src/share/vm/c1/c1_GraphBuilder.cpp

Fri, 28 Mar 2014 10:12:48 -0700

author
vlivanov
date
Fri, 28 Mar 2014 10:12:48 -0700
changeset 6527
f47fa50d9b9c
parent 6213
f834ae379225
child 6668
45e59fae8f2b
permissions
-rw-r--r--

8035887: VM crashes trying to force inlining the recursive call
Reviewed-by: kvn, twisti

duke@435 1 /*
drchase@5353 2 * Copyright (c) 1999, 2013, Oracle and/or its affiliates. All rights reserved.
duke@435 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@435 4 *
duke@435 5 * This code is free software; you can redistribute it and/or modify it
duke@435 6 * under the terms of the GNU General Public License version 2 only, as
duke@435 7 * published by the Free Software Foundation.
duke@435 8 *
duke@435 9 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@435 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@435 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@435 12 * version 2 for more details (a copy is included in the LICENSE file that
duke@435 13 * accompanied this code).
duke@435 14 *
duke@435 15 * You should have received a copy of the GNU General Public License version
duke@435 16 * 2 along with this work; if not, write to the Free Software Foundation,
duke@435 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@435 18 *
trims@1907 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
trims@1907 20 * or visit www.oracle.com if you need additional information or have any
trims@1907 21 * questions.
duke@435 22 *
duke@435 23 */
duke@435 24
stefank@2314 25 #include "precompiled.hpp"
stefank@2314 26 #include "c1/c1_CFGPrinter.hpp"
stefank@2314 27 #include "c1/c1_Canonicalizer.hpp"
stefank@2314 28 #include "c1/c1_Compilation.hpp"
stefank@2314 29 #include "c1/c1_GraphBuilder.hpp"
stefank@2314 30 #include "c1/c1_InstructionPrinter.hpp"
twisti@3100 31 #include "ci/ciCallSite.hpp"
stefank@2314 32 #include "ci/ciField.hpp"
stefank@2314 33 #include "ci/ciKlass.hpp"
twisti@3969 34 #include "ci/ciMemberName.hpp"
twisti@2687 35 #include "compiler/compileBroker.hpp"
stefank@2314 36 #include "interpreter/bytecode.hpp"
stefank@2314 37 #include "runtime/sharedRuntime.hpp"
iveresov@2988 38 #include "runtime/compilationPolicy.hpp"
stefank@2314 39 #include "utilities/bitMap.inline.hpp"
duke@435 40
duke@435 41 class BlockListBuilder VALUE_OBJ_CLASS_SPEC {
duke@435 42 private:
duke@435 43 Compilation* _compilation;
duke@435 44 IRScope* _scope;
duke@435 45
duke@435 46 BlockList _blocks; // internal list of all blocks
duke@435 47 BlockList* _bci2block; // mapping from bci to blocks for GraphBuilder
duke@435 48
duke@435 49 // fields used by mark_loops
duke@435 50 BitMap _active; // for iteration of control flow graph
duke@435 51 BitMap _visited; // for iteration of control flow graph
duke@435 52 intArray _loop_map; // caches the information if a block is contained in a loop
duke@435 53 int _next_loop_index; // next free loop number
duke@435 54 int _next_block_number; // for reverse postorder numbering of blocks
duke@435 55
duke@435 56 // accessors
duke@435 57 Compilation* compilation() const { return _compilation; }
duke@435 58 IRScope* scope() const { return _scope; }
duke@435 59 ciMethod* method() const { return scope()->method(); }
duke@435 60 XHandlers* xhandlers() const { return scope()->xhandlers(); }
duke@435 61
duke@435 62 // unified bailout support
duke@435 63 void bailout(const char* msg) const { compilation()->bailout(msg); }
duke@435 64 bool bailed_out() const { return compilation()->bailed_out(); }
duke@435 65
duke@435 66 // helper functions
duke@435 67 BlockBegin* make_block_at(int bci, BlockBegin* predecessor);
duke@435 68 void handle_exceptions(BlockBegin* current, int cur_bci);
duke@435 69 void handle_jsr(BlockBegin* current, int sr_bci, int next_bci);
duke@435 70 void store_one(BlockBegin* current, int local);
duke@435 71 void store_two(BlockBegin* current, int local);
duke@435 72 void set_entries(int osr_bci);
duke@435 73 void set_leaders();
duke@435 74
duke@435 75 void make_loop_header(BlockBegin* block);
duke@435 76 void mark_loops();
duke@435 77 int mark_loops(BlockBegin* b, bool in_subroutine);
duke@435 78
duke@435 79 // debugging
duke@435 80 #ifndef PRODUCT
duke@435 81 void print();
duke@435 82 #endif
duke@435 83
duke@435 84 public:
duke@435 85 // creation
duke@435 86 BlockListBuilder(Compilation* compilation, IRScope* scope, int osr_bci);
duke@435 87
duke@435 88 // accessors for GraphBuilder
duke@435 89 BlockList* bci2block() const { return _bci2block; }
duke@435 90 };
duke@435 91
duke@435 92
duke@435 93 // Implementation of BlockListBuilder
duke@435 94
duke@435 95 BlockListBuilder::BlockListBuilder(Compilation* compilation, IRScope* scope, int osr_bci)
duke@435 96 : _compilation(compilation)
duke@435 97 , _scope(scope)
duke@435 98 , _blocks(16)
duke@435 99 , _bci2block(new BlockList(scope->method()->code_size(), NULL))
duke@435 100 , _next_block_number(0)
duke@435 101 , _active() // size not known yet
duke@435 102 , _visited() // size not known yet
duke@435 103 , _next_loop_index(0)
duke@435 104 , _loop_map() // size not known yet
duke@435 105 {
duke@435 106 set_entries(osr_bci);
duke@435 107 set_leaders();
duke@435 108 CHECK_BAILOUT();
duke@435 109
duke@435 110 mark_loops();
duke@435 111 NOT_PRODUCT(if (PrintInitialBlockList) print());
duke@435 112
duke@435 113 #ifndef PRODUCT
duke@435 114 if (PrintCFGToFile) {
duke@435 115 stringStream title;
duke@435 116 title.print("BlockListBuilder ");
duke@435 117 scope->method()->print_name(&title);
duke@435 118 CFGPrinter::print_cfg(_bci2block, title.as_string(), false, false);
duke@435 119 }
duke@435 120 #endif
duke@435 121 }
duke@435 122
duke@435 123
duke@435 124 void BlockListBuilder::set_entries(int osr_bci) {
duke@435 125 // generate start blocks
duke@435 126 BlockBegin* std_entry = make_block_at(0, NULL);
duke@435 127 if (scope()->caller() == NULL) {
duke@435 128 std_entry->set(BlockBegin::std_entry_flag);
duke@435 129 }
duke@435 130 if (osr_bci != -1) {
duke@435 131 BlockBegin* osr_entry = make_block_at(osr_bci, NULL);
duke@435 132 osr_entry->set(BlockBegin::osr_entry_flag);
duke@435 133 }
duke@435 134
duke@435 135 // generate exception entry blocks
duke@435 136 XHandlers* list = xhandlers();
duke@435 137 const int n = list->length();
duke@435 138 for (int i = 0; i < n; i++) {
duke@435 139 XHandler* h = list->handler_at(i);
duke@435 140 BlockBegin* entry = make_block_at(h->handler_bci(), NULL);
duke@435 141 entry->set(BlockBegin::exception_entry_flag);
duke@435 142 h->set_entry_block(entry);
duke@435 143 }
duke@435 144 }
duke@435 145
duke@435 146
duke@435 147 BlockBegin* BlockListBuilder::make_block_at(int cur_bci, BlockBegin* predecessor) {
duke@435 148 assert(method()->bci_block_start().at(cur_bci), "wrong block starts of MethodLivenessAnalyzer");
duke@435 149
duke@435 150 BlockBegin* block = _bci2block->at(cur_bci);
duke@435 151 if (block == NULL) {
duke@435 152 block = new BlockBegin(cur_bci);
duke@435 153 block->init_stores_to_locals(method()->max_locals());
duke@435 154 _bci2block->at_put(cur_bci, block);
duke@435 155 _blocks.append(block);
duke@435 156
duke@435 157 assert(predecessor == NULL || predecessor->bci() < cur_bci, "targets for backward branches must already exist");
duke@435 158 }
duke@435 159
duke@435 160 if (predecessor != NULL) {
duke@435 161 if (block->is_set(BlockBegin::exception_entry_flag)) {
duke@435 162 BAILOUT_("Exception handler can be reached by both normal and exceptional control flow", block);
duke@435 163 }
duke@435 164
duke@435 165 predecessor->add_successor(block);
duke@435 166 block->increment_total_preds();
duke@435 167 }
duke@435 168
duke@435 169 return block;
duke@435 170 }
duke@435 171
duke@435 172
duke@435 173 inline void BlockListBuilder::store_one(BlockBegin* current, int local) {
duke@435 174 current->stores_to_locals().set_bit(local);
duke@435 175 }
duke@435 176 inline void BlockListBuilder::store_two(BlockBegin* current, int local) {
duke@435 177 store_one(current, local);
duke@435 178 store_one(current, local + 1);
duke@435 179 }
duke@435 180
duke@435 181
duke@435 182 void BlockListBuilder::handle_exceptions(BlockBegin* current, int cur_bci) {
duke@435 183 // Draws edges from a block to its exception handlers
duke@435 184 XHandlers* list = xhandlers();
duke@435 185 const int n = list->length();
duke@435 186
duke@435 187 for (int i = 0; i < n; i++) {
duke@435 188 XHandler* h = list->handler_at(i);
duke@435 189
duke@435 190 if (h->covers(cur_bci)) {
duke@435 191 BlockBegin* entry = h->entry_block();
duke@435 192 assert(entry != NULL && entry == _bci2block->at(h->handler_bci()), "entry must be set");
duke@435 193 assert(entry->is_set(BlockBegin::exception_entry_flag), "flag must be set");
duke@435 194
duke@435 195 // add each exception handler only once
duke@435 196 if (!current->is_successor(entry)) {
duke@435 197 current->add_successor(entry);
duke@435 198 entry->increment_total_preds();
duke@435 199 }
duke@435 200
duke@435 201 // stop when reaching catchall
duke@435 202 if (h->catch_type() == 0) break;
duke@435 203 }
duke@435 204 }
duke@435 205 }
duke@435 206
duke@435 207 void BlockListBuilder::handle_jsr(BlockBegin* current, int sr_bci, int next_bci) {
duke@435 208 // start a new block after jsr-bytecode and link this block into cfg
duke@435 209 make_block_at(next_bci, current);
duke@435 210
duke@435 211 // start a new block at the subroutine entry at mark it with special flag
duke@435 212 BlockBegin* sr_block = make_block_at(sr_bci, current);
duke@435 213 if (!sr_block->is_set(BlockBegin::subroutine_entry_flag)) {
duke@435 214 sr_block->set(BlockBegin::subroutine_entry_flag);
duke@435 215 }
duke@435 216 }
duke@435 217
duke@435 218
duke@435 219 void BlockListBuilder::set_leaders() {
duke@435 220 bool has_xhandlers = xhandlers()->has_handlers();
duke@435 221 BlockBegin* current = NULL;
duke@435 222
duke@435 223 // The information which bci starts a new block simplifies the analysis
duke@435 224 // Without it, backward branches could jump to a bci where no block was created
duke@435 225 // during bytecode iteration. This would require the creation of a new block at the
duke@435 226 // branch target and a modification of the successor lists.
duke@435 227 BitMap bci_block_start = method()->bci_block_start();
duke@435 228
duke@435 229 ciBytecodeStream s(method());
duke@435 230 while (s.next() != ciBytecodeStream::EOBC()) {
duke@435 231 int cur_bci = s.cur_bci();
duke@435 232
duke@435 233 if (bci_block_start.at(cur_bci)) {
duke@435 234 current = make_block_at(cur_bci, current);
duke@435 235 }
duke@435 236 assert(current != NULL, "must have current block");
duke@435 237
duke@435 238 if (has_xhandlers && GraphBuilder::can_trap(method(), s.cur_bc())) {
duke@435 239 handle_exceptions(current, cur_bci);
duke@435 240 }
duke@435 241
duke@435 242 switch (s.cur_bc()) {
duke@435 243 // track stores to local variables for selective creation of phi functions
duke@435 244 case Bytecodes::_iinc: store_one(current, s.get_index()); break;
duke@435 245 case Bytecodes::_istore: store_one(current, s.get_index()); break;
duke@435 246 case Bytecodes::_lstore: store_two(current, s.get_index()); break;
duke@435 247 case Bytecodes::_fstore: store_one(current, s.get_index()); break;
duke@435 248 case Bytecodes::_dstore: store_two(current, s.get_index()); break;
duke@435 249 case Bytecodes::_astore: store_one(current, s.get_index()); break;
duke@435 250 case Bytecodes::_istore_0: store_one(current, 0); break;
duke@435 251 case Bytecodes::_istore_1: store_one(current, 1); break;
duke@435 252 case Bytecodes::_istore_2: store_one(current, 2); break;
duke@435 253 case Bytecodes::_istore_3: store_one(current, 3); break;
duke@435 254 case Bytecodes::_lstore_0: store_two(current, 0); break;
duke@435 255 case Bytecodes::_lstore_1: store_two(current, 1); break;
duke@435 256 case Bytecodes::_lstore_2: store_two(current, 2); break;
duke@435 257 case Bytecodes::_lstore_3: store_two(current, 3); break;
duke@435 258 case Bytecodes::_fstore_0: store_one(current, 0); break;
duke@435 259 case Bytecodes::_fstore_1: store_one(current, 1); break;
duke@435 260 case Bytecodes::_fstore_2: store_one(current, 2); break;
duke@435 261 case Bytecodes::_fstore_3: store_one(current, 3); break;
duke@435 262 case Bytecodes::_dstore_0: store_two(current, 0); break;
duke@435 263 case Bytecodes::_dstore_1: store_two(current, 1); break;
duke@435 264 case Bytecodes::_dstore_2: store_two(current, 2); break;
duke@435 265 case Bytecodes::_dstore_3: store_two(current, 3); break;
duke@435 266 case Bytecodes::_astore_0: store_one(current, 0); break;
duke@435 267 case Bytecodes::_astore_1: store_one(current, 1); break;
duke@435 268 case Bytecodes::_astore_2: store_one(current, 2); break;
duke@435 269 case Bytecodes::_astore_3: store_one(current, 3); break;
duke@435 270
duke@435 271 // track bytecodes that affect the control flow
duke@435 272 case Bytecodes::_athrow: // fall through
duke@435 273 case Bytecodes::_ret: // fall through
duke@435 274 case Bytecodes::_ireturn: // fall through
duke@435 275 case Bytecodes::_lreturn: // fall through
duke@435 276 case Bytecodes::_freturn: // fall through
duke@435 277 case Bytecodes::_dreturn: // fall through
duke@435 278 case Bytecodes::_areturn: // fall through
duke@435 279 case Bytecodes::_return:
duke@435 280 current = NULL;
duke@435 281 break;
duke@435 282
duke@435 283 case Bytecodes::_ifeq: // fall through
duke@435 284 case Bytecodes::_ifne: // fall through
duke@435 285 case Bytecodes::_iflt: // fall through
duke@435 286 case Bytecodes::_ifge: // fall through
duke@435 287 case Bytecodes::_ifgt: // fall through
duke@435 288 case Bytecodes::_ifle: // fall through
duke@435 289 case Bytecodes::_if_icmpeq: // fall through
duke@435 290 case Bytecodes::_if_icmpne: // fall through
duke@435 291 case Bytecodes::_if_icmplt: // fall through
duke@435 292 case Bytecodes::_if_icmpge: // fall through
duke@435 293 case Bytecodes::_if_icmpgt: // fall through
duke@435 294 case Bytecodes::_if_icmple: // fall through
duke@435 295 case Bytecodes::_if_acmpeq: // fall through
duke@435 296 case Bytecodes::_if_acmpne: // fall through
duke@435 297 case Bytecodes::_ifnull: // fall through
duke@435 298 case Bytecodes::_ifnonnull:
duke@435 299 make_block_at(s.next_bci(), current);
duke@435 300 make_block_at(s.get_dest(), current);
duke@435 301 current = NULL;
duke@435 302 break;
duke@435 303
duke@435 304 case Bytecodes::_goto:
duke@435 305 make_block_at(s.get_dest(), current);
duke@435 306 current = NULL;
duke@435 307 break;
duke@435 308
duke@435 309 case Bytecodes::_goto_w:
duke@435 310 make_block_at(s.get_far_dest(), current);
duke@435 311 current = NULL;
duke@435 312 break;
duke@435 313
duke@435 314 case Bytecodes::_jsr:
duke@435 315 handle_jsr(current, s.get_dest(), s.next_bci());
duke@435 316 current = NULL;
duke@435 317 break;
duke@435 318
duke@435 319 case Bytecodes::_jsr_w:
duke@435 320 handle_jsr(current, s.get_far_dest(), s.next_bci());
duke@435 321 current = NULL;
duke@435 322 break;
duke@435 323
duke@435 324 case Bytecodes::_tableswitch: {
duke@435 325 // set block for each case
never@2462 326 Bytecode_tableswitch sw(&s);
never@2462 327 int l = sw.length();
duke@435 328 for (int i = 0; i < l; i++) {
never@2462 329 make_block_at(cur_bci + sw.dest_offset_at(i), current);
duke@435 330 }
never@2462 331 make_block_at(cur_bci + sw.default_offset(), current);
duke@435 332 current = NULL;
duke@435 333 break;
duke@435 334 }
duke@435 335
duke@435 336 case Bytecodes::_lookupswitch: {
duke@435 337 // set block for each case
never@2462 338 Bytecode_lookupswitch sw(&s);
never@2462 339 int l = sw.number_of_pairs();
duke@435 340 for (int i = 0; i < l; i++) {
never@2462 341 make_block_at(cur_bci + sw.pair_at(i).offset(), current);
duke@435 342 }
never@2462 343 make_block_at(cur_bci + sw.default_offset(), current);
duke@435 344 current = NULL;
duke@435 345 break;
duke@435 346 }
duke@435 347 }
duke@435 348 }
duke@435 349 }
duke@435 350
duke@435 351
duke@435 352 void BlockListBuilder::mark_loops() {
duke@435 353 ResourceMark rm;
duke@435 354
duke@435 355 _active = BitMap(BlockBegin::number_of_blocks()); _active.clear();
duke@435 356 _visited = BitMap(BlockBegin::number_of_blocks()); _visited.clear();
duke@435 357 _loop_map = intArray(BlockBegin::number_of_blocks(), 0);
duke@435 358 _next_loop_index = 0;
duke@435 359 _next_block_number = _blocks.length();
duke@435 360
duke@435 361 // recursively iterate the control flow graph
duke@435 362 mark_loops(_bci2block->at(0), false);
duke@435 363 assert(_next_block_number >= 0, "invalid block numbers");
duke@435 364 }
duke@435 365
duke@435 366 void BlockListBuilder::make_loop_header(BlockBegin* block) {
duke@435 367 if (block->is_set(BlockBegin::exception_entry_flag)) {
duke@435 368 // exception edges may look like loops but don't mark them as such
duke@435 369 // since it screws up block ordering.
duke@435 370 return;
duke@435 371 }
duke@435 372 if (!block->is_set(BlockBegin::parser_loop_header_flag)) {
duke@435 373 block->set(BlockBegin::parser_loop_header_flag);
duke@435 374
duke@435 375 assert(_loop_map.at(block->block_id()) == 0, "must not be set yet");
duke@435 376 assert(0 <= _next_loop_index && _next_loop_index < BitsPerInt, "_next_loop_index is used as a bit-index in integer");
duke@435 377 _loop_map.at_put(block->block_id(), 1 << _next_loop_index);
duke@435 378 if (_next_loop_index < 31) _next_loop_index++;
duke@435 379 } else {
duke@435 380 // block already marked as loop header
roland@1495 381 assert(is_power_of_2((unsigned int)_loop_map.at(block->block_id())), "exactly one bit must be set");
duke@435 382 }
duke@435 383 }
duke@435 384
duke@435 385 int BlockListBuilder::mark_loops(BlockBegin* block, bool in_subroutine) {
duke@435 386 int block_id = block->block_id();
duke@435 387
duke@435 388 if (_visited.at(block_id)) {
duke@435 389 if (_active.at(block_id)) {
duke@435 390 // reached block via backward branch
duke@435 391 make_loop_header(block);
duke@435 392 }
duke@435 393 // return cached loop information for this block
duke@435 394 return _loop_map.at(block_id);
duke@435 395 }
duke@435 396
duke@435 397 if (block->is_set(BlockBegin::subroutine_entry_flag)) {
duke@435 398 in_subroutine = true;
duke@435 399 }
duke@435 400
duke@435 401 // set active and visited bits before successors are processed
duke@435 402 _visited.set_bit(block_id);
duke@435 403 _active.set_bit(block_id);
duke@435 404
duke@435 405 intptr_t loop_state = 0;
duke@435 406 for (int i = block->number_of_sux() - 1; i >= 0; i--) {
duke@435 407 // recursively process all successors
duke@435 408 loop_state |= mark_loops(block->sux_at(i), in_subroutine);
duke@435 409 }
duke@435 410
duke@435 411 // clear active-bit after all successors are processed
duke@435 412 _active.clear_bit(block_id);
duke@435 413
duke@435 414 // reverse-post-order numbering of all blocks
duke@435 415 block->set_depth_first_number(_next_block_number);
duke@435 416 _next_block_number--;
duke@435 417
duke@435 418 if (loop_state != 0 || in_subroutine ) {
duke@435 419 // block is contained at least in one loop, so phi functions are necessary
duke@435 420 // phi functions are also necessary for all locals stored in a subroutine
duke@435 421 scope()->requires_phi_function().set_union(block->stores_to_locals());
duke@435 422 }
duke@435 423
duke@435 424 if (block->is_set(BlockBegin::parser_loop_header_flag)) {
duke@435 425 int header_loop_state = _loop_map.at(block_id);
duke@435 426 assert(is_power_of_2((unsigned)header_loop_state), "exactly one bit must be set");
duke@435 427
duke@435 428 // If the highest bit is set (i.e. when integer value is negative), the method
duke@435 429 // has 32 or more loops. This bit is never cleared because it is used for multiple loops
duke@435 430 if (header_loop_state >= 0) {
duke@435 431 clear_bits(loop_state, header_loop_state);
duke@435 432 }
duke@435 433 }
duke@435 434
duke@435 435 // cache and return loop information for this block
duke@435 436 _loop_map.at_put(block_id, loop_state);
duke@435 437 return loop_state;
duke@435 438 }
duke@435 439
duke@435 440
duke@435 441 #ifndef PRODUCT
duke@435 442
duke@435 443 int compare_depth_first(BlockBegin** a, BlockBegin** b) {
duke@435 444 return (*a)->depth_first_number() - (*b)->depth_first_number();
duke@435 445 }
duke@435 446
duke@435 447 void BlockListBuilder::print() {
duke@435 448 tty->print("----- initial block list of BlockListBuilder for method ");
duke@435 449 method()->print_short_name();
duke@435 450 tty->cr();
duke@435 451
duke@435 452 // better readability if blocks are sorted in processing order
duke@435 453 _blocks.sort(compare_depth_first);
duke@435 454
duke@435 455 for (int i = 0; i < _blocks.length(); i++) {
duke@435 456 BlockBegin* cur = _blocks.at(i);
duke@435 457 tty->print("%4d: B%-4d bci: %-4d preds: %-4d ", cur->depth_first_number(), cur->block_id(), cur->bci(), cur->total_preds());
duke@435 458
duke@435 459 tty->print(cur->is_set(BlockBegin::std_entry_flag) ? " std" : " ");
duke@435 460 tty->print(cur->is_set(BlockBegin::osr_entry_flag) ? " osr" : " ");
duke@435 461 tty->print(cur->is_set(BlockBegin::exception_entry_flag) ? " ex" : " ");
duke@435 462 tty->print(cur->is_set(BlockBegin::subroutine_entry_flag) ? " sr" : " ");
duke@435 463 tty->print(cur->is_set(BlockBegin::parser_loop_header_flag) ? " lh" : " ");
duke@435 464
duke@435 465 if (cur->number_of_sux() > 0) {
duke@435 466 tty->print(" sux: ");
duke@435 467 for (int j = 0; j < cur->number_of_sux(); j++) {
duke@435 468 BlockBegin* sux = cur->sux_at(j);
duke@435 469 tty->print("B%d ", sux->block_id());
duke@435 470 }
duke@435 471 }
duke@435 472 tty->cr();
duke@435 473 }
duke@435 474 }
duke@435 475
duke@435 476 #endif
duke@435 477
duke@435 478
duke@435 479 // A simple growable array of Values indexed by ciFields
duke@435 480 class FieldBuffer: public CompilationResourceObj {
duke@435 481 private:
duke@435 482 GrowableArray<Value> _values;
duke@435 483
duke@435 484 public:
duke@435 485 FieldBuffer() {}
duke@435 486
duke@435 487 void kill() {
duke@435 488 _values.trunc_to(0);
duke@435 489 }
duke@435 490
duke@435 491 Value at(ciField* field) {
duke@435 492 assert(field->holder()->is_loaded(), "must be a loaded field");
duke@435 493 int offset = field->offset();
duke@435 494 if (offset < _values.length()) {
duke@435 495 return _values.at(offset);
duke@435 496 } else {
duke@435 497 return NULL;
duke@435 498 }
duke@435 499 }
duke@435 500
duke@435 501 void at_put(ciField* field, Value value) {
duke@435 502 assert(field->holder()->is_loaded(), "must be a loaded field");
duke@435 503 int offset = field->offset();
duke@435 504 _values.at_put_grow(offset, value, NULL);
duke@435 505 }
duke@435 506
duke@435 507 };
duke@435 508
duke@435 509
duke@435 510 // MemoryBuffer is fairly simple model of the current state of memory.
duke@435 511 // It partitions memory into several pieces. The first piece is
duke@435 512 // generic memory where little is known about the owner of the memory.
duke@435 513 // This is conceptually represented by the tuple <O, F, V> which says
duke@435 514 // that the field F of object O has value V. This is flattened so
duke@435 515 // that F is represented by the offset of the field and the parallel
duke@435 516 // arrays _objects and _values are used for O and V. Loads of O.F can
duke@435 517 // simply use V. Newly allocated objects are kept in a separate list
duke@435 518 // along with a parallel array for each object which represents the
duke@435 519 // current value of its fields. Stores of the default value to fields
duke@435 520 // which have never been stored to before are eliminated since they
duke@435 521 // are redundant. Once newly allocated objects are stored into
duke@435 522 // another object or they are passed out of the current compile they
duke@435 523 // are treated like generic memory.
duke@435 524
duke@435 525 class MemoryBuffer: public CompilationResourceObj {
duke@435 526 private:
duke@435 527 FieldBuffer _values;
duke@435 528 GrowableArray<Value> _objects;
duke@435 529 GrowableArray<Value> _newobjects;
duke@435 530 GrowableArray<FieldBuffer*> _fields;
duke@435 531
duke@435 532 public:
duke@435 533 MemoryBuffer() {}
duke@435 534
duke@435 535 StoreField* store(StoreField* st) {
duke@435 536 if (!EliminateFieldAccess) {
duke@435 537 return st;
duke@435 538 }
duke@435 539
duke@435 540 Value object = st->obj();
duke@435 541 Value value = st->value();
duke@435 542 ciField* field = st->field();
duke@435 543 if (field->holder()->is_loaded()) {
duke@435 544 int offset = field->offset();
duke@435 545 int index = _newobjects.find(object);
duke@435 546 if (index != -1) {
duke@435 547 // newly allocated object with no other stores performed on this field
duke@435 548 FieldBuffer* buf = _fields.at(index);
duke@435 549 if (buf->at(field) == NULL && is_default_value(value)) {
duke@435 550 #ifndef PRODUCT
duke@435 551 if (PrintIRDuringConstruction && Verbose) {
duke@435 552 tty->print_cr("Eliminated store for object %d:", index);
duke@435 553 st->print_line();
duke@435 554 }
duke@435 555 #endif
duke@435 556 return NULL;
duke@435 557 } else {
duke@435 558 buf->at_put(field, value);
duke@435 559 }
duke@435 560 } else {
duke@435 561 _objects.at_put_grow(offset, object, NULL);
duke@435 562 _values.at_put(field, value);
duke@435 563 }
duke@435 564
duke@435 565 store_value(value);
duke@435 566 } else {
duke@435 567 // if we held onto field names we could alias based on names but
duke@435 568 // we don't know what's being stored to so kill it all.
duke@435 569 kill();
duke@435 570 }
duke@435 571 return st;
duke@435 572 }
duke@435 573
duke@435 574
duke@435 575 // return true if this value correspond to the default value of a field.
duke@435 576 bool is_default_value(Value value) {
duke@435 577 Constant* con = value->as_Constant();
duke@435 578 if (con) {
duke@435 579 switch (con->type()->tag()) {
duke@435 580 case intTag: return con->type()->as_IntConstant()->value() == 0;
duke@435 581 case longTag: return con->type()->as_LongConstant()->value() == 0;
duke@435 582 case floatTag: return jint_cast(con->type()->as_FloatConstant()->value()) == 0;
duke@435 583 case doubleTag: return jlong_cast(con->type()->as_DoubleConstant()->value()) == jlong_cast(0);
duke@435 584 case objectTag: return con->type() == objectNull;
duke@435 585 default: ShouldNotReachHere();
duke@435 586 }
duke@435 587 }
duke@435 588 return false;
duke@435 589 }
duke@435 590
duke@435 591
duke@435 592 // return either the actual value of a load or the load itself
duke@435 593 Value load(LoadField* load) {
duke@435 594 if (!EliminateFieldAccess) {
duke@435 595 return load;
duke@435 596 }
duke@435 597
duke@435 598 if (RoundFPResults && UseSSE < 2 && load->type()->is_float_kind()) {
duke@435 599 // can't skip load since value might get rounded as a side effect
duke@435 600 return load;
duke@435 601 }
duke@435 602
duke@435 603 ciField* field = load->field();
duke@435 604 Value object = load->obj();
duke@435 605 if (field->holder()->is_loaded() && !field->is_volatile()) {
duke@435 606 int offset = field->offset();
duke@435 607 Value result = NULL;
duke@435 608 int index = _newobjects.find(object);
duke@435 609 if (index != -1) {
duke@435 610 result = _fields.at(index)->at(field);
duke@435 611 } else if (_objects.at_grow(offset, NULL) == object) {
duke@435 612 result = _values.at(field);
duke@435 613 }
duke@435 614 if (result != NULL) {
duke@435 615 #ifndef PRODUCT
duke@435 616 if (PrintIRDuringConstruction && Verbose) {
duke@435 617 tty->print_cr("Eliminated load: ");
duke@435 618 load->print_line();
duke@435 619 }
duke@435 620 #endif
duke@435 621 assert(result->type()->tag() == load->type()->tag(), "wrong types");
duke@435 622 return result;
duke@435 623 }
duke@435 624 }
duke@435 625 return load;
duke@435 626 }
duke@435 627
duke@435 628 // Record this newly allocated object
duke@435 629 void new_instance(NewInstance* object) {
duke@435 630 int index = _newobjects.length();
duke@435 631 _newobjects.append(object);
duke@435 632 if (_fields.at_grow(index, NULL) == NULL) {
duke@435 633 _fields.at_put(index, new FieldBuffer());
duke@435 634 } else {
duke@435 635 _fields.at(index)->kill();
duke@435 636 }
duke@435 637 }
duke@435 638
duke@435 639 void store_value(Value value) {
duke@435 640 int index = _newobjects.find(value);
duke@435 641 if (index != -1) {
duke@435 642 // stored a newly allocated object into another object.
