1018981977
libsanitizer/ * All source files: Merge from upstream 285547. * configure.tgt (SANITIZER_COMMON_TARGET_DEPENDENT_OBJECTS): New variable. * configure.ac (SANITIZER_COMMON_TARGET_DEPENDENT_OBJECTS): Handle it. * asan/Makefile.am (asan_files): Add new files. * asan/Makefile.in: Regenerate. * ubsan/Makefile.in: Likewise. * lsan/Makefile.in: Likewise. * tsan/Makefile.am (tsan_files): Add new files. * tsan/Makefile.in: Regenerate. * sanitizer_common/Makefile.am (sanitizer_common_files): Add new files. (EXTRA_libsanitizer_common_la_SOURCES): Define. (libsanitizer_common_la_LIBADD): Likewise. (libsanitizer_common_la_DEPENDENCIES): Likewise. * sanitizer_common/Makefile.in: Regenerate. * interception/Makefile.in: Likewise. * libbacktace/Makefile.in: Likewise. * Makefile.in: Likewise. * configure: Likewise. * merge.sh: Handle builtins/assembly.h merging. * builtins/assembly.h: New file. * asan/libtool-version: Bump the libasan SONAME. From-SVN: r241977
495 lines
18 KiB
C++
495 lines
18 KiB
C++
//===-- asan_errors.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 implementation for error structures.
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//===----------------------------------------------------------------------===//
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#include "asan_errors.h"
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#include <signal.h>
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#include "asan_descriptions.h"
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#include "asan_mapping.h"
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#include "asan_report.h"
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#include "asan_stack.h"
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#include "sanitizer_common/sanitizer_stackdepot.h"
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namespace __asan {
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void ErrorStackOverflow::Print() {
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Decorator d;
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Printf("%s", d.Warning());
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Report(
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"ERROR: AddressSanitizer: stack-overflow on address %p"
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" (pc %p bp %p sp %p T%d)\n",
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(void *)addr, (void *)pc, (void *)bp, (void *)sp, tid);
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Printf("%s", d.EndWarning());
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scariness.Print();
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BufferedStackTrace stack;
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GetStackTraceWithPcBpAndContext(&stack, kStackTraceMax, pc, bp, context,
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common_flags()->fast_unwind_on_fatal);
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stack.Print();
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ReportErrorSummary("stack-overflow", &stack);
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}
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static void MaybeDumpInstructionBytes(uptr pc) {
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if (!flags()->dump_instruction_bytes || (pc < GetPageSizeCached())) return;
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InternalScopedString str(1024);
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str.append("First 16 instruction bytes at pc: ");
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if (IsAccessibleMemoryRange(pc, 16)) {
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for (int i = 0; i < 16; ++i) {
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PrintMemoryByte(&str, "", ((u8 *)pc)[i], /*in_shadow*/ false, " ");
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}
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str.append("\n");
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} else {
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str.append("unaccessible\n");
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}
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Report("%s", str.data());
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}
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void ErrorDeadlySignal::Print() {
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Decorator d;
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Printf("%s", d.Warning());
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const char *description = DescribeSignalOrException(signo);
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Report(
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"ERROR: AddressSanitizer: %s on unknown address %p (pc %p bp %p sp %p "
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"T%d)\n",
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description, (void *)addr, (void *)pc, (void *)bp, (void *)sp, tid);
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Printf("%s", d.EndWarning());
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if (pc < GetPageSizeCached()) Report("Hint: pc points to the zero page.\n");
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if (is_memory_access) {
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const char *access_type =
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write_flag == SignalContext::WRITE
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? "WRITE"
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: (write_flag == SignalContext::READ ? "READ" : "UNKNOWN");
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Report("The signal is caused by a %s memory access.\n", access_type);
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if (addr < GetPageSizeCached())
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Report("Hint: address points to the zero page.\n");
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}
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scariness.Print();
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BufferedStackTrace stack;
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GetStackTraceWithPcBpAndContext(&stack, kStackTraceMax, pc, bp, context,
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common_flags()->fast_unwind_on_fatal);
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stack.Print();
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MaybeDumpInstructionBytes(pc);
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Printf("AddressSanitizer can not provide additional info.\n");
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ReportErrorSummary(description, &stack);
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}
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void ErrorDoubleFree::Print() {
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Decorator d;
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Printf("%s", d.Warning());
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char tname[128];
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Report(
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"ERROR: AddressSanitizer: attempting double-free on %p in "
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"thread T%d%s:\n",
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addr_description.addr, tid,
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ThreadNameWithParenthesis(tid, tname, sizeof(tname)));
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Printf("%s", d.EndWarning());
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scariness.Print();
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GET_STACK_TRACE_FATAL(second_free_stack->trace[0],
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second_free_stack->top_frame_bp);
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stack.Print();
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addr_description.Print();
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ReportErrorSummary("double-free", &stack);
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}
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void ErrorNewDeleteSizeMismatch::Print() {
