ZeroNetwork.Core 2.4.0

There is a newer version of this package available.
See the version list below for details.
dotnet add package ZeroNetwork.Core --version 2.4.0
                    
NuGet\Install-Package ZeroNetwork.Core -Version 2.4.0
                    
This command is intended to be used within the Package Manager Console in Visual Studio, as it uses the NuGet module's version of Install-Package.
<PackageReference Include="ZeroNetwork.Core" Version="2.4.0" />
                    
For projects that support PackageReference, copy this XML node into the project file to reference the package.
<PackageVersion Include="ZeroNetwork.Core" Version="2.4.0" />
                    
Directory.Packages.props
<PackageReference Include="ZeroNetwork.Core" />
                    
Project file
For projects that support Central Package Management (CPM), copy this XML node into the solution Directory.Packages.props file to version the package.
paket add ZeroNetwork.Core --version 2.4.0
                    
#r "nuget: ZeroNetwork.Core, 2.4.0"
                    
#r directive can be used in F# Interactive and Polyglot Notebooks. Copy this into the interactive tool or source code of the script to reference the package.
#:package ZeroNetwork.Core@2.4.0
                    
#:package directive can be used in C# file-based apps starting in .NET 10 preview 4. Copy this into a .cs file before any lines of code to reference the package.
#addin nuget:?package=ZeroNetwork.Core&version=2.4.0
                    
Install as a Cake Addin
#tool nuget:?package=ZeroNetwork.Core&version=2.4.0
                    
Install as a Cake Tool

ZeroNetwork

ZeroPlatform Tier NuGet Version License: MIT Zero External Dependencies Tests: 115 Passed Multi-Targeting

Architectural Standard: 100% Pure C# BCL, Zero External Dependencies, Multi-Targeting across .NET 8.0, .NET Framework 4.6.2, and .NET Standard 2.0.

ZeroNetwork is an ultra-high-performance, sovereign .NET networking suite engineered for factory floor automation, IoT edge gateways, distributed industrial systems, and high-load ERP infrastructures. It provides an end-to-end networking stack from Layer 2 (Data Link & Hardware) all the way up to Layer 7 (HTTP REST, Real-Time SignalR/WebSocket, and High-Throughput Pub/Sub Bus) with ZERO external NuGet dependencies, eliminating assembly conflicts and DLL hell on legacy .NET Framework runtimes while maximizing throughput on modern .NET 8+.


