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Issue 6880010: Merge (7265, 7271] from bleeding_edge to experimental/gc branch.... (Closed) Base URL: http://v8.googlecode.com/svn/branches/experimental/gc/
Patch Set: '' Created 9 years, 8 months ago
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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
(...skipping 25 matching lines...) Expand all
36 #include "debug.h" 36 #include "debug.h"
37 #include "runtime.h" 37 #include "runtime.h"
38 38
39 namespace v8 { 39 namespace v8 {
40 namespace internal { 40 namespace internal {
41 41
42 MacroAssembler::MacroAssembler(void* buffer, int size) 42 MacroAssembler::MacroAssembler(void* buffer, int size)
43 : Assembler(buffer, size), 43 : Assembler(buffer, size),
44 generating_stub_(false), 44 generating_stub_(false),
45 allow_stub_calls_(true), 45 allow_stub_calls_(true),
46 code_object_(Heap::undefined_value()) { 46 code_object_(HEAP->undefined_value()) {
47 } 47 }
48 48
49 49
50 // We always generate arm code, never thumb code, even if V8 is compiled to 50 // We always generate arm code, never thumb code, even if V8 is compiled to
51 // thumb, so we require inter-working support 51 // thumb, so we require inter-working support
52 #if defined(__thumb__) && !defined(USE_THUMB_INTERWORK) 52 #if defined(__thumb__) && !defined(USE_THUMB_INTERWORK)
53 #error "flag -mthumb-interwork missing" 53 #error "flag -mthumb-interwork missing"
54 #endif 54 #endif
55 55
56 56
(...skipping 228 matching lines...) Expand 10 before | Expand all | Expand 10 after
285 285
286 void MacroAssembler::And(Register dst, Register src1, const Operand& src2, 286 void MacroAssembler::And(Register dst, Register src1, const Operand& src2,
287 Condition cond) { 287 Condition cond) {
288 if (!src2.is_reg() && 288 if (!src2.is_reg() &&
289 !src2.must_use_constant_pool() && 289 !src2.must_use_constant_pool() &&
290 src2.immediate() == 0) { 290 src2.immediate() == 0) {
291 mov(dst, Operand(0, RelocInfo::NONE), LeaveCC, cond); 291 mov(dst, Operand(0, RelocInfo::NONE), LeaveCC, cond);
292 292
293 } else if (!src2.is_single_instruction() && 293 } else if (!src2.is_single_instruction() &&
294 !src2.must_use_constant_pool() && 294 !src2.must_use_constant_pool() &&
295 CpuFeatures::IsSupported(ARMv7) && 295 Isolate::Current()->cpu_features()->IsSupported(ARMv7) &&
296 IsPowerOf2(src2.immediate() + 1)) { 296 IsPowerOf2(src2.immediate() + 1)) {
297 ubfx(dst, src1, 0, WhichPowerOf2(src2.immediate() + 1), cond); 297 ubfx(dst, src1, 0, WhichPowerOf2(src2.immediate() + 1), cond);
298 298
299 } else { 299 } else {
300 and_(dst, src1, src2, LeaveCC, cond); 300 and_(dst, src1, src2, LeaveCC, cond);
301 } 301 }
302 } 302 }
303 303
304 304
305 void MacroAssembler::Ubfx(Register dst, Register src1, int lsb, int width, 305 void MacroAssembler::Ubfx(Register dst, Register src1, int lsb, int width,
306 Condition cond) { 306 Condition cond) {
307 ASSERT(lsb < 32); 307 ASSERT(lsb < 32);
308 if (!CpuFeatures::IsSupported(ARMv7)) { 308 if (!Isolate::Current()->cpu_features()->IsSupported(ARMv7)) {
309 int mask = (1 << (width + lsb)) - 1 - ((1 << lsb) - 1); 309 int mask = (1 << (width + lsb)) - 1 - ((1 << lsb) - 1);
310 and_(dst, src1, Operand(mask), LeaveCC, cond); 310 and_(dst, src1, Operand(mask), LeaveCC, cond);
311 if (lsb != 0) { 311 if (lsb != 0) {
312 mov(dst, Operand(dst, LSR, lsb), LeaveCC, cond); 312 mov(dst, Operand(dst, LSR, lsb), LeaveCC, cond);
313 } 313 }
314 } else { 314 } else {
315 ubfx(dst, src1, lsb, width, cond); 315 ubfx(dst, src1, lsb, width, cond);
316 } 316 }
317 } 317 }
318 318
319 319
320 void MacroAssembler::Sbfx(Register dst, Register src1, int lsb, int width, 320 void MacroAssembler::Sbfx(Register dst, Register src1, int lsb, int width,
321 Condition cond) { 321 Condition cond) {
322 ASSERT(lsb < 32); 322 ASSERT(lsb < 32);
323 if (!CpuFeatures::IsSupported(ARMv7)) { 323 if (!Isolate::Current()->cpu_features()->IsSupported(ARMv7)) {
324 int mask = (1 << (width + lsb)) - 1 - ((1 << lsb) - 1); 324 int mask = (1 << (width + lsb)) - 1 - ((1 << lsb) - 1);
325 and_(dst, src1, Operand(mask), LeaveCC, cond); 325 and_(dst, src1, Operand(mask), LeaveCC, cond);
326 int shift_up = 32 - lsb - width; 326 int shift_up = 32 - lsb - width;
327 int shift_down = lsb + shift_up; 327 int shift_down = lsb + shift_up;
328 if (shift_up != 0) { 328 if (shift_up != 0) {
329 mov(dst, Operand(dst, LSL, shift_up), LeaveCC, cond); 329 mov(dst, Operand(dst, LSL, shift_up), LeaveCC, cond);
330 } 330 }
331 if (shift_down != 0) { 331 if (shift_down != 0) {
332 mov(dst, Operand(dst, ASR, shift_down), LeaveCC, cond); 332 mov(dst, Operand(dst, ASR, shift_down), LeaveCC, cond);
333 } 333 }
334 } else { 334 } else {
335 sbfx(dst, src1, lsb, width, cond); 335 sbfx(dst, src1, lsb, width, cond);
336 } 336 }
337 } 337 }
338 338
339 339
340 void MacroAssembler::Bfi(Register dst, 340 void MacroAssembler::Bfi(Register dst,
