mirror of
https://github.com/AFLplusplus/AFLplusplus.git
synced 2025-06-07 07:41:33 +00:00
252 lines
5.5 KiB
C++
Executable File
252 lines
5.5 KiB
C++
Executable File
#include <iostream>
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#include <stdio.h>
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#include <string.h>
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#include <unistd.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <sys/mman.h>
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#include <sys/wait.h>
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#include <fcntl.h>
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#include <dlfcn.h>
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#ifdef __ANDROID__
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#include "../../include/android-ashmem.h"
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#endif
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#include <sys/ipc.h>
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#include <sys/shm.h>
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#include "../../config.h"
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#include <QBDI.h>
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/* NeverZero */
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#if (defined(__x86_64__) || defined(__i386__)) && defined(AFL_QEMU_NOT_ZERO)
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#define INC_AFL_AREA(loc) \
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asm volatile( \
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"addb $1, (%0, %1, 1)\n" \
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"adcb $0, (%0, %1, 1)\n" \
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: /* no out */ \
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: "r"(afl_area_ptr), "r"(loc) \
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: "memory", "eax")
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#else
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#define INC_AFL_AREA(loc) afl_area_ptr[loc]++
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#endif
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using namespace QBDI;
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typedef int (*target_func)(char *buf, int size);
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static const size_t STACK_SIZE = 0x100000; // 1MB
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static const QBDI::rword FAKE_RET_ADDR = 0x40000;
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target_func p_target_func = NULL;
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rword module_base = 0;
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rword module_end = 0;
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static unsigned char
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dummy[MAP_SIZE]; /* costs MAP_SIZE but saves a few instructions */
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unsigned char *afl_area_ptr = NULL; /* Exported for afl_gen_trace */
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unsigned long afl_prev_loc = 0;
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char input_pathname[PATH_MAX];
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/* Set up SHM region and initialize other stuff. */
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int afl_setup(void) {
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char *id_str = getenv(SHM_ENV_VAR);
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int shm_id;
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if (id_str) {
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shm_id = atoi(id_str);
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afl_area_ptr = (unsigned char *)shmat(shm_id, NULL, 0);
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if (afl_area_ptr == (void *)-1) return 0;
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memset(afl_area_ptr, 0, MAP_SIZE);
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}
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return 1;
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}
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/* Fork server logic, invoked once we hit _start. */
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static void afl_forkserver() {
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static unsigned char tmp[4];
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pid_t child_pid;
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if (write(FORKSRV_FD + 1, tmp, 4) != 4) return;
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while (1) {
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int status;
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unsigned int was_killed;
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// wait for afl-fuzz
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if (read(FORKSRV_FD, &was_killed, 4) != 4) exit(2);
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child_pid = fork();
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if (child_pid < 0) exit(4);
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if (!child_pid) {
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// child return to execute code
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close(FORKSRV_FD);
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close(FORKSRV_FD + 1);
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return;
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}
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// write child pid to afl-fuzz
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if (write(FORKSRV_FD + 1, &child_pid, 4) != 4) exit(5);
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// wait child stop
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if (waitpid(child_pid, &status, 0) < 0) exit(6);
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// send child stop status to afl-fuzz
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if (write(FORKSRV_FD + 1, &status, 4) != 4) exit(7);
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}
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}
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void afl_maybe_log(unsigned long cur_loc) {
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if (afl_area_ptr == NULL) { return; }
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unsigned long afl_idx = cur_loc ^ afl_prev_loc;
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afl_idx &= MAP_SIZE - 1;
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INC_AFL_AREA(afl_idx);
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afl_prev_loc = cur_loc >> 1;
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}
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char *read_file(char *path, unsigned long *length) {
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unsigned long len;
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char *buf;
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FILE *fp = fopen(path, "rb");
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fseek(fp, 0, SEEK_END);
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len = ftell(fp);
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buf = (char *)malloc(len);
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rewind(fp);
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fread(buf, 1, len, fp);
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fclose(fp);
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*length = len;
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return buf;
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}
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QBDI_NOINLINE int fuzz_func() {
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if (afl_setup()) { afl_forkserver(); }
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unsigned long len = 0;
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char *data = read_file(input_pathname, &len);
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// printf("In fuzz_func\n");
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p_target_func(data, len);
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return 1;
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}
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static QBDI::VMAction bbcallback(QBDI::VMInstanceRef vm,
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const QBDI::VMState *state,
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QBDI::GPRState *gprState,
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QBDI::FPRState *fprState, void *data) {
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// errno = SAVED_ERRNO;
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#ifdef __x86_64__
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unsigned long pc = gprState->rip;
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#elif defined(i386)
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unsigned long pc = gprState->eip;
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#elif defined(__arm__)
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unsigned long pc = gprState->pc;
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#endif
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// just log the module path
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if (pc >= module_base && pc <= module_end) {
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unsigned long offset = pc - module_base;
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printf("\toffset:%p\n", offset);
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afl_maybe_log(offset);
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}
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return QBDI::VMAction::CONTINUE;
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}
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int main(int argc, char **argv) {
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if (argc < 3) {
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puts("usage: ./loader library_path input_file_path");
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exit(0);
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}
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const char *lib_path;
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lib_path = argv[1];
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strcpy(input_pathname, argv[2]);
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void *handle = dlopen(lib_path, RTLD_LAZY);
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if (handle == nullptr) {
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perror("Cannot load library");
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exit(EXIT_FAILURE);
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}
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const char *lib_name = lib_path;
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if (strrchr(lib_name, '/') != nullptr) lib_name = strrchr(lib_name, '/') + 1;
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// printf("library name:%s\n", lib_name);
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// load library module address for log path
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for (MemoryMap &map : getCurrentProcessMaps()) {
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// printf("module:%s\n", map.name.c_str());
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if ((map.permission & PF_EXEC) &&
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strstr(map.name.c_str(), lib_name) != NULL) {
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module_base = map.range.start;
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module_end = map.range.end;
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}
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}
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if (module_base == 0) {
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std::cerr << "Fail to find base address" << std::endl;
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return -1;
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}
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// printf("module base:%p, module end:%p\n", module_base, module_end);
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p_target_func = (target_func)dlsym(handle, "target_func");
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// p_target_func = (target_func)(module_base + 0x61a);
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printf("p_target_func:%p\n", p_target_func);
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VM vm;
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uint8_t *fakestack = nullptr;
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GPRState *state = vm.getGPRState();
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allocateVirtualStack(state, STACK_SIZE, &fakestack);
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vm.addInstrumentedModuleFromAddr(module_base);
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vm.addInstrumentedModuleFromAddr((rword)&main);
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vm.addVMEventCB(BASIC_BLOCK_ENTRY, bbcallback, nullptr);
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// QBDI::simulateCall(state, FAKE_RET_ADDR);
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// vm.run((rword)&fuzz_func, (rword)FAKE_RET_ADDR);
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rword ret;
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vm.call(&ret, (rword)&fuzz_func, {});
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return 0;
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}
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