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Issue 2893553002: More compact string representation on 64 bit. (Closed)
Patch Set: Slava feedback Created 3 years, 7 months ago
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1 // Copyright (c) 2014, the Dart project authors. Please see the AUTHORS file 1 // Copyright (c) 2014, the Dart project authors. Please see the AUTHORS file
2 // for details. All rights reserved. Use of this source code is governed by a 2 // for details. All rights reserved. Use of this source code is governed by a
3 // BSD-style license that can be found in the LICENSE file. 3 // BSD-style license that can be found in the LICENSE file.
4 4
5 #include "vm/globals.h" 5 #include "vm/globals.h"
6 #if defined(TARGET_ARCH_ARM64) 6 #if defined(TARGET_ARCH_ARM64)
7 7
8 #include "vm/assembler.h" 8 #include "vm/assembler.h"
9 #include "vm/compiler.h" 9 #include "vm/compiler.h"
10 #include "vm/dart_entry.h" 10 #include "vm/dart_entry.h"
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716 716
717 Heap::Space space = Heap::kNew; 717 Heap::Space space = Heap::kNew;
718 __ ldr(R8, Address(THR, Thread::heap_offset())); 718 __ ldr(R8, Address(THR, Thread::heap_offset()));
719 719
720 // Calculate and align allocation size. 720 // Calculate and align allocation size.
721 // Load new object start and calculate next object start. 721 // Load new object start and calculate next object start.
722 // R1: array element type. 722 // R1: array element type.
723 // R2: array length as Smi. 723 // R2: array length as Smi.
724 // R8: heap. 724 // R8: heap.
725 __ LoadFromOffset(R0, R8, Heap::TopOffset(space)); 725 __ LoadFromOffset(R0, R8, Heap::TopOffset(space));
726 intptr_t fixed_size = sizeof(RawArray) + kObjectAlignment - 1; 726 intptr_t fixed_size_plus_alignment_padding =
727 __ LoadImmediate(R3, fixed_size); 727 sizeof(RawArray) + kObjectAlignment - 1;
728 __ LoadImmediate(R3, fixed_size_plus_alignment_padding);
728 __ add(R3, R3, Operand(R2, LSL, 2)); // R2 is Smi. 729 __ add(R3, R3, Operand(R2, LSL, 2)); // R2 is Smi.
729 ASSERT(kSmiTagShift == 1); 730 ASSERT(kSmiTagShift == 1);
730 __ andi(R3, R3, Immediate(~(kObjectAlignment - 1))); 731 __ andi(R3, R3, Immediate(~(kObjectAlignment - 1)));
731 // R0: potential new object start. 732 // R0: potential new object start.
732 // R3: object size in bytes. 733 // R3: object size in bytes.
733 __ adds(R7, R3, Operand(R0)); 734 __ adds(R7, R3, Operand(R0));
734 __ b(&slow_case, CS); // Branch if unsigned overflow. 735 __ b(&slow_case, CS); // Branch if unsigned overflow.
735 736
736 // Check if the allocation fits into the remaining space. 737 // Check if the allocation fits into the remaining space.
737 // R0: potential new object start. 738 // R0: potential new object start.
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962 // Called for inline allocation of contexts. 963 // Called for inline allocation of contexts.
963 // Input: 964 // Input:
964 // R1: number of context variables. 965 // R1: number of context variables.
965 // Output: 966 // Output:
966 // R0: new allocated RawContext object. 967 // R0: new allocated RawContext object.
967 void StubCode::GenerateAllocateContextStub(Assembler* assembler) { 968 void StubCode::GenerateAllocateContextStub(Assembler* assembler) {
968 if (FLAG_inline_alloc) { 969 if (FLAG_inline_alloc) {
969 Label slow_case; 970 Label slow_case;
970 // First compute the rounded instance size. 971 // First compute the rounded instance size.
971 // R1: number of context variables. 972 // R1: number of context variables.
