src/share/vm/c1/c1_Canonicalizer.cpp

Thu, 10 Oct 2013 15:44:12 +0200

author
anoll
date
Thu, 10 Oct 2013 15:44:12 +0200
changeset 5919
469216acdb28
parent 4947
acadb114c818
child 5921
ce0cc25bc5e2
permissions
-rw-r--r--

8023014: CodeSweeperSweepNoFlushTest.java fails with HS crash
Summary: Ensure ensure correct initialization of compiler runtime
Reviewed-by: kvn, twisti

duke@435 1 /*
mikael@4153 2 * Copyright (c) 1999, 2012, Oracle and/or its affiliates. All rights reserved.
duke@435 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@435 4 *
duke@435 5 * This code is free software; you can redistribute it and/or modify it
duke@435 6 * under the terms of the GNU General Public License version 2 only, as
duke@435 7 * published by the Free Software Foundation.
duke@435 8 *
duke@435 9 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@435 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@435 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@435 12 * version 2 for more details (a copy is included in the LICENSE file that
duke@435 13 * accompanied this code).
duke@435 14 *
duke@435 15 * You should have received a copy of the GNU General Public License version
duke@435 16 * 2 along with this work; if not, write to the Free Software Foundation,
duke@435 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@435 18 *
trims@1907 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
trims@1907 20 * or visit www.oracle.com if you need additional information or have any
trims@1907 21 * questions.
duke@435 22 *
duke@435 23 */
duke@435 24
stefank@2314 25 #include "precompiled.hpp"
stefank@2314 26 #include "c1/c1_Canonicalizer.hpp"
stefank@2314 27 #include "c1/c1_InstructionPrinter.hpp"
stefank@2314 28 #include "c1/c1_ValueStack.hpp"
stefank@2314 29 #include "ci/ciArray.hpp"
stefank@2314 30 #include "runtime/sharedRuntime.hpp"
duke@435 31
duke@435 32
iveresov@1939 33 class PrintValueVisitor: public ValueVisitor {
iveresov@1939 34 void visit(Value* vp) {
iveresov@1939 35 (*vp)->print_line();
iveresov@1939 36 }
iveresov@1939 37 };
duke@435 38
duke@435 39 void Canonicalizer::set_canonical(Value x) {
duke@435 40 assert(x != NULL, "value must exist");
duke@435 41 // Note: we can not currently substitute root nodes which show up in
duke@435 42 // the instruction stream (because the instruction list is embedded
duke@435 43 // in the instructions).
duke@435 44 if (canonical() != x) {
twisti@3836 45 #ifndef PRODUCT
twisti@3836 46 if (!x->has_printable_bci()) {
twisti@3836 47 x->set_printable_bci(bci());
twisti@3836 48 }
twisti@3836 49 #endif
duke@435 50 if (PrintCanonicalization) {
iveresov@1939 51 PrintValueVisitor do_print_value;
iveresov@1939 52 canonical()->input_values_do(&do_print_value);
duke@435 53 canonical()->print_line();
duke@435 54 tty->print_cr("canonicalized to:");
iveresov@1939 55 x->input_values_do(&do_print_value);
duke@435 56 x->print_line();
duke@435 57 tty->cr();
duke@435 58 }
duke@435 59 assert(_canonical->type()->tag() == x->type()->tag(), "types must match");
duke@435 60 _canonical = x;
duke@435 61 }
duke@435 62 }
duke@435 63
duke@435 64
duke@435 65 void Canonicalizer::move_const_to_right(Op2* x) {
duke@435 66 if (x->x()->type()->is_constant() && x->is_commutative()) x->swap_operands();
duke@435 67 }
duke@435 68
duke@435 69
duke@435 70 void Canonicalizer::do_Op2(Op2* x) {
duke@435 71 if (x->x() == x->y()) {
duke@435 72 switch (x->op()) {
duke@435 73 case Bytecodes::_isub: set_constant(0); return;
duke@435 74 case Bytecodes::_lsub: set_constant(jlong_cast(0)); return;
duke@435 75 case Bytecodes::_iand: // fall through
duke@435 76 case Bytecodes::_land: // fall through
duke@435 77 case Bytecodes::_ior: // fall through
duke@435 78 case Bytecodes::_lor : set_canonical(x->x()); return;
duke@435 79 case Bytecodes::_ixor: set_constant(0); return;
duke@435 80 case Bytecodes::_lxor: set_constant(jlong_cast(0)); return;
duke@435 81 }
duke@435 82 }
duke@435 83
duke@435 84 if (x->x()->type()->is_constant() && x->y()->type()->is_constant()) {
duke@435 85 // do constant folding for selected operations
duke@435 86 switch (x->type()->tag()) {
duke@435 87 case intTag:
duke@435 88 { jint a = x->x()->type()->as_IntConstant()->value();
duke@435 89 jint b = x->y()->type()->as_IntConstant()->value();
duke@435 90 switch (x->op()) {
duke@435 91 case Bytecodes::_iadd: set_constant(a + b); return;
duke@435 92 case Bytecodes::_isub: set_constant(a - b); return;
duke@435 93 case Bytecodes::_imul: set_constant(a * b); return;
duke@435 94 case Bytecodes::_idiv:
duke@435 95 if (b != 0) {
duke@435 96 if (a == min_jint && b == -1) {
duke@435 97 set_constant(min_jint);
duke@435 98 } else {
duke@435 99 set_constant(a / b);
duke@435 100 }
duke@435 101 return;
duke@435 102 }
duke@435 103 break;
duke@435 104 case Bytecodes::_irem:
duke@435 105 if (b != 0) {
duke@435 106 if (a == min_jint && b == -1) {
duke@435 107 set_constant(0);
duke@435 108 } else {
duke@435 109 set_constant(a % b);
duke@435 110 }
duke@435 111 return;
duke@435 112 }
duke@435 113 break;
duke@435 114 case Bytecodes::_iand: set_constant(a & b); return;
duke@435 115 case Bytecodes::_ior : set_constant(a | b); return;
duke@435 116 case Bytecodes::_ixor: set_constant(a ^ b); return;
duke@435 117 }
duke@435 118 }
duke@435 119 break;
duke@435 120 case longTag:
duke@435 121 { jlong a = x->x()->type()->as_LongConstant()->value();
duke@435 122 jlong b = x->y()->type()->as_LongConstant()->value();
duke@435 123 switch (x->op()) {
duke@435 124 case Bytecodes::_ladd: set_constant(a + b); return;
duke@435 125 case Bytecodes::_lsub: set_constant(a - b); return;
duke@435 126 case Bytecodes::_lmul: set_constant(a * b); return;
duke@435 127 case Bytecodes::_ldiv:
duke@435 128 if (b != 0) {
duke@435 129 set_constant(SharedRuntime::ldiv(b, a));
duke@435 130 return;
duke@435 131 }
duke@435 132 break;
duke@435 133 case Bytecodes::_lrem:
duke@435 134 if (b != 0) {
duke@435 135 set_constant(SharedRuntime::lrem(b, a));
duke@435 136 return;
duke@435 137 }
duke@435 138 break;
duke@435 139 case Bytecodes::_land: set_constant(a & b); return;
duke@435 140 case Bytecodes::_lor : set_constant(a | b); return;
duke@435 141 case Bytecodes::_lxor: set_constant(a ^ b); return;
duke@435 142 }
duke@435 143 }
duke@435 144 break;
duke@435 145 // other cases not implemented (must be extremely careful with floats & doubles!)
