src/share/vm/c1/c1_LIR.hpp

Thu, 08 Apr 2010 12:13:07 -0700

author
iveresov
date
Thu, 08 Apr 2010 12:13:07 -0700
changeset 1804
0a43776437b6
parent 1732
c466efa608d5
child 1813
9f5b60a14736
permissions
-rw-r--r--

6942223: c1 64 bit fixes
Summary: This fixes lir_cmp_l2i on x64 and sparc 64bit, and the debug info generation.
Reviewed-by: never

duke@435 1 /*
never@1610 2 * Copyright 2000-2010 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 class BlockBegin;
duke@435 26 class BlockList;
duke@435 27 class LIR_Assembler;
duke@435 28 class CodeEmitInfo;
duke@435 29 class CodeStub;
duke@435 30 class CodeStubList;
duke@435 31 class ArrayCopyStub;
duke@435 32 class LIR_Op;
duke@435 33 class ciType;
duke@435 34 class ValueType;
duke@435 35 class LIR_OpVisitState;
duke@435 36 class FpuStackSim;
duke@435 37
duke@435 38 //---------------------------------------------------------------------
duke@435 39 // LIR Operands
duke@435 40 // LIR_OprDesc
duke@435 41 // LIR_OprPtr
duke@435 42 // LIR_Const
duke@435 43 // LIR_Address
duke@435 44 //---------------------------------------------------------------------
duke@435 45 class LIR_OprDesc;
duke@435 46 class LIR_OprPtr;
duke@435 47 class LIR_Const;
duke@435 48 class LIR_Address;
duke@435 49 class LIR_OprVisitor;
duke@435 50
duke@435 51
duke@435 52 typedef LIR_OprDesc* LIR_Opr;
duke@435 53 typedef int RegNr;
duke@435 54
duke@435 55 define_array(LIR_OprArray, LIR_Opr)
duke@435 56 define_stack(LIR_OprList, LIR_OprArray)
duke@435 57
duke@435 58 define_array(LIR_OprRefArray, LIR_Opr*)
duke@435 59 define_stack(LIR_OprRefList, LIR_OprRefArray)
duke@435 60
duke@435 61 define_array(CodeEmitInfoArray, CodeEmitInfo*)
duke@435 62 define_stack(CodeEmitInfoList, CodeEmitInfoArray)
duke@435 63
duke@435 64 define_array(LIR_OpArray, LIR_Op*)
duke@435 65 define_stack(LIR_OpList, LIR_OpArray)
duke@435 66
duke@435 67 // define LIR_OprPtr early so LIR_OprDesc can refer to it
duke@435 68 class LIR_OprPtr: public CompilationResourceObj {
duke@435 69 public:
duke@435 70 bool is_oop_pointer() const { return (type() == T_OBJECT); }
duke@435 71 bool is_float_kind() const { BasicType t = type(); return (t == T_FLOAT) || (t == T_DOUBLE); }
duke@435 72
duke@435 73 virtual LIR_Const* as_constant() { return NULL; }
duke@435 74 virtual LIR_Address* as_address() { return NULL; }
duke@435 75 virtual BasicType type() const = 0;
duke@435 76 virtual void print_value_on(outputStream* out) const = 0;
duke@435 77 };
duke@435 78
duke@435 79
duke@435 80
duke@435 81 // LIR constants
duke@435 82 class LIR_Const: public LIR_OprPtr {
duke@435 83 private:
duke@435 84 JavaValue _value;
duke@435 85
duke@435 86 void type_check(BasicType t) const { assert(type() == t, "type check"); }
duke@435 87 void type_check(BasicType t1, BasicType t2) const { assert(type() == t1 || type() == t2, "type check"); }
roland@1732 88 void type_check(BasicType t1, BasicType t2, BasicType t3) const { assert(type() == t1 || type() == t2 || type() == t3, "type check"); }
duke@435 89
duke@435 90 public:
roland@1732 91 LIR_Const(jint i, bool is_address=false) { _value.set_type(is_address?T_ADDRESS:T_INT); _value.set_jint(i); }
duke@435 92 LIR_Const(jlong l) { _value.set_type(T_LONG); _value.set_jlong(l); }
duke@435 93 LIR_Const(jfloat f) { _value.set_type(T_FLOAT); _value.set_jfloat(f); }
duke@435 94 LIR_Const(jdouble d) { _value.set_type(T_DOUBLE); _value.set_jdouble(d); }
duke@435 95 LIR_Const(jobject o) { _value.set_type(T_OBJECT); _value.set_jobject(o); }
duke@435 96 LIR_Const(void* p) {
duke@435 97 #ifdef _LP64
duke@435 98 assert(sizeof(jlong) >= sizeof(p), "too small");;
duke@435 99 _value.set_type(T_LONG); _value.set_jlong((jlong)p);
duke@435 100 #else
duke@435 101 assert(sizeof(jint) >= sizeof(p), "too small");;
duke@435 102 _value.set_type(T_INT); _value.set_jint((jint)p);
duke@435 103 #endif
duke@435 104 }
duke@435 105
duke@435 106 virtual BasicType type() const { return _value.get_type(); }
duke@435 107 virtual LIR_Const* as_constant() { return this; }
duke@435 108
roland@1732 109 jint as_jint() const { type_check(T_INT, T_ADDRESS); return _value.get_jint(); }
duke@435 110 jlong as_jlong() const { type_check(T_LONG ); return _value.get_jlong(); }
duke@435 111 jfloat as_jfloat() const { type_check(T_FLOAT ); return _value.get_jfloat(); }
duke@435 112 jdouble as_jdouble() const { type_check(T_DOUBLE); return _value.get_jdouble(); }
duke@435 113 jobject as_jobject() const { type_check(T_OBJECT); return _value.get_jobject(); }
duke@435 114 jint as_jint_lo() const { type_check(T_LONG ); return low(_value.get_jlong()); }
duke@435 115 jint as_jint_hi() const { type_check(T_LONG ); return high(_value.get_jlong()); }
duke@435 116
duke@435 117 #ifdef _LP64
duke@435 118 address as_pointer() const { type_check(T_LONG ); return (address)_value.get_jlong(); }
duke@435 119 #else
duke@435 120 address as_pointer() const { type_check(T_INT ); return (address)_value.get_jint(); }
duke@435 121 #endif
duke@435 122
duke@435 123
roland@1732 124 jint as_jint_bits() const { type_check(T_FLOAT, T_INT, T_ADDRESS); return _value.get_jint(); }
duke@435 125 jint as_jint_lo_bits() const {
duke@435 126 if (type() == T_DOUBLE) {
duke@435 127 return low(jlong_cast(_value.get_jdouble()));
duke@435 128 } else {
duke@435 129 return as_jint_lo();
duke@435 130 }
duke@435 131 }
duke@435 132 jint as_jint_hi_bits() const {
duke@435 133 if (type() == T_DOUBLE) {
duke@435 134 return high(jlong_cast(_value.get_jdouble()));
duke@435 135 } else {
duke@435 136 return as_jint_hi();
duke@435 137 }
duke@435 138 }
never@739 139 jlong as_jlong_bits() const {
never@739 140 if (type() == T_DOUBLE) {
never@739 141 return jlong_cast(_value.get_jdouble());
never@739 142 } else {
never@739 143 return as_jlong();
never@739 144 }
never@739 145 }
duke@435 146
duke@435 147 virtual void print_value_on(outputStream* out) const PRODUCT_RETURN;
duke@435 148
duke@435 149
duke@435 150 bool is_zero_float() {
duke@435 151 jfloat f = as_jfloat();
duke@435 152 jfloat ok = 0.0f;
duke@435 153 return jint_cast(f) == jint_cast(ok);
duke@435 154 }
duke@435 155
duke@435 156 bool is_one_float() {
duke@435 157 jfloat f = as_jfloat();
duke@435 158 return !g_isnan(f) && g_isfinite(f) && f == 1.0;
duke@435 159 }
duke@435 160
duke@435 161 bool is_zero_double() {
duke@435 162 jdouble d = as_jdouble();
duke@435 163 jdouble ok = 0.0;
duke@435 164 return jlong_cast(d) == jlong_cast(ok);
duke@435 165 }
duke@435 166
duke@435 167 bool is_one_double() {
duke@435 168 jdouble d = as_jdouble();
duke@435 169 return !g_isnan(d) && g_isfinite(d) && d == 1.0;
duke@435 170 }
duke@435 171 };
duke@435 172
duke@435 173
duke@435 174 //---------------------LIR Operand descriptor------------------------------------
duke@435 175 //
duke@435 176 // The class LIR_OprDesc represents a LIR instruction operand;
duke@435 177 // it can be a register (ALU/FPU), stack location or a constant;
duke@435 178 // Constants and addresses are represented as resource area allocated
duke@435 179 // structures (see above).
duke@435 180 // Registers and stack locations are inlined into the this pointer
duke@435 181 // (see value function).
duke@435 182
duke@435 183 class LIR_OprDesc: public CompilationResourceObj {
duke@435 184 public:
duke@435 185 // value structure:
duke@435 186 // data opr-type opr-kind
duke@435 187 // +--------------+-------+-------+
duke@435 188 // [max...........|7 6 5 4|3 2 1 0]
duke@435 189 // ^
duke@435 190 // is_pointer bit
duke@435 191 //
duke@435 192 // lowest bit cleared, means it is a structure pointer
duke@435 193 // we need 4 bits to represent types
duke@435 194
duke@435 195 private:
duke@435 196 friend class LIR_OprFact;
duke@435 197
duke@435 198 // Conversion
duke@435 199 intptr_t value() const { return (intptr_t) this; }
duke@435 200
duke@435 201 bool check_value_mask(intptr_t mask, intptr_t masked_value) const {
duke@435 202 return (value() & mask) == masked_value;
duke@435 203 }
duke@435 204
duke@435 205 enum OprKind {
duke@435 206 pointer_value = 0
duke@435 207 , stack_value = 1
duke@435 208 , cpu_register = 3
duke@435 209 , fpu_register = 5
duke@435 210 , illegal_value = 7
duke@435 211 };
duke@435 212
duke@435 213 enum OprBits {
duke@435 214 pointer_bits = 1
duke@435 215 , kind_bits = 3
duke@435 216 , type_bits = 4
duke@435 217 , size_bits = 2
duke@435 218 , destroys_bits = 1
duke@435 219 , virtual_bits = 1
duke@435 220 , is_xmm_bits = 1
duke@435 221 , last_use_bits = 1
duke@435 222 , is_fpu_stack_offset_bits = 1 // used in assertion checking on x86 for FPU stack slot allocation
duke@435 223 , non_data_bits = kind_bits + type_bits + size_bits + destroys_bits + last_use_bits +
duke@435 224 is_fpu_stack_offset_bits + virtual_bits + is_xmm_bits
duke@435 225 , data_bits = BitsPerInt - non_data_bits
duke@435 226 , reg_bits = data_bits / 2 // for two registers in one value encoding
duke@435 227 };
duke@435 228
duke@435 229 enum OprShift {
duke@435 230 kind_shift = 0
duke@435 231 , type_shift = kind_shift + kind_bits
duke@435 232 , size_shift = type_shift + type_bits
duke@435 233 , destroys_shift = size_shift + size_bits
duke@435 234 , last_use_shift = destroys_shift + destroys_bits
duke@435 235 , is_fpu_stack_offset_shift = last_use_shift + last_use_bits
duke@435 236 , virtual_shift = is_fpu_stack_offset_shift + is_fpu_stack_offset_bits
duke@435 237 , is_xmm_shift = virtual_shift + virtual_bits
duke@435 238 , data_shift = is_xmm_shift + is_xmm_bits
duke@435 239 , reg1_shift = data_shift
duke@435 240 , reg2_shift = data_shift + reg_bits
duke@435 241
duke@435 242 };
duke@435 243
duke@435 244 enum OprSize {
duke@435 245 single_size = 0 << size_shift
duke@435 246 , double_size = 1 << size_shift
duke@435 247 };
duke@435 248
duke@435 249 enum OprMask {
duke@435 250 kind_mask = right_n_bits(kind_bits)
duke@435 251 , type_mask = right_n_bits(type_bits) << type_shift
duke@435 252 , size_mask = right_n_bits(size_bits) << size_shift
duke@435 253 , last_use_mask = right_n_bits(last_use_bits) << last_use_shift
duke@435 254 , is_fpu_stack_offset_mask = right_n_bits(is_fpu_stack_offset_bits) << is_fpu_stack_offset_shift
duke@435 255 , virtual_mask = right_n_bits(virtual_bits) << virtual_shift
duke@435 256 , is_xmm_mask = right_n_bits(is_xmm_bits) << is_xmm_shift
duke@435 257 , pointer_mask = right_n_bits(pointer_bits)
duke@435 258 , lower_reg_mask = right_n_bits(reg_bits)
duke@435 259 , no_type_mask = (int)(~(type_mask | last_use_mask | is_fpu_stack_offset_mask))
duke@435 260 };
duke@435 261
duke@435 262 uintptr_t data() const { return value() >> data_shift; }
duke@435 263 int lo_reg_half() const { return data() & lower_reg_mask; }
duke@435 264 int hi_reg_half() const { return (data() >> reg_bits) & lower_reg_mask; }
duke@435 265 OprKind kind_field() const { return (OprKind)(value() & kind_mask); }
duke@435 266 OprSize size_field() const { return (OprSize)(value() & size_mask); }
duke@435 267
duke@435 268 static char type_char(BasicType t);
duke@435 269
duke@435 270 public:
duke@435 271 enum {
duke@435 272 vreg_base = ConcreteRegisterImpl::number_of_registers,
duke@435 273 vreg_max = (1 << data_bits) - 1
duke@435 274 };
duke@435 275
duke@435 276 static inline LIR_Opr illegalOpr();
duke@435 277
duke@435 278 enum OprType {
duke@435 279 unknown_type = 0 << type_shift // means: not set (catch uninitialized types)
duke@435 280 , int_type = 1 << type_shift
duke@435 281 , long_type = 2 << type_shift
duke@435 282 , object_type = 3 << type_shift
duke@435 283 , pointer_type = 4 << type_shift
duke@435 284 , float_type = 5 << type_shift
duke@435 285 , double_type = 6 << type_shift
duke@435 286 };
duke@435 287 friend OprType as_OprType(BasicType t);
duke@435 288 friend BasicType as_BasicType(OprType t);
duke@435 289
duke@435 290 OprType type_field_valid() const { assert(is_register() || is_stack(), "should not be called otherwise"); return (OprType)(value() & type_mask); }
duke@435 291 OprType type_field() const { return is_illegal() ? unknown_type : (OprType)(value() & type_mask); }
duke@435 292
duke@435 293 static OprSize size_for(BasicType t) {
duke@435 294 switch (t) {
duke@435 295 case T_LONG:
duke@435 296 case T_DOUBLE:
duke@435 297 return double_size;
duke@435 298 break;
duke@435 299
duke@435 300 case T_FLOAT:
duke@435 301 case T_BOOLEAN:
duke@435 302 case T_CHAR:
duke@435 303 case T_BYTE:
duke@435 304 case T_SHORT:
duke@435 305 case T_INT:
duke@435 306 case T_OBJECT:
duke@435 307 case T_ARRAY:
duke@435 308 return single_size;
duke@435 309 break;
duke@435 310
duke@435 311 default:
duke@435 312 ShouldNotReachHere();
never@739 313 return single_size;
duke@435 314 }
duke@435 315 }
duke@435 316
duke@435 317
duke@435 318 void validate_type() const PRODUCT_RETURN;
