/*
* PKCS #11 FIPS Power-Up Self Test.
*
* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
#ifndef NSS_FIPS_DISABLED
#include "seccomon.h"
#include "blapi.h"
#include "softoken.h"
#include "lowkeyi.h"
#include "secoid.h"
#include "secerr.h"
#include "pkcs11i.h"
#include "lowpbe.h"
/*
* different platforms have different ways of calling and initial entry point
* when the dll/.so is loaded. Most platforms support either a posix pragma
* or the GCC attribute. Some platforms suppor a pre-defined name, and some
* platforms have a link line way of invoking this function.
*/
/* The pragma */
#if defined (USE_INIT_PRAGMA)
#pragma init(sftk_startup_tests)
#endif
/* GCC Attribute */
#if defined (__GNUC__) && !
defined (NSS_NO_INIT_SUPPORT)
#define INIT_FUNCTION __attribute__((constructor))
#else
#define INIT_FUNCTION
#endif
static void INIT_FUNCTION sftk_startup_tests(
void );
/* Windows pre-defined entry */
#if defined (XP_WIN) && !
defined (NSS_NO_INIT_SUPPORT)
#include <windows.h>
BOOL WINAPI
DllMain(
HINSTANCE hinstDLL,
// handle to DLL module
DWORD fdwReason,
// reason for calling function
LPVOID lpReserved)
// reserved
{
// Perform actions based on the reason for calling.
switch (fdwReason) {
case DLL_PROCESS_ATTACH:
// Initialize once for each new process.
// Return FALSE to fail DLL load.
sftk_startup_tests();
break ;
case DLL_THREAD_ATTACH:
// Do thread-specific initialization.
break ;
case DLL_THREAD_DETACH:
// Do thread-specific cleanup.
break ;
case DLL_PROCESS_DETACH:
// Perform any necessary cleanup.
break ;
}
return TRUE ;
// Successful DLL_PROCESS_ATTACH.
}
#endif
/* FIPS preprocessor directives for RSA. */
#define FIPS_RSA_TYPE siBuffer
#define FIPS_RSA_PUBLIC_EXPONENT_LENGTH
3 /* 24-bits */
#define FIPS_RSA_PRIVATE_VERSION_LENGTH
1 /* 8-bits */
#define FIPS_RSA_MESSAGE_LENGTH
256 /* 2048-bits */
#define FIPS_RSA_COEFFICIENT_LENGTH
128 /* 1024-bits */
#define FIPS_RSA_PRIME0_LENGTH
128 /* 1024-bits */
#define FIPS_RSA_PRIME1_LENGTH
128 /* 1024-bits */
#define FIPS_RSA_EXPONENT0_LENGTH
128 /* 1024-bits */
#define FIPS_RSA_EXPONENT1_LENGTH
128 /* 1024-bits */
#define FIPS_RSA_PRIVATE_EXPONENT_LENGTH
256 /* 2048-bits */
#define FIPS_RSA_ENCRYPT_LENGTH
256 /* 2048-bits */
#define FIPS_RSA_DECRYPT_LENGTH
256 /* 2048-bits */
#define FIPS_RSA_SIGNATURE_LENGTH
256 /* 2048-bits */
#define FIPS_RSA_MODULUS_LENGTH
256 /* 2048-bits */
/*
* Test the softoken RSA_HashSign and RSH_HashCheckSign.
*/
static SECStatus
sftk_fips_RSA_PowerUpSigSelfTest(HASH_HashType shaAlg,
NSSLOWKEYPublicKey *rsa_public_key,
NSSLOWKEYPrivateKey *rsa_private_key,
const unsigned char *rsa_known_msg,
const unsigned int rsa_kmsg_length,
const unsigned char *rsa_known_signature)
{
SECOidTag shaOid;
/* SHA OID */
unsigned char sha[HASH_LENGTH_MAX];
/* SHA digest */
unsigned int shaLength =
0 ;
/* length of SHA */
unsigned int rsa_bytes_signed;
unsigned char rsa_computed_signature[FIPS_RSA_SIGNATURE_LENGTH];
SECStatus rv;
if (shaAlg == HASH_AlgSHA1) {
if (SHA1_HashBuf(sha, rsa_known_msg, rsa_kmsg_length) != SECSuccess) {
goto loser;
}
shaLength = SHA1_LENGTH;
shaOid = SEC_OID_SHA1;
}
else if (shaAlg == HASH_AlgSHA256) {
if (SHA256_HashBuf(sha, rsa_known_msg, rsa_kmsg_length) != SECSuccess) {
goto loser;
}
shaLength = SHA256_LENGTH;
shaOid = SEC_OID_SHA256;
}
else if (shaAlg == HASH_AlgSHA384) {
if (SHA384_HashBuf(sha, rsa_known_msg, rsa_kmsg_length) != SECSuccess) {
goto loser;
}
shaLength = SHA384_LENGTH;
shaOid = SEC_OID_SHA384;
}
else if (shaAlg == HASH_AlgSHA512) {
if (SHA512_HashBuf(sha, rsa_known_msg, rsa_kmsg_length) != SECSuccess) {
