forked from OSchip/llvm-project
147 lines
4.7 KiB
C++
147 lines
4.7 KiB
C++
//===-- asan_debugging.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 AddressSanitizer, an address sanity checker.
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//
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// This file contains various functions that are generally useful to call when
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// using a debugger (LLDB, GDB).
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//===----------------------------------------------------------------------===//
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#include "asan_allocator.h"
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#include "asan_descriptions.h"
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#include "asan_flags.h"
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#include "asan_internal.h"
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#include "asan_mapping.h"
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#include "asan_report.h"
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#include "asan_thread.h"
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namespace {
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using namespace __asan;
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static void FindInfoForStackVar(uptr addr, const char *frame_descr, uptr offset,
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char *name, uptr name_size,
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uptr ®ion_address, uptr ®ion_size) {
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InternalMmapVector<StackVarDescr> vars(16);
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if (!ParseFrameDescription(frame_descr, &vars)) {
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return;
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}
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for (uptr i = 0; i < vars.size(); i++) {
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if (offset <= vars[i].beg + vars[i].size) {
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// We use name_len + 1 because strlcpy will guarantee a \0 at the end, so
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// if we're limiting the copy due to name_len, we add 1 to ensure we copy
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// the whole name and then terminate with '\0'.
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internal_strlcpy(name, vars[i].name_pos,
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Min(name_size, vars[i].name_len + 1));
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region_address = addr - (offset - vars[i].beg);
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region_size = vars[i].size;
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return;
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}
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}
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}
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uptr AsanGetStack(uptr addr, uptr *trace, u32 size, u32 *thread_id,
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bool alloc_stack) {
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AsanChunkView chunk = FindHeapChunkByAddress(addr);
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if (!chunk.IsValid()) return 0;
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StackTrace stack(nullptr, 0);
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if (alloc_stack) {
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if (chunk.AllocTid() == kInvalidTid) return 0;
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stack = chunk.GetAllocStack();
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if (thread_id) *thread_id = chunk.AllocTid();
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} else {
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if (chunk.FreeTid() == kInvalidTid) return 0;
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stack = chunk.GetFreeStack();
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if (thread_id) *thread_id = chunk.FreeTid();
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}
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if (trace && size) {
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size = Min(size, Min(stack.size, kStackTraceMax));
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for (uptr i = 0; i < size; i++)
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trace[i] = StackTrace::GetPreviousInstructionPc(stack.trace[i]);
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return size;
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}
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return 0;
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}
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} // namespace
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SANITIZER_INTERFACE_ATTRIBUTE
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const char *__asan_locate_address(uptr addr, char *name, uptr name_size,
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uptr *region_address_ptr,
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uptr *region_size_ptr) {
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AddressDescription descr(addr);
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uptr region_address = 0;
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uptr region_size = 0;
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const char *region_kind = nullptr;
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if (name && name_size > 0) name[0] = 0;
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if (auto shadow = descr.AsShadow()) {
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// region_{address,size} are already 0
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switch (shadow->kind) {
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case kShadowKindLow:
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region_kind = "low shadow";
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break;
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case kShadowKindGap:
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region_kind = "shadow gap";
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break;
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case kShadowKindHigh:
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region_kind = "high shadow";
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break;
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}
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} else if (auto heap = descr.AsHeap()) {
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region_kind = "heap";
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region_address = heap->chunk_access.chunk_begin;
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region_size = heap->chunk_access.chunk_size;
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} else if (auto stack = descr.AsStack()) {
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region_kind = "stack";
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if (!stack->frame_descr) {
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// region_{address,size} are already 0
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} else {
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FindInfoForStackVar(addr, stack->frame_descr, stack->offset, name,
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name_size, region_address, region_size);
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}
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} else if (auto global = descr.AsGlobal()) {
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region_kind = "global";
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auto &g = global->globals[0];
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internal_strlcpy(name, g.name, name_size);
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region_address = g.beg;
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region_size = g.size;
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} else {
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// region_{address,size} are already 0
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region_kind = "heap-invalid";
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}
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CHECK(region_kind);
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if (region_address_ptr) *region_address_ptr = region_address;
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if (region_size_ptr) *region_size_ptr = region_size;
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return region_kind;
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}
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SANITIZER_INTERFACE_ATTRIBUTE
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uptr __asan_get_alloc_stack(uptr addr, uptr *trace, uptr size, u32 *thread_id) {
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return AsanGetStack(addr, trace, size, thread_id, /* alloc_stack */ true);
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}
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SANITIZER_INTERFACE_ATTRIBUTE
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uptr __asan_get_free_stack(uptr addr, uptr *trace, uptr size, u32 *thread_id) {
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return AsanGetStack(addr, trace, size, thread_id, /* alloc_stack */ false);
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}
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SANITIZER_INTERFACE_ATTRIBUTE
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void __asan_get_shadow_mapping(uptr *shadow_scale, uptr *shadow_offset) {
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if (shadow_scale)
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*shadow_scale = SHADOW_SCALE;
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if (shadow_offset)
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*shadow_offset = SHADOW_OFFSET;
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}
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