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Issue 7860035: Merge bleeding edge up to 9192 into the GC branch. (Closed) Base URL: https://v8.googlecode.com/svn/branches/experimental/gc
Patch Set: Created 9 years, 3 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 4382 matching lines...) Expand 10 before | Expand all | Expand 10 after
4393 __ cmp(r0, ip); 4393 __ cmp(r0, ip);
4394 __ b(ne, &runtime); 4394 __ b(ne, &runtime);
4395 // Check that the last match info has space for the capture registers and the 4395 // Check that the last match info has space for the capture registers and the
4396 // additional information. 4396 // additional information.
4397 __ ldr(r0, 4397 __ ldr(r0,
4398 FieldMemOperand(last_match_info_elements, FixedArray::kLengthOffset)); 4398 FieldMemOperand(last_match_info_elements, FixedArray::kLengthOffset));
4399 __ add(r2, r2, Operand(RegExpImpl::kLastMatchOverhead)); 4399 __ add(r2, r2, Operand(RegExpImpl::kLastMatchOverhead));
4400 __ cmp(r2, Operand(r0, ASR, kSmiTagSize)); 4400 __ cmp(r2, Operand(r0, ASR, kSmiTagSize));
4401 __ b(gt, &runtime); 4401 __ b(gt, &runtime);
4402 4402
4403 // Reset offset for possibly sliced string.
4404 __ mov(r9, Operand(0));
4403 // subject: Subject string 4405 // subject: Subject string
4404 // regexp_data: RegExp data (FixedArray) 4406 // regexp_data: RegExp data (FixedArray)
4405 // Check the representation and encoding of the subject string. 4407 // Check the representation and encoding of the subject string.
4406 Label seq_string; 4408 Label seq_string;
4407 __ ldr(r0, FieldMemOperand(subject, HeapObject::kMapOffset)); 4409 __ ldr(r0, FieldMemOperand(subject, HeapObject::kMapOffset));
4408 __ ldrb(r0, FieldMemOperand(r0, Map::kInstanceTypeOffset)); 4410 __ ldrb(r0, FieldMemOperand(r0, Map::kInstanceTypeOffset));
4409 // First check for flat string. 4411 // First check for flat string.
4410 __ tst(r0, Operand(kIsNotStringMask | kStringRepresentationMask)); 4412 __ and_(r1, r0, Operand(kIsNotStringMask | kStringRepresentationMask), SetCC);
4411 STATIC_ASSERT((kStringTag | kSeqStringTag) == 0); 4413 STATIC_ASSERT((kStringTag | kSeqStringTag) == 0);
4412 __ b(eq, &seq_string); 4414 __ b(eq, &seq_string);
4413 4415
4414 // subject: Subject string 4416 // subject: Subject string
4415 // regexp_data: RegExp data (FixedArray) 4417 // regexp_data: RegExp data (FixedArray)
4416 // Check for flat cons string. 4418 // Check for flat cons string or sliced string.
4417 // A flat cons string is a cons string where the second part is the empty 4419 // A flat cons string is a cons string where the second part is the empty
4418 // string. In that case the subject string is just the first part of the cons 4420 // string. In that case the subject string is just the first part of the cons
4419 // string. Also in this case the first part of the cons string is known to be 4421 // string. Also in this case the first part of the cons string is known to be
4420 // a sequential string or an external string. 4422 // a sequential string or an external string.
4421 STATIC_ASSERT(kExternalStringTag !=0); 4423 // In the case of a sliced string its offset has to be taken into account.
4422 STATIC_ASSERT((kConsStringTag & kExternalStringTag) == 0); 4424 Label cons_string, check_encoding;
4423 __ tst(r0, Operand(kIsNotStringMask | kExternalStringTag)); 4425 STATIC_ASSERT(kConsStringTag < kExternalStringTag);
4424 __ b(ne, &runtime); 4426 STATIC_ASSERT(kSlicedStringTag > kExternalStringTag);
4427 __ cmp(r1, Operand(kExternalStringTag));
4428 __ b(lt, &cons_string);
4429 __ b(eq, &runtime);
4430
4431 // String is sliced.
4432 __ ldr(r9, FieldMemOperand(subject, SlicedString::kOffsetOffset));
4433 __ mov(r9, Operand(r9, ASR, kSmiTagSize));
4434 __ ldr(subject, FieldMemOperand(subject, SlicedString::kParentOffset));
4435 // r9: offset of sliced string, smi-tagged.
4436 __ jmp(&check_encoding);
4437 // String is a cons string, check whether it is flat.
4438 __ bind(&cons_string);
4425 __ ldr(r0, FieldMemOperand(subject, ConsString::kSecondOffset)); 4439 __ ldr(r0, FieldMemOperand(subject, ConsString::kSecondOffset));
4426 __ LoadRoot(r1, Heap::kEmptyStringRootIndex); 4440 __ LoadRoot(r1, Heap::kEmptyStringRootIndex);
4427 __ cmp(r0, r1); 4441 __ cmp(r0, r1);
4428 __ b(ne, &runtime); 4442 __ b(ne, &runtime);
4429 __ ldr(subject, FieldMemOperand(subject, ConsString::kFirstOffset)); 4443 __ ldr(subject, FieldMemOperand(subject, ConsString::kFirstOffset));
4444 // Is first part of cons or parent of slice a flat string?
4445 __ bind(&check_encoding);
4430 __ ldr(r0, FieldMemOperand(subject, HeapObject::kMapOffset)); 4446 __ ldr(r0, FieldMemOperand(subject, HeapObject::kMapOffset));
4431 __ ldrb(r0, FieldMemOperand(r0, Map::kInstanceTypeOffset)); 4447 __ ldrb(r0, FieldMemOperand(r0, Map::kInstanceTypeOffset));
4432 // Is first part a flat string?
