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| 1 // Copyright 2013 the V8 project authors. All rights reserved. | 1 // Copyright 2013 the V8 project authors. All rights reserved. |
| 2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
| 3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
| 4 | 4 |
| 5 #include "src/compiler/code-generator.h" | 5 #include "src/compiler/code-generator.h" |
| 6 | 6 |
| 7 #include "src/ast/scopes.h" | 7 #include "src/ast/scopes.h" |
| 8 #include "src/compiler/code-generator-impl.h" | 8 #include "src/compiler/code-generator-impl.h" |
| 9 #include "src/compiler/gap-resolver.h" | 9 #include "src/compiler/gap-resolver.h" |
| 10 #include "src/compiler/node-matchers.h" | 10 #include "src/compiler/node-matchers.h" |
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| 780 } | 780 } |
| 781 __ adc(i.InputRegister(1), Operand(i.InputRegister(3))); | 781 __ adc(i.InputRegister(1), Operand(i.InputRegister(3))); |
| 782 if (i.OutputRegister(1).code() != i.InputRegister(1).code()) { | 782 if (i.OutputRegister(1).code() != i.InputRegister(1).code()) { |
| 783 __ Move(i.OutputRegister(1), i.InputRegister(1)); | 783 __ Move(i.OutputRegister(1), i.InputRegister(1)); |
| 784 } | 784 } |
| 785 if (use_temp) { | 785 if (use_temp) { |
| 786 __ Move(i.OutputRegister(0), i.TempRegister(0)); | 786 __ Move(i.OutputRegister(0), i.TempRegister(0)); |
| 787 } | 787 } |
| 788 break; | 788 break; |
| 789 } | 789 } |
| 790 case kX87SubPair: { |
| 791 // i.OutputRegister(0) == i.InputRegister(0) ... left low word. |
| 792 // i.InputRegister(1) ... left high word. |
| 793 // i.InputRegister(2) ... right low word. |
| 794 // i.InputRegister(3) ... right high word. |
| 795 bool use_temp = false; |
| 796 if (i.OutputRegister(0).code() == i.InputRegister(1).code() || |
| 797 i.OutputRegister(0).code() == i.InputRegister(3).code()) { |
| 798 // We cannot write to the output register directly, because it would |
| 799 // overwrite an input for adc. We have to use the temp register. |
| 800 use_temp = true; |
| 801 __ Move(i.TempRegister(0), i.InputRegister(0)); |
| 802 __ sub(i.TempRegister(0), i.InputRegister(2)); |
| 803 } else { |
| 804 __ sub(i.OutputRegister(0), i.InputRegister(2)); |
| 805 } |
| 806 __ sbb(i.InputRegister(1), Operand(i.InputRegister(3))); |
| 807 if (i.OutputRegister(1).code() != i.InputRegister(1).code()) { |
| 808 __ Move(i.OutputRegister(1), i.InputRegister(1)); |
| 809 } |
| 810 if (use_temp) { |
| 811 __ Move(i.OutputRegister(0), i.TempRegister(0)); |
| 812 } |
| 813 break; |
| 814 } |
| 790 case kX87ShlPair: | 815 case kX87ShlPair: |
| 791 if (HasImmediateInput(instr, 2)) { | 816 if (HasImmediateInput(instr, 2)) { |
| 792 __ ShlPair(i.InputRegister(1), i.InputRegister(0), i.InputInt6(2)); | 817 __ ShlPair(i.InputRegister(1), i.InputRegister(0), i.InputInt6(2)); |
| 793 } else { | 818 } else { |
| 794 // Shift has been loaded into CL by the register allocator. | 819 // Shift has been loaded into CL by the register allocator. |
| 795 __ ShlPair_cl(i.InputRegister(1), i.InputRegister(0)); | 820 __ ShlPair_cl(i.InputRegister(1), i.InputRegister(0)); |
| 796 } | 821 } |
| 797 break; | 822 break; |
| 798 case kX87ShrPair: | 823 case kX87ShrPair: |
| 799 if (HasImmediateInput(instr, 2)) { | 824 if (HasImmediateInput(instr, 2)) { |
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| 2379 int padding_size = last_lazy_deopt_pc_ + space_needed - current_pc; | 2404 int padding_size = last_lazy_deopt_pc_ + space_needed - current_pc; |
| 2380 __ Nop(padding_size); | 2405 __ Nop(padding_size); |
| 2381 } | 2406 } |
| 2382 } | 2407 } |
| 2383 | 2408 |
| 2384 #undef __ | 2409 #undef __ |
| 2385 | 2410 |
| 2386 } // namespace compiler | 2411 } // namespace compiler |
| 2387 } // namespace internal | 2412 } // namespace internal |
| 2388 } // namespace v8 | 2413 } // namespace v8 |
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