341 Register src, 341 Register src,
342 Register scratch, 342 Register scratch,
343 int lsb, 343 int lsb,
344 int width, 344 int width,
345 Condition cond) { 345 Condition cond) {
346 ASSERT(0 <= lsb && lsb < 32); 346 ASSERT(0 <= lsb && lsb < 32);
347 ASSERT(0 <= width && width < 32); 347 ASSERT(0 <= width && width < 32);
348 ASSERT(lsb + width < 32); 348 ASSERT(lsb + width < 32);
349 ASSERT(!scratch.is(dst)); 349 ASSERT(!scratch.is(dst));
350 if (width == 0) return; 350 if (width == 0) return;
351 if (!CpuFeatures::IsSupported(ARMv7)) { 351 if (!Isolate::Current()->cpu_features()->IsSupported(ARMv7)) {
352 int mask = (1 << (width + lsb)) - 1 - ((1 << lsb) - 1); 352 int mask = (1 << (width + lsb)) - 1 - ((1 << lsb) - 1);
353 bic(dst, dst, Operand(mask)); 353 bic(dst, dst, Operand(mask));
354 and_(scratch, src, Operand((1 << width) - 1)); 354 and_(scratch, src, Operand((1 << width) - 1));
355 mov(scratch, Operand(scratch, LSL, lsb)); 355 mov(scratch, Operand(scratch, LSL, lsb));
356 orr(dst, dst, scratch); 356 orr(dst, dst, scratch);
357 } else { 357 } else {
358 bfi(dst, src, lsb, width, cond); 358 bfi(dst, src, lsb, width, cond);
359 } 359 }
360 } 360 }
361 361
362 362
363 void MacroAssembler::Bfc(Register dst, int lsb, int width, Condition cond) { 363 void MacroAssembler::Bfc(Register dst, int lsb, int width, Condition cond) {
364 ASSERT(lsb < 32); 364 ASSERT(lsb < 32);
365 if (!CpuFeatures::IsSupported(ARMv7)) { 365 if (!Isolate::Current()->cpu_features()->IsSupported(ARMv7)) {
366 int mask = (1 << (width + lsb)) - 1 - ((1 << lsb) - 1); 366 int mask = (1 << (width + lsb)) - 1 - ((1 << lsb) - 1);
367 bic(dst, dst, Operand(mask)); 367 bic(dst, dst, Operand(mask));
368 } else { 368 } else {
369 bfc(dst, lsb, width, cond); 369 bfc(dst, lsb, width, cond);
370 } 370 }
371 } 371 }
372 372
373 373
374 void MacroAssembler::Usat(Register dst, int satpos, const Operand& src, 374 void MacroAssembler::Usat(Register dst, int satpos, const Operand& src,
375 Condition cond) { 375 Condition cond) {
376 if (!CpuFeatures::IsSupported(ARMv7)) { 376 if (!Isolate::Current()->cpu_features()->IsSupported(ARMv7)) {
377 ASSERT(!dst.is(pc) && !src.rm().is(pc)); 377 ASSERT(!dst.is(pc) && !src.rm().is(pc));
378 ASSERT((satpos >= 0) && (satpos <= 31)); 378 ASSERT((satpos >= 0) && (satpos <= 31));
379 379
380 // These asserts are required to ensure compatibility with the ARMv7 380 // These asserts are required to ensure compatibility with the ARMv7
381 // implementation. 381 // implementation.
382 ASSERT((src.shift_op() == ASR) || (src.shift_op() == LSL)); 382 ASSERT((src.shift_op() == ASR) || (src.shift_op() == LSL));
383 ASSERT(src.rs().is(no_reg)); 383 ASSERT(src.rs().is(no_reg));
384 384
385 Label done; 385 Label done;
386 int satval = (1 << satpos) - 1; 386 int satval = (1 << satpos) - 1;
(...skipping 226 matching lines...) Expand 10 before | Expand all | Expand 10 after
613 613
614 614
615 void MacroAssembler::Ldrd(Register dst1, Register dst2, 615 void MacroAssembler::Ldrd(Register dst1, Register dst2,
616 const MemOperand& src, Condition cond) { 616 const MemOperand& src, Condition cond) {
617 ASSERT(src.rm().is(no_reg)); 617 ASSERT(src.rm().is(no_reg));
618 ASSERT(!dst1.is(lr)); // r14. 618 ASSERT(!dst1.is(lr)); // r14.
619 ASSERT_EQ(0, dst1.code() % 2); 619 ASSERT_EQ(0, dst1.code() % 2);
620 ASSERT_EQ(dst1.code() + 1, dst2.code()); 620 ASSERT_EQ(dst1.code() + 1, dst2.code());
621 621
622 // Generate two ldr instructions if ldrd is not available. 622 // Generate two ldr instructions if ldrd is not available.
623 if (CpuFeatures::IsSupported(ARMv7)) { 623 if (Isolate::Current()->cpu_features()->IsSupported(ARMv7)) {
624 CpuFeatures::Scope scope(ARMv7); 624 CpuFeatures::Scope scope(ARMv7);
625 ldrd(dst1, dst2, src, cond); 625 ldrd(dst1, dst2, src, cond);
626 } else { 626 } else {
627 MemOperand src2(src); 627 MemOperand src2(src);
628 src2.set_offset(src2.offset() + 4); 628 src2.set_offset(src2.offset() + 4);
629 if (dst1.is(src.rn())) { 629 if (dst1.is(src.rn())) {
630 ldr(dst2, src2, cond); 630 ldr(dst2, src2, cond);
631 ldr(dst1, src, cond); 631 ldr(dst1, src, cond);
632 } else { 632 } else {
633 ldr(dst1, src, cond); 633 ldr(dst1, src, cond);
634 ldr(dst2, src2, cond); 634 ldr(dst2, src2, cond);
635 } 635 }
636 } 636 }
637 } 637 }
638 638
639 639
640 void MacroAssembler::Strd(Register src1, Register src2, 640 void MacroAssembler::Strd(Register src1, Register src2,
641 const MemOperand& dst, Condition cond) { 641 const MemOperand& dst, Condition cond) {
642 ASSERT(dst.rm().is(no_reg)); 642 ASSERT(dst.rm().is(no_reg));
643 ASSERT(!src1.is(lr)); // r14. 643 ASSERT(!src1.is(lr)); // r14.
644 ASSERT_EQ(0, src1.code() % 2); 644 ASSERT_EQ(0, src1.code() % 2);
645 ASSERT_EQ(src1.code() + 1, src2.code()); 645 ASSERT_EQ(src1.code() + 1, src2.code());
646 646
647 // Generate two str instructions if strd is not available. 647 // Generate two str instructions if strd is not available.
