494 lines
12 KiB
Rust
494 lines
12 KiB
Rust
use std::panic::UnwindSafe;
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use expect_test::expect;
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use salsa::{Durability, ParallelDatabase, Snapshot};
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use test_log::test;
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// Axes:
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//
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// Threading
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// * Intra-thread
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// * Cross-thread -- part of cycle is on one thread, part on another
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//
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// Recovery strategies:
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// * Panic
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// * Fallback
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// * Mixed -- multiple strategies within cycle participants
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//
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// Across revisions:
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// * N/A -- only one revision
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// * Present in new revision, not old
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// * Present in old revision, not new
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// * Present in both revisions
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//
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// Dependencies
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// * Tracked
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// * Untracked -- cycle participant(s) contain untracked reads
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//
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// Layers
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// * Direct -- cycle participant is directly invoked from test
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// * Indirect -- invoked a query that invokes the cycle
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//
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//
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// | Thread | Recovery | Old, New | Dep style | Layers | Test Name |
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// | ------ | -------- | -------- | --------- | ------ | --------- |
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// | Intra | Panic | N/A | Tracked | direct | cycle_memoized |
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// | Intra | Panic | N/A | Untracked | direct | cycle_volatile |
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// | Intra | Fallback | N/A | Tracked | direct | cycle_cycle |
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// | Intra | Fallback | N/A | Tracked | indirect | inner_cycle |
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// | Intra | Fallback | Both | Tracked | direct | cycle_revalidate |
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// | Intra | Fallback | New | Tracked | direct | cycle_appears |
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// | Intra | Fallback | Old | Tracked | direct | cycle_disappears |
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// | Intra | Fallback | Old | Tracked | direct | cycle_disappears_durability |
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// | Intra | Mixed | N/A | Tracked | direct | cycle_mixed_1 |
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// | Intra | Mixed | N/A | Tracked | direct | cycle_mixed_2 |
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// | Cross | Fallback | N/A | Tracked | both | parallel/cycles.rs: recover_parallel_cycle |
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// | Cross | Panic | N/A | Tracked | both | parallel/cycles.rs: panic_parallel_cycle |
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#[derive(PartialEq, Eq, Hash, Clone, Debug)]
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struct Error {
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cycle: Vec<String>,
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}
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#[salsa::database(GroupStruct)]
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#[derive(Default)]
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struct DatabaseImpl {
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storage: salsa::Storage<Self>,
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}
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impl salsa::Database for DatabaseImpl {}
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impl ParallelDatabase for DatabaseImpl {
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fn snapshot(&self) -> Snapshot<Self> {
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Snapshot::new(DatabaseImpl { storage: self.storage.snapshot() })
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}
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}
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/// The queries A, B, and C in `Database` can be configured
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/// to invoke one another in arbitrary ways using this
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/// enum.
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#[derive(Debug, Copy, Clone, PartialEq, Eq)]
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enum CycleQuery {
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None,
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A,
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B,
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C,
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AthenC,
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}
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#[salsa::query_group(GroupStruct)]
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trait Database: salsa::Database {
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// `a` and `b` depend on each other and form a cycle
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fn memoized_a(&self) -> ();
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fn memoized_b(&self) -> ();
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fn volatile_a(&self) -> ();
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fn volatile_b(&self) -> ();
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#[salsa::input]
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fn a_invokes(&self) -> CycleQuery;
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#[salsa::input]
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fn b_invokes(&self) -> CycleQuery;
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#[salsa::input]
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fn c_invokes(&self) -> CycleQuery;
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#[salsa::cycle(recover_a)]
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fn cycle_a(&self) -> Result<(), Error>;
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#[salsa::cycle(recover_b)]
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fn cycle_b(&self) -> Result<(), Error>;
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fn cycle_c(&self) -> Result<(), Error>;
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}
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fn recover_a(db: &dyn Database, cycle: &salsa::Cycle) -> Result<(), Error> {
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Err(Error { cycle: cycle.all_participants(db) })
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}
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fn recover_b(db: &dyn Database, cycle: &salsa::Cycle) -> Result<(), Error> {
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Err(Error { cycle: cycle.all_participants(db) })
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}
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fn memoized_a(db: &dyn Database) {
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db.memoized_b()
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}
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fn memoized_b(db: &dyn Database) {
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db.memoized_a()
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}
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fn volatile_a(db: &dyn Database) {
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db.salsa_runtime().report_untracked_read();
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db.volatile_b()
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}
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fn volatile_b(db: &dyn Database) {
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db.salsa_runtime().report_untracked_read();
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db.volatile_a()
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}
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impl CycleQuery {
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fn invoke(self, db: &dyn Database) -> Result<(), Error> {
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match self {
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CycleQuery::A => db.cycle_a(),
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CycleQuery::B => db.cycle_b(),
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CycleQuery::C => db.cycle_c(),
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CycleQuery::AthenC => {
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let _ = db.cycle_a();
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db.cycle_c()
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}
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CycleQuery::None => Ok(()),
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}
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}
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}
