1use std::f64::consts::TAU;
4
5use sva_formula::affine::{Axis, axis, exact_constant};
6use sva_formula::closed_form::{Bound, Series, children, map_children};
7use sva_formula::series::{mentions_line, ratio, substitute};
8use sva_formula::spectral_sum::atom::{Exp, Factors, Singular, SpectralAtom};
9use sva_formula::table::series::{Shape, read};
10use sva_formula::{
11 Body, C64, Codomain, Env, Lane, NodeId, ParamId, Part, Run, SpectralSum, Ty, Unary, Var, lines,
12};
13
14use crate::error::CollapseError;
15use crate::profile::Profile;
16
17#[derive(Clone, Copy, Debug, PartialEq)]
20pub struct Audible {
21 ceiling: f64,
22 precision: f64,
23 floor_db: f64,
24}
25
26impl Audible {
27 pub fn of(profile: &Profile, rate: u32) -> Audible {
28 let ceiling = profile.ceiling(rate);
29 Audible {
30 ceiling,
31 precision: profile.half_lsb(),
32 floor_db: profile.floor(ceiling),
33 }
34 }
35}
36
37const MAX_EXPANDED_TERMS: usize = 1 << 13;
40
41pub fn spectral_sum(n: &SpectralSum, band: Audible) -> Result<SpectralSum, CollapseError> {
44 if n.lanes.iter().all(|l| l.series.is_empty()) {
45 return Ok(n.clone());
46 }
47 let mut lanes = Vec::with_capacity(n.lanes.len());
48 for lane in &n.lanes {
49 let mut held = Lane {
50 series: Vec::new(),
51 ..lane.clone()
52 };
53 for s in &lane.series {
54 held.atoms.extend(atoms(s, band)?);
55 }
56 lanes.push(held);
57 }
58 Ok(SpectralSum::of(n.var, lanes))
59}
60
61pub fn written(f: &Body, band: Audible) -> Result<Body, CollapseError> {
63 if let Body::Series(s) = f {
64 return expanded(s, band);
65 }
66 let mut found = None;
67 let out = map_children(f, |p| match written(&p.body, band) {
68 Ok(body) => Part::new(p.origin, body),
69 Err(e) => {
70 found = Some(e);
71 p.clone()
72 }
73 });
74 match found {
75 Some(e) => Err(e),
76 None => Ok(out),
77 }
78}
79
80fn atoms(s: &Series, band: Audible) -> Result<Vec<SpectralAtom>, CollapseError> {
81 let (body, window) = sva_formula::crop_peeled(&s.term.body);
82 let bare = Series {
83 term: Part::new(s.term.origin, body),
84 ..s.clone()
85 };
86 let taken = enumerated(&bare, band);
87 if !taken.is_empty() {
88 return Ok(taken
89 .into_iter()
90 .map(|l| {
91 SpectralAtom::new(
92 l.amp,
93 Factors {
94 exp: Some(Exp::at(0.0, TAU * l.hz)),
95 ind: window,
96 ..Factors::NONE
97 },
98 Singular::Regular,
99 s.term.origin,
100 )
101 })
102 .collect());
103 }
104 let body = expanded(s, band)?;
105 let held = sva_formula::normalize(&body, Var::T)
106 .map_err(|_| CollapseError::NotEvaluable("a series term"))?;
107 Ok(held.lanes.into_iter().flat_map(|l| l.atoms).collect())
108}
109
110fn expanded(s: &Series, band: Audible) -> Result<Body, CollapseError> {
112 let taken = enumerated(s, band);
113 if !taken.is_empty() {
114 let runs = Run::of(&taken).into_iter();
115 return Ok(sum(runs.map(|r| Body::Run(Box::new(r))).collect()));
116 }
117 let count = terms(s, band)?;
118 let mut parts = Vec::with_capacity(count);
119 for i in 0..count {
120 let form = substitute(&s.term.body, s.index, (s.lo + i as i64) as f64);
121 parts.push(written(&form, band)?);
122 }
123 Ok(sum(parts))
124}
125
126fn enumerated(s: &Series, band: Audible) -> Vec<sva_formula::Line> {
127 match read(&s.term.body) {
128 Some(Shape::Lines(_)) => lines(s, band.ceiling, band.floor_db, band.precision).taken,
129 _ => Vec::new(),
130 }
131}
132
133fn sum(parts: Vec<Body>) -> Body {
134 match parts.len() {
135 0 => Body::Const(C64::ZERO),
136 1 => parts.into_iter().next().expect("one part"),
137 _ => Body::Add(parts.into_iter().map(Part::bare).collect()),
138 }
139}
140
141fn terms(s: &Series, band: Audible) -> Result<usize, CollapseError> {
143 let cost = cost(s, band).ok_or(CollapseError::NotEvaluable(
144 "a series whose term count no coefficient bounds",
145 ))?;
146 if cost.depth == 1 && cost.own > MAX_EXPANDED_TERMS {
147 return Err(CollapseError::NotEvaluable(
148 "a series of more terms than one instant expands",
149 ));
150 }
151 match cost.terms > MAX_EXPANDED_TERMS {
152 true => Err(CollapseError::NestedSeries {
153 depth: cost.depth,
154 terms: cost.terms,
155 bound: MAX_EXPANDED_TERMS,
156 }),
157 false => Ok(cost.own),
158 }
159}
160
161struct Cost {
163 depth: usize,
164 terms: usize,
165 own: usize,
166}
167
168fn cost(s: &Series, band: Audible) -> Option<Cost> {
