Graphify.CSharp 0.1.6

dotnet tool install --global Graphify.CSharp --version 0.1.6
                    
This package contains a .NET tool you can call from the shell/command line.
dotnet new tool-manifest
                    
if you are setting up this repo
dotnet tool install --local Graphify.CSharp --version 0.1.6
                    
This package contains a .NET tool you can call from the shell/command line.
#tool dotnet:?package=Graphify.CSharp&version=0.1.6
                    
nuke :add-package Graphify.CSharp --version 0.1.6
                    

graphify-csharp 🚀

Give coding agents compiler-accurate Find Usages for C#.

NuGet Version CI License: MIT

graphify-csharp is a free, headless Roslyn/MSBuild indexer that turns C# source into deterministic, queryable semantic evidence: compiler-resolved callers, references, implementations, inheritance, and overrides—even across overloads, generics, and projects.

Think of it as the semantic-navigation slice of Rider/ReSharper, exported for Codex, Claude Code, and other coding agents.

MIT licensed · No IDE · No compiled project DLL required · No database · Graphify optional

Stop making your agent guess

Suppose you ask:

Which methods are used only by tests?

A text search can find matching spellings. It cannot reliably tell which overload was bound, which project the caller belongs to, or whether an interface implementation is the symbol you meant.

Graphify C# loads the project through MSBuild and asks Roslyn what every symbol actually means. It emits stable identities and directed relationships that an agent can inspect instead of infer:

Without semantic indexing With Graphify C#
Matching names look like usages Roslyn resolves the exact declaration
Overloads and generics are ambiguous Bound signatures and project/TFM identity are retained
Test-only usage requires manual inspection Every caller carries project, namespace, and source location
Type relationships are reconstructed from text inherits, implements, and overrides are explicit edges

For example, this repository contains an internal DeclarationCatalogBuilder.ForTesting(...) method. From the extracted graph, an agent can see one compiler-resolved incoming call:

Graphify.CSharp.Roslyn.DeclarationCatalogBuilder.ForTesting(...)
└── called by Graphify.CSharp.Tests.Roslyn.CSharp14FeatureTests
    at tests/Graphify.CSharp.Tests/Roslyn/CSharp14FeatureTests.cs:143

That is semantic evidence, not a text-match count. A consumer can classify the caller by project or namespace convention and report the method as test-only for human review.

Quick start

1. Install

dotnet tool install --global Graphify.CSharp --framework net10.0

2. Index your codebase

graphify-csharp \
  --input ./src/MyProduct.sln \
  --root . \
  --configuration Release \
  --output ./graphify-out/csharp.json

The result is one complete JSON document containing nodes, edges, and hyperedges. It can be read directly by an agent, queried with jq, consumed from your own code, or passed to Graphify.

Supported inputs are .sln, .slnx, .csproj, and SDK file-based .cs apps. The repository's SDKs, packages, and MSBuild inputs must be available locally.

3. Teach your agent to use it

The included graphify-csharp skill teaches an agent when to refresh the index, how to follow semantic edges, and where static analysis stops.

Install it in a Codex-compatible project:

mkdir -p .agents/skills/graphify-csharp
curl -fsSL \
  https://raw.githubusercontent.com/zachsaw/graphify-csharp/main/.agents/skills/graphify-csharp/SKILL.md \
  -o .agents/skills/graphify-csharp/SKILL.md

For Claude Code, use .claude/skills/graphify-csharp/SKILL.md instead. Reload an agent session after installing or updating the skill.

If you do not use skills, add this to your project instructions:

For C# structure and usage questions, refresh graphify-out/csharp.json with graphify-csharp before answering. Identify declarations by symbol_key and inspect incoming calls and references edges. Treat zero inbound edges as observed static evidence, not proof of runtime unreachability.

Now ask your agent:

  • What calls this exact overload or constructor?
  • Which source declarations reference this field, property, event, or type?
  • Which classes implement this interface?
  • Which members override this virtual or interface member?
  • Which declarations have zero observed inbound references?
  • Which methods are referenced only from test projects?

From IDE navigation to agent evidence

What a developer does in Rider What an agent gets from Graphify C#
Find Usages Directed, compiler-resolved calls and references edges
Jump to Implementation implements edges to the exact interface contract
Navigate base and derived types inherits and overrides edges
Disambiguate overloads and generics Stable symbol identities with bound signature information
Inspect a large solution Project, target-framework, source-location, and provenance metadata
Keep navigating while editing Incremental indexing with an optional warm watcher

The extractor supplies the facts. Your agent or downstream consumer decides what those facts mean: test-only usage, zero observed references, a deletion candidate, or something requiring human review.

