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auto merge of #9583 : blake2-ppc/rust/connect-vec, r=huonw
std::vec: Sane implementations for connect_vec and concat_vec Avoid unnecessary copying of subvectors, and calculate the needed space beforehand. These implementations are simple but better than the previous. Also only implement it once, for all `Vector<T>` using: impl<'self, T: Clone, V: Vector<T>> VectorVector<T> for &'self [V] Closes #9581
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commit
c635fba748
@ -773,12 +773,12 @@ pub fn specialize(cx: &MatchCheckCtxt,
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let num_elements = before.len() + after.len();
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if num_elements < arity && slice.is_some() {
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Some(vec::append(
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vec::concat(&[
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[
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before,
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vec::from_elem(
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arity - num_elements, wild()),
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after
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]),
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].concat_vec(),
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r.tail()
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))
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} else if num_elements == arity {
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@ -173,12 +173,11 @@ impl Clean<Item> for doctree::Module {
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visibility: self.vis.clean(),
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id: self.id,
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inner: ModuleItem(Module {
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items: std::vec::concat(&[self.structs.clean(),
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self.enums.clean(), self.fns.clean(),
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std::vec::concat(self.foreigns.clean()),
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items: [self.structs.clean(), self.enums.clean(),
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self.fns.clean(), self.foreigns.clean().concat_vec(),
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self.mods.clean(), self.typedefs.clean(),
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self.statics.clean(), self.traits.clean(),
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self.impls.clean(), self.view_items.clean()])
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self.impls.clean(), self.view_items.clean()].concat_vec()
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})
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}
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}
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@ -340,59 +340,36 @@ pub fn flat_map<T, U>(v: &[T], f: &fn(t: &T) -> ~[U]) -> ~[U] {
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result
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}
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/// Flattens a vector of vectors of T into a single vector of T.
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pub fn concat<T:Clone>(v: &[~[T]]) -> ~[T] { v.concat_vec() }
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/// Concatenate a vector of vectors, placing a given separator between each
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pub fn connect<T:Clone>(v: &[~[T]], sep: &T) -> ~[T] { v.connect_vec(sep) }
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/// Flattens a vector of vectors of T into a single vector of T.
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pub fn concat_slices<T:Clone>(v: &[&[T]]) -> ~[T] { v.concat_vec() }
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/// Concatenate a vector of vectors, placing a given separator between each
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pub fn connect_slices<T:Clone>(v: &[&[T]], sep: &T) -> ~[T] { v.connect_vec(sep) }
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#[allow(missing_doc)]
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pub trait VectorVector<T> {
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// FIXME #5898: calling these .concat and .connect conflicts with
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// StrVector::con{cat,nect}, since they have generic contents.
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/// Flattens a vector of vectors of T into a single vector of T.
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fn concat_vec(&self) -> ~[T];
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/// Concatenate a vector of vectors, placing a given separator between each.
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fn connect_vec(&self, sep: &T) -> ~[T];
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}
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impl<'self, T:Clone> VectorVector<T> for &'self [~[T]] {
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/// Flattens a vector of slices of T into a single vector of T.
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impl<'self, T: Clone, V: Vector<T>> VectorVector<T> for &'self [V] {
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fn concat_vec(&self) -> ~[T] {
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self.flat_map(|inner| (*inner).clone())
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let size = self.iter().fold(0u, |acc, v| acc + v.as_slice().len());
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let mut result = with_capacity(size);
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for v in self.iter() {
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result.push_all(v.as_slice())
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}
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result
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}
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/// Concatenate a vector of vectors, placing a given separator between each.
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fn connect_vec(&self, sep: &T) -> ~[T] {
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let mut r = ~[];
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let size = self.iter().fold(0u, |acc, v| acc + v.as_slice().len());
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let mut result = with_capacity(size + self.len());
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let mut first = true;
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for inner in self.iter() {
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if first { first = false; } else { r.push((*sep).clone()); }
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r.push_all((*inner).clone());
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for v in self.iter() {
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if first { first = false } else { result.push(sep.clone()) }
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result.push_all(v.as_slice())
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}
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r
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}
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}
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impl<'self,T:Clone> VectorVector<T> for &'self [&'self [T]] {
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/// Flattens a vector of slices of T into a single vector of T.
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fn concat_vec(&self) -> ~[T] {
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self.flat_map(|&inner| inner.to_owned())
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}
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/// Concatenate a vector of slices, placing a given separator between each.
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fn connect_vec(&self, sep: &T) -> ~[T] {
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let mut r = ~[];
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let mut first = true;
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for &inner in self.iter() {
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if first { first = false; } else { r.push((*sep).clone()); }
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r.push_all(inner);
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}
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r
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result
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}
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}
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@ -3109,24 +3086,21 @@ mod tests {
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#[test]
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fn test_concat() {
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assert_eq!(concat([~[1], ~[2,3]]), ~[1, 2, 3]);
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let v: [~[int], ..0] = [];
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assert_eq!(v.concat_vec(), ~[]);
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assert_eq!([~[1], ~[2,3]].concat_vec(), ~[1, 2, 3]);
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assert_eq!(concat_slices([&[1], &[2,3]]), ~[1, 2, 3]);
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assert_eq!([&[1], &[2,3]].concat_vec(), ~[1, 2, 3]);
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}
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#[test]
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fn test_connect() {
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assert_eq!(connect([], &0), ~[]);
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assert_eq!(connect([~[1], ~[2, 3]], &0), ~[1, 0, 2, 3]);
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assert_eq!(connect([~[1], ~[2], ~[3]], &0), ~[1, 0, 2, 0, 3]);
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let v: [~[int], ..0] = [];
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assert_eq!(v.connect_vec(&0), ~[]);
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assert_eq!([~[1], ~[2, 3]].connect_vec(&0), ~[1, 0, 2, 3]);
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assert_eq!([~[1], ~[2], ~[3]].connect_vec(&0), ~[1, 0, 2, 0, 3]);
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assert_eq!(connect_slices([], &0), ~[]);
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assert_eq!(connect_slices([&[1], &[2, 3]], &0), ~[1, 0, 2, 3]);
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assert_eq!(connect_slices([&[1], &[2], &[3]], &0), ~[1, 0, 2, 0, 3]);
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assert_eq!(v.connect_vec(&0), ~[]);
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assert_eq!([&[1], &[2, 3]].connect_vec(&0), ~[1, 0, 2, 3]);
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assert_eq!([&[1], &[2], &[3]].connect_vec(&0), ~[1, 0, 2, 0, 3]);
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}
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@ -3758,7 +3732,9 @@ mod tests {
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#[cfg(test)]
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mod bench {
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use extra::test::BenchHarness;
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use iter::range;
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use vec;
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use vec::VectorVector;
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use option::*;
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#[bench]
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@ -3798,4 +3774,20 @@ mod bench {
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xs + ys;
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}
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}
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#[bench]
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fn concat(bh: &mut BenchHarness) {
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let xss: &[~[uint]] = vec::from_fn(100, |i| range(0, i).collect());
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do bh.iter {
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xss.concat_vec();
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}
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}
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#[bench]
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fn connect(bh: &mut BenchHarness) {
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let xss: &[~[uint]] = vec::from_fn(100, |i| range(0, i).collect());
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do bh.iter {
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xss.connect_vec(&0);
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}
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}
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}
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