Make key comparison non-fuzzable
Feature guard the custom implementations of `Ord` and `PartialOrd` on `cfg(not(fuzzing))`. When fuzzing, auto-derive implementations. Co-authored-by: Tobin C. Harding <me@tobin.cc>
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739660499b
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13af51926a
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@ -379,12 +379,6 @@ extern "C" {
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tweak: *const c_uchar)
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tweak: *const c_uchar)
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-> c_int;
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-> c_int;
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#[cfg_attr(not(rust_secp_no_symbol_renaming), link_name = "rustsecp256k1_v0_5_0_ec_pubkey_cmp")]
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pub fn secp256k1_ec_pubkey_cmp(cx: *const Context,
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pubkey1: *const PublicKey,
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pubkey2: *const PublicKey)
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-> c_int;
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#[cfg_attr(not(rust_secp_no_symbol_renaming), link_name = "rustsecp256k1_v0_5_0_keypair_sec")]
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#[cfg_attr(not(rust_secp_no_symbol_renaming), link_name = "rustsecp256k1_v0_5_0_keypair_sec")]
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pub fn secp256k1_keypair_sec(cx: *const Context,
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pub fn secp256k1_keypair_sec(cx: *const Context,
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output_seckey: *mut c_uchar,
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output_seckey: *mut c_uchar,
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@ -396,12 +390,6 @@ extern "C" {
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output_pubkey: *mut PublicKey,
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output_pubkey: *mut PublicKey,
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keypair: *const KeyPair)
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keypair: *const KeyPair)
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-> c_int;
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-> c_int;
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#[cfg_attr(not(rust_secp_no_symbol_renaming), link_name = "rustsecp256k1_v0_5_0_xonly_pubkey_cmp")]
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pub fn secp256k1_xonly_pubkey_cmp(cx: *const Context,
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pubkey1: *const XOnlyPublicKey,
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pubkey2: *const XOnlyPublicKey)
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-> c_int;
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}
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}
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#[cfg(not(fuzzing))]
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#[cfg(not(fuzzing))]
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@ -446,6 +434,12 @@ extern "C" {
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pk: *mut PublicKey) -> c_int;
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pk: *mut PublicKey) -> c_int;
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#[cfg_attr(not(rust_secp_no_symbol_renaming), link_name = "rustsecp256k1_v0_5_0_ec_pubkey_cmp")]
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pub fn secp256k1_ec_pubkey_cmp(cx: *const Context,
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pubkey1: *const PublicKey,
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pubkey2: *const PublicKey)
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-> c_int;
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#[cfg_attr(not(rust_secp_no_symbol_renaming), link_name = "rustsecp256k1_v0_5_0_ec_pubkey_tweak_add")]
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#[cfg_attr(not(rust_secp_no_symbol_renaming), link_name = "rustsecp256k1_v0_5_0_ec_pubkey_tweak_add")]
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pub fn secp256k1_ec_pubkey_tweak_add(cx: *const Context,
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pub fn secp256k1_ec_pubkey_tweak_add(cx: *const Context,
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pk: *mut PublicKey,
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pk: *mut PublicKey,
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@ -552,6 +546,13 @@ extern "C" {
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pubkey: *const PublicKey,
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pubkey: *const PublicKey,
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) -> c_int;
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) -> c_int;
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#[cfg_attr(not(rust_secp_no_symbol_renaming), link_name = "rustsecp256k1_v0_5_0_xonly_pubkey_cmp")]
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pub fn secp256k1_xonly_pubkey_cmp(
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cx: *const Context,
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pubkey1: *const XOnlyPublicKey,
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pubkey2: *const XOnlyPublicKey
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) -> c_int;
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#[cfg_attr(not(rust_secp_no_symbol_renaming), link_name = "rustsecp256k1_v0_5_0_xonly_pubkey_tweak_add")]
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#[cfg_attr(not(rust_secp_no_symbol_renaming), link_name = "rustsecp256k1_v0_5_0_xonly_pubkey_tweak_add")]
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pub fn secp256k1_xonly_pubkey_tweak_add(
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pub fn secp256k1_xonly_pubkey_tweak_add(
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cx: *const Context,
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cx: *const Context,
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@ -82,6 +82,7 @@ pub const ONE_KEY: SecretKey = SecretKey([0, 0, 0, 0, 0, 0, 0, 0,
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/// # }
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/// # }
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/// ```
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/// ```
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#[derive(Copy, Clone, PartialEq, Eq, Debug, Hash)]
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#[derive(Copy, Clone, PartialEq, Eq, Debug, Hash)]
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#[cfg_attr(feature = "fuzzing", derive(PartialOrd, Ord))]
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#[repr(transparent)]
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#[repr(transparent)]
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pub struct PublicKey(ffi::PublicKey);
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pub struct PublicKey(ffi::PublicKey);
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@ -671,12 +672,14 @@ impl<'de> serde::Deserialize<'de> for PublicKey {
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}
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}
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}
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}
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#[cfg(not(fuzzing))]
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impl PartialOrd for PublicKey {
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impl PartialOrd for PublicKey {
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fn partial_cmp(&self, other: &PublicKey) -> Option<core::cmp::Ordering> {
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fn partial_cmp(&self, other: &PublicKey) -> Option<core::cmp::Ordering> {
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Some(self.cmp(other))
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Some(self.cmp(other))
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}
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}
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}
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}
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#[cfg(not(fuzzing))]
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impl Ord for PublicKey {
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impl Ord for PublicKey {
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fn cmp(&self, other: &PublicKey) -> core::cmp::Ordering {
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fn cmp(&self, other: &PublicKey) -> core::cmp::Ordering {
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let ret = unsafe {
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let ret = unsafe {
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@ -1899,6 +1902,7 @@ mod test {
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assert_eq!(Ok(sksum), sum1);
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assert_eq!(Ok(sksum), sum1);
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}
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}
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#[cfg(not(fuzzing))]
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#[test]
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#[test]
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fn pubkey_equal() {
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fn pubkey_equal() {
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let pk1 = PublicKey::from_slice(
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let pk1 = PublicKey::from_slice(
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@ -1909,7 +1913,7 @@ mod test {
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&hex!("02e6642fd69bd211f93f7f1f36ca51a26a5290eb2dd1b0d8279a87bb0d480c8443"),
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&hex!("02e6642fd69bd211f93f7f1f36ca51a26a5290eb2dd1b0d8279a87bb0d480c8443"),
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).unwrap();
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).unwrap();
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assert!(pk1 == pk2);
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assert_eq!(pk1, pk2);
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assert!(pk1 <= pk2);
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assert!(pk1 <= pk2);
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assert!(pk2 <= pk1);
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assert!(pk2 <= pk1);
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assert!(!(pk2 < pk1));
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assert!(!(pk2 < pk1));
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