* feat(bpmn): refuse to publish a definition with an unbound BPMN task BpmnWorkBinder already refuses an UnboundTask with no elsa:activityBinding at import - that is the first net. A definition can be edited after import, through Elsa's own designer rather than the BPMN document, and that edit can remove the activity a task was bound to without touching the document snapshot the scope still carries. ValidateBpmnProcessBindings is the second net: a WorkflowDefinitionValidating handler that walks the materialized workflow graph (not the inert BpmnProcessDefinition snapshot or the stored BPMN source, both of which a graph-only edit leaves untouched) and fails publication for any task-family element whose binding no longer resolves to an activity in the graph, naming the offending element id. Import-time Dropped/Degraded findings from BpmnImportAnalysis are not persisted anywhere a publish-time handler can reach, and BpmnImportIssue carries no field distinguishing a Dropped finding that changes executable meaning from one that does not; WorkflowValidationError has no severity concept either. Extending this gate to those findings would mean guessing at a classification the library does not expose, so it is left alone - see the delivery notes. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * fix(bpmn): refuse to publish a BPMN task bound to a missing activity type The publish gate only checked that a binding pointed at some activity id; it did not check the activity actually resolved, so a binding left pointing at an uninstalled type passed the gate and failed at run time instead. Report that case distinctly from "not bound at all", name the containing BpmnProcess node (not the BPMN element id) as the error's ActivityId to match how the rest of the codebase reports it, and prove the BpmnProcess-inside-Flowchart graph-walk with a dedicated test. Also de-duplicate the publish-gate test fixture's binding helpers by deriving from BpmnBindingTestBase instead of re-declaring them. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * refactor(bpmn): filter the publish gate's loops explicitly Replace the implicit-filter foreach/continue pattern in ValidateBpmnProcessBindings with .OfType/.Where so each loop only iterates the elements it acts on, without changing behaviour, error messages, or error ordering. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 <noreply@anthropic.com> |
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|---|---|---|
| .agents/skills | ||
| .claude/skills | ||
| .config | ||
| .github | ||
| .nuke | ||
| .specify | ||
| .vscode | ||
| announcements | ||
| build | ||
| design | ||
| doc | ||
| docker | ||
| docs | ||
| gen | ||
| scripts | ||
| specs | ||
| src | ||
| test | ||
| .editorconfig | ||
| .gitignore | ||
| AGENTS.md | ||
| build.cmd | ||
| build.ps1 | ||
| build.sh | ||
| CLAUDE.md | ||
| CONTEXT.md | ||
| CONTRIBUTING.md | ||
| Directory.Build.props | ||
| Directory.Build.targets | ||
| Directory.Packages.props | ||
| dotnet-install.sh | ||
| Elsa.sln | ||
| Elsa.sln.DotSettings | ||
| icon.png | ||
| jordi-delay-bookmark-reply.md | ||
| LICENSE | ||
| NuGet.Config | ||
| pau-delay-dispatch-response.md | ||
| README.md | ||
| ROADMAP.md | ||
| run-dsl-tests.sh | ||
| test-flowchart.txt | ||
| test-simple-flowchart.elsa | ||
Elsa Workflows
For Elsa 2, Click Here
Introduction
Elsa is a powerful workflow library that enables workflow execution within any .NET application. Elsa allows you to define workflows in various ways, including:
- Writing C# code
- Using a visual designer
- Specifying workflows in JSON
Try with Docker
To give the Elsa Studio + Elsa Server a quick spin, you can run the following command to start the Elsa Docker container:
docker pull elsaworkflows/elsa-server-and-studio-v3:latest
docker run -t -i -e ASPNETCORE_ENVIRONMENT='Development' -e HTTP_PORTS=8080 -e HTTP__BASEURL=http://localhost:13000 -p 13000:8080 elsaworkflows/elsa-server-and-studio-v3:latest
This Docker image is based on a reference ASP.NET application that hosts both the workflow server and designer and is not intended for production use.
