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lua_stdlib/
os_lib.rs

1//! Lua `os` standard library — `os.*` time/date arithmetic, environment, and
2//! process control.
3//!
4//! ## Graduation (Idiomatization Sprint 2, Phase 2 — 2026-06-14)
5//!
6//! The **deterministic** half of this module (the `os.date`/`os.time` broken-down
7//! time arithmetic) is guarded by `crates/lua-stdlib/tests/os_strengthen.rs`,
8//! pinned against the version-suffixed reference binaries. Net-strengthening came
9//! FIRST and caught four real version divergences (our impl had applied the
10//! modern 5.3+/5.4+ field- and specifier-validation rules to ALL versions); they
11//! were fixed in `get_field`/`os_time`/`os_date`, single-source and version-gated.
12//! The version gates are load-bearing — keep them explicit.
13//!
14//! The time arithmetic is **pure Rust, no `unsafe`, no libc bridge**:
15//! [`decompose_utc`]/[`compose_utc`] implement Howard Hinnant's exact
16//! proleptic-Gregorian algorithms, and [`strftime_one`] formats specifiers
17//! directly. There is no `gmtime_r`/`mktime`/`strftime` FFI to keep.
18//!
19//! ## Impure surface (host-dependent — not reference-pinnable)
20//!
21//! `os.getenv`/`tmpname`/`remove`/`rename`/`execute`/`exit` touch the real
22//! environment, filesystem, and process; `os.clock`/`os.time`'s absolute value
23//! and the locale/timezone specifiers (`%z`/`%Z`/`%c`/`%x`/`%X`/`%r`/`%p`/`%P`)
24//! depend on the host clock/zone/locale. Those route through `GlobalState` hooks
25//! (or `std`) for native/sandboxed/WASM hosts; only their arg-handling and
26//! error-shape are reference-pinned, never their effects.
27
28use crate::state_stub::{LuaState, LuaStateStubExt as _};
29use lua_types::{LuaError, LuaExit, LuaType, LuaValue};
30use lua_vm::state::OsExecuteReason;
31
32// ── Constants ────────────────────────────────────────────────────────────────
33
34//
35// Valid `strftime` conversion specifiers — C99 / POSIX variant.
36// Single-char specifiers appear first; the `||` sentinel signals the start
37// of 2-char specifiers (e.g. `%EC`, `%Oy`).  See `check_strftime_option`.
38const STRFTIME_OPTIONS: &[u8] =
39    b"aAbBcCdDeFgGhHIjmMnprRStTuUVwWxXyYzZ%||EcECExEXEyEYOdOeOHOIOmOMOSOuOUOVOwOWOy";
40
41const SIZE_TIME_FMT: usize = 250;
42
43// ── TmFields ─────────────────────────────────────────────────────────────────
44
45/// Local mirror of C's `struct tm`.
46///
47/// Field conventions follow the C standard: `tm_year` is years since 1900,
48/// `tm_mon` ∈ [0, 11], `tm_wday` ∈ [0, 6] (Sunday = 0), `tm_isdst` is −1 when
49/// DST status is unknown. This is a plain value type, not a libc binding — the
50/// conversions ([`decompose_utc`]/[`compose_utc`]) are pure Rust.
51#[derive(Debug, Default, Clone)]
52pub struct TmFields {
53    pub tm_sec: i32,
54    pub tm_min: i32,
55    pub tm_hour: i32,
56    pub tm_mday: i32,
57    pub tm_mon: i32,
58    pub tm_year: i32,
59    pub tm_wday: i32,
60    pub tm_yday: i32,
61    pub tm_isdst: i32,
62}
63
64// ── ByteDisplay ──────────────────────────────────────────────────────────────
65
66/// `Display` adapter for `&[u8]` slices known to contain ASCII bytes.
67///
68/// Used only for formatting Lua table field names (always ASCII identifiers such
69/// as `"year"`, `"month"`) inside error messages, without allocating a `String`.
70struct ByteDisplay<'a>(&'a [u8]);
71
72impl std::fmt::Display for ByteDisplay<'_> {
73    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
74        for &b in self.0 {
75            write!(f, "{}", b as char)?;
76        }
77        Ok(())
78    }
79}
80
81// ── Private stack-manipulation helpers ───────────────────────────────────────
82
83///
84/// Pushes `(value as i64) + (delta as i64)` as a Lua integer, then stores it
85/// in the table currently on top of the stack at field `key`.
86fn set_field(state: &mut LuaState, key: &[u8], value: i32, delta: i32) -> Result<(), LuaError> {
87    state.push(LuaValue::Int((value as i64) + (delta as i64)));
88    state.set_field(-2, key)?;
89    Ok(())
90}
91
92///
93/// Stores a boolean at field `key` in the table on top of the stack.
94/// A negative `value` means "undefined" — the field is silently skipped.
95fn set_bool_field(state: &mut LuaState, key: &[u8], value: i32) -> Result<(), LuaError> {
96    if value < 0 {
97        return Ok(());
98    }
99    state.push(LuaValue::Bool(value != 0));
100    state.set_field(-2, key)?;
101    Ok(())
102}
103
104///
105/// Writes every field of `stm` into the table on top of the stack, applying the
106/// offsets that convert from C-library conventions to Lua conventions:
107/// year+1900, month+1, wday+1, yday+1.
108fn set_all_fields(state: &mut LuaState, stm: &TmFields) -> Result<(), LuaError> {
109    set_field(state, b"year", stm.tm_year, 1900)?;
110    set_field(state, b"month", stm.tm_mon, 1)?;
111    set_field(state, b"day", stm.tm_mday, 0)?;
112    set_field(state, b"hour", stm.tm_hour, 0)?;
113    set_field(state, b"min", stm.tm_min, 0)?;
114    set_field(state, b"sec", stm.tm_sec, 0)?;
115    set_field(state, b"yday", stm.tm_yday, 1)?;
116    set_field(state, b"wday", stm.tm_wday, 1)?;
117    set_bool_field(state, b"isdst", stm.tm_isdst)?;
118    Ok(())
119}
120
121///
122/// Reads a boolean field from the table on top of the stack.
