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spg_engine/
lib.rs

1//! SPG execution engine — v0.3 wires the SQL front-end to the in-memory
2//! storage layer. Implements `CREATE TABLE`, single-row `INSERT VALUES`, and
3//! `SELECT * FROM <table>` (no WHERE yet — that lands in v0.4 alongside
4//! expression evaluation against rows).
5#![no_std]
6
7extern crate alloc;
8
9pub mod aggregate;
10mod bytebudget;
11mod cancel;
12mod clock;
13mod constraints;
14mod conversions;
15pub mod copy;
16mod ddl;
17pub mod describe;
18mod dml;
19mod envelope;
20pub mod eval;
21mod execute;
22mod explain;
23mod expr_analysis;
24pub mod fts;
25mod index_access;
26mod join;
27mod joinfold;
28pub mod json;
29mod maintenance;
30pub mod memoize;
31mod numeric;
32mod orderby;
33mod partition;
34pub mod plan_cache;
35mod plpgsql;
36pub mod publications;
37pub mod query_stats;
38mod readonly;
39pub mod reorder;
40pub mod scalarsq_streaming;
41mod select;
42pub mod selectivity;
43mod sequence;
44mod session;
45mod show;
46mod spg_admin;
47pub mod statistics;
48pub mod subquery;
49pub mod subscriptions;
50mod substitute;
51mod system_catalog;
52mod table_access;
53mod transaction;
54pub mod triggers;
55pub mod users;
56mod window;
57
58pub use crate::users::{Role, ScramSecrets, UserError, UserStore};
59pub use cancel::{CancelToken, MonotonicNowFn};
60pub use execute::StreamItem;
61
62use bytebudget::*;
63pub(crate) use clock::{rewrite_clock_calls, value_to_literal};
64use constraints::*;
65use conversions::*;
66pub use conversions::{
67    format_bigint_2d_text_pub, format_bit_string, format_circle, format_hstore_text, format_inet,
68    format_int_2d_text_pub, format_line, format_lseg, format_macaddr, format_macaddr8,
69    format_multirange, format_path, format_pg_box, format_point, format_polygon, format_range_text,
70    format_text_2d_text_pub,
71};
72pub(crate) use ddl::{
73    canonicalize_set_value, enforce_enum_label, eval_runtime_default_free,
74    resolve_column_default_free,
75};
76pub(crate) use envelope::{EnvelopeParse, build_envelope, split_envelope};
77use expr_analysis::*;
78use index_access::*;
79pub use join::{ANTI_JOIN_FAST_PATH_FIRED, ANTI_JOIN_FAST_PATH_TRIED};
80pub(crate) use orderby::{
81    apply_offset_and_limit, apply_offset_and_limit_tagged, build_order_keys, canonical_value_repr,
82    expand_group_by_all, order_by_value_cmp, partial_sort_tagged, render_histogram_bounds,
83    resolve_order_by_position, sort_by_keys, sort_values_for_histogram, value_cmp, value_to_f64,
84};
85pub(crate) use select::{build_projection, infer_column_types, value_to_order_key};
86pub(crate) use show::render_create_table;
87pub use subquery::{
88    BATCHED_SCALAR_FALL_THROUGH_COUNT, BATCHED_SCALAR_KEYED_FIRE_COUNT,
89    BATCHED_SCALAR_KEYED_PROBE_COUNT, EXISTS_BATCH_FALL_THROUGH_COUNT, EXISTS_BATCH_FIRE_COUNT,
90    EXISTS_PULLUP_BAIL_INNER_FROM, EXISTS_PULLUP_BAIL_INNER_SHAPE,
91    EXISTS_PULLUP_BAIL_MULTICOL_DISABLED, EXISTS_PULLUP_BAIL_NO_CORR,
92    EXISTS_PULLUP_BAIL_NO_WHERE, EXISTS_PULLUP_BAIL_RESIDUAL_NOT_INNER,
93    EXISTS_PULLUP_BAIL_UNIQUE_KEY_MISSING, EXISTS_PULLUP_CANDIDATE_COUNT,
94    EXISTS_PULLUP_FIRE_COUNT, EXISTS_PULLUP_MULTICOL_DISABLE, PULLUP_LIMIT1_FIRE_COUNT,
95    SCALARSQ_PK_PROBE_FIRED, ScalarPkProbeFastPath, expr_tree_has_subquery,
96};
97pub(crate) use subquery::{build_in_list_set, collect_scalar_subqueries, expr_has_subquery};
98pub use substitute::substitute_placeholders;
99use substitute::*;
100use system_catalog::*;
101use window::*;
102
103use alloc::collections::BTreeMap;
104use alloc::string::String;
105use alloc::vec::Vec;
106use core::fmt;
107
108// v7.16.0 — re-export the parsed-statement AST so downstream
109// crates (spg-embedded → spg-sqlx) don't need a direct dep on
110// spg-sql for the prepare/bind handle.
111pub use spg_sql::ast::{SelectStatement, Statement as ParsedStatement};
112use spg_sql::parser::ParseError;
113use spg_storage::{Catalog, ColumnSchema, Row, RowChange, StorageError};
114
115use crate::eval::EvalError;
116
117/// Result of executing one statement.
118#[derive(Debug, Clone, PartialEq)]
119#[non_exhaustive]
120pub enum QueryResult {
121    /// DDL or DML succeeded.
122    ///
123    /// `affected` is the row count for `INSERT` and 0 elsewhere.
124    /// `modified_catalog` tells the server whether this statement
125    /// caused the *committed* catalog to change — it's the signal to
126    /// snapshot/audit. False for `BEGIN`/`ROLLBACK`, false for writeful
127    /// statements executed inside a transaction (those only touch the
128    /// shadow), and true for `COMMIT` and for writes outside a TX.
129    CommandOk {
130        affected: usize,
131        modified_catalog: bool,
132    },
133    /// `SELECT` returned a (possibly empty) row set.
134    Rows {
135        columns: Vec<ColumnSchema>,
136        rows: Vec<Row<'static>>,
137    },
138}
139
140/// All errors the engine can return.