648 if (CpuFeatures::IsSupported(ARMv7)) { 648 if (Isolate::Current()->cpu_features()->IsSupported(ARMv7)) {
649 CpuFeatures::Scope scope(ARMv7); 649 CpuFeatures::Scope scope(ARMv7);
650 strd(src1, src2, dst, cond); 650 strd(src1, src2, dst, cond);
651 } else { 651 } else {
652 MemOperand dst2(dst); 652 MemOperand dst2(dst);
653 dst2.set_offset(dst2.offset() + 4); 653 dst2.set_offset(dst2.offset() + 4);
654 str(src1, dst, cond); 654 str(src1, dst, cond);
655 str(src2, dst2, cond); 655 str(src2, dst2, cond);
656 } 656 }
657 } 657 }
658 658
(...skipping 74 matching lines...) Expand 10 before | Expand all | Expand 10 after
733 // Reserve room for saved entry sp and code object. 733 // Reserve room for saved entry sp and code object.
734 sub(sp, sp, Operand(2 * kPointerSize)); 734 sub(sp, sp, Operand(2 * kPointerSize));
735 if (emit_debug_code()) { 735 if (emit_debug_code()) {
736 mov(ip, Operand(0)); 736 mov(ip, Operand(0));
737 str(ip, MemOperand(fp, ExitFrameConstants::kSPOffset)); 737 str(ip, MemOperand(fp, ExitFrameConstants::kSPOffset));
738 } 738 }
739 mov(ip, Operand(CodeObject())); 739 mov(ip, Operand(CodeObject()));
740 str(ip, MemOperand(fp, ExitFrameConstants::kCodeOffset)); 740 str(ip, MemOperand(fp, ExitFrameConstants::kCodeOffset));
741 741
742 // Save the frame pointer and the context in top. 742 // Save the frame pointer and the context in top.
743 mov(ip, Operand(ExternalReference(Top::k_c_entry_fp_address))); 743 mov(ip, Operand(ExternalReference(Isolate::k_c_entry_fp_address)));
744 str(fp, MemOperand(ip)); 744 str(fp, MemOperand(ip));
745 mov(ip, Operand(ExternalReference(Top::k_context_address))); 745 mov(ip, Operand(ExternalReference(Isolate::k_context_address)));
746 str(cp, MemOperand(ip)); 746 str(cp, MemOperand(ip));
747 747
748 // Optionally save all double registers. 748 // Optionally save all double registers.
749 if (save_doubles) { 749 if (save_doubles) {
750 sub(sp, sp, Operand(DwVfpRegister::kNumRegisters * kDoubleSize)); 750 sub(sp, sp, Operand(DwVfpRegister::kNumRegisters * kDoubleSize));
751 const int offset = -2 * kPointerSize; 751 const int offset = -2 * kPointerSize;
752 for (int i = 0; i < DwVfpRegister::kNumRegisters; i++) { 752 for (int i = 0; i < DwVfpRegister::kNumRegisters; i++) {
753 DwVfpRegister reg = DwVfpRegister::from_code(i); 753 DwVfpRegister reg = DwVfpRegister::from_code(i);
754 vstr(reg, fp, offset - ((i + 1) * kDoubleSize)); 754 vstr(reg, fp, offset - ((i + 1) * kDoubleSize));
755 } 755 }
(...skipping 55 matching lines...) Expand 10 before | Expand all | Expand 10 after
811 if (save_doubles) { 811 if (save_doubles) {
812 for (int i = 0; i < DwVfpRegister::kNumRegisters; i++) { 812 for (int i = 0; i < DwVfpRegister::kNumRegisters; i++) {
813 DwVfpRegister reg = DwVfpRegister::from_code(i); 813 DwVfpRegister reg = DwVfpRegister::from_code(i);
814 const int offset = -2 * kPointerSize; 814 const int offset = -2 * kPointerSize;
815 vldr(reg, fp, offset - ((i + 1) * kDoubleSize)); 815 vldr(reg, fp, offset - ((i + 1) * kDoubleSize));
816 } 816 }
817 } 817 }
818 818
819 // Clear top frame. 819 // Clear top frame.
820 mov(r3, Operand(0, RelocInfo::NONE)); 820 mov(r3, Operand(0, RelocInfo::NONE));
821 mov(ip, Operand(ExternalReference(Top::k_c_entry_fp_address))); 821 mov(ip, Operand(ExternalReference(Isolate::k_c_entry_fp_address)));
822 str(r3, MemOperand(ip)); 822 str(r3, MemOperand(ip));
823 823
824 // Restore current context from top and clear it in debug mode. 824 // Restore current context from top and clear it in debug mode.
825 mov(ip, Operand(ExternalReference(Top::k_context_address))); 825 mov(ip, Operand(ExternalReference(Isolate::k_context_address)));
826 ldr(cp, MemOperand(ip)); 826 ldr(cp, MemOperand(ip));
827 #ifdef DEBUG 827 #ifdef DEBUG
828 str(r3, MemOperand(ip)); 828 str(r3, MemOperand(ip));
829 #endif 829 #endif
830 830
831 // Tear down the exit frame, pop the arguments, and return. 831 // Tear down the exit frame, pop the arguments, and return.
