pub struct Thunk<'a, A>(/* private fields */);Expand description
A deferred computation that produces a value of type A.
Thunk is NOT memoized - each call to Thunk::evaluate re-executes the computation.
This type exists to build computation chains without allocation overhead.
Unlike Trampoline, Thunk does NOT require 'static and CAN implement
HKT traits like Functor, Semimonad, etc.
§Trade-offs vs Trampoline
| Aspect | Thunk<'a, A> | Trampoline<A> |
|---|---|---|
| HKT compatible | ✅ Yes | ❌ No (requires 'static) |
| Stack-safe | ⚠️ Partial (tail_rec_m only) | ✅ Yes (unlimited) |
| Lifetime | 'a (can borrow) | 'static only |
| Use case | Glue code, composition | Deep recursion, pipelines |
§Algebraic Properties
Thunk is a proper Monad:
pure(a).evaluate() == a(left identity).thunk.bind(pure) == thunk(right identity).thunk.bind(f).bind(g) == thunk.bind(|a| f(a).bind(g))(associativity).
§Type Parameters
A: The type of the value produced by the computation.
§Fields
0: The closure that performs the computation.
§Examples
use fp_library::types::*;
let computation = Thunk::new(|| 5)
.map(|x| x * 2)
.map(|x| x + 1);
// No computation has happened yet!
// Only when we call evaluate() does it execute:
let result = computation.evaluate();
assert_eq!(result, 11);Implementations§
Source§impl<'a, A: 'a> Thunk<'a, A>
impl<'a, A: 'a> Thunk<'a, A>
Sourcepub fn pure(a: A) -> Selfwhere
A: 'a,
pub fn pure(a: A) -> Selfwhere
A: 'a,
Returns a pure value (already computed).
§Type Signature
forall self. A -> self
§Parameters
a: The value to wrap.
§Returns
A new Thunk instance containing the value.
§Examples
use fp_library::{brands::*, functions::*, classes::*};
let thunk = pure::<ThunkBrand, _>(42);
assert_eq!(thunk.evaluate(), 42);Sourcepub fn defer<F>(f: F) -> Self
pub fn defer<F>(f: F) -> Self
Defers a computation that returns a Thunk.
§Type Signature
forall self. (() -> Thunk A) -> self
§Type Parameters
F: The type of the thunk.
§Parameters
f: The thunk that returns aThunk.
§Returns
A new Thunk instance.
§Examples
use fp_library::{brands::*, functions::*, types::*};
let thunk = Thunk::defer(|| pure::<ThunkBrand, _>(42));
assert_eq!(thunk.evaluate(), 42);Sourcepub fn bind<B: 'a, F>(self, f: F) -> Thunk<'a, B>
pub fn bind<B: 'a, F>(self, f: F) -> Thunk<'a, B>
Monadic bind: chains computations.
Note: Each bind adds to the call stack. For deep recursion,
use Trampoline instead.
§Type Signature
forall b. (A -> Thunk b) -> Thunk b
§Type Parameters
B: The type of the result of the new computation.F: The type of the function to apply.
§Parameters
f: The function to apply to the result of the computation.
§Returns
A new Thunk instance representing the chained computation.
§Examples
use fp_library::{brands::*, functions::*};
let thunk = pure::<ThunkBrand, _>(21).bind(|x| pure::<ThunkBrand, _>(x * 2));
assert_eq!(thunk.evaluate(), 42);Sourcepub fn map<B: 'a, F>(self, f: F) -> Thunk<'a, B>where
F: FnOnce(A) -> B + 'a,
pub fn map<B: 'a, F>(self, f: F) -> Thunk<'a, B>where
F: FnOnce(A) -> B + 'a,
Functor map: transforms the result.
§Type Signature
forall b. (A -> b) -> Thunk b
§Type Parameters
B: The type of the result of the transformation.F: The type of the transformation function.
§Parameters
f: The function to apply to the result of the computation.
§Returns
A new Thunk instance with the transformed result.
§Examples
use fp_library::{brands::*, functions::*};
let thunk = pure::<ThunkBrand, _>(21).map(|x| x * 2);
assert_eq!(thunk.evaluate(), 42);Trait Implementations§
Source§impl<'a, A: 'a> Deferrable<'a> for Thunk<'a, A>
impl<'a, A: 'a> Deferrable<'a> for Thunk<'a, A>
Source§fn defer<F>(f: F) -> Self
fn defer<F>(f: F) -> Self
Creates a Thunk from a computation that produces it.
§Type Signature
forall self. Deferrable self => (() -> self) -> self
§Type Parameters
F: The type of the thunk.
§Parameters
f: A thunk that produces the thunk.
§Returns
The deferred thunk.
§Examples
use fp_library::{brands::*, functions::*, types::*, classes::Deferrable};
let task: Thunk<i32> = Deferrable::defer(|| Thunk::pure(42));
assert_eq!(task.evaluate(), 42);Source§impl<'a, A, Config> From<Lazy<'a, A, Config>> for Thunk<'a, A>where
A: Clone + 'a,
Config: LazyConfig,
impl<'a, A, Config> From<Lazy<'a, A, Config>> for Thunk<'a, A>where
A: Clone + 'a,
Config: LazyConfig,
Source§impl<'a, A: Semigroup + 'a> Semigroup for Thunk<'a, A>
impl<'a, A: Semigroup + 'a> Semigroup for Thunk<'a, A>
Source§fn append(a: Self, b: Self) -> Self
fn append(a: Self, b: Self) -> Self
Combines two Thunks by combining their results.
§Type Signature
forall self. Semigroup self => (self, self) -> self
§Parameters
a: The firstThunk.b: The secondThunk.
§Returns
A new Thunk containing the combined result.
§Examples
use fp_library::{brands::*, classes::*, functions::*};
let t1 = pure::<ThunkBrand, _>("Hello".to_string());
let t2 = pure::<ThunkBrand, _>(" World".to_string());
let t3 = append::<_>(t1, t2);
assert_eq!(t3.evaluate(), "Hello World");Auto Trait Implementations§
impl<'a, A> Freeze for Thunk<'a, A>
impl<'a, A> !RefUnwindSafe for Thunk<'a, A>
impl<'a, A> !Send for Thunk<'a, A>
impl<'a, A> !Sync for Thunk<'a, A>
impl<'a, A> Unpin for Thunk<'a, A>
impl<'a, A> !UnwindSafe for Thunk<'a, A>
Blanket Implementations§
Source§impl<T> BorrowMut<T> for Twhere
T: ?Sized,
impl<T> BorrowMut<T> for Twhere
T: ?Sized,
Source§fn borrow_mut(&mut self) -> &mut T
fn borrow_mut(&mut self) -> &mut T
Source§impl<T> IntoEither for T
impl<T> IntoEither for T
Source§fn into_either(self, into_left: bool) -> Either<Self, Self>
fn into_either(self, into_left: bool) -> Either<Self, Self>
self into a Left variant of Either<Self, Self>
if into_left is true.
Converts self into a Right variant of Either<Self, Self>
otherwise. Read moreSource§fn into_either_with<F>(self, into_left: F) -> Either<Self, Self>
fn into_either_with<F>(self, into_left: F) -> Either<Self, Self>
self into a Left variant of Either<Self, Self>
if into_left(&self) returns true.
Converts self into a Right variant of Either<Self, Self>
otherwise. Read more