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@nktkas/hyperliquid

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Hyperliquid API SDK for all major JS runtimes, written in TypeScript.

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import * as v from "valibot"; /** * Enable/disable HIP-3 DEX abstraction. * @see https://hyperliquid.gitbook.io/hyperliquid-docs/for-developers/api/exchange-endpoint#enable-hip-3-dex-abstraction */ export declare const UserDexAbstractionRequest: v.SchemaWithPipe<readonly [v.ObjectSchema<{ /** Action to perform. */ readonly action: v.SchemaWithPipe<readonly [v.ObjectSchema<{ /** Type of action. */ readonly type: v.SchemaWithPipe<readonly [v.LiteralSchema<"userDexAbstraction", undefined>, v.DescriptionAction<"userDexAbstraction", "Type of action.">]>; /** Chain ID in hex format for EIP-712 signing. */ readonly signatureChainId: v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.StringSchema<undefined>, v.RegexAction<string, undefined>, v.TransformAction<string, `0x${string}`>]>, v.DescriptionAction<`0x${string}`, "Chain ID in hex format for EIP-712 signing.">]>; /** HyperLiquid network type. */ readonly hyperliquidChain: v.SchemaWithPipe<readonly [v.PicklistSchema<["Mainnet", "Testnet"], undefined>, v.DescriptionAction<"Testnet" | "Mainnet", "HyperLiquid network type.">]>; /** User address. */ readonly user: v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.StringSchema<undefined>, v.RegexAction<string, undefined>, v.TransformAction<string, `0x${string}`>]>, v.LengthAction<`0x${string}`, 42, undefined>]>, v.DescriptionAction<`0x${string}`, "User address.">]>; /** Whether to enable or disable HIP-3 DEX abstraction. */ readonly enabled: v.SchemaWithPipe<readonly [v.BooleanSchema<undefined>, v.DescriptionAction<boolean, "Whether to enable or disable HIP-3 DEX abstraction.">]>; /** Nonce (timestamp in ms) used to prevent replay attacks. */ readonly nonce: v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.UnionSchema<[v.StringSchema<undefined>, v.NumberSchema<undefined>], undefined>, v.TransformAction<any, number>, v.NumberSchema<undefined>, v.IntegerAction<number, undefined>, v.SafeIntegerAction<number, undefined>, v.MinValueAction<number, 0, undefined>]>, v.DescriptionAction<number, "Nonce (timestamp in ms) used to prevent replay attacks.">]>; }, undefined>, v.DescriptionAction<{ type: "userDexAbstraction"; signatureChainId: `0x${string}`; hyperliquidChain: "Testnet" | "Mainnet"; user: `0x${string}`; enabled: boolean; nonce: number; }, "Action to perform.">]>; /** Nonce (timestamp in ms) used to prevent replay attacks. */ readonly nonce: v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.UnionSchema<[v.StringSchema<undefined>, v.NumberSchema<undefined>], undefined>, v.TransformAction<any, number>, v.NumberSchema<undefined>, v.IntegerAction<number, undefined>, v.SafeIntegerAction<number, undefined>, v.MinValueAction<number, 0, undefined>]>, v.DescriptionAction<number, "Nonce (timestamp in ms) used to prevent replay attacks.">]>; /** ECDSA signature components. */ readonly signature: v.SchemaWithPipe<readonly [v.ObjectSchema<{ readonly r: v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.StringSchema<undefined>, v.RegexAction<string, undefined>, v.TransformAction<string, `0x${string}`>]>, v.LengthAction<`0x${string}`, 66, undefined>]>, v.DescriptionAction<`0x${string}`, "First 32-byte component.">]>; readonly s: v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.StringSchema<undefined>, v.RegexAction<string, undefined>, v.TransformAction<string, `0x${string}`>]>, v.LengthAction<`0x${string}`, 66, undefined>]>, v.DescriptionAction<`0x${string}`, "Second 32-byte component.">]>; readonly v: v.SchemaWithPipe<readonly [v.PicklistSchema<[27, 28], undefined>, v.DescriptionAction<27 | 28, "Recovery identifier.">]>; }, undefined>, v.DescriptionAction<{ r: `0x${string}`; s: `0x${string}`; v: 27 | 28; }, "ECDSA signature components.">]>; }, undefined>, v.DescriptionAction<{ action: { type: "userDexAbstraction"; signatureChainId: `0x${string}`; hyperliquidChain: "Testnet" | "Mainnet"; user: `0x${string}`; enabled: boolean; nonce: number; }; nonce: number; signature: { r: `0x${string}`; s: `0x${string}`; v: 27 | 28; }; }, "Enable/disable HIP-3 DEX abstraction.">]>; export type UserDexAbstractionRequest = v.InferOutput<typeof UserDexAbstractionRequest>; /** * Successful response without specific data or error response. * @see https://hyperliquid.gitbook.io/hyperliquid-docs/for-developers/api/exchange-endpoint#enable-hip-3-dex-abstraction */ export declare const UserDexAbstractionResponse: v.SchemaWithPipe<readonly [v.UnionSchema<[v.SchemaWithPipe<readonly [v.ObjectSchema<{ readonly status: v.SchemaWithPipe<readonly [v.LiteralSchema<"ok", undefined>, v.DescriptionAction<"ok", "Successful status.">]>; readonly response: v.SchemaWithPipe<readonly [v.ObjectSchema<{ readonly type: v.SchemaWithPipe<readonly [v.LiteralSchema<"default", undefined>, v.DescriptionAction<"default", "Type of response.">]>; }, undefined>, v.DescriptionAction<{ type: "default"; }, "Response details.">]>; }, undefined>, v.DescriptionAction<{ status: "ok"; response: { type: "default"; }; }, "Successful response without specific data.">]>, v.SchemaWithPipe<readonly [v.ObjectSchema<{ readonly status: v.SchemaWithPipe<readonly [v.LiteralSchema<"err", undefined>, v.DescriptionAction<"err", "Error status.">]>; readonly response: v.SchemaWithPipe<readonly [v.StringSchema<undefined>, v.DescriptionAction<string, "Error message.">]>; }, undefined>, v.DescriptionAction<{ status: "err"; response: string; }, "Error response for failed operations.">]>], undefined>, v.DescriptionAction<{ status: "err"; response: string; } | { status: "ok"; response: { type: "default"; }; }, "Successful response without specific data or error response.">]>; export type UserDexAbstractionResponse = v.InferOutput<typeof UserDexAbstractionResponse>; import { type ExchangeConfig, type ExtractRequestOptions } from "./_base/execute.js"; import type { ExcludeErrorResponse } from "./_base/errors.js"; /** Schema for user-provided action parameters (excludes system fields). */ declare const UserDexAbstractionParameters: Omit<v.ObjectSchema<{ /** Type of action. */ readonly type: v.SchemaWithPipe<readonly [v.LiteralSchema<"userDexAbstraction", undefined>, v.DescriptionAction<"userDexAbstraction", "Type of action.">]>; /** Chain ID in hex format for EIP-712 signing. */ readonly signatureChainId: v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.StringSchema<undefined>, v.RegexAction<string, undefined>, v.TransformAction<string, `0x${string}`>]>, v.DescriptionAction<`0x${string}`, "Chain ID in hex format for EIP-712 signing.">]>; /** HyperLiquid network type. */ readonly hyperliquidChain: v.SchemaWithPipe<readonly [v.PicklistSchema<["Mainnet", "Testnet"], undefined>, v.DescriptionAction<"Testnet" | "Mainnet", "HyperLiquid network type.">]>; /** User address. */ readonly user: v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.StringSchema<undefined>, v.RegexAction<string, undefined>, v.TransformAction<string, `0x${string}`>]>, v.LengthAction<`0x${string}`, 42, undefined>]>, v.DescriptionAction<`0x${string}`, "User address.">]>; /** Whether to enable or disable HIP-3 DEX abstraction. */ readonly enabled: v.SchemaWithPipe<readonly [v.BooleanSchema<undefined>, v.DescriptionAction<boolean, "Whether to enable or disable HIP-3 DEX abstraction.">]>; /** Nonce (timestamp in ms) used to prevent replay attacks. */ readonly nonce: v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.UnionSchema<[v.StringSchema<undefined>, v.NumberSchema<undefined>], undefined>, v.TransformAction<any, number>, v.NumberSchema<undefined>, v.IntegerAction<number, undefined>, v.SafeIntegerAction<number, undefined>, v.MinValueAction<number, 0, undefined>]>, v.DescriptionAction<number, "Nonce (timestamp in ms) used to prevent replay attacks.">]>; }, undefined>, "entries" | "~types" | "~run" | "~standard"> & { readonly entries: Omit<{ /** Type of action. */ readonly type: v.SchemaWithPipe<readonly [v.LiteralSchema<"userDexAbstraction", undefined>, v.DescriptionAction<"userDexAbstraction", "Type of action.">]>; /** Chain ID in hex format for EIP-712 signing. */ readonly signatureChainId: v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.StringSchema<undefined>, v.RegexAction<string, undefined>, v.TransformAction<string, `0x${string}`>]>, v.DescriptionAction<`0x${string}`, "Chain ID in hex format for EIP-712 signing.">]>; /** HyperLiquid network type. */ readonly hyperliquidChain: v.SchemaWithPipe<readonly [v.PicklistSchema<["Mainnet", "Testnet"], undefined>, v.DescriptionAction<"Testnet" | "Mainnet", "HyperLiquid network type.">]>; /** User address. */ readonly user: v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.StringSchema<undefined>, v.RegexAction<string, undefined>, v.TransformAction<string, `0x${string}`>]>, v.LengthAction<`0x${string}`, 42, undefined>]>, v.DescriptionAction<`0x${string}`, "User address.">]>; /** Whether to enable or disable HIP-3 DEX abstraction. */ readonly enabled: v.SchemaWithPipe<readonly [v.BooleanSchema<undefined>, v.DescriptionAction<boolean, "Whether to enable or disable HIP-3 DEX abstraction.">]>; /** Nonce (timestamp in ms) used to prevent replay attacks. */ readonly nonce: v.SchemaWithPipe<readonly [v.SchemaWithPipe<readonly [v.UnionSchema<[v.StringSchema<undefined>, v.NumberSchema<undefined>], undefined>, v.TransformAction<any, number>, v.NumberSchema<undefined>, v.IntegerAction<number, undefined>, v.SafeIntegerAction<number, undefined>, v.MinValueAction<number, 0, undefined>]>, v.DescriptionAction<number, "Nonce (timestamp in ms) used to prevent replay attacks.">]>; }, "type" | "nonce" | "signatureChainId" | "hyperliquidChain">; readonly "~standard": v.StandardProps<{ user: string; enabled: boolean; }, { user: `0x${string}`; enabled: boolean; }>; readonly "~run": (dataset: v.UnknownDataset, config: v.Config<v.BaseIssue<unknown>>) => v.OutputDataset<{ user: `0x${string}`; enabled: boolean; }, v.StringIssue | v.ObjectIssue | v.RegexIssue<string> | v.LengthIssue<`0x${string}`, 42> | v.BooleanIssue>; readonly "~types"?: { readonly input: { user: string; enabled: boolean; }; readonly output: { user: `0x${string}`; enabled: boolean; }; readonly issue: v.StringIssue | v.ObjectIssue | v.RegexIssue<string> | v.LengthIssue<`0x${string}`, 42> | v.BooleanIssue; } | undefined; }; /** Action parameters for the {@linkcode userDexAbstraction} function. */ export type UserDexAbstractionParameters = v.InferInput<typeof UserDexAbstractionParameters>; /** Request options for the {@linkcode userDexAbstraction} function. */ export type UserDexAbstractionOptions = ExtractRequestOptions<v.InferInput<typeof UserDexAbstractionRequest>>; /** Successful variant of {@linkcode UserDexAbstractionResponse} without errors. */ export type UserDexAbstractionSuccessResponse = ExcludeErrorResponse<UserDexAbstractionResponse>; /** EIP-712 types for the {@linkcode userDexAbstraction} function. */ export declare const UserDexAbstractionTypes: { "HyperliquidTransaction:UserDexAbstraction": { name: string; type: string; }[]; }; /** * Enable/disable HIP-3 DEX abstraction. * * @param config - General configuration for Exchange API requests. * @param params - Parameters specific to the API request. * @param opts - Request execution options. * * @returns Successful response without specific data. * * @throws {ValiError} When the request parameters fail validation (before sending). * @throws {TransportError} When the transport layer throws an error. * @throws {ApiRequestError} When the API returns an unsuccessful response. * * @example * ```ts * import { HttpTransport } from "@nktkas/hyperliquid"; * import { userDexAbstraction } from "@nktkas/hyperliquid/api/exchange"; * import { privateKeyToAccount } from "npm:viem/accounts"; * * const wallet = privateKeyToAccount("0x..."); // viem or ethers * const transport = new HttpTransport(); // or `WebSocketTransport` * * await userDexAbstraction( * { transport, wallet }, * { user: "0x...", enabled: true }, * ); * ``` * * @see https://hyperliquid.gitbook.io/hyperliquid-docs/for-developers/api/exchange-endpoint#enable-hip-3-dex-abstraction */ export declare function userDexAbstraction(config: ExchangeConfig, params: UserDexAbstractionParameters, opts?: UserDexAbstractionOptions): Promise<UserDexAbstractionSuccessResponse>; export {}; //# sourceMappingURL=userDexAbstraction.d.ts.map