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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 // 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 #if V8_TARGET_ARCH_ARM | 5 #if V8_TARGET_ARCH_ARM |
| 6 | 6 |
| 7 #include "src/codegen.h" | 7 #include "src/codegen.h" |
| 8 #include "src/ic/ic.h" | 8 #include "src/ic/ic.h" |
| 9 #include "src/ic/stub-cache.h" | 9 #include "src/ic/stub-cache.h" |
| 10 #include "src/interface-descriptors.h" | 10 #include "src/interface-descriptors.h" |
| 11 | 11 |
| 12 namespace v8 { | 12 namespace v8 { |
| 13 namespace internal { | 13 namespace internal { |
| 14 | 14 |
| 15 #define __ ACCESS_MASM(masm) | 15 #define __ ACCESS_MASM(masm) |
| 16 | 16 |
| 17 static void ProbeTable(StubCache* stub_cache, MacroAssembler* masm, | 17 static void ProbeTable(StubCache* stub_cache, MacroAssembler* masm, |
| 18 Code::Flags flags, StubCache::Table table, | 18 StubCache::Table table, Register receiver, Register name, |
| 19 Register receiver, Register name, | |
| 20 // Number of the cache entry, not scaled. | 19 // Number of the cache entry, not scaled. |
| 21 Register offset, Register scratch, Register scratch2, | 20 Register offset, Register scratch, Register scratch2, |
| 22 Register offset_scratch) { | 21 Register offset_scratch) { |
| 23 ExternalReference key_offset(stub_cache->key_reference(table)); | 22 ExternalReference key_offset(stub_cache->key_reference(table)); |
| 24 ExternalReference value_offset(stub_cache->value_reference(table)); | 23 ExternalReference value_offset(stub_cache->value_reference(table)); |
| 25 ExternalReference map_offset(stub_cache->map_reference(table)); | 24 ExternalReference map_offset(stub_cache->map_reference(table)); |
| 26 | 25 |
| 27 uint32_t key_off_addr = reinterpret_cast<uint32_t>(key_offset.address()); | 26 uint32_t key_off_addr = reinterpret_cast<uint32_t>(key_offset.address()); |
| 28 uint32_t value_off_addr = reinterpret_cast<uint32_t>(value_offset.address()); | 27 uint32_t value_off_addr = reinterpret_cast<uint32_t>(value_offset.address()); |
| 29 uint32_t map_off_addr = reinterpret_cast<uint32_t>(map_offset.address()); | 28 uint32_t map_off_addr = reinterpret_cast<uint32_t>(map_offset.address()); |
| (...skipping 32 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 62 Register code = scratch2; | 61 Register code = scratch2; |
| 63 scratch2 = no_reg; | 62 scratch2 = no_reg; |
| 64 __ ldr(code, MemOperand(base_addr, value_off_addr - key_off_addr)); | 63 __ ldr(code, MemOperand(base_addr, value_off_addr - key_off_addr)); |
| 65 | 64 |
| 66 // Check that the flags match what we're looking for. | 65 // Check that the flags match what we're looking for. |
| 67 Register flags_reg = base_addr; | 66 Register flags_reg = base_addr; |
| 68 base_addr = no_reg; | 67 base_addr = no_reg; |
| 69 __ ldr(flags_reg, FieldMemOperand(code, Code::kFlagsOffset)); | 68 __ ldr(flags_reg, FieldMemOperand(code, Code::kFlagsOffset)); |
| 70 // It's a nice optimization if this constant is encodable in the bic insn. | 69 // It's a nice optimization if this constant is encodable in the bic insn. |
| 71 | 70 |
| 71 #ifdef DEBUG |
| 72 Code::Flags flags = Code::RemoveHolderFromFlags( |
| 73 Code::ComputeHandlerFlags(stub_cache->ic_kind())); |
| 72 uint32_t mask = Code::kFlagsNotUsedInLookup; | 74 uint32_t mask = Code::kFlagsNotUsedInLookup; |
| 73 DCHECK(__ ImmediateFitsAddrMode1Instruction(mask)); | 75 DCHECK(__ ImmediateFitsAddrMode1Instruction(mask)); |
| 74 __ bic(flags_reg, flags_reg, Operand(mask)); | 76 __ bic(flags_reg, flags_reg, Operand(mask)); |
| 75 __ cmp(flags_reg, Operand(flags)); | 77 __ cmp(flags_reg, Operand(flags)); |
| 76 __ b(ne, &miss); | 78 __ Check(eq, kUnexpectedValue); |
| 77 | 79 |
| 78 #ifdef DEBUG | |
| 79 if (FLAG_test_secondary_stub_cache && table == StubCache::kPrimary) { | 80 if (FLAG_test_secondary_stub_cache && table == StubCache::kPrimary) { |
| 80 __ jmp(&miss); | 81 __ jmp(&miss); |
| 81 } else if (FLAG_test_primary_stub_cache && table == StubCache::kSecondary) { | 82 } else if (FLAG_test_primary_stub_cache && table == StubCache::kSecondary) { |
| 82 __ jmp(&miss); | 83 __ jmp(&miss); |
| 83 } | 84 } |
| 84 #endif | 85 #endif |
| 85 | 86 |
| 86 // Jump to the first instruction in the code stub. | 87 // Jump to the first instruction in the code stub. |
| 87 __ add(pc, code, Operand(Code::kHeaderSize - kHeapObjectTag)); | 88 __ add(pc, code, Operand(Code::kHeaderSize - kHeapObjectTag)); |
| 88 | 89 |
| 89 // Miss: fall through. | 90 // Miss: fall through. |
| 90 __ bind(&miss); | 91 __ bind(&miss); |
| 91 } | 92 } |
| 92 | 93 |
