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Kostya Serebryany7456af52016-04-28 15:19:05 +00001=======================================================
2libFuzzer – a library for coverage-guided fuzz testing.
3=======================================================
Kostya Serebryany79677382015-03-31 21:39:38 +00004.. contents::
5 :local:
Kostya Serebryanyd11dc172016-03-12 02:56:25 +00006 :depth: 1
Kostya Serebryany79677382015-03-31 21:39:38 +00007
8Introduction
9============
Kostya Serebryany35ce8632015-03-30 23:05:30 +000010
Kostya Serebryany7456af52016-04-28 15:19:05 +000011LibFuzzer is a library for in-process, coverage-guided, evolutionary fuzzing
12of other libraries.
Kostya Serebryany35ce8632015-03-30 23:05:30 +000013
Kostya Serebryany7456af52016-04-28 15:19:05 +000014LibFuzzer is similar in concept to American Fuzzy Lop (AFL_), but it performs
15all of its fuzzing inside a single process. This in-process fuzzing can be more
16restrictive and fragile, but is potentially much faster as there is no overhead
17for process start-up.
Kostya Serebryanyd11dc172016-03-12 02:56:25 +000018
Kostya Serebryany7456af52016-04-28 15:19:05 +000019The fuzzer is linked with the library under test, and feeds fuzzed inputs to the
20library via a specific fuzzing entrypoint (aka "target function"); the fuzzer
21then tracks which areas of the code are reached, and generates mutations on the
22corpus of input data in order to maximize the code coverage. The code coverage
23information for libFuzzer is provided by LLVM's SanitizerCoverage_
24instrumentation.
Kostya Serebryany35ce8632015-03-30 23:05:30 +000025
Kostya Serebryany9ded49e2016-06-02 05:45:42 +000026Contact: libfuzzer(#)googlegroups.com
Kostya Serebryany35ce8632015-03-30 23:05:30 +000027
Kostya Serebryany7456af52016-04-28 15:19:05 +000028Versions
29========
Kostya Serebryanyd11dc172016-03-12 02:56:25 +000030
Kostya Serebryany7456af52016-04-28 15:19:05 +000031LibFuzzer is under active development so a current (or at least very recent)
32version of Clang is the only supported variant.
Kostya Serebryany35ce8632015-03-30 23:05:30 +000033
Kostya Serebryany7456af52016-04-28 15:19:05 +000034(If `building Clang from trunk`_ is too time-consuming or difficult, then
35the Clang binaries that the Chromium developers build are likely to be
36fairly recent:
Kostya Serebryany35ce8632015-03-30 23:05:30 +000037
Kostya Serebryany7456af52016-04-28 15:19:05 +000038.. code-block:: console
Kostya Serebryany9e1a2382016-03-29 23:07:36 +000039
40 mkdir TMP_CLANG
41 cd TMP_CLANG
42 git clone https://chromium.googlesource.com/chromium/src/tools/clang
43 cd ..
44 TMP_CLANG/clang/scripts/update.py
45
Kostya Serebryany7456af52016-04-28 15:19:05 +000046This installs the Clang binary as
47``./third_party/llvm-build/Release+Asserts/bin/clang``)
Kostya Serebryany9e1a2382016-03-29 23:07:36 +000048
Kostya Serebryany7456af52016-04-28 15:19:05 +000049The libFuzzer code resides in the LLVM repository, and requires a recent Clang
50compiler to build (and is used to `fuzz various parts of LLVM itself`_).
51However the fuzzer itself does not (and should not) depend on any part of LLVM
52infrastructure and can be used for other projects without requiring the rest
53of LLVM.
Kostya Serebryanybfbe7fc2016-02-02 03:03:47 +000054
Kostya Serebryanybfbe7fc2016-02-02 03:03:47 +000055
Kostya Serebryany0a6c26e2016-05-09 19:23:28 +000056
Kostya Serebryany7456af52016-04-28 15:19:05 +000057Getting Started
58===============
59
60.. contents::
61 :local:
62 :depth: 1
63
64Building
65--------
66
67The first step for using libFuzzer on a library is to implement a fuzzing
68target function that accepts a sequence of bytes, like this:
69
70.. code-block:: c++
71
72 // fuzz_target.cc
73 extern "C" int LLVMFuzzerTestOneInput(const uint8_t *Data, size_t Size) {
74 DoSomethingInterestingWithMyAPI(Data, Size);
75 return 0; // Non-zero return values are reserved for future use.
76 }
77
78Next, build the libFuzzer library as a static archive, without any sanitizer
79options. Note that the libFuzzer library contains the ``main()`` function:
80
81.. code-block:: console
82
83 svn co http://llvm.org/svn/llvm-project/llvm/trunk/lib/Fuzzer
84 # Alternative: get libFuzzer from a dedicated git mirror:
85 # git clone https://chromium.googlesource.com/chromium/llvm-project/llvm/lib/Fuzzer
86 clang++ -c -g -O2 -std=c++11 Fuzzer/*.cpp -IFuzzer
87 ar ruv libFuzzer.a Fuzzer*.o
88
89Then build the fuzzing target function and the library under test using
90the SanitizerCoverage_ option, which instruments the code so that the fuzzer
91can retrieve code coverage information (to guide the fuzzing). Linking with
92the libFuzzer code then gives an fuzzer executable.
93
94You should also enable one or more of the *sanitizers*, which help to expose
95latent bugs by making incorrect behavior generate errors at runtime:
96
Kostya Serebryanyca9694b2016-05-09 21:02:36 +000097 - AddressSanitizer_ (ASAN) detects memory access errors. Use `-fsanitize=address`.
98 - UndefinedBehaviorSanitizer_ (UBSAN) detects the use of various features of C/C++ that are explicitly
99 listed as resulting in undefined behavior. Use `-fsanitize=undefined -fno-sanitize-recover=undefined`
100 or any individual UBSAN check, e.g. `-fsanitize=signed-integer-overflow -fno-sanitize-recover=undefined`.
101 You may combine ASAN and UBSAN in one build.
102 - MemorySanitizer_ (MSAN) detects uninitialized reads: code whose behavior relies on memory
103 contents that have not been initialized to a specific value. Use `-fsanitize=memory`.
104 MSAN can not be combined with other sanirizers and should be used as a seprate build.
Kostya Serebryany7456af52016-04-28 15:19:05 +0000105
106Finally, link with ``libFuzzer.a``::
107
108 clang -fsanitize-coverage=edge -fsanitize=address your_lib.cc fuzz_target.cc libFuzzer.a -o my_fuzzer
109
Kostya Serebryanyabfac462016-05-09 19:29:53 +0000110Corpus
Kostya Serebryanya2dfae12016-05-09 19:32:10 +0000111------
Kostya Serebryanyabfac462016-05-09 19:29:53 +0000112
113Coverage-guided fuzzers like libFuzzer rely on a corpus of sample inputs for the
114code under test. This corpus should ideally be seeded with a varied collection
115of valid and invalid inputs for the code under test; for example, for a graphics
116library the initial corpus might hold a variety of different small PNG/JPG/GIF
117files. The fuzzer generates random mutations based around the sample inputs in
118the current corpus. If a mutation triggers execution of a previously-uncovered
119path in the code under test, then that mutation is saved to the corpus for
120future variations.
121
122LibFuzzer will work without any initial seeds, but will be less
123efficient if the library under test accepts complex,
124structured inputs.
125
126The corpus can also act as a sanity/regression check, to confirm that the
127fuzzing entrypoint still works and that all of the sample inputs run through
128the code under test without problems.
