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kevy_lua/
lib.rs

1//! kevy-lua — Redis EVAL / EVALSHA / SCRIPT surface backed by luna-core.
2//!
3//! kevy's script-host layer. Thin "cement" crate (per the
4//! stone-cement-stone model) — it carries no algorithmic content, only
5//! the bridge between kevy-rt's command dispatch path, kevy-resp's
6//! wire codec, and luna-core's sandboxed `Vm`.
7//!
8//! Design lock-in:
9//!
10//! - **Default Lua 5.1** — preserves the Redis Lua ecosystem (BullMQ,
11//!   Redlock, rate limiters, anything copied from Redis docs).
12//! - **Per-script dialect opt-in via `#!lua version=N`** — scripts
13//!   opt into 5.2 / 5.3 / 5.4 / 5.5 with a single shebang line.
14//!   SHA1 cache key is the raw script bytes, so EVALSHA is
15//!   version-aware for free.
16//! - **VM per-shard, per-dialect, lazily spawned** — first EVAL
17//!   hitting a dialect on a shard constructs the VM; reused
18//!   afterwards. Idle RSS scales with dialects actually used.
19//! - **Atomic execution** — entering EVAL pauses other dispatch on
20//!   that shard until the script returns. Matches Redis semantics.
21//!
22//! `Bridge` holds a per-dialect Vm pool (lazy-spawned); `eval()` runs
23//! the script under the sandbox and marshals the first returned
24//! `Value` into a RESP reply. Shebang parsing, SHA1 cache, EVALSHA,
25//! SCRIPT LOAD/EXISTS/FLUSH, and the `redis.call` host plumbing all
26//! live here.
27
28#![forbid(unsafe_code)]
29#![warn(missing_docs)]
30
31use luna_core::runtime::value::Value;
32use luna_core::vm::exec::Vm;
33use std::cell::Cell;
34use std::rc::Rc;
35
36mod dispatch;
37mod host;
38mod marshal;
39mod resp;
40mod shebang;
41
42mod cjson;
43mod cmsgpack;
44/// SHA-1 digest helpers. Exposed because the operator-side wire
45/// layer (kevy-rt's SCRIPT LOAD / EVALSHA codec) needs to convert
46/// between the 20-byte digest used as a cache key and the 40-char
47/// ASCII hex Redis uses on the wire.
48pub mod sha1;
49
50/// Re-export so callers can name the dialect without depending on
51/// luna-core directly.
52pub use luna_core::version::LuaVersion;
53
54pub(crate) use dispatch::{DISPATCH_KEY, DispatchHandle, DispatchSlot};
55
56/// Lua 5.1 / 5.2 / 5.3 / 5.4 / MacroLua / 5.5 — six fixed slots.
57/// `MacroLua` sits between `Lua54` and `Lua55` (it's a 5.4-superset
58/// compile-time-macro dialect). luna-core does not promise
59/// append-only variant ordering, so we explicitly map every variant
60/// to a stable slot via [`dialect_slot`] — an upstream variant
61/// insert can't silently re-index the VM pool.
62const N_DIALECTS: usize = 6;
63
64/// 200 M ≈ 5 s on modern hardware; matches Redis's default
65/// `lua-time-limit`. Overridable via [`Bridge::set_instr_budget`].
66/// `0` = unlimited (no budget cap).
67const DEFAULT_INSTR_BUDGET: i64 = 200_000_000;
68
69fn dialect_slot(v: LuaVersion) -> usize {
70    match v {
71        LuaVersion::Lua51 => 0,
72        LuaVersion::Lua52 => 1,
73        LuaVersion::Lua53 => 2,
74        LuaVersion::Lua54 => 3,
75        LuaVersion::MacroLua => 4,
76        LuaVersion::Lua55 => 5,
77    }
78}
79
80/// A wire-level reply: just the encoded RESP bytes.
81pub type Reply = Vec<u8>;
82
83/// SCRIPT FLUSH mode (Redis 6.2+ semantics).
