blob: 44cde052f2122b1c18d58e0d67a201e4d87a4667 [file] [log] [blame]
Douglas Leung61b1a1a2017-11-08 10:53:53 +01001/*
2 * Copyright (C) 2017 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/RegsMips.h>
25
26#include "MachineMips.h"
27#include "UcontextMips.h"
28#include "UserMips.h"
29
30namespace unwindstack {
31
32RegsMips::RegsMips()
33 : RegsImpl<uint32_t>(MIPS_REG_LAST, MIPS_REG_SP, Location(LOCATION_REGISTER, MIPS_REG_RA)) {}
34
35ArchEnum RegsMips::Arch() {
36 return ARCH_MIPS;
37}
38
39uint64_t RegsMips::GetAdjustedPc(uint64_t rel_pc, Elf* elf) {
40 if (!elf->valid()) {
41 return rel_pc;
42 }
43
44 // For now, just assuming no compact branches
45 if (rel_pc < 8) {
46 return rel_pc;
47 }
48 return rel_pc - 8;
49}
50
51void RegsMips::SetFromRaw() {
52 set_pc(regs_[MIPS_REG_PC]);
53 set_sp(regs_[MIPS_REG_SP]);
54}
55
56bool RegsMips::SetPcFromReturnAddress(Memory*) {
57 if (pc() == regs_[MIPS_REG_RA]) {
58 return false;
59 }
60
61 set_pc(regs_[MIPS_REG_RA]);
62 return true;
63}
64
65void RegsMips::IterateRegisters(std::function<void(const char*, uint64_t)> fn) {
66 fn("r0", regs_[MIPS_REG_R0]);
67 fn("r1", regs_[MIPS_REG_R1]);
68 fn("r2", regs_[MIPS_REG_R2]);
69 fn("r3", regs_[MIPS_REG_R3]);
70 fn("r4", regs_[MIPS_REG_R4]);
71 fn("r5", regs_[MIPS_REG_R5]);
72 fn("r6", regs_[MIPS_REG_R6]);
73 fn("r7", regs_[MIPS_REG_R7]);
74 fn("r8", regs_[MIPS_REG_R8]);
75 fn("r9", regs_[MIPS_REG_R9]);
76 fn("r10", regs_[MIPS_REG_R10]);
77 fn("r11", regs_[MIPS_REG_R11]);
78 fn("r12", regs_[MIPS_REG_R12]);
79 fn("r13", regs_[MIPS_REG_R13]);
80 fn("r14", regs_[MIPS_REG_R14]);
81 fn("r15", regs_[MIPS_REG_R15]);
82 fn("r16", regs_[MIPS_REG_R16]);
83 fn("r17", regs_[MIPS_REG_R17]);
84 fn("r18", regs_[MIPS_REG_R18]);
85 fn("r19", regs_[MIPS_REG_R19]);
86 fn("r20", regs_[MIPS_REG_R20]);
87 fn("r21", regs_[MIPS_REG_R21]);
88 fn("r22", regs_[MIPS_REG_R22]);
89 fn("r23", regs_[MIPS_REG_R23]);
90 fn("r24", regs_[MIPS_REG_R24]);
91 fn("r25", regs_[MIPS_REG_R25]);
92 fn("r26", regs_[MIPS_REG_R26]);
93 fn("r27", regs_[MIPS_REG_R27]);
94 fn("r28", regs_[MIPS_REG_R28]);
95 fn("sp", regs_[MIPS_REG_SP]);
96 fn("r30", regs_[MIPS_REG_R30]);
97 fn("ra", regs_[MIPS_REG_RA]);
98 fn("pc", regs_[MIPS_REG_PC]);
99}
100
101Regs* RegsMips::Read(void* remote_data) {
102 mips_user_regs* user = reinterpret_cast<mips_user_regs*>(remote_data);
103 RegsMips* regs = new RegsMips();
104 uint32_t* reg_data = reinterpret_cast<uint32_t*>(regs->RawData());
105
106 memcpy(regs->RawData(), &user->regs[MIPS32_EF_R0], (MIPS_REG_R31 + 1) * sizeof(uint32_t));
107
108 reg_data[MIPS_REG_PC] = user->regs[MIPS32_EF_CP0_EPC];
109 regs->SetFromRaw();
110 return regs;
111}
112
113Regs* RegsMips::CreateFromUcontext(void* ucontext) {
114 mips_ucontext_t* mips_ucontext = reinterpret_cast<mips_ucontext_t*>(ucontext);
115
116 RegsMips* regs = new RegsMips();
117 // Copy 64 bit sc_regs over to 32 bit regs
118 for (int i = 0; i < 32; i++) {
119 (*regs)[MIPS_REG_R0 + i] = mips_ucontext->uc_mcontext.sc_regs[i];
120 }
121 (*regs)[MIPS_REG_PC] = mips_ucontext->uc_mcontext.sc_pc;
122 regs->SetFromRaw();
123 return regs;
124}
125
126bool RegsMips::StepIfSignalHandler(uint64_t rel_pc, Elf* elf, Memory* process_memory) {
127 uint64_t data;
128 uint64_t offset = 0;
129 Memory* elf_memory = elf->memory();
130 // Read from elf memory since it is usually more expensive to read from
131 // process memory.
132 if (!elf_memory->Read(rel_pc, &data, sizeof(data))) {
133 return false;
134 }
135
136 // Look for the kernel sigreturn functions.
137 // __vdso_rt_sigreturn:
138 // 0x24021061 li v0, 0x1061
139 // 0x0000000c syscall
140 // __vdso_sigreturn:
141 // 0x24021017 li v0, 0x1017
142 // 0x0000000c syscall
143 if (data == 0x0000000c24021061ULL) {
144 // vdso_rt_sigreturn => read rt_sigframe
145 // offset = siginfo offset + sizeof(siginfo) + uc_mcontext offset + sc_pc offset
146 offset = 24 + 128 + 24 + 8;
147 } else if (data == 0x0000000c24021017LL) {
148 // vdso_sigreturn => read sigframe
149 // offset = sigcontext offset + sc_pc offset
150 offset = 24 + 8;
151 } else {
152 return false;
153 }
154
155 // read sc_pc and sc_regs[32] from stack
156 uint64_t values[MIPS_REG_LAST];
157 if (!process_memory->Read(sp() + offset, values, sizeof(values))) {
158 return false;
159 }
160
161 // Copy 64 bit sc_pc over to 32 bit regs_[MIPS_REG_PC]
162 regs_[MIPS_REG_PC] = values[0];
163
164 // Copy 64 bit sc_regs over to 32 bit regs
165 for (int i = 0; i < 32; i++) {
166 regs_[MIPS_REG_R0 + i] = values[1 + i];
167 }
168
169 SetFromRaw();
170 return true;
171}
172
173} // namespace unwindstack