src/share/vm/code/nmethod.cpp

Wed, 02 Sep 2009 00:04:29 -0700

author
ysr
date
Wed, 02 Sep 2009 00:04:29 -0700
changeset 1376
8b46c4d82093
parent 1040
98cb887364d3
child 1378
b1606b3c0a8a
permissions
-rw-r--r--

4957990: Perm heap bloat in JVM
Summary: Treat ProfileData in MDO's as a source of weak, not strong, roots. Fixes the bug for stop-world collection -- the case of concurrent collection will be fixed separately.
Reviewed-by: jcoomes, jmasa, kvn, never

duke@435 1 /*
xdono@631 2 * Copyright 1997-2008 Sun Microsystems, Inc. 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 *
duke@435 19 * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
duke@435 20 * CA 95054 USA or visit www.sun.com if you need additional information or
duke@435 21 * have any questions.
duke@435 22 *
duke@435 23 */
duke@435 24
duke@435 25 # include "incls/_precompiled.incl"
duke@435 26 # include "incls/_nmethod.cpp.incl"
duke@435 27
duke@435 28 #ifdef DTRACE_ENABLED
duke@435 29
duke@435 30 // Only bother with this argument setup if dtrace is available
duke@435 31
duke@435 32 HS_DTRACE_PROBE_DECL8(hotspot, compiled__method__load,
duke@435 33 const char*, int, const char*, int, const char*, int, void*, size_t);
duke@435 34
duke@435 35 HS_DTRACE_PROBE_DECL6(hotspot, compiled__method__unload,
duke@435 36 char*, int, char*, int, char*, int);
duke@435 37
duke@435 38 #define DTRACE_METHOD_UNLOAD_PROBE(method) \
duke@435 39 { \
duke@435 40 methodOop m = (method); \
duke@435 41 if (m != NULL) { \
duke@435 42 symbolOop klass_name = m->klass_name(); \
duke@435 43 symbolOop name = m->name(); \
duke@435 44 symbolOop signature = m->signature(); \
duke@435 45 HS_DTRACE_PROBE6(hotspot, compiled__method__unload, \
duke@435 46 klass_name->bytes(), klass_name->utf8_length(), \
duke@435 47 name->bytes(), name->utf8_length(), \
duke@435 48 signature->bytes(), signature->utf8_length()); \
duke@435 49 } \
duke@435 50 }
duke@435 51
duke@435 52 #else // ndef DTRACE_ENABLED
duke@435 53
duke@435 54 #define DTRACE_METHOD_UNLOAD_PROBE(method)
duke@435 55
duke@435 56 #endif
duke@435 57
duke@435 58 bool nmethod::is_compiled_by_c1() const {
duke@435 59 if (is_native_method()) return false;
duke@435 60 assert(compiler() != NULL, "must be");
duke@435 61 return compiler()->is_c1();
duke@435 62 }
duke@435 63 bool nmethod::is_compiled_by_c2() const {
duke@435 64 if (is_native_method()) return false;
duke@435 65 assert(compiler() != NULL, "must be");
duke@435 66 return compiler()->is_c2();
duke@435 67 }
duke@435 68
duke@435 69
duke@435 70
duke@435 71 //---------------------------------------------------------------------------------
duke@435 72 // NMethod statistics
duke@435 73 // They are printed under various flags, including:
duke@435 74 // PrintC1Statistics, PrintOptoStatistics, LogVMOutput, and LogCompilation.
duke@435 75 // (In the latter two cases, they like other stats are printed to the log only.)
duke@435 76
duke@435 77 #ifndef PRODUCT
duke@435 78 // These variables are put into one block to reduce relocations
duke@435 79 // and make it simpler to print from the debugger.
duke@435 80 static
duke@435 81 struct nmethod_stats_struct {
duke@435 82 int nmethod_count;
duke@435 83 int total_size;
duke@435 84 int relocation_size;
duke@435 85 int code_size;
duke@435 86 int stub_size;
duke@435 87 int consts_size;
duke@435 88 int scopes_data_size;
duke@435 89 int scopes_pcs_size;
duke@435 90 int dependencies_size;
duke@435 91 int handler_table_size;
duke@435 92 int nul_chk_table_size;
duke@435 93 int oops_size;
duke@435 94
duke@435 95 void note_nmethod(nmethod* nm) {
duke@435 96 nmethod_count += 1;
duke@435 97 total_size += nm->size();
duke@435 98 relocation_size += nm->relocation_size();
duke@435 99 code_size += nm->code_size();
duke@435 100 stub_size += nm->stub_size();
duke@435 101 consts_size += nm->consts_size();
duke@435 102 scopes_data_size += nm->scopes_data_size();
duke@435 103 scopes_pcs_size += nm->scopes_pcs_size();
duke@435 104 dependencies_size += nm->dependencies_size();
duke@435 105 handler_table_size += nm->handler_table_size();
duke@435 106 nul_chk_table_size += nm->nul_chk_table_size();
duke@435 107 oops_size += nm->oops_size();
duke@435 108 }
duke@435 109 void print_nmethod_stats() {
duke@435 110 if (nmethod_count == 0) return;
duke@435 111 tty->print_cr("Statistics for %d bytecoded nmethods:", nmethod_count);
duke@435 112 if (total_size != 0) tty->print_cr(" total in heap = %d", total_size);
duke@435 113 if (relocation_size != 0) tty->print_cr(" relocation = %d", relocation_size);
duke@435 114 if (code_size != 0) tty->print_cr(" main code = %d", code_size);
duke@435 115 if (stub_size != 0) tty->print_cr(" stub code = %d", stub_size);
duke@435 116 if (consts_size != 0) tty->print_cr(" constants = %d", consts_size);
duke@435 117 if (scopes_data_size != 0) tty->print_cr(" scopes data = %d", scopes_data_size);
duke@435 118 if (scopes_pcs_size != 0) tty->print_cr(" scopes pcs = %d", scopes_pcs_size);
duke@435 119 if (dependencies_size != 0) tty->print_cr(" dependencies = %d", dependencies_size);
duke@435 120 if (handler_table_size != 0) tty->print_cr(" handler table = %d", handler_table_size);
duke@435 121 if (nul_chk_table_size != 0) tty->print_cr(" nul chk table = %d", nul_chk_table_size);
duke@435 122 if (oops_size != 0) tty->print_cr(" oops = %d", oops_size);
duke@435 123 }
duke@435 124
duke@435 125 int native_nmethod_count;
duke@435 126 int native_total_size;
duke@435 127 int native_relocation_size;
duke@435 128 int native_code_size;
duke@435 129 int native_oops_size;
duke@435 130 void note_native_nmethod(nmethod* nm) {
duke@435 131 native_nmethod_count += 1;
duke@435 132 native_total_size += nm->size();
duke@435 133 native_relocation_size += nm->relocation_size();
duke@435 134 native_code_size += nm->code_size();
duke@435 135 native_oops_size += nm->oops_size();
duke@435 136 }
duke@435 137 void print_native_nmethod_stats() {
duke@435 138 if (native_nmethod_count == 0) return;
duke@435 139 tty->print_cr("Statistics for %d native nmethods:", native_nmethod_count);
duke@435 140 if (native_total_size != 0) tty->print_cr(" N. total size = %d", native_total_size);
duke@435 141 if (native_relocation_size != 0) tty->print_cr(" N. relocation = %d", native_relocation_size);
duke@435 142 if (native_code_size != 0) tty->print_cr(" N. main code = %d", native_code_size);
duke@435 143 if (native_oops_size != 0) tty->print_cr(" N. oops = %d", native_oops_size);
duke@435 144 }
duke@435 145
duke@435 146 int pc_desc_resets; // number of resets (= number of caches)
duke@435 147 int pc_desc_queries; // queries to nmethod::find_pc_desc
duke@435 148 int pc_desc_approx; // number of those which have approximate true
duke@435 149 int pc_desc_repeats; // number of _last_pc_desc hits
duke@435 150 int pc_desc_hits; // number of LRU cache hits
duke@435 151 int pc_desc_tests; // total number of PcDesc examinations
duke@435 152 int pc_desc_searches; // total number of quasi-binary search steps
duke@435 153 int pc_desc_adds; // number of LUR cache insertions
duke@435 154
duke@435 155 void print_pc_stats() {
duke@435 156 tty->print_cr("PcDesc Statistics: %d queries, %.2f comparisons per query",
duke@435 157 pc_desc_queries,
duke@435 158 (double)(pc_desc_tests + pc_desc_searches)
duke@435 159 / pc_desc_queries);
duke@435 160 tty->print_cr(" caches=%d queries=%d/%d, hits=%d+%d, tests=%d+%d, adds=%d",
duke@435 161 pc_desc_resets,
duke@435 162 pc_desc_queries, pc_desc_approx,
duke@435 163 pc_desc_repeats, pc_desc_hits,
duke@435 164 pc_desc_tests, pc_desc_searches, pc_desc_adds);
duke@435 165 }
duke@435 166 } nmethod_stats;
duke@435 167 #endif //PRODUCT
duke@435 168
duke@435 169 //---------------------------------------------------------------------------------
duke@435 170
duke@435 171
duke@435 172 // The _unwind_handler is a special marker address, which says that
duke@435 173 // for given exception oop and address, the frame should be removed
duke@435 174 // as the tuple cannot be caught in the nmethod
duke@435 175 address ExceptionCache::_unwind_handler = (address) -1;
duke@435 176
duke@435 177
duke@435 178 ExceptionCache::ExceptionCache(Handle exception, address pc, address handler) {
duke@435 179 assert(pc != NULL, "Must be non null");
duke@435 180 assert(exception.not_null(), "Must be non null");
duke@435 181 assert(handler != NULL, "Must be non null");
duke@435 182
duke@435 183 _count = 0;
duke@435 184 _exception_type = exception->klass();
duke@435 185 _next = NULL;
duke@435 186
duke@435 187 add_address_and_handler(pc,handler);
duke@435 188 }
duke@435 189
duke@435 190
duke@435 191 address ExceptionCache::match(Handle exception, address pc) {
duke@435 192 assert(pc != NULL,"Must be non null");
duke@435 193 assert(exception.not_null(),"Must be non null");
duke@435 194 if (exception->klass() == exception_type()) {
duke@435 195 return (test_address(pc));
duke@435 196 }
duke@435 197
duke@435 198 return NULL;
duke@435 199 }
duke@435 200
duke@435 201
duke@435 202 bool ExceptionCache::match_exception_with_space(Handle exception) {
duke@435 203 assert(exception.not_null(),"Must be non null");
duke@435 204 if (exception->klass() == exception_type() && count() < cache_size) {
duke@435 205 return true;
duke@435 206 }
duke@435 207 return false;
duke@435 208 }
duke@435 209
duke@435 210
duke@435 211 address ExceptionCache::test_address(address addr) {
duke@435 212 for (int i=0; i<count(); i++) {
duke@435 213 if (pc_at(i) == addr) {
duke@435 214 return handler_at(i);
duke@435 215 }
duke@435 216 }
duke@435 217 return NULL;
duke@435 218 }
duke@435 219
duke@435 220
duke@435 221 bool ExceptionCache::add_address_and_handler(address addr, address handler) {
duke@435 222 if (test_address(addr) == handler) return true;
duke@435 223 if (count() < cache_size) {
duke@435 224 set_pc_at(count(),addr);
duke@435 225 set_handler_at(count(), handler);
duke@435 226 increment_count();
duke@435 227 return true;
duke@435 228 }
duke@435 229 return false;
duke@435 230 }
duke@435 231
duke@435 232
duke@435 233 // private method for handling exception cache
duke@435 234 // These methods are private, and used to manipulate the exception cache
duke@435 235 // directly.
duke@435 236 ExceptionCache* nmethod::exception_cache_entry_for_exception(Handle exception) {
duke@435 237 ExceptionCache* ec = exception_cache();
duke@435 238 while (ec != NULL) {
duke@435 239 if (ec->match_exception_with_space(exception)) {
duke@435 240 return ec;
duke@435 241 }
duke@435 242 ec = ec->next();
duke@435 243 }
duke@435 244 return NULL;
duke@435 245 }
duke@435 246
duke@435 247
duke@435 248 //-----------------------------------------------------------------------------
duke@435 249
duke@435 250
duke@435 251 // Helper used by both find_pc_desc methods.
duke@435 252 static inline bool match_desc(PcDesc* pc, int pc_offset, bool approximate) {
duke@435 253 NOT_PRODUCT(++nmethod_stats.pc_desc_tests);
duke@435 254 if (!approximate)
duke@435 255 return pc->pc_offset() == pc_offset;
duke@435 256 else
duke@435 257 return (pc-1)->pc_offset() < pc_offset && pc_offset <= pc->pc_offset();
duke@435 258 }
duke@435 259
duke@435 260 void PcDescCache::reset_to(PcDesc* initial_pc_desc) {
duke@435 261 if (initial_pc_desc == NULL) {
duke@435 262 _last_pc_desc = NULL; // native method
duke@435 263 return;
duke@435 264 }
duke@435 265 NOT_PRODUCT(++nmethod_stats.pc_desc_resets);
duke@435 266 // reset the cache by filling it with benign (non-null) values
duke@435 267 assert(initial_pc_desc->pc_offset() < 0, "must be sentinel");
duke@435 268 _last_pc_desc = initial_pc_desc + 1; // first valid one is after sentinel
duke@435 269 for (int i = 0; i < cache_size; i++)
duke@435 270 _pc_descs[i] = initial_pc_desc;
duke@435 271 }
duke@435 272
duke@435 273 PcDesc* PcDescCache::find_pc_desc(int pc_offset, bool approximate) {
duke@435 274 NOT_PRODUCT(++nmethod_stats.pc_desc_queries);
duke@435 275 NOT_PRODUCT(if (approximate) ++nmethod_stats.pc_desc_approx);
duke@435 276
duke@435 277 // In order to prevent race conditions do not load cache elements
duke@435 278 // repeatedly, but use a local copy:
duke@435 279 PcDesc* res;
duke@435 280
duke@435 281 // Step one: Check the most recently returned value.
duke@435 282 res = _last_pc_desc;
duke@435 283 if (res == NULL) return NULL; // native method; no PcDescs at all
duke@435 284 if (match_desc(res, pc_offset, approximate)) {
duke@435 285 NOT_PRODUCT(++nmethod_stats.pc_desc_repeats);
duke@435 286 return res;
duke@435 287 }
duke@435 288
duke@435 289 // Step two: Check the LRU cache.
duke@435 290 for (int i = 0; i < cache_size; i++) {
duke@435 291 res = _pc_descs[i];
duke@435 292 if (res->pc_offset() < 0) break; // optimization: skip empty cache
duke@435 293 if (match_desc(res, pc_offset, approximate)) {
duke@435 294 NOT_PRODUCT(++nmethod_stats.pc_desc_hits);
duke@435 295 _last_pc_desc = res; // record this cache hit in case of repeat
duke@435 296 return res;
duke@435 297 }
duke@435 298 }
duke@435 299
duke@435 300 // Report failure.
duke@435 301 return NULL;
duke@435 302 }
duke@435 303
duke@435 304 void PcDescCache::add_pc_desc(PcDesc* pc_desc) {
duke@435 305 NOT_PRODUCT(++nmethod_stats.pc_desc_adds);
duke@435 306 // Update the LRU cache by shifting pc_desc forward:
duke@435 307 for (int i = 0; i < cache_size; i++) {
duke@435 308 PcDesc* next = _pc_descs[i];
duke@435 309 _pc_descs[i] = pc_desc;
duke@435 310 pc_desc = next;
duke@435 311 }
duke@435 312 // Note: Do not update _last_pc_desc. It fronts for the LRU cache.
