1use crate::{CubeBackend, CubeRuntime, kernel, tensor::CubeTensor};
2use burn_backend::tensor::{BoolTensor, FloatTensor, IntTensor, QuantizedTensor};
3use burn_backend::{DType, Shape};
4pub use burn_cubecl_fusion::{CubeFusionHandle, FallbackOperation};
5use burn_fusion::UnfusedOp;
6use burn_fusion::{
7 FusionBackend, FusionRuntime,
8 stream::{Operation, OrderedExecution},
9};
10use burn_ir::{BackendIr, TensorHandle};
11use burn_std::Metadata;
12use core::marker::PhantomData;
13use std::sync::Arc;
14
15mod registry;
16pub use burn_cubecl_fusion::optim::{CubeOptimization, CubeOptimizationState, FusedOperation};
17pub use registry::{
18 BUILTIN_NAMES, CubeFuser, OptimizationProvider, RegistryError, register, remove,
19};
20
21impl<R> burn_fusion::Optimization<FusionCubeRuntime<R>> for CubeOptimization<R>
22where
23 R: CubeRuntime,
24{
25 fn execute(
26 &mut self,
27 context: &mut burn_fusion::stream::Context<
28 <FusionCubeRuntime<R> as FusionRuntime>::FusionHandle,
29 >,
30 execution: &OrderedExecution<FusionCubeRuntime<R>>,
31 ) {
32 self.run(context, &|index| {
33 let operation = execution.operation_within_optimization(index);
34 Box::new(FallbackOperationWrapper::new(operation))
35 })
36 }
37
38 fn to_state(&self) -> CubeOptimizationState {
39 Self::to_state(self)
40 }
41
42 fn from_state(device: &R::Device, state: CubeOptimizationState) -> Self {
43 registry::restore::<R>(device, state)
44 }
45}
46
47struct FallbackOperationWrapper<O: Clone> {
48 operation: O,
49}
50
51impl<O: Clone> FallbackOperationWrapper<O> {
52 fn new(op: O) -> Self {
53 Self { operation: op }
54 }
55}
56
57impl<R: CubeRuntime> FallbackOperation<R>
58 for FallbackOperationWrapper<Arc<dyn Operation<FusionCubeRuntime<R>>>>
59{
60 fn run(&self, context: &mut burn_fusion::stream::Context<CubeFusionHandle<R>>) {
61 self.operation.as_ref().execute(&mut context.handles);
62 }
63}
64
65impl<R: CubeRuntime> FallbackOperation<R>
66 for FallbackOperationWrapper<UnfusedOp<FusionCubeRuntime<R>>>
67{
68 fn run(&self, context: &mut burn_fusion::stream::Context<CubeFusionHandle<R>>) {
69 self.operation.execute(&mut context.handles);
70 }
71}
72
73impl<R: CubeRuntime> BackendIr for CubeBackend<R> {
74 type Handle = CubeFusionHandle<R>;
75
76 fn float_tensor(handle: TensorHandle<Self::Handle>) -> FloatTensor<Self> {
77 into_tensor(handle.handle, handle.shape)
78 }
79
80 fn int_tensor(handle: TensorHandle<Self::Handle>) -> IntTensor<Self> {
81 into_tensor(handle.handle, handle.shape)
82 }
83
84 fn bool_tensor(handle: TensorHandle<Self::Handle>) -> BoolTensor<Self> {
85 into_tensor(handle.handle, handle.shape)
86 }
87
88 fn quantized_tensor(handle: TensorHandle<Self::Handle>) -> QuantizedTensor<Self> {
89 into_tensor(handle.handle, handle.shape)
90 }
91
92 fn float_tensor_handle(tensor: FloatTensor<Self>) -> Self::Handle {
93 tensor.into()
94 }
95
96 fn int_tensor_handle(tensor: IntTensor<Self>) -> Self::Handle {
97 tensor.into()
98 }
99
100 fn bool_tensor_handle(tensor: BoolTensor<Self>) -> Self::Handle {
101 tensor.into()
102 }
103
104 fn quantized_tensor_handle(tensor: QuantizedTensor<Self>) -> Self::Handle {
105 tensor.into()
106 }
107}
108
109impl<R: CubeRuntime> FusionRuntime for FusionCubeRuntime<R> {
110 type OptimizationState = CubeOptimizationState;
111 type Optimization = CubeOptimization<R>;
112 type FusionHandle = CubeFusionHandle<R>;
113 type FusionDevice = R::CubeDevice;
114
115 fn fusers(device: R::Device) -> Vec<Box<dyn burn_fusion::OperationFuser<Self::Optimization>>> {
116 registry::fusers::<R>(&device)
117 }
118}
119
120#[derive(Debug)]
122pub struct FusionCubeRuntime<R: CubeRuntime> {
123 _b: PhantomData<R>,
124}
125
126impl<R: CubeRuntime> FusionBackend for CubeBackend<R> {
127 type FusionRuntime = FusionCubeRuntime<R>;
128
129 type FullPrecisionBackend = CubeBackend<R>;
130
131 fn cast_float(tensor: FloatTensor<Self>, dtype: DType) -> Self::Handle {
132 kernel::cast(tensor, dtype).into()
133 }
134
135 fn memory_persistent(device: &Self::Device, enabled: bool) {
136 use cubecl::MemoryAllocationMode;
137
138 let client = R::client(device);
139 let mode = match enabled {
140 true => MemoryAllocationMode::Persistent,
141 false => MemoryAllocationMode::Auto,
142 };
143 unsafe { client.allocation_mode(mode) };
146 }
147}
148
149fn into_tensor<R: CubeRuntime>(handle: CubeFusionHandle<R>, shape: Shape) -> CubeTensor<R> {
150 CubeTensor {
151 client: handle.client.clone(),
152 handle: handle.handle.clone(),
153 device: handle.device.clone(),
154 meta: Box::new(Metadata::new(shape, handle.strides.clone())),
155 dtype: handle.dtype,
156 qparams: handle.qparams.clone(),
157 }
158}
159
160impl<R: CubeRuntime> From<CubeTensor<R>> for CubeFusionHandle<R> {
161 fn from(value: CubeTensor<R>) -> Self {
162 Self {
163 client: value.client.clone(),
164 handle: value.handle.clone(),
165 device: value.device.clone(),
166 strides: value.meta.strides.clone(),
167 dtype: value.dtype,
168 qparams: value.qparams.clone(),
169 }
170 }
171}