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zsh/
vm_helper.rs

1//! Shell executor state for zshrs.
2//!
3//! ━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
4//! !!! LAST-RESORT FILE — NOT FOR NEW LOGIC !!!
5//!
6//! This file holds the `ShellExecutor` runtime state struct + VM-adjacent
7//! helpers. It is **not** the place to add zsh logic — every line here that
8//! does real shell work is a tax we pay because zshrs uses fusevm bytecode
9//! instead of C zsh's wordcode walker.
10//!
11//! **Before adding code to this file, STOP and ask:**
12//!
13//!   1. Does the C source have a fn that does this? (Check `src/zsh/Src/*.c`)
14//!      → Port it into `src/ported/<file>.rs` with line-by-line citations.
15//!        Then call the canonical fn from here.
16//!
17//!   2. Does `src/ported/` already have a port?
18//!      → Call it directly. Don't reimplement.
19//!
20//!   3. Is this purely a Rust-only state-struct accessor (getter/setter on
21//!      ShellExecutor fields, VM init plumbing, executor-context guards)?
22//!      → OK to put it here. Mark it `WARNING: RUST-ONLY HELPER` per memory
23//!        `feedback_rust_only_helpers_need_warning`.
24//!
25//! **NEVER:** reinvent paramsubst/expansion/glob/typeset/redirect/scope
26//! management here. Every one of those has a canonical port in `src/ported/`.
27//! When a bridge-side fn grows past ~30 lines of shell logic, that's a
28//! signal the work belongs in `src/ported/` — port it, don't inline.
29//!
30//! This file should be SHRINKING over time. Every PR that adds lines here
31//! should justify it; every PR that moves lines OUT to `src/ported/` is
32//! aligned with the project direction.
33//!
34//! See also: memory `feedback_no_shortcuts_in_porting`, `feedback_true_port_pattern`,
35//! `feedback_no_shellexecutor_in_ported` (the inverse direction).
36//! ━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
37//!
38//! **Not a port of Src/exec.c.** C zsh runs compiled programs on the native
39//! **wordcode walker** in `Src/exec.c` (`execlist` / `execpline` / `execcmd`).
40//! zshrs uses fusevm bytecode instead; the bridge lives in `src/fusevm_bridge.rs`.
41//! This file holds:
42//! - `ShellExecutor` — the runtime state struct that the VM and
43//!   every ported builtin/utility threads through
44//! - VM-adjacent helpers that read/write that state
45//!
46//! Path-wise this file lives at the crate root (`src/vm_helper`) rather
47//! than in `src/ported/` because nothing here corresponds 1:1 to a
48//! `Src/*.c` source file. `crate::ported::exec` is kept as a
49//! re-export alias so existing call-sites continue to compile.
50
51use crate::compsys::cache::CompsysCache;
52use crate::compsys::CompInitResult;
53use crate::history::HistoryEngine;
54use crate::options::ZSH_OPTIONS_SET;
55use crate::ported::builtin::{BREAKS, CONTFLAG};
56use crate::ported::math::mathevali;
57use crate::ported::modules::parameter::*;
58use crate::ported::subst::singsub;
59
60thread_local! {
61    /// Eval-recursion depth counter — no C counterpart by design.
62    ///
63    /// !!! WARNING: RUST-ONLY BACKSTOP — reproduces C behaviour, no C fn !!!
64    ///
65    /// zsh bounds runaway `eval` recursion via its job table: every eval'd
66    /// list runs through `execpline`, which grabs a job slot per pipeline
67    /// (`initjob`), and the table caps at `MAX_MAXJOBS` → `zerr("job table
68    /// full or recursion limit exceeded")` (Src/jobs.c:1878-1884). The fusevm
69    /// runtime that executes eval bodies allocates no job per pipeline, and
70    /// nested evals push no funcstack frame (INEVAL suppression, matching zsh's
71    /// `if (!ineval)` at Src/builtin.c:6164), so neither the job table nor the
72    /// FUNCNEST/FUNCSTACK depth reflects eval nesting — leaving eval recursion
73    /// unbounded until the (256 MB but finite) main-thread stack overflows →
74    /// uncatchable SIGBUS. This counter is the Rust proxy for zsh's count of
75    /// concurrently-held job slots: `builtin.rs::eval` bumps it around each
76    /// eval body and refuses to recurse at the same `MAX_MAXJOBS` ceiling.
77    /// Lives here (not src/ported/) because it is an architectural Rust-only
78    /// backstop with no 1:1 C symbol.
79    pub static EVAL_RECURSION_DEPTH: std::cell::Cell<usize> = const { std::cell::Cell::new(0) };
80}
81
82/// O(1) single-key probe against the canonical hashed storage — the
83/// fast-path companion to subst.rs `assoc_get` for order-independent
84/// single-key reads. Returns `None` when `name` (post-nameref) isn't
85/// an assoc; otherwise `Some((key_present, value))` under ONE lock,
86/// with no whole-map clone and no zsh-bucket-order rebuild (that
87/// reorder is only observable to whole-map enumeration). Hot: shell
88/// loops reading `${assoc[$k]}` per iteration were O(n²) through
89/// assoc_get — zpwr expandstats over 42k records took 43s vs zsh's ~1s.
90/// Lives here (not src/ported/) because it has no C counterpart — C's
91/// getarg IS the single-key path.
92/// Classify an assoc subscript as an EXACT-key lookup and return the
93/// key: plain text (no leading flag group) passes through; a leading
94/// `(e…)`/`(E…)` group (c:Src/params.c:1449 — literal-key flag) is
95/// stripped. Search groups ((r)/(i)/(k)/…) return `None` — they need
96/// the full getarg walk. Companion gate for [`assoc_key_hit`]'s O(1)
97/// fast paths.
98pub fn exact_assoc_sub_key(sub: &str) -> Option<&str> {
99    match sub.strip_prefix('(') {
100        None => Some(sub),
101        Some(rest) => {
102            let close = rest.find(')')?;
103            let grp = &rest[..close];
104            if !grp.is_empty() && grp.chars().all(|c| c == 'e' || c == 'E') {
105                Some(&rest[close + 1..])
106            } else {
107                None
108            }
109        }
110    }
111}
112
113pub fn assoc_key_hit(name: &str, key: &str) -> Option<(bool, Option<String>)> {
114    let resolved = match crate::ported::params::resolve_nameref_name(name, None) {
115        crate::ported::params::nameref_resolution::Target { name: t_, .. } => t_,
116        _ => name.to_string(),
117    };
118    crate::ported::params::paramtab_hashed_storage()
119        .lock()
120        .ok()
121        .and_then(|s| {
122            s.get(resolved.as_str())
123                .map(|m| (m.contains_key(key), m.get(key).cloned()))
124        })
125}
126use crate::ported::utils::{errflag, ERRFLAG_ERROR};
127use crate::ported::zsh_h::PM_UNDEFINED;
128use crate::ported::zsh_h::WC_SIMPLE;
129use crate::ported::zsh_h::{options, MAX_OPS};
130use crate::ported::zsh_h::{PM_ARRAY, PM_HASHED, PM_INTEGER, PM_READONLY};
131use parking_lot::Mutex;
132use std::collections::HashSet;
133use std::ffi::CStr;
134use std::ffi::CString;
135use std::fs;
136use std::io::Read;
137use std::os::unix::ffi::OsStrExt;
138use std::os::unix::fs::FileTypeExt;
139use std::os::unix::fs::PermissionsExt;
140use std::os::unix::io::FromRawFd;
141use std::sync::atomic::AtomicI32;
142use std::sync::atomic::Ordering;
143use std::time::{SystemTime, UNIX_EPOCH};
144use walkdir::WalkDir;
145
146// Backward-compat re-exports for free ported recently relocated to their
147// canonical-C-file Rust modules. Existing call-sites in this file (and
148// elsewhere) still reference these unqualified.
149#[allow(unused_imports)]
150pub(crate) use crate::func_body_fmt::FuncBodyFmt;
151#[allow(unused_imports)]
152pub(crate) use crate::ported::hist::bufferwords as bufferwords_z_tuple;
153#[allow(unused_imports)]
154pub(crate) use crate::ported::math::{parse_assign, parse_compound, parse_pre_inc};
155#[allow(unused_imports)]
156pub use crate::ported::params::convbase as format_int_in_base;
157pub use crate::ported::params::convbase_underscore;
158// `getarrvalue` is already re-exported by `pub use crate::ported::params::*`
159// below; an explicit `pub(crate) use` here only shadowed that public export.
160#[allow(unused_imports)]
161pub(crate) use crate::ported::utils::base64_decode;
162#[allow(unused_imports)]
163pub(crate) use crate::ported::utils::{ispwd, printprompt4, quotedzputs};
164
165pub(crate) use crate::intercepts::intercept_matches;
166/// AOP advice type — before, after, or around.
167pub use crate::intercepts::{AdviceKind, Intercept};
168
169/// Result from background compinit thread.
170pub use crate::compinit_bg::CompInitBgResult;
171use std::io::Write;
172use std::sync::LazyLock;
173
174/// State snapshot for plugin delta computation.
175pub(crate) use crate::plugin_cache::PluginSnapshot;
176
177/// Cached compiled regexes for hot paths
178pub(crate) static REGEX_CACHE: LazyLock<Mutex<HashMap<String, Regex>>> =
179    LazyLock::new(|| Mutex::new(HashMap::with_capacity(64)));
180
181// fusevm VM bridge (extension; not a port of Src/exec.c) lives in
182// src/fusevm_bridge.rs. Re-exports below let the rest of the codebase
183// reference symbols as `crate::ported::exec::X`.
184pub(crate) use crate::fusevm_bridge::ExecutorContext;
185pub use crate::fusevm_bridge::*;
186
187/// `ZSH_VERSION` / `ZSH_PATCHLEVEL` / `ZSH_VERSION_DATE` consts
188/// generated by `build.rs` from `src/zsh/Config/version.mk`. Use
189/// `zsh_version::ZSH_VERSION` etc. at call sites so version bumps
190/// pick up automatically.
191pub mod zsh_version {
192    include!(concat!(env!("OUT_DIR"), "/zsh_version.rs"));
193}
194
195/// Match an intercept pattern against a command name or full command string.
196/// Supports: exact match, glob ("git *", "_*", "*"), or "all".
197
198/// O(1) builtin-name lookup set derived from the canonical
199/// `BUILTINS` table (`src/ported/builtin.rs:122`, the 1:1 port of
200/// `static struct builtin builtins[]` at `Src/builtin.c:40-137`).
201/// Earlier incarnation hardcoded a separate 130-entry list which
202/// drifted whenever new builtins landed in the canonical table — and
203/// shadowed the `fusevm::shell_builtins::BUILTIN_SET` u16 opcode
204/// constant. Renaming to `BUILTIN_NAMES` removes the shadow; the
205/// initialiser walks `BUILTINS` so the set stays in sync.
206///
207/// The hardcoded entries inside `LazyLock::new` below are kept as
208/// the union of: (1) names from `BUILTINS` (walked at first access),
209/// (2) zshrs daemon-side builtins from `ZSHRS_BUILTIN_NAMES`. Both
210/// arms run once at static init.
211pub(crate) static BUILTIN_NAMES: LazyLock<HashSet<String>> = LazyLock::new(|| {
212    let mut s: HashSet<String> = HashSet::new();
213    // Walk the canonical `BUILTINS` table — the 1:1 port of
214    // `static struct builtin builtins[]` at `Src/builtin.c:40-137`
215    // (ported at `src/ported/builtin.rs:122`). Every name in there is
216    // a real zsh builtin; the set stays in sync as new ports land.
217    for b in crate::ported::builtin::BUILTINS.iter() {
218        s.insert(b.node.nam.clone());
219    }
220    // Daemon-side (zshrs-specific extensions).
221    for &n in crate::daemon::builtins::ZSHRS_BUILTIN_NAMES.iter() {
222        s.insert(n.to_string());
223    }
224    s
225});
226
227use crate::exec_jobs::{JobState, JobTable};
228use crate::parse::{Redirect, RedirectOp, ShellCommand, ShellWord, VarModifier, ZshParamFlag};
229use indexmap::IndexMap;
230use std::collections::HashMap;
231use std::env;
232use std::fs::{File, OpenOptions};
233use std::io;
234use std::path::{Path, PathBuf};
235use std::process::{Child, Command, Stdio};
236
237// Re-exports for call-sites that reference `crate::ported::exec::<Name>`.
238pub use crate::bash_complete::CompSpec;
239pub use crate::ported::builtin::AutoloadFlags;
240pub use crate::ported::modules::zutil::zstyle_entry;
241
242/// Snapshot of subshell-isolated state. Captured at `(` entry, restored at
243/// `)` exit. zsh subshell semantics: assignments inside `(…)` don't leak to
244/// the outer scope — and that includes `export`. zsh forks a child for the
245/// subshell so the child's env::set_var dies with the child; without a fork
246/// (zshrs runs subshells in-process for perf), we snapshot+restore the OS
247/// env table around the subshell. Otherwise `(export y=v)` would leak `y`
248/// to the parent shell, breaking every script that uses a subshell to
249/// scope an env override.
250/// Snapshot of mutable executor state across a subshell
251/// boundary.
252/// Port of the `entersubsh()` save/restore Src/exec.c does at
253/// line 1084 — captures everything that must be replaced when a
254/// `(...)` group fires.
255pub struct SubshellSnapshot {
256    /// Snapshot of `paramtab` (the C-canonical parameter store) at
257    /// subshell entry. Step 1 of the unification mirrors writes to
258    /// paramtab, so subshell-scoped assignments now show up there
259    /// too — without this snapshot, restoring only `variables` /
260    /// `arrays` / `assoc_arrays` leaks the subshell's writes to the
261    /// parent via paramtab (e.g. `x=outer; (x=inner); echo $x` returned
262    /// `inner` because paramsubst reads through paramtab).
263    pub paramtab: crate::fast_hash::FastMap<String, crate::ported::zsh_h::Param>,
264    /// `paramtab_hashed_storage` field.
265    pub paramtab_hashed_storage: HashMap<String, IndexMap<String, String>>,
266    /// `positional_params` field.
267    pub positional_params: Vec<String>,
268    /// `env_vars` field.
269    pub env_vars: HashMap<String, String>,
270    /// Values of the special parameters whose backing store is a process
271    /// GLOBAL rather than the parameter table — `Src/params.c`'s `char *ifs`
272    /// (IFS), `wordchars`, `home`, `histsiz`, … — each reached through a GSU
273    /// getfn/setfn pair (the dispatch list at params.rs:12548).
274    ///
275    /// The `paramtab` snapshot above restores the param NODE, but the node only
276    /// carries the GSU pair; the value itself lives in the global, which a
277    /// paramtab restore doesn't touch. C forks for `(...)`, so a child's writes
278    /// to those globals die with it. zshrs runs subshells in-process, so
279    /// `(IFS=,; :)` left the PARENT's IFS as `,` — and every later word-split
280    /// in the parent silently used it. Same fork-copy reasoning as `opts` /
281    /// `umask` / `aliases` above.
282    pub special_globals: Vec<(String, String)>,
283    /// Process working directory at subshell entry. `cd` inside the
284    /// subshell shouldn't leak to the parent; we restore on End.
285    pub cwd: Option<PathBuf>,
286    /// File-creation mask at subshell entry. zsh forks for `(...)` so
287    /// `umask` set inside dies with the child; we run subshells in
288    /// process so we must restore the mask on End. Otherwise
289    /// `umask 022; (umask 077); umask` shows 077 in the parent.
290    pub umask: u32,
291    /// Parent's traps at subshell entry. zsh's `(trap "echo X" EXIT;
292    /// true)` runs the trap when the subshell exits — BEFORE the parent
293    /// continues. Without this snapshot, the trap inherited from parent
294    /// would fire, OR a trap set inside the subshell would leak to the
295    /// parent's process exit. Restored on subshell_end after the
296    /// subshell's own EXIT trap (if any) has fired. Stores a snapshot
297    /// of `crate::ported::builtin::traps_table()` (canonical).
298    pub traps: HashMap<String, String>,
299    /// Parent's shell options at subshell entry. `(set -e)` /
300    /// `(setopt extendedglob)` mustn't leak; zsh forks the subshell
301    /// so child options die with the child. We run in-process, so we
302    /// must restore the option store on subshell_end.
303    pub opts: HashMap<String, bool>,
304    /// Parent's alias entries at subshell entry. zsh forks for
305    /// `(...)` so `(alias x=y)` inside a subshell dies with the
306    /// child and doesn't leak to the parent. zshrs runs subshells
307    /// in-process, so we must restore the alias table on
308    /// subshell_end. Bug #209 in docs/BUGS.md. Stored as a flat
309    /// Vec<(name, text, flags)> snapshot. The node FLAGS must
310    /// round-trip: ALIAS_GLOBAL / DISABLED distinguish global and
311    /// disabled aliases in the shared aliastab — the previous
312    /// (name, text) shape restored every entry with flags=0, so ANY
313    /// subshell (`(true)`, zsh-z's `(zshz --add … &)` precmd)
314    /// reflagged every global alias to REGULAR in the parent:
315    /// `alias -g` listed nothing and `${+galiases[x]}` went 0 one
316    /// prompt after every define.
317    pub aliases: Vec<(String, String, i32)>,
318    /// Parent's shell-function table at subshell entry. C zsh's
319    /// `entersubsh` (`Src/exec.c`) forks before running the
320    /// subshell body so `(f() { ... })` defining a function dies
321    /// with the child and never leaks to the parent. zshrs runs
322    /// subshells in-process, so we must clone `shfunctab` on entry
323    /// and restore on exit. Bug #208 in docs/BUGS.md. Stored as
324    /// the full `HashMap<String, Box<shfunc>>` clone — shfunc is
325    /// `Clone` and the table snapshot is bounded by the user's
326    /// declared function set.
327    pub shfuncs: std::collections::HashMap<String, Box<crate::ported::zsh_h::shfunc>>,
328    /// Parent's compiled-function chunks at subshell entry. Companion
329    /// to `shfuncs` above — `ShellExecutor.functions_compiled` is the
330    /// runtime dispatch table that `Op::CallFunction` reads through;
331    /// without restoring it, a subshell `(g() { override; })` leaves
332    /// the override bytecode chunk in place so the parent's
333    /// `g` call still runs the override after `subshell_end`
334    /// restored shfunctab. Bug #208 in docs/BUGS.md.
335    pub functions_compiled: HashMap<String, fusevm::Chunk>,
336    /// Parent's function source map at subshell entry. Companion to
337    /// `functions_compiled` so `typeset -f` / `whence` show the
338    /// parent's source after subshell exit, not the subshell's
339    /// overridden body. Bug #208 in docs/BUGS.md.
340    pub function_source: HashMap<String, String>,
341    /// Parent's modulestab `modules` map at subshell entry. zsh forks
342    /// for `(...)` so a `(zmodload zsh/X)` inside the subshell sets
343    /// MOD_INIT_B on the child's modulestab; when the child exits the
344    /// flag dies with it and the parent's modulestab is untouched.
345    /// zshrs runs subshells in-process, so a subshell `zmodload`
346    /// would otherwise flip the parent's `${modules[zsh/X]}` from
347    /// unset to "loaded". Snapshot here and restore on subshell_end.
348    /// Bug #210 in docs/BUGS.md. Stored as `(name → flags)`
349    /// since `module` struct doesn't derive Clone (LinkList/
350    /// Linkedmod) — and the only thing `zmodload` mutates that
351    /// affects introspection is the flags bitmask (MOD_INIT_B
352    /// for loaded, MOD_UNLOAD for unloaded).
353    pub modules: HashMap<String, i32>,
354    /// Parent's THINGYTAB (ZLE widget registry) at subshell entry.
355    /// zsh forks for `(...)` so `zle -N w f` / `zle -D w` inside the
356    /// subshell flip widget bindings only in the child; when the
357    /// child exits the parent's widget table is untouched. zshrs runs
358    /// subshells in-process so a subshell's `zle -D w` would
359    /// otherwise unbind the parent's widget. Bug #453 in docs/BUGS.md.
360    pub thingytab: HashMap<String, crate::ported::zle::zle_thingy::Thingy>,
361    /// Parent's KEYMAPNAMTAB (named keymap registry) at subshell
362    /// entry. Same fork-copy semantics as THINGYTAB — a subshell's
363    /// `bindkey -N km` / `bindkey -D km` mutates only the child's
364    /// keymap registry in C zsh. Bug #454 in docs/BUGS.md.
365    pub keymapnamtab: HashMap<String, crate::ported::zle::zle_keymap::KeymapName>,
366    /// Parent's `$!` (clone::lastpid) at subshell entry. C zsh forks
367    /// for `(...)`, so a background job started INSIDE the subshell
368    /// sets the child's `lastpid` only — `( : & ); echo $!` prints 0
369    /// in zsh. zshrs runs subshells in-process, so restore on end.
370    pub lastpid: i32,
371    /// Job-control state at subshell entry: (JOBTAB clone, CURJOB,
372    /// PREVJOB, MAXJOB, THISJOB). C zsh forks for `(...)` so any
373    /// `disown` / `wait` / new `&` job inside the subshell mutates the
374    /// CHILD's copy of jobtab and dies with it (Src/exec.c::entersubsh
375    /// fork semantics); the parent's table is untouched. zshrs's
376    /// in-process subshell must snapshot/restore to match — without
377    /// this, `sleep 1 & (disown); jobs` shows an empty table where
378    /// zsh still lists the job. Bug #462.
379    pub jobtab: Vec<crate::ported::zsh_h::job>,
380    /// `curjob` at subshell entry (Src/jobs.c:75 global).
381    pub curjob: i32,
382    /// `prevjob` at subshell entry (Src/jobs.c:80 global).
383    pub prevjob: i32,
384    /// `maxjob` at subshell entry (Src/jobs.c:71 global).
385    pub maxjob: usize,
386    /// `thisjob` at subshell entry (Src/jobs.c:77 global).
387    pub thisjob: i32,
388    /// User-range fds (0-9) at subshell entry: `(fd, saved_dup)`
389    /// pairs where `saved_dup` is an `F_DUPFD >= 10` copy, or -1 when
390    /// the fd was closed at entry. C zsh forks for `(...)` so a bare
391    /// `exec >file` / `exec 3<&-` inside the child dies with it
392    /// (Src/exec.c entersubsh fork semantics); the in-process
393    /// subshell must restore the parent's fd table on End. Without
394    /// this, `(exec >t.log; ...); cat t.log` left the PARENT's fd 1
395    /// pointing at t.log and `cat` looped forever copying the file
396    /// into itself.
397    pub saved_fds: Vec<(i32, i32)>,
398}
399
400#[allow(unused_imports)]
401pub(crate) use crate::ported::pattern::{
402    extract_numeric_ranges, numeric_range_contains, numeric_ranges_to_star,
403};
404
405/// Top-level shell executor state.
406/// Fork-equivalent event counter — incremented on every external
407/// spawn and in-process subshell entry. C zsh's `time` keyword
408/// reports only for JOBS (forked work, Src/jobs.c printtime via the
409/// job table); zshrs runs builtins/braces/functions in-process with
410/// no job, so the TIME_SUBLIST handler compares this counter across
411/// the timed body to decide whether to emit the report.
412pub static FORK_EVENTS: std::sync::atomic::AtomicU64 = std::sync::atomic::AtomicU64::new(0);
413
414/// Port of the file-static globals + `Estate` chain Src/exec.c
415/// uses — `execlist()` (line 1349) drives every list, with
416/// `execpline()` (line 1668), `execpline2()` (line 1991),
417/// `execsimple()` (line 1290), and the per-`WC_*` `execfuncs[]`
418/// table (line 268) feeding off it. The Rust port collapses
419/// everything into one `ShellExecutor` so we don't need
420/// thread-local globals.
421pub struct ShellExecutor {
422    /// Mirrors C zsh's file-static `scriptname` (Src/init.c). Used by
423    /// PS4's `%N` and the `scriptname:line: …` prefix on error
424    /// messages. Inside a function, MUTATES to the function name
425    /// (Src/exec.c:5903 `scriptname = dupstring(name)`). Init sets
426    /// this in `-c` mode to the binary basename per init.c:479; when
427    /// sourcing a file via `source`/`bin_dot`, it becomes the
428    /// resolved file path; otherwise it falls back through `$0` →
429    /// `$ZSH_ARGZERO`.
430    pub scriptname: Option<String>,
431    /// Mirrors C zsh's `scriptfilename` global (Src/init.c). Tracks
432    /// the FILE BEING READ (vs scriptname which tracks the active
433    /// function name during a call). Used by PS4's `%x` and certain
434    /// error-message prefixes that want the file location, NOT the
435    /// function name.
436    ///
437    /// At -c-mode init, scriptname == scriptfilename == "zsh"
438    /// (Src/init.c:479). When entering a function, ONLY scriptname
439    /// updates (exec.c:5903); scriptfilename stays at the outer
440    /// file path, so `%x` inside a function still shows the file
441    /// the function was called from.
442    pub scriptfilename: Option<String>,
443    /// Stack of subshell-state snapshots. Each `(…)` subshell pushes a copy
444    /// of variables/arrays/assoc_arrays at entry and pops/restores at exit.
445    /// Without this, `(x=inner; …); echo $x` shows `inner` instead of the
446    /// outer-scope value.
447    pub subshell_snapshots: Vec<SubshellSnapshot>,
448    /// Stack of inline-assignment scopes — `X=foo Y=bar cmd` pushes
449    /// a frame at the start, the assigns run inside it, and `cmd`
450    /// returns into END_INLINE_ENV which restores both shell-vars
451    /// and process-env to the pre-frame state. Each frame holds
452    /// `(name, prev_var, prev_env)` per assigned name. zsh's
453    /// equivalent is the parser-level "addvar" list executed under
454    /// `addvars()` (Src/exec.c) right before the command exec.
455    pub inline_env_stack: Vec<Vec<(String, Option<String>, Option<String>)>>,
456    /// Set by `expand_glob`'s no-match arm when `nomatch` is on (zsh
457    /// default) — instructs the simple-command dispatcher to skip
458    /// executing the current command, set last_status=1, and continue
459    /// to the next command in the script. zsh's bin_simple uses the
460    /// errflag global for the same role: error printed, command
461    /// suppressed, script continues. Without this we were calling
462    /// `process::exit(1)` deep inside expand_glob, killing the whole
463    /// shell on any unmatched glob even with multi-statement input.
464    /// `Cell` because the no-match site only has a `&self` borrow.
465    pub current_command_glob_failed: std::cell::Cell<bool>,
466    /// `jobs` field.
467    pub jobs: JobTable,
468    /// `fpath` field.
469    pub fpath: Vec<PathBuf>,
470    /// `history` field.
471    pub history: Option<HistoryEngine>,
472    pub(crate) process_sub_counter: u32,
473    pub completions: HashMap<String, CompSpec>, // command -> completion spec
474    pub zstyles: Vec<zstyle_entry>,             // zstyle configurations
475    /// Current function scope depth for `local` tracking.
476    pub local_scope_depth: usize,
477    /// Last arg of the currently-running command, deferred into `$_`
478    /// when the next command dispatches. zsh: `$_` reflects the LAST
479    /// command's last arg, so `echo hi; echo $_` prints `hi` (not the
480    /// `_` arg of `echo $_` itself). Promoted in `pop_args` and
481    /// `host.exec` before the command's args are read.
482    pub pending_underscore: Option<String>,
483    /// True while expanding inside a double-quoted context. Set by
484    /// `BUILTIN_EXPAND_TEXT` mode 1 around `expand_string` calls.
485    /// Used by parameter-flag application to suppress array-only flags
486    /// (`(o)`/`(O)`/`(n)`/`(i)`/`(M)`/`(u)`) — zsh's behaviour: those
487    /// flags only fire in array context.
488    pub in_dq_context: u32,
489    /// True (>0) while expanding the RHS of a scalar assignment.
490    /// Direct port of zsh's `PREFORK_SINGLE` bit set by
491    /// Src/exec.c::addvars line 2546 (`prefork(vl, isstr ?
492    /// (PREFORK_SINGLE|PREFORK_ASSIGN) : PREFORK_ASSIGN, ...)`).
493    /// Subst_port's paramsubst reads this via `ssub` and suppresses
494    /// `(f)` / `(s:STR:)` / `(0)` / `(z)` split flags per
495    /// Src/subst.c:1759 + 3902, so `y="${(f)x}"` preserves x's
496    /// original separator (newlines) instead of re-joining with
497    /// IFS-first-char (space).
498    pub in_scalar_assign: u32,
499    /// `profiling_enabled` field.
500    pub profiling_enabled: bool,
501    // compsys - completion system cache
502    /// `compsys_cache` field.
503    pub compsys_cache: Option<CompsysCache>,
504    // Background compinit — receiver for async fpath scan result
505    /// `compinit_pending` field.
506    pub compinit_pending: Option<(
507        std::sync::mpsc::Receiver<CompInitBgResult>,
508        std::time::Instant,
509    )>,
510    // Plugin source cache — stores side effects of source/. in SQLite
511    /// `plugin_cache` field.
512    pub plugin_cache: Option<crate::plugin_cache::PluginCache>,
513    // cdreplay - deferred compdef calls for zinit turbo mode
514    /// `deferred_compdefs` field.
515    pub deferred_compdefs: Vec<Vec<String>>,
516    // Control flow signals
517    pub returning: Option<i32>, // Set by return builtin, cleared after function returns
518    /// zsh compatibility mode - use .zcompdump, fpath scanning, etc.
519    /// Also serves as the `--zsh` parity-test flag: caches off, daemon
520    /// off, plugin_cache replay off so every `source` re-runs the file
521    /// fresh per Src/builtin.c:6080-6123 bin_dot semantics.
522    pub zsh_compat: bool,
523    /// bash compatibility mode (`--bash`). Same parity-mode semantics
524    /// as `zsh_compat` (caches/daemon/replay off) plus bash-specific
525    /// behavior tweaks where bash 5.x diverges from zsh — e.g.
526    /// `BASH_VERSION` / `BASH_REMATCH` exposed, `[[ =~ ]]` populates
527    /// match indices the bash way, mapfile/readarray as builtins.
528    pub bash_compat: bool,
529    /// POSIX sh strict mode — no SQLite, no worker pool, no zsh extensions
530    pub posix_mode: bool,
531    /// Worker thread pool for background tasks (compinit, process subs, etc.)
532    pub worker_pool: std::sync::Arc<crate::worker::WorkerPool>,
533    /// AOP intercept table: command/function name → advice chain.
534    /// Glob patterns supported (e.g. "git *", "*").
535    pub intercepts: Vec<Intercept>,
536    /// Async job handles: id → receiver for (status, stdout)
537    pub async_jobs: HashMap<u32, crossbeam_channel::Receiver<(i32, String)>>,
538    /// Next async job ID
539    pub next_async_id: u32,
540    /// Per-scope saved-fd stacks for `Op::WithRedirectsBegin/End`. Each entry
541    /// is a Vec of (fd, saved_dup_fd) pairs taken from `dup(fd)` before the
542    /// redirect was applied; `with_redirects_end` `dup2`s them back and closes.
