Files
smart-updown-token/program/programs/smart-updown/tests/test_smart_updown.rs
T

284 lines
9.7 KiB
Rust

use {
anchor_lang::{
bytemuck, cpi::find_program_address, solana_program::instruction::Instruction, Id,
InstructionData, ToAccountMetas,
},
anchor_v2_testing::{Keypair, LiteSVM, Message, Signer, VersionedMessage, VersionedTransaction},
smart_updown::state::{Bet, Global},
};
const CLOCK_ADDR: &str = "SysvarC1ock11111111111111111111111111111111";
const SYSTEM_ADDR: &str = "11111111111111111111111111111111";
const MIN_AMOUNT: u64 = 1_000_000_000; // 1 SOL
const MULTIPLIER_BPS: u64 = 13_000; // 1.3x
const EXPIRY_SECONDS: i64 = 15;
type Addr = anchor_lang::prelude::Address;
fn pid() -> Addr {
smart_updown::id()
}
fn global_pda() -> Addr {
find_program_address(&[b"global"], &pid()).0
}
fn bet_pda(id: u64) -> Addr {
find_program_address(&[b"bet", &id.to_le_bytes()], &pid()).0
}
fn setup() -> (LiteSVM, Keypair) {
let mut svm = LiteSVM::new();
let bytes = include_bytes!("../../../target/deploy/smart_updown.so");
svm.add_program(pid(), bytes).expect("deploy program");
let payer = Keypair::new();
svm.airdrop(&payer.pubkey(), 100_000_000_000).unwrap();
(svm, payer)
}
fn send(svm: &mut LiteSVM, signers: &[&Keypair], instruction: Instruction) -> Result<(), String> {
let blockhash = svm.latest_blockhash();
let msg = Message::new_with_blockhash(&[instruction], Some(&signers[0].pubkey()), &blockhash);
let tx = VersionedTransaction::try_new(VersionedMessage::Legacy(msg), signers).unwrap();
let res = svm.send_transaction(tx);
res.map(|_| ()).map_err(|e| format!("{:?}", e))
}
fn initialize(svm: &mut LiteSVM, admin: &Keypair) {
let ix = Instruction::new_with_bytes(
pid(),
&smart_updown::instruction::Initialize {
min_amount: MIN_AMOUNT,
max_amount: 1_000_000_000_000,
multiplier_bps: MULTIPLIER_BPS,
expiry_seconds: EXPIRY_SECONDS,
}
.data(),
smart_updown::accounts::Initialize {
admin: admin.pubkey(),
global: global_pda(),
system_program: SYSTEM_ADDR.parse().unwrap(),
}
.to_account_metas(None),
);
send(svm, &[admin], ix).expect("initialize");
}
fn set_clock(svm: &mut LiteSVM, unix: i64) {
use solana_clock::Clock;
let mut clk = svm.get_sysvar::<Clock>();
clk.unix_timestamp = unix;
svm.set_sysvar(&clk);
}
fn fund_vault(svm: &mut LiteSVM, lamports: u64) {
svm.airdrop(&global_pda(), lamports).unwrap();
}
fn read_global(svm: &LiteSVM) -> Global {
let acc = svm.get_account(&global_pda()).expect("global account");
*bytemuck::from_bytes::<Global>(&acc.data[8..])
}
fn read_bet(svm: &LiteSVM, id: u64) -> Bet {
let acc = svm.get_account(&bet_pda(id)).expect("bet account");
*bytemuck::from_bytes::<Bet>(&acc.data[8..])