832 mov(sp, Operand(fp)); 832 mov(sp, Operand(fp));
833 ldm(ia_w, sp, fp.bit() | lr.bit()); 833 ldm(ia_w, sp, fp.bit() | lr.bit());
834 if (argument_count.is_valid()) { 834 if (argument_count.is_valid()) {
835 add(sp, sp, Operand(argument_count, LSL, kPointerSizeLog2)); 835 add(sp, sp, Operand(argument_count, LSL, kPointerSizeLog2));
(...skipping 61 matching lines...) Expand 10 before | Expand all | Expand 10 after
897 } 897 }
898 } 898 }
899 899
900 if (!definitely_matches) { 900 if (!definitely_matches) {
901 if (!code_constant.is_null()) { 901 if (!code_constant.is_null()) {
902 mov(r3, Operand(code_constant)); 902 mov(r3, Operand(code_constant));
903 add(r3, r3, Operand(Code::kHeaderSize - kHeapObjectTag)); 903 add(r3, r3, Operand(Code::kHeaderSize - kHeapObjectTag));
904 } 904 }
905 905
906 Handle<Code> adaptor = 906 Handle<Code> adaptor =
907 Handle<Code>(Builtins::builtin(Builtins::ArgumentsAdaptorTrampoline)); 907 Handle<Code>(Isolate::Current()->builtins()->builtin(
908 Builtins::ArgumentsAdaptorTrampoline));
908 if (flag == CALL_FUNCTION) { 909 if (flag == CALL_FUNCTION) {
909 if (call_wrapper != NULL) { 910 if (call_wrapper != NULL) {
910 call_wrapper->BeforeCall(CallSize(adaptor, RelocInfo::CODE_TARGET)); 911 call_wrapper->BeforeCall(CallSize(adaptor, RelocInfo::CODE_TARGET));
911 } 912 }
912 Call(adaptor, RelocInfo::CODE_TARGET); 913 Call(adaptor, RelocInfo::CODE_TARGET);
913 if (call_wrapper != NULL) call_wrapper->AfterCall(); 914 if (call_wrapper != NULL) call_wrapper->AfterCall();
914 b(done); 915 b(done);
915 } else { 916 } else {
916 Jump(adaptor, RelocInfo::CODE_TARGET); 917 Jump(adaptor, RelocInfo::CODE_TARGET);
917 } 918 }
(...skipping 146 matching lines...) Expand 10 before | Expand all | Expand 10 after
1064 if (type == TRY_CATCH_HANDLER) { 1065 if (type == TRY_CATCH_HANDLER) {
1065 mov(r3, Operand(StackHandler::TRY_CATCH)); 1066 mov(r3, Operand(StackHandler::TRY_CATCH));
1066 } else { 1067 } else {
1067 mov(r3, Operand(StackHandler::TRY_FINALLY)); 1068 mov(r3, Operand(StackHandler::TRY_FINALLY));
1068 } 1069 }
1069 ASSERT(StackHandlerConstants::kStateOffset == 1 * kPointerSize 1070 ASSERT(StackHandlerConstants::kStateOffset == 1 * kPointerSize
1070 && StackHandlerConstants::kFPOffset == 2 * kPointerSize 1071 && StackHandlerConstants::kFPOffset == 2 * kPointerSize
1071 && StackHandlerConstants::kPCOffset == 3 * kPointerSize); 1072 && StackHandlerConstants::kPCOffset == 3 * kPointerSize);
1072 stm(db_w, sp, r3.bit() | fp.bit() | lr.bit()); 1073 stm(db_w, sp, r3.bit() | fp.bit() | lr.bit());
1073 // Save the current handler as the next handler. 1074 // Save the current handler as the next handler.
1074 mov(r3, Operand(ExternalReference(Top::k_handler_address))); 1075 mov(r3, Operand(ExternalReference(Isolate::k_handler_address)));
1075 ldr(r1, MemOperand(r3)); 1076 ldr(r1, MemOperand(r3));
1076 ASSERT(StackHandlerConstants::kNextOffset == 0); 1077 ASSERT(StackHandlerConstants::kNextOffset == 0);
1077 push(r1); 1078 push(r1);
1078 // Link this handler as the new current one. 1079 // Link this handler as the new current one.
1079 str(sp, MemOperand(r3)); 1080 str(sp, MemOperand(r3));
1080 } else { 1081 } else {
1081 // Must preserve r0-r4, r5-r7 are available. 1082 // Must preserve r0-r4, r5-r7 are available.
1082 ASSERT(try_location == IN_JS_ENTRY); 1083 ASSERT(try_location == IN_JS_ENTRY);
1083 // The frame pointer does not point to a JS frame so we save NULL 1084 // The frame pointer does not point to a JS frame so we save NULL
1084 // for fp. We expect the code throwing an exception to check fp 1085 // for fp. We expect the code throwing an exception to check fp
1085 // before dereferencing it to restore the context. 1086 // before dereferencing it to restore the context.
1086 mov(ip, Operand(0, RelocInfo::NONE)); // To save a NULL frame pointer. 1087 mov(ip, Operand(0, RelocInfo::NONE)); // To save a NULL frame pointer.
1087 mov(r6, Operand(StackHandler::ENTRY)); 1088 mov(r6, Operand(StackHandler::ENTRY));
1088 ASSERT(StackHandlerConstants::kStateOffset == 1 * kPointerSize 1089 ASSERT(StackHandlerConstants::kStateOffset == 1 * kPointerSize
1089 && StackHandlerConstants::kFPOffset == 2 * kPointerSize 1090 && StackHandlerConstants::kFPOffset == 2 * kPointerSize
1090 && StackHandlerConstants::kPCOffset == 3 * kPointerSize); 1091 && StackHandlerConstants::kPCOffset == 3 * kPointerSize);
1091 stm(db_w, sp, r6.bit() | ip.bit() | lr.bit()); 1092 stm(db_w, sp, r6.bit() | ip.bit() | lr.bit());
1092 // Save the current handler as the next handler. 1093 // Save the current handler as the next handler.
1093 mov(r7, Operand(ExternalReference(Top::k_handler_address))); 1094 mov(r7, Operand(ExternalReference(Isolate::k_handler_address)));
1094 ldr(r6, MemOperand(r7)); 1095 ldr(r6, MemOperand(r7));
1095 ASSERT(StackHandlerConstants::kNextOffset == 0); 1096 ASSERT(StackHandlerConstants::kNextOffset == 0);
1096 push(r6); 1097 push(r6);
1097 // Link this handler as the new current one. 1098 // Link this handler as the new current one.
1098 str(sp, MemOperand(r7)); 1099 str(sp, MemOperand(r7));
1099 } 1100 }
1100 } 1101 }
1101 1102
1102 1103
1103 void MacroAssembler::PopTryHandler() { 1104 void MacroAssembler::PopTryHandler() {
1104 ASSERT_EQ(0, StackHandlerConstants::kNextOffset); 1105 ASSERT_EQ(0, StackHandlerConstants::kNextOffset);
1105 pop(r1); 1106 pop(r1);
1106 mov(ip, Operand(ExternalReference(Top::k_handler_address))); 1107 mov(ip, Operand(ExternalReference(Isolate::k_handler_address)));
1107 add(sp, sp, Operand(StackHandlerConstants::kSize - kPointerSize)); 1108 add(sp, sp, Operand(StackHandlerConstants::kSize - kPointerSize));
1108 str(r1, MemOperand(ip)); 1109 str(r1, MemOperand(ip));
1109 } 1110 }
1110 1111
1111 1112
1112 void MacroAssembler::Throw(Register value) { 1113 void MacroAssembler::Throw(Register value) {
1113 // r0 is expected to hold the exception. 1114 // r0 is expected to hold the exception.
