aba89c4f5d
Every change is benchmark-verified (harness + before/after numbers in benches/, measured on this branch; reproduction commands in each doc): DAV / sync-client hot paths - PROPFIND dead-properties: one = ANY($1) query per 500-child page instead of one sequential query per child, and indexable `=` predicates instead of IS NOT DISTINCT FROM (seq scans). 2,000-child folder: 1.07-4.54 s of DB chatter -> 4-6 ms (258-773x). Applied to native + NC PROPFIND and both NC REPORT handlers. [benches/DEAD-PROPS.md] - Folder paging: keyset cursor (name > $last) + new partial index (folder_id, name) replaces LIMIT/OFFSET full-folder rescan per page. Full 20k-file walk: 1266 ms -> 77 ms (16.5x). New migration 20260917000000. [benches/PROPFIND-PAGING.md] - NC chroot / default-drive resolution: moka caches (30 s TTL, explicit invalidation on drive mutations) for find_default_for_user and the markerless chroot FolderDto. 2 uncached queries + 2 pool checkouts per NC/WebDAV/WOPI request -> sub-us moka hit (p50 0.7-3.6 ms -> ~1 us). [benches/CHROOT-CACHE.md] - Quota: PROPFINDs whose prop list never names a quota prop skip the 2-query resolution entirely (wants_quota()); the remaining lookups read 2 columns instead of the full auth.users row with its <=512 KiB avatar (11-16x, p50 3.4 ms -> 0.29 ms). Same narrow read now gates every upload quota check. [benches/QUOTA-PATH.md] CPU on the request path - ZIP exports (folder download, share ZIP, batch download): entries whose MIME says already-compressed (JPEG/MP4/zip/pdf/...) are Stored instead of Deflate - deflate ran inline on the tokio writer task at ~41 MB/s for ~0% size gain. Mixed media corpus: 4.31x wall and CPU, archive size unchanged. Shared predicate in common::mime_detect. [benches/ZIP-MEDIA.md] - Compression layers: tower-http's default maps to Brotli QUALITY 11 (verified in brotli-8.0.2 source and empirically: 90 ms per 64 KiB JSON response, 1.3 s per 700 KiB bundle). Both layers pinned to Precise(4): 99x less CPU for ~15% more bytes. SPA assets are now precompressed at build time (scripts/precompress.mjs, 77% smaller) and served via ServeDir::precompressed_br/gzip: 2016x less per-request work, and clients get the better q11 bytes. [benches/STATIC-PRECOMPRESSED.md] Batched / cached backend paths [benches/NPLUS1-AND-CACHES.md] - Content-search ReBAC re-verification: new AuthorizationEngine::check_files_read_batch (default = old loop; PgAclEngine override batches drive resolution + reuses role cache). 200 sequential point SELECTs per search -> 1-2 queries. - Batch-ZIP subtree downloads: drop per-file re-authz + per-file Recent recording (2 writes/file) for subtree entries already authorized at the root - mirrors the native folder-download path. ~6,000 statements removed from a 2,000-file archive. - CDC chunk manifests: immutable by content address, now moka-cached (weight-bounded 32 MiB, 60 s TTL, positive-only, invalidated on delete) - removes one manifest query (p50 0.44-4.4 ms) from every stream, range and full blob read. - People tab: grouped COUNT + batched cover lookup instead of dragging every face row with its 2 KiB embedding (10k faces: 30.4 ms & 21 MB -> 3.8 ms & 1.3 KB, 8.1x); merge() is one set-based UPDATE. [benches/PEOPLE-LIST.md] - Photos timeline cursor: raw timestamptz comparison instead of EXTRACT(EPOCH ...) wrapper + IS NULL OR disjunction - cursor is an index boundary again, deep scroll stops re-scanning skipped rows. - Public share landing: one atomic UPDATE ... access_count + 1 (was SELECT + full-row write-back: racy, lost updates, clobbered concurrent owner edits) - 3 round-trips -> 2 per visit. - move_to_trash: dead full-entity SELECT feeding a documented no-op removed from both branches; dead fields dropped from TrashService. - NFC normalization: is_nfc_quick fast path skips the decompose/recompose state machine for the ~100% already-NFC case (every row loaded from PG). Frontend - Large folders paint after page one (~200 items) via fetchFolderListing's new onPage hook instead of waiting for every sequential page. - Tested-and-reverted (kept for the record): cached Intl.Collator for name sorts - vitest showed it 2x SLOWER than V8's argument-less localeCompare fast path (5.6 ms vs 12.1 ms / 5k names). Sort order untouched. New bench harnesses under examples/ (bench feature): zip_media, dead_props, chroot_cache, quota_path, people_list, propfind_paging, static_precompress. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01CBK1RdtzyP6759Muqe1K1w
171 lines
6.5 KiB
Rust
171 lines
6.5 KiB
Rust
//! Static-asset compression benchmark — on-the-fly Brotli per request vs
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//! serving a precompressed sibling.
