sssp
Generic Description
Single-source shortest paths.
Simple example:
CALL nexyron.sssp({source: 0})
Shortest-path and routing procedures compute feasible routes under different cost and graph assumptions. They are useful for logistics, dependency chains, impact paths, and path-based explainability.
Consumer-Level Explanation
Use sssp when single-source shortest paths is the graph-analysis or operational question you actually need to answer. Keep the call explicit because its YIELD columns, row grain, and required runtime state determine how the rest of the Cypher pipeline can safely compose it. Choose the routing algorithm based on weights, negative costs, DAG assumptions, heuristic availability, and whether you need one path, all-pairs distances, or multiple alternatives.
Conceptual Explanation
sssp should be read as one named procedure contract in the broader Nexyron Cypher surface. The procedure call is not only a syntax hook: it defines what runtime state, projection, registry entry, or graph algorithm is being asked to operate, and it determines which output columns downstream YIELD, WITH, and RETURN stages can safely use.
More Detailed Explanation
This is a source-centric distance computation rather than a single source-target route
In practical queries, start by deciding the row grain you want after the call: one row per node, one row per path, one row per registry object, one row per artifact, or one row per summary. Then keep that grain explicit with YIELD and named projections. That is the difference between a useful planner-facing example and a vague call that downstream tooling cannot safely compose. For contract-driven procedures, the executable examples on these pages intentionally inspect procedure metadata unless the required named artifacts are created in the same example.
How It Differs From Nearby Algorithms
This is a source-centric distance computation rather than a single source-target route.
Advanced Example
This example yields named columns from sssp and returns a bounded result shape that downstream planner tooling can compose without guessing column names or row grain.
CALL nexyron.sssp({source: 0}) YIELD node_id, distance
RETURN node_id, distance
LIMIT 10
Real Use Cases
- radius analysis from one anchor
- service blast-radius estimation
- distance-to-anchor reporting
- compare algorithm output with domain labels or time windows before operationalizing it
- feed graph-analytic scores into ranked reports, feature contracts, or investigation queues only after checking the modeling assumptions
Real Limitations And Tradeoffs
- still depends on edge weighting semantics
- algorithm output reflects the projected graph, not an abstract real-world network outside the data model
- nearby algorithms can answer different questions even when their output columns look similar