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Issue 13070003: Do not use object pool for VM heap objects on ARM. (Closed) Base URL: http://dart.googlecode.com/svn/branches/bleeding_edge/dart/
Patch Set: Created 7 years, 9 months ago
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1 // Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file 1 // Copyright (c) 2013, 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" // Needed here to get TARGET_ARCH_ARM. 5 #include "vm/globals.h" // Needed here to get TARGET_ARCH_ARM.
6 #if defined(TARGET_ARCH_ARM) 6 #if defined(TARGET_ARCH_ARM)
7 7
8 #include "vm/constants_arm.h" 8 #include "vm/constants_arm.h"
9 #include "vm/cpu.h" 9 #include "vm/cpu.h"
10 #include "vm/instructions.h" 10 #include "vm/instructions.h"
11 #include "vm/object.h" 11 #include "vm/object.h"
12 12
13 namespace dart { 13 namespace dart {
14 14
15 CallPattern::CallPattern(uword pc, const Code& code) 15 CallPattern::CallPattern(uword pc, const Code& code)
16 : end_(reinterpret_cast<uword*>(pc)), 16 : end_(reinterpret_cast<uword*>(pc)),
17 target_address_pool_index_(-1), 17 target_address_pool_index_(-1),
18 args_desc_load_end_(-1), 18 args_desc_load_end_(-1),
19 args_desc_pool_index_(-1), 19 args_desc_(Array::Handle()),
20 ic_data_load_end_(-1), 20 ic_data_load_end_(-1),
21 ic_data_pool_index_(-1), 21 ic_data_(ICData::Handle()),
22 object_pool_(Array::Handle(code.ObjectPool())) { 22 object_pool_(Array::Handle(code.ObjectPool())) {
23 ASSERT(code.ContainsInstructionAt(pc)); 23 ASSERT(code.ContainsInstructionAt(pc));
24 ASSERT(Back(1) == 0xe12fff3e); // Last instruction: blx lr 24 ASSERT(Back(1) == 0xe12fff3e); // Last instruction: blx lr
25 Register reg; 25 Register reg;
26 args_desc_load_end_ = 26 args_desc_load_end_ =
27 DecodeLoadWordFromPool(1, &reg, &target_address_pool_index_); 27 DecodeLoadWordFromPool(1, &reg, &target_address_pool_index_);
28 ASSERT(reg == LR); 28 ASSERT(reg == LR);
29 } 29 }
30 30
31 31
32 uword CallPattern::Back(int n) const { 32 uword CallPattern::Back(int n) const {
33 ASSERT(n > 0); 33 ASSERT(n > 0);
34 return *(end_ - n); 34 return *(end_ - n);
35 } 35 }
36 36
37 37
38 // Decodes a load sequence ending at end. Returns the register being loaded and 38 // Decodes a load sequence ending at end. Returns the register being loaded and
39 // the loaded object.
40 // Returns the location of the load sequence, counting the number of
41 // instructions back from the end of the call pattern.
42 int CallPattern::DecodeLoadObject(int end, Register* reg, Object* obj) {
43 ASSERT(end > 0);
44 uword instr = Back(end + 1);
45 if ((instr & 0xfff00000) == 0xe5900000) { // ldr reg, [reg, #+offset]
46 int index = 0;
47 end = DecodeLoadWordFromPool(end, reg, &index);
48 *obj = object_pool_.At(index);
49 } else {
50 int value = 0;
51 end = DecodeLoadWordImmediate(end, reg, &value);
52 *obj = reinterpret_cast<RawObject*>(value);
53 }
54 return end;
55 }
56
57
58 // Decodes a load sequence ending at end. Returns the register being loaded and
59 // the loaded immediate value.
60 // Returns the location of the load sequence, counting the number of
61 // instructions back from the end of the call pattern.
