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authorJason Wang <wangborong@cdjrlc.com>2022-07-15 12:50:07 +0800
committerHerbert Xu <herbert@gondor.apana.org.au>2022-07-22 16:22:04 +0800
commit824b94a88320eaa5e3e059b494e457ed25987a63 (patch)
tree10c014cd117cad3b2bfd1d8343e2798ba51047e3 /crypto/twofish_common.c
parent4cbdecd02fd29eb69a376ffdac47aff441c4d19f (diff)
crypto: twofish - Fix comment typo
The double `that' is duplicated in line 301, remove one. Signed-off-by: Jason Wang <wangborong@cdjrlc.com> Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
Diffstat (limited to 'crypto/twofish_common.c')
-rw-r--r--crypto/twofish_common.c2
1 files changed, 1 insertions, 1 deletions
diff --git a/crypto/twofish_common.c b/crypto/twofish_common.c
index d23fa531b91f..f921f30334f4 100644
--- a/crypto/twofish_common.c
+++ b/crypto/twofish_common.c
@@ -298,7 +298,7 @@ static const u32 mds[4][256] = {
* multiplication is inefficient without hardware support. To multiply
* faster, I make use of the fact x is a generator for the nonzero elements,
* so that every element p of GF(2)[x]/w(x) is either 0 or equal to (x)^n for
- * some n in 0..254. Note that that caret is exponentiation in GF(2^8),
+ * some n in 0..254. Note that caret is exponentiation in GF(2^8),
* *not* polynomial notation. So if I want to compute pq where p and q are
* in GF(2^8), I can just say:
* 1. if p=0 or q=0 then pq=0