1218 lines
41 KiB
Rust
1218 lines
41 KiB
Rust
//! Instruction types
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use crate::error::TokenError;
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use solana_program::{
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instruction::{AccountMeta, Instruction},
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program_error::ProgramError,
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program_option::COption,
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pubkey::Pubkey,
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sysvar,
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};
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use std::convert::TryInto;
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use std::mem::size_of;
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/// Minimum number of multisignature signers (min N)
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pub const MIN_SIGNERS: usize = 1;
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/// Maximum number of multisignature signers (max N)
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pub const MAX_SIGNERS: usize = 11;
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/// Instructions supported by the token program.
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#[repr(C)]
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#[derive(Clone, Debug, PartialEq)]
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pub enum TokenInstruction {
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/// Initializes a new mint and optionally deposits all the newly minted
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/// tokens in an account.
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///
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/// The `InitializeMint` instruction requires no signers and MUST be
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/// included within the same Transaction as the system program's
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/// `CreateAccount` instruction that creates the account being initialized.
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/// Otherwise another party can acquire ownership of the uninitialized
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/// account.
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///
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/// Accounts expected by this instruction:
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///
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/// 0. `[writable]` The mint to initialize.
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/// 1. `[]` Rent sysvar
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///
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InitializeMint {
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/// Number of base 10 digits to the right of the decimal place.
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decimals: u8,
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/// The authority/multisignature to mint tokens.
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mint_authority: Pubkey,
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/// The freeze authority/multisignature of the mint.
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freeze_authority: COption<Pubkey>,
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},
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/// Initializes a new account to hold tokens. If this account is associated
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/// with the native mint then the token balance of the initialized account
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/// will be equal to the amount of SOL in the account. If this account is
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/// associated with another mint, that mint must be initialized before this
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/// command can succeed.
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///
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/// The `InitializeAccount` instruction requires no signers and MUST be
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/// included within the same Transaction as the system program's
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/// `CreateAccount` instruction that creates the account being initialized.
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/// Otherwise another party can acquire ownership of the uninitialized
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/// account.
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///
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/// Accounts expected by this instruction:
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///
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/// 0. `[writable]` The account to initialize.
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/// 1. `[]` The mint this account will be associated with.
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/// 2. `[]` The new account's owner/multisignature.
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/// 3. `[]` Rent sysvar
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InitializeAccount,
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/// Initializes a multisignature account with N provided signers.
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///
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/// Multisignature accounts can used in place of any single owner/delegate
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/// accounts in any token instruction that require an owner/delegate to be
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/// present. The variant field represents the number of signers (M)
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/// required to validate this multisignature account.
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///
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/// The `InitializeMultisig` instruction requires no signers and MUST be
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/// included within the same Transaction as the system program's
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/// `CreateAccount` instruction that creates the account being initialized.
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/// Otherwise another party can acquire ownership of the uninitialized
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/// account.
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///
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/// Accounts expected by this instruction:
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///
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/// 0. `[writable]` The multisignature account to initialize.
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/// 1. `[]` Rent sysvar
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/// 2. ..2+N. `[]` The signer accounts, must equal to N where 1 <= N <=
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/// 11.
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InitializeMultisig {
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/// The number of signers (M) required to validate this multisignature
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/// account.
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m: u8,
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},
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/// Transfers tokens from one account to another either directly or via a
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/// delegate. If this account is associated with the native mint then equal
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/// amounts of SOL and Tokens will be transferred to the destination
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/// account.
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///
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/// Accounts expected by this instruction:
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///
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/// * Single owner/delegate
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/// 0. `[writable]` The source account.
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/// 1. `[writable]` The destination account.
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/// 2. `[signer]` The source account's owner/delegate.
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///
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/// * Multisignature owner/delegate
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/// 0. `[writable]` The source account.
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/// 1. `[writable]` The destination account.
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/// 2. `[]` The source account's multisignature owner/delegate.
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/// 3. ..3+M `[signer]` M signer accounts.
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Transfer {
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/// The amount of tokens to transfer.
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amount: u64,
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},
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/// Approves a delegate. A delegate is given the authority over tokens on
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/// behalf of the source account's owner.
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///
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/// Accounts expected by this instruction:
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///
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/// * Single owner
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/// 0. `[writable]` The source account.
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/// 1. `[]` The delegate.
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/// 2. `[signer]` The source account owner.
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///
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/// * Multisignature owner
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/// 0. `[writable]` The source account.
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/// 1. `[]` The delegate.
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/// 2. `[]` The source account's multisignature owner.
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/// 3. ..3+M `[signer]` M signer accounts
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Approve {
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/// The amount of tokens the delegate is approved for.
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amount: u64,
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},
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/// Revokes the delegate's authority.
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///
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/// Accounts expected by this instruction:
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///
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/// * Single owner
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/// 0. `[writable]` The source account.
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/// 1. `[signer]` The source account owner.
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///
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/// * Multisignature owner
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/// 0. `[writable]` The source account.
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/// 1. `[]` The source account's multisignature owner.
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/// 2. ..2+M `[signer]` M signer accounts
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Revoke,
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/// Sets a new authority of a mint or account.
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///
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/// Accounts expected by this instruction:
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///
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/// * Single authority
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/// 0. `[writable]` The mint or account to change the authority of.
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/// 1. `[signer]` The current authority of the mint or account.
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///
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/// * Multisignature authority
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/// 0. `[writable]` The mint or account to change the authority of.
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/// 1. `[]` The mint's or account's current multisignature authority.
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/// 2. ..2+M `[signer]` M signer accounts
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SetAuthority {
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/// The type of authority to update.