1114 if (!value.is(r0)) { 1115 if (!value.is(r0)) {
1115 mov(r0, value); 1116 mov(r0, value);
1116 } 1117 }
1117 1118
1118 // Adjust this code if not the case. 1119 // Adjust this code if not the case.
1119 STATIC_ASSERT(StackHandlerConstants::kSize == 4 * kPointerSize); 1120 STATIC_ASSERT(StackHandlerConstants::kSize == 4 * kPointerSize);
1120 1121
1121 // Drop the sp to the top of the handler. 1122 // Drop the sp to the top of the handler.
1122 mov(r3, Operand(ExternalReference(Top::k_handler_address))); 1123 mov(r3, Operand(ExternalReference(Isolate::k_handler_address)));
1123 ldr(sp, MemOperand(r3)); 1124 ldr(sp, MemOperand(r3));
1124 1125
1125 // Restore the next handler and frame pointer, discard handler state. 1126 // Restore the next handler and frame pointer, discard handler state.
1126 STATIC_ASSERT(StackHandlerConstants::kNextOffset == 0); 1127 STATIC_ASSERT(StackHandlerConstants::kNextOffset == 0);
1127 pop(r2); 1128 pop(r2);
1128 str(r2, MemOperand(r3)); 1129 str(r2, MemOperand(r3));
1129 STATIC_ASSERT(StackHandlerConstants::kFPOffset == 2 * kPointerSize); 1130 STATIC_ASSERT(StackHandlerConstants::kFPOffset == 2 * kPointerSize);
1130 ldm(ia_w, sp, r3.bit() | fp.bit()); // r3: discarded state. 1131 ldm(ia_w, sp, r3.bit() | fp.bit()); // r3: discarded state.
1131 1132
1132 // Before returning we restore the context from the frame pointer if 1133 // Before returning we restore the context from the frame pointer if
(...skipping 18 matching lines...) Expand all
1151 Register value) { 1152 Register value) {
1152 // Adjust this code if not the case. 1153 // Adjust this code if not the case.
1153 STATIC_ASSERT(StackHandlerConstants::kSize == 4 * kPointerSize); 1154 STATIC_ASSERT(StackHandlerConstants::kSize == 4 * kPointerSize);
1154 1155
1155 // r0 is expected to hold the exception. 1156 // r0 is expected to hold the exception.
1156 if (!value.is(r0)) { 1157 if (!value.is(r0)) {
1157 mov(r0, value); 1158 mov(r0, value);
1158 } 1159 }
1159 1160
1160 // Drop sp to the top stack handler. 1161 // Drop sp to the top stack handler.
1161 mov(r3, Operand(ExternalReference(Top::k_handler_address))); 1162 mov(r3, Operand(ExternalReference(Isolate::k_handler_address)));
1162 ldr(sp, MemOperand(r3)); 1163 ldr(sp, MemOperand(r3));
1163 1164
1164 // Unwind the handlers until the ENTRY handler is found. 1165 // Unwind the handlers until the ENTRY handler is found.
1165 Label loop, done; 1166 Label loop, done;
1166 bind(&loop); 1167 bind(&loop);
1167 // Load the type of the current stack handler. 1168 // Load the type of the current stack handler.
1168 const int kStateOffset = StackHandlerConstants::kStateOffset; 1169 const int kStateOffset = StackHandlerConstants::kStateOffset;
1169 ldr(r2, MemOperand(sp, kStateOffset)); 1170 ldr(r2, MemOperand(sp, kStateOffset));
1170 cmp(r2, Operand(StackHandler::ENTRY)); 1171 cmp(r2, Operand(StackHandler::ENTRY));
1171 b(eq, &done); 1172 b(eq, &done);
1172 // Fetch the next handler in the list. 1173 // Fetch the next handler in the list.
1173 const int kNextOffset = StackHandlerConstants::kNextOffset; 1174 const int kNextOffset = StackHandlerConstants::kNextOffset;
1174 ldr(sp, MemOperand(sp, kNextOffset)); 1175 ldr(sp, MemOperand(sp, kNextOffset));
1175 jmp(&loop); 1176 jmp(&loop);
1176 bind(&done); 1177 bind(&done);
1177 1178
1178 // Set the top handler address to next handler past the current ENTRY handler. 1179 // Set the top handler address to next handler past the current ENTRY handler.
1179 STATIC_ASSERT(StackHandlerConstants::kNextOffset == 0); 1180 STATIC_ASSERT(StackHandlerConstants::kNextOffset == 0);
1180 pop(r2); 1181 pop(r2);
1181 str(r2, MemOperand(r3)); 1182 str(r2, MemOperand(r3));
1182 1183
1183 if (type == OUT_OF_MEMORY) { 1184 if (type == OUT_OF_MEMORY) {
1184 // Set external caught exception to false. 1185 // Set external caught exception to false.
1185 ExternalReference external_caught(Top::k_external_caught_exception_address); 1186 ExternalReference external_caught(
1187 Isolate::k_external_caught_exception_address);
1186 mov(r0, Operand(false, RelocInfo::NONE)); 1188 mov(r0, Operand(false, RelocInfo::NONE));
1187 mov(r2, Operand(external_caught)); 1189 mov(r2, Operand(external_caught));
1188 str(r0, MemOperand(r2)); 1190 str(r0, MemOperand(r2));
1189 1191
1190 // Set pending exception and r0 to out of memory exception. 1192 // Set pending exception and r0 to out of memory exception.
