src/share/vm/ci/bcEscapeAnalyzer.cpp

Thu, 20 Jan 2011 08:25:22 -0800

author
twisti
date
Thu, 20 Jan 2011 08:25:22 -0800
changeset 2484
bb2c2878f134
parent 2314
f95d63e2154a
child 2485
a7367756024b
permissions
-rw-r--r--

7011839: JSR 292 turn on escape analysis when using invokedynamic
Summary: Currently escape analysis is turned off when EnableInvokeDynamic is true.
Reviewed-by: jrose, kvn

duke@435 1 /*
twisti@2484 2 * Copyright (c) 2005, 2011, 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 "ci/bcEscapeAnalyzer.hpp"
stefank@2314 27 #include "ci/ciConstant.hpp"
stefank@2314 28 #include "ci/ciField.hpp"
stefank@2314 29 #include "ci/ciMethodBlocks.hpp"
stefank@2314 30 #include "ci/ciStreams.hpp"
stefank@2314 31 #include "interpreter/bytecode.hpp"
stefank@2314 32 #include "utilities/bitMap.inline.hpp"
duke@435 33
duke@435 34
duke@435 35
duke@435 36 #ifndef PRODUCT
duke@435 37 #define TRACE_BCEA(level, code) \
duke@435 38 if (EstimateArgEscape && BCEATraceLevel >= level) { \
duke@435 39 code; \
duke@435 40 }
duke@435 41 #else
duke@435 42 #define TRACE_BCEA(level, code)
duke@435 43 #endif
duke@435 44
duke@435 45 // Maintain a map of which aguments a local variable or
duke@435 46 // stack slot may contain. In addition to tracking
duke@435 47 // arguments, it tracks two special values, "allocated"
duke@435 48 // which represents any object allocated in the current
duke@435 49 // method, and "unknown" which is any other object.
duke@435 50 // Up to 30 arguments are handled, with the last one
duke@435 51 // representing summary information for any extra arguments
duke@435 52 class BCEscapeAnalyzer::ArgumentMap {
duke@435 53 uint _bits;
duke@435 54 enum {MAXBIT = 29,
duke@435 55 ALLOCATED = 1,
duke@435 56 UNKNOWN = 2};
duke@435 57
duke@435 58 uint int_to_bit(uint e) const {
duke@435 59 if (e > MAXBIT)
duke@435 60 e = MAXBIT;
duke@435 61 return (1 << (e + 2));
duke@435 62 }
duke@435 63
duke@435 64 public:
duke@435 65 ArgumentMap() { _bits = 0;}
duke@435 66 void set_bits(uint bits) { _bits = bits;}
duke@435 67 uint get_bits() const { return _bits;}
duke@435 68 void clear() { _bits = 0;}
duke@435 69 void set_all() { _bits = ~0u; }
duke@435 70 bool is_empty() const { return _bits == 0; }
duke@435 71 bool contains(uint var) const { return (_bits & int_to_bit(var)) != 0; }
duke@435 72 bool is_singleton(uint var) const { return (_bits == int_to_bit(var)); }
duke@435 73 bool contains_unknown() const { return (_bits & UNKNOWN) != 0; }
duke@435 74 bool contains_allocated() const { return (_bits & ALLOCATED) != 0; }
duke@435 75 bool contains_vars() const { return (_bits & (((1 << MAXBIT) -1) << 2)) != 0; }
duke@435 76 void set(uint var) { _bits = int_to_bit(var); }
duke@435 77 void add(uint var) { _bits |= int_to_bit(var); }
duke@435 78 void add_unknown() { _bits = UNKNOWN; }
duke@435 79 void add_allocated() { _bits = ALLOCATED; }
duke@435 80 void set_union(const ArgumentMap &am) { _bits |= am._bits; }
duke@435 81 void set_intersect(const ArgumentMap &am) { _bits |= am._bits; }
duke@435 82 void set_difference(const ArgumentMap &am) { _bits &= ~am._bits; }
duke@435 83 void operator=(const ArgumentMap &am) { _bits = am._bits; }
duke@435 84 bool operator==(const ArgumentMap &am) { return _bits == am._bits; }
duke@435 85 bool operator!=(const ArgumentMap &am) { return _bits != am._bits; }
duke@435 86 };
duke@435 87
duke@435 88 class BCEscapeAnalyzer::StateInfo {
duke@435 89 public:
duke@435 90 ArgumentMap *_vars;
duke@435 91 ArgumentMap *_stack;
duke@435 92 short _stack_height;
duke@435 93 short _max_stack;
duke@435 94 bool _initialized;
duke@435 95 ArgumentMap empty_map;
duke@435 96
duke@435 97 StateInfo() {
duke@435 98 empty_map.clear();
duke@435 99 }
duke@435 100
kvn@2102 101 ArgumentMap raw_pop() { guarantee(_stack_height > 0, "stack underflow"); return _stack[--_stack_height]; }
duke@435 102 ArgumentMap apop() { return raw_pop(); }
duke@435 103 void spop() { raw_pop(); }
duke@435 104 void lpop() { spop(); spop(); }
kvn@2102 105 void raw_push(ArgumentMap i) { guarantee(_stack_height < _max_stack, "stack overflow"); _stack[_stack_height++] = i; }
duke@435 106 void apush(ArgumentMap i) { raw_push(i); }
duke@435 107 void spush() { raw_push(empty_map); }
duke@435 108 void lpush() { spush(); spush(); }
duke@435 109
duke@435 110 };
duke@435 111
duke@435 112 void BCEscapeAnalyzer::set_returned(ArgumentMap vars) {
kvn@480 113 for (int i = 0; i < _arg_size; i++) {
duke@435 114 if (vars.contains(i))
kvn@2003 115 _arg_returned.set(i);
duke@435 116 }
duke@435 117 _return_local = _return_local && !(vars.contains_unknown() || vars.contains_allocated());
duke@435 118 _return_allocated = _return_allocated && vars.contains_allocated() && !(vars.contains_unknown() || vars.contains_vars());
duke@435 119 }
duke@435 120
duke@435 121 // return true if any element of vars is an argument
duke@435 122 bool BCEscapeAnalyzer::is_argument(ArgumentMap vars) {
kvn@480 123 for (int i = 0; i < _arg_size; i++) {
duke@435 124 if (vars.contains(i))
duke@435 125 return true;
duke@435 126 }
duke@435 127 return false;
duke@435 128 }
duke@435 129
duke@435 130 // return true if any element of vars is an arg_stack argument
duke@435 131 bool BCEscapeAnalyzer::is_arg_stack(ArgumentMap vars){
duke@435 132 if (_conservative)
duke@435 133 return true;
kvn@480 134 for (int i = 0; i < _arg_size; i++) {
kvn@2003 135 if (vars.contains(i) && _arg_stack.test(i))
duke@435 136 return true;
duke@435 137 }
duke@435 138 return false;
duke@435 139 }
duke@435 140
kvn@2003 141 void BCEscapeAnalyzer::clear_bits(ArgumentMap vars, VectorSet &bm) {
kvn@480 142 for (int i = 0; i < _arg_size; i++) {
duke@435 143 if (vars.contains(i)) {
kvn@2003 144 bm >>= i;
duke@435 145 }
duke@435 146 }
duke@435 147 }
kvn@480 148
duke@435 149 void BCEscapeAnalyzer::set_method_escape(ArgumentMap vars) {
duke@435 150 clear_bits(vars, _arg_local);
duke@435 151 }
duke@435 152
duke@435 153 void BCEscapeAnalyzer::set_global_escape(ArgumentMap vars) {
duke@435 154 clear_bits(vars, _arg_local);
duke@435 155 clear_bits(vars, _arg_stack);
duke@435 156 if (vars.contains_allocated())
duke@435 157 _allocated_escapes = true;
duke@435 158 }
duke@435 159
duke@435 160 void BCEscapeAnalyzer::set_dirty(ArgumentMap vars) {
duke@435 161 clear_bits(vars, _dirty);
duke@435 162 }
duke@435 163
kvn@480 164 void BCEscapeAnalyzer::set_modified(ArgumentMap vars, int offs, int size) {
kvn@480 165
kvn@480 166 for (int i = 0; i < _arg_size; i++) {
kvn@480 167 if (vars.contains(i)) {
kvn@480 168 set_arg_modified(i, offs, size);
kvn@480 169 }
kvn@480 170 }
kvn@480 171 if (vars.contains_unknown())
kvn@480 172 _unknown_modified = true;
kvn@480 173 }
kvn@480 174
duke@435 175 bool BCEscapeAnalyzer::is_recursive_call(ciMethod* callee) {
duke@435 176 for (BCEscapeAnalyzer* scope = this; scope != NULL; scope = scope->_parent) {
duke@435 177 if (scope->method() == callee) {
duke@435 178 return true;
duke@435 179 }
duke@435 180 }
duke@435 181 return false;
duke@435 182 }
duke@435 183
kvn@480 184 bool BCEscapeAnalyzer::is_arg_modified(int arg, int offset, int size_in_bytes) {
kvn@480 185 if (offset == OFFSET_ANY)
kvn@480 186 return _arg_modified[arg] != 0;
kvn@480 187 assert(arg >= 0 && arg < _arg_size, "must be an argument.");
kvn@480 188 bool modified = false;
kvn@480 189 int l = offset / HeapWordSize;
kvn@480 190 int h = round_to(offset + size_in_bytes, HeapWordSize) / HeapWordSize;
kvn@480 191 if (l > ARG_OFFSET_MAX)
kvn@480 192 l = ARG_OFFSET_MAX;
kvn@480 193 if (h > ARG_OFFSET_MAX+1)
kvn@480 194 h = ARG_OFFSET_MAX + 1;
kvn@480 195 for (int i = l; i < h; i++) {
kvn@480 196 modified = modified || (_arg_modified[arg] & (1 << i)) != 0;
kvn@480 197 }
kvn@480 198 return modified;
kvn@480 199 }
kvn@480 200
kvn@480 201 void BCEscapeAnalyzer::set_arg_modified(int arg, int offset, int size_in_bytes) {
kvn@480 202 if (offset == OFFSET_ANY) {
kvn@480 203 _arg_modified[arg] = (uint) -1;
kvn@480 204 return;
kvn@480 205 }
kvn@480 206 assert(arg >= 0 && arg < _arg_size, "must be an argument.");
kvn@480 207 int l = offset / HeapWordSize;
kvn@480 208 int h = round_to(offset + size_in_bytes, HeapWordSize) / HeapWordSize;
kvn@480 209 if (l > ARG_OFFSET_MAX)
kvn@480 210 l = ARG_OFFSET_MAX;
kvn@480 211 if (h > ARG_OFFSET_MAX+1)
kvn@480 212 h = ARG_OFFSET_MAX + 1;
kvn@480 213 for (int i = l; i < h; i++) {
kvn@480 214 _arg_modified[arg] |= (1 << i);
kvn@480 215 }
kvn@480 216 }
kvn@480 217
duke@435 218 void BCEscapeAnalyzer::invoke(StateInfo &state, Bytecodes::Code code, ciMethod* target, ciKlass* holder) {
duke@435 219 int i;
duke@435 220
duke@435 221 // retrieve information about the callee
duke@435 222 ciInstanceKlass* klass = target->holder();
duke@435 223 ciInstanceKlass* calling_klass = method()->holder();
duke@435 224 ciInstanceKlass* callee_holder = ciEnv::get_instance_klass_for_declared_method_holder(holder);
duke@435 225 ciInstanceKlass* actual_recv = callee_holder;
duke@435 226
kvn@589 227 // some methods are obviously bindable without any type checks so
kvn@589 228 // convert them directly to an invokespecial.
