lora_database/database/execute.rs
1//! Query-execute family on [`Database<S>`].
2//!
3//! These methods cover the `execute_*` and `execute_rows_*` entry points
4//! plus the cooperative-deadline variants and the plan-cache-backed
5//! compile path. The actual write routing (optimistic OCC vs. pessimistic
6//! `with_logged_write_guard`) is dispatched from
7//! [`Database::execute_rows_with_params_deadline`]; the OCC body lives
8//! in [`super::occ`] and the WAL-bracketed write closure lives in
9//! [`super::write_guard`].
10
11use std::any::Any;
12use std::collections::BTreeMap;
13use std::time::{Duration, Instant};
14
15use anyhow::Result;
16use lora_executor::{
17 classify_stream, collect_compiled, project_rows, ExecuteOptions, LoraValue,
18 MutableExecutionContext, MutableExecutor, QueryResult, Row, StreamShape,
19};
20use lora_store::{GraphStorage, GraphStorageMut, InMemoryGraph};
21
22use crate::database::{Database, QUERY_FAILURE_POISON};
23use crate::error::LoraError;
24use crate::wal::write_scope::{ensure_wal_query_can_start, WalAbortPolicy};
25
26use super::pull_mode::should_collect_read_via_pull;
27
28impl<S> Database<S>
29where
30 S: GraphStorage + GraphStorageMut + Any + Clone + Send + Sync + 'static,
31{
32 /// Execute a query and return its result.
33 pub fn execute(
34 &self,
35 query: &str,
36 options: Option<ExecuteOptions>,
37 ) -> Result<QueryResult, LoraError> {
38 self.execute_with_params(query, options, BTreeMap::new())
39 }
40
41 /// Execute a query with a cooperative deadline. The timeout is checked at
42 /// executor operator boundaries and hot scan loops; if it fires, the query
43 /// returns an error and any WAL-backed mutating query is aborted through
44 /// the existing failure path.
45 pub fn execute_with_timeout(
46 &self,
47 query: &str,
48 options: Option<ExecuteOptions>,
49 timeout: Duration,
50 ) -> Result<QueryResult, LoraError> {
51 let deadline = Instant::now()
52 .checked_add(timeout)
53 .unwrap_or_else(Instant::now);
54 let rows =
55 self.execute_rows_with_params_deadline(query, BTreeMap::new(), Some(deadline))?;
56 Ok(project_rows(rows, options.unwrap_or_default()))
57 }
58
59 /// Execute a query with bound parameters.
60 ///
61 /// When a WAL is attached the call is bracketed by a transaction:
62 ///
63 /// 1. `recorder.arm()` after analyze + compile (so a parse /
64 /// semantic / compile error never opens a tx that has to be
65 /// immediately aborted). Arming is *cheap*: no record is
66 /// appended to the WAL yet, so a pure read query that
67 /// completes here pays nothing for the WAL hot path.
68 /// 2. The executor runs; every primitive mutation fires
69 /// `MutationRecorder::record`, which buffers events in memory.
70 /// 3. On Ok, `recorder.commit()` writes `TxBegin`, one batched
71 /// mutation record, and `TxCommit` only when mutations occurred,
72 /// then applies the WAL's configured single-thread flush policy.
73 /// 4. On Err, `recorder.abort()` clears the pending batch. The
74 /// engine has no rollback, so the in-memory state may already
75 /// be partially mutated; the live handle is quarantined while
76 /// durable recovery stays atomic because no committed batch was
77 /// written.
78 /// 5. The recorder's poisoned flag is polled once. If set, the query
79 /// fails loudly with the durability error so the caller can act on it;
80 /// the WAL refuses further appends until the operator restarts the
81 /// database, which recovers from the last consistent snapshot + WAL.
