1extern crate alloc;
2
3#[macro_use]
4extern crate derive_new;
5
6pub use cubecl_zspace as zspace;
7
8pub mod frontend;
10pub mod io;
12
13pub mod post_processing;
14
15pub use cubecl_common::future;
17
18use cubecl_ir::LineSize;
19use cubecl_runtime::client::ComputeClient;
20pub use cubecl_runtime::memory_management::MemoryConfiguration;
21use cubecl_runtime::server::CubeCountSelection;
22pub use frontend::cmma;
23
24pub use cubecl_ir as ir;
26
27pub mod codegen;
28pub mod compute;
29pub mod prelude;
30
31mod pod;
32
33pub use codegen::*;
34pub use cubecl_runtime::runtime::*;
35pub use pod::*;
36
37pub use cubecl_macros::*;
38pub use cubecl_runtime::benchmark;
39pub use cubecl_runtime::client;
40pub use cubecl_runtime::compiler::{CompilationError, Compiler, CubeTask};
41pub use cubecl_runtime::memory_management::MemoryUsage;
42pub use cubecl_runtime::server;
43pub use cubecl_runtime::tune;
44
45use frontend::LaunchArg;
46
47pub use cubecl_common::*;
48
49pub use prelude::CubeCount;
50pub use prelude::{CubeDim, ExecutionMode};
51
52pub use num_traits;
53
54mod id;
55pub use id::*;
56
57pub fn calculate_cube_count_elemwise<R: Runtime>(
60 client: &ComputeClient<R>,
61 num_elems: usize,
62 cube_dim: CubeDim,
63) -> CubeCount {
64 let num_cubes = num_elems.div_ceil(cube_dim.num_elems() as usize);
65 CubeCountSelection::new(client, num_cubes as u32).cube_count()
66}
67
68pub fn tensor_vectorization_factor(
69 factors: &[LineSize],
70 shape: &[usize],
71 strides: &[usize],
72 dim: usize,
73) -> LineSize {
74 tensor_line_size_parallel(factors.iter().cloned(), shape, strides, dim)
75}
76pub fn tensor_line_size(
77 factors: &[LineSize],
78 shape: &[usize],
79 strides: &[usize],
80 dim: usize,
81) -> LineSize {
82 tensor_line_size_parallel(factors.iter().cloned(), shape, strides, dim)
83}
84
85#[derive(Debug, Clone)]
86pub enum LineSizeError {
87 AxisOutOfBounds,
88 StrideMismatch,
89 NoValidLineSize,
90}
91
92pub fn tensor_line_size_parallel(
104 supported_line_sizes: impl Iterator<Item = LineSize>,
105 shape: &[usize],
106 strides: &[usize],
107 axis: usize,
108) -> LineSize {
109 try_tensor_line_size_parallel(supported_line_sizes, shape, strides, axis).unwrap_or(1)
110}
111
112pub fn try_tensor_line_size_parallel(
114 supported_line_sizes: impl Iterator<Item = LineSize>,
115 shape: &[usize],
116 strides: &[usize],
117 axis: usize,
118) -> Result<LineSize, LineSizeError> {
119 let stride = strides.get(axis).ok_or(LineSizeError::AxisOutOfBounds)?;
120 if *stride != 1 {
121 return Err(LineSizeError::StrideMismatch);
122 }
123
124 let axis_shape = shape.get(axis).ok_or(LineSizeError::AxisOutOfBounds)?;
125
126 let next_stride = *strides
127 .iter()
128 .filter(|&&stride| stride > 1)
129 .min()
130 .unwrap_or(&0);
131
132 supported_line_sizes
133 .filter(|&line_size| axis_shape % line_size == 0 && next_stride % line_size == 0)
134 .max()
135 .ok_or(LineSizeError::NoValidLineSize)
136}
137
138pub fn tensor_line_size_perpendicular(
149 supported_line_sizes: impl Iterator<Item = LineSize>,
150 shape: &[usize],
151 strides: &[usize],
152 axis: usize,
153) -> LineSize {
154 try_tensor_line_size_perpendicular(supported_line_sizes, shape, strides, axis).unwrap_or(1)
155}
156
157pub fn try_tensor_line_size_perpendicular(
159 supported_line_sizes: impl Iterator<Item = LineSize>,
160 shape: &[usize],
161 strides: &[usize],
162 axis: usize,
163) -> Result<LineSize, LineSizeError> {
164 let axis_stride = strides.get(axis).ok_or(LineSizeError::AxisOutOfBounds)?;
165
166 let prod_shape_axes_smaller_strides = strides
167 .iter()
168 .zip(shape.iter())
169 .filter(|(stride, _)| **stride < *axis_stride)
170 .map(|(_, shape)| shape)
171 .product::<usize>();
172
173 if *axis_stride != prod_shape_axes_smaller_strides {
174 return Err(LineSizeError::StrideMismatch);
175 }
176
177 supported_line_sizes
178 .filter(|&line_size| *axis_stride % line_size == 0)
179 .max()
180 .ok_or(LineSizeError::NoValidLineSize)
181}
182
183pub type RuntimeArg<'a, T, R> = <T as LaunchArg>::RuntimeArg<'a, R>;
185
186#[cfg(feature = "export_tests")]
187pub mod runtime_tests;