Duplicate impl_array_newtype
The two crates `secp256k1` and `secp256k1-sys` serve very different purposes, having a macro defined in one that is used in both makes it hard to get nuanced things correct in the macro, for example the comparison implementations (`Ord`, `PartialEq` etc.) are semantically different in each crate. In an effort to decouple `secp256k1` and `secp256k1-sys` duplicate the `impl_array_newtype` macro.
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635890322a
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3e28070187
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@ -24,11 +24,11 @@ use core::{fmt, ptr, str};
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use serde::ser::SerializeTuple;
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use serde::ser::SerializeTuple;
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use crate::ffi::types::c_uint;
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use crate::ffi::types::c_uint;
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use crate::ffi::{self, impl_array_newtype, CPtr};
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use crate::ffi::{self, CPtr};
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#[cfg(all(feature = "global-context", feature = "rand-std"))]
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#[cfg(all(feature = "global-context", feature = "rand-std"))]
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use crate::schnorr;
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use crate::schnorr;
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use crate::Error::{self, InvalidPublicKey, InvalidPublicKeySum, InvalidSecretKey};
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use crate::Error::{self, InvalidPublicKey, InvalidPublicKeySum, InvalidSecretKey};
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use crate::{constants, from_hex, Scalar, Secp256k1, Signing, Verification};
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use crate::{constants, from_hex, impl_array_newtype, Scalar, Secp256k1, Signing, Verification};
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#[cfg(feature = "global-context")]
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#[cfg(feature = "global-context")]
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use crate::{ecdsa, Message, SECP256K1};
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use crate::{ecdsa, Message, SECP256K1};
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#[cfg(feature = "bitcoin-hashes")]
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#[cfg(feature = "bitcoin-hashes")]
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@ -200,7 +200,7 @@ pub use serde;
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pub use crate::context::*;
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pub use crate::context::*;
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use crate::ffi::types::AlignedType;
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use crate::ffi::types::AlignedType;
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use crate::ffi::{impl_array_newtype, CPtr};
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use crate::ffi::CPtr;
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#[cfg(feature = "bitcoin-hashes")]
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#[cfg(feature = "bitcoin-hashes")]
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use crate::hashes::Hash;
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use crate::hashes::Hash;
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pub use crate::key::{PublicKey, SecretKey, *};
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pub use crate::key::{PublicKey, SecretKey, *};
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107
src/macros.rs
107
src/macros.rs
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@ -13,6 +13,113 @@
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// If not, see <http://creativecommons.org/publicdomain/zero/1.0/>.
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// If not, see <http://creativecommons.org/publicdomain/zero/1.0/>.
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//
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//
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/// Implement methods and traits for types that contain an inner array.
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#[macro_export]
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macro_rules! impl_array_newtype {
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($thing:ident, $ty:ty, $len:expr) => {
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impl Copy for $thing {}
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impl $thing {
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/// Converts the object to a raw pointer for FFI interfacing.
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#[inline]
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pub fn as_ptr(&self) -> *const $ty {
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let &$thing(ref dat) = self;
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dat.as_ptr()
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}
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/// Converts the object to a mutable raw pointer for FFI interfacing.
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#[inline]
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pub fn as_mut_ptr(&mut self) -> *mut $ty {
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let &mut $thing(ref mut dat) = self;
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dat.as_mut_ptr()
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}
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/// Returns the length of the object as an array.
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#[inline]
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pub fn len(&self) -> usize { $len }
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/// Returns whether the object as an array is empty.
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#[inline]
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pub fn is_empty(&self) -> bool { false }
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}
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impl AsRef<[$ty; $len]> for $thing {
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#[inline]
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/// Gets a reference to the underlying array
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fn as_ref(&self) -> &[$ty; $len] {
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let &$thing(ref dat) = self;
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dat
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}
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}
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impl PartialEq for $thing {
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#[inline]
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fn eq(&self, other: &$thing) -> bool {
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&self[..] == &other[..]
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}
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}
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impl Eq for $thing {}
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impl ::core::hash::Hash for $thing {
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fn hash<H: ::core::hash::Hasher>(&self, state: &mut H) {
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(&self[..]).hash(state)
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}
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}
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impl PartialOrd for $thing {
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#[inline]
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fn partial_cmp(&self, other: &$thing) -> Option<core::cmp::Ordering> {
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self[..].partial_cmp(&other[..])
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}
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}
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impl Ord for $thing {
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#[inline]
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fn cmp(&self, other: &$thing) -> core::cmp::Ordering {
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self[..].cmp(&other[..])
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}
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}
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impl Clone for $thing {
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#[inline]
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fn clone(&self) -> $thing {
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let &$thing(ref dat) = self;
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$thing(dat.clone())
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}
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}
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impl<I> core::ops::Index<I> for $thing
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where
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[$ty]: core::ops::Index<I>,
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{
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type Output = <[$ty] as core::ops::Index<I>>::Output;
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#[inline]
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fn index(&self, index: I) -> &Self::Output { &self.0[index] }
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}
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impl $crate::CPtr for $thing {
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type Target = $ty;
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fn as_c_ptr(&self) -> *const Self::Target {
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if self.is_empty() {
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core::ptr::null()
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} else {
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self.as_ptr()
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}
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}
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fn as_mut_c_ptr(&mut self) -> *mut Self::Target {
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if self.is_empty() {
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core::ptr::null::<Self::Target>() as *mut _
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} else {
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self.as_mut_ptr()
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}
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}
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}
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}
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}
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macro_rules! impl_pretty_debug {
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macro_rules! impl_pretty_debug {
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($thing:ident) => {
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($thing:ident) => {
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impl core::fmt::Debug for $thing {
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impl core::fmt::Debug for $thing {
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@ -7,11 +7,11 @@ use core::{fmt, ptr, str};
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#[cfg(any(test, feature = "rand"))]
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#[cfg(any(test, feature = "rand"))]
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use rand::{CryptoRng, Rng};
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use rand::{CryptoRng, Rng};
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use crate::ffi::{self, impl_array_newtype, CPtr};
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use crate::ffi::{self, CPtr};
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use crate::key::{KeyPair, XOnlyPublicKey};
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use crate::key::{KeyPair, XOnlyPublicKey};
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#[cfg(all(feature = "global-context", feature = "rand-std"))]
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#[cfg(all(feature = "global-context", feature = "rand-std"))]
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use crate::SECP256K1;
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use crate::SECP256K1;
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use crate::{constants, from_hex, Error, Message, Secp256k1, Signing, Verification};
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use crate::{constants, from_hex, impl_array_newtype, Error, Message, Secp256k1, Signing, Verification};
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/// Represents a Schnorr signature.
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/// Represents a Schnorr signature.
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pub struct Signature([u8; constants::SCHNORR_SIGNATURE_SIZE]);
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pub struct Signature([u8; constants::SCHNORR_SIGNATURE_SIZE]);
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