core: Add &self to core::iter methods
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@@ -98,12 +98,12 @@ impl T: iter::Times {
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will execute the given function exactly x times. If we assume that \
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`x` is an int, this is functionally equivalent to \
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`for int::range(0, x) |_i| { /* anything */ }`."]
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pure fn times(it: fn() -> bool) {
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if self < 0 {
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pure fn times(&self, it: fn() -> bool) {
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if *self < 0 {
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fail fmt!("The .times method expects a nonnegative number, \
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but found %?", self);
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}
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let mut i = self;
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let mut i = *self;
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while i > 0 {
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if !it() { break }
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i -= 1;
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@@ -20,46 +20,53 @@ use cmp::{Eq, Ord};
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use self::inst::{IMPL_T, EACH, SIZE_HINT};
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impl<A> IMPL_T<A>: iter::BaseIter<A> {
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pure fn each(blk: fn(v: &A) -> bool) { EACH(&self, blk) }
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pure fn size_hint() -> Option<uint> { SIZE_HINT(&self) }
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pure fn each(&self, blk: fn(v: &A) -> bool) { EACH(self, blk) }
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pure fn size_hint(&self) -> Option<uint> { SIZE_HINT(self) }
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}
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impl<A> IMPL_T<A>: iter::ExtendedIter<A> {
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pure fn eachi(blk: fn(uint, v: &A) -> bool) { iter::eachi(&self, blk) }
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pure fn all(blk: fn(&A) -> bool) -> bool { iter::all(&self, blk) }
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pure fn any(blk: fn(&A) -> bool) -> bool { iter::any(&self, blk) }
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pure fn foldl<B>(b0: B, blk: fn(&B, &A) -> B) -> B {
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iter::foldl(&self, move b0, blk)
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pure fn eachi(&self, blk: fn(uint, v: &A) -> bool) {
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iter::eachi(self, blk)
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}
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pure fn position(f: fn(&A) -> bool) -> Option<uint> {
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iter::position(&self, f)
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pure fn all(&self, blk: fn(&A) -> bool) -> bool {
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iter::all(self, blk)
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}
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pure fn any(&self, blk: fn(&A) -> bool) -> bool {
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iter::any(self, blk)
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}
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pure fn foldl<B>(&self, b0: B, blk: fn(&B, &A) -> B) -> B {
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iter::foldl(self, move b0, blk)
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}
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pure fn position(&self, f: fn(&A) -> bool) -> Option<uint> {
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iter::position(self, f)
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}
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}
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impl<A: Eq> IMPL_T<A>: iter::EqIter<A> {
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pure fn contains(x: &A) -> bool { iter::contains(&self, x) }
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pure fn count(x: &A) -> uint { iter::count(&self, x) }
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pure fn contains(&self, x: &A) -> bool { iter::contains(self, x) }
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pure fn count(&self, x: &A) -> uint { iter::count(self, x) }
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}
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impl<A: Copy> IMPL_T<A>: iter::CopyableIter<A> {
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pure fn filter_to_vec(pred: fn(a: A) -> bool) -> ~[A] {
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iter::filter_to_vec(&self, pred)
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pure fn filter_to_vec(&self, pred: fn(a: A) -> bool) -> ~[A] {
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iter::filter_to_vec(self, pred)
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}
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pure fn map_to_vec<B>(op: fn(v: A) -> B) -> ~[B] {
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iter::map_to_vec(&self, op)
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pure fn map_to_vec<B>(&self, op: fn(v: A) -> B) -> ~[B] {
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iter::map_to_vec(self, op)
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}
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pure fn to_vec() -> ~[A] { iter::to_vec(&self) }
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pure fn to_vec(&self) -> ~[A] { iter::to_vec(self) }
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pure fn flat_map_to_vec<B:Copy,IB:BaseIter<B>>(op: fn(a: A) -> IB)
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pure fn flat_map_to_vec<B:Copy,IB:BaseIter<B>>(&self, op: fn(a: A) -> IB)
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-> ~[B] {
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iter::flat_map_to_vec(&self, op)
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iter::flat_map_to_vec(self, op)
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}
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pure fn find(&self, f: fn(A) -> bool) -> Option<A> {
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iter::find(self, f)
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}
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pure fn find(p: fn(a: A) -> bool) -> Option<A> { iter::find(&self, p) }
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}