141///
142/// Marked `#[non_exhaustive]` from v7.5.0 onward: external `match`
143/// must include a `_` arm so new variants in subsequent v7.x releases
144/// are not breaking changes.
145#[derive(Debug, Clone, PartialEq)]
146#[non_exhaustive]
147pub enum EngineError {
148    Parse(ParseError),
149    Storage(StorageError),
150    Eval(EvalError),
151    /// Front-end accepted a construct that the v0.x executor doesn't support.
152    Unsupported(String),
153    /// `BEGIN` while another transaction is already open.
154    TransactionAlreadyOpen,
155    /// `COMMIT` / `ROLLBACK` with no active transaction.
156    NoActiveTransaction,
157    /// v4.0 sentinel: `execute_readonly` got a statement that
158    /// mutates engine state (INSERT / CREATE / BEGIN / COMMIT / …).
159    /// The caller should retake the write lock and dispatch through
160    /// `execute(&mut self)` instead.
161    WriteRequired,
162    /// v4.2: a SELECT would have returned more rows than the
163    /// configured `max_query_rows` cap. Carries the cap.
164    RowLimitExceeded(usize),
165    /// v7.30.3 (mailrs round-26): a SELECT's join/filter
166    /// materialisation would have held more (approximate) heap
167    /// bytes than the configured `max_query_bytes` cap. The row
168    /// cap above counts rows; this counts bytes, because one row
169    /// can be a multi-MB mail body — 1000 fat rows pressure the
170    /// host long before any row ceiling trips. Carries the cap.
171    QueryBytesExceeded(usize),
172    /// v4.5: cooperative cancellation — the host (server's
173    /// per-query watchdog) set the cancel flag while a long-running
174    /// SELECT / UPDATE / DELETE was scanning rows. The partial work
175    /// is discarded; the caller should surface this as a timeout
176    /// to the client.
177    Cancelled,
178}
179
180impl fmt::Display for EngineError {
181    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
182        match self {
183            Self::Parse(e) => write!(f, "parse: {e}"),
184            Self::Storage(e) => write!(f, "storage: {e}"),
185            Self::Eval(e) => write!(f, "eval: {e}"),
186            Self::Unsupported(s) => write!(f, "unsupported: {s}"),
187            Self::TransactionAlreadyOpen => f.write_str("a transaction is already open"),
188            Self::NoActiveTransaction => f.write_str("no active transaction"),
189            Self::WriteRequired => {
190                f.write_str("statement requires a write lock (use execute, not execute_readonly)")
191            }
192            Self::RowLimitExceeded(n) => {
193                write!(f, "query exceeded max_query_rows={n}")
194            }
195            Self::QueryBytesExceeded(n) => {
196                write!(
197                    f,
198                    "query materialisation exceeded max_query_bytes={n} (set SPG_MAX_QUERY_BYTES to raise, 0 to disable)"
199                )
200            }
201            Self::Cancelled => f.write_str("query cancelled (timeout or client request)"),
202        }
203    }
204}
205
206impl From<ParseError> for EngineError {
207    fn from(e: ParseError) -> Self {
208        Self::Parse(e)
209    }
210}
211impl From<StorageError> for EngineError {
212    fn from(e: StorageError) -> Self {
213        Self::Storage(e)
214    }
215}
216impl From<EvalError> for EngineError {
217    fn from(e: EvalError) -> Self {
218        Self::Eval(e)
219    }
220}
221
222/// The execution engine. Holds the catalog and (later) other server-scope
223/// state. `Engine::new()` is intentionally cheap so callers can construct one
224/// per database, per test.
225/// Function pointer that returns "now" as microseconds since Unix
226/// epoch. The engine is `no_std`, so it can't reach for `std::time`
227/// itself — callers (`spg-server`, the sqllogictest runner) inject a
228/// concrete implementation. `None` means `NOW()` / `CURRENT_*` raise
229/// `Unsupported`.
230pub type ClockFn = fn() -> i64;
231
232/// Function pointer that produces 16 cryptographically random bytes.
233/// Like `ClockFn`, the engine is `no_std` and can't reach for /dev/urandom
234/// itself — host (`spg-server`) injects an OS-backed source. `None`
235/// means SQL-driven `CREATE USER` falls back to a deterministic salt
236/// derived from the username (acceptable in tests; the server always
237/// installs a real RNG so production paths never see this).
238pub type SaltFn = fn() -> [u8; 16];
239
240/// v4.5 cooperative cancellation token. A long-running SELECT /
241/// UPDATE / DELETE checks `is_cancelled` at row-loop checkpoints
242/// and bails with `EngineError::Cancelled`. The host
243/// (`spg-server`) creates an `AtomicBool` per query, spawns a
244/// watchdog thread that sets it after `SPG_QUERY_TIMEOUT_MS`,
245/// and passes it via `execute_with_cancel` / `execute_readonly_with_cancel`.
246///
247/// `CancelToken::none()` is a no-op — used by the legacy `execute`
248/// and `execute_readonly` entry points so existing callers don't
249/// change.
250/// v4.41.1 opaque transaction handle. Returned by `Engine::alloc_tx_id`,
251/// threaded through `Engine::execute_in` so dispatch can identify which
252/// in-flight TX a statement belongs to. `IMPLICIT_TX` is the reserved
253/// slot every legacy caller — engine self-tests, spg-cli, spg-embedded,
254/// startup replay — implicitly uses through the unchanged
255/// `Engine::execute(sql)` API. v4.41.1 keeps at most one active slot at
256/// runtime (dispatch holds `engine.write()` across the wrap, same as
257/// v4.34); the map shape is here to let v4.42 turn on N in-flight
258/// implicit TXs without reshuffling the engine internals.
259#[derive(Debug, Clone, Copy, PartialEq, Eq, PartialOrd, Ord, Hash)]
260pub struct TxId(pub u64);
261
262/// Reserved slot used by `Engine::execute(sql)` — the legacy single-
263/// global-shadow path. New `alloc_tx_id` handles start at 1.