4433 STATIC_ASSERT(kSeqStringTag == 0); 4448 STATIC_ASSERT(kSeqStringTag == 0);
4434 __ tst(r0, Operand(kStringRepresentationMask)); 4449 __ tst(r0, Operand(kStringRepresentationMask));
4435 __ b(ne, &runtime); 4450 __ b(ne, &runtime);
4436
4437 __ bind(&seq_string); 4451 __ bind(&seq_string);
4438 // subject: Subject string 4452 // subject: Subject string
4439 // regexp_data: RegExp data (FixedArray) 4453 // regexp_data: RegExp data (FixedArray)
4440 // r0: Instance type of subject string 4454 // r0: Instance type of subject string
4441 STATIC_ASSERT(4 == kAsciiStringTag); 4455 STATIC_ASSERT(4 == kAsciiStringTag);
4442 STATIC_ASSERT(kTwoByteStringTag == 0); 4456 STATIC_ASSERT(kTwoByteStringTag == 0);
4443 // Find the code object based on the assumptions above. 4457 // Find the code object based on the assumptions above.
4444 __ and_(r0, r0, Operand(kStringEncodingMask)); 4458 __ and_(r0, r0, Operand(kStringEncodingMask));
4445 __ mov(r3, Operand(r0, ASR, 2), SetCC); 4459 __ mov(r3, Operand(r0, ASR, 2), SetCC);
4446 __ ldr(r7, FieldMemOperand(regexp_data, JSRegExp::kDataAsciiCodeOffset), ne); 4460 __ ldr(r7, FieldMemOperand(regexp_data, JSRegExp::kDataAsciiCodeOffset), ne);
(...skipping 45 matching lines...) Expand 10 before | Expand all | Expand 10 after
4492 __ add(r0, r0, Operand(r2)); 4506 __ add(r0, r0, Operand(r2));
4493 __ str(r0, MemOperand(sp, 2 * kPointerSize)); 4507 __ str(r0, MemOperand(sp, 2 * kPointerSize));
4494 4508
4495 // Argument 5 (sp[4]): static offsets vector buffer. 4509 // Argument 5 (sp[4]): static offsets vector buffer.
4496 __ mov(r0, 4510 __ mov(r0,
4497 Operand(ExternalReference::address_of_static_offsets_vector(isolate))); 4511 Operand(ExternalReference::address_of_static_offsets_vector(isolate)));
4498 __ str(r0, MemOperand(sp, 1 * kPointerSize)); 4512 __ str(r0, MemOperand(sp, 1 * kPointerSize));
4499 4513
4500 // For arguments 4 and 3 get string length, calculate start of string data and 4514 // For arguments 4 and 3 get string length, calculate start of string data and
4501 // calculate the shift of the index (0 for ASCII and 1 for two byte). 4515 // calculate the shift of the index (0 for ASCII and 1 for two byte).
4502 __ ldr(r0, FieldMemOperand(subject, String::kLengthOffset));
4503 __ mov(r0, Operand(r0, ASR, kSmiTagSize));
4504 STATIC_ASSERT(SeqAsciiString::kHeaderSize == SeqTwoByteString::kHeaderSize); 4516 STATIC_ASSERT(SeqAsciiString::kHeaderSize == SeqTwoByteString::kHeaderSize);
4505 __ add(r9, subject, Operand(SeqAsciiString::kHeaderSize - kHeapObjectTag)); 4517 __ add(r8, subject, Operand(SeqAsciiString::kHeaderSize - kHeapObjectTag));
4506 __ eor(r3, r3, Operand(1)); 4518 __ eor(r3, r3, Operand(1));
4507 // Argument 4 (r3): End of string data 4519 // Load the length from the original subject string from the previous stack
4508 // Argument 3 (r2): Start of string data 4520 // frame. Therefore we have to use fp, which points exactly to two pointer
4521 // sizes below the previous sp. (Because creating a new stack frame pushes
4522 // the previous fp onto the stack and moves up sp by 2 * kPointerSize.)
4523 __ ldr(subject, MemOperand(fp, kSubjectOffset + 2 * kPointerSize));
4524 // If slice offset is not 0, load the length from the original sliced string.
4525 // Argument 4, r3: End of string data
4526 // Argument 3, r2: Start of string data
4527 // Prepare start and end index of the input.
4528 __ add(r9, r8, Operand(r9, LSL, r3));
4509 __ add(r2, r9, Operand(r1, LSL, r3)); 4529 __ add(r2, r9, Operand(r1, LSL, r3));
4510 __ add(r3, r9, Operand(r0, LSL, r3)); 4530
4531 __ ldr(r8, FieldMemOperand(subject, String::kLengthOffset));
4532 __ mov(r8, Operand(r8, ASR, kSmiTagSize));
4533 __ add(r3, r9, Operand(r8, LSL, r3));
4511 4534
4512 // Argument 2 (r1): Previous index. 4535 // Argument 2 (r1): Previous index.
4513 // Already there 4536 // Already there
4514 4537
4515 // Argument 1 (r0): Subject string. 4538 // Argument 1 (r0): Subject string.
4516 __ mov(r0, subject); 4539 __ mov(r0, subject);
4517 4540
4518 // Locate the code entry and call it. 4541 // Locate the code entry and call it.
