Apply x clippy --fix and x fmt
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@ -93,7 +93,7 @@ fn dominators_impl<G: ControlFlowGraph>(graph: &G) -> Inner<G::Node> {
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// These are all done here rather than through one of the 'standard'
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// graph traversals to help make this fast.
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'recurse: while let Some(frame) = stack.last_mut() {
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while let Some(successor) = frame.iter.next() {
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for successor in frame.iter.by_ref() {
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if real_to_pre_order[successor].is_none() {
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let pre_order_idx = pre_order_to_real.push(successor);
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real_to_pre_order[successor] = Some(pre_order_idx);
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@ -48,7 +48,7 @@ struct PostOrderFrame<Node, Iter> {
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let node = frame.node;
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visited[node] = true;
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while let Some(successor) = frame.iter.next() {
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for successor in frame.iter.by_ref() {
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if !visited[successor] {
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stack.push(PostOrderFrame { node: successor, iter: graph.successors(successor) });
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continue 'recurse;
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@ -112,7 +112,7 @@ pub fn push_start_node(&mut self, start_node: G::Node) {
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/// This is equivalent to just invoke `next` repeatedly until
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/// you get a `None` result.
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pub fn complete_search(&mut self) {
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while let Some(_) = self.next() {}
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for _ in self.by_ref() {}
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}
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/// Returns true if node has been visited thus far.
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@ -40,7 +40,7 @@ pub struct SccData<S: Idx> {
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}
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impl<N: Idx, S: Idx + Ord> Sccs<N, S> {
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pub fn new(graph: &(impl DirectedGraph<Node = N> + Successors)) -> Self {
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pub fn new(graph: &impl Successors<Node = N>) -> Self {
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SccsConstruction::construct(graph)
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}
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@ -562,7 +562,7 @@ pub fn new(
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// ASLR is disabled and the heap is otherwise deterministic.
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let pid: u32 = process::id();
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let filename = format!("{crate_name}-{pid:07}.rustc_profile");
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let path = output_directory.join(&filename);
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let path = output_directory.join(filename);
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let profiler =
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Profiler::with_counter(&path, measureme::counters::Counter::by_name(counter_name)?)?;
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@ -125,13 +125,13 @@ pub fn iter(&self) -> std::slice::Iter<'_, (K, V)> {
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/// Iterate over the keys, sorted
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#[inline]
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pub fn keys(&self) -> impl Iterator<Item = &K> + ExactSizeIterator + DoubleEndedIterator {
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pub fn keys(&self) -> impl ExactSizeIterator<Item = &K> + DoubleEndedIterator {
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self.data.iter().map(|(k, _)| k)
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}
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/// Iterate over values, sorted by key
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#[inline]
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pub fn values(&self) -> impl Iterator<Item = &V> + ExactSizeIterator + DoubleEndedIterator {
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pub fn values(&self) -> impl ExactSizeIterator<Item = &V> + DoubleEndedIterator {
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self.data.iter().map(|(_, v)| v)
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}
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@ -69,7 +69,7 @@ fn drop(&mut self) {
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match self.mode {
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Mode::NoSync => {
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let cell = unsafe { &self.lock.mode_union.no_sync };
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debug_assert_eq!(cell.get(), true);
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debug_assert!(cell.get());
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cell.set(false);
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}
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// SAFETY (unlock): We know that the lock is locked as this type is a proof of that.
