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Issue 10758008: - On store buffer block overflow call a VM leaf function to (Closed) Base URL: http://dart.googlecode.com/svn/branches/bleeding_edge/dart/runtime/
Patch Set: Created 8 years, 5 months ago
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1 // Copyright (c) 2011, the Dart project authors. Please see the AUTHORS file 1 // Copyright (c) 2011, 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_IA32) 6 #if defined(TARGET_ARCH_IA32)
7 7
8 #include "vm/assembler.h" 8 #include "vm/assembler.h"
9 #include "vm/assembler_macros.h" 9 #include "vm/assembler_macros.h"
10 #include "vm/compiler.h" 10 #include "vm/compiler.h"
(...skipping 71 matching lines...) Expand 10 before | Expand all | Expand 10 after
82 82
83 // Cache Context pointer into CTX while executing Dart code. 83 // Cache Context pointer into CTX while executing Dart code.
84 __ movl(CTX, ECX); 84 __ movl(CTX, ECX);
85 85
86 __ LeaveFrame(); 86 __ LeaveFrame();
87 __ ret(); 87 __ ret();
88 } 88 }
89 89
90 90
91 // Print the stop message. 91 // Print the stop message.
92 static void PrintStopMessage(const char* message) { 92 DEFINE_LEAF_RUNTIME_ENTRY(void, PrintStopMessage, const char* message) {
93 OS::Print("Stop message: %s\n", message); 93 OS::Print("Stop message: %s\n", message);
94 } 94 }
95 END_LEAF_RUNTIME_ENTRY
95 96
96 97
97 // Input parameters: 98 // Input parameters:
98 // ESP : points to return address. 99 // ESP : points to return address.
99 // EAX : stop message (const char*). 100 // EAX : stop message (const char*).
100 // Must preserve all registers, except EAX. 101 // Must preserve all registers, except EAX.
101 void StubCode::GeneratePrintStopMessageStub(Assembler* assembler) { 102 void StubCode::GeneratePrintStopMessageStub(Assembler* assembler) {
102 // Preserve caller-saved registers. 103 __ enter(Immediate(0));
103 __ pushl(ECX); 104 __ PreserveCallerSavedRegisters();
104 __ pushl(EDX);
105 105
106 // Create a stub frame as we are pushing some objects on the stack before 106 // Call the runtime leaf function.
107 // calling into the runtime. 107 __ ReserveAlignedFrameSpace(kWordSize);
siva 2012/07/09 22:51:07 1 * kWordSize to be uniform with similar code belo
Ivan Posva 2012/07/09 22:59:35 Done.
108 AssemblerMacros::EnterStubFrame(assembler); 108 __ movl(Address(ESP, 0), EAX);
109 __ CallRuntime(kPrintStopMessageRuntimeEntry);
109 110
110 // Reserve space for the native argument and align frame before entering 111 __ RestoreCallerSavedRegisters();
111 // the C++ world. 112 __ leave();
112 __ AddImmediate(ESP, Immediate(-sizeof(kWordSize)));
113 if (OS::ActivationFrameAlignment() > 0) {
114 __ andl(ESP, Immediate(~(OS::ActivationFrameAlignment() - 1)));
115 }
116
117 // Pass argument and call native function.
118 __ movl(Address(ESP, 0), EAX);
119 __ movl(EAX, Immediate(reinterpret_cast<uword>(&PrintStopMessage)));
120 __ call(EAX);
121 __ popl(EAX);
122
123 __ LeaveFrame();
124
125 // Restore caller-saved registers.
126 __ popl(EDX);
127 __ popl(ECX);
128
129 __ ret(); 113 __ ret();
130 } 114 }
131 115
132 116
133 // Input parameters: 117 // Input parameters:
134 // ESP : points to return address. 118 // ESP : points to return address.
135 // ESP + 4 : address of return value. 119 // ESP + 4 : address of return value.
136 // EAX : address of first argument in argument array. 120 // EAX : address of first argument in argument array.
137 // EAX - 4*EDX + 4 : address of last argument in argument array. 121 // EAX - 4*EDX + 4 : address of last argument in argument array.
138 // ECX : address of the native function to call. 122 // ECX : address of the native function to call.
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1072 __ pushl(EDX); 1056 __ pushl(EDX);
1073 __ CallRuntime(kAllocateContextRuntimeEntry); // Allocate context. 1057 __ CallRuntime(kAllocateContextRuntimeEntry); // Allocate context.
1074 __ popl(EAX); // Pop number of context variables argument. 1058 __ popl(EAX); // Pop number of context variables argument.
1075 __ popl(EAX); // Pop the new context object. 1059 __ popl(EAX); // Pop the new context object.
1076 // EAX: new object 1060 // EAX: new object
1077 // Restore the frame pointer. 1061 // Restore the frame pointer.
1078 __ LeaveFrame(); 1062 __ LeaveFrame();
1079 __ ret(); 1063 __ ret();
1080 } 1064 }
1081 1065
1066 DECLARE_LEAF_RUNTIME_ENTRY(void, StoreBufferBlockProcess, Isolate* isolate);
1082 1067
1083 // Helper stub to implement Assembler::StoreIntoObject. 1068 // Helper stub to implement Assembler::StoreIntoObject.
1084 // Input parameters: 1069 // Input parameters:
1085 // EAX: Address being stored 1070 // EAX: Address being stored
1086 void StubCode::GenerateUpdateStoreBufferStub(Assembler* assembler) { 1071 void StubCode::GenerateUpdateStoreBufferStub(Assembler* assembler) {
1087 // Save values being destroyed. 1072 // Save values being destroyed.
