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crypto: introduce a xts_uint128 data type
The new type is designed to allow use of 64-bit arithmetic instead of operating 1-byte at a time. The following patches will use this to improve performance. Reviewed-by: Alberto Garcia <berto@igalia.com> Signed-off-by: Daniel P. Berrangé <berrange@redhat.com>
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46
crypto/xts.c
46
crypto/xts.c
@ -26,6 +26,12 @@
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#include "qemu/osdep.h"
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#include "crypto/xts.h"
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typedef union {
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uint8_t b[XTS_BLOCK_SIZE];
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uint64_t u[2];
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} xts_uint128;
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static void xts_mult_x(uint8_t *I)
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{
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int x;
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@ -85,7 +91,7 @@ void xts_decrypt(const void *datactx,
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uint8_t *dst,
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const uint8_t *src)
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{
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uint8_t PP[XTS_BLOCK_SIZE], CC[XTS_BLOCK_SIZE], T[XTS_BLOCK_SIZE];
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xts_uint128 PP, CC, T;
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unsigned long i, m, mo, lim;
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/* get number of blocks */
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@ -102,10 +108,10 @@ void xts_decrypt(const void *datactx,
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}
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/* encrypt the iv */
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encfunc(tweakctx, XTS_BLOCK_SIZE, T, iv);
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encfunc(tweakctx, XTS_BLOCK_SIZE, T.b, iv);
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for (i = 0; i < lim; i++) {
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xts_tweak_encdec(datactx, decfunc, src, dst, T);
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xts_tweak_encdec(datactx, decfunc, src, dst, T.b);
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src += XTS_BLOCK_SIZE;
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dst += XTS_BLOCK_SIZE;
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@ -113,27 +119,27 @@ void xts_decrypt(const void *datactx,
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/* if length is not a multiple of XTS_BLOCK_SIZE then */
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if (mo > 0) {
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memcpy(CC, T, XTS_BLOCK_SIZE);
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xts_mult_x(CC);
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memcpy(&CC, &T, XTS_BLOCK_SIZE);
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xts_mult_x(CC.b);
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/* PP = tweak decrypt block m-1 */
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xts_tweak_encdec(datactx, decfunc, src, PP, CC);
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xts_tweak_encdec(datactx, decfunc, src, PP.b, CC.b);
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/* Pm = first length % XTS_BLOCK_SIZE bytes of PP */
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for (i = 0; i < mo; i++) {
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CC[i] = src[XTS_BLOCK_SIZE + i];
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dst[XTS_BLOCK_SIZE + i] = PP[i];
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CC.b[i] = src[XTS_BLOCK_SIZE + i];
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dst[XTS_BLOCK_SIZE + i] = PP.b[i];
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}
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for (; i < XTS_BLOCK_SIZE; i++) {
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CC[i] = PP[i];
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CC.b[i] = PP.b[i];
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}
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/* Pm-1 = Tweak uncrypt CC */
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xts_tweak_encdec(datactx, decfunc, CC, dst, T);
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xts_tweak_encdec(datactx, decfunc, CC.b, dst, T.b);
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}
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/* Decrypt the iv back */
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decfunc(tweakctx, XTS_BLOCK_SIZE, iv, T);
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decfunc(tweakctx, XTS_BLOCK_SIZE, iv, T.b);
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}
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@ -146,7 +152,7 @@ void xts_encrypt(const void *datactx,
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uint8_t *dst,
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const uint8_t *src)
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{
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uint8_t PP[XTS_BLOCK_SIZE], CC[XTS_BLOCK_SIZE], T[XTS_BLOCK_SIZE];
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xts_uint128 PP, CC, T;
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unsigned long i, m, mo, lim;
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/* get number of blocks */
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@ -163,10 +169,10 @@ void xts_encrypt(const void *datactx,
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}
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/* encrypt the iv */
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encfunc(tweakctx, XTS_BLOCK_SIZE, T, iv);
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encfunc(tweakctx, XTS_BLOCK_SIZE, T.b, iv);
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for (i = 0; i < lim; i++) {
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xts_tweak_encdec(datactx, encfunc, src, dst, T);
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xts_tweak_encdec(datactx, encfunc, src, dst, T.b);
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dst += XTS_BLOCK_SIZE;
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src += XTS_BLOCK_SIZE;
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@ -175,22 +181,22 @@ void xts_encrypt(const void *datactx,
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/* if length is not a multiple of XTS_BLOCK_SIZE then */
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if (mo > 0) {
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/* CC = tweak encrypt block m-1 */
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xts_tweak_encdec(datactx, encfunc, src, CC, T);
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xts_tweak_encdec(datactx, encfunc, src, CC.b, T.b);
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/* Cm = first length % XTS_BLOCK_SIZE bytes of CC */
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for (i = 0; i < mo; i++) {
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PP[i] = src[XTS_BLOCK_SIZE + i];
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dst[XTS_BLOCK_SIZE + i] = CC[i];
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PP.b[i] = src[XTS_BLOCK_SIZE + i];
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dst[XTS_BLOCK_SIZE + i] = CC.b[i];
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}
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for (; i < XTS_BLOCK_SIZE; i++) {
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PP[i] = CC[i];
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PP.b[i] = CC.b[i];
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}
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/* Cm-1 = Tweak encrypt PP */
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xts_tweak_encdec(datactx, encfunc, PP, dst, T);
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xts_tweak_encdec(datactx, encfunc, PP.b, dst, T.b);
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}
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/* Decrypt the iv back */
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decfunc(tweakctx, XTS_BLOCK_SIZE, iv, T);
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decfunc(tweakctx, XTS_BLOCK_SIZE, iv, T.b);
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}
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