mirror of
https://github.com/logos-storage/proof-aggregation.git
synced 2026-01-02 22:03:10 +00:00
395 lines
17 KiB
Rust
395 lines
17 KiB
Rust
// some tests for approach 2 of the tree recursion
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#[cfg(test)]
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mod tests {
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use std::fs;
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use std::time::Instant;
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use plonky2::gates::constant::ConstantGate;
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use plonky2::iop::witness::{PartialWitness, WitnessWrite};
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use plonky2::plonk::circuit_builder::CircuitBuilder;
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use plonky2::plonk::circuit_data::{CircuitConfig, CommonCircuitData, VerifierCircuitTarget};
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use plonky2::plonk::config::{AlgebraicHasher, GenericConfig, Hasher};
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use plonky2::plonk::proof::{ProofWithPublicInputs, ProofWithPublicInputsTarget};
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use codex_plonky2_circuits::circuits::sample_cells::SampleCircuit;
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use crate::params::{F, D, C, HF};
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use codex_plonky2_circuits::recursion::circuits::sampling_inner_circuit::SamplingRecursion;
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// use codex_plonky2_circuits::recursion::circuits::inner_circuit::InnerCircuit;
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// use codex_plonky2_circuits::recursion::circuits::leaf_circuit::{LeafCircuit};
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// use plonky2_poseidon2::poseidon2_hash::poseidon2::{Poseidon2, Poseidon2Hash};
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use crate::gen_input::gen_testing_circuit_input;
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use crate::params::Params;
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use codex_plonky2_circuits::recursion::uniform::{leaf::{LeafCircuit,LeafInput,LeafTargets},node::{NodeCircuit,NodeInput,NodeTargets}, tree::TreeRecursion};
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#[test]
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fn test_treeuniform() -> anyhow::Result<()> {
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let config = CircuitConfig::standard_recursion_config();
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let mut sampling_builder = CircuitBuilder::<F, D>::new(config);
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//------------ sampling inner circuit ----------------------
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// Circuit that does the sampling - default input
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let mut params = Params::default();
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params.input_params.n_samples = 100;
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params.circuit_params.n_samples = 100;
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let one_circ_input = gen_testing_circuit_input::<F,D>(¶ms.input_params);
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let samp_circ = SampleCircuit::<F,D,HF>::new(params.circuit_params);
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let inner_tar = samp_circ.sample_slot_circuit_with_public_input(&mut sampling_builder)?;
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// get generate a sampling proof
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let mut pw = PartialWitness::<F>::new();
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samp_circ.sample_slot_assign_witness(&mut pw,&inner_tar,&one_circ_input)?;
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let inner_data = sampling_builder.build::<C>();
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println!("sampling circuit degree bits = {:?}", inner_data.common.degree_bits());
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let inner_proof = inner_data.prove(pw)?;
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let proofs: Vec<ProofWithPublicInputs<F, C, D>> = (0..4).map(|i| inner_proof.clone()).collect();
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// ------------------- tree --------------------
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let mut tree = TreeRecursion::<F,D,C,HF>::build(inner_data.common.clone())?;
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let root = tree.prove_tree(&proofs, inner_data.verifier_data())?;
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Ok(())
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}
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#[test]
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fn test_2uniform() -> anyhow::Result<()> {
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let config = CircuitConfig::standard_recursion_config();
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let mut sampling_builder = CircuitBuilder::<F, D>::new(config);
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//------------ sampling inner circuit ----------------------
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// Circuit that does the sampling - default input
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let mut params = Params::default();
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params.input_params.n_samples = 100;
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params.circuit_params.n_samples = 100;
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let one_circ_input = gen_testing_circuit_input::<F,D>(¶ms.input_params);
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let samp_circ = SampleCircuit::<F,D,HF>::new(params.circuit_params);
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let inner_tar = samp_circ.sample_slot_circuit_with_public_input(&mut sampling_builder)?;
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// get generate a sampling proof
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let mut pw = PartialWitness::<F>::new();
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samp_circ.sample_slot_assign_witness(&mut pw,&inner_tar,&one_circ_input)?;
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let inner_data = sampling_builder.build::<C>();
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println!("sampling circuit degree bits = {:?}", inner_data.common.degree_bits());
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let inner_proof = inner_data.prove(pw)?;
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// serialize circuit into JSON
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let common_circuit_data_serialized = serde_json::to_string(&inner_data.common ).unwrap();
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fs::write("circ_common.json" , common_circuit_data_serialized) .expect("Unable to write file");
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// ------------------- leaf --------------------
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let config = CircuitConfig::standard_recursion_config();
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let mut builder = CircuitBuilder::<F, D>::new(config.clone());
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let leaf_circ = LeafCircuit::<F,D,C,HF>::new(inner_data.common.clone());
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let leaf_targ = leaf_circ.build(&mut builder)?;
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// let (proof_targ, vd_targ) = build_proof_ver_circuit::<HF>(&mut builder,&inner_data.common).unwrap();