duke@435 319
duke@435 320 BasicType type() const {
duke@435 321 if (is_pointer()) {
duke@435 322 return pointer()->type();
duke@435 323 }
duke@435 324 return as_BasicType(type_field());
duke@435 325 }
duke@435 326
duke@435 327
duke@435 328 ValueType* value_type() const { return as_ValueType(type()); }
duke@435 329
duke@435 330 char type_char() const { return type_char((is_pointer()) ? pointer()->type() : type()); }
duke@435 331
duke@435 332 bool is_equal(LIR_Opr opr) const { return this == opr; }
duke@435 333 // checks whether types are same
duke@435 334 bool is_same_type(LIR_Opr opr) const {
duke@435 335 assert(type_field() != unknown_type &&
duke@435 336 opr->type_field() != unknown_type, "shouldn't see unknown_type");
duke@435 337 return type_field() == opr->type_field();
duke@435 338 }
duke@435 339 bool is_same_register(LIR_Opr opr) {
duke@435 340 return (is_register() && opr->is_register() &&
duke@435 341 kind_field() == opr->kind_field() &&
duke@435 342 (value() & no_type_mask) == (opr->value() & no_type_mask));
duke@435 343 }
duke@435 344
duke@435 345 bool is_pointer() const { return check_value_mask(pointer_mask, pointer_value); }
duke@435 346 bool is_illegal() const { return kind_field() == illegal_value; }
duke@435 347 bool is_valid() const { return kind_field() != illegal_value; }
duke@435 348
duke@435 349 bool is_register() const { return is_cpu_register() || is_fpu_register(); }
duke@435 350 bool is_virtual() const { return is_virtual_cpu() || is_virtual_fpu(); }
duke@435 351
duke@435 352 bool is_constant() const { return is_pointer() && pointer()->as_constant() != NULL; }
duke@435 353 bool is_address() const { return is_pointer() && pointer()->as_address() != NULL; }
duke@435 354
duke@435 355 bool is_float_kind() const { return is_pointer() ? pointer()->is_float_kind() : (kind_field() == fpu_register); }
duke@435 356 bool is_oop() const;
duke@435 357
duke@435 358 // semantic for fpu- and xmm-registers:
duke@435 359 // * is_float and is_double return true for xmm_registers
duke@435 360 // (so is_single_fpu and is_single_xmm are true)
duke@435 361 // * So you must always check for is_???_xmm prior to is_???_fpu to
duke@435 362 // distinguish between fpu- and xmm-registers
duke@435 363
duke@435 364 bool is_stack() const { validate_type(); return check_value_mask(kind_mask, stack_value); }
duke@435 365 bool is_single_stack() const { validate_type(); return check_value_mask(kind_mask | size_mask, stack_value | single_size); }
duke@435 366 bool is_double_stack() const { validate_type(); return check_value_mask(kind_mask | size_mask, stack_value | double_size); }
duke@435 367
duke@435 368 bool is_cpu_register() const { validate_type(); return check_value_mask(kind_mask, cpu_register); }
duke@435 369 bool is_virtual_cpu() const { validate_type(); return check_value_mask(kind_mask | virtual_mask, cpu_register | virtual_mask); }
duke@435 370 bool is_fixed_cpu() const { validate_type(); return check_value_mask(kind_mask | virtual_mask, cpu_register); }
duke@435 371 bool is_single_cpu() const { validate_type(); return check_value_mask(kind_mask | size_mask, cpu_register | single_size); }
duke@435 372 bool is_double_cpu() const { validate_type(); return check_value_mask(kind_mask | size_mask, cpu_register | double_size); }
duke@435 373
duke@435 374 bool is_fpu_register() const { validate_type(); return check_value_mask(kind_mask, fpu_register); }
duke@435 375 bool is_virtual_fpu() const { validate_type(); return check_value_mask(kind_mask | virtual_mask, fpu_register | virtual_mask); }
duke@435 376 bool is_fixed_fpu() const { validate_type(); return check_value_mask(kind_mask | virtual_mask, fpu_register); }
duke@435 377 bool is_single_fpu() const { validate_type(); return check_value_mask(kind_mask | size_mask, fpu_register | single_size); }
duke@435 378 bool is_double_fpu() const { validate_type(); return check_value_mask(kind_mask | size_mask, fpu_register | double_size); }
duke@435 379
duke@435 380 bool is_xmm_register() const { validate_type(); return check_value_mask(kind_mask | is_xmm_mask, fpu_register | is_xmm_mask); }
duke@435 381 bool is_single_xmm() const { validate_type(); return check_value_mask(kind_mask | size_mask | is_xmm_mask, fpu_register | single_size | is_xmm_mask); }
duke@435 382 bool is_double_xmm() const { validate_type(); return check_value_mask(kind_mask | size_mask | is_xmm_mask, fpu_register | double_size | is_xmm_mask); }
duke@435 383
duke@435 384 // fast accessor functions for special bits that do not work for pointers
duke@435 385 // (in this functions, the check for is_pointer() is omitted)
duke@435 386 bool is_single_word() const { assert(is_register() || is_stack(), "type check"); return check_value_mask(size_mask, single_size); }
duke@435 387 bool is_double_word() const { assert(is_register() || is_stack(), "type check"); return check_value_mask(size_mask, double_size); }
duke@435 388 bool is_virtual_register() const { assert(is_register(), "type check"); return check_value_mask(virtual_mask, virtual_mask); }
duke@435 389 bool is_oop_register() const { assert(is_register() || is_stack(), "type check"); return type_field_valid() == object_type; }
duke@435 390 BasicType type_register() const { assert(is_register() || is_stack(), "type check"); return as_BasicType(type_field_valid()); }
duke@435 391
duke@435 392 bool is_last_use() const { assert(is_register(), "only works for registers"); return (value() & last_use_mask) != 0; }
duke@435 393 bool is_fpu_stack_offset() const { assert(is_register(), "only works for registers"); return (value() & is_fpu_stack_offset_mask) != 0; }
duke@435 394 LIR_Opr make_last_use() { assert(is_register(), "only works for registers"); return (LIR_Opr)(value() | last_use_mask); }
duke@435 395 LIR_Opr make_fpu_stack_offset() { assert(is_register(), "only works for registers"); return (LIR_Opr)(value() | is_fpu_stack_offset_mask); }
duke@435 396
duke@435 397
duke@435 398 int single_stack_ix() const { assert(is_single_stack() && !is_virtual(), "type check"); return (int)data(); }
duke@435 399 int double_stack_ix() const { assert(is_double_stack() && !is_virtual(), "type check"); return (int)data(); }
duke@435 400 RegNr cpu_regnr() const { assert(is_single_cpu() && !is_virtual(), "type check"); return (RegNr)data(); }
duke@435 401 RegNr cpu_regnrLo() const { assert(is_double_cpu() && !is_virtual(), "type check"); return (RegNr)lo_reg_half(); }
duke@435 402 RegNr cpu_regnrHi() const { assert(is_double_cpu() && !is_virtual(), "type check"); return (RegNr)hi_reg_half(); }
duke@435 403 RegNr fpu_regnr() const { assert(is_single_fpu() && !is_virtual(), "type check"); return (RegNr)data(); }
duke@435 404 RegNr fpu_regnrLo() const { assert(is_double_fpu() && !is_virtual(), "type check"); return (RegNr)lo_reg_half(); }
duke@435 405 RegNr fpu_regnrHi() const { assert(is_double_fpu() && !is_virtual(), "type check"); return (RegNr)hi_reg_half(); }
duke@435 406 RegNr xmm_regnr() const { assert(is_single_xmm() && !is_virtual(), "type check"); return (RegNr)data(); }
duke@435 407 RegNr xmm_regnrLo() const { assert(is_double_xmm() && !is_virtual(), "type check"); return (RegNr)lo_reg_half(); }
duke@435 408 RegNr xmm_regnrHi() const { assert(is_double_xmm() && !is_virtual(), "type check"); return (RegNr)hi_reg_half(); }
duke@435 409 int vreg_number() const { assert(is_virtual(), "type check"); return (RegNr)data(); }
duke@435 410
duke@435 411 LIR_OprPtr* pointer() const { assert(is_pointer(), "type check"); return (LIR_OprPtr*)this; }
duke@435 412 LIR_Const* as_constant_ptr() const { return pointer()->as_constant(); }
duke@435 413 LIR_Address* as_address_ptr() const { return pointer()->as_address(); }
duke@435 414
duke@435 415 Register as_register() const;
duke@435 416 Register as_register_lo() const;
duke@435 417 Register as_register_hi() const;
duke@435 418
duke@435 419 Register as_pointer_register() {
duke@435 420 #ifdef _LP64
duke@435 421 if (is_double_cpu()) {
duke@435 422 assert(as_register_lo() == as_register_hi(), "should be a single register");
duke@435 423 return as_register_lo();
duke@435 424 }
duke@435 425 #endif
duke@435 426 return as_register();
duke@435 427 }
duke@435 428
never@739 429 #ifdef X86
duke@435 430 XMMRegister as_xmm_float_reg() const;
duke@435 431 XMMRegister as_xmm_double_reg() const;
duke@435 432 // for compatibility with RInfo
duke@435 433 int fpu () const { return lo_reg_half(); }
never@739 434 #endif // X86
duke@435 435
duke@435 436 #ifdef SPARC
duke@435 437 FloatRegister as_float_reg () const;
duke@435 438 FloatRegister as_double_reg () const;
duke@435 439 #endif
duke@435 440
duke@435 441 jint as_jint() const { return as_constant_ptr()->as_jint(); }
duke@435 442 jlong as_jlong() const { return as_constant_ptr()->as_jlong(); }
duke@435 443 jfloat as_jfloat() const { return as_constant_ptr()->as_jfloat(); }
duke@435 444 jdouble as_jdouble() const { return as_constant_ptr()->as_jdouble(); }
duke@435 445 jobject as_jobject() const { return as_constant_ptr()->as_jobject(); }
duke@435 446
duke@435 447 void print() const PRODUCT_RETURN;
duke@435 448 void print(outputStream* out) const PRODUCT_RETURN;
duke@435 449 };
duke@435 450
duke@435 451
duke@435 452 inline LIR_OprDesc::OprType as_OprType(BasicType type) {
duke@435 453 switch (type) {
duke@435 454 case T_INT: return LIR_OprDesc::int_type;
duke@435 455 case T_LONG: return LIR_OprDesc::long_type;
duke@435 456 case T_FLOAT: return LIR_OprDesc::float_type;
duke@435 457 case T_DOUBLE: return LIR_OprDesc::double_type;
duke@435 458 case T_OBJECT:
duke@435 459 case T_ARRAY: return LIR_OprDesc::object_type;
duke@435 460 case T_ILLEGAL: // fall through
duke@435 461 default: ShouldNotReachHere(); return LIR_OprDesc::unknown_type;
duke@435 462 }
duke@435 463 }
duke@435 464
duke@435 465 inline BasicType as_BasicType(LIR_OprDesc::OprType t) {
duke@435 466 switch (t) {
duke@435 467 case LIR_OprDesc::int_type: return T_INT;
duke@435 468 case LIR_OprDesc::long_type: return T_LONG;
duke@435 469 case LIR_OprDesc::float_type: return T_FLOAT;
duke@435 470 case LIR_OprDesc::double_type: return T_DOUBLE;
duke@435 471 case LIR_OprDesc::object_type: return T_OBJECT;
duke@435 472 case LIR_OprDesc::unknown_type: // fall through
duke@435 473 default: ShouldNotReachHere(); return T_ILLEGAL;
duke@435 474 }
duke@435 475 }
duke@435 476
duke@435 477
duke@435 478 // LIR_Address
duke@435 479 class LIR_Address: public LIR_OprPtr {
duke@435 480 friend class LIR_OpVisitState;
duke@435 481
duke@435 482 public:
duke@435 483 // NOTE: currently these must be the log2 of the scale factor (and
duke@435 484 // must also be equivalent to the ScaleFactor enum in
duke@435 485 // assembler_i486.hpp)
duke@435 486 enum Scale {
duke@435 487 times_1 = 0,
duke@435 488 times_2 = 1,
duke@435 489 times_4 = 2,
duke@435 490 times_8 = 3
duke@435 491 };
duke@435 492
duke@435 493 private:
duke@435 494 LIR_Opr _base;
duke@435 495 LIR_Opr _index;
duke@435 496 Scale _scale;
duke@435 497 intx _disp;
duke@435 498 BasicType _type;
duke@435 499
duke@435 500 public:
duke@435 501 LIR_Address(LIR_Opr base, LIR_Opr index, BasicType type):
duke@435 502 _base(base)
duke@435 503 , _index(index)
duke@435 504 , _scale(times_1)
duke@435 505 , _type(type)
duke@435 506 , _disp(0) { verify(); }
duke@435 507
duke@435 508 LIR_Address(LIR_Opr base, int disp, BasicType type):
duke@435 509 _base(base)
duke@435 510 , _index(LIR_OprDesc::illegalOpr())
duke@435 511 , _scale(times_1)
duke@435 512 , _type(type)
duke@435 513 , _disp(disp) { verify(); }
duke@435 514
never@739 515 #ifdef X86
duke@435 516 LIR_Address(LIR_Opr base, LIR_Opr index, Scale scale, int disp, BasicType type):
duke@435 517 _base(base)
duke@435 518 , _index(index)
duke@435 519 , _scale(scale)
duke@435 520 , _type(type)
duke@435 521 , _disp(disp) { verify(); }
never@739 522 #endif // X86
duke@435 523
duke@435 524 LIR_Opr base() const { return _base; }
duke@435 525 LIR_Opr index() const { return _index; }
duke@435 526 Scale scale() const { return _scale; }
duke@435 527 intx disp() const { return _disp; }
duke@435 528
duke@435 529 bool equals(LIR_Address* other) const { return base() == other->base() && index() == other->index() && disp() == other->disp() && scale() == other->scale(); }
duke@435 530
duke@435 531 virtual LIR_Address* as_address() { return this; }
duke@435 532 virtual BasicType type() const { return _type; }
duke@435 533 virtual void print_value_on(outputStream* out) const PRODUCT_RETURN;
duke@435 534
duke@435 535 void verify() const PRODUCT_RETURN;
duke@435 536
duke@435 537 static Scale scale(BasicType type);
duke@435 538 };
duke@435 539
duke@435 540
duke@435 541 // operand factory
