src/share/vm/ci/ciTypeFlow.cpp

Fri, 27 Feb 2009 13:27:09 -0800

author
twisti
date
Fri, 27 Feb 2009 13:27:09 -0800
changeset 1040
98cb887364d3
parent 905
ad8c8ca4ab0f
child 1101
ebebd376f657
permissions
-rw-r--r--

6810672: Comment typos
Summary: I have collected some typos I have found while looking at the code.
Reviewed-by: kvn, never

duke@435 1 /*
xdono@905 2 * Copyright 2000-2008 Sun Microsystems, Inc. All Rights Reserved.
duke@435 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@435 4 *
duke@435 5 * This code is free software; you can redistribute it and/or modify it
duke@435 6 * under the terms of the GNU General Public License version 2 only, as
duke@435 7 * published by the Free Software Foundation.
duke@435 8 *
duke@435 9 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@435 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@435 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@435 12 * version 2 for more details (a copy is included in the LICENSE file that
duke@435 13 * accompanied this code).
duke@435 14 *
duke@435 15 * You should have received a copy of the GNU General Public License version
duke@435 16 * 2 along with this work; if not, write to the Free Software Foundation,
duke@435 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@435 18 *
duke@435 19 * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
duke@435 20 * CA 95054 USA or visit www.sun.com if you need additional information or
duke@435 21 * have any questions.
duke@435 22 *
duke@435 23 */
duke@435 24
duke@435 25 #include "incls/_precompiled.incl"
duke@435 26 #include "incls/_ciTypeFlow.cpp.incl"
duke@435 27
duke@435 28 // ciTypeFlow::JsrSet
duke@435 29 //
duke@435 30 // A JsrSet represents some set of JsrRecords. This class
duke@435 31 // is used to record a set of all jsr routines which we permit
duke@435 32 // execution to return (ret) from.
duke@435 33 //
duke@435 34 // During abstract interpretation, JsrSets are used to determine
duke@435 35 // whether two paths which reach a given block are unique, and
duke@435 36 // should be cloned apart, or are compatible, and should merge
duke@435 37 // together.
duke@435 38
duke@435 39 // ------------------------------------------------------------------
duke@435 40 // ciTypeFlow::JsrSet::JsrSet
duke@435 41 ciTypeFlow::JsrSet::JsrSet(Arena* arena, int default_len) {
duke@435 42 if (arena != NULL) {
duke@435 43 // Allocate growable array in Arena.
duke@435 44 _set = new (arena) GrowableArray<JsrRecord*>(arena, default_len, 0, NULL);
duke@435 45 } else {
duke@435 46 // Allocate growable array in current ResourceArea.
duke@435 47 _set = new GrowableArray<JsrRecord*>(4, 0, NULL, false);
duke@435 48 }
duke@435 49 }
duke@435 50
duke@435 51 // ------------------------------------------------------------------
duke@435 52 // ciTypeFlow::JsrSet::copy_into
duke@435 53 void ciTypeFlow::JsrSet::copy_into(JsrSet* jsrs) {
duke@435 54 int len = size();
duke@435 55 jsrs->_set->clear();
duke@435 56 for (int i = 0; i < len; i++) {
duke@435 57 jsrs->_set->append(_set->at(i));
duke@435 58 }
duke@435 59 }
duke@435 60
duke@435 61 // ------------------------------------------------------------------
duke@435 62 // ciTypeFlow::JsrSet::is_compatible_with
duke@435 63 //
duke@435 64 // !!!! MISGIVINGS ABOUT THIS... disregard
duke@435 65 //
duke@435 66 // Is this JsrSet compatible with some other JsrSet?
duke@435 67 //
duke@435 68 // In set-theoretic terms, a JsrSet can be viewed as a partial function
duke@435 69 // from entry addresses to return addresses. Two JsrSets A and B are
duke@435 70 // compatible iff
duke@435 71 //
duke@435 72 // For any x,
duke@435 73 // A(x) defined and B(x) defined implies A(x) == B(x)
duke@435 74 //
duke@435 75 // Less formally, two JsrSets are compatible when they have identical
duke@435 76 // return addresses for any entry addresses they share in common.
duke@435 77 bool ciTypeFlow::JsrSet::is_compatible_with(JsrSet* other) {
duke@435 78 // Walk through both sets in parallel. If the same entry address
duke@435 79 // appears in both sets, then the return address must match for
duke@435 80 // the sets to be compatible.
duke@435 81 int size1 = size();
duke@435 82 int size2 = other->size();
duke@435 83
duke@435 84 // Special case. If nothing is on the jsr stack, then there can
duke@435 85 // be no ret.
duke@435 86 if (size2 == 0) {
duke@435 87 return true;
duke@435 88 } else if (size1 != size2) {
duke@435 89 return false;
duke@435 90 } else {
duke@435 91 for (int i = 0; i < size1; i++) {
duke@435 92 JsrRecord* record1 = record_at(i);
duke@435 93 JsrRecord* record2 = other->record_at(i);
duke@435 94 if (record1->entry_address() != record2->entry_address() ||
duke@435 95 record1->return_address() != record2->return_address()) {
duke@435 96 return false;
duke@435 97 }
duke@435 98 }
duke@435 99 return true;
duke@435 100 }
duke@435 101
duke@435 102 #if 0
duke@435 103 int pos1 = 0;
duke@435 104 int pos2 = 0;
duke@435 105 int size1 = size();
duke@435 106 int size2 = other->size();
duke@435 107 while (pos1 < size1 && pos2 < size2) {
duke@435 108 JsrRecord* record1 = record_at(pos1);
duke@435 109 JsrRecord* record2 = other->record_at(pos2);
duke@435 110 int entry1 = record1->entry_address();
duke@435 111 int entry2 = record2->entry_address();
duke@435 112 if (entry1 < entry2) {
duke@435 113 pos1++;
duke@435 114 } else if (entry1 > entry2) {
duke@435 115 pos2++;
duke@435 116 } else {
duke@435 117 if (record1->return_address() == record2->return_address()) {
duke@435 118 pos1++;
duke@435 119 pos2++;
duke@435 120 } else {
duke@435 121 // These two JsrSets are incompatible.
duke@435 122 return false;
duke@435 123 }
duke@435 124 }
duke@435 125 }
duke@435 126 // The two JsrSets agree.
duke@435 127 return true;
duke@435 128 #endif
duke@435 129 }
duke@435 130
duke@435 131 // ------------------------------------------------------------------
duke@435 132 // ciTypeFlow::JsrSet::insert_jsr_record
duke@435 133 //
duke@435 134 // Insert the given JsrRecord into the JsrSet, maintaining the order
duke@435 135 // of the set and replacing any element with the same entry address.
duke@435 136 void ciTypeFlow::JsrSet::insert_jsr_record(JsrRecord* record) {
duke@435 137 int len = size();
duke@435 138 int entry = record->entry_address();
duke@435 139 int pos = 0;
duke@435 140 for ( ; pos < len; pos++) {
duke@435 141 JsrRecord* current = record_at(pos);
duke@435 142 if (entry == current->entry_address()) {
duke@435 143 // Stomp over this entry.
duke@435 144 _set->at_put(pos, record);
duke@435 145 assert(size() == len, "must be same size");
duke@435 146 return;
duke@435 147 } else if (entry < current->entry_address()) {
duke@435 148 break;
duke@435 149 }
duke@435 150 }
duke@435 151
duke@435 152 // Insert the record into the list.
duke@435 153 JsrRecord* swap = record;
duke@435 154 JsrRecord* temp = NULL;
duke@435 155 for ( ; pos < len; pos++) {
duke@435 156 temp = _set->at(pos);
duke@435 157 _set->at_put(pos, swap);
duke@435 158 swap = temp;
duke@435 159 }
duke@435 160 _set->append(swap);
duke@435 161 assert(size() == len+1, "must be larger");
duke@435 162 }
duke@435 163
duke@435 164 // ------------------------------------------------------------------
duke@435 165 // ciTypeFlow::JsrSet::remove_jsr_record
duke@435 166 //
duke@435 167 // Remove the JsrRecord with the given return address from the JsrSet.
duke@435 168 void ciTypeFlow::JsrSet::remove_jsr_record(int return_address) {
duke@435 169 int len = size();
duke@435 170 for (int i = 0; i < len; i++) {
duke@435 171 if (record_at(i)->return_address() == return_address) {
duke@435 172 // We have found the proper entry. Remove it from the
duke@435 173 // JsrSet and exit.
duke@435 174 for (int j = i+1; j < len ; j++) {
duke@435 175 _set->at_put(j-1, _set->at(j));
duke@435 176 }
duke@435 177 _set->trunc_to(len-1);
duke@435 178 assert(size() == len-1, "must be smaller");
duke@435 179 return;
duke@435 180 }
duke@435 181 }
duke@435 182 assert(false, "verify: returning from invalid subroutine");
duke@435 183 }
duke@435 184
duke@435 185 // ------------------------------------------------------------------
duke@435 186 // ciTypeFlow::JsrSet::apply_control
duke@435 187 //
duke@435 188 // Apply the effect of a control-flow bytecode on the JsrSet. The
duke@435 189 // only bytecodes that modify the JsrSet are jsr and ret.
duke@435 190 void ciTypeFlow::JsrSet::apply_control(ciTypeFlow* analyzer,
duke@435 191 ciBytecodeStream* str,
duke@435 192 ciTypeFlow::StateVector* state) {
duke@435 193 Bytecodes::Code code = str->cur_bc();
duke@435 194 if (code == Bytecodes::_jsr) {
duke@435 195 JsrRecord* record =
duke@435 196 analyzer->make_jsr_record(str->get_dest(), str->next_bci());
duke@435 197 insert_jsr_record(record);
duke@435 198 } else if (code == Bytecodes::_jsr_w) {
duke@435 199 JsrRecord* record =
duke@435 200 analyzer->make_jsr_record(str->get_far_dest(), str->next_bci());
duke@435 201 insert_jsr_record(record);
duke@435 202 } else if (code == Bytecodes::_ret) {
duke@435 203 Cell local = state->local(str->get_index());
duke@435 204 ciType* return_address = state->type_at(local);
duke@435 205 assert(return_address->is_return_address(), "verify: wrong type");
duke@435 206 if (size() == 0) {
duke@435 207 // Ret-state underflow: Hit a ret w/o any previous jsrs. Bail out.
duke@435 208 // This can happen when a loop is inside a finally clause (4614060).
duke@435 209 analyzer->record_failure("OSR in finally clause");
duke@435 210 return;
duke@435 211 }
duke@435 212 remove_jsr_record(return_address->as_return_address()->bci());
duke@435 213 }
duke@435 214 }
duke@435 215
duke@435 216 #ifndef PRODUCT
duke@435 217 // ------------------------------------------------------------------
duke@435 218 // ciTypeFlow::JsrSet::print_on
duke@435 219 void ciTypeFlow::JsrSet::print_on(outputStream* st) const {
duke@435 220 st->print("{ ");
duke@435 221 int num_elements = size();
duke@435 222 if (num_elements > 0) {
duke@435 223 int i = 0;
duke@435 224 for( ; i < num_elements - 1; i++) {
duke@435 225 _set->at(i)->print_on(st);
duke@435 226 st->print(", ");
duke@435 227 }
duke@435 228 _set->at(i)->print_on(st);
duke@435 229 st->print(" ");
duke@435 230 }
duke@435 231 st->print("}");
duke@435 232 }
duke@435 233 #endif
duke@435 234
duke@435 235 // ciTypeFlow::StateVector
duke@435 236 //
duke@435 237 // A StateVector summarizes the type information at some point in
duke@435 238 // the program.
duke@435 239
duke@435 240 // ------------------------------------------------------------------
duke@435 241 // ciTypeFlow::StateVector::type_meet
duke@435 242 //
duke@435 243 // Meet two types.
duke@435 244 //
duke@435 245 // The semi-lattice of types use by this analysis are modeled on those
duke@435 246 // of the verifier. The lattice is as follows:
duke@435 247 //
duke@435 248 // top_type() >= all non-extremal types >= bottom_type
duke@435 249 // and
duke@435 250 // Every primitive type is comparable only with itself. The meet of
duke@435 251 // reference types is determined by their kind: instance class,
duke@435 252 // interface, or array class. The meet of two types of the same
duke@435 253 // kind is their least common ancestor. The meet of two types of
duke@435 254 // different kinds is always java.lang.Object.
duke@435 255 ciType* ciTypeFlow::StateVector::type_meet_internal(ciType* t1, ciType* t2, ciTypeFlow* analyzer) {
duke@435 256 assert(t1 != t2, "checked in caller");
duke@435 257 if (t1->equals(top_type())) {
duke@435 258 return t2;
duke@435 259 } else if (t2->equals(top_type())) {
duke@435 260 return t1;
duke@435 261 } else if (t1->is_primitive_type() || t2->is_primitive_type()) {
duke@435 262 // Special case null_type. null_type meet any reference type T
duke@435 263 // is T. null_type meet null_type is null_type.
duke@435 264 if (t1->equals(null_type())) {
duke@435 265 if (!t2->is_primitive_type() || t2->equals(null_type())) {
duke@435 266 return t2;
duke@435 267 }
duke@435 268 } else if (t2->equals(null_type())) {
duke@435 269 if (!t1->is_primitive_type()) {
duke@435 270 return t1;
duke@435 271 }
duke@435 272 }
duke@435 273
duke@435 274 // At least one of the two types is a non-top primitive type.
duke@435 275 // The other type is not equal to it. Fall to bottom.
duke@435 276 return bottom_type();
duke@435 277 } else {
duke@435 278 // Both types are non-top non-primitive types. That is,
duke@435 279 // both types are either instanceKlasses or arrayKlasses.
duke@435 280 ciKlass* object_klass = analyzer->env()->Object_klass();
duke@435 281 ciKlass* k1 = t1->as_klass();
duke@435 282 ciKlass* k2 = t2->as_klass();
duke@435 283 if (k1->equals(object_klass) || k2->equals(object_klass)) {
duke@435 284 return object_klass;
duke@435 285 } else if (!k1->is_loaded() || !k2->is_loaded()) {
duke@435 286 // Unloaded classes fall to java.lang.Object at a merge.
duke@435 287 return object_klass;
duke@435 288 } else if (k1->is_interface() != k2->is_interface()) {
duke@435 289 // When an interface meets a non-interface, we get Object;
duke@435 290 // This is what the verifier does.
duke@435 291 return object_klass;
duke@435 292 } else if (k1->is_array_klass() || k2->is_array_klass()) {
duke@435 293 // When an array meets a non-array, we get Object.
duke@435 294 // When objArray meets typeArray, we also get Object.
duke@435 295 // And when typeArray meets different typeArray, we again get Object.
duke@435 296 // But when objArray meets objArray, we look carefully at element types.
duke@435 297 if (k1->is_obj_array_klass() && k2->is_obj_array_klass()) {
duke@435 298 // Meet the element types, then construct the corresponding array type.
duke@435 299 ciKlass* elem1 = k1->as_obj_array_klass()->element_klass();
duke@435 300 ciKlass* elem2 = k2->as_obj_array_klass()->element_klass();
duke@435 301 ciKlass* elem = type_meet_internal(elem1, elem2, analyzer)->as_klass();
duke@435 302 // Do an easy shortcut if one type is a super of the other.
duke@435 303 if (elem == elem1) {
duke@435 304 assert(k1 == ciObjArrayKlass::make(elem), "shortcut is OK");
duke@435 305 return k1;
duke@435 306 } else if (elem == elem2) {
duke@435 307 assert(k2 == ciObjArrayKlass::make(elem), "shortcut is OK");
duke@435 308 return k2;
duke@435 309 } else {
duke@435 310 return ciObjArrayKlass::make(elem);
duke@435 311 }
duke@435 312 } else {
duke@435 313 return object_klass;
duke@435 314 }
duke@435 315 } else {
duke@435 316 // Must be two plain old instance klasses.
duke@435 317 assert(k1->is_instance_klass(), "previous cases handle non-instances");
duke@435 318 assert(k2->is_instance_klass(), "previous cases handle non-instances");
duke@435 319 return k1->least_common_ancestor(k2);
duke@435 320 }
duke@435 321 }
duke@435 322 }
duke@435 323
duke@435 324
duke@435 325 // ------------------------------------------------------------------
duke@435 326 // ciTypeFlow::StateVector::StateVector
duke@435 327 //
duke@435 328 // Build a new state vector
duke@435 329 ciTypeFlow::StateVector::StateVector(ciTypeFlow* analyzer) {
duke@435 330 _outer = analyzer;
duke@435 331 _stack_size = -1;
duke@435 332 _monitor_count = -1;
duke@435 333 // Allocate the _types array
duke@435 334 int max_cells = analyzer->max_cells();
duke@435 335 _types = (ciType**)analyzer->arena()->Amalloc(sizeof(ciType*) * max_cells);
duke@435 336 for (int i=0; i<max_cells; i++) {
duke@435 337 _types[i] = top_type();
duke@435 338 }
duke@435 339 _trap_bci = -1;
duke@435 340 _trap_index = 0;
never@802 341 _def_locals.clear();
duke@435 342 }
duke@435 343
never@802 344
duke@435 345 // ------------------------------------------------------------------
duke@435 346 // ciTypeFlow::get_start_state
duke@435 347 //
duke@435 348 // Set this vector to the method entry state.