duke@435 643 // Assume we've lost track of it as separate slice of memory.
duke@435 644 // We could do better by keeping track of whether individual
duke@435 645 // fields could alias each other.
duke@435 646 _newobjects.remove_at(index);
duke@435 647 // pull out the field info and store it at the end up the list
duke@435 648 // of field info list to be reused later.
duke@435 649 _fields.append(_fields.at(index));
duke@435 650 _fields.remove_at(index);
duke@435 651 }
duke@435 652 }
duke@435 653
duke@435 654 void kill() {
duke@435 655 _newobjects.trunc_to(0);
duke@435 656 _objects.trunc_to(0);
duke@435 657 _values.kill();
duke@435 658 }
duke@435 659 };
duke@435 660
duke@435 661
duke@435 662 // Implementation of GraphBuilder's ScopeData
duke@435 663
duke@435 664 GraphBuilder::ScopeData::ScopeData(ScopeData* parent)
duke@435 665 : _parent(parent)
duke@435 666 , _bci2block(NULL)
duke@435 667 , _scope(NULL)
duke@435 668 , _has_handler(false)
duke@435 669 , _stream(NULL)
duke@435 670 , _work_list(NULL)
duke@435 671 , _parsing_jsr(false)
duke@435 672 , _jsr_xhandlers(NULL)
duke@435 673 , _caller_stack_size(-1)
duke@435 674 , _continuation(NULL)
duke@435 675 , _num_returns(0)
duke@435 676 , _cleanup_block(NULL)
duke@435 677 , _cleanup_return_prev(NULL)
duke@435 678 , _cleanup_state(NULL)
duke@435 679 {
duke@435 680 if (parent != NULL) {
duke@435 681 _max_inline_size = (intx) ((float) NestedInliningSizeRatio * (float) parent->max_inline_size() / 100.0f);
duke@435 682 } else {
duke@435 683 _max_inline_size = MaxInlineSize;
duke@435 684 }
duke@435 685 if (_max_inline_size < MaxTrivialSize) {
duke@435 686 _max_inline_size = MaxTrivialSize;
duke@435 687 }
duke@435 688 }
duke@435 689
duke@435 690
duke@435 691 void GraphBuilder::kill_all() {
duke@435 692 if (UseLocalValueNumbering) {
duke@435 693 vmap()->kill_all();
duke@435 694 }
duke@435 695 _memory->kill();
duke@435 696 }
duke@435 697
duke@435 698
duke@435 699 BlockBegin* GraphBuilder::ScopeData::block_at(int bci) {
duke@435 700 if (parsing_jsr()) {
duke@435 701 // It is necessary to clone all blocks associated with a
duke@435 702 // subroutine, including those for exception handlers in the scope
duke@435 703 // of the method containing the jsr (because those exception
duke@435 704 // handlers may contain ret instructions in some cases).
duke@435 705 BlockBegin* block = bci2block()->at(bci);
duke@435 706 if (block != NULL && block == parent()->bci2block()->at(bci)) {
duke@435 707 BlockBegin* new_block = new BlockBegin(block->bci());
duke@435 708 #ifndef PRODUCT
duke@435 709 if (PrintInitialBlockList) {
duke@435 710 tty->print_cr("CFG: cloned block %d (bci %d) as block %d for jsr",
duke@435 711 block->block_id(), block->bci(), new_block->block_id());
duke@435 712 }
duke@435 713 #endif
duke@435 714 // copy data from cloned blocked
duke@435 715 new_block->set_depth_first_number(block->depth_first_number());
duke@435 716 if (block->is_set(BlockBegin::parser_loop_header_flag)) new_block->set(BlockBegin::parser_loop_header_flag);
duke@435 717 // Preserve certain flags for assertion checking
duke@435 718 if (block->is_set(BlockBegin::subroutine_entry_flag)) new_block->set(BlockBegin::subroutine_entry_flag);
duke@435 719 if (block->is_set(BlockBegin::exception_entry_flag)) new_block->set(BlockBegin::exception_entry_flag);
duke@435 720
duke@435 721 // copy was_visited_flag to allow early detection of bailouts
duke@435 722 // if a block that is used in a jsr has already been visited before,
duke@435 723 // it is shared between the normal control flow and a subroutine
duke@435 724 // BlockBegin::try_merge returns false when the flag is set, this leads
duke@435 725 // to a compilation bailout
duke@435 726 if (block->is_set(BlockBegin::was_visited_flag)) new_block->set(BlockBegin::was_visited_flag);
duke@435 727
duke@435 728 bci2block()->at_put(bci, new_block);
duke@435 729 block = new_block;
duke@435 730 }
duke@435 731 return block;
duke@435 732 } else {
duke@435 733 return bci2block()->at(bci);
duke@435 734 }
duke@435 735 }
duke@435 736
duke@435 737
duke@435 738 XHandlers* GraphBuilder::ScopeData::xhandlers() const {
duke@435 739 if (_jsr_xhandlers == NULL) {
duke@435 740 assert(!parsing_jsr(), "");
duke@435 741 return scope()->xhandlers();
duke@435 742 }
duke@435 743 assert(parsing_jsr(), "");
duke@435 744 return _jsr_xhandlers;
duke@435 745 }
duke@435 746
duke@435 747
duke@435 748 void GraphBuilder::ScopeData::set_scope(IRScope* scope) {
duke@435 749 _scope = scope;
duke@435 750 bool parent_has_handler = false;
duke@435 751 if (parent() != NULL) {
duke@435 752 parent_has_handler = parent()->has_handler();
duke@435 753 }
duke@435 754 _has_handler = parent_has_handler || scope->xhandlers()->has_handlers();
duke@435 755 }
duke@435 756
duke@435 757
duke@435 758 void GraphBuilder::ScopeData::set_inline_cleanup_info(BlockBegin* block,
duke@435 759 Instruction* return_prev,
duke@435 760 ValueStack* return_state) {
duke@435 761 _cleanup_block = block;
duke@435 762 _cleanup_return_prev = return_prev;
duke@435 763 _cleanup_state = return_state;
duke@435 764 }
duke@435 765
duke@435 766
duke@435 767 void GraphBuilder::ScopeData::add_to_work_list(BlockBegin* block) {
duke@435 768 if (_work_list == NULL) {
duke@435 769 _work_list = new BlockList();
duke@435 770 }
duke@435 771
duke@435 772 if (!block->is_set(BlockBegin::is_on_work_list_flag)) {
duke@435 773 // Do not start parsing the continuation block while in a
duke@435 774 // sub-scope
duke@435 775 if (parsing_jsr()) {
duke@435 776 if (block == jsr_continuation()) {
duke@435 777 return;
duke@435 778 }
duke@435 779 } else {
duke@435 780 if (block == continuation()) {
duke@435 781 return;
duke@435 782 }
duke@435 783 }
duke@435 784 block->set(BlockBegin::is_on_work_list_flag);
duke@435 785 _work_list->push(block);
duke@435 786
duke@435 787 sort_top_into_worklist(_work_list, block);
duke@435 788 }
duke@435 789 }
duke@435 790
duke@435 791
duke@435 792 void GraphBuilder::sort_top_into_worklist(BlockList* worklist, BlockBegin* top) {
duke@435 793 assert(worklist->top() == top, "");
duke@435 794 // sort block descending into work list
duke@435 795 const int dfn = top->depth_first_number();
duke@435 796 assert(dfn != -1, "unknown depth first number");
duke@435 797 int i = worklist->length()-2;
duke@435 798 while (i >= 0) {
duke@435 799 BlockBegin* b = worklist->at(i);
duke@435 800 if (b->depth_first_number() < dfn) {
duke@435 801 worklist->at_put(i+1, b);
duke@435 802 } else {
duke@435 803 break;
duke@435 804 }
duke@435 805 i --;
duke@435 806 }
duke@435 807 if (i >= -1) worklist->at_put(i + 1, top);
duke@435 808 }
duke@435 809
duke@435 810
duke@435 811 BlockBegin* GraphBuilder::ScopeData::remove_from_work_list() {
duke@435 812 if (is_work_list_empty()) {
duke@435 813 return NULL;
duke@435 814 }
duke@435 815 return _work_list->pop();
duke@435 816 }
duke@435 817
duke@435 818
duke@435 819 bool GraphBuilder::ScopeData::is_work_list_empty() const {
duke@435 820 return (_work_list == NULL || _work_list->length() == 0);
duke@435 821 }
duke@435 822
duke@435 823
duke@435 824 void GraphBuilder::ScopeData::setup_jsr_xhandlers() {
duke@435 825 assert(parsing_jsr(), "");
duke@435 826 // clone all the exception handlers from the scope
duke@435 827 XHandlers* handlers = new XHandlers(scope()->xhandlers());
duke@435 828 const int n = handlers->length();
duke@435 829 for (int i = 0; i < n; i++) {
duke@435 830 // The XHandlers need to be adjusted to dispatch to the cloned
duke@435 831 // handler block instead of the default one but the synthetic
duke@435 832 // unlocker needs to be handled specially. The synthetic unlocker
duke@435 833 // should be left alone since there can be only one and all code
duke@435 834 // should dispatch to the same one.
duke@435 835 XHandler* h = handlers->handler_at(i);
never@1813 836 assert(h->handler_bci() != SynchronizationEntryBCI, "must be real");
never@1813 837 h->set_entry_block(block_at(h->handler_bci()));
duke@435 838 }
duke@435 839 _jsr_xhandlers = handlers;
duke@435 840 }
duke@435 841
duke@435 842
duke@435 843 int GraphBuilder::ScopeData::num_returns() {
duke@435 844 if (parsing_jsr()) {
duke@435 845 return parent()->num_returns();
duke@435 846 }
duke@435 847 return _num_returns;
duke@435 848 }
duke@435 849
duke@435 850
duke@435 851 void GraphBuilder::ScopeData::incr_num_returns() {
duke@435 852 if (parsing_jsr()) {
duke@435 853 parent()->incr_num_returns();
duke@435 854 } else {
duke@435 855 ++_num_returns;
duke@435 856 }
duke@435 857 }
duke@435 858
duke@435 859
duke@435 860 // Implementation of GraphBuilder
duke@435 861
duke@435 862 #define INLINE_BAILOUT(msg) { inline_bailout(msg); return false; }
duke@435 863
duke@435 864
duke@435 865 void GraphBuilder::load_constant() {
duke@435 866 ciConstant con = stream()->get_constant();
duke@435 867 if (con.basic_type() == T_ILLEGAL) {
duke@435 868 BAILOUT("could not resolve a constant");
duke@435 869 } else {
duke@435 870 ValueType* t = illegalType;
duke@435 871 ValueStack* patch_state = NULL;
duke@435 872 switch (con.basic_type()) {
duke@435 873 case T_BOOLEAN: t = new IntConstant (con.as_boolean()); break;
duke@435 874 case T_BYTE : t = new IntConstant (con.as_byte ()); break;
duke@435 875 case T_CHAR : t = new IntConstant (con.as_char ()); break;
duke@435 876 case T_SHORT : t = new IntConstant (con.as_short ()); break;
duke@435 877 case T_INT : t = new IntConstant (con.as_int ()); break;
duke@435 878 case T_LONG : t = new LongConstant (con.as_long ()); break;
duke@435 879 case T_FLOAT : t = new FloatConstant (con.as_float ()); break;
duke@435 880 case T_DOUBLE : t = new DoubleConstant (con.as_double ()); break;
duke@435 881 case T_ARRAY : t = new ArrayConstant (con.as_object ()->as_array ()); break;
duke@435 882 case T_OBJECT :
duke@435 883 {
duke@435 884 ciObject* obj = con.as_object();
jrose@1957 885 if (!obj->is_loaded()
jrose@1957 886 || (PatchALot && obj->klass() != ciEnv::current()->String_klass())) {
roland@2174 887 patch_state = copy_state_before();
jrose@1957 888 t = new ObjectConstant(obj);
duke@435 889 } else {
coleenp@4037 890 assert(obj->is_instance(), "must be java_mirror of klass");
duke@435 891 t = new InstanceConstant(obj->as_instance());
duke@435 892 }
duke@435 893 break;
duke@435 894 }
duke@435 895 default : ShouldNotReachHere();
duke@435 896 }
duke@435 897 Value x;
duke@435 898 if (patch_state != NULL) {
duke@435 899 x = new Constant(t, patch_state);
duke@435 900 } else {
duke@435 901 x = new Constant(t);
duke@435 902 }
duke@435 903 push(t, append(x));
duke@435 904 }
duke@435 905 }
duke@435 906
duke@435 907
duke@435 908 void GraphBuilder::load_local(ValueType* type, int index) {
roland@2174 909 Value x = state()->local_at(index);
roland@2174 910 assert(x != NULL && !x->type()->is_illegal(), "access of illegal local variable");
duke@435 911 push(type, x);
duke@435 912 }
duke@435 913
duke@435 914
duke@435 915 void GraphBuilder::store_local(ValueType* type, int index) {
duke@435 916 Value x = pop(type);
twisti@3969 917 store_local(state(), x, index);
duke@435 918 }
duke@435 919
duke@435 920
twisti@3969 921 void GraphBuilder::store_local(ValueStack* state, Value x, int index) {
duke@435 922 if (parsing_jsr()) {
duke@435 923 // We need to do additional tracking of the location of the return
duke@435 924 // address for jsrs since we don't handle arbitrary jsr/ret
duke@435 925 // constructs. Here we are figuring out in which circumstances we
duke@435 926 // need to bail out.
duke@435 927 if (x->type()->is_address()) {
duke@435 928 scope_data()->set_jsr_return_address_local(index);
duke@435 929
duke@435 930 // Also check parent jsrs (if any) at this time to see whether
duke@435 931 // they are using this local. We don't handle skipping over a
duke@435 932 // ret.
duke@435 933 for (ScopeData* cur_scope_data = scope_data()->parent();
duke@435 934 cur_scope_data != NULL && cur_scope_data->parsing_jsr() && cur_scope_data->scope() == scope();
duke@435 935 cur_scope_data = cur_scope_data->parent()) {
duke@435 936 if (cur_scope_data->jsr_return_address_local() == index) {
duke@435 937 BAILOUT("subroutine overwrites return address from previous subroutine");
duke@435 938 }
duke@435 939 }
duke@435 940 } else if (index == scope_data()->jsr_return_address_local()) {
duke@435 941 scope_data()->set_jsr_return_address_local(-1);
duke@435 942 }
duke@435 943 }
duke@435 944
duke@435 945 state->store_local(index, round_fp(x));
duke@435 946 }
duke@435 947
duke@435 948
duke@435 949 void GraphBuilder::load_indexed(BasicType type) {
roland@4860 950 // In case of in block code motion in range check elimination
roland@4860 951 ValueStack* state_before = copy_state_indexed_access();
roland@4860 952 compilation()->set_has_access_indexed(true);
duke@435 953 Value index = ipop();
duke@435 954 Value array = apop();
duke@435 955 Value length = NULL;
duke@435 956 if (CSEArrayLength ||
duke@435 957 (array->as_AccessField() && array->as_AccessField()->field()->is_constant()) ||
duke@435 958 (array->as_NewArray() && array->as_NewArray()->length() && array->as_NewArray()->length()->type()->is_constant())) {
roland@2174 959 length = append(new ArrayLength(array, state_before));
duke@435 960 }
roland@2174 961 push(as_ValueType(type), append(new LoadIndexed(array, index, length, type, state_before)));
duke@435 962 }
duke@435 963
duke@435 964
duke@435 965 void GraphBuilder::store_indexed(BasicType type) {
roland@4860 966 // In case of in block code motion in range check elimination
roland@4860 967 ValueStack* state_before = copy_state_indexed_access();
roland@4860 968 compilation()->set_has_access_indexed(true);
duke@435 969 Value value = pop(as_ValueType(type));
duke@435 970 Value index = ipop();
duke@435 971 Value array = apop();
duke@435 972 Value length = NULL;
duke@435 973 if (CSEArrayLength ||
duke@435 974 (array->as_AccessField() && array->as_AccessField()->field()->is_constant()) ||
duke@435 975 (array->as_NewArray() && array->as_NewArray()->length() && array->as_NewArray()->length()->type()->is_constant())) {
roland@2174 976 length = append(new ArrayLength(array, state_before));
duke@435 977 }
roland@2174 978 StoreIndexed* result = new StoreIndexed(array, index, length, type, value, state_before);
duke@435 979 append(result);
never@894 980 _memory->store_value(value);
iveresov@2146 981
iveresov@2146 982 if (type == T_OBJECT && is_profiling()) {
iveresov@2146 983 // Note that we'd collect profile data in this method if we wanted it.
iveresov@2146 984 compilation()->set_would_profile(true);
iveresov@2146 985
iveresov@2146 986 if (profile_checkcasts()) {
iveresov@2146 987 result->set_profiled_method(method());
iveresov@2146 988 result->set_profiled_bci(bci());
iveresov@2146 989 result->set_should_profile(true);
iveresov@2146 990 }
iveresov@2146 991 }
duke@435 992 }
duke@435 993
duke@435 994
duke@435 995 void GraphBuilder::stack_op(Bytecodes::Code code) {
duke@435 996 switch (code) {
duke@435 997 case Bytecodes::_pop:
duke@435 998 { state()->raw_pop();
duke@435 999 }
duke@435 1000 break;
duke@435 1001 case Bytecodes::_pop2:
duke@435 1002 { state()->raw_pop();
duke@435 1003 state()->raw_pop();
duke@435 1004 }
duke@435 1005 break;
duke@435 1006 case Bytecodes::_dup:
duke@435 1007 { Value w = state()->raw_pop();
duke@435 1008 state()->raw_push(w);
duke@435 1009 state()->raw_push(w);
duke@435 1010 }
duke@435 1011 break;
duke@435 1012 case Bytecodes::_dup_x1:
duke@435 1013 { Value w1 = state()->raw_pop();
duke@435 1014 Value w2 = state()->raw_pop();
duke@435 1015 state()->raw_push(w1);
duke@435 1016 state()->raw_push(w2);
duke@435 1017 state()->raw_push(w1);
duke@435 1018 }
duke@435 1019 break;
duke@435 1020 case Bytecodes::_dup_x2:
duke@435 1021 { Value w1 = state()->raw_pop();
duke@435 1022 Value w2 = state()->raw_pop();
duke@435 1023 Value w3 = state()->raw_pop();
duke@435 1024 state()->raw_push(w1);
duke@435 1025 state()->raw_push(w3);
duke@435 1026 state()->raw_push(w2);
duke@435 1027 state()->raw_push(w1);
duke@435 1028 }
duke@435 1029 break;
duke@435 1030 case Bytecodes::_dup2:
duke@435 1031 { Value w1 = state()->raw_pop();
duke@435 1032 Value w2 = state()->raw_pop();
duke@435 1033 state()->raw_push(w2);
duke@435 1034 state()->raw_push(w1);
duke@435 1035 state()->raw_push(w2);
duke@435 1036 state()->raw_push(w1);
duke@435 1037 }
duke@435 1038 break;
duke@435 1039 case Bytecodes::_dup2_x1:
duke@435 1040 { Value w1 = state()->raw_pop();
duke@435 1041 Value w2 = state()->raw_pop();
duke@435 1042 Value w3 = state()->raw_pop();
duke@435 1043 state()->raw_push(w2);
duke@435 1044 state()->raw_push(w1);
duke@435 1045 state()->raw_push(w3);
duke@435 1046 state()->raw_push(w2);
duke@435 1047 state()->raw_push(w1);
duke@435 1048 }
duke@435 1049 break;
duke@435 1050 case Bytecodes::_dup2_x2:
duke@435 1051 { Value w1 = state()->raw_pop();
duke@435 1052 Value w2 = state()->raw_pop();
duke@435 1053 Value w3 = state()->raw_pop();
duke@435 1054 Value w4 = state()->raw_pop();
duke@435 1055 state()->raw_push(w2);
duke@435 1056 state()->raw_push(w1);
duke@435 1057 state()->raw_push(w4);
duke@435 1058 state()->raw_push(w3);
duke@435 1059 state()->raw_push(w2);
duke@435 1060 state()->raw_push(w1);
duke@435 1061 }
duke@435 1062 break;
duke@435 1063 case Bytecodes::_swap:
duke@435 1064 { Value w1 = state()->raw_pop();
duke@435 1065 Value w2 = state()->raw_pop();
duke@435 1066 state()->raw_push(w1);
duke@435 1067 state()->raw_push(w2);
duke@435 1068 }
duke@435 1069 break;
duke@435 1070 default:
duke@435 1071 ShouldNotReachHere();
duke@435 1072 break;
duke@435 1073 }
duke@435 1074 }
duke@435 1075
duke@435 1076
roland@2174 1077 void GraphBuilder::arithmetic_op(ValueType* type, Bytecodes::Code code, ValueStack* state_before) {
duke@435 1078 Value y = pop(type);
duke@435 1079 Value x = pop(type);
duke@435 1080 // NOTE: strictfp can be queried from current method since we don't
duke@435 1081 // inline methods with differing strictfp bits
roland@2174 1082 Value res = new ArithmeticOp(code, x, y, method()->is_strict(), state_before);
duke@435 1083 // Note: currently single-precision floating-point rounding on Intel is handled at the LIRGenerator level
duke@435 1084 res = append(res);
duke@435 1085 if (method()->is_strict()) {
duke@435 1086 res = round_fp(res);
duke@435 1087 }
duke@435 1088 push(type, res);
duke@435 1089 }
duke@435 1090
duke@435 1091
duke@435 1092 void GraphBuilder::negate_op(ValueType* type) {
duke@435 1093 push(type, append(new NegateOp(pop(type))));
duke@435 1094 }
duke@435 1095
duke@435 1096
duke@435 1097 void GraphBuilder::shift_op(ValueType* type, Bytecodes::Code code) {
duke@435 1098 Value s = ipop();
duke@435 1099 Value x = pop(type);
duke@435 1100 // try to simplify
duke@435 1101 // Note: This code should go into the canonicalizer as soon as it can
duke@435 1102 // can handle canonicalized forms that contain more than one node.
duke@435 1103 if (CanonicalizeNodes && code == Bytecodes::_iushr) {
duke@435 1104 // pattern: x >>> s
duke@435 1105 IntConstant* s1 = s->type()->as_IntConstant();
duke@435 1106 if (s1 != NULL) {
duke@435 1107 // pattern: x >>> s1, with s1 constant
duke@435 1108 ShiftOp* l = x->as_ShiftOp();
duke@435 1109 if (l != NULL && l->op() == Bytecodes::_ishl) {
duke@435 1110 // pattern: (a << b) >>> s1
duke@435 1111 IntConstant* s0 = l->y()->type()->as_IntConstant();
duke@435 1112 if (s0 != NULL) {
duke@435 1113 // pattern: (a << s0) >>> s1
duke@435 1114 const int s0c = s0->value() & 0x1F; // only the low 5 bits are significant for shifts
duke@435 1115 const int s1c = s1->value() & 0x1F; // only the low 5 bits are significant for shifts
duke@435 1116 if (s0c == s1c) {
duke@435 1117 if (s0c == 0) {
duke@435 1118 // pattern: (a << 0) >>> 0 => simplify to: a
duke@435 1119 ipush(l->x());
duke@435 1120 } else {
duke@435 1121 // pattern: (a << s0c) >>> s0c => simplify to: a & m, with m constant
duke@435 1122 assert(0 < s0c && s0c < BitsPerInt, "adjust code below to handle corner cases");
duke@435 1123 const int m = (1 << (BitsPerInt - s0c)) - 1;
duke@435 1124 Value s = append(new Constant(new IntConstant(m)));
duke@435 1125 ipush(append(new LogicOp(Bytecodes::_iand, l->x(), s)));
duke@435 1126 }
duke@435 1127 return;
duke@435 1128 }
duke@435 1129 }
duke@435 1130 }
duke@435 1131 }
duke@435 1132 }
duke@435 1133 // could not simplify
duke@435 1134 push(type, append(new ShiftOp(code, x, s)));
duke@435 1135 }
duke@435 1136
duke@435 1137
duke@435 1138 void GraphBuilder::logic_op(ValueType* type, Bytecodes::Code code) {
duke@435 1139 Value y = pop(type);
duke@435 1140 Value x = pop(type);
duke@435 1141 push(type, append(new LogicOp(code, x, y)));
duke@435 1142 }
duke@435 1143
duke@435 1144
duke@435 1145 void GraphBuilder::compare_op(ValueType* type, Bytecodes::Code code) {
roland@2174 1146 ValueStack* state_before = copy_state_before();
duke@435 1147 Value y = pop(type);
duke@435 1148 Value x = pop(type);
duke@435 1149 ipush(append(new CompareOp(code, x, y, state_before)));
duke@435 1150 }
duke@435 1151
duke@435 1152
duke@435 1153 void GraphBuilder::convert(Bytecodes::Code op, BasicType from, BasicType to) {
duke@435 1154 push(as_ValueType(to), append(new Convert(op, pop(as_ValueType(from)), as_ValueType(to))));
duke@435 1155 }
duke@435 1156
duke@435 1157
duke@435 1158 void GraphBuilder::increment() {
duke@435 1159 int index = stream()->get_index();
duke@435 1160 int delta = stream()->is_wide() ? (signed short)Bytes::get_Java_u2(stream()->cur_bcp() + 4) : (signed char)(stream()->cur_bcp()[2]);
duke@435 1161 load_local(intType, index);
duke@435 1162 ipush(append(new Constant(new IntConstant(delta))));
duke@435 1163 arithmetic_op(intType, Bytecodes::_iadd);
duke@435 1164 store_local(intType, index);
duke@435 1165 }
duke@435 1166
duke@435 1167
duke@435 1168 void GraphBuilder::_goto(int from_bci, int to_bci) {
iveresov@2138 1169 Goto *x = new Goto(block_at(to_bci), to_bci <= from_bci);
iveresov@2138 1170 if (is_profiling()) {
iveresov@2138 1171 compilation()->set_would_profile(true);
iveresov@2138 1172 x->set_profiled_bci(bci());
iveresov@3193 1173 if (profile_branches()) {
iveresov@3193 1174 x->set_profiled_method(method());
iveresov@3193 1175 x->set_should_profile(true);
iveresov@3193 1176 }
iveresov@2138 1177 }
iveresov@2138 1178 append(x);
duke@435 1179 }
duke@435 1180
duke@435 1181
duke@435 1182 void GraphBuilder::if_node(Value x, If::Condition cond, Value y, ValueStack* state_before) {
duke@435 1183 BlockBegin* tsux = block_at(stream()->get_dest());
duke@435 1184 BlockBegin* fsux = block_at(stream()->next_bci());
duke@435 1185 bool is_bb = tsux->bci() < stream()->cur_bci() || fsux->bci() < stream()->cur_bci();
roland@4860 1186 // In case of loop invariant code motion or predicate insertion
roland@4860 1187 // before the body of a loop the state is needed
roland@4860 1188 Instruction *i = append(new If(x, cond, false, y, tsux, fsux, (is_bb || compilation()->is_optimistic()) ? state_before : NULL, is_bb));
iveresov@2138 1189
roland@3570 1190 assert(i->as_Goto() == NULL ||
roland@3570 1191 (i->as_Goto()->sux_at(0) == tsux && i->as_Goto()->is_safepoint() == tsux->bci() < stream()->cur_bci()) ||
roland@3570 1192 (i->as_Goto()->sux_at(0) == fsux && i->as_Goto()->is_safepoint() == fsux->bci() < stream()->cur_bci()),
roland@3570 1193 "safepoint state of Goto returned by canonicalizer incorrect");
roland@3570 1194
iveresov@2138 1195 if (is_profiling()) {
iveresov@2138 1196 If* if_node = i->as_If();
iveresov@2138 1197 if (if_node != NULL) {
iveresov@2138 1198 // Note that we'd collect profile data in this method if we wanted it.
iveresov@2138 1199 compilation()->set_would_profile(true);
iveresov@2138 1200 // At level 2 we need the proper bci to count backedges
iveresov@2138 1201 if_node->set_profiled_bci(bci());
iveresov@2138 1202 if (profile_branches()) {
iveresov@2138 1203 // Successors can be rotated by the canonicalizer, check for this case.
iveresov@2138 1204 if_node->set_profiled_method(method());
iveresov@2138 1205 if_node->set_should_profile(true);
iveresov@2138 1206 if (if_node->tsux() == fsux) {
iveresov@2138 1207 if_node->set_swapped(true);
iveresov@2138 1208 }
iveresov@2138 1209 }
iveresov@2138 1210 return;
iveresov@2138 1211 }
iveresov@2138 1212
iveresov@2138 1213 // Check if this If was reduced to Goto.
iveresov@2138 1214 Goto *goto_node = i->as_Goto();
iveresov@2138 1215 if (goto_node != NULL) {
iveresov@2138 1216 compilation()->set_would_profile(true);
iveresov@3193 1217 goto_node->set_profiled_bci(bci());
iveresov@2138 1218 if (profile_branches()) {
iveresov@2138 1219 goto_node->set_profiled_method(method());
iveresov@2138 1220 goto_node->set_should_profile(true);
iveresov@2138 1221 // Find out which successor is used.