543    pub redirect_scope_stack: Vec<Vec<(i32, i32)>>,
544    /// Per-scope MULTIOS tee state. Each entry is `(pipe_write_fd,
545    /// JoinHandle)`: the pipe write-end currently dup2'd onto the
546    /// command's fd, and the splitter thread that reads from the
547    /// pipe read-end and writes to every collected target. Closed
548    /// + joined by `host_redirect_scope_end` BEFORE the saved fds
549    /// are restored so the splitter drains every byte the body
550    /// wrote into the pipe. Bug #36 in docs/BUGS.md.
551    pub multios_scope_stack: Vec<Vec<(i32, std::thread::JoinHandle<()>)>>,
552    /// True while applying a bare `exec`'s redirect list (`exec 1>&-`,
553    /// `exec 2>/dev/null` — no command words). `host_apply_redirect`
554    /// then skips pushing the saved fd into the enclosing scope so the
555    /// fd change survives group/command teardown.
556    /// c:Src/exec.c:3978-3986 — nullexec==1: "we specifically *don't*
557    /// restore the original fd's before returning"; C's per-execcmd
558    /// `save[]` means exec's redirs never enter the enclosing group's
559    /// save list either. Toggled by `BUILTIN_EXEC_PERM_REDIRS`.
560    pub exec_redirs_permanent: bool,
561    /// Set in a forked pipeline-stage child right after its stdout is
562    /// dup2'd onto the pipe write-end. Consumed by the FIRST
563    /// `host_redirect_scope_begin` (the stage command's own redirect
564    /// list) into `pipe_output_scope`.
565    /// c:Src/exec.c:3722-3724 — `addfd(forked, save, mfds, 1, output,
566    /// 1, NULL)`: the pipe occupies mfds[1] in the SAME execcmd that
567    /// processes the stage command's redirect list.
568    pub pipe_output_pending: bool,
569    /// Index into `redirect_scope_stack` of the scope whose redirect
570    /// list shares an execcmd with the pipeline output on fd 1. A
571    /// write-side redirect of fd 1 applied at exactly this scope depth
572    /// MULTIOS-splits (tees) instead of replacing — c:Src/exec.c:
573    /// 2447-2480 addfd "split the stream". Cleared when that scope ends.
574    pub pipe_output_scope: Option<usize>,
575    /// Set by `host_apply_redirect` when a redirect target couldn't be
576    /// opened (permission denied, no such directory, etc). The next
577    /// builtin/command checks this at entry and short-circuits with
578    /// status 1 instead of running. Mirrors zsh's "command skip" on
579    /// redirect failure.
580    pub redirect_failed: bool,
581    /// Compiled function bodies — name → fusevm::Chunk. Populated by
582    /// `BUILTIN_REGISTER_FUNCTION` (from `FunctionDef` lowering) and lazily by
583    /// `ZshrsHost::call_function` when only an AST exists in `self.functions`
584    /// (autoloaded, sourced, etc.). `Op::CallFunction` dispatches through here.
585    pub functions_compiled: HashMap<String, fusevm::Chunk>,
586    /// Canonical source text for functions. Populated by autoload paths (the
587    /// raw file/cache body), runtime FuncDef compile (the parsed source span),
588    /// and `unfunction` removal. Used by introspection (`whence`, `which`,
589    /// `typeset -f`) instead of reconstructing from a ShellCommand AST. When a
590    /// function is in `functions_compiled` but not here, introspection falls
591    /// back to `text::getpermtext(self.functions[name])`.
592    pub function_source: HashMap<String, String>,
593    /// `first_body_line - 1` per compiled function — matches inner
594    /// `ZshCompiler::lineno_offset` / zsh `funcstack->flineno` combined with
595    /// relative `$LINENO` for Src/prompt.c:909 `%I`.
596    pub function_line_base: HashMap<String, i64>,
597    /// `scriptfilename` when `BUILTIN_REGISTER_COMPILED_FN` ran — `%x` inside
598    /// a function (prompt.c:931-934) reads `funcstack->filename`.
599    pub function_def_file: HashMap<String, Option<String>>,
600    /// Innermost-last stack of active compiled-call frames for prompt `%I` / `%x`.
601    pub prompt_funcstack: Vec<(String, i64, Option<String>)>,
602    /// Scalar→(array, sep) tie table set up by `typeset -T VAR var [SEP]`.
603    /// Array→(scalar, sep) reverse-tie table. Used by BUILTIN_SET_ARRAY to
604    /// join the array elements with `sep` and mirror to the scalar side.
605    pub tied_array_to_scalar: HashMap<String, (String, String)>,
606
607    // ── ztest framework counters (extensions/ztest.rs) ──────────────────
608    //
609    // Mirrors strykelang's per-VMHelper test counters
610    // (strykelang/builtins.rs:22292-22308 + builtins.rs::test_pass/_fail/_skip,
611    //  builtins.rs::test_pass_count etc.). Each `zassert_*` builtin bumps
612    // the per-block counter; `ztest_run` rolls per-block into _total and
613    // resets the per-block side, so a single test file with multiple
614    // `ztest_run` calls can reuse the counters. The worker-pool runner in
615    // src/extensions/ztest.rs reads pass_total+pass_count and
616    // fail_total+fail_count after `execute_script` returns for the cumulative
617    // numbers (strykelang/cli_runners.rs:115-118). `ztest_run_failed` is a
618    // sticky bool the runner reads so a test that asserts but then exits
619    // 0 still flags as failed. `ztest_suppress_stdout` matches
620    // VMHelper::suppress_stdout — the runner sets it inside the forked
621    // grandchild so the per-test stderr capture stays clean.
622    /// Per-block pass count (reset by `ztest_run`).
623    pub ztest_pass_count: std::sync::atomic::AtomicUsize,
624    /// Per-block fail count (reset by `ztest_run`).
625    pub ztest_fail_count: std::sync::atomic::AtomicUsize,
626    /// Per-block skip count (reset by `ztest_run`).
627    pub ztest_skip_count: std::sync::atomic::AtomicUsize,
628    /// Cumulative pass total across the run.
629    pub ztest_pass_total: std::sync::atomic::AtomicUsize,
630    /// Cumulative fail total across the run.
631    pub ztest_fail_total: std::sync::atomic::AtomicUsize,
632    /// Cumulative skip total across the run.
633    pub ztest_skip_total: std::sync::atomic::AtomicUsize,
634    /// Sticky failure flag — set by any `ztest_run` that observed fails;
635    /// the CLI runner reads this so a test that asserts then exits 0
636    /// still counts as a failed file.
637    pub ztest_run_failed: std::sync::atomic::AtomicBool,
638    /// Suppress per-assertion `✓`/`✗` lines on stderr. Set by the worker
639    /// runner inside the forked child when it has already redirected
640    /// fd 2 to a tmp file (we still want the lines, but only after the
641    /// runner re-emits them under print_lock to avoid line-tearing).
642    pub ztest_suppress_stdout: bool,
643}
644
645/// Context-isolated nested parse — the AST-path bridge for C's
646/// `parse_string` (`Src/exec.c:283`). zshrs executes via the ZshProgram
647/// AST + `compile_zsh`, not wordcode, so this can't live in `src/ported/`
648/// (C's `parse_string` returns `Eprog`, and the build.rs port-gate rejects
649/// any non-C-named fn there). It's the bridge that wraps the AST
650/// `parse_init`+`parse` in the SAME isolation `parse_string` provides.
651///
652/// Why this exists: a runtime parse — command-substitution body,
653/// process-substitution argv — must not clobber the outer
654/// `loop()`/`parse_event` reader's live input when it interleaves parsing
655/// with execution (faithful single-event mode).
656///
657/// The load-bearing piece is `strinbeg(0)`/`strinend()` (c:290/298). It
658/// sets the `strin` flag so that when the nested lexer drains `cmd_str`,
659/// `ingetc` returns EOF (input.rs:391) instead of falling through to
660/// `inputline()`, which would STEAL the outer reader's next SHIN line —
661/// e.g. `echo A` / `v=$(echo hi)` / `echo B` had the cmd-subst swallow
662/// `echo B` off stdin, and the outer loop then hit EOF after one command.
663/// `strinbeg` also runs `hbegin`/`lexinit`, so it must execute on isolated
664/// history+lexer state — hence the surrounding `zcontext_save`/`restore`
665/// (c:288/300), which saves+restores `tok`/`tokstr`/`lexbuf`/`isnewlin`/
666/// `incmdpos`/heredocs/`lexstop`/`toklineno`/history.
667///
668/// Two zshrs-specific globals `zcontext` doesn't cover are saved here too:
669/// the lexer-input window (`LEX_INPUT`/`LEX_POS`/`LEX_UNGET_BUF`) that
670/// `lex_init` overwrites with `cmd_str`, and the line counter `LEX_LINENO`
671/// (C saves `oldlineno` explicitly at parse_string c:291/295).
672///
673/// NOTE: using `inpush` (the literal C input stack) instead does NOT work
674/// in zshrs's hybrid input model — the outer piped reader pulls from SHIN
675/// via `inputline`, and pushing/popping the `inbuf` stack severs that
676/// continuation. The `LEX_INPUT` window + `strin` flag is the working
677/// equivalent.
678pub(crate) fn parse_isolated(input: &str) -> crate::parse::ZshProgram {
679    use crate::ported::lex::{tok, LEXERR, LEX_INPUT, LEX_LINENO, LEX_POS, LEX_UNGET_BUF};
680
681    crate::ported::context::zcontext_save(); // c:288
682                                             // Save the zshrs-specific lexer window + line counter that lex_init
683                                             // overwrites but zcontext doesn't cover.
684    let saved_input = LEX_INPUT.with_borrow(|s| s.clone());
685    let saved_pos = LEX_POS.get();
686    let saved_unget = LEX_UNGET_BUF.with_borrow(|b| b.clone());
687    let saved_lineno = LEX_LINENO.get(); // c:291 oldlineno
688                                         // input.rs `lexstop` is the input-side half of C's single `lexstop`;
689                                         // draining the nested LEX_INPUT sets it true and zcontext only covers
690                                         // the lex.rs half (LEX_LEXSTOP). Restore it so the outer reader isn't
691                                         // left at EOF.
692    let saved_in_lexstop = crate::ported::input::lexstop.with(|c| c.get());
693
694    crate::ported::hist::strinbeg(0); // c:290 — strin++ → drained nested input EOFs (no SHIN steal)
695    crate::ported::parse::parse_init(input); // install cmd_str as LEX_INPUT (lex_init), LEX_LINENO=1
696    let program = crate::ported::parse::parse(); // c:294 (AST analog of par_list)
697
698    // Capture parse failure BEFORE the restores wipe the signals.
699    let parse_err = (errflag.load(Ordering::Relaxed) & ERRFLAG_ERROR) != 0 || tok() == LEXERR;
700    if tok() == LEXERR && crate::ported::builtin::LASTVAL.load(Ordering::Relaxed) == 0 {
701        crate::ported::builtin::LASTVAL.store(1, Ordering::Relaxed); // c:296-297
702    }
703
704    crate::ported::hist::strinend(); // c:298 — strin--
705                                     // Restore the zshrs window, then the token/parse/history state.
706    LEX_INPUT.with_borrow_mut(|s| *s = saved_input);
707    LEX_POS.set(saved_pos);
708    LEX_UNGET_BUF.with_borrow_mut(|b| *b = saved_unget);
709    LEX_LINENO.set(saved_lineno); // c:295
710    crate::ported::input::lexstop.with(|c| c.set(saved_in_lexstop));
711    crate::ported::context::zcontext_restore(); // c:300
712                                                // zcontext_restore → parse_context_restore clears ERRFLAG_ERROR
713                                                // (parse.c:354); re-raise so callers gating on the bit still see it.
714    if parse_err {
715        errflag.fetch_or(ERRFLAG_ERROR, Ordering::Relaxed);
716    }
717    program
718}
719
720impl ShellExecutor {
721    /// Set a scalar parameter via the canonical `paramtab`
722    /// (`Src/params.c:3350 setsparam`). The single store.
723    pub fn set_scalar(&mut self, name: String, value: String) {
724        setsparam(&name, &value); // c:params.c:3350
725    }
726
727    /// Read positional parameters from canonical `PPARAMS`
728    /// `Mutex<Vec<String>>` (Src/init.c:pparams). The single store.
729    pub fn pparams(&self) -> Vec<String> {
730        crate::ported::builtin::PPARAMS
731            .lock()
732            .map(|p| p.clone())
733            .unwrap_or_default()
734    }
735
736    /// Write positional parameters to canonical `PPARAMS`.
737    pub fn set_pparams(&mut self, params: Vec<String>) {
738        if let Ok(mut p) = crate::ported::builtin::PPARAMS.lock() {
739            *p = params;
740        }
741    }
742
743    /// Read PM_* type flags from the paramtab Param entry. Used by
744    /// SET_VAR / `+=` arms (case-fold, integer-add, readonly guard).
745    /// Returns 0 when the name isn't in paramtab. Mirrors the C
746    /// source's direct `pm->node.flags & PM_INTEGER` checks.
747    pub fn param_flags(&self, name: &str) -> i32 {
748        paramtab()
749            .read()
750            .ok()
751            .and_then(|t| t.get(name).map(|p| p.node.flags))
752            .unwrap_or(0)
753    }
754
755    /// `readonly` / `typeset -r` / read-only-by-design (LINENO, PPID,
756    /// $$, $?, $!, ...) — match user-side rejection in C's
757    /// assignstrvalue at `Src/params.c:2699-2703` which gates on
758    /// `pm->node.flags & PM_READONLY` where the IPDEF4 family declares
759    /// `PM_READONLY_SPECIAL = PM_SPECIAL | PM_READONLY | PM_RO_BY_DESIGN`
760    /// (both bits set together). zshrs's special_params table carries
761    /// PM_RO_BY_DESIGN alone for IPDEF4 entries so internal direct-write
762    /// paths (BUILTIN_SET_LINENO bypasses via pm.u_val) don't trip the
763    /// readonly guard. User-facing checks must accept either bit. Bug
764    /// #418-family / test_lineno_intrinsic_readonly.
765    pub fn is_readonly_param(&self, name: &str) -> bool {
766        let (flags, pm_level) = crate::ported::params::paramtab()
767            .read()
768            .ok()
769            .and_then(|t| t.get(name).map(|p| (p.node.flags as u32, p.level)))
770            .unwrap_or((0, 0));
771        // c:Src/params.c assignsparam — a real PM_READONLY param always
772        // rejects writes.
773        if (flags & PM_READONLY) != 0 {
774            return true;
775        }
776        if (flags & crate::ported::zsh_h::PM_RO_BY_DESIGN) != 0 {
777            // c:Src/Modules/param_private.c pps_setfn (c:300-307) — a
778            // PRIVATE param (PM_RO_BY_DESIGN + PM_REMOVABLE) is NOT blanket
779            // read-only: a write is permitted iff it is in the SAME scope
780            // (`locallevel == pm->level`, e.g. `() { private p=1; p=2 }`
781            // → 2) or above the wrap level (`locallevel >
782            // private_wraplevel`). A deeper nested-scope write is rejected
783            // (setfn_error) — that is how a nested fn writing an OUTER
784            // function's private still errors and aborts. zshrs never
785            // wires the private GSU, so the level gate is enforced here.
786            if (flags & crate::ported::zsh_h::PM_REMOVABLE) != 0 {
787                let ll = crate::ported::params::locallevel.load(Ordering::Relaxed);
788                let wrap = crate::ported::modules::param_private::private_wraplevel
789                    .load(Ordering::Relaxed);
790                return !(ll == pm_level || ll > wrap); // c:304 (negated: blocked)
791            }
792            // Non-removable PM_RO_BY_DESIGN = IPDEF4 special (LINENO/$?/$$…)
793            // whose PM_READONLY bit zshrs strips for internal writes (bug
794            // #297); RO_BY_DESIGN is their only remaining read-only marker.
795            return true;
796        }
797        false
798    }
799
800    /// Most-recent-command exit status. Reads canonical
801    /// `builtin::LASTVAL` AtomicI32 (`Src/builtin.c:6443`).
802    pub fn last_status(&self) -> i32 {
803        crate::ported::builtin::LASTVAL.load(Ordering::Relaxed)
804    }
805
806    /// Write the most-recent-command exit status. The canonical
807    /// store is `builtin::LASTVAL`; this is the single setter.
808    /// Used everywhere `$?` / `%?` / errexit / ZERR trap read.
809    pub fn set_last_status(&mut self, status: i32) {
810        crate::ported::builtin::LASTVAL.store(status, Ordering::Relaxed);
811    }
812
813    /// Set an indexed array parameter via canonical paramtab
814    /// (`setaparam`, `Src/params.c:3595`). The single store.
815    pub fn set_array(&mut self, name: String, value: Vec<String>) {
816        setaparam(&name, value); // c:params.c:3595
817    }
818
819    /// Set an associative array parameter via canonical
820    /// `sethparam` (`Src/params.c:3602`). The single store.
821    pub fn set_assoc(&mut self, name: String, value: IndexMap<String, String>) {
822        let mut flat: Vec<String> = Vec::with_capacity(value.len() * 2);
823        for (k, v) in &value {
824            flat.push(k.clone());
825            flat.push(v.clone());
826        }
827        sethparam(&name, flat); // c:params.c:3602
828    }
829
830    /// Read a scalar parameter. Mirrors C `getsparam` at
831    /// `Src/params.c:3076` — reads through paramtab, falls back to
832    /// special-var hooks and env.
833    pub fn scalar(&self, name: &str) -> Option<String> {
834        getsparam(name)
835    }
836
837    /// Read an array parameter via canonical `getaparam`
838    /// (`Src/params.c:3101`).
839    pub fn array(&self, name: &str) -> Option<Vec<String>> {
840        getaparam(name)
841    }
842
843    /// Read an associative array parameter from canonical
844    /// `paramtab_hashed_storage`. Mirrors C `gethparam` at
845    /// `Src/params.c:3115` — returns the typed `IndexMap`.
846    pub fn assoc(&self, name: &str) -> Option<IndexMap<String, String>> {
847        // c:Src/params.c:570-575 — nameref deref before the read.
848        let resolved = match crate::ported::params::resolve_nameref_name(name, None) {
849            crate::ported::params::nameref_resolution::Target { name: t_, .. } => t_,
850            _ => name.to_string(),
851        };
852        paramtab_hashed_storage()
853            .lock()
854            .ok()
855            .and_then(|m| m.get(resolved.as_str()).cloned())
856    }
857
858    /// Test whether a scalar parameter exists in paramtab.
859    /// Mirrors the C `paramtab->getnode(name) != NULL` check.
860    pub fn has_scalar(&self, name: &str) -> bool {
861        getsparam(name).is_some()
862    }
863
864    /// Test whether an array parameter exists in paramtab. Routes
865    /// through canonical `getaparam` (PM_TYPE check + digit-first-name
866    /// rejection).
867    pub fn has_array(&self, name: &str) -> bool {
868        getaparam(name).is_some()
869    }
870
871    /// Test whether an associative array parameter exists. Reads
872    /// canonical `paramtab_hashed_storage` (Src/params.c hashed
873    /// PM_HASHED slot).
874    pub fn has_assoc(&self, name: &str) -> bool {
875        // c:Src/params.c:570-575 — nameref deref before the read.
876        let resolved = match crate::ported::params::resolve_nameref_name(name, None) {
877            crate::ported::params::nameref_resolution::Target { name: t_, .. } => t_,
878            _ => name.to_string(),
879        };
880        paramtab_hashed_storage()
881            .lock()
882            .ok()
883            .map(|m| m.contains_key(resolved.as_str()))
884            .unwrap_or(false)
885    }
886
887    /// Unset an associative array parameter via canonical
888    /// `unsetparam` (Src/params.c:3819) — PM_READONLY rejection,
889    /// stdunsetfn dispatch, env clear. Also clears the zshrs-side
890    /// `paramtab_hashed_storage` parallel IndexMap shadow.
891    pub fn unset_assoc(&mut self, name: &str) {
892        unsetparam(name);
893        let _ = paramtab_hashed_storage()
894            .lock()
895            .ok()
896            .as_deref_mut()
897            .map(|m| m.remove(name));
898    }
899
900    /// Read a regular (non-global) alias value. Reads canonical
901    /// `aliastab` (Src/hashtable.c:1186). Filters out aliases that
902    /// have the ALIAS_GLOBAL flag set so the regular-alias slot is
903    /// distinct from the global-alias slot, mirroring C's two
904    /// separate dispatch paths via `aliasflags` checks.
905    pub fn alias(&self, name: &str) -> Option<String> {
906        let tab = crate::ported::hashtable::aliastab_lock().read().ok()?;
907        let a = tab.get(name)?;
908        if (a.node.flags & crate::ported::zsh_h::ALIAS_GLOBAL as i32) != 0 {
909            None
910        } else {
911            Some(a.text.clone())
912        }
913    }
914
915    /// Set a regular alias. Writes canonical aliastab with
916    /// ALIAS_GLOBAL bit cleared.
917    pub fn set_alias(&mut self, name: String, value: String) {
918        if let Ok(mut tab) = crate::ported::hashtable::aliastab_lock().write() {
919            tab.add(crate::ported::hashtable::createaliasnode(&name, &value, 0));
920        }
921    }
922
923    /// Set a global alias (`alias -g`). Writes canonical aliastab
924    /// with ALIAS_GLOBAL bit set.
925    pub fn set_global_alias(&mut self, name: String, value: String) {
926        if let Ok(mut tab) = crate::ported::hashtable::aliastab_lock().write() {
927            tab.add(crate::ported::hashtable::createaliasnode(
928                &name,
929                &value,
930                crate::ported::zsh_h::ALIAS_GLOBAL as u32,
931            ));
932        }
933    }
934
935    /// Set a suffix alias (`alias -s ext=cmd`). Writes canonical
936    /// sufaliastab with ALIAS_SUFFIX node flag — mirrors C
937    /// Src/builtin.c:4480-4481 (`flags1 |= ALIAS_SUFFIX; ht =
938    /// sufaliastab;`) → c:4527 (`createaliasnode(value, flags1)`).
939    /// Without ALIAS_SUFFIX in node.flags, `${saliases[k]}` /
940    /// `${(k)saliases}` introspection (parameter.c:1953/2018) fails
941    /// because both paths strict-equality-match flags == ALIAS_SUFFIX.
942    pub fn set_suffix_alias(&mut self, name: String, value: String) {
943        if let Ok(mut tab) = crate::ported::hashtable::sufaliastab_lock().write() {
944            tab.add(crate::ported::hashtable::createaliasnode(
945                &name,
946                &value,
947                crate::ported::zsh_h::ALIAS_SUFFIX as u32,
948            ));
949        }
950    }
951
952    /// Snapshot the alias map as a sorted `Vec<(name, value)>`,
953    /// only entries WITHOUT the ALIAS_GLOBAL flag (regular aliases).
954    pub fn alias_entries(&self) -> Vec<(String, String)> {
955        if let Ok(tab) = crate::ported::hashtable::aliastab_lock().read() {
956            tab.iter_sorted()
957                .into_iter()
958                .filter(|(_, a)| (a.node.flags & crate::ported::zsh_h::ALIAS_GLOBAL as i32) == 0)
959                .map(|(k, a)| (k.clone(), a.text.clone()))
960                .collect()
961        } else {
962            Vec::new()
963        }
964    }
965
966    /// Snapshot the global-alias entries (ALIAS_GLOBAL flag set).
967    pub fn global_alias_entries(&self) -> Vec<(String, String)> {
968        if let Ok(tab) = crate::ported::hashtable::aliastab_lock().read() {
969            tab.iter_sorted()
970                .into_iter()
971                .filter(|(_, a)| (a.node.flags & crate::ported::zsh_h::ALIAS_GLOBAL as i32) != 0)
972                .map(|(k, a)| (k.clone(), a.text.clone()))
973                .collect()
974        } else {
975            Vec::new()
976        }
977    }
978
979    /// Snapshot the suffix-alias entries.
980    pub fn suffix_alias_entries(&self) -> Vec<(String, String)> {
981        if let Ok(tab) = crate::ported::hashtable::sufaliastab_lock().read() {
982            tab.iter_sorted()
983                .into_iter()
984                .map(|(k, a)| (k.clone(), a.text.clone()))
985                .collect()
986        } else {
987            Vec::new()
988        }
989    }
990
991    /// Unset an array parameter. Direct port of `unsetparam_pm` for
992    /// a PM_ARRAY Param. Mirrors are kept for now while the field
993    /// transitions.
994    /// Unset an array parameter via canonical `unsetparam`
995    /// (Src/params.c:3819). Routes through the C-faithful port
996    /// that runs PM_NAMEREF skip + PM_READONLY rejection via
997    /// unsetparam_pm + stdunsetfn dispatch + pm.old scope restore.
998    /// Inline `tab.remove(name)` skipped all four.
999    pub fn unset_array(&mut self, name: &str) {
1000        unsetparam(name);
1001    }
1002
1003    /// Unset a scalar parameter via canonical `unsetparam`. Same
1004    /// C-faithful path as `unset_array`; the C `unsetparam` itself
1005    /// is type-agnostic and dispatches through PM_TYPE inside.
1006    pub fn unset_scalar(&mut self, name: &str) {
1007        unsetparam(name);
1008    }
1009    /// `new` — see implementation.
1010    pub fn new() -> Self {
1011        tracing::debug!("ShellExecutor::new() initializing");
1012
1013        // c:Src/init.c:1236-1259 — setupvals' pwd/oldpwd init, ported
1014        // here because the bin entry skips setupvals (see the
1015        // init_bltinmods note below). The validated value lands in the
1016        // live OS env: the bin entry's `$PWD` carrier (the analog of
1017        // C's `pwd` global — see the subshell-snapshot comment at
1018        // fusevm_bridge.rs `cwd:` field). set_pwd_env() pours it into
1019        // paramtab after the env-import loop, same order as C
1020        // (params.c:955).
1021        //
1022        // c:1242-1245 — "Try a cheap test to see if we can initialize
1023        // `PWD' from `HOME'." EMULATE_ZSH reads the `home` global,
1024        // which setupvals derives from getpwuid(getuid())->pw_dir
1025        // (c:1222-1225), falling back to "/" (c:1230-1232).
1026        let home = unsafe {
1027            let pw = libc::getpwuid(libc::getuid());
1028            if pw.is_null() {
1029                None
1030            } else {
1031                Some(
1032                    std::ffi::CStr::from_ptr((*pw).pw_dir)
1033                        .to_string_lossy()
1034                        .into_owned(),
1035                )
1036            }
1037        }
1038        .unwrap_or_else(|| "/".to_string()); // c:1230-1232 EMULATE_ZSH home = "/"
1039                                             // ispwd (src/zsh/Src/utils.c:809-829): a candidate is honored
1040                                             // only when it (a) is absolute, (b) stat's to the same
1041                                             // dev+inode as ".", and (c) has no `.`/`..` components.
1042                                             // Without this chain, a child that inherits $PWD from a parent
1043                                             // run in a different directory (cargo test setting
1044                                             // current_dir(tempdir) while leaking PWD=/project/root) treats
1045                                             // the stale PWD as the logical-path base, so `cd sub` resolves
1046                                             // against the wrong directory.
1047        let pwd_val = if ispwd(&home) {
1048            home // c:1245-1246 — pwd = ztrdup(ptr) [HOME]
1049        } else if let Some(p) = env::var("PWD")
1050            .ok()
1051            .filter(|p| p.len() < libc::PATH_MAX as usize && ispwd(p))
1052        {
1053            p // c:1247-1249 — pwd = ztrdup(getenv("PWD"))
1054        } else {
1055            crate::ported::compat::zgetcwd() // c:1250-1252 — pwd = zgetcwd()
1056        };
1057        env::set_var("PWD", &pwd_val);
1058        // c:1255-1259 — oldpwd = getenv("OLDPWD") ?: ztrdup(pwd).
1059        if env::var("OLDPWD").is_err() {
1060            env::set_var("OLDPWD", &pwd_val); // c:1257
1061        }
1062
1063        // Initialize fpath from FPATH env var or use defaults
1064        let fpath = env::var("FPATH")
1065            .unwrap_or_default()
1066            .split(':')
1067            .filter(|s| !s.is_empty())
1068            .map(PathBuf::from)
1069            .collect();
1070
1071        let history = HistoryEngine::new().ok();
1072
1073        // Seed canonical OPTS_LIVE with defaults BEFORE any setsparam
1074        // call. assignstrvalue early-returns when `unset(EXECOPT)`
1075        // (c:2701 guard); without the option table populated, EXECOPT
1076        // reads false and every paramtab write below is a silent no-op.
1077        if opt_state_len() == 0 {
1078            for (k, v) in Self::default_options() {
1079                opt_state_set(&k, v);
1080            }
1081        }
1082
1083        // Standard zsh scalar param defaults — direct port of
1084        // `createparamtable` (Src/params.c:817-988) + the `setupvals`
1085        // tail. Writes through canonical `setsparam` (Src/params.c:3350).
1086        //
1087        // c:params.c:972-973 — ZSH_VERSION / ZSH_PATCHLEVEL.
1088        // `zsh_version::ZSH_VERSION` (emitted by build.rs from the
1089        // vendored `Config/version.mk`) is the development snapshot
1090        // tag `5.9.0.3-test`; shipped zsh binaries report the clean
1091        // release form (`5.9`). Bug #73 in docs/BUGS.md — cross-shell
1092        // scripts that gate on `[[ $ZSH_VERSION = 5.9 ]]` or split on
1093        // `.` expecting MAJOR.MINOR break on the `-test` suffix.
1094        //
1095        // Use the cleaned `patchlevel::ZSH_VERSION` here ("5.9") and
1096        // surface the full snapshot tag as `$ZSHRS_VERSION` for
1097        // zshrs-specific identity checks.
1098        setsparam("ZSH_VERSION", crate::ported::patchlevel::ZSH_VERSION);
1099        // c:Src/params.c:43 + Src/patchlevel.h — `ZSH_PATCHLEVEL` is
1100        // a git-describe-style identifier (`zsh-MAJOR.MINOR-N-gHASH`)
1101        // of the upstream commit zshrs targets. `build.rs` emits
1102        // "unknown" because the vendored zsh tarball doesn't ship a
1103        // CUSTOM_PATCHLEVEL define; use the canonical const in
1104        // `patchlevel.rs` instead (snapshot of `src/zsh/Src/patchlevel.h`).
1105        // Bug #90 in docs/BUGS.md — scripts that fingerprint by
1106        // $ZSH_PATCHLEVEL fell to the wildcard arm under "unknown".
1107        setsparam("ZSH_PATCHLEVEL", crate::ported::patchlevel::ZSH_PATCHLEVEL);
1108        // Skip ZSHRS_VERSION in `--zsh` parity mode so `${(k)parameters}`
1109        // doesn't carry a name zsh doesn't ship — matches the guard
1110        // in `ported::params::createparamtable`. Scripts running under
1111        // `--zsh` mode can still detect zshrs via `$ZSH_VERSION` which
1112        // carries a `-test` suffix.
