Small cleanup of the stub code (#18301)

This commit is contained in:
CarloToso
2022-10-17 14:51:34 -07:00
committed by GitHub
parent 5e5b0df8df
commit 223d9a4d14
2 changed files with 1 additions and 252 deletions
@@ -1,252 +0,0 @@
// Copyright (c) Microsoft Corporation.
// Licensed under the MIT License.
#if CORECLR
namespace System.Diagnostics
{
/// <summary>
/// Indicates whether the performance counter category can have multiple instances.
/// </summary>
/// <filterpriority>1</filterpriority>
public enum PerformanceCounterCategoryType
{
/// <summary>
/// The instance functionality for the performance counter category is unknown.
/// </summary>
Unknown = -1,
/// <summary>
/// The performance counter category can have only a single instance.
/// </summary>
SingleInstance,
/// <summary>
/// The performance counter category can have multiple instances.
/// </summary>
MultiInstance
}
/// <summary>
/// Specifies the formula used to calculate the <see cref="M:System.Diagnostics.PerformanceCounter.NextValue"/>
/// method for a <see cref="T:System.Diagnostics.PerformanceCounter"/> instance.
/// </summary>
/// <filterpriority>2</filterpriority>
public enum PerformanceCounterType
{
/// <summary>
/// An instantaneous counter that shows the most recently observed value.
/// Used, for example, to maintain a simple count of items or operations.
/// </summary>
NumberOfItems32 = 65536,
/// <summary>
/// An instantaneous counter that shows the most recently observed value.
/// Used, for example, to maintain a simple count of a very large number
/// of items or operations. It is the same as NumberOfItems32 except that
/// it uses larger fields to accommodate larger values.
/// </summary>
NumberOfItems64 = 65792,
/// <summary>
/// An instantaneous counter that shows the most recently observed value
/// in hexadecimal format. Used, for example, to maintain a simple count
/// of items or operations.</summary>
NumberOfItemsHEX32 = 0,
/// <summary>
/// An instantaneous counter that shows the most recently observed value.
/// Used, for example, to maintain a simple count of a very large number
/// of items or operations. It is the same as NumberOfItemsHEX32 except
/// that it uses larger fields to accommodate larger values.
/// </summary>
NumberOfItemsHEX64 = 256,
/// <summary>
/// A difference counter that shows the average number of operations completed
/// during each second of the sample interval. Counters of this type measure
/// time in ticks of the system clock.</summary>
RateOfCountsPerSecond32 = 272696320,
/// <summary>
/// A difference counter that shows the average number of operations completed
/// during each second of the sample interval. Counters of this type measure
/// time in ticks of the system clock. This counter type is the same as the
/// RateOfCountsPerSecond32 type, but it uses larger fields to accommodate
/// larger values to track a high-volume number of items or operations per
/// second, such as a byte-transmission rate.
/// </summary>
RateOfCountsPerSecond64 = 272696576,
/// <summary>
/// An average counter designed to monitor the average length of a queue
/// to a resource over time. It shows the difference between the queue
/// lengths observed during the last two sample intervals divided by the
/// duration of the interval. This type of counter is typically used to
/// track the number of items that are queued or waiting.
/// </summary>
CountPerTimeInterval32 = 4523008,
/// <summary>
/// An average counter that monitors the average length of a queue to a
/// resource over time. Counters of this type display the difference
/// between the queue lengths observed during the last two sample intervals,
/// divided by the duration of the interval. This counter type is the same
/// as CountPerTimeInterval32 except that it uses larger fields to
/// accommodate larger values. This type of counter is typically used
/// to track a high-volume or very large number of items that are queued or waiting.
/// </summary>
CountPerTimeInterval64 = 4523264,
/// <summary>
/// An instantaneous percentage counter that shows the ratio of a subset
/// to its set as a percentage. For example, it compares the number of bytes
/// in use on a disk to the total number of bytes on the disk.
/// Counters of this type display the current percentage only, not an average
/// over time.
/// </summary>
RawFraction = 537003008,
/// <summary>
/// A base counter that stores the denominator of a counter that presents a
/// general arithmetic fraction. Check that this value is greater than zero
/// before using it as the denominator in a RawFraction value calculation.
/// </summary>
RawBase = 1073939459,
/// <summary>
/// An average counter that measures the time it takes, on average, to
/// complete a process or operation. Counters of this type display a
/// ratio of the total elapsed time of the sample interval to the number
/// of processes or operations completed during that time. This counter
/// type measures time in ticks of the system clock.
/// </summary>
AverageTimer32 = 805438464,
/// <summary>
/// A base counter that is used in the calculation of time or count averages,
/// such as AverageTimer32 and AverageCount64. Stores the denominator for
/// calculating a counter to present "time per operation" or "count per operation".