iveresov@2138 1222 if (goto_node->default_sux() == tsux) {
iveresov@2138 1223 goto_node->set_direction(Goto::taken);
iveresov@2138 1224 } else if (goto_node->default_sux() == fsux) {
iveresov@2138 1225 goto_node->set_direction(Goto::not_taken);
iveresov@2138 1226 } else {
iveresov@2138 1227 ShouldNotReachHere();
iveresov@2138 1228 }
iveresov@2138 1229 }
iveresov@2138 1230 return;
iveresov@2138 1231 }
duke@435 1232 }
duke@435 1233 }
duke@435 1234
duke@435 1235
duke@435 1236 void GraphBuilder::if_zero(ValueType* type, If::Condition cond) {
duke@435 1237 Value y = append(new Constant(intZero));
roland@2174 1238 ValueStack* state_before = copy_state_before();
duke@435 1239 Value x = ipop();
duke@435 1240 if_node(x, cond, y, state_before);
duke@435 1241 }
duke@435 1242
duke@435 1243
duke@435 1244 void GraphBuilder::if_null(ValueType* type, If::Condition cond) {
duke@435 1245 Value y = append(new Constant(objectNull));
roland@2174 1246 ValueStack* state_before = copy_state_before();
duke@435 1247 Value x = apop();
duke@435 1248 if_node(x, cond, y, state_before);
duke@435 1249 }
duke@435 1250
duke@435 1251
duke@435 1252 void GraphBuilder::if_same(ValueType* type, If::Condition cond) {
roland@2174 1253 ValueStack* state_before = copy_state_before();
duke@435 1254 Value y = pop(type);
duke@435 1255 Value x = pop(type);
duke@435 1256 if_node(x, cond, y, state_before);
duke@435 1257 }
duke@435 1258
duke@435 1259
duke@435 1260 void GraphBuilder::jsr(int dest) {
duke@435 1261 // We only handle well-formed jsrs (those which are "block-structured").
duke@435 1262 // If the bytecodes are strange (jumping out of a jsr block) then we
duke@435 1263 // might end up trying to re-parse a block containing a jsr which
duke@435 1264 // has already been activated. Watch for this case and bail out.
duke@435 1265 for (ScopeData* cur_scope_data = scope_data();
duke@435 1266 cur_scope_data != NULL && cur_scope_data->parsing_jsr() && cur_scope_data->scope() == scope();
duke@435 1267 cur_scope_data = cur_scope_data->parent()) {
duke@435 1268 if (cur_scope_data->jsr_entry_bci() == dest) {
duke@435 1269 BAILOUT("too-complicated jsr/ret structure");
duke@435 1270 }
duke@435 1271 }
duke@435 1272
duke@435 1273 push(addressType, append(new Constant(new AddressConstant(next_bci()))));
duke@435 1274 if (!try_inline_jsr(dest)) {
duke@435 1275 return; // bailed out while parsing and inlining subroutine
duke@435 1276 }
duke@435 1277 }
duke@435 1278
duke@435 1279
duke@435 1280 void GraphBuilder::ret(int local_index) {
duke@435 1281 if (!parsing_jsr()) BAILOUT("ret encountered while not parsing subroutine");
duke@435 1282
duke@435 1283 if (local_index != scope_data()->jsr_return_address_local()) {
duke@435 1284 BAILOUT("can not handle complicated jsr/ret constructs");
duke@435 1285 }
duke@435 1286
duke@435 1287 // Rets simply become (NON-SAFEPOINT) gotos to the jsr continuation
duke@435 1288 append(new Goto(scope_data()->jsr_continuation(), false));
duke@435 1289 }
duke@435 1290
duke@435 1291
duke@435 1292 void GraphBuilder::table_switch() {
never@2462 1293 Bytecode_tableswitch sw(stream());
never@2462 1294 const int l = sw.length();
duke@435 1295 if (CanonicalizeNodes && l == 1) {
duke@435 1296 // total of 2 successors => use If instead of switch
duke@435 1297 // Note: This code should go into the canonicalizer as soon as it can
duke@435 1298 // can handle canonicalized forms that contain more than one node.
never@2462 1299 Value key = append(new Constant(new IntConstant(sw.low_key())));
never@2462 1300 BlockBegin* tsux = block_at(bci() + sw.dest_offset_at(0));
never@2462 1301 BlockBegin* fsux = block_at(bci() + sw.default_offset());
duke@435 1302 bool is_bb = tsux->bci() < bci() || fsux->bci() < bci();
roland@4860 1303 // In case of loop invariant code motion or predicate insertion
roland@4860 1304 // before the body of a loop the state is needed
roland@4860 1305 ValueStack* state_before = copy_state_if_bb(is_bb);
duke@435 1306 append(new If(ipop(), If::eql, true, key, tsux, fsux, state_before, is_bb));
duke@435 1307 } else {
duke@435 1308 // collect successors
duke@435 1309 BlockList* sux = new BlockList(l + 1, NULL);
duke@435 1310 int i;
duke@435 1311 bool has_bb = false;
duke@435 1312 for (i = 0; i < l; i++) {
never@2462 1313 sux->at_put(i, block_at(bci() + sw.dest_offset_at(i)));
never@2462 1314 if (sw.dest_offset_at(i) < 0) has_bb = true;
duke@435 1315 }
duke@435 1316 // add default successor
roland@3629 1317 if (sw.default_offset() < 0) has_bb = true;
never@2462 1318 sux->at_put(i, block_at(bci() + sw.default_offset()));
roland@4860 1319 // In case of loop invariant code motion or predicate insertion
roland@4860 1320 // before the body of a loop the state is needed
roland@4860 1321 ValueStack* state_before = copy_state_if_bb(has_bb);
roland@3570 1322 Instruction* res = append(new TableSwitch(ipop(), sux, sw.low_key(), state_before, has_bb));
roland@3570 1323 #ifdef ASSERT
roland@3570 1324 if (res->as_Goto()) {
roland@3570 1325 for (i = 0; i < l; i++) {
roland@3570 1326 if (sux->at(i) == res->as_Goto()->sux_at(0)) {
roland@3570 1327 assert(res->as_Goto()->is_safepoint() == sw.dest_offset_at(i) < 0, "safepoint state of Goto returned by canonicalizer incorrect");
roland@3570 1328 }
roland@3570 1329 }
roland@3570 1330 }
roland@3570 1331 #endif
duke@435 1332 }
duke@435 1333 }
duke@435 1334
duke@435 1335
duke@435 1336 void GraphBuilder::lookup_switch() {
never@2462 1337 Bytecode_lookupswitch sw(stream());
never@2462 1338 const int l = sw.number_of_pairs();
duke@435 1339 if (CanonicalizeNodes && l == 1) {
duke@435 1340 // total of 2 successors => use If instead of switch
duke@435 1341 // Note: This code should go into the canonicalizer as soon as it can
duke@435 1342 // can handle canonicalized forms that contain more than one node.
duke@435 1343 // simplify to If
never@2462 1344 LookupswitchPair pair = sw.pair_at(0);
never@2462 1345 Value key = append(new Constant(new IntConstant(pair.match())));
never@2462 1346 BlockBegin* tsux = block_at(bci() + pair.offset());
never@2462 1347 BlockBegin* fsux = block_at(bci() + sw.default_offset());
duke@435 1348 bool is_bb = tsux->bci() < bci() || fsux->bci() < bci();
roland@4860 1349 // In case of loop invariant code motion or predicate insertion
roland@4860 1350 // before the body of a loop the state is needed
roland@4860 1351 ValueStack* state_before = copy_state_if_bb(is_bb);;
duke@435 1352 append(new If(ipop(), If::eql, true, key, tsux, fsux, state_before, is_bb));
duke@435 1353 } else {
duke@435 1354 // collect successors & keys
duke@435 1355 BlockList* sux = new BlockList(l + 1, NULL);
duke@435 1356 intArray* keys = new intArray(l, 0);
duke@435 1357 int i;
duke@435 1358 bool has_bb = false;
duke@435 1359 for (i = 0; i < l; i++) {
never@2462 1360 LookupswitchPair pair = sw.pair_at(i);
never@2462 1361 if (pair.offset() < 0) has_bb = true;
never@2462 1362 sux->at_put(i, block_at(bci() + pair.offset()));
never@2462 1363 keys->at_put(i, pair.match());
duke@435 1364 }
duke@435 1365 // add default successor
roland@3629 1366 if (sw.default_offset() < 0) has_bb = true;
never@2462 1367 sux->at_put(i, block_at(bci() + sw.default_offset()));
roland@4860 1368 // In case of loop invariant code motion or predicate insertion
roland@4860 1369 // before the body of a loop the state is needed
roland@4860 1370 ValueStack* state_before = copy_state_if_bb(has_bb);
roland@3570 1371 Instruction* res = append(new LookupSwitch(ipop(), sux, keys, state_before, has_bb));
roland@3570 1372 #ifdef ASSERT
roland@3570 1373 if (res->as_Goto()) {
roland@3570 1374 for (i = 0; i < l; i++) {
roland@3570 1375 if (sux->at(i) == res->as_Goto()->sux_at(0)) {
roland@3570 1376 assert(res->as_Goto()->is_safepoint() == sw.pair_at(i).offset() < 0, "safepoint state of Goto returned by canonicalizer incorrect");
roland@3570 1377 }
roland@3570 1378 }
roland@3570 1379 }
roland@3570 1380 #endif
duke@435 1381 }
duke@435 1382 }
duke@435 1383
duke@435 1384 void GraphBuilder::call_register_finalizer() {
duke@435 1385 // If the receiver requires finalization then emit code to perform
duke@435 1386 // the registration on return.
duke@435 1387
duke@435 1388 // Gather some type information about the receiver
roland@2174 1389 Value receiver = state()->local_at(0);
duke@435 1390 assert(receiver != NULL, "must have a receiver");
duke@435 1391 ciType* declared_type = receiver->declared_type();
duke@435 1392 ciType* exact_type = receiver->exact_type();
duke@435 1393 if (exact_type == NULL &&
duke@435 1394 receiver->as_Local() &&
duke@435 1395 receiver->as_Local()->java_index() == 0) {
duke@435 1396 ciInstanceKlass* ik = compilation()->method()->holder();
duke@435 1397 if (ik->is_final()) {
duke@435 1398 exact_type = ik;
duke@435 1399 } else if (UseCHA && !(ik->has_subklass() || ik->is_interface())) {
duke@435 1400 // test class is leaf class
duke@435 1401 compilation()->dependency_recorder()->assert_leaf_type(ik);
duke@435 1402 exact_type = ik;
duke@435 1403 } else {
duke@435 1404 declared_type = ik;
duke@435 1405 }
duke@435 1406 }
duke@435 1407
duke@435 1408 // see if we know statically that registration isn't required
duke@435 1409 bool needs_check = true;
duke@435 1410 if (exact_type != NULL) {
duke@435 1411 needs_check = exact_type->as_instance_klass()->has_finalizer();
duke@435 1412 } else if (declared_type != NULL) {
duke@435 1413 ciInstanceKlass* ik = declared_type->as_instance_klass();
duke@435 1414 if (!Dependencies::has_finalizable_subclass(ik)) {
duke@435 1415 compilation()->dependency_recorder()->assert_has_no_finalizable_subclasses(ik);
duke@435 1416 needs_check = false;
duke@435 1417 }
duke@435 1418 }
duke@435 1419
duke@435 1420 if (needs_check) {
duke@435 1421 // Perform the registration of finalizable objects.
roland@2174 1422 ValueStack* state_before = copy_state_for_exception();
duke@435 1423 load_local(objectType, 0);
duke@435 1424 append_split(new Intrinsic(voidType, vmIntrinsics::_Object_init,
duke@435 1425 state()->pop_arguments(1),
roland@2174 1426 true, state_before, true));
duke@435 1427 }
duke@435 1428 }
duke@435 1429
duke@435 1430
duke@435 1431 void GraphBuilder::method_return(Value x) {
duke@435 1432 if (RegisterFinalizersAtInit &&
duke@435 1433 method()->intrinsic_id() == vmIntrinsics::_Object_init) {
duke@435 1434 call_register_finalizer();
duke@435 1435 }
duke@435 1436
jiangli@3592 1437 bool need_mem_bar = false;
jiangli@3592 1438 if (method()->name() == ciSymbol::object_initializer_name() &&
jiangli@3592 1439 scope()->wrote_final()) {
jiangli@3592 1440 need_mem_bar = true;
jiangli@3592 1441 }
jiangli@3592 1442
duke@435 1443 // Check to see whether we are inlining. If so, Return
duke@435 1444 // instructions become Gotos to the continuation point.
duke@435 1445 if (continuation() != NULL) {
duke@435 1446 assert(!method()->is_synchronized() || InlineSynchronizedMethods, "can not inline synchronized methods yet");
duke@435 1447
never@2486 1448 if (compilation()->env()->dtrace_method_probes()) {
never@2486 1449 // Report exit from inline methods
never@2486 1450 Values* args = new Values(1);
coleenp@4037 1451 args->push(append(new Constant(new MethodConstant(method()))));
never@2486 1452 append(new RuntimeCall(voidType, "dtrace_method_exit", CAST_FROM_FN_PTR(address, SharedRuntime::dtrace_method_exit), args));
never@2486 1453 }
never@2486 1454
duke@435 1455 // If the inlined method is synchronized, the monitor must be
duke@435 1456 // released before we jump to the continuation block.
duke@435 1457 if (method()->is_synchronized()) {
roland@2174 1458 assert(state()->locks_size() == 1, "receiver must be locked here");
roland@2174 1459 monitorexit(state()->lock_at(0), SynchronizationEntryBCI);
duke@435 1460 }
duke@435 1461
jiangli@3592 1462 if (need_mem_bar) {
jiangli@3592 1463 append(new MemBar(lir_membar_storestore));
jiangli@3592 1464 }
jiangli@3592 1465
roland@2174 1466 // State at end of inlined method is the state of the caller
roland@2174 1467 // without the method parameters on stack, including the
roland@2174 1468 // return value, if any, of the inlined method on operand stack.
roland@5921 1469 int invoke_bci = state()->caller_state()->bci();
roland@2174 1470 set_state(state()->caller_state()->copy_for_parsing());
duke@435 1471 if (x != NULL) {
duke@435 1472 state()->push(x->type(), x);
roland@5987 1473 if (profile_return() && x->type()->is_object_kind()) {
roland@5921 1474 ciMethod* caller = state()->scope()->method();
roland@5921 1475 ciMethodData* md = caller->method_data_or_null();
roland@5921 1476 ciProfileData* data = md->bci_to_data(invoke_bci);
roland@5921 1477 if (data->is_CallTypeData() || data->is_VirtualCallTypeData()) {
roland@5921 1478 bool has_return = data->is_CallTypeData() ? ((ciCallTypeData*)data)->has_return() : ((ciVirtualCallTypeData*)data)->has_return();
roland@5921 1479 // May not be true in case of an inlined call through a method handle intrinsic.
roland@5921 1480 if (has_return) {
roland@5921 1481 profile_return_type(x, method(), caller, invoke_bci);
roland@5921 1482 }
roland@5921 1483 }
roland@5921 1484 }
duke@435 1485 }
duke@435 1486 Goto* goto_callee = new Goto(continuation(), false);
duke@435 1487
duke@435 1488 // See whether this is the first return; if so, store off some
duke@435 1489 // of the state for later examination
duke@435 1490 if (num_returns() == 0) {
twisti@3100 1491 set_inline_cleanup_info();
duke@435 1492 }
duke@435 1493
duke@435 1494 // The current bci() is in the wrong scope, so use the bci() of
duke@435 1495 // the continuation point.
duke@435 1496 append_with_bci(goto_callee, scope_data()->continuation()->bci());
duke@435 1497 incr_num_returns();
duke@435 1498 return;
duke@435 1499 }
duke@435 1500
duke@435 1501 state()->truncate_stack(0);
duke@435 1502 if (method()->is_synchronized()) {
duke@435 1503 // perform the unlocking before exiting the method
duke@435 1504 Value receiver;
duke@435 1505 if (!method()->is_static()) {
duke@435 1506 receiver = _initial_state->local_at(0);
duke@435 1507 } else {
duke@435 1508 receiver = append(new Constant(new ClassConstant(method()->holder())));
duke@435 1509 }
duke@435 1510 append_split(new MonitorExit(receiver, state()->unlock()));
duke@435 1511 }
duke@435 1512
jiangli@3592 1513 if (need_mem_bar) {
jiangli@3592 1514 append(new MemBar(lir_membar_storestore));
jiangli@3592 1515 }
jiangli@3592 1516
duke@435 1517 append(new Return(x));
duke@435 1518 }
duke@435 1519
duke@435 1520
duke@435 1521 void GraphBuilder::access_field(Bytecodes::Code code) {
duke@435 1522 bool will_link;
duke@435 1523 ciField* field = stream()->get_field(will_link);
duke@435 1524 ciInstanceKlass* holder = field->holder();
duke@435 1525 BasicType field_type = field->type()->basic_type();
duke@435 1526 ValueType* type = as_ValueType(field_type);
duke@435 1527 // call will_link again to determine if the field is valid.
never@2634 1528 const bool needs_patching = !holder->is_loaded() ||
never@2634 1529 !field->will_link(method()->holder(), code) ||
never@2634 1530 PatchALot;
duke@435 1531
roland@2174 1532 ValueStack* state_before = NULL;
never@2634 1533 if (!holder->is_initialized() || needs_patching) {
duke@435 1534 // save state before instruction for debug info when
duke@435 1535 // deoptimization happens during patching
roland@2174 1536 state_before = copy_state_before();
duke@435 1537 }
duke@435 1538
duke@435 1539 Value obj = NULL;
duke@435 1540 if (code == Bytecodes::_getstatic || code == Bytecodes::_putstatic) {
roland@2174 1541 if (state_before != NULL) {
duke@435 1542 // build a patching constant
never@2658 1543 obj = new Constant(new InstanceConstant(holder->java_mirror()), state_before);
duke@435 1544 } else {
never@2658 1545 obj = new Constant(new InstanceConstant(holder->java_mirror()));
duke@435 1546 }
duke@435 1547 }
duke@435 1548
jiangli@3592 1549 if (field->is_final() && (code == Bytecodes::_putfield)) {
jiangli@3592 1550 scope()->set_wrote_final();
jiangli@3592 1551 }
duke@435 1552
never@2634 1553 const int offset = !needs_patching ? field->offset() : -1;
duke@435 1554 switch (code) {
duke@435 1555 case Bytecodes::_getstatic: {
duke@435 1556 // check for compile-time constants, i.e., initialized static final fields
duke@435 1557 Instruction* constant = NULL;
duke@435 1558 if (field->is_constant() && !PatchALot) {
duke@435 1559 ciConstant field_val = field->constant_value();
duke@435 1560 BasicType field_type = field_val.basic_type();
duke@435 1561 switch (field_type) {
duke@435 1562 case T_ARRAY:
duke@435 1563 case T_OBJECT:
jrose@1424 1564 if (field_val.as_object()->should_be_constant()) {
twisti@3969 1565 constant = new Constant(as_ValueType(field_val));
duke@435 1566 }
duke@435 1567 break;
duke@435 1568
duke@435 1569 default:
duke@435 1570 constant = new Constant(as_ValueType(field_val));
duke@435 1571 }
duke@435 1572 }
duke@435 1573 if (constant != NULL) {
duke@435 1574 push(type, append(constant));
duke@435 1575 } else {
roland@2174 1576 if (state_before == NULL) {
roland@2174 1577 state_before = copy_state_for_exception();
roland@2174 1578 }
duke@435 1579 push(type, append(new LoadField(append(obj), offset, field, true,
never@2634 1580 state_before, needs_patching)));
duke@435 1581 }
duke@435 1582 break;
duke@435 1583 }
duke@435 1584 case Bytecodes::_putstatic:
duke@435 1585 { Value val = pop(type);
roland@2174 1586 if (state_before == NULL) {
roland@2174 1587 state_before = copy_state_for_exception();
roland@2174 1588 }
never@2634 1589 append(new StoreField(append(obj), offset, field, val, true, state_before, needs_patching));
duke@435 1590 }
duke@435 1591 break;
twisti@3969 1592 case Bytecodes::_getfield: {
twisti@3969 1593 // Check for compile-time constants, i.e., trusted final non-static fields.
twisti@3969 1594 Instruction* constant = NULL;
twisti@3969 1595 obj = apop();
twisti@3969 1596 ObjectType* obj_type = obj->type()->as_ObjectType();
twisti@3969 1597 if (obj_type->is_constant() && !PatchALot) {
twisti@3969 1598 ciObject* const_oop = obj_type->constant_value();
rbackman@5633 1599 if (!const_oop->is_null_object() && const_oop->is_loaded()) {
twisti@3970 1600 if (field->is_constant()) {
twisti@3970 1601 ciConstant field_val = field->constant_value_of(const_oop);
twisti@3970 1602 BasicType field_type = field_val.basic_type();
twisti@3970 1603 switch (field_type) {
twisti@3970 1604 case T_ARRAY:
twisti@3970 1605 case T_OBJECT:
twisti@3970 1606 if (field_val.as_object()->should_be_constant()) {
twisti@3970 1607 constant = new Constant(as_ValueType(field_val));
twisti@3970 1608 }
twisti@3970 1609 break;
twisti@3970 1610 default:
twisti@3969 1611 constant = new Constant(as_ValueType(field_val));
twisti@3969 1612 }
twisti@3970 1613 } else {
twisti@3970 1614 // For CallSite objects treat the target field as a compile time constant.
twisti@3970 1615 if (const_oop->is_call_site()) {
twisti@3970 1616 ciCallSite* call_site = const_oop->as_call_site();
twisti@3970 1617 if (field->is_call_site_target()) {
twisti@3970 1618 ciMethodHandle* target = call_site->get_target();
twisti@3970 1619 if (target != NULL) { // just in case
twisti@3970 1620 ciConstant field_val(T_OBJECT, target);
twisti@3970 1621 constant = new Constant(as_ValueType(field_val));
twisti@3970 1622 // Add a dependence for invalidation of the optimization.
twisti@3970 1623 if (!call_site->is_constant_call_site()) {
twisti@3970 1624 dependency_recorder()->assert_call_site_target_value(call_site, target);
twisti@3970 1625 }
twisti@3969 1626 }
twisti@3969 1627 }
twisti@3969 1628 }
twisti@3969 1629 }
twisti@3969 1630 }
twisti@3969 1631 }
twisti@3969 1632 if (constant != NULL) {
twisti@3969 1633 push(type, append(constant));
twisti@3969 1634 } else {
roland@2174 1635 if (state_before == NULL) {
roland@2174 1636 state_before = copy_state_for_exception();
roland@2174 1637 }
twisti@3969 1638 LoadField* load = new LoadField(obj, offset, field, false, state_before, needs_patching);
never@2634 1639 Value replacement = !needs_patching ? _memory->load(load) : load;
duke@435 1640 if (replacement != load) {
roland@2174 1641 assert(replacement->is_linked() || !replacement->can_be_linked(), "should already by linked");
duke@435 1642 push(type, replacement);
duke@435 1643 } else {
duke@435 1644 push(type, append(load));
duke@435 1645 }
duke@435 1646 }
duke@435 1647 break;
twisti@3969 1648 }
twisti@3969 1649 case Bytecodes::_putfield: {
twisti@3969 1650 Value val = pop(type);
twisti@3969 1651 obj = apop();
twisti@3969 1652 if (state_before == NULL) {
twisti@3969 1653 state_before = copy_state_for_exception();
twisti@3969 1654 }
twisti@3969 1655 StoreField* store = new StoreField(obj, offset, field, val, false, state_before, needs_patching);
twisti@3969 1656 if (!needs_patching) store = _memory->store(store);
twisti@3969 1657 if (store != NULL) {
twisti@3969 1658 append(store);
twisti@3969 1659 }
twisti@3969 1660 break;
twisti@3969 1661 }
twisti@3969 1662 default:
duke@435 1663 ShouldNotReachHere();
duke@435 1664 break;
duke@435 1665 }
duke@435 1666 }
duke@435 1667
duke@435 1668
duke@435 1669 Dependencies* GraphBuilder::dependency_recorder() const {
duke@435 1670 assert(DeoptC1, "need debug information");
duke@435 1671 return compilation()->dependency_recorder();
duke@435 1672 }
duke@435 1673
roland@5914 1674 // How many arguments do we want to profile?
roland@5987 1675 Values* GraphBuilder::args_list_for_profiling(ciMethod* target, int& start, bool may_have_receiver) {
roland@5914 1676 int n = 0;
roland@5987 1677 bool has_receiver = may_have_receiver && Bytecodes::has_receiver(method()->java_code_at_bci(bci()));
roland@5987 1678 start = has_receiver ? 1 : 0;
roland@5987 1679 if (profile_arguments()) {
roland@5914 1680 ciProfileData* data = method()->method_data()->bci_to_data(bci());
roland@5914 1681 if (data->is_CallTypeData() || data->is_VirtualCallTypeData()) {
roland@5914 1682 n = data->is_CallTypeData() ? data->as_CallTypeData()->number_of_arguments() : data->as_VirtualCallTypeData()->number_of_arguments();
roland@5987 1683 }
roland@5987 1684 }
roland@5987 1685 // If we are inlining then we need to collect arguments to profile parameters for the target
roland@5987 1686 if (profile_parameters() && target != NULL) {
roland@5987 1687 if (target->method_data() != NULL && target->method_data()->parameters_type_data() != NULL) {
roland@5987 1688 // The receiver is profiled on method entry so it's included in
roland@5987 1689 // the number of parameters but here we're only interested in
roland@5987 1690 // actual arguments.
roland@5987 1691 n = MAX2(n, target->method_data()->parameters_type_data()->number_of_parameters() - start);
roland@5914 1692 }
roland@5914 1693 }
roland@5914 1694 if (n > 0) {
roland@5914 1695 return new Values(n);
roland@5914 1696 }
roland@5914 1697 return NULL;
roland@5914 1698 }
roland@5914 1699
roland@5914 1700 // Collect arguments that we want to profile in a list
roland@5987 1701 Values* GraphBuilder::collect_args_for_profiling(Values* args, ciMethod* target, bool may_have_receiver) {
roland@5914 1702 int start = 0;
roland@5987 1703 Values* obj_args = args_list_for_profiling(target, start, may_have_receiver);
roland@5914 1704 if (obj_args == NULL) {
roland@5914 1705 return NULL;
roland@5914 1706 }
roland@5914 1707 int s = obj_args->size();
roland@5914 1708 for (int i = start, j = 0; j < s; i++) {
roland@5914 1709 if (args->at(i)->type()->is_object_kind()) {
roland@5914 1710 obj_args->push(args->at(i));
roland@5914 1711 j++;
roland@5914 1712 }
roland@5914 1713 }
roland@5914 1714 assert(s == obj_args->length(), "missed on arg?");
roland@5914 1715 return obj_args;
roland@5914 1716 }
roland@5914 1717
duke@435 1718
duke@435 1719 void GraphBuilder::invoke(Bytecodes::Code code) {
duke@435 1720 bool will_link;
twisti@4021 1721 ciSignature* declared_signature = NULL;
twisti@4021 1722 ciMethod* target = stream()->get_method(will_link, &declared_signature);
twisti@3969 1723 ciKlass* holder = stream()->get_declared_method_holder();
twisti@3969 1724 const Bytecodes::Code bc_raw = stream()->cur_bc_raw();
twisti@4021 1725 assert(declared_signature != NULL, "cannot be null");
twisti@3969 1726
roland@5628 1727 if (!C1PatchInvokeDynamic && Bytecodes::has_optional_appendix(bc_raw) && !will_link) {
roland@5628 1728 BAILOUT("unlinked call site (C1PatchInvokeDynamic is off)");
twisti@3969 1729 }
twisti@3969 1730
duke@435 1731 // we have to make sure the argument size (incl. the receiver)
duke@435 1732 // is correct for compilation (the call would fail later during
duke@435 1733 // linkage anyway) - was bug (gri 7/28/99)
twisti@3969 1734 {
twisti@3969 1735 // Use raw to get rewritten bytecode.
twisti@3969 1736 const bool is_invokestatic = bc_raw == Bytecodes::_invokestatic;
twisti@3969 1737 const bool allow_static =
twisti@3969 1738 is_invokestatic ||
twisti@3969 1739 bc_raw == Bytecodes::_invokehandle ||
twisti@3969 1740 bc_raw == Bytecodes::_invokedynamic;
twisti@3969 1741 if (target->is_loaded()) {
twisti@3969 1742 if (( target->is_static() && !allow_static) ||
twisti@3969 1743 (!target->is_static() && is_invokestatic)) {
twisti@3969 1744 BAILOUT("will cause link error");
twisti@3969 1745 }
twisti@3969 1746 }
twisti@3969 1747 }
duke@435 1748 ciInstanceKlass* klass = target->holder();
duke@435 1749
duke@435 1750 // check if CHA possible: if so, change the code to invoke_special
duke@435 1751 ciInstanceKlass* calling_klass = method()->holder();
duke@435 1752 ciInstanceKlass* callee_holder = ciEnv::get_instance_klass_for_declared_method_holder(holder);
duke@435 1753 ciInstanceKlass* actual_recv = callee_holder;
duke@435 1754
vlivanov@4154 1755 CompileLog* log = compilation()->log();
vlivanov@4154 1756 if (log != NULL)
vlivanov@4154 1757 log->elem("call method='%d' instr='%s'",
vlivanov@4154 1758 log->identify(target),
vlivanov@4154 1759 Bytecodes::name(code));
vlivanov@4154 1760
twisti@3969 1761 // Some methods are obviously bindable without any type checks so
twisti@3969 1762 // convert them directly to an invokespecial or invokestatic.
twisti@3969 1763 if (target->is_loaded() && !target->is_abstract() && target->can_be_statically_bound()) {
twisti@3969 1764 switch (bc_raw) {
twisti@4003 1765 case Bytecodes::_invokevirtual:
twisti@4003 1766 code = Bytecodes::_invokespecial;
twisti@4003 1767 break;
twisti@4003 1768 case Bytecodes::_invokehandle:
twisti@4003 1769 code = target->is_static() ? Bytecodes::_invokestatic : Bytecodes::_invokespecial;
twisti@4003 1770 break;
twisti@3969 1771 }
roland@5628 1772 } else {
roland@5628 1773 if (bc_raw == Bytecodes::_invokehandle) {
roland@5628 1774 assert(!will_link, "should come here only for unlinked call");
roland@5628 1775 code = Bytecodes::_invokespecial;
roland@5628 1776 }
duke@435 1777 }
duke@435 1778
twisti@3969 1779 // Push appendix argument (MethodType, CallSite, etc.), if one.