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authority_type: AuthorityType,
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/// The new authority
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new_authority: COption<Pubkey>,
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},
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/// Mints new tokens to an account. The native mint does not support
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/// minting.
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///
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/// Accounts expected by this instruction:
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///
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/// * Single authority
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/// 0. `[writable]` The mint.
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/// 1. `[writable]` The account to mint tokens to.
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/// 2. `[signer]` The mint's minting authority.
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///
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/// * Multisignature authority
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/// 0. `[writable]` The mint.
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/// 1. `[writable]` The account to mint tokens to.
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/// 2. `[]` The mint's multisignature mint-tokens authority.
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/// 3. ..3+M `[signer]` M signer accounts.
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MintTo {
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/// The amount of new tokens to mint.
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amount: u64,
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},
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/// Burns tokens by removing them from an account. `Burn` does not support
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/// accounts associated with the native mint, use `CloseAccount` instead.
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///
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/// Accounts expected by this instruction:
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///
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/// * Single owner/delegate
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/// 0. `[writable]` The account to burn from.
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/// 1. `[writable]` The token mint.
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/// 2. `[signer]` The account's owner/delegate.
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///
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/// * Multisignature owner/delegate
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/// 0. `[writable]` The account to burn from.
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/// 1. `[writable]` The token mint.
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/// 2. `[]` The account's multisignature owner/delegate.
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/// 3. ..3+M `[signer]` M signer accounts.
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Burn {
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/// The amount of tokens to burn.
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amount: u64,
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},
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/// Close an account by transferring all its SOL to the destination account.
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/// Non-native accounts may only be closed if its token amount is zero.
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///
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/// Accounts expected by this instruction:
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///
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/// * Single owner
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/// 0. `[writable]` The account to close.
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/// 1. `[writable]` The destination account.
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/// 2. `[signer]` The account's owner.
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///
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/// * Multisignature owner
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/// 0. `[writable]` The account to close.
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/// 1. `[writable]` The destination account.
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/// 2. `[]` The account's multisignature owner.
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/// 3. ..3+M `[signer]` M signer accounts.
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CloseAccount,
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/// Freeze an Initialized account using the Mint's freeze_authority (if
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/// set).
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///
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/// Accounts expected by this instruction:
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///
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/// * Single owner
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/// 0. `[writable]` The account to freeze.
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/// 1. `[]` The token mint.
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/// 2. `[signer]` The mint freeze authority.
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///
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/// * Multisignature owner
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/// 0. `[writable]` The account to freeze.
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/// 1. `[]` The token mint.
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/// 2. `[]` The mint's multisignature freeze authority.
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/// 3. ..3+M `[signer]` M signer accounts.
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FreezeAccount,
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/// Thaw a Frozen account using the Mint's freeze_authority (if set).
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///
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/// Accounts expected by this instruction:
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///
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/// * Single owner
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/// 0. `[writable]` The account to freeze.
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/// 1. `[]` The token mint.
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/// 2. `[signer]` The mint freeze authority.
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///
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/// * Multisignature owner
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/// 0. `[writable]` The account to freeze.
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/// 1. `[]` The token mint.
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/// 2. `[]` The mint's multisignature freeze authority.
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/// 3. ..3+M `[signer]` M signer accounts.
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ThawAccount,
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/// Transfers tokens from one account to another either directly or via a
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/// delegate. If this account is associated with the native mint then equal
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/// amounts of SOL and Tokens will be transferred to the destination
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/// account.
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///
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/// This instruction differs from Transfer in that the token mint and
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/// decimals value is asserted by the caller. This may be useful when
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/// creating transactions offline or within a hardware wallet.
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///
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/// Accounts expected by this instruction:
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///
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/// * Single owner/delegate
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/// 0. `[writable]` The source account.
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/// 1. `[]` The token mint.
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/// 2. `[writable]` The destination account.
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/// 3. `[signer]` The source account's owner/delegate.
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///
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/// * Multisignature owner/delegate
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/// 0. `[writable]` The source account.
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/// 1. `[]` The token mint.
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/// 2. `[writable]` The destination account.
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/// 3. `[]` The source account's multisignature owner/delegate.
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/// 4. ..4+M `[signer]` M signer accounts.
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Transfer2 {
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/// The amount of tokens to transfer.
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amount: u64,
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/// Expected number of base 10 digits to the right of the decimal place.
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decimals: u8,
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},
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/// Approves a delegate. A delegate is given the authority over tokens on
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/// behalf of the source account's owner.
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///
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/// This instruction differs from Approve in that the token mint and
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/// decimals value is asserted by the caller. This may be useful when
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/// creating transactions offline or within a hardware wallet.
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///
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/// Accounts expected by this instruction:
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///
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/// * Single owner
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/// 0. `[writable]` The source account.
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/// 1. `[]` The token mint.
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/// 2. `[]` The delegate.
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/// 3. `[signer]` The source account owner.
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///
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/// * Multisignature owner
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/// 0. `[writable]` The source account.
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/// 1. `[]` The token mint.
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/// 2. `[]` The delegate.
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/// 3. `[]` The source account's multisignature owner.
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/// 4. ..4+M `[signer]` M signer accounts
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Approve2 {
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/// The amount of tokens the delegate is approved for.
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amount: u64,
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/// Expected number of base 10 digits to the right of the decimal place.
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decimals: u8,
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},
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/// Mints new tokens to an account. The native mint does not support
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/// minting.
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///
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/// This instruction differs from MintTo in that the decimals value is
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/// asserted by the caller. This may be useful when creating transactions
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/// offline or within a hardware wallet.
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///
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/// Accounts expected by this instruction:
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///
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/// * Single authority
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/// 0. `[writable]` The mint.