duke@435 146 }
duke@435 147 }
duke@435 148 // make sure constant is on the right side, if any
duke@435 149 move_const_to_right(x);
duke@435 150
duke@435 151 if (x->y()->type()->is_constant()) {
duke@435 152 // do constant folding for selected operations
duke@435 153 switch (x->type()->tag()) {
duke@435 154 case intTag:
duke@435 155 if (x->y()->type()->as_IntConstant()->value() == 0) {
duke@435 156 switch (x->op()) {
duke@435 157 case Bytecodes::_iadd: set_canonical(x->x()); return;
duke@435 158 case Bytecodes::_isub: set_canonical(x->x()); return;
duke@435 159 case Bytecodes::_imul: set_constant(0); return;
duke@435 160 // Note: for div and rem, make sure that C semantics
duke@435 161 // corresponds to Java semantics!
duke@435 162 case Bytecodes::_iand: set_constant(0); return;
duke@435 163 case Bytecodes::_ior : set_canonical(x->x()); return;
duke@435 164 }
duke@435 165 }
duke@435 166 break;
duke@435 167 case longTag:
duke@435 168 if (x->y()->type()->as_LongConstant()->value() == (jlong)0) {
duke@435 169 switch (x->op()) {
duke@435 170 case Bytecodes::_ladd: set_canonical(x->x()); return;
duke@435 171 case Bytecodes::_lsub: set_canonical(x->x()); return;
duke@435 172 case Bytecodes::_lmul: set_constant((jlong)0); return;
duke@435 173 // Note: for div and rem, make sure that C semantics
duke@435 174 // corresponds to Java semantics!
duke@435 175 case Bytecodes::_land: set_constant((jlong)0); return;
duke@435 176 case Bytecodes::_lor : set_canonical(x->x()); return;
duke@435 177 }
duke@435 178 }
duke@435 179 break;
duke@435 180 }
duke@435 181 }
duke@435 182 }
duke@435 183
duke@435 184
duke@435 185 void Canonicalizer::do_Phi (Phi* x) {}
duke@435 186 void Canonicalizer::do_Constant (Constant* x) {}
duke@435 187 void Canonicalizer::do_Local (Local* x) {}
duke@435 188 void Canonicalizer::do_LoadField (LoadField* x) {}
duke@435 189
duke@435 190 // checks if v is in the block that is currently processed by
duke@435 191 // GraphBuilder. This is the only block that has not BlockEnd yet.
duke@435 192 static bool in_current_block(Value v) {
duke@435 193 int max_distance = 4;
duke@435 194 while (max_distance > 0 && v != NULL && v->as_BlockEnd() == NULL) {
duke@435 195 v = v->next();
duke@435 196 max_distance--;
duke@435 197 }
duke@435 198 return v == NULL;
duke@435 199 }
duke@435 200
duke@435 201 void Canonicalizer::do_StoreField (StoreField* x) {
duke@435 202 // If a value is going to be stored into a field or array some of
duke@435 203 // the conversions emitted by javac are unneeded because the fields
duke@435 204 // are packed to their natural size.
duke@435 205 Convert* conv = x->value()->as_Convert();
duke@435 206 if (conv) {
duke@435 207 Value value = NULL;
duke@435 208 BasicType type = x->field()->type()->basic_type();
duke@435 209 switch (conv->op()) {
duke@435 210 case Bytecodes::_i2b: if (type == T_BYTE) value = conv->value(); break;
duke@435 211 case Bytecodes::_i2s: if (type == T_SHORT || type == T_BYTE) value = conv->value(); break;
duke@435 212 case Bytecodes::_i2c: if (type == T_CHAR || type == T_BYTE) value = conv->value(); break;
duke@435 213 }
duke@435 214 // limit this optimization to current block
duke@435 215 if (value != NULL && in_current_block(conv)) {
duke@435 216 set_canonical(new StoreField(x->obj(), x->offset(), x->field(), value, x->is_static(),
never@2634 217 x->state_before(), x->needs_patching()));
duke@435 218 return;
duke@435 219 }
duke@435 220 }
duke@435 221
duke@435 222 }
duke@435 223
duke@435 224 void Canonicalizer::do_ArrayLength (ArrayLength* x) {
duke@435 225 NewArray* array = x->array()->as_NewArray();
duke@435 226 if (array != NULL && array->length() != NULL) {
duke@435 227 Constant* length = array->length()->as_Constant();
duke@435 228 if (length != NULL) {
duke@435 229 // do not use the Constant itself, but create a new Constant
duke@435 230 // with same value Otherwise a Constant is live over multiple
duke@435 231 // blocks without being registered in a state array.
duke@435 232 assert(length->type()->as_IntConstant() != NULL, "array length must be integer");
duke@435 233 set_constant(length->type()->as_IntConstant()->value());
duke@435 234 }
duke@435 235 } else {
duke@435 236 LoadField* lf = x->array()->as_LoadField();
twisti@1730 237 if (lf != NULL) {
twisti@1730 238 ciField* field = lf->field();
twisti@1730 239 if (field->is_constant() && field->is_static()) {
twisti@1730 240 // final static field
twisti@1730 241 ciObject* c = field->constant_value().as_object();
twisti@1730 242 if (c->is_array()) {
twisti@1730 243 ciArray* array = (ciArray*) c;
twisti@1730 244 set_constant(array->length());
twisti@1730 245 }
duke@435 246 }
duke@435 247 }
duke@435 248 }
duke@435 249 }
duke@435 250
duke@435 251 void Canonicalizer::do_LoadIndexed (LoadIndexed* x) {}
duke@435 252 void Canonicalizer::do_StoreIndexed (StoreIndexed* x) {
duke@435 253 // If a value is going to be stored into a field or array some of
duke@435 254 // the conversions emitted by javac are unneeded because the fields
duke@435 255 // are packed to their natural size.
