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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" | 5 #include "vm/globals.h" |
| 6 #if defined(TARGET_ARCH_X64) | 6 #if defined(TARGET_ARCH_X64) |
| 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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| 998 // RSP + 16 : type arguments object (only if class is parameterized). | 998 // RSP + 16 : type arguments object (only if class is parameterized). |
| 999 // RSP + 8 : type arguments of instantiator (only if class is parameterized). | 999 // RSP + 8 : type arguments of instantiator (only if class is parameterized). |
| 1000 // RSP : points to return address. | 1000 // RSP : points to return address. |
| 1001 void StubCode::GenerateAllocationStubForClass(Assembler* assembler, | 1001 void StubCode::GenerateAllocationStubForClass(Assembler* assembler, |
| 1002 const Class& cls) { | 1002 const Class& cls) { |
| 1003 const intptr_t kObjectTypeArgumentsOffset = 2 * kWordSize; | 1003 const intptr_t kObjectTypeArgumentsOffset = 2 * kWordSize; |
| 1004 const intptr_t kInstantiatorTypeArgumentsOffset = 1 * kWordSize; | 1004 const intptr_t kInstantiatorTypeArgumentsOffset = 1 * kWordSize; |
| 1005 const Immediate& raw_null = | 1005 const Immediate& raw_null = |
| 1006 Immediate(reinterpret_cast<intptr_t>(Object::null())); | 1006 Immediate(reinterpret_cast<intptr_t>(Object::null())); |
| 1007 // The generated code is different if the class is parameterized. | 1007 // The generated code is different if the class is parameterized. |
| 1008 const bool is_cls_parameterized = | 1008 const bool is_cls_parameterized = cls.HasTypeArguments(); |
| 1009 cls.type_arguments_field_offset() != Class::kNoTypeArguments; | 1009 ASSERT(!cls.HasTypeArguments() || |
| 1010 cls.type_arguments_field_offset() != Class::kNoTypeArguments); |
| 1010 // kInlineInstanceSize is a constant used as a threshold for determining | 1011 // kInlineInstanceSize is a constant used as a threshold for determining |
| 1011 // when the object initialization should be done as a loop or as | 1012 // when the object initialization should be done as a loop or as |
| 1012 // straight line code. | 1013 // straight line code. |
| 1013 const int kInlineInstanceSize = 12; // In words. | 1014 const int kInlineInstanceSize = 12; // In words. |
| 1014 const intptr_t instance_size = cls.instance_size(); | 1015 const intptr_t instance_size = cls.instance_size(); |
| 1015 ASSERT(instance_size > 0); | 1016 ASSERT(instance_size > 0); |
| 1016 const intptr_t type_args_size = InstantiatedTypeArguments::InstanceSize(); | 1017 const intptr_t type_args_size = InstantiatedTypeArguments::InstanceSize(); |
| 1017 if (FLAG_inline_alloc && | 1018 if (FLAG_inline_alloc && |
| 1018 Heap::IsAllocatableInNewSpace(instance_size + type_args_size)) { | 1019 Heap::IsAllocatableInNewSpace(instance_size + type_args_size)) { |
| 1019 Label slow_case; | 1020 Label slow_case; |
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| 1171 // Called for inline allocation of closures. | 1172 // Called for inline allocation of closures. |
| 1172 // Input parameters: | 1173 // Input parameters: |
| 1173 // RSP + 16 : receiver (null if not an implicit instance closure). | 1174 // RSP + 16 : receiver (null if not an implicit instance closure). |
| 1174 // RSP + 8 : type arguments object (null if class is not parameterized). | 1175 // RSP + 8 : type arguments object (null if class is not parameterized). |
| 1175 // RSP : points to return address. | 1176 // RSP : points to return address. |
| 1176 void StubCode::GenerateAllocationStubForClosure(Assembler* assembler, | 1177 void StubCode::GenerateAllocationStubForClosure(Assembler* assembler, |
| 1177 const Function& func) { | 1178 const Function& func) { |