duke@435 349 const ciTypeFlow::StateVector* ciTypeFlow::get_start_state() {
duke@435 350 StateVector* state = new StateVector(this);
duke@435 351 if (is_osr_flow()) {
duke@435 352 ciTypeFlow* non_osr_flow = method()->get_flow_analysis();
duke@435 353 if (non_osr_flow->failing()) {
duke@435 354 record_failure(non_osr_flow->failure_reason());
duke@435 355 return NULL;
duke@435 356 }
duke@435 357 JsrSet* jsrs = new JsrSet(NULL, 16);
duke@435 358 Block* non_osr_block = non_osr_flow->existing_block_at(start_bci(), jsrs);
duke@435 359 if (non_osr_block == NULL) {
duke@435 360 record_failure("cannot reach OSR point");
duke@435 361 return NULL;
duke@435 362 }
duke@435 363 // load up the non-OSR state at this point
duke@435 364 non_osr_block->copy_state_into(state);
duke@435 365 int non_osr_start = non_osr_block->start();
duke@435 366 if (non_osr_start != start_bci()) {
duke@435 367 // must flow forward from it
duke@435 368 if (CITraceTypeFlow) {
duke@435 369 tty->print_cr(">> Interpreting pre-OSR block %d:", non_osr_start);
duke@435 370 }
duke@435 371 Block* block = block_at(non_osr_start, jsrs);
duke@435 372 assert(block->limit() == start_bci(), "must flow forward to start");
duke@435 373 flow_block(block, state, jsrs);
duke@435 374 }
duke@435 375 return state;
duke@435 376 // Note: The code below would be an incorrect for an OSR flow,
duke@435 377 // even if it were possible for an OSR entry point to be at bci zero.
duke@435 378 }
duke@435 379 // "Push" the method signature into the first few locals.
duke@435 380 state->set_stack_size(-max_locals());
duke@435 381 if (!method()->is_static()) {
duke@435 382 state->push(method()->holder());
duke@435 383 assert(state->tos() == state->local(0), "");
duke@435 384 }
duke@435 385 for (ciSignatureStream str(method()->signature());
duke@435 386 !str.at_return_type();
duke@435 387 str.next()) {
duke@435 388 state->push_translate(str.type());
duke@435 389 }
duke@435 390 // Set the rest of the locals to bottom.
duke@435 391 Cell cell = state->next_cell(state->tos());
duke@435 392 state->set_stack_size(0);
duke@435 393 int limit = state->limit_cell();
duke@435 394 for (; cell < limit; cell = state->next_cell(cell)) {
duke@435 395 state->set_type_at(cell, state->bottom_type());
duke@435 396 }
duke@435 397 // Lock an object, if necessary.
duke@435 398 state->set_monitor_count(method()->is_synchronized() ? 1 : 0);
duke@435 399 return state;
duke@435 400 }
duke@435 401
duke@435 402 // ------------------------------------------------------------------
duke@435 403 // ciTypeFlow::StateVector::copy_into
duke@435 404 //
duke@435 405 // Copy our value into some other StateVector
duke@435 406 void ciTypeFlow::StateVector::copy_into(ciTypeFlow::StateVector* copy)
duke@435 407 const {
duke@435 408 copy->set_stack_size(stack_size());
duke@435 409 copy->set_monitor_count(monitor_count());
duke@435 410 Cell limit = limit_cell();
duke@435 411 for (Cell c = start_cell(); c < limit; c = next_cell(c)) {
duke@435 412 copy->set_type_at(c, type_at(c));
duke@435 413 }
duke@435 414 }
duke@435 415
duke@435 416 // ------------------------------------------------------------------
duke@435 417 // ciTypeFlow::StateVector::meet
duke@435 418 //
duke@435 419 // Meets this StateVector with another, destructively modifying this
duke@435 420 // one. Returns true if any modification takes place.
duke@435 421 bool ciTypeFlow::StateVector::meet(const ciTypeFlow::StateVector* incoming) {
duke@435 422 if (monitor_count() == -1) {
duke@435 423 set_monitor_count(incoming->monitor_count());
duke@435 424 }
duke@435 425 assert(monitor_count() == incoming->monitor_count(), "monitors must match");
duke@435 426
duke@435 427 if (stack_size() == -1) {
duke@435 428 set_stack_size(incoming->stack_size());
duke@435 429 Cell limit = limit_cell();
duke@435 430 #ifdef ASSERT
duke@435 431 { for (Cell c = start_cell(); c < limit; c = next_cell(c)) {
duke@435 432 assert(type_at(c) == top_type(), "");
duke@435 433 } }
duke@435 434 #endif
duke@435 435 // Make a simple copy of the incoming state.
duke@435 436 for (Cell c = start_cell(); c < limit; c = next_cell(c)) {
duke@435 437 set_type_at(c, incoming->type_at(c));
duke@435 438 }
duke@435 439 return true; // it is always different the first time
duke@435 440 }
duke@435 441 #ifdef ASSERT
duke@435 442 if (stack_size() != incoming->stack_size()) {
duke@435 443 _outer->method()->print_codes();
duke@435 444 tty->print_cr("!!!! Stack size conflict");
duke@435 445 tty->print_cr("Current state:");
duke@435 446 print_on(tty);
duke@435 447 tty->print_cr("Incoming state:");
duke@435 448 ((StateVector*)incoming)->print_on(tty);
duke@435 449 }
duke@435 450 #endif
duke@435 451 assert(stack_size() == incoming->stack_size(), "sanity");
duke@435 452
duke@435 453 bool different = false;
duke@435 454 Cell limit = limit_cell();
duke@435 455 for (Cell c = start_cell(); c < limit; c = next_cell(c)) {
duke@435 456 ciType* t1 = type_at(c);
duke@435 457 ciType* t2 = incoming->type_at(c);
duke@435 458 if (!t1->equals(t2)) {
duke@435 459 ciType* new_type = type_meet(t1, t2);
duke@435 460 if (!t1->equals(new_type)) {
duke@435 461 set_type_at(c, new_type);
duke@435 462 different = true;
duke@435 463 }
duke@435 464 }
duke@435 465 }
duke@435 466 return different;
duke@435 467 }
duke@435 468
duke@435 469 // ------------------------------------------------------------------
duke@435 470 // ciTypeFlow::StateVector::meet_exception
duke@435 471 //
duke@435 472 // Meets this StateVector with another, destructively modifying this
duke@435 473 // one. The incoming state is coming via an exception. Returns true
duke@435 474 // if any modification takes place.
duke@435 475 bool ciTypeFlow::StateVector::meet_exception(ciInstanceKlass* exc,
duke@435 476 const ciTypeFlow::StateVector* incoming) {
duke@435 477 if (monitor_count() == -1) {
duke@435 478 set_monitor_count(incoming->monitor_count());
duke@435 479 }
duke@435 480 assert(monitor_count() == incoming->monitor_count(), "monitors must match");
duke@435 481
duke@435 482 if (stack_size() == -1) {
duke@435 483 set_stack_size(1);
duke@435 484 }
duke@435 485
duke@435 486 assert(stack_size() == 1, "must have one-element stack");
duke@435 487
duke@435 488 bool different = false;
duke@435 489
duke@435 490 // Meet locals from incoming array.
duke@435 491 Cell limit = local(_outer->max_locals()-1);
duke@435 492 for (Cell c = start_cell(); c <= limit; c = next_cell(c)) {
duke@435 493 ciType* t1 = type_at(c);
duke@435 494 ciType* t2 = incoming->type_at(c);
duke@435 495 if (!t1->equals(t2)) {
duke@435 496 ciType* new_type = type_meet(t1, t2);
duke@435 497 if (!t1->equals(new_type)) {
duke@435 498 set_type_at(c, new_type);
duke@435 499 different = true;
duke@435 500 }
duke@435 501 }
duke@435 502 }
duke@435 503
duke@435 504 // Handle stack separately. When an exception occurs, the
duke@435 505 // only stack entry is the exception instance.
duke@435 506 ciType* tos_type = type_at_tos();
duke@435 507 if (!tos_type->equals(exc)) {
duke@435 508 ciType* new_type = type_meet(tos_type, exc);
duke@435 509 if (!tos_type->equals(new_type)) {
duke@435 510 set_type_at_tos(new_type);
duke@435 511 different = true;
duke@435 512 }
duke@435 513 }
duke@435 514
duke@435 515 return different;
duke@435 516 }
duke@435 517
duke@435 518 // ------------------------------------------------------------------
duke@435 519 // ciTypeFlow::StateVector::push_translate
duke@435 520 void ciTypeFlow::StateVector::push_translate(ciType* type) {
duke@435 521 BasicType basic_type = type->basic_type();
duke@435 522 if (basic_type == T_BOOLEAN || basic_type == T_CHAR ||
duke@435 523 basic_type == T_BYTE || basic_type == T_SHORT) {
duke@435 524 push_int();
duke@435 525 } else {
duke@435 526 push(type);
duke@435 527 if (type->is_two_word()) {
duke@435 528 push(half_type(type));
duke@435 529 }
duke@435 530 }
duke@435 531 }
duke@435 532
duke@435 533 // ------------------------------------------------------------------
duke@435 534 // ciTypeFlow::StateVector::do_aaload
duke@435 535 void ciTypeFlow::StateVector::do_aaload(ciBytecodeStream* str) {
duke@435 536 pop_int();
duke@435 537 ciObjArrayKlass* array_klass = pop_objArray();
duke@435 538 if (array_klass == NULL) {
duke@435 539 // Did aaload on a null reference; push a null and ignore the exception.
duke@435 540 // This instruction will never continue normally. All we have to do
duke@435 541 // is report a value that will meet correctly with any downstream
duke@435 542 // reference types on paths that will truly be executed. This null type
duke@435 543 // meets with any reference type to yield that same reference type.
twisti@1040 544 // (The compiler will generate an unconditional exception here.)
duke@435 545 push(null_type());
duke@435 546 return;
duke@435 547 }
duke@435 548 if (!array_klass->is_loaded()) {
duke@435 549 // Only fails for some -Xcomp runs
duke@435 550 trap(str, array_klass,
duke@435 551 Deoptimization::make_trap_request
duke@435 552 (Deoptimization::Reason_unloaded,
duke@435 553 Deoptimization::Action_reinterpret));
duke@435 554 return;
duke@435 555 }
duke@435 556 ciKlass* element_klass = array_klass->element_klass();
duke@435 557 if (!element_klass->is_loaded() && element_klass->is_instance_klass()) {
duke@435 558 Untested("unloaded array element class in ciTypeFlow");
duke@435 559 trap(str, element_klass,
duke@435 560 Deoptimization::make_trap_request
duke@435 561 (Deoptimization::Reason_unloaded,
duke@435 562 Deoptimization::Action_reinterpret));
duke@435 563 } else {
duke@435 564 push_object(element_klass);
duke@435 565 }
duke@435 566 }
duke@435 567
duke@435 568
duke@435 569 // ------------------------------------------------------------------
duke@435 570 // ciTypeFlow::StateVector::do_checkcast
duke@435 571 void ciTypeFlow::StateVector::do_checkcast(ciBytecodeStream* str) {
duke@435 572 bool will_link;
duke@435 573 ciKlass* klass = str->get_klass(will_link);
duke@435 574 if (!will_link) {
duke@435 575 // VM's interpreter will not load 'klass' if object is NULL.
duke@435 576 // Type flow after this block may still be needed in two situations:
duke@435 577 // 1) C2 uses do_null_assert() and continues compilation for later blocks
duke@435 578 // 2) C2 does an OSR compile in a later block (see bug 4778368).
duke@435 579 pop_object();
duke@435 580 do_null_assert(klass);
duke@435 581 } else {
duke@435 582 pop_object();
duke@435 583 push_object(klass);
duke@435 584 }
duke@435 585 }
duke@435 586
duke@435 587 // ------------------------------------------------------------------
duke@435 588 // ciTypeFlow::StateVector::do_getfield
duke@435 589 void ciTypeFlow::StateVector::do_getfield(ciBytecodeStream* str) {
duke@435 590 // could add assert here for type of object.
duke@435 591 pop_object();
duke@435 592 do_getstatic(str);
duke@435 593 }
duke@435 594
duke@435 595 // ------------------------------------------------------------------
duke@435 596 // ciTypeFlow::StateVector::do_getstatic
duke@435 597 void ciTypeFlow::StateVector::do_getstatic(ciBytecodeStream* str) {
duke@435 598 bool will_link;
duke@435 599 ciField* field = str->get_field(will_link);
duke@435 600 if (!will_link) {
duke@435 601 trap(str, field->holder(), str->get_field_holder_index());
duke@435 602 } else {
duke@435 603 ciType* field_type = field->type();
duke@435 604 if (!field_type->is_loaded()) {
duke@435 605 // Normally, we need the field's type to be loaded if we are to
duke@435 606 // do anything interesting with its value.
duke@435 607 // We used to do this: trap(str, str->get_field_signature_index());
duke@435 608 //
duke@435 609 // There is one good reason not to trap here. Execution can
duke@435 610 // get past this "getfield" or "getstatic" if the value of
duke@435 611 // the field is null. As long as the value is null, the class
duke@435 612 // does not need to be loaded! The compiler must assume that
duke@435 613 // the value of the unloaded class reference is null; if the code
duke@435 614 // ever sees a non-null value, loading has occurred.
duke@435 615 //
duke@435 616 // This actually happens often enough to be annoying. If the
duke@435 617 // compiler throws an uncommon trap at this bytecode, you can
duke@435 618 // get an endless loop of recompilations, when all the code
duke@435 619 // needs to do is load a series of null values. Also, a trap
duke@435 620 // here can make an OSR entry point unreachable, triggering the
duke@435 621 // assert on non_osr_block in ciTypeFlow::get_start_state.
duke@435 622 // (See bug 4379915.)
duke@435 623 do_null_assert(field_type->as_klass());
duke@435 624 } else {
duke@435 625 push_translate(field_type);
duke@435 626 }
duke@435 627 }
duke@435 628 }
duke@435 629
duke@435 630 // ------------------------------------------------------------------
duke@435 631 // ciTypeFlow::StateVector::do_invoke
duke@435 632 void ciTypeFlow::StateVector::do_invoke(ciBytecodeStream* str,
duke@435 633 bool has_receiver) {
duke@435 634 bool will_link;
duke@435 635 ciMethod* method = str->get_method(will_link);
duke@435 636 if (!will_link) {
duke@435 637 // We weren't able to find the method.
duke@435 638 ciKlass* unloaded_holder = method->holder();
duke@435 639 trap(str, unloaded_holder, str->get_method_holder_index());
duke@435 640 } else {
duke@435 641 ciSignature* signature = method->signature();
duke@435 642 ciSignatureStream sigstr(signature);
duke@435 643 int arg_size = signature->size();
duke@435 644 int stack_base = stack_size() - arg_size;
duke@435 645 int i = 0;
duke@435 646 for( ; !sigstr.at_return_type(); sigstr.next()) {
duke@435 647 ciType* type = sigstr.type();
duke@435 648 ciType* stack_type = type_at(stack(stack_base + i++));
duke@435 649 // Do I want to check this type?
duke@435 650 // assert(stack_type->is_subtype_of(type), "bad type for field value");
duke@435 651 if (type->is_two_word()) {
duke@435 652 ciType* stack_type2 = type_at(stack(stack_base + i++));
duke@435 653 assert(stack_type2->equals(half_type(type)), "must be 2nd half");
duke@435 654 }
duke@435 655 }
duke@435 656 assert(arg_size == i, "must match");
duke@435 657 for (int j = 0; j < arg_size; j++) {
duke@435 658 pop();
duke@435 659 }
duke@435 660 if (has_receiver) {
duke@435 661 // Check this?
duke@435 662 pop_object();
duke@435 663 }
duke@435 664 assert(!sigstr.is_done(), "must have return type");
duke@435 665 ciType* return_type = sigstr.type();
duke@435 666 if (!return_type->is_void()) {
duke@435 667 if (!return_type->is_loaded()) {
duke@435 668 // As in do_getstatic(), generally speaking, we need the return type to
duke@435 669 // be loaded if we are to do anything interesting with its value.
duke@435 670 // We used to do this: trap(str, str->get_method_signature_index());
duke@435 671 //
duke@435 672 // We do not trap here since execution can get past this invoke if
duke@435 673 // the return value is null. As long as the value is null, the class
duke@435 674 // does not need to be loaded! The compiler must assume that
duke@435 675 // the value of the unloaded class reference is null; if the code
duke@435 676 // ever sees a non-null value, loading has occurred.
duke@435 677 //
duke@435 678 // See do_getstatic() for similar explanation, as well as bug 4684993.