duke@435 256 Convert* conv = x->value()->as_Convert();
duke@435 257 if (conv) {
duke@435 258 Value value = NULL;
duke@435 259 BasicType type = x->elt_type();
duke@435 260 switch (conv->op()) {
duke@435 261 case Bytecodes::_i2b: if (type == T_BYTE) value = conv->value(); break;
duke@435 262 case Bytecodes::_i2s: if (type == T_SHORT || type == T_BYTE) value = conv->value(); break;
duke@435 263 case Bytecodes::_i2c: if (type == T_CHAR || type == T_BYTE) value = conv->value(); break;
duke@435 264 }
duke@435 265 // limit this optimization to current block
duke@435 266 if (value != NULL && in_current_block(conv)) {
duke@435 267 set_canonical(new StoreIndexed(x->array(), x->index(), x->length(),
roland@2174 268 x->elt_type(), value, x->state_before()));
duke@435 269 return;
duke@435 270 }
duke@435 271 }
duke@435 272
duke@435 273
duke@435 274 }
duke@435 275
duke@435 276
duke@435 277 void Canonicalizer::do_NegateOp(NegateOp* x) {
duke@435 278 ValueType* t = x->x()->type();
duke@435 279 if (t->is_constant()) {
duke@435 280 switch (t->tag()) {
duke@435 281 case intTag : set_constant(-t->as_IntConstant ()->value()); return;
duke@435 282 case longTag : set_constant(-t->as_LongConstant ()->value()); return;
duke@435 283 case floatTag : set_constant(-t->as_FloatConstant ()->value()); return;
duke@435 284 case doubleTag: set_constant(-t->as_DoubleConstant()->value()); return;
duke@435 285 default : ShouldNotReachHere();
duke@435 286 }
duke@435 287 }
duke@435 288 }
duke@435 289
duke@435 290
duke@435 291 void Canonicalizer::do_ArithmeticOp (ArithmeticOp* x) { do_Op2(x); }
duke@435 292
duke@435 293
duke@435 294 void Canonicalizer::do_ShiftOp (ShiftOp* x) {
duke@435 295 ValueType* t = x->x()->type();
duke@435 296 ValueType* t2 = x->y()->type();
duke@435 297 if (t->is_constant()) {
duke@435 298 switch (t->tag()) {
duke@435 299 case intTag : if (t->as_IntConstant()->value() == 0) { set_constant(0); return; } break;
duke@435 300 case longTag : if (t->as_LongConstant()->value() == (jlong)0) { set_constant(jlong_cast(0)); return; } break;
duke@435 301 default : ShouldNotReachHere();
duke@435 302 }
duke@435 303 if (t2->is_constant()) {
duke@435 304 if (t->tag() == intTag) {
duke@435 305 int value = t->as_IntConstant()->value();
duke@435 306 int shift = t2->as_IntConstant()->value() & 31;
duke@435 307 jint mask = ~(~0 << (32 - shift));
duke@435 308 if (shift == 0) mask = ~0;
duke@435 309 switch (x->op()) {
duke@435 310 case Bytecodes::_ishl: set_constant(value << shift); return;
duke@435 311 case Bytecodes::_ishr: set_constant(value >> shift); return;
duke@435 312 case Bytecodes::_iushr: set_constant((value >> shift) & mask); return;
duke@435 313 }
duke@435 314 } else if (t->tag() == longTag) {
duke@435 315 jlong value = t->as_LongConstant()->value();
duke@435 316 int shift = t2->as_IntConstant()->value() & 63;
duke@435 317 jlong mask = ~(~jlong_cast(0) << (64 - shift));
duke@435 318 if (shift == 0) mask = ~jlong_cast(0);
duke@435 319 switch (x->op()) {
duke@435 320 case Bytecodes::_lshl: set_constant(value << shift); return;
duke@435 321 case Bytecodes::_lshr: set_constant(value >> shift); return;
duke@435 322 case Bytecodes::_lushr: set_constant((value >> shift) & mask); return;
duke@435 323 }
duke@435 324 }
duke@435 325 }
duke@435 326 }
duke@435 327 if (t2->is_constant()) {
duke@435 328 switch (t2->tag()) {
duke@435 329 case intTag : if (t2->as_IntConstant()->value() == 0) set_canonical(x->x()); return;
duke@435 330 case longTag : if (t2->as_IntConstant()->value() == 0) set_canonical(x->x()); return;
duke@435 331 default : ShouldNotReachHere();
duke@435 332 }
duke@435 333 }
duke@435 334 }
duke@435 335
duke@435 336
duke@435 337 void Canonicalizer::do_LogicOp (LogicOp* x) { do_Op2(x); }
duke@435 338 void Canonicalizer::do_CompareOp (CompareOp* x) {
duke@435 339 if (x->x() == x->y()) {
duke@435 340 switch (x->x()->type()->tag()) {
duke@435 341 case longTag: set_constant(0); break;
duke@435 342 case floatTag: {
duke@435 343 FloatConstant* fc = x->x()->type()->as_FloatConstant();
duke@435 344 if (fc) {
duke@435 345 if (g_isnan(fc->value())) {
duke@435 346 set_constant(x->op() == Bytecodes::_fcmpl ? -1 : 1);
duke@435 347 } else {
duke@435 348 set_constant(0);
duke@435 349 }
duke@435 350 }
duke@435 351 break;
duke@435 352 }
duke@435 353 case doubleTag: {
duke@435 354 DoubleConstant* dc = x->x()->type()->as_DoubleConstant();
duke@435 355 if (dc) {
duke@435 356 if (g_isnan(dc->value())) {
duke@435 357 set_constant(x->op() == Bytecodes::_dcmpl ? -1 : 1);
duke@435 358 } else {
duke@435 359 set_constant(0);
duke@435 360 }
duke@435 361 }
duke@435 362 break;
duke@435 363 }
duke@435 364 }
duke@435 365 } else if (x->x()->type()->is_constant() && x->y()->type()->is_constant()) {
duke@435 366 switch (x->x()->type()->tag()) {
duke@435 367 case longTag: {
duke@435 368 jlong vx = x->x()->type()->as_LongConstant()->value();
duke@435 369 jlong vy = x->y()->type()->as_LongConstant()->value();
duke@435 370 if (vx == vy)
duke@435 371 set_constant(0);
duke@435 372 else if (vx < vy)
duke@435 373 set_constant(-1);
duke@435 374 else
duke@435 375 set_constant(1);
duke@435 376 break;
duke@435 377 }
duke@435 378
duke@435 379 case floatTag: {
duke@435 380 float vx = x->x()->type()->as_FloatConstant()->value();
duke@435 381 float vy = x->y()->type()->as_FloatConstant()->value();
duke@435 382 if (g_isnan(vx) || g_isnan(vy))
duke@435 383 set_constant(x->op() == Bytecodes::_fcmpl ? -1 : 1);
duke@435 384 else if (vx == vy)
duke@435 385 set_constant(0);
duke@435 386 else if (vx < vy)
duke@435 387 set_constant(-1);
duke@435 388 else
duke@435 389 set_constant(1);
duke@435 390 break;
duke@435 391 }
duke@435 392
duke@435 393 case doubleTag: {
duke@435 394 double vx = x->x()->type()->as_DoubleConstant()->value();
duke@435 395 double vy = x->y()->type()->as_DoubleConstant()->value();
duke@435 396 if (g_isnan(vx) || g_isnan(vy))
duke@435 397 set_constant(x->op() == Bytecodes::_dcmpl ? -1 : 1);
duke@435 398 else if (vx == vy)
duke@435 399 set_constant(0);
duke@435 400 else if (vx < vy)
duke@435 401 set_constant(-1);
duke@435 402 else
duke@435 403 set_constant(1);
duke@435 404 break;
duke@435 405 }
duke@435 406 }
duke@435 407
duke@435 408 }
duke@435 409 }
duke@435 410
duke@435 411
duke@435 412 void Canonicalizer::do_IfInstanceOf(IfInstanceOf* x) {}
duke@435 413
duke@435 414 void Canonicalizer::do_IfOp(IfOp* x) {
duke@435 415 // Caution: do not use do_Op2(x) here for now since
duke@435 416 // we map the condition to the op for now!
