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Kostya Serebryany79677382015-03-31 21:39:38 +00001========================================================
Kostya Serebryany35ce8632015-03-30 23:05:30 +00002LibFuzzer -- a library for coverage-guided fuzz testing.
3========================================================
Kostya Serebryany79677382015-03-31 21:39:38 +00004.. contents::
5 :local:
6 :depth: 4
7
8Introduction
9============
Kostya Serebryany35ce8632015-03-30 23:05:30 +000010
11This library is intended primarily for in-process coverage-guided fuzz testing
12(fuzzing) of other libraries. The typical workflow looks like this:
13
14* Build the Fuzzer library as a static archive (or just a set of .o files).
15 Note that the Fuzzer contains the main() function.
16 Preferably do *not* use sanitizers while building the Fuzzer.
Alexey Samsonov21a33812015-05-07 23:33:24 +000017* Build the library you are going to test with
Kostya Serebryany2adfa3b2015-05-20 21:03:03 +000018 `-fsanitize-coverage={bb,edge}[,indirect-calls,8bit-counters]`
Kostya Serebryany35ce8632015-03-30 23:05:30 +000019 and one of the sanitizers. We recommend to build the library in several
20 different modes (e.g. asan, msan, lsan, ubsan, etc) and even using different
21 optimizations options (e.g. -O0, -O1, -O2) to diversify testing.
22* Build a test driver using the same options as the library.
23 The test driver is a C/C++ file containing interesting calls to the library
Kostya Serebryany20bb5e72015-10-02 23:34:06 +000024 inside a single function ``extern "C" int LLVMFuzzerTestOneInput(const uint8_t *Data, size_t Size);``.
25 Currently, the only expected return value is 0, others are reserved for future.
Kostya Serebryany35ce8632015-03-30 23:05:30 +000026* Link the Fuzzer, the library and the driver together into an executable
27 using the same sanitizer options as for the library.
28* Collect the initial corpus of inputs for the
29 fuzzer (a directory with test inputs, one file per input).
30 The better your inputs are the faster you will find something interesting.
31 Also try to keep your inputs small, otherwise the Fuzzer will run too slow.
Kostya Serebryanyc5f905c2015-05-26 19:32:52 +000032 By default, the Fuzzer limits the size of every input to 64 bytes
Kostya Serebryany2adfa3b2015-05-20 21:03:03 +000033 (use ``-max_len=N`` to override).
Kostya Serebryany35ce8632015-03-30 23:05:30 +000034* Run the fuzzer with the test corpus. As new interesting test cases are
35 discovered they will be added to the corpus. If a bug is discovered by
36 the sanitizer (asan, etc) it will be reported as usual and the reproducer
37 will be written to disk.
38 Each Fuzzer process is single-threaded (unless the library starts its own
Alexey Samsonov675e5392015-04-27 22:50:06 +000039 threads). You can run the Fuzzer on the same corpus in multiple processes
Kostya Serebryany2adfa3b2015-05-20 21:03:03 +000040 in parallel.
Kostya Serebryany35ce8632015-03-30 23:05:30 +000041
42
Kostya Serebryany79677382015-03-31 21:39:38 +000043The Fuzzer is similar in concept to AFL_,
Kostya Serebryany35ce8632015-03-30 23:05:30 +000044but uses in-process Fuzzing, which is more fragile, more restrictive, but
45potentially much faster as it has no overhead for process start-up.
Kostya Serebryany79677382015-03-31 21:39:38 +000046It uses LLVM's SanitizerCoverage_ instrumentation to get in-process
47coverage-feedback
Kostya Serebryany35ce8632015-03-30 23:05:30 +000048
Kostya Serebryany79677382015-03-31 21:39:38 +000049The code resides in the LLVM repository, requires the fresh Clang compiler to build
50and is used to fuzz various parts of LLVM,
51but the Fuzzer itself does not (and should not) depend on any
52part of LLVM and can be used for other projects w/o requiring the rest of LLVM.
Kostya Serebryany35ce8632015-03-30 23:05:30 +000053
Kostya Serebryany2adfa3b2015-05-20 21:03:03 +000054Flags
55=====
56The most important flags are::
57
58 seed 0 Random seed. If 0, seed is generated.
59 runs -1 Number of individual test runs (-1 for infinite runs).
Kostya Serebryanyc5f905c2015-05-26 19:32:52 +000060 max_len 64 Maximum length of the test input.
