Route gh-aw workflow design/create/debug/upgrade requests to the right prompts.
日本語の概要は準備中です。原文の説明を表示しています。
Imperative guidance for the System.Text.Json APIs added in .NET 11: the built-in `JsonNamingPolicy.PascalCase` naming policy, and the strongly-typed generic `JsonSerializerOptions.GetTypeInfo` and `JsonSerializerOptions.TryGetTypeInfo` metadata accessors (generic overloads that return a typed `JsonTypeInfo`). USE ONLY when the user is targeting net11.0 or later and needs PascalCase JSON property or dictionary-key names without writing a custom naming policy, a strongly-typed generic `JsonTypeInfo` instead of the non-generic `JsonTypeInfo`, or a no-throw way to probe whether a type's serialization metadata is resolved. DO NOT USE when the target is earlier than net11.0, the requested behavior uses an established pre-net11 naming policy, or the user explicitly selected another JSON library.
インストール方法を見るインストールする前に、エージェントに与えられる指示の中身を確認できます。
Three APIs were added to System.Text.Json in .NET 11. This skill tells you exactly
when to reach for each one, what to write, what not to write, and how to prove the
result runs. Do not describe these APIs to the user — apply them, then run the code and
show the output.
| API | Replaces the pre-.NET-11 workaround of... |
|---|---|
JsonNamingPolicy.PascalCase (static property) | writing a custom JsonNamingPolicy subclass or hand-annotating every member with [JsonPropertyName] |
JsonSerializerOptions.GetTypeInfo<T>() | calling non-generic GetTypeInfo(typeof(T)) and casting to JsonTypeInfo<T> |
JsonSerializerOptions.TryGetTypeInfo<T>(out JsonTypeInfo<T>? info) | wrapping GetTypeInfo in try/catch to probe availability |
net11.0 validation possibleThese APIs only exist in the .NET 11 base class library. Before writing code:
dotnet --list-sdks and confirm an SDK that can target net11.0 is present — an
11.x SDK, or a later SDK with the net11.0 targeting pack.dotnet-install script to install the current .NET 11 SDK into a
temporary or project-local directory. Prefer the GA channel build. Use a preview only
when GA is not yet available or the user explicitly requested a preview. Do not require
administrator access, change the machine-wide PATH, or replace an installed SDK.dotnet executable. If download or execution is blocked,
still provide the complete net11.0 program and report that it was not run. Never
substitute net10.0, a custom naming policy, or a different API and present that as
validation of the .NET 11 feature.Use the channel, not a guessed version. Try the GA channel first:
$installScript = Join-Path $env:TEMP "dotnet-install-$([guid]::NewGuid()).ps1"
try {
Invoke-WebRequest -Uri 'https://dot.net/v1/dotnet-install.ps1' -OutFile $installScript
& $installScript -Channel 11.0 -InstallDir .\.dotnet
& .\.dotnet\dotnet.exe run --project <PATH_TO_NET11_PROJECT>
}
finally {
Remove-Item -LiteralPath $installScript -Force -ErrorAction SilentlyContinue
}
install_script="$(mktemp "${TMPDIR:-/tmp}/dotnet-install.XXXXXX")"
trap 'rm -f "$install_script"' EXIT
curl -fsSL https://dot.net/v1/dotnet-install.sh -o "$install_script"
bash "$install_script" --channel 11.0 --install-dir ./.dotnet
./.dotnet/dotnet run --project <PATH_TO_NET11_PROJECT>
Before .NET 11 GA, retry the install with -Quality preview (PowerShell) or
--quality preview (shell).
Match the user's request to a row, apply the Do this cell verbatim, and confirm the Verify column before you are done.