4519 __ add(r7, r7, Operand(Code::kHeaderSize - kHeapObjectTag)); 4542 __ add(r7, r7, Operand(Code::kHeaderSize - kHeapObjectTag));
4520 DirectCEntryStub stub; 4543 DirectCEntryStub stub;
(...skipping 25 matching lines...) Expand all
4546 __ ldr(r1, MemOperand(r1, 0)); 4569 __ ldr(r1, MemOperand(r1, 0));
4547 __ mov(r2, Operand(ExternalReference(Isolate::k_pending_exception_address, 4570 __ mov(r2, Operand(ExternalReference(Isolate::k_pending_exception_address,
4548 isolate))); 4571 isolate)));
4549 __ ldr(r0, MemOperand(r2, 0)); 4572 __ ldr(r0, MemOperand(r2, 0));
4550 __ cmp(r0, r1); 4573 __ cmp(r0, r1);
4551 __ b(eq, &runtime); 4574 __ b(eq, &runtime);
4552 4575
4553 __ str(r1, MemOperand(r2, 0)); // Clear pending exception. 4576 __ str(r1, MemOperand(r2, 0)); // Clear pending exception.
4554 4577
4555 // Check if the exception is a termination. If so, throw as uncatchable. 4578 // Check if the exception is a termination. If so, throw as uncatchable.
4556 __ LoadRoot(ip, Heap::kTerminationExceptionRootIndex); 4579 __ CompareRoot(r0, Heap::kTerminationExceptionRootIndex);
4557 __ cmp(r0, ip); 4580
4558 Label termination_exception; 4581 Label termination_exception;
4559 __ b(eq, &termination_exception); 4582 __ b(eq, &termination_exception);
4560 4583
4561 __ Throw(r0); // Expects thrown value in r0. 4584 __ Throw(r0); // Expects thrown value in r0.
4562 4585
4563 __ bind(&termination_exception); 4586 __ bind(&termination_exception);
4564 __ ThrowUncatchable(TERMINATION, r0); // Expects thrown value in r0. 4587 __ ThrowUncatchable(TERMINATION, r0); // Expects thrown value in r0.
4565 4588
4566 __ bind(&failure); 4589 __ bind(&failure);
4567 // For failure and exception return null. 4590 // For failure and exception return null.
(...skipping 270 matching lines...) Expand 10 before | Expand all | Expand 10 after
4838 | IncludeNumberCompareField::encode(include_number_compare_) 4861 | IncludeNumberCompareField::encode(include_number_compare_)
4839 | IncludeSmiCompareField::encode(include_smi_compare_); 4862 | IncludeSmiCompareField::encode(include_smi_compare_);
4840 } 4863 }
4841 4864
4842 4865
4843 // StringCharCodeAtGenerator 4866 // StringCharCodeAtGenerator
4844 void StringCharCodeAtGenerator::GenerateFast(MacroAssembler* masm) { 4867 void StringCharCodeAtGenerator::GenerateFast(MacroAssembler* masm) {
4845 Label flat_string; 4868 Label flat_string;
4846 Label ascii_string; 4869 Label ascii_string;
4847 Label got_char_code; 4870 Label got_char_code;
4871 Label sliced_string;
4848 4872
4849 // If the receiver is a smi trigger the non-string case. 4873 // If the receiver is a smi trigger the non-string case.
4850 __ JumpIfSmi(object_, receiver_not_string_); 4874 __ JumpIfSmi(object_, receiver_not_string_);
4851 4875
4852 // Fetch the instance type of the receiver into result register. 4876 // Fetch the instance type of the receiver into result register.
4853 __ ldr(result_, FieldMemOperand(object_, HeapObject::kMapOffset)); 4877 __ ldr(result_, FieldMemOperand(object_, HeapObject::kMapOffset));
4854 __ ldrb(result_, FieldMemOperand(result_, Map::kInstanceTypeOffset)); 4878 __ ldrb(result_, FieldMemOperand(result_, Map::kInstanceTypeOffset));
4855 // If the receiver is not a string trigger the non-string case. 4879 // If the receiver is not a string trigger the non-string case.
4856 __ tst(result_, Operand(kIsNotStringMask)); 4880 __ tst(result_, Operand(kIsNotStringMask));
4857 __ b(ne, receiver_not_string_); 4881 __ b(ne, receiver_not_string_);
4858 4882
4859 // If the index is non-smi trigger the non-smi case. 4883 // If the index is non-smi trigger the non-smi case.
4860 __ JumpIfNotSmi(index_, &index_not_smi_); 4884 __ JumpIfNotSmi(index_, &index_not_smi_);
4861 4885
4862 // Put smi-tagged index into scratch register. 4886 // Put smi-tagged index into scratch register.
4863 __ mov(scratch_, index_); 4887 __ mov(scratch_, index_);
4864 __ bind(&got_smi_index_); 4888 __ bind(&got_smi_index_);
4865 4889
4866 // Check for index out of range. 4890 // Check for index out of range.
4867 __ ldr(ip, FieldMemOperand(object_, String::kLengthOffset)); 4891 __ ldr(ip, FieldMemOperand(object_, String::kLengthOffset));
4868 __ cmp(ip, Operand(scratch_)); 4892 __ cmp(ip, Operand(scratch_));
4869 __ b(ls, index_out_of_range_); 4893 __ b(ls, index_out_of_range_);
4870 4894
4871 // We need special handling for non-flat strings. 4895 // We need special handling for non-flat strings.
4872 STATIC_ASSERT(kSeqStringTag == 0); 4896 STATIC_ASSERT(kSeqStringTag == 0);
4873 __ tst(result_, Operand(kStringRepresentationMask)); 4897 __ tst(result_, Operand(kStringRepresentationMask));
4874 __ b(eq, &flat_string); 4898 __ b(eq, &flat_string);
4875 4899
4876 // Handle non-flat strings. 4900 // Handle non-flat strings.
