1use sva_formula::spectral_sum::atom::{Singular, SpectralAtom};
4use sva_formula::{AUDIBLE_CEILING_HZ, Line, SpectralSum, Var, d_dt, envelope, line_atoms};
5use sva_samples::{
6 AliasScore, Buffer, Consumes, Extent, Peak, PitchFrame, Source, measure::bands, measure::crest,
7 measure::envelope, measure::formants, measure::loudness, measure::pitch, measure::spectrum,
8 measure::stereo, measure_alias,
9};
10
11use crate::error::{Diagnostic, EngineError, Located};
12use crate::query::{Answer, DEFAULT_FRAME_SECS, Output, Representation};
13use crate::refs;
14use crate::render::Render;
15use crate::typing::Value;
16
17pub fn answer(
20 render: &Render,
21 node: sva_formula::NodeId,
22 representation: Representation,
23) -> Result<Answer, EngineError> {
24 let closed = render.tys.ty(node).is_closed_form();
25 let profile = render.config.profile.name;
26 if representation == Representation::Flops {
27 return Ok(Answer::whole(
28 Output::Flops(Box::new(crate::flops::tree_at(render, node))),
29 Source::Exact,
30 profile,
31 None,
32 ));
33 }
34 if representation == Representation::Arguments {
35 return Ok(Answer::whole(
36 Output::Arguments(arguments_under(render, node)),
37 Source::Exact,
38 profile,
39 None,
40 ));
41 }
42 if representation == Representation::Bindings {
43 return Ok(Answer::whole(
44 Output::Bindings(render.bindings.get(&node).cloned().unwrap_or_default()),
45 Source::Exact,
46 profile,
47 None,
48 ));
49 }
50 match representation.consumes(closed) {
51 Consumes::ClosedForm => {
52 let found;
53 let sum = match render.symbolic.get(&node) {
54 Some(held) => held,
55 None => match refs::spectral_sum_of(&render.tys, node, render.tys.var(node)) {
56 Ok(held) => {
57 found = held;
58 &found
59 }
60 Err(left) => return measured_instead(render, node, representation, left),
61 },
62 };
63 let (value, listed, source) = match exact(render, node, representation, sum) {
64 Err(left) => return measured_instead(render, node, representation, left),
65 Ok(held) => held,
66 };
67 Ok(Answer {
68 value,
69 source,
70 profile,
71 rate: None,
72 tail_db: listed.tail_db(),
73 dropped: listed.dropped,
74 })
75 }
76 _ => {
77 if render.buffer(node).is_none() {
78 return Err(unmaterialized(render, node, representation));
79 }
80 let buffer = render.output(node)?;
81 Ok(Answer::whole(
82 measured(render, node, representation, &buffer)?,
83 Source::Measured,
84 profile,
85 Some(render.config.rate),
86 ))
87 }
88 }
89}
90
91fn measured_instead(
94 render: &Render,
95 node: sva_formula::NodeId,
96 representation: Representation,
97 left: EngineError,
98) -> Result<Answer, EngineError> {
99 match representation {
100 Representation::Envelope { frame_secs } if left.code() == "cast.left_algebra" => {
101 off_the_grid(render, node, frame_secs)
102 }
103 _ => Err(left),
104 }
105}
106
107pub(super) fn on_the_grid(
110 render: &Render,
111 node: sva_formula::NodeId,
112) -> Result<Buffer, EngineError> {
113 if render.buffer(node).is_some() {
114 return render.output(node);
115 }
116 let extent = render.range.ok_or_else(|| {
117 render.unranged.clone().unwrap_or_else(|| {
118 refused(
119 render,
120 node,
121 "engine.not_materialized",
122 "a measured envelope reads samples, and this render read none".to_string(),
123 )
124 })
125 })?;
126 collapsed_over(render, node, extent)
127}
128
129fn collapsed_over(
130 render: &Render,
131 node: sva_formula::NodeId,
132 extent: sva_samples::Extent,
133) -> Result<Buffer, EngineError> {
134 super::sampled(render, node, extent)
135}
136
137fn off_the_grid(
