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@@ -266,6 +266,8 @@ static inline void padlock_xcrypt_ecb(const u8 *input, u8 *output, void *key,
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return;
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}
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+ count -= initial;
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+
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if (initial)
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asm volatile (".byte 0xf3,0x0f,0xa7,0xc8" /* rep xcryptecb */
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: "+S"(input), "+D"(output)
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@@ -273,7 +275,7 @@ static inline void padlock_xcrypt_ecb(const u8 *input, u8 *output, void *key,
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asm volatile (".byte 0xf3,0x0f,0xa7,0xc8" /* rep xcryptecb */
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: "+S"(input), "+D"(output)
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- : "d"(control_word), "b"(key), "c"(count - initial));
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+ : "d"(control_word), "b"(key), "c"(count));
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}
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static inline u8 *padlock_xcrypt_cbc(const u8 *input, u8 *output, void *key,
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@@ -284,6 +286,8 @@ static inline u8 *padlock_xcrypt_cbc(const u8 *input, u8 *output, void *key,
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if (count < cbc_fetch_blocks)
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return cbc_crypt(input, output, key, iv, control_word, count);
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+ count -= initial;
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+
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if (initial)
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asm volatile (".byte 0xf3,0x0f,0xa7,0xd0" /* rep xcryptcbc */
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: "+S" (input), "+D" (output), "+a" (iv)
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@@ -291,7 +295,7 @@ static inline u8 *padlock_xcrypt_cbc(const u8 *input, u8 *output, void *key,
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asm volatile (".byte 0xf3,0x0f,0xa7,0xd0" /* rep xcryptcbc */
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: "+S" (input), "+D" (output), "+a" (iv)
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- : "d" (control_word), "b" (key), "c" (count-initial));
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+ : "d" (control_word), "b" (key), "c" (count));
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return iv;
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}
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