Improve feature usage bitcoin-hashes[-std]
Currently we have a feature `bitcoin-hashes-std` and a dependency `bitcoin_hashes`, this means one has to think about and change the `_` and `-` when coding. The underscore in `bitcoin_hashes` is an artifact of days gone by and we cannot fix it but we can cover it up and make our lives easier, especially now we have `bitcoin-hashes-std`. Improve feature usage of the `bitcoin_hashes` library by: - Add a feature `bitcoin-hashes` that enables `bitcoin_hashes`. - Use the new feature in all feature gated code - Use `bitcoin-hashes-std` in feature gated code that includes other `std` features (e.g. `rand-std`)
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@ -22,7 +22,8 @@ default = ["std"]
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std = ["alloc", "secp256k1-sys/std"]
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# allow use of Secp256k1::new and related API that requires an allocator
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alloc = ["secp256k1-sys/alloc"]
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bitcoin-hashes-std = ["bitcoin_hashes/std"]
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bitcoin-hashes = ["bitcoin_hashes"] # Feature alias because of the underscore.
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bitcoin-hashes-std = ["bitcoin-hashes", "bitcoin_hashes/std"]
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rand-std = ["rand/std", "rand/std_rng"]
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recovery = ["secp256k1-sys/recovery"]
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lowmemory = ["secp256k1-sys/lowmemory"]
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@ -2,7 +2,7 @@
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set -ex
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FEATURES="bitcoin_hashes global-context lowmemory rand recovery serde std alloc"
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FEATURES="bitcoin-hashes global-context lowmemory rand recovery serde std alloc"
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# These features are typically enabled along with the 'std' feature, so we test
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# them together with 'std'.
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STD_FEATURES="rand-std bitcoin-hashes-std"
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@ -127,7 +127,7 @@ impl AsRef<[u8]> for SharedSecret {
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///
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/// # Examples
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/// ```
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/// # #[cfg(all(feature = "bitcoin_hashes", feature = "rand-std", feature = "std"))] {
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/// # #[cfg(all(feature = "bitcoin-hashes-std", feature = "rand-std", feature = "std"))] {
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/// # use secp256k1::{ecdh, Secp256k1, PublicKey, SecretKey};
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/// # use secp256k1::hashes::{Hash, sha512};
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/// # use secp256k1::rand::thread_rng;
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@ -239,7 +239,7 @@ mod tests {
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#[test]
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#[cfg(not(fuzzing))]
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#[cfg(all(feature="rand-std", feature = "std", feature = "bitcoin_hashes"))]
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#[cfg(all(feature="std", feature = "rand-std", feature = "bitcoin-hashes-std"))]
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fn bitcoin_hashes_and_sys_generate_same_secret() {
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use bitcoin_hashes::{sha256, Hash, HashEngine};
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use crate::ecdh::shared_secret_point;
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@ -25,7 +25,7 @@ use crate::Error::{self, InvalidPublicKey, InvalidPublicKeySum, InvalidSecretKey
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use crate::ffi::{self, CPtr, impl_array_newtype};
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use crate::ffi::types::c_uint;
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#[cfg(feature = "bitcoin_hashes")]
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#[cfg(feature = "bitcoin-hashes")]
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use crate::{hashes, ThirtyTwoByteHash};
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#[cfg(feature = "serde")]
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@ -246,8 +246,8 @@ impl SecretKey {
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/// assert_eq!(sk1, sk2);
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/// # }
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/// ```
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#[cfg(feature = "bitcoin_hashes")]
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#[cfg_attr(docsrs, doc(cfg(feature = "bitcoin_hashes")))]
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#[cfg(feature = "bitcoin-hashes")]
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#[cfg_attr(docsrs, doc(cfg(feature = "bitcoin-hashes")))]
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#[inline]
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pub fn from_hashed_data<H: ThirtyTwoByteHash + hashes::Hash>(data: &[u8]) -> Self {
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<H as hashes::Hash>::hash(data).into()
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@ -377,7 +377,7 @@ impl SecretKey {
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}
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}
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#[cfg(feature = "bitcoin_hashes")]
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#[cfg(feature = "bitcoin-hashes")]
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impl<T: ThirtyTwoByteHash> From<T> for SecretKey {
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/// Converts a 32-byte hash directly to a secret key without error paths.