duke@435 542 class LIR_OprFact: public AllStatic {
duke@435 543 public:
duke@435 544
duke@435 545 static LIR_Opr illegalOpr;
duke@435 546
never@739 547 static LIR_Opr single_cpu(int reg) { return (LIR_Opr)(intptr_t)((reg << LIR_OprDesc::reg1_shift) | LIR_OprDesc::int_type | LIR_OprDesc::cpu_register | LIR_OprDesc::single_size); }
never@739 548 static LIR_Opr single_cpu_oop(int reg) { return (LIR_Opr)(intptr_t)((reg << LIR_OprDesc::reg1_shift) | LIR_OprDesc::object_type | LIR_OprDesc::cpu_register | LIR_OprDesc::single_size); }
never@739 549 static LIR_Opr double_cpu(int reg1, int reg2) {
never@739 550 LP64_ONLY(assert(reg1 == reg2, "must be identical"));
never@739 551 return (LIR_Opr)(intptr_t)((reg1 << LIR_OprDesc::reg1_shift) |
never@739 552 (reg2 << LIR_OprDesc::reg2_shift) |
never@739 553 LIR_OprDesc::long_type |
never@739 554 LIR_OprDesc::cpu_register |
never@739 555 LIR_OprDesc::double_size);
never@739 556 }
duke@435 557
never@739 558 static LIR_Opr single_fpu(int reg) { return (LIR_Opr)(intptr_t)((reg << LIR_OprDesc::reg1_shift) |
never@739 559 LIR_OprDesc::float_type |
never@739 560 LIR_OprDesc::fpu_register |
never@739 561 LIR_OprDesc::single_size); }
duke@435 562
duke@435 563 #ifdef SPARC
never@739 564 static LIR_Opr double_fpu(int reg1, int reg2) { return (LIR_Opr)(intptr_t)((reg1 << LIR_OprDesc::reg1_shift) |
never@739 565 (reg2 << LIR_OprDesc::reg2_shift) |
never@739 566 LIR_OprDesc::double_type |
never@739 567 LIR_OprDesc::fpu_register |
never@739 568 LIR_OprDesc::double_size); }
duke@435 569 #endif
never@739 570 #ifdef X86
never@739 571 static LIR_Opr double_fpu(int reg) { return (LIR_Opr)(intptr_t)((reg << LIR_OprDesc::reg1_shift) |
never@739 572 (reg << LIR_OprDesc::reg2_shift) |
never@739 573 LIR_OprDesc::double_type |
never@739 574 LIR_OprDesc::fpu_register |
never@739 575 LIR_OprDesc::double_size); }
never@739 576
never@739 577 static LIR_Opr single_xmm(int reg) { return (LIR_Opr)(intptr_t)((reg << LIR_OprDesc::reg1_shift) |
never@739 578 LIR_OprDesc::float_type |
never@739 579 LIR_OprDesc::fpu_register |
never@739 580 LIR_OprDesc::single_size |
never@739 581 LIR_OprDesc::is_xmm_mask); }
never@739 582 static LIR_Opr double_xmm(int reg) { return (LIR_Opr)(intptr_t)((reg << LIR_OprDesc::reg1_shift) |
never@739 583 (reg << LIR_OprDesc::reg2_shift) |
never@739 584 LIR_OprDesc::double_type |
never@739 585 LIR_OprDesc::fpu_register |
never@739 586 LIR_OprDesc::double_size |
never@739 587 LIR_OprDesc::is_xmm_mask); }
never@739 588 #endif // X86
duke@435 589
duke@435 590
duke@435 591 static LIR_Opr virtual_register(int index, BasicType type) {
duke@435 592 LIR_Opr res;
duke@435 593 switch (type) {
duke@435 594 case T_OBJECT: // fall through
never@739 595 case T_ARRAY:
never@739 596 res = (LIR_Opr)(intptr_t)((index << LIR_OprDesc::data_shift) |
never@739 597 LIR_OprDesc::object_type |
never@739 598 LIR_OprDesc::cpu_register |
never@739 599 LIR_OprDesc::single_size |
never@739 600 LIR_OprDesc::virtual_mask);
never@739 601 break;
never@739 602
never@739 603 case T_INT:
never@739 604 res = (LIR_Opr)(intptr_t)((index << LIR_OprDesc::data_shift) |
never@739 605 LIR_OprDesc::int_type |
never@739 606 LIR_OprDesc::cpu_register |
never@739 607 LIR_OprDesc::single_size |
never@739 608 LIR_OprDesc::virtual_mask);
never@739 609 break;
never@739 610
never@739 611 case T_LONG:
never@739 612 res = (LIR_Opr)(intptr_t)((index << LIR_OprDesc::data_shift) |
never@739 613 LIR_OprDesc::long_type |
never@739 614 LIR_OprDesc::cpu_register |
never@739 615 LIR_OprDesc::double_size |
never@739 616 LIR_OprDesc::virtual_mask);
never@739 617 break;
never@739 618
never@739 619 case T_FLOAT:
never@739 620 res = (LIR_Opr)(intptr_t)((index << LIR_OprDesc::data_shift) |
never@739 621 LIR_OprDesc::float_type |
never@739 622 LIR_OprDesc::fpu_register |
never@739 623 LIR_OprDesc::single_size |
never@739 624 LIR_OprDesc::virtual_mask);
never@739 625 break;
never@739 626
never@739 627 case
never@739 628 T_DOUBLE: res = (LIR_Opr)(intptr_t)((index << LIR_OprDesc::data_shift) |
never@739 629 LIR_OprDesc::double_type |
never@739 630 LIR_OprDesc::fpu_register |
never@739 631 LIR_OprDesc::double_size |
never@739 632 LIR_OprDesc::virtual_mask);
never@739 633 break;
duke@435 634
duke@435 635 default: ShouldNotReachHere(); res = illegalOpr;
duke@435 636 }
duke@435 637
duke@435 638 #ifdef ASSERT
duke@435 639 res->validate_type();
duke@435 640 assert(res->vreg_number() == index, "conversion check");
duke@435 641 assert(index >= LIR_OprDesc::vreg_base, "must start at vreg_base");
duke@435 642 assert(index <= (max_jint >> LIR_OprDesc::data_shift), "index is too big");
duke@435 643
duke@435 644 // old-style calculation; check if old and new method are equal
duke@435 645 LIR_OprDesc::OprType t = as_OprType(type);
never@739 646 LIR_Opr old_res = (LIR_Opr)(intptr_t)((index << LIR_OprDesc::data_shift) | t |
never@739 647 ((type == T_FLOAT || type == T_DOUBLE) ? LIR_OprDesc::fpu_register : LIR_OprDesc::cpu_register) |
duke@435 648 LIR_OprDesc::size_for(type) | LIR_OprDesc::virtual_mask);
duke@435 649 assert(res == old_res, "old and new method not equal");
duke@435 650 #endif
duke@435 651
duke@435 652 return res;
duke@435 653 }
duke@435 654
duke@435 655 // 'index' is computed by FrameMap::local_stack_pos(index); do not use other parameters as
duke@435 656 // the index is platform independent; a double stack useing indeces 2 and 3 has always
duke@435 657 // index 2.
duke@435 658 static LIR_Opr stack(int index, BasicType type) {
duke@435 659 LIR_Opr res;
duke@435 660 switch (type) {
duke@435 661 case T_OBJECT: // fall through
never@739 662 case T_ARRAY:
never@739 663 res = (LIR_Opr)(intptr_t)((index << LIR_OprDesc::data_shift) |
never@739 664 LIR_OprDesc::object_type |
never@739 665 LIR_OprDesc::stack_value |
never@739 666 LIR_OprDesc::single_size);
never@739 667 break;
never@739 668
never@739 669 case T_INT:
never@739 670 res = (LIR_Opr)(intptr_t)((index << LIR_OprDesc::data_shift) |
never@739 671 LIR_OprDesc::int_type |
never@739 672 LIR_OprDesc::stack_value |
never@739 673 LIR_OprDesc::single_size);
never@739 674 break;
never@739 675
never@739 676 case T_LONG:
never@739 677 res = (LIR_Opr)(intptr_t)((index << LIR_OprDesc::data_shift) |
never@739 678 LIR_OprDesc::long_type |
never@739 679 LIR_OprDesc::stack_value |
never@739 680 LIR_OprDesc::double_size);
never@739 681 break;
never@739 682
never@739 683 case T_FLOAT:
never@739 684 res = (LIR_Opr)(intptr_t)((index << LIR_OprDesc::data_shift) |
never@739 685 LIR_OprDesc::float_type |
never@739 686 LIR_OprDesc::stack_value |
never@739 687 LIR_OprDesc::single_size);
never@739 688 break;
never@739 689 case T_DOUBLE:
never@739 690 res = (LIR_Opr)(intptr_t)((index << LIR_OprDesc::data_shift) |
never@739 691 LIR_OprDesc::double_type |
never@739 692 LIR_OprDesc::stack_value |
never@739 693 LIR_OprDesc::double_size);
never@739 694 break;
duke@435 695
duke@435 696 default: ShouldNotReachHere(); res = illegalOpr;
duke@435 697 }
duke@435 698
duke@435 699 #ifdef ASSERT
duke@435 700 assert(index >= 0, "index must be positive");
duke@435 701 assert(index <= (max_jint >> LIR_OprDesc::data_shift), "index is too big");
duke@435 702
never@739 703 LIR_Opr old_res = (LIR_Opr)(intptr_t)((index << LIR_OprDesc::data_shift) |
never@739 704 LIR_OprDesc::stack_value |
never@739 705 as_OprType(type) |
never@739 706 LIR_OprDesc::size_for(type));
duke@435 707 assert(res == old_res, "old and new method not equal");
duke@435 708 #endif
duke@435 709
duke@435 710 return res;
duke@435 711 }
duke@435 712
duke@435 713 static LIR_Opr intConst(jint i) { return (LIR_Opr)(new LIR_Const(i)); }
duke@435 714 static LIR_Opr longConst(jlong l) { return (LIR_Opr)(new LIR_Const(l)); }
duke@435 715 static LIR_Opr floatConst(jfloat f) { return (LIR_Opr)(new LIR_Const(f)); }
duke@435 716 static LIR_Opr doubleConst(jdouble d) { return (LIR_Opr)(new LIR_Const(d)); }
duke@435 717 static LIR_Opr oopConst(jobject o) { return (LIR_Opr)(new LIR_Const(o)); }
duke@435 718 static LIR_Opr address(LIR_Address* a) { return (LIR_Opr)a; }
duke@435 719 static LIR_Opr intptrConst(void* p) { return (LIR_Opr)(new LIR_Const(p)); }
duke@435 720 static LIR_Opr intptrConst(intptr_t v) { return (LIR_Opr)(new LIR_Const((void*)v)); }
duke@435 721 static LIR_Opr illegal() { return (LIR_Opr)-1; }
roland@1732 722 static LIR_Opr addressConst(jint i) { return (LIR_Opr)(new LIR_Const(i, true)); }
duke@435 723
duke@435 724 static LIR_Opr value_type(ValueType* type);
duke@435 725 static LIR_Opr dummy_value_type(ValueType* type);
duke@435 726 };
duke@435 727
duke@435 728
duke@435 729 //-------------------------------------------------------------------------------
duke@435 730 // LIR Instructions
duke@435 731 //-------------------------------------------------------------------------------
duke@435 732 //
duke@435 733 // Note:
duke@435 734 // - every instruction has a result operand
duke@435 735 // - every instruction has an CodeEmitInfo operand (can be revisited later)
duke@435 736 // - every instruction has a LIR_OpCode operand
duke@435 737 // - LIR_OpN, means an instruction that has N input operands
duke@435 738 //
duke@435 739 // class hierarchy:
duke@435 740 //
duke@435 741 class LIR_Op;
duke@435 742 class LIR_Op0;
duke@435 743 class LIR_OpLabel;
duke@435 744 class LIR_Op1;
duke@435 745 class LIR_OpBranch;
duke@435 746 class LIR_OpConvert;
duke@435 747 class LIR_OpAllocObj;
duke@435 748 class LIR_OpRoundFP;
duke@435 749 class LIR_Op2;
duke@435 750 class LIR_OpDelay;
duke@435 751 class LIR_Op3;
duke@435 752 class LIR_OpAllocArray;
duke@435 753 class LIR_OpCall;
duke@435 754 class LIR_OpJavaCall;
duke@435 755 class LIR_OpRTCall;
duke@435 756 class LIR_OpArrayCopy;
duke@435 757 class LIR_OpLock;
duke@435 758 class LIR_OpTypeCheck;
duke@435 759 class LIR_OpCompareAndSwap;
duke@435 760 class LIR_OpProfileCall;
duke@435 761
duke@435 762
duke@435 763 // LIR operation codes
duke@435 764 enum LIR_Code {
duke@435 765 lir_none
duke@435 766 , begin_op0
duke@435 767 , lir_word_align
duke@435 768 , lir_label
duke@435 769 , lir_nop
duke@435 770 , lir_backwardbranch_target
duke@435 771 , lir_std_entry
duke@435 772 , lir_osr_entry
duke@435 773 , lir_build_frame
duke@435 774 , lir_fpop_raw
duke@435 775 , lir_24bit_FPU
duke@435 776 , lir_reset_FPU
duke@435 777 , lir_breakpoint
duke@435 778 , lir_rtcall
duke@435 779 , lir_membar
duke@435 780 , lir_membar_acquire
duke@435 781 , lir_membar_release
duke@435 782 , lir_get_thread
duke@435 783 , end_op0
duke@435 784 , begin_op1
duke@435 785 , lir_fxch
duke@435 786 , lir_fld
duke@435 787 , lir_ffree
duke@435 788 , lir_push
duke@435 789 , lir_pop
duke@435 790 , lir_null_check
duke@435 791 , lir_return
duke@435 792 , lir_leal
duke@435 793 , lir_neg
duke@435 794 , lir_branch
duke@435 795 , lir_cond_float_branch
duke@435 796 , lir_move
duke@435 797 , lir_prefetchr
duke@435 798 , lir_prefetchw
duke@435 799 , lir_convert
duke@435 800 , lir_alloc_object
duke@435 801 , lir_monaddr
duke@435 802 , lir_roundfp
duke@435 803 , lir_safepoint
duke@435 804 , end_op1
duke@435 805 , begin_op2
duke@435 806 , lir_cmp
duke@435 807 , lir_cmp_l2i
duke@435 808 , lir_ucmp_fd2i
duke@435 809 , lir_cmp_fd2i
duke@435 810 , lir_cmove
duke@435 811 , lir_add
duke@435 812 , lir_sub
duke@435 813 , lir_mul
duke@435 814 , lir_mul_strictfp
duke@435 815 , lir_div
duke@435 816 , lir_div_strictfp
duke@435 817 , lir_rem
duke@435 818 , lir_sqrt
duke@435 819 , lir_abs
duke@435 820 , lir_sin
duke@435 821 , lir_cos
duke@435 822 , lir_tan
duke@435 823 , lir_log
duke@435 824 , lir_log10
duke@435 825 , lir_logic_and
duke@435 826 , lir_logic_or
duke@435 827 , lir_logic_xor
duke@435 828 , lir_shl
duke@435 829 , lir_shr
duke@435 830 , lir_ushr
duke@435 831 , lir_alloc_array
duke@435 832 , lir_throw
duke@435 833 , lir_unwind
duke@435 834 , lir_compare_to
duke@435 835 , end_op2
duke@435 836 , begin_op3
duke@435 837 , lir_idiv
duke@435 838 , lir_irem
duke@435 839 , end_op3
duke@435 840 , begin_opJavaCall
duke@435 841 , lir_static_call
duke@435 842 , lir_optvirtual_call
duke@435 843 , lir_icvirtual_call
duke@435 844 , lir_virtual_call
twisti@1730 845 , lir_dynamic_call
duke@435 846 , end_opJavaCall
duke@435 847 , begin_opArrayCopy
duke@435 848 , lir_arraycopy
duke@435 849 , end_opArrayCopy
duke@435 850 , begin_opLock
duke@435 851 , lir_lock
duke@435 852 , lir_unlock
duke@435 853 , end_opLock
duke@435 854 , begin_delay_slot
duke@435 855 , lir_delay_slot
duke@435 856 , end_delay_slot
duke@435 857 , begin_opTypeCheck
duke@435 858 , lir_instanceof
duke@435 859 , lir_checkcast
duke@435 860 , lir_store_check
duke@435 861 , end_opTypeCheck
duke@435 862 , begin_opCompareAndSwap
duke@435 863 , lir_cas_long
duke@435 864 , lir_cas_obj
duke@435 865 , lir_cas_int