goto loser;
}
shaLength = SHA512_LENGTH;
shaOid = SEC_OID_SHA512;
}
else {
goto loser;
}
/*************************************************/
/* RSA Single-Round Known Answer Signature Test. */
/*************************************************/
/* Perform RSA signature with the RSA private key. */
rv = RSA_HashSign(shaOid,
rsa_private_key,
rsa_computed_signature,
&rsa_bytes_signed,
FIPS_RSA_SIGNATURE_LENGTH,
sha,
shaLength);
if ((rv != SECSuccess) ||
(rsa_bytes_signed != FIPS_RSA_SIGNATURE_LENGTH) ||
(PORT_Memcmp(rsa_computed_signature, rsa_known_signature,
FIPS_RSA_SIGNATURE_LENGTH) !=
0 )) {
goto loser;
}
/****************************************************/
/* RSA Single-Round Known Answer Verification Test. */
/****************************************************/
/* Perform RSA verification with the RSA public key. */
rv = RSA_HashCheckSign(shaOid,
rsa_public_key,
rsa_computed_signature,
rsa_bytes_signed,
sha,
shaLength);
if (rv != SECSuccess) {
goto loser;
}
return (SECSuccess);
loser:
return (SECFailure);
}
static SECStatus
sftk_fips_RSA_PowerUpSelfTest(
void )
{
/* RSA Known Modulus used in both Public/Private Key Values (2048-bits). */
static const PRUint8 rsa_modulus[FIPS_RSA_MODULUS_LENGTH] = {
0 xb8,
0 x15,
0 x00,
0 x33,
0 xda,
0 x0c,
0 x9d,
0 xa5,
0 x14,
0 x8c,
0 xde,
0 x1f,
0 x23,
0 x07,
0 x54,
0 xe2,
0 xc6,
0 xb9,
0 x51,
0 x04,
0 xc9,
0 x65,
0 x24,
0 x6e,
0 x0a,
0 x46,
0 x34,
0 x5c,
0 x37,
0 x86,
0 x6b,
0 x88,
0 x24,
0 x27,
0 xac,
0 xa5,
0 x02,
0 x79,
0 xfb,
0 xed,
0 x75,
0 xc5,
0 x3f,
0 x6e,
0 xdf,
0 x05,
0 x5f,
0 x0f,
0 x20,
0 x70,
0 xa0,
0 x5b,
0 x85,
0 xdb,
0 xac,
0 xb9,
0 x5f,
0 x02,
0 xc2,
0 x64,
0 x1e,
0 x84,
0 x5b,
0 x3e,
0 xad,
0 xbf,
0 xf6,
0 x2e,
0 x51,
0 xd6,
0 xad,
0 xf7,
0 xa7,
0 x86,
0 x75,
0 x86,
0 xec,
0 xa7,
0 xe1,
0 xf7,
0 x08,
0 xbf,
0 xdc,
0 x56,
0 xb1,
0 x3b,
0 xca,
0 xd8,
0 xfc,
0 x51,
0 xdf,
0 x9a,
0 x2a,
0 x37,
0 x06,
0 xf2,
0 xd1,
0 x6b,
0 x9a,
0 x5e,
0 x2a,
0 xe5,
0 x20,
0 x57,
0 x35,
0 x9f,
0 x1f,
0 x98,
0 xcf,
0 x40,
0 xc7,
0 xd6,
0 x98,
0 xdb,
0 xde,
0 xf5,
0 x64,
0 x53,
0 xf7,
0 x9d,
0 x45,
0 xf3,
0 xd6,
0 x78,
0 xb9,
0 xe3,
0 xa3,
0 x20,
0 xcd,
0 x79,
0 x43,
0 x35,
0 xef,
0 xd7,
0 xfb,
0 xb9,
0 x80,
0 x88,
0 x27,
0 x2f,
0 x63,
0 xa8,
0 x67,
0 x3d,
0 x4a,
0 xfa,
0 x06,
0 xc6,
0 xd2,
0 x86,
0 x0b,
0 xa7,
0 x28,
0 xfd,
0 xe0,
0 x1e,
0 x93,
0 x4b,
0 x17,
0 x2e,
0 xb0,
0 x11,
0 x6f,
0 xc6,
0 x2b,
0 x98,
0 x0f,
0 x15,
0 xe3,
0 x87,
0 x16,
0 x7a,
0 x7c,
0 x67,
0 x3e,
0 x12,
0 x2b,
0 xf8,
0 xbe,
0 x48,
0 xc1,
0 x97,
0 x47,
0 xf4,
0 x1f,
0 x81,
0 x80,
0 x12,
0 x28,
0 xe4,
0 x7b,
0 x1e,
0 xb7,
0 x00,
0 xa4,
0 xde,
0 xaa,
0 xfb,
0 x0f,
0 x77,
0 x84,
0 xa3,
0 xd6,
0 xb2,
0 x03,
0 x48,
0 xdd,
0 x53,
0 x8b,
0 x46,
0 x41,
0 x28,
0 x52,
0 xc4,
0 x53,
0 xf0,
0 x1c,
0 x95,
0 xd9,
0 x36,
0 xe0,
0 x0f,
0 x26,
0 x46,
0 x9c,
0 x61,
0 x0e,
0 x80,
0 xca,
0 x86,
0 xaf,
0 x39,
0 x95,
0 xe5,
0 x60,
0 x43,
0 x61,
0 x3e,
0 x2b,
0 xb4,
0 xe8,
0 xbd,
0 x8d,
0 x77,
0 x62,
0 xf5,
0 x32,
0 x43,
0 x2f,
0 x4b,
0 x65,
0 x82,
0 x14,
0 xdd,
0 x29,
0 x5b
};
/* RSA Known Public Key Values (24-bits). */
static const PRUint8 rsa_public_exponent[FIPS_RSA_PUBLIC_EXPONENT_LENGTH] = {
0 x01,
0 x0
0, 0 x01 };
/* RSA Known Private Key Values (version is 8-bits), */
/* (private exponent is 2048-bits), */
/* (private prime0 is 1024-bits), */
/* (private prime1 is 1024-bits), */
/* (private prime exponent0 is 1024-bits), */
/* (private prime exponent1 is 1024-bits), */
/* and (private coefficient is 1024-bits). */
static const PRUint8 rsa_version[] = { 0 x00 };
