use sva_formula::{ClosedForm, SpectralSum, Var, normalize_closed_form};
use super::active::{self, Window};
use super::lines::{self, Direct};
use super::truncate::{self, Audible};
use super::{atoms, plan, point, reaches_no_atom, reading, span, tail};
use crate::Grid;
use crate::error::CollapseError;
use crate::label::{Detail, Label, Rule, Source};
use crate::machine::tape::Tape;
use crate::profile::Profile;
pub struct Rows {
row: Row,
rate: u32,
width: usize,
label: (Source, Detail),
}
enum Row {
Lines(Vec<Option<Direct>>),
Sweep {
sum: Box<SpectralSum>,
spans: Vec<Option<Vec<(i64, i64)>>>,
windows: Vec<Vec<Window>>,
},
Point {
written: Box<ClosedForm>,
width: usize,
windows: Vec<Window>,
},
Added(Vec<(Row, usize, Window)>),
}
impl Rows {
pub fn of(form: &ClosedForm, rate: u32, profile: &Profile) -> Result<Rows, CollapseError> {
match normalize_closed_form(form) {
Ok(sum) => Rows::of_spectral_sum_or_point(&sum, Some(form), rate, profile),
Err(_) if form.var == Var::T => Ok(Rows::held(of_written(form, rate, profile)?, rate)),
Err(left) => Err(CollapseError::LeftAlgebra(left.reason.clause())),
}
}
pub fn of_spectral_sum_or_point(
sum: &SpectralSum,
written: Option<&ClosedForm>,
rate: u32,
profile: &Profile,
) -> Result<Rows, CollapseError> {
let row = match of_sum(sum, rate, profile) {
Err(e) if reaches_no_atom(&e) => match written.filter(|t| t.var == Var::T) {
Some(form) => of_written(form, rate, profile),
None => Err(e),
},
other => other,
}?;
Ok(Rows::held(row, rate))
}
fn held((row, label): (Row, (Source, Detail)), rate: u32) -> Rows {
Rows {
width: width(&row),
row,
rate,
label,
}
}
pub fn width(&self) -> usize {
self.width
}
pub fn label(&self, profile: &Profile) -> Label {
let (source, detail) = self.label.clone();
Label::new(source, profile.name, self.rate, detail)
}
pub fn lines(&self) -> Option<Vec<f64>> {
let Row::Lines(lanes) = &self.row else {
return None;
};
Some(lanes.iter().flatten().flat_map(Direct::hz).collect())
}
pub fn planes(&self, from: i64, to: i64) -> Result<Vec<Vec<f64>>, CollapseError> {
(0..self.width)
.map(|c| values(&self.row, c, (from, to), self.rate))
.collect()
}
pub fn work(&self, from: i64, to: i64) -> (u128, u128) {
(0..self.width).fold((0, 0), |held, c| {
let (priced, waves) = worked(&self.row, c, from, to, Grid::of(self.rate));
(held.0 + priced, held.1 + waves)
})
}
pub fn extend(&self, to: i64, tape: &mut Tape) -> Result<(), CollapseError> {
let from = tape.end();
if to <= from {
return Ok(());
}
let planes = (0..self.width)
.map(|c| values(&self.row, c, (from, to), self.rate))
.collect::<Result<Vec<_>, _>>()?;
for i in 0..(to - from) as usize {
for (c, plane) in planes.iter().enumerate() {
tape.push(c, plane[i]);
}
}
Ok(())
}
}
fn worked(row: &Row, c: usize, from: i64, to: i64, grid: Grid) -> (u128, u128) {
let n = (to - from) as u128;
let times = |(priced, waves): (usize, usize), n: u128| (priced as u128 * n, waves as u128 * n);
match row {
Row::Lines(lanes) => lanes[c]
.as_ref()
.map_or((0, 0), |d| times(d.lines_priced_and_turned(), n)),
Row::Sweep { spans, windows, .. } => {
let evaluated =
active::evaluated(&windows[c], &inside(spans[c].as_deref(), (from, to)));
(evaluated, evaluated)
}
Row::Point { written, .. } => plan::point_work(&written.body, c, grid, (from, to)),
Row::Added(parts) => parts.iter().fold((0, 0), |held, (part, width, reach)| {
match (lane(*width, c), active::meet((from, to), *reach)) {
(Some(lane), (a, b)) if a < b => {
let (priced, waves) = worked(part, lane, a, b, grid);
(held.0 + priced, held.1 + waves)
}
_ => held,
}
}),
}
}
type Labelled = (Row, (Source, Detail));
fn of_sum(sum: &SpectralSum, rate: u32, profile: &Profile) -> Result<Labelled, CollapseError> {
if sum.var == Var::F {
return Err(CollapseError::NoBlockRow);
}
let ceiling = profile.ceiling(rate);
if let Some(found) = plan::kept_lines(sum, profile, ceiling)? {
let (dropped, dropped_more) = lines::dropped_list(found.dropped());
let summed = lines::distinct(&found.kept);
let detail = Detail::Lines {
rule: Rule::LineSpectrumSummed,
placed: 0,
summed,
dropped,
dropped_more,
terms: Some(summed),
tail_db: found.tail(),
};
let row = Row::Lines(found.kept.iter().map(|kept| Direct::of(kept)).collect());
return Ok((row, (Source::Exact, detail)));
}
let truncated = truncate::spectral_sum(sum, Audible::of(profile, rate))?;
let label = match () {
() if atoms::band_limited(&truncated, ceiling, profile) => (
Source::Exact,
Detail::Continuous {
rule: Rule::BandLimited,
},
),
() if atoms::windowed(&truncated) => (
Source::Measured,
Detail::Cropped {
rule: Rule::CroppedPair,
tail_db: tail::tail_db(&truncated, ceiling),
