pub struct BoxTransformerOnce<T, R> { /* private fields */ }Expand description
BoxTransformerOnce - consuming transformer wrapper based on
Box<dyn FnOnce>
A transformer wrapper that provides single ownership with one-time use semantics. Consumes both self and the input value.
§Features
- Based on:
Box<dyn FnOnce(T) -> R> - Ownership: Single ownership, cannot be cloned
- Reusability: Can only be called once (consumes self and input)
- Thread Safety: Not thread-safe (no
Send + Syncrequirement)
§Author
Haixing Hu
Implementations§
Source§impl<T, R> BoxTransformerOnce<T, R>
impl<T, R> BoxTransformerOnce<T, R>
Sourcepub fn new<F>(f: F) -> Selfwhere
F: FnOnce(T) -> R + 'static,
pub fn new<F>(f: F) -> Selfwhere
F: FnOnce(T) -> R + 'static,
Creates a new transformer.
Wraps the provided closure in the appropriate smart pointer type for this transformer implementation.
Sourcepub fn new_with_name<F>(name: &str, f: F) -> Selfwhere
F: FnOnce(T) -> R + 'static,
pub fn new_with_name<F>(name: &str, f: F) -> Selfwhere
F: FnOnce(T) -> R + 'static,
Creates a new named transformer.
Wraps the provided closure and assigns it a name, which is useful for debugging and logging purposes.
Sourcepub fn new_with_optional_name<F>(f: F, name: Option<String>) -> Selfwhere
F: FnOnce(T) -> R + 'static,
pub fn new_with_optional_name<F>(f: F, name: Option<String>) -> Selfwhere
F: FnOnce(T) -> R + 'static,
Creates a new named transformer with an optional name.
Wraps the provided closure and assigns it an optional name.
Sourcepub fn clear_name(&mut self)
pub fn clear_name(&mut self)
Clears the name of this transformer.
Sourcepub fn identity() -> BoxTransformerOnce<T, T>
pub fn identity() -> BoxTransformerOnce<T, T>
Creates an identity transformer.
Creates a transformer that returns the input value unchanged. Useful for default values or placeholder implementations.
§Returns
Returns a new transformer instance that returns the input unchanged.
Sourcepub fn when<P>(self, predicate: P) -> BoxConditionalTransformerOnce<T, R>where
T: 'static,
R: 'static,
P: Predicate<T> + 'static,
pub fn when<P>(self, predicate: P) -> BoxConditionalTransformerOnce<T, R>where
T: 'static,
R: 'static,
P: Predicate<T> + 'static,
Creates a conditional transformer that executes based on predicate result.
§Parameters
predicate- The predicate to determine whether to execute the transformation operation
§Returns
Returns a conditional transformer that only executes when the
predicate returns true.
§Examples
use std::sync::Arc;
use std::sync::atomic::{AtomicI32, Ordering};
use qubit_function::transformers::*;
let transformer = BoxTransformer::new({
|value: i32| value * 2
});
let conditional = transformer.when(|value: &i32| *value > 0).or_else(|value: i32| value);
assert_eq!(conditional.apply(5), 10); // transformed
assert_eq!(conditional.apply(-1), -1); // identity (unchanged)Sourcepub fn and_then<S, F>(self, after: F) -> BoxTransformerOnce<T, S>where
T: 'static,
R: 'static,
S: 'static,
F: TransformerOnce<R, S> + 'static,
pub fn and_then<S, F>(self, after: F) -> BoxTransformerOnce<T, S>where
T: 'static,
R: 'static,
S: 'static,
F: TransformerOnce<R, S> + 'static,
Chains execution with another transformer, executing the current transformer first, then the subsequent transformer.
§Parameters
after- The subsequent transformer to execute after the current transformer completes
§Returns
Returns a new transformer that executes the current transformer and the subsequent transformer in sequence.
§Examples
use qubit_function::transformers::*;
let transformer1 = BoxTransformer::new({
|value: i32| value + 1
});
let transformer2 = BoxTransformer::new({
|value: i32| value * 2
});
let chained = transformer1.and_then(transformer2);
assert_eq!(chained.apply(5), 12); // (5 + 1) * 2 = 12Examples found in repository?
