1use std::f64::consts::TAU;
4
5use crate::affine::{Axis, Reading, affine_in, axis, exact_constant};
6use crate::closed_form::{
7 Body, Bound, IndexId, Part, Series, Unary, children, map_children, read_at,
8};
9use crate::complex::C64;
10use crate::env::Env;
11use crate::spectral_sum::atom::{Exp, Factors, Singular, SpectralAtom};
12use crate::table::series::{Shape, read};
13
14#[derive(Clone, Copy, Debug, PartialEq, Eq)]
16pub enum IndexGrowth {
17 Polynomial,
18 Unbounded,
19}
20
21pub fn summable(s: &Series, env: &dyn Env) -> bool {
22 match s.hi {
23 Bound::Finite(_) => true,
24 Bound::Infinite => growth(&s.term.body, s.index, env) == IndexGrowth::Polynomial,
25 }
26}
27
28pub fn growth(f: &Body, k: IndexId, env: &dyn Env) -> IndexGrowth {
30 if !mentions(f, k) {
31 return IndexGrowth::Polynomial;
32 }
33 match f {
34 Body::Index(_) | Body::Line | Body::Const(_) => IndexGrowth::Polynomial,
35 Body::Add(parts) | Body::Mul(parts) | Body::Join(parts) => join(parts, k, env),
36 Body::Div(a, b) => {
37 join(std::slice::from_ref(a), k, env).and(join(std::slice::from_ref(b), k, env))
38 }
39 Body::Pow(base, _) => growth(&base.body, k, env),
40 Body::Keyed { .. } => IndexGrowth::Polynomial,
41 Body::Apply(Unary::Sin | Unary::Cos, arg) => bounded_along(arg, k, Axis::Real, env),
42 Body::Apply(Unary::Exp, arg) if logarithmic(&arg.body, k) => IndexGrowth::Polynomial,
43 Body::Apply(Unary::Exp, arg) => exponential_in(arg, k, env),
44 Body::Channel(of, _) | Body::Crop { of, .. } => growth(&of.body, k, env),
45 Body::Shift { of, .. } | Body::Deriv { of, .. } => growth(&of.body, k, env),
46 Body::Warp { at, of } => match &*of.body {
47 Body::Crop { of: inner, .. } => growth(&read_at(&inner.body, &at.body), k, env),
48 other => growth(&read_at(other, &at.body), k, env),
49 },
50 Body::Pv(at) | Body::Delta { at, .. } => growth(&at.body, k, env),
51 Body::Series(inner) => growth(&inner.term.body, k, env),
52 _ => IndexGrowth::Unbounded,
53 }
54}
55
56fn exponential_in(arg: &Part, k: IndexId, env: &dyn Env) -> IndexGrowth {
59 if let bounded @ IndexGrowth::Polynomial = bounded_along(arg, k, Axis::Imaginary, env) {
60 return bounded;
61 }
62 match affine_in(&arg.body, Reading::Index(k)).and_then(|(slope, _)| slope.exact()) {
63 Some(slope) if slope.re < 0.0 => IndexGrowth::Polynomial,
64 _ => IndexGrowth::Unbounded,
65 }
66}
67
68fn bounded_along(arg: &Part, k: IndexId, wanted: Axis, env: &dyn Env) -> IndexGrowth {
69 if !mentions(&arg.body, k) || axis(&arg.body, env) == wanted {
70 IndexGrowth::Polynomial
71 } else {
72 IndexGrowth::Unbounded
73 }
74}
75
76fn logarithmic(f: &Body, k: IndexId) -> bool {
78 match f {
79 _ if !mentions(f, k) => true,
80 Body::Apply(Unary::Log, _) => true,
81 Body::Add(parts) | Body::Mul(parts) => parts.iter().all(|p| logarithmic(&p.body, k)),
