polydat_grammar/comprehension/source.rs
1// Copyright 2024-2026 Jonathan Shook
2// SPDX-License-Identifier: Apache-2.0
3
4//! Clause source values — spec §3.1.
5//!
6//! A `clause(name, source)` binds a name to the values
7//! produced by its source. Sources split into two families:
8//!
9//! - **Discrete stream producers** — literal lists, integer
10//! ranges, generator functions, workload-param references.
11//! Cardinality is `Bounded`, `BoundedAtMost`, or `Unbounded`.
12//! - **Continuous measures** — real intervals with an
13//! integrable measure (uniform on bounded intervals; named
14//! probability distributions like Normal / Exponential).
15//! Cardinality is `Continuous`; V8 requires an enclosing
16//! sampling `order(_, strategy, Some(n))` before dispense.
17//!
18//! Sources are stream producers — they do not pre-materialize
19//! into `Vec<Value>`. This is the load-bearing model property
20//! per spec §3.1 + §6.2.
21
22use serde::{Deserialize, Serialize};
23
24use super::cardinality::{CardinalityClass, Interval, MeasureName, ProductMeasure};
25
26/// A clause's source of values.
27///
28/// Discrete variants produce a stream of `Value` via the
29/// runtime evaluator; continuous variants describe a measure
30/// that a downstream sampling strategy will draw from.
31#[derive(Debug, Clone, PartialEq, Serialize, Deserialize)]
32#[serde(tag = "kind", rename_all = "snake_case")]
33pub enum Source {
34 /// Literal comma list (e.g., `[1, 2, 4, 8]`). Stream
35 /// producer over the list contents.
36 Literal {
37 /// The values, in order.
38 values: Vec<LiteralValue>,
39 },
40
41 /// Integer half-open range `lo..hi` with optional step.
42 /// Default step is 1.
43 IntRange {
44 /// The first value.
45 lo: i64,
46 /// One past the last.
47 hi: i64,
48 /// The step between values, 1 by default.
49 step: i64,
50 },
51
52 /// Generator function call expressed as a Polydat source string.
53 /// Its eval class follows its free names (spec §10.7.0): an
54 /// expression that references no name is context-free and is
55 /// evaluated at compile, so a clause over it becomes a literal of
56 /// its values; one that references a name (an outer coordinate,
57 /// a parameter, a wire) is evaluated at traversal.
58 Generator {
59 /// The generator call, as Polydat source.
60 expr: String,
61 /// How many values it yields, when known: the count the
62 /// compile established by evaluating a context-free call
63 /// whose values are not literal-representable (a partition
64 /// list, for one). `None` for a call evaluated at traversal,
65 /// whose cardinality is `Unbounded` until then.
66 cardinality_hint: Option<u64>,
67 },
68
69 /// Reference to a workload-level parameter that resolves to
70 /// a list of values. Cardinality is the parameter's
71 /// declared list length.
72 WorkloadParamList {
73 /// The parameter's name.
74 name: String,
75 /// The list's length, when known.
76 len_hint: Option<u64>,
77 },
78
79 /// Real interval (continuous source). Combined with a
80 /// `measure` to form a `Continuous` cardinality.
81 /// Integrability is checked at parse via V8.
82 ContinuousInterval {
83 /// The interval.
84 interval: Interval,
85 /// The measure drawn from.
86 measure: ProductMeasure,
87 },
88
89 /// Named continuous distribution. The distribution carries
90 /// its own support; the `support` field records the
91 /// effective interval for V8's check.
92 Distribution {
93 /// The distribution.
94 distribution: MeasureName,
95 /// Its effective support.
96 support: Interval,
97 /// Its parameters, in the order of
98 /// [`MeasureName::parameter_names`]; empty for the standard
99 /// parameters ([`MeasureName::default_params`]).
100 params: Vec<f64>,
101 },
102}
103
104/// A literal value carried in a `Source::Literal`. Subset of
105/// the polydat `Value` type — the kinds clauses can directly
106/// bind. Extension to richer value types lives in the source
107/// evaluator, not the AST.