| User asks for… | Do this (on net11.0) | Never do this | Verify |
|---|---|---|---|
| PascalCase JSON property names | options.PropertyNamingPolicy = JsonNamingPolicy.PascalCase; | define class …: JsonNamingPolicy; add per-member [JsonPropertyName]; string-case the names yourself | output JSON keys are PascalCase — e.g. "Name", "Age" |
| PascalCase dictionary keys | options.DictionaryKeyPolicy = JsonNamingPolicy.PascalCase; | set only PropertyNamingPolicy; pre-transform the dictionary; define a custom policy | dictionary keys such as pendingOrders become "PendingOrders" |
Strongly-typed metadata JsonTypeInfo<T> | set TypeInfoResolver = new DefaultJsonTypeInfoResolver(), then JsonTypeInfo<T> ti = options.GetTypeInfo<T>(); | (JsonTypeInfo<T>)options.GetTypeInfo(typeof(T)) | variable is typed JsonTypeInfo<T>, no cast |
| Probe whether metadata is resolved | if (options.TryGetTypeInfo<T>(out var ti)) { … } else { … } | try { options.GetTypeInfo<T>(); } catch (…) { … } | no try/catch; both branches handled |
When the user wants JSON output whose property names are PascalCase (Name, Age)
and asks for the built-in / framework-provided way:
JsonSerializerOptions and set
PropertyNamingPolicy = JsonNamingPolicy.PascalCase.Do not write a JsonNamingPolicy subclass, do not add [JsonPropertyName("…")]
attributes to force casing, and do not upper-case the first letter of each name by
hand. JsonNamingPolicy.PascalCase is the single correct answer on .NET 11.
// Console project (reflection enabled by default). To run this as a file-based app
// (dotnet run app.cs), also set TypeInfoResolver = new DefaultJsonTypeInfoResolver()
// — see "Producing runnable output" below.
using System.Text.Json;
var options = new JsonSerializerOptions
{
PropertyNamingPolicy = JsonNamingPolicy.PascalCase
};
string json = JsonSerializer.Serialize(new { name = "Jane", age = 30 }, options);
Console.WriteLine(json);
// {"Name":"Jane","Age":30}
PropertyNamingPolicy does not transform Dictionary<string, TValue> keys. For that
request, set DictionaryKeyPolicy:
var options = new JsonSerializerOptions
{
DictionaryKeyPolicy = JsonNamingPolicy.PascalCase
};
var values = new Dictionary<string, int>
{
["pendingOrders"] = 2,
["activeUsers"] = 5
};
Console.WriteLine(JsonSerializer.Serialize(values, options));
// {"PendingOrders":2,"ActiveUsers":5}
JsonTypeInfo<T>When the user wants type metadata back as JsonTypeInfo<T> (not the non-generic
JsonTypeInfo that needs a cast):
options.GetTypeInfo<T>() — it returns JsonTypeInfo<T> directly.JsonTypeInfo<T> variable and use it (e.g. pass it to
JsonSerializer.Serialize/Deserialize).Do not call the non-generic GetTypeInfo(Type) overload and cast the result.
Requires a resolver.
GetTypeInfo<T>()throwsNotSupportedException(NoMetadataForType) unless the options have aTypeInfoResolver— setTypeInfoResolver = new DefaultJsonTypeInfoResolver()for reflection-based apps, or use a source-generatedJsonSerializerContextfor trimmed/AOT apps.
// File-based app (run: dotnet run app.cs). In a .csproj project, remove this line and
// set <TargetFramework>net11.0</TargetFramework> in the project file instead.
#:property TargetFramework=net11.0
using System.Text.Json;
using System.Text.Json.Serialization.Metadata;
var options = new JsonSerializerOptions
{
TypeInfoResolver = new DefaultJsonTypeInfoResolver()
};
JsonTypeInfo<Person> typeInfo = options.GetTypeInfo<Person>();
Console.WriteLine(typeInfo.Type.Name); // Person
record Person(string Name, int Age);
When the user wants to check whether metadata for T is available and branch on it —
without an exception being thrown when it is not:
options.TryGetTypeInfo<T>(out var info).true branch (metadata resolved, use info) and the false branch
(not resolved) explicitly.Do not wrap GetTypeInfo<T>() in try/catch to detect the missing case — that is
exactly the anti-pattern this API removes. TryGetTypeInfo<T> returns false (instead of
throwing) when no resolver can produce metadata for T, which is precisely the case you
want to branch on.
// File-based app (run: dotnet run app.cs). In a .csproj project, remove this line and
// set <TargetFramework>net11.0</TargetFramework> in the project file instead.
#:property TargetFramework=net11.0
using System.Text.Json;
using System.Text.Json.Serialization.Metadata;
// Configured with a resolver → metadata is available.
var configured = new JsonSerializerOptions
{
TypeInfoResolver = new DefaultJsonTypeInfoResolver()
};
if (configured.TryGetTypeInfo<Person>(out JsonTypeInfo<Person>? info) && info is not null)
{
Console.WriteLine($"Resolved: {info.Type.Name}"); // Resolved: Person
}
else
{
Console.WriteLine("Type info not available");
}
// No resolver → TryGetTypeInfo returns false instead of throwing.
var empty = new JsonSerializerOptions();
Console.WriteLine(empty.TryGetTypeInfo<Person>(out _)); // False
record Person(string Name, int Age);
net11.0The task is not done until the program runs on net11.0 and prints its JSON. Prefer a
console project — reflection-based serialization works there out of the box. A
file-based app also works but has one important caveat (below).