Where it fits

Graphify C# deliberately covers a focused layer:

  • Rider and ReSharper provide interactive navigation, inspections, refactorings, and quick fixes for developers inside an IDE.
  • NDepend provides a broad, commercial architecture and code-quality suite built around dependency analysis, metrics, rules, reports, baselines, and visualizations.
  • Graphify C# provides source-level C# semantic evidence for coding agents, headlessly and in an open format.

There is real overlap with NDepend around callers, dependencies, inheritance, and dead-code investigation. The difference is the product boundary: Graphify C# is not a free NDepend clone or an IDE replacement. It is a Roslyn-native semantic index that other tools and agents can build on.

Use it with Graphify—or without it

Graphify C# is standalone. It does not invoke, load, or require Graphify.

Without Graphify, query the JSON with an agent, jq, C#, Python, or any other consumer. For example, list every indexed method:

jq '.nodes[] | select(.properties.node_kind == "method")' \
  graphify-out/csharp.json

With Graphify, refresh the C# evidence and use its higher-level query, path, explanation, clustering, and export workflows:

graphify-csharp \
  --input ./src/MyProduct.sln \
  --root . \
  --configuration Release \
  --output ./graphify-out/csharp.json

graphify query "Which methods call the order service?" \
  --graph ./graphify-out/csharp.json

Graphify remains the general graph workflow. graphify-csharp contributes the C# layer where compiler binding matters.

What gets indexed

Source declarations

  • Namespaces, classes, structs, interfaces, records, enums, and delegates
  • Constructors, methods, operators, and local functions
  • Properties, indexers, fields, enum members, and events
  • Parameters, locals, type parameters, aliases, labels, and query range variables

Compiler-resolved relationships

  • Direct calls, constructor calls, method groups, and member access
  • Field, type, attribute, generic, typeof, and declaration-header references
  • inherits, implements, and overrides
  • Compiler-selected operators, conversions, deconstruction, foreach, await, using, patterns, ranges, and collection expressions
  • Invocation and constructor arguments bound to source formal parameters
  • Cross-project relationships with overload-aware, project/TFM-aware identity

Every edge points from the declaration where the relationship was observed to the declaration Roslyn resolved. Source location and provenance are retained. Unsupported semantic shapes are reported as diagnostics instead of silently disappearing or crashing the entire extraction.

See Compatibility for the complete language and compiler-feature matrix.

Keep the index warm

For repeated agent work, start a watcher:

graphify-csharp \
  --input ./src/MyProduct.sln \
  --root . \
  --configuration Release \
  --output ./graphify-out/csharp.json \
  --watch

The watcher keeps the Roslyn workspace warm and prepares changed projects in the background. A normal graphify-csharp invocation acts as an explicit refresh barrier and returns only after a complete JSON snapshot is current.

If no matching watcher is running, the same command performs a one-shot refresh. Use --rebuild to invalidate the incremental cache.

See Usage and Incremental indexing for watcher ownership, filtering, recovery, and cache behavior.

Runtime and language support

The package contains two tool assets:

Tool asset Runtime Compiler surface
net10.0 .NET 10 Roslyn 5.9 / C# 14
net11.0 .NET 11 .NET 11 SDK Roslyn / C# 15 preview

Install or update the package with dotnet tool ... --framework to select the tool runtime and Roslyn asset:

dotnet tool update --global Graphify.CSharp --framework net11.0

This is separate from the optional --target-framework argument, which chooses one analyzed compilation when an input project targets multiple frameworks. Single-target projects do not need --target-framework.

Static-analysis boundary

Graphify C# reports what Roslyn can observe statically. Reflection, dependency injection, native callbacks, dynamic invocation, and code absent from the loaded compilation may create runtime relationships that are not represented as direct edges.

Consequently:

  • zero inbound references means zero observed static references;
  • a test-only result depends on your project or namespace classification; and
  • every deletion candidate still requires judgment.

The tool exposes this boundary instead of pretending static evidence is a runtime reachability proof.

Development

dotnet restore Graphify.CSharp.sln
dotnet build Graphify.CSharp.sln --configuration Release
dotnet test Graphify.CSharp.sln --configuration Release
dotnet pack src/Graphify.CSharp.Cli --configuration Release

More detail:

License

MIT. See LICENSE.

Product Compatible and additional computed target framework versions.
.NET net10.0 is compatible.  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.  net11.0 is compatible. 
Compatible target framework(s)
Included target framework(s) (in package)
Learn more about Target Frameworks and .NET Standard.

This package has no dependencies.

Version Downloads Last Updated
0.1.6 0 9/12/2026
0.1.6-preview.1 0 9/11/2026
0.1.5 46 9/11/2026
0.1.5-preview.1 37 9/11/2026
0.1.4 54 9/10/2026
0.1.1 51 9/8/2026
0.1.0 49 9/8/2026
0.1.0-preview.4 45 9/8/2026
0.1.0-preview.3 47 9/8/2026