use borsh::BorshDeserialize;
use borsh::BorshSerialize;
#[derive(Debug)]
pub struct SwapRouterBaseIn {
pub payer: solana_pubkey::Pubkey,
pub input_token_account: solana_pubkey::Pubkey,
pub input_token_mint: solana_pubkey::Pubkey,
pub token_program: solana_pubkey::Pubkey,
pub token_program2022: solana_pubkey::Pubkey,
pub memo_program: solana_pubkey::Pubkey,
}
impl SwapRouterBaseIn {
pub fn instruction(
&self,
args: SwapRouterBaseInInstructionArgs,
) -> solana_instruction::Instruction {
self.instruction_with_remaining_accounts(args, &[])
}
#[allow(clippy::arithmetic_side_effects)]
#[allow(clippy::vec_init_then_push)]
pub fn instruction_with_remaining_accounts(
&self,
args: SwapRouterBaseInInstructionArgs,
remaining_accounts: &[solana_instruction::AccountMeta],
) -> solana_instruction::Instruction {
let mut accounts = Vec::with_capacity(6 + remaining_accounts.len());
accounts.push(solana_instruction::AccountMeta::new_readonly(
self.payer, true,
));
accounts.push(solana_instruction::AccountMeta::new(
self.input_token_account,
false,
));
accounts.push(solana_instruction::AccountMeta::new(
self.input_token_mint,
false,
));
accounts.push(solana_instruction::AccountMeta::new_readonly(
self.token_program,
false,
));
accounts.push(solana_instruction::AccountMeta::new_readonly(
self.token_program2022,
false,
));
accounts.push(solana_instruction::AccountMeta::new_readonly(
self.memo_program,
false,
));
accounts.extend_from_slice(remaining_accounts);
let mut data = borsh::to_vec(&SwapRouterBaseInInstructionData::new()).unwrap();
let mut args = borsh::to_vec(&args).unwrap();
data.append(&mut args);
solana_instruction::Instruction {
program_id: crate::AMM_V3_ID,
accounts,
data,
}
}
}
#[derive(BorshSerialize, BorshDeserialize, Clone, Debug, Eq, PartialEq)]
#[cfg_attr(feature = "serde", derive(serde::Serialize, serde::Deserialize))]
pub struct SwapRouterBaseInInstructionData {
discriminator: [u8; 8],
}
impl SwapRouterBaseInInstructionData {
pub fn new() -> Self {
Self {
discriminator: [69, 125, 115, 218, 245, 186, 242, 196],
}
}
}
impl Default for SwapRouterBaseInInstructionData {
fn default() -> Self {
Self::new()
}
}
#[derive(BorshSerialize, BorshDeserialize, Clone, Debug, Eq, PartialEq)]
#[cfg_attr(feature = "serde", derive(serde::Serialize, serde::Deserialize))]
pub struct SwapRouterBaseInInstructionArgs {
pub amount_in: u64,
pub amount_out_minimum: u64,
}
#[derive(Clone, Debug, Default)]
pub struct SwapRouterBaseInBuilder {
payer: Option<solana_pubkey::Pubkey>,
input_token_account: Option<solana_pubkey::Pubkey>,
input_token_mint: Option<solana_pubkey::Pubkey>,
token_program: Option<solana_pubkey::Pubkey>,
token_program2022: Option<solana_pubkey::Pubkey>,
memo_program: Option<solana_pubkey::Pubkey>,
amount_in: Option<u64>,
amount_out_minimum: Option<u64>,
__remaining_accounts: Vec<solana_instruction::AccountMeta>,
}
impl SwapRouterBaseInBuilder {
pub fn new() -> Self {
Self::default()
}
#[inline(always)]
pub fn payer(&mut self, payer: solana_pubkey::Pubkey) -> &mut Self {
self.payer = Some(payer);
self
}
#[inline(always)]
pub fn input_token_account(&mut self, input_token_account: solana_pubkey::Pubkey) -> &mut Self {
self.input_token_account = Some(input_token_account);
self
}
#[inline(always)]
pub fn input_token_mint(&mut self, input_token_mint: solana_pubkey::Pubkey) -> &mut Self {
self.input_token_mint = Some(input_token_mint);
self
}
#[inline(always)]
pub fn token_program(&mut self, token_program: solana_pubkey::Pubkey) -> &mut Self {