duke@435 313 }
duke@435 314
duke@435 315 // adjust pcs_size so that it is a multiple of both oopSize and
duke@435 316 // sizeof(PcDesc) (assumes that if sizeof(PcDesc) is not a multiple
duke@435 317 // of oopSize, then 2*sizeof(PcDesc) is)
duke@435 318 static int adjust_pcs_size(int pcs_size) {
duke@435 319 int nsize = round_to(pcs_size, oopSize);
duke@435 320 if ((nsize % sizeof(PcDesc)) != 0) {
duke@435 321 nsize = pcs_size + sizeof(PcDesc);
duke@435 322 }
duke@435 323 assert((nsize % oopSize) == 0, "correct alignment");
duke@435 324 return nsize;
duke@435 325 }
duke@435 326
duke@435 327 //-----------------------------------------------------------------------------
duke@435 328
duke@435 329
duke@435 330 void nmethod::add_exception_cache_entry(ExceptionCache* new_entry) {
duke@435 331 assert(ExceptionCache_lock->owned_by_self(),"Must hold the ExceptionCache_lock");
duke@435 332 assert(new_entry != NULL,"Must be non null");
duke@435 333 assert(new_entry->next() == NULL, "Must be null");
duke@435 334
duke@435 335 if (exception_cache() != NULL) {
duke@435 336 new_entry->set_next(exception_cache());
duke@435 337 }
duke@435 338 set_exception_cache(new_entry);
duke@435 339 }
duke@435 340
duke@435 341 void nmethod::remove_from_exception_cache(ExceptionCache* ec) {
duke@435 342 ExceptionCache* prev = NULL;
duke@435 343 ExceptionCache* curr = exception_cache();
duke@435 344 assert(curr != NULL, "nothing to remove");
duke@435 345 // find the previous and next entry of ec
duke@435 346 while (curr != ec) {
duke@435 347 prev = curr;
duke@435 348 curr = curr->next();
duke@435 349 assert(curr != NULL, "ExceptionCache not found");
duke@435 350 }
duke@435 351 // now: curr == ec
duke@435 352 ExceptionCache* next = curr->next();
duke@435 353 if (prev == NULL) {
duke@435 354 set_exception_cache(next);
duke@435 355 } else {
duke@435 356 prev->set_next(next);
duke@435 357 }
duke@435 358 delete curr;
duke@435 359 }
duke@435 360
duke@435 361
duke@435 362 // public method for accessing the exception cache
duke@435 363 // These are the public access methods.
duke@435 364 address nmethod::handler_for_exception_and_pc(Handle exception, address pc) {
duke@435 365 // We never grab a lock to read the exception cache, so we may
duke@435 366 // have false negatives. This is okay, as it can only happen during
duke@435 367 // the first few exception lookups for a given nmethod.
duke@435 368 ExceptionCache* ec = exception_cache();
duke@435 369 while (ec != NULL) {
duke@435 370 address ret_val;
duke@435 371 if ((ret_val = ec->match(exception,pc)) != NULL) {
duke@435 372 return ret_val;
duke@435 373 }
duke@435 374 ec = ec->next();
duke@435 375 }
duke@435 376 return NULL;
duke@435 377 }
duke@435 378
duke@435 379
duke@435 380 void nmethod::add_handler_for_exception_and_pc(Handle exception, address pc, address handler) {
duke@435 381 // There are potential race conditions during exception cache updates, so we
duke@435 382 // must own the ExceptionCache_lock before doing ANY modifications. Because
twisti@1040 383 // we don't lock during reads, it is possible to have several threads attempt
duke@435 384 // to update the cache with the same data. We need to check for already inserted
duke@435 385 // copies of the current data before adding it.
duke@435 386
duke@435 387 MutexLocker ml(ExceptionCache_lock);
duke@435 388 ExceptionCache* target_entry = exception_cache_entry_for_exception(exception);
duke@435 389
duke@435 390 if (target_entry == NULL || !target_entry->add_address_and_handler(pc,handler)) {
duke@435 391 target_entry = new ExceptionCache(exception,pc,handler);
duke@435 392 add_exception_cache_entry(target_entry);
duke@435 393 }
duke@435 394 }
duke@435 395
duke@435 396
duke@435 397 //-------------end of code for ExceptionCache--------------
duke@435 398
duke@435 399
duke@435 400 void nmFlags::clear() {
duke@435 401 assert(sizeof(nmFlags) == sizeof(int), "using more than one word for nmFlags");
duke@435 402 *(jint*)this = 0;
duke@435 403 }
duke@435 404
duke@435 405 int nmethod::total_size() const {
duke@435 406 return
duke@435 407 code_size() +
duke@435 408 stub_size() +
duke@435 409 consts_size() +
duke@435 410 scopes_data_size() +
duke@435 411 scopes_pcs_size() +
duke@435 412 handler_table_size() +
duke@435 413 nul_chk_table_size();
duke@435 414 }
duke@435 415
duke@435 416 const char* nmethod::compile_kind() const {
duke@435 417 if (method() == NULL) return "unloaded";
duke@435 418 if (is_native_method()) return "c2n";
duke@435 419 if (is_osr_method()) return "osr";
duke@435 420 return NULL;
duke@435 421 }
duke@435 422
duke@435 423 // %%% This variable is no longer used?
duke@435 424 int nmethod::_zombie_instruction_size = NativeJump::instruction_size;
duke@435 425
duke@435 426
duke@435 427 nmethod* nmethod::new_native_nmethod(methodHandle method,
duke@435 428 CodeBuffer *code_buffer,
duke@435 429 int vep_offset,
duke@435 430 int frame_complete,
duke@435 431 int frame_size,
duke@435 432 ByteSize basic_lock_owner_sp_offset,
duke@435 433 ByteSize basic_lock_sp_offset,
duke@435 434 OopMapSet* oop_maps) {
duke@435 435 // create nmethod
duke@435 436 nmethod* nm = NULL;
duke@435 437 {
duke@435 438 MutexLockerEx mu(CodeCache_lock, Mutex::_no_safepoint_check_flag);
duke@435 439 int native_nmethod_size = allocation_size(code_buffer, sizeof(nmethod));
duke@435 440 CodeOffsets offsets;
duke@435 441 offsets.set_value(CodeOffsets::Verified_Entry, vep_offset);
duke@435 442 offsets.set_value(CodeOffsets::Frame_Complete, frame_complete);
duke@435 443 nm = new (native_nmethod_size)
duke@435 444 nmethod(method(), native_nmethod_size, &offsets,
duke@435 445 code_buffer, frame_size,
duke@435 446 basic_lock_owner_sp_offset, basic_lock_sp_offset,
duke@435 447 oop_maps);
duke@435 448 NOT_PRODUCT(if (nm != NULL) nmethod_stats.note_native_nmethod(nm));
duke@435 449 if (PrintAssembly && nm != NULL)
duke@435 450 Disassembler::decode(nm);
duke@435 451 }
duke@435 452 // verify nmethod
duke@435 453 debug_only(if (nm) nm->verify();) // might block
duke@435 454
duke@435 455 if (nm != NULL) {
duke@435 456 nm->log_new_nmethod();
duke@435 457 }
duke@435 458
duke@435 459 return nm;
duke@435 460 }
duke@435 461
kamg@551 462 #ifdef HAVE_DTRACE_H
kamg@551 463 nmethod* nmethod::new_dtrace_nmethod(methodHandle method,
kamg@551 464 CodeBuffer *code_buffer,
kamg@551 465 int vep_offset,
kamg@551 466 int trap_offset,
kamg@551 467 int frame_complete,
kamg@551 468 int frame_size) {
kamg@551 469 // create nmethod
kamg@551 470 nmethod* nm = NULL;
kamg@551 471 {
kamg@551 472 MutexLockerEx mu(CodeCache_lock, Mutex::_no_safepoint_check_flag);
kamg@551 473 int nmethod_size = allocation_size(code_buffer, sizeof(nmethod));
kamg@551 474 CodeOffsets offsets;
kamg@551 475 offsets.set_value(CodeOffsets::Verified_Entry, vep_offset);
kamg@551 476 offsets.set_value(CodeOffsets::Dtrace_trap, trap_offset);
kamg@551 477 offsets.set_value(CodeOffsets::Frame_Complete, frame_complete);
kamg@551 478
kamg@551 479 nm = new (nmethod_size) nmethod(method(), nmethod_size, &offsets, code_buffer, frame_size);
kamg@551 480
kamg@551 481 NOT_PRODUCT(if (nm != NULL) nmethod_stats.note_nmethod(nm));
kamg@551 482 if (PrintAssembly && nm != NULL)
kamg@551 483 Disassembler::decode(nm);
kamg@551 484 }
kamg@551 485 // verify nmethod
kamg@551 486 debug_only(if (nm) nm->verify();) // might block
kamg@551 487
kamg@551 488 if (nm != NULL) {
kamg@551 489 nm->log_new_nmethod();
kamg@551 490 }
kamg@551 491
kamg@551 492 return nm;
kamg@551 493 }
kamg@551 494
kamg@551 495 #endif // def HAVE_DTRACE_H
kamg@551 496
duke@435 497 nmethod* nmethod::new_nmethod(methodHandle method,
duke@435 498 int compile_id,
duke@435 499 int entry_bci,
duke@435 500 CodeOffsets* offsets,
duke@435 501 int orig_pc_offset,
duke@435 502 DebugInformationRecorder* debug_info,
duke@435 503 Dependencies* dependencies,
duke@435 504 CodeBuffer* code_buffer, int frame_size,
duke@435 505 OopMapSet* oop_maps,
duke@435 506 ExceptionHandlerTable* handler_table,
duke@435 507 ImplicitExceptionTable* nul_chk_table,
duke@435 508 AbstractCompiler* compiler,
duke@435 509 int comp_level
duke@435 510 )
duke@435 511 {
duke@435 512 assert(debug_info->oop_recorder() == code_buffer->oop_recorder(), "shared OR");
duke@435 513 // create nmethod
duke@435 514 nmethod* nm = NULL;
duke@435 515 { MutexLockerEx mu(CodeCache_lock, Mutex::_no_safepoint_check_flag);
duke@435 516 int nmethod_size =
duke@435 517 allocation_size(code_buffer, sizeof(nmethod))
duke@435 518 + adjust_pcs_size(debug_info->pcs_size())
duke@435 519 + round_to(dependencies->size_in_bytes() , oopSize)
duke@435 520 + round_to(handler_table->size_in_bytes(), oopSize)
duke@435 521 + round_to(nul_chk_table->size_in_bytes(), oopSize)
duke@435 522 + round_to(debug_info->data_size() , oopSize);
duke@435 523 nm = new (nmethod_size)
duke@435 524 nmethod(method(), nmethod_size, compile_id, entry_bci, offsets,
duke@435 525 orig_pc_offset, debug_info, dependencies, code_buffer, frame_size,
duke@435 526 oop_maps,
duke@435 527 handler_table,
duke@435 528 nul_chk_table,
duke@435 529 compiler,
duke@435 530 comp_level);
duke@435 531 if (nm != NULL) {
duke@435 532 // To make dependency checking during class loading fast, record
duke@435 533 // the nmethod dependencies in the classes it is dependent on.
duke@435 534 // This allows the dependency checking code to simply walk the
duke@435 535 // class hierarchy above the loaded class, checking only nmethods
duke@435 536 // which are dependent on those classes. The slow way is to
duke@435 537 // check every nmethod for dependencies which makes it linear in
duke@435 538 // the number of methods compiled. For applications with a lot
duke@435 539 // classes the slow way is too slow.
duke@435 540 for (Dependencies::DepStream deps(nm); deps.next(); ) {
duke@435 541 klassOop klass = deps.context_type();
duke@435 542 if (klass == NULL) continue; // ignore things like evol_method
duke@435 543
duke@435 544 // record this nmethod as dependent on this klass
duke@435 545 instanceKlass::cast(klass)->add_dependent_nmethod(nm);
duke@435 546 }
duke@435 547 }
duke@435 548 NOT_PRODUCT(if (nm != NULL) nmethod_stats.note_nmethod(nm));
duke@435 549 if (PrintAssembly && nm != NULL)
duke@435 550 Disassembler::decode(nm);
duke@435 551 }
duke@435 552
duke@435 553 // verify nmethod
duke@435 554 debug_only(if (nm) nm->verify();) // might block
duke@435 555
duke@435 556 if (nm != NULL) {
duke@435 557 nm->log_new_nmethod();
duke@435 558 }
duke@435 559
duke@435 560 // done
duke@435 561 return nm;
duke@435 562 }
duke@435 563
duke@435 564
duke@435 565 // For native wrappers
duke@435 566 nmethod::nmethod(
duke@435 567 methodOop method,
duke@435 568 int nmethod_size,
duke@435 569 CodeOffsets* offsets,
duke@435 570 CodeBuffer* code_buffer,
duke@435 571 int frame_size,
duke@435 572 ByteSize basic_lock_owner_sp_offset,
duke@435 573 ByteSize basic_lock_sp_offset,
duke@435 574 OopMapSet* oop_maps )
duke@435 575 : CodeBlob("native nmethod", code_buffer, sizeof(nmethod),
duke@435 576 nmethod_size, offsets->value(CodeOffsets::Frame_Complete), frame_size, oop_maps),
duke@435 577 _compiled_synchronized_native_basic_lock_owner_sp_offset(basic_lock_owner_sp_offset),
duke@435 578 _compiled_synchronized_native_basic_lock_sp_offset(basic_lock_sp_offset)
duke@435 579 {
duke@435 580 {
duke@435 581 debug_only(No_Safepoint_Verifier nsv;)
duke@435 582 assert_locked_or_safepoint(CodeCache_lock);
duke@435 583
duke@435 584 NOT_PRODUCT(_has_debug_info = false; )
duke@435 585 _method = method;
duke@435 586 _entry_bci = InvocationEntryBci;
duke@435 587 _link = NULL;
duke@435 588 _compiler = NULL;
duke@435 589 // We have no exception handler or deopt handler make the
duke@435 590 // values something that will never match a pc like the nmethod vtable entry
duke@435 591 _exception_offset = 0;
duke@435 592 _deoptimize_offset = 0;
duke@435 593 _orig_pc_offset = 0;
kamg@551 594 #ifdef HAVE_DTRACE_H
kamg@551 595 _trap_offset = 0;
kamg@551 596 #endif // def HAVE_DTRACE_H
duke@435 597 _stub_offset = data_offset();
duke@435 598 _consts_offset = data_offset();
duke@435 599 _scopes_data_offset = data_offset();
duke@435 600 _scopes_pcs_offset = _scopes_data_offset;
duke@435 601 _dependencies_offset = _scopes_pcs_offset;
duke@435 602 _handler_table_offset = _dependencies_offset;
duke@435 603 _nul_chk_table_offset = _handler_table_offset;
duke@435 604 _nmethod_end_offset = _nul_chk_table_offset;
duke@435 605 _compile_id = 0; // default
duke@435 606 _comp_level = CompLevel_none;
duke@435 607 _entry_point = instructions_begin();
duke@435 608 _verified_entry_point = instructions_begin() + offsets->value(CodeOffsets::Verified_Entry);
duke@435 609 _osr_entry_point = NULL;
duke@435 610 _exception_cache = NULL;
duke@435 611 _pc_desc_cache.reset_to(NULL);
duke@435 612
duke@435 613 flags.clear();
duke@435 614 flags.state = alive;
duke@435 615 _markedForDeoptimization = 0;
duke@435 616
duke@435 617 _lock_count = 0;
duke@435 618 _stack_traversal_mark = 0;
duke@435 619
duke@435 620 code_buffer->copy_oops_to(this);
duke@435 621 debug_only(check_store();)
duke@435 622 CodeCache::commit(this);
duke@435 623 VTune::create_nmethod(this);
duke@435 624 }
duke@435 625
duke@435 626 if (PrintNativeNMethods || PrintDebugInfo || PrintRelocations || PrintDependencies) {
duke@435 627 ttyLocker ttyl; // keep the following output all in one block
duke@435 628 // This output goes directly to the tty, not the compiler log.