84#[derive(Debug, Clone, Copy, PartialEq, Eq)]
85pub enum FlushMode {
86    /// Synchronous — drop the cache before returning.
87    Sync,
88    /// Asynchronous — schedule the cache drop. Currently both
89    /// modes run as Sync; we keep the tag for future
90    /// differentiation (and Redis-compat replies).
91    Async,
92}
93
94/// A SHA1 hash of a script's source bytes. Used as the EVALSHA cache
95/// key. Includes any `#!lua version=N` shebang in the input, so a
96/// 5.1 script and the same script with a 5.3 shebang have distinct
97/// SHA1s and never collide in the cache.
98pub type ScriptSha1 = [u8; 20];
99
100/// kevy-lua per-shard bridge. One `Bridge` lives in each shard's
101/// runtime; it owns the per-dialect VM pool, the SHA1 cache, and
102/// the kevy-side dispatch callback that `redis.call` invokes.
103///
104/// The bridge is intentionally NOT `Send` / `Sync` — same constraint
105/// as luna-core's `Vm`, which is `!Send + !Sync` by design. kevy's
106/// thread-per-core model means every shard owns its bridge
107/// exclusively.
108pub struct Bridge {
109    /// Lazily-spawned VM per dialect. First EVAL hitting a dialect
110    /// creates the VM; reused for every subsequent script on that
111    /// dialect. Six fixed slots indexed by [`dialect_slot`].
112    vms: [Option<Vm>; N_DIALECTS],
113    /// Host dispatch closure invoked by `redis.call` / `redis.pcall`.
114    /// `Rc` so cheaply cloned into per-Vm userdata at construction
115    /// time without consuming the original.
116    dispatch: DispatchHandle,
117    /// Read-only mode flag set by [`Bridge::eval_ro`] /
118    /// [`Bridge::evalsha_ro`] before running the script and cleared
119    /// right after. `Rc<Cell<...>>` so every per-dialect Vm's
120    /// dispatch userdata sees the same bit without us having to
121    /// walk the pool. Shared with each `DispatchSlot`.
122    read_only: Rc<Cell<bool>>,
123    /// Per-Vm instruction budget applied at construction time
124    /// (`Vm::sandbox(...).with_instr_budget(N)`). Default 200 M
125    /// (the original hard-coded value). The kevy
126    /// operator wires `[lua] time_limit_ms` through here via
127    /// [`Bridge::set_instr_budget`].
128    ///
129    /// Changes only affect VMs spawned **after** the setter call;
130    /// the kevy-side wiring sets it before any EVAL so this is fine
131    /// in practice. If a config reload needs to take effect on
132    /// in-flight VMs, call `script_flush` afterwards.
133    instr_budget: i64,
134    /// Allow-mask, one bit per [`dialect_slot`]. `true` at slot `i`
135    /// means dialect `i` is permitted; an EVAL whose shebang asks
136    /// for a denied dialect gets a wire `-ERR` reply. All-true by
137    /// default.
138    allow: [bool; N_DIALECTS],
139    /// SHA1 → raw script bytes (including shebang). Populated by
140    /// `script_load` and by every successful `eval`. EVALSHA reads
141    /// from here; SCRIPT FLUSH empties it; SCRIPT EXISTS probes it.
142    ///
143    /// Per-shard cache: kevy runs thread-per-core and each shard
144    /// owns its own Bridge, so we don't share a global cache. The
145    /// trade-off (cache miss on first hit per shard) is dwarfed by
146    /// the locking we'd otherwise need.
147    script_cache: std::collections::HashMap<ScriptSha1, Vec<u8>>,
148}
149
150impl Bridge {
151    /// Create a fresh bridge with `dispatch` as the host callback
152    /// behind `redis.call`. No Vms are spawned until the first
153    /// EVAL.
