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Issue 6614010: [Isolates] Merge 6700:7030 from bleeding_edge to isolates. (Closed) Base URL: http://v8.googlecode.com/svn/branches/experimental/isolates/
Patch Set: '' Created 9 years, 9 months ago
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1 // Copyright 2010 the V8 project authors. All rights reserved. 1 // Copyright 2010 the V8 project authors. All rights reserved.
2 // Redistribution and use in source and binary forms, with or without 2 // Redistribution and use in source and binary forms, with or without
3 // modification, are permitted provided that the following conditions are 3 // modification, are permitted provided that the following conditions are
4 // met: 4 // met:
5 // 5 //
6 // * Redistributions of source code must retain the above copyright 6 // * Redistributions of source code must retain the above copyright
7 // notice, this list of conditions and the following disclaimer. 7 // notice, this list of conditions and the following disclaimer.
8 // * Redistributions in binary form must reproduce the above 8 // * Redistributions in binary form must reproduce the above
9 // copyright notice, this list of conditions and the following 9 // copyright notice, this list of conditions and the following
10 // disclaimer in the documentation and/or other materials provided 10 // disclaimer in the documentation and/or other materials provided
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1000 1000
1001 int Simulator::ReadW(int32_t addr, Instruction* instr) { 1001 int Simulator::ReadW(int32_t addr, Instruction* instr) {
1002 #if V8_TARGET_CAN_READ_UNALIGNED 1002 #if V8_TARGET_CAN_READ_UNALIGNED
1003 intptr_t* ptr = reinterpret_cast<intptr_t*>(addr); 1003 intptr_t* ptr = reinterpret_cast<intptr_t*>(addr);
1004 return *ptr; 1004 return *ptr;
1005 #else 1005 #else
1006 if ((addr & 3) == 0) { 1006 if ((addr & 3) == 0) {
1007 intptr_t* ptr = reinterpret_cast<intptr_t*>(addr); 1007 intptr_t* ptr = reinterpret_cast<intptr_t*>(addr);
1008 return *ptr; 1008 return *ptr;
1009 } 1009 }
1010 PrintF("Unaligned read at 0x%08x, pc=%p\n", addr, instr); 1010 PrintF("Unaligned read at 0x%08x, pc=0x%08" V8PRIxPTR "\n",
1011 addr,
1012 reinterpret_cast<intptr_t>(instr));
1011 UNIMPLEMENTED(); 1013 UNIMPLEMENTED();
1012 return 0; 1014 return 0;
1013 #endif 1015 #endif
1014 } 1016 }
1015 1017
1016 1018
1017 void Simulator::WriteW(int32_t addr, int value, Instruction* instr) { 1019 void Simulator::WriteW(int32_t addr, int value, Instruction* instr) {
1018 #if V8_TARGET_CAN_READ_UNALIGNED 1020 #if V8_TARGET_CAN_READ_UNALIGNED
1019 intptr_t* ptr = reinterpret_cast<intptr_t*>(addr); 1021 intptr_t* ptr = reinterpret_cast<intptr_t*>(addr);
1020 *ptr = value; 1022 *ptr = value;
1021 return; 1023 return;
1022 #else 1024 #else
1023 if ((addr & 3) == 0) { 1025 if ((addr & 3) == 0) {
1024 intptr_t* ptr = reinterpret_cast<intptr_t*>(addr); 1026 intptr_t* ptr = reinterpret_cast<intptr_t*>(addr);
1025 *ptr = value; 1027 *ptr = value;
1026 return; 1028 return;
1027 } 1029 }
