550265f3c1
simple benchmark for the snapshots
187 lines
5.4 KiB
C
187 lines
5.4 KiB
C
#include <unicorn/unicorn.h>
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#include <gsl/gsl_rstat.h>
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#include <time.h>
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#include <sys/mman.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <fcntl.h>
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struct data {
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gsl_rstat_workspace *rstat_p;
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struct timespec start;
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};
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void update_stats(gsl_rstat_workspace *rstat_p, struct timespec *start, struct timespec *end)
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{
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double dur = (end->tv_sec - start->tv_sec) * 1000.0;
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dur += (end->tv_nsec - start->tv_nsec) / 1000000.0;
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gsl_rstat_add(dur, rstat_p);
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}
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static uint64_t CODEADDR = 0x1000;
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static uint64_t DATABASE = 0x40000000;
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static uint64_t BLOCKSIZE = 0x10000;
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/*static void callback_mem(uc_engine *uc, uc_mem_type type, uint64_t addr, uint32_t size, uint64_t value, void *data)
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{
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printf("callback mem valid: 0x%lX, value: 0x%lX\n", addr, value);
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}*/
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static int callback_mem_prot(uc_engine *uc, uc_mem_type type, uint64_t addr, uint32_t size, int64_t value, void *data)
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{
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printf("callback mem prot: 0x%lX, type: %X\n", addr, type);
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return false;
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}
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static void callback_block(uc_engine *uc, uint64_t addr, uint32_t size, void *data)
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{
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struct timespec now;
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struct data *d = data;
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size_t run;
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uint64_t rax = 512;
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uint64_t rbx = DATABASE;
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uint64_t rsi;
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long memblock;
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long offset;
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clock_gettime(CLOCK_PROCESS_CPUTIME_ID, &now);
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if (d->rstat_p) {
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update_stats(d->rstat_p, &d->start, &now);
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} else {
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d->rstat_p = gsl_rstat_alloc();
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}
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run = gsl_rstat_n(d->rstat_p);
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if ((run >> 4) >= 20) {
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uc_emu_stop(uc);
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return;
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} else if (run > 0 && run % 16 == 0) {
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uc_snapshot(uc);
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}
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/* if (run > 0 && run % 16 == 0) {
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uc_emu_stop(uc);
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return;
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}*/
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rsi = random();
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memblock = random() & 15;
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offset = random() & (BLOCKSIZE - 1) & (~0xf);
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// memblock = 0;
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// offset = 0;
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if (memblock == 15 && (offset + 0x1000) > BLOCKSIZE) {
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offset -= 0x1000;
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}
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rbx += (memblock * BLOCKSIZE) + offset;
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printf("write at 0x%lX\n", rbx);
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printf("[%li] callback block: 0x%lX\n", run, addr);
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uc_reg_write(uc, UC_X86_REG_RBX, &rbx);
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uc_reg_write(uc, UC_X86_REG_RAX, &rax);
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uc_reg_write(uc, UC_X86_REG_RSI, &rsi);
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clock_gettime(CLOCK_PROCESS_CPUTIME_ID, &d->start);
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}
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static void prepare_mapping(uc_engine *uc)
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{
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for (size_t i = 0; i < 16; i++) {
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printf("mem map: 0x%lX\n", DATABASE+i*BLOCKSIZE);
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uc_mem_map(uc, DATABASE+i*BLOCKSIZE, BLOCKSIZE, UC_PROT_READ|UC_PROT_WRITE);
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}
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}
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static void prepare_code(uc_engine *uc, const char *file, void **addr)
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{
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uc_err err;
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int fd;
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fd = open(file, O_RDONLY, 0);
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if (fd == -1) {
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perror("open");
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exit(1);
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}
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*addr = mmap(*addr, 0x1000, PROT_READ, MAP_PRIVATE, fd, 0);
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if (addr == MAP_FAILED) {
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perror("mmap");
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exit(1);
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}
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err = uc_mem_map_ptr(uc, CODEADDR, 0x1000, UC_PROT_READ|UC_PROT_EXEC, *addr);
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close(fd);
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if (err != UC_ERR_OK) {
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printf("err: %s\n", uc_strerror(err));
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exit(1);
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}
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printf("mapped %s\n", file);
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return;
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}
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void print_stats(gsl_rstat_workspace *rstat_p)
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{
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double mean, variance, largest, smallest, sd,
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rms, sd_mean, median, skew, kurtosis;
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size_t n;
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mean = gsl_rstat_mean(rstat_p);
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variance = gsl_rstat_variance(rstat_p);
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largest = gsl_rstat_max(rstat_p);
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smallest = gsl_rstat_min(rstat_p);
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median = gsl_rstat_median(rstat_p);
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sd = gsl_rstat_sd(rstat_p);
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sd_mean = gsl_rstat_sd_mean(rstat_p);
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skew = gsl_rstat_skew(rstat_p);
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rms = gsl_rstat_rms(rstat_p);
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kurtosis = gsl_rstat_kurtosis(rstat_p);
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n = gsl_rstat_n(rstat_p);
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printf ("The sample mean is %g\n", mean);
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printf ("The estimated variance is %g\n", variance);
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printf ("The largest value is %g\n", largest);
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printf ("The smallest value is %g\n", smallest);
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printf( "The median is %g\n", median);
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printf( "The standard deviation is %g\n", sd);
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printf( "The root mean square is %g\n", rms);
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printf( "The standard devation of the mean is %g\n", sd_mean);
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printf( "The skew is %g\n", skew);
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printf( "The kurtosis %g\n", kurtosis);
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printf( "There are %zu items in the accumulator\n", n);
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}
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int main(int argc, char *argv[])
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{
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uc_engine *uc;
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uc_err err;
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uc_hook hook_block;
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uc_hook hook_mem;
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struct data d;
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uint64_t rax = 5;
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uint64_t rbx = DATABASE;
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void *bin_mmap = NULL;
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if (argc != 2) {
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fprintf(stderr, "usage: %s binary\n", argv[0]);
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return 1;
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}
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d.rstat_p = NULL;
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srandom(time(NULL));
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uc_open(UC_ARCH_X86, UC_MODE_64, &uc);
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prepare_code(uc, argv[1], &bin_mmap);
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prepare_mapping(uc);
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err = uc_hook_add(uc, &hook_block, UC_HOOK_BLOCK, &callback_block, &d, CODEADDR, 0x1000);
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if (err != UC_ERR_OK) {
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return 1;
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}
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uc_hook_add(uc, &hook_mem, UC_HOOK_MEM_INVALID, &callback_mem_prot, NULL, CODEADDR, 0x1000);
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uc_reg_write(uc, UC_X86_REG_RBX, &rbx);
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uc_reg_write(uc, UC_X86_REG_RAX, &rax);
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/* err = uc_hook_add(uc, &hook_mem, UC_HOOK_MEM_VALID, &callback_mem, NULL, DATABASE, 16*BLOCKSIZE);
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if (err) {
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printf("err: %s\n", uc_strerror(err));
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return 1;
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}*/
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for (int i = 0; i < 1; i++) {
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err = uc_emu_start(uc, CODEADDR, -1, 0, 0);
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if (err) {
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printf("err: %s\n", uc_strerror(err));
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return 1;
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}
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uc_snapshot(uc);
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}
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print_stats(d.rstat_p);
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return 0;
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}
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