acdream/tests/AcDream.App.Tests/FrameProfilerReportTests.cs
Erik 3ee8ec537a perf(diag): complete trustworthy Slice A capture tooling
Correct whole-frame GPU timestamps so they bracket only the accepted render transaction and associate delayed query results with the owning CPU frame. Add route-wide frame-history summaries, fixed-camera screenshot comparison, process counters, contention traces, a pinned Arwic workload, and credential-safe launch disclosure.

The reference hardware/display contract now keeps local and RDP populations separate and defines the screenshot and re-baseline rules needed by later prepared-content gates.

Co-Authored-By: Codex <noreply@openai.com>
2026-07-24 12:46:51 +02:00

94 lines
3.5 KiB
C#

using System.Globalization;
using AcDream.App.Diagnostics;
using Xunit;
namespace AcDream.App.Tests;
public class FrameProfilerReportTests
{
[Fact]
public void WriteHistoryCsv_WritesHeaderThenOneInvariantRowPerRecord()
{
// 2026-07-24 measurement-tooling review: ACDREAM_FRAME_HISTORY export.
// FrameBoundary itself needs a live GL context (GpuFrameTimer), so —
// matching FormatReport's precedent above — the CSV writer is a pure
// static method tested directly rather than driven through FrameBoundary.
var records = new[]
{
new FrameHistoryRecord(0, 12.5, 1000, 500, 2048, 100, 200, 30, 40),
new FrameHistoryRecord(1, 18.75, 1200, -1, -256, 110, 210, 31, 41),
};
var buffer = new StringWriter(CultureInfo.InvariantCulture);
FrameProfiler.WriteHistoryCsv(
records,
buffer,
new DateTime(2026, 7, 24, 10, 0, 0, DateTimeKind.Utc));
string[] lines = buffer.ToString().Split(
Environment.NewLine, StringSplitOptions.RemoveEmptyEntries);
Assert.Equal(3, lines.Length);
Assert.Equal(
"frame,timestamp_ms,timestamp_utc,cpu_us,gpu_us,alloc_bytes,update_us,upload_us,imgui_us,pacing_us",
lines[0]);
Assert.Equal(
"0,12.500,2026-07-24T10:00:00.0125000Z,1000,500,2048,100,200,30,40",
lines[1]);
// gpu_us=-1 marks "no GPU sample available"; alloc_bytes can go
// negative (documented alloc-channel behavior, matches FrameStatsBuffer.Max).
Assert.Equal(
"1,18.750,2026-07-24T10:00:00.0187500Z,1200,-1,-256,110,210,31,41",
lines[2]);
}
[Fact]
public void FormatReport_IsInvariantAndComplete()
{
var cpu = new FrameStatsBuffer(16);
var gpu = new FrameStatsBuffer(16);
var alloc = new FrameStatsBuffer(16);
var stages = new[]
{
new FrameStatsBuffer(16),
new FrameStatsBuffer(16),
new FrameStatsBuffer(16),
new FrameStatsBuffer(16),
};
for (long i = 1; i <= 10; i++)
{
cpu.Push(i * 1000); // 1..10 ms in µs
gpu.Push(i * 100);
alloc.Push(i * 1024); // bytes
stages[0].Push(i * 200);
stages[1].Push(i * 50);
stages[2].Push(i * 10);
stages[3].Push(i * 300);
}
string line = FrameProfiler.FormatReport(
frameCount: 10, cpu: cpu, gpu: gpu, gpuActive: true,
alloc: alloc, gc0: 3, gc1: 1, gc2: 0, stages: stages);
Assert.StartsWith("[frame-prof]", line);
Assert.Contains("n=10", line);
Assert.Contains("cpu_ms p50=5.0 p95=10.0 p99=10.0 max=10.0", line);
Assert.Contains("gpu_ms p50=0.5", line);
Assert.Contains("alloc_kb p50=5.0 max=10.0", line);
Assert.Contains("gc=3/1/0", line);
Assert.Contains("upd p50=1.0", line); // stage 0: 200µs·5 = 1.0 ms
Assert.Contains("pace p50=1.5", line);
Assert.DoesNotContain(",0", line.Replace("gc=3/1/0", "")); // no comma decimals (invariant culture)
}
[Fact]
public void FormatReport_GpuInactive_SaysWhy()
{
var empty = new FrameStatsBuffer(4);
string line = FrameProfiler.FormatReport(
frameCount: 0, cpu: empty, gpu: empty, gpuActive: false,
alloc: empty, gc0: 0, gc1: 0, gc2: 0,
stages: new[] { empty, empty, empty });
Assert.Contains("gpu=off(wbdiag)", line);
}
}