blob: 34f29bd95fe1497c3f07ddb2a20df73c8c6718b3 [file] [log] [blame]
Christopher Ferrisd06001d2017-11-30 18:56:01 -08001/*
2 * Copyright (C) 2016 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#include <stdint.h>
18
19#include <functional>
20
21#include <unwindstack/Elf.h>
22#include <unwindstack/MapInfo.h>
23#include <unwindstack/Memory.h>
24#include <unwindstack/RegsArm.h>
25
26#include "MachineArm.h"
27#include "UcontextArm.h"
28#include "UserArm.h"
29
30namespace unwindstack {
31
32RegsArm::RegsArm()
33 : RegsImpl<uint32_t>(ARM_REG_LAST, ARM_REG_SP, Location(LOCATION_REGISTER, ARM_REG_LR)) {}
34
35ArchEnum RegsArm::Arch() {
36 return ARCH_ARM;
37}
38
39uint64_t RegsArm::GetAdjustedPc(uint64_t rel_pc, Elf* elf) {
40 if (!elf->valid()) {
41 return rel_pc;
42 }
43
44 uint64_t load_bias = elf->GetLoadBias();
45 if (rel_pc < load_bias) {
46 return rel_pc;
47 }
48 uint64_t adjusted_rel_pc = rel_pc - load_bias;
49
50 if (adjusted_rel_pc < 5) {
51 return rel_pc;
52 }
53
54 if (adjusted_rel_pc & 1) {
55 // This is a thumb instruction, it could be 2 or 4 bytes.
56 uint32_t value;
57 if (rel_pc < 5 || !elf->memory()->ReadFully(adjusted_rel_pc - 5, &value, sizeof(value)) ||
58 (value & 0xe000f000) != 0xe000f000) {
59 return rel_pc - 2;
60 }
61 }
62 return rel_pc - 4;
63}
64
65void RegsArm::SetFromRaw() {
66 set_pc(regs_[ARM_REG_PC]);
67 set_sp(regs_[ARM_REG_SP]);
68}
69
70bool RegsArm::SetPcFromReturnAddress(Memory*) {
71 if (pc() == regs_[ARM_REG_LR]) {
72 return false;
73 }
74
75 set_pc(regs_[ARM_REG_LR]);
76 return true;
77}
78
79void RegsArm::IterateRegisters(std::function<void(const char*, uint64_t)> fn) {
80 fn("r0", regs_[ARM_REG_R0]);
81 fn("r1", regs_[ARM_REG_R1]);
82 fn("r2", regs_[ARM_REG_R2]);
83 fn("r3", regs_[ARM_REG_R3]);
84 fn("r4", regs_[ARM_REG_R4]);
85 fn("r5", regs_[ARM_REG_R5]);
86 fn("r6", regs_[ARM_REG_R6]);
87 fn("r7", regs_[ARM_REG_R7]);
88 fn("r8", regs_[ARM_REG_R8]);
89 fn("r9", regs_[ARM_REG_R9]);
90 fn("r10", regs_[ARM_REG_R10]);
91 fn("r11", regs_[ARM_REG_R11]);
92 fn("ip", regs_[ARM_REG_R12]);
93 fn("sp", regs_[ARM_REG_SP]);
94 fn("lr", regs_[ARM_REG_LR]);
95 fn("pc", regs_[ARM_REG_PC]);
96}
97
98Regs* RegsArm::Read(void* remote_data) {
99 arm_user_regs* user = reinterpret_cast<arm_user_regs*>(remote_data);
100
101 RegsArm* regs = new RegsArm();
102 memcpy(regs->RawData(), &user->regs[0], ARM_REG_LAST * sizeof(uint32_t));
103 regs->SetFromRaw();
104 return regs;
105}
106
107Regs* RegsArm::CreateFromUcontext(void* ucontext) {
108 arm_ucontext_t* arm_ucontext = reinterpret_cast<arm_ucontext_t*>(ucontext);
109
110 RegsArm* regs = new RegsArm();
111 memcpy(regs->RawData(), &arm_ucontext->uc_mcontext.regs[0], ARM_REG_LAST * sizeof(uint32_t));
112 regs->SetFromRaw();
113 return regs;
114}
115
116bool RegsArm::StepIfSignalHandler(uint64_t rel_pc, Elf* elf, Memory* process_memory) {
117 uint32_t data;
118 Memory* elf_memory = elf->memory();
119 // Read from elf memory since it is usually more expensive to read from
120 // process memory.
121 if (!elf_memory->ReadFully(rel_pc, &data, sizeof(data))) {
122 return false;
123 }
124
125 uint64_t offset = 0;
126 if (data == 0xe3a07077 || data == 0xef900077 || data == 0xdf002777) {
127 // non-RT sigreturn call.
128 // __restore:
129 //
130 // Form 1 (arm):
131 // 0x77 0x70 mov r7, #0x77
132 // 0xa0 0xe3 svc 0x00000000
133 //
134 // Form 2 (arm):
135 // 0x77 0x00 0x90 0xef svc 0x00900077
136 //
137 // Form 3 (thumb):
138 // 0x77 0x27 movs r7, #77
139 // 0x00 0xdf svc 0
140 if (!process_memory->ReadFully(sp(), &data, sizeof(data))) {
141 return false;
142 }
143 if (data == 0x5ac3c35a) {
144 // SP + uc_mcontext offset + r0 offset.
145 offset = sp() + 0x14 + 0xc;
146 } else {
147 // SP + r0 offset
148 offset = sp() + 0xc;
149 }
150 } else if (data == 0xe3a070ad || data == 0xef9000ad || data == 0xdf0027ad) {
151 // RT sigreturn call.
152 // __restore_rt:
153 //
154 // Form 1 (arm):
155 // 0xad 0x70 mov r7, #0xad
156 // 0xa0 0xe3 svc 0x00000000
157 //
158 // Form 2 (arm):
159 // 0xad 0x00 0x90 0xef svc 0x009000ad
160 //
161 // Form 3 (thumb):
162 // 0xad 0x27 movs r7, #ad
163 // 0x00 0xdf svc 0
164 if (!process_memory->ReadFully(sp(), &data, sizeof(data))) {
165 return false;
166 }
167 if (data == sp() + 8) {
168 // SP + 8 + sizeof(siginfo_t) + uc_mcontext_offset + r0 offset
169 offset = sp() + 8 + 0x80 + 0x14 + 0xc;
170 } else {
171 // SP + sizeof(siginfo_t) + uc_mcontext_offset + r0 offset
172 offset = sp() + 0x80 + 0x14 + 0xc;
173 }
174 }
175 if (offset == 0) {
176 return false;
177 }
178
179 if (!process_memory->ReadFully(offset, regs_.data(), sizeof(uint32_t) * ARM_REG_LAST)) {
180 return false;
181 }
182 SetFromRaw();
183 return true;
184}
185
186} // namespace unwindstack