108///
109/// Serialized untagged because the variants are primitives;
110/// the JSON/YAML representation is just the bare value
111/// (`1` / `"x"` / `true` / `1.5`).
112#[derive(Debug, Clone, PartialEq, Serialize, Deserialize)]
113#[serde(untagged)]
114pub enum LiteralValue {
115 /// An integer.
116 Int(i64),
117 /// A float.
118 Float(f64),
119 /// A string.
120 String(String),
121 /// A boolean.
122 Bool(bool),
123 /// A JSON value carrying its own kind: an item of a JSON list a
124 /// generator supplied at run time, bound where the element is
125 /// declared `json`. Last, so an untagged read tries the scalar
126 /// forms first.
127 Json(serde_json::Value),
128}
129
130impl Source {
131 /// The names this source references (spec §10.7.0): a generator
132 /// expression's parsed free identifiers (`concat(foo)`) and its
133 /// `{name}` interpolation placeholders, and a workload parameter
134 /// list's own name. Literals, ranges, and intervals reference
135 /// nothing. A source with no references is context-free.
136 pub fn referenced_names(&self) -> std::collections::BTreeSet<String> {
137 let mut out = std::collections::BTreeSet::new();
138 match self {
139 Source::WorkloadParamList { name, .. } => {
140 out.insert(name.clone());
141 }
142 Source::Generator { expr, .. } => {
143 out.extend(crate::refs::referenced_names(expr));
144 crate::refs::collect_string_interpolation_refs(expr, &mut out);
145 }
146 Source::Literal { .. }
147 | Source::IntRange { .. }
148 | Source::ContinuousInterval { .. }
149 | Source::Distribution { .. } => {}
150 }
151 out
152 }
153
154 /// Declare this source's cardinality class for use by
155 /// `clause` metadata propagation.
156 pub fn cardinality(&self) -> CardinalityClass {
157 match self {
158 Source::Literal { values } => CardinalityClass::Bounded(values.len() as u64),
159 Source::IntRange { lo, hi, step } => {
160 let step = (*step).max(1).unsigned_abs();
161 if hi <= lo {
162 CardinalityClass::Bounded(0)
163 } else {
164 let span = (hi - lo) as u64;
165 let n = span.div_ceil(step);
166 CardinalityClass::Bounded(n)
167 }
168 }
169 Source::Generator {
170 cardinality_hint, ..
171 } => match cardinality_hint {
172 Some(n) => CardinalityClass::Bounded(*n),
173 None => CardinalityClass::Unbounded,
174 },
175 Source::WorkloadParamList { len_hint, .. } => match len_hint {
176 Some(n) => CardinalityClass::Bounded(*n),
177 None => CardinalityClass::Unbounded,
178 },
179 Source::ContinuousInterval { interval, measure } => CardinalityClass::Continuous {
180 intervals: vec![interval.clone()],
181 measure: measure.clone(),
182 },
183 Source::Distribution { support, .. } => CardinalityClass::Continuous {
184 intervals: vec![support.clone()],
185 measure: ProductMeasure::Named(*self.distribution_name()),
186 },
187 }
188 }
189
190 /// `true` if this source is continuous (Continuous /
191 /// Distribution variants). Used by V7 (zip must be all
192 /// discrete) and V9 (union must be all discrete) without
193 /// a full cardinality computation.
194 pub fn is_continuous(&self) -> bool {
195 matches!(
196 self,
197 Source::ContinuousInterval { .. } | Source::Distribution { .. }
198 )
199 }
200
201 /// `true` if this source is discrete (every variant except
202 /// the continuous ones).