roland@5628 1780 bool patch_for_appendix = false;
roland@5628 1781 int patching_appendix_arg = 0;
roland@5628 1782 if (C1PatchInvokeDynamic &&
roland@5628 1783 (Bytecodes::has_optional_appendix(bc_raw) && (!will_link || PatchALot))) {
roland@5628 1784 Value arg = append(new Constant(new ObjectConstant(compilation()->env()->unloaded_ciinstance()), copy_state_before()));
roland@5628 1785 apush(arg);
roland@5628 1786 patch_for_appendix = true;
roland@5628 1787 patching_appendix_arg = (will_link && stream()->has_appendix()) ? 0 : 1;
roland@5628 1788 } else if (stream()->has_appendix()) {
twisti@3969 1789 ciObject* appendix = stream()->get_appendix();
twisti@3969 1790 Value arg = append(new Constant(new ObjectConstant(appendix)));
twisti@3969 1791 apush(arg);
twisti@3969 1792 }
twisti@3100 1793
duke@435 1794 // NEEDS_CLEANUP
twisti@3969 1795 // I've added the target->is_loaded() test below but I don't really understand
duke@435 1796 // how klass->is_loaded() can be true and yet target->is_loaded() is false.
duke@435 1797 // this happened while running the JCK invokevirtual tests under doit. TKR
duke@435 1798 ciMethod* cha_monomorphic_target = NULL;
duke@435 1799 ciMethod* exact_target = NULL;
roland@3498 1800 Value better_receiver = NULL;
twisti@1730 1801 if (UseCHA && DeoptC1 && klass->is_loaded() && target->is_loaded() &&
twisti@3969 1802 !(// %%% FIXME: Are both of these relevant?
twisti@3969 1803 target->is_method_handle_intrinsic() ||
roland@5628 1804 target->is_compiled_lambda_form()) &&
roland@5628 1805 !patch_for_appendix) {
duke@435 1806 Value receiver = NULL;
duke@435 1807 ciInstanceKlass* receiver_klass = NULL;
duke@435 1808 bool type_is_exact = false;
duke@435 1809 // try to find a precise receiver type
duke@435 1810 if (will_link && !target->is_static()) {
duke@435 1811 int index = state()->stack_size() - (target->arg_size_no_receiver() + 1);
duke@435 1812 receiver = state()->stack_at(index);
duke@435 1813 ciType* type = receiver->exact_type();
duke@435 1814 if (type != NULL && type->is_loaded() &&
duke@435 1815 type->is_instance_klass() && !type->as_instance_klass()->is_interface()) {
duke@435 1816 receiver_klass = (ciInstanceKlass*) type;
duke@435 1817 type_is_exact = true;
duke@435 1818 }
duke@435 1819 if (type == NULL) {
duke@435 1820 type = receiver->declared_type();
duke@435 1821 if (type != NULL && type->is_loaded() &&
duke@435 1822 type->is_instance_klass() && !type->as_instance_klass()->is_interface()) {
duke@435 1823 receiver_klass = (ciInstanceKlass*) type;
duke@435 1824 if (receiver_klass->is_leaf_type() && !receiver_klass->is_final()) {
duke@435 1825 // Insert a dependency on this type since
duke@435 1826 // find_monomorphic_target may assume it's already done.
duke@435 1827 dependency_recorder()->assert_leaf_type(receiver_klass);
duke@435 1828 type_is_exact = true;
duke@435 1829 }
duke@435 1830 }
duke@435 1831 }
duke@435 1832 }
duke@435 1833 if (receiver_klass != NULL && type_is_exact &&
duke@435 1834 receiver_klass->is_loaded() && code != Bytecodes::_invokespecial) {
duke@435 1835 // If we have the exact receiver type we can bind directly to
duke@435 1836 // the method to call.
duke@435 1837 exact_target = target->resolve_invoke(calling_klass, receiver_klass);
duke@435 1838 if (exact_target != NULL) {
duke@435 1839 target = exact_target;
duke@435 1840 code = Bytecodes::_invokespecial;
duke@435 1841 }
duke@435 1842 }
duke@435 1843 if (receiver_klass != NULL &&
duke@435 1844 receiver_klass->is_subtype_of(actual_recv) &&
duke@435 1845 actual_recv->is_initialized()) {
duke@435 1846 actual_recv = receiver_klass;
duke@435 1847 }
duke@435 1848
duke@435 1849 if ((code == Bytecodes::_invokevirtual && callee_holder->is_initialized()) ||
duke@435 1850 (code == Bytecodes::_invokeinterface && callee_holder->is_initialized() && !actual_recv->is_interface())) {
duke@435 1851 // Use CHA on the receiver to select a more precise method.
duke@435 1852 cha_monomorphic_target = target->find_monomorphic_target(calling_klass, callee_holder, actual_recv);
duke@435 1853 } else if (code == Bytecodes::_invokeinterface && callee_holder->is_loaded() && receiver != NULL) {
duke@435 1854 // if there is only one implementor of this interface then we
duke@435 1855 // may be able bind this invoke directly to the implementing
duke@435 1856 // klass but we need both a dependence on the single interface
duke@435 1857 // and on the method we bind to. Additionally since all we know
duke@435 1858 // about the receiver type is the it's supposed to implement the
duke@435 1859 // interface we have to insert a check that it's the class we
duke@435 1860 // expect. Interface types are not checked by the verifier so
duke@435 1861 // they are roughly equivalent to Object.
duke@435 1862 ciInstanceKlass* singleton = NULL;
duke@435 1863 if (target->holder()->nof_implementors() == 1) {
jiangli@3701 1864 singleton = target->holder()->implementor();
jiangli@3701 1865 assert(singleton != NULL && singleton != target->holder(),
jiangli@3701 1866 "just checking");
roland@3498 1867
roland@3498 1868 assert(holder->is_interface(), "invokeinterface to non interface?");
roland@3498 1869 ciInstanceKlass* decl_interface = (ciInstanceKlass*)holder;
roland@3498 1870 // the number of implementors for decl_interface is less or
roland@3498 1871 // equal to the number of implementors for target->holder() so
roland@3498 1872 // if number of implementors of target->holder() == 1 then
roland@3498 1873 // number of implementors for decl_interface is 0 or 1. If
roland@3498 1874 // it's 0 then no class implements decl_interface and there's
roland@3498 1875 // no point in inlining.
iveresov@6050 1876 if (!holder->is_loaded() || decl_interface->nof_implementors() != 1 || decl_interface->has_default_methods()) {
roland@3498 1877 singleton = NULL;
roland@3498 1878 }
duke@435 1879 }
duke@435 1880 if (singleton) {
duke@435 1881 cha_monomorphic_target = target->find_monomorphic_target(calling_klass, target->holder(), singleton);
duke@435 1882 if (cha_monomorphic_target != NULL) {
duke@435 1883 // If CHA is able to bind this invoke then update the class
duke@435 1884 // to match that class, otherwise klass will refer to the
duke@435 1885 // interface.
duke@435 1886 klass = cha_monomorphic_target->holder();
duke@435 1887 actual_recv = target->holder();
duke@435 1888
duke@435 1889 // insert a check it's really the expected class.
roland@2174 1890 CheckCast* c = new CheckCast(klass, receiver, copy_state_for_exception());
duke@435 1891 c->set_incompatible_class_change_check();
duke@435 1892 c->set_direct_compare(klass->is_final());
roland@3498 1893 // pass the result of the checkcast so that the compiler has
roland@3498 1894 // more accurate type info in the inlinee
roland@3498 1895 better_receiver = append_split(c);
duke@435 1896 }
duke@435 1897 }
duke@435 1898 }
duke@435 1899 }
duke@435 1900
duke@435 1901 if (cha_monomorphic_target != NULL) {
duke@435 1902 if (cha_monomorphic_target->is_abstract()) {
duke@435 1903 // Do not optimize for abstract methods
duke@435 1904 cha_monomorphic_target = NULL;
duke@435 1905 }
duke@435 1906 }
duke@435 1907
duke@435 1908 if (cha_monomorphic_target != NULL) {
duke@435 1909 if (!(target->is_final_method())) {
duke@435 1910 // If we inlined because CHA revealed only a single target method,
duke@435 1911 // then we are dependent on that target method not getting overridden
duke@435 1912 // by dynamic class loading. Be sure to test the "static" receiver
duke@435 1913 // dest_method here, as opposed to the actual receiver, which may
duke@435 1914 // falsely lead us to believe that the receiver is final or private.
duke@435 1915 dependency_recorder()->assert_unique_concrete_method(actual_recv, cha_monomorphic_target);
duke@435 1916 }
duke@435 1917 code = Bytecodes::_invokespecial;
duke@435 1918 }
vlivanov@4154 1919
duke@435 1920 // check if we could do inlining
duke@435 1921 if (!PatchALot && Inline && klass->is_loaded() &&
duke@435 1922 (klass->is_initialized() || klass->is_interface() && target->holder()->is_initialized())
roland@5628 1923 && target->is_loaded()
roland@5628 1924 && !patch_for_appendix) {
duke@435 1925 // callee is known => check if we have static binding
duke@435 1926 assert(target->is_loaded(), "callee must be known");
twisti@3100 1927 if (code == Bytecodes::_invokestatic ||
twisti@3100 1928 code == Bytecodes::_invokespecial ||
twisti@3100 1929 code == Bytecodes::_invokevirtual && target->is_final_method() ||
twisti@3100 1930 code == Bytecodes::_invokedynamic) {
twisti@3100 1931 ciMethod* inline_target = (cha_monomorphic_target != NULL) ? cha_monomorphic_target : target;
twisti@4203 1932 // static binding => check if callee is ok
twisti@4203 1933 bool success = try_inline(inline_target, (cha_monomorphic_target != NULL) || (exact_target != NULL), code, better_receiver);
twisti@4203 1934
duke@435 1935 CHECK_BAILOUT();
duke@435 1936 clear_inline_bailout();
twisti@4203 1937
twisti@3100 1938 if (success) {
duke@435 1939 // Register dependence if JVMTI has either breakpoint
duke@435 1940 // setting or hotswapping of methods capabilities since they may
duke@435 1941 // cause deoptimization.
kvn@1215 1942 if (compilation()->env()->jvmti_can_hotswap_or_post_breakpoint()) {
duke@435 1943 dependency_recorder()->assert_evol_method(inline_target);
duke@435 1944 }
duke@435 1945 return;
duke@435 1946 }
twisti@3969 1947 } else {
twisti@3969 1948 print_inlining(target, "no static binding", /*success*/ false);
duke@435 1949 }
twisti@3969 1950 } else {
twisti@3969 1951 print_inlining(target, "not inlineable", /*success*/ false);
duke@435 1952 }
twisti@3969 1953
duke@435 1954 // If we attempted an inline which did not succeed because of a
duke@435 1955 // bailout during construction of the callee graph, the entire
duke@435 1956 // compilation has to be aborted. This is fairly rare and currently
duke@435 1957 // seems to only occur for jasm-generated classes which contain
duke@435 1958 // jsr/ret pairs which are not associated with finally clauses and
duke@435 1959 // do not have exception handlers in the containing method, and are
duke@435 1960 // therefore not caught early enough to abort the inlining without
duke@435 1961 // corrupting the graph. (We currently bail out with a non-empty
duke@435 1962 // stack at a ret in these situations.)
duke@435 1963 CHECK_BAILOUT();
duke@435 1964
duke@435 1965 // inlining not successful => standard invoke
twisti@1730 1966 bool is_loaded = target->is_loaded();
twisti@4021 1967 ValueType* result_type = as_ValueType(declared_signature->return_type());
twisti@4003 1968 ValueStack* state_before = copy_state_exhandling();
twisti@4003 1969
twisti@4003 1970 // The bytecode (code) might change in this method so we are checking this very late.
twisti@4003 1971 const bool has_receiver =
twisti@4003 1972 code == Bytecodes::_invokespecial ||
twisti@4003 1973 code == Bytecodes::_invokevirtual ||
twisti@4003 1974 code == Bytecodes::_invokeinterface;
roland@5628 1975 Values* args = state()->pop_arguments(target->arg_size_no_receiver() + patching_appendix_arg);
twisti@1730 1976 Value recv = has_receiver ? apop() : NULL;
coleenp@4037 1977 int vtable_index = Method::invalid_vtable_index;
duke@435 1978
duke@435 1979 #ifdef SPARC
duke@435 1980 // Currently only supported on Sparc.
duke@435 1981 // The UseInlineCaches only controls dispatch to invokevirtuals for
duke@435 1982 // loaded classes which we weren't able to statically bind.
duke@435 1983 if (!UseInlineCaches && is_loaded && code == Bytecodes::_invokevirtual
duke@435 1984 && !target->can_be_statically_bound()) {
duke@435 1985 // Find a vtable index if one is available
duke@435 1986 vtable_index = target->resolve_vtable_index(calling_klass, callee_holder);
duke@435 1987 }
duke@435 1988 #endif
duke@435 1989
duke@435 1990 if (recv != NULL &&
duke@435 1991 (code == Bytecodes::_invokespecial ||
iveresov@2138 1992 !is_loaded || target->is_final())) {
duke@435 1993 // invokespecial always needs a NULL check. invokevirtual where
duke@435 1994 // the target is final or where it's not known that whether the
duke@435 1995 // target is final requires a NULL check. Otherwise normal
duke@435 1996 // invokevirtual will perform the null check during the lookup
duke@435 1997 // logic or the unverified entry point. Profiling of calls
duke@435 1998 // requires that the null check is performed in all cases.
duke@435 1999 null_check(recv);
duke@435 2000 }
duke@435 2001
iveresov@2138 2002 if (is_profiling()) {
iveresov@2138 2003 if (recv != NULL && profile_calls()) {
iveresov@2138 2004 null_check(recv);
duke@435 2005 }
iveresov@2138 2006 // Note that we'd collect profile data in this method if we wanted it.
iveresov@2138 2007 compilation()->set_would_profile(true);
iveresov@2138 2008
iveresov@2138 2009 if (profile_calls()) {
iveresov@2138 2010 assert(cha_monomorphic_target == NULL || exact_target == NULL, "both can not be set");
iveresov@2138 2011 ciKlass* target_klass = NULL;
iveresov@2138 2012 if (cha_monomorphic_target != NULL) {
iveresov@2138 2013 target_klass = cha_monomorphic_target->holder();
iveresov@2138 2014 } else if (exact_target != NULL) {
iveresov@2138 2015 target_klass = exact_target->holder();
iveresov@2138 2016 }
roland@5987 2017 profile_call(target, recv, target_klass, collect_args_for_profiling(args, NULL, false), false);
iveresov@2138 2018 }
duke@435 2019 }
duke@435 2020
twisti@1730 2021 Invoke* result = new Invoke(code, result_type, recv, args, vtable_index, target, state_before);
duke@435 2022 // push result
duke@435 2023 append_split(result);
duke@435 2024
duke@435 2025 if (result_type != voidType) {
duke@435 2026 if (method()->is_strict()) {
duke@435 2027 push(result_type, round_fp(result));
duke@435 2028 } else {
duke@435 2029 push(result_type, result);
duke@435 2030 }
duke@435 2031 }
roland@5987 2032 if (profile_return() && result_type->is_object_kind()) {
roland@5921 2033 profile_return_type(result, target);
roland@5921 2034 }
duke@435 2035 }
duke@435 2036
duke@435 2037
duke@435 2038 void GraphBuilder::new_instance(int klass_index) {
roland@2174 2039 ValueStack* state_before = copy_state_exhandling();
duke@435 2040 bool will_link;
duke@435 2041 ciKlass* klass = stream()->get_klass(will_link);
duke@435 2042 assert(klass->is_instance_klass(), "must be an instance klass");
roland@2174 2043 NewInstance* new_instance = new NewInstance(klass->as_instance_klass(), state_before);
duke@435 2044 _memory->new_instance(new_instance);
duke@435 2045 apush(append_split(new_instance));
duke@435 2046 }
duke@435 2047
duke@435 2048
duke@435 2049 void GraphBuilder::new_type_array() {
roland@2174 2050 ValueStack* state_before = copy_state_exhandling();
roland@2174 2051 apush(append_split(new NewTypeArray(ipop(), (BasicType)stream()->get_index(), state_before)));
duke@435 2052 }
duke@435 2053
duke@435 2054
duke@435 2055 void GraphBuilder::new_object_array() {
duke@435 2056 bool will_link;
duke@435 2057 ciKlass* klass = stream()->get_klass(will_link);
roland@2174 2058 ValueStack* state_before = !klass->is_loaded() || PatchALot ? copy_state_before() : copy_state_exhandling();
duke@435 2059 NewArray* n = new NewObjectArray(klass, ipop(), state_before);
duke@435 2060 apush(append_split(n));
duke@435 2061 }
duke@435 2062
duke@435 2063
duke@435 2064 bool GraphBuilder::direct_compare(ciKlass* k) {
duke@435 2065 if (k->is_loaded() && k->is_instance_klass() && !UseSlowPath) {
duke@435 2066 ciInstanceKlass* ik = k->as_instance_klass();
duke@435 2067 if (ik->is_final()) {
duke@435 2068 return true;
duke@435 2069 } else {
duke@435 2070 if (DeoptC1 && UseCHA && !(ik->has_subklass() || ik->is_interface())) {
duke@435 2071 // test class is leaf class
duke@435 2072 dependency_recorder()->assert_leaf_type(ik);
duke@435 2073 return true;
duke@435 2074 }
duke@435 2075 }
duke@435 2076 }
duke@435 2077 return false;
duke@435 2078 }
duke@435 2079
duke@435 2080
duke@435 2081 void GraphBuilder::check_cast(int klass_index) {
duke@435 2082 bool will_link;
duke@435 2083 ciKlass* klass = stream()->get_klass(will_link);
roland@2174 2084 ValueStack* state_before = !klass->is_loaded() || PatchALot ? copy_state_before() : copy_state_for_exception();
duke@435 2085 CheckCast* c = new CheckCast(klass, apop(), state_before);
duke@435 2086 apush(append_split(c));
duke@435 2087 c->set_direct_compare(direct_compare(klass));
iveresov@2138 2088
iveresov@2138 2089 if (is_profiling()) {
iveresov@2138 2090 // Note that we'd collect profile data in this method if we wanted it.
iveresov@2138 2091 compilation()->set_would_profile(true);
iveresov@2138 2092
iveresov@2138 2093 if (profile_checkcasts()) {
iveresov@2138 2094 c->set_profiled_method(method());
iveresov@2138 2095 c->set_profiled_bci(bci());
iveresov@2138 2096 c->set_should_profile(true);
iveresov@2138 2097 }
duke@435 2098 }
duke@435 2099 }
duke@435 2100
duke@435 2101
duke@435 2102 void GraphBuilder::instance_of(int klass_index) {
duke@435 2103 bool will_link;
duke@435 2104 ciKlass* klass = stream()->get_klass(will_link);
roland@2174 2105 ValueStack* state_before = !klass->is_loaded() || PatchALot ? copy_state_before() : copy_state_exhandling();
duke@435 2106 InstanceOf* i = new InstanceOf(klass, apop(), state_before);
duke@435 2107 ipush(append_split(i));
duke@435 2108 i->set_direct_compare(direct_compare(klass));
iveresov@2146 2109
iveresov@2146 2110 if (is_profiling()) {
iveresov@2146 2111 // Note that we'd collect profile data in this method if we wanted it.
iveresov@2146 2112 compilation()->set_would_profile(true);
iveresov@2146 2113
iveresov@2146 2114 if (profile_checkcasts()) {
iveresov@2146 2115 i->set_profiled_method(method());
iveresov@2146 2116 i->set_profiled_bci(bci());
iveresov@2146 2117 i->set_should_profile(true);
iveresov@2146 2118 }
iveresov@2146 2119 }
duke@435 2120 }
duke@435 2121
duke@435 2122
duke@435 2123 void GraphBuilder::monitorenter(Value x, int bci) {
duke@435 2124 // save state before locking in case of deoptimization after a NullPointerException
roland@2174 2125 ValueStack* state_before = copy_state_for_exception_with_bci(bci);
roland@2174 2126 append_with_bci(new MonitorEnter(x, state()->lock(x), state_before), bci);
duke@435 2127 kill_all();
duke@435 2128 }
duke@435 2129
duke@435 2130
duke@435 2131 void GraphBuilder::monitorexit(Value x, int bci) {
duke@435 2132 append_with_bci(new MonitorExit(x, state()->unlock()), bci);
duke@435 2133 kill_all();
duke@435 2134 }
duke@435 2135
duke@435 2136
duke@435 2137 void GraphBuilder::new_multi_array(int dimensions) {
duke@435 2138 bool will_link;
duke@435 2139 ciKlass* klass = stream()->get_klass(will_link);
roland@2174 2140 ValueStack* state_before = !klass->is_loaded() || PatchALot ? copy_state_before() : copy_state_exhandling();
duke@435 2141
duke@435 2142 Values* dims = new Values(dimensions, NULL);
duke@435 2143 // fill in all dimensions
duke@435 2144 int i = dimensions;
duke@435 2145 while (i-- > 0) dims->at_put(i, ipop());
duke@435 2146 // create array
duke@435 2147 NewArray* n = new NewMultiArray(klass, dims, state_before);
duke@435 2148 apush(append_split(n));
duke@435 2149 }
duke@435 2150
duke@435 2151
duke@435 2152 void GraphBuilder::throw_op(int bci) {
duke@435 2153 // We require that the debug info for a Throw be the "state before"
duke@435 2154 // the Throw (i.e., exception oop is still on TOS)
roland@2174 2155 ValueStack* state_before = copy_state_before_with_bci(bci);
duke@435 2156 Throw* t = new Throw(apop(), state_before);
roland@2174 2157 // operand stack not needed after a throw
roland@2174 2158 state()->truncate_stack(0);
duke@435 2159 append_with_bci(t, bci);
duke@435 2160 }
duke@435 2161
duke@435 2162
duke@435 2163 Value GraphBuilder::round_fp(Value fp_value) {
duke@435 2164 // no rounding needed if SSE2 is used
duke@435 2165 if (RoundFPResults && UseSSE < 2) {
duke@435 2166 // Must currently insert rounding node for doubleword values that
duke@435 2167 // are results of expressions (i.e., not loads from memory or
duke@435 2168 // constants)
duke@435 2169 if (fp_value->type()->tag() == doubleTag &&
duke@435 2170 fp_value->as_Constant() == NULL &&
duke@435 2171 fp_value->as_Local() == NULL && // method parameters need no rounding
duke@435 2172 fp_value->as_RoundFP() == NULL) {
duke@435 2173 return append(new RoundFP(fp_value));
duke@435 2174 }
duke@435 2175 }
duke@435 2176 return fp_value;
duke@435 2177 }
duke@435 2178
duke@435 2179
duke@435 2180 Instruction* GraphBuilder::append_with_bci(Instruction* instr, int bci) {
iveresov@2138 2181 Canonicalizer canon(compilation(), instr, bci);
duke@435 2182 Instruction* i1 = canon.canonical();
roland@2174 2183 if (i1->is_linked() || !i1->can_be_linked()) {
duke@435 2184 // Canonicalizer returned an instruction which was already
duke@435 2185 // appended so simply return it.
duke@435 2186 return i1;
roland@2174 2187 }
roland@2174 2188
roland@2174 2189 if (UseLocalValueNumbering) {
duke@435 2190 // Lookup the instruction in the ValueMap and add it to the map if
duke@435 2191 // it's not found.
duke@435 2192 Instruction* i2 = vmap()->find_insert(i1);
duke@435 2193 if (i2 != i1) {
duke@435 2194 // found an entry in the value map, so just return it.
roland@2174 2195 assert(i2->is_linked(), "should already be linked");
duke@435 2196 return i2;
duke@435 2197 }
never@894 2198 ValueNumberingEffects vne(vmap());
never@894 2199 i1->visit(&vne);
duke@435 2200 }
duke@435 2201
roland@2174 2202 // i1 was not eliminated => append it
roland@2174 2203 assert(i1->next() == NULL, "shouldn't already be linked");
roland@2174 2204 _last = _last->set_next(i1, canon.bci());
roland@2174 2205
roland@2174 2206 if (++_instruction_count >= InstructionCountCutoff && !bailed_out()) {
roland@2174 2207 // set the bailout state but complete normal processing. We
roland@2174 2208 // might do a little more work before noticing the bailout so we
roland@2174 2209 // want processing to continue normally until it's noticed.
roland@2174 2210 bailout("Method and/or inlining is too large");
roland@2174 2211 }
roland@2174 2212
roland@2174 2213 #ifndef PRODUCT
roland@2174 2214 if (PrintIRDuringConstruction) {
roland@2174 2215 InstructionPrinter ip;
roland@2174 2216 ip.print_line(i1);
roland@2174 2217 if (Verbose) {
roland@2174 2218 state()->print();
duke@435 2219 }
roland@2174 2220 }
roland@2174 2221 #endif
roland@2174 2222
roland@2174 2223 // save state after modification of operand stack for StateSplit instructions
roland@2174 2224 StateSplit* s = i1->as_StateSplit();
roland@2174 2225 if (s != NULL) {
roland@2174 2226 if (EliminateFieldAccess) {
roland@2174 2227 Intrinsic* intrinsic = s->as_Intrinsic();
roland@2174 2228 if (s->as_Invoke() != NULL || (intrinsic && !intrinsic->preserves_state())) {
roland@2174 2229 _memory->kill();
duke@435 2230 }
duke@435 2231 }
roland@2174 2232 s->set_state(state()->copy(ValueStack::StateAfter, canon.bci()));
roland@2174 2233 }
roland@2174 2234
roland@2174 2235 // set up exception handlers for this instruction if necessary
roland@2174 2236 if (i1->can_trap()) {
roland@2174 2237 i1->set_exception_handlers(handle_exception(i1));
roland@2174 2238 assert(i1->exception_state() != NULL || !i1->needs_exception_state() || bailed_out(), "handle_exception must set exception state");
duke@435 2239 }
duke@435 2240 return i1;
duke@435 2241 }
duke@435 2242
duke@435 2243
duke@435 2244 Instruction* GraphBuilder::append(Instruction* instr) {
duke@435 2245 assert(instr->as_StateSplit() == NULL || instr->as_BlockEnd() != NULL, "wrong append used");
duke@435 2246 return append_with_bci(instr, bci());
duke@435 2247 }
duke@435 2248
duke@435 2249
duke@435 2250 Instruction* GraphBuilder::append_split(StateSplit* instr) {
duke@435 2251 return append_with_bci(instr, bci());
duke@435 2252 }
duke@435 2253
duke@435 2254
duke@435 2255 void GraphBuilder::null_check(Value value) {
duke@435 2256 if (value->as_NewArray() != NULL || value->as_NewInstance() != NULL) {
duke@435 2257 return;
duke@435 2258 } else {
duke@435 2259 Constant* con = value->as_Constant();
duke@435 2260 if (con) {
duke@435 2261 ObjectType* c = con->type()->as_ObjectType();
duke@435 2262 if (c && c->is_loaded()) {
duke@435 2263 ObjectConstant* oc = c->as_ObjectConstant();
duke@435 2264 if (!oc || !oc->value()->is_null_object()) {
duke@435 2265 return;
duke@435 2266 }
duke@435 2267 }
duke@435 2268 }
duke@435 2269 }
roland@2174 2270 append(new NullCheck(value, copy_state_for_exception()));
duke@435 2271 }
duke@435 2272
duke@435 2273
duke@435 2274
roland@2174 2275 XHandlers* GraphBuilder::handle_exception(Instruction* instruction) {
roland@2174 2276 if (!has_handler() && (!instruction->needs_exception_state() || instruction->exception_state() != NULL)) {
roland@2174 2277 assert(instruction->exception_state() == NULL
roland@2174 2278 || instruction->exception_state()->kind() == ValueStack::EmptyExceptionState
roland@2174 2279 || (instruction->exception_state()->kind() == ValueStack::ExceptionState && _compilation->env()->jvmti_can_access_local_variables()),
roland@2174 2280 "exception_state should be of exception kind");
duke@435 2281 return new XHandlers();
duke@435 2282 }
duke@435 2283
duke@435 2284 XHandlers* exception_handlers = new XHandlers();
duke@435 2285 ScopeData* cur_scope_data = scope_data();
roland@2174 2286 ValueStack* cur_state = instruction->state_before();
roland@2174 2287 ValueStack* prev_state = NULL;
duke@435 2288 int scope_count = 0;
duke@435 2289
roland@2174 2290 assert(cur_state != NULL, "state_before must be set");
duke@435 2291 do {
roland@2174 2292 int cur_bci = cur_state->bci();
roland@2174 2293 assert(cur_scope_data->scope() == cur_state->scope(), "scopes do not match");
duke@435 2294 assert(cur_bci == SynchronizationEntryBCI || cur_bci == cur_scope_data->stream()->cur_bci(), "invalid bci");
duke@435 2295
duke@435 2296 // join with all potential exception handlers
duke@435 2297 XHandlers* list = cur_scope_data->xhandlers();
duke@435 2298 const int n = list->length();
duke@435 2299 for (int i = 0; i < n; i++) {
duke@435 2300 XHandler* h = list->handler_at(i);
duke@435 2301 if (h->covers(cur_bci)) {
duke@435 2302 // h is a potential exception handler => join it
duke@435 2303 compilation()->set_has_exception_handlers(true);
duke@435 2304
duke@435 2305 BlockBegin* entry = h->entry_block();
duke@435 2306 if (entry == block()) {
duke@435 2307 // It's acceptable for an exception handler to cover itself
duke@435 2308 // but we don't handle that in the parser currently. It's
duke@435 2309 // very rare so we bailout instead of trying to handle it.
duke@435 2310 BAILOUT_("exception handler covers itself", exception_handlers);
duke@435 2311 }
duke@435 2312 assert(entry->bci() == h->handler_bci(), "must match");
duke@435 2313 assert(entry->bci() == -1 || entry == cur_scope_data->block_at(entry->bci()), "blocks must correspond");
duke@435 2314
duke@435 2315 // previously this was a BAILOUT, but this is not necessary
duke@435 2316 // now because asynchronous exceptions are not handled this way.
roland@2174 2317 assert(entry->state() == NULL || cur_state->total_locks_size() == entry->state()->total_locks_size(), "locks do not match");
duke@435 2318
duke@435 2319 // xhandler start with an empty expression stack
roland@2174 2320 if (cur_state->stack_size() != 0) {
roland@2174 2321 cur_state = cur_state->copy(ValueStack::ExceptionState, cur_state->bci());
roland@2174 2322 }
roland@2174 2323 if (instruction->exception_state() == NULL) {
roland@2174 2324 instruction->set_exception_state(cur_state);
roland@2174 2325 }
duke@435 2326
duke@435 2327 // Note: Usually this join must work. However, very
duke@435 2328 // complicated jsr-ret structures where we don't ret from
duke@435 2329 // the subroutine can cause the objects on the monitor
duke@435 2330 // stacks to not match because blocks can be parsed twice.