duke@435 629 // To enable tools to match it up with the compilation activity,
duke@435 630 // be sure to tag this tty output with the compile ID.
duke@435 631 if (xtty != NULL) {
duke@435 632 xtty->begin_head("print_native_nmethod");
duke@435 633 xtty->method(_method);
duke@435 634 xtty->stamp();
duke@435 635 xtty->end_head(" address='" INTPTR_FORMAT "'", (intptr_t) this);
duke@435 636 }
duke@435 637 // print the header part first
duke@435 638 print();
duke@435 639 // then print the requested information
duke@435 640 if (PrintNativeNMethods) {
duke@435 641 print_code();
duke@435 642 oop_maps->print();
duke@435 643 }
duke@435 644 if (PrintRelocations) {
duke@435 645 print_relocations();
duke@435 646 }
duke@435 647 if (xtty != NULL) {
duke@435 648 xtty->tail("print_native_nmethod");
duke@435 649 }
duke@435 650 }
duke@435 651 Events::log("Create nmethod " INTPTR_FORMAT, this);
duke@435 652 }
duke@435 653
kamg@551 654 // For dtrace wrappers
kamg@551 655 #ifdef HAVE_DTRACE_H
kamg@551 656 nmethod::nmethod(
kamg@551 657 methodOop method,
kamg@551 658 int nmethod_size,
kamg@551 659 CodeOffsets* offsets,
kamg@551 660 CodeBuffer* code_buffer,
kamg@551 661 int frame_size)
kamg@551 662 : CodeBlob("dtrace nmethod", code_buffer, sizeof(nmethod),
kamg@551 663 nmethod_size, offsets->value(CodeOffsets::Frame_Complete), frame_size, NULL),
kamg@551 664 _compiled_synchronized_native_basic_lock_owner_sp_offset(in_ByteSize(-1)),
kamg@551 665 _compiled_synchronized_native_basic_lock_sp_offset(in_ByteSize(-1))
kamg@551 666 {
kamg@551 667 {
kamg@551 668 debug_only(No_Safepoint_Verifier nsv;)
kamg@551 669 assert_locked_or_safepoint(CodeCache_lock);
kamg@551 670
kamg@551 671 NOT_PRODUCT(_has_debug_info = false; )
kamg@551 672 _method = method;
kamg@551 673 _entry_bci = InvocationEntryBci;
kamg@551 674 _link = NULL;
kamg@551 675 _compiler = NULL;
kamg@551 676 // We have no exception handler or deopt handler make the
kamg@551 677 // values something that will never match a pc like the nmethod vtable entry
kamg@551 678 _exception_offset = 0;
kamg@551 679 _deoptimize_offset = 0;
kamg@551 680 _trap_offset = offsets->value(CodeOffsets::Dtrace_trap);
kamg@551 681 _orig_pc_offset = 0;
kamg@551 682 _stub_offset = data_offset();
kamg@551 683 _consts_offset = data_offset();
kamg@551 684 _scopes_data_offset = data_offset();
kamg@551 685 _scopes_pcs_offset = _scopes_data_offset;
kamg@551 686 _dependencies_offset = _scopes_pcs_offset;
kamg@551 687 _handler_table_offset = _dependencies_offset;
kamg@551 688 _nul_chk_table_offset = _handler_table_offset;
kamg@551 689 _nmethod_end_offset = _nul_chk_table_offset;
kamg@551 690 _compile_id = 0; // default
kamg@551 691 _comp_level = CompLevel_none;
kamg@551 692 _entry_point = instructions_begin();
kamg@551 693 _verified_entry_point = instructions_begin() + offsets->value(CodeOffsets::Verified_Entry);
kamg@551 694 _osr_entry_point = NULL;
kamg@551 695 _exception_cache = NULL;
kamg@551 696 _pc_desc_cache.reset_to(NULL);
kamg@551 697
kamg@551 698 flags.clear();
kamg@551 699 flags.state = alive;
kamg@551 700 _markedForDeoptimization = 0;
kamg@551 701
kamg@551 702 _lock_count = 0;
kamg@551 703 _stack_traversal_mark = 0;
kamg@551 704
kamg@551 705 code_buffer->copy_oops_to(this);
kamg@551 706 debug_only(check_store();)
kamg@551 707 CodeCache::commit(this);
kamg@551 708 VTune::create_nmethod(this);
kamg@551 709 }
kamg@551 710
kamg@551 711 if (PrintNMethods || PrintDebugInfo || PrintRelocations || PrintDependencies) {
kamg@551 712 ttyLocker ttyl; // keep the following output all in one block
kamg@551 713 // This output goes directly to the tty, not the compiler log.
kamg@551 714 // To enable tools to match it up with the compilation activity,
kamg@551 715 // be sure to tag this tty output with the compile ID.
kamg@551 716 if (xtty != NULL) {
kamg@551 717 xtty->begin_head("print_dtrace_nmethod");
kamg@551 718 xtty->method(_method);
kamg@551 719 xtty->stamp();
kamg@551 720 xtty->end_head(" address='" INTPTR_FORMAT "'", (intptr_t) this);
kamg@551 721 }
kamg@551 722 // print the header part first
kamg@551 723 print();
kamg@551 724 // then print the requested information
kamg@551 725 if (PrintNMethods) {
kamg@551 726 print_code();
kamg@551 727 }
kamg@551 728 if (PrintRelocations) {
kamg@551 729 print_relocations();
kamg@551 730 }
kamg@551 731 if (xtty != NULL) {
kamg@551 732 xtty->tail("print_dtrace_nmethod");
kamg@551 733 }
kamg@551 734 }
kamg@551 735 Events::log("Create nmethod " INTPTR_FORMAT, this);
kamg@551 736 }
kamg@551 737 #endif // def HAVE_DTRACE_H
duke@435 738
duke@435 739 void* nmethod::operator new(size_t size, int nmethod_size) {
duke@435 740 // Always leave some room in the CodeCache for I2C/C2I adapters
duke@435 741 if (CodeCache::unallocated_capacity() < CodeCacheMinimumFreeSpace) return NULL;
duke@435 742 return CodeCache::allocate(nmethod_size);
duke@435 743 }
duke@435 744
duke@435 745
duke@435 746 nmethod::nmethod(
duke@435 747 methodOop method,
duke@435 748 int nmethod_size,
duke@435 749 int compile_id,
duke@435 750 int entry_bci,
duke@435 751 CodeOffsets* offsets,
duke@435 752 int orig_pc_offset,
duke@435 753 DebugInformationRecorder* debug_info,
duke@435 754 Dependencies* dependencies,
duke@435 755 CodeBuffer *code_buffer,
duke@435 756 int frame_size,
duke@435 757 OopMapSet* oop_maps,
duke@435 758 ExceptionHandlerTable* handler_table,
duke@435 759 ImplicitExceptionTable* nul_chk_table,
duke@435 760 AbstractCompiler* compiler,
duke@435 761 int comp_level
duke@435 762 )
duke@435 763 : CodeBlob("nmethod", code_buffer, sizeof(nmethod),
duke@435 764 nmethod_size, offsets->value(CodeOffsets::Frame_Complete), frame_size, oop_maps),
duke@435 765 _compiled_synchronized_native_basic_lock_owner_sp_offset(in_ByteSize(-1)),
duke@435 766 _compiled_synchronized_native_basic_lock_sp_offset(in_ByteSize(-1))
duke@435 767 {
duke@435 768 assert(debug_info->oop_recorder() == code_buffer->oop_recorder(), "shared OR");
duke@435 769 {
duke@435 770 debug_only(No_Safepoint_Verifier nsv;)
duke@435 771 assert_locked_or_safepoint(CodeCache_lock);
duke@435 772
duke@435 773 NOT_PRODUCT(_has_debug_info = false; )
duke@435 774 _method = method;
duke@435 775 _compile_id = compile_id;
duke@435 776 _comp_level = comp_level;
duke@435 777 _entry_bci = entry_bci;
duke@435 778 _link = NULL;
duke@435 779 _compiler = compiler;
duke@435 780 _orig_pc_offset = orig_pc_offset;
kamg@551 781 #ifdef HAVE_DTRACE_H
kamg@551 782 _trap_offset = 0;
kamg@551 783 #endif // def HAVE_DTRACE_H
duke@435 784 _stub_offset = instructions_offset() + code_buffer->total_offset_of(code_buffer->stubs()->start());
duke@435 785
duke@435 786 // Exception handler and deopt handler are in the stub section
duke@435 787 _exception_offset = _stub_offset + offsets->value(CodeOffsets::Exceptions);
duke@435 788 _deoptimize_offset = _stub_offset + offsets->value(CodeOffsets::Deopt);
duke@435 789 _consts_offset = instructions_offset() + code_buffer->total_offset_of(code_buffer->consts()->start());
duke@435 790 _scopes_data_offset = data_offset();
duke@435 791 _scopes_pcs_offset = _scopes_data_offset + round_to(debug_info->data_size (), oopSize);
duke@435 792 _dependencies_offset = _scopes_pcs_offset + adjust_pcs_size(debug_info->pcs_size());
duke@435 793 _handler_table_offset = _dependencies_offset + round_to(dependencies->size_in_bytes (), oopSize);
duke@435 794 _nul_chk_table_offset = _handler_table_offset + round_to(handler_table->size_in_bytes(), oopSize);
duke@435 795 _nmethod_end_offset = _nul_chk_table_offset + round_to(nul_chk_table->size_in_bytes(), oopSize);
duke@435 796
duke@435 797 _entry_point = instructions_begin();
duke@435 798 _verified_entry_point = instructions_begin() + offsets->value(CodeOffsets::Verified_Entry);
duke@435 799 _osr_entry_point = instructions_begin() + offsets->value(CodeOffsets::OSR_Entry);
duke@435 800 _exception_cache = NULL;
duke@435 801 _pc_desc_cache.reset_to(scopes_pcs_begin());
duke@435 802
duke@435 803 flags.clear();
duke@435 804 flags.state = alive;
duke@435 805 _markedForDeoptimization = 0;
duke@435 806
duke@435 807 _unload_reported = false; // jvmti state
duke@435 808
duke@435 809 _lock_count = 0;
duke@435 810 _stack_traversal_mark = 0;
duke@435 811
duke@435 812 // Copy contents of ScopeDescRecorder to nmethod
duke@435 813 code_buffer->copy_oops_to(this);
duke@435 814 debug_info->copy_to(this);
duke@435 815 dependencies->copy_to(this);
duke@435 816 debug_only(check_store();)
duke@435 817
duke@435 818 CodeCache::commit(this);
duke@435 819
duke@435 820 VTune::create_nmethod(this);
duke@435 821
duke@435 822 // Copy contents of ExceptionHandlerTable to nmethod
duke@435 823 handler_table->copy_to(this);
duke@435 824 nul_chk_table->copy_to(this);
duke@435 825
duke@435 826 // we use the information of entry points to find out if a method is
duke@435 827 // static or non static
duke@435 828 assert(compiler->is_c2() ||
duke@435 829 _method->is_static() == (entry_point() == _verified_entry_point),
duke@435 830 " entry points must be same for static methods and vice versa");
duke@435 831 }
duke@435 832
jrose@535 833 bool printnmethods = PrintNMethods
jrose@535 834 || CompilerOracle::should_print(_method)
jrose@535 835 || CompilerOracle::has_option_string(_method, "PrintNMethods");
duke@435 836 if (printnmethods || PrintDebugInfo || PrintRelocations || PrintDependencies || PrintExceptionHandlers) {
duke@435 837 print_nmethod(printnmethods);
duke@435 838 }
duke@435 839
duke@435 840 // Note: Do not verify in here as the CodeCache_lock is
duke@435 841 // taken which would conflict with the CompiledIC_lock
duke@435 842 // which taken during the verification of call sites.
duke@435 843 // (was bug - gri 10/25/99)
duke@435 844
duke@435 845 Events::log("Create nmethod " INTPTR_FORMAT, this);
duke@435 846 }
duke@435 847
duke@435 848
duke@435 849 // Print a short set of xml attributes to identify this nmethod. The
duke@435 850 // output should be embedded in some other element.
duke@435 851 void nmethod::log_identity(xmlStream* log) const {
duke@435 852 log->print(" compile_id='%d'", compile_id());
duke@435 853 const char* nm_kind = compile_kind();
duke@435 854 if (nm_kind != NULL) log->print(" compile_kind='%s'", nm_kind);
duke@435 855 if (compiler() != NULL) {
duke@435 856 log->print(" compiler='%s'", compiler()->name());
duke@435 857 }
duke@435 858 #ifdef TIERED
duke@435 859 log->print(" level='%d'", comp_level());
duke@435 860 #endif // TIERED
duke@435 861 }
duke@435 862
duke@435 863
duke@435 864 #define LOG_OFFSET(log, name) \
duke@435 865 if ((intptr_t)name##_end() - (intptr_t)name##_begin()) \
duke@435 866 log->print(" " XSTR(name) "_offset='%d'" , \
duke@435 867 (intptr_t)name##_begin() - (intptr_t)this)
duke@435 868
duke@435 869
duke@435 870 void nmethod::log_new_nmethod() const {
duke@435 871 if (LogCompilation && xtty != NULL) {
duke@435 872 ttyLocker ttyl;
duke@435 873 HandleMark hm;
duke@435 874 xtty->begin_elem("nmethod");
duke@435 875 log_identity(xtty);
duke@435 876 xtty->print(" entry='" INTPTR_FORMAT "' size='%d'",
duke@435 877 instructions_begin(), size());
duke@435 878 xtty->print(" address='" INTPTR_FORMAT "'", (intptr_t) this);
duke@435 879
duke@435 880 LOG_OFFSET(xtty, relocation);
duke@435 881 LOG_OFFSET(xtty, code);
duke@435 882 LOG_OFFSET(xtty, stub);
duke@435 883 LOG_OFFSET(xtty, consts);
duke@435 884 LOG_OFFSET(xtty, scopes_data);
duke@435 885 LOG_OFFSET(xtty, scopes_pcs);
duke@435 886 LOG_OFFSET(xtty, dependencies);
duke@435 887 LOG_OFFSET(xtty, handler_table);
duke@435 888 LOG_OFFSET(xtty, nul_chk_table);
duke@435 889 LOG_OFFSET(xtty, oops);
duke@435 890
duke@435 891 xtty->method(method());
duke@435 892 xtty->stamp();
duke@435 893 xtty->end_elem();
duke@435 894 }
duke@435 895 }
duke@435 896
duke@435 897 #undef LOG_OFFSET
duke@435 898
duke@435 899
duke@435 900 // Print out more verbose output usually for a newly created nmethod.