138 render: &Render,
139 node: sva_formula::NodeId,
140 frame_secs: Option<f64>,
141) -> Result<Answer, EngineError> {
142 let rate = render.config.rate;
143 let buffer = on_the_grid(render, node)?;
144 Ok(Answer::whole(
145 Output::Envelope(envelope::trace(
146 &buffer.slices(),
147 f64::from(rate),
148 buffer.origin_secs(),
149 frame_secs.unwrap_or(DEFAULT_FRAME_SECS),
150 )),
151 Source::Measured,
152 render.config.profile.name,
153 Some(rate),
154 ))
155}
156
157fn exact(
158 render: &Render,
159 node: sva_formula::NodeId,
160 representation: Representation,
161 sum: &SpectralSum,
162) -> Result<(Output, Listed, Source), EngineError> {
163 let source = Source::Exact;
164 let enumerated = || {
165 listed(
166 render,
167 node,
168 sum,
169 render.config.profile.floor(AUDIBLE_CEILING_HZ),
170 render.config.profile.half_lsb(),
171 )
172 };
173 let (value, listed) = match representation {
174 Representation::Lines => {
175 let listed = enumerated()?;
176 let held = lines(render, node, sum.var, &listed.atoms)?;
177 (Output::Lines(held), listed)
178 }
179 Representation::Spectrum {
180 frame_secs: Some(_),
181 ..
182 } => {
183 return Err(EngineError::refused(Diagnostic {
184 code: "engine.observation_needs_samples".to_string(),
185 message: "a closed form's spectrum is its lines, and it has no frames to \
186 take a spectrum across"
187 .to_string(),
188 location: Located::at(render.tys.name(node), None),
189 help: "drop `frame` for the lines, or read `sample(...)` of it to measure \
190 frames"
191 .to_string(),
192 }));
193 }
194 Representation::Spectrum {
196 frame_secs: None, ..
197 } => {
198 let listed = enumerated()?;
199 let mut held = lines(render, node, sum.var, &listed.atoms)?;
200 held.sort_by(|a, b| a.hz.total_cmp(&b.hz));
201 (Output::Lines(held), listed)
202 }
203 Representation::Atoms => {
204 let listed = enumerated()?;
205 let found = listed.atoms.iter().map(sketch_atom).collect();
206 (Output::Atoms(found), listed)
207 }
208 Representation::Pitch { max_notes, .. } => {
210 let listed = enumerated()?;
211 let held = lines(render, node, sum.var, &listed.atoms)?;
212 let mut found: Vec<Peak> = held
213 .iter()
214 .filter(|l| l.hz > 0.0)
215 .map(|l| Peak {
216 hz: l.hz,
217 db: 20.0 * amplitude_at(&held, l.hz).log10(),
218 })
219 .collect();
220 found.sort_by(|a, b| b.db.total_cmp(&a.db));
221 let frame = PitchFrame {
222 t_secs: render
223 .range
224 .map_or(0.0, |range| range.start_secs(render.config.rate)),
225 notes: pitch::name_peaks(&found, max_notes),
226 };
227 (Output::Pitch(vec![frame]), listed)
228 }
229 Representation::Derivative => (Output::Symbolic(Box::new(d_dt(sum))), Listed::NONE),
230 Representation::Envelope { .. } => {
231 let held = envelope(sum).map_err(|left| {
232 EngineError::of_closed_form(
233 &left.refusal(),
234 render.tys.locate(left.origin),
235 "read the envelope off sample(...) for a measured one",
236 )
237 })?;
238 (Output::Symbolic(Box::new(held.squared)), Listed::NONE)
239 }
240 other => return Err(not_a_closed_form(render, node, other)),
241 };
242 Ok((value, listed, source))
243}
244
245struct Listed {
248 atoms: Vec<SpectralAtom>,
249 dropped: Vec<Line>,
250}
251
252impl Listed {
253 const NONE: Listed = Listed {
255 atoms: Vec::new(),
256 dropped: Vec::new(),
257 };
258
259 fn tail_db(&self) -> Option<f64> {
262 let loudest = |set: &mut dyn Iterator<Item = f64>| set.fold(0.0f64, f64::max);
263 let gone = loudest(&mut self.dropped.iter().map(|l| l.amp.abs()));
264 let kept = loudest(&mut self.atoms.iter().map(|a| a.c.abs()));