4877 __ tst(result_, Operand(kIsConsStringMask)); 4901 __ and_(result_, result_, Operand(kStringRepresentationMask));
4902 STATIC_ASSERT(kConsStringTag < kExternalStringTag);
4903 STATIC_ASSERT(kSlicedStringTag > kExternalStringTag);
4904 __ cmp(result_, Operand(kExternalStringTag));
4905 __ b(gt, &sliced_string);
4878 __ b(eq, &call_runtime_); 4906 __ b(eq, &call_runtime_);
4879 4907
4880 // ConsString. 4908 // ConsString.
4881 // Check whether the right hand side is the empty string (i.e. if 4909 // Check whether the right hand side is the empty string (i.e. if
4882 // this is really a flat string in a cons string). If that is not 4910 // this is really a flat string in a cons string). If that is not
4883 // the case we would rather go to the runtime system now to flatten 4911 // the case we would rather go to the runtime system now to flatten
4884 // the string. 4912 // the string.
4913 Label assure_seq_string;
4885 __ ldr(result_, FieldMemOperand(object_, ConsString::kSecondOffset)); 4914 __ ldr(result_, FieldMemOperand(object_, ConsString::kSecondOffset));
4886 __ LoadRoot(ip, Heap::kEmptyStringRootIndex); 4915 __ LoadRoot(ip, Heap::kEmptyStringRootIndex);
4887 __ cmp(result_, Operand(ip)); 4916 __ cmp(result_, Operand(ip));
4888 __ b(ne, &call_runtime_); 4917 __ b(ne, &call_runtime_);
4889 // Get the first of the two strings and load its instance type. 4918 // Get the first of the two strings and load its instance type.
4890 __ ldr(object_, FieldMemOperand(object_, ConsString::kFirstOffset)); 4919 __ ldr(object_, FieldMemOperand(object_, ConsString::kFirstOffset));
4920 __ jmp(&assure_seq_string);
4921
4922 // SlicedString, unpack and add offset.
4923 __ bind(&sliced_string);
4924 __ ldr(result_, FieldMemOperand(object_, SlicedString::kOffsetOffset));
4925 __ add(scratch_, scratch_, result_);
4926 __ ldr(object_, FieldMemOperand(object_, SlicedString::kParentOffset));
4927
4928 // Assure that we are dealing with a sequential string. Go to runtime if not.
4929 __ bind(&assure_seq_string);
4891 __ ldr(result_, FieldMemOperand(object_, HeapObject::kMapOffset)); 4930 __ ldr(result_, FieldMemOperand(object_, HeapObject::kMapOffset));
4892 __ ldrb(result_, FieldMemOperand(result_, Map::kInstanceTypeOffset)); 4931 __ ldrb(result_, FieldMemOperand(result_, Map::kInstanceTypeOffset));
4893 // If the first cons component is also non-flat, then go to runtime. 4932 // Check that parent is not an external string. Go to runtime otherwise.
4894 STATIC_ASSERT(kSeqStringTag == 0); 4933 STATIC_ASSERT(kSeqStringTag == 0);
4895 __ tst(result_, Operand(kStringRepresentationMask)); 4934 __ tst(result_, Operand(kStringRepresentationMask));
4896 __ b(ne, &call_runtime_); 4935 __ b(ne, &call_runtime_);
4897 4936
4898 // Check for 1-byte or 2-byte string. 4937 // Check for 1-byte or 2-byte string.
4899 __ bind(&flat_string); 4938 __ bind(&flat_string);
4900 STATIC_ASSERT(kAsciiStringTag != 0); 4939 STATIC_ASSERT((kStringEncodingMask & kAsciiStringTag) != 0);
4940 STATIC_ASSERT((kStringEncodingMask & kTwoByteStringTag) == 0);
4901 __ tst(result_, Operand(kStringEncodingMask)); 4941 __ tst(result_, Operand(kStringEncodingMask));
4902 __ b(ne, &ascii_string); 4942 __ b(ne, &ascii_string);
4903 4943
4904 // 2-byte string. 4944 // 2-byte string.
4905 // Load the 2-byte character code into the result register. We can 4945 // Load the 2-byte character code into the result register. We can
4906 // add without shifting since the smi tag size is the log2 of the 4946 // add without shifting since the smi tag size is the log2 of the
4907 // number of bytes in a two-byte character. 4947 // number of bytes in a two-byte character.
4908 STATIC_ASSERT(kSmiTag == 0 && kSmiTagSize == 1 && kSmiShiftSize == 0); 4948 STATIC_ASSERT(kSmiTag == 0 && kSmiTagSize == 1 && kSmiShiftSize == 0);
4909 __ add(scratch_, object_, Operand(scratch_)); 4949 __ add(scratch_, object_, Operand(scratch_));
4910 __ ldrh(result_, FieldMemOperand(scratch_, SeqTwoByteString::kHeaderSize)); 4950 __ ldrh(result_, FieldMemOperand(scratch_, SeqTwoByteString::kHeaderSize));
(...skipping 552 matching lines...) Expand 10 before | Expand all | Expand 10 after
5463 // 0 <= from <= to <= string.length. 5503 // 0 <= from <= to <= string.length.
5464 // If any of these assumptions fail, we call the runtime system. 5504 // If any of these assumptions fail, we call the runtime system.