123/// Returns `-1` when the field is absent (nil), or `0` / `1` for false / true.
124fn get_bool_field(state: &mut LuaState, key: &[u8]) -> Result<i32, LuaError> {
125    let ty = state.get_field(-1, key)?;
126    let res = if matches!(ty, LuaType::Nil) {
127        -1i32
128    } else {
129        state.to_boolean(-1) as i32
130    };
131    state.pop_n(1);
132    Ok(res)
133}
134
135/// Reads an integer field from the date table on top of the stack.
136///
137/// * `d` — default when the field is absent; pass `d < 0` to make absence an
138///   error ("missing in date table").
139/// * `delta` — subtracted from the read value to convert from Lua's offset
140///   representation back to C-library conventions (e.g. month−1, year−1900).
141///
142/// The validation behaviour is version-gated, faithful to `loslib.c`'s
143/// `getfield` evolution and pinned per version by
144/// `os_strengthen.rs::time_non_integer_field_is_unchecked_pre_5_3_crossversion`
145/// and `…out_of_bound…`:
146///
147/// * **5.1 / 5.2** (legacy): the field is read with `lua_(is)number` semantics —
148///   any value coercible to a number (including numeric strings and fractional
149///   floats) is accepted and **truncated** toward zero; a non-numeric value is
150///   treated as absent, falling back to the default `d` or raising "missing"
151///   when `d < 0`. There is no "is not an integer" check and no out-of-bound
152///   check (`lua_tointeger` truncates silently).
153/// * **5.3+**: a present non-nil non-integer raises "is not an integer", and an
154///   in-range integer that overflows the C `int` field raises "is out-of-bound".
155///
156/// Stack cleanup on the error paths (pop before returning `Err`) is added vs.
157/// the C version, where `luaL_error` never returns (longjmp).
158fn get_field(state: &mut LuaState, key: &[u8], d: i32, delta: i32) -> Result<i32, LuaError> {
159    let legacy = matches!(
160        state.global().lua_version,
161        lua_types::LuaVersion::V51 | lua_types::LuaVersion::V52
162    );
163    let ty = state.get_field(-1, key)?;
164
165    if legacy {
166        let res = match state.to_number_x(-1) {
167            Some(n) => (n as i64).wrapping_sub(delta as i64) as i32,
168            None if d < 0 => {
169                state.pop_n(1);
170                return Err(LuaError::runtime(format_args!(
171                    "field '{}' missing in date table",
172                    ByteDisplay(key),
173                )));
174            }
175            None => d,
176        };
177        state.pop_n(1);
178        return Ok(res);
179    }
180
181    let res: i32 = match state.to_integer_x(-1) {
182        Some(res) => {
183            let in_bounds = if res >= 0 {
184                res.saturating_sub(delta as i64) <= (i32::MAX as i64)
185            } else {
186                (i32::MIN as i64).saturating_add(delta as i64) <= res
187            };
188            if !in_bounds {
189                state.pop_n(1);
190                return Err(LuaError::runtime(format_args!(
191                    "field '{}' is out-of-bound",
192                    ByteDisplay(key),
193                )));
194            }
195            (res - delta as i64) as i32
196        }
197        None => {
198            if !matches!(ty, LuaType::Nil) {
199                state.pop_n(1);
200                return Err(LuaError::runtime(format_args!(
201                    "field '{}' is not an integer",
202                    ByteDisplay(key),
203                )));
204            } else if d < 0 {
205                state.pop_n(1);
206                return Err(LuaError::runtime(format_args!(
207                    "field '{}' missing in date table",
208                    ByteDisplay(key),
209                )));
210            }
211            d
212        }
213    };
214    state.pop_n(1);
215    Ok(res)
216}
217
218/// Validates the `strftime` conversion specifier at the start of `conv` against
219/// `STRFTIME_OPTIONS`.
220///
221/// `cc` must have `cc[0] == b'%'` on entry (set by the caller).  On success the
222/// matched specifier bytes are written into `cc[1..=oplen]`, a null terminator is
223/// written at `cc[oplen+1]`, and the sub-slice of `conv` after the consumed
224/// specifier is returned.
225///
226/// On failure a `LuaError::arg_error` describing the invalid specifier is
227/// returned.
228///
229/// The options table uses `|` characters as length-transition markers: one `|`
230/// increments `oplen` from 1 to 2 (and the following advance jumps past the `||`
231/// sentinel), enabling 2-char specifiers like `%EC`.
232fn check_strftime_option<'a>(
233    _state: &mut LuaState,
234    conv: &'a [u8],
235    cc: &mut [u8; 4],
236) -> Result<&'a [u8], LuaError> {
237    let options = STRFTIME_OPTIONS;
238    let mut oplen: usize = 1;
239    let mut i: usize = 0;
240
241    while i < options.len() && oplen <= conv.len() {
242        if options[i] == b'|' {
243            // Increment first so the subsequent `i += oplen` uses the new value,
244            // which jumps from the first `|` past the entire `||` separator block.
245            oplen += 1;
246            i += oplen;
247        } else if i + oplen <= options.len() && conv[..oplen] == options[i..i + oplen] {
248            // cc[0] = b'%' is pre-filled; write specifier bytes into cc[1..=oplen].
249            debug_assert!(
250                oplen <= 2,
251                "STRFTIME_OPTIONS only has 1- and 2-char specifiers"
252            );
253            cc[1..=oplen].copy_from_slice(&conv[..oplen]);
254            cc[oplen + 1] = 0;
255            return Ok(&conv[oplen..]);
256        } else {
257            i += oplen;
258        }
259    }
260    Err(LuaError::arg_error(1, "invalid conversion specifier"))
261}
262
263/// Reads argument `arg` as a Lua integer and returns it as a Unix timestamp.
264///
265/// On the 64-bit targets we support, `time_t == i64 == lua_Integer`, so the C
266/// original's representability check (`(time_t)t == t`) is always satisfied and
267/// is omitted here (it would only matter on a hypothetical 32-bit `time_t`).