154    ///
155    /// The dispatch closure receives the script's argv (`&[&[u8]]`,
156    /// command name at index 0) plus a `read_only` flag and must
157    /// return RESP reply bytes. When `read_only` is true the
158    /// dispatcher MUST reject write commands with
159    /// `-READONLY can't write against a read-only script\r\n` so
160    /// `EVAL_RO` / `EVALSHA_RO` deliver Redis semantics. kevy-rt
161    /// owns the canonical command-flag table and does this check
162    /// natively in production; tests provide a stub dispatcher
163    /// hard-coding a few write commands (see `tests/integration.rs`).
164    ///
165    /// For embedders that don't need real keyspace access (e.g.
166    /// pure-computation EVAL), [`Bridge::with_no_dispatch`] installs
167    /// a default that returns `-ERR redis.call: no dispatch wired`
168    /// for every call.
169    pub fn new<F>(dispatch: F) -> Self
170    where
171        F: Fn(&[&[u8]], bool) -> Vec<u8> + 'static,
172    {
173        Self {
174            vms: [const { None }; N_DIALECTS],
175            dispatch: Rc::new(dispatch),
176            read_only: Rc::new(Cell::new(false)),
177            allow: [true; N_DIALECTS],
178            script_cache: std::collections::HashMap::new(),
179            instr_budget: DEFAULT_INSTR_BUDGET,
180        }
181    }
182
183    /// Override the per-Vm instruction budget (~5 s ≈ 200 M instr by
184    /// default). `0` disables the cap (unlimited execution).
185    ///
186    /// Setting it does NOT affect already-spawned VMs in the pool —
187    /// you can pair the call with [`Bridge::script_flush`] to force
188    /// a respawn under the new budget, or leave existing VMs as-is
189    /// and only catch new dialects.
190    pub fn set_instr_budget(&mut self, n: i64) {
191        self.instr_budget = n;
192    }
193
194    /// Bridge with a no-op dispatcher: every `redis.call` returns a
195    /// RESP error. Convenience for embedders that want EVAL but
196    /// don't have the host dispatch wired yet (e.g. pure-computation
197    /// scripts during early development).
198    #[must_use]
199    pub fn with_no_dispatch() -> Self {
200        Self::new(|_argv: &[&[u8]], _ro: bool| {
201            b"-ERR redis.call: no host dispatch wired\r\n".to_vec()
202        })
203    }
204
205    /// Restrict which Lua dialects this bridge will spawn VMs for.
206    /// An EVAL with `#!lua version=N` for a non-allowed dialect is
207    /// rejected with a `-ERR` reply. The 5.1 default is always
208    /// accessible via scripts with no shebang regardless of this
209    /// setting (you can't disable the ecosystem-default dialect
210    /// without taking a different `with_allowed_dialects` API).
211    ///
212    /// Passing an empty slice = no restriction = all five dialects
213    /// permitted (the constructor default).
214    pub fn set_allowed_dialects(&mut self, versions: &[LuaVersion]) {
215        if versions.is_empty() {
216            self.allow = [true; N_DIALECTS];
217            return;
218        }
219        self.allow = [false; N_DIALECTS];
220        for v in versions {
221            self.allow[dialect_slot(*v)] = true;
222        }
223    }
224
225    /// Compile-or-execute a script and marshal its first return value
226    /// into a RESP reply.
227    ///
228    /// P1 scope: default to Lua 5.1, ignore KEYS/ARGV (P3 binds them
229    /// to globals), no `redis.call` (P3), no shebang parsing (P4),
230    /// no SHA1 cache (P5). The point is to confirm
231    /// `EVAL "return 1" 0` produces `:1\r\n`.
232    pub fn eval(&mut self, script: &[u8], keys: &[&[u8]], args: &[&[u8]]) -> Reply {
233        // P4: peel off the `#!lua version=N` shebang first so we know
234        // which dialect Vm to route to before parsing the body.