5465 5505
5466 static const int kToOffset = 0 * kPointerSize; 5506 static const int kToOffset = 0 * kPointerSize;
5467 static const int kFromOffset = 1 * kPointerSize; 5507 static const int kFromOffset = 1 * kPointerSize;
5468 static const int kStringOffset = 2 * kPointerSize; 5508 static const int kStringOffset = 2 * kPointerSize;
5469 5509
5470 // Check bounds and smi-ness. 5510 // Check bounds and smi-ness.
5471 Register to = r6; 5511 Register to = r6;
5472 Register from = r7; 5512 Register from = r7;
5513
5473 __ Ldrd(to, from, MemOperand(sp, kToOffset)); 5514 __ Ldrd(to, from, MemOperand(sp, kToOffset));
5474 STATIC_ASSERT(kFromOffset == kToOffset + 4); 5515 STATIC_ASSERT(kFromOffset == kToOffset + 4);
5475 STATIC_ASSERT(kSmiTag == 0); 5516 STATIC_ASSERT(kSmiTag == 0);
5476 STATIC_ASSERT(kSmiTagSize + kSmiShiftSize == 1); 5517 STATIC_ASSERT(kSmiTagSize + kSmiShiftSize == 1);
5518
5477 // I.e., arithmetic shift right by one un-smi-tags. 5519 // I.e., arithmetic shift right by one un-smi-tags.
5478 __ mov(r2, Operand(to, ASR, 1), SetCC); 5520 __ mov(r2, Operand(to, ASR, 1), SetCC);
5479 __ mov(r3, Operand(from, ASR, 1), SetCC, cc); 5521 __ mov(r3, Operand(from, ASR, 1), SetCC, cc);
5480 // If either to or from had the smi tag bit set, then carry is set now. 5522 // If either to or from had the smi tag bit set, then carry is set now.
5481 __ b(cs, &runtime); // Either "from" or "to" is not a smi. 5523 __ b(cs, &runtime); // Either "from" or "to" is not a smi.
5482 __ b(mi, &runtime); // From is negative. 5524 __ b(mi, &runtime); // From is negative.
5483 5525
5484 // Both to and from are smis. 5526 // Both to and from are smis.
5485
5486 __ sub(r2, r2, Operand(r3), SetCC); 5527 __ sub(r2, r2, Operand(r3), SetCC);
5487 __ b(mi, &runtime); // Fail if from > to. 5528 __ b(mi, &runtime); // Fail if from > to.
5488 // Special handling of sub-strings of length 1 and 2. One character strings 5529 // Special handling of sub-strings of length 1 and 2. One character strings
5489 // are handled in the runtime system (looked up in the single character 5530 // are handled in the runtime system (looked up in the single character
5490 // cache). Two character strings are looked for in the symbol cache. 5531 // cache). Two character strings are looked for in the symbol cache in
5532 // generated code.
5491 __ cmp(r2, Operand(2)); 5533 __ cmp(r2, Operand(2));
5492 __ b(lt, &runtime); 5534 __ b(lt, &runtime);
5493 5535
5494 // r2: length 5536 // r2: result string length
5495 // r3: from index (untaged smi) 5537 // r3: from index (untagged smi)
5496 // r6 (a.k.a. to): to (smi) 5538 // r6 (a.k.a. to): to (smi)
5497 // r7 (a.k.a. from): from offset (smi) 5539 // r7 (a.k.a. from): from offset (smi)
5498
5499 // Make sure first argument is a sequential (or flat) string. 5540 // Make sure first argument is a sequential (or flat) string.
5500 __ ldr(r5, MemOperand(sp, kStringOffset)); 5541 __ ldr(r0, MemOperand(sp, kStringOffset));
5501 STATIC_ASSERT(kSmiTag == 0); 5542 STATIC_ASSERT(kSmiTag == 0);
5502 __ JumpIfSmi(r5, &runtime); 5543 __ JumpIfSmi(r0, &runtime);
5503 Condition is_string = masm->IsObjectStringType(r5, r1); 5544 Condition is_string = masm->IsObjectStringType(r0, r1);
5504 __ b(NegateCondition(is_string), &runtime); 5545 __ b(NegateCondition(is_string), &runtime);
5505 5546
5547 // Short-cut for the case of trivial substring.
5548 Label return_r0;
5549 // r0: original string
5550 // r2: result string length
5551 __ ldr(r4, FieldMemOperand(r0, String::kLengthOffset));
5552 __ cmp(r2, Operand(r4, ASR, 1));
5553 __ b(eq, &return_r0);
5554
5555 Label create_slice;
5556 if (FLAG_string_slices) {
5557 __ cmp(r2, Operand(SlicedString::kMinLength));
5558 __ b(ge, &create_slice);
5559 }
5560
5561 // r0: original string
5506 // r1: instance type 5562 // r1: instance type
5507 // r2: length 5563 // r2: result string length
5508 // r3: from index (untagged smi) 5564 // r3: from index (untagged smi)
5509 // r5: string
5510 // r6 (a.k.a. to): to (smi) 5565 // r6 (a.k.a. to): to (smi)
5511 // r7 (a.k.a. from): from offset (smi) 5566 // r7 (a.k.a. from): from offset (smi)
5512 Label seq_string; 5567 Label seq_string;
5513 __ and_(r4, r1, Operand(kStringRepresentationMask)); 5568 __ and_(r4, r1, Operand(kStringRepresentationMask));
5514 STATIC_ASSERT(kSeqStringTag < kConsStringTag); 5569 STATIC_ASSERT(kSeqStringTag < kConsStringTag);
5515 STATIC_ASSERT(kConsStringTag < kExternalStringTag); 5570 STATIC_ASSERT(kConsStringTag < kExternalStringTag);
5571 STATIC_ASSERT(kConsStringTag < kSlicedStringTag);
5516 __ cmp(r4, Operand(kConsStringTag)); 5572 __ cmp(r4, Operand(kConsStringTag));
5517 __ b(gt, &runtime); // External strings go to runtime. 5573 __ b(gt, &runtime); // Slices and external strings go to runtime.
