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| 1 // Copyright 2011 the V8 project authors. All rights reserved. | 1 // Copyright 2011 the V8 project authors. All rights reserved. |
| 2 // Redistribution and use in source and binary forms, with or without | 2 // Redistribution and use in source and binary forms, with or without |
| 3 // modification, are permitted provided that the following conditions are | 3 // modification, are permitted provided that the following conditions are |
| 4 // met: | 4 // met: |
| 5 // | 5 // |
| 6 // * Redistributions of source code must retain the above copyright | 6 // * Redistributions of source code must retain the above copyright |
| 7 // notice, this list of conditions and the following disclaimer. | 7 // notice, this list of conditions and the following disclaimer. |
| 8 // * Redistributions in binary form must reproduce the above | 8 // * Redistributions in binary form must reproduce the above |
| 9 // copyright notice, this list of conditions and the following | 9 // copyright notice, this list of conditions and the following |
| 10 // disclaimer in the documentation and/or other materials provided | 10 // disclaimer in the documentation and/or other materials provided |
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| 355 void AllocateTwoByteConsString(Register result, | 355 void AllocateTwoByteConsString(Register result, |
| 356 Register length, | 356 Register length, |
| 357 Register scratch1, | 357 Register scratch1, |
| 358 Register scratch2, | 358 Register scratch2, |
| 359 Label* gc_required); | 359 Label* gc_required); |
| 360 void AllocateAsciiConsString(Register result, | 360 void AllocateAsciiConsString(Register result, |
| 361 Register length, | 361 Register length, |
| 362 Register scratch1, | 362 Register scratch1, |
| 363 Register scratch2, | 363 Register scratch2, |
| 364 Label* gc_required); | 364 Label* gc_required); |
| 365 void AllocateTwoByteSlicedString(Register result, |
| 366 Register length, |
| 367 Register scratch1, |
| 368 Register scratch2, |
| 369 Label* gc_required); |
| 370 void AllocateAsciiSlicedString(Register result, |
| 371 Register length, |
| 372 Register scratch1, |
| 373 Register scratch2, |
| 374 Label* gc_required); |
| 365 | 375 |
| 366 // Allocates a heap number or jumps to the gc_required label if the young | 376 // Allocates a heap number or jumps to the gc_required label if the young |
| 367 // space is full and a scavenge is needed. All registers are clobbered also | 377 // space is full and a scavenge is needed. All registers are clobbered also |
| 368 // when control continues at the gc_required label. | 378 // when control continues at the gc_required label. |
| 369 void AllocateHeapNumber(Register result, | 379 void AllocateHeapNumber(Register result, |
| 370 Register scratch1, | 380 Register scratch1, |
| 371 Register scratch2, | 381 Register scratch2, |
| 372 Register heap_number_map, | 382 Register heap_number_map, |
| 373 Label* gc_required); | 383 Label* gc_required); |
| 374 void AllocateHeapNumberWithValue(Register result, | 384 void AllocateHeapNumberWithValue(Register result, |
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| 435 inline void li(Register dst, Handle<Object> value, bool gen2instr = false) { | 445 inline void li(Register dst, Handle<Object> value, bool gen2instr = false) { |
| 436 li(dst, Operand(value), gen2instr); | 446 li(dst, Operand(value), gen2instr); |
| 437 } | 447 } |
| 438 | 448 |
| 439 // Push multiple registers on the stack. | 449 // Push multiple registers on the stack. |
| 440 // Registers are saved in numerical order, with higher numbered registers | 450 // Registers are saved in numerical order, with higher numbered registers |
| 441 // saved in higher memory addresses. | 451 // saved in higher memory addresses. |
| 442 void MultiPush(RegList regs); | 452 void MultiPush(RegList regs); |
| 443 void MultiPushReversed(RegList regs); | 453 void MultiPushReversed(RegList regs); |
| 444 | 454 |
| 455 void MultiPushFPU(RegList regs); |
| 456 void MultiPushReversedFPU(RegList regs); |
| 457 |
| 445 // Lower case push() for compatibility with arch-independent code. | 458 // Lower case push() for compatibility with arch-independent code. |
| 446 void push(Register src) { | 459 void push(Register src) { |
| 447 Addu(sp, sp, Operand(-kPointerSize)); | 460 Addu(sp, sp, Operand(-kPointerSize)); |
| 448 sw(src, MemOperand(sp, 0)); | 461 sw(src, MemOperand(sp, 0)); |
| 449 } | 462 } |
