10127ef0fSEd Maste //===-- RegisterContextPOSIX_arm64.cpp --------------------------*- C++ -*-===//
20127ef0fSEd Maste //
30127ef0fSEd Maste // The LLVM Compiler Infrastructure
40127ef0fSEd Maste //
50127ef0fSEd Maste // This file is distributed under the University of Illinois Open Source
60127ef0fSEd Maste // License. See LICENSE.TXT for details.
70127ef0fSEd Maste //
80127ef0fSEd Maste //===----------------------------------------------------------------------===//
90127ef0fSEd Maste
100127ef0fSEd Maste #include <cstring>
110127ef0fSEd Maste #include <errno.h>
120127ef0fSEd Maste #include <stdint.h>
130127ef0fSEd Maste
144ba319b5SDimitry Andric #include "lldb/Target/Process.h"
150127ef0fSEd Maste #include "lldb/Target/Target.h"
160127ef0fSEd Maste #include "lldb/Target/Thread.h"
17f678e45dSDimitry Andric #include "lldb/Utility/DataBufferHeap.h"
18f678e45dSDimitry Andric #include "lldb/Utility/DataExtractor.h"
19f678e45dSDimitry Andric #include "lldb/Utility/Endian.h"
20*b5893f02SDimitry Andric #include "lldb/Utility/RegisterValue.h"
21*b5893f02SDimitry Andric #include "lldb/Utility/Scalar.h"
220127ef0fSEd Maste #include "llvm/Support/Compiler.h"
230127ef0fSEd Maste
24435933ddSDimitry Andric #include "RegisterContextPOSIX_arm64.h"
250127ef0fSEd Maste
261c3bbb01SEd Maste using namespace lldb;
271c3bbb01SEd Maste using namespace lldb_private;
281c3bbb01SEd Maste
290127ef0fSEd Maste // ARM64 general purpose registers.
30435933ddSDimitry Andric const uint32_t g_gpr_regnums_arm64[] = {
31435933ddSDimitry Andric gpr_x0_arm64, gpr_x1_arm64, gpr_x2_arm64, gpr_x3_arm64,
32435933ddSDimitry Andric gpr_x4_arm64, gpr_x5_arm64, gpr_x6_arm64, gpr_x7_arm64,
33435933ddSDimitry Andric gpr_x8_arm64, gpr_x9_arm64, gpr_x10_arm64, gpr_x11_arm64,
34435933ddSDimitry Andric gpr_x12_arm64, gpr_x13_arm64, gpr_x14_arm64, gpr_x15_arm64,
35435933ddSDimitry Andric gpr_x16_arm64, gpr_x17_arm64, gpr_x18_arm64, gpr_x19_arm64,
36435933ddSDimitry Andric gpr_x20_arm64, gpr_x21_arm64, gpr_x22_arm64, gpr_x23_arm64,
37435933ddSDimitry Andric gpr_x24_arm64, gpr_x25_arm64, gpr_x26_arm64, gpr_x27_arm64,
38435933ddSDimitry Andric gpr_x28_arm64, gpr_fp_arm64, gpr_lr_arm64, gpr_sp_arm64,
39435933ddSDimitry Andric gpr_pc_arm64, gpr_cpsr_arm64, gpr_w0_arm64, gpr_w1_arm64,
40435933ddSDimitry Andric gpr_w2_arm64, gpr_w3_arm64, gpr_w4_arm64, gpr_w5_arm64,
41435933ddSDimitry Andric gpr_w6_arm64, gpr_w7_arm64, gpr_w8_arm64, gpr_w9_arm64,
42435933ddSDimitry Andric gpr_w10_arm64, gpr_w11_arm64, gpr_w12_arm64, gpr_w13_arm64,
43435933ddSDimitry Andric gpr_w14_arm64, gpr_w15_arm64, gpr_w16_arm64, gpr_w17_arm64,
44435933ddSDimitry Andric gpr_w18_arm64, gpr_w19_arm64, gpr_w20_arm64, gpr_w21_arm64,
45435933ddSDimitry Andric gpr_w22_arm64, gpr_w23_arm64, gpr_w24_arm64, gpr_w25_arm64,
46435933ddSDimitry Andric gpr_w26_arm64, gpr_w27_arm64, gpr_w28_arm64,
470127ef0fSEd Maste LLDB_INVALID_REGNUM // register sets need to end with this flag
480127ef0fSEd Maste };
49435933ddSDimitry Andric static_assert(((sizeof g_gpr_regnums_arm64 / sizeof g_gpr_regnums_arm64[0]) -
50435933ddSDimitry Andric 1) == k_num_gpr_registers_arm64,
510127ef0fSEd Maste "g_gpr_regnums_arm64 has wrong number of register infos");
520127ef0fSEd Maste
530127ef0fSEd Maste // ARM64 floating point registers.
