use {
super::*,
spl_token_2022::{
extension::memo_transfer::instruction::RequiredMemoTransfersInstruction,
instruction::decode_instruction_type,
},
};
pub(in crate::parse_token) fn parse_memo_transfer_instruction(
instruction_data: &[u8],
account_indexes: &[u8],
account_keys: &AccountKeys,
) -> Result<ParsedInstructionEnum, ParseInstructionError> {
check_num_token_accounts(account_indexes, 2)?;
let instruction_type_str = match decode_instruction_type(instruction_data)
.map_err(|_| ParseInstructionError::InstructionNotParsable(ParsableProgram::SplToken))?
{
RequiredMemoTransfersInstruction::Enable => "enable",
RequiredMemoTransfersInstruction::Disable => "disable",
};
let mut value = json!({
"account": account_keys[account_indexes[0] as usize].to_string(),
});
let map = value.as_object_mut().unwrap();
parse_signers(
map,
1,
account_keys,
account_indexes,
"owner",
"multisigOwner",
);
Ok(ParsedInstructionEnum {
instruction_type: format!("{instruction_type_str}RequiredMemoTransfers"),
info: value,
})
}
#[cfg(test)]
mod test {
use {
super::*,
solana_message::Message,
solana_pubkey::Pubkey,
spl_token_2022::extension::memo_transfer::instruction::{
disable_required_transfer_memos, enable_required_transfer_memos,
},
};
#[test]
fn test_parse_memo_transfer_instruction() {
let account_pubkey = Pubkey::new_unique();
let owner_pubkey = Pubkey::new_unique();
let enable_memo_transfers_ix = enable_required_transfer_memos(
&spl_token_2022::id(),
&account_pubkey,
&owner_pubkey,
&[],
)
.unwrap();
let message = Message::new(&[enable_memo_transfers_ix], None);
let compiled_instruction = &message.instructions[0];
assert_eq!(
parse_token(
compiled_instruction,
&AccountKeys::new(&message.account_keys, None)
)
.unwrap(),
ParsedInstructionEnum {
instruction_type: "enableRequiredMemoTransfers".to_string(),
info: json!({
"account": account_pubkey.to_string(),
"owner": owner_pubkey.to_string(),
})
}
);
let multisig_pubkey = Pubkey::new_unique();
let multisig_signer0 = Pubkey::new_unique();
let multisig_signer1 = Pubkey::new_unique();
let enable_memo_transfers_ix = enable_required_transfer_memos(
&spl_token_2022::id(),
&account_pubkey,
&multisig_pubkey,
&[&multisig_signer0, &multisig_signer1],
)
.unwrap();
let message = Message::new(&[enable_memo_transfers_ix], None);
let compiled_instruction = &message.instructions[0];
assert_eq!(
parse_token(
compiled_instruction,
&AccountKeys::new(&message.account_keys, None)
)
.unwrap(),
ParsedInstructionEnum {
instruction_type: "enableRequiredMemoTransfers".to_string(),
info: json!({
"account": account_pubkey.to_string(),
"multisigOwner": multisig_pubkey.to_string(),
"signers": vec![
multisig_signer0.to_string(),
multisig_signer1.to_string(),
],
})
}
);
let enable_memo_transfers_ix = disable_required_transfer_memos(
&spl_token_2022::id(),
&account_pubkey,
&owner_pubkey,
&[],
)
.unwrap();
let message = Message::new(&[enable_memo_transfers_ix], None);
let compiled_instruction = &message.instructions[0];
assert_eq!(
parse_token(
compiled_instruction,
&AccountKeys::new(&message.account_keys, None)
)
.unwrap(),
ParsedInstructionEnum {
instruction_type: "disableRequiredMemoTransfers".to_string(),
info: json!({
"account": account_pubkey.to_string(),
"owner": owner_pubkey.to_string(),
})
}
);
let multisig_pubkey = Pubkey::new_unique();
let multisig_signer0 = Pubkey::new_unique();
let multisig_signer1 = Pubkey::new_unique();
let enable_memo_transfers_ix = disable_required_transfer_memos(
&spl_token_2022::id(),
&account_pubkey,
&multisig_pubkey,
&[&multisig_signer0, &multisig_signer1],
)
.unwrap();
let message = Message::new(&[enable_memo_transfers_ix], None);
let compiled_instruction = &message.instructions[0];
assert_eq!(
parse_token(
compiled_instruction,
&AccountKeys::new(&message.account_keys, None)
)
.unwrap(),
ParsedInstructionEnum {
instruction_type: "disableRequiredMemoTransfers".to_string(),
info: json!({
"account": account_pubkey.to_string(),
"multisigOwner": multisig_pubkey.to_string(),
"signers": vec![
multisig_signer0.to_string(),
multisig_signer1.to_string(),
],
})
}
);
}
}