1113        if !crate::IS_ZSH_MODE.load(std::sync::atomic::Ordering::Relaxed) {
1114            setsparam("ZSHRS_VERSION", crate::ported::patchlevel::ZSHRS_VERSION);
1115        }
1116        setsparam("ZSH_NAME", "zsh");
1117        // c:params.c:971 — ZSH_ARGZERO from `posixzero` (Src/init.c:271):
1118        // the kernel-supplied argv[0] of THIS binary, in --zsh parity
1119        // mode too. The bin entrypoint overrides this with the script
1120        // path for -c / runscript invocations. (A previous revision
1121        // probed the system zsh install path and reported THAT as
1122        // ZSH_ARGZERO for byte-parity — faking the shell's identity.
1123        // Parity tests that compare the value must normalize the
1124        // machine-specific binary path in the test row instead.)
1125        let argzero_default = env::args().next().unwrap_or_else(|| "zsh".to_string());
1126        setsparam("ZSH_ARGZERO", &argzero_default);
1127        setsparam("WORDCHARS", "*?_-.[]~=/&;!#$%^(){}<>");
1128        // SHLVL is NOT seeded here. c:Src/params.c:948-951 increments it
1129        // AFTER the environ-import loop, so the +1 lives at the end of that
1130        // loop below — see the `c:948-951` block. Doing it here instead meant
1131        // parsing the raw env string with `parse::<i32>()`, which mis-read
1132        // every non-decimal form C accepts via zstrtol_underscore
1133        // (SHLVL=0x10 must give 17, 010 → 9, 1_0 → 11, 9abc → 10, abc → 1).
1134        // POSIX/zsh default IFS: space + tab + newline + NUL.
1135        setsparam("IFS", " \t\n\0");
1136        // POSIX getopts: OPTIND starts at 1.
1137        setsparam("OPTIND", "1");
1138        // Note: OPTERR is NOT pre-initialised. zsh leaves it unset
1139        // even after `getopts` calls (verified: `getopts ":a" opt -a`
1140        // does not set it). It's a user-writable variable that
1141        // starts unset. Bug #150 in docs/BUGS.md.
1142        // zsh wipes inherited `$_` (unlike bash).
1143        setsparam("_", "");
1144        // c:params.c:5064 — histchars derives from bangchar+hatchar+
1145        // hashchar (defaults `!`, `^`, `#`). At init the special
1146        // entry may not exist yet — fall back to the literal default.
1147        let histchars_val = paramtab()
1148            .read()
1149            .ok()
1150            .and_then(|t| {
1151                t.get("histchars")
1152                    .or_else(|| t.get("HISTCHARS"))
1153                    .map(|pm| histcharsgetfn(pm))
1154            })
1155            .unwrap_or_else(|| "!^#".to_string());
1156        setsparam("histchars", &histchars_val);
1157
1158        // c:Src/params.c:870-871 — `setsparam("TIMEFMT", ...)` etc.
1159        // Seed TIMEFMT explicitly so `${(k)parameters}` lists it
1160        // (the createparamtable() ported in ported::params isn't
1161        // invoked from this bin entry — its setsparam calls don't
1162        // run, so TIMEFMT only existed via the lookup_special_var
1163        // fallback, which scanpmparameters can't see).
1164        setsparam("TIMEFMT", crate::ported::zsh_system_h::DEFAULT_TIMEFMT);
1165        // c:Src/init.c:1214-1215 — `nullcmd = ztrdup("cat");
1166        // readnullcmd = ztrdup(DEFAULT_READNULLCMD);`. Real paramtab
1167        // seeds (NOT read-time fallbacks) so `unset NULLCMD` truly
1168        // unsets — the bare-redirect "redirection with no command"
1169        // diagnostic depends on getsparam returning None afterwards.
1170        // c:config.h:48 DEFAULT_READNULLCMD "more" — the parity
1171        // floor agrees: scrubbed-env Homebrew zsh 5.9.1 -fc reports
1172        // READNULLCMD=more (probed; the previous macOS arm's "less"
1173        // guess came from the USER's env exporting READNULLCMD=less
1174        // — zpwr sets it). This block runs AFTER the env import, so
1175        // these are DEFAULT seeds only: an env-imported value must
1176        // win (C seeds before the import loop, c:854-885 vs c:893+).
1177        if getsparam("NULLCMD").map_or(true, |v| v.is_empty()) {
1178            setsparam("NULLCMD", "cat");
1179        }
1180        if getsparam("READNULLCMD").map_or(true, |v| v.is_empty()) {
1181            setsparam("READNULLCMD", crate::ported::config_h::DEFAULT_READNULLCMD);
1182        }
1183        // c:Src/init.c:963 — `setsparam("TTY", ttyname(0) ?: "")`.
1184        // Even in non-interactive -fc mode zsh creates the param;
1185        // mirror so ${(k)parameters} count matches.
1186        let tty_str = unsafe {
1187            let p = libc::ttyname(0);
1188            if p.is_null() {
1189                String::new()
1190            } else {
1191                std::ffi::CStr::from_ptr(p)
1192                    .to_str()
1193                    .unwrap_or("")
1194                    .to_string()
1195            }
1196        };
1197        setsparam("TTY", &tty_str);
1198        // c:Src/params.c:968-979 — `setaparam("signals", ...)`.
1199        // Build the signal-name array. Mirror by inserting directly
1200        // into paramtab so ${(k)parameters} sees it.
1201        {
1202            use crate::ported::signals_h::SIGS;
1203            // c:signames.c sigs[] (generated) — index 0 is "EXIT",
1204            // entries 1..=SIGCOUNT are in PLATFORM SIGNAL-NUMBER
1205            // order, tail is "ZERR", "DEBUG" (zsh.h SIGZERR/SIGDEBUG).
1206            // SIGS is declared in Linux textual order, so sort by the
1207            // libc number to reproduce the generated table's order on
1208            // every platform. Same construction as params.rs — keep
1209            // in sync.
1210            let mut by_num: Vec<(&str, i32)> = SIGS.to_vec();
1211            by_num.sort_by_key(|&(_, n)| n);
1212            let mut signals_arr: Vec<String> = Vec::with_capacity(by_num.len() + 3);
1213            signals_arr.push("EXIT".to_string()); // c:sigs[0]
1214            signals_arr.extend(by_num.iter().map(|(n, _)| n.to_string()));
1215            signals_arr.push("ZERR".to_string()); // c:sigs tail
1216            signals_arr.push("DEBUG".to_string()); // c:sigs tail
1217            crate::ported::params::setaparam("signals", signals_arr);
1218        }
1219        // c:Src/init.c:1186-1193 — default prompt strings. zsh sets
1220        // PS4 to "+%N:%i> " for ZSH emulation ("+ " for KSH/SH).
1221        // Without seeding, PS4 reads empty and `set -x` output has
1222        // no prefix at all. Bug #92 in docs/BUGS.md.
1223        //
1224        // C zsh runs createparamtable's env-import loop (c:893-924)
1225        // BEFORE init.c:1186 fires, so an exported $PS4 in the parent
1226        // env wins over the default seed. zshrs's env import happens
1227        // further down in ShellExecutor::new() (at the createparamtable
1228        // call site), so getsparam() reads None here even when env has
1229        // a value, and the default would clobber the user's PS4.
1230        //
1231        // Additional wrinkle: C zsh's PROMPT / PROMPT2 / PROMPT3 /
1232        // PROMPT4 params are ALIASES for PS1..PS4 (Src/params.c:381,
1233        // 415-421 — both IPDEF7R entries bind to the same `prompt*`
1234        // global). So `export PROMPT4=...` in the parent env sets the
1235        // shared global, and `$PS4` reads the same string. The user's
1236        // interactive shell exports PROMPT4 (the form zsh's prompt
1237        // theme system uses), so when zshrs -x runs, PROMPT4 is in
1238        // env but PS4 is not. Without aliasing in the env-probe step,
1239        // zshrs seeds default PS4 and ignores the user's customised
1240        // prefix.
1241        //
1242        // Probe env::var directly for the name AND its alias; first
1243        // non-empty wins. Only fall through to the default seed when
1244        // every candidate is empty. Mirrors C zsh's behavior without
1245        // reshuffling the rest of new(). Bug: `zshrs -x` ignored the
1246        // user's custom PS4/PROMPT4 unless re-forwarded with
1247        // `PS4=$PROMPT4 zshrs -x`.
1248        let seed_prompt = |name: &str, alias: Option<&str>, default: &str| {
1249            let cur = crate::ported::params::getsparam(name);
1250            let have_param = cur.as_deref().map_or(false, |s| !s.is_empty());
1251            if have_param {
1252                return;
1253            }
1254            // Probe primary name first, then the C-side alias.
1255            for candidate in std::iter::once(name).chain(alias.into_iter()) {
1256                if let Ok(env_val) = std::env::var(candidate) {
1257                    if !env_val.is_empty() {
1258                        setsparam(name, &env_val);
1259                        return;
1260                    }
1261                }
1262            }
1263            setsparam(name, default);
1264        };
1265        seed_prompt("PS4", Some("PROMPT4"), "+%N:%i> ");
1266        // c:Src/init.c:1181-1190 —
1267        //     if(unset(INTERACTIVE)) {
1268        //         prompt = ztrdup("");
1269        //         prompt2 = ztrdup("");
1270        //     } else ... {
1271        //         prompt  = ztrdup("%m%# ");
1272        //         prompt2 = ztrdup("%_> ");
1273        //     }
1274        // Non-interactive shells get EMPTY primary/secondary prompts
1275        // — `zsh -fc 'typeset'` lists PS1='' — while interactive ones
1276        // get the %m%# defaults. PS3/PS4/SPROMPT are seeded
1277        // unconditionally in C (c:1191-1194). PS1 may be reset by the
1278        // prompt-theme layer; only seed when the slot is empty so any
1279        // prior theme write wins.
1280        let interactive = crate::ported::zsh_h::isset(crate::ported::zsh_h::INTERACTIVE);
1281        seed_prompt(
1282            "PS1",
1283            Some("PROMPT"),
1284            if interactive { "%m%# " } else { "" },
1285        );
1286        seed_prompt(
1287            "PS2",
1288            Some("PROMPT2"),
1289            if interactive { "%_> " } else { "" },
1290        );
1291        // c:Src/init.c:1191 — `prompt3 = ztrdup("?# ");`
1292        seed_prompt("PS3", Some("PROMPT3"), "?# ");
1293        // c:Src/init.c:1194 — `sprompt = ztrdup("zsh: correct '%R'
1294        // to '%r' [nyae]? ");` — spelling-correction prompt.
1295        seed_prompt("SPROMPT", None, "zsh: correct '%R' to '%r' [nyae]? ");
1296        // c:Src/params.c:417-422 — `PROMPT*` aliases for `PS*`.
1297        // C zsh's IPDEF7("PROMPT", &prompt), IPDEF7("PROMPT2",
1298        // &prompt2), IPDEF7("PROMPT3", &prompt3), IPDEF7("PROMPT4",
1299        // &prompt4) all point to the same C globals as the matching
1300        // IPDEF7("PS{1..4}", ...) entries — they're aliases in C,
1301        // sharing storage. zshrs's paramtab keeps them as separate
1302        // entries; mirror the alias by mirroring the value here.
1303        // Bug #274 in docs/BUGS.md (PROMPT3 was the visible report;
1304        // PROMPT/PROMPT2/PROMPT4 had the same gap silently).
1305        for (alias, source) in &[
1306            ("PROMPT", "PS1"),
1307            ("PROMPT2", "PS2"),
1308            ("PROMPT3", "PS3"),
1309            ("PROMPT4", "PS4"),
1310        ] {
1311            if crate::ported::params::getsparam(alias).map_or(true, |s| s.is_empty()) {
1312                if let Some(v) = crate::ported::params::getsparam(source) {
1313                    setsparam(alias, &v);
1314                }
1315            }
1316        }
1317        // c:params.c:858-860 — standard non-special param defaults.
1318        // C uses `setiparam(...)` (PM_INTEGER) for these so
1319        // `(t)MAILCHECK` etc. report `integer`. zshrs previously
1320        // routed through `setsparam` (PM_SCALAR) — the value worked
1321        // but the type bit was wrong, breaking
1322        // `case "${(t)LISTMAX}" in *integer*)` and any path that
1323        // gates on arithmetic-typed semantics. Bug #268 in
1324        // docs/BUGS.md.
1325        crate::ported::params::setiparam("MAILCHECK", 60); // c:858
1326                                                           // c:Src/params.c:859 — original `KEYTIMEOUT = 40` but
1327                                                           // zsh 5.9.1 observably reports 10 (Homebrew arm-darwin).
1328                                                           // Match the observed default so vi-mode / multi-key
1329                                                           // bindings feel responsive. Bug #321 in docs/BUGS.md.
1330        crate::ported::params::setiparam("KEYTIMEOUT", 10); // c:859
1331        crate::ported::params::setiparam("LISTMAX", 100); // c:860
1332                                                          // c:config.h:1004 — MAX_FUNCTION_DEPTH=500. Advisory cap;
1333                                                          // dispatch_function_call enforces against this.
1334        crate::ported::params::setiparam("FUNCNEST", 500);
1335
1336        // Run setlocale(LC_ALL, "") so nl_langinfo() (used by the
1337        // `langinfo` module) returns the host's actual locale instead
1338        // of the C/POSIX default ("US-ASCII"). Direct port of zsh's
1339        // Src/init.c:1208 setlocale call. unsafe { } around libc is
1340        // standard for this exact use-case — setlocale is process-
1341        // global and must run once at startup.
1342        unsafe {
1343            libc::setlocale(libc::LC_ALL, c"".as_ptr());
1344        }
1345
1346        // c:hashtable.c:1206 createaliastables() — seeds aliastab with
1347        // the `run-help` / `which-command` defaults. Run once at shell
1348        // init so the canonical port owns the default-alias set; the
1349        // Executor's `aliases` HashMap then mirrors aliastab.
1350        crate::ported::hashtable::createaliastables();
1351        // Build the initial $path tied array as a local — fans out
1352        // to paramtab below; no ShellExecutor mirror anymore.
1353        let mut arrays: HashMap<String, Vec<String>> = HashMap::new();
1354        let path_dirs: Vec<String> = env::var("PATH")
1355            .unwrap_or_default()
1356            .split(':')
1357            .map(|s| s.to_string())
1358            .collect();
1359        arrays.insert("path".to_string(), path_dirs);
1360        let mut exec = Self {
1361            // c:Src/init.c:479 — `-c` mode: scriptname = scriptfilename
1362            // = ztrdup("zsh"). Both start at the literal "zsh".
1363            // dispatch_function_call overrides scriptname per c:5903;
1364            // scriptfilename stays at the outer file.
1365            scriptname: Some("zsh".to_string()),
1366            scriptfilename: Some("zsh".to_string()),
1367            subshell_snapshots: Vec::new(),
1368            inline_env_stack: Vec::new(),
1369            current_command_glob_failed: std::cell::Cell::new(false),
1370            jobs: JobTable::new(),
1371            fpath,
1372            history,
1373            completions: HashMap::new(),
1374            process_sub_counter: 0,
1375            zstyles: Vec::new(),
1376            local_scope_depth: 0,
1377            pending_underscore: None,
1378            in_dq_context: 0,
1379            in_scalar_assign: 0,
1380            profiling_enabled: false,
1381            compsys_cache: {
1382                let cache_path = crate::compsys::cache::default_cache_path();
1383                if cache_path.exists() {
1384                    let db_size = fs::metadata(&cache_path).map(|m| m.len()).unwrap_or(0);
1385                    match CompsysCache::open(&cache_path) {
1386                        Ok(c) => {
1387                            tracing::info!(
1388                                db_bytes = db_size,
1389                                path = %cache_path.display(),
1390                                "compsys: sqlite mirror opened (dbview/SQL inspection only; rkyv shards are the authoritative cache)"
1391                            );
1392                            Some(c)
1393                        }
1394                        Err(e) => {
1395                            tracing::warn!(error = %e, "compsys: failed to open cache");
1396                            None
1397                        }
1398                    }
1399                } else {
1400                    tracing::debug!("compsys: no cache at {}", cache_path.display());
1401                    None
1402                }
1403            },
1404            compinit_pending: None, // (receiver, start_time)
1405            plugin_cache: {
1406                let pc_path = crate::plugin_cache::default_cache_path();
1407                if let Some(parent) = pc_path.parent() {
1408                    let _ = fs::create_dir_all(parent);
1409                }
1410                match crate::plugin_cache::PluginCache::open(&pc_path) {
1411                    Ok(pc) => {
1412                        let (plugins, functions) = pc.stats();
1413                        tracing::info!(
1414                            plugins,
1415                            cached_functions = functions,
1416                            path = %pc_path.display(),
1417                            "plugin_cache: sqlite opened"
1418                        );
1419                        Some(pc)
1420                    }
1421                    Err(e) => {
1422                        tracing::warn!(error = %e, "plugin_cache: failed to open");
1423                        None
1424                    }
1425                }
1426            },
1427            deferred_compdefs: Vec::new(),
1428            returning: None,
1429            zsh_compat: false,
1430            bash_compat: false,
1431            posix_mode: false,
1432            worker_pool: {
1433                let config = crate::config::load();
1434                let pool_size = crate::config::resolve_pool_size(&config.worker_pool);
1435                std::sync::Arc::new(crate::worker::WorkerPool::new(pool_size))
1436            },
1437            intercepts: Vec::new(),
1438            async_jobs: HashMap::new(),
1439            next_async_id: 1,
1440            redirect_scope_stack: Vec::new(),
1441            multios_scope_stack: Vec::new(),
1442            exec_redirs_permanent: false,
1443            pipe_output_pending: false,
1444            pipe_output_scope: None,
1445            redirect_failed: false,
1446            functions_compiled: HashMap::new(),
1447            function_source: HashMap::new(),
1448            function_line_base: HashMap::new(),
1449            function_def_file: HashMap::new(),
1450            prompt_funcstack: Vec::new(),
1451            tied_array_to_scalar: HashMap::new(),
1452            ztest_pass_count: std::sync::atomic::AtomicUsize::new(0),
1453            ztest_fail_count: std::sync::atomic::AtomicUsize::new(0),
1454            ztest_skip_count: std::sync::atomic::AtomicUsize::new(0),
1455            ztest_pass_total: std::sync::atomic::AtomicUsize::new(0),
1456            ztest_fail_total: std::sync::atomic::AtomicUsize::new(0),
1457            ztest_skip_total: std::sync::atomic::AtomicUsize::new(0),
1458            ztest_run_failed: std::sync::atomic::AtomicBool::new(false),
1459            ztest_suppress_stdout: false,
1460        };
1461        // Mirror env-derived path arrays into the `arrays` table so
1462        // user-level `fpath` / `path` array reads see the inherited
1463        // entries. zsh: `fpath+=…` should append to the inherited
1464        // 43-entry array, not replace it. Same for `path` (PATH).
1465        let fpath_arr: Vec<String> = exec
1466            .fpath
1467            .iter()
1468            .map(|p| p.to_string_lossy().to_string())
1469            .collect();
1470        if !fpath_arr.is_empty() {
1471            exec.set_array("fpath".to_string(), fpath_arr);
1472        }
1473        if let Ok(path) = env::var("PATH") {
1474            let path_arr: Vec<String> = path
1475                .split(':')
1476                .filter(|s| !s.is_empty())
1477                .map(String::from)
1478                .collect();
1479            if !path_arr.is_empty() {
1480                exec.set_array("path".to_string(), path_arr);
1481            }
1482        }
1483        // Register the standard tied path-family pairs so `path+=` /
1484        // `fpath+=` / etc. mirror through the array→scalar sync hook
1485        // in BUILTIN_APPEND_ARRAY (and the SET_ARRAY tied path).
1486        // Direct port of the implicit ties that zsh wires up at
1487        // startup for PATH/path, FPATH/fpath, etc. Source-of-truth
1488        // for the pairs is Src/init.c's `setupvals()` PM_TIED entries.
1489        // c:Src/params.c:395-422 IPDEF8 — full PM_TIED colonarr list:
1490        // CDPATH, FIGNORE, FPATH, MAILPATH, PATH, PSVAR, MODULE_PATH,
1491        // MANPATH (ZSH_EVAL_CONTEXT is readonly-special, excluded).
1492        for (scalar, arr) in [
1493            ("PATH", "path"),
1494            ("FPATH", "fpath"),
1495            ("MANPATH", "manpath"),
1496            ("CDPATH", "cdpath"),
1497            ("MODULE_PATH", "module_path"),
1498            ("PSVAR", "psvar"),
1499            ("FIGNORE", "fignore"),
1500            ("MAILPATH", "mailpath"),
1501        ] {
1502            exec.tied_array_to_scalar
1503                .insert(arr.to_string(), (scalar.to_string(), ":".to_string()));
1504        }
1505
1506        // Pour `path` (from env PATH split) into paramtab before the
1507        // special_paramdef stamping loop below so the canonical tied
1508        // entry exists when PM_SPECIAL bits are applied.
1509        for (k, v) in &arrays {
1510            setaparam(k, v.clone()); // c:params.c:3595
1511        }
1512        // c:Src/params.c:384-394 — IPDEF8/IPDEF9 macros stamp
1513        // `PM_SCALAR|PM_SPECIAL` (IPDEF8 for `PATH`/`FPATH`/etc.) and
1514        // `PM_ARRAY|PM_SPECIAL|PM_DONTIMPORT` (IPDEF9 for `path`/
1515        // `fpath`/etc.) on every entry in the createparamtable table.
1516        // setsparam/setaparam above create plain PM_SCALAR/PM_ARRAY
1517        // entries; this loop applies the PM_SPECIAL + PM_TIED bits
1518        // (plus the IPDEF9 PM_DONTIMPORT bit on the array side) so
1519        // `${(t)PATH}` reads `scalar-tied-export-special` and
1520        // `${(t)path}` reads `array-tied-special`.
1521        //
1522        // Walks the `special_params` table (params.rs:464+) which is
1523        // the Rust port of the C IPDEF list. For each entry: OR the
1524        // declared pm_flags onto the existing paramtab entry. The
1525        // tied-pair entries (PM_TIED) also need PM_SPECIAL OR'd in
1526        // since the IPDEF8/IPDEF9 macros add PM_SPECIAL implicitly;
1527        // the table declares only the per-entry-distinct flags.
1528        {
1529            use crate::ported::params::{paramtab, special_params};
1530            use crate::ported::zsh_h::{PM_ARRAY, PM_DONTIMPORT, PM_SCALAR, PM_SPECIAL, PM_TIED};
1531            if let Ok(mut tab) = paramtab().write() {
1532                // Stamp PM_SPECIAL onto every entry the special_params
1533                // table declares. For tied scalars (PATH/FPATH/etc),
1534                // also walks `tied_name` to apply IPDEF9-flag bits
1535                // (PM_ARRAY|PM_SPECIAL|PM_DONTIMPORT|PM_TIED) onto the
1536                // partner array entry (path/fpath/etc) — those array
1537                // names aren't in the special_params table directly
1538                // but C zsh's createparamtable emits IPDEF9 rows for
1539                // them at Src/params.c:425-432.
1540                use crate::ported::zsh_h::{hashnode, param, PM_DONTIMPORT as PM_DI, PM_UNSET};
1541                for entry in special_params.iter() {
1542                    // c:384/394 IPDEF8/9 — `D|PM_SCALAR|PM_SPECIAL` or
1543                    // `D|PM_ARRAY|PM_SPECIAL|PM_DONTIMPORT`.
1544                    //
1545                    // Mask `entry.pm_flags` to ONLY the attribute bits
1546                    // safe to OR onto an existing Param without changing
1547                    // assignment semantics. PM_READONLY is excluded
1548                    // here because many internal-runtime writes go
1549                    // through setsparam (subshell ZSH_SUBSHELL bump,
1550                    // ZSH_EVAL_CONTEXT push, etc.) and would be
1551                    // rejected by assignstrvalue's PM_READONLY guard.
1552                    // C zsh's PM_SPECIAL GSU setfn bypasses the guard;
1553                    // the Rust port lacks that vtable wiring, so keep
1554                    // the entries writable.
1555                    //
1556                    // PM_UNSET is included: lookup_special_var arms for
1557                    // TRY_BLOCK_ERROR / TRY_BLOCK_INTERRUPT (and other
1558                    // PM_UNSET entries with sentinel defaults) check
1559                    // this bit to decide between "stored value" vs
1560                    // "uninitialized → return -1 sentinel". The flag
1561                    // gets cleared by assignstrvalue at c:3660 on any
1562                    // write, so it correctly tracks "ever assigned".
1563                    // Bug #143 in docs/BUGS.md.
1564                    let safe_pm_flags = entry.pm_flags & (PM_TIED | PM_DI | PM_UNSET);
1565                    // c:Src/params.c — IPDEF macros set PM_TYPE bits
1566                    // (PM_INTEGER for IPDEF5/6, PM_ARRAY for IPDEF9,
1567                    // PM_HASHED for IPDEF-hash) along with PM_SPECIAL.
1568                    // zshrs's previous init only ORed PM_SPECIAL +
1569                    // tied/di/unset/readonly — never the type bit. If
1570                    // setsparam ran BEFORE init_partab_params (it does
1571                    // for OPTIND/SHLVL at vm_helper.rs:874/878), the
1572                    // param entry stayed PM_SCALAR and `typeset -p
1573                    // OPTIND` emitted `typeset OPTIND=1` instead of
1574                    // zsh's `typeset -i10 OPTIND=1`. OR the pm_type
1575                    // into the bits so the type attribute lands.
1576                    let mut bits = safe_pm_flags | PM_SPECIAL | entry.pm_type;
1577                    // c:Src/params.c — IPDEF4/IPDEF1 set
1578                    // PM_READONLY_SPECIAL = PM_SPECIAL | PM_READONLY |
1579                    // PM_RO_BY_DESIGN. zshrs masks PM_READONLY out
1580                    // (see above) but the introspection bit can still
1581                    // ride along. Replace dropped PM_READONLY with
1582                    // PM_RO_BY_DESIGN so `typeset -r` recognises these
1583                    // entries as logically-readonly without blocking
1584                    // internal writes. The listing filter in
1585                    // `bin_typeset` expands its PM_READONLY match to
1586                    // also pick up PM_RO_BY_DESIGN. Bug #97 in
1587                    // docs/BUGS.md.
1588                    if (entry.pm_flags & crate::ported::zsh_h::PM_READONLY) != 0 {
1589                        bits |= crate::ported::zsh_h::PM_RO_BY_DESIGN;
1590                    }
1591                    if entry.pm_type == PM_ARRAY {
1592                        bits |= PM_DI;
1593                    }
1594                    let _ = PM_SCALAR;
1595                    let _ = PM_DONTIMPORT;
1596                    if let Some(pm) = tab.get_mut(entry.name) {
1597                        let was_integer =
1598                            (pm.node.flags as u32 & crate::ported::zsh_h::PM_INTEGER) != 0;
1599                        pm.node.flags |= bits as i32;
1600                        // c:Src/params.c:344 IPDEF4 / c:353 IPDEF5 — the
1601                        // C struct literal initialises the `base` field
1602                        // to 10 for every PM_INTEGER special. zshrs's
1603                        // initial paramtab seeding doesn't carry that
1604                        // through (the special_paramdef table has no
1605                        // `base` field). Set the default here so
1606                        // `printparamnode`'s PMTF_USE_BASE arm at
1607                        // params.rs:9341 emits "10" between
1608                        // `integer` and the name (`integer 10 readonly
1609                        // !=0`). Bug #297 in docs/BUGS.md.
1610                        if entry.pm_type == crate::ported::zsh_h::PM_INTEGER && pm.base == 0 {
1611                            pm.base = 10;
1612                        }
1613                        // When OR-ing PM_INTEGER onto a param that
1614                        // was previously PM_SCALAR (i.e. setsparam ran
1615                        // BEFORE init_partab_params, storing the value
1616                        // in u_str), parse the u_str into u_val so the
1617                        // integer getter reads the correct value. C
1618                        // zsh's setsparam-equivalent path detects the
1619                        // pm's PM_TYPE first and routes through
1620                        // intsetfn, but zshrs's setsparam at the bin
1621                        // entry point predates init_partab_params, so
1622                        // it lands as PM_SCALAR storage that the
1623                        // type-flip needs to migrate.
1624                        if !was_integer
1625                            && entry.pm_type == crate::ported::zsh_h::PM_INTEGER
1626                            && pm.u_val == 0
1627                        {
1628                            if let Some(ref s) = pm.u_str {
1629                                pm.u_val = s.parse::<i64>().unwrap_or(0);
1630                                pm.u_str = None;
1631                            }
1632                        }
1633                        // c:Src/zsh.h IPDEF8/IPDEF9 — the third macro
1634                        // arg is the tied partner name; mapped into
1635                        // `pm->ename` so `typeset -p` can find the
1636                        // peer for the PM_TIED swap. Bug #410.
1637                        if let Some(peer) = entry.tied_name {
1638                            pm.ename = Some(peer.to_string());
1639                        }
1640                    } else {
1641                        // Param hasn't been created yet (e.g. PATH gets
1642                        // imported lazily via the env fallback in
1643                        // getsparam at params.rs:4104; array specials
1644                        // like `pipestatus` / `funcstack` / `dirstack`
1645                        // / `zsh_scheduled_events` aren't pre-populated).
1646                        // Seed an empty placeholder carrying the
1647                        // canonical flag set so subsequent setsparam /
1648                        // `(t)X` / `${+X}` observers see the IPDEF
1649                        // attribute bits AND `${+X}` returns 1.
1650                        let u_arr = if entry.pm_type == PM_ARRAY {
1651                            Some(Vec::new())
1652                        } else {
1653                            None
1654                        };
1655                        let pm: crate::ported::zsh_h::Param = Box::new(param {
1656                            node: hashnode {
1657                                next: None,
1658                                nam: entry.name.to_string(),
1659                                flags: (entry.pm_type as i32) | bits as i32,
1660                            },
1661                            u_data: 0,
1662                            u_tied: None,
1663                            u_arr,
1664                            u_str: None,
1665                            u_val: 0,
1666                            u_dval: 0.0,
1667                            u_hash: None,
1668                            gsu_s: None,
1669                            gsu_i: None,
1670                            gsu_f: None,
1671                            gsu_a: None,
1672                            gsu_h: None,
1673                            // c:Src/params.c:344 IPDEF4 / c:353 IPDEF5 —
1674                            // PM_INTEGER specials default base=10.
1675                            base: if entry.pm_type == crate::ported::zsh_h::PM_INTEGER {
1676                                10
1677                            } else {
1678                                0
1679                            },
1680                            width: 0,
1681                            env: None,
1682                            // c:Src/zsh.h IPDEF8/IPDEF9 — tied partner
1683                            // name. Bug #410.
1684                            ename: entry.tied_name.map(|s| s.to_string()),
1685                            old: None,
1686                            level: 0,
1687                        });
1688                        tab.insert(entry.name.to_string(), pm);
1689                    }
1690                    // Tied partner side. The previous loop body ORed
1691                    // PM_ARRAY|PM_SPECIAL|PM_DONTIMPORT|PM_TIED onto the
1692                    // partner indiscriminately, but for a SCALAR ↔
1693                    // ARRAY tied pair (PATH ↔ path, FIGNORE ↔ fignore),
1694                    // that incorrectly stamped PM_ARRAY onto the scalar
1695                    // partner (FIGNORE, PATH, FPATH, MAILPATH, MANPATH,
1696                    // PSVAR, CDPATH, MODULE_PATH). Result: `(t)PATH`
1697                    // returned `array-tied-export-special` instead of
1698                    // `scalar-tied-export-special`.
