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Under this design, *all* databases are a `DatabaseImpl<U>`, where the `U` implements `UserData` (you can use `()` if there is none). Code would default to `&dyn salsa::Database` but if you want to give access to the userdata, you can define a custom database trait `MyDatabase: salsa::Databse` so long as you * annotate `MyDatabase` trait definition of impls of `MyDatabase` with `#[salsa::db]` * implement `MyDatabase` for `DatabaseImpl<U>` where `U` is your userdata (this could be a blanket impl, if you don't know the precise userdata type). The `tests/common/mod.rs` shows the pattern.
42 lines
967 B
Rust
42 lines
967 B
Rust
//! Test that a `tracked` fn on a `salsa::input`
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//! compiles and executes successfully.
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#![allow(warnings)]
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trait TrackedTrait {
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fn tracked_trait_fn(self, db: &dyn salsa::Database) -> u32;
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}
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#[salsa::input]
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struct MyInput {
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field: u32,
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}
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#[salsa::tracked]
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impl MyInput {
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#[salsa::tracked]
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fn tracked_fn(self, db: &dyn salsa::Database) -> u32 {
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self.field(db) * 2
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}
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#[salsa::tracked(return_ref)]
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fn tracked_fn_ref(self, db: &dyn salsa::Database) -> u32 {
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self.field(db) * 3
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}
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}
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#[salsa::tracked]
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impl TrackedTrait for MyInput {
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#[salsa::tracked]
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fn tracked_trait_fn(self, db: &dyn salsa::Database) -> u32 {
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self.field(db) * 4
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}
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}
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#[test]
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fn execute() {
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let mut db = salsa::DatabaseImpl::new();
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let object = MyInput::new(&mut db, 22);
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// assert_eq!(object.tracked_fn(&db), 44);
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// assert_eq!(*object.tracked_fn_ref(&db), 66);
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assert_eq!(object.tracked_trait_fn(&db), 88);
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}
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