using Microsoft.Extensions.Options;
namespace ZB.MOM.WW.ScadaBridge.SiteRuntime.Tests;
///
/// values size the staggered Instance-Actor
/// startup batches, the dedicated script-execution thread scheduler, and the
/// site-wide stream buffer. A zero/negative count crashes actor construction with
/// an opaque ; these tests assert the
/// rejects a bad
/// ScadaBridge:SiteRuntime section with a clear, key-naming message.
///
public class SiteRuntimeOptionsValidatorTests
{
private static ValidateOptionsResult Validate(SiteRuntimeOptions options) =>
new SiteRuntimeOptionsValidator().Validate(Options.DefaultName, options);
[Fact]
public void DefaultOptions_AreValid()
{
var result = Validate(new SiteRuntimeOptions());
Assert.True(result.Succeeded, result.FailureMessage);
}
[Fact]
public void ZeroStartupBatchSize_IsRejected()
{
var result = Validate(new SiteRuntimeOptions { StartupBatchSize = 0 });
Assert.True(result.Failed);
Assert.Contains("StartupBatchSize", result.FailureMessage);
}
[Fact]
public void ZeroScriptExecutionThreadCount_IsRejected()
{
var result = Validate(new SiteRuntimeOptions { ScriptExecutionThreadCount = 0 });
Assert.True(result.Failed);
Assert.Contains("ScriptExecutionThreadCount", result.FailureMessage);
}
[Fact]
public void ZeroTagSubscribeRetryIntervalMs_IsRejected()
{
var result = Validate(new SiteRuntimeOptions { TagSubscribeRetryIntervalMs = 0 });
Assert.True(result.Failed);
Assert.Contains("TagSubscribeRetryIntervalMs", result.FailureMessage);
}
[Fact]
public void NegativeStuckScriptGraceMs_IsRejected()
{
var result = Validate(new SiteRuntimeOptions { StuckScriptGraceMs = -1 });
Assert.True(result.Failed);
Assert.Contains("StuckScriptGraceMs", result.FailureMessage);
}
[Fact]
public void ZeroStreamBufferSize_IsRejected()
{
var result = Validate(new SiteRuntimeOptions { StreamBufferSize = 0 });
Assert.True(result.Failed);
Assert.Contains("StreamBufferSize", result.FailureMessage);
}
[Fact]
public void NegativeStartupBatchDelayMs_IsRejected()
{
var result = Validate(new SiteRuntimeOptions { StartupBatchDelayMs = -1 });
Assert.True(result.Failed);
Assert.Contains("StartupBatchDelayMs", result.FailureMessage);
}
[Fact]
public void ZeroAlarmPublishQueueCapacity_IsRejected()
{
var result = Validate(new SiteRuntimeOptions { AlarmPublishQueueCapacity = 0 });
Assert.True(result.Failed);
Assert.Contains("AlarmPublishQueueCapacity", result.FailureMessage);
}
// ── WP3.1 options ──────────────────────────────────────────────────────────────
///
/// The ceiling is the upper bound of the instance-scaled pool; below the floor it would
/// silently shrink the configured pool instead of growing it.
///
[Fact]
public void ScriptExecutionMaxThreadCountBelowThreadCount_IsRejected()
{
var result = Validate(new SiteRuntimeOptions
{
ScriptExecutionThreadCount = 8,
ScriptExecutionMaxThreadCount = 4
});
Assert.True(result.Failed);
Assert.Contains("ScriptExecutionMaxThreadCount", result.FailureMessage);
}
[Fact]
public void EqualScriptExecutionThreadCountAndMax_IsAccepted()
{
var result = Validate(new SiteRuntimeOptions
{
ScriptExecutionThreadCount = 8,
ScriptExecutionMaxThreadCount = 8
});
Assert.True(result.Succeeded, result.FailureMessage);
}
/// A zero gate would park every Expression trigger on the node forever.
[Fact]
public void ZeroTriggerEvalMaxConcurrency_IsRejected()
{
var result = Validate(new SiteRuntimeOptions { TriggerEvalMaxConcurrency = 0 });
Assert.True(result.Failed);
Assert.Contains("TriggerEvalMaxConcurrency", result.FailureMessage);
}
[Fact]
public void ZeroTriggerEvalTimeoutSeconds_IsRejected()
{
var result = Validate(new SiteRuntimeOptions { TriggerEvalTimeoutSeconds = 0 });
Assert.True(result.Failed);
Assert.Contains("TriggerEvalTimeoutSeconds", result.FailureMessage);
}
/// A zero cap would shed every trigger, silently disabling all scripts.
[Fact]
public void ZeroMaxConcurrentRunsPerScript_IsRejected()
{
var result = Validate(new SiteRuntimeOptions { MaxConcurrentRunsPerScript = 0 });
Assert.True(result.Failed);
Assert.Contains("MaxConcurrentRunsPerScript", result.FailureMessage);
}
}