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/*******************************************************************************
*
* Copyright (c) 2025 - 2026.
* Haixing Hu, Qubit Co. Ltd.
*
* All rights reserved.
*
******************************************************************************/
//! # Supplier Types
//!
//! Provides stateless supplier implementations that generate and
//! return values without taking input.
//!
//! # Overview
//!
//! A **Supplier** is a functional abstraction equivalent to
//! `Fn() -> T`: it generates values without accepting input or
//! requiring mutable access to itself. The `get` method uses `&self`,
//! enabling use in read-only contexts and lock-free concurrent access
//! for the `Arc` implementation.
//!
//! For generators that need mutable internal state, such as counters
//! or sequences, use [`StatefulSupplier`](crate::StatefulSupplier).
//!
//! # Key Differences from StatefulSupplier
//!
//! | Aspect | `Supplier<T>` | `StatefulSupplier<T>` |
//! |--------|---------------|----------------------|
//! | self signature | `&self` | `&mut self` |
//! | Closure type | `Fn() -> T` | `FnMut() -> T` |
//! | Can modify internal state | No | Yes |
//! | Arc implementation | `Arc<dyn Fn() -> T + Send + Sync>` | `Arc<Mutex<dyn FnMut() -> T + Send>>` |
//! | Use cases | Factory, constant, high concurrency | Counter, sequence, generator |
//!
//! # Three Implementations
//!
//! - **`BoxSupplier<T>`**: Single ownership using `Box<dyn
//! Fn() -> T>`. Zero overhead, cannot be cloned. Best for
//! one-time use in read-only contexts.
//!
//! - **`ArcSupplier<T>`**: Thread-safe shared ownership
//! using `Arc<dyn Fn() -> T + Send + Sync>`. **Lock-free** - no
//! Mutex needed! Can be cloned and sent across threads with
//! excellent performance.
//!
//! - **`RcSupplier<T>`**: Single-threaded shared ownership
//! using `Rc<dyn Fn() -> T>`. Can be cloned but not sent across
//! threads. Lightweight alternative to `ArcSupplier`.
//!
//! # Use Cases
//!
//! ## 1. Calling in `&self` Methods
//!
//! ```rust
//! use qubit_function::{ArcSupplier, Supplier};
//!
//! struct Executor<E> {
//! error_supplier: ArcSupplier<E>,
//! }
//!
//! impl<E> Executor<E> {
//! fn execute(&self) -> Result<(), E> {
//! // Can call directly in &self method!
//! Err(self.error_supplier.get())
//! }
//! }
//! ```
//!
//! ## 2. High-Concurrency Lock-Free Access
//!
//! ```rust
//! use qubit_function::{ArcSupplier, Supplier};
//! use std::thread;
//!
//! let factory = ArcSupplier::new(|| {
//! String::from("Hello, World!")
//! });
//!
//! let handles: Vec<_> = (0..10)
//! .map(|_| {
//! let f = factory.clone();
//! thread::spawn(move || f.get()) // Lock-free!
//! })
//! .collect();
//!
//! for h in handles {
//! assert_eq!(h.join().unwrap(), "Hello, World!");
//! }
//! ```
//!
//! ## 3. Fixed Factories
//!
//! ```rust
//! use qubit_function::{BoxSupplier, Supplier};
//!
//! #[derive(Clone)]
//! struct Config {
//! timeout: u64,
//! }
//!
//! let config_factory = BoxSupplier::new(|| Config {
//! timeout: 30,
//! });
//!
//! assert_eq!(config_factory.get().timeout, 30);
//! assert_eq!(config_factory.get().timeout, 30);
//! ```
//!
//! # Performance Comparison
//!
//! For stateless scenarios in multi-threaded environments:
//!
//! - `ArcStatefulSupplier<T>`: Requires `Mutex`, lock contention on
//! every `get()` call.
//! - `ArcSupplier<T>`: Lock-free, can call `get()`
//! concurrently without contention.
//!
//! Benchmark results show `ArcSupplier` can be **10x
//! faster** than `ArcStatefulSupplier` in high-concurrency stateless
//! scenarios.
//!
//! # Author
//!
//! Haixing Hu
use Rc;
use Arc;
use crateBoxSupplierOnce;
use crate;
use cratePredicate;
use crate;
use crateTransformer;
pub use BoxSupplier;
pub use ArcSupplier;
pub use RcSupplier;
// ======================================================================
// Supplier Trait
// ======================================================================
/// Stateless supplier trait: generates values without modifying
/// state.
///
/// The core abstraction for stateless value generation. Unlike
/// `Supplier<T>`, it uses `&self` instead of `&mut self`, enabling
/// usage in read-only contexts and lock-free concurrent access.
///
/// # Key Characteristics
///
/// - **No input parameters**: Pure value generation
/// - **Read-only access**: Uses `&self`, doesn't modify state
/// - **Returns ownership**: Returns `T` (not `&T`) to avoid
/// lifetime issues
/// - **Lock-free concurrency**: `Arc` implementation doesn't need
/// `Mutex`
///
/// # Automatically Implemented for Closures
///
/// All `Fn() -> T` closures automatically implement this trait,
/// enabling seamless integration with both raw closures and
/// wrapped supplier types.
///
/// # Examples
///
/// ## Using with Generic Functions
///
/// ```rust
/// use qubit_function::{Supplier, BoxSupplier};
///
/// fn call_twice<S: Supplier<i32>>(supplier: &S)
/// -> (i32, i32)
/// {
/// (supplier.get(), supplier.get())
/// }
///
/// let s = BoxSupplier::new(|| 42);
/// assert_eq!(call_twice(&s), (42, 42));
///
/// let closure = || 100;
/// assert_eq!(call_twice(&closure), (100, 100));
/// ```
///
/// ## Stateless Factory
///
/// ```rust
/// use qubit_function::{Supplier, SupplierOnce};
///
/// struct User {
/// name: String,
/// }
///
/// impl User {
/// fn new() -> Self {
/// User {
/// name: String::from("Default"),
/// }
/// }
/// }
///
/// let factory = || User::new();
/// let user1 = factory.get();
/// let user2 = factory.get();
/// // Each call creates a new User instance
/// ```
///
/// # Author
///
/// Haixing Hu