duke@435 2331 // The only test case we've seen so far which exhibits this
duke@435 2332 // problem is caught by the infinite recursion test in
duke@435 2333 // GraphBuilder::jsr() if the join doesn't work.
roland@2174 2334 if (!entry->try_merge(cur_state)) {
duke@435 2335 BAILOUT_("error while joining with exception handler, prob. due to complicated jsr/rets", exception_handlers);
duke@435 2336 }
duke@435 2337
duke@435 2338 // add current state for correct handling of phi functions at begin of xhandler
roland@2174 2339 int phi_operand = entry->add_exception_state(cur_state);
duke@435 2340
duke@435 2341 // add entry to the list of xhandlers of this block
duke@435 2342 _block->add_exception_handler(entry);
duke@435 2343
duke@435 2344 // add back-edge from xhandler entry to this block
duke@435 2345 if (!entry->is_predecessor(_block)) {
duke@435 2346 entry->add_predecessor(_block);
duke@435 2347 }
duke@435 2348
duke@435 2349 // clone XHandler because phi_operand and scope_count can not be shared
duke@435 2350 XHandler* new_xhandler = new XHandler(h);
duke@435 2351 new_xhandler->set_phi_operand(phi_operand);
duke@435 2352 new_xhandler->set_scope_count(scope_count);
duke@435 2353 exception_handlers->append(new_xhandler);
duke@435 2354
duke@435 2355 // fill in exception handler subgraph lazily
duke@435 2356 assert(!entry->is_set(BlockBegin::was_visited_flag), "entry must not be visited yet");
duke@435 2357 cur_scope_data->add_to_work_list(entry);
duke@435 2358
duke@435 2359 // stop when reaching catchall
duke@435 2360 if (h->catch_type() == 0) {
duke@435 2361 return exception_handlers;
duke@435 2362 }
duke@435 2363 }
duke@435 2364 }
duke@435 2365
roland@2174 2366 if (exception_handlers->length() == 0) {
roland@2174 2367 // This scope and all callees do not handle exceptions, so the local
roland@2174 2368 // variables of this scope are not needed. However, the scope itself is
roland@2174 2369 // required for a correct exception stack trace -> clear out the locals.
roland@2174 2370 if (_compilation->env()->jvmti_can_access_local_variables()) {
roland@2174 2371 cur_state = cur_state->copy(ValueStack::ExceptionState, cur_state->bci());
roland@2174 2372 } else {
roland@2174 2373 cur_state = cur_state->copy(ValueStack::EmptyExceptionState, cur_state->bci());
roland@2174 2374 }
roland@2174 2375 if (prev_state != NULL) {
roland@2174 2376 prev_state->set_caller_state(cur_state);
roland@2174 2377 }
roland@2174 2378 if (instruction->exception_state() == NULL) {
roland@2174 2379 instruction->set_exception_state(cur_state);
roland@2174 2380 }
roland@2174 2381 }
roland@2174 2382
duke@435 2383 // Set up iteration for next time.
duke@435 2384 // If parsing a jsr, do not grab exception handlers from the
duke@435 2385 // parent scopes for this method (already got them, and they
duke@435 2386 // needed to be cloned)
roland@2174 2387
roland@2174 2388 while (cur_scope_data->parsing_jsr()) {
roland@2174 2389 cur_scope_data = cur_scope_data->parent();
duke@435 2390 }
roland@2174 2391
roland@2174 2392 assert(cur_scope_data->scope() == cur_state->scope(), "scopes do not match");
roland@2174 2393 assert(cur_state->locks_size() == 0 || cur_state->locks_size() == 1, "unlocking must be done in a catchall exception handler");
roland@2174 2394
roland@2174 2395 prev_state = cur_state;
roland@2174 2396 cur_state = cur_state->caller_state();
roland@2174 2397 cur_scope_data = cur_scope_data->parent();
roland@2174 2398 scope_count++;
duke@435 2399 } while (cur_scope_data != NULL);
duke@435 2400
duke@435 2401 return exception_handlers;
duke@435 2402 }
duke@435 2403
duke@435 2404
duke@435 2405 // Helper class for simplifying Phis.
duke@435 2406 class PhiSimplifier : public BlockClosure {
duke@435 2407 private:
duke@435 2408 bool _has_substitutions;
duke@435 2409 Value simplify(Value v);
duke@435 2410
duke@435 2411 public:
duke@435 2412 PhiSimplifier(BlockBegin* start) : _has_substitutions(false) {
duke@435 2413 start->iterate_preorder(this);
duke@435 2414 if (_has_substitutions) {
duke@435 2415 SubstitutionResolver sr(start);
duke@435 2416 }
duke@435 2417 }
duke@435 2418 void block_do(BlockBegin* b);
duke@435 2419 bool has_substitutions() const { return _has_substitutions; }
duke@435 2420 };
duke@435 2421
duke@435 2422
duke@435 2423 Value PhiSimplifier::simplify(Value v) {
duke@435 2424 Phi* phi = v->as_Phi();
duke@435 2425
duke@435 2426 if (phi == NULL) {
duke@435 2427 // no phi function
duke@435 2428 return v;
duke@435 2429 } else if (v->has_subst()) {
duke@435 2430 // already substituted; subst can be phi itself -> simplify
duke@435 2431 return simplify(v->subst());
duke@435 2432 } else if (phi->is_set(Phi::cannot_simplify)) {
duke@435 2433 // already tried to simplify phi before
duke@435 2434 return phi;
duke@435 2435 } else if (phi->is_set(Phi::visited)) {
duke@435 2436 // break cycles in phi functions
duke@435 2437 return phi;
duke@435 2438 } else if (phi->type()->is_illegal()) {
duke@435 2439 // illegal phi functions are ignored anyway
duke@435 2440 return phi;
duke@435 2441
duke@435 2442 } else {
duke@435 2443 // mark phi function as processed to break cycles in phi functions
duke@435 2444 phi->set(Phi::visited);
duke@435 2445
duke@435 2446 // simplify x = [y, x] and x = [y, y] to y
duke@435 2447 Value subst = NULL;
duke@435 2448 int opd_count = phi->operand_count();
duke@435 2449 for (int i = 0; i < opd_count; i++) {
duke@435 2450 Value opd = phi->operand_at(i);
duke@435 2451 assert(opd != NULL, "Operand must exist!");
duke@435 2452
duke@435 2453 if (opd->type()->is_illegal()) {
duke@435 2454 // if one operand is illegal, the entire phi function is illegal
duke@435 2455 phi->make_illegal();
duke@435 2456 phi->clear(Phi::visited);
duke@435 2457 return phi;
duke@435 2458 }
duke@435 2459
duke@435 2460 Value new_opd = simplify(opd);
duke@435 2461 assert(new_opd != NULL, "Simplified operand must exist!");
duke@435 2462
duke@435 2463 if (new_opd != phi && new_opd != subst) {
duke@435 2464 if (subst == NULL) {
duke@435 2465 subst = new_opd;
duke@435 2466 } else {
duke@435 2467 // no simplification possible
duke@435 2468 phi->set(Phi::cannot_simplify);
duke@435 2469 phi->clear(Phi::visited);
duke@435 2470 return phi;
duke@435 2471 }
duke@435 2472 }
duke@435 2473 }
duke@435 2474
duke@435 2475 // sucessfully simplified phi function
duke@435 2476 assert(subst != NULL, "illegal phi function");
duke@435 2477 _has_substitutions = true;
duke@435 2478 phi->clear(Phi::visited);
duke@435 2479 phi->set_subst(subst);
duke@435 2480
duke@435 2481 #ifndef PRODUCT
duke@435 2482 if (PrintPhiFunctions) {
duke@435 2483 tty->print_cr("simplified phi function %c%d to %c%d (Block B%d)", phi->type()->tchar(), phi->id(), subst->type()->tchar(), subst->id(), phi->block()->block_id());
duke@435 2484 }
duke@435 2485 #endif
duke@435 2486
duke@435 2487 return subst;
duke@435 2488 }
duke@435 2489 }
duke@435 2490
duke@435 2491
duke@435 2492 void PhiSimplifier::block_do(BlockBegin* b) {
duke@435 2493 for_each_phi_fun(b, phi,
duke@435 2494 simplify(phi);
duke@435 2495 );
duke@435 2496
duke@435 2497 #ifdef ASSERT
duke@435 2498 for_each_phi_fun(b, phi,
duke@435 2499 assert(phi->operand_count() != 1 || phi->subst() != phi, "missed trivial simplification");
duke@435 2500 );
duke@435 2501
duke@435 2502 ValueStack* state = b->state()->caller_state();
roland@2174 2503 for_each_state_value(state, value,
roland@2174 2504 Phi* phi = value->as_Phi();
roland@2174 2505 assert(phi == NULL || phi->block() != b, "must not have phi function to simplify in caller state");
roland@2174 2506 );
duke@435 2507 #endif
duke@435 2508 }
duke@435 2509
duke@435 2510 // This method is called after all blocks are filled with HIR instructions
duke@435 2511 // It eliminates all Phi functions of the form x = [y, y] and x = [y, x]
duke@435 2512 void GraphBuilder::eliminate_redundant_phis(BlockBegin* start) {
duke@435 2513 PhiSimplifier simplifier(start);
duke@435 2514 }
duke@435 2515
duke@435 2516
duke@435 2517 void GraphBuilder::connect_to_end(BlockBegin* beg) {
duke@435 2518 // setup iteration
duke@435 2519 kill_all();
duke@435 2520 _block = beg;
roland@2174 2521 _state = beg->state()->copy_for_parsing();
duke@435 2522 _last = beg;
duke@435 2523 iterate_bytecodes_for_block(beg->bci());
duke@435 2524 }
duke@435 2525
duke@435 2526
duke@435 2527 BlockEnd* GraphBuilder::iterate_bytecodes_for_block(int bci) {
duke@435 2528 #ifndef PRODUCT
duke@435 2529 if (PrintIRDuringConstruction) {
duke@435 2530 tty->cr();
duke@435 2531 InstructionPrinter ip;
duke@435 2532 ip.print_instr(_block); tty->cr();
duke@435 2533 ip.print_stack(_block->state()); tty->cr();
duke@435 2534 ip.print_inline_level(_block);
duke@435 2535 ip.print_head();
duke@435 2536 tty->print_cr("locals size: %d stack size: %d", state()->locals_size(), state()->stack_size());
duke@435 2537 }
duke@435 2538 #endif
duke@435 2539 _skip_block = false;
duke@435 2540 assert(state() != NULL, "ValueStack missing!");
vlivanov@4154 2541 CompileLog* log = compilation()->log();
duke@435 2542 ciBytecodeStream s(method());
duke@435 2543 s.reset_to_bci(bci);
duke@435 2544 int prev_bci = bci;
duke@435 2545 scope_data()->set_stream(&s);
duke@435 2546 // iterate
duke@435 2547 Bytecodes::Code code = Bytecodes::_illegal;
duke@435 2548 bool push_exception = false;
duke@435 2549
duke@435 2550 if (block()->is_set(BlockBegin::exception_entry_flag) && block()->next() == NULL) {
duke@435 2551 // first thing in the exception entry block should be the exception object.
duke@435 2552 push_exception = true;
duke@435 2553 }
duke@435 2554
duke@435 2555 while (!bailed_out() && last()->as_BlockEnd() == NULL &&
duke@435 2556 (code = stream()->next()) != ciBytecodeStream::EOBC() &&
duke@435 2557 (block_at(s.cur_bci()) == NULL || block_at(s.cur_bci()) == block())) {
roland@2174 2558 assert(state()->kind() == ValueStack::Parsing, "invalid state kind");
duke@435 2559
vlivanov@4154 2560 if (log != NULL)
vlivanov@4154 2561 log->set_context("bc code='%d' bci='%d'", (int)code, s.cur_bci());
vlivanov@4154 2562
duke@435 2563 // Check for active jsr during OSR compilation
duke@435 2564 if (compilation()->is_osr_compile()
duke@435 2565 && scope()->is_top_scope()
duke@435 2566 && parsing_jsr()
duke@435 2567 && s.cur_bci() == compilation()->osr_bci()) {
duke@435 2568 bailout("OSR not supported while a jsr is active");
duke@435 2569 }
duke@435 2570
duke@435 2571 if (push_exception) {
duke@435 2572 apush(append(new ExceptionObject()));
duke@435 2573 push_exception = false;
duke@435 2574 }
duke@435 2575
duke@435 2576 // handle bytecode
duke@435 2577 switch (code) {
duke@435 2578 case Bytecodes::_nop : /* nothing to do */ break;
duke@435 2579 case Bytecodes::_aconst_null : apush(append(new Constant(objectNull ))); break;
duke@435 2580 case Bytecodes::_iconst_m1 : ipush(append(new Constant(new IntConstant (-1)))); break;
duke@435 2581 case Bytecodes::_iconst_0 : ipush(append(new Constant(intZero ))); break;
duke@435 2582 case Bytecodes::_iconst_1 : ipush(append(new Constant(intOne ))); break;
duke@435 2583 case Bytecodes::_iconst_2 : ipush(append(new Constant(new IntConstant ( 2)))); break;
duke@435 2584 case Bytecodes::_iconst_3 : ipush(append(new Constant(new IntConstant ( 3)))); break;
duke@435 2585 case Bytecodes::_iconst_4 : ipush(append(new Constant(new IntConstant ( 4)))); break;
duke@435 2586 case Bytecodes::_iconst_5 : ipush(append(new Constant(new IntConstant ( 5)))); break;
duke@435 2587 case Bytecodes::_lconst_0 : lpush(append(new Constant(new LongConstant ( 0)))); break;
duke@435 2588 case Bytecodes::_lconst_1 : lpush(append(new Constant(new LongConstant ( 1)))); break;
duke@435 2589 case Bytecodes::_fconst_0 : fpush(append(new Constant(new FloatConstant ( 0)))); break;
duke@435 2590 case Bytecodes::_fconst_1 : fpush(append(new Constant(new FloatConstant ( 1)))); break;
duke@435 2591 case Bytecodes::_fconst_2 : fpush(append(new Constant(new FloatConstant ( 2)))); break;
duke@435 2592 case Bytecodes::_dconst_0 : dpush(append(new Constant(new DoubleConstant( 0)))); break;
duke@435 2593 case Bytecodes::_dconst_1 : dpush(append(new Constant(new DoubleConstant( 1)))); break;
duke@435 2594 case Bytecodes::_bipush : ipush(append(new Constant(new IntConstant(((signed char*)s.cur_bcp())[1])))); break;
duke@435 2595 case Bytecodes::_sipush : ipush(append(new Constant(new IntConstant((short)Bytes::get_Java_u2(s.cur_bcp()+1))))); break;
duke@435 2596 case Bytecodes::_ldc : // fall through
duke@435 2597 case Bytecodes::_ldc_w : // fall through
duke@435 2598 case Bytecodes::_ldc2_w : load_constant(); break;
duke@435 2599 case Bytecodes::_iload : load_local(intType , s.get_index()); break;
duke@435 2600 case Bytecodes::_lload : load_local(longType , s.get_index()); break;
duke@435 2601 case Bytecodes::_fload : load_local(floatType , s.get_index()); break;
duke@435 2602 case Bytecodes::_dload : load_local(doubleType , s.get_index()); break;
duke@435 2603 case Bytecodes::_aload : load_local(instanceType, s.get_index()); break;
duke@435 2604 case Bytecodes::_iload_0 : load_local(intType , 0); break;
duke@435 2605 case Bytecodes::_iload_1 : load_local(intType , 1); break;
duke@435 2606 case Bytecodes::_iload_2 : load_local(intType , 2); break;
duke@435 2607 case Bytecodes::_iload_3 : load_local(intType , 3); break;
duke@435 2608 case Bytecodes::_lload_0 : load_local(longType , 0); break;
duke@435 2609 case Bytecodes::_lload_1 : load_local(longType , 1); break;
duke@435 2610 case Bytecodes::_lload_2 : load_local(longType , 2); break;
duke@435 2611 case Bytecodes::_lload_3 : load_local(longType , 3); break;
duke@435 2612 case Bytecodes::_fload_0 : load_local(floatType , 0); break;
duke@435 2613 case Bytecodes::_fload_1 : load_local(floatType , 1); break;
duke@435 2614 case Bytecodes::_fload_2 : load_local(floatType , 2); break;
duke@435 2615 case Bytecodes::_fload_3 : load_local(floatType , 3); break;
duke@435 2616 case Bytecodes::_dload_0 : load_local(doubleType, 0); break;
duke@435 2617 case Bytecodes::_dload_1 : load_local(doubleType, 1); break;
duke@435 2618 case Bytecodes::_dload_2 : load_local(doubleType, 2); break;
duke@435 2619 case Bytecodes::_dload_3 : load_local(doubleType, 3); break;
duke@435 2620 case Bytecodes::_aload_0 : load_local(objectType, 0); break;
duke@435 2621 case Bytecodes::_aload_1 : load_local(objectType, 1); break;
duke@435 2622 case Bytecodes::_aload_2 : load_local(objectType, 2); break;
duke@435 2623 case Bytecodes::_aload_3 : load_local(objectType, 3); break;
duke@435 2624 case Bytecodes::_iaload : load_indexed(T_INT ); break;
duke@435 2625 case Bytecodes::_laload : load_indexed(T_LONG ); break;
duke@435 2626 case Bytecodes::_faload : load_indexed(T_FLOAT ); break;
duke@435 2627 case Bytecodes::_daload : load_indexed(T_DOUBLE); break;
duke@435 2628 case Bytecodes::_aaload : load_indexed(T_OBJECT); break;
duke@435 2629 case Bytecodes::_baload : load_indexed(T_BYTE ); break;
duke@435 2630 case Bytecodes::_caload : load_indexed(T_CHAR ); break;
duke@435 2631 case Bytecodes::_saload : load_indexed(T_SHORT ); break;
duke@435 2632 case Bytecodes::_istore : store_local(intType , s.get_index()); break;
duke@435 2633 case Bytecodes::_lstore : store_local(longType , s.get_index()); break;
duke@435 2634 case Bytecodes::_fstore : store_local(floatType , s.get_index()); break;
duke@435 2635 case Bytecodes::_dstore : store_local(doubleType, s.get_index()); break;
duke@435 2636 case Bytecodes::_astore : store_local(objectType, s.get_index()); break;
duke@435 2637 case Bytecodes::_istore_0 : store_local(intType , 0); break;
duke@435 2638 case Bytecodes::_istore_1 : store_local(intType , 1); break;
duke@435 2639 case Bytecodes::_istore_2 : store_local(intType , 2); break;
duke@435 2640 case Bytecodes::_istore_3 : store_local(intType , 3); break;
duke@435 2641 case Bytecodes::_lstore_0 : store_local(longType , 0); break;
duke@435 2642 case Bytecodes::_lstore_1 : store_local(longType , 1); break;
duke@435 2643 case Bytecodes::_lstore_2 : store_local(longType , 2); break;
duke@435 2644 case Bytecodes::_lstore_3 : store_local(longType , 3); break;
duke@435 2645 case Bytecodes::_fstore_0 : store_local(floatType , 0); break;
duke@435 2646 case Bytecodes::_fstore_1 : store_local(floatType , 1); break;
duke@435 2647 case Bytecodes::_fstore_2 : store_local(floatType , 2); break;
duke@435 2648 case Bytecodes::_fstore_3 : store_local(floatType , 3); break;
duke@435 2649 case Bytecodes::_dstore_0 : store_local(doubleType, 0); break;
duke@435 2650 case Bytecodes::_dstore_1 : store_local(doubleType, 1); break;
duke@435 2651 case Bytecodes::_dstore_2 : store_local(doubleType, 2); break;
duke@435 2652 case Bytecodes::_dstore_3 : store_local(doubleType, 3); break;
duke@435 2653 case Bytecodes::_astore_0 : store_local(objectType, 0); break;
duke@435 2654 case Bytecodes::_astore_1 : store_local(objectType, 1); break;
duke@435 2655 case Bytecodes::_astore_2 : store_local(objectType, 2); break;
duke@435 2656 case Bytecodes::_astore_3 : store_local(objectType, 3); break;
duke@435 2657 case Bytecodes::_iastore : store_indexed(T_INT ); break;
duke@435 2658 case Bytecodes::_lastore : store_indexed(T_LONG ); break;
duke@435 2659 case Bytecodes::_fastore : store_indexed(T_FLOAT ); break;
duke@435 2660 case Bytecodes::_dastore : store_indexed(T_DOUBLE); break;
duke@435 2661 case Bytecodes::_aastore : store_indexed(T_OBJECT); break;
duke@435 2662 case Bytecodes::_bastore : store_indexed(T_BYTE ); break;
duke@435 2663 case Bytecodes::_castore : store_indexed(T_CHAR ); break;
duke@435 2664 case Bytecodes::_sastore : store_indexed(T_SHORT ); break;
duke@435 2665 case Bytecodes::_pop : // fall through
duke@435 2666 case Bytecodes::_pop2 : // fall through
duke@435 2667 case Bytecodes::_dup : // fall through
duke@435 2668 case Bytecodes::_dup_x1 : // fall through
duke@435 2669 case Bytecodes::_dup_x2 : // fall through
duke@435 2670 case Bytecodes::_dup2 : // fall through
duke@435 2671 case Bytecodes::_dup2_x1 : // fall through
duke@435 2672 case Bytecodes::_dup2_x2 : // fall through
duke@435 2673 case Bytecodes::_swap : stack_op(code); break;
duke@435 2674 case Bytecodes::_iadd : arithmetic_op(intType , code); break;
duke@435 2675 case Bytecodes::_ladd : arithmetic_op(longType , code); break;
duke@435 2676 case Bytecodes::_fadd : arithmetic_op(floatType , code); break;
duke@435 2677 case Bytecodes::_dadd : arithmetic_op(doubleType, code); break;
duke@435 2678 case Bytecodes::_isub : arithmetic_op(intType , code); break;
duke@435 2679 case Bytecodes::_lsub : arithmetic_op(longType , code); break;
duke@435 2680 case Bytecodes::_fsub : arithmetic_op(floatType , code); break;
duke@435 2681 case Bytecodes::_dsub : arithmetic_op(doubleType, code); break;
duke@435 2682 case Bytecodes::_imul : arithmetic_op(intType , code); break;
duke@435 2683 case Bytecodes::_lmul : arithmetic_op(longType , code); break;
duke@435 2684 case Bytecodes::_fmul : arithmetic_op(floatType , code); break;
duke@435 2685 case Bytecodes::_dmul : arithmetic_op(doubleType, code); break;
roland@2174 2686 case Bytecodes::_idiv : arithmetic_op(intType , code, copy_state_for_exception()); break;
roland@2174 2687 case Bytecodes::_ldiv : arithmetic_op(longType , code, copy_state_for_exception()); break;
duke@435 2688 case Bytecodes::_fdiv : arithmetic_op(floatType , code); break;
duke@435 2689 case Bytecodes::_ddiv : arithmetic_op(doubleType, code); break;
roland@2174 2690 case Bytecodes::_irem : arithmetic_op(intType , code, copy_state_for_exception()); break;
roland@2174 2691 case Bytecodes::_lrem : arithmetic_op(longType , code, copy_state_for_exception()); break;
duke@435 2692 case Bytecodes::_frem : arithmetic_op(floatType , code); break;
duke@435 2693 case Bytecodes::_drem : arithmetic_op(doubleType, code); break;
duke@435 2694 case Bytecodes::_ineg : negate_op(intType ); break;
duke@435 2695 case Bytecodes::_lneg : negate_op(longType ); break;
duke@435 2696 case Bytecodes::_fneg : negate_op(floatType ); break;
duke@435 2697 case Bytecodes::_dneg : negate_op(doubleType); break;
duke@435 2698 case Bytecodes::_ishl : shift_op(intType , code); break;
duke@435 2699 case Bytecodes::_lshl : shift_op(longType, code); break;
duke@435 2700 case Bytecodes::_ishr : shift_op(intType , code); break;
duke@435 2701 case Bytecodes::_lshr : shift_op(longType, code); break;
duke@435 2702 case Bytecodes::_iushr : shift_op(intType , code); break;
duke@435 2703 case Bytecodes::_lushr : shift_op(longType, code); break;
duke@435 2704 case Bytecodes::_iand : logic_op(intType , code); break;
duke@435 2705 case Bytecodes::_land : logic_op(longType, code); break;
duke@435 2706 case Bytecodes::_ior : logic_op(intType , code); break;
duke@435 2707 case Bytecodes::_lor : logic_op(longType, code); break;
duke@435 2708 case Bytecodes::_ixor : logic_op(intType , code); break;
duke@435 2709 case Bytecodes::_lxor : logic_op(longType, code); break;
duke@435 2710 case Bytecodes::_iinc : increment(); break;
duke@435 2711 case Bytecodes::_i2l : convert(code, T_INT , T_LONG ); break;
duke@435 2712 case Bytecodes::_i2f : convert(code, T_INT , T_FLOAT ); break;
duke@435 2713 case Bytecodes::_i2d : convert(code, T_INT , T_DOUBLE); break;
duke@435 2714 case Bytecodes::_l2i : convert(code, T_LONG , T_INT ); break;
duke@435 2715 case Bytecodes::_l2f : convert(code, T_LONG , T_FLOAT ); break;
duke@435 2716 case Bytecodes::_l2d : convert(code, T_LONG , T_DOUBLE); break;
duke@435 2717 case Bytecodes::_f2i : convert(code, T_FLOAT , T_INT ); break;
duke@435 2718 case Bytecodes::_f2l : convert(code, T_FLOAT , T_LONG ); break;
duke@435 2719 case Bytecodes::_f2d : convert(code, T_FLOAT , T_DOUBLE); break;
duke@435 2720 case Bytecodes::_d2i : convert(code, T_DOUBLE, T_INT ); break;
duke@435 2721 case Bytecodes::_d2l : convert(code, T_DOUBLE, T_LONG ); break;
duke@435 2722 case Bytecodes::_d2f : convert(code, T_DOUBLE, T_FLOAT ); break;
duke@435 2723 case Bytecodes::_i2b : convert(code, T_INT , T_BYTE ); break;
duke@435 2724 case Bytecodes::_i2c : convert(code, T_INT , T_CHAR ); break;
duke@435 2725 case Bytecodes::_i2s : convert(code, T_INT , T_SHORT ); break;
duke@435 2726 case Bytecodes::_lcmp : compare_op(longType , code); break;
duke@435 2727 case Bytecodes::_fcmpl : compare_op(floatType , code); break;
duke@435 2728 case Bytecodes::_fcmpg : compare_op(floatType , code); break;
duke@435 2729 case Bytecodes::_dcmpl : compare_op(doubleType, code); break;
duke@435 2730 case Bytecodes::_dcmpg : compare_op(doubleType, code); break;
duke@435 2731 case Bytecodes::_ifeq : if_zero(intType , If::eql); break;
duke@435 2732 case Bytecodes::_ifne : if_zero(intType , If::neq); break;
duke@435 2733 case Bytecodes::_iflt : if_zero(intType , If::lss); break;
duke@435 2734 case Bytecodes::_ifge : if_zero(intType , If::geq); break;
duke@435 2735 case Bytecodes::_ifgt : if_zero(intType , If::gtr); break;
duke@435 2736 case Bytecodes::_ifle : if_zero(intType , If::leq); break;
duke@435 2737 case Bytecodes::_if_icmpeq : if_same(intType , If::eql); break;
duke@435 2738 case Bytecodes::_if_icmpne : if_same(intType , If::neq); break;
duke@435 2739 case Bytecodes::_if_icmplt : if_same(intType , If::lss); break;
duke@435 2740 case Bytecodes::_if_icmpge : if_same(intType , If::geq); break;
duke@435 2741 case Bytecodes::_if_icmpgt : if_same(intType , If::gtr); break;
duke@435 2742 case Bytecodes::_if_icmple : if_same(intType , If::leq); break;
duke@435 2743 case Bytecodes::_if_acmpeq : if_same(objectType, If::eql); break;
duke@435 2744 case Bytecodes::_if_acmpne : if_same(objectType, If::neq); break;
duke@435 2745 case Bytecodes::_goto : _goto(s.cur_bci(), s.get_dest()); break;
duke@435 2746 case Bytecodes::_jsr : jsr(s.get_dest()); break;
duke@435 2747 case Bytecodes::_ret : ret(s.get_index()); break;
duke@435 2748 case Bytecodes::_tableswitch : table_switch(); break;
duke@435 2749 case Bytecodes::_lookupswitch : lookup_switch(); break;
duke@435 2750 case Bytecodes::_ireturn : method_return(ipop()); break;
duke@435 2751 case Bytecodes::_lreturn : method_return(lpop()); break;
duke@435 2752 case Bytecodes::_freturn : method_return(fpop()); break;
duke@435 2753 case Bytecodes::_dreturn : method_return(dpop()); break;
duke@435 2754 case Bytecodes::_areturn : method_return(apop()); break;
duke@435 2755 case Bytecodes::_return : method_return(NULL ); break;
duke@435 2756 case Bytecodes::_getstatic : // fall through
duke@435 2757 case Bytecodes::_putstatic : // fall through
duke@435 2758 case Bytecodes::_getfield : // fall through
duke@435 2759 case Bytecodes::_putfield : access_field(code); break;
duke@435 2760 case Bytecodes::_invokevirtual : // fall through
duke@435 2761 case Bytecodes::_invokespecial : // fall through
duke@435 2762 case Bytecodes::_invokestatic : // fall through
jrose@1161 2763 case Bytecodes::_invokedynamic : // fall through
duke@435 2764 case Bytecodes::_invokeinterface: invoke(code); break;
jrose@1920 2765 case Bytecodes::_new : new_instance(s.get_index_u2()); break;
duke@435 2766 case Bytecodes::_newarray : new_type_array(); break;
duke@435 2767 case Bytecodes::_anewarray : new_object_array(); break;
roland@2174 2768 case Bytecodes::_arraylength : { ValueStack* state_before = copy_state_for_exception(); ipush(append(new ArrayLength(apop(), state_before))); break; }
duke@435 2769 case Bytecodes::_athrow : throw_op(s.cur_bci()); break;
jrose@1920 2770 case Bytecodes::_checkcast : check_cast(s.get_index_u2()); break;
jrose@1920 2771 case Bytecodes::_instanceof : instance_of(s.get_index_u2()); break;
duke@435 2772 case Bytecodes::_monitorenter : monitorenter(apop(), s.cur_bci()); break;
duke@435 2773 case Bytecodes::_monitorexit : monitorexit (apop(), s.cur_bci()); break;
duke@435 2774 case Bytecodes::_wide : ShouldNotReachHere(); break;
duke@435 2775 case Bytecodes::_multianewarray : new_multi_array(s.cur_bcp()[3]); break;
duke@435 2776 case Bytecodes::_ifnull : if_null(objectType, If::eql); break;
duke@435 2777 case Bytecodes::_ifnonnull : if_null(objectType, If::neq); break;
duke@435 2778 case Bytecodes::_goto_w : _goto(s.cur_bci(), s.get_far_dest()); break;
duke@435 2779 case Bytecodes::_jsr_w : jsr(s.get_far_dest()); break;
duke@435 2780 case Bytecodes::_breakpoint : BAILOUT_("concurrent setting of breakpoint", NULL);
duke@435 2781 default : ShouldNotReachHere(); break;
duke@435 2782 }
vlivanov@4154 2783
vlivanov@4154 2784 if (log != NULL)
vlivanov@4154 2785 log->clear_context(); // skip marker if nothing was printed
vlivanov@4154 2786
duke@435 2787 // save current bci to setup Goto at the end
duke@435 2788 prev_bci = s.cur_bci();
vlivanov@4154 2789
duke@435 2790 }
duke@435 2791 CHECK_BAILOUT_(NULL);
duke@435 2792 // stop processing of this block (see try_inline_full)
duke@435 2793 if (_skip_block) {
duke@435 2794 _skip_block = false;
duke@435 2795 assert(_last && _last->as_BlockEnd(), "");
duke@435 2796 return _last->as_BlockEnd();
duke@435 2797 }
duke@435 2798 // if there are any, check if last instruction is a BlockEnd instruction
duke@435 2799 BlockEnd* end = last()->as_BlockEnd();
duke@435 2800 if (end == NULL) {
duke@435 2801 // all blocks must end with a BlockEnd instruction => add a Goto
duke@435 2802 end = new Goto(block_at(s.cur_bci()), false);
roland@2174 2803 append(end);
duke@435 2804 }
duke@435 2805 assert(end == last()->as_BlockEnd(), "inconsistency");
duke@435 2806
roland@2174 2807 assert(end->state() != NULL, "state must already be present");
roland@2174 2808 assert(end->as_Return() == NULL || end->as_Throw() == NULL || end->state()->stack_size() == 0, "stack not needed for return and throw");
duke@435 2809
duke@435 2810 // connect to begin & set state
duke@435 2811 // NOTE that inlining may have changed the block we are parsing
duke@435 2812 block()->set_end(end);
duke@435 2813 // propagate state
duke@435 2814 for (int i = end->number_of_sux() - 1; i >= 0; i--) {
duke@435 2815 BlockBegin* sux = end->sux_at(i);
duke@435 2816 assert(sux->is_predecessor(block()), "predecessor missing");
duke@435 2817 // be careful, bailout if bytecodes are strange
roland@2174 2818 if (!sux->try_merge(end->state())) BAILOUT_("block join failed", NULL);
duke@435 2819 scope_data()->add_to_work_list(end->sux_at(i));
duke@435 2820 }
duke@435 2821
duke@435 2822 scope_data()->set_stream(NULL);
duke@435 2823
duke@435 2824 // done
duke@435 2825 return end;
duke@435 2826 }
duke@435 2827
duke@435 2828
duke@435 2829 void GraphBuilder::iterate_all_blocks(bool start_in_current_block_for_inlining) {
duke@435 2830 do {
duke@435 2831 if (start_in_current_block_for_inlining && !bailed_out()) {
duke@435 2832 iterate_bytecodes_for_block(0);
duke@435 2833 start_in_current_block_for_inlining = false;
duke@435 2834 } else {
duke@435 2835 BlockBegin* b;
duke@435 2836 while ((b = scope_data()->remove_from_work_list()) != NULL) {
duke@435 2837 if (!b->is_set(BlockBegin::was_visited_flag)) {
duke@435 2838 if (b->is_set(BlockBegin::osr_entry_flag)) {
duke@435 2839 // we're about to parse the osr entry block, so make sure
duke@435 2840 // we setup the OSR edge leading into this block so that
duke@435 2841 // Phis get setup correctly.
