chore: apply prettier
This commit is contained in:
364
worker/tests/wasm/bincode_js.d.ts
vendored
364
worker/tests/wasm/bincode_js.d.ts
vendored
@ -1,225 +1,225 @@
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/* tslint:disable */
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/* eslint-disable */
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/**
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* @param {any} val
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* @returns {any}
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*/
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* @param {any} val
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* @returns {any}
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*/
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export function bincode_js_deserialize(val: any): any;
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/**
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* @param {any} val
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* @returns {any}
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*/
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* @param {any} val
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* @returns {any}
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*/
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export function borsh_bpf_js_deserialize(val: any): any;
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/**
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* Initialize Javascript logging and panic handler
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*/
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* Initialize Javascript logging and panic handler
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*/
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export function solana_program_init(): void;
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/**
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* A hash; the 32-byte output of a hashing algorithm.
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*
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* This struct is used most often in `solana-sdk` and related crates to contain
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* a [SHA-256] hash, but may instead contain a [blake3] hash, as created by the
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* [`blake3`] module (and used in [`Message::hash`]).
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*
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* [SHA-256]: https://en.wikipedia.org/wiki/SHA-2
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* [blake3]: https://github.com/BLAKE3-team/BLAKE3
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* [`blake3`]: crate::blake3
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* [`Message::hash`]: crate::message::Message::hash
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*/
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* A hash; the 32-byte output of a hashing algorithm.
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*
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* This struct is used most often in `solana-sdk` and related crates to contain
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* a [SHA-256] hash, but may instead contain a [blake3] hash, as created by the
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* [`blake3`] module (and used in [`Message::hash`]).
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*
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* [SHA-256]: https://en.wikipedia.org/wiki/SHA-2
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* [blake3]: https://github.com/BLAKE3-team/BLAKE3
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* [`blake3`]: crate::blake3
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* [`Message::hash`]: crate::message::Message::hash
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*/
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export class Hash {
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free(): void;
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/**
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* Create a new Hash object
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*
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* * `value` - optional hash as a base58 encoded string, `Uint8Array`, `[number]`
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* @param {any} value
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*/
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/**
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* Create a new Hash object
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*
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* * `value` - optional hash as a base58 encoded string, `Uint8Array`, `[number]`
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* @param {any} value
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*/
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constructor(value: any);
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/**
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* Return the base58 string representation of the hash
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* @returns {string}
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*/
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/**
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* Return the base58 string representation of the hash
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* @returns {string}
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*/
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toString(): string;
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/**
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* Checks if two `Hash`s are equal
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* @param {Hash} other
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* @returns {boolean}
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*/
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/**
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* Checks if two `Hash`s are equal
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* @param {Hash} other
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* @returns {boolean}
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*/
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equals(other: Hash): boolean;
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/**
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* Return the `Uint8Array` representation of the hash
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* @returns {Uint8Array}
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*/
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/**
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* Return the `Uint8Array` representation of the hash
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* @returns {Uint8Array}
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*/
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toBytes(): Uint8Array;
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}
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/**
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* A directive for a single invocation of a Solana program.
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*
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* An instruction specifies which program it is calling, which accounts it may
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* read or modify, and additional data that serves as input to the program. One
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* or more instructions are included in transactions submitted by Solana
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* clients. Instructions are also used to describe [cross-program
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* invocations][cpi].
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*
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* [cpi]: https://docs.solana.com/developing/programming-model/calling-between-programs
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*
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* During execution, a program will receive a list of account data as one of
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* its arguments, in the same order as specified during `Instruction`
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* construction.
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*
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* While Solana is agnostic to the format of the instruction data, it has
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* built-in support for serialization via [`borsh`] and [`bincode`].
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*
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* [`borsh`]: https://docs.rs/borsh/latest/borsh/
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* [`bincode`]: https://docs.rs/bincode/latest/bincode/
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*
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* # Specifying account metadata
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*
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* When constructing an [`Instruction`], a list of all accounts that may be
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* read or written during the execution of that instruction must be supplied as
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* [`AccountMeta`] values.
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*
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* Any account whose data may be mutated by the program during execution must
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* be specified as writable. During execution, writing to an account that was
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* not specified as writable will cause the transaction to fail. Writing to an
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* account that is not owned by the program will cause the transaction to fail.
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*
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* Any account whose lamport balance may be mutated by the program during
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* execution must be specified as writable. During execution, mutating the
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* lamports of an account that was not specified as writable will cause the
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* transaction to fail. While _subtracting_ lamports from an account not owned
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* by the program will cause the transaction to fail, _adding_ lamports to any
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* account is allowed, as long is it is mutable.
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*
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* Accounts that are not read or written by the program may still be specified
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* in an `Instruction`'s account list. These will affect scheduling of program
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* execution by the runtime, but will otherwise be ignored.