Kostya Serebryany2adfa3b2015-05-20 21:03:03 +000061 cross_over 1 If 1, cross over inputs.
62 mutate_depth 5 Apply this number of consecutive mutations to each input.
Kostya Serebryany316b5712015-05-26 20:57:47 +000063 timeout 1200 Timeout in seconds (if positive). If one unit runs more than this number of seconds the process will abort.
Kostya Serebryanyb85db172015-10-02 20:47:55 +000064 max_total_time 0 If positive, indicates the maximal total time in seconds to run the fuzzer.
Kostya Serebryany2adfa3b2015-05-20 21:03:03 +000065 help 0 Print help.
Kostya Serebryanyb06fae52015-09-08 17:43:51 +000066 save_minimized_corpus 0 If 1, the minimized corpus is saved into the first input directory. Example: ./fuzzer -save_minimized_corpus=1 NEW_EMPTY_DIR OLD_CORPUS
Kostya Serebryany9cc3b0d2015-10-24 01:16:40 +000067 merge 0 If 1, the 2-nd, 3-rd, etc corpora will be merged into the 1-st corpus. Only interesting units will be taken.
Kostya Serebryany2adfa3b2015-05-20 21:03:03 +000068 jobs 0 Number of jobs to run. If jobs >= 1 we spawn this number of jobs in separate worker processes with stdout/stderr redirected to fuzz-JOB.log.
69 workers 0 Number of simultaneous worker processes to run the jobs. If zero, "min(jobs,NumberOfCpuCores()/2)" is used.
Kostya Serebryany2adfa3b2015-05-20 21:03:03 +000070 sync_command 0 Execute an external command "<sync_command> <test_corpus>" to synchronize the test corpus.
Kostya Serebryanyc5f905c2015-05-26 19:32:52 +000071 sync_timeout 600 Minimum timeout between syncs.
Kostya Serebryanyb17e2982015-07-31 21:48:10 +000072 use_traces 0 Experimental: use instruction traces
Kostya Serebryanybc7c0ad2015-08-11 01:44:42 +000073 only_ascii 0 If 1, generate only ASCII (isprint+isspace) inputs.
Ivan Krasin95e82d52015-10-01 23:23:06 +000074 test_single_input "" Use specified file content as test input. Test will be run only once. Useful for debugging a particular case.
Kostya Serebryanybd5d1cd2015-10-09 03:57:59 +000075 artifact_prefix "" Write fuzzing artifacts (crash, timeout, or slow inputs) as $(artifact_prefix)file
Kostya Serebryany2d0ef142015-11-25 21:40:46 +000076 exact_artifact_path "" Write the single artifact on failure (crash, timeout) as $(exact_artifact_path). This overrides -artifact_prefix and will not use checksum in the file name. Do not use the same path for several parallel processes.
Kostya Serebryany2adfa3b2015-05-20 21:03:03 +000077
78For the full list of flags run the fuzzer binary with ``-help=1``.
79
Kostya Serebryany79677382015-03-31 21:39:38 +000080Usage examples
81==============
82
83Toy example
84-----------
85
86A simple function that does something interesting if it receives the input "HI!"::
87
88 cat << EOF >> test_fuzzer.cc
Kostya Serebryany1c80b9d2015-11-26 00:12:57 +000089 #include <stdint.h>
90 #include <stddef.h>
91 extern "C" int LLVMFuzzerTestOneInput(const uint8_t *data, size_t size) {
Kostya Serebryany79677382015-03-31 21:39:38 +000092 if (size > 0 && data[0] == 'H')
93 if (size > 1 && data[1] == 'I')
94 if (size > 2 && data[2] == '!')
95 __builtin_trap();
Kostya Serebryany20bb5e72015-10-02 23:34:06 +000096 return 0;
Kostya Serebryany79677382015-03-31 21:39:38 +000097 }
98 EOF
99 # Get lib/Fuzzer. Assuming that you already have fresh clang in PATH.
100 svn co http://llvm.org/svn/llvm-project/llvm/trunk/lib/Fuzzer
101 # Build lib/Fuzzer files.
102 clang -c -g -O2 -std=c++11 Fuzzer/*.cpp -IFuzzer
103 # Build test_fuzzer.cc with asan and link against lib/Fuzzer.
