#![forbid(unsafe_code)]
use std::collections::{BTreeMap, HashMap};
use std::fs;
use std::io::Write;
use std::path::PathBuf;
use std::process::Stdio;
use std::time::{Instant, SystemTime, UNIX_EPOCH};
use fsci_conformance::{ArmCounts, CompareLedger};
use fsci_spatial::{angle_between, cross_3d, dot, normalize};
use serde::{Deserialize, Serialize};
const PACKET_ID: &str = "FSCI-P2C-011";
const ABS_TOL: f64 = 1.0e-12;
const REQUIRE_SCIPY_ENV: &str = "FSCI_REQUIRE_SCIPY_ORACLE";
#[derive(Debug, Clone, Serialize)]
struct PointCase {
case_id: String,
a: Vec<f64>,
b: Vec<f64>,
is_3d: bool,
}
#[derive(Debug, Clone, Serialize)]
struct OracleQuery {
points: Vec<PointCase>,
}
#[derive(Debug, Clone, Deserialize)]
struct PointArm {
case_id: String,
dot: Option<f64>,
angle: Option<f64>,
cross: Option<[f64; 3]>,
norm_a: Option<Vec<f64>>,
}
#[derive(Debug, Clone, Deserialize)]
struct OracleResult {
points: Vec<PointArm>,
}
#[derive(Debug, Clone, Serialize)]
struct CaseDiff {
case_id: String,
sub_check: String,
detail: String,
pass: bool,
}
#[derive(Debug, Clone, Serialize)]
struct DiffLog {
test_id: String,
category: String,
case_count: usize,
compared: BTreeMap<String, ArmCounts>,
pass_count: usize,
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 vector-ops diff output 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 vector-ops diff log");
fs::write(path, json).expect("write vector-ops diff log");
}
fn generate_query() -> OracleQuery {
OracleQuery {
points: vec![
PointCase {
case_id: "orthogonal_3d".into(),
a: vec![1.0, 0.0, 0.0],
b: vec![0.0, 1.0, 0.0],
is_3d: true,
},
PointCase {
case_id: "parallel_3d".into(),
a: vec![1.0, 1.0, 1.0],
b: vec![2.0, 2.0, 2.0],
is_3d: true,
},
PointCase {
case_id: "antiparallel_3d".into(),
a: vec![1.0, 0.0, 0.0],
b: vec![-1.0, 0.0, 0.0],
is_3d: true,
},
PointCase {
case_id: "generic_3d".into(),
a: vec![1.0, 2.0, 3.0],
b: vec![4.0, -1.0, 2.0],
is_3d: true,
},
PointCase {
case_id: "generic_4d".into(),
a: vec![1.0, 0.5, -0.25, 2.0],
b: vec![-0.5, 1.0, 0.75, 0.25],
is_3d: false,
},
],
}
}
fn scipy_oracle_or_skip(query: &OracleQuery) -> Option<OracleResult> {
let script = r#"
import json
import math
import sys
import numpy as np
def fnone(v):
try:
v = float(v)
except Exception:
return None
return v if math.isfinite(v) else None
q = json.load(sys.stdin)
points = []
for case in q["points"]:
cid = case["case_id"]
a = np.asarray(case["a"], dtype=np.float64)
b = np.asarray(case["b"], dtype=np.float64)
out = {"case_id": cid, "dot": None, "angle": None, "cross": None, "norm_a": None}
try:
out["dot"] = fnone(np.dot(a, b))
na = np.linalg.norm(a)
nb = np.linalg.norm(b)
if na * nb > 0:
cos = float(np.clip(np.dot(a, b) / (na * nb), -1.0, 1.0))
out["angle"] = fnone(math.acos(cos))
else:
out["angle"] = 0.0
if case["is_3d"]:
c = np.cross(a, b)
out["cross"] = [fnone(v) for v in c.tolist()]
if na > 0:
out["norm_a"] = [fnone(v) for v in (a / na).tolist()]
else:
out["norm_a"] = [fnone(v) for v in a.tolist()]
except Exception:
pass
points.append(out)
print(json.dumps({"points": points}, allow_nan=False))
"#;
let query_json = serde_json::to_string(query).expect("serialize vector-ops query");
let mut child = match fsci_conformance::scipy_oracle_command()
.arg("-c")
.arg(script)
.stdin(Stdio::piped())
.stdout(Stdio::piped())
.stderr(Stdio::piped())
.spawn()
{
Ok(c) => c,
Err(e) => {
assert!(
std::env::var(REQUIRE_SCIPY_ENV).is_err(),
"failed to spawn python3 for vector-ops oracle: {e}"
);
eprintln!("skipping vector-ops oracle: python3 not available ({e})");
return None;
}
};
{
let stdin = child.stdin.as_mut().expect("open vector-ops oracle stdin");
if let Err(err) = stdin.write_all(query_json.as_bytes()) {
let output = child.wait_with_output().expect("wait for failed oracle");
let stderr = String::from_utf8_lossy(&output.stderr);
assert!(