duke@435 866 , end_opCompareAndSwap
duke@435 867 , begin_opMDOProfile
duke@435 868 , lir_profile_call
duke@435 869 , end_opMDOProfile
duke@435 870 };
duke@435 871
duke@435 872
duke@435 873 enum LIR_Condition {
duke@435 874 lir_cond_equal
duke@435 875 , lir_cond_notEqual
duke@435 876 , lir_cond_less
duke@435 877 , lir_cond_lessEqual
duke@435 878 , lir_cond_greaterEqual
duke@435 879 , lir_cond_greater
duke@435 880 , lir_cond_belowEqual
duke@435 881 , lir_cond_aboveEqual
duke@435 882 , lir_cond_always
duke@435 883 , lir_cond_unknown = -1
duke@435 884 };
duke@435 885
duke@435 886
duke@435 887 enum LIR_PatchCode {
duke@435 888 lir_patch_none,
duke@435 889 lir_patch_low,
duke@435 890 lir_patch_high,
duke@435 891 lir_patch_normal
duke@435 892 };
duke@435 893
duke@435 894
duke@435 895 enum LIR_MoveKind {
duke@435 896 lir_move_normal,
duke@435 897 lir_move_volatile,
duke@435 898 lir_move_unaligned,
duke@435 899 lir_move_max_flag
duke@435 900 };
duke@435 901
duke@435 902
duke@435 903 // --------------------------------------------------
duke@435 904 // LIR_Op
duke@435 905 // --------------------------------------------------
duke@435 906 class LIR_Op: public CompilationResourceObj {
duke@435 907 friend class LIR_OpVisitState;
duke@435 908
duke@435 909 #ifdef ASSERT
duke@435 910 private:
duke@435 911 const char * _file;
duke@435 912 int _line;
duke@435 913 #endif
duke@435 914
duke@435 915 protected:
duke@435 916 LIR_Opr _result;
duke@435 917 unsigned short _code;
duke@435 918 unsigned short _flags;
duke@435 919 CodeEmitInfo* _info;
duke@435 920 int _id; // value id for register allocation
duke@435 921 int _fpu_pop_count;
duke@435 922 Instruction* _source; // for debugging
duke@435 923
duke@435 924 static void print_condition(outputStream* out, LIR_Condition cond) PRODUCT_RETURN;
duke@435 925
duke@435 926 protected:
duke@435 927 static bool is_in_range(LIR_Code test, LIR_Code start, LIR_Code end) { return start < test && test < end; }
duke@435 928
duke@435 929 public:
duke@435 930 LIR_Op()
duke@435 931 : _result(LIR_OprFact::illegalOpr)
duke@435 932 , _code(lir_none)
duke@435 933 , _flags(0)
duke@435 934 , _info(NULL)
duke@435 935 #ifdef ASSERT
duke@435 936 , _file(NULL)
duke@435 937 , _line(0)
duke@435 938 #endif
duke@435 939 , _fpu_pop_count(0)
duke@435 940 , _source(NULL)
duke@435 941 , _id(-1) {}
duke@435 942
duke@435 943 LIR_Op(LIR_Code code, LIR_Opr result, CodeEmitInfo* info)
duke@435 944 : _result(result)
duke@435 945 , _code(code)
duke@435 946 , _flags(0)
duke@435 947 , _info(info)
duke@435 948 #ifdef ASSERT
duke@435 949 , _file(NULL)
duke@435 950 , _line(0)
duke@435 951 #endif
duke@435 952 , _fpu_pop_count(0)
duke@435 953 , _source(NULL)
duke@435 954 , _id(-1) {}
duke@435 955
duke@435 956 CodeEmitInfo* info() const { return _info; }
duke@435 957 LIR_Code code() const { return (LIR_Code)_code; }
duke@435 958 LIR_Opr result_opr() const { return _result; }
duke@435 959 void set_result_opr(LIR_Opr opr) { _result = opr; }
duke@435 960
duke@435 961 #ifdef ASSERT
duke@435 962 void set_file_and_line(const char * file, int line) {
duke@435 963 _file = file;
duke@435 964 _line = line;
duke@435 965 }
duke@435 966 #endif
duke@435 967
duke@435 968 virtual const char * name() const PRODUCT_RETURN0;
duke@435 969
duke@435 970 int id() const { return _id; }
duke@435 971 void set_id(int id) { _id = id; }
duke@435 972
duke@435 973 // FPU stack simulation helpers -- only used on Intel
duke@435 974 void set_fpu_pop_count(int count) { assert(count >= 0 && count <= 1, "currently only 0 and 1 are valid"); _fpu_pop_count = count; }
duke@435 975 int fpu_pop_count() const { return _fpu_pop_count; }
duke@435 976 bool pop_fpu_stack() { return _fpu_pop_count > 0; }
duke@435 977
duke@435 978 Instruction* source() const { return _source; }
duke@435 979 void set_source(Instruction* ins) { _source = ins; }
duke@435 980
duke@435 981 virtual void emit_code(LIR_Assembler* masm) = 0;
duke@435 982 virtual void print_instr(outputStream* out) const = 0;
duke@435 983 virtual void print_on(outputStream* st) const PRODUCT_RETURN;
duke@435 984
duke@435 985 virtual LIR_OpCall* as_OpCall() { return NULL; }
duke@435 986 virtual LIR_OpJavaCall* as_OpJavaCall() { return NULL; }
duke@435 987 virtual LIR_OpLabel* as_OpLabel() { return NULL; }
duke@435 988 virtual LIR_OpDelay* as_OpDelay() { return NULL; }
duke@435 989 virtual LIR_OpLock* as_OpLock() { return NULL; }
duke@435 990 virtual LIR_OpAllocArray* as_OpAllocArray() { return NULL; }
duke@435 991 virtual LIR_OpAllocObj* as_OpAllocObj() { return NULL; }
duke@435 992 virtual LIR_OpRoundFP* as_OpRoundFP() { return NULL; }
duke@435 993 virtual LIR_OpBranch* as_OpBranch() { return NULL; }
duke@435 994 virtual LIR_OpRTCall* as_OpRTCall() { return NULL; }
duke@435 995 virtual LIR_OpConvert* as_OpConvert() { return NULL; }
duke@435 996 virtual LIR_Op0* as_Op0() { return NULL; }
duke@435 997 virtual LIR_Op1* as_Op1() { return NULL; }
duke@435 998 virtual LIR_Op2* as_Op2() { return NULL; }
duke@435 999 virtual LIR_Op3* as_Op3() { return NULL; }
duke@435 1000 virtual LIR_OpArrayCopy* as_OpArrayCopy() { return NULL; }
duke@435 1001 virtual LIR_OpTypeCheck* as_OpTypeCheck() { return NULL; }
duke@435 1002 virtual LIR_OpCompareAndSwap* as_OpCompareAndSwap() { return NULL; }
duke@435 1003 virtual LIR_OpProfileCall* as_OpProfileCall() { return NULL; }
duke@435 1004
duke@435 1005 virtual void verify() const {}
duke@435 1006 };
duke@435 1007
duke@435 1008 // for calls
duke@435 1009 class LIR_OpCall: public LIR_Op {
duke@435 1010 friend class LIR_OpVisitState;
duke@435 1011
duke@435 1012 protected:
duke@435 1013 address _addr;
duke@435 1014 LIR_OprList* _arguments;
duke@435 1015 protected:
duke@435 1016 LIR_OpCall(LIR_Code code, address addr, LIR_Opr result,
duke@435 1017 LIR_OprList* arguments, CodeEmitInfo* info = NULL)
duke@435 1018 : LIR_Op(code, result, info)
duke@435 1019 , _arguments(arguments)
duke@435 1020 , _addr(addr) {}
duke@435 1021
duke@435 1022 public:
duke@435 1023 address addr() const { return _addr; }
duke@435 1024 const LIR_OprList* arguments() const { return _arguments; }
duke@435 1025 virtual LIR_OpCall* as_OpCall() { return this; }
duke@435 1026 };
duke@435 1027
duke@435 1028
duke@435 1029 // --------------------------------------------------
duke@435 1030 // LIR_OpJavaCall
duke@435 1031 // --------------------------------------------------
duke@435 1032 class LIR_OpJavaCall: public LIR_OpCall {
duke@435 1033 friend class LIR_OpVisitState;
duke@435 1034
duke@435 1035 private:
duke@435 1036 ciMethod* _method;
duke@435 1037 LIR_Opr _receiver;
duke@435 1038
duke@435 1039 public:
duke@435 1040 LIR_OpJavaCall(LIR_Code code, ciMethod* method,
duke@435 1041 LIR_Opr receiver, LIR_Opr result,
duke@435 1042 address addr, LIR_OprList* arguments,
duke@435 1043 CodeEmitInfo* info)
duke@435 1044 : LIR_OpCall(code, addr, result, arguments, info)
duke@435 1045 , _receiver(receiver)
duke@435 1046 , _method(method) { assert(is_in_range(code, begin_opJavaCall, end_opJavaCall), "code check"); }
duke@435 1047
duke@435 1048 LIR_OpJavaCall(LIR_Code code, ciMethod* method,
duke@435 1049 LIR_Opr receiver, LIR_Opr result, intptr_t vtable_offset,
duke@435 1050 LIR_OprList* arguments, CodeEmitInfo* info)
duke@435 1051 : LIR_OpCall(code, (address)vtable_offset, result, arguments, info)
duke@435 1052 , _receiver(receiver)
duke@435 1053 , _method(method) { assert(is_in_range(code, begin_opJavaCall, end_opJavaCall), "code check"); }
duke@435 1054
duke@435 1055 LIR_Opr receiver() const { return _receiver; }
duke@435 1056 ciMethod* method() const { return _method; }
duke@435 1057
twisti@1730 1058 // JSR 292 support.
twisti@1730 1059 bool is_invokedynamic() const { return code() == lir_dynamic_call; }
twisti@1730 1060 bool is_method_handle_invoke() const {
twisti@1730 1061 return
twisti@1730 1062 is_invokedynamic() // An invokedynamic is always a MethodHandle call site.
twisti@1730 1063 ||
twisti@1730 1064 (method()->holder()->name() == ciSymbol::java_dyn_MethodHandle() &&
twisti@1730 1065 method()->name() == ciSymbol::invoke_name());
twisti@1730 1066 }
twisti@1730 1067
duke@435 1068 intptr_t vtable_offset() const {
duke@435 1069 assert(_code == lir_virtual_call, "only have vtable for real vcall");
duke@435 1070 return (intptr_t) addr();
duke@435 1071 }
duke@435 1072
duke@435 1073 virtual void emit_code(LIR_Assembler* masm);
duke@435 1074 virtual LIR_OpJavaCall* as_OpJavaCall() { return this; }
duke@435 1075 virtual void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1076 };
duke@435 1077
duke@435 1078 // --------------------------------------------------
duke@435 1079 // LIR_OpLabel
duke@435 1080 // --------------------------------------------------
duke@435 1081 // Location where a branch can continue
duke@435 1082 class LIR_OpLabel: public LIR_Op {
duke@435 1083 friend class LIR_OpVisitState;
duke@435 1084
duke@435 1085 private:
duke@435 1086 Label* _label;
duke@435 1087 public:
duke@435 1088 LIR_OpLabel(Label* lbl)
duke@435 1089 : LIR_Op(lir_label, LIR_OprFact::illegalOpr, NULL)
duke@435 1090 , _label(lbl) {}
duke@435 1091 Label* label() const { return _label; }
duke@435 1092
duke@435 1093 virtual void emit_code(LIR_Assembler* masm);
duke@435 1094 virtual LIR_OpLabel* as_OpLabel() { return this; }
duke@435 1095 virtual void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1096 };
duke@435 1097
duke@435 1098 // LIR_OpArrayCopy
duke@435 1099 class LIR_OpArrayCopy: public LIR_Op {
duke@435 1100 friend class LIR_OpVisitState;
duke@435 1101
duke@435 1102 private:
duke@435 1103 ArrayCopyStub* _stub;
duke@435 1104 LIR_Opr _src;
duke@435 1105 LIR_Opr _src_pos;
duke@435 1106 LIR_Opr _dst;
duke@435 1107 LIR_Opr _dst_pos;
duke@435 1108 LIR_Opr _length;
duke@435 1109 LIR_Opr _tmp;
duke@435 1110 ciArrayKlass* _expected_type;
duke@435 1111 int _flags;
duke@435 1112
duke@435 1113 public:
duke@435 1114 enum Flags {
duke@435 1115 src_null_check = 1 << 0,
duke@435 1116 dst_null_check = 1 << 1,
duke@435 1117 src_pos_positive_check = 1 << 2,
duke@435 1118 dst_pos_positive_check = 1 << 3,
duke@435 1119 length_positive_check = 1 << 4,
duke@435 1120 src_range_check = 1 << 5,
duke@435 1121 dst_range_check = 1 << 6,
duke@435 1122 type_check = 1 << 7,
duke@435 1123 all_flags = (1 << 8) - 1
duke@435 1124 };
duke@435 1125
duke@435 1126 LIR_OpArrayCopy(LIR_Opr src, LIR_Opr src_pos, LIR_Opr dst, LIR_Opr dst_pos, LIR_Opr length, LIR_Opr tmp,
duke@435 1127 ciArrayKlass* expected_type, int flags, CodeEmitInfo* info);
duke@435 1128
duke@435 1129 LIR_Opr src() const { return _src; }
duke@435 1130 LIR_Opr src_pos() const { return _src_pos; }
duke@435 1131 LIR_Opr dst() const { return _dst; }
duke@435 1132 LIR_Opr dst_pos() const { return _dst_pos; }
duke@435 1133 LIR_Opr length() const { return _length; }
duke@435 1134 LIR_Opr tmp() const { return _tmp; }
duke@435 1135 int flags() const { return _flags; }
duke@435 1136 ciArrayKlass* expected_type() const { return _expected_type; }
duke@435 1137 ArrayCopyStub* stub() const { return _stub; }
duke@435 1138
duke@435 1139 virtual void emit_code(LIR_Assembler* masm);
duke@435 1140 virtual LIR_OpArrayCopy* as_OpArrayCopy() { return this; }
duke@435 1141 void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1142 };
duke@435 1143
duke@435 1144
duke@435 1145 // --------------------------------------------------
duke@435 1146 // LIR_Op0
duke@435 1147 // --------------------------------------------------
duke@435 1148 class LIR_Op0: public LIR_Op {
duke@435 1149 friend class LIR_OpVisitState;
duke@435 1150
duke@435 1151 public:
duke@435 1152 LIR_Op0(LIR_Code code)
duke@435 1153 : LIR_Op(code, LIR_OprFact::illegalOpr, NULL) { assert(is_in_range(code, begin_op0, end_op0), "code check"); }
duke@435 1154 LIR_Op0(LIR_Code code, LIR_Opr result, CodeEmitInfo* info = NULL)
duke@435 1155 : LIR_Op(code, result, info) { assert(is_in_range(code, begin_op0, end_op0), "code check"); }
duke@435 1156
duke@435 1157 virtual void emit_code(LIR_Assembler* masm);
duke@435 1158 virtual LIR_Op0* as_Op0() { return this; }
duke@435 1159 virtual void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1160 };
duke@435 1161
duke@435 1162
duke@435 1163 // --------------------------------------------------
duke@435 1164 // LIR_Op1
duke@435 1165 // --------------------------------------------------
duke@435 1166
duke@435 1167 class LIR_Op1: public LIR_Op {
duke@435 1168 friend class LIR_OpVisitState;
duke@435 1169
duke@435 1170 protected:
duke@435 1171 LIR_Opr _opr; // input operand
duke@435 1172 BasicType _type; // Operand types
duke@435 1173 LIR_PatchCode _patch; // only required with patchin (NEEDS_CLEANUP: do we want a special instruction for patching?)
