bevy::ecs::label

Struct Box

1.0.0 · source
pub struct Box<T, A = Global>(/* private fields */)
where
    A: Allocator,
    T: ?Sized;
Expand description

A pointer type that uniquely owns a heap allocation of type T.

See the module-level documentation for more.

Implementations§

source§

impl<T> Box<T>

1.0.0 · source

pub fn new(x: T) -> Box<T>

Allocates memory on the heap and then places x into it.

This doesn’t actually allocate if T is zero-sized.

§Examples
let five = Box::new(5);
1.82.0 · source

pub fn new_uninit() -> Box<MaybeUninit<T>>

Constructs a new box with uninitialized contents.

§Examples
let mut five = Box::<u32>::new_uninit();

let five = unsafe {
    // Deferred initialization:
    five.as_mut_ptr().write(5);

    five.assume_init()
};

assert_eq!(*five, 5)
source

pub fn new_zeroed() -> Box<MaybeUninit<T>>

🔬This is a nightly-only experimental API. (new_zeroed_alloc)

Constructs a new Box with uninitialized contents, with the memory being filled with 0 bytes.

See MaybeUninit::zeroed for examples of correct and incorrect usage of this method.

§Examples
#![feature(new_zeroed_alloc)]

let zero = Box::<u32>::new_zeroed();
let zero = unsafe { zero.assume_init() };

assert_eq!(*zero, 0)
1.33.0 · source

pub fn pin(x: T) -> Pin<Box<T>>

Constructs a new Pin<Box<T>>. If T does not implement Unpin, then x will be pinned in memory and unable to be moved.

Constructing and pinning of the Box can also be done in two steps: Box::pin(x) does the same as Box::into_pin(Box::new(x)). Consider using into_pin if you already have a Box<T>, or if you want to construct a (pinned) Box in a different way than with Box::new.

source

pub fn try_new(x: T) -> Result<Box<T>, AllocError>

🔬This is a nightly-only experimental API. (allocator_api)

Allocates memory on the heap then places x into it, returning an error if the allocation fails

This doesn’t actually allocate if T is zero-sized.

§Examples
#![feature(allocator_api)]

let five = Box::try_new(5)?;
source

pub fn try_new_uninit() -> Result<Box<MaybeUninit<T>>, AllocError>

🔬This is a nightly-only experimental API. (allocator_api)

Constructs a new box with uninitialized contents on the heap, returning an error if the allocation fails

§Examples
#![feature(allocator_api)]

let mut five = Box::<u32>::try_new_uninit()?;

let five = unsafe {
    // Deferred initialization:
    five.as_mut_ptr().write(5);

    five.assume_init()
};

assert_eq!(*five, 5);
source

pub fn try_new_zeroed() -> Result<Box<MaybeUninit<T>>, AllocError>

🔬This is a nightly-only experimental API. (allocator_api)

Constructs a new Box with uninitialized contents, with the memory being filled with 0 bytes on the heap

See MaybeUninit::zeroed for examples of correct and incorrect usage of this method.

§Examples
#![feature(allocator_api)]

let zero = Box::<u32>::try_new_zeroed()?;
let zero = unsafe { zero.assume_init() };

assert_eq!(*zero, 0);
source§

impl<T, A> Box<T, A>
where A: Allocator,

source

pub fn new_in(x: T, alloc: A) -> Box<T, A>
where A: Allocator,

🔬This is a nightly-only experimental API. (allocator_api)

Allocates memory in the given allocator then places x into it.

This doesn’t actually allocate if T is zero-sized.

§Examples
#![feature(allocator_api)]

use std::alloc::System;

let five = Box::new_in(5, System);
source

pub fn try_new_in(x: T, alloc: A) -> Result<Box<T, A>, AllocError>
where A: Allocator,

🔬This is a nightly-only experimental API. (allocator_api)

Allocates memory in the given allocator then places x into it, returning an error if the allocation fails

This doesn’t actually allocate if T is zero-sized.

§Examples
#![feature(allocator_api)]

use std::alloc::System;

let five = Box::try_new_in(5, System)?;
source

pub fn new_uninit_in(alloc: A) -> Box<MaybeUninit<T>, A>
where A: Allocator,

🔬This is a nightly-only experimental API. (allocator_api)

Constructs a new box with uninitialized contents in the provided allocator.

§Examples
#![feature(allocator_api)]

use std::alloc::System;

let mut five = Box::<u32, _>::new_uninit_in(System);

let five = unsafe {
    // Deferred initialization:
    five.as_mut_ptr().write(5);

    five.assume_init()
};

assert_eq!(*five, 5)
source

pub fn try_new_uninit_in(alloc: A) -> Result<Box<MaybeUninit<T>, A>, AllocError>
where A: Allocator,

🔬This is a nightly-only experimental API. (allocator_api)

Constructs a new box with uninitialized contents in the provided allocator, returning an error if the allocation fails

§Examples
#![feature(allocator_api)]

use std::alloc::System;

let mut five = Box::<u32, _>::try_new_uninit_in(System)?;

let five = unsafe {
    // Deferred initialization:
    five.as_mut_ptr().write(5);

    five.assume_init()
};

assert_eq!(*five, 5);
source

pub fn new_zeroed_in(alloc: A) -> Box<MaybeUninit<T>, A>
where A: Allocator,

🔬This is a nightly-only experimental API. (allocator_api)

Constructs a new Box with uninitialized contents, with the memory being filled with 0 bytes in the provided allocator.

See MaybeUninit::zeroed for examples of correct and incorrect usage of this method.

§Examples
#![feature(allocator_api)]

use std::alloc::System;

let zero = Box::<u32, _>::new_zeroed_in(System);
let zero = unsafe { zero.assume_init() };

assert_eq!(*zero, 0)
source

pub fn try_new_zeroed_in(alloc: A) -> Result<Box<MaybeUninit<T>, A>, AllocError>
where A: Allocator,

🔬This is a nightly-only experimental API. (allocator_api)

Constructs a new Box with uninitialized contents, with the memory being filled with 0 bytes in the provided allocator, returning an error if the allocation fails,

See MaybeUninit::zeroed for examples of correct and incorrect usage of this method.

§Examples
#![feature(allocator_api)]

use std::alloc::System;

let zero = Box::<u32, _>::try_new_zeroed_in(System)?;
let zero = unsafe { zero.assume_init() };

assert_eq!(*zero, 0);
source

pub fn pin_in(x: T, alloc: A) -> Pin<Box<T, A>>
where A: 'static + Allocator,

🔬This is a nightly-only experimental API. (allocator_api)

Constructs a new Pin<Box<T, A>>. If T does not implement Unpin, then x will be pinned in memory and unable to be moved.

Constructing and pinning of the Box can also be done in two steps: Box::pin_in(x, alloc) does the same as Box::into_pin(Box::new_in(x, alloc)). Consider using into_pin if you already have a Box<T, A>, or if you want to construct a (pinned) Box in a different way than with Box::new_in.

source

pub fn into_boxed_slice(boxed: Box<T, A>) -> Box<[T], A>

🔬This is a nightly-only experimental API. (box_into_boxed_slice)

Converts a Box<T> into a Box<[T]>

This conversion does not allocate on the heap and happens in place.

source

pub fn into_inner(boxed: Box<T, A>) -> T

🔬This is a nightly-only experimental API. (box_into_inner)

Consumes the Box, returning the wrapped value.

§Examples
#![feature(box_into_inner)]

let c = Box::new(5);

assert_eq!(Box::into_inner(c), 5);
source§

impl<T> Box<[T]>

1.82.0 · source

pub fn new_uninit_slice(len: usize) -> Box<[MaybeUninit<T>]>

Constructs a new boxed slice with uninitialized contents.

§Examples
let mut values = Box::<[u32]>::new_uninit_slice(3);

let values = unsafe {
    // Deferred initialization:
    values[0].as_mut_ptr().write(1);
    values[1].as_mut_ptr().write(2);
    values[2].as_mut_ptr().write(3);

    values.assume_init()
};

assert_eq!(*values, [1, 2, 3])
source

pub fn new_zeroed_slice(len: usize) -> Box<[MaybeUninit<T>]>

🔬This is a nightly-only experimental API. (new_zeroed_alloc)

Constructs a new boxed slice with uninitialized contents, with the memory being filled with 0 bytes.

See MaybeUninit::zeroed for examples of correct and incorrect usage of this method.

§Examples
#![feature(new_zeroed_alloc)]

let values = Box::<[u32]>::new_zeroed_slice(3);
let values = unsafe { values.assume_init() };

assert_eq!(*values, [0, 0, 0])
source

pub fn try_new_uninit_slice( len: usize, ) -> Result<Box<[MaybeUninit<T>]>, AllocError>

🔬This is a nightly-only experimental API. (allocator_api)

Constructs a new boxed slice with uninitialized contents. Returns an error if the allocation fails.

§Examples
#![feature(allocator_api)]

let mut values = Box::<[u32]>::try_new_uninit_slice(3)?;
let values = unsafe {
    // Deferred initialization:
    values[0].as_mut_ptr().write(1);
    values[1].as_mut_ptr().write(2);
    values[2].as_mut_ptr().write(3);
    values.assume_init()
};

assert_eq!(*values, [1, 2, 3]);
source

pub fn try_new_zeroed_slice( len: usize, ) -> Result<Box<[MaybeUninit<T>]>, AllocError>

🔬This is a nightly-only experimental API. (allocator_api)

Constructs a new boxed slice with uninitialized contents, with the memory being filled with 0 bytes. Returns an error if the allocation fails.

See MaybeUninit::zeroed for examples of correct and incorrect usage of this method.

§Examples
#![feature(allocator_api)]

let values = Box::<[u32]>::try_new_zeroed_slice(3)?;
let values = unsafe { values.assume_init() };

assert_eq!(*values, [0, 0, 0]);
source§

impl<T, A> Box<[T], A>
where A: Allocator,

source

pub fn new_uninit_slice_in(len: usize, alloc: A) -> Box<[MaybeUninit<T>], A>

🔬This is a nightly-only experimental API. (allocator_api)

Constructs a new boxed slice with uninitialized contents in the provided allocator.

§Examples
#![feature(allocator_api)]

use std::alloc::System;

let mut values = Box::<[u32], _>::new_uninit_slice_in(3, System);

let values = unsafe {
    // Deferred initialization:
    values[0].as_mut_ptr().write(1);
    values[1].as_mut_ptr().write(2);
    values[2].as_mut_ptr().write(3);

    values.assume_init()
};

assert_eq!(*values, [1, 2, 3])
source

pub fn new_zeroed_slice_in(len: usize, alloc: A) -> Box<[MaybeUninit<T>], A>

🔬This is a nightly-only experimental API. (allocator_api)

Constructs a new boxed slice with uninitialized contents in the provided allocator, with the memory being filled with 0 bytes.

See MaybeUninit::zeroed for examples of correct and incorrect usage of this method.

§Examples
#![feature(allocator_api)]

use std::alloc::System;

let values = Box::<[u32], _>::new_zeroed_slice_in(3, System);
let values = unsafe { values.assume_init() };

assert_eq!(*values, [0, 0, 0])
source

pub fn try_new_uninit_slice_in( len: usize, alloc: A, ) -> Result<Box<[MaybeUninit<T>], A>, AllocError>

🔬This is a nightly-only experimental API. (allocator_api)

Constructs a new boxed slice with uninitialized contents in the provided allocator. Returns an error if the allocation fails.

§Examples
#![feature(allocator_api)]

use std::alloc::System;

let mut values = Box::<[u32], _>::try_new_uninit_slice_in(3, System)?;
let values = unsafe {
    // Deferred initialization:
    values[0].as_mut_ptr().write(1);
    values[1].as_mut_ptr().write(2);
    values[2].as_mut_ptr().write(3);
    values.assume_init()
};

assert_eq!(*values, [1, 2, 3]);
source

pub fn try_new_zeroed_slice_in( len: usize, alloc: A, ) -> Result<Box<[MaybeUninit<T>], A>, AllocError>

🔬This is a nightly-only experimental API. (allocator_api)

Constructs a new boxed slice with uninitialized contents in the provided allocator, with the memory being filled with 0 bytes. Returns an error if the allocation fails.

See MaybeUninit::zeroed for examples of correct and incorrect usage of this method.

§Examples
#![feature(allocator_api)]

use std::alloc::System;

let values = Box::<[u32], _>::try_new_zeroed_slice_in(3, System)?;
let values = unsafe { values.assume_init() };

assert_eq!(*values, [0, 0, 0]);
source§

impl<T, A> Box<MaybeUninit<T>, A>
where A: Allocator,

1.82.0 · source

pub unsafe fn assume_init(self) -> Box<T, A>

Converts to Box<T, A>.

§Safety

As with MaybeUninit::assume_init, it is up to the caller to guarantee that the value really is in an initialized state. Calling this when the content is not yet fully initialized causes immediate undefined behavior.

§Examples
let mut five = Box::<u32>::new_uninit();

let five: Box<u32> = unsafe {
    // Deferred initialization:
    five.as_mut_ptr().write(5);

    five.assume_init()
};

assert_eq!(*five, 5)
source

pub fn write(boxed: Box<MaybeUninit<T>, A>, value: T) -> Box<T, A>

🔬This is a nightly-only experimental API. (box_uninit_write)

Writes the value and converts to Box<T, A>.

This method converts the box similarly to Box::assume_init but writes value into it before conversion thus guaranteeing safety. In some scenarios use of this method may improve performance because the compiler may be able to optimize copying from stack.

§Examples
#![feature(box_uninit_write)]

let big_box = Box::<[usize; 1024]>::new_uninit();

let mut array = [0; 1024];
for (i, place) in array.iter_mut().enumerate() {
    *place = i;
}

// The optimizer may be able to elide this copy, so previous code writes
// to heap directly.
let big_box = Box::write(big_box, array);

for (i, x) in big_box.iter().enumerate() {
    assert_eq!(*x, i);
}
source§

impl<T, A> Box<[MaybeUninit<T>], A>
where A: Allocator,

1.82.0 · source

pub unsafe fn assume_init(self) -> Box<[T], A>

Converts to Box<[T], A>.

§Safety

As with MaybeUninit::assume_init, it is up to the caller to guarantee that the values really are in an initialized state. Calling this when the content is not yet fully initialized causes immediate undefined behavior.

§Examples
let mut values = Box::<[u32]>::new_uninit_slice(3);

let values = unsafe {
    // Deferred initialization:
    values[0].as_mut_ptr().write(1);
    values[1].as_mut_ptr().write(2);
    values[2].as_mut_ptr().write(3);

    values.assume_init()
};

assert_eq!(*values, [1, 2, 3])
source§

impl<T> Box<T>
where T: ?Sized,

1.4.0 · source

pub unsafe fn from_raw(raw: *mut T) -> Box<T>

Constructs a box from a raw pointer.

After calling this function, the raw pointer is owned by the resulting Box. Specifically, the Box destructor will call the destructor of T and free the allocated memory. For this to be safe, the memory must have been allocated in accordance with the memory layout used by Box .

§Safety

This function is unsafe because improper use may lead to memory problems. For example, a double-free may occur if the function is called twice on the same raw pointer.

The safety conditions are described in the memory layout section.

§Examples

Recreate a Box which was previously converted to a raw pointer using Box::into_raw:

let x = Box::new(5);
let ptr = Box::into_raw(x);
let x = unsafe { Box::from_raw(ptr) };

Manually create a Box from scratch by using the global allocator:

use std::alloc::{alloc, Layout};

unsafe {
    let ptr = alloc(Layout::new::<i32>()) as *mut i32;
    // In general .write is required to avoid attempting to destruct
    // the (uninitialized) previous contents of `ptr`, though for this
    // simple example `*ptr = 5` would have worked as well.
    ptr.write(5);
    let x = Box::from_raw(ptr);
}
source

pub unsafe fn from_non_null(ptr: NonNull<T>) -> Box<T>

🔬This is a nightly-only experimental API. (box_vec_non_null)

Constructs a box from a NonNull pointer.

After calling this function, the NonNull pointer is owned by the resulting Box. Specifically, the Box destructor will call the destructor of T and free the allocated memory. For this to be safe, the memory must have been allocated in accordance with the memory layout used by Box .

§Safety

This function is unsafe because improper use may lead to memory problems. For example, a double-free may occur if the function is called twice on the same NonNull pointer.

The safety conditions are described in the memory layout section.

§Examples

Recreate a Box which was previously converted to a NonNull pointer using Box::into_non_null:

#![feature(box_vec_non_null)]

let x = Box::new(5);
let non_null = Box::into_non_null(x);
let x = unsafe { Box::from_non_null(non_null) };

Manually create a Box from scratch by using the global allocator:

#![feature(box_vec_non_null)]

use std::alloc::{alloc, Layout};
use std::ptr::NonNull;

unsafe {
    let non_null = NonNull::new(alloc(Layout::new::<i32>()).cast::<i32>())
        .expect("allocation failed");
    // In general .write is required to avoid attempting to destruct
    // the (uninitialized) previous contents of `non_null`.
    non_null.write(5);
    let x = Box::from_non_null(non_null);
}
source§

impl<T, A> Box<T, A>
where A: Allocator, T: ?Sized,

source

pub const unsafe fn from_raw_in(raw: *mut T, alloc: A) -> Box<T, A>

🔬This is a nightly-only experimental API. (allocator_api)

Constructs a box from a raw pointer in the given allocator.

After calling this function, the raw pointer is owned by the resulting Box. Specifically, the Box destructor will call the destructor of T and free the allocated memory. For this to be safe, the memory must have been allocated in accordance with the memory layout used by Box .

§Safety

This function is unsafe because improper use may lead to memory problems. For example, a double-free may occur if the function is called twice on the same raw pointer.

§Examples

Recreate a Box which was previously converted to a raw pointer using Box::into_raw_with_allocator:

#![feature(allocator_api)]

use std::alloc::System;

let x = Box::new_in(5, System);
let (ptr, alloc) = Box::into_raw_with_allocator(x);
let x = unsafe { Box::from_raw_in(ptr, alloc) };

Manually create a Box from scratch by using the system allocator:

#![feature(allocator_api, slice_ptr_get)]

use std::alloc::{Allocator, Layout, System};

unsafe {
    let ptr = System.allocate(Layout::new::<i32>())?.as_mut_ptr() as *mut i32;
    // In general .write is required to avoid attempting to destruct
    // the (uninitialized) previous contents of `ptr`, though for this
    // simple example `*ptr = 5` would have worked as well.
    ptr.write(5);
    let x = Box::from_raw_in(ptr, System);
}
source

pub const unsafe fn from_non_null_in(raw: NonNull<T>, alloc: A) -> Box<T, A>

🔬This is a nightly-only experimental API. (allocator_api)

Constructs a box from a NonNull pointer in the given allocator.

After calling this function, the NonNull pointer is owned by the resulting Box. Specifically, the Box destructor will call the destructor of T and free the allocated memory. For this to be safe, the memory must have been allocated in accordance with the memory layout used by Box .

§Safety

This function is unsafe because improper use may lead to memory problems. For example, a double-free may occur if the function is called twice on the same raw pointer.

§Examples

Recreate a Box which was previously converted to a NonNull pointer using Box::into_non_null_with_allocator:

#![feature(allocator_api, box_vec_non_null)]

use std::alloc::System;

let x = Box::new_in(5, System);
let (non_null, alloc) = Box::into_non_null_with_allocator(x);
let x = unsafe { Box::from_non_null_in(non_null, alloc) };

Manually create a Box from scratch by using the system allocator:

#![feature(allocator_api, box_vec_non_null, slice_ptr_get)]

use std::alloc::{Allocator, Layout, System};

unsafe {
    let non_null = System.allocate(Layout::new::<i32>())?.cast::<i32>();
    // In general .write is required to avoid attempting to destruct
    // the (uninitialized) previous contents of `non_null`.
    non_null.write(5);
    let x = Box::from_non_null_in(non_null, System);
}
1.4.0 · source

pub fn into_raw(b: Box<T, A>) -> *mut T

Consumes the Box, returning a wrapped raw pointer.

The pointer will be properly aligned and non-null.

After calling this function, the caller is responsible for the memory previously managed by the Box. In particular, the caller should properly destroy T and release the memory, taking into account the memory layout used by Box. The easiest way to do this is to convert the raw pointer back into a Box with the Box::from_raw function, allowing the Box destructor to perform the cleanup.

Note: this is an associated function, which means that you have to call it as Box::into_raw(b) instead of b.into_raw(). This is so that there is no conflict with a method on the inner type.

§Examples

Converting the raw pointer back into a Box with Box::from_raw for automatic cleanup:

let x = Box::new(String::from("Hello"));
let ptr = Box::into_raw(x);
let x = unsafe { Box::from_raw(ptr) };

Manual cleanup by explicitly running the destructor and deallocating the memory:

use std::alloc::{dealloc, Layout};
use std::ptr;

let x = Box::new(String::from("Hello"));
let ptr = Box::into_raw(x);
unsafe {
    ptr::drop_in_place(ptr);
    dealloc(ptr as *mut u8, Layout::new::<String>());
}

Note: This is equivalent to the following:

let x = Box::new(String::from("Hello"));
let ptr = Box::into_raw(x);
unsafe {
    drop(Box::from_raw(ptr));
}
source

pub fn into_non_null(b: Box<T, A>) -> NonNull<T>

🔬This is a nightly-only experimental API. (box_vec_non_null)

Consumes the Box, returning a wrapped NonNull pointer.

The pointer will be properly aligned.

After calling this function, the caller is responsible for the memory previously managed by the Box. In particular, the caller should properly destroy T and release the memory, taking into account the memory layout used by Box. The easiest way to do this is to convert the NonNull pointer back into a Box with the Box::from_non_null function, allowing the Box destructor to perform the cleanup.

Note: this is an associated function, which means that you have to call it as Box::into_non_null(b) instead of b.into_non_null(). This is so that there is no conflict with a method on the inner type.

§Examples

Converting the NonNull pointer back into a Box with Box::from_non_null for automatic cleanup:

#![feature(box_vec_non_null)]

let x = Box::new(String::from("Hello"));
let non_null = Box::into_non_null(x);
let x = unsafe { Box::from_non_null(non_null) };

Manual cleanup by explicitly running the destructor and deallocating the memory:

#![feature(box_vec_non_null)]

use std::alloc::{dealloc, Layout};

let x = Box::new(String::from("Hello"));
let non_null = Box::into_non_null(x);
unsafe {
    non_null.drop_in_place();
    dealloc(non_null.as_ptr().cast::<u8>(), Layout::new::<String>());
}

Note: This is equivalent to the following:

#![feature(box_vec_non_null)]

let x = Box::new(String::from("Hello"));
let non_null = Box::into_non_null(x);
unsafe {
    drop(Box::from_non_null(non_null));
}
source

pub fn into_raw_with_allocator(b: Box<T, A>) -> (*mut T, A)

🔬This is a nightly-only experimental API. (allocator_api)

Consumes the Box, returning a wrapped raw pointer and the allocator.

The pointer will be properly aligned and non-null.

After calling this function, the caller is responsible for the memory previously managed by the Box. In particular, the caller should properly destroy T and release the memory, taking into account the memory layout used by Box. The easiest way to do this is to convert the raw pointer back into a Box with the Box::from_raw_in function, allowing the Box destructor to perform the cleanup.

Note: this is an associated function, which means that you have to call it as Box::into_raw_with_allocator(b) instead of b.into_raw_with_allocator(). This is so that there is no conflict with a method on the inner type.

§Examples

Converting the raw pointer back into a Box with Box::from_raw_in for automatic cleanup:

#![feature(allocator_api)]

use std::alloc::System;

let x = Box::new_in(String::from("Hello"), System);
let (ptr, alloc) = Box::into_raw_with_allocator(x);
let x = unsafe { Box::from_raw_in(ptr, alloc) };

Manual cleanup by explicitly running the destructor and deallocating the memory:

#![feature(allocator_api)]

use std::alloc::{Allocator, Layout, System};
use std::ptr::{self, NonNull};

let x = Box::new_in(String::from("Hello"), System);
let (ptr, alloc) = Box::into_raw_with_allocator(x);
unsafe {
    ptr::drop_in_place(ptr);
    let non_null = NonNull::new_unchecked(ptr);
    alloc.deallocate(non_null.cast(), Layout::new::<String>());
}
source

pub fn into_non_null_with_allocator(b: Box<T, A>) -> (NonNull<T>, A)

🔬This is a nightly-only experimental API. (allocator_api)

Consumes the Box, returning a wrapped NonNull pointer and the allocator.

The pointer will be properly aligned.

After calling this function, the caller is responsible for the memory previously managed by the Box. In particular, the caller should properly destroy T and release the memory, taking into account the memory layout used by Box. The easiest way to do this is to convert the NonNull pointer back into a Box with the Box::from_non_null_in function, allowing the Box destructor to perform the cleanup.

Note: this is an associated function, which means that you have to call it as Box::into_non_null_with_allocator(b) instead of b.into_non_null_with_allocator(). This is so that there is no conflict with a method on the inner type.

§Examples

Converting the NonNull pointer back into a Box with Box::from_non_null_in for automatic cleanup:

#![feature(allocator_api, box_vec_non_null)]

use std::alloc::System;

let x = Box::new_in(String::from("Hello"), System);
let (non_null, alloc) = Box::into_non_null_with_allocator(x);
let x = unsafe { Box::from_non_null_in(non_null, alloc) };

Manual cleanup by explicitly running the destructor and deallocating the memory:

#![feature(allocator_api, box_vec_non_null)]

use std::alloc::{Allocator, Layout, System};

let x = Box::new_in(String::from("Hello"), System);
let (non_null, alloc) = Box::into_non_null_with_allocator(x);
unsafe {
    non_null.drop_in_place();
    alloc.deallocate(non_null.cast::<u8>(), Layout::new::<String>());
}
source

pub fn as_mut_ptr(b: &mut Box<T, A>) -> *mut T

🔬This is a nightly-only experimental API. (box_as_ptr)

Returns a raw mutable pointer to the Box’s contents.

The caller must ensure that the Box outlives the pointer this function returns, or else it will end up dangling.

This method guarantees that for the purpose of the aliasing model, this method does not materialize a reference to the underlying memory, and thus the returned pointer will remain valid when mixed with other calls to as_ptr and as_mut_ptr. Note that calling other methods that materialize references to the memory may still invalidate this pointer. See the example below for how this guarantee can be used.

§Examples

Due to the aliasing guarantee, the following code is legal:

#![feature(box_as_ptr)]

unsafe {
    let mut b = Box::new(0);
    let ptr1 = Box::as_mut_ptr(&mut b);
    ptr1.write(1);
    let ptr2 = Box::as_mut_ptr(&mut b);
    ptr2.write(2);
    // Notably, the write to `ptr2` did *not* invalidate `ptr1`:
    ptr1.write(3);
}
source

pub fn as_ptr(b: &Box<T, A>) -> *const T

🔬This is a nightly-only experimental API. (box_as_ptr)

Returns a raw pointer to the Box’s contents.

The caller must ensure that the Box outlives the pointer this function returns, or else it will end up dangling.

The caller must also ensure that the memory the pointer (non-transitively) points to is never written to (except inside an UnsafeCell) using this pointer or any pointer derived from it. If you need to mutate the contents of the Box, use as_mut_ptr.

This method guarantees that for the purpose of the aliasing model, this method does not materialize a reference to the underlying memory, and thus the returned pointer will remain valid when mixed with other calls to as_ptr and as_mut_ptr. Note that calling other methods that materialize mutable references to the memory, as well as writing to this memory, may still invalidate this pointer. See the example below for how this guarantee can be used.

§Examples

Due to the aliasing guarantee, the following code is legal:

#![feature(box_as_ptr)]

unsafe {
    let mut v = Box::new(0);
    let ptr1 = Box::as_ptr(&v);
    let ptr2 = Box::as_mut_ptr(&mut v);
    let _val = ptr2.read();
    // No write to this memory has happened yet, so `ptr1` is still valid.
    let _val = ptr1.read();
    // However, once we do a write...
    ptr2.write(1);
    // ... `ptr1` is no longer valid.
    // This would be UB: let _val = ptr1.read();
}
source

pub const fn allocator(b: &Box<T, A>) -> &A

🔬This is a nightly-only experimental API. (allocator_api)

Returns a reference to the underlying allocator.

Note: this is an associated function, which means that you have to call it as Box::allocator(&b) instead of b.allocator(). This is so that there is no conflict with a method on the inner type.

1.26.0 · source

pub fn leak<'a>(b: Box<T, A>) -> &'a mut T
where A: 'a,

Consumes and leaks the Box, returning a mutable reference, &'a mut T.

Note that the type T must outlive the chosen lifetime 'a. If the type has only static references, or none at all, then this may be chosen to be 'static.

This function is mainly useful for data that lives for the remainder of the program’s life. Dropping the returned reference will cause a memory leak. If this is not acceptable, the reference should first be wrapped with the Box::from_raw function producing a Box. This Box can then be dropped which will properly destroy T and release the allocated memory.

