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217 lines
8.2 KiB
217 lines
8.2 KiB
/*
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* Copyright (C) 2020 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 "libdebuggerd/scudo.h"
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#include "libdebuggerd/tombstone.h"
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#include "unwindstack/Memory.h"
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#include "unwindstack/Unwinder.h"
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#include <android-base/macros.h>
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#include <bionic/macros.h>
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#include "tombstone.pb.h"
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std::unique_ptr<char[]> AllocAndReadFully(unwindstack::Memory* process_memory, uint64_t addr,
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size_t size) {
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auto buf = std::make_unique<char[]>(size);
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if (!process_memory->ReadFully(addr, buf.get(), size)) {
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return std::unique_ptr<char[]>();
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}
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return buf;
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}
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ScudoCrashData::ScudoCrashData(unwindstack::Memory* process_memory,
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const ProcessInfo& process_info) {
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if (!process_info.has_fault_address) {
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return;
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}
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auto stack_depot = AllocAndReadFully(process_memory, process_info.scudo_stack_depot,
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__scudo_get_stack_depot_size());
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auto region_info = AllocAndReadFully(process_memory, process_info.scudo_region_info,
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__scudo_get_region_info_size());
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auto ring_buffer = AllocAndReadFully(process_memory, process_info.scudo_ring_buffer,
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__scudo_get_ring_buffer_size());
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untagged_fault_addr_ = process_info.untagged_fault_address;
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uintptr_t fault_page = untagged_fault_addr_ & ~(PAGE_SIZE - 1);
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uintptr_t memory_begin = fault_page - PAGE_SIZE * 16;
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if (memory_begin > fault_page) {
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return;
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}
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uintptr_t memory_end = fault_page + PAGE_SIZE * 16;
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if (memory_end < fault_page) {
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return;
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}
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auto memory = std::make_unique<char[]>(memory_end - memory_begin);
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for (auto i = memory_begin; i != memory_end; i += PAGE_SIZE) {
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process_memory->ReadFully(i, memory.get() + i - memory_begin, PAGE_SIZE);
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}
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auto memory_tags = std::make_unique<char[]>((memory_end - memory_begin) / kTagGranuleSize);
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for (auto i = memory_begin; i != memory_end; i += kTagGranuleSize) {
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memory_tags[(i - memory_begin) / kTagGranuleSize] = process_memory->ReadTag(i);
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}
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__scudo_get_error_info(&error_info_, process_info.maybe_tagged_fault_address, stack_depot.get(),
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region_info.get(), ring_buffer.get(), memory.get(), memory_tags.get(),
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memory_begin, memory_end - memory_begin);
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}
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bool ScudoCrashData::CrashIsMine() const {
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return error_info_.reports[0].error_type != UNKNOWN;
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}
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void ScudoCrashData::FillInCause(Cause* cause, const scudo_error_report* report,
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unwindstack::Unwinder* unwinder) const {
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MemoryError* memory_error = cause->mutable_memory_error();
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HeapObject* heap_object = memory_error->mutable_heap();
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memory_error->set_tool(MemoryError_Tool_SCUDO);
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switch (report->error_type) {
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case USE_AFTER_FREE:
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memory_error->set_type(MemoryError_Type_USE_AFTER_FREE);
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break;
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case BUFFER_OVERFLOW:
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memory_error->set_type(MemoryError_Type_BUFFER_OVERFLOW);
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break;
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case BUFFER_UNDERFLOW:
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memory_error->set_type(MemoryError_Type_BUFFER_UNDERFLOW);
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break;
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default:
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memory_error->set_type(MemoryError_Type_UNKNOWN);
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break;
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}
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heap_object->set_address(report->allocation_address);
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heap_object->set_size(report->allocation_size);
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unwinder->SetDisplayBuildID(true);
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heap_object->set_allocation_tid(report->allocation_tid);
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for (size_t i = 0; i < arraysize(report->allocation_trace) && report->allocation_trace[i]; ++i) {
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unwindstack::FrameData frame_data = unwinder->BuildFrameFromPcOnly(report->allocation_trace[i]);
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BacktraceFrame* f = heap_object->add_allocation_backtrace();
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fill_in_backtrace_frame(f, frame_data, unwinder->GetMaps());
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}
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heap_object->set_deallocation_tid(report->deallocation_tid);
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for (size_t i = 0; i < arraysize(report->deallocation_trace) && report->deallocation_trace[i];
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++i) {
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unwindstack::FrameData frame_data =
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unwinder->BuildFrameFromPcOnly(report->deallocation_trace[i]);