duke@435 679 do_null_assert(return_type->as_klass());
duke@435 680 } else {
duke@435 681 push_translate(return_type);
duke@435 682 }
duke@435 683 }
duke@435 684 }
duke@435 685 }
duke@435 686
duke@435 687 // ------------------------------------------------------------------
duke@435 688 // ciTypeFlow::StateVector::do_jsr
duke@435 689 void ciTypeFlow::StateVector::do_jsr(ciBytecodeStream* str) {
duke@435 690 push(ciReturnAddress::make(str->next_bci()));
duke@435 691 }
duke@435 692
duke@435 693 // ------------------------------------------------------------------
duke@435 694 // ciTypeFlow::StateVector::do_ldc
duke@435 695 void ciTypeFlow::StateVector::do_ldc(ciBytecodeStream* str) {
duke@435 696 ciConstant con = str->get_constant();
duke@435 697 BasicType basic_type = con.basic_type();
duke@435 698 if (basic_type == T_ILLEGAL) {
duke@435 699 // OutOfMemoryError in the CI while loading constant
duke@435 700 push_null();
duke@435 701 outer()->record_failure("ldc did not link");
duke@435 702 return;
duke@435 703 }
duke@435 704 if (basic_type == T_OBJECT || basic_type == T_ARRAY) {
duke@435 705 ciObject* obj = con.as_object();
duke@435 706 if (obj->is_null_object()) {
duke@435 707 push_null();
duke@435 708 } else if (obj->is_klass()) {
duke@435 709 // The type of ldc <class> is java.lang.Class
duke@435 710 push_object(outer()->env()->Class_klass());
duke@435 711 } else {
duke@435 712 push_object(obj->klass());
duke@435 713 }
duke@435 714 } else {
duke@435 715 push_translate(ciType::make(basic_type));
duke@435 716 }
duke@435 717 }
duke@435 718
duke@435 719 // ------------------------------------------------------------------
duke@435 720 // ciTypeFlow::StateVector::do_multianewarray
duke@435 721 void ciTypeFlow::StateVector::do_multianewarray(ciBytecodeStream* str) {
duke@435 722 int dimensions = str->get_dimensions();
duke@435 723 bool will_link;
duke@435 724 ciArrayKlass* array_klass = str->get_klass(will_link)->as_array_klass();
duke@435 725 if (!will_link) {
duke@435 726 trap(str, array_klass, str->get_klass_index());
duke@435 727 } else {
duke@435 728 for (int i = 0; i < dimensions; i++) {
duke@435 729 pop_int();
duke@435 730 }
duke@435 731 push_object(array_klass);
duke@435 732 }
duke@435 733 }
duke@435 734
duke@435 735 // ------------------------------------------------------------------
duke@435 736 // ciTypeFlow::StateVector::do_new
duke@435 737 void ciTypeFlow::StateVector::do_new(ciBytecodeStream* str) {
duke@435 738 bool will_link;
duke@435 739 ciKlass* klass = str->get_klass(will_link);
never@802 740 if (!will_link || str->is_unresolved_klass()) {
duke@435 741 trap(str, klass, str->get_klass_index());
duke@435 742 } else {
duke@435 743 push_object(klass);
duke@435 744 }
duke@435 745 }
duke@435 746
duke@435 747 // ------------------------------------------------------------------
duke@435 748 // ciTypeFlow::StateVector::do_newarray
duke@435 749 void ciTypeFlow::StateVector::do_newarray(ciBytecodeStream* str) {
duke@435 750 pop_int();
duke@435 751 ciKlass* klass = ciTypeArrayKlass::make((BasicType)str->get_index());
duke@435 752 push_object(klass);
duke@435 753 }
duke@435 754
duke@435 755 // ------------------------------------------------------------------
duke@435 756 // ciTypeFlow::StateVector::do_putfield
duke@435 757 void ciTypeFlow::StateVector::do_putfield(ciBytecodeStream* str) {
duke@435 758 do_putstatic(str);
duke@435 759 if (_trap_bci != -1) return; // unloaded field holder, etc.
duke@435 760 // could add assert here for type of object.
duke@435 761 pop_object();
duke@435 762 }
duke@435 763
duke@435 764 // ------------------------------------------------------------------
duke@435 765 // ciTypeFlow::StateVector::do_putstatic
duke@435 766 void ciTypeFlow::StateVector::do_putstatic(ciBytecodeStream* str) {
duke@435 767 bool will_link;
duke@435 768 ciField* field = str->get_field(will_link);
duke@435 769 if (!will_link) {
duke@435 770 trap(str, field->holder(), str->get_field_holder_index());
duke@435 771 } else {
duke@435 772 ciType* field_type = field->type();
duke@435 773 ciType* type = pop_value();
duke@435 774 // Do I want to check this type?
duke@435 775 // assert(type->is_subtype_of(field_type), "bad type for field value");
duke@435 776 if (field_type->is_two_word()) {
duke@435 777 ciType* type2 = pop_value();
duke@435 778 assert(type2->is_two_word(), "must be 2nd half");
duke@435 779 assert(type == half_type(type2), "must be 2nd half");
duke@435 780 }
duke@435 781 }
duke@435 782 }
duke@435 783
duke@435 784 // ------------------------------------------------------------------
duke@435 785 // ciTypeFlow::StateVector::do_ret
duke@435 786 void ciTypeFlow::StateVector::do_ret(ciBytecodeStream* str) {
duke@435 787 Cell index = local(str->get_index());
duke@435 788
duke@435 789 ciType* address = type_at(index);
duke@435 790 assert(address->is_return_address(), "bad return address");
duke@435 791 set_type_at(index, bottom_type());
duke@435 792 }
duke@435 793
duke@435 794 // ------------------------------------------------------------------
duke@435 795 // ciTypeFlow::StateVector::trap
duke@435 796 //
duke@435 797 // Stop interpretation of this path with a trap.
duke@435 798 void ciTypeFlow::StateVector::trap(ciBytecodeStream* str, ciKlass* klass, int index) {
duke@435 799 _trap_bci = str->cur_bci();
duke@435 800 _trap_index = index;
duke@435 801
duke@435 802 // Log information about this trap:
duke@435 803 CompileLog* log = outer()->env()->log();
duke@435 804 if (log != NULL) {
duke@435 805 int mid = log->identify(outer()->method());
duke@435 806 int kid = (klass == NULL)? -1: log->identify(klass);
duke@435 807 log->begin_elem("uncommon_trap method='%d' bci='%d'", mid, str->cur_bci());
duke@435 808 char buf[100];
duke@435 809 log->print(" %s", Deoptimization::format_trap_request(buf, sizeof(buf),
duke@435 810 index));
duke@435 811 if (kid >= 0)
duke@435 812 log->print(" klass='%d'", kid);
duke@435 813 log->end_elem();
duke@435 814 }
duke@435 815 }
duke@435 816
duke@435 817 // ------------------------------------------------------------------
duke@435 818 // ciTypeFlow::StateVector::do_null_assert
duke@435 819 // Corresponds to graphKit::do_null_assert.
duke@435 820 void ciTypeFlow::StateVector::do_null_assert(ciKlass* unloaded_klass) {
duke@435 821 if (unloaded_klass->is_loaded()) {
duke@435 822 // We failed to link, but we can still compute with this class,
duke@435 823 // since it is loaded somewhere. The compiler will uncommon_trap
duke@435 824 // if the object is not null, but the typeflow pass can not assume
duke@435 825 // that the object will be null, otherwise it may incorrectly tell
duke@435 826 // the parser that an object is known to be null. 4761344, 4807707
duke@435 827 push_object(unloaded_klass);
duke@435 828 } else {
duke@435 829 // The class is not loaded anywhere. It is safe to model the
duke@435 830 // null in the typestates, because we can compile in a null check
duke@435 831 // which will deoptimize us if someone manages to load the
duke@435 832 // class later.
duke@435 833 push_null();
duke@435 834 }
duke@435 835 }
duke@435 836
duke@435 837
duke@435 838 // ------------------------------------------------------------------
duke@435 839 // ciTypeFlow::StateVector::apply_one_bytecode
duke@435 840 //
duke@435 841 // Apply the effect of one bytecode to this StateVector
duke@435 842 bool ciTypeFlow::StateVector::apply_one_bytecode(ciBytecodeStream* str) {
duke@435 843 _trap_bci = -1;
duke@435 844 _trap_index = 0;
duke@435 845
duke@435 846 if (CITraceTypeFlow) {
duke@435 847 tty->print_cr(">> Interpreting bytecode %d:%s", str->cur_bci(),
duke@435 848 Bytecodes::name(str->cur_bc()));
duke@435 849 }
duke@435 850
duke@435 851 switch(str->cur_bc()) {
duke@435 852 case Bytecodes::_aaload: do_aaload(str); break;
duke@435 853
duke@435 854 case Bytecodes::_aastore:
duke@435 855 {
duke@435 856 pop_object();
duke@435 857 pop_int();
duke@435 858 pop_objArray();
duke@435 859 break;
duke@435 860 }
duke@435 861 case Bytecodes::_aconst_null:
duke@435 862 {
duke@435 863 push_null();
duke@435 864 break;
duke@435 865 }
duke@435 866 case Bytecodes::_aload: load_local_object(str->get_index()); break;
duke@435 867 case Bytecodes::_aload_0: load_local_object(0); break;
duke@435 868 case Bytecodes::_aload_1: load_local_object(1); break;
duke@435 869 case Bytecodes::_aload_2: load_local_object(2); break;
duke@435 870 case Bytecodes::_aload_3: load_local_object(3); break;
duke@435 871
duke@435 872 case Bytecodes::_anewarray:
duke@435 873 {
duke@435 874 pop_int();
duke@435 875 bool will_link;
duke@435 876 ciKlass* element_klass = str->get_klass(will_link);
duke@435 877 if (!will_link) {
duke@435 878 trap(str, element_klass, str->get_klass_index());
duke@435 879 } else {
duke@435 880 push_object(ciObjArrayKlass::make(element_klass));
duke@435 881 }
duke@435 882 break;
duke@435 883 }
duke@435 884 case Bytecodes::_areturn:
duke@435 885 case Bytecodes::_ifnonnull:
duke@435 886 case Bytecodes::_ifnull:
duke@435 887 {
duke@435 888 pop_object();
duke@435 889 break;
duke@435 890 }
duke@435 891 case Bytecodes::_monitorenter:
duke@435 892 {
duke@435 893 pop_object();
duke@435 894 set_monitor_count(monitor_count() + 1);
duke@435 895 break;
duke@435 896 }
duke@435 897 case Bytecodes::_monitorexit:
duke@435 898 {
duke@435 899 pop_object();
duke@435 900 assert(monitor_count() > 0, "must be a monitor to exit from");
duke@435 901 set_monitor_count(monitor_count() - 1);
duke@435 902 break;
duke@435 903 }
duke@435 904 case Bytecodes::_arraylength:
duke@435 905 {
duke@435 906 pop_array();
duke@435 907 push_int();
duke@435 908 break;
duke@435 909 }
duke@435 910 case Bytecodes::_astore: store_local_object(str->get_index()); break;
duke@435 911 case Bytecodes::_astore_0: store_local_object(0); break;
duke@435 912 case Bytecodes::_astore_1: store_local_object(1); break;
duke@435 913 case Bytecodes::_astore_2: store_local_object(2); break;
duke@435 914 case Bytecodes::_astore_3: store_local_object(3); break;
duke@435 915
duke@435 916 case Bytecodes::_athrow:
duke@435 917 {
duke@435 918 NEEDS_CLEANUP;
duke@435 919 pop_object();
duke@435 920 break;
duke@435 921 }
duke@435 922 case Bytecodes::_baload:
duke@435 923 case Bytecodes::_caload:
duke@435 924 case Bytecodes::_iaload:
duke@435 925 case Bytecodes::_saload:
duke@435 926 {
duke@435 927 pop_int();
duke@435 928 ciTypeArrayKlass* array_klass = pop_typeArray();
duke@435 929 // Put assert here for right type?
duke@435 930 push_int();
duke@435 931 break;
duke@435 932 }
duke@435 933 case Bytecodes::_bastore:
duke@435 934 case Bytecodes::_castore:
duke@435 935 case Bytecodes::_iastore:
duke@435 936 case Bytecodes::_sastore:
duke@435 937 {
duke@435 938 pop_int();
duke@435 939 pop_int();
duke@435 940 pop_typeArray();
duke@435 941 // assert here?
duke@435 942 break;
duke@435 943 }
duke@435 944 case Bytecodes::_bipush:
duke@435 945 case Bytecodes::_iconst_m1:
duke@435 946 case Bytecodes::_iconst_0:
duke@435 947 case Bytecodes::_iconst_1:
duke@435 948 case Bytecodes::_iconst_2:
duke@435 949 case Bytecodes::_iconst_3:
duke@435 950 case Bytecodes::_iconst_4:
duke@435 951 case Bytecodes::_iconst_5:
duke@435 952 case Bytecodes::_sipush:
duke@435 953 {
duke@435 954 push_int();
duke@435 955 break;
duke@435 956 }
duke@435 957 case Bytecodes::_checkcast: do_checkcast(str); break;
duke@435 958
duke@435 959 case Bytecodes::_d2f:
duke@435 960 {
duke@435 961 pop_double();
duke@435 962 push_float();
duke@435 963 break;
duke@435 964 }
duke@435 965 case Bytecodes::_d2i:
duke@435 966 {
duke@435 967 pop_double();
duke@435 968 push_int();
duke@435 969 break;
duke@435 970 }
duke@435 971 case Bytecodes::_d2l:
duke@435 972 {
duke@435 973 pop_double();
duke@435 974 push_long();
duke@435 975 break;
duke@435 976 }
duke@435 977 case Bytecodes::_dadd:
duke@435 978 case Bytecodes::_ddiv:
duke@435 979 case Bytecodes::_dmul:
duke@435 980 case Bytecodes::_drem:
duke@435 981 case Bytecodes::_dsub:
duke@435 982 {
duke@435 983 pop_double();
duke@435 984 pop_double();
duke@435 985 push_double();
duke@435 986 break;
duke@435 987 }
duke@435 988 case Bytecodes::_daload:
duke@435 989 {
duke@435 990 pop_int();
duke@435 991 ciTypeArrayKlass* array_klass = pop_typeArray();
duke@435 992 // Put assert here for right type?
duke@435 993 push_double();
duke@435 994 break;
duke@435 995 }
duke@435 996 case Bytecodes::_dastore:
duke@435 997 {
duke@435 998 pop_double();
duke@435 999 pop_int();
duke@435 1000 pop_typeArray();
duke@435 1001 // assert here?
duke@435 1002 break;
duke@435 1003 }
duke@435 1004 case Bytecodes::_dcmpg:
duke@435 1005 case Bytecodes::_dcmpl:
duke@435 1006 {
duke@435 1007 pop_double();
duke@435 1008 pop_double();
duke@435 1009 push_int();
duke@435 1010 break;
duke@435 1011 }
duke@435 1012 case Bytecodes::_dconst_0:
duke@435 1013 case Bytecodes::_dconst_1:
duke@435 1014 {
duke@435 1015 push_double();
duke@435 1016 break;
duke@435 1017 }
duke@435 1018 case Bytecodes::_dload: load_local_double(str->get_index()); break;
duke@435 1019 case Bytecodes::_dload_0: load_local_double(0); break;
duke@435 1020 case Bytecodes::_dload_1: load_local_double(1); break;
duke@435 1021 case Bytecodes::_dload_2: load_local_double(2); break;
duke@435 1022 case Bytecodes::_dload_3: load_local_double(3); break;
duke@435 1023
duke@435 1024 case Bytecodes::_dneg:
duke@435 1025 {
duke@435 1026 pop_double();
duke@435 1027 push_double();
duke@435 1028 break;
duke@435 1029 }
duke@435 1030 case Bytecodes::_dreturn:
duke@435 1031 {
duke@435 1032 pop_double();
duke@435 1033 break;
duke@435 1034 }
duke@435 1035 case Bytecodes::_dstore: store_local_double(str->get_index()); break;
duke@435 1036 case Bytecodes::_dstore_0: store_local_double(0); break;
duke@435 1037 case Bytecodes::_dstore_1: store_local_double(1); break;
duke@435 1038 case Bytecodes::_dstore_2: store_local_double(2); break;
duke@435 1039 case Bytecodes::_dstore_3: store_local_double(3); break;
duke@435 1040
duke@435 1041 case Bytecodes::_dup:
duke@435 1042 {
duke@435 1043 push(type_at_tos());
duke@435 1044 break;
duke@435 1045 }
duke@435 1046 case Bytecodes::_dup_x1:
duke@435 1047 {
duke@435 1048 ciType* value1 = pop_value();
duke@435 1049 ciType* value2 = pop_value();
duke@435 1050 push(value1);
duke@435 1051 push(value2);
duke@435 1052 push(value1);
duke@435 1053 break;
duke@435 1054 }
duke@435 1055 case Bytecodes::_dup_x2:
duke@435 1056 {
duke@435 1057 ciType* value1 = pop_value();
duke@435 1058 ciType* value2 = pop_value();
duke@435 1059 ciType* value3 = pop_value();
duke@435 1060 push(value1);
duke@435 1061 push(value3);
duke@435 1062 push(value2);
duke@435 1063 push(value1);
duke@435 1064 break;
duke@435 1065 }
duke@435 1066 case Bytecodes::_dup2:
duke@435 1067 {
duke@435 1068 ciType* value1 = pop_value();
duke@435 1069 ciType* value2 = pop_value();
duke@435 1070 push(value2);
duke@435 1071 push(value1);
duke@435 1072 push(value2);
duke@435 1073 push(value1);
duke@435 1074 break;
duke@435 1075 }
duke@435 1076 case Bytecodes::_dup2_x1:
duke@435 1077 {
duke@435 1078 ciType* value1 = pop_value();
duke@435 1079 ciType* value2 = pop_value();
duke@435 1080 ciType* value3 = pop_value();
duke@435 1081 push(value2);
duke@435 1082 push(value1);
duke@435 1083 push(value3);
duke@435 1084 push(value2);
duke@435 1085 push(value1);
duke@435 1086 break;
duke@435 1087 }
duke@435 1088 case Bytecodes::_dup2_x2:
duke@435 1089 {
duke@435 1090 ciType* value1 = pop_value();
duke@435 1091 ciType* value2 = pop_value();
duke@435 1092 ciType* value3 = pop_value();
duke@435 1093 ciType* value4 = pop_value();
duke@435 1094 push(value2);
duke@435 1095 push(value1);
duke@435 1096 push(value4);
duke@435 1097 push(value3);
duke@435 1098 push(value2);
duke@435 1099 push(value1);
duke@435 1100 break;
duke@435 1101 }
duke@435 1102 case Bytecodes::_f2d:
duke@435 1103 {
duke@435 1104 pop_float();
duke@435 1105 push_double();
duke@435 1106 break;
duke@435 1107 }
duke@435 1108 case Bytecodes::_f2i:
duke@435 1109 {
duke@435 1110 pop_float();
duke@435 1111 push_int();
duke@435 1112 break;
duke@435 1113 }
duke@435 1114 case Bytecodes::_f2l:
duke@435 1115 {
duke@435 1116 pop_float();
duke@435 1117 push_long();
duke@435 1118 break;
duke@435 1119 }
duke@435 1120 case Bytecodes::_fadd:
duke@435 1121 case Bytecodes::_fdiv:
duke@435 1122 case Bytecodes::_fmul:
duke@435 1123 case Bytecodes::_frem:
duke@435 1124 case Bytecodes::_fsub:
duke@435 1125 {
duke@435 1126 pop_float();
duke@435 1127 pop_float();
duke@435 1128 push_float();
duke@435 1129 break;
duke@435 1130 }
duke@435 1131 case Bytecodes::_faload:
duke@435 1132 {
duke@435 1133 pop_int();
duke@435 1134 ciTypeArrayKlass* array_klass = pop_typeArray();
duke@435 1135 // Put assert here.
