347 lines
11 KiB
Rust
347 lines
11 KiB
Rust
//! The `budget_transaction` module provides functionality for creating Budget transactions.
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use bincode::deserialize;
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use budget_expr::{BudgetExpr, Condition};
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use budget_instruction::Instruction;
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use budget_program;
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use chrono::prelude::*;
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use payment_plan::Payment;
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use signature::{Keypair, KeypairUtil};
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use solana_sdk::hash::Hash;
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use solana_sdk::pubkey::Pubkey;
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use solana_sdk::system_instruction::{SystemInstruction, SYSTEM_PROGRAM_ID};
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use transaction::{self, Transaction};
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pub trait BudgetTransaction {
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fn budget_new_taxed(
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from_keypair: &Keypair,
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to: Pubkey,
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tokens: u64,
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fee: u64,
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last_id: Hash,
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) -> Self;
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fn budget_new(from_keypair: &Keypair, to: Pubkey, tokens: u64, last_id: Hash) -> Self;
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fn budget_new_timestamp(
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from_keypair: &Keypair,
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contract: Pubkey,
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to: Pubkey,
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dt: DateTime<Utc>,
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last_id: Hash,
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) -> Self;
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fn budget_new_signature(
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from_keypair: &Keypair,
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contract: Pubkey,
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to: Pubkey,
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last_id: Hash,
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) -> Self;
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fn budget_new_on_date(
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from_keypair: &Keypair,
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to: Pubkey,
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contract: Pubkey,
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dt: DateTime<Utc>,
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dt_pubkey: Pubkey,
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cancelable: Option<Pubkey>,
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tokens: u64,
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last_id: Hash,
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) -> Self;
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fn budget_new_when_signed(
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from_keypair: &Keypair,
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to: Pubkey,
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contract: Pubkey,
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witness: Pubkey,
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cancelable: Option<Pubkey>,
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tokens: u64,
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last_id: Hash,
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) -> Self;
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fn instruction(&self, program_index: usize) -> Option<Instruction>;
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fn system_instruction(&self, program_index: usize) -> Option<SystemInstruction>;
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fn verify_plan(&self) -> bool;
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}
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impl BudgetTransaction for Transaction {
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/// Create and sign a new Transaction. Used for unit-testing.
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fn budget_new_taxed(
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from_keypair: &Keypair,
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to: Pubkey,
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tokens: u64,
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fee: u64,
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last_id: Hash,
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) -> Self {
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let contract = Keypair::new().pubkey();
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let keys = vec![from_keypair.pubkey(), contract];
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let system_instruction = SystemInstruction::Move { tokens };
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let payment = Payment {
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tokens: tokens - fee,
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to,
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};
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let budget_instruction = Instruction::NewBudget(BudgetExpr::Pay(payment));
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let program_ids = vec![Pubkey::new(&SYSTEM_PROGRAM_ID), budget_program::id()];
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let instructions = vec![
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transaction::Instruction::new(0, &system_instruction, vec![0, 1]),
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transaction::Instruction::new(1, &budget_instruction, vec![1]),
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];
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Self::new_with_instructions(
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&[from_keypair],
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&keys,
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last_id,
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fee,
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program_ids,
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instructions,
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)
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}
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/// Create and sign a new Transaction. Used for unit-testing.
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fn budget_new(from_keypair: &Keypair, to: Pubkey, tokens: u64, last_id: Hash) -> Self {
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Self::budget_new_taxed(from_keypair, to, tokens, 0, last_id)
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}
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/// Create and sign a new Witness Timestamp. Used for unit-testing.
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fn budget_new_timestamp(
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from_keypair: &Keypair,
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contract: Pubkey,
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to: Pubkey,
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dt: DateTime<Utc>,
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last_id: Hash,
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) -> Self {
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let instruction = Instruction::ApplyTimestamp(dt);
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Self::new(
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from_keypair,
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&[contract, to],
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budget_program::id(),
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&instruction,
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last_id,
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0,
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)
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}
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/// Create and sign a new Witness Signature. Used for unit-testing.
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fn budget_new_signature(
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from_keypair: &Keypair,
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contract: Pubkey,
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to: Pubkey,
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last_id: Hash,
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) -> Self {
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let instruction = Instruction::ApplySignature;
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Self::new(
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from_keypair,
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&[contract, to],
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budget_program::id(),
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&instruction,
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last_id,
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0,
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)
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}
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/// Create and sign a postdated Transaction. Used for unit-testing.
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fn budget_new_on_date(
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from_keypair: &Keypair,
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to: Pubkey,
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contract: Pubkey,
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dt: DateTime<Utc>,
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dt_pubkey: Pubkey,
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cancelable: Option<Pubkey>,
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tokens: u64,
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last_id: Hash,
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) -> Self {
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let expr = if let Some(from) = cancelable {
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BudgetExpr::Or(
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(Condition::Timestamp(dt, dt_pubkey), Payment { tokens, to }),
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(Condition::Signature(from), Payment { tokens, to: from }),
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)
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} else {
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BudgetExpr::After(Condition::Timestamp(dt, dt_pubkey), Payment { tokens, to })
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};
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let instruction = Instruction::NewBudget(expr);
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Self::new(
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from_keypair,
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&[contract],
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budget_program::id(),
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&instruction,
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last_id,
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0,
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)
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}
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/// Create and sign a multisig Transaction.
