ethercat-linux/vendor/ethercrab/tests/replay-ek1914-segmented-upload.rs

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//! Test that segmented CoE uploads work.
//!
//! - EK1914
mod util;
use env_logger::Env;
use ethercrab::{MainDevice, MainDeviceConfig, PduStorage, Timeouts, error::Error};
use std::path::PathBuf;
const MAX_SUBDEVICES: usize = 16;
const MAX_PDU_DATA: usize = PduStorage::element_size(1100);
const MAX_FRAMES: usize = 128;
const PDI_LEN: usize = 128;
#[tokio::test]
#[cfg_attr(miri, ignore)]
async fn replay_ek1914_segmented_upload() -> Result<(), Error> {
env_logger::Builder::from_env(Env::default().default_filter_or("info")).init();
static PDU_STORAGE: PduStorage<MAX_FRAMES, MAX_PDU_DATA> = PduStorage::new();
let (tx, rx, pdu_loop) = PDU_STORAGE.try_split().expect("can only split once");
let maindevice = MainDevice::new(
pdu_loop,
Timeouts::default(),
MainDeviceConfig {
dc_static_sync_iterations: 100,
..Default::default()
},
);
let test_name = PathBuf::from(file!())
.file_stem()
.unwrap()
.to_string_lossy()
.to_string();
util::spawn_tx_rx(&format!("tests/{test_name}.pcapng"), tx, rx);
// Read configurations from SubDevice EEPROMs and configure devices.
let group = maindevice
.init_single_group::<MAX_SUBDEVICES, PDI_LEN>(|| 0)
.await
.expect("Init");
assert_eq!(group.subdevice(&maindevice, 0)?.name(), "EK1914");
let first = group
.subdevice(&maindevice, 0)
.expect("EK1914 must be first");
let name_coe = first
.sdo_read::<heapless::String<32>>(0x1008, 0)
.await
.expect("Failed to read name");
log::info!("Device name: {:?}", name_coe);
assert_eq!(&name_coe, "EK1914");
Ok(())
}