Add Some more elliptic curve functionality
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@ -26,6 +26,9 @@ pub enum BN_GENCB {}
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pub enum CONF {}
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pub enum COMP_METHOD {}
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pub enum EC_KEY {}
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pub enum EC_GROUP {}
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pub enum EC_METHOD {}
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pub enum EC_POINT {}
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pub enum ENGINE {}
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pub enum EVP_CIPHER_CTX {}
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pub enum EVP_MD {}
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@ -1372,8 +1375,30 @@ extern {
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pub fn DH_get_2048_256() -> *mut DH;
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pub fn EC_KEY_new_by_curve_name(nid: c_int) -> *mut EC_KEY;
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pub fn EC_KEY_get0_group(key: *const EC_KEY) -> *const EC_GROUP;
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pub fn EC_KEY_get0_public_key(key: *const EC_KEY) -> *const EC_POINT;
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pub fn EC_KEY_get0_private_key(key: *const EC_KEY) -> *const BIGNUM;
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pub fn EC_KEY_free(key: *mut EC_KEY);
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pub fn EC_GFp_simple_method() -> *const EC_METHOD;
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pub fn EC_GFp_mont_method() -> *const EC_METHOD;
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pub fn EC_GFp_nist_method() -> *const EC_METHOD;
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pub fn EC_GFp_nistp224_method() -> *const EC_METHOD;
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pub fn EC_GFp_nistp256_method() -> *const EC_METHOD;
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pub fn EC_GFp_nistp521_method() -> *const EC_METHOD;
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pub fn EC_GF2m_simple_method() -> *const EC_METHOD;
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pub fn EC_GROUP_new(meth: *const EC_METHOD) -> *mut EC_GROUP;
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pub fn EC_GROUP_new_curve_GFp(p: *const BIGNUM, a: *const BIGNUM, b: *const BIGNUM, ctx: *mut BN_CTX) -> *mut EC_GROUP;
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pub fn EC_GROUP_new_curve_GF2m(p: *const BIGNUM, a: *const BIGNUM, b: *const BIGNUM, ctx: *mut BN_CTX) -> *mut EC_GROUP;
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pub fn EC_GROUP_new_by_curve_name(nid: c_int) -> *mut EC_GROUP;
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pub fn EC_GROUP_get_curve_GFp(group: *const EC_GROUP, p: *mut BIGNUM, a: *mut BIGNUM, b: *mut BIGNUM, ctx: *mut BN_CTX) -> c_int;
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pub fn EC_GROUP_get_curve_GF2m(group: *const EC_GROUP, p: *mut BIGNUM, a: *mut BIGNUM, b: *mut BIGNUM, ctx: *mut BN_CTX) -> c_int;
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pub fn EC_GROUP_free(group: *mut EC_GROUP);
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pub fn EC_POINT_free(point: *mut EC_POINT);
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pub fn ERR_get_error() -> c_ulong;
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pub fn ERR_lib_error_string(err: c_ulong) -> *const c_char;
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pub fn ERR_func_error_string(err: c_ulong) -> *const c_char;
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@ -2,15 +2,115 @@ use ffi;
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use std::ptr;
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use {cvt, cvt_p, init};
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use bn::{BigNumRef, BigNumContextRef};
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use error::ErrorStack;
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use nid::Nid;
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use types::OpenSslTypeRef;
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type_!(EcGroup, EcGroupRef, ffi::EC_GROUP, ffi::EC_GROUP_free);
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impl EcGroup {
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/// Returns the group of a standard named curve.
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pub fn from_curve_name(nid: Nid) -> Result<EcGroup, ErrorStack> {
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unsafe {
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init();
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cvt_p(ffi::EC_GROUP_new_by_curve_name(nid.as_raw())).map(EcGroup)
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}
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}
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/// Constructs a curve over a prime field from its components.
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pub fn from_components_gfp(p: &BigNumRef,
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a: &BigNumRef,
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b: &BigNumRef,
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ctx: &mut BigNumContextRef)
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-> Result<EcGroup, ErrorStack> {
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unsafe {
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cvt_p(ffi::EC_GROUP_new_curve_GFp(p.as_ptr(), a.as_ptr(), b.as_ptr(), ctx.as_ptr()))
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.map(EcGroup)
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}
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}
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/// Constructs a curve over a binary field from its components.