129
130If you have a large corpus (either generated by fuzzing or acquired by other means)
131you may want to minimize it while still preserving the full coverage. One way to do that
132is to use the `-merge=1` flag:
133
134.. code-block:: console
135
136 mkdir NEW_CORPUS_DIR # Store minimized corpus here.
137 ./my_fuzzer -merge=1 NEW_CORPUS_DIR FULL_CORPUS_DIR
138
139You may use the same flag to add more interesting items to an existing corpus.
140Only the inputs that trigger new coverage will be added to the first corpus.
141
142.. code-block:: console
143
144 ./my_fuzzer -merge=1 CURRENT_CORPUS_DIR NEW_POTENTIALLY_INTERESTING_INPUTS_DIR
145
146
Kostya Serebryany7456af52016-04-28 15:19:05 +0000147Running
148-------
149
150To run the fuzzer, first create a Corpus_ directory that holds the
151initial "seed" sample inputs:
152
153.. code-block:: console
154
155 mkdir CORPUS_DIR
156 cp /some/input/samples/* CORPUS_DIR
157
158Then run the fuzzer on the corpus directory:
159
160.. code-block:: console
161
162 ./my_fuzzer CORPUS_DIR # -max_len=1000 -jobs=20 ...
163
164As the fuzzer discovers new interesting test cases (i.e. test cases that
165trigger coverage of new paths through the code under test), those test cases
166will be added to the corpus directory.
167
168By default, the fuzzing process will continue indefinitely – at least until
169a bug is found. Any crashes or sanitizer failures will be reported as usual,
170stopping the fuzzing process, and the particular input that triggered the bug
Kostya Serebryany2fe93042016-04-29 18:49:55 +0000171will be written to disk (typically as ``crash-<sha1>``, ``leak-<sha1>``,
172or ``timeout-<sha1>``).
Kostya Serebryany7456af52016-04-28 15:19:05 +0000173
174
175Parallel Fuzzing
176----------------
177
178Each libFuzzer process is single-threaded, unless the library under test starts
179its own threads. However, it is possible to run multiple libFuzzer processes in
180parallel with a shared corpus directory; this has the advantage that any new
181inputs found by one fuzzer process will be available to the other fuzzer
182processes (unless you disable this with the ``-reload=0`` option).
183
184This is primarily controlled by the ``-jobs=N`` option, which indicates that
185that `N` fuzzing jobs should be run to completion (i.e. until a bug is found or
186time/iteration limits are reached). These jobs will be run across a set of
187worker processes, by default using half of the available CPU cores; the count of
188worker processes can be overridden by the ``-workers=N`` option. For example,
189running with ``-jobs=30`` on a 12-core machine would run 6 workers by default,
190with each worker averaging 5 bugs by completion of the entire process.
191
192
193Options
194=======
195
196To run the fuzzer, pass zero or more corpus directories as command line
197arguments. The fuzzer will read test inputs from each of these corpus
198directories, and any new test inputs that are generated will be written
199back to the first corpus directory:
200
201.. code-block:: console
202
203 ./fuzzer [-flag1=val1 [-flag2=val2 ...] ] [dir1 [dir2 ...] ]
204
205If a list of files (rather than directories) are passed to the fuzzer program,
206then it will re-run those files as test inputs but will not perform any fuzzing.
207In this mode the fuzzer binary can be used as a regression test (e.g. on a
208continuous integration system) to check the target function and saved inputs
209still work.
210
211The most important command line options are:
212
213``-help``
214 Print help message.
215``-seed``
216 Random seed. If 0 (the default), the seed is generated.
217``-runs``
218 Number of individual test runs, -1 (the default) to run indefinitely.
219``-max_len``
220 Maximum length of a test input. If 0 (the default), libFuzzer tries to guess
221 a good value based on the corpus (and reports it).
222``-timeout``
223 Timeout in seconds, default 1200. If an input takes longer than this timeout,
224 the process is treated as a failure case.
Kostya Serebryany8b8f7a32016-05-06 23:38:07 +0000225``-rss_limit_mb``
226 Memory usage limit in Mb, default 2048. Use 0 to disable the limit.
227 If an input requires more than this amount of RSS memory to execute,
228 the process is treated as a failure case.
229 The limit is checked in a separate thread every second.
230 If running w/o ASAN/MSAN, you may use 'ulimit -v' instead.
Kostya Serebryany7456af52016-04-28 15:19:05 +0000231``-timeout_exitcode``
232 Exit code (default 77) to emit when terminating due to timeout, when
233 ``-abort_on_timeout`` is not set.
234``-max_total_time``
235 If positive, indicates the maximum total time in seconds to run the fuzzer.
236 If 0 (the default), run indefinitely.
237``-merge``
238 If set to 1, any corpus inputs from the 2nd, 3rd etc. corpus directories
239 that trigger new code coverage will be merged into the first corpus
Kostya Serebryany61b07ac2016-05-09 19:11:36 +0000240 directory. Defaults to 0. This flag can be used to minimize a corpus.
Kostya Serebryanydec39492016-09-08 22:21:13 +0000241``-minimize_crash``
242 If 1, minimizes the provided crash input.
243 Use with -runs=N or -max_total_time=N to limit the number attempts.
Kostya Serebryany7456af52016-04-28 15:19:05 +0000244``-reload``
245 If set to 1 (the default), the corpus directory is re-read periodically to
246 check for new inputs; this allows detection of new inputs that were discovered
247 by other fuzzing processes.
248``-jobs``
249 Number of fuzzing jobs to run to completion. Default value is 0, which runs a
250 single fuzzing process until completion. If the value is >= 1, then this
251 number of jobs performing fuzzing are run, in a collection of parallel
252 separate worker processes; each such worker process has its
253 ``stdout``/``stderr`` redirected to ``fuzz-<JOB>.log``.
254``-workers``
255 Number of simultaneous worker processes to run the fuzzing jobs to completion
256 in. If 0 (the default), ``min(jobs, NumberOfCpuCores()/2)`` is used.
257``-dict``
258 Provide a dictionary of input keywords; see Dictionaries_.
259``-use_counters``
260 Use `coverage counters`_ to generate approximate counts of how often code
261 blocks are hit; defaults to 1.
Kostya Serebryanyb5dad1e2016-08-23 23:36:21 +0000262``-use_value_profile``
263 Use `value profile`_ to guide corpus expansion; defaults to 0.
Kostya Serebryany7456af52016-04-28 15:19:05 +0000264``-use_traces``
265 Use instruction traces (experimental, defaults to 0); see `Data-flow-guided fuzzing`_.
266``-only_ascii``
267 If 1, generate only ASCII (``isprint``+``isspace``) inputs. Defaults to 0.
268``-artifact_prefix``
269 Provide a prefix to use when saving fuzzing artifacts (crash, timeout, or
270 slow inputs) as ``$(artifact_prefix)file``. Defaults to empty.
271``-exact_artifact_path``
272 Ignored if empty (the default). If non-empty, write the single artifact on
273 failure (crash, timeout) as ``$(exact_artifact_path)``. This overrides
274 ``-artifact_prefix`` and will not use checksum in the file name. Do not use
275 the same path for several parallel processes.
Kostya Serebryany0f0fa4f2016-08-25 22:35:08 +0000276``-print_pcs``
277 If 1, print out newly covered PCs. Defaults to 0.
Kostya Serebryany7456af52016-04-28 15:19:05 +0000278``-print_final_stats``
279 If 1, print statistics at exit. Defaults to 0.
Kostya Serebryany5d70d822016-08-12 20:42:24 +0000280``-detect_leaks``
Kostya Serebryanydced5d32016-04-29 19:28:24 +0000281 If 1 (default) and if LeakSanitizer is enabled
282 try to detect memory leaks during fuzzing (i.e. not only at shut down).
