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openssl開発時のデバイス証明書へのECDSA署名への対応。
git-svn-id: file:///Volumes/Transfer/gigaleak_20231201/2020-09-30%20-%20paladin.7z/paladin/ctr_eFuse@37 ff987cc8-cf2f-4642-8568-d52cce064691
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@ -160,7 +160,7 @@ static void BN2BinWithPadding( BIGNUM *pBn, u8 *pDst, int dstLen );
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// create CTR Device cert
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int GenerateCTRDeviceCert( EC_KEY *pECkey, u32 deviceId, u8 bondingOption, u8 *pDevCerSign, u32 *pExpiryDate )
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int GenerateCTRDeviceCert( EC_KEY *pECkey, u32 deviceId, u8 bondingOption, u8 *pDevCertSign, u32 *pExpiryDate )
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{
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int ret_code = 0;
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CR_DeviceCert deviceCert;
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@ -221,12 +221,6 @@ int GenerateCTRDeviceCert( EC_KEY *pECkey, u32 deviceId, u8 bondingOption, u8 *p
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#ifdef USE_HSM
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#else // !USE_HSM
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#if 0
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BIGNUM *bn_pubkey = NULL;
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u8 ec_pub_key_neg;
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u8 ec_pub_key_num_bytes;
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u8 ec_pub_key[78];
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// DERフォーマットのECC鍵を読み込み
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{
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// bondingOptionによって、鍵を差し替え
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@ -249,35 +243,49 @@ int GenerateCTRDeviceCert( EC_KEY *pECkey, u32 deviceId, u8 bondingOption, u8 *p
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DEBUG_PRINT_ARRAY( "EC pub.Y:", (const char *)NintendoCTR2->pub_key->Y.d, NintendoCTR2->pub_key->Y.dmax * 4 );
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#endif
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}
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bn_pubkey = BN_new();
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if( bn_pubkey == NULL ) {
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ret_code = CR_GENID_ERROR_BN_NEW_1;
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goto end;
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}
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ret_code = EC_POINT_point2bn( eckey->group, eckey->pub_key, eckey->conv_form , bn_pubkey, NULL);
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if ( ret_code == 0 )
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{
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printf( "error(%d) : EC_POINT_point2bn\n", ret_code );
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goto end;
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}
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ec_pub_key_neg = (unsigned char)( (bn_pubkey->neg == 0) ? 0 : 1 );
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ec_pub_key_num_bytes = (unsigned char)(BN_num_bytes(bn_pubkey));
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BN_bn2bin( bn_pubkey, ec_pub_key );
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BN_free( bn_pubkey );
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// ret_code = TestECDSA2( eckey, NID_sect233r1, ec_pub_key_neg,
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// ec_pub_key_num_bytes, ec_pub_key );
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if ( ret_code != 0 )
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{
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printf( "error(%d) : TestECDSA2\n", ret_code );
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goto end;
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}
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u8 sha256buf[ SHA256_DIGEST_LENGTH ];
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u8 ecdsasig[ 0x80 ];
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const u8 *pECDSAsig = ecdsasig;
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ECDSA_SIG *sig = NULL;
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int signLen = 0;
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int test_ret = 0;
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// CR_DeviceCertのSHA256計算
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SHA256( deviceCert.issuerName, (int)&deviceCert + sizeof(CR_DeviceCert) - (int)deviceCert.issuerName, sha256buf );
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// 上位232bit分で署名
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memset( ecdsasig, 0, sizeof(ecdsasig) );
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test_ret = ECDSA_sign( 0, sha256buf, 233/8, ecdsasig, &signLen, NintendoCTR2 );
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if (test_ret == 0) {
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ret_code = CR_GENID_ERROR_ECDSA_SIGN;
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goto end;
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}
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DEBUG_PRINT_ARRAY( "ECDSA:", (const char *)ecdsasig, signLen );
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// 署名ベリファイ
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test_ret = ECDSA_verify( 0, sha256buf, 233/8, ecdsasig, signLen, NintendoCTR2 );
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if( test_ret != 1) {
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ret_code = CR_GENID_ERROR_ECDSA_VERIFY;
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goto end;
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}
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// DERデコードして、r と s を eccSignature にセット
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sig = d2i_ECDSA_SIG( NULL, &pECDSAsig, signLen );
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if( sig == NULL ) {
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// TODO: ret_code = xxx;
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ret_code = 255;
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goto end;
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}
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#if 0
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DEBUG_PRINT_ARRAY( "ECDSA.r:", (const char *)sig->r->d, sig->r->dmax * 4);
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DEBUG_PRINT_ARRAY( "ECDSA.s:", (const char *)sig->s->d, sig->s->dmax * 4 );
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#endif
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BN2BinWithPadding( sig->r, &deviceCert.eccSignature[ 0 ], 30 );
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BN2BinWithPadding( sig->s, &deviceCert.eccSignature[ 30 ], 30 );
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memcpy( pDevCertSign, &deviceCert.eccSignature, 60 );
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if( sig ) ECDSA_SIG_free( sig );
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}
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#endif // USE_HSM
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#if 0
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@ -185,7 +185,7 @@ extern int GetTimestamp( u8 *pYear, u8 *pMonth, u8 *pMday, u8 *pHour, u8 *pMin,
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extern int GenerateRandom( u8 *pDst, int length );
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extern int GenarateECCKeyPair( EC_KEY **ppECkey, u8 *pECPrivkey );
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extern int TestECDSA( EC_KEY *pECkey );
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extern int GenerateCTRDeviceCert( EC_KEY *pECkey, u32 deviceId, u8 bondingOption, u8 *pDevCerSign, u32 *pExpiryDate );
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extern int GenerateCTRDeviceCert( EC_KEY *pECkey, u32 deviceId, u8 bondingOption, u8 *pDevCertSign, u32 *pExpiryDate );
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extern int EncryptID( unsigned char *dst_buf, unsigned char *org_buf, u8 bondingOption );
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extern void DebugPrintArray( char *pStr, const u8 *pData, int length );
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