp will be reset to express
duke@435 756 // this condition. Therefore, we call f only if addr is 'inside' the stack (i.e., addr >= esp for Intel).
duke@435 757 bool in_stack;
duke@435 758 if (frame::interpreter_frame_expression_stack_direction() > 0) {
duke@435 759 in_stack = (intptr_t*)addr <= _fr->interpreter_frame_tos_address();
duke@435 760 } else {
duke@435 761 in_stack = (intptr_t*)addr >= _fr->interpreter_frame_tos_address();
duke@435 762 }
duke@435 763 if (in_stack) {
duke@435 764 _f->do_oop(addr);
duke@435 765 }
duke@435 766 }
duke@435 767 }
duke@435 768
duke@435 769 int max_locals() { return _max_locals; }
duke@435 770 frame* fr() { return _fr; }
duke@435 771 };
duke@435 772
duke@435 773
duke@435 774 class InterpretedArgumentOopFinder: public SignatureInfo {
duke@435 775 private:
twisti@1573 776 OopClosure* _f; // Closure to invoke
twisti@1573 777 int _offset; // TOS-relative offset, decremented with each argument
twisti@1573 778 bool _has_receiver; // true if the callee has a receiver
duke@435 779 frame* _fr;
duke@435 780
duke@435 781 void set(int size, BasicType type) {
duke@435 782 _offset -= size;
duke@435 783 if (type == T_OBJECT || type == T_ARRAY) oop_offset_do();
duke@435 784 }
duke@435 785
duke@435 786 void oop_offset_do() {
duke@435 787 oop* addr;
duke@435 788 addr = (oop*)_fr->interpreter_frame_tos_at(_offset);
duke@435 789 _f->do_oop(addr);
duke@435 790 }
duke@435 791
duke@435 792 public:
twisti@1573 793 InterpretedArgumentOopFinder(symbolHandle signature, bool has_receiver, frame* fr, OopClosure* f) : SignatureInfo(signature), _has_receiver(has_receiver) {
duke@435 794 // compute size of arguments
twisti@1573 795 int args_size = ArgumentSizeComputer(signature).size() + (has_receiver ? 1 : 0);
duke@435 796 assert(!fr->is_interpreted_frame() ||
duke@435 797 args_size <= fr->interpreter_frame_expression_stack_size(),
duke@435 798 "args cannot be on stack anymore");
duke@435 799 // initialize InterpretedArgumentOopFinder
duke@435 800 _f = f;
duke@435 801 _fr = fr;
duke@435 802 _offset = args_size;
duke@435 803 }
duke@435 804
duke@435 805 void oops_do() {
twisti@1573 806 if (_has_receiver) {
duke@435 807 --_offset;
duke@435 808 oop_offset_do();
duke@435 809 }
duke@435 810 iterate_parameters();
duke@435 811 }
duke@435 812 };
duke@435 813
duke@435 814
duke@435 815 // Entry frame has following form (n arguments)
duke@435 816 // +-----------+
duke@435 817 // sp -> | last arg |
duke@435 818 // +-----------+
duke@435 819 // : ::: :
duke@435 820 // +-----------+
duke@435 821 // (sp+n)->| first arg|
duke@435 822 // +-----------+
duke@435 823
duke@435 824
duke@435 825
duke@435 826 // visits and GC's all the arguments in entry frame
duke@435 827 class EntryFrameOopFinder: public SignatureInfo {
duke@435 828 private:
duke@435 829 bool _is_static;
duke@435 830 int _offset;
duke@435 831 frame* _fr;
duke@435 832 OopClosure* _f;
duke@435 833
duke@435 834 void set(int size, BasicType type) {
duke@435 835 assert (_offset >= 0, "illegal offset");
duke@435 836 if (type == T_OBJECT || type == T_ARRAY) oop_at_offset_do(_offset);
duke@435 837 _offset -= size;
duke@435 838 }
duke@435 839
duke@435 840 void oop_at_offset_do(int offset) {
jcoomes@1844 841 assert (offset >= 0, "illegal offset");
duke@435 842 oop* addr = (oop*) _fr->entry_frame_argument_at(offset);
duke@435 843 _f->do_oop(addr);
duke@435 844 }
duke@435 845
duke@435 846 public:
duke@435 847 EntryFrameOopFinder(frame* frame, symbolHandle signature, bool is_static) : SignatureInfo(signature) {