Note: this is an associated function, which means that you have to call it as Box::leak(b) instead of b.leak(). This is so that there is no conflict with a method on the inner type.

§Examples

Simple usage:

let x = Box::new(41);
let static_ref: &'static mut usize = Box::leak(x);
*static_ref += 1;
assert_eq!(*static_ref, 42);

Unsized data:

let x = vec![1, 2, 3].into_boxed_slice();
let static_ref = Box::leak(x);
static_ref[0] = 4;
assert_eq!(*static_ref, [4, 2, 3]);
1.63.0 (const: unstable) · source

pub fn into_pin(boxed: Box<T, A>) -> Pin<Box<T, A>>
where A: 'static,

Converts a Box<T> into a Pin<Box<T>>. If T does not implement Unpin, then *boxed will be pinned in memory and unable to be moved.

This conversion does not allocate on the heap and happens in place.

This is also available via From.

Constructing and pinning a Box with Box::into_pin(Box::new(x)) can also be written more concisely using Box::pin(x). This into_pin method is useful if you already have a Box<T>, or you are constructing a (pinned) Box in a different way than with Box::new.

§Notes

It’s not recommended that crates add an impl like From<Box<T>> for Pin<T>, as it’ll introduce an ambiguity when calling Pin::from. A demonstration of such a poor impl is shown below.

struct Foo; // A type defined in this crate.
impl From<Box<()>> for Pin<Foo> {
    fn from(_: Box<()>) -> Pin<Foo> {
        Pin::new(Foo)
    }
}

let foo = Box::new(());
let bar = Pin::from(foo);
source§

impl<A> Box<dyn Any, A>
where A: Allocator,

1.0.0 · source

pub fn downcast<T>(self) -> Result<Box<T, A>, Box<dyn Any, A>>
where T: Any,

Attempts to downcast the box to a concrete type.

§Examples
use std::any::Any;

fn print_if_string(value: Box<dyn Any>) {
    if let Ok(string) = value.downcast::<String>() {
        println!("String ({}): {}", string.len(), string);
    }
}

let my_string = "Hello World".to_string();
print_if_string(Box::new(my_string));
print_if_string(Box::new(0i8));
source

pub unsafe fn downcast_unchecked<T>(self) -> Box<T, A>
where T: Any,

🔬This is a nightly-only experimental API. (downcast_unchecked)

Downcasts the box to a concrete type.

For a safe alternative see downcast.

§Examples
#![feature(downcast_unchecked)]

use std::any::Any;

let x: Box<dyn Any> = Box::new(1_usize);

unsafe {
    assert_eq!(*x.downcast_unchecked::<usize>(), 1);
}
§Safety

The contained value must be of type T. Calling this method with the incorrect type is undefined behavior.

source§

impl<A> Box<dyn Any + Send, A>
where A: Allocator,

1.0.0 · source

pub fn downcast<T>(self) -> Result<Box<T, A>, Box<dyn Any + Send, A>>
where T: Any,

Attempts to downcast the box to a concrete type.

§Examples
use std::any::Any;

fn print_if_string(value: Box<dyn Any + Send>) {
    if let Ok(string) = value.downcast::<String>() {
        println!("String ({}): {}", string.len(), string);
    }
}

let my_string = "Hello World".to_string();
print_if_string(Box::new(my_string));
print_if_string(Box::new(0i8));
source

pub unsafe fn downcast_unchecked<T>(self) -> Box<T, A>
where T: Any,

🔬This is a nightly-only experimental API. (downcast_unchecked)

Downcasts the box to a concrete type.

For a safe alternative see downcast.

§Examples
#![feature(downcast_unchecked)]

use std::any::Any;

let x: Box<dyn Any + Send> = Box::new(1_usize);

unsafe {
    assert_eq!(*x.downcast_unchecked::<usize>(), 1);
}
§Safety

The contained value must be of type T. Calling this method with the incorrect type is undefined behavior.

source§

impl<A> Box<dyn Any + Sync + Send, A>
where A: Allocator,

1.51.0 · source

pub fn downcast<T>(self) -> Result<Box<T, A>, Box<dyn Any + Sync + Send, A>>
where T: Any,

Attempts to downcast the box to a concrete type.

§Examples
use std::any::Any;

fn print_if_string(value: Box<dyn Any + Send + Sync>) {
    if let Ok(string) = value.downcast::<String>() {
        println!("String ({}): {}", string.len(), string);
    }
}

let my_string = "Hello World".to_string();
print_if_string(Box::new(my_string));
print_if_string(Box::new(0i8));
source

pub unsafe fn downcast_unchecked<T>(self) -> Box<T, A>
where T: Any,

🔬This is a nightly-only experimental API. (downcast_unchecked)

Downcasts the box to a concrete type.

For a safe alternative see downcast.

§Examples
#![feature(downcast_unchecked)]

use std::any::Any;

let x: Box<dyn Any + Send + Sync> = Box::new(1_usize);

unsafe {
    assert_eq!(*x.downcast_unchecked::<usize>(), 1);
}
§Safety

The contained value must be of type T. Calling this method with the incorrect type is undefined behavior.

Trait Implementations§

1.64.0 · source§

impl<T> AsFd for Box<T>
where T: AsFd + ?Sized,

source§

fn as_fd(&self) -> BorrowedFd<'_>

Borrows the file descriptor. Read more
1.5.0 · source§

impl<T, A> AsMut<T> for Box<T, A>
where A: Allocator, T: ?Sized,

source§

fn as_mut(&mut self) -> &mut T

Converts this type into a mutable reference of the (usually inferred) input type.
1.63.0 · source§

impl<T> AsRawFd for Box<T>
where T: AsRawFd,

source§

fn as_raw_fd(&self) -> i32

Extracts the raw file descriptor. Read more
1.5.0 · source§

impl<T, A> AsRef<T> for Box<T, A>
where A: Allocator, T: ?Sized,

source§

fn as_ref(&self) -> &T

Converts this type into a shared reference of the (usually inferred) input type.
source§

impl<T> AsyncBufRead for Box<T>
where T: AsyncBufRead + Unpin + ?Sized,

source§

fn poll_fill_buf( self: Pin<&mut Box<T>>, cx: &mut Context<'_>, ) -> Poll<Result<&[u8], Error>>

Attempt to return the contents of the internal buffer, filling it with more data from the inner reader if it is empty. Read more
source§

fn consume(self: Pin<&mut Box<T>>, amt: usize)

Tells this buffer that amt bytes have been consumed from the buffer, so they should no longer be returned in calls to poll_read. Read more
source§

impl<Args, F, A> AsyncFn<Args> for Box<F, A>
where Args: Tuple, F: AsyncFn<Args> + ?Sized, A: Allocator,

source§

extern "rust-call" fn async_call( &self, args: Args, ) -> <Box<F, A> as AsyncFnMut<Args>>::CallRefFuture<'_>

🔬This is a nightly-only experimental API. (async_fn_traits)
Call the AsyncFn, returning a future which may borrow from the called closure.
source§

impl<Args, F, A> AsyncFnMut<Args> for Box<F, A>
where Args: Tuple, F: AsyncFnMut<Args> + ?Sized, A: Allocator,

source§

type CallRefFuture<'a> = <F as AsyncFnMut<Args>>::CallRefFuture<'a> where Box<F, A>: 'a

🔬This is a nightly-only experimental API. (async_fn_traits)
source§

extern "rust-call" fn async_call_mut( &mut self, args: Args, ) -> <Box<F, A> as AsyncFnMut<Args>>::CallRefFuture<'_>

🔬This is a nightly-only experimental API. (async_fn_traits)
Call the AsyncFnMut, returning a future which may borrow from the called closure.
source§

impl<Args, F, A> AsyncFnOnce<Args> for Box<F, A>
where Args: Tuple, F: AsyncFnOnce<Args> + ?Sized, A: Allocator,

source§

type Output = <F as AsyncFnOnce<Args>>::Output

🔬This is a nightly-only experimental API. (async_fn_traits)
Output type of the called closure’s future.
source§

type CallOnceFuture = <F as AsyncFnOnce<Args>>::CallOnceFuture

🔬This is a nightly-only experimental API. (async_fn_traits)
Future returned by AsyncFnOnce::async_call_once.
source§

extern "rust-call" fn async_call_once( self, args: Args, ) -> <Box<F, A> as AsyncFnOnce<Args>>::CallOnceFuture

🔬This is a nightly-only experimental API. (async_fn_traits)
Call the AsyncFnOnce, returning a future which may move out of the called closure.
source§

impl<S> AsyncIterator for Box<S>
where S: AsyncIterator + Unpin + ?Sized,

source§

type Item = <S as AsyncIterator>::Item

🔬This is a nightly-only experimental API. (async_iterator)
The type of items yielded by the async iterator.
source§

fn poll_next( self: Pin<&mut Box<S>>, cx: &mut Context<'_>, ) -> Poll<Option<<Box<S> as AsyncIterator>::Item>>

🔬This is a nightly-only experimental API. (async_iterator)
Attempts to pull out the next value of this async iterator, registering the current task for wakeup if the value is not yet available, and returning None if the async iterator is exhausted. Read more
source§

fn size_hint(&self) -> (usize, Option<usize>)

🔬This is a nightly-only experimental API. (async_iterator)
Returns the bounds on the remaining length of the async iterator. Read more
source§

impl<T> AsyncRead for Box<T>
where T: AsyncRead + Unpin + ?Sized,

source§

fn poll_read( self: Pin<&mut Box<T>>, cx: &mut Context<'_>, buf: &mut [u8], ) -> Poll<Result<usize, Error>>

Attempt to read from the AsyncRead into buf. Read more
source§

fn poll_read_vectored( self: Pin<&mut Box<T>>, cx: &mut Context<'_>, bufs: &mut [IoSliceMut<'_>], ) -> Poll<Result<usize, Error>>

Attempt to read from the AsyncRead into bufs using vectored IO operations. Read more
source§

impl<T> AsyncSeek for Box<T>
where T: AsyncSeek + Unpin + ?Sized,

source§

fn poll_seek( self: Pin<&mut Box<T>>, cx: &mut Context<'_>, pos: SeekFrom, ) -> Poll<Result<u64, Error>>

Attempt to seek to an offset, in bytes, in a stream. Read more
source§

impl<T> AsyncWrite for Box<T>
where T: AsyncWrite + Unpin + ?Sized,

source§

fn poll_write( self: Pin<&mut Box<T>>, cx: &mut Context<'_>, buf: &[u8], ) -> Poll<Result<usize, Error>>

Attempt to write bytes from buf into the object. Read more
source§

fn poll_write_vectored( self: Pin<&mut Box<T>>, cx: &mut Context<'_>, bufs: &[IoSlice<'_>], ) -> Poll<Result<usize, Error>>

Attempt to write bytes from bufs into the object using vectored IO operations. Read more
source§

fn poll_flush( self: Pin<&mut Box<T>>, cx: &mut Context<'_>, ) -> Poll<Result<(), Error>>

Attempt to flush the object, ensuring that any buffered data reach their destination. Read more
source§

fn poll_close( self: Pin<&mut Box<T>>, cx: &mut Context<'_>, ) -> Poll<Result<(), Error>>

Attempt to close the object. Read more
1.1.0 · source§

impl<T, A> Borrow<T> for Box<T, A>
where A: Allocator, T: ?Sized,

source§

fn borrow(&self) -> &T

Immutably borrows from an owned value. Read more
1.1.0 · source§

impl<T, A> BorrowMut<T> for Box<T, A>
where A: Allocator, T: ?Sized,

source§

fn borrow_mut(&mut self) -> &mut T

Mutably borrows from an owned value. Read more
1.0.0 · source§

impl<B> BufRead for Box<B>
where B: BufRead + ?Sized,

source§

fn fill_buf(&mut self) -> Result<&[u8], Error>

Returns the contents of the internal buffer, filling it with more data from the inner reader if it is empty. Read more
source§

fn consume(&mut self, amt: usize)

Tells this buffer that amt bytes have been consumed from the buffer, so they should no longer be returned in calls to read. Read more
source§

fn read_until(&mut self, byte: u8, buf: &mut Vec<u8>) -> Result<usize, Error>

Reads all bytes into buf until the delimiter byte or EOF is reached. Read more
source§

fn read_line(&mut self, buf: &mut String) -> Result<usize, Error>

Reads all bytes until a newline (the 0xA byte) is reached, and append them to the provided String buffer. Read more
source§

fn has_data_left(&mut self) -> Result<bool, Error>

🔬This is a nightly-only experimental API. (buf_read_has_data_left)
Checks if the underlying Read has any data left to be read. Read more
1.83.0 · source§

fn skip_until(&mut self, byte: u8) -> Result<usize, Error>

Skips all bytes until the delimiter byte or EOF is reached. Read more
1.0.0 · source§

fn split(self, byte: u8) -> Split<Self>
where Self: Sized,

Returns an iterator over the contents of this reader split on the byte byte. Read more
1.0.0 · source§

fn lines(self) -> Lines<Self>
where Self: Sized,

Returns an iterator over the lines of this reader. Read more
source§

impl<T> Clear for Box<T>
where T: Clear,

source§

fn clear(&mut self)

Clear all data in self, retaining the allocated capacithy.
1.3.0 · source§

impl<T, A> Clone for Box<[T], A>
where T: Clone, A: Allocator + Clone,

source§

fn clone_from(&mut self, source: &Box<[T], A>)

Copies source’s contents into self without creating a new allocation, so long as the two are of the same length.

§Examples
let x = Box::new([5, 6, 7]);
let mut y = Box::new([8, 9, 10]);
let yp: *const [i32] = &*y;

y.clone_from(&x);

// The value is the same
assert_eq!(x, y);

// And no allocation occurred
assert_eq!(yp, &*y);
source§

fn clone(&self) -> Box<[T], A>

Returns a copy of the value. Read more
1.29.0 · source§

impl Clone for Box<CStr>

source§

fn clone(&self) -> Box<CStr>

Returns a copy of the value. Read more
1.0.0 · source§

fn clone_from(&mut self, source: &Self)

Performs copy-assignment from source. Read more
1.29.0 · source§

impl Clone for Box<OsStr>

source§

fn clone(&self) -> Box<OsStr>

Returns a copy of the value. Read more
1.0.0 · source§

fn clone_from(&mut self, source: &Self)

Performs copy-assignment from source. Read more
1.29.0 · source§

impl Clone for Box<Path>

source§

fn clone(&self) -> Box<Path>

Returns a copy of the value. Read more
1.0.0 · source§

fn clone_from(&mut self, source: &Self)

Performs copy-assignment from source. Read more
source§

impl<K, V> Clone for Box<Slice<K, V>>
where K: Clone, V: Clone,

source§

fn clone(&self) -> Box<Slice<K, V>>

Returns a copy of the value. Read more
1.0.0 · source§

fn clone_from(&mut self, source: &Self)

Performs copy-assignment from source. Read more
source§

impl<T> Clone for Box<Slice<T>>
where T: Clone,

source§

fn clone(&self) -> Box<Slice<T>>

Returns a copy of the value. Read more
1.0.0 · source§

fn clone_from(&mut self, source: &Self)

Performs copy-assignment from source. Read more
1.0.0 · source§

impl<T, A> Clone for Box<T, A>
where T: Clone, A: Allocator + Clone,

source§

fn clone(&self) -> Box<T, A>

Returns a new box with a clone() of this box’s contents.

§Examples
let x = Box::new(5);
let y = x.clone();

// The value is the same
assert_eq!(x, y);

// But they are unique objects
assert_ne!(&*x as *const i32, &*y as *const i32);
source§

fn clone_from(&mut self, source: &Box<T, A>)

Copies source’s contents into self without creating a new allocation.

§Examples
let x = Box::new(5);
let mut y = Box::new(10);
let yp: *const i32 = &*y;

y.clone_from(&x);

// The value is the same
assert_eq!(x, y);

// And no allocation occurred
assert_eq!(yp, &*y);
1.3.0 · source§

impl Clone for Box<str>

source§

fn clone(&self) -> Box<str>

Returns a copy of the value. Read more
1.0.0 · source§

fn clone_from(&mut self, source: &Self)

Performs copy-assignment from source. Read more
source§

impl<G, R, A> Coroutine<R> for Box<G, A>
where G: Coroutine<R> + Unpin + ?Sized, A: Allocator,

source§

type Yield = <G as Coroutine<R>>::Yield

🔬This is a nightly-only experimental API. (coroutine_trait)
The type of value this coroutine yields. Read more
source§

type Return = <G as Coroutine<R>>::Return

🔬This is a nightly-only experimental API. (coroutine_trait)
The type of value this coroutine returns. Read more
source§

fn resume( self: Pin<&mut Box<G, A>>, arg: R, ) -> CoroutineState<<Box<G, A> as Coroutine<R>>::Yield, <Box<G, A> as Coroutine<R>>::Return>

🔬This is a nightly-only experimental API. (coroutine_trait)
Resumes the execution of this coroutine. Read more
source§

impl<G, R, A> Coroutine<R> for Pin<Box<G, A>>
where G: Coroutine<R> + ?Sized, A: Allocator + 'static,

source§

type Yield = <G as Coroutine<R>>::Yield

🔬This is a nightly-only experimental API. (coroutine_trait)
The type of value this coroutine yields. Read more
source§

type Return = <G as Coroutine<R>>::Return

🔬This is a nightly-only experimental API. (coroutine_trait)
The type of value this coroutine returns. Read more
source§

fn resume( self: Pin<&mut Pin<Box<G, A>>>, arg: R, ) -> CoroutineState<<Pin<Box<G, A>> as Coroutine<R>>::Yield, <Pin<Box<G, A>> as Coroutine<R>>::Return>

🔬This is a nightly-only experimental API. (coroutine_trait)
Resumes the execution of this coroutine. Read more
1.0.0 · source§

impl<T, A> Debug for Box<T, A>
where T: Debug + ?Sized, A: Allocator,

source§

fn fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error>

Formats the value using the given formatter. Read more
1.0.0 · source§

impl<T> Default for Box<[T]>

source§

fn default() -> Box<[T]>

Returns the “default value” for a type. Read more
1.17.0 · source§

impl Default for Box<CStr>

source§

fn default() -> Box<CStr>

Returns the “default value” for a type. Read more
1.17.0 · source§

impl Default for Box<OsStr>

source§

fn default() -> Box<OsStr>

Returns the “default value” for a type. Read more
source§

impl<K, V> Default for Box<Slice<K, V>>

source§

fn default() -> Box<Slice<K, V>>

Returns the “default value” for a type. Read more
source§

impl<T> Default for Box<Slice<T>>

source§

fn default() -> Box<Slice<T>>

Returns the “default value” for a type. Read more
1.0.0 · source§

impl<T> Default for Box<T>
where T: Default,

source§

fn default() -> Box<T>

Creates a Box<T>, with the Default value for T.

1.17.0 · source§

impl Default for Box<str>

source§

fn default() -> Box<str>

Returns the “default value” for a type. Read more
1.0.0 · source§

impl<T, A> Deref for Box<T, A>
where A: Allocator, T: ?Sized,

source§

type Target = T

The resulting type after dereferencing.
source§

fn deref(&self) -> &T

Dereferences the value.
1.0.0 · source§

impl<T, A> DerefMut for Box<T, A>
where A: Allocator, T: ?Sized,

source§

fn deref_mut(&mut self) -> &mut T

Mutably dereferences the value.
source§

impl<'de, T> Deserialize<'de> for Box<[T]>
where T: Deserialize<'de>,

source§

fn deserialize<D>( deserializer: D, ) -> Result<Box<[T]>, <D as Deserializer<'de>>::Error>
where D: Deserializer<'de>,

Deserialize this value from the given Serde deserializer. Read more
source§

impl<'de> Deserialize<'de> for Box<CStr>

source§

fn deserialize<D>( deserializer: D, ) -> Result<Box<CStr>, <D as Deserializer<'de>>::Error>
where D: Deserializer<'de>,

Deserialize this value from the given Serde deserializer. Read more
source§

impl<'de> Deserialize<'de> for Box<OsStr>

source§

fn deserialize<D>( deserializer: D, ) -> Result<Box<OsStr>, <D as Deserializer<'de>>::Error>
where D: Deserializer<'de>,

Deserialize this value from the given Serde deserializer. Read more
source§

impl<'de> Deserialize<'de> for Box<Path>

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fn deserialize<D>( deserializer: D, ) -> Result<Box<Path>, <D as Deserializer<'de>>::Error>
where D: Deserializer<'de>,

Deserialize this value from the given Serde deserializer. Read more
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impl<'de, T> Deserialize<'de> for Box<T>
where T: Deserialize<'de>,

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fn deserialize<D>( deserializer: D, ) -> Result<Box<T>, <D as Deserializer<'de>>::Error>
where D: Deserializer<'de>,

Deserialize this value from the given Serde deserializer. Read more
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impl<'de> Deserialize<'de> for Box<str>

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fn deserialize<D>( deserializer: D, ) -> Result<Box<str>, <D as Deserializer<'de>>::Error>
where D: Deserializer<'de>,

Deserialize this value from the given Serde deserializer. Read more
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impl<'de, T> Deserializer<'de> for Box<T>
where T: Deserializer<'de> + ?Sized,

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fn erased_deserialize_any( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_bool( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_i8( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_i16( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_i32( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_i64( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_i128( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_u8( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_u16( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_u32( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_u64( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_u128( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_f32( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_f64( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_char( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_str( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_string( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_bytes( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_byte_buf( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_option( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_unit( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_unit_struct( &mut self, name: &'static str, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_newtype_struct( &mut self, name: &'static str, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_seq( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_tuple( &mut self, len: usize, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_tuple_struct( &mut self, name: &'static str, len: usize, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_map( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_struct( &mut self, name: &'static str, fields: &'static [&'static str], visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_identifier( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_enum( &mut self, name: &'static str, variants: &'static [&'static str], visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_deserialize_ignored_any( &mut self, visitor: &mut dyn Visitor<'de>, ) -> Result<Out, Error>

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fn erased_is_human_readable(&self) -> bool

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impl<'de> Deserializer<'de> for Box<dyn Deserializer<'de> + '_>

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type Error = Error

The error type that can be returned if some error occurs during deserialization.
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fn deserialize_any<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Require the Deserializer to figure out how to drive the visitor based on what data type is in the input. Read more
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fn deserialize_bool<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a bool value.
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fn deserialize_i8<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i8 value.
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fn deserialize_i16<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i16 value.
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fn deserialize_i32<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i32 value.
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fn deserialize_i64<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i64 value.
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fn deserialize_i128<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i128 value. Read more
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fn deserialize_u8<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a u8 value.
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fn deserialize_u16<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a u16 value.
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fn deserialize_u32<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a u32 value.
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fn deserialize_u64<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a u64 value.
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fn deserialize_u128<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an u128 value. Read more
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fn deserialize_f32<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a f32 value.
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fn deserialize_f64<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a f64 value.
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fn deserialize_char<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a char value.
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fn deserialize_str<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a string value and does not benefit from taking ownership of buffered data owned by the Deserializer. Read more
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fn deserialize_string<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a string value and would benefit from taking ownership of buffered data owned by the Deserializer. Read more
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fn deserialize_bytes<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a byte array and does not benefit from taking ownership of buffered data owned by the Deserializer. Read more
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fn deserialize_byte_buf<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a byte array and would benefit from taking ownership of buffered data owned by the Deserializer. Read more
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fn deserialize_option<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an optional value. Read more
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fn deserialize_unit<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a unit value.
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fn deserialize_unit_struct<V>( self, name: &'static str, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a unit struct with a particular name.
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fn deserialize_newtype_struct<V>( self, name: &'static str, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a newtype struct with a particular name.
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fn deserialize_seq<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a sequence of values.
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fn deserialize_tuple<V>( self, len: usize, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a sequence of values and knows how many values there are without looking at the serialized data.
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fn deserialize_tuple_struct<V>( self, name: &'static str, len: usize, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a tuple struct with a particular name and number of fields.
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fn deserialize_map<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a map of key-value pairs.
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fn deserialize_struct<V>( self, name: &'static str, fields: &'static [&'static str], visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a struct with a particular name and fields.
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fn deserialize_identifier<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting the name of a struct field or the discriminant of an enum variant.
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fn deserialize_enum<V>( self, name: &'static str, variants: &'static [&'static str], visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an enum value with a particular name and possible variants.
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fn deserialize_ignored_any<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type needs to deserialize a value whose type doesn’t matter because it is ignored. Read more
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fn is_human_readable(&self) -> bool

Determine whether Deserialize implementations should expect to deserialize their human-readable form. Read more
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impl<'de> Deserializer<'de> for Box<dyn Deserializer<'de> + Send + '_>

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type Error = Error

The error type that can be returned if some error occurs during deserialization.
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fn deserialize_any<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Require the Deserializer to figure out how to drive the visitor based on what data type is in the input. Read more
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fn deserialize_bool<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a bool value.
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fn deserialize_i8<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i8 value.
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fn deserialize_i16<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i16 value.
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fn deserialize_i32<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i32 value.
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fn deserialize_i64<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i64 value.
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fn deserialize_i128<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i128 value. Read more
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fn deserialize_u8<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a u8 value.
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fn deserialize_u16<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a u16 value.
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fn deserialize_u32<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a u32 value.
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fn deserialize_u64<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a u64 value.
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fn deserialize_u128<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an u128 value. Read more
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fn deserialize_f32<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a f32 value.
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fn deserialize_f64<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a f64 value.
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fn deserialize_char<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a char value.
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fn deserialize_str<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a string value and does not benefit from taking ownership of buffered data owned by the Deserializer. Read more
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fn deserialize_string<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a string value and would benefit from taking ownership of buffered data owned by the Deserializer. Read more
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fn deserialize_bytes<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a byte array and does not benefit from taking ownership of buffered data owned by the Deserializer. Read more
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fn deserialize_byte_buf<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a byte array and would benefit from taking ownership of buffered data owned by the Deserializer. Read more
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fn deserialize_option<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an optional value. Read more
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fn deserialize_unit<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a unit value.
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fn deserialize_unit_struct<V>( self, name: &'static str, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a unit struct with a particular name.
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fn deserialize_newtype_struct<V>( self, name: &'static str, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a newtype struct with a particular name.
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fn deserialize_seq<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a sequence of values.
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fn deserialize_tuple<V>( self, len: usize, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a sequence of values and knows how many values there are without looking at the serialized data.
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fn deserialize_tuple_struct<V>( self, name: &'static str, len: usize, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a tuple struct with a particular name and number of fields.
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fn deserialize_map<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a map of key-value pairs.
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fn deserialize_struct<V>( self, name: &'static str, fields: &'static [&'static str], visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a struct with a particular name and fields.
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fn deserialize_identifier<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting the name of a struct field or the discriminant of an enum variant.
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fn deserialize_enum<V>( self, name: &'static str, variants: &'static [&'static str], visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an enum value with a particular name and possible variants.
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fn deserialize_ignored_any<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type needs to deserialize a value whose type doesn’t matter because it is ignored. Read more
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fn is_human_readable(&self) -> bool

Determine whether Deserialize implementations should expect to deserialize their human-readable form. Read more
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impl<'de> Deserializer<'de> for Box<dyn Deserializer<'de> + Sync + Send + '_>

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type Error = Error

The error type that can be returned if some error occurs during deserialization.
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fn deserialize_any<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Require the Deserializer to figure out how to drive the visitor based on what data type is in the input. Read more
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fn deserialize_bool<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a bool value.
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fn deserialize_i8<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i8 value.
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fn deserialize_i16<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i16 value.
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fn deserialize_i32<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i32 value.
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fn deserialize_i64<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i64 value.
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fn deserialize_i128<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i128 value. Read more
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fn deserialize_u8<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a u8 value.
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fn deserialize_u16<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a u16 value.
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fn deserialize_u32<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a u32 value.
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fn deserialize_u64<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a u64 value.
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fn deserialize_u128<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an u128 value. Read more
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fn deserialize_f32<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a f32 value.
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fn deserialize_f64<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a f64 value.
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fn deserialize_char<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a char value.
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fn deserialize_str<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a string value and does not benefit from taking ownership of buffered data owned by the Deserializer. Read more
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fn deserialize_string<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a string value and would benefit from taking ownership of buffered data owned by the Deserializer. Read more
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fn deserialize_bytes<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a byte array and does not benefit from taking ownership of buffered data owned by the Deserializer. Read more
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fn deserialize_byte_buf<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a byte array and would benefit from taking ownership of buffered data owned by the Deserializer. Read more
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fn deserialize_option<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an optional value. Read more
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fn deserialize_unit<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a unit value.
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fn deserialize_unit_struct<V>( self, name: &'static str, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a unit struct with a particular name.
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fn deserialize_newtype_struct<V>( self, name: &'static str, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a newtype struct with a particular name.
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fn deserialize_seq<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a sequence of values.
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fn deserialize_tuple<V>( self, len: usize, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a sequence of values and knows how many values there are without looking at the serialized data.
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fn deserialize_tuple_struct<V>( self, name: &'static str, len: usize, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a tuple struct with a particular name and number of fields.
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fn deserialize_map<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a map of key-value pairs.
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fn deserialize_struct<V>( self, name: &'static str, fields: &'static [&'static str], visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a struct with a particular name and fields.
source§

fn deserialize_identifier<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting the name of a struct field or the discriminant of an enum variant.
source§

fn deserialize_enum<V>( self, name: &'static str, variants: &'static [&'static str], visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an enum value with a particular name and possible variants.
source§

fn deserialize_ignored_any<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type needs to deserialize a value whose type doesn’t matter because it is ignored. Read more
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fn is_human_readable(&self) -> bool