1191 Failure* out_of_memory = Failure::OutOfMemoryException(); 1193 Failure* out_of_memory = Failure::OutOfMemoryException();
1192 mov(r0, Operand(reinterpret_cast<int32_t>(out_of_memory))); 1194 mov(r0, Operand(reinterpret_cast<int32_t>(out_of_memory)));
1193 mov(r2, Operand(ExternalReference(Top::k_pending_exception_address))); 1195 mov(r2, Operand(ExternalReference(Isolate::k_pending_exception_address)));
1194 str(r0, MemOperand(r2)); 1196 str(r0, MemOperand(r2));
1195 } 1197 }
1196 1198
1197 // Stack layout at this point. See also StackHandlerConstants. 1199 // Stack layout at this point. See also StackHandlerConstants.
1198 // sp -> state (ENTRY) 1200 // sp -> state (ENTRY)
1199 // fp 1201 // fp
1200 // lr 1202 // lr
1201 1203
1202 // Discard handler state (r2 is not used) and restore frame pointer. 1204 // Discard handler state (r2 is not used) and restore frame pointer.
1203 STATIC_ASSERT(StackHandlerConstants::kFPOffset == 2 * kPointerSize); 1205 STATIC_ASSERT(StackHandlerConstants::kFPOffset == 2 * kPointerSize);
(...skipping 686 matching lines...) Expand 10 before | Expand all | Expand 10 after
1890 1892
1891 // Tries to get a signed int32 out of a double precision floating point heap 1893 // Tries to get a signed int32 out of a double precision floating point heap
1892 // number. Rounds towards 0. Branch to 'not_int32' if the double is out of the 1894 // number. Rounds towards 0. Branch to 'not_int32' if the double is out of the
1893 // 32bits signed integer range. 1895 // 32bits signed integer range.
1894 void MacroAssembler::ConvertToInt32(Register source, 1896 void MacroAssembler::ConvertToInt32(Register source,
1895 Register dest, 1897 Register dest,
1896 Register scratch, 1898 Register scratch,
1897 Register scratch2, 1899 Register scratch2,
1898 DwVfpRegister double_scratch, 1900 DwVfpRegister double_scratch,
1899 Label *not_int32) { 1901 Label *not_int32) {
1900 if (CpuFeatures::IsSupported(VFP3)) { 1902 if (Isolate::Current()->cpu_features()->IsSupported(VFP3)) {
1901 CpuFeatures::Scope scope(VFP3); 1903 CpuFeatures::Scope scope(VFP3);
1902 sub(scratch, source, Operand(kHeapObjectTag)); 1904 sub(scratch, source, Operand(kHeapObjectTag));
1903 vldr(double_scratch, scratch, HeapNumber::kValueOffset); 1905 vldr(double_scratch, scratch, HeapNumber::kValueOffset);
1904 vcvt_s32_f64(double_scratch.low(), double_scratch); 1906 vcvt_s32_f64(double_scratch.low(), double_scratch);
1905 vmov(dest, double_scratch.low()); 1907 vmov(dest, double_scratch.low());
1906 // Signed vcvt instruction will saturate to the minimum (0x80000000) or 1908 // Signed vcvt instruction will saturate to the minimum (0x80000000) or
1907 // maximun (0x7fffffff) signed 32bits integer when the double is out of 1909 // maximun (0x7fffffff) signed 32bits integer when the double is out of
1908 // range. When substracting one, the minimum signed integer becomes the 1910 // range. When substracting one, the minimum signed integer becomes the
1909 // maximun signed integer. 1911 // maximun signed integer.
1910 sub(scratch, dest, Operand(1)); 1912 sub(scratch, dest, Operand(1));
(...skipping 75 matching lines...) Expand 10 before | Expand all | Expand 10 after
1986 } 1988 }
1987 } 1989 }
1988 1990
1989 1991
1990 void MacroAssembler::EmitVFPTruncate(VFPRoundingMode rounding_mode, 1992 void MacroAssembler::EmitVFPTruncate(VFPRoundingMode rounding_mode,
1991 SwVfpRegister result, 1993 SwVfpRegister result,
1992 DwVfpRegister double_input, 1994 DwVfpRegister double_input,
1993 Register scratch1, 1995 Register scratch1,
1994 Register scratch2, 1996 Register scratch2,
1995 CheckForInexactConversion check_inexact) { 1997 CheckForInexactConversion check_inexact) {
1996 ASSERT(CpuFeatures::IsSupported(VFP3)); 1998 ASSERT(Isolate::Current()->cpu_features()->IsSupported(VFP3));
1997 CpuFeatures::Scope scope(VFP3); 1999 CpuFeatures::Scope scope(VFP3);
1998 Register prev_fpscr = scratch1; 2000 Register prev_fpscr = scratch1;
1999 Register scratch = scratch2; 2001 Register scratch = scratch2;
2000 2002
2001 int32_t check_inexact_conversion = 2003 int32_t check_inexact_conversion =
2002 (check_inexact == kCheckForInexactConversion) ? kVFPInexactExceptionBit : 0; 2004 (check_inexact == kCheckForInexactConversion) ? kVFPInexactExceptionBit : 0;
2003 2005
2004 // Set custom FPCSR: 2006 // Set custom FPCSR:
2005 // - Set rounding mode. 2007 // - Set rounding mode.
2006 // - Clear vfp cumulative exception flags. 2008 // - Clear vfp cumulative exception flags.
(...skipping 137 matching lines...) Expand 10 before | Expand all | Expand 10 after
2144 input_high, 2146 input_high,
2145 input_low, 2147 input_low,
2146 scratch); 2148 scratch);
2147 bind(&done); 2149 bind(&done);
2148 } 2150 }
2149 2151
2150 2152
2151 void MacroAssembler::GetLeastBitsFromSmi(Register dst, 2153 void MacroAssembler::GetLeastBitsFromSmi(Register dst,
2152 Register src, 2154 Register src,
2153 int num_least_bits) { 2155 int num_least_bits) {
2154 if (CpuFeatures::IsSupported(ARMv7)) { 2156 if (Isolate::Current()->cpu_features()->IsSupported(ARMv7)) {
2155 ubfx(dst, src, kSmiTagSize, num_least_bits); 2157 ubfx(dst, src, kSmiTagSize, num_least_bits);
2156 } else { 2158 } else {
2157 mov(dst, Operand(src, ASR, kSmiTagSize)); 2159 mov(dst, Operand(src, ASR, kSmiTagSize));
2158 and_(dst, dst, Operand((1 << num_least_bits) - 1)); 2160 and_(dst, dst, Operand((1 << num_least_bits) - 1));
2159 } 2161 }
2160 } 2162 }
2161 2163
2162 2164
2163 void MacroAssembler::GetLeastBitsFromInt32(Register dst, 2165 void MacroAssembler::GetLeastBitsFromInt32(Register dst,
2164 Register src, 2166 Register src,
2165 int num_least_bits) { 2167 int num_least_bits) {
2166 and_(dst, src, Operand((1 << num_least_bits) - 1)); 2168 and_(dst, src, Operand((1 << num_least_bits) - 1));
2167 } 2169 }
2168 2170
2169 2171
2170 void MacroAssembler::CallRuntime(Runtime::Function* f, int num_arguments) { 2172 void MacroAssembler::CallRuntime(const Runtime::Function* f,
2173 int num_arguments) {
2171 // All parameters are on the stack. r0 has the return value after call. 2174 // All parameters are on the stack. r0 has the return value after call.
