184 lines
6.2 KiB
Rust
184 lines
6.2 KiB
Rust
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//! Demonstrate sorting SubDevices into multiple SubDevice groups.
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//!
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//! This demo is designed to be used with the following SubDevices:
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//!
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//! - EK1100 (or EK1501 if using fibre)
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//! - EL2889 (2 bytes of outputs)
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//! - EL2828 (1 byte of outputs)
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use env_logger::Env;
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use ethercrab::{
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MainDevice, MainDeviceConfig, PduStorage, SubDeviceGroup, Timeouts, error::Error,
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std::ethercat_now,
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};
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use futures_lite::StreamExt;
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use std::{
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sync::Arc,
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time::{Duration, Instant},
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};
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/// Maximum number of SubDevices that can be stored. This must be a power of 2 greater than 1.
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const MAX_SUBDEVICES: usize = 16;
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/// Maximum PDU data payload size - set this to the max PDI size or higher.
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const MAX_PDU_DATA: usize = PduStorage::element_size(1100);
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/// Maximum number of EtherCAT frames that can be in flight at any one time.
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const MAX_FRAMES: usize = 16;
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static PDU_STORAGE: PduStorage<MAX_FRAMES, MAX_PDU_DATA> = PduStorage::new();
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#[derive(Default)]
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struct Groups {
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/// EL2889 and EK1100/EK1501. For EK1100, 2 items, 2 bytes of PDI for 16 output bits. The EK1501
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/// has 2 bytes of its own PDI so we'll use an upper bound of 4.
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///
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/// We'll keep the EK1100/EK1501 in here as it has no useful PDI but still needs to live
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/// somewhere.
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slow_outputs: SubDeviceGroup<2, 4>,
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/// EL2828. 1 item, 1 byte of PDI for 8 output bits.
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fast_outputs: SubDeviceGroup<1, 1>,
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}
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fn main() -> Result<(), Error> {
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smol::block_on(async {
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env_logger::Builder::from_env(Env::default().default_filter_or("info")).init();
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let interface = std::env::args()
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.nth(1)
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.expect("Provide network interface as first argument.");
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log::info!("Starting multiple groups demo...");
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log::info!(
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"Ensure an EK1100 or EK1501 is the first SubDevice, with an EL2828 and EL2889 following it"
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);
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log::info!("Run with RUST_LOG=ethercrab=debug or =trace for debug information");
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let (tx, rx, pdu_loop) = PDU_STORAGE.try_split().expect("can only split once");
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let maindevice = MainDevice::new(
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pdu_loop,
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Timeouts {
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wait_loop_delay: Duration::from_millis(2),
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mailbox_response: Duration::from_millis(1000),
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..Default::default()
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},
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MainDeviceConfig::default(),
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);
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#[cfg(target_os = "windows")]
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std::thread::spawn(move || {
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ethercrab::std::tx_rx_task_blocking(
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&interface,
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tx,
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rx,
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ethercrab::std::TxRxTaskConfig { spinloop: false },
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)
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.expect("TX/RX task")
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});
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// Network TX/RX should run in a separate thread to avoid timeouts. Tokio doesn't guarantee a
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// separate thread is used but this is good enough for an example. If using `tokio`, make sure
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// the `rt-multi-thread` feature is enabled.
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#[cfg(not(target_os = "windows"))]
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smol::spawn(ethercrab::std::tx_rx_task(&interface, tx, rx).expect("spawn TX/RX task"))
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.detach();
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let maindevice = Arc::new(maindevice);
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// Read configurations from SubDevice EEPROMs and configure devices.
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let groups = maindevice
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.init::<MAX_SUBDEVICES, _>(
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ethercat_now,
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Groups::default(),
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|groups: &Groups, subdevice| match subdevice.name() {
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"EL2889" | "EK1100" | "EK1501" => Ok(&groups.slow_outputs),
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"EL2828" => Ok(&groups.fast_outputs),
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_ => Err(Error::UnknownSubDevice),
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},
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)
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.await
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.expect("Init");
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let Groups {
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slow_outputs,
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fast_outputs,
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} = groups;
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let maindevice_slow = maindevice.clone();
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let slow_task = async {
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let slow_outputs = slow_outputs
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.into_op(&maindevice_slow)
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.await
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.expect("PRE-OP -> OP");
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let mut slow_cycle_time = smol::Timer::interval(Duration::from_millis(3));
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let slow_duration = Duration::from_millis(250);
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// Only update "slow" outputs every 250ms using this instant
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let mut tick = Instant::now();
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// EK1100 is first SubDevice, EL2889 is second
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let el2889 = slow_outputs
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.subdevice(&maindevice_slow, 1)
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.expect("EL2889 not present!");
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// Set initial output state
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el2889.outputs_raw_mut()[0] = 0x01;
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el2889.outputs_raw_mut()[1] = 0x80;
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loop {
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let Ok(_) = slow_outputs.tx_rx(&maindevice_slow).await else {
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break;
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};
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// Increment every output byte for every SubDevice by one
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if tick.elapsed() > slow_duration {
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tick = Instant::now();
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let el2889 = slow_outputs
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.subdevice(&maindevice_slow, 1)
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.expect("EL2889 not present!");
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let mut o = el2889.outputs_raw_mut();
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// Make a nice pattern on EL2889 LEDs
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o[0] = o[0].rotate_left(1);
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o[1] = o[1].rotate_right(1);
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}
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slow_cycle_time.next().await;
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}
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};
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let fast_task = async move {
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let fast_outputs = fast_outputs
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.into_op(&maindevice)
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.await
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.expect("PRE-OP -> OP");
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let mut fast_cycle_time = smol::Timer::interval(Duration::from_millis(5));
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loop {
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let Ok(_) = fast_outputs.tx_rx(&maindevice).await else {
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break;
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};
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// Increment every output byte for every SubDevice by one
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for subdevice in fast_outputs.iter(&maindevice) {
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let mut o = subdevice.outputs_raw_mut();
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for byte in o.iter_mut() {
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*byte = byte.wrapping_add(1);
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}
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}
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fast_cycle_time.next().await;
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}
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};
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let (_slow, _fast) = smol::future::zip(slow_task, fast_task).await;
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Ok(())
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})
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}
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