Kostya Serebryany7456af52016-04-28 15:19:05 +0000283``-close_fd_mask``
Kostya Serebryany470d0442016-05-27 21:46:22 +0000284 Indicate output streams to close at startup. Be careful, this will
285 remove diagnostic output from target code (e.g. messages on assert failure).
Kostya Serebryany7456af52016-04-28 15:19:05 +0000286
287 - 0 (default): close neither ``stdout`` nor ``stderr``
288 - 1 : close ``stdout``
289 - 2 : close ``stderr``
290 - 3 : close both ``stdout`` and ``stderr``.
Kostya Serebryany2adfa3b2015-05-20 21:03:03 +0000291
292For the full list of flags run the fuzzer binary with ``-help=1``.
293
Kostya Serebryany7456af52016-04-28 15:19:05 +0000294Output
295======
296
297During operation the fuzzer prints information to ``stderr``, for example::
298
299 INFO: Seed: 3338750330
300 Loaded 1024/1211 files from corpus/
301 INFO: -max_len is not provided, using 64
302 #0 READ units: 1211 exec/s: 0
303 #1211 INITED cov: 2575 bits: 8855 indir: 5 units: 830 exec/s: 1211
304 #1422 NEW cov: 2580 bits: 8860 indir: 5 units: 831 exec/s: 1422 L: 21 MS: 1 ShuffleBytes-
305 #1688 NEW cov: 2581 bits: 8865 indir: 5 units: 832 exec/s: 1688 L: 19 MS: 2 EraseByte-CrossOver-
306 #1734 NEW cov: 2583 bits: 8879 indir: 5 units: 833 exec/s: 1734 L: 27 MS: 3 ChangeBit-EraseByte-ShuffleBytes-
307 ...
308
309The early parts of the output include information about the fuzzer options and
310configuration, including the current random seed (in the ``Seed:`` line; this
311can be overridden with the ``-seed=N`` flag).
312
313Further output lines have the form of an event code and statistics. The
314possible event codes are:
315
316``READ``
317 The fuzzer has read in all of the provided input samples from the corpus
318 directories.
319``INITED``
320 The fuzzer has completed initialization, which includes running each of
321 the initial input samples through the code under test.
322``NEW``
323 The fuzzer has created a test input that covers new areas of the code
324 under test. This input will be saved to the primary corpus directory.
325``pulse``
326 The fuzzer has generated 2\ :sup:`n` inputs (generated periodically to reassure
327 the user that the fuzzer is still working).
328``DONE``
329 The fuzzer has completed operation because it has reached the specified
330 iteration limit (``-runs``) or time limit (``-max_total_time``).
331``MIN<n>``
332 The fuzzer is minimizing the combination of input corpus directories into
333 a single unified corpus (due to the ``-merge`` command line option).
334``RELOAD``
335 The fuzzer is performing a periodic reload of inputs from the corpus
336 directory; this allows it to discover any inputs discovered by other
337 fuzzer processes (see `Parallel Fuzzing`_).
338
339Each output line also reports the following statistics (when non-zero):
340
341``cov:``
342 Total number of code blocks or edges covered by the executing the current
343 corpus.
Kostya Serebryanyb5dad1e2016-08-23 23:36:21 +0000344``vp:``
345 Size of the `value profile`_.
Kostya Serebryany7456af52016-04-28 15:19:05 +0000346``bits:``
347 Rough measure of the number of code blocks or edges covered, and how often;
348 only valid if the fuzzer is run with ``-use_counters=1``.
349``indir:``
350 Number of distinct function `caller-callee pairs`_ executed with the
351 current corpus; only valid if the code under test was built with
352 ``-fsanitize-coverage=indirect-calls``.
353``units:``
354 Number of entries in the current input corpus.
355``exec/s:``
356 Number of fuzzer iterations per second.
357
358For ``NEW`` events, the output line also includes information about the mutation
359operation that produced the new input:
360
361``L:``
362 Size of the new input in bytes.
363``MS: <n> <operations>``
364 Count and list of the mutation operations used to generate the input.
365
366
367Examples
368========
Kostya Serebryanyd11dc172016-03-12 02:56:25 +0000369.. contents::
370 :local:
371 :depth: 1
Kostya Serebryany79677382015-03-31 21:39:38 +0000372
373Toy example
374-----------
375
Kostya Serebryany7456af52016-04-28 15:19:05 +0000376A simple function that does something interesting if it receives the input
377"HI!"::
Kostya Serebryany79677382015-03-31 21:39:38 +0000378
Kostya Serebryany3a486362016-05-10 23:52:47 +0000379 cat << EOF > test_fuzzer.cc
Kostya Serebryany1c80b9d2015-11-26 00:12:57 +0000380 #include <stdint.h>
381 #include <stddef.h>
382 extern "C" int LLVMFuzzerTestOneInput(const uint8_t *data, size_t size) {
Kostya Serebryany79677382015-03-31 21:39:38 +0000383 if (size > 0 && data[0] == 'H')
384 if (size > 1 && data[1] == 'I')
385 if (size > 2 && data[2] == '!')
386 __builtin_trap();
Kostya Serebryany20bb5e72015-10-02 23:34:06 +0000387 return 0;
Kostya Serebryany79677382015-03-31 21:39:38 +0000388 }
389 EOF
Kostya Serebryanyabca88e2016-03-12 03:05:37 +0000390 # Build test_fuzzer.cc with asan and link against libFuzzer.a
391 clang++ -fsanitize=address -fsanitize-coverage=edge test_fuzzer.cc libFuzzer.a
Kostya Serebryany79677382015-03-31 21:39:38 +0000392 # Run the fuzzer with no corpus.
393 ./a.out
394
Kostya Serebryanyabca88e2016-03-12 03:05:37 +0000395You should get an error pretty quickly::
396
397 #0 READ units: 1 exec/s: 0
398 #1 INITED cov: 3 units: 1 exec/s: 0
Kostya Serebryany7456af52016-04-28 15:19:05 +0000399 #2 NEW cov: 5 units: 2 exec/s: 0 L: 64 MS: 0
400 #19237 NEW cov: 9 units: 3 exec/s: 0 L: 64 MS: 0
Kostya Serebryanyabca88e2016-03-12 03:05:37 +0000401 #20595 NEW cov: 10 units: 4 exec/s: 0 L: 1 MS: 4 ChangeASCIIInt-ShuffleBytes-ChangeByte-CrossOver-
402 #34574 NEW cov: 13 units: 5 exec/s: 0 L: 2 MS: 3 ShuffleBytes-CrossOver-ChangeBit-
403 #34807 NEW cov: 15 units: 6 exec/s: 0 L: 3 MS: 1 CrossOver-
404 ==31511== ERROR: libFuzzer: deadly signal
405 ...
406 artifact_prefix='./'; Test unit written to ./crash-b13e8756b13a00cf168300179061fb4b91fefbed
407
Kostya Serebryany79677382015-03-31 21:39:38 +0000408
409PCRE2
410-----
411
Kostya Serebryanyabca88e2016-03-12 03:05:37 +0000412Here we show how to use libFuzzer on something real, yet simple: pcre2_::
Kostya Serebryany79677382015-03-31 21:39:38 +0000413
Alexey Samsonov21a33812015-05-07 23:33:24 +0000414 COV_FLAGS=" -fsanitize-coverage=edge,indirect-calls,8bit-counters"
Kostya Serebryany79677382015-03-31 21:39:38 +0000415 # Get PCRE2
Kostya Serebryany7456af52016-04-28 15:19:05 +0000416 wget ftp://ftp.csx.cam.ac.uk/pub/software/programming/pcre/pcre2-10.20.tar.gz
417 tar xf pcre2-10.20.tar.gz
418 # Build PCRE2 with AddressSanitizer and coverage; requires autotools.