static const PRUint8 rsa_private_exponent[FIPS_RSA_PRIVATE_EXPONENT_LENGTH] = {
0 x29, 0 x08, 0 x05, 0 x53, 0 x89, 0 x76, 0 xe6, 0 x6c,
0 xb5, 0 x77, 0 xf0, 0 xca, 0 xdf, 0 xf3, 0 xf2, 0 x67,
0 xda, 0 x03, 0 xd4, 0 x9b, 0 x4c, 0 x88, 0 xce, 0 xe5,
0 xf8, 0 x44, 0 x4d, 0 xc7, 0 x80, 0 x58, 0 xe5, 0 xff,
0 x22, 0 x8f, 0 xf5, 0 x5b, 0 x92, 0 x81, 0 xbe, 0 x35,
0 xdf, 0 xda, 0 x67, 0 x99, 0 x3e, 0 xfc, 0 xe3, 0 x83,
0 x6b, 0 xa7, 0 xaf, 0 x16, 0 xb7, 0 x6f, 0 x8f, 0 xc0,
0 x81, 0 xfd, 0 x0b, 0 x77, 0 x65, 0 x95, 0 xfb, 0 x00,
0 xad, 0 x99, 0 xec, 0 x35, 0 xc6, 0 xe8, 0 x23, 0 x3e,
0 xe0, 0 x88, 0 x88, 0 x09, 0 xdb, 0 x16, 0 x50, 0 xb7,
0 xcf, 0 xab, 0 x74, 0 x61, 0 x9e, 0 x7f, 0 xc5, 0 x67,
0 x38, 0 x56, 0 xc7, 0 x90, 0 x85, 0 x78, 0 x5e, 0 x84,
0 x21, 0 x49, 0 xea, 0 xce, 0 xb2, 0 xa0, 0 xff, 0 xe4,
0 x70, 0 x7f, 0 x57, 0 x7b, 0 xa8, 0 x36, 0 xb8, 0 x54,
0 x8d, 0 x1d, 0 xf5, 0 x44, 0 x9d, 0 x68, 0 x59, 0 xf9,
0 x24, 0 x6e, 0 x85, 0 x8f, 0 xc3, 0 x5f, 0 x8a, 0 x2c,
0 x94, 0 xb7, 0 xbc, 0 x0e, 0 xa5, 0 xef, 0 x93, 0 x06,
0 x38, 0 xcd, 0 x07, 0 x0c, 0 xae, 0 xb8, 0 x44, 0 x1a,
0 xd8, 0 xe7, 0 xf5, 0 x9a, 0 x1e, 0 x9c, 0 x18, 0 xc7,
0 x6a, 0 xc2, 0 x7f, 0 x28, 0 x01, 0 x4f, 0 xb4, 0 xb8,
0 x90, 0 x97, 0 x5a, 0 x43, 0 x38, 0 xad, 0 xe8, 0 x95,
0 x68, 0 x83, 0 x1a, 0 x1b, 0 x10, 0 x07, 0 xe6, 0 x02,
0 x52, 0 x1f, 0 xbf, 0 x76, 0 x6b, 0 x46, 0 xd6, 0 xfb,
0 xc3, 0 xbe, 0 xb5, 0 xac, 0 x52, 0 x53, 0 x01, 0 x1c,
0 xf3, 0 xc5, 0 xeb, 0 x64, 0 xf2, 0 x1e, 0 xc4, 0 x38,
0 xe9, 0 xaa, 0 xd9, 0 xc3, 0 x72, 0 x51, 0 xa5, 0 x44,
0 x58, 0 x69, 0 x0b, 0 x1b, 0 x98, 0 x7f, 0 xf2, 0 x23,
0 xff, 0 xeb, 0 xf0, 0 x75, 0 x24, 0 xcf, 0 xc5, 0 x1e,
0 xb8, 0 x6a, 0 xc5, 0 x2f, 0 x4f, 0 x23, 0 x50, 0 x7d,
0 x15, 0 x9d, 0 x19, 0 x7a, 0 x0b, 0 x82, 0 xe0, 0 x21,
0 x5b, 0 x5f, 0 x9d, 0 x50, 0 x2b, 0 x83, 0 xe4, 0 x48,
0 xcc, 0 x39, 0 xe5, 0 xfb, 0 x13, 0 x7b, 0 x6f, 0 x81
};
static const PRUint8 rsa_prime0[FIPS_RSA_PRIME0_LENGTH] = {
0 xe4, 0 xbf, 0 x21, 0 x62, 0 x9b, 0 xa9, 0 x77, 0 x40,
0 x8d, 0 x2a, 0 xce, 0 xa1, 0 x67, 0 x5a, 0 x4c, 0 x96,
0 x45, 0 x98, 0 x67, 0 xbd, 0 x75, 0 x22, 0 x33, 0 x6f,
0 xe6, 0 xcb, 0 x77, 0 xde, 0 x9e, 0 x97, 0 x7d, 0 x96,
0 x8c, 0 x5e, 0 x5d, 0 x34, 0 xfb, 0 x27, 0 xfc, 0 x6d,
0 x74, 0 xdb, 0 x9d, 0 x2e, 0 x6d, 0 xf6, 0 xea, 0 xfc,
0 xce, 0 x9e, 0 xda, 0 xa7, 0 x25, 0 xa2, 0 xf4, 0 x58,
0 x6d, 0 x0a, 0 x3f, 0 x01, 0 xc2, 0 xb4, 0 xab, 0 x38,
0 xc1, 0 x14, 0 x85, 0 xb6, 0 xfa, 0 x94, 0 xc3, 0 x85,
0 xf9, 0 x3c, 0 x2e, 0 x96, 0 x56, 0 x01, 0 xe7, 0 xd6,
0 x14, 0 x71, 0 x4f, 0 xfb, 0 x4c, 0 x85, 0 x52, 0 xc4,
0 x61, 0 x1e, 0 xa5, 0 x1e, 0 x96, 0 x13, 0 x0d, 0 x8f,
0 x66, 0 xae, 0 xa0, 0 xcd, 0 x7d, 0 x25, 0 x66, 0 x19,
0 x15, 0 xc2, 0 xcf, 0 xc3, 0 x12, 0 x3c, 0 xe8, 0 xa4,
0 x52, 0 x4c, 0 xcb, 0 x28, 0 x3c, 0 xc4, 0 xbf, 0 x95,
0 x33, 0 xe3, 0 x81, 0 xea, 0 x0c, 0 x6c, 0 xa2, 0 x05
};
static const PRUint8 rsa_prime1[FIPS_RSA_PRIME1_LENGTH] = {
0 xce, 0 x03, 0 x94, 0 xf4, 0 xa9, 0 x2c, 0 x1e, 0 x06,
0 xe7, 0 x40, 0 x30, 0 x01, 0 xf7, 0 xbb, 0 x68, 0 x8c,
0 x27, 0 xd2, 0 x15, 0 xe3, 0 x28, 0 x49, 0 x5b, 0 xa8,
0 xc1, 0 x9a, 0 x42, 0 x7e, 0 x31, 0 xf9, 0 x08, 0 x34,
0 x81, 0 xa2, 0 x0f, 0 x04, 0 x61, 0 x34, 0 xe3, 0 x36,
0 x92, 0 xb1, 0 x09, 0 x2b, 0 xe9, 0 xef, 0 x84, 0 x88,
0 xbe, 0 x9c, 0 x98, 0 x60, 0 xa6, 0 x60, 0 x84, 0 xe9,
0 x75, 0 x6f, 0 xcc, 0 x81, 0 xd1, 0 x96, 0 xef, 0 xdd,
0 x2e, 0 xca, 0 xc4, 0 xf5, 0 x42, 0 xfb, 0 x13, 0 x2b,
0 x57, 0 xbf, 0 x14, 0 x5e, 0 xc2, 0 x7f, 0 x77, 0 x35,
0 x29, 0 xc4, 0 xe5, 0 xe0, 0 xf9, 0 x6d, 0 x15, 0 x4a,
