BlenderMCP
Server Configuration
Describes the environment variables required to run the server.
| Name | Required | Description | Default |
|---|---|---|---|
No arguments | |||
Instructions
Guidance the server publishes about itself, which clients place ahead of the tool catalog so the model reads it before choosing anything.
This server publishes no instructions, or was last inspected before Glama recorded them.
Capabilities
Server capabilities have not been inspected yet.
Tools
Functions exposed to the LLM to take actions
| Name | Description |
|---|---|
| get_scene_infoB | Get detailed information about the current Blender scene |
| get_object_infoB | Get detailed information about a specific object in the Blender scene. Parameters:
|
| execute_blender_codeB | Execute arbitrary Python code in Blender. Make sure to do it step-by-step by breaking it into smaller chunks. Parameters:
|
| get_polyhaven_categoriesA | Get a list of categories for a specific asset type on Polyhaven. Parameters:
|
| search_polyhaven_assetsA | Search for assets on Polyhaven with optional filtering. Parameters:
Returns a list of matching assets with basic information. |
| download_polyhaven_assetA | Download and import a Polyhaven asset into Blender. Parameters:
Returns a message indicating success or failure. |
| set_textureA | Apply a previously downloaded Polyhaven texture to an object. Parameters:
Returns a message indicating success or failure. |
| get_polyhaven_statusA | Check if PolyHaven integration is enabled in Blender. Returns a message indicating whether PolyHaven features are available. |
| get_hyper3d_statusA | Check if Hyper3D Rodin integration is enabled in Blender. Returns a message indicating whether Hyper3D Rodin features are available. Don't emphasize the key type in the returned message, but sliently remember it. |
| generate_hyper3d_model_via_textA | Generate 3D asset using Hyper3D by giving description of the desired asset, and import the asset into Blender. The 3D asset has built-in materials. The generated model has a normalized size, so re-scaling after generation can be useful. Parameters:
Returns a message indicating success or failure. |
| generate_hyper3d_model_via_imagesA | Generate 3D asset using Hyper3D by giving images of the wanted asset, and import the generated asset into Blender. The 3D asset has built-in materials. The generated model has a normalized size, so re-scaling after generation can be useful. Parameters:
Only one of {input_image_paths, input_image_urls} should be given at a time, depending on the Hyper3D Rodin's current mode. Returns a message indicating success or failure. |
| poll_rodin_job_statusA | Check if the Hyper3D Rodin generation task is completed. For Hyper3D Rodin mode MAIN_SITE: Parameters: - subscription_key: The subscription_key given in the generate model step. For Hyper3D Rodin mode FAL_AI: Parameters: - request_id: The request_id given in the generate model step. |
| import_generated_assetA | Import the asset generated by Hyper3D Rodin after the generation task is completed. Parameters:
Only give one of {task_uuid, request_id} based on the Hyper3D Rodin Mode! Return if the asset has been imported successfully. |
Prompts
Interactive templates invoked by user choice
| Name | Description |
|---|---|
| asset_creation_strategy | Defines the preferred strategy for creating assets in Blender |
Resources
Contextual data attached and managed by the client
| Name | Description |
|---|---|
No resources | |
TDQS
Scored across 13 tools
Most tools have distinct purposes, but there is some overlap between Hyper3D generation tools (generate_hyper3d_model_via_images and generate_hyper3d_model_via_text) and their related import/polling tools, which could cause confusion about workflow steps. However, descriptions clarify their roles, and other tools like download_polyhaven_asset and set_texture are clearly differentiated.
Tool names follow a consistent snake_case verb_noun pattern throughout (e.g., download_polyhaven_asset, get_scene_info), with minor deviations like poll_rodin_job_status using 'poll' instead of 'get' or 'check'. The naming is predictable and readable, supporting easy identification of actions and targets.
With 13 tools, the set is well-scoped for Blender integration, covering asset downloading (Polyhaven), 3D model generation (Hyper3D), scene management, and status checks. Each tool serves a clear purpose without bloat, aligning with the server's domain of enhancing Blender workflows with external resources and automation.
The toolset provides comprehensive coverage for Polyhaven and Hyper3D integrations, including download, search, application, generation, and status checks. Minor gaps exist, such as no direct tools for modifying or deleting imported assets in Blender, but core workflows are well-supported, allowing agents to perform key tasks without dead ends.