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Dave Allisonb373e092014-02-20 16:06:36 -08001/*
2 * Copyright (C) 2008 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
18#include "fault_handler.h"
19#include <sys/ucontext.h>
Douglas Leung22bb5a22015-07-02 16:42:08 -070020#include "art_method-inl.h"
Dave Allisonb373e092014-02-20 16:06:36 -080021#include "base/macros.h"
22#include "globals.h"
23#include "base/logging.h"
24#include "base/hex_dump.h"
Douglas Leung22bb5a22015-07-02 16:42:08 -070025#include "registers_mips.h"
26#include "thread.h"
27#include "thread-inl.h"
Dave Allisonb373e092014-02-20 16:06:36 -080028
Douglas Leung22bb5a22015-07-02 16:42:08 -070029extern "C" void art_quick_throw_stack_overflow();
Nicolas Geoffraye8e11272016-06-28 18:08:46 +010030extern "C" void art_quick_throw_null_pointer_exception_from_signal();
Dave Allisonb373e092014-02-20 16:06:36 -080031
32//
33// Mips specific fault handler functions.
34//
35
36namespace art {
37
Chih-Hung Hsiehc4f990e2014-11-04 14:39:03 -080038void FaultManager::HandleNestedSignal(int sig ATTRIBUTE_UNUSED, siginfo_t* info ATTRIBUTE_UNUSED,
39 void* context ATTRIBUTE_UNUSED) {
Dave Allison500c4212014-08-29 11:05:17 -070040}
41
Douglas Leung22bb5a22015-07-02 16:42:08 -070042void FaultManager::GetMethodAndReturnPcAndSp(siginfo_t* siginfo, void* context,
43 ArtMethod** out_method,
44 uintptr_t* out_return_pc, uintptr_t* out_sp) {
45 struct ucontext* uc = reinterpret_cast<struct ucontext*>(context);
46 struct sigcontext *sc = reinterpret_cast<struct sigcontext*>(&uc->uc_mcontext);
Goran Jakovljevic5d45e8f2016-06-30 16:40:20 +020047 *out_sp = static_cast<uintptr_t>(sc->sc_regs[mips::SP]);
Douglas Leung22bb5a22015-07-02 16:42:08 -070048 VLOG(signals) << "sp: " << *out_sp;
49 if (*out_sp == 0) {
50 return;
51 }
52
53 // In the case of a stack overflow, the stack is not valid and we can't
54 // get the method from the top of the stack. However it's in r0.
55 uintptr_t* fault_addr = reinterpret_cast<uintptr_t*>(siginfo->si_addr); // BVA addr
56 uintptr_t* overflow_addr = reinterpret_cast<uintptr_t*>(
57 reinterpret_cast<uint8_t*>(*out_sp) - GetStackOverflowReservedBytes(kMips));
58 if (overflow_addr == fault_addr) {
Goran Jakovljevic5d45e8f2016-06-30 16:40:20 +020059 *out_method = reinterpret_cast<ArtMethod*>(sc->sc_regs[mips::A0]);
Douglas Leung22bb5a22015-07-02 16:42:08 -070060 } else {
61 // The method is at the top of the stack.
62 *out_method = *reinterpret_cast<ArtMethod**>(*out_sp);
63 }
64
65 // Work out the return PC. This will be the address of the instruction
66 // following the faulting ldr/str instruction.
67
68 VLOG(signals) << "pc: " << std::hex
69 << static_cast<void*>(reinterpret_cast<uint8_t*>(sc->sc_pc));
70
71 *out_return_pc = sc->sc_pc + 4;
Dave Allisonb373e092014-02-20 16:06:36 -080072}
73
Nicolas Geoffraye8e11272016-06-28 18:08:46 +010074bool NullPointerHandler::Action(int sig ATTRIBUTE_UNUSED, siginfo_t* info, void* context) {
75 if (!IsValidImplicitCheck(info)) {
76 return false;
77 }
Douglas Leung22bb5a22015-07-02 16:42:08 -070078 // The code that looks for the catch location needs to know the value of the
79 // PC at the point of call. For Null checks we insert a GC map that is immediately after
80 // the load/store instruction that might cause the fault.