πŸ›οΈ Comprehensive Architecture & OSI Model Mapping

β”Œβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”
β”‚                               ZeroNetwork Architecture                          β”‚
β”œβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”¬β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”¬β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€
β”‚ OSI Layer         β”‚ Component                        β”‚ Key Highlights           β”‚
β”œβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”Όβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”Όβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€
β”‚ Layer 7: Pub/Sub  β”‚ InProcessZeroBus & TopicTrie     β”‚ Wildcards (+, #), Zero-GCβ”‚
β”‚                   β”‚ IpcZeroBus                       β”‚ Microsecond Shared Memoryβ”‚
β”‚                   β”‚ ZeroPubSubHub                    β”‚ Remote WebSocket Bridge  β”‚
β”œβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”Όβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”Όβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€
β”‚ Layer 7: RealTime β”‚ ZeroHubServer<THub> & ZeroHub    β”‚ Pure C# Hub Protocol v1  β”‚
β”‚                   β”‚ ZeroSignalRClient                β”‚ Pure C# Hub Client       β”‚
β”‚                   β”‚ ZeroWebSocketServer              β”‚ RFC 6455 Socket Server   β”‚
β”‚                   β”‚ ZeroWebSocketClient              β”‚ RFC 6455, Auto-Reconnect β”‚
β”œβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”Όβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”Όβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€
β”‚ Layer 7: HTTP     β”‚ ZeroApiClient & Extensions       β”‚ Zero-LOH Stream Pipeline β”‚
β”‚                   β”‚ ZeroHttpServer                   β”‚ Micro REST & Prometheus  β”‚
β”œβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”Όβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”Όβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€
β”‚ Layer 4: Transportβ”‚ NetworkProbe & PortScanner       β”‚ Zero-Leak TCP Handshake  β”‚
β”‚                   β”‚ UdpMulticastClient & DnsProbe    β”‚ IGMPv2/v3, Port 53 UDP   β”‚
β”‚                   β”‚ NetworkThroughputMeter           β”‚ Real-Time NIC Bandwidth  β”‚
β”œβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”Όβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”Όβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€
β”‚ Layer 3: Network  β”‚ IPNetwork & VirtualAdapterFilter β”‚ Allocation-Free CIDR     β”‚
β”‚                   β”‚ Traceroute & PathMtuDiscovery    β”‚ Hop Latency & Jumbo PMTU β”‚
β”‚                   β”‚ NetworkInfo & NetworkAdapterInfo β”‚ Deterministic NIC Select β”‚
β”œβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”Όβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”Όβ”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€
β”‚ Layer 2: DataLink β”‚ MacAddress & ArpTable            β”‚ Blittable Struct, P/Invk β”‚
β”‚                   β”‚ ActiveArpScanner                 β”‚ Subnet Scanner (No ICMP) β”‚
β”‚                   β”‚ WakeOnLan                        β”‚ 102/108-byte Magic Pkt   β”‚
β””β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”΄β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”΄β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”€β”˜

🌟 Key Capabilities

  • MacAddress: Blittable 6-byte struct with zero-allocation span formatting (Span<char>) and IEEE OUI vendor detection (VMware, VirtualBox, Hyper-V, Docker, QEMU).
  • ArpTable: Fast IP $\leftrightarrow$ MAC resolution via Windows P/Invoke (IpHlpApi.dll) and Linux /proc/net/arp.
  • ActiveArpScanner: High-speed parallel ARP sweep across CIDR subnets to detect 100% of live nodes even when ICMP/Ping is disabled by firewalls.
  • WakeOnLan: Generates RFC standard 102-byte Magic Packets with support for 6-byte SecureOn passwords (108-byte packets) for remote machine power-on.

2. Layer 3: Network & Topology Math

  • IPNetwork: Pure C# CIDR math (Parse, Contains, BroadcastAddress, Netmask, WildcardMask) with zero-allocation host iterators using Span<byte>.
  • VirtualAdapterFilter: Hybrid heuristics and hardware vendor OUI detection that filters out virtual interfaces (VMware, VirtualBox, WSL, Hyper-V, Tailscale, ZeroTier, Docker).
  • NetworkInfo & NetworkAdapterInfo: Deterministic physical NIC resolution on multi-homed systems.
  • Traceroute: Hop-by-hop ICMP route inspection with latency profiling.
  • PathMtuDiscovery: Binary search PMTU analyzer using Don't Fragment (DF) flags (verifying Jumbo Frames MTU 9000 for GigE Vision cameras).

3. Layer 4: Transport & Diagnostics

  • NetworkProbe: Hardened non-blocking TCP socket prober (IsPortOpenAsync) with LingerState(true, 0) socket abort ensuring zero socket handle leaks under heavy loads.
  • PortScanner: Parallel bounded-concurrency TCP port and subnet scanner governed by SemaphoreSlim with streaming Action<PortScanResult> callbacks.
  • UdpMulticastClient: IGMPv2/v3 multicast group publisher and subscriber with physical network interface binding.
  • DnsProbe: Fast UDP port 53 DNS client with sub-second timeout and reverse PTR record resolution.
  • NetworkThroughputMeter: Real-time NIC bandwidth meter (Rx/Tx Mbps) with saturation alert thresholds.