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Decorator d;
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Printf("%s", d.Warning());
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char tname[128];
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Report(
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"ERROR: AddressSanitizer: new-delete-type-mismatch on %p in thread "
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"T%d%s:\n",
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addr_description.addr, tid,
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ThreadNameWithParenthesis(tid, tname, sizeof(tname)));
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Printf("%s object passed to delete has wrong type:\n", d.EndWarning());
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Printf(
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" size of the allocated type: %zd bytes;\n"
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" size of the deallocated type: %zd bytes.\n",
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addr_description.chunk_access.chunk_size, delete_size);
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CHECK_GT(free_stack->size, 0);
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scariness.Print();
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GET_STACK_TRACE_FATAL(free_stack->trace[0], free_stack->top_frame_bp);
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stack.Print();
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addr_description.Print();
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ReportErrorSummary("new-delete-type-mismatch", &stack);
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Report(
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"HINT: if you don't care about these errors you may set "
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"ASAN_OPTIONS=new_delete_type_mismatch=0\n");
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}
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void ErrorFreeNotMalloced::Print() {
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Decorator d;
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Printf("%s", d.Warning());
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char tname[128];
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Report(
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"ERROR: AddressSanitizer: attempting free on address "
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"which was not malloc()-ed: %p in thread T%d%s\n",
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addr_description.Address(), tid,
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ThreadNameWithParenthesis(tid, tname, sizeof(tname)));
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Printf("%s", d.EndWarning());
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CHECK_GT(free_stack->size, 0);
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scariness.Print();
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GET_STACK_TRACE_FATAL(free_stack->trace[0], free_stack->top_frame_bp);
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stack.Print();
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addr_description.Print();
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ReportErrorSummary("bad-free", &stack);
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}
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void ErrorAllocTypeMismatch::Print() {
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static const char *alloc_names[] = {"INVALID", "malloc", "operator new",
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"operator new []"};
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static const char *dealloc_names[] = {"INVALID", "free", "operator delete",
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"operator delete []"};
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CHECK_NE(alloc_type, dealloc_type);
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Decorator d;
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Printf("%s", d.Warning());
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Report("ERROR: AddressSanitizer: alloc-dealloc-mismatch (%s vs %s) on %p\n",
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alloc_names[alloc_type], dealloc_names[dealloc_type],
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addr_description.addr);
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Printf("%s", d.EndWarning());
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CHECK_GT(dealloc_stack->size, 0);
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scariness.Print();
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GET_STACK_TRACE_FATAL(dealloc_stack->trace[0], dealloc_stack->top_frame_bp);
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stack.Print();
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addr_description.Print();
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ReportErrorSummary("alloc-dealloc-mismatch", &stack);
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Report(
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"HINT: if you don't care about these errors you may set "
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"ASAN_OPTIONS=alloc_dealloc_mismatch=0\n");
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}
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void ErrorMallocUsableSizeNotOwned::Print() {
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Decorator d;
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Printf("%s", d.Warning());
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Report(
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"ERROR: AddressSanitizer: attempting to call malloc_usable_size() for "
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"pointer which is not owned: %p\n",
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addr_description.Address());
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Printf("%s", d.EndWarning());
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stack->Print();
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addr_description.Print();
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ReportErrorSummary("bad-malloc_usable_size", stack);
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}
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void ErrorSanitizerGetAllocatedSizeNotOwned::Print() {
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Decorator d;
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Printf("%s", d.Warning());
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Report(
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"ERROR: AddressSanitizer: attempting to call "
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"__sanitizer_get_allocated_size() for pointer which is not owned: %p\n",
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addr_description.Address());
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Printf("%s", d.EndWarning());
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stack->Print();
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addr_description.Print();
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ReportErrorSummary("bad-__sanitizer_get_allocated_size", stack);
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}
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void ErrorStringFunctionMemoryRangesOverlap::Print() {
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Decorator d;
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char bug_type[100];
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internal_snprintf(bug_type, sizeof(bug_type), "%s-param-overlap", function);
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Printf("%s", d.Warning());
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Report(
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"ERROR: AddressSanitizer: %s: memory ranges [%p,%p) and [%p, %p) "
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"overlap\n",
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bug_type, addr1_description.Address(),
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addr1_description.Address() + length1, addr2_description.Address(),
