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+/* This file is part of DarkFi (https://dark.fi)
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+ *
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+ * Copyright (C) 2020-2023 Dyne.org foundation
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+ *
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+ * This program is free software: you can redistribute it and/or modify
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+ * it under the terms of the GNU Affero General Public License as
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+ * published by the Free Software Foundation, either version 3 of the
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+ * License, or (at your option) any later version.
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+ *
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+ * This program is distributed in the hope that it will be useful,
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+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
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+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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+ * GNU Affero General Public License for more details.
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+ *
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+ * You should have received a copy of the GNU Affero General Public License
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+ * along with this program. If not, see <https://www.gnu.org/licenses/>.
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+ */
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+
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+//! This API is crufty. Please rework it into something nice to read and nice to use.
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+
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+use darkfi::{
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+ zk::{Proof, ProvingKey},
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+ zkas::ZkBinary,
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+ ClientFailed, Result,
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+};
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+use darkfi_sdk::{
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+ crypto::{
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+ note::AeadEncryptedNote, pasta_prelude::*, MerkleTree, PublicKey, SecretKey, TokenId,
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+ },
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+ incrementalmerkletree::Tree,
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+ pasta::pallas,
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+};
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+use darkfi_serial::serialize;
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+use log::{debug, info};
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+use rand::rngs::OsRng;
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+
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+use crate::{
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+ client::{
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+ transfer_v1::{
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+ create_transfer_burn_proof, create_transfer_mint_proof, TransactionBuilderInputInfo,
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+ TransactionBuilderOutputInfo,
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+ },
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+ MoneyNote, OwnCoin,
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+ },
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+ model::{Input, MoneyTransferParamsV1, Output},
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+};
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+
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+pub struct SwapCallDebris {
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+ pub params: MoneyTransferParamsV1,
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+ pub proofs: Vec<Proof>,
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+}
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+
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+/// Struct holding necessary information to build a `Money::OtcSwapV1` contract call.
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+/// This is used to build half of the swap transaction, so both parties have to build
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+/// their halves and combine them.
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+pub struct SwapCallBuilder {
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+ /// Party's public key for receiving the output
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+ pub pubkey: PublicKey,
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+ /// The value of the party's input to swap (send)
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+ pub value_send: u64,
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+ /// The token ID of the party's input to swap (send)
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+ pub token_id_send: TokenId,
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+ /// The value of the party's output to receive
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+ pub value_recv: u64,
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+ /// The token ID of the party's output to receive
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+ pub token_id_recv: TokenId,
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+ /// User data blind for the party's input
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+ pub user_data_blind_send: pallas::Base,
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+ /// Spend hook for the party's output
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+ pub spend_hook_recv: pallas::Base,
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+ /// User data for the party's output
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+ pub user_data_recv: pallas::Base,
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+ /// The blinds to be used for value pedersen commitments
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+ /// `[0]` is used for input 0 and output 1, and `[1]` is
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+ /// used for input 1 and output 0. The same applies to
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+ /// `token_blinds`.