235        let (sh, body) = match shebang::parse(script) {
236            Ok(t) => t,
237            Err(e) => return resp::err(format!("{e}").as_bytes()),
238        };
239        if !self.allow[dialect_slot(sh.version)] {
240            return resp::err(
241                format!("dialect {} disabled by [lua] allow_dialects", version_tag(sh.version))
242                    .as_bytes(),
243            );
244        }
245        let src = match std::str::from_utf8(body) {
246            Ok(s) => s,
247            Err(_) => return resp::err(b"script body is not valid UTF-8"),
248        };
249        // Redis EVAL semantics: every script that successfully runs
250        // (or even compiles) is added to the SCRIPT cache so a later
251        // EVALSHA can find it. We insert before running so a script
252        // that runs forever still gets a SCRIPT EXISTS hit (matches
253        // Redis behaviour).
254        let digest = sha1::sha1(script);
255        self.script_cache.entry(digest).or_insert_with(|| script.to_vec());
256        let vm = self.vm_for(sh.version);
257        // Bind KEYS / ARGV freshly per invocation. The `redis` host
258        // table was installed once when the Vm was constructed.
259        host::bind_keys_argv(vm, keys, args);
260        match vm.eval(src) {
261            Ok(results) => {
262                let first = results.first().copied().unwrap_or(Value::Nil);
263                marshal::value(vm, first)
264            }
265            Err(e) => resp::err(format_lua_error(&e).as_bytes()),
266        }
267    }
268
269    /// Read-only variant of [`Bridge::eval`]. The dispatcher receives
270    /// `read_only = true` for every `redis.call` from this script;
271    /// kevy-rt rejects write commands with
272    /// `-READONLY can't write against a read-only script\r\n`.
273    /// Redis 7.0+ `EVAL_RO`.
274    ///
275    /// All other semantics (KEYS / ARGV / SHA1 cache fill /
276    /// dialect routing) are identical to `eval`.
277    pub fn eval_ro(&mut self, script: &[u8], keys: &[&[u8]], args: &[&[u8]]) -> Reply {
278        self.read_only.set(true);
279        let r = self.eval(script, keys, args);
280        self.read_only.set(false);
281        r
282    }
283
284    /// Read-only variant of [`Bridge::evalsha`]. Redis 7.0+ `EVALSHA_RO`.
285    pub fn evalsha_ro(&mut self, sha1: ScriptSha1, keys: &[&[u8]], args: &[&[u8]]) -> Reply {
286        self.read_only.set(true);
287        let r = self.evalsha(sha1, keys, args);
288        self.read_only.set(false);
289        r
290    }
291
292    /// Run a previously-cached script by SHA1 hex.
293    ///
294    /// Returns `-NOSCRIPT ...` if the script isn't in the cache.
295    /// Identical to running `eval` with the cached bytes — the same
296    /// shebang routing, KEYS/ARGV binding, and redis.* host plumbing
297    /// apply.
298    pub fn evalsha(&mut self, sha1: ScriptSha1, keys: &[&[u8]], args: &[&[u8]]) -> Reply {
299        let Some(script) = self.script_cache.get(&sha1).cloned() else {
300            return resp::err(b"NOSCRIPT No matching script. Please use EVAL.");
301        };
302        self.eval(&script, keys, args)
303    }
304
305    /// Cache a script without running it. Returns the SHA1 digest;
306    /// the operator-side wire layer hex-encodes it for the Redis
307    /// SCRIPT LOAD reply.
308    pub fn script_load(&mut self, script: &[u8]) -> ScriptSha1 {
309        let digest = sha1::sha1(script);
310        self.script_cache.insert(digest, script.to_vec());
311        digest
312    }
313
314    /// Test which of the given SHA1s are in the cache. Returns a
315    /// vector with `true`/`false` for each input SHA1 in order.
316    #[must_use]
317    pub fn script_exists(&self, sha1s: &[ScriptSha1]) -> Vec<bool> {
318        sha1s.iter().map(|s| self.script_cache.contains_key(s)).collect()
319    }
320
321    /// Drop the SHA1 cache + all per-dialect VMs. `ASYNC` and `SYNC`
322    /// are currently both implemented as synchronous; the tag is
323    /// preserved for future differentiation.
324    pub fn script_flush(&mut self, _mode: FlushMode) {
325        for slot in &mut self.vms {
326            *slot = None;
327        }
328        self.script_cache.clear();
329    }
330
331    /// Number of dialect VMs currently spawned. Test-only helper —
332    /// production code doesn't need to inspect the pool.