5518 __ b(lt, &seq_string); // Sequential strings are handled directly. 5574 __ b(lt, &seq_string); // Sequential strings are handled directly.
5519 5575
5520 // Cons string. Try to recurse (once) on the first substring. 5576 // Cons string. Try to recurse (once) on the first substring.
5521 // (This adds a little more generality than necessary to handle flattened 5577 // (This adds a little more generality than necessary to handle flattened
5522 // cons strings, but not much). 5578 // cons strings, but not much).
5523 __ ldr(r5, FieldMemOperand(r5, ConsString::kFirstOffset)); 5579 __ ldr(r0, FieldMemOperand(r0, ConsString::kFirstOffset));
5524 __ ldr(r4, FieldMemOperand(r5, HeapObject::kMapOffset)); 5580 __ ldr(r4, FieldMemOperand(r0, HeapObject::kMapOffset));
5525 __ ldrb(r1, FieldMemOperand(r4, Map::kInstanceTypeOffset)); 5581 __ ldrb(r1, FieldMemOperand(r4, Map::kInstanceTypeOffset));
5526 __ tst(r1, Operand(kStringRepresentationMask)); 5582 __ tst(r1, Operand(kStringRepresentationMask));
5527 STATIC_ASSERT(kSeqStringTag == 0); 5583 STATIC_ASSERT(kSeqStringTag == 0);
5528 __ b(ne, &runtime); // Cons and External strings go to runtime. 5584 __ b(ne, &runtime); // Cons, slices and external strings go to runtime.
5529 5585
5530 // Definitly a sequential string. 5586 // Definitly a sequential string.
5531 __ bind(&seq_string); 5587 __ bind(&seq_string);
5532 5588
5533 // r1: instance type. 5589 // r0: original string
5534 // r2: length 5590 // r1: instance type
5535 // r3: from index (untaged smi) 5591 // r2: result string length
5536 // r5: string 5592 // r3: from index (untagged smi)
5537 // r6 (a.k.a. to): to (smi) 5593 // r6 (a.k.a. to): to (smi)
5538 // r7 (a.k.a. from): from offset (smi) 5594 // r7 (a.k.a. from): from offset (smi)
5539 __ ldr(r4, FieldMemOperand(r5, String::kLengthOffset)); 5595 __ ldr(r4, FieldMemOperand(r0, String::kLengthOffset));
5540 __ cmp(r4, Operand(to)); 5596 __ cmp(r4, Operand(to));
5541 __ b(lt, &runtime); // Fail if to > length. 5597 __ b(lt, &runtime); // Fail if to > length.
5542 to = no_reg; 5598 to = no_reg;
5543 5599
5544 // r1: instance type. 5600 // r0: original string or left hand side of the original cons string.
5545 // r2: result string length. 5601 // r1: instance type
5546 // r3: from index (untaged smi) 5602 // r2: result string length
5547 // r5: string. 5603 // r3: from index (untagged smi)
5548 // r7 (a.k.a. from): from offset (smi) 5604 // r7 (a.k.a. from): from offset (smi)
5549 // Check for flat ASCII string. 5605 // Check for flat ASCII string.
5550 Label non_ascii_flat; 5606 Label non_ascii_flat;
5551 __ tst(r1, Operand(kStringEncodingMask)); 5607 __ tst(r1, Operand(kStringEncodingMask));
5552 STATIC_ASSERT(kTwoByteStringTag == 0); 5608 STATIC_ASSERT(kTwoByteStringTag == 0);
5553 __ b(eq, &non_ascii_flat); 5609 __ b(eq, &non_ascii_flat);
5554 5610
5555 Label result_longer_than_two; 5611 Label result_longer_than_two;
5556 __ cmp(r2, Operand(2)); 5612 __ cmp(r2, Operand(2));
5557 __ b(gt, &result_longer_than_two); 5613 __ b(gt, &result_longer_than_two);
5558 5614
5559 // Sub string of length 2 requested. 5615 // Sub string of length 2 requested.
5560 // Get the two characters forming the sub string. 5616 // Get the two characters forming the sub string.
5561 __ add(r5, r5, Operand(r3)); 5617 __ add(r0, r0, Operand(r3));
5562 __ ldrb(r3, FieldMemOperand(r5, SeqAsciiString::kHeaderSize)); 5618 __ ldrb(r3, FieldMemOperand(r0, SeqAsciiString::kHeaderSize));
5563 __ ldrb(r4, FieldMemOperand(r5, SeqAsciiString::kHeaderSize + 1)); 5619 __ ldrb(r4, FieldMemOperand(r0, SeqAsciiString::kHeaderSize + 1));
5564 5620
5565 // Try to lookup two character string in symbol table. 5621 // Try to lookup two character string in symbol table.
5566 Label make_two_character_string; 5622 Label make_two_character_string;
5567 StringHelper::GenerateTwoCharacterSymbolTableProbe( 5623 StringHelper::GenerateTwoCharacterSymbolTableProbe(
5568 masm, r3, r4, r1, r5, r6, r7, r9, &make_two_character_string); 5624 masm, r3, r4, r1, r5, r6, r7, r9, &make_two_character_string);
5569 Counters* counters = masm->isolate()->counters(); 5625 Counters* counters = masm->isolate()->counters();
5570 __ IncrementCounter(counters->sub_string_native(), 1, r3, r4); 5626 __ jmp(&return_r0);
5571 __ add(sp, sp, Operand(3 * kPointerSize));
5572 __ Ret();
5573 5627
5574 // r2: result string length. 5628 // r2: result string length.
