mirror of
https://github.com/matter-labs/teepot.git
synced 2025-07-21 15:13:56 +02:00
WIP
This commit is contained in:
parent
8dbfe47e2f
commit
85bba1d697
3 changed files with 219 additions and 121 deletions
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@ -3,11 +3,15 @@
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//! Tool for SGX attestation and batch signature verification
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mod rpc_api;
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mod verifier;
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use anyhow::{anyhow, Context, Result};
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use clap::Parser;
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use reqwest::Client;
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use secp256k1::{constants::PUBLIC_KEY_SIZE, ecdsa::Signature, Message, PublicKey};
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use serde::{Deserialize, Serialize};
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use std::time::Duration;
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use teepot::{
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client::TcbLevel,
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sgx::{tee_qv_get_collateral, verify_quote_with_collateral, QuoteVerificationResult},
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@ -21,6 +25,9 @@ use zksync_web3_decl::{
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namespaces::ZksNamespaceClient,
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};
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use rpc_api::MainNodeClient;
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use verifier::verify_proof;
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#[derive(Parser, Debug)]
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#[command(author = "Matter Labs", version, about = "SGX attestation and batch signature verifier", long_about = None)]
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struct Arguments {
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@ -33,6 +40,9 @@ struct Arguments {
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/// Chain ID of the network to query.
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#[clap(short, long, default_value_t = L2ChainId::default().as_u64())]
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chain_id: u64,
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/// Run continuously, polling for new batch ranges from the RPC server.
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#[clap(short, long)]
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continuous: bool,
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}
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fn parse_batch_range(s: &str) -> Result<(L1BatchNumber, L1BatchNumber)> {
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@ -61,55 +71,6 @@ fn parse_batch_range(s: &str) -> Result<(L1BatchNumber, L1BatchNumber)> {
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}
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}
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trait JsonRpcClient {
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async fn get_root_hash(&self, batch_number: L1BatchNumber) -> Result<H256>;
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// TODO implement get_tee_proofs(batch_number, tee_type) once https://crates.io/crates/zksync_web3_decl crate is updated
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}
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struct MainNodeClient(NodeClient<L2>);
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impl JsonRpcClient for MainNodeClient {
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async fn get_root_hash(&self, batch_number: L1BatchNumber) -> Result<H256> {
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self.0
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.get_l1_batch_details(batch_number)
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.rpc_context("get_l1_batch_details")
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.await?
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.and_then(|res| res.base.root_hash)
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.ok_or_else(|| anyhow!("No root hash found for batch #{}", batch_number))
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}
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}
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// JSON-RPC request and response structures for fetching TEE proofs
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#[derive(Debug, Serialize, Deserialize)]
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struct GetProofsRequest {
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jsonrpc: String,
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id: u32,
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method: String,
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params: (L1BatchNumber, String),
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}
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#[derive(Debug, Serialize, Deserialize)]
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struct GetProofsResponse {
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jsonrpc: String,
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result: Vec<Proof>,
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id: u32,
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}
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#[derive(Debug, Serialize, Deserialize)]
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struct Proof {
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#[serde(rename = "l1BatchNumber")]
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l1_batch_number: u32,
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#[serde(rename = "teeType")]
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tee_type: String,
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pubkey: Vec<u8>,
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signature: Vec<u8>,
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proof: Vec<u8>,
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#[serde(rename = "provedAt")]
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proved_at: String,
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attestation: Vec<u8>,
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}
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#[tokio::main]
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async fn main() -> Result<()> {
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let args = Arguments::parse();
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@ -123,93 +84,81 @@ async fn main() -> Result<()> {
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.build();
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let node_client = MainNodeClient(node_client);
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let http_client = Client::new();
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let (start_batch_number, end_batch_number) = args.batch_range;
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if args.continuous {
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run_continuous_mode(&http_client, &node_client, &args.rpc_url).await?;
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} else {
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run_once(&http_client, &node_client, &args.rpc_url, args.batch_range).await?;
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}
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Ok(())
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}
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async fn run_continuous_mode(
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http_client: &Client,
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node_client: &MainNodeClient,
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rpc_url: &Url,
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) -> Result<()> {
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loop {
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let batch_range = poll_latest_batch_range(http_client, rpc_url).await?;
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run_once(http_client, node_client, batch_range, rpc_url).await?;
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tokio::time::sleep(Duration::from_secs(10)).await;
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}
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}
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async fn run_once(
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http_client: &Client,
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node_client: &MainNodeClient,
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rpc_url: &Url,
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batch_range: (L1BatchNumber, L1BatchNumber),
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) -> Result<()> {
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let (start_batch_number, end_batch_number) = batch_range;
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for batch_number in start_batch_number.0..=end_batch_number.0 {
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let proofs_request = GetProofsRequest {
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jsonrpc: "2.0".to_string(),
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id: 1,
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method: "unstable_getTeeProofs".to_string(),
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params: (L1BatchNumber(batch_number), "Sgx".to_string()),
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};
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let proofs_response = http_client
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.post(args.rpc_url.clone())
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.json(&proofs_request)
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.send()
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.await?