203 pub fn is_discrete(&self) -> bool {
204 !self.is_continuous()
205 }
206
207 fn distribution_name(&self) -> &MeasureName {
208 match self {
209 Source::Distribution { distribution, .. } => distribution,
210 _ => panic!("distribution_name called on non-Distribution source"),
211 }
212 }
213}
214
215// ── SRD-18f: iteration interior + string-comprehension striping ──
216
217/// The SRD-18f string-comprehension separator rule, in one place
218/// so the parse-time (`source_parser`) and runtime (`eval`)
219/// striping can never drift: split on runs of comma / semicolon /
220/// ASCII whitespace, trim, drop empties. Every other character
221/// (`:` `.` `-` `/` …) stays in the token. Returns the raw token
222/// substrings; callers type them (Value or LiteralValue).
223pub fn split_string_comprehension(s: &str) -> Vec<&str> {
224 s.split(|c: char| c == ',' || c == ';' || c.is_ascii_whitespace())
225 .map(str::trim)
226 .filter(|t| !t.is_empty())
227 .collect()
228}
229
230#[cfg(test)]
231mod tests {
232 use super::*;
233
234 #[test]
235 fn literal_cardinality_is_list_length() {
236 let s = Source::Literal {
237 values: vec![
238 LiteralValue::Int(1),
239 LiteralValue::Int(2),
240 LiteralValue::Int(3),
241 ],
242 };
243 assert!(matches!(s.cardinality(), CardinalityClass::Bounded(3)));
244 }
245
246 #[test]
247 fn int_range_step_1() {
248 let s = Source::IntRange {
249 lo: 1,
250 hi: 10,
251 step: 1,
252 };
253 assert!(matches!(s.cardinality(), CardinalityClass::Bounded(9)));
254 }
255
256 #[test]
257 fn int_range_with_step() {
258 let s = Source::IntRange {
259 lo: 0,
260 hi: 10,
261 step: 2,
262 };
263 // 0,2,4,6,8 = 5 values
264 assert!(matches!(s.cardinality(), CardinalityClass::Bounded(5)));
265 }
266
267 #[test]
268 fn int_range_empty() {
269 let s = Source::IntRange {
270 lo: 5,
271 hi: 5,
272 step: 1,
273 };
274 assert!(matches!(s.cardinality(), CardinalityClass::Bounded(0)));
275 }
276
277 #[test]
278 fn generator_without_hint_is_unbounded() {
279 let s = Source::Generator {
280 expr: "live_query()".into(),
281 cardinality_hint: None,
282 };
283 assert!(matches!(s.cardinality(), CardinalityClass::Unbounded));
284 }
285
286 #[test]
287 fn generator_with_hint_is_bounded() {
288 let s = Source::Generator {
289 expr: "first_100()".into(),
290 cardinality_hint: Some(100),
291 };
292 assert!(matches!(s.cardinality(), CardinalityClass::Bounded(100)));
293 }
294
295 #[test]
296 fn continuous_interval_produces_continuous_class() {
297 let s = Source::ContinuousInterval {
298 interval: Interval::closed(0.0, 1.0),
299 measure: ProductMeasure::Uniform,
300 };
301 match s.cardinality() {
302 CardinalityClass::Continuous { intervals, measure } => {
303 assert_eq!(intervals.len(), 1);
304 assert!(matches!(measure, ProductMeasure::Uniform));
305 }
306 other => panic!("expected Continuous, got {other:?}"),
307 }
308 assert!(s.is_continuous());
309 assert!(!s.is_discrete());
310 }
311
312 #[test]
313 fn distribution_source_classification() {
314 let s = Source::Distribution {
315 distribution: MeasureName::Normal,
316 support: Interval {
317 lo: f64::NEG_INFINITY,
318 hi: f64::INFINITY,
319 lo_open: true,
320 hi_open: true,
321 },
322 params: vec![0.0, 1.0],
323 };
324 assert!(s.is_continuous());
325 match s.cardinality() {
326 CardinalityClass::Continuous {
327 measure: ProductMeasure::Named(MeasureName::Normal),
328 ..
329 } => {}
330 other => panic!("expected Continuous with Named(Normal), got {other:?}"),
331 }
332 }
333}