
Caching
- 125 installs
- 629 repo stars
- Updated August 3, 2026
- codewithmukesh/dotnet-claude-kit
Adds .NET caching with HybridCache (in-memory plus distributed), stampede protection, output caching, and cache invalidation on mutations.
About
Implements caching in .NET applications using HybridCache as the default, plus output caching, response caching, and distributed cache patterns with Redis as L2. A developer uses it to reduce database load and optimize read performance with proper invalidation and TTLs.
- Uses HybridCache (L1 in-memory + L2 distributed) with stampede protection as the default
- Covers output caching, cache invalidation on mutation, and explicit TTLs
Caching by the numbers
- 125 all-time installs (skills.sh)
- Ranked #2,791 of 4,347 Backend & APIs skills by installs in the Skillselion catalog
- Data as of Aug 5, 2026 (Skillselion catalog sync)
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| Installs | 125 |
|---|---|
| repo stars | ★ 629 |
| Last updated | August 3, 2026 |
| Repository | codewithmukesh/dotnet-claude-kit ↗ |
What it does
Adds .NET caching with HybridCache (in-memory plus distributed), stampede protection, output caching, and cache invalidation on mutations.
Files
Caching
Core Principles
1. HybridCache is the default — .NET 9+ introduced HybridCache as the unified caching abstraction. It combines in-memory (L1) and distributed (L2) caching with stampede protection. See ADR-004. 2. Cache reads, not writes — Cache GET operations. Invalidate on mutations. Never cache POST/PUT/DELETE responses. 3. Output caching for entire responses — When the full HTTP response can be cached (public APIs, static data), use output caching middleware. 4. Set explicit TTLs — Every cached item needs an expiration. No unbounded caches.
Patterns
HybridCache (Recommended Default)
// Program.cs
builder.Services.AddHybridCache(options =>
{
options.DefaultEntryOptions = new HybridCacheEntryOptions
{
Expiration = TimeSpan.FromMinutes(5),
LocalCacheExpiration = TimeSpan.FromMinutes(2)
};
});
// Optional: Add Redis as the L2 distributed cache
builder.Services.AddStackExchangeRedisCache(options =>
{
options.Configuration = builder.Configuration.GetConnectionString("Redis");
});// Usage in a handler
public class GetProduct
{
public record Query(Guid Id);
public record Response(Guid Id, string Name, decimal Price);
internal class Handler(AppDbContext db, HybridCache cache)
{
public async Task<Response?> Handle(Query query, CancellationToken ct)
{
return await cache.GetOrCreateAsync(
$"products:{query.Id}",
async token => await db.Products
.Where(p => p.Id == query.Id)
.Select(p => new Response(p.Id, p.Name, p.Price))
.FirstOrDefaultAsync(token),
new HybridCacheEntryOptions
{
Expiration = TimeSpan.FromMinutes(10)
},
cancellationToken: ct);
}
}
}Cache Invalidation
// Invalidate on mutation
public class UpdateProduct
{
internal class Handler(AppDbContext db, HybridCache cache)
{
public async Task<Result> Handle(Command command, CancellationToken ct)
{
var product = await db.Products.FindAsync([command.Id], ct);
if (product is null) return Result.Failure("Product not found");
product.Update(command.Name, command.Price);
await db.SaveChangesAsync(ct);
// Invalidate the cached entry
await cache.RemoveAsync($"products:{command.Id}", ct);
return Result.Success();
}
}
}Output Caching (Full Response Caching)
// Program.cs
builder.Services.AddOutputCache(options =>
{
options.AddBasePolicy(b => b.NoCache()); // Don't cache by default
options.AddPolicy("ProductList", b => b
.Expire(TimeSpan.FromMinutes(5))
.Tag("products"));
options.AddPolicy("ProductById", b => b
.Expire(TimeSpan.FromMinutes(10))
.SetVaryByRouteValue("id")
.Tag("products"));
});
app.UseOutputCache();
// Apply to endpoints
group.MapGet("/", ListProducts).CacheOutput("ProductList");
group.MapGet("/{id:guid}", GetProduct).CacheOutput("ProductById");
// Invalidate by tag on mutations
group.MapPut("/{id:guid}", async (Guid id, UpdateProductRequest request,
IOutputCacheStore store, CancellationToken ct) =>
{
// ... update logic ...
await store.EvictByTagAsync("products", ct);
return TypedResults.NoContent();
});Cache-Aside Pattern (Legacy)
Prefer HybridCache for all new code. Manual IDistributedCache cache-aside lacks stampedeprotection, requires manual serialization, and has no L1/L2 layering. Use only when
integrating with existing code that already uses IDistributedCache directly.Anti-patterns
Don't Cache Without Expiration
// BAD — cache lives forever, stale data guaranteed
await cache.SetStringAsync(key, value);
// GOOD — always set TTL
await cache.SetStringAsync(key, value, new DistributedCacheEntryOptions
{
AbsoluteExpirationRelativeToNow = TimeSpan.FromMinutes(10)
});Don't Cache Mutable User-Specific Data
// BAD — caching user's cart with a global key
await cache.GetOrCreateAsync("shopping-cart", ...);
// GOOD — include user ID in key
await cache.GetOrCreateAsync($"shopping-cart:{userId}", ...);Don't Build Your Own Stampede Protection
// BAD — manual lock to prevent cache stampede
private static readonly SemaphoreSlim Lock = new(1, 1);
await Lock.WaitAsync();
try { /* check cache, populate if missing */ }
finally { Lock.Release(); }
// GOOD — HybridCache has built-in stampede protection
await hybridCache.GetOrCreateAsync(key, factory);Decision Guide
| Scenario | Recommendation |
|---|---|
| General data caching | HybridCache (GetOrCreateAsync) |
| Full HTTP response | Output caching with .CacheOutput() |
| Frequently read, rarely written | HybridCache with longer TTL |
| User-specific data | HybridCache with user-scoped key |
| Cache invalidation on write | cache.RemoveAsync() or output cache tags |
| Distributed deployment | HybridCache + Redis L2 backend |
| Single-server deployment | HybridCache with in-memory only |