419 (cd pcre2-10.20; ./autogen.sh; CC="clang -fsanitize=address $COV_FLAGS" ./configure --prefix=`pwd`/../inst && make -j && make install)
Kostya Serebryanyabca88e2016-03-12 03:05:37 +0000420 # Build the fuzzing target function that does something interesting with PCRE2.
Kostya Serebryany79677382015-03-31 21:39:38 +0000421 cat << EOF > pcre_fuzzer.cc
422 #include <string.h>
Kostya Serebryany1c80b9d2015-11-26 00:12:57 +0000423 #include <stdint.h>
Kostya Serebryany79677382015-03-31 21:39:38 +0000424 #include "pcre2posix.h"
Kostya Serebryany1c80b9d2015-11-26 00:12:57 +0000425 extern "C" int LLVMFuzzerTestOneInput(const uint8_t *data, size_t size) {
Kostya Serebryany20bb5e72015-10-02 23:34:06 +0000426 if (size < 1) return 0;
Kostya Serebryany79677382015-03-31 21:39:38 +0000427 char *str = new char[size+1];
428 memcpy(str, data, size);
429 str[size] = 0;
430 regex_t preg;
431 if (0 == regcomp(&preg, str, 0)) {
432 regexec(&preg, str, 0, 0, 0);
433 regfree(&preg);
434 }
435 delete [] str;
Kostya Serebryany20bb5e72015-10-02 23:34:06 +0000436 return 0;
Kostya Serebryany79677382015-03-31 21:39:38 +0000437 }
438 EOF
439 clang++ -g -fsanitize=address $COV_FLAGS -c -std=c++11 -I inst/include/ pcre_fuzzer.cc
440 # Link.
Kostya Serebryanyabca88e2016-03-12 03:05:37 +0000441 clang++ -g -fsanitize=address -Wl,--whole-archive inst/lib/*.a -Wl,-no-whole-archive libFuzzer.a pcre_fuzzer.o -o pcre_fuzzer
Kostya Serebryany79677382015-03-31 21:39:38 +0000442
443This will give you a binary of the fuzzer, called ``pcre_fuzzer``.
Kostya Serebryany7456af52016-04-28 15:19:05 +0000444Now, create a directory that will hold the test corpus:
445
446.. code-block:: console
Kostya Serebryany79677382015-03-31 21:39:38 +0000447
448 mkdir -p CORPUS
449
450For simple input languages like regular expressions this is all you need.
Kostya Serebryany7456af52016-04-28 15:19:05 +0000451For more complicated/structured inputs, the fuzzer works much more efficiently
452if you can populate the corpus directory with a variety of valid and invalid
453inputs for the code under test.
454Now run the fuzzer with the corpus directory as the only parameter:
455
456.. code-block:: console
Kostya Serebryany79677382015-03-31 21:39:38 +0000457
458 ./pcre_fuzzer ./CORPUS
459
Kostya Serebryany7456af52016-04-28 15:19:05 +0000460Initially, you will see Output_ like this::
Kostya Serebryany79677382015-03-31 21:39:38 +0000461
Kostya Serebryany7456af52016-04-28 15:19:05 +0000462 INFO: Seed: 2938818941
463 INFO: -max_len is not provided, using 64
464 INFO: A corpus is not provided, starting from an empty corpus
465 #0 READ units: 1 exec/s: 0
466 #1 INITED cov: 3 bits: 3 units: 1 exec/s: 0
467 #2 NEW cov: 176 bits: 176 indir: 3 units: 2 exec/s: 0 L: 64 MS: 0
468 #8 NEW cov: 176 bits: 179 indir: 3 units: 3 exec/s: 0 L: 63 MS: 2 ChangeByte-EraseByte-
469 ...
470 #14004 NEW cov: 1500 bits: 4536 indir: 5 units: 406 exec/s: 0 L: 54 MS: 3 ChangeBit-ChangeBit-CrossOver-
Kostya Serebryany79677382015-03-31 21:39:38 +0000471
472Now, interrupt the fuzzer and run it again the same way. You will see::
473
Kostya Serebryany7456af52016-04-28 15:19:05 +0000474 INFO: Seed: 3398349082
475 INFO: -max_len is not provided, using 64
476 #0 READ units: 405 exec/s: 0
477 #405 INITED cov: 1499 bits: 4535 indir: 5 units: 286 exec/s: 0
478 #587 NEW cov: 1499 bits: 4540 indir: 5 units: 287 exec/s: 0 L: 52 MS: 2 InsertByte-EraseByte-
479 #667 NEW cov: 1501 bits: 4542 indir: 5 units: 288 exec/s: 0 L: 39 MS: 2 ChangeBit-InsertByte-
480 #672 NEW cov: 1501 bits: 4543 indir: 5 units: 289 exec/s: 0 L: 15 MS: 2 ChangeASCIIInt-ChangeBit-
481 #739 NEW cov: 1501 bits: 4544 indir: 5 units: 290 exec/s: 0 L: 64 MS: 4 ShuffleBytes-ChangeASCIIInt-InsertByte-ChangeBit-
Kostya Serebryany79677382015-03-31 21:39:38 +0000482 ...
Kostya Serebryany79677382015-03-31 21:39:38 +0000483
Kostya Serebryany7456af52016-04-28 15:19:05 +0000484On the second execution the fuzzer has a non-empty input corpus (405 items). As
485the first step, the fuzzer minimized this corpus (the ``INITED`` line) to
486produce 286 interesting items, omitting inputs that do not hit any additional
487code.
Kostya Serebryany79677382015-03-31 21:39:38 +0000488
Kostya Serebryany7456af52016-04-28 15:19:05 +0000489(Aside: although the fuzzer only saves new inputs that hit additional code, this
490does not mean that the corpus as a whole is kept minimized. For example, if
491an input hitting A-B-C then an input that hits A-B-C-D are generated,
492they will both be saved, even though the latter subsumes the former.)
493
494
495You may run ``N`` independent fuzzer jobs in parallel on ``M`` CPUs:
496
497.. code-block:: console
Kostya Serebryany79677382015-03-31 21:39:38 +0000498
499 N=100; M=4; ./pcre_fuzzer ./CORPUS -jobs=$N -workers=$M
500
Kostya Serebryany7456af52016-04-28 15:19:05 +0000501By default (``-reload=1``) the fuzzer processes will periodically scan the corpus directory
Kostya Serebryany9690fcf2015-05-12 18:51:57 +0000502and reload any new tests. This way the test inputs found by one process will be picked up
503by all others.
Kostya Serebryany79677382015-03-31 21:39:38 +0000504
Kostya Serebryany9690fcf2015-05-12 18:51:57 +0000505If ``-workers=$M`` is not supplied, ``min($N,NumberOfCpuCore/2)`` will be used.
Kostya Serebryany79677382015-03-31 21:39:38 +0000506
Kostya Serebryany5e593a42015-04-08 06:16:11 +0000507Heartbleed
508----------
509Remember Heartbleed_?
