Files
ww/lib/time/timetest.ww
Hojun-Cho 7e9bede6c5 lib/time+test: add types, ops, now
Replaces the lib/time placeholder (a monotonic(*timespec) shim that
predated lib/os's syscall surface). Ships Hare's time module first
cut per ref/hare/time/{duration,instant,arithm,+linux/functions}.ha:

- duration (i64 ns); nanosecond / microsecond / millisecond / second
  constants.
- instant (sec, nsec) — Hare's layout, NOT POSIX's nsec:u32. Matches
  Linux struct timespec on 64-bit, so &instant lands directly in
  clock_gettime.
- clock enum: realtime + monotonic only. The rest of Hare's set
  (process_cpu / thread_cpu / boot / realtime_alarm / boot_alarm / tai)
  graduates when a caller actually needs it (rule 9).
- now(c: clock) instant — aborts on EINVAL/EFAULT (mirrors Hare's
  abort-on-impossible-errno). Deliberately NOT (instant | oserror) to
  sidestep task #9's 1-word-payload tagged-return trap.
- add / diff / compare on instants per ref/hare/time/arithm.ha
  verbatim.

Deferred to follow-up commits when a caller surfaces: sleep, format /
strftime, time.chrono / time.date calendar, timezone, time.error
sum-return shape, time.unix helpers, time.mult, conversion helpers.

Tests at lib/time/timetest.ww (15 rows, table-pattern, semantic per
Class B doctrine). Driver test/wcc/977_time_run.c slotted between
976_stat_run and 978_intdiv_signed in the 9xx _run band.
examples/cmatrix migrates to the new API in the same commit (sole
pre-existing caller — bisect-clean per rule 11).

Class B bug #16 (sign-extend before IDIVQ) was surfaced by the
negative-duration rows during this work; landed 63332fe..4fa4bcf
before this commit. Rows 8-9 (addneg_noborrow / addneg_borrow) are
the load-bearing Class B exercisers; would have stayed silently wrong
pre-#16.

lib/time's own .s output has a cstage/wwstage label-counter skew in
add (cstage emits add_ct_7/_ce_8/_end_6 vs wwstage _6/_7/_5). Filed
as task #15; non-bootstrap-blocking since lib/time is outside the
selfhost toolchain transitive chain.
2026-05-17 02:51:15 +09:00