54435933ddSDimitry Andric static const uint32_t g_fpu_regnums_arm64[] = {
55435933ddSDimitry Andric fpu_v0_arm64, fpu_v1_arm64, fpu_v2_arm64, fpu_v3_arm64,
56435933ddSDimitry Andric fpu_v4_arm64, fpu_v5_arm64, fpu_v6_arm64, fpu_v7_arm64,
57435933ddSDimitry Andric fpu_v8_arm64, fpu_v9_arm64, fpu_v10_arm64, fpu_v11_arm64,
58435933ddSDimitry Andric fpu_v12_arm64, fpu_v13_arm64, fpu_v14_arm64, fpu_v15_arm64,
59435933ddSDimitry Andric fpu_v16_arm64, fpu_v17_arm64, fpu_v18_arm64, fpu_v19_arm64,
60435933ddSDimitry Andric fpu_v20_arm64, fpu_v21_arm64, fpu_v22_arm64, fpu_v23_arm64,
61435933ddSDimitry Andric fpu_v24_arm64, fpu_v25_arm64, fpu_v26_arm64, fpu_v27_arm64,
62435933ddSDimitry Andric fpu_v28_arm64, fpu_v29_arm64, fpu_v30_arm64, fpu_v31_arm64,
63435933ddSDimitry Andric fpu_s0_arm64, fpu_s1_arm64, fpu_s2_arm64, fpu_s3_arm64,
64435933ddSDimitry Andric fpu_s4_arm64, fpu_s5_arm64, fpu_s6_arm64, fpu_s7_arm64,
65435933ddSDimitry Andric fpu_s8_arm64, fpu_s9_arm64, fpu_s10_arm64, fpu_s11_arm64,
66435933ddSDimitry Andric fpu_s12_arm64, fpu_s13_arm64, fpu_s14_arm64, fpu_s15_arm64,
67435933ddSDimitry Andric fpu_s16_arm64, fpu_s17_arm64, fpu_s18_arm64, fpu_s19_arm64,
68435933ddSDimitry Andric fpu_s20_arm64, fpu_s21_arm64, fpu_s22_arm64, fpu_s23_arm64,
69435933ddSDimitry Andric fpu_s24_arm64, fpu_s25_arm64, fpu_s26_arm64, fpu_s27_arm64,
70435933ddSDimitry Andric fpu_s28_arm64, fpu_s29_arm64, fpu_s30_arm64, fpu_s31_arm64,
71435933ddSDimitry Andric
72435933ddSDimitry Andric fpu_d0_arm64, fpu_d1_arm64, fpu_d2_arm64, fpu_d3_arm64,
73435933ddSDimitry Andric fpu_d4_arm64, fpu_d5_arm64, fpu_d6_arm64, fpu_d7_arm64,
74435933ddSDimitry Andric fpu_d8_arm64, fpu_d9_arm64, fpu_d10_arm64, fpu_d11_arm64,
75435933ddSDimitry Andric fpu_d12_arm64, fpu_d13_arm64, fpu_d14_arm64, fpu_d15_arm64,
76435933ddSDimitry Andric fpu_d16_arm64, fpu_d17_arm64, fpu_d18_arm64, fpu_d19_arm64,
77435933ddSDimitry Andric fpu_d20_arm64, fpu_d21_arm64, fpu_d22_arm64, fpu_d23_arm64,
78435933ddSDimitry Andric fpu_d24_arm64, fpu_d25_arm64, fpu_d26_arm64, fpu_d27_arm64,
79435933ddSDimitry Andric fpu_d28_arm64, fpu_d29_arm64, fpu_d30_arm64, fpu_d31_arm64,
80435933ddSDimitry Andric fpu_fpsr_arm64, fpu_fpcr_arm64,
810127ef0fSEd Maste LLDB_INVALID_REGNUM // register sets need to end with this flag
820127ef0fSEd Maste };
83435933ddSDimitry Andric static_assert(((sizeof g_fpu_regnums_arm64 / sizeof g_fpu_regnums_arm64[0]) -
84435933ddSDimitry Andric 1) == k_num_fpr_registers_arm64,
850127ef0fSEd Maste "g_fpu_regnums_arm64 has wrong number of register infos");
860127ef0fSEd Maste
870127ef0fSEd Maste // Number of register sets provided by this context.