duke@435 848 _f = NULL; // will be set later
duke@435 849 _fr = frame;
duke@435 850 _is_static = is_static;
duke@435 851 _offset = ArgumentSizeComputer(signature).size() - 1; // last parameter is at index 0
duke@435 852 }
duke@435 853
duke@435 854 void arguments_do(OopClosure* f) {
duke@435 855 _f = f;
duke@435 856 if (!_is_static) oop_at_offset_do(_offset+1); // do the receiver
duke@435 857 iterate_parameters();
duke@435 858 }
duke@435 859
duke@435 860 };
duke@435 861
duke@435 862 oop* frame::interpreter_callee_receiver_addr(symbolHandle signature) {
duke@435 863 ArgumentSizeComputer asc(signature);
duke@435 864 int size = asc.size();
duke@435 865 return (oop *)interpreter_frame_tos_at(size);
duke@435 866 }
duke@435 867
duke@435 868
duke@435 869 void frame::oops_interpreted_do(OopClosure* f, const RegisterMap* map, bool query_oop_map_cache) {
duke@435 870 assert(is_interpreted_frame(), "Not an interpreted frame");
duke@435 871 assert(map != NULL, "map must be set");
duke@435 872 Thread *thread = Thread::current();
duke@435 873 methodHandle m (thread, interpreter_frame_method());
duke@435 874 jint bci = interpreter_frame_bci();
duke@435 875
duke@435 876 assert(Universe::heap()->is_in(m()), "must be valid oop");
duke@435 877 assert(m->is_method(), "checking frame value");
duke@435 878 assert((m->is_native() && bci == 0) || (!m->is_native() && bci >= 0 && bci < m->code_size()), "invalid bci value");
duke@435 879
duke@435 880 // Handle the monitor elements in the activation
duke@435 881 for (
duke@435 882 BasicObjectLock* current = interpreter_frame_monitor_end();
duke@435 883 current < interpreter_frame_monitor_begin();
duke@435 884 current = next_monitor_in_interpreter_frame(current)
duke@435 885 ) {
duke@435 886 #ifdef ASSERT
duke@435 887 interpreter_frame_verify_monitor(current);
duke@435 888 #endif
duke@435 889 current->oops_do(f);
duke@435 890 }
duke@435 891
duke@435 892 // process fixed part
duke@435 893 f->do_oop((oop*)interpreter_frame_method_addr());
duke@435 894 f->do_oop((oop*)interpreter_frame_cache_addr());
duke@435 895
duke@435 896 // Hmm what about the mdp?
duke@435 897 #ifdef CC_INTERP
duke@435 898 // Interpreter frame in the midst of a call have a methodOop within the
duke@435 899 // object.
duke@435 900 interpreterState istate = get_interpreterState();
duke@435 901 if (istate->msg() == BytecodeInterpreter::call_method) {
duke@435 902 f->do_oop((oop*)&istate->_result._to_call._callee);
duke@435 903 }
duke@435 904
duke@435 905 #endif /* CC_INTERP */
duke@435 906
twisti@2263 907 #if !defined(PPC) || defined(ZERO)
duke@435 908 if (m->is_native()) {
duke@435 909 #ifdef CC_INTERP
duke@435 910 f->do_oop((oop*)&istate->_oop_temp);
duke@435 911 #else
duke@435 912 f->do_oop((oop*)( fp() + interpreter_frame_oop_temp_offset ));
duke@435 913 #endif /* CC_INTERP */
duke@435 914 }
bobv@2036 915 #else // PPC
bobv@2036 916 if (m->is_native() && m->is_static()) {
bobv@2036 917 f->do_oop(interpreter_frame_mirror_addr());
bobv@2036 918 }
bobv@2036 919 #endif // PPC
duke@435 920
duke@435 921 int max_locals = m->is_native() ? m->size_of_parameters() : m->max_locals();
duke@435 922
duke@435 923 symbolHandle signature;
twisti@1573 924 bool has_receiver = false;
duke@435 925
duke@435 926 // Process a callee's arguments if we are at a call site
duke@435 927 // (i.e., if we are at an invoke bytecode)
duke@435 928 // This is used sometimes for calling into the VM, not for another
duke@435 929 // interpreted or compiled frame.