std::env::var(REQUIRE_SCIPY_ENV).is_err(),
"vector-ops oracle stdin write failed: {err}; stderr: {stderr}"
);
eprintln!("skipping vector-ops oracle: stdin write failed ({err})\n{stderr}");
return None;
}
}
let output = child
.wait_with_output()
.expect("wait for vector-ops oracle");
if !output.status.success() {
let stderr = String::from_utf8_lossy(&output.stderr);
assert!(
std::env::var(REQUIRE_SCIPY_ENV).is_err(),
"vector-ops oracle failed: {stderr}"
);
eprintln!("skipping vector-ops oracle: numpy not available\n{stderr}");
return None;
}
let stdout = String::from_utf8_lossy(&output.stdout);
Some(serde_json::from_str(&stdout).expect("parse vector-ops oracle JSON"))
}
#[test]
fn diff_spatial_vector_ops() {
let query = generate_query();
let Some(oracle) = scipy_oracle_or_skip(&query) else {
return;
};
assert_eq!(oracle.points.len(), query.points.len());
let pmap: HashMap<String, PointArm> = oracle
.points
.into_iter()
.map(|r| (r.case_id.clone(), r))
.collect();
let start = Instant::now();
let mut cases = Vec::new();
let mut ledger = CompareLedger::new(
"diff_spatial_vector_ops",
&["dot", "angle_between", "cross_3d", "normalize"],
);
for case in &query.points {
let scipy_arm = pmap.get(&case.case_id).expect("validated oracle");
if let Some((scipy_d, r)) = ledger.pair(
"dot",
&case.case_id,
scipy_arm.dot,
Some(dot(&case.a, &case.b)),
) {
ledger.compared("dot", &case.case_id, (r - scipy_d).abs() <= ABS_TOL);
cases.push(CaseDiff {
case_id: case.case_id.clone(),
sub_check: "dot".into(),
detail: format!("rust={r}, numpy={scipy_d}"),
pass: (r - scipy_d).abs() <= ABS_TOL,
});
}
if let Some((scipy_ang, r)) = ledger.pair(
"angle_between",
&case.case_id,
scipy_arm.angle,
Some(angle_between(&case.a, &case.b)),
) {
ledger.compared(
"angle_between",
&case.case_id,
(r - scipy_ang).abs() <= ABS_TOL,
);
cases.push(CaseDiff {
case_id: case.case_id.clone(),
sub_check: "angle_between".into(),
detail: format!("rust={r}, numpy={scipy_ang}"),
pass: (r - scipy_ang).abs() <= ABS_TOL,
});
}
if case.is_3d {
let a3 = [case.a[0], case.a[1], case.a[2]];
let b3 = [case.b[0], case.b[1], case.b[2]];
let r = cross_3d(&a3, &b3);
if let (Some(_), Some(scipy_c)) = (
ledger.slices(
"cross_3d",
&case.case_id,
scipy_arm.cross.as_ref().map(|c| c.as_slice()),
Some(r.as_slice()),
),
scipy_arm.cross,
) {
let abs_diff = [
(r[0] - scipy_c[0]).abs(),
(r[1] - scipy_c[1]).abs(),
(r[2] - scipy_c[2]).abs(),
];
let pass = abs_diff.iter().all(|d| *d <= ABS_TOL);
ledger.compared("cross_3d", &case.case_id, pass);
cases.push(CaseDiff {
case_id: case.case_id.clone(),
sub_check: "cross_3d".into(),
detail: format!("rust={r:?}, numpy={scipy_c:?}"),
pass,
});
}
}
let r = normalize(&case.a);
if let Some((scipy_n, _)) = ledger.slices(
"normalize",
&case.case_id,
scipy_arm.norm_a.as_deref(),
Some(r.as_slice()),
) {
let pass = r.len() == scipy_n.len()
&& r.iter()
.zip(scipy_n.iter())
.all(|(rv, sv)| (rv - sv).abs() <= ABS_TOL);
ledger.compared("normalize", &case.case_id, pass);
cases.push(CaseDiff {
case_id: case.case_id.clone(),
sub_check: "normalize".into(),
detail: format!("rust={r:?}, numpy={scipy_n:?}"),
pass,
});
}
}
let pass_count = cases.iter().filter(|c| c.pass).count();
let all_pass = pass_count == cases.len();
let log = DiffLog {
test_id: "diff_spatial_vector_ops".into(),
category: "fsci_spatial::{dot,angle_between,cross_3d,normalize}".into(),
case_count: cases.len(),
compared: ledger.counts().clone(),
pass_count,
pass: all_pass,
timestamp_ms: timestamp_ms(),
duration_ns: start.elapsed().as_nanos(),
cases: cases.clone(),
};
emit_log(&log);
for c in &cases {
if !c.pass {
eprintln!(
"vector-ops mismatch: {} {} — {}",
c.case_id, c.sub_check, c.detail
);
}
}
assert!(
all_pass,
"vector-ops conformance failed: {} of {} cases pass",
pass_count,
cases.len()
);
ledger.finish(query.points.iter().filter(|c| c.is_3d).count());
}