use carbon_core::{account_utils::next_account, deserialize::ArrangeAccounts};
#[cfg_attr(feature = "serde", derive(serde::Serialize, serde::Deserialize))]
#[derive(Debug, Clone, borsh::BorshSerialize, borsh::BorshDeserialize, PartialEq)]
pub struct JuplendDeposit {
pub amount: u64,
}
#[derive(Debug, Clone, PartialEq)]
#[cfg_attr(feature = "serde", derive(serde::Serialize, serde::Deserialize))]
pub struct JuplendDepositInstructionAccounts {
pub group: solana_pubkey::Pubkey,
pub marginfi_account: solana_pubkey::Pubkey,
pub authority: solana_pubkey::Pubkey,
pub bank: solana_pubkey::Pubkey,
pub signer_token_account: solana_pubkey::Pubkey,
pub liquidity_vault_authority: solana_pubkey::Pubkey,
pub liquidity_vault: solana_pubkey::Pubkey,
pub mint: solana_pubkey::Pubkey,
pub integration_acc1: solana_pubkey::Pubkey,
pub f_token_mint: solana_pubkey::Pubkey,
pub integration_acc2: solana_pubkey::Pubkey,
pub lending_admin: solana_pubkey::Pubkey,
pub supply_token_reserves_liquidity: solana_pubkey::Pubkey,
pub lending_supply_position_on_liquidity: solana_pubkey::Pubkey,
pub rate_model: solana_pubkey::Pubkey,
pub vault: solana_pubkey::Pubkey,
pub liquidity: solana_pubkey::Pubkey,
pub liquidity_program: solana_pubkey::Pubkey,
pub rewards_rate_model: solana_pubkey::Pubkey,
pub juplend_program: solana_pubkey::Pubkey,
pub token_program: solana_pubkey::Pubkey,
pub associated_token_program: solana_pubkey::Pubkey,
pub system_program: solana_pubkey::Pubkey,
pub remaining: Vec<solana_instruction::AccountMeta>,
}
impl JuplendDeposit {
pub fn decode(data: &[u8]) -> Option<Self> {
if data.len() < 8 {
return None;
}
let discriminator = &data[0..8];
if discriminator != [114, 11, 218, 81, 183, 165, 143, 255] {
return None;
}
let mut data_slice = data;
data_slice = &data_slice[8..];
borsh::BorshDeserialize::deserialize(&mut data_slice).ok()
}
}
impl ArrangeAccounts for JuplendDeposit {
type ArrangedAccounts = JuplendDepositInstructionAccounts;
fn arrange_accounts(
accounts: &[solana_instruction::AccountMeta],
) -> Option<Self::ArrangedAccounts> {
let mut iter = accounts.iter();
let group = next_account(&mut iter)?;
let marginfi_account = next_account(&mut iter)?;
let authority = next_account(&mut iter)?;
let bank = next_account(&mut iter)?;
let signer_token_account = next_account(&mut iter)?;
let liquidity_vault_authority = next_account(&mut iter)?;
let liquidity_vault = next_account(&mut iter)?;
let mint = next_account(&mut iter)?;
let integration_acc1 = next_account(&mut iter)?;
let f_token_mint = next_account(&mut iter)?;
let integration_acc2 = next_account(&mut iter)?;
let lending_admin = next_account(&mut iter)?;
let supply_token_reserves_liquidity = next_account(&mut iter)?;
let lending_supply_position_on_liquidity = next_account(&mut iter)?;
let rate_model = next_account(&mut iter)?;
let vault = next_account(&mut iter)?;
let liquidity = next_account(&mut iter)?;
let liquidity_program = next_account(&mut iter)?;
let rewards_rate_model = next_account(&mut iter)?;
let juplend_program = next_account(&mut iter)?;
let token_program = next_account(&mut iter)?;
let associated_token_program = next_account(&mut iter)?;
let system_program = next_account(&mut iter)?;
let remaining = iter.as_slice();
Some(JuplendDepositInstructionAccounts {
group,
marginfi_account,
authority,
bank,
signer_token_account,
liquidity_vault_authority,
liquidity_vault,
mint,
integration_acc1,
f_token_mint,
integration_acc2,
lending_admin,
supply_token_reserves_liquidity,
lending_supply_position_on_liquidity,
rate_model,
vault,
liquidity,
liquidity_program,
rewards_rate_model,
juplend_program,
token_program,
associated_token_program,
system_program,
remaining: remaining.to_vec(),
})
}
}