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*
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* When building a transaction, the Solana runtime coalesces all accounts used
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* by all instructions in that transaction, along with accounts and permissions
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* required by the runtime, into a single account list. Some accounts and
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* account permissions required by the runtime to process a transaction are
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* _not_ required to be included in an `Instruction`s account list. These
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* include:
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*
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* - The program ID — it is a separate field of `Instruction`
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* - The transaction's fee-paying account — it is added during [`Message`]
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* construction. A program may still require the fee payer as part of the
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* account list if it directly references it.
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*
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* [`Message`]: crate::message::Message
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*
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* Programs may require signatures from some accounts, in which case they
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* should be specified as signers during `Instruction` construction. The
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* program must still validate during execution that the account is a signer.
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*/
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* A directive for a single invocation of a Solana program.
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*
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* An instruction specifies which program it is calling, which accounts it may
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* read or modify, and additional data that serves as input to the program. One
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* or more instructions are included in transactions submitted by Solana
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* clients. Instructions are also used to describe [cross-program
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* invocations][cpi].
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*
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* [cpi]: https://docs.solana.com/developing/programming-model/calling-between-programs
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*
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* During execution, a program will receive a list of account data as one of
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* its arguments, in the same order as specified during `Instruction`
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* construction.
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*
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* While Solana is agnostic to the format of the instruction data, it has
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* built-in support for serialization via [`borsh`] and [`bincode`].
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*
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* [`borsh`]: https://docs.rs/borsh/latest/borsh/
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* [`bincode`]: https://docs.rs/bincode/latest/bincode/
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*
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* # Specifying account metadata
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*
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* When constructing an [`Instruction`], a list of all accounts that may be
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* read or written during the execution of that instruction must be supplied as
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* [`AccountMeta`] values.
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*
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* Any account whose data may be mutated by the program during execution must
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* be specified as writable. During execution, writing to an account that was
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* not specified as writable will cause the transaction to fail. Writing to an
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* account that is not owned by the program will cause the transaction to fail.
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*
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* Any account whose lamport balance may be mutated by the program during
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* execution must be specified as writable. During execution, mutating the
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* lamports of an account that was not specified as writable will cause the
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* transaction to fail. While _subtracting_ lamports from an account not owned
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* by the program will cause the transaction to fail, _adding_ lamports to any
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* account is allowed, as long is it is mutable.
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*
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* Accounts that are not read or written by the program may still be specified
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* in an `Instruction`'s account list. These will affect scheduling of program
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* execution by the runtime, but will otherwise be ignored.
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*
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* When building a transaction, the Solana runtime coalesces all accounts used
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* by all instructions in that transaction, along with accounts and permissions
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* required by the runtime, into a single account list. Some accounts and
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* account permissions required by the runtime to process a transaction are
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* _not_ required to be included in an `Instruction`s account list. These
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* include:
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*
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* - The program ID — it is a separate field of `Instruction`
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* - The transaction's fee-paying account — it is added during [`Message`]
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* construction. A program may still require the fee payer as part of the
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* account list if it directly references it.
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*
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* [`Message`]: crate::message::Message
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*
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* Programs may require signatures from some accounts, in which case they
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* should be specified as signers during `Instruction` construction. The
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* program must still validate during execution that the account is a signer.
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*/
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export class Instruction {
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free(): void;
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}
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/**
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*/
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*/
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export class Instructions {
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free(): void;
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/**
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*/
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/**
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*/
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constructor();
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/**
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* @param {Instruction} instruction
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*/
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/**
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* @param {Instruction} instruction
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*/
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push(instruction: Instruction): void;
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}
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/**
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* A Solana transaction message (legacy).
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*
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* See the [`message`] module documentation for further description.
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*
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* [`message`]: crate::message
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*
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* Some constructors accept an optional `payer`, the account responsible for
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* paying the cost of executing a transaction. In most cases, callers should
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* specify the payer explicitly in these constructors. In some cases though,
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* the caller is not _required_ to specify the payer, but is still allowed to:
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* in the `Message` structure, the first account is always the fee-payer, so if
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* the caller has knowledge that the first account of the constructed
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* transaction's `Message` is both a signer and the expected fee-payer, then
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* redundantly specifying the fee-payer is not strictly required.
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*/
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* A Solana transaction message (legacy).
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*
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* See the [`message`] module documentation for further description.
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*
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* [`message`]: crate::message
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*
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* Some constructors accept an optional `payer`, the account responsible for
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* paying the cost of executing a transaction. In most cases, callers should
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* specify the payer explicitly in these constructors. In some cases though,
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* the caller is not _required_ to specify the payer, but is still allowed to:
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* in the `Message` structure, the first account is always the fee-payer, so if
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* the caller has knowledge that the first account of the constructed
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* transaction's `Message` is both a signer and the expected fee-payer, then
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* redundantly specifying the fee-payer is not strictly required.
