mirror of
https://github.com/servalproject/serval-dna.git
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159 lines
4.3 KiB
C
159 lines
4.3 KiB
C
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/* Author: Peter Schwabe, ported from an assembly implementation by Emilia Käsper
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* Date: 2009-03-19
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* Public domain */
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#include "int128.h"
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#include "common.h"
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#include "consts.h"
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#include "crypto_stream.h"
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int crypto_stream_afternm(unsigned char *outp, unsigned long long len, const unsigned char *noncep, const unsigned char *c)
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{
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int128 xmm0;
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int128 xmm1;
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int128 xmm2;
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int128 xmm3;
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int128 xmm4;
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int128 xmm5;
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int128 xmm6;
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int128 xmm7;
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int128 xmm8;
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int128 xmm9;
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int128 xmm10;
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int128 xmm11;
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int128 xmm12;
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int128 xmm13;
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int128 xmm14;
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int128 xmm15;
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int128 nonce_stack;
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unsigned long long lensav;
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unsigned char bl[128];
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unsigned char *blp;
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unsigned char b;
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uint32 tmp;
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/* Copy nonce on the stack */
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copy2(&nonce_stack, (int128 *) (noncep + 0));
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unsigned char *np = (unsigned char *)&nonce_stack;
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enc_block:
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xmm0 = *(int128 *) (np + 0);
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copy2(&xmm1, &xmm0);
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shufb(&xmm1, SWAP32);
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copy2(&xmm2, &xmm1);
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copy2(&xmm3, &xmm1);
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copy2(&xmm4, &xmm1);
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copy2(&xmm5, &xmm1);
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copy2(&xmm6, &xmm1);
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copy2(&xmm7, &xmm1);
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add_uint32_big(&xmm1, 1);
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add_uint32_big(&xmm2, 2);
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add_uint32_big(&xmm3, 3);
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add_uint32_big(&xmm4, 4);
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add_uint32_big(&xmm5, 5);
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add_uint32_big(&xmm6, 6);
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add_uint32_big(&xmm7, 7);
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shufb(&xmm0, M0);
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shufb(&xmm1, M0SWAP);
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shufb(&xmm2, M0SWAP);
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shufb(&xmm3, M0SWAP);
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shufb(&xmm4, M0SWAP);
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shufb(&xmm5, M0SWAP);
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shufb(&xmm6, M0SWAP);
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shufb(&xmm7, M0SWAP);
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bitslice(xmm7, xmm6, xmm5, xmm4, xmm3, xmm2, xmm1, xmm0, xmm8)
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aesround( 1, xmm0, xmm1, xmm2, xmm3, xmm4, xmm5, xmm6, xmm7, xmm8, xmm9, xmm10, xmm11, xmm12, xmm13, xmm14, xmm15,c)
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aesround( 2, xmm8, xmm9, xmm10, xmm11, xmm12, xmm13, xmm14, xmm15, xmm0, xmm1, xmm2, xmm3, xmm4, xmm5, xmm6, xmm7,c)
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aesround( 3, xmm0, xmm1, xmm2, xmm3, xmm4, xmm5, xmm6, xmm7, xmm8, xmm9, xmm10, xmm11, xmm12, xmm13, xmm14, xmm15,c)
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aesround( 4, xmm8, xmm9, xmm10, xmm11, xmm12, xmm13, xmm14, xmm15, xmm0, xmm1, xmm2, xmm3, xmm4, xmm5, xmm6, xmm7,c)
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aesround( 5, xmm0, xmm1, xmm2, xmm3, xmm4, xmm5, xmm6, xmm7, xmm8, xmm9, xmm10, xmm11, xmm12, xmm13, xmm14, xmm15,c)
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aesround( 6, xmm8, xmm9, xmm10, xmm11, xmm12, xmm13, xmm14, xmm15, xmm0, xmm1, xmm2, xmm3, xmm4, xmm5, xmm6, xmm7,c)
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aesround( 7, xmm0, xmm1, xmm2, xmm3, xmm4, xmm5, xmm6, xmm7, xmm8, xmm9, xmm10, xmm11, xmm12, xmm13, xmm14, xmm15,c)
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aesround( 8, xmm8, xmm9, xmm10, xmm11, xmm12, xmm13, xmm14, xmm15, xmm0, xmm1, xmm2, xmm3, xmm4, xmm5, xmm6, xmm7,c)
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aesround( 9, xmm0, xmm1, xmm2, xmm3, xmm4, xmm5, xmm6, xmm7, xmm8, xmm9, xmm10, xmm11, xmm12, xmm13, xmm14, xmm15,c)
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lastround(xmm8, xmm9, xmm10, xmm11, xmm12, xmm13, xmm14, xmm15, xmm0, xmm1, xmm2, xmm3, xmm4, xmm5, xmm6, xmm7,c)
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bitslice(xmm13, xmm10, xmm15, xmm11, xmm14, xmm12, xmm9, xmm8, xmm0)
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if(len < 128) goto partial;
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if(len == 128) goto full;
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tmp = load32_bigendian(np + 12);
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tmp += 8;
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store32_bigendian(np + 12, tmp);
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*(int128 *) (outp + 0) = xmm8;
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*(int128 *) (outp + 16) = xmm9;
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*(int128 *) (outp + 32) = xmm12;
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*(int128 *) (outp + 48) = xmm14;
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*(int128 *) (outp + 64) = xmm11;
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*(int128 *) (outp + 80) = xmm15;
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*(int128 *) (outp + 96) = xmm10;
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*(int128 *) (outp + 112) = xmm13;
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len -= 128;
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outp += 128;
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goto enc_block;
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partial:
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lensav = len;
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len >>= 4;
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tmp = load32_bigendian(np + 12);
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tmp += len;
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store32_bigendian(np + 12, tmp);
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blp = bl;
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*(int128 *)(blp + 0) = xmm8;
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*(int128 *)(blp + 16) = xmm9;
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*(int128 *)(blp + 32) = xmm12;
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*(int128 *)(blp + 48) = xmm14;
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*(int128 *)(blp + 64) = xmm11;
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*(int128 *)(blp + 80) = xmm15;
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*(int128 *)(blp + 96) = xmm10;
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*(int128 *)(blp + 112) = xmm13;
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bytes:
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if(lensav == 0) goto end;
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b = blp[0];
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*(unsigned char *)(outp + 0) = b;
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blp += 1;
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outp +=1;
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lensav -= 1;
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goto bytes;
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full:
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tmp = load32_bigendian(np + 12);
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tmp += 8;
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store32_bigendian(np + 12, tmp);
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*(int128 *) (outp + 0) = xmm8;
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*(int128 *) (outp + 16) = xmm9;
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*(int128 *) (outp + 32) = xmm12;
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*(int128 *) (outp + 48) = xmm14;
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*(int128 *) (outp + 64) = xmm11;
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*(int128 *) (outp + 80) = xmm15;
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*(int128 *) (outp + 96) = xmm10;
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*(int128 *) (outp + 112) = xmm13;
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end:
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return 0;
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}
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