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.error_for_status()?
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.json::<GetProofsResponse>()
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.await?;
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println!("Verifying batch #{}", proof.l1_batch_number);
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let proofs_response = get_tee_proofs(batch_number, http_client, rpc_url).await?;
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let mut batch_proof_instance = 1;
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for proof in proofs_response
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.result
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.into_iter()
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.filter(|proof| proof.tee_type.to_lowercase() == "sgx")
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.filter(|proof| proof.tee_type.eq_ignore_ascii_case("Sgx"))
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{
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println!(
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"Verifying batch #{} proved at {}",
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" Verifying proof instance {} of the batch, proved at {}"
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proof.l1_batch_number, proof.proved_at
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);
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let quote_verification_result = verify_attestation_quote(&proof.attestation)?;
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print_quote_verification_summary("e_verification_result);
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let public_key = PublicKey::from_slice(
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"e_verification_result.quote.report_body.reportdata[..PUBLIC_KEY_SIZE],
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)?;
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println!("Public key from attestation quote: {}", public_key);
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let root_hash = node_client
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.get_root_hash(L1BatchNumber(proof.l1_batch_number))
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.await?;
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println!("Root hash: {}", root_hash);
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verify_signature(&proof.signature, public_key, root_hash)?;
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println!();
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let verification_result = verify_proof(proof, node_client).await?;
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batch_proof_instance += 1;
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}
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println!();
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}
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Ok(())
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}
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fn verify_signature(signature: &[u8], public_key: PublicKey, root_hash: H256) -> Result<()> {
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let signature = Signature::from_compact(signature)?;
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let root_hash_msg = Message::from_digest_slice(&root_hash.0)?;
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if signature.verify(&root_hash_msg, &public_key).is_ok() {
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println!("Signature verified successfully");
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} else {
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println!("Failed to verify signature");
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}
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Ok(())
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}
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async fn get_tee_proofs(
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batch_number: u32,
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http_client: &Client,
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rpc_url: &Url,
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) -> Result<Vec<Proof>> {
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let proofs_request = GetProofsRequest {
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jsonrpc: "2.0".to_string(),
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id: 1,
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method: "unstable_getTeeProofs".to_string(),
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params: (L1BatchNumber(batch_number), "Sgx".to_string()),
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};
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let proofs_response = http_client
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.post(rpc_url.clone())
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.json(&proofs_request)
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.send()
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.await?
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.error_for_status()?
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.json::<GetProofsResponse>()
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.await;
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// TODO return 404 if no proofs found
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fn verify_attestation_quote(attestation_quote_bytes: &[u8]) -> Result<QuoteVerificationResult> {
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println!(
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"Verifying quote ({} bytes)...",
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attestation_quote_bytes.len()
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);
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let collateral =
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tee_qv_get_collateral(attestation_quote_bytes).context("Failed to get collateral")?;
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let unix_time: i64 = std::time::SystemTime::now()
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.duration_since(std::time::UNIX_EPOCH)?
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.as_secs() as _;
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verify_quote_with_collateral(attestation_quote_bytes, Some(&collateral), unix_time)
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.context("Failed to verify quote with collateral")
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}
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fn print_quote_verification_summary(quote_verification_result: &QuoteVerificationResult) {
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let QuoteVerificationResult {
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collateral_expired,
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result,
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quote,
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advisories,
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..
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} = quote_verification_result;
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if *collateral_expired {
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println!("Freshly fetched collateral expired");
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}
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let tcblevel = TcbLevel::from(*result);
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for advisory in advisories {
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println!("\tInfo: Advisory ID: {advisory}");
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}
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println!("Quote verification result: {}", tcblevel);
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println!("mrsigner: {}", hex::encode(quote.report_body.mrsigner));
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println!("mrenclave: {}", hex::encode(quote.report_body.mrenclave));
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println!("reportdata: {}", hex::encode(quote.report_body.reportdata));
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Ok(proofs_response)
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}
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67
bin/verify-era-proof-attestation/src/rpc_api.rs
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67
bin/verify-era-proof-attestation/src/rpc_api.rs
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@ -0,0 +1,67 @@
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use anyhow::{anyhow, Context, Result};
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use clap::Parser;
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use reqwest::Client;
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use secp256k1::{constants::PUBLIC_KEY_SIZE, ecdsa::Signature, Message, PublicKey};
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use serde::{Deserialize, Serialize};
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use std::time::Duration;
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use teepot::{
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client::TcbLevel,
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sgx::{tee_qv_get_collateral, verify_quote_with_collateral, QuoteVerificationResult},
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};
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use url::Url;
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use zksync_basic_types::{L1BatchNumber, H256};
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use zksync_types::L2ChainId;
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use zksync_web3_decl::{
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client::{Client as NodeClient, L2},
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error::ClientRpcContext,
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namespaces::ZksNamespaceClient,
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};
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trait JsonRpcClient {
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async fn get_root_hash(&self, batch_number: L1BatchNumber) -> Result<H256>;
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// TODO implement get_tee_proofs(batch_number, tee_type) once https://crates.io/crates/zksync_web3_decl crate is updated
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}
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struct MainNodeClient(NodeClient<L2>);
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impl JsonRpcClient for MainNodeClient {
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async fn get_root_hash(&self, batch_number: L1BatchNumber) -> Result<H256> {
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self.0
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.get_l1_batch_details(batch_number)
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.rpc_context("get_l1_batch_details")
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.await?