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//!
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//! The SPA router compressed every compressible static response on the fly
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//! (tower-http `CompressionLayer`, backed by `async-compression`'s Brotli at
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//! `Level::Default`) — the same immutable `/_app/immutable` bundle re-encoded
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//! on EVERY request. The change teaches `ServeDir` to serve build-time
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//! `.br`/`.gz` siblings (`precompressed_br()/precompressed_gzip()` +
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//! `frontend/scripts/precompress.mjs`), so a request costs a file read.
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//!
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//! This isolates exactly that per-request delta on a JS-bundle-like payload:
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//! BEFORE — Brotli-encode the asset with async-compression Level::Default
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//! (what the layer does per request)
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//! AFTER — read the precompressed sibling from disk (what ServeDir does)
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//!
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//! Run (no Postgres needed):
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//! cargo run --release --features bench --example bench_static_precompress
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//! Tunables: BENCH_ASSET_KB (700), BENCH_REPS (30)
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use std::env;
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use std::io::Write as _;
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use std::time::Instant;
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use tokio::io::AsyncReadExt;
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fn env_or<T: std::str::FromStr>(key: &str, default: T) -> T {
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env::var(key)
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.ok()
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.and_then(|v| v.parse().ok())
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.unwrap_or(default)
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}
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/// JS-like corpus: repetitive identifiers + literals, compresses like a real
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/// minified bundle (roughly 3-5×).
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fn synth_js(len: usize, seed: &mut u64) -> Vec<u8> {
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const FRAGS: &[&str] = &[
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"function(e,t,n){var r=this;",
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"return Object.assign({},",
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"const a=document.querySelector(",
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"export default{data(){return{",
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"await fetch(url,{method:'POST',headers:",
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".map(function(x){return x.id});",
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"if(void 0!==e&&null!==t){",
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"console.error('unhandled',err);",
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];
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let mut out = Vec::with_capacity(len);
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while out.len() < len {
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*seed ^= *seed << 13;
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*seed ^= *seed >> 7;
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*seed ^= *seed << 17;
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out.extend_from_slice(FRAGS[(*seed as usize) % FRAGS.len()].as_bytes());
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// sprinkle some varying identifiers so it's not pathological
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let _ = write!(out, "v{}", *seed % 1000);
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}
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out.truncate(len);
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out
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}
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fn median(mut xs: Vec<f64>) -> f64 {
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xs.sort_by(|a, b| a.partial_cmp(b).unwrap());
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xs[xs.len() / 2]
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}
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#[tokio::main(flavor = "multi_thread")]
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async fn main() {
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let asset_kb: usize = env_or("BENCH_ASSET_KB", 700);
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let reps: usize = env_or("BENCH_REPS", 30);
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let mut seed = 0xC0FFEEu64;
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let asset = synth_js(asset_kb * 1024, &mut seed);
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// Precompress once (build-time cost, paid once per deploy).