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/// 1. `[writable]` The account to mint tokens to.
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/// 2. `[signer]` The mint's minting authority.
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///
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/// * Multisignature authority
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/// 0. `[writable]` The mint.
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/// 1. `[writable]` The account to mint tokens to.
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/// 2. `[]` The mint's multisignature mint-tokens authority.
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/// 3. ..3+M `[signer]` M signer accounts.
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MintTo2 {
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/// The amount of new tokens to mint.
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amount: u64,
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/// Expected number of base 10 digits to the right of the decimal place.
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decimals: u8,
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},
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/// Burns tokens by removing them from an account. `Burn2` does not support
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/// accounts associated with the native mint, use `CloseAccount` instead.
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///
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/// This instruction differs from Burn in that the decimals value is
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/// asserted by the caller. This may be useful when creating transactions
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/// offline or within a hardware wallet.
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///
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/// Accounts expected by this instruction:
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///
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/// * Single owner/delegate
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/// 0. `[writable]` The account to burn from.
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/// 1. `[writable]` The token mint.
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/// 2. `[signer]` The account's owner/delegate.
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///
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/// * Multisignature owner/delegate
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/// 0. `[writable]` The account to burn from.
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/// 1. `[writable]` The token mint.
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/// 2. `[]` The account's multisignature owner/delegate.
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/// 3. ..3+M `[signer]` M signer accounts.
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Burn2 {
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/// The amount of tokens to burn.
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amount: u64,
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/// Expected number of base 10 digits to the right of the decimal place.
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decimals: u8,
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},
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}
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impl TokenInstruction {
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/// Unpacks a byte buffer into a [TokenInstruction](enum.TokenInstruction.html).
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pub fn unpack(input: &[u8]) -> Result<Self, ProgramError> {
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use TokenError::InvalidInstruction;
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let (&tag, rest) = input.split_first().ok_or(InvalidInstruction)?;
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Ok(match tag {
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0 => {
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let (&decimals, rest) = rest.split_first().ok_or(InvalidInstruction)?;
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let (mint_authority, rest) = Self::unpack_pubkey(rest)?;
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let (freeze_authority, _rest) = Self::unpack_pubkey_option(rest)?;
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Self::InitializeMint {
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mint_authority,
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freeze_authority,
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decimals,
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}
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}
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1 => Self::InitializeAccount,
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2 => {
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let &m = rest.get(0).ok_or(InvalidInstruction)?;
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Self::InitializeMultisig { m }
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}
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3 | 4 | 7 | 8 => {
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let amount = rest
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.get(..8)
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.and_then(|slice| slice.try_into().ok())
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.map(u64::from_le_bytes)
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.ok_or(InvalidInstruction)?;
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match tag {
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3 => Self::Transfer { amount },
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4 => Self::Approve { amount },
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7 => Self::MintTo { amount },
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8 => Self::Burn { amount },
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_ => unreachable!(),
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}
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}
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5 => Self::Revoke,
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6 => {
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let (authority_type, rest) = rest
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.split_first()
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.ok_or_else(|| ProgramError::from(InvalidInstruction))
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.and_then(|(&t, rest)| Ok((AuthorityType::from(t)?, rest)))?;
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let (new_authority, _rest) = Self::unpack_pubkey_option(rest)?;
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Self::SetAuthority {
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authority_type,
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new_authority,
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}
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}
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9 => Self::CloseAccount,
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10 => Self::FreezeAccount,
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11 => Self::ThawAccount,
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12 => {
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let (amount, rest) = rest.split_at(8);
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let amount = amount
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.try_into()
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.ok()
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.map(u64::from_le_bytes)
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.ok_or(InvalidInstruction)?;
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let (&decimals, _rest) = rest.split_first().ok_or(InvalidInstruction)?;
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Self::Transfer2 { amount, decimals }
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}
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13 => {
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let (amount, rest) = rest.split_at(8);
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let amount = amount
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.try_into()
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.ok()
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.map(u64::from_le_bytes)
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.ok_or(InvalidInstruction)?;
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let (&decimals, _rest) = rest.split_first().ok_or(InvalidInstruction)?;
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Self::Approve2 { amount, decimals }
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}
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14 => {
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let (amount, rest) = rest.split_at(8);
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let amount = amount
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.try_into()
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.ok()
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.map(u64::from_le_bytes)
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.ok_or(InvalidInstruction)?;
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let (&decimals, _rest) = rest.split_first().ok_or(InvalidInstruction)?;
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Self::MintTo2 { amount, decimals }
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}
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15 => {
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let (amount, rest) = rest.split_at(8);
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let amount = amount
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.try_into()
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.ok()
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.map(u64::from_le_bytes)
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.ok_or(InvalidInstruction)?;
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let (&decimals, _rest) = rest.split_first().ok_or(InvalidInstruction)?;
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Self::Burn2 { amount, decimals }
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}
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_ => return Err(TokenError::InvalidInstruction.into()),
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})
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}
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/// Packs a [TokenInstruction](enum.TokenInstruction.html) into a byte buffer.