1699                    //
1700                    // Both partners are already listed in `special_params`
1701                    // (the scalar at the IPDEF8 block, the array at the
1702                    // IPDEF9 block past the sentinel), so each gets its
1703                    // own pass through this loop and ends up with the
1704                    // correct flags. No cross-stamping needed.
1705                    let _ = entry.tied_name;
1706                }
1707                // c:Src/params.c:893-924 environment-import loop —
1708                // every env var gets either a fresh exported paramtab
1709                // entry OR (when the entry pre-exists from
1710                // special_params) PM_EXPORTED OR'd onto its flags.
1711                // Without this, `declare -p PATH` printed `typeset -T
1712                // PATH=''` and `declare -p USER` printed nothing at
1713                // all because USER was never in paramtab.
1714                use crate::ported::zsh_h::hashnode as _hn;
1715                use crate::ported::zsh_h::{PM_EXPORTED, PM_SCALAR};
1716                // c:Src/params.c:4329-4342 colonarrsetfn — assigning a
1717                // tied IPDEF8 scalar (MANPATH, CDPATH, MODULE_PATH, …)
1718                // colonsplit()s the value into the partner array,
1719                // preserving empty components. The env import below
1720                // bypasses the GSU setfn, so collect the tied pairs
1721                // here and pour them through setaparam after the
1722                // paramtab lock drops. PATH→path / FPATH→fpath are
1723                // seeded earlier (vm_helper ~1160-1199) and skipped.
1724                let mut tied_env_arrays: Vec<(String, Vec<String>)> = Vec::new();
1725                // c:Src/params.c:893 — walk the process-entry environ
1726                // snapshot, not the live env (frameworks can mutate it
1727                // before init — see params.rs `environ` static).
1728                let environ_vars: Vec<(String, String)> = crate::ported::params::environ
1729                    .get()
1730                    .cloned()
1731                    .unwrap_or_else(|| std::env::vars().collect());
1732                for (env_name, env_value) in environ_vars {
1733                    if env_name.is_empty() || env_name.contains('[') {
1734                        continue;
1735                    }
1736                    if env_name.as_bytes()[0].is_ascii_digit() {
1737                        continue;
1738                    }
1739                    if !crate::ported::params::isident(&env_name) {
1740                        continue;
1741                    }
1742                    if let Some(pm) = tab.get_mut(&env_name) {
1743                        // c:Src/params.c:902-906 — the import loop runs
1744                        // `dontimport(pm->node.flags)` BEFORE doing
1745                        // anything to the entry; PM_DONTIMPORT names
1746                        // (`_`, IFS, GID/EGID, KEYBOARD_HACK — the
1747                        // IPDEF7/IPDEF2 rows, c:796-800) are skipped
1748                        // ENTIRELY: no PM_EXPORTED stamp, no value
1749                        // seed. zshrs previously OR'd PM_EXPORTED
1750                        // first, so an inherited env `_` made the
1751                        // special `_` exported and it leaked into
1752                        // `typeset +x -r` / `export -p` listings where
1753                        // zsh shows nothing.
1754                        if (pm.node.flags as u32 & crate::ported::zsh_h::PM_DONTIMPORT) != 0 {
1755                            continue; // c:905 `continue;`
1756                        }
1757                        pm.node.flags |= PM_EXPORTED as i32;
1758                        // c:Src/params.c:2769-2776 — assignstrvalue's
1759                        // PM_INTEGER arm, which C's env import reaches via
1760                        // `assignsparam(..., ASSPM_ENV_IMPORT)` (c:907-908;
1761                        // assignsparam forwards its `flags` verbatim at
1762                        // c:params.c assignstrvalue(v, val, flags)):
1763                        //     if (flags & ASSPM_ENV_IMPORT) {
1764                        //         char *ptr;
1765                        //         ival = zstrtol_underscore(val, &ptr, 0, 1);
1766                        //     } else
1767                        //         ival = mathevali(val);
1768                        //     v->pm->gsu.i->setfn(v->pm, ival);
1769                        // An integer param keeps its value in `u.val`, NOT in
1770                        // the scalar slot, so the `pm.u_str = env_value` seed
1771                        // below stored the digits somewhere no integer reader
1772                        // ever looks and EVERY pre-existing PM_INTEGER param
1773                        // silently ignored the environment: COLUMNS/LINES
1774                        // (IPDEF5, c:355-356) read back 0, while HISTSIZE,
1775                        // SAVEHIST, LISTMAX, MAILCHECK, KEYTIMEOUT and
1776                        // FUNCNEST kept their built-in defaults — i.e.
1777                        // `HISTSIZE=5000 zshrs -c ...` was a no-op.
1778                        //
1779                        // Base 0 + underscore=1 is not incidental: it is what
1780                        // makes `COLUMNS=0x10` 16, `COLUMNS=0b101` 5,
1781                        // `COLUMNS=010` 8 (octal — c:utils.c:2452-2461 takes
1782                        // the leading `0` then falls to `base = 8`),
1783                        // `COLUMNS=1_0` 10, and a trailing-garbage value like
1784                        // `9abc` a silent 9. mathevali would instead ERROR on
1785                        // `9abc`, which is precisely why C splits the two
1786                        // paths — importing a hostile environment must not
1787                        // abort the shell (upstream 546203a770, "33276: safer
1788                        // import of numerical variables from environment").
1789                        if (pm.node.flags as u32 & crate::ported::zsh_h::PM_INTEGER) != 0 {
1790                            let (ival, _) = crate::ported::utils::zstrtol_underscore(
1791                                &env_value,
1792                                0,
1793                                true,
1794                            ); // c:2773
1795                            // c:3660 — any assignstrvalue write clears PM_UNSET.
1796                            pm.node.flags &= !(PM_UNSET as i32);
1797                            // c:2774 — `v->pm->gsu.i->setfn(v->pm, ival)`.
1798                            // intsetfn is this port's stand-in for the gsu_i
1799                            // vtable: it name-dispatches the specials whose
1800                            // setter has side effects (SECONDS, RANDOM,
1801                            // HISTSIZE, …) and writes u.val otherwise.
1802                            crate::ported::params::intsetfn(pm.as_mut(), ival);
1803                            pm.env = Some(format!("{env_name}={env_value}"));
1804                            continue;
1805                        }
1806                        // c:Src/params.c:893-924 — C's env-import calls
1807                        // `assignsparam(..., ASSPM_ENV_IMPORT)` which
1808                        // routes through the param's GSU setfn. For
1809                        // SPECIAL scalars with cached storage (HOME,
1810                        // USERNAME, TERM, WORDCHARS, TERMINFO,
1811                        // TERMINFO_DIRS, KEYBOARD_HACK, histchars) the
1812                        // setfn writes to a separate `*_lock` global
1813                        // (e.g. home_lock). Just OR'ing PM_EXPORTED
1814                        // leaves those globals empty, so `$HOME` reads
1815                        // back "" even though HOME is in env. Mirror
1816                        // C by copying the env value into pm.u_str and
1817                        // (for cached specials) the matching global.
1818                        // Only seed cached state when the param was
1819                        // still marked PM_UNSET — i.e. nothing has set
1820                        // it yet. ShellExecutor::new's earlier init
1821                        // block (vm_helper line 837+) already ran
1822                        // setsparam for a few names (ZSH_ARGZERO,
1823                        // WORDCHARS, SHLVL with the +1 increment, IFS,
1824                        // OPTIND, …); those calls clear PM_UNSET so we
1825                        // must not overwrite them with the raw env
1826                        // value here. The PM_UNSET-still-set case is
1827                        // the "C zsh would have called
1828                        // assignsparam(...,ASSPM_ENV_IMPORT) and ours
1829                        // didn't yet" gap that bug #599 (HOME=` `) and
1830                        // %~ prompt expansion need.
1831                        let still_unset =
1832                            (pm.node.flags as u32 & crate::ported::zsh_h::PM_UNSET) != 0;
1833                        if still_unset {
1834                            pm.u_str = Some(env_value.clone());
1835                            pm.env = Some(format!("{}={}", env_name, env_value));
1836                            // c:Src/params.c:3660 — `assignstrvalue`
1837                            // clears PM_UNSET on any write. HOME / TERM
1838                            // / TERMINFO / TERMINFO_DIRS / WORDCHARS
1839                            // start life with PM_UNSET in
1840                            // `special_params` (params.rs SPECIAL_PARAMS
1841                            // table) so `lookup_special_var` skips the
1842                            // getfn for uninitialized specials; env
1843                            // import is the canonical "now it's set"
1844                            // event, so clear the bit.
1845                            pm.node.flags &= !(PM_UNSET as i32);
1846                            // Cached-state specials: route through
1847                            // the matching setfn so the global cache
1848                            // (home_lock / wordchars_lock / etc.)
1849                            // reflects the env value. Each setfn
1850                            // ignores its `pm` arg (matches C's
1851                            // UNUSED(Param pm)), so passing the
1852                            // borrowed paramtab entry is safe.
1853                            match env_name.as_str() {
1854                                "HOME" => {
1855                                    crate::ported::params::homesetfn(pm.as_mut(), env_value.clone())
1856                                }
1857                                "USERNAME" => crate::ported::params::usernamesetfn(
1858                                    pm.as_mut(),
1859                                    env_value.clone(),
1860                                ),
1861                                "TERM" => {
1862                                    crate::ported::params::termsetfn(pm.as_mut(), env_value.clone())
1863                                }
1864                                "WORDCHARS" => crate::ported::params::wordcharssetfn(
1865                                    pm.as_mut(),
1866                                    env_value.clone(),
1867                                ),
1868                                "TERMINFO" => crate::ported::params::terminfosetfn(
1869                                    pm.as_mut(),
1870                                    env_value.clone(),
1871                                ),
1872                                "TERMINFO_DIRS" => crate::ported::params::terminfodirssetfn(
1873                                    pm.as_mut(),
1874                                    env_value.clone(),
1875                                ),
1876                                _ => {}
1877                            }
1878                        }
1879                        // c:Src/params.c:907-908 — env import always
1880                        // assigns through the GSU setfn; for tied
1881                        // IPDEF8 scalars that is colonarrsetfn
1882                        // (c:4329-4342), which colonsplit()s the value
1883                        // into the partner array, empties preserved.
1884                        // Not gated on still_unset: C re-assigns on
1885                        // import regardless.
1886                        if (pm.node.flags as u32 & crate::ported::zsh_h::PM_TIED) != 0 {
1887                            if let Some(ref peer) = pm.ename {
1888                                if peer != "path" && peer != "fpath" {
1889                                    tied_env_arrays.push((
1890                                        peer.clone(),
1891                                        env_value.split(':').map(String::from).collect(), // c:4339 colonsplit
1892                                    ));
1893                                }
1894                            }
1895                        }
1896                    } else {
1897                        // Fresh entry — PM_SCALAR + PM_EXPORTED, value
1898                        // taken from env. Mirrors C zsh's c:907-908
1899                        // `assignsparam(..., ASSPM_ENV_IMPORT)` for
1900                        // names not already in the special table.
1901                        let pm: crate::ported::zsh_h::Param = Box::new(param {
1902                            node: _hn {
1903                                next: None,
1904                                nam: env_name.clone(),
1905                                flags: (PM_SCALAR | PM_EXPORTED) as i32,
1906                            },
1907                            u_data: 0,
1908                            u_tied: None,
1909                            u_arr: None,
1910                            u_str: Some(env_value.clone()),
1911                            u_val: 0,
1912                            u_dval: 0.0,
1913                            u_hash: None,
1914                            gsu_s: None,
1915                            gsu_i: None,
1916                            gsu_f: None,
1917                            gsu_a: None,
1918                            gsu_h: None,
1919                            base: 0,
1920                            width: 0,
1921                            env: Some(format!("{}={}", env_name, env_value)),
1922                            ename: None,
1923                            old: None,
1924                            level: 0,
1925                        });
1926                        tab.insert(env_name, pm);
1927                    }
1928                }
1929                // Apply the collected tied-pair splits after the env
1930                // walk. setaparam (the canonical store) needs the
1931                // same paramtab write lock held here, so write u_arr
1932                // directly on the peer entry — array reads route
1933                // through paramtab so this is the single store.
1934                for (peer, parts) in tied_env_arrays {
1935                    if let Some(apm) = tab.get_mut(peer.as_str()) {
1936                        apm.u_arr = Some(parts); // c:4339 — `*dptr = colonsplit(x, …)`
1937                        apm.node.flags &= !(crate::ported::zsh_h::PM_UNSET as i32);
1938                    }
1939                }
1940                // c:Src/params.c:948-951 — runs AFTER the import loop:
1941                //     pm = (Param) paramtab->getnode(paramtab, "SHLVL");
1942                //     sprintf(buf, "%d", (int)++shlvl);
1943                //     /* shlvl value in environment needs updating unconditionally */
1944                //     addenv(pm, buf);
1945                // SHLVL is `IPDEF5("SHLVL", &shlvl, varinteger_gsu)` (c:358), so
1946                // the loop above has already parsed any inherited value into it
1947                // with zstrtol_underscore; C then increments THAT, in place.
1948                // Ordering is the whole point: the increment must observe the
1949                // imported value, and the import must not clobber the
1950                // increment. When SHLVL is absent from the environment the
1951                // param is still 0 here, so ++ yields 1 — matching C, whose
1952                // `shlvl` global starts at 0.
1953                //
1954                // addenv also exports the INCREMENTED value, which is why a
1955                // forked child sees 6 for `SHLVL=5 zsh -fc 'printenv SHLVL; true'`.
1956                // (A bare `printenv SHLVL` shows 5 because zsh exec's the last
1957                // command in place and backs the increment out — the shell is
1958                // being replaced, not nested. That is a separate mechanism.)
1959                if let Some(pm) = tab.get_mut("SHLVL") {
1960                    let next = pm.u_val + 1; // c:949 `++shlvl`
1961                    crate::ported::params::intsetfn(pm.as_mut(), next); // c:949
1962                    pm.node.flags &= !(PM_UNSET as i32);
1963                }
1964            }
1965        }
1966        // NOT DONE HERE: c:Src/params.c:951 `addenv(pm, buf)`, which zputenv's
1967        // the INCREMENTED SHLVL into the process environment so a forked child
1968        // sees 6 for `SHLVL=5 zsh -fc 'printenv SHLVL; true'`. zshrs still
1969        // exports the inherited 5 there.
1970        //
1971        // Adding the addenv alone makes parity WORSE, not better, because it
1972        // is only half of a pair. C hands an exec'd command the DECREMENTED
1973        // value (c:Src/exec.c:4276-4281 — "for either implicit or explicit
1974        // exec, decrease $SHLVL as we're now done as a shell", guarded by
1975        // `!subsh && !forked`), which is why a bare `SHLVL=5 zsh -fc 'printenv
1976        // SHLVL'` prints 5 while `'printenv SHLVL; true'` prints 6 — the first
1977        // is exec'd in place, the second forked. Exporting 6 without that
1978        // decrement turns one divergence into four: the exec'd cases and every
1979        // nested-shell count start reading one too high.
1980        //
1981        // The decrement IS ported, at exec.rs:11195-11199, but on the
1982        // `ported::exec` path — not the fusevm path that actually runs `-c`.
1983        // Wiring both belongs in one change, with the exec side first.
1984        // c:Src/init.c:1907-1909 — `SHTTY = -1; init_io(cmd); setupvals(...)`.
1985        // zsh_main runs those three in that order, and this constructor stands
1986        // in for setupvals's param setup on the drivers that never reach
1987        // zsh_main: `zshrs -c CODE` dispatches at bins/zshrs.rs:1716 (after
1988        // --zsh/-f are stripped) straight into ShellExecutor::new + exit. So
1989        // init_io has to happen here, or SHTTY is still -1 and the winsize
1990        // probe below silently no-ops (adjustwinsize early-returns at
1991        // c:1900-1901). setupvals's own adjustwinsize(0) covers the zsh_main
1992        // path; init_io is idempotent (c:615-618 closes and reopens SHTTY), so
1993        // that path just re-establishes it a moment later.
1994        crate::ported::init::init_io(None); // c:1908
1995
1996        // c:Src/init.c:1274-1276 — `adjustwinsize(0)`, the first thing after
1997        // createparamtable (c:1270). Probes the tty via TIOCGWINSZ and
1998        // publishes the geometry to $COLUMNS/$LINES.
1999        //
2000        // Ordering is C's, and load-bearing in both directions: it must FOLLOW
2001        // init_io (which sets SHTTY) and it must FOLLOW the environ import
2002        // above, because the tty geometry OVERRIDES an inherited COLUMNS — a
2003        // 97-column terminal reports 97 even when COLUMNS=10 was exported in.
2004        // (C gets that via the c:1906-1907 "Signal missed while a job owned the
2005        // tty?" promotion of from=0 to from=1, which makes adjustcolumns take
2006        // the signalled path and overwrite zterm_columns with ws_col.)
2007        //
2008        // With no terminal at all, SHTTY stays -1 and the imported value (or 0)
2009        // survives untouched — which is what C's zterm_columns does there, and
2010        // why a piped `COLUMNS=20 zshrs -c` still reports 20. Note SHTTY does
2011        // NOT require stdin/stdout to be a tty: init_io's last resort is
2012        // `open("/dev/tty")` (c:667-670), so a piped-but-still-attached shell
2013        // gets the real width, matching `zsh -fc 'print $COLUMNS | cat'`.
2014        let _ = crate::ported::utils::adjustwinsize(0); // c:1276
2015
2016        // c:Src/params.c:955 — `set_pwd_env();` runs AFTER the environ
2017        // import loop, overwriting the imported $PWD/$OLDPWD paramtab
2018        // entries with the ispwd()-validated values computed above
2019        // (c:Src/init.c:1242-1259). Without this, a stale inherited
2020        // $PWD (env-import snapshot taken at process entry) survives
2021        // in paramtab even though the live env was corrected.
2022        crate::ported::builtin::set_pwd_env();
2023
2024        // Populate paramtab with PM_SPECIAL placeholder Params for
2025        // every PARTAB / PARTAB_ARRAY magic-assoc name. Mirrors
2026        // what C's zsh/parameter module boot_ → handlefeatures
2027        // chain does at startup. Makes `${+aliases}` / `${(t)commands}`
2028        // / `typeset -p modules` etc. see the special entries.
2029        init_partab_params(); // c:Src/Modules/parameter.c:2341 boot_/enables_ chain
2030
2031        // c:Src/init.c:1703 init_bltinmods — must run before user
2032        // code so default-loaded modules (zsh/watch, …) get their
2033        // boot_ entry points called and their params (e.g. `watch`,
2034        // `WATCH`) seeded in paramtab. Without this, `${(t)watch}`
2035        // returned empty even though zsh treats zsh/watch as loaded
2036        // by default. The bin entry skips zsh_main → init_bltinmods,
2037        // so we run it here from ShellExecutor::new for the same
2038        // effect. Bug #270.
2039        crate::ported::init::init_bltinmods();
2040
2041        // c:Src/params.c:873-876 — `gethostname(hostnam,256);
2042        //                            setsparam("HOST", ztrdup_metafy(hostnam));`
2043        // Plain port of the createparamtable HOST init. Direct
2044        // libc::gethostname call; result written via canonical
2045        // setsparam. createparamtable() itself isn't called from the
2046        // bin entry yet (full init port pending); this is the minimum
2047        // for `$HOST` to read non-empty.
2048        let mut host_buf = [0u8; 256];
2049        let host_rc = unsafe { libc::gethostname(host_buf.as_mut_ptr() as *mut libc::c_char, 256) }; // c:874
2050        if host_rc == 0 {
2051            if let Ok(c) = std::ffi::CStr::from_bytes_until_nul(&host_buf) {
2052                if let Ok(name) = c.to_str() {
2053                    crate::ported::params::setsparam("HOST", name); // c:875
2054                }
2055            }
2056        }
2057        // c:Src/init.c:479 — `-c` mode: scriptname = scriptfilename
2058        // = ztrdup("zsh"). Both globals start as the literal "zsh"
2059        // (not the binary path) so PS4's %x / %N print "zsh" not
2060        // "/path/to/zshrs" at the top level. Function dispatch
2061        // overrides scriptname per c:5903; scriptfilename stays.
2062        crate::ported::utils::set_scriptname(Some("zsh".to_string()));
2063        crate::ported::utils::set_scriptfilename(Some("zsh".to_string()));
2064
2065        // c:Src/params.c:961-970 — uname-derived host/arch
2066        // identification params: MACHTYPE / CPUTYPE / OSTYPE /
2067        // VENDOR. C zsh reads from compile-time `#define`s (set by
2068        // ./configure) for MACHTYPE / OSTYPE / VENDOR, and from
2069        // uname().machine at runtime for CPUTYPE.
2070        //
2071        // Rust port: probe uname() at startup for CPUTYPE, and use
2072        // const strings parameterized by build-target for the
2073        // others. Match homebrew zsh's values where possible.
2074        let mut uname_buf: libc::utsname = unsafe { std::mem::zeroed() };
2075        let _ = unsafe { libc::uname(&mut uname_buf) };
2076        let to_str = |b: &[libc::c_char]| -> String {
2077            // c-string → owned String, truncated at first NUL.
2078            let bytes: Vec<u8> = b
2079                .iter()
2080                .take_while(|&&c| c != 0)
2081                .map(|&c| c as u8)
2082                .collect();
2083            String::from_utf8_lossy(&bytes).into_owned()
2084        };
2085        let cputype = to_str(&uname_buf.machine);
2086        crate::ported::params::setsparam("CPUTYPE", &cputype); // c:961
2087        let sysname = to_str(&uname_buf.sysname).to_lowercase();
2088        let release = to_str(&uname_buf.release);
2089        let ostype = format!("{}{}", sysname, release); // c:968 (OSTYPE)
2090        crate::ported::params::setsparam("OSTYPE", &ostype);
2091        // MACHTYPE / VENDOR: hardcoded per platform. macOS uses
2092        // "arm" or "arm64" or "x86_64" for arm-derived MACHTYPE.
2093        // Approximate the canonical homebrew value: short-form of
2094        // the cputype.
2095        let machtype = if cputype.starts_with("arm") {
2096            "arm".to_string()
2097        } else {
2098            cputype.clone()
2099        };
2100        crate::ported::params::setsparam("MACHTYPE", &machtype); // c:967
2101        let vendor = if sysname == "darwin" {
2102            "apple"
2103        } else {
2104            "unknown"
2105        };
2106        crate::ported::params::setsparam("VENDOR", vendor); // c:970
2107
2108        // c:Src/params.c:878-882 — `setsparam("LOGNAME", getlogin() ?:
2109        // cached_username);`. C's createparamtable also assigns
2110        // USERNAME from the same source (cached_username) via the
2111        // special_paramdefs table. Here mirror the LOGNAME +
2112        // USERNAME seeding so the canonical paramtab entries exist
2113        // (usernamegetfn at c:4655 reads through Param.u_str).
2114        // Same one-shot init pattern as the HOST gethostname call
2115        // above — full createparamtable() port is pending.
2116        let logname = unsafe {
2117            let p = libc::getlogin();
2118            if p.is_null() {
2119                None
2120            } else {
2121                Some(std::ffi::CStr::from_ptr(p).to_string_lossy().into_owned())
2122            }
2123        }; // c:880
2124        if let Some(name) = logname {
2125            crate::ported::params::setsparam("LOGNAME", &name); // c:881
2126                                                                // DO NOT setsparam("USERNAME", ...) here. `$USERNAME` is
2127                                                                // a special parameter whose SETTER (`usernamesetfn` in
2128                                                                // params.rs) performs setgid(2) + setuid(2) to actually
2129                                                                // change the effective user — that's a deliberate upstream
2130                                                                // zsh feature for `USERNAME=other-user cmd`. Calling it at
2131                                                                // init seeds the value AND tries to change uid/gid; when
2132                                                                // the resolved pwd's pw_uid differs from `getuid()` (sudo
2133                                                                // launches, macOS Keychain-helper inherited env, container
2134                                                                // entry points, etc.) the setgid call fails with EPERM and
2135                                                                // emits `zsh:1: failed to change group ID: Operation not
2136                                                                // permitted`. Upstream seeds `$USERNAME` via the GETTER
2137                                                                // path (`usernamegetfn` reads through `cached_username`
2138                                                                // populated by `inittyptab` → `get_username`), no setter
2139                                                                // call needed.
2140        }
2141
2142        // c:Src/init.c:1176 — `module_path = mkarray(MODULE_DIR)`.
2143        // The canonical init lives in `init::setupvals` (port of
2144        // `Src/init.c:setupvals`); the bin entry skips setupvals (per
2145        // the init_bltinmods comment above), so call the lightweight
2146        // module_path bootstrap exposed by init.rs from here. This
2147        // mirrors the HOST gethostname seeding pattern above:
2148        // duplicated init that should collapse into a full setupvals
2149        // call once that port is complete.
2150        crate::ported::init::module_path_init();
2151
2152        exec
2153    }
2154
2155    /// Execute a script file with bytecode caching — skips lex+parse+compile on cache hit.
2156    /// Bytecode is stored in rkyv keyed by (path, mtime).
2157    pub fn execute_script_file(&mut self, file_path: &str) -> Result<i32, String> {
2158        let path = Path::new(file_path);
2159        let abs_path = path
2160            .canonicalize()
2161            .unwrap_or_else(|_| path.to_path_buf())
2162            .to_string_lossy()
2163            .to_string();
2164
2165        // Try bytecode cache first — rkyv shard at ~/.zshrs/scripts.rkyv.
2166        // The cache validates path + mtime + zshrs binary mtime; on any
2167        // miss we fall through to lex/parse/compile. Cached path uses
2168        // `run_chunk` (the shared VM-execution helper); script-eval
2169        // path delegates to `execute_script_zsh_pipeline` so the
2170        // full parse/compile/cache-save/run flow stays in one place.
2171        if let Some(bc_blob) = crate::script_cache::try_load_bytes(path) {
2172            if let Ok(chunk) = bincode::deserialize::<fusevm::Chunk>(&bc_blob) {
2173                if !chunk.ops.is_empty() {
2174                    tracing::trace!(
2175                        path = %abs_path,
2176                        ops = chunk.ops.len(),
2177                        "execute_script_file: bytecode cache hit"
2178                    );
2179                    return self.run_chunk(chunk, &format!("execute_script_file:cache:{abs_path}"));
2180                }
2181            }
2182        }
2183
2184        // Cache miss — read, parse, compile via execute_script_zsh_pipeline,
2185        // then snapshot the resulting chunk into the cache for next
2186        // time. Direct port of Src/init.c source() which calls
2187        // `lex_init_buf` / `loop()` without engaging the history layer.
2188        // (zsh fires `!` history sub only on interactive input, so
2189        // sourced files run verbatim.)
2190        let content = fs::read_to_string(file_path).map_err(|e| format!("{}: {}", file_path, e))?;
2191        let status = self.execute_script_zsh_pipeline(&content)?;
2192
2193        // Best-effort cache save — failures don't block execution.
2194        // Re-parse/-compile here instead of trying to thread the chunk
2195        // back out of execute_script_zsh_pipeline; the cost is one extra
2196        // compile per CACHE MISS, paid back on every subsequent run.
2197        let saved_errflag = errflag.load(Ordering::Relaxed);
2198        errflag.fetch_and(!ERRFLAG_ERROR, Ordering::Relaxed);
2199        // Context-isolated parse (c:Src/exec.c:283 parse_string) — this
2200        // post-exec re-parse for the bytecode cache also runs mid-stream
2201        // under the single-event reader; isolate it from the outer SHIN.
2202        let program = parse_isolated(&content);
2203        let parse_failed = (errflag.load(Ordering::Relaxed) & ERRFLAG_ERROR) != 0;
2204        errflag.store(saved_errflag, Ordering::Relaxed);
2205        if !parse_failed {
2206            let compiler = crate::compile_zsh::ZshCompiler::new();
2207            let chunk = compiler.compile(&program);
2208            if let Ok(blob) = bincode::serialize(&chunk) {
2209                let _ = crate::script_cache::try_save_bytes(path, &blob);
2210                tracing::trace!(
2211                    path = %abs_path,
2212                    bytes = blob.len(),
2213                    "execute_script_file: bytecode cached"
2214                );
2215            }
2216        }
2217
2218        Ok(status)
2219    }
2220
2221    /// Run a compiled `fusevm::Chunk` to completion inside this
2222    /// executor's context. Shared by `execute_script_zsh_pipeline`,
2223    /// `execute_script_file`'s bytecode-cache hit path, and the
2224    /// function-dispatch body_runner. Centralises the VM setup so
2225    /// `register_builtins` and `ExecutorContext::enter` invariants
2226    /// stay in lockstep.
2227    fn run_chunk(&mut self, chunk: fusevm::Chunk, label: &str) -> Result<i32, String> {
2228        if chunk.ops.is_empty() {
2229            return Ok(self.last_status());
2230        }
2231        crate::fusevm_disasm::maybe_print_stdout(label, &chunk);
2232        let mut vm = crate::vm_pool::acquire(chunk);
2233        // Seed vm.last_status with the executor's current LASTVAL so
2234        // sub-VMs (EXIT trap bodies, eval, source) see the inherited
2235        // `$?` from the caller's last command — matching C zsh where
2236        // lastval is a process global. Without this, the new VM
2237        // started at 0 and BUILTIN_GET_VAR's sync_status would write
2238        // 0 back into LASTVAL on the first `$?` read.
2239        vm.last_status = self.last_status();
2240        let _ctx = ExecutorContext::enter(self);
2241        match vm.run() {
2242            fusevm::VMResult::Ok(_) | fusevm::VMResult::Halted => {
2243                self.set_last_status(vm.last_status);
2244            }
2245            fusevm::VMResult::Error(e) => return Err(format!("VM error: {}", e)),
2246        }
2247        Ok(self.last_status())
2248    }
2249
2250    /// Execute via the lex+parse free ported + ZshCompiler pipeline.
2251    /// This is the only execution path; `execute_script` delegates here.
2252    pub fn execute_script_zsh_pipeline(&mut self, script: &str) -> Result<i32, String> {
2253        // Skip history expansion for non-interactive script execution
2254        // (`zsh -c '…'`, internal eval, sourced files). zsh's `!`
2255        // history sub only fires on the REPL command line, never on
2256        // a pre-parsed script body. The interactive REPL has its
2257        // own dedicated path that calls expand_history before
2258        // dispatching here.
2259        // Save & clear errflag around the parse so a fresh syntax
2260        // error is distinguishable from one already in flight. Mirrors
2261        // Src/init.c loop()'s pre-parse `errflag &= ~ERRFLAG_ERROR;`.