| 1178 const Immediate& raw_null = | 1179 const Immediate& raw_null = |
| 1179 Immediate(reinterpret_cast<intptr_t>(Object::null())); | 1180 Immediate(reinterpret_cast<intptr_t>(Object::null())); |
| 1180 ASSERT(func.IsClosureFunction()); | 1181 ASSERT(func.IsClosureFunction()); |
| 1181 const bool is_implicit_static_closure = | 1182 ASSERT(!func.IsImplicitStaticClosureFunction()); |
| 1182 func.IsImplicitStaticClosureFunction(); | |
| 1183 const bool is_implicit_instance_closure = | 1183 const bool is_implicit_instance_closure = |
| 1184 func.IsImplicitInstanceClosureFunction(); | 1184 func.IsImplicitInstanceClosureFunction(); |
| 1185 const Class& cls = Class::ZoneHandle(func.signature_class()); | 1185 const Class& cls = Class::ZoneHandle(func.signature_class()); |
| 1186 const bool has_type_arguments = cls.HasTypeArguments(); | 1186 const bool has_type_arguments = cls.HasTypeArguments(); |
| 1187 const intptr_t kTypeArgumentsOffset = 1 * kWordSize; | 1187 const intptr_t kTypeArgumentsOffset = 1 * kWordSize; |
| 1188 const intptr_t kReceiverOffset = 2 * kWordSize; | 1188 const intptr_t kReceiverOffset = 2 * kWordSize; |
| 1189 const intptr_t closure_size = Closure::InstanceSize(); | 1189 const intptr_t closure_size = Closure::InstanceSize(); |
| 1190 const intptr_t context_size = Context::InstanceSize(1); // Captured receiver. | 1190 const intptr_t context_size = Context::InstanceSize(1); // Captured receiver. |
| 1191 if (FLAG_inline_alloc && | 1191 if (FLAG_inline_alloc && |
| 1192 Heap::IsAllocatableInNewSpace(closure_size + context_size)) { | 1192 Heap::IsAllocatableInNewSpace(closure_size + context_size)) { |
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| 1225 __ movq(Address(RAX, Instance::tags_offset()), Immediate(tags)); | 1225 __ movq(Address(RAX, Instance::tags_offset()), Immediate(tags)); |
| 1226 | 1226 |
| 1227 // Initialize the function field in the object. | 1227 // Initialize the function field in the object. |
| 1228 // RAX: new closure object. | 1228 // RAX: new closure object. |
| 1229 // RBX: new context object (only if is_implicit_closure). | 1229 // RBX: new context object (only if is_implicit_closure). |
| 1230 // R13: next object start. | 1230 // R13: next object start. |
| 1231 __ LoadObject(R10, func); // Load function of closure to be allocated. | 1231 __ LoadObject(R10, func); // Load function of closure to be allocated. |
| 1232 __ movq(Address(RAX, Closure::function_offset()), R10); | 1232 __ movq(Address(RAX, Closure::function_offset()), R10); |
| 1233 | 1233 |
| 1234 // Setup the context for this closure. | 1234 // Setup the context for this closure. |
| 1235 if (is_implicit_static_closure) { | 1235 if (is_implicit_instance_closure) { |
| 1236 ObjectStore* object_store = Isolate::Current()->object_store(); | |
| 1237 ASSERT(object_store != NULL); | |
| 1238 const Context& empty_context = | |
| 1239 Context::ZoneHandle(object_store->empty_context()); | |
| 1240 __ LoadObject(R10, empty_context); | |
| 1241 __ movq(Address(RAX, Closure::context_offset()), R10); | |
| 1242 } else if (is_implicit_instance_closure) { | |
| 1243 // Initialize the new context capturing the receiver. | 1236 // Initialize the new context capturing the receiver. |
| 1244 | 1237 |
| 1245 const Class& context_class = Class::ZoneHandle(Object::context_class()); | 1238 const Class& context_class = Class::ZoneHandle(Object::context_class()); |
| 1246 // Set the tags. | 1239 // Set the tags. |
| 1247 uword tags = 0; | 1240 uword tags = 0; |
| 1248 tags = RawObject::SizeTag::update(context_size, tags); | 1241 tags = RawObject::SizeTag::update(context_size, tags); |
| 1249 tags = RawObject::ClassIdTag::update(context_class.id(), tags); | 1242 tags = RawObject::ClassIdTag::update(context_class.id(), tags); |