181 lines
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// timetest — exercises lib/time. Run with `out/bin/ww run
// lib/time/timetest.ww`. Same `signalled`-then-fail()-with-+10
// pattern as fmttest / logtest / stattest so a non-zero exit
// pinpoints the offending scenario.
use os;
use time;
let signalled: i32 = 0;
fn fail() void = { os.exit(signalled + 10); };
// ---- constants: load-bearing names + values ----------------------------
//
// Without these multipliers every caller would re-derive 1e9 in
// place. The values themselves are nailed down by Hare's
// ref/hare/time/duration.ha:9-18.
@test fn constants() void = {
if ((time.nanosecond: i64) != 1i64) { fail(); };
if ((time.microsecond: i64) != 1000i64) { fail(); };
if ((time.millisecond: i64) != 1000000i64) { fail(); };
if ((time.second: i64) != 1000000000i64) { fail(); };
// "Roundtrip" check: derived multiples land on the canonical
// nanosecond count. Catches a future re-derivation drift.
if (5i64 * (time.second: i64) != 5000000000i64) { fail(); };
if (3i64 * (time.millisecond: i64) != 3000000i64) { fail(); };
if (7i64 * (time.microsecond: i64) != 7000i64) { fail(); };
};
// ---- now(monotonic) is monotonic across two calls ----------------------
@test fn nowmonotonic() void = {
let a = time.now(time.clock.monotonic);
let b = time.now(time.clock.monotonic);
// Two back-to-back calls — b can equal a (same ns tick) but
// must never precede it.
if (time.compare(a, b) > 0i8) { fail(); };
};
// ---- now(realtime) returns a post-2020 epoch ---------------------------
//
// Sanity check that the syscall plumbing actually lands real bytes
// in the instant. 2020-01-01 UTC = 1577836800 unix seconds; any
// past-2020 wall clock satisfies this. (CI / test machines running
// pre-2020 would fail here; acceptable trade for catching a
// zero-init / wrong-slot regression.)
@test fn nowrealtime() void = {
let t = time.now(time.clock.realtime);
if (t.sec < 1577836800i64) { fail(); };
if (t.nsec < 0i64) { fail(); };
if (t.nsec >= 1000000000i64) { fail(); };
};
// ---- add: zero duration is identity ------------------------------------
@test fn addzero() void = {
let a: time.instant;
a.sec = 100i64; a.nsec = 500i64;
let r = time.add(a, 0i64);
if (r.sec != 100i64) { fail(); };
if (r.nsec != 500i64) { fail(); };
};
// ---- add: positive duration, no carry ----------------------------------
@test fn addpos_nocarry() void = {
let a: time.instant;
a.sec = 10i64; a.nsec = 100i64;
let r = time.add(a, 200i64);
if (r.sec != 10i64) { fail(); };
if (r.nsec != 300i64) { fail(); };
};
// ---- add: positive duration, carries into next second ------------------
@test fn addpos_carry() void = {
let a: time.instant;
a.sec = 10i64; a.nsec = 999999900i64;
let r = time.add(a, 200i64);
if (r.sec != 11i64) { fail(); };
if (r.nsec != 100i64) { fail(); };
};
// ---- add: full-second duration -----------------------------------------
@test fn addpos_fullsecond() void = {
let a: time.instant;
a.sec = 5i64; a.nsec = 0i64;
let r = time.add(a, (time.second: i64) * 3i64);
if (r.sec != 8i64) { fail(); };
if (r.nsec != 0i64) { fail(); };
};
// ---- add: negative duration, no borrow ---------------------------------
@test fn addneg_noborrow() void = {
let a: time.instant;
a.sec = 10i64; a.nsec = 500i64;
let r = time.add(a, -100i64);
if (r.sec != 10i64) { fail(); };
if (r.nsec != 400i64) { fail(); };
};
// ---- add: negative duration, borrows from previous second --------------
@test fn addneg_borrow() void = {
let a: time.instant;
a.sec = 10i64; a.nsec = 100i64;
let r = time.add(a, -200i64);
if (r.sec != 9i64) { fail(); };
if (r.nsec != 999999900i64) { fail(); };
};
// ---- diff: simple subtraction ------------------------------------------
@test fn diffsimple() void = {
let a: time.instant; a.sec = 10i64; a.nsec = 100i64;
let b: time.instant; b.sec = 12i64; b.nsec = 300i64;
let d: i64 = time.diff(a, b): i64;
// b - a = 2.0000002 sec = 2_000_000_200 ns
if (d != 2000000200i64) { fail(); };
};
// ---- diff: reversed sign -----------------------------------------------
@test fn diffneg() void = {
let a: time.instant; a.sec = 12i64; a.nsec = 300i64;
let b: time.instant; b.sec = 10i64; b.nsec = 100i64;
let d: i64 = time.diff(a, b): i64;
if (d != -2000000200i64) { fail(); };
};
// ---- compare: -1 / 0 / +1 ladder ---------------------------------------
@test fn comparelt() void = {
let a: time.instant; a.sec = 1i64; a.nsec = 0i64;
let b: time.instant; b.sec = 2i64; b.nsec = 0i64;
if (time.compare(a, b) != -1i8) { fail(); };
};
@test fn comparegt() void = {
let a: time.instant; a.sec = 2i64; a.nsec = 0i64;
let b: time.instant; b.sec = 1i64; b.nsec = 0i64;
if (time.compare(a, b) != 1i8) { fail(); };
};
@test fn compareeq() void = {
let a: time.instant; a.sec = 5i64; a.nsec = 42i64;
let b: time.instant; b.sec = 5i64; b.nsec = 42i64;
if (time.compare(a, b) != 0i8) { fail(); };
};
@test fn comparensec_only() void = {
let a: time.instant; a.sec = 5i64; a.nsec = 100i64;
let b: time.instant; b.sec = 5i64; b.nsec = 200i64;
if (time.compare(a, b) != -1i8) { fail(); };
if (time.compare(b, a) != 1i8) { fail(); };
};
export fn main() i32 = {
signalled = 1; constants();
signalled = 2; nowmonotonic();
signalled = 3; nowrealtime();
signalled = 4; addzero();
signalled = 5; addpos_nocarry();
signalled = 6; addpos_carry();
signalled = 7; addpos_fullsecond();
signalled = 8; addneg_noborrow();
signalled = 9; addneg_borrow();
signalled = 10; diffsimple();
signalled = 11; diffneg();
signalled = 12; comparelt();
signalled = 13; comparegt();
signalled = 14; compareeq();
signalled = 15; comparensec_only();
return 0;
};