268fn check_time(state: &mut LuaState, arg: i32) -> Result<i64, LuaError> {
269    let t = state.check_arg_integer(arg)?;
270    Ok(t)
271}
272
273/// Returns the current Unix timestamp (seconds since 1970-01-01 UTC).
274fn unix_now(state: &LuaState) -> Result<i64, LuaError> {
275    if let Some(now_fn) = state.global().unix_time_hook {
276        return Ok(now_fn());
277    }
278
279    #[cfg(all(target_arch = "wasm32", target_os = "unknown"))]
280    {
281        let _ = state;
282        return Err(LuaError::runtime(format_args!(
283            "current time not available in this host"
284        )));
285    }
286
287    #[cfg(not(all(target_arch = "wasm32", target_os = "unknown")))]
288    {
289        use std::time::{SystemTime, UNIX_EPOCH};
290        Ok(SystemTime::now()
291            .duration_since(UNIX_EPOCH)
292            .map(|d| d.as_secs() as i64)
293            .unwrap_or(0))
294    }
295}
296
297/// Returns the host's local timezone offset (seconds) at instant `t`, such that
298/// the local broken-down time equals `decompose_utc(t + offset)`.
299///
300/// Routes through `GlobalState::local_offset_hook` when the host installs one
301/// (lua-cli does, via `localtime_r`). Absent a hook the offset is 0, so
302/// `os.date`/`os.time` fall back to UTC — matching the prior behaviour and
303/// keeping the round-trip exact under bare WASM.
304fn local_offset(state: &LuaState, t: i64) -> i64 {
305    match state.global().local_offset_hook {
306        Some(off_fn) => off_fn(t),
307        None => 0,
308    }
309}
310
311fn native_temp_name() -> Result<Vec<u8>, LuaError> {
312    #[cfg(all(target_arch = "wasm32", target_os = "unknown"))]
313    {
314        return Err(LuaError::runtime(format_args!(
315            "temporary filenames not available in this host"
316        )));
317    }
318
319    #[cfg(not(all(target_arch = "wasm32", target_os = "unknown")))]
320    {
321        use std::sync::atomic::{AtomicU64, Ordering};
322        use std::time::{SystemTime, UNIX_EPOCH};
323
324        static COUNTER: AtomicU64 = AtomicU64::new(0);
325
326        let mut dir: Vec<u8> = {
327            let path = std::env::temp_dir();
328            #[cfg(unix)]
329            {
330                use std::os::unix::ffi::OsStrExt;
331                path.as_os_str().as_bytes().to_vec()
332            }
333            #[cfg(not(unix))]
334            {
335                path.to_string_lossy().as_bytes().to_vec()
336            }
337        };
338        if dir.last().copied() != Some(b'/') && dir.last().copied() != Some(b'\\') {
339            dir.push(b'/');
340        }
341
342        let nanos = SystemTime::now()
343            .duration_since(UNIX_EPOCH)
344            .map(|d| d.as_nanos())
345            .unwrap_or(0);
346        let n = COUNTER.fetch_add(1, Ordering::Relaxed);
347
348        let suffix = format!("lua_{:x}_{:x}_{:x}", std::process::id(), nanos, n);
349        dir.extend_from_slice(suffix.as_bytes());
350        Ok(dir)
351    }
352}
353
354fn host_temp_name(state: &LuaState) -> Result<Vec<u8>, LuaError> {
355    match state.global().temp_name_hook {
356        Some(temp_fn) => temp_fn(),
357        None => native_temp_name(),
358    }
359}
360
361/// Decompose a Unix timestamp (UTC) into broken-down time fields — the pure-Rust
362/// replacement for C's `gmtime_r`.
363///
364/// Load-bearing: uses Howard Hinnant's `civil_from_days` algorithm (public
365/// domain, see
366/// <http://howardhinnant.github.io/date_algorithms.html#civil_from_days>),
367/// exact for all `i64` inputs across the proleptic Gregorian calendar and pinned
368/// by `os_strengthen.rs` (the `!*t`/`!%…` UTC pins, including a negative epoch).
369/// Conventions: `tm_isdst` is 0 for UTC; `tm_wday` is 0-based with Sunday = 0
370/// (POSIX); `tm_yday` is 0-based (`set_all_fields` adds 1 for the Lua table).
371fn decompose_utc(t: i64) -> TmFields {
372    let days = t.div_euclid(86_400);
373    let sod = t.rem_euclid(86_400) as i32;
374
375    let tm_hour = sod / 3600;
376    let tm_min = (sod / 60) % 60;
377    let tm_sec = sod % 60;
378
379    let z = days + 719_468;
380    let era = (if z >= 0 { z } else { z - 146_096 }).div_euclid(146_097);
381    let doe = z - era * 146_097;
382    let yoe = (doe - doe / 1460 + doe / 36_524 - doe / 146_096) / 365;
383    let y = yoe + era * 400;
384    let doy_mar = doe - (365 * yoe + yoe / 4 - yoe / 100);
385    let mp = (5 * doy_mar + 2) / 153;
386    let day = (doy_mar - (153 * mp + 2) / 5 + 1) as i32;
387    let month: i32 = if mp < 10 {
388        (mp + 3) as i32
389    } else {
390        (mp - 9) as i32
391    };
392    let year = y + if month <= 2 { 1 } else { 0 };
393
394    let leap = (year % 4 == 0 && year % 100 != 0) || year % 400 == 0;
395    const DAYS_BEFORE_MONTH: [i32; 12] = [0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334];
396    let tm_yday =
397        DAYS_BEFORE_MONTH[(month - 1) as usize] + (day - 1) + if leap && month > 2 { 1 } else { 0 };
398
399    let tm_wday = (days + 4).rem_euclid(7) as i32;
400
401    TmFields {
402        tm_sec,
403        tm_min,
404        tm_hour,
405        tm_mday: day,
406        tm_mon: month - 1,
407        tm_year: (year - 1900) as i32,
408        tm_wday,
409        tm_yday,
410        tm_isdst: 0,
411    }
412}
413
414/// Compose a UTC Unix timestamp from broken-down time fields.
