#![forbid(unsafe_code)]
use std::collections::BTreeMap;
use std::fs;
use std::path::PathBuf;
use std::time::{Instant, SystemTime, UNIX_EPOCH};
use fsci_conformance::{ArmCounts, CompareLedger};
use fsci_runtime::RuntimeMode;
use fsci_sparse::ops::csr_to_csc_with_mode_and_audit;
use fsci_sparse::{
CooMatrix, CscMatrix, CsrMatrix, FormatConvertible, Shape2D, coo_to_csr_with_mode,
csc_to_csr_with_mode, csr_to_csc_with_mode, sync_audit_ledger,
};
use serde::Serialize;
const PACKET_ID: &str = "FSCI-P2C-007";
const ABS_TOL: f64 = 1.0e-15;
#[derive(Debug, Clone, Serialize)]
struct CaseDiff {
case_id: String,
op: String,
abs_diff: f64,
pass: bool,
}
#[derive(Debug, Clone, Serialize)]
struct DiffLog {
test_id: String,
category: String,
case_count: usize,
compared: BTreeMap<String, ArmCounts>,
max_abs_diff: f64,
pass: bool,
timestamp_ms: u128,
duration_ns: u128,
cases: Vec<CaseDiff>,
}
fn output_dir() -> PathBuf {
PathBuf::from(env!("CARGO_MANIFEST_DIR")).join(format!("fixtures/artifacts/{PACKET_ID}/diff"))
}
fn ensure_output_dir() {
fs::create_dir_all(output_dir()).expect("create conv_with_mode diff dir");
}
fn timestamp_ms() -> u128 {
SystemTime::now()
.duration_since(UNIX_EPOCH)
.map_or(0, |d| d.as_millis())
}
fn emit_log(log: &DiffLog) {
ensure_output_dir();
let path = output_dir().join(format!("{}.json", log.test_id));
let json = serde_json::to_string_pretty(log).expect("serialize log");
fs::write(path, json).expect("write log");
}
fn csr_to_dense(c: &CsrMatrix) -> Vec<f64> {
let s = c.shape();
let mut out = vec![0.0_f64; s.rows * s.cols];
let indptr = c.indptr();
let indices = c.indices();
let data = c.data();
for r in 0..s.rows {
let start = indptr[r];
let end = indptr[r + 1];
for idx in start..end {
out[r * s.cols + indices[idx]] += data[idx];
}
}
out
}
fn csc_to_dense(c: &CscMatrix) -> Vec<f64> {
let s = c.shape();
let mut out = vec![0.0_f64; s.rows * s.cols];
let indptr = c.indptr();
let indices = c.indices();
let data = c.data();
for col in 0..s.cols {
let start = indptr[col];
let end = indptr[col + 1];
for idx in start..end {
out[indices[idx] * s.cols + col] += data[idx];
}
}
out
}
fn vec_diff(a: &[f64], b: &[f64]) -> f64 {
if a.len() != b.len() {
return f64::INFINITY;
}
a.iter()
.zip(b.iter())
.map(|(x, y)| (x - y).abs())
.fold(0.0_f64, f64::max)
}
#[test]
fn diff_sparse_conv_with_mode() {
let start = Instant::now();
let mut diffs: Vec<CaseDiff> = Vec::new();
let mut max_overall = 0.0_f64;
let audit_ledger = sync_audit_ledger();
let probes: &[(&str, usize, usize, Vec<(usize, usize, f64)>)] = &[
(
"small_3x3",
3,
3,
vec![
(0, 0, 1.0),
(0, 2, 2.0),
(1, 1, 3.0),
(2, 0, 4.0),
(2, 2, 5.0),
],
),
(
"tall_5x3",
5,
3,
vec![(0, 0, 1.0), (1, 2, 2.0), (3, 1, 3.0), (4, 0, 4.0)],
),
(
"wide_3x5",
3,
5,
vec![(0, 4, 1.0), (1, 2, 2.0), (2, 0, 3.0), (2, 3, 4.0)],
),
];
let mut ledger = CompareLedger::new(
