mirror of
https://github.com/bspeice/aeron-rs
synced 2024-11-14 03:58:08 -05:00
Bradlee Speice
dc9fd52e07
Needs a *ton* of work to be more Rust-idiomatic, but the basics are there.
142 lines
4.7 KiB
Rust
142 lines
4.7 KiB
Rust
use aeron_driver_sys::*;
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use aeron_rs::client::cnc_descriptor;
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use aeron_rs::client::concurrent::atomic_buffer::AtomicBuffer;
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use aeron_rs::client::concurrent::ring_buffer::ManyToOneRingBuffer;
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use aeron_rs::util::IndexT;
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use memmap::MmapOptions;
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use std::ffi::{c_void, CString};
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use std::fs::OpenOptions;
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use std::path::PathBuf;
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use std::sync::atomic::{AtomicBool, Ordering};
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use std::time::Duration;
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use std::{ptr, thread};
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use tempfile::tempdir;
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static RUNNING: AtomicBool = AtomicBool::new(false);
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unsafe extern "C" fn termination_hook(_state: *mut c_void) {
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RUNNING.store(false, Ordering::SeqCst);
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}
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unsafe extern "C" fn termination_validation(
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_state: *mut c_void,
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_data: *mut u8,
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_length: i32,
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) -> bool {
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true
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}
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fn driver_thread(aeron_dir: PathBuf) {
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// Code largely ripped from `aeronmd`. Extra bits for termination and
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// termination validation added as necessary, and far coarser error handling.
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let mut context: *mut aeron_driver_context_t = ptr::null_mut();
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let mut driver: *mut aeron_driver_t = ptr::null_mut();
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let context_init = unsafe { aeron_driver_context_init(&mut context) };
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assert!(context_init >= 0);
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let path_bytes = aeron_dir.to_str().unwrap().as_bytes();
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let c_string = CString::new(path_bytes).unwrap();
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let aeron_dir = unsafe { aeron_driver_context_set_dir(context, c_string.into_raw()) };
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assert!(aeron_dir >= 0);
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let term_hook = unsafe {
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aeron_driver_context_set_driver_termination_hook(
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context,
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Some(termination_hook),
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ptr::null_mut(),
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)
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};
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assert!(term_hook >= 0);
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let term_validation_hook = unsafe {
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aeron_driver_context_set_driver_termination_validator(
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context,
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Some(termination_validation),
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ptr::null_mut(),
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)
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};
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assert!(term_validation_hook >= 0);
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let delete_dir = unsafe { aeron_driver_context_set_dir_delete_on_start(context, true) };
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assert!(delete_dir >= 0);
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let driver_init = unsafe { aeron_driver_init(&mut driver, context) };
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assert!(driver_init >= 0);
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let driver_start = unsafe { aeron_driver_start(driver, true) };
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assert!(driver_start >= 0);
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RUNNING.store(true, Ordering::SeqCst);
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while RUNNING.load(Ordering::SeqCst) {
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unsafe { aeron_driver_main_idle_strategy(driver, aeron_driver_main_do_work(driver)) };
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}
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unsafe { aeron_driver_close(driver) };
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unsafe { aeron_driver_context_close(context) };
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}
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#[test]
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fn cnc_terminate() {
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let dir = tempdir().unwrap().into_path();
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// Start up the media driver
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let driver_dir = dir.clone();
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let driver_thread = thread::Builder::new()
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.name("cnc_terminate__driver_thread".to_string())
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.spawn(|| driver_thread(driver_dir))
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.unwrap();
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// Sleep a moment to let the media driver get set up
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thread::sleep(Duration::from_millis(500));
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assert_eq!(RUNNING.load(Ordering::SeqCst), true);
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// Write to the CnC file to attempt termination
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let cnc = dir.join(cnc_descriptor::CNC_FILE);
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let file = OpenOptions::new()
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.read(true)
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.write(true)
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.open(&cnc)
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.expect("Unable to open CnC file");
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let mut mmap =
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unsafe { MmapOptions::default().map_mut(&file) }.expect("Unable to mmap CnC file");
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// When creating the buffer, we need to offset by the CnC metadata
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let cnc_metadata_len = cnc_descriptor::META_DATA_LENGTH;
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// Read metadata to get buffer length
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let buffer_len = {
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let atomic_buffer = AtomicBuffer::wrap(&mut mmap);
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let metadata = atomic_buffer
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.overlay::<cnc_descriptor::MetaDataDefinition>(0)
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.unwrap();
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metadata.to_driver_buffer_length
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};
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let buffer_end = cnc_metadata_len + buffer_len as usize;
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let atomic_buffer = AtomicBuffer::wrap(&mut mmap[cnc_metadata_len..buffer_end]);
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let mut ring_buffer =
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ManyToOneRingBuffer::wrap(atomic_buffer).expect("Improperly sized buffer");
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// 20 bytes: Client ID (8), correlation ID (8), token length (4)
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let mut terminate_bytes = vec![0u8; 20];
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let terminate_len = terminate_bytes.len();
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let mut source_buffer = AtomicBuffer::wrap(&mut terminate_bytes);
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let client_id = ring_buffer.next_correlation_id();
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source_buffer.put_i64_ordered(0, client_id).unwrap();
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source_buffer.put_i64_ordered(8, -1).unwrap();
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let term_id: i32 = 0x0E;
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ring_buffer
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.write(term_id, &source_buffer, 0, terminate_len as IndexT)
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.unwrap();
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// Wait for the driver to finish
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// TODO: Timeout, and then set `RUNNING` manually
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driver_thread
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.join()
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.expect("Driver thread panicked during execution");
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assert_eq!(RUNNING.load(Ordering::SeqCst), false);
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}
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