duke@435 901 void nmethod::print_on(outputStream* st, const char* title) const {
duke@435 902 if (st != NULL) {
duke@435 903 ttyLocker ttyl;
duke@435 904 // Print a little tag line that looks like +PrintCompilation output:
duke@435 905 st->print("%3d%c %s",
duke@435 906 compile_id(),
duke@435 907 is_osr_method() ? '%' :
duke@435 908 method() != NULL &&
duke@435 909 is_native_method() ? 'n' : ' ',
duke@435 910 title);
duke@435 911 #ifdef TIERED
duke@435 912 st->print(" (%d) ", comp_level());
duke@435 913 #endif // TIERED
duke@435 914 if (WizardMode) st->print(" (" INTPTR_FORMAT ")", this);
duke@435 915 if (method() != NULL) {
duke@435 916 method()->print_short_name(st);
duke@435 917 if (is_osr_method())
duke@435 918 st->print(" @ %d", osr_entry_bci());
duke@435 919 if (method()->code_size() > 0)
duke@435 920 st->print(" (%d bytes)", method()->code_size());
duke@435 921 }
duke@435 922 }
duke@435 923 }
duke@435 924
duke@435 925
duke@435 926 void nmethod::print_nmethod(bool printmethod) {
duke@435 927 ttyLocker ttyl; // keep the following output all in one block
duke@435 928 if (xtty != NULL) {
duke@435 929 xtty->begin_head("print_nmethod");
duke@435 930 xtty->stamp();
duke@435 931 xtty->end_head();
duke@435 932 }
duke@435 933 // print the header part first
duke@435 934 print();
duke@435 935 // then print the requested information
duke@435 936 if (printmethod) {
duke@435 937 print_code();
duke@435 938 print_pcs();
duke@435 939 oop_maps()->print();
duke@435 940 }
duke@435 941 if (PrintDebugInfo) {
duke@435 942 print_scopes();
duke@435 943 }
duke@435 944 if (PrintRelocations) {
duke@435 945 print_relocations();
duke@435 946 }
duke@435 947 if (PrintDependencies) {
duke@435 948 print_dependencies();
duke@435 949 }
duke@435 950 if (PrintExceptionHandlers) {
duke@435 951 print_handler_table();
duke@435 952 print_nul_chk_table();
duke@435 953 }
duke@435 954 if (xtty != NULL) {
duke@435 955 xtty->tail("print_nmethod");
duke@435 956 }
duke@435 957 }
duke@435 958
duke@435 959
duke@435 960 void nmethod::set_version(int v) {
duke@435 961 flags.version = v;
duke@435 962 }
duke@435 963
duke@435 964
duke@435 965 ScopeDesc* nmethod::scope_desc_at(address pc) {
duke@435 966 PcDesc* pd = pc_desc_at(pc);
duke@435 967 guarantee(pd != NULL, "scope must be present");
duke@435 968 return new ScopeDesc(this, pd->scope_decode_offset(),
duke@435 969 pd->obj_decode_offset());
duke@435 970 }
duke@435 971
duke@435 972
duke@435 973 void nmethod::clear_inline_caches() {
duke@435 974 assert(SafepointSynchronize::is_at_safepoint(), "cleaning of IC's only allowed at safepoint");
duke@435 975 if (is_zombie()) {
duke@435 976 return;
duke@435 977 }
duke@435 978
duke@435 979 RelocIterator iter(this);
duke@435 980 while (iter.next()) {
duke@435 981 iter.reloc()->clear_inline_cache();
duke@435 982 }
duke@435 983 }
duke@435 984
duke@435 985
duke@435 986 void nmethod::cleanup_inline_caches() {
duke@435 987
duke@435 988 assert(SafepointSynchronize::is_at_safepoint() &&
duke@435 989 !CompiledIC_lock->is_locked() &&
duke@435 990 !Patching_lock->is_locked(), "no threads must be updating the inline caches by them selfs");
duke@435 991
duke@435 992 // If the method is not entrant or zombie then a JMP is plastered over the
duke@435 993 // first few bytes. If an oop in the old code was there, that oop
duke@435 994 // should not get GC'd. Skip the first few bytes of oops on
duke@435 995 // not-entrant methods.
duke@435 996 address low_boundary = verified_entry_point();
duke@435 997 if (!is_in_use()) {
duke@435 998 low_boundary += NativeJump::instruction_size;
duke@435 999 // %%% Note: On SPARC we patch only a 4-byte trap, not a full NativeJump.
duke@435 1000 // This means that the low_boundary is going to be a little too high.
duke@435 1001 // This shouldn't matter, since oops of non-entrant methods are never used.
duke@435 1002 // In fact, why are we bothering to look at oops in a non-entrant method??
duke@435 1003 }
duke@435 1004
duke@435 1005 // Find all calls in an nmethod, and clear the ones that points to zombie methods
duke@435 1006 ResourceMark rm;
duke@435 1007 RelocIterator iter(this, low_boundary);
duke@435 1008 while(iter.next()) {
duke@435 1009 switch(iter.type()) {
duke@435 1010 case relocInfo::virtual_call_type:
duke@435 1011 case relocInfo::opt_virtual_call_type: {
duke@435 1012 CompiledIC *ic = CompiledIC_at(iter.reloc());
duke@435 1013 // Ok, to lookup references to zombies here
duke@435 1014 CodeBlob *cb = CodeCache::find_blob_unsafe(ic->ic_destination());
duke@435 1015 if( cb != NULL && cb->is_nmethod() ) {
duke@435 1016 nmethod* nm = (nmethod*)cb;
duke@435 1017 // Clean inline caches pointing to both zombie and not_entrant methods
duke@435 1018 if (!nm->is_in_use()) ic->set_to_clean();
duke@435 1019 }
duke@435 1020 break;
duke@435 1021 }
duke@435 1022 case relocInfo::static_call_type: {
duke@435 1023 CompiledStaticCall *csc = compiledStaticCall_at(iter.reloc());
duke@435 1024 CodeBlob *cb = CodeCache::find_blob_unsafe(csc->destination());
duke@435 1025 if( cb != NULL && cb->is_nmethod() ) {
duke@435 1026 nmethod* nm = (nmethod*)cb;
duke@435 1027 // Clean inline caches pointing to both zombie and not_entrant methods
duke@435 1028 if (!nm->is_in_use()) csc->set_to_clean();
duke@435 1029 }
duke@435 1030 break;
duke@435 1031 }
duke@435 1032 }
duke@435 1033 }
duke@435 1034 }
duke@435 1035
duke@435 1036 void nmethod::mark_as_seen_on_stack() {
duke@435 1037 assert(is_not_entrant(), "must be a non-entrant method");
duke@435 1038 set_stack_traversal_mark(NMethodSweeper::traversal_count());
duke@435 1039 }
duke@435 1040
duke@435 1041 // Tell if a non-entrant method can be converted to a zombie (i.e., there is no activations on the stack)
duke@435 1042 bool nmethod::can_not_entrant_be_converted() {
duke@435 1043 assert(is_not_entrant(), "must be a non-entrant method");
duke@435 1044 assert(SafepointSynchronize::is_at_safepoint(), "must be called during a safepoint");
duke@435 1045
duke@435 1046 // Since the nmethod sweeper only does partial sweep the sweeper's traversal
duke@435 1047 // count can be greater than the stack traversal count before it hits the
duke@435 1048 // nmethod for the second time.
duke@435 1049 return stack_traversal_mark()+1 < NMethodSweeper::traversal_count();
duke@435 1050 }
duke@435 1051
duke@435 1052 void nmethod::inc_decompile_count() {
duke@435 1053 // Could be gated by ProfileTraps, but do not bother...
duke@435 1054 methodOop m = method();
duke@435 1055 if (m == NULL) return;
duke@435 1056 methodDataOop mdo = m->method_data();
duke@435 1057 if (mdo == NULL) return;
duke@435 1058 // There is a benign race here. See comments in methodDataOop.hpp.
duke@435 1059 mdo->inc_decompile_count();
duke@435 1060 }
duke@435 1061
duke@435 1062 void nmethod::make_unloaded(BoolObjectClosure* is_alive, oop cause) {
duke@435 1063
duke@435 1064 post_compiled_method_unload();
duke@435 1065
duke@435 1066 // Since this nmethod is being unloaded, make sure that dependencies
duke@435 1067 // recorded in instanceKlasses get flushed and pass non-NULL closure to
duke@435 1068 // indicate that this work is being done during a GC.
duke@435 1069 assert(Universe::heap()->is_gc_active(), "should only be called during gc");
duke@435 1070 assert(is_alive != NULL, "Should be non-NULL");
duke@435 1071 // A non-NULL is_alive closure indicates that this is being called during GC.
duke@435 1072 flush_dependencies(is_alive);
duke@435 1073
duke@435 1074 // Break cycle between nmethod & method
duke@435 1075 if (TraceClassUnloading && WizardMode) {
duke@435 1076 tty->print_cr("[Class unloading: Making nmethod " INTPTR_FORMAT
duke@435 1077 " unloadable], methodOop(" INTPTR_FORMAT
duke@435 1078 "), cause(" INTPTR_FORMAT ")",
duke@435 1079 this, (address)_method, (address)cause);
duke@435 1080 cause->klass()->print();
duke@435 1081 }
ysr@1376 1082 // Unlink the osr method, so we do not look this up again
ysr@1376 1083 if (is_osr_method()) {
ysr@1376 1084 invalidate_osr_method();
ysr@1376 1085 }
duke@435 1086 // If _method is already NULL the methodOop is about to be unloaded,
duke@435 1087 // so we don't have to break the cycle. Note that it is possible to
duke@435 1088 // have the methodOop live here, in case we unload the nmethod because
duke@435 1089 // it is pointing to some oop (other than the methodOop) being unloaded.
duke@435 1090 if (_method != NULL) {
duke@435 1091 // OSR methods point to the methodOop, but the methodOop does not
duke@435 1092 // point back!
duke@435 1093 if (_method->code() == this) {
duke@435 1094 _method->clear_code(); // Break a cycle
duke@435 1095 }
duke@435 1096 inc_decompile_count(); // Last chance to make a mark on the MDO
duke@435 1097 _method = NULL; // Clear the method of this dead nmethod
duke@435 1098 }
duke@435 1099 // Make the class unloaded - i.e., change state and notify sweeper
duke@435 1100 check_safepoint();
duke@435 1101 if (is_in_use()) {
duke@435 1102 // Transitioning directly from live to unloaded -- so
duke@435 1103 // we need to force a cache clean-up; remember this
duke@435 1104 // for later on.
duke@435 1105 CodeCache::set_needs_cache_clean(true);
duke@435 1106 }
duke@435 1107 flags.state = unloaded;
duke@435 1108
duke@435 1109 // The methodOop is gone at this point
duke@435 1110 assert(_method == NULL, "Tautology");
duke@435 1111
duke@435 1112 set_link(NULL);
duke@435 1113 NMethodSweeper::notify(this);
duke@435 1114 }
duke@435 1115
duke@435 1116 void nmethod::invalidate_osr_method() {
duke@435 1117 assert(_entry_bci != InvocationEntryBci, "wrong kind of nmethod");
duke@435 1118 if (_entry_bci != InvalidOSREntryBci)
duke@435 1119 inc_decompile_count();
duke@435 1120 // Remove from list of active nmethods
duke@435 1121 if (method() != NULL)
duke@435 1122 instanceKlass::cast(method()->method_holder())->remove_osr_nmethod(this);
duke@435 1123 // Set entry as invalid
duke@435 1124 _entry_bci = InvalidOSREntryBci;
duke@435 1125 }
duke@435 1126
duke@435 1127 void nmethod::log_state_change(int state) const {
duke@435 1128 if (LogCompilation) {
duke@435 1129 if (xtty != NULL) {
duke@435 1130 ttyLocker ttyl; // keep the following output all in one block
duke@435 1131 xtty->begin_elem("make_not_entrant %sthread='" UINTX_FORMAT "'",
duke@435 1132 (state == zombie ? "zombie='1' " : ""),
duke@435 1133 os::current_thread_id());
duke@435 1134 log_identity(xtty);
duke@435 1135 xtty->stamp();
duke@435 1136 xtty->end_elem();
duke@435 1137 }
duke@435 1138 }
duke@435 1139 if (PrintCompilation) {
duke@435 1140 print_on(tty, state == zombie ? "made zombie " : "made not entrant ");
duke@435 1141 tty->cr();
duke@435 1142 }
duke@435 1143 }
duke@435 1144
duke@435 1145 // Common functionality for both make_not_entrant and make_zombie
duke@435 1146 void nmethod::make_not_entrant_or_zombie(int state) {
duke@435 1147 assert(state == zombie || state == not_entrant, "must be zombie or not_entrant");
duke@435 1148
duke@435 1149 // Code for an on-stack-replacement nmethod is removed when a class gets unloaded.
duke@435 1150 // They never become zombie/non-entrant, so the nmethod sweeper will never remove
duke@435 1151 // them. Instead the entry_bci is set to InvalidOSREntryBci, so the osr nmethod
duke@435 1152 // will never be used anymore. That the nmethods only gets removed when class unloading
duke@435 1153 // happens, make life much simpler, since the nmethods are not just going to disappear
duke@435 1154 // out of the blue.
ysr@1376 1155 if (is_osr_method()) {
duke@435 1156 if (osr_entry_bci() != InvalidOSREntryBci) {
duke@435 1157 // only log this once
duke@435 1158 log_state_change(state);
duke@435 1159 }
duke@435 1160 invalidate_osr_method();
duke@435 1161 return;
duke@435 1162 }
duke@435 1163
duke@435 1164 // If the method is already zombie or set to the state we want, nothing to do
duke@435 1165 if (is_zombie() || (state == not_entrant && is_not_entrant())) {
duke@435 1166 return;
duke@435 1167 }
duke@435 1168
duke@435 1169 log_state_change(state);
duke@435 1170
duke@435 1171 // Make sure the nmethod is not flushed in case of a safepoint in code below.
duke@435 1172 nmethodLocker nml(this);
duke@435 1173
duke@435 1174 {
duke@435 1175 // Enter critical section. Does not block for safepoint.
duke@435 1176 MutexLockerEx pl(Patching_lock, Mutex::_no_safepoint_check_flag);
duke@435 1177 // The caller can be calling the method statically or through an inline
duke@435 1178 // cache call.
duke@435 1179 if (!is_not_entrant()) {
duke@435 1180 NativeJump::patch_verified_entry(entry_point(), verified_entry_point(),
duke@435 1181 SharedRuntime::get_handle_wrong_method_stub());
duke@435 1182 assert (NativeJump::instruction_size == nmethod::_zombie_instruction_size, "");
duke@435 1183 }
duke@435 1184
duke@435 1185 // When the nmethod becomes zombie it is no longer alive so the
duke@435 1186 // dependencies must be flushed. nmethods in the not_entrant
duke@435 1187 // state will be flushed later when the transition to zombie
duke@435 1188 // happens or they get unloaded.