Alexey Samsonov21a33812015-05-07 23:33:24 +0000104 clang++ -fsanitize=address -fsanitize-coverage=edge test_fuzzer.cc Fuzzer*.o
Kostya Serebryany79677382015-03-31 21:39:38 +0000105 # Run the fuzzer with no corpus.
106 ./a.out
107
108You should get ``Illegal instruction (core dumped)`` pretty quickly.
109
110PCRE2
111-----
112
113Here we show how to use lib/Fuzzer on something real, yet simple: pcre2_::
114
Alexey Samsonov21a33812015-05-07 23:33:24 +0000115 COV_FLAGS=" -fsanitize-coverage=edge,indirect-calls,8bit-counters"
Kostya Serebryany79677382015-03-31 21:39:38 +0000116 # Get PCRE2
117 svn co svn://vcs.exim.org/pcre2/code/trunk pcre
118 # Get lib/Fuzzer. Assuming that you already have fresh clang in PATH.
119 svn co http://llvm.org/svn/llvm-project/llvm/trunk/lib/Fuzzer
120 # Build PCRE2 with AddressSanitizer and coverage.
121 (cd pcre; ./autogen.sh; CC="clang -fsanitize=address $COV_FLAGS" ./configure --prefix=`pwd`/../inst && make -j && make install)
122 # Build lib/Fuzzer files.
123 clang -c -g -O2 -std=c++11 Fuzzer/*.cpp -IFuzzer
Eric Christopher572e03a2015-06-19 01:53:21 +0000124 # Build the actual function that does something interesting with PCRE2.
Kostya Serebryany79677382015-03-31 21:39:38 +0000125 cat << EOF > pcre_fuzzer.cc
126 #include <string.h>
Kostya Serebryany1c80b9d2015-11-26 00:12:57 +0000127 #include <stdint.h>
Kostya Serebryany79677382015-03-31 21:39:38 +0000128 #include "pcre2posix.h"
Kostya Serebryany1c80b9d2015-11-26 00:12:57 +0000129 extern "C" int LLVMFuzzerTestOneInput(const uint8_t *data, size_t size) {
Kostya Serebryany20bb5e72015-10-02 23:34:06 +0000130 if (size < 1) return 0;
Kostya Serebryany79677382015-03-31 21:39:38 +0000131 char *str = new char[size+1];
132 memcpy(str, data, size);
133 str[size] = 0;
134 regex_t preg;
135 if (0 == regcomp(&preg, str, 0)) {
136 regexec(&preg, str, 0, 0, 0);
137 regfree(&preg);
138 }
139 delete [] str;
Kostya Serebryany20bb5e72015-10-02 23:34:06 +0000140 return 0;
Kostya Serebryany79677382015-03-31 21:39:38 +0000141 }
142 EOF
143 clang++ -g -fsanitize=address $COV_FLAGS -c -std=c++11 -I inst/include/ pcre_fuzzer.cc
144 # Link.
145 clang++ -g -fsanitize=address -Wl,--whole-archive inst/lib/*.a -Wl,-no-whole-archive Fuzzer*.o pcre_fuzzer.o -o pcre_fuzzer
146
147This will give you a binary of the fuzzer, called ``pcre_fuzzer``.
148Now, create a directory that will hold the test corpus::
149
150 mkdir -p CORPUS
151
152For simple input languages like regular expressions this is all you need.
153For more complicated inputs populate the directory with some input samples.
154Now run the fuzzer with the corpus dir as the only parameter::
155
156 ./pcre_fuzzer ./CORPUS
157
158You will see output like this::
159
160 Seed: 1876794929
161 #0 READ cov 0 bits 0 units 1 exec/s 0
162 #1 pulse cov 3 bits 0 units 1 exec/s 0
163 #1 INITED cov 3 bits 0 units 1 exec/s 0
164 #2 pulse cov 208 bits 0 units 1 exec/s 0
165 #2 NEW cov 208 bits 0 units 2 exec/s 0 L: 64
166 #3 NEW cov 217 bits 0 units 3 exec/s 0 L: 63
167 #4 pulse cov 217 bits 0 units 3 exec/s 0
168
169* The ``Seed:`` line shows you the current random seed (you can change it with ``-seed=N`` flag).
170* The ``READ`` line shows you how many input files were read (since you passed an empty dir there were inputs, but one dummy input was synthesised).
171* The ``INITED`` line shows you that how many inputs will be fuzzed.
172* The ``NEW`` lines appear with the fuzzer finds a new interesting input, which is saved to the CORPUS dir. If multiple corpus dirs are given, the first one is used.
