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authorAlexander Shvedov <60114847+a-shvedov@users.noreply.github.com>2023-05-05 23:27:13 +0300
committerGitHub <noreply@github.com>2023-05-05 23:27:13 +0300
commit8012b555a8cbc49f1c78d4a33cad56ea59280780 (patch)
tree7795e30a1cec13eade2bc6e940dc66bb76898a49 /docs/fuzzing_binary-only_targets.md
parent8cdc48f73a17ddd557897f2098937a8ba3bfe184 (diff)
parent74be9ab5ce61d5b561faf688c245143da1a0141e (diff)
downloadafl++-8012b555a8cbc49f1c78d4a33cad56ea59280780.tar.gz
Merge pull request #1 from AFLplusplus/stable
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+++ b/docs/fuzzing_binary-only_targets.md
@@ -201,10 +201,10 @@ afl-clang-fast's.
 ### RetroWrite
 
 RetroWrite is a static binary rewriter that can be combined with AFL++. If you
-have an x86_64 binary that still has its symbols (i.e., not stripped binary), is
-compiled with position independent code (PIC/PIE), and does not contain C++
-exceptions, then the RetroWrite solution might be for you. It decompiles to ASM
-files which can then be instrumented with afl-gcc.
+have an x86_64 or arm64 binary that does not contain C++ exceptions and - if
+x86_64 - still has it's symbols and compiled with position independent code
+(PIC/PIE), then the RetroWrite solution might be for you.
+It decompiles to ASM files which can then be instrumented with afl-gcc.
 
 Binaries that are statically instrumented for fuzzing using RetroWrite are close
 in performance to compiler-instrumented binaries and outperform the QEMU-based