PERP.WIKI

HyperOdd vs Katoshi

Hyperliquid ecosystem comparison · Prediction Markets

Ecosystem Pick
Different Focus Areas

Quick Take

HyperOdd First leveraged prediction market on Hyperliquid — up to 20x on HIP-3, while Katoshi AI-powered trading automation engine built exclusively for Hyperliquid on HyperCore. They serve different niches in the Hyperliquid ecosystem.

Based on public data for HyperOdd and Katoshi. Key differentiators: layer deployment, fee structure, liquidity depth, and community adoption. Last reviewed: Mar 2026.

Overview

HyperOdd logo

HyperOdd

HyperOdd is a leveraged prediction market platform built on Hyperliquid, designed to enable users to trade the outcomes of real-world events with up to 20x leverage using perpetual-style instruments. It is the first prediction market protocol to operate on Hyperliquid's HIP-3 permissionless perpetuals infrastructure, using the same underlying market mechanics as Hyperliquid's derivatives exchange but applied to event-outcome markets rather than asset prices. The platform covers a broad range of categories including politics, economics, cryptocurrency, sports, entertainment, and weather. How It Works HyperOdd transforms prediction market positions into leveraged perpetual contracts using Hyperliquid's HIP-3 framework. Traditional prediction markets operate on a binary 1:1 model—users buy YES or NO shares that settle at $1 or $0 based on outcome. HyperOdd replaces this with leveraged perpetuals: users can open positions with up to 20x leverage on a given outcome, meaning a $100 deposit controls $2,000 in market exposure. This fundamentally changes the capital efficiency of prediction market trading, allowing participants to express high-conviction views without committing their full notional position upfront. The protocol uses a dual oracle system tailored for the heterogeneous nature of real-world event data. For cryptocurrency-related prediction markets—such as whether a specific asset will reach a price target—HyperOdd uses the HyperCore Oracle, the native price feed system of Hyperliquid's L1. This provides extremely fast, low-cost, and highly secure price resolution for crypto events, directly sourced from Hyperliquid's own infrastructure. For arbitrary real-world events—sports outcomes, election results, economic indicators—HyperOdd integrates SEDA Protocol, a decentralized oracle network designed for arbitrary data resolution. SEDA enables permissionless data requests and verifiable on-chain computation, allowing any real-world outcome to be brought on-chain in a tamper-resistant manner. For market resolution data, HyperOdd also integrates with Polymarket, the leading prediction market by volume, pulling its market data as a trusted reference for event outcomes. This creates a layered resolution system: Polymarket provides the outcome reference, SEDA verifies and commits it on-chain, and HyperOdd's smart contracts settle positions accordingly. User experience is addressed through Privy integration for account abstraction. Users can log in using an email address, Google account, or any Web3 wallet without needing to manage private keys directly. Transactions are gasless from the user's perspective, reducing friction for users unfamiliar with wallet infrastructure. Key Features - Up to 20x Leveraged Prediction Markets: Users can trade prediction market outcomes with up to 20x leverage, dramatically increasing capital efficiency relative to traditional 1:1 prediction market designs. - HIP-3 Native Architecture: Built on Hyperliquid's permissionless perpetuals standard, allowing prediction market instruments to benefit from Hyperliquid's high-performance order matching and settlement infrastructure. - Dual Oracle System: HyperCore Oracle for crypto-native events; SEDA Protocol for arbitrary real-world events—providing both speed and versatility across diverse market categories. - Polymarket Data Integration: Resolution prices and outcome references sourced from Polymarket's established market data, providing a credible and widely-recognized benchmark for event settlement. - Account Abstraction via Privy: Keyless authentication and gasless transactions lower the barrier to entry for non-crypto-native users, making prediction markets accessible to a broader audience. Team and Backing HyperOdd was built by a team of four developers, identified on GitHub as @priom (publicly known as 0xPriom on Twitter), @luu-alex, @avkos, and @tanmoyAtb. The project originated as a submission to the Hyperliquid Community Hackathon, hosted on the TAIKAI platform, indicating it emerged from grassroots ecosystem development rather than a pre-funded venture. No institutional funding round has been disclosed. The project's testnet infrastructure (testnet.hyperodd.com) and GitHub organization (github.com/hyperodd) were operational as of early 2026, and the team announced plans to deploy on HIP-3 mainnet following the successful HIP-3 activation in late 2025. Traction and Metrics As of early 2026, HyperOdd was in private testnet phase, with mainnet deployment anticipated imminently following the official launch of HIP-3 on Hyperliquid. The protocol has not yet published TVL, volume, or user figures, as these metrics are only relevant post-launch. The SEDA Protocol publicly announced its partnership with HyperOdd for oracle services, providing a degree of external validation. The project attracted attention within the Hyperliquid community as the first application to apply HIP-3 infrastructure to prediction markets rather than traditional asset perpetuals. Competitive Position HyperOdd occupies a novel position in the intersection of two major DeFi sectors: prediction markets and leveraged derivatives. In the prediction market space, Polymarket is the dominant player globally, processing hundreds of millions in volume for major events, but Polymarket operates on Polygon and does not offer leverage. Augur, Gnosis, and various other prediction market protocols have attempted decentralized prediction markets with limited traction. HyperOdd's leverage feature is a genuine differentiation—no existing prediction market offers leveraged exposure to event outcomes in a decentralized context. In the Hyperliquid ecosystem, HIP-3 enables permissionless creation of perpetual markets for any asset or index, and HyperOdd is the first project to apply this to prediction markets specifically. The HIP-4 proposal (announced for testnet in early 2026) is expected to add native prediction market and options-style functionality to Hyperliquid itself, which could represent either a competitive threat to HyperOdd or a validation of the prediction market use case on the platform. Hyperliquid Integration HyperOdd is one of the clearest examples of HIP-3 being used for non-traditional asset perpetuals. HIP-3, activated on Hyperliquid in late 2025, enables permissionless creation of perpetual markets, allowing any team to list any underlying asset or index as a perpetual market without protocol-level approval. HyperOdd uses this infrastructure to create perpetual markets where the underlying is a prediction market outcome rather than an asset price. The HyperCore Oracle integration means that crypto-related prediction markets can settle in near-real-time using Hyperliquid's own price feeds, while SEDA's oracle extends this capability to arbitrary real-world events. The gasless and keyless UX layer is critical for bringing non-DeFi users to the platform, which aligns with Hyperliquid's broader mission of making high-performance trading accessible. Risks and Considerations HyperOdd faces several material risks. As an early-stage project originating from a hackathon, its long-term development capacity and team retention are unknown quantities. The introduction of up to 20x leverage on binary-outcome prediction markets creates extreme risk for retail participants who may not fully understand the liquidation dynamics—a 5% adverse move can wipe a leveraged position entirely, versus a binary loss in traditional prediction markets. Oracle reliability is critical: if SEDA's resolution of a real-world event is disputed or delayed, leveraged positions may be liquidated incorrectly or settlement may fail. The project's dependency on Polymarket's data as a resolution reference creates a dependency on a centralized-adjacent platform that could change data access policies. Market liquidity is likely to be thin in early stages, making leveraged positions vulnerable to slippage and manipulation. Finally, prediction markets involving political events are subject to regulatory scrutiny in multiple jurisdictions, and leveraged prediction markets may attract heightened regulatory attention compared to standard 1:1 models.

