136 lines
5.8 KiB
C
136 lines
5.8 KiB
C
#ifndef __CRYPTDSA_
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#define __CRYPTDSA_
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#ifdef __cplusplus
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extern "C" {
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#endif
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#define SHA_BITS 160
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// Number of bits output by SHA
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#define SHA_DWORDS 5
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// Number of DWORDS output by SHA
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#define DSA_Q_MINDWORDS 5
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// Minimum number of DWORDS in q
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#define DSA_Q_MAXDWORDS 128
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// Maximum number of DWORDS in q
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#define DSA_P_MINDWORDS 16
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// Minimum number of DWORDS in p
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#define DSA_P_MAXDWORDS 128
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// Maximum number of DWORDS in p
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#define DSA_Q_MAXDIGITS DWORDS_TO_DIGITS(DSA_Q_MAXDWORDS)
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#define DSA_P_MAXDIGITS DWORDS_TO_DIGITS(DSA_P_MAXDWORDS)
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typedef struct {
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void *pInfo;
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void *pFuncRNG;
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} RNGINFO;
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typedef struct {
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DWORD nbitp; // Number of significant bits in p.
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// (Multiple of 64, 512 <= nbitp <= 1024)
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DWORD nbitq; // Number of significant bits in q.
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// Must be exactly 160.
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DWORD p[DSA_P_MAXDWORDS];// Public prime p, 512-1024 bits
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DWORD q[DSA_Q_MAXDWORDS];// Public prime q (160 bits, divides p-1)
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DWORD g[DSA_P_MAXDWORDS];// Public generator g of order q (mod p)
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DWORD j[DSA_P_MAXDWORDS];// j = (p - 1) / q
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DWORD y[DSA_P_MAXDWORDS];// Public value g^x (mod p), where x is private
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DWORD S[SHA_DWORDS]; // 160-bit pattern used to construct q
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DWORD C; // 12-bit value of C used to construct p
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} dsa_public_t;
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typedef struct {
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digit_t qdigit[DSA_Q_MAXDIGITS];
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DWORD lngq_digits; // Length of q in digits
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reciprocal_1_t qrecip; // Information about 1/q
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digit_t gmodular[DSA_P_MAXDIGITS];
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// g as residue mod p
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digit_t ymodular[DSA_P_MAXDIGITS];
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// y as residue mod p
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mp_modulus_t pmodulus; // Constants mod p
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} dsa_precomputed_t;
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typedef struct {
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dsa_public_t pub; // Public data
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DWORD x[DSA_P_MAXDWORDS];// Private exponent x (mod q)
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dsa_precomputed_t precomputed; // Precomputed public data
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} dsa_private_t;
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typedef struct {
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DWORD r[SHA_DWORDS]; // (g^k mod p) mod q
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DWORD s[SHA_DWORDS]; // (SHA(m) + x*r)/k mod q
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} dsa_signature_t;
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typedef struct {
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VOID *pOffload; // pointer to expo offload info
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FARPROC pFuncExpoOffload;
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RNGINFO *pRNGInfo; // pointer to RNG info
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} dsa_other_info;
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typedef const dsa_precomputed_t dsa_precomputed_tc;
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typedef const dsa_private_t dsa_private_tc;
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typedef const dsa_public_t dsa_public_tc;
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typedef const dsa_signature_t dsa_signature_tc;
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void DSA_gen_x(DWORDC cXDigits, // In
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DWORDC cXDwords, // In
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digit_t *pMod, // In
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dsa_other_info *pOtherInfo, // In
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DWORD *pdwX, // Out
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digit_t *pXDigit); // Out
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BOOL DSA_gen_x_and_y(BOOL fUseQ, // In
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dsa_other_info *pOtherInfo, // In
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dsa_private_t *privkey); // Out
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BOOL DSA_check_g(DWORDC lngp_digits, // In
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digit_tc *pGModular, // In
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mp_modulus_t *pPModulo, // In
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DWORDC lngq_digits, // In
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digit_tc *pQDigit); // In
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BOOL DSA_key_generation(DWORDC nbitp, // In
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DWORDC nbitq, // In
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dsa_other_info *pOtherInfo, // In
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dsa_private_t *privkey); // Out
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BOOL DSA_key_import_fillin(dsa_private_t *privkey); // In, Out
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BOOL DSA_precompute_pgy(dsa_public_tc *pubkey, // In
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dsa_precomputed_t *precomputed); // Out
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BOOL DSA_precompute(dsa_public_tc *pubkey, // In
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dsa_precomputed_t *precomputed, // Out
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const BOOL checkSC); // In
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BOOL DSA_sign(DWORDC message_hash[SHA_DWORDS], /* TBD */
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dsa_private_tc *privkey,
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dsa_signature_t *signature,
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dsa_other_info *pOtherInfo);
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BOOL DSA_signature_verification(DWORDC message_hash[SHA_DWORDS],
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dsa_public_tc *pubkey,
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dsa_precomputed_tc *precomputed_argument,
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dsa_signature_tc *signature,
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dsa_other_info *pOtherInfo);
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BOOL DSA_parameter_verification(
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dsa_public_tc *pPubkey,
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dsa_precomputed_tc *pPrecomputed
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);
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BOOL DSA_verify_j(
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dsa_public_tc *pPubkey,
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dsa_precomputed_tc *pPrecomputed
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);
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#ifdef __cplusplus
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}
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#endif
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#endif __CRYPTDSA_
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