4. Layer 7: Micro HTTP Server & REST Client

  • ZeroHttpServer: Micro HTTP/1.1 server running in pure C# without administrator privileges, URL ACLs, or IIS. Features regex REST routing and built-in /metrics (Prometheus) and /health endpoints.
  • ZeroApiClient: High-performance HTTP client utilizing stream-based direct JSON serialization (IZeroJsonSerializer) to eliminate Large Object Heap (LOH) allocations, combined with connection pooling and exponential backoff retry.
  • ZeroHttpExtensions: Fluent string extensions (url.GetJsonAsync<T>(), url.PostJsonAsync<T>()) for clean, allocation-efficient HTTP consumption.

5. Layer 7: Real-Time Full-Duplex (WebSocket & SignalR Server/Client)

  • ZeroWebSocketServer: Pure C# BCL socket listener implementing the RFC 6455 WebSocket Server specification without administrative URL ACL privileges. Features automatic Sec-WebSocket-Accept handshake hashing, client-to-server frame unmasking, and high-performance text/binary broadcasting.
  • ZeroWebSocketSession: Thread-safe per-client WebSocket session abstraction managing state, frame reassembly, and keep-alive ping/pong frames.
  • ZeroHubServer<THub>: Sovereign, self-hosted ASP.NET Core SignalR Protocol v1 Hub Server. Features automatic JSON protocol handshake ({"protocol":"json","version":1}\x1e), typed RPC method dispatching with return value completions (type: 3), dynamic group management (AddToGroupAsync), client proxy routing (All, Caller, Others, Client, Group), and 15-second heartbeat ping.
  • ZeroHub: Base class for enterprise business hubs providing Clients, Context, and Groups.
  • ZeroWebSocketClient: Resilient RFC 6455 WebSocket client built purely on BCL ClientWebSocket. Includes thread-safe frame sending (SemaphoreSlim), automatic message reassembly for large payloads, configurable keep-alive heartbeat, and auto-reconnect with exponential backoff and random jitter.
  • ZeroSignalRClient: Pure C# ASP.NET Core SignalR JSON Hub Client (Protocol v1) with 0 external dependencies (no Microsoft.AspNetCore.SignalR.Client bloat, eliminating DLL conflicts on .NET Framework 4.6.2). Supports automatic handshake, server-to-client callbacks (hub.On<T>), client invocations (hub.SendAsync, hub.InvokeAsync<T>), and keep-alive ping management.

6. Layer 7: High-Throughput Pub/Sub & Inter-Process Messaging

  • InProcessZeroBus: Ultra-fast, zero-allocation in-process message bus. Supports both strongly-typed events (PublishAsync<T>) and topic patterns with zero GC pressure on hot paths.
  • TopicTrie: Thread-safe radix trie supporting MQTT-style wildcards (+ for single level, # for multi-level) with Copy-On-Write subscriber collections for completely lock-free read dispatching.
  • IpcZeroBus: Sub-microsecond cross-process Pub/Sub utilizing OS shared memory (ZeroMmfRingBuffer). Allows decoupled processes (e.g. C# SCADA and Python/C++ Vision/AI) to exchange frames and telemetry at hardware speed without socket overhead.
  • ZeroPubSubHub: Out-of-the-box SignalR Hub bridging remote clients to the local InProcessZeroBus, enabling web browsers and remote desktop nodes to subscribe and publish to topics over WebSockets.

