26a4f42506
Avoid different optimization flags for Dedupe sources. Fix liberal mixing of uint64_t and int64_t (should all be uint64_t). Fix corner case crash when decompressing.
115 lines
5 KiB
C
115 lines
5 KiB
C
/***********************************************************************
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**
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** Implementation of the AHS API using the Skein hash function.
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**
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** Source code author: Doug Whiting, 2008.
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**
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** This algorithm and source code is released to the public domain.
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**
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************************************************************************/
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#include <string.h> /* get the memcpy/memset functions */
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#include "skein.h" /* get the Skein API definitions */
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#include "SHA3api_ref.h"/* get the AHS API definitions */
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/******************************************************************/
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/* AHS API code */
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/******************************************************************/
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/*++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/
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/* select the context size and init the context */
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HashReturn Init(hashState *state, int hashbitlen)
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{
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#if SKEIN_256_NIST_MAX_HASH_BITS
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if (hashbitlen <= SKEIN_256_NIST_MAX_HASHBITS)
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{
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Skein_Assert(hashbitlen > 0,BAD_HASHLEN);
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state->statebits = 64*SKEIN_256_STATE_WORDS;
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return (HashReturn)Skein_256_Init(&state->u.ctx_256,(size_t) hashbitlen);
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}
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#endif
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if (hashbitlen <= SKEIN_512_NIST_MAX_HASHBITS)
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{
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state->statebits = 64*SKEIN_512_STATE_WORDS;
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return (HashReturn)Skein_512_Init(&state->u.ctx_512,(size_t) hashbitlen);
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}
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else
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{
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state->statebits = 64*SKEIN1024_STATE_WORDS;
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return (HashReturn)Skein1024_Init(&state->u.ctx1024,(size_t) hashbitlen);
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}
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}
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/*++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/
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/* process data to be hashed */
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HashReturn Update(hashState *state, const BitSequence *data, DataLength databitlen)
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{
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/* only the final Update() call is allowed do partial bytes, else assert an error */
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Skein_Assert((state->u.h.T[1] & SKEIN_T1_FLAG_BIT_PAD) == 0 || databitlen == 0, FAIL);
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Skein_Assert(state->statebits % 256 == 0 && (state->statebits-256) < 1024,FAIL);
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if ((databitlen & 7) == 0) /* partial bytes? */
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{
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switch ((state->statebits >> 8) & 3)
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{
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case 2: return (HashReturn)Skein_512_Update(&state->u.ctx_512,data,databitlen >> 3);
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case 1: return (HashReturn)Skein_256_Update(&state->u.ctx_256,data,databitlen >> 3);
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case 0: return (HashReturn)Skein1024_Update(&state->u.ctx1024,data,databitlen >> 3);
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default: return FAIL;
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}
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}
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else
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{ /* handle partial final byte */
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size_t bCnt = (databitlen >> 3) + 1; /* number of bytes to handle (nonzero here!) */
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u08b_t b,mask;
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mask = (u08b_t) (1u << (7 - (databitlen & 7))); /* partial byte bit mask */
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b = (u08b_t) ((data[bCnt-1] & (0-mask)) | mask); /* apply bit padding on final byte */
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switch ((state->statebits >> 8) & 3)
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{
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case 2: Skein_512_Update(&state->u.ctx_512,data,bCnt-1); /* process all but the final byte */
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Skein_512_Update(&state->u.ctx_512,&b , 1 ); /* process the (masked) partial byte */
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break;
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case 1: Skein_256_Update(&state->u.ctx_256,data,bCnt-1); /* process all but the final byte */
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Skein_256_Update(&state->u.ctx_256,&b , 1 ); /* process the (masked) partial byte */
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break;
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case 0: Skein1024_Update(&state->u.ctx1024,data,bCnt-1); /* process all but the final byte */
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Skein1024_Update(&state->u.ctx1024,&b , 1 ); /* process the (masked) partial byte */
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break;
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default: return FAIL;
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}
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Skein_Set_Bit_Pad_Flag(state->u.h); /* set tweak flag for the final call */
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return SUCCESS;
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}
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}
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/*++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/
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/* finalize hash computation and output the result (hashbitlen bits) */
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HashReturn Final(hashState *state, BitSequence *hashval)
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{
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Skein_Assert(state->statebits % 256 == 0 && (state->statebits-256) < 1024,FAIL);
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switch ((state->statebits >> 8) & 3)
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{
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case 2: return (HashReturn)Skein_512_Final(&state->u.ctx_512,hashval);
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case 1: return (HashReturn)Skein_256_Final(&state->u.ctx_256,hashval);
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case 0: return (HashReturn)Skein1024_Final(&state->u.ctx1024,hashval);
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default: return FAIL;
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}
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}
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/*++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/
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/* all-in-one hash function */
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HashReturn Hash(int hashbitlen, const BitSequence *data, /* all-in-one call */
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DataLength databitlen,BitSequence *hashval)
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{
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hashState state;
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HashReturn r = Init(&state,hashbitlen);
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if (r == SUCCESS)
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{ /* these calls do not fail when called properly */
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r = Update(&state,data,databitlen);
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Final(&state,hashval);
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}
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return r;
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}
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