duke@435 930 if (!m->is_native()) {
duke@435 931 Bytecode_invoke *call = Bytecode_invoke_at_check(m, bci);
duke@435 932 if (call != NULL) {
duke@435 933 signature = symbolHandle(thread, call->signature());
twisti@1573 934 has_receiver = call->has_receiver();
duke@435 935 if (map->include_argument_oops() &&
duke@435 936 interpreter_frame_expression_stack_size() > 0) {
duke@435 937 ResourceMark rm(thread); // is this right ???
duke@435 938 // we are at a call site & the expression stack is not empty
duke@435 939 // => process callee's arguments
duke@435 940 //
duke@435 941 // Note: The expression stack can be empty if an exception
twisti@1040 942 // occurred during method resolution/execution. In all
duke@435 943 // cases we empty the expression stack completely be-
duke@435 944 // fore handling the exception (the exception handling
duke@435 945 // code in the interpreter calls a blocking runtime
duke@435 946 // routine which can cause this code to be executed).
duke@435 947 // (was bug gri 7/27/98)
twisti@1573 948 oops_interpreted_arguments_do(signature, has_receiver, f);
duke@435 949 }
duke@435 950 }
duke@435 951 }
duke@435 952
twisti@1861 953 InterpreterFrameClosure blk(this, max_locals, m->max_stack(), f);
twisti@1861 954
twisti@1861 955 // process locals & expression stack
twisti@1861 956 InterpreterOopMap mask;
twisti@1861 957 if (query_oop_map_cache) {
twisti@1861 958 m->mask_for(bci, &mask);
duke@435 959 } else {
twisti@1861 960 OopMapCache::compute_one_oop_map(m, bci, &mask);
duke@435 961 }
twisti@1861 962 mask.iterate_oop(&blk);
duke@435 963 }
duke@435 964
duke@435 965
twisti@1573 966 void frame::oops_interpreted_arguments_do(symbolHandle signature, bool has_receiver, OopClosure* f) {
twisti@1573 967 InterpretedArgumentOopFinder finder(signature, has_receiver, this, f);
duke@435 968 finder.oops_do();
duke@435 969 }
duke@435 970
jrose@1424 971 void frame::oops_code_blob_do(OopClosure* f, CodeBlobClosure* cf, const RegisterMap* reg_map) {
duke@435 972 assert(_cb != NULL, "sanity check");
duke@435 973 if (_cb->oop_maps() != NULL) {
duke@435 974 OopMapSet::oops_do(this, reg_map, f);
duke@435 975
duke@435 976 // Preserve potential arguments for a callee. We handle this by dispatching
duke@435 977 // on the codeblob. For c2i, we do
duke@435 978 if (reg_map->include_argument_oops()) {
duke@435 979 _cb->preserve_callee_argument_oops(*this, reg_map, f);
duke@435 980 }
duke@435 981 }
duke@435 982 // In cases where perm gen is collected, GC will want to mark
duke@435 983 // oops referenced from nmethods active on thread stacks so as to
duke@435 984 // prevent them from being collected. However, this visit should be
duke@435 985 // restricted to certain phases of the collection only. The
jrose@1424 986 // closure decides how it wants nmethods to be traced.
jrose@1424 987 if (cf != NULL)
jrose@1424 988 cf->do_code_blob(_cb);
duke@435 989 }
duke@435 990
duke@435 991 class CompiledArgumentOopFinder: public SignatureInfo {
duke@435 992 protected:
duke@435 993 OopClosure* _f;
twisti@1573 994 int _offset; // the current offset, incremented with each argument
twisti@1573 995 bool _has_receiver; // true if the callee has a receiver
duke@435 996 frame _fr;
duke@435 997 RegisterMap* _reg_map;
duke@435 998 int _arg_size;
duke@435 999 VMRegPair* _regs; // VMReg list of arguments
duke@435 1000
duke@435 1001 void set(int size, BasicType type) {
duke@435 1002 if (type == T_OBJECT || type == T_ARRAY) handle_oop_offset();
duke@435 1003 _offset += size;
duke@435 1004 }
duke@435 1005
duke@435 1006 virtual void handle_oop_offset() {
duke@435 1007 // Extract low order register number from register array.
duke@435 1008 // In LP64-land, the high-order bits are valid but unhelpful.