5575 // r3: two characters combined into halfword in little endian byte order. 5629 // r3: two characters combined into halfword in little endian byte order.
5576 __ bind(&make_two_character_string); 5630 __ bind(&make_two_character_string);
5577 __ AllocateAsciiString(r0, r2, r4, r5, r9, &runtime); 5631 __ AllocateAsciiString(r0, r2, r4, r5, r9, &runtime);
5578 __ strh(r3, FieldMemOperand(r0, SeqAsciiString::kHeaderSize)); 5632 __ strh(r3, FieldMemOperand(r0, SeqAsciiString::kHeaderSize));
5579 __ IncrementCounter(counters->sub_string_native(), 1, r3, r4); 5633 __ jmp(&return_r0);
5580 __ add(sp, sp, Operand(3 * kPointerSize));
5581 __ Ret();
5582 5634
5583 __ bind(&result_longer_than_two); 5635 __ bind(&result_longer_than_two);
5584 5636
5637 // Locate 'from' character of string.
5638 __ add(r5, r0, Operand(SeqAsciiString::kHeaderSize - kHeapObjectTag));
5639 __ add(r5, r5, Operand(from, ASR, 1));
5640
5585 // Allocate the result. 5641 // Allocate the result.
5586 __ AllocateAsciiString(r0, r2, r3, r4, r1, &runtime); 5642 __ AllocateAsciiString(r0, r2, r3, r4, r1, &runtime);
5587 5643
5588 // r0: result string. 5644 // r0: result string
5589 // r2: result string length. 5645 // r2: result string length
5590 // r5: string. 5646 // r5: first character of substring to copy
5591 // r7 (a.k.a. from): from offset (smi) 5647 // r7 (a.k.a. from): from offset (smi)
5592 // Locate first character of result. 5648 // Locate first character of result.
5593 __ add(r1, r0, Operand(SeqAsciiString::kHeaderSize - kHeapObjectTag)); 5649 __ add(r1, r0, Operand(SeqAsciiString::kHeaderSize - kHeapObjectTag));
5594 // Locate 'from' character of string.
5595 __ add(r5, r5, Operand(SeqAsciiString::kHeaderSize - kHeapObjectTag));
5596 __ add(r5, r5, Operand(from, ASR, 1));
5597 5650
5598 // r0: result string. 5651 // r0: result string
5599 // r1: first character of result string. 5652 // r1: first character of result string
5600 // r2: result string length. 5653 // r2: result string length
5601 // r5: first character of sub string to copy. 5654 // r5: first character of substring to copy
5602 STATIC_ASSERT((SeqAsciiString::kHeaderSize & kObjectAlignmentMask) == 0); 5655 STATIC_ASSERT((SeqAsciiString::kHeaderSize & kObjectAlignmentMask) == 0);
5603 StringHelper::GenerateCopyCharactersLong(masm, r1, r5, r2, r3, r4, r6, r7, r9, 5656 StringHelper::GenerateCopyCharactersLong(masm, r1, r5, r2, r3, r4, r6, r7, r9,
5604 COPY_ASCII | DEST_ALWAYS_ALIGNED); 5657 COPY_ASCII | DEST_ALWAYS_ALIGNED);
5605 __ IncrementCounter(counters->sub_string_native(), 1, r3, r4); 5658 __ jmp(&return_r0);
5606 __ add(sp, sp, Operand(3 * kPointerSize));
5607 __ Ret();
5608 5659
5609 __ bind(&non_ascii_flat); 5660 __ bind(&non_ascii_flat);
5610 // r2: result string length. 5661 // r0: original string
5611 // r5: string. 5662 // r2: result string length
5612 // r7 (a.k.a. from): from offset (smi) 5663 // r7 (a.k.a. from): from offset (smi)
5613 // Check for flat two byte string. 5664 // Check for flat two byte string.
5614 5665
5666 // Locate 'from' character of string.
5667 __ add(r5, r0, Operand(SeqTwoByteString::kHeaderSize - kHeapObjectTag));
5668 // As "from" is a smi it is 2 times the value which matches the size of a two
5669 // byte character.
5670 STATIC_ASSERT(kSmiTagSize == 1 && kSmiTag == 0);
5671 __ add(r5, r5, Operand(from));
5672
5615 // Allocate the result. 5673 // Allocate the result.
5616 __ AllocateTwoByteString(r0, r2, r1, r3, r4, &runtime); 5674 __ AllocateTwoByteString(r0, r2, r1, r3, r4, &runtime);
5617 5675
5618 // r0: result string. 5676 // r0: result string
5619 // r2: result string length. 5677 // r2: result string length
5620 // r5: string. 5678 // r5: first character of substring to copy
5621 // Locate first character of result. 5679 // Locate first character of result.
5622 __ add(r1, r0, Operand(SeqTwoByteString::kHeaderSize - kHeapObjectTag)); 5680 __ add(r1, r0, Operand(SeqTwoByteString::kHeaderSize - kHeapObjectTag));
5623 // Locate 'from' character of string. 5681
5624 __ add(r5, r5, Operand(SeqTwoByteString::kHeaderSize - kHeapObjectTag));
5625 // As "from" is a smi it is 2 times the value which matches the size of a two
5626 // byte character.
5627 __ add(r5, r5, Operand(from));
5628 from = no_reg; 5682 from = no_reg;
5629 5683
5630 // r0: result string. 5684 // r0: result string.
