use std::path::Path;
use sva_core::{
Answer, Asked, CliError, Diagnostic, Job, Output, Printed, Report, SAMPLE_LIMIT, Tier, cwd,
execute_over, query_data,
};
use sva_engine::{
Buffer, DEFAULT_FRAME_SECS, PSYCHOACOUSTIC_V1, Representation, answer_buffer, cache_log,
};
use crate::args::{AnalyzeArgs, RenderArgs};
use crate::destination::{Framing, refuse_inside, refuse_replacing, write, write_analysis};
use crate::directory::Directory;
use crate::store::wait;
use crate::wav::{SampleEncoding, read_channels};
use sva_core::success_envelope;
pub fn render(args: &RenderArgs) -> Result<String, CliError> {
let here = crate::composition::composition()?;
let (dir, target) = crate::composition::located(&here, &args.target)?;
for asked in &args.asked {
if let Some(dest) = asked.dest.as_deref() {
refuse_inside(&dir, dest)?;
refuse_replacing(dest, args.confirm)?;
}
}
let mut warnings = Vec::new();
let tier = crate::store::opened(&args.cache, &mut warnings)?;
let answered = answered(args, &dir, &target, tier, &mut warnings);
crate::store::persisted(tier, &mut warnings);
answered.map(|data| success_envelope(&data, &warnings))
}
fn answered(
args: &RenderArgs,
dir: &Path,
target: &str,
tier: &Tier<Directory>,
warnings: &mut Vec<Diagnostic>,
) -> Result<String, CliError> {
let source = sva_ast::Dir::at(dir);
let logs = std::env::var("SVA_LOG").is_ok_and(|level| level == "debug");
let job = Job {
until: args.until.as_deref(),
rate: args.rate,
bits: args.bits,
asked: &args.asked,
flop_budget: args.flop_budget,
..Job::over(&source, target)
};
let rendered = wait(execute_over(job, tier))?;
let rate = rendered.config.rate;
let stats = rendered.render.cache_stats.as_ref();
if let Some(why) = stats.and_then(|stats| stats.unstaged.as_deref()) {
let message = format!("this render stopped writing what it computed: {why}");
warnings.push(crate::store::warning("store.unstaged", message));
}
if let (true, Some(stats)) = (logs, stats) {
eprint!("{}", cache_log(stats, rate));
}
let bits = rendered.config.profile.precision_bits;
let interval = rendered
.render
.range
.map(|r| (r.start_secs(rate), r.end as f64 / f64::from(rate)));
let framing = Framing {
target: args.target.clone(),
rate,
bits: Some(bits),
interval,
profile: rendered.config.profile.name,
encoding: SampleEncoding::of(bits),
replace: args.confirm,
};
let mut taken = Vec::with_capacity(args.asked.len());
for asked in &args.asked {
let node = asked.node.as_deref().unwrap_or(&rendered.target);
let answer = rendered.answer(node, asked.representation)?;
taken.push(match asked.brief {
true => briefed(answer),
false => answer,
});
}
let (answers, written) = routed(&args.asked, taken, &framing)?;
Ok(query_data(&Report {
target: &args.target,
rate,
bits: Some(bits),
interval,
profile: rendered.config.profile.name,
label: rendered.label(),
written: &written,
answers: &answers,
analyses: &[],
limit: Some(SAMPLE_LIMIT),
}))
}
type Routed<'a> = (Vec<Printed>, Vec<(String, &'a Path)>);
fn routed<'a>(
asked: &'a [Asked],
taken: Vec<Answer>,
framing: &Framing,
) -> Result<Routed<'a>, CliError> {
let mut answers = Vec::new();
let mut written = Vec::new();
for (one, answer) in asked.iter().zip(taken) {
let printed = Printed {
name: one.name.clone(),
answer,
skim: one.skim,
};
match one.dest.as_deref() {
None => answers.push(printed),
Some(dest) => {
write(&printed, dest, framing)?;
written.push((one.name.clone(), dest));
}
}
}
Ok((answers, written))
}
fn briefed(answer: Answer) -> Answer {