264pub const IMPLICIT_TX: TxId = TxId(0);
265
266/// v6.7.3 — default segment-size threshold used by `COMPACT COLD
267/// SEGMENTS` when no explicit target is supplied. Segments whose
268/// `OwnedSegment::bytes().len()` is **strictly** less than this
269/// value are eligible to merge. spg-server reads
270/// `SPG_COMPACTION_TARGET_SEGMENT_BYTES` to override.
271pub const COMPACTION_TARGET_DEFAULT_BYTES: u64 = 4 * 1024 * 1024;
272
273/// Per-slot transaction state. Held inside `tx_catalogs[tx_id]` for the
274/// lifetime of a BEGIN..COMMIT (or BEGIN..ROLLBACK) window. Drops when
275/// the TX commits (its `catalog` is moved over `Engine.catalog`) or
276/// rolls back (slot removed, catalog discarded).
277#[derive(Debug, Default, Clone)]
278struct TxState {
279    /// The TX's shadow copy of the catalog. Started as a clone of
280    /// `Engine.catalog` at BEGIN time; writes flow into it; COMMIT
281    /// installs it over `Engine.catalog`. `Catalog::clone()` is O(1)
282    /// since v4.40 (`PersistentVec` rows + `PersistentBTreeMap` indices).
283    catalog: Catalog,
284    /// Per-TX savepoint stack. Each entry pairs the savepoint name with
285    /// a clone of `catalog` at the moment `SAVEPOINT <name>` fired.
286    /// `ROLLBACK TO <name>` restores from the entry and pops everything
287    /// after it; `RELEASE <name>` discards the entry and everything
288    /// after; COMMIT/ROLLBACK clears the whole stack.
289    savepoints: Vec<(String, Catalog)>,
290}
291
292/// v7.11.0 — frozen read-only view of the engine's committed state.
293/// Constructed via [`Engine::clone_snapshot`]. Holds clones of the
294/// catalog, statistics, clock function, and row-cap config — the
295/// four fields the `execute_readonly` path actually reads. Cheap to
296/// `Clone` (each clone shares the underlying `PersistentVec` row
297/// storage; only the trie root pointers copy). Send + Sync so a
298/// snapshot can be moved across `tokio::task::spawn_blocking`
299/// boundaries without coordination.
300///
301/// The contract: a snapshot reflects the engine's state at the
302/// moment `clone_snapshot()` returned. Subsequent writes to the
303/// engine are NOT visible. Callers who need fresher data take a
304/// new snapshot.
305#[derive(Debug, Clone)]
306pub struct CatalogSnapshot {
307    catalog: Catalog,
308    statistics: statistics::Statistics,
309    clock: Option<ClockFn>,
310    max_query_rows: Option<usize>,
311}
312
313/// CoW-1 (v7.34) — frozen view of the *persisted* committed engine
314/// state. Carries every field the `snapshot()` envelope serializes;
315/// `Clone` is O(1) on the catalog (Arc bump) and cheap typed-clones
316/// on the trailers. Decouples "capture state" from "serialize bytes"
317/// so the background-checkpoint worker can hold the snapshot and
318/// produce bytes off the engine write lock.
319#[derive(Debug, Clone)]
320pub struct EngineSnapshot {
321    catalog: Catalog,
322    users: UserStore,
323    publications: publications::Publications,
324    subscriptions: subscriptions::Subscriptions,
325    statistics: statistics::Statistics,
326}
327
328impl EngineSnapshot {
329    /// Same envelope rules as `Engine::snapshot()`: bare catalog when
330    /// every trailer is empty, full envelope otherwise.
331    pub fn serialize(&self) -> Vec<u8> {
332        if self.users.is_empty()
333            && self.publications.is_empty()
334            && self.subscriptions.is_empty()
335            && self.statistics.is_empty()
336        {
337            self.catalog.serialize()
338        } else {
339            build_envelope(
340                &self.catalog.serialize(),
341                &users::serialize_users(&self.users),
342                &self.publications.serialize(),
343                &self.subscriptions.serialize(),
344                &self.statistics.serialize(),
345            )
346        }
347    }
348}
349
350// The engine carries several independent session/capture flags (dialect,
351// FK-checks, meta-view materialisation, redo capture); they're orthogonal
352// switches, not a state enum begging to be modelled.
353#[allow(clippy::struct_excessive_bools)]
354#[derive(Debug, Default)]
355pub struct Engine {
356    /// Committed catalog — what survives `Engine::snapshot()` and what
357    /// outside-TX `SELECT`s read.
358    catalog: Catalog,
359    /// Active TX slots, keyed by `TxId`. Empty when no TX is in flight.
360    /// v4.41.1 runtime invariant: at most one entry (single-writer
361    /// model unchanged). v4.42 will let dispatch hold multiple entries
362    /// concurrently for group commit + engine MVCC.
363    tx_catalogs: BTreeMap<TxId, TxState>,
364    /// Which slot the next exec_* call should mutate. Set by
365    /// `execute_in(sql, tx_id)` at the entry point; legacy `execute(sql)`
366    /// sets it to `IMPLICIT_TX`. None when no TX is in flight (read /
367    /// write goes straight against `catalog`).
368    current_tx: Option<TxId>,
369    /// Monotonic counter for `alloc_tx_id`. Starts at 1 — slot 0 is
370    /// reserved for `IMPLICIT_TX`.
371    next_tx_id: u64,
372    /// v7.22 (round-13 T3) — session string-literal dialect. `false`
373    /// (default) = PG semantics (backslash literal, `''` escape);
374    /// `true` = MySQL semantics (`\'` etc.). Flipped by the
375    /// deterministic session signals each dump emits: `SET sql_mode`
376    /// (only MySQL clients/dumps send it) turns it on,
377    /// `SET standard_conforming_strings = on` (every pg_dump
378    /// preamble) turns it off. The plan cache is cleared on every
379    /// flip — the same SQL text lexes differently per dialect.
380    backslash_escapes: bool,
381    /// Optional wall clock used to satisfy `NOW()` / `CURRENT_TIMESTAMP`
382    /// / `CURRENT_DATE`. Set by the host environment.