duke@435 1174
duke@435 1175 static void print_patch_code(outputStream* out, LIR_PatchCode code);
duke@435 1176
duke@435 1177 void set_kind(LIR_MoveKind kind) {
duke@435 1178 assert(code() == lir_move, "must be");
duke@435 1179 _flags = kind;
duke@435 1180 }
duke@435 1181
duke@435 1182 public:
duke@435 1183 LIR_Op1(LIR_Code code, LIR_Opr opr, LIR_Opr result = LIR_OprFact::illegalOpr, BasicType type = T_ILLEGAL, LIR_PatchCode patch = lir_patch_none, CodeEmitInfo* info = NULL)
duke@435 1184 : LIR_Op(code, result, info)
duke@435 1185 , _opr(opr)
duke@435 1186 , _patch(patch)
duke@435 1187 , _type(type) { assert(is_in_range(code, begin_op1, end_op1), "code check"); }
duke@435 1188
duke@435 1189 LIR_Op1(LIR_Code code, LIR_Opr opr, LIR_Opr result, BasicType type, LIR_PatchCode patch, CodeEmitInfo* info, LIR_MoveKind kind)
duke@435 1190 : LIR_Op(code, result, info)
duke@435 1191 , _opr(opr)
duke@435 1192 , _patch(patch)
duke@435 1193 , _type(type) {
duke@435 1194 assert(code == lir_move, "must be");
duke@435 1195 set_kind(kind);
duke@435 1196 }
duke@435 1197
duke@435 1198 LIR_Op1(LIR_Code code, LIR_Opr opr, CodeEmitInfo* info)
duke@435 1199 : LIR_Op(code, LIR_OprFact::illegalOpr, info)
duke@435 1200 , _opr(opr)
duke@435 1201 , _patch(lir_patch_none)
duke@435 1202 , _type(T_ILLEGAL) { assert(is_in_range(code, begin_op1, end_op1), "code check"); }
duke@435 1203
duke@435 1204 LIR_Opr in_opr() const { return _opr; }
duke@435 1205 LIR_PatchCode patch_code() const { return _patch; }
duke@435 1206 BasicType type() const { return _type; }
duke@435 1207
duke@435 1208 LIR_MoveKind move_kind() const {
duke@435 1209 assert(code() == lir_move, "must be");
duke@435 1210 return (LIR_MoveKind)_flags;
duke@435 1211 }
duke@435 1212
duke@435 1213 virtual void emit_code(LIR_Assembler* masm);
duke@435 1214 virtual LIR_Op1* as_Op1() { return this; }
duke@435 1215 virtual const char * name() const PRODUCT_RETURN0;
duke@435 1216
duke@435 1217 void set_in_opr(LIR_Opr opr) { _opr = opr; }
duke@435 1218
duke@435 1219 virtual void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1220 virtual void verify() const;
duke@435 1221 };
duke@435 1222
duke@435 1223
duke@435 1224 // for runtime calls
duke@435 1225 class LIR_OpRTCall: public LIR_OpCall {
duke@435 1226 friend class LIR_OpVisitState;
duke@435 1227
duke@435 1228 private:
duke@435 1229 LIR_Opr _tmp;
duke@435 1230 public:
duke@435 1231 LIR_OpRTCall(address addr, LIR_Opr tmp,
duke@435 1232 LIR_Opr result, LIR_OprList* arguments, CodeEmitInfo* info = NULL)
duke@435 1233 : LIR_OpCall(lir_rtcall, addr, result, arguments, info)
duke@435 1234 , _tmp(tmp) {}
duke@435 1235
duke@435 1236 virtual void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1237 virtual void emit_code(LIR_Assembler* masm);
duke@435 1238 virtual LIR_OpRTCall* as_OpRTCall() { return this; }
duke@435 1239
duke@435 1240 LIR_Opr tmp() const { return _tmp; }
duke@435 1241
duke@435 1242 virtual void verify() const;
duke@435 1243 };
duke@435 1244
duke@435 1245
duke@435 1246 class LIR_OpBranch: public LIR_Op {
duke@435 1247 friend class LIR_OpVisitState;
duke@435 1248
duke@435 1249 private:
duke@435 1250 LIR_Condition _cond;
duke@435 1251 BasicType _type;
duke@435 1252 Label* _label;
duke@435 1253 BlockBegin* _block; // if this is a branch to a block, this is the block
duke@435 1254 BlockBegin* _ublock; // if this is a float-branch, this is the unorderd block
duke@435 1255 CodeStub* _stub; // if this is a branch to a stub, this is the stub
duke@435 1256
duke@435 1257 public:
duke@435 1258 LIR_OpBranch(LIR_Condition cond, Label* lbl)
duke@435 1259 : LIR_Op(lir_branch, LIR_OprFact::illegalOpr, (CodeEmitInfo*) NULL)
duke@435 1260 , _cond(cond)
duke@435 1261 , _label(lbl)
duke@435 1262 , _block(NULL)
duke@435 1263 , _ublock(NULL)
duke@435 1264 , _stub(NULL) { }
duke@435 1265
duke@435 1266 LIR_OpBranch(LIR_Condition cond, BasicType type, BlockBegin* block);
duke@435 1267 LIR_OpBranch(LIR_Condition cond, BasicType type, CodeStub* stub);
duke@435 1268
duke@435 1269 // for unordered comparisons
duke@435 1270 LIR_OpBranch(LIR_Condition cond, BasicType type, BlockBegin* block, BlockBegin* ublock);
duke@435 1271
duke@435 1272 LIR_Condition cond() const { return _cond; }
duke@435 1273 BasicType type() const { return _type; }
duke@435 1274 Label* label() const { return _label; }
duke@435 1275 BlockBegin* block() const { return _block; }
duke@435 1276 BlockBegin* ublock() const { return _ublock; }
duke@435 1277 CodeStub* stub() const { return _stub; }
duke@435 1278
duke@435 1279 void change_block(BlockBegin* b);
duke@435 1280 void change_ublock(BlockBegin* b);
duke@435 1281 void negate_cond();
duke@435 1282
duke@435 1283 virtual void emit_code(LIR_Assembler* masm);
duke@435 1284 virtual LIR_OpBranch* as_OpBranch() { return this; }
duke@435 1285 virtual void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1286 };
duke@435 1287
duke@435 1288
duke@435 1289 class ConversionStub;
duke@435 1290
duke@435 1291 class LIR_OpConvert: public LIR_Op1 {
duke@435 1292 friend class LIR_OpVisitState;
duke@435 1293
duke@435 1294 private:
duke@435 1295 Bytecodes::Code _bytecode;
duke@435 1296 ConversionStub* _stub;
duke@435 1297
duke@435 1298 public:
duke@435 1299 LIR_OpConvert(Bytecodes::Code code, LIR_Opr opr, LIR_Opr result, ConversionStub* stub)
duke@435 1300 : LIR_Op1(lir_convert, opr, result)
duke@435 1301 , _stub(stub)
duke@435 1302 , _bytecode(code) {}
duke@435 1303
duke@435 1304 Bytecodes::Code bytecode() const { return _bytecode; }
duke@435 1305 ConversionStub* stub() const { return _stub; }
duke@435 1306
duke@435 1307 virtual void emit_code(LIR_Assembler* masm);
duke@435 1308 virtual LIR_OpConvert* as_OpConvert() { return this; }
duke@435 1309 virtual void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1310
duke@435 1311 static void print_bytecode(outputStream* out, Bytecodes::Code code) PRODUCT_RETURN;
duke@435 1312 };
duke@435 1313
duke@435 1314
duke@435 1315 // LIR_OpAllocObj
duke@435 1316 class LIR_OpAllocObj : public LIR_Op1 {
duke@435 1317 friend class LIR_OpVisitState;
duke@435 1318
duke@435 1319 private:
duke@435 1320 LIR_Opr _tmp1;
duke@435 1321 LIR_Opr _tmp2;
duke@435 1322 LIR_Opr _tmp3;
duke@435 1323 LIR_Opr _tmp4;
duke@435 1324 int _hdr_size;
duke@435 1325 int _obj_size;
duke@435 1326 CodeStub* _stub;
duke@435 1327 bool _init_check;
duke@435 1328
duke@435 1329 public:
duke@435 1330 LIR_OpAllocObj(LIR_Opr klass, LIR_Opr result,
duke@435 1331 LIR_Opr t1, LIR_Opr t2, LIR_Opr t3, LIR_Opr t4,
duke@435 1332 int hdr_size, int obj_size, bool init_check, CodeStub* stub)
duke@435 1333 : LIR_Op1(lir_alloc_object, klass, result)
duke@435 1334 , _tmp1(t1)
duke@435 1335 , _tmp2(t2)
duke@435 1336 , _tmp3(t3)
duke@435 1337 , _tmp4(t4)
duke@435 1338 , _hdr_size(hdr_size)
duke@435 1339 , _obj_size(obj_size)
duke@435 1340 , _init_check(init_check)
duke@435 1341 , _stub(stub) { }
duke@435 1342
duke@435 1343 LIR_Opr klass() const { return in_opr(); }
duke@435 1344 LIR_Opr obj() const { return result_opr(); }
duke@435 1345 LIR_Opr tmp1() const { return _tmp1; }
duke@435 1346 LIR_Opr tmp2() const { return _tmp2; }
duke@435 1347 LIR_Opr tmp3() const { return _tmp3; }
duke@435 1348 LIR_Opr tmp4() const { return _tmp4; }
duke@435 1349 int header_size() const { return _hdr_size; }
duke@435 1350 int object_size() const { return _obj_size; }
duke@435 1351 bool init_check() const { return _init_check; }
duke@435 1352 CodeStub* stub() const { return _stub; }
duke@435 1353
duke@435 1354 virtual void emit_code(LIR_Assembler* masm);
duke@435 1355 virtual LIR_OpAllocObj * as_OpAllocObj () { return this; }
duke@435 1356 virtual void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1357 };
duke@435 1358
duke@435 1359
duke@435 1360 // LIR_OpRoundFP
duke@435 1361 class LIR_OpRoundFP : public LIR_Op1 {
duke@435 1362 friend class LIR_OpVisitState;
duke@435 1363
duke@435 1364 private:
duke@435 1365 LIR_Opr _tmp;
duke@435 1366
duke@435 1367 public:
duke@435 1368 LIR_OpRoundFP(LIR_Opr reg, LIR_Opr stack_loc_temp, LIR_Opr result)
duke@435 1369 : LIR_Op1(lir_roundfp, reg, result)
duke@435 1370 , _tmp(stack_loc_temp) {}
duke@435 1371
duke@435 1372 LIR_Opr tmp() const { return _tmp; }
duke@435 1373 virtual LIR_OpRoundFP* as_OpRoundFP() { return this; }
duke@435 1374 void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1375 };
duke@435 1376
duke@435 1377 // LIR_OpTypeCheck
duke@435 1378 class LIR_OpTypeCheck: public LIR_Op {
duke@435 1379 friend class LIR_OpVisitState;
duke@435 1380
duke@435 1381 private:
duke@435 1382 LIR_Opr _object;
duke@435 1383 LIR_Opr _array;
duke@435 1384 ciKlass* _klass;
duke@435 1385 LIR_Opr _tmp1;
duke@435 1386 LIR_Opr _tmp2;
duke@435 1387 LIR_Opr _tmp3;
duke@435 1388 bool _fast_check;
duke@435 1389 CodeEmitInfo* _info_for_patch;
duke@435 1390 CodeEmitInfo* _info_for_exception;
duke@435 1391 CodeStub* _stub;
duke@435 1392 // Helpers for Tier1UpdateMethodData
duke@435 1393 ciMethod* _profiled_method;
duke@435 1394 int _profiled_bci;
duke@435 1395
duke@435 1396 public:
duke@435 1397 LIR_OpTypeCheck(LIR_Code code, LIR_Opr result, LIR_Opr object, ciKlass* klass,
duke@435 1398 LIR_Opr tmp1, LIR_Opr tmp2, LIR_Opr tmp3, bool fast_check,
duke@435 1399 CodeEmitInfo* info_for_exception, CodeEmitInfo* info_for_patch, CodeStub* stub,
duke@435 1400 ciMethod* profiled_method, int profiled_bci);
duke@435 1401 LIR_OpTypeCheck(LIR_Code code, LIR_Opr object, LIR_Opr array,
duke@435 1402 LIR_Opr tmp1, LIR_Opr tmp2, LIR_Opr tmp3, CodeEmitInfo* info_for_exception,
duke@435 1403 ciMethod* profiled_method, int profiled_bci);
duke@435 1404
duke@435 1405 LIR_Opr object() const { return _object; }
duke@435 1406 LIR_Opr array() const { assert(code() == lir_store_check, "not valid"); return _array; }
duke@435 1407 LIR_Opr tmp1() const { return _tmp1; }
duke@435 1408 LIR_Opr tmp2() const { return _tmp2; }
duke@435 1409 LIR_Opr tmp3() const { return _tmp3; }
duke@435 1410 ciKlass* klass() const { assert(code() == lir_instanceof || code() == lir_checkcast, "not valid"); return _klass; }
duke@435 1411 bool fast_check() const { assert(code() == lir_instanceof || code() == lir_checkcast, "not valid"); return _fast_check; }
duke@435 1412 CodeEmitInfo* info_for_patch() const { return _info_for_patch; }
duke@435 1413 CodeEmitInfo* info_for_exception() const { return _info_for_exception; }
duke@435 1414 CodeStub* stub() const { return _stub; }
duke@435 1415
duke@435 1416 // methodDataOop profiling
duke@435 1417 ciMethod* profiled_method() { return _profiled_method; }
duke@435 1418 int profiled_bci() { return _profiled_bci; }
duke@435 1419
duke@435 1420 virtual void emit_code(LIR_Assembler* masm);
duke@435 1421 virtual LIR_OpTypeCheck* as_OpTypeCheck() { return this; }
duke@435 1422 void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1423 };
duke@435 1424
duke@435 1425 // LIR_Op2
duke@435 1426 class LIR_Op2: public LIR_Op {
duke@435 1427 friend class LIR_OpVisitState;
duke@435 1428
duke@435 1429 int _fpu_stack_size; // for sin/cos implementation on Intel
duke@435 1430
duke@435 1431 protected:
duke@435 1432 LIR_Opr _opr1;
duke@435 1433 LIR_Opr _opr2;
duke@435 1434 BasicType _type;
duke@435 1435 LIR_Opr _tmp;
duke@435 1436 LIR_Condition _condition;
duke@435 1437
duke@435 1438 void verify() const;
duke@435 1439
duke@435 1440 public:
duke@435 1441 LIR_Op2(LIR_Code code, LIR_Condition condition, LIR_Opr opr1, LIR_Opr opr2, CodeEmitInfo* info = NULL)
duke@435 1442 : LIR_Op(code, LIR_OprFact::illegalOpr, info)
duke@435 1443 , _opr1(opr1)
duke@435 1444 , _opr2(opr2)
duke@435 1445 , _type(T_ILLEGAL)
duke@435 1446 , _condition(condition)
duke@435 1447 , _fpu_stack_size(0)
duke@435 1448 , _tmp(LIR_OprFact::illegalOpr) {
duke@435 1449 assert(code == lir_cmp, "code check");
duke@435 1450 }
duke@435 1451
duke@435 1452 LIR_Op2(LIR_Code code, LIR_Condition condition, LIR_Opr opr1, LIR_Opr opr2, LIR_Opr result)
duke@435 1453 : LIR_Op(code, result, NULL)
duke@435 1454 , _opr1(opr1)
duke@435 1455 , _opr2(opr2)
duke@435 1456 , _type(T_ILLEGAL)
duke@435 1457 , _condition(condition)
duke@435 1458 , _fpu_stack_size(0)
duke@435 1459 , _tmp(LIR_OprFact::illegalOpr) {
duke@435 1460 assert(code == lir_cmove, "code check");
duke@435 1461 }
duke@435 1462
duke@435 1463 LIR_Op2(LIR_Code code, LIR_Opr opr1, LIR_Opr opr2, LIR_Opr result = LIR_OprFact::illegalOpr,
