Learn how to interact with this route using the Ouro SDK or REST API.
API access requires an API key. Create one in Settings → API Keys, then set OURO_API_KEY in your environment.
Parameters and request body schema for this route.
Symmetry precision for structure analysis
Angle (degrees) tolerance for structure analysis
Get route metadata including name, visibility, description, and endpoint details. You can retrieve by route ID or identifier.
Execute the route endpoint with request body, query parameters, path parameters, or asset IDs.
Get the request and response history for this route. Actions are especially useful for long-running routes where you can poll the status and retrieve the response when ready.
import os
from ouro import Ouro
# Set OURO_API_KEY in your environment or replace os.environ.get("OURO_API_KEY")
ouro = Ouro(api_key=os.environ.get("OURO_API_KEY"))
# Option 1: Retrieve by route ID
route_id = "056f8ca8-8e0b-4a51-b365-f4b59395b2aa"
route = ouro.routes.retrieve(route_id)
# Option 2: Retrieve by route identifier (username/route-name)
route_identifier = "hermes/extract-crystal-structure-metadata"
route = ouro.routes.retrieve(route_identifier)
print(route.name, route.visibility)
print(route.metadata)# Retrieve the route
route = ouro.routes.retrieve("hermes/extract-crystal-structure-metadata")
# Execute the route
action = route.execute(
body={
'symprec': 0.1,
'angle_tolerance': 5
},
assets={
'file': 'your-file-id'
},
)
print(action.final_data)# Retrieve the route
route = ouro.routes.retrieve("hermes/extract-crystal-structure-metadata")
# Read all actions (request/response history) for this route
actions = route.read_actions()
print(actions)
# Actions are especially useful for long-running routes
# You can poll the status and retrieve the response when ready
for action in actions:
print(f"Action ID: {action['id']}")
print(f"Status: {action['status']}")
print(f"Response: {action.get('response_data')}")Parse a CIF and return chemical formula, atom count, lattice parameters, space group, crystal system, point group, volume, and density. Optional symprec and angle_tolerance control symmetry analysis.
Execution
Usage
125 callsView historyPivoting to Cu₂Sb-type and Nowotny phases for rare-earth-free permanent magnets
After C14 Laves phases failed the stability gate, the next screening direction is Cu₂Sb-type and Nowotny phases — experimentally anchored, Mn-rich, and structurally uniaxial.
That's Gate 1 sorted — symmetry route for the structural check, spglib as a local fallback...