383    clock: Option<ClockFn>,
384    /// v4.1 cryptographic RNG for per-user password salt. Set by the
385    /// host. `None` means SQL-driven `CREATE USER` uses a
386    /// deterministic fallback — see `SaltFn`.
387    salt_fn: Option<SaltFn>,
388    /// v4.2 per-query row cap. `None` = unlimited. When set, a
389    /// SELECT that materialises more than `n` rows returns
390    /// `EngineError::RowLimitExceeded`. Enforced before the result
391    /// is shaped into wire frames so a runaway scan can't blow the
392    /// server's heap.
393    max_query_rows: Option<usize>,
394    /// v7.30.3 (mailrs round-26) per-query byte cap on join/filter
395    /// materialisation. `None` = unlimited. Approximate net
396    /// accounting (Value heap payloads + per-cell enum overhead)
397    /// charged at every point the join pipeline clones rows;
398    /// crossing the cap raises `EngineError::QueryBytesExceeded`
399    /// instead of pressuring the host into reclaim livelock. The
400    /// host wires this to `SPG_MAX_QUERY_BYTES` (embed defaults it
401    /// ON; the server keeps its allocator-precise budget as the
402    /// outer layer).
403    pub(crate) max_query_bytes: Option<usize>,
404    /// v4.1 RBAC user table. Empty means "no RBAC configured yet" —
405    /// the server decides what that means at the auth boundary
406    /// (open mode vs legacy single-password mode). User CRUD goes
407    /// through `create_user`/`drop_user`/`verify_user`; persistence
408    /// rides the snapshot envelope alongside the catalog.
409    pub(crate) users: UserStore,
410    /// v6.1.2 logical-replication publication catalog. Empty until
411    /// `CREATE PUBLICATION` runs. Persistence rides the v3 envelope
412    /// trailer (see `build_envelope`).
413    publications: publications::Publications,
414    /// v6.1.4 logical-replication subscription catalog. Empty until
415    /// `CREATE SUBSCRIPTION` runs. Persistence rides the v4 envelope
416    /// trailer.
417    subscriptions: subscriptions::Subscriptions,
418    /// v6.2.0 — per-column statistics for the cost-based optimizer.
419    /// Populated by `ANALYZE`; queried via `spg_statistic` virtual
420    /// table. Persistence rides the v5 envelope trailer.
421    statistics: statistics::Statistics,
422    /// v6.3.0 — engine-level plan cache. Caches the post-`prepare()`
423    /// `Statement` keyed on SQL text. In-memory only — does NOT ride
424    /// the snapshot envelope (rebuilt on demand after restart).
425    plan_cache: plan_cache::PlanCache,
426    /// v6.5.1 — per-distinct-SQL execution stats. In-memory only,
427    /// surfaced via `spg_stat_query` virtual table. Updated by the
428    /// `execute_*` paths after a successful execute.
429    query_stats: query_stats::QueryStats,
430    /// v6.5.2 — connection-state provider callback. spg-server
431    /// registers a function at startup that snapshots its
432    /// per-pgwire-connection registry into `ActivityRow`s; engine
433    /// reads through it on every `SELECT * FROM spg_stat_activity`.
434    /// `None` ⇒ no-data (returns empty rows; matches the no_std
435    /// embedded callers that don't run pgwire).
436    activity_provider: Option<ActivityProvider>,
437    /// v6.5.3 — audit-chain provider + verifier. Same pattern as
438    /// activity_provider: spg-server registers both at startup;
439    /// engine reads through on `SELECT * FROM spg_audit_chain` and
440    /// `SELECT * FROM spg_audit_verify`. `None` ⇒ no-data.
441    audit_chain_provider: Option<AuditChainProvider>,
442    audit_verifier: Option<AuditVerifier>,
443    /// v6.5.6 — slow-query log threshold in microseconds. When set,
444    /// every successful execute whose elapsed exceeds the threshold
445    /// gets fed to the registered slow-query log callback (so
446    /// spg-server can emit a structured log line). Default `None`
447    /// = no slow-query logging.
448    slow_query_threshold_us: Option<u64>,
449    slow_query_logger: Option<SlowQueryLogger>,
450    /// v7.12.1 — session parameters set via `SET <name> = <value>`.
451    /// Only `default_text_search_config` is consumed by the engine
452    /// today (the FTS function dispatcher reads it when
453    /// `to_tsvector(text)` is called without an explicit config).
454    /// All other names are accepted + recorded so PG-dump output
455    /// loads, but have no behavioural effect.
456    pub(crate) session_params: BTreeMap<String, String>,
457    /// v7.12.7 — depth counter for trigger-emitted embedded SQL.
458    /// Each time the engine executes a `DeferredEmbeddedStmt` it
459    /// increments this; the recursive `execute_stmt_with_cancel`
460    /// inside that path checks against [`MAX_TRIGGER_RECURSION`]
461    /// to bound runaway cascades (trigger A's UPDATE on table B
462    /// fires trigger B which UPDATEs table A which fires trigger
463    /// A again…). Reset to 0 once the original DML returns.
464    trigger_recursion_depth: u32,
465    /// v7.14.0 — when `SET FOREIGN_KEY_CHECKS=0` is in effect
466    /// (mysqldump preamble), the FK existence + arity check at
467    /// CREATE TABLE time is deferred. FKs referencing a
468    /// not-yet-existing parent land in `pending_foreign_keys`
469    /// keyed by child table; `SET FOREIGN_KEY_CHECKS=1` drains
470    /// the queue and resolves each FK against the now-complete
471    /// catalog. Empty by default; the queue is drained on every
472    /// `RESET ALL` too.
473    foreign_key_checks: bool,
474    /// v7.16.2 — true on the temp Engine an outer
475    /// `exec_select_with_meta_views` builds, telling that
476    /// temp engine "stop short-circuiting into the meta-view
477    /// path — your catalog already has the materialised
478    /// tables; just run the regular SELECT." Without this we'd
479    /// infinite-loop since the meta-view name (e.g.