88435933ddSDimitry Andric enum { k_num_register_sets = 2 };
890127ef0fSEd Maste
900127ef0fSEd Maste // Register sets for ARM64.
91435933ddSDimitry Andric static const lldb_private::RegisterSet g_reg_sets_arm64[k_num_register_sets] = {
92435933ddSDimitry Andric {"General Purpose Registers", "gpr", k_num_gpr_registers_arm64,
93435933ddSDimitry Andric g_gpr_regnums_arm64},
94435933ddSDimitry Andric {"Floating Point Registers", "fpu", k_num_fpr_registers_arm64,
95435933ddSDimitry Andric g_fpu_regnums_arm64}};
960127ef0fSEd Maste
IsGPR(unsigned reg)97435933ddSDimitry Andric bool RegisterContextPOSIX_arm64::IsGPR(unsigned reg) {
980127ef0fSEd Maste return reg <= m_reg_info.last_gpr; // GPR's come first.
990127ef0fSEd Maste }
1000127ef0fSEd Maste
IsFPR(unsigned reg)101435933ddSDimitry Andric bool RegisterContextPOSIX_arm64::IsFPR(unsigned reg) {
1020127ef0fSEd Maste return (m_reg_info.first_fpr <= reg && reg <= m_reg_info.last_fpr);
1030127ef0fSEd Maste }
1040127ef0fSEd Maste
RegisterContextPOSIX_arm64(lldb_private::Thread & thread,uint32_t concrete_frame_idx,lldb_private::RegisterInfoInterface * register_info)105435933ddSDimitry Andric RegisterContextPOSIX_arm64::RegisterContextPOSIX_arm64(
106435933ddSDimitry Andric lldb_private::Thread &thread, uint32_t concrete_frame_idx,
1070127ef0fSEd Maste lldb_private::RegisterInfoInterface *register_info)
108435933ddSDimitry Andric : lldb_private::RegisterContext(thread, concrete_frame_idx) {
1090127ef0fSEd Maste m_register_info_ap.reset(register_info);
1100127ef0fSEd Maste
111435933ddSDimitry Andric switch (register_info->m_target_arch.GetMachine()) {
1120127ef0fSEd Maste case llvm::Triple::aarch64:
1130127ef0fSEd Maste m_reg_info.num_registers = k_num_registers_arm64;
1140127ef0fSEd Maste m_reg_info.num_gpr_registers = k_num_gpr_registers_arm64;
1150127ef0fSEd Maste m_reg_info.num_fpr_registers = k_num_fpr_registers_arm64;
1160127ef0fSEd Maste m_reg_info.last_gpr = k_last_gpr_arm64;
1170127ef0fSEd Maste m_reg_info.first_fpr = k_first_fpr_arm64;
1180127ef0fSEd Maste m_reg_info.last_fpr = k_last_fpr_arm64;
1190127ef0fSEd Maste m_reg_info.first_fpr_v = fpu_v0_arm64;
1200127ef0fSEd Maste m_reg_info.last_fpr_v = fpu_v31_arm64;
1210127ef0fSEd Maste m_reg_info.gpr_flags = gpr_cpsr_arm64;
