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c0cb86e1d5
Rather than using the clunky, old, slower wireguard-linux-compat out of tree module, this commit does a patch-by-patch backport of upstream's wireguard to 5.4. This specific backport is in widespread use, being part of SUSE's enterprise kernel, Oracle's enterprise kernel, Google's Android kernel, Gentoo's distro kernel, and probably more I've forgotten about. It's definately the "more proper" way of adding wireguard to a kernel than the ugly compat.h hell of the wireguard-linux-compat repo. And most importantly for OpenWRT, it allows using the same module configuration code for 5.10 as for 5.4, with no need for bifurcation. These patches are from the backport tree which is maintained in the open here: https://git.zx2c4.com/wireguard-linux/log/?h=backport-5.4.y I'll be sending PRs to update this as needed. Signed-off-by: Jason A. Donenfeld <Jason@zx2c4.com> (cherry picked from commit3888fa7880
) (cherry picked from commitd540725871
) (cherry picked from commit196f3d586f
) (cherry picked from commit3500fd7938
) (cherry picked from commit23b801d3ba
) (cherry picked from commit0c0cb97da7
) (cherry picked from commit2a27f6f90a
) Signed-off-by: Ilya Lipnitskiy <ilya.lipnitskiy@gmail.com>
84 lines
2.9 KiB
Diff
84 lines
2.9 KiB
Diff
From 0000000000000000000000000000000000000000 Mon Sep 17 00:00:00 2001
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From: Eric Biggers <ebiggers@google.com>
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Date: Sun, 17 Nov 2019 23:22:16 -0800
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Subject: [PATCH] crypto: lib/chacha20poly1305 - use chacha20_crypt()
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commit 413808b71e6204b0cc1eeaa77960f7c3cd381d33 upstream.
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Use chacha20_crypt() instead of chacha_crypt(), since it's not really
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appropriate for users of the ChaCha library API to be passing the number
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of rounds as an argument.
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Signed-off-by: Eric Biggers <ebiggers@google.com>
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Acked-by: Ard Biesheuvel <ardb@kernel.org>
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Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
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Signed-off-by: Jason A. Donenfeld <Jason@zx2c4.com>
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---
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lib/crypto/chacha20poly1305.c | 16 ++++++++--------
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1 file changed, 8 insertions(+), 8 deletions(-)
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--- a/lib/crypto/chacha20poly1305.c
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+++ b/lib/crypto/chacha20poly1305.c
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@@ -66,14 +66,14 @@ __chacha20poly1305_encrypt(u8 *dst, cons
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__le64 lens[2];
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} b;
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- chacha_crypt(chacha_state, b.block0, pad0, sizeof(b.block0), 20);
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+ chacha20_crypt(chacha_state, b.block0, pad0, sizeof(b.block0));
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poly1305_init(&poly1305_state, b.block0);
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poly1305_update(&poly1305_state, ad, ad_len);
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if (ad_len & 0xf)
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poly1305_update(&poly1305_state, pad0, 0x10 - (ad_len & 0xf));
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- chacha_crypt(chacha_state, dst, src, src_len, 20);
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+ chacha20_crypt(chacha_state, dst, src, src_len);
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poly1305_update(&poly1305_state, dst, src_len);
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if (src_len & 0xf)
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@@ -140,7 +140,7 @@ __chacha20poly1305_decrypt(u8 *dst, cons
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if (unlikely(src_len < POLY1305_DIGEST_SIZE))
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return false;
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- chacha_crypt(chacha_state, b.block0, pad0, sizeof(b.block0), 20);
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+ chacha20_crypt(chacha_state, b.block0, pad0, sizeof(b.block0));
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poly1305_init(&poly1305_state, b.block0);
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poly1305_update(&poly1305_state, ad, ad_len);
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@@ -160,7 +160,7 @@ __chacha20poly1305_decrypt(u8 *dst, cons
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ret = crypto_memneq(b.mac, src + dst_len, POLY1305_DIGEST_SIZE);
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if (likely(!ret))
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- chacha_crypt(chacha_state, dst, src, dst_len, 20);
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+ chacha20_crypt(chacha_state, dst, src, dst_len);
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memzero_explicit(&b, sizeof(b));
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@@ -241,7 +241,7 @@ bool chacha20poly1305_crypt_sg_inplace(s
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b.iv[1] = cpu_to_le64(nonce);
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chacha_init(chacha_state, b.k, (u8 *)b.iv);
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- chacha_crypt(chacha_state, b.block0, pad0, sizeof(b.block0), 20);
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+ chacha20_crypt(chacha_state, b.block0, pad0, sizeof(b.block0));
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poly1305_init(&poly1305_state, b.block0);
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if (unlikely(ad_len)) {
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@@ -278,14 +278,14 @@ bool chacha20poly1305_crypt_sg_inplace(s
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if (unlikely(length < sl))
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l &= ~(CHACHA_BLOCK_SIZE - 1);
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- chacha_crypt(chacha_state, addr, addr, l, 20);
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+ chacha20_crypt(chacha_state, addr, addr, l);
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addr += l;
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length -= l;
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}
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if (unlikely(length > 0)) {
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- chacha_crypt(chacha_state, b.chacha_stream, pad0,
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- CHACHA_BLOCK_SIZE, 20);
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+ chacha20_crypt(chacha_state, b.chacha_stream, pad0,
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+ CHACHA_BLOCK_SIZE);
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crypto_xor(addr, b.chacha_stream, length);
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partial = length;
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}
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