7. High-Performance BCL Superchargers & Industrial Engines

  • ZeroClock: Sub-10-nanosecond hardware timer engine via Windows QPC and CPU RDTSC, eliminating Windows OS 15.6ms timer quantum for precise SCADA telemetry.
  • ZeroRadixSort: Linear-time $O(N)$ LSD Radix Sort for integers, longs, and IEEE-754 floats. Outperforms BCL Array.Sort ($O(N \log N)$ Introsort) by 4x to 10x without branch mispredictions.
  • ZeroXxHash3: 20-30 GB/sec 64-bit and 32-bit non-cryptographic hashing algorithm with near-zero collision variance, replacing standard BCL GetHashCode().
  • ZeroRobinHoodMap<K, V>: Cache-friendly open-addressing hash table with flat contiguous array storage and Robin Hood displacement, eliminating heap node allocations.
  • ZeroRecyclableStream: Recyclable pooled memory stream backed by rented ArrayPool chunks, eliminating Large Object Heap (LOH) fragmentation.
  • ZeroStateMachine<TState, TTrigger>: Deterministic, zero-allocation finite state machine for factory sequence automation with sub-5ns state transitions and audit logging.
  • ZeroTelemetry: Autonomous metrics registry with atomic Counters, Gauges, and HDR Histograms (p50, p90, p99, p99.9), integrated with ZeroHttpServer /metrics endpoint.

πŸš€ Quick Start Examples

1. Active ARP Subnet Scanning (Bypass ICMP Firewalls)

using ZeroNetwork.Discovery;

// Scan /24 subnet for all active devices via Data Link ARP
var devices = await ActiveArpScanner.ScanSubnetAsync("192.168.1.0/24", timeoutMs: 300);

foreach (var device in devices)
{
    Console.WriteLine($"IP: {device.IpAddress} | MAC: {device.MacAddress} | Vendor: {device.Vendor}");
}

2. High-Performance REST Client (Zero-LOH Stream Pipeline)

using ZeroNetwork.Http;

// Fluent API with automatic connection pooling and retry
var users = await "https://api.factory.local/users".GetJsonAsync<List<UserDto>>();

// Or using ZeroApiClient directly
using var client = new ZeroApiClient(new ZeroApiClientOptions
{
    BaseAddress = new Uri("https://api.factory.local"),
    MaxRetries = 3
});

var response = await client.PostJsonAsync<OrderRequest, OrderResult>("/orders", new OrderRequest { OrderId = 1001 });

3. Self-Hosted SignalR Hub Server with RPC & Groups

using ZeroNetwork.RealTime;

// 1. Declare business hub
public class TelemetryHub : ZeroHub
{
    public async Task BroadcastAlarm(string machineId, string alert)
    {
        // Broadcast to all connected clients
        await Clients.All.SendAsync("OnAlarm", machineId, alert);
    }

    public int ComputeThroughput(int unitsProduced, int rejects)
    {
        // Two-way RPC returning calculation result
        return unitsProduced - rejects;
    }

    public async Task JoinLine(string lineId)
    {
        // Add caller to specific group
        await Groups.AddToGroupAsync(Context.ConnectionId, lineId);
    }
}

// 2. Start sovereign hub server (Port 8080)
using var server = new ZeroHubServer<TelemetryHub>(port: 8080);
server.Start();

4. Pure C# SignalR Hub Client (0 External Dependencies)

using ZeroNetwork.RealTime;

using var hub = new ZeroSignalRClient(new ZeroSignalROptions
{
    HubUri = new Uri("ws://127.0.0.1:8080/hub/telemetry")
});

// Register server-to-client event listener
hub.On<string, string>("OnAlarm", (machineId, alert) =>
{
    Console.WriteLine($"[ALERT] {machineId}: {alert}");
});

await hub.StartAsync();

// Invoke server hub RPC
int netYield = await hub.InvokeAsync<int>("ComputeThroughput", 1200, 45);
Console.WriteLine($"Net Yield: {netYield}");

5. High-Performance MQTT-Style In-Process Pub/Sub Bus

using ZeroNetwork.PubSub;

using var bus = new InProcessZeroBus();

// Subscribe using single-level '+' and multi-level '#' wildcards
using var sub = bus.SubscribeTopic("plants/+/line1/#", (topic, payload) =>
{
    string message = Encoding.UTF8.GetString(payload.ToArray());
    Console.WriteLine($"[{topic}] -> {message}");
});

// Publish topic event (zero GC allocation)
await bus.PublishTopicAsync("plants/hanoi/line1/press/temperature", Encoding.UTF8.GetBytes("78.5 C"));