510As it was recently `shown <https://blog.hboeck.de/archives/868-How-Heartbleed-couldve-been-found.html>`_,
Kostya Serebryany7456af52016-04-28 15:19:05 +0000511fuzzing with AddressSanitizer_ can find Heartbleed. Indeed, here are the step-by-step instructions
512to find Heartbleed with libFuzzer::
Kostya Serebryany5e593a42015-04-08 06:16:11 +0000513
514 wget https://www.openssl.org/source/openssl-1.0.1f.tar.gz
515 tar xf openssl-1.0.1f.tar.gz
Alexey Samsonov21a33812015-05-07 23:33:24 +0000516 COV_FLAGS="-fsanitize-coverage=edge,indirect-calls" # -fsanitize-coverage=8bit-counters
Kostya Serebryany5e593a42015-04-08 06:16:11 +0000517 (cd openssl-1.0.1f/ && ./config &&
518 make -j 32 CC="clang -g -fsanitize=address $COV_FLAGS")
Kostya Serebryany7456af52016-04-28 15:19:05 +0000519 # Get and build libFuzzer
Kostya Serebryany5e593a42015-04-08 06:16:11 +0000520 svn co http://llvm.org/svn/llvm-project/llvm/trunk/lib/Fuzzer
521 clang -c -g -O2 -std=c++11 Fuzzer/*.cpp -IFuzzer
522 # Get examples of key/pem files.
523 git clone https://github.com/hannob/selftls
524 cp selftls/server* . -v
525 cat << EOF > handshake-fuzz.cc
526 #include <openssl/ssl.h>
527 #include <openssl/err.h>
528 #include <assert.h>
Kostya Serebryany1c80b9d2015-11-26 00:12:57 +0000529 #include <stdint.h>
530 #include <stddef.h>
531
Kostya Serebryany5e593a42015-04-08 06:16:11 +0000532 SSL_CTX *sctx;
533 int Init() {
534 SSL_library_init();
535 SSL_load_error_strings();
536 ERR_load_BIO_strings();
537 OpenSSL_add_all_algorithms();
538 assert (sctx = SSL_CTX_new(TLSv1_method()));
539 assert (SSL_CTX_use_certificate_file(sctx, "server.pem", SSL_FILETYPE_PEM));
540 assert (SSL_CTX_use_PrivateKey_file(sctx, "server.key", SSL_FILETYPE_PEM));
541 return 0;
542 }
Kostya Serebryany1c80b9d2015-11-26 00:12:57 +0000543 extern "C" int LLVMFuzzerTestOneInput(const uint8_t *Data, size_t Size) {
Kostya Serebryany5e593a42015-04-08 06:16:11 +0000544 static int unused = Init();
545 SSL *server = SSL_new(sctx);
546 BIO *sinbio = BIO_new(BIO_s_mem());
547 BIO *soutbio = BIO_new(BIO_s_mem());
548 SSL_set_bio(server, sinbio, soutbio);
549 SSL_set_accept_state(server);
550 BIO_write(sinbio, Data, Size);
551 SSL_do_handshake(server);
552 SSL_free(server);
Kostya Serebryany20bb5e72015-10-02 23:34:06 +0000553 return 0;
Kostya Serebryany5e593a42015-04-08 06:16:11 +0000554 }
555 EOF
Mehdi Amini30618f92015-09-17 15:59:52 +0000556 # Build the fuzzer.
Kostya Serebryany5e593a42015-04-08 06:16:11 +0000557 clang++ -g handshake-fuzz.cc -fsanitize=address \
558 openssl-1.0.1f/libssl.a openssl-1.0.1f/libcrypto.a Fuzzer*.o
559 # Run 20 independent fuzzer jobs.
560 ./a.out -jobs=20 -workers=20
561
562Voila::
563
564 #1048576 pulse cov 3424 bits 0 units 9 exec/s 24385
565 =================================================================
566 ==17488==ERROR: AddressSanitizer: heap-buffer-overflow on address 0x629000004748 at pc 0x00000048c979 bp 0x7fffe3e864f0 sp 0x7fffe3e85ca8
567 READ of size 60731 at 0x629000004748 thread T0
568 #0 0x48c978 in __asan_memcpy
569 #1 0x4db504 in tls1_process_heartbeat openssl-1.0.1f/ssl/t1_lib.c:2586:3
570 #2 0x580be3 in ssl3_read_bytes openssl-1.0.1f/ssl/s3_pkt.c:1092:4
571
Kostya Serebryany1c80b9d2015-11-26 00:12:57 +0000572Note: a `similar fuzzer <https://boringssl.googlesource.com/boringssl/+/HEAD/FUZZING.md>`_
Kostya Serebryany7456af52016-04-28 15:19:05 +0000573is now a part of the BoringSSL_ source tree.
Kostya Serebryany1c80b9d2015-11-26 00:12:57 +0000574
Kostya Serebryany043ab1c2015-04-01 21:33:20 +0000575Advanced features
576=================
Kostya Serebryanyd11dc172016-03-12 02:56:25 +0000577.. contents::
578 :local:
579 :depth: 1
Kostya Serebryany043ab1c2015-04-01 21:33:20 +0000580
Kostya Serebryany7d211662015-09-04 00:12:11 +0000581Dictionaries
582------------
Kostya Serebryany7d211662015-09-04 00:12:11 +0000583LibFuzzer supports user-supplied dictionaries with input language keywords
584or other interesting byte sequences (e.g. multi-byte magic values).
585Use ``-dict=DICTIONARY_FILE``. For some input languages using a dictionary
586may significantly improve the search speed.
587The dictionary syntax is similar to that used by AFL_ for its ``-x`` option::
588
589 # Lines starting with '#' and empty lines are ignored.
590
591 # Adds "blah" (w/o quotes) to the dictionary.
592 kw1="blah"
593 # Use \\ for backslash and \" for quotes.
594 kw2="\"ac\\dc\""
595 # Use \xAB for hex values
596 kw3="\xF7\xF8"
597 # the name of the keyword followed by '=' may be omitted:
598 "foo\x0Abar"
599
Kostya Serebryanyb5dad1e2016-08-23 23:36:21 +0000600Value Profile
601---------------
602
603*EXPERIMENTAL*.
604With an additional compiler flag ``-fsanitize-coverage=trace-cmp``
605(see SanitizerCoverageTraceDataFlow_)
606and extra run-time flag ``-use_value_profile=1`` the fuzzer will
607collect value profiles for the parameters of compare instructions
608and treat some new values as new coverage.
609
610The current imlpementation does roughly the following:
611
612* The compiler instruments all CMP instructions with a callback that receives both CMP arguments.
613* The callback computes `(caller_pc&4095) | (popcnt(Arg1 ^ Arg2) << 12)` and uses this value to set a bit in a bitset.
614* Every new observed bit in the bitset is treated as new coverage.
615
616
617This feature has a potential to discover many interesting inputs,
618but there are two downsides.
619First, the extra instrumentation may bring up to 2x additional slowdown.
620Second, the corpus may grow by several times.
621
622
Kostya Serebryanyb17e2982015-07-31 21:48:10 +0000623Data-flow-guided fuzzing
624------------------------
625
626*EXPERIMENTAL*.
627With an additional compiler flag ``-fsanitize-coverage=trace-cmp`` (see SanitizerCoverageTraceDataFlow_)
628and extra run-time flag ``-use_traces=1`` the fuzzer will try to apply *data-flow-guided fuzzing*.
629That is, the fuzzer will record the inputs to comparison instructions, switch statements,
Kostya Serebryany7f4227d2015-08-05 18:23:01 +0000630and several libc functions (``memcmp``, ``strcmp``, ``strncmp``, etc).
Kostya Serebryanyb17e2982015-07-31 21:48:10 +0000631It will later use those recorded inputs during mutations.
632
633This mode can be combined with DataFlowSanitizer_ to achieve better sensitivity.
634
Kostya Serebryany05576752016-05-25 18:41:53 +0000635Fuzzer-friendly build mode
636---------------------------
637Sometimes the code under test is not fuzzing-friendly. Examples:
638
639 - The target code uses a PRNG seeded e.g. by system time and
640 thus two consequent invocations may potentially execute different code paths
641 even if the end result will be the same. This will cause a fuzzer to treat
642 two similar inputs as significantly different and it will blow up the test corpus.