"diff_sparse_conv_with_mode",
&["coo_to_csr", "csr_to_csc", "csr_to_csc_audit", "csc_to_csr"],
);
for (label, rows, cols, trips) in probes {
let mut data = Vec::new();
let mut rs = Vec::new();
let mut cs = Vec::new();
for &(r, c, v) in trips {
data.push(v);
rs.push(r);
cs.push(c);
}
let coo = CooMatrix::from_triplets(Shape2D::new(*rows, *cols), data, rs, cs, true)
.expect("plain coo from triplets");
let plain_csr = coo.to_csr().expect("plain coo->csr");
let plain_dense_csr = csr_to_dense(&plain_csr);
let plain_csc = plain_csr.to_csc().expect("plain csr->csc");
let plain_dense_csc = csc_to_dense(&plain_csc);
let plain_csr2 = plain_csc.to_csr().expect("plain csc->csr");
let plain_dense_csr2 = csr_to_dense(&plain_csr2);
let checks = [
(
"coo_to_csr",
format!("coo2csr_strict_{label}"),
&plain_dense_csr,
coo_to_csr_with_mode(&coo, RuntimeMode::Strict, "test-c2c-strict")
.ok()
.map(|(mode_csr, _log)| csr_to_dense(&mode_csr)),
),
(
"coo_to_csr",
format!("coo2csr_hard_{label}"),
&plain_dense_csr,
coo_to_csr_with_mode(&coo, RuntimeMode::Hardened, "test-c2c-hard")
.ok()
.map(|(mode_csr, _log)| csr_to_dense(&mode_csr)),
),
(
"csr_to_csc",
format!("csr2csc_strict_{label}"),
&plain_dense_csc,
csr_to_csc_with_mode(&plain_csr, RuntimeMode::Strict, "test-r2c-strict")
.ok()
.map(|(mode_csc, _log)| csc_to_dense(&mode_csc)),
),
(
"csr_to_csc_audit",
format!("csr2csc_audit_strict_{label}"),
&plain_dense_csc,
csr_to_csc_with_mode_and_audit(
&plain_csr,
RuntimeMode::Strict,
"test-r2c-audit",
&audit_ledger,
)
.ok()
.map(|(mode_csc, _log)| csc_to_dense(&mode_csc)),
),
(
"csc_to_csr",
format!("csc2csr_strict_{label}"),
&plain_dense_csr2,
csc_to_csr_with_mode(&plain_csc, RuntimeMode::Strict, "test-c2r-strict")
.ok()
.map(|(mode_csr2, _log)| csr_to_dense(&mode_csr2)),
),
];
for (op, case_id, plain_dense, mode_dense) in checks {
let Some((plain_dense, mode_dense)) = ledger.slices(
op,
&case_id,
Some(plain_dense.as_slice()),
mode_dense.as_deref(),
) else {
continue;
};
let d = vec_diff(mode_dense, plain_dense);
max_overall = max_overall.max(d);
ledger.compared(op, &case_id, d <= ABS_TOL);
diffs.push(CaseDiff {
case_id,
op: op.into(),
abs_diff: d,
pass: d <= ABS_TOL,
});
}
}
let all_pass = diffs.iter().all(|d| d.pass);
let log = DiffLog {
test_id: "diff_sparse_conv_with_mode".into(),
category: "fsci_sparse with-mode conversion variants equivalent to plain to_csr/to_csc"
.into(),
case_count: diffs.len(),
compared: ledger.counts().clone(),
max_abs_diff: max_overall,
pass: all_pass,
timestamp_ms: timestamp_ms(),
duration_ns: start.elapsed().as_nanos(),
cases: diffs.clone(),
};
emit_log(&log);
for d in &diffs {
if !d.pass {
eprintln!("{} mismatch: {} abs_diff={}", d.op, d.case_id, d.abs_diff);
}
}
assert!(
all_pass,
"sparse conv_with_mode conformance failed: {} cases, max_diff={}",
diffs.len(),
max_overall
);
ledger.finish(probes.len());
}