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fn cycle_a(db: &dyn Database) -> Result<(), Error> {
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db.a_invokes().invoke(db)
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}
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fn cycle_b(db: &dyn Database) -> Result<(), Error> {
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db.b_invokes().invoke(db)
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}
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fn cycle_c(db: &dyn Database) -> Result<(), Error> {
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db.c_invokes().invoke(db)
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}
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#[track_caller]
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fn extract_cycle(f: impl FnOnce() + UnwindSafe) -> salsa::Cycle {
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let v = std::panic::catch_unwind(f);
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if let Err(d) = &v {
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if let Some(cycle) = d.downcast_ref::<salsa::Cycle>() {
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return cycle.clone();
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}
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}
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panic!("unexpected value: {:?}", v)
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}
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#[test]
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fn cycle_memoized() {
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let db = DatabaseImpl::default();
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let cycle = extract_cycle(|| db.memoized_a());
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expect![[r#"
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[
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"memoized_a(())",
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"memoized_b(())",
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]
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"#]]
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.assert_debug_eq(&cycle.unexpected_participants(&db));
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}
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#[test]
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fn cycle_volatile() {
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let db = DatabaseImpl::default();
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let cycle = extract_cycle(|| db.volatile_a());
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expect![[r#"
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[
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"volatile_a(())",
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"volatile_b(())",
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]
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"#]]
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.assert_debug_eq(&cycle.unexpected_participants(&db));
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}
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#[test]
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fn cycle_cycle() {
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let mut query = DatabaseImpl::default();
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// A --> B
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// ^ |
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// +-----+
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query.set_a_invokes(CycleQuery::B);
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query.set_b_invokes(CycleQuery::A);
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assert!(query.cycle_a().is_err());
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}
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#[test]
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fn inner_cycle() {
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let mut query = DatabaseImpl::default();
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// A --> B <-- C
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// ^ |
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// +-----+
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query.set_a_invokes(CycleQuery::B);
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query.set_b_invokes(CycleQuery::A);
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query.set_c_invokes(CycleQuery::B);
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let err = query.cycle_c();
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assert!(err.is_err());
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let cycle = err.unwrap_err().cycle;
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expect![[r#"
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[
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"cycle_a(())",
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"cycle_b(())",
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]
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"#]]
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.assert_debug_eq(&cycle);
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}
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#[test]
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fn cycle_revalidate() {
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let mut db = DatabaseImpl::default();
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// A --> B
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// ^ |
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// +-----+
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db.set_a_invokes(CycleQuery::B);
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db.set_b_invokes(CycleQuery::A);
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assert!(db.cycle_a().is_err());
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db.set_b_invokes(CycleQuery::A); // same value as default
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assert!(db.cycle_a().is_err());
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}
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#[test]
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fn cycle_revalidate_unchanged_twice() {
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let mut db = DatabaseImpl::default();
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// A --> B
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// ^ |
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// +-----+
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db.set_a_invokes(CycleQuery::B);
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db.set_b_invokes(CycleQuery::A);
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assert!(db.cycle_a().is_err());
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db.set_c_invokes(CycleQuery::A); // force new revisi5on
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// on this run
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expect![[r#"
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Err(
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Error {
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cycle: [
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"cycle_a(())",
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"cycle_b(())",
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],
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},
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)
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"#]]
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.assert_debug_eq(&db.cycle_a());
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}
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#[test]
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fn cycle_appears() {
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let mut db = DatabaseImpl::default();
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// A --> B
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db.set_a_invokes(CycleQuery::B);
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db.set_b_invokes(CycleQuery::None);
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assert!(db.cycle_a().is_ok());
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// A --> B
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// ^ |
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// +-----+
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db.set_b_invokes(CycleQuery::A);
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tracing::debug!("Set Cycle Leaf");
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assert!(db.cycle_a().is_err());
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}
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#[test]
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fn cycle_disappears() {
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let mut db = DatabaseImpl::default();
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// A --> B
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// ^ |
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// +-----+
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db.set_a_invokes(CycleQuery::B);
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db.set_b_invokes(CycleQuery::A);
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assert!(db.cycle_a().is_err());
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// A --> B
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db.set_b_invokes(CycleQuery::None);
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assert!(db.cycle_a().is_ok());
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}
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/// A variant on `cycle_disappears` in which the values of
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/// `a_invokes` and `b_invokes` are set with durability values.
