forked from OSchip/llvm-project
417 lines
12 KiB
C++
417 lines
12 KiB
C++
//===-- hwasan.cc ---------------------------------------------------------===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This file is a part of HWAddressSanitizer.
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//
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// HWAddressSanitizer runtime.
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//===----------------------------------------------------------------------===//
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#include "hwasan.h"
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#include "hwasan_mapping.h"
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#include "hwasan_poisoning.h"
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#include "hwasan_report.h"
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#include "hwasan_thread.h"
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#include "sanitizer_common/sanitizer_atomic.h"
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#include "sanitizer_common/sanitizer_common.h"
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#include "sanitizer_common/sanitizer_flags.h"
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#include "sanitizer_common/sanitizer_flag_parser.h"
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#include "sanitizer_common/sanitizer_libc.h"
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#include "sanitizer_common/sanitizer_procmaps.h"
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#include "sanitizer_common/sanitizer_stacktrace.h"
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#include "sanitizer_common/sanitizer_symbolizer.h"
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#include "sanitizer_common/sanitizer_stackdepot.h"
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#include "ubsan/ubsan_flags.h"
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#include "ubsan/ubsan_init.h"
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// ACHTUNG! No system header includes in this file.
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using namespace __sanitizer;
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namespace __hwasan {
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void EnterSymbolizer() {
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HwasanThread *t = GetCurrentThread();
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CHECK(t);
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t->EnterSymbolizer();
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}
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void ExitSymbolizer() {
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HwasanThread *t = GetCurrentThread();
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CHECK(t);
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t->LeaveSymbolizer();
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}
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bool IsInSymbolizer() {
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HwasanThread *t = GetCurrentThread();
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return t && t->InSymbolizer();
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}
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static Flags hwasan_flags;
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Flags *flags() {
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return &hwasan_flags;
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}
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int hwasan_inited = 0;
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bool hwasan_init_is_running;
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int hwasan_report_count = 0;
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void Flags::SetDefaults() {
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#define HWASAN_FLAG(Type, Name, DefaultValue, Description) Name = DefaultValue;
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#include "hwasan_flags.inc"
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#undef HWASAN_FLAG
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}
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static void RegisterHwasanFlags(FlagParser *parser, Flags *f) {
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#define HWASAN_FLAG(Type, Name, DefaultValue, Description) \
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RegisterFlag(parser, #Name, Description, &f->Name);
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#include "hwasan_flags.inc"
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#undef HWASAN_FLAG
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}
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static void InitializeFlags() {
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SetCommonFlagsDefaults();
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{
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CommonFlags cf;
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cf.CopyFrom(*common_flags());
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cf.external_symbolizer_path = GetEnv("HWASAN_SYMBOLIZER_PATH");
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cf.malloc_context_size = 20;
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cf.handle_ioctl = true;
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// FIXME: test and enable.
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cf.check_printf = false;
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cf.intercept_tls_get_addr = true;
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cf.exitcode = 99;
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cf.handle_sigtrap = kHandleSignalExclusive;
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OverrideCommonFlags(cf);
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}
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Flags *f = flags();
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f->SetDefaults();
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FlagParser parser;
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RegisterHwasanFlags(&parser, f);
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RegisterCommonFlags(&parser);
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#if HWASAN_CONTAINS_UBSAN
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__ubsan::Flags *uf = __ubsan::flags();
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uf->SetDefaults();
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FlagParser ubsan_parser;
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__ubsan::RegisterUbsanFlags(&ubsan_parser, uf);
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RegisterCommonFlags(&ubsan_parser);
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#endif
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// Override from user-specified string.