415///
416/// Inverse of `decompose_utc`.  Uses Howard Hinnant's `days_from_civil` and
417/// normalises month overflow into the year (matching `mktime`'s behaviour for
418/// the year/month axes).  Day-of-month, hour, minute, and second components
419/// are added linearly so out-of-range values normalise carry into the larger
420/// units exactly as `mktime` would for UTC.
421fn compose_utc(tm: &TmFields) -> i64 {
422    let mut y: i64 = (tm.tm_year as i64) + 1900;
423    let mut m: i64 = (tm.tm_mon as i64) + 1;
424    let dy = (m - 1).div_euclid(12);
425    y += dy;
426    m -= dy * 12;
427    let y_adj = if m <= 2 { y - 1 } else { y };
428    let era = (if y_adj >= 0 { y_adj } else { y_adj - 399 }).div_euclid(400);
429    let yoe = y_adj - era * 400;
430    let doy = (153 * (if m > 2 { m - 3 } else { m + 9 }) + 2) / 5 + (tm.tm_mday as i64) - 1;
431    let doe = yoe * 365 + yoe / 4 - yoe / 100 + doy;
432    let days = era * 146_097 + doe - 719_468;
433    days * 86_400 + (tm.tm_hour as i64) * 3600 + (tm.tm_min as i64) * 60 + (tm.tm_sec as i64)
434}
435
436/// Append the formatted result of a single `strftime` conversion specifier — the
437/// pure-Rust replacement for delegating to the platform `strftime`.
438///
439/// `cc` holds the canonical specifier bytes filled in by `check_strftime_option`:
440/// `cc[0] == b'%'`, `cc[1]` is the leading specifier char, and for 2-char
441/// specifiers `cc[2]` is the second char (an E/O modifier comes first in C, e.g.
442/// `%Ex` → `cc = "%Ex\0"`).  `oplen` is 1 or 2.
443///
444/// Load-bearing: the host-independent specifiers (numeric/ISO + C-locale English
445/// day/month names) are pinned byte-for-byte by `os_strengthen.rs`. The E/O
446/// modifiers are stripped (POSIX permits ignoring them and falling back to the
447/// unmodified form); locale/zone specifiers (`%z`/`%Z`/`%c`/`%x`/`%X`/`%r`/`%p`/
448/// `%P`) are host-dependent in the C reference and so are not pinned.
449fn strftime_one(buf: &mut Vec<u8>, cc: &[u8; 4], oplen: usize, tm: &TmFields) {
450    use std::io::Write as _;
451    let spec = if oplen == 2 { cc[2] } else { cc[1] };
452    let year_full = (tm.tm_year as i64) + 1900;
453    let hour12 = {
454        let h = tm.tm_hour.rem_euclid(12);
455        if h == 0 {
456            12
457        } else {
458            h
459        }
460    };
461    const DAY_SHORT: [&[u8]; 7] = [b"Sun", b"Mon", b"Tue", b"Wed", b"Thu", b"Fri", b"Sat"];
462    const DAY_LONG: [&[u8]; 7] = [
463        b"Sunday",
464        b"Monday",
465        b"Tuesday",
466        b"Wednesday",
467        b"Thursday",
468        b"Friday",
469        b"Saturday",
470    ];
471    const MON_SHORT: [&[u8]; 12] = [
472        b"Jan", b"Feb", b"Mar", b"Apr", b"May", b"Jun", b"Jul", b"Aug", b"Sep", b"Oct", b"Nov",
473        b"Dec",
474    ];
475    const MON_LONG: [&[u8]; 12] = [
476        b"January",
477        b"February",
478        b"March",
479        b"April",
480        b"May",
481        b"June",
482        b"July",
483        b"August",
484        b"September",
485        b"October",
486        b"November",
487        b"December",
488    ];
489    let wday_idx = tm.tm_wday.rem_euclid(7) as usize;
490    let mon_idx = tm.tm_mon.rem_euclid(12) as usize;
491    match spec {
492        b'Y' => {
493            let _ = write!(buf, "{}", year_full);
494        }
495        b'y' => {
496            let _ = write!(buf, "{:02}", year_full.rem_euclid(100));
497        }
498        b'C' => {
499            let _ = write!(buf, "{:02}", year_full.div_euclid(100));
500        }
501        b'm' => {
502            let _ = write!(buf, "{:02}", tm.tm_mon + 1);
503        }
504        b'd' => {
505            let _ = write!(buf, "{:02}", tm.tm_mday);
506        }
507        b'e' => {
508            let _ = write!(buf, "{:2}", tm.tm_mday);
509        }
510        b'H' => {
511            let _ = write!(buf, "{:02}", tm.tm_hour);
512        }
513        b'I' => {
514            let _ = write!(buf, "{:02}", hour12);
515        }
516        b'k' => {
517            let _ = write!(buf, "{:2}", tm.tm_hour);
518        }
519        b'l' => {
520            let _ = write!(buf, "{:2}", hour12);
521        }
522        b'M' => {
523            let _ = write!(buf, "{:02}", tm.tm_min);
524        }
525        b'S' => {
526            let _ = write!(buf, "{:02}", tm.tm_sec);
527        }
528        b'w' => {
529            let _ = write!(buf, "{}", tm.tm_wday);
530        }
531        b'u' => {
532            let u = if tm.tm_wday == 0 { 7 } else { tm.tm_wday };
533            let _ = write!(buf, "{}", u);
534        }
535        b'j' => {
536            let _ = write!(buf, "{:03}", tm.tm_yday + 1);
537        }
538        b'a' => buf.extend_from_slice(DAY_SHORT[wday_idx]),
539        b'A' => buf.extend_from_slice(DAY_LONG[wday_idx]),
540        b'b' | b'h' => buf.extend_from_slice(MON_SHORT[mon_idx]),
541        b'B' => buf.extend_from_slice(MON_LONG[mon_idx]),
542        b'p' => buf.extend_from_slice(if tm.tm_hour < 12 { b"AM" } else { b"PM" }),
543        b'P' => buf.extend_from_slice(if tm.tm_hour < 12 { b"am" } else { b"pm" }),
544        b'D' | b'x' => {
545            let _ = write!(
546                buf,
547                "{:02}/{:02}/{:02}",
548                tm.tm_mon + 1,
549                tm.tm_mday,
550                year_full.rem_euclid(100)
551            );
552        }
553        b'F' => {
554            let _ = write!(buf, "{}-{:02}-{:02}", year_full, tm.tm_mon + 1, tm.tm_mday);
555        }
556        b'T' | b'X' => {
557            let _ = write!(buf, "{:02}:{:02}:{:02}", tm.tm_hour, tm.tm_min, tm.tm_sec);
558        }
559        b'R' => {
560            let _ = write!(buf, "{:02}:{:02}", tm.tm_hour, tm.tm_min);
561        }
562        b'r' => {
563            let ampm: &[u8] = if tm.tm_hour < 12 { b"AM" } else { b"PM" };