duke@435 417 move_const_to_right(x);
duke@435 418 }
duke@435 419
duke@435 420
duke@435 421 void Canonicalizer::do_Intrinsic (Intrinsic* x) {
duke@435 422 switch (x->id()) {
duke@435 423 case vmIntrinsics::_floatToRawIntBits : {
duke@435 424 FloatConstant* c = x->argument_at(0)->type()->as_FloatConstant();
duke@435 425 if (c != NULL) {
duke@435 426 JavaValue v;
duke@435 427 v.set_jfloat(c->value());
duke@435 428 set_constant(v.get_jint());
duke@435 429 }
duke@435 430 break;
duke@435 431 }
duke@435 432 case vmIntrinsics::_intBitsToFloat : {
duke@435 433 IntConstant* c = x->argument_at(0)->type()->as_IntConstant();
duke@435 434 if (c != NULL) {
duke@435 435 JavaValue v;
duke@435 436 v.set_jint(c->value());
duke@435 437 set_constant(v.get_jfloat());
duke@435 438 }
duke@435 439 break;
duke@435 440 }
duke@435 441 case vmIntrinsics::_doubleToRawLongBits : {
duke@435 442 DoubleConstant* c = x->argument_at(0)->type()->as_DoubleConstant();
duke@435 443 if (c != NULL) {
duke@435 444 JavaValue v;
duke@435 445 v.set_jdouble(c->value());
duke@435 446 set_constant(v.get_jlong());
duke@435 447 }
duke@435 448 break;
duke@435 449 }
duke@435 450 case vmIntrinsics::_longBitsToDouble : {
duke@435 451 LongConstant* c = x->argument_at(0)->type()->as_LongConstant();
duke@435 452 if (c != NULL) {
duke@435 453 JavaValue v;
duke@435 454 v.set_jlong(c->value());
duke@435 455 set_constant(v.get_jdouble());
duke@435 456 }
duke@435 457 break;
duke@435 458 }
roland@3838 459 case vmIntrinsics::_isInstance : {
roland@3838 460 assert(x->number_of_arguments() == 2, "wrong type");
roland@3838 461
roland@3838 462 InstanceConstant* c = x->argument_at(0)->type()->as_InstanceConstant();
roland@3838 463 if (c != NULL && !c->value()->is_null_object()) {
roland@3838 464 // ciInstance::java_mirror_type() returns non-NULL only for Java mirrors
roland@3838 465 ciType* t = c->value()->as_instance()->java_mirror_type();
roland@3838 466 if (t->is_klass()) {
roland@3838 467 // substitute cls.isInstance(obj) of a constant Class into
roland@3838 468 // an InstantOf instruction
twisti@3839 469 InstanceOf* i = new InstanceOf(t->as_klass(), x->argument_at(1), x->state_before());
roland@3838 470 set_canonical(i);
roland@3838 471 // and try to canonicalize even further
roland@3838 472 do_InstanceOf(i);
roland@3838 473 } else {
roland@3838 474 assert(t->is_primitive_type(), "should be a primitive type");
roland@3838 475 // cls.isInstance(obj) always returns false for primitive classes
roland@3838 476 set_constant(0);
roland@3838 477 }
roland@3838 478 }
roland@3838 479 break;
roland@3838 480 }
duke@435 481 }
duke@435 482 }
duke@435 483
duke@435 484 void Canonicalizer::do_Convert (Convert* x) {
duke@435 485 if (x->value()->type()->is_constant()) {
duke@435 486 switch (x->op()) {
duke@435 487 case Bytecodes::_i2b: set_constant((int)((x->value()->type()->as_IntConstant()->value() << 24) >> 24)); break;
duke@435 488 case Bytecodes::_i2s: set_constant((int)((x->value()->type()->as_IntConstant()->value() << 16) >> 16)); break;
duke@435 489 case Bytecodes::_i2c: set_constant((int)(x->value()->type()->as_IntConstant()->value() & ((1<<16)-1))); break;
duke@435 490 case Bytecodes::_i2l: set_constant((jlong)(x->value()->type()->as_IntConstant()->value())); break;
duke@435 491 case Bytecodes::_i2f: set_constant((float)(x->value()->type()->as_IntConstant()->value())); break;
duke@435 492 case Bytecodes::_i2d: set_constant((double)(x->value()->type()->as_IntConstant()->value())); break;
duke@435 493 case Bytecodes::_l2i: set_constant((int)(x->value()->type()->as_LongConstant()->value())); break;
duke@435 494 case Bytecodes::_l2f: set_constant(SharedRuntime::l2f(x->value()->type()->as_LongConstant()->value())); break;
duke@435 495 case Bytecodes::_l2d: set_constant(SharedRuntime::l2d(x->value()->type()->as_LongConstant()->value())); break;
duke@435 496 case Bytecodes::_f2d: set_constant((double)(x->value()->type()->as_FloatConstant()->value())); break;
duke@435 497 case Bytecodes::_f2i: set_constant(SharedRuntime::f2i(x->value()->type()->as_FloatConstant()->value())); break;
duke@435 498 case Bytecodes::_f2l: set_constant(SharedRuntime::f2l(x->value()->type()->as_FloatConstant()->value())); break;
duke@435 499 case Bytecodes::_d2f: set_constant((float)(x->value()->type()->as_DoubleConstant()->value())); break;
duke@435 500 case Bytecodes::_d2i: set_constant(SharedRuntime::d2i(x->value()->type()->as_DoubleConstant()->value())); break;
duke@435 501 case Bytecodes::_d2l: set_constant(SharedRuntime::d2l(x->value()->type()->as_DoubleConstant()->value())); break;
duke@435 502 default:
duke@435 503 ShouldNotReachHere();
duke@435 504 }
duke@435 505 }
duke@435 506
duke@435 507 Value value = x->value();
duke@435 508 BasicType type = T_ILLEGAL;
duke@435 509 LoadField* lf = value->as_LoadField();
duke@435 510 if (lf) {
duke@435 511 type = lf->field_type();
duke@435 512 } else {
duke@435 513 LoadIndexed* li = value->as_LoadIndexed();
duke@435 514 if (li) {
duke@435 515 type = li->elt_type();