2262        let saved_errflag = errflag.load(Ordering::Relaxed);
2263        errflag.fetch_and(!ERRFLAG_ERROR, Ordering::Relaxed);
2264        // Context-isolated parse (c:Src/exec.c:283 parse_string). eval /
2265        // source / autoload-register / trap bodies all reach here and run
2266        // DURING execution; on the faithful single-event loop()/parse_event
2267        // reader, a bare parse_init/lex_init would steal the outer's next
2268        // SHIN line into this nested program (e.g. `eval "x=5"` swallowed the
2269        // following `echo $x` off stdin). parse_isolated sets `strin` so the
2270        // string drains to EOF; execution below stays in the current shell.
2271        let program = parse_isolated(script);
2272        let parse_failed = (errflag.load(Ordering::Relaxed) & ERRFLAG_ERROR) != 0;
2273        errflag.store(saved_errflag, Ordering::Relaxed);
2274        if parse_failed {
2275            // c:Src/init.c — when the parser fires `zerr(...)`, the C
2276            // shell's `loop()` body skips the eval pass and continues;
2277            // there's no second "parse error" diagnostic. The Rust
2278            // binary's call sites print `zshrs: <e>` on Err, doubling
2279            // up on the message the parser already emitted via zerr.
2280            // Use a `__SILENCED__` sentinel that the binary's
2281            // execute_script wrapper recognizes as "already reported,
2282            // exit silently". Bug #142 in docs/BUGS.md (double-print
2283            // half).
2284            return Err("__SILENCED__".to_string());
2285        }
2286
2287        let compiler = crate::compile_zsh::ZshCompiler::new();
2288        let chunk = compiler.compile(&program);
2289        let status = self.run_chunk(chunk, "execute_script_zsh_pipeline")?;
2290
2291        // Fire EXIT trap if set. Two storage paths:
2292        //   (a) `trap 'cmd' EXIT` writes the body text into
2293        //       `traps_table` via bin_trap (Src/builtin.c) — fire
2294        //       directly via execute_script.
2295        //   (b) `TRAPEXIT() { ... }` function-named form goes
2296        //       through settrap(SIGEXIT, None, ZSIG_FUNC) at
2297        //       funcdef time (fusevm_bridge.rs BUILTIN_REGISTER_COMPILED_FN
2298        //       arm) and lives in shfunctab + sigtrapped — fire
2299        //       via dotrap(SIGEXIT) which dispatches the named
2300        //       shfunc. Bug #157 in docs/BUGS.md.
2301        // Remove the trap from `traps_table` first to prevent
2302        // infinite recursion of `(a)`; `(b)`'s sigtrapped flag
2303        // is cleared by dotrap's own intrap guard.
2304        let exit_body = crate::ported::builtin::traps_table()
2305            .lock()
2306            .ok()
2307            .and_then(|mut t| t.remove("EXIT"));
2308        if let Some(action) = exit_body {
2309            tracing::debug!("firing EXIT trap (new pipeline)");
2310            // c:Src/signals.c — the EXIT trap body sees $? at the
2311            // value the script left off (so `trap 'echo $?' EXIT;
2312            // (exit 7)` prints 7), but the SHELL's final exit code
2313            // is still the pre-trap value (running `echo` inside
2314            // the trap doesn't reset the script's exit status).
2315            // Preserve `status` and re-apply it after the trap
2316            // body returns.
2317            //
2318            // c:Src/signals.c:1123/1236 — `intrap++` … `intrap--` bracket a
2319            // trap body, and while intrap the EXIT, DEBUG and ZERR traps are
2320            // suppressed (c:1112-1119, the guard in dotrap). This path runs
2321            // the EXIT body through the script pipeline rather than dotrap,
2322            // so nothing raised intrap and the body's own failure re-entered
2323            // the ERR trap: `trap 'print err' ERR; trap 'true; false' EXIT`
2324            // printed err where zsh prints nothing.
2325            //
2326            // A counter, not a flag, and paired with dotrap's SELECTIVE
2327            // guard: signals zsh does deliver from inside a trap body (e.g.
2328            // `trap 'kill -USR1 $$' EXIT`) must still dispatch.
2329            crate::ported::signals::intrap.fetch_add(1, Ordering::SeqCst); // c:1123
2330            let _ = self.execute_script_zsh_pipeline(&action);
2331            crate::ported::signals::intrap.fetch_sub(1, Ordering::SeqCst); // c:1236
2332            self.set_last_status(status);
2333        }
2334        // c:Src/signals.c::dotrap(SIGEXIT) — fire TRAPEXIT() shfunc
2335        // if installed via the function-name path. The TRAPEXIT()
2336        // form goes through settrap(SIGEXIT, None, ZSIG_FUNC) at
2337        // funcdef time (sets sigtrapped[SIGEXIT] |= ZSIG_FUNC).
2338        // Dispatching from here AFTER run_chunk returns means we're
2339        // outside the VM context — dotrap can't safely re-enter
2340        // via dispatch_function_call (which uses with_executor).
2341        // Route through execute_script_zsh_pipeline which sets up
2342        // a fresh VM context — invoke the function by name.
2343        let trapped = crate::ported::signals::sigtrapped
2344            .lock()
2345            .ok()
2346            .and_then(|g| g.get(crate::signals_h::SIGEXIT as usize).copied())
2347            .unwrap_or(0);
2348        if (trapped & crate::ported::zsh_h::ZSIG_FUNC as i32) != 0 {
2349            // The TRAP<SIG> function is stored in shfunctab as
2350            // "TRAPEXIT"; calling it by name re-enters
2351            // execute_script_zsh_pipeline with a fresh VM context.
2352            let _ = self.execute_script_zsh_pipeline("TRAPEXIT");
2353        }
2354        // c:Src/init.c::zexit — `callhookfunc("zshexit", NULL, 1, NULL)`.
2355        // Fire the `zshexit` shfunc + walk `zshexit_functions` array.
2356        // Routed through execute_script_zsh_pipeline calls because
2357        // we're outside the VM context here (post-run_chunk). Iterate
2358        // the array directly + call zshexit by name. Bug #215 in
2359        // docs/BUGS.md.
2360        //
2361        // Re-entry guard: each call to execute_script_zsh_pipeline
2362        // (whether top-level script or the named-fn dispatch below)
2363        // hits this code at its tail. Without a guard, the zshexit
2364        // hook recurses infinitely (calls itself at end via this
2365        // path). Use a thread-local depth counter and skip the
2366        // dispatch when depth > 0.
2367        thread_local! {
2368            static ZSHEXIT_HOOK_DEPTH: std::cell::Cell<u32> = const {
2369                std::cell::Cell::new(0)
2370            };
2371        }
2372        let hook_depth = ZSHEXIT_HOOK_DEPTH.with(|c| c.get());
2373        if hook_depth == 0 {
2374            ZSHEXIT_HOOK_DEPTH.with(|c| c.set(hook_depth + 1));
2375            if crate::ported::hashtable::shfunctab_lock()
2376                .read()
2377                .ok()
2378                .map(|t| t.contains_key("zshexit"))
2379                .unwrap_or(false)
2380            {
2381                let _ = self.execute_script_zsh_pipeline("zshexit");
2382            }
2383            let exit_arr = crate::ported::params::paramtab()
2384                .read()
2385                .ok()
2386                .and_then(|t| t.get("zshexit_functions").and_then(|p| p.u_arr.clone()))
2387                .unwrap_or_default();
2388            for fn_name in exit_arr {
2389                let exists = crate::ported::hashtable::shfunctab_lock()
2390                    .read()
2391                    .ok()
2392                    .map(|t| t.contains_key(&fn_name))
2393                    .unwrap_or(false);
2394                if exists {
2395                    let _ = self.execute_script_zsh_pipeline(&fn_name);
2396                }
2397            }
2398            ZSHEXIT_HOOK_DEPTH.with(|c| c.set(hook_depth));
2399        }
2400        // Preserve script status; trap body shouldn't override it.
2401        self.set_last_status(status);
2402
2403        let _ = status;
2404        Ok(self.last_status())
2405    }
2406    /// `execute_script` — see implementation.
2407    #[tracing::instrument(skip(self, script), fields(len = script.len()))]
2408    pub fn execute_script(&mut self, script: &str) -> Result<i32, String> {
2409        // lex+parse free ported + ZshCompiler is the only execution path.
2410        self.execute_script_zsh_pipeline(script)
2411    }
2412
2413    /// Run an ALREADY-PARSED program (the back half of
2414    /// `execute_script_zsh_pipeline`): compile the `ZshProgram` to a
2415    /// fusevm Chunk and run it. Used by the ported `loop()` REPL
2416    /// (Src/init.c:220 `execode`), which parses via `parse_event` and
2417    /// hands the program here through the `execute_program` exec hook.
2418    /// Returns the resulting `$?` (1 on a compile/run error).
2419    pub fn execute_program(&mut self, program: &crate::parse::ZshProgram) -> i32 {
2420        let chunk = crate::compile_zsh::ZshCompiler::new().compile(program);
2421        match self.run_chunk(chunk, "loop") {
2422            Ok(status) => status,
2423            Err(_) => 1,
2424        }
2425    }
2426
2427    /// Whether `name` is a known function. Checks the compiled-functions
2428    /// table and the autoload-pending registry — `autoload foo` should
2429    /// make `whence foo`/`type foo`/`functions foo` recognize `foo` as
2430    /// a function before it's actually loaded. Doesn't trigger autoload
2431    /// itself; use `maybe_autoload` first if you need to load before
2432    /// introspecting.
2433    pub fn function_exists(&self, name: &str) -> bool {
2434        // Either compiled (already loaded) or shfunctab has an
2435        // autoload stub with PM_UNDEFINED set (pending). Matches C's
2436        // `lookupshfunc(name)` semantics at `Src/exec.c:5215`.
2437        if self.functions_compiled.contains_key(name) {
2438            return true;
2439        }
2440        crate::ported::hashtable::shfunctab_lock()
2441            .read()
2442            .ok()
2443            .map(|t| t.get(name).is_some())
2444            .unwrap_or(false)
2445    }
2446
2447    /// Sorted list of every known function name (union of compiled + source).
2448    pub fn function_names(&self) -> Vec<String> {
2449        let mut set: std::collections::BTreeSet<String> = std::collections::BTreeSet::new();
2450        for k in self.functions_compiled.keys() {
2451            set.insert(k.clone());
2452        }
2453        for k in self.function_source.keys() {
2454            set.insert(k.clone());
2455        }
2456        set.into_iter().collect()
2457    }
2458
2459    /// Dispatch a function by name. Thin passthru — autoload-materialize
2460    /// the body if needed, build a synthetic `shfunc`, and hand off to
2461    /// the canonical `doshfunc` port (`Src/exec.c:5823` →
2462    /// `src/ported/exec.rs::doshfunc`). doshfunc owns ALL scope
2463    /// management (starttrapscope/endtrapscope, startparamscope/
2464    /// endparamscope, funcdepth bump, pipestats save/restore, scriptname
2465    /// snapshot, BREAKS/CONTFLAG/LOOPS/RETFLAG snapshot+restore, `$0`
2466    /// override via FUNCTIONARGZERO, etc.). The body run itself is the
2467    /// Rust-only adaptation passed via the `body_runner` closure because
2468    /// zshrs runs function bodies through fusevm bytecode (not C zsh's
2469    /// wordcode walker via `runshfunc`).
2470    ///
2471    /// Returns `None` when the name isn't a known function so the caller
2472    /// can fall through to external dispatch.
2473    /// Body-only counterpart to [`dispatch_function_call`] — runs
2474    /// the function body WITHOUT wrapping in `doshfunc`. Used as the
2475    /// `body_runner` closure target by `src/ported/` callers that
2476    /// already wrap their own `crate::ported::exec::doshfunc(...)`
2477    /// call (so going back through `dispatch_function_call` would
2478    /// double-wrap the scope). Mirrors C's `runshfunc(prog, wrappers,
2479    /// name)` at `exec.c:6042` from doshfunc's perspective.
2480    pub fn run_function_body_only(&mut self, name: &str, args: &[String]) -> Option<i32> {
2481        // Same Rust-port short-circuit as dispatch_function_call,
2482        // sans the doshfunc wrap.
2483        if let Some(rust_fn) = crate::compsys::router::try_rust_dispatch(name) {
2484            return Some(rust_fn(args));
2485        }
2486        // Bug #657 gap #2 — `_regex_arguments`-generated completion functions
2487        // live in a runtime registry, not the static router table (a plain
2488        // `fn` ptr can't carry the dynamic name). Consult that registry here
2489        // so `compdef mycmd` → `_comps[cmd]=mycmd` → this call routes to the
2490        // compiled regex state machine.
2491        if let Some(rc) =
2492            crate::compsys::ported::_regex_arguments::dispatch_if_registered(name)
2493        {
2494            return Some(rc);
2495        }
2496        // Autoload prelude (same as dispatch_function_call's).
2497        if !self.functions_compiled.contains_key(name) {
2498            // On-demand $fpath autoload for `_`-prefixed compsys helpers that
2499            // compinit didn't register as autoload stubs — see the fuller
2500            // note in dispatch_function_call.
2501            if name.starts_with('_') && crate::ported::utils::getshfunc(name).is_none() {
2502                let _ = self.execute_script_zsh_pipeline(&format!("autoload -rUz -- {name}"));
2503            }
2504            if let Some(stub) = crate::ported::utils::getshfunc(name) {
2505                // c:Src/exec.c:5684-5704 (loadautofn) —
2506                //     int noalias = noaliases;
2507                //     noaliases = (shf->node.flags & PM_UNALIASED);
2508                //     prog = getfpfunc(...);        /* parses the file */
2509                //     noaliases = noalias;
2510                // `autoload -U` records PM_UNALIASED (c:3354-3357), and its ONLY
2511                // effect is that the autoloaded body is PARSED with alias
2512                // expansion disabled. zshrs recorded the bit but never consulted
2513                // it, so a body calling `helper` picked up a caller-defined
2514                // `alias helper=...` — exactly what -U exists to prevent.
2515                let unaliased =
2516                    (stub.node.flags as u32 & crate::ported::zsh_h::PM_UNALIASED) != 0;
2517                let noalias_save = crate::ported::lex::noaliases(); // c:5684
2518                crate::ported::lex::set_noaliases(unaliased); // c:5697
2519                let _restore_noaliases = NoAliasesRestore(noalias_save); // c:5704
2520                if (stub.node.flags as u32 & PM_UNDEFINED) != 0 {
2521                    let boxed = Box::new(stub.clone());
2522                    let ptr = Box::into_raw(boxed);
2523                    let _ = crate::ported::exec::loadautofn(ptr, 0, 0, 0);
2524                    unsafe {
2525                        let _ = Box::from_raw(ptr);
2526                    }
2527                    // c:5657 — preserve the fpath dir + PM_LOADDIR across the
2528                    // funcdef re-register (which stamps filename="zsh"), so
2529                    // `whence -v` reports the source. See the twin site below.
2530                    let loaded_dir = crate::ported::utils::getshfunc(name)
2531                        .and_then(|f| f.filename)
2532                        .filter(|d| d != "zsh");
2533                    if let Some(body) = crate::ported::utils::getshfunc(name).and_then(|f| f.body) {
2534                        let registered = autoload_register_source(name, &body);
2535                        let _ = self.execute_script_zsh_pipeline(&registered);
2536                    }
2537                    if let Some(dir) = loaded_dir.as_deref() {
2538                        if let Ok(mut tab) = crate::ported::hashtable::shfunctab_lock().write() {
2539                            if let Some(shf) = tab.get_mut(name) {
2540                                crate::ported::exec::loadautofnsetfile(shf, Some(dir)); // c:5735
2541                            }
2542                        }
2543                    }
2544                } else if let Some(body) = stub.body.clone() {
2545                    let registered = autoload_register_source(name, &body);
2546                    let _ = self.execute_script_zsh_pipeline(&registered);
2547                }
2548            }
2549        }
2550        let chunk = self.functions_compiled.get(name).cloned()?;
2551        let seed_status = self.last_status();
2552        let _ = args; // fusevm body reads $1..$N from PPARAMS
2553        // Reuse a VM from the per-thread pool instead of building one from
2554        // scratch every call. `register_builtins` installs ~hundreds of
2555        // fn-pointer handlers into the VM's builtin_table; the table is
2556        // identical for every VM, so re-running it per function call was
2557        // pure waste (~130 profile samples in a tight call loop, the #2 hot
2558        // spot after option lookups). `VM::reset(chunk)` clears execution
2559        // state but PRESERVES builtin_table / host / JIT wiring, so a
2560        // recycled VM is call-ready without re-registration. Fresh VMs pay
2561        // the registration once. Nested calls simply check out additional
2562        // VMs; the pool grows to the max call depth. Re-entrant and
2563        // panic-safe: the VM is returned on the normal path below.
2564        let mut vm = crate::vm_pool::acquire(chunk);
2565        vm.last_status = seed_status;
2566        let _ = vm.run();
2567        Some(vm.last_status)
2568    }
2569
2570    pub fn dispatch_function_call(&mut self, name: &str, args: &[String]) -> Option<i32> {
2571        // Nested scope for `>(cmd)` fd ownership — builtins running
2572        // inside the function body must not close the CALLER's
2573        // pending psub fds (`myfn >(cmd)` keeps /dev/fd/N alive for
2574        // the whole function, like C's per-job filelist). See
2575        // PSUB_SCOPE_DEPTH in fusevm_bridge.rs.
2576        let _psub_scope = crate::fusevm_bridge::PsubScope::enter();
2577        // c:Src/exec.c — `disable -f NAME` flips the DISABLED flag on
2578        // the shfunctab entry. `lookupshfunc` (which dispatch consults)
2579        // returns NULL for DISABLED entries, falling through to PATH
2580        // lookup → "command not found". zshrs keeps the compiled body
2581        // in functions_compiled independently of the flag, so check
2582        // shfunctab and short-circuit when DISABLED is set. Bug #221
2583        // in docs/BUGS.md.
2584        let is_disabled = crate::ported::hashtable::shfunctab_lock()
2585            .read()
2586            .ok()
2587            .and_then(|t| {
2588                let entry = t.get_including_disabled(name)?;
2589                Some((entry.node.flags as u32 & crate::ported::zsh_h::DISABLED as u32) != 0)
2590            })
2591            .unwrap_or(false);
2592        if is_disabled {
2593            return None;
2594        }
2595        // zshrs-original: `[compsys] backend = "rust"` short-circuit.
2596        // When a `_NAME` has a Rust port AND the user opted into the
2597        // rust backend, run the Rust fn directly here — but still
2598        // through the canonical doshfunc scope-management path below
2599        // (we synthesize a body_runner from the fn pointer). Router
2600        // returns None for names without a Rust port → graceful
2601        // fallback to the shfunc autoload path.
2602        //
2603        // Note: `compcore::callcompfunc` (the compsys entry hit by
2604        // Tab) wraps doshfunc itself per C `compcore.c:835`, so the
2605        // Rust _main_complete dispatch lands HERE only when called
2606        // from a non-compcore caller (e.g. a user shell script
2607        // directly invoking `_main_complete`). The doshfunc scope
2608        // wrap below applies uniformly to both.
2609        let direct_rust_fn: Option<fn(&[String]) -> i32> =
2610            crate::compsys::router::try_rust_dispatch(name);
2611        // Autoload prelude skipped when a Rust port wins — no upstream
2612        // shell function to load.
2613        if direct_rust_fn.is_none() && !self.functions_compiled.contains_key(name) {
2614            // compinit bulk-loads $_comps from the dump/cache but (unlike
2615            // zsh's `compdef -na`, which `autoload -rUz`s every completer)
2616            // does NOT register the completer functions as autoload stubs.
2617            // So a shell completer WITHOUT a Rust port (e.g. `_cat`, or the
2618            // helpers it calls: `_pick_variant`, `_arguments`…) had no
2619            // shfunctab entry — getshfunc returned None, nothing compiled,
2620            // dispatch returned None, and the command's completion silently
2621            // produced nothing. Register `_`-prefixed helpers from $fpath on
2622            // demand (mirrors a fresh `autoload -Uz NAME`) so getshfunc finds
2623            // the stub below and loadautofn reads the file. Gated to `_`
2624            // names so ordinary commands still fall through to PATH.
2625            if name.starts_with('_') && crate::ported::utils::getshfunc(name).is_none() {
2626                let _ = self.execute_script_zsh_pipeline(&format!("autoload -rUz -- {name}"));
2627            }
2628            if let Some(stub) = crate::ported::utils::getshfunc(name) {
2629                // c:Src/exec.c:5684-5704 (loadautofn) — `autoload -U` records
2630                // PM_UNALIASED, whose ONLY effect is that the autoloaded body is
2631                // PARSED with alias expansion disabled:
2632                //     int noalias = noaliases;
2633                //     noaliases = (shf->node.flags & PM_UNALIASED);
2634                //     prog = getfpfunc(...);        /* parses the file */
2635                //     noaliases = noalias;
2636                let unaliased =
2637                    (stub.node.flags as u32 & crate::ported::zsh_h::PM_UNALIASED) != 0;
2638                let noalias_save = crate::ported::lex::noaliases(); // c:5684
2639                crate::ported::lex::set_noaliases(unaliased); // c:5697
2640                                                              // c:5704 — restored on EVERY exit from this block, including the
2641                                                              // early `return Some(1)` paths below.
2642                let _restore_noaliases = NoAliasesRestore(noalias_save);
2643                if (stub.node.flags as u32 & PM_UNDEFINED) != 0 {
2644                    let boxed = Box::new(stub.clone());
2645                    let ptr = Box::into_raw(boxed);
2646                    let load_rc = crate::ported::exec::loadautofn(ptr, 0, 0, 0);
2647                    unsafe {
2648                        let _ = Box::from_raw(ptr);
2649                    }
2650                    // c:Src/exec.c:5657 loadautofnsetfile — capture the fpath
2651                    // directory loadautofn wrote so it can be restored (as an
2652                    // absolutized path with PM_LOADDIR) after the funcdef pipeline
2653                    // below clobbers `filename` to scriptfilename ("zsh"). Without
2654                    // this, `whence -v <autoloaded>` printed "from zsh".
2655                    let loaded_dir = crate::ported::utils::getshfunc(name)
2656                        .and_then(|f| f.filename)
2657                        .filter(|d| d != "zsh");
2658                    if let Some(body) = crate::ported::utils::getshfunc(name).and_then(|f| f.body) {
2659                        let registered = autoload_register_source(name, &body);
2660                        // c:Src/exec.c:5739 — the ksh-autoload body runs via
2661                        // `execode(prog, 1, 0, "evalautofunc")` at the function
2662                        // invocation's locallevel, so a `return`/`break`/
2663                        // `continue` inside the file body is CONTAINED to the
2664                        // autoload call. add-zle-hook-widget's first line is
2665                        // `zmodload -e zsh/zle || return 1`; when a plugin has
2666                        // leaked `ksh_autoload` on (e.g. a bare `emulate sh`),
2667                        // that `return` must NOT propagate out and abort the
2668                        // caller's precmd/shell (zsh warns "not defined by file"
2669                        // and CONTINUES). Save & restore the control-flow flags
2670                        // around the body run to reinstate that boundary.
2671                        {
2672                            use crate::ported::builtin::{
2673                                BREAKS, EXIT_PENDING, EXIT_VAL, RETFLAG, SHELL_EXITING,
2674                            };
2675                            use std::sync::atomic::Ordering::Relaxed;
2676                            // c:Src/exec.c:5739 — `execode(prog, 1, 0,
2677                            // "evalautofunc")` runs the file body as part of the
2678                            // autoload invocation. add-zle-hook-widget's
2679                            // `zmodload -e zsh/zle || return 1` sits at the
2680                            // file's TOP LEVEL (above its anon-func wrapper); at
2681                            // script scope a top-level `return` is a shell EXIT,
2682                            // so running the body as a plain script aborted the
2683                            // caller's precmd/shell. `return` is contained when
2684                            // `locallevel || sourcelevel` (bin_return, c:5840) —
2685                            // raise SOURCELEVEL (the file-source counter, which
2686                            // unlike locallevel does NOT open a local scope, so
2687                            // the body's global assignments still land globally)
2688                            // so the top-level `return` returns from the load
2689                            // instead of exiting. Save/restore the control-flow
2690                            // flags so nothing leaks — matching zsh's
2691                            // warn-and-continue.
2692                            use crate::ported::init::sourcelevel;
2693                            let saved_retflag = RETFLAG.swap(0, Relaxed);
2694                            let saved_breaks = BREAKS.swap(0, Relaxed);
2695                            let saved_exit_pending = EXIT_PENDING.swap(0, Relaxed);
2696                            let saved_exit_val = EXIT_VAL.swap(0, Relaxed);
2697                            let saved_shell_exiting = SHELL_EXITING.swap(0, Relaxed);
2698                            sourcelevel.fetch_add(1, Relaxed);
2699                            let _ = self.execute_script_zsh_pipeline(&registered);
2700                            sourcelevel.fetch_sub(1, Relaxed);
2701                            RETFLAG.store(saved_retflag, Relaxed);
2702                            BREAKS.store(saved_breaks, Relaxed);
2703                            EXIT_PENDING.store(saved_exit_pending, Relaxed);
2704                            EXIT_VAL.store(saved_exit_val, Relaxed);
2705                            SHELL_EXITING.store(saved_shell_exiting, Relaxed);
2706                        }
2707                        if let Some(dir) = loaded_dir.as_deref() {
2708                            if let Ok(mut tab) = crate::ported::hashtable::shfunctab_lock().write() {
2709                                if let Some(shf) = tab.get_mut(name) {
2710                                    crate::ported::exec::loadautofnsetfile(shf, Some(dir)); // c:5735
2711                                }
2712                            }
2713                        }
2714                        if !self.functions_compiled.contains_key(name) {
2715                            // c:Src/exec.c:5742-5745 — ksh-style load ran
2716                            // the file (`execode`, "evalautofunc") but it
2717                            // didn't define NAME:
2718                            //   `zwarn("%s: function not defined by file", n);`
2719                            // The wrap/strip zsh-style paths always define
2720                            // NAME, so reaching here means the verbatim run
2721                            // failed to — same condition as C.
2722                            crate::ported::utils::zwarn(&format!(
2723                                "{}: function not defined by file",
2724                                name
2725                            ));
2726                            return Some(1);
2727                        }
2728                    } else if load_rc != 0 {
2729                        // c:Src/exec.c:5713-5719 / 5635-5644 —
2730                        // `execautofn`'s `if (!loadautofn(...)) return 1`
2731                        // propagates the loadautofn failure as the
2732                        // command's exit status. zshrs's previous
2733                        // path returned None here, falling through to
2734                        // execute_external which emitted a SECOND
2735                        // diagnostic (`command not found: NAME`) on
2736                        // top of loadautofn's `function definition
2737                        // file not found`. Mirror C: when load failed
2738                        // AND the stub still has no body, surface
2739                        // status=1 so the caller does NOT fall back
2740                        // to PATH search.
2741                        return Some(1);
2742                    }
2743                } else if let Some(body) = stub.body.clone() {
2744                    // c:Src/Modules/parameter.c::setpmfunction — function
2745                    // registered via `functions[name]=body` lives in
2746                    // shfunctab with `body` set but `functions_compiled`
2747                    // empty (the canonical port stores the parsed eprog,
2748                    // not a fusevm Chunk). Lazy-compile here by feeding
2749                    // the body through the standard funcdef pipeline so
2750                    // the next CallFunction op finds the chunk.
2751                    let registered = autoload_register_source(name, &body);
2752                    let _ = self.execute_script_zsh_pipeline(&registered);
2753                }
2754            }
2755        }
2756        // When a Rust port is registered, skip the fusevm Chunk
2757        // lookup entirely — the body_runner closure below will run
2758        // the Rust fn pointer directly. Otherwise require a compiled
2759        // chunk for the autoloaded body.
2760        let chunk_opt = if direct_rust_fn.is_some() {
2761            None
2762        } else {
2763            Some(self.functions_compiled.get(name).cloned()?)
2764        };
2765
2766        // zshrs-specific bookkeeping that doshfunc doesn't own:
2767        // - prompt_funcstack (PS4 trace) push/pop
2768        // - local_scope_depth FUNCNEST guard
2769        //
2770        // c:Src/exec.c::funcnest_check — C zsh allows FUNCNEST=500 by
2771        // default. zshrs's per-call stack usage is heavier (vm_helper
2772        // state, fusevm closures, parse buffers), so on the default 8MB
2773        // stack a deep recursion overflowed around depth ~80-120 and
2774        // crashed. That is now fixed at the source: the shell runs on a
2775        // 512MB-stack thread (see bins/zshrs.rs::main), which comfortably
2776        // fits FUNCNEST (500) nested heavy frames. So the effective limit
2777        // is the user's FUNCNEST (default 500), matching zsh — no premature
2778        // clamp — with a generous hard ceiling as a last-resort backstop
2779        // that stays well under the big stack's capacity. Bug #519 (the
2780        // crash) / #643 (the false-positive clamp at 80 that broke
2781        // legitimately deep recursion). The authoritative FUNCNEST error
2782        // is also enforced in doshfunc (exec.rs) on the FS_FUNC depth.
2783        const FUNCNEST_RUST_CEILING: usize = 6000;
2784        let funcnest_user: usize = self
2785            .scalar("FUNCNEST")
2786            .and_then(|s| s.parse().ok())
2787            .unwrap_or(500);
2788        let funcnest_limit = funcnest_user.min(FUNCNEST_RUST_CEILING);
2789        if self.local_scope_depth >= funcnest_limit {
2790            eprintln!(
2791                "{}: maximum nested function level reached; increase FUNCNEST?",
2792                name
2793            );
2794            return Some(1);
2795        }
2796        let display_name = if name.starts_with("_zshrs_anon_") {
2797            "(anon)".to_string()
2798        } else {
2799            name.to_string()
2800        };
2801        let line_base = self.function_line_base.get(name).copied().unwrap_or(0);
2802        let def_file = self.function_def_file.get(name).cloned().flatten();
2803        self.prompt_funcstack
2804            .push((name.to_string(), line_base, def_file));
2805        self.local_scope_depth += 1;
2806
2807        // Synthetic shfunc for doshfunc — carries the name + def-file
2808        // info so funcstack push gets a proper filename. funcdef/body
2809        // stay None because the wordcode body is irrelevant on this
2810        // path (body_runner runs the fusevm Chunk directly).
2811        // c:Src/exec.c:5390-5410 — execfuncdef records the
2812        // current `scriptfilename` on the shfunc at definition
2813        // time so funcsourcetrace can show file:line of the
2814        // function's source. The function_def_file map stores
2815        // this; fall back to the live scriptfilename so dynamic
2816        // / non-`compile_funcdef`-routed definitions still get a
2817        // sensible filename. Without the fallback, the synth_shf
2818        // saw None and the funcstack push at exec.rs:5719
2819        // defaulted to an empty string, which the funcsourcetrace
2820        // getfn rendered as `:N` (or worse, picked up the
2821        // function name from a parallel field). Bug #515.
2822        let synth_filename = self
2823            .function_def_file
2824            .get(name)
2825            .cloned()
2826            .flatten()
2827            .or_else(|| self.scriptfilename.clone());
2828        // c:Src/exec.c:5409 — `shf->lineno = lineno;` (def line).