265 (gone > 0.0 && kept > 0.0).then(|| 20.0 * (gone / kept).log10())
266 }
267}
268
269fn listed(
272 render: &Render,
273 node: sva_formula::NodeId,
274 sum: &SpectralSum,
275 floor_db: f64,
276 precision: f64,
277) -> Result<Listed, EngineError> {
278 let mut held = Listed::NONE;
279 for lane in &sum.lanes {
280 held.atoms.extend(lane.clone().expanded().atoms);
281 for series in &lane.series {
282 let Some(found) = line_atoms(series, AUDIBLE_CEILING_HZ, floor_db, precision) else {
283 return Err(unenumerable(render, node));
284 };
285 held.atoms.extend(found.atoms);
286 held.dropped.extend(found.dropped);
287 }
288 }
289 Ok(held)
290}
291
292fn lines(
295 render: &Render,
296 node: sva_formula::NodeId,
297 var: Var,
298 atoms: &[SpectralAtom],
299) -> Result<Vec<Line>, EngineError> {
300 atoms
301 .iter()
302 .map(|a| line_of(var, a).ok_or_else(|| not_a_line(render, node, var, a)))
303 .collect()
304}
305
306fn line_of(var: Var, a: &SpectralAtom) -> Option<Line> {
307 match (var, a.sing) {
308 (Var::F, Singular::Delta { at, order: 0 }) => Some(Line::bare(at, a.c)),
309 (Var::T, Singular::Regular) => {
310 if !a.poly.is_one() || a.gauss.is_some() || a.ind.is_some() || a.pole.is_some() {
311 return None;
312 }
313 match a.exp {
314 None => Some(Line::bare(0.0, a.c)),
316 Some(e) if e.sigma == 0.0 => Some(Line::bare(e.omega / std::f64::consts::TAU, a.c)),
317 Some(_) => None,
318 }
319 }
320 _ => None,
321 }
322}
323
324fn widening(a: &SpectralAtom) -> Vec<&'static str> {
326 let mut held = Vec::new();
327 if !a.poly.is_one() {
328 held.push("a polynomial");
329 }
330 if a.exp.is_some_and(|e| e.sigma != 0.0) {
331 held.push("a decaying exponential");
332 }
333 if a.gauss.is_some() {
334 held.push("a Gaussian");
335 }
336 if a.pole.is_some() {
337 held.push("a pole");
338 }
339 if held.is_empty() {
340 held.push("a delta");
341 }
342 held
343}
344
345fn not_a_line(
347 render: &Render,
348 node: sva_formula::NodeId,
349 var: Var,
350 atom: &SpectralAtom,
351) -> EngineError {
352 let mut at = render.tys.locate(atom.origin);
353 if at.node.is_empty() {
354 at = Located::at(render.tys.name(node), None);
355 }
356 let message = match atom.ind {
357 _ if var == Var::F => "this term spreads over `f` rather than standing at one \
358 frequency, and a line in `f` is a delta"
359 .to_string(),
360 Some(window) => format!(
361 "this term is windowed to [{}s, {}s), and a windowed line is that line convolved \
362 with the window's transform, which has a width and is no line",
363 window.l.value(),
364 window.r.value()
365 ),
366 None => format!(
367 "this term carries {}, and a line is a bare turning exponential: each of those \
368 convolves the line with a shape of its own width",
369 widening(atom).join(", ")
370 ),
371 };
372 EngineError::refused(Diagnostic {
373 code: "read.lines_need_unwindowed_lines".to_string(),
374 message,
375 location: at,
376 help: "`atoms` states each term as it stands, `lines` of the node under the window \
377 or envelope lists the lines it multiplies, and `pitch` or `spectrum` of \
378 `sample(...)` of it measures it frame by frame"
379 .to_string(),
380 })
381}
382
383fn amplitude_at(held: &[Line], hz: f64) -> f64 {
386 held.iter()
387 .filter(|l| (l.hz - hz).abs() <= f64::EPSILON * hz.abs() || l.hz == -hz)
388 .map(|l| l.amp.abs())
389 .sum()
390}
391
392pub fn sketch_atom(a: &SpectralAtom) -> String {
394 let factors: Vec<&'static str> = a.present().iter().map(|f| f.as_str()).collect();