When the installed SDK cannot target net11.0 and execution was requested, install an
SDK locally with the official script and invoke it by full path. The install script is
non-administrative and does not persistently alter PATH.
Create a project whose .csproj contains <TargetFramework>net11.0</TargetFramework>,
put the code in Program.cs, then run dotnet run. Confirm the process exits with code 0
and prints the expected JSON.
using System.Text.Json;
var options = new JsonSerializerOptions { PropertyNamingPolicy = JsonNamingPolicy.PascalCase };
Console.WriteLine(JsonSerializer.Serialize(new { name = "Jane", age = 30 }, options));
// {"Name":"Jane","Age":30}
Save as app.cs, then run dotnet run app.cs; the first directive pins the framework.
Caveat — file-based apps disable System.Text.Json reflection. In a
dotnet run app.csfile-based app,JsonSerializer.IsReflectionEnabledByDefaultisfalse, so plain reflection serialization throwsNotSupportedException(NoMetadataForType). Set an explicitTypeInfoResolver = new DefaultJsonTypeInfoResolver()on the options (as below), or use a source-generatedJsonSerializerContext. A regular project does not need this.
// File-based app (run: dotnet run app.cs). In a .csproj project, remove this line and
// set <TargetFramework>net11.0</TargetFramework> in the project file instead.
#:property TargetFramework=net11.0
using System.Text.Json;
using System.Text.Json.Serialization.Metadata;
var options = new JsonSerializerOptions
{
PropertyNamingPolicy = JsonNamingPolicy.PascalCase,
TypeInfoResolver = new DefaultJsonTypeInfoResolver()
};
Console.WriteLine(JsonSerializer.Serialize(new { name = "Jane", age = 30 }, options));
// {"Name":"Jane","Age":30}
The record below uses lowercase member names on purpose, so the PascalCase policy visibly rewrites them in the output:
// File-based app (run: dotnet run app.cs). In a .csproj project, remove this line and
// set <TargetFramework>net11.0</TargetFramework> in the project file instead.
#:property TargetFramework=net11.0
using System.Text.Json;
using System.Text.Json.Serialization.Metadata;
var options = new JsonSerializerOptions
{
PropertyNamingPolicy = JsonNamingPolicy.PascalCase,
TypeInfoResolver = new DefaultJsonTypeInfoResolver()
};
JsonTypeInfo<Person> typeInfo = options.GetTypeInfo<Person>();
string json = JsonSerializer.Serialize(new Person("Jane", 30), typeInfo);
Console.WriteLine(json);
// {"Name":"Jane","Age":30}
record Person(string name, int age);
Before reporting success, confirm every applicable box:
net11.0 (visible in the .csproj or the
#:property TargetFramework=net11.0 directive).JsonNamingPolicy.PascalCase — no custom JsonNamingPolicy
subclass and no per-member [JsonPropertyName] attributes just to change casing.DictionaryKeyPolicy, not only PropertyNamingPolicy.GetTypeInfo<T>() — no cast of a
non-generic JsonTypeInfo — and the options set a TypeInfoResolver (e.g.