duke@435 1189 if (state == zombie) {
duke@435 1190 assert(SafepointSynchronize::is_at_safepoint(), "must be done at safepoint");
duke@435 1191 flush_dependencies(NULL);
duke@435 1192 } else {
duke@435 1193 assert(state == not_entrant, "other cases may need to be handled differently");
duke@435 1194 }
duke@435 1195
duke@435 1196 // Change state
duke@435 1197 flags.state = state;
duke@435 1198 } // leave critical region under Patching_lock
duke@435 1199
duke@435 1200 if (state == not_entrant) {
duke@435 1201 Events::log("Make nmethod not entrant " INTPTR_FORMAT, this);
duke@435 1202 } else {
duke@435 1203 Events::log("Make nmethod zombie " INTPTR_FORMAT, this);
duke@435 1204 }
duke@435 1205
duke@435 1206 if (TraceCreateZombies) {
duke@435 1207 tty->print_cr("nmethod <" INTPTR_FORMAT "> code made %s", this, (state == not_entrant) ? "not entrant" : "zombie");
duke@435 1208 }
duke@435 1209
duke@435 1210 // Make sweeper aware that there is a zombie method that needs to be removed
duke@435 1211 NMethodSweeper::notify(this);
duke@435 1212
duke@435 1213 // not_entrant only stuff
duke@435 1214 if (state == not_entrant) {
duke@435 1215 mark_as_seen_on_stack();
duke@435 1216 }
duke@435 1217
duke@435 1218 // It's a true state change, so mark the method as decompiled.
duke@435 1219 inc_decompile_count();
duke@435 1220
duke@435 1221
duke@435 1222 // zombie only - if a JVMTI agent has enabled the CompiledMethodUnload event
duke@435 1223 // and it hasn't already been reported for this nmethod then report it now.
duke@435 1224 // (the event may have been reported earilier if the GC marked it for unloading).
duke@435 1225 if (state == zombie) {
duke@435 1226
duke@435 1227 DTRACE_METHOD_UNLOAD_PROBE(method());
duke@435 1228
duke@435 1229 if (JvmtiExport::should_post_compiled_method_unload() &&
duke@435 1230 !unload_reported()) {
duke@435 1231 assert(method() != NULL, "checking");
duke@435 1232 {
duke@435 1233 HandleMark hm;
duke@435 1234 JvmtiExport::post_compiled_method_unload_at_safepoint(
duke@435 1235 method()->jmethod_id(), code_begin());
duke@435 1236 }
duke@435 1237 set_unload_reported();
duke@435 1238 }
duke@435 1239 }
duke@435 1240
duke@435 1241
duke@435 1242 // Zombie only stuff
duke@435 1243 if (state == zombie) {
duke@435 1244 VTune::delete_nmethod(this);
duke@435 1245 }
duke@435 1246
duke@435 1247 // Check whether method got unloaded at a safepoint before this,
duke@435 1248 // if so we can skip the flushing steps below
duke@435 1249 if (method() == NULL) return;
duke@435 1250
duke@435 1251 // Remove nmethod from method.
duke@435 1252 // We need to check if both the _code and _from_compiled_code_entry_point
duke@435 1253 // refer to this nmethod because there is a race in setting these two fields
duke@435 1254 // in methodOop as seen in bugid 4947125.
duke@435 1255 // If the vep() points to the zombie nmethod, the memory for the nmethod
duke@435 1256 // could be flushed and the compiler and vtable stubs could still call
duke@435 1257 // through it.
duke@435 1258 if (method()->code() == this ||
duke@435 1259 method()->from_compiled_entry() == verified_entry_point()) {
duke@435 1260 HandleMark hm;
duke@435 1261 method()->clear_code();
duke@435 1262 }
duke@435 1263 }
duke@435 1264
duke@435 1265
duke@435 1266 #ifndef PRODUCT
duke@435 1267 void nmethod::check_safepoint() {
duke@435 1268 assert(SafepointSynchronize::is_at_safepoint(), "must be at safepoint");
duke@435 1269 }
duke@435 1270 #endif
duke@435 1271
duke@435 1272
duke@435 1273 void nmethod::flush() {
duke@435 1274 // Note that there are no valid oops in the nmethod anymore.
duke@435 1275 assert(is_zombie() || (is_osr_method() && is_unloaded()), "must be a zombie method");
duke@435 1276 assert(is_marked_for_reclamation() || (is_osr_method() && is_unloaded()), "must be marked for reclamation");
duke@435 1277
duke@435 1278 assert (!is_locked_by_vm(), "locked methods shouldn't be flushed");
duke@435 1279 check_safepoint();
duke@435 1280
duke@435 1281 // completely deallocate this method
duke@435 1282 EventMark m("flushing nmethod " INTPTR_FORMAT " %s", this, "");
duke@435 1283 if (PrintMethodFlushing) {
duke@435 1284 tty->print_cr("*flushing nmethod " INTPTR_FORMAT ". Live blobs: %d", this, CodeCache::nof_blobs());
duke@435 1285 }
duke@435 1286
duke@435 1287 // We need to deallocate any ExceptionCache data.
duke@435 1288 // Note that we do not need to grab the nmethod lock for this, it
duke@435 1289 // better be thread safe if we're disposing of it!
duke@435 1290 ExceptionCache* ec = exception_cache();
duke@435 1291 set_exception_cache(NULL);
duke@435 1292 while(ec != NULL) {
duke@435 1293 ExceptionCache* next = ec->next();
duke@435 1294 delete ec;
duke@435 1295 ec = next;
duke@435 1296 }
duke@435 1297
duke@435 1298 ((CodeBlob*)(this))->flush();
duke@435 1299
duke@435 1300 CodeCache::free(this);
duke@435 1301 }
duke@435 1302
duke@435 1303
duke@435 1304 //
duke@435 1305 // Notify all classes this nmethod is dependent on that it is no
duke@435 1306 // longer dependent. This should only be called in two situations.
duke@435 1307 // First, when a nmethod transitions to a zombie all dependents need
duke@435 1308 // to be clear. Since zombification happens at a safepoint there's no
duke@435 1309 // synchronization issues. The second place is a little more tricky.
duke@435 1310 // During phase 1 of mark sweep class unloading may happen and as a
duke@435 1311 // result some nmethods may get unloaded. In this case the flushing
duke@435 1312 // of dependencies must happen during phase 1 since after GC any
duke@435 1313 // dependencies in the unloaded nmethod won't be updated, so
duke@435 1314 // traversing the dependency information in unsafe. In that case this
duke@435 1315 // function is called with a non-NULL argument and this function only
duke@435 1316 // notifies instanceKlasses that are reachable
duke@435 1317
duke@435 1318 void nmethod::flush_dependencies(BoolObjectClosure* is_alive) {
duke@435 1319 assert(SafepointSynchronize::is_at_safepoint(), "must be done at safepoint");
duke@435 1320 assert(Universe::heap()->is_gc_active() == (is_alive != NULL),
duke@435 1321 "is_alive is non-NULL if and only if we are called during GC");
duke@435 1322 if (!has_flushed_dependencies()) {
duke@435 1323 set_has_flushed_dependencies();
duke@435 1324 for (Dependencies::DepStream deps(this); deps.next(); ) {
duke@435 1325 klassOop klass = deps.context_type();
duke@435 1326 if (klass == NULL) continue; // ignore things like evol_method
duke@435 1327
duke@435 1328 // During GC the is_alive closure is non-NULL, and is used to
duke@435 1329 // determine liveness of dependees that need to be updated.
duke@435 1330 if (is_alive == NULL || is_alive->do_object_b(klass)) {
duke@435 1331 instanceKlass::cast(klass)->remove_dependent_nmethod(this);
duke@435 1332 }
duke@435 1333 }
duke@435 1334 }
duke@435 1335 }
duke@435 1336
duke@435 1337
duke@435 1338 // If this oop is not live, the nmethod can be unloaded.
duke@435 1339 bool nmethod::can_unload(BoolObjectClosure* is_alive,
duke@435 1340 OopClosure* keep_alive,
duke@435 1341 oop* root, bool unloading_occurred) {
duke@435 1342 assert(root != NULL, "just checking");
duke@435 1343 oop obj = *root;
duke@435 1344 if (obj == NULL || is_alive->do_object_b(obj)) {
duke@435 1345 return false;
duke@435 1346 }
duke@435 1347 if (obj->is_compiledICHolder()) {
duke@435 1348 compiledICHolderOop cichk_oop = compiledICHolderOop(obj);
duke@435 1349 if (is_alive->do_object_b(
duke@435 1350 cichk_oop->holder_method()->method_holder()) &&
duke@435 1351 is_alive->do_object_b(cichk_oop->holder_klass())) {
duke@435 1352 // The oop should be kept alive
duke@435 1353 keep_alive->do_oop(root);
duke@435 1354 return false;
duke@435 1355 }
duke@435 1356 }
jcoomes@809 1357 assert(unloading_occurred, "Inconsistency in unloading");
duke@435 1358 make_unloaded(is_alive, obj);
duke@435 1359 return true;
duke@435 1360 }
duke@435 1361
duke@435 1362 // ------------------------------------------------------------------
duke@435 1363 // post_compiled_method_load_event
duke@435 1364 // new method for install_code() path
duke@435 1365 // Transfer information from compilation to jvmti
duke@435 1366 void nmethod::post_compiled_method_load_event() {
duke@435 1367
duke@435 1368 methodOop moop = method();
duke@435 1369 HS_DTRACE_PROBE8(hotspot, compiled__method__load,
duke@435 1370 moop->klass_name()->bytes(),
duke@435 1371 moop->klass_name()->utf8_length(),
duke@435 1372 moop->name()->bytes(),
duke@435 1373 moop->name()->utf8_length(),
duke@435 1374 moop->signature()->bytes(),
duke@435 1375 moop->signature()->utf8_length(),
duke@435 1376 code_begin(), code_size());
duke@435 1377
duke@435 1378 if (JvmtiExport::should_post_compiled_method_load()) {
duke@435 1379 JvmtiExport::post_compiled_method_load(this);
duke@435 1380 }
duke@435 1381 }
duke@435 1382
duke@435 1383 void nmethod::post_compiled_method_unload() {
duke@435 1384 assert(_method != NULL && !is_unloaded(), "just checking");
duke@435 1385 DTRACE_METHOD_UNLOAD_PROBE(method());
duke@435 1386
duke@435 1387 // If a JVMTI agent has enabled the CompiledMethodUnload event then
duke@435 1388 // post the event. Sometime later this nmethod will be made a zombie by
duke@435 1389 // the sweeper but the methodOop will not be valid at that point.
duke@435 1390 if (JvmtiExport::should_post_compiled_method_unload()) {
duke@435 1391 assert(!unload_reported(), "already unloaded");
duke@435 1392 HandleMark hm;
duke@435 1393 JvmtiExport::post_compiled_method_unload_at_safepoint(
duke@435 1394 method()->jmethod_id(), code_begin());
duke@435 1395 }
duke@435 1396
duke@435 1397 // The JVMTI CompiledMethodUnload event can be enabled or disabled at
duke@435 1398 // any time. As the nmethod is being unloaded now we mark it has
duke@435 1399 // having the unload event reported - this will ensure that we don't
duke@435 1400 // attempt to report the event in the unlikely scenario where the
duke@435 1401 // event is enabled at the time the nmethod is made a zombie.
duke@435 1402 set_unload_reported();
duke@435 1403 }
duke@435 1404
duke@435 1405 // This is called at the end of the strong tracing/marking phase of a
duke@435 1406 // GC to unload an nmethod if it contains otherwise unreachable
duke@435 1407 // oops.
duke@435 1408
duke@435 1409 void nmethod::do_unloading(BoolObjectClosure* is_alive,
duke@435 1410 OopClosure* keep_alive, bool unloading_occurred) {
duke@435 1411 // Make sure the oop's ready to receive visitors
duke@435 1412 assert(!is_zombie() && !is_unloaded(),
duke@435 1413 "should not call follow on zombie or unloaded nmethod");
duke@435 1414
duke@435 1415 // If the method is not entrant then a JMP is plastered over the
duke@435 1416 // first few bytes. If an oop in the old code was there, that oop
duke@435 1417 // should not get GC'd. Skip the first few bytes of oops on
duke@435 1418 // not-entrant methods.
duke@435 1419 address low_boundary = verified_entry_point();
duke@435 1420 if (is_not_entrant()) {
duke@435 1421 low_boundary += NativeJump::instruction_size;
duke@435 1422 // %%% Note: On SPARC we patch only a 4-byte trap, not a full NativeJump.
duke@435 1423 // (See comment above.)
duke@435 1424 }
duke@435 1425
duke@435 1426 // The RedefineClasses() API can cause the class unloading invariant
duke@435 1427 // to no longer be true. See jvmtiExport.hpp for details.
duke@435 1428 // Also, leave a debugging breadcrumb in local flag.
duke@435 1429 bool a_class_was_redefined = JvmtiExport::has_redefined_a_class();
duke@435 1430 if (a_class_was_redefined) {
duke@435 1431 // This set of the unloading_occurred flag is done before the
duke@435 1432 // call to post_compiled_method_unload() so that the unloading
duke@435 1433 // of this nmethod is reported.
duke@435 1434 unloading_occurred = true;
duke@435 1435 }
duke@435 1436
duke@435 1437 // Follow methodOop
duke@435 1438 if (can_unload(is_alive, keep_alive, (oop*)&_method, unloading_occurred)) {
duke@435 1439 return;
duke@435 1440 }
duke@435 1441
duke@435 1442 // Exception cache
duke@435 1443 ExceptionCache* ec = exception_cache();
duke@435 1444 while (ec != NULL) {
duke@435 1445 oop* ex_addr = (oop*)ec->exception_type_addr();
duke@435 1446 oop ex = *ex_addr;
duke@435 1447 ExceptionCache* next_ec = ec->next();
duke@435 1448 if (ex != NULL && !is_alive->do_object_b(ex)) {
duke@435 1449 assert(!ex->is_compiledICHolder(), "Possible error here");
duke@435 1450 remove_from_exception_cache(ec);
duke@435 1451 }
duke@435 1452 ec = next_ec;
duke@435 1453 }
duke@435 1454
duke@435 1455 // If class unloading occurred we first iterate over all inline caches and
duke@435 1456 // clear ICs where the cached oop is referring to an unloaded klass or method.
duke@435 1457 // The remaining live cached oops will be traversed in the relocInfo::oop_type
duke@435 1458 // iteration below.
duke@435 1459 if (unloading_occurred) {
duke@435 1460 RelocIterator iter(this, low_boundary);
duke@435 1461 while(iter.next()) {
duke@435 1462 if (iter.type() == relocInfo::virtual_call_type) {
duke@435 1463 CompiledIC *ic = CompiledIC_at(iter.reloc());
duke@435 1464 oop ic_oop = ic->cached_oop();
duke@435 1465 if (ic_oop != NULL && !is_alive->do_object_b(ic_oop)) {
duke@435 1466 // The only exception is compiledICHolder oops which may
duke@435 1467 // yet be marked below. (We check this further below).
duke@435 1468 if (ic_oop->is_compiledICHolder()) {
duke@435 1469 compiledICHolderOop cichk_oop = compiledICHolderOop(ic_oop);
duke@435 1470 if (is_alive->do_object_b(
duke@435 1471 cichk_oop->holder_method()->method_holder()) &&
duke@435 1472 is_alive->do_object_b(cichk_oop->holder_klass())) {
duke@435 1473 continue;
duke@435 1474 }
duke@435 1475 }
duke@435 1476 ic->set_to_clean();
duke@435 1477 assert(ic->cached_oop() == NULL, "cached oop in IC should be cleared")
duke@435 1478 }
duke@435 1479 }
duke@435 1480 }
duke@435 1481 }
duke@435 1482
duke@435 1483 // Compiled code
duke@435 1484 RelocIterator iter(this, low_boundary);
duke@435 1485 while (iter.next()) {
duke@435 1486 if (iter.type() == relocInfo::oop_type) {
duke@435 1487 oop_Relocation* r = iter.oop_reloc();
duke@435 1488 // In this loop, we must only traverse those oops directly embedded in
duke@435 1489 // the code. Other oops (oop_index>0) are seen as part of scopes_oops.