Determine whether Deserialize implementations should expect to deserialize their human-readable form. Read more
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impl<'de> Deserializer<'de> for Box<dyn Deserializer<'de> + Sync + '_>

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type Error = Error

The error type that can be returned if some error occurs during deserialization.
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fn deserialize_any<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Require the Deserializer to figure out how to drive the visitor based on what data type is in the input. Read more
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fn deserialize_bool<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a bool value.
source§

fn deserialize_i8<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i8 value.
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fn deserialize_i16<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i16 value.
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fn deserialize_i32<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i32 value.
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fn deserialize_i64<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i64 value.
source§

fn deserialize_i128<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an i128 value. Read more
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fn deserialize_u8<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a u8 value.
source§

fn deserialize_u16<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a u16 value.
source§

fn deserialize_u32<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a u32 value.
source§

fn deserialize_u64<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a u64 value.
source§

fn deserialize_u128<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an u128 value. Read more
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fn deserialize_f32<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a f32 value.
source§

fn deserialize_f64<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a f64 value.
source§

fn deserialize_char<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a char value.
source§

fn deserialize_str<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a string value and does not benefit from taking ownership of buffered data owned by the Deserializer. Read more
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fn deserialize_string<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a string value and would benefit from taking ownership of buffered data owned by the Deserializer. Read more
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fn deserialize_bytes<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a byte array and does not benefit from taking ownership of buffered data owned by the Deserializer. Read more
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fn deserialize_byte_buf<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a byte array and would benefit from taking ownership of buffered data owned by the Deserializer. Read more
source§

fn deserialize_option<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an optional value. Read more
source§

fn deserialize_unit<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a unit value.
source§

fn deserialize_unit_struct<V>( self, name: &'static str, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a unit struct with a particular name.
source§

fn deserialize_newtype_struct<V>( self, name: &'static str, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a newtype struct with a particular name.
source§

fn deserialize_seq<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a sequence of values.
source§

fn deserialize_tuple<V>( self, len: usize, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a sequence of values and knows how many values there are without looking at the serialized data.
source§

fn deserialize_tuple_struct<V>( self, name: &'static str, len: usize, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a tuple struct with a particular name and number of fields.
source§

fn deserialize_map<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a map of key-value pairs.
source§

fn deserialize_struct<V>( self, name: &'static str, fields: &'static [&'static str], visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting a struct with a particular name and fields.
source§

fn deserialize_identifier<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting the name of a struct field or the discriminant of an enum variant.
source§

fn deserialize_enum<V>( self, name: &'static str, variants: &'static [&'static str], visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type is expecting an enum value with a particular name and possible variants.
source§

fn deserialize_ignored_any<V>( self, visitor: V, ) -> Result<<V as Visitor<'de>>::Value, Error>
where V: Visitor<'de>,

Hint that the Deserialize type needs to deserialize a value whose type doesn’t matter because it is ignored. Read more
source§

fn is_human_readable(&self) -> bool

Determine whether Deserialize implementations should expect to deserialize their human-readable form. Read more
1.0.0 · source§

impl<T, A> Display for Box<T, A>
where T: Display + ?Sized, A: Allocator,

source§

fn fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error>

Formats the value using the given formatter. Read more
1.0.0 · source§

impl<I, A> DoubleEndedIterator for Box<I, A>

source§

fn next_back(&mut self) -> Option<<I as Iterator>::Item>

Removes and returns an element from the end of the iterator. Read more
source§

fn nth_back(&mut self, n: usize) -> Option<<I as Iterator>::Item>

Returns the nth element from the end of the iterator. Read more
source§

fn advance_back_by(&mut self, n: usize) -> Result<(), NonZero<usize>>

🔬This is a nightly-only experimental API. (iter_advance_by)
Advances the iterator from the back by n elements. Read more
1.27.0 · source§

fn try_rfold<B, F, R>(&mut self, init: B, f: F) -> R
where Self: Sized, F: FnMut(B, Self::Item) -> R, R: Try<Output = B>,

This is the reverse version of Iterator::try_fold(): it takes elements starting from the back of the iterator. Read more
1.27.0 · source§

fn rfold<B, F>(self, init: B, f: F) -> B
where Self: Sized, F: FnMut(B, Self::Item) -> B,

An iterator method that reduces the iterator’s elements to a single, final value, starting from the back. Read more
1.27.0 · source§

fn rfind<P>(&mut self, predicate: P) -> Option<Self::Item>
where Self: Sized, P: FnMut(&Self::Item) -> bool,

Searches for an element of an iterator from the back that satisfies a predicate. Read more
1.0.0 · source§

impl<T, A> Drop for Box<T, A>
where A: Allocator, T: ?Sized,

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fn drop(&mut self)

Executes the destructor for this type. Read more
1.8.0 · source§

impl<T> Error for Box<T>
where T: Error,

source§

fn description(&self) -> &str

👎Deprecated since 1.42.0: use the Display impl or to_string()
source§

fn cause(&self) -> Option<&dyn Error>

👎Deprecated since 1.33.0: replaced by Error::source, which can support downcasting
source§

fn source(&self) -> Option<&(dyn Error + 'static)>

Returns the lower-level source of this error, if any. Read more
source§

fn provide<'b>(&'b self, request: &mut Request<'b>)

🔬This is a nightly-only experimental API. (error_generic_member_access)
Provides type-based access to context intended for error reports. Read more
1.0.0 · source§

impl<I, A> ExactSizeIterator for Box<I, A>

source§

fn len(&self) -> usize

Returns the exact remaining length of the iterator. Read more
source§

fn is_empty(&self) -> bool

🔬This is a nightly-only experimental API. (exact_size_is_empty)
Returns true if the iterator is empty. Read more
1.45.0 · source§

impl<A> Extend<Box<str, A>> for String
where A: Allocator,

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fn extend<I>(&mut self, iter: I)
where I: IntoIterator<Item = Box<str, A>>,

Extends a collection with the contents of an iterator. Read more
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fn extend_one(&mut self, item: A)

🔬This is a nightly-only experimental API. (extend_one)
Extends a collection with exactly one element.
source§

fn extend_reserve(&mut self, additional: usize)

🔬This is a nightly-only experimental API. (extend_one)
Reserves capacity in a collection for the given number of additional elements. Read more
source§

impl<S> Filter<S> for Box<dyn Filter<S> + Sync + Send>

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fn enabled(&self, meta: &Metadata<'_>, cx: &Context<'_, S>) -> bool

Returns true if this layer is interested in a span or event with the given Metadata in the current Context, similarly to Subscriber::enabled. Read more
source§

fn callsite_enabled(&self, meta: &'static Metadata<'static>) -> Interest

Returns an Interest indicating whether this layer will always, sometimes, or never be interested in the given Metadata. Read more
source§

fn max_level_hint(&self) -> Option<LevelFilter>

Returns an optional hint of the highest verbosity level that this Filter will enable. Read more
source§

fn event_enabled(&self, event: &Event<'_>, cx: &Context<'_, S>) -> bool

Called before the filtered [Layer]'s [on_event], to determine if on_event` should be called. Read more
source§

fn on_new_span(&self, attrs: &Attributes<'_>, id: &Id, ctx: Context<'_, S>)

Notifies this filter that a new span was constructed with the given Attributes and Id. Read more
source§

fn on_record(&self, id: &Id, values: &Record<'_>, ctx: Context<'_, S>)

Notifies this filter that a span with the given Id recorded the given values. Read more
source§

fn on_enter(&self, id: &Id, ctx: Context<'_, S>)

Notifies this filter that a span with the given ID was entered. Read more
source§

fn on_exit(&self, id: &Id, ctx: Context<'_, S>)

Notifies this filter that a span with the given ID was exited. Read more
source§

fn on_close(&self, id: Id, ctx: Context<'_, S>)

Notifies this filter that a span with the given ID has been closed. Read more
1.35.0 · source§

impl<Args, F, A> Fn<Args> for Box<F, A>
where Args: Tuple, F: Fn<Args> + ?Sized, A: Allocator,

source§

extern "rust-call" fn call( &self, args: Args, ) -> <Box<F, A> as FnOnce<Args>>::Output

🔬This is a nightly-only experimental API. (fn_traits)
Performs the call operation.
1.35.0 · source§

impl<Args, F, A> FnMut<Args> for Box<F, A>
where Args: Tuple, F: FnMut<Args> + ?Sized, A: Allocator,

source§

extern "rust-call" fn call_mut( &mut self, args: Args, ) -> <Box<F, A> as FnOnce<Args>>::Output

🔬This is a nightly-only experimental API. (fn_traits)
Performs the call operation.
1.35.0 · source§

impl<Args, F, A> FnOnce<Args> for Box<F, A>
where Args: Tuple, F: FnOnce<Args> + ?Sized, A: Allocator,

source§

type Output = <F as FnOnce<Args>>::Output

The returned type after the call operator is used.
source§

extern "rust-call" fn call_once( self, args: Args, ) -> <Box<F, A> as FnOnce<Args>>::Output

🔬This is a nightly-only experimental API. (fn_traits)
Performs the call operation.
1.17.0 · source§

impl<T> From<&[T]> for Box<[T]>
where T: Clone,

source§

fn from(slice: &[T]) -> Box<[T]>

Converts a &[T] into a Box<[T]>

This conversion allocates on the heap and performs a copy of slice and its contents.

§Examples
// create a &[u8] which will be used to create a Box<[u8]>
let slice: &[u8] = &[104, 101, 108, 108, 111];
let boxed_slice: Box<[u8]> = Box::from(slice);

println!("{boxed_slice:?}");
1.17.0 · source§

impl From<&CStr> for Box<CStr>

source§

fn from(s: &CStr) -> Box<CStr>

Converts a &CStr into a Box<CStr>, by copying the contents into a newly allocated Box.

1.17.0 · source§

impl From<&OsStr> for Box<OsStr>

source§

fn from(s: &OsStr) -> Box<OsStr>

Copies the string into a newly allocated Box<OsStr>.

1.17.0 · source§

impl From<&Path> for Box<Path>

source§

fn from(path: &Path) -> Box<Path>

Creates a boxed Path from a reference.

This will allocate and clone path to it.

source§

impl<K, V> From<&Slice<K, V>> for Box<Slice<K, V>>
where K: Copy, V: Copy,

source§

fn from(slice: &Slice<K, V>) -> Box<Slice<K, V>>

Converts to this type from the input type.
source§

impl<T> From<&Slice<T>> for Box<Slice<T>>
where T: Copy,

source§

fn from(slice: &Slice<T>) -> Box<Slice<T>>

Converts to this type from the input type.
1.6.0 · source§

impl<'a> From<&str> for Box<dyn Error + 'a>

source§

fn from(err: &str) -> Box<dyn Error + 'a>

Converts a str into a box of dyn Error.

§Examples
use std::error::Error;
use std::mem;

let a_str_error = "a str error";
let a_boxed_error = Box::<dyn Error>::from(a_str_error);
assert!(mem::size_of::<Box<dyn Error>>() == mem::size_of_val(&a_boxed_error))
1.0.0 · source§

impl<'a> From<&str> for Box<dyn Error + Sync + Send + 'a>

source§

fn from(err: &str) -> Box<dyn Error + Sync + Send + 'a>

Converts a str into a box of dyn Error + Send + Sync.

§Examples
use std::error::Error;
use std::mem;

let a_str_error = "a str error";
let a_boxed_error = Box::<dyn Error + Send + Sync>::from(a_str_error);
assert!(
    mem::size_of::<Box<dyn Error + Send + Sync>>() == mem::size_of_val(&a_boxed_error))
1.17.0 · source§

impl From<&str> for Box<str>

source§

fn from(s: &str) -> Box<str>

Converts a &str into a Box<str>

This conversion allocates on the heap and performs a copy of s.

§Examples
let boxed: Box<str> = Box::from("hello");
println!("{boxed}");
1.45.0 · source§

impl<T, const N: usize> From<[T; N]> for Box<[T]>

source§

fn from(array: [T; N]) -> Box<[T]>

Converts a [T; N] into a Box<[T]>

This conversion moves the array to newly heap-allocated memory.

§Examples
let boxed: Box<[u8]> = Box::from([4, 2]);
println!("{boxed:?}");
1.18.0 · source§

impl<T, A> From<Box<[T], A>> for Vec<T, A>
where A: Allocator,

source§

fn from(s: Box<[T], A>) -> Vec<T, A>

Converts a boxed slice into a vector by transferring ownership of the existing heap allocation.

§Examples
let b: Box<[i32]> = vec![1, 2, 3].into_boxed_slice();
assert_eq!(Vec::from(b), vec![1, 2, 3]);
1.18.0 · source§

impl From<Box<CStr>> for CString

source§

fn from(s: Box<CStr>) -> CString

Converts a Box<CStr> into a CString without copying or allocating.

1.18.0 · source§

impl From<Box<OsStr>> for OsString

source§

fn from(boxed: Box<OsStr>) -> OsString

Converts a Box<OsStr> into an OsString without copying or allocating.

1.18.0 · source§

impl From<Box<Path>> for PathBuf

source§

fn from(boxed: Box<Path>) -> PathBuf

Converts a Box<Path> into a PathBuf.

This conversion does not allocate or copy memory.

1.21.0 · source§

impl<T, A> From<Box<T, A>> for Arc<T, A>
where A: Allocator, T: ?Sized,

source§

fn from(v: Box<T, A>) -> Arc<T, A>

Move a boxed object to a new, reference-counted allocation.

§Example
let unique: Box<str> = Box::from("eggplant");
let shared: Arc<str> = Arc::from(unique);
assert_eq!("eggplant", &shared[..]);
1.33.0 · source§

impl<T, A> From<Box<T, A>> for Pin<Box<T, A>>
where A: Allocator + 'static, T: ?Sized,

source§

fn from(boxed: Box<T, A>) -> Pin<Box<T, A>>

Converts a Box<T> into a Pin<Box<T>>. If T does not implement Unpin, then *boxed will be pinned in memory and unable to be moved.

This conversion does not allocate on the heap and happens in place.

This is also available via Box::into_pin.

Constructing and pinning a Box with <Pin<Box<T>>>::from(Box::new(x)) can also be written more concisely using Box::pin(x). This From implementation is useful if you already have a Box<T>, or you are constructing a (pinned) Box in a different way than with Box::new.

1.21.0 · source§

impl<T, A> From<Box<T, A>> for Rc<T, A>
where A: Allocator, T: ?Sized,

source§

fn from(v: Box<T, A>) -> Rc<T, A>

Move a boxed object to a new, reference counted, allocation.

§Example
let original: Box<i32> = Box::new(1);
let shared: Rc<i32> = Rc::from(original);
assert_eq!(1, *shared);
source§

impl From<Box<dyn Error + Sync + Send>> for ParseError

source§

fn from(e: Box<dyn Error + Sync + Send>) -> ParseError

Converts to this type from the input type.
source§

impl From<Box<str>> for SmolStr

source§

fn from(s: Box<str>) -> SmolStr

Converts to this type from the input type.
1.18.0 · source§

impl From<Box<str>> for String

source§

fn from(s: Box<str>) -> String

Converts the given boxed str slice to a String. It is notable that the str slice is owned.

§Examples
let s1: String = String::from("hello world");
let s2: Box<str> = s1.into_boxed_str();
let s3: String = String::from(s2);

assert_eq!("hello world", s3)
1.19.0 · source§

impl<A> From<Box<str, A>> for Box<[u8], A>
where A: Allocator,

source§

fn from(s: Box<str, A>) -> Box<[u8], A>

Converts a Box<str> into a Box<[u8]>

This conversion does not allocate on the heap and happens in place.

§Examples
// create a Box<str> which will be used to create a Box<[u8]>
let boxed: Box<str> = Box::from("hello");
let boxed_str: Box<[u8]> = Box::from(boxed);

// create a &[u8] which will be used to create a Box<[u8]>
let slice: &[u8] = &[104, 101, 108, 108, 111];
let boxed_slice = Box::from(slice);

assert_eq!(boxed_slice, boxed_str);
1.20.0 · source§

impl From<CString> for Box<CStr>

source§

fn from(s: CString) -> Box<CStr>

Converts a CString into a Box<CStr> without copying or allocating.

1.45.0 · source§

impl<T> From<Cow<'_, [T]>> for Box<[T]>
where T: Clone,

source§

fn from(cow: Cow<'_, [T]>) -> Box<[T]>

Converts a Cow<'_, [T]> into a Box<[T]>

When cow is the Cow::Borrowed variant, this conversion allocates on the heap and copies the underlying slice. Otherwise, it will try to reuse the owned Vec’s allocation.

1.45.0 · source§

impl From<Cow<'_, CStr>> for Box<CStr>

source§

fn from(cow: Cow<'_, CStr>) -> Box<CStr>

Converts a Cow<'a, CStr> into a Box<CStr>, by copying the contents if they are borrowed.

1.45.0 · source§

impl From<Cow<'_, OsStr>> for Box<OsStr>

source§

fn from(cow: Cow<'_, OsStr>) -> Box<OsStr>

Converts a Cow<'a, OsStr> into a Box<OsStr>, by copying the contents if they are borrowed.

1.45.0 · source§

impl From<Cow<'_, Path>> for Box<Path>

source§

fn from(cow: Cow<'_, Path>) -> Box<Path>

Creates a boxed Path from a clone-on-write pointer.

Converting from a Cow::Owned does not clone or allocate.

1.45.0 · source§

impl From<Cow<'_, str>> for Box<str>

source§

fn from(cow: Cow<'_, str>) -> Box<str>

Converts a Cow<'_, str> into a Box<str>

When cow is the Cow::Borrowed variant, this conversion allocates on the heap and copies the underlying str. Otherwise, it will try to reuse the owned String’s allocation.

§Examples
use std::borrow::Cow;

let unboxed = Cow::Borrowed("hello");
let boxed: Box<str> = Box::from(unboxed);
println!("{boxed}");
let unboxed = Cow::Owned("hello".to_string());
let boxed: Box<str> = Box::from(unboxed);
println!("{boxed}");
1.22.0 · source§

impl<'a, 'b> From<Cow<'b, str>> for Box<dyn Error + 'a>

source§

fn from(err: Cow<'b, str>) -> Box<dyn Error + 'a>

Converts a Cow into a box of dyn Error.

§Examples
use std::error::Error;
use std::mem;
use std::borrow::Cow;

let a_cow_str_error = Cow::from("a str error");
let a_boxed_error = Box::<dyn Error>::from(a_cow_str_error);
assert!(mem::size_of::<Box<dyn Error>>() == mem::size_of_val(&a_boxed_error))
1.22.0 · source§

impl<'a, 'b> From<Cow<'b, str>> for Box<dyn Error + Sync + Send + 'a>

source§

fn from(err: Cow<'b, str>) -> Box<dyn Error + Sync + Send + 'a>

Converts a Cow into a box of dyn Error + Send + Sync.

§Examples
use std::error::Error;
use std::mem;
use std::borrow::Cow;

let a_cow_str_error = Cow::from("a str error");
let a_boxed_error = Box::<dyn Error + Send + Sync>::from(a_cow_str_error);
assert!(
    mem::size_of::<Box<dyn Error + Send + Sync>>() == mem::size_of_val(&a_boxed_error))
1.0.0 · source§

impl<'a, E> From<E> for Box<dyn Error + 'a>
where E: Error + 'a,

source§

fn from(err: E) -> Box<dyn Error + 'a>

Converts a type of Error into a box of dyn Error.

§Examples
use std::error::Error;
use std::fmt;
use std::mem;

#[derive(Debug)]
struct AnError;

impl fmt::Display for AnError {
    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
        write!(f, "An error")
    }
}

impl Error for AnError {}

let an_error = AnError;
assert!(0 == mem::size_of_val(&an_error));
let a_boxed_error = Box::<dyn Error>::from(an_error);
assert!(mem::size_of::<Box<dyn Error>>() == mem::size_of_val(&a_boxed_error))
1.0.0 · source§

impl<'a, E> From<E> for Box<dyn Error + Sync + Send + 'a>
where E: Error + Send + Sync + 'a,

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fn from(err: E) -> Box<dyn Error + Sync + Send + 'a>

Converts a type of Error + Send + Sync into a box of dyn Error + Send + Sync.

§Examples
use std::error::Error;
use std::fmt;
use std::mem;

#[derive(Debug)]
struct AnError;

impl fmt::Display for AnError {
    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
        write!(f, "An error")
    }
}

impl Error for AnError {}

unsafe impl Send for AnError {}

unsafe impl Sync for AnError {}

let an_error = AnError;
assert!(0 == mem::size_of_val(&an_error));
let a_boxed_error = Box::<dyn Error + Send + Sync>::from(an_error);
assert!(
    mem::size_of::<Box<dyn Error + Send + Sync>>() == mem::size_of_val(&a_boxed_error))
1.20.0 · source§

impl From<OsString> for Box<OsStr>

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fn from(s: OsString) -> Box<OsStr>

Converts an OsString into a Box<OsStr> without copying or allocating.

1.20.0 · source§

impl From<PathBuf> for Box<Path>

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fn from(p: PathBuf) -> Box<Path>

Converts a PathBuf into a Box<Path>.

This conversion currently should not allocate memory, but this behavior is not guaranteed on all platforms or in all future versions.

1.6.0 · source§

impl<'a> From<String> for Box<dyn Error + 'a>

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fn from(str_err: String) -> Box<dyn Error + 'a>

Converts a String into a box of dyn Error.

§Examples
use std::error::Error;
use std::mem;

let a_string_error = "a string error".to_string();
let a_boxed_error = Box::<dyn Error>::from(a_string_error);
assert!(mem::size_of::<Box<dyn Error>>() == mem::size_of_val(&a_boxed_error))
1.0.0 · source§

impl<'a> From<String> for Box<dyn Error + Sync + Send + 'a>

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fn from(err: String) -> Box<dyn Error + Sync + Send + 'a>

Converts a String into a box of dyn Error + Send + Sync.

§Examples
use std::error::Error;
use std::mem;

let a_string_error = "a string error".to_string();
let a_boxed_error = Box::<dyn Error + Send + Sync>::from(a_string_error);
assert!(
    mem::size_of::<Box<dyn Error + Send + Sync>>() == mem::size_of_val(&a_boxed_error))
1.20.0 · source§

impl From<String> for Box<str>

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fn from(s: String) -> Box<str>

Converts the given String to a boxed str slice that is owned.

§Examples
let s1: String = String::from("hello world");
let s2: Box<str> = Box::from(s1);
let s3: String = String::from(s2);

assert_eq!("hello world", s3)
1.6.0 · source§

impl<T> From<T> for Box<T>

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fn from(t: T) -> Box<T>

Converts a T into a Box<T>

The conversion allocates on the heap and moves t from the stack into it.

§Examples
let x = 5;
let boxed = Box::new(5);

assert_eq!(Box::from(x), boxed);
1.20.0 · source§

impl<T, A> From<Vec<T, A>> for Box<[T], A>
where A: Allocator,

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fn from(v: Vec<T, A>) -> Box<[T], A>

Converts a vector into a boxed slice.

Before doing the conversion, this method discards excess capacity like Vec::shrink_to_fit.

§Examples
assert_eq!(Box::from(vec![1, 2, 3]), vec![1, 2, 3].into_boxed_slice());

Any excess capacity is removed:

let mut vec = Vec::with_capacity(10);
vec.extend([1, 2, 3]);

assert_eq!(Box::from(vec), vec![1, 2, 3].into_boxed_slice());
1.80.0 · source§

impl<'a> FromIterator<&'a char> for Box<str>

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fn from_iter<T>(iter: T) -> Box<str>
where T: IntoIterator<Item = &'a char>,

Creates a value from an iterator. Read more
1.80.0 · source§

impl<'a> FromIterator<&'a str> for Box<str>

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fn from_iter<T>(iter: T) -> Box<str>
where T: IntoIterator<Item = &'a str>,

Creates a value from an iterator. Read more
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impl FromIterator<Box<dyn PartialReflect>> for DynamicArray

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fn from_iter<I>(values: I) -> DynamicArray
where I: IntoIterator<Item = Box<dyn PartialReflect>>,

Creates a value from an iterator. Read more
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impl FromIterator<Box<dyn PartialReflect>> for DynamicList

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fn from_iter<I>(values: I) -> DynamicList
where I: IntoIterator<Item = Box<dyn PartialReflect>>,

Creates a value from an iterator. Read more
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impl FromIterator<Box<dyn PartialReflect>> for DynamicSet

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fn from_iter<I>(values: I) -> DynamicSet
where I: IntoIterator<Item = Box<dyn PartialReflect>>,

Creates a value from an iterator. Read more
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impl FromIterator<Box<dyn PartialReflect>> for DynamicTuple

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fn from_iter<I>(fields: I) -> DynamicTuple
where I: IntoIterator<Item = Box<dyn PartialReflect>>,

Creates a value from an iterator. Read more
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impl FromIterator<Box<dyn PartialReflect>> for DynamicTupleStruct

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fn from_iter<I>(fields: I) -> DynamicTupleStruct
where I: IntoIterator<Item = Box<dyn PartialReflect>>,

Creates a value from an iterator. Read more
1.80.0 · source§

impl<A> FromIterator<Box<str, A>> for Box<str>
where A: Allocator,

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fn from_iter<T>(iter: T) -> Box<str>
where T: IntoIterator<Item = Box<str, A>>,

Creates a value from an iterator. Read more
1.45.0 · source§

impl<A> FromIterator<Box<str, A>> for String
where A: Allocator,

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fn from_iter<I>(iter: I) -> String
where I: IntoIterator<Item = Box<str, A>>,

Creates a value from an iterator. Read more
1.80.0 · source§

impl<'a> FromIterator<Cow<'a, str>> for Box<str>

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fn from_iter<T>(iter: T) -> Box<str>
where T: IntoIterator<Item = Cow<'a, str>>,

Creates a value from an iterator. Read more
1.32.0 · source§

impl<I> FromIterator<I> for Box<[I]>

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fn from_iter<T>(iter: T) -> Box<[I]>
where T: IntoIterator<Item = I>,

Creates a value from an iterator. Read more
1.80.0 · source§

impl FromIterator<String> for Box<str>

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fn from_iter<T>(iter: T) -> Box<str>
where T: IntoIterator<Item = String>,

Creates a value from an iterator. Read more
1.80.0 · source§

impl FromIterator<char> for Box<str>

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fn from_iter<T>(iter: T) -> Box<str>
where T: IntoIterator<Item = char>,

Creates a value from an iterator. Read more
1.36.0 · source§

impl<F, A> Future for Box<F, A>
where F: Future + Unpin + ?Sized, A: Allocator,

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type Output = <F as Future>::Output

The type of value produced on completion.
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fn poll( self: Pin<&mut Box<F, A>>, cx: &mut Context<'_>, ) -> Poll<<Box<F, A> as Future>::Output>

Attempts to resolve the future to a final value, registering the current task for wakeup if the value is not yet available. Read more
1.0.0 · source§

impl<T, A> Hash for Box<T, A>
where T: Hash + ?Sized, A: Allocator,

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fn hash<H>(&self, state: &mut H)
where H: Hasher,

Feeds this value into the given Hasher. Read more
1.3.0 · source§

fn hash_slice<H>(data: &[Self], state: &mut H)
where H: Hasher, Self: Sized,

Feeds a slice of this type into the given Hasher. Read more
1.22.0 · source§

impl<T, A> Hasher for Box<T, A>
where T: Hasher + ?Sized, A: Allocator,

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fn finish(&self) -> u64

Returns the hash value for the values written so far. Read more
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fn write(&mut self, bytes: &[u8])

Writes some data into this Hasher. Read more
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fn write_u8(&mut self, i: u8)

Writes a single u8 into this hasher.
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fn write_u16(&mut self, i: u16)

Writes a single u16 into this hasher.
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fn write_u32(&mut self, i: u32)

Writes a single u32 into this hasher.
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fn write_u64(&mut self, i: u64)

Writes a single u64 into this hasher.
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fn write_u128(&mut self, i: u128)

Writes a single u128 into this hasher.
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fn write_usize(&mut self, i: usize)

Writes a single usize into this hasher.
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fn write_i8(&mut self, i: i8)

Writes a single i8 into this hasher.
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fn write_i16(&mut self, i: i16)

Writes a single i16 into this hasher.
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fn write_i32(&mut self, i: i32)

Writes a single i32 into this hasher.
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fn write_i64(&mut self, i: i64)