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pub fn pack(&self) -> Vec<u8> {
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let mut buf = Vec::with_capacity(size_of::<Self>());
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match self {
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&Self::InitializeMint {
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ref mint_authority,
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ref freeze_authority,
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decimals,
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} => {
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buf.push(0);
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buf.push(decimals);
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buf.extend_from_slice(mint_authority.as_ref());
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Self::pack_pubkey_option(freeze_authority, &mut buf);
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}
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Self::InitializeAccount => buf.push(1),
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&Self::InitializeMultisig { m } => {
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buf.push(2);
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buf.push(m);
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}
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&Self::Transfer { amount } => {
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buf.push(3);
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buf.extend_from_slice(&amount.to_le_bytes());
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}
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&Self::Approve { amount } => {
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buf.push(4);
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buf.extend_from_slice(&amount.to_le_bytes());
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}
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&Self::MintTo { amount } => {
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buf.push(7);
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buf.extend_from_slice(&amount.to_le_bytes());
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}
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&Self::Burn { amount } => {
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buf.push(8);
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buf.extend_from_slice(&amount.to_le_bytes());
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}
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Self::Revoke => buf.push(5),
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Self::SetAuthority {
|
|
authority_type,
|
|
ref new_authority,
|
|
} => {
|
|
buf.push(6);
|
|
buf.push(authority_type.into());
|
|
Self::pack_pubkey_option(new_authority, &mut buf);
|
|
}
|
|
Self::CloseAccount => buf.push(9),
|
|
Self::FreezeAccount => buf.push(10),
|
|
Self::ThawAccount => buf.push(11),
|
|
&Self::Transfer2 { amount, decimals } => {
|
|
buf.push(12);
|
|
buf.extend_from_slice(&amount.to_le_bytes());
|
|
buf.push(decimals);
|
|
}
|
|
&Self::Approve2 { amount, decimals } => {
|
|
buf.push(13);
|
|
buf.extend_from_slice(&amount.to_le_bytes());
|
|
buf.push(decimals);
|
|
}
|
|
&Self::MintTo2 { amount, decimals } => {
|
|
buf.push(14);
|
|
buf.extend_from_slice(&amount.to_le_bytes());
|
|
buf.push(decimals);
|
|
}
|
|
&Self::Burn2 { amount, decimals } => {
|
|
buf.push(15);
|
|
buf.extend_from_slice(&amount.to_le_bytes());
|
|
buf.push(decimals);
|
|
}
|
|
};
|
|
buf
|
|
}
|
|
|
|
fn unpack_pubkey(input: &[u8]) -> Result<(Pubkey, &[u8]), ProgramError> {
|
|
if input.len() >= 32 {
|
|
let (key, rest) = input.split_at(32);
|
|
let pk = Pubkey::new(key);
|
|
Ok((pk, rest))
|
|
} else {
|
|
Err(TokenError::InvalidInstruction.into())
|
|
}
|
|
}
|
|
|
|
fn unpack_pubkey_option(input: &[u8]) -> Result<(COption<Pubkey>, &[u8]), ProgramError> {
|
|
match input.split_first() {
|
|
Option::Some((&0, rest)) => Ok((COption::None, rest)),
|
|
Option::Some((&1, rest)) if rest.len() >= 32 => {
|
|
let (key, rest) = rest.split_at(32);
|
|
let pk = Pubkey::new(key);
|
|
Ok((COption::Some(pk), rest))
|
|
}
|
|
_ => Err(TokenError::InvalidInstruction.into()),
|
|
}
|
|
}
|
|
|
|
fn pack_pubkey_option(value: &COption<Pubkey>, buf: &mut Vec<u8>) {
|
|
match *value {
|
|
COption::Some(ref key) => {
|
|
buf.push(1);
|
|
buf.extend_from_slice(&key.to_bytes());
|
|
}
|
|
COption::None => buf.push(0),
|
|
}
|
|
}
|
|
}
|
|
|
|
/// Specifies the authority type for SetAuthority instructions
|
|
#[repr(u8)]
|
|
#[derive(Clone, Debug, PartialEq)]
|
|
pub enum AuthorityType {
|
|
/// Authority to mint new tokens
|
|
MintTokens,
|
|
/// Authority to freeze any account associated with the Mint
|
|
FreezeAccount,
|
|
/// Owner of a given token account
|
|
AccountOwner,
|
|
/// Authority to close a token account
|
|
CloseAccount,
|
|
}
|
|
|
|
impl AuthorityType {
|
|
fn into(&self) -> u8 {
|
|
match self {
|
|
AuthorityType::MintTokens => 0,
|
|
AuthorityType::FreezeAccount => 1,
|
|
AuthorityType::AccountOwner => 2,
|
|
AuthorityType::CloseAccount => 3,
|
|
}
|
|
}
|
|
|
|
fn from(index: u8) -> Result<Self, ProgramError> {
|
|
match index {
|
|
0 => Ok(AuthorityType::MintTokens),
|
|
1 => Ok(AuthorityType::FreezeAccount),
|
|
2 => Ok(AuthorityType::AccountOwner),
|
|
3 => Ok(AuthorityType::CloseAccount),
|
|
_ => Err(TokenError::InvalidInstruction.into()),
|
|
}
|
|
}
|
|
}
|
|
|
|
/// Creates a `InitializeMint` instruction.
|
|
pub fn initialize_mint(
|
|
token_program_id: &Pubkey,
|
|
mint_pubkey: &Pubkey,
|
|
mint_authority_pubkey: &Pubkey,
|
|
freeze_authority_pubkey: Option<&Pubkey>,
|
|
decimals: u8,
|
|
) -> Result<Instruction, ProgramError> {
|
|
let freeze_authority = freeze_authority_pubkey.cloned().into();
|
|
let data = TokenInstruction::InitializeMint {
|
|
mint_authority: *mint_authority_pubkey,
|
|
freeze_authority,
|
|
decimals,
|
|
}
|
|
.pack();
|
|
|
|
let accounts = vec![
|
|
AccountMeta::new(*mint_pubkey, false),
|
|
AccountMeta::new_readonly(sysvar::rent::id(), false),
|
|
];
|
|
|
|
Ok(Instruction {
|
|
program_id: *token_program_id,
|
|
accounts,
|
|
data,
|
|
})
|
|
}
|
|
|
|
/// Creates a `InitializeAccount` instruction.