},
),
() => (
Source::Measured,
Detail::Point {
rule: Rule::PointSampled,
alias_db: None,
},
),
};
let spans = truncated
.lanes
.iter()
.map(|lane| span::windows(lane, rate))
.collect();
let grid = Grid::of(rate);
let windows = truncated
.lanes
.iter()
.map(|lane| active::windows(lane, grid))
.collect();
let row = Row::Sweep {
sum: Box::new(truncated),
spans,
windows,
};
Ok((row, label))
}
fn of_written(form: &ClosedForm, rate: u32, profile: &Profile) -> Result<Labelled, CollapseError> {
let Some(addends) = plan::addends(form) else {
return point(form, rate, profile);
};
let mut parts = Vec::with_capacity(addends.len());
let mut labels: Vec<(Source, Detail)> = Vec::new();
for addend in &addends {
match of_term(addend, rate, profile)? {
(Row::Added(inner), (source, Detail::Added { parts: details })) => {
parts.extend(inner);
labels.extend(details.into_iter().map(|d| (source, d)));
}
(part, (source, detail)) => {
let (held, reach) = (width(&part), reach(&part, rate));
parts.push((part, held, reach));
labels.push((source, detail));
}
}
}
if parts
.iter()
.all(|(part, ..)| matches!(part, Row::Point { .. }))
{
return point(form, rate, profile);
}
let source = match labels.iter().all(|(s, _)| *s == Source::Exact) {
true => Source::Exact,
false => Source::Measured,
};
let detail = Detail::Added {
parts: labels.into_iter().map(|(_, d)| d).collect(),
};
Ok((Row::Added(parts), (source, detail)))
}
fn of_term(form: &ClosedForm, rate: u32, profile: &Profile) -> Result<Labelled, CollapseError> {
let Ok(sum) = normalize_closed_form(form) else {
return of_written(form, rate, profile);
};
match of_sum(&sum, rate, profile) {
Err(nested @ CollapseError::NestedSeries { .. }) => Err(nested),
Err(_) => of_written(form, rate, profile),
held => held,
}
}
fn point(form: &ClosedForm, rate: u32, profile: &Profile) -> Result<Labelled, CollapseError> {
let written = ClosedForm {
body: truncate::written(&form.body, Audible::of(profile, rate))?,
..form.clone()
};
let width = point::width_of(&written.body, &point::NoRefs).max(1);
let windows = plan::summed(&written.body).map_or_else(Vec::new, |parts| {
plan::addend_windows(&parts, Grid::of(rate))
});
let row = Row::Point {
written: Box::new(written),
width,
windows,
};
let detail = Detail::Point {
rule: Rule::PointSampled,
alias_db: None,
};
Ok((row, (Source::Measured, detail)))
}
fn width(row: &Row) -> usize {
match row {
Row::Lines(lanes) => lanes.len(),
Row::Sweep { sum, .. } => sum.lanes.len(),
Row::Point { width, .. } => *width,
Row::Added(parts) => parts.iter().map(|(_, w, _)| *w).max().unwrap_or(1),
}
}
fn reach(row: &Row, rate: u32) -> Window {
let hull = |spans: &mut dyn Iterator<Item = Window>| {
spans
.filter(|(a, b)| a < b)
.reduce(|x, y| (x.0.min(y.0), x.1.max(y.1)))
.unwrap_or((0, 0))
};
match row {
Row::Lines(_) => active::OPEN,
Row::Sweep { spans, .. } if spans.iter().all(Option::is_some) => {
hull(&mut spans.iter().flatten().flatten().copied())
}
Row::Sweep { .. } => active::OPEN,
Row::Point {
written, windows, ..
} => match plan::summed(&written.body) {
Some(_) => hull(&mut windows.iter().copied()),
None => plan::live_window(&written.body, Grid::of(rate)),
},
Row::Added(parts) => hull(&mut parts.iter().map(|(.., reach)| *reach)),
}
}
fn values(row: &Row, c: usize, (from, to): Window, rate: u32) -> Result<Vec<f64>, CollapseError> {
let grid = Grid::of(rate);
let n = (to - from) as usize;
Ok(match row {
Row::Lines(lanes) => (from..to)
.map(|i| {
let mut held = 0.0;
if let Some(direct) = &lanes[c] {
held += direct.at(i as f64 / f64::from(rate));
}
held
})
.collect(),
Row::Sweep {
sum,
spans,
windows,
} => {
let mut out = vec![0.0; n];
for (a, b) in inside(spans[c].as_deref(), (from, to)) {
let at = (a - from) as usize..(b - from) as usize;
active::sweep(&sum.lanes[c], &windows[c], (a, b), grid, &mut out[at])?;
}
out
}
Row::Point {
written, windows, ..
} => reading::written(&written.body, windows, c, (from, to), grid)?,
Row::Added(parts) => {
let mut sum = vec![0.0; n];
for (part, held, reach) in parts {
if let (Some(lane), (a, b)) = (lane(*held, c), active::meet((from, to), *reach))
&& a < b
{
let at = (a - from) as usize;
for (out, v) in sum[at..].iter_mut().zip(values(part, lane, (a, b), rate)?) {
*out += v;
}
}
}
sum
}
})
}
fn inside(spans: Option<&[(i64, i64)]>, (from, to): Window) -> Vec<Window> {
match spans {
None => vec![(from, to)],
Some(spans) => spans
.iter()
.map(|(a, b)| (from.max(*a), to.min(*b)))
.filter(|(a, b)| a < b)
.collect(),
}
}
fn lane(width: usize, c: usize) -> Option<usize> {
let lane = if width == 1 { 0 } else { c };
(lane < width).then_some(lane)
}