5631 // r1: first character of result. 5685 // r1: first character of result.
5632 // r2: result length. 5686 // r2: result length.
5633 // r5: first character of string to copy. 5687 // r5: first character of substring to copy.
5634 STATIC_ASSERT((SeqTwoByteString::kHeaderSize & kObjectAlignmentMask) == 0); 5688 STATIC_ASSERT((SeqTwoByteString::kHeaderSize & kObjectAlignmentMask) == 0);
5635 StringHelper::GenerateCopyCharactersLong( 5689 StringHelper::GenerateCopyCharactersLong(
5636 masm, r1, r5, r2, r3, r4, r6, r7, r9, DEST_ALWAYS_ALIGNED); 5690 masm, r1, r5, r2, r3, r4, r6, r7, r9, DEST_ALWAYS_ALIGNED);
5691 __ jmp(&return_r0);
5692
5693 if (FLAG_string_slices) {
5694 __ bind(&create_slice);
5695 // r0: original string
5696 // r1: instance type
5697 // r2: length
5698 // r3: from index (untagged smi)
5699 // r6 (a.k.a. to): to (smi)
5700 // r7 (a.k.a. from): from offset (smi)
5701 Label allocate_slice, sliced_string, seq_string;
5702 STATIC_ASSERT(kSeqStringTag == 0);
5703 __ tst(r1, Operand(kStringRepresentationMask));
5704 __ b(eq, &seq_string);
5705 STATIC_ASSERT(kIsIndirectStringMask == (kSlicedStringTag & kConsStringTag));
5706 STATIC_ASSERT(kIsIndirectStringMask != 0);
5707 __ tst(r1, Operand(kIsIndirectStringMask));
5708 // External string. Jump to runtime.
5709 __ b(eq, &runtime);
5710
5711 __ tst(r1, Operand(kSlicedNotConsMask));
5712 __ b(ne, &sliced_string);
5713 // Cons string. Check whether it is flat, then fetch first part.
5714 __ ldr(r5, FieldMemOperand(r0, ConsString::kSecondOffset));
5715 __ LoadRoot(r9, Heap::kEmptyStringRootIndex);
5716 __ cmp(r5, r9);
5717 __ b(ne, &runtime);
5718 __ ldr(r5, FieldMemOperand(r0, ConsString::kFirstOffset));
5719 __ jmp(&allocate_slice);
5720
5721 __ bind(&sliced_string);
5722 // Sliced string. Fetch parent and correct start index by offset.
5723 __ ldr(r5, FieldMemOperand(r0, SlicedString::kOffsetOffset));
5724 __ add(r7, r7, r5);
5725 __ ldr(r5, FieldMemOperand(r0, SlicedString::kParentOffset));
5726 __ jmp(&allocate_slice);
5727
5728 __ bind(&seq_string);
5729 // Sequential string. Just move string to the right register.
5730 __ mov(r5, r0);
5731
5732 __ bind(&allocate_slice);
5733 // r1: instance type of original string
5734 // r2: length
5735 // r5: underlying subject string
5736 // r7 (a.k.a. from): from offset (smi)
5737 // Allocate new sliced string. At this point we do not reload the instance
5738 // type including the string encoding because we simply rely on the info
5739 // provided by the original string. It does not matter if the original
5740 // string's encoding is wrong because we always have to recheck encoding of
5741 // the newly created string's parent anyways due to externalized strings.
5742 Label two_byte_slice, set_slice_header;
5743 STATIC_ASSERT((kStringEncodingMask & kAsciiStringTag) != 0);
5744 STATIC_ASSERT((kStringEncodingMask & kTwoByteStringTag) == 0);
5745 __ tst(r1, Operand(kStringEncodingMask));
5746 __ b(eq, &two_byte_slice);
5747 __ AllocateAsciiSlicedString(r0, r2, r3, r4, &runtime);
5748 __ jmp(&set_slice_header);
5749 __ bind(&two_byte_slice);
5750 __ AllocateTwoByteSlicedString(r0, r2, r3, r4, &runtime);
5751 __ bind(&set_slice_header);
5752 __ str(r7, FieldMemOperand(r0, SlicedString::kOffsetOffset));
5753 __ str(r5, FieldMemOperand(r0, SlicedString::kParentOffset));
5754 }
5755
5756 __ bind(&return_r0);
5637 __ IncrementCounter(counters->sub_string_native(), 1, r3, r4); 5757 __ IncrementCounter(counters->sub_string_native(), 1, r3, r4);
5638 __ add(sp, sp, Operand(3 * kPointerSize)); 5758 __ add(sp, sp, Operand(3 * kPointerSize));
5639 __ Ret(); 5759 __ Ret();
5640 5760
5641 // Just jump to runtime to create the sub string. 5761 // Just jump to runtime to create the sub string.
5642 __ bind(&runtime); 5762 __ bind(&runtime);
5643 __ TailCallRuntime(Runtime::kSubString, 3, 1); 5763 __ TailCallRuntime(Runtime::kSubString, 3, 1);
5644 } 5764 }
5645 5765
5646 5766
(...skipping 1138 matching lines...) Expand 10 before | Expand all | Expand 10 after
6785 6905
6786 // Fall through when we need to inform the incremental marker. 6906 // Fall through when we need to inform the incremental marker.
6787 } 6907 }
6788 6908
6789 6909
6790 #undef __ 6910 #undef __
6791 6911
6792 } } // namespace v8::internal 6912 } } // namespace v8::internal
6793 6913
6794 #endif // V8_TARGET_ARCH_ARM 6914 #endif // V8_TARGET_ARCH_ARM
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