643 E.g. libxml uses ``rand()`` inside its hash table.
644 - The target code uses checksums to protect from invalid inputs.
645 E.g. png checks CRC for every chunk.
646
647In many cases it makes sense to build a special fuzzing-friendly build
648with certain fuzzing-unfriendly features disabled. We propose to use a common build macro
649for all such cases for consistency: ``FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION``.
650
651.. code-block:: c++
652
653 void MyInitPRNG() {
654 #ifdef FUZZING_BUILD_MODE_UNSAFE_FOR_PRODUCTION
655 // In fuzzing mode the behavior of the code should be deterministic.
656 srand(0);
657 #else
658 srand(time(0));
659 #endif
660 }
661
662
663
Kostya Serebryany6bd016b2015-04-10 05:44:43 +0000664AFL compatibility
665-----------------
Kostya Serebryany9e1a2382016-03-29 23:07:36 +0000666LibFuzzer can be used together with AFL_ on the same test corpus.
Kostya Serebryany6bd016b2015-04-10 05:44:43 +0000667Both fuzzers expect the test corpus to reside in a directory, one file per input.
Kostya Serebryany7456af52016-04-28 15:19:05 +0000668You can run both fuzzers on the same corpus, one after another:
669
670.. code-block:: console
Kostya Serebryany6bd016b2015-04-10 05:44:43 +0000671
Kostya Serebryany9e1a2382016-03-29 23:07:36 +0000672 ./afl-fuzz -i testcase_dir -o findings_dir /path/to/program @@
Kostya Serebryany6bd016b2015-04-10 05:44:43 +0000673 ./llvm-fuzz testcase_dir findings_dir # Will write new tests to testcase_dir
674
675Periodically restart both fuzzers so that they can use each other's findings.
Kostya Serebryany9e1a2382016-03-29 23:07:36 +0000676Currently, there is no simple way to run both fuzzing engines in parallel while sharing the same corpus dir.
Kostya Serebryany79677382015-03-31 21:39:38 +0000677
Kostya Serebryany3a486362016-05-10 23:52:47 +0000678You may also use AFL on your target function ``LLVMFuzzerTestOneInput``:
679see an example `here <https://github.com/llvm-mirror/llvm/blob/master/lib/Fuzzer/afl/afl_driver.cpp>`__.
680
Kostya Serebryanycd073d52015-04-10 06:32:29 +0000681How good is my fuzzer?
682----------------------
683
Kostya Serebryany566bc5a2015-05-06 22:19:00 +0000684Once you implement your target function ``LLVMFuzzerTestOneInput`` and fuzz it to death,
Kostya Serebryanycd073d52015-04-10 06:32:29 +0000685you will want to know whether the function or the corpus can be improved further.
686One easy to use metric is, of course, code coverage.
Kostya Serebryany7456af52016-04-28 15:19:05 +0000687You can get the coverage for your corpus like this:
688
689.. code-block:: console
Kostya Serebryanycd073d52015-04-10 06:32:29 +0000690
Kostya Serebryanyec77af32016-05-05 18:07:09 +0000691 ASAN_OPTIONS=coverage=1:html_cov_report=1 ./fuzzer CORPUS_DIR -runs=0
Kostya Serebryanycd073d52015-04-10 06:32:29 +0000692
Kostya Serebryanyec77af32016-05-05 18:07:09 +0000693This will run all tests in the CORPUS_DIR but will not perform any fuzzing.
694At the end of the process it will dump a single html file with coverage information.
695See SanitizerCoverage_ for details.
696
697You may also use other ways to visualize coverage,
Kostya Serebryany9a293ca2016-06-07 23:13:54 +0000698e.g. using `Clang coverage <http://clang.llvm.org/docs/SourceBasedCodeCoverage.html>`_,
699but those will require
700you to rebuild the code with different compiler flags.
Kostya Serebryanycd073d52015-04-10 06:32:29 +0000701
Kostya Serebryany926b9bd2015-05-22 22:43:05 +0000702User-supplied mutators
703----------------------
704
705LibFuzzer allows to use custom (user-supplied) mutators,
706see FuzzerInterface.h_
707
Kostya Serebryanyaca76962016-01-16 01:23:12 +0000708Startup initialization
709----------------------
710If the library being tested needs to be initialized, there are several options.
711
Kostya Serebryanyceca4762016-05-06 23:51:28 +0000712The simplest way is to have a statically initialized global object inside
713`LLVMFuzzerTestOneInput` (or in global scope if that works for you):
Kostya Serebryany7456af52016-04-28 15:19:05 +0000714
715.. code-block:: c++
Kostya Serebryanyaca76962016-01-16 01:23:12 +0000716
Kostya Serebryanyceca4762016-05-06 23:51:28 +0000717 extern "C" int LLVMFuzzerTestOneInput(const uint8_t *Data, size_t Size) {
718 static bool Initialized = DoInitialization();
719 ...
Kostya Serebryanyaca76962016-01-16 01:23:12 +0000720
721Alternatively, you may define an optional init function and it will receive
Kostya Serebryanyceca4762016-05-06 23:51:28 +0000722the program arguments that you can read and modify. Do this **only** if you
723realy need to access ``argv``/``argc``.
Kostya Serebryany7456af52016-04-28 15:19:05 +0000724
725.. code-block:: c++
Kostya Serebryanyaca76962016-01-16 01:23:12 +0000726
727 extern "C" int LLVMFuzzerInitialize(int *argc, char ***argv) {
728 ReadAndMaybeModify(argc, argv);
729 return 0;
730 }
731
Kostya Serebryanyaca76962016-01-16 01:23:12 +0000732
Kostya Serebryany9e1a2382016-03-29 23:07:36 +0000733Leaks
734-----
735
Kostya Serebryany2fe93042016-04-29 18:49:55 +0000736Binaries built with AddressSanitizer_ or LeakSanitizer_ will try to detect
737memory leaks at the process shutdown.
738For in-process fuzzing this is inconvenient
739since the fuzzer needs to report a leak with a reproducer as soon as the leaky
740mutation is found. However, running full leak detection after every mutation
741is expensive.
Kostya Serebryany9e1a2382016-03-29 23:07:36 +0000742
Kostya Serebryany2fe93042016-04-29 18:49:55 +0000743By default (``-detect_leaks=1``) libFuzzer will count the number of
744``malloc`` and ``free`` calls when executing every mutation.
745If the numbers don't match (which by itself doesn't mean there is a leak)
746libFuzzer will invoke the more expensive LeakSanitizer_
747pass and if the actual leak is found, it will be reported with the reproducer
748and the process will exit.
749
750If your target has massive leaks and the leak detection is disabled
Kostya Serebryany1ed1aea2016-05-06 23:41:11 +0000751you will eventually run out of RAM (see the ``-rss_limit_mb`` flag).
Kostya Serebryany9e1a2382016-03-29 23:07:36 +0000752
Kostya Serebryany9e1a2382016-03-29 23:07:36 +0000753
Mike Aizatskyab885c52016-05-24 22:25:46 +0000754Developing libFuzzer
755====================
756
Kostya Serebryanyd4ae23b2016-06-08 01:31:40 +0000757Building libFuzzer as a part of LLVM project and running its test requires
758fresh clang as the host compiler and special CMake configuration:
Mike Aizatskyab885c52016-05-24 22:25:46 +0000759
760.. code-block:: console
761
Kostya Serebryanyd4ae23b2016-06-08 01:31:40 +0000762 cmake -GNinja -DCMAKE_C_COMPILER=clang -DCMAKE_CXX_COMPILER=clang++ -DLLVM_USE_SANITIZER=Address -DLLVM_USE_SANITIZE_COVERAGE=YES -DCMAKE_BUILD_TYPE=Release -DLLVM_ENABLE_ASSERTIONS=ON /path/to/llvm
Mike Aizatskyab885c52016-05-24 22:25:46 +0000763 ninja check-fuzzer
764
765
Kostya Serebryany79677382015-03-31 21:39:38 +0000766Fuzzing components of LLVM
767==========================
Kostya Serebryanyd11dc172016-03-12 02:56:25 +0000768.. contents::
769 :local:
770 :depth: 1
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000771
Kostya Serebryanyd4ae23b2016-06-08 01:31:40 +0000772To build any of the LLVM fuzz targets use the build instructions above.