kvn@589 229 if (target->is_loaded() && !target->is_abstract() &&
kvn@589 230 target->can_be_statically_bound() && code == Bytecodes::_invokevirtual) {
kvn@589 231 code = Bytecodes::_invokespecial;
kvn@589 232 }
kvn@589 233
duke@435 234 // compute size of arguments
duke@435 235 int arg_size = target->arg_size();
twisti@2484 236 if (code == Bytecodes::_invokedynamic) {
twisti@2484 237 assert(!target->is_static(), "receiver explicit in method");
twisti@2484 238 arg_size--; // implicit, not really on stack
twisti@2484 239 }
duke@435 240 if (!target->is_loaded() && code == Bytecodes::_invokestatic) {
duke@435 241 arg_size--;
duke@435 242 }
duke@435 243 int arg_base = MAX2(state._stack_height - arg_size, 0);
duke@435 244
duke@435 245 // direct recursive calls are skipped if they can be bound statically without introducing
duke@435 246 // dependencies and if parameters are passed at the same position as in the current method
duke@435 247 // other calls are skipped if there are no unescaped arguments passed to them
duke@435 248 bool directly_recursive = (method() == target) &&
duke@435 249 (code != Bytecodes::_invokevirtual || target->is_final_method() || state._stack[arg_base] .is_empty());
duke@435 250
duke@435 251 // check if analysis of callee can safely be skipped
duke@435 252 bool skip_callee = true;
duke@435 253 for (i = state._stack_height - 1; i >= arg_base && skip_callee; i--) {
duke@435 254 ArgumentMap arg = state._stack[i];
duke@435 255 skip_callee = !is_argument(arg) || !is_arg_stack(arg) || (directly_recursive && arg.is_singleton(i - arg_base));
duke@435 256 }
twisti@2484 257 // For now we conservatively skip invokedynamic.
twisti@2484 258 if (code == Bytecodes::_invokedynamic) {
twisti@2484 259 skip_callee = true;
twisti@2484 260 }
duke@435 261 if (skip_callee) {
duke@435 262 TRACE_BCEA(3, tty->print_cr("[EA] skipping method %s::%s", holder->name()->as_utf8(), target->name()->as_utf8()));
duke@435 263 for (i = 0; i < arg_size; i++) {
duke@435 264 set_method_escape(state.raw_pop());
duke@435 265 }
kvn@480 266 _unknown_modified = true; // assume the worst since we don't analyze the called method
duke@435 267 return;
duke@435 268 }
duke@435 269
duke@435 270 // determine actual method (use CHA if necessary)
duke@435 271 ciMethod* inline_target = NULL;
duke@435 272 if (target->is_loaded() && klass->is_loaded()
duke@435 273 && (klass->is_initialized() || klass->is_interface() && target->holder()->is_initialized())
duke@435 274 && target->will_link(klass, callee_holder, code)) {
duke@435 275 if (code == Bytecodes::_invokestatic
duke@435 276 || code == Bytecodes::_invokespecial
duke@435 277 || code == Bytecodes::_invokevirtual && target->is_final_method()) {
duke@435 278 inline_target = target;
duke@435 279 } else {
duke@435 280 inline_target = target->find_monomorphic_target(calling_klass, callee_holder, actual_recv);
duke@435 281 }
duke@435 282 }
duke@435 283
duke@435 284 if (inline_target != NULL && !is_recursive_call(inline_target)) {
duke@435 285 // analyze callee
duke@435 286 BCEscapeAnalyzer analyzer(inline_target, this);
duke@435 287
duke@435 288 // adjust escape state of actual parameters
duke@435 289 bool must_record_dependencies = false;
duke@435 290 for (i = arg_size - 1; i >= 0; i--) {
duke@435 291 ArgumentMap arg = state.raw_pop();
duke@435 292 if (!is_argument(arg))
duke@435 293 continue;
kvn@480 294 for (int j = 0; j < _arg_size; j++) {
kvn@480 295 if (arg.contains(j)) {
kvn@480 296 _arg_modified[j] |= analyzer._arg_modified[i];
kvn@480 297 }
kvn@480 298 }
duke@435 299 if (!is_arg_stack(arg)) {
duke@435 300 // arguments have already been recognized as escaping
duke@435 301 } else if (analyzer.is_arg_stack(i) && !analyzer.is_arg_returned(i)) {
duke@435 302 set_method_escape(arg);
duke@435 303 must_record_dependencies = true;
duke@435 304 } else {
duke@435 305 set_global_escape(arg);
duke@435 306 }
duke@435 307 }
kvn@480 308 _unknown_modified = _unknown_modified || analyzer.has_non_arg_side_affects();
duke@435 309
duke@435 310 // record dependencies if at least one parameter retained stack-allocatable
duke@435 311 if (must_record_dependencies) {
duke@435 312 if (code == Bytecodes::_invokeinterface || code == Bytecodes::_invokevirtual && !target->is_final_method()) {
duke@435 313 _dependencies.append(actual_recv);
duke@435 314 _dependencies.append(inline_target);
duke@435 315 }
duke@435 316 _dependencies.appendAll(analyzer.dependencies());
duke@435 317 }
duke@435 318 } else {
duke@435 319 TRACE_BCEA(1, tty->print_cr("[EA] virtual method %s is not monomorphic.",
duke@435 320 target->name()->as_utf8()));
duke@435 321 // conservatively mark all actual parameters as escaping globally
duke@435 322 for (i = 0; i < arg_size; i++) {
duke@435 323 ArgumentMap arg = state.raw_pop();
duke@435 324 if (!is_argument(arg))
duke@435 325 continue;
kvn@480 326 set_modified(arg, OFFSET_ANY, type2size[T_INT]*HeapWordSize);
duke@435 327 set_global_escape(arg);
duke@435 328 }
kvn@480 329 _unknown_modified = true; // assume the worst since we don't know the called method
duke@435 330 }
duke@435 331 }
duke@435 332
duke@435 333 bool BCEscapeAnalyzer::contains(uint arg_set1, uint arg_set2) {
duke@435 334 return ((~arg_set1) | arg_set2) == 0;
duke@435 335 }
duke@435 336
duke@435 337
duke@435 338 void BCEscapeAnalyzer::iterate_one_block(ciBlock *blk, StateInfo &state, GrowableArray<ciBlock *> &successors) {
duke@435 339
duke@435 340 blk->set_processed();
duke@435 341 ciBytecodeStream s(method());
duke@435 342 int limit_bci = blk->limit_bci();
duke@435 343 bool fall_through = false;
duke@435 344 ArgumentMap allocated_obj;
duke@435 345 allocated_obj.add_allocated();
duke@435 346 ArgumentMap unknown_obj;
duke@435 347 unknown_obj.add_unknown();
duke@435 348 ArgumentMap empty_map;
duke@435 349
duke@435 350 s.reset_to_bci(blk->start_bci());
duke@435 351 while (s.next() != ciBytecodeStream::EOBC() && s.cur_bci() < limit_bci) {
duke@435 352 fall_through = true;
duke@435 353 switch (s.cur_bc()) {
duke@435 354 case Bytecodes::_nop:
duke@435 355 break;
duke@435 356 case Bytecodes::_aconst_null:
duke@435 357 state.apush(empty_map);
duke@435 358 break;
duke@435 359 case Bytecodes::_iconst_m1:
duke@435 360 case Bytecodes::_iconst_0:
duke@435 361 case Bytecodes::_iconst_1:
duke@435 362 case Bytecodes::_iconst_2:
duke@435 363 case Bytecodes::_iconst_3:
duke@435 364 case Bytecodes::_iconst_4:
duke@435 365 case Bytecodes::_iconst_5:
duke@435 366 case Bytecodes::_fconst_0:
duke@435 367 case Bytecodes::_fconst_1:
duke@435 368 case Bytecodes::_fconst_2:
duke@435 369 case Bytecodes::_bipush:
duke@435 370 case Bytecodes::_sipush:
duke@435 371 state.spush();
duke@435 372 break;
duke@435 373 case Bytecodes::_lconst_0:
duke@435 374 case Bytecodes::_lconst_1:
duke@435 375 case Bytecodes::_dconst_0:
duke@435 376 case Bytecodes::_dconst_1:
duke@435 377 state.lpush();
duke@435 378 break;
duke@435 379 case Bytecodes::_ldc:
duke@435 380 case Bytecodes::_ldc_w:
duke@435 381 case Bytecodes::_ldc2_w:
kvn@2102 382 {
kvn@2102 383 // Avoid calling get_constant() which will try to allocate
kvn@2102 384 // unloaded constant. We need only constant's type.