duke@435 1009 VMReg reg = _regs[_offset].first();
duke@435 1010 oop *loc = _fr.oopmapreg_to_location(reg, _reg_map);
duke@435 1011 _f->do_oop(loc);
duke@435 1012 }
duke@435 1013
duke@435 1014 public:
twisti@1573 1015 CompiledArgumentOopFinder(symbolHandle signature, bool has_receiver, OopClosure* f, frame fr, const RegisterMap* reg_map)
duke@435 1016 : SignatureInfo(signature) {
duke@435 1017
duke@435 1018 // initialize CompiledArgumentOopFinder
duke@435 1019 _f = f;
duke@435 1020 _offset = 0;
twisti@1573 1021 _has_receiver = has_receiver;
duke@435 1022 _fr = fr;
duke@435 1023 _reg_map = (RegisterMap*)reg_map;
twisti@1573 1024 _arg_size = ArgumentSizeComputer(signature).size() + (has_receiver ? 1 : 0);
duke@435 1025
duke@435 1026 int arg_size;
twisti@1573 1027 _regs = SharedRuntime::find_callee_arguments(signature(), has_receiver, &arg_size);
duke@435 1028 assert(arg_size == _arg_size, "wrong arg size");
duke@435 1029 }
duke@435 1030
duke@435 1031 void oops_do() {
twisti@1573 1032 if (_has_receiver) {
duke@435 1033 handle_oop_offset();
duke@435 1034 _offset++;
duke@435 1035 }
duke@435 1036 iterate_parameters();
duke@435 1037 }
duke@435 1038 };
duke@435 1039
twisti@1573 1040 void frame::oops_compiled_arguments_do(symbolHandle signature, bool has_receiver, const RegisterMap* reg_map, OopClosure* f) {
duke@435 1041 ResourceMark rm;
twisti@1573 1042 CompiledArgumentOopFinder finder(signature, has_receiver, f, *this, reg_map);
duke@435 1043 finder.oops_do();
duke@435 1044 }
duke@435 1045
duke@435 1046
duke@435 1047 // Get receiver out of callers frame, i.e. find parameter 0 in callers
duke@435 1048 // frame. Consult ADLC for where parameter 0 is to be found. Then
duke@435 1049 // check local reg_map for it being a callee-save register or argument
duke@435 1050 // register, both of which are saved in the local frame. If not found
duke@435 1051 // there, it must be an in-stack argument of the caller.
duke@435 1052 // Note: caller.sp() points to callee-arguments
duke@435 1053 oop frame::retrieve_receiver(RegisterMap* reg_map) {
duke@435 1054 frame caller = *this;
duke@435 1055
duke@435 1056 // First consult the ADLC on where it puts parameter 0 for this signature.
duke@435 1057 VMReg reg = SharedRuntime::name_for_receiver();
duke@435 1058 oop r = *caller.oopmapreg_to_location(reg, reg_map);
duke@435 1059 assert( Universe::heap()->is_in_or_null(r), "bad receiver" );
duke@435 1060 return r;
duke@435 1061 }
duke@435 1062
duke@435 1063
duke@435 1064 oop* frame::oopmapreg_to_location(VMReg reg, const RegisterMap* reg_map) const {
duke@435 1065 if(reg->is_reg()) {
duke@435 1066 // If it is passed in a register, it got spilled in the stub frame.