0 x42, 0 x56, 0 x1c, 0 x3e, 0 x0c, 0 xc5, 0 xce, 0 x70,
0 x08, 0 x63, 0 x1e, 0 x73, 0 xdb, 0 x7e, 0 x74, 0 x05,
0 x32, 0 x01, 0 xc6, 0 x36, 0 x32, 0 x75, 0 x6b, 0 xed,
0 x9d, 0 xfe, 0 x7c, 0 x7e, 0 xa9, 0 x57, 0 xb4, 0 xe9,
0 x22, 0 xe4, 0 xe7, 0 xfe, 0 x36, 0 x07, 0 x9b, 0 xdf
};
static const PRUint8 rsa_exponent0[FIPS_RSA_EXPONENT0_LENGTH] = {
0 x04, 0 x5a, 0 x3a, 0 xa9, 0 x64, 0 xaa, 0 xd9, 0 xd1,
0 x09, 0 x9e, 0 x99, 0 xe5, 0 xea, 0 x50, 0 x86, 0 x8a,
0 x89, 0 x72, 0 x77, 0 xee, 0 xdb, 0 xee, 0 xb5, 0 xa9,
0 xd8, 0 x6b, 0 x60, 0 xb1, 0 x84, 0 xb4, 0 xff, 0 x37,
0 xc1, 0 x1d, 0 xfe, 0 x8a, 0 x06, 0 x89, 0 x61, 0 x3d,
0 x37, 0 xef, 0 x01, 0 xd3, 0 xa3, 0 x56, 0 x02, 0 x6c,
0 xa3, 0 x05, 0 xd4, 0 xc5, 0 x3f, 0 x6b, 0 x15, 0 x59,
0 x25, 0 x61, 0 xff, 0 x86, 0 xea, 0 x0c, 0 x84, 0 x01,
0 x85, 0 x72, 0 xfd, 0 x84, 0 x58, 0 xca, 0 x41, 0 xda,
0 x27, 0 xbe, 0 xe4, 0 x68, 0 x09, 0 xe4, 0 xe9, 0 x63,
0 x62, 0 x6a, 0 x31, 0 x8a, 0 x67, 0 x8f, 0 x55, 0 xde,
0 xd4, 0 xb6, 0 x3f, 0 x90, 0 x10, 0 x6c, 0 xf6, 0 x62,
0 x17, 0 x23, 0 x15, 0 x7e, 0 x33, 0 x76, 0 x65, 0 xb5,
0 xee, 0 x7b, 0 x11, 0 x76, 0 xf5, 0 xbe, 0 xe0, 0 xf2,
0 x57, 0 x7a, 0 x8c, 0 x97, 0 x0c, 0 x68, 0 xf5, 0 xf8,
0 x41, 0 xcf, 0 x7f, 0 x66, 0 x53, 0 xac, 0 x31, 0 x7d
};
static const PRUint8 rsa_exponent1[FIPS_RSA_EXPONENT1_LENGTH] = {
0 x93, 0 x54, 0 x14, 0 x6e, 0 x73, 0 x9d, 0 x4d, 0 x4b,
0 xfa, 0 x8c, 0 xf8, 0 xc8, 0 x2f, 0 x76, 0 x22, 0 xea,
0 x38, 0 x80, 0 x11, 0 x8f, 0 x05, 0 xfc, 0 x90, 0 x44,
0 x3b, 0 x50, 0 x2a, 0 x45, 0 x3d, 0 x4f, 0 xaf, 0 x02,
0 x7d, 0 xc2, 0 x7b, 0 xa2, 0 xd2, 0 x31, 0 x94, 0 x5c,
0 x2e, 0 xc3, 0 xd4, 0 x9f, 0 x47, 0 x09, 0 x37, 0 x6a,
0 xe3, 0 x85, 0 xf1, 0 xa3, 0 x0c, 0 xd8, 0 xf1, 0 xb4,
0 x53, 0 x7b, 0 xc4, 0 x71, 0 x02, 0 x86, 0 x42, 0 xbb,
0 x96, 0 xff, 0 x03, 0 xa3, 0 xb2, 0 x67, 0 x03, 0 xea,
0 x77, 0 x31, 0 xfb, 0 x4b, 0 x59, 0 x24, 0 xf7, 0 x07,
0 x59, 0 xfb, 0 xa9, 0 xba, 0 x1e, 0 x26, 0 x58, 0 x97,
0 x66, 0 xa1, 0 x56, 0 x49, 0 x39, 0 xb1, 0 x2c, 0 x55,
0 x0a, 0 x6a, 0 x78, 0 x18, 0 xba, 0 xdb, 0 xcf, 0 xf4,
0 xf7, 0 x32, 0 x35, 0 xa2, 0 x04, 0 xab, 0 xdc, 0 xa7,
0 x6d, 0 xd9, 0 xd5, 0 x06, 0 x6f, 0 xec, 0 x7d, 0 x40,
0 x4c, 0 xe8, 0 x0e, 0 xd0, 0 xc9, 0 xaa, 0 xdf, 0 x59
};
static const PRUint8 rsa_coefficient[FIPS_RSA_COEFFICIENT_LENGTH] = {
0 x17, 0 xd7, 0 xf5, 0 x0a, 0 xf0, 0 x68, 0 x97, 0 x96,
0 xc4, 0 x29, 0 x18, 0 x77, 0 x9a, 0 x1f, 0 xe3, 0 xf3,
0 x12, 0 x13, 0 x0f, 0 x7e, 0 x7b, 0 xb9, 0 xc1, 0 x91,
0 xf9, 0 xc7, 0 x08, 0 x56, 0 x5c, 0 xa4, 0 xbc, 0 x83,
0 x71, 0 xf9, 0 x78, 0 xd9, 0 x2b, 0 xec, 0 xfe, 0 x6b,
0 xdc, 0 x2f, 0 x63, 0 xc9, 0 xcd, 0 x50, 0 x14, 0 x5b,
0 xd3, 0 x6e, 0 x85, 0 x4d, 0 x0c, 0 xa2, 0 x0b, 0 xa0,
0 x09, 0 xb6, 0 xca, 0 x34, 0 x9c, 0 xc2, 0 xc1, 0 x4a,
0 xb0, 0 xbc, 0 x45, 0 x93, 0 xa5, 0 x7e, 0 x99, 0 xb5,
0 xbd, 0 xe4, 0 x69, 0 x29, 0 x08, 0 x28, 0 xd2, 0 xcd,
0 xab, 0 x24, 0 x78, 0 x48, 0 x41, 0 x26, 0 x0b, 0 x37,
0 xa3, 0 x43, 0 xd1, 0 x95, 0 x1a, 0 xd6, 0 xee, 0 x22,
0 x1c, 0 x00, 0 x0b, 0 xc2, 0 xb7, 0 xa4, 0 xa3, 0 x21,
0 xa9, 0 xcd, 0 xe4, 0 x69, 0 xd3, 0 x45, 0 x02, 0 xb1,
0 xb7, 0 x3a, 0 xbf, 0 x51, 0 x35, 0 x1b, 0 x78, 0 xc2,
0 xcf, 0 x0c, 0 x0d, 0 x60, 0 x09, 0 xa9, 0 x44, 0 x02
};
/* RSA Known Plaintext Message (1024-bits). */
static const PRUint8 rsa_known_plaintext_msg[FIPS_RSA_MESSAGE_LENGTH] = {
"Known plaintext message utilized"
"for RSA Encryption & Decryption"
"blocks SHA256, SHA384 and "
"SHA512 RSA Signature KAT tests. "
"Known plaintext message utilized"
"for RSA Encryption & Decryption"
"blocks SHA256, SHA384 and "
"SHA512 RSA Signature KAT tests."
