bench: concurrent-read harness against h5py threads and processes
concurrent_read reads one shared File from 1-16 threads: every dataset in full (distinct datasets per thread) and random hyperslabs of one dataset, over a deflate and a contiguous file it generates (or reuses while manifest.json matches). It reports decoded MB/s and scaling efficiency, warm or --cold (posix_fadvise) page cache, sizes the decode pool with --decode-threads, and writes JSON. scripts/concurrent_read_h5py.py runs the same workload on the same files with h5py threads or spawned processes (same splitmix64 data and slab stream, checked at spot elements), and compare_concurrent_read.py prints one table and refuses runs with different workloads. A smoke test runs all three end to end on tiny files (h5py half honours CLAWHDF5_PYTHON / CLAWHDF5_REQUIRE_INTEROP). BENCHMARKS.md gets a "Concurrent reads" section with the commands, marked not yet measured. Co-Authored-By: Claude Opus 5.5 (1M context) <[email protected]>
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//! Keeps the concurrent-read harnesses working: runs `concurrent_read`, the
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//! h5py script (threads and processes) and the comparison script end to end
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//! on tiny files. h5py reading the files also checks, element by element at
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//! spot positions, that both harnesses generate the same data and slabs.
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//!
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//! The h5py half is skipped when python3 with h5py is unavailable, unless
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//! `CLAWHDF5_REQUIRE_INTEROP=1`; `CLAWHDF5_PYTHON` picks the interpreter.
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use std::path::{Path, PathBuf};
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use std::process::Command;
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fn python() -> String {
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std::env::var("CLAWHDF5_PYTHON").unwrap_or_else(|_| "python3".to_string())
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}
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fn interop_required() -> bool {
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std::env::var("CLAWHDF5_REQUIRE_INTEROP").is_ok_and(|v| v == "1")
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}
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fn python_available() -> bool {
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Command::new(python())
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.args(["-c", "import h5py, numpy"])
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.output()
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.map(|o| o.status.success())
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.unwrap_or(false)
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}
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fn scripts() -> PathBuf {
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Path::new(env!("CARGO_MANIFEST_DIR")).join("scripts")
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}
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fn run(cmd: &mut Command) -> String {
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let out = cmd.output().expect("spawn");
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assert!(
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out.status.success(),
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"{cmd:?} failed\nSTDOUT:\n{}\nSTDERR:\n{}",
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String::from_utf8_lossy(&out.stdout),
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String::from_utf8_lossy(&out.stderr)
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);
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String::from_utf8_lossy(&out.stdout).into_owned()
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}
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const SMALL: [&str; 8] = [
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"--threads",
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"1,2",
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"--slabs",
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"8",
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"--reps",
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"1",
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"--slab",
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"64",
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];
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fn results(path: &Path) -> serde_json::Value {
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serde_json::from_str(&std::fs::read_to_string(path).unwrap()).unwrap()
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}
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#[test]
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fn harnesses_run_end_to_end_on_tiny_files() {
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let dir = tempfile::TempDir::new().unwrap();
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let data = dir.path().join("data");
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let claw = dir.path().join("claw.json");
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let bin = env!("CARGO_BIN_EXE_concurrent_read");
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run(Command::new(bin)
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.arg("--dir")
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.arg(&data)
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.args(["--datasets", "3", "--mib", "1"])
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.args(SMALL)
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.arg("--json")
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.arg(&claw));
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// Second run reuses the files (and exercises --cold).
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let out = Command::new(bin)
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.arg("--dir")
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.arg(&data)
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.args(["--datasets", "3", "--mib", "1", "--cold"])
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.args(SMALL)
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.output()
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.unwrap();
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assert!(out.status.success());
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assert!(String::from_utf8_lossy(&out.stderr).contains("reusing"));
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let doc = results(&claw);
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assert_eq!(doc["tool"], "clawhdf5");
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// 2 layouts x 2 modes x 2 thread counts.
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assert_eq!(doc["results"].as_array().unwrap().len(), 8);
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for r in doc["results"].as_array().unwrap() {
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assert!(r["mb_s"].as_f64().unwrap() > 0.0, "{r}");
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}
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if !python_available() {
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assert!(
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!interop_required(),
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"CLAWHDF5_REQUIRE_INTEROP=1 but {} has no h5py",
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python()
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);
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eprintln!("skipping the h5py half: no h5py in {}", python());
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return;
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}
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let mut jsons = vec![claw];
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for executor in ["threads", "processes"] {
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let out = dir.path().join(format!("h5py-{executor}.json"));
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run(Command::new(python())
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.arg(scripts().join("concurrent_read_h5py.py"))
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.arg("--dir")
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.arg(&data)
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.args(["--executor", executor])
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.args(SMALL)
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.arg("--json")
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.arg(&out));
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let doc = results(&out);
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assert_eq!(doc["tool"], format!("h5py-{executor}"));
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assert_eq!(doc["results"].as_array().unwrap().len(), 8);
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jsons.push(out);
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}
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let table = run(Command::new(python())
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.arg(scripts().join("compare_concurrent_read.py"))
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.args(&jsons));
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assert!(table.contains("| deflate | same | 2 |"), "{table}");
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assert!(table.contains("clawhdf5 / h5py-processes"), "{table}");
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// A different workload must not be compared.
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let other = dir.path().join("other.json");
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run(Command::new(python())
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.arg(scripts().join("concurrent_read_h5py.py"))
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.arg("--dir")
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.arg(&data)
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.args([
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"--threads",
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"1",
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"--slabs",
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"4",
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"--reps",
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"1",
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"--slab",
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"64",
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])
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.arg("--json")
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.arg(&other));
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let out = Command::new(python())
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.arg(scripts().join("compare_concurrent_read.py"))
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.arg(&jsons[0])
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.arg(&other)
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.output()
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.unwrap();
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assert!(!out.status.success());
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assert!(String::from_utf8_lossy(&out.stderr).contains("slabs"));
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}
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