|
|
pub fn initialize_account(
|
|
token_program_id: &Pubkey,
|
|
account_pubkey: &Pubkey,
|
|
mint_pubkey: &Pubkey,
|
|
owner_pubkey: &Pubkey,
|
|
) -> Result<Instruction, ProgramError> {
|
|
let data = TokenInstruction::InitializeAccount.pack(); // TODO do we need to return result?
|
|
|
|
let accounts = vec![
|
|
AccountMeta::new(*account_pubkey, false),
|
|
AccountMeta::new_readonly(*mint_pubkey, false),
|
|
AccountMeta::new_readonly(*owner_pubkey, false),
|
|
AccountMeta::new_readonly(sysvar::rent::id(), false),
|
|
];
|
|
|
|
Ok(Instruction {
|
|
program_id: *token_program_id,
|
|
accounts,
|
|
data,
|
|
})
|
|
}
|
|
|
|
/// Creates a `InitializeMultisig` instruction.
|
|
pub fn initialize_multisig(
|
|
token_program_id: &Pubkey,
|
|
multisig_pubkey: &Pubkey,
|
|
signer_pubkeys: &[&Pubkey],
|
|
m: u8,
|
|
) -> Result<Instruction, ProgramError> {
|
|
if !is_valid_signer_index(m as usize)
|
|
|| !is_valid_signer_index(signer_pubkeys.len())
|
|
|| m as usize > signer_pubkeys.len()
|
|
{
|
|
return Err(ProgramError::MissingRequiredSignature);
|
|
}
|
|
let data = TokenInstruction::InitializeMultisig { m }.pack();
|
|
|
|
let mut accounts = Vec::with_capacity(1 + 1 + signer_pubkeys.len());
|
|
accounts.push(AccountMeta::new(*multisig_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(sysvar::rent::id(), false));
|
|
for signer_pubkey in signer_pubkeys.iter() {
|
|
accounts.push(AccountMeta::new_readonly(**signer_pubkey, false));
|
|
}
|
|
|
|
Ok(Instruction {
|
|
program_id: *token_program_id,
|
|
accounts,
|
|
data,
|
|
})
|
|
}
|
|
|
|
/// Creates a `Transfer` instruction.
|
|
pub fn transfer(
|
|
token_program_id: &Pubkey,
|
|
source_pubkey: &Pubkey,
|
|
destination_pubkey: &Pubkey,
|
|
authority_pubkey: &Pubkey,
|
|
signer_pubkeys: &[&Pubkey],
|
|
amount: u64,
|
|
) -> Result<Instruction, ProgramError> {
|
|
let data = TokenInstruction::Transfer { amount }.pack();
|
|
|
|
let mut accounts = Vec::with_capacity(3 + signer_pubkeys.len());
|
|
accounts.push(AccountMeta::new(*source_pubkey, false));
|
|
accounts.push(AccountMeta::new(*destination_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(
|
|
*authority_pubkey,
|
|
signer_pubkeys.is_empty(),
|
|
));
|
|
for signer_pubkey in signer_pubkeys.iter() {
|
|
accounts.push(AccountMeta::new_readonly(**signer_pubkey, true));
|
|
}
|
|
|
|
Ok(Instruction {
|
|
program_id: *token_program_id,
|
|
accounts,
|
|
data,
|
|
})
|
|
}
|
|
|
|
/// Creates an `Approve` instruction.
|
|
pub fn approve(
|
|
token_program_id: &Pubkey,
|
|
source_pubkey: &Pubkey,
|
|
delegate_pubkey: &Pubkey,
|
|
owner_pubkey: &Pubkey,
|
|
signer_pubkeys: &[&Pubkey],
|
|
amount: u64,
|
|
) -> Result<Instruction, ProgramError> {
|
|
let data = TokenInstruction::Approve { amount }.pack();
|
|
|
|
let mut accounts = Vec::with_capacity(3 + signer_pubkeys.len());
|
|
accounts.push(AccountMeta::new(*source_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(*delegate_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(
|
|
*owner_pubkey,
|
|
signer_pubkeys.is_empty(),
|
|
));
|
|
for signer_pubkey in signer_pubkeys.iter() {
|
|
accounts.push(AccountMeta::new_readonly(**signer_pubkey, true));
|
|
}
|
|
|
|
Ok(Instruction {
|
|
program_id: *token_program_id,
|
|
accounts,
|
|
data,
|
|
})
|
|
}
|
|
|
|
/// Creates a `Revoke` instruction.
|
|
pub fn revoke(
|
|
token_program_id: &Pubkey,
|
|
source_pubkey: &Pubkey,
|
|
owner_pubkey: &Pubkey,
|
|
signer_pubkeys: &[&Pubkey],
|
|
) -> Result<Instruction, ProgramError> {
|
|
let data = TokenInstruction::Revoke.pack();
|
|
|
|
let mut accounts = Vec::with_capacity(2 + signer_pubkeys.len());
|
|
accounts.push(AccountMeta::new(*source_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(
|
|
*owner_pubkey,
|
|
signer_pubkeys.is_empty(),
|
|
));
|
|
for signer_pubkey in signer_pubkeys.iter() {
|
|
accounts.push(AccountMeta::new_readonly(**signer_pubkey, true));
|
|
}
|
|
|
|
Ok(Instruction {
|
|
program_id: *token_program_id,
|
|
accounts,
|
|
data,
|
|
})
|
|
}
|
|
|
|
/// Creates a `SetAuthority` instruction.