For any non-development deployment, inject a secure random JWT signing key through environment variables or a secrets manager instead of using committed appsettings values. For code-first hosts such as Elsa.Server.Web, set Identity__Tokens__SigningKey. For shell-based hosts, set the shell feature key, for example CShells__Shells__Default__Features__Identity__SigningKey.
By default, you can access http://localhost:13000 and log in with:
Username: admin
Password: password
TLS and custom certificate authorities
All Elsa Docker images now ship with the operating system's certificate authority bundle baked in at build time. This means you can call public HTTPS endpoints such as https://example.com without any additional configuration.
If you need to trust a private or corporate CA, mount the certificate bundle into the container and reference it via EXTRA_CA_CERT:
docker run \
-v /path/to/company-ca.crt:/certs/company-ca.crt:ro \
-e EXTRA_CA_CERT=/certs/company-ca.crt \
elsaworkflows/elsa-server-and-studio-v3:latest
On startup, the container copies the certificate into /usr/local/share/ca-certificates and runs update-ca-certificates, making the trust available to .NET, OpenSSL, curl, and other system components. Multiple certificates can be provided by pointing EXTRA_CA_CERT at a directory containing .crt or .pem files.
In highly restricted environments where you cannot modify the system trust store, you can instead rely on the standard SSL_CERT_FILE or SSL_CERT_DIR environment variables:
docker run \
-v /path/to/company-ca-bundle.pem:/certs/custom.pem:ro \
-e SSL_CERT_FILE=/certs/custom.pem \
elsaworkflows/elsa-server-and-studio-v3:latest
ℹ️ Installing the CA bundle adds roughly 300KB to the Debian-based images. No package managers run at container startup; all trust updates happen immutably at build time or via the mounted certificates shown above.
Table of Contents
- Documentation
- Known Issues and Limitations
- Features
- Roadmap
- Use Cases
- Coding Workflows
- Designed Workflows
- Contributing
- Support
Documentation
Known Issues and Limitations
Elsa is continually evolving, and while it offers powerful capabilities, there are some known limitations and ongoing work:
- Documentation is still a work in progress.
- Input/Output is not yet implemented in the Workflow Instance Viewer.
- Starting workflows from the designer is currently supported only for workflows that do not require input and do not start with a trigger; this is planned for a future release.
- The designer currently only supports Flowchart activities. Support for Sequence and StateMachine activities is planned for a future release.
- UI input validation is not yet implemented.
Features
Elsa offers a wide range of features for building and executing workflows, including:
- Execution of workflows in any .NET application with support for .NET 6 and beyond.
- Support for both short-running and long-running workflows.
- A programming model loosely inspired by Windows Workflow Foundation.
- A web-based drag & drop designer with support for custom activities.
- Native support for activity composition, including activities like
Sequence,Flowchart, andForEach. - Parallel execution of activities.
- Built-in activities for common scenarios, such as sending emails, making HTTP calls, scheduling tasks, sending and receiving messages, and more.
- Workflow versioning and migration via API.
- Easy integration with external applications via HTTP, message queues, and more.
- Actor model for increased workflow throughput.
- Dynamic expressions with support for C#, JavaScript, Python, and Liquid.
- Persistence agnostic, with support for Entity Framework Core, MongoDB, and Dapper out of the box.
- Elsa Studio: a modular Blazor dashboard app for managing and designing workflows.
Roadmap
See ROADMAP.md for the current roadmap and #3232 for historical roadmap discussion.
Use Cases
Elsa can be used in a variety of scenarios, including:
- Long-running workflows such as order fulfillment and product approval.
- Short-running workflows such as sending emails and generating PDFs.
- Scheduled workflows such as sending daily reports.
- Event-driven workflows such as sending welcome emails when a user signs up.
