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Limit SharedSecret to 32 byte buffer
The `SharedSecret` uses sha256 to hash the secret, this implies the secret is 32 bytes of data. Currently we use a buffer of 256 bytes, this is unnecessary. Change the implementation of `SharedSecret` to use a 32 byte buffer.
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-96
lines changed

2 files changed

+28
-96
lines changed

src/ecdh.rs

Lines changed: 28 additions & 79 deletions
Original file line numberDiff line numberDiff line change
@@ -16,7 +16,6 @@
1616
//!
1717
1818
use core::ptr;
19-
use core::ops::Deref;
2019

2120
use key::{SecretKey, PublicKey};
2221
use ffi::{self, CPtr};
@@ -39,90 +38,18 @@ use secp256k1_sys::types::{c_int, c_uchar, c_void};
3938
/// assert_eq!(sec1, sec2);
4039
/// # }
4140
// ```
42-
#[derive(Copy, Clone)]
43-
pub struct SharedSecret {
44-
data: [u8; 256],
45-
len: usize,
46-
}
47-
impl_raw_debug!(SharedSecret);
48-
49-
50-
// This implementes `From<N>` for all `[u8; N]` arrays from 128bits(16 byte) to 2048bits allowing known hash lengths.
51-
// Lower than 128 bits isn't resistant to collisions any more.
52-
impl_from_array_len!(SharedSecret, 256, (16 20 28 32 48 64 96 128 256));
53-
54-
impl SharedSecret {
55-
56-
/// Creates an empty `SharedSecret`.
57-
pub(crate) fn empty() -> SharedSecret {
58-
SharedSecret {
59-
data: [0u8; 256],
60-
len: 0,
61-
}
62-
}
63-
64-
/// Gets a pointer to the underlying data with the specified capacity.
65-
pub(crate) fn get_data_mut_ptr(&mut self) -> *mut u8 {
66-
self.data.as_mut_ptr()
67-
}
68-
69-
/// Gets the capacity of the underlying data buffer.
70-
pub fn capacity(&self) -> usize {
71-
self.data.len()
72-
}
73-
74-
/// Gets the len of the used data.
75-
pub fn len(&self) -> usize {
76-
self.len
77-
}
78-
79-
/// Returns true if the underlying data buffer is empty.
80-
pub fn is_empty(&self) -> bool {
81-
self.data.is_empty()
82-
}
83-
84-
/// Sets the length of the object.
85-
pub(crate) fn set_len(&mut self, len: usize) {
86-
debug_assert!(len <= self.data.len());
87-
self.len = len;
88-
}
89-
}
90-
91-
impl PartialEq for SharedSecret {
92-
fn eq(&self, other: &SharedSecret) -> bool {
93-
self.as_ref() == other.as_ref()
94-
}
95-
}
96-
97-
impl AsRef<[u8]> for SharedSecret {
98-
fn as_ref(&self) -> &[u8] {
99-
&self.data[..self.len]
100-
}
101-
}
102-
103-
impl Deref for SharedSecret {
104-
type Target = [u8];
105-
fn deref(&self) -> &[u8] {
106-
&self.data[..self.len]
107-
}
108-
}
109-
110-
111-
unsafe extern "C" fn c_callback(output: *mut c_uchar, x: *const c_uchar, y: *const c_uchar, _data: *mut c_void) -> c_int {
112-
ptr::copy_nonoverlapping(x, output, 32);
113-
ptr::copy_nonoverlapping(y, output.offset(32), 32);
114-
1
115-
}
41+
#[derive(Copy, Clone, Debug, PartialEq)]
42+
pub struct SharedSecret([u8; 32]);
11643

11744
impl SharedSecret {
11845
/// Creates a new shared secret from a pubkey and secret key.
11946
#[inline]
12047
pub fn new(point: &PublicKey, scalar: &SecretKey) -> SharedSecret {
121-
let mut ss = SharedSecret::empty();
48+
let mut buf = [0u8; 32];
12249
let res = unsafe {
12350
ffi::secp256k1_ecdh(
12451
ffi::secp256k1_context_no_precomp,
125-
ss.get_data_mut_ptr(),
52+
buf.as_mut_ptr(),
12653
point.as_c_ptr(),
12754
scalar.as_c_ptr(),
12855
ffi::secp256k1_ecdh_hash_function_default,
@@ -132,11 +59,27 @@ impl SharedSecret {
13259
// The default `secp256k1_ecdh_hash_function_default` should always return 1.
13360
// and the scalar was verified to be valid(0 > scalar > group_order) via the type system
13461
debug_assert_eq!(res, 1);
135-
ss.set_len(32); // The default hash function is SHA256, which is 32 bytes long.
136-
ss
62+
SharedSecret(buf)
63+
}
64+
65+
/// Returns true if the underlying data buffer is empty.
66+
pub fn is_empty(&self) -> bool {
67+
self.0.is_empty()
13768
}
13869
}
13970

71+
impl AsRef<[u8]> for SharedSecret {
72+
fn as_ref(&self) -> &[u8] {
73+
&self.0
74+
}
75+
}
76+
77+
unsafe extern "C" fn c_callback(output: *mut c_uchar, x: *const c_uchar, y: *const c_uchar, _data: *mut c_void) -> c_int {
78+
ptr::copy_nonoverlapping(x, output, 32);
79+
ptr::copy_nonoverlapping(y, output.offset(32), 32);
80+
1
81+
}
82+
14083
/// Creates a shared point from public key and secret key.
14184
///
14285
/// Can be used like `SharedSecret` but caller is responsible for then hashing the returned buffer.
@@ -183,6 +126,12 @@ pub fn shared_secret_point(point: &PublicKey, scalar: &SecretKey) -> [u8; 64] {
183126
xy
184127
}
185128

129+
impl From<[u8; 32]> for SharedSecret {
130+
fn from(inner: [u8; 32]) -> SharedSecret {
131+
SharedSecret(inner)
132+
}
133+
}
134+
186135
#[cfg(test)]
187136
#[allow(unused_imports)]
188137
mod tests {

src/macros.rs

Lines changed: 0 additions & 17 deletions
Original file line numberDiff line numberDiff line change
@@ -26,20 +26,3 @@ macro_rules! impl_pretty_debug {
2626
}
2727
}
2828
}
29-
30-
macro_rules! impl_from_array_len {
31-
($thing:ident, $capacity:tt, ($($N:tt)+)) => {
32-
$(
33-
impl From<[u8; $N]> for $thing {
34-
fn from(arr: [u8; $N]) -> Self {
35-
let mut data = [0u8; $capacity];
36-
data[..$N].copy_from_slice(&arr);
37-
$thing {
38-
data,
39-
len: $N,
40-
}
41-
}
42-
}
43-
)+
44-
}
45-
}

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