duke@435 1136 push_float();
duke@435 1137 break;
duke@435 1138 }
duke@435 1139 case Bytecodes::_fastore:
duke@435 1140 {
duke@435 1141 pop_float();
duke@435 1142 pop_int();
duke@435 1143 ciTypeArrayKlass* array_klass = pop_typeArray();
duke@435 1144 // Put assert here.
duke@435 1145 break;
duke@435 1146 }
duke@435 1147 case Bytecodes::_fcmpg:
duke@435 1148 case Bytecodes::_fcmpl:
duke@435 1149 {
duke@435 1150 pop_float();
duke@435 1151 pop_float();
duke@435 1152 push_int();
duke@435 1153 break;
duke@435 1154 }
duke@435 1155 case Bytecodes::_fconst_0:
duke@435 1156 case Bytecodes::_fconst_1:
duke@435 1157 case Bytecodes::_fconst_2:
duke@435 1158 {
duke@435 1159 push_float();
duke@435 1160 break;
duke@435 1161 }
duke@435 1162 case Bytecodes::_fload: load_local_float(str->get_index()); break;
duke@435 1163 case Bytecodes::_fload_0: load_local_float(0); break;
duke@435 1164 case Bytecodes::_fload_1: load_local_float(1); break;
duke@435 1165 case Bytecodes::_fload_2: load_local_float(2); break;
duke@435 1166 case Bytecodes::_fload_3: load_local_float(3); break;
duke@435 1167
duke@435 1168 case Bytecodes::_fneg:
duke@435 1169 {
duke@435 1170 pop_float();
duke@435 1171 push_float();
duke@435 1172 break;
duke@435 1173 }
duke@435 1174 case Bytecodes::_freturn:
duke@435 1175 {
duke@435 1176 pop_float();
duke@435 1177 break;
duke@435 1178 }
duke@435 1179 case Bytecodes::_fstore: store_local_float(str->get_index()); break;
duke@435 1180 case Bytecodes::_fstore_0: store_local_float(0); break;
duke@435 1181 case Bytecodes::_fstore_1: store_local_float(1); break;
duke@435 1182 case Bytecodes::_fstore_2: store_local_float(2); break;
duke@435 1183 case Bytecodes::_fstore_3: store_local_float(3); break;
duke@435 1184
duke@435 1185 case Bytecodes::_getfield: do_getfield(str); break;
duke@435 1186 case Bytecodes::_getstatic: do_getstatic(str); break;
duke@435 1187
duke@435 1188 case Bytecodes::_goto:
duke@435 1189 case Bytecodes::_goto_w:
duke@435 1190 case Bytecodes::_nop:
duke@435 1191 case Bytecodes::_return:
duke@435 1192 {
duke@435 1193 // do nothing.
duke@435 1194 break;
duke@435 1195 }
duke@435 1196 case Bytecodes::_i2b:
duke@435 1197 case Bytecodes::_i2c:
duke@435 1198 case Bytecodes::_i2s:
duke@435 1199 case Bytecodes::_ineg:
duke@435 1200 {
duke@435 1201 pop_int();
duke@435 1202 push_int();
duke@435 1203 break;
duke@435 1204 }
duke@435 1205 case Bytecodes::_i2d:
duke@435 1206 {
duke@435 1207 pop_int();
duke@435 1208 push_double();
duke@435 1209 break;
duke@435 1210 }
duke@435 1211 case Bytecodes::_i2f:
duke@435 1212 {
duke@435 1213 pop_int();
duke@435 1214 push_float();
duke@435 1215 break;
duke@435 1216 }
duke@435 1217 case Bytecodes::_i2l:
duke@435 1218 {
duke@435 1219 pop_int();
duke@435 1220 push_long();
duke@435 1221 break;
duke@435 1222 }
duke@435 1223 case Bytecodes::_iadd:
duke@435 1224 case Bytecodes::_iand:
duke@435 1225 case Bytecodes::_idiv:
duke@435 1226 case Bytecodes::_imul:
duke@435 1227 case Bytecodes::_ior:
duke@435 1228 case Bytecodes::_irem:
duke@435 1229 case Bytecodes::_ishl:
duke@435 1230 case Bytecodes::_ishr:
duke@435 1231 case Bytecodes::_isub:
duke@435 1232 case Bytecodes::_iushr:
duke@435 1233 case Bytecodes::_ixor:
duke@435 1234 {
duke@435 1235 pop_int();
duke@435 1236 pop_int();
duke@435 1237 push_int();
duke@435 1238 break;
duke@435 1239 }
duke@435 1240 case Bytecodes::_if_acmpeq:
duke@435 1241 case Bytecodes::_if_acmpne:
duke@435 1242 {
duke@435 1243 pop_object();
duke@435 1244 pop_object();
duke@435 1245 break;
duke@435 1246 }
duke@435 1247 case Bytecodes::_if_icmpeq:
duke@435 1248 case Bytecodes::_if_icmpge:
duke@435 1249 case Bytecodes::_if_icmpgt:
duke@435 1250 case Bytecodes::_if_icmple:
duke@435 1251 case Bytecodes::_if_icmplt:
duke@435 1252 case Bytecodes::_if_icmpne:
duke@435 1253 {
duke@435 1254 pop_int();
duke@435 1255 pop_int();
duke@435 1256 break;
duke@435 1257 }
duke@435 1258 case Bytecodes::_ifeq:
duke@435 1259 case Bytecodes::_ifle:
duke@435 1260 case Bytecodes::_iflt:
duke@435 1261 case Bytecodes::_ifge:
duke@435 1262 case Bytecodes::_ifgt:
duke@435 1263 case Bytecodes::_ifne:
duke@435 1264 case Bytecodes::_ireturn:
duke@435 1265 case Bytecodes::_lookupswitch:
duke@435 1266 case Bytecodes::_tableswitch:
duke@435 1267 {
duke@435 1268 pop_int();
duke@435 1269 break;
duke@435 1270 }
duke@435 1271 case Bytecodes::_iinc:
duke@435 1272 {
never@802 1273 int lnum = str->get_index();
never@802 1274 check_int(local(lnum));
never@802 1275 store_to_local(lnum);
duke@435 1276 break;
duke@435 1277 }
duke@435 1278 case Bytecodes::_iload: load_local_int(str->get_index()); break;
duke@435 1279 case Bytecodes::_iload_0: load_local_int(0); break;
duke@435 1280 case Bytecodes::_iload_1: load_local_int(1); break;
duke@435 1281 case Bytecodes::_iload_2: load_local_int(2); break;
duke@435 1282 case Bytecodes::_iload_3: load_local_int(3); break;
duke@435 1283
duke@435 1284 case Bytecodes::_instanceof:
duke@435 1285 {
duke@435 1286 // Check for uncommon trap:
duke@435 1287 do_checkcast(str);
duke@435 1288 pop_object();
duke@435 1289 push_int();
duke@435 1290 break;
duke@435 1291 }
duke@435 1292 case Bytecodes::_invokeinterface: do_invoke(str, true); break;
duke@435 1293 case Bytecodes::_invokespecial: do_invoke(str, true); break;
duke@435 1294 case Bytecodes::_invokestatic: do_invoke(str, false); break;
duke@435 1295
duke@435 1296 case Bytecodes::_invokevirtual: do_invoke(str, true); break;
duke@435 1297
duke@435 1298 case Bytecodes::_istore: store_local_int(str->get_index()); break;
duke@435 1299 case Bytecodes::_istore_0: store_local_int(0); break;
duke@435 1300 case Bytecodes::_istore_1: store_local_int(1); break;
duke@435 1301 case Bytecodes::_istore_2: store_local_int(2); break;
duke@435 1302 case Bytecodes::_istore_3: store_local_int(3); break;
duke@435 1303
duke@435 1304 case Bytecodes::_jsr:
duke@435 1305 case Bytecodes::_jsr_w: do_jsr(str); break;
duke@435 1306
duke@435 1307 case Bytecodes::_l2d:
duke@435 1308 {
duke@435 1309 pop_long();
duke@435 1310 push_double();
duke@435 1311 break;
duke@435 1312 }
duke@435 1313 case Bytecodes::_l2f:
duke@435 1314 {
duke@435 1315 pop_long();
duke@435 1316 push_float();
duke@435 1317 break;
duke@435 1318 }
duke@435 1319 case Bytecodes::_l2i:
duke@435 1320 {
duke@435 1321 pop_long();
duke@435 1322 push_int();
duke@435 1323 break;
duke@435 1324 }
duke@435 1325 case Bytecodes::_ladd:
duke@435 1326 case Bytecodes::_land:
duke@435 1327 case Bytecodes::_ldiv:
duke@435 1328 case Bytecodes::_lmul:
duke@435 1329 case Bytecodes::_lor:
duke@435 1330 case Bytecodes::_lrem:
duke@435 1331 case Bytecodes::_lsub:
duke@435 1332 case Bytecodes::_lxor:
duke@435 1333 {
duke@435 1334 pop_long();
duke@435 1335 pop_long();
duke@435 1336 push_long();
duke@435 1337 break;
duke@435 1338 }
duke@435 1339 case Bytecodes::_laload:
duke@435 1340 {
duke@435 1341 pop_int();
duke@435 1342 ciTypeArrayKlass* array_klass = pop_typeArray();
duke@435 1343 // Put assert here for right type?
duke@435 1344 push_long();
duke@435 1345 break;
duke@435 1346 }
duke@435 1347 case Bytecodes::_lastore:
duke@435 1348 {
duke@435 1349 pop_long();
duke@435 1350 pop_int();
duke@435 1351 pop_typeArray();
duke@435 1352 // assert here?
duke@435 1353 break;
duke@435 1354 }
duke@435 1355 case Bytecodes::_lcmp:
duke@435 1356 {
duke@435 1357 pop_long();
duke@435 1358 pop_long();
duke@435 1359 push_int();
duke@435 1360 break;
duke@435 1361 }
duke@435 1362 case Bytecodes::_lconst_0:
duke@435 1363 case Bytecodes::_lconst_1:
duke@435 1364 {
duke@435 1365 push_long();
duke@435 1366 break;
duke@435 1367 }
duke@435 1368 case Bytecodes::_ldc:
duke@435 1369 case Bytecodes::_ldc_w:
duke@435 1370 case Bytecodes::_ldc2_w:
duke@435 1371 {
duke@435 1372 do_ldc(str);
duke@435 1373 break;
duke@435 1374 }
duke@435 1375
duke@435 1376 case Bytecodes::_lload: load_local_long(str->get_index()); break;
duke@435 1377 case Bytecodes::_lload_0: load_local_long(0); break;
duke@435 1378 case Bytecodes::_lload_1: load_local_long(1); break;
duke@435 1379 case Bytecodes::_lload_2: load_local_long(2); break;
duke@435 1380 case Bytecodes::_lload_3: load_local_long(3); break;
duke@435 1381
duke@435 1382 case Bytecodes::_lneg:
duke@435 1383 {
duke@435 1384 pop_long();
duke@435 1385 push_long();
duke@435 1386 break;
duke@435 1387 }
duke@435 1388 case Bytecodes::_lreturn:
duke@435 1389 {
duke@435 1390 pop_long();
duke@435 1391 break;
duke@435 1392 }
duke@435 1393 case Bytecodes::_lshl:
duke@435 1394 case Bytecodes::_lshr:
duke@435 1395 case Bytecodes::_lushr:
duke@435 1396 {
duke@435 1397 pop_int();
duke@435 1398 pop_long();
duke@435 1399 push_long();
duke@435 1400 break;
duke@435 1401 }
duke@435 1402 case Bytecodes::_lstore: store_local_long(str->get_index()); break;
duke@435 1403 case Bytecodes::_lstore_0: store_local_long(0); break;
duke@435 1404 case Bytecodes::_lstore_1: store_local_long(1); break;
duke@435 1405 case Bytecodes::_lstore_2: store_local_long(2); break;
duke@435 1406 case Bytecodes::_lstore_3: store_local_long(3); break;
duke@435 1407
duke@435 1408 case Bytecodes::_multianewarray: do_multianewarray(str); break;
duke@435 1409
duke@435 1410 case Bytecodes::_new: do_new(str); break;
duke@435 1411
duke@435 1412 case Bytecodes::_newarray: do_newarray(str); break;
duke@435 1413
duke@435 1414 case Bytecodes::_pop:
duke@435 1415 {
duke@435 1416 pop();
duke@435 1417 break;
duke@435 1418 }
duke@435 1419 case Bytecodes::_pop2:
duke@435 1420 {
duke@435 1421 pop();
duke@435 1422 pop();
duke@435 1423 break;
duke@435 1424 }
duke@435 1425
duke@435 1426 case Bytecodes::_putfield: do_putfield(str); break;
duke@435 1427 case Bytecodes::_putstatic: do_putstatic(str); break;
duke@435 1428
duke@435 1429 case Bytecodes::_ret: do_ret(str); break;
duke@435 1430
duke@435 1431 case Bytecodes::_swap:
duke@435 1432 {
duke@435 1433 ciType* value1 = pop_value();
duke@435 1434 ciType* value2 = pop_value();
duke@435 1435 push(value1);
duke@435 1436 push(value2);
duke@435 1437 break;
duke@435 1438 }
duke@435 1439 case Bytecodes::_wide:
duke@435 1440 default:
duke@435 1441 {
duke@435 1442 // The iterator should skip this.
duke@435 1443 ShouldNotReachHere();
duke@435 1444 break;
duke@435 1445 }
duke@435 1446 }
duke@435 1447
duke@435 1448 if (CITraceTypeFlow) {
duke@435 1449 print_on(tty);
duke@435 1450 }
duke@435 1451
duke@435 1452 return (_trap_bci != -1);
duke@435 1453 }
duke@435 1454
duke@435 1455 #ifndef PRODUCT
duke@435 1456 // ------------------------------------------------------------------
duke@435 1457 // ciTypeFlow::StateVector::print_cell_on
duke@435 1458 void ciTypeFlow::StateVector::print_cell_on(outputStream* st, Cell c) const {
duke@435 1459 ciType* type = type_at(c);
duke@435 1460 if (type == top_type()) {
duke@435 1461 st->print("top");
duke@435 1462 } else if (type == bottom_type()) {
duke@435 1463 st->print("bottom");
duke@435 1464 } else if (type == null_type()) {
duke@435 1465 st->print("null");
duke@435 1466 } else if (type == long2_type()) {
duke@435 1467 st->print("long2");
duke@435 1468 } else if (type == double2_type()) {
duke@435 1469 st->print("double2");
duke@435 1470 } else if (is_int(type)) {
duke@435 1471 st->print("int");
duke@435 1472 } else if (is_long(type)) {
duke@435 1473 st->print("long");
duke@435 1474 } else if (is_float(type)) {
duke@435 1475 st->print("float");
duke@435 1476 } else if (is_double(type)) {
duke@435 1477 st->print("double");
duke@435 1478 } else if (type->is_return_address()) {
duke@435 1479 st->print("address(%d)", type->as_return_address()->bci());
duke@435 1480 } else {
duke@435 1481 if (type->is_klass()) {
duke@435 1482 type->as_klass()->name()->print_symbol_on(st);
duke@435 1483 } else {
duke@435 1484 st->print("UNEXPECTED TYPE");
duke@435 1485 type->print();
duke@435 1486 }
duke@435 1487 }
duke@435 1488 }
duke@435 1489
duke@435 1490 // ------------------------------------------------------------------
duke@435 1491 // ciTypeFlow::StateVector::print_on
duke@435 1492 void ciTypeFlow::StateVector::print_on(outputStream* st) const {
duke@435 1493 int num_locals = _outer->max_locals();
duke@435 1494 int num_stack = stack_size();
duke@435 1495 int num_monitors = monitor_count();
duke@435 1496 st->print_cr(" State : locals %d, stack %d, monitors %d", num_locals, num_stack, num_monitors);
duke@435 1497 if (num_stack >= 0) {
duke@435 1498 int i;
duke@435 1499 for (i = 0; i < num_locals; i++) {
duke@435 1500 st->print(" local %2d : ", i);
duke@435 1501 print_cell_on(st, local(i));
duke@435 1502 st->cr();
duke@435 1503 }
duke@435 1504 for (i = 0; i < num_stack; i++) {
duke@435 1505 st->print(" stack %2d : ", i);
duke@435 1506 print_cell_on(st, stack(i));
duke@435 1507 st->cr();
duke@435 1508 }
duke@435 1509 }
duke@435 1510 }
duke@435 1511 #endif
duke@435 1512
never@802 1513
never@802 1514 // ------------------------------------------------------------------
never@802 1515 // ciTypeFlow::SuccIter::next
never@802 1516 //
never@802 1517 void ciTypeFlow::SuccIter::next() {
never@802 1518 int succ_ct = _pred->successors()->length();
never@802 1519 int next = _index + 1;
never@802 1520 if (next < succ_ct) {
never@802 1521 _index = next;
never@802 1522 _succ = _pred->successors()->at(next);
never@802 1523 return;
never@802 1524 }
never@802 1525 for (int i = next - succ_ct; i < _pred->exceptions()->length(); i++) {
never@802 1526 // Do not compile any code for unloaded exception types.