773
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000774clang-format-fuzzer
775-------------------
776The inputs are random pieces of C++-like text.
777
Kostya Serebryany7456af52016-04-28 15:19:05 +0000778.. code-block:: console
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000779
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000780 ninja clang-format-fuzzer
781 mkdir CORPUS_DIR
782 ./bin/clang-format-fuzzer CORPUS_DIR
783
Kostya Serebryany7456af52016-04-28 15:19:05 +0000784Optionally build other kinds of binaries (ASan+Debug, MSan, UBSan, etc).
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000785
Kostya Serebryany79677382015-03-31 21:39:38 +0000786Tracking bug: https://llvm.org/bugs/show_bug.cgi?id=23052
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000787
Kostya Serebryany79677382015-03-31 21:39:38 +0000788clang-fuzzer
789------------
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000790
Kostya Serebryany866e0d12015-09-02 22:44:46 +0000791The behavior is very similar to ``clang-format-fuzzer``.
Kostya Serebryany79677382015-03-31 21:39:38 +0000792
793Tracking bug: https://llvm.org/bugs/show_bug.cgi?id=23057
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000794
Kostya Serebryanyb98e3272015-08-31 18:57:24 +0000795llvm-as-fuzzer
796--------------
797
798Tracking bug: https://llvm.org/bugs/show_bug.cgi?id=24639
799
Daniel Sanders5151b202015-09-18 10:47:45 +0000800llvm-mc-fuzzer
801--------------
802
803This tool fuzzes the MC layer. Currently it is only able to fuzz the
804disassembler but it is hoped that assembly, and round-trip verification will be
805added in future.
806
807When run in dissassembly mode, the inputs are opcodes to be disassembled. The
808fuzzer will consume as many instructions as possible and will stop when it
809finds an invalid instruction or runs out of data.
810
Daniel Sanders4fe1c8b2015-09-26 17:09:01 +0000811Please note that the command line interface differs slightly from that of other
812fuzzers. The fuzzer arguments should follow ``--fuzzer-args`` and should have
813a single dash, while other arguments control the operation mode and target in a
Kostya Serebryany7456af52016-04-28 15:19:05 +0000814similar manner to ``llvm-mc`` and should have two dashes. For example:
815
816.. code-block:: console
Daniel Sanders5151b202015-09-18 10:47:45 +0000817
Daniel Sanders4fe1c8b2015-09-26 17:09:01 +0000818 llvm-mc-fuzzer --triple=aarch64-linux-gnu --disassemble --fuzzer-args -max_len=4 -jobs=10
Daniel Sanders5151b202015-09-18 10:47:45 +0000819
Kostya Serebryanyfb2f3312015-05-13 22:42:28 +0000820Buildbot
821--------
822
Kostya Serebryany7456af52016-04-28 15:19:05 +0000823A buildbot continuously runs the above fuzzers for LLVM components, with results
824shown at http://lab.llvm.org:8011/builders/sanitizer-x86_64-linux-fuzzer .
Kostya Serebryanyfb2f3312015-05-13 22:42:28 +0000825
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000826FAQ
827=========================
828
Kostya Serebryany7456af52016-04-28 15:19:05 +0000829Q. Why doesn't libFuzzer use any of the LLVM support?
830-----------------------------------------------------
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000831
832There are two reasons.
833
Kostya Serebryany7456af52016-04-28 15:19:05 +0000834First, we want this library to be used outside of the LLVM without users having to
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000835build the rest of LLVM. This may sound unconvincing for many LLVM folks,
836but in practice the need for building the whole LLVM frightens many potential
837users -- and we want more users to use this code.
838
839Second, there is a subtle technical reason not to rely on the rest of LLVM, or
840any other large body of code (maybe not even STL). When coverage instrumentation
841is enabled, it will also instrument the LLVM support code which will blow up the
842coverage set of the process (since the fuzzer is in-process). In other words, by
843using more external dependencies we will slow down the fuzzer while the main
844reason for it to exist is extreme speed.
845
Kostya Serebryany7456af52016-04-28 15:19:05 +0000846Q. What about Windows then? The fuzzer contains code that does not build on Windows.
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000847------------------------------------------------------------------------------------
848
Kostya Serebryany241fb612016-03-12 03:23:02 +0000849Volunteers are welcome.
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000850
851Q. When this Fuzzer is not a good solution for a problem?
852---------------------------------------------------------
853
854* If the test inputs are validated by the target library and the validator
Kostya Serebryany241fb612016-03-12 03:23:02 +0000855 asserts/crashes on invalid inputs, in-process fuzzing is not applicable.
Kostya Serebryany7456af52016-04-28 15:19:05 +0000856* Bugs in the target library may accumulate without being detected. E.g. a memory
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000857 corruption that goes undetected at first and then leads to a crash while
858 testing another input. This is why it is highly recommended to run this
859 in-process fuzzer with all sanitizers to detect most bugs on the spot.
860* It is harder to protect the in-process fuzzer from excessive memory
861 consumption and infinite loops in the target library (still possible).
862* The target library should not have significant global state that is not
863 reset between the runs.
Kostya Serebryany7456af52016-04-28 15:19:05 +0000864* Many interesting target libraries are not designed in a way that supports
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000865 the in-process fuzzer interface (e.g. require a file path instead of a
866 byte array).
867* If a single test run takes a considerable fraction of a second (or
868 more) the speed benefit from the in-process fuzzer is negligible.
869* If the target library runs persistent threads (that outlive
870 execution of one test) the fuzzing results will be unreliable.
871
872Q. So, what exactly this Fuzzer is good for?
873--------------------------------------------
874
875This Fuzzer might be a good choice for testing libraries that have relatively
Kostya Serebryany241fb612016-03-12 03:23:02 +0000876small inputs, each input takes < 10ms to run, and the library code is not expected
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000877to crash on invalid inputs.
Kostya Serebryany241fb612016-03-12 03:23:02 +0000878Examples: regular expression matchers, text or binary format parsers, compression,
879network, crypto.