1220127ef0fSEd Maste break;
1230127ef0fSEd Maste default:
1240127ef0fSEd Maste assert(false && "Unhandled target architecture.");
1250127ef0fSEd Maste break;
1260127ef0fSEd Maste }
1270127ef0fSEd Maste
1280127ef0fSEd Maste ::memset(&m_fpr, 0, sizeof m_fpr);
1290127ef0fSEd Maste }
1300127ef0fSEd Maste
~RegisterContextPOSIX_arm64()131435933ddSDimitry Andric RegisterContextPOSIX_arm64::~RegisterContextPOSIX_arm64() {}
1320127ef0fSEd Maste
Invalidate()133435933ddSDimitry Andric void RegisterContextPOSIX_arm64::Invalidate() {}
1340127ef0fSEd Maste
InvalidateAllRegisters()135435933ddSDimitry Andric void RegisterContextPOSIX_arm64::InvalidateAllRegisters() {}
1360127ef0fSEd Maste
GetRegisterOffset(unsigned reg)137435933ddSDimitry Andric unsigned RegisterContextPOSIX_arm64::GetRegisterOffset(unsigned reg) {
1380127ef0fSEd Maste assert(reg < m_reg_info.num_registers && "Invalid register number.");
1390127ef0fSEd Maste return GetRegisterInfo()[reg].byte_offset;
1400127ef0fSEd Maste }
1410127ef0fSEd Maste
GetRegisterSize(unsigned reg)142435933ddSDimitry Andric unsigned RegisterContextPOSIX_arm64::GetRegisterSize(unsigned reg) {
1430127ef0fSEd Maste assert(reg < m_reg_info.num_registers && "Invalid register number.");
1440127ef0fSEd Maste return GetRegisterInfo()[reg].byte_size;
1450127ef0fSEd Maste }
1460127ef0fSEd Maste
GetRegisterCount()147435933ddSDimitry Andric size_t RegisterContextPOSIX_arm64::GetRegisterCount() {
148435933ddSDimitry Andric size_t num_registers =
149435933ddSDimitry Andric m_reg_info.num_gpr_registers + m_reg_info.num_fpr_registers;
1500127ef0fSEd Maste return num_registers;
1510127ef0fSEd Maste }
1520127ef0fSEd Maste
GetGPRSize()153435933ddSDimitry Andric size_t RegisterContextPOSIX_arm64::GetGPRSize() {
1540127ef0fSEd Maste return m_register_info_ap->GetGPRSize();
1550127ef0fSEd Maste }
1560127ef0fSEd Maste
1570127ef0fSEd Maste const lldb_private::RegisterInfo *
GetRegisterInfo()158435933ddSDimitry Andric RegisterContextPOSIX_arm64::GetRegisterInfo() {
159435933ddSDimitry Andric // Commonly, this method is overridden and g_register_infos is copied and
1604ba319b5SDimitry Andric // specialized. So, use GetRegisterInfo() rather than g_register_infos in
1614ba319b5SDimitry Andric // this scope.