duke@435 516 } else {
duke@435 517 Convert* conv = value->as_Convert();
duke@435 518 if (conv) {
duke@435 519 switch (conv->op()) {
duke@435 520 case Bytecodes::_i2b: type = T_BYTE; break;
duke@435 521 case Bytecodes::_i2s: type = T_SHORT; break;
duke@435 522 case Bytecodes::_i2c: type = T_CHAR; break;
duke@435 523 }
duke@435 524 }
duke@435 525 }
duke@435 526 }
duke@435 527 if (type != T_ILLEGAL) {
duke@435 528 switch (x->op()) {
duke@435 529 case Bytecodes::_i2b: if (type == T_BYTE) set_canonical(x->value()); break;
duke@435 530 case Bytecodes::_i2s: if (type == T_SHORT || type == T_BYTE) set_canonical(x->value()); break;
duke@435 531 case Bytecodes::_i2c: if (type == T_CHAR) set_canonical(x->value()); break;
duke@435 532 }
duke@435 533 } else {
duke@435 534 Op2* op2 = x->value()->as_Op2();
duke@435 535 if (op2 && op2->op() == Bytecodes::_iand && op2->y()->type()->is_constant()) {
duke@435 536 jint safebits = 0;
duke@435 537 jint mask = op2->y()->type()->as_IntConstant()->value();
duke@435 538 switch (x->op()) {
duke@435 539 case Bytecodes::_i2b: safebits = 0x7f; break;
duke@435 540 case Bytecodes::_i2s: safebits = 0x7fff; break;
duke@435 541 case Bytecodes::_i2c: safebits = 0xffff; break;
duke@435 542 }
duke@435 543 // When casting a masked integer to a smaller signed type, if
duke@435 544 // the mask doesn't include the sign bit the cast isn't needed.
duke@435 545 if (safebits && (mask & ~safebits) == 0) {
duke@435 546 set_canonical(x->value());
duke@435 547 }
duke@435 548 }
duke@435 549 }
duke@435 550
duke@435 551 }
duke@435 552
duke@435 553 void Canonicalizer::do_NullCheck (NullCheck* x) {
duke@435 554 if (x->obj()->as_NewArray() != NULL || x->obj()->as_NewInstance() != NULL) {
duke@435 555 set_canonical(x->obj());
duke@435 556 } else {
duke@435 557 Constant* con = x->obj()->as_Constant();
duke@435 558 if (con) {
duke@435 559 ObjectType* c = con->type()->as_ObjectType();
duke@435 560 if (c && c->is_loaded()) {
duke@435 561 ObjectConstant* oc = c->as_ObjectConstant();
duke@435 562 if (!oc || !oc->value()->is_null_object()) {
duke@435 563 set_canonical(con);
duke@435 564 }
duke@435 565 }
duke@435 566 }
duke@435 567 }
duke@435 568 }
duke@435 569
twisti@3969 570 void Canonicalizer::do_TypeCast (TypeCast* x) {}
duke@435 571 void Canonicalizer::do_Invoke (Invoke* x) {}
duke@435 572 void Canonicalizer::do_NewInstance (NewInstance* x) {}
duke@435 573 void Canonicalizer::do_NewTypeArray (NewTypeArray* x) {}
duke@435 574 void Canonicalizer::do_NewObjectArray (NewObjectArray* x) {}
duke@435 575 void Canonicalizer::do_NewMultiArray (NewMultiArray* x) {}
duke@435 576 void Canonicalizer::do_CheckCast (CheckCast* x) {
duke@435 577 if (x->klass()->is_loaded()) {
duke@435 578 Value obj = x->obj();
duke@435 579 ciType* klass = obj->exact_type();
duke@435 580 if (klass == NULL) klass = obj->declared_type();
duke@435 581 if (klass != NULL && klass->is_loaded() && klass->is_subtype_of(x->klass())) {
duke@435 582 set_canonical(obj);
duke@435 583 return;
duke@435 584 }
duke@435 585 // checkcast of null returns null
duke@435 586 if (obj->as_Constant() && obj->type()->as_ObjectType()->constant_value()->is_null_object()) {
duke@435 587 set_canonical(obj);
duke@435 588 }
duke@435 589 }
duke@435 590 }
duke@435 591 void Canonicalizer::do_InstanceOf (InstanceOf* x) {
duke@435 592 if (x->klass()->is_loaded()) {
duke@435 593 Value obj = x->obj();
duke@435 594 ciType* exact = obj->exact_type();
duke@435 595 if (exact != NULL && exact->is_loaded() && (obj->as_NewInstance() || obj->as_NewArray())) {
duke@435 596 set_constant(exact->is_subtype_of(x->klass()) ? 1 : 0);
duke@435 597 return;
duke@435 598 }
duke@435 599 // instanceof null returns false
duke@435 600 if (obj->as_Constant() && obj->type()->as_ObjectType()->constant_value()->is_null_object()) {
duke@435 601 set_constant(0);
duke@435 602 }
duke@435 603 }
duke@435 604
duke@435 605 }
duke@435 606 void Canonicalizer::do_MonitorEnter (MonitorEnter* x) {}
duke@435 607 void Canonicalizer::do_MonitorExit (MonitorExit* x) {}
duke@435 608 void Canonicalizer::do_BlockBegin (BlockBegin* x) {}
duke@435 609 void Canonicalizer::do_Goto (Goto* x) {}
duke@435 610
duke@435 611
duke@435 612 static bool is_true(jlong x, If::Condition cond, jlong y) {
duke@435 613 switch (cond) {
duke@435 614 case If::eql: return x == y;
duke@435 615 case If::neq: return x != y;
duke@435 616 case If::lss: return x < y;
duke@435 617 case If::leq: return x <= y;
duke@435 618 case If::gtr: return x > y;
duke@435 619 case If::geq: return x >= y;
duke@435 620 }
duke@435 621 ShouldNotReachHere();
duke@435 622 return false;
duke@435 623 }
duke@435 624
roland@3570 625 static bool is_safepoint(BlockEnd* x, BlockBegin* sux) {
roland@3570 626 // An Instruction with multiple successors, x, is replaced by a Goto
roland@3570 627 // to a single successor, sux. Is a safepoint check needed = was the
roland@3570 628 // instruction being replaced a safepoint and the single remaining
roland@3570 629 // successor a back branch?