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if (__hwasan_default_options)
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parser.ParseString(__hwasan_default_options());
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#if HWASAN_CONTAINS_UBSAN
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const char *ubsan_default_options = __ubsan::MaybeCallUbsanDefaultOptions();
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ubsan_parser.ParseString(ubsan_default_options);
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#endif
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const char *hwasan_options = GetEnv("HWASAN_OPTIONS");
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parser.ParseString(hwasan_options);
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#if HWASAN_CONTAINS_UBSAN
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ubsan_parser.ParseString(GetEnv("UBSAN_OPTIONS"));
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#endif
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VPrintf(1, "HWASAN_OPTIONS: %s\n", hwasan_options ? hwasan_options : "<empty>");
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InitializeCommonFlags();
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if (Verbosity()) ReportUnrecognizedFlags();
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if (common_flags()->help) parser.PrintFlagDescriptions();
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}
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void GetStackTrace(BufferedStackTrace *stack, uptr max_s, uptr pc, uptr bp,
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void *context, bool request_fast_unwind) {
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HwasanThread *t = GetCurrentThread();
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if (!t || !StackTrace::WillUseFastUnwind(request_fast_unwind)) {
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// Block reports from our interceptors during _Unwind_Backtrace.
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SymbolizerScope sym_scope;
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return stack->Unwind(max_s, pc, bp, context, 0, 0, request_fast_unwind);
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}
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stack->Unwind(max_s, pc, bp, context, t->stack_top(), t->stack_bottom(),
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request_fast_unwind);
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}
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void PrintWarning(uptr pc, uptr bp) {
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GET_FATAL_STACK_TRACE_PC_BP(pc, bp);
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ReportInvalidAccess(&stack, 0);
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}
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static void HWAsanCheckFailed(const char *file, int line, const char *cond,
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u64 v1, u64 v2) {
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Report("HWAddressSanitizer CHECK failed: %s:%d \"%s\" (0x%zx, 0x%zx)\n", file,
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line, cond, (uptr)v1, (uptr)v2);
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PRINT_CURRENT_STACK_CHECK();
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Die();
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}
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} // namespace __hwasan
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// Interface.
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using namespace __hwasan;
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uptr __hwasan_shadow_memory_dynamic_address; // Global interface symbol.
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void __hwasan_init() {
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CHECK(!hwasan_init_is_running);
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if (hwasan_inited) return;
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hwasan_init_is_running = 1;
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SanitizerToolName = "HWAddressSanitizer";
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InitTlsSize();
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CacheBinaryName();
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InitializeFlags();
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// Install tool-specific callbacks in sanitizer_common.
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SetCheckFailedCallback(HWAsanCheckFailed);
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__sanitizer_set_report_path(common_flags()->log_path);
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DisableCoreDumperIfNecessary();
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if (!InitShadow()) {
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Printf("FATAL: HWAddressSanitizer cannot mmap the shadow memory.\n");
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if (HWASAN_FIXED_MAPPING) {
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Printf("FATAL: Make sure to compile with -fPIE and to link with -pie.\n");
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Printf("FATAL: Disabling ASLR is known to cause this error.\n");
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Printf("FATAL: If running under GDB, try "
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"'set disable-randomization off'.\n");
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}
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DumpProcessMap();
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Die();
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}
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InitializeInterceptors();
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InstallDeadlySignalHandlers(HwasanOnDeadlySignal);
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InstallAtExitHandler(); // Needs __cxa_atexit interceptor.