duke@435 2842 setup_osr_entry_block();
duke@435 2843 // this is no longer the osr entry block, so clear it.
duke@435 2844 b->clear(BlockBegin::osr_entry_flag);
duke@435 2845 }
duke@435 2846 b->set(BlockBegin::was_visited_flag);
duke@435 2847 connect_to_end(b);
duke@435 2848 }
duke@435 2849 }
duke@435 2850 }
duke@435 2851 } while (!bailed_out() && !scope_data()->is_work_list_empty());
duke@435 2852 }
duke@435 2853
duke@435 2854
duke@435 2855 bool GraphBuilder::_can_trap [Bytecodes::number_of_java_codes];
duke@435 2856
duke@435 2857 void GraphBuilder::initialize() {
duke@435 2858 // the following bytecodes are assumed to potentially
duke@435 2859 // throw exceptions in compiled code - note that e.g.
duke@435 2860 // monitorexit & the return bytecodes do not throw
duke@435 2861 // exceptions since monitor pairing proved that they
duke@435 2862 // succeed (if monitor pairing succeeded)
duke@435 2863 Bytecodes::Code can_trap_list[] =
duke@435 2864 { Bytecodes::_ldc
duke@435 2865 , Bytecodes::_ldc_w
duke@435 2866 , Bytecodes::_ldc2_w
duke@435 2867 , Bytecodes::_iaload
duke@435 2868 , Bytecodes::_laload
duke@435 2869 , Bytecodes::_faload
duke@435 2870 , Bytecodes::_daload
duke@435 2871 , Bytecodes::_aaload
duke@435 2872 , Bytecodes::_baload
duke@435 2873 , Bytecodes::_caload
duke@435 2874 , Bytecodes::_saload
duke@435 2875 , Bytecodes::_iastore
duke@435 2876 , Bytecodes::_lastore
duke@435 2877 , Bytecodes::_fastore
duke@435 2878 , Bytecodes::_dastore
duke@435 2879 , Bytecodes::_aastore
duke@435 2880 , Bytecodes::_bastore
duke@435 2881 , Bytecodes::_castore
duke@435 2882 , Bytecodes::_sastore
duke@435 2883 , Bytecodes::_idiv
duke@435 2884 , Bytecodes::_ldiv
duke@435 2885 , Bytecodes::_irem
duke@435 2886 , Bytecodes::_lrem
duke@435 2887 , Bytecodes::_getstatic
duke@435 2888 , Bytecodes::_putstatic
duke@435 2889 , Bytecodes::_getfield
duke@435 2890 , Bytecodes::_putfield
duke@435 2891 , Bytecodes::_invokevirtual
duke@435 2892 , Bytecodes::_invokespecial
duke@435 2893 , Bytecodes::_invokestatic
jrose@1161 2894 , Bytecodes::_invokedynamic
duke@435 2895 , Bytecodes::_invokeinterface
duke@435 2896 , Bytecodes::_new
duke@435 2897 , Bytecodes::_newarray
duke@435 2898 , Bytecodes::_anewarray
duke@435 2899 , Bytecodes::_arraylength
duke@435 2900 , Bytecodes::_athrow
duke@435 2901 , Bytecodes::_checkcast
duke@435 2902 , Bytecodes::_instanceof
duke@435 2903 , Bytecodes::_monitorenter
duke@435 2904 , Bytecodes::_multianewarray
duke@435 2905 };
duke@435 2906
duke@435 2907 // inititialize trap tables
duke@435 2908 for (int i = 0; i < Bytecodes::number_of_java_codes; i++) {
duke@435 2909 _can_trap[i] = false;
duke@435 2910 }
duke@435 2911 // set standard trap info
duke@435 2912 for (uint j = 0; j < ARRAY_SIZE(can_trap_list); j++) {
duke@435 2913 _can_trap[can_trap_list[j]] = true;
duke@435 2914 }
duke@435 2915 }
duke@435 2916
duke@435 2917
duke@435 2918 BlockBegin* GraphBuilder::header_block(BlockBegin* entry, BlockBegin::Flag f, ValueStack* state) {
duke@435 2919 assert(entry->is_set(f), "entry/flag mismatch");
duke@435 2920 // create header block
duke@435 2921 BlockBegin* h = new BlockBegin(entry->bci());
duke@435 2922 h->set_depth_first_number(0);
duke@435 2923
duke@435 2924 Value l = h;
duke@435 2925 BlockEnd* g = new Goto(entry, false);
duke@435 2926 l->set_next(g, entry->bci());
duke@435 2927 h->set_end(g);
duke@435 2928 h->set(f);
duke@435 2929 // setup header block end state
roland@2174 2930 ValueStack* s = state->copy(ValueStack::StateAfter, entry->bci()); // can use copy since stack is empty (=> no phis)
duke@435 2931 assert(s->stack_is_empty(), "must have empty stack at entry point");
duke@435 2932 g->set_state(s);
duke@435 2933 return h;
duke@435 2934 }
duke@435 2935
duke@435 2936
duke@435 2937
duke@435 2938 BlockBegin* GraphBuilder::setup_start_block(int osr_bci, BlockBegin* std_entry, BlockBegin* osr_entry, ValueStack* state) {
duke@435 2939 BlockBegin* start = new BlockBegin(0);
duke@435 2940
duke@435 2941 // This code eliminates the empty start block at the beginning of
duke@435 2942 // each method. Previously, each method started with the
duke@435 2943 // start-block created below, and this block was followed by the
duke@435 2944 // header block that was always empty. This header block is only
duke@435 2945 // necesary if std_entry is also a backward branch target because
duke@435 2946 // then phi functions may be necessary in the header block. It's
duke@435 2947 // also necessary when profiling so that there's a single block that
duke@435 2948 // can increment the interpreter_invocation_count.
duke@435 2949 BlockBegin* new_header_block;
iveresov@2138 2950 if (std_entry->number_of_preds() > 0 || count_invocations() || count_backedges()) {
iveresov@2138 2951 new_header_block = header_block(std_entry, BlockBegin::std_entry_flag, state);
iveresov@2138 2952 } else {
duke@435 2953 new_header_block = std_entry;
duke@435 2954 }
duke@435 2955
duke@435 2956 // setup start block (root for the IR graph)
duke@435 2957 Base* base =
duke@435 2958 new Base(
duke@435 2959 new_header_block,
duke@435 2960 osr_entry
duke@435 2961 );
duke@435 2962 start->set_next(base, 0);
duke@435 2963 start->set_end(base);
duke@435 2964 // create & setup state for start block
roland@2174 2965 start->set_state(state->copy(ValueStack::StateAfter, std_entry->bci()));
roland@2174 2966 base->set_state(state->copy(ValueStack::StateAfter, std_entry->bci()));
duke@435 2967
duke@435 2968 if (base->std_entry()->state() == NULL) {
duke@435 2969 // setup states for header blocks
duke@435 2970 base->std_entry()->merge(state);
duke@435 2971 }
duke@435 2972
duke@435 2973 assert(base->std_entry()->state() != NULL, "");
duke@435 2974 return start;
duke@435 2975 }
duke@435 2976
duke@435 2977
duke@435 2978 void GraphBuilder::setup_osr_entry_block() {
duke@435 2979 assert(compilation()->is_osr_compile(), "only for osrs");
duke@435 2980
duke@435 2981 int osr_bci = compilation()->osr_bci();
duke@435 2982 ciBytecodeStream s(method());
duke@435 2983 s.reset_to_bci(osr_bci);
duke@435 2984 s.next();
duke@435 2985 scope_data()->set_stream(&s);
duke@435 2986
duke@435 2987 // create a new block to be the osr setup code
duke@435 2988 _osr_entry = new BlockBegin(osr_bci);
duke@435 2989 _osr_entry->set(BlockBegin::osr_entry_flag);
duke@435 2990 _osr_entry->set_depth_first_number(0);
duke@435 2991 BlockBegin* target = bci2block()->at(osr_bci);
duke@435 2992 assert(target != NULL && target->is_set(BlockBegin::osr_entry_flag), "must be there");
duke@435 2993 // the osr entry has no values for locals
duke@435 2994 ValueStack* state = target->state()->copy();
duke@435 2995 _osr_entry->set_state(state);
duke@435 2996
duke@435 2997 kill_all();
duke@435 2998 _block = _osr_entry;
duke@435 2999 _state = _osr_entry->state()->copy();
roland@2174 3000 assert(_state->bci() == osr_bci, "mismatch");
duke@435 3001 _last = _osr_entry;
duke@435 3002 Value e = append(new OsrEntry());
duke@435 3003 e->set_needs_null_check(false);
duke@435 3004
duke@435 3005 // OSR buffer is
duke@435 3006 //
duke@435 3007 // locals[nlocals-1..0]
duke@435 3008 // monitors[number_of_locks-1..0]
duke@435 3009 //
duke@435 3010 // locals is a direct copy of the interpreter frame so in the osr buffer
duke@435 3011 // so first slot in the local array is the last local from the interpreter
duke@435 3012 // and last slot is local[0] (receiver) from the interpreter
duke@435 3013 //
duke@435 3014 // Similarly with locks. The first lock slot in the osr buffer is the nth lock
duke@435 3015 // from the interpreter frame, the nth lock slot in the osr buffer is 0th lock
duke@435 3016 // in the interpreter frame (the method lock if a sync method)
duke@435 3017
duke@435 3018 // Initialize monitors in the compiled activation.
duke@435 3019
duke@435 3020 int index;
duke@435 3021 Value local;
duke@435 3022
duke@435 3023 // find all the locals that the interpreter thinks contain live oops
duke@435 3024 const BitMap live_oops = method()->live_local_oops_at_bci(osr_bci);
duke@435 3025
duke@435 3026 // compute the offset into the locals so that we can treat the buffer
duke@435 3027 // as if the locals were still in the interpreter frame
duke@435 3028 int locals_offset = BytesPerWord * (method()->max_locals() - 1);
duke@435 3029 for_each_local_value(state, index, local) {
duke@435 3030 int offset = locals_offset - (index + local->type()->size() - 1) * BytesPerWord;
duke@435 3031 Value get;
duke@435 3032 if (local->type()->is_object_kind() && !live_oops.at(index)) {
duke@435 3033 // The interpreter thinks this local is dead but the compiler
duke@435 3034 // doesn't so pretend that the interpreter passed in null.
duke@435 3035 get = append(new Constant(objectNull));
duke@435 3036 } else {
duke@435 3037 get = append(new UnsafeGetRaw(as_BasicType(local->type()), e,
duke@435 3038 append(new Constant(new IntConstant(offset))),
duke@435 3039 0,
iveresov@2344 3040 true /*unaligned*/, true /*wide*/));
duke@435 3041 }
duke@435 3042 _state->store_local(index, get);
duke@435 3043 }
duke@435 3044
duke@435 3045 // the storage for the OSR buffer is freed manually in the LIRGenerator.
duke@435 3046
duke@435 3047 assert(state->caller_state() == NULL, "should be top scope");
duke@435 3048 state->clear_locals();
duke@435 3049 Goto* g = new Goto(target, false);
duke@435 3050 append(g);
duke@435 3051 _osr_entry->set_end(g);
duke@435 3052 target->merge(_osr_entry->end()->state());
duke@435 3053
duke@435 3054 scope_data()->set_stream(NULL);
duke@435 3055 }
duke@435 3056
duke@435 3057
duke@435 3058 ValueStack* GraphBuilder::state_at_entry() {
roland@2174 3059 ValueStack* state = new ValueStack(scope(), NULL);
duke@435 3060
duke@435 3061 // Set up locals for receiver
duke@435 3062 int idx = 0;
duke@435 3063 if (!method()->is_static()) {
duke@435 3064 // we should always see the receiver
roland@2728 3065 state->store_local(idx, new Local(method()->holder(), objectType, idx));
duke@435 3066 idx = 1;
duke@435 3067 }
duke@435 3068
duke@435 3069 // Set up locals for incoming arguments
duke@435 3070 ciSignature* sig = method()->signature();
duke@435 3071 for (int i = 0; i < sig->count(); i++) {
duke@435 3072 ciType* type = sig->type_at(i);
duke@435 3073 BasicType basic_type = type->basic_type();
duke@435 3074 // don't allow T_ARRAY to propagate into locals types
duke@435 3075 if (basic_type == T_ARRAY) basic_type = T_OBJECT;
duke@435 3076 ValueType* vt = as_ValueType(basic_type);
roland@2728 3077 state->store_local(idx, new Local(type, vt, idx));
duke@435 3078 idx += type->size();
duke@435 3079 }
duke@435 3080
duke@435 3081 // lock synchronized method
duke@435 3082 if (method()->is_synchronized()) {
roland@2174 3083 state->lock(NULL);
duke@435 3084 }
duke@435 3085
duke@435 3086 return state;
duke@435 3087 }
duke@435 3088
duke@435 3089
duke@435 3090 GraphBuilder::GraphBuilder(Compilation* compilation, IRScope* scope)
duke@435 3091 : _scope_data(NULL)
duke@435 3092 , _instruction_count(0)
duke@435 3093 , _osr_entry(NULL)
duke@435 3094 , _memory(new MemoryBuffer())
duke@435 3095 , _compilation(compilation)
duke@435 3096 , _inline_bailout_msg(NULL)
duke@435 3097 {
duke@435 3098 int osr_bci = compilation->osr_bci();
duke@435 3099
duke@435 3100 // determine entry points and bci2block mapping
duke@435 3101 BlockListBuilder blm(compilation, scope, osr_bci);
duke@435 3102 CHECK_BAILOUT();
duke@435 3103
duke@435 3104 BlockList* bci2block = blm.bci2block();
duke@435 3105 BlockBegin* start_block = bci2block->at(0);
duke@435 3106
duke@435 3107 push_root_scope(scope, bci2block, start_block);
duke@435 3108
duke@435 3109 // setup state for std entry
duke@435 3110 _initial_state = state_at_entry();
duke@435 3111 start_block->merge(_initial_state);
duke@435 3112
duke@435 3113 // complete graph
duke@435 3114 _vmap = new ValueMap();
duke@435 3115 switch (scope->method()->intrinsic_id()) {
duke@435 3116 case vmIntrinsics::_dabs : // fall through
duke@435 3117 case vmIntrinsics::_dsqrt : // fall through
duke@435 3118 case vmIntrinsics::_dsin : // fall through
duke@435 3119 case vmIntrinsics::_dcos : // fall through
duke@435 3120 case vmIntrinsics::_dtan : // fall through
duke@435 3121 case vmIntrinsics::_dlog : // fall through
duke@435 3122 case vmIntrinsics::_dlog10 : // fall through
roland@3787 3123 case vmIntrinsics::_dexp : // fall through
roland@3787 3124 case vmIntrinsics::_dpow : // fall through
duke@435 3125 {
duke@435 3126 // Compiles where the root method is an intrinsic need a special
duke@435 3127 // compilation environment because the bytecodes for the method
duke@435 3128 // shouldn't be parsed during the compilation, only the special
duke@435 3129 // Intrinsic node should be emitted. If this isn't done the the
duke@435 3130 // code for the inlined version will be different than the root
duke@435 3131 // compiled version which could lead to monotonicity problems on
duke@435 3132 // intel.
duke@435 3133
duke@435 3134 // Set up a stream so that appending instructions works properly.
duke@435 3135 ciBytecodeStream s(scope->method());
duke@435 3136 s.reset_to_bci(0);
duke@435 3137 scope_data()->set_stream(&s);
duke@435 3138 s.next();
duke@435 3139
duke@435 3140 // setup the initial block state
duke@435 3141 _block = start_block;
roland@2174 3142 _state = start_block->state()->copy_for_parsing();
duke@435 3143 _last = start_block;
duke@435 3144 load_local(doubleType, 0);
roland@3787 3145 if (scope->method()->intrinsic_id() == vmIntrinsics::_dpow) {
roland@3787 3146 load_local(doubleType, 2);
roland@3787 3147 }
duke@435 3148
duke@435 3149 // Emit the intrinsic node.
duke@435 3150 bool result = try_inline_intrinsics(scope->method());
duke@435 3151 if (!result) BAILOUT("failed to inline intrinsic");
duke@435 3152 method_return(dpop());
duke@435 3153
duke@435 3154 // connect the begin and end blocks and we're all done.
duke@435 3155 BlockEnd* end = last()->as_BlockEnd();
duke@435 3156 block()->set_end(end);
duke@435 3157 break;
duke@435 3158 }
johnc@2781 3159
johnc@2781 3160 case vmIntrinsics::_Reference_get:
johnc@2781 3161 {
kvn@4002 3162 {
johnc@2781 3163 // With java.lang.ref.reference.get() we must go through the
johnc@2781 3164 // intrinsic - when G1 is enabled - even when get() is the root
johnc@2781 3165 // method of the compile so that, if necessary, the value in
johnc@2781 3166 // the referent field of the reference object gets recorded by
johnc@2781 3167 // the pre-barrier code.
johnc@2781 3168 // Specifically, if G1 is enabled, the value in the referent
johnc@2781 3169 // field is recorded by the G1 SATB pre barrier. This will
johnc@2781 3170 // result in the referent being marked live and the reference
johnc@2781 3171 // object removed from the list of discovered references during
johnc@2781 3172 // reference processing.
johnc@2781 3173
kvn@4002 3174 // Also we need intrinsic to prevent commoning reads from this field
kvn@4002 3175 // across safepoint since GC can change its value.
kvn@4002 3176
johnc@2781 3177 // Set up a stream so that appending instructions works properly.
johnc@2781 3178 ciBytecodeStream s(scope->method());
johnc@2781 3179 s.reset_to_bci(0);
johnc@2781 3180 scope_data()->set_stream(&s);
johnc@2781 3181 s.next();
johnc@2781 3182
johnc@2781 3183 // setup the initial block state
johnc@2781 3184 _block = start_block;
johnc@2781 3185 _state = start_block->state()->copy_for_parsing();
johnc@2781 3186 _last = start_block;
johnc@2781 3187 load_local(objectType, 0);
johnc@2781 3188
johnc@2781 3189 // Emit the intrinsic node.
johnc@2781 3190 bool result = try_inline_intrinsics(scope->method());
johnc@2781 3191 if (!result) BAILOUT("failed to inline intrinsic");
johnc@2781 3192 method_return(apop());
johnc@2781 3193
johnc@2781 3194 // connect the begin and end blocks and we're all done.
johnc@2781 3195 BlockEnd* end = last()->as_BlockEnd();
johnc@2781 3196 block()->set_end(end);
johnc@2781 3197 break;
johnc@2781 3198 }
johnc@2781 3199 // Otherwise, fall thru
johnc@2781 3200 }
johnc@2781 3201
duke@435 3202 default:
duke@435 3203 scope_data()->add_to_work_list(start_block);
duke@435 3204 iterate_all_blocks();
duke@435 3205 break;
duke@435 3206 }
duke@435 3207 CHECK_BAILOUT();
duke@435 3208
duke@435 3209 _start = setup_start_block(osr_bci, start_block, _osr_entry, _initial_state);
duke@435 3210
duke@435 3211 eliminate_redundant_phis(_start);
duke@435 3212
duke@435 3213 NOT_PRODUCT(if (PrintValueNumbering && Verbose) print_stats());
duke@435 3214 // for osr compile, bailout if some requirements are not fulfilled
duke@435 3215 if (osr_bci != -1) {
duke@435 3216 BlockBegin* osr_block = blm.bci2block()->at(osr_bci);
duke@435 3217 assert(osr_block->is_set(BlockBegin::was_visited_flag),"osr entry must have been visited for osr compile");
duke@435 3218
duke@435 3219 // check if osr entry point has empty stack - we cannot handle non-empty stacks at osr entry points
duke@435 3220 if (!osr_block->state()->stack_is_empty()) {
duke@435 3221 BAILOUT("stack not empty at OSR entry point");
duke@435 3222 }
duke@435 3223 }
duke@435 3224 #ifndef PRODUCT
duke@435 3225 if (PrintCompilation && Verbose) tty->print_cr("Created %d Instructions", _instruction_count);
duke@435 3226 #endif
duke@435 3227 }
duke@435 3228
duke@435 3229
roland@2174 3230 ValueStack* GraphBuilder::copy_state_before() {
roland@2174 3231 return copy_state_before_with_bci(bci());
duke@435 3232 }
duke@435 3233
roland@2174 3234 ValueStack* GraphBuilder::copy_state_exhandling() {
roland@2174 3235 return copy_state_exhandling_with_bci(bci());
roland@2174 3236 }
roland@2174 3237
roland@2174 3238 ValueStack* GraphBuilder::copy_state_for_exception() {
roland@2174 3239 return copy_state_for_exception_with_bci(bci());
roland@2174 3240 }
roland@2174 3241
roland@2174 3242 ValueStack* GraphBuilder::copy_state_before_with_bci(int bci) {
roland@2174 3243 return state()->copy(ValueStack::StateBefore, bci);
roland@2174 3244 }
roland@2174 3245
roland@2174 3246 ValueStack* GraphBuilder::copy_state_exhandling_with_bci(int bci) {
roland@2174 3247 if (!has_handler()) return NULL;
roland@2174 3248 return state()->copy(ValueStack::StateBefore, bci);
roland@2174 3249 }
roland@2174 3250
roland@2174 3251 ValueStack* GraphBuilder::copy_state_for_exception_with_bci(int bci) {
roland@2174 3252 ValueStack* s = copy_state_exhandling_with_bci(bci);
roland@2174 3253 if (s == NULL) {
roland@2174 3254 if (_compilation->env()->jvmti_can_access_local_variables()) {
roland@2174 3255 s = state()->copy(ValueStack::ExceptionState, bci);
roland@2174 3256 } else {
roland@2174 3257 s = state()->copy(ValueStack::EmptyExceptionState, bci);
roland@2174 3258 }
roland@2174 3259 }
roland@2174 3260 return s;
roland@2174 3261 }
duke@435 3262
duke@435 3263 int GraphBuilder::recursive_inline_level(ciMethod* cur_callee) const {
duke@435 3264 int recur_level = 0;
duke@435 3265 for (IRScope* s = scope(); s != NULL; s = s->caller()) {
duke@435 3266 if (s->method() == cur_callee) {
duke@435 3267 ++recur_level;
duke@435 3268 }
duke@435 3269 }
duke@435 3270 return recur_level;
duke@435 3271 }
duke@435 3272
duke@435 3273
twisti@3969 3274 bool GraphBuilder::try_inline(ciMethod* callee, bool holder_known, Bytecodes::Code bc, Value receiver) {
twisti@3969 3275 const char* msg = NULL;
twisti@3969 3276
twisti@3969 3277 // clear out any existing inline bailout condition
duke@435 3278 clear_inline_bailout();
duke@435 3279
twisti@3969 3280 // exclude methods we don't want to inline
twisti@3969 3281 msg = should_not_inline(callee);
twisti@3969 3282 if (msg != NULL) {
twisti@3969 3283 print_inlining(callee, msg, /*success*/ false);
twisti@3969 3284 return false;
twisti@3969 3285 }
twisti@3969 3286
twisti@4203 3287 // method handle invokes
twisti@4203 3288 if (callee->is_method_handle_intrinsic()) {
twisti@4203 3289 return try_method_handle_inline(callee);
twisti@4203 3290 }
twisti@4203 3291
twisti@3969 3292 // handle intrinsics
twisti@3969 3293 if (callee->intrinsic_id() != vmIntrinsics::_none) {
twisti@3969 3294 if (try_inline_intrinsics(callee)) {
twisti@3969 3295 print_inlining(callee, "intrinsic");
twisti@3969 3296 return true;
twisti@3969 3297 }
twisti@3969 3298 // try normal inlining
twisti@3969 3299 }
twisti@3969 3300
twisti@3969 3301 // certain methods cannot be parsed at all
twisti@3969 3302 msg = check_can_parse(callee);
twisti@3969 3303 if (msg != NULL) {
twisti@3969 3304 print_inlining(callee, msg, /*success*/ false);
twisti@3969 3305 return false;
twisti@3969 3306 }
twisti@3969 3307
twisti@3969 3308 // If bytecode not set use the current one.
twisti@3969 3309 if (bc == Bytecodes::_illegal) {
twisti@3969 3310 bc = code();
twisti@3969 3311 }
twisti@3969 3312 if (try_inline_full(callee, holder_known, bc, receiver))
duke@435 3313 return true;
vlivanov@4446 3314
vlivanov@4446 3315 // Entire compilation could fail during try_inline_full call.
vlivanov@4446 3316 // In that case printing inlining decision info is useless.