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// let leaf_targets = leaf_circuit.build::<C,HF>(&mut builder)?;
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// // add a ConstantGate
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// builder.add_gate(
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// ConstantGate::new(config.num_constants),
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// vec![],
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// );
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let leaf_data = builder.build::<C>();
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println!("leaf circuit size = {:?}", leaf_data.common.degree_bits());
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// serialize circuit into JSON
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let common_circuit_data_serialized = serde_json::to_string(&leaf_data.common ).unwrap();
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fs::write("leaf_common.json" , common_circuit_data_serialized) .expect("Unable to write file");
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// prove
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let mut pw = PartialWitness::<F>::new();
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// pw.set_proof_with_pis_target(&proof_targ, &inner_proof)?;
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// pw.set_verifier_data_target(&vd_targ,&inner_data.verifier_only)?;
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let leaf_in = LeafInput{
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inner_proof: inner_proof.clone(),
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verifier_data: inner_data.verifier_data().clone(),
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};
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leaf_circ.assign_targets(&mut pw, &leaf_targ, &leaf_in)?;
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let leaf_proof = leaf_data.prove(pw)?;
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leaf_data.verify(leaf_proof.clone())?;
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// ------------- node1 circuit ------------------
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let config = CircuitConfig::standard_recursion_config();
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let mut builder = CircuitBuilder::<F, D>::new(config);
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let node_circ = NodeCircuit::<F,D,C,HF>::new(leaf_data.common.clone());
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let node_targ = node_circ.build(&mut builder)?;
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// let (proof_targ, vd_targ) = build_node_proof_circuit::<HF>(&mut builder,&leaf_data.common).unwrap();
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// let leaf_targets = leaf_circuit.build::<C,HF>(&mut builder)?;
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let node_data = builder.build::<C>();
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println!("node circuit size = {:?}", node_data.common.degree_bits());
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// serialize circuit into JSON
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let common_circuit_data_serialized = serde_json::to_string(&node_data.common ).unwrap();
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fs::write("node_common.json" , common_circuit_data_serialized) .expect("Unable to write file");
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// prove
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let mut pw = PartialWitness::<F>::new();
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// pw.set_proof_with_pis_target(&proof_targ[0], &leaf_proof)?;
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// pw.set_proof_with_pis_target(&proof_targ[1], &leaf_proof)?;
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// pw.set_verifier_data_target(&vd_targ,&leaf_data.verifier_only)?;
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let node_in = NodeInput{
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node_proofs: [leaf_proof.clone(),leaf_proof.clone()],
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verifier_data: leaf_data.verifier_data(),
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};
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node_circ.assign_targets(&mut pw, &node_targ,&node_in)?;
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let node_proof = node_data.prove(pw)?;
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node_data.verify(node_proof.clone())?;
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// ------------- check ----------------
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// prove
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let mut pw = PartialWitness::<F>::new();
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let node_in = NodeInput{
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node_proofs: [node_proof.clone(),node_proof.clone()],
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verifier_data: node_data.verifier_data(),
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};
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node_circ.assign_targets(&mut pw, &node_targ,&node_in)?;
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let node2_proof = node_data.prove(pw)?;
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node_data.verify(node2_proof.clone())?;
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// ------------- node2 circuit ------------------
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// let config = CircuitConfig::standard_recursion_config();
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// let mut builder = CircuitBuilder::<F, D>::new(config);
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//
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// let (proof_targ, vd_targ) = build_node_proof_circuit::<HF>(&mut builder,&node_data.common).unwrap();
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// // let leaf_targets = leaf_circuit.build::<C,HF>(&mut builder)?;
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//
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// let node2_data = builder.build::<C>();
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// println!("node2 circuit size = {:?}", node2_data.common.degree_bits());
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//
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// // serialize circuit into JSON
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// let common_circuit_data_serialized = serde_json::to_string(&node2_data.common ).unwrap();
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// fs::write("node2_common.json" , common_circuit_data_serialized) .expect("Unable to write file");
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//
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// // prove
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// let mut pw = PartialWitness::<F>::new();
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// pw.set_proof_with_pis_target(&proof_targ[0], &leaf_proof)?;
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// pw.set_proof_with_pis_target(&proof_targ[1], &leaf_proof)?;
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// pw.set_verifier_data_target(&vd_targ,&leaf_data.verifier_only)?;
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//
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// let node_proof = node2_data.prove(pw)?;
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// prove node
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// let mut pw = PartialWitness::<F>::new();
