Provides a new mechanism for dumpstate (while running as root) to request that debuggerd dump the stacks of native processes that we care about in bug reports. In this mode, the backtrace is formatted to look similar to a Dalvik backtrace. Moved the tombstone generating code into a separate file to make it easier to maintain. Fixed a bug where sometimes the stack traces would be incomplete because we were not waiting for each thread to stop after issuing PTRACE_ATTACH, only the main thread. So sometimes we were missing traces for some threads. Refactored the logging code to prevent accidentally writing data to logcat when explicitly dumping a tombstone or backtrace from the console. Only root or system server can request to dump backtraces but only root can dump tombstones. Bug: 6615693 Change-Id: Ib3edcc16f9f3a687e414e3f2d250d9500566123b
181 lines
5.9 KiB
C
181 lines
5.9 KiB
C
/* system/debuggerd/debuggerd.c
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**
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** Copyright 2006, The Android Open Source Project
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**
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** Licensed under the Apache License, Version 2.0 (the "License");
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** you may not use this file except in compliance with the License.
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** You may obtain a copy of the License at
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**
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** http://www.apache.org/licenses/LICENSE-2.0
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**
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** Unless required by applicable law or agreed to in writing, software
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** distributed under the License is distributed on an "AS IS" BASIS,
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** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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** See the License for the specific language governing permissions and
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** limitations under the License.
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*/
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#include <stddef.h>
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#include <stdbool.h>
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#include <stdlib.h>
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#include <string.h>
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#include <stdio.h>
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#include <errno.h>
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#include <sys/types.h>
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#include <sys/ptrace.h>
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#include <corkscrew/ptrace.h>
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#include <linux/user.h>
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#include "../utility.h"
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#include "../machine.h"
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/* enable to dump memory pointed to by every register */
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#define DUMP_MEMORY_FOR_ALL_REGISTERS 1
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#ifdef WITH_VFP
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#ifdef WITH_VFP_D32
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#define NUM_VFP_REGS 32
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#else
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#define NUM_VFP_REGS 16
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#endif
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#endif
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static void dump_memory(log_t* log, pid_t tid, uintptr_t addr, bool at_fault) {
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char code_buffer[64]; /* actual 8+1+((8+1)*4) + 1 == 45 */
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char ascii_buffer[32]; /* actual 16 + 1 == 17 */
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uintptr_t p, end;
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p = addr & ~3;
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p -= 32;
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if (p > addr) {
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/* catch underflow */
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p = 0;
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}
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end = p + 80;
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/* catch overflow; 'end - p' has to be multiples of 16 */
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while (end < p)
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end -= 16;
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/* Dump the code around PC as:
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* addr contents ascii
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* 00008d34 ef000000 e8bd0090 e1b00000 512fff1e ............../Q
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* 00008d44 ea00b1f9 e92d0090 e3a070fc ef000000 ......-..p......
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*/
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while (p < end) {
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char* asc_out = ascii_buffer;
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sprintf(code_buffer, "%08x ", p);
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int i;
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for (i = 0; i < 4; i++) {
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/*
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* If we see (data == -1 && errno != 0), we know that the ptrace
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* call failed, probably because we're dumping memory in an
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* unmapped or inaccessible page. I don't know if there's
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* value in making that explicit in the output -- it likely
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* just complicates parsing and clarifies nothing for the
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* enlightened reader.
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*/
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long data = ptrace(PTRACE_PEEKTEXT, tid, (void*)p, NULL);
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sprintf(code_buffer + strlen(code_buffer), "%08lx ", data);
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int j;
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for (j = 0; j < 4; j++) {
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/*
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* Our isprint() allows high-ASCII characters that display
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* differently (often badly) in different viewers, so we
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* just use a simpler test.
