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/********************************************************************************/
/*										*/
/*		Structure definitions for the self-test				*/
/*			     Written by Ken Goldman				*/
/*		       IBM Thomas J. Watson Research Center			*/
/*            $Id: SelfTest.h 1594 2020-03-26 22:15:48Z kgoldman $		*/
/*										*/
/*  Licenses and Notices							*/
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/*  1. Copyright Licenses:							*/
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/*  (c) Copyright IBM Corp. and others, 2016 - 2020				*/
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/********************************************************************************/

#ifndef SELFTEST_H
#define SELFTEST_H

/* 10.1.10	SelfTest.h */
/* 10.1.10.1	Introduction */

/* This file contains the structure definitions for the self-test. It also contains macros for use
   when the self-test is implemented. */

#define SELF_TEST_FAILURE   FAIL(FATAL_ERROR_SELF_TEST)

// Use the definition of key sizes to set algorithm values for key size.

#define AES_ENTRIES (AES_128 + AES_192 + AES_256)
#define SM4_ENTRIES (SM4_128)
#define CAMELLIA_ENTRIES (CAMELLIA_128 + CAMELLIA_192 + CAMELLIA_256)
#define TDES_ENTRIES (TDES_128 * 2 + TDES_192 * 2) /* libtpms changed */
#define NUM_SYMS    (AES_ENTRIES + SM4_ENTRIES + CAMELLIA_ENTRIES + TDES_ENTRIES)
typedef UINT32      SYM_INDEX;

/* These two defines deal with the fact that the TPM_ALG_ID table does not delimit the symmetric
   mode values with a SYM_MODE_FIRST and SYM_MODE_LAST */

#define SYM_MODE_FIRST       ALG_CTR_VALUE
#define SYM_MODE_LAST        ALG_ECB_VALUE

#define NUM_SYM_MODES   (SYM_MODE_LAST - SYM_MODE_FIRST + 1)

/* Define a type to hold a bit vector for the modes. */
#if NUM_SYM_MODES <= 0
#error  "No symmetric modes implemented"
#elif NUM_SYM_MODES <= 8
typedef BYTE    SYM_MODES;
#elif NUM_SYM_MODES <= 16
typedef UINT16  SYM_MODES;
#elif NUM_SYM_MODES <= 32
typedef UINT32  SYM_MODES;
#else
#error "Too many symmetric modes"
#endif
typedef struct SYMMETRIC_TEST_VECTOR {
    const TPM_ALG_ID     alg;                   // the algorithm
    const UINT16         keyBits;               // bits in the key
    const BYTE          *key;                   // The test key
    const UINT32         ivSize;                // block size of the algorithm
    const UINT32         dataInOutSize;         // size  to encrypt/decrypt
    const BYTE          *dataIn;                // data to encrypt
    const BYTE          *dataOut[NUM_SYM_MODES];// data to decrypt
} SYMMETRIC_TEST_VECTOR;
#if ALG_SHA512
#       define  DEFAULT_TEST_HASH               ALG_SHA512_VALUE
#       define  DEFAULT_TEST_DIGEST_SIZE        SHA512_DIGEST_SIZE
#       define  DEFAULT_TEST_HASH_BLOCK_SIZE    SHA512_BLOCK_SIZE
#elif ALG_SHA384
#       define  DEFAULT_TEST_HASH               ALG_SHA384_VALUE
#       define  DEFAULT_TEST_DIGEST_SIZE        SHA384_DIGEST_SIZE
#       define  DEFAULT_TEST_HASH_BLOCK_SIZE    SHA384_BLOCK_SIZE
#elif ALG_SHA256
#       define  DEFAULT_TEST_HASH               ALG_SHA256_VALUE
#       define  DEFAULT_TEST_DIGEST_SIZE        SHA256_DIGEST_SIZE
#       define  DEFAULT_TEST_HASH_BLOCK_SIZE    SHA256_BLOCK_SIZE
#elif ALG_SHA1
#       define  DEFAULT_TEST_HASH               ALG_SHA1_VALUE
#       define  DEFAULT_TEST_DIGEST_SIZE        SHA1_DIGEST_SIZE
#       define  DEFAULT_TEST_HASH_BLOCK_SIZE    SHA1_BLOCK_SIZE
#endif


#endif