Kostya Serebryany35ce8632015-03-30 23:05:30 +0000880
Kostya Serebryanyfab4fba2015-08-11 01:53:45 +0000881Trophies
882========
883* GLIBC: https://sourceware.org/glibc/wiki/FuzzingLibc
Kostya Serebryanyfdf44182015-08-11 04:16:37 +0000884
Kostya Serebryany6128fcf2016-06-02 06:06:34 +0000885* MUSL LIBC: `[1] <http://git.musl-libc.org/cgit/musl/commit/?id=39dfd58417ef642307d90306e1c7e50aaec5a35c>`__ `[2] <http://www.openwall.com/lists/oss-security/2015/03/30/3>`__
Kostya Serebryanyfdf44182015-08-11 04:16:37 +0000886
Kostya Serebryany928eb332015-10-12 18:15:42 +0000887* `pugixml <https://github.com/zeux/pugixml/issues/39>`_
Kostya Serebryanyfdf44182015-08-11 04:16:37 +0000888
Kostya Serebryany45dac2a2015-10-10 02:14:18 +0000889* PCRE: Search for "LLVM fuzzer" in http://vcs.pcre.org/pcre2/code/trunk/ChangeLog?view=markup;
Kostya Serebryany928eb332015-10-12 18:15:42 +0000890 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 +0000891
Kostya Serebryany928eb332015-10-12 18:15:42 +0000892* `ICU <http://bugs.icu-project.org/trac/ticket/11838>`_
Kostya Serebryanyed483772015-08-11 20:34:48 +0000893
Kostya Serebryany928eb332015-10-12 18:15:42 +0000894* `Freetype <https://savannah.nongnu.org/search/?words=LibFuzzer&type_of_search=bugs&Search=Search&exact=1#options>`_
Kostya Serebryany62921282015-09-11 16:34:14 +0000895
Kostya Serebryany928eb332015-10-12 18:15:42 +0000896* `Harfbuzz <https://github.com/behdad/harfbuzz/issues/139>`_
897
Kostya Serebryany240a1592015-11-11 05:25:24 +0000898* `SQLite <http://www3.sqlite.org/cgi/src/info/088009efdd56160b>`_
Kostya Serebryany65e71262015-11-11 05:20:55 +0000899
Kostya Serebryany12fa3b52015-11-13 02:44:16 +0000900* `Python <http://bugs.python.org/issue25388>`_
901
Kostya Serebryanyfece6742016-04-18 18:41:25 +0000902* OpenSSL/BoringSSL: `[1] <https://boringssl.googlesource.com/boringssl/+/cb852981cd61733a7a1ae4fd8755b7ff950e857d>`_ `[2] <https://openssl.org/news/secadv/20160301.txt>`_ `[3] <https://boringssl.googlesource.com/boringssl/+/2b07fa4b22198ac02e0cee8f37f3337c3dba91bc>`_ `[4] <https://boringssl.googlesource.com/boringssl/+/6b6e0b20893e2be0e68af605a60ffa2cbb0ffa64>`_ `[5] <https://github.com/openssl/openssl/pull/931/commits/dd5ac557f052cc2b7f718ac44a8cb7ac6f77dca8>`_ `[6] <https://github.com/openssl/openssl/pull/931/commits/19b5b9194071d1d84e38ac9a952e715afbc85a81>`_
Kostya Serebryany064a6722015-12-05 02:23:49 +0000903
Kostya Serebryany928eb332015-10-12 18:15:42 +0000904* `Libxml2
Kostya Serebryany0d234c32016-03-29 23:13:25 +0000905 <https://bugzilla.gnome.org/buglist.cgi?bug_status=__all__&content=libFuzzer&list_id=68957&order=Importance&product=libxml2&query_format=specific>`_ and `[HT206167] <https://support.apple.com/en-gb/HT206167>`_ (CVE-2015-5312, CVE-2015-7500, CVE-2015-7942)
Kostya Serebryany45dac2a2015-10-10 02:14:18 +0000906
Kostya Serebryany240a1592015-11-11 05:25:24 +0000907* `Linux Kernel's BPF verifier <https://github.com/iovisor/bpf-fuzzer>`_
Kostya Serebryany62921282015-09-11 16:34:14 +0000908
Kostya Serebryany6128fcf2016-06-02 06:06:34 +0000909* Capstone: `[1] <https://github.com/aquynh/capstone/issues/600>`__ `[2] <https://github.com/aquynh/capstone/commit/6b88d1d51eadf7175a8f8a11b690684443b11359>`__
910
911* file:`[1] <http://bugs.gw.com/view.php?id=550>`__ `[2] <http://bugs.gw.com/view.php?id=551>`__ `[3] <http://bugs.gw.com/view.php?id=553>`__ `[4] <http://bugs.gw.com/view.php?id=554>`__
Kostya Serebryanyc138b642016-04-19 22:37:44 +0000912
913* Radare2: `[1] <https://github.com/revskills?tab=contributions&from=2016-04-09>`__
914
915* gRPC: `[1] <https://github.com/grpc/grpc/pull/6071/commits/df04c1f7f6aec6e95722ec0b023a6b29b6ea871c>`__ `[2] <https://github.com/grpc/grpc/pull/6071/commits/22a3dfd95468daa0db7245a4e8e6679a52847579>`__ `[3] <https://github.com/grpc/grpc/pull/6071/commits/9cac2a12d9e181d130841092e9d40fa3309d7aa7>`__ `[4] <https://github.com/grpc/grpc/pull/6012/commits/82a91c91d01ce9b999c8821ed13515883468e203>`__ `[5] <https://github.com/grpc/grpc/pull/6202/commits/2e3e0039b30edaf89fb93bfb2c1d0909098519fa>`__ `[6] <https://github.com/grpc/grpc/pull/6106/files>`__
916
Kostya Serebryany62023f22016-05-06 20:14:48 +0000917* WOFF2: `[1] <https://github.com/google/woff2/commit/a15a8ab>`__
918
Kostya Serebryanyf5bb42c2016-08-13 00:12:32 +0000919* 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>`_, `Demangler <https://bugs.chromium.org/p/chromium/issues/detail?id=606626>`_, 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 +0000920
Kostya Serebryany79677382015-03-31 21:39:38 +0000921.. _pcre2: http://www.pcre.org/
Kostya Serebryany79677382015-03-31 21:39:38 +0000922.. _AFL: http://lcamtuf.coredump.cx/afl/
Alexey Samsonov675e5392015-04-27 22:50:06 +0000923.. _SanitizerCoverage: http://clang.llvm.org/docs/SanitizerCoverage.html
Kostya Serebryanyb17e2982015-07-31 21:48:10 +0000924.. _SanitizerCoverageTraceDataFlow: http://clang.llvm.org/docs/SanitizerCoverage.html#tracing-data-flow
925.. _DataFlowSanitizer: http://clang.llvm.org/docs/DataFlowSanitizer.html
Kostya Serebryany9e1a2382016-03-29 23:07:36 +0000926.. _AddressSanitizer: http://clang.llvm.org/docs/AddressSanitizer.html
Kostya Serebryany2fe93042016-04-29 18:49:55 +0000927.. _LeakSanitizer: http://clang.llvm.org/docs/LeakSanitizer.html
Kostya Serebryany5e593a42015-04-08 06:16:11 +0000928.. _Heartbleed: http://en.wikipedia.org/wiki/Heartbleed
Kostya Serebryany926b9bd2015-05-22 22:43:05 +0000929.. _FuzzerInterface.h: https://github.com/llvm-mirror/llvm/blob/master/lib/Fuzzer/FuzzerInterface.h
Kostya Serebryany7456af52016-04-28 15:19:05 +0000930.. _3.7.0: http://llvm.org/releases/3.7.0/docs/LibFuzzer.html
931.. _building Clang from trunk: http://clang.llvm.org/get_started.html
932.. _MemorySanitizer: http://clang.llvm.org/docs/MemorySanitizer.html
933.. _UndefinedBehaviorSanitizer: http://clang.llvm.org/docs/UndefinedBehaviorSanitizer.html
934.. _`coverage counters`: http://clang.llvm.org/docs/SanitizerCoverage.html#coverage-counters
Kostya Serebryanyaafa0b02016-08-23 23:43:08 +0000935.. _`value profile`: #value-profile
Kostya Serebryany7456af52016-04-28 15:19:05 +0000936.. _`caller-callee pairs`: http://clang.llvm.org/docs/SanitizerCoverage.html#caller-callee-coverage
937.. _BoringSSL: https://boringssl.googlesource.com/boringssl/
938.. _`fuzz various parts of LLVM itself`: `Fuzzing components of LLVM`_