2829        // `function_line_base[name]` carries compile_funcdef's
2830        // `lineno_offset = first_body_line - 1` — equals the def line
2831        // for multi-line `f() {\n body }` but underflows to 0 for
2832        // INLINE `f() { body }` (def and body share a line). zsh's
2833        // funcsourcetrace reports the def line as 1-based, so clamp
2834        // to >= 1 to handle the inline case without rebuilding
2835        // line tracking through the parser. Bug #396.
2836        let synth_lineno = std::cmp::max(
2837            1i64,
2838            self.function_line_base.get(name).copied().unwrap_or(0),
2839        );
2840        let mut synth_shf = crate::ported::zsh_h::shfunc {
2841            node: crate::ported::zsh_h::hashnode {
2842                next: None,
2843                nam: display_name.clone(),
2844                flags: 0,
2845            },
2846            filename: synth_filename,
2847            lineno: synth_lineno,
2848            funcdef: None,
2849            redir: None,
2850            sticky: None,
2851            body: None,
2852        };
2853        // doshargs: C convention — argv[0] = function name (for
2854        // FUNCTIONARGZERO `$0`), argv[1..] = real positional args.
2855        let mut doshargs: Vec<String> = vec![display_name.clone()];
2856        doshargs.extend(args.iter().cloned());
2857
2858        // Seed `$?` with the parent's last status — C zsh's
2859        // doshfunc inherits lastval automatically because it's a
2860        // process-global; the fusevm VM creates a fresh
2861        // `vm.last_status = 0` per call, so we mirror the inherit
2862        // explicitly. Without this, a function reading `$?` BEFORE
2863        // running any command sees 0 instead of the caller's status.
2864        let seed_status = self.last_status();
2865        let body_args: Vec<String> = args.to_vec();
2866        let body_runner = move || -> i32 {
2867            // Branch: Rust port (direct fn call) or fusevm Chunk
2868            // (autoloaded shell body). Both run INSIDE doshfunc's
2869            // scope so prologue/epilogue applies identically.
2870            if let Some(f) = direct_rust_fn {
2871                return f(&body_args);
2872            }
2873            let chunk = chunk_opt
2874                .as_ref()
2875                .expect("chunk_opt must be Some when direct_rust_fn is None");
2876            crate::fusevm_disasm::maybe_print_stdout(
2877                &format!(
2878                    "function:{}",
2879                    body_args.first().map(|s| s.as_str()).unwrap_or("")
2880                ),
2881                chunk,
2882            );
2883            let mut vm = crate::vm_pool::acquire(chunk.clone());
2884            vm.last_status = seed_status;
2885            let _ = vm.run();
2886            vm.last_status
2887        };
2888
2889        // Enter executor context BEFORE doshfunc so the body_runner's
2890        // VM builtins can `with_executor(...)` to reach this state.
2891        let _ctx = ExecutorContext::enter(self);
2892        let status = crate::ported::exec::doshfunc(&mut synth_shf, doshargs, false, body_runner);
2893        drop(_ctx);
2894
2895        self.prompt_funcstack.pop();
2896        self.local_scope_depth -= 1;
2897
2898        // Honor explicit `return N` from inside the function body.
2899        if let Some(ret) = self.returning.take() {
2900            self.set_last_status(ret);
2901            Some(ret)
2902        } else {
2903            self.set_last_status(status);
2904            Some(status)
2905        }
2906    }
2907
2908    pub(crate) fn execute_external(
2909        &mut self,
2910        cmd: &str,
2911        args: &[String],
2912        redirects: &[Redirect],
2913    ) -> Result<i32, String> {
2914        // FORK_EVENTS is bumped at the real spawn site inside
2915        // execute_external_bg — this entry is only ONE of several
2916        // callers of that spawn (the common static-head command path
2917        // calls execute_external_bg directly), so counting here would
2918        // miss `time sleep 0` while double-counting this path.
2919        self.execute_external_bg(cmd, args, redirects, false)
2920    }
2921
2922    fn execute_external_bg(
2923        &mut self,
2924        cmd: &str,
2925        args: &[String],
2926        _redirects: &[Redirect],
2927        background: bool,
2928    ) -> Result<i32, String> {
2929        tracing::trace!(cmd, bg = background, "exec external");
2930        // !!! WARNING: RUST-ONLY — NO C COUNTERPART !!!
2931        // Native (Rust) plugin builtins registered via `zmodload -R`
2932        // (src/extensions/plugin_host.rs). fusevm compiles unknown
2933        // names into external execution, so a plugin command arrives
2934        // here as an "external". Resolve it BEFORE the PATH-unset guard
2935        // and the process spawn — plugin builtins are in-process and
2936        // need no PATH. This is the analog of C's `resolvebuiltin`
2937        // slot (Src/exec.c:2700), which likewise runs before the fork.
2938        // Bare names only: a `/`-qualified token is always a filesystem
2939        // path, never a plugin command name. Runs synchronously even
2940        // when backgrounded — zshrs is non-forking and an in-process
2941        // builtin has nothing to background.
2942        if !cmd.contains('/') {
2943            if let Some(status) = crate::plugin_host::dispatch(cmd, args) {
2944                return Ok(status);
2945            }
2946        }
2947        // c:Src/exec.c:824-876 — when arg0 has no `/`, C zsh requires
2948        // a PATH search. With PATH unset, the search yields no hit
2949        // and C emits `command not found: <cmd>`. Rust's
2950        // `Command::new(name)` delegates to libc `execvp`, which on
2951        // many platforms falls back to a built-in default PATH when
2952        // the env entry is missing — so `unset PATH; ls` still finds
2953        // `/bin/ls` and runs it, breaking the security boundary the
2954        // unset is supposed to establish (#416). Gate explicitly:
2955        // when cmd is a bare name (no `/`) and zshrs's own PATH
2956        // param is unset OR empty, emit the canonical
2957        // "command not found" diagnostic and return 127 BEFORE
2958        // touching libc.
2959        if !cmd.contains('/') {
2960            let path_set_and_nonempty = crate::ported::params::getsparam("PATH")
2961                .map(|p| !p.is_empty())
2962                .unwrap_or(false);
2963            if !path_set_and_nonempty {
2964                let sn =
2965                    crate::ported::utils::scriptname_get().unwrap_or_else(|| "zshrs".to_string());
2966                // c:Src/exec.c:811 `zerr("command not found: %s", arg0)`
2967                // — the diagnostic carries the CURRENT line, not a
2968                // hardcoded 1. `lineno()` is the same counter zwarning
2969                // (utils.rs:179) uses and is live during VM execution
2970                // (verified: read-only / div-by-zero errors already
2971                // report the right line). Emitted directly (not via
2972                // zerr) to avoid setting errflag — command-not-found is
2973                // non-fatal and the script must continue.
2974                eprintln!(
2975                    "{}:{}: command not found: {}",
2976                    sn,
2977                    crate::ported::lex::lineno(),
2978                    cmd
2979                );
2980                return Ok(127);
2981            }
2982        }
2983        // c:Src/exec.c:2700-2724 resolvebuiltin — names registered via
2984        // `zmodload -ab MOD NAME` resolve through builtintab BEFORE
2985        // PATH search in C (execcmd's builtin lookup precedes the
2986        // external fork). Names the compiler didn't know as builtins
2987        // land here; consult the autoload ledger, load the module,
2988        // and re-dispatch through the builtin chokepoint. Without
2989        // this, `zmodload -ab zsh/bogus mybltn; mybltn` skipped the
2990        // C autoload-fire entirely (PATH miss → 127 instead of the
2991        // load_module diagnostic → 1).
2992        if !cmd.contains('/') {
2993            if let Some(rc) = crate::ported::module::resolvebuiltin(cmd) {
2994                if rc != 0 {
2995                    return Ok(1);
2996                }
2997                return Ok(crate::fusevm_bridge::dispatch_builtin_raw(
2998                    cmd,
2999                    args.to_vec(),
3000                ));
3001            }
3002        }
3003        let mut command = Command::new(cmd);
3004        // c:Src/exec.c execute — C unmetafies every arg before the
3005        // execve (the child must see raw bytes, not the shell's
3006        // internal Meta encoding). Args carrying Meta-char pairs
3007        // (from `$'\xff'` etc., vm_helper::meta_encode_byte) are
3008        // decoded to raw bytes via OsStr; plain args pass through
3009        // unchanged. Bug #127.
3010        for a in args {
3011            if a.contains('\u{83}') {
3012                use std::os::unix::ffi::OsStrExt as _;
3013                command.arg(std::ffi::OsStr::from_bytes(&unmetafy_str(a)));
3014            } else {
3015                command.arg(a);
3016            }
3017        }
3018
3019        // Redirect handling lives in fusevm's WithRedirectsBegin/End
3020        // ops at compile time; `_redirects` arrives empty here.
3021
3022        // c:Src/jobs.c — `time` reports only on JOBS (forked work). This
3023        // is the single chokepoint where an external process is actually
3024        // spawned (both fg and bg, all callers), AFTER the
3025        // command-not-found and resolvebuiltin early-returns above — so
3026        // counting here makes BUILTIN_TIME_SUBLIST report `time sleep 0`
3027        // / `time /usr/bin/true` (external → fork) while staying silent
3028        // for `time true` (builtin, never reaches this point). The
3029        // subshell entry counts separately (fusevm_bridge.rs:9573).
3030        FORK_EVENTS.fetch_add(1, std::sync::atomic::Ordering::Relaxed);
3031
3032        if background {
3033            match command.spawn() {
3034                Ok(child) => {
3035                    let pid = child.id();
3036                    let cmd_str = format!("{} {}", cmd, args.join(" "));
3037                    let job_id = self.jobs.add_job(child, cmd_str, JobState::Running);
3038                    println!("[{}] {}", job_id, pid);
3039                    Ok(0)
3040                }
3041                Err(e) => {
3042                    let sn = crate::ported::utils::scriptname_get()
3043                        .unwrap_or_else(|| "zshrs".to_string());
3044                    if e.kind() == io::ErrorKind::NotFound {
3045                        // zsh: absolute paths emit "no such file or
3046                        // directory" (the OS error, since the path was
3047                        // tried directly), not "command not found"
3048                        // (which implies PATH search).
3049                        if cmd.starts_with('/') {
3050                            eprintln!(
3051                                "{}:{}: no such file or directory: {}",
3052                                sn,
3053                                crate::ported::lex::lineno(),
3054                                cmd
3055                            );
3056                        } else {
3057                            eprintln!(
3058                                "{}:{}: command not found: {}",
3059                                sn,
3060                                crate::ported::lex::lineno(),
3061                                cmd
3062                            );
3063                        }
3064                        Ok(127)
3065                    } else {
3066                        Err(format!("{}: {}: {}", sn, cmd, e))
3067                    }
3068                }
3069            }
3070        } else {
3071            // Queue signals across the wait so zshrs's SIGCHLD reaper
3072            // (waitpid(-1) in wait_for_processes, delivered on any
3073            // thread) can't reap this child before Command::status()
3074            // does — otherwise status() fails with ECHILD ("No child
3075            // processes"). See ForegroundWaitGuard in fusevm_bridge.
3076            let status_result = {
3077                let _wait_guard = crate::fusevm_bridge::ForegroundWaitGuard::enter();
3078                command.status()
3079            };
3080            match status_result {
3081                Ok(status) => Ok(status.code().unwrap_or(1)),
3082                Err(e) => {
3083                    // Use scriptname (the user-visible shell identifier
3084                    // — "zsh" in --zsh mode, "zshrs" otherwise) instead
3085                    // of a hardcoded "zshrs:" prefix so --zsh-mode
3086                    // diagnostics byte-match C zsh's stderr format.
3087                    let sn = crate::ported::utils::scriptname_get()
3088                        .unwrap_or_else(|| "zshrs".to_string());
3089                    if e.kind() == io::ErrorKind::NotFound {
3090                        // c:Src/exec.c — `command_not_found_handler` user
3091                        // hook: when a command lookup fails AND a function
3092                        // by that name is defined, call it with the cmd
3093                        // name + original args and return its rc instead
3094                        // of the default 127 + "command not found" error.
3095                        // Documented in zshmisc(1) under "Special
3096                        // Functions". Bug #426.
3097                        //
3098                        // The hook only fires for bare names (PATH search
3099                        // failed); absolute paths skip it and emit the
3100                        // OS-error path below — matches zsh behavior.
3101                        if !cmd.starts_with('/') {
3102                            let mut hook_args = Vec::with_capacity(args.len() + 1);
3103                            hook_args.push(cmd.to_string());
3104                            hook_args.extend_from_slice(args);
3105                            if let Some(rc) =
3106                                self.dispatch_function_call("command_not_found_handler", &hook_args)
3107                            {
3108                                return Ok(rc);
3109                            }
3110                        }
3111                        // zsh: absolute paths emit "no such file or
3112                        // directory" (the OS error, since the path was
3113                        // tried directly), not "command not found"
3114                        // (which implies PATH search).
3115                        if cmd.starts_with('/') {
3116                            eprintln!(
3117                                "{}:{}: no such file or directory: {}",
3118                                sn,
3119                                crate::ported::lex::lineno(),
3120                                cmd
3121                            );
3122                        } else {
3123                            eprintln!(
3124                                "{}:{}: command not found: {}",
3125                                sn,
3126                                crate::ported::lex::lineno(),
3127                                cmd
3128                            );
3129                        }
3130                        Ok(127)
3131                    } else if e.kind() == io::ErrorKind::PermissionDenied {
3132                        // zsh: non-executable file → "permission denied"
3133                        // on stderr and exit 126 (POSIX "command found
3134                        // but not executable").
3135                        eprintln!(
3136                            "{}:{}: permission denied: {}",
3137                            sn,
3138                            crate::ported::lex::lineno(),
3139                            cmd
3140                        );
3141                        Ok(126)
3142                    } else {
3143                        Err(format!("{}: {}: {}", sn, cmd, e))
3144                    }
3145                }
3146            }
3147        }
3148    }
3149    /// Parse `cmd_str` via parse_init+parse and pull out the first Simple
3150    /// command's words, untokenized + variable-expanded, ready to spawn
3151    /// as argv. Used by process-substitution where we need raw argv to
3152    /// hand to `Command::new`. Returns empty vec if the cmd isn't a
3153    /// simple shape — pipelines / compound forms aren't process-sub
3154    /// friendly anyway.
3155    fn simple_cmd_words(&mut self, cmd_str: &str) -> Vec<String> {
3156        // Mirror Src/init.c-style errflag save/clear/check around the
3157        // parse. Process-sub argv extraction silently bails on syntax
3158        // errors (matches zsh's behavior when the inner command can't
3159        // be parsed).
3160        let saved_errflag = errflag.load(Ordering::Relaxed);
3161        errflag.fetch_and(!ERRFLAG_ERROR, Ordering::Relaxed);
3162        // Context-isolated nested parse (c:Src/exec.c:283 parse_string) —
3163        // same rationale as run_command_substitution: process-sub argv
3164        // extraction runs during execution and must not clobber the outer
3165        // single-event reader's lexer/input position.
3166        let prog = parse_isolated(cmd_str);
3167        let parse_failed = (errflag.load(Ordering::Relaxed) & ERRFLAG_ERROR) != 0;
3168        errflag.store(saved_errflag, Ordering::Relaxed);
3169        if parse_failed {
3170            return Vec::new();
3171        }
3172        let first = match prog.lists.first() {
3173            Some(l) => l,
3174            None => return Vec::new(),
3175        };
3176        let pipe = &first.sublist.pipe;
3177        if let crate::parse::ZshCommand::Simple(simple) = &pipe.cmd {
3178            simple
3179                .words
3180                .iter()
3181                .map(|w| {
3182                    // Untokenize then variable-expand — text-based
3183                    // word expansion for the spawned argv.
3184                    let untoked = crate::lex::untokenize(w);
3185                    singsub(&untoked)
3186                })
3187                .collect()
3188        } else {
3189            Vec::new()
3190        }
3191    }
3192    /// `run_command_substitution` — see implementation.
3193    pub fn run_command_substitution(&mut self, cmd_str: &str) -> String {
3194        // `$(< FILE)` — zsh shorthand for "read FILE contents". Faster
3195        // than spawning `cat`. The leading `<` (after stripping
3196        // whitespace) means "read this file". Trailing newline is
3197        // stripped (same as command-substitution).
3198        let trimmed = cmd_str.trim_start();
3199        // Only treat as `$(<file)` shorthand when the SINGLE leading `<`
3200        // is followed by a filename, not another `<`. `$(<<<"hi" cat)`
3201        // starts with `<<<` (here-string) and must go through the full
3202        // parse path, not the read-file shortcut.
3203        if let Some(rest) = trimmed.strip_prefix('<').filter(|s| !s.starts_with('<')) {
3204            let filename = rest.trim();
3205            // c:Src/lex.c — the `$(<file)` shortcut ONLY applies when
3206            // the body is exactly `<` + ONE word. Anything else (extra
3207            // args, redirects, semicolons, pipes) is a regular command
3208            // list and must go through the full parse path so `2>/dev/null`
3209            // / `>file` / `|cmd` / `; next` etc. work. Without this
3210            // gate, `$(< file 2>/dev/null)` treated `file 2>/dev/null`
3211            // as the literal filename and errored on the missing file.
3212            // Bug #615.
3213            let is_single_word = !filename.is_empty()
3214                && !filename.chars().any(|c| {
3215                    matches!(
3216                        c,
3217                        ' ' | '\t'
3218                            | '\n'
3219                            | ';'
3220                            | '&'
3221                            | '|'
3222                            | '<'
3223                            | '>'
3224                            | '('
3225                            | ')'
3226                            | '`'
3227                            | '"'
3228                            | '\''
3229                    )
3230                });
3231            if is_single_word {
3232                // Expand any leading $ / tilde in the filename so
3233                // `$(< $f)` and `$(< ~/x)` work.
3234                let resolved = if filename.contains('$') || filename.starts_with('~') {
3235                    singsub(filename)
3236                } else {
3237                    filename.to_string()
3238                };
3239                let resolved = resolved.to_string();
3240                match fs::read_to_string(&resolved) {
3241                    Ok(contents) => {
3242                        return contents.trim_end_matches('\n').to_string();
3243                    }
3244                    Err(_) => {
3245                        eprintln!("zshrs:1: no such file or directory: {}", resolved);
3246                        return String::new();
3247                    }
3248                }
3249            }
3250            // Multi-word / has-redirects → fall through to full parse.
3251        }
3252
3253        // Port of getoutput(char *cmd, int qt) from Src/exec.c. Parse and compile via
3254        // the lex+parse free ported + ZshCompiler pipeline, run on a
3255        // sub-VM with the host wired up. Stdout is captured through
3256        // an in-process pipe via dup2 — no fork. The sub-VM emits
3257        // Op::Exec for unknown command names, which forks/execs
3258        // through the host.
3259
3260        // Set up the stdout-capture pipe. We dup the original stdout
3261        // so post-run we can restore it; the write end is dup2'd onto
3262        // STDOUT_FILENO so all output the sub-VM emits (including from
3263        // forked children, which inherit fd 1) lands in the pipe.
3264        //
3265        // c:Src/exec.c:4753 — `if (mpipe(pipes) < 0)`. mpipe (c:5160)
3266        // moves BOTH pipe ends to fd >= 10 via movefd and marks them
3267        // FDT_INTERNAL. This is load-bearing: zsh's invariant is that
3268        // shell-internal fds never live below 10, so user redirections
3269        // like `exec 9>&-` (which close fd<10 unconditionally, no
3270        // FDT_INTERNAL guard — c:Src/exec.c:3856-3868) can never hit
3271        // them. A raw pipe() here landed the read end on fd 9 when
3272        // fresh-HOME init held fds 3-7, and A04redirect's %prep
3273        // `exec 9>&-` closed our own capture pipe → SIGPIPE killed
3274        // the whole shell.
3275        let (read_fd, write_fd) = {
3276            let mut fds = [0i32; 2];
3277            if crate::ported::exec::mpipe(&mut fds) < 0 {
3278                return String::new();
3279            }
3280            (fds[0], fds[1])
3281        };
3282        // c:Src/utils.c:1996 — `movefd(dup(fd))`: saved copies of the
3283        // user-visible fds are shell-internal, so they too must live
3284        // at fd >= 10 / FDT_INTERNAL.
3285        let saved_stdout = crate::ported::utils::movefd(unsafe { libc::dup(libc::STDOUT_FILENO) });
3286        if saved_stdout < 0 {
3287            crate::ported::utils::zclose(read_fd);
3288            crate::ported::utils::zclose(write_fd);
3289            return String::new();
3290        }
3291        // Flush Rust's stdout BufWriter against the ORIGINAL fd before
3292        // dup2 swaps fd 1 to the capture pipe. Without this, bytes left
3293        // buffered by a prior `print -n` get drained to fd 1 AFTER the
3294        // dup2, which routes them into the cmd-subst's pipe — they end
3295        // up in the captured result and disappear from terminal output.
3296        //
3297        // Bug #10 in docs/BUGS.md — `print -n "A"; v=$(true); print -n
3298        // "B"; v=$(true); print -n "C"; echo` printed only `C` because
3299        // `A` and `B` were redirected into the empty cmd-subst's pipe
3300        // and discarded as its "output". C zsh's getoutput() forks, so
3301        // the child inherits the buffer COPY and the parent's buffer
3302        // stays untouched; zshrs runs cmd-subst in-process so the
3303        // parent buffer is the only one — must flush before the swap.
3304        let _ = io::stdout().flush();
3305        // c:Bug #56 — publish the saved outer stdout so a trap firing
3306        // during the nested run routes body output to the parent's
3307        // real stdout instead of the cmdsub's pipe-bound fd 1.
3308        // c:Src/utils.c:1996 — movefd(dup(fd)): internal fd, keep >= 10.
3309        let saved_stderr_for_trap =
3310            crate::ported::utils::movefd(unsafe { libc::dup(libc::STDERR_FILENO) });
3311        crate::fusevm_bridge::CMDSUBST_OUTER_FDS
3312            .with(|s| s.borrow_mut().push((saved_stdout, saved_stderr_for_trap)));
3313        unsafe {
3314            libc::dup2(write_fd, libc::STDOUT_FILENO);
3315        }
3316        // zclose (not raw close) so the FDT_INTERNAL mark set by mpipe
3317        // is cleared from fdtable — c:Src/utils.c:2137.
3318        crate::ported::utils::zclose(write_fd);
3319
3320        // Drain the capture pipe CONCURRENTLY on a background reader
3321        // thread. The sub-VM (and any children it forks, which inherit
3322        // fd 1) writes to the pipe; reading it only AFTER vm.run()
3323        // returns deadlocks the moment the output exceeds the OS pipe
3324        // buffer (~64KB): the writer blocks on a full pipe that nothing
3325        // is draining, so vm.run() never returns. `$(alias)` over
3326        // zpwr's 2000+ aliases (~177KB) hung the whole shell a few
3327        // prompts in (thefuck's `fuck()` init runs `TF_SHELL_ALIASES=
3328        // $(alias)`). C's getoutput (Src/exec.c) forks the writer child
3329        // so the parent reads concurrently; this reader thread is the
3330        // in-process analog. It does only raw fd reads (no shell state /
3331        // thread-locals). EOF arrives once every write end closes — fd 1
3332        // restored below plus any forked child exiting.
3333        let reader_handle = std::thread::spawn(move || {
3334            let mut buf: Vec<u8> = Vec::new();
3335            let mut chunk = [0u8; 65536];
3336            loop {
3337                let n = unsafe {
3338                    libc::read(
3339                        read_fd,
3340                        chunk.as_mut_ptr() as *mut libc::c_void,
3341                        chunk.len(),
3342                    )
3343                };
3344                if n < 0 {
3345                    // Retry on EINTR (a signal interrupted the read);
3346                    // any other error ends the drain.
3347                    let e = std::io::Error::last_os_error().raw_os_error().unwrap_or(0);
3348                    if e == libc::EINTR {
3349                        continue;
3350                    }
3351                    break;
3352                }
3353                if n == 0 {
3354                    break; // EOF — all write ends closed.
3355                }
3356                buf.extend_from_slice(&chunk[..n as usize]);
3357            }
3358            buf
3359        });
3360
3361        // c:Src/exec.c:1161 — forked cmdsub child runs entersubsh()
3362        // which does `zsh_subshell++`; in-process equivalent (RAII,
3363        // restored on every return path below).
3364        let _subshell_bump = crate::fusevm_bridge::CmdSubstSubshellBump::enter();
3365
3366        // Parse + compile + run.
3367        // Push CS_CMDSUBST for `%_` xtrace prefix — direct port of
3368        // Src/exec.c:4783 `cmdpush(CS_CMDSUBST);` around execode().
3369        // Trace lines emitted by the inner program inherit this token
3370        // so their PS4 prefix shows "cmdsubst" matching zsh -x.
3371        cmdpush(crate::ported::zsh_h::CS_CMDSUBST as u8); // c:zsh.h:2799
3372                                                          // Save LINENO so the inner cmdsubst's line counter doesn't
3373                                                          // leak into the outer trace — direct port of Src/exec.c:1407
3374                                                          // `oldlineno = lineno;` followed by `lineno = oldlineno;`
3375                                                          // restore at line 1640. Inner program parses fresh as line 1
3376                                                          // and increments from there; once it returns, the outer
3377                                                          // line at the `$(…)` site must read the original outer
3378                                                          // lineno (so xtrace renders `+:5:> echo …` not `+:1:> …`).
3379        let saved_lineno = getsparam("LINENO");
3380        // Anchor the inner program's lineno to the outer's current
3381        // $LINENO so xtrace inside the cmdsubst renders the outer
3382        // line. zsh's execlist preserves lineno across the inner
3383        // exec — for our sub-VM (fresh compile) we use lineno_addend
3384        // to shift inner's line N → outer_lineno + (N - 1).
3385        let outer_lineno: u64 = self
3386            .scalar("LINENO")
3387            .and_then(|s| s.parse::<u64>().ok())
3388            .unwrap_or(0);
3389        // Mirror Src/init.c errflag save/clear/check pattern around
3390        // the nested parse so an inner syntax error doesn't bleed into
3391        // the outer execution.
3392        let saved_errflag = errflag.load(Ordering::Relaxed);
3393        errflag.fetch_and(!ERRFLAG_ERROR, Ordering::Relaxed);
3394        // Context-isolated nested parse (c:Src/exec.c:283 parse_string).
3395        // The outer loop()/parse_event reader may be mid-stream when this
3396        // cmd-subst executes (single-event mode), so a destructive
3397        // parse_init/lex_init would clobber its next read. parse_isolated
3398        // brackets the parse with zcontext_save/restore + inpush/inpop.
3399        let parsed = parse_isolated(cmd_str);
3400        let parse_failed = (errflag.load(Ordering::Relaxed) & ERRFLAG_ERROR) != 0;
3401        errflag.store(saved_errflag, Ordering::Relaxed);
3402        let prog = if parse_failed { None } else { Some(parsed) };
3403        let mut cmd_status: Option<i32> = None;
3404        if let Some(prog) = prog {
3405            let mut compiler = crate::compile_zsh::ZshCompiler::new();
3406            compiler.lineno_addend = outer_lineno.saturating_sub(1);
3407            let chunk = compiler.compile(&prog);
3408            if !chunk.ops.is_empty() {
3409                crate::fusevm_disasm::maybe_print_stdout("run_command_substitution", &chunk);
3410                // c:Src/exec.c:4783 — `$(...)` runs in a subshell, so
3411                // assignments / setopt / cd / trap changes inside
3412                // mustn't leak to the parent. zsh forks; we run
3413                // in-process and snapshot/restore manually. Same
3414                // snapshot shape used by host_subshell_begin/end for
3415                // the `(...)` subshell form.
3416                let paramtab_snap = crate::ported::params::paramtab()
3417                    .read()
3418                    .ok()
3419                    .map(|t| t.clone())
3420                    .unwrap_or_default();
3421                let paramtab_hashed_snap = crate::ported::params::paramtab_hashed_storage()
3422                    .lock()
3423                    .ok()
3424                    .map(|m| m.clone())
3425                    .unwrap_or_default();
3426                let pparams_snap = self.pparams();
3427                let opts_snap = crate::ported::options::opt_state_snapshot();
3428                // c:Src/exec.c:1161 — a command substitution runs in a
3429                // subshell, so IFS changes inside it must NOT leak to the
3430                // parent. IFS lives in the external `ifs_lock` global (not
3431                // paramtab), so the paramtab snapshot above doesn't cover
3432                // it: `echo $(IFS=:; set -- a b c; echo "$*")` set IFS=":"
3433                // which both produced "a:b:c" AND then word-split the
3434                // UNQUOTED result on the leaked ":" → "a b c". Snapshot the
3435                // global IFS here and restore it (with inittyptab) below.
3436                let ifs_snap = crate::ported::params::ifs_lock()
3437                    .lock()
3438                    .map(|g| g.clone())
3439                    .unwrap_or_default();
3440                let traps_snap = crate::ported::builtin::traps_table()
3441                    .lock()
3442                    .map(|t| t.clone())
3443                    .unwrap_or_default();
3444                // c:Src/exec.c:4783 — function definitions / unfunction
3445                // inside `$(...)` must also be isolated from the parent.
3446                // C zsh's getoutput() forks, so the child's shfunctab
3447                // mutations die with the child. zshrs's in-process
3448                // cmd-subst needs to snapshot/restore the function
3449                // tables manually alongside the param/opts/trap snaps
3450                // already in this block. Bug #455.
3451                let shfunctab_snap = crate::ported::hashtable::shfunctab_lock()
3452                    .read()
3453                    .ok()
3454                    .map(|t| t.snapshot())
3455                    .unwrap_or_default();
3456                let functions_compiled_snap = self.functions_compiled.clone();
3457                let function_source_snap = self.function_source.clone();
3458                let mut vm = fusevm::VM::new(chunk);
3459                register_builtins(&mut vm);
3460                vm.set_shell_host(Box::new(ZshrsHost));
3461                // Seed inner $? with the outer's last_status so the
3462                // sub-shell inherits the parent's exit code. Direct
3463                // port of Src/exec.c:4783 around execcmd_exec — the
3464                // child inherits `lastval` at fork time, so `false;
3465                // echo $(echo $?)` reads 1, not the freshly-zeroed
3466                // sub-VM default. Without this, every cmd-subst
3467                // started with $?==0 regardless of the parent's
3468                // last command.
3469                vm.last_status = self.last_status();
3470                // `exit N` inside a cmd-subst should terminate ONLY
3471                // the sub-shell (C zsh: cmd-subst forks, the child
3472                // `_exit(N)`s; status reaches the parent as
3473                // cmd-subst exit). zshrs runs in-process, so we
3474                // route through the SUBSHELL_DEPTH-gated deferred
3475                // path inside zexit (builtin.rs:7713): bump
3476                // SUBSHELL_DEPTH so `exit` sets EXIT_PENDING/
3477                // EXIT_VAL instead of calling realexit (which would
3478                // process::exit and kill the parent shell). After
3479                // the sub-VM returns, harvest EXIT_PENDING/EXIT_VAL
3480                // as the cmd-subst's status, then restore the
3481                // parent's flags so the outer VM continues normally.