81
82 struct ucontext *uc = reinterpret_cast<struct ucontext*>(context);
83 struct sigcontext *sc = reinterpret_cast<struct sigcontext*>(&uc->uc_mcontext);
84
Goran Jakovljevic5d45e8f2016-06-30 16:40:20 +020085 sc->sc_regs[mips::RA] = sc->sc_pc + 4; // RA needs to point to gc map location
Nicolas Geoffraye8e11272016-06-28 18:08:46 +010086 sc->sc_pc = reinterpret_cast<uintptr_t>(art_quick_throw_null_pointer_exception_from_signal);
Goran Jakovljevic5d45e8f2016-06-30 16:40:20 +020087 sc->sc_regs[mips::T9] = sc->sc_pc; // make sure T9 points to the function
Nicolas Geoffraye8e11272016-06-28 18:08:46 +010088 // Pass the faulting address as the first argument of
89 // art_quick_throw_null_pointer_exception_from_signal.
Goran Jakovljevic5d45e8f2016-06-30 16:40:20 +020090 sc->sc_regs[mips::A0] = reinterpret_cast<uintptr_t>(info->si_addr);
Douglas Leung22bb5a22015-07-02 16:42:08 -070091 VLOG(signals) << "Generating null pointer exception";
92 return true;
Dave Allisonb373e092014-02-20 16:06:36 -080093}
94
Chih-Hung Hsiehc4f990e2014-11-04 14:39:03 -080095bool SuspensionHandler::Action(int sig ATTRIBUTE_UNUSED, siginfo_t* info ATTRIBUTE_UNUSED,
96 void* context ATTRIBUTE_UNUSED) {
Dave Allisonb373e092014-02-20 16:06:36 -080097 return false;
98}
99
Douglas Leung22bb5a22015-07-02 16:42:08 -0700100// Stack overflow fault handler.
101//
102// This checks that the fault address is equal to the current stack pointer
103// minus the overflow region size (16K typically). The instruction that
104// generates this signal is:
105//
106// lw zero, -16384(sp)
107//
108// It will fault if sp is inside the protected region on the stack.
109//
110// If we determine this is a stack overflow we need to move the stack pointer
111// to the overflow region below the protected region.
112
113bool StackOverflowHandler::Action(int sig ATTRIBUTE_UNUSED, siginfo_t* info, void* context) {
114 struct ucontext* uc = reinterpret_cast<struct ucontext*>(context);
115 struct sigcontext *sc = reinterpret_cast<struct sigcontext*>(&uc->uc_mcontext);
116 VLOG(signals) << "stack overflow handler with sp at " << std::hex << &uc;
117 VLOG(signals) << "sigcontext: " << std::hex << sc;
118
Goran Jakovljevic5d45e8f2016-06-30 16:40:20 +0200119 uintptr_t sp = sc->sc_regs[mips::SP];
Douglas Leung22bb5a22015-07-02 16:42:08 -0700120 VLOG(signals) << "sp: " << std::hex << sp;
121
122 uintptr_t fault_addr = reinterpret_cast<uintptr_t>(info->si_addr); // BVA addr
123 VLOG(signals) << "fault_addr: " << std::hex << fault_addr;
124 VLOG(signals) << "checking for stack overflow, sp: " << std::hex << sp <<
125 ", fault_addr: " << fault_addr;
126
127 uintptr_t overflow_addr = sp - GetStackOverflowReservedBytes(kMips);
128
129 // Check that the fault address is the value expected for a stack overflow.
130 if (fault_addr != overflow_addr) {
131 VLOG(signals) << "Not a stack overflow";
132 return false;
133 }
134
135 VLOG(signals) << "Stack overflow found";
136
137 // Now arrange for the signal handler to return to art_quick_throw_stack_overflow_from.
138 // The value of RA must be the same as it was when we entered the code that
139 // caused this fault. This will be inserted into a callee save frame by
140 // the function to which this handler returns (art_quick_throw_stack_overflow).
141 sc->sc_pc = reinterpret_cast<uintptr_t>(art_quick_throw_stack_overflow);
Goran Jakovljevic5d45e8f2016-06-30 16:40:20 +0200142 sc->sc_regs[mips::T9] = sc->sc_pc; // make sure T9 points to the function
Douglas Leung22bb5a22015-07-02 16:42:08 -0700143
144 // The kernel will now return to the address in sc->arm_pc.
145 return true;
Dave Allisonb373e092014-02-20 16:06:36 -0800146}
147} // namespace art