transformer_demo/
transformer_demo.rs1use qubit_function::{
11 ArcTransformer,
12 BoxTransformer,
13 RcTransformer,
14 Transformer,
15};
16use std::collections::HashMap;
17use std::thread;
18
19fn main() {
20 println!("=== Transformer Demo - Type Transformation (consumes T) ===\n");
21
22 println!("--- BoxTransformer ---");
26 let double = BoxTransformer::new(|x: i32| x * 2);
27 println!("double.apply(21) = {}", double.apply(21));
28 println!("double.apply(42) = {}", double.apply(42));
29
30 let identity = BoxTransformer::<i32, i32>::identity();
32 println!("identity.apply(42) = {}", identity.apply(42));
33
34 let constant = BoxTransformer::constant("hello");
35 println!("constant.apply(123) = {}", constant.apply(123));
36 println!();
37
38 println!("--- ArcTransformer ---");
42 let arc_double = ArcTransformer::new(|x: i32| x * 2);
43 let arc_cloned = arc_double.clone();
44
45 println!("arc_double.apply(21) = {}", arc_double.apply(21));
46 println!("arc_cloned.apply(42) = {}", arc_cloned.apply(42));
47
48 let for_thread = arc_double.clone();
50 let handle = thread::spawn(move || for_thread.apply(100));
51 println!(
52 "In main thread: arc_double.apply(50) = {}",
53 arc_double.apply(50)
54 );
55 println!("In child thread: result = {}", handle.join().unwrap());
56 println!();
57
58 println!("--- RcTransformer ---");
62 let rc_double = RcTransformer::new(|x: i32| x * 2);
63 let rc_cloned = rc_double.clone();
64
65 println!("rc_double.apply(21) = {}", rc_double.apply(21));
66 println!("rc_cloned.apply(42) = {}", rc_cloned.apply(42));
67 println!();
68
69 println!("=== Practical Examples ===\n");
73
74 println!("--- String Transformation ---");
76 let to_upper = BoxTransformer::new(|s: String| s.to_uppercase());
77 println!(
78 "to_upper.apply('hello') = {}",
79 to_upper.apply("hello".to_string())
80 );
81 println!(
82 "to_upper.apply('world') = {}",
83 to_upper.apply("world".to_string())
84 );
85 println!();
86
87 println!("--- Type Conversion Pipeline ---");
89 let parse_int = BoxTransformer::new(|s: String| s.parse::<i32>().unwrap_or(0));
90 let double_int = BoxTransformer::new(|x: i32| x * 2);
91 let to_string = BoxTransformer::new(|x: i32| x.to_string());
92
93 let pipeline = parse_int.and_then(double_int).and_then(to_string);
94 println!(
95 "pipeline.apply('21') = {}",
96 pipeline.apply("21".to_string())
97 );
98 println!();
99
100 println!("--- Shared Transformation Logic ---");
102 let square = ArcTransformer::new(|x: i32| x * x);
103
104 let transformer1 = square.clone();
106 let transformer2 = square.clone();
107
108 println!("transformer1.apply(5) = {}", transformer1.apply(5));
109 println!("transformer2.apply(7) = {}", transformer2.apply(7));
110 println!("square.apply(3) = {}", square.apply(3));
111 println!();
112
113 println!("--- Transformer Registry ---");
115 let mut transformers: HashMap<String, RcTransformer<i32, String>> = HashMap::new();
116
117 transformers.insert(
118 "double".to_string(),
119 RcTransformer::new(|x: i32| format!("Doubled: {}", x * 2)),
120 );
121 transformers.insert(
122 "square".to_string(),
123 RcTransformer::new(|x: i32| format!("Squared: {}", x * x)),
124 );
125
126 if let Some(transformer) = transformers.get("double") {
127 println!("Transformer 'double': {}", transformer.apply(7));
128 }
129 if let Some(transformer) = transformers.get("square") {
130 println!("Transformer 'square': {}", transformer.apply(7));
131 }
132 println!();
133
134 println!("=== Trait Usage ===\n");
138
139 fn apply_transformer<F: Transformer<i32, String>>(f: &F, x: i32) -> String {
140 f.apply(x)
141 }
142
143 let to_string = BoxTransformer::new(|x: i32| format!("Value: {}", x));
144 println!("Via trait: {}", apply_transformer(&to_string, 42));
145
146 println!("\n=== Demo Complete ===");
147}