1028 PrintF("Unaligned write at 0x%08x, pc=%p\n", addr, instr); 1030 PrintF("Unaligned write at 0x%08x, pc=0x%08" V8PRIxPTR "\n",
1031 addr,
1032 reinterpret_cast<intptr_t>(instr));
1029 UNIMPLEMENTED(); 1033 UNIMPLEMENTED();
1030 #endif 1034 #endif
1031 } 1035 }
1032 1036
1033 1037
1034 uint16_t Simulator::ReadHU(int32_t addr, Instruction* instr) { 1038 uint16_t Simulator::ReadHU(int32_t addr, Instruction* instr) {
1035 #if V8_TARGET_CAN_READ_UNALIGNED 1039 #if V8_TARGET_CAN_READ_UNALIGNED
1036 uint16_t* ptr = reinterpret_cast<uint16_t*>(addr); 1040 uint16_t* ptr = reinterpret_cast<uint16_t*>(addr);
1037 return *ptr; 1041 return *ptr;
1038 #else 1042 #else
1039 if ((addr & 1) == 0) { 1043 if ((addr & 1) == 0) {
1040 uint16_t* ptr = reinterpret_cast<uint16_t*>(addr); 1044 uint16_t* ptr = reinterpret_cast<uint16_t*>(addr);
1041 return *ptr; 1045 return *ptr;
1042 } 1046 }
1043 PrintF("Unaligned unsigned halfword read at 0x%08x, pc=%p\n", addr, instr); 1047 PrintF("Unaligned unsigned halfword read at 0x%08x, pc=0x%08" V8PRIxPTR "\n",
1048 addr,
1049 reinterpret_cast<intptr_t>(instr));
1044 UNIMPLEMENTED(); 1050 UNIMPLEMENTED();
1045 return 0; 1051 return 0;
1046 #endif 1052 #endif
1047 } 1053 }
1048 1054
1049 1055
1050 int16_t Simulator::ReadH(int32_t addr, Instruction* instr) { 1056 int16_t Simulator::ReadH(int32_t addr, Instruction* instr) {
1051 #if V8_TARGET_CAN_READ_UNALIGNED 1057 #if V8_TARGET_CAN_READ_UNALIGNED
1052 int16_t* ptr = reinterpret_cast<int16_t*>(addr); 1058 int16_t* ptr = reinterpret_cast<int16_t*>(addr);
1053 return *ptr; 1059 return *ptr;
(...skipping 13 matching lines...) Expand all
1067 #if V8_TARGET_CAN_READ_UNALIGNED 1073 #if V8_TARGET_CAN_READ_UNALIGNED
1068 uint16_t* ptr = reinterpret_cast<uint16_t*>(addr); 1074 uint16_t* ptr = reinterpret_cast<uint16_t*>(addr);
1069 *ptr = value; 1075 *ptr = value;
1070 return; 1076 return;
1071 #else 1077 #else
1072 if ((addr & 1) == 0) { 1078 if ((addr & 1) == 0) {
1073 uint16_t* ptr = reinterpret_cast<uint16_t*>(addr); 1079 uint16_t* ptr = reinterpret_cast<uint16_t*>(addr);
1074 *ptr = value; 1080 *ptr = value;
1075 return; 1081 return;
1076 } 1082 }
1077 PrintF("Unaligned unsigned halfword write at 0x%08x, pc=%p\n", addr, instr); 1083 PrintF("Unaligned unsigned halfword write at 0x%08x, pc=0x%08" V8PRIxPTR "\n",
1084 addr,
1085 reinterpret_cast<intptr_t>(instr));
1078 UNIMPLEMENTED(); 1086 UNIMPLEMENTED();
1079 #endif 1087 #endif
1080 } 1088 }
1081 1089
1082 1090
1083 void Simulator::WriteH(int32_t addr, int16_t value, Instruction* instr) { 1091 void Simulator::WriteH(int32_t addr, int16_t value, Instruction* instr) {
1084 #if V8_TARGET_CAN_READ_UNALIGNED 1092 #if V8_TARGET_CAN_READ_UNALIGNED
1085 int16_t* ptr = reinterpret_cast<int16_t*>(addr); 1093 int16_t* ptr = reinterpret_cast<int16_t*>(addr);
1086 *ptr = value; 1094 *ptr = value;
1087 return; 1095 return;
1088 #else 1096 #else
1089 if ((addr & 1) == 0) { 1097 if ((addr & 1) == 0) {
1090 int16_t* ptr = reinterpret_cast<int16_t*>(addr); 1098 int16_t* ptr = reinterpret_cast<int16_t*>(addr);
1091 *ptr = value; 1099 *ptr = value;
1092 return; 1100 return;
1093 } 1101 }