duke@435 1464 CodeEmitInfo* info = NULL, BasicType type = T_ILLEGAL)
duke@435 1465 : LIR_Op(code, result, info)
duke@435 1466 , _opr1(opr1)
duke@435 1467 , _opr2(opr2)
duke@435 1468 , _type(type)
duke@435 1469 , _condition(lir_cond_unknown)
duke@435 1470 , _fpu_stack_size(0)
duke@435 1471 , _tmp(LIR_OprFact::illegalOpr) {
duke@435 1472 assert(code != lir_cmp && is_in_range(code, begin_op2, end_op2), "code check");
duke@435 1473 }
duke@435 1474
duke@435 1475 LIR_Op2(LIR_Code code, LIR_Opr opr1, LIR_Opr opr2, LIR_Opr result, LIR_Opr tmp)
duke@435 1476 : LIR_Op(code, result, NULL)
duke@435 1477 , _opr1(opr1)
duke@435 1478 , _opr2(opr2)
duke@435 1479 , _type(T_ILLEGAL)
duke@435 1480 , _condition(lir_cond_unknown)
duke@435 1481 , _fpu_stack_size(0)
duke@435 1482 , _tmp(tmp) {
duke@435 1483 assert(code != lir_cmp && is_in_range(code, begin_op2, end_op2), "code check");
duke@435 1484 }
duke@435 1485
duke@435 1486 LIR_Opr in_opr1() const { return _opr1; }
duke@435 1487 LIR_Opr in_opr2() const { return _opr2; }
duke@435 1488 BasicType type() const { return _type; }
duke@435 1489 LIR_Opr tmp_opr() const { return _tmp; }
duke@435 1490 LIR_Condition condition() const {
duke@435 1491 assert(code() == lir_cmp || code() == lir_cmove, "only valid for cmp and cmove"); return _condition;
duke@435 1492 }
duke@435 1493
duke@435 1494 void set_fpu_stack_size(int size) { _fpu_stack_size = size; }
duke@435 1495 int fpu_stack_size() const { return _fpu_stack_size; }
duke@435 1496
duke@435 1497 void set_in_opr1(LIR_Opr opr) { _opr1 = opr; }
duke@435 1498 void set_in_opr2(LIR_Opr opr) { _opr2 = opr; }
duke@435 1499
duke@435 1500 virtual void emit_code(LIR_Assembler* masm);
duke@435 1501 virtual LIR_Op2* as_Op2() { return this; }
duke@435 1502 virtual void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1503 };
duke@435 1504
duke@435 1505 class LIR_OpAllocArray : public LIR_Op {
duke@435 1506 friend class LIR_OpVisitState;
duke@435 1507
duke@435 1508 private:
duke@435 1509 LIR_Opr _klass;
duke@435 1510 LIR_Opr _len;
duke@435 1511 LIR_Opr _tmp1;
duke@435 1512 LIR_Opr _tmp2;
duke@435 1513 LIR_Opr _tmp3;
duke@435 1514 LIR_Opr _tmp4;
duke@435 1515 BasicType _type;
duke@435 1516 CodeStub* _stub;
duke@435 1517
duke@435 1518 public:
duke@435 1519 LIR_OpAllocArray(LIR_Opr klass, LIR_Opr len, LIR_Opr result, LIR_Opr t1, LIR_Opr t2, LIR_Opr t3, LIR_Opr t4, BasicType type, CodeStub* stub)
duke@435 1520 : LIR_Op(lir_alloc_array, result, NULL)
duke@435 1521 , _klass(klass)
duke@435 1522 , _len(len)
duke@435 1523 , _tmp1(t1)
duke@435 1524 , _tmp2(t2)
duke@435 1525 , _tmp3(t3)
duke@435 1526 , _tmp4(t4)
duke@435 1527 , _type(type)
duke@435 1528 , _stub(stub) {}
duke@435 1529
duke@435 1530 LIR_Opr klass() const { return _klass; }
duke@435 1531 LIR_Opr len() const { return _len; }
duke@435 1532 LIR_Opr obj() const { return result_opr(); }
duke@435 1533 LIR_Opr tmp1() const { return _tmp1; }
duke@435 1534 LIR_Opr tmp2() const { return _tmp2; }
duke@435 1535 LIR_Opr tmp3() const { return _tmp3; }
duke@435 1536 LIR_Opr tmp4() const { return _tmp4; }
duke@435 1537 BasicType type() const { return _type; }
duke@435 1538 CodeStub* stub() const { return _stub; }
duke@435 1539
duke@435 1540 virtual void emit_code(LIR_Assembler* masm);
duke@435 1541 virtual LIR_OpAllocArray * as_OpAllocArray () { return this; }
duke@435 1542 virtual void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1543 };
duke@435 1544
duke@435 1545
duke@435 1546 class LIR_Op3: public LIR_Op {
duke@435 1547 friend class LIR_OpVisitState;
duke@435 1548
duke@435 1549 private:
duke@435 1550 LIR_Opr _opr1;
duke@435 1551 LIR_Opr _opr2;
duke@435 1552 LIR_Opr _opr3;
duke@435 1553 public:
duke@435 1554 LIR_Op3(LIR_Code code, LIR_Opr opr1, LIR_Opr opr2, LIR_Opr opr3, LIR_Opr result, CodeEmitInfo* info = NULL)
duke@435 1555 : LIR_Op(code, result, info)
duke@435 1556 , _opr1(opr1)
duke@435 1557 , _opr2(opr2)
duke@435 1558 , _opr3(opr3) { assert(is_in_range(code, begin_op3, end_op3), "code check"); }
duke@435 1559 LIR_Opr in_opr1() const { return _opr1; }
duke@435 1560 LIR_Opr in_opr2() const { return _opr2; }
duke@435 1561 LIR_Opr in_opr3() const { return _opr3; }
duke@435 1562
duke@435 1563 virtual void emit_code(LIR_Assembler* masm);
duke@435 1564 virtual LIR_Op3* as_Op3() { return this; }
duke@435 1565 virtual void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1566 };
duke@435 1567
duke@435 1568
duke@435 1569 //--------------------------------
duke@435 1570 class LabelObj: public CompilationResourceObj {
duke@435 1571 private:
duke@435 1572 Label _label;
duke@435 1573 public:
duke@435 1574 LabelObj() {}
duke@435 1575 Label* label() { return &_label; }
duke@435 1576 };
duke@435 1577
duke@435 1578
duke@435 1579 class LIR_OpLock: public LIR_Op {
duke@435 1580 friend class LIR_OpVisitState;
duke@435 1581
duke@435 1582 private:
duke@435 1583 LIR_Opr _hdr;
duke@435 1584 LIR_Opr _obj;
duke@435 1585 LIR_Opr _lock;
duke@435 1586 LIR_Opr _scratch;
duke@435 1587 CodeStub* _stub;
duke@435 1588 public:
duke@435 1589 LIR_OpLock(LIR_Code code, LIR_Opr hdr, LIR_Opr obj, LIR_Opr lock, LIR_Opr scratch, CodeStub* stub, CodeEmitInfo* info)
duke@435 1590 : LIR_Op(code, LIR_OprFact::illegalOpr, info)
duke@435 1591 , _hdr(hdr)
duke@435 1592 , _obj(obj)
duke@435 1593 , _lock(lock)
duke@435 1594 , _scratch(scratch)
duke@435 1595 , _stub(stub) {}
duke@435 1596
duke@435 1597 LIR_Opr hdr_opr() const { return _hdr; }
duke@435 1598 LIR_Opr obj_opr() const { return _obj; }
duke@435 1599 LIR_Opr lock_opr() const { return _lock; }
duke@435 1600 LIR_Opr scratch_opr() const { return _scratch; }
duke@435 1601 CodeStub* stub() const { return _stub; }
duke@435 1602
duke@435 1603 virtual void emit_code(LIR_Assembler* masm);
duke@435 1604 virtual LIR_OpLock* as_OpLock() { return this; }
duke@435 1605 void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1606 };
duke@435 1607
duke@435 1608
duke@435 1609 class LIR_OpDelay: public LIR_Op {
duke@435 1610 friend class LIR_OpVisitState;
duke@435 1611
duke@435 1612 private:
duke@435 1613 LIR_Op* _op;
duke@435 1614
duke@435 1615 public:
duke@435 1616 LIR_OpDelay(LIR_Op* op, CodeEmitInfo* info):
duke@435 1617 LIR_Op(lir_delay_slot, LIR_OprFact::illegalOpr, info),
duke@435 1618 _op(op) {
duke@435 1619 assert(op->code() == lir_nop || LIRFillDelaySlots, "should be filling with nops");
duke@435 1620 }
duke@435 1621 virtual void emit_code(LIR_Assembler* masm);
duke@435 1622 virtual LIR_OpDelay* as_OpDelay() { return this; }
duke@435 1623 void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1624 LIR_Op* delay_op() const { return _op; }
duke@435 1625 CodeEmitInfo* call_info() const { return info(); }
duke@435 1626 };
duke@435 1627
duke@435 1628
duke@435 1629 // LIR_OpCompareAndSwap
duke@435 1630 class LIR_OpCompareAndSwap : public LIR_Op {
duke@435 1631 friend class LIR_OpVisitState;
duke@435 1632
duke@435 1633 private:
duke@435 1634 LIR_Opr _addr;
duke@435 1635 LIR_Opr _cmp_value;
duke@435 1636 LIR_Opr _new_value;
duke@435 1637 LIR_Opr _tmp1;
duke@435 1638 LIR_Opr _tmp2;
duke@435 1639
duke@435 1640 public:
duke@435 1641 LIR_OpCompareAndSwap(LIR_Code code, LIR_Opr addr, LIR_Opr cmp_value, LIR_Opr new_value, LIR_Opr t1, LIR_Opr t2)
duke@435 1642 : LIR_Op(code, LIR_OprFact::illegalOpr, NULL) // no result, no info
duke@435 1643 , _addr(addr)
duke@435 1644 , _cmp_value(cmp_value)
duke@435 1645 , _new_value(new_value)
duke@435 1646 , _tmp1(t1)
duke@435 1647 , _tmp2(t2) { }
duke@435 1648
duke@435 1649 LIR_Opr addr() const { return _addr; }
duke@435 1650 LIR_Opr cmp_value() const { return _cmp_value; }
duke@435 1651 LIR_Opr new_value() const { return _new_value; }
duke@435 1652 LIR_Opr tmp1() const { return _tmp1; }
duke@435 1653 LIR_Opr tmp2() const { return _tmp2; }
duke@435 1654
duke@435 1655 virtual void emit_code(LIR_Assembler* masm);
duke@435 1656 virtual LIR_OpCompareAndSwap * as_OpCompareAndSwap () { return this; }
duke@435 1657 virtual void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1658 };
duke@435 1659
duke@435 1660 // LIR_OpProfileCall
duke@435 1661 class LIR_OpProfileCall : public LIR_Op {
duke@435 1662 friend class LIR_OpVisitState;
duke@435 1663
duke@435 1664 private:
duke@435 1665 ciMethod* _profiled_method;
duke@435 1666 int _profiled_bci;
duke@435 1667 LIR_Opr _mdo;
duke@435 1668 LIR_Opr _recv;
duke@435 1669 LIR_Opr _tmp1;
duke@435 1670 ciKlass* _known_holder;
duke@435 1671
duke@435 1672 public:
duke@435 1673 // Destroys recv
duke@435 1674 LIR_OpProfileCall(LIR_Code code, ciMethod* profiled_method, int profiled_bci, LIR_Opr mdo, LIR_Opr recv, LIR_Opr t1, ciKlass* known_holder)
duke@435 1675 : LIR_Op(code, LIR_OprFact::illegalOpr, NULL) // no result, no info
duke@435 1676 , _profiled_method(profiled_method)
duke@435 1677 , _profiled_bci(profiled_bci)
duke@435 1678 , _mdo(mdo)
duke@435 1679 , _recv(recv)
duke@435 1680 , _tmp1(t1)
duke@435 1681 , _known_holder(known_holder) { }
duke@435 1682
duke@435 1683 ciMethod* profiled_method() const { return _profiled_method; }
duke@435 1684 int profiled_bci() const { return _profiled_bci; }
duke@435 1685 LIR_Opr mdo() const { return _mdo; }
duke@435 1686 LIR_Opr recv() const { return _recv; }
duke@435 1687 LIR_Opr tmp1() const { return _tmp1; }
duke@435 1688 ciKlass* known_holder() const { return _known_holder; }
duke@435 1689
duke@435 1690 virtual void emit_code(LIR_Assembler* masm);
duke@435 1691 virtual LIR_OpProfileCall* as_OpProfileCall() { return this; }
duke@435 1692 virtual void print_instr(outputStream* out) const PRODUCT_RETURN;
duke@435 1693 };
duke@435 1694
duke@435 1695
duke@435 1696 class LIR_InsertionBuffer;
duke@435 1697
duke@435 1698 //--------------------------------LIR_List---------------------------------------------------
duke@435 1699 // Maintains a list of LIR instructions (one instance of LIR_List per basic block)
duke@435 1700 // The LIR instructions are appended by the LIR_List class itself;
duke@435 1701 //
duke@435 1702 // Notes:
duke@435 1703 // - all offsets are(should be) in bytes
duke@435 1704 // - local positions are specified with an offset, with offset 0 being local 0
duke@435 1705
duke@435 1706 class LIR_List: public CompilationResourceObj {
duke@435 1707 private:
duke@435 1708 LIR_OpList _operations;
duke@435 1709
duke@435 1710 Compilation* _compilation;
duke@435 1711 #ifndef PRODUCT
duke@435 1712 BlockBegin* _block;
duke@435 1713 #endif
duke@435 1714 #ifdef ASSERT
duke@435 1715 const char * _file;
duke@435 1716 int _line;
duke@435 1717 #endif
duke@435 1718
duke@435 1719 void append(LIR_Op* op) {
duke@435 1720 if (op->source() == NULL)
duke@435 1721 op->set_source(_compilation->current_instruction());
duke@435 1722 #ifndef PRODUCT
duke@435 1723 if (PrintIRWithLIR) {
duke@435 1724 _compilation->maybe_print_current_instruction();
duke@435 1725 op->print(); tty->cr();
duke@435 1726 }
duke@435 1727 #endif // PRODUCT
duke@435 1728
duke@435 1729 _operations.append(op);
duke@435 1730
duke@435 1731 #ifdef ASSERT
duke@435 1732 op->verify();
duke@435 1733 op->set_file_and_line(_file, _line);
duke@435 1734 _file = NULL;
duke@435 1735 _line = 0;
duke@435 1736 #endif
duke@435 1737 }
duke@435 1738
duke@435 1739 public:
duke@435 1740 LIR_List(Compilation* compilation, BlockBegin* block = NULL);
duke@435 1741
duke@435 1742 #ifdef ASSERT
duke@435 1743 void set_file_and_line(const char * file, int line);
duke@435 1744 #endif
duke@435 1745
duke@435 1746 //---------- accessors ---------------
duke@435 1747 LIR_OpList* instructions_list() { return &_operations; }
duke@435 1748 int length() const { return _operations.length(); }
duke@435 1749 LIR_Op* at(int i) const { return _operations.at(i); }
duke@435 1750
duke@435 1751 NOT_PRODUCT(BlockBegin* block() const { return _block; });
duke@435 1752
duke@435 1753 // insert LIR_Ops in buffer to right places in LIR_List
duke@435 1754 void append(LIR_InsertionBuffer* buffer);
duke@435 1755
duke@435 1756 //---------- mutators ---------------
duke@435 1757 void insert_before(int i, LIR_List* op_list) { _operations.insert_before(i, op_list->instructions_list()); }
duke@435 1758 void insert_before(int i, LIR_Op* op) { _operations.insert_before(i, op); }
duke@435 1759
duke@435 1760 //---------- printing -------------
duke@435 1761 void print_instructions() PRODUCT_RETURN;
duke@435 1762
duke@435 1763