62 int CallPattern::DecodeLoadWordImmediate(int end, Register* reg, int* value) {
63 ASSERT(end > 0);
64 uword instr = Back(++end);
65 int imm = 0;
66 if ((instr & 0xfff00000) == 0xe3400000) { // movt reg, #imm_hi
67 imm |= (instr & 0xf0000) << 12;
68 imm |= (instr & 0xfff) << 16;
69 instr = Back(++end);
70 }
71 ASSERT((instr & 0xfff00000) == 0xe3000000); // movw reg, #imm_lo
72 imm |= (instr & 0xf0000) >> 4;
73 imm |= instr & 0xfff;
74 *reg = static_cast<Register>((instr & 0xf000) >> 12);
75 *value = imm;
76 return end;
77 }
78
79
80 // Decodes a load sequence ending at end. Returns the register being loaded and
39 // the index in the pool being read from. 81 // the index in the pool being read from.
40 // Returns the location of the load sequence, counting the number of 82 // Returns the location of the load sequence, counting the number of
41 // instructions back from the end of the call pattern. 83 // instructions back from the end of the call pattern.
42 int CallPattern::DecodeLoadWordFromPool(int end, Register* reg, int* index) { 84 int CallPattern::DecodeLoadWordFromPool(int end, Register* reg, int* index) {
43 ASSERT(end > 0); 85 ASSERT(end > 0);
44 uword instr = Back(++end); 86 uword instr = Back(++end);
45 int offset = 0; 87 int offset = 0;
46 if ((instr & 0xffff0000) == 0xe59a0000) { // ldr reg, [pp, #+offset] 88 if ((instr & 0xffff0000) == 0xe59a0000) { // ldr reg, [pp, #+offset]
47 offset = instr & 0xfff; 89 offset = instr & 0xfff;
48 *reg = static_cast<Register>((instr & 0xf000) >> 12); 90 *reg = static_cast<Register>((instr & 0xf000) >> 12);
49 } else { 91 } else {
50 ASSERT((instr & 0xfff00000) == 0xe5900000); // ldr reg, [reg, #+offset] 92 ASSERT((instr & 0xfff00000) == 0xe5900000); // ldr reg, [reg, #+offset]
51 offset = instr & 0xfff; 93 offset = instr & 0xfff;
52 instr = Back(++end); 94 instr = Back(++end);
53 if ((instr & 0xffff0000) == 0xe28a0000) { // add reg, pp, shifter_op 95 if ((instr & 0xffff0000) == 0xe28a0000) { // add reg, pp, shifter_op
54 const int rot = (instr & 0xf00) * 2; 96 const int rot = (instr & 0xf00) * 2;
55 const int imm8 = instr & 0xff; 97 const int imm8 = instr & 0xff;
56 offset |= (imm8 >> rot) | (imm8 << (32 - rot)); 98 offset |= (imm8 >> rot) | (imm8 << (32 - rot));
57 *reg = static_cast<Register>((instr & 0xf000) >> 12); 99 *reg = static_cast<Register>((instr & 0xf000) >> 12);
58 } else { 100 } else {
59 ASSERT((instr & 0xffff0000) == 0xe08a0000); // add reg, pp, reg 101 ASSERT((instr & 0xffff0000) == 0xe08a0000); // add reg, pp, reg
60 instr = Back(++end); 102 end = DecodeLoadWordImmediate(end, reg, &offset);
61 if ((instr & 0xfff00000) == 0xe3400000) { // movt reg, offset_hi
62 offset |= (instr & 0xf0000) << 12;
63 offset |= (instr & 0xfff) << 16;
64 instr = Back(++end);
65 }
66 ASSERT((instr & 0xfff00000) == 0xe3000000); // movw reg, offset_lo
67 ASSERT((offset & 0xffff) == 0);
68 offset |= (instr & 0xf0000) >> 4;
69 offset |= instr & 0xfff;
70 *reg = static_cast<Register>((instr & 0xf000) >> 12);
71 } 103 }
72 } 104 }
73 offset += kHeapObjectTag; 105 offset += kHeapObjectTag;
74 ASSERT(Utils::IsAligned(offset, 4)); 106 ASSERT(Utils::IsAligned(offset, 4));
75 *index = (offset - Array::data_offset())/4; 107 *index = (offset - Array::data_offset())/4;
76 return end; 108 return end;
77 } 109 }
78 110
79 111
80 RawICData* CallPattern::IcData() { 112 RawICData* CallPattern::IcData() {
81 if (ic_data_pool_index_ < 0) { 113 if (ic_data_.IsNull()) {
82 Register reg; 114 Register reg;
83 // Loading of the argument descriptor must be decoded first, if not already. 115 // Loading of the argument descriptor must be decoded first, if not already.