2172 2175
2173 // If the expected number of arguments of the runtime function is 2176 // If the expected number of arguments of the runtime function is
2174 // constant, we check that the actual number of arguments match the 2177 // constant, we check that the actual number of arguments match the
2175 // expectation. 2178 // expectation.
2176 if (f->nargs >= 0 && f->nargs != num_arguments) { 2179 if (f->nargs >= 0 && f->nargs != num_arguments) {
2177 IllegalOperation(num_arguments); 2180 IllegalOperation(num_arguments);
2178 return; 2181 return;
2179 } 2182 }
2180 2183
2181 // TODO(1236192): Most runtime routines don't need the number of 2184 // TODO(1236192): Most runtime routines don't need the number of
2182 // arguments passed in because it is constant. At some point we 2185 // arguments passed in because it is constant. At some point we
2183 // should remove this need and make the runtime routine entry code 2186 // should remove this need and make the runtime routine entry code
2184 // smarter. 2187 // smarter.
2185 mov(r0, Operand(num_arguments)); 2188 mov(r0, Operand(num_arguments));
2186 mov(r1, Operand(ExternalReference(f))); 2189 mov(r1, Operand(ExternalReference(f)));
2187 CEntryStub stub(1); 2190 CEntryStub stub(1);
2188 CallStub(&stub); 2191 CallStub(&stub);
2189 } 2192 }
2190 2193
2191 2194
2192 void MacroAssembler::CallRuntime(Runtime::FunctionId fid, int num_arguments) { 2195 void MacroAssembler::CallRuntime(Runtime::FunctionId fid, int num_arguments) {
2193 CallRuntime(Runtime::FunctionForId(fid), num_arguments); 2196 CallRuntime(Runtime::FunctionForId(fid), num_arguments);
2194 } 2197 }
2195 2198
2196 2199
2197 void MacroAssembler::CallRuntimeSaveDoubles(Runtime::FunctionId id) { 2200 void MacroAssembler::CallRuntimeSaveDoubles(Runtime::FunctionId id) {
2198 Runtime::Function* function = Runtime::FunctionForId(id); 2201 const Runtime::Function* function = Runtime::FunctionForId(id);
2199 mov(r0, Operand(function->nargs)); 2202 mov(r0, Operand(function->nargs));
2200 mov(r1, Operand(ExternalReference(function))); 2203 mov(r1, Operand(ExternalReference(function)));
2201 CEntryStub stub(1); 2204 CEntryStub stub(1);
2202 stub.SaveDoubles(); 2205 stub.SaveDoubles();
2203 CallStub(&stub); 2206 CallStub(&stub);
2204 } 2207 }
2205 2208
2206 2209
2207 void MacroAssembler::CallExternalReference(const ExternalReference& ext, 2210 void MacroAssembler::CallExternalReference(const ExternalReference& ext,
2208 int num_arguments) { 2211 int num_arguments) {
(...skipping 556 matching lines...) Expand 10 before | Expand all | Expand 10 after
2765 Register scratch, 2768 Register scratch,
2766 Label* failure) { 2769 Label* failure) {
2767 int kFlatAsciiStringMask = 2770 int kFlatAsciiStringMask =
2768 kIsNotStringMask | kStringEncodingMask | kStringRepresentationMask; 2771 kIsNotStringMask | kStringEncodingMask | kStringRepresentationMask;
2769 int kFlatAsciiStringTag = ASCII_STRING_TYPE; 2772 int kFlatAsciiStringTag = ASCII_STRING_TYPE;
2770 and_(scratch, type, Operand(kFlatAsciiStringMask)); 2773 and_(scratch, type, Operand(kFlatAsciiStringMask));
2771 cmp(scratch, Operand(kFlatAsciiStringTag)); 2774 cmp(scratch, Operand(kFlatAsciiStringTag));
2772 b(ne, failure); 2775 b(ne, failure);
2773 } 2776 }
2774 2777
2778 static const int kRegisterPassedArguments = 4;
2775 2779
2776 void MacroAssembler::PrepareCallCFunction(int num_arguments, Register scratch) { 2780 void MacroAssembler::PrepareCallCFunction(int num_arguments, Register scratch) {
2777 int frame_alignment = ActivationFrameAlignment(); 2781 int frame_alignment = ActivationFrameAlignment();
2782
2783 // Reserve space for Isolate address which is always passed as last parameter
2784 num_arguments += 1;
2785
2778 // Up to four simple arguments are passed in registers r0..r3. 2786 // Up to four simple arguments are passed in registers r0..r3.
2779 int stack_passed_arguments = (num_arguments <= 4) ? 0 : num_arguments - 4; 2787 int stack_passed_arguments = (num_arguments <= kRegisterPassedArguments) ?
2788 0 : num_arguments - kRegisterPassedArguments;
2780 if (frame_alignment > kPointerSize) { 2789 if (frame_alignment > kPointerSize) {
2781 // Make stack end at alignment and make room for num_arguments - 4 words 2790 // Make stack end at alignment and make room for num_arguments - 4 words
2782 // and the original value of sp. 2791 // and the original value of sp.