duke@435 1067 return (oop *)reg_map->location(reg);
duke@435 1068 } else {
coleenp@548 1069 int sp_offset_in_bytes = reg->reg2stack() * VMRegImpl::stack_slot_size;
coleenp@548 1070 return (oop*)(((address)unextended_sp()) + sp_offset_in_bytes);
duke@435 1071 }
duke@435 1072 }
duke@435 1073
kamg@2361 1074 BasicLock* frame::get_native_monitor() {
kamg@2361 1075 nmethod* nm = (nmethod*)_cb;
kamg@2361 1076 assert(_cb != NULL && _cb->is_nmethod() && nm->method()->is_native(),
kamg@2361 1077 "Should not call this unless it's a native nmethod");
kamg@2361 1078 int byte_offset = in_bytes(nm->native_basic_lock_sp_offset());
duke@435 1079 assert(byte_offset >= 0, "should not see invalid offset");
duke@435 1080 return (BasicLock*) &sp()[byte_offset / wordSize];
duke@435 1081 }
duke@435 1082
kamg@2361 1083 oop frame::get_native_receiver() {
kamg@2361 1084 nmethod* nm = (nmethod*)_cb;
kamg@2361 1085 assert(_cb != NULL && _cb->is_nmethod() && nm->method()->is_native(),
kamg@2361 1086 "Should not call this unless it's a native nmethod");
kamg@2361 1087 int byte_offset = in_bytes(nm->native_receiver_sp_offset());
duke@435 1088 assert(byte_offset >= 0, "should not see invalid offset");
duke@435 1089 oop owner = ((oop*) sp())[byte_offset / wordSize];
duke@435 1090 assert( Universe::heap()->is_in(owner), "bad receiver" );
duke@435 1091 return owner;
duke@435 1092 }
duke@435 1093
duke@435 1094 void frame::oops_entry_do(OopClosure* f, const RegisterMap* map) {
duke@435 1095 assert(map != NULL, "map must be set");
duke@435 1096 if (map->include_argument_oops()) {
duke@435 1097 // must collect argument oops, as nobody else is doing it
duke@435 1098 Thread *thread = Thread::current();
duke@435 1099 methodHandle m (thread, entry_frame_call_wrapper()->callee_method());
duke@435 1100 symbolHandle signature (thread, m->signature());
duke@435 1101 EntryFrameOopFinder finder(this, signature, m->is_static());
duke@435 1102 finder.arguments_do(f);
duke@435 1103 }
duke@435 1104 // Traverse the Handle Block saved in the entry frame
duke@435 1105 entry_frame_call_wrapper()->oops_do(f);
duke@435 1106 }
duke@435 1107
duke@435 1108
jrose@1424 1109 void frame::oops_do_internal(OopClosure* f, CodeBlobClosure* cf, RegisterMap* map, bool use_interpreter_oop_map_cache) {
minqi@1554 1110 #ifndef PRODUCT
minqi@1554 1111 // simulate GC crash here to dump java thread in error report
minqi@1554 1112 if (CrashGCForDumpingJavaThread) {
minqi@1554 1113 char *t = NULL;
minqi@1554 1114 *t = 'c';
minqi@1554 1115 }
minqi@1554 1116 #endif
minqi@1554 1117 if (is_interpreted_frame()) {
minqi@1554 1118 oops_interpreted_do(f, map, use_interpreter_oop_map_cache);
minqi@1554 1119 } else if (is_entry_frame()) {
minqi@1554 1120 oops_entry_do(f, map);
minqi@1554 1121 } else if (CodeCache::contains(pc())) {
minqi@1554 1122 oops_code_blob_do(f, cf, map);
twisti@2047 1123 #ifdef SHARK
twisti@2047 1124 } else if (is_fake_stub_frame()) {
twisti@2047 1125 // nothing to do
twisti@2047 1126 #endif // SHARK
duke@435 1127 } else {
duke@435 1128 ShouldNotReachHere();
duke@435 1129 }
duke@435 1130 }
duke@435 1131
jrose@1424 1132 void frame::nmethods_do(CodeBlobClosure* cf) {
duke@435 1133 if (_cb != NULL && _cb->is_nmethod()) {
jrose@1424 1134 cf->do_code_blob(_cb);
duke@435 1135 }
duke@435 1136 }
duke@435 1137
duke@435 1138
duke@435 1139 void frame::gc_prologue() {
duke@435 1140 if (is_interpreted_frame()) {
duke@435 1141 // set bcx to bci to become methodOop position independent during GC
duke@435 1142 interpreter_frame_set_bcx(interpreter_frame_bci());
duke@435 1143 }
duke@435 1144 }
duke@435 1145
duke@435 1146
duke@435 1147 void frame::gc_epilogue() {
duke@435 1148 if (is_interpreted_frame()) {
duke@435 1149 // set bcx back to bcp for interpreter