/// </summary>
AverageBase = 1073939458,
/// <summary>
/// An average counter that shows how many items are processed, on average,
/// during an operation. Counters of this type display a ratio of the items
/// processed to the number of operations completed. The ratio is calculated
/// by comparing the number of items processed during the last interval to
/// the number of operations completed during the last interval.
/// </summary>
AverageCount64 = 1073874176,
/// <summary>
/// A percentage counter that shows the average ratio of hits to all
/// operations during the last two sample intervals.
/// </summary>
SampleFraction = 549585920,
/// <summary>
/// An average counter that shows the average number of operations completed
/// in one second. When a counter of this type samples the data, each sampling
/// interrupt returns one or zero. The counter data is the number of ones that
/// were sampled. It measures time in units of ticks of the system performance timer.
/// </summary>
SampleCounter = 4260864,
/// <summary>
/// A base counter that stores the number of sampling interrupts taken
/// and is used as a denominator in the sampling fraction. The sampling
/// fraction is the number of samples that were 1 (or true) for a sample
/// interrupt. Check that this value is greater than zero before using
/// it as the denominator in a calculation of SampleFraction.
/// </summary>
SampleBase = 1073939457,
/// <summary>
/// A percentage counter that shows the average time that a component is
/// active as a percentage of the total sample time.
/// </summary>
CounterTimer = 541132032,
/// <summary>
/// A percentage counter that displays the average percentage of active
/// time observed during sample interval. The value of these counters is
/// calculated by monitoring the percentage of time that the service was
/// inactive and then subtracting that value from 100 percent.
/// </summary>
CounterTimerInverse = 557909248,
/// <summary>A percentage counter that shows the active time of a component
/// as a percentage of the total elapsed time of the sample interval.
/// It measures time in units of 100 nanoseconds (ns). Counters of this
/// type are designed to measure the activity of one component at a time.
/// </summary>
Timer100Ns = 542180608,
/// <summary>
/// A percentage counter that shows the average percentage of active time
/// observed during the sample interval.
/// </summary>
Timer100NsInverse = 558957824,
/// <summary>
/// A difference timer that shows the total time between when the component
/// or process started and the time when this value is calculated.
/// </summary>
ElapsedTime = 807666944,
/// <summary>
/// A percentage counter that displays the active time of one or more
/// components as a percentage of the total time of the sample interval.
/// Because the numerator records the active time of components operating
/// simultaneously, the resulting percentage can exceed 100 percent.
/// </summary>
CounterMultiTimer = 574686464,
/// <summary>
/// A percentage counter that shows the active time of one or more components
/// as a percentage of the total time of the sample interval. It derives
/// the active time by measuring the time that the components were not
/// active and subtracting the result from 100 percent by the number of
/// objects monitored.
/// </summary>
CounterMultiTimerInverse = 591463680,
/// <summary>
/// A percentage counter that shows the active time of one or more components
/// as a percentage of the total time of the sample interval. It measures
/// time in 100 nanosecond (ns) units.</summary>
CounterMultiTimer100Ns = 575735040,
/// <summary>
/// A percentage counter that shows the active time of one or more components
/// as a percentage of the total time of the sample interval. Counters of
/// this type measure time in 100 nanosecond (ns) units. They derive the
/// active time by measuring the time that the components were not active
/// and subtracting the result from multiplying 100 percent by the number
/// of objects monitored.</summary>
CounterMultiTimer100NsInverse = 592512256,
/// <summary>
/// A base counter that indicates the number of items sampled. It is used
/// as the denominator in the calculations to get an average among the
/// items sampled when taking timings of multiple, but similar items.
/// Used with CounterMultiTimer, CounterMultiTimerInverse, CounterMultiTimer100Ns,
/// and CounterMultiTimer100NsInverse.</summary>
CounterMultiBase = 1107494144,
/// <summary>
/// A difference counter that shows the change in the measured attribute
/// between the two most recent sample intervals.
/// </summary>
CounterDelta32 = 4195328,
/// <summary>
/// A difference counter that shows the change in the measured attribute
/// between the two most recent sample intervals. It is the same as the
/// CounterDelta32 counter type except that is uses larger fields to
/// accommodate larger values.</summary>
CounterDelta64 = 4195584
}
}
#endif
@@ -8,6 +8,7 @@
<ItemGroup>
<ProjectReference Include="..\System.Management.Automation\System.Management.Automation.csproj" />
<PackageReference Include="System.Diagnostics.PerformanceCounter" Version="7.0.0-rc.1.22426.10" />
</ItemGroup>
<PropertyGroup>