173* The ``pulse`` lines appear periodically to show the current status.
174
175Now, interrupt the fuzzer and run it again the same way. You will see::
176
177 Seed: 1879995378
178 #0 READ cov 0 bits 0 units 564 exec/s 0
179 #1 pulse cov 502 bits 0 units 564 exec/s 0
180 ...
181 #512 pulse cov 2933 bits 0 units 564 exec/s 512
182 #564 INITED cov 2991 bits 0 units 344 exec/s 564
183 #1024 pulse cov 2991 bits 0 units 344 exec/s 1024
184 #1455 NEW cov 2995 bits 0 units 345 exec/s 1455 L: 49
185
186This time you were running the fuzzer with a non-empty input corpus (564 items).
187As the first step, the fuzzer minimized the set to produce 344 interesting items (the ``INITED`` line)
188
Kostya Serebryanyfb2f3312015-05-13 22:42:28 +0000189It is quite convenient to store test corpuses in git.
190As an example, here is a git repository with test inputs for the above PCRE2 fuzzer::
191
192 git clone https://github.com/kcc/fuzzing-with-sanitizers.git
193 ./pcre_fuzzer ./fuzzing-with-sanitizers/pcre2/C1/
194
Kostya Serebryany79677382015-03-31 21:39:38 +0000195You may run ``N`` independent fuzzer jobs in parallel on ``M`` CPUs::
196
197 N=100; M=4; ./pcre_fuzzer ./CORPUS -jobs=$N -workers=$M
198
Kostya Serebryany9690fcf2015-05-12 18:51:57 +0000199By default (``-reload=1``) the fuzzer processes will periodically scan the CORPUS directory
200and reload any new tests. This way the test inputs found by one process will be picked up
201by all others.
Kostya Serebryany79677382015-03-31 21:39:38 +0000202
Kostya Serebryany9690fcf2015-05-12 18:51:57 +0000203If ``-workers=$M`` is not supplied, ``min($N,NumberOfCpuCore/2)`` will be used.
Kostya Serebryany79677382015-03-31 21:39:38 +0000204
Kostya Serebryany5e593a42015-04-08 06:16:11 +0000205Heartbleed
206----------
207Remember Heartbleed_?
208As it was recently `shown <https://blog.hboeck.de/archives/868-How-Heartbleed-couldve-been-found.html>`_,
209fuzzing with AddressSanitizer can find Heartbleed. Indeed, here are the step-by-step instructions
210to find Heartbleed with LibFuzzer::
211
212 wget https://www.openssl.org/source/openssl-1.0.1f.tar.gz
213 tar xf openssl-1.0.1f.tar.gz
Alexey Samsonov21a33812015-05-07 23:33:24 +0000214 COV_FLAGS="-fsanitize-coverage=edge,indirect-calls" # -fsanitize-coverage=8bit-counters
Kostya Serebryany5e593a42015-04-08 06:16:11 +0000215 (cd openssl-1.0.1f/ && ./config &&
216 make -j 32 CC="clang -g -fsanitize=address $COV_FLAGS")
217 # Get and build LibFuzzer
218 svn co http://llvm.org/svn/llvm-project/llvm/trunk/lib/Fuzzer
219 clang -c -g -O2 -std=c++11 Fuzzer/*.cpp -IFuzzer
220 # Get examples of key/pem files.
221 git clone https://github.com/hannob/selftls
222 cp selftls/server* . -v
223 cat << EOF > handshake-fuzz.cc
224 #include <openssl/ssl.h>
225 #include <openssl/err.h>
226 #include <assert.h>
Kostya Serebryany1c80b9d2015-11-26 00:12:57 +0000227 #include <stdint.h>
228 #include <stddef.h>
229
Kostya Serebryany5e593a42015-04-08 06:16:11 +0000230 SSL_CTX *sctx;
231 int Init() {
232 SSL_library_init();
233 SSL_load_error_strings();
234 ERR_load_BIO_strings();
235 OpenSSL_add_all_algorithms();
236 assert (sctx = SSL_CTX_new(TLSv1_method()));
237 assert (SSL_CTX_use_certificate_file(sctx, "server.pem", SSL_FILETYPE_PEM));
238 assert (SSL_CTX_use_PrivateKey_file(sctx, "server.key", SSL_FILETYPE_PEM));
239 return 0;
240 }
Kostya Serebryany1c80b9d2015-11-26 00:12:57 +0000241 extern "C" int LLVMFuzzerTestOneInput(const uint8_t *Data, size_t Size) {
Kostya Serebryany5e593a42015-04-08 06:16:11 +0000242 static int unused = Init();
243 SSL *server = SSL_new(sctx);
244 BIO *sinbio = BIO_new(BIO_s_mem());
245 BIO *soutbio = BIO_new(BIO_s_mem());
246 SSL_set_bio(server, sinbio, soutbio);
247 SSL_set_accept_state(server);
248 BIO_write(sinbio, Data, Size);
249 SSL_do_handshake(server);
250 SSL_free(server);
Kostya Serebryany20bb5e72015-10-02 23:34:06 +0000251 return 0;
Kostya Serebryany5e593a42015-04-08 06:16:11 +0000252 }
253 EOF
Mehdi Amini30618f92015-09-17 15:59:52 +0000254 # Build the fuzzer.