Coding Workflows
Elsa allows you to define workflows in code using C#. The following example shows how to receive HTTP requests and send an email in response:
public class SendEmailWorkflow : WorkflowBase
{
protected override void Build(IWorkflowBuilder builder)
{
builder.Root = new Sequence
{
Activities =
{
new HttpEndpoint
{
Path = new("/send-email"),
SupportedMethods = new(new[] { HttpMethods.Post }),
CanStartWorkflow = true
},
new SendEmail
{
From = new("alic@acme.com"),
To = new(new[]{ "bob@acme.com" }),
Subject = new("Your workflow has been triggered!"),
Body = new("Hello!")
}
}
};
}
}
Designing Workflows
Elsa allows you to define workflows using a visual designer. The following example shows how to receive HTTP requests and send an email in response:
Contributing
We welcome contributions from the community and are pleased that you are interested in helping to improve the Elsa Workflow project! Here are the steps to contribute to our project:
1. Fork and Clone the Repo
To get started, you'll need to fork the repository to your own GitHub account. You can do this by navigating to the Elsa Workflow GitHub repository and clicking the "Fork" button in the top-right corner of the page. Once you have forked the repo, you can clone it to your local machine using the following command:
git clone https://github.com/YOUR_USERNAME/elsa-core.git
Replace YOUR_USERNAME with your GitHub username. For more information on forking a repo, check out the GitHub documentation here.
Incorporating the details about the "apps" folder and its projects into the second point about opening the Elsa.sln using your favorite IDE, we can expand the instructions to guide developers on where to start and what projects they might want to explore first. Here's an updated version of that section with the additional information:
2. Open Elsa.sln Using Your Favorite IDE
After cloning the repository, navigate to the cloned directory and open the Elsa.sln solution file with your preferred IDE that supports .NET development, such as Visual Studio, JetBrains Rider, or Visual Studio Code with the appropriate extensions.
Within the solution, you will find an "apps" folder containing three projects designed to help you get started and explore the capabilities of Elsa Workflow:
-
Elsa.Server.Web: This project is a reference ASP.NET Core application that acts as a workflow server. It's a great starting point if you want to understand how Elsa functions as a server-side workflow engine.
-
Elsa.ServerAndStudio.Web: This project serves a dual purpose. Like
Elsa.Server.Web, it acts as a workflow server. Additionally, it hosts the Elsa Studio Blazor WebAssembly app. This is the perfect project to run if you want to see the full capabilities of Elsa, including both the server aspects and the client-side studio experience in one application. -
Elsa.Studio.Web: This project is a reference Blazor WebAssembly application that solely hosts the Elsa Studio Blazor WebAssembly app. It requires a running Elsa server application to connect to. Use this project if you're interested in focusing on the Elsa Studio UI and its interactions with an Elsa workflow server.
3. Submit a PR with Your Changes
Once you have made your changes, commit them and push them back to your fork. Then, navigate to the original Elsa Workflow repository and create a new Pull Request. Ensure your PR description clearly describes the changes and any relevant information that will help the reviewers understand your contributions. For a detailed guide on creating a pull request, visit Creating a pull request from a fork.
4. Open an Issue First
Before you start working on your changes or submit a pull request, please open an issue to discuss what you would like to do. This step is crucial as it ensures you don't spend time working on something that might not align with the project's goals or might already be under development by someone else. You can open an issue here.
This approach helps us streamline contributions and ensures that your efforts are aligned with the project's needs and priorities. We look forward to your contributions and are here to support you throughout the process. Thank you for contributing to the Elsa Workflow project!
Support
There are various ways to get support for Elsa Workflows, ranging from community-driven channels to enterprise-level services.
Community Support
Elsa has an active and helpful community where you can find support through multiple channels:
- GitHub Issues for bug reports and feature requests.
- GitHub Discussions for open-ended conversations, questions, and community-driven support.
- Discord for real-time support and interaction with the Elsa community.
- StackOverflow for searching or asking technical questions.
Professional Support
For organizations requiring professional support and long-term commitment, check out Elsa+, a growing ecosystem of premium services, tooling, and extensions around Elsa Workflows.


