Oasis Network
Oasis Network is a privacy-first Layer-1 with modular ParaTimes, such as Sapphire and Emerald, enabling encrypted DeFi, gaming, and data-driven dApps via TEEs.
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How to index Oasis Network data with Goldsky
Subgraphs
Query Oasis Network data with an instant GraphQL API. Perfect for familiarity, fast setups, on-chain data queries, and getting to market quickly.
Ideal for:
- Teams building on Oasis Network who want quick setup & minimal infrastructure overhead
- Production-ready Oasis Network API endpoints
- Moderate traffic and throughput scenarios
- Predefined data models and standard query patterns
- On-chain data from EVM-compatible chains
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Oasis Network data: frequently asked questions
What is Oasis Network?
Oasis Network is a blockchain network supported by Goldsky for real-time data indexing and streaming. Goldsky makes it easy to access Oasis Network data through subgraphs, data pipelines, and RPC endpoints, so your team spends less time on infrastructure and more time building your product.
How do I start indexing Oasis Network data with Goldsky?
Sign up for a free Goldsky account, then deploy a subgraph or pipeline against Oasis Network in minutes. Goldsky handles node infrastructure, reorg detection, and data freshness automatically.
Can I run a subgraph on Oasis Network?
Yes. Goldsky Subgraphs run on Oasis Network and are fully compatible with The Graph protocol, so you can migrate existing subgraphs with a single CLI command. Queries are served via a standard GraphQL API with sub-second indexing latency.
How much does it cost to index Oasis Network data with Goldsky?
Goldsky offers a free plan with generous limits so you can start building right away. Paid plans scale with usage. Creating an account is free and no credit card is required to get started.
How fresh is the Oasis Network data available through Goldsky?
Goldsky indexes Oasis Network blocks as they land on-chain, typically delivering data with sub-second latency after confirmation. Reorgs are handled automatically, so your application always reflects the current canonical chain state.
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