DefaultJsonTypeInfoResolver) so the call doesn't throw NoMetadataForType.TryGetTypeInfo<T>(out …) — no try/catch around
GetTypeInfo.dotnet run …), exited 0, and its printed JSON shows
the expected property names (e.g. "Name", "Age").dotnet run app.cs) is used, every JsonSerializerOptions
sets a TypeInfoResolver — file-based apps disable reflection so plain serialization
throws NoMetadataForType without one.| Pitfall | Fix |
|---|---|
Hand-rolling a class … : JsonNamingPolicy for PascalCase | Delete it; set PropertyNamingPolicy = JsonNamingPolicy.PascalCase. |
Adding [JsonPropertyName("Name")] to every member to force casing | Remove the attributes; the naming policy handles all members at once. |
Casting (JsonTypeInfo<T>)options.GetTypeInfo(typeof(T)) | Call the generic options.GetTypeInfo<T>(); no cast needed. |
try { options.GetTypeInfo<T>(); } catch (…) { … } to test availability | Replace with if (options.TryGetTypeInfo<T>(out var info)) { … }. |
NotSupportedException / NoMetadataForType from GetTypeInfo<T>() | The options have no resolver. Set TypeInfoResolver = new DefaultJsonTypeInfoResolver() (reflection) or a source-generated JsonSerializerContext (trim/AOT). |
NoMetadataForType even for a plain Serialize in a dotnet run app.cs file-based app | File-based apps disable STJ reflection. Add TypeInfoResolver = new DefaultJsonTypeInfoResolver(), or run it as a normal project instead. |
| Leaving the app on the SDK's default TFM | Pin net11.0 explicitly so the .NET 11 APIs resolve and the output shows the target. |
| Claiming success without running | Run dotnet run and paste the actual JSON output; the target is a working, executed program. |
PascalCaseGetTypeInfo/TryGetTypeInfodotnet run app.cs and the #:property directiveまだレビューはありません。使ってみた感想をお寄せください。
概要と使いどころ
Route gh-aw workflow design/create/debug/upgrade requests to the right prompts.
日本語の概要は準備中です。原文の説明を表示しています。
Use a repo-root `.editorconfig` to configure free .NET analyzer and style rules. Use when a .NET repo needs rule severity, code-style options, section layout, or analyzer ownership made explicit. USE FOR: the repo needs a root .editorconfig; analyzer severity and style ownership are unclear; the team wants one source of truth for rule configuration. DO NOT USE FOR: choosing analyzers with no config change; formatting-only execution with no config ownership question. INVOKES: inspect the repository context, edit targeted files, and run relevant build, test, lint, or validation commands when changes are made.
日本語の概要は準備中です。原文の説明を表示しています。
Scans .NET code for ~50 performance anti-patterns across async, memory, strings, collections, LINQ, regex, serialization, and I/O with tiered severity classification. Use when analyzing .NET code for optimization opportunities, reviewing hot paths, or auditing allocation-heavy patterns.
日本語の概要は準備中です。原文の説明を表示しています。
Symbolicate the .NET runtime frames in an Android tombstone file. Extracts BuildIds and PC offsets from the native backtrace, downloads debug symbols from the Microsoft symbol server, and runs llvm-symbolizer to produce function names with source file and line numbers. USE FOR triaging a .NET MAUI or Mono Android app crash from a tombstone, resolving native backtrace frames in libmonosgen-2.0.so or libcoreclr.so to .NET runtime source code, or investigating SIGABRT, SIGSEGV, or other native signals originating from the .NET runtime on Android. DO NOT USE FOR pure Java/Kotlin crashes, managed .NET exceptions that are already captured in logcat, or iOS crash logs. INVOKES Symbolicate-Tombstone.ps1 script, llvm-symbolizer, Microsoft symbol server.
日本語の概要は準備中です。原文の説明を表示しています。
Symbolicate .NET runtime frames in Apple platform .ips crash logs (iOS, tvOS, Mac Catalyst, macOS). Extracts UUIDs and addresses from the native backtrace, locates dSYM debug symbols, and runs atos to produce function names with source file and line numbers. Automatically downloads .dwarf symbols from the Microsoft symbol server using Mach-O UUIDs. USE FOR triaging a .NET MAUI or Mono app crash from an .ips file on any Apple platform, resolving native backtrace frames in libcoreclr or libmonosgen-2.0 to .NET runtime source code, retrieving .ips crash logs from a connected iOS device or iPhone, or investigating EXC_CRASH, EXC_BAD_ACCESS, SIGABRT, or SIGSEGV originating from the .NET runtime. DO NOT USE FOR pure Swift/Objective-C crashes with no .NET components, or Android tombstone files. INVOKES Symbolicate-Crash.ps1 script, atos, dwarfdump, idevicecrashreport.
日本語の概要は準備中です。原文の説明を表示しています。
Design or review .NET solution architecture across modular monoliths, clean architecture, vertical slices, microservices, DDD, CQRS, and cloud-native boundaries without over-engineering. USE FOR: .NET architecture choices; layer and domain boundary review; service decomposition; clean architecture, vertical slice, DDD, CQRS, and modular monolith decisions. DO NOT USE FOR: unrelated stacks; generic tasks that do not need this specific guidance. INVOKES: inspect the repository context, edit targeted files, and run relevant build, test, lint, or validation commands when changes are made.
日本語の概要は準備中です。原文の説明を表示しています。