Kostya Serebryany5e593a42015-04-08 06:16:11 +0000255 clang++ -g handshake-fuzz.cc -fsanitize=address \
256 openssl-1.0.1f/libssl.a openssl-1.0.1f/libcrypto.a Fuzzer*.o
257 # Run 20 independent fuzzer jobs.
258 ./a.out -jobs=20 -workers=20
259
260Voila::
261
262 #1048576 pulse cov 3424 bits 0 units 9 exec/s 24385
263 =================================================================
264 ==17488==ERROR: AddressSanitizer: heap-buffer-overflow on address 0x629000004748 at pc 0x00000048c979 bp 0x7fffe3e864f0 sp 0x7fffe3e85ca8
265 READ of size 60731 at 0x629000004748 thread T0
266 #0 0x48c978 in __asan_memcpy
267 #1 0x4db504 in tls1_process_heartbeat openssl-1.0.1f/ssl/t1_lib.c:2586:3
268 #2 0x580be3 in ssl3_read_bytes openssl-1.0.1f/ssl/s3_pkt.c:1092:4
269
Kostya Serebryany1c80b9d2015-11-26 00:12:57 +0000270Note: a `similar fuzzer <https://boringssl.googlesource.com/boringssl/+/HEAD/FUZZING.md>`_
271is now a part of the boringssl source tree.
272
Kostya Serebryany043ab1c2015-04-01 21:33:20 +0000273Advanced features
274=================
275
Kostya Serebryany7d211662015-09-04 00:12:11 +0000276Dictionaries
277------------
278*EXPERIMENTAL*.
279LibFuzzer supports user-supplied dictionaries with input language keywords
280or other interesting byte sequences (e.g. multi-byte magic values).
281Use ``-dict=DICTIONARY_FILE``. For some input languages using a dictionary
282may significantly improve the search speed.
283The dictionary syntax is similar to that used by AFL_ for its ``-x`` option::
284
285 # Lines starting with '#' and empty lines are ignored.
286
287 # Adds "blah" (w/o quotes) to the dictionary.
288 kw1="blah"
289 # Use \\ for backslash and \" for quotes.
290 kw2="\"ac\\dc\""
291 # Use \xAB for hex values
292 kw3="\xF7\xF8"
293 # the name of the keyword followed by '=' may be omitted:
294 "foo\x0Abar"
295
Kostya Serebryanyb17e2982015-07-31 21:48:10 +0000296Data-flow-guided fuzzing
297------------------------
298
299*EXPERIMENTAL*.
300With an additional compiler flag ``-fsanitize-coverage=trace-cmp`` (see SanitizerCoverageTraceDataFlow_)
301and extra run-time flag ``-use_traces=1`` the fuzzer will try to apply *data-flow-guided fuzzing*.
302That is, the fuzzer will record the inputs to comparison instructions, switch statements,
Kostya Serebryany7f4227d2015-08-05 18:23:01 +0000303and several libc functions (``memcmp``, ``strcmp``, ``strncmp``, etc).
Kostya Serebryanyb17e2982015-07-31 21:48:10 +0000304It will later use those recorded inputs during mutations.
305
306This mode can be combined with DataFlowSanitizer_ to achieve better sensitivity.
307
Kostya Serebryany6bd016b2015-04-10 05:44:43 +0000308AFL compatibility
309-----------------
310LibFuzzer can be used in parallel with AFL_ on the same test corpus.