};
/* RSA Known Signed Hash (2048-bits). */
static const PRUint8 rsa_known_sha256_signature[] = {
0 x8c, 0 x2d, 0 x2e, 0 xfb, 0 x37, 0 xb5, 0 x6f, 0 x38,
0 x9f, 0 x06, 0 x5a, 0 xf3, 0 x8c, 0 xa0, 0 xd0, 0 x7a,
0 xde, 0 xcf, 0 xf9, 0 x14, 0 x95, 0 x59, 0 xd3, 0 x5f,
0 x51, 0 x5d, 0 x5d, 0 xad, 0 xd8, 0 x71, 0 x33, 0 x50,
0 x1d, 0 x03, 0 x3b, 0 x3a, 0 x32, 0 x00, 0 xb4, 0 xde,
0 x7f, 0 xe4, 0 xb1, 0 xe5, 0 x6b, 0 x83, 0 xf4, 0 x80,
0 x10, 0 x3b, 0 xb8, 0 x8a, 0 xdb, 0 xe8, 0 x0a, 0 x42,
0 x9e, 0 x8d, 0 xd7, 0 xbe, 0 xed, 0 xde, 0 x5a, 0 x3d,
0 xc6, 0 xdb, 0 xfe, 0 x49, 0 x6a, 0 xe9, 0 x1e, 0 x75,
0 x66, 0 xf1, 0 x3f, 0 x9e, 0 x3f, 0 xff, 0 x05, 0 x65,
0 xde, 0 xca, 0 x62, 0 x62, 0 xf3, 0 xec, 0 x53, 0 x09,
0 xa0, 0 x37, 0 xd5, 0 x66, 0 x62, 0 x72, 0 x14, 0 xb6,
0 x51, 0 x32, 0 x67, 0 x50, 0 xc1, 0 xe1, 0 x2f, 0 x9e,
0 x98, 0 x4e, 0 x53, 0 x96, 0 x55, 0 x4b, 0 xc4, 0 x92,
0 xc3, 0 xb4, 0 x80, 0 xf0, 0 x35, 0 xc9, 0 x00, 0 x4b,
0 x5c, 0 x85, 0 x92, 0 xb1, 0 xe8, 0 x6e, 0 xa5, 0 x51,
0 x38, 0 x9f, 0 xc9, 0 x11, 0 xb6, 0 x14, 0 xdf, 0 x34,
0 x64, 0 x40, 0 x82, 0 x82, 0 xde, 0 x16, 0 x69, 0 x93,
0 x89, 0 x4e, 0 x5c, 0 x32, 0 xf2, 0 x0a, 0 x4e, 0 x9e,
0 xbd, 0 x63, 0 x99, 0 x4f, 0 xf3, 0 x15, 0 x90, 0 xc2,
0 xfe, 0 x6f, 0 xb7, 0 xf4, 0 xad, 0 xd4, 0 x8e, 0 x0b,
0 xd2, 0 xf5, 0 x22, 0 xd2, 0 x71, 0 x65, 0 x13, 0 xf7,
0 x82, 0 x7b, 0 x75, 0 xb6, 0 xc1, 0 xb4, 0 x45, 0 xbd,
0 x8f, 0 x95, 0 xcf, 0 x5b, 0 x95, 0 x32, 0 xef, 0 x18,
0 x5f, 0 xd3, 0 xdf, 0 x7e, 0 x22, 0 xdd, 0 x25, 0 xeb,
0 xe1, 0 xbf, 0 x3b, 0 x9a, 0 x55, 0 x75, 0 x4f, 0 x3c,
0 x38, 0 x67, 0 x57, 0 x04, 0 x04, 0 x57, 0 x27, 0 xf6,
0 x34, 0 x0e, 0 x57, 0 x8a, 0 x7c, 0 xff, 0 x7d, 0 xca,
0 x8c, 0 x06, 0 xf8, 0 x9d, 0 xdb, 0 xe4, 0 xd8, 0 x19,
0 xdd, 0 x4d, 0 xfd, 0 x8f, 0 xa0, 0 x06, 0 x53, 0 xe8,
0 x33, 0 x00, 0 x70, 0 x3f, 0 x6b, 0 xc3, 0 xbd, 0 x9a,
0 x78, 0 xb5, 0 xa9, 0 xef, 0 x6d, 0 xda, 0 x67, 0 x92
};
/* RSA Known Signed Hash (2048-bits). */
static const PRUint8 rsa_known_sha384_signature[] = {
0 x20, 0 x2d, 0 x21, 0 x3a, 0 xaa, 0 x1e, 0 x05, 0 x15,
0 x5c, 0 xca, 0 x84, 0 x86, 0 xc0, 0 x15, 0 x81, 0 xdf,
0 xd4, 0 x06, 0 x9f, 0 xe0, 0 xc1, 0 xed, 0 xef, 0 x0f,
0 xfe, 0 xb3, 0 xc3, 0 xbb, 0 x28, 0 xa5, 0 x56, 0 xbf,
0 xe3, 0 x11, 0 x5c, 0 xc2, 0 xc0, 0 x0b, 0 xfa, 0 xfa,
0 x3d, 0 xd3, 0 x06, 0 x20, 0 xe2, 0 xc9, 0 xe4, 0 x66,
0 x28, 0 xb7, 0 xc0, 0 x3b, 0 x3c, 0 x96, 0 xc6, 0 x49,
0 x3b, 0 xcf, 0 x86, 0 x49, 0 x31, 0 xaf, 0 x5b, 0 xa3,
0 xec, 0 x63, 0 x10, 0 xdf, 0 xda, 0 x2f, 0 x68, 0 xac,
0 x7b, 0 x3a, 0 x49, 0 xfa, 0 xe6, 0 x0d, 0 xfe, 0 x37,
0 x17, 0 x56, 0 x8e, 0 x5c, 0 x48, 0 x97, 0 x43, 0 xf7,
0 xa0, 0 xbc, 0 xe3, 0 x4b, 0 x42, 0 xde, 0 x58, 0 x1d,
0 xd9, 0 x5d, 0 xb3, 0 x08, 0 x35, 0 xbd, 0 xa4, 0 xe1,
0 x80, 0 xc3, 0 x64, 0 xab, 0 x21, 0 x97, 0 xad, 0 xfb,
0 x71, 0 xee, 0 xa3, 0 x3d, 0 x9c, 0 xaa, 0 xfa, 0 x16,
0 x60, 0 x46, 0 x32, 0 xda, 0 x44, 0 x2e, 0 x10, 0 x92,
0 x20, 0 xd8, 0 x98, 0 x80, 0 x84, 0 x75, 0 x5b, 0 x70,
0 x91, 0 x00, 0 x33, 0 x19, 0 x69, 0 xc9, 0 x2a, 0 xec,
0 x3d, 0 xe5, 0 x5f, 0 x0f, 0 x9a, 0 xa7, 0 x97, 0 x1f,
0 x79, 0 xc3, 0 x1d, 0 x65, 0 x74, 0 x62, 0 xc5, 0 xa1,
0 x23, 0 x65, 0 x4b, 0 x84, 0 xa1, 0 x03, 0 x98, 0 xf3,
0 xf1, 0 x02, 0 x24, 0 xca, 0 xe5, 0 xd4, 0 xc8, 0 xa2,
0 x30, 0 xad, 0 x72, 0 x7d, 0 x29, 0 x60, 0 x1a, 0 x8e,
0 x6f, 0 x23, 0 xa4, 0 xda, 0 x68, 0 xa4, 0 x45, 0 x9c,
0 x39, 0 x70, 0 x44, 0 x18, 0 x4b, 0 x73, 0 xfe, 0 xf8,
0 x33, 0 x53, 0 x1d, 0 x7e, 0 x93, 0 x93, 0 xac, 0 xc7,
0 x1e, 0 x6e, 0 x6b, 0 xfd, 0 x9e, 0 xba, 0 xa6, 0 x71,
0 x70, 0 x47, 0 x6a, 0 xd6, 0 x82, 0 x32, 0 xa2, 0 x6e,
0 x20, 0 x72, 0 xb0, 0 xba, 0 xec, 0 x91, 0 xbb, 0 x6b,
0 xcc, 0 x84, 0 x0a, 0 x33, 0 x2b, 0 x8a, 0 x8d, 0 xeb,
0 x71, 0 xcd, 0 xca, 0 x67, 0 x1b, 0 xad, 0 x10, 0 xd4,
0 xce, 0 x4f, 0 xc0, 0 x29, 0 xec, 0 xfa, 0 xed, 0 xfa
};
/* RSA Known Signed Hash (2048-bits). */
static const PRUint8 rsa_known_sha512_signature[] = {