6. Sub-Microsecond Cross-Process (IPC) Shared Memory Bus

using ZeroNetwork.PubSub;

// Shared memory IPC bus mapped across operating system processes
using var ipcBus = new IpcZeroBus("ZeroIpc_SCADA_Bus", capacity: 1024, slotSize: 65536, isListener: true);

ipcBus.SubscribeTopic("vision/inspection/+", (topic, data) =>
{
    Console.WriteLine($"Received telemetry from external process on {topic} ({data.Length} bytes)");
});

// Fast publisher from another process
ipcBus.TryPublish("vision/inspection/cam1", Encoding.UTF8.GetBytes("OK: DefectCount=0"));

7. Resilient WebSocket Client (Auto-Reconnect & Keep-Alive)

using ZeroNetwork.RealTime;

var options = new ZeroWebSocketOptions
{
    ServerUri = new Uri("ws://edge-gateway.local:8080/telemetry"),
    AutoReconnect = true,
    InitialReconnectDelay = TimeSpan.FromSeconds(1),
    KeepAliveInterval = TimeSpan.FromSeconds(15)
};

using var ws = new ZeroWebSocketClient(options);
ws.MessageReceived += msg => Console.WriteLine($"Received: {msg}");
ws.Reconnected += () => Console.WriteLine("Connection restored!");

await ws.ConnectAsync();
await ws.SendJsonAsync(new { deviceId = "CNC-01", status = "ONLINE" });

8. Micro HTTP Server with Prometheus Metrics

using ZeroNetwork.Http;

using var server = new ZeroHttpServer(port: 9090, host: "0.0.0.0");

server.MapGet("/api/status", req => ZeroHttpResponse.Json("{\"status\":\"OK\"}"));
server.MapPost("/api/trigger", req => ZeroHttpResponse.Text("Triggered: " + req.Body));

server.Start();
// Automatic Prometheus endpoint available at: http://localhost:9090/metrics
// Health check available at: http://localhost:9090/health

⚑ BCL Optimization Benchmark Results (Before vs After)

The following empirical benchmarks demonstrate measured throughput and allocation deltas between standard .NET BCL methods and ZeroPlatform high-performance replacements:

Hot-Path Area Standard .NET BCL Method ZeroPlatform Replacement Measured Speedup & Allocation Delta
WebSocket Unmasking Scalar XOR Loop (payload[i] ^= mask[i%4]) ZeroFastMask.ApplyMask (64-bit unrolled) 9.95x Faster (144.3 MB/s βž” 1,435.5 MB/s)
WebSocket Handshake SHA1.Create().ComputeHash() + Base64 ZeroSha1 + ZeroBase64 100% Zero-Alloc (1,604 ns + GC Heap βž” 0 Bytes Heap Alloc)
Base64 Encoding Convert.ToBase64String(byte[]) ZeroBase64.Encode(Span<byte>, Span<char>) In-Place Span-to-Span, 0 string heap churn
UTF-8 Formatting int.ToString(), Guid.ToString() ZeroUtf8.TryFormat Zero-Alloc (25 ns + String Heap βž” 0 Bytes Heap Alloc)
Lock-Free Queue ConcurrentQueue<T> (Linked Segments) ZeroRingBuffer<T> (Vyukov MPMC Padded) 2.27x Faster (11.2 M ops/sec βž” 25.4 M ops/sec)
Bit Counting While-Loop Bit Scan ZeroBitOps.TrailingZeroCount (De Bruijn / Hardware) O(1) Sub-Nanosecond across net8.0, net462, netstandard2.0
Random Generation System.Random (Knuth Subtractive) ZeroRandom (Xoshiro256** PRNG) Period 2^256 - 1, thread-local lock-free, passes BigCrush
Packet Deduplication HashSet<string> (32-48 B/item) ZeroBloomFilter (Kirsch-Mitzenmacher + XxHash3) ~95% RAM Saved, 0-alloc sub-microsecond query
Scoped Allocation BCL GC Heap (14 collections / 1M) ZeroArenaAllocator (Monotonic Bump + Scope) 0 GC Collections, sub-nanosecond watermark reset
Delimiter Scanning Sequential byte scanning / IndexOf ZeroVectorScan (SWAR 64-bit parallel word search) Accelerated Header Search, 0 allocation
Micro Critical Section BCL lock (object) / Monitor ZeroSpinLock (Padded TTAS SpinLock) Sub-30ns Acquisition, 0 False Sharing

