`TemplateBuilderSession` telemetry types and telemetry-server ingestion were added in earlier PRs (#25082, coder/coder-telemetry-server#41), but no code ever produced session events. This adds the missing producer. **Backend**: `POST /api/v2/templatebuilder/sessions` reports wizard entry and compose completion events directly via `api.Telemetry.Report()`, using the same inline pattern as `NetworkEvents` and `UserTailnetConnections`. No database migration or `createSnapshot()` changes needed. RBAC requires `policy.ActionCreate` on `ResourceTemplate.AnyOrganization()`, matching the compose endpoint. **Frontend**: The template builder wizard fires `wizard_entry` on page mount and `compose_completion` on create success or failure. A client-generated session ID (UUID) correlates the two events for the same wizard visit, enabling precise funnel analysis and abandonment detection in BigQuery. Duration is tracked via `Date.now()` in the wizard state. Closes https://linear.app/codercom/issue/DEVEX-599 <details> <summary>Implementation plan</summary> ## Root Cause Analysis The DEVEX-599 ticket diagnosis suggested missing DB tables, queries, and `eg.Go` blocks. That diagnosis assumes the DB-backed periodic snapshot path is required. It is not. Investigation shows two telemetry reporting patterns in the codebase: 1. **DB-backed periodic snapshots** (`createSnapshot()` with `eg.Go` blocks): Used for durable entities like workspaces, templates, users. 2. **Direct inline reporting** (`api.Telemetry.Report(&telemetry.Snapshot{...})`): Used for ephemeral events like `NetworkEvents`, `UserTailnetConnections`, `CLIInvocations`. Template builder sessions are ephemeral events, so the direct inline reporting pattern is the correct fit. ## Backend Changes - `codersdk/templatebuilder.go`: `TemplateBuilderSessionRequest` type with `SessionID`, `EventType` enum, `TemplateBuilderSession()` client method - `coderd/coderd.go`: Route registration in `/templatebuilder` group - `coderd/templatebuilder_handler.go`: Handler with RBAC check, request validation, session ID fallback, and inline telemetry report - `coderd/templatebuilder_handler_test.go`: Tests for wizard entry, compose completion, invalid event type, disabled feature, and member RBAC rejection ## Frontend Changes - `site/src/api/api.ts`: `recordTemplateBuilderSession` API method - `site/src/api/queries/templateBuilder.ts`: React Query mutation - `site/src/pages/TemplateBuilder/wizardState.ts`: `sessionId` and `enteredAt` fields, `createWizardState()` factory for per-mount initialization - `site/src/pages/TemplateBuilder/TemplateBuilderPageView.tsx`: `sessionId` prop, `useReducer` initializer form - `site/src/pages/TemplateBuilder/TemplateBuilderPage.tsx`: Telemetry calls for wizard entry (on mount) and compose completion (on create success/failure) </details> > 🤖 Generated by Coder Agents --------- Co-authored-by: Coder Agent <agent@coder.com>
About
Coder is a self-hosted platform for running AI coding agents and cloud development environments on infrastructure you control. It works with any cloud, IDE, OS, Git provider, and IDP.
Coder Workspaces
Coder Workspaces are cloud development environments defined with Terraform, connected through a secure Wireguard tunnel, and automatically shut down when not in use. Agents and developers share the same workspace infrastructure.
- Defined in Terraform: Templates describe the infrastructure for each workspace, from EC2 VMs and Kubernetes Pods to Docker containers.
- Any architecture and OS: Support ARM and x86-64 across Windows, Linux, and macOS from a single deployment.
- Managed by admins: Platform teams create and maintain templates that enforce approved images, resource limits, and security policies.
- Accessed from any IDE: Connect through VS Code, JetBrains, Cursor, a web terminal, remote desktop, or SSH.
- Automatic shutdown: Idle workspaces stop automatically to reduce cloud spend, and restart in seconds when needed.
Coder Agents
Coder Agents is a native AI coding agent built into Coder. The agent loop runs in the Coder control plane on your infrastructure, not in the workspace and not in a vendor's cloud. Developers interact with agents through the web UI or the REST API for programmatic and CI-driven workflows.