2783 mov(scratch, sp); 2792 mov(scratch, sp);
2784 sub(sp, sp, Operand((stack_passed_arguments + 1) * kPointerSize)); 2793 sub(sp, sp, Operand((stack_passed_arguments + 1) * kPointerSize));
2785 ASSERT(IsPowerOf2(frame_alignment)); 2794 ASSERT(IsPowerOf2(frame_alignment));
2786 and_(sp, sp, Operand(-frame_alignment)); 2795 and_(sp, sp, Operand(-frame_alignment));
2787 str(scratch, MemOperand(sp, stack_passed_arguments * kPointerSize)); 2796 str(scratch, MemOperand(sp, stack_passed_arguments * kPointerSize));
2788 } else { 2797 } else {
2789 sub(sp, sp, Operand(stack_passed_arguments * kPointerSize)); 2798 sub(sp, sp, Operand(stack_passed_arguments * kPointerSize));
2790 } 2799 }
2791 } 2800 }
2792 2801
2793 2802
2794 void MacroAssembler::CallCFunction(ExternalReference function, 2803 void MacroAssembler::CallCFunction(ExternalReference function,
2795 int num_arguments) { 2804 int num_arguments) {
2796 mov(ip, Operand(function)); 2805 CallCFunctionHelper(no_reg, function, ip, num_arguments);
2797 CallCFunction(ip, num_arguments); 2806 }
2807
2808 void MacroAssembler::CallCFunction(Register function,
2809 Register scratch,
2810 int num_arguments) {
2811 CallCFunctionHelper(function,
2812 ExternalReference::the_hole_value_location(),
2813 scratch,
2814 num_arguments);
2798 } 2815 }
2799 2816
2800 2817
2801 void MacroAssembler::CallCFunction(Register function, int num_arguments) { 2818 void MacroAssembler::CallCFunctionHelper(Register function,
2819 ExternalReference function_reference,
2820 Register scratch,
2821 int num_arguments) {
2822 // Push Isolate address as the last argument.
2823 if (num_arguments < kRegisterPassedArguments) {
2824 Register arg_to_reg[] = {r0, r1, r2, r3};
2825 Register r = arg_to_reg[num_arguments];
2826 mov(r, Operand(ExternalReference::isolate_address()));
2827 } else {
2828 int stack_passed_arguments = num_arguments - kRegisterPassedArguments;
2829 // Push Isolate address on the stack after the arguments.
2830 mov(scratch, Operand(ExternalReference::isolate_address()));
2831 str(scratch, MemOperand(sp, stack_passed_arguments * kPointerSize));
2832 }
2833 num_arguments += 1;
2834
2802 // Make sure that the stack is aligned before calling a C function unless 2835 // Make sure that the stack is aligned before calling a C function unless
2803 // running in the simulator. The simulator has its own alignment check which 2836 // running in the simulator. The simulator has its own alignment check which
2804 // provides more information. 2837 // provides more information.
2805 #if defined(V8_HOST_ARCH_ARM) 2838 #if defined(V8_HOST_ARCH_ARM)
2806 if (emit_debug_code()) { 2839 if (emit_debug_code()) {
2807 int frame_alignment = OS::ActivationFrameAlignment(); 2840 int frame_alignment = OS::ActivationFrameAlignment();
2808 int frame_alignment_mask = frame_alignment - 1; 2841 int frame_alignment_mask = frame_alignment - 1;
2809 if (frame_alignment > kPointerSize) { 2842 if (frame_alignment > kPointerSize) {
2810 ASSERT(IsPowerOf2(frame_alignment)); 2843 ASSERT(IsPowerOf2(frame_alignment));
2811 Label alignment_as_expected; 2844 Label alignment_as_expected;
2812 tst(sp, Operand(frame_alignment_mask)); 2845 tst(sp, Operand(frame_alignment_mask));
2813 b(eq, &alignment_as_expected); 2846 b(eq, &alignment_as_expected);
2814 // Don't use Check here, as it will call Runtime_Abort possibly 2847 // Don't use Check here, as it will call Runtime_Abort possibly
2815 // re-entering here. 2848 // re-entering here.
2816 stop("Unexpected alignment"); 2849 stop("Unexpected alignment");
2817 bind(&alignment_as_expected); 2850 bind(&alignment_as_expected);
2818 } 2851 }
2819 } 2852 }
2820 #endif 2853 #endif
2821 2854
2822 // Just call directly. The function called cannot cause a GC, or 2855 // Just call directly. The function called cannot cause a GC, or
2823 // allow preemption, so the return address in the link register 2856 // allow preemption, so the return address in the link register
2824 // stays correct. 2857 // stays correct.
2858 if (function.is(no_reg)) {
2859 mov(scratch, Operand(function_reference));
2860 function = scratch;
2861 }
2825 Call(function); 2862 Call(function);
2826 int stack_passed_arguments = (num_arguments <= 4) ? 0 : num_arguments - 4; 2863 int stack_passed_arguments = (num_arguments <= kRegisterPassedArguments) ?
2864 0 : num_arguments - kRegisterPassedArguments;
2827 if (OS::ActivationFrameAlignment() > kPointerSize) { 2865 if (OS::ActivationFrameAlignment() > kPointerSize) {
2828 ldr(sp, MemOperand(sp, stack_passed_arguments * kPointerSize)); 2866 ldr(sp, MemOperand(sp, stack_passed_arguments * kPointerSize));
2829 } else { 2867 } else {
2830 add(sp, sp, Operand(stack_passed_arguments * sizeof(kPointerSize))); 2868 add(sp, sp, Operand(stack_passed_arguments * sizeof(kPointerSize)));
2831 } 2869 }
2832 } 2870 }
2833 2871
2834 2872
2835 void MacroAssembler::GetRelocatedValueLocation(Register ldr_location, 2873 void MacroAssembler::GetRelocatedValueLocation(Register ldr_location,
2836 Register result) { 2874 Register result) {
(...skipping 50 matching lines...) Expand 10 before | Expand all | Expand 10 after
2887 void CodePatcher::EmitCondition(Condition cond) { 2925 void CodePatcher::EmitCondition(Condition cond) {
2888 Instr instr = Assembler::instr_at(masm_.pc_); 2926 Instr instr = Assembler::instr_at(masm_.pc_);
2889 instr = (instr & ~kCondMask) | cond; 2927 instr = (instr & ~kCondMask) | cond;
2890 masm_.emit(instr); 2928 masm_.emit(instr);
2891 } 2929 }
2892 2930
2893 2931
2894 } } // namespace v8::internal 2932 } } // namespace v8::internal
2895 2933
2896 #endif // V8_TARGET_ARCH_ARM 2934 #endif // V8_TARGET_ARCH_ARM
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