Writes a single i64 into this hasher.
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fn write_i128(&mut self, i: i128)

Writes a single i128 into this hasher.
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fn write_isize(&mut self, i: isize)

Writes a single isize into this hasher.
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fn write_length_prefix(&mut self, len: usize)

🔬This is a nightly-only experimental API. (hasher_prefixfree_extras)
Writes a length prefix into this hasher, as part of being prefix-free. Read more
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fn write_str(&mut self, s: &str)

🔬This is a nightly-only experimental API. (hasher_prefixfree_extras)
Writes a single str into this hasher. Read more
1.80.0 · source§

impl<'a, I, A> IntoIterator for &'a Box<[I], A>
where A: Allocator,

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type IntoIter = Iter<'a, I>

Which kind of iterator are we turning this into?
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type Item = &'a I

The type of the elements being iterated over.
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fn into_iter(self) -> Iter<'a, I>

Creates an iterator from a value. Read more
1.80.0 · source§

impl<'a, I, A> IntoIterator for &'a mut Box<[I], A>
where A: Allocator,

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type IntoIter = IterMut<'a, I>

Which kind of iterator are we turning this into?
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type Item = &'a mut I

The type of the elements being iterated over.
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fn into_iter(self) -> IterMut<'a, I>

Creates an iterator from a value. Read more
1.80.0 · source§

impl<I, A> IntoIterator for Box<[I], A>
where A: Allocator,

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type IntoIter = IntoIter<I, A>

Which kind of iterator are we turning this into?
source§

type Item = I

The type of the elements being iterated over.
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fn into_iter(self) -> IntoIter<I, A>

Creates an iterator from a value. Read more
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impl<K, V> IntoIterator for Box<Slice<K, V>>

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type IntoIter = IntoIter<K, V>

Which kind of iterator are we turning this into?
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type Item = (K, V)

The type of the elements being iterated over.
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fn into_iter(self) -> <Box<Slice<K, V>> as IntoIterator>::IntoIter

Creates an iterator from a value. Read more
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impl<T> IntoIterator for Box<Slice<T>>

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type IntoIter = IntoIter<T>

Which kind of iterator are we turning this into?
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type Item = T

The type of the elements being iterated over.
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fn into_iter(self) -> <Box<Slice<T>> as IntoIterator>::IntoIter

Creates an iterator from a value. Read more
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impl IntoSystemConfigs<()> for Box<dyn System<Out = (), In = ()>>

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fn into_configs(self) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Convert into a SystemConfigs.
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fn in_set( self, set: impl SystemSet, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Add these systems to the provided set.
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fn before<M>( self, set: impl IntoSystemSet<M>, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Runs before all systems in set. If self has any systems that produce Commands or other Deferred operations, all systems in set will see their effect. Read more
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fn after<M>( self, set: impl IntoSystemSet<M>, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Run after all systems in set. If set has any systems that produce Commands or other Deferred operations, all systems in self will see their effect. Read more
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fn before_ignore_deferred<M>( self, set: impl IntoSystemSet<M>, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Run before all systems in set. Read more
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fn after_ignore_deferred<M>( self, set: impl IntoSystemSet<M>, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Run after all systems in set. Read more
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fn distributive_run_if<M>( self, condition: impl Condition<M> + Clone, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Add a run condition to each contained system. Read more
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fn run_if<M>( self, condition: impl Condition<M>, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Run the systems only if the Condition is true. Read more
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fn ambiguous_with<M>( self, set: impl IntoSystemSet<M>, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Suppress warnings and errors that would result from these systems having ambiguities (conflicting access but indeterminate order) with systems in set.
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fn ambiguous_with_all(self) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Suppress warnings and errors that would result from these systems having ambiguities (conflicting access but indeterminate order) with any other system.
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fn chain(self) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Treat this collection as a sequence of systems. Read more
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fn chain_ignore_deferred( self, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Treat this collection as a sequence of systems. Read more
1.0.0 · source§

impl<I, A> Iterator for Box<I, A>
where I: Iterator + ?Sized, A: Allocator,

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type Item = <I as Iterator>::Item

The type of the elements being iterated over.
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fn next(&mut self) -> Option<<I as Iterator>::Item>

Advances the iterator and returns the next value. Read more
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fn size_hint(&self) -> (usize, Option<usize>)

Returns the bounds on the remaining length of the iterator. Read more
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fn nth(&mut self, n: usize) -> Option<<I as Iterator>::Item>

Returns the nth element of the iterator. Read more
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fn last(self) -> Option<<I as Iterator>::Item>

Consumes the iterator, returning the last element. Read more
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fn next_chunk<const N: usize>( &mut self, ) -> Result<[Self::Item; N], IntoIter<Self::Item, N>>
where Self: Sized,

🔬This is a nightly-only experimental API. (iter_next_chunk)
Advances the iterator and returns an array containing the next N values. Read more
1.0.0 · source§

fn count(self) -> usize
where Self: Sized,

Consumes the iterator, counting the number of iterations and returning it. Read more
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fn advance_by(&mut self, n: usize) -> Result<(), NonZero<usize>>

🔬This is a nightly-only experimental API. (iter_advance_by)
Advances the iterator by n elements. Read more
1.28.0 · source§

fn step_by(self, step: usize) -> StepBy<Self>
where Self: Sized,

Creates an iterator starting at the same point, but stepping by the given amount at each iteration. Read more
1.0.0 · source§

fn chain<U>(self, other: U) -> Chain<Self, <U as IntoIterator>::IntoIter>
where Self: Sized, U: IntoIterator<Item = Self::Item>,

Takes two iterators and creates a new iterator over both in sequence. Read more
1.0.0 · source§

fn zip<U>(self, other: U) -> Zip<Self, <U as IntoIterator>::IntoIter>
where Self: Sized, U: IntoIterator,

‘Zips up’ two iterators into a single iterator of pairs. Read more
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fn intersperse_with<G>(self, separator: G) -> IntersperseWith<Self, G>
where Self: Sized, G: FnMut() -> Self::Item,

🔬This is a nightly-only experimental API. (iter_intersperse)
Creates a new iterator which places an item generated by separator between adjacent items of the original iterator. Read more
1.0.0 · source§

fn map<B, F>(self, f: F) -> Map<Self, F>
where Self: Sized, F: FnMut(Self::Item) -> B,

Takes a closure and creates an iterator which calls that closure on each element. Read more
1.21.0 · source§

fn for_each<F>(self, f: F)
where Self: Sized, F: FnMut(Self::Item),

Calls a closure on each element of an iterator. Read more
1.0.0 · source§

fn filter<P>(self, predicate: P) -> Filter<Self, P>
where Self: Sized, P: FnMut(&Self::Item) -> bool,

Creates an iterator which uses a closure to determine if an element should be yielded. Read more
1.0.0 · source§

fn filter_map<B, F>(self, f: F) -> FilterMap<Self, F>
where Self: Sized, F: FnMut(Self::Item) -> Option<B>,

Creates an iterator that both filters and maps. Read more
1.0.0 · source§

fn enumerate(self) -> Enumerate<Self>
where Self: Sized,

Creates an iterator which gives the current iteration count as well as the next value. Read more
1.0.0 · source§

fn peekable(self) -> Peekable<Self>
where Self: Sized,

Creates an iterator which can use the peek and peek_mut methods to look at the next element of the iterator without consuming it. See their documentation for more information. Read more
1.0.0 · source§

fn skip_while<P>(self, predicate: P) -> SkipWhile<Self, P>
where Self: Sized, P: FnMut(&Self::Item) -> bool,

Creates an iterator that skips elements based on a predicate. Read more
1.0.0 · source§

fn take_while<P>(self, predicate: P) -> TakeWhile<Self, P>
where Self: Sized, P: FnMut(&Self::Item) -> bool,

Creates an iterator that yields elements based on a predicate. Read more
1.57.0 · source§

fn map_while<B, P>(self, predicate: P) -> MapWhile<Self, P>
where Self: Sized, P: FnMut(Self::Item) -> Option<B>,

Creates an iterator that both yields elements based on a predicate and maps. Read more
1.0.0 · source§

fn skip(self, n: usize) -> Skip<Self>
where Self: Sized,

Creates an iterator that skips the first n elements. Read more
1.0.0 · source§

fn take(self, n: usize) -> Take<Self>
where Self: Sized,

Creates an iterator that yields the first n elements, or fewer if the underlying iterator ends sooner. Read more
1.0.0 · source§

fn scan<St, B, F>(self, initial_state: St, f: F) -> Scan<Self, St, F>
where Self: Sized, F: FnMut(&mut St, Self::Item) -> Option<B>,

An iterator adapter which, like fold, holds internal state, but unlike fold, produces a new iterator. Read more
1.0.0 · source§

fn flat_map<U, F>(self, f: F) -> FlatMap<Self, U, F>
where Self: Sized, U: IntoIterator, F: FnMut(Self::Item) -> U,

Creates an iterator that works like map, but flattens nested structure. Read more
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fn map_windows<F, R, const N: usize>(self, f: F) -> MapWindows<Self, F, N>
where Self: Sized, F: FnMut(&[Self::Item; N]) -> R,

🔬This is a nightly-only experimental API. (iter_map_windows)
Calls the given function f for each contiguous window of size N over self and returns an iterator over the outputs of f. Like slice::windows(), the windows during mapping overlap as well. Read more
1.0.0 · source§

fn fuse(self) -> Fuse<Self>
where Self: Sized,

Creates an iterator which ends after the first None. Read more
1.0.0 · source§

fn inspect<F>(self, f: F) -> Inspect<Self, F>
where Self: Sized, F: FnMut(&Self::Item),

Does something with each element of an iterator, passing the value on. Read more
1.0.0 · source§

fn by_ref(&mut self) -> &mut Self
where Self: Sized,

Borrows an iterator, rather than consuming it. Read more
1.0.0 · source§

fn collect<B>(self) -> B
where B: FromIterator<Self::Item>, Self: Sized,

Transforms an iterator into a collection. Read more
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fn collect_into<E>(self, collection: &mut E) -> &mut E
where E: Extend<Self::Item>, Self: Sized,

🔬This is a nightly-only experimental API. (iter_collect_into)
Collects all the items from an iterator into a collection. Read more
1.0.0 · source§

fn partition<B, F>(self, f: F) -> (B, B)
where Self: Sized, B: Default + Extend<Self::Item>, F: FnMut(&Self::Item) -> bool,

Consumes an iterator, creating two collections from it. Read more
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fn is_partitioned<P>(self, predicate: P) -> bool
where Self: Sized, P: FnMut(Self::Item) -> bool,

🔬This is a nightly-only experimental API. (iter_is_partitioned)
Checks if the elements of this iterator are partitioned according to the given predicate, such that all those that return true precede all those that return false. Read more
1.27.0 · source§

fn try_fold<B, F, R>(&mut self, init: B, f: F) -> R
where Self: Sized, F: FnMut(B, Self::Item) -> R, R: Try<Output = B>,

An iterator method that applies a function as long as it returns successfully, producing a single, final value. Read more
1.27.0 · source§

fn try_for_each<F, R>(&mut self, f: F) -> R
where Self: Sized, F: FnMut(Self::Item) -> R, R: Try<Output = ()>,

An iterator method that applies a fallible function to each item in the iterator, stopping at the first error and returning that error. Read more
1.0.0 · source§

fn fold<B, F>(self, init: B, f: F) -> B
where Self: Sized, F: FnMut(B, Self::Item) -> B,

Folds every element into an accumulator by applying an operation, returning the final result. Read more
1.51.0 · source§

fn reduce<F>(self, f: F) -> Option<Self::Item>
where Self: Sized, F: FnMut(Self::Item, Self::Item) -> Self::Item,

Reduces the elements to a single one, by repeatedly applying a reducing operation. Read more
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fn try_reduce<R>( &mut self, f: impl FnMut(Self::Item, Self::Item) -> R, ) -> <<R as Try>::Residual as Residual<Option<<R as Try>::Output>>>::TryType
where Self: Sized, R: Try<Output = Self::Item>, <R as Try>::Residual: Residual<Option<Self::Item>>,

🔬This is a nightly-only experimental API. (iterator_try_reduce)
Reduces the elements to a single one by repeatedly applying a reducing operation. If the closure returns a failure, the failure is propagated back to the caller immediately. Read more
1.0.0 · source§

fn all<F>(&mut self, f: F) -> bool
where Self: Sized, F: FnMut(Self::Item) -> bool,

Tests if every element of the iterator matches a predicate. Read more
1.0.0 · source§

fn any<F>(&mut self, f: F) -> bool
where Self: Sized, F: FnMut(Self::Item) -> bool,

Tests if any element of the iterator matches a predicate. Read more
1.0.0 · source§

fn find<P>(&mut self, predicate: P) -> Option<Self::Item>
where Self: Sized, P: FnMut(&Self::Item) -> bool,

Searches for an element of an iterator that satisfies a predicate. Read more
1.30.0 · source§

fn find_map<B, F>(&mut self, f: F) -> Option<B>
where Self: Sized, F: FnMut(Self::Item) -> Option<B>,

Applies function to the elements of iterator and returns the first non-none result. Read more
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fn try_find<R>( &mut self, f: impl FnMut(&Self::Item) -> R, ) -> <<R as Try>::Residual as Residual<Option<Self::Item>>>::TryType
where Self: Sized, R: Try<Output = bool>, <R as Try>::Residual: Residual<Option<Self::Item>>,

🔬This is a nightly-only experimental API. (try_find)
Applies function to the elements of iterator and returns the first true result or the first error. Read more
1.0.0 · source§

fn position<P>(&mut self, predicate: P) -> Option<usize>
where Self: Sized, P: FnMut(Self::Item) -> bool,

Searches for an element in an iterator, returning its index. Read more
1.6.0 · source§

fn max_by_key<B, F>(self, f: F) -> Option<Self::Item>
where B: Ord, Self: Sized, F: FnMut(&Self::Item) -> B,

Returns the element that gives the maximum value from the specified function. Read more
1.15.0 · source§

fn max_by<F>(self, compare: F) -> Option<Self::Item>
where Self: Sized, F: FnMut(&Self::Item, &Self::Item) -> Ordering,

Returns the element that gives the maximum value with respect to the specified comparison function. Read more
1.6.0 · source§

fn min_by_key<B, F>(self, f: F) -> Option<Self::Item>
where B: Ord, Self: Sized, F: FnMut(&Self::Item) -> B,

Returns the element that gives the minimum value from the specified function. Read more
1.15.0 · source§

fn min_by<F>(self, compare: F) -> Option<Self::Item>
where Self: Sized, F: FnMut(&Self::Item, &Self::Item) -> Ordering,

Returns the element that gives the minimum value with respect to the specified comparison function. Read more
1.0.0 · source§

fn unzip<A, B, FromA, FromB>(self) -> (FromA, FromB)
where FromA: Default + Extend<A>, FromB: Default + Extend<B>, Self: Sized + Iterator<Item = (A, B)>,

Converts an iterator of pairs into a pair of containers. Read more
1.36.0 · source§

fn copied<'a, T>(self) -> Copied<Self>
where T: 'a + Copy, Self: Sized + Iterator<Item = &'a T>,

Creates an iterator which copies all of its elements. Read more
1.0.0 · source§

fn cloned<'a, T>(self) -> Cloned<Self>
where T: 'a + Clone, Self: Sized + Iterator<Item = &'a T>,

Creates an iterator which clones all of its elements. Read more
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fn array_chunks<const N: usize>(self) -> ArrayChunks<Self, N>
where Self: Sized,

🔬This is a nightly-only experimental API. (iter_array_chunks)
Returns an iterator over N elements of the iterator at a time. Read more
1.11.0 · source§

fn sum<S>(self) -> S
where Self: Sized, S: Sum<Self::Item>,

Sums the elements of an iterator. Read more
1.11.0 · source§

fn product<P>(self) -> P
where Self: Sized, P: Product<Self::Item>,

Iterates over the entire iterator, multiplying all the elements Read more
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fn cmp_by<I, F>(self, other: I, cmp: F) -> Ordering
where Self: Sized, I: IntoIterator, F: FnMut(Self::Item, <I as IntoIterator>::Item) -> Ordering,

🔬This is a nightly-only experimental API. (iter_order_by)
Lexicographically compares the elements of this Iterator with those of another with respect to the specified comparison function. Read more
1.5.0 · source§

fn partial_cmp<I>(self, other: I) -> Option<Ordering>
where I: IntoIterator, Self::Item: PartialOrd<<I as IntoIterator>::Item>, Self: Sized,

Lexicographically compares the PartialOrd elements of this Iterator with those of another. The comparison works like short-circuit evaluation, returning a result without comparing the remaining elements. As soon as an order can be determined, the evaluation stops and a result is returned. Read more
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fn partial_cmp_by<I, F>(self, other: I, partial_cmp: F) -> Option<Ordering>
where Self: Sized, I: IntoIterator, F: FnMut(Self::Item, <I as IntoIterator>::Item) -> Option<Ordering>,

🔬This is a nightly-only experimental API. (iter_order_by)
Lexicographically compares the elements of this Iterator with those of another with respect to the specified comparison function. Read more
1.5.0 · source§

fn eq<I>(self, other: I) -> bool
where I: IntoIterator, Self::Item: PartialEq<<I as IntoIterator>::Item>, Self: Sized,

Determines if the elements of this Iterator are equal to those of another. Read more
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fn eq_by<I, F>(self, other: I, eq: F) -> bool
where Self: Sized, I: IntoIterator, F: FnMut(Self::Item, <I as IntoIterator>::Item) -> bool,

🔬This is a nightly-only experimental API. (iter_order_by)
Determines if the elements of this Iterator are equal to those of another with respect to the specified equality function. Read more
1.5.0 · source§

fn ne<I>(self, other: I) -> bool
where I: IntoIterator, Self::Item: PartialEq<<I as IntoIterator>::Item>, Self: Sized,

Determines if the elements of this Iterator are not equal to those of another. Read more
1.5.0 · source§

fn lt<I>(self, other: I) -> bool
where I: IntoIterator, Self::Item: PartialOrd<<I as IntoIterator>::Item>, Self: Sized,

Determines if the elements of this Iterator are lexicographically less than those of another. Read more
1.5.0 · source§

fn le<I>(self, other: I) -> bool
where I: IntoIterator, Self::Item: PartialOrd<<I as IntoIterator>::Item>, Self: Sized,

Determines if the elements of this Iterator are lexicographically less or equal to those of another. Read more
1.5.0 · source§

fn gt<I>(self, other: I) -> bool
where I: IntoIterator, Self::Item: PartialOrd<<I as IntoIterator>::Item>, Self: Sized,

Determines if the elements of this Iterator are lexicographically greater than those of another. Read more
1.5.0 · source§

fn ge<I>(self, other: I) -> bool
where I: IntoIterator, Self::Item: PartialOrd<<I as IntoIterator>::Item>, Self: Sized,

Determines if the elements of this Iterator are lexicographically greater than or equal to those of another. Read more
1.82.0 · source§

fn is_sorted_by<F>(self, compare: F) -> bool
where Self: Sized, F: FnMut(&Self::Item, &Self::Item) -> bool,

Checks if the elements of this iterator are sorted using the given comparator function. Read more
1.82.0 · source§

fn is_sorted_by_key<F, K>(self, f: F) -> bool
where Self: Sized, F: FnMut(Self::Item) -> K, K: PartialOrd,

Checks if the elements of this iterator are sorted using the given key extraction function. Read more
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impl<L, S> Layer<S> for Box<L>
where L: Layer<S>, S: Subscriber,

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fn on_register_dispatch(&self, subscriber: &Dispatch)

Performs late initialization when installing this layer as a Subscriber. Read more
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fn on_layer(&mut self, subscriber: &mut S)

Performs late initialization when attaching a Layer to a Subscriber. Read more
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fn on_new_span(&self, attrs: &Attributes<'_>, id: &Id, ctx: Context<'_, S>)

Notifies this layer that a new span was constructed with the given Attributes and Id.
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fn register_callsite(&self, metadata: &'static Metadata<'static>) -> Interest

Registers a new callsite with this layer, returning whether or not the layer is interested in being notified about the callsite, similarly to Subscriber::register_callsite. Read more
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fn enabled(&self, metadata: &Metadata<'_>, ctx: Context<'_, S>) -> bool

Returns true if this layer is interested in a span or event with the given metadata in the current Context, similarly to Subscriber::enabled. Read more
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fn on_record(&self, span: &Id, values: &Record<'_>, ctx: Context<'_, S>)

Notifies this layer that a span with the given Id recorded the given values.
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fn on_follows_from(&self, span: &Id, follows: &Id, ctx: Context<'_, S>)

Notifies this layer that a span with the ID span recorded that it follows from the span with the ID follows.
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fn event_enabled(&self, event: &Event<'_>, ctx: Context<'_, S>) -> bool

Called before on_event, to determine if on_event should be called. Read more
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fn on_event(&self, event: &Event<'_>, ctx: Context<'_, S>)

Notifies this layer that an event has occurred.
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fn on_enter(&self, id: &Id, ctx: Context<'_, S>)

Notifies this layer that a span with the given ID was entered.
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fn on_exit(&self, id: &Id, ctx: Context<'_, S>)

Notifies this layer that the span with the given ID was exited.
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fn on_close(&self, id: Id, ctx: Context<'_, S>)

Notifies this layer that the span with the given ID has been closed.
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fn on_id_change(&self, old: &Id, new: &Id, ctx: Context<'_, S>)

Notifies this layer that a span ID has been cloned, and that the subscriber returned a different ID.
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fn and_then<L>(self, layer: L) -> Layered<L, Self, S>
where L: Layer<S>, Self: Sized,

Composes this layer around the given Layer, returning a Layered struct implementing Layer. Read more
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fn with_subscriber(self, inner: S) -> Layered<Self, S>
where Self: Sized,

Composes this Layer with the given Subscriber, returning a Layered struct that implements Subscriber. Read more
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fn with_filter<F>(self, filter: F) -> Filtered<Self, F, S>
where Self: Sized, F: Filter<S>,

Combines self with a Filter, returning a Filtered layer. Read more
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impl<S> Layer<S> for Box<dyn Layer<S> + Sync + Send>
where S: Subscriber,

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fn on_register_dispatch(&self, subscriber: &Dispatch)

Performs late initialization when installing this layer as a Subscriber. Read more
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fn on_layer(&mut self, subscriber: &mut S)

Performs late initialization when attaching a Layer to a Subscriber. Read more
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fn on_new_span(&self, attrs: &Attributes<'_>, id: &Id, ctx: Context<'_, S>)

Notifies this layer that a new span was constructed with the given Attributes and Id.
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fn register_callsite(&self, metadata: &'static Metadata<'static>) -> Interest

Registers a new callsite with this layer, returning whether or not the layer is interested in being notified about the callsite, similarly to Subscriber::register_callsite. Read more
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fn enabled(&self, metadata: &Metadata<'_>, ctx: Context<'_, S>) -> bool

Returns true if this layer is interested in a span or event with the given metadata in the current Context, similarly to Subscriber::enabled. Read more
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fn on_record(&self, span: &Id, values: &Record<'_>, ctx: Context<'_, S>)

Notifies this layer that a span with the given Id recorded the given values.
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fn on_follows_from(&self, span: &Id, follows: &Id, ctx: Context<'_, S>)

Notifies this layer that a span with the ID span recorded that it follows from the span with the ID follows.
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fn event_enabled(&self, event: &Event<'_>, ctx: Context<'_, S>) -> bool

Called before on_event, to determine if on_event should be called. Read more
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fn on_event(&self, event: &Event<'_>, ctx: Context<'_, S>)

Notifies this layer that an event has occurred.
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fn on_enter(&self, id: &Id, ctx: Context<'_, S>)

Notifies this layer that a span with the given ID was entered.
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fn on_exit(&self, id: &Id, ctx: Context<'_, S>)

Notifies this layer that the span with the given ID was exited.
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fn on_close(&self, id: Id, ctx: Context<'_, S>)

Notifies this layer that the span with the given ID has been closed.
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fn on_id_change(&self, old: &Id, new: &Id, ctx: Context<'_, S>)

Notifies this layer that a span ID has been cloned, and that the subscriber returned a different ID.
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fn and_then<L>(self, layer: L) -> Layered<L, Self, S>
where L: Layer<S>, Self: Sized,

Composes this layer around the given Layer, returning a Layered struct implementing Layer. Read more
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fn with_subscriber(self, inner: S) -> Layered<Self, S>
where Self: Sized,

Composes this Layer with the given Subscriber, returning a Layered struct that implements Subscriber. Read more
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fn with_filter<F>(self, filter: F) -> Filtered<Self, F, S>
where Self: Sized, F: Filter<S>,

Combines self with a Filter, returning a Filtered layer. Read more
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fn boxed(self) -> Box<dyn Layer<S> + Sync + Send>
where Self: Sized + Layer<S> + Send + Sync + 'static, S: Subscriber,

Erases the type of this Layer, returning a Boxed dyn Layer trait object. Read more
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impl<T> Log for Box<T>
where T: Log + ?Sized,

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fn enabled(&self, metadata: &Metadata<'_>) -> bool

Determines if a log message with the specified metadata would be logged. Read more
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fn log(&self, record: &Record<'_>)

Logs the Record. Read more
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fn flush(&self)

Flushes any buffered records. Read more
1.0.0 · source§

impl<T, A> Ord for Box<T, A>
where T: Ord + ?Sized, A: Allocator,

source§

fn cmp(&self, other: &Box<T, A>) -> Ordering

This method returns an Ordering between self and other. Read more
1.21.0 · source§

fn max(self, other: Self) -> Self
where Self: Sized,

Compares and returns the maximum of two values. Read more
1.21.0 · source§

fn min(self, other: Self) -> Self
where Self: Sized,

Compares and returns the minimum of two values. Read more
1.50.0 · source§

fn clamp(self, min: Self, max: Self) -> Self
where Self: Sized,

Restrict a value to a certain interval. Read more
1.0.0 · source§

impl<T, A> PartialEq for Box<T, A>
where T: PartialEq + ?Sized, A: Allocator,

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fn eq(&self, other: &Box<T, A>) -> bool

Tests for self and other values to be equal, and is used by ==.
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fn ne(&self, other: &Box<T, A>) -> bool

Tests for !=. The default implementation is almost always sufficient, and should not be overridden without very good reason.
1.0.0 · source§

impl<T, A> PartialOrd for Box<T, A>
where T: PartialOrd + ?Sized, A: Allocator,

source§

fn partial_cmp(&self, other: &Box<T, A>) -> Option<Ordering>

This method returns an ordering between self and other values if one exists. Read more
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fn lt(&self, other: &Box<T, A>) -> bool

Tests less than (for self and other) and is used by the < operator. Read more
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fn le(&self, other: &Box<T, A>) -> bool

Tests less than or equal to (for self and other) and is used by the <= operator. Read more
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fn ge(&self, other: &Box<T, A>) -> bool

Tests greater than or equal to (for self and other) and is used by the >= operator. Read more
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fn gt(&self, other: &Box<T, A>) -> bool

Tests greater than (for self and other) and is used by the > operator. Read more
1.0.0 · source§

impl<T, A> Pointer for Box<T, A>
where A: Allocator, T: ?Sized,

source§

fn fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error>

Formats the value using the given formatter. Read more
1.0.0 · source§

impl<R> Read for Box<R>
where R: Read + ?Sized,

source§

fn read(&mut self, buf: &mut [u8]) -> Result<usize, Error>

Pull some bytes from this source into the specified buffer, returning how many bytes were read. Read more
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fn read_buf(&mut self, cursor: BorrowedCursor<'_>) -> Result<(), Error>

🔬This is a nightly-only experimental API. (read_buf)
Pull some bytes from this source into the specified buffer. Read more
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fn read_vectored(&mut self, bufs: &mut [IoSliceMut<'_>]) -> Result<usize, Error>

Like read, except that it reads into a slice of buffers. Read more
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fn is_read_vectored(&self) -> bool

🔬This is a nightly-only experimental API. (can_vector)
Determines if this Reader has an efficient read_vectored implementation. Read more
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fn read_to_end(&mut self, buf: &mut Vec<u8>) -> Result<usize, Error>

Reads all bytes until EOF in this source, placing them into buf. Read more
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fn read_to_string(&mut self, buf: &mut String) -> Result<usize, Error>

Reads all bytes until EOF in this source, appending them to buf. Read more
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fn read_exact(&mut self, buf: &mut [u8]) -> Result<(), Error>

Reads the exact number of bytes required to fill buf. Read more
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fn read_buf_exact(&mut self, cursor: BorrowedCursor<'_>) -> Result<(), Error>