kvn@2102 385 int index = s.get_constant_pool_index();
kvn@2102 386 constantTag tag = s.get_constant_pool_tag(index);
kvn@2102 387 if (tag.is_long() || tag.is_double()) {
kvn@2102 388 // Only longs and doubles use 2 stack slots.
kvn@2102 389 state.lpush();
kvn@2102 390 } else {
duke@435 391 state.spush();
duke@435 392 }
duke@435 393 break;
kvn@2102 394 }
duke@435 395 case Bytecodes::_aload:
duke@435 396 state.apush(state._vars[s.get_index()]);
duke@435 397 break;
duke@435 398 case Bytecodes::_iload:
duke@435 399 case Bytecodes::_fload:
duke@435 400 case Bytecodes::_iload_0:
duke@435 401 case Bytecodes::_iload_1:
duke@435 402 case Bytecodes::_iload_2:
duke@435 403 case Bytecodes::_iload_3:
duke@435 404 case Bytecodes::_fload_0:
duke@435 405 case Bytecodes::_fload_1:
duke@435 406 case Bytecodes::_fload_2:
duke@435 407 case Bytecodes::_fload_3:
duke@435 408 state.spush();
duke@435 409 break;
duke@435 410 case Bytecodes::_lload:
duke@435 411 case Bytecodes::_dload:
duke@435 412 case Bytecodes::_lload_0:
duke@435 413 case Bytecodes::_lload_1:
duke@435 414 case Bytecodes::_lload_2:
duke@435 415 case Bytecodes::_lload_3:
duke@435 416 case Bytecodes::_dload_0:
duke@435 417 case Bytecodes::_dload_1:
duke@435 418 case Bytecodes::_dload_2:
duke@435 419 case Bytecodes::_dload_3:
duke@435 420 state.lpush();
duke@435 421 break;
duke@435 422 case Bytecodes::_aload_0:
duke@435 423 state.apush(state._vars[0]);
duke@435 424 break;
duke@435 425 case Bytecodes::_aload_1:
duke@435 426 state.apush(state._vars[1]);
duke@435 427 break;
duke@435 428 case Bytecodes::_aload_2:
duke@435 429 state.apush(state._vars[2]);
duke@435 430 break;
duke@435 431 case Bytecodes::_aload_3:
duke@435 432 state.apush(state._vars[3]);
duke@435 433 break;
duke@435 434 case Bytecodes::_iaload:
duke@435 435 case Bytecodes::_faload:
duke@435 436 case Bytecodes::_baload:
duke@435 437 case Bytecodes::_caload:
duke@435 438 case Bytecodes::_saload:
duke@435 439 state.spop();
duke@435 440 set_method_escape(state.apop());
duke@435 441 state.spush();
duke@435 442 break;
duke@435 443 case Bytecodes::_laload:
duke@435 444 case Bytecodes::_daload:
duke@435 445 state.spop();
duke@435 446 set_method_escape(state.apop());
duke@435 447 state.lpush();
duke@435 448 break;
duke@435 449 case Bytecodes::_aaload:
duke@435 450 { state.spop();
duke@435 451 ArgumentMap array = state.apop();
duke@435 452 set_method_escape(array);
duke@435 453 state.apush(unknown_obj);
duke@435 454 set_dirty(array);
duke@435 455 }
duke@435 456 break;
duke@435 457 case Bytecodes::_istore:
duke@435 458 case Bytecodes::_fstore:
duke@435 459 case Bytecodes::_istore_0:
duke@435 460 case Bytecodes::_istore_1:
duke@435 461 case Bytecodes::_istore_2:
duke@435 462 case Bytecodes::_istore_3:
duke@435 463 case Bytecodes::_fstore_0:
duke@435 464 case Bytecodes::_fstore_1:
duke@435 465 case Bytecodes::_fstore_2:
duke@435 466 case Bytecodes::_fstore_3:
duke@435 467 state.spop();
duke@435 468 break;
duke@435 469 case Bytecodes::_lstore:
duke@435 470 case Bytecodes::_dstore:
duke@435 471 case Bytecodes::_lstore_0:
duke@435 472 case Bytecodes::_lstore_1:
duke@435 473 case Bytecodes::_lstore_2:
duke@435 474 case Bytecodes::_lstore_3:
duke@435 475 case Bytecodes::_dstore_0:
duke@435 476 case Bytecodes::_dstore_1:
duke@435 477 case Bytecodes::_dstore_2:
duke@435 478 case Bytecodes::_dstore_3:
duke@435 479 state.lpop();
duke@435 480 break;
duke@435 481 case Bytecodes::_astore:
duke@435 482 state._vars[s.get_index()] = state.apop();
duke@435 483 break;
duke@435 484 case Bytecodes::_astore_0:
duke@435 485 state._vars[0] = state.apop();
duke@435 486 break;
duke@435 487 case Bytecodes::_astore_1:
duke@435 488 state._vars[1] = state.apop();
duke@435 489 break;
duke@435 490 case Bytecodes::_astore_2:
duke@435 491 state._vars[2] = state.apop();
duke@435 492 break;
duke@435 493 case Bytecodes::_astore_3:
duke@435 494 state._vars[3] = state.apop();
duke@435 495 break;
duke@435 496 case Bytecodes::_iastore:
duke@435 497 case Bytecodes::_fastore:
duke@435 498 case Bytecodes::_bastore:
duke@435 499 case Bytecodes::_castore:
duke@435 500 case Bytecodes::_sastore:
duke@435 501 {
duke@435 502 state.spop();
duke@435 503 state.spop();
duke@435 504 ArgumentMap arr = state.apop();
duke@435 505 set_method_escape(arr);
kvn@480 506 set_modified(arr, OFFSET_ANY, type2size[T_INT]*HeapWordSize);
duke@435 507 break;
duke@435 508 }
duke@435 509 case Bytecodes::_lastore:
duke@435 510 case Bytecodes::_dastore:
duke@435 511 {
duke@435 512 state.lpop();
duke@435 513 state.spop();
duke@435 514 ArgumentMap arr = state.apop();
duke@435 515 set_method_escape(arr);
kvn@480 516 set_modified(arr, OFFSET_ANY, type2size[T_LONG]*HeapWordSize);
duke@435 517 break;
duke@435 518 }
duke@435 519 case Bytecodes::_aastore:
duke@435 520 {
duke@435 521 set_global_escape(state.apop());
duke@435 522 state.spop();
duke@435 523 ArgumentMap arr = state.apop();
kvn@480 524 set_modified(arr, OFFSET_ANY, type2size[T_OBJECT]*HeapWordSize);
duke@435 525 break;
duke@435 526 }
duke@435 527 case Bytecodes::_pop:
duke@435 528 state.raw_pop();
duke@435 529 break;
duke@435 530 case Bytecodes::_pop2:
duke@435 531 state.raw_pop();
duke@435 532 state.raw_pop();
duke@435 533 break;
duke@435 534 case Bytecodes::_dup:
duke@435 535 { ArgumentMap w1 = state.raw_pop();
duke@435 536 state.raw_push(w1);
duke@435 537 state.raw_push(w1);
duke@435 538 }
duke@435 539 break;
duke@435 540 case Bytecodes::_dup_x1:
duke@435 541 { ArgumentMap w1 = state.raw_pop();
duke@435 542 ArgumentMap w2 = state.raw_pop();
duke@435 543 state.raw_push(w1);
duke@435 544 state.raw_push(w2);
duke@435 545 state.raw_push(w1);
duke@435 546 }
duke@435 547 break;
duke@435 548 case Bytecodes::_dup_x2:
duke@435 549 { ArgumentMap w1 = state.raw_pop();
duke@435 550 ArgumentMap w2 = state.raw_pop();
duke@435 551 ArgumentMap w3 = state.raw_pop();
duke@435 552 state.raw_push(w1);
duke@435 553 state.raw_push(w3);
duke@435 554 state.raw_push(w2);
duke@435 555 state.raw_push(w1);
duke@435 556 }
duke@435 557 break;
duke@435 558 case Bytecodes::_dup2:
duke@435 559 { ArgumentMap w1 = state.raw_pop();
duke@435 560 ArgumentMap w2 = state.raw_pop();
duke@435 561 state.raw_push(w2);
duke@435 562 state.raw_push(w1);
duke@435 563 state.raw_push(w2);
duke@435 564 state.raw_push(w1);
duke@435 565 }
duke@435 566 break;
duke@435 567 case Bytecodes::_dup2_x1:
duke@435 568 { ArgumentMap w1 = state.raw_pop();
duke@435 569 ArgumentMap w2 = state.raw_pop();
duke@435 570 ArgumentMap w3 = state.raw_pop();
duke@435 571 state.raw_push(w2);
duke@435 572 state.raw_push(w1);
duke@435 573 state.raw_push(w3);
duke@435 574 state.raw_push(w2);
duke@435 575 state.raw_push(w1);
duke@435 576 }
duke@435 577 break;
duke@435 578 case Bytecodes::_dup2_x2:
duke@435 579 { ArgumentMap w1 = state.raw_pop();
duke@435 580 ArgumentMap w2 = state.raw_pop();