82 pub fn execute_with_params(
83 &self,
84 query: &str,
85 options: Option<ExecuteOptions>,
86 params: BTreeMap<String, LoraValue>,
87 ) -> Result<QueryResult, LoraError> {
88 let rows = self.execute_rows_with_params_deadline(query, params, None)?;
89 Ok(project_rows(rows, options.unwrap_or_default()))
90 }
91
92 /// Execute a parameterised query with a cooperative deadline.
93 pub fn execute_with_params_timeout(
94 &self,
95 query: &str,
96 options: Option<ExecuteOptions>,
97 params: BTreeMap<String, LoraValue>,
98 timeout: Duration,
99 ) -> Result<QueryResult, LoraError> {
100 let deadline = Instant::now()
101 .checked_add(timeout)
102 .unwrap_or_else(Instant::now);
103 let rows = self.execute_rows_with_params_deadline(query, params, Some(deadline))?;
104 Ok(project_rows(rows, options.unwrap_or_default()))
105 }
106
107 /// Execute a query and return hydrated rows before final result-format
108 /// projection.
109 pub fn execute_rows(&self, query: &str) -> Result<Vec<Row>, LoraError> {
110 self.execute_rows_with_params(query, BTreeMap::new())
111 }
112
113 /// Execute a query with parameters and return hydrated rows before final
114 /// result-format projection.
115 pub fn execute_rows_with_params(
116 &self,
117 query: &str,
118 params: BTreeMap<String, LoraValue>,
119 ) -> Result<Vec<Row>, LoraError> {
120 Ok(self.execute_rows_with_params_deadline(query, params, None)?)
121 }
122
123 pub(crate) fn execute_rows_with_params_deadline(
124 &self,
125 query: &str,
126 params: BTreeMap<String, LoraValue>,
127 deadline: Option<Instant>,
128 ) -> Result<Vec<Row>> {
129 // Compile (or fetch from the plan cache) under the read lock. The
130 // read lock is also what the read-only fast path runs under, so we
131 // can reuse it without a release/reacquire when the plan turns out
132 // to be a pure read.
133 let store = self.read_store_deadline(deadline)?;
134 let compiled = self.compile_query_cached(query, &*store)?;
135 let shape = classify_stream(&compiled);
136
137 if matches!(shape, StreamShape::ReadOnly) {
138 if let Some(rec) = &self.wal {
139 ensure_wal_query_can_start(rec)?;
140 }
141 if deadline.is_none() && should_collect_read_via_pull(&compiled) {
142 return collect_compiled(&*store, params, &compiled).map_err(anyhow::Error::from);
143 }
144 let executor = lora_executor::Executor::with_deadline(
145 lora_executor::ExecutionContext {
146 storage: &*store,
147 params,
148 },
149 deadline,
150 );
151 return executor
152 .execute_compiled_rows(&compiled)
153 .map_err(anyhow::Error::from);
154 }
155
156 // Mutating path. Drop the snapshot used for compilation and route
157 // through the single-writer auto-commit path. The writer mutex is held
158 // for mutate + WAL commit so live state and WAL order stay identical.
159 // The method name still says "optimistic" because this is the seam a
160 // future write-set/CAS implementation can reuse.
161 drop(store);
162 debug_assert!(shape.is_mutating());
163
164 if std::any::TypeId::of::<S>() == std::any::TypeId::of::<InMemoryGraph>() {
165 return self.execute_mutating_optimistic(params, deadline, &compiled);
166 }
167
168 // Backends that aren't `InMemoryGraph` don't support the
169 // recorder install hook, so fall back to the pessimistic path.
170 let store = self.write_store_deadline(deadline)?;
171 self.with_logged_write_guard(
172 store,
173 WalAbortPolicy::PoisonIfMutated(QUERY_FAILURE_POISON),
174 |store| {
175 let mut executor = MutableExecutor::with_deadline(
176 MutableExecutionContext {
177 storage: store,
178 params,
179 },
180 deadline,
181 );
182 Ok(executor.execute_compiled_rows(&compiled)?)
183 },
184 )
185 }
186}