roland@3570 630 return x->is_safepoint() && (sux->bci() < x->state_before()->bci());
roland@3570 631 }
duke@435 632
duke@435 633 void Canonicalizer::do_If(If* x) {
duke@435 634 // move const to right
duke@435 635 if (x->x()->type()->is_constant()) x->swap_operands();
duke@435 636 // simplify
duke@435 637 const Value l = x->x(); ValueType* lt = l->type();
duke@435 638 const Value r = x->y(); ValueType* rt = r->type();
duke@435 639
duke@435 640 if (l == r && !lt->is_float_kind()) {
duke@435 641 // pattern: If (a cond a) => simplify to Goto
duke@435 642 BlockBegin* sux;
duke@435 643 switch (x->cond()) {
duke@435 644 case If::eql: sux = x->sux_for(true); break;
duke@435 645 case If::neq: sux = x->sux_for(false); break;
duke@435 646 case If::lss: sux = x->sux_for(false); break;
duke@435 647 case If::leq: sux = x->sux_for(true); break;
duke@435 648 case If::gtr: sux = x->sux_for(false); break;
duke@435 649 case If::geq: sux = x->sux_for(true); break;
duke@435 650 }
duke@435 651 // If is a safepoint then the debug information should come from the state_before of the If.
roland@3570 652 set_canonical(new Goto(sux, x->state_before(), is_safepoint(x, sux)));
duke@435 653 return;
duke@435 654 }
duke@435 655
duke@435 656 if (lt->is_constant() && rt->is_constant()) {
duke@435 657 if (x->x()->as_Constant() != NULL) {
duke@435 658 // pattern: If (lc cond rc) => simplify to: Goto
duke@435 659 BlockBegin* sux = x->x()->as_Constant()->compare(x->cond(), x->y(),
duke@435 660 x->sux_for(true),
duke@435 661 x->sux_for(false));
duke@435 662 if (sux != NULL) {
duke@435 663 // If is a safepoint then the debug information should come from the state_before of the If.
roland@3570 664 set_canonical(new Goto(sux, x->state_before(), is_safepoint(x, sux)));
duke@435 665 }
duke@435 666 }
duke@435 667 } else if (rt->as_IntConstant() != NULL) {
duke@435 668 // pattern: If (l cond rc) => investigate further
duke@435 669 const jint rc = rt->as_IntConstant()->value();
duke@435 670 if (l->as_CompareOp() != NULL) {
duke@435 671 // pattern: If ((a cmp b) cond rc) => simplify to: If (x cond y) or: Goto
duke@435 672 CompareOp* cmp = l->as_CompareOp();
duke@435 673 bool unordered_is_less = cmp->op() == Bytecodes::_fcmpl || cmp->op() == Bytecodes::_dcmpl;
duke@435 674 BlockBegin* lss_sux = x->sux_for(is_true(-1, x->cond(), rc)); // successor for a < b
duke@435 675 BlockBegin* eql_sux = x->sux_for(is_true( 0, x->cond(), rc)); // successor for a = b
duke@435 676 BlockBegin* gtr_sux = x->sux_for(is_true(+1, x->cond(), rc)); // successor for a > b
duke@435 677 BlockBegin* nan_sux = unordered_is_less ? lss_sux : gtr_sux ; // successor for unordered
duke@435 678 // Note: At this point all successors (lss_sux, eql_sux, gtr_sux, nan_sux) are
duke@435 679 // equal to x->tsux() or x->fsux(). Furthermore, nan_sux equals either
duke@435 680 // lss_sux or gtr_sux.
duke@435 681 if (lss_sux == eql_sux && eql_sux == gtr_sux) {
duke@435 682 // all successors identical => simplify to: Goto
duke@435 683 set_canonical(new Goto(lss_sux, x->state_before(), x->is_safepoint()));
duke@435 684 } else {
duke@435 685 // two successors differ and two successors are the same => simplify to: If (x cmp y)
duke@435 686 // determine new condition & successors
duke@435 687 If::Condition cond;
duke@435 688 BlockBegin* tsux = NULL;
duke@435 689 BlockBegin* fsux = NULL;
duke@435 690 if (lss_sux == eql_sux) { cond = If::leq; tsux = lss_sux; fsux = gtr_sux; }
duke@435 691 else if (lss_sux == gtr_sux) { cond = If::neq; tsux = lss_sux; fsux = eql_sux; }
duke@435 692 else if (eql_sux == gtr_sux) { cond = If::geq; tsux = eql_sux; fsux = lss_sux; }
duke@435 693 else { ShouldNotReachHere(); }
iveresov@2138 694 If* canon = new If(cmp->x(), cond, nan_sux == tsux, cmp->y(), tsux, fsux, cmp->state_before(), x->is_safepoint());
duke@435 695 if (cmp->x() == cmp->y()) {
duke@435 696 do_If(canon);
duke@435 697 } else {
iveresov@2138 698 if (compilation()->profile_branches()) {
iveresov@2138 699 // TODO: If profiling, leave floating point comparisons unoptimized.
iveresov@2138 700 // We currently do not support profiling of the unordered case.
iveresov@2138 701 switch(cmp->op()) {
iveresov@2138 702 case Bytecodes::_fcmpl: case Bytecodes::_fcmpg:
iveresov@2138 703 case Bytecodes::_dcmpl: case Bytecodes::_dcmpg:
iveresov@2138 704 set_canonical(x);
iveresov@2138 705 return;
iveresov@2138 706 }
iveresov@2138 707 }
twisti@3836 708 set_bci(cmp->state_before()->bci());
duke@435 709 set_canonical(canon);
duke@435 710 }
duke@435 711 }
duke@435 712 } else if (l->as_InstanceOf() != NULL) {
duke@435 713 // NOTE: Code permanently disabled for now since it leaves the old InstanceOf
duke@435 714 // instruction in the graph (it is pinned). Need to fix this at some point.