480    /// `__spg_info_columns`) still triggers
481    /// `select_references_meta_view`.
482    meta_views_materialised: bool,
483    pending_foreign_keys: Vec<(alloc::string::String, spg_sql::ast::ForeignKeyConstraint)>,
484    /// v7.34 (crash-recovery P0 #2) — row-level redo capture. When the
485    /// embedding layer turns this on (persistence enabled), each mutating
486    /// `execute` records the physical [`RowChange`]s it applied; the
487    /// engine drains them into `last_redo` on success, and the embedded
488    /// layer reads them via [`Engine::take_redo`] to write the WAL in
489    /// place of the SQL text. Off (default) = zero capture overhead.
490    redo_capture: bool,
491    /// Redo captured by the most recent successful mutating `execute`,
492    /// awaiting drain by the embedding layer. Cleared on each capture.
493    last_redo: Vec<RowChange>,
494}
495
496/// v7.12.7 — hard cap on nested trigger-emitted embedded SQL
497/// fires. 16 deep is well past anything a normal trigger graph
498/// uses while still preventing infinite-loop wedging.
499const MAX_TRIGGER_RECURSION: u32 = 16;
500
501/// v6.5.6 — callback signature for slow-query log emission. Called
502/// with `(sql, elapsed_us)` once per successful execute that crosses
503/// the threshold.
504pub type SlowQueryLogger = fn(&str, u64);
505
506/// v6.5.2 — one row of `spg_stat_activity`. Engine-public so
507/// spg-server can construct rows without re-exporting internal
508/// dispatch types.
509#[derive(Debug, Clone)]
510pub struct ActivityRow {
511    pub pid: u32,
512    pub user: String,
513    pub started_at_us: i64,
514    pub current_sql: String,
515    pub wait_event: String,
516    pub elapsed_us: i64,
517    pub in_transaction: bool,
518    /// v7.17 Phase 2.4 — startup-param `application_name` (or the
519    /// last value the client sent via `SET application_name = '...'`).
520    /// Empty when the client never declared one.
521    pub application_name: String,
522}
523
524/// v6.5.2 — provider callback type. Fresh snapshot returned each
525/// call; engine doesn't cache the slice.
526pub type ActivityProvider = fn() -> Vec<ActivityRow>;
527
528/// v6.5.3 — one row of `spg_audit_chain`. Engine-public so
529/// spg-server can construct rows directly from `AuditEntry`.
530#[derive(Debug, Clone)]
531pub struct AuditRow {
532    pub seq: i64,
533    pub ts_ms: i64,
534    pub prev_hash_hex: String,
535    pub entry_hash_hex: String,
536    pub sql: String,
537}
538
539/// v6.5.3 — chain-table provider + verifier. spg-server registers
540/// fn pointers that snapshot / verify the audit log. `verify`
541/// returns `(verified_count, broken_at_seq)` — `broken_at_seq` is
542/// `-1` on a clean chain.
543pub type AuditChainProvider = fn() -> Vec<AuditRow>;
544pub type AuditVerifier = fn() -> (i64, i64);
545
546impl Engine {
547    pub fn new() -> Self {
548        Self {
549            catalog: Catalog::new(),
550            tx_catalogs: BTreeMap::new(),
551            current_tx: None,
552            backslash_escapes: false,
553            next_tx_id: 1,
554            clock: None,
555            salt_fn: None,
556            max_query_rows: None,
557            max_query_bytes: None,
558            users: UserStore::new(),
559            publications: publications::Publications::new(),
560            subscriptions: subscriptions::Subscriptions::new(),
561            statistics: statistics::Statistics::new(),
562            plan_cache: plan_cache::PlanCache::new(),
563            query_stats: query_stats::QueryStats::new(),
564            activity_provider: None,
565            audit_chain_provider: None,
566            audit_verifier: None,
567            slow_query_threshold_us: None,
568            slow_query_logger: None,
569            session_params: BTreeMap::new(),
570            trigger_recursion_depth: 0,
571            foreign_key_checks: true,
572            meta_views_materialised: false,
573            pending_foreign_keys: Vec::new(),
574            redo_capture: false,
575            last_redo: Vec::new(),
576        }
577    }
578
579    /// v7.11.0 — clone the engine's committed catalog + read-time
580    /// state into a frozen `CatalogSnapshot`. Cheap (`Catalog` is
581    /// backed by `PersistentVec`; cloning is O(log n) per table).
582    /// Subsequent writes to this engine are invisible to the
583    /// snapshot; the snapshot is self-contained and can be moved
584    /// to another thread for concurrent `execute_readonly_on_snapshot`
585    /// calls. The basis for [`AsyncReadHandle`] in spg-embedded-tokio
586    /// and any other read-fanout pattern.
587    #[must_use]
588    pub fn clone_snapshot(&self) -> CatalogSnapshot {
589        CatalogSnapshot {
590            catalog: self.active_catalog().clone(),
591            statistics: self.statistics.clone(),
592            clock: self.clock,
593            max_query_rows: self.max_query_rows,
594        }
595    }
596
597    /// Construct an engine restored from a previously-snapshotted catalog
598    /// (see `snapshot()`).
599    pub fn restore(catalog: Catalog) -> Self {
600        Self {
601            catalog,
602            tx_catalogs: BTreeMap::new(),
603            current_tx: None,
604            backslash_escapes: false,
605            next_tx_id: 1,
606            clock: None,
607            salt_fn: None,
608            max_query_rows: None,
609            max_query_bytes: None,
610            users: UserStore::new(),
611            publications: publications::Publications::new(),
612            subscriptions: subscriptions::Subscriptions::new(),
613            statistics: statistics::Statistics::new(),
614            plan_cache: plan_cache::PlanCache::new(),
615            query_stats: query_stats::QueryStats::new(),
616            activity_provider: None,
617            audit_chain_provider: None,
618            audit_verifier: None,
619            slow_query_threshold_us: None,
620            slow_query_logger: None,
621            session_params: BTreeMap::new(),
622            trigger_recursion_depth: 0,
623            foreign_key_checks: true,
624            meta_views_materialised: false,
625            pending_foreign_keys: Vec::new(),
626            redo_capture: false,
627            last_redo: Vec::new(),
628        }
629    }
630
631    /// Restore an engine + user table from a v4.1 envelope produced
632    /// by `snapshot_with_users()`. Falls back to plain catalog-only
633    /// restore if the envelope magic isn't present (so v3.x snapshot
634    /// files still load). v6.1.2 adds the optional publications
635    /// trailer (envelope v3); a v1/v2 envelope deserialises to an
636    /// empty publication table.