duke@435 1764 //---------- instructions -------------
duke@435 1765 void call_opt_virtual(ciMethod* method, LIR_Opr receiver, LIR_Opr result,
duke@435 1766 address dest, LIR_OprList* arguments,
duke@435 1767 CodeEmitInfo* info) {
duke@435 1768 append(new LIR_OpJavaCall(lir_optvirtual_call, method, receiver, result, dest, arguments, info));
duke@435 1769 }
duke@435 1770 void call_static(ciMethod* method, LIR_Opr result,
duke@435 1771 address dest, LIR_OprList* arguments, CodeEmitInfo* info) {
duke@435 1772 append(new LIR_OpJavaCall(lir_static_call, method, LIR_OprFact::illegalOpr, result, dest, arguments, info));
duke@435 1773 }
duke@435 1774 void call_icvirtual(ciMethod* method, LIR_Opr receiver, LIR_Opr result,
duke@435 1775 address dest, LIR_OprList* arguments, CodeEmitInfo* info) {
duke@435 1776 append(new LIR_OpJavaCall(lir_icvirtual_call, method, receiver, result, dest, arguments, info));
duke@435 1777 }
duke@435 1778 void call_virtual(ciMethod* method, LIR_Opr receiver, LIR_Opr result,
duke@435 1779 intptr_t vtable_offset, LIR_OprList* arguments, CodeEmitInfo* info) {
duke@435 1780 append(new LIR_OpJavaCall(lir_virtual_call, method, receiver, result, vtable_offset, arguments, info));
duke@435 1781 }
twisti@1730 1782 void call_dynamic(ciMethod* method, LIR_Opr receiver, LIR_Opr result,
twisti@1730 1783 address dest, LIR_OprList* arguments, CodeEmitInfo* info) {
twisti@1730 1784 append(new LIR_OpJavaCall(lir_dynamic_call, method, receiver, result, dest, arguments, info));
twisti@1730 1785 }
duke@435 1786
duke@435 1787 void get_thread(LIR_Opr result) { append(new LIR_Op0(lir_get_thread, result)); }
duke@435 1788 void word_align() { append(new LIR_Op0(lir_word_align)); }
duke@435 1789 void membar() { append(new LIR_Op0(lir_membar)); }
duke@435 1790 void membar_acquire() { append(new LIR_Op0(lir_membar_acquire)); }
duke@435 1791 void membar_release() { append(new LIR_Op0(lir_membar_release)); }
duke@435 1792
duke@435 1793 void nop() { append(new LIR_Op0(lir_nop)); }
duke@435 1794 void build_frame() { append(new LIR_Op0(lir_build_frame)); }
duke@435 1795
duke@435 1796 void std_entry(LIR_Opr receiver) { append(new LIR_Op0(lir_std_entry, receiver)); }
duke@435 1797 void osr_entry(LIR_Opr osrPointer) { append(new LIR_Op0(lir_osr_entry, osrPointer)); }
duke@435 1798
duke@435 1799 void branch_destination(Label* lbl) { append(new LIR_OpLabel(lbl)); }
duke@435 1800
duke@435 1801 void negate(LIR_Opr from, LIR_Opr to) { append(new LIR_Op1(lir_neg, from, to)); }
duke@435 1802 void leal(LIR_Opr from, LIR_Opr result_reg) { append(new LIR_Op1(lir_leal, from, result_reg)); }
duke@435 1803
duke@435 1804 // result is a stack location for old backend and vreg for UseLinearScan
duke@435 1805 // stack_loc_temp is an illegal register for old backend
duke@435 1806 void roundfp(LIR_Opr reg, LIR_Opr stack_loc_temp, LIR_Opr result) { append(new LIR_OpRoundFP(reg, stack_loc_temp, result)); }
duke@435 1807 void unaligned_move(LIR_Address* src, LIR_Opr dst) { append(new LIR_Op1(lir_move, LIR_OprFact::address(src), dst, dst->type(), lir_patch_none, NULL, lir_move_unaligned)); }
duke@435 1808 void unaligned_move(LIR_Opr src, LIR_Address* dst) { append(new LIR_Op1(lir_move, src, LIR_OprFact::address(dst), src->type(), lir_patch_none, NULL, lir_move_unaligned)); }
duke@435 1809 void unaligned_move(LIR_Opr src, LIR_Opr dst) { append(new LIR_Op1(lir_move, src, dst, dst->type(), lir_patch_none, NULL, lir_move_unaligned)); }
duke@435 1810 void move(LIR_Opr src, LIR_Opr dst, CodeEmitInfo* info = NULL) { append(new LIR_Op1(lir_move, src, dst, dst->type(), lir_patch_none, info)); }
duke@435 1811 void move(LIR_Address* src, LIR_Opr dst, CodeEmitInfo* info = NULL) { append(new LIR_Op1(lir_move, LIR_OprFact::address(src), dst, src->type(), lir_patch_none, info)); }
duke@435 1812 void move(LIR_Opr src, LIR_Address* dst, CodeEmitInfo* info = NULL) { append(new LIR_Op1(lir_move, src, LIR_OprFact::address(dst), dst->type(), lir_patch_none, info)); }
duke@435 1813
duke@435 1814 void volatile_move(LIR_Opr src, LIR_Opr dst, BasicType type, CodeEmitInfo* info = NULL, LIR_PatchCode patch_code = lir_patch_none) { append(new LIR_Op1(lir_move, src, dst, type, patch_code, info, lir_move_volatile)); }
duke@435 1815
duke@435 1816 void oop2reg (jobject o, LIR_Opr reg) { append(new LIR_Op1(lir_move, LIR_OprFact::oopConst(o), reg)); }
duke@435 1817 void oop2reg_patch(jobject o, LIR_Opr reg, CodeEmitInfo* info);
duke@435 1818
duke@435 1819 void return_op(LIR_Opr result) { append(new LIR_Op1(lir_return, result)); }
duke@435 1820
duke@435 1821 void safepoint(LIR_Opr tmp, CodeEmitInfo* info) { append(new LIR_Op1(lir_safepoint, tmp, info)); }
duke@435 1822
duke@435 1823 void convert(Bytecodes::Code code, LIR_Opr left, LIR_Opr dst, ConversionStub* stub = NULL/*, bool is_32bit = false*/) { append(new LIR_OpConvert(code, left, dst, stub)); }
duke@435 1824
duke@435 1825 void logical_and (LIR_Opr left, LIR_Opr right, LIR_Opr dst) { append(new LIR_Op2(lir_logic_and, left, right, dst)); }
duke@435 1826 void logical_or (LIR_Opr left, LIR_Opr right, LIR_Opr dst) { append(new LIR_Op2(lir_logic_or, left, right, dst)); }
duke@435 1827 void logical_xor (LIR_Opr left, LIR_Opr right, LIR_Opr dst) { append(new LIR_Op2(lir_logic_xor, left, right, dst)); }
duke@435 1828
duke@435 1829 void null_check(LIR_Opr opr, CodeEmitInfo* info) { append(new LIR_Op1(lir_null_check, opr, info)); }
duke@435 1830 void throw_exception(LIR_Opr exceptionPC, LIR_Opr exceptionOop, CodeEmitInfo* info) { append(new LIR_Op2(lir_throw, exceptionPC, exceptionOop, LIR_OprFact::illegalOpr, info)); }
duke@435 1831 void unwind_exception(LIR_Opr exceptionPC, LIR_Opr exceptionOop, CodeEmitInfo* info) { append(new LIR_Op2(lir_unwind, exceptionPC, exceptionOop, LIR_OprFact::illegalOpr, info)); }
duke@435 1832
duke@435 1833 void compare_to (LIR_Opr left, LIR_Opr right, LIR_Opr dst) {
duke@435 1834 append(new LIR_Op2(lir_compare_to, left, right, dst));
duke@435 1835 }
duke@435 1836
duke@435 1837 void push(LIR_Opr opr) { append(new LIR_Op1(lir_push, opr)); }
duke@435 1838 void pop(LIR_Opr reg) { append(new LIR_Op1(lir_pop, reg)); }
duke@435 1839
duke@435 1840 void cmp(LIR_Condition condition, LIR_Opr left, LIR_Opr right, CodeEmitInfo* info = NULL) {
duke@435 1841 append(new LIR_Op2(lir_cmp, condition, left, right, info));
duke@435 1842 }
duke@435 1843 void cmp(LIR_Condition condition, LIR_Opr left, int right, CodeEmitInfo* info = NULL) {
duke@435 1844 cmp(condition, left, LIR_OprFact::intConst(right), info);
duke@435 1845 }
duke@435 1846
duke@435 1847 void cmp_mem_int(LIR_Condition condition, LIR_Opr base, int disp, int c, CodeEmitInfo* info);
duke@435 1848 void cmp_reg_mem(LIR_Condition condition, LIR_Opr reg, LIR_Address* addr, CodeEmitInfo* info);
duke@435 1849
duke@435 1850 void cmove(LIR_Condition condition, LIR_Opr src1, LIR_Opr src2, LIR_Opr dst) {
duke@435 1851 append(new LIR_Op2(lir_cmove, condition, src1, src2, dst));
duke@435 1852 }
duke@435 1853
duke@435 1854 void cas_long(LIR_Opr addr, LIR_Opr cmp_value, LIR_Opr new_value, LIR_Opr t1, LIR_Opr t2);
duke@435 1855 void cas_obj(LIR_Opr addr, LIR_Opr cmp_value, LIR_Opr new_value, LIR_Opr t1, LIR_Opr t2);
duke@435 1856 void cas_int(LIR_Opr addr, LIR_Opr cmp_value, LIR_Opr new_value, LIR_Opr t1, LIR_Opr t2);
duke@435 1857
duke@435 1858 void abs (LIR_Opr from, LIR_Opr to, LIR_Opr tmp) { append(new LIR_Op2(lir_abs , from, tmp, to)); }
duke@435 1859 void sqrt(LIR_Opr from, LIR_Opr to, LIR_Opr tmp) { append(new LIR_Op2(lir_sqrt, from, tmp, to)); }
never@1388 1860 void log (LIR_Opr from, LIR_Opr to, LIR_Opr tmp) { append(new LIR_Op2(lir_log, from, LIR_OprFact::illegalOpr, to, tmp)); }
never@1388 1861 void log10 (LIR_Opr from, LIR_Opr to, LIR_Opr tmp) { append(new LIR_Op2(lir_log10, from, LIR_OprFact::illegalOpr, to, tmp)); }
duke@435 1862 void sin (LIR_Opr from, LIR_Opr to, LIR_Opr tmp1, LIR_Opr tmp2) { append(new LIR_Op2(lir_sin , from, tmp1, to, tmp2)); }
duke@435 1863 void cos (LIR_Opr from, LIR_Opr to, LIR_Opr tmp1, LIR_Opr tmp2) { append(new LIR_Op2(lir_cos , from, tmp1, to, tmp2)); }
duke@435 1864 void tan (LIR_Opr from, LIR_Opr to, LIR_Opr tmp1, LIR_Opr tmp2) { append(new LIR_Op2(lir_tan , from, tmp1, to, tmp2)); }
duke@435 1865
duke@435 1866 void add (LIR_Opr left, LIR_Opr right, LIR_Opr res) { append(new LIR_Op2(lir_add, left, right, res)); }
duke@435 1867 void sub (LIR_Opr left, LIR_Opr right, LIR_Opr res, CodeEmitInfo* info = NULL) { append(new LIR_Op2(lir_sub, left, right, res, info)); }
duke@435 1868 void mul (LIR_Opr left, LIR_Opr right, LIR_Opr res) { append(new LIR_Op2(lir_mul, left, right, res)); }
duke@435 1869 void mul_strictfp (LIR_Opr left, LIR_Opr right, LIR_Opr res, LIR_Opr tmp) { append(new LIR_Op2(lir_mul_strictfp, left, right, res, tmp)); }
duke@435 1870 void div (LIR_Opr left, LIR_Opr right, LIR_Opr res, CodeEmitInfo* info = NULL) { append(new LIR_Op2(lir_div, left, right, res, info)); }
duke@435 1871 void div_strictfp (LIR_Opr left, LIR_Opr right, LIR_Opr res, LIR_Opr tmp) { append(new LIR_Op2(lir_div_strictfp, left, right, res, tmp)); }
duke@435 1872 void rem (LIR_Opr left, LIR_Opr right, LIR_Opr res, CodeEmitInfo* info = NULL) { append(new LIR_Op2(lir_rem, left, right, res, info)); }
duke@435 1873
duke@435 1874 void volatile_load_mem_reg(LIR_Address* address, LIR_Opr dst, CodeEmitInfo* info, LIR_PatchCode patch_code = lir_patch_none);
duke@435 1875 void volatile_load_unsafe_reg(LIR_Opr base, LIR_Opr offset, LIR_Opr dst, BasicType type, CodeEmitInfo* info, LIR_PatchCode patch_code);
duke@435 1876
duke@435 1877 void load(LIR_Address* addr, LIR_Opr src, CodeEmitInfo* info = NULL, LIR_PatchCode patch_code = lir_patch_none);
duke@435 1878
duke@435 1879 void prefetch(LIR_Address* addr, bool is_store);
duke@435 1880
duke@435 1881 void store_mem_int(jint v, LIR_Opr base, int offset_in_bytes, BasicType type, CodeEmitInfo* info, LIR_PatchCode patch_code = lir_patch_none);
duke@435 1882 void store_mem_oop(jobject o, LIR_Opr base, int offset_in_bytes, BasicType type, CodeEmitInfo* info, LIR_PatchCode patch_code = lir_patch_none);
duke@435 1883 void store(LIR_Opr src, LIR_Address* addr, CodeEmitInfo* info = NULL, LIR_PatchCode patch_code = lir_patch_none);
duke@435 1884 void volatile_store_mem_reg(LIR_Opr src, LIR_Address* address, CodeEmitInfo* info, LIR_PatchCode patch_code = lir_patch_none);
duke@435 1885 void volatile_store_unsafe_reg(LIR_Opr src, LIR_Opr base, LIR_Opr offset, BasicType type, CodeEmitInfo* info, LIR_PatchCode patch_code);
duke@435 1886
duke@435 1887 void idiv(LIR_Opr left, LIR_Opr right, LIR_Opr res, LIR_Opr tmp, CodeEmitInfo* info);
duke@435 1888 void idiv(LIR_Opr left, int right, LIR_Opr res, LIR_Opr tmp, CodeEmitInfo* info);
duke@435 1889 void irem(LIR_Opr left, LIR_Opr right, LIR_Opr res, LIR_Opr tmp, CodeEmitInfo* info);
duke@435 1890 void irem(LIR_Opr left, int right, LIR_Opr res, LIR_Opr tmp, CodeEmitInfo* info);
duke@435 1891
duke@435 1892 void allocate_object(LIR_Opr dst, LIR_Opr t1, LIR_Opr t2, LIR_Opr t3, LIR_Opr t4, int header_size, int object_size, LIR_Opr klass, bool init_check, CodeStub* stub);
duke@435 1893 void allocate_array(LIR_Opr dst, LIR_Opr len, LIR_Opr t1,LIR_Opr t2, LIR_Opr t3,LIR_Opr t4, BasicType type, LIR_Opr klass, CodeStub* stub);
duke@435 1894
duke@435 1895 // jump is an unconditional branch
duke@435 1896 void jump(BlockBegin* block) {
duke@435 1897 append(new LIR_OpBranch(lir_cond_always, T_ILLEGAL, block));
duke@435 1898 }
duke@435 1899 void jump(CodeStub* stub) {
duke@435 1900 append(new LIR_OpBranch(lir_cond_always, T_ILLEGAL, stub));
duke@435 1901 }
duke@435 1902 void branch(LIR_Condition cond, Label* lbl) { append(new LIR_OpBranch(cond, lbl)); }
duke@435 1903 void branch(LIR_Condition cond, BasicType type, BlockBegin* block) {
duke@435 1904 assert(type != T_FLOAT && type != T_DOUBLE, "no fp comparisons");
duke@435 1905 append(new LIR_OpBranch(cond, type, block));
duke@435 1906 }
duke@435 1907 void branch(LIR_Condition cond, BasicType type, CodeStub* stub) {
duke@435 1908 assert(type != T_FLOAT && type != T_DOUBLE, "no fp comparisons");
duke@435 1909 append(new LIR_OpBranch(cond, type, stub));
duke@435 1910 }
duke@435 1911 void branch(LIR_Condition cond, BasicType type, BlockBegin* block, BlockBegin* unordered) {
duke@435 1912 assert(type == T_FLOAT || type == T_DOUBLE, "fp comparisons only");