duke@435 581 ArgumentMap w3 = state.raw_pop();
duke@435 582 ArgumentMap w4 = state.raw_pop();
duke@435 583 state.raw_push(w2);
duke@435 584 state.raw_push(w1);
duke@435 585 state.raw_push(w4);
duke@435 586 state.raw_push(w3);
duke@435 587 state.raw_push(w2);
duke@435 588 state.raw_push(w1);
duke@435 589 }
duke@435 590 break;
duke@435 591 case Bytecodes::_swap:
duke@435 592 { ArgumentMap w1 = state.raw_pop();
duke@435 593 ArgumentMap w2 = state.raw_pop();
duke@435 594 state.raw_push(w1);
duke@435 595 state.raw_push(w2);
duke@435 596 }
duke@435 597 break;
duke@435 598 case Bytecodes::_iadd:
duke@435 599 case Bytecodes::_fadd:
duke@435 600 case Bytecodes::_isub:
duke@435 601 case Bytecodes::_fsub:
duke@435 602 case Bytecodes::_imul:
duke@435 603 case Bytecodes::_fmul:
duke@435 604 case Bytecodes::_idiv:
duke@435 605 case Bytecodes::_fdiv:
duke@435 606 case Bytecodes::_irem:
duke@435 607 case Bytecodes::_frem:
duke@435 608 case Bytecodes::_iand:
duke@435 609 case Bytecodes::_ior:
duke@435 610 case Bytecodes::_ixor:
duke@435 611 state.spop();
duke@435 612 state.spop();
duke@435 613 state.spush();
duke@435 614 break;
duke@435 615 case Bytecodes::_ladd:
duke@435 616 case Bytecodes::_dadd:
duke@435 617 case Bytecodes::_lsub:
duke@435 618 case Bytecodes::_dsub:
duke@435 619 case Bytecodes::_lmul:
duke@435 620 case Bytecodes::_dmul:
duke@435 621 case Bytecodes::_ldiv:
duke@435 622 case Bytecodes::_ddiv:
duke@435 623 case Bytecodes::_lrem:
duke@435 624 case Bytecodes::_drem:
duke@435 625 case Bytecodes::_land:
duke@435 626 case Bytecodes::_lor:
duke@435 627 case Bytecodes::_lxor:
duke@435 628 state.lpop();
duke@435 629 state.lpop();
duke@435 630 state.lpush();
duke@435 631 break;
duke@435 632 case Bytecodes::_ishl:
duke@435 633 case Bytecodes::_ishr:
duke@435 634 case Bytecodes::_iushr:
duke@435 635 state.spop();
duke@435 636 state.spop();
duke@435 637 state.spush();
duke@435 638 break;
duke@435 639 case Bytecodes::_lshl:
duke@435 640 case Bytecodes::_lshr:
duke@435 641 case Bytecodes::_lushr:
duke@435 642 state.spop();
duke@435 643 state.lpop();
duke@435 644 state.lpush();
duke@435 645 break;
duke@435 646 case Bytecodes::_ineg:
duke@435 647 case Bytecodes::_fneg:
duke@435 648 state.spop();
duke@435 649 state.spush();
duke@435 650 break;
duke@435 651 case Bytecodes::_lneg:
duke@435 652 case Bytecodes::_dneg:
duke@435 653 state.lpop();
duke@435 654 state.lpush();
duke@435 655 break;
duke@435 656 case Bytecodes::_iinc:
duke@435 657 break;
duke@435 658 case Bytecodes::_i2l:
duke@435 659 case Bytecodes::_i2d:
duke@435 660 case Bytecodes::_f2l:
duke@435 661 case Bytecodes::_f2d:
duke@435 662 state.spop();
duke@435 663 state.lpush();
duke@435 664 break;
duke@435 665 case Bytecodes::_i2f:
duke@435 666 case Bytecodes::_f2i:
duke@435 667 state.spop();
duke@435 668 state.spush();
duke@435 669 break;
duke@435 670 case Bytecodes::_l2i:
duke@435 671 case Bytecodes::_l2f:
duke@435 672 case Bytecodes::_d2i:
duke@435 673 case Bytecodes::_d2f:
duke@435 674 state.lpop();
duke@435 675 state.spush();
duke@435 676 break;
duke@435 677 case Bytecodes::_l2d:
duke@435 678 case Bytecodes::_d2l:
duke@435 679 state.lpop();
duke@435 680 state.lpush();
duke@435 681 break;
duke@435 682 case Bytecodes::_i2b:
duke@435 683 case Bytecodes::_i2c:
duke@435 684 case Bytecodes::_i2s:
duke@435 685 state.spop();
duke@435 686 state.spush();
duke@435 687 break;
duke@435 688 case Bytecodes::_lcmp:
duke@435 689 case Bytecodes::_dcmpl:
duke@435 690 case Bytecodes::_dcmpg:
duke@435 691 state.lpop();
duke@435 692 state.lpop();
duke@435 693 state.spush();
duke@435 694 break;
duke@435 695 case Bytecodes::_fcmpl:
duke@435 696 case Bytecodes::_fcmpg:
duke@435 697 state.spop();
duke@435 698 state.spop();
duke@435 699 state.spush();
duke@435 700 break;
duke@435 701 case Bytecodes::_ifeq:
duke@435 702 case Bytecodes::_ifne:
duke@435 703 case Bytecodes::_iflt:
duke@435 704 case Bytecodes::_ifge:
duke@435 705 case Bytecodes::_ifgt:
duke@435 706 case Bytecodes::_ifle:
duke@435 707 {
duke@435 708 state.spop();
duke@435 709 int dest_bci = s.get_dest();
duke@435 710 assert(_methodBlocks->is_block_start(dest_bci), "branch destination must start a block");
duke@435 711 assert(s.next_bci() == limit_bci, "branch must end block");
duke@435 712 successors.push(_methodBlocks->block_containing(dest_bci));
duke@435 713 break;
duke@435 714 }
duke@435 715 case Bytecodes::_if_icmpeq:
duke@435 716 case Bytecodes::_if_icmpne:
duke@435 717 case Bytecodes::_if_icmplt:
duke@435 718 case Bytecodes::_if_icmpge:
duke@435 719 case Bytecodes::_if_icmpgt:
duke@435 720 case Bytecodes::_if_icmple:
duke@435 721 {
duke@435 722 state.spop();
duke@435 723 state.spop();
duke@435 724 int dest_bci = s.get_dest();
duke@435 725 assert(_methodBlocks->is_block_start(dest_bci), "branch destination must start a block");
duke@435 726 assert(s.next_bci() == limit_bci, "branch must end block");
duke@435 727 successors.push(_methodBlocks->block_containing(dest_bci));
duke@435 728 break;
duke@435 729 }
duke@435 730 case Bytecodes::_if_acmpeq:
duke@435 731 case Bytecodes::_if_acmpne:
duke@435 732 {
duke@435 733 set_method_escape(state.apop());
duke@435 734 set_method_escape(state.apop());
duke@435 735 int dest_bci = s.get_dest();
duke@435 736 assert(_methodBlocks->is_block_start(dest_bci), "branch destination must start a block");
duke@435 737 assert(s.next_bci() == limit_bci, "branch must end block");
duke@435 738 successors.push(_methodBlocks->block_containing(dest_bci));
duke@435 739 break;
duke@435 740 }
duke@435 741 case Bytecodes::_goto:
duke@435 742 {
duke@435 743 int dest_bci = s.get_dest();
duke@435 744 assert(_methodBlocks->is_block_start(dest_bci), "branch destination must start a block");
duke@435 745 assert(s.next_bci() == limit_bci, "branch must end block");
duke@435 746 successors.push(_methodBlocks->block_containing(dest_bci));
duke@435 747 fall_through = false;
duke@435 748 break;
duke@435 749 }
duke@435 750 case Bytecodes::_jsr:
duke@435 751 {
duke@435 752 int dest_bci = s.get_dest();
duke@435 753 assert(_methodBlocks->is_block_start(dest_bci), "branch destination must start a block");
duke@435 754 assert(s.next_bci() == limit_bci, "branch must end block");
duke@435 755 state.apush(empty_map);
duke@435 756 successors.push(_methodBlocks->block_containing(dest_bci));
duke@435 757 fall_through = false;
duke@435 758 break;
duke@435 759 }
duke@435 760 case Bytecodes::_ret:
duke@435 761 // we don't track the destination of a "ret" instruction
duke@435 762 assert(s.next_bci() == limit_bci, "branch must end block");
duke@435 763 fall_through = false;
duke@435 764 break;
duke@435 765 case Bytecodes::_return:
duke@435 766 assert(s.next_bci() == limit_bci, "return must end block");
duke@435 767 fall_through = false;
duke@435 768 break;
duke@435 769 case Bytecodes::_tableswitch:
