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-rw-r--r--README.md8
1 files changed, 4 insertions, 4 deletions
diff --git a/README.md b/README.md
index 2edca8af..dc43d5d2 100644
--- a/README.md
+++ b/README.md
@@ -27,7 +27,7 @@
   get any feature improvements since November 2017.
 
   Among other changes afl++ has a more performant llvm_mode, supports
-  llvm up to version 10, QEMU 3.1, more speed and crashfixes for QEMU,
+  llvm up to version 11, QEMU 3.1, more speed and crashfixes for QEMU,
   better *BSD and Android support and much, much more.
 
   Additionally the following features and patches have been integrated:
@@ -204,7 +204,7 @@ superior to blind fuzzing or coverage-only tools.
 PLEASE NOTE: llvm_mode compilation with afl-clang-fast/afl-clang-fast++
 instead of afl-gcc/afl-g++ is much faster and has a few cool features.
 See llvm_mode/ - however few code does not compile with llvm.
-We support llvm versions 3.8.0 to 10.
+We support llvm versions 3.8.0 to 11.
 
 When source code is available, instrumentation can be injected by a companion
 tool that works as a drop-in replacement for gcc or clang in any standard build
@@ -227,7 +227,7 @@ For C++ programs, you'd would also want to set `CXX=/path/to/afl/afl-g++`.
 The clang wrappers (afl-clang and afl-clang++) can be used in the same way;
 clang users may also opt to leverage a higher-performance instrumentation mode,
 as described in [llvm_mode/README.md](llvm_mode/README.md).
-Clang/LLVM has a much better performance and works with LLVM version 3.8.0 to 10.
+Clang/LLVM has a much better performance and works with LLVM version 3.8.0 to 11.
 
 Using the LAF Intel performance enhancements are also recommended, see 
 [llvm_mode/README.laf-intel.md](llvm_mode/README.laf-intel.md)
@@ -272,7 +272,7 @@ $ ./build_qemu_support.sh
 For additional instructions and caveats, see [qemu_mode/README.md](qemu_mode/README.md).
 
 The mode is approximately 2-5x slower than compile-time instrumentation, is
-less conductive to parallelization, and may have some other quirks.
+less conducive to parallelization, and may have some other quirks.
 
 If [afl-dyninst](https://github.com/vanhauser-thc/afl-dyninst) works for
 your binary, then you can use afl-fuzz normally and it will have twice