vlivanov@4446 3317 if (!bailed_out())
vlivanov@4446 3318 print_inlining(callee, _inline_bailout_msg, /*success*/ false);
vlivanov@4446 3319
twisti@3969 3320 return false;
twisti@3969 3321 }
twisti@3969 3322
twisti@3969 3323
twisti@3969 3324 const char* GraphBuilder::check_can_parse(ciMethod* callee) const {
twisti@3969 3325 // Certain methods cannot be parsed at all:
twisti@3969 3326 if ( callee->is_native()) return "native method";
twisti@3969 3327 if ( callee->is_abstract()) return "abstract method";
twisti@3969 3328 if (!callee->can_be_compiled()) return "not compilable (disabled)";
twisti@3969 3329 return NULL;
twisti@3969 3330 }
twisti@3969 3331
twisti@3969 3332
twisti@3969 3333 // negative filter: should callee NOT be inlined? returns NULL, ok to inline, or rejection msg
twisti@3969 3334 const char* GraphBuilder::should_not_inline(ciMethod* callee) const {
twisti@3969 3335 if ( callee->should_exclude()) return "excluded by CompilerOracle";
twisti@3969 3336 if ( callee->should_not_inline()) return "disallowed by CompilerOracle";
twisti@3969 3337 if ( callee->dont_inline()) return "don't inline by annotation";
twisti@3969 3338 return NULL;
duke@435 3339 }
duke@435 3340
duke@435 3341
duke@435 3342 bool GraphBuilder::try_inline_intrinsics(ciMethod* callee) {
never@1895 3343 if (callee->is_synchronized()) {
never@1895 3344 // We don't currently support any synchronized intrinsics
never@1895 3345 return false;
never@1895 3346 }
never@1895 3347
duke@435 3348 // callee seems like a good candidate
duke@435 3349 // determine id
kvn@4002 3350 vmIntrinsics::ID id = callee->intrinsic_id();
kvn@4002 3351 if (!InlineNatives && id != vmIntrinsics::_Reference_get) {
kvn@4002 3352 // InlineNatives does not control Reference.get
kvn@4002 3353 INLINE_BAILOUT("intrinsic method inlining disabled");
kvn@4002 3354 }
duke@435 3355 bool preserves_state = false;
duke@435 3356 bool cantrap = true;
duke@435 3357 switch (id) {
rbackman@3709 3358 case vmIntrinsics::_arraycopy:
duke@435 3359 if (!InlineArrayCopy) return false;
duke@435 3360 break;
duke@435 3361
rbackman@3709 3362 #ifdef TRACE_HAVE_INTRINSICS
rbackman@3709 3363 case vmIntrinsics::_classID:
rbackman@3709 3364 case vmIntrinsics::_threadID:
rbackman@3709 3365 preserves_state = true;
rbackman@3709 3366 cantrap = true;
rbackman@3709 3367 break;
rbackman@3709 3368
rbackman@3709 3369 case vmIntrinsics::_counterTime:
rbackman@3709 3370 preserves_state = true;
rbackman@3709 3371 cantrap = false;
rbackman@3709 3372 break;
rbackman@3709 3373 #endif
rbackman@3709 3374
duke@435 3375 case vmIntrinsics::_currentTimeMillis:
duke@435 3376 case vmIntrinsics::_nanoTime:
duke@435 3377 preserves_state = true;
duke@435 3378 cantrap = false;
duke@435 3379 break;
duke@435 3380
duke@435 3381 case vmIntrinsics::_floatToRawIntBits :
duke@435 3382 case vmIntrinsics::_intBitsToFloat :
duke@435 3383 case vmIntrinsics::_doubleToRawLongBits :
duke@435 3384 case vmIntrinsics::_longBitsToDouble :
duke@435 3385 if (!InlineMathNatives) return false;
duke@435 3386 preserves_state = true;
duke@435 3387 cantrap = false;
duke@435 3388 break;
duke@435 3389
duke@435 3390 case vmIntrinsics::_getClass :
roland@3838 3391 case vmIntrinsics::_isInstance :
duke@435 3392 if (!InlineClassNatives) return false;
duke@435 3393 preserves_state = true;
duke@435 3394 break;
duke@435 3395
duke@435 3396 case vmIntrinsics::_currentThread :
duke@435 3397 if (!InlineThreadNatives) return false;
duke@435 3398 preserves_state = true;
duke@435 3399 cantrap = false;
duke@435 3400 break;
duke@435 3401
duke@435 3402 case vmIntrinsics::_dabs : // fall through
duke@435 3403 case vmIntrinsics::_dsqrt : // fall through
duke@435 3404 case vmIntrinsics::_dsin : // fall through
duke@435 3405 case vmIntrinsics::_dcos : // fall through
duke@435 3406 case vmIntrinsics::_dtan : // fall through
duke@435 3407 case vmIntrinsics::_dlog : // fall through
duke@435 3408 case vmIntrinsics::_dlog10 : // fall through
roland@3787 3409 case vmIntrinsics::_dexp : // fall through
roland@3787 3410 case vmIntrinsics::_dpow : // fall through
duke@435 3411 if (!InlineMathNatives) return false;
duke@435 3412 cantrap = false;
duke@435 3413 preserves_state = true;
duke@435 3414 break;
duke@435 3415
duke@435 3416 // Use special nodes for Unsafe instructions so we can more easily
duke@435 3417 // perform an address-mode optimization on the raw variants
duke@435 3418 case vmIntrinsics::_getObject : return append_unsafe_get_obj(callee, T_OBJECT, false);
duke@435 3419 case vmIntrinsics::_getBoolean: return append_unsafe_get_obj(callee, T_BOOLEAN, false);
duke@435 3420 case vmIntrinsics::_getByte : return append_unsafe_get_obj(callee, T_BYTE, false);
duke@435 3421 case vmIntrinsics::_getShort : return append_unsafe_get_obj(callee, T_SHORT, false);
duke@435 3422 case vmIntrinsics::_getChar : return append_unsafe_get_obj(callee, T_CHAR, false);
duke@435 3423 case vmIntrinsics::_getInt : return append_unsafe_get_obj(callee, T_INT, false);
duke@435 3424 case vmIntrinsics::_getLong : return append_unsafe_get_obj(callee, T_LONG, false);
duke@435 3425 case vmIntrinsics::_getFloat : return append_unsafe_get_obj(callee, T_FLOAT, false);
duke@435 3426 case vmIntrinsics::_getDouble : return append_unsafe_get_obj(callee, T_DOUBLE, false);
duke@435 3427
duke@435 3428 case vmIntrinsics::_putObject : return append_unsafe_put_obj(callee, T_OBJECT, false);
duke@435 3429 case vmIntrinsics::_putBoolean: return append_unsafe_put_obj(callee, T_BOOLEAN, false);
duke@435 3430 case vmIntrinsics::_putByte : return append_unsafe_put_obj(callee, T_BYTE, false);
duke@435 3431 case vmIntrinsics::_putShort : return append_unsafe_put_obj(callee, T_SHORT, false);
duke@435 3432 case vmIntrinsics::_putChar : return append_unsafe_put_obj(callee, T_CHAR, false);
duke@435 3433 case vmIntrinsics::_putInt : return append_unsafe_put_obj(callee, T_INT, false);
duke@435 3434 case vmIntrinsics::_putLong : return append_unsafe_put_obj(callee, T_LONG, false);
duke@435 3435 case vmIntrinsics::_putFloat : return append_unsafe_put_obj(callee, T_FLOAT, false);
duke@435 3436 case vmIntrinsics::_putDouble : return append_unsafe_put_obj(callee, T_DOUBLE, false);
duke@435 3437
duke@435 3438 case vmIntrinsics::_getObjectVolatile : return append_unsafe_get_obj(callee, T_OBJECT, true);
duke@435 3439 case vmIntrinsics::_getBooleanVolatile: return append_unsafe_get_obj(callee, T_BOOLEAN, true);
duke@435 3440 case vmIntrinsics::_getByteVolatile : return append_unsafe_get_obj(callee, T_BYTE, true);
duke@435 3441 case vmIntrinsics::_getShortVolatile : return append_unsafe_get_obj(callee, T_SHORT, true);
duke@435 3442 case vmIntrinsics::_getCharVolatile : return append_unsafe_get_obj(callee, T_CHAR, true);
duke@435 3443 case vmIntrinsics::_getIntVolatile : return append_unsafe_get_obj(callee, T_INT, true);
duke@435 3444 case vmIntrinsics::_getLongVolatile : return append_unsafe_get_obj(callee, T_LONG, true);
duke@435 3445 case vmIntrinsics::_getFloatVolatile : return append_unsafe_get_obj(callee, T_FLOAT, true);
duke@435 3446 case vmIntrinsics::_getDoubleVolatile : return append_unsafe_get_obj(callee, T_DOUBLE, true);
duke@435 3447
duke@435 3448 case vmIntrinsics::_putObjectVolatile : return append_unsafe_put_obj(callee, T_OBJECT, true);
duke@435 3449 case vmIntrinsics::_putBooleanVolatile: return append_unsafe_put_obj(callee, T_BOOLEAN, true);
duke@435 3450 case vmIntrinsics::_putByteVolatile : return append_unsafe_put_obj(callee, T_BYTE, true);
duke@435 3451 case vmIntrinsics::_putShortVolatile : return append_unsafe_put_obj(callee, T_SHORT, true);
duke@435 3452 case vmIntrinsics::_putCharVolatile : return append_unsafe_put_obj(callee, T_CHAR, true);
duke@435 3453 case vmIntrinsics::_putIntVolatile : return append_unsafe_put_obj(callee, T_INT, true);
duke@435 3454 case vmIntrinsics::_putLongVolatile : return append_unsafe_put_obj(callee, T_LONG, true);
duke@435 3455 case vmIntrinsics::_putFloatVolatile : return append_unsafe_put_obj(callee, T_FLOAT, true);
duke@435 3456 case vmIntrinsics::_putDoubleVolatile : return append_unsafe_put_obj(callee, T_DOUBLE, true);
duke@435 3457
duke@435 3458 case vmIntrinsics::_getByte_raw : return append_unsafe_get_raw(callee, T_BYTE);
duke@435 3459 case vmIntrinsics::_getShort_raw : return append_unsafe_get_raw(callee, T_SHORT);
duke@435 3460 case vmIntrinsics::_getChar_raw : return append_unsafe_get_raw(callee, T_CHAR);
duke@435 3461 case vmIntrinsics::_getInt_raw : return append_unsafe_get_raw(callee, T_INT);
duke@435 3462 case vmIntrinsics::_getLong_raw : return append_unsafe_get_raw(callee, T_LONG);
duke@435 3463 case vmIntrinsics::_getFloat_raw : return append_unsafe_get_raw(callee, T_FLOAT);
duke@435 3464 case vmIntrinsics::_getDouble_raw : return append_unsafe_get_raw(callee, T_DOUBLE);
duke@435 3465
duke@435 3466 case vmIntrinsics::_putByte_raw : return append_unsafe_put_raw(callee, T_BYTE);
duke@435 3467 case vmIntrinsics::_putShort_raw : return append_unsafe_put_raw(callee, T_SHORT);
duke@435 3468 case vmIntrinsics::_putChar_raw : return append_unsafe_put_raw(callee, T_CHAR);
duke@435 3469 case vmIntrinsics::_putInt_raw : return append_unsafe_put_raw(callee, T_INT);
duke@435 3470 case vmIntrinsics::_putLong_raw : return append_unsafe_put_raw(callee, T_LONG);
duke@435 3471 case vmIntrinsics::_putFloat_raw : return append_unsafe_put_raw(callee, T_FLOAT);
duke@435 3472 case vmIntrinsics::_putDouble_raw : return append_unsafe_put_raw(callee, T_DOUBLE);
duke@435 3473
duke@435 3474 case vmIntrinsics::_prefetchRead : return append_unsafe_prefetch(callee, false, false);
duke@435 3475 case vmIntrinsics::_prefetchWrite : return append_unsafe_prefetch(callee, false, true);
duke@435 3476 case vmIntrinsics::_prefetchReadStatic : return append_unsafe_prefetch(callee, true, false);
duke@435 3477 case vmIntrinsics::_prefetchWriteStatic : return append_unsafe_prefetch(callee, true, true);
duke@435 3478
duke@435 3479 case vmIntrinsics::_checkIndex :
duke@435 3480 if (!InlineNIOCheckIndex) return false;
duke@435 3481 preserves_state = true;
duke@435 3482 break;
duke@435 3483 case vmIntrinsics::_putOrderedObject : return append_unsafe_put_obj(callee, T_OBJECT, true);
duke@435 3484 case vmIntrinsics::_putOrderedInt : return append_unsafe_put_obj(callee, T_INT, true);
duke@435 3485 case vmIntrinsics::_putOrderedLong : return append_unsafe_put_obj(callee, T_LONG, true);
duke@435 3486
duke@435 3487 case vmIntrinsics::_compareAndSwapLong:
duke@435 3488 if (!VM_Version::supports_cx8()) return false;
duke@435 3489 // fall through
duke@435 3490 case vmIntrinsics::_compareAndSwapInt:
duke@435 3491 case vmIntrinsics::_compareAndSwapObject:
duke@435 3492 append_unsafe_CAS(callee);
duke@435 3493 return true;
duke@435 3494
roland@4106 3495 case vmIntrinsics::_getAndAddInt:
roland@4106 3496 if (!VM_Version::supports_atomic_getadd4()) {
roland@4106 3497 return false;
roland@4106 3498 }
roland@4106 3499 return append_unsafe_get_and_set_obj(callee, true);
roland@4106 3500 case vmIntrinsics::_getAndAddLong:
roland@4106 3501 if (!VM_Version::supports_atomic_getadd8()) {
roland@4106 3502 return false;
roland@4106 3503 }
roland@4106 3504 return append_unsafe_get_and_set_obj(callee, true);
roland@4106 3505 case vmIntrinsics::_getAndSetInt:
roland@4106 3506 if (!VM_Version::supports_atomic_getset4()) {
roland@4106 3507 return false;
roland@4106 3508 }
roland@4106 3509 return append_unsafe_get_and_set_obj(callee, false);
roland@4106 3510 case vmIntrinsics::_getAndSetLong:
roland@4106 3511 if (!VM_Version::supports_atomic_getset8()) {
roland@4106 3512 return false;
roland@4106 3513 }
roland@4106 3514 return append_unsafe_get_and_set_obj(callee, false);
roland@4106 3515 case vmIntrinsics::_getAndSetObject:
roland@4106 3516 #ifdef _LP64
roland@4106 3517 if (!UseCompressedOops && !VM_Version::supports_atomic_getset8()) {
roland@4106 3518 return false;
roland@4106 3519 }
roland@4106 3520 if (UseCompressedOops && !VM_Version::supports_atomic_getset4()) {
roland@4106 3521 return false;
roland@4106 3522 }
roland@4106 3523 #else
roland@4106 3524 if (!VM_Version::supports_atomic_getset4()) {
roland@4106 3525 return false;
roland@4106 3526 }
roland@4106 3527 #endif
roland@4106 3528 return append_unsafe_get_and_set_obj(callee, false);
roland@4106 3529
johnc@2781 3530 case vmIntrinsics::_Reference_get:
kvn@4002 3531 // Use the intrinsic version of Reference.get() so that the value in
kvn@4002 3532 // the referent field can be registered by the G1 pre-barrier code.
kvn@4002 3533 // Also to prevent commoning reads from this field across safepoint
kvn@4002 3534 // since GC can change its value.
johnc@2781 3535 preserves_state = true;
johnc@2781 3536 break;
johnc@2781 3537
drchase@5353 3538 case vmIntrinsics::_updateCRC32:
drchase@5353 3539 case vmIntrinsics::_updateBytesCRC32:
drchase@5353 3540 case vmIntrinsics::_updateByteBufferCRC32:
drchase@5353 3541 if (!UseCRC32Intrinsics) return false;
drchase@5353 3542 cantrap = false;
drchase@5353 3543 preserves_state = true;
drchase@5353 3544 break;
drchase@5353 3545
kvn@4361 3546 case vmIntrinsics::_loadFence :
kvn@4361 3547 case vmIntrinsics::_storeFence:
kvn@4361 3548 case vmIntrinsics::_fullFence :
kvn@4361 3549 break;
kvn@4361 3550
duke@435 3551 default : return false; // do not inline
duke@435 3552 }
duke@435 3553 // create intrinsic node
duke@435 3554 const bool has_receiver = !callee->is_static();
duke@435 3555 ValueType* result_type = as_ValueType(callee->return_type());
roland@2174 3556 ValueStack* state_before = copy_state_for_exception();
duke@435 3557
duke@435 3558 Values* args = state()->pop_arguments(callee->arg_size());
iveresov@2138 3559
iveresov@2138 3560 if (is_profiling()) {
duke@435 3561 // Don't profile in the special case where the root method
duke@435 3562 // is the intrinsic
duke@435 3563 if (callee != method()) {
iveresov@2138 3564 // Note that we'd collect profile data in this method if we wanted it.
iveresov@2138 3565 compilation()->set_would_profile(true);
iveresov@2138 3566 if (profile_calls()) {
iveresov@2138 3567 Value recv = NULL;
iveresov@2138 3568 if (has_receiver) {
iveresov@2138 3569 recv = args->at(0);
iveresov@2138 3570 null_check(recv);
iveresov@2138 3571 }
roland@5987 3572 profile_call(callee, recv, NULL, collect_args_for_profiling(args, callee, true), true);
duke@435 3573 }
duke@435 3574 }
duke@435 3575 }
duke@435 3576
roland@2174 3577 Intrinsic* result = new Intrinsic(result_type, id, args, has_receiver, state_before,
duke@435 3578 preserves_state, cantrap);
duke@435 3579 // append instruction & push result
duke@435 3580 Value value = append_split(result);
duke@435 3581 if (result_type != voidType) push(result_type, value);
duke@435 3582
roland@5987 3583 if (callee != method() && profile_return() && result_type->is_object_kind()) {
roland@5921 3584 profile_return_type(result, callee);
roland@5921 3585 }
roland@5921 3586
duke@435 3587 // done
duke@435 3588 return true;
duke@435 3589 }
duke@435 3590
duke@435 3591
duke@435 3592 bool GraphBuilder::try_inline_jsr(int jsr_dest_bci) {
duke@435 3593 // Introduce a new callee continuation point - all Ret instructions
duke@435 3594 // will be replaced with Gotos to this point.
duke@435 3595 BlockBegin* cont = block_at(next_bci());
duke@435 3596 assert(cont != NULL, "continuation must exist (BlockListBuilder starts a new block after a jsr");
duke@435 3597
duke@435 3598 // Note: can not assign state to continuation yet, as we have to
duke@435 3599 // pick up the state from the Ret instructions.
duke@435 3600
duke@435 3601 // Push callee scope
duke@435 3602 push_scope_for_jsr(cont, jsr_dest_bci);
duke@435 3603
duke@435 3604 // Temporarily set up bytecode stream so we can append instructions
duke@435 3605 // (only using the bci of this stream)
duke@435 3606 scope_data()->set_stream(scope_data()->parent()->stream());
duke@435 3607
duke@435 3608 BlockBegin* jsr_start_block = block_at(jsr_dest_bci);
duke@435 3609 assert(jsr_start_block != NULL, "jsr start block must exist");
duke@435 3610 assert(!jsr_start_block->is_set(BlockBegin::was_visited_flag), "should not have visited jsr yet");
duke@435 3611 Goto* goto_sub = new Goto(jsr_start_block, false);
duke@435 3612 // Must copy state to avoid wrong sharing when parsing bytecodes
duke@435 3613 assert(jsr_start_block->state() == NULL, "should have fresh jsr starting block");
roland@2174 3614 jsr_start_block->set_state(copy_state_before_with_bci(jsr_dest_bci));
duke@435 3615 append(goto_sub);
duke@435 3616 _block->set_end(goto_sub);
duke@435 3617 _last = _block = jsr_start_block;
duke@435 3618
duke@435 3619 // Clear out bytecode stream
duke@435 3620 scope_data()->set_stream(NULL);
duke@435 3621
duke@435 3622 scope_data()->add_to_work_list(jsr_start_block);
duke@435 3623
duke@435 3624 // Ready to resume parsing in subroutine
duke@435 3625 iterate_all_blocks();
duke@435 3626
duke@435 3627 // If we bailed out during parsing, return immediately (this is bad news)
duke@435 3628 CHECK_BAILOUT_(false);
duke@435 3629
duke@435 3630 // Detect whether the continuation can actually be reached. If not,
duke@435 3631 // it has not had state set by the join() operations in
duke@435 3632 // iterate_bytecodes_for_block()/ret() and we should not touch the
duke@435 3633 // iteration state. The calling activation of
duke@435 3634 // iterate_bytecodes_for_block will then complete normally.
duke@435 3635 if (cont->state() != NULL) {
duke@435 3636 if (!cont->is_set(BlockBegin::was_visited_flag)) {
duke@435 3637 // add continuation to work list instead of parsing it immediately
duke@435 3638 scope_data()->parent()->add_to_work_list(cont);
duke@435 3639 }
duke@435 3640 }
duke@435 3641
duke@435 3642 assert(jsr_continuation() == cont, "continuation must not have changed");
duke@435 3643 assert(!jsr_continuation()->is_set(BlockBegin::was_visited_flag) ||
duke@435 3644 jsr_continuation()->is_set(BlockBegin::parser_loop_header_flag),
duke@435 3645 "continuation can only be visited in case of backward branches");
duke@435 3646 assert(_last && _last->as_BlockEnd(), "block must have end");
duke@435 3647
duke@435 3648 // continuation is in work list, so end iteration of current block
duke@435 3649 _skip_block = true;
duke@435 3650 pop_scope_for_jsr();
duke@435 3651
duke@435 3652 return true;
duke@435 3653 }
duke@435 3654
duke@435 3655
duke@435 3656 // Inline the entry of a synchronized method as a monitor enter and
duke@435 3657 // register the exception handler which releases the monitor if an
duke@435 3658 // exception is thrown within the callee. Note that the monitor enter
duke@435 3659 // cannot throw an exception itself, because the receiver is
duke@435 3660 // guaranteed to be non-null by the explicit null check at the
duke@435 3661 // beginning of inlining.
duke@435 3662 void GraphBuilder::inline_sync_entry(Value lock, BlockBegin* sync_handler) {
duke@435 3663 assert(lock != NULL && sync_handler != NULL, "lock or handler missing");
duke@435 3664
duke@435 3665 monitorenter(lock, SynchronizationEntryBCI);
duke@435 3666 assert(_last->as_MonitorEnter() != NULL, "monitor enter expected");
duke@435 3667 _last->set_needs_null_check(false);
duke@435 3668
duke@435 3669 sync_handler->set(BlockBegin::exception_entry_flag);
duke@435 3670 sync_handler->set(BlockBegin::is_on_work_list_flag);
duke@435 3671
duke@435 3672 ciExceptionHandler* desc = new ciExceptionHandler(method()->holder(), 0, method()->code_size(), -1, 0);
duke@435 3673 XHandler* h = new XHandler(desc);
duke@435 3674 h->set_entry_block(sync_handler);
duke@435 3675 scope_data()->xhandlers()->append(h);
duke@435 3676 scope_data()->set_has_handler();
duke@435 3677 }
duke@435 3678
duke@435 3679
duke@435 3680 // If an exception is thrown and not handled within an inlined
duke@435 3681 // synchronized method, the monitor must be released before the
duke@435 3682 // exception is rethrown in the outer scope. Generate the appropriate
duke@435 3683 // instructions here.
duke@435 3684 void GraphBuilder::fill_sync_handler(Value lock, BlockBegin* sync_handler, bool default_handler) {
duke@435 3685 BlockBegin* orig_block = _block;
duke@435 3686 ValueStack* orig_state = _state;
duke@435 3687 Instruction* orig_last = _last;
duke@435 3688 _last = _block = sync_handler;
duke@435 3689 _state = sync_handler->state()->copy();
duke@435 3690
duke@435 3691 assert(sync_handler != NULL, "handler missing");
duke@435 3692 assert(!sync_handler->is_set(BlockBegin::was_visited_flag), "is visited here");
duke@435 3693
duke@435 3694 assert(lock != NULL || default_handler, "lock or handler missing");
duke@435 3695
duke@435 3696 XHandler* h = scope_data()->xhandlers()->remove_last();
duke@435 3697 assert(h->entry_block() == sync_handler, "corrupt list of handlers");
duke@435 3698
duke@435 3699 block()->set(BlockBegin::was_visited_flag);
duke@435 3700 Value exception = append_with_bci(new ExceptionObject(), SynchronizationEntryBCI);
duke@435 3701 assert(exception->is_pinned(), "must be");
duke@435 3702
never@2600 3703 int bci = SynchronizationEntryBCI;
never@2486 3704 if (compilation()->env()->dtrace_method_probes()) {
never@2600 3705 // Report exit from inline methods. We don't have a stream here
never@2600 3706 // so pass an explicit bci of SynchronizationEntryBCI.
never@2486 3707 Values* args = new Values(1);
coleenp@4037 3708 args->push(append_with_bci(new Constant(new MethodConstant(method())), bci));
never@2600 3709 append_with_bci(new RuntimeCall(voidType, "dtrace_method_exit", CAST_FROM_FN_PTR(address, SharedRuntime::dtrace_method_exit), args), bci);
never@2486 3710 }
never@2486 3711
duke@435 3712 if (lock) {
duke@435 3713 assert(state()->locks_size() > 0 && state()->lock_at(state()->locks_size() - 1) == lock, "lock is missing");
roland@2174 3714 if (!lock->is_linked()) {
never@2600 3715 lock = append_with_bci(lock, bci);
duke@435 3716 }
duke@435 3717
duke@435 3718 // exit the monitor in the context of the synchronized method
never@2600 3719 monitorexit(lock, bci);
duke@435 3720
duke@435 3721 // exit the context of the synchronized method
duke@435 3722 if (!default_handler) {
duke@435 3723 pop_scope();
roland@2174 3724 bci = _state->caller_state()->bci();
roland@2174 3725 _state = _state->caller_state()->copy_for_parsing();
duke@435 3726 }
duke@435 3727 }
duke@435 3728
duke@435 3729 // perform the throw as if at the the call site
duke@435 3730 apush(exception);
duke@435 3731 throw_op(bci);
duke@435 3732
duke@435 3733 BlockEnd* end = last()->as_BlockEnd();
duke@435 3734 block()->set_end(end);
duke@435 3735
duke@435 3736 _block = orig_block;
duke@435 3737 _state = orig_state;
duke@435 3738 _last = orig_last;
duke@435 3739 }
duke@435 3740
duke@435 3741
twisti@3969 3742 bool GraphBuilder::try_inline_full(ciMethod* callee, bool holder_known, Bytecodes::Code bc, Value receiver) {
duke@435 3743 assert(!callee->is_native(), "callee must not be native");
iveresov@2988 3744 if (CompilationPolicy::policy()->should_not_inline(compilation()->env(), callee)) {
iveresov@2988 3745 INLINE_BAILOUT("inlining prohibited by policy");
iveresov@2138 3746 }
duke@435 3747 // first perform tests of things it's not possible to inline
duke@435 3748 if (callee->has_exception_handlers() &&
duke@435 3749 !InlineMethodsWithExceptionHandlers) INLINE_BAILOUT("callee has exception handlers");
duke@435 3750 if (callee->is_synchronized() &&
duke@435 3751 !InlineSynchronizedMethods ) INLINE_BAILOUT("callee is synchronized");
duke@435 3752 if (!callee->holder()->is_initialized()) INLINE_BAILOUT("callee's klass not initialized yet");
duke@435 3753 if (!callee->has_balanced_monitors()) INLINE_BAILOUT("callee's monitors do not match");
duke@435 3754
duke@435 3755 // Proper inlining of methods with jsrs requires a little more work.
duke@435 3756 if (callee->has_jsrs() ) INLINE_BAILOUT("jsrs not handled properly by inliner yet");
duke@435 3757
duke@435 3758 // When SSE2 is used on intel, then no special handling is needed
duke@435 3759 // for strictfp because the enum-constant is fixed at compile time,
duke@435 3760 // the check for UseSSE2 is needed here
duke@435 3761 if (strict_fp_requires_explicit_rounding && UseSSE < 2 && method()->is_strict() != callee->is_strict()) {
duke@435 3762 INLINE_BAILOUT("caller and callee have different strict fp requirements");
duke@435 3763 }
duke@435 3764
iveresov@2349 3765 if (is_profiling() && !callee->ensure_method_data()) {
iveresov@2349 3766 INLINE_BAILOUT("mdo allocation failed");
iveresov@2349 3767 }
never@3042 3768
never@3042 3769 // now perform tests that are based on flag settings
vlivanov@6527 3770 if (callee->force_inline() || callee->should_inline()) {
vlivanov@6527 3771 if (inline_level() > MaxForceInlineLevel ) INLINE_BAILOUT("MaxForceInlineLevel");
vlivanov@6527 3772 if (recursive_inline_level(callee) > MaxRecursiveInlineLevel) INLINE_BAILOUT("recursive inlining too deep");
vlivanov@6527 3773
vlivanov@6527 3774 const char* msg = "";
vlivanov@6527 3775 if (callee->force_inline()) msg = "force inline by annotation";
vlivanov@6527 3776 if (callee->should_inline()) msg = "force inline by CompileOracle";
vlivanov@6527 3777 print_inlining(callee, msg);
never@3042 3778 } else {
vlivanov@4532 3779 // use heuristic controls on inlining
twisti@3969 3780 if (inline_level() > MaxInlineLevel ) INLINE_BAILOUT("inlining too deep");
twisti@3969 3781 if (recursive_inline_level(callee) > MaxRecursiveInlineLevel) INLINE_BAILOUT("recursive inlining too deep");
twisti@3097 3782 if (callee->code_size_for_inlining() > max_inline_size() ) INLINE_BAILOUT("callee is too large");
never@3042 3783
never@3042 3784 // don't inline throwable methods unless the inlining tree is rooted in a throwable class
never@3042 3785 if (callee->name() == ciSymbol::object_initializer_name() &&
never@3042 3786 callee->holder()->is_subclass_of(ciEnv::current()->Throwable_klass())) {
never@3042 3787 // Throwable constructor call
never@3042 3788 IRScope* top = scope();
never@3042 3789 while (top->caller() != NULL) {
never@3042 3790 top = top->caller();
never@3042 3791 }
never@3042 3792 if (!top->method()->holder()->is_subclass_of(ciEnv::current()->Throwable_klass())) {
never@3042 3793 INLINE_BAILOUT("don't inline Throwable constructors");
never@3042 3794 }
never@3042 3795 }
never@3042 3796
never@3042 3797 if (compilation()->env()->num_inlined_bytecodes() > DesiredMethodLimit) {
never@3042 3798 INLINE_BAILOUT("total inlining greater than DesiredMethodLimit");
never@3042 3799 }
twisti@3969 3800 // printing
vlivanov@4154 3801 print_inlining(callee);
never@3042 3802 }
never@3042 3803
duke@435 3804 // NOTE: Bailouts from this point on, which occur at the
duke@435 3805 // GraphBuilder level, do not cause bailout just of the inlining but
duke@435 3806 // in fact of the entire compilation.
duke@435 3807
duke@435 3808 BlockBegin* orig_block = block();
duke@435 3809
twisti@3969 3810 const bool is_invokedynamic = bc == Bytecodes::_invokedynamic;
twisti@3969 3811 const bool has_receiver = (bc != Bytecodes::_invokestatic && !is_invokedynamic);
twisti@3969 3812
duke@435 3813 const int args_base = state()->stack_size() - callee->arg_size();
duke@435 3814 assert(args_base >= 0, "stack underflow during inlining");
duke@435 3815
duke@435 3816 // Insert null check if necessary
duke@435 3817 Value recv = NULL;
twisti@3969 3818 if (has_receiver) {
duke@435 3819 // note: null check must happen even if first instruction of callee does
duke@435 3820 // an implicit null check since the callee is in a different scope
duke@435 3821 // and we must make sure exception handling does the right thing
duke@435 3822 assert(!callee->is_static(), "callee must not be static");
duke@435 3823 assert(callee->arg_size() > 0, "must have at least a receiver");
duke@435 3824 recv = state()->stack_at(args_base);
duke@435 3825 null_check(recv);
duke@435 3826 }
duke@435 3827
iveresov@2138 3828 if (is_profiling()) {
iveresov@2138 3829 // Note that we'd collect profile data in this method if we wanted it.