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Symbolizer::GetOrInit()->AddHooks(EnterSymbolizer, ExitSymbolizer);
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InitializeCoverage(common_flags()->coverage, common_flags()->coverage_dir);
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HwasanTSDInit(HwasanTSDDtor);
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HwasanAllocatorInit();
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HwasanThread *main_thread = HwasanThread::Create(nullptr, nullptr);
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SetCurrentThread(main_thread);
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main_thread->ThreadStart();
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#if HWASAN_CONTAINS_UBSAN
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__ubsan::InitAsPlugin();
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#endif
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VPrintf(1, "HWAddressSanitizer init done\n");
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hwasan_init_is_running = 0;
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hwasan_inited = 1;
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}
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void __hwasan_print_shadow(const void *x, uptr size) {
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// FIXME:
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Printf("FIXME: __hwasan_print_shadow unimplemented\n");
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}
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sptr __hwasan_test_shadow(const void *p, uptr sz) {
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if (sz == 0)
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return -1;
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tag_t ptr_tag = GetTagFromPointer((uptr)p);
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if (ptr_tag == 0)
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return -1;
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uptr ptr_raw = GetAddressFromPointer((uptr)p);
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uptr shadow_first = MEM_TO_SHADOW(ptr_raw);
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uptr shadow_last = MEM_TO_SHADOW(ptr_raw + sz - 1);
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for (uptr s = shadow_first; s <= shadow_last; ++s)
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if (*(tag_t*)s != ptr_tag)
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return SHADOW_TO_MEM(s) - ptr_raw;
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return -1;
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}
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u16 __sanitizer_unaligned_load16(const uu16 *p) {
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return *p;
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}
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u32 __sanitizer_unaligned_load32(const uu32 *p) {
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return *p;
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}
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u64 __sanitizer_unaligned_load64(const uu64 *p) {
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return *p;
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}
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void __sanitizer_unaligned_store16(uu16 *p, u16 x) {
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*p = x;
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}
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void __sanitizer_unaligned_store32(uu32 *p, u32 x) {
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*p = x;
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}
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void __sanitizer_unaligned_store64(uu64 *p, u64 x) {
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*p = x;
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}
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template<unsigned X>
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__attribute__((always_inline))
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static void SigTrap(uptr p) {
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#if defined(__aarch64__)
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(void)p;
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// 0x900 is added to do not interfere with the kernel use of lower values of
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// brk immediate.
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// FIXME: Add a constraint to put the pointer into x0, the same as x86 branch.
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asm("brk %0\n\t" ::"n"(0x900 + X));
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#elif defined(__x86_64__)
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// INT3 + NOP DWORD ptr [EAX + X] to pass X to our signal handler, 5 bytes
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// total. The pointer is passed via rdi.
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// 0x40 is added as a safeguard, to help distinguish our trap from others and
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// to avoid 0 offsets in the command (otherwise it'll be reduced to a
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// different nop command, the three bytes one).
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asm volatile(
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"int3\n"
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"nopl %c0(%%rax)\n"
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:: "n"(0x40 + X), "D"(p));
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#else
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// FIXME: not always sigill.
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__builtin_trap();
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#endif
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// __builtin_unreachable();
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}
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enum class ErrorAction { Abort, Recover };
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enum class AccessType { Load, Store };
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template <ErrorAction EA, AccessType AT, unsigned LogSize>
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__attribute__((always_inline, nodebug)) static void CheckAddress(uptr p) {
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tag_t ptr_tag = GetTagFromPointer(p);
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uptr ptr_raw = p & ~kAddressTagMask;
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tag_t mem_tag = *(tag_t *)MEM_TO_SHADOW(ptr_raw);
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if (UNLIKELY(ptr_tag != mem_tag)) {
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SigTrap<0x20 * (EA == ErrorAction::Recover) +
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0x10 * (AT == AccessType::Store) + LogSize>(p);
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if (EA == ErrorAction::Abort) __builtin_unreachable();
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}
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}
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template <ErrorAction EA, AccessType AT>
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__attribute__((always_inline, nodebug)) static void CheckAddressSized(uptr p,
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uptr sz) {
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CHECK_NE(0, sz);
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tag_t ptr_tag = GetTagFromPointer(p);
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uptr ptr_raw = p & ~kAddressTagMask;
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tag_t *shadow_first = (tag_t *)MEM_TO_SHADOW(ptr_raw);
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tag_t *shadow_last = (tag_t *)MEM_TO_SHADOW(ptr_raw + sz - 1);
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for (tag_t *t = shadow_first; t <= shadow_last; ++t)
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if (UNLIKELY(ptr_tag != *t)) {
