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- Created empty solution files for various exercises in strings, modules, hashmaps, options, error handling, generics, traits, lifetimes, tests, iterators, smart pointers, threads, macros, clippy, conversions, and quizzes. - Each solution file contains a main function with a comment indicating that it will be automatically filled after completing the exercise. - Added a README.md file to provide information about the solutions and their purpose.
35 lines
1.0 KiB
Rust
35 lines
1.0 KiB
Rust
// Building on the last exercise, we want all of the threads to complete their
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// work. But this time, the spawned threads need to be in charge of updating a
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// shared value: `JobStatus.jobs_done`
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use std::{sync::{Arc, Mutex}, thread, time::Duration};
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struct JobStatus {
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jobs_done: u32,
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}
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fn main() {
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// TODO: `Arc` isn't enough if you want a **mutable** shared state.
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let status = Arc::new(Mutex::new(JobStatus { jobs_done: 0 }));
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let mut handles = Vec::new();
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for _ in 0..10 {
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let status_shared = Arc::clone(&status);
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let handle = thread::spawn(move || {
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thread::sleep(Duration::from_millis(250));
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// TODO: You must take an action before you update a shared value.
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status_shared.lock().unwrap().jobs_done += 1;
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});
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handles.push(handle);
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}
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// Waiting for all jobs to complete.
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for handle in handles {
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handle.join().unwrap();
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}
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// TODO: Print the value of `JobStatus.jobs_done`.
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println!("Jobs done: {}", status.lock().unwrap().jobs_done);
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}
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