never@802 1527 // Following compiler passes are responsible for doing this also.
never@802 1528 ciInstanceKlass* exception_klass = _pred->exc_klasses()->at(i);
never@802 1529 if (exception_klass->is_loaded()) {
never@802 1530 _index = next;
never@802 1531 _succ = _pred->exceptions()->at(i);
never@802 1532 return;
never@802 1533 }
never@802 1534 next++;
never@802 1535 }
never@802 1536 _index = -1;
never@802 1537 _succ = NULL;
never@802 1538 }
never@802 1539
never@802 1540 // ------------------------------------------------------------------
never@802 1541 // ciTypeFlow::SuccIter::set_succ
never@802 1542 //
never@802 1543 void ciTypeFlow::SuccIter::set_succ(Block* succ) {
never@802 1544 int succ_ct = _pred->successors()->length();
never@802 1545 if (_index < succ_ct) {
never@802 1546 _pred->successors()->at_put(_index, succ);
never@802 1547 } else {
never@802 1548 int idx = _index - succ_ct;
never@802 1549 _pred->exceptions()->at_put(idx, succ);
never@802 1550 }
never@802 1551 }
never@802 1552
duke@435 1553 // ciTypeFlow::Block
duke@435 1554 //
duke@435 1555 // A basic block.
duke@435 1556
duke@435 1557 // ------------------------------------------------------------------
duke@435 1558 // ciTypeFlow::Block::Block
duke@435 1559 ciTypeFlow::Block::Block(ciTypeFlow* outer,
duke@435 1560 ciBlock *ciblk,
duke@435 1561 ciTypeFlow::JsrSet* jsrs) {
duke@435 1562 _ciblock = ciblk;
duke@435 1563 _exceptions = NULL;
duke@435 1564 _exc_klasses = NULL;
duke@435 1565 _successors = NULL;
duke@435 1566 _state = new (outer->arena()) StateVector(outer);
duke@435 1567 JsrSet* new_jsrs =
duke@435 1568 new (outer->arena()) JsrSet(outer->arena(), jsrs->size());
duke@435 1569 jsrs->copy_into(new_jsrs);
duke@435 1570 _jsrs = new_jsrs;
duke@435 1571 _next = NULL;
duke@435 1572 _on_work_list = false;
never@802 1573 _backedge_copy = false;
never@802 1574 _exception_entry = false;
duke@435 1575 _trap_bci = -1;
duke@435 1576 _trap_index = 0;
never@802 1577 df_init();
duke@435 1578
duke@435 1579 if (CITraceTypeFlow) {
duke@435 1580 tty->print_cr(">> Created new block");
duke@435 1581 print_on(tty);
duke@435 1582 }
duke@435 1583
duke@435 1584 assert(this->outer() == outer, "outer link set up");
duke@435 1585 assert(!outer->have_block_count(), "must not have mapped blocks yet");
duke@435 1586 }
duke@435 1587
duke@435 1588 // ------------------------------------------------------------------
never@802 1589 // ciTypeFlow::Block::df_init
never@802 1590 void ciTypeFlow::Block::df_init() {
never@802 1591 _pre_order = -1; assert(!has_pre_order(), "");
never@802 1592 _post_order = -1; assert(!has_post_order(), "");
never@802 1593 _loop = NULL;
never@802 1594 _irreducible_entry = false;
never@802 1595 _rpo_next = NULL;
duke@435 1596 }
duke@435 1597
duke@435 1598 // ------------------------------------------------------------------
duke@435 1599 // ciTypeFlow::Block::successors
duke@435 1600 //
duke@435 1601 // Get the successors for this Block.
duke@435 1602 GrowableArray<ciTypeFlow::Block*>*
duke@435 1603 ciTypeFlow::Block::successors(ciBytecodeStream* str,
duke@435 1604 ciTypeFlow::StateVector* state,
duke@435 1605 ciTypeFlow::JsrSet* jsrs) {
duke@435 1606 if (_successors == NULL) {
duke@435 1607 if (CITraceTypeFlow) {
duke@435 1608 tty->print(">> Computing successors for block ");
duke@435 1609 print_value_on(tty);
duke@435 1610 tty->cr();
duke@435 1611 }
duke@435 1612
duke@435 1613 ciTypeFlow* analyzer = outer();
duke@435 1614 Arena* arena = analyzer->arena();
duke@435 1615 Block* block = NULL;
duke@435 1616 bool has_successor = !has_trap() &&
duke@435 1617 (control() != ciBlock::fall_through_bci || limit() < analyzer->code_size());
duke@435 1618 if (!has_successor) {
duke@435 1619 _successors =
duke@435 1620 new (arena) GrowableArray<Block*>(arena, 1, 0, NULL);
duke@435 1621 // No successors
duke@435 1622 } else if (control() == ciBlock::fall_through_bci) {
duke@435 1623 assert(str->cur_bci() == limit(), "bad block end");
duke@435 1624 // This block simply falls through to the next.
duke@435 1625 _successors =
duke@435 1626 new (arena) GrowableArray<Block*>(arena, 1, 0, NULL);
duke@435 1627
duke@435 1628 Block* block = analyzer->block_at(limit(), _jsrs);
duke@435 1629 assert(_successors->length() == FALL_THROUGH, "");
duke@435 1630 _successors->append(block);
duke@435 1631 } else {
duke@435 1632 int current_bci = str->cur_bci();
duke@435 1633 int next_bci = str->next_bci();
duke@435 1634 int branch_bci = -1;
duke@435 1635 Block* target = NULL;
duke@435 1636 assert(str->next_bci() == limit(), "bad block end");
duke@435 1637 // This block is not a simple fall-though. Interpret
duke@435 1638 // the current bytecode to find our successors.
duke@435 1639 switch (str->cur_bc()) {
duke@435 1640 case Bytecodes::_ifeq: case Bytecodes::_ifne:
duke@435 1641 case Bytecodes::_iflt: case Bytecodes::_ifge:
duke@435 1642 case Bytecodes::_ifgt: case Bytecodes::_ifle:
duke@435 1643 case Bytecodes::_if_icmpeq: case Bytecodes::_if_icmpne:
duke@435 1644 case Bytecodes::_if_icmplt: case Bytecodes::_if_icmpge:
duke@435 1645 case Bytecodes::_if_icmpgt: case Bytecodes::_if_icmple:
duke@435 1646 case Bytecodes::_if_acmpeq: case Bytecodes::_if_acmpne:
duke@435 1647 case Bytecodes::_ifnull: case Bytecodes::_ifnonnull:
duke@435 1648 // Our successors are the branch target and the next bci.
duke@435 1649 branch_bci = str->get_dest();
duke@435 1650 _successors =
duke@435 1651 new (arena) GrowableArray<Block*>(arena, 2, 0, NULL);
duke@435 1652 assert(_successors->length() == IF_NOT_TAKEN, "");
duke@435 1653 _successors->append(analyzer->block_at(next_bci, jsrs));
duke@435 1654 assert(_successors->length() == IF_TAKEN, "");
duke@435 1655 _successors->append(analyzer->block_at(branch_bci, jsrs));
duke@435 1656 break;
duke@435 1657
duke@435 1658 case Bytecodes::_goto:
duke@435 1659 branch_bci = str->get_dest();
duke@435 1660 _successors =
duke@435 1661 new (arena) GrowableArray<Block*>(arena, 1, 0, NULL);
duke@435 1662 assert(_successors->length() == GOTO_TARGET, "");
never@802 1663 _successors->append(analyzer->block_at(branch_bci, jsrs));
duke@435 1664 break;
duke@435 1665
duke@435 1666 case Bytecodes::_jsr:
duke@435 1667 branch_bci = str->get_dest();
duke@435 1668 _successors =
duke@435 1669 new (arena) GrowableArray<Block*>(arena, 1, 0, NULL);
duke@435 1670 assert(_successors->length() == GOTO_TARGET, "");
duke@435 1671 _successors->append(analyzer->block_at(branch_bci, jsrs));
duke@435 1672 break;
duke@435 1673
duke@435 1674 case Bytecodes::_goto_w:
duke@435 1675 case Bytecodes::_jsr_w:
duke@435 1676 _successors =
duke@435 1677 new (arena) GrowableArray<Block*>(arena, 1, 0, NULL);
duke@435 1678 assert(_successors->length() == GOTO_TARGET, "");
duke@435 1679 _successors->append(analyzer->block_at(str->get_far_dest(), jsrs));
duke@435 1680 break;
duke@435 1681
duke@435 1682 case Bytecodes::_tableswitch: {
duke@435 1683 Bytecode_tableswitch *tableswitch =
duke@435 1684 Bytecode_tableswitch_at(str->cur_bcp());
duke@435 1685
duke@435 1686 int len = tableswitch->length();
duke@435 1687 _successors =
duke@435 1688 new (arena) GrowableArray<Block*>(arena, len+1, 0, NULL);
duke@435 1689 int bci = current_bci + tableswitch->default_offset();
duke@435 1690 Block* block = analyzer->block_at(bci, jsrs);
duke@435 1691 assert(_successors->length() == SWITCH_DEFAULT, "");
duke@435 1692 _successors->append(block);
duke@435 1693 while (--len >= 0) {
duke@435 1694 int bci = current_bci + tableswitch->dest_offset_at(len);
duke@435 1695 block = analyzer->block_at(bci, jsrs);
duke@435 1696 assert(_successors->length() >= SWITCH_CASES, "");
duke@435 1697 _successors->append_if_missing(block);
duke@435 1698 }
duke@435 1699 break;
duke@435 1700 }
duke@435 1701
duke@435 1702 case Bytecodes::_lookupswitch: {
duke@435 1703 Bytecode_lookupswitch *lookupswitch =
duke@435 1704 Bytecode_lookupswitch_at(str->cur_bcp());
duke@435 1705
duke@435 1706 int npairs = lookupswitch->number_of_pairs();
duke@435 1707 _successors =
duke@435 1708 new (arena) GrowableArray<Block*>(arena, npairs+1, 0, NULL);
duke@435 1709 int bci = current_bci + lookupswitch->default_offset();
duke@435 1710 Block* block = analyzer->block_at(bci, jsrs);
duke@435 1711 assert(_successors->length() == SWITCH_DEFAULT, "");
duke@435 1712 _successors->append(block);
duke@435 1713 while(--npairs >= 0) {
duke@435 1714 LookupswitchPair *pair = lookupswitch->pair_at(npairs);
duke@435 1715 int bci = current_bci + pair->offset();
duke@435 1716 Block* block = analyzer->block_at(bci, jsrs);
duke@435 1717 assert(_successors->length() >= SWITCH_CASES, "");
duke@435 1718 _successors->append_if_missing(block);
duke@435 1719 }
duke@435 1720 break;
duke@435 1721 }
duke@435 1722
duke@435 1723 case Bytecodes::_athrow: case Bytecodes::_ireturn:
duke@435 1724 case Bytecodes::_lreturn: case Bytecodes::_freturn:
duke@435 1725 case Bytecodes::_dreturn: case Bytecodes::_areturn:
duke@435 1726 case Bytecodes::_return:
duke@435 1727 _successors =
duke@435 1728 new (arena) GrowableArray<Block*>(arena, 1, 0, NULL);
duke@435 1729 // No successors
duke@435 1730 break;
duke@435 1731
duke@435 1732 case Bytecodes::_ret: {
duke@435 1733 _successors =
duke@435 1734 new (arena) GrowableArray<Block*>(arena, 1, 0, NULL);
duke@435 1735
duke@435 1736 Cell local = state->local(str->get_index());
duke@435 1737 ciType* return_address = state->type_at(local);
duke@435 1738 assert(return_address->is_return_address(), "verify: wrong type");
duke@435 1739 int bci = return_address->as_return_address()->bci();
duke@435 1740 assert(_successors->length() == GOTO_TARGET, "");
duke@435 1741 _successors->append(analyzer->block_at(bci, jsrs));
duke@435 1742 break;
duke@435 1743 }
duke@435 1744
duke@435 1745 case Bytecodes::_wide:
duke@435 1746 default:
duke@435 1747 ShouldNotReachHere();
duke@435 1748 break;
duke@435 1749 }
duke@435 1750 }
duke@435 1751 }
duke@435 1752 return _successors;
duke@435 1753 }
duke@435 1754
duke@435 1755 // ------------------------------------------------------------------
duke@435 1756 // ciTypeFlow::Block:compute_exceptions
duke@435 1757 //
duke@435 1758 // Compute the exceptional successors and types for this Block.
duke@435 1759 void ciTypeFlow::Block::compute_exceptions() {
duke@435 1760 assert(_exceptions == NULL && _exc_klasses == NULL, "repeat");
duke@435 1761
duke@435 1762 if (CITraceTypeFlow) {
duke@435 1763 tty->print(">> Computing exceptions for block ");
duke@435 1764 print_value_on(tty);
duke@435 1765 tty->cr();
duke@435 1766 }
duke@435 1767
duke@435 1768 ciTypeFlow* analyzer = outer();
duke@435 1769 Arena* arena = analyzer->arena();
duke@435 1770
duke@435 1771 // Any bci in the block will do.
duke@435 1772 ciExceptionHandlerStream str(analyzer->method(), start());
duke@435 1773
duke@435 1774 // Allocate our growable arrays.
duke@435 1775 int exc_count = str.count();
duke@435 1776 _exceptions = new (arena) GrowableArray<Block*>(arena, exc_count, 0, NULL);
duke@435 1777 _exc_klasses = new (arena) GrowableArray<ciInstanceKlass*>(arena, exc_count,
duke@435 1778 0, NULL);
duke@435 1779
duke@435 1780 for ( ; !str.is_done(); str.next()) {
duke@435 1781 ciExceptionHandler* handler = str.handler();
duke@435 1782 int bci = handler->handler_bci();
duke@435 1783 ciInstanceKlass* klass = NULL;
duke@435 1784 if (bci == -1) {
duke@435 1785 // There is no catch all. It is possible to exit the method.
duke@435 1786 break;
duke@435 1787 }
duke@435 1788 if (handler->is_catch_all()) {
duke@435 1789 klass = analyzer->env()->Throwable_klass();
duke@435 1790 } else {
duke@435 1791 klass = handler->catch_klass();
duke@435 1792 }
duke@435 1793 _exceptions->append(analyzer->block_at(bci, _jsrs));
duke@435 1794 _exc_klasses->append(klass);
duke@435 1795 }
duke@435 1796 }
duke@435 1797
duke@435 1798 // ------------------------------------------------------------------
never@802 1799 // ciTypeFlow::Block::set_backedge_copy
never@802 1800 // Use this only to make a pre-existing public block into a backedge copy.
never@802 1801 void ciTypeFlow::Block::set_backedge_copy(bool z) {
never@802 1802 assert(z || (z == is_backedge_copy()), "cannot make a backedge copy public");
never@802 1803 _backedge_copy = z;
duke@435 1804 }
duke@435 1805
duke@435 1806 // ------------------------------------------------------------------
never@802 1807 // ciTypeFlow::Block::is_clonable_exit
never@802 1808 //
never@802 1809 // At most 2 normal successors, one of which continues looping,
never@802 1810 // and all exceptional successors must exit.