311Both fuzzers expect the test corpus to reside in a directory, one file per input.
312You can run both fuzzers on the same corpus in parallel::
313
314 ./afl-fuzz -i testcase_dir -o findings_dir /path/to/program -r @@
315 ./llvm-fuzz testcase_dir findings_dir # Will write new tests to testcase_dir
316
317Periodically restart both fuzzers so that they can use each other's findings.
Kostya Serebryany79677382015-03-31 21:39:38 +0000318
Kostya Serebryanycd073d52015-04-10 06:32:29 +0000319How good is my fuzzer?
320----------------------
321
Kostya Serebryany566bc5a2015-05-06 22:19:00 +0000322Once you implement your target function ``LLVMFuzzerTestOneInput`` and fuzz it to death,
Kostya Serebryanycd073d52015-04-10 06:32:29 +0000323you will want to know whether the function or the corpus can be improved further.
324One easy to use metric is, of course, code coverage.
325You can get the coverage for your corpus like this::
326
327 ASAN_OPTIONS=coverage_pcs=1 ./fuzzer CORPUS_DIR -runs=0
328
329This will run all the tests in the CORPUS_DIR but will not generate any new tests
330and dump covered PCs to disk before exiting.
331Then you can subtract the set of covered PCs from the set of all instrumented PCs in the binary,
332see SanitizerCoverage_ for details.
333
Kostya Serebryany926b9bd2015-05-22 22:43:05 +0000334User-supplied mutators
335----------------------
336
337LibFuzzer allows to use custom (user-supplied) mutators,
338see FuzzerInterface.h_
339
Kostya Serebryany79677382015-03-31 21:39:38 +0000340Fuzzing components of LLVM
341==========================
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000342
343clang-format-fuzzer
344-------------------
345The inputs are random pieces of C++-like text.
346
347Build (make sure to use fresh clang as the host compiler)::
348
349 cmake -GNinja -DCMAKE_C_COMPILER=clang -DCMAKE_CXX_COMPILER=clang++ -DLLVM_USE_SANITIZER=Address -DLLVM_USE_SANITIZE_COVERAGE=YES -DCMAKE_BUILD_TYPE=Release /path/to/llvm
350 ninja clang-format-fuzzer
351 mkdir CORPUS_DIR
352 ./bin/clang-format-fuzzer CORPUS_DIR
353
354Optionally build other kinds of binaries (asan+Debug, msan, ubsan, etc).
355
Kostya Serebryany79677382015-03-31 21:39:38 +0000356Tracking bug: https://llvm.org/bugs/show_bug.cgi?id=23052
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000357
Kostya Serebryany79677382015-03-31 21:39:38 +0000358clang-fuzzer
359------------
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000360
Kostya Serebryany866e0d12015-09-02 22:44:46 +0000361The behavior is very similar to ``clang-format-fuzzer``.
Kostya Serebryany79677382015-03-31 21:39:38 +0000362
363Tracking bug: https://llvm.org/bugs/show_bug.cgi?id=23057
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000364
Kostya Serebryanyb98e3272015-08-31 18:57:24 +0000365llvm-as-fuzzer
366--------------
367
368Tracking bug: https://llvm.org/bugs/show_bug.cgi?id=24639
369
Daniel Sanders5151b202015-09-18 10:47:45 +0000370llvm-mc-fuzzer
371--------------
372
373This tool fuzzes the MC layer. Currently it is only able to fuzz the
374disassembler but it is hoped that assembly, and round-trip verification will be
375added in future.
376
377When run in dissassembly mode, the inputs are opcodes to be disassembled. The
378fuzzer will consume as many instructions as possible and will stop when it
379finds an invalid instruction or runs out of data.
380
Daniel Sanders4fe1c8b2015-09-26 17:09:01 +0000381Please note that the command line interface differs slightly from that of other
382fuzzers. The fuzzer arguments should follow ``--fuzzer-args`` and should have
383a single dash, while other arguments control the operation mode and target in a
384similar manner to ``llvm-mc`` and should have two dashes. For example::
Daniel Sanders5151b202015-09-18 10:47:45 +0000385
Daniel Sanders4fe1c8b2015-09-26 17:09:01 +0000386 llvm-mc-fuzzer --triple=aarch64-linux-gnu --disassemble --fuzzer-args -max_len=4 -jobs=10
Daniel Sanders5151b202015-09-18 10:47:45 +0000387
Kostya Serebryanyfb2f3312015-05-13 22:42:28 +0000388Buildbot
389--------
390
391We have a buildbot that runs the above fuzzers for LLVM components
39224/7/365 at http://lab.llvm.org:8011/builders/sanitizer-x86_64-linux-fuzzer .