self.token_program = Some(token_program);
self
}
#[inline(always)]
pub fn token_program2022(&mut self, token_program2022: solana_pubkey::Pubkey) -> &mut Self {
self.token_program2022 = Some(token_program2022);
self
}
#[inline(always)]
pub fn memo_program(&mut self, memo_program: solana_pubkey::Pubkey) -> &mut Self {
self.memo_program = Some(memo_program);
self
}
#[inline(always)]
pub fn amount_in(&mut self, amount_in: u64) -> &mut Self {
self.amount_in = Some(amount_in);
self
}
#[inline(always)]
pub fn amount_out_minimum(&mut self, amount_out_minimum: u64) -> &mut Self {
self.amount_out_minimum = Some(amount_out_minimum);
self
}
#[inline(always)]
pub fn add_remaining_account(&mut self, account: solana_instruction::AccountMeta) -> &mut Self {
self.__remaining_accounts.push(account);
self
}
#[inline(always)]
pub fn add_remaining_accounts(
&mut self,
accounts: &[solana_instruction::AccountMeta],
) -> &mut Self {
self.__remaining_accounts.extend_from_slice(accounts);
self
}
#[allow(clippy::clone_on_copy)]
pub fn instruction(&self) -> solana_instruction::Instruction {
let accounts = SwapRouterBaseIn {
payer: self.payer.expect("payer is not set"),
input_token_account: self
.input_token_account
.expect("input_token_account is not set"),
input_token_mint: self.input_token_mint.expect("input_token_mint is not set"),
token_program: self.token_program.unwrap_or(solana_pubkey::pubkey!(
"TokenkegQfeZyiNwAJbNbGKPFXCWuBvf9Ss623VQ5DA"
)),
token_program2022: self.token_program2022.unwrap_or(solana_pubkey::pubkey!(
"TokenzQdBNbLqP5VEhdkAS6EPFLC1PHnBqCXEpPxuEb"
)),
memo_program: self.memo_program.unwrap_or(solana_pubkey::pubkey!(
"MemoSq4gqABAXKb96qnH8TysNcWxMyWCqXgDLGmfcHr"
)),
};
let args = SwapRouterBaseInInstructionArgs {
amount_in: self.amount_in.clone().expect("amount_in is not set"),
amount_out_minimum: self
.amount_out_minimum
.clone()
.expect("amount_out_minimum is not set"),
};
accounts.instruction_with_remaining_accounts(args, &self.__remaining_accounts)
}
}
pub struct SwapRouterBaseInCpiAccounts<'a, 'b> {
pub payer: &'b solana_account_info::AccountInfo<'a>,
pub input_token_account: &'b solana_account_info::AccountInfo<'a>,
pub input_token_mint: &'b solana_account_info::AccountInfo<'a>,
pub token_program: &'b solana_account_info::AccountInfo<'a>,
pub token_program2022: &'b solana_account_info::AccountInfo<'a>,
pub memo_program: &'b solana_account_info::AccountInfo<'a>,
}
pub struct SwapRouterBaseInCpi<'a, 'b> {
pub __program: &'b solana_account_info::AccountInfo<'a>,
pub payer: &'b solana_account_info::AccountInfo<'a>,
pub input_token_account: &'b solana_account_info::AccountInfo<'a>,
pub input_token_mint: &'b solana_account_info::AccountInfo<'a>,
pub token_program: &'b solana_account_info::AccountInfo<'a>,
pub token_program2022: &'b solana_account_info::AccountInfo<'a>,
pub memo_program: &'b solana_account_info::AccountInfo<'a>,
pub __args: SwapRouterBaseInInstructionArgs,
}
impl<'a, 'b> SwapRouterBaseInCpi<'a, 'b> {
pub fn new(
program: &'b solana_account_info::AccountInfo<'a>,
accounts: SwapRouterBaseInCpiAccounts<'a, 'b>,
args: SwapRouterBaseInInstructionArgs,
) -> Self {
Self {
__program: program,
payer: accounts.payer,
input_token_account: accounts.input_token_account,
input_token_mint: accounts.input_token_mint,
token_program: accounts.token_program,
token_program2022: accounts.token_program2022,
memo_program: accounts.memo_program,
__args: args,
}
}
#[inline(always)]
pub fn invoke(&self) -> solana_program_entrypoint::ProgramResult {