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// pw.set_proof_with_pis_target(&proof_targ[0], &node_proof)?;
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// pw.set_proof_with_pis_target(&proof_targ[1], &node_proof)?;
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// pw.set_verifier_data_target(&vd_targ,&node_data.verifier_only)?;
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//
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// let node2_proof = node_data.prove(pw)?;
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Ok(())
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}
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#[test]
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fn test_uniform_recursion() -> anyhow::Result<()> {
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// const N: usize = 2; // binary tree
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// const M: usize = 1; // number of proofs in leaves
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// const K: usize = 8;
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let config = CircuitConfig::standard_recursion_config();
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let mut sampling_builder = CircuitBuilder::<F, D>::new(config);
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//------------ sampling inner circuit ----------------------
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// Circuit that does the sampling - default input
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let mut params = Params::default();
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params.input_params.n_samples = 100;
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params.circuit_params.n_samples = 100;
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let one_circ_input = gen_testing_circuit_input::<F,D>(¶ms.input_params);
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let samp_circ = SampleCircuit::<F,D,HF>::new(params.circuit_params);
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let inner_tar = samp_circ.sample_slot_circuit_with_public_input(&mut sampling_builder)?;
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// get generate a sampling proof
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let mut pw = PartialWitness::<F>::new();
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samp_circ.sample_slot_assign_witness(&mut pw,&inner_tar,&one_circ_input)?;
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let inner_data = sampling_builder.build::<C>();
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println!("sampling circuit degree bits = {:?}", inner_data.common.degree_bits());
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let inner_proof = inner_data.prove(pw)?;
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// serialize circuit into JSON
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let common_circuit_data_serialized = serde_json::to_string(&inner_data.common ).unwrap();
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fs::write("circ_common.json" , common_circuit_data_serialized) .expect("Unable to write file");
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// ------------------- leaf --------------------
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let config = CircuitConfig::standard_recursion_config();
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let mut builder = CircuitBuilder::<F, D>::new(config.clone());
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let (proof_targ, vd_targ) = build_proof_ver_circuit::<HF>(&mut builder,&inner_data.common).unwrap();
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// let leaf_targets = leaf_circuit.build::<C,HF>(&mut builder)?;
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// // add a ConstantGate
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// builder.add_gate(
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// ConstantGate::new(config.num_constants),
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// vec![],
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// );
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let leaf_data = builder.build::<C>();
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println!("leaf circuit size = {:?}", leaf_data.common.degree_bits());
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// serialize circuit into JSON
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let common_circuit_data_serialized = serde_json::to_string(&leaf_data.common ).unwrap();
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fs::write("leaf_common.json" , common_circuit_data_serialized) .expect("Unable to write file");
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// prove
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let mut pw = PartialWitness::<F>::new();
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pw.set_proof_with_pis_target(&proof_targ, &inner_proof)?;
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pw.set_verifier_data_target(&vd_targ,&inner_data.verifier_only)?;
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let leaf_proof = leaf_data.prove(pw)?;
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// ------------- node1 circuit ------------------
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let config = CircuitConfig::standard_recursion_config();
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let mut builder = CircuitBuilder::<F, D>::new(config);
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let (proof_targ, vd_targ) = build_node_proof_circuit::<HF>(&mut builder,&leaf_data.common).unwrap();
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// let leaf_targets = leaf_circuit.build::<C,HF>(&mut builder)?;
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let node_data = builder.build::<C>();
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println!("node circuit size = {:?}", node_data.common.degree_bits());
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// serialize circuit into JSON
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let common_circuit_data_serialized = serde_json::to_string(&node_data.common ).unwrap();
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fs::write("node_common.json" , common_circuit_data_serialized) .expect("Unable to write file");
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// prove
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let mut pw = PartialWitness::<F>::new();
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pw.set_proof_with_pis_target(&proof_targ[0], &leaf_proof)?;
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pw.set_proof_with_pis_target(&proof_targ[1], &leaf_proof)?;
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pw.set_verifier_data_target(&vd_targ,&leaf_data.verifier_only)?;
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let node_proof = node_data.prove(pw)?;
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// ------------- node2 circuit ------------------
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// let config = CircuitConfig::standard_recursion_config();
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// let mut builder = CircuitBuilder::<F, D>::new(config);
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//
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// let (proof_targ, vd_targ) = build_node_proof_circuit::<HF>(&mut builder,&node_data.common).unwrap();
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// // let leaf_targets = leaf_circuit.build::<C,HF>(&mut builder)?;
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//
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// let node2_data = builder.build::<C>();