duke@435 1150 interpreter_frame_set_bcx((intptr_t)interpreter_frame_bcp());
duke@435 1151 }
duke@435 1152 // call processor specific epilog function
duke@435 1153 pd_gc_epilog();
duke@435 1154 }
duke@435 1155
duke@435 1156
duke@435 1157 # ifdef ENABLE_ZAP_DEAD_LOCALS
duke@435 1158
duke@435 1159 void frame::CheckValueClosure::do_oop(oop* p) {
duke@435 1160 if (CheckOopishValues && Universe::heap()->is_in_reserved(*p)) {
duke@435 1161 warning("value @ " INTPTR_FORMAT " looks oopish (" INTPTR_FORMAT ") (thread = " INTPTR_FORMAT ")", p, (address)*p, Thread::current());
duke@435 1162 }
duke@435 1163 }
duke@435 1164 frame::CheckValueClosure frame::_check_value;
duke@435 1165
duke@435 1166
duke@435 1167 void frame::CheckOopClosure::do_oop(oop* p) {
duke@435 1168 if (*p != NULL && !(*p)->is_oop()) {
duke@435 1169 warning("value @ " INTPTR_FORMAT " should be an oop (" INTPTR_FORMAT ") (thread = " INTPTR_FORMAT ")", p, (address)*p, Thread::current());
duke@435 1170 }
duke@435 1171 }
duke@435 1172 frame::CheckOopClosure frame::_check_oop;
duke@435 1173
duke@435 1174 void frame::check_derived_oop(oop* base, oop* derived) {
duke@435 1175 _check_oop.do_oop(base);
duke@435 1176 }
duke@435 1177
duke@435 1178
duke@435 1179 void frame::ZapDeadClosure::do_oop(oop* p) {
duke@435 1180 if (TraceZapDeadLocals) tty->print_cr("zapping @ " INTPTR_FORMAT " containing " INTPTR_FORMAT, p, (address)*p);
duke@435 1181 // Need cast because on _LP64 the conversion to oop is ambiguous. Constant
duke@435 1182 // can be either long or int.
duke@435 1183 *p = (oop)(int)0xbabebabe;
duke@435 1184 }
duke@435 1185 frame::ZapDeadClosure frame::_zap_dead;
duke@435 1186
duke@435 1187 void frame::zap_dead_locals(JavaThread* thread, const RegisterMap* map) {
duke@435 1188 assert(thread == Thread::current(), "need to synchronize to do this to another thread");
duke@435 1189 // Tracing - part 1
duke@435 1190 if (TraceZapDeadLocals) {
duke@435 1191 ResourceMark rm(thread);
duke@435 1192 tty->print_cr("--------------------------------------------------------------------------------");
duke@435 1193 tty->print("Zapping dead locals in ");
duke@435 1194 print_on(tty);
duke@435 1195 tty->cr();
duke@435 1196 }
duke@435 1197 // Zapping
duke@435 1198 if (is_entry_frame ()) zap_dead_entry_locals (thread, map);
duke@435 1199 else if (is_interpreted_frame()) zap_dead_interpreted_locals(thread, map);
duke@435 1200 else if (is_compiled_frame()) zap_dead_compiled_locals (thread, map);
duke@435 1201
duke@435 1202 else
duke@435 1203 // could be is_runtime_frame
duke@435 1204 // so remove error: ShouldNotReachHere();
duke@435 1205 ;
duke@435 1206 // Tracing - part 2
duke@435 1207 if (TraceZapDeadLocals) {
duke@435 1208 tty->cr();
duke@435 1209 }
duke@435 1210 }
duke@435 1211
duke@435 1212
duke@435 1213 void frame::zap_dead_interpreted_locals(JavaThread *thread, const RegisterMap* map) {
duke@435 1214 // get current interpreter 'pc'
duke@435 1215 assert(is_interpreted_frame(), "Not an interpreted frame");
duke@435 1216 methodOop m = interpreter_frame_method();
duke@435 1217 int bci = interpreter_frame_bci();
duke@435 1218
duke@435 1219 int max_locals = m->is_native() ? m->size_of_parameters() : m->max_locals();
duke@435 1220
twisti@1861 1221 // process dynamic part
twisti@1861 1222 InterpreterFrameClosure value_blk(this, max_locals, m->max_stack(),
twisti@1861 1223 &_check_value);
twisti@1861 1224 InterpreterFrameClosure oop_blk(this, max_locals, m->max_stack(),
twisti@1861 1225 &_check_oop );
twisti@1861 1226 InterpreterFrameClosure dead_blk(this, max_locals, m->max_stack(),
twisti@1861 1227 &_zap_dead );
duke@435 1228
twisti@1861 1229 // get frame map
twisti@1861 1230 InterpreterOopMap mask;
twisti@1861 1231 m->mask_for(bci, &mask);
twisti@1861 1232 mask.iterate_all( &oop_blk, &value_blk, &dead_blk);