duke@435 770 {
duke@435 771 state.spop();
duke@435 772 Bytecode_tableswitch* switch_ = Bytecode_tableswitch_at(s.cur_bcp());
duke@435 773 int len = switch_->length();
duke@435 774 int dest_bci;
duke@435 775 for (int i = 0; i < len; i++) {
duke@435 776 dest_bci = s.cur_bci() + switch_->dest_offset_at(i);
duke@435 777 assert(_methodBlocks->is_block_start(dest_bci), "branch destination must start a block");
duke@435 778 successors.push(_methodBlocks->block_containing(dest_bci));
duke@435 779 }
duke@435 780 dest_bci = s.cur_bci() + switch_->default_offset();
duke@435 781 assert(_methodBlocks->is_block_start(dest_bci), "branch destination must start a block");
duke@435 782 successors.push(_methodBlocks->block_containing(dest_bci));
duke@435 783 assert(s.next_bci() == limit_bci, "branch must end block");
duke@435 784 fall_through = false;
duke@435 785 break;
duke@435 786 }
duke@435 787 case Bytecodes::_lookupswitch:
duke@435 788 {
duke@435 789 state.spop();
duke@435 790 Bytecode_lookupswitch* switch_ = Bytecode_lookupswitch_at(s.cur_bcp());
duke@435 791 int len = switch_->number_of_pairs();
duke@435 792 int dest_bci;
duke@435 793 for (int i = 0; i < len; i++) {
duke@435 794 dest_bci = s.cur_bci() + switch_->pair_at(i)->offset();
duke@435 795 assert(_methodBlocks->is_block_start(dest_bci), "branch destination must start a block");
duke@435 796 successors.push(_methodBlocks->block_containing(dest_bci));
duke@435 797 }
duke@435 798 dest_bci = s.cur_bci() + switch_->default_offset();
duke@435 799 assert(_methodBlocks->is_block_start(dest_bci), "branch destination must start a block");
duke@435 800 successors.push(_methodBlocks->block_containing(dest_bci));
duke@435 801 fall_through = false;
duke@435 802 break;
duke@435 803 }
duke@435 804 case Bytecodes::_ireturn:
duke@435 805 case Bytecodes::_freturn:
duke@435 806 state.spop();
duke@435 807 fall_through = false;
duke@435 808 break;
duke@435 809 case Bytecodes::_lreturn:
duke@435 810 case Bytecodes::_dreturn:
duke@435 811 state.lpop();
duke@435 812 fall_through = false;
duke@435 813 break;
duke@435 814 case Bytecodes::_areturn:
duke@435 815 set_returned(state.apop());
duke@435 816 fall_through = false;
duke@435 817 break;
duke@435 818 case Bytecodes::_getstatic:
duke@435 819 case Bytecodes::_getfield:
duke@435 820 { bool will_link;
duke@435 821 ciField* field = s.get_field(will_link);
duke@435 822 BasicType field_type = field->type()->basic_type();
duke@435 823 if (s.cur_bc() != Bytecodes::_getstatic) {
duke@435 824 set_method_escape(state.apop());
duke@435 825 }
duke@435 826 if (field_type == T_OBJECT || field_type == T_ARRAY) {
duke@435 827 state.apush(unknown_obj);
duke@435 828 } else if (type2size[field_type] == 1) {
duke@435 829 state.spush();
duke@435 830 } else {
duke@435 831 state.lpush();
duke@435 832 }
duke@435 833 }
duke@435 834 break;
duke@435 835 case Bytecodes::_putstatic:
duke@435 836 case Bytecodes::_putfield:
duke@435 837 { bool will_link;
duke@435 838 ciField* field = s.get_field(will_link);
duke@435 839 BasicType field_type = field->type()->basic_type();
duke@435 840 if (field_type == T_OBJECT || field_type == T_ARRAY) {
duke@435 841 set_global_escape(state.apop());
duke@435 842 } else if (type2size[field_type] == 1) {
duke@435 843 state.spop();
duke@435 844 } else {
duke@435 845 state.lpop();
duke@435 846 }
duke@435 847 if (s.cur_bc() != Bytecodes::_putstatic) {
duke@435 848 ArgumentMap p = state.apop();
duke@435 849 set_method_escape(p);
kvn@480 850 set_modified(p, will_link ? field->offset() : OFFSET_ANY, type2size[field_type]*HeapWordSize);
duke@435 851 }
duke@435 852 }
duke@435 853 break;
duke@435 854 case Bytecodes::_invokevirtual:
duke@435 855 case Bytecodes::_invokespecial:
duke@435 856 case Bytecodes::_invokestatic:
jrose@1161 857 case Bytecodes::_invokedynamic:
duke@435 858 case Bytecodes::_invokeinterface:
duke@435 859 { bool will_link;
duke@435 860 ciMethod* target = s.get_method(will_link);
duke@435 861 ciKlass* holder = s.get_declared_method_holder();
duke@435 862 invoke(state, s.cur_bc(), target, holder);
duke@435 863 ciType* return_type = target->return_type();
duke@435 864 if (!return_type->is_primitive_type()) {
duke@435 865 state.apush(unknown_obj);
duke@435 866 } else if (return_type->is_one_word()) {
duke@435 867 state.spush();
duke@435 868 } else if (return_type->is_two_word()) {
duke@435 869 state.lpush();
duke@435 870 }
duke@435 871 }
duke@435 872 break;
duke@435 873 case Bytecodes::_new:
duke@435 874 state.apush(allocated_obj);
duke@435 875 break;
duke@435 876 case Bytecodes::_newarray:
duke@435 877 case Bytecodes::_anewarray:
duke@435 878 state.spop();
duke@435 879 state.apush(allocated_obj);
duke@435 880 break;
duke@435 881 case Bytecodes::_multianewarray:
duke@435 882 { int i = s.cur_bcp()[3];
duke@435 883 while (i-- > 0) state.spop();
duke@435 884 state.apush(allocated_obj);
duke@435 885 }
duke@435 886 break;
duke@435 887 case Bytecodes::_arraylength:
duke@435 888 set_method_escape(state.apop());
duke@435 889 state.spush();
duke@435 890 break;
duke@435 891 case Bytecodes::_athrow:
duke@435 892 set_global_escape(state.apop());
duke@435 893 fall_through = false;
duke@435 894 break;
duke@435 895 case Bytecodes::_checkcast:
duke@435 896 { ArgumentMap obj = state.apop();
duke@435 897 set_method_escape(obj);
duke@435 898 state.apush(obj);
duke@435 899 }
duke@435 900 break;
duke@435 901 case Bytecodes::_instanceof:
duke@435 902 set_method_escape(state.apop());
duke@435 903 state.spush();
duke@435 904 break;
duke@435 905 case Bytecodes::_monitorenter:
duke@435 906 case Bytecodes::_monitorexit:
duke@435 907 state.apop();
duke@435 908 break;
duke@435 909 case Bytecodes::_wide:
duke@435 910 ShouldNotReachHere();
duke@435 911 break;
duke@435 912 case Bytecodes::_ifnull:
duke@435 913 case Bytecodes::_ifnonnull:
duke@435 914 {
duke@435 915 set_method_escape(state.apop());
duke@435 916 int dest_bci = s.get_dest();
duke@435 917 assert(_methodBlocks->is_block_start(dest_bci), "branch destination must start a block");
duke@435 918 assert(s.next_bci() == limit_bci, "branch must end block");
duke@435 919 successors.push(_methodBlocks->block_containing(dest_bci));
duke@435 920 break;
duke@435 921 }
duke@435 922 case Bytecodes::_goto_w:
duke@435 923 {
duke@435 924 int dest_bci = s.get_far_dest();
duke@435 925 assert(_methodBlocks->is_block_start(dest_bci), "branch destination must start a block");
duke@435 926 assert(s.next_bci() == limit_bci, "branch must end block");
duke@435 927 successors.push(_methodBlocks->block_containing(dest_bci));
duke@435 928 fall_through = false;
duke@435 929 break;
duke@435 930 }
duke@435 931 case Bytecodes::_jsr_w:
duke@435 932 {
duke@435 933 int dest_bci = s.get_far_dest();
duke@435 934 assert(_methodBlocks->is_block_start(dest_bci), "branch destination must start a block");