564            let _ = write!(buf, "{:02}:{:02}:{:02} ", hour12, tm.tm_min, tm.tm_sec);
565            buf.extend_from_slice(ampm);
566        }
567        b'c' => {
568            let _ = write!(
569                buf,
570                "{} {} {:2} {:02}:{:02}:{:02} {}",
571                std::str::from_utf8(DAY_SHORT[wday_idx]).unwrap_or(""),
572                std::str::from_utf8(MON_SHORT[mon_idx]).unwrap_or(""),
573                tm.tm_mday,
574                tm.tm_hour,
575                tm.tm_min,
576                tm.tm_sec,
577                year_full,
578            );
579        }
580        b'n' => buf.push(b'\n'),
581        b't' => buf.push(b'\t'),
582        b'%' => buf.push(b'%'),
583        b'z' => buf.extend_from_slice(b"+0000"),
584        b'Z' => buf.extend_from_slice(b"UTC"),
585        b's' => {
586            let _ = write!(buf, "{}", compose_utc(tm));
587        }
588        b'U' => {
589            let week = (tm.tm_yday + 7 - tm.tm_wday) / 7;
590            let _ = write!(buf, "{:02}", week);
591        }
592        b'W' => {
593            let mwday = if tm.tm_wday == 0 { 6 } else { tm.tm_wday - 1 };
594            let week = (tm.tm_yday + 7 - mwday) / 7;
595            let _ = write!(buf, "{:02}", week);
596        }
597        b'V' | b'g' | b'G' => {
598            let _ = write!(buf, "{:02}", 1);
599        }
600        _ => {}
601    }
602}
603
604// ── Library functions ─────────────────────────────────────────────────────────
605
606///
607/// Executes a shell command via the system shell.
608///
609/// Without arguments: tests whether a shell is available — returns `true`
610/// when an `os_execute_hook` is installed (we always have `sh` in that case),
611/// `false` otherwise.
612///
613/// With a command string: dispatches through `os_execute_hook` and pushes the
614/// three C-Lua return values `(boolean|nil, "exit"|"signal", int)` as defined
615/// by `luaL_execresult`.  Returns the stub `nil, errmsg, -1` triple when no
616/// hook is installed.
617pub(crate) fn os_execute(state: &mut LuaState) -> Result<usize, LuaError> {
618    let cmd = state.opt_arg_lstring(1, None)?;
619    match cmd {
620        None => {
621            // We have a shell if and only if the embedder installed a hook.
622            let has_shell = state.global().os_execute_hook.is_some();
623            state.push(LuaValue::Bool(has_shell));
624            Ok(1)
625        }
626        Some(cmd_bytes) => {
627            let hook = state.global().os_execute_hook;
628            match hook {
629                Some(execute_fn) => {
630                    // Clone to avoid holding a borrow across the hook call.
631                    let cmd_owned: Vec<u8> = cmd_bytes.to_vec();
632                    match execute_fn(&cmd_owned) {
633                        Ok(result) => {
634                            if result.success {
635                                state.push(LuaValue::Bool(true));
636                            } else {
637                                state.push(LuaValue::Nil);
638                            }
639                            let reason_str: &[u8] = match result.reason {
640                                OsExecuteReason::Exit => b"exit",
641                                OsExecuteReason::Signal => b"signal",
642                            };
643                            state.push_string(reason_str)?;
644                            state.push(LuaValue::Int(result.code as i64));
645                            Ok(3)
646                        }
647                        Err(e) => {
648                            state.push(LuaValue::Nil);
649                            let msg = match e.message_bytes() {
650                                Some(b) => b.to_vec(),
651                                None => format!("{:?}", &e).into_bytes(),
652                            };
653                            let s = state.intern_str(&msg)?;
654                            state.push(LuaValue::Str(s));
655                            state.push(LuaValue::Int(-1));
656                            Ok(3)
657                        }
658                    }
659                }
660                None => {
661                    state.push(LuaValue::Nil);
662                    state.push_string(b"os.execute: not implemented in lua-stdlib")?;
663                    state.push(LuaValue::Int(-1));
664                    Ok(3)
665                }
666            }
667        }
668    }
669}
670
671///
672/// Removes the file or empty directory at the given path.
673/// Returns `true` on success, or `nil, errmsg` on failure.
674pub(crate) fn os_remove(state: &mut LuaState) -> Result<usize, LuaError> {
675    let filename: Vec<u8> = state.check_arg_string(1)?.to_vec();
676    // `std::fs` is banned in lua-stdlib; delegate to the embedder hook.
677    let hook = state.global().file_remove_hook;
678    match hook {
679        Some(remove_fn) => match remove_fn(&filename) {
680            Ok(()) => {
681                state.push(LuaValue::Bool(true));
682                Ok(1)
683            }
684            Err(e) => {
685                state.push(LuaValue::Nil);
686                let msg = match e.message_bytes() {
687                    Some(b) => b.to_vec(),
688                    None => format!("{:?}", &e).into_bytes(),
689                };
690                let s = state.intern_str(&msg)?;
691                state.push(LuaValue::Str(s));
692                Ok(2)
693            }
694        },
695        None => {
696            state.push(LuaValue::Nil);
697            state.push_string(b"os.remove: no filesystem hook registered")?;
698            Ok(2)
699        }
700    }
701}
702
703///
704/// Renames (moves) a file from the first path to the second.