82 Body::Div(a, b) => logarithmic(&a.body, k) && logarithmic(&b.body, k),
83 _ => false,
84 }
85}
86
87fn join(parts: &[Part], k: IndexId, env: &dyn Env) -> IndexGrowth {
88 parts.iter().fold(IndexGrowth::Polynomial, |acc, p| {
89 acc.and(growth(&p.body, k, env))
90 })
91}
92
93impl IndexGrowth {
94 fn and(self, other: IndexGrowth) -> IndexGrowth {
95 match (self, other) {
96 (IndexGrowth::Polynomial, IndexGrowth::Polynomial) => IndexGrowth::Polynomial,
97 _ => IndexGrowth::Unbounded,
98 }
99 }
100}
101
102pub fn mentions_line(f: &Body) -> bool {
104 reaches(f, &|x| matches!(x, Body::Line))
105}
106
107pub fn ratio(f: &Body, k: IndexId) -> Option<f64> {
109 if !mentions(f, k) {
110 return Some(1.0);
111 }
112 match f {
113 Body::Mul(parts) => parts
114 .iter()
115 .try_fold(1.0, |held, p| Some(held * ratio(&p.body, k)?)),
116 Body::Add(parts) => parts.iter().try_fold(0.0f64, |held, p| match &*p.body {
117 Body::Apply(Unary::Abs, _) => Some(held.max(ratio(&p.body, k)?)),
118 _ => None,
119 }),
120 Body::Div(num, den) if !mentions(&den.body, k) => ratio(&num.body, k),
121 Body::Apply(Unary::Abs, arg) => ratio(&arg.body, k),
122 Body::Apply(Unary::Exp, arg) => {
123 let (slope, _) = affine_in(&arg.body, Reading::Index(k))?;
124 Some(slope.exact()?.re.exp())
125 }
126 Body::Pow(base, n) if *n >= 0 => Some(ratio(&base.body, k)?.powi(*n)),
127 _ => None,
128 }
129}
130
131pub fn mentions(f: &Body, k: IndexId) -> bool {
132 reaches(f, &|x| matches!(x, Body::Index(i) if *i == k))
133}
134
135fn reaches(f: &Body, leaf: &dyn Fn(&Body) -> bool) -> bool {
136 leaf(f) || children(f).iter().any(|p| reaches(&p.body, leaf))
137}
138
139#[derive(Clone, Copy, Debug, PartialEq)]
140pub struct Line {
141 pub hz: f64,
142 pub amp: C64,
143}
144
145#[derive(Clone, Debug, PartialEq)]
147pub struct Lines {
148 pub taken: Vec<Line>,
149 pub dropped: Vec<Line>,
150 pub tail_db: f64,
151}
152
153pub const AUDIBLE_CEILING_HZ: f64 = 20_000.0;
154
155pub fn lines(s: &Series, ceiling: f64, floor_db: f64, precision: f64) -> Lines {
159 let ceiling = ceiling.min(AUDIBLE_CEILING_HZ);
160 let Some(shape) = read(&s.term.body) else {
161 return Lines {
162 taken: Vec::new(),
163 dropped: Vec::new(),
164 tail_db: f64::NEG_INFINITY,
165 };
166 };
167 let voices = places(&shape);
168 let band = voices
169 .iter()
170 .filter_map(|(place, _)| leaves_band(place, s.index, ceiling))
171 .fold(None, |held: Option<i64>, next| {
172 Some(held.map_or(next, |held| held.max(next)))
173 });
174 let hi = match (s.hi, band) {
175 (Bound::Finite(n), Some(last)) => n.min(last),
176 (Bound::Finite(n), None) => n,
177 (Bound::Infinite, Some(last)) => last,
178 (Bound::Infinite, None) => s.lo.saturating_add(MAX_TERMS),
179 };
180 let ratio = voices
181 .iter()