| 93 void StubCache::GenerateProbe(MacroAssembler* masm, Register receiver, | 94 void StubCache::GenerateProbe(MacroAssembler* masm, Register receiver, |
| 94 Register name, Register scratch, Register extra, | 95 Register name, Register scratch, Register extra, |
| 95 Register extra2, Register extra3) { | 96 Register extra2, Register extra3) { |
| 96 Code::Flags flags = | |
| 97 Code::RemoveHolderFromFlags(Code::ComputeHandlerFlags(ic_kind_)); | |
| 98 | |
| 99 Label miss; | 97 Label miss; |
| 100 | 98 |
| 101 // Make sure that code is valid. The multiplying code relies on the | 99 // Make sure that code is valid. The multiplying code relies on the |
| 102 // entry size being 12. | 100 // entry size being 12. |
| 103 DCHECK(sizeof(Entry) == 12); | 101 DCHECK(sizeof(Entry) == 12); |
| 104 | 102 |
| 105 // Make sure that there are no register conflicts. | 103 // Make sure that there are no register conflicts. |
| 106 DCHECK(!AreAliased(receiver, name, scratch, extra, extra2, extra3)); | 104 DCHECK(!AreAliased(receiver, name, scratch, extra, extra2, extra3)); |
| 107 | 105 |
| 108 // Check scratch, extra and extra2 registers are valid. | 106 // Check scratch, extra and extra2 registers are valid. |
| (...skipping 28 matching lines...) Expand all Loading... |
| 137 __ JumpIfSmi(receiver, &miss); | 135 __ JumpIfSmi(receiver, &miss); |
| 138 | 136 |
| 139 // Get the map of the receiver and compute the hash. | 137 // Get the map of the receiver and compute the hash. |
| 140 __ ldr(scratch, FieldMemOperand(name, Name::kHashFieldOffset)); | 138 __ ldr(scratch, FieldMemOperand(name, Name::kHashFieldOffset)); |
| 141 __ ldr(ip, FieldMemOperand(receiver, HeapObject::kMapOffset)); | 139 __ ldr(ip, FieldMemOperand(receiver, HeapObject::kMapOffset)); |
| 142 __ add(scratch, scratch, Operand(ip)); | 140 __ add(scratch, scratch, Operand(ip)); |
| 143 uint32_t mask = kPrimaryTableSize - 1; | 141 uint32_t mask = kPrimaryTableSize - 1; |
| 144 // We shift out the last two bits because they are not part of the hash and | 142 // We shift out the last two bits because they are not part of the hash and |
| 145 // they are always 01 for maps. | 143 // they are always 01 for maps. |
| 146 __ mov(scratch, Operand(scratch, LSR, kCacheIndexShift)); | 144 __ mov(scratch, Operand(scratch, LSR, kCacheIndexShift)); |
| 147 // Mask down the eor argument to the minimum to keep the immediate | |
| 148 // ARM-encodable. | |
| 149 __ eor(scratch, scratch, Operand((flags >> kCacheIndexShift) & mask)); | |
| 150 // Prefer and_ to ubfx here because ubfx takes 2 cycles. | 145 // Prefer and_ to ubfx here because ubfx takes 2 cycles. |
| 151 __ and_(scratch, scratch, Operand(mask)); | 146 __ and_(scratch, scratch, Operand(mask)); |
| 152 | 147 |
| 153 // Probe the primary table. | 148 // Probe the primary table. |
| 154 ProbeTable(this, masm, flags, kPrimary, receiver, name, scratch, extra, | 149 ProbeTable(this, masm, kPrimary, receiver, name, scratch, extra, extra2, |
| 155 extra2, extra3); | 150 extra3); |
| 156 | 151 |
| 157 // Primary miss: Compute hash for secondary probe. | 152 // Primary miss: Compute hash for secondary probe. |
| 158 __ sub(scratch, scratch, Operand(name, LSR, kCacheIndexShift)); | 153 __ sub(scratch, scratch, Operand(name, LSR, kCacheIndexShift)); |
| 159 uint32_t mask2 = kSecondaryTableSize - 1; | 154 uint32_t mask2 = kSecondaryTableSize - 1; |
| 160 __ add(scratch, scratch, Operand((flags >> kCacheIndexShift) & mask2)); | |
| 161 __ and_(scratch, scratch, Operand(mask2)); | 155 __ and_(scratch, scratch, Operand(mask2)); |
| 162 | 156 |
| 163 // Probe the secondary table. | 157 // Probe the secondary table. |
| 164 ProbeTable(this, masm, flags, kSecondary, receiver, name, scratch, extra, | 158 ProbeTable(this, masm, kSecondary, receiver, name, scratch, extra, extra2, |
| 165 extra2, extra3); | 159 extra3); |
| 166 | 160 |
| 167 // Cache miss: Fall-through and let caller handle the miss by | 161 // Cache miss: Fall-through and let caller handle the miss by |
| 168 // entering the runtime system. | 162 // entering the runtime system. |
| 169 __ bind(&miss); | 163 __ bind(&miss); |
| 170 __ IncrementCounter(counters->megamorphic_stub_cache_misses(), 1, extra2, | 164 __ IncrementCounter(counters->megamorphic_stub_cache_misses(), 1, extra2, |
| 171 extra3); | 165 extra3); |
| 172 } | 166 } |
| 173 | 167 |
| 174 | 168 |
| 175 #undef __ | 169 #undef __ |
| 176 } // namespace internal | 170 } // namespace internal |
| 177 } // namespace v8 | 171 } // namespace v8 |
| 178 | 172 |
| 179 #endif // V8_TARGET_ARCH_ARM | 173 #endif // V8_TARGET_ARCH_ARM |
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