1094 PrintF("Unaligned halfword write at 0x%08x, pc=%p\n", addr, instr); 1102 PrintF("Unaligned halfword write at 0x%08x, pc=0x%08" V8PRIxPTR "\n",
1103 addr,
1104 reinterpret_cast<intptr_t>(instr));
1095 UNIMPLEMENTED(); 1105 UNIMPLEMENTED();
1096 #endif 1106 #endif
1097 } 1107 }
1098 1108
1099 1109
1100 uint8_t Simulator::ReadBU(int32_t addr) { 1110 uint8_t Simulator::ReadBU(int32_t addr) {
1101 uint8_t* ptr = reinterpret_cast<uint8_t*>(addr); 1111 uint8_t* ptr = reinterpret_cast<uint8_t*>(addr);
1102 return *ptr; 1112 return *ptr;
1103 } 1113 }
1104 1114
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1526 int32_t arg2, 1536 int32_t arg2,
1527 int32_t arg3, 1537 int32_t arg3,
1528 int32_t arg4); 1538 int32_t arg4);
1529 typedef double (*SimulatorRuntimeFPCall)(int32_t arg0, 1539 typedef double (*SimulatorRuntimeFPCall)(int32_t arg0,
1530 int32_t arg1, 1540 int32_t arg1,
1531 int32_t arg2, 1541 int32_t arg2,
1532 int32_t arg3); 1542 int32_t arg3);
1533 1543
1534 // This signature supports direct call in to API function native callback 1544 // This signature supports direct call in to API function native callback
1535 // (refer to InvocationCallback in v8.h). 1545 // (refer to InvocationCallback in v8.h).
1536 typedef v8::Handle<v8::Value> (*SimulatorRuntimeApiCall)(int32_t arg0); 1546 typedef v8::Handle<v8::Value> (*SimulatorRuntimeDirectApiCall)(int32_t arg0);
1547
1548 // This signature supports direct call to accessor getter callback.
1549 typedef v8::Handle<v8::Value> (*SimulatorRuntimeDirectGetterCall)(int32_t arg0,
1550 int32_t arg1);
1537 1551
1538 // Software interrupt instructions are used by the simulator to call into the 1552 // Software interrupt instructions are used by the simulator to call into the
1539 // C-based V8 runtime. 1553 // C-based V8 runtime.
1540 void Simulator::SoftwareInterrupt(Instruction* instr) { 1554 void Simulator::SoftwareInterrupt(Instruction* instr) {
1541 int svc = instr->SvcValue(); 1555 int svc = instr->SvcValue();
1542 switch (svc) { 1556 switch (svc) {
1543 case kCallRtRedirected: { 1557 case kCallRtRedirected: {
1544 // Check if stack is aligned. Error if not aligned is reported below to 1558 // Check if stack is aligned. Error if not aligned is reported below to
1545 // include information on the function called. 1559 // include information on the function called.
1546 bool stack_aligned = 1560 bool stack_aligned =
(...skipping 20 matching lines...) Expand all
1567 PrintF("Call to host function at %p with args %f, %f", 1581 PrintF("Call to host function at %p with args %f, %f",
1568 FUNCTION_ADDR(target), x, y); 1582 FUNCTION_ADDR(target), x, y);
1569 if (!stack_aligned) { 1583 if (!stack_aligned) {
1570 PrintF(" with unaligned stack %08x\n", get_register(sp)); 1584 PrintF(" with unaligned stack %08x\n", get_register(sp));
1571 } 1585 }
1572 PrintF("\n"); 1586 PrintF("\n");
1573 } 1587 }
1574 CHECK(stack_aligned); 1588 CHECK(stack_aligned);
1575 double result = target(arg0, arg1, arg2, arg3); 1589 double result = target(arg0, arg1, arg2, arg3);
1576 SetFpResult(result); 1590 SetFpResult(result);