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let dir = tempfile::tempdir().expect("tempdir");
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let br_path = dir.path().join("bundle.js.br");
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let t = Instant::now();
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let precompressed = {
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use async_compression::tokio::bufread::BrotliEncoder;
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let mut enc = BrotliEncoder::new(std::io::Cursor::new(asset.clone()));
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let mut out = Vec::new();
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enc.read_to_end(&mut out).await.expect("precompress");
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out
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};
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let build_ms = t.elapsed().as_secs_f64() * 1000.0;
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std::fs::write(&br_path, &precompressed).expect("write .br");
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println!(
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"asset: {} KiB JS-like → {} KiB brotli ({}% smaller); one-time build cost {:.1} ms\n",
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asset.len() / 1024,
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precompressed.len() / 1024,
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100 - precompressed.len() * 100 / asset.len(),
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build_ms
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);
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// BEFORE: per-request Brotli at the layer's default level.
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let mut enc_times = Vec::with_capacity(reps);
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for _ in 0..reps {
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let t = Instant::now();
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use async_compression::tokio::bufread::BrotliEncoder;
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let mut enc = BrotliEncoder::new(std::io::Cursor::new(asset.clone()));
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let mut out = Vec::new();
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enc.read_to_end(&mut out).await.expect("encode");
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std::hint::black_box(&out);
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enc_times.push(t.elapsed().as_secs_f64() * 1000.0);
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}
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// AFTER: per-request read of the precompressed sibling.
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let mut read_times = Vec::with_capacity(reps);
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for _ in 0..reps {
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let t = Instant::now();
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let mut f = tokio::fs::File::open(&br_path).await.expect("open");
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let mut out = Vec::new();
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f.read_to_end(&mut out).await.expect("read");
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std::hint::black_box(&out);
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read_times.push(t.elapsed().as_secs_f64() * 1000.0);
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}
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// ── Dynamic-response level sweep ─────────────────────────────────────
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// The global API CompressionLayer (main.rs) compresses JSON responses
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// per request. async-compression's Level::Default for Brotli is
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// QUALITY 11 (brotli-8.0.2 encode.rs:323 via compression-codecs) — a
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// deploy-grade setting on a per-request path. Sweep levels on a
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// JSON-like 64 KiB body to pick the runtime quality.
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let json_body = synth_js(64 * 1024, &mut seed); // JSON compresses like JS
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println!("\n# per-request Brotli level on a 64 KiB JSON-like API response");
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println!("{:<22} {:>10} {:>12}", "level", "ms/resp", "out KiB");
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for (label, level) in [
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("Default (= q11!)", async_compression::Level::Default),
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("Precise(4)", async_compression::Level::Precise(4)),
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("Fastest", async_compression::Level::Fastest),
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] {
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let mut times = Vec::with_capacity(reps);
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let mut out_len = 0;
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for _ in 0..reps {
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let t = Instant::now();
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use async_compression::tokio::bufread::BrotliEncoder;
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let mut enc =
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BrotliEncoder::with_quality(std::io::Cursor::new(json_body.clone()), level);
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let mut out = Vec::new();
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enc.read_to_end(&mut out).await.expect("encode");
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out_len = out.len();
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std::hint::black_box(&out);
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times.push(t.elapsed().as_secs_f64() * 1000.0);
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}
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println!(
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"{:<22} {:>10.2} {:>12.1}",
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label,
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median(times),
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out_len as f64 / 1024.0
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);
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}
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let enc = median(enc_times);
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let read = median(read_times);
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println!(
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"{:<34} {:>10} {:>9}",
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"mode (per request)", "ms", "vs BEFORE"
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);
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println!(
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"{:<34} {:>10.2} {:>9}",
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"BEFORE on-the-fly Brotli", enc, "1.0x"
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);
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println!(
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"{:<34} {:>10.3} {:>8.0}x",
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"AFTER precompressed read",
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read,
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enc / read
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);
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println!("\n(BEFORE also holds ~1 tokio task busy for the duration on every request;");
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println!(" AFTER additionally ships the deploy-time q11 encoding, usually smaller than");
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println!(" the runtime default level.)");
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}
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