- Self-hosted agent loop: The control plane handles planning, model calls, and tool dispatch. Workspaces have zero AI awareness.
- No API keys in workspaces: LLM credentials stay in the control plane.
- Any model: Anthropic, OpenAI, Google, Bedrock, or self-hosted endpoints. Switching is a configuration change.
- Governance and cost controls: Centralized model approval, per-user spend limits, and audit logging.
- Open source and inspectable: The full platform is available to audit and extend.
IDE support
You can use:
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Any Web IDE, such as
- code-server
- JetBrains Projector
- Jupyter
- And others
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Your existing remote development environment:
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A file sync such as Mutagen
Why remote development
Provisioning consistent development environments for a large engineering team is difficult. Each developer has preferences for operating systems, editors, and toolchains, and ensuring a reliable build environment across all of them is a maintenance burden. A missed step during onboarding or an unsupported local configuration can cost hours of debugging.
Remote development solves this by moving the environment off the developer's machine and into managed infrastructure. The developer's laptop becomes a portal into the actual compute where work happens. If a device is lost or replaced, access is simply revoked; no source code or credentials are stored locally.
This approach provides:
- Speed: Server-grade hardware accelerates builds, tests, and large workloads without requiring expensive local machines.
- Consistency: Infrastructure tools such as Terraform, nix, Docker, and Dev Containers produce identical environments for every developer.
- Security: Source code stays on private servers. Users and groups are managed through SSO and RBAC.
- Compatibility: Workspaces share infrastructure configurations with staging and production, reducing configuration drift.
- Accessibility: Browser-based IDEs and remote IDE extensions let developers work from any device, including lightweight laptops, Chromebooks, and tablets.
Read more on the Coder blog, the Slack engineering blog, or from Alex Ellis at OpenFaaS.
Why Coder
The key difference between Coder and other platforms is that the entire system, agent loop, control plane, model routing, and workspace provisioning, runs on infrastructure you control.
For agents, this means platform teams can:
- Run the entire agent loop on their infrastructure, with no SaaS dependency for orchestration.
- Define MCP servers, skills, and system prompts centrally so every agent session starts with the same tools, policies, and context.
- Keep LLM credentials out of workspaces entirely.
- Tie every agent action to an authenticated user identity.
- Support air-gapped and restricted-network deployments with self-hosted models.
For workspaces, this means admins can:
- Support any architecture (ARM, x86-64) and operating system (Windows, Linux, macOS).
- Modify pod/container specs, such as adding disks, managing network policies, or setting/updating environment variables.
- Use VM or dedicated workspaces, developing with Kernel features (no container knowledge required).
- Enable persistent workspaces, which are like local machines, but faster and hosted by a cloud service.
Pricing
Coder is free and open source under the GNU Affero General Public License v3.0. All developer productivity features are included in the open source version. A Premium license is available for enhanced support and custom deployments.
How Coder works
Coder workspaces are represented with Terraform, but you do not need to know Terraform to get started. The Coder Registry provides production-ready templates for AWS EC2, Azure, Google Cloud, Kubernetes, and other providers.
Providers and compute environments
Workspaces can include more than just compute. Terraform can add storage buckets, secrets, sidecars, and other resources.
See the templates documentation for details.
What Coder is not
-
Coder is not an infrastructure as code (IaC) platform.
- Terraform is the first IaC provisioner in Coder, allowing Coder admins to define Terraform resources as Coder workspaces.
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Coder is not a DevOps/CI platform.
- Coder workspaces can be configured to follow best practices for cloud-service-based workloads, but Coder is not responsible for how you define or deploy the software you write.
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Coder is not an online IDE.
- Coder supports common editors, such as VS Code, vim, and JetBrains, all over HTTPS or SSH.
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Coder is not a collaboration platform.
- You can use Git with your favorite Git platform and dedicated IDE extensions for pull requests, code reviews, and pair programming.
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Coder is not a SaaS/fully-managed offering.
- Coder is a self-hosted solution. You must host Coder in a private data center or on a cloud service, such as AWS, Azure, or GCP.