84 if (args_desc_pool_index_ < 0) { 116 if (args_desc_.IsNull()) {
85 ic_data_load_end_ = DecodeLoadWordFromPool( 117 ic_data_load_end_ = DecodeLoadObject(
86 args_desc_load_end_, &reg, &args_desc_pool_index_); 118 args_desc_load_end_, &reg, &args_desc_);
87 ASSERT(reg == R4); 119 ASSERT(reg == R4);
88 } 120 }
89 DecodeLoadWordFromPool(ic_data_load_end_, &reg, &ic_data_pool_index_); 121 DecodeLoadObject(ic_data_load_end_, &reg, &ic_data_);
90 ASSERT(reg == R5); 122 ASSERT(reg == R5);
91 } 123 }
92 ICData& ic_data = ICData::Handle(); 124 return ic_data_.raw();
93 ic_data ^= object_pool_.At(ic_data_pool_index_);
94 return ic_data.raw();
95 } 125 }
96 126
97 127
98 RawArray* CallPattern::ArgumentsDescriptor() { 128 RawArray* CallPattern::ArgumentsDescriptor() {
99 if (args_desc_pool_index_ < 0) { 129 if (args_desc_.IsNull()) {
100 Register reg; 130 Register reg;
101 ic_data_load_end_ = DecodeLoadWordFromPool( 131 ic_data_load_end_ = DecodeLoadObject(
102 args_desc_load_end_, &reg, &args_desc_pool_index_); 132 args_desc_load_end_, &reg, &args_desc_);
103 ASSERT(reg == R4); 133 ASSERT(reg == R4);
104 } 134 }
105 Array& args_desc = Array::Handle(); 135 return args_desc_.raw();
106 args_desc ^= object_pool_.At(args_desc_pool_index_);
107 return args_desc.raw();
108 } 136 }
109 137
110 138
111 uword CallPattern::TargetAddress() const { 139 uword CallPattern::TargetAddress() const {
112 ASSERT(target_address_pool_index_ >= 0); 140 ASSERT(target_address_pool_index_ >= 0);
113 const Object& target_address = 141 const Object& target_address =
114 Object::Handle(object_pool_.At(target_address_pool_index_)); 142 Object::Handle(object_pool_.At(target_address_pool_index_));
115 ASSERT(target_address.IsSmi()); 143 ASSERT(target_address.IsSmi());
116 // The address is stored in the object array as a RawSmi. 144 // The address is stored in the object array as a RawSmi.
117 return reinterpret_cast<uword>(target_address.raw()); 145 return reinterpret_cast<uword>(target_address.raw());
(...skipping 38 matching lines...) Expand 10 before | Expand all | Expand 10 after
156 uword movt = 0xe340c000 | ((target_hi >> 12) << 16) | (target_hi & 0xfff); 184 uword movt = 0xe340c000 | ((target_hi >> 12) << 16) | (target_hi & 0xfff);
157 *reinterpret_cast<uword*>(pc_ + (0 * Instr::kInstrSize)) = movw; 185 *reinterpret_cast<uword*>(pc_ + (0 * Instr::kInstrSize)) = movw;
158 *reinterpret_cast<uword*>(pc_ + (1 * Instr::kInstrSize)) = movt; 186 *reinterpret_cast<uword*>(pc_ + (1 * Instr::kInstrSize)) = movt;
159 CPU::FlushICache(pc_, 2 * Instr::kInstrSize); 187 CPU::FlushICache(pc_, 2 * Instr::kInstrSize);
160 } 188 }
161 189
162 } // namespace dart 190 } // namespace dart
163 191
164 #endif // defined TARGET_ARCH_ARM 192 #endif // defined TARGET_ARCH_ARM
165 193
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