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crypto: ecc - Add nbits field to ecc_curve structure
Add the number of bits a curve has to the ecc_curve definition to be able to derive the number of bytes a curve requires for its coordinates from it. It also allows one to identify a curve by its particular size. Set the number of bits on all curve definitions. Tested-by: Lukas Wunner <lukas@wunner.de> Reviewed-by: Jarkko Sakkinen <jarkko@kernel.org> Signed-off-by: Stefan Berger <stefanb@linux.ibm.com> Reviewed-by: Vitaly Chikunov <vt@altlinux.org> Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
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@ -17,6 +17,7 @@ static u64 nist_p192_b[] = { 0xFEB8DEECC146B9B1ull, 0x0FA7E9AB72243049ull,
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0x64210519E59C80E7ull };
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0x64210519E59C80E7ull };
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static struct ecc_curve nist_p192 = {
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static struct ecc_curve nist_p192 = {
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.name = "nist_192",
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.name = "nist_192",
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.nbits = 192,
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.g = {
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.g = {
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.x = nist_p192_g_x,
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.x = nist_p192_g_x,
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.y = nist_p192_g_y,
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.y = nist_p192_g_y,
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@ -43,6 +44,7 @@ static u64 nist_p256_b[] = { 0x3BCE3C3E27D2604Bull, 0x651D06B0CC53B0F6ull,
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0xB3EBBD55769886BCull, 0x5AC635D8AA3A93E7ull };
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0xB3EBBD55769886BCull, 0x5AC635D8AA3A93E7ull };
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static struct ecc_curve nist_p256 = {
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static struct ecc_curve nist_p256 = {
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.name = "nist_256",
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.name = "nist_256",
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.nbits = 256,
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.g = {
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.g = {
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.x = nist_p256_g_x,
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.x = nist_p256_g_x,
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.y = nist_p256_g_y,
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.y = nist_p256_g_y,
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@ -75,6 +77,7 @@ static u64 nist_p384_b[] = { 0x2a85c8edd3ec2aefull, 0xc656398d8a2ed19dull,
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0x988e056be3f82d19ull, 0xb3312fa7e23ee7e4ull };
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0x988e056be3f82d19ull, 0xb3312fa7e23ee7e4ull };
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static struct ecc_curve nist_p384 = {
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static struct ecc_curve nist_p384 = {
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.name = "nist_384",
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.name = "nist_384",
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.nbits = 384,
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.g = {
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.g = {
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.x = nist_p384_g_x,
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.x = nist_p384_g_x,
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.y = nist_p384_g_y,
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.y = nist_p384_g_y,
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@ -95,6 +98,7 @@ static u64 curve25519_a[] = { 0x000000000001DB41, 0x0000000000000000,
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0x0000000000000000, 0x0000000000000000 };
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0x0000000000000000, 0x0000000000000000 };
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static const struct ecc_curve ecc_25519 = {
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static const struct ecc_curve ecc_25519 = {
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.name = "curve25519",
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.name = "curve25519",
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.nbits = 255,
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.g = {
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.g = {
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.x = curve25519_g_x,
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.x = curve25519_g_x,
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.ndigits = 4,
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.ndigits = 4,
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@ -47,6 +47,7 @@ static u64 cp256a_b[] = {
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static struct ecc_curve gost_cp256a = {
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static struct ecc_curve gost_cp256a = {
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.name = "cp256a",
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.name = "cp256a",
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.nbits = 256,
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.g = {
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.g = {
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.x = cp256a_g_x,
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.x = cp256a_g_x,
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.y = cp256a_g_y,
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.y = cp256a_g_y,
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@ -80,6 +81,7 @@ static u64 cp256b_b[] = {
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static struct ecc_curve gost_cp256b = {
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static struct ecc_curve gost_cp256b = {
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.name = "cp256b",
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.name = "cp256b",
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.nbits = 256,
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.g = {
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.g = {
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.x = cp256b_g_x,
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.x = cp256b_g_x,
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.y = cp256b_g_y,
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.y = cp256b_g_y,
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@ -117,6 +119,7 @@ static u64 cp256c_b[] = {
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static struct ecc_curve gost_cp256c = {
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static struct ecc_curve gost_cp256c = {
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.name = "cp256c",
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.name = "cp256c",
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.nbits = 256,
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.g = {
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.g = {
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.x = cp256c_g_x,
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.x = cp256c_g_x,
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.y = cp256c_g_y,
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.y = cp256c_g_y,
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@ -166,6 +169,7 @@ static u64 tc512a_b[] = {
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static struct ecc_curve gost_tc512a = {
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static struct ecc_curve gost_tc512a = {
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.name = "tc512a",
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.name = "tc512a",
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.nbits = 512,
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.g = {
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.g = {
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.x = tc512a_g_x,
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.x = tc512a_g_x,
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.y = tc512a_g_y,
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.y = tc512a_g_y,
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@ -211,6 +215,7 @@ static u64 tc512b_b[] = {
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static struct ecc_curve gost_tc512b = {
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static struct ecc_curve gost_tc512b = {
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.name = "tc512b",
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.name = "tc512b",
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.nbits = 512,
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.g = {
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.g = {
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.x = tc512b_g_x,
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.x = tc512b_g_x,
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.y = tc512b_g_y,
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.y = tc512b_g_y,
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@ -23,6 +23,7 @@ struct ecc_point {
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* struct ecc_curve - definition of elliptic curve
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* struct ecc_curve - definition of elliptic curve
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*
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*
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* @name: Short name of the curve.
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* @name: Short name of the curve.
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* @nbits: The number of bits of a curve.
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* @g: Generator point of the curve.
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* @g: Generator point of the curve.
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* @p: Prime number, if Barrett's reduction is used for this curve
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* @p: Prime number, if Barrett's reduction is used for this curve
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* pre-calculated value 'mu' is appended to the @p after ndigits.
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* pre-calculated value 'mu' is appended to the @p after ndigits.
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@ -34,6 +35,7 @@ struct ecc_point {
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*/
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*/
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struct ecc_curve {
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struct ecc_curve {
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char *name;
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char *name;
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u32 nbits;
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struct ecc_point g;
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struct ecc_point g;
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u64 *p;
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u64 *p;
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u64 *n;
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u64 *n;
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