0 x35, 0 x0e, 0 x74, 0 x9d, 0 xeb, 0 xc7, 0 x67, 0 x31,
0 x9f, 0 xff, 0 x0b, 0 xbb, 0 x5e, 0 x66, 0 xb4, 0 x2f,
0 xbf, 0 x72, 0 x60, 0 x4f, 0 xe9, 0 xbd, 0 xec, 0 xc8,
0 x17, 0 x79, 0 x5f, 0 x39, 0 x83, 0 xb4, 0 x54, 0 x2e,
0 x01, 0 xb9, 0 xd3, 0 x20, 0 x47, 0 xcb, 0 xd4, 0 x42,
0 xf2, 0 x6e, 0 x36, 0 xc1, 0 x97, 0 xad, 0 xef, 0 x8e,
0 xe6, 0 x51, 0 xee, 0 x5e, 0 x9e, 0 x88, 0 xb4, 0 x9d,
0 xda, 0 x3e, 0 x77, 0 x4b, 0 xe8, 0 xae, 0 x48, 0 x53,
0 x2c, 0 xc4, 0 xd3, 0 x25, 0 x6b, 0 x23, 0 xb7, 0 x54,
0 x3c, 0 x95, 0 x8f, 0 xfb, 0 x6f, 0 x6d, 0 xc5, 0 x56,
0 x39, 0 x69, 0 x28, 0 x0e, 0 x74, 0 x9b, 0 x31, 0 xe8,
0 x76, 0 x77, 0 x2b, 0 xc1, 0 x44, 0 x89, 0 x81, 0 x93,
0 xfc, 0 xf6, 0 xec, 0 x5f, 0 x8f, 0 x89, 0 xfc, 0 x1d,
0 xa4, 0 x53, 0 x58, 0 x8c, 0 xe9, 0 xc0, 0 xc0, 0 x26,
0 xe6, 0 xdf, 0 x6d, 0 x27, 0 xb1, 0 x8e, 0 x3e, 0 xb6,
0 x47, 0 xe1, 0 x02, 0 x96, 0 xc2, 0 x5f, 0 x7f, 0 x3d,
0 xc5, 0 x6c, 0 x2f, 0 xea, 0 xaa, 0 x5e, 0 x39, 0 xfc,
0 x77, 0 xca, 0 x00, 0 x02, 0 x5c, 0 x64, 0 x7c, 0 xce,
0 x7d, 0 x63, 0 x82, 0 x05, 0 xed, 0 xf7, 0 x5b, 0 x55,
0 x58, 0 xc0, 0 xeb, 0 x76, 0 xd7, 0 x95, 0 x55, 0 x37,
0 x85, 0 x7d, 0 x17, 0 xad, 0 xd2, 0 x11, 0 xfd, 0 x97,
0 x48, 0 xb5, 0 xc2, 0 x5e, 0 xc7, 0 x62, 0 xc0, 0 xe0,
0 x68, 0 xa8, 0 x61, 0 x14, 0 x41, 0 xca, 0 x25, 0 x3a,
0 xec, 0 x48, 0 x54, 0 x22, 0 x83, 0 x2b, 0 x69, 0 x54,
0 xfd, 0 xc8, 0 x99, 0 x9a, 0 xee, 0 x37, 0 x03, 0 xa3,
0 x8f, 0 x0f, 0 x32, 0 xb0, 0 xaa, 0 x74, 0 x39, 0 x04,
0 x7c, 0 xd9, 0 xc2, 0 x8f, 0 xbe, 0 xf2, 0 xc4, 0 xbe,
0 xdd, 0 x7a, 0 x7a, 0 x7f, 0 x72, 0 xd3, 0 x80, 0 x59,
0 x18, 0 xa0, 0 xa1, 0 x2d, 0 x6f, 0 xa3, 0 xa9, 0 x48,
0 xed, 0 x20, 0 xa6, 0 xea, 0 xaa, 0 x10, 0 x83, 0 x98,
0 x0c, 0 x13, 0 x69, 0 x6e, 0 xcd, 0 x31, 0 x6b, 0 xd0,
0 x66, 0 xa6, 0 x5e, 0 x30, 0 x0c, 0 x82, 0 xd5, 0 x81
};
static const RSAPublicKey bl_public_key = {
NULL,
{ FIPS_RSA_TYPE, (unsigned char *)rsa_modulus,
FIPS_RSA_MODULUS_LENGTH },
{ FIPS_RSA_TYPE, (unsigned char *)rsa_public_exponent,
FIPS_RSA_PUBLIC_EXPONENT_LENGTH }
};
static const RSAPrivateKey bl_private_key = {
NULL,
{ FIPS_RSA_TYPE, (unsigned char *)rsa_version,
FIPS_RSA_PRIVATE_VERSION_LENGTH },
{ FIPS_RSA_TYPE, (unsigned char *)rsa_modulus,
FIPS_RSA_MODULUS_LENGTH },
{ FIPS_RSA_TYPE, (unsigned char *)rsa_public_exponent,
FIPS_RSA_PUBLIC_EXPONENT_LENGTH },
{ FIPS_RSA_TYPE, (unsigned char *)rsa_private_exponent,
FIPS_RSA_PRIVATE_EXPONENT_LENGTH },
{ FIPS_RSA_TYPE, (unsigned char *)rsa_prime0,
FIPS_RSA_PRIME0_LENGTH },
{ FIPS_RSA_TYPE, (unsigned char *)rsa_prime1,
FIPS_RSA_PRIME1_LENGTH },
{ FIPS_RSA_TYPE, (unsigned char *)rsa_exponent0,
FIPS_RSA_EXPONENT0_LENGTH },
{ FIPS_RSA_TYPE, (unsigned char *)rsa_exponent1,
FIPS_RSA_EXPONENT1_LENGTH },
{ FIPS_RSA_TYPE, (unsigned char *)rsa_coefficient,
FIPS_RSA_COEFFICIENT_LENGTH }
};
/* RSA variables. */
#ifdef CREATE_TEMP_ARENAS
PLArenaPool *rsa_public_arena;
PLArenaPool *rsa_private_arena;
#endif
NSSLOWKEYPublicKey *rsa_public_key;
NSSLOWKEYPrivateKey *rsa_private_key;
SECStatus rsa_status;
NSSLOWKEYPublicKey low_public_key = { NULL, NSSLOWKEYRSAKey };
NSSLOWKEYPrivateKey low_private_key = { NULL, NSSLOWKEYRSAKey };
/****************************************/
/* Compose RSA Public/Private Key Pair. */
/****************************************/
low_public_key.u.rsa = bl_public_key;
low_private_key.u.rsa = bl_private_key;
rsa_public_key = &low_public_key;
rsa_private_key = &low_private_key;
#ifdef CREATE_TEMP_ARENAS
/* Create some space for the RSA public key. */
rsa_public_arena = PORT_NewArena(NSS_SOFTOKEN_DEFAULT_CHUNKSIZE);
if (rsa_public_arena == NULL) {
PORT_SetError(SEC_ERROR_NO_MEMORY);
return (SECFailure);
}
/* Create some space for the RSA private key. */
rsa_private_arena = PORT_NewArena(NSS_SOFTOKEN_DEFAULT_CHUNKSIZE);
if (rsa_private_arena == NULL) {
PORT_FreeArena(rsa_public_arena, PR_TRUE);
PORT_SetError(SEC_ERROR_NO_MEMORY);
return (SECFailure);
}