|
|
pub fn set_authority(
|
|
token_program_id: &Pubkey,
|
|
owned_pubkey: &Pubkey,
|
|
new_authority_pubkey: Option<&Pubkey>,
|
|
authority_type: AuthorityType,
|
|
owner_pubkey: &Pubkey,
|
|
signer_pubkeys: &[&Pubkey],
|
|
) -> Result<Instruction, ProgramError> {
|
|
let new_authority = new_authority_pubkey.cloned().into();
|
|
let data = TokenInstruction::SetAuthority {
|
|
authority_type,
|
|
new_authority,
|
|
}
|
|
.pack();
|
|
|
|
let mut accounts = Vec::with_capacity(3 + signer_pubkeys.len());
|
|
accounts.push(AccountMeta::new(*owned_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(
|
|
*owner_pubkey,
|
|
signer_pubkeys.is_empty(),
|
|
));
|
|
for signer_pubkey in signer_pubkeys.iter() {
|
|
accounts.push(AccountMeta::new_readonly(**signer_pubkey, true));
|
|
}
|
|
|
|
Ok(Instruction {
|
|
program_id: *token_program_id,
|
|
accounts,
|
|
data,
|
|
})
|
|
}
|
|
|
|
/// Creates a `MintTo` instruction.
|
|
pub fn mint_to(
|
|
token_program_id: &Pubkey,
|
|
mint_pubkey: &Pubkey,
|
|
account_pubkey: &Pubkey,
|
|
owner_pubkey: &Pubkey,
|
|
signer_pubkeys: &[&Pubkey],
|
|
amount: u64,
|
|
) -> Result<Instruction, ProgramError> {
|
|
let data = TokenInstruction::MintTo { amount }.pack();
|
|
|
|
let mut accounts = Vec::with_capacity(3 + signer_pubkeys.len());
|
|
accounts.push(AccountMeta::new(*mint_pubkey, false));
|
|
accounts.push(AccountMeta::new(*account_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(
|
|
*owner_pubkey,
|
|
signer_pubkeys.is_empty(),
|
|
));
|
|
for signer_pubkey in signer_pubkeys.iter() {
|
|
accounts.push(AccountMeta::new_readonly(**signer_pubkey, true));
|
|
}
|
|
|
|
Ok(Instruction {
|
|
program_id: *token_program_id,
|
|
accounts,
|
|
data,
|
|
})
|
|
}
|
|
|
|
/// Creates a `Burn` instruction.
|
|
pub fn burn(
|
|
token_program_id: &Pubkey,
|
|
account_pubkey: &Pubkey,
|
|
mint_pubkey: &Pubkey,
|
|
authority_pubkey: &Pubkey,
|
|
signer_pubkeys: &[&Pubkey],
|
|
amount: u64,
|
|
) -> Result<Instruction, ProgramError> {
|
|
let data = TokenInstruction::Burn { amount }.pack();
|
|
|
|
let mut accounts = Vec::with_capacity(3 + signer_pubkeys.len());
|
|
accounts.push(AccountMeta::new(*account_pubkey, false));
|
|
accounts.push(AccountMeta::new(*mint_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(
|
|
*authority_pubkey,
|
|
signer_pubkeys.is_empty(),
|
|
));
|
|
for signer_pubkey in signer_pubkeys.iter() {
|
|
accounts.push(AccountMeta::new_readonly(**signer_pubkey, true));
|
|
}
|
|
|
|
Ok(Instruction {
|
|
program_id: *token_program_id,
|
|
accounts,
|
|
data,
|
|
})
|
|
}
|
|
|
|
/// Creates a `CloseAccount` instruction.
|
|
pub fn close_account(
|
|
token_program_id: &Pubkey,
|
|
account_pubkey: &Pubkey,
|
|
destination_pubkey: &Pubkey,
|
|
owner_pubkey: &Pubkey,
|
|
signer_pubkeys: &[&Pubkey],
|
|
) -> Result<Instruction, ProgramError> {
|
|
let data = TokenInstruction::CloseAccount.pack();
|
|
|
|
let mut accounts = Vec::with_capacity(3 + signer_pubkeys.len());
|
|
accounts.push(AccountMeta::new(*account_pubkey, false));
|
|
accounts.push(AccountMeta::new(*destination_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(
|
|
*owner_pubkey,
|
|
signer_pubkeys.is_empty(),
|
|
));
|
|
for signer_pubkey in signer_pubkeys.iter() {
|
|
accounts.push(AccountMeta::new_readonly(**signer_pubkey, true));
|
|
}
|
|
|
|
Ok(Instruction {
|
|
program_id: *token_program_id,
|
|
accounts,
|
|
data,
|
|
})
|
|
}
|
|
|
|
/// Creates a `FreezeAccount` instruction.
|
|
pub fn freeze_account(
|
|
token_program_id: &Pubkey,
|
|
account_pubkey: &Pubkey,
|
|
mint_pubkey: &Pubkey,
|
|
owner_pubkey: &Pubkey,
|
|
signer_pubkeys: &[&Pubkey],
|
|
) -> Result<Instruction, ProgramError> {
|
|
let data = TokenInstruction::FreezeAccount.pack();
|
|
|
|
let mut accounts = Vec::with_capacity(3 + signer_pubkeys.len());
|
|
accounts.push(AccountMeta::new(*account_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(*mint_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(
|
|
*owner_pubkey,
|
|
signer_pubkeys.is_empty(),
|
|
));
|
|
for signer_pubkey in signer_pubkeys.iter() {
|
|
accounts.push(AccountMeta::new_readonly(**signer_pubkey, true));
|
|
}
|
|
|
|
Ok(Instruction {
|
|
program_id: *token_program_id,
|
|
accounts,
|
|
data,
|
|
})
|
|
}
|
|
|
|
/// Creates a `ThawAccount` instruction.
