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1 // Copyright 2012 the V8 project authors. All rights reserved. | 1 // Copyright 2012 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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789 __ add(r1, r1, Operand(r2)); | 789 __ add(r1, r1, Operand(r2)); |
790 // r1 is length of string in characters. | 790 // r1 is length of string in characters. |
791 | 791 |
792 ASSERT_EQ(0, num_saved_registers_ % 2); | 792 ASSERT_EQ(0, num_saved_registers_ % 2); |
793 // Always an even number of capture registers. This allows us to | 793 // Always an even number of capture registers. This allows us to |
794 // unroll the loop once to add an operation between a load of a register | 794 // unroll the loop once to add an operation between a load of a register |
795 // and the following use of that register. | 795 // and the following use of that register. |
796 for (int i = 0; i < num_saved_registers_; i += 2) { | 796 for (int i = 0; i < num_saved_registers_; i += 2) { |
797 __ ldr(r2, register_location(i)); | 797 __ ldr(r2, register_location(i)); |
798 __ ldr(r3, register_location(i + 1)); | 798 __ ldr(r3, register_location(i + 1)); |
799 if (global()) { | 799 if (i == 0 && global_with_zero_length_match()) { |
800 // Keep capture start in r4 for the zero-length check later. | 800 // Keep capture start in r4 for the zero-length check later. |
801 __ mov(r4, r2); | 801 __ mov(r4, r2); |
802 } | 802 } |
803 if (mode_ == UC16) { | 803 if (mode_ == UC16) { |
804 __ add(r2, r1, Operand(r2, ASR, 1)); | 804 __ add(r2, r1, Operand(r2, ASR, 1)); |
805 __ add(r3, r1, Operand(r3, ASR, 1)); | 805 __ add(r3, r1, Operand(r3, ASR, 1)); |
806 } else { | 806 } else { |
807 __ add(r2, r1, Operand(r2)); | 807 __ add(r2, r1, Operand(r2)); |
808 __ add(r3, r1, Operand(r3)); | 808 __ add(r3, r1, Operand(r3)); |
809 } | 809 } |
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827 __ cmp(r1, Operand(num_saved_registers_)); | 827 __ cmp(r1, Operand(num_saved_registers_)); |
828 __ b(lt, &return_r0); | 828 __ b(lt, &return_r0); |
829 | 829 |
830 __ str(r1, MemOperand(frame_pointer(), kNumOutputRegisters)); | 830 __ str(r1, MemOperand(frame_pointer(), kNumOutputRegisters)); |
831 // Advance the location for output. | 831 // Advance the location for output. |
832 __ add(r2, r2, Operand(num_saved_registers_ * kPointerSize)); | 832 __ add(r2, r2, Operand(num_saved_registers_ * kPointerSize)); |
833 __ str(r2, MemOperand(frame_pointer(), kRegisterOutput)); | 833 __ str(r2, MemOperand(frame_pointer(), kRegisterOutput)); |
834 | 834 |
835 // Prepare r0 to initialize registers with its value in the next run. | 835 // Prepare r0 to initialize registers with its value in the next run. |
836 __ ldr(r0, MemOperand(frame_pointer(), kInputStartMinusOne)); | 836 __ ldr(r0, MemOperand(frame_pointer(), kInputStartMinusOne)); |
837 // Special case for zero-length matches. | 837 |
838 // r4: capture start index | 838 if (global_with_zero_length_match()) { |
839 __ cmp(current_input_offset(), r4); | 839 // Special case for zero-length matches. |
840 // Not a zero-length match, restart. | 840 // r4: capture start index |
841 __ b(ne, &load_char_start_regexp); | 841 __ cmp(current_input_offset(), r4); |
842 // Offset from the end is zero if we already reached the end. | 842 // Not a zero-length match, restart. |
843 __ cmp(current_input_offset(), Operand(0)); | 843 __ b(ne, &load_char_start_regexp); |
844 __ b(eq, &exit_label_); | 844 // Offset from the end is zero if we already reached the end. |
845 // Advance current position after a zero-length match. | 845 __ cmp(current_input_offset(), Operand(0)); |
846 __ add(current_input_offset(), | 846 __ b(eq, &exit_label_); |
847 current_input_offset(), | 847 // Advance current position after a zero-length match. |
848 Operand((mode_ == UC16) ? 2 : 1)); | 848 __ add(current_input_offset(), |
| 849 current_input_offset(), |
| 850 Operand((mode_ == UC16) ? 2 : 1)); |
| 851 } |
| 852 |
849 __ b(&load_char_start_regexp); | 853 __ b(&load_char_start_regexp); |
850 } else { | 854 } else { |
851 __ mov(r0, Operand(SUCCESS)); | 855 __ mov(r0, Operand(SUCCESS)); |
852 } | 856 } |
853 } | 857 } |
854 | 858 |
855 // Exit and return r0 | 859 // Exit and return r0 |
856 __ bind(&exit_label_); | 860 __ bind(&exit_label_); |
857 if (global()) { | 861 if (global()) { |
858 __ ldr(r0, MemOperand(frame_pointer(), kSuccessfulCaptures)); | 862 __ ldr(r0, MemOperand(frame_pointer(), kSuccessfulCaptures)); |
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1410 __ ldr(pc, MemOperand(sp, stack_alignment, PostIndex)); | 1414 __ ldr(pc, MemOperand(sp, stack_alignment, PostIndex)); |
1411 } | 1415 } |
1412 | 1416 |
1413 #undef __ | 1417 #undef __ |
1414 | 1418 |
1415 #endif // V8_INTERPRETED_REGEXP | 1419 #endif // V8_INTERPRETED_REGEXP |
1416 | 1420 |
1417 }} // namespace v8::internal | 1421 }} // namespace v8::internal |
1418 | 1422 |
1419 #endif // V8_TARGET_ARCH_ARM | 1423 #endif // V8_TARGET_ARCH_ARM |
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