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.and_then(|res| res.base.root_hash)
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.ok_or_else(|| anyhow!("No root hash found for batch #{}", batch_number))
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}
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}
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// JSON-RPC request and response structures for fetching TEE proofs
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#[derive(Debug, Serialize, Deserialize)]
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struct GetProofsRequest {
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jsonrpc: String,
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id: u32,
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method: String,
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params: (L1BatchNumber, String),
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}
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#[derive(Debug, Serialize, Deserialize)]
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struct GetProofsResponse {
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jsonrpc: String,
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result: Vec<Proof>,
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id: u32,
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}
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#[derive(Debug, Serialize, Deserialize)]
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struct Proof {
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#[serde(rename = "l1BatchNumber")]
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l1_batch_number: u32,
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#[serde(rename = "teeType")]
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tee_type: String,
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pubkey: Vec<u8>,
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signature: Vec<u8>,
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proof: Vec<u8>,
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#[serde(rename = "provedAt")]
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proved_at: String,
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attestation: Vec<u8>,
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}
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82
bin/verify-era-proof-attestation/src/verifier.rs
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82
bin/verify-era-proof-attestation/src/verifier.rs
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@ -0,0 +1,82 @@
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use anyhow::{anyhow, Context, Result};
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use clap::Parser;
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use reqwest::Client;
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use secp256k1::{constants::PUBLIC_KEY_SIZE, ecdsa::Signature, Message, PublicKey};
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use serde::{Deserialize, Serialize};
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use std::time::Duration;
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use teepot::{
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client::TcbLevel,
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sgx::{tee_qv_get_collateral, verify_quote_with_collateral, QuoteVerificationResult},
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};
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use url::Url;
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use zksync_basic_types::{L1BatchNumber, H256};
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use zksync_types::L2ChainId;
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use zksync_web3_decl::{
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client::{Client as NodeClient, L2},
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error::ClientRpcContext,
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namespaces::ZksNamespaceClient,
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};
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fn verify_signature(signature: &[u8], public_key: PublicKey, root_hash: H256) -> Result<()> {
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let signature = Signature::from_compact(signature)?;
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let root_hash_msg = Message::from_digest_slice(&root_hash.0)?;
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if signature.verify(&root_hash_msg, &public_key).is_ok() {
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println!(" Signature verified successfully");
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} else {
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println!(" Failed to verify signature");
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}
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Ok(())
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}
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async fn verify_proof(proof: Proof, node_client: &MainNodeClient) -> Result<(), anyhow::Error> {
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let quote_verification_result = verify_attestation_quote(&proof.attestation)?;
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print_quote_verification_summary("e_verification_result);
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let public_key = PublicKey::from_slice(
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"e_verification_result.quote.report_body.reportdata[..PUBLIC_KEY_SIZE],
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)?;
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println!(" Public key from attestation quote: {}", public_key);
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let root_hash = node_client
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.get_root_hash(L1BatchNumber(proof.l1_batch_number))
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.await?;
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println!(" Root hash: {}", root_hash);
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verify_signature(&proof.signature, public_key, root_hash)?;
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Ok(())
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}
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fn print_quote_verification_summary(quote_verification_result: &QuoteVerificationResult) {
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let QuoteVerificationResult {
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collateral_expired,
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result,
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quote,
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advisories,
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..
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} = quote_verification_result;
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if *collateral_expired {
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println!(" Freshly fetched collateral expired");
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}
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let tcblevel = TcbLevel::from(*result);
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for advisory in advisories {
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println!(" \tInfo: Advisory ID: {advisory}");
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}
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println!(" Quote verification result: {}", tcblevel);
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println!(" mrsigner: {}", hex::encode(quote.report_body.mrsigner));
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println!(" mrenclave: {}", hex::encode(quote.report_body.mrenclave));
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println!(
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" reportdata: {}",
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hex::encode(quote.report_body.reportdata)
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);
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}
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fn verify_attestation_quote(attestation_quote_bytes: &[u8]) -> Result<QuoteVerificationResult> {
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println!(
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"Verifying quote ({} bytes)...",
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attestation_quote_bytes.len()
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);
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let collateral =
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tee_qv_get_collateral(attestation_quote_bytes).context("Failed to get collateral")?;
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let unix_time: i64 = std::time::SystemTime::now()
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.duration_since(std::time::UNIX_EPOCH)?
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.as_secs() as _;
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verify_quote_with_collateral(attestation_quote_bytes, Some(&collateral), unix_time)
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.context("Failed to verify quote with collateral")
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}
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