1620127ef0fSEd Maste return m_register_info_ap->GetRegisterInfo();
1630127ef0fSEd Maste }
1640127ef0fSEd Maste
1650127ef0fSEd Maste const lldb_private::RegisterInfo *
GetRegisterInfoAtIndex(size_t reg)166435933ddSDimitry Andric RegisterContextPOSIX_arm64::GetRegisterInfoAtIndex(size_t reg) {
1670127ef0fSEd Maste if (reg < m_reg_info.num_registers)
1680127ef0fSEd Maste return &GetRegisterInfo()[reg];
1690127ef0fSEd Maste else
1700127ef0fSEd Maste return NULL;
1710127ef0fSEd Maste }
1720127ef0fSEd Maste
GetRegisterSetCount()173435933ddSDimitry Andric size_t RegisterContextPOSIX_arm64::GetRegisterSetCount() {
1740127ef0fSEd Maste size_t sets = 0;
175435933ddSDimitry Andric for (size_t set = 0; set < k_num_register_sets; ++set) {
1760127ef0fSEd Maste if (IsRegisterSetAvailable(set))
1770127ef0fSEd Maste ++sets;
1780127ef0fSEd Maste }
1790127ef0fSEd Maste
1800127ef0fSEd Maste return sets;
1810127ef0fSEd Maste }
1820127ef0fSEd Maste
1830127ef0fSEd Maste const lldb_private::RegisterSet *
GetRegisterSet(size_t set)184435933ddSDimitry Andric RegisterContextPOSIX_arm64::GetRegisterSet(size_t set) {
185435933ddSDimitry Andric if (IsRegisterSetAvailable(set)) {
186435933ddSDimitry Andric switch (m_register_info_ap->m_target_arch.GetMachine()) {
1870127ef0fSEd Maste case llvm::Triple::aarch64:
1880127ef0fSEd Maste return &g_reg_sets_arm64[set];
1890127ef0fSEd Maste default:
1900127ef0fSEd Maste assert(false && "Unhandled target architecture.");
1910127ef0fSEd Maste return NULL;
1920127ef0fSEd Maste }
1930127ef0fSEd Maste }
1940127ef0fSEd Maste return NULL;
1950127ef0fSEd Maste }
1960127ef0fSEd Maste
GetRegisterName(unsigned reg)197435933ddSDimitry Andric const char *RegisterContextPOSIX_arm64::GetRegisterName(unsigned reg) {
1980127ef0fSEd Maste assert(reg < m_reg_info.num_registers && "Invalid register offset.");
1990127ef0fSEd Maste return GetRegisterInfo()[reg].name;
2000127ef0fSEd Maste }
2010127ef0fSEd Maste
GetByteOrder()202435933ddSDimitry Andric lldb::ByteOrder RegisterContextPOSIX_arm64::GetByteOrder() {
203435933ddSDimitry Andric // Get the target process whose privileged thread was used for the register
204435933ddSDimitry Andric // read.
2050127ef0fSEd Maste lldb::ByteOrder byte_order = lldb::eByteOrderInvalid;
2060127ef0fSEd Maste lldb_private::Process *process = CalculateProcess().get();
2070127ef0fSEd Maste
2080127ef0fSEd Maste if (process)
2090127ef0fSEd Maste byte_order = process->GetByteOrder();
2100127ef0fSEd Maste return byte_order;
2110127ef0fSEd Maste }
2120127ef0fSEd Maste
IsRegisterSetAvailable(size_t set_index)213435933ddSDimitry Andric bool RegisterContextPOSIX_arm64::IsRegisterSetAvailable(size_t set_index) {
2140127ef0fSEd Maste return set_index < k_num_register_sets;
2150127ef0fSEd Maste }
2160127ef0fSEd Maste
2174ba319b5SDimitry Andric // Used when parsing DWARF and EH frame information and any other object file
2184ba319b5SDimitry Andric // sections that contain register numbers in them.
ConvertRegisterKindToRegisterNumber(lldb::RegisterKind kind,uint32_t num)219435933ddSDimitry Andric uint32_t RegisterContextPOSIX_arm64::ConvertRegisterKindToRegisterNumber(
220435933ddSDimitry Andric lldb::RegisterKind kind, uint32_t num) {
2210127ef0fSEd Maste const uint32_t num_regs = GetRegisterCount();
2220127ef0fSEd Maste
2230127ef0fSEd Maste assert(kind < lldb::kNumRegisterKinds);
224435933ddSDimitry Andric for (uint32_t reg_idx = 0; reg_idx < num_regs; ++reg_idx) {
225435933ddSDimitry Andric const lldb_private::RegisterInfo *reg_info =
226435933ddSDimitry Andric GetRegisterInfoAtIndex(reg_idx);
2270127ef0fSEd Maste
2280127ef0fSEd Maste if (reg_info->kinds[kind] == num)
2290127ef0fSEd Maste return reg_idx;
2300127ef0fSEd Maste }
2310127ef0fSEd Maste
2320127ef0fSEd Maste return LLDB_INVALID_REGNUM;
2330127ef0fSEd Maste }
234