let Output::Ledger(entries) = answer.value else {
return answer;
};
Answer {
value: Output::Ledger(
entries
.into_iter()
.filter(|e| e.clipped == Some(true))
.collect(),
),
..answer
}
}
pub fn analyze(args: &AnalyzeArgs) -> Result<String, CliError> {
let dir = cwd()?;
let composition = is_composition(&dir);
let destinations = args
.asked
.iter()
.map(|a| a.dest.as_deref())
.chain(args.analyses.iter().map(|a| a.dest.as_deref()));
for dest in destinations {
let Some(dest) = dest else {
continue;
};
if composition {
refuse_inside(&dir, dest)?;
}
refuse_replacing(dest, args.confirm)?;
}
let (planes, rate) = read_channels(&args.path)?;
let target = args.path.display().to_string();
let held = Buffer::of_planes(
rate,
planes
.iter()
.map(|p| p.iter().map(|v| f64::from(*v)).collect())
.collect(),
);
crate::args::check_frame(&args.asked, rate)?;
let buffer = held;
let interval = Some((0.0, buffer.len() as f64 / f64::from(rate)));
let framing = Framing {
target: target.clone(),
rate,
bits: None,
interval,
profile: PSYCHOACOUSTIC_V1.name,
encoding: SampleEncoding::Float,
replace: args.confirm,
};
let mut taken = Vec::with_capacity(args.asked.len());
for asked in &args.asked {
taken.push(
answer_buffer(
&target,
&buffer,
asked.representation,
PSYCHOACOUSTIC_V1.name,
)
.map_err(CliError::Engine)?,
);
}
let heard = analysed(args, &buffer)?;
let (answers, mut written) = routed(&args.asked, taken, &framing)?;
let mut analyses = Vec::new();
for (analysis, value) in args.analyses.iter().zip(heard) {
match analysis.dest.as_deref() {
None => analyses.push((analysis.name.clone(), value)),
Some(dest) => {
write_analysis(&analysis.name, &value, dest, &framing)?;
written.push((analysis.name.clone(), dest));
}
}
}
Ok(success_envelope(
&query_data(&Report {
target: &target,
rate,
bits: None,
interval,
profile: PSYCHOACOUSTIC_V1.name,
label: None,
written: &written,
answers: &answers,
analyses: &analyses,
limit: Some(SAMPLE_LIMIT),
}),
&[],
))
}
fn analysed(args: &AnalyzeArgs, buffer: &Buffer) -> Result<Vec<String>, CliError> {
if args.analyses.is_empty() {
return Ok(Vec::new());
}
let rate = f64::from(buffer.rate);
let mono: Vec<f32> = buffer.plane(0).iter().map(|s| *s as f32).collect();
let against = match args.analyses.iter().find_map(|a| a.against.as_deref()) {
Some(path) => {
let (planes, _) = read_channels(path)?;
Some(planes.first().cloned().unwrap_or_default())
}
None => None,
};
let name = args.path.display().to_string();
let read = |representation| {
answer_buffer(&name, buffer, representation, PSYCHOACOUSTIC_V1.name).map(|a| a.value)
};
let envelope = match read(Representation::Envelope { frame_secs: None }) {
Ok(Output::Envelope(frames)) => frames,
_ => Vec::new(),
};
let image = match read(Representation::Stereo {
frame_secs: DEFAULT_FRAME_SECS,
}) {
Ok(Output::Stereo(found)) => Some(*found),
_ => None,
};
let request = sva_analysis::Request {
samples: &mono,
sample_rate: rate,
start_secs: 0.0,
frame_secs: DEFAULT_FRAME_SECS,
tempo: None,
envelope: &envelope,
stereo: image.as_ref(),
against: against.as_deref(),
gated: false,
input_envelope: None,
};
let mut out = Vec::with_capacity(args.analyses.len());
for analysis in &args.analyses {
out.push(
sva_analysis::run(&analysis.name, &request)
.map_err(|sva_analysis::AnalysisError(why)| CliError::Usage(why))?,
);
}
Ok(out)
}
fn is_composition(dir: &Path) -> bool {
dir.join(sva_core::ROOT).is_file() || dir.join(sva_ast::VARIABLES).is_dir()
}