3482                use crate::ported::builtin::{
3483                    BREAKS, EXIT_PENDING, EXIT_VAL, RETFLAG, SHELL_EXITING, SUBSHELL_DEPTH,
3484                };
3485                use std::sync::atomic::Ordering::Relaxed;
3486                let saved_exit_pending = EXIT_PENDING.swap(0, Relaxed);
3487                let saved_exit_val = EXIT_VAL.swap(0, Relaxed);
3488                let saved_shell_exiting = SHELL_EXITING.swap(0, Relaxed);
3489                let saved_retflag = RETFLAG.swap(0, Relaxed);
3490                let saved_breaks = BREAKS.swap(0, Relaxed);
3491                SUBSHELL_DEPTH.fetch_add(1, Relaxed);
3492                let _ctx = ExecutorContext::enter(self);
3493                let _ = vm.run();
3494                let inner_exit_pending = EXIT_PENDING.load(Relaxed);
3495                let inner_exit_val = EXIT_VAL.load(Relaxed);
3496                let inner_status = if inner_exit_pending != 0 {
3497                    inner_exit_val & 0xFF
3498                } else {
3499                    vm.last_status
3500                };
3501                cmd_status = Some(inner_status);
3502                SUBSHELL_DEPTH.fetch_sub(1, Relaxed);
3503                // c:Src/exec.c — `$(…)` is a FORK in C: an errflag
3504                // abort inside the child ends the child (its lastval
3505                // becomes the cmd-subst status) and the flag dies
3506                // with the child process — the parent's lists keep
3507                // running. zsh 5.9: `v=$(typeset -A q; q=(odd));
3508                // echo "after $?"` prints `after 1`. Mirror the fork
3509                // isolation by clearing ERRFLAG_ERROR at the
3510                // cmd-subst boundary.
3511                //
3512                // ERRFLAG_HARD dies here too: `${u:?msg}` inside the
3513                // child sets it (c:Src/subst.c:3344) then `_exit(1)`s
3514                // (c:3353) — C's parent never sees the bit. A leaked
3515                // HARD bit makes every later zerr() silent
3516                // (c:Src/utils.c:175-177) and silently fails every
3517                // later parse. Same fix as subshell_end.
3518                errflag.fetch_and(
3519                    !(ERRFLAG_ERROR | crate::ported::zsh_h::ERRFLAG_HARD),
3520                    Relaxed,
3521                );
3522                // c:Src/exec.c:4783 execcmdoutsubst — `$(...)` is a
3523                // subshell, and zsh fires the EXIT trap when the
3524                // subshell ends BUT only if the trap was installed
3525                // INSIDE the subshell. An EXIT trap inherited from
3526                // the parent fires when the parent shell exits, not
3527                // again at cmdsub end. Detect "installed inside" by
3528                // comparing the current traps_table["EXIT"] entry
3529                // against the pre-cmdsub snapshot — fire only when
3530                // the body differs (newly set, removed, or replaced).
3531                // Pop the body before execute_script to avoid the
3532                // re-fire inside execute_script_zsh_pipeline's own
3533                // EXIT-handler tail at vm_helper.rs:1490. Bug #354.
3534                let snap_exit = traps_snap.get("EXIT").cloned();
3535                let live_exit = crate::ported::builtin::traps_table()
3536                    .lock()
3537                    .ok()
3538                    .and_then(|t| t.get("EXIT").cloned());
3539                if live_exit != snap_exit {
3540                    if let Some(body) = live_exit {
3541                        if let Ok(mut t) = crate::ported::builtin::traps_table().lock() {
3542                            t.remove("EXIT");
3543                        }
3544                        let _ = crate::ported::exec::execute_script(&body);
3545                    }
3546                }
3547                // c:Src/signals.c::dotrap(SIGEXIT) — also fire the
3548                // TRAPEXIT() function-named form (ZSIG_FUNC) — but
3549                // only if it was defined INSIDE the subshell (the
3550                // parent's TRAPEXIT fires at parent exit, not here).
3551                // ZSIG_FUNC bit on sigtrapped[SIGEXIT] tells us
3552                // whether a TRAPEXIT function is registered; check
3553                // BEFORE the snapshot restore.
3554                // Skip for now — function-form detection mirrors the
3555                // raw-body check above; deferred until a clean
3556                // sigtrapped snapshot/restore pair exists.
3557                // Restore parent's exit / loop / function-return
3558                // state so the outer VM continues normally.
3559                EXIT_PENDING.store(saved_exit_pending, Relaxed);
3560                EXIT_VAL.store(saved_exit_val, Relaxed);
3561                SHELL_EXITING.store(saved_shell_exiting, Relaxed);
3562                RETFLAG.store(saved_retflag, Relaxed);
3563                BREAKS.store(saved_breaks, Relaxed);
3564                // Restore parent state. The inner cmd-subst's stdout
3565                // (the captured pipe contents) is the only thing
3566                // that leaks out.
3567                if let Ok(mut t) = crate::ported::params::paramtab().write() {
3568                    *t = paramtab_snap;
3569                }
3570                if let Ok(mut m) = crate::ported::params::paramtab_hashed_storage().lock() {
3571                    *m = paramtab_hashed_snap;
3572                }
3573                self.set_pparams(pparams_snap);
3574                crate::ported::options::opt_state_restore(opts_snap);
3575                // Restore the parent's IFS (subshell isolation): the body's
3576                // `IFS=` must not leak out and word-split the parent's use
3577                // of the cmdsub result. Runtime word-splitting reads the
3578                // IFS *string* (this `ifs_lock` global), so restoring it is
3579                // sufficient. Deliberately do NOT call inittyptab() here —
3580                // that rewrites the process-global typtab the LEXER reads
3581                // on every character, and firing it per-cmdsub races
3582                // concurrent lexing in zshrs's worker threads, producing
3583                // spurious "parse error" flakes (HEAD ran clean 3/3; the
3584                // per-cmdsub inittyptab flaked ~50%). The typtab only
3585                // affects re-lexing — the parent is already compiled — and
3586                // leaving it at the body's value is strictly less divergent
3587                // than the prior behavior, which leaked the whole IFS.
3588                if let Ok(mut g) = crate::ported::params::ifs_lock().lock() {
3589                    *g = ifs_snap;
3590                }
3591                if let Ok(mut t) = crate::ported::builtin::traps_table().lock() {
3592                    *t = traps_snap;
3593                }
3594                // Restore function tables (parallel to the trap/param
3595                // restore above). Bug #455.
3596                if let Ok(mut t) = crate::ported::hashtable::shfunctab_lock().write() {
3597                    t.restore(shfunctab_snap);
3598                }
3599                self.functions_compiled = functions_compiled_snap;
3600                self.function_source = function_source_snap;
3601            }
3602        }
3603        // Restore LINENO so outer xtrace sees the outer line. LINENO
3604        // carries PM_READONLY (matching zsh's `integer-readonly-special`
3605        // GSU), so the restore must bypass the generic readonly guard
3606        // exactly like BUILTIN_SET_LINENO (fusevm_bridge.rs:5156) — write
3607        // the param's `u_val` directly and mirror the file-static /
3608        // lexer line counters. The previous `set_scalar` went through the
3609        // readonly-checked path: harmless on the `-c` route (LINENO not
3610        // yet flagged readonly there) but fatal on the faithful
3611        // loop()/zsh_main route, where every `$(...)` in piped/redirected
3612        // input died with `read-only variable: LINENO`.
3613        if let Some(ln) = saved_lineno {
3614            let n: crate::ported::zsh_h::zlong = ln.parse().unwrap_or(0);
3615            if let Ok(mut tab) = crate::ported::params::paramtab().write() {
3616                if let Some(pm) = tab.get_mut("LINENO") {
3617                    pm.u_val = n;
3618                    pm.node.flags &= !(crate::ported::zsh_h::PM_UNSET as i32);
3619                }
3620            }
3621            crate::ported::utils::set_lineno(n as i32);
3622            crate::ported::lex::set_lineno(n as u64);
3623        }
3624        cmdpop();
3625        // Propagate the inner cmd's status to the parent shell. zsh:
3626        // `a=$(false); echo $?` → 1 because cmd-subst status leaks to
3627        // $?. Set last_status on the executor so $? reads the right
3628        // value for callers that don't have a SetStatus(0) overwrite
3629        // (echo, test, etc.). Bare assignment paths still get the
3630        // SetStatus(0) from compile_simple — that's a separate gap.
3631        // Empty cmd-subst (`\`\``, `$()`) resets status to 0 per
3632        // Src/exec.c — the inner ran no command so the "last
3633        // command's exit" is the implicit success of "did nothing".
3634        // Without this branch, a prior command's non-zero status
3635        // leaked through the empty cmd-subst.
3636        let final_status = cmd_status.unwrap_or(0);
3637        self.set_last_status(final_status);
3638        // c:Src/exec.c:4775 — `getoutput` (the C cmd-subst path used by
3639        // both `$(…)` and `` `…` ``) propagates the inner exit through
3640        // `cmdoutval`, then the caller does `LASTVAL = cmdoutval`. Mirror
3641        // by writing the cmd-subst's exit into the ported `cmdoutval`
3642        // global so `getoutput()`'s post-call `LASTVAL = cmdoutval` (at
3643        // exec.rs:559-562) and the C-equivalent `cmdoutval = lastval`
3644        // bookkeeping in execcmd_exec's assignment paths both see the
3645        // real exit. Without this, backtick assignments (`a=\`false\`;
3646        // echo $?`) reported 0 because getoutput's caller path read a
3647        // cmdoutval that was never updated by the in-process hook.
3648        crate::ported::exec::cmdoutval.store(final_status, std::sync::atomic::Ordering::Relaxed);
3649
3650        // Flush any buffered Rust-side stdout so it reaches the pipe
3651        // before we restore.
3652        let _ = io::stdout().flush();
3653
3654        // Pop the trap-routing stack BEFORE restoring stdout so any
3655        // trap that fires during the restore goes to the cmdsub's
3656        // pipe (matching what zsh's forked cmdsub would do — the
3657        // child's fd 1 is the pipe right up until the child exits).
3658        crate::fusevm_bridge::CMDSUBST_OUTER_FDS.with(|s| {
3659            s.borrow_mut().pop();
3660        });
3661        // c:Bug #353 — restore fd 2 from the saved outer stderr. A
3662        // body that ran `exec 2>&1` (no command, just redirects)
3663        // would have committed fd 2 → the cmdsub's pipe write end.
3664        // In zsh's forked cmdsub the committed redirect dies with
3665        // the child; zshrs's in-process cmdsub would leak the dup
3666        // back to the parent and keep the pipe write-end alive,
3667        // blocking the parent's read on the read_end forever.
3668        // Always restoring fd 2 here rolls back any commit so the
3669        // pipe write-end count drops to zero when we drop the
3670        // local write_fd reference (which already happened above).
3671        if saved_stderr_for_trap >= 0 {
3672            unsafe {
3673                libc::dup2(saved_stderr_for_trap, libc::STDERR_FILENO);
3674            }
3675            crate::ported::utils::zclose(saved_stderr_for_trap);
3676        }
3677        // Restore stdout and read what was captured.
3678        unsafe {
3679            libc::dup2(saved_stdout, libc::STDOUT_FILENO);
3680        }
3681        crate::ported::utils::zclose(saved_stdout);
3682        // Collect the concurrently-drained output. With fd 1 restored
3683        // above, the last shell-side write end is closed, so the reader
3684        // hits EOF and join() returns the full buffer regardless of
3685        // size — no pipe-full deadlock. The reader only read (never
3686        // closed) read_fd, so zclose still clears its FDT_INTERNAL mark
3687        // (c:Src/utils.c:2137).
3688        let bytes = reader_handle.join().unwrap_or_default();
3689        crate::ported::utils::zclose(read_fd);
3690        let mut output = String::from_utf8_lossy(&bytes).into_owned();
3691
3692        // POSIX: trailing newlines stripped from cmd-sub result.
3693        while output.ends_with('\n') {
3694            output.pop();
3695        }
3696        output
3697    }
3698}
3699
3700#[cfg(test)]
3701mod tests {
3702    use super::*;
3703
3704    #[test]
3705    fn test_simple_echo() {
3706        let _g = crate::test_util::global_state_lock();
3707        let mut exec = ShellExecutor::new();
3708        let status = exec.execute_script("true").unwrap();
3709        assert_eq!(status, 0);
3710    }
3711
3712    #[test]
3713    fn test_if_true() {
3714        let _g = crate::test_util::global_state_lock();
3715        let mut exec = ShellExecutor::new();
3716        let status = exec.execute_script("if true; then true; fi").unwrap();
3717        assert_eq!(status, 0);
3718    }
3719
3720    #[test]
3721    fn test_if_false() {
3722        let _g = crate::test_util::global_state_lock();
3723        let mut exec = ShellExecutor::new();
3724        let status = exec
3725            .execute_script("if false; then true; else false; fi")
3726            .unwrap();
3727        assert_eq!(status, 1);
3728    }
3729
3730    #[test]
3731    fn test_for_loop() {
3732        let _g = crate::test_util::global_state_lock();
3733        let mut exec = ShellExecutor::new();
3734        exec.execute_script("for i in a b c; do true; done")
3735            .unwrap();
3736        assert_eq!(exec.last_status(), 0);
3737    }
3738
3739    #[test]
3740    fn test_and_list() {
3741        let _g = crate::test_util::global_state_lock();
3742        let mut exec = ShellExecutor::new();
3743        let status = exec.execute_script("true && true").unwrap();
3744        assert_eq!(status, 0);
3745
3746        let status = exec.execute_script("true && false").unwrap();
3747        assert_eq!(status, 1);
3748    }
3749
3750    #[test]
3751    fn test_or_list() {
3752        let _g = crate::test_util::global_state_lock();
3753        let mut exec = ShellExecutor::new();
3754        let status = exec.execute_script("false || true").unwrap();
3755        assert_eq!(status, 0);
3756    }
3757
3758    /// Pin: `forklevel` matches the C global declared at
3759    /// `Src/exec.c:1052` (`int forklevel;`). Like `int` in C, the
3760    /// Rust port is an AtomicI32 starting at 0 (no fork has occurred
3761    /// at process start). Per `Src/exec.c:1221` (`forklevel =
3762    /// locallevel;`), every subshell entry copies `locallevel` into
3763    /// the global; the SIGPIPE handler at `Src/signals.c:808` reads
3764    /// it back to distinguish the top-level shell from a subshell.
3765    #[test]
3766    fn test_forklevel_default_zero_and_roundtrip() {
3767        let _g = crate::test_util::global_state_lock();
3768        use std::sync::atomic::Ordering;
3769        let prev = crate::ported::exec::FORKLEVEL.load(Ordering::Relaxed);
3770        // Default state at process start: zero (matches C's BSS init
3771        // of `int forklevel;` to 0).
3772        crate::ported::exec::FORKLEVEL.store(0, Ordering::Relaxed);
3773        assert_eq!(crate::ported::exec::FORKLEVEL.load(Ordering::Relaxed), 0);
3774        // Simulate the c:1221 store: `forklevel = locallevel;`.
3775        crate::ported::exec::FORKLEVEL.store(3, Ordering::Relaxed);
3776        assert_eq!(crate::ported::exec::FORKLEVEL.load(Ordering::Relaxed), 3);
3777        crate::ported::exec::FORKLEVEL.store(prev, Ordering::Relaxed);
3778    }
3779}
3780
3781// Plugin-Framework-Agnostic State-Modification Recorder hook helpers.
3782/// Recorder helper: emit one record for an array/scalar mutation
3783/// targeting a path-family parameter (path/fpath/manpath/module_path/
3784/// cdpath, lower- or upper-cased), or one `assign` record for any
3785/// other name. Centralises the path-family list so `BUILTIN_SET_ARRAY`,
3786/// `BUILTIN_APPEND_ARRAY`, and `BUILTIN_APPEND_SCALAR_OR_PUSH` share
3787/// the same routing.
3788///
3789/// `is_append` distinguishes `arr=(...)` from `arr+=(...)` so the
3790/// emitted event carries the APPEND attr bit and replay can choose
3791/// between fresh-set and extend semantics.
3792///
3793/// `attrs` carries any pre-existing type info from
3794/// `recorder_attrs_for(name)` (readonly/export/global) — array shape
3795/// and APPEND get OR'd in by emit_array_assign.
3796#[cfg(feature = "recorder")]
3797pub(crate) fn emit_path_or_assign(
3798    name: &str,
3799    values: &[String],
3800    attrs: crate::recorder::ParamAttrs,
3801    is_append: bool,
3802    ctx: &crate::recorder::RecordCtx,
3803) {
3804    let lower = name.to_ascii_lowercase();
3805    let kind_name: Option<&'static str> = match lower.as_str() {
3806        "path" => Some("path"),
3807        "fpath" => Some("fpath"),
3808        "manpath" => Some("manpath"),
3809        "module_path" => Some("module_path"),
3810        "cdpath" => Some("cdpath"),
3811        _ => None,
3812    };
3813    match kind_name {
3814        Some(k) => {
3815            for v in values {
3816                crate::recorder::emit_path_mod(v, k, ctx.clone());
3817                // Each fpath addition also surfaces every `_completion`
3818                // file inside the directory — matches zinit-report's
3819                // per-plugin "Completions:" listing. Only fpath dirs
3820                // get this treatment; PATH dirs hold executables, not
3821                // completion functions.
3822                if k == "fpath" {
3823                    crate::recorder::discover_completions_in_fpath_dir(v, ctx);
3824                }
3825            }
3826        }
3827        None => {
3828            // Non-path arrays: emit ONE `assign` event with the
3829            // ordered element list preserved in value_array. Replay
3830            // reconstructs `name=(elem1 elem2 ...)` exactly without
3831            // having to re-split a joined string.
3832            crate::recorder::emit_array_assign(
3833                name,
3834                values.to_vec(),
3835                attrs,
3836                is_append,
3837                ctx.clone(),
3838            );
3839        }
3840    }
3841}
3842
3843use std::os::unix::fs::MetadataExt;
3844
3845bitflags::bitflags! {
3846    /// Flags for zfork()
3847    #[derive(Debug, Clone, Copy, Default)]
3848    pub struct ForkFlags: u32 {
3849        const NOJOB = 1 << 0;    // Don't add to job table
3850        const NEWGRP = 1 << 1;   // Create new process group
3851        const FGTTY = 1 << 2;    // Take foreground terminal
3852        const KEEPSIGS = 1 << 3; // Keep signal handlers
3853    }
3854}
3855
3856bitflags::bitflags! {
3857    /// Flags for entersubsh()
3858    #[derive(Debug, Clone, Copy, Default)]
3859    pub struct SubshellFlags: u32 {
3860        const NOMONITOR = 1 << 0; // Disable job control
3861        const KEEPFDS = 1 << 1;   // Keep file descriptors
3862        const KEEPTRAPS = 1 << 2; // Keep trap handlers
3863    }
3864}
3865
3866/// Result of fork operation
3867#[derive(Debug)]
3868/// `fork()` outcome (parent / child / error).
3869/// Mirrors the integer return of `zfork()` from Src/exec.c:349.
3870pub enum ForkResult {
3871    /// `Parent` variant.
3872    Parent(i32), // Contains child PID
3873    /// `Child` variant.
3874    Child,
3875}
3876
3877/// Redirection mode
3878#[derive(Debug, Clone, Copy)]
3879/// File-redirection mode (`>` / `>>` / `<` / etc.).
3880/// Mirrors the `REDIR_*` enum from Src/zsh.h.
3881pub enum RedirMode {
3882    /// `Dup` variant.
3883    Dup,
3884    /// `Close` variant.
3885    Close,
3886}
3887
3888/// Builtin command type
3889#[derive(Debug, Clone, Copy)]
3890/// Builtin classification.
3891/// Mirrors the `BINF_*` flag set Src/builtin.c uses to
3892/// classify special vs regular builtins.
3893pub enum BuiltinType {
3894    /// `Normal` variant.
3895    Normal,
3896    /// `Disabled` variant.
3897    Disabled,
3898}
3899
3900use crate::fusevm_bridge::with_executor;
3901use crate::ported::glob::*;
3902use crate::ported::hist::*;
3903use crate::ported::jobs::*;
3904use crate::ported::math::*;
3905use crate::ported::module::*;
3906use crate::ported::modules::cap::*;
3907use crate::ported::modules::terminfo::*;
3908use crate::ported::options::*;
3909use crate::ported::params::*;
3910use crate::ported::pattern::*;
3911use crate::ported::prompt::*;
3912use crate::ported::signals::*;
3913use crate::ported::subst::*;
3914use crate::ported::utils::{zerr, zerrnam, zwarn, zwarnnam};
3915use ::regex::{Error as RegexError, Regex, RegexBuilder};
3916
3917pub use crate::ported::modules::regex::posix_ere_bracket_escape;
3918
3919impl ShellExecutor {
3920    /// Every option name in `ZSH_OPTIONS_SET` (port of `optns[]` at
3921    /// `Src/options.c:79+`).
3922    pub(crate) fn all_zsh_options() -> Vec<&'static str> {
3923        ZSH_OPTIONS_SET.iter().copied().collect()
3924    }
3925
3926    /// `name → default-on` map via canonical `default_on_options`
3927    /// (port of `defset()` macro at `Src/options.c:73`).
3928    pub(crate) fn default_options() -> HashMap<String, bool> {
3929        let on = default_on_options();
3930        Self::all_zsh_options()
3931            .into_iter()
3932            .map(|n| (n.to_string(), on.contains(n)))
3933            .collect()
3934    }
3935}
3936impl ShellExecutor {
3937    /// PURE PASSTHRU to the canonical `params::getsparam` (C port of
3938    /// `Src/params.c::getsparam`). Every special-name case the old
3939    /// 316-line body handled lives in `params::lookup_special_var` +
3940    /// `getsparam`'s paramtab/env walk. Returns an empty string for
3941    /// unset names (matching the old fn's signature; callers that
3942    /// need the set/unset distinction call `scalar` / `has_scalar`
3943    /// directly).
3944    pub(crate) fn get_variable(&self, name: &str) -> String {
3945        getsparam(name).unwrap_or_default()
3946    }
3947}
3948
3949// Source-form registration step used by the autoload-load path
3950// (`dispatch_function_call` / `run_function_body_only`). Decides
3951// whether to feed the file body to the funcdef pipeline VERBATIM
3952// (zsh-style: the body's own `function NAME() {...}` definition
3953// registers the function on execution) or to WRAP it in
3954// `NAME() {...}` (ksh-style or multi-statement: the body is just
3955// commands or includes additional statements past the def).
3956//
3957// The classification mirrors c:Src/exec.c:5725 + 5750 — KSHAUTOLOAD-
3958// equivalent vs zsh-style autoload. The structural check is the
3959// canonical `stripkshdef` (Src/exec.c:6291, ported at exec.rs:10548):
3960// parse the body to Eprog, run stripkshdef, and check whether it
3961// returned a stripped (different-length wordcode) Eprog. When it
3962// did, the file is the single-funcdef shape `[function] NAME [()] {
3963// INNER }`; running the file source directly through the funcdef
3964// pipeline registers NAME via the WC_FUNCDEF opcode at
3965// fusevm_bridge.rs:6330, matching C's `shf->funcdef = stripkshdef(
3966// prog, name)` semantics (the inner body becomes the function's
3967// body). When it didn't strip — single statement that isn't a
3968// funcdef, or multiple list nodes (e.g. `function ztm() {...}` +
3969// trailing `ztm "$@"` self-call) — we fall back to wrap-and-run so
3970// the canonical funcdef opcode still fires and any extra
3971// statements run inside the registered body, matching C's
3972// behavior of using the whole prog as funcdef in that case.
3973/// Restore `noaliases` on scope exit.
3974///
3975/// C's `loadautofn` (Src/exec.c:5684-5704) saves `noaliases`, sets it from the
3976/// function's PM_UNALIASED bit for the duration of the body parse, and restores
3977/// it unconditionally. The zshrs autoload block has early `return` paths, so the
3978/// restore has to ride on Drop rather than a trailing statement — otherwise a
3979/// `-U` autoload that failed to load would leave alias expansion disabled for
3980/// the rest of the shell.
3981struct NoAliasesRestore(bool);
3982
3983impl Drop for NoAliasesRestore {
3984    fn drop(&mut self) {
3985        crate::ported::lex::set_noaliases(self.0); // c:5704
3986    }
3987}
3988
3989fn autoload_register_source(name: &str, body: &str) -> String {
3990    // c:Src/exec.c:5725 — `if (ksh == 2 || (ksh == 1 && isset(KSHAUTOLOAD)))`
3991    // — the ksh-style load branch. ksh derives from the stub's
3992    // stored-style bits per c:5708-5709 (`PM_KSHSTORED ? 2 :
3993    // PM_ZSHSTORED ? 0 : 1`; a decisive `.zwc` header flag was
3994    // already folded into these bits by loadautofn). A ksh-style
3995    // load executes the file contents at top level (c:5740-5746
3996    // `execode(prog, 1, 0, "evalautofunc")`) and expects the file
3997    // itself to define the function — so the body goes through the
3998    // pipeline VERBATIM, never wrapped.
3999    let flags = crate::ported::utils::getshfunc(name)
4000        .map(|f| f.node.flags as u32)
4001        .unwrap_or(0);
4002    let ksh = if flags & crate::ported::zsh_h::PM_KSHSTORED != 0 {
4003        2
4004    } else if flags & crate::ported::zsh_h::PM_ZSHSTORED != 0 {
4005        0
4006    } else {
4007        1
4008    };
4009    if ksh == 2 || (ksh == 1 && crate::ported::zsh_h::isset(crate::ported::zsh_h::KSHAUTOLOAD)) {
4010        return body.to_string(); // c:5746 execode(prog, ..., "evalautofunc")
4011    }
4012    let stripped = crate::ported::exec::parse_string(body, 0)
4013        .map(|prog| {
4014            let original_len = prog.prog.len();
4015            // stripkshdef returns the input untouched when the prog
4016            // doesn't match the single-`function NAME` shape, and a
4017            // shorter (body-only) prog when it does. Compare the
4018            // wordcode length to detect the strip without owning the
4019            // post-strip Eprog (we only need the yes/no answer here).
4020            let prog_box = Box::new(prog);
4021            crate::ported::exec::stripkshdef(Some(prog_box), name)
4022                .map(|p| p.prog.len() != original_len)
4023                .unwrap_or(false)
4024        })
4025        .unwrap_or(false);
4026    if stripped {
4027        body.to_string()
4028    } else {
4029        format!("{name}() {{\n{body}\n}}")
4030    }
4031}
4032
4033// zsh_eval_context push/pop/sync relocated 2026-06-12 INTO doshfunc
4034// (src/ported/exec.rs) — its sole caller, and `zsh_eval_context` is
4035// that module's own static. The shell-visible mirror writes inline
4036// at the push site + the guard's Drop. No bridge indirection.
4037
4038impl ShellExecutor {
4039    /// Execute the trap body for a signal name from the REPL signal
4040    /// loop (bins/zshrs.rs CtrlC/CtrlD dispatch). Thin passthru to
4041    /// `traps_table` lookup + `execute_script` — kept as a method
4042    /// because the REPL loop owns `&mut ShellExecutor` and needs a
4043    /// single call point. The async signal-handler dispatch path
4044    /// goes through `crate::ported::signals::dotrap` instead.
4045    pub fn run_trap(&mut self, signal: &str) {
4046        let action = crate::ported::builtin::traps_table()
4047            .lock()
4048            .ok()
4049            .and_then(|t| t.get(signal).cloned());
4050        if let Some(body) = action {
4051            if !body.is_empty() {
4052                let _ = self.execute_script(&body);
4053            }
4054        }
4055    }
4056}
4057
4058impl ShellExecutor {
4059    pub(crate) fn apply_prompt_theme(&mut self, theme: &str, preview: bool) {
4060        let (ps1, rps1) = match theme {
4061            "minimal" => ("%# ", ""),
4062            "off" => ("$ ", ""),
4063            "adam1" => (
4064                "%B%F{cyan}%n@%m %F{blue}%~%f%b %# ",
4065                "%F{yellow}%D{%H:%M}%f",
4066            ),
4067            "redhat" => ("[%n@%m %~]$ ", ""),
4068            _ => ("%n@%m %~ %# ", ""),
4069        };
4070        if preview {
4071            println!("PS1={:?}", ps1);
4072            println!("RPS1={:?}", rps1);
4073        } else {
4074            self.set_scalar("PS1".to_string(), ps1.to_string());
4075            self.set_scalar("RPS1".to_string(), rps1.to_string());
4076            self.set_scalar("prompt_theme".to_string(), theme.to_string());
4077        }
4078    }
4079}
4080impl ShellExecutor {
4081    /// Expand glob pattern via canonical `glob_path` (port of
4082    /// `Src/glob.c::zglob`). Adds executor-side `current_command_glob_failed`
4083    /// cell so the dispatch layer skips the current command on NOMATCH +
4084    /// looks_like_glob instead of exiting the shell.
4085    pub fn expand_glob(&self, pattern: &str) -> Vec<String> {
4086        let expanded = glob_path(pattern);
4087        if !expanded.is_empty() {
4088            // c:Src/glob.c:1871-1872 — `if (matchct) badcshglob |= 2;`
4089            // (at least one expansion on this command line worked).
4090            // Only real glob patterns count — C's zglob early-returns
4091            // before the matchct accounting for non-wild words, so
4092            // gate on haswilds like the failure path below. Consumed
4093            // per command by fusevm_bridge::consume_badcshglob.
4094            if crate::ported::zsh_h::isset(crate::ported::zsh_h::CSHNULLGLOB) {
4095                let mut pattern_tok = pattern.to_string();
4096                crate::ported::glob::tokenize(&mut pattern_tok);
4097                if crate::ported::pattern::haswilds(&pattern_tok) {
4098                    crate::ported::glob::BADCSHGLOB
4099                        .fetch_or(2, std::sync::atomic::Ordering::Relaxed);
4100                }
4101            }
4102            return expanded;
4103        }
4104        // No matches. Mirror zsh's `setopt nullglob` / `nomatch`
4105        // dispatch (Src/glob.c:1873-1886) here because glob_path
4106        // returns an empty Vec without knowing executor state.
4107        // c:Src/glob.c:1567-1569 `gf_nullglob` per-glob — the `(N)`
4108        // qualifier acts like `setopt nullglob` for this expression
4109        // alone. parse_qualifiers detects the suffix `(...)` block;
4110        // the resulting `qualifiers.nullglob` mirrors C's gf_nullglob
4111        // carrier.
4112        let per_glob_nullglob = crate::ported::glob::parse_qualifiers(pattern)
4113            .1
4114            .map(|q| q.nullglob)
4115            .unwrap_or(false);
4116        let nullglob = opt_state_get("nullglob").unwrap_or(false) || per_glob_nullglob;
4117        if nullglob {
4118            return Vec::new();
4119        }
4120        let nomatch = opt_state_get("nomatch").unwrap_or(true);
4121        // Use canonical `haswilds` (port of Src/pattern.c:4306-4376)
4122        // instead of the Rust-only `looks_like_glob`. C zsh's
4123        // `Src/glob.c:1876` NOMATCH branch fires whenever the input
4124        // tripped haswilds during the `zglob` entry check —
4125        // including patterns whose internal `(` / `)` form a group
4126        // or alternation but don't end with `)` (e.g. `abc(a)def`,
4127        // `(abc`). The previous `looks_like_glob` only caught
4128        // trailing-`(...)` qualifiers, leaving mid-word groups and
4129        // unclosed parens to fall through to the literal-passthrough
4130        // branch. #170 in docs/BUGS.md.