🔬This is a nightly-only experimental API. (read_buf)
Reads the exact number of bytes required to fill cursor. Read more
1.0.0 · source§

fn by_ref(&mut self) -> &mut Self
where Self: Sized,

Creates a “by reference” adaptor for this instance of Read. Read more
1.0.0 · source§

fn bytes(self) -> Bytes<Self>
where Self: Sized,

Transforms this Read instance to an Iterator over its bytes. Read more
1.0.0 · source§

fn chain<R>(self, next: R) -> Chain<Self, R>
where R: Read, Self: Sized,

Creates an adapter which will chain this stream with another. Read more
1.0.0 · source§

fn take(self, limit: u64) -> Take<Self>
where Self: Sized,

Creates an adapter which will read at most limit bytes from it. Read more
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impl<R> RngCore for Box<R>
where R: RngCore + ?Sized,

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fn next_u32(&mut self) -> u32

Return the next random u32. Read more
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fn next_u64(&mut self) -> u64

Return the next random u64. Read more
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fn fill_bytes(&mut self, dest: &mut [u8])

Fill dest with random data. Read more
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fn try_fill_bytes(&mut self, dest: &mut [u8]) -> Result<(), Error>

Fill dest entirely with random data. Read more
1.0.0 · source§

impl<S> Seek for Box<S>
where S: Seek + ?Sized,

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fn seek(&mut self, pos: SeekFrom) -> Result<u64, Error>

Seek to an offset, in bytes, in a stream. Read more
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fn stream_position(&mut self) -> Result<u64, Error>

Returns the current seek position from the start of the stream. Read more
1.55.0 · source§

fn rewind(&mut self) -> Result<(), Error>

Rewind to the beginning of a stream. Read more
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fn stream_len(&mut self) -> Result<u64, Error>

🔬This is a nightly-only experimental API. (seek_stream_len)
Returns the length of this stream (in bytes). Read more
1.80.0 · source§

fn seek_relative(&mut self, offset: i64) -> Result<(), Error>

Seeks relative to the current position. Read more
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impl<T> Serialize for Box<T>
where T: Serialize + ?Sized,

source§

fn serialize<S>( &self, serializer: S, ) -> Result<<S as Serializer>::Ok, <S as Serializer>::Error>
where S: Serializer,

Serialize this value into the given Serde serializer. Read more
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impl<T> Serializer for Box<T>
where T: Serializer + ?Sized,

source§

fn erased_serialize_bool(&mut self, v: bool)

source§

fn erased_serialize_i8(&mut self, v: i8)

source§

fn erased_serialize_i16(&mut self, v: i16)

source§

fn erased_serialize_i32(&mut self, v: i32)

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fn erased_serialize_i64(&mut self, v: i64)

source§

fn erased_serialize_i128(&mut self, v: i128)

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fn erased_serialize_u8(&mut self, v: u8)

source§

fn erased_serialize_u16(&mut self, v: u16)

source§

fn erased_serialize_u32(&mut self, v: u32)

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fn erased_serialize_u64(&mut self, v: u64)

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fn erased_serialize_u128(&mut self, v: u128)

source§

fn erased_serialize_f32(&mut self, v: f32)

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fn erased_serialize_f64(&mut self, v: f64)

source§

fn erased_serialize_char(&mut self, v: char)

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fn erased_serialize_str(&mut self, v: &str)

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fn erased_serialize_bytes(&mut self, v: &[u8])

source§

fn erased_serialize_none(&mut self)

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fn erased_serialize_some(&mut self, value: &dyn Serialize)

source§

fn erased_serialize_unit(&mut self)

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fn erased_serialize_unit_struct(&mut self, name: &'static str)

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fn erased_serialize_unit_variant( &mut self, name: &'static str, variant_index: u32, variant: &'static str, )

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fn erased_serialize_newtype_struct( &mut self, name: &'static str, value: &dyn Serialize, )

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fn erased_serialize_newtype_variant( &mut self, name: &'static str, variant_index: u32, variant: &'static str, value: &dyn Serialize, )

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fn erased_serialize_seq( &mut self, len: Option<usize>, ) -> Result<&mut dyn SerializeSeq, ErrorImpl>

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fn erased_serialize_tuple( &mut self, len: usize, ) -> Result<&mut dyn SerializeTuple, ErrorImpl>

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fn erased_serialize_tuple_struct( &mut self, name: &'static str, len: usize, ) -> Result<&mut dyn SerializeTupleStruct, ErrorImpl>

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fn erased_serialize_tuple_variant( &mut self, name: &'static str, variant_index: u32, variant: &'static str, len: usize, ) -> Result<&mut dyn SerializeTupleVariant, ErrorImpl>

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fn erased_serialize_map( &mut self, len: Option<usize>, ) -> Result<&mut dyn SerializeMap, ErrorImpl>

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fn erased_serialize_struct( &mut self, name: &'static str, len: usize, ) -> Result<&mut dyn SerializeStruct, ErrorImpl>

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fn erased_serialize_struct_variant( &mut self, name: &'static str, variant_index: u32, variant: &'static str, len: usize, ) -> Result<&mut dyn SerializeStructVariant, ErrorImpl>

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fn erased_is_human_readable(&self) -> bool

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impl<S> Subscriber for Box<S>
where S: Subscriber + ?Sized,

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fn register_callsite(&self, metadata: &'static Metadata<'static>) -> Interest

Registers a new callsite with this subscriber, returning whether or not the subscriber is interested in being notified about the callsite. Read more
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fn enabled(&self, metadata: &Metadata<'_>) -> bool

Returns true if a span or event with the specified metadata would be recorded. Read more
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fn max_level_hint(&self) -> Option<LevelFilter>

Returns the highest verbosity level that this Subscriber will enable, or None, if the subscriber does not implement level-based filtering or chooses not to implement this method. Read more
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fn new_span(&self, span: &Attributes<'_>) -> Id

Visit the construction of a new span, returning a new span ID for the span being constructed. Read more
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fn record(&self, span: &Id, values: &Record<'_>)

Record a set of values on a span. Read more
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fn record_follows_from(&self, span: &Id, follows: &Id)

Adds an indication that span follows from the span with the id follows. Read more
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fn event_enabled(&self, event: &Event<'_>) -> bool

Determine if an Event should be recorded. Read more
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fn event(&self, event: &Event<'_>)

Records that an Event has occurred. Read more
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fn enter(&self, span: &Id)

Records that a span has been entered. Read more
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fn exit(&self, span: &Id)

Records that a span has been exited. Read more
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fn clone_span(&self, id: &Id) -> Id

Notifies the subscriber that a span ID has been cloned. Read more
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fn try_close(&self, id: Id) -> bool

Notifies the subscriber that a span ID has been dropped, and returns true if there are now 0 IDs that refer to that span. Read more
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fn drop_span(&self, id: Id)

👎Deprecated since 0.1.2: use Subscriber::try_close instead
This method is deprecated. Read more
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fn current_span(&self) -> Current

Returns a type representing this subscriber’s view of the current span. Read more
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unsafe fn downcast_raw(&self, id: TypeId) -> Option<*const ()>

If self is the same type as the provided TypeId, returns an untyped *const pointer to that type. Otherwise, returns None. Read more
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fn on_register_dispatch(&self, subscriber: &Dispatch)

Invoked when this subscriber becomes a Dispatch. Read more
1.43.0 · source§

impl<T, const N: usize> TryFrom<Box<[T]>> for Box<[T; N]>

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fn try_from( boxed_slice: Box<[T]>, ) -> Result<Box<[T; N]>, <Box<[T; N]> as TryFrom<Box<[T]>>>::Error>

Attempts to convert a Box<[T]> into a Box<[T; N]>.

The conversion occurs in-place and does not require a new memory allocation.

§Errors

Returns the old Box<[T]> in the Err variant if boxed_slice.len() does not equal N.

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type Error = Box<[T]>

The type returned in the event of a conversion error.
1.66.0 · source§

impl<T, const N: usize> TryFrom<Vec<T>> for Box<[T; N]>

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fn try_from( vec: Vec<T>, ) -> Result<Box<[T; N]>, <Box<[T; N]> as TryFrom<Vec<T>>>::Error>

Attempts to convert a Vec<T> into a Box<[T; N]>.

Like Vec::into_boxed_slice, this is in-place if vec.capacity() == N, but will require a reallocation otherwise.

§Errors

Returns the original Vec<T> in the Err variant if boxed_slice.len() does not equal N.

§Examples

This can be used with vec! to create an array on the heap:

let state: Box<[f32; 100]> = vec![1.0; 100].try_into().unwrap();
assert_eq!(state.len(), 100);
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type Error = Vec<T>

The type returned in the event of a conversion error.
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impl<T> Value for Box<T>
where T: Value + ?Sized,

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fn record(&self, key: &Field, visitor: &mut dyn Visit)

Visits this value with the given Visitor.
1.0.0 · source§

impl<W> Write for Box<W>
where W: Write + ?Sized,

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fn write(&mut self, buf: &[u8]) -> Result<usize, Error>

Writes a buffer into this writer, returning how many bytes were written. Read more
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fn write_vectored(&mut self, bufs: &[IoSlice<'_>]) -> Result<usize, Error>

Like write, except that it writes from a slice of buffers. Read more
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fn is_write_vectored(&self) -> bool

🔬This is a nightly-only experimental API. (can_vector)
Determines if this Writer has an efficient write_vectored implementation. Read more
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fn flush(&mut self) -> Result<(), Error>

Flushes this output stream, ensuring that all intermediately buffered contents reach their destination. Read more
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fn write_all(&mut self, buf: &[u8]) -> Result<(), Error>

Attempts to write an entire buffer into this writer. Read more
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fn write_fmt(&mut self, fmt: Arguments<'_>) -> Result<(), Error>

Writes a formatted string into this writer, returning any error encountered. Read more
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fn write_all_vectored(&mut self, bufs: &mut [IoSlice<'_>]) -> Result<(), Error>

🔬This is a nightly-only experimental API. (write_all_vectored)
Attempts to write multiple buffers into this writer. Read more
1.0.0 · source§

fn by_ref(&mut self) -> &mut Self
where Self: Sized,

Creates a “by reference” adapter for this instance of Write. Read more
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impl<T, U, A> CoerceUnsized<Box<U, A>> for Box<T, A>
where T: Unsize<U> + ?Sized, A: Allocator, U: ?Sized,

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impl<R> CryptoRng for Box<R>
where R: CryptoRng + ?Sized,

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impl<T, A> DerefPure for Box<T, A>
where A: Allocator, T: ?Sized,

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impl<T, U> DispatchFromDyn<Box<U>> for Box<T>
where T: Unsize<U> + ?Sized, U: ?Sized,

1.0.0 · source§

impl<T, A> Eq for Box<T, A>
where T: Eq + ?Sized, A: Allocator,

1.26.0 · source§

impl<I, A> FusedIterator for Box<I, A>
where I: FusedIterator + ?Sized, A: Allocator,

1.80.0 · source§

impl<'a, I, A> !Iterator for &'a Box<[I], A>
where A: Allocator,

This implementation is required to make sure that the &Box<[I]>: IntoIterator implementation doesn’t overlap with IntoIterator for T where T: Iterator blanket.

1.80.0 · source§

impl<'a, I, A> !Iterator for &'a mut Box<[I], A>
where A: Allocator,

This implementation is required to make sure that the &mut Box<[I]>: IntoIterator implementation doesn’t overlap with IntoIterator for T where T: Iterator blanket.

1.80.0 · source§

impl<I, A> !Iterator for Box<[I], A>
where A: Allocator,

This implementation is required to make sure that the Box<[I]>: IntoIterator implementation doesn’t overlap with IntoIterator for T where T: Iterator blanket.

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impl<T, A> PinCoerceUnsized for Box<T, A>
where A: Allocator, T: ?Sized,

1.33.0 · source§

impl<T, A> Unpin for Box<T, A>
where A: Allocator, T: ?Sized,

Auto Trait Implementations§

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impl<T, A> Freeze for Box<T, A>
where A: Freeze, T: ?Sized,

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impl<T, A> RefUnwindSafe for Box<T, A>

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impl<T, A> Send for Box<T, A>
where A: Send, T: Send + ?Sized,

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impl<T, A> Sync for Box<T, A>
where A: Sync, T: Sync + ?Sized,

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impl<T, A> UnwindSafe for Box<T, A>
where A: UnwindSafe, T: UnwindSafe + ?Sized,

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impl<F, S, Out> Adapt<S> for F
where F: Send + Sync + 'static + FnMut(<S as System>::Out) -> Out, S: System,

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type In = <S as System>::In

The input type for an AdapterSystem.
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type Out = Out

The output type for an AdapterSystem.
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fn adapt( &mut self, input: <<F as Adapt<S>>::In as SystemInput>::Inner<'_>, run_system: impl FnOnce(<<S as System>::In as SystemInput>::Inner<'_>) -> <S as System>::Out, ) -> Out

When used in an AdapterSystem, this function customizes how the system is run and how its inputs/outputs are adapted.
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impl<T> Any for T
where T: 'static + ?Sized,

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fn type_id(&self) -> TypeId

Gets the TypeId of self. Read more
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impl<R> AsyncBufReadExt for R
where R: AsyncBufRead + ?Sized,

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fn fill_buf(&mut self) -> FillBuf<'_, Self>
where Self: Unpin,

Returns the contents of the internal buffer, filling it with more data if empty. Read more
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fn consume(&mut self, amt: usize)
where Self: Unpin,

Consumes amt buffered bytes. Read more
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fn read_until<'a>( &'a mut self, byte: u8, buf: &'a mut Vec<u8>, ) -> ReadUntilFuture<'a, Self>
where Self: Unpin,

Reads all bytes and appends them into buf until the delimiter byte or EOF is found. Read more
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fn read_line<'a>(&'a mut self, buf: &'a mut String) -> ReadLineFuture<'a, Self>
where Self: Unpin,

Reads all bytes and appends them into buf until a newline (the 0xA byte) or EOF is found. Read more
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fn lines(self) -> Lines<Self>
where Self: Sized,

Returns a stream over the lines of this byte stream. Read more
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fn split(self, byte: u8) -> Split<Self>
where Self: Sized,

Returns a stream over the contents of this reader split on the specified byte. Read more
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impl<R> AsyncReadExt for R
where R: AsyncRead + ?Sized,

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fn read<'a>(&'a mut self, buf: &'a mut [u8]) -> ReadFuture<'a, Self>
where Self: Unpin,

Reads some bytes from the byte stream. Read more
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fn read_vectored<'a>( &'a mut self, bufs: &'a mut [IoSliceMut<'a>], ) -> ReadVectoredFuture<'a, Self>
where Self: Unpin,

Like read(), except it reads into a slice of buffers. Read more
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fn read_to_end<'a>( &'a mut self, buf: &'a mut Vec<u8>, ) -> ReadToEndFuture<'a, Self>
where Self: Unpin,

Reads the entire contents and appends them to a Vec. Read more
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fn read_to_string<'a>( &'a mut self, buf: &'a mut String, ) -> ReadToStringFuture<'a, Self>
where Self: Unpin,

Reads the entire contents and appends them to a String. Read more
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fn read_exact<'a>(&'a mut self, buf: &'a mut [u8]) -> ReadExactFuture<'a, Self>
where Self: Unpin,

Reads the exact number of bytes required to fill buf. Read more
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fn take(self, limit: u64) -> Take<Self>
where Self: Sized,

Creates an adapter which will read at most limit bytes from it. Read more
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fn bytes(self) -> Bytes<Self>
where Self: Sized,

Converts this AsyncRead into a Stream of bytes. Read more
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fn chain<R>(self, next: R) -> Chain<Self, R>
where R: AsyncRead, Self: Sized,

Creates an adapter which will chain this stream with another. Read more
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fn boxed_reader<'a>(self) -> Pin<Box<dyn AsyncRead + Send + 'a>>
where Self: Sized + Send + 'a,

Boxes the reader and changes its type to dyn AsyncRead + Send + 'a. Read more
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impl<S> AsyncSeekExt for S
where S: AsyncSeek + ?Sized,

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fn seek(&mut self, pos: SeekFrom) -> SeekFuture<'_, Self>
where Self: Unpin,

Seeks to a new position in a byte stream. Read more
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impl<W> AsyncWriteExt for W
where W: AsyncWrite + ?Sized,

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fn write<'a>(&'a mut self, buf: &'a [u8]) -> WriteFuture<'a, Self>
where Self: Unpin,

Writes some bytes into the byte stream. Read more
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fn write_vectored<'a>( &'a mut self, bufs: &'a [IoSlice<'a>], ) -> WriteVectoredFuture<'a, Self>
where Self: Unpin,

Like write(), except that it writes a slice of buffers. Read more
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fn write_all<'a>(&'a mut self, buf: &'a [u8]) -> WriteAllFuture<'a, Self>
where Self: Unpin,

Writes an entire buffer into the byte stream. Read more
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fn flush(&mut self) -> FlushFuture<'_, Self>
where Self: Unpin,

Flushes the stream to ensure that all buffered contents reach their destination. Read more
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fn close(&mut self) -> CloseFuture<'_, Self>
where Self: Unpin,

Closes the writer. Read more
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fn boxed_writer<'a>(self) -> Pin<Box<dyn AsyncWrite + Send + 'a>>
where Self: Sized + Send + 'a,

Boxes the writer and changes its type to dyn AsyncWrite + Send + 'a. Read more
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impl<T> Borrow<T> for T
where T: ?Sized,

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fn borrow(&self) -> &T

Immutably borrows from an owned value. Read more
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impl<T> BorrowMut<T> for T
where T: ?Sized,

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fn borrow_mut(&mut self) -> &mut T

Mutably borrows from an owned value. Read more
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impl<T> CloneToUninit for T
where T: Clone,

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unsafe fn clone_to_uninit(&self, dst: *mut T)

🔬This is a nightly-only experimental API. (clone_to_uninit)
Performs copy-assignment from self to dst. Read more
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impl<F> Command for F
where F: FnOnce(&mut World) + Send + 'static,

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fn apply(self, world: &mut World)

Applies this command, causing it to mutate the provided world. Read more
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impl<Q, K> Comparable<K> for Q
where Q: Ord + ?Sized, K: Borrow<Q> + ?Sized,

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fn compare(&self, key: &K) -> Ordering

Compare self to key and return their ordering.
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impl<Marker, In, F> Condition<Marker, In> for F
where In: SystemInput, F: Condition<Marker, In>,

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fn and<M, C>( self, and: C, ) -> CombinatorSystem<AndMarker, Self::System, <C as IntoSystem<In, bool, M>>::System>
where C: Condition<M, In>,

Returns a new run condition that only returns true if both this one and the passed and return true. Read more
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fn and_then<M, C>( self, and_then: C, ) -> CombinatorSystem<AndMarker, Self::System, <C as IntoSystem<In, bool, M>>::System>
where C: Condition<M, In>,

👎Deprecated: Users should use the .and(condition) method in lieu of .and_then(condition)
Returns a new run condition that only returns true if both this one and the passed and_then return true. Read more
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fn nand<M, C>( self, nand: C, ) -> CombinatorSystem<NandMarker, Self::System, <C as IntoSystem<In, bool, M>>::System>
where C: Condition<M, In>,

Returns a new run condition that only returns false if both this one and the passed nand return true. Read more
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fn nor<M, C>( self, nor: C, ) -> CombinatorSystem<NorMarker, Self::System, <C as IntoSystem<In, bool, M>>::System>
where C: Condition<M, In>,

Returns a new run condition that only returns true if both this one and the passed nor return false. Read more
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fn or<M, C>( self, or: C, ) -> CombinatorSystem<OrMarker, Self::System, <C as IntoSystem<In, bool, M>>::System>
where C: Condition<M, In>,

Returns a new run condition that returns true if either this one or the passed or return true. Read more
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fn or_else<M, C>( self, or_else: C, ) -> CombinatorSystem<OrMarker, Self::System, <C as IntoSystem<In, bool, M>>::System>
where C: Condition<M, In>,

👎Deprecated: Users should use the .or(condition) method in lieu of .or_else(condition)
Returns a new run condition that returns true if either this one or the passed or return true. Read more
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fn xnor<M, C>( self, xnor: C, ) -> CombinatorSystem<XnorMarker, Self::System, <C as IntoSystem<In, bool, M>>::System>
where C: Condition<M, In>,

Returns a new run condition that only returns true if self and xnor both return false or both return true. Read more
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fn xor<M, C>( self, xor: C, ) -> CombinatorSystem<XorMarker, Self::System, <C as IntoSystem<In, bool, M>>::System>
where C: Condition<M, In>,

Returns a new run condition that only returns true if either self or xor return true, but not both. Read more
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impl<T> CryptoRngCore for T
where T: CryptoRng + RngCore,

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fn as_rngcore(&mut self) -> &mut dyn RngCore

Upcast to an RngCore trait object.
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impl<T, C, D> Curve<T> for D
where C: Curve<T> + ?Sized, D: Deref<Target = C>,

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fn domain(&self) -> Interval

The interval over which this curve is parametrized. Read more
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fn sample_unchecked(&self, t: f32) -> T

Sample a point on this curve at the parameter value t, extracting the associated value. This is the unchecked version of sampling, which should only be used if the sample time t is already known to lie within the curve’s domain. Read more
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fn sample(&self, t: f32) -> Option<T>

Sample a point on this curve at the parameter value t, returning None if the point is outside of the curve’s domain.
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fn sample_clamped(&self, t: f32) -> T

Sample a point on this curve at the parameter value t, clamping t to lie inside the domain of the curve.
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fn sample_iter( &self, iter: impl IntoIterator<Item = f32>, ) -> impl Iterator<Item = Option<T>>
where Self: Sized,

Sample a collection of n >= 0 points on this curve at the parameter values t_n, returning None if the point is outside of the curve’s domain. Read more
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fn sample_iter_unchecked( &self, iter: impl IntoIterator<Item = f32>, ) -> impl Iterator<Item = T>
where Self: Sized,

Sample a collection of n >= 0 points on this curve at the parameter values t_n, extracting the associated values. This is the unchecked version of sampling, which should only be used if the sample times t_n are already known to lie within the curve’s domain. Read more
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fn sample_iter_clamped( &self, iter: impl IntoIterator<Item = f32>, ) -> impl Iterator<Item = T>
where Self: Sized,

Sample a collection of n >= 0 points on this curve at the parameter values t_n, clamping t_n to lie inside the domain of the curve. Read more
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fn map<S, F>(self, f: F) -> MapCurve<T, S, Self, F>
where Self: Sized, F: Fn(T) -> S,

Create a new curve by mapping the values of this curve via a function f; i.e., if the sample at time t for this curve is x, the value at time t on the new curve will be f(x).
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fn reparametrize<F>(self, domain: Interval, f: F) -> ReparamCurve<T, Self, F>
where Self: Sized, F: Fn(f32) -> f32,

Create a new Curve whose parameter space is related to the parameter space of this curve by f. For each time t, the sample from the new curve at time t is the sample from this curve at time f(t). The given domain will be the domain of the new curve. The function f is expected to take domain into self.domain(). Read more
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fn reparametrize_linear( self, domain: Interval, ) -> Result<LinearReparamCurve<T, Self>, LinearReparamError>
where Self: Sized,

Linearly reparametrize this Curve, producing a new curve whose domain is the given domain instead of the current one. This operation is only valid for curves with bounded domains; if either this curve’s domain or the given domain is unbounded, an error is returned.
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fn reparametrize_by_curve<C>(self, other: C) -> CurveReparamCurve<T, Self, C>
where Self: Sized, C: Curve<f32>,

Reparametrize this Curve by sampling from another curve. Read more
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fn graph(self) -> GraphCurve<T, Self>
where Self: Sized,

Create a new Curve which is the graph of this one; that is, its output echoes the sample time as part of a tuple. Read more
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fn zip<S, C>( self, other: C, ) -> Result<ZipCurve<T, S, Self, C>, InvalidIntervalError>
where Self: Sized, C: Curve<S>,

Create a new Curve by zipping this curve together with another. Read more
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fn chain<C>(self, other: C) -> Result<ChainCurve<T, Self, C>, ChainError>
where Self: Sized, C: Curve<T>,

Create a new Curve by composing this curve end-to-start with another, producing another curve with outputs of the same type. The domain of the other curve is translated so that its start coincides with where this curve ends. Read more
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fn reverse(self) -> Result<ReverseCurve<T, Self>, ReverseError>
where Self: Sized,

Create a new Curve inverting this curve on the x-axis, producing another curve with outputs of the same type, effectively playing backwards starting at self.domain().end() and transitioning over to self.domain().start(). The domain of the new curve is still the same. Read more
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fn repeat(self, count: usize) -> Result<RepeatCurve<T, Self>, RepeatError>
where Self: Sized,

Create a new Curve repeating this curve N times, producing another curve with outputs of the same type. The domain of the new curve will be bigger by a factor of n + 1. Read more
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fn forever(self) -> Result<ForeverCurve<T, Self>, RepeatError>
where Self: Sized,

Create a new Curve repeating this curve forever, producing another curve with outputs of the same type. The domain of the new curve will be unbounded. Read more
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fn ping_pong(self) -> Result<PingPongCurve<T, Self>, PingPongError>
where Self: Sized,

Create a new Curve chaining the original curve with its inverse, producing another curve with outputs of the same type. The domain of the new curve will be twice as long. The transition point is guaranteed to not make any jumps. Read more
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fn chain_continue<C>( self, other: C, ) -> Result<ContinuationCurve<T, Self, C>, ChainError>
where Self: Sized, T: VectorSpace, C: Curve<T>,

Create a new Curve by composing this curve end-to-start with another, producing another curve with outputs of the same type. The domain of the other curve is translated so that its start coincides with where this curve ends. Read more
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fn resample<I>( &self, segments: usize, interpolation: I, ) -> Result<SampleCurve<T, I>, ResamplingError>
where Self: Sized, I: Fn(&T, &T, f32) -> T,

Resample this Curve to produce a new one that is defined by interpolation over equally spaced sample values, using the provided interpolation to interpolate between adjacent samples. The curve is interpolated on segments segments between samples. For example, if segments is 1, only the start and end points of the curve are used as samples; if segments is 2, a sample at the midpoint is taken as well, and so on. If segments is zero, or if this curve has an unbounded domain, then a ResamplingError is returned. Read more
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fn resample_auto( &self, segments: usize, ) -> Result<SampleAutoCurve<T>, ResamplingError>
where Self: Sized, T: StableInterpolate,

Resample this Curve to produce a new one that is defined by interpolation over equally spaced sample values, using automatic interpolation to interpolate between adjacent samples. The curve is interpolated on segments segments between samples. For example, if segments is 1, only the start and end points of the curve are used as samples; if segments is 2, a sample at the midpoint is taken as well, and so on. If segments is zero, or if this curve has an unbounded domain, then a ResamplingError is returned.
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fn samples( &self, samples: usize, ) -> Result<impl Iterator<Item = T>, ResamplingError>
where Self: Sized,

Extract an iterator over evenly-spaced samples from this curve. If samples is less than 2 or if this curve has unbounded domain, then an error is returned instead.
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fn resample_uneven<I>( &self, sample_times: impl IntoIterator<Item = f32>, interpolation: I, ) -> Result<UnevenSampleCurve<T, I>, ResamplingError>
where Self: Sized, I: Fn(&T, &T, f32) -> T,

Resample this Curve to produce a new one that is defined by interpolation over samples taken at a given set of times. The given interpolation is used to interpolate adjacent samples, and the sample_times are expected to contain at least two valid times within the curve’s domain interval. Read more
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fn resample_uneven_auto( &self, sample_times: impl IntoIterator<Item = f32>, ) -> Result<UnevenSampleAutoCurve<T>, ResamplingError>
where Self: Sized, T: StableInterpolate,

Resample this Curve to produce a new one that is defined by automatic interpolation over samples taken at the given set of times. The given sample_times are expected to contain at least two valid times within the curve’s domain interval. Read more
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fn by_ref(&self) -> &Self
where Self: Sized,

Borrow this curve rather than taking ownership of it. This is essentially an alias for a prefix &; the point is that intermediate operations can be performed while retaining access to the original curve. Read more
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fn flip<U, V>(self) -> impl Curve<(V, U)>
where Self: Sized + Curve<(U, V)>,

Flip this curve so that its tuple output is arranged the other way.
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impl<T> Downcast for T
where T: Any,

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fn into_any(self: Box<T>) -> Box<dyn Any>

Convert Box<dyn Trait> (where Trait: Downcast) to Box<dyn Any>. Box<dyn Any> can then be further downcast into Box<ConcreteType> where ConcreteType implements Trait.
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fn into_any_rc(self: Rc<T>) -> Rc<dyn Any>

Convert Rc<Trait> (where Trait: Downcast) to Rc<Any>. Rc<Any> can then be further downcast into Rc<ConcreteType> where ConcreteType implements Trait.
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fn as_any(&self) -> &(dyn Any + 'static)

Convert &Trait (where Trait: Downcast) to &Any. This is needed since Rust cannot generate &Any’s vtable from &Trait’s.
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fn as_any_mut(&mut self) -> &mut (dyn Any + 'static)

Convert &mut Trait (where Trait: Downcast) to &Any. This is needed since Rust cannot generate &mut Any’s vtable from &mut Trait’s.
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impl<T> DowncastSync for T
where T: Any + Send + Sync,

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fn into_any_arc(self: Arc<T>) -> Arc<dyn Any + Sync + Send>

