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Merge branch 'master' of github.com:vanhauser-thc/AFLplusplus
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commit
e7871b2c76
@ -319,11 +319,13 @@ Fuzzer shell for SQLite (Richard Hipp)
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Support for Python mutation modules (Christian Holler)
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------------------------------------------------------
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now integrated in AFL++, originally from here
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https://github.com/choller/afl/blob/master/docs/mozilla/python_modules.txt
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Support for selective instrumentation (Christian Holler)
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--------------------------------------------------------
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now integrated in AFL++, originally from here
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https://github.com/choller/afl/blob/master/docs/mozilla/partial_instrumentation.txt
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Kernel fuzzing (Dmitry Vyukov)
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@ -24,6 +24,12 @@ CFLAGS += -Wall -D_FORTIFY_SOURCE=2 -g -Wno-pointer-sign
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ifeq "$(shell uname)" "Linux"
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TARGETS = libtokencap.so
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endif
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ifeq "$(shell uname)" "Darwin"
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TARGETS = libtokencap.so
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endif
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ifeq "$(shell uname)" "FreeBSD"
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TARGETS = libtokencap.so
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endif
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all: $(TARGETS)
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libtokencap.so: libtokencap.so.c ../config.h
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@ -2,7 +2,7 @@
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(See ../docs/README for the general instruction manual.)
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This Linux-only companion library allows you to instrument `strcmp()`, `memcmp()`,
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This companion library allows you to instrument `strcmp()`, `memcmp()`,
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and related functions to automatically extract syntax tokens passed to any of
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these libcalls. The resulting list of tokens may be then given as a starting
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dictionary to afl-fuzz (the -x option) to improve coverage on subsequent
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@ -55,9 +55,10 @@ If you don't get any results, the target library is probably not using strcmp()
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and memcmp() to parse input; or you haven't compiled it with -fno-builtin; or
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the whole thing isn't dynamically linked, and LD_PRELOAD is having no effect.
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PS. The library is Linux-only because there is probably no particularly portable
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and non-invasive way to distinguish between read-only and read-write memory
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mappings. The `__tokencap_load_mappings()` function is the only thing that would
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need to be changed for other OSes. Porting to platforms with /proc/<pid>/maps
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(e.g., FreeBSD) should be trivial.
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Portability hints: There is probably no particularly portable and non-invasive
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way to distinguish between read-only and read-write memory mappings.
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The `__tokencap_load_mappings()` function is the only thing that would
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need to be changed for other OSes.
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Current supported OSes are: Linux, Darwin, FreeBSD (thanks to @devnexen)
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@ -22,13 +22,24 @@
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#include <stdio.h>
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#include <string.h>
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#include <ctype.h>
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#include <unistd.h>
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#include "../types.h"
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#include "../config.h"
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#ifndef __linux__
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#error "Sorry, this library is Linux-specific for now!"
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#endif /* !__linux__ */
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#if !defined __linux__ && !defined __APPLE__ && !defined __FreeBSD__
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# error "Sorry, this library is unsupported in this platform for now!"
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#endif /* !__linux__ && !__APPLE__ && ! __FreeBSD__ */
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#if defined __APPLE__
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# include <mach/vm_map.h>
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# include <mach/mach_init.h>
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#elif defined __FreeBSD__
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# include <sys/types.h>
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# include <sys/sysctl.h>
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# include <sys/user.h>
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# include <sys/mman.h>
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#endif
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/* Mapping data and such */
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@ -46,6 +57,8 @@ static FILE* __tokencap_out_file;
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static void __tokencap_load_mappings(void) {
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#if defined __linux__
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u8 buf[MAX_LINE];
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FILE* f = fopen("/proc/self/maps", "r");
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@ -70,6 +83,78 @@ static void __tokencap_load_mappings(void) {
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fclose(f);
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#elif defined __APPLE__
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struct vm_region_submap_info_64 region;
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mach_msg_type_number_t cnt = VM_REGION_SUBMAP_INFO_COUNT_64;
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vm_address_t base = 0;
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vm_size_t size = 0;
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natural_t depth = 0;
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__tokencap_ro_loaded = 1;
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while (1) {
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if (vm_region_recurse_64(mach_task_self(), &base, &size, &depth,
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(vm_region_info_64_t)®ion, &cnt) != KERN_SUCCESS) break;
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if (region.is_submap) {
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depth++;
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} else {
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/* We only care of main map addresses and the read only kinds */
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if ((region.protection & VM_PROT_READ) && !(region.protection & VM_PROT_WRITE)) {
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__tokencap_ro[__tokencap_ro_cnt].st = (void *)base;
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__tokencap_ro[__tokencap_ro_cnt].en = (void *)(base + size);
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if (++__tokencap_ro_cnt == MAX_MAPPINGS) break;
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}
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}
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}
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#elif defined __FreeBSD__
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int mib[] = {CTL_KERN, KERN_PROC, KERN_PROC_VMMAP, getpid()};
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char *buf, *low, *high;
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size_t miblen = sizeof(mib)/sizeof(mib[0]);
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size_t len;
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if (sysctl(mib, miblen, NULL, &len, NULL, 0) == -1) return;
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len = len * 4 / 3;
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buf = mmap(NULL, len, PROT_READ | PROT_WRITE, MAP_SHARED | MAP_ANON, -1, 0);
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if (sysctl(mib, miblen, buf, &len, NULL, 0) == -1) {
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munmap(buf, len);
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return;
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}
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low = buf;
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high = low + len;
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__tokencap_ro_loaded = 1;
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while (low < high) {
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struct kinfo_vmentry *region = (struct kinfo_vmentry *)low;
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size_t size = region->kve_structsize;
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if (size == 0) break;
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/* We go through the whole mapping of the process and track read-only addresses */
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if ((region->kve_protection & KVME_PROT_READ) &&
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!(region->kve_protection & KVME_PROT_WRITE)) {
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__tokencap_ro[__tokencap_ro_cnt].st = (void *)region->kve_start;
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__tokencap_ro[__tokencap_ro_cnt].en = (void *)region->kve_end;
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if (++__tokencap_ro_cnt == MAX_MAPPINGS) break;
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}
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low += size;
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}
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munmap(buf, len);
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#endif
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}
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/* Check an address against the list of read-only mappings. */
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@ -271,9 +271,9 @@ test -e ../afl-gcc-fast && {
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} || $ECHO "$YELLOW[-] gcc_plugin not compiled, cannot test"
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$ECHO "$BLUE[*] Testing: shared library extensions"
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gcc -o test-compcov test-compcov.c > /dev/null 2>&1
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cc -o test-compcov test-compcov.c > /dev/null 2>&1
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test -e ../libtokencap.so && {
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AFL_TOKEN_FILE=token.out LD_PRELOAD=../libtokencap.so ./test-compcov foobar > /dev/null 2>&1
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AFL_TOKEN_FILE=token.out LD_PRELOAD=../libtokencap.so DYLD_INSERT_LIBRARIES=../libtokencap.so DYLD_FORCE_FLAT_NAMESPACE=1 ./test-compcov foobar > /dev/null 2>&1
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grep -q BUGMENOT token.out > /dev/null 2>&1 && {
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$ECHO "$GREEN[+] libtokencap did successfully capture tokens"
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} || $ECHO "$RED[!] libtokencap did not capture tokens"
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