duke@435 935 assert(s.next_bci() == limit_bci, "branch must end block");
duke@435 936 state.apush(empty_map);
duke@435 937 successors.push(_methodBlocks->block_containing(dest_bci));
duke@435 938 fall_through = false;
duke@435 939 break;
duke@435 940 }
duke@435 941 case Bytecodes::_breakpoint:
duke@435 942 break;
duke@435 943 default:
duke@435 944 ShouldNotReachHere();
duke@435 945 break;
duke@435 946 }
duke@435 947
duke@435 948 }
duke@435 949 if (fall_through) {
duke@435 950 int fall_through_bci = s.cur_bci();
duke@435 951 if (fall_through_bci < _method->code_size()) {
duke@435 952 assert(_methodBlocks->is_block_start(fall_through_bci), "must fall through to block start.");
duke@435 953 successors.push(_methodBlocks->block_containing(fall_through_bci));
duke@435 954 }
duke@435 955 }
duke@435 956 }
duke@435 957
duke@435 958 void BCEscapeAnalyzer::merge_block_states(StateInfo *blockstates, ciBlock *dest, StateInfo *s_state) {
kvn@480 959 StateInfo *d_state = blockstates + dest->index();
duke@435 960 int nlocals = _method->max_locals();
duke@435 961
duke@435 962 // exceptions may cause transfer of control to handlers in the middle of a
duke@435 963 // block, so we don't merge the incoming state of exception handlers
duke@435 964 if (dest->is_handler())
duke@435 965 return;
duke@435 966 if (!d_state->_initialized ) {
duke@435 967 // destination not initialized, just copy
duke@435 968 for (int i = 0; i < nlocals; i++) {
duke@435 969 d_state->_vars[i] = s_state->_vars[i];
duke@435 970 }
duke@435 971 for (int i = 0; i < s_state->_stack_height; i++) {
duke@435 972 d_state->_stack[i] = s_state->_stack[i];
duke@435 973 }
duke@435 974 d_state->_stack_height = s_state->_stack_height;
duke@435 975 d_state->_max_stack = s_state->_max_stack;
duke@435 976 d_state->_initialized = true;
duke@435 977 } else if (!dest->processed()) {
duke@435 978 // we have not yet walked the bytecodes of dest, we can merge
duke@435 979 // the states
duke@435 980 assert(d_state->_stack_height == s_state->_stack_height, "computed stack heights must match");
duke@435 981 for (int i = 0; i < nlocals; i++) {
duke@435 982 d_state->_vars[i].set_union(s_state->_vars[i]);
duke@435 983 }
duke@435 984 for (int i = 0; i < s_state->_stack_height; i++) {
duke@435 985 d_state->_stack[i].set_union(s_state->_stack[i]);
duke@435 986 }
duke@435 987 } else {
duke@435 988 // the bytecodes of dest have already been processed, mark any
duke@435 989 // arguments in the source state which are not in the dest state
duke@435 990 // as global escape.
duke@435 991 // Future refinement: we only need to mark these variable to the
duke@435 992 // maximum escape of any variables in dest state
duke@435 993 assert(d_state->_stack_height == s_state->_stack_height, "computed stack heights must match");
duke@435 994 ArgumentMap extra_vars;
duke@435 995 for (int i = 0; i < nlocals; i++) {
duke@435 996 ArgumentMap t;
duke@435 997 t = s_state->_vars[i];
duke@435 998 t.set_difference(d_state->_vars[i]);
duke@435 999 extra_vars.set_union(t);
duke@435 1000 }
duke@435 1001 for (int i = 0; i < s_state->_stack_height; i++) {
duke@435 1002 ArgumentMap t;
kvn@480 1003 //extra_vars |= !d_state->_vars[i] & s_state->_vars[i];
duke@435 1004 t.clear();
duke@435 1005 t = s_state->_stack[i];
duke@435 1006 t.set_difference(d_state->_stack[i]);
duke@435 1007 extra_vars.set_union(t);
duke@435 1008 }
duke@435 1009 set_global_escape(extra_vars);
duke@435 1010 }
duke@435 1011 }
duke@435 1012
duke@435 1013 void BCEscapeAnalyzer::iterate_blocks(Arena *arena) {
duke@435 1014 int numblocks = _methodBlocks->num_blocks();
duke@435 1015 int stkSize = _method->max_stack();
duke@435 1016 int numLocals = _method->max_locals();
duke@435 1017 StateInfo state;
duke@435 1018
duke@435 1019 int datacount = (numblocks + 1) * (stkSize + numLocals);
duke@435 1020 int datasize = datacount * sizeof(ArgumentMap);
kvn@480 1021 StateInfo *blockstates = (StateInfo *) arena->Amalloc(numblocks * sizeof(StateInfo));
duke@435 1022 ArgumentMap *statedata = (ArgumentMap *) arena->Amalloc(datasize);
duke@435 1023 for (int i = 0; i < datacount; i++) ::new ((void*)&statedata[i]) ArgumentMap();
duke@435 1024 ArgumentMap *dp = statedata;
duke@435 1025 state._vars = dp;
duke@435 1026 dp += numLocals;
duke@435 1027 state._stack = dp;
duke@435 1028 dp += stkSize;
duke@435 1029 state._initialized = false;
duke@435 1030 state._max_stack = stkSize;
duke@435 1031 for (int i = 0; i < numblocks; i++) {
duke@435 1032 blockstates[i]._vars = dp;
duke@435 1033 dp += numLocals;
duke@435 1034 blockstates[i]._stack = dp;
duke@435 1035 dp += stkSize;
duke@435 1036 blockstates[i]._initialized = false;
duke@435 1037 blockstates[i]._stack_height = 0;
duke@435 1038 blockstates[i]._max_stack = stkSize;
duke@435 1039 }
duke@435 1040 GrowableArray<ciBlock *> worklist(arena, numblocks / 4, 0, NULL);
duke@435 1041 GrowableArray<ciBlock *> successors(arena, 4, 0, NULL);
duke@435 1042
duke@435 1043 _methodBlocks->clear_processed();
duke@435 1044
duke@435 1045 // initialize block 0 state from method signature
duke@435 1046 ArgumentMap allVars; // all oop arguments to method
duke@435 1047 ciSignature* sig = method()->signature();
duke@435 1048 int j = 0;
kvn@480 1049 ciBlock* first_blk = _methodBlocks->block_containing(0);
kvn@480 1050 int fb_i = first_blk->index();
duke@435 1051 if (!method()->is_static()) {
duke@435 1052 // record information for "this"
kvn@480 1053 blockstates[fb_i]._vars[j].set(j);
duke@435 1054 allVars.add(j);
duke@435 1055 j++;
duke@435 1056 }
duke@435 1057 for (int i = 0; i < sig->count(); i++) {
duke@435 1058 ciType* t = sig->type_at(i);
duke@435 1059 if (!t->is_primitive_type()) {
kvn@480 1060 blockstates[fb_i]._vars[j].set(j);
duke@435 1061 allVars.add(j);
duke@435 1062 }
duke@435 1063 j += t->size();
duke@435 1064 }
kvn@480 1065 blockstates[fb_i]._initialized = true;
duke@435 1066 assert(j == _arg_size, "just checking");
duke@435 1067
duke@435 1068 ArgumentMap unknown_map;
duke@435 1069 unknown_map.add_unknown();
duke@435 1070
kvn@480 1071 worklist.push(first_blk);
duke@435 1072 while(worklist.length() > 0) {
duke@435 1073 ciBlock *blk = worklist.pop();
kvn@480 1074 StateInfo *blkState = blockstates + blk->index();
duke@435 1075 if (blk->is_handler() || blk->is_ret_target()) {
duke@435 1076 // for an exception handler or a target of a ret instruction, we assume the worst case,
kvn@480 1077 // that any variable could contain any argument
duke@435 1078 for (int i = 0; i < numLocals; i++) {
duke@435 1079 state._vars[i] = allVars;
duke@435 1080 }
duke@435 1081 if (blk->is_handler()) {
duke@435 1082 state._stack_height = 1;
duke@435 1083 } else {
duke@435 1084 state._stack_height = blkState->_stack_height;
duke@435 1085 }
duke@435 1086 for (int i = 0; i < state._stack_height; i++) {
kvn@480 1087 // ??? should this be unknown_map ???