Convert Arc<Trait> (where Trait: Downcast) to Arc<Any>. Arc<Any> can then be further downcast into Arc<ConcreteType> where ConcreteType implements Trait.
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impl<T> DynEq for T
where T: Any + Eq,

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fn as_any(&self) -> &(dyn Any + 'static)

Casts the type to dyn Any.
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fn dyn_eq(&self, other: &(dyn DynEq + 'static)) -> bool

This method tests for self and other values to be equal. Read more
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impl<T> DynHash for T
where T: DynEq + Hash,

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fn as_dyn_eq(&self) -> &(dyn DynEq + 'static)

Casts the type to dyn Any.
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fn dyn_hash(&self, state: &mut dyn Hasher)

Feeds this value into the given Hasher.
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impl<N, E, I> ElementIterator<N, E> for I
where I: Iterator<Item = Element<N, E>> + ?Sized,

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fn filter_elements<F>(self, f: F) -> FilterElements<Self, F>
where Self: Sized, F: FnMut(Element<&mut N, &mut E>) -> bool,

Create an iterator adaptor that filters graph elements. Read more
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impl<F> EntityCommand<World> for F
where F: FnOnce(EntityWorldMut<'_>) + Send + 'static,

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fn apply(self, id: Entity, world: &mut World)

Executes this command for the given Entity.
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fn with_entity(self, entity: Entity) -> impl Command
where Self: Sized,

Returns a Command which executes this EntityCommand for the given Entity. Read more
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impl<F> EntityCommand for F
where F: FnOnce(Entity, &mut World) + Send + 'static,

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fn apply(self, id: Entity, world: &mut World)

Executes this command for the given Entity.
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fn with_entity(self, entity: Entity) -> impl Command
where Self: Sized,

Returns a Command which executes this EntityCommand for the given Entity. Read more
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impl<Q, K> Equivalent<K> for Q
where Q: Eq + ?Sized, K: Borrow<Q> + ?Sized,

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fn equivalent(&self, key: &K) -> bool

Checks if this value is equivalent to the given key. Read more
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impl<Q, K> Equivalent<K> for Q
where Q: Eq + ?Sized, K: Borrow<Q> + ?Sized,

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fn equivalent(&self, key: &K) -> bool

Checks if this value is equivalent to the given key. Read more
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impl<Q, K> Equivalent<K> for Q
where Q: Eq + ?Sized, K: Borrow<Q> + ?Sized,

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fn equivalent(&self, key: &K) -> bool

Compare self to key and return true if they are equal.
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impl<In, Out, Func> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In) -> Out)> for Func
where Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = ()

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <() as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<In, Out, Func, F0> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In, _: F0) -> Out)> for Func
where F0: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World, F0) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World, <F0 as ExclusiveSystemParam>::Item<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0,)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <(F0,) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<In, Out, Func, F0, F1> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In, _: F0, _: F1) -> Out)> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World, F0, F1) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<In, Out, Func, F0, F1, F2> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In, _: F0, _: F1, _: F2) -> Out)> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World, F0, F1, F2) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<In, Out, Func, F0, F1, F2, F3> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3) -> Out)> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World, F0, F1, F2, F3) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<In, Out, Func, F0, F1, F2, F3, F4> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4) -> Out)> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World, F0, F1, F2, F3, F4) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5) -> Out)> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World, F0, F1, F2, F3, F4, F5) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6) -> Out)> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World, F0, F1, F2, F3, F4, F5, F6) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7) -> Out)> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World, F0, F1, F2, F3, F4, F5, F6, F7) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8) -> Out)> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, F8: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World, F0, F1, F2, F3, F4, F5, F6, F7, F8) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>, <F8 as ExclusiveSystemParam>::Item<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9) -> Out)> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, F8: ExclusiveSystemParam, F9: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>, <F8 as ExclusiveSystemParam>::Item<'_>, <F9 as ExclusiveSystemParam>::Item<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10) -> Out)> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, F8: ExclusiveSystemParam, F9: ExclusiveSystemParam, F10: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>, <F8 as ExclusiveSystemParam>::Item<'_>, <F9 as ExclusiveSystemParam>::Item<'_>, <F10 as ExclusiveSystemParam>::Item<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11) -> Out)> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, F8: ExclusiveSystemParam, F9: ExclusiveSystemParam, F10: ExclusiveSystemParam, F11: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>, <F8 as ExclusiveSystemParam>::Item<'_>, <F9 as ExclusiveSystemParam>::Item<'_>, <F10 as ExclusiveSystemParam>::Item<'_>, <F11 as ExclusiveSystemParam>::Item<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11, _: F12) -> Out)> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, F8: ExclusiveSystemParam, F9: ExclusiveSystemParam, F10: ExclusiveSystemParam, F11: ExclusiveSystemParam, F12: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>, <F8 as ExclusiveSystemParam>::Item<'_>, <F9 as ExclusiveSystemParam>::Item<'_>, <F10 as ExclusiveSystemParam>::Item<'_>, <F11 as ExclusiveSystemParam>::Item<'_>, <F12 as ExclusiveSystemParam>::Item<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11, _: F12, _: F13) -> Out)> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, F8: ExclusiveSystemParam, F9: ExclusiveSystemParam, F10: ExclusiveSystemParam, F11: ExclusiveSystemParam, F12: ExclusiveSystemParam, F13: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>, <F8 as ExclusiveSystemParam>::Item<'_>, <F9 as ExclusiveSystemParam>::Item<'_>, <F10 as ExclusiveSystemParam>::Item<'_>, <F11 as ExclusiveSystemParam>::Item<'_>, <F12 as ExclusiveSystemParam>::Item<'_>, <F13 as ExclusiveSystemParam>::Item<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11, _: F12, _: F13, _: F14) -> Out)> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, F8: ExclusiveSystemParam, F9: ExclusiveSystemParam, F10: ExclusiveSystemParam, F11: ExclusiveSystemParam, F12: ExclusiveSystemParam, F13: ExclusiveSystemParam, F14: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>, <F8 as ExclusiveSystemParam>::Item<'_>, <F9 as ExclusiveSystemParam>::Item<'_>, <F10 as ExclusiveSystemParam>::Item<'_>, <F11 as ExclusiveSystemParam>::Item<'_>, <F12 as ExclusiveSystemParam>::Item<'_>, <F13 as ExclusiveSystemParam>::Item<'_>, <F14 as ExclusiveSystemParam>::Item<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14, F15> ExclusiveSystemParamFunction<(HasExclusiveSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11, _: F12, _: F13, _: F14, _: F15) -> Out)> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, F8: ExclusiveSystemParam, F9: ExclusiveSystemParam, F10: ExclusiveSystemParam, F11: ExclusiveSystemParam, F12: ExclusiveSystemParam, F13: ExclusiveSystemParam, F14: ExclusiveSystemParam, F15: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, &mut World, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14, F15) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, &mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>, <F8 as ExclusiveSystemParam>::Item<'_>, <F9 as ExclusiveSystemParam>::Item<'_>, <F10 as ExclusiveSystemParam>::Item<'_>, <F11 as ExclusiveSystemParam>::Item<'_>, <F12 as ExclusiveSystemParam>::Item<'_>, <F13 as ExclusiveSystemParam>::Item<'_>, <F14 as ExclusiveSystemParam>::Item<'_>, <F15 as ExclusiveSystemParam>::Item<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14, F15)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14, F15) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func> ExclusiveSystemParamFunction<fn() -> Out> for Func
where Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World) -> Out + for<'a> FnMut(&mut World), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = ()

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <() as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func, F0> ExclusiveSystemParamFunction<fn(_: F0) -> Out> for Func
where F0: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World, F0) -> Out + for<'a> FnMut(&mut World, <F0 as ExclusiveSystemParam>::Item<'_>), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0,)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <(F0,) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func, F0, F1> ExclusiveSystemParamFunction<fn(_: F0, _: F1) -> Out> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World, F0, F1) -> Out + for<'a> FnMut(&mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <(F0, F1) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func, F0, F1, F2> ExclusiveSystemParamFunction<fn(_: F0, _: F1, _: F2) -> Out> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World, F0, F1, F2) -> Out + for<'a> FnMut(&mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <(F0, F1, F2) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func, F0, F1, F2, F3> ExclusiveSystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3) -> Out> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World, F0, F1, F2, F3) -> Out + for<'a> FnMut(&mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <(F0, F1, F2, F3) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func, F0, F1, F2, F3, F4> ExclusiveSystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4) -> Out> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World, F0, F1, F2, F3, F4) -> Out + for<'a> FnMut(&mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <(F0, F1, F2, F3, F4) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func, F0, F1, F2, F3, F4, F5> ExclusiveSystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5) -> Out> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World, F0, F1, F2, F3, F4, F5) -> Out + for<'a> FnMut(&mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <(F0, F1, F2, F3, F4, F5) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6> ExclusiveSystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6) -> Out> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World, F0, F1, F2, F3, F4, F5, F6) -> Out + for<'a> FnMut(&mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <(F0, F1, F2, F3, F4, F5, F6) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7> ExclusiveSystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7) -> Out> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World, F0, F1, F2, F3, F4, F5, F6, F7) -> Out + for<'a> FnMut(&mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8> ExclusiveSystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8) -> Out> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, F8: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World, F0, F1, F2, F3, F4, F5, F6, F7, F8) -> Out + for<'a> FnMut(&mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>, <F8 as ExclusiveSystemParam>::Item<'_>), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9> ExclusiveSystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9) -> Out> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, F8: ExclusiveSystemParam, F9: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9) -> Out + for<'a> FnMut(&mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>, <F8 as ExclusiveSystemParam>::Item<'_>, <F9 as ExclusiveSystemParam>::Item<'_>), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10> ExclusiveSystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10) -> Out> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, F8: ExclusiveSystemParam, F9: ExclusiveSystemParam, F10: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10) -> Out + for<'a> FnMut(&mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>, <F8 as ExclusiveSystemParam>::Item<'_>, <F9 as ExclusiveSystemParam>::Item<'_>, <F10 as ExclusiveSystemParam>::Item<'_>), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11> ExclusiveSystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11) -> Out> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, F8: ExclusiveSystemParam, F9: ExclusiveSystemParam, F10: ExclusiveSystemParam, F11: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11) -> Out + for<'a> FnMut(&mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>, <F8 as ExclusiveSystemParam>::Item<'_>, <F9 as ExclusiveSystemParam>::Item<'_>, <F10 as ExclusiveSystemParam>::Item<'_>, <F11 as ExclusiveSystemParam>::Item<'_>), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12> ExclusiveSystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11, _: F12) -> Out> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, F8: ExclusiveSystemParam, F9: ExclusiveSystemParam, F10: ExclusiveSystemParam, F11: ExclusiveSystemParam, F12: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12) -> Out + for<'a> FnMut(&mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>, <F8 as ExclusiveSystemParam>::Item<'_>, <F9 as ExclusiveSystemParam>::Item<'_>, <F10 as ExclusiveSystemParam>::Item<'_>, <F11 as ExclusiveSystemParam>::Item<'_>, <F12 as ExclusiveSystemParam>::Item<'_>), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13> ExclusiveSystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11, _: F12, _: F13) -> Out> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, F8: ExclusiveSystemParam, F9: ExclusiveSystemParam, F10: ExclusiveSystemParam, F11: ExclusiveSystemParam, F12: ExclusiveSystemParam, F13: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13) -> Out + for<'a> FnMut(&mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>, <F8 as ExclusiveSystemParam>::Item<'_>, <F9 as ExclusiveSystemParam>::Item<'_>, <F10 as ExclusiveSystemParam>::Item<'_>, <F11 as ExclusiveSystemParam>::Item<'_>, <F12 as ExclusiveSystemParam>::Item<'_>, <F13 as ExclusiveSystemParam>::Item<'_>), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14> ExclusiveSystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11, _: F12, _: F13, _: F14) -> Out> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, F8: ExclusiveSystemParam, F9: ExclusiveSystemParam, F10: ExclusiveSystemParam, F11: ExclusiveSystemParam, F12: ExclusiveSystemParam, F13: ExclusiveSystemParam, F14: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14) -> Out + for<'a> FnMut(&mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>, <F8 as ExclusiveSystemParam>::Item<'_>, <F9 as ExclusiveSystemParam>::Item<'_>, <F10 as ExclusiveSystemParam>::Item<'_>, <F11 as ExclusiveSystemParam>::Item<'_>, <F12 as ExclusiveSystemParam>::Item<'_>, <F13 as ExclusiveSystemParam>::Item<'_>, <F14 as ExclusiveSystemParam>::Item<'_>), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14, F15> ExclusiveSystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11, _: F12, _: F13, _: F14, _: F15) -> Out> for Func
where F0: ExclusiveSystemParam, F1: ExclusiveSystemParam, F2: ExclusiveSystemParam, F3: ExclusiveSystemParam, F4: ExclusiveSystemParam, F5: ExclusiveSystemParam, F6: ExclusiveSystemParam, F7: ExclusiveSystemParam, F8: ExclusiveSystemParam, F9: ExclusiveSystemParam, F10: ExclusiveSystemParam, F11: ExclusiveSystemParam, F12: ExclusiveSystemParam, F13: ExclusiveSystemParam, F14: ExclusiveSystemParam, F15: ExclusiveSystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(&mut World, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14, F15) -> Out + for<'a> FnMut(&mut World, <F0 as ExclusiveSystemParam>::Item<'_>, <F1 as ExclusiveSystemParam>::Item<'_>, <F2 as ExclusiveSystemParam>::Item<'_>, <F3 as ExclusiveSystemParam>::Item<'_>, <F4 as ExclusiveSystemParam>::Item<'_>, <F5 as ExclusiveSystemParam>::Item<'_>, <F6 as ExclusiveSystemParam>::Item<'_>, <F7 as ExclusiveSystemParam>::Item<'_>, <F8 as ExclusiveSystemParam>::Item<'_>, <F9 as ExclusiveSystemParam>::Item<'_>, <F10 as ExclusiveSystemParam>::Item<'_>, <F11 as ExclusiveSystemParam>::Item<'_>, <F12 as ExclusiveSystemParam>::Item<'_>, <F13 as ExclusiveSystemParam>::Item<'_>, <F14 as ExclusiveSystemParam>::Item<'_>, <F15 as ExclusiveSystemParam>::Item<'_>), Out: 'static,

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type In = ()

The input type to this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14, F15)

The ExclusiveSystemParam’s defined by this system’s fn parameters.
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fn run( &mut self, world: &mut World, _in: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14, F15) as ExclusiveSystemParam>::Item<'_>, ) -> Out

Executes this system once. See System::run.
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impl<F, N> FilterEdge<N> for F
where F: Fn(N) -> bool,

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fn include_edge(&self, n: N) -> bool

Return true to have the edge be part of the graph
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impl<F, S> FilterExt<S> for F
where F: Filter<S>,

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fn and<B>(self, other: B) -> And<Self, B, S>
where Self: Sized, B: Filter<S>,

Combines this Filter with another Filter s so that spans and events are enabled if and only if both filters return true. Read more
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fn or<B>(self, other: B) -> Or<Self, B, S>
where Self: Sized, B: Filter<S>,

Combines two Filters so that spans and events are enabled if either filter returns true. Read more
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fn not(self) -> Not<Self, S>
where Self: Sized,

Inverts self, returning a filter that enables spans and events only if self would not enable them. Read more
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fn boxed(self) -> Box<dyn Filter<S> + Sync + Send>
where Self: Sized + Send + Sync + 'static,

Boxes self, erasing its concrete type. Read more
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impl<F, N> FilterNode<N> for F
where F: Fn(N) -> bool,

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fn include_node(&self, n: N) -> bool

Return true to have the node be part of the graph
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impl<T> From<!> for T

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fn from(t: !) -> T

Converts to this type from the input type.
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impl<T> From<T> for T

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fn from(t: T) -> T

Returns the argument unchanged.

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impl<T> FromWorld for T
where T: Default,

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fn from_world(_world: &mut World) -> T

Creates Self using default().

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impl<F> FutureExt for F
where F: Future + ?Sized,

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fn poll(&mut self, cx: &mut Context<'_>) -> Poll<Self::Output>
where Self: Unpin,

A convenience for calling Future::poll() on !Unpin types.
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fn or<F>(self, other: F) -> Or<Self, F>
where Self: Sized, F: Future<Output = Self::Output>,

Returns the result of self or other future, preferring self if both are ready. Read more
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fn race<F>(self, other: F) -> Race<Self, F>
where Self: Sized, F: Future<Output = Self::Output>,

Returns the result of self or other future, with no preference if both are ready. Read more
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fn catch_unwind(self) -> CatchUnwind<Self>
where Self: Sized + UnwindSafe,

Catches panics while polling the future. Read more
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fn boxed<'a>(self) -> Pin<Box<dyn Future<Output = Self::Output> + Send + 'a>>
where Self: Sized + Send + 'a,

Boxes the future and changes its type to dyn Future + Send + 'a. Read more
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fn boxed_local<'a>(self) -> Pin<Box<dyn Future<Output = Self::Output> + 'a>>
where Self: Sized + 'a,

Boxes the future and changes its type to dyn Future + 'a. Read more
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impl<T> Instrument for T

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fn instrument(self, span: Span) -> Instrumented<Self>

Instruments this type with the provided Span, returning an Instrumented wrapper. Read more
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fn in_current_span(self) -> Instrumented<Self>

Instruments this type with the current Span, returning an Instrumented wrapper. Read more
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impl<T, U> Into<U> for T
where U: From<T>,

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fn into(self) -> U

Calls U::from(self).

That is, this conversion is whatever the implementation of From<T> for U chooses to do.

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impl<I> IntoAsyncIterator for I
where I: AsyncIterator,

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type Item = <I as AsyncIterator>::Item

🔬This is a nightly-only experimental API. (async_iterator)
The type of the item yielded by the iterator
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type IntoAsyncIter = I

🔬This is a nightly-only experimental API. (async_iterator)
The type of the resulting iterator
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fn into_async_iter(self) -> <I as IntoAsyncIterator>::IntoAsyncIter

🔬This is a nightly-only experimental API. (async_iterator)
Converts self into an async iterator
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impl<T> IntoEither for T

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fn into_either(self, into_left: bool) -> Either<Self, Self>

Converts self into a Left variant of Either<Self, Self> if into_left is true. Converts self into a Right variant of Either<Self, Self> otherwise. Read more
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fn into_either_with<F>(self, into_left: F) -> Either<Self, Self>
where F: FnOnce(&Self) -> bool,

Converts self into a Left variant of Either<Self, Self> if into_left(&self) returns true. Converts self into a Right variant of Either<Self, Self> otherwise. Read more
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impl<F> IntoFuture for F
where F: Future,

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type Output = <F as Future>::Output

The output that the future will produce on completion.
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type IntoFuture = F

Which kind of future are we turning this into?
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fn into_future(self) -> <F as IntoFuture>::IntoFuture

Creates a future from a value. Read more
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impl<I> IntoIterator for I
where I: Iterator,

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type Item = <I as Iterator>::Item

The type of the elements being iterated over.
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type IntoIter = I

Which kind of iterator are we turning this into?
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fn into_iter(self) -> I

Creates an iterator from a value. Read more
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impl<S, M, Out, E, B> IntoObserverSystem<E, B, M, Out> for S
where S: IntoSystem<Trigger<'static, E, B>, Out, M> + Send + 'static, E: 'static, B: Bundle, <S as IntoSystem<Trigger<'static, E, B>, Out, M>>::System: ObserverSystem<E, B, Out>,

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type System = <S as IntoSystem<Trigger<'static, E, B>, Out, M>>::System

The type of System that this instance converts into.
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fn into_system(this: S) -> <S as IntoObserverSystem<E, B, M, Out>>::System

Turns this value into its corresponding System.
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impl<Marker, F> IntoSystem<<F as ExclusiveSystemParamFunction<Marker>>::In, <F as ExclusiveSystemParamFunction<Marker>>::Out, (IsExclusiveFunctionSystem, Marker)> for F
where Marker: 'static, F: ExclusiveSystemParamFunction<Marker>,

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type System = ExclusiveFunctionSystem<Marker, F>

The type of System that this instance converts into.
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fn into_system( func: F, ) -> <F as IntoSystem<<F as ExclusiveSystemParamFunction<Marker>>::In, <F as ExclusiveSystemParamFunction<Marker>>::Out, (IsExclusiveFunctionSystem, Marker)>>::System

Turns this value into its corresponding System.
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fn pipe<B, BIn, BOut, MarkerB>(self, system: B) -> IntoPipeSystem<Self, B>
where Out: 'static, B: IntoSystem<BIn, BOut, MarkerB>, BIn: for<'a> SystemInput<Inner<'a> = Out>,

Pass the output of this system A into a second system B, creating a new compound system. Read more
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fn map<T, F>(self, f: F) -> IntoAdapterSystem<F, Self>
where F: Send + Sync + 'static + FnMut(Out) -> T,

Pass the output of this system into the passed function f, creating a new system that outputs the value returned from the function. Read more
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fn system_type_id(&self) -> TypeId

Get the TypeId of the System produced after calling into_system.
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impl<Marker, F> IntoSystem<<F as SystemParamFunction<Marker>>::In, <F as SystemParamFunction<Marker>>::Out, (IsFunctionSystem, Marker)> for F
where Marker: 'static, F: SystemParamFunction<Marker>,

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type System = FunctionSystem<Marker, F>

The type of System that this instance converts into.
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fn into_system( func: F, ) -> <F as IntoSystem<<F as SystemParamFunction<Marker>>::In, <F as SystemParamFunction<Marker>>::Out, (IsFunctionSystem, Marker)>>::System

Turns this value into its corresponding System.
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fn pipe<B, BIn, BOut, MarkerB>(self, system: B) -> IntoPipeSystem<Self, B>
where Out: 'static, B: IntoSystem<BIn, BOut, MarkerB>, BIn: for<'a> SystemInput<Inner<'a> = Out>,

Pass the output of this system A into a second system B, creating a new compound system. Read more
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fn map<T, F>(self, f: F) -> IntoAdapterSystem<F, Self>
where F: Send + Sync + 'static + FnMut(Out) -> T,

Pass the output of this system into the passed function f, creating a new system that outputs the value returned from the function. Read more
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fn system_type_id(&self) -> TypeId

Get the TypeId of the System produced after calling into_system.
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impl<Marker, F> IntoSystemConfigs<Marker> for F
where F: IntoSystem<(), (), Marker>,

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fn into_configs(self) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Convert into a SystemConfigs.
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fn in_set( self, set: impl SystemSet, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Add these systems to the provided set.
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fn before<M>( self, set: impl IntoSystemSet<M>, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Runs before all systems in set. If self has any systems that produce Commands or other Deferred operations, all systems in set will see their effect. Read more
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fn after<M>( self, set: impl IntoSystemSet<M>, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Run after all systems in set. If set has any systems that produce Commands or other Deferred operations, all systems in self will see their effect. Read more
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fn before_ignore_deferred<M>( self, set: impl IntoSystemSet<M>, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Run before all systems in set. Read more
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fn after_ignore_deferred<M>( self, set: impl IntoSystemSet<M>, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Run after all systems in set. Read more
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fn distributive_run_if<M>( self, condition: impl Condition<M> + Clone, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Add a run condition to each contained system. Read more
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fn run_if<M>( self, condition: impl Condition<M>, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Run the systems only if the Condition is true. Read more
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fn ambiguous_with<M>( self, set: impl IntoSystemSet<M>, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Suppress warnings and errors that would result from these systems having ambiguities (conflicting access but indeterminate order) with systems in set.
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fn ambiguous_with_all(self) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Suppress warnings and errors that would result from these systems having ambiguities (conflicting access but indeterminate order) with any other system.
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fn chain(self) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Treat this collection as a sequence of systems. Read more
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fn chain_ignore_deferred( self, ) -> NodeConfigs<Box<dyn System<Out = (), In = ()>>>

Treat this collection as a sequence of systems. Read more
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impl<Marker, F> IntoSystemSet<(IsExclusiveFunctionSystem, Marker)> for F
where Marker: 'static, F: ExclusiveSystemParamFunction<Marker>,

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type Set = SystemTypeSet<ExclusiveFunctionSystem<Marker, F>>

The type of SystemSet this instance converts into.
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fn into_system_set( self, ) -> <F as IntoSystemSet<(IsExclusiveFunctionSystem, Marker)>>::Set

Converts this instance to its associated SystemSet type.
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impl<Marker, F> IntoSystemSet<(IsFunctionSystem, Marker)> for F
where Marker: 'static, F: SystemParamFunction<Marker>,

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type Set = SystemTypeSet<FunctionSystem<Marker, F>>

The type of SystemSet this instance converts into.
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fn into_system_set( self, ) -> <F as IntoSystemSet<(IsFunctionSystem, Marker)>>::Set

Converts this instance to its associated SystemSet type.
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impl<I> IteratorRandom for I
where I: Iterator,

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fn choose<R>(self, rng: &mut R) -> Option<Self::Item>
where R: Rng + ?Sized,

Choose one element at random from the iterator. Read more
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fn choose_stable<R>(self, rng: &mut R) -> Option<Self::Item>
where R: Rng + ?Sized,

Choose one element at random from the iterator. Read more
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fn choose_multiple_fill<R>(self, rng: &mut R, buf: &mut [Self::Item]) -> usize
where R: Rng + ?Sized,

Collects values at random from the iterator into a supplied buffer until that buffer is filled. Read more
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fn choose_multiple<R>(self, rng: &mut R, amount: usize) -> Vec<Self::Item>
where R: Rng + ?Sized,

Collects amount values at random from the iterator into a vector. Read more
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impl<T> Itertools for T
where T: Iterator + ?Sized,

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fn interleave<J>( self, other: J, ) -> Interleave<Self, <J as IntoIterator>::IntoIter>
where J: IntoIterator<Item = Self::Item>, Self: Sized,

Alternate elements from two iterators until both have run out. Read more
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fn interleave_shortest<J>( self, other: J, ) -> InterleaveShortest<Self, <J as IntoIterator>::IntoIter>
where J: IntoIterator<Item = Self::Item>, Self: Sized,

Alternate elements from two iterators until at least one of them has run out. Read more
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fn intersperse( self, element: Self::Item, ) -> IntersperseWith<Self, IntersperseElementSimple<Self::Item>>
where Self: Sized, Self::Item: Clone,

An iterator adaptor to insert a particular value between each element of the adapted iterator. Read more
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fn intersperse_with<F>(self, element: F) -> IntersperseWith<Self, F>
where Self: Sized, F: FnMut() -> Self::Item,

An iterator adaptor to insert a particular value created by a function between each element of the adapted iterator. Read more
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fn get<R>(self, index: R) -> <R as IteratorIndex<Self>>::Output
where Self: Sized, R: IteratorIndex<Self>,

Returns an iterator over a subsection of the iterator. Read more
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fn zip_longest<J>( self, other: J, ) -> ZipLongest<Self, <J as IntoIterator>::IntoIter>
where J: IntoIterator, Self: Sized,

Create an iterator which iterates over both this and the specified iterator simultaneously, yielding pairs of two optional elements. Read more
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fn zip_eq<J>(self, other: J) -> ZipEq<Self, <J as IntoIterator>::IntoIter>
where J: IntoIterator, Self: Sized,

Create an iterator which iterates over both this and the specified iterator simultaneously, yielding pairs of elements. Read more
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fn batching<B, F>(self, f: F) -> Batching<Self, F>
where F: FnMut(&mut Self) -> Option<B>, Self: Sized,

A “meta iterator adaptor”. Its closure receives a reference to the iterator and may pick off as many elements as it likes, to produce the next iterator element. Read more
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fn chunk_by<K, F>(self, key: F) -> ChunkBy<K, Self, F>
where Self: Sized, F: FnMut(&Self::Item) -> K, K: PartialEq,

Return an iterable that can group iterator elements. Consecutive elements that map to the same key (“runs”), are assigned to the same group. Read more
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fn group_by<K, F>(self, key: F) -> ChunkBy<K, Self, F>
where Self: Sized, F: FnMut(&Self::Item) -> K, K: PartialEq,

👎Deprecated since 0.13.0: Use .chunk_by() instead
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fn chunks(self, size: usize) -> IntoChunks<Self>
where Self: Sized,

Return an iterable that can chunk the iterator. Read more
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fn tuple_windows<T>(self) -> TupleWindows<Self, T>
where Self: Sized + Iterator<Item = <T as TupleCollect>::Item>, T: HomogeneousTuple, <T as TupleCollect>::Item: Clone,

Return an iterator over all contiguous windows producing tuples of a specific size (up to 12). Read more
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fn circular_tuple_windows<T>(self) -> CircularTupleWindows<Self, T>
where Self: Sized + Clone + Iterator<Item = <T as TupleCollect>::Item> + ExactSizeIterator, T: TupleCollect + Clone, <T as TupleCollect>::Item: Clone,