| 1250 __ movq(Address(RBX, Context::tags_offset()), Immediate(tags)); | 1243 __ movq(Address(RBX, Context::tags_offset()), Immediate(tags)); |
| 1251 | 1244 |
| 1252 // Set number of variables field to 1 (for captured receiver). | 1245 // Set number of variables field to 1 (for captured receiver). |
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| 1284 if (has_type_arguments) { | 1277 if (has_type_arguments) { |
| 1285 __ movq(RCX, Address(RSP, kTypeArgumentsOffset)); | 1278 __ movq(RCX, Address(RSP, kTypeArgumentsOffset)); |
| 1286 } | 1279 } |
| 1287 if (is_implicit_instance_closure) { | 1280 if (is_implicit_instance_closure) { |
| 1288 __ movq(RAX, Address(RSP, kReceiverOffset)); | 1281 __ movq(RAX, Address(RSP, kReceiverOffset)); |
| 1289 } | 1282 } |
| 1290 // Create the stub frame. | 1283 // Create the stub frame. |
| 1291 __ EnterStubFrame(); | 1284 __ EnterStubFrame(); |
| 1292 __ pushq(raw_null); // Setup space on stack for the return value. | 1285 __ pushq(raw_null); // Setup space on stack for the return value. |
| 1293 __ PushObject(func); | 1286 __ PushObject(func); |
| 1294 if (is_implicit_static_closure) { | 1287 if (is_implicit_instance_closure) { |
| 1295 __ CallRuntime(kAllocateImplicitStaticClosureRuntimeEntry); | 1288 __ pushq(RAX); // Receiver. |
| 1289 } |
| 1290 if (has_type_arguments) { |
| 1291 __ pushq(RCX); // Push type arguments of closure to be allocated. |
| 1296 } else { | 1292 } else { |
| 1297 if (is_implicit_instance_closure) { | 1293 __ pushq(raw_null); // Push null type arguments. |
| 1298 __ pushq(RAX); // Receiver. | 1294 } |
| 1299 } | 1295 if (is_implicit_instance_closure) { |
| 1300 if (has_type_arguments) { | 1296 __ CallRuntime(kAllocateImplicitInstanceClosureRuntimeEntry); |
| 1301 __ pushq(RCX); // Push type arguments of closure to be allocated. | 1297 __ popq(RAX); // Pop type arguments. |
| 1302 } else { | 1298 __ popq(RAX); // Pop receiver. |
| 1303 __ pushq(raw_null); // Push null type arguments. | 1299 } else { |
| 1304 } | 1300 ASSERT(func.IsNonImplicitClosureFunction()); |
| 1305 if (is_implicit_instance_closure) { | 1301 __ CallRuntime(kAllocateClosureRuntimeEntry); |
| 1306 __ CallRuntime(kAllocateImplicitInstanceClosureRuntimeEntry); | 1302 __ popq(RAX); // Pop type arguments. |
| 1307 __ popq(RAX); // Pop type arguments. | |
| 1308 __ popq(RAX); // Pop receiver. | |
| 1309 } else { | |
| 1310 ASSERT(func.IsNonImplicitClosureFunction()); | |
| 1311 __ CallRuntime(kAllocateClosureRuntimeEntry); | |
| 1312 __ popq(RAX); // Pop type arguments. | |
| 1313 } | |
| 1314 } | 1303 } |
| 1315 __ popq(RAX); // Pop the function object. | 1304 __ popq(RAX); // Pop the function object. |
| 1316 __ popq(RAX); // Pop the result. | 1305 __ popq(RAX); // Pop the result. |
| 1317 // RAX: New closure object. | 1306 // RAX: New closure object. |
| 1318 // Restore the calling frame. | 1307 // Restore the calling frame. |
| 1319 __ LeaveFrame(); | 1308 __ LeaveFrame(); |
| 1320 __ ret(); | 1309 __ ret(); |
| 1321 } | 1310 } |
| 1322 | 1311 |
| 1323 | 1312 |
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| 2169 __ movq(right, Address(RSP, 3 * kWordSize)); | 2158 __ movq(right, Address(RSP, 3 * kWordSize)); |
| 2170 GenerateIdenticalWithNumberCheckStub(assembler, left, right); | 2159 GenerateIdenticalWithNumberCheckStub(assembler, left, right); |
| 2171 __ popq(right); | 2160 __ popq(right); |
| 2172 __ popq(left); | 2161 __ popq(left); |
| 2173 __ ret(); | 2162 __ ret(); |
| 2174 } | 2163 } |
| 2175 | 2164 |
| 2176 } // namespace dart | 2165 } // namespace dart |
| 2177 | 2166 |
| 2178 #endif // defined TARGET_ARCH_X64 | 2167 #endif // defined TARGET_ARCH_X64 |
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