/* This file is part of DarkFi (https://dark.fi)
*
* Copyright (C) 2020-2024 Dyne.org foundation
*
* This program is free software: you can redistribute it and/or modify
* it under the terms of the GNU Affero General Public License as
* published by the Free Software Foundation, either version 3 of the
* License, or (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU Affero General Public License for more details.
*
* You should have received a copy of the GNU Affero General Public License
* along with this program. If not, see .
*/
use darkfi::{
tx::{ContractCallLeaf, Transaction, TransactionBuilder},
util::parse::{decode_base10, encode_base10},
zk::{proof::ProvingKey, vm::ZkCircuit, vm_heap::empty_witnesses},
zkas::ZkBinary,
Error, Result,
};
use darkfi_money_contract::{
client::{transfer_v1::make_transfer_call, OwnCoin},
model::TokenId,
MoneyFunction, MONEY_CONTRACT_ZKAS_BURN_NS_V1, MONEY_CONTRACT_ZKAS_MINT_NS_V1,
};
use darkfi_sdk::{
crypto::{contract_id::MONEY_CONTRACT_ID, FuncId, Keypair, PublicKey},
tx::ContractCall,
};
use darkfi_serial::Encodable;
use crate::{money::BALANCE_BASE10_DECIMALS, Drk};
impl Drk {
/// Create a payment transaction. Returns the transaction object on success.
pub async fn transfer(
&self,
amount: &str,
token_id: TokenId,
recipient: PublicKey,
) -> Result {
// First get all unspent OwnCoins to see what our balance is.
eprintln!("Fetching OwnCoins");
let owncoins = self.get_coins(false).await?;
let mut owncoins: Vec = owncoins.iter().map(|x| x.0.clone()).collect();
// We're only interested in the ones for the token_id we're sending
// And the ones not owned by some protocol (meaning spend-hook should be 0)
owncoins.retain(|x| x.note.token_id == token_id);
owncoins.retain(|x| x.note.spend_hook == FuncId::none());
if owncoins.is_empty() {
return Err(Error::Custom(format!("Did not find any coins with token ID: {token_id}")))
}
let amount = decode_base10(amount, BALANCE_BASE10_DECIMALS, false)?;
let mut balance = 0;
for coin in owncoins.iter() {
balance += coin.note.value;
}
if balance < amount {
return Err(Error::Custom(format!(
"Not enough balance for token ID: {token_id}, found: {}",
encode_base10(balance, BALANCE_BASE10_DECIMALS)
)))
}
// We'll also need our Merkle tree
let tree = self.get_money_tree().await?;
let secret = self.default_secret().await?;
let keypair = Keypair::new(secret);
let contract_id = *MONEY_CONTRACT_ID;
// Now we need to do a lookup for the zkas proof bincodes, and create
// the circuit objects and proving keys so we can build the transaction.
// We also do this through the RPC.
let zkas_bins = self.lookup_zkas(&contract_id).await?;
let Some(mint_zkbin) = zkas_bins.iter().find(|x| x.0 == MONEY_CONTRACT_ZKAS_MINT_NS_V1)
else {
return Err(Error::Custom("Mint circuit not found".to_string()))
};
let Some(burn_zkbin) = zkas_bins.iter().find(|x| x.0 == MONEY_CONTRACT_ZKAS_BURN_NS_V1)
else {
return Err(Error::Custom("Burn circuit not found".to_string()))
};
let mint_zkbin = ZkBinary::decode(&mint_zkbin.1)?;
let burn_zkbin = ZkBinary::decode(&burn_zkbin.1)?;
let mint_circuit = ZkCircuit::new(empty_witnesses(&mint_zkbin)?, &mint_zkbin);
let burn_circuit = ZkCircuit::new(empty_witnesses(&burn_zkbin)?, &burn_zkbin);
eprintln!("Creating Mint and Burn circuit proving keys");
let mint_pk = ProvingKey::build(mint_zkbin.k, &mint_circuit);
let burn_pk = ProvingKey::build(burn_zkbin.k, &burn_circuit);
eprintln!("Building transaction parameters");
let (params, secrets, spent_coins) = make_transfer_call(
keypair, recipient, amount, token_id, owncoins, tree, mint_zkbin, mint_pk, burn_zkbin,
burn_pk,
)?;
// Encode and sign the transaction
let mut data = vec![MoneyFunction::TransferV1 as u8];
params.encode(&mut data)?;
let call = ContractCall { contract_id: *MONEY_CONTRACT_ID, data };
let mut tx_builder =
TransactionBuilder::new(ContractCallLeaf { call, proofs: secrets.proofs }, vec![])?;
let mut tx = tx_builder.build()?;
let sigs = tx.create_sigs(&secrets.signature_secrets)?;
tx.signatures = vec![sigs];
// We need to mark the coins we've spent in our wallet
for spent_coin in spent_coins {
if let Err(e) = self.mark_spent_coin(&spent_coin.coin).await {
return Err(Error::Custom(format!("Mark spent coin {spent_coin:?} failed: {e:?}")))
};
}
Ok(tx)
}
}