393
394Pre-fuzzed test inputs in git
395-----------------------------
396
397The buildbot occumulates large test corpuses over time.
398The corpuses are stored in git on github and can be used like this::
399
400 git clone https://github.com/kcc/fuzzing-with-sanitizers.git
401 bin/clang-format-fuzzer fuzzing-with-sanitizers/llvm/clang-format/C1
402 bin/clang-fuzzer fuzzing-with-sanitizers/llvm/clang/C1/
Kostya Serebryanyb98e3272015-08-31 18:57:24 +0000403 bin/llvm-as-fuzzer fuzzing-with-sanitizers/llvm/llvm-as/C1 -only_ascii=1
Kostya Serebryanyfb2f3312015-05-13 22:42:28 +0000404
405
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000406FAQ
407=========================
408
409Q. Why Fuzzer does not use any of the LLVM support?
410---------------------------------------------------
411
412There are two reasons.
413
414First, we want this library to be used outside of the LLVM w/o users having to
415build the rest of LLVM. This may sound unconvincing for many LLVM folks,
416but in practice the need for building the whole LLVM frightens many potential
417users -- and we want more users to use this code.
418
419Second, there is a subtle technical reason not to rely on the rest of LLVM, or
420any other large body of code (maybe not even STL). When coverage instrumentation
421is enabled, it will also instrument the LLVM support code which will blow up the
422coverage set of the process (since the fuzzer is in-process). In other words, by
423using more external dependencies we will slow down the fuzzer while the main
424reason for it to exist is extreme speed.
425
426Q. What about Windows then? The Fuzzer contains code that does not build on Windows.
427------------------------------------------------------------------------------------
428
429The sanitizer coverage support does not work on Windows either as of 01/2015.
430Once it's there, we'll need to re-implement OS-specific parts (I/O, signals).
431
432Q. When this Fuzzer is not a good solution for a problem?
433---------------------------------------------------------
434
435* If the test inputs are validated by the target library and the validator
436 asserts/crashes on invalid inputs, the in-process fuzzer is not applicable
437 (we could use fork() w/o exec, but it comes with extra overhead).
438* Bugs in the target library may accumulate w/o being detected. E.g. a memory
439 corruption that goes undetected at first and then leads to a crash while
440 testing another input. This is why it is highly recommended to run this
441 in-process fuzzer with all sanitizers to detect most bugs on the spot.
442* It is harder to protect the in-process fuzzer from excessive memory
443 consumption and infinite loops in the target library (still possible).
444* The target library should not have significant global state that is not
445 reset between the runs.
446* Many interesting target libs are not designed in a way that supports
447 the in-process fuzzer interface (e.g. require a file path instead of a
448 byte array).
449* If a single test run takes a considerable fraction of a second (or
450 more) the speed benefit from the in-process fuzzer is negligible.
451* If the target library runs persistent threads (that outlive
452 execution of one test) the fuzzing results will be unreliable.
453
454Q. So, what exactly this Fuzzer is good for?
455--------------------------------------------
456
457This Fuzzer might be a good choice for testing libraries that have relatively
458small inputs, each input takes < 1ms to run, and the library code is not expected
459to crash on invalid inputs.
460Examples: regular expression matchers, text or binary format parsers.