never@802 1811 bool ciTypeFlow::Block::is_clonable_exit(ciTypeFlow::Loop* lp) {
never@802 1812 int normal_cnt = 0;
never@802 1813 int in_loop_cnt = 0;
never@802 1814 for (SuccIter iter(this); !iter.done(); iter.next()) {
never@802 1815 Block* succ = iter.succ();
never@802 1816 if (iter.is_normal_ctrl()) {
never@802 1817 if (++normal_cnt > 2) return false;
never@802 1818 if (lp->contains(succ->loop())) {
never@802 1819 if (++in_loop_cnt > 1) return false;
never@802 1820 }
never@802 1821 } else {
never@802 1822 if (lp->contains(succ->loop())) return false;
never@802 1823 }
never@802 1824 }
never@802 1825 return in_loop_cnt == 1;
never@802 1826 }
never@802 1827
never@802 1828 // ------------------------------------------------------------------
never@802 1829 // ciTypeFlow::Block::looping_succ
never@802 1830 //
never@802 1831 ciTypeFlow::Block* ciTypeFlow::Block::looping_succ(ciTypeFlow::Loop* lp) {
never@802 1832 assert(successors()->length() <= 2, "at most 2 normal successors");
never@802 1833 for (SuccIter iter(this); !iter.done(); iter.next()) {
never@802 1834 Block* succ = iter.succ();
never@802 1835 if (lp->contains(succ->loop())) {
never@802 1836 return succ;
never@802 1837 }
never@802 1838 }
never@802 1839 return NULL;
duke@435 1840 }
duke@435 1841
duke@435 1842 #ifndef PRODUCT
duke@435 1843 // ------------------------------------------------------------------
duke@435 1844 // ciTypeFlow::Block::print_value_on
duke@435 1845 void ciTypeFlow::Block::print_value_on(outputStream* st) const {
never@802 1846 if (has_pre_order()) st->print("#%-2d ", pre_order());
never@802 1847 if (has_rpo()) st->print("rpo#%-2d ", rpo());
duke@435 1848 st->print("[%d - %d)", start(), limit());
never@802 1849 if (is_loop_head()) st->print(" lphd");
never@802 1850 if (is_irreducible_entry()) st->print(" irred");
duke@435 1851 if (_jsrs->size() > 0) { st->print("/"); _jsrs->print_on(st); }
never@802 1852 if (is_backedge_copy()) st->print("/backedge_copy");
duke@435 1853 }
duke@435 1854
duke@435 1855 // ------------------------------------------------------------------
duke@435 1856 // ciTypeFlow::Block::print_on
duke@435 1857 void ciTypeFlow::Block::print_on(outputStream* st) const {
duke@435 1858 if ((Verbose || WizardMode)) {
duke@435 1859 outer()->method()->print_codes_on(start(), limit(), st);
duke@435 1860 }
duke@435 1861 st->print_cr(" ==================================================== ");
duke@435 1862 st->print (" ");
duke@435 1863 print_value_on(st);
never@802 1864 st->print(" Stored locals: "); def_locals()->print_on(st, outer()->method()->max_locals()); tty->cr();
never@802 1865 if (loop() && loop()->parent() != NULL) {
never@802 1866 st->print(" loops:");
never@802 1867 Loop* lp = loop();
never@802 1868 do {
never@802 1869 st->print(" %d<-%d", lp->head()->pre_order(),lp->tail()->pre_order());
never@802 1870 if (lp->is_irreducible()) st->print("(ir)");
never@802 1871 lp = lp->parent();
never@802 1872 } while (lp->parent() != NULL);
never@802 1873 }
duke@435 1874 st->cr();
duke@435 1875 _state->print_on(st);
duke@435 1876 if (_successors == NULL) {
duke@435 1877 st->print_cr(" No successor information");
duke@435 1878 } else {
duke@435 1879 int num_successors = _successors->length();
duke@435 1880 st->print_cr(" Successors : %d", num_successors);
duke@435 1881 for (int i = 0; i < num_successors; i++) {
duke@435 1882 Block* successor = _successors->at(i);
duke@435 1883 st->print(" ");
duke@435 1884 successor->print_value_on(st);
duke@435 1885 st->cr();
duke@435 1886 }
duke@435 1887 }
duke@435 1888 if (_exceptions == NULL) {
duke@435 1889 st->print_cr(" No exception information");
duke@435 1890 } else {
duke@435 1891 int num_exceptions = _exceptions->length();
duke@435 1892 st->print_cr(" Exceptions : %d", num_exceptions);
duke@435 1893 for (int i = 0; i < num_exceptions; i++) {
duke@435 1894 Block* exc_succ = _exceptions->at(i);
duke@435 1895 ciInstanceKlass* exc_klass = _exc_klasses->at(i);
duke@435 1896 st->print(" ");
duke@435 1897 exc_succ->print_value_on(st);
duke@435 1898 st->print(" -- ");
duke@435 1899 exc_klass->name()->print_symbol_on(st);
duke@435 1900 st->cr();
duke@435 1901 }
duke@435 1902 }
duke@435 1903 if (has_trap()) {
duke@435 1904 st->print_cr(" Traps on %d with trap index %d", trap_bci(), trap_index());
duke@435 1905 }
duke@435 1906 st->print_cr(" ==================================================== ");
duke@435 1907 }
duke@435 1908 #endif
duke@435 1909
never@802 1910 #ifndef PRODUCT
never@802 1911 // ------------------------------------------------------------------
never@802 1912 // ciTypeFlow::LocalSet::print_on
never@802 1913 void ciTypeFlow::LocalSet::print_on(outputStream* st, int limit) const {
never@802 1914 st->print("{");
never@802 1915 for (int i = 0; i < max; i++) {
never@802 1916 if (test(i)) st->print(" %d", i);
never@802 1917 }
never@802 1918 if (limit > max) {
never@802 1919 st->print(" %d..%d ", max, limit);
never@802 1920 }
never@802 1921 st->print(" }");
never@802 1922 }
never@802 1923 #endif
never@802 1924
duke@435 1925 // ciTypeFlow
duke@435 1926 //
duke@435 1927 // This is a pass over the bytecodes which computes the following:
duke@435 1928 // basic block structure
duke@435 1929 // interpreter type-states (a la the verifier)
duke@435 1930
duke@435 1931 // ------------------------------------------------------------------
duke@435 1932 // ciTypeFlow::ciTypeFlow
duke@435 1933 ciTypeFlow::ciTypeFlow(ciEnv* env, ciMethod* method, int osr_bci) {
duke@435 1934 _env = env;
duke@435 1935 _method = method;
duke@435 1936 _methodBlocks = method->get_method_blocks();
duke@435 1937 _max_locals = method->max_locals();
duke@435 1938 _max_stack = method->max_stack();
duke@435 1939 _code_size = method->code_size();
never@802 1940 _has_irreducible_entry = false;
duke@435 1941 _osr_bci = osr_bci;
duke@435 1942 _failure_reason = NULL;
duke@435 1943 assert(start_bci() >= 0 && start_bci() < code_size() , "correct osr_bci argument");
duke@435 1944 _work_list = NULL;
duke@435 1945
duke@435 1946 _ciblock_count = _methodBlocks->num_blocks();
duke@435 1947 _idx_to_blocklist = NEW_ARENA_ARRAY(arena(), GrowableArray<Block*>*, _ciblock_count);
duke@435 1948 for (int i = 0; i < _ciblock_count; i++) {
duke@435 1949 _idx_to_blocklist[i] = NULL;
duke@435 1950 }
duke@435 1951 _block_map = NULL; // until all blocks are seen
duke@435 1952 _jsr_count = 0;
duke@435 1953 _jsr_records = NULL;
duke@435 1954 }
duke@435 1955
duke@435 1956 // ------------------------------------------------------------------
duke@435 1957 // ciTypeFlow::work_list_next
duke@435 1958 //
duke@435 1959 // Get the next basic block from our work list.
duke@435 1960 ciTypeFlow::Block* ciTypeFlow::work_list_next() {
duke@435 1961 assert(!work_list_empty(), "work list must not be empty");
duke@435 1962 Block* next_block = _work_list;
duke@435 1963 _work_list = next_block->next();
duke@435 1964 next_block->set_next(NULL);
duke@435 1965 next_block->set_on_work_list(false);
duke@435 1966 return next_block;
duke@435 1967 }
duke@435 1968
duke@435 1969 // ------------------------------------------------------------------
duke@435 1970 // ciTypeFlow::add_to_work_list
duke@435 1971 //
duke@435 1972 // Add a basic block to our work list.
never@802 1973 // List is sorted by decreasing postorder sort (same as increasing RPO)
duke@435 1974 void ciTypeFlow::add_to_work_list(ciTypeFlow::Block* block) {
duke@435 1975 assert(!block->is_on_work_list(), "must not already be on work list");
duke@435 1976
duke@435 1977 if (CITraceTypeFlow) {
never@802 1978 tty->print(">> Adding block ");
duke@435 1979 block->print_value_on(tty);
duke@435 1980 tty->print_cr(" to the work list : ");
duke@435 1981 }
duke@435 1982
duke@435 1983 block->set_on_work_list(true);
never@802 1984
never@802 1985 // decreasing post order sort
never@802 1986
never@802 1987 Block* prev = NULL;
never@802 1988 Block* current = _work_list;
never@802 1989 int po = block->post_order();
never@802 1990 while (current != NULL) {
never@802 1991 if (!current->has_post_order() || po > current->post_order())
never@802 1992 break;
never@802 1993 prev = current;
never@802 1994 current = current->next();
never@802 1995 }
never@802 1996 if (prev == NULL) {
duke@435 1997 block->set_next(_work_list);
duke@435 1998 _work_list = block;
duke@435 1999 } else {
never@802 2000 block->set_next(current);
never@802 2001 prev->set_next(block);
duke@435 2002 }
never@802 2003
duke@435 2004 if (CITraceTypeFlow) {
duke@435 2005 tty->cr();
duke@435 2006 }
duke@435 2007 }
duke@435 2008
duke@435 2009 // ------------------------------------------------------------------
duke@435 2010 // ciTypeFlow::block_at
duke@435 2011 //
duke@435 2012 // Return the block beginning at bci which has a JsrSet compatible
duke@435 2013 // with jsrs.
duke@435 2014 ciTypeFlow::Block* ciTypeFlow::block_at(int bci, ciTypeFlow::JsrSet* jsrs, CreateOption option) {
duke@435 2015 // First find the right ciBlock.
duke@435 2016 if (CITraceTypeFlow) {
duke@435 2017 tty->print(">> Requesting block for %d/", bci);
duke@435 2018 jsrs->print_on(tty);
duke@435 2019 tty->cr();
duke@435 2020 }
duke@435 2021
duke@435 2022 ciBlock* ciblk = _methodBlocks->block_containing(bci);
duke@435 2023 assert(ciblk->start_bci() == bci, "bad ciBlock boundaries");
duke@435 2024 Block* block = get_block_for(ciblk->index(), jsrs, option);
duke@435 2025
never@802 2026 assert(block == NULL? (option == no_create): block->is_backedge_copy() == (option == create_backedge_copy), "create option consistent with result");
duke@435 2027
duke@435 2028 if (CITraceTypeFlow) {
duke@435 2029 if (block != NULL) {
duke@435 2030 tty->print(">> Found block ");
duke@435 2031 block->print_value_on(tty);
duke@435 2032 tty->cr();
duke@435 2033 } else {
duke@435 2034 tty->print_cr(">> No such block.");
duke@435 2035 }
duke@435 2036 }
duke@435 2037
duke@435 2038 return block;
duke@435 2039 }
duke@435 2040
duke@435 2041 // ------------------------------------------------------------------
duke@435 2042 // ciTypeFlow::make_jsr_record
duke@435 2043 //
duke@435 2044 // Make a JsrRecord for a given (entry, return) pair, if such a record
duke@435 2045 // does not already exist.
duke@435 2046 ciTypeFlow::JsrRecord* ciTypeFlow::make_jsr_record(int entry_address,
duke@435 2047 int return_address) {
duke@435 2048 if (_jsr_records == NULL) {
duke@435 2049 _jsr_records = new (arena()) GrowableArray<JsrRecord*>(arena(),
duke@435 2050 _jsr_count,
duke@435 2051 0,
duke@435 2052 NULL);
duke@435 2053 }
duke@435 2054 JsrRecord* record = NULL;
duke@435 2055 int len = _jsr_records->length();
duke@435 2056 for (int i = 0; i < len; i++) {
duke@435 2057 JsrRecord* record = _jsr_records->at(i);
duke@435 2058 if (record->entry_address() == entry_address &&
duke@435 2059 record->return_address() == return_address) {
duke@435 2060 return record;
duke@435 2061 }
duke@435 2062 }
duke@435 2063
duke@435 2064 record = new (arena()) JsrRecord(entry_address, return_address);
duke@435 2065 _jsr_records->append(record);
duke@435 2066 return record;
duke@435 2067 }
duke@435 2068
duke@435 2069 // ------------------------------------------------------------------
duke@435 2070 // ciTypeFlow::flow_exceptions
duke@435 2071 //
duke@435 2072 // Merge the current state into all exceptional successors at the
duke@435 2073 // current point in the code.
duke@435 2074 void ciTypeFlow::flow_exceptions(GrowableArray<ciTypeFlow::Block*>* exceptions,
duke@435 2075 GrowableArray<ciInstanceKlass*>* exc_klasses,
duke@435 2076 ciTypeFlow::StateVector* state) {
duke@435 2077 int len = exceptions->length();
duke@435 2078 assert(exc_klasses->length() == len, "must have same length");
duke@435 2079 for (int i = 0; i < len; i++) {
duke@435 2080 Block* block = exceptions->at(i);
duke@435 2081 ciInstanceKlass* exception_klass = exc_klasses->at(i);
duke@435 2082
duke@435 2083 if (!exception_klass->is_loaded()) {
duke@435 2084 // Do not compile any code for unloaded exception types.
duke@435 2085 // Following compiler passes are responsible for doing this also.
duke@435 2086 continue;
duke@435 2087 }
duke@435 2088
duke@435 2089 if (block->meet_exception(exception_klass, state)) {
never@802 2090 // Block was modified and has PO. Add it to the work list.
never@802 2091 if (block->has_post_order() &&
never@802 2092 !block->is_on_work_list()) {
duke@435 2093 add_to_work_list(block);
duke@435 2094 }
duke@435 2095 }
duke@435 2096 }
duke@435 2097 }
duke@435 2098
duke@435 2099 // ------------------------------------------------------------------
duke@435 2100 // ciTypeFlow::flow_successors
duke@435 2101 //
duke@435 2102 // Merge the current state into all successors at the current point
duke@435 2103 // in the code.
duke@435 2104 void ciTypeFlow::flow_successors(GrowableArray<ciTypeFlow::Block*>* successors,
duke@435 2105 ciTypeFlow::StateVector* state) {
duke@435 2106 int len = successors->length();
duke@435 2107 for (int i = 0; i < len; i++) {
duke@435 2108 Block* block = successors->at(i);
duke@435 2109 if (block->meet(state)) {
never@802 2110 // Block was modified and has PO. Add it to the work list.
never@802 2111 if (block->has_post_order() &&
never@802 2112 !block->is_on_work_list()) {
duke@435 2113 add_to_work_list(block);
duke@435 2114 }
duke@435 2115 }
duke@435 2116 }
duke@435 2117 }
duke@435 2118
duke@435 2119 // ------------------------------------------------------------------
duke@435 2120 // ciTypeFlow::can_trap
duke@435 2121 //
duke@435 2122 // Tells if a given instruction is able to generate an exception edge.
duke@435 2123 bool ciTypeFlow::can_trap(ciBytecodeStream& str) {
duke@435 2124 // Cf. GenerateOopMap::do_exception_edge.
duke@435 2125 if (!Bytecodes::can_trap(str.cur_bc())) return false;
duke@435 2126
duke@435 2127 switch (str.cur_bc()) {
duke@435 2128 case Bytecodes::_ldc:
duke@435 2129 case Bytecodes::_ldc_w:
duke@435 2130 case Bytecodes::_ldc2_w:
duke@435 2131 case Bytecodes::_aload_0:
duke@435 2132 // These bytecodes can trap for rewriting. We need to assume that
duke@435 2133 // they do not throw exceptions to make the monitor analysis work.
duke@435 2134 return false;
duke@435 2135
duke@435 2136 case Bytecodes::_ireturn:
duke@435 2137 case Bytecodes::_lreturn:
duke@435 2138 case Bytecodes::_freturn:
duke@435 2139 case Bytecodes::_dreturn:
duke@435 2140 case Bytecodes::_areturn:
duke@435 2141 case Bytecodes::_return:
duke@435 2142 // We can assume the monitor stack is empty in this analysis.
duke@435 2143 return false;
duke@435 2144
duke@435 2145 case Bytecodes::_monitorexit:
duke@435 2146 // We can assume monitors are matched in this analysis.
duke@435 2147 return false;
duke@435 2148 }
duke@435 2149
duke@435 2150 return true;
duke@435 2151 }
duke@435 2152
never@802 2153 // ------------------------------------------------------------------
never@802 2154 // ciTypeFlow::clone_loop_heads
never@802 2155 //
never@802 2156 // Clone the loop heads
never@802 2157 bool ciTypeFlow::clone_loop_heads(Loop* lp, StateVector* temp_vector, JsrSet* temp_set) {
never@802 2158 bool rslt = false;
never@802 2159 for (PreorderLoops iter(loop_tree_root()); !iter.done(); iter.next()) {
never@802 2160 lp = iter.current();
never@802 2161 Block* head = lp->head();
never@802 2162 if (lp == loop_tree_root() ||
never@802 2163 lp->is_irreducible() ||
never@802 2164 !head->is_clonable_exit(lp))
never@802 2165 continue;
never@802 2166
never@802 2167 // check not already cloned
never@802 2168 if (head->backedge_copy_count() != 0)
never@802 2169 continue;
never@802 2170
never@802 2171 // check _no_ shared head below us
never@802 2172 Loop* ch;
never@802 2173 for (ch = lp->child(); ch != NULL && ch->head() != head; ch = ch->sibling());
never@802 2174 if (ch != NULL)
never@802 2175 continue;
never@802 2176
never@802 2177 // Clone head
never@802 2178 Block* new_head = head->looping_succ(lp);
never@802 2179 Block* clone = clone_loop_head(lp, temp_vector, temp_set);
never@802 2180 // Update lp's info
never@802 2181 clone->set_loop(lp);
never@802 2182 lp->set_head(new_head);
never@802 2183 lp->set_tail(clone);
never@802 2184 // And move original head into outer loop
never@802 2185 head->set_loop(lp->parent());
never@802 2186
never@802 2187 rslt = true;
never@802 2188 }
never@802 2189 return rslt;
never@802 2190 }
never@802 2191
never@802 2192 // ------------------------------------------------------------------
never@802 2193 // ciTypeFlow::clone_loop_head
never@802 2194 //
never@802 2195 // Clone lp's head and replace tail's successors with clone.