iveresov@2146 715 // It should also be left in the graph when generating a profiled method version or Goto
iveresov@2146 716 // has to know that it was an InstanceOf.
duke@435 717 return;
duke@435 718 // pattern: If ((obj instanceof klass) cond rc) => simplify to: IfInstanceOf or: Goto
duke@435 719 InstanceOf* inst = l->as_InstanceOf();
duke@435 720 BlockBegin* is_inst_sux = x->sux_for(is_true(1, x->cond(), rc)); // successor for instanceof == 1
duke@435 721 BlockBegin* no_inst_sux = x->sux_for(is_true(0, x->cond(), rc)); // successor for instanceof == 0
duke@435 722 if (is_inst_sux == no_inst_sux && inst->is_loaded()) {
duke@435 723 // both successors identical and klass is loaded => simplify to: Goto
duke@435 724 set_canonical(new Goto(is_inst_sux, x->state_before(), x->is_safepoint()));
duke@435 725 } else {
duke@435 726 // successors differ => simplify to: IfInstanceOf
roland@2174 727 set_canonical(new IfInstanceOf(inst->klass(), inst->obj(), true, inst->state_before()->bci(), is_inst_sux, no_inst_sux));
duke@435 728 }
duke@435 729 }
duke@435 730 } else if (rt == objectNull && (l->as_NewInstance() || l->as_NewArray())) {
duke@435 731 if (x->cond() == Instruction::eql) {
roland@3570 732 BlockBegin* sux = x->fsux();
roland@3570 733 set_canonical(new Goto(sux, x->state_before(), is_safepoint(x, sux)));
duke@435 734 } else {
duke@435 735 assert(x->cond() == Instruction::neq, "only other valid case");
roland@3570 736 BlockBegin* sux = x->tsux();
roland@3570 737 set_canonical(new Goto(sux, x->state_before(), is_safepoint(x, sux)));
duke@435 738 }
duke@435 739 }
duke@435 740 }
duke@435 741
duke@435 742
duke@435 743 void Canonicalizer::do_TableSwitch(TableSwitch* x) {
duke@435 744 if (x->tag()->type()->is_constant()) {
duke@435 745 int v = x->tag()->type()->as_IntConstant()->value();
duke@435 746 BlockBegin* sux = x->default_sux();
duke@435 747 if (v >= x->lo_key() && v <= x->hi_key()) {
duke@435 748 sux = x->sux_at(v - x->lo_key());
duke@435 749 }
roland@3570 750 set_canonical(new Goto(sux, x->state_before(), is_safepoint(x, sux)));
duke@435 751 } else if (x->number_of_sux() == 1) {
duke@435 752 // NOTE: Code permanently disabled for now since the switch statement's
duke@435 753 // tag expression may produce side-effects in which case it must
duke@435 754 // be executed.
duke@435 755 return;
duke@435 756 // simplify to Goto
duke@435 757 set_canonical(new Goto(x->default_sux(), x->state_before(), x->is_safepoint()));
duke@435 758 } else if (x->number_of_sux() == 2) {
duke@435 759 // NOTE: Code permanently disabled for now since it produces two new nodes
duke@435 760 // (Constant & If) and the Canonicalizer cannot return them correctly
duke@435 761 // yet. For now we copied the corresponding code directly into the
duke@435 762 // GraphBuilder (i.e., we should never reach here).
duke@435 763 return;
duke@435 764 // simplify to If
duke@435 765 assert(x->lo_key() == x->hi_key(), "keys must be the same");
duke@435 766 Constant* key = new Constant(new IntConstant(x->lo_key()));
duke@435 767 set_canonical(new If(x->tag(), If::eql, true, key, x->sux_at(0), x->default_sux(), x->state_before(), x->is_safepoint()));
duke@435 768 }
duke@435 769 }
duke@435 770
duke@435 771
duke@435 772 void Canonicalizer::do_LookupSwitch(LookupSwitch* x) {
duke@435 773 if (x->tag()->type()->is_constant()) {
duke@435 774 int v = x->tag()->type()->as_IntConstant()->value();
duke@435 775 BlockBegin* sux = x->default_sux();
duke@435 776 for (int i = 0; i < x->length(); i++) {
duke@435 777 if (v == x->key_at(i)) {
duke@435 778 sux = x->sux_at(i);
duke@435 779 }
duke@435 780 }
roland@3570 781 set_canonical(new Goto(sux, x->state_before(), is_safepoint(x, sux)));
duke@435 782 } else if (x->number_of_sux() == 1) {
duke@435 783 // NOTE: Code permanently disabled for now since the switch statement's
duke@435 784 // tag expression may produce side-effects in which case it must
duke@435 785 // be executed.
duke@435 786 return;
duke@435 787 // simplify to Goto
duke@435 788 set_canonical(new Goto(x->default_sux(), x->state_before(), x->is_safepoint()));
duke@435 789 } else if (x->number_of_sux() == 2) {
duke@435 790 // NOTE: Code permanently disabled for now since it produces two new nodes
duke@435 791 // (Constant & If) and the Canonicalizer cannot return them correctly
duke@435 792 // yet. For now we copied the corresponding code directly into the
duke@435 793 // GraphBuilder (i.e., we should never reach here).
duke@435 794 return;
duke@435 795 // simplify to If
duke@435 796 assert(x->length() == 1, "length must be the same");
duke@435 797 Constant* key = new Constant(new IntConstant(x->key_at(0)));
duke@435 798 set_canonical(new If(x->tag(), If::eql, true, key, x->sux_at(0), x->default_sux(), x->state_before(), x->is_safepoint()));
duke@435 799 }
duke@435 800 }
duke@435 801
duke@435 802
duke@435 803 void Canonicalizer::do_Return (Return* x) {}
duke@435 804 void Canonicalizer::do_Throw (Throw* x) {}
duke@435 805 void Canonicalizer::do_Base (Base* x) {}
duke@435 806 void Canonicalizer::do_OsrEntry (OsrEntry* x) {}
duke@435 807 void Canonicalizer::do_ExceptionObject(ExceptionObject* x) {}
duke@435 808
duke@435 809 static bool match_index_and_scale(Instruction* instr,
duke@435 810 Instruction** index,
duke@435 811 int* log2_scale,
duke@435 812 Instruction** instr_to_unpin) {
duke@435 813 *instr_to_unpin = NULL;
duke@435 814
duke@435 815 // Skip conversion ops
duke@435 816 Convert* convert = instr->as_Convert();
duke@435 817 if (convert != NULL) {
duke@435 818 instr = convert->value();
duke@435 819 }
duke@435 820
duke@435 821 ShiftOp* shift = instr->as_ShiftOp();
duke@435 822 if (shift != NULL) {
duke@435 823 if (shift->is_pinned()) {
duke@435 824 *instr_to_unpin = shift;
duke@435 825 }
duke@435 826 // Constant shift value?