|
|
pub fn thaw_account(
|
|
token_program_id: &Pubkey,
|
|
account_pubkey: &Pubkey,
|
|
mint_pubkey: &Pubkey,
|
|
owner_pubkey: &Pubkey,
|
|
signer_pubkeys: &[&Pubkey],
|
|
) -> Result<Instruction, ProgramError> {
|
|
let data = TokenInstruction::ThawAccount.pack();
|
|
|
|
let mut accounts = Vec::with_capacity(3 + signer_pubkeys.len());
|
|
accounts.push(AccountMeta::new(*account_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(*mint_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(
|
|
*owner_pubkey,
|
|
signer_pubkeys.is_empty(),
|
|
));
|
|
for signer_pubkey in signer_pubkeys.iter() {
|
|
accounts.push(AccountMeta::new_readonly(**signer_pubkey, true));
|
|
}
|
|
|
|
Ok(Instruction {
|
|
program_id: *token_program_id,
|
|
accounts,
|
|
data,
|
|
})
|
|
}
|
|
|
|
/// Creates a `Transfer2` instruction.
|
|
#[allow(clippy::too_many_arguments)]
|
|
pub fn transfer2(
|
|
token_program_id: &Pubkey,
|
|
source_pubkey: &Pubkey,
|
|
mint_pubkey: &Pubkey,
|
|
destination_pubkey: &Pubkey,
|
|
authority_pubkey: &Pubkey,
|
|
signer_pubkeys: &[&Pubkey],
|
|
amount: u64,
|
|
decimals: u8,
|
|
) -> Result<Instruction, ProgramError> {
|
|
let data = TokenInstruction::Transfer2 { amount, decimals }.pack();
|
|
|
|
let mut accounts = Vec::with_capacity(4 + signer_pubkeys.len());
|
|
accounts.push(AccountMeta::new(*source_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(*mint_pubkey, false));
|
|
accounts.push(AccountMeta::new(*destination_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(
|
|
*authority_pubkey,
|
|
signer_pubkeys.is_empty(),
|
|
));
|
|
for signer_pubkey in signer_pubkeys.iter() {
|
|
accounts.push(AccountMeta::new_readonly(**signer_pubkey, true));
|
|
}
|
|
|
|
Ok(Instruction {
|
|
program_id: *token_program_id,
|
|
accounts,
|
|
data,
|
|
})
|
|
}
|
|
|
|
/// Creates an `Approve2` instruction.
|
|
#[allow(clippy::too_many_arguments)]
|
|
pub fn approve2(
|
|
token_program_id: &Pubkey,
|
|
source_pubkey: &Pubkey,
|
|
mint_pubkey: &Pubkey,
|
|
delegate_pubkey: &Pubkey,
|
|
owner_pubkey: &Pubkey,
|
|
signer_pubkeys: &[&Pubkey],
|
|
amount: u64,
|
|
decimals: u8,
|
|
) -> Result<Instruction, ProgramError> {
|
|
let data = TokenInstruction::Approve2 { amount, decimals }.pack();
|
|
|
|
let mut accounts = Vec::with_capacity(4 + signer_pubkeys.len());
|
|
accounts.push(AccountMeta::new(*source_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(*mint_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(*delegate_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(
|
|
*owner_pubkey,
|
|
signer_pubkeys.is_empty(),
|
|
));
|
|
for signer_pubkey in signer_pubkeys.iter() {
|
|
accounts.push(AccountMeta::new_readonly(**signer_pubkey, true));
|
|
}
|
|
|
|
Ok(Instruction {
|
|
program_id: *token_program_id,
|
|
accounts,
|
|
data,
|
|
})
|
|
}
|
|
|
|
/// Creates a `MintTo2` instruction.
|
|
pub fn mint_to2(
|
|
token_program_id: &Pubkey,
|
|
mint_pubkey: &Pubkey,
|
|
account_pubkey: &Pubkey,
|
|
owner_pubkey: &Pubkey,
|
|
signer_pubkeys: &[&Pubkey],
|
|
amount: u64,
|
|
decimals: u8,
|
|
) -> Result<Instruction, ProgramError> {
|
|
let data = TokenInstruction::MintTo2 { amount, decimals }.pack();
|
|
|
|
let mut accounts = Vec::with_capacity(3 + signer_pubkeys.len());
|
|
accounts.push(AccountMeta::new(*mint_pubkey, false));
|
|
accounts.push(AccountMeta::new(*account_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(
|
|
*owner_pubkey,
|
|
signer_pubkeys.is_empty(),
|
|
));
|
|
for signer_pubkey in signer_pubkeys.iter() {
|
|
accounts.push(AccountMeta::new_readonly(**signer_pubkey, true));
|
|
}
|
|
|
|
Ok(Instruction {
|
|
program_id: *token_program_id,
|
|
accounts,
|
|
data,
|
|
})
|
|
}
|
|
|
|
/// Creates a `Burn2` instruction.