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+ pub value_blinds: [pallas::Scalar; 2],
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+ /// The blinds to be used for token ID pedersen commitments
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+ pub token_blinds: [pallas::Scalar; 2],
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+ /// The coin to be used as the input to the swap
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+ pub coin: OwnCoin,
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+ /// Merkle tree of coins used to create inclusion proofs
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+ pub tree: MerkleTree,
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+ /// `Mint_V1` zkas circuit ZkBinary
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+ pub mint_zkbin: ZkBinary,
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+ /// Proving key for the `Mint_V1` zk circuit
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+ pub mint_pk: ProvingKey,
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+ /// `Burn_V1` zkas circuit ZkBinary
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+ pub burn_zkbin: ZkBinary,
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+ /// Proving key for the `Burn_V1` zk circuit
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+ pub burn_pk: ProvingKey,
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+}
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+
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+impl SwapCallBuilder {
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+ pub fn build(&self) -> Result<SwapCallDebris> {
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+ debug!("Building half of Money::OtcSwapV1 contract call");
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+ assert!(self.value_send != 0);
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+ assert!(self.value_recv != 0);
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+ assert!(self.token_id_send.inner() != pallas::Base::zero());
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+ assert!(self.token_id_recv.inner() != pallas::Base::zero());
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+
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+ if self.coin.note.value != self.value_send {
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+ return Err(ClientFailed::InvalidAmount(self.coin.note.value).into())
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+ }
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+
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+ if self.coin.note.token_id != self.token_id_send {
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+ return Err(ClientFailed::InvalidTokenId.into())
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+ }
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+
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+ let leaf_position = self.coin.leaf_position;
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+ let root = self.tree.root(0).unwrap();
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+ let merkle_path = self.tree.authentication_path(leaf_position, &root).unwrap();
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+
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+ let input = TransactionBuilderInputInfo {
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+ leaf_position,
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+ merkle_path,
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+ secret: self.coin.secret,
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+ note: self.coin.note.clone(),
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+ };
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+
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+ let output = TransactionBuilderOutputInfo {
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+ value: self.value_recv,
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+ token_id: self.token_id_recv,
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+ public_key: self.pubkey,
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+ };
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+
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+ // Now we fill this with necessary stuff
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+ let mut params =
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+ MoneyTransferParamsV1 { clear_inputs: vec![], inputs: vec![], outputs: vec![] };
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+
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+ // Create a new ephemeral secret key
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+ let signature_secret = SecretKey::random(&mut OsRng);
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+
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+ let mut proofs = vec![];
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+ info!("Creating burn proof for input");
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+ let (proof, public_inputs) = create_transfer_burn_proof(
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+ &self.burn_zkbin,
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+ &self.burn_pk,
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+ &input,
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+ self.value_blinds[0],
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+ self.token_blinds[0],
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+ self.user_data_blind_send,
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+ signature_secret,
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+ )?;
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+
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+ params.inputs.push(Input {
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+ value_commit: public_inputs.value_commit,
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+ token_commit: public_inputs.token_commit,
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+ nullifier: public_inputs.nullifier,
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+ merkle_root: public_inputs.merkle_root,
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+ spend_hook: public_inputs.spend_hook,
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+ user_data_enc: public_inputs.user_data_enc,
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+ signature_public: public_inputs.signature_public,
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+ });
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+
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+ proofs.push(proof);
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+
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+ // For the output, we create a new serial and coin blind
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+ let serial = pallas::Base::random(&mut OsRng);
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+ let coin_blind = pallas::Base::random(&mut OsRng);
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+
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+ info!("Creating mint proof for output");
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+ let (proof, public_inputs) = create_transfer_mint_proof(
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+ &self.mint_zkbin,
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+ &self.mint_pk,
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+ &output,
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+ self.value_blinds[1],
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+ self.token_blinds[1],
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+ serial,
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+ self.spend_hook_recv,
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+ self.user_data_recv,
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+ coin_blind,
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+ )?;
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+
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+ proofs.push(proof);
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+
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+ // Encrypted note
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+ let note = MoneyNote {
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+ serial,
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+ value: output.value,
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+ token_id: output.token_id,
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+ spend_hook: self.spend_hook_recv,
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+ user_data: self.user_data_recv,
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+ coin_blind,
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+ value_blind: self.value_blinds[1],
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+ token_blind: self.token_blinds[1],
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+ // Here we store our secret key we use for signing
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+ memo: serialize(&signature_secret),
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+ };
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+
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+ let encrypted_note = AeadEncryptedNote::encrypt(¬e, &self.pubkey, &mut OsRng)?;
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+
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+ params.outputs.push(Output {
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+ value_commit: public_inputs.value_commit,
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+ token_commit: public_inputs.token_commit,
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+ coin: public_inputs.coin,
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+ note: encrypted_note,
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+ });
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+
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+ // Now we should have all the params, zk proofs, and signature secrets.
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+ // We return it all and let the caller deal with it.
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+ let debris = SwapCallDebris { params, proofs };
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+ Ok(debris)
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+ }
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+}
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