duke@435 1490 assert(1 == (r->oop_is_immediate()) +
duke@435 1491 (r->oop_addr() >= oops_begin() && r->oop_addr() < oops_end()),
duke@435 1492 "oop must be found in exactly one place");
duke@435 1493 if (r->oop_is_immediate() && r->oop_value() != NULL) {
duke@435 1494 if (can_unload(is_alive, keep_alive, r->oop_addr(), unloading_occurred)) {
duke@435 1495 return;
duke@435 1496 }
duke@435 1497 }
duke@435 1498 }
duke@435 1499 }
duke@435 1500
duke@435 1501
duke@435 1502 // Scopes
duke@435 1503 for (oop* p = oops_begin(); p < oops_end(); p++) {
duke@435 1504 if (*p == Universe::non_oop_word()) continue; // skip non-oops
duke@435 1505 if (can_unload(is_alive, keep_alive, p, unloading_occurred)) {
duke@435 1506 return;
duke@435 1507 }
duke@435 1508 }
duke@435 1509
duke@435 1510 #ifndef PRODUCT
duke@435 1511 // This nmethod was not unloaded; check below that all CompiledICs
duke@435 1512 // refer to marked oops.
duke@435 1513 {
duke@435 1514 RelocIterator iter(this, low_boundary);
duke@435 1515 while (iter.next()) {
duke@435 1516 if (iter.type() == relocInfo::virtual_call_type) {
duke@435 1517 CompiledIC *ic = CompiledIC_at(iter.reloc());
duke@435 1518 oop ic_oop = ic->cached_oop();
duke@435 1519 assert(ic_oop == NULL || is_alive->do_object_b(ic_oop),
duke@435 1520 "Found unmarked ic_oop in reachable nmethod");
duke@435 1521 }
duke@435 1522 }
duke@435 1523 }
duke@435 1524 #endif // !PRODUCT
duke@435 1525 }
duke@435 1526
ysr@1376 1527 // This method is called twice during GC -- once while
ysr@1376 1528 // tracing the "active" nmethods on thread stacks during
ysr@1376 1529 // the (strong) marking phase, and then again when walking
ysr@1376 1530 // the code cache contents during the weak roots processing
ysr@1376 1531 // phase. The two uses are distinguished by means of the
ysr@1376 1532 // do_nmethods() method in the closure "f" below -- which
ysr@1376 1533 // answers "yes" in the first case, and "no" in the second
ysr@1376 1534 // case. We want to walk the weak roots in the nmethod
ysr@1376 1535 // only in the second case. The weak roots in the nmethod
ysr@1376 1536 // are the oops in the ExceptionCache and the InlineCache
ysr@1376 1537 // oops.
duke@435 1538 void nmethod::oops_do(OopClosure* f) {
duke@435 1539 // make sure the oops ready to receive visitors
duke@435 1540 assert(!is_zombie() && !is_unloaded(),
duke@435 1541 "should not call follow on zombie or unloaded nmethod");
duke@435 1542
duke@435 1543 // If the method is not entrant or zombie then a JMP is plastered over the
duke@435 1544 // first few bytes. If an oop in the old code was there, that oop
duke@435 1545 // should not get GC'd. Skip the first few bytes of oops on
duke@435 1546 // not-entrant methods.
duke@435 1547 address low_boundary = verified_entry_point();
duke@435 1548 if (is_not_entrant()) {
duke@435 1549 low_boundary += NativeJump::instruction_size;
duke@435 1550 // %%% Note: On SPARC we patch only a 4-byte trap, not a full NativeJump.
duke@435 1551 // (See comment above.)
duke@435 1552 }
duke@435 1553
duke@435 1554 // Compiled code
duke@435 1555 f->do_oop((oop*) &_method);
ysr@1376 1556 if (!f->do_nmethods()) {
ysr@1376 1557 // weak roots processing phase -- update ExceptionCache oops
ysr@1376 1558 ExceptionCache* ec = exception_cache();
ysr@1376 1559 while(ec != NULL) {
ysr@1376 1560 f->do_oop((oop*)ec->exception_type_addr());
ysr@1376 1561 ec = ec->next();
ysr@1376 1562 }
ysr@1376 1563 } // Else strong roots phase -- skip oops in ExceptionCache
duke@435 1564
duke@435 1565 RelocIterator iter(this, low_boundary);
ysr@1376 1566
duke@435 1567 while (iter.next()) {
duke@435 1568 if (iter.type() == relocInfo::oop_type ) {
duke@435 1569 oop_Relocation* r = iter.oop_reloc();
duke@435 1570 // In this loop, we must only follow those oops directly embedded in
duke@435 1571 // the code. Other oops (oop_index>0) are seen as part of scopes_oops.
ysr@1376 1572 assert(1 == (r->oop_is_immediate()) +
ysr@1376 1573 (r->oop_addr() >= oops_begin() && r->oop_addr() < oops_end()),
ysr@1376 1574 "oop must be found in exactly one place");
duke@435 1575 if (r->oop_is_immediate() && r->oop_value() != NULL) {
duke@435 1576 f->do_oop(r->oop_addr());
duke@435 1577 }
duke@435 1578 }
duke@435 1579 }
duke@435 1580
duke@435 1581 // Scopes
duke@435 1582 for (oop* p = oops_begin(); p < oops_end(); p++) {
duke@435 1583 if (*p == Universe::non_oop_word()) continue; // skip non-oops
duke@435 1584 f->do_oop(p);
duke@435 1585 }
duke@435 1586 }
duke@435 1587
duke@435 1588 // Method that knows how to preserve outgoing arguments at call. This method must be
duke@435 1589 // called with a frame corresponding to a Java invoke
duke@435 1590 void nmethod::preserve_callee_argument_oops(frame fr, const RegisterMap *reg_map, OopClosure* f) {
duke@435 1591 if (!method()->is_native()) {
duke@435 1592 SimpleScopeDesc ssd(this, fr.pc());
duke@435 1593 Bytecode_invoke* call = Bytecode_invoke_at(ssd.method(), ssd.bci());
duke@435 1594 bool is_static = call->is_invokestatic();
duke@435 1595 symbolOop signature = call->signature();
duke@435 1596 fr.oops_compiled_arguments_do(signature, is_static, reg_map, f);
duke@435 1597 }
duke@435 1598 }
duke@435 1599
duke@435 1600
duke@435 1601 oop nmethod::embeddedOop_at(u_char* p) {
duke@435 1602 RelocIterator iter(this, p, p + oopSize);
duke@435 1603 while (iter.next())
duke@435 1604 if (iter.type() == relocInfo::oop_type) {
duke@435 1605 return iter.oop_reloc()->oop_value();
duke@435 1606 }
duke@435 1607 return NULL;
duke@435 1608 }
duke@435 1609
duke@435 1610
duke@435 1611 inline bool includes(void* p, void* from, void* to) {
duke@435 1612 return from <= p && p < to;
duke@435 1613 }
duke@435 1614
duke@435 1615
duke@435 1616 void nmethod::copy_scopes_pcs(PcDesc* pcs, int count) {
duke@435 1617 assert(count >= 2, "must be sentinel values, at least");
duke@435 1618
duke@435 1619 #ifdef ASSERT
duke@435 1620 // must be sorted and unique; we do a binary search in find_pc_desc()
duke@435 1621 int prev_offset = pcs[0].pc_offset();
duke@435 1622 assert(prev_offset == PcDesc::lower_offset_limit,
duke@435 1623 "must start with a sentinel");
duke@435 1624 for (int i = 1; i < count; i++) {
duke@435 1625 int this_offset = pcs[i].pc_offset();
duke@435 1626 assert(this_offset > prev_offset, "offsets must be sorted");
duke@435 1627 prev_offset = this_offset;
duke@435 1628 }
duke@435 1629 assert(prev_offset == PcDesc::upper_offset_limit,
duke@435 1630 "must end with a sentinel");
duke@435 1631 #endif //ASSERT
duke@435 1632
duke@435 1633 int size = count * sizeof(PcDesc);
duke@435 1634 assert(scopes_pcs_size() >= size, "oob");
duke@435 1635 memcpy(scopes_pcs_begin(), pcs, size);
duke@435 1636
duke@435 1637 // Adjust the final sentinel downward.
duke@435 1638 PcDesc* last_pc = &scopes_pcs_begin()[count-1];
duke@435 1639 assert(last_pc->pc_offset() == PcDesc::upper_offset_limit, "sanity");
duke@435 1640 last_pc->set_pc_offset(instructions_size() + 1);
duke@435 1641 for (; last_pc + 1 < scopes_pcs_end(); last_pc += 1) {
duke@435 1642 // Fill any rounding gaps with copies of the last record.
duke@435 1643 last_pc[1] = last_pc[0];
duke@435 1644 }
duke@435 1645 // The following assert could fail if sizeof(PcDesc) is not
duke@435 1646 // an integral multiple of oopSize (the rounding term).
duke@435 1647 // If it fails, change the logic to always allocate a multiple
duke@435 1648 // of sizeof(PcDesc), and fill unused words with copies of *last_pc.
duke@435 1649 assert(last_pc + 1 == scopes_pcs_end(), "must match exactly");
duke@435 1650 }
duke@435 1651
duke@435 1652 void nmethod::copy_scopes_data(u_char* buffer, int size) {
duke@435 1653 assert(scopes_data_size() >= size, "oob");
duke@435 1654 memcpy(scopes_data_begin(), buffer, size);
duke@435 1655 }
duke@435 1656
duke@435 1657
duke@435 1658 #ifdef ASSERT
duke@435 1659 static PcDesc* linear_search(nmethod* nm, int pc_offset, bool approximate) {
duke@435 1660 PcDesc* lower = nm->scopes_pcs_begin();
duke@435 1661 PcDesc* upper = nm->scopes_pcs_end();
duke@435 1662 lower += 1; // exclude initial sentinel
duke@435 1663 PcDesc* res = NULL;
duke@435 1664 for (PcDesc* p = lower; p < upper; p++) {
duke@435 1665 NOT_PRODUCT(--nmethod_stats.pc_desc_tests); // don't count this call to match_desc
duke@435 1666 if (match_desc(p, pc_offset, approximate)) {
duke@435 1667 if (res == NULL)
duke@435 1668 res = p;
duke@435 1669 else
duke@435 1670 res = (PcDesc*) badAddress;
duke@435 1671 }
duke@435 1672 }
duke@435 1673 return res;
duke@435 1674 }
duke@435 1675 #endif
duke@435 1676
duke@435 1677
duke@435 1678 // Finds a PcDesc with real-pc equal to "pc"
duke@435 1679 PcDesc* nmethod::find_pc_desc_internal(address pc, bool approximate) {
duke@435 1680 address base_address = instructions_begin();
duke@435 1681 if ((pc < base_address) ||
duke@435 1682 (pc - base_address) >= (ptrdiff_t) PcDesc::upper_offset_limit) {
duke@435 1683 return NULL; // PC is wildly out of range
duke@435 1684 }
duke@435 1685 int pc_offset = (int) (pc - base_address);
duke@435 1686
duke@435 1687 // Check the PcDesc cache if it contains the desired PcDesc
duke@435 1688 // (This as an almost 100% hit rate.)
duke@435 1689 PcDesc* res = _pc_desc_cache.find_pc_desc(pc_offset, approximate);
duke@435 1690 if (res != NULL) {
duke@435 1691 assert(res == linear_search(this, pc_offset, approximate), "cache ok");
duke@435 1692 return res;
duke@435 1693 }
duke@435 1694
duke@435 1695 // Fallback algorithm: quasi-linear search for the PcDesc
duke@435 1696 // Find the last pc_offset less than the given offset.
duke@435 1697 // The successor must be the required match, if there is a match at all.
duke@435 1698 // (Use a fixed radix to avoid expensive affine pointer arithmetic.)
duke@435 1699 PcDesc* lower = scopes_pcs_begin();
duke@435 1700 PcDesc* upper = scopes_pcs_end();
duke@435 1701 upper -= 1; // exclude final sentinel
duke@435 1702 if (lower >= upper) return NULL; // native method; no PcDescs at all
duke@435 1703
duke@435 1704 #define assert_LU_OK \
duke@435 1705 /* invariant on lower..upper during the following search: */ \
duke@435 1706 assert(lower->pc_offset() < pc_offset, "sanity"); \
duke@435 1707 assert(upper->pc_offset() >= pc_offset, "sanity")
duke@435 1708 assert_LU_OK;
duke@435 1709
duke@435 1710 // Use the last successful return as a split point.
duke@435 1711 PcDesc* mid = _pc_desc_cache.last_pc_desc();
duke@435 1712 NOT_PRODUCT(++nmethod_stats.pc_desc_searches);
duke@435 1713 if (mid->pc_offset() < pc_offset) {
duke@435 1714 lower = mid;
duke@435 1715 } else {
duke@435 1716 upper = mid;
duke@435 1717 }
duke@435 1718
duke@435 1719 // Take giant steps at first (4096, then 256, then 16, then 1)
duke@435 1720 const int LOG2_RADIX = 4 /*smaller steps in debug mode:*/ debug_only(-1);
duke@435 1721 const int RADIX = (1 << LOG2_RADIX);
duke@435 1722 for (int step = (1 << (LOG2_RADIX*3)); step > 1; step >>= LOG2_RADIX) {
duke@435 1723 while ((mid = lower + step) < upper) {
duke@435 1724 assert_LU_OK;
duke@435 1725 NOT_PRODUCT(++nmethod_stats.pc_desc_searches);
duke@435 1726 if (mid->pc_offset() < pc_offset) {
duke@435 1727 lower = mid;
duke@435 1728 } else {
duke@435 1729 upper = mid;
duke@435 1730 break;
duke@435 1731 }
duke@435 1732 }
duke@435 1733 assert_LU_OK;
duke@435 1734 }
duke@435 1735
duke@435 1736 // Sneak up on the value with a linear search of length ~16.
duke@435 1737 while (true) {
duke@435 1738 assert_LU_OK;
duke@435 1739 mid = lower + 1;
duke@435 1740 NOT_PRODUCT(++nmethod_stats.pc_desc_searches);
duke@435 1741 if (mid->pc_offset() < pc_offset) {
duke@435 1742 lower = mid;
duke@435 1743 } else {
duke@435 1744 upper = mid;
duke@435 1745 break;
duke@435 1746 }
duke@435 1747 }
duke@435 1748 #undef assert_LU_OK
duke@435 1749
duke@435 1750 if (match_desc(upper, pc_offset, approximate)) {
duke@435 1751 assert(upper == linear_search(this, pc_offset, approximate), "search ok");
duke@435 1752 _pc_desc_cache.add_pc_desc(upper);
duke@435 1753 return upper;
duke@435 1754 } else {
duke@435 1755 assert(NULL == linear_search(this, pc_offset, approximate), "search ok");
duke@435 1756 return NULL;
duke@435 1757 }
duke@435 1758 }
duke@435 1759
duke@435 1760
duke@435 1761 bool nmethod::check_all_dependencies() {
duke@435 1762 bool found_check = false;
duke@435 1763 // wholesale check of all dependencies
duke@435 1764 for (Dependencies::DepStream deps(this); deps.next(); ) {
duke@435 1765 if (deps.check_dependency() != NULL) {
duke@435 1766 found_check = true;
duke@435 1767 NOT_DEBUG(break);
duke@435 1768 }
duke@435 1769 }
duke@435 1770 return found_check; // tell caller if we found anything
duke@435 1771 }
duke@435 1772
duke@435 1773 bool nmethod::check_dependency_on(DepChange& changes) {
duke@435 1774 // What has happened:
duke@435 1775 // 1) a new class dependee has been added
duke@435 1776 // 2) dependee and all its super classes have been marked
duke@435 1777 bool found_check = false; // set true if we are upset
duke@435 1778 for (Dependencies::DepStream deps(this); deps.next(); ) {
duke@435 1779 // Evaluate only relevant dependencies.