333    #[cfg(test)]
334    fn vm_count(&self) -> usize {
335        self.vms.iter().filter(|s| s.is_some()).count()
336    }
337
338    /// Lazily build the sandbox Vm for `version`. Conservative
339    /// default: base + math + string + table libraries, no JIT,
340    /// no bytecode loading, 200M instruction budget (~5 s on modern
341    /// hardware — Redis's default `lua-time-limit`). The `redis`
342    /// host table is installed once at Vm-construction time; KEYS /
343    /// ARGV are re-bound per `eval` call (see [`Bridge::eval`]).
344    fn vm_for(&mut self, version: LuaVersion) -> &mut Vm {
345        let slot = &mut self.vms[dialect_slot(version)];
346        if slot.is_none() {
347            let mut builder =
348                Vm::sandbox(version).open_base().open_math().open_string().open_table();
349            if self.instr_budget > 0 {
350                builder = builder.with_instr_budget(self.instr_budget);
351            }
352            let mut vm = builder.build();
353            host::install_redis_table(&mut vm);
354            // BullMQ + Sidekiq Pro require the `cmsgpack` global.
355            cmsgpack::install_cmsgpack(&mut vm);
356            cjson::install_cjson(&mut vm);
357            // Install the dispatch handle as a userdata global.
358            // `redis.call` retrieves it via
359            // `vm.userdata_borrow::<DispatchSlot>(DISPATCH_KEY)`. We
360            // clone the Rc so each Vm holds an independent handle
361            // pointing at the shared closure.
362            let _ = vm.set_userdata(
363                DISPATCH_KEY,
364                DispatchSlot {
365                    f: Rc::clone(&self.dispatch),
366                    read_only: Rc::clone(&self.read_only),
367                },
368            );
369            *slot = Some(vm);
370        }
371        slot.as_mut().expect("just-inserted Vm")
372    }
373}
374
375impl Default for Bridge {
376    /// Equivalent to [`Bridge::with_no_dispatch`] — the safe default
377    /// for embedders that don't have a host dispatch wired yet.
378    fn default() -> Self {
379        Self::with_no_dispatch()
380    }
381}
382
383fn format_lua_error(e: &luna_core::vm::error::LuaError) -> String {
384    // luna-core impls `Display for LuaError` — embedders don't
385    // need to case-split on the inner Value type.
386    format!("{e}")
387}
388
389fn version_tag(v: LuaVersion) -> &'static str {
390    match v {
391        LuaVersion::Lua51 => "5.1",
392        LuaVersion::Lua52 => "5.2",
393        LuaVersion::Lua53 => "5.3",
394        LuaVersion::Lua54 => "5.4",
395        LuaVersion::MacroLua => "macro",
396        LuaVersion::Lua55 => "5.5",
397    }
398}
399
400// Most public-surface tests live in `tests/integration.rs` (the
401// house-rule 500 LOC limit on src/*.rs is preserved that way). The
402// few unit tests below need `Bridge::vm_count`, which is
403// `#[cfg(test)]`-gated and therefore not visible from
404// integration tests.
405#[cfg(test)]
406mod tests {
407    use super::*;
408
409    #[test]
410    fn eval_reuses_vm_across_calls() {
411        let mut b = Bridge::with_no_dispatch();
412        assert_eq!(b.eval(b"return 1", &[], &[]), b":1\r\n");
413        assert_eq!(b.eval(b"return 2", &[], &[]), b":2\r\n");
414        // One VM should be cached for the 5.1 default dialect.
415        assert_eq!(b.vm_count(), 1);
416    }
417
418    #[test]
419    fn script_flush_drops_vm_pool() {
420        let mut b = Bridge::with_no_dispatch();
421        let _ = b.eval(b"return 1", &[], &[]);
422        assert_eq!(b.vm_count(), 1);
423        b.script_flush(FlushMode::Sync);
424        assert_eq!(b.vm_count(), 0);
425    }
426}