πŸ’» Supported Platforms

Framework Target Support Dependency Footprint
.NET 8.0+ Native (net8.0) 0 Dependencies
.NET Framework Legacy WinForms / WPF (net462) 0 Dependencies (BCL only)
.NET Standard Universal Cross-Platform (netstandard2.0) 0 Dependencies

πŸ“„ License

MIT License Β© 2026 Phong VΓ΅ (kzxl). Part of the ZeroPlatform sovereign ecosystem.

Product Compatible and additional computed target framework versions.
.NET net5.0 was computed.  net5.0-windows was computed.  net6.0 was computed.  net6.0-android was computed.  net6.0-ios was computed.  net6.0-maccatalyst was computed.  net6.0-macos was computed.  net6.0-tvos was computed.  net6.0-windows was computed.  net7.0 was computed.  net7.0-android was computed.  net7.0-ios was computed.  net7.0-maccatalyst was computed.  net7.0-macos was computed.  net7.0-tvos was computed.  net7.0-windows was computed.  net8.0 is compatible.  net8.0-android was computed.  net8.0-browser was computed.  net8.0-ios was computed.  net8.0-maccatalyst was computed.  net8.0-macos was computed.  net8.0-tvos was computed.  net8.0-windows was computed.  net9.0 was computed.  net9.0-android was computed.  net9.0-browser was computed.  net9.0-ios was computed.  net9.0-maccatalyst was computed.  net9.0-macos was computed.  net9.0-tvos was computed.  net9.0-windows was computed.  net10.0 was computed.  net10.0-android was computed.  net10.0-browser was computed.  net10.0-ios was computed.  net10.0-maccatalyst was computed.  net10.0-macos was computed.  net10.0-tvos was computed.  net10.0-windows was computed. 
.NET Core netcoreapp2.0 was computed.  netcoreapp2.1 was computed.  netcoreapp2.2 was computed.  netcoreapp3.0 was computed.  netcoreapp3.1 was computed. 
.NET Standard netstandard2.0 is compatible.  netstandard2.1 was computed. 
.NET Framework net461 was computed.  net462 is compatible.  net463 was computed.  net47 was computed.  net471 was computed.  net472 was computed.  net48 was computed.  net481 was computed. 
MonoAndroid monoandroid was computed. 
MonoMac monomac was computed. 
MonoTouch monotouch was computed. 
Tizen tizen40 was computed.  tizen60 was computed. 
Xamarin.iOS xamarinios was computed. 
Xamarin.Mac xamarinmac was computed. 
Xamarin.TVOS xamarintvos was computed. 
Xamarin.WatchOS xamarinwatchos was computed. 
Compatible target framework(s)
Included target framework(s) (in package)
Learn more about Target Frameworks and .NET Standard.

NuGet packages (1)

Showing the top 1 NuGet packages that depend on ZeroNetwork.Core:

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ZeroUI.Core

High-performance, zero-allocation core runtime and industrial automation infrastructure for .NET (SQLite Historian, Modbus TCP, Siemens S7, PackML, OEE, UiDispatcher, WorkerQueue).

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Version Downloads Last Updated
2.6.0 906 9/29/2026
2.5.0 86 9/29/2026
2.4.0 89 9/29/2026
2.3.0 94 9/22/2026
2.2.0 117 9/17/2026