duke@435 1780 if (deps.spot_check_dependency_at(changes) != NULL) {
duke@435 1781 found_check = true;
duke@435 1782 NOT_DEBUG(break);
duke@435 1783 }
duke@435 1784 }
duke@435 1785 return found_check;
duke@435 1786 }
duke@435 1787
duke@435 1788 bool nmethod::is_evol_dependent_on(klassOop dependee) {
duke@435 1789 instanceKlass *dependee_ik = instanceKlass::cast(dependee);
duke@435 1790 objArrayOop dependee_methods = dependee_ik->methods();
duke@435 1791 for (Dependencies::DepStream deps(this); deps.next(); ) {
duke@435 1792 if (deps.type() == Dependencies::evol_method) {
duke@435 1793 methodOop method = deps.method_argument(0);
duke@435 1794 for (int j = 0; j < dependee_methods->length(); j++) {
duke@435 1795 if ((methodOop) dependee_methods->obj_at(j) == method) {
duke@435 1796 // RC_TRACE macro has an embedded ResourceMark
duke@435 1797 RC_TRACE(0x01000000,
duke@435 1798 ("Found evol dependency of nmethod %s.%s(%s) compile_id=%d on method %s.%s(%s)",
duke@435 1799 _method->method_holder()->klass_part()->external_name(),
duke@435 1800 _method->name()->as_C_string(),
duke@435 1801 _method->signature()->as_C_string(), compile_id(),
duke@435 1802 method->method_holder()->klass_part()->external_name(),
duke@435 1803 method->name()->as_C_string(),
duke@435 1804 method->signature()->as_C_string()));
duke@435 1805 if (TraceDependencies || LogCompilation)
duke@435 1806 deps.log_dependency(dependee);
duke@435 1807 return true;
duke@435 1808 }
duke@435 1809 }
duke@435 1810 }
duke@435 1811 }
duke@435 1812 return false;
duke@435 1813 }
duke@435 1814
duke@435 1815 // Called from mark_for_deoptimization, when dependee is invalidated.
duke@435 1816 bool nmethod::is_dependent_on_method(methodOop dependee) {
duke@435 1817 for (Dependencies::DepStream deps(this); deps.next(); ) {
duke@435 1818 if (deps.type() != Dependencies::evol_method)
duke@435 1819 continue;
duke@435 1820 methodOop method = deps.method_argument(0);
duke@435 1821 if (method == dependee) return true;
duke@435 1822 }
duke@435 1823 return false;
duke@435 1824 }
duke@435 1825
duke@435 1826
duke@435 1827 bool nmethod::is_patchable_at(address instr_addr) {
duke@435 1828 assert (code_contains(instr_addr), "wrong nmethod used");
duke@435 1829 if (is_zombie()) {
duke@435 1830 // a zombie may never be patched
duke@435 1831 return false;
duke@435 1832 }
duke@435 1833 return true;
duke@435 1834 }
duke@435 1835
duke@435 1836
duke@435 1837 address nmethod::continuation_for_implicit_exception(address pc) {
duke@435 1838 // Exception happened outside inline-cache check code => we are inside
duke@435 1839 // an active nmethod => use cpc to determine a return address
duke@435 1840 int exception_offset = pc - instructions_begin();
duke@435 1841 int cont_offset = ImplicitExceptionTable(this).at( exception_offset );
duke@435 1842 #ifdef ASSERT
duke@435 1843 if (cont_offset == 0) {
duke@435 1844 Thread* thread = ThreadLocalStorage::get_thread_slow();
duke@435 1845 ResetNoHandleMark rnm; // Might be called from LEAF/QUICK ENTRY
duke@435 1846 HandleMark hm(thread);
duke@435 1847 ResourceMark rm(thread);
duke@435 1848 CodeBlob* cb = CodeCache::find_blob(pc);
duke@435 1849 assert(cb != NULL && cb == this, "");
duke@435 1850 tty->print_cr("implicit exception happened at " INTPTR_FORMAT, pc);
duke@435 1851 print();
duke@435 1852 method()->print_codes();
duke@435 1853 print_code();
duke@435 1854 print_pcs();
duke@435 1855 }
duke@435 1856 #endif
duke@435 1857 guarantee(cont_offset != 0, "unhandled implicit exception in compiled code");
duke@435 1858 return instructions_begin() + cont_offset;
duke@435 1859 }
duke@435 1860
duke@435 1861
duke@435 1862
duke@435 1863 void nmethod_init() {
duke@435 1864 // make sure you didn't forget to adjust the filler fields
duke@435 1865 assert(sizeof(nmFlags) <= 4, "nmFlags occupies more than a word");
duke@435 1866 assert(sizeof(nmethod) % oopSize == 0, "nmethod size must be multiple of a word");
duke@435 1867 }
duke@435 1868
duke@435 1869
duke@435 1870 //-------------------------------------------------------------------------------------------
duke@435 1871
duke@435 1872
duke@435 1873 // QQQ might we make this work from a frame??
duke@435 1874 nmethodLocker::nmethodLocker(address pc) {
duke@435 1875 CodeBlob* cb = CodeCache::find_blob(pc);
duke@435 1876 guarantee(cb != NULL && cb->is_nmethod(), "bad pc for a nmethod found");
duke@435 1877 _nm = (nmethod*)cb;
duke@435 1878 lock_nmethod(_nm);
duke@435 1879 }
duke@435 1880
duke@435 1881 void nmethodLocker::lock_nmethod(nmethod* nm) {
duke@435 1882 if (nm == NULL) return;
duke@435 1883 Atomic::inc(&nm->_lock_count);
duke@435 1884 guarantee(!nm->is_zombie(), "cannot lock a zombie method");
duke@435 1885 }
duke@435 1886
duke@435 1887 void nmethodLocker::unlock_nmethod(nmethod* nm) {
duke@435 1888 if (nm == NULL) return;
duke@435 1889 Atomic::dec(&nm->_lock_count);
duke@435 1890 guarantee(nm->_lock_count >= 0, "unmatched nmethod lock/unlock");
duke@435 1891 }
duke@435 1892
duke@435 1893 bool nmethod::is_deopt_pc(address pc) {
duke@435 1894 bool ret = pc == deopt_handler_begin();
duke@435 1895 return ret;
duke@435 1896 }
duke@435 1897
duke@435 1898
duke@435 1899 // -----------------------------------------------------------------------------
duke@435 1900 // Verification
duke@435 1901
duke@435 1902 void nmethod::verify() {
duke@435 1903
duke@435 1904 // Hmm. OSR methods can be deopted but not marked as zombie or not_entrant
duke@435 1905 // seems odd.
duke@435 1906
duke@435 1907 if( is_zombie() || is_not_entrant() )
duke@435 1908 return;
duke@435 1909
duke@435 1910 // Make sure all the entry points are correctly aligned for patching.
duke@435 1911 NativeJump::check_verified_entry_alignment(entry_point(), verified_entry_point());
duke@435 1912
duke@435 1913 assert(method()->is_oop(), "must be valid");
duke@435 1914
duke@435 1915 ResourceMark rm;
duke@435 1916
duke@435 1917 if (!CodeCache::contains(this)) {
duke@435 1918 fatal1("nmethod at " INTPTR_FORMAT " not in zone", this);
duke@435 1919 }
duke@435 1920
duke@435 1921 if(is_native_method() )
duke@435 1922 return;
duke@435 1923
duke@435 1924 nmethod* nm = CodeCache::find_nmethod(verified_entry_point());
duke@435 1925 if (nm != this) {
duke@435 1926 fatal1("findNMethod did not find this nmethod (" INTPTR_FORMAT ")", this);
duke@435 1927 }
duke@435 1928
duke@435 1929 for (PcDesc* p = scopes_pcs_begin(); p < scopes_pcs_end(); p++) {
duke@435 1930 if (! p->verify(this)) {
duke@435 1931 tty->print_cr("\t\tin nmethod at " INTPTR_FORMAT " (pcs)", this);
duke@435 1932 }
duke@435 1933 }
duke@435 1934
duke@435 1935 verify_scopes();
duke@435 1936 }
duke@435 1937
duke@435 1938
duke@435 1939 void nmethod::verify_interrupt_point(address call_site) {
duke@435 1940 // This code does not work in release mode since
duke@435 1941 // owns_lock only is available in debug mode.
duke@435 1942 CompiledIC* ic = NULL;
duke@435 1943 Thread *cur = Thread::current();
duke@435 1944 if (CompiledIC_lock->owner() == cur ||
duke@435 1945 ((cur->is_VM_thread() || cur->is_ConcurrentGC_thread()) &&
duke@435 1946 SafepointSynchronize::is_at_safepoint())) {
duke@435 1947 ic = CompiledIC_at(call_site);
duke@435 1948 CHECK_UNHANDLED_OOPS_ONLY(Thread::current()->clear_unhandled_oops());
duke@435 1949 } else {
duke@435 1950 MutexLocker ml_verify (CompiledIC_lock);
duke@435 1951 ic = CompiledIC_at(call_site);
duke@435 1952 }
duke@435 1953 PcDesc* pd = pc_desc_at(ic->end_of_call());
duke@435 1954 assert(pd != NULL, "PcDesc must exist");
duke@435 1955 for (ScopeDesc* sd = new ScopeDesc(this, pd->scope_decode_offset(),
duke@435 1956 pd->obj_decode_offset());
duke@435 1957 !sd->is_top(); sd = sd->sender()) {
duke@435 1958 sd->verify();
duke@435 1959 }
duke@435 1960 }
duke@435 1961
duke@435 1962 void nmethod::verify_scopes() {
duke@435 1963 if( !method() ) return; // Runtime stubs have no scope
duke@435 1964 if (method()->is_native()) return; // Ignore stub methods.
duke@435 1965 // iterate through all interrupt point
duke@435 1966 // and verify the debug information is valid.
duke@435 1967 RelocIterator iter((nmethod*)this);
duke@435 1968 while (iter.next()) {
duke@435 1969 address stub = NULL;
duke@435 1970 switch (iter.type()) {
duke@435 1971 case relocInfo::virtual_call_type:
duke@435 1972 verify_interrupt_point(iter.addr());
duke@435 1973 break;
duke@435 1974 case relocInfo::opt_virtual_call_type:
duke@435 1975 stub = iter.opt_virtual_call_reloc()->static_stub();
duke@435 1976 verify_interrupt_point(iter.addr());
duke@435 1977 break;
duke@435 1978 case relocInfo::static_call_type:
duke@435 1979 stub = iter.static_call_reloc()->static_stub();
duke@435 1980 //verify_interrupt_point(iter.addr());
duke@435 1981 break;
duke@435 1982 case relocInfo::runtime_call_type:
duke@435 1983 address destination = iter.reloc()->value();
duke@435 1984 // Right now there is no way to find out which entries support
duke@435 1985 // an interrupt point. It would be nice if we had this
duke@435 1986 // information in a table.
duke@435 1987 break;
duke@435 1988 }
duke@435 1989 assert(stub == NULL || stub_contains(stub), "static call stub outside stub section");
duke@435 1990 }
duke@435 1991 }
duke@435 1992
duke@435 1993
duke@435 1994 // -----------------------------------------------------------------------------
duke@435 1995 // Non-product code
duke@435 1996 #ifndef PRODUCT
duke@435 1997
duke@435 1998 void nmethod::check_store() {
duke@435 1999 // Make sure all oops in the compiled code are tenured
duke@435 2000
duke@435 2001 RelocIterator iter(this);
duke@435 2002 while (iter.next()) {
duke@435 2003 if (iter.type() == relocInfo::oop_type) {
duke@435 2004 oop_Relocation* reloc = iter.oop_reloc();
duke@435 2005 oop obj = reloc->oop_value();
duke@435 2006 if (obj != NULL && !obj->is_perm()) {
duke@435 2007 fatal("must be permanent oop in compiled code");
duke@435 2008 }
duke@435 2009 }
duke@435 2010 }
duke@435 2011 }
duke@435 2012
jrose@535 2013 #endif // PRODUCT
duke@435 2014
duke@435 2015 // Printing operations
duke@435 2016
duke@435 2017 void nmethod::print() const {
duke@435 2018 ResourceMark rm;
duke@435 2019 ttyLocker ttyl; // keep the following output all in one block
duke@435 2020
duke@435 2021 tty->print("Compiled ");
duke@435 2022
duke@435 2023 if (is_compiled_by_c1()) {
duke@435 2024 tty->print("(c1) ");
duke@435 2025 } else if (is_compiled_by_c2()) {
duke@435 2026 tty->print("(c2) ");
duke@435 2027 } else {
duke@435 2028 tty->print("(nm) ");
duke@435 2029 }
duke@435 2030
duke@435 2031 print_on(tty, "nmethod");
duke@435 2032 tty->cr();
duke@435 2033 if (WizardMode) {
duke@435 2034 tty->print("((nmethod*) "INTPTR_FORMAT ") ", this);
duke@435 2035 tty->print(" for method " INTPTR_FORMAT , (address)method());
duke@435 2036 tty->print(" { ");
duke@435 2037 if (version()) tty->print("v%d ", version());
duke@435 2038 if (level()) tty->print("l%d ", level());
duke@435 2039 if (is_in_use()) tty->print("in_use ");
duke@435 2040 if (is_not_entrant()) tty->print("not_entrant ");
duke@435 2041 if (is_zombie()) tty->print("zombie ");
duke@435 2042 if (is_unloaded()) tty->print("unloaded ");
duke@435 2043 tty->print_cr("}:");
duke@435 2044 }
duke@435 2045 if (size () > 0) tty->print_cr(" total in heap [" INTPTR_FORMAT "," INTPTR_FORMAT "] = %d",
duke@435 2046 (address)this,
duke@435 2047 (address)this + size(),
duke@435 2048 size());
duke@435 2049 if (relocation_size () > 0) tty->print_cr(" relocation [" INTPTR_FORMAT "," INTPTR_FORMAT "] = %d",
duke@435 2050 relocation_begin(),
duke@435 2051 relocation_end(),
duke@435 2052 relocation_size());
duke@435 2053 if (code_size () > 0) tty->print_cr(" main code [" INTPTR_FORMAT "," INTPTR_FORMAT "] = %d",
duke@435 2054 code_begin(),
duke@435 2055 code_end(),
duke@435 2056 code_size());
duke@435 2057 if (stub_size () > 0) tty->print_cr(" stub code [" INTPTR_FORMAT "," INTPTR_FORMAT "] = %d",
duke@435 2058 stub_begin(),
duke@435 2059 stub_end(),
duke@435 2060 stub_size());
duke@435 2061 if (consts_size () > 0) tty->print_cr(" constants [" INTPTR_FORMAT "," INTPTR_FORMAT "] = %d",
duke@435 2062 consts_begin(),
duke@435 2063 consts_end(),
duke@435 2064 consts_size());
duke@435 2065 if (scopes_data_size () > 0) tty->print_cr(" scopes data [" INTPTR_FORMAT "," INTPTR_FORMAT "] = %d",
duke@435 2066 scopes_data_begin(),
duke@435 2067 scopes_data_end(),
duke@435 2068 scopes_data_size());
duke@435 2069 if (scopes_pcs_size () > 0) tty->print_cr(" scopes pcs [" INTPTR_FORMAT "," INTPTR_FORMAT "] = %d",
duke@435 2070 scopes_pcs_begin(),
duke@435 2071 scopes_pcs_end(),
duke@435 2072 scopes_pcs_size());
duke@435 2073 if (dependencies_size () > 0) tty->print_cr(" dependencies [" INTPTR_FORMAT "," INTPTR_FORMAT "] = %d",
duke@435 2074 dependencies_begin(),
duke@435 2075 dependencies_end(),
duke@435 2076 dependencies_size());
duke@435 2077 if (handler_table_size() > 0) tty->print_cr(" handler table [" INTPTR_FORMAT "," INTPTR_FORMAT "] = %d",
duke@435 2078 handler_table_begin(),
duke@435 2079 handler_table_end(),
duke@435 2080 handler_table_size());
duke@435 2081 if (nul_chk_table_size() > 0) tty->print_cr(" nul chk table [" INTPTR_FORMAT "," INTPTR_FORMAT "] = %d",
duke@435 2082 nul_chk_table_begin(),
duke@435 2083 nul_chk_table_end(),
duke@435 2084 nul_chk_table_size());
duke@435 2085 if (oops_size () > 0) tty->print_cr(" oops [" INTPTR_FORMAT "," INTPTR_FORMAT "] = %d",
duke@435 2086 oops_begin(),
duke@435 2087 oops_end(),
duke@435 2088 oops_size());
duke@435 2089 }
duke@435 2090
jrose@535 2091 void nmethod::print_code() {
jrose@535 2092 HandleMark hm;
jrose@535 2093 ResourceMark m;
jrose@535 2094 Disassembler::decode(this);
jrose@535 2095 }
jrose@535 2096
jrose@535 2097
jrose@535 2098 #ifndef PRODUCT
duke@435 2099
duke@435 2100 void nmethod::print_scopes() {
duke@435 2101 // Find the first pc desc for all scopes in the code and print it.