1577 } else if (redirection->type() == ExternalReference::DIRECT_CALL) { 1591 } else if (redirection->type() == ExternalReference::DIRECT_API_CALL) {
1578 SimulatorRuntimeApiCall target = 1592 SimulatorRuntimeDirectApiCall target =
1579 reinterpret_cast<SimulatorRuntimeApiCall>(external); 1593 reinterpret_cast<SimulatorRuntimeDirectApiCall>(external);
1580 if (::v8::internal::FLAG_trace_sim || !stack_aligned) { 1594 if (::v8::internal::FLAG_trace_sim || !stack_aligned) {
1581 PrintF( 1595 PrintF("Call to host function at %p args %08x",
1582 "Call to host function at %p args %08x", 1596 FUNCTION_ADDR(target), arg0);
1583 FUNCTION_ADDR(target),
1584 arg0);
1585 if (!stack_aligned) { 1597 if (!stack_aligned) {
1586 PrintF(" with unaligned stack %08x\n", get_register(sp)); 1598 PrintF(" with unaligned stack %08x\n", get_register(sp));
1587 } 1599 }
1588 PrintF("\n"); 1600 PrintF("\n");
1589 } 1601 }
1590 CHECK(stack_aligned); 1602 CHECK(stack_aligned);
1591 v8::Handle<v8::Value> result = target(arg0); 1603 v8::Handle<v8::Value> result = target(arg0);
1592 if (::v8::internal::FLAG_trace_sim) { 1604 if (::v8::internal::FLAG_trace_sim) {
1593 PrintF("Returned %p\n", reinterpret_cast<void *>(*result)); 1605 PrintF("Returned %p\n", reinterpret_cast<void *>(*result));
1594 } 1606 }
1595 set_register(r0, (int32_t) *result); 1607 set_register(r0, (int32_t) *result);
1608 } else if (redirection->type() == ExternalReference::DIRECT_GETTER_CALL) {
1609 SimulatorRuntimeDirectGetterCall target =
1610 reinterpret_cast<SimulatorRuntimeDirectGetterCall>(external);
1611 if (::v8::internal::FLAG_trace_sim || !stack_aligned) {
1612 PrintF("Call to host function at %p args %08x %08x",
1613 FUNCTION_ADDR(target), arg0, arg1);
1614 if (!stack_aligned) {
1615 PrintF(" with unaligned stack %08x\n", get_register(sp));
1616 }
1617 PrintF("\n");
1618 }
1619 CHECK(stack_aligned);
1620 v8::Handle<v8::Value> result = target(arg0, arg1);
1621 if (::v8::internal::FLAG_trace_sim) {
1622 PrintF("Returned %p\n", reinterpret_cast<void *>(*result));
1623 }
1624 set_register(r0, (int32_t) *result);
1596 } else { 1625 } else {
1597 // builtin call. 1626 // builtin call.
1598 ASSERT(redirection->type() == ExternalReference::BUILTIN_CALL); 1627 ASSERT(redirection->type() == ExternalReference::BUILTIN_CALL);
1599 SimulatorRuntimeCall target = 1628 SimulatorRuntimeCall target =
1600 reinterpret_cast<SimulatorRuntimeCall>(external); 1629 reinterpret_cast<SimulatorRuntimeCall>(external);
1601 if (::v8::internal::FLAG_trace_sim || !stack_aligned) { 1630 if (::v8::internal::FLAG_trace_sim || !stack_aligned) {
1602 PrintF( 1631 PrintF(
1603 "Call to host function at %p args %08x, %08x, %08x, %08x, %0xc", 1632 "Call to host function at %p args %08x, %08x, %08x, %08x, %0xc",
1604 FUNCTION_ADDR(target), 1633 FUNCTION_ADDR(target),
1605 arg0, 1634 arg0,
(...skipping 924 matching lines...) Expand 10 before | Expand all | Expand 10 after
2530 set_d_register_from_double(vd, dd_value); 2559 set_d_register_from_double(vd, dd_value);
2531 } else if ((instr->Opc1Value() == 0x4) && !(instr->Opc3Value() & 0x1)) { 2560 } else if ((instr->Opc1Value() == 0x4) && !(instr->Opc3Value() & 0x1)) {