637    pub fn restore_envelope(buf: &[u8]) -> Result<Self, EngineError> {
638        match split_envelope(buf) {
639            EnvelopeParse::Pair {
640                catalog: catalog_bytes,
641                users: user_bytes,
642                publications: pub_bytes,
643                subscriptions: sub_bytes,
644                statistics: stats_bytes,
645            } => {
646                let catalog = Catalog::deserialize(catalog_bytes).map_err(EngineError::Storage)?;
647                let users = users::deserialize_users(user_bytes)
648                    .map_err(|e| EngineError::Unsupported(alloc::format!("users restore: {e}")))?;
649                let publications = match pub_bytes {
650                    Some(b) => publications::Publications::deserialize(b).map_err(|e| {
651                        EngineError::Unsupported(alloc::format!("publications restore: {e:?}"))
652                    })?,
653                    None => publications::Publications::new(),
654                };
655                let subscriptions = match sub_bytes {
656                    Some(b) => subscriptions::Subscriptions::deserialize(b).map_err(|e| {
657                        EngineError::Unsupported(alloc::format!("subscriptions restore: {e:?}"))
658                    })?,
659                    None => subscriptions::Subscriptions::new(),
660                };
661                let statistics = match stats_bytes {
662                    Some(b) => statistics::Statistics::deserialize(b).map_err(|e| {
663                        EngineError::Unsupported(alloc::format!("statistics restore: {e:?}"))
664                    })?,
665                    None => statistics::Statistics::new(),
666                };
667                Ok(Self {
668                    catalog,
669                    tx_catalogs: BTreeMap::new(),
670                    current_tx: None,
671                    backslash_escapes: false,
672                    next_tx_id: 1,
673                    clock: None,
674                    salt_fn: None,
675                    max_query_rows: None,
676                    max_query_bytes: None,
677                    users,
678                    publications,
679                    subscriptions,
680                    statistics,
681                    plan_cache: plan_cache::PlanCache::new(),
682                    query_stats: query_stats::QueryStats::new(),
683                    activity_provider: None,
684                    audit_chain_provider: None,
685                    audit_verifier: None,
686                    slow_query_threshold_us: None,
687                    slow_query_logger: None,
688                    session_params: BTreeMap::new(),
689                    trigger_recursion_depth: 0,
690                    foreign_key_checks: true,
691                    meta_views_materialised: false,
692                    pending_foreign_keys: Vec::new(),
693                    redo_capture: false,
694                    last_redo: Vec::new(),
695                })
696            }
697            EnvelopeParse::CrcMismatch { expected, computed } => {
698                Err(EngineError::Storage(StorageError::Corrupt(alloc::format!(
699                    "snapshot envelope CRC32 mismatch (expected={expected:#010x}, computed={computed:#010x})"
700                ))))
701            }
702            EnvelopeParse::Bare => {
703                let catalog = Catalog::deserialize(buf).map_err(EngineError::Storage)?;
704                Ok(Self::restore(catalog))
705            }
706        }
707    }
708
709    pub const fn users(&self) -> &UserStore {
710        &self.users
711    }
712
713    /// Builder: attach a wall clock so `NOW()` / `CURRENT_TIMESTAMP` /
714    /// `CURRENT_DATE` evaluate to a real value instead of erroring out.
715    #[must_use]
716    pub const fn with_clock(mut self, clock: ClockFn) -> Self {
717        self.clock = Some(clock);
718        self
719    }
720
721    /// Builder: attach an OS-backed RNG for per-user password salts.
722    /// The host (`spg-server`) typically wires this to `/dev/urandom`.
723    #[must_use]
724    pub const fn with_salt_fn(mut self, f: SaltFn) -> Self {
725        self.salt_fn = Some(f);
726        self
727    }
728
729    /// Builder: cap the number of rows a single SELECT may return.
730    /// Exceeding the cap raises `EngineError::RowLimitExceeded` —
731    /// the bound is checked inside the executor so a runaway
732    /// catalog scan can't allocate millions of rows before the
733    /// server gets a chance to reject the result.
734    #[must_use]
735    pub const fn with_max_query_rows(mut self, n: usize) -> Self {
736        self.max_query_rows = Some(n);
737        self
738    }
739
740    /// Builder: cap the approximate heap bytes a single SELECT's
741    /// join/filter materialisation may hold. Exceeding the cap
742    /// raises `EngineError::QueryBytesExceeded`. Rows are the wrong
743    /// unit when one row carries a multi-MB body (mailrs round-26:
744    /// 1000-row batches of full mail text walked a 15 GiB host into
745    /// reclaim livelock without ever tripping a row ceiling).
746    #[must_use]
747    pub const fn with_max_query_bytes(mut self, n: usize) -> Self {
748        self.max_query_bytes = Some(n);
749        self
750    }
751
752    /// The *committed* catalog. Note: during a transaction this returns the
753    /// pre-TX state — `SELECT` inside a TX goes through `execute()` and reads
754    /// the shadow. Tests that inspect outside-TX state should use this.
755    pub const fn catalog(&self) -> &Catalog {
756        &self.catalog
757    }
758
759    /// Capture a frozen view of the committed engine state. Catalog
760    /// is O(1) Arc bump; trailers are cheap clones. Decouples "capture"
761    /// (needs &Engine) from "serialize" (CPU, no engine access) — the
762    /// seam the background-checkpoint worker rides in CoW-2.
