use lamellar::array::prelude::*;
macro_rules! initialize_array {
(UnsafeArray,$array:ident,$init_val:ident) => {
unsafe {
$array
.dist_iter_mut()
.for_each(move |x| *x = $init_val)
.block();
}
$array.barrier();
};
(AtomicArray,$array:ident,$init_val:ident) => {
$array
.dist_iter()
.for_each(move |x| x.store($init_val))
.block();
$array.barrier();
};
(LocalLockArray,$array:ident,$init_val:ident) => {
$array
.dist_iter_mut()
.for_each(move |x| *x = $init_val)
.block();
$array.barrier();
};
(GlobalLockArray,$array:ident,$init_val:ident) => {
$array
.dist_iter_mut()
.for_each(move |x| *x = $init_val)
.block();
$array.barrier();
};
}
macro_rules! check_val {
(UnsafeArray,$val:ident,$max_val:ident,$valid:ident) => {
};
(AtomicArray,$val:ident,$max_val:ident,$valid:ident) => {
if (($val - $max_val) as f32).abs() > 0.0001 {
$valid = false;
}
};
(LocalLockArray,$val:ident,$max_val:ident,$valid:ident) => {
if (($val - $max_val) as f32).abs() > 0.0001 {
$valid = false;
}
};
(GlobalLockArray,$val:ident,$max_val:ident,$valid:ident) => {
if (($val - $max_val) as f32).abs() > 0.0001 {
$valid = false;
}
};
}
macro_rules! max_updates {
($t:ty,$num_pes:ident) => {
(std::mem::size_of::<u128>() * 8
- (<$t>::MAX as u128 / $num_pes as u128).leading_zeros() as usize
- 1 as usize)
/ $num_pes
};
}
macro_rules! onesided_iter {
(GlobalLockArray,$array:ident) => {
$array.read_lock().block().onesided_iter()
};
($arraytype:ident,$array:ident) => {
$array.onesided_iter()
};
}
macro_rules! rem_test {
($array:ident, $t:ty, $len:expr, $dist:ident) => {{
let world = lamellar::LamellarWorldBuilder::new().build();
let num_pes = world.num_pes();
let _my_pe = world.my_pe();
let array_total_len = $len;
#[allow(unused_mut)]
let mut success = true;
let array: $array<$t> = $array::<$t>::new(world.team(), array_total_len, $dist)
.block()
.into();
let max_updates = max_updates!($t, num_pes);
let max_val = 2u128.pow((max_updates * num_pes) as u32) as $t;
let zero = 0 as $t;
let init_val = max_val as $t;
initialize_array!($array, array, init_val);
array.wait_all();
array.barrier();
for idx in 0..array.len() {
for _i in 0..(max_updates as usize) {
#[allow(unused_unsafe)]
unsafe {
let _ = array.rem(idx, 2 as $t).spawn();
};
}
}
array.wait_all();
array.barrier();
#[allow(unused_unsafe)]
for (i, elem) in unsafe { onesided_iter!($array, array).into_iter().enumerate() } {
let val = elem;
check_val!($array, val, zero, success);
if !success {
eprintln!("full {:?} {:?} {:?}", i, val, zero);
}
}
array.barrier();
initialize_array!($array, array, init_val);
let half_len = array_total_len / 2;
let start_i = half_len / 2;
let end_i = start_i + half_len;
let sub_array = array.sub_array(start_i..end_i);
sub_array.barrier();
for idx in 0..sub_array.len() {
for _i in 0..(max_updates as usize) {
#[allow(unused_unsafe)]
unsafe {
let _ = sub_array.rem(idx, 2 as $t).spawn();
};
}
}
sub_array.wait_all();
sub_array.barrier();
#[allow(unused_unsafe)]
for (i, elem) in unsafe { onesided_iter!($array, sub_array).into_iter().enumerate() } {
let val = elem;
check_val!($array, val, zero, success);
if !success {
eprintln!("half {:?} {:?} {:?}", i, val, zero);
}
}
sub_array.barrier();
initialize_array!($array, array, init_val);
let pe_len = array_total_len / num_pes;
for pe in 0..num_pes {
let len = std::cmp::max(pe_len / 2, 1);
let start_i = (pe * pe_len) + len / 2;
let end_i = start_i + len;
let sub_array = array.sub_array(start_i..end_i);
sub_array.barrier();
for idx in 0..sub_array.len() {
for _i in 0..(max_updates as usize) {
#[allow(unused_unsafe)]
unsafe {
let _ = sub_array.rem(idx, 2 as $t).spawn();
};
}
}
sub_array.wait_all();
sub_array.barrier();
#[allow(unused_unsafe)]
for (i, elem) in unsafe { onesided_iter!($array, sub_array).into_iter().enumerate() } {
let val = elem;
check_val!($array, val, zero, success);
if !success {
eprintln!("pe {:?} {:?} {:?}", i, val, zero);
}
}
sub_array.barrier();
initialize_array!($array, array, init_val);
}
if !success {