duke@435 1913 append(new LIR_OpBranch(cond, type, block, unordered));
duke@435 1914 }
duke@435 1915
duke@435 1916 void shift_left(LIR_Opr value, LIR_Opr count, LIR_Opr dst, LIR_Opr tmp);
duke@435 1917 void shift_right(LIR_Opr value, LIR_Opr count, LIR_Opr dst, LIR_Opr tmp);
duke@435 1918 void unsigned_shift_right(LIR_Opr value, LIR_Opr count, LIR_Opr dst, LIR_Opr tmp);
duke@435 1919
duke@435 1920 void shift_left(LIR_Opr value, int count, LIR_Opr dst) { shift_left(value, LIR_OprFact::intConst(count), dst, LIR_OprFact::illegalOpr); }
duke@435 1921 void shift_right(LIR_Opr value, int count, LIR_Opr dst) { shift_right(value, LIR_OprFact::intConst(count), dst, LIR_OprFact::illegalOpr); }
duke@435 1922 void unsigned_shift_right(LIR_Opr value, int count, LIR_Opr dst) { unsigned_shift_right(value, LIR_OprFact::intConst(count), dst, LIR_OprFact::illegalOpr); }
duke@435 1923
duke@435 1924 void lcmp2int(LIR_Opr left, LIR_Opr right, LIR_Opr dst) { append(new LIR_Op2(lir_cmp_l2i, left, right, dst)); }
duke@435 1925 void fcmp2int(LIR_Opr left, LIR_Opr right, LIR_Opr dst, bool is_unordered_less);
duke@435 1926
duke@435 1927 void call_runtime_leaf(address routine, LIR_Opr tmp, LIR_Opr result, LIR_OprList* arguments) {
duke@435 1928 append(new LIR_OpRTCall(routine, tmp, result, arguments));
duke@435 1929 }
duke@435 1930
duke@435 1931 void call_runtime(address routine, LIR_Opr tmp, LIR_Opr result,
duke@435 1932 LIR_OprList* arguments, CodeEmitInfo* info) {
duke@435 1933 append(new LIR_OpRTCall(routine, tmp, result, arguments, info));
duke@435 1934 }
duke@435 1935
duke@435 1936 void load_stack_address_monitor(int monitor_ix, LIR_Opr dst) { append(new LIR_Op1(lir_monaddr, LIR_OprFact::intConst(monitor_ix), dst)); }
duke@435 1937 void unlock_object(LIR_Opr hdr, LIR_Opr obj, LIR_Opr lock, CodeStub* stub);
duke@435 1938 void lock_object(LIR_Opr hdr, LIR_Opr obj, LIR_Opr lock, LIR_Opr scratch, CodeStub* stub, CodeEmitInfo* info);
duke@435 1939
duke@435 1940 void set_24bit_fpu() { append(new LIR_Op0(lir_24bit_FPU )); }
duke@435 1941 void restore_fpu() { append(new LIR_Op0(lir_reset_FPU )); }
duke@435 1942 void breakpoint() { append(new LIR_Op0(lir_breakpoint)); }
duke@435 1943
duke@435 1944 void arraycopy(LIR_Opr src, LIR_Opr src_pos, LIR_Opr dst, LIR_Opr dst_pos, LIR_Opr length, LIR_Opr tmp, ciArrayKlass* expected_type, int flags, CodeEmitInfo* info) { append(new LIR_OpArrayCopy(src, src_pos, dst, dst_pos, length, tmp, expected_type, flags, info)); }
duke@435 1945
duke@435 1946 void fpop_raw() { append(new LIR_Op0(lir_fpop_raw)); }
duke@435 1947
duke@435 1948 void checkcast (LIR_Opr result, LIR_Opr object, ciKlass* klass,
duke@435 1949 LIR_Opr tmp1, LIR_Opr tmp2, LIR_Opr tmp3, bool fast_check,
duke@435 1950 CodeEmitInfo* info_for_exception, CodeEmitInfo* info_for_patch, CodeStub* stub,
duke@435 1951 ciMethod* profiled_method, int profiled_bci);
duke@435 1952 void instanceof(LIR_Opr result, LIR_Opr object, ciKlass* klass, LIR_Opr tmp1, LIR_Opr tmp2, LIR_Opr tmp3, bool fast_check, CodeEmitInfo* info_for_patch);
duke@435 1953 void store_check(LIR_Opr object, LIR_Opr array, LIR_Opr tmp1, LIR_Opr tmp2, LIR_Opr tmp3, CodeEmitInfo* info_for_exception);
duke@435 1954
duke@435 1955 // methodDataOop profiling
duke@435 1956 void profile_call(ciMethod* method, int bci, LIR_Opr mdo, LIR_Opr recv, LIR_Opr t1, ciKlass* cha_klass) { append(new LIR_OpProfileCall(lir_profile_call, method, bci, mdo, recv, t1, cha_klass)); }
duke@435 1957 };
duke@435 1958
duke@435 1959 void print_LIR(BlockList* blocks);
duke@435 1960
duke@435 1961 class LIR_InsertionBuffer : public CompilationResourceObj {
duke@435 1962 private:
duke@435 1963 LIR_List* _lir; // the lir list where ops of this buffer should be inserted later (NULL when uninitialized)
duke@435 1964
duke@435 1965 // list of insertion points. index and count are stored alternately:
duke@435 1966 // _index_and_count[i * 2]: the index into lir list where "count" ops should be inserted
duke@435 1967 // _index_and_count[i * 2 + 1]: the number of ops to be inserted at index
duke@435 1968 intStack _index_and_count;
duke@435 1969
duke@435 1970 // the LIR_Ops to be inserted
duke@435 1971 LIR_OpList _ops;
duke@435 1972
duke@435 1973 void append_new(int index, int count) { _index_and_count.append(index); _index_and_count.append(count); }
duke@435 1974 void set_index_at(int i, int value) { _index_and_count.at_put((i << 1), value); }
duke@435 1975 void set_count_at(int i, int value) { _index_and_count.at_put((i << 1) + 1, value); }
duke@435 1976
duke@435 1977 #ifdef ASSERT
duke@435 1978 void verify();
duke@435 1979 #endif
duke@435 1980 public:
duke@435 1981 LIR_InsertionBuffer() : _lir(NULL), _index_and_count(8), _ops(8) { }
duke@435 1982
duke@435 1983 // must be called before using the insertion buffer
duke@435 1984 void init(LIR_List* lir) { assert(!initialized(), "already initialized"); _lir = lir; _index_and_count.clear(); _ops.clear(); }
duke@435 1985 bool initialized() const { return _lir != NULL; }
duke@435 1986 // called automatically when the buffer is appended to the LIR_List
duke@435 1987 void finish() { _lir = NULL; }
duke@435 1988
duke@435 1989 // accessors
duke@435 1990 LIR_List* lir_list() const { return _lir; }
duke@435 1991 int number_of_insertion_points() const { return _index_and_count.length() >> 1; }
duke@435 1992 int index_at(int i) const { return _index_and_count.at((i << 1)); }
duke@435 1993 int count_at(int i) const { return _index_and_count.at((i << 1) + 1); }
duke@435 1994
duke@435 1995 int number_of_ops() const { return _ops.length(); }
duke@435 1996 LIR_Op* op_at(int i) const { return _ops.at(i); }
duke@435 1997
duke@435 1998 // append an instruction to the buffer
duke@435 1999 void append(int index, LIR_Op* op);
duke@435 2000
duke@435 2001 // instruction
duke@435 2002 void move(int index, LIR_Opr src, LIR_Opr dst, CodeEmitInfo* info = NULL) { append(index, new LIR_Op1(lir_move, src, dst, dst->type(), lir_patch_none, info)); }
duke@435 2003 };
duke@435 2004
duke@435 2005
duke@435 2006 //
duke@435 2007 // LIR_OpVisitState is used for manipulating LIR_Ops in an abstract way.
duke@435 2008 // Calling a LIR_Op's visit function with a LIR_OpVisitState causes
duke@435 2009 // information about the input, output and temporaries used by the
duke@435 2010 // op to be recorded. It also records whether the op has call semantics
duke@435 2011 // and also records all the CodeEmitInfos used by this op.
duke@435 2012 //
duke@435 2013
duke@435 2014
duke@435 2015 class LIR_OpVisitState: public StackObj {
duke@435 2016 public:
duke@435 2017 typedef enum { inputMode, firstMode = inputMode, tempMode, outputMode, numModes, invalidMode = -1 } OprMode;
duke@435 2018
duke@435 2019 enum {
never@1610 2020 maxNumberOfOperands = 16,
duke@435 2021 maxNumberOfInfos = 4
duke@435 2022 };
duke@435 2023
duke@435 2024 private:
duke@435 2025 LIR_Op* _op;
duke@435 2026
duke@435 2027 // optimization: the operands and infos are not stored in a variable-length
duke@435 2028 // list, but in a fixed-size array to save time of size checks and resizing
duke@435 2029 int _oprs_len[numModes];
duke@435 2030 LIR_Opr* _oprs_new[numModes][maxNumberOfOperands];
duke@435 2031 int _info_len;
duke@435 2032 CodeEmitInfo* _info_new[maxNumberOfInfos];
duke@435 2033
duke@435 2034 bool _has_call;
duke@435 2035 bool _has_slow_case;
duke@435 2036
duke@435 2037
duke@435 2038 // only include register operands
duke@435 2039 // addresses are decomposed to the base and index registers
duke@435 2040 // constants and stack operands are ignored
duke@435 2041 void append(LIR_Opr& opr, OprMode mode) {
duke@435 2042 assert(opr->is_valid(), "should not call this otherwise");
duke@435 2043 assert(mode >= 0 && mode < numModes, "bad mode");
duke@435 2044
duke@435 2045 if (opr->is_register()) {
duke@435 2046 assert(_oprs_len[mode] < maxNumberOfOperands, "array overflow");
duke@435 2047 _oprs_new[mode][_oprs_len[mode]++] = &opr;
duke@435 2048
duke@435 2049 } else if (opr->is_pointer()) {
duke@435 2050 LIR_Address* address = opr->as_address_ptr();
duke@435 2051 if (address != NULL) {
duke@435 2052 // special handling for addresses: add base and index register of the address
duke@435 2053 // both are always input operands!
duke@435 2054 if (address->_base->is_valid()) {
duke@435 2055 assert(address->_base->is_register(), "must be");
duke@435 2056 assert(_oprs_len[inputMode] < maxNumberOfOperands, "array overflow");
duke@435 2057 _oprs_new[inputMode][_oprs_len[inputMode]++] = &address->_base;
duke@435 2058 }
duke@435 2059 if (address->_index->is_valid()) {
duke@435 2060 assert(address->_index->is_register(), "must be");
duke@435 2061 assert(_oprs_len[inputMode] < maxNumberOfOperands, "array overflow");
duke@435 2062 _oprs_new[inputMode][_oprs_len[inputMode]++] = &address->_index;
duke@435 2063 }
duke@435 2064
duke@435 2065 } else {
duke@435 2066 assert(opr->is_constant(), "constant operands are not processed");
duke@435 2067 }
duke@435 2068 } else {
duke@435 2069 assert(opr->is_stack(), "stack operands are not processed");
duke@435 2070 }
duke@435 2071 }
duke@435 2072
duke@435 2073 void append(CodeEmitInfo* info) {
duke@435 2074 assert(info != NULL, "should not call this otherwise");
duke@435 2075 assert(_info_len < maxNumberOfInfos, "array overflow");
duke@435 2076 _info_new[_info_len++] = info;
duke@435 2077 }
duke@435 2078
duke@435 2079 public:
duke@435 2080 LIR_OpVisitState() { reset(); }
duke@435 2081
duke@435 2082 LIR_Op* op() const { return _op; }
duke@435 2083 void set_op(LIR_Op* op) { reset(); _op = op; }
duke@435 2084
duke@435 2085 bool has_call() const { return _has_call; }
duke@435 2086 bool has_slow_case() const { return _has_slow_case; }
duke@435 2087
duke@435 2088 void reset() {
duke@435 2089 _op = NULL;
duke@435 2090 _has_call = false;
duke@435 2091 _has_slow_case = false;
duke@435 2092
duke@435 2093 _oprs_len[inputMode] = 0;
duke@435 2094 _oprs_len[tempMode] = 0;
duke@435 2095 _oprs_len[outputMode] = 0;
duke@435 2096 _info_len = 0;
duke@435 2097 }
duke@435 2098
duke@435 2099
duke@435 2100 int opr_count(OprMode mode) const {
duke@435 2101 assert(mode >= 0 && mode < numModes, "bad mode");
duke@435 2102 return _oprs_len[mode];
duke@435 2103 }
duke@435 2104
duke@435 2105 LIR_Opr opr_at(OprMode mode, int index) const {
duke@435 2106 assert(mode >= 0 && mode < numModes, "bad mode");
duke@435 2107 assert(index >= 0 && index < _oprs_len[mode], "index out of bound");
duke@435 2108 return *_oprs_new[mode][index];
duke@435 2109 }
duke@435 2110
duke@435 2111 void set_opr_at(OprMode mode, int index, LIR_Opr opr) const {
duke@435 2112 assert(mode >= 0 && mode < numModes, "bad mode");
duke@435 2113 assert(index >= 0 && index < _oprs_len[mode], "index out of bound");
duke@435 2114 *_oprs_new[mode][index] = opr;
duke@435 2115 }
duke@435 2116
duke@435 2117 int info_count() const {
duke@435 2118 return _info_len;
duke@435 2119 }
duke@435 2120
duke@435 2121 CodeEmitInfo* info_at(int index) const {
duke@435 2122 assert(index < _info_len, "index out of bounds");
duke@435 2123 return _info_new[index];
duke@435 2124 }
duke@435 2125
duke@435 2126 XHandlers* all_xhandler();
duke@435 2127
duke@435 2128 // collects all register operands of the instruction
duke@435 2129 void visit(LIR_Op* op);
duke@435 2130
duke@435 2131 #if ASSERT
duke@435 2132 // check that an operation has no operands
duke@435 2133 bool no_operands(LIR_Op* op);
duke@435 2134 #endif
duke@435 2135
duke@435 2136 // LIR_Op visitor functions use these to fill in the state
duke@435 2137 void do_input(LIR_Opr& opr) { append(opr, LIR_OpVisitState::inputMode); }
duke@435 2138 void do_output(LIR_Opr& opr) { append(opr, LIR_OpVisitState::outputMode); }
duke@435 2139 void do_temp(LIR_Opr& opr) { append(opr, LIR_OpVisitState::tempMode); }
duke@435 2140 void do_info(CodeEmitInfo* info) { append(info); }
duke@435 2141
duke@435 2142 void do_stub(CodeStub* stub);
duke@435 2143 void do_call() { _has_call = true; }
duke@435 2144 void do_slow_case() { _has_slow_case = true; }
duke@435 2145 void do_slow_case(CodeEmitInfo* info) {
duke@435 2146 _has_slow_case = true;
duke@435 2147 append(info);
duke@435 2148 }
duke@435 2149 };
duke@435 2150
duke@435 2151
duke@435 2152 inline LIR_Opr LIR_OprDesc::illegalOpr() { return LIR_OprFact::illegalOpr; };

mercurial