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impl<A: Copy Ord> IMPL_T<A>: iter::CopyableOrderedIter<A> {
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pure fn min() -> A { iter::min(&self) }
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pure fn max() -> A { iter::max(&self) }
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pure fn min(&self) -> A { iter::min(self) }
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pure fn max(&self) -> A { iter::max(self) }
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}
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@@ -23,38 +23,39 @@ use cmp::{Eq, Ord};
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pub type InitOp<T> = &fn(uint) -> T;
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pub trait BaseIter<A> {
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pure fn each(blk: fn(v: &A) -> bool);
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pure fn size_hint() -> Option<uint>;
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pure fn each(&self, blk: fn(v: &A) -> bool);
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pure fn size_hint(&self) -> Option<uint>;
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}
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pub trait ExtendedIter<A> {
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pure fn eachi(blk: fn(uint, v: &A) -> bool);
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pure fn all(blk: fn(&A) -> bool) -> bool;
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pure fn any(blk: fn(&A) -> bool) -> bool;
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pure fn foldl<B>(b0: B, blk: fn(&B, &A) -> B) -> B;
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pure fn position(f: fn(&A) -> bool) -> Option<uint>;
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pure fn eachi(&self, blk: fn(uint, v: &A) -> bool);
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pure fn all(&self, blk: fn(&A) -> bool) -> bool;
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pure fn any(&self, blk: fn(&A) -> bool) -> bool;
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pure fn foldl<B>(&self, b0: B, blk: fn(&B, &A) -> B) -> B;
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pure fn position(&self, f: fn(&A) -> bool) -> Option<uint>;
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}
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pub trait EqIter<A:Eq> {
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pure fn contains(x: &A) -> bool;
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pure fn count(x: &A) -> uint;
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pure fn contains(&self, x: &A) -> bool;
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pure fn count(&self, x: &A) -> uint;
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}
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pub trait Times {
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pure fn times(it: fn() -> bool);
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pure fn times(&self, it: fn() -> bool);
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}
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pub trait CopyableIter<A:Copy> {
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pure fn filter_to_vec(pred: fn(a: A) -> bool) -> ~[A];
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pure fn map_to_vec<B>(op: fn(v: A) -> B) -> ~[B];
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pure fn flat_map_to_vec<B:Copy,IB: BaseIter<B>>(op: fn(A) -> IB) -> ~[B];
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pure fn to_vec() -> ~[A];
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pure fn find(p: fn(a: A) -> bool) -> Option<A>;
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pure fn filter_to_vec(&self, pred: fn(a: A) -> bool) -> ~[A];
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pure fn map_to_vec<B>(&self, op: fn(v: A) -> B) -> ~[B];
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pure fn flat_map_to_vec<B:Copy,IB: BaseIter<B>>(&self, op: fn(A) -> IB)
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-> ~[B];
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pure fn to_vec(&self) -> ~[A];
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pure fn find(&self, p: fn(A) -> bool) -> Option<A>;
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}
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pub trait CopyableOrderedIter<A:Copy Ord> {
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pure fn min() -> A;
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pure fn max() -> A;
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pure fn min(&self) -> A;
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pure fn max(&self) -> A;
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}
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pub trait CopyableNonstrictIter<A:Copy> {
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@@ -222,9 +223,9 @@ pub pure fn max<A:Copy Ord,IA:BaseIter<A>>(self: &IA) -> A {
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}
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pub pure fn find<A: Copy,IA:BaseIter<A>>(self: &IA,
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p: fn(a: A) -> bool) -> Option<A> {
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f: fn(A) -> bool) -> Option<A> {
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for self.each |i| {
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if p(*i) { return Some(*i) }
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if f(*i) { return Some(*i) }
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}
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return None;
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}
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@@ -92,8 +92,8 @@ impl T: iter::Times {
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will execute the given function exactly x times. If we assume that \
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`x` is an int, this is functionally equivalent to \
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`for int::range(0, x) |_i| { /* anything */ }`."]
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pure fn times(it: fn() -> bool) {
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let mut i = self;
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pure fn times(&self, it: fn() -> bool) {
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let mut i = *self;
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while i > 0 {
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if !it() { break }
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i -= 1;
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@@ -2013,57 +2013,62 @@ pub mod bytes {
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// required in the slice.
