mirror of
https://github.com/logos-storage/plonky2.git
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* First draft of linking arithmetic Stark into the CTL mechanism.
* Handle {ADD,SUB,MUL}FP254 operations explicitly in `modular.rs`.
* Adjust argument order; add tests.
* Add CTLs for ADD, MUL, SUB, LT and GT.
* Add CTLs for {ADD,MUL,SUB}MOD, DIV and MOD.
* Add CTLs for {ADD,MUL,SUB}FP254 operations.
* Refactor the CPU/arithmetic CTL mapping; add some documentation.
* Minor comment fixes.
* Combine addcy CTLs at the expense of repeated constraint evaluation.
* Combine addcy CTLs at the expense of repeated constraint evaluation.
* Merge `*FP254` CTL into main CTL; rename some registers.
* Connect extra argument from CPU in binary ops to facilitate combining with ternary ops.
* Merge modular ops CTL into main CTL.
* Refactor DIV and MOD code into its own module.
* Merge DIV and MOD into arithmetic CTL.
* Clippy.
* Fixes related to merge.
* Simplify register naming.
* Generate u16 BN254 modulus limbs at compile time.
* Clippy.
* Add degree bits ranges for Arithmetic table.
144 lines
4.9 KiB
Rust
144 lines
4.9 KiB
Rust
#![allow(clippy::upper_case_acronyms)]
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use std::collections::HashMap;
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use std::marker::PhantomData;
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use std::time::Duration;
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use env_logger::{try_init_from_env, Env, DEFAULT_FILTER_ENV};
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use eth_trie_utils::partial_trie::{HashedPartialTrie, PartialTrie};
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use keccak_hash::keccak;
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use log::info;
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use plonky2::field::goldilocks_field::GoldilocksField;
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use plonky2::plonk::config::PoseidonGoldilocksConfig;
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use plonky2::util::serialization::{DefaultGateSerializer, DefaultGeneratorSerializer};
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use plonky2::util::timing::TimingTree;
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use plonky2_evm::all_stark::AllStark;
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use plonky2_evm::config::StarkConfig;
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use plonky2_evm::fixed_recursive_verifier::AllRecursiveCircuits;
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use plonky2_evm::generation::{GenerationInputs, TrieInputs};
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use plonky2_evm::proof::BlockMetadata;
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use plonky2_evm::prover::prove;
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use plonky2_evm::verifier::verify_proof;
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use plonky2_evm::Node;
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type F = GoldilocksField;
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const D: usize = 2;
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type C = PoseidonGoldilocksConfig;
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/// Execute the empty list of transactions, i.e. a no-op.
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#[test]
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#[ignore] // Too slow to run on CI.
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fn test_empty_txn_list() -> anyhow::Result<()> {
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init_logger();
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let all_stark = AllStark::<F, D>::default();
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let config = StarkConfig::standard_fast_config();
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let block_metadata = BlockMetadata::default();
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let state_trie = HashedPartialTrie::from(Node::Empty);
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let transactions_trie = HashedPartialTrie::from(Node::Empty);
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let receipts_trie = HashedPartialTrie::from(Node::Empty);
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let storage_tries = vec![];
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let state_trie_root = state_trie.hash();
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let txns_trie_root = transactions_trie.hash();
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let receipts_trie_root = receipts_trie.hash();
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let mut contract_code = HashMap::new();
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contract_code.insert(keccak(vec![]), vec![]);
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let inputs = GenerationInputs {
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signed_txns: vec![],
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tries: TrieInputs {
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state_trie,
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transactions_trie,
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receipts_trie,
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storage_tries,
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},
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contract_code,
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block_metadata,
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addresses: vec![],
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};
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let mut timing = TimingTree::new("prove", log::Level::Debug);
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// TODO: This is redundant; prove_root below calls this prove method internally.
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// Just keeping it for now because the root proof returned by prove_root doesn't contain public
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// values yet, and we want those for the assertions below.
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let proof = prove::<F, C, D>(&all_stark, &config, inputs.clone(), &mut timing)?;
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timing.filter(Duration::from_millis(100)).print();
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assert_eq!(
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proof.public_values.trie_roots_before.state_root,
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state_trie_root
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);
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assert_eq!(
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proof.public_values.trie_roots_after.state_root,
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state_trie_root
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);
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assert_eq!(
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proof.public_values.trie_roots_before.transactions_root,
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txns_trie_root
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);
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assert_eq!(
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proof.public_values.trie_roots_after.transactions_root,
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txns_trie_root
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);
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assert_eq!(
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proof.public_values.trie_roots_before.receipts_root,
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receipts_trie_root
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);
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assert_eq!(
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proof.public_values.trie_roots_after.receipts_root,
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receipts_trie_root
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);
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verify_proof(&all_stark, proof, &config)?;
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let all_circuits = AllRecursiveCircuits::<F, C, D>::new(
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&all_stark,
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&[9..18, 9..15, 9..15, 9..10, 9..12, 9..18], // Minimal ranges to prove an empty list
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&config,
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);
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{
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let gate_serializer = DefaultGateSerializer;
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let generator_serializer = DefaultGeneratorSerializer {
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_phantom: PhantomData::<C>,
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};
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let timing = TimingTree::new("serialize AllRecursiveCircuits", log::Level::Info);
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let all_circuits_bytes = all_circuits
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.to_bytes(&gate_serializer, &generator_serializer)
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.map_err(|_| anyhow::Error::msg("AllRecursiveCircuits serialization failed."))?;
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timing.filter(Duration::from_millis(100)).print();
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info!(
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"AllRecursiveCircuits length: {} bytes",
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all_circuits_bytes.len()
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);
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let timing = TimingTree::new("deserialize AllRecursiveCircuits", log::Level::Info);
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let all_circuits_from_bytes = AllRecursiveCircuits::<F, C, D>::from_bytes(
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&all_circuits_bytes,
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&gate_serializer,
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&generator_serializer,
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)
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.map_err(|_| anyhow::Error::msg("AllRecursiveCircuits deserialization failed."))?;
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timing.filter(Duration::from_millis(100)).print();
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assert_eq!(all_circuits, all_circuits_from_bytes);
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}
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let mut timing = TimingTree::new("prove", log::Level::Info);
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let root_proof = all_circuits.prove_root(&all_stark, &config, inputs, &mut timing)?;
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timing.filter(Duration::from_millis(100)).print();
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all_circuits.verify_root(root_proof.clone())?;
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let agg_proof = all_circuits.prove_aggregation(false, &root_proof, false, &root_proof)?;
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all_circuits.verify_aggregation(&agg_proof)
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}
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fn init_logger() {
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let _ = try_init_from_env(Env::default().filter_or(DEFAULT_FILTER_ENV, "info"));
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}
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