self.invoke_signed_with_remaining_accounts(&[], &[])
}
#[inline(always)]
pub fn invoke_with_remaining_accounts(
&self,
remaining_accounts: &[(&'b solana_account_info::AccountInfo<'a>, bool, bool)],
) -> solana_program_entrypoint::ProgramResult {
self.invoke_signed_with_remaining_accounts(&[], remaining_accounts)
}
#[inline(always)]
pub fn invoke_signed(
&self,
signers_seeds: &[&[&[u8]]],
) -> solana_program_entrypoint::ProgramResult {
self.invoke_signed_with_remaining_accounts(signers_seeds, &[])
}
#[allow(clippy::arithmetic_side_effects)]
#[allow(clippy::clone_on_copy)]
#[allow(clippy::vec_init_then_push)]
pub fn invoke_signed_with_remaining_accounts(
&self,
signers_seeds: &[&[&[u8]]],
remaining_accounts: &[(&'b solana_account_info::AccountInfo<'a>, bool, bool)],
) -> solana_program_entrypoint::ProgramResult {
let mut accounts = Vec::with_capacity(6 + remaining_accounts.len());
accounts.push(solana_instruction::AccountMeta::new_readonly(
*self.payer.key,
true,
));
accounts.push(solana_instruction::AccountMeta::new(
*self.input_token_account.key,
false,
));
accounts.push(solana_instruction::AccountMeta::new(
*self.input_token_mint.key,
false,
));
accounts.push(solana_instruction::AccountMeta::new_readonly(
*self.token_program.key,
false,
));
accounts.push(solana_instruction::AccountMeta::new_readonly(
*self.token_program2022.key,
false,
));
accounts.push(solana_instruction::AccountMeta::new_readonly(
*self.memo_program.key,
false,
));
remaining_accounts.iter().for_each(|remaining_account| {
accounts.push(solana_instruction::AccountMeta {
pubkey: *remaining_account.0.key,
is_signer: remaining_account.1,
is_writable: remaining_account.2,
})
});
let mut data = borsh::to_vec(&SwapRouterBaseInInstructionData::new()).unwrap();
let mut args = borsh::to_vec(&self.__args).unwrap();
data.append(&mut args);
let instruction = solana_instruction::Instruction {
program_id: crate::AMM_V3_ID,
accounts,
data,
};
let mut account_infos = Vec::with_capacity(7 + remaining_accounts.len());
account_infos.push(self.__program.clone());
account_infos.push(self.payer.clone());
account_infos.push(self.input_token_account.clone());
account_infos.push(self.input_token_mint.clone());
account_infos.push(self.token_program.clone());
account_infos.push(self.token_program2022.clone());
account_infos.push(self.memo_program.clone());
remaining_accounts
.iter()
.for_each(|remaining_account| account_infos.push(remaining_account.0.clone()));
if signers_seeds.is_empty() {
solana_cpi::invoke(&instruction, &account_infos)
} else {
solana_cpi::invoke_signed(&instruction, &account_infos, signers_seeds)
}
}
}
#[derive(Clone, Debug)]
pub struct SwapRouterBaseInCpiBuilder<'a, 'b> {
instruction: Box<SwapRouterBaseInCpiBuilderInstruction<'a, 'b>>,
}
impl<'a, 'b> SwapRouterBaseInCpiBuilder<'a, 'b> {
pub fn new(program: &'b solana_account_info::AccountInfo<'a>) -> Self {
let instruction = Box::new(SwapRouterBaseInCpiBuilderInstruction {
__program: program,
payer: None,
input_token_account: None,
input_token_mint: None,
token_program: None,
token_program2022: None,
memo_program: None,
amount_in: None,
amount_out_minimum: None,
__remaining_accounts: Vec::new(),
});
Self { instruction }
}
#[inline(always)]
pub fn payer(&mut self, payer: &'b solana_account_info::AccountInfo<'a>) -> &mut Self {
self.instruction.payer = Some(payer);
self
}
#[inline(always)]
pub fn input_token_account(
&mut self,
input_token_account: &'b solana_account_info::AccountInfo<'a>,
) -> &mut Self {