395 format!("{} x {}", a.c.abs(), factors.join(" times "))
396}
397
398fn measured(
399 render: &Render,
400 node: sva_formula::NodeId,
401 representation: Representation,
402 buffer: &Buffer,
403) -> Result<Output, EngineError> {
404 Ok(match representation {
405 Representation::Alias { oversample } => {
406 let reference = oversampled(render, behind(render, node)?, oversample)?;
407 Output::Alias(Box::new(worst_alias(buffer, &reference, oversample)))
408 }
409 Representation::Ledger { depth } => Output::Ledger(attributed(render, node, depth)?),
410 other => {
411 return off_buffer(buffer, other).map_err(|fault| match fault {
412 NoReading::NeedsAGraph => not_a_reading(render, node, other),
413 NoReading::TooNarrow { need, held } => too_narrow(render, node, need, held),
414 });
415 }
416 })
417}
418
419#[derive(Clone, Copy, Debug, PartialEq, Eq)]
422pub enum NoReading {
423 NeedsAGraph,
424 TooNarrow { need: usize, held: usize },
425}
426
427pub fn off_buffer(buffer: &Buffer, representation: Representation) -> Result<Output, NoReading> {
429 let sr = f64::from(buffer.rate);
430 let start = buffer.origin_secs();
431 let plane = buffer.plane(0);
432 Ok(match representation {
433 Representation::Samples => Output::Samples(Box::new(buffer.clone())),
434 Representation::Spectrum {
435 max_peaks,
436 frame_secs,
437 } => Output::Spectrum(Box::new(spectrum::analyze(
438 plane, sr, max_peaks, frame_secs,
439 ))),
440 Representation::Envelope { frame_secs } => Output::Envelope(envelope::trace(
441 &buffer.slices(),
442 sr,
443 start,
444 frame_secs.unwrap_or(DEFAULT_FRAME_SECS),
445 )),
446 Representation::Derivative => Output::Samples(Box::new(difference(buffer))),
447 Representation::Pitch {
448 max_notes,
449 frame_secs,
450 } => Output::Pitch(pitch::track(plane, sr, start, frame_secs, max_notes)),
451 Representation::Formants {
452 max_formants,
453 frame_secs,
454 } => Output::Formants(formants::track(
455 plane,
456 sr,
457 start,
458 frame_secs,
459 formants::default_order(sr),
460 max_formants,
461 )),
462 Representation::Stereo { frame_secs } => {
463 if buffer.width < 2 {
464 return Err(NoReading::TooNarrow {
465 need: 2,
466 held: buffer.width,
467 });
468 }
469 let planes: Vec<&[f64]> = (0..buffer.width).map(|c| buffer.plane(c)).collect();
470 Output::Stereo(Box::new(stereo::analyze(
471 &planes,
472 buffer.width,
473 sr,
474 start,
475 frame_secs,
476 )))
477 }
478 Representation::Bands => Output::Bands(Box::new(bands::analyze(plane, sr, start))),
479 Representation::Crest => Output::Crest(Box::new(crest::analyze(plane, sr))),
480 Representation::Loudness => {
481 let planes: Vec<&[f64]> = (0..buffer.width).map(|c| buffer.plane(c)).collect();
482 Output::Loudness(Box::new(loudness::analyze(&planes, sr, start)))
483 }
484 _ => return Err(NoReading::NeedsAGraph),
485 })
486}
487
488fn attributed(
493 render: &Render,
494 node: sva_formula::NodeId,
495 depth: usize,
496) -> Result<Vec<sva_samples::LedgerEntry>, EngineError> {
497 let holds = |id: sva_formula::NodeId| render.buffers.contains_key(&id);
498 let edges = edges_under(render, node, depth, &holds)?;
499 let under: std::collections::BTreeSet<sva_formula::NodeId> = std::iter::once(node)
500 .chain(edges.iter().map(|(_, child)| *child))
501 .collect();
502 let mut deps = std::collections::BTreeMap::new();
503 let mut kinds = std::collections::BTreeMap::new();
504 for id in render.buffers.keys().filter(|id| under.contains(id)) {
505 let name = render.tys.name(*id).to_string();
506 let read = refs_read(render, *id, &holds)?
