benchmark: use compressable data to get more realistic result
And add a benchmatrk to test chunk verify speed (decompress+sha256).
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@ -21,6 +21,8 @@ use proxmox_backup::backup::{
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load_and_decrypt_key,
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CryptConfig,
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KeyDerivationConfig,
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DataBlob,
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DataChunkBuilder,
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};
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use proxmox_backup::client::*;
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@ -60,6 +62,9 @@ struct Speed {
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"aes256_gcm": {
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type: Speed,
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},
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"verify": {
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type: Speed,
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},
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},
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)]
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#[derive(Copy, Clone, Serialize)]
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@ -75,9 +80,10 @@ struct BenchmarkResult {
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decompress: Speed,
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/// AES256 GCM encryption speed
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aes256_gcm: Speed,
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/// Verify speed
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verify: Speed,
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}
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static BENCHMARK_RESULT_2020_TOP: BenchmarkResult = BenchmarkResult {
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tls: Speed {
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speed: None,
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@ -85,19 +91,23 @@ static BENCHMARK_RESULT_2020_TOP: BenchmarkResult = BenchmarkResult {
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},
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sha256: Speed {
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speed: None,
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top: 1_000_000.0 * 2120.0, // AMD Ryzen 7 2700X
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top: 1_000_000.0 * 2022.0, // AMD Ryzen 7 2700X
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},
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compress: Speed {
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speed: None,
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top: 1_000_000.0 * 2158.0, // AMD Ryzen 7 2700X
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top: 1_000_000.0 * 752.0, // AMD Ryzen 7 2700X
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},
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decompress: Speed {
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speed: None,
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top: 1_000_000.0 * 8062.0, // AMD Ryzen 7 2700X
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top: 1_000_000.0 * 1198.0, // AMD Ryzen 7 2700X
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},
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aes256_gcm: Speed {
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speed: None,
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top: 1_000_000.0 * 3803.0, // AMD Ryzen 7 2700X
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top: 1_000_000.0 * 3645.0, // AMD Ryzen 7 2700X
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},
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verify: Speed {
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speed: None,
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top: 1_000_000.0 * 758.0, // AMD Ryzen 7 2700X
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},
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};
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@ -194,7 +204,10 @@ fn render_result(
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.column(ColumnConfig::new("decompress")
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.header("ZStd level 1 decompression speed")
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.right_align(false).renderer(render_speed))
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.column(ColumnConfig::new("aes256_gcm")
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.column(ColumnConfig::new("verify")
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.header("Chunk verification speed")
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.right_align(false).renderer(render_speed))
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.column(ColumnConfig::new("aes256_gcm")
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.header("AES256 GCM encryption speed")
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.right_align(false).renderer(render_speed));
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@ -257,7 +270,17 @@ fn test_crypt_speed(
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let crypt_config = CryptConfig::new(testkey)?;
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let random_data = proxmox::sys::linux::random_data(1024*1024)?;
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//let random_data = proxmox::sys::linux::random_data(1024*1024)?;
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let mut random_data = vec![];
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// generate pseudo random byte sequence
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for i in 0..256*1024 {
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for j in 0..4 {
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let byte = ((i >> (j<<3))&0xff) as u8;
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random_data.push(byte);
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}
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}
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assert_eq!(random_data.len(), 1024*1024);
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let start_time = std::time::Instant::now();
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@ -322,5 +345,23 @@ fn test_crypt_speed(
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eprintln!("AES256/GCM speed: {:.2} MB/s", speed/1_000_000_.0);
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let start_time = std::time::Instant::now();
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let (chunk, digest) = DataChunkBuilder::new(&random_data)
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.compress(true)
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.build()?;
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let mut bytes = 0;
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loop {
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chunk.verify_unencrypted(random_data.len(), &digest)?;
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bytes += random_data.len();
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if start_time.elapsed().as_micros() > 1_000_000 { break; }
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}
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let speed = (bytes as f64)/start_time.elapsed().as_secs_f64();
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benchmark_result.verify.speed = Some(speed);
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eprintln!("Verify speed: {:.2} MB/s", speed/1_000_000_.0);
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Ok(())
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}
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