169 let own = counted(s, band)?;
170 let inside = substitute(&s.term.body, s.index, s.lo as f64);
171 let (depth, inner) = price(&inside, band)?;
172 Some(Cost {
173 depth: depth + 1,
174 terms: own.saturating_mul(inner),
175 own,
176 })
177}
178
179fn price(f: &Body, band: Audible) -> Option<(usize, usize)> {
181 if let Body::Series(s) = f {
182 let cost = cost(s, band)?;
183 return Some((cost.depth, cost.terms));
184 }
185 let summed = matches!(f, Body::Add(_));
186 let mut depth = 0;
187 let mut terms: usize = if summed { 0 } else { 1 };
188 for p in children(f) {
189 let (d, n) = price(&p.body, band)?;
190 depth = depth.max(d);
191 terms = match summed {
192 true => terms.saturating_add(n),
193 false => terms.saturating_mul(n),
194 };
195 }
196 Some((depth, terms.max(1)))
197}
198
199fn counted(s: &Series, band: Audible) -> Option<usize> {
202 let hi = match s.hi {
203 Bound::Finite(n) => return usize::try_from((n - s.lo + 1).max(0)).ok(),
204 Bound::Infinite => MAX_EXPANDED_TERMS,
205 };
206 let bound = bound(&s.term.body, band)?;
207 let ratio = match bound.exact {
208 true => ratio(&bound.body, s.index).filter(|r| *r < 1.0),
209 false => None,
210 };
211 let floor = 10f64.powf(band.floor_db / 20.0);
212 let mut peak = 0.0f64;
213 for i in 0..hi {
214 let at = substitute(&bound.body, s.index, (s.lo + i as i64) as f64);
215 let held = exact_constant(&at)?.abs();
216 peak = peak.max(held);
217 let gone = match ratio {
218 Some(r) => held / (1.0 - r) <= band.precision,
219 None => peak > 0.0 && held < peak * floor,
220 };
221 if gone {
222 return Some(i.max(1));
223 }
224 }
225 None
226}
227
228struct Bounded {
231 body: Body,
232 exact: bool,
233}
234
235fn bound(f: &Body, band: Audible) -> Option<Bounded> {
236 let held = |body: Body, exact: bool| Some(Bounded { body, exact });
237 let under = |p: &Part| bound(&p.body, band).map(|b| (Part::new(p.origin, b.body), b.exact));
238 let all = |parts: &[Part], wrap: &dyn Fn(Part) -> Part| {
239 let mut exact = true;
240 let mut kept = Vec::with_capacity(parts.len());
241 for p in parts {
242 let (part, known) = under(p)?;
243 exact &= known;
244 kept.push(wrap(part));
245 }
246 Some((kept, exact))
247 };
248 match f {
249 Body::Series(s) => match total(s, band) {
250 Some(sum) => held(Body::Const(C64::real(sum)), true),
251 None => held(Body::Const(C64::ONE), false),
252 },
253 Body::Line | Body::Node(_) => held(Body::Const(C64::ONE), false),
254 Body::Mul(parts) => {
255 let (kept, exact) = all(parts, &|p| p)?;
256 held(Body::Mul(kept), exact)
257 }
258 Body::Add(parts) => {
259 let (kept, exact) = all(parts, &|p| Part::bare(Body::Apply(Unary::Abs, p)))?;
260 held(Body::Add(kept), exact)
261 }
262 Body::Div(a, b) if !mentions_line(&b.body) => {
263 let (num, exact) = under(a)?;
264 held(Body::Div(num, b.clone()), exact)
265 }
266 Body::Div(a, b) => {
267 let ((num, _), (den, _)) = (under(a)?, under(b)?);
268 held(Body::Div(num, den), false)
269 }
270 Body::Apply(Unary::Sin | Unary::Cos | Unary::Tanh | Unary::Sat, arg) => {
271 held(Body::Const(C64::ONE), real(&arg.body))
272 }
273 Body::Crop { of, .. } | Body::Shift { of, .. } | Body::Warp { of, .. } => {
274 bound(&of.body, band)
275 }
276 Body::Pow(base, n) => {
277 let (part, exact) = under(base)?;
278 held(Body::Pow(part, *n), exact && *n >= 0)
279 }
280 other if !mentions_line(other) => held(other.clone(), true),
281 _ => None,
282 }
283}
284
285fn total(s: &Series, band: Audible) -> Option<f64> {
287 let bound = bound(&s.term.body, band).filter(|b| b.exact)?.body;
288 let at = |i: i64| Some(exact_constant(&substitute(&bound, s.index, i as f64))?.abs());
289 if let (Bound::Infinite, Some(r)) = (s.hi, ratio(&bound, s.index).filter(|r| *r < 1.0)) {
290 return Some(at(s.lo)? / (1.0 - r));
291 }
292 let kept = i64::try_from(counted(s, band).filter(|n| *n <= MAX_EXPANDED_TERMS)?).ok()?;
293 (s.lo..s.lo + kept).try_fold(0.0, |held, i| Some(held + at(i)?))
294}
295
296fn real(f: &Body) -> bool {
297 axis(f, &Unread) == Axis::Real
298}
299
300struct Unread;
301
302impl Env for Unread {
303 fn node(&self, _: NodeId) -> Ty {
304 Ty::form(Var::T, false, Codomain::Complex)
305 }
306
307 fn param(&self, _: ParamId) -> Ty {
308 Ty::form(Var::T, false, Codomain::Complex)
309 }
310}