Softment
Web3dApps needing structured blockchain data access

Technology

The Graph

The Graph implementation for production software delivery with clean architecture, maintainability, and predictable rollout. Built for United States teams with Americas overlap (EST/PST-friendly).

Best For

Ideal use cases

Products querying complex on-chain histories

Teams building analytics-rich blockchain dashboards

Apps needing performant event-based indexing

What We Build

Projects we deliver

Subgraph design and schema setup

Indexed query workflows for dApp frontends

On-chain analytics and reporting modules

Ecosystem

Compatible tools & integrations

Seamless Integrations

Works with your existing stack

4+ supported
Subgraph mappings
GraphQL query endpoints
Event indexing workflows
Caching and query optimization

Use Cases

Recommended use cases

DeFi analytics dashboards

NFT and token activity feeds

Web3 reporting and governance interfaces

Delivery

How we deliver

Indexing strategy is aligned with real product query patterns.

Subgraph schema design prioritizes long-term maintainability.

Data freshness and query performance are monitored post-deployment.

FAQ

Frequently asked questions

Use The Graph when your product needs efficient, queryable access to historical and event-based blockchain data.

For many read-heavy workflows, yes. It complements RPC by providing indexed, structured access patterns.

Yes. We design and deploy custom subgraphs aligned to your contract events and UI requirements.

Regional

Delivery considerations for your region

Data and risk discovery (United States)

Privacy, security, residency, and regulatory requirements differ by workflow. We document the applicable data flows, roles, retention needs, and control owners before recommending an architecture.

The resulting proposal lists the controls and evidence that are actually in scope. It is not a generic compliance, certification, or legal-assurance promise.

  • Map data sources, destinations, roles, and sensitive fields
  • Record access, retention, logging, and deletion requirements
  • Identify required security or procurement evidence before contracting
  • Use an NDA or DPA only when the parties mutually execute it

Working model (United States)

Exact live-overlap hours, response expectations, meeting windows, and escalation contacts are confirmed in the proposal for each engagement.

Written decisions, scoped milestones, and asynchronous updates reduce unnecessary meetings without implying an unagreed service level.

  • Proposal-specific overlap and meeting windows
  • Named owners for decisions and blockers
  • Written scope, assumptions, and change decisions
  • Milestone cadence agreed before kickoff

Commercial setup (United States)

The contracting entity, proposal currency, invoicing cadence, payment terms, intellectual-property terms, and required vendor documents are agreed before work begins.

The Opportunity Sprint can establish the evidence needed to scope a production pilot; it does not pre-commit either party to a rollout.

  • Contracting entity and currency confirmed in writing
  • Milestones and acceptance criteria defined in the proposal
  • Vendor-document requirements identified before signature
  • Scope changes require an explicit written decision

Delivery controls (United States)

Testing, observability, release, security, and handover controls are selected for the actual system risk rather than promised as a generic bundle.

Acceptance measures and production responsibilities are recorded before implementation so both teams know what evidence will support release.

  • Risk-based testing and acceptance measures
  • Release, rollback, and observability responsibilities
  • Security controls tied to the agreed threat model
  • Handover artifacts defined in the signed scope
Ready to start?

Want to scope this properly?

Share your requirements for United States delivery. proposal currency confirmed before contracting.

We’ll review the context and reply with a practical next step.