baracuda_kernels/softmax/
sparsemax.rs1use core::ffi::c_void;
19use core::marker::PhantomData;
20
21use baracuda_cutlass::{Error, Result};
22use baracuda_driver::Stream;
23use baracuda_kernels_types::{
24 ArchSku, BackendKind, Element, ElementKind, KernelSku, MathPrecision, OpCategory,
25 PlanPreference, PrecisionGuarantee, SoftmaxKind, TensorMut, TensorRef, Workspace,
26};
27
28pub const SPARSEMAX_MAX_EXTENT: i32 = 1024;
34
35#[derive(Copy, Clone, Debug)]
37pub struct SparsemaxDescriptor<const N: usize> {
38 pub input_shape: [i32; N],
40 pub softmax_axis: u8,
43 pub element: ElementKind,
45}
46
47pub struct SparsemaxArgs<'a, T: Element, const N: usize> {
49 pub x: TensorRef<'a, T, N>,
51 pub y: TensorMut<'a, T, N>,
53}
54
55pub struct SparsemaxPlan<T: Element, const N: usize> {
57 desc: SparsemaxDescriptor<N>,
58 sku: KernelSku,
59 _marker: PhantomData<T>,
60}
61
62impl<T: Element, const N: usize> SparsemaxPlan<T, N> {
63 pub fn select(
65 _stream: &Stream,
66 desc: &SparsemaxDescriptor<N>,
67 _pref: PlanPreference,
68 ) -> Result<Self> {
69 if desc.element != T::KIND {
70 return Err(Error::Unsupported(
71 "baracuda-kernels::SparsemaxPlan: descriptor element != T",
72 ));
73 }
74 if (desc.softmax_axis as usize) >= N {
75 return Err(Error::InvalidProblem(
76 "baracuda-kernels::SparsemaxPlan: softmax_axis out of range",
77 ));
78 }
79 for &d in desc.input_shape.iter() {
80 if d < 0 {
81 return Err(Error::InvalidProblem(
82 "baracuda-kernels::SparsemaxPlan: shape dims must be non-negative",
83 ));
84 }
85 }
86 if N > 8 {
87 return Err(Error::Unsupported(
88 "baracuda-kernels::SparsemaxPlan: tensor rank > 8 not supported",
89 ));
90 }
91 let extent = desc.input_shape[desc.softmax_axis as usize];
92 if extent > SPARSEMAX_MAX_EXTENT {
93 return Err(Error::Unsupported(
94 "baracuda-kernels::SparsemaxPlan: extent along softmax_axis > 1024 \
95 not supported (block-cooperative BlockRadixSort tile capped at 1024)",
96 ));
97 }
98 let dtype_in_fp_family = matches!(
99 T::KIND,
100 ElementKind::F32 | ElementKind::F16 | ElementKind::Bf16 | ElementKind::F64
101 );
102 if !dtype_in_fp_family {
103 return Err(Error::Unsupported(
104 "baracuda-kernels::SparsemaxPlan: wired today: {f32, f16, bf16, f64}",
105 ));
106 }
107
108 let math_precision = match T::KIND {
109 ElementKind::F64 => MathPrecision::F64,
110 _ => MathPrecision::F32,
111 };
112 let precision_guarantee = PrecisionGuarantee {
113 math_precision,
114 accumulator: match T::KIND {
115 ElementKind::F64 => ElementKind::F64,
116 _ => ElementKind::F32,
117 },
118 bit_stable_on_same_hardware: true,
119 deterministic: true,
120 };
121 let sku = KernelSku {
122 category: OpCategory::Softmax,
123 op: SoftmaxKind::Sparsemax as u16,
124 element: T::KIND,
125 aux_element: None,
126 layout: None,
127 epilogue: None,
128 arch: ArchSku::Sm80,
129 backend: BackendKind::Bespoke,
130 precision_guarantee,
131 };
132 Ok(Self {
133 desc: *desc,
134 sku,
135 _marker: PhantomData,