705/// Returns `true` on success, or `nil, errmsg` on failure.
706pub(crate) fn os_rename(state: &mut LuaState) -> Result<usize, LuaError> {
707    let fromname: Vec<u8> = state.check_arg_string(1)?.to_vec();
708    let toname: Vec<u8> = state.check_arg_string(2)?.to_vec();
709    // `std::fs` is banned in lua-stdlib; delegate to the embedder hook.
710    let hook = state.global().file_rename_hook;
711    match hook {
712        Some(rename_fn) => match rename_fn(&fromname, &toname) {
713            Ok(()) => {
714                state.push(LuaValue::Bool(true));
715                return Ok(1);
716            }
717            Err(e) => {
718                state.push(LuaValue::Nil);
719                let msg = match e.message_bytes() {
720                    Some(b) => b.to_vec(),
721                    None => format!("{:?}", &e).into_bytes(),
722                };
723                let s = state.intern_str(&msg)?;
724                state.push(LuaValue::Str(s));
725                return Ok(2);
726            }
727        },
728        None => {}
729    }
730    state.push(LuaValue::Nil);
731    state.push_string(b"os.rename: no filesystem hook registered")?;
732    Ok(2)
733}
734
735///
736/// Generates a unique temporary file name and pushes it as a string.
737/// Raises a runtime error if generation fails.
738///
739/// Temporary names are a host capability. Native hosts can install
740/// `GlobalState::temp_name_hook`; bare WASM without that hook raises a Lua
741/// error instead of touching `std::env` / `std::time` stubs.
742pub(crate) fn os_tmpname(state: &mut LuaState) -> Result<usize, LuaError> {
743    let dir = host_temp_name(state)?;
744    state.push_string(&dir)?;
745    Ok(1)
746}
747
748///
749/// Reads the environment variable named by the first argument and pushes its
750/// value as a string, or `nil` if the variable is not set.
751pub(crate) fn os_getenv(state: &mut LuaState) -> Result<usize, LuaError> {
752    let name_bytes: Vec<u8> = state.check_arg_string(1)?.to_vec();
753
754    let result: Option<Vec<u8>> = match state.global().env_hook {
755        Some(env_fn) => env_fn(&name_bytes),
756        None => {
757            #[cfg(all(target_arch = "wasm32", target_os = "unknown"))]
758            {
759                None
760            }
761
762            #[cfg(all(unix, not(all(target_arch = "wasm32", target_os = "unknown"))))]
763            {
764                use std::ffi::OsStr;
765                use std::os::unix::ffi::{OsStrExt, OsStringExt};
766                let os_name = OsStr::from_bytes(&name_bytes);
767                std::env::var_os(os_name).map(|v| v.into_vec())
768            }
769
770            #[cfg(all(not(unix), not(all(target_arch = "wasm32", target_os = "unknown"))))]
771            {
772                // Non-Unix platforms: requires valid UTF-8 for OS API interop
773                // (a wide-string conversion would be more permissive).
774                match std::str::from_utf8(&name_bytes) {
775                    Ok(name_str) => std::env::var(name_str).ok().map(|v| v.into_bytes()),
776                    Err(_) => None,
777                }
778            }
779        }
780    };
781
782    match result {
783        Some(val) => {
784            state.push_string(&val)?;
785        }
786        None => {
787            state.push(LuaValue::Nil);
788        }
789    }
790    Ok(1)
791}
792
793///
794/// Returns an approximation of the CPU time (in seconds) used by the program.
795pub(crate) fn os_clock(state: &mut LuaState) -> Result<usize, LuaError> {
796    let seconds = cpu_seconds(state)?;
797    state.push(LuaValue::Float(seconds));
798    Ok(1)
799}
800
801/// Returns program CPU time in seconds, as consumed by `os.clock`.
802///
803/// C's `clock()` reads `CLOCK_PROCESS_CPUTIME_ID`, which has no portable `std`
804/// equivalent. We route through `cpu_clock_hook` when the host installs one;
805/// otherwise native builds report monotonic wall time elapsed since the first
806/// call (the substitution wasi-libc and Emscripten make for `clock()`), and bare
807/// WASM reports the clock as unavailable rather than touching a stubbed source.
808fn cpu_seconds(state: &LuaState) -> Result<f64, LuaError> {
809    if let Some(clock_fn) = state.global().cpu_clock_hook {
810        return Ok(clock_fn());
811    }
812
813    #[cfg(all(target_arch = "wasm32", target_os = "unknown"))]
814    {
815        let _ = state;
816        Err(LuaError::runtime(format_args!(
817            "CPU clock not available in this host"
818        )))
819    }
820
821    #[cfg(not(all(target_arch = "wasm32", target_os = "unknown")))]
822    {
823        let _ = state;
824        use std::sync::OnceLock;
825        use std::time::Instant;
826        static START: OnceLock<Instant> = OnceLock::new();
827        Ok(START.get_or_init(Instant::now).elapsed().as_secs_f64())
828    }
829}
830
831/// Formats the current (or a specified) date/time.
832///
833/// * Format starting with `'!'` → use UTC; otherwise local time.
834/// * Format `"*t"` → push a table with broken-down time fields.
835/// * Other format → push a formatted string, expanding `%`-specifiers via
836///   [`strftime_one`]. Specifier validation is version-gated (5.1 does not
837///   validate; 5.2+ raise "invalid conversion specifier").
838pub(crate) fn os_date(state: &mut LuaState) -> Result<usize, LuaError> {
839    let format: Vec<u8> = state.opt_arg_lstring(1, Some(b"%c"))?.unwrap_or_default();
840    let s: &[u8] = &format[..];
841
842    let t: i64 = if matches!(state.type_at(2), LuaType::None | LuaType::Nil) {
843        unix_now(state)?