self.instruction.input_token_account = Some(input_token_account);
self
}
#[inline(always)]
pub fn input_token_mint(
&mut self,
input_token_mint: &'b solana_account_info::AccountInfo<'a>,
) -> &mut Self {
self.instruction.input_token_mint = Some(input_token_mint);
self
}
#[inline(always)]
pub fn token_program(
&mut self,
token_program: &'b solana_account_info::AccountInfo<'a>,
) -> &mut Self {
self.instruction.token_program = Some(token_program);
self
}
#[inline(always)]
pub fn token_program2022(
&mut self,
token_program2022: &'b solana_account_info::AccountInfo<'a>,
) -> &mut Self {
self.instruction.token_program2022 = Some(token_program2022);
self
}
#[inline(always)]
pub fn memo_program(
&mut self,
memo_program: &'b solana_account_info::AccountInfo<'a>,
) -> &mut Self {
self.instruction.memo_program = Some(memo_program);
self
}
#[inline(always)]
pub fn amount_in(&mut self, amount_in: u64) -> &mut Self {
self.instruction.amount_in = Some(amount_in);
self
}
#[inline(always)]
pub fn amount_out_minimum(&mut self, amount_out_minimum: u64) -> &mut Self {
self.instruction.amount_out_minimum = Some(amount_out_minimum);
self
}
#[inline(always)]
pub fn add_remaining_account(
&mut self,
account: &'b solana_account_info::AccountInfo<'a>,
is_writable: bool,
is_signer: bool,
) -> &mut Self {
self.instruction
.__remaining_accounts
.push((account, is_writable, is_signer));
self
}
#[inline(always)]
pub fn add_remaining_accounts(
&mut self,
accounts: &[(&'b solana_account_info::AccountInfo<'a>, bool, bool)],
) -> &mut Self {
self.instruction
.__remaining_accounts
.extend_from_slice(accounts);
self
}
#[inline(always)]
pub fn invoke(&self) -> solana_program_entrypoint::ProgramResult {
self.invoke_signed(&[])
}
#[allow(clippy::clone_on_copy)]
#[allow(clippy::vec_init_then_push)]
pub fn invoke_signed(
&self,
signers_seeds: &[&[&[u8]]],
) -> solana_program_entrypoint::ProgramResult {
let args = SwapRouterBaseInInstructionArgs {
amount_in: self
.instruction
.amount_in
.clone()
.expect("amount_in is not set"),
amount_out_minimum: self
.instruction
.amount_out_minimum
.clone()
.expect("amount_out_minimum is not set"),
};
let instruction = SwapRouterBaseInCpi {
__program: self.instruction.__program,
payer: self.instruction.payer.expect("payer is not set"),
input_token_account: self
.instruction
.input_token_account
.expect("input_token_account is not set"),
input_token_mint: self
.instruction
.input_token_mint
.expect("input_token_mint is not set"),
token_program: self
.instruction
.token_program
.expect("token_program is not set"),
token_program2022: self
.instruction
.token_program2022
.expect("token_program2022 is not set"),
memo_program: self
.instruction
.memo_program
.expect("memo_program is not set"),
__args: args,
};
instruction.invoke_signed_with_remaining_accounts(
signers_seeds,
&self.instruction.__remaining_accounts,
)
}
}
#[derive(Clone, Debug)]
struct SwapRouterBaseInCpiBuilderInstruction<'a, 'b> {
__program: &'b solana_account_info::AccountInfo<'a>,
payer: Option<&'b solana_account_info::AccountInfo<'a>>,
input_token_account: Option<&'b solana_account_info::AccountInfo<'a>>,
input_token_mint: Option<&'b solana_account_info::AccountInfo<'a>>,
token_program: Option<&'b solana_account_info::AccountInfo<'a>>,
token_program2022: Option<&'b solana_account_info::AccountInfo<'a>>,
memo_program: Option<&'b solana_account_info::AccountInfo<'a>>,
amount_in: Option<u64>,
amount_out_minimum: Option<u64>,
__remaining_accounts: Vec<(&'b solana_account_info::AccountInfo<'a>, bool, bool)>,
}