never@802 2196 //
never@802 2197 // |
never@802 2198 // v
never@802 2199 // head <-> body
never@802 2200 // |
never@802 2201 // v
never@802 2202 // exit
never@802 2203 //
never@802 2204 // new_head
never@802 2205 //
never@802 2206 // |
never@802 2207 // v
never@802 2208 // head ----------\
never@802 2209 // | |
never@802 2210 // | v
never@802 2211 // | clone <-> body
never@802 2212 // | |
never@802 2213 // | /--/
never@802 2214 // | |
never@802 2215 // v v
never@802 2216 // exit
never@802 2217 //
never@802 2218 ciTypeFlow::Block* ciTypeFlow::clone_loop_head(Loop* lp, StateVector* temp_vector, JsrSet* temp_set) {
never@802 2219 Block* head = lp->head();
never@802 2220 Block* tail = lp->tail();
never@802 2221 if (CITraceTypeFlow) {
never@802 2222 tty->print(">> Requesting clone of loop head "); head->print_value_on(tty);
never@802 2223 tty->print(" for predecessor "); tail->print_value_on(tty);
never@802 2224 tty->cr();
never@802 2225 }
never@802 2226 Block* clone = block_at(head->start(), head->jsrs(), create_backedge_copy);
never@802 2227 assert(clone->backedge_copy_count() == 1, "one backedge copy for all back edges");
never@802 2228
never@802 2229 assert(!clone->has_pre_order(), "just created");
never@802 2230 clone->set_next_pre_order();
never@802 2231
never@802 2232 // Insert clone after (orig) tail in reverse post order
never@802 2233 clone->set_rpo_next(tail->rpo_next());
never@802 2234 tail->set_rpo_next(clone);
never@802 2235
never@802 2236 // tail->head becomes tail->clone
never@802 2237 for (SuccIter iter(tail); !iter.done(); iter.next()) {
never@802 2238 if (iter.succ() == head) {
never@802 2239 iter.set_succ(clone);
never@802 2240 break;
never@802 2241 }
never@802 2242 }
never@802 2243 flow_block(tail, temp_vector, temp_set);
never@802 2244 if (head == tail) {
never@802 2245 // For self-loops, clone->head becomes clone->clone
never@802 2246 flow_block(clone, temp_vector, temp_set);
never@802 2247 for (SuccIter iter(clone); !iter.done(); iter.next()) {
never@802 2248 if (iter.succ() == head) {
never@802 2249 iter.set_succ(clone);
never@802 2250 break;
never@802 2251 }
never@802 2252 }
never@802 2253 }
never@802 2254 flow_block(clone, temp_vector, temp_set);
never@802 2255
never@802 2256 return clone;
never@802 2257 }
duke@435 2258
duke@435 2259 // ------------------------------------------------------------------
duke@435 2260 // ciTypeFlow::flow_block
duke@435 2261 //
duke@435 2262 // Interpret the effects of the bytecodes on the incoming state
duke@435 2263 // vector of a basic block. Push the changed state to succeeding
duke@435 2264 // basic blocks.
duke@435 2265 void ciTypeFlow::flow_block(ciTypeFlow::Block* block,
duke@435 2266 ciTypeFlow::StateVector* state,
duke@435 2267 ciTypeFlow::JsrSet* jsrs) {
duke@435 2268 if (CITraceTypeFlow) {
duke@435 2269 tty->print("\n>> ANALYZING BLOCK : ");
duke@435 2270 tty->cr();
duke@435 2271 block->print_on(tty);
duke@435 2272 }
duke@435 2273 assert(block->has_pre_order(), "pre-order is assigned before 1st flow");
duke@435 2274
duke@435 2275 int start = block->start();
duke@435 2276 int limit = block->limit();
duke@435 2277 int control = block->control();
duke@435 2278 if (control != ciBlock::fall_through_bci) {
duke@435 2279 limit = control;
duke@435 2280 }
duke@435 2281
duke@435 2282 // Grab the state from the current block.
duke@435 2283 block->copy_state_into(state);
never@802 2284 state->def_locals()->clear();
duke@435 2285
duke@435 2286 GrowableArray<Block*>* exceptions = block->exceptions();
duke@435 2287 GrowableArray<ciInstanceKlass*>* exc_klasses = block->exc_klasses();
duke@435 2288 bool has_exceptions = exceptions->length() > 0;
duke@435 2289
never@802 2290 bool exceptions_used = false;
never@802 2291
duke@435 2292 ciBytecodeStream str(method());
duke@435 2293 str.reset_to_bci(start);
duke@435 2294 Bytecodes::Code code;
duke@435 2295 while ((code = str.next()) != ciBytecodeStream::EOBC() &&
duke@435 2296 str.cur_bci() < limit) {
duke@435 2297 // Check for exceptional control flow from this point.
duke@435 2298 if (has_exceptions && can_trap(str)) {
duke@435 2299 flow_exceptions(exceptions, exc_klasses, state);
never@802 2300 exceptions_used = true;
duke@435 2301 }
duke@435 2302 // Apply the effects of the current bytecode to our state.
duke@435 2303 bool res = state->apply_one_bytecode(&str);
duke@435 2304
duke@435 2305 // Watch for bailouts.
duke@435 2306 if (failing()) return;
duke@435 2307
duke@435 2308 if (res) {
duke@435 2309
duke@435 2310 // We have encountered a trap. Record it in this block.
duke@435 2311 block->set_trap(state->trap_bci(), state->trap_index());
duke@435 2312
duke@435 2313 if (CITraceTypeFlow) {
duke@435 2314 tty->print_cr(">> Found trap");
duke@435 2315 block->print_on(tty);
duke@435 2316 }
duke@435 2317
never@802 2318 // Save set of locals defined in this block
never@802 2319 block->def_locals()->add(state->def_locals());
never@802 2320
duke@435 2321 // Record (no) successors.
duke@435 2322 block->successors(&str, state, jsrs);
duke@435 2323
never@802 2324 assert(!has_exceptions || exceptions_used, "Not removing exceptions");
never@802 2325
duke@435 2326 // Discontinue interpretation of this Block.
duke@435 2327 return;
duke@435 2328 }
duke@435 2329 }
duke@435 2330
duke@435 2331 GrowableArray<Block*>* successors = NULL;
duke@435 2332 if (control != ciBlock::fall_through_bci) {
duke@435 2333 // Check for exceptional control flow from this point.
duke@435 2334 if (has_exceptions && can_trap(str)) {
duke@435 2335 flow_exceptions(exceptions, exc_klasses, state);
never@802 2336 exceptions_used = true;
duke@435 2337 }
duke@435 2338
duke@435 2339 // Fix the JsrSet to reflect effect of the bytecode.
duke@435 2340 block->copy_jsrs_into(jsrs);
duke@435 2341 jsrs->apply_control(this, &str, state);
duke@435 2342
duke@435 2343 // Find successor edges based on old state and new JsrSet.
duke@435 2344 successors = block->successors(&str, state, jsrs);
duke@435 2345
duke@435 2346 // Apply the control changes to the state.
duke@435 2347 state->apply_one_bytecode(&str);
duke@435 2348 } else {
duke@435 2349 // Fall through control
duke@435 2350 successors = block->successors(&str, NULL, NULL);
duke@435 2351 }
duke@435 2352
never@802 2353 // Save set of locals defined in this block
never@802 2354 block->def_locals()->add(state->def_locals());
never@802 2355
never@802 2356 // Remove untaken exception paths
never@802 2357 if (!exceptions_used)
never@802 2358 exceptions->clear();
never@802 2359
duke@435 2360 // Pass our state to successors.
duke@435 2361 flow_successors(successors, state);
duke@435 2362 }
duke@435 2363
duke@435 2364 // ------------------------------------------------------------------
never@802 2365 // ciTypeFlow::PostOrderLoops::next
never@802 2366 //
never@802 2367 // Advance to next loop tree using a postorder, left-to-right traversal.
never@802 2368 void ciTypeFlow::PostorderLoops::next() {
never@802 2369 assert(!done(), "must not be done.");
never@802 2370 if (_current->sibling() != NULL) {
never@802 2371 _current = _current->sibling();
never@802 2372 while (_current->child() != NULL) {
never@802 2373 _current = _current->child();
never@802 2374 }
never@802 2375 } else {
never@802 2376 _current = _current->parent();
never@802 2377 }
never@802 2378 }
never@802 2379
never@802 2380 // ------------------------------------------------------------------
never@802 2381 // ciTypeFlow::PreOrderLoops::next
never@802 2382 //
never@802 2383 // Advance to next loop tree using a preorder, left-to-right traversal.
never@802 2384 void ciTypeFlow::PreorderLoops::next() {
never@802 2385 assert(!done(), "must not be done.");
never@802 2386 if (_current->child() != NULL) {
never@802 2387 _current = _current->child();
never@802 2388 } else if (_current->sibling() != NULL) {
never@802 2389 _current = _current->sibling();
never@802 2390 } else {
never@802 2391 while (_current != _root && _current->sibling() == NULL) {
never@802 2392 _current = _current->parent();
never@802 2393 }
never@802 2394 if (_current == _root) {
never@802 2395 _current = NULL;
never@802 2396 assert(done(), "must be done.");
never@802 2397 } else {
never@802 2398 assert(_current->sibling() != NULL, "must be more to do");
never@802 2399 _current = _current->sibling();
never@802 2400 }
never@802 2401 }
never@802 2402 }
never@802 2403
never@802 2404 // ------------------------------------------------------------------
never@802 2405 // ciTypeFlow::Loop::sorted_merge
never@802 2406 //
never@802 2407 // Merge the branch lp into this branch, sorting on the loop head
never@802 2408 // pre_orders. Returns the leaf of the merged branch.
never@802 2409 // Child and sibling pointers will be setup later.
never@802 2410 // Sort is (looking from leaf towards the root)
never@802 2411 // descending on primary key: loop head's pre_order, and
never@802 2412 // ascending on secondary key: loop tail's pre_order.
never@802 2413 ciTypeFlow::Loop* ciTypeFlow::Loop::sorted_merge(Loop* lp) {
never@802 2414 Loop* leaf = this;
never@802 2415 Loop* prev = NULL;
never@802 2416 Loop* current = leaf;
never@802 2417 while (lp != NULL) {
never@802 2418 int lp_pre_order = lp->head()->pre_order();
never@802 2419 // Find insertion point for "lp"
never@802 2420 while (current != NULL) {
never@802 2421 if (current == lp)
never@802 2422 return leaf; // Already in list
never@802 2423 if (current->head()->pre_order() < lp_pre_order)
never@802 2424 break;
never@802 2425 if (current->head()->pre_order() == lp_pre_order &&
never@802 2426 current->tail()->pre_order() > lp->tail()->pre_order()) {
never@802 2427 break;
never@802 2428 }
never@802 2429 prev = current;
never@802 2430 current = current->parent();
never@802 2431 }
never@802 2432 Loop* next_lp = lp->parent(); // Save future list of items to insert
never@802 2433 // Insert lp before current
never@802 2434 lp->set_parent(current);
never@802 2435 if (prev != NULL) {
never@802 2436 prev->set_parent(lp);
never@802 2437 } else {
never@802 2438 leaf = lp;
never@802 2439 }
never@802 2440 prev = lp; // Inserted item is new prev[ious]
never@802 2441 lp = next_lp; // Next item to insert
never@802 2442 }
never@802 2443 return leaf;
never@802 2444 }
never@802 2445
never@802 2446 // ------------------------------------------------------------------
never@802 2447 // ciTypeFlow::build_loop_tree
never@802 2448 //
never@802 2449 // Incrementally build loop tree.
never@802 2450 void ciTypeFlow::build_loop_tree(Block* blk) {
never@802 2451 assert(!blk->is_post_visited(), "precondition");
never@802 2452 Loop* innermost = NULL; // merge of loop tree branches over all successors
never@802 2453
never@802 2454 for (SuccIter iter(blk); !iter.done(); iter.next()) {
never@802 2455 Loop* lp = NULL;
never@802 2456 Block* succ = iter.succ();
never@802 2457 if (!succ->is_post_visited()) {
never@802 2458 // Found backedge since predecessor post visited, but successor is not
never@802 2459 assert(succ->pre_order() <= blk->pre_order(), "should be backedge");
never@802 2460
never@802 2461 // Create a LoopNode to mark this loop.
never@802 2462 lp = new (arena()) Loop(succ, blk);
never@802 2463 if (succ->loop() == NULL)
never@802 2464 succ->set_loop(lp);
never@802 2465 // succ->loop will be updated to innermost loop on a later call, when blk==succ
never@802 2466
never@802 2467 } else { // Nested loop
never@802 2468 lp = succ->loop();
never@802 2469
never@802 2470 // If succ is loop head, find outer loop.
never@802 2471 while (lp != NULL && lp->head() == succ) {
never@802 2472 lp = lp->parent();
never@802 2473 }
never@802 2474 if (lp == NULL) {
never@802 2475 // Infinite loop, it's parent is the root
never@802 2476 lp = loop_tree_root();
never@802 2477 }
never@802 2478 }
never@802 2479
never@802 2480 // Check for irreducible loop.
never@802 2481 // Successor has already been visited. If the successor's loop head
never@802 2482 // has already been post-visited, then this is another entry into the loop.
never@802 2483 while (lp->head()->is_post_visited() && lp != loop_tree_root()) {
never@802 2484 _has_irreducible_entry = true;
never@802 2485 lp->set_irreducible(succ);
never@802 2486 if (!succ->is_on_work_list()) {
never@802 2487 // Assume irreducible entries need more data flow
never@802 2488 add_to_work_list(succ);
never@802 2489 }
never@802 2490 lp = lp->parent();
never@802 2491 assert(lp != NULL, "nested loop must have parent by now");
never@802 2492 }
never@802 2493
never@802 2494 // Merge loop tree branch for all successors.
never@802 2495 innermost = innermost == NULL ? lp : innermost->sorted_merge(lp);
never@802 2496
never@802 2497 } // end loop
never@802 2498
never@802 2499 if (innermost == NULL) {
never@802 2500 assert(blk->successors()->length() == 0, "CFG exit");
never@802 2501 blk->set_loop(loop_tree_root());
never@802 2502 } else if (innermost->head() == blk) {
never@802 2503 // If loop header, complete the tree pointers
never@802 2504 if (blk->loop() != innermost) {
never@802 2505 #if ASSERT
never@802 2506 assert(blk->loop()->head() == innermost->head(), "same head");
never@802 2507 Loop* dl;
never@802 2508 for (dl = innermost; dl != NULL && dl != blk->loop(); dl = dl->parent());
never@802 2509 assert(dl == blk->loop(), "blk->loop() already in innermost list");
never@802 2510 #endif
never@802 2511 blk->set_loop(innermost);
never@802 2512 }
never@802 2513 innermost->def_locals()->add(blk->def_locals());
never@802 2514 Loop* l = innermost;
never@802 2515 Loop* p = l->parent();
never@802 2516 while (p && l->head() == blk) {
never@802 2517 l->set_sibling(p->child()); // Put self on parents 'next child'
never@802 2518 p->set_child(l); // Make self the first child of parent
never@802 2519 p->def_locals()->add(l->def_locals());
never@802 2520 l = p; // Walk up the parent chain
never@802 2521 p = l->parent();
never@802 2522 }
never@802 2523 } else {
never@802 2524 blk->set_loop(innermost);
never@802 2525 innermost->def_locals()->add(blk->def_locals());
never@802 2526 }
never@802 2527 }
never@802 2528
never@802 2529 // ------------------------------------------------------------------
never@802 2530 // ciTypeFlow::Loop::contains
never@802 2531 //
never@802 2532 // Returns true if lp is nested loop.
never@802 2533 bool ciTypeFlow::Loop::contains(ciTypeFlow::Loop* lp) const {
never@802 2534 assert(lp != NULL, "");
never@802 2535 if (this == lp || head() == lp->head()) return true;
never@802 2536 int depth1 = depth();
never@802 2537 int depth2 = lp->depth();
never@802 2538 if (depth1 > depth2)
never@802 2539 return false;
never@802 2540 while (depth1 < depth2) {
never@802 2541 depth2--;
never@802 2542 lp = lp->parent();
never@802 2543 }
never@802 2544 return this == lp;
never@802 2545 }
never@802 2546
never@802 2547 // ------------------------------------------------------------------
never@802 2548 // ciTypeFlow::Loop::depth
never@802 2549 //
never@802 2550 // Loop depth
never@802 2551 int ciTypeFlow::Loop::depth() const {
never@802 2552 int dp = 0;
never@802 2553 for (Loop* lp = this->parent(); lp != NULL; lp = lp->parent())
never@802 2554 dp++;
never@802 2555 return dp;
never@802 2556 }
never@802 2557
never@802 2558 #ifndef PRODUCT
never@802 2559 // ------------------------------------------------------------------
never@802 2560 // ciTypeFlow::Loop::print
never@802 2561 void ciTypeFlow::Loop::print(outputStream* st, int indent) const {
never@802 2562 for (int i = 0; i < indent; i++) st->print(" ");
never@802 2563 st->print("%d<-%d %s",
never@802 2564 is_root() ? 0 : this->head()->pre_order(),
never@802 2565 is_root() ? 0 : this->tail()->pre_order(),
never@802 2566 is_irreducible()?" irr":"");
never@802 2567 st->print(" defs: ");
never@802 2568 def_locals()->print_on(st, _head->outer()->method()->max_locals());
never@802 2569 st->cr();
never@802 2570 for (Loop* ch = child(); ch != NULL; ch = ch->sibling())
never@802 2571 ch->print(st, indent+2);
never@802 2572 }
never@802 2573 #endif
never@802 2574
never@802 2575 // ------------------------------------------------------------------
never@802 2576 // ciTypeFlow::df_flow_types
never@802 2577 //
never@802 2578 // Perform the depth first type flow analysis. Helper for flow_types.