763    pub fn snapshot_data(&self) -> EngineSnapshot {
764        EngineSnapshot {
765            catalog: self.catalog.clone(),
766            users: self.users.clone(),
767            publications: self.publications.clone(),
768            subscriptions: self.subscriptions.clone(),
769            statistics: self.statistics.clone(),
770        }
771    }
772
773    /// Serialize the *committed* catalog to bytes. v0.6 was full-snapshot; v0.9
774    /// adds the rule that an open TX's shadow is never snapshotted — only the
775    /// post-COMMIT state is persisted. v4.1 wraps the catalog in an envelope
776    /// when there are users to persist; an empty user table snapshots as the
777    /// bare catalog format (backwards-compat with v3.x readers). v6.1.2
778    /// adds publications to the envelope condition: either non-empty
779    /// users OR non-empty publications now triggers the envelope path.
780    pub fn snapshot(&self) -> Vec<u8> {
781        self.snapshot_data().serialize()
782    }
783
784    /// True when at least one TX slot is in flight. v4.41.1 runtime
785    /// invariant: at most one slot active at a time (dispatch holds
786    /// `engine.write()` across the entire wrap). v4.42 will let this
787    /// return true with multiple slots concurrently.
788    pub fn in_transaction(&self) -> bool {
789        !self.tx_catalogs.is_empty()
790    }
791
792    /// v4.41.1 allocate a fresh TX handle. Used by spg-server dispatch
793    /// to scope each implicit-wrap BEGIN..stmt..COMMIT to its own slot
794    /// in `tx_catalogs`. v4.42 — the commit-barrier leader allocates
795    /// one of these per task in its group, runs `BEGIN`+sql+`COMMIT`
796    /// sequentially under a single `engine.write()` so each task's
797    /// mutations accumulate into shared state, then either keeps the
798    /// accumulated state (fsync OK) or restores the pre-image via
799    /// `replace_catalog` (fsync err).
800    pub fn alloc_tx_id(&mut self) -> TxId {
801        let id = TxId(self.next_tx_id);
802        self.next_tx_id = self.next_tx_id.saturating_add(1);
803        id
804    }
805
806    /// v4.42 — atomically replace the live catalog. Used by the
807    /// commit-barrier leader to roll back a group whose batched
808    /// fsync failed: the leader snapshots `engine.catalog().clone()`
809    /// (O(1) Arc bump after the v4.39/v4.40 persistent migration)
810    /// at group start, sequentially applies each task's BEGIN+sql+
811    /// COMMIT under the same write lock to accumulate mutations
812    /// into shared state, batches the WAL bytes, fsyncs once, and
813    /// on failure calls this with the pre-image to undo every
814    /// task in the group at once.
815    ///
816    /// **Does NOT touch `tx_catalogs` / `current_tx`.** Any
817    /// explicit-TX slot from a concurrent client (created via the
818    /// legacy `IMPLICIT_TX`-less dispatch path or via the future
819    /// MVCC-readers v5+ work) has its own snapshot baked into the
820    /// slot — restoring `self.catalog` to the pre-image leaves
821    /// those slots untouched, exactly as they were when the leader
822    /// took the lock. The leader's own implicit-TX slots are all
823    /// already discarded (`exec_commit` removed them as each
824    /// task's COMMIT ran) by the time this is reached.
825    pub fn replace_catalog(&mut self, catalog: Catalog) {
826        self.catalog = catalog;
827    }
828
829    /// v6.7.0 — public shim around `Catalog::freeze_oldest_to_cold`
830    /// so tests + the spg-server freezer can drive a freeze without
831    /// reaching into the private `active_catalog_mut`. v6.7.4
832    /// parallel freezer will build on this surface.
833    ///
834    /// Marks the table's cached `cold_row_count` stale because the
835    /// freeze added cold locators that ANALYZE hasn't yet refreshed.
836    pub fn freeze_oldest_to_cold(
837        &mut self,
838        table_name: &str,
839        index_name: &str,
840        max_rows: usize,
841    ) -> Result<spg_storage::FreezeReport, EngineError> {
842        let report = self
843            .active_catalog_mut()
844            .freeze_oldest_to_cold(table_name, index_name, max_rows)
845            .map_err(EngineError::Storage)?;
846        if let Some(t) = self.active_catalog_mut().get_mut(table_name) {
847            t.mark_cold_row_count_stale();
848        }
849        Ok(report)
850    }
851
852    /// v6.7.5 — public shim used by the spg-server follower's
853    /// segment-forwarding receiver. Registers a cold-tier segment
854    /// at a specific id (the master's id, as transmitted on the
855    /// wire) so the follower's BTree-Cold locators stay byte-
856    /// identical with the master's. Wraps
857    /// `Catalog::load_segment_bytes_at` under the standard
858    /// clone-mutate-replace pattern.
859    ///
860    /// Returns `Ok(())` on success **and** on the "slot already
861    /// occupied" case — a follower mid-reconnect may receive a
862    /// segment chunk for a segment_id it already has on disk
863    /// (forwarded last session); the caller should treat that
864    /// path as a no-op rather than a fatal error.
865    pub fn receive_cold_segment(
866        &mut self,
867        segment_id: u32,
868        bytes: Vec<u8>,
869    ) -> Result<(), EngineError> {
870        let mut new_cat = self.catalog.clone();
871        match new_cat.load_segment_bytes_at(segment_id, bytes) {
872            Ok(()) => {
873                self.replace_catalog(new_cat);
874                Ok(())
875            }
876            Err(StorageError::Corrupt(msg)) if msg.contains("already occupied") => Ok(()),
877            Err(e) => Err(EngineError::Storage(e)),
878        }
879    }
880
881    pub(crate) fn active_catalog(&self) -> &Catalog {
882        match self.current_tx {
883            Some(t) => self
884                .tx_catalogs
885                .get(&t)
886                .map_or(&self.catalog, |s| &s.catalog),
887            None => &self.catalog,
888        }
889    }
890
891    fn active_catalog_mut(&mut self) -> &mut Catalog {
892        let tx = self.current_tx;
893        match tx {
894            Some(t) => match self.tx_catalogs.get_mut(&t) {
895                Some(s) => &mut s.catalog,
896                None => &mut self.catalog,
897            },
898            None => &mut self.catalog,
899        }
900    }
901
902    /// v7.34 (crash-recovery P0 #2) — turn row-level redo capture on/off.
