9dfa06ffee
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Signed-off-by: cls_宁波本机 <908705107@qq.com>
170 lines
6.0 KiB
Rust
170 lines
6.0 KiB
Rust
//! Mutation-sensitive byte fixtures for the two parser fences.
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//!
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//! These use the shipping `Terminal::feed` path. Arms that could be masked by
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//! the other fence disable it explicitly; the switches are runtime values, not
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//! cargo features, so the default test binary always contains every arm.
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use alacritty_terminal::grid::Dimensions;
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use alacritty_terminal::index::{Column, Line, Point};
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use buzz_terminal::fences::{Fences, OSC_BUDGET, SYNC_CAP};
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use buzz_terminal::{Size, Terminal};
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const CHUNK: usize = 8192;
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const G1_BYTES: usize = 2 << 20;
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const G2_FRAMES: usize = 40;
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const G2_FRAME_BYTES: usize = 1_900 * 1024;
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fn size() -> Size {
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Size {
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columns: 120,
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screen_lines: 40,
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scrollback: 2000,
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}
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}
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fn feed_synchronized(term: &mut Terminal, payload: &[u8], close: bool) {
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term.feed_fully(b"\x1b[?2026h");
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for chunk in payload.chunks(CHUNK) {
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term.feed_fully(chunk);
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}
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if close {
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term.feed_fully(b"\x1b[?2026l");
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}
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}
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fn repeated(pattern: &[u8], bytes: usize) -> Vec<u8> {
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pattern.iter().copied().cycle().take(bytes).collect()
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}
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fn count_markers(term: &Terminal, markers: usize) -> usize {
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let grid = term.term().grid();
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let mut text = String::new();
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let top = -(grid.history_size() as i32);
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for line in top..term.size().screen_lines as i32 {
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for column in 0..term.size().columns {
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text.push(grid[Point::new(Line(line), Column(column))].c);
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}
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text.push('\n');
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}
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(0..markers)
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.filter(|m| text.contains(&format!("MK{m:03}")))
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.count()
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}
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fn legitimate_frame(markers: usize, bytes: usize) -> Vec<u8> {
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let mut payload = Vec::with_capacity(bytes);
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for marker in 0..markers {
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payload.extend_from_slice(format!("MK{marker:03}\r\n").as_bytes());
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let target = bytes * (marker + 1) / markers;
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while payload.len() < target {
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payload.extend_from_slice(b"\x1b[1;32mx\x1b[0m");
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}
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payload.extend_from_slice(b"\r\n");
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}
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payload.truncate(bytes);
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payload
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}
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/// G1: every hostile content shape must remain below the deterministic byte
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/// bound, and the same shape with F1 deleted must cross it. Keeping both arms
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/// adjacent prevents a simplified fixture from becoming vacuously cheap.
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#[test]
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fn g1_sync_abort_bounds_all_hostile_shapes() {
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let shapes: [(&str, &[u8]); 5] = [
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("sgr", b"\x1b[1;32mbuzz\x1b[0m\r\n"),
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("ascii", b"buzz substrate output\r\n"),
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("emoji", "🐝🚀✨\r\n".as_bytes()),
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("zalgo", "z\u{0301}\u{0302}\u{0303}\u{0304}\r\n".as_bytes()),
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("truecolor", b"\x1b[38;2;255;0;128mRGB\x1b[0m\r\n"),
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];
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for (name, pattern) in shapes {
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let payload = repeated(pattern, G1_BYTES);
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let (mut fenced, _) = Terminal::new(size(), Fences::ALL);
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feed_synchronized(&mut fenced, &payload, false);
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let fenced_stats = fenced.stats();
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assert!(fenced_stats.sync_aborts > 0, "{name}: F1 never fired");
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assert!(
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fenced_stats.max_release <= 2 * SYNC_CAP,
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"{name}: fenced release {} exceeds 128 KiB",
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fenced_stats.max_release
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);
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let (mut unfenced, _) = Terminal::new(size(), Fences::NONE);
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feed_synchronized(&mut unfenced, &payload, false);
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let unfenced_stats = unfenced.stats();
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assert_eq!(unfenced_stats.sync_aborts, 0, "{name}: control enabled F1");
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assert!(
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unfenced_stats.max_release > 2 * SYNC_CAP,
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"{name}: unfenced release {} stayed inside the gate; fixture is vacuous",
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unfenced_stats.max_release
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);
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}
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}
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/// G2 arm 1: deletion oracle. F1 remains enabled because this arm proves F2
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/// deletion under the combined production configuration.
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#[test]
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fn g2_hostile_unsynchronized_osc_resets_parser() {
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let (mut term, _) = Terminal::new(size(), Fences::ALL);
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term.feed_fully(b"\x1b]0;");
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for chunk in repeated(b"A", OSC_BUDGET * 4).chunks(CHUNK) {
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term.feed_fully(chunk);
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}
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assert!(term.stats().osc_resets > 0, "F2 never rebuilt the parser");
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}
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/// G2 arm 2: every synchronized release is attributed. F1 is disabled so its
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/// small abort releases cannot mask an implementation that omits ESU flushes.
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#[test]
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fn g2_each_synchronized_flush_is_attributed() {
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let payload = repeated(b"A", G2_FRAME_BYTES);
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let (mut term, _) = Terminal::new(size(), Fences::OSC_ONLY);
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for _ in 0..G2_FRAMES {
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feed_synchronized(&mut term, &payload, true);
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}
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let stats = term.stats();
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assert_eq!(stats.sync_aborts, 0, "F1 must be disabled in this arm");
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assert_eq!(
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stats.osc_resets, G2_FRAMES as u64,
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"expected one reset for each atomic synchronized release"
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);
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assert!(
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stats.charged_bytes >= (G2_FRAMES * G2_FRAME_BYTES) as u64,
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"flush bytes were omitted from attribution: {} charged",
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stats.charged_bytes
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);
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}
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/// G2 arm 3: parser-visible attribution preserves a legitimate 1.5 MiB frame.
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/// F1 is disabled; raw-input counting would reset mid-frame and lose markers.
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#[test]
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fn g2_legitimate_large_frame_preserves_all_markers() {
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let markers = 200;
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let payload = legitimate_frame(markers, 1_500 * 1024);
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let (mut term, _) = Terminal::new(size(), Fences::OSC_ONLY);
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feed_synchronized(&mut term, &payload, true);
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assert_eq!(
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count_markers(&term, markers),
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markers,
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"legitimate frame lost markers"
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);
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}
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/// Legitimacy control: neither fence alone nor the production combination may
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/// corrupt a normal synchronized frame.
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#[test]
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fn g2_legitimate_frame_survives_each_fence_configuration() {
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let markers = 200;
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let payload = legitimate_frame(markers, 128 * 1024);
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for fences in [Fences::SYNC_ONLY, Fences::OSC_ONLY, Fences::ALL] {
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let (mut term, _) = Terminal::new(size(), fences);
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feed_synchronized(&mut term, &payload, true);
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assert_eq!(
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count_markers(&term, markers),
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markers,
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"{fences:?} lost markers"
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);
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}
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}
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