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addr2_description.Address() + length2);
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Printf("%s", d.EndWarning());
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scariness.Print();
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stack->Print();
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addr1_description.Print();
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addr2_description.Print();
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ReportErrorSummary(bug_type, stack);
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}
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void ErrorStringFunctionSizeOverflow::Print() {
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Decorator d;
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Printf("%s", d.Warning());
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const char *bug_type = "negative-size-param";
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Report("ERROR: AddressSanitizer: %s: (size=%zd)\n", bug_type, size);
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Printf("%s", d.EndWarning());
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scariness.Print();
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stack->Print();
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addr_description.Print();
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ReportErrorSummary(bug_type, stack);
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}
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void ErrorBadParamsToAnnotateContiguousContainer::Print() {
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Report(
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"ERROR: AddressSanitizer: bad parameters to "
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"__sanitizer_annotate_contiguous_container:\n"
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" beg : %p\n"
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" end : %p\n"
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" old_mid : %p\n"
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" new_mid : %p\n",
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beg, end, old_mid, new_mid);
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uptr granularity = SHADOW_GRANULARITY;
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if (!IsAligned(beg, granularity))
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Report("ERROR: beg is not aligned by %d\n", granularity);
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stack->Print();
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ReportErrorSummary("bad-__sanitizer_annotate_contiguous_container", stack);
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}
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void ErrorODRViolation::Print() {
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Decorator d;
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Printf("%s", d.Warning());
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Report("ERROR: AddressSanitizer: odr-violation (%p):\n", global1.beg);
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Printf("%s", d.EndWarning());
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InternalScopedString g1_loc(256), g2_loc(256);
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PrintGlobalLocation(&g1_loc, global1);
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PrintGlobalLocation(&g2_loc, global2);
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Printf(" [1] size=%zd '%s' %s\n", global1.size,
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MaybeDemangleGlobalName(global1.name), g1_loc.data());
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Printf(" [2] size=%zd '%s' %s\n", global2.size,
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MaybeDemangleGlobalName(global2.name), g2_loc.data());
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if (stack_id1 && stack_id2) {
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Printf("These globals were registered at these points:\n");
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Printf(" [1]:\n");
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StackDepotGet(stack_id1).Print();
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Printf(" [2]:\n");
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StackDepotGet(stack_id2).Print();
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}
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Report(
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"HINT: if you don't care about these errors you may set "
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"ASAN_OPTIONS=detect_odr_violation=0\n");
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InternalScopedString error_msg(256);
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error_msg.append("odr-violation: global '%s' at %s",
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MaybeDemangleGlobalName(global1.name), g1_loc.data());
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ReportErrorSummary(error_msg.data());
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}
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void ErrorInvalidPointerPair::Print() {
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const char *bug_type = "invalid-pointer-pair";
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Decorator d;
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Printf("%s", d.Warning());
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Report("ERROR: AddressSanitizer: invalid-pointer-pair: %p %p\n",
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addr1_description.Address(), addr2_description.Address());
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Printf("%s", d.EndWarning());
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GET_STACK_TRACE_FATAL(pc, bp);
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stack.Print();
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addr1_description.Print();
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addr2_description.Print();
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ReportErrorSummary(bug_type, &stack);
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}
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static bool AdjacentShadowValuesAreFullyPoisoned(u8 *s) {
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return s[-1] > 127 && s[1] > 127;
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}
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ErrorGeneric::ErrorGeneric(u32 tid, uptr pc_, uptr bp_, uptr sp_, uptr addr,
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bool is_write_, uptr access_size_)
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: ErrorBase(tid),
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addr_description(addr, access_size_, /*shouldLockThreadRegistry=*/false),
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pc(pc_),
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bp(bp_),
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sp(sp_),
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access_size(access_size_),
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is_write(is_write_),
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shadow_val(0) {
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scariness.Clear();
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if (access_size) {
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if (access_size <= 9) {
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char desr[] = "?-byte";
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desr[0] = '0' + access_size;
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scariness.Scare(access_size + access_size / 2, desr);
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} else if (access_size >= 10) {
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scariness.Scare(15, "multi-byte");
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}
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is_write ? scariness.Scare(20, "write") : scariness.Scare(1, "read");
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// Determine the error type.