Return an iterator over all windows, wrapping back to the first elements when the window would otherwise exceed the length of the iterator, producing tuples of a specific size (up to 12). Read more
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fn tuples<T>(self) -> Tuples<Self, T>
where Self: Sized + Iterator<Item = <T as TupleCollect>::Item>, T: HomogeneousTuple,

Return an iterator that groups the items in tuples of a specific size (up to 12). Read more
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fn tee(self) -> (Tee<Self>, Tee<Self>)
where Self: Sized, Self::Item: Clone,

Split into an iterator pair that both yield all elements from the original iterator. Read more
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fn map_into<R>(self) -> MapSpecialCase<Self, MapSpecialCaseFnInto<R>>
where Self: Sized, Self::Item: Into<R>,

Convert each item of the iterator using the Into trait. Read more
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fn map_ok<F, T, U, E>(self, f: F) -> MapSpecialCase<Self, MapSpecialCaseFnOk<F>>
where Self: Sized + Iterator<Item = Result<T, E>>, F: FnMut(T) -> U,

Return an iterator adaptor that applies the provided closure to every Result::Ok value. Result::Err values are unchanged. Read more
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fn filter_ok<F, T, E>(self, f: F) -> FilterOk<Self, F>
where Self: Sized + Iterator<Item = Result<T, E>>, F: FnMut(&T) -> bool,

Return an iterator adaptor that filters every Result::Ok value with the provided closure. Result::Err values are unchanged. Read more
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fn filter_map_ok<F, T, U, E>(self, f: F) -> FilterMapOk<Self, F>
where Self: Sized + Iterator<Item = Result<T, E>>, F: FnMut(T) -> Option<U>,

Return an iterator adaptor that filters and transforms every Result::Ok value with the provided closure. Result::Err values are unchanged. Read more
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fn flatten_ok<T, E>(self) -> FlattenOk<Self, T, E>
where Self: Sized + Iterator<Item = Result<T, E>>, T: IntoIterator,

Return an iterator adaptor that flattens every Result::Ok value into a series of Result::Ok values. Result::Err values are unchanged. Read more
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fn process_results<F, T, E, R>(self, processor: F) -> Result<R, E>
where Self: Sized + Iterator<Item = Result<T, E>>, F: FnOnce(ProcessResults<'_, Self, E>) -> R,

“Lift” a function of the values of the current iterator so as to process an iterator of Result values instead. Read more
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fn merge<J>( self, other: J, ) -> MergeBy<Self, <J as IntoIterator>::IntoIter, MergeLte>
where Self: Sized, Self::Item: PartialOrd, J: IntoIterator<Item = Self::Item>,

Return an iterator adaptor that merges the two base iterators in ascending order. If both base iterators are sorted (ascending), the result is sorted. Read more
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fn merge_by<J, F>( self, other: J, is_first: F, ) -> MergeBy<Self, <J as IntoIterator>::IntoIter, F>
where Self: Sized, J: IntoIterator<Item = Self::Item>, F: FnMut(&Self::Item, &Self::Item) -> bool,

Return an iterator adaptor that merges the two base iterators in order. This is much like .merge() but allows for a custom ordering. Read more
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fn merge_join_by<J, F, T>( self, other: J, cmp_fn: F, ) -> MergeBy<Self, <J as IntoIterator>::IntoIter, MergeFuncLR<F, <F as FuncLR<Self::Item, <<J as IntoIterator>::IntoIter as Iterator>::Item>>::T>>
where J: IntoIterator, F: FnMut(&Self::Item, &<J as IntoIterator>::Item) -> T, Self: Sized,

Create an iterator that merges items from both this and the specified iterator in ascending order. Read more
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fn kmerge(self) -> KMergeBy<<Self::Item as IntoIterator>::IntoIter, KMergeByLt>
where Self: Sized, Self::Item: IntoIterator, <Self::Item as IntoIterator>::Item: PartialOrd,

Return an iterator adaptor that flattens an iterator of iterators by merging them in ascending order. Read more
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fn kmerge_by<F>( self, first: F, ) -> KMergeBy<<Self::Item as IntoIterator>::IntoIter, F>
where Self: Sized, Self::Item: IntoIterator, F: FnMut(&<Self::Item as IntoIterator>::Item, &<Self::Item as IntoIterator>::Item) -> bool,

Return an iterator adaptor that flattens an iterator of iterators by merging them according to the given closure. Read more
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fn cartesian_product<J>( self, other: J, ) -> Product<Self, <J as IntoIterator>::IntoIter>
where Self: Sized, Self::Item: Clone, J: IntoIterator, <J as IntoIterator>::IntoIter: Clone,

Return an iterator adaptor that iterates over the cartesian product of the element sets of two iterators self and J. Read more
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fn multi_cartesian_product( self, ) -> MultiProduct<<Self::Item as IntoIterator>::IntoIter>
where Self: Sized, Self::Item: IntoIterator, <Self::Item as IntoIterator>::IntoIter: Clone, <Self::Item as IntoIterator>::Item: Clone,

Return an iterator adaptor that iterates over the cartesian product of all subiterators returned by meta-iterator self. Read more
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fn coalesce<F>(self, f: F) -> CoalesceBy<Self, F, NoCount>
where Self: Sized, F: FnMut(Self::Item, Self::Item) -> Result<Self::Item, (Self::Item, Self::Item)>,

Return an iterator adaptor that uses the passed-in closure to optionally merge together consecutive elements. Read more
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fn dedup(self) -> CoalesceBy<Self, DedupPred2CoalescePred<DedupEq>, NoCount>
where Self: Sized, Self::Item: PartialEq,

Remove duplicates from sections of consecutive identical elements. If the iterator is sorted, all elements will be unique. Read more
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fn dedup_by<Cmp>( self, cmp: Cmp, ) -> CoalesceBy<Self, DedupPred2CoalescePred<Cmp>, NoCount>
where Self: Sized, Cmp: FnMut(&Self::Item, &Self::Item) -> bool,

Remove duplicates from sections of consecutive identical elements, determining equality using a comparison function. If the iterator is sorted, all elements will be unique. Read more
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fn dedup_with_count( self, ) -> CoalesceBy<Self, DedupPredWithCount2CoalescePred<DedupEq>, WithCount>
where Self: Sized,

Remove duplicates from sections of consecutive identical elements, while keeping a count of how many repeated elements were present. If the iterator is sorted, all elements will be unique. Read more
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fn dedup_by_with_count<Cmp>( self, cmp: Cmp, ) -> CoalesceBy<Self, DedupPredWithCount2CoalescePred<Cmp>, WithCount>
where Self: Sized, Cmp: FnMut(&Self::Item, &Self::Item) -> bool,

Remove duplicates from sections of consecutive identical elements, while keeping a count of how many repeated elements were present. This will determine equality using a comparison function. If the iterator is sorted, all elements will be unique. Read more
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fn duplicates(self) -> DuplicatesBy<Self, Self::Item, ById>
where Self: Sized, Self::Item: Eq + Hash,

Return an iterator adaptor that produces elements that appear more than once during the iteration. Duplicates are detected using hash and equality. Read more
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fn duplicates_by<V, F>(self, f: F) -> DuplicatesBy<Self, V, ByFn<F>>
where Self: Sized, V: Eq + Hash, F: FnMut(&Self::Item) -> V,

Return an iterator adaptor that produces elements that appear more than once during the iteration. Duplicates are detected using hash and equality. Read more
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fn unique(self) -> Unique<Self>
where Self: Sized, Self::Item: Clone + Eq + Hash,

Return an iterator adaptor that filters out elements that have already been produced once during the iteration. Duplicates are detected using hash and equality. Read more
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fn unique_by<V, F>(self, f: F) -> UniqueBy<Self, V, F>
where Self: Sized, V: Eq + Hash, F: FnMut(&Self::Item) -> V,

Return an iterator adaptor that filters out elements that have already been produced once during the iteration. Read more
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fn peeking_take_while<F>(&mut self, accept: F) -> PeekingTakeWhile<'_, Self, F>
where Self: Sized + PeekingNext, F: FnMut(&Self::Item) -> bool,

Return an iterator adaptor that borrows from this iterator and takes items while the closure accept returns true. Read more
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fn take_while_ref<F>(&mut self, accept: F) -> TakeWhileRef<'_, Self, F>
where Self: Clone, F: FnMut(&Self::Item) -> bool,

Return an iterator adaptor that borrows from a Clone-able iterator to only pick off elements while the predicate accept returns true. Read more
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fn take_while_inclusive<F>(self, accept: F) -> TakeWhileInclusive<Self, F>
where Self: Sized, F: FnMut(&Self::Item) -> bool,

Returns an iterator adaptor that consumes elements while the given predicate is true, including the element for which the predicate first returned false. Read more
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fn while_some<A>(self) -> WhileSome<Self>
where Self: Sized + Iterator<Item = Option<A>>,

Return an iterator adaptor that filters Option<A> iterator elements and produces A. Stops on the first None encountered. Read more
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fn tuple_combinations<T>(self) -> TupleCombinations<Self, T>
where Self: Sized + Clone, Self::Item: Clone, T: HasCombination<Self>,

Return an iterator adaptor that iterates over the combinations of the elements from an iterator. Read more
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fn combinations(self, k: usize) -> Combinations<Self>
where Self: Sized, Self::Item: Clone,

Return an iterator adaptor that iterates over the k-length combinations of the elements from an iterator. Read more
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fn combinations_with_replacement( self, k: usize, ) -> CombinationsWithReplacement<Self>
where Self: Sized, Self::Item: Clone,

Return an iterator that iterates over the k-length combinations of the elements from an iterator, with replacement. Read more
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fn permutations(self, k: usize) -> Permutations<Self>
where Self: Sized, Self::Item: Clone,

Return an iterator adaptor that iterates over all k-permutations of the elements from an iterator. Read more
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fn powerset(self) -> Powerset<Self>
where Self: Sized, Self::Item: Clone,

Return an iterator that iterates through the powerset of the elements from an iterator. Read more
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fn pad_using<F>(self, min: usize, f: F) -> PadUsing<Self, F>
where Self: Sized, F: FnMut(usize) -> Self::Item,

Return an iterator adaptor that pads the sequence to a minimum length of min by filling missing elements using a closure f. Read more
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fn with_position(self) -> WithPosition<Self>
where Self: Sized,

Return an iterator adaptor that combines each element with a Position to ease special-case handling of the first or last elements. Read more
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fn positions<P>(self, predicate: P) -> Positions<Self, P>
where Self: Sized, P: FnMut(Self::Item) -> bool,

Return an iterator adaptor that yields the indices of all elements satisfying a predicate, counted from the start of the iterator. Read more
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fn update<F>(self, updater: F) -> Update<Self, F>
where Self: Sized, F: FnMut(&mut Self::Item),

Return an iterator adaptor that applies a mutating function to each element before yielding it. Read more
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fn next_tuple<T>(&mut self) -> Option<T>
where Self: Sized + Iterator<Item = <T as TupleCollect>::Item>, T: HomogeneousTuple,

Advances the iterator and returns the next items grouped in a tuple of a specific size (up to 12). Read more
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fn collect_tuple<T>(self) -> Option<T>
where Self: Sized + Iterator<Item = <T as TupleCollect>::Item>, T: HomogeneousTuple,

Collects all items from the iterator into a tuple of a specific size (up to 12). Read more
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fn find_position<P>(&mut self, pred: P) -> Option<(usize, Self::Item)>
where P: FnMut(&Self::Item) -> bool,

Find the position and value of the first element satisfying a predicate. Read more
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fn find_or_last<P>(self, predicate: P) -> Option<Self::Item>
where Self: Sized, P: FnMut(&Self::Item) -> bool,

Find the value of the first element satisfying a predicate or return the last element, if any. Read more
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fn find_or_first<P>(self, predicate: P) -> Option<Self::Item>
where Self: Sized, P: FnMut(&Self::Item) -> bool,

Find the value of the first element satisfying a predicate or return the first element, if any. Read more
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fn contains<Q>(&mut self, query: &Q) -> bool
where Self: Sized, Self::Item: Borrow<Q>, Q: PartialEq,

Returns true if the given item is present in this iterator. Read more
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fn all_equal(&mut self) -> bool
where Self: Sized, Self::Item: PartialEq,

Check whether all elements compare equal. Read more
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fn all_equal_value( &mut self, ) -> Result<Self::Item, Option<(Self::Item, Self::Item)>>
where Self: Sized, Self::Item: PartialEq,

If there are elements and they are all equal, return a single copy of that element. If there are no elements, return an Error containing None. If there are elements and they are not all equal, return a tuple containing the first two non-equal elements found. Read more
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fn all_unique(&mut self) -> bool
where Self: Sized, Self::Item: Eq + Hash,

Check whether all elements are unique (non equal). Read more
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fn dropping(self, n: usize) -> Self
where Self: Sized,

Consume the first n elements from the iterator eagerly, and return the same iterator again. Read more
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fn dropping_back(self, n: usize) -> Self
where Self: Sized + DoubleEndedIterator,

Consume the last n elements from the iterator eagerly, and return the same iterator again. Read more
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fn concat(self) -> Self::Item
where Self: Sized, Self::Item: Extend<<Self::Item as IntoIterator>::Item> + IntoIterator + Default,

Combine all an iterator’s elements into one element by using Extend. Read more
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fn collect_vec(self) -> Vec<Self::Item>
where Self: Sized,

.collect_vec() is simply a type specialization of Iterator::collect, for convenience.
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fn try_collect<T, U, E>(self) -> Result<U, E>
where Self: Sized + Iterator<Item = Result<T, E>>, Result<U, E>: FromIterator<Result<T, E>>,

.try_collect() is more convenient way of writing .collect::<Result<_, _>>() Read more
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fn set_from<'a, A, J>(&mut self, from: J) -> usize
where A: 'a, Self: Iterator<Item = &'a mut A>, J: IntoIterator<Item = A>,

Assign to each reference in self from the from iterator, stopping at the shortest of the two iterators. Read more
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fn join(&mut self, sep: &str) -> String
where Self::Item: Display,

Combine all iterator elements into one String, separated by sep. Read more
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fn format(self, sep: &str) -> Format<'_, Self>
where Self: Sized,

Format all iterator elements, separated by sep. Read more
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fn format_with<F>(self, sep: &str, format: F) -> FormatWith<'_, Self, F>
where Self: Sized, F: FnMut(Self::Item, &mut dyn FnMut(&dyn Display) -> Result<(), Error>) -> Result<(), Error>,

Format all iterator elements, separated by sep. Read more
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fn fold_ok<A, E, B, F>(&mut self, start: B, f: F) -> Result<B, E>
where Self: Iterator<Item = Result<A, E>>, F: FnMut(B, A) -> B,

Fold Result values from an iterator. Read more
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fn fold_options<A, B, F>(&mut self, start: B, f: F) -> Option<B>
where Self: Iterator<Item = Option<A>>, F: FnMut(B, A) -> B,

Fold Option values from an iterator. Read more
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fn fold1<F>(self, f: F) -> Option<Self::Item>
where F: FnMut(Self::Item, Self::Item) -> Self::Item, Self: Sized,

👎Deprecated since 0.10.2: Use Iterator::reduce instead
Accumulator of the elements in the iterator. Read more
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fn tree_reduce<F>(self, f: F) -> Option<Self::Item>
where F: FnMut(Self::Item, Self::Item) -> Self::Item, Self: Sized,

Accumulate the elements in the iterator in a tree-like manner. Read more
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fn tree_fold1<F>(self, f: F) -> Option<Self::Item>
where F: FnMut(Self::Item, Self::Item) -> Self::Item, Self: Sized,

👎Deprecated since 0.13.0: Use .tree_reduce() instead
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fn fold_while<B, F>(&mut self, init: B, f: F) -> FoldWhile<B>
where Self: Sized, F: FnMut(B, Self::Item) -> FoldWhile<B>,

An iterator method that applies a function, producing a single, final value. Read more
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fn sum1<S>(self) -> Option<S>
where Self: Sized, S: Sum<Self::Item>,

Iterate over the entire iterator and add all the elements. Read more
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fn product1<P>(self) -> Option<P>
where Self: Sized, P: Product<Self::Item>,

Iterate over the entire iterator and multiply all the elements. Read more
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fn sorted_unstable(self) -> IntoIter<Self::Item>
where Self: Sized, Self::Item: Ord,

Sort all iterator elements into a new iterator in ascending order. Read more
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fn sorted_unstable_by<F>(self, cmp: F) -> IntoIter<Self::Item>
where Self: Sized, F: FnMut(&Self::Item, &Self::Item) -> Ordering,

Sort all iterator elements into a new iterator in ascending order. Read more
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fn sorted_unstable_by_key<K, F>(self, f: F) -> IntoIter<Self::Item>
where Self: Sized, K: Ord, F: FnMut(&Self::Item) -> K,

Sort all iterator elements into a new iterator in ascending order. Read more
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fn sorted(self) -> IntoIter<Self::Item>
where Self: Sized, Self::Item: Ord,

Sort all iterator elements into a new iterator in ascending order. Read more
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fn sorted_by<F>(self, cmp: F) -> IntoIter<Self::Item>
where Self: Sized, F: FnMut(&Self::Item, &Self::Item) -> Ordering,

Sort all iterator elements into a new iterator in ascending order. Read more
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fn sorted_by_key<K, F>(self, f: F) -> IntoIter<Self::Item>
where Self: Sized, K: Ord, F: FnMut(&Self::Item) -> K,

Sort all iterator elements into a new iterator in ascending order. Read more
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fn sorted_by_cached_key<K, F>(self, f: F) -> IntoIter<Self::Item>
where Self: Sized, K: Ord, F: FnMut(&Self::Item) -> K,

Sort all iterator elements into a new iterator in ascending order. The key function is called exactly once per key. Read more
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fn k_smallest(self, k: usize) -> IntoIter<Self::Item>
where Self: Sized, Self::Item: Ord,

Sort the k smallest elements into a new iterator, in ascending order. Read more
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fn k_smallest_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item>
where Self: Sized, F: FnMut(&Self::Item, &Self::Item) -> Ordering,

Sort the k smallest elements into a new iterator using the provided comparison. Read more
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fn k_smallest_by_key<F, K>(self, k: usize, key: F) -> IntoIter<Self::Item>
where Self: Sized, F: FnMut(&Self::Item) -> K, K: Ord,

Return the elements producing the k smallest outputs of the provided function. Read more
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fn k_largest(self, k: usize) -> IntoIter<Self::Item>
where Self: Sized, Self::Item: Ord,

Sort the k largest elements into a new iterator, in descending order. Read more
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fn k_largest_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item>
where Self: Sized, F: FnMut(&Self::Item, &Self::Item) -> Ordering,

Sort the k largest elements into a new iterator using the provided comparison. Read more
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fn k_largest_by_key<F, K>(self, k: usize, key: F) -> IntoIter<Self::Item>
where Self: Sized, F: FnMut(&Self::Item) -> K, K: Ord,

Return the elements producing the k largest outputs of the provided function. Read more
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fn tail(self, n: usize) -> IntoIter<Self::Item>
where Self: Sized,

Consumes the iterator and return an iterator of the last n elements. Read more
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fn partition_map<A, B, F, L, R>(self, predicate: F) -> (A, B)
where Self: Sized, F: FnMut(Self::Item) -> Either<L, R>, A: Default + Extend<L>, B: Default + Extend<R>,

Collect all iterator elements into one of two partitions. Unlike Iterator::partition, each partition may have a distinct type. Read more
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fn partition_result<A, B, T, E>(self) -> (A, B)
where Self: Sized + Iterator<Item = Result<T, E>>, A: Default + Extend<T>, B: Default + Extend<E>,

Partition a sequence of Results into one list of all the Ok elements and another list of all the Err elements. Read more
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fn into_group_map<K, V>(self) -> HashMap<K, Vec<V>>
where Self: Sized + Iterator<Item = (K, V)>, K: Hash + Eq,

Return a HashMap of keys mapped to Vecs of values. Keys and values are taken from (Key, Value) tuple pairs yielded by the input iterator. Read more
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fn into_group_map_by<K, V, F>(self, f: F) -> HashMap<K, Vec<V>>
where Self: Sized + Iterator<Item = V>, K: Hash + Eq, F: FnMut(&V) -> K,

Return an Iterator on a HashMap. Keys mapped to Vecs of values. The key is specified in the closure. Read more
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fn into_grouping_map<K, V>(self) -> GroupingMap<Self>
where Self: Sized + Iterator<Item = (K, V)>, K: Hash + Eq,

Constructs a GroupingMap to be used later with one of the efficient group-and-fold operations it allows to perform. Read more
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fn into_grouping_map_by<K, V, F>( self, key_mapper: F, ) -> GroupingMap<MapSpecialCase<Self, GroupingMapFn<F>>>
where Self: Sized + Iterator<Item = V>, K: Hash + Eq, F: FnMut(&V) -> K,

Constructs a GroupingMap to be used later with one of the efficient group-and-fold operations it allows to perform. Read more
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fn min_set(self) -> Vec<Self::Item>
where Self: Sized, Self::Item: Ord,

Return all minimum elements of an iterator. Read more
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fn min_set_by<F>(self, compare: F) -> Vec<Self::Item>
where Self: Sized, F: FnMut(&Self::Item, &Self::Item) -> Ordering,

Return all minimum elements of an iterator, as determined by the specified function. Read more
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fn min_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
where Self: Sized, K: Ord, F: FnMut(&Self::Item) -> K,

Return all minimum elements of an iterator, as determined by the specified function. Read more
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fn max_set(self) -> Vec<Self::Item>
where Self: Sized, Self::Item: Ord,

Return all maximum elements of an iterator. Read more
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fn max_set_by<F>(self, compare: F) -> Vec<Self::Item>
where Self: Sized, F: FnMut(&Self::Item, &Self::Item) -> Ordering,

Return all maximum elements of an iterator, as determined by the specified function. Read more
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fn max_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
where Self: Sized, K: Ord, F: FnMut(&Self::Item) -> K,

Return all maximum elements of an iterator, as determined by the specified function. Read more
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fn minmax(self) -> MinMaxResult<Self::Item>
where Self: Sized, Self::Item: PartialOrd,

Return the minimum and maximum elements in the iterator. Read more
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fn minmax_by_key<K, F>(self, key: F) -> MinMaxResult<Self::Item>
where Self: Sized, K: PartialOrd, F: FnMut(&Self::Item) -> K,

Return the minimum and maximum element of an iterator, as determined by the specified function. Read more
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fn minmax_by<F>(self, compare: F) -> MinMaxResult<Self::Item>
where Self: Sized, F: FnMut(&Self::Item, &Self::Item) -> Ordering,

Return the minimum and maximum element of an iterator, as determined by the specified comparison function. Read more
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fn position_max(self) -> Option<usize>
where Self: Sized, Self::Item: Ord,

Return the position of the maximum element in the iterator. Read more
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fn position_max_by_key<K, F>(self, key: F) -> Option<usize>
where Self: Sized, K: Ord, F: FnMut(&Self::Item) -> K,

Return the position of the maximum element in the iterator, as determined by the specified function. Read more
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fn position_max_by<F>(self, compare: F) -> Option<usize>
where Self: Sized, F: FnMut(&Self::Item, &Self::Item) -> Ordering,

Return the position of the maximum element in the iterator, as determined by the specified comparison function. Read more
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fn position_min(self) -> Option<usize>
where Self: Sized, Self::Item: Ord,

Return the position of the minimum element in the iterator. Read more
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fn position_min_by_key<K, F>(self, key: F) -> Option<usize>
where Self: Sized, K: Ord, F: FnMut(&Self::Item) -> K,

Return the position of the minimum element in the iterator, as determined by the specified function. Read more
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fn position_min_by<F>(self, compare: F) -> Option<usize>
where Self: Sized, F: FnMut(&Self::Item, &Self::Item) -> Ordering,

Return the position of the minimum element in the iterator, as determined by the specified comparison function. Read more
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fn position_minmax(self) -> MinMaxResult<usize>
where Self: Sized, Self::Item: PartialOrd,

Return the positions of the minimum and maximum elements in the iterator. Read more
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fn position_minmax_by_key<K, F>(self, key: F) -> MinMaxResult<usize>
where Self: Sized, K: PartialOrd, F: FnMut(&Self::Item) -> K,

Return the postions of the minimum and maximum elements of an iterator, as determined by the specified function. Read more
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fn position_minmax_by<F>(self, compare: F) -> MinMaxResult<usize>
where Self: Sized, F: FnMut(&Self::Item, &Self::Item) -> Ordering,

Return the postions of the minimum and maximum elements of an iterator, as determined by the specified comparison function. Read more
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fn exactly_one(self) -> Result<Self::Item, ExactlyOneError<Self>>
where Self: Sized,

If the iterator yields exactly one element, that element will be returned, otherwise an error will be returned containing an iterator that has the same output as the input iterator. Read more
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fn at_most_one(self) -> Result<Option<Self::Item>, ExactlyOneError<Self>>
where Self: Sized,

If the iterator yields no elements, Ok(None) will be returned. If the iterator yields exactly one element, that element will be returned, otherwise an error will be returned containing an iterator that has the same output as the input iterator. Read more
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fn multipeek(self) -> MultiPeek<Self>
where Self: Sized,

An iterator adaptor that allows the user to peek at multiple .next() values without advancing the base iterator. Read more
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fn counts(self) -> HashMap<Self::Item, usize>
where Self: Sized, Self::Item: Eq + Hash,

Collect the items in this iterator and return a HashMap which contains each item that appears in the iterator and the number of times it appears. Read more
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fn counts_by<K, F>(self, f: F) -> HashMap<K, usize>
where Self: Sized, K: Eq + Hash, F: FnMut(Self::Item) -> K,

Collect the items in this iterator and return a HashMap which contains each item that appears in the iterator and the number of times it appears, determining identity using a keying function. Read more
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fn multiunzip<FromI>(self) -> FromI
where Self: Sized + MultiUnzip<FromI>,

Converts an iterator of tuples into a tuple of containers. Read more
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fn try_len(&self) -> Result<usize, (usize, Option<usize>)>

Returns the length of the iterator if one exists. Otherwise return self.size_hint(). Read more
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impl<T, M> MakeExt<T> for M
where M: MakeVisitor<T> + Sealed<MakeExtMarker<T>>,

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fn debug_alt(self) -> Alt<Self>

Wraps self so that any fmt::Debug fields are recorded using the alternate formatter ({:#?}).
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fn display_messages(self) -> Messages<Self>

Wraps self so that any string fields named “message” are recorded using fmt::Display.
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fn delimited<D>(self, delimiter: D) -> Delimited<D, Self>
where D: AsRef<str> + Clone, Self::Visitor: VisitFmt,

Wraps self so that when fields are formatted to a writer, they are separated by the provided delimiter.
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impl<T, V, F> MakeVisitor<T> for F
where F: Fn(T) -> V, V: Visit,

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type Visitor = V

The visitor type produced by this MakeVisitor.
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fn make_visitor(&self, target: T) -> <F as MakeVisitor<T>>::Visitor

Make a new visitor for the provided target.
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impl<'a, F, W> MakeWriter<'a> for F
where F: Fn() -> W, W: Write,

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type Writer = W

The concrete io::Write implementation returned by make_writer.
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fn make_writer(&'a self) -> <F as MakeWriter<'a>>::Writer

Returns an instance of Writer. Read more
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fn make_writer_for(&'a self, meta: &Metadata<'_>) -> Self::Writer

Returns a Writer for writing data from the span or event described by the provided Metadata. Read more
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impl<'a, M> MakeWriterExt<'a> for M
where M: MakeWriter<'a>,

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fn with_max_level(self, level: Level) -> WithMaxLevel<Self>
where Self: Sized,

Wraps self and returns a MakeWriter that will only write output for events at or below the provided verbosity Level. For instance, Level::TRACE is considered to be _more verbosethanLevel::INFO`. Read more
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fn with_min_level(self, level: Level) -> WithMinLevel<Self>
where Self: Sized,

Wraps self and returns a MakeWriter that will only write output for events at or above the provided verbosity Level. Read more
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fn with_filter<F>(self, filter: F) -> WithFilter<Self, F>
where Self: Sized, F: Fn(&Metadata<'_>) -> bool,

Wraps self with a predicate that takes a span or event’s Metadata and returns a bool. The returned MakeWriter’s MakeWriter::make_writer_for method will check the predicate to determine if a writer should be produced for a given span or event. Read more
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fn and<B>(self, other: B) -> Tee<Self, B>
where Self: Sized, B: MakeWriter<'a>,

Combines self with another type implementing MakeWriter, returning a new MakeWriter that produces writers that write to both outputs. Read more
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fn or_else<W, B>(self, other: B) -> OrElse<Self, B>
where Self: Sized + MakeWriter<'a, Writer = EitherWriter<W, Sink>>, B: MakeWriter<'a>, W: Write,

Combines self with another type implementing MakeWriter, returning a new MakeWriter that calls other’s make_writer if self’s make_writer returns OptionalWriter::none. Read more
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impl<T> MapEntities for T

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fn map_entities<M>(&mut self, entity_mapper: &mut M)
where M: EntityMapper,

