Move const_assert to bitcoin_internals
This is an internal macro, now that we have the `internals` crate put `const_assert` in it.
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@ -219,7 +219,7 @@ macro_rules! decoder_fn {
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($name:ident, $val_type:ty, $readfn:ident, $byte_len: expr) => {
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#[inline]
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fn $name(&mut self) -> Result<$val_type, Error> {
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$crate::internal_macros::const_assert!(::core::mem::size_of::<$val_type>() == $byte_len);
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bitcoin_internals::const_assert!(core::mem::size_of::<$val_type>() == $byte_len);
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let mut val = [0; $byte_len];
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self.read_exact(&mut val[..]).map_err(Error::Io)?;
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Ok(endian::$readfn(&val))
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@ -465,11 +465,3 @@ macro_rules! impl_bytes_newtype {
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};
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}
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pub(crate) use impl_bytes_newtype;
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/// Asserts a boolean expression at compile time.
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macro_rules! const_assert {
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($x:expr) => {{
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const _: [(); 0 - !$x as usize] = [];
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}};
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}
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pub(crate) use const_assert;
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@ -30,7 +30,7 @@ macro_rules! define_be_to_array {
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($name: ident, $type: ty, $byte_len: expr) => {
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#[inline]
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pub fn $name(val: $type) -> [u8; $byte_len] {
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$crate::internal_macros::const_assert!(::core::mem::size_of::<$type>() == $byte_len);
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bitcoin_internals::const_assert!(core::mem::size_of::<$type>() == $byte_len);
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let mut res = [0; $byte_len];
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for i in 0..$byte_len {
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res[i] = ((val >> ($byte_len - i - 1)*8) & 0xff) as u8;
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@ -43,7 +43,7 @@ macro_rules! define_le_to_array {
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($name: ident, $type: ty, $byte_len: expr) => {
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#[inline]
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pub fn $name(val: $type) -> [u8; $byte_len] {
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$crate::internal_macros::const_assert!(::core::mem::size_of::<$type>() == $byte_len);
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bitcoin_internals::const_assert!(core::mem::size_of::<$type>() == $byte_len);
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let mut res = [0; $byte_len];
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for i in 0..$byte_len {
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res[i] = ((val >> i*8) & 0xff) as u8;
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@ -73,3 +73,11 @@ macro_rules! debug_from_display {
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}
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};
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}
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/// Asserts a boolean expression at compile time.
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#[macro_export]
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macro_rules! const_assert {
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($x:expr) => {{
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const _: [(); 0 - !$x as usize] = [];
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}};
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}
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