507 .into_iter()
508 .map(|op| render.tys.name(op).to_string())
509 .collect();
510 deps.insert(name.clone(), read);
511 kinds.insert(name, sva_samples::SignalKind::Audio);
512 }
513 let mut contributed_by = std::collections::BTreeMap::new();
514 for (parent, child) in &edges {
515 if !crate::render::slots::reads_held(render, *parent)? {
516 return Err(unmaterialized(
517 render,
518 node,
519 Representation::Ledger { depth },
520 ));
521 }
522 if let Some(held) = contributed(render, *parent, *child)? {
523 contributed_by.insert(render.tys.name(*child).to_string(), held);
524 }
525 }
526 let readers: std::collections::BTreeSet<_> = edges.iter().map(|(parent, _)| *parent).collect();
528 let mut buffers = std::collections::BTreeMap::new();
529 for id in render.buffers.keys().filter(|id| under.contains(id)) {
530 let name = render.tys.name(*id);
531 if *id == node || readers.contains(id) || !contributed_by.contains_key(name) {
532 buffers.insert(name.to_string(), own_samples(render, *id)?);
533 }
534 }
535 let len = render.range.map_or(0, |range| range.len());
536 Ok(sva_samples::measure::ledger::attribute(
537 &buffers,
538 &contributed_by,
539 &deps,
540 &kinds,
541 render.tys.name(node),
542 0..len,
543 depth,
544 ))
545}
546
547fn own_samples(render: &Render, id: sva_formula::NodeId) -> Result<Buffer, EngineError> {
549 let range = render.range.expect("a ledger reads a decided range");
550 match render.buffer(id) {
551 Some(_) => render.output(id),
552 None => collapsed_over(render, id, range),
553 }
554}
555
556fn arguments_under(render: &Render, node: sva_formula::NodeId) -> Vec<crate::Arguments> {
559 let under = |id: sva_formula::NodeId| -> Vec<sva_formula::NodeId> {
560 match render.tys.value(id) {
561 Value::ClosedForm(form) => refs::nodes_in(&form.body),
562 Value::Read { source, .. } | Value::Cast(_, source) => vec![*source],
563 Value::Op { args, .. } => args.clone(),
564 Value::Filter {
565 x, cutoff, q, gain, ..
