Files
addr2line
adler
adler32
ahash
aho_corasick
angle
approx
backtrace
bitflags
blender
bytemuck
byteorder
case
cast_trait
cfg_if
chrono
color
color_quant
const_fn
crc32fast
crossbeam
crossbeam_channel
crossbeam_deque
crossbeam_epoch
crossbeam_queue
crossbeam_skiplist
crossbeam_utils
darling
darling_core
darling_macro
dds
deflate
densevec
derive_builder
derive_builder_core
dot
downcast_rs
dual_quat
either
erased_serde
failure
failure_derive
fixedbitset
float_cmp
fnv
freeimage
freeimage_sys
freetype
freetype_gl_sys
freetype_sys
freetypegl
futures
futures_channel
futures_core
futures_executor
futures_io
futures_macro
futures_sink
futures_task
futures_util
async_await
future
io
lock
sink
stream
task
fxhash
generational_arena
generic_array
getrandom
gif
gimli
glfw
glfw_sys
glin
glin_derive
glsl
half
harfbuzz
harfbuzz_ft_sys
harfbuzz_sys
hashbrown
human_sort
ident_case
image
indexmap
instant
itertools
itoa
jpeg_decoder
lazy_static
libc
libm
lock_api
log
lut_parser
matrixmultiply
memchr
memoffset
meshopt
miniz_oxide
monotonic_clock
mopa
mutiny_derive
na
nalgebra
base
geometry
linalg
ncollide3d
bounding_volume
interpolation
partitioning
pipeline
procedural
query
algorithms
closest_points
contact
distance
nonlinear_time_of_impact
point
proximity
ray
time_of_impact
visitors
shape
transformation
utils
nom
num_complex
num_cpus
num_integer
num_iter
num_rational
num_traits
numext_constructor
numext_fixed_uint
numext_fixed_uint_core
numext_fixed_uint_hack
object
once_cell
parking_lot
parking_lot_core
pathfinding
pennereq
petgraph
pin_project_lite
pin_utils
png
polygon2
ppv_lite86
proc_macro2
proc_macro_crate
proc_macro_hack
proc_macro_nested
quote
rand
rand_chacha
rand_core
rand_distr
raw_window_handle
rawpointer
rayon
rayon_core
rect_packer
regex
regex_syntax
retain_mut
rin
rin_app
rin_blender
rin_core
rin_gl
rin_graphics
rin_gui
rin_material
rin_math
rin_postpo
rin_scene
rin_util
rin_window
rinblender
rinecs
rinecs_derive
rinecs_derive_utils
ringui_derive
rustc_demangle
rusty_pool
ryu
scopeguard
seitan
seitan_derive
semver
semver_parser
serde
serde_derive
serde_json
shaderdata_derive
simba
slab
slice_of_array
slotmap
smallvec
std140_data
streaming_iterator
strsim
syn
synstructure
thiserror
thiserror_impl
thread_local
tiff
time
toml
typenum
unchecked_unwrap
unicode_xid
vec2
vec3
weezl
x11
zlib_sys
  1
  2
  3
  4
  5
  6
  7
  8
  9
 10
 11
 12
 13
 14
 15
 16
 17
 18
 19
 20
 21
 22
 23
 24
 25
 26
 27
 28
 29
 30
 31
 32
 33
 34
 35
 36
 37
 38
 39
 40
 41
 42
 43
 44
 45
 46
 47
 48
 49
 50
 51
 52
 53
 54
 55
 56
 57
 58
 59
 60
 61
 62
 63
 64
 65
 66
 67
 68
 69
 70
 71
 72
 73
 74
 75
 76
 77
 78
 79
 80
 81
 82
 83
 84
 85
 86
 87
 88
 89
 90
 91
 92
 93
 94
 95
 96
 97
 98
 99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
use crate::stream::{FuturesUnordered, StreamExt};
use core::fmt;
use core::pin::Pin;
use core::num::NonZeroUsize;
use futures_core::future::{FusedFuture, Future};
use futures_core::stream::Stream;
use futures_core::task::{Context, Poll};
use pin_project_lite::pin_project;

pin_project! {
    /// Future for the [`for_each_concurrent`](super::StreamExt::for_each_concurrent)
    /// method.
    #[must_use = "futures do nothing unless you `.await` or poll them"]
    pub struct ForEachConcurrent<St, Fut, F> {
        #[pin]
        stream: Option<St>,
        f: F,
        futures: FuturesUnordered<Fut>,
        limit: Option<NonZeroUsize>,
    }
}

impl<St, Fut, F> fmt::Debug for ForEachConcurrent<St, Fut, F>
where
    St: fmt::Debug,
    Fut: fmt::Debug,
{
    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
        f.debug_struct("ForEachConcurrent")
            .field("stream", &self.stream)
            .field("futures", &self.futures)
            .field("limit", &self.limit)
            .finish()
    }
}

impl<St, Fut, F> ForEachConcurrent<St, Fut, F>
where St: Stream,
      F: FnMut(St::Item) -> Fut,
      Fut: Future<Output = ()>,
{
    pub(super) fn new(stream: St, limit: Option<usize>, f: F) -> Self {
        Self {
            stream: Some(stream),
            // Note: `limit` = 0 gets ignored.
            limit: limit.and_then(NonZeroUsize::new),
            f,
            futures: FuturesUnordered::new(),
        }
    }
}

impl<St, Fut, F> FusedFuture for ForEachConcurrent<St, Fut, F>
    where St: Stream,
          F: FnMut(St::Item) -> Fut,
          Fut: Future<Output = ()>,
{
    fn is_terminated(&self) -> bool {
        self.stream.is_none() && self.futures.is_empty()
    }
}

impl<St, Fut, F> Future for ForEachConcurrent<St, Fut, F>
    where St: Stream,
          F: FnMut(St::Item) -> Fut,
          Fut: Future<Output = ()>,
{
    type Output = ();

    fn poll(self: Pin<&mut Self>, cx: &mut Context<'_>) -> Poll<()> {
        let mut this = self.project();
        loop {
            let mut made_progress_this_iter = false;

            // Check if we've already created a number of futures greater than `limit`
            if this.limit.map(|limit| limit.get() > this.futures.len()).unwrap_or(true) {
                let mut stream_completed = false;
                let elem = if let Some(stream) = this.stream.as_mut().as_pin_mut() {
                    match stream.poll_next(cx) {
                        Poll::Ready(Some(elem)) => {
                            made_progress_this_iter = true;
                            Some(elem)
                        },
                        Poll::Ready(None) => {
                            stream_completed = true;
                            None
                        }
                        Poll::Pending => None,
                    }
                } else {
                    None
                };
                if stream_completed {
                    this.stream.set(None);
                }
                if let Some(elem) = elem {
                    this.futures.push((this.f)(elem));
                }
            }

            match this.futures.poll_next_unpin(cx) {
                Poll::Ready(Some(())) => made_progress_this_iter = true,
                Poll::Ready(None) => {
                    if this.stream.is_none() {
                        return Poll::Ready(())
                    }
                },
                Poll::Pending => {}
            }

            if !made_progress_this_iter {
                return Poll::Pending;
            }
        }
    }
}