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Katoshi logo

Katoshi

Katoshi is the premier trading automation engine built exclusively for Hyperliquid, enabling traders to build, deploy, and manage algorithmic strategies with millisecond precision and zero downtime. Trusted by thousands of active traders, Katoshi abstracts the complexity of algorithmic execution into an accessible platform that requires no deep coding expertise. At its core, Katoshi offers a complete automation toolkit: receive signals from TradingView, fire webhooks and custom API triggers, or deploy fully autonomous AI trading agents that react to market conditions in real-time. The platform also supports MCP (Model Context Protocol) integrations, putting cutting-edge AI-driven execution within reach of any trader. Katoshi's deep native integration with Hyperliquid means bots can tap directly into one of crypto's fastest and most liquid on-chain order books, accessing perpetuals across hundreds of markets with minimal slippage. Whether automating a simple RSI crossover strategy or running a multi-leg algorithmic portfolio, Katoshi provides reliable infrastructure to scale it. Built from the ground up for Hyperliquid's architecture, it has become the go-to automation layer for retail traders and institutional desks operating in the ecosystem.

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Feature Comparison

FeatureHyperOdd logoHyperOddKatoshi logoKatoshi
LayerHIP-3HyperCore
CategoryPrediction MarketsTrading Bots & Automation
StatusBetaActive
Launch Year20252025
Websitehyperodd.comkatoshi.ai
Twitter@HyperOddX@KatoshiAI
GitHubNot publicNot public
VerifiedUnverifiedUnverified
Tags
prediction-marketsleverageeventsHIP-3Privy
AIautomationtrading-agentsnon-custodial

Score Comparison

HyperOddKatoshi
Open Source
HyperOdd
Not public
Katoshi
Not public
Verified
HyperOdd
Unverified
Katoshi
Unverified
Ecosystem Breadth
HyperOdd
5 tags
Katoshi
4 tags
Maturity
HyperOdd
Since 2025
Katoshi
Since 2025

Feature Matrix

FeatureHyperOdd logoHyperOddKatoshi logoKatoshi
Open Source
Verified
Has Website
Has Twitter
Has GitHub
Active Status

Key Differences

Layer Architecture

HyperOdd operates on HIP-3 (permissionless custom perpetual markets), while Katoshi runs on HyperCore (native on-chain perpetual orderbook). This affects composability, transaction speed, and the types of integrations each protocol supports.

Category Focus

HyperOdd is focused on prediction markets, while Katoshi targets trading bots & automation. They serve different user needs within the Hyperliquid ecosystem.

Unique Features

HyperOdd is distinguished by: prediction-markets, leverage, events, HIP-3, Privy. Katoshi stands out with: AI, automation, trading-agents, non-custodial.

When to Use Each

Choose HyperOdd if you...

  • Want a prediction markets solution on HIP-3
  • Need features like prediction-markets and leverage
  • Need: First leveraged prediction market on Hyperliquid — up to 20x

Choose Katoshi if you...

  • Want a trading bots & automation solution on HyperCore
  • Need features like AI and automation
  • Need: AI-powered trading automation engine built exclusively for Hyperliquid

Ecosystem Integration

HyperOdd logo

HyperOdd

HyperOdd operates on HIP-3 (permissionless custom perpetual markets). Through HIP-3, it enables permissionless creation of custom perpetual markets.

Katoshi logo

Katoshi

Katoshi operates on HyperCore (native on-chain perpetual orderbook). Running on HyperCore gives it direct access to the native orderbook with minimal latency and maximum throughput.

Community Verdict

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