| 450 | 463 |
| 451 // Push a handle. | 464 // Push a handle. |
| 452 void Push(Handle<Object> handle); | 465 void Push(Handle<Object> handle); |
| 453 | 466 |
| 454 // Push two registers. Pushes leftmost register first (to highest address). | 467 // Push two registers. Pushes leftmost register first (to highest address). |
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| 480 Branch(3, cond, tst1, Operand(tst2)); | 493 Branch(3, cond, tst1, Operand(tst2)); |
| 481 Subu(sp, sp, Operand(kPointerSize)); | 494 Subu(sp, sp, Operand(kPointerSize)); |
| 482 sw(src, MemOperand(sp, 0)); | 495 sw(src, MemOperand(sp, 0)); |
| 483 } | 496 } |
| 484 | 497 |
| 485 // Pops multiple values from the stack and load them in the | 498 // Pops multiple values from the stack and load them in the |
| 486 // registers specified in regs. Pop order is the opposite as in MultiPush. | 499 // registers specified in regs. Pop order is the opposite as in MultiPush. |
| 487 void MultiPop(RegList regs); | 500 void MultiPop(RegList regs); |
| 488 void MultiPopReversed(RegList regs); | 501 void MultiPopReversed(RegList regs); |
| 489 | 502 |
| 503 void MultiPopFPU(RegList regs); |
| 504 void MultiPopReversedFPU(RegList regs); |
| 505 |
| 490 // Lower case pop() for compatibility with arch-independent code. | 506 // Lower case pop() for compatibility with arch-independent code. |
| 491 void pop(Register dst) { | 507 void pop(Register dst) { |
| 492 lw(dst, MemOperand(sp, 0)); | 508 lw(dst, MemOperand(sp, 0)); |
| 493 Addu(sp, sp, Operand(kPointerSize)); | 509 Addu(sp, sp, Operand(kPointerSize)); |
| 494 } | 510 } |
| 495 | 511 |
| 496 // Pop two registers. Pops rightmost register first (from lower address). | 512 // Pop two registers. Pops rightmost register first (from lower address). |
| 497 void Pop(Register src1, Register src2) { | 513 void Pop(Register src1, Register src2) { |
| 498 ASSERT(!src1.is(src2)); | 514 ASSERT(!src1.is(src2)); |
| 499 lw(src2, MemOperand(sp, 0 * kPointerSize)); | 515 lw(src2, MemOperand(sp, 0 * kPointerSize)); |
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| 1190 | 1206 |
| 1191 // Generate a MemOperand for loading a field from an object. | 1207 // Generate a MemOperand for loading a field from an object. |
| 1192 static inline MemOperand FieldMemOperand(Register object, int offset) { | 1208 static inline MemOperand FieldMemOperand(Register object, int offset) { |
| 1193 return MemOperand(object, offset - kHeapObjectTag); | 1209 return MemOperand(object, offset - kHeapObjectTag); |
| 1194 } | 1210 } |
| 1195 | 1211 |
| 1196 | 1212 |
| 1197 // Generate a MemOperand for storing arguments 5..N on the stack | 1213 // Generate a MemOperand for storing arguments 5..N on the stack |
| 1198 // when calling CallCFunction(). | 1214 // when calling CallCFunction(). |
| 1199 static inline MemOperand CFunctionArgumentOperand(int index) { | 1215 static inline MemOperand CFunctionArgumentOperand(int index) { |
| 1200 ASSERT(index > StandardFrameConstants::kCArgSlotCount); | 1216 ASSERT(index > kCArgSlotCount); |
| 1201 // Argument 5 takes the slot just past the four Arg-slots. | 1217 // Argument 5 takes the slot just past the four Arg-slots. |
| 1202 int offset = | 1218 int offset = (index - 5) * kPointerSize + kCArgsSlotsSize; |
| 1203 (index - 5) * kPointerSize + StandardFrameConstants::kCArgsSlotsSize; | |
| 1204 return MemOperand(sp, offset); | 1219 return MemOperand(sp, offset); |
| 1205 } | 1220 } |
| 1206 | 1221 |
| 1207 | 1222 |
| 1208 #ifdef GENERATED_CODE_COVERAGE | 1223 #ifdef GENERATED_CODE_COVERAGE |
| 1209 #define CODE_COVERAGE_STRINGIFY(x) #x | 1224 #define CODE_COVERAGE_STRINGIFY(x) #x |
| 1210 #define CODE_COVERAGE_TOSTRING(x) CODE_COVERAGE_STRINGIFY(x) | 1225 #define CODE_COVERAGE_TOSTRING(x) CODE_COVERAGE_STRINGIFY(x) |
| 1211 #define __FILE_LINE__ __FILE__ ":" CODE_COVERAGE_TOSTRING(__LINE__) | 1226 #define __FILE_LINE__ __FILE__ ":" CODE_COVERAGE_TOSTRING(__LINE__) |
| 1212 #define ACCESS_MASM(masm) masm->stop(__FILE_LINE__); masm-> | 1227 #define ACCESS_MASM(masm) masm->stop(__FILE_LINE__); masm-> |
| 1213 #else | 1228 #else |
| 1214 #define ACCESS_MASM(masm) masm-> | 1229 #define ACCESS_MASM(masm) masm-> |
| 1215 #endif | 1230 #endif |
| 1216 | 1231 |
| 1217 } } // namespace v8::internal | 1232 } } // namespace v8::internal |
| 1218 | 1233 |
| 1219 #endif // V8_MIPS_MACRO_ASSEMBLER_MIPS_H_ | 1234 #endif // V8_MIPS_MACRO_ASSEMBLER_MIPS_H_ |
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