1 //===-- RegisterContextLinux_i386.cpp --------------------------*- C++ -*-===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===---------------------------------------------------------------------===// 9 10 #include "RegisterContextPOSIX_x86.h" 11 #include "RegisterContextLinux_i386.h" 12 13 using namespace lldb_private; 14 using namespace lldb; 15 16 struct GPR 17 { 18 uint32_t ebx; 19 uint32_t ecx; 20 uint32_t edx; 21 uint32_t esi; 22 uint32_t edi; 23 uint32_t ebp; 24 uint32_t eax; 25 uint32_t ds; 26 uint32_t es; 27 uint32_t fs; 28 uint32_t gs; 29 uint32_t orig_eax; 30 uint32_t eip; 31 uint32_t cs; 32 uint32_t eflags; 33 uint32_t esp; 34 uint32_t ss; 35 }; 36 37 struct FPR_i386 38 { 39 uint16_t fctrl; // FPU Control Word (fcw) 40 uint16_t fstat; // FPU Status Word (fsw) 41 uint8_t ftag; // FPU Tag Word (ftw) 42 uint8_t reserved_1; // Reserved 43 uint16_t fop; // Last Instruction Opcode (fop) 44 union 45 { 46 struct 47 { 48 uint64_t fip; // Instruction Pointer 49 uint64_t fdp; // Data Pointer 50 } x86_64; 51 struct 52 { 53 uint32_t fioff; // FPU IP Offset (fip) 54 uint32_t fiseg; // FPU IP Selector (fcs) 55 uint32_t fooff; // FPU Operand Pointer Offset (foo) 56 uint32_t foseg; // FPU Operand Pointer Selector (fos) 57 } i386_;// Added _ in the end to avoid error with gcc defining i386 in some cases 58 } ptr; 59 uint32_t mxcsr; // MXCSR Register State 60 uint32_t mxcsrmask; // MXCSR Mask 61 MMSReg stmm[8]; // 8*16 bytes for each FP-reg = 128 bytes 62 XMMReg xmm[8]; // 8*16 bytes for each XMM-reg = 128 bytes 63 uint32_t padding[56]; 64 }; 65 66 struct UserArea 67 { 68 GPR regs; // General purpose registers. 69 int32_t fpvalid; // True if FPU is being used. 70 FPR_i386 i387; // FPU registers. 71 uint32_t tsize; // Text segment size. 72 uint32_t dsize; // Data segment size. 73 uint32_t ssize; // Stack segment size. 74 uint32_t start_code; // VM address of text. 75 uint32_t start_stack; // VM address of stack bottom (top in rsp). 76 int32_t signal; // Signal causing core dump. 77 int32_t reserved; // Unused. 78 uint32_t ar0; // Location of GPR's. 79 uint32_t fpstate; // Location of FPR's. Should be a FXSTATE *, but this 80 // has to be 32-bits even on 64-bit systems. 81 uint32_t magic; // Identifier for core dumps. 82 char u_comm[32]; // Command causing core dump. 83 uint32_t u_debugreg[8]; // Debug registers (DR0 - DR7). 84 }; 85 86 #define DR_SIZE sizeof(((UserArea*)NULL)->u_debugreg[0]) 87 #define DR_0_OFFSET 0xFC 88 #define DR_OFFSET(reg_index) \ 89 (DR_0_OFFSET + (reg_index * 4)) 90 #define FPR_SIZE(reg) sizeof(((FPR_i386*)NULL)->reg) 91 92 //--------------------------------------------------------------------------- 93 // Include RegisterInfos_i386 to declare our g_register_infos_i386 structure. 94 //--------------------------------------------------------------------------- 95 #define DECLARE_REGISTER_INFOS_I386_STRUCT 96 #include "RegisterInfos_i386.h" 97 #undef DECLARE_REGISTER_INFOS_I386_STRUCT 98 99 RegisterContextLinux_i386::RegisterContextLinux_i386(const ArchSpec &target_arch) : 100 RegisterInfoInterface(target_arch) 101 { 102 RegisterInfo orig_ax = { "orig_eax", NULL, sizeof(((GPR*)NULL)->orig_eax), (LLVM_EXTENSION offsetof(GPR, orig_eax)), eEncodingUint, \ 103 eFormatHex, { LLDB_INVALID_REGNUM, LLDB_INVALID_REGNUM, LLDB_INVALID_REGNUM, LLDB_INVALID_REGNUM, LLDB_INVALID_REGNUM }, NULL, NULL }; 104 d_register_infos.push_back(orig_ax); 105 } 106 107 size_t 108 RegisterContextLinux_i386::GetGPRSize() const 109 { 110 return sizeof(GPR); 111 } 112 113 const RegisterInfo * 114 RegisterContextLinux_i386::GetRegisterInfo() const 115 { 116 switch (m_target_arch.GetMachine()) 117 { 118 case llvm::Triple::x86: 119 case llvm::Triple::x86_64: 120 return g_register_infos_i386; 121 default: 122 assert(false && "Unhandled target architecture."); 123 return NULL; 124 } 125 } 126 127 uint32_t 128 RegisterContextLinux_i386::GetRegisterCount () const 129 { 130 return static_cast<uint32_t> (sizeof (g_register_infos_i386) / sizeof (g_register_infos_i386 [0])); 131 } 132 133 uint32_t 134 RegisterContextLinux_i386::GetUserRegisterCount () const 135 { 136 return static_cast<uint32_t> (k_num_user_registers_i386); 137 } 138 139 const std::vector<lldb_private::RegisterInfo> * 140 RegisterContextLinux_i386::GetDynamicRegisterInfoP() const 141 { 142 return &d_register_infos; 143 } 144