2532 // vdiv 2561 // vdiv
2533 if (instr->SzValue() != 0x1) { 2562 if (instr->SzValue() != 0x1) {
2534 UNREACHABLE(); // Not used by V8. 2563 UNREACHABLE(); // Not used by V8.
2535 } 2564 }
2536 2565
2537 double dn_value = get_double_from_d_register(vn); 2566 double dn_value = get_double_from_d_register(vn);
2538 double dm_value = get_double_from_d_register(vm); 2567 double dm_value = get_double_from_d_register(vm);
2539 double dd_value = dn_value / dm_value; 2568 double dd_value = dn_value / dm_value;
2569 div_zero_vfp_flag_ = (dm_value == 0);
2540 set_d_register_from_double(vd, dd_value); 2570 set_d_register_from_double(vd, dd_value);
2541 } else { 2571 } else {
2542 UNIMPLEMENTED(); // Not used by V8. 2572 UNIMPLEMENTED(); // Not used by V8.
2543 } 2573 }
2544 } else { 2574 } else {
2545 if ((instr->VCValue() == 0x0) && 2575 if ((instr->VCValue() == 0x0) &&
2546 (instr->VAValue() == 0x0)) { 2576 (instr->VAValue() == 0x0)) {
2547 DecodeVMOVBetweenCoreAndSinglePrecisionRegisters(instr); 2577 DecodeVMOVBetweenCoreAndSinglePrecisionRegisters(instr);
2548 } else if ((instr->VLValue() == 0x1) && 2578 } else if ((instr->VLValue() == 0x1) &&
2549 (instr->VCValue() == 0x0) && 2579 (instr->VCValue() == 0x0) &&
(...skipping 214 matching lines...) Expand 10 before | Expand all | Expand 10 after
2764 bool double_precision = (src_precision == kDoublePrecision); 2794 bool double_precision = (src_precision == kDoublePrecision);
2765 2795
2766 double val = double_precision ? get_double_from_d_register(src) 2796 double val = double_precision ? get_double_from_d_register(src)
2767 : get_float_from_s_register(src); 2797 : get_float_from_s_register(src);
2768 2798
2769 int temp = unsigned_integer ? static_cast<uint32_t>(val) 2799 int temp = unsigned_integer ? static_cast<uint32_t>(val)
2770 : static_cast<int32_t>(val); 2800 : static_cast<int32_t>(val);
2771 2801
2772 inv_op_vfp_flag_ = get_inv_op_vfp_flag(mode, val, unsigned_integer); 2802 inv_op_vfp_flag_ = get_inv_op_vfp_flag(mode, val, unsigned_integer);
2773 2803
2804 double abs_diff =
2805 unsigned_integer ? fabs(val - static_cast<uint32_t>(temp))
2806 : fabs(val - temp);
2807
2808 inexact_vfp_flag_ = (abs_diff != 0);
2809
2774 if (inv_op_vfp_flag_) { 2810 if (inv_op_vfp_flag_) {
2775 temp = VFPConversionSaturate(val, unsigned_integer); 2811 temp = VFPConversionSaturate(val, unsigned_integer);
2776 } else { 2812 } else {
2777 switch (mode) { 2813 switch (mode) {
2778 case RN: { 2814 case RN: {
2779 double abs_diff =
2780 unsigned_integer ? fabs(val - static_cast<uint32_t>(temp))
2781 : fabs(val - temp);
2782 int val_sign = (val > 0) ? 1 : -1; 2815 int val_sign = (val > 0) ? 1 : -1;
2783 if (abs_diff > 0.5) { 2816 if (abs_diff > 0.5) {
2784 temp += val_sign; 2817 temp += val_sign;
2785 } else if (abs_diff == 0.5) { 2818 } else if (abs_diff == 0.5) {
2786 // Round to even if exactly halfway. 2819 // Round to even if exactly halfway.
2787 temp = ((temp % 2) == 0) ? temp : temp + val_sign; 2820 temp = ((temp % 2) == 0) ? temp : temp + val_sign;
2788 } 2821 }
2789 break; 2822 break;
2790 } 2823 }
2791 2824
(...skipping 333 matching lines...) Expand 10 before | Expand all | Expand 10 after
3125 uintptr_t address = *stack_slot; 3158 uintptr_t address = *stack_slot;
3126 set_register(sp, current_sp + sizeof(uintptr_t)); 3159 set_register(sp, current_sp + sizeof(uintptr_t));
3127 return address; 3160 return address;
3128 } 3161 }
3129 3162
3130 } } // namespace v8::internal 3163 } } // namespace v8::internal
3131 3164
3132 #endif // USE_SIMULATOR 3165 #endif // USE_SIMULATOR
3133 3166
3134 #endif // V8_TARGET_ARCH_ARM 3167 #endif // V8_TARGET_ARCH_ARM
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