forked from OSchip/llvm-project
229 lines
6.9 KiB
C++
229 lines
6.9 KiB
C++
//===- FuzzerUtilFuchsia.cpp - Misc utils for Fuchsia. --------------------===//
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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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// Misc utils implementation using Fuchsia/Zircon APIs.
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//===----------------------------------------------------------------------===//
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#include "FuzzerDefs.h"
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#if LIBFUZZER_FUCHSIA
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#include "FuzzerInternal.h"
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#include "FuzzerUtil.h"
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#include <cerrno>
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#include <cinttypes>
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#include <cstdint>
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#include <fbl/unique_fd.h>
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#include <fcntl.h>
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#include <launchpad/launchpad.h>
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#include <string>
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#include <thread>
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#include <zircon/errors.h>
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#include <zircon/status.h>
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#include <zircon/syscalls.h>
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#include <zircon/syscalls/port.h>
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#include <zircon/types.h>
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#include <zx/object.h>
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#include <zx/port.h>
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#include <zx/process.h>
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#include <zx/time.h>
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namespace fuzzer {
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namespace {
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// A magic value for the Zircon exception port, chosen to spell 'FUZZING'
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// when interpreted as a byte sequence on little-endian platforms.
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const uint64_t kFuzzingCrash = 0x474e495a5a5546;
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void AlarmHandler(int Seconds) {
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while (true) {
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SleepSeconds(Seconds);
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Fuzzer::StaticAlarmCallback();
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}
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}
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void InterruptHandler() {
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// Ctrl-C sends ETX in Zircon.
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while (getchar() != 0x03);
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Fuzzer::StaticInterruptCallback();
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}
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void CrashHandler(zx::port *Port) {
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std::unique_ptr<zx::port> ExceptionPort(Port);
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zx_port_packet_t Packet;
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ExceptionPort->wait(zx::time::infinite(), &Packet, 0);
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// Unbind as soon as possible so we don't receive exceptions from this thread.
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if (zx_task_bind_exception_port(ZX_HANDLE_INVALID, ZX_HANDLE_INVALID,
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kFuzzingCrash, 0) != ZX_OK) {
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// Shouldn't happen; if it does the safest option is to just exit.
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Printf("libFuzzer: unable to unbind exception port; aborting!\n");
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exit(1);
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}
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if (Packet.key != kFuzzingCrash) {
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Printf("libFuzzer: invalid crash key: %" PRIx64 "; aborting!\n",
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Packet.key);
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exit(1);
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}
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// CrashCallback should not return from this call
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Fuzzer::StaticCrashSignalCallback();
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}
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} // namespace
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// Platform specific functions.
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void SetSignalHandler(const FuzzingOptions &Options) {
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zx_status_t rc;
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// Set up alarm handler if needed.
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if (Options.UnitTimeoutSec > 0) {
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std::thread T(AlarmHandler, Options.UnitTimeoutSec / 2 + 1);
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T.detach();
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}
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// Set up interrupt handler if needed.
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if (Options.HandleInt || Options.HandleTerm) {
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std::thread T(InterruptHandler);
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T.detach();
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}
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// Early exit if no crash handler needed.
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if (!Options.HandleSegv && !Options.HandleBus && !Options.HandleIll &&
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!Options.HandleFpe && !Options.HandleAbrt)
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return;
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// Create an exception port
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zx::port *ExceptionPort = new zx::port();
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if ((rc = zx::port::create(0, ExceptionPort)) != ZX_OK) {
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Printf("libFuzzer: zx_port_create failed: %s\n", zx_status_get_string(rc));
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exit(1);
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}
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// Bind the port to receive exceptions from our process
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if ((rc = zx_task_bind_exception_port(zx_process_self(), ExceptionPort->get(),
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kFuzzingCrash, 0)) != ZX_OK) {
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Printf("libFuzzer: unable to bind exception port: %s\n",
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zx_status_get_string(rc));
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exit(1);
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}
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// Set up the crash handler.