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impl<A> &[A]: iter::BaseIter<A> {
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pub pure fn each(blk: fn(v: &A) -> bool) {
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pub pure fn each(&self, blk: fn(v: &A) -> bool) {
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// FIXME(#2263)---should be able to call each(self, blk)
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for each(self) |e| {
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for each(*self) |e| {
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if (!blk(e)) {
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return;
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}
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}
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}
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pure fn size_hint() -> Option<uint> { Some(len(self)) }
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pure fn size_hint(&self) -> Option<uint> { Some(len(*self)) }
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}
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impl<A> &[A]: iter::ExtendedIter<A> {
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pub pure fn eachi(blk: fn(uint, v: &A) -> bool) {
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iter::eachi(&self, blk)
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pub pure fn eachi(&self, blk: fn(uint, v: &A) -> bool) {
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iter::eachi(self, blk)
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}
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pub pure fn all(blk: fn(&A) -> bool) -> bool { iter::all(&self, blk) }
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pub pure fn any(blk: fn(&A) -> bool) -> bool { iter::any(&self, blk) }
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pub pure fn foldl<B>(b0: B, blk: fn(&B, &A) -> B) -> B {
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iter::foldl(&self, b0, blk)
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pub pure fn all(&self, blk: fn(&A) -> bool) -> bool {
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iter::all(self, blk)
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}
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pub pure fn position(f: fn(&A) -> bool) -> Option<uint> {
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iter::position(&self, f)
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pub pure fn any(&self, blk: fn(&A) -> bool) -> bool {
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iter::any(self, blk)
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}
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pub pure fn foldl<B>(&self, b0: B, blk: fn(&B, &A) -> B) -> B {
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iter::foldl(self, b0, blk)
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}
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pub pure fn position(&self, f: fn(&A) -> bool) -> Option<uint> {
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iter::position(self, f)
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}
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}
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impl<A: Eq> &[A]: iter::EqIter<A> {
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pub pure fn contains(x: &A) -> bool { iter::contains(&self, x) }
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pub pure fn count(x: &A) -> uint { iter::count(&self, x) }
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pub pure fn contains(&self, x: &A) -> bool { iter::contains(self, x) }
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pub pure fn count(&self, x: &A) -> uint { iter::count(self, x) }
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}
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impl<A: Copy> &[A]: iter::CopyableIter<A> {
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pure fn filter_to_vec(pred: fn(a: A) -> bool) -> ~[A] {
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iter::filter_to_vec(&self, pred)
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pure fn filter_to_vec(&self, pred: fn(a: A) -> bool) -> ~[A] {
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iter::filter_to_vec(self, pred)
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}
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pure fn map_to_vec<B>(op: fn(v: A) -> B) -> ~[B] {
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iter::map_to_vec(&self, op)
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pure fn map_to_vec<B>(&self, op: fn(v: A) -> B) -> ~[B] {
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iter::map_to_vec(self, op)
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}
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pure fn to_vec() -> ~[A] { iter::to_vec(&self) }
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pure fn to_vec(&self) -> ~[A] { iter::to_vec(self) }
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pure fn flat_map_to_vec<B:Copy,IB:BaseIter<B>>(op: fn(A) -> IB) -> ~[B] {
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iter::flat_map_to_vec(&self, op)
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pure fn flat_map_to_vec<B:Copy,IB:BaseIter<B>>(&self, op: fn(A) -> IB)
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-> ~[B] {
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iter::flat_map_to_vec(self, op)
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}
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pub pure fn find(p: fn(a: A) -> bool) -> Option<A> {
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iter::find(&self, p)
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pub pure fn find(&self, f: fn(A) -> bool) -> Option<A> {
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iter::find(self, f)
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}
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}
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impl<A: Copy Ord> &[A]: iter::CopyableOrderedIter<A> {
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pure fn min() -> A { iter::min(&self) }
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pure fn max() -> A { iter::max(&self) }
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pure fn min(&self) -> A { iter::min(self) }
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pure fn max(&self) -> A { iter::max(self) }
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}
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impl<A:Copy> &[A] : iter::CopyableNonstrictIter<A> {
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