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229 lines
5.0 KiB
229 lines
5.0 KiB
/*++
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Copyright (c) 1998 Microsoft Corporation
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Abstract:
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Build up a "Very Large Hash" based on arbitrary sized input data
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of size cbData specified by the pvData buffer.
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This implementation updates a 640bit hash, which is internally based on
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multiple invocations of a modified SHA-1 which doesn't implement endian
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conversion internally.
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Author:
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Scott Field (sfield) 24-Sep-98
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--*/
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#ifndef KMODE_RNG
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#include <nt.h>
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#include <ntrtl.h>
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#include <nturtl.h>
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#include <windows.h>
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#else
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#include <ntifs.h>
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#include <windef.h>
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#endif // KMODE_RNG
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#include <sha.h>
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#include "vlhash.h"
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#ifdef KMODE_RNG
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#ifdef ALLOC_PRAGMA
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#pragma alloc_text(PAGE, VeryLargeHashUpdate)
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#endif // ALLOC_PRAGMA
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#endif // KMODE_RNG
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BOOL
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VeryLargeHashUpdate(
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IN VOID *pvData, // data from perfcounters, user supplied, etc.
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IN DWORD cbData,
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IN OUT BYTE VeryLargeHash[A_SHA_DIGEST_LEN * 4]
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)
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{
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//
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// pointers to 1/4 size chunks of seed pointed to by VeryLargeHash
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//
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DWORD cbSeedChunk;
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PBYTE pSeed1;
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PBYTE pSeed2;
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PBYTE pSeed3;
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PBYTE pSeed4;
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//
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// pointers to 1/4 size chunks of data pointed to by pData
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//
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DWORD cbDataChunk;
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PBYTE pData1;
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PBYTE pData2;
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PBYTE pData3;
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PBYTE pData4;
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//
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// pointers to individual intermediate hash within IntermediateHashes
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//
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PBYTE IHash1;
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PBYTE IHash2;
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PBYTE IHash3;
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PBYTE IHash4;
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BYTE IntermediateHashes[ A_SHA_DIGEST_LEN * 4 ];
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//
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// pointer to output hash within VeryLargeHash buffer.
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//
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PBYTE OutputHash;
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A_SHA_CTX shaContext;
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#ifdef KMODE_RNG
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PAGED_CODE();
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#endif // KMODE_RNG
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//
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// check parameters
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//
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if( VeryLargeHash == NULL || pvData == NULL )
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return FALSE;
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//
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// break up input blocks into 1/4 size chunks.
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//
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cbSeedChunk = A_SHA_DIGEST_LEN;
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cbDataChunk = cbData / 4;
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if( cbDataChunk == 0 )
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return FALSE;
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pSeed1 = VeryLargeHash;
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pSeed2 = pSeed1 + cbSeedChunk;
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pData1 = (PBYTE)pvData;
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pData2 = pData1 + cbDataChunk;
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IHash1 = IntermediateHashes;
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IHash2 = IHash1 + A_SHA_DIGEST_LEN;
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//
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// round 1
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//
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A_SHAInit( &shaContext );
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A_SHAUpdateNS( &shaContext, pSeed1, cbSeedChunk );
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A_SHAUpdateNS( &shaContext, pData1, cbDataChunk );
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A_SHAUpdateNS( &shaContext, pSeed2, cbSeedChunk );
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A_SHAUpdateNS( &shaContext, pData2, cbDataChunk );
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A_SHAFinalNS( &shaContext, IHash1 );
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//
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// round 2
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//
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A_SHAInit( &shaContext );
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A_SHAUpdateNS( &shaContext, pSeed2, cbSeedChunk );
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A_SHAUpdateNS( &shaContext, pData2, cbDataChunk );
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A_SHAUpdateNS( &shaContext, pSeed1, cbSeedChunk );
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A_SHAUpdateNS( &shaContext, pData1, cbDataChunk );
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A_SHAFinalNS( &shaContext, IHash2 );
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pSeed3 = pSeed2 + cbSeedChunk;
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pSeed4 = pSeed3 + cbSeedChunk;
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pData3 = pData2 + cbDataChunk;
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pData4 = pData3 + cbDataChunk;
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IHash3 = IHash2 + A_SHA_DIGEST_LEN;
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IHash4 = IHash3 + A_SHA_DIGEST_LEN;
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//
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// round 3
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//
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A_SHAInit( &shaContext );
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A_SHAUpdateNS( &shaContext, pSeed3, cbSeedChunk );
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A_SHAUpdateNS( &shaContext, pData3, cbDataChunk );
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A_SHAUpdateNS( &shaContext, pSeed4, cbSeedChunk );
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A_SHAUpdateNS( &shaContext, pData4, cbDataChunk );
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A_SHAFinalNS( &shaContext, IHash3 );
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//
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// round 4
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//
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A_SHAInit( &shaContext );
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A_SHAUpdateNS( &shaContext, pSeed4, cbSeedChunk );
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A_SHAUpdateNS( &shaContext, pData4, cbDataChunk );
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A_SHAUpdateNS( &shaContext, pSeed3, cbSeedChunk );
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A_SHAUpdateNS( &shaContext, pData3, cbDataChunk );
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A_SHAFinalNS( &shaContext, IHash4 );
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//
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// round 5
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//
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OutputHash = VeryLargeHash;
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A_SHAInit( &shaContext );
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A_SHAUpdateNS( &shaContext, IHash1, A_SHA_DIGEST_LEN );
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A_SHAUpdateNS( &shaContext, IHash3, A_SHA_DIGEST_LEN );
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A_SHAFinalNS( &shaContext, OutputHash );
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//
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// round 6
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//
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OutputHash += A_SHA_DIGEST_LEN;
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A_SHAInit( &shaContext );
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A_SHAUpdateNS( &shaContext, IHash2, A_SHA_DIGEST_LEN );
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A_SHAUpdateNS( &shaContext, IHash4, A_SHA_DIGEST_LEN );
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A_SHAFinalNS( &shaContext, OutputHash );
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//
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// round 7
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//
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OutputHash += A_SHA_DIGEST_LEN;
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A_SHAInit( &shaContext );
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A_SHAUpdateNS( &shaContext, IHash3, A_SHA_DIGEST_LEN );
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A_SHAUpdateNS( &shaContext, IHash1, A_SHA_DIGEST_LEN );
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A_SHAFinalNS( &shaContext, OutputHash );
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//
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// round 8
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//
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OutputHash += A_SHA_DIGEST_LEN;
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A_SHAInit( &shaContext );
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A_SHAUpdateNS( &shaContext, IHash4, A_SHA_DIGEST_LEN );
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A_SHAUpdateNS( &shaContext, IHash2, A_SHA_DIGEST_LEN );
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A_SHAFinalNS( &shaContext, OutputHash );
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RtlSecureZeroMemory( &shaContext, sizeof(shaContext) );
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RtlSecureZeroMemory( IntermediateHashes, sizeof(IntermediateHashes) );
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return TRUE;
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}
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