Updates all Entity references stored inside using entity_mapper. Read more
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impl<IT> MultiUnzip<()> for IT
where IT: Iterator<Item = ()>,

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fn multiunzip(self)

Unzip this iterator into multiple collections.
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impl<IT, A, FromA> MultiUnzip<(FromA,)> for IT
where IT: Iterator<Item = (A,)>, FromA: Default + Extend<A>,

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fn multiunzip(self) -> (FromA,)

Unzip this iterator into multiple collections.
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impl<IT, A, FromA, B, FromB> MultiUnzip<(FromA, FromB)> for IT
where IT: Iterator<Item = (A, B)>, FromA: Default + Extend<A>, FromB: Default + Extend<B>,

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fn multiunzip(self) -> (FromA, FromB)

Unzip this iterator into multiple collections.
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impl<IT, A, FromA, B, FromB, C, FromC> MultiUnzip<(FromA, FromB, FromC)> for IT
where IT: Iterator<Item = (A, B, C)>, FromA: Default + Extend<A>, FromB: Default + Extend<B>, FromC: Default + Extend<C>,

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fn multiunzip(self) -> (FromA, FromB, FromC)

Unzip this iterator into multiple collections.
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impl<IT, A, FromA, B, FromB, C, FromC, D, FromD> MultiUnzip<(FromA, FromB, FromC, FromD)> for IT
where IT: Iterator<Item = (A, B, C, D)>, FromA: Default + Extend<A>, FromB: Default + Extend<B>, FromC: Default + Extend<C>, FromD: Default + Extend<D>,

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fn multiunzip(self) -> (FromA, FromB, FromC, FromD)

Unzip this iterator into multiple collections.
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impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE> MultiUnzip<(FromA, FromB, FromC, FromD, FromE)> for IT
where IT: Iterator<Item = (A, B, C, D, E)>, FromA: Default + Extend<A>, FromB: Default + Extend<B>, FromC: Default + Extend<C>, FromD: Default + Extend<D>, FromE: Default + Extend<E>,

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fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE)

Unzip this iterator into multiple collections.
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impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF)> for IT
where IT: Iterator<Item = (A, B, C, D, E, F)>, FromA: Default + Extend<A>, FromB: Default + Extend<B>, FromC: Default + Extend<C>, FromD: Default + Extend<D>, FromE: Default + Extend<E>, FromF: Default + Extend<F>,

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fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE, FromF)

Unzip this iterator into multiple collections.
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impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG)> for IT
where IT: Iterator<Item = (A, B, C, D, E, F, G)>, FromA: Default + Extend<A>, FromB: Default + Extend<B>, FromC: Default + Extend<C>, FromD: Default + Extend<D>, FromE: Default + Extend<E>, FromF: Default + Extend<F>, FromG: Default + Extend<G>,

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fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG)

Unzip this iterator into multiple collections.
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impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH)> for IT
where IT: Iterator<Item = (A, B, C, D, E, F, G, H)>, FromA: Default + Extend<A>, FromB: Default + Extend<B>, FromC: Default + Extend<C>, FromD: Default + Extend<D>, FromE: Default + Extend<E>, FromF: Default + Extend<F>, FromG: Default + Extend<G>, FromH: Default + Extend<H>,

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fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH)

Unzip this iterator into multiple collections.
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impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI)> for IT
where IT: Iterator<Item = (A, B, C, D, E, F, G, H, I)>, FromA: Default + Extend<A>, FromB: Default + Extend<B>, FromC: Default + Extend<C>, FromD: Default + Extend<D>, FromE: Default + Extend<E>, FromF: Default + Extend<F>, FromG: Default + Extend<G>, FromH: Default + Extend<H>, FromI: Default + Extend<I>,

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fn multiunzip( self, ) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI)

Unzip this iterator into multiple collections.
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impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI, J, FromJ> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ)> for IT
where IT: Iterator<Item = (A, B, C, D, E, F, G, H, I, J)>, FromA: Default + Extend<A>, FromB: Default + Extend<B>, FromC: Default + Extend<C>, FromD: Default + Extend<D>, FromE: Default + Extend<E>, FromF: Default + Extend<F>, FromG: Default + Extend<G>, FromH: Default + Extend<H>, FromI: Default + Extend<I>, FromJ: Default + Extend<J>,

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fn multiunzip( self, ) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ)

Unzip this iterator into multiple collections.
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impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI, J, FromJ, K, FromK> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK)> for IT
where IT: Iterator<Item = (A, B, C, D, E, F, G, H, I, J, K)>, FromA: Default + Extend<A>, FromB: Default + Extend<B>, FromC: Default + Extend<C>, FromD: Default + Extend<D>, FromE: Default + Extend<E>, FromF: Default + Extend<F>, FromG: Default + Extend<G>, FromH: Default + Extend<H>, FromI: Default + Extend<I>, FromJ: Default + Extend<J>, FromK: Default + Extend<K>,

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impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI, J, FromJ, K, FromK, L, FromL> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK, FromL)> for IT
where IT: Iterator<Item = (A, B, C, D, E, F, G, H, I, J, K, L)>, FromA: Default + Extend<A>, FromB: Default + Extend<B>, FromC: Default + Extend<C>, FromD: Default + Extend<D>, FromE: Default + Extend<E>, FromF: Default + Extend<F>, FromG: Default + Extend<G>, FromH: Default + Extend<H>, FromI: Default + Extend<I>, FromJ: Default + Extend<J>, FromK: Default + Extend<K>, FromL: Default + Extend<L>,

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impl<S, T> ParallelSlice<T> for S
where T: Sync, S: AsRef<[T]>,

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fn par_chunk_map<F, R>( &self, task_pool: &TaskPool, chunk_size: usize, f: F, ) -> Vec<R>
where F: Fn(usize, &[T]) -> R + Send + Sync, R: Send + 'static,

Splits the slice in chunks of size chunks_size or less and maps the chunks in parallel across the provided task_pool. One task is spawned in the task pool for every chunk. Read more
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fn par_splat_map<F, R>( &self, task_pool: &TaskPool, max_tasks: Option<usize>, f: F, ) -> Vec<R>
where F: Fn(usize, &[T]) -> R + Send + Sync, R: Send + 'static,

Splits the slice into a maximum of max_tasks chunks, and maps the chunks in parallel across the provided task_pool. One task is spawned in the task pool for every chunk. Read more
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impl<S, T> ParallelSliceMut<T> for S
where T: Send, S: AsMut<[T]>,

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fn par_chunk_map_mut<F, R>( &mut self, task_pool: &TaskPool, chunk_size: usize, f: F, ) -> Vec<R>
where F: Fn(usize, &mut [T]) -> R + Send + Sync, R: Send + 'static,

Splits the slice in chunks of size chunks_size or less and maps the chunks in parallel across the provided task_pool. One task is spawned in the task pool for every chunk. Read more
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fn par_splat_map_mut<F, R>( &mut self, task_pool: &TaskPool, max_tasks: Option<usize>, f: F, ) -> Vec<R>
where F: Fn(usize, &mut [T]) -> R + Send + Sync, R: Send + 'static,

Splits the slice into a maximum of max_tasks chunks, and maps the chunks in parallel across the provided task_pool. One task is spawned in the task pool for every chunk. Read more
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impl<F> Pattern for F
where F: FnMut(char) -> bool,

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type Searcher<'a> = CharPredicateSearcher<'a, F>

🔬This is a nightly-only experimental API. (pattern)
Associated searcher for this pattern
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fn into_searcher<'a>(self, haystack: &'a str) -> CharPredicateSearcher<'a, F>

🔬This is a nightly-only experimental API. (pattern)
Constructs the associated searcher from self and the haystack to search in.
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fn is_contained_in<'a>(self, haystack: &'a str) -> bool

🔬This is a nightly-only experimental API. (pattern)
Checks whether the pattern matches anywhere in the haystack
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fn is_prefix_of<'a>(self, haystack: &'a str) -> bool

🔬This is a nightly-only experimental API. (pattern)
Checks whether the pattern matches at the front of the haystack
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fn strip_prefix_of<'a>(self, haystack: &'a str) -> Option<&'a str>

🔬This is a nightly-only experimental API. (pattern)
Removes the pattern from the front of haystack, if it matches.
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fn is_suffix_of<'a>(self, haystack: &'a str) -> bool

🔬This is a nightly-only experimental API. (pattern)
Checks whether the pattern matches at the back of the haystack
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fn strip_suffix_of<'a>(self, haystack: &'a str) -> Option<&'a str>

🔬This is a nightly-only experimental API. (pattern)
Removes the pattern from the back of haystack, if it matches.
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impl<T> Plugin for T
where T: Fn(&mut App) + Send + Sync + 'static,

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fn build(&self, app: &mut App)

Configures the App to which this plugin is added.
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fn ready(&self, _app: &App) -> bool

Has the plugin finished its setup? This can be useful for plugins that need something asynchronous to happen before they can finish their setup, like the initialization of a renderer. Once the plugin is ready, finish should be called.
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fn finish(&self, _app: &mut App)

Finish adding this plugin to the App, once all plugins registered are ready. This can be useful for plugins that depends on another plugin asynchronous setup, like the renderer.
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fn cleanup(&self, _app: &mut App)

Runs after all plugins are built and finished, but before the app schedule is executed. This can be useful if you have some resource that other plugins need during their build step, but after build you want to remove it and send it to another thread.
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fn name(&self) -> &str

Configures a name for the Plugin which is primarily used for checking plugin uniqueness and debugging.
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fn is_unique(&self) -> bool

If the plugin can be meaningfully instantiated several times in an App, override this method to return false.
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impl<F, T> Replacer for F
where F: FnMut(&Captures<'_>) -> T, T: AsRef<[u8]>,

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fn replace_append(&mut self, caps: &Captures<'_>, dst: &mut Vec<u8>)

Appends possibly empty data to dst to replace the current match. Read more
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fn no_expansion<'r>(&'r mut self) -> Option<Cow<'r, [u8]>>

Return a fixed unchanging replacement byte string. Read more
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fn by_ref<'r>(&'r mut self) -> ReplacerRef<'r, Self>

Returns a type that implements Replacer, but that borrows and wraps this Replacer. Read more
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impl<F, T> Replacer for F
where F: FnMut(&Captures<'_>) -> T, T: AsRef<str>,

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fn replace_append(&mut self, caps: &Captures<'_>, dst: &mut String)

Appends possibly empty data to dst to replace the current match. Read more
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fn no_expansion<'r>(&'r mut self) -> Option<Cow<'r, str>>

Return a fixed unchanging replacement string. Read more
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fn by_ref<'r>(&'r mut self) -> ReplacerRef<'r, Self>

Returns a type that implements Replacer, but that borrows and wraps this Replacer. Read more
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impl<R> Rng for R
where R: RngCore + ?Sized,

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fn gen<T>(&mut self) -> T

Return a random value supporting the Standard distribution. Read more
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fn gen_range<T, R>(&mut self, range: R) -> T
where T: SampleUniform, R: SampleRange<T>,

Generate a random value in the given range. Read more
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fn sample<T, D>(&mut self, distr: D) -> T
where D: Distribution<T>,

Sample a new value, using the given distribution. Read more
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fn sample_iter<T, D>(self, distr: D) -> DistIter<D, Self, T>
where D: Distribution<T>, Self: Sized,

Create an iterator that generates values using the given distribution. Read more
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fn fill<T>(&mut self, dest: &mut T)
where T: Fill + ?Sized,

Fill any type implementing Fill with random data Read more
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fn try_fill<T>(&mut self, dest: &mut T) -> Result<(), Error>
where T: Fill + ?Sized,

Fill any type implementing Fill with random data Read more
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fn gen_bool(&mut self, p: f64) -> bool

Return a bool with a probability p of being true. Read more
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fn gen_ratio(&mut self, numerator: u32, denominator: u32) -> bool

Return a bool with a probability of numerator/denominator of being true. I.e. gen_ratio(2, 3) has chance of 2 in 3, or about 67%, of returning true. If numerator == denominator, then the returned value is guaranteed to be true. If numerator == 0, then the returned value is guaranteed to be false. Read more
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impl<M, F> Schedule<M> for F
where F: Fn(Runnable<M>),

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fn schedule(&self, runnable: Runnable<M>, _: ScheduleInfo)

The actual scheduling procedure.
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impl<T> Serialize for T
where T: Serialize + ?Sized,

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fn erased_serialize(&self, serializer: &mut dyn Serializer) -> Result<(), Error>

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fn do_erased_serialize( &self, serializer: &mut dyn Serializer, ) -> Result<(), ErrorImpl>

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impl<T> SubscriberInitExt for T
where T: Into<Dispatch>,

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fn set_default(self) -> DefaultGuard

Sets self as the default subscriber in the current scope, returning a guard that will unset it when dropped. Read more
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fn try_init(self) -> Result<(), TryInitError>

Attempts to set self as the global default subscriber in the current scope, returning an error if one is already set. Read more
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fn init(self)

Attempts to set self as the global default subscriber in the current scope, panicking if this fails. Read more
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impl<In, Out, Func> SystemParamFunction<(HasSystemInput, fn(_: In) -> Out)> for Func
where Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = ()

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <() as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<In, Out, Func, F0> SystemParamFunction<(HasSystemInput, fn(_: In, _: F0) -> Out)> for Func
where F0: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, F0) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, <F0 as SystemParam>::Item<'_, '_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0,)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <(F0,) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<In, Out, Func, F0, F1> SystemParamFunction<(HasSystemInput, fn(_: In, _: F0, _: F1) -> Out)> for Func
where F0: SystemParam, F1: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, F0, F1) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, <F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<In, Out, Func, F0, F1, F2> SystemParamFunction<(HasSystemInput, fn(_: In, _: F0, _: F1, _: F2) -> Out)> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, F0, F1, F2) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, <F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<In, Out, Func, F0, F1, F2, F3> SystemParamFunction<(HasSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3) -> Out)> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, F0, F1, F2, F3) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, <F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<In, Out, Func, F0, F1, F2, F3, F4> SystemParamFunction<(HasSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4) -> Out)> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, F0, F1, F2, F3, F4) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, <F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5> SystemParamFunction<(HasSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5) -> Out)> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, F0, F1, F2, F3, F4, F5) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, <F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6> SystemParamFunction<(HasSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6) -> Out)> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, F0, F1, F2, F3, F4, F5, F6) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, <F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7> SystemParamFunction<(HasSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7) -> Out)> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, F0, F1, F2, F3, F4, F5, F6, F7) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, <F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8> SystemParamFunction<(HasSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8) -> Out)> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, F8: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, F0, F1, F2, F3, F4, F5, F6, F7, F8) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, <F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>, <F8 as SystemParam>::Item<'_, '_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9> SystemParamFunction<(HasSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9) -> Out)> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, F8: SystemParam, F9: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, <F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>, <F8 as SystemParam>::Item<'_, '_>, <F9 as SystemParam>::Item<'_, '_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10> SystemParamFunction<(HasSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10) -> Out)> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, F8: SystemParam, F9: SystemParam, F10: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, <F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>, <F8 as SystemParam>::Item<'_, '_>, <F9 as SystemParam>::Item<'_, '_>, <F10 as SystemParam>::Item<'_, '_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11> SystemParamFunction<(HasSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11) -> Out)> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, F8: SystemParam, F9: SystemParam, F10: SystemParam, F11: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, <F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>, <F8 as SystemParam>::Item<'_, '_>, <F9 as SystemParam>::Item<'_, '_>, <F10 as SystemParam>::Item<'_, '_>, <F11 as SystemParam>::Item<'_, '_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12> SystemParamFunction<(HasSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11, _: F12) -> Out)> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, F8: SystemParam, F9: SystemParam, F10: SystemParam, F11: SystemParam, F12: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, <F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>, <F8 as SystemParam>::Item<'_, '_>, <F9 as SystemParam>::Item<'_, '_>, <F10 as SystemParam>::Item<'_, '_>, <F11 as SystemParam>::Item<'_, '_>, <F12 as SystemParam>::Item<'_, '_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13> SystemParamFunction<(HasSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11, _: F12, _: F13) -> Out)> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, F8: SystemParam, F9: SystemParam, F10: SystemParam, F11: SystemParam, F12: SystemParam, F13: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, <F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>, <F8 as SystemParam>::Item<'_, '_>, <F9 as SystemParam>::Item<'_, '_>, <F10 as SystemParam>::Item<'_, '_>, <F11 as SystemParam>::Item<'_, '_>, <F12 as SystemParam>::Item<'_, '_>, <F13 as SystemParam>::Item<'_, '_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14> SystemParamFunction<(HasSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11, _: F12, _: F13, _: F14) -> Out)> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, F8: SystemParam, F9: SystemParam, F10: SystemParam, F11: SystemParam, F12: SystemParam, F13: SystemParam, F14: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, <F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>, <F8 as SystemParam>::Item<'_, '_>, <F9 as SystemParam>::Item<'_, '_>, <F10 as SystemParam>::Item<'_, '_>, <F11 as SystemParam>::Item<'_, '_>, <F12 as SystemParam>::Item<'_, '_>, <F13 as SystemParam>::Item<'_, '_>, <F14 as SystemParam>::Item<'_, '_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<In, Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14, F15> SystemParamFunction<(HasSystemInput, fn(_: In, _: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11, _: F12, _: F13, _: F14, _: F15) -> Out)> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, F8: SystemParam, F9: SystemParam, F10: SystemParam, F11: SystemParam, F12: SystemParam, F13: SystemParam, F14: SystemParam, F15: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(In, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14, F15) -> Out + for<'a> FnMut(<In as SystemInput>::Param<'_>, <F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>, <F8 as SystemParam>::Item<'_, '_>, <F9 as SystemParam>::Item<'_, '_>, <F10 as SystemParam>::Item<'_, '_>, <F11 as SystemParam>::Item<'_, '_>, <F12 as SystemParam>::Item<'_, '_>, <F13 as SystemParam>::Item<'_, '_>, <F14 as SystemParam>::Item<'_, '_>, <F15 as SystemParam>::Item<'_, '_>), In: SystemInput + 'static, Out: 'static,

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type In = In

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14, F15)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, input: <In as SystemInput>::Inner<'_>, param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14, F15) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func> SystemParamFunction<fn() -> Out> for Func
where Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut() -> Out + for<'a> FnMut(), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = ()

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <() as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func, F0> SystemParamFunction<fn(_: F0) -> Out> for Func
where F0: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(F0) -> Out + for<'a> FnMut(<F0 as SystemParam>::Item<'_, '_>), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0,)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <(F0,) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func, F0, F1> SystemParamFunction<fn(_: F0, _: F1) -> Out> for Func
where F0: SystemParam, F1: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(F0, F1) -> Out + for<'a> FnMut(<F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <(F0, F1) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func, F0, F1, F2> SystemParamFunction<fn(_: F0, _: F1, _: F2) -> Out> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(F0, F1, F2) -> Out + for<'a> FnMut(<F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <(F0, F1, F2) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func, F0, F1, F2, F3> SystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3) -> Out> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(F0, F1, F2, F3) -> Out + for<'a> FnMut(<F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <(F0, F1, F2, F3) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func, F0, F1, F2, F3, F4> SystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4) -> Out> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(F0, F1, F2, F3, F4) -> Out + for<'a> FnMut(<F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <(F0, F1, F2, F3, F4) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func, F0, F1, F2, F3, F4, F5> SystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5) -> Out> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(F0, F1, F2, F3, F4, F5) -> Out + for<'a> FnMut(<F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <(F0, F1, F2, F3, F4, F5) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6> SystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6) -> Out> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(F0, F1, F2, F3, F4, F5, F6) -> Out + for<'a> FnMut(<F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <(F0, F1, F2, F3, F4, F5, F6) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7> SystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7) -> Out> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(F0, F1, F2, F3, F4, F5, F6, F7) -> Out + for<'a> FnMut(<F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8> SystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8) -> Out> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, F8: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(F0, F1, F2, F3, F4, F5, F6, F7, F8) -> Out + for<'a> FnMut(<F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>, <F8 as SystemParam>::Item<'_, '_>), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9> SystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9) -> Out> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, F8: SystemParam, F9: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9) -> Out + for<'a> FnMut(<F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>, <F8 as SystemParam>::Item<'_, '_>, <F9 as SystemParam>::Item<'_, '_>), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10> SystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10) -> Out> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, F8: SystemParam, F9: SystemParam, F10: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10) -> Out + for<'a> FnMut(<F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>, <F8 as SystemParam>::Item<'_, '_>, <F9 as SystemParam>::Item<'_, '_>, <F10 as SystemParam>::Item<'_, '_>), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11> SystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11) -> Out> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, F8: SystemParam, F9: SystemParam, F10: SystemParam, F11: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11) -> Out + for<'a> FnMut(<F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>, <F8 as SystemParam>::Item<'_, '_>, <F9 as SystemParam>::Item<'_, '_>, <F10 as SystemParam>::Item<'_, '_>, <F11 as SystemParam>::Item<'_, '_>), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12> SystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11, _: F12) -> Out> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, F8: SystemParam, F9: SystemParam, F10: SystemParam, F11: SystemParam, F12: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12) -> Out + for<'a> FnMut(<F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>, <F8 as SystemParam>::Item<'_, '_>, <F9 as SystemParam>::Item<'_, '_>, <F10 as SystemParam>::Item<'_, '_>, <F11 as SystemParam>::Item<'_, '_>, <F12 as SystemParam>::Item<'_, '_>), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13> SystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11, _: F12, _: F13) -> Out> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, F8: SystemParam, F9: SystemParam, F10: SystemParam, F11: SystemParam, F12: SystemParam, F13: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13) -> Out + for<'a> FnMut(<F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>, <F8 as SystemParam>::Item<'_, '_>, <F9 as SystemParam>::Item<'_, '_>, <F10 as SystemParam>::Item<'_, '_>, <F11 as SystemParam>::Item<'_, '_>, <F12 as SystemParam>::Item<'_, '_>, <F13 as SystemParam>::Item<'_, '_>), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14> SystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11, _: F12, _: F13, _: F14) -> Out> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, F8: SystemParam, F9: SystemParam, F10: SystemParam, F11: SystemParam, F12: SystemParam, F13: SystemParam, F14: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14) -> Out + for<'a> FnMut(<F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>, <F8 as SystemParam>::Item<'_, '_>, <F9 as SystemParam>::Item<'_, '_>, <F10 as SystemParam>::Item<'_, '_>, <F11 as SystemParam>::Item<'_, '_>, <F12 as SystemParam>::Item<'_, '_>, <F13 as SystemParam>::Item<'_, '_>, <F14 as SystemParam>::Item<'_, '_>), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<Out, Func, F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14, F15> SystemParamFunction<fn(_: F0, _: F1, _: F2, _: F3, _: F4, _: F5, _: F6, _: F7, _: F8, _: F9, _: F10, _: F11, _: F12, _: F13, _: F14, _: F15) -> Out> for Func
where F0: SystemParam, F1: SystemParam, F2: SystemParam, F3: SystemParam, F4: SystemParam, F5: SystemParam, F6: SystemParam, F7: SystemParam, F8: SystemParam, F9: SystemParam, F10: SystemParam, F11: SystemParam, F12: SystemParam, F13: SystemParam, F14: SystemParam, F15: SystemParam, Func: Send + Sync + 'static, &'a mut Func: for<'a> FnMut(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14, F15) -> Out + for<'a> FnMut(<F0 as SystemParam>::Item<'_, '_>, <F1 as SystemParam>::Item<'_, '_>, <F2 as SystemParam>::Item<'_, '_>, <F3 as SystemParam>::Item<'_, '_>, <F4 as SystemParam>::Item<'_, '_>, <F5 as SystemParam>::Item<'_, '_>, <F6 as SystemParam>::Item<'_, '_>, <F7 as SystemParam>::Item<'_, '_>, <F8 as SystemParam>::Item<'_, '_>, <F9 as SystemParam>::Item<'_, '_>, <F10 as SystemParam>::Item<'_, '_>, <F11 as SystemParam>::Item<'_, '_>, <F12 as SystemParam>::Item<'_, '_>, <F13 as SystemParam>::Item<'_, '_>, <F14 as SystemParam>::Item<'_, '_>, <F15 as SystemParam>::Item<'_, '_>), Out: 'static,

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type In = ()

The input type of this system. See System::In.
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type Out = Out

The return type of this system. See System::Out.
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type Param = (F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14, F15)

The SystemParam/s used by this system to access the World.
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fn run( &mut self, _input: (), param_value: <(F0, F1, F2, F3, F4, F5, F6, F7, F8, F9, F10, F11, F12, F13, F14, F15) as SystemParam>::Item<'_, '_>, ) -> Out

Executes this system once. See System::run or System::run_unsafe.
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impl<T> ToOwned for T
where T: Clone,

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type Owned = T

The resulting type after obtaining ownership.
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fn to_owned(&self) -> T

Creates owned data from borrowed data, usually by cloning. Read more
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fn clone_into(&self, target: &mut T)

Uses borrowed data to replace owned data, usually by cloning. Read more
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impl<T> ToSmolStr for T
where T: Display + ?Sized,

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impl<T> ToString for T
where T: Display + ?Sized,

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default fn to_string(&self) -> String

Converts the given value to a String. Read more
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impl<T, U> TryFrom<U> for T
where U: Into<T>,

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type Error = Infallible

The type returned in the event of a conversion error.
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fn try_from(value: U) -> Result<T, <T as TryFrom<U>>::Error>

Performs the conversion.
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impl<F, T, E> TryFuture for F
where F: Future<Output = Result<T, E>> + ?Sized,

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type Ok = T

The type of successful values yielded by this future
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type Error = E

The type of failures yielded by this future
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fn try_poll( self: Pin<&mut F>, cx: &mut Context<'_>, ) -> Poll<<F as Future>::Output>

Poll this TryFuture as if it were a Future. Read more
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impl<T, U> TryInto<U> for T
where U: TryFrom<T>,

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type Error = <U as TryFrom<T>>::Error

The type returned in the event of a conversion error.
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fn try_into(self) -> Result<U, <U as TryFrom<T>>::Error>

Performs the conversion.
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impl<T> TypeData for T
where T: 'static + Send + Sync + Clone,

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impl<V, T> VZip<V> for T
where V: MultiLane<T>,

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fn vzip(self) -> V

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impl<F> Visit for F
where F: FnMut(&Field, &dyn Debug),

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fn record_debug(&mut self, field: &Field, value: &dyn Debug)

Visit a value implementing fmt::Debug.
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fn record_f64(&mut self, field: &Field, value: f64)

Visit a double-precision floating point value.
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fn record_i64(&mut self, field: &Field, value: i64)

Visit a signed 64-bit integer value.
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fn record_u64(&mut self, field: &Field, value: u64)

Visit an unsigned 64-bit integer value.
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fn record_i128(&mut self, field: &Field, value: i128)

Visit a signed 128-bit integer value.
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fn record_u128(&mut self, field: &Field, value: u128)

Visit an unsigned 128-bit integer value.
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fn record_bool(&mut self, field: &Field, value: bool)

Visit a boolean value.
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fn record_str(&mut self, field: &Field, value: &str)

Visit a string value.
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fn record_bytes(&mut self, field: &Field, value: &[u8])

Visit a byte slice.
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fn record_error(&mut self, field: &Field, value: &(dyn Error + 'static))

Records a type implementing Error. Read more
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impl<T> VisitEntities for T
where &'a T: for<'a> IntoIterator<Item = &'a Entity>,

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fn visit_entities<F>(&self, f: F)
where F: FnMut(Entity),

Apply an operation to all contained entities.
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impl<T> VisitEntitiesMut for T
where T: VisitEntities, &'a mut T: for<'a> IntoIterator<Item = &'a mut Entity>,

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fn visit_entities_mut<F>(&mut self, f: F)
where F: FnMut(&mut Entity),

Apply an operation to mutable references to all contained entities.
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impl<T> WithSubscriber for T

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fn with_subscriber<S>(self, subscriber: S) -> WithDispatch<Self>
where S: Into<Dispatch>,

Attaches the provided Subscriber to this type, returning a WithDispatch wrapper. Read more
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fn with_current_subscriber(self) -> WithDispatch<Self>

Attaches the current default Subscriber to this type, returning a WithDispatch wrapper. Read more
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impl<S> SubscriberExt for S
where S: Subscriber,

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fn with<L>(self, layer: L) -> Layered<L, Self>
where L: Layer<Self>, Self: Sized,

Wraps self with the provided layer.
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impl<T> ConditionalSend for T
where T: Send,

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impl<T> ConditionalSendFuture for T

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impl<T> DeserializeOwned for T
where T: for<'de> Deserialize<'de>,

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impl<T> NumBytes for T
where T: Debug + AsRef<[u8]> + AsMut<[u8]> + PartialEq + Eq + PartialOrd + Ord + Hash + Borrow<[u8]> + BorrowMut<[u8]> + ?Sized,

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impl<Marker, T> Plugins<Marker> for T
where T: Plugins<Marker>,