972 intptr_t fixed_size = sizeof(RawContext) + kObjectAlignment - 1; 973 intptr_t fixed_size_plus_alignment_padding =
973 __ LoadImmediate(R2, fixed_size); 974 sizeof(RawContext) + kObjectAlignment - 1;
975 __ LoadImmediate(R2, fixed_size_plus_alignment_padding);
974 __ add(R2, R2, Operand(R1, LSL, 3)); 976 __ add(R2, R2, Operand(R1, LSL, 3));
975 ASSERT(kSmiTagShift == 1); 977 ASSERT(kSmiTagShift == 1);
976 __ andi(R2, R2, Immediate(~(kObjectAlignment - 1))); 978 __ andi(R2, R2, Immediate(~(kObjectAlignment - 1)));
977 979
978 NOT_IN_PRODUCT(__ MaybeTraceAllocation(kContextCid, R4, &slow_case)); 980 NOT_IN_PRODUCT(__ MaybeTraceAllocation(kContextCid, R4, &slow_case));
979 // Now allocate the object. 981 // Now allocate the object.
980 // R1: number of context variables. 982 // R1: number of context variables.
981 // R2: object size. 983 // R2: object size.
982 const intptr_t cid = kContextCid; 984 const intptr_t cid = kContextCid;
983 Heap::Space space = Heap::kNew; 985 Heap::Space space = Heap::kNew;
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2295 2297
2296 // Called from switchable IC calls. 2298 // Called from switchable IC calls.
2297 // R0: receiver 2299 // R0: receiver
2298 // R5: SingleTargetCache 2300 // R5: SingleTargetCache
2299 // Passed to target: 2301 // Passed to target:
2300 // CODE_REG: target Code object 2302 // CODE_REG: target Code object
2301 void StubCode::GenerateSingleTargetCallStub(Assembler* assembler) { 2303 void StubCode::GenerateSingleTargetCallStub(Assembler* assembler) {
2302 Label miss; 2304 Label miss;
2303 __ LoadClassIdMayBeSmi(R1, R0); 2305 __ LoadClassIdMayBeSmi(R1, R0);
2304 __ ldr(R2, FieldAddress(R5, SingleTargetCache::lower_limit_offset()), 2306 __ ldr(R2, FieldAddress(R5, SingleTargetCache::lower_limit_offset()),
2305 kUnsignedWord); 2307 kUnsignedHalfword);
2306 __ ldr(R3, FieldAddress(R5, SingleTargetCache::upper_limit_offset()), 2308 __ ldr(R3, FieldAddress(R5, SingleTargetCache::upper_limit_offset()),
2307 kUnsignedWord); 2309 kUnsignedHalfword);
2308 2310
2309 __ cmp(R1, Operand(R2)); 2311 __ cmp(R1, Operand(R2));
2310 __ b(&miss, LT); 2312 __ b(&miss, LT);
2311 __ cmp(R1, Operand(R3)); 2313 __ cmp(R1, Operand(R3));
2312 __ b(&miss, GT); 2314 __ b(&miss, GT);
2313 2315
2314 __ ldr(R1, FieldAddress(R5, SingleTargetCache::entry_point_offset())); 2316 __ ldr(R1, FieldAddress(R5, SingleTargetCache::entry_point_offset()));
2315 __ ldr(CODE_REG, FieldAddress(R5, SingleTargetCache::target_offset())); 2317 __ ldr(CODE_REG, FieldAddress(R5, SingleTargetCache::target_offset()));
2316 __ br(R1); 2318 __ br(R1);
2317 2319
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2361 } 2363 }
2362 2364
2363 2365
2364 void StubCode::GenerateAsynchronousGapMarkerStub(Assembler* assembler) { 2366 void StubCode::GenerateAsynchronousGapMarkerStub(Assembler* assembler) {
2365 __ brk(0); 2367 __ brk(0);
2366 } 2368 }
2367 2369
2368 } // namespace dart 2370 } // namespace dart
2369 2371
2370 #endif // defined TARGET_ARCH_ARM64 2372 #endif // defined TARGET_ARCH_ARM64
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