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@ -1,6 +1,6 @@
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#![no_std]
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use core::{mem, num, ptr, slice};
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use core::{mem, num, ptr};
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use num_enum::IntoPrimitive;
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@ -98,58 +98,65 @@ pub enum DisplayHint {
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UpperMac,
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}
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struct TagLenValue<'a, T> {
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tag: T,
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value: &'a [u8],
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struct TagLenValue<T, V> {
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pub tag: T,
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pub value: V,
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}
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impl<'a, T> TagLenValue<'a, T>
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impl<T, V> TagLenValue<T, V>
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where
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T: Copy,
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V: IntoIterator<Item = u8>,
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<V as IntoIterator>::IntoIter: ExactSizeIterator,
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{
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#[inline(always)]
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pub(crate) fn new(tag: T, value: &'a [u8]) -> TagLenValue<'a, T> {
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TagLenValue { tag, value }
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}
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pub(crate) fn write(&self, mut buf: &mut [u8]) -> Result<usize, ()> {
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pub(crate) fn write(self, mut buf: &mut [u8]) -> Result<usize, ()> {
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// Break the abstraction to please the verifier.
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if buf.len() > LOG_BUF_CAPACITY {
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buf = &mut buf[..LOG_BUF_CAPACITY];
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}
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let Self { tag, value } = self;
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let value = value.into_iter();
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let len = value.len();
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let wire_len: LogValueLength = value
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.len()
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.try_into()
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.map_err(|num::TryFromIntError { .. }| ())?;
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let size = mem::size_of_val(tag) + mem::size_of_val(&wire_len) + len;
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let size = mem::size_of_val(&tag) + mem::size_of_val(&wire_len) + len;
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if size > buf.len() {
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return Err(());
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}
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unsafe { ptr::write_unaligned(buf.as_mut_ptr() as *mut _, *tag) };
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buf = &mut buf[mem::size_of_val(tag)..];
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let tag_size = mem::size_of_val(&tag);
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unsafe { ptr::write_unaligned(buf.as_mut_ptr() as *mut _, tag) };
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buf = &mut buf[tag_size..];
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unsafe { ptr::write_unaligned(buf.as_mut_ptr() as *mut _, wire_len) };
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buf = &mut buf[mem::size_of_val(&wire_len)..];
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unsafe { ptr::copy_nonoverlapping(value.as_ptr(), buf.as_mut_ptr(), len) };
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buf.iter_mut().zip(value).for_each(|(dst, src)| {
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*dst = src;
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});
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Ok(size)
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}
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}
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impl<T, V> TagLenValue<T, V> {
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#[inline(always)]
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pub(crate) fn new(tag: T, value: V) -> TagLenValue<T, V> {
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TagLenValue { tag, value }
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}
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}
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pub trait WriteToBuf {
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#[allow(clippy::result_unit_err)]
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fn write(&self, buf: &mut [u8]) -> Result<usize, ()>;
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fn write(self, buf: &mut [u8]) -> Result<usize, ()>;
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}
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macro_rules! impl_write_to_buf {
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($type:ident, $arg_type:expr) => {
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impl WriteToBuf for $type {
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fn write(&self, buf: &mut [u8]) -> Result<usize, ()> {
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TagLenValue::<Argument>::new($arg_type, &self.to_ne_bytes()).write(buf)
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fn write(self, buf: &mut [u8]) -> Result<usize, ()> {
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TagLenValue::new($arg_type, self.to_ne_bytes()).write(buf)
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}
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}
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};
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@ -171,35 +178,34 @@ impl_write_to_buf!(f32, Argument::F32);
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impl_write_to_buf!(f64, Argument::F64);
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impl WriteToBuf for [u8; 16] {
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fn write(&self, buf: &mut [u8]) -> Result<usize, ()> {
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TagLenValue::<Argument>::new(Argument::ArrU8Len16, self).write(buf)
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fn write(self, buf: &mut [u8]) -> Result<usize, ()> {
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TagLenValue::new(Argument::ArrU8Len16, self).write(buf)
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}
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}
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impl WriteToBuf for [u16; 8] {
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fn write(&self, buf: &mut [u8]) -> Result<usize, ()> {
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let ptr = self.as_ptr().cast::<u8>();
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let bytes = unsafe { slice::from_raw_parts(ptr, 16) };
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TagLenValue::<Argument>::new(Argument::ArrU16Len8, bytes).write(buf)
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fn write(self, buf: &mut [u8]) -> Result<usize, ()> {
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let bytes = unsafe { core::mem::transmute::<_, [u8; 16]>(self) };
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TagLenValue::new(Argument::ArrU16Len8, bytes).write(buf)
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}
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}
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impl WriteToBuf for [u8; 6] {
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fn write(&self, buf: &mut [u8]) -> Result<usize, ()> {
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TagLenValue::<Argument>::new(Argument::ArrU8Len6, self).write(buf)
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fn write(self, buf: &mut [u8]) -> Result<usize, ()> {
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TagLenValue::new(Argument::ArrU8Len6, self).write(buf)
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}
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}
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impl WriteToBuf for str {
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fn write(&self, buf: &mut [u8]) -> Result<usize, ()> {
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TagLenValue::<Argument>::new(Argument::Str, self.as_bytes()).write(buf)
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impl WriteToBuf for &str {
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fn write(self, buf: &mut [u8]) -> Result<usize, ()> {
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TagLenValue::new(Argument::Str, self.as_bytes().iter().copied()).write(buf)
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}
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}
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impl WriteToBuf for DisplayHint {
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fn write(&self, buf: &mut [u8]) -> Result<usize, ()> {
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let v: u8 = (*self).into();
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TagLenValue::<Argument>::new(Argument::DisplayHint, &v.to_ne_bytes()).write(buf)
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fn write(self, buf: &mut [u8]) -> Result<usize, ()> {
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let v: u8 = self.into();
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TagLenValue::new(Argument::DisplayHint, v.to_ne_bytes()).write(buf)
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}
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}
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@ -217,17 +223,16 @@ pub fn write_record_header(
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) -> Result<usize, ()> {
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let level: u8 = level.into();
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let mut size = 0;
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for attr in [
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TagLenValue::<RecordField>::new(RecordField::Target, target.as_bytes()),
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TagLenValue::<RecordField>::new(RecordField::Level, &level.to_ne_bytes()),
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TagLenValue::<RecordField>::new(RecordField::Module, module.as_bytes()),
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TagLenValue::<RecordField>::new(RecordField::File, file.as_bytes()),
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TagLenValue::<RecordField>::new(RecordField::Line, &line.to_ne_bytes()),
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TagLenValue::<RecordField>::new(RecordField::NumArgs, &num_args.to_ne_bytes()),
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] {
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size += attr.write(&mut buf[size..])?;
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}
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size += TagLenValue::new(RecordField::Target, target.as_bytes().iter().copied())
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.write(&mut buf[size..])?;
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size += TagLenValue::new(RecordField::Level, level.to_ne_bytes()).write(&mut buf[size..])?;
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size += TagLenValue::new(RecordField::Module, module.as_bytes().iter().copied())
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.write(&mut buf[size..])?;
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size += TagLenValue::new(RecordField::File, file.as_bytes().iter().copied())
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.write(&mut buf[size..])?;
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size += TagLenValue::new(RecordField::Line, line.to_ne_bytes()).write(&mut buf[size..])?;
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size +=
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TagLenValue::new(RecordField::NumArgs, num_args.to_ne_bytes()).write(&mut buf[size..])?;
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Ok(size)
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}
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