mirror of
https://github.com/logos-blockchain/lez-fuzzing.git
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164 lines
7.6 KiB
Rust
164 lines
7.6 KiB
Rust
#![no_main]
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//! Fuzz target: `validate_on_state` and `execute_check_on_state` consistency.
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//!
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//! Invariants:
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//!
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//! 1. **Agreement** — both methods must agree on success or failure for the same
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//! transaction and state. A divergence (one succeeds, the other fails) is a bug.
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//!
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//! 2. **Diff accuracy (bidirectional)** — when both succeed:
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//! - every account change recorded in the `ValidatedStateDiff` returned by
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//! `validate_on_state` must exactly match the post-execution state, AND
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//! - every account changed by `execute_check_on_state` must appear in the diff;
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//! a silent state-widening bug (execute touches an extra account not declared
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//! in the diff) is caught by the reverse check.
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//!
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//! 3. **Balance conservation** — when both succeed, the sum of all known account
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//! balances (genesis ∪ diff-declared) must be identical before and after the
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//! transaction. This catches double-credit and token-inflation bugs that both
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//! methods could agree on silently (INVARIANT 2a/2b only check consistency
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//! between the two methods, not correctness of the arithmetic itself).
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//!
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//! The initial state is generated from the fuzz input (rather than a fixed
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//! testnet genesis) so that state-dependent bugs — those that only manifest
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//! with specific account shapes such as zero balance or `u128::MAX` — are
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//! reachable by the fuzzer.
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use arbitrary::{Arbitrary, Unstructured};
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use fuzz_props::arbitrary_types::ArbNSSATransaction;
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use fuzz_props::generators::arbitrary_fuzz_state;
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use libfuzzer_sys::fuzz_target;
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use nssa::V03State;
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fuzz_target!(|data: &[u8]| {
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let mut u = Unstructured::new(data);
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// Generate a fuzz-driven initial state. The state shape — account IDs,
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// balances, and the private keys needed to sign transactions against it —
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// is fully controlled by the fuzzer, exposing state-dependent bugs that
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// the fixed testnet genesis would never reach.
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let fuzz_accs = match arbitrary_fuzz_state(&mut u) {
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Ok(accs) => accs,
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Err(_) => return,
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};
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let init_accs: Vec<(nssa::AccountId, u128)> = fuzz_accs
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.iter()
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.map(|a| (a.account_id, a.balance))
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.collect();
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// Generate the transaction from the remaining fuzz bytes.
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let tx = match ArbNSSATransaction::arbitrary(&mut u) {
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Ok(w) => w.0,
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Err(_) => return,
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};
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// Stateless gate — skip structurally malformed transactions.
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let Ok(tx) = tx.transaction_stateless_check() else { return; };
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let state = V03State::new_with_genesis_accounts(&init_accs, vec![], 0);
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// validate_on_state borrows `tx` and `state` — does NOT mutate state.
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let validate_result = tx.validate_on_state(&state, 1, 0);
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// execute_check_on_state consumes `tx` and mutates `exec_state`.
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let mut exec_state = state.clone();
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let execute_result = tx.execute_check_on_state(&mut exec_state, 1, 0);
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// INVARIANT 1: both must agree on success vs failure.
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match (validate_result, execute_result) {
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(Ok(diff), Ok(_)) => {
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let public_diff = diff.public_diff();
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// INVARIANT 2a (forward): every account in the diff matches the post-execute state.
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for (account_id, expected_account) in &public_diff {
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let actual = exec_state.get_account_by_id(*account_id);
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assert_eq!(
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*expected_account,
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actual,
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"INVARIANT VIOLATION: validate diff and execute state disagree \
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for account {:?}",
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account_id
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);
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}
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// INVARIANT 2b (reverse): every account changed by execute_check_on_state must
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// be captured in the validate diff. A silent state-widening bug — where
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// execute modifies accounts that validate_on_state did not declare — would
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// pass the forward check above but is caught here.
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//
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// We check a superset of accounts: genesis accounts PLUS any account the
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// diff explicitly declares. This covers the common case of both mutations
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// to existing accounts and accounts the diff itself declares as new.
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//
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// Known limitation: if execute_check_on_state creates a brand-new account
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// that is absent from both the genesis set and the diff, that state-widening
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// will NOT be detected here. Full detection would require iterating over all
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// accounts in exec_state, which V03State does not currently expose.
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let mut all_checked_ids: std::collections::HashSet<nssa::AccountId> =
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init_accs.iter().map(|&(id, _)| id).collect();
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for acc_id in public_diff.keys() {
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all_checked_ids.insert(*acc_id);
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}
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for acc_id in all_checked_ids {
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let before = state.get_account_by_id(acc_id);
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let after = exec_state.get_account_by_id(acc_id);
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if before != after {
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assert!(
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public_diff.contains_key(&acc_id),
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"INVARIANT VIOLATION: execute_check_on_state modified account {:?} \
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which is absent from validate_on_state diff",
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acc_id
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);
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}
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}
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// INVARIANT 3 (balance conservation): Σ balances must be identical before and after
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// a successful transaction over all known accounts (genesis ∪ diff-declared accounts).
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//
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// This catches double-credit and token-inflation bugs that both validate_on_state and
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// execute_check_on_state could agree on silently — e.g. a transfer path that credits
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// the recipient without debiting the sender. INVARIANT 2a/2b only check that the two
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// methods agree with each other; they do not catch the case where both are wrong in the
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// same direction.
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//
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// Limitation: accounts created brand-new by execute_check_on_state that are absent from
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// both genesis and the diff are not included here (see the known limitation in INVARIANT
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// 2b above). A transfer to a freshly-created account would inflate the known total.
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let known_ids: std::collections::HashSet<nssa::AccountId> = init_accs
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.iter()
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.map(|&(id, _)| id)
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.chain(public_diff.keys().copied())
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.collect();
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let total_before: u128 = known_ids
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.iter()
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.map(|id| state.get_account_by_id(*id).balance)
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.fold(0u128, u128::saturating_add);
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let total_after: u128 = known_ids
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.iter()
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.map(|id| exec_state.get_account_by_id(*id).balance)
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.fold(0u128, u128::saturating_add);
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assert_eq!(
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total_before,
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total_after,
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"INVARIANT VIOLATION: total balance of known accounts changed after successful \
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transaction (possible double-credit or token-inflation bug)",
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);
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}
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(Err(_), Err(_)) => {
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// Both failed — correct.
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}
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(Ok(_), Err(e)) => {
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panic!(
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"INVARIANT VIOLATION: validate_on_state succeeded but \
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execute_check_on_state failed: {e:?}"
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);
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}
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(Err(e), Ok(_)) => {
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panic!(
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"INVARIANT VIOLATION: validate_on_state failed but \
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execute_check_on_state succeeded: {e:?}"
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);
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}
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}
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});
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