903    /// The embedding layer enables it when persistence is on so each
904    /// mutating `execute` records the physical [`RowChange`]s it applied
905    /// (drained via [`Engine::take_redo`]). Off = zero capture overhead.
906    pub fn set_redo_capture(&mut self, on: bool) {
907        self.redo_capture = on;
908    }
909
910    /// v7.34 — take the redo captured by the most recent successful
911    /// mutating `execute` (empty when capture is off, the statement was a
912    /// read, or it changed nothing). The embedding layer writes these to
913    /// the WAL in place of the SQL text.
914    pub fn take_redo(&mut self) -> Vec<RowChange> {
915        core::mem::take(&mut self.last_redo)
916    }
917
918    /// v7.34 (crash-recovery P0 #2) — replay a row-level redo log onto the
919    /// committed catalog (the row-level WAL recovery primitive: apply the
920    /// captured physical changes from a checkpoint baseline, in place of
921    /// re-executing the SQL). Trusts the log — no uniqueness/FK/parse.
922    pub fn apply_redo(&mut self, changes: &[RowChange]) -> Result<(), EngineError> {
923        self.catalog
924            .apply_redo(changes)
925            .map_err(EngineError::Storage)
926    }
927
928    /// Read-only execute path. Succeeds for `SELECT` / `SHOW TABLES`
929    /// / `SHOW COLUMNS`; returns `EngineError::WriteRequired` for
930    /// every other statement, so the caller can fall through to the
931    /// `&mut self` `execute` path under a write lock. Engine state is
932    /// not mutated even on the success path (`rewrite_clock_calls`
933    /// and `resolve_order_by_position` both mutate the locally-owned
934    /// AST, not `self`).
935    ///
936    /// v4.2: cap result-set size. Applied after the executor
937    /// materialises rows but before they leave the engine — wrapping
938    /// every Rows-returning exec_* function would scatter the check.
939    ///
940    /// v7.31 (memory campaign, bucket A) — the same choke point now
941    /// also enforces the BYTE budget on the final result set, so
942    /// single-table and aggregate paths (which don't route through
943    /// the join materialiser's incremental accounting) still cannot
944    /// hand the host an unbounded result. Intermediate single-table
945    /// clones are the 7.31.x follow-up (design doc, bucket A).
946    fn enforce_row_limit(
947        &self,
948        result: Result<QueryResult, EngineError>,
949    ) -> Result<QueryResult, EngineError> {
950        if let Ok(QueryResult::Rows { rows, .. }) = &result {
951            if let Some(cap) = self.max_query_rows
952                && rows.len() > cap
953            {
954                return Err(EngineError::RowLimitExceeded(cap));
955            }
956            if let Some(byte_cap) = self.max_query_bytes
957                && approx_rows_bytes(rows) > byte_cap
958            {
959                return Err(EngineError::QueryBytesExceeded(byte_cap));
960            }
961        }
962        result
963    }
964}
965
966/// v7.31 (memory campaign — ceiling-first / never-die, design v1) —
967/// per-table slice of the engine's resident-memory accounting.
968/// `hot_encoded_bytes` is the storage layer's maintained meter (what
969/// the rows encode to); `approx_resident_bytes` is what they COST in
970/// RAM (per-cell enum slots + heap payloads via `approx_row_bytes`)
971/// — the gap between the two is the representation multiplier the
972/// round-26 report measured at ~11× end-to-end.
973#[derive(Debug, Clone)]
974pub struct TableMemoryStats {
975    pub name: String,
976    pub hot_rows: u64,
977    /// Cached cold-row count (refreshed by ANALYZE — see
978    /// `Table::cold_row_count`'s staleness contract).
979    pub cold_rows: u64,
980    pub hot_encoded_bytes: u64,
981    pub approx_resident_bytes: u64,
982    pub index_count: u64,
983    /// v7.31 C2 — sum of `IndexKind::approx_resident_bytes()` over the
984    /// table's indices: every variant (BTree / NSW / BRIN / GIN family)
985    /// walks its own structure, so the GIN posting lists and NSW layer
986    /// adjacency that dominate text/vector tables are counted honestly
987    /// instead of the old flat-token estimate.
988    pub approx_index_bytes: u64,
989}
990
991/// v7.31 — whole-engine memory snapshot: the polling form of the
992/// round-26 ask-4 watermark signal. Hosts compare
993/// `total_approx_resident_bytes` (+ their own WAL/file accounting)
994/// against their deployment ceiling and shed/shrink before the
995/// kernel does it for them.
996#[derive(Debug, Clone)]
997pub struct MemoryStats {
998    pub tables: Vec<TableMemoryStats>,
999    pub total_hot_encoded_bytes: u64,
1000    pub total_approx_resident_bytes: u64,
1001    pub total_approx_index_bytes: u64,
1002    /// The active per-query materialisation budget (bucket A), so a
1003    /// monitoring host sees ceiling and usage through one call.
1004    pub max_query_bytes: Option<usize>,
1005    /// v7.31 C2 — bucket D: live WAL bytes (active chunk + buffered,
1006    /// uncheckpointed). `None` from the engine itself — it has no WAL;
1007    /// the durable hosts (embed `Database`, server) fill it in from
1008    /// their own WAL accounting. `Some(0)` means "host has a WAL and
1009    /// it is empty"; `None` means "no WAL on this path" (in-memory).
1010    pub wal_bytes: Option<u64>,
1011}
1012
1013/// v6.2.0 — true for engine-managed catalog tables that the bare
1014/// `ANALYZE` (no target) should skip. v6.2.0 has no internal
1015/// tables yet (publications / subscriptions / users / statistics
1016/// all live as engine fields, not catalog tables), so this is a
1017/// reserved future-proofing hook — every existing user table is
1018/// analysed.
1019const fn is_internal_table_name(_name: &str) -> bool {
1020    false
1021}
1022
1023#[cfg(test)]
1024mod tests;