performance-metrics: Add QCOW2 batch write micro benchmark

Add micro_bench_qcow_batch_write which builds a batch of num_ops
write requests and submits them all at once through
submit_batch_requests. Writes in QcowAsync are synchronous (COW
path), so this measures whether batching reduces per-request
overhead compared to individual write_vectored calls.

Signed-off-by: Anatol Belski <anbelski@linux.microsoft.com>
This commit is contained in:
Anatol Belski
2026-03-27 13:14:37 +01:00
committed by Rob Bradford
parent 8052c5a66b
commit 1ab877882d
2 changed files with 67 additions and 1 deletions

View File

@@ -378,7 +378,7 @@ mod adjuster {
}
}
const TEST_LIST: [PerformanceTest; 98] = [
const TEST_LIST: [PerformanceTest; 100] = [
PerformanceTest {
name: "boot_time_ms",
func_ptr: performance_boot_time,
@@ -1685,6 +1685,30 @@ const TEST_LIST: [PerformanceTest; 98] = [
},
unit_adjuster: adjuster::s_to_us,
},
PerformanceTest {
name: "micro_block_qcow_batch_write_128_us",
func_ptr: micro_bench_block::micro_bench_qcow_batch_write,
control: PerformanceTestControl {
test_timeout: 10,
test_iterations: 20,
warmup_iterations: 5,
num_ops: Some(128),
..PerformanceTestControl::default()
},
unit_adjuster: adjuster::s_to_us,
},
PerformanceTest {
name: "micro_block_qcow_batch_write_256_us",
func_ptr: micro_bench_block::micro_bench_qcow_batch_write,
control: PerformanceTestControl {
test_timeout: 10,
test_iterations: 20,
warmup_iterations: 5,
num_ops: Some(256),
..PerformanceTestControl::default()
},
unit_adjuster: adjuster::s_to_us,
},
];
fn run_test_with_timeout(

View File

@@ -549,3 +549,45 @@ pub fn micro_bench_qcow_async_l2_cache_miss(control: &PerformanceTestControl) ->
drain_async_completions(async_io.as_mut(), num_ops);
start.elapsed().as_secs_f64()
}
/// Measure QCOW2 batch write submission via io_uring.
///
/// Builds a batch of num_ops write requests and submits them all at once
/// through submit_batch_requests. Writes in QcowAsync are synchronous
/// (COW path), so this measures whether batching reduces per-request
/// overhead compared to individual write_vectored calls.
///
/// Returns the total wall clock time in seconds.
pub fn micro_bench_qcow_batch_write(control: &PerformanceTestControl) -> f64 {
let num_ops = control.num_ops.expect("num_ops required") as usize;
let (_tmp, disk) = util::empty_qcow_async_tempfile(num_ops);
let mut async_io = disk
.new_async_io(num_ops as u32)
.expect("new_async_io failed");
let buf = vec![0xA5u8; num_ops * QCOW_CLUSTER_SIZE as usize];
let batch: Vec<BatchRequest> = (0..num_ops)
.map(|i| {
let slice = &buf[i * QCOW_CLUSTER_SIZE as usize..(i + 1) * QCOW_CLUSTER_SIZE as usize];
BatchRequest {
offset: (i as u64 * QCOW_CLUSTER_SIZE) as libc::off_t,
iovecs: vec![libc::iovec {
iov_base: slice.as_ptr() as *mut libc::c_void,
iov_len: QCOW_CLUSTER_SIZE as usize,
}]
.into(),
user_data: i as u64,
request_type: RequestType::Out,
}
})
.collect();
let start = Instant::now();
async_io
.submit_batch_requests(&batch)
.expect("submit_batch_requests failed");
drain_async_completions(async_io.as_mut(), num_ops);
start.elapsed().as_secs_f64()
}