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fn budget_new_when_signed(
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from_keypair: &Keypair,
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to: Pubkey,
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contract: Pubkey,
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witness: Pubkey,
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cancelable: Option<Pubkey>,
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tokens: u64,
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last_id: Hash,
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) -> Self {
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let expr = if let Some(from) = cancelable {
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BudgetExpr::Or(
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(Condition::Signature(witness), Payment { tokens, to }),
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(Condition::Signature(from), Payment { tokens, to: from }),
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)
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} else {
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BudgetExpr::After(Condition::Signature(witness), Payment { tokens, to })
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};
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let instruction = Instruction::NewBudget(expr);
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Self::new(
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from_keypair,
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&[contract],
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budget_program::id(),
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&instruction,
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last_id,
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0,
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)
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}
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fn instruction(&self, instruction_index: usize) -> Option<Instruction> {
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deserialize(&self.userdata(instruction_index)).ok()
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}
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fn system_instruction(&self, instruction_index: usize) -> Option<SystemInstruction> {
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deserialize(&self.userdata(instruction_index)).ok()
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}
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/// Verify only the payment plan.
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fn verify_plan(&self) -> bool {
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if let Some(SystemInstruction::Move { tokens }) = self.system_instruction(0) {
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if let Some(Instruction::NewBudget(expr)) = self.instruction(1) {
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if !(self.fee <= tokens && expr.verify(tokens - self.fee)) {
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return false;
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}
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}
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}
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true
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}
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use bincode::{deserialize, serialize};
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use signature::KeypairUtil;
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use transaction;
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#[test]
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fn test_claim() {
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let keypair = Keypair::new();
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let zero = Hash::default();
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let tx0 = Transaction::budget_new(&keypair, keypair.pubkey(), 42, zero);
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assert!(tx0.verify_plan());
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}
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#[test]
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fn test_transfer() {
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let zero = Hash::default();
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let keypair0 = Keypair::new();
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let keypair1 = Keypair::new();
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let pubkey1 = keypair1.pubkey();
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let tx0 = Transaction::budget_new(&keypair0, pubkey1, 42, zero);
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assert!(tx0.verify_plan());
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}
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#[test]
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fn test_transfer_with_fee() {
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let zero = Hash::default();
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let keypair0 = Keypair::new();
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let pubkey1 = Keypair::new().pubkey();
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assert!(Transaction::budget_new_taxed(&keypair0, pubkey1, 1, 1, zero).verify_plan());
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}
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#[test]
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fn test_serialize_claim() {
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let expr = BudgetExpr::Pay(Payment {
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tokens: 0,
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to: Default::default(),
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});
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let instruction = Instruction::NewBudget(expr);
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let instructions = vec![transaction::Instruction::new(0, &instruction, vec![])];
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let claim0 = Transaction {
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account_keys: vec![],
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last_id: Default::default(),
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signatures: vec![],
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program_ids: vec![],
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instructions,
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fee: 0,
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};
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let buf = serialize(&claim0).unwrap();
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let claim1: Transaction = deserialize(&buf).unwrap();
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assert_eq!(claim1, claim0);
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}
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#[test]
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fn test_token_attack() {
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let zero = Hash::default();
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let keypair = Keypair::new();
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let pubkey = keypair.pubkey();
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let mut tx = Transaction::budget_new(&keypair, pubkey, 42, zero);
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let mut system_instruction = tx.system_instruction(0).unwrap();
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if let SystemInstruction::Move { ref mut tokens } = system_instruction {
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*tokens = 1_000_000; // <-- attack, part 1!
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let mut instruction = tx.instruction(1).unwrap();
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if let Instruction::NewBudget(ref mut expr) = instruction {
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if let BudgetExpr::Pay(ref mut payment) = expr {
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payment.tokens = *tokens; // <-- attack, part 2!
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}
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}
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tx.instructions[1].userdata = serialize(&instruction).unwrap();
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}
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tx.instructions[0].userdata = serialize(&system_instruction).unwrap();
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assert!(tx.verify_plan());
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assert!(!tx.verify_signature());
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}
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#[test]
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fn test_hijack_attack() {
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let keypair0 = Keypair::new();
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let keypair1 = Keypair::new();
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let thief_keypair = Keypair::new();
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let pubkey1 = keypair1.pubkey();
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let zero = Hash::default();
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let mut tx = Transaction::budget_new(&keypair0, pubkey1, 42, zero);
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let mut instruction = tx.instruction(1);
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if let Some(Instruction::NewBudget(ref mut expr)) = instruction {
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if let BudgetExpr::Pay(ref mut payment) = expr {
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payment.to = thief_keypair.pubkey(); // <-- attack!
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}
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}
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tx.instructions[1].userdata = serialize(&instruction).unwrap();
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assert!(tx.verify_plan());
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assert!(!tx.verify_signature());
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}
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#[test]
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fn test_overspend_attack() {
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let keypair0 = Keypair::new();
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let keypair1 = Keypair::new();
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let zero = Hash::default();
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let mut tx = Transaction::budget_new(&keypair0, keypair1.pubkey(), 1, zero);
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let mut instruction = tx.instruction(1).unwrap();
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if let Instruction::NewBudget(ref mut expr) = instruction {
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if let BudgetExpr::Pay(ref mut payment) = expr {
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payment.tokens = 2; // <-- attack!
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}
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}
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tx.instructions[1].userdata = serialize(&instruction).unwrap();
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assert!(!tx.verify_plan());
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// Also, ensure all branchs of the plan spend all tokens
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let mut instruction = tx.instruction(1).unwrap();
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if let Instruction::NewBudget(ref mut expr) = instruction {
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if let BudgetExpr::Pay(ref mut payment) = expr {
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payment.tokens = 0; // <-- whoops!
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}
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}
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tx.instructions[1].userdata = serialize(&instruction).unwrap();
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assert!(!tx.verify_plan());
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}
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}
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