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SigTrap<0x20 * (EA == ErrorAction::Recover) +
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0x10 * (AT == AccessType::Store) + 0xf>(p);
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if (EA == ErrorAction::Abort) __builtin_unreachable();
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}
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}
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void __hwasan_loadN(uptr p, uptr sz) {
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CheckAddressSized<ErrorAction::Abort, AccessType::Load>(p, sz);
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}
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void __hwasan_load1(uptr p) {
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CheckAddress<ErrorAction::Abort, AccessType::Load, 0>(p);
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}
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void __hwasan_load2(uptr p) {
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CheckAddress<ErrorAction::Abort, AccessType::Load, 1>(p);
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}
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void __hwasan_load4(uptr p) {
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CheckAddress<ErrorAction::Abort, AccessType::Load, 2>(p);
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}
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void __hwasan_load8(uptr p) {
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CheckAddress<ErrorAction::Abort, AccessType::Load, 3>(p);
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}
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void __hwasan_load16(uptr p) {
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CheckAddress<ErrorAction::Abort, AccessType::Load, 4>(p);
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}
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void __hwasan_loadN_noabort(uptr p, uptr sz) {
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CheckAddressSized<ErrorAction::Recover, AccessType::Load>(p, sz);
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}
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void __hwasan_load1_noabort(uptr p) {
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CheckAddress<ErrorAction::Recover, AccessType::Load, 0>(p);
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}
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void __hwasan_load2_noabort(uptr p) {
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CheckAddress<ErrorAction::Recover, AccessType::Load, 1>(p);
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}
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void __hwasan_load4_noabort(uptr p) {
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CheckAddress<ErrorAction::Recover, AccessType::Load, 2>(p);
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}
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void __hwasan_load8_noabort(uptr p) {
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CheckAddress<ErrorAction::Recover, AccessType::Load, 3>(p);
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}
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void __hwasan_load16_noabort(uptr p) {
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CheckAddress<ErrorAction::Recover, AccessType::Load, 4>(p);
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}
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void __hwasan_storeN(uptr p, uptr sz) {
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CheckAddressSized<ErrorAction::Abort, AccessType::Store>(p, sz);
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}
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void __hwasan_store1(uptr p) {
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CheckAddress<ErrorAction::Abort, AccessType::Store, 0>(p);
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}
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void __hwasan_store2(uptr p) {
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CheckAddress<ErrorAction::Abort, AccessType::Store, 1>(p);
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}
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void __hwasan_store4(uptr p) {
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CheckAddress<ErrorAction::Abort, AccessType::Store, 2>(p);
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}
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void __hwasan_store8(uptr p) {
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CheckAddress<ErrorAction::Abort, AccessType::Store, 3>(p);
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}
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void __hwasan_store16(uptr p) {
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CheckAddress<ErrorAction::Abort, AccessType::Store, 4>(p);
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}
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void __hwasan_storeN_noabort(uptr p, uptr sz) {
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CheckAddressSized<ErrorAction::Recover, AccessType::Store>(p, sz);
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}
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void __hwasan_store1_noabort(uptr p) {
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CheckAddress<ErrorAction::Recover, AccessType::Store, 0>(p);
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}
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void __hwasan_store2_noabort(uptr p) {
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CheckAddress<ErrorAction::Recover, AccessType::Store, 1>(p);
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}
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void __hwasan_store4_noabort(uptr p) {
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CheckAddress<ErrorAction::Recover, AccessType::Store, 2>(p);
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}
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void __hwasan_store8_noabort(uptr p) {
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CheckAddress<ErrorAction::Recover, AccessType::Store, 3>(p);
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}
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void __hwasan_store16_noabort(uptr p) {
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CheckAddress<ErrorAction::Recover, AccessType::Store, 4>(p);
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}
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void __hwasan_tag_memory(uptr p, u8 tag, uptr sz) {
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TagMemoryAligned(p, sz, tag);
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}
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static const u8 kFallbackTag = 0xBB;
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u8 __hwasan_generate_tag() {
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HwasanThread *t = GetCurrentThread();
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if (!t) return kFallbackTag;
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return t->GenerateRandomTag();
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}
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#if !SANITIZER_SUPPORTS_WEAK_HOOKS
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extern "C" {
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SANITIZER_INTERFACE_ATTRIBUTE SANITIZER_WEAK_ATTRIBUTE
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const char* __hwasan_default_options() { return ""; }
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} // extern "C"
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#endif
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extern "C" {
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SANITIZER_INTERFACE_ATTRIBUTE
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void __sanitizer_print_stack_trace() {
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GET_FATAL_STACK_TRACE_PC_BP(StackTrace::GetCurrentPc(), GET_CURRENT_FRAME());
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stack.Print();
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}
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} // extern "C"
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