duke@435 827 Constant* con = shift->y()->as_Constant();
duke@435 828 if (con == NULL) return false;
duke@435 829 // Well-known type and value?
duke@435 830 IntConstant* val = con->type()->as_IntConstant();
duke@435 831 if (val == NULL) return false;
duke@435 832 if (shift->x()->type() != intType) return false;
duke@435 833 *index = shift->x();
duke@435 834 int tmp_scale = val->value();
duke@435 835 if (tmp_scale >= 0 && tmp_scale < 4) {
duke@435 836 *log2_scale = tmp_scale;
duke@435 837 return true;
duke@435 838 } else {
duke@435 839 return false;
duke@435 840 }
duke@435 841 }
duke@435 842
duke@435 843 ArithmeticOp* arith = instr->as_ArithmeticOp();
duke@435 844 if (arith != NULL) {
duke@435 845 if (arith->is_pinned()) {
duke@435 846 *instr_to_unpin = arith;
duke@435 847 }
duke@435 848 // Check for integer multiply
duke@435 849 if (arith->op() == Bytecodes::_imul) {
duke@435 850 // See if either arg is a known constant
duke@435 851 Constant* con = arith->x()->as_Constant();
duke@435 852 if (con != NULL) {
duke@435 853 *index = arith->y();
duke@435 854 } else {
duke@435 855 con = arith->y()->as_Constant();
duke@435 856 if (con == NULL) return false;
duke@435 857 *index = arith->x();
duke@435 858 }
duke@435 859 if ((*index)->type() != intType) return false;
duke@435 860 // Well-known type and value?
duke@435 861 IntConstant* val = con->type()->as_IntConstant();
duke@435 862 if (val == NULL) return false;
duke@435 863 switch (val->value()) {
duke@435 864 case 1: *log2_scale = 0; return true;
duke@435 865 case 2: *log2_scale = 1; return true;
duke@435 866 case 4: *log2_scale = 2; return true;
duke@435 867 case 8: *log2_scale = 3; return true;
duke@435 868 default: return false;
duke@435 869 }
duke@435 870 }
duke@435 871 }
duke@435 872
duke@435 873 // Unknown instruction sequence; don't touch it
duke@435 874 return false;
duke@435 875 }
duke@435 876
duke@435 877
duke@435 878 static bool match(UnsafeRawOp* x,
duke@435 879 Instruction** base,
duke@435 880 Instruction** index,
duke@435 881 int* log2_scale) {
duke@435 882 Instruction* instr_to_unpin = NULL;
duke@435 883 ArithmeticOp* root = x->base()->as_ArithmeticOp();
duke@435 884 if (root == NULL) return false;
duke@435 885 // Limit ourselves to addition for now
duke@435 886 if (root->op() != Bytecodes::_ladd) return false;
duke@435 887 // Try to find shift or scale op
duke@435 888 if (match_index_and_scale(root->y(), index, log2_scale, &instr_to_unpin)) {
duke@435 889 *base = root->x();
duke@435 890 } else if (match_index_and_scale(root->x(), index, log2_scale, &instr_to_unpin)) {
duke@435 891 *base = root->y();
duke@435 892 } else if (root->y()->as_Convert() != NULL) {
duke@435 893 Convert* convert = root->y()->as_Convert();
duke@435 894 if (convert->op() == Bytecodes::_i2l && convert->value()->type() == intType) {
duke@435 895 // pick base and index, setting scale at 1
duke@435 896 *base = root->x();
duke@435 897 *index = convert->value();
duke@435 898 *log2_scale = 0;
duke@435 899 } else {
duke@435 900 return false;
duke@435 901 }
duke@435 902 } else {
duke@435 903 // doesn't match any expected sequences
duke@435 904 return false;
duke@435 905 }
duke@435 906
duke@435 907 // If the value is pinned then it will be always be computed so
duke@435 908 // there's no profit to reshaping the expression.
duke@435 909 return !root->is_pinned();
duke@435 910 }
duke@435 911
duke@435 912
duke@435 913 void Canonicalizer::do_UnsafeRawOp(UnsafeRawOp* x) {
duke@435 914 Instruction* base = NULL;
duke@435 915 Instruction* index = NULL;
duke@435 916 int log2_scale;
duke@435 917
duke@435 918 if (match(x, &base, &index, &log2_scale)) {
duke@435 919 x->set_base(base);
duke@435 920 x->set_index(index);
duke@435 921 x->set_log2_scale(log2_scale);
duke@435 922 if (PrintUnsafeOptimization) {
duke@435 923 tty->print_cr("Canonicalizer: UnsafeRawOp id %d: base = id %d, index = id %d, log2_scale = %d",
duke@435 924 x->id(), x->base()->id(), x->index()->id(), x->log2_scale());
duke@435 925 }
duke@435 926 }
duke@435 927 }
duke@435 928
duke@435 929 void Canonicalizer::do_RoundFP(RoundFP* x) {}
duke@435 930 void Canonicalizer::do_UnsafeGetRaw(UnsafeGetRaw* x) { if (OptimizeUnsafes) do_UnsafeRawOp(x); }
duke@435 931 void Canonicalizer::do_UnsafePutRaw(UnsafePutRaw* x) { if (OptimizeUnsafes) do_UnsafeRawOp(x); }
duke@435 932 void Canonicalizer::do_UnsafeGetObject(UnsafeGetObject* x) {}
duke@435 933 void Canonicalizer::do_UnsafePutObject(UnsafePutObject* x) {}
roland@4106 934 void Canonicalizer::do_UnsafeGetAndSetObject(UnsafeGetAndSetObject* x) {}
duke@435 935 void Canonicalizer::do_UnsafePrefetchRead (UnsafePrefetchRead* x) {}
duke@435 936 void Canonicalizer::do_UnsafePrefetchWrite(UnsafePrefetchWrite* x) {}
duke@435 937 void Canonicalizer::do_ProfileCall(ProfileCall* x) {}
iveresov@2138 938 void Canonicalizer::do_ProfileInvoke(ProfileInvoke* x) {}
never@2486 939 void Canonicalizer::do_RuntimeCall(RuntimeCall* x) {}
roland@4860 940 void Canonicalizer::do_RangeCheckPredicate(RangeCheckPredicate* x) {}
roland@4947 941 #ifdef ASSERT
roland@4860 942 void Canonicalizer::do_Assert(Assert* x) {}
roland@4947 943 #endif
jiangli@3592 944 void Canonicalizer::do_MemBar(MemBar* x) {}

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