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-rw-r--r--tester/src/main.rs24
1 files changed, 9 insertions, 15 deletions
diff --git a/tester/src/main.rs b/tester/src/main.rs
index 96fc86f..4bab72d 100644
--- a/tester/src/main.rs
+++ b/tester/src/main.rs
@@ -7,7 +7,7 @@ fn main() {
bell.h(0).cnot(0, 1);
println!("{}", bell);
- print!("\n------\n\n");
+ print!("------\n\n");
println!("GHZ State (3-qubit entanglement): |GHZ> = (|000⟩ + |111⟩)/√2");
println!(" Circuit: H(q0) → CNOT(q0, q1) → CNOT(q0, q2)");
@@ -15,7 +15,7 @@ fn main() {
ghz.h(0).cnot(0, 1).cnot(0, 2);
println!("{}", ghz);
- print!("\n------\n\n");
+ print!("------\n\n");
println!("SWAP via 3 CNOTs");
println!(" Start with |10>, apply CNOT chain");
@@ -27,7 +27,7 @@ fn main() {
.cnot(0, 1);
println!("{}", swap_circuit);
- print!("\n------\n\n");
+ print!("------\n\n");
println!("Toffoli Gate (Reversible AND)");
println!(" CCNOT flips q2 only when q0=1 AND q1=1");
@@ -38,7 +38,7 @@ fn main() {
.toffoli(0, 1, 2);
println!("{}", toffoli_circuit);
- print!("\n------\n\n");
+ print!("------\n\n");
println!("Fredkin Gate (Controlled SWAP)");
println!(" CSWAP swaps q1 and q2 only when q0=1");
@@ -49,7 +49,7 @@ fn main() {
.fredkin(0, 1, 2);
println!("{}", fredkin_circuit);
- print!("\n------\n\n");
+ print!("------\n\n");
println!("6. Non-contiguous CNOT (q0 controls q2, skipping q1)");
let mut nc_circuit = QuantumCircuit::new(3);
@@ -58,28 +58,22 @@ fn main() {
.cnot(0, 2); // CNOT with control=q0, target=q2
println!("{}", nc_circuit);
- print!("\n------\n\n");
+ print!("------\n\n");
println!("Full Superposition (H on all qubits)");
let mut super_circuit = QuantumCircuit::new(3);
super_circuit.h(0).h(1).h(2);
println!("{}", super_circuit);
- print!("\n------\n\n");
+ print!("------\n\n");
println!("Probability Test");
let mut prob_circuit = QuantumCircuit::new(2);
prob_circuit.h(0).cnot(0, 1);
- println!(" Bell state probabilities:");
- let probs = prob_circuit.probabilities();
- for (i, p) in probs.iter().enumerate() {
- if *p > 1e-10 {
- println!(" |{:02b}⟩: {:.4}", i, p);
- }
- }
+ prob_circuit.print_probabilities();
println!();
- print!("\n------\n\n");
+ print!("------\n\n");
println!("Complex Circuit with Method Chaining");
let mut complex = QuantumCircuit::new(4);