duke@435 2102 ResourceMark rm;
duke@435 2103 for (PcDesc* p = scopes_pcs_begin(); p < scopes_pcs_end(); p++) {
duke@435 2104 if (p->scope_decode_offset() == DebugInformationRecorder::serialized_null)
duke@435 2105 continue;
duke@435 2106
duke@435 2107 ScopeDesc* sd = scope_desc_at(p->real_pc(this));
duke@435 2108 sd->print_on(tty, p);
duke@435 2109 }
duke@435 2110 }
duke@435 2111
duke@435 2112 void nmethod::print_dependencies() {
duke@435 2113 ResourceMark rm;
duke@435 2114 ttyLocker ttyl; // keep the following output all in one block
duke@435 2115 tty->print_cr("Dependencies:");
duke@435 2116 for (Dependencies::DepStream deps(this); deps.next(); ) {
duke@435 2117 deps.print_dependency();
duke@435 2118 klassOop ctxk = deps.context_type();
duke@435 2119 if (ctxk != NULL) {
duke@435 2120 Klass* k = Klass::cast(ctxk);
duke@435 2121 if (k->oop_is_instance() && ((instanceKlass*)k)->is_dependent_nmethod(this)) {
jrose@465 2122 tty->print_cr(" [nmethod<=klass]%s", k->external_name());
duke@435 2123 }
duke@435 2124 }
duke@435 2125 deps.log_dependency(); // put it into the xml log also
duke@435 2126 }
duke@435 2127 }
duke@435 2128
duke@435 2129
duke@435 2130 void nmethod::print_relocations() {
duke@435 2131 ResourceMark m; // in case methods get printed via the debugger
duke@435 2132 tty->print_cr("relocations:");
duke@435 2133 RelocIterator iter(this);
duke@435 2134 iter.print();
duke@435 2135 if (UseRelocIndex) {
duke@435 2136 jint* index_end = (jint*)relocation_end() - 1;
duke@435 2137 jint index_size = *index_end;
duke@435 2138 jint* index_start = (jint*)( (address)index_end - index_size );
duke@435 2139 tty->print_cr(" index @" INTPTR_FORMAT ": index_size=%d", index_start, index_size);
duke@435 2140 if (index_size > 0) {
duke@435 2141 jint* ip;
duke@435 2142 for (ip = index_start; ip+2 <= index_end; ip += 2)
duke@435 2143 tty->print_cr(" (%d %d) addr=" INTPTR_FORMAT " @" INTPTR_FORMAT,
duke@435 2144 ip[0],
duke@435 2145 ip[1],
duke@435 2146 header_end()+ip[0],
duke@435 2147 relocation_begin()-1+ip[1]);
duke@435 2148 for (; ip < index_end; ip++)
duke@435 2149 tty->print_cr(" (%d ?)", ip[0]);
duke@435 2150 tty->print_cr(" @" INTPTR_FORMAT ": index_size=%d", ip, *ip++);
duke@435 2151 tty->print_cr("reloc_end @" INTPTR_FORMAT ":", ip);
duke@435 2152 }
duke@435 2153 }
duke@435 2154 }
duke@435 2155
duke@435 2156
duke@435 2157 void nmethod::print_pcs() {
duke@435 2158 ResourceMark m; // in case methods get printed via debugger
duke@435 2159 tty->print_cr("pc-bytecode offsets:");
duke@435 2160 for (PcDesc* p = scopes_pcs_begin(); p < scopes_pcs_end(); p++) {
duke@435 2161 p->print(this);
duke@435 2162 }
duke@435 2163 }
duke@435 2164
jrose@535 2165 #endif // PRODUCT
duke@435 2166
duke@435 2167 const char* nmethod::reloc_string_for(u_char* begin, u_char* end) {
duke@435 2168 RelocIterator iter(this, begin, end);
duke@435 2169 bool have_one = false;
duke@435 2170 while (iter.next()) {
duke@435 2171 have_one = true;
duke@435 2172 switch (iter.type()) {
duke@435 2173 case relocInfo::none: return "no_reloc";
duke@435 2174 case relocInfo::oop_type: {
duke@435 2175 stringStream st;
duke@435 2176 oop_Relocation* r = iter.oop_reloc();
duke@435 2177 oop obj = r->oop_value();
duke@435 2178 st.print("oop(");
duke@435 2179 if (obj == NULL) st.print("NULL");
duke@435 2180 else obj->print_value_on(&st);
duke@435 2181 st.print(")");
duke@435 2182 return st.as_string();
duke@435 2183 }
duke@435 2184 case relocInfo::virtual_call_type: return "virtual_call";
duke@435 2185 case relocInfo::opt_virtual_call_type: return "optimized virtual_call";
duke@435 2186 case relocInfo::static_call_type: return "static_call";
duke@435 2187 case relocInfo::static_stub_type: return "static_stub";
duke@435 2188 case relocInfo::runtime_call_type: return "runtime_call";
duke@435 2189 case relocInfo::external_word_type: return "external_word";
duke@435 2190 case relocInfo::internal_word_type: return "internal_word";
duke@435 2191 case relocInfo::section_word_type: return "section_word";
duke@435 2192 case relocInfo::poll_type: return "poll";
duke@435 2193 case relocInfo::poll_return_type: return "poll_return";
duke@435 2194 case relocInfo::type_mask: return "type_bit_mask";
duke@435 2195 }
duke@435 2196 }
duke@435 2197 return have_one ? "other" : NULL;
duke@435 2198 }
duke@435 2199
duke@435 2200 // Return a the last scope in (begin..end]
duke@435 2201 ScopeDesc* nmethod::scope_desc_in(address begin, address end) {
duke@435 2202 PcDesc* p = pc_desc_near(begin+1);
duke@435 2203 if (p != NULL && p->real_pc(this) <= end) {
duke@435 2204 return new ScopeDesc(this, p->scope_decode_offset(),
duke@435 2205 p->obj_decode_offset());
duke@435 2206 }
duke@435 2207 return NULL;
duke@435 2208 }
duke@435 2209
duke@435 2210 void nmethod::print_code_comment_on(outputStream* st, int column, u_char* begin, u_char* end) {
duke@435 2211 // First, find an oopmap in (begin, end].
duke@435 2212 // We use the odd half-closed interval so that oop maps and scope descs
duke@435 2213 // which are tied to the byte after a call are printed with the call itself.
duke@435 2214 address base = instructions_begin();
duke@435 2215 OopMapSet* oms = oop_maps();
duke@435 2216 if (oms != NULL) {
duke@435 2217 for (int i = 0, imax = oms->size(); i < imax; i++) {
duke@435 2218 OopMap* om = oms->at(i);
duke@435 2219 address pc = base + om->offset();
duke@435 2220 if (pc > begin) {
duke@435 2221 if (pc <= end) {
jrose@535 2222 st->move_to(column);
jrose@535 2223 st->print("; ");
jrose@535 2224 om->print_on(st);
duke@435 2225 }
duke@435 2226 break;
duke@435 2227 }
duke@435 2228 }
duke@435 2229 }
jrose@535 2230
jrose@535 2231 // Print any debug info present at this pc.
duke@435 2232 ScopeDesc* sd = scope_desc_in(begin, end);
duke@435 2233 if (sd != NULL) {
jrose@535 2234 st->move_to(column);
duke@435 2235 if (sd->bci() == SynchronizationEntryBCI) {
duke@435 2236 st->print(";*synchronization entry");
duke@435 2237 } else {
duke@435 2238 if (sd->method().is_null()) {
jrose@535 2239 st->print("method is NULL");
duke@435 2240 } else if (sd->method()->is_native()) {
jrose@535 2241 st->print("method is native");
duke@435 2242 } else {
duke@435 2243 address bcp = sd->method()->bcp_from(sd->bci());
duke@435 2244 Bytecodes::Code bc = Bytecodes::java_code_at(bcp);
duke@435 2245 st->print(";*%s", Bytecodes::name(bc));
duke@435 2246 switch (bc) {
duke@435 2247 case Bytecodes::_invokevirtual:
duke@435 2248 case Bytecodes::_invokespecial:
duke@435 2249 case Bytecodes::_invokestatic:
duke@435 2250 case Bytecodes::_invokeinterface:
duke@435 2251 {
duke@435 2252 Bytecode_invoke* invoke = Bytecode_invoke_at(sd->method(), sd->bci());
duke@435 2253 st->print(" ");
duke@435 2254 if (invoke->name() != NULL)
duke@435 2255 invoke->name()->print_symbol_on(st);
duke@435 2256 else
duke@435 2257 st->print("<UNKNOWN>");
duke@435 2258 break;
duke@435 2259 }
duke@435 2260 case Bytecodes::_getfield:
duke@435 2261 case Bytecodes::_putfield:
duke@435 2262 case Bytecodes::_getstatic:
duke@435 2263 case Bytecodes::_putstatic:
duke@435 2264 {
duke@435 2265 methodHandle sdm = sd->method();
duke@435 2266 Bytecode_field* field = Bytecode_field_at(sdm(), sdm->bcp_from(sd->bci()));
duke@435 2267 constantPoolOop sdmc = sdm->constants();
duke@435 2268 symbolOop name = sdmc->name_ref_at(field->index());
duke@435 2269 st->print(" ");
duke@435 2270 if (name != NULL)
duke@435 2271 name->print_symbol_on(st);
duke@435 2272 else
duke@435 2273 st->print("<UNKNOWN>");
duke@435 2274 }
duke@435 2275 }
duke@435 2276 }
duke@435 2277 }
jrose@535 2278
duke@435 2279 // Print all scopes
duke@435 2280 for (;sd != NULL; sd = sd->sender()) {
jrose@535 2281 st->move_to(column);
duke@435 2282 st->print("; -");
duke@435 2283 if (sd->method().is_null()) {
jrose@535 2284 st->print("method is NULL");
duke@435 2285 } else {
duke@435 2286 sd->method()->print_short_name(st);
duke@435 2287 }
duke@435 2288 int lineno = sd->method()->line_number_from_bci(sd->bci());
duke@435 2289 if (lineno != -1) {
duke@435 2290 st->print("@%d (line %d)", sd->bci(), lineno);
duke@435 2291 } else {
duke@435 2292 st->print("@%d", sd->bci());
duke@435 2293 }
duke@435 2294 st->cr();
duke@435 2295 }
duke@435 2296 }
duke@435 2297
duke@435 2298 // Print relocation information
duke@435 2299 const char* str = reloc_string_for(begin, end);
duke@435 2300 if (str != NULL) {
duke@435 2301 if (sd != NULL) st->cr();
jrose@535 2302 st->move_to(column);
duke@435 2303 st->print("; {%s}", str);
duke@435 2304 }
duke@435 2305 int cont_offset = ImplicitExceptionTable(this).at(begin - instructions_begin());
duke@435 2306 if (cont_offset != 0) {
jrose@535 2307 st->move_to(column);
duke@435 2308 st->print("; implicit exception: dispatches to " INTPTR_FORMAT, instructions_begin() + cont_offset);
duke@435 2309 }
duke@435 2310
duke@435 2311 }
duke@435 2312
jrose@535 2313 #ifndef PRODUCT
jrose@535 2314
duke@435 2315 void nmethod::print_value_on(outputStream* st) const {
duke@435 2316 print_on(st, "nmethod");
duke@435 2317 }
duke@435 2318
duke@435 2319 void nmethod::print_calls(outputStream* st) {
duke@435 2320 RelocIterator iter(this);
duke@435 2321 while (iter.next()) {
duke@435 2322 switch (iter.type()) {
duke@435 2323 case relocInfo::virtual_call_type:
duke@435 2324 case relocInfo::opt_virtual_call_type: {
duke@435 2325 VerifyMutexLocker mc(CompiledIC_lock);
duke@435 2326 CompiledIC_at(iter.reloc())->print();
duke@435 2327 break;
duke@435 2328 }
duke@435 2329 case relocInfo::static_call_type:
duke@435 2330 st->print_cr("Static call at " INTPTR_FORMAT, iter.reloc()->addr());
duke@435 2331 compiledStaticCall_at(iter.reloc())->print();
duke@435 2332 break;
duke@435 2333 }
duke@435 2334 }
duke@435 2335 }
duke@435 2336
duke@435 2337 void nmethod::print_handler_table() {
duke@435 2338 ExceptionHandlerTable(this).print();
duke@435 2339 }
duke@435 2340
duke@435 2341 void nmethod::print_nul_chk_table() {
duke@435 2342 ImplicitExceptionTable(this).print(instructions_begin());
duke@435 2343 }
duke@435 2344
duke@435 2345 void nmethod::print_statistics() {
duke@435 2346 ttyLocker ttyl;
duke@435 2347 if (xtty != NULL) xtty->head("statistics type='nmethod'");
duke@435 2348 nmethod_stats.print_native_nmethod_stats();
duke@435 2349 nmethod_stats.print_nmethod_stats();
duke@435 2350 DebugInformationRecorder::print_statistics();
duke@435 2351 nmethod_stats.print_pc_stats();
duke@435 2352 Dependencies::print_statistics();
duke@435 2353 if (xtty != NULL) xtty->tail("statistics");
duke@435 2354 }
duke@435 2355
duke@435 2356 #endif // PRODUCT

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