duke@435 1088 state._stack[i] = allVars;
duke@435 1089 }
duke@435 1090 } else {
duke@435 1091 for (int i = 0; i < numLocals; i++) {
duke@435 1092 state._vars[i] = blkState->_vars[i];
duke@435 1093 }
duke@435 1094 for (int i = 0; i < blkState->_stack_height; i++) {
duke@435 1095 state._stack[i] = blkState->_stack[i];
duke@435 1096 }
duke@435 1097 state._stack_height = blkState->_stack_height;
duke@435 1098 }
duke@435 1099 iterate_one_block(blk, state, successors);
duke@435 1100 // if this block has any exception handlers, push them
duke@435 1101 // onto successor list
duke@435 1102 if (blk->has_handler()) {
duke@435 1103 DEBUG_ONLY(int handler_count = 0;)
duke@435 1104 int blk_start = blk->start_bci();
duke@435 1105 int blk_end = blk->limit_bci();
duke@435 1106 for (int i = 0; i < numblocks; i++) {
duke@435 1107 ciBlock *b = _methodBlocks->block(i);
duke@435 1108 if (b->is_handler()) {
duke@435 1109 int ex_start = b->ex_start_bci();
duke@435 1110 int ex_end = b->ex_limit_bci();
duke@435 1111 if ((ex_start >= blk_start && ex_start < blk_end) ||
duke@435 1112 (ex_end > blk_start && ex_end <= blk_end)) {
duke@435 1113 successors.push(b);
duke@435 1114 }
duke@435 1115 DEBUG_ONLY(handler_count++;)
duke@435 1116 }
duke@435 1117 }
duke@435 1118 assert(handler_count > 0, "must find at least one handler");
duke@435 1119 }
duke@435 1120 // merge computed variable state with successors
duke@435 1121 while(successors.length() > 0) {
duke@435 1122 ciBlock *succ = successors.pop();
duke@435 1123 merge_block_states(blockstates, succ, &state);
duke@435 1124 if (!succ->processed())
duke@435 1125 worklist.push(succ);
duke@435 1126 }
duke@435 1127 }
duke@435 1128 }
duke@435 1129
duke@435 1130 bool BCEscapeAnalyzer::do_analysis() {
duke@435 1131 Arena* arena = CURRENT_ENV->arena();
duke@435 1132 // identify basic blocks
duke@435 1133 _methodBlocks = _method->get_method_blocks();
duke@435 1134
duke@435 1135 iterate_blocks(arena);
duke@435 1136 // TEMPORARY
duke@435 1137 return true;
duke@435 1138 }
duke@435 1139
duke@435 1140 vmIntrinsics::ID BCEscapeAnalyzer::known_intrinsic() {
duke@435 1141 vmIntrinsics::ID iid = method()->intrinsic_id();
duke@435 1142
duke@435 1143 if (iid == vmIntrinsics::_getClass ||
kvn@480 1144 iid == vmIntrinsics::_fillInStackTrace ||
duke@435 1145 iid == vmIntrinsics::_hashCode)
duke@435 1146 return iid;
duke@435 1147 else
duke@435 1148 return vmIntrinsics::_none;
duke@435 1149 }
duke@435 1150
duke@435 1151 bool BCEscapeAnalyzer::compute_escape_for_intrinsic(vmIntrinsics::ID iid) {
kvn@480 1152 ArgumentMap arg;
kvn@480 1153 arg.clear();
duke@435 1154 switch (iid) {
duke@435 1155 case vmIntrinsics::_getClass:
duke@435 1156 _return_local = false;
duke@435 1157 break;
kvn@480 1158 case vmIntrinsics::_fillInStackTrace:
kvn@480 1159 arg.set(0); // 'this'
kvn@480 1160 set_returned(arg);
kvn@480 1161 break;
duke@435 1162 case vmIntrinsics::_hashCode:
duke@435 1163 // initialized state is correct
duke@435 1164 break;
duke@435 1165 default:
duke@435 1166 assert(false, "unexpected intrinsic");
duke@435 1167 }
duke@435 1168 return true;
duke@435 1169 }
duke@435 1170
duke@435 1171 void BCEscapeAnalyzer::initialize() {
duke@435 1172 int i;
duke@435 1173
duke@435 1174 // clear escape information (method may have been deoptimized)
duke@435 1175 methodData()->clear_escape_info();
duke@435 1176
duke@435 1177 // initialize escape state of object parameters
duke@435 1178 ciSignature* sig = method()->signature();
duke@435 1179 int j = 0;
duke@435 1180 if (!method()->is_static()) {
kvn@2003 1181 _arg_local.set(0);
kvn@2003 1182 _arg_stack.set(0);
duke@435 1183 j++;
duke@435 1184 }
duke@435 1185 for (i = 0; i < sig->count(); i++) {
duke@435 1186 ciType* t = sig->type_at(i);
duke@435 1187 if (!t->is_primitive_type()) {
kvn@2003 1188 _arg_local.set(j);
kvn@2003 1189 _arg_stack.set(j);
duke@435 1190 }
duke@435 1191 j += t->size();
duke@435 1192 }
duke@435 1193 assert(j == _arg_size, "just checking");
duke@435 1194
duke@435 1195 // start with optimistic assumption
duke@435 1196 ciType *rt = _method->return_type();
duke@435 1197 if (rt->is_primitive_type()) {
duke@435 1198 _return_local = false;
duke@435 1199 _return_allocated = false;
duke@435 1200 } else {
duke@435 1201 _return_local = true;
duke@435 1202 _return_allocated = true;
duke@435 1203 }
duke@435 1204 _allocated_escapes = false;
kvn@480 1205 _unknown_modified = false;
duke@435 1206 }
duke@435 1207
duke@435 1208 void BCEscapeAnalyzer::clear_escape_info() {
duke@435 1209 ciSignature* sig = method()->signature();
duke@435 1210 int arg_count = sig->count();
duke@435 1211 ArgumentMap var;
kvn@480 1212 if (!method()->is_static()) {
kvn@480 1213 arg_count++; // allow for "this"
kvn@480 1214 }
duke@435 1215 for (int i = 0; i < arg_count; i++) {
kvn@480 1216 set_arg_modified(i, OFFSET_ANY, 4);
duke@435 1217 var.clear();
duke@435 1218 var.set(i);
kvn@480 1219 set_modified(var, OFFSET_ANY, 4);
duke@435 1220 set_global_escape(var);
duke@435 1221 }
kvn@2003 1222 _arg_local.Clear();
kvn@2003 1223 _arg_stack.Clear();
kvn@2003 1224 _arg_returned.Clear();
duke@435 1225 _return_local = false;
duke@435 1226 _return_allocated = false;
duke@435 1227 _allocated_escapes = true;
kvn@480 1228 _unknown_modified = true;
duke@435 1229 }
duke@435 1230
duke@435 1231
duke@435 1232 void BCEscapeAnalyzer::compute_escape_info() {
duke@435 1233 int i;
duke@435 1234 assert(!methodData()->has_escape_info(), "do not overwrite escape info");
duke@435 1235
duke@435 1236 vmIntrinsics::ID iid = known_intrinsic();
duke@435 1237
duke@435 1238 // check if method can be analyzed
duke@435 1239 if (iid == vmIntrinsics::_none && (method()->is_abstract() || method()->is_native() || !method()->holder()->is_initialized()
duke@435 1240 || _level > MaxBCEAEstimateLevel
duke@435 1241 || method()->code_size() > MaxBCEAEstimateSize)) {
duke@435 1242 if (BCEATraceLevel >= 1) {
duke@435 1243 tty->print("Skipping method because: ");
duke@435 1244 if (method()->is_abstract())
duke@435 1245 tty->print_cr("method is abstract.");
duke@435 1246 else if (method()->is_native())
duke@435 1247 tty->print_cr("method is native.");
duke@435 1248 else if (!method()->holder()->is_initialized())
duke@435 1249 tty->print_cr("class of method is not initialized.");
duke@435 1250 else if (_level > MaxBCEAEstimateLevel)
duke@435 1251 tty->print_cr("level (%d) exceeds MaxBCEAEstimateLevel (%d).",
duke@435 1252 _level, MaxBCEAEstimateLevel);
duke@435 1253 else if (method()->code_size() > MaxBCEAEstimateSize)
duke@435 1254 tty->print_cr("code size (%d) exceeds MaxBCEAEstimateSize.",
duke@435 1255 method()->code_size(), MaxBCEAEstimateSize);
duke@435 1256 else
duke@435 1257 ShouldNotReachHere();
duke@435 1258 }
duke@435 1259 clear_escape_info();
duke@435 1260
duke@435 1261 return;
duke@435 1262 }
duke@435 1263
duke@435 1264 if (BCEATraceLevel >= 1) {
duke@435 1265 tty->print("[EA] estimating escape information for");
duke@435 1266 if (iid != vmIntrinsics::_none)
duke@435 1267 tty->print(" intrinsic");
duke@435 1268 method()->print_short_name();
duke@435 1269 tty->print_cr(" (%d bytes)", method()->code_size());
duke@435 1270 }
duke@435 1271
duke@435 1272 bool success;
duke@435 1273
duke@435 1274 initialize();
duke@435 1275
kvn@513 1276 // Do not scan method if it has no object parameters and
kvn@513 1277 // does not returns an object (_return_allocated is set in initialize()).
kvn@2003 1278 if (_arg_local.Size() == 0 && !_return_allocated) {
kvn@513 1279 // Clear all info since method's bytecode was not analysed and
kvn@513 1280 // set pessimistic escape information.