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fn from(t: T) -> SecretKey {
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36
src/lib.rs
36
src/lib.rs
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@ -41,7 +41,7 @@
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//! trigger any assertion failures in the upstream library.
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//!
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//! ```rust
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//! # #[cfg(all(feature = "std", feature="rand-std", feature="bitcoin_hashes"))] {
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//! # #[cfg(all(feature = "std", feature="rand-std", feature="bitcoin-hashes-std"))] {
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//! use secp256k1::rand::rngs::OsRng;
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//! use secp256k1::{Secp256k1, Message};
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//! use secp256k1::hashes::sha256;
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@ -58,7 +58,7 @@
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//! If the "global-context" feature is enabled you have access to an alternate API.
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//!
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//! ```rust
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//! # #[cfg(all(feature="global-context", feature = "std", feature="rand-std", features = "bitcoin_hashes"))] {
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//! # #[cfg(all(feature="global-context", feature = "std", feature="rand-std", features = "bitcoin-hashes-std"))] {
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//! use secp256k1::rand::thread_rng;
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//! use secp256k1::{generate_keypair, Message};
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//! use secp256k1::hashes::sha256;
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@ -71,7 +71,7 @@
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//! # }
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//! ```
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//!
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//! The above code requires `rust-secp256k1` to be compiled with the `rand-std` and `bitcoin_hashes`
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//! The above code requires `rust-secp256k1` to be compiled with the `rand-std` and `bitcoin-hashes-std`
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//! feature enabled, to get access to [`generate_keypair`](struct.Secp256k1.html#method.generate_keypair)
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//! Alternately, keys and messages can be parsed from slices, like
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//!
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@ -83,7 +83,7 @@
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//! let secret_key = SecretKey::from_slice(&[0xcd; 32]).expect("32 bytes, within curve order");
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//! let public_key = PublicKey::from_secret_key(&secp, &secret_key);
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//! // This is unsafe unless the supplied byte slice is the output of a cryptographic hash function.
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//! // See the above example for how to use this library together with `bitcoin_hashes`.
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//! // See the above example for how to use this library together with `bitcoin-hashes-std`.
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//! let message = Message::from_slice(&[0xab; 32]).expect("32 bytes");
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//!
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//! let sig = secp.sign_ecdsa(&message, &secret_key);
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@ -141,12 +141,14 @@
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//! * `alloc` - use the `alloc` standard Rust library to provide heap allocations.
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//! * `rand` - use `rand` library to provide random generator (e.g. to generate keys).
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//! * `rand-std` - use `rand` library with its `std` feature enabled. (Implies `rand`.)
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//! * `bitcoin-hashes` - use the `bitcoin-hashes` library.
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//! * `bitcoin-hashes-std` - use the `bitcoin-hashes` library with its `std` feature enabled (implies `bitcoin-hashes`).
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//! * `recovery` - enable functions that can compute the public key from signature.
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//! * `lowmemory` - optimize the library for low-memory environments.
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//! * `global-context` - enable use of global secp256k1 context (implies `std`).
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//! * `serde` - implements serialization and deserialization for types in this crate using `serde`.
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//! **Important**: `serde` encoding is **not** the same as consensus encoding!
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//! * `bitcoin_hashes` - enables interaction with the `bitcoin-hashes` crate (e.g. conversions).
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//!