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*/
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export class Message {
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free(): void;
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/**
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* The id of a recent ledger entry.
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*/
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/**
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* The id of a recent ledger entry.
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*/
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recent_blockhash: Hash;
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}
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/**
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* The address of a [Solana account][acc].
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*
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* Some account addresses are [ed25519] public keys, with corresponding secret
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* keys that are managed off-chain. Often, though, account addresses do not
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* have corresponding secret keys — as with [_program derived
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* addresses_][pdas] — or the secret key is not relevant to the operation
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* of a program, and may have even been disposed of. As running Solana programs
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* can not safely create or manage secret keys, the full [`Keypair`] is not
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* defined in `solana-program` but in `solana-sdk`.
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*
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* [acc]: https://docs.solana.com/developing/programming-model/accounts
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* [ed25519]: https://ed25519.cr.yp.to/
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* [pdas]: https://docs.solana.com/developing/programming-model/calling-between-programs#program-derived-addresses
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* [`Keypair`]: https://docs.rs/solana-sdk/latest/solana_sdk/signer/keypair/struct.Keypair.html
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*/
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* The address of a [Solana account][acc].
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*
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* Some account addresses are [ed25519] public keys, with corresponding secret
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* keys that are managed off-chain. Often, though, account addresses do not
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* have corresponding secret keys — as with [_program derived
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* addresses_][pdas] — or the secret key is not relevant to the operation
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* of a program, and may have even been disposed of. As running Solana programs
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* can not safely create or manage secret keys, the full [`Keypair`] is not
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* defined in `solana-program` but in `solana-sdk`.
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*
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* [acc]: https://docs.solana.com/developing/programming-model/accounts
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* [ed25519]: https://ed25519.cr.yp.to/
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* [pdas]: https://docs.solana.com/developing/programming-model/calling-between-programs#program-derived-addresses
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* [`Keypair`]: https://docs.rs/solana-sdk/latest/solana_sdk/signer/keypair/struct.Keypair.html
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*/
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export class Pubkey {
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free(): void;
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/**
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* Create a new Pubkey object
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*
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* * `value` - optional public key as a base58 encoded string, `Uint8Array`, `[number]`
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* @param {any} value
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*/
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/**
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* Create a new Pubkey object
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*
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* * `value` - optional public key as a base58 encoded string, `Uint8Array`, `[number]`
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* @param {any} value
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*/
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constructor(value: any);
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/**
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* Return the base58 string representation of the public key
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* @returns {string}
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*/
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/**
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* Return the base58 string representation of the public key
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* @returns {string}
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*/
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toString(): string;
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/**
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* Check if a `Pubkey` is on the ed25519 curve.
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* @returns {boolean}
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*/
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/**
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* Check if a `Pubkey` is on the ed25519 curve.
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* @returns {boolean}
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*/
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isOnCurve(): boolean;
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/**
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* Checks if two `Pubkey`s are equal
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* @param {Pubkey} other
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* @returns {boolean}
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*/
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/**
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* Checks if two `Pubkey`s are equal
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* @param {Pubkey} other
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* @returns {boolean}
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*/
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equals(other: Pubkey): boolean;
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/**
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* Return the `Uint8Array` representation of the public key
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* @returns {Uint8Array}
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*/
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/**
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* Return the `Uint8Array` representation of the public key
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* @returns {Uint8Array}
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*/
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toBytes(): Uint8Array;
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/**
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* Derive a Pubkey from another Pubkey, string seed, and a program id
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* @param {Pubkey} base
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* @param {string} seed
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* @param {Pubkey} owner
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* @returns {Pubkey}
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*/
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/**
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* Derive a Pubkey from another Pubkey, string seed, and a program id
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* @param {Pubkey} base
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* @param {string} seed
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* @param {Pubkey} owner
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* @returns {Pubkey}
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*/
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static createWithSeed(base: Pubkey, seed: string, owner: Pubkey): Pubkey;
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/**
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* Derive a program address from seeds and a program id
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* @param {any[]} seeds
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* @param {Pubkey} program_id
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* @returns {Pubkey}
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*/
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/**
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* Derive a program address from seeds and a program id
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* @param {any[]} seeds
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* @param {Pubkey} program_id
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* @returns {Pubkey}
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*/
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static createProgramAddress(seeds: any[], program_id: Pubkey): Pubkey;
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/**
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* Find a valid program address
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*
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* Returns:
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* * `[PubKey, number]` - the program address and bump seed
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* @param {any[]} seeds
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* @param {Pubkey} program_id
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* @returns {any}
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*/
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/**
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* Find a valid program address
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*
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* Returns:
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* * `[PubKey, number]` - the program address and bump seed
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* @param {any[]} seeds
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* @param {Pubkey} program_id
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* @returns {any}
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*/
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static findProgramAddress(seeds: any[], program_id: Pubkey): any;
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}
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|
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