4131        //
4132        // haswilds scans TOKENIZED strings (C's zglob gets the
4133        // lexer-tokenized word at Src/glob.c:1230); this entry point
4134        // receives untokenized fast-path patterns, so tokenize a
4135        // local copy first — the same preparation C applies to
4136        // runtime-built strings (compcore.c:2231 tokenizes fignore
4137        // entries before its haswilds call). tokenize Bnull's
4138        // backslash-escaped metachars, so `\*` stays literal here
4139        // exactly as in C. Bug #627: plain multibyte text (`↔`)
4140        // passes through tokenize unchanged and matches no token.
4141        let mut pattern_tok = pattern.to_string();
4142        crate::ported::glob::tokenize(&mut pattern_tok); // c:Src/glob.c:3548
4143        let is_glob = crate::ported::pattern::haswilds(&pattern_tok);
4144        // c:Src/glob.c:1874-1875 — `if (isset(CSHNULLGLOB)) {
4145        // badcshglob |= 1; }` — the else-if chain means neither the
4146        // NOMATCH error nor the literal passthrough runs: the failed
4147        // word is silently DROPPED here, and the per-command boundary
4148        // (fusevm_bridge::consume_badcshglob, Src/subst.c:505-507)
4149        // emits the csh-style `no match` iff NO glob on the line
4150        // matched.
4151        if is_glob && crate::ported::zsh_h::isset(crate::ported::zsh_h::CSHNULLGLOB) {
4152            crate::ported::glob::BADCSHGLOB.fetch_or(1, std::sync::atomic::Ordering::Relaxed);
4153            return Vec::new();
4154        }
4155        if nomatch && is_glob {
4156            // c:Src/glob.c:1876-1880 — `else if (isset(NOMATCH)) {`
4157            //   `zerr("no matches found: %s", ostr);`
4158            //   `zfree(matchbuf, 0);`
4159            //   `restore_globstate(saved);`
4160            //   `return;`
4161            // `}`
4162            // C aborts via ERRFLAG_ERROR set by zerr() at c:Src/utils.c
4163            // and the matchbuf/state cleanup. The Rust port mirrors
4164            // both: zerr() in utils.rs sets ERRFLAG_ERROR via
4165            // `errflag.fetch_or(ERRFLAG_ERROR, ...)` already; we then
4166            // re-set explicitly (defensive — historically this line
4167            // had `fetch_and(!ERRFLAG_ERROR)` which CLEARED the flag
4168            // immediately after zerr, making `echo /never/*` print
4169            // the literal and exit 0 instead of erroring like zsh —
4170            // parity bug #13).
4171            zerr(&format!("no matches found: {}", pattern)); // c:1877
4172            self.current_command_glob_failed.set(true);
4173            // c:Src/glob.c:1876-1880 — zerr sets ERRFLAG_ERROR and
4174            // glob_failed cell carries the signal. The ERRFLAG_ERROR
4175            // clear (so subsequent sublists run) now lives at the
4176            // dispatcher's post-command-boundary at
4177            // fusevm_bridge.rs:299 where current_command_glob_failed
4178            // is consumed — matches C's execlist behavior of clearing
4179            // command-error errflag between sublists.
4180            return Vec::new(); // c:1880 return
4181        }
4182        // Pattern has no glob meta — pass through literally.
4183        vec![pattern.to_string()]
4184    }
4185    /// True iff the literal `pattern` actually contains a glob metachar
4186    /// in a position that would have triggered globbing. Used to avoid
4187    /// spurious "no matches" errors when expand_glob is called on a
4188    /// plain path that happened to route through this code (e.g. some
4189    /// fast paths bridge unconditionally).
4190    pub(crate) fn looks_like_glob(pattern: &str) -> bool {
4191        // A trailing `(qualifier)` is itself a glob trigger — e.g.
4192        // `path(L+10)` should be treated as a glob even when the
4193        // body has no `*`/`?`/`[...]`.
4194        let has_qual_suffix = if let Some(open) = pattern.rfind('(') {
4195            pattern.ends_with(')') && open + 1 < pattern.len() - 1
4196        } else {
4197            false
4198        };
4199        // Strip trailing `(...)` qualifier so we test the pattern body.
4200        let body = if let Some(open) = pattern.rfind('(') {
4201            if pattern.ends_with(')') {
4202                &pattern[..open]
4203            } else {
4204                pattern
4205            }
4206        } else {
4207            pattern
4208        };
4209        // Walk character-by-character so escaped metachars (`\*`, `\?`,
4210        // `\[`) are NOT counted as glob triggers. zsh: `echo \*` prints
4211        // a literal `*`; without the unescaped check, looks_like_glob
4212        // returned true on the bare `*` and the runtime glob expansion
4213        // aborted with NOMATCH.
4214        let chars: Vec<char> = body.chars().collect();
4215        let mut i = 0;
4216        let mut has_unescaped_star = false;
4217        let mut has_unescaped_question = false;
4218        let mut has_unescaped_bracket_open: Option<usize> = None;
4219        while i < chars.len() {
4220            let c = chars[i];
4221            if c == '\\' && i + 1 < chars.len() {
4222                // Escaped char — skip both.
4223                i += 2;
4224                continue;
4225            }
4226            match c {
4227                '*' => has_unescaped_star = true,
4228                '?' => has_unescaped_question = true,
4229                '[' if has_unescaped_bracket_open.is_none() => {
4230                    has_unescaped_bracket_open = Some(i);
4231                }
4232                _ => {}
4233            }
4234            i += 1;
4235        }
4236        // `[` only counts when there's a matching `]` after it.
4237        let has_bracket_class = has_unescaped_bracket_open
4238            .map(|i| body[i + 1..].contains(']'))
4239            .unwrap_or(false);
4240        // `<N-M>` numeric range glob is also a trigger — match shape
4241        // `<` + optional digits + `-` + optional digits + `>` outside
4242        // any bracket expression.
4243        let has_numeric_range =
4244            body.contains('<') && body.contains('>') && !extract_numeric_ranges(body).is_empty();
4245        has_unescaped_star
4246            || has_unescaped_question
4247            || has_bracket_class
4248            || has_qual_suffix
4249            || has_numeric_range
4250    }
4251}
4252
4253impl ShellExecutor {
4254    pub(crate) fn copy_dir_recursive(src: &Path, dest: &Path) -> io::Result<()> {
4255        if !dest.exists() {
4256            fs::create_dir_all(dest)?;
4257        }
4258        for entry in fs::read_dir(src)? {
4259            let entry = entry?;
4260            let file_type = entry.file_type()?;
4261            let src_path = entry.path();
4262            let dest_path = dest.join(entry.file_name());
4263
4264            if file_type.is_dir() {
4265                Self::copy_dir_recursive(&src_path, &dest_path)?;
4266            } else {
4267                fs::copy(&src_path, &dest_path)?;
4268            }
4269        }
4270        Ok(())
4271    }
4272}
4273
4274// Magic-assoc scan-by-name aggregator. C's per-table getfn/scanfn
4275// pointers in paramdef[] (Src/Modules/parameter.c:825+) handle this
4276// indirectly via paramtab dispatch; this Rust-only helper exposes a
4277// single `partab_get` / `partab_scan_keys` entry that the bridge
4278// uses for name → keys lookup.
4279use std::cell::RefCell;
4280thread_local! {
4281    static SCAN_KEYS: RefCell<Vec<String>> = const { RefCell::new(Vec::new()) };
4282}
4283
4284/// Lookup helper for `${name[key]}` magic-assoc reads — dispatches
4285/// through canonical `PARTAB` (Src/Modules/parameter.c:2235 ports).
4286/// Returns `None` if name isn't a known magic-assoc.
4287pub fn partab_get(name: &str, key: &str) -> Option<String> {
4288    // c:Src/Modules/system.c:902,904 — `sysparams` and `errnos` are
4289    // bound by zsh/system's boot_/setup_ chain. Same for `mapfile`
4290    // from zsh/mapfile. Without explicit `zmodload`, these names
4291    // are unset in zsh; gate the PARTAB dispatch here so they
4292    // resolve via the empty-fallback path (matching ${sysparams[k]:-x}
4293    // taking the default). Bug #69 in docs/BUGS.md.
4294    if let Some(modname) = module_gated_partab_module(name) {
4295        if !crate::ported::module::MODULESTAB
4296            .lock()
4297            .unwrap()
4298            .is_loaded(modname)
4299        {
4300            return None;
4301        }
4302    }
4303    for entry in PARTAB.iter() {
4304        if entry.name == name {
4305            return (entry.getfn)(std::ptr::null_mut(), key).and_then(|p| p.u_str);
4306        }
4307    }
4308    None
4309}
4310
4311/// Returns the owning module name for partab entries that are
4312/// bound by an explicit zmodload — `sysparams`/`errnos` from
4313/// zsh/system, `mapfile` from zsh/mapfile. Other partab entries
4314/// (aliases/commands/functions/...) are part of zsh/main and
4315/// always available.
4316fn module_gated_partab_module(name: &str) -> Option<&'static str> {
4317    match name {
4318        "sysparams" | "errnos" => Some("zsh/system"),
4319        "mapfile" => Some("zsh/mapfile"),
4320        "langinfo" => Some("zsh/langinfo"),
4321        _ => None,
4322    }
4323}
4324
4325/// PM_ARRAY lookup for `${name}` / `${name[N]}` — walks
4326/// PARTAB_ARRAY and dispatches the whole-array getfn (Src/Modules/
4327/// parameter.c:2239-2291 ports). Returns `None` if name isn't a
4328/// known PM_ARRAY magic-assoc.
4329pub fn partab_array_get(name: &str) -> Option<Vec<String>> {
4330    // Bug #69 — gate module-bound PARTAB names on the owning
4331    // module's MOD_LINKED && !MOD_UNLOAD state.
4332    if let Some(modname) = module_gated_partab_module(name) {
4333        if !crate::ported::module::MODULESTAB
4334            .lock()
4335            .unwrap()
4336            .is_loaded(modname)
4337        {
4338            return None;
4339        }
4340    }
4341    for entry in PARTAB_ARRAY.iter() {
4342        if entry.name == name {
4343            return Some((entry.getfn)(std::ptr::null_mut()));
4344        }
4345    }
4346    None
4347}
4348
4349/// Scan helper for `${(k)name}` — enumerates keys via canonical
4350/// scanfn, collected into Vec via SCAN_KEYS thread-local.
4351pub fn partab_scan_keys(name: &str) -> Option<Vec<String>> {
4352    // Bug #69 — gate module-bound PARTAB names on the owning
4353    // module's MOD_LINKED && !MOD_UNLOAD state.
4354    if let Some(modname) = module_gated_partab_module(name) {
4355        if !crate::ported::module::MODULESTAB
4356            .lock()
4357            .unwrap()
4358            .is_loaded(modname)
4359        {
4360            return None;
4361        }
4362    }
4363    for entry in PARTAB.iter() {
4364        if entry.name == name {
4365            SCAN_KEYS.with(|k| k.borrow_mut().clear());
4366            fn cb(node: &crate::ported::zsh_h::HashNode, _flags: i32) {
4367                SCAN_KEYS.with(|k| k.borrow_mut().push(node.nam.clone()));
4368            }
4369            (entry.scanfn)(std::ptr::null_mut(), Some(cb), 0);
4370            return Some(SCAN_KEYS.with(|k| k.borrow().clone()));
4371        }
4372    }
4373    None
4374}
4375/// Populate paramtab with PM_SPECIAL placeholder Params for every
4376/// PARTAB / PARTAB_ARRAY entry — Rust-only init helper, no direct
4377/// C counterpart (closest is `handlefeatures` walking `partab[]`
4378/// in `Src/Modules/parameter.c:2341` boot/enables chain).
4379///
4380/// Each magic-assoc name gets a Param with `entry.flags | PM_SPECIAL`.
4381/// Value reads still route through `partab_get` / `partab_array_get`;
4382/// having the Param in paramtab makes `paramtab.get(name)` return
4383/// Some(Param) so `${+name}` / `${(t)name}` / `typeset -p name` see
4384/// the entry. Without this, those reads returned empty for every
4385/// magic-assoc (aliases, commands, functions, etc.).
4386///
4387/// Called from ShellExecutor::new() since zshrs's bin entry skips
4388/// the canonical module-bootstrap chain.
4389pub fn init_partab_params() {
4390    use crate::ported::modules::parameter::{PARTAB, PARTAB_ARRAY};
4391    use crate::ported::zsh_h::{
4392        hashnode, param, Param, PM_HIDE, PM_HIDEVAL, PM_READONLY, PM_SPECIAL,
4393    };
4394    let mut tab = match paramtab().write() {
4395        Ok(t) => t,
4396        Err(_) => return,
4397    };
4398    // c:Src/zsh.h SPECIALPMDEF macro: `flags | PM_SPECIAL | PM_HIDE |
4399    // PM_HIDEVAL`. All magic-assoc/array params get HIDE+HIDEVAL added
4400    // by the macro itself.
4401    //
4402    // PM_READONLY is preserved on the stub for params that legitimately
4403    // need user-write protection (reswords, dis_reswords, patchars,
4404    // dis_patchars — all compute via getfn and have no legitimate
4405    // internal-write path). Other specials that DO have internal-write
4406    // paths (e.g. funcstack from function-call tracking) get the bit
4407    // stripped so the runtime can mutate their u_arr. Bug #374.
4408    let user_protected: &[&str] = &[
4409        "reswords",
4410        "dis_reswords",
4411        "patchars",
4412        "dis_patchars",
4413        "historywords",
4414        "errnos",
4415        "keymaps",
4416    ];
4417    let mk_pm = |name: &str, flags: i32| -> Param {
4418        let keep_readonly = user_protected.contains(&name);
4419        let pre_readonly_mask = if keep_readonly {
4420            !0i32
4421        } else {
4422            !(PM_READONLY as i32)
4423        };
4424        Box::new(param {
4425            node: hashnode {
4426                next: None,
4427                nam: name.to_string(),
4428                flags: (flags & pre_readonly_mask)
4429                    | PM_SPECIAL as i32
4430                    | PM_HIDE as i32
4431                    | PM_HIDEVAL as i32,
4432            },
4433            u_data: 0,
4434            u_tied: None,
4435            u_arr: None,
4436            u_str: None,
4437            u_val: 0,
4438            u_dval: 0.0,
4439            u_hash: None,
4440            gsu_s: None,
4441            gsu_i: None,
4442            gsu_f: None,
4443            gsu_a: None,
4444            gsu_h: None,
4445            base: 0,
4446            width: 0,
4447            env: None,
4448            ename: None,
4449            old: None,
4450            level: 0,
4451        })
4452    };
4453    // c:Src/Modules/system.c:902,904 + Src/Modules/mapfile.c — these
4454    // params are provided by modules that real zsh requires explicit
4455    // `zmodload` for. Seeding them unconditionally makes
4456    // `${+sysparams}` return 1 by default (bug #69 in docs/BUGS.md),
4457    // diverging from zsh which returns 0 until the user runs
4458    // `zmodload zsh/system`. Skip here; `seed_partab_param` below adds
4459    // them on demand from the module's load path.
4460    let module_gated: &[&str] = &[
4461        "sysparams", // zsh/system
4462        "errnos",    // zsh/system
4463        "mapfile",   // zsh/mapfile
4464        "langinfo",  // zsh/langinfo
4465    ];
4466    for entry in PARTAB.iter() {
4467        if module_gated.contains(&entry.name) {
4468            continue;
4469        }
4470        tab.insert(entry.name.to_string(), mk_pm(entry.name, entry.flags));
4471    }
4472    for entry in PARTAB_ARRAY.iter() {
4473        if module_gated.contains(&entry.name) {
4474            continue;
4475        }
4476        tab.insert(entry.name.to_string(), mk_pm(entry.name, entry.flags));
4477    }
4478}
4479
4480/// Insert a single PARTAB / PARTAB_ARRAY entry into paramtab. Called
4481/// from `zmodload <module>` once the module's boot completes, so that
4482/// `${+sysparams}` (etc.) flip from 0 → 1 only after explicit load.
4483/// No direct C counterpart — the C path runs through the module's
4484/// `setup_/boot_` chain which adds the SPECIALPMDEF entry via the
4485/// general hashtable machinery. Bug #69 in docs/BUGS.md.
4486pub fn seed_partab_param(name: &str) {
4487    use crate::ported::modules::parameter::{PARTAB, PARTAB_ARRAY};
4488    use crate::ported::zsh_h::{hashnode, param, PM_HIDE, PM_HIDEVAL, PM_READONLY, PM_SPECIAL};
4489    let mut tab = match crate::ported::params::paramtab().write() {
4490        Ok(t) => t,
4491        Err(_) => return,
4492    };
4493    if tab.contains_key(name) {
4494        return; // already seeded
4495    }
4496    let flags = PARTAB
4497        .iter()
4498        .find(|e| e.name == name)
4499        .map(|e| e.flags)
4500        .or_else(|| {
4501            PARTAB_ARRAY
4502                .iter()
4503                .find(|e| e.name == name)
4504                .map(|e| e.flags)
4505        });
4506    let Some(flags) = flags else {
4507        return;
4508    };
4509    let pm = Box::new(param {
4510        node: hashnode {
4511            next: None,
4512            nam: name.to_string(),
4513            flags: (flags & !(PM_READONLY as i32))
4514                | PM_SPECIAL as i32
4515                | PM_HIDE as i32
4516                | PM_HIDEVAL as i32,
4517        },
4518        u_data: 0,
4519        u_tied: None,
4520        u_arr: None,
4521        u_str: None,
4522        u_val: 0,
4523        u_dval: 0.0,
4524        u_hash: None,
4525        gsu_s: None,
4526        gsu_i: None,
4527        gsu_f: None,
4528        gsu_a: None,
4529        gsu_h: None,
4530        base: 0,
4531        width: 0,
4532        env: None,
4533        ename: None,
4534        old: None,
4535        level: 0,
4536    });
4537    tab.insert(name.to_string(), pm);
4538}
4539
4540/// Default autoloadable parameters: name → owning module. Port of the
4541/// `autofeatures` `p:` rows in Src/Modules/parameter.mdd, watch.mdd,
4542/// termcap.mdd, terminfo.mdd, Src/Zle/zleparameter.mdd and
4543/// Src/Builtins/sched.mdd, registered at startup through
4544/// `setautofeatures` → `add_autoparam` (Src/module.c:1198-1229): each
4545/// name becomes a scalar paramtab stub whose VALUE is the module name,
4546/// flagged PM_AUTOLOAD (module.c:1218-1219). Matches `zmodload -ap`
4547/// output of the reference zsh build.
4548pub const AUTOLOAD_PARAMS: &[(&str, &str)] = &[
4549    // Src/Modules/watch.mdd:5 autofeatures
4550    ("WATCH", "zsh/watch"),
4551    ("watch", "zsh/watch"),
4552    // Src/Modules/parameter.mdd:5 autofeatures
4553    ("aliases", "zsh/parameter"),
4554    ("builtins", "zsh/parameter"),
4555    ("commands", "zsh/parameter"),
4556    ("dirstack", "zsh/parameter"),
4557    ("dis_aliases", "zsh/parameter"),
4558    ("dis_builtins", "zsh/parameter"),
4559    ("dis_functions", "zsh/parameter"),
4560    ("dis_functions_source", "zsh/parameter"),
4561    ("dis_galiases", "zsh/parameter"),
4562    ("dis_patchars", "zsh/parameter"),
4563    ("dis_reswords", "zsh/parameter"),
4564    ("dis_saliases", "zsh/parameter"),
4565    ("funcfiletrace", "zsh/parameter"),
4566    ("funcsourcetrace", "zsh/parameter"),
4567    ("funcstack", "zsh/parameter"),
4568    ("functions", "zsh/parameter"),
4569    ("functions_source", "zsh/parameter"),
4570    ("functrace", "zsh/parameter"),
4571    ("galiases", "zsh/parameter"),
4572    ("history", "zsh/parameter"),
4573    ("historywords", "zsh/parameter"),
4574    ("jobdirs", "zsh/parameter"),
4575    ("jobstates", "zsh/parameter"),
4576    ("jobtexts", "zsh/parameter"),
4577    ("modules", "zsh/parameter"),
4578    ("nameddirs", "zsh/parameter"),
4579    ("options", "zsh/parameter"),
4580    ("parameters", "zsh/parameter"),
4581    ("patchars", "zsh/parameter"),
4582    ("reswords", "zsh/parameter"),
4583    ("saliases", "zsh/parameter"),
4584    ("userdirs", "zsh/parameter"),
4585    ("usergroups", "zsh/parameter"),
4586    // Src/Zle/zleparameter.mdd:5 autofeatures
4587    ("keymaps", "zsh/zleparameter"),
4588    ("widgets", "zsh/zleparameter"),
4589    // Src/Modules/termcap.mdd:5 / terminfo.mdd:5 autofeatures
4590    ("termcap", "zsh/termcap"),
4591    ("terminfo", "zsh/terminfo"),
4592    // Src/Builtins/sched.mdd:5 autofeatures
4593    ("zsh_scheduled_events", "zsh/sched"),
4594];
4595
4596/// Autoload stubs whose owning module is NOT loaded — the rows zsh's
4597/// `typeset` listings print as `undefined NAME` (printparamnode's
4598/// PM_AUTOLOAD pmtypes row, Src/params.c:6011 + the PM_AUTOLOAD
4599/// NAMEONLY arm at Src/params.c:6146-6155). Once a module loads, its
4600/// stubs drop out and the real params list instead.
4601pub fn autoload_param_stubs() -> Vec<(&'static str, &'static str)> {
4602    use crate::ported::zsh_h::{MOD_INIT_B, MOD_UNLOAD};
4603    let tab = crate::ported::module::MODULESTAB.lock().unwrap();
4604    AUTOLOAD_PARAMS
4605        .iter()
4606        .copied()
4607        .filter(|(_, m)| {
4608            // "Boot ran" is MOD_INIT_B && !MOD_UNLOAD (the criterion
4609            // printmodulenode uses, src/ported/module.rs:246 — C's
4610            // `m->u.handle` union check at Src/module.c:218-241).
4611            // modulestab::is_loaded checks MOD_LINKED which
4612            // register_builtin_modules pre-seeds for EVERY compiled-in
4613            // module, so it would report zsh/parameter "loaded" in a
4614            // fresh `zsh -f` where real zsh still shows the stubs.
4615            !tab.modules.get(*m).is_some_and(|md| {
4616                (md.node.flags & MOD_INIT_B) != 0 && (md.node.flags & MOD_UNLOAD) == 0
4617            })
4618        })
4619        .collect()
4620}
4621
4622/// Names provided by `zsh/system` / `zsh/mapfile` etc. that are
4623/// gated on explicit `zmodload`. Used by the bin_zmodload path to
4624/// re-seed paramtab after the module's boot completes.
4625pub fn module_gated_params_for(module: &str) -> &'static [&'static str] {
4626    match module {
4627        "zsh/system" => &["sysparams", "errnos"],
4628        "zsh/mapfile" => &["mapfile"],
4629        "zsh/langinfo" => &["langinfo"],
4630        _ => &[],
4631    }
4632}
4633impl ShellExecutor {
4634    /// `enter_posix_mode` — see implementation.
4635    pub fn enter_posix_mode(&mut self) {
4636        self.posix_mode = true;
4637        self.plugin_cache = None;
4638        self.compsys_cache = None;
4639        self.compinit_pending = None;
4640        self.worker_pool = std::sync::Arc::new(crate::worker::WorkerPool::new(1));
4641        // Direct call to the canonical `emulate()` port
4642        // (Src/options.c:533) — `-R` semantics = fully=true.
4643        // bin_emulate goes through dispatch_builtin which needs an
4644        // ExecutorContext that isn't set up yet at apply_cli_flags
4645        // time; the underlying emulate() doesn't need one.
4646        crate::ported::options::emulate("sh", true);
4647    }
4648    /// `enter_ksh_mode` — see implementation.
4649    pub fn enter_ksh_mode(&mut self) {
4650        self.plugin_cache = None;
4651        self.compsys_cache = None;
4652        self.compinit_pending = None;
4653        self.worker_pool = std::sync::Arc::new(crate::worker::WorkerPool::new(1));
4654        crate::ported::options::emulate("ksh", true);
4655    }
4656}
4657
4658/// Thin (text, pattern) → bool wrapper over the canonical
4659/// `patcompile()` + `pattry()` pair from `Src/pattern.c`. Argument
4660/// order is flipped so callers read naturally. Lives in vm_helper.rs
4661/// (non-port file) as the public convenience entry for extensions
4662/// and the VM bridge; `src/ported/*` files inline the compile+match
4663/// idiom directly to preserve PORT.md Rule 1 faithfulness.
4664pub fn glob_match_static(s: &str, pattern: &str) -> bool {
4665    let Some(prog) = patcompile(
4666        &{
4667            let mut __pat_tok = (pattern).to_string();
4668            crate::ported::glob::tokenize(&mut __pat_tok);
4669            __pat_tok
4670        },
4671        PAT_HEAPDUP as i32,
4672        None,
4673    ) else {
4674        return false;
4675    };
4676    // (#b) (GF_BACKREF) — capture-aware path. Use pattryrefs so the
4677    // per-group begin/end offsets surface, then write $match /
4678    // $mbegin / $mend (c:Src/pattern.c GF_BACKREF handling at
4679    // c:775 + c:2417). Falls through to the basic pattry path when
4680    // (#b) isn't on — that matches the previous behaviour exactly
4681    // and avoids the small extra cost (state clone + Vec<i32> alloc)
4682    // for the (#b)-free common case.
4683    // c:Src/pattern.c:2543 / 2570 — the C gate for capture reporting is
4684    // `prog->patnpar` (count of NUMBERED groups), not a globflags bit.
4685    // patcomppiece (pattern.rs, c:775 arm) only numbers a group when
4686    // GF_BACKREF was live at the point the `(` compiled, so patnpar>0
4687    // ⇔ the pattern had an effective `(#b)` REGARDLESS of position.
4688    // The old `globflags & GF_BACKREF` gate only saw flags hoisted from
4689    // a LEADING `(#...)` spec, so `"%"(#b)(test)*` (literal prefix
4690    // before the flag) never populated $match. Bug: gap #1 2026-06-12.
4691    let has_backref = prog.0.patnpar > 0;
4692    let matched;
4693    if has_backref {
4694        let mut nump: i32 = 0;
4695        let mut begp: Vec<i32> = Vec::new();
4696        let mut endp: Vec<i32> = Vec::new();
4697        matched = crate::ported::pattern::pattryrefs(
4698            &prog,
4699            s,
4700            s.len() as i32,
4701            -1,
4702            None,
4703            0,
4704            Some(&mut nump),
4705            Some(&mut begp),
4706            Some(&mut endp),
4707        );
4708        if matched {
4709            let n = (nump as usize).min(begp.len()).min(endp.len());
4710            let mut match_arr: Vec<String> = Vec::with_capacity(n);
4711            let mut begin_arr: Vec<String> = Vec::with_capacity(n);
4712            let mut end_arr: Vec<String> = Vec::with_capacity(n);
4713            // KSHARRAYS off → 1-based; on → 0-based. C path:
4714            // `setiparam("MBEGIN", patoffset + !isset(KSHARRAYS))`
4715            // — so the base offset added to each begin/end index.
4716            let ksharrays = crate::ported::zsh_h::isset(crate::ported::zsh_h::KSHARRAYS);
4717            let base = if ksharrays { 0 } else { 1 };
4718            for i in 0..n {
4719                // c:2607-2613 — unset group (unmatched alternation
4720                // branch / hashed paren): matcharr[i]="",
4721                // mbeginarr[i]="-1", mendarr[i]="-1". pattryrefs
4722                // reports these as begp/endp = -1 (c:2563-2566).
4723                if begp[i] < 0 || endp[i] < 0 {
4724                    match_arr.push(String::new());
4725                    begin_arr.push("-1".to_string());
4726                    end_arr.push("-1".to_string());
4727                    continue;
4728                }
4729                let b = begp[i] as usize;
4730                let e = endp[i] as usize;
4731                let lo = b.min(s.len());
4732                let hi = e.min(s.len()).max(lo);
4733                match_arr.push(s[lo..hi].to_string());
4734                begin_arr.push((b + base).to_string());
4735                // mend is the INDEX of the last matched char (inclusive),
4736                // so end - 1 + base. For an empty span use the begin
4737                // offset (zsh's setiparam("MEND", mlen + patoffset + ...
4738                // - 1) shape from c:2444-2446).
4739                end_arr.push(((e + base).saturating_sub(1)).to_string());
4740            }
4741            crate::ported::params::setaparam("match", match_arr);
4742            crate::ported::params::setaparam("mbegin", begin_arr);
4743            crate::ported::params::setaparam("mend", end_arr);
4744        }
4745    } else {
4746        matched = pattry(&prog, s);
4747    }
4748    // $MATCH / $MBEGIN / $MEND are set by the MATCHER (pattern.rs, c:2526),
4749    // which is where C decides it — gated on the GLOBAL patglobflags so a later
4750    // `(#M)` can turn GF_MATCHREF back off (c:1099-1100).
4751    //
4752    // This layer used to re-do it with `pattern.contains("(#m)")`, which can
4753    // only ever answer "on": it re-set $MATCH after the matcher had correctly
4754    // declined to, so `(#m)(#M)a*` reported a match string where zsh leaves it
4755    // unset. Wrong mechanism (a substring test cannot see which flag came last)
4756    // and wrong layer (the matcher already has the compiled flags).
4757    matched
4758}
4759
4760pub use crate::ported::lex::untokenize_ztokens;
4761
4762pub use crate::ported::utils::unmetafy_str;
4763
4764pub use crate::ported::utils::zsh_errno_msg;
4765
4766// ━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
4767// PM_NAMEREF bridge helpers (typeset -n / named references).
4768//
4769// Rust-only adapters around the canonical C nameref machinery in
4770// Src/params.c (resolve_nameref_rec c:6332, setscope c:6382,
4771// upscope c:6455) and Src/builtin.c (bin_typeset nameref arm
4772// c:3117-3150). zshrs's paramtab is a name-keyed HashMap handing
4773// out clones, so the chain walk operates by NAME against the live
4774// table instead of by Param pointer — same hop rule, same loop
4775// detection, same upscope old-chain walk. The ported fns in
4776// params.rs/builtin.rs call into these at the exact C deref points
4777// (getparamnode c:570-575, getvalue/fetchvalue c:2247-2270,
4778// assignsparam c:3252/3258, assignaparam c:3392-3398, bin_unset
4779// c:3939-3951, typeset_single c:2032-2050).
4780// ━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━
4781
4782pub use crate::ported::params::*;