182 .try_fold(0.0f64, |held, (_, weight)| {
183 Some(held.max(ratio(weight, s.index)?))
184 })
185 .filter(|r| *r < 1.0);
186 let floor = 10f64.powf(floor_db / 20.0);
187
188 let mut taken = Vec::new();
189 let mut dropped = Vec::new();
190 let mut first = 0.0f64;
191 for k in s.lo..=hi {
192 let mut here = Vec::new();
193 for (place, weight) in &voices {
194 let (Some(hz), Some(amp)) = (
195 at_index(place, s.index, k).map(|c| c.re),
196 at_index(weight, s.index, k),
197 ) else {
198 continue;
199 };
200 here.push(Line { hz, amp });
201 }
202 let loudest = here.iter().map(|l| l.amp.abs()).fold(0.0f64, f64::max);
203 if k == s.lo {
204 first = loudest;
205 }
206 let bound: f64 = here.iter().map(|l| l.amp.abs()).sum();
207 let gone = match ratio {
208 Some(r) => here.len() == voices.len() && bound / (1.0 - r) <= precision,
209 None => first > 0.0 && loudest < first * floor,
210 };
211 if band.is_none() && k > s.lo && gone {
212 dropped.extend(here);
213 break;
214 }
215 for line in here {
216 if line.hz.abs() <= ceiling {
217 taken.push(line);
218 } else {
219 dropped.push(line);
220 }
221 }
222 }
223 let loudest = |set: &[Line]| set.iter().map(|l| l.amp.abs()).fold(0.0f64, f64::max);
224 let (kept, gone) = (loudest(&taken), loudest(&dropped));
225 Lines {
226 tail_db: if gone > 0.0 && kept > 0.0 {
227 20.0 * (gone / kept).log10()
228 } else {
229 f64::NEG_INFINITY
230 },
231 taken,
232 dropped,
233 }
234}
235
236pub fn spacing(s: &Series) -> Option<f64> {
239 let Some(shape @ Shape::Lines(_)) = read(&s.term.body) else {
240 return None;
241 };
242 let mut held: Option<f64> = None;
243 for (place, _) in places(&shape) {
244 let (slope, offset) = affine_in(&place, Reading::Index(s.index))?;
245 let (slope, offset) = (slope.exact()?.re, offset.exact()?.re);
246 if slope == 0.0 || !slope.is_finite() || !offset.is_finite() {
247 return None;
248 }
249 let steps = offset / slope;
250 if (steps.round() - steps).abs() > TURN_EPSILON * steps.abs().max(1.0) {
251 return None;
252 }
253 match held {
254 Some(step) if step != slope.abs() => return None,
255 _ => held = Some(slope.abs()),
256 }
257 }
258 held
259}
260
261#[derive(Clone, Debug, PartialEq)]
262pub struct Enumerated {
263 pub atoms: Vec<SpectralAtom>,
264 pub dropped: Vec<Line>,
265}
266
267pub fn line_atoms(s: &Series, ceiling: f64, floor_db: f64, precision: f64) -> Option<Enumerated> {
270 let (body, window) = crate::spectral_sum::image::crop_peeled(&s.term.body);
271 let bare = Series {
272 term: Part::new(s.term.origin, body),
273 ..s.clone()
274 };
275 let singular = match read(&bare.term.body)? {
276 Shape::Deltas(_) => true,
277 Shape::Lines(_) => false,
278 };
279 let found = lines(&bare, ceiling, floor_db, precision);
280 let atoms = found
281 .taken
282 .into_iter()
283 .filter_map(|l| match singular {
284 true => window.is_none_or(|w| w.contains(l.hz)).then(|| {
285 SpectralAtom::new(
286 l.amp,
287 Factors::NONE,
288 Singular::Delta { at: l.hz, order: 0 },
289 s.term.origin,
290 )
291 }),
292 false => Some(SpectralAtom::new(
293 l.amp,
294 Factors {
295 exp: Some(Exp::at(0.0, TAU * l.hz)),
296 ind: window,
297 ..Factors::NONE
298 },
299 Singular::Regular,
300 s.term.origin,
301 )),
302 })
303 .collect();
304 Some(Enumerated {
305 atoms,
306 dropped: found.dropped,
307 })
308}
309
310pub fn commensurate(hz: f64, horizon: f64) -> bool {
313 let turns = hz * horizon;
314 (turns.round() - turns).abs() <= TURN_EPSILON * turns.abs().max(1.0)
315}
316
317const TURN_EPSILON: f64 = 1e-9;
318
319fn places(shape: &Shape) -> Vec<(Body, Body)> {
320 match shape {
321 Shape::Lines(lines) => lines
322 .iter()
323 .map(|l| (l.freq.clone(), l.amp.clone()))
324 .collect(),
325 Shape::Deltas(deltas) => deltas
326 .iter()
327 .map(|d| (d.at.clone(), d.weight.clone()))
328 .collect(),
329 }
330}
331
332fn leaves_band(place: &Body, k: IndexId, ceiling: f64) -> Option<i64> {
335 let (slope, offset) = affine_in(place, Reading::Index(k))?;
336 let (slope, offset) = (slope.exact()?.re, offset.exact()?.re);
337 if slope == 0.0 {
338 return None;
339 }
340 let ends = [(ceiling - offset) / slope, (-ceiling - offset) / slope];
341 let last = ends[0].max(ends[1]).floor();
342 Some(last.clamp(0.0, MAX_TERMS as f64) as i64 + 1)
343}
344
345const MAX_TERMS: i64 = 1 << 20;
346
347fn at_index(f: &Body, k: IndexId, value: i64) -> Option<C64> {
348 exact_constant(&substitute(f, k, value as f64))
349}
350
351pub fn substitute(f: &Body, k: IndexId, value: f64) -> Body {
352 match f {
353 Body::Index(i) if *i == k => Body::Const(C64::real(value)),
354 other => map_children(other, |p| {
355 Part::new(p.origin, substitute(&p.body, k, value))
356 }),
357 }
358}