19fn main() {
20 println!("=== FnTransformerOnceOps Example ===\n");
21
22 // 1. Basic and_then composition
23 println!("1. Basic and_then composition:");
24 let parse = |s: String| s.parse::<i32>().unwrap_or(0);
25 let double = |x: i32| x * 2;
26 let composed = parse.and_then(double);
27 println!(
28 " parse.and_then(double).apply(\"21\") = {}",
29 composed.apply("21".to_string())
30 );
31 println!();
32
33 // 2. Chained and_then composition
34 println!("2. Chained and_then composition:");
35 let parse = |s: String| s.parse::<i32>().unwrap_or(0);
36 let add_one = |x: i32| x + 1;
37 let double = |x: i32| x * 2;
38 let chained = parse.and_then(add_one).and_then(double);
39 println!(
40 " parse.and_then(add_one).and_then(double).apply(\"5\") = {}",
41 chained.apply("5".to_string())
42 ); // (5 + 1) * 2 = 12
43 println!();
44
45 // 3. More and_then composition
46 println!("3. More and_then composition:");
47 let double = |x: i32| x * 2;
48 let to_string = |x: i32| x.to_string();
49 let composed = double.and_then(to_string);
50 println!(
51 " double.and_then(to_string).apply(21) = {}",
52 composed.apply(21)
53 ); // (21 * 2).to_string() = "42"
54 println!();
55
56 // 4. Conditional transformation when
57 println!("4. Conditional transformation when:");
58 let double = |x: i32| x * 2;
59 let conditional = double.when(|x: &i32| *x > 0).or_else(|x: i32| -x);
60 println!(" double.when(x > 0).or_else(negate):");
61 println!(" transform(5) = {}", conditional.apply(5)); // 10
62
63 let double2 = |x: i32| x * 2;
64 let conditional2 = double2.when(|x: &i32| *x > 0).or_else(|x: i32| -x);
65 println!(" transform(-5) = {}", conditional2.apply(-5)); // 5
66 println!();
67
68 // 5. Complex composition
69 println!("5. Complex composition:");
70 let parse = |s: String| s.parse::<i32>().unwrap_or(0);
71 let double = |x: i32| x * 2;
72 let triple = |x: i32| x * 3;
73 let to_string = |x: i32| x.to_string();
74
75 let complex = parse
76 .and_then(double.when(|x: &i32| *x > 5).or_else(triple))
77 .and_then(to_string);
78
79 println!(" parse.and_then(double.when(x > 5).or_else(triple)).and_then(to_string):");
80 println!(" transform(\"3\") = {}", complex.apply("3".to_string())); // 3 <= 5, so 3 * 3 = 9
81
82 let parse2 = |s: String| s.parse::<i32>().unwrap_or(0);
83 let double2 = |x: i32| x * 2;
84 let triple2 = |x: i32| x * 3;
85 let to_string2 = |x: i32| x.to_string();
86 let complex2 = parse2
87 .and_then(double2.when(|x: &i32| *x > 5).or_else(triple2))
88 .and_then(to_string2);
89 println!(
90 " transform(\"10\") = {}",
91 complex2.apply("10".to_string())
92 ); // 10 > 5, so 10 * 2 = 20
93 println!();
94
95 // 6. Type conversion
96 println!("6. Type conversion:");
97 let to_string = |x: i32| x.to_string();
98 let get_length = |s: String| s.len();
99 let length_transformer = to_string.and_then(get_length);
100 println!(
101 " to_string.and_then(get_length).apply(12345) = {}",
102 length_transformer.apply(12345)
103 ); // 5
104 println!();
105
106 // 7. Closures that capture environment
107 println!("7. Closures that capture environment:");
108 let multiplier = 3;
109 let multiply = move |x: i32| x * multiplier;
110 let add_ten = |x: i32| x + 10;
111 let with_capture = multiply.and_then(add_ten);
112 println!(
113 " multiply(3).and_then(add_ten).apply(5) = {}",
114 with_capture.apply(5)
115 ); // 5 * 3 + 10 = 25
116 println!();
117
118 // 8. Function pointers
119 println!("8. Function pointers:");
120 fn parse_fn(s: String) -> i32 {
121 s.parse().unwrap_or(0)
122 }
123 fn double_fn(x: i32) -> i32 {
124 x * 2
125 }
126 let fn_composed = parse_fn.and_then(double_fn);
127 println!(
128 " parse_fn.and_then(double_fn).apply(\"21\") = {}",
129 fn_composed.apply("21".to_string())
130 ); // 42
131 println!();
132
133 // 9. String operations that consume ownership
134 println!("9. String operations that consume ownership:");
135 let owned = String::from("hello");
136 let append = move |s: String| format!("{} {}", s, owned);
137 let uppercase = |s: String| s.to_uppercase();
138 let composed = append.and_then(uppercase);
139 println!(
140 " append.and_then(uppercase).apply(\"world\") = {}",
141 composed.apply("world".to_string())
142 ); // "WORLD HELLO"
143 println!();
144
145 // 10. Parsing and validation
146 println!("10. Parsing and validation:");
147 let parse = |s: String| s.parse::<i32>().unwrap_or(0);
148 let validate = |x: i32| if x > 0 { x } else { 1 };
149 let composed = parse.and_then(validate);
150 println!(
151 " parse.and_then(validate).apply(\"42\") = {}",
152 composed.apply("42".to_string())
153 ); // 42
154
155 let parse2 = |s: String| s.parse::<i32>().unwrap_or(0);
156 let validate2 = |x: i32| if x > 0 { x } else { 1 };
157 let composed2 = parse2.and_then(validate2);
158 println!(
159 " parse.and_then(validate).apply(\"-5\") = {}",
160 composed2.apply("-5".to_string())
161 ); // 1
162 println!();
163
164 println!("=== Example completed ===");
165}Source§impl<T, R> BoxTransformerOnce<T, R>
impl<T, R> BoxTransformerOnce<T, R>
Sourcepub fn constant(value: R) -> BoxTransformerOnce<T, R>where
R: Clone + 'static,
pub fn constant(value: R) -> BoxTransformerOnce<T, R>where
R: Clone + 'static,
Creates a constant transformer
§Examples
/// rust /// use qubit_function::{BoxTransformerOnce, Transformer}; /// /// let constant = BoxTransformerOnce::constant("hello"); /// assert_eq!(constant.apply(123), "hello"); ///