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// println!("node2 circuit size = {:?}", node2_data.common.degree_bits());
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//
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// // serialize circuit into JSON
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// let common_circuit_data_serialized = serde_json::to_string(&node2_data.common ).unwrap();
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// fs::write("node2_common.json" , common_circuit_data_serialized) .expect("Unable to write file");
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//
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// // prove
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// let mut pw = PartialWitness::<F>::new();
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// pw.set_proof_with_pis_target(&proof_targ[0], &leaf_proof)?;
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// pw.set_proof_with_pis_target(&proof_targ[1], &leaf_proof)?;
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// pw.set_verifier_data_target(&vd_targ,&leaf_data.verifier_only)?;
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//
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// let node_proof = node2_data.prove(pw)?;
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// prove node
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let mut pw = PartialWitness::<F>::new();
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pw.set_proof_with_pis_target(&proof_targ[0], &node_proof)?;
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pw.set_proof_with_pis_target(&proof_targ[1], &node_proof)?;
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pw.set_verifier_data_target(&vd_targ,&node_data.verifier_only)?;
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let node2_proof = node_data.prove(pw)?;
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Ok(())
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}
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/// builds the node circuit
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pub fn build_proof_ver_circuit<
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H: AlgebraicHasher<F>,
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>(
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builder: &mut CircuitBuilder<F, D>,
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common_data: &CommonCircuitData<F, D>,
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) -> anyhow::Result<(ProofWithPublicInputsTarget<D>, VerifierCircuitTarget)>{
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// the proof virtual targets
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// let mut proof_targets = vec![];
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let mut inner_pub_input = vec![];
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// for _i in 0..N {
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let vir_proof = builder.add_virtual_proof_with_pis(common_data);
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// collect the public input
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inner_pub_input.extend_from_slice(&vir_proof.public_inputs);
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// collect the proof targets
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// proof_targets.push(vir_proof);
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// }
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// hash the public input & make it public
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let hash_inner_pub_input = builder.hash_n_to_hash_no_pad::<H>(inner_pub_input);
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builder.register_public_inputs(&hash_inner_pub_input.elements);
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// virtual target for the verifier data
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let inner_verifier_data = builder.add_virtual_verifier_data(common_data.config.fri_config.cap_height);
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// verify the proofs in-circuit
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// for i in 0..N {
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builder.verify_proof::<C>(&vir_proof,&inner_verifier_data,&common_data);
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// }
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// let proof_target_array = vec_to_array::<N,ProofWithPublicInputsTarget<D>>(proof_targets)?;
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Ok(
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(vir_proof,
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inner_verifier_data)
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)
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}
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/// builds the node circuit
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pub fn build_node_proof_circuit<
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H: AlgebraicHasher<F>,
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>(
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builder: &mut CircuitBuilder<F, D>,
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common_data: &CommonCircuitData<F, D>,
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) -> anyhow::Result<(Vec<ProofWithPublicInputsTarget<D>>, VerifierCircuitTarget)>{
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// the proof virtual targets
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let mut proof_targets = vec![];
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let mut inner_pub_input = vec![];
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for _i in 0..2 {
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let vir_proof = builder.add_virtual_proof_with_pis(common_data);
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// collect the public input
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inner_pub_input.extend_from_slice(&vir_proof.public_inputs);
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// collect the proof targets
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proof_targets.push(vir_proof);
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}
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// hash the public input & make it public
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let hash_inner_pub_input = builder.hash_n_to_hash_no_pad::<H>(inner_pub_input);
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builder.register_public_inputs(&hash_inner_pub_input.elements);
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// virtual target for the verifier data
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let inner_verifier_data = builder.add_virtual_verifier_data(common_data.config.fri_config.cap_height);
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// verify the proofs in-circuit
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for i in 0..2 {
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builder.verify_proof::<C>(&proof_targets[i],&inner_verifier_data,&common_data);
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}
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// let proof_target_array = vec_to_array::<N,ProofWithPublicInputsTarget<D>>(proof_targets)?;
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Ok(
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(proof_targets,
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inner_verifier_data)
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)
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}
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} |