rsa_public_key->arena = rsa_public_arena;
rsa_private_key->arena = rsa_private_arena;
#endif
/**************************************************/
/* RSA Hash tests */
/**************************************************/
rsa_status = sftk_fips_RSA_PowerUpSigSelfTest(HASH_AlgSHA256,
rsa_public_key, rsa_private_key,
rsa_known_plaintext_msg, FIPS_RSA_MESSAGE_LENGTH,
rsa_known_sha256_signature);
if (rsa_status != SECSuccess)
goto rsa_loser;
rsa_status = sftk_fips_RSA_PowerUpSigSelfTest(HASH_AlgSHA384,
rsa_public_key, rsa_private_key,
rsa_known_plaintext_msg, FIPS_RSA_MESSAGE_LENGTH,
rsa_known_sha384_signature);
if (rsa_status != SECSuccess)
goto rsa_loser;
rsa_status = sftk_fips_RSA_PowerUpSigSelfTest(HASH_AlgSHA512,
rsa_public_key, rsa_private_key,
rsa_known_plaintext_msg, FIPS_RSA_MESSAGE_LENGTH,
rsa_known_sha512_signature);
if (rsa_status != SECSuccess)
goto rsa_loser;
/* Dispose of all RSA key material. */
nsslowkey_DestroyPublicKey(rsa_public_key);
nsslowkey_DestroyPrivateKey(rsa_private_key);
return (SECSuccess);
rsa_loser:
nsslowkey_DestroyPublicKey(rsa_public_key);
nsslowkey_DestroyPrivateKey(rsa_private_key);
PORT_SetError(SEC_ERROR_LIBRARY_FAILURE);
return (SECFailure);
}
static SECStatus
sftk_fips_HKDF_PowerUpSelfTest(void )
{
SECStatus status;
static const unsigned char base_key[] = {
0 x00, 0 x01, 0 x02, 0 x03, 0 x04, 0 x05, 0 x06, 0 x07,
0 x08, 0 x09, 0 x0a, 0 x0b, 0 x0c, 0 x0d, 0 x0e, 0 x0f,
0 x10, 0 x11, 0 x12, 0 x13, 0 x14, 0 x15, 0 x16, 0 x17,
0 x18, 0 x19, 0 x1a, 0 x1b, 0 x1c, 0 x1d, 0 x1e, 0 x1f,
0 x20, 0 x21, 0 x22, 0 x23, 0 x24, 0 x25, 0 x26, 0 x27,
0 x28, 0 x29, 0 x2a, 0 x2b, 0 x2c, 0 x2d, 0 x2e, 0 x2f,
0 x30, 0 x31, 0 x32, 0 x33, 0 x34, 0 x35, 0 x36, 0 x37,
0 x38, 0 x39, 0 x3a, 0 x3b, 0 x3c, 0 x3d, 0 x3e, 0 x3f
};
static const unsigned char known_hkdf_sha256_key[] = {
0 xdd, 0 xdb, 0 xeb, 0 xe5, 0 x6d, 0 xd2, 0 x96, 0 xa4,
0 x07, 0 xc5, 0 x7d, 0 xda, 0 x31, 0 x56, 0 x8d, 0 xa5,
0 x41, 0 x3e, 0 x90, 0 xd4, 0 xe6, 0 x98, 0 xeb, 0 xf8,
0 x5a, 0 x49, 0 x7f, 0 x38, 0 xef, 0 x01, 0 x8a, 0 xe5,
0 xda, 0 x36, 0 xe5, 0 xcf, 0 x21, 0 xe3, 0 x9f, 0 xc3,
0 x32, 0 xb3, 0 x1e, 0 xf6, 0 xc5, 0 x10, 0 x4c, 0 x86,
0 x53, 0 x5e, 0 x6f, 0 xe0, 0 x63, 0 x6e, 0 x43, 0 x33,
0 x61, 0 x35, 0 xf4, 0 x17, 0 x10, 0 x77, 0 x75, 0 x2a
};
/* current NIST IG's say we only need to test one instance
* of kdfs, keep these others around in case the guidance
* changes */
#ifdef NSS_FULL_POST
static const unsigned char known_hkdf_sha384_key[] = {
0 x35, 0 x64, 0 xc4, 0 xa1, 0 xcc, 0 xc1, 0 xdc, 0 xe4,
0 xe2, 0 xca, 0 x51, 0 xae, 0 xe8, 0 x92, 0 x88, 0 x30,
0 x8b, 0 xb0, 0 x2b, 0 xac, 0 x00, 0 x15, 0 xac, 0 x15,
0 x97, 0 xc9, 0 xf4, 0 x6b, 0 xf6, 0 x3f, 0 x97, 0 xea,
0 x48, 0 x55, 0 x38, 0 x25, 0 x06, 0 x5d, 0 x91, 0 x64,
0 xbd, 0 x09, 0 xf3, 0 x44, 0 xbc, 0 x82, 0 xbe, 0 xdb,
0 x5c, 0 xd7, 0 xf2, 0 x24, 0 xa5, 0 x55, 0 x8d, 0 xa9,
0 xa8, 0 x85, 0 xde, 0 x8c, 0 x33, 0 xe0, 0 x4d, 0 xc3
};
static const unsigned char known_hkdf_sha512_key[] = {
0 x63, 0 x4e, 0 xbc, 0 x42, 0 xb3, 0 x56, 0 x74, 0 x7d,
0 x1b, 0 x55, 0 xf0, 0 x34, 0 x54, 0 xcb, 0 x6d, 0 x58,
0 x39, 0 x96, 0 x10, 0 xda, 0 x03, 0 x20, 0 x8f, 0 x77,
0 x0d, 0 xb4, 0 xf7, 0 xf6, 0 x67, 0 x0d, 0 x5b, 0 x6b,
0 xd0, 0 x30, 0 xc4, 0 xdd, 0 x67, 0 x61, 0 x5d, 0 x9a,
0 xf5, 0 x18, 0 x6e, 0 x1b, 0 x60, 0 x97, 0 xc2, 0 x4d,
0 x23, 0 x43, 0 x69, 0 xe6, 0 x3b, 0 xa5, 0 xdf, 0 xe9,
0 x7c, 0 xf1, 0 x87, 0 x48, 0 x6f, 0 xb9, 0 xd3, 0 x02
};
#endif
unsigned char outBytes[64 ] = { 0 };
CK_HKDF_PARAMS hkdf_params;
hkdf_params.bExpand = CK_TRUE;
hkdf_params.bExtract = CK_TRUE;
hkdf_params.ulSaltType = CKF_HKDF_SALT_DATA;
hkdf_params.pSalt = (CK_BYTE_PTR)base_key;
hkdf_params.ulSaltLen = sizeof (base_key);
hkdf_params.pInfo = (CK_BYTE_PTR)base_key;
hkdf_params.ulInfoLen = sizeof (base_key);
/**************************************************/
/* HKDF tests */
/**************************************************/