kvn@513 1281 clear_escape_info();
kvn@513 1282 methodData()->set_eflag(methodDataOopDesc::allocated_escapes);
kvn@513 1283 methodData()->set_eflag(methodDataOopDesc::unknown_modified);
duke@435 1284 methodData()->set_eflag(methodDataOopDesc::estimated);
duke@435 1285 return;
duke@435 1286 }
duke@435 1287
duke@435 1288 if (iid != vmIntrinsics::_none)
duke@435 1289 success = compute_escape_for_intrinsic(iid);
duke@435 1290 else {
duke@435 1291 success = do_analysis();
duke@435 1292 }
duke@435 1293
kvn@513 1294 // don't store interprocedural escape information if it introduces
kvn@513 1295 // dependencies or if method data is empty
duke@435 1296 //
duke@435 1297 if (!has_dependencies() && !methodData()->is_empty()) {
duke@435 1298 for (i = 0; i < _arg_size; i++) {
kvn@2003 1299 if (_arg_local.test(i)) {
kvn@2003 1300 assert(_arg_stack.test(i), "inconsistent escape info");
duke@435 1301 methodData()->set_arg_local(i);
duke@435 1302 methodData()->set_arg_stack(i);
kvn@2003 1303 } else if (_arg_stack.test(i)) {
duke@435 1304 methodData()->set_arg_stack(i);
duke@435 1305 }
kvn@2003 1306 if (_arg_returned.test(i)) {
duke@435 1307 methodData()->set_arg_returned(i);
duke@435 1308 }
kvn@480 1309 methodData()->set_arg_modified(i, _arg_modified[i]);
duke@435 1310 }
duke@435 1311 if (_return_local) {
duke@435 1312 methodData()->set_eflag(methodDataOopDesc::return_local);
duke@435 1313 }
kvn@513 1314 if (_return_allocated) {
kvn@513 1315 methodData()->set_eflag(methodDataOopDesc::return_allocated);
kvn@513 1316 }
kvn@513 1317 if (_allocated_escapes) {
kvn@513 1318 methodData()->set_eflag(methodDataOopDesc::allocated_escapes);
kvn@513 1319 }
kvn@513 1320 if (_unknown_modified) {
kvn@513 1321 methodData()->set_eflag(methodDataOopDesc::unknown_modified);
kvn@513 1322 }
duke@435 1323 methodData()->set_eflag(methodDataOopDesc::estimated);
duke@435 1324 }
duke@435 1325 }
duke@435 1326
duke@435 1327 void BCEscapeAnalyzer::read_escape_info() {
duke@435 1328 assert(methodData()->has_escape_info(), "no escape info available");
duke@435 1329
duke@435 1330 // read escape information from method descriptor
duke@435 1331 for (int i = 0; i < _arg_size; i++) {
kvn@2003 1332 if (methodData()->is_arg_local(i))
kvn@2003 1333 _arg_local.set(i);
kvn@2003 1334 if (methodData()->is_arg_stack(i))
kvn@2003 1335 _arg_stack.set(i);
kvn@2003 1336 if (methodData()->is_arg_returned(i))
kvn@2003 1337 _arg_returned.set(i);
kvn@480 1338 _arg_modified[i] = methodData()->arg_modified(i);
duke@435 1339 }
duke@435 1340 _return_local = methodData()->eflag_set(methodDataOopDesc::return_local);
kvn@513 1341 _return_allocated = methodData()->eflag_set(methodDataOopDesc::return_allocated);
kvn@513 1342 _allocated_escapes = methodData()->eflag_set(methodDataOopDesc::allocated_escapes);
kvn@513 1343 _unknown_modified = methodData()->eflag_set(methodDataOopDesc::unknown_modified);
duke@435 1344
duke@435 1345 }
duke@435 1346
kvn@513 1347 #ifndef PRODUCT
kvn@513 1348 void BCEscapeAnalyzer::dump() {
kvn@513 1349 tty->print("[EA] estimated escape information for");
kvn@513 1350 method()->print_short_name();
kvn@513 1351 tty->print_cr(has_dependencies() ? " (not stored)" : "");
kvn@513 1352 tty->print(" non-escaping args: ");
kvn@513 1353 _arg_local.print_on(tty);
kvn@513 1354 tty->print(" stack-allocatable args: ");
kvn@513 1355 _arg_stack.print_on(tty);
kvn@513 1356 if (_return_local) {
kvn@513 1357 tty->print(" returned args: ");
kvn@513 1358 _arg_returned.print_on(tty);
kvn@513 1359 } else if (is_return_allocated()) {
kvn@513 1360 tty->print_cr(" return allocated value");
kvn@513 1361 } else {
kvn@513 1362 tty->print_cr(" return non-local value");
kvn@513 1363 }
kvn@513 1364 tty->print(" modified args: ");
kvn@513 1365 for (int i = 0; i < _arg_size; i++) {
kvn@513 1366 if (_arg_modified[i] == 0)
kvn@513 1367 tty->print(" 0");
kvn@513 1368 else
kvn@513 1369 tty->print(" 0x%x", _arg_modified[i]);
kvn@513 1370 }
kvn@513 1371 tty->cr();
kvn@513 1372 tty->print(" flags: ");
kvn@513 1373 if (_return_allocated)
kvn@513 1374 tty->print(" return_allocated");
kvn@513 1375 if (_allocated_escapes)
kvn@513 1376 tty->print(" allocated_escapes");
kvn@513 1377 if (_unknown_modified)
kvn@513 1378 tty->print(" unknown_modified");
kvn@513 1379 tty->cr();
kvn@513 1380 }
kvn@513 1381 #endif
duke@435 1382
duke@435 1383 BCEscapeAnalyzer::BCEscapeAnalyzer(ciMethod* method, BCEscapeAnalyzer* parent)
duke@435 1384 : _conservative(method == NULL || !EstimateArgEscape)
kvn@2003 1385 , _arena(CURRENT_ENV->arena())
duke@435 1386 , _method(method)
duke@435 1387 , _methodData(method ? method->method_data() : NULL)
duke@435 1388 , _arg_size(method ? method->arg_size() : 0)
kvn@2003 1389 , _arg_local(_arena)
kvn@2003 1390 , _arg_stack(_arena)
kvn@2003 1391 , _arg_returned(_arena)
kvn@2003 1392 , _dirty(_arena)
duke@435 1393 , _return_local(false)
duke@435 1394 , _return_allocated(false)
duke@435 1395 , _allocated_escapes(false)
kvn@480 1396 , _unknown_modified(false)
kvn@2003 1397 , _dependencies(_arena, 4, 0, NULL)
duke@435 1398 , _parent(parent)
duke@435 1399 , _level(parent == NULL ? 0 : parent->level() + 1) {
duke@435 1400 if (!_conservative) {
kvn@2003 1401 _arg_local.Clear();
kvn@2003 1402 _arg_stack.Clear();
kvn@2003 1403 _arg_returned.Clear();
kvn@2003 1404 _dirty.Clear();
duke@435 1405 Arena* arena = CURRENT_ENV->arena();
kvn@480 1406 _arg_modified = (uint *) arena->Amalloc(_arg_size * sizeof(uint));
kvn@480 1407 Copy::zero_to_bytes(_arg_modified, _arg_size * sizeof(uint));
duke@435 1408
duke@435 1409 if (methodData() == NULL)
duke@435 1410 return;
duke@435 1411 bool printit = _method->should_print_assembly();
duke@435 1412 if (methodData()->has_escape_info()) {
duke@435 1413 TRACE_BCEA(2, tty->print_cr("[EA] Reading previous results for %s.%s",
duke@435 1414 method->holder()->name()->as_utf8(),
duke@435 1415 method->name()->as_utf8()));
duke@435 1416 read_escape_info();
duke@435 1417 } else {
duke@435 1418 TRACE_BCEA(2, tty->print_cr("[EA] computing results for %s.%s",
duke@435 1419 method->holder()->name()->as_utf8(),
duke@435 1420 method->name()->as_utf8()));
duke@435 1421
duke@435 1422 compute_escape_info();
duke@435 1423 methodData()->update_escape_info();
duke@435 1424 }
kvn@513 1425 #ifndef PRODUCT
kvn@513 1426 if (BCEATraceLevel >= 3) {
kvn@513 1427 // dump escape information
kvn@513 1428 dump();
kvn@513 1429 }
kvn@513 1430 #endif
duke@435 1431 }
duke@435 1432 }
duke@435 1433
duke@435 1434 void BCEscapeAnalyzer::copy_dependencies(Dependencies *deps) {
never@1832 1435 if (ciEnv::current()->jvmti_can_hotswap_or_post_breakpoint()) {
never@1832 1436 // Also record evol dependencies so redefinition of the
never@1832 1437 // callee will trigger recompilation.
never@1832 1438 deps->assert_evol_method(method());
never@1832 1439 }
duke@435 1440 for (int i = 0; i < _dependencies.length(); i+=2) {
kvn@2003 1441 ciKlass *k = _dependencies.at(i)->as_klass();
kvn@2003 1442 ciMethod *m = _dependencies.at(i+1)->as_method();
duke@435 1443 deps->assert_unique_concrete_method(k, m);
duke@435 1444 }
duke@435 1445 }

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