1088 __ pushl(CTX); 1073 __ pushl(EDX);
1089 __ pushl(EBX); 1074 __ pushl(ECX);
1090 1075
1091 // Load the isolate out of the context. 1076 // Load the isolate out of the context.
1077 // Spilled: EDX, ECX
1092 // EAX: Address being stored 1078 // EAX: Address being stored
1093 __ movl(CTX, FieldAddress(CTX, Context::isolate_offset())); 1079 __ movl(EDX, FieldAddress(CTX, Context::isolate_offset()));
1094 1080
1095 // Load top_ out of the StoreBufferBlock and add the address to the pointers_. 1081 // Load top_ out of the StoreBufferBlock and add the address to the pointers_.
1082 // Spilled: EDX, ECX
1096 // EAX: Address being stored 1083 // EAX: Address being stored
1097 // CTX: Isolate 1084 // EDX: Isolate
1098 intptr_t store_buffer_offset = Isolate::store_buffer_block_offset(); 1085 intptr_t store_buffer_offset = Isolate::store_buffer_block_offset();
1099 __ movl(EBX, 1086 __ movl(ECX,
1100 Address(CTX, store_buffer_offset + StoreBufferBlock::top_offset())); 1087 Address(EDX, store_buffer_offset + StoreBufferBlock::top_offset()));
1101 __ movl(Address(CTX, 1088 __ movl(Address(EDX,
1102 EBX, TIMES_4, 1089 ECX, TIMES_4,
1103 store_buffer_offset + StoreBufferBlock::pointers_offset()), 1090 store_buffer_offset + StoreBufferBlock::pointers_offset()),
1104 EAX); 1091 EAX);
1105 1092
1106 // Increment top_ and check for overflow. 1093 // Increment top_ and check for overflow.
1107 // EBX: top_ 1094 // Spilled: EDX, ECX
1108 // CTX: Isolate 1095 // ECX: top_
1096 // EDX: Isolate
1109 Label L; 1097 Label L;
1110 __ incl(EBX); 1098 __ incl(ECX);
1111 __ movl(Address(CTX, store_buffer_offset + StoreBufferBlock::top_offset()), 1099 __ movl(Address(EDX, store_buffer_offset + StoreBufferBlock::top_offset()),
1112 EBX); 1100 ECX);
1113 __ cmpl(EBX, Immediate(StoreBufferBlock::kSize)); 1101 __ cmpl(ECX, Immediate(StoreBufferBlock::kSize));
1114 __ j(NOT_EQUAL, &L, Assembler::kNearJump); 1102 // Restore values.
1103 // Spilled: EDX, ECX
1104 __ popl(ECX);
1105 __ popl(EDX);
1106 __ j(EQUAL, &L, Assembler::kNearJump);
1107 __ ret();
1115 1108
1116 // Handle overflow: Reset the top_ pointer. 1109 // Handle overflow: Call the runtime leaf function.
1117 // CTX: Isolate
1118 __ movl(Address(CTX, store_buffer_offset + StoreBufferBlock::top_offset()),
1119 Immediate(0));
1120
1121 __ Bind(&L); 1110 __ Bind(&L);
1122 // Restore values. 1111 // Setup frame, push callee-saved registers.
1123 __ popl(EBX); 1112 __ enter(Immediate(0));
1124 __ popl(CTX); 1113 __ PreserveCallerSavedRegisters();
1114 __ movl(EAX, FieldAddress(CTX, Context::isolate_offset()));
1115 __ ReserveAlignedFrameSpace(1 * kWordSize);
1116 __ movl(Address(ESP, 0), EAX); // Push the isolate as the only argument.
1117 __ CallRuntime(kStoreBufferBlockProcessRuntimeEntry);
1118 // Restore callee-saved registers, tear down frame.
1119 __ RestoreCallerSavedRegisters();
1120 __ leave();
1125 __ ret(); 1121 __ ret();
1126 } 1122 }
1127 1123
1128 1124
1129 // Called for inline allocation of objects. 1125 // Called for inline allocation of objects.
1130 // Input parameters: 1126 // Input parameters:
1131 // ESP + 8 : type arguments object (only if class is parameterized). 1127 // ESP + 8 : type arguments object (only if class is parameterized).
1132 // ESP + 4 : type arguments of instantiator (only if class is parameterized). 1128 // ESP + 4 : type arguments of instantiator (only if class is parameterized).
1133 // ESP : points to return address. 1129 // ESP : points to return address.
1134 // Uses EAX, EBX, ECX, EDX, EDI as temporary registers. 1130 // Uses EAX, EBX, ECX, EDX, EDI as temporary registers.
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1948 __ movl(EAX, Address(ESP, 4 * kWordSize)); // Load error object. 1944 __ movl(EAX, Address(ESP, 4 * kWordSize)); // Load error object.
1949 __ movl(EBP, Address(ESP, 3 * kWordSize)); // Load target frame_pointer. 1945 __ movl(EBP, Address(ESP, 3 * kWordSize)); // Load target frame_pointer.
1950 __ movl(EBX, Address(ESP, 1 * kWordSize)); // Load target PC into EBX. 1946 __ movl(EBX, Address(ESP, 1 * kWordSize)); // Load target PC into EBX.
1951 __ movl(ESP, Address(ESP, 2 * kWordSize)); // Load target stack_pointer. 1947 __ movl(ESP, Address(ESP, 2 * kWordSize)); // Load target stack_pointer.
1952 __ jmp(EBX); // Jump to the exception handler code. 1948 __ jmp(EBX); // Jump to the exception handler code.
1953 } 1949 }
1954 1950
1955 } // namespace dart 1951 } // namespace dart
1956 1952
1957 #endif // defined TARGET_ARCH_IA32 1953 #endif // defined TARGET_ARCH_IA32
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