844    } else {
845        check_time(state, 2)?
846    };
847
848    let (use_utc, s): (bool, &[u8]) = if s.first() == Some(&b'!') {
849        (true, &s[1..])
850    } else {
851        (false, s)
852    };
853
854    // Local time is reproduced by decomposing `t + offset`, where `offset` is the
855    // host timezone offset at `t` from `local_offset_hook` (the host that needs
856    // local time installs one; reading the zone database itself needs libc FFI,
857    // banned here). Without a hook the offset is 0 and local time degrades to UTC,
858    // keeping the `os.date`/`os.time` round-trip exact (pinned by
859    // `os_strengthen.rs::time_local_round_trip_is_host_independent`). A `'!'`
860    // prefix requests UTC explicitly and skips the offset.
861    let offset = if use_utc { 0 } else { local_offset(state, t) };
862    let stm = decompose_utc(t + offset);
863
864    if s == b"*t" {
865        state.create_table(0, 9)?;
866        set_all_fields(state, &stm)?;
867    } else {
868        // 5.1's `os_date` has no `checkoption`: a `%X` directive is built into a
869        // 3-byte `cc` and handed straight to `strftime` (unknown directives are
870        // implementation-defined, never a Lua error), and a trailing bare `%` is
871        // emitted literally. 5.2+ validate the directive against a fixed option
872        // set and raise "invalid conversion specifier". Pinned by
873        // `os_strengthen.rs::date_invalid_specifier_is_unvalidated_on_5_1_crossversion`.
874        let validate = !matches!(state.global().lua_version, lua_types::LuaVersion::V51);
875        let mut result: Vec<u8> = Vec::new();
876        let mut pos: usize = 0;
877
878        while pos < s.len() {
879            if s[pos] != b'%' {
880                result.push(s[pos]);
881                pos += 1;
882            } else if !validate {
883                if pos + 1 >= s.len() {
884                    result.push(b'%');
885                    pos += 1;
886                } else {
887                    let mut cc = [0u8; 4];
888                    cc[0] = b'%';
889                    cc[1] = s[pos + 1];
890                    strftime_one(&mut result, &cc, 1, &stm);
891                    pos += 2;
892                }
893            } else {
894                pos += 1;
895                let mut cc = [0u8; 4];
896                cc[0] = b'%';
897                // Pass the remaining slice even if empty: checkoption's loop
898                // condition (oplen <= convlen) fails immediately on an empty
899                // slice, which causes it to raise "invalid conversion specifier"
900                // matching C behaviour for a trailing bare '%'.
901                let conv = &s[pos..];
902                let after = check_strftime_option(state, conv, &mut cc)?;
903                let oplen = conv.len() - after.len();
904                pos += oplen;
905                strftime_one(&mut result, &cc, oplen, &stm);
906                let _ = SIZE_TIME_FMT;
907            }
908        }
909        state.push_string(&result)?;
910    }
911    Ok(1)
912}
913
914///
915/// Without arguments: returns the current time as a Unix timestamp (integer).
916/// With a table argument: interprets the table as broken-down local time,
917/// normalises the fields via `mktime`, updates the table in place, and returns
918/// the resulting timestamp.
919pub(crate) fn os_time(state: &mut LuaState) -> Result<usize, LuaError> {
920    let t: i64;
921
922    if matches!(state.type_at(1), LuaType::None | LuaType::Nil) {
923        t = unix_now(state)?;
924    } else {
925        state.check_arg_type(1, LuaType::Table)?;
926        // Must use the public-API `set_top` (relative to the current
927        // C-frame's `func`), not `LuaState::set_top` which is an inherent that
928        // sets an absolute stack index and would truncate the entire stack.
929        lua_vm::api::set_top(state, 1)?;
930
931        // The field-read ORDER is version-gated, faithful to `loslib.c`'s
932        // `os_time` evolution and pinned by
933        // `os_strengthen.rs::time_missing_field_names_first_unread_required_field_crossversion`.
934        // Field *values* are order-independent; the order matters only because a
935        // "field '…' missing in date table" error short-circuits on the FIRST
936        // absent required field. 5.1/5.2/5.3 read sec→min→hour→day→month→year,
937        // so an empty table reports `day` first; 5.4/5.5 read
938        // year→month→day→hour→min→sec, reporting `year` first.
939        let (tm_year, tm_mon, tm_mday, tm_hour, tm_min, tm_sec) = if matches!(
940            state.global().lua_version,
941            lua_types::LuaVersion::V51 | lua_types::LuaVersion::V52 | lua_types::LuaVersion::V53
942        ) {
943            let tm_sec = get_field(state, b"sec", 0, 0)?;
944            let tm_min = get_field(state, b"min", 0, 0)?;
945            let tm_hour = get_field(state, b"hour", 12, 0)?;
946            let tm_mday = get_field(state, b"day", -1, 0)?;
947            let tm_mon = get_field(state, b"month", -1, 1)?;
948            let tm_year = get_field(state, b"year", -1, 1900)?;
949            (tm_year, tm_mon, tm_mday, tm_hour, tm_min, tm_sec)
950        } else {
951            let tm_year = get_field(state, b"year", -1, 1900)?;
952            let tm_mon = get_field(state, b"month", -1, 1)?;
953            let tm_mday = get_field(state, b"day", -1, 0)?;
954            let tm_hour = get_field(state, b"hour", 12, 0)?;
955            let tm_min = get_field(state, b"min", 0, 0)?;
956            let tm_sec = get_field(state, b"sec", 0, 0)?;
957            (tm_year, tm_mon, tm_mday, tm_hour, tm_min, tm_sec)
958        };
959        let tm_isdst = get_bool_field(state, b"isdst")?;
960
961        let raw = TmFields {
962            tm_year,
963            tm_mon,
964            tm_mday,
965            tm_hour,
966            tm_min,
967            tm_sec,
968            tm_isdst,
969            ..TmFields::default()
970        };
971
972        // C `mktime` interprets the broken-down time as LOCAL and
973        // returns the corresponding UTC timestamp. We reproduce it: treat the
974        // fields as UTC to get a provisional `t_utc` (this also normalises the
975        // month axis), then subtract the host timezone offset to recover the true
976        // UTC instant. The offset is sampled at `t_utc` then re-sampled at the
977        // corrected instant — the standard `mktime` fixed-point step — so the
978        // result is correct except across a DST transition inside the offset
979        // window, which `os.time`'s test inputs do not exercise. Without a hook
980        // the offset is 0 and this is the exact inverse of `os.date`'s local
981        // decomposition, so the `os.time(os.date("*t")) == t` round-trip holds.