hkdf_params.prfHashMechanism = CKM_SHA256_HMAC;
status = sftk_HKDF(&hkdf_params, CK_INVALID_HANDLE, NULL,
base_key, 32 , NULL, outBytes, sizeof (outBytes),
PR_TRUE, PR_TRUE);
if ((status != SECSuccess) ||
PORT_Memcmp(outBytes, known_hkdf_sha256_key, sizeof (outBytes)) != 0 ) {
PORT_SetError(SEC_ERROR_LIBRARY_FAILURE);
return (SECFailure);
}
#ifdef NSS_FULL_POST
hkdf_params.prfHashMechanism = CKM_SHA384_HMAC;
status = sftk_HKDF(&hkdf_params, CK_INVALID_HANDLE, NULL,
base_key, 48 , NULL, outBytes, sizeof (outBytes),
PR_TRUE, PR_TRUE);
if ((status != SECSuccess) ||
PORT_Memcmp(outBytes, known_hkdf_sha384_key, sizeof (outBytes)) != 0 ) {
PORT_SetError(SEC_ERROR_LIBRARY_FAILURE);
return (SECFailure);
}
hkdf_params.prfHashMechanism = CKM_SHA512_HMAC;
status = sftk_HKDF(&hkdf_params, CK_INVALID_HANDLE, NULL,
base_key, 64 , NULL, outBytes, sizeof (outBytes),
PR_TRUE, PR_TRUE);
if ((status != SECSuccess) ||
PORT_Memcmp(outBytes, known_hkdf_sha512_key, sizeof (outBytes)) != 0 ) {
PORT_SetError(SEC_ERROR_LIBRARY_FAILURE);
return (SECFailure);
}
#endif
return (SECSuccess);
}
static PRBool sftk_self_tests_ran = PR_FALSE;
static PRBool sftk_self_tests_success = PR_FALSE;
/*
* This function is called at dll load time, the code tha makes this
* happen is platform specific on defined above.
*/
void
sftk_startup_tests_with_rerun(PRBool rerun)
{
SECStatus rv;
const char *libraryName = rerun ? BLAPI_FIPS_RERUN_FLAG_STRING SOFTOKEN_LIB_NAME : SOFTOKEN_LIB_NAME;
PORT_Assert(!sftk_self_tests_ran);
PORT_Assert(!sftk_self_tests_success);
sftk_self_tests_ran = PR_TRUE;
sftk_self_tests_success = PR_FALSE; /* just in case */
/* need to initiallize the oid library before the RSA tests */
rv = SECOID_Init();
if (rv != SECSuccess) {
return ;
}
/* make sure freebl is initialized, or our RSA check
* may fail. This is normally done at freebl load time, but it's
* possible we may have shut freebl down without unloading it. */
rv = BL_Init();
if (rv != SECSuccess) {
return ;
}
rv = RNG_RNGInit();
if (rv != SECSuccess) {
return ;
}
/* check the RSA combined functions in softoken */
rv = sftk_fips_RSA_PowerUpSelfTest();
if (rv != SECSuccess) {
return ;
}
if (!BLAPI_SHVerify(libraryName,
(PRFuncPtr)&sftk_fips_RSA_PowerUpSelfTest)) {
/* something is wrong with the library, fail without enabling
* the token */
return ;
}
rv = sftk_fips_IKE_PowerUpSelfTests();
if (rv != SECSuccess) {
return ;
}
rv = sftk_fips_SP800_108_PowerUpSelfTests();
if (rv != SECSuccess) {
return ;
}
rv = sftk_fips_HKDF_PowerUpSelfTest();
if (rv != SECSuccess) {
return ;
}
rv = sftk_fips_pbkdf_PowerUpSelfTests();
if (rv != SECSuccess) {
return ;
}
sftk_self_tests_success = PR_TRUE;
}
static void
sftk_startup_tests(void )
{
sftk_startup_tests_with_rerun(PR_FALSE);
}
/*
* this is called from nsc_Common_Initizialize entry points that gates access
* to * all other pkcs11 functions. This prevents softoken operation if our
* power on selftest failed.
*/
CK_RV
sftk_FIPSEntryOK(PRBool rerun)
{
#ifdef NSS_NO_INIT_SUPPORT
/* this should only be set on platforms that can't handle one of the INIT
* schemes. This code allows those platforms to continue to function,
* though they don't meet the strict NIST requirements. If NSS_NO_INIT_SUPPORT
* is not set, and init support has not been properly enabled, softken
* will always fail because of the test below
*/
if (!sftk_self_tests_ran) {
sftk_startup_tests();
}
#endif
if (rerun) {
sftk_self_tests_ran = PR_FALSE;
sftk_self_tests_success = PR_FALSE;
sftk_startup_tests_with_rerun(PR_TRUE);
}
if (!sftk_self_tests_success) {
return CKR_DEVICE_ERROR;
}
return CKR_OK;
}
#else
#include "pkcs11t.h"
CK_RV
sftk_FIPSEntryOK()
{
return CKR_DEVICE_ERROR;
}
#endif /* NSS_FIPS_DISABLED */
Messung V0.5 in Prozent C=95 H=91 G=92
¤ Dauer der Verarbeitung: 0.15 Sekunden
(vorverarbeitet am 2026-06-05)
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