mirror of
https://github.com/autc04/Retro68.git
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178 lines
5.6 KiB
C++
178 lines
5.6 KiB
C++
//===-- asan_flags.cc -------------------------------------------*- C++ -*-===//
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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 AddressSanitizer, an address sanity checker.
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//
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// ASan flag parsing logic.
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//===----------------------------------------------------------------------===//
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#include "asan_activation.h"
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#include "asan_flags.h"
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#include "asan_interface_internal.h"
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#include "asan_stack.h"
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#include "lsan/lsan_common.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 "ubsan/ubsan_flags.h"
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#include "ubsan/ubsan_platform.h"
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namespace __asan {
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Flags asan_flags_dont_use_directly; // use via flags().
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static const char *MaybeCallAsanDefaultOptions() {
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return (&__asan_default_options) ? __asan_default_options() : "";
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}
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static const char *MaybeUseAsanDefaultOptionsCompileDefinition() {
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#ifdef ASAN_DEFAULT_OPTIONS
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// Stringize the macro value.
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# define ASAN_STRINGIZE(x) #x
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# define ASAN_STRINGIZE_OPTIONS(options) ASAN_STRINGIZE(options)
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return ASAN_STRINGIZE_OPTIONS(ASAN_DEFAULT_OPTIONS);
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#else
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return "";
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#endif
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}
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void Flags::SetDefaults() {
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#define ASAN_FLAG(Type, Name, DefaultValue, Description) Name = DefaultValue;
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#include "asan_flags.inc"
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#undef ASAN_FLAG
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}
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static void RegisterAsanFlags(FlagParser *parser, Flags *f) {
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#define ASAN_FLAG(Type, Name, DefaultValue, Description) \
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RegisterFlag(parser, #Name, Description, &f->Name);
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#include "asan_flags.inc"
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#undef ASAN_FLAG
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}
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void InitializeFlags() {
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// Set the default values and prepare for parsing ASan and common flags.
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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.detect_leaks = CAN_SANITIZE_LEAKS;
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cf.external_symbolizer_path = GetEnv("ASAN_SYMBOLIZER_PATH");
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cf.malloc_context_size = kDefaultMallocContextSize;
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cf.intercept_tls_get_addr = true;
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cf.exitcode = 1;
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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 asan_parser;
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RegisterAsanFlags(&asan_parser, f);
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RegisterCommonFlags(&asan_parser);
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// Set the default values and prepare for parsing LSan and UBSan flags
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// (which can also overwrite common flags).
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#if CAN_SANITIZE_LEAKS
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__lsan::Flags *lf = __lsan::flags();
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lf->SetDefaults();
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FlagParser lsan_parser;
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__lsan::RegisterLsanFlags(&lsan_parser, lf);
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RegisterCommonFlags(&lsan_parser);
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#endif
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#if CAN_SANITIZE_UB
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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 ASan compile definition.
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const char *asan_compile_def = MaybeUseAsanDefaultOptionsCompileDefinition();
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asan_parser.ParseString(asan_compile_def);
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// Override from user-specified string.
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const char *asan_default_options = MaybeCallAsanDefaultOptions();
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asan_parser.ParseString(asan_default_options);
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#if CAN_SANITIZE_UB
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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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// Override from command line.
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asan_parser.ParseString(GetEnv("ASAN_OPTIONS"));
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#if CAN_SANITIZE_LEAKS
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lsan_parser.ParseString(GetEnv("LSAN_OPTIONS"));
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#endif
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#if CAN_SANITIZE_UB
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ubsan_parser.ParseString(GetEnv("UBSAN_OPTIONS"));
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#endif
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InitializeCommonFlags();
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// TODO(eugenis): dump all flags at verbosity>=2?
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if (Verbosity()) ReportUnrecognizedFlags();
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if (common_flags()->help) {
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// TODO(samsonov): print all of the flags (ASan, LSan, common).
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asan_parser.PrintFlagDescriptions();
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}
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// Flag validation:
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if (!CAN_SANITIZE_LEAKS && common_flags()->detect_leaks) {
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Report("%s: detect_leaks is not supported on this platform.\n",
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SanitizerToolName);
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Die();
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}
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// Make "strict_init_order" imply "check_initialization_order".
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// TODO(samsonov): Use a single runtime flag for an init-order checker.
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if (f->strict_init_order) {
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f->check_initialization_order = true;
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}
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CHECK_LE((uptr)common_flags()->malloc_context_size, kStackTraceMax);
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CHECK_LE(f->min_uar_stack_size_log, f->max_uar_stack_size_log);
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CHECK_GE(f->redzone, 16);
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CHECK_GE(f->max_redzone, f->redzone);
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CHECK_LE(f->max_redzone, 2048);
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CHECK(IsPowerOfTwo(f->redzone));
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CHECK(IsPowerOfTwo(f->max_redzone));
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// quarantine_size is deprecated but we still honor it.
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// quarantine_size can not be used together with quarantine_size_mb.
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if (f->quarantine_size >= 0 && f->quarantine_size_mb >= 0) {
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Report("%s: please use either 'quarantine_size' (deprecated) or "
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"quarantine_size_mb, but not both\n", SanitizerToolName);
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Die();
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}
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if (f->quarantine_size >= 0)
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f->quarantine_size_mb = f->quarantine_size >> 20;
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if (f->quarantine_size_mb < 0) {
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const int kDefaultQuarantineSizeMb =
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(ASAN_LOW_MEMORY) ? 1UL << 6 : 1UL << 8;
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f->quarantine_size_mb = kDefaultQuarantineSizeMb;
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}
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if (!f->replace_str && common_flags()->intercept_strlen) {
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Report("WARNING: strlen interceptor is enabled even though replace_str=0. "
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"Use intercept_strlen=0 to disable it.");
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}
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if (!f->replace_str && common_flags()->intercept_strchr) {
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Report("WARNING: strchr* interceptors are enabled even though "
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"replace_str=0. Use intercept_strchr=0 to disable them.");
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}
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}
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} // namespace __asan
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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* __asan_default_options() { return ""; }
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} // extern "C"
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#endif
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