566 } => vec![*x, *cutoff, *q, *gain],
567 Value::Solver { varying, .. } => varying.iter().map(|(_, a)| *a).collect(),
568 Value::SelfAt { .. } | Value::Noise(_) | Value::Stored(_) => Vec::new(),
569 }
570 };
571 let mut names: Vec<&str> = Vec::new();
572 let mut seen = std::collections::BTreeSet::from([node]);
573 let mut level = vec![node];
574 while !level.is_empty() {
575 let mut next = Vec::new();
576 for at in level {
577 let name = render.tys.name(at);
578 if !names.contains(&name) {
579 names.push(name);
580 }
581 next.extend(under(at).into_iter().filter(|c| seen.insert(*c)));
582 }
583 level = next;
584 }
585 names
586 .into_iter()
587 .filter_map(|name| render.tys.arguments(name).cloned())
588 .collect()
589}
590
591fn edges_under(
593 render: &Render,
594 node: sva_formula::NodeId,
595 depth: usize,
596 holds: &dyn Fn(sva_formula::NodeId) -> bool,
597) -> Result<Vec<(sva_formula::NodeId, sva_formula::NodeId)>, EngineError> {
598 let mut seen = std::collections::BTreeSet::from([node]);
599 let (mut level, mut out) = (vec![node], Vec::new());
600 for _ in 0..depth {
601 let mut next = Vec::new();
602 for parent in level {
603 for child in refs_read(render, parent, holds)? {
604 if seen.insert(child) {
605 out.push((parent, child));
606 next.push(child);
607 }
608 }
609 }
610 level = next;
611 }
612 Ok(out)
613}
614
615fn refs_read(
617 render: &Render,
618 node: sva_formula::NodeId,
619 holds: &dyn Fn(sva_formula::NodeId) -> bool,
620) -> Result<Vec<sva_formula::NodeId>, EngineError> {
621 crate::render::slots::refs_read(render, node, holds)
622}
623
624fn contributed(
628 render: &Render,
629 parent: sva_formula::NodeId,
630 child: sva_formula::NodeId,
631) -> Result<Option<Buffer>, EngineError> {
632 let range = render.range.expect("a ledger reads a decided range");
633 Ok(crate::render::slots::contributed(render, parent, child)?
634 .map(|held| held.over(range, held.extent())))
635}
636
637fn behind(render: &Render, node: sva_formula::NodeId) -> Result<sva_formula::NodeId, EngineError> {
640 if render.tys.ty(node).is_closed_form() {
641 return Ok(node);
642 }
643 match render.tys.value(node) {
644 crate::typing::Value::Cast(crate::cast::Cast::Sample, source) => Ok(*source),
645 _ => Err(refused(
646 render,
647 node,
648 "engine.alias_needs_a_closed_form",
649 "an alias score is a render against the same closed form oversampled, and this node \
650 is samples with no closed form behind it"
651 .to_string(),
652 )),
653 }
654}
655
656pub(super) fn alias_db(
659 render: &Render,
660 node: sva_formula::NodeId,
661 buffer: &Buffer,
662) -> Result<f64, EngineError> {
663 let oversample = sva_samples::ALIAS_OVERSAMPLE as u32;
664 let reference = oversampled(render, behind(render, node)?, oversample)?;
665 Ok(worst_alias(buffer, &reference, oversample).asr_db)
666}
667
668fn worst_alias(buffer: &Buffer, reference: &Buffer, oversample: u32) -> sva_samples::Alias {
670 debug_assert_eq!(
671 buffer.width, reference.width,
672 "the reference is the same form at another rate"
673 );
674 let sr = f64::from(buffer.rate);
675 let width = buffer.width.min(reference.width);
676 sva_samples::worst_alias((0..width).map(|c| {
677 measure_alias(
678 buffer.plane(c),
679 reference.plane(c),
680 oversample as usize,
681 sr,
682 buffer.origin_secs(),
683 )
684 }))
685 .expect("a buffer holds at least one component")
686}
687
688fn oversampled(
690 render: &Render,
691 node: sva_formula::NodeId,
692 oversample: u32,
693) -> Result<Buffer, EngineError> {
694 let rate = render.config.rate * oversample;
695 let range = render.range.expect("an alias score reads a decided range");
696 let k = i64::from(oversample);
697 let extent = Extent::new(range.start * k, range.end * k);
698 let taken = match refs::spectral_sum_of(&render.tys, node, Var::T) {