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*/
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char val = (data >> (j*8)) & 0xff;
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if (val >= 0x20 && val < 0x7f) {
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*asc_out++ = val;
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} else {
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*asc_out++ = '.';
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}
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}
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p += 4;
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}
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*asc_out = '\0';
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_LOG(log, !at_fault, " %s %s\n", code_buffer, ascii_buffer);
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}
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}
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/*
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* If configured to do so, dump memory around *all* registers
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* for the crashing thread.
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*/
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void dump_memory_and_code(const ptrace_context_t* context __attribute((unused)),
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log_t* log, pid_t tid, bool at_fault) {
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struct pt_regs regs;
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if(ptrace(PTRACE_GETREGS, tid, 0, ®s)) {
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return;
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}
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if (at_fault && DUMP_MEMORY_FOR_ALL_REGISTERS) {
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static const char REG_NAMES[] = "r0r1r2r3r4r5r6r7r8r9slfpipsp";
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for (int reg = 0; reg < 14; reg++) {
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/* this may not be a valid way to access, but it'll do for now */
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uintptr_t addr = regs.uregs[reg];
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/*
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* Don't bother if it looks like a small int or ~= null, or if
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* it's in the kernel area.
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*/
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if (addr < 4096 || addr >= 0xc0000000) {
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continue;
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}
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_LOG(log, false, "\nmemory near %.2s:\n", ®_NAMES[reg * 2]);
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dump_memory(log, tid, addr, at_fault);
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}
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}
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_LOG(log, !at_fault, "\ncode around pc:\n");
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dump_memory(log, tid, (uintptr_t)regs.ARM_pc, at_fault);
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if (regs.ARM_pc != regs.ARM_lr) {
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_LOG(log, !at_fault, "\ncode around lr:\n");
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dump_memory(log, tid, (uintptr_t)regs.ARM_lr, at_fault);
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}
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}
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void dump_registers(const ptrace_context_t* context __attribute((unused)),
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log_t* log, pid_t tid, bool at_fault)
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{
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struct pt_regs r;
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bool only_in_tombstone = !at_fault;
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if(ptrace(PTRACE_GETREGS, tid, 0, &r)) {
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_LOG(log, only_in_tombstone, "cannot get registers: %s\n", strerror(errno));
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return;
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}
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_LOG(log, only_in_tombstone, " r0 %08x r1 %08x r2 %08x r3 %08x\n",
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(uint32_t)r.ARM_r0, (uint32_t)r.ARM_r1, (uint32_t)r.ARM_r2, (uint32_t)r.ARM_r3);
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_LOG(log, only_in_tombstone, " r4 %08x r5 %08x r6 %08x r7 %08x\n",
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(uint32_t)r.ARM_r4, (uint32_t)r.ARM_r5, (uint32_t)r.ARM_r6, (uint32_t)r.ARM_r7);
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_LOG(log, only_in_tombstone, " r8 %08x r9 %08x sl %08x fp %08x\n",
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(uint32_t)r.ARM_r8, (uint32_t)r.ARM_r9, (uint32_t)r.ARM_r10, (uint32_t)r.ARM_fp);
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_LOG(log, only_in_tombstone, " ip %08x sp %08x lr %08x pc %08x cpsr %08x\n",
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(uint32_t)r.ARM_ip, (uint32_t)r.ARM_sp, (uint32_t)r.ARM_lr,
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(uint32_t)r.ARM_pc, (uint32_t)r.ARM_cpsr);
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#ifdef WITH_VFP
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struct user_vfp vfp_regs;
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int i;
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if(ptrace(PTRACE_GETVFPREGS, tid, 0, &vfp_regs)) {
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_LOG(log, only_in_tombstone, "cannot get registers: %s\n", strerror(errno));
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return;
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}
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for (i = 0; i < NUM_VFP_REGS; i += 2) {
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_LOG(log, only_in_tombstone, " d%-2d %016llx d%-2d %016llx\n",
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i, vfp_regs.fpregs[i], i+1, vfp_regs.fpregs[i+1]);
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}
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_LOG(log, only_in_tombstone, " scr %08lx\n", vfp_regs.fpscr);
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#endif
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}
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