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bug_descr = "unknown-crash";
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if (AddrIsInMem(addr)) {
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u8 *shadow_addr = (u8 *)MemToShadow(addr);
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// If we are accessing 16 bytes, look at the second shadow byte.
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if (*shadow_addr == 0 && access_size > SHADOW_GRANULARITY) shadow_addr++;
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// If we are in the partial right redzone, look at the next shadow byte.
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if (*shadow_addr > 0 && *shadow_addr < 128) shadow_addr++;
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bool far_from_bounds = false;
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shadow_val = *shadow_addr;
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int bug_type_score = 0;
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// For use-after-frees reads are almost as bad as writes.
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int read_after_free_bonus = 0;
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switch (shadow_val) {
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case kAsanHeapLeftRedzoneMagic:
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case kAsanArrayCookieMagic:
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bug_descr = "heap-buffer-overflow";
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bug_type_score = 10;
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far_from_bounds = AdjacentShadowValuesAreFullyPoisoned(shadow_addr);
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break;
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case kAsanHeapFreeMagic:
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bug_descr = "heap-use-after-free";
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bug_type_score = 20;
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if (!is_write) read_after_free_bonus = 18;
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break;
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case kAsanStackLeftRedzoneMagic:
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bug_descr = "stack-buffer-underflow";
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bug_type_score = 25;
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far_from_bounds = AdjacentShadowValuesAreFullyPoisoned(shadow_addr);
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break;
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case kAsanInitializationOrderMagic:
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bug_descr = "initialization-order-fiasco";
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bug_type_score = 1;
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break;
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case kAsanStackMidRedzoneMagic:
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case kAsanStackRightRedzoneMagic:
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bug_descr = "stack-buffer-overflow";
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bug_type_score = 25;
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far_from_bounds = AdjacentShadowValuesAreFullyPoisoned(shadow_addr);
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break;
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case kAsanStackAfterReturnMagic:
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bug_descr = "stack-use-after-return";
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bug_type_score = 30;
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if (!is_write) read_after_free_bonus = 18;
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break;
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case kAsanUserPoisonedMemoryMagic:
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bug_descr = "use-after-poison";
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bug_type_score = 20;
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break;
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case kAsanContiguousContainerOOBMagic:
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bug_descr = "container-overflow";
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bug_type_score = 10;
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break;
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case kAsanStackUseAfterScopeMagic:
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bug_descr = "stack-use-after-scope";
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bug_type_score = 10;
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break;
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case kAsanGlobalRedzoneMagic:
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bug_descr = "global-buffer-overflow";
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bug_type_score = 10;
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far_from_bounds = AdjacentShadowValuesAreFullyPoisoned(shadow_addr);
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break;
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case kAsanIntraObjectRedzone:
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bug_descr = "intra-object-overflow";
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bug_type_score = 10;
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break;
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case kAsanAllocaLeftMagic:
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case kAsanAllocaRightMagic:
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bug_descr = "dynamic-stack-buffer-overflow";
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bug_type_score = 25;
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far_from_bounds = AdjacentShadowValuesAreFullyPoisoned(shadow_addr);
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break;
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}
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scariness.Scare(bug_type_score + read_after_free_bonus, bug_descr);
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if (far_from_bounds) scariness.Scare(10, "far-from-bounds");
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}
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}
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}
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static void PrintContainerOverflowHint() {
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Printf("HINT: if you don't care about these errors you may set "
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"ASAN_OPTIONS=detect_container_overflow=0.\n"
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"If you suspect a false positive see also: "
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"https://github.com/google/sanitizers/wiki/"
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"AddressSanitizerContainerOverflow.\n");
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}
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static void PrintShadowByte(InternalScopedString *str, const char *before,
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u8 byte, const char *after = "\n") {
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PrintMemoryByte(str, before, byte, /*in_shadow*/true, after);
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}
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static void PrintLegend(InternalScopedString *str) {