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// Coding conventions
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#![deny(non_upper_case_globals, non_camel_case_types, non_snake_case)]
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@ -188,8 +190,8 @@ pub use rand;
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#[cfg(feature = "serde")]
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#[cfg_attr(docsrs, doc(cfg(feature = "serde")))]
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pub use serde;
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#[cfg(feature = "bitcoin_hashes")]
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#[cfg_attr(docsrs, doc(cfg(feature = "bitcoin_hashes")))]
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#[cfg(feature = "bitcoin-hashes")]
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#[cfg_attr(docsrs, doc(cfg(feature = "bitcoin-hashes")))]
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pub use bitcoin_hashes as hashes;
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pub use secp256k1_sys as ffi;
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pub use crate::key::{PublicKey, SecretKey};
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@ -203,7 +205,7 @@ pub use context::global::SECP256K1;
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use core::{fmt, str, mem, marker::PhantomData};
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use crate::ffi::{CPtr, impl_array_newtype, types::AlignedType};
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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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// Backwards compatible changes
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@ -233,24 +235,24 @@ pub trait ThirtyTwoByteHash {
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fn into_32(self) -> [u8; 32];
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}
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#[cfg(feature = "bitcoin_hashes")]
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#[cfg_attr(docsrs, doc(cfg(feature = "bitcoin_hashes")))]
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#[cfg(feature = "bitcoin-hashes")]
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#[cfg_attr(docsrs, doc(cfg(feature = "bitcoin-hashes")))]
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impl ThirtyTwoByteHash for hashes::sha256::Hash {
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fn into_32(self) -> [u8; 32] {
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self.into_inner()
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}
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}
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#[cfg(feature = "bitcoin_hashes")]
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#[cfg_attr(docsrs, doc(cfg(feature = "bitcoin_hashes")))]
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#[cfg(feature = "bitcoin-hashes")]
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#[cfg_attr(docsrs, doc(cfg(feature = "bitcoin-hashes")))]
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impl ThirtyTwoByteHash for hashes::sha256d::Hash {
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fn into_32(self) -> [u8; 32] {
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self.into_inner()
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}
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}
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#[cfg(feature = "bitcoin_hashes")]
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#[cfg_attr(docsrs, doc(cfg(feature = "bitcoin_hashes")))]
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#[cfg(feature = "bitcoin-hashes")]
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#[cfg_attr(docsrs, doc(cfg(feature = "bitcoin-hashes")))]
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impl<T: hashes::sha256t::Tag> ThirtyTwoByteHash for hashes::sha256t::Hash<T> {
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fn into_32(self) -> [u8; 32] {
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self.into_inner()
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@ -299,8 +301,8 @@ impl Message {
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/// assert_eq!(m1, m2);
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/// # }
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/// ```
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#[cfg(feature = "bitcoin_hashes")]
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#[cfg_attr(docsrs, doc(cfg(feature = "bitcoin_hashes")))]
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#[cfg(feature = "bitcoin-hashes")]
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#[cfg_attr(docsrs, doc(cfg(feature = "bitcoin-hashes")))]
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pub fn from_hashed_data<H: ThirtyTwoByteHash + hashes::Hash>(data: &[u8]) -> Self {
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<H as hashes::Hash>::hash(data).into()
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}
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@ -1040,7 +1042,7 @@ mod tests {
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assert!(SECP256K1.verify_ecdsa(&msg, &sig, &pk).is_ok());
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}
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#[cfg(feature = "bitcoin_hashes")]
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#[cfg(feature = "bitcoin-hashes")]
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#[test]
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fn test_from_hash() {
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use crate::hashes::{self, Hash};
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@ -43,7 +43,7 @@ macro_rules! impl_display_secret {
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}
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}
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#[cfg(all(not(feature = "std"), feature = "bitcoin_hashes"))]
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#[cfg(all(not(feature = "std"), feature = "bitcoin-hashes"))]
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impl ::core::fmt::Debug for $thing {
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fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
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use crate::hashes::{sha256, Hash, HashEngine};
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@ -63,7 +63,7 @@ macro_rules! impl_display_secret {
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}
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}
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#[cfg(all(not(feature = "std"), not(feature = "bitcoin_hashes")))]
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#[cfg(all(not(feature = "std"), not(feature = "bitcoin-hashes")))]
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impl ::core::fmt::Debug for $thing {
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fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
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write!(f, "<secret requires std or bitcoin_hashes feature to display>")
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