136 })
137 }
138
139 pub fn can_implement(&self, args: &SparsemaxArgs<'_, T, N>) -> Result<()> {
141 if args.x.shape != self.desc.input_shape {
142 return Err(Error::InvalidProblem(
143 "baracuda-kernels::SparsemaxPlan: x shape mismatch",
144 ));
145 }
146 if args.y.shape != self.desc.input_shape {
147 return Err(Error::InvalidProblem(
148 "baracuda-kernels::SparsemaxPlan: y shape mismatch",
149 ));
150 }
151 let numel = args.x.numel();
152 let x_len = args.x.data.len() as i64;
153 let y_len = args.y.data.len() as i64;
154 if x_len < numel || y_len < numel {
155 return Err(Error::BufferTooSmall {
156 needed: numel as usize,
157 got: x_len.min(y_len) as usize,
158 });
159 }
160 Ok(())
161 }
162
163 #[inline]
165 pub fn workspace_size(&self) -> usize {
166 0
167 }
168
169 #[inline]
171 pub fn sku(&self) -> KernelSku {
172 self.sku
173 }
174
175 #[inline]
177 pub fn precision_guarantee(&self) -> PrecisionGuarantee {
178 self.sku.precision_guarantee
179 }
180
181 pub fn run(
183 &self,
184 stream: &Stream,
185 _workspace: Workspace<'_>,
186 args: SparsemaxArgs<'_, T, N>,
187 ) -> Result<()> {
188 self.can_implement(&args)?;
189 let numel = args.x.numel();
190 if numel == 0 {
191 return Ok(());
192 }
193 let x_ptr = args.x.data.as_raw().0 as *const c_void;
194 let y_ptr = args.y.data.as_raw().0 as *mut c_void;
195 let stream_ptr = stream.as_raw() as *mut c_void;
196
197 let axis = self.desc.softmax_axis as usize;
198 let shape = self.desc.input_shape;
199 let stride_x = args.x.stride;
200 let stride_y = args.y.stride;
201 let rank = N as i32;
202 let extent = shape[axis];
203 let stride_x_axis = stride_x[axis];
204 let stride_y_axis = stride_y[axis];
205
206 macro_rules! dispatch {
207 ($sym:ident) => {
208 unsafe {
209 baracuda_kernels_sys::$sym(
210 numel,
211 rank,
212 shape.as_ptr(),
213 stride_x.as_ptr(),
214 stride_y.as_ptr(),
215 axis as i32,
216 extent,
217 stride_x_axis,
218 stride_y_axis,
219 x_ptr,
220 y_ptr,
221 core::ptr::null_mut(),
222 0,
223 stream_ptr,
224 )
225 }
226 };
227 }
228 let status = match T::KIND {
229 ElementKind::F32 => dispatch!(baracuda_kernels_sparsemax_f32_run),
230 ElementKind::F16 => dispatch!(baracuda_kernels_sparsemax_f16_run),
231 ElementKind::Bf16 => dispatch!(baracuda_kernels_sparsemax_bf16_run),
232 ElementKind::F64 => dispatch!(baracuda_kernels_sparsemax_f64_run),
233 _ => {
234 return Err(Error::Unsupported(
235 "baracuda-kernels::SparsemaxPlan::run unimplemented dtype",
236 ));
237 }
238 };
239 map_status(status)
240 }
241}
242
243fn map_status(code: i32) -> Result<()> {
244 match code {
245 0 => Ok(()),
246 1 => Err(Error::MisalignedOperand),
247 2 => Err(Error::InvalidProblem(
248 "baracuda-kernels-sys reported invalid problem",
249 )),
250 3 => Err(Error::Unsupported(
251 "baracuda-kernels-sys reported unsupported configuration",
252 )),
253 4 => Err(Error::WorkspaceTooSmall { needed: 0, got: 0 }),
254 n => Err(Error::CutlassInternal(n)),
255 }
256}