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pub fn from_components_gf2m(p: &BigNumRef,
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a: &BigNumRef,
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b: &BigNumRef,
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ctx: &mut BigNumContextRef)
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-> Result<EcGroup, ErrorStack> {
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unsafe {
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cvt_p(ffi::EC_GROUP_new_curve_GF2m(p.as_ptr(), a.as_ptr(), b.as_ptr(), ctx.as_ptr()))
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.map(EcGroup)
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}
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}
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/// Places the components of a curve over a prime field in the provided `BigNum`s.
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pub fn components_gfp(&self,
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p: &mut BigNumRef,
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a: &mut BigNumRef,
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b: &mut BigNumRef,
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ctx: &mut BigNumContextRef)
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-> Result<(), ErrorStack> {
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unsafe {
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cvt(ffi::EC_GROUP_get_curve_GFp(self.as_ptr(),
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p.as_ptr(),
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a.as_ptr(),
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b.as_ptr(),
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ctx.as_ptr()))
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.map(|_| ())
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}
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}
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/// Places the components of a curve over a binary field in the provided `BigNum`s.
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pub fn components_gf2m(&self,
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p: &mut BigNumRef,
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a: &mut BigNumRef,
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b: &mut BigNumRef,
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ctx: &mut BigNumContextRef)
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-> Result<(), ErrorStack> {
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unsafe {
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cvt(ffi::EC_GROUP_get_curve_GF2m(self.as_ptr(),
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p.as_ptr(),
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a.as_ptr(),
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b.as_ptr(),
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ctx.as_ptr()))
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.map(|_| ())
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}
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}
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}
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type_!(EcPoint, EcPointRef, ffi::EC_POINT, ffi::EC_POINT_free);
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type_!(EcKey, EcKeyRef, ffi::EC_KEY, ffi::EC_KEY_free);
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impl EcKeyRef {
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private_key_to_pem!(ffi::PEM_write_bio_ECPrivateKey);
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private_key_to_der!(ffi::i2d_ECPrivateKey);
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pub fn group(&self) -> &EcGroupRef {
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unsafe {
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let ptr = ffi::EC_KEY_get0_group(self.as_ptr());
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assert!(!ptr.is_null());
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EcGroupRef::from_ptr(ptr as *mut _)
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}
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}
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pub fn public_key(&self) -> &EcPointRef {
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unsafe {
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let ptr = ffi::EC_KEY_get0_public_key(self.as_ptr());
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assert!(!ptr.is_null());
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EcPointRef::from_ptr(ptr as *mut _)
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}
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}
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pub fn private_key(&self) -> Option<&BigNumRef> {
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unsafe {
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let ptr = ffi::EC_KEY_get0_private_key(self.as_ptr());
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if ptr.is_null() {
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None
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} else {
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Some(BigNumRef::from_ptr(ptr as *mut _))
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}
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}
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}
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}
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impl EcKey {
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@ -27,11 +127,23 @@ impl EcKey {
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#[cfg(test)]
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mod test {
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use bn::{BigNum, BigNumContext};
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use nid;
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use super::*;
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#[test]
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fn new_by_curve_name() {
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fn key_new_by_curve_name() {
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EcKey::new_by_curve_name(nid::X9_62_PRIME256V1).unwrap();
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}
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#[test]
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fn round_trip_prime256v1() {
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let group = EcGroup::from_curve_name(nid::X9_62_PRIME256V1).unwrap();
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let mut p = BigNum::new().unwrap();
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let mut a = BigNum::new().unwrap();
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let mut b = BigNum::new().unwrap();
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let mut ctx = BigNumContext::new().unwrap();
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group.components_gfp(&mut p, &mut a, &mut b, &mut ctx).unwrap();
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EcGroup::from_components_gfp(&p, &a, &b, &mut ctx).unwrap();
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}
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}
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