461
Kostya Serebryanyfab4fba2015-08-11 01:53:45 +0000462Trophies
463========
464* GLIBC: https://sourceware.org/glibc/wiki/FuzzingLibc
Kostya Serebryanyfdf44182015-08-11 04:16:37 +0000465
Kostya Serebryanyfab4fba2015-08-11 01:53:45 +0000466* MUSL LIBC:
Kostya Serebryanyfdf44182015-08-11 04:16:37 +0000467
468 * http://git.musl-libc.org/cgit/musl/commit/?id=39dfd58417ef642307d90306e1c7e50aaec5a35c
469 * http://www.openwall.com/lists/oss-security/2015/03/30/3
470
Kostya Serebryany928eb332015-10-12 18:15:42 +0000471* `pugixml <https://github.com/zeux/pugixml/issues/39>`_
Kostya Serebryanyfdf44182015-08-11 04:16:37 +0000472
Kostya Serebryany45dac2a2015-10-10 02:14:18 +0000473* PCRE: Search for "LLVM fuzzer" in http://vcs.pcre.org/pcre2/code/trunk/ChangeLog?view=markup;
Kostya Serebryany928eb332015-10-12 18:15:42 +0000474 also in `bugzilla <https://bugs.exim.org/buglist.cgi?bug_status=__all__&content=libfuzzer&no_redirect=1&order=Importance&product=PCRE&query_format=specific>`_
Kostya Serebryanyfdf44182015-08-11 04:16:37 +0000475
Kostya Serebryany928eb332015-10-12 18:15:42 +0000476* `ICU <http://bugs.icu-project.org/trac/ticket/11838>`_
Kostya Serebryanyed483772015-08-11 20:34:48 +0000477
Kostya Serebryany928eb332015-10-12 18:15:42 +0000478* `Freetype <https://savannah.nongnu.org/search/?words=LibFuzzer&type_of_search=bugs&Search=Search&exact=1#options>`_
Kostya Serebryany62921282015-09-11 16:34:14 +0000479
Kostya Serebryany928eb332015-10-12 18:15:42 +0000480* `Harfbuzz <https://github.com/behdad/harfbuzz/issues/139>`_
481
Kostya Serebryany240a1592015-11-11 05:25:24 +0000482* `SQLite <http://www3.sqlite.org/cgi/src/info/088009efdd56160b>`_
Kostya Serebryany65e71262015-11-11 05:20:55 +0000483
Kostya Serebryany12fa3b52015-11-13 02:44:16 +0000484* `Python <http://bugs.python.org/issue25388>`_
485
Kostya Serebryany064a6722015-12-05 02:23:49 +0000486* OpenSSL/BoringSSL: `[1] <https://boringssl.googlesource.com/boringssl/+/cb852981cd61733a7a1ae4fd8755b7ff950e857d>`_
487
Kostya Serebryany928eb332015-10-12 18:15:42 +0000488* `Libxml2
489 <https://bugzilla.gnome.org/buglist.cgi?bug_status=__all__&content=libFuzzer&list_id=68957&order=Importance&product=libxml2&query_format=specific>`_
Kostya Serebryany45dac2a2015-10-10 02:14:18 +0000490
Kostya Serebryany240a1592015-11-11 05:25:24 +0000491* `Linux Kernel's BPF verifier <https://github.com/iovisor/bpf-fuzzer>`_
Kostya Serebryany62921282015-09-11 16:34:14 +0000492
Kostya Serebryany240a1592015-11-11 05:25:24 +0000493* LLVM: `Clang <https://llvm.org/bugs/show_bug.cgi?id=23057>`_, `Clang-format <https://llvm.org/bugs/show_bug.cgi?id=23052>`_, `libc++ <https://llvm.org/bugs/show_bug.cgi?id=24411>`_, `llvm-as <https://llvm.org/bugs/show_bug.cgi?id=24639>`_, Disassembler: http://reviews.llvm.org/rL247405, http://reviews.llvm.org/rL247414, http://reviews.llvm.org/rL247416, http://reviews.llvm.org/rL247417, http://reviews.llvm.org/rL247420, http://reviews.llvm.org/rL247422.
Kostya Serebryanyfab4fba2015-08-11 01:53:45 +0000494
Kostya Serebryany79677382015-03-31 21:39:38 +0000495.. _pcre2: http://www.pcre.org/
496
497.. _AFL: http://lcamtuf.coredump.cx/afl/
498
Alexey Samsonov675e5392015-04-27 22:50:06 +0000499.. _SanitizerCoverage: http://clang.llvm.org/docs/SanitizerCoverage.html
Kostya Serebryanyb17e2982015-07-31 21:48:10 +0000500.. _SanitizerCoverageTraceDataFlow: http://clang.llvm.org/docs/SanitizerCoverage.html#tracing-data-flow
501.. _DataFlowSanitizer: http://clang.llvm.org/docs/DataFlowSanitizer.html
Kostya Serebryany5e593a42015-04-08 06:16:11 +0000502
503.. _Heartbleed: http://en.wikipedia.org/wiki/Heartbleed
Kostya Serebryany926b9bd2015-05-22 22:43:05 +0000504
505.. _FuzzerInterface.h: https://github.com/llvm-mirror/llvm/blob/master/lib/Fuzzer/FuzzerInterface.h