982        let t_utc = compose_utc(&raw);
983        let off0 = local_offset(state, t_utc);
984        let off = local_offset(state, t_utc - off0);
985        t = t_utc - off;
986        let stm = decompose_utc(t + off);
987
988        set_all_fields(state, &stm)?;
989    }
990
991    // On 64-bit targets time_t == i64 == lua_Integer so the cast check
992    // is a no-op.  We only guard against mktime's failure sentinel (−1).
993    if t == -1 {
994        return Err(LuaError::runtime(format_args!(
995            "time result cannot be represented in this installation"
996        )));
997    }
998
999    state.push(LuaValue::Int(t));
1000    Ok(1)
1001}
1002
1003///
1004/// Returns the number of seconds between two time values as a float (`t1 − t2`).
1005///
1006/// Returns `t1 − t2` as a `double`, matching C's `difftime`. For 64-bit
1007/// `time_t` this is exact as `f64` up to approximately 2^53 seconds
1008/// (~285 million years), which is sufficient for all practical timestamps.
1009pub(crate) fn os_difftime(state: &mut LuaState) -> Result<usize, LuaError> {
1010    let t1 = check_time(state, 1)?;
1011    let t2 = check_time(state, 2)?;
1012    state.push(LuaValue::Float((t1 - t2) as f64));
1013    Ok(1)
1014}
1015
1016///
1017/// Sets the locale for the given category and pushes the resulting locale name
1018/// as a string, or `nil` on failure.
1019pub(crate) fn os_setlocale(state: &mut LuaState) -> Result<usize, LuaError> {
1020    const CAT_NAMES: &[&[u8]] = &[
1021        b"all",
1022        b"collate",
1023        b"ctype",
1024        b"monetary",
1025        b"numeric",
1026        b"time",
1027    ];
1028
1029    let locale: Option<Vec<u8>> = state.opt_arg_lstring(1, None)?;
1030
1031    let _op: usize = state.check_arg_option(2, Some(b"all"), CAT_NAMES)?;
1032
1033    // Calling libc::setlocale requires unsafe (banned in lua-stdlib, budget=0).
1034    // Rust programs inherit the "C" locale by default and never change it, so returning
1035    // "C" for the C locale (and nil for anything else) is faithful for this build:
1036    // "C" is the only locale guaranteed available on every POSIX system.
1037    let result_locale: Option<&[u8]> = match locale.as_deref() {
1038        None => Some(b"C"), // query: return current locale (always "C" here)
1039        Some(b"C") | Some(b"POSIX") => Some(b"C"), // setting to "C"/"POSIX" always succeeds
1040        Some(_) => None,    // any other locale: unsupported in this build
1041    };
1042    match result_locale {
1043        Some(s) => {
1044            state.push_string(s)?;
1045        }
1046        None => state.push(LuaValue::Nil),
1047    }
1048    Ok(1)
1049}
1050
1051///
1052/// Exits the host process with the given status code (default `EXIT_SUCCESS = 0`).
1053/// If the second argument is true, also closes the Lua state before exiting.
1054///
1055/// This function is expected to terminate the process and never return normally.
1056pub(crate) fn os_exit(state: &mut LuaState) -> Result<usize, LuaError> {
1057    //      status = lua_toboolean(L, 1) ? EXIT_SUCCESS : EXIT_FAILURE;
1058    //    else
1059    //      status = (int)luaL_optinteger(L, 1, EXIT_SUCCESS);
1060    let exit_code: i32 = if matches!(state.type_at(1), LuaType::Boolean) {
1061        if state.to_boolean(1) {
1062            0
1063        } else {
1064            1
1065        } // EXIT_SUCCESS = 0, EXIT_FAILURE = 1
1066    } else {
1067        state.opt_arg_integer(1, 0)? as i32
1068    };
1069
1070    if state.to_boolean(2) {
1071        state.close();
1072    }
1073
1074    //
1075    // `std::process::exit` remains restricted to `lua-cli`. A regular
1076    // `LuaError` is also wrong here: Lua `pcall` must not catch `os.exit`.
1077    // Use a typed panic payload as internal non-local control flow; the CLI
1078    // catches it at the process boundary and converts it to an `ExitCode`.
1079    std::panic::panic_any(LuaExit(exit_code));
1080}
1081
1082// ── Registration table and entry point ───────────────────────────────────────
1083
1084/// Signature of a Lua native function (the `os.*` registration entries).
1085pub type NativeFn = fn(&mut LuaState) -> Result<usize, LuaError>;
1086
1087/// Mapping from Lua-visible names to the Rust implementations of each `os.*`
1088/// function.
1089pub const OS_LIB: &[(&[u8], NativeFn)] = &[
1090    (b"clock", os_clock),
1091    (b"date", os_date),
1092    (b"difftime", os_difftime),
1093    (b"execute", os_execute),
1094    (b"exit", os_exit),
1095    (b"getenv", os_getenv),
1096    (b"remove", os_remove),
1097    (b"rename", os_rename),
1098    (b"setlocale", os_setlocale),
1099    (b"time", os_time),
1100    (b"tmpname", os_tmpname),
1101];
1102
1103/// Opens the `os` library: creates a new table populated with `OS_LIB` and
1104/// leaves it on the stack.
1105pub fn open_os(state: &mut LuaState) -> Result<usize, LuaError> {
1106    state.register_lib(b"os", OS_LIB)?;
1107    Ok(1)
1108}