grok-build-upstream-mirror/crates/codegen/xai-ratatui-inline/benches/bench.rs
grokkybara[bot] c68e39f604 Publish harness and TUI open-source
initial sync from the monorepo
2026-07-16 06:46:02 +01:00

206 lines
6.4 KiB
Rust

use std::hint::black_box;
use colored_json::ToColoredJson;
use criterion::{BatchSize, Criterion, criterion_group, criterion_main};
use ratatui::backend::CrosstermBackend;
use ratatui::layout::Rect;
use ratatui::style::Style;
use ratatui::{TerminalOptions, Viewport};
use serde_json::json;
use xai_ratatui_inline::{LinkSpan, Terminal, split_into_line_segments};
fn generate_colored_json_content() -> String {
// Create a complex JSON structure with 50+ lines when pretty printed
let data = json!({
"users": (0..10).map(|i| json!({
"id": i,
"name": format!("User {}", i),
"email": format!("user{}@example.com", i),
"active": i % 2 == 0,
"roles": ["admin", "user", "moderator"],
"metadata": {
"created_at": "2024-01-01T00:00:00Z",
"updated_at": "2024-12-01T00:00:00Z",
"last_login": "2024-12-15T12:00:00Z",
"preferences": {
"theme": if i % 2 == 0 { "dark" } else { "light" },
"language": "en",
"notifications": true
}
}
})).collect::<Vec<_>>(),
"settings": {
"app_name": "Test Application",
"version": "1.2.3",
"features": {
"feature_a": true,
"feature_b": false,
"feature_c": true,
"feature_d": {
"enabled": true,
"config": {
"param1": 100,
"param2": "value",
"param3": [1, 2, 3, 4, 5]
}
}
}
},
"logs": (0..5).map(|i| json!({
"timestamp": format!("2024-12-01T{:02}:00:00Z", i),
"level": if i % 3 == 0 { "ERROR" } else if i % 2 == 0 { "WARN" } else { "INFO" },
"message": format!("Log entry number {}", i),
"context": {
"request_id": format!("req-{:04}", i * 100),
"user_id": i % 10,
"action": "process_request"
}
})).collect::<Vec<_>>()
});
// Convert to colored JSON string - this will have LOTS of ANSI color codes
serde_json::to_string_pretty(&data)
.unwrap()
.to_colored_json_auto()
.unwrap()
}
fn bench_split_into_line_segments(c: &mut Criterion) {
let colored_json = generate_colored_json_content();
// Also create a plain text version for comparison
let plain_text = colored_json
.chars()
.filter(|c| *c != '\x1b')
.collect::<String>()
.replace("[0m", "")
.replace("[31m", "")
.replace("[32m", "")
.replace("[33m", "")
.replace("[34m", "")
.replace("[35m", "")
.replace("[36m", "")
.replace("[37m", "")
.replace("[90m", "")
.replace("[1m", "")
.replace("[22m", "");
let mut group = c.benchmark_group("text_splitting");
// Benchmark colored JSON
group.bench_function("colored_json_80_cols", |b| {
b.iter(|| split_into_line_segments(black_box(&colored_json), black_box(80)));
});
// Benchmark plain text
group.bench_function("plain_text_80_cols", |b| {
b.iter(|| split_into_line_segments(black_box(&plain_text), black_box(80)));
});
group.finish();
}
/// Fill rows `[rows]` of the current frame with `ch`.
fn fill_rows(
t: &mut Terminal<CrosstermBackend<Vec<u8>>>,
ch: char,
rows: std::ops::Range<u16>,
width: u16,
) {
let line: String = ch.to_string().repeat(width as usize);
let mut frame = t.get_frame();
let buf = frame.buffer_mut();
for y in rows {
buf.set_string(0, y, &line, Style::default());
}
}
/// Build a terminal in a "ready to flush" state: a previous full-screen frame,
/// then a partial-redraw current frame (a few changed rows, like streaming
/// output) with `num_links` hyperlinks set. The returned terminal is cloned per
/// benchmark iteration so the measured call is just the flush.
fn dirty_terminal(
width: u16,
height: u16,
num_links: usize,
) -> Terminal<CrosstermBackend<Vec<u8>>> {
let area = Rect::new(0, 0, width, height);
let mut t = Terminal::with_options(
CrosstermBackend::new(Vec::<u8>::new()),
TerminalOptions {
viewport: Viewport::Fixed(area),
},
)
.unwrap();
// Previous frame: full screen of 'a'.
fill_rows(&mut t, 'a', 0..height, width);
t.set_frame_links(&[]);
let _ = t.flush_with_links();
t.swap_buffers();
// Current frame: mostly unchanged ('a'), a few changed rows ('b') — a
// realistic partial redraw. The diff still visits every cell, which is where
// the per-cell link resolution cost lives.
fill_rows(&mut t, 'a', 0..height, width);
fill_rows(&mut t, 'b', 0..height.min(3), width);
let spans: Vec<LinkSpan> = (0..num_links)
.map(|i| {
let row = (i as u16) % height;
LinkSpan {
row,
col_start: 0,
col_end: width.min(24),
url: "https://example.com/some/path".into(),
id: Some(i as u32),
}
})
.collect();
t.set_frame_links(&spans);
t
}
/// Benchmarks the OSC 8 hyperlink render path on a 256x100 viewport: the plain
/// `flush` baseline, `flush_with_links` with no links (early-exit fast path),
/// and `flush_with_links` with 50 links (the link-aware diff + emit).
fn bench_flush_with_links(c: &mut Criterion) {
const W: u16 = 256;
const H: u16 = 100;
let mut group = c.benchmark_group("hyperlink_flush");
group.bench_function("flush_baseline_no_links", |b| {
b.iter_batched(
|| dirty_terminal(W, H, 0),
|mut t| black_box(t.flush()),
BatchSize::SmallInput,
);
});
group.bench_function("flush_with_links_no_links", |b| {
b.iter_batched(
|| dirty_terminal(W, H, 0),
|mut t| black_box(t.flush_with_links()),
BatchSize::SmallInput,
);
});
group.bench_function("flush_with_links_50_links", |b| {
b.iter_batched(
|| dirty_terminal(W, H, 50),
|mut t| black_box(t.flush_with_links()),
BatchSize::SmallInput,
);
});
group.finish();
}
criterion_group!(
benches,
bench_split_into_line_segments,
bench_flush_with_links
);
criterion_main!(benches);