90e46074e6
Merged revision: 7704fedfff6ef5676adb6415f3be0ac927d1a746
226 lines
7.0 KiB
C++
226 lines
7.0 KiB
C++
//===-- sanitizer_stacktrace_libcdep.cpp ----------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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//
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// This file is shared between AddressSanitizer and ThreadSanitizer
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// run-time libraries.
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//===----------------------------------------------------------------------===//
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#include "sanitizer_common.h"
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#include "sanitizer_placement_new.h"
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#include "sanitizer_stacktrace.h"
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#include "sanitizer_stacktrace_printer.h"
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#include "sanitizer_symbolizer.h"
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namespace __sanitizer {
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namespace {
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class StackTraceTextPrinter {
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public:
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StackTraceTextPrinter(const char *stack_trace_fmt, char frame_delimiter,
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InternalScopedString *output,
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InternalScopedString *dedup_token)
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: stack_trace_fmt_(stack_trace_fmt),
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frame_delimiter_(frame_delimiter),
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output_(output),
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dedup_token_(dedup_token),
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symbolize_(RenderNeedsSymbolization(stack_trace_fmt)) {}
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bool ProcessAddressFrames(uptr pc) {
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SymbolizedStack *frames = symbolize_
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? Symbolizer::GetOrInit()->SymbolizePC(pc)
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: SymbolizedStack::New(pc);
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if (!frames)
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return false;
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for (SymbolizedStack *cur = frames; cur; cur = cur->next) {
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uptr prev_len = output_->length();
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RenderFrame(output_, stack_trace_fmt_, frame_num_++, cur->info.address,
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symbolize_ ? &cur->info : nullptr,
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common_flags()->symbolize_vs_style,
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common_flags()->strip_path_prefix);
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if (prev_len != output_->length())
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output_->append("%c", frame_delimiter_);
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ExtendDedupToken(cur);
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}
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frames->ClearAll();
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return true;
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}
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private:
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// Extend the dedup token by appending a new frame.
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void ExtendDedupToken(SymbolizedStack *stack) {
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if (!dedup_token_)
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return;
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if (dedup_frames_-- > 0) {
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if (dedup_token_->length())
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dedup_token_->append("--");
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if (stack->info.function != nullptr)
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dedup_token_->append(stack->info.function);
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}
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}
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const char *stack_trace_fmt_;
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const char frame_delimiter_;
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int dedup_frames_ = common_flags()->dedup_token_length;
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uptr frame_num_ = 0;
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InternalScopedString *output_;
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InternalScopedString *dedup_token_;
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const bool symbolize_ = false;
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};
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static void CopyStringToBuffer(const InternalScopedString &str, char *out_buf,
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uptr out_buf_size) {
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if (!out_buf_size)
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return;
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CHECK_GT(out_buf_size, 0);
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uptr copy_size = Min(str.length(), out_buf_size - 1);
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internal_memcpy(out_buf, str.data(), copy_size);
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out_buf[copy_size] = '\0';
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}
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} // namespace
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void StackTrace::PrintTo(InternalScopedString *output) const {
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CHECK(output);
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InternalScopedString dedup_token;
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StackTraceTextPrinter printer(common_flags()->stack_trace_format, '\n',
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output, &dedup_token);
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if (trace == nullptr || size == 0) {
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output->append(" <empty stack>\n\n");
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return;
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}
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for (uptr i = 0; i < size && trace[i]; i++) {
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// PCs in stack traces are actually the return addresses, that is,
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// addresses of the next instructions after the call.
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uptr pc = GetPreviousInstructionPc(trace[i]);
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CHECK(printer.ProcessAddressFrames(pc));
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}
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// Always add a trailing empty line after stack trace.
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output->append("\n");
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// Append deduplication token, if non-empty.
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if (dedup_token.length())
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output->append("DEDUP_TOKEN: %s\n", dedup_token.data());
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}
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uptr StackTrace::PrintTo(char *out_buf, uptr out_buf_size) const {
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CHECK(out_buf);
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InternalScopedString output;
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PrintTo(&output);
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CopyStringToBuffer(output, out_buf, out_buf_size);
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return output.length();
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}
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void StackTrace::Print() const {
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InternalScopedString output;
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PrintTo(&output);
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Printf("%s", output.data());
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}
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void BufferedStackTrace::Unwind(u32 max_depth, uptr pc, uptr bp, void *context,
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uptr stack_top, uptr stack_bottom,
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bool request_fast_unwind) {
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// Ensures all call sites get what they requested.
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CHECK_EQ(request_fast_unwind, WillUseFastUnwind(request_fast_unwind));
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top_frame_bp = (max_depth > 0) ? bp : 0;
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// Avoid doing any work for small max_depth.
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if (max_depth == 0) {
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size = 0;
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return;
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}
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if (max_depth == 1) {
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size = 1;
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trace_buffer[0] = pc;
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return;
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}
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if (!WillUseFastUnwind(request_fast_unwind)) {
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#if SANITIZER_CAN_SLOW_UNWIND
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if (context)
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UnwindSlow(pc, context, max_depth);
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else
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UnwindSlow(pc, max_depth);
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// If there are too few frames, the program may be built with
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// -fno-asynchronous-unwind-tables. Fall back to fast unwinder below.
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if (size > 2 || size >= max_depth)
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return;
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#else
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UNREACHABLE("slow unwind requested but not available");
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#endif
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}
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UnwindFast(pc, bp, stack_top, stack_bottom, max_depth);
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}
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static int GetModuleAndOffsetForPc(uptr pc, char *module_name,
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uptr module_name_len, uptr *pc_offset) {
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const char *found_module_name = nullptr;
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bool ok = Symbolizer::GetOrInit()->GetModuleNameAndOffsetForPC(
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pc, &found_module_name, pc_offset);
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if (!ok) return false;
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if (module_name && module_name_len) {
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internal_strncpy(module_name, found_module_name, module_name_len);
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module_name[module_name_len - 1] = '\x00';
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}
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return true;
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}
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} // namespace __sanitizer
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using namespace __sanitizer;
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extern "C" {
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SANITIZER_INTERFACE_ATTRIBUTE
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void __sanitizer_symbolize_pc(uptr pc, const char *fmt, char *out_buf,
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uptr out_buf_size) {
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if (!out_buf_size)
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return;
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pc = StackTrace::GetPreviousInstructionPc(pc);
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InternalScopedString output;
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StackTraceTextPrinter printer(fmt, '\0', &output, nullptr);
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if (!printer.ProcessAddressFrames(pc)) {
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output.clear();
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output.append("<can't symbolize>");
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}
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CopyStringToBuffer(output, out_buf, out_buf_size);
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}
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SANITIZER_INTERFACE_ATTRIBUTE
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void __sanitizer_symbolize_global(uptr data_addr, const char *fmt,
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char *out_buf, uptr out_buf_size) {
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if (!out_buf_size) return;
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out_buf[0] = 0;
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DataInfo DI;
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if (!Symbolizer::GetOrInit()->SymbolizeData(data_addr, &DI)) return;
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InternalScopedString data_desc;
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RenderData(&data_desc, fmt, &DI, common_flags()->strip_path_prefix);
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internal_strncpy(out_buf, data_desc.data(), out_buf_size);
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out_buf[out_buf_size - 1] = 0;
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}
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SANITIZER_INTERFACE_ATTRIBUTE
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int __sanitizer_get_module_and_offset_for_pc(uptr pc, char *module_name,
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uptr module_name_len,
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uptr *pc_offset) {
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return __sanitizer::GetModuleAndOffsetForPc(pc, module_name, module_name_len,
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pc_offset);
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}
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} // extern "C"
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