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BacktraceFrame* f = heap_object->add_deallocation_backtrace();
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fill_in_backtrace_frame(f, frame_data, unwinder->GetMaps());
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}
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set_human_readable_cause(cause, untagged_fault_addr_);
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}
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void ScudoCrashData::AddCauseProtos(Tombstone* tombstone, unwindstack::Unwinder* unwinder) const {
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size_t report_num = 0;
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while (report_num < sizeof(error_info_.reports) / sizeof(error_info_.reports[0]) &&
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error_info_.reports[report_num].error_type != UNKNOWN) {
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FillInCause(tombstone->add_causes(), &error_info_.reports[report_num++], unwinder);
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}
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}
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void ScudoCrashData::DumpCause(log_t* log, unwindstack::Unwinder* unwinder) const {
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if (error_info_.reports[1].error_type != UNKNOWN) {
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_LOG(log, logtype::HEADER,
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"\nNote: multiple potential causes for this crash were detected, listing them in "
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"decreasing order of probability.\n");
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}
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size_t report_num = 0;
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while (report_num < sizeof(error_info_.reports) / sizeof(error_info_.reports[0]) &&
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error_info_.reports[report_num].error_type != UNKNOWN) {
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DumpReport(&error_info_.reports[report_num++], log, unwinder);
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}
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}
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void ScudoCrashData::DumpReport(const scudo_error_report* report, log_t* log,
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unwindstack::Unwinder* unwinder) const {
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const char *error_type_str;
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switch (report->error_type) {
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case USE_AFTER_FREE:
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error_type_str = "Use After Free";
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break;
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case BUFFER_OVERFLOW:
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error_type_str = "Buffer Overflow";
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break;
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case BUFFER_UNDERFLOW:
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error_type_str = "Buffer Underflow";
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break;
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default:
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error_type_str = "Unknown";
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break;
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}
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uintptr_t diff;
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const char* location_str;
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if (untagged_fault_addr_ < report->allocation_address) {
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// Buffer Underflow, 6 bytes left of a 41-byte allocation at 0xdeadbeef.
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location_str = "left of";
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diff = report->allocation_address - untagged_fault_addr_;
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} else if (untagged_fault_addr_ - report->allocation_address < report->allocation_size) {
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// Use After Free, 40 bytes into a 41-byte allocation at 0xdeadbeef.
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location_str = "into";
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diff = untagged_fault_addr_ - report->allocation_address;
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} else {
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// Buffer Overflow, 6 bytes right of a 41-byte allocation at 0xdeadbeef.
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location_str = "right of";
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diff = untagged_fault_addr_ - report->allocation_address - report->allocation_size;
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}
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// Suffix of 'bytes', i.e. 4 bytes' vs. '1 byte'.
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const char* byte_suffix = "s";
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if (diff == 1) {
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byte_suffix = "";
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}
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_LOG(log, logtype::HEADER,
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"\nCause: [MTE]: %s, %" PRIuPTR " byte%s %s a %zu-byte allocation at 0x%" PRIxPTR "\n",
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error_type_str, diff, byte_suffix, location_str, report->allocation_size,
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report->allocation_address);
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if (report->allocation_trace[0]) {
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_LOG(log, logtype::BACKTRACE, "\nallocated by thread %u:\n", report->allocation_tid);
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unwinder->SetDisplayBuildID(true);
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for (size_t i = 0; i < arraysize(report->allocation_trace) && report->allocation_trace[i];
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++i) {
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unwindstack::FrameData frame_data =
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unwinder->BuildFrameFromPcOnly(report->allocation_trace[i]);
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frame_data.num = i;
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_LOG(log, logtype::BACKTRACE, " %s\n", unwinder->FormatFrame(frame_data).c_str());
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}
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}
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if (report->deallocation_trace[0]) {
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_LOG(log, logtype::BACKTRACE, "\ndeallocated by thread %u:\n", report->deallocation_tid);
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unwinder->SetDisplayBuildID(true);
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for (size_t i = 0; i < arraysize(report->deallocation_trace) && report->deallocation_trace[i];
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++i) {
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unwindstack::FrameData frame_data =
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unwinder->BuildFrameFromPcOnly(report->deallocation_trace[i]);
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frame_data.num = i;
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_LOG(log, logtype::BACKTRACE, " %s\n", unwinder->FormatFrame(frame_data).c_str());
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}
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}
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}
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