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@ -286,15 +286,13 @@ fn next(&mut self) -> Option<Piece<'a>> {
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lbrace_byte_pos.to(InnerOffset(rbrace_byte_pos.0 + width)),
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);
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}
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} else {
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if let Some(&(_, maybe)) = self.cur.peek() {
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} else if let Some(&(_, maybe)) = self.cur.peek() {
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match maybe {
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'?' => self.suggest_format_debug(),
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'<' | '^' | '>' => self.suggest_format_align(maybe),
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_ => self.suggest_positional_arg_instead_of_captured_arg(arg),
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}
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}
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}
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Some(NextArgument(Box::new(arg)))
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}
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}
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@ -1028,7 +1026,7 @@ fn find_width_map_from_snippet(
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if next_c == '{' {
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// consume up to 6 hexanumeric chars
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let digits_len =
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s.clone().take(6).take_while(|(_, c)| c.is_digit(16)).count();
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s.clone().take(6).take_while(|(_, c)| c.is_ascii_hexdigit()).count();
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let len_utf8 = s
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.as_str()
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@ -1047,14 +1045,14 @@ fn find_width_map_from_snippet(
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width += required_skips + 2;
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s.nth(digits_len);
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} else if next_c.is_digit(16) {
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} else if next_c.is_ascii_hexdigit() {
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width += 1;
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// We suggest adding `{` and `}` when appropriate, accept it here as if
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// it were correct
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let mut i = 0; // consume up to 6 hexanumeric chars
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while let (Some((_, c)), _) = (s.next(), i < 6) {
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if c.is_digit(16) {
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if c.is_ascii_hexdigit() {
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width += 1;
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} else {
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break;
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@ -252,7 +252,7 @@ fn encode(&self, _s: &mut S) {}
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}
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impl<D: Decoder> Decodable<D> for () {
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fn decode(_: &mut D) -> () {}
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fn decode(_: &mut D) {}
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}
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impl<S: Encoder, T> Encodable<S> for PhantomData<T> {
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@ -156,7 +156,7 @@ fn pretty_terminator<W: Write>(writer: &mut W, terminator: &TerminatorKind) -> i
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fn pretty_terminator_head<W: Write>(writer: &mut W, terminator: &TerminatorKind) -> io::Result<()> {
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use self::TerminatorKind::*;
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const INDENT: &'static str = " ";
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const INDENT: &str = " ";
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match terminator {
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Goto { .. } => write!(writer, "{INDENT}goto"),
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SwitchInt { discr, .. } => {
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@ -315,7 +315,7 @@ fn pretty_operand(operand: &Operand) -> String {
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}
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fn pretty_const(literal: &Const) -> String {
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with(|cx| cx.const_pretty(&literal))
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with(|cx| cx.const_pretty(literal))
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}
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fn pretty_rvalue<W: Write>(writer: &mut W, rval: &Rvalue) -> io::Result<()> {
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@ -526,7 +526,7 @@ pub enum IntTy {
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impl IntTy {
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pub fn num_bytes(self) -> usize {
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match self {
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IntTy::Isize => crate::target::MachineInfo::target_pointer_width().bytes().into(),
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IntTy::Isize => crate::target::MachineInfo::target_pointer_width().bytes(),
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IntTy::I8 => 1,
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IntTy::I16 => 2,
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IntTy::I32 => 4,
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@ -549,7 +549,7 @@ pub enum UintTy {
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impl UintTy {
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pub fn num_bytes(self) -> usize {
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match self {
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UintTy::Usize => crate::target::MachineInfo::target_pointer_width().bytes().into(),
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UintTy::Usize => crate::target::MachineInfo::target_pointer_width().bytes(),
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UintTy::U8 => 1,
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UintTy::U16 => 2,
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UintTy::U32 => 4,
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@ -1185,7 +1185,7 @@ pub fn read_bool(&self) -> Result<bool, Error> {
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match self.read_int()? {
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0 => Ok(false),
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1 => Ok(true),
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val @ _ => Err(error!("Unexpected value for bool: `{val}`")),
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val => Err(error!("Unexpected value for bool: `{val}`")),
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}
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}
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@ -69,7 +69,7 @@ fn write(&mut self, mut bytes: &[u8]) {
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hash.add_to_hash(u16::from_ne_bytes(bytes[..2].try_into().unwrap()) as usize);
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bytes = &bytes[2..];
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}
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if (size_of::<usize>() > 1) && bytes.len() >= 1 {
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if (size_of::<usize>() > 1) && !bytes.is_empty() {
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hash.add_to_hash(bytes[0] as usize);
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}
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self.hash = hash.hash;
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@ -264,9 +264,9 @@ fn from(payload: Box<dyn Any + Send + 'static>) -> Self {
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}
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}
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impl Into<Box<dyn Any + Send>> for PanicMessage {
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fn into(self) -> Box<dyn Any + Send> {
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match self {
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impl From<PanicMessage> for Box<dyn Any + Send> {
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fn from(val: PanicMessage) -> Self {
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match val {
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PanicMessage::StaticStr(s) => Box::new(s),
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PanicMessage::String(s) => Box::new(s),
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PanicMessage::Unknown => {
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@ -200,7 +200,7 @@ fn usage(binary: &str, options: &getopts::Options) {
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pub fn parse_opts(args: &[String]) -> Option<OptRes> {
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// Parse matches.
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let opts = optgroups();
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let binary = args.get(0).map(|c| &**c).unwrap_or("...");
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let binary = args.first().map(|c| &**c).unwrap_or("...");
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let args = args.get(1..).unwrap_or(args);
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let matches = match opts.parse(args) {
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Ok(m) => m,
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@ -524,7 +524,7 @@ fn format(val: Param, op: FormatOp, flags: Flags) -> Result<Vec<u8>, String> {
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} else {
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let mut s_ = Vec::with_capacity(flags.width);
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s_.extend(repeat(b' ').take(n));
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s_.extend(s.into_iter());
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s_.extend(s);
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s = s_;
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}
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}
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