|
|
pub fn burn2(
|
|
token_program_id: &Pubkey,
|
|
account_pubkey: &Pubkey,
|
|
mint_pubkey: &Pubkey,
|
|
authority_pubkey: &Pubkey,
|
|
signer_pubkeys: &[&Pubkey],
|
|
amount: u64,
|
|
decimals: u8,
|
|
) -> Result<Instruction, ProgramError> {
|
|
let data = TokenInstruction::Burn2 { amount, decimals }.pack();
|
|
|
|
let mut accounts = Vec::with_capacity(3 + signer_pubkeys.len());
|
|
accounts.push(AccountMeta::new(*account_pubkey, false));
|
|
accounts.push(AccountMeta::new(*mint_pubkey, false));
|
|
accounts.push(AccountMeta::new_readonly(
|
|
*authority_pubkey,
|
|
signer_pubkeys.is_empty(),
|
|
));
|
|
for signer_pubkey in signer_pubkeys.iter() {
|
|
accounts.push(AccountMeta::new_readonly(**signer_pubkey, true));
|
|
}
|
|
|
|
Ok(Instruction {
|
|
program_id: *token_program_id,
|
|
accounts,
|
|
data,
|
|
})
|
|
}
|
|
|
|
/// Utility function that checks index is between MIN_SIGNERS and MAX_SIGNERS
|
|
pub fn is_valid_signer_index(index: usize) -> bool {
|
|
(MIN_SIGNERS..=MAX_SIGNERS).contains(&index)
|
|
}
|
|
|
|
#[cfg(test)]
|
|
mod test {
|
|
use super::*;
|
|
|
|
#[test]
|
|
fn test_instruction_packing() {
|
|
let check = TokenInstruction::InitializeMint {
|
|
decimals: 2,
|
|
mint_authority: Pubkey::new(&[1u8; 32]),
|
|
freeze_authority: COption::None,
|
|
};
|
|
let packed = check.pack();
|
|
let mut expect = Vec::from([0u8, 2]);
|
|
expect.extend_from_slice(&[1u8; 32]);
|
|
expect.extend_from_slice(&[0]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
|
|
let check = TokenInstruction::InitializeMint {
|
|
decimals: 2,
|
|
mint_authority: Pubkey::new(&[2u8; 32]),
|
|
freeze_authority: COption::Some(Pubkey::new(&[3u8; 32])),
|
|
};
|
|
let packed = check.pack();
|
|
let mut expect = vec![0u8, 2];
|
|
expect.extend_from_slice(&[2u8; 32]);
|
|
expect.extend_from_slice(&[1]);
|
|
expect.extend_from_slice(&[3u8; 32]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
|
|
let check = TokenInstruction::InitializeAccount;
|
|
let packed = check.pack();
|
|
let expect = Vec::from([1u8]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
|
|
let check = TokenInstruction::InitializeMultisig { m: 1 };
|
|
let packed = check.pack();
|
|
let expect = Vec::from([2u8, 1]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
|
|
let check = TokenInstruction::Transfer { amount: 1 };
|
|
let packed = check.pack();
|
|
let expect = Vec::from([3u8, 1, 0, 0, 0, 0, 0, 0, 0]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
|
|
let check = TokenInstruction::Approve { amount: 1 };
|
|
let packed = check.pack();
|
|
let expect = Vec::from([4u8, 1, 0, 0, 0, 0, 0, 0, 0]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
|
|
let check = TokenInstruction::Revoke;
|
|
let packed = check.pack();
|
|
let expect = Vec::from([5u8]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
|
|
let check = TokenInstruction::SetAuthority {
|
|
authority_type: AuthorityType::FreezeAccount,
|
|
new_authority: COption::Some(Pubkey::new(&[4u8; 32])),
|
|
};
|
|
let packed = check.pack();
|
|
let mut expect = Vec::from([6u8, 1]);
|
|
expect.extend_from_slice(&[1]);
|
|
expect.extend_from_slice(&[4u8; 32]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
|
|
let check = TokenInstruction::MintTo { amount: 1 };
|
|
let packed = check.pack();
|
|
let expect = Vec::from([7u8, 1, 0, 0, 0, 0, 0, 0, 0]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
|
|
let check = TokenInstruction::Burn { amount: 1 };
|
|
let packed = check.pack();
|
|
let expect = Vec::from([8u8, 1, 0, 0, 0, 0, 0, 0, 0]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
|
|
let check = TokenInstruction::CloseAccount;
|
|
let packed = check.pack();
|
|
let expect = Vec::from([9u8]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
|
|
let check = TokenInstruction::FreezeAccount;
|
|
let packed = check.pack();
|
|
let expect = Vec::from([10u8]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
|
|
let check = TokenInstruction::ThawAccount;
|
|
let packed = check.pack();
|
|
let expect = Vec::from([11u8]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
|
|
let check = TokenInstruction::Transfer2 {
|
|
amount: 1,
|
|
decimals: 2,
|
|
};
|
|
let packed = check.pack();
|
|
let expect = Vec::from([12u8, 1, 0, 0, 0, 0, 0, 0, 0, 2]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
|
|
let check = TokenInstruction::Approve2 {
|
|
amount: 1,
|
|
decimals: 2,
|
|
};
|
|
let packed = check.pack();
|
|
let expect = Vec::from([13u8, 1, 0, 0, 0, 0, 0, 0, 0, 2]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
|
|
let check = TokenInstruction::MintTo2 {
|
|
amount: 1,
|
|
decimals: 2,
|
|
};
|
|
let packed = check.pack();
|
|
let expect = Vec::from([14u8, 1, 0, 0, 0, 0, 0, 0, 0, 2]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
|
|
let check = TokenInstruction::Burn2 {
|
|
amount: 1,
|
|
decimals: 2,
|
|
};
|
|
let packed = check.pack();
|
|
let expect = Vec::from([15u8, 1, 0, 0, 0, 0, 0, 0, 0, 2]);
|
|
assert_eq!(packed, expect);
|
|
let unpacked = TokenInstruction::unpack(&expect).unwrap();
|
|
assert_eq!(unpacked, check);
|
|
}
|
|
}
|