duke@435 1233 }
duke@435 1234
duke@435 1235
duke@435 1236 void frame::zap_dead_compiled_locals(JavaThread* thread, const RegisterMap* reg_map) {
duke@435 1237
duke@435 1238 ResourceMark rm(thread);
duke@435 1239 assert(_cb != NULL, "sanity check");
duke@435 1240 if (_cb->oop_maps() != NULL) {
coleenp@548 1241 OopMapSet::all_do(this, reg_map, &_check_oop, check_derived_oop, &_check_value);
duke@435 1242 }
duke@435 1243 }
duke@435 1244
duke@435 1245
duke@435 1246 void frame::zap_dead_entry_locals(JavaThread*, const RegisterMap*) {
duke@435 1247 if (TraceZapDeadLocals) warning("frame::zap_dead_entry_locals unimplemented");
duke@435 1248 }
duke@435 1249
duke@435 1250
duke@435 1251 void frame::zap_dead_deoptimized_locals(JavaThread*, const RegisterMap*) {
duke@435 1252 if (TraceZapDeadLocals) warning("frame::zap_dead_deoptimized_locals unimplemented");
duke@435 1253 }
duke@435 1254
duke@435 1255 # endif // ENABLE_ZAP_DEAD_LOCALS
duke@435 1256
duke@435 1257 void frame::verify(const RegisterMap* map) {
duke@435 1258 // for now make sure receiver type is correct
duke@435 1259 if (is_interpreted_frame()) {
duke@435 1260 methodOop method = interpreter_frame_method();
duke@435 1261 guarantee(method->is_method(), "method is wrong in frame::verify");
duke@435 1262 if (!method->is_static()) {
duke@435 1263 // fetch the receiver
duke@435 1264 oop* p = (oop*) interpreter_frame_local_at(0);
duke@435 1265 // make sure we have the right receiver type
duke@435 1266 }
duke@435 1267 }
duke@435 1268 COMPILER2_PRESENT(assert(DerivedPointerTable::is_empty(), "must be empty before verify");)
jrose@1424 1269 oops_do_internal(&VerifyOopClosure::verify_oop, NULL, (RegisterMap*)map, false);
duke@435 1270 }
duke@435 1271
duke@435 1272
duke@435 1273 #ifdef ASSERT
duke@435 1274 bool frame::verify_return_pc(address x) {
duke@435 1275 if (StubRoutines::returns_to_call_stub(x)) {
duke@435 1276 return true;
duke@435 1277 }
duke@435 1278 if (CodeCache::contains(x)) {
duke@435 1279 return true;
duke@435 1280 }
duke@435 1281 if (Interpreter::contains(x)) {
duke@435 1282 return true;
duke@435 1283 }
duke@435 1284 return false;
duke@435 1285 }
duke@435 1286 #endif
duke@435 1287
duke@435 1288
duke@435 1289 #ifdef ASSERT
duke@435 1290 void frame::interpreter_frame_verify_monitor(BasicObjectLock* value) const {
duke@435 1291 assert(is_interpreted_frame(), "Not an interpreted frame");
duke@435 1292 // verify that the value is in the right part of the frame
duke@435 1293 address low_mark = (address) interpreter_frame_monitor_end();
duke@435 1294 address high_mark = (address) interpreter_frame_monitor_begin();
duke@435 1295 address current = (address) value;
duke@435 1296
duke@435 1297 const int monitor_size = frame::interpreter_frame_monitor_size();
duke@435 1298 guarantee((high_mark - current) % monitor_size == 0 , "Misaligned top of BasicObjectLock*");
duke@435 1299 guarantee( high_mark > current , "Current BasicObjectLock* higher than high_mark");
duke@435 1300
duke@435 1301 guarantee((current - low_mark) % monitor_size == 0 , "Misaligned bottom of BasicObjectLock*");
duke@435 1302 guarantee( current >= low_mark , "Current BasicObjectLock* below than low_mark");
duke@435 1303 }
duke@435 1304 #endif
duke@435 1305
duke@435 1306
duke@435 1307 //-----------------------------------------------------------------------------------
duke@435 1308 // StackFrameStream implementation
duke@435 1309
duke@435 1310 StackFrameStream::StackFrameStream(JavaThread *thread, bool update) : _reg_map(thread, update) {
duke@435 1311 assert(thread->has_last_Java_frame(), "sanity check");
duke@435 1312 _fr = thread->last_frame();
duke@435 1313 _is_done = false;
duke@435 1314 }

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