699 Ok(sum) => sva_samples::of_spectral_sum(
700 &sum,
701 rate,
702 extent,
703 &render.config.profile,
704 AliasScore::NotAsked,
705 ),
706 Err(_) => return super::finer(render, node, oversample, extent),
707 };
708 taken.map(|(buffer, _)| buffer).map_err(|e| {
709 EngineError::refused(Diagnostic {
710 code: e.code().to_string(),
711 message: e.to_string(),
712 location: Located::at(render.tys.name(node), None),
713 help: "an alias score needs a closed form to oversample".to_string(),
714 })
715 })
716}
717
718fn difference(buffer: &Buffer) -> Buffer {
720 let step = f64::from(buffer.rate);
721 let planes = (0..buffer.width)
722 .map(|c| {
723 let plane = buffer.plane(c);
724 plane
725 .iter()
726 .enumerate()
727 .map(|(i, x)| match i {
728 0 => 0.0,
729 _ => (x - plane[i - 1]) * step,
730 })
731 .collect()
732 })
733 .collect();
734 let mut out = Buffer::of_planes(buffer.rate, planes);
735 out.start = buffer.start;
736 out
737}
738
739fn refused(render: &Render, node: sva_formula::NodeId, code: &str, message: String) -> EngineError {
740 EngineError::refused(Diagnostic {
741 code: code.to_string(),
742 message,
743 location: Located::at(render.tys.name(node), None),
744 help: "ask for a reading this representation answers".to_string(),
745 })
746}
747
748fn unenumerable(render: &Render, node: sva_formula::NodeId) -> EngineError {
749 refused(
750 render,
751 node,
752 "read.series_not_enumerable",
753 "a series whose term is no line lists no lines, and an empty list would read as \
754 a node with none"
755 .to_string(),
756 )
757}
758
759fn not_a_closed_form(render: &Render, node: sva_formula::NodeId, r: Representation) -> EngineError {
760 refused(
761 render,
762 node,
763 "engine.observation_needs_samples",
764 format!(
765 "`{}` reads samples, and this node is a closed form",
766 r.name()
767 ),
768 )
769}
770
771fn not_a_reading(render: &Render, node: sva_formula::NodeId, r: Representation) -> EngineError {
772 refused(
773 render,
774 node,
775 "engine.observation_not_wired",
776 format!("`{}` takes no reading off a buffer here", r.name()),
777 )
778}
779
780fn too_narrow(render: &Render, node: sva_formula::NodeId, need: usize, held: usize) -> EngineError {
781 refused(
782 render,
783 node,
784 "type.width_mismatch",
785 format!("this reading needs {need} components and the node holds {held}"),
786 )
787}
788
789pub(super) fn unheld(render: &Render, node: sva_formula::NodeId) -> EngineError {
790 refused(
791 render,
792 node,
793 "engine.not_materialized",
794 "this render held no samples of it".to_string(),
795 )
796}
797
798fn unmaterialized(render: &Render, node: sva_formula::NodeId, r: Representation) -> EngineError {
799 refused(
800 render,
801 node,
802 "engine.not_materialized",
803 format!("`{}` reads samples this render never held", r.name()),
804 )
805}
806
807pub fn answer_buffer(
810 name: &str,
811 buffer: &Buffer,
812 representation: Representation,
813 profile: &'static str,
814) -> Result<Answer, EngineError> {
815 let refused = |code: &str, message: String| {
816 EngineError::refused(Diagnostic {
817 code: code.to_string(),
818 message,
819 location: Located::at(name, None),
820 help: "ask for a reading a buffer answers on its own".to_string(),
821 })
822 };
823 let value = off_buffer(buffer, representation).map_err(|fault| match fault {
824 NoReading::NeedsAGraph => refused(
825 "engine.observation_needs_a_graph",
826 format!(
827 "`{}` reads the tree a node was built from, and a file has none",
828 representation.name()
829 ),
830 ),
831 NoReading::TooNarrow { need, held } => refused(
832 "type.width_mismatch",
833 format!("this reading needs {need} components and the file holds {held}"),
834 ),
835 })?;
836 Ok(Answer::whole(
837 value,
838 Source::Measured,
839 profile,
840 Some(buffer.rate),
841 ))
842}