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str->append(
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"Shadow byte legend (one shadow byte represents %d "
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"application bytes):\n",
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(int)SHADOW_GRANULARITY);
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PrintShadowByte(str, " Addressable: ", 0);
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str->append(" Partially addressable: ");
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for (u8 i = 1; i < SHADOW_GRANULARITY; i++) PrintShadowByte(str, "", i, " ");
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str->append("\n");
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PrintShadowByte(str, " Heap left redzone: ",
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kAsanHeapLeftRedzoneMagic);
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PrintShadowByte(str, " Freed heap region: ", kAsanHeapFreeMagic);
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PrintShadowByte(str, " Stack left redzone: ",
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kAsanStackLeftRedzoneMagic);
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PrintShadowByte(str, " Stack mid redzone: ",
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kAsanStackMidRedzoneMagic);
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PrintShadowByte(str, " Stack right redzone: ",
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kAsanStackRightRedzoneMagic);
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PrintShadowByte(str, " Stack after return: ",
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kAsanStackAfterReturnMagic);
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PrintShadowByte(str, " Stack use after scope: ",
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kAsanStackUseAfterScopeMagic);
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PrintShadowByte(str, " Global redzone: ", kAsanGlobalRedzoneMagic);
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PrintShadowByte(str, " Global init order: ",
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kAsanInitializationOrderMagic);
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PrintShadowByte(str, " Poisoned by user: ",
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kAsanUserPoisonedMemoryMagic);
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PrintShadowByte(str, " Container overflow: ",
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kAsanContiguousContainerOOBMagic);
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PrintShadowByte(str, " Array cookie: ",
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kAsanArrayCookieMagic);
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PrintShadowByte(str, " Intra object redzone: ",
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kAsanIntraObjectRedzone);
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PrintShadowByte(str, " ASan internal: ", kAsanInternalHeapMagic);
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PrintShadowByte(str, " Left alloca redzone: ", kAsanAllocaLeftMagic);
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PrintShadowByte(str, " Right alloca redzone: ", kAsanAllocaRightMagic);
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}
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static void PrintShadowBytes(InternalScopedString *str, const char *before,
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u8 *bytes, u8 *guilty, uptr n) {
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Decorator d;
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if (before) str->append("%s%p:", before, bytes);
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for (uptr i = 0; i < n; i++) {
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u8 *p = bytes + i;
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const char *before =
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p == guilty ? "[" : (p - 1 == guilty && i != 0) ? "" : " ";
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const char *after = p == guilty ? "]" : "";
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PrintShadowByte(str, before, *p, after);
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}
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str->append("\n");
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}
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static void PrintShadowMemoryForAddress(uptr addr) {
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if (!AddrIsInMem(addr)) return;
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uptr shadow_addr = MemToShadow(addr);
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const uptr n_bytes_per_row = 16;
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uptr aligned_shadow = shadow_addr & ~(n_bytes_per_row - 1);
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InternalScopedString str(4096 * 8);
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str.append("Shadow bytes around the buggy address:\n");
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for (int i = -5; i <= 5; i++) {
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const char *prefix = (i == 0) ? "=>" : " ";
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PrintShadowBytes(&str, prefix, (u8 *)(aligned_shadow + i * n_bytes_per_row),
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(u8 *)shadow_addr, n_bytes_per_row);
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}
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if (flags()->print_legend) PrintLegend(&str);
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Printf("%s", str.data());
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}
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|
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void ErrorGeneric::Print() {
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Decorator d;
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Printf("%s", d.Warning());
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uptr addr = addr_description.Address();
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Report("ERROR: AddressSanitizer: %s on address %p at pc %p bp %p sp %p\n",
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bug_descr, (void *)addr, pc, bp, sp);
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Printf("%s", d.EndWarning());
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|
|
|
char tname[128];
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Printf("%s%s of size %zu at %p thread T%d%s%s\n", d.Access(),
|
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access_size ? (is_write ? "WRITE" : "READ") : "ACCESS", access_size,
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|
(void *)addr, tid,
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ThreadNameWithParenthesis(tid, tname, sizeof(tname)), d.EndAccess());
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|
|
|
scariness.Print();
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|
GET_STACK_TRACE_FATAL(pc, bp);
|
|
stack.Print();
|
|
|
|
// Pass bug_descr because we have a special case for
|
|
// initialization-order-fiasco
|
|
addr_description.Print(bug_descr);
|
|
if (shadow_val == kAsanContiguousContainerOOBMagic)
|
|
PrintContainerOverflowHint();
|
|
ReportErrorSummary(bug_descr, &stack);
|
|
PrintShadowMemoryForAddress(addr);
|
|
}
|
|
|
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} // namespace __asan
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