eprintln!("failed");
}
}};
}
#[lamellar::main]
fn main() {
let args: Vec<String> = std::env::args().collect();
let array = args[1].clone();
let dist = args[2].clone();
let elem = args[3].clone();
let len = args[4].parse::<usize>().unwrap();
let dist_type = match dist.as_str() {
"Block" => lamellar::array::Distribution::Block,
"Cyclic" => lamellar::array::Distribution::Cyclic,
_ => panic!("unsupported dist type"),
};
match array.as_str() {
"UnsafeArray" => match elem.as_str() {
"u8" => rem_test!(UnsafeArray, u8, len, dist_type),
"u16" => rem_test!(UnsafeArray, u16, len, dist_type),
"u32" => rem_test!(UnsafeArray, u32, len, dist_type),
"u64" => rem_test!(UnsafeArray, u64, len, dist_type),
"u128" => rem_test!(UnsafeArray, u128, len, dist_type),
"usize" => rem_test!(UnsafeArray, usize, len, dist_type),
"i8" => rem_test!(UnsafeArray, i8, len, dist_type),
"i16" => rem_test!(UnsafeArray, i16, len, dist_type),
"i32" => rem_test!(UnsafeArray, i32, len, dist_type),
"i64" => rem_test!(UnsafeArray, i64, len, dist_type),
"i128" => rem_test!(UnsafeArray, i128, len, dist_type),
"isize" => rem_test!(UnsafeArray, isize, len, dist_type),
"f32" => rem_test!(UnsafeArray, f32, len, dist_type),
"f64" => rem_test!(UnsafeArray, f64, len, dist_type),
_ => eprintln!("unsupported element type"),
},
"AtomicArray" => match elem.as_str() {
"u8" => rem_test!(AtomicArray, u8, len, dist_type),
"u16" => rem_test!(AtomicArray, u16, len, dist_type),
"u32" => rem_test!(AtomicArray, u32, len, dist_type),
"u64" => rem_test!(AtomicArray, u64, len, dist_type),
"u128" => rem_test!(AtomicArray, u128, len, dist_type),
"usize" => rem_test!(AtomicArray, usize, len, dist_type),
"i8" => rem_test!(AtomicArray, i8, len, dist_type),
"i16" => rem_test!(AtomicArray, i16, len, dist_type),
"i32" => rem_test!(AtomicArray, i32, len, dist_type),
"i64" => rem_test!(AtomicArray, i64, len, dist_type),
"i128" => rem_test!(AtomicArray, i128, len, dist_type),
"isize" => rem_test!(AtomicArray, isize, len, dist_type),
"f32" => rem_test!(AtomicArray, f32, len, dist_type),
"f64" => rem_test!(AtomicArray, f64, len, dist_type),
_ => eprintln!("unsupported element type"),
},
"LocalLockArray" => match elem.as_str() {
"u8" => rem_test!(LocalLockArray, u8, len, dist_type),
"u16" => rem_test!(LocalLockArray, u16, len, dist_type),
"u32" => rem_test!(LocalLockArray, u32, len, dist_type),
"u64" => rem_test!(LocalLockArray, u64, len, dist_type),
"u128" => rem_test!(LocalLockArray, u128, len, dist_type),
"usize" => rem_test!(LocalLockArray, usize, len, dist_type),
"i8" => rem_test!(LocalLockArray, i8, len, dist_type),
"i16" => rem_test!(LocalLockArray, i16, len, dist_type),
"i32" => rem_test!(LocalLockArray, i32, len, dist_type),
"i64" => rem_test!(LocalLockArray, i64, len, dist_type),
"i128" => rem_test!(LocalLockArray, i128, len, dist_type),
"isize" => rem_test!(LocalLockArray, isize, len, dist_type),
"f32" => rem_test!(LocalLockArray, f32, len, dist_type),
"f64" => rem_test!(LocalLockArray, f64, len, dist_type),
_ => eprintln!("unsupported element type"),
},
"GlobalLockArray" => match elem.as_str() {
"u8" => rem_test!(GlobalLockArray, u8, len, dist_type),
"u16" => rem_test!(GlobalLockArray, u16, len, dist_type),
"u32" => rem_test!(GlobalLockArray, u32, len, dist_type),
"u64" => rem_test!(GlobalLockArray, u64, len, dist_type),
"u128" => rem_test!(GlobalLockArray, u128, len, dist_type),
"usize" => rem_test!(GlobalLockArray, usize, len, dist_type),
"i8" => rem_test!(GlobalLockArray, i8, len, dist_type),
"i16" => rem_test!(GlobalLockArray, i16, len, dist_type),
"i32" => rem_test!(GlobalLockArray, i32, len, dist_type),
"i64" => rem_test!(GlobalLockArray, i64, len, dist_type),
"i128" => rem_test!(GlobalLockArray, i128, len, dist_type),
"isize" => rem_test!(GlobalLockArray, isize, len, dist_type),
"f32" => rem_test!(GlobalLockArray, f32, len, dist_type),
"f64" => rem_test!(GlobalLockArray, f64, len, dist_type),
_ => {} },
_ => eprintln!("unsupported array type"),
}
}