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std::thread T(CrashHandler, ExceptionPort);
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T.detach();
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}
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void SleepSeconds(int Seconds) {
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zx::nanosleep(zx::deadline_after(zx::sec(Seconds)));
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}
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unsigned long GetPid() {
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zx_status_t rc;
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zx_info_handle_basic_t Info;
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if ((rc = zx_object_get_info(zx_process_self(), ZX_INFO_HANDLE_BASIC, &Info,
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sizeof(Info), NULL, NULL)) != ZX_OK) {
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Printf("libFuzzer: unable to get info about self: %s\n",
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zx_status_get_string(rc));
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exit(1);
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}
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return Info.koid;
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}
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size_t GetPeakRSSMb() {
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zx_status_t rc;
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zx_info_task_stats_t Info;
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if ((rc = zx_object_get_info(zx_process_self(), ZX_INFO_TASK_STATS, &Info,
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sizeof(Info), NULL, NULL)) != ZX_OK) {
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Printf("libFuzzer: unable to get info about self: %s\n",
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zx_status_get_string(rc));
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exit(1);
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}
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return (Info.mem_private_bytes + Info.mem_shared_bytes) >> 20;
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}
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int ExecuteCommand(const Command &Cmd) {
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zx_status_t rc;
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// Convert arguments to C array
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auto Args = Cmd.getArguments();
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size_t Argc = Args.size();
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assert(Argc != 0);
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std::unique_ptr<const char *[]> Argv(new const char *[Argc]);
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for (size_t i = 0; i < Argc; ++i)
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Argv[i] = Args[i].c_str();
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// Create the basic launchpad. Clone everything except stdio.
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launchpad_t *lp;
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launchpad_create(ZX_HANDLE_INVALID, Argv[0], &lp);
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launchpad_load_from_file(lp, Argv[0]);
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launchpad_set_args(lp, Argc, Argv.get());
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launchpad_clone(lp, LP_CLONE_ALL & (~LP_CLONE_FDIO_STDIO));
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// Determine stdout
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int FdOut = STDOUT_FILENO;
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fbl::unique_fd OutputFile;
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if (Cmd.hasOutputFile()) {
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auto Filename = Cmd.getOutputFile();
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OutputFile.reset(open(Filename.c_str(), O_WRONLY | O_CREAT | O_TRUNC, 0));
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if (!OutputFile) {
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Printf("libFuzzer: failed to open %s: %s\n", Filename.c_str(),
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strerror(errno));
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return ZX_ERR_IO;
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}
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FdOut = OutputFile.get();
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}
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// Determine stderr
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int FdErr = STDERR_FILENO;
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if (Cmd.isOutAndErrCombined())
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FdErr = FdOut;
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// Clone the file descriptors into the new process
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if ((rc = launchpad_clone_fd(lp, STDIN_FILENO, STDIN_FILENO)) != ZX_OK ||
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(rc = launchpad_clone_fd(lp, FdOut, STDOUT_FILENO)) != ZX_OK ||
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(rc = launchpad_clone_fd(lp, FdErr, STDERR_FILENO)) != ZX_OK) {
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Printf("libFuzzer: failed to clone FDIO: %s\n", zx_status_get_string(rc));
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return rc;
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}
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// Start the process
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zx_handle_t ProcessHandle = ZX_HANDLE_INVALID;
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const char *ErrorMsg = nullptr;
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if ((rc = launchpad_go(lp, &ProcessHandle, &ErrorMsg)) != ZX_OK) {
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Printf("libFuzzer: failed to launch '%s': %s, %s\n", Argv[0], ErrorMsg,
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zx_status_get_string(rc));
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return rc;
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}
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zx::process Process(ProcessHandle);
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// Now join the process and return the exit status.
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if ((rc = Process.wait_one(ZX_PROCESS_TERMINATED, zx::time::infinite(),
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nullptr)) != ZX_OK) {
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Printf("libFuzzer: failed to join '%s': %s\n", Argv[0],
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zx_status_get_string(rc));
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return rc;
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}
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zx_info_process_t Info;
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if ((rc = Process.get_info(ZX_INFO_PROCESS, &Info, sizeof(Info), nullptr,
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nullptr)) != ZX_OK) {
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Printf("libFuzzer: unable to get return code from '%s': %s\n", Argv[0],
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zx_status_get_string(rc));
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return rc;
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}
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return Info.return_code;
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}
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const void *SearchMemory(const void *Data, size_t DataLen, const void *Patt,
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size_t PattLen) {
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return memmem(Data, DataLen, Patt, PattLen);
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}
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} // namespace fuzzer
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#endif // LIBFUZZER_FUCHSIA
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