never@802 2579 void ciTypeFlow::df_flow_types(Block* start,
never@802 2580 bool do_flow,
never@802 2581 StateVector* temp_vector,
never@802 2582 JsrSet* temp_set) {
never@802 2583 int dft_len = 100;
never@802 2584 GrowableArray<Block*> stk(arena(), dft_len, 0, NULL);
never@802 2585
never@802 2586 ciBlock* dummy = _methodBlocks->make_dummy_block();
never@802 2587 JsrSet* root_set = new JsrSet(NULL, 0);
never@802 2588 Block* root_head = new (arena()) Block(this, dummy, root_set);
never@802 2589 Block* root_tail = new (arena()) Block(this, dummy, root_set);
never@802 2590 root_head->set_pre_order(0);
never@802 2591 root_head->set_post_order(0);
never@802 2592 root_tail->set_pre_order(max_jint);
never@802 2593 root_tail->set_post_order(max_jint);
never@802 2594 set_loop_tree_root(new (arena()) Loop(root_head, root_tail));
never@802 2595
never@802 2596 stk.push(start);
never@802 2597
never@802 2598 _next_pre_order = 0; // initialize pre_order counter
never@802 2599 _rpo_list = NULL;
never@802 2600 int next_po = 0; // initialize post_order counter
never@802 2601
never@802 2602 // Compute RPO and the control flow graph
never@802 2603 int size;
never@802 2604 while ((size = stk.length()) > 0) {
never@802 2605 Block* blk = stk.top(); // Leave node on stack
never@802 2606 if (!blk->is_visited()) {
never@802 2607 // forward arc in graph
never@802 2608 assert (!blk->has_pre_order(), "");
never@802 2609 blk->set_next_pre_order();
never@802 2610
never@802 2611 if (_next_pre_order >= MaxNodeLimit / 2) {
never@802 2612 // Too many basic blocks. Bail out.
never@802 2613 // This can happen when try/finally constructs are nested to depth N,
never@802 2614 // and there is O(2**N) cloning of jsr bodies. See bug 4697245!
never@802 2615 // "MaxNodeLimit / 2" is used because probably the parser will
never@802 2616 // generate at least twice that many nodes and bail out.
never@802 2617 record_failure("too many basic blocks");
never@802 2618 return;
never@802 2619 }
never@802 2620 if (do_flow) {
never@802 2621 flow_block(blk, temp_vector, temp_set);
never@802 2622 if (failing()) return; // Watch for bailouts.
never@802 2623 }
never@802 2624 } else if (!blk->is_post_visited()) {
never@802 2625 // cross or back arc
never@802 2626 for (SuccIter iter(blk); !iter.done(); iter.next()) {
never@802 2627 Block* succ = iter.succ();
never@802 2628 if (!succ->is_visited()) {
never@802 2629 stk.push(succ);
never@802 2630 }
never@802 2631 }
never@802 2632 if (stk.length() == size) {
never@802 2633 // There were no additional children, post visit node now
never@802 2634 stk.pop(); // Remove node from stack
never@802 2635
never@802 2636 build_loop_tree(blk);
never@802 2637 blk->set_post_order(next_po++); // Assign post order
never@802 2638 prepend_to_rpo_list(blk);
never@802 2639 assert(blk->is_post_visited(), "");
never@802 2640
never@802 2641 if (blk->is_loop_head() && !blk->is_on_work_list()) {
never@802 2642 // Assume loop heads need more data flow
never@802 2643 add_to_work_list(blk);
never@802 2644 }
never@802 2645 }
never@802 2646 } else {
never@802 2647 stk.pop(); // Remove post-visited node from stack
never@802 2648 }
never@802 2649 }
never@802 2650 }
never@802 2651
never@802 2652 // ------------------------------------------------------------------
duke@435 2653 // ciTypeFlow::flow_types
duke@435 2654 //
duke@435 2655 // Perform the type flow analysis, creating and cloning Blocks as
duke@435 2656 // necessary.
duke@435 2657 void ciTypeFlow::flow_types() {
duke@435 2658 ResourceMark rm;
duke@435 2659 StateVector* temp_vector = new StateVector(this);
duke@435 2660 JsrSet* temp_set = new JsrSet(NULL, 16);
duke@435 2661
duke@435 2662 // Create the method entry block.
never@802 2663 Block* start = block_at(start_bci(), temp_set);
duke@435 2664
duke@435 2665 // Load the initial state into it.
duke@435 2666 const StateVector* start_state = get_start_state();
duke@435 2667 if (failing()) return;
never@802 2668 start->meet(start_state);
duke@435 2669
never@802 2670 // Depth first visit
never@802 2671 df_flow_types(start, true /*do flow*/, temp_vector, temp_set);
never@802 2672
never@802 2673 if (failing()) return;
never@802 2674 assert(_rpo_list == start, "must be start");
never@802 2675
never@802 2676 // Any loops found?
never@802 2677 if (loop_tree_root()->child() != NULL &&
never@802 2678 env()->comp_level() >= CompLevel_full_optimization) {
never@802 2679 // Loop optimizations are not performed on Tier1 compiles.
never@802 2680
never@802 2681 bool changed = clone_loop_heads(loop_tree_root(), temp_vector, temp_set);
never@802 2682
never@802 2683 // If some loop heads were cloned, recompute postorder and loop tree
never@802 2684 if (changed) {
never@802 2685 loop_tree_root()->set_child(NULL);
never@802 2686 for (Block* blk = _rpo_list; blk != NULL;) {
never@802 2687 Block* next = blk->rpo_next();
never@802 2688 blk->df_init();
never@802 2689 blk = next;
never@802 2690 }
never@802 2691 df_flow_types(start, false /*no flow*/, temp_vector, temp_set);
never@802 2692 }
never@802 2693 }
never@802 2694
never@802 2695 if (CITraceTypeFlow) {
never@802 2696 tty->print_cr("\nLoop tree");
never@802 2697 loop_tree_root()->print();
never@802 2698 }
never@802 2699
never@802 2700 // Continue flow analysis until fixed point reached
never@802 2701
never@802 2702 debug_only(int max_block = _next_pre_order;)
never@802 2703
duke@435 2704 while (!work_list_empty()) {
never@802 2705 Block* blk = work_list_next();
never@802 2706 assert (blk->has_post_order(), "post order assigned above");
duke@435 2707
never@802 2708 flow_block(blk, temp_vector, temp_set);
duke@435 2709
never@802 2710 assert (max_block == _next_pre_order, "no new blocks");
never@802 2711 assert (!failing(), "no more bailouts");
duke@435 2712 }
duke@435 2713 }
duke@435 2714
duke@435 2715 // ------------------------------------------------------------------
duke@435 2716 // ciTypeFlow::map_blocks
duke@435 2717 //
never@802 2718 // Create the block map, which indexes blocks in reverse post-order.
duke@435 2719 void ciTypeFlow::map_blocks() {
duke@435 2720 assert(_block_map == NULL, "single initialization");
never@802 2721 int block_ct = _next_pre_order;
never@802 2722 _block_map = NEW_ARENA_ARRAY(arena(), Block*, block_ct);
never@802 2723 assert(block_ct == block_count(), "");
never@802 2724
never@802 2725 Block* blk = _rpo_list;
never@802 2726 for (int m = 0; m < block_ct; m++) {
never@802 2727 int rpo = blk->rpo();
never@802 2728 assert(rpo == m, "should be sequential");
never@802 2729 _block_map[rpo] = blk;
never@802 2730 blk = blk->rpo_next();
duke@435 2731 }
never@802 2732 assert(blk == NULL, "should be done");
never@802 2733
never@802 2734 for (int j = 0; j < block_ct; j++) {
never@802 2735 assert(_block_map[j] != NULL, "must not drop any blocks");
never@802 2736 Block* block = _block_map[j];
duke@435 2737 // Remove dead blocks from successor lists:
duke@435 2738 for (int e = 0; e <= 1; e++) {
duke@435 2739 GrowableArray<Block*>* l = e? block->exceptions(): block->successors();
never@802 2740 for (int k = 0; k < l->length(); k++) {
never@802 2741 Block* s = l->at(k);
never@802 2742 if (!s->has_post_order()) {
duke@435 2743 if (CITraceTypeFlow) {
duke@435 2744 tty->print("Removing dead %s successor of #%d: ", (e? "exceptional": "normal"), block->pre_order());
duke@435 2745 s->print_value_on(tty);
duke@435 2746 tty->cr();
duke@435 2747 }
duke@435 2748 l->remove(s);
never@802 2749 --k;
duke@435 2750 }
duke@435 2751 }
duke@435 2752 }
duke@435 2753 }
duke@435 2754 }
duke@435 2755
duke@435 2756 // ------------------------------------------------------------------
duke@435 2757 // ciTypeFlow::get_block_for
duke@435 2758 //
duke@435 2759 // Find a block with this ciBlock which has a compatible JsrSet.
duke@435 2760 // If no such block exists, create it, unless the option is no_create.
never@802 2761 // If the option is create_backedge_copy, always create a fresh backedge copy.
duke@435 2762 ciTypeFlow::Block* ciTypeFlow::get_block_for(int ciBlockIndex, ciTypeFlow::JsrSet* jsrs, CreateOption option) {
duke@435 2763 Arena* a = arena();
duke@435 2764 GrowableArray<Block*>* blocks = _idx_to_blocklist[ciBlockIndex];
duke@435 2765 if (blocks == NULL) {
duke@435 2766 // Query only?
duke@435 2767 if (option == no_create) return NULL;
duke@435 2768
duke@435 2769 // Allocate the growable array.
duke@435 2770 blocks = new (a) GrowableArray<Block*>(a, 4, 0, NULL);
duke@435 2771 _idx_to_blocklist[ciBlockIndex] = blocks;
duke@435 2772 }
duke@435 2773
never@802 2774 if (option != create_backedge_copy) {
duke@435 2775 int len = blocks->length();
duke@435 2776 for (int i = 0; i < len; i++) {
duke@435 2777 Block* block = blocks->at(i);
never@802 2778 if (!block->is_backedge_copy() && block->is_compatible_with(jsrs)) {
duke@435 2779 return block;
duke@435 2780 }
duke@435 2781 }
duke@435 2782 }
duke@435 2783
duke@435 2784 // Query only?
duke@435 2785 if (option == no_create) return NULL;
duke@435 2786
duke@435 2787 // We did not find a compatible block. Create one.
duke@435 2788 Block* new_block = new (a) Block(this, _methodBlocks->block(ciBlockIndex), jsrs);
never@802 2789 if (option == create_backedge_copy) new_block->set_backedge_copy(true);
duke@435 2790 blocks->append(new_block);
duke@435 2791 return new_block;
duke@435 2792 }
duke@435 2793
duke@435 2794 // ------------------------------------------------------------------
never@802 2795 // ciTypeFlow::backedge_copy_count
duke@435 2796 //
never@802 2797 int ciTypeFlow::backedge_copy_count(int ciBlockIndex, ciTypeFlow::JsrSet* jsrs) const {
duke@435 2798 GrowableArray<Block*>* blocks = _idx_to_blocklist[ciBlockIndex];
duke@435 2799
duke@435 2800 if (blocks == NULL) {
duke@435 2801 return 0;
duke@435 2802 }
duke@435 2803
duke@435 2804 int count = 0;
duke@435 2805 int len = blocks->length();
duke@435 2806 for (int i = 0; i < len; i++) {
duke@435 2807 Block* block = blocks->at(i);
never@802 2808 if (block->is_backedge_copy() && block->is_compatible_with(jsrs)) {
duke@435 2809 count++;
duke@435 2810 }
duke@435 2811 }
duke@435 2812
duke@435 2813 return count;
duke@435 2814 }
duke@435 2815
duke@435 2816 // ------------------------------------------------------------------
duke@435 2817 // ciTypeFlow::do_flow
duke@435 2818 //
duke@435 2819 // Perform type inference flow analysis.
duke@435 2820 void ciTypeFlow::do_flow() {
duke@435 2821 if (CITraceTypeFlow) {
duke@435 2822 tty->print_cr("\nPerforming flow analysis on method");
duke@435 2823 method()->print();
duke@435 2824 if (is_osr_flow()) tty->print(" at OSR bci %d", start_bci());
duke@435 2825 tty->cr();
duke@435 2826 method()->print_codes();
duke@435 2827 }
duke@435 2828 if (CITraceTypeFlow) {
duke@435 2829 tty->print_cr("Initial CI Blocks");
duke@435 2830 print_on(tty);
duke@435 2831 }
duke@435 2832 flow_types();
duke@435 2833 // Watch for bailouts.
duke@435 2834 if (failing()) {
duke@435 2835 return;
duke@435 2836 }
never@802 2837
never@802 2838 map_blocks();
never@802 2839
duke@435 2840 if (CIPrintTypeFlow || CITraceTypeFlow) {
never@802 2841 rpo_print_on(tty);
duke@435 2842 }
duke@435 2843 }
duke@435 2844
duke@435 2845 // ------------------------------------------------------------------
duke@435 2846 // ciTypeFlow::record_failure()
duke@435 2847 // The ciTypeFlow object keeps track of failure reasons separately from the ciEnv.
duke@435 2848 // This is required because there is not a 1-1 relation between the ciEnv and
duke@435 2849 // the TypeFlow passes within a compilation task. For example, if the compiler
duke@435 2850 // is considering inlining a method, it will request a TypeFlow. If that fails,
duke@435 2851 // the compilation as a whole may continue without the inlining. Some TypeFlow
duke@435 2852 // requests are not optional; if they fail the requestor is responsible for
duke@435 2853 // copying the failure reason up to the ciEnv. (See Parse::Parse.)
duke@435 2854 void ciTypeFlow::record_failure(const char* reason) {
duke@435 2855 if (env()->log() != NULL) {
duke@435 2856 env()->log()->elem("failure reason='%s' phase='typeflow'", reason);
duke@435 2857 }
duke@435 2858 if (_failure_reason == NULL) {
duke@435 2859 // Record the first failure reason.
duke@435 2860 _failure_reason = reason;
duke@435 2861 }
duke@435 2862 }
duke@435 2863
duke@435 2864 #ifndef PRODUCT
duke@435 2865 // ------------------------------------------------------------------
duke@435 2866 // ciTypeFlow::print_on
duke@435 2867 void ciTypeFlow::print_on(outputStream* st) const {
duke@435 2868 // Walk through CI blocks
duke@435 2869 st->print_cr("********************************************************");
duke@435 2870 st->print ("TypeFlow for ");
duke@435 2871 method()->name()->print_symbol_on(st);
duke@435 2872 int limit_bci = code_size();
duke@435 2873 st->print_cr(" %d bytes", limit_bci);
duke@435 2874 ciMethodBlocks *mblks = _methodBlocks;
duke@435 2875 ciBlock* current = NULL;
duke@435 2876 for (int bci = 0; bci < limit_bci; bci++) {
duke@435 2877 ciBlock* blk = mblks->block_containing(bci);
duke@435 2878 if (blk != NULL && blk != current) {
duke@435 2879 current = blk;
duke@435 2880 current->print_on(st);
duke@435 2881
duke@435 2882 GrowableArray<Block*>* blocks = _idx_to_blocklist[blk->index()];
duke@435 2883 int num_blocks = (blocks == NULL) ? 0 : blocks->length();
duke@435 2884
duke@435 2885 if (num_blocks == 0) {
duke@435 2886 st->print_cr(" No Blocks");
duke@435 2887 } else {
duke@435 2888 for (int i = 0; i < num_blocks; i++) {
duke@435 2889 Block* block = blocks->at(i);
duke@435 2890 block->print_on(st);
duke@435 2891 }
duke@435 2892 }
duke@435 2893 st->print_cr("--------------------------------------------------------");
duke@435 2894 st->cr();
duke@435 2895 }
duke@435 2896 }
duke@435 2897 st->print_cr("********************************************************");
duke@435 2898 st->cr();
duke@435 2899 }
never@802 2900
never@802 2901 void ciTypeFlow::rpo_print_on(outputStream* st) const {
never@802 2902 st->print_cr("********************************************************");
never@802 2903 st->print ("TypeFlow for ");
never@802 2904 method()->name()->print_symbol_on(st);
never@802 2905 int limit_bci = code_size();
never@802 2906 st->print_cr(" %d bytes", limit_bci);
never@802 2907 for (Block* blk = _rpo_list; blk != NULL; blk = blk->rpo_next()) {
never@802 2908 blk->print_on(st);
never@802 2909 st->print_cr("--------------------------------------------------------");
never@802 2910 st->cr();
never@802 2911 }
never@802 2912 st->print_cr("********************************************************");
never@802 2913 st->cr();
never@802 2914 }
duke@435 2915 #endif

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