sp1_gpu_basefold/
grinding_challenger.rs1use serde::{Deserialize, Serialize};
2use slop_algebra::{Field, PrimeField, PrimeField31, PrimeField32, PrimeField64};
3use slop_challenger::GrindingChallenger;
4use slop_symmetric::CryptographicPermutation;
5use sp1_gpu_challenger::{
6 grind_koala_bear_challenger_on_device, grind_multi_field32_challenger_on_device,
7 KoalaBearDuplexChallenger,
8};
9use sp1_gpu_cudart::TaskScope;
10
11pub trait DeviceGrindingChallenger: GrindingChallenger {
13 fn grind_device(&mut self, bits: usize, scope: &TaskScope) -> Self::Witness;
15}
16
17impl DeviceGrindingChallenger for KoalaBearDuplexChallenger {
19 fn grind_device(&mut self, bits: usize, scope: &TaskScope) -> Self::Witness {
20 grind_koala_bear_challenger_on_device(self, bits, scope)
21 }
22}
23
24impl<F, PF, P, const WIDTH: usize, const RATE: usize> DeviceGrindingChallenger
26 for slop_challenger::MultiField32Challenger<F, PF, P, WIDTH, RATE>
27where
28 F: PrimeField64 + PrimeField31 + PrimeField32 + Send + Sync,
29 PF: PrimeField + Field + Send + Sync,
30 P: CryptographicPermutation<[PF; WIDTH]> + Send + Sync,
31{
32 fn grind_device(&mut self, bits: usize, scope: &TaskScope) -> Self::Witness {
33 grind_multi_field32_challenger_on_device(self, bits, scope)
34 }
35}
36
37#[derive(
38 Debug, Clone, Copy, Default, PartialEq, Eq, Hash, PartialOrd, Ord, Serialize, Deserialize,
39)]
40pub struct GrindingPowCudaProver;
41
42impl GrindingPowCudaProver {
43 pub fn grind<C: DeviceGrindingChallenger + Send + Sync>(
44 challenger: &mut C,
45 bits: usize,
46 scope: &TaskScope,
47 ) -> C::Witness {
48 challenger.grind_device(bits, scope)
49 }
50}
51
52#[cfg(test)]
53mod tests {
54 use crate::grinding_challenger::DeviceGrindingChallenger;
55 use slop_algebra::AbstractField;
56 use slop_challenger::{CanObserve, CanSample, GrindingChallenger};
57 use slop_poseidon2::{Poseidon2, Poseidon2ExternalMatrixGeneral};
58 use sp1_hypercube::inner_perm;
59 use sp1_primitives::{SP1DiffusionMatrix, SP1Field};
60
61 pub type Perm = Poseidon2<SP1Field, Poseidon2ExternalMatrixGeneral, SP1DiffusionMatrix, 16, 3>;
62
63 #[test]
64 fn test_grinding() {
65 sp1_gpu_cudart::run_sync_in_place(|t| {
66 for bits in 1..20 {
67 let default_perm = inner_perm();
68 let mut challenger =
69 slop_challenger::DuplexChallenger::<SP1Field, Perm, 16, 8>::new(default_perm);
70
71 challenger.observe(SP1Field::from_canonical_u32(0));
73 challenger.observe(SP1Field::from_canonical_u32(1));
74 challenger.observe(SP1Field::from_canonical_u32(2));
75 challenger.observe(SP1Field::from_canonical_u32(3));
76 challenger.observe(SP1Field::from_canonical_u32(4));
77 challenger.observe(SP1Field::from_canonical_u32(5));
78 challenger.observe(SP1Field::from_canonical_u32(6));
79 challenger.observe(SP1Field::from_canonical_u32(7));
80
81 let mut challenger_2 = challenger.clone();
83 let _: SP1Field = challenger.sample();
84
85 let mut original_challenger = challenger.clone();
86 let result = challenger.grind_device(bits, &t);
87
88 assert!(original_challenger.check_witness(bits, result));
89
90 let mut original_challenger_2 = challenger_2.clone();
91 let result_2 = challenger_2.grind_device(bits, &t);
92
93 assert!(original_challenger_2.check_witness(bits, result_2));
94
95 assert!(original_challenger_2.sponge_state == challenger_2.sponge_state);
97 assert!(original_challenger_2.input_buffer == challenger_2.input_buffer);
98 assert!(original_challenger_2.output_buffer == challenger_2.output_buffer);
99 }
100 })
101 .unwrap()
102 }
103
104 #[test]
105 fn test_grinding_multi_field32() {
106 use slop_bn254::{
107 outer_perm, Bn254Fr, OuterPerm, OUTER_CHALLENGER_RATE, OUTER_CHALLENGER_STATE_WIDTH,
108 };
109
110 sp1_gpu_cudart::run_sync_in_place(|t| {
111 for bits in 1..10 {
112 let perm = outer_perm();
113 let mut challenger = slop_challenger::MultiField32Challenger::<
114 SP1Field,
115 Bn254Fr,
116 OuterPerm,
117 OUTER_CHALLENGER_STATE_WIDTH,
118 OUTER_CHALLENGER_RATE,
119 >::new(perm)
120 .unwrap();
121
122 challenger.observe(SP1Field::from_canonical_u32(0));
124 challenger.observe(SP1Field::from_canonical_u32(1));
125 challenger.observe(SP1Field::from_canonical_u32(2));
126 challenger.observe(SP1Field::from_canonical_u32(3));
127
128 let mut challenger_2 = challenger.clone();
130 let _: SP1Field = challenger.sample();
131
132 let mut original_challenger = challenger.clone();
133 let result = challenger.grind_device(bits, &t);
134
135 assert!(original_challenger.check_witness(bits, result));
136
137 let mut original_challenger_2 = challenger_2.clone();
138 let result_2 = challenger_2.grind_device(bits, &t);
139
140 assert!(original_challenger_2.check_witness(bits, result_2));
141
142 assert!(original_challenger_2.sponge_state == challenger_2.sponge_state);
144 assert!(original_challenger_2.input_buffer == challenger_2.input_buffer);
145 assert!(original_challenger_2.output_buffer == challenger_2.output_buffer);
146 }
147 })
148 .unwrap()
149 }
150}