carbon-tcomp-decoder 0.12.1

Rust decoder for Tensor cNFT Compressed program on Solana
Documentation
//! This code was AUTOGENERATED using the Codama library.
use carbon_core::CarbonDeserialize;
use carbon_core::account_utils::next_account;
use carbon_core::borsh;
use carbon_core::deserialize::ArrangeAccounts;
use carbon_core::deserialize::CarbonDeserialize;

#[cfg_attr(feature = "serde", derive(serde::Serialize, serde::Deserialize))]
#[derive(Debug, Clone, borsh::BorshSerialize, CarbonDeserialize, PartialEq, Eq, Hash)]
pub struct BuyCore {
    pub max_amount: u64,
}

#[derive(Debug, Clone, PartialEq)]
#[cfg_attr(feature = "serde", derive(serde::Serialize, serde::Deserialize))]
pub struct BuyCoreInstructionAccounts {
    pub tcomp: solana_pubkey::Pubkey,
    pub list_state: solana_pubkey::Pubkey,
    pub asset: solana_pubkey::Pubkey,
    pub collection: Option<solana_pubkey::Pubkey>,
    pub buyer: solana_pubkey::Pubkey,
    pub payer: solana_pubkey::Pubkey,
    pub owner: solana_pubkey::Pubkey,
    pub taker_broker: Option<solana_pubkey::Pubkey>,
    pub maker_broker: Option<solana_pubkey::Pubkey>,
    pub rent_dest: solana_pubkey::Pubkey,
    pub mpl_core_program: solana_pubkey::Pubkey,
    pub tcomp_program: solana_pubkey::Pubkey,
    pub system_program: solana_pubkey::Pubkey,
    pub remaining: Vec<solana_instruction::AccountMeta>,
}

impl BuyCore {
    pub fn decode(data: &[u8]) -> Option<Self> {
        if data.len() < 8 {
            return None;
        }
        let discriminator = &data[0..8];
        if discriminator != &[169, 227, 87, 255, 76, 86, 255, 25] {
            return None;
        }

        let data_slice = data;

        let data_slice = &data_slice[8..];

        Self::deserialize(data_slice)
    }
}

impl ArrangeAccounts for BuyCore {
    type ArrangedAccounts = BuyCoreInstructionAccounts;

    fn arrange_accounts(
        accounts: &[solana_instruction::AccountMeta],
    ) -> Option<Self::ArrangedAccounts> {
        let mut iter = accounts.iter();

        let tcomp = next_account(&mut iter)?;
        let list_state = next_account(&mut iter)?;
        let asset = next_account(&mut iter)?;
        let collection = next_account(&mut iter);
        let buyer = next_account(&mut iter)?;
        let payer = next_account(&mut iter)?;
        let owner = next_account(&mut iter)?;
        let taker_broker = next_account(&mut iter);
        let maker_broker = next_account(&mut iter);
        let rent_dest = next_account(&mut iter)?;
        let mpl_core_program = next_account(&mut iter)?;
        let tcomp_program = next_account(&mut iter)?;
        let system_program = next_account(&mut iter)?;

        let remaining = iter.as_slice();

        Some(BuyCoreInstructionAccounts {
            tcomp,
            list_state,
            asset,
            collection,
            buyer,
            payer,
            owner,
            taker_broker,
            maker_broker,
            rent_dest,
            mpl_core_program,
            tcomp_program,
            system_program,
            remaining: remaining.to_vec(),
        })
    }
}