iveresov@2138 3830 // this may be redundant here...
iveresov@2138 3831 compilation()->set_would_profile(true);
iveresov@2138 3832
iveresov@2138 3833 if (profile_calls()) {
roland@5914 3834 int start = 0;
roland@5987 3835 Values* obj_args = args_list_for_profiling(callee, start, has_receiver);
roland@5914 3836 if (obj_args != NULL) {
roland@5914 3837 int s = obj_args->size();
roland@5914 3838 // if called through method handle invoke, some arguments may have been popped
roland@5914 3839 for (int i = args_base+start, j = 0; j < obj_args->size() && i < state()->stack_size(); ) {
roland@5914 3840 Value v = state()->stack_at_inc(i);
roland@5914 3841 if (v->type()->is_object_kind()) {
roland@5914 3842 obj_args->push(v);
roland@5914 3843 j++;
roland@5914 3844 }
roland@5914 3845 }
roland@5914 3846 #ifdef ASSERT
roland@5914 3847 {
roland@5914 3848 bool ignored_will_link;
roland@5914 3849 ciSignature* declared_signature = NULL;
roland@5914 3850 ciMethod* real_target = method()->get_method_at_bci(bci(), ignored_will_link, &declared_signature);
roland@5914 3851 assert(s == obj_args->length() || real_target->is_method_handle_intrinsic(), "missed on arg?");
roland@5914 3852 }
roland@5914 3853 #endif
roland@5914 3854 }
roland@5914 3855 profile_call(callee, recv, holder_known ? callee->holder() : NULL, obj_args, true);
iveresov@2138 3856 }
duke@435 3857 }
duke@435 3858
duke@435 3859 // Introduce a new callee continuation point - if the callee has
duke@435 3860 // more than one return instruction or the return does not allow
duke@435 3861 // fall-through of control flow, all return instructions of the
duke@435 3862 // callee will need to be replaced by Goto's pointing to this
duke@435 3863 // continuation point.
twisti@3969 3864 BlockBegin* cont = block_at(next_bci());
duke@435 3865 bool continuation_existed = true;
duke@435 3866 if (cont == NULL) {
duke@435 3867 cont = new BlockBegin(next_bci());
duke@435 3868 // low number so that continuation gets parsed as early as possible
duke@435 3869 cont->set_depth_first_number(0);
duke@435 3870 #ifndef PRODUCT
duke@435 3871 if (PrintInitialBlockList) {
duke@435 3872 tty->print_cr("CFG: created block %d (bci %d) as continuation for inline at bci %d",
duke@435 3873 cont->block_id(), cont->bci(), bci());
duke@435 3874 }
duke@435 3875 #endif
duke@435 3876 continuation_existed = false;
duke@435 3877 }
duke@435 3878 // Record number of predecessors of continuation block before
duke@435 3879 // inlining, to detect if inlined method has edges to its
duke@435 3880 // continuation after inlining.
duke@435 3881 int continuation_preds = cont->number_of_preds();
duke@435 3882
duke@435 3883 // Push callee scope
duke@435 3884 push_scope(callee, cont);
duke@435 3885
duke@435 3886 // the BlockListBuilder for the callee could have bailed out
vlivanov@4446 3887 if (bailed_out())
vlivanov@4446 3888 return false;
duke@435 3889
duke@435 3890 // Temporarily set up bytecode stream so we can append instructions
duke@435 3891 // (only using the bci of this stream)
duke@435 3892 scope_data()->set_stream(scope_data()->parent()->stream());
duke@435 3893
duke@435 3894 // Pass parameters into callee state: add assignments
duke@435 3895 // note: this will also ensure that all arguments are computed before being passed
duke@435 3896 ValueStack* callee_state = state();
roland@2174 3897 ValueStack* caller_state = state()->caller_state();
twisti@3969 3898 for (int i = args_base; i < caller_state->stack_size(); ) {
twisti@3969 3899 const int arg_no = i - args_base;
twisti@3969 3900 Value arg = caller_state->stack_at_inc(i);
twisti@3969 3901 store_local(callee_state, arg, arg_no);
duke@435 3902 }
duke@435 3903
duke@435 3904 // Remove args from stack.
duke@435 3905 // Note that we preserve locals state in case we can use it later
duke@435 3906 // (see use of pop_scope() below)
duke@435 3907 caller_state->truncate_stack(args_base);
roland@2174 3908 assert(callee_state->stack_size() == 0, "callee stack must be empty");
duke@435 3909
duke@435 3910 Value lock;
duke@435 3911 BlockBegin* sync_handler;
duke@435 3912
duke@435 3913 // Inline the locking of the receiver if the callee is synchronized
duke@435 3914 if (callee->is_synchronized()) {
duke@435 3915 lock = callee->is_static() ? append(new Constant(new InstanceConstant(callee->holder()->java_mirror())))
duke@435 3916 : state()->local_at(0);
roland@2174 3917 sync_handler = new BlockBegin(SynchronizationEntryBCI);
duke@435 3918 inline_sync_entry(lock, sync_handler);
duke@435 3919 }
duke@435 3920
never@2486 3921 if (compilation()->env()->dtrace_method_probes()) {
never@2486 3922 Values* args = new Values(1);
coleenp@4037 3923 args->push(append(new Constant(new MethodConstant(method()))));
never@2486 3924 append(new RuntimeCall(voidType, "dtrace_method_entry", CAST_FROM_FN_PTR(address, SharedRuntime::dtrace_method_entry), args));
never@2486 3925 }
duke@435 3926
iveresov@3312 3927 if (profile_inlined_calls()) {
iveresov@3312 3928 profile_invocation(callee, copy_state_before_with_bci(SynchronizationEntryBCI));
iveresov@3312 3929 }
iveresov@3312 3930
duke@435 3931 BlockBegin* callee_start_block = block_at(0);
duke@435 3932 if (callee_start_block != NULL) {
duke@435 3933 assert(callee_start_block->is_set(BlockBegin::parser_loop_header_flag), "must be loop header");
duke@435 3934 Goto* goto_callee = new Goto(callee_start_block, false);
duke@435 3935 // The state for this goto is in the scope of the callee, so use
duke@435 3936 // the entry bci for the callee instead of the call site bci.
duke@435 3937 append_with_bci(goto_callee, 0);
duke@435 3938 _block->set_end(goto_callee);
duke@435 3939 callee_start_block->merge(callee_state);
duke@435 3940
duke@435 3941 _last = _block = callee_start_block;
duke@435 3942
duke@435 3943 scope_data()->add_to_work_list(callee_start_block);
duke@435 3944 }
duke@435 3945
duke@435 3946 // Clear out bytecode stream
duke@435 3947 scope_data()->set_stream(NULL);
duke@435 3948
duke@435 3949 // Ready to resume parsing in callee (either in the same block we
duke@435 3950 // were in before or in the callee's start block)
duke@435 3951 iterate_all_blocks(callee_start_block == NULL);
duke@435 3952
duke@435 3953 // If we bailed out during parsing, return immediately (this is bad news)
vlivanov@4446 3954 if (bailed_out())
vlivanov@4446 3955 return false;
duke@435 3956
duke@435 3957 // iterate_all_blocks theoretically traverses in random order; in
duke@435 3958 // practice, we have only traversed the continuation if we are
duke@435 3959 // inlining into a subroutine
duke@435 3960 assert(continuation_existed ||
duke@435 3961 !continuation()->is_set(BlockBegin::was_visited_flag),
duke@435 3962 "continuation should not have been parsed yet if we created it");
duke@435 3963
duke@435 3964 // At this point we are almost ready to return and resume parsing of
duke@435 3965 // the caller back in the GraphBuilder. The only thing we want to do
duke@435 3966 // first is an optimization: during parsing of the callee we
duke@435 3967 // generated at least one Goto to the continuation block. If we
duke@435 3968 // generated exactly one, and if the inlined method spanned exactly
duke@435 3969 // one block (and we didn't have to Goto its entry), then we snip
duke@435 3970 // off the Goto to the continuation, allowing control to fall
duke@435 3971 // through back into the caller block and effectively performing
duke@435 3972 // block merging. This allows load elimination and CSE to take place
duke@435 3973 // across multiple callee scopes if they are relatively simple, and
duke@435 3974 // is currently essential to making inlining profitable.
twisti@3969 3975 if (num_returns() == 1
twisti@3969 3976 && block() == orig_block
twisti@3969 3977 && block() == inline_cleanup_block()) {
twisti@3969 3978 _last = inline_cleanup_return_prev();
twisti@3969 3979 _state = inline_cleanup_state();
twisti@3969 3980 } else if (continuation_preds == cont->number_of_preds()) {
twisti@3969 3981 // Inlining caused that the instructions after the invoke in the
twisti@3969 3982 // caller are not reachable any more. So skip filling this block
twisti@3969 3983 // with instructions!
twisti@3969 3984 assert(cont == continuation(), "");
twisti@3969 3985 assert(_last && _last->as_BlockEnd(), "");
twisti@3969 3986 _skip_block = true;
twisti@3969 3987 } else {
twisti@3969 3988 // Resume parsing in continuation block unless it was already parsed.
twisti@3969 3989 // Note that if we don't change _last here, iteration in
twisti@3969 3990 // iterate_bytecodes_for_block will stop when we return.
twisti@3969 3991 if (!continuation()->is_set(BlockBegin::was_visited_flag)) {
twisti@3969 3992 // add continuation to work list instead of parsing it immediately
duke@435 3993 assert(_last && _last->as_BlockEnd(), "");
twisti@3969 3994 scope_data()->parent()->add_to_work_list(continuation());
duke@435 3995 _skip_block = true;
duke@435 3996 }
duke@435 3997 }
duke@435 3998
duke@435 3999 // Fill the exception handler for synchronized methods with instructions
duke@435 4000 if (callee->is_synchronized() && sync_handler->state() != NULL) {
duke@435 4001 fill_sync_handler(lock, sync_handler);
duke@435 4002 } else {
duke@435 4003 pop_scope();
duke@435 4004 }
duke@435 4005
duke@435 4006 compilation()->notice_inlined_method(callee);
duke@435 4007
duke@435 4008 return true;
duke@435 4009 }
duke@435 4010
duke@435 4011
twisti@4021 4012 bool GraphBuilder::try_method_handle_inline(ciMethod* callee) {
twisti@3969 4013 ValueStack* state_before = state()->copy_for_parsing();
twisti@3969 4014 vmIntrinsics::ID iid = callee->intrinsic_id();
twisti@3969 4015 switch (iid) {
twisti@3969 4016 case vmIntrinsics::_invokeBasic:
twisti@3969 4017 {
twisti@3969 4018 // get MethodHandle receiver
twisti@3969 4019 const int args_base = state()->stack_size() - callee->arg_size();
twisti@3969 4020 ValueType* type = state()->stack_at(args_base)->type();
twisti@3969 4021 if (type->is_constant()) {
twisti@3969 4022 ciMethod* target = type->as_ObjectType()->constant_value()->as_method_handle()->get_vmtarget();
twisti@4203 4023 // We don't do CHA here so only inline static and statically bindable methods.
twisti@4203 4024 if (target->is_static() || target->can_be_statically_bound()) {
twisti@4203 4025 Bytecodes::Code bc = target->is_static() ? Bytecodes::_invokestatic : Bytecodes::_invokevirtual;
twisti@4203 4026 if (try_inline(target, /*holder_known*/ true, bc)) {
twisti@4203 4027 return true;
twisti@4203 4028 }
twisti@4203 4029 } else {
twisti@4203 4030 print_inlining(target, "not static or statically bindable", /*success*/ false);
twisti@3100 4031 }
twisti@3969 4032 } else {
twisti@3969 4033 print_inlining(callee, "receiver not constant", /*success*/ false);
twisti@3100 4034 }
twisti@3100 4035 }
twisti@3969 4036 break;
twisti@3969 4037
twisti@3969 4038 case vmIntrinsics::_linkToVirtual:
twisti@3969 4039 case vmIntrinsics::_linkToStatic:
twisti@3969 4040 case vmIntrinsics::_linkToSpecial:
twisti@3969 4041 case vmIntrinsics::_linkToInterface:
twisti@3969 4042 {
twisti@3969 4043 // pop MemberName argument
twisti@3969 4044 const int args_base = state()->stack_size() - callee->arg_size();
twisti@3969 4045 ValueType* type = apop()->type();
twisti@3969 4046 if (type->is_constant()) {
twisti@3969 4047 ciMethod* target = type->as_ObjectType()->constant_value()->as_member_name()->get_vmtarget();
twisti@3969 4048 // If the target is another method handle invoke try recursivly to get
twisti@3969 4049 // a better target.
twisti@3969 4050 if (target->is_method_handle_intrinsic()) {
twisti@4021 4051 if (try_method_handle_inline(target)) {
twisti@3969 4052 return true;
twisti@3969 4053 }
twisti@3969 4054 } else {
twisti@3969 4055 ciSignature* signature = target->signature();
twisti@3969 4056 const int receiver_skip = target->is_static() ? 0 : 1;
twisti@3969 4057 // Cast receiver to its type.
twisti@3969 4058 if (!target->is_static()) {
twisti@3969 4059 ciKlass* tk = signature->accessing_klass();
twisti@3969 4060 Value obj = state()->stack_at(args_base);
twisti@3969 4061 if (obj->exact_type() == NULL &&
twisti@3969 4062 obj->declared_type() != tk && tk != compilation()->env()->Object_klass()) {
twisti@3969 4063 TypeCast* c = new TypeCast(tk, obj, state_before);
twisti@3969 4064 append(c);
twisti@3969 4065 state()->stack_at_put(args_base, c);
twisti@3969 4066 }
twisti@3969 4067 }
twisti@3969 4068 // Cast reference arguments to its type.
twisti@3969 4069 for (int i = 0, j = 0; i < signature->count(); i++) {
twisti@3969 4070 ciType* t = signature->type_at(i);
twisti@3969 4071 if (t->is_klass()) {
twisti@3969 4072 ciKlass* tk = t->as_klass();
twisti@3969 4073 Value obj = state()->stack_at(args_base + receiver_skip + j);
twisti@3969 4074 if (obj->exact_type() == NULL &&
twisti@3969 4075 obj->declared_type() != tk && tk != compilation()->env()->Object_klass()) {
twisti@3969 4076 TypeCast* c = new TypeCast(t, obj, state_before);
twisti@3969 4077 append(c);
twisti@3969 4078 state()->stack_at_put(args_base + receiver_skip + j, c);
twisti@3969 4079 }
twisti@3969 4080 }
twisti@3969 4081 j += t->size(); // long and double take two slots
twisti@3969 4082 }
twisti@4203 4083 // We don't do CHA here so only inline static and statically bindable methods.
twisti@4203 4084 if (target->is_static() || target->can_be_statically_bound()) {
twisti@4203 4085 Bytecodes::Code bc = target->is_static() ? Bytecodes::_invokestatic : Bytecodes::_invokevirtual;
twisti@4203 4086 if (try_inline(target, /*holder_known*/ true, bc)) {
twisti@4203 4087 return true;
twisti@4203 4088 }
twisti@4203 4089 } else {
twisti@4203 4090 print_inlining(target, "not static or statically bindable", /*success*/ false);
twisti@3969 4091 }
twisti@3969 4092 }
twisti@3969 4093 } else {
twisti@3969 4094 print_inlining(callee, "MemberName not constant", /*success*/ false);
twisti@3969 4095 }
twisti@3969 4096 }
twisti@3969 4097 break;
twisti@3969 4098
twisti@3969 4099 default:
twisti@3969 4100 fatal(err_msg("unexpected intrinsic %d: %s", iid, vmIntrinsics::name_at(iid)));
twisti@3969 4101 break;
twisti@3100 4102 }
twisti@3969 4103 set_state(state_before);
twisti@3100 4104 return false;
twisti@3100 4105 }
twisti@3100 4106
twisti@3100 4107
duke@435 4108 void GraphBuilder::inline_bailout(const char* msg) {
duke@435 4109 assert(msg != NULL, "inline bailout msg must exist");
duke@435 4110 _inline_bailout_msg = msg;
duke@435 4111 }
duke@435 4112
duke@435 4113
duke@435 4114 void GraphBuilder::clear_inline_bailout() {
duke@435 4115 _inline_bailout_msg = NULL;
duke@435 4116 }
duke@435 4117
duke@435 4118
duke@435 4119 void GraphBuilder::push_root_scope(IRScope* scope, BlockList* bci2block, BlockBegin* start) {
duke@435 4120 ScopeData* data = new ScopeData(NULL);
duke@435 4121 data->set_scope(scope);
duke@435 4122 data->set_bci2block(bci2block);
duke@435 4123 _scope_data = data;
duke@435 4124 _block = start;
duke@435 4125 }
duke@435 4126
duke@435 4127
duke@435 4128 void GraphBuilder::push_scope(ciMethod* callee, BlockBegin* continuation) {
duke@435 4129 IRScope* callee_scope = new IRScope(compilation(), scope(), bci(), callee, -1, false);
duke@435 4130 scope()->add_callee(callee_scope);
duke@435 4131
duke@435 4132 BlockListBuilder blb(compilation(), callee_scope, -1);
duke@435 4133 CHECK_BAILOUT();
duke@435 4134
duke@435 4135 if (!blb.bci2block()->at(0)->is_set(BlockBegin::parser_loop_header_flag)) {
duke@435 4136 // this scope can be inlined directly into the caller so remove
duke@435 4137 // the block at bci 0.
duke@435 4138 blb.bci2block()->at_put(0, NULL);
duke@435 4139 }
duke@435 4140
roland@2174 4141 set_state(new ValueStack(callee_scope, state()->copy(ValueStack::CallerState, bci())));
duke@435 4142
duke@435 4143 ScopeData* data = new ScopeData(scope_data());
duke@435 4144 data->set_scope(callee_scope);
duke@435 4145 data->set_bci2block(blb.bci2block());
duke@435 4146 data->set_continuation(continuation);
duke@435 4147 _scope_data = data;
duke@435 4148 }
duke@435 4149
duke@435 4150
duke@435 4151 void GraphBuilder::push_scope_for_jsr(BlockBegin* jsr_continuation, int jsr_dest_bci) {
duke@435 4152 ScopeData* data = new ScopeData(scope_data());
duke@435 4153 data->set_parsing_jsr();
duke@435 4154 data->set_jsr_entry_bci(jsr_dest_bci);
duke@435 4155 data->set_jsr_return_address_local(-1);
duke@435 4156 // Must clone bci2block list as we will be mutating it in order to
duke@435 4157 // properly clone all blocks in jsr region as well as exception
duke@435 4158 // handlers containing rets
duke@435 4159 BlockList* new_bci2block = new BlockList(bci2block()->length());
duke@435 4160 new_bci2block->push_all(bci2block());
duke@435 4161 data->set_bci2block(new_bci2block);
duke@435 4162 data->set_scope(scope());
duke@435 4163 data->setup_jsr_xhandlers();
duke@435 4164 data->set_continuation(continuation());
duke@435 4165 data->set_jsr_continuation(jsr_continuation);
duke@435 4166 _scope_data = data;
duke@435 4167 }
duke@435 4168
duke@435 4169
duke@435 4170 void GraphBuilder::pop_scope() {
duke@435 4171 int number_of_locks = scope()->number_of_locks();
duke@435 4172 _scope_data = scope_data()->parent();
duke@435 4173 // accumulate minimum number of monitor slots to be reserved
duke@435 4174 scope()->set_min_number_of_locks(number_of_locks);
duke@435 4175 }
duke@435 4176
duke@435 4177
duke@435 4178 void GraphBuilder::pop_scope_for_jsr() {
duke@435 4179 _scope_data = scope_data()->parent();
duke@435 4180 }
duke@435 4181
duke@435 4182 bool GraphBuilder::append_unsafe_get_obj(ciMethod* callee, BasicType t, bool is_volatile) {
duke@435 4183 if (InlineUnsafeOps) {
duke@435 4184 Values* args = state()->pop_arguments(callee->arg_size());
duke@435 4185 null_check(args->at(0));
duke@435 4186 Instruction* offset = args->at(2);
duke@435 4187 #ifndef _LP64
duke@435 4188 offset = append(new Convert(Bytecodes::_l2i, offset, as_ValueType(T_INT)));
duke@435 4189 #endif
duke@435 4190 Instruction* op = append(new UnsafeGetObject(t, args->at(1), offset, is_volatile));
duke@435 4191 push(op->type(), op);
duke@435 4192 compilation()->set_has_unsafe_access(true);
duke@435 4193 }
duke@435 4194 return InlineUnsafeOps;
duke@435 4195 }
duke@435 4196
duke@435 4197
duke@435 4198 bool GraphBuilder::append_unsafe_put_obj(ciMethod* callee, BasicType t, bool is_volatile) {
duke@435 4199 if (InlineUnsafeOps) {
duke@435 4200 Values* args = state()->pop_arguments(callee->arg_size());
duke@435 4201 null_check(args->at(0));
duke@435 4202 Instruction* offset = args->at(2);
duke@435 4203 #ifndef _LP64
duke@435 4204 offset = append(new Convert(Bytecodes::_l2i, offset, as_ValueType(T_INT)));
duke@435 4205 #endif
duke@435 4206 Instruction* op = append(new UnsafePutObject(t, args->at(1), offset, args->at(3), is_volatile));
duke@435 4207 compilation()->set_has_unsafe_access(true);
duke@435 4208 kill_all();
duke@435 4209 }
duke@435 4210 return InlineUnsafeOps;
duke@435 4211 }
duke@435 4212
duke@435 4213
duke@435 4214 bool GraphBuilder::append_unsafe_get_raw(ciMethod* callee, BasicType t) {
duke@435 4215 if (InlineUnsafeOps) {
duke@435 4216 Values* args = state()->pop_arguments(callee->arg_size());
duke@435 4217 null_check(args->at(0));
duke@435 4218 Instruction* op = append(new UnsafeGetRaw(t, args->at(1), false));
duke@435 4219 push(op->type(), op);
duke@435 4220 compilation()->set_has_unsafe_access(true);
duke@435 4221 }
duke@435 4222 return InlineUnsafeOps;
duke@435 4223 }
duke@435 4224
duke@435 4225
duke@435 4226 bool GraphBuilder::append_unsafe_put_raw(ciMethod* callee, BasicType t) {
duke@435 4227 if (InlineUnsafeOps) {
duke@435 4228 Values* args = state()->pop_arguments(callee->arg_size());
duke@435 4229 null_check(args->at(0));
duke@435 4230 Instruction* op = append(new UnsafePutRaw(t, args->at(1), args->at(2)));
duke@435 4231 compilation()->set_has_unsafe_access(true);
duke@435 4232 }
duke@435 4233 return InlineUnsafeOps;
duke@435 4234 }
duke@435 4235
duke@435 4236
duke@435 4237 bool GraphBuilder::append_unsafe_prefetch(ciMethod* callee, bool is_static, bool is_store) {
duke@435 4238 if (InlineUnsafeOps) {
duke@435 4239 Values* args = state()->pop_arguments(callee->arg_size());
duke@435 4240 int obj_arg_index = 1; // Assume non-static case
duke@435 4241 if (is_static) {
duke@435 4242 obj_arg_index = 0;
duke@435 4243 } else {
duke@435 4244 null_check(args->at(0));
duke@435 4245 }
duke@435 4246 Instruction* offset = args->at(obj_arg_index + 1);
duke@435 4247 #ifndef _LP64
duke@435 4248 offset = append(new Convert(Bytecodes::_l2i, offset, as_ValueType(T_INT)));
duke@435 4249 #endif
duke@435 4250 Instruction* op = is_store ? append(new UnsafePrefetchWrite(args->at(obj_arg_index), offset))
duke@435 4251 : append(new UnsafePrefetchRead (args->at(obj_arg_index), offset));
duke@435 4252 compilation()->set_has_unsafe_access(true);
duke@435 4253 }
duke@435 4254 return InlineUnsafeOps;
duke@435 4255 }
duke@435 4256
duke@435 4257
duke@435 4258 void GraphBuilder::append_unsafe_CAS(ciMethod* callee) {
roland@2174 4259 ValueStack* state_before = copy_state_for_exception();
duke@435 4260 ValueType* result_type = as_ValueType(callee->return_type());
duke@435 4261 assert(result_type->is_int(), "int result");
duke@435 4262 Values* args = state()->pop_arguments(callee->arg_size());
duke@435 4263
duke@435 4264 // Pop off some args to speically handle, then push back
duke@435 4265 Value newval = args->pop();
duke@435 4266 Value cmpval = args->pop();
duke@435 4267 Value offset = args->pop();
duke@435 4268 Value src = args->pop();
duke@435 4269 Value unsafe_obj = args->pop();
duke@435 4270
duke@435 4271 // Separately handle the unsafe arg. It is not needed for code
duke@435 4272 // generation, but must be null checked
duke@435 4273 null_check(unsafe_obj);
duke@435 4274
duke@435 4275 #ifndef _LP64
duke@435 4276 offset = append(new Convert(Bytecodes::_l2i, offset, as_ValueType(T_INT)));
duke@435 4277 #endif
duke@435 4278
duke@435 4279 args->push(src);
duke@435 4280 args->push(offset);
duke@435 4281 args->push(cmpval);
duke@435 4282 args->push(newval);
duke@435 4283
duke@435 4284 // An unsafe CAS can alias with other field accesses, but we don't
duke@435 4285 // know which ones so mark the state as no preserved. This will
duke@435 4286 // cause CSE to invalidate memory across it.
duke@435 4287 bool preserves_state = false;
roland@2174 4288 Intrinsic* result = new Intrinsic(result_type, callee->intrinsic_id(), args, false, state_before, preserves_state);
duke@435 4289 append_split(result);
duke@435 4290 push(result_type, result);
duke@435 4291 compilation()->set_has_unsafe_access(true);
duke@435 4292 }
duke@435 4293
duke@435 4294
twisti@3969 4295 void GraphBuilder::print_inlining(ciMethod* callee, const char* msg, bool success) {
vlivanov@4154 4296 CompileLog* log = compilation()->log();
vlivanov@4154 4297 if (log != NULL) {
vlivanov@4154 4298 if (success) {
vlivanov@4154 4299 if (msg != NULL)
vlivanov@4154 4300 log->inline_success(msg);
vlivanov@4154 4301 else
vlivanov@4154 4302 log->inline_success("receiver is statically known");
vlivanov@4154 4303 } else {
vlivanov@4446 4304 if (msg != NULL)
vlivanov@4446 4305 log->inline_fail(msg);
vlivanov@4446 4306 else
vlivanov@4446 4307 log->inline_fail("reason unknown");
vlivanov@4154 4308 }
vlivanov@4154 4309 }
vlivanov@4154 4310
kvn@5763 4311 if (!PrintInlining && !compilation()->method()->has_option("PrintInlining")) {
kvn@5763 4312 return;
kvn@5763 4313 }
twisti@3969 4314 CompileTask::print_inlining(callee, scope()->level(), bci(), msg);
twisti@3969 4315 if (success && CIPrintMethodCodes) {
duke@435 4316 callee->print_codes();
duke@435 4317 }
duke@435 4318 }
duke@435 4319
roland@4106 4320 bool GraphBuilder::append_unsafe_get_and_set_obj(ciMethod* callee, bool is_add) {
roland@4106 4321 if (InlineUnsafeOps) {
roland@4106 4322 Values* args = state()->pop_arguments(callee->arg_size());
roland@4106 4323 BasicType t = callee->return_type()->basic_type();
roland@4106 4324 null_check(args->at(0));
roland@4106 4325 Instruction* offset = args->at(2);
roland@4106 4326 #ifndef _LP64
roland@4106 4327 offset = append(new Convert(Bytecodes::_l2i, offset, as_ValueType(T_INT)));
roland@4106 4328 #endif
roland@4106 4329 Instruction* op = append(new UnsafeGetAndSetObject(t, args->at(1), offset, args->at(3), is_add));
roland@4106 4330 compilation()->set_has_unsafe_access(true);
roland@4106 4331 kill_all();
roland@4106 4332 push(op->type(), op);
roland@4106 4333 }
roland@4106 4334 return InlineUnsafeOps;
roland@4106 4335 }
duke@435 4336
twisti@3969 4337 #ifndef PRODUCT
duke@435 4338 void GraphBuilder::print_stats() {
duke@435 4339 vmap()->print();
duke@435 4340 }
duke@435 4341 #endif // PRODUCT
duke@435 4342
roland@5914 4343 void GraphBuilder::profile_call(ciMethod* callee, Value recv, ciKlass* known_holder, Values* obj_args, bool inlined) {
roland@6213 4344 assert(known_holder == NULL || (known_holder->is_instance_klass() &&
roland@6213 4345 (!known_holder->is_interface() ||
roland@6213 4346 ((ciInstanceKlass*)known_holder)->has_default_methods())), "should be default method");
roland@6213 4347 if (known_holder != NULL) {
roland@6213 4348 if (known_holder->exact_klass() == NULL) {
roland@6213 4349 known_holder = compilation()->cha_exact_type(known_holder);
roland@6213 4350 }
roland@6100 4351 }
roland@6213 4352
roland@5914 4353 append(new ProfileCall(method(), bci(), callee, recv, known_holder, obj_args, inlined));
duke@435 4354 }
duke@435 4355
roland@5921 4356 void GraphBuilder::profile_return_type(Value ret, ciMethod* callee, ciMethod* m, int invoke_bci) {
roland@5921 4357 assert((m == NULL) == (invoke_bci < 0), "invalid method and invalid bci together");
roland@5921 4358 if (m == NULL) {
roland@5921 4359 m = method();
roland@5921 4360 }
roland@5921 4361 if (invoke_bci < 0) {
roland@5921 4362 invoke_bci = bci();
roland@5921 4363 }
roland@5921 4364 ciMethodData* md = m->method_data_or_null();
roland@5921 4365 ciProfileData* data = md->bci_to_data(invoke_bci);
roland@5921 4366 if (data->is_CallTypeData() || data->is_VirtualCallTypeData()) {
roland@5921 4367 append(new ProfileReturnType(m , invoke_bci, callee, ret));
roland@5921 4368 }
roland@5921 4369 }
roland@5921 4370
iveresov@2180 4371 void GraphBuilder::profile_invocation(ciMethod* callee, ValueStack* state) {
iveresov@2180 4372 append(new ProfileInvoke(callee, state));
duke@435 4373 }

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