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/// If we are not careful, this could cause us to overlook
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/// the fact that the cycle will no longer occur.
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#[test]
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fn cycle_disappears_durability() {
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let mut db = DatabaseImpl::default();
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db.set_a_invokes_with_durability(CycleQuery::B, Durability::LOW);
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db.set_b_invokes_with_durability(CycleQuery::A, Durability::HIGH);
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let res = db.cycle_a();
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assert!(res.is_err());
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// At this point, `a` read `LOW` input, and `b` read `HIGH` input. However,
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// because `b` participates in the same cycle as `a`, its final durability
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// should be `LOW`.
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//
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// Check that setting a `LOW` input causes us to re-execute `b` query, and
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// observe that the cycle goes away.
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db.set_a_invokes_with_durability(CycleQuery::None, Durability::LOW);
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let res = db.cycle_b();
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assert!(res.is_ok());
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}
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#[test]
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fn cycle_mixed_1() {
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let mut db = DatabaseImpl::default();
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// A --> B <-- C
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// | ^
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// +-----+
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db.set_a_invokes(CycleQuery::B);
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db.set_b_invokes(CycleQuery::C);
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db.set_c_invokes(CycleQuery::B);
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let u = db.cycle_c();
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expect![[r#"
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Err(
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Error {
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cycle: [
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"cycle_b(())",
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"cycle_c(())",
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],
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},
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)
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"#]]
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.assert_debug_eq(&u);
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}
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#[test]
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fn cycle_mixed_2() {
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let mut db = DatabaseImpl::default();
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// Configuration:
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//
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// A --> B --> C
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// ^ |
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// +-----------+
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db.set_a_invokes(CycleQuery::B);
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db.set_b_invokes(CycleQuery::C);
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db.set_c_invokes(CycleQuery::A);
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let u = db.cycle_a();
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expect![[r#"
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Err(
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Error {
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cycle: [
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"cycle_a(())",
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"cycle_b(())",
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"cycle_c(())",
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],
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},
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)
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"#]]
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.assert_debug_eq(&u);
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}
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#[test]
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fn cycle_deterministic_order() {
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// No matter whether we start from A or B, we get the same set of participants:
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let db = || {
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let mut db = DatabaseImpl::default();
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// A --> B
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// ^ |
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// +-----+
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db.set_a_invokes(CycleQuery::B);
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db.set_b_invokes(CycleQuery::A);
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db
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};
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let a = db().cycle_a();
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let b = db().cycle_b();
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expect![[r#"
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(
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Err(
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Error {
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cycle: [
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"cycle_a(())",
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"cycle_b(())",
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],
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},
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),
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Err(
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Error {
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cycle: [
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"cycle_a(())",
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"cycle_b(())",
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],
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},
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),
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)
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"#]]
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.assert_debug_eq(&(a, b));
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}
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#[test]
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fn cycle_multiple() {
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// No matter whether we start from A or B, we get the same set of participants:
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let mut db = DatabaseImpl::default();
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// Configuration:
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//
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// A --> B <-- C
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// ^ | ^
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// +-----+ |
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// | |
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// +-----+
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//
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// Here, conceptually, B encounters a cycle with A and then
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// recovers.
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db.set_a_invokes(CycleQuery::B);
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db.set_b_invokes(CycleQuery::AthenC);
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db.set_c_invokes(CycleQuery::B);
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let c = db.cycle_c();
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let b = db.cycle_b();
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let a = db.cycle_a();
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expect![[r#"
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(
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Err(
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Error {
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cycle: [
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"cycle_a(())",
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"cycle_b(())",
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],
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},
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),
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Err(
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Error {
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cycle: [
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"cycle_a(())",
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"cycle_b(())",
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],
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},
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),
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Err(
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Error {
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cycle: [
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"cycle_a(())",
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"cycle_b(())",
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],
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},
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),
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)
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"#]]
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.assert_debug_eq(&(a, b, c));
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}
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#[test]
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fn cycle_recovery_set_but_not_participating() {
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let mut db = DatabaseImpl::default();
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// A --> C -+
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// ^ |
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// +--+
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db.set_a_invokes(CycleQuery::C);
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db.set_c_invokes(CycleQuery::C);
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// Here we expect C to panic and A not to recover:
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let r = extract_cycle(|| drop(db.cycle_a()));
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expect![[r#"
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[
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"cycle_c(())",
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]
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"#]]
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.assert_debug_eq(&r.all_participants(&db));
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}
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