}
fn make_create_ix(id: u64, side: u64, amount: u64, entry_price: u64, bettor: Addr) -> Instruction {
Instruction::new_with_bytes(
pid(),
&smart_updown::instruction::CreateBet {
id,
side,
amount,
entry_price,
}
.data(),
smart_updown::accounts::CreateBet {
bettor,
global: global_pda(),
bet: bet_pda(id),
clock: CLOCK_ADDR.parse().unwrap(),
system_program: SYSTEM_ADDR.parse().unwrap(),
}
.to_account_metas(None),
)
}
fn make_close_ix(id: u64, exit_price: u64, relayer: Addr, bettor: Addr) -> Instruction {
Instruction::new_with_bytes(
pid(),
&smart_updown::instruction::CloseBet { id, exit_price }.data(),
smart_updown::accounts::CloseBet {
relayer,
bet: bet_pda(id),
global: global_pda(),
bettor,
clock: CLOCK_ADDR.parse().unwrap(),
}
.to_account_metas(None),
)
}
fn create_up_bet(svm: &mut LiteSVM, admin: &Keypair, side: u64) -> (Keypair, u64, u64) {
let bettor = Keypair::new();
svm.airdrop(&bettor.pubkey(), 100_000_000_000).unwrap();
set_clock(svm, 1_700_000_000);
let amount = MIN_AMOUNT;
let entry_price = 100_000_000u64;
let create_ix = make_create_ix(0, side, amount, entry_price, bettor.pubkey());
send(svm, &[&bettor], create_ix).expect("create_bet");
(bettor, amount, entry_price)
}
#[test]
fn initialize_creates_global() {
let (mut svm, admin) = setup();
initialize(&mut svm, &admin);
let g = read_global(&svm);
assert_eq!(g.admin, admin.pubkey());
assert_eq!(g.relayer, admin.pubkey());
assert_eq!(g.counter, 0);
assert_eq!(g.multiplier_bps, MULTIPLIER_BPS);
assert_eq!(g.expiry_seconds, EXPIRY_SECONDS);
assert_eq!(g.paused, 0);
}
#[test]
fn create_bet_escrows_sol() {
let (mut svm, admin) = setup();
initialize(&mut svm, &admin);
let (bettor, amount, entry_price) = create_up_bet(&mut svm, &admin, 0);
let vault_balance = svm.get_balance(&global_pda()).unwrap();
assert!(vault_balance >= amount);
let b = read_bet(&svm, 0);
assert_eq!(b.bettor, bettor.pubkey());
assert_eq!(b.side, 0);
assert_eq!(b.amount, amount);
assert_eq!(b.entry_price, entry_price);
assert_eq!(b.bet_time, 1_700_000_000);
assert_eq!(b.expire_time, 1_700_000_000 + EXPIRY_SECONDS);
assert_eq!(b.status, 0);
assert_eq!(read_global(&svm).counter, 1);
}
#[test]
fn close_bet_user_wins_up() {
let (mut svm, admin) = setup();
initialize(&mut svm, &admin);
let (bettor, amount, entry_price) = create_up_bet(&mut svm, &admin, 0);
set_clock(&mut svm, 1_700_000_000 + EXPIRY_SECONDS + 1);
let exit_price = entry_price + 1_000;
let before = svm.get_balance(&bettor.pubkey()).unwrap();
let payout = amount * MULTIPLIER_BPS / 10_000;
fund_vault(&mut svm, 10 * amount);
let close_ix = make_close_ix(0, exit_price, admin.pubkey(), bettor.pubkey());
send(&mut svm, &[&admin], close_ix).expect("close_bet");
assert_eq!(svm.get_balance(&bettor.pubkey()).unwrap(), before + payout);
let b = read_bet(&svm, 0);
assert_eq!(b.status, 1);
assert_eq!(b.exit_price, exit_price);
}
#[test]
fn close_bet_house_wins_down() {
let (mut svm, admin) = setup();
initialize(&mut svm, &admin);
let (bettor, _amount, entry_price) = create_up_bet(&mut svm, &admin, 1);
set_clock(&mut svm, 1_700_000_000 + EXPIRY_SECONDS + 1);
let exit_price = entry_price + 1_000; // side=DOWN but price rose -> lose
let before = svm.get_balance(&bettor.pubkey()).unwrap();
let close_ix = make_close_ix(0, exit_price, admin.pubkey(), bettor.pubkey());
send(&mut svm, &[&admin], close_ix).expect("close_bet");
assert_eq!(svm.get_balance(&bettor.pubkey()).unwrap(), before);
assert_eq!(read_bet(&svm, 0).status, 2);
}
#[test]
fn close_bet_equal_price_stays_open() {
let (mut svm, admin) = setup();
initialize(&mut svm, &admin);
let (bettor, amount, entry_price) = create_up_bet(&mut svm, &admin, 0);
set_clock(&mut svm, 1_700_000_000 + EXPIRY_SECONDS + 1);
let before = svm.get_balance(&bettor.pubkey()).unwrap();
let payout = amount * MULTIPLIER_BPS / 10_000;
fund_vault(&mut svm, 10 * amount);
let equal_ix = make_close_ix(0, entry_price, admin.pubkey(), bettor.pubkey());
send(&mut svm, &[&admin], equal_ix).expect("equal close");
assert_eq!(read_bet(&svm, 0).status, 0);
assert_eq!(svm.get_balance(&bettor.pubkey()).unwrap(), before);
let exit_price = entry_price + 1_000;
let second_ix = make_close_ix(0, exit_price, admin.pubkey(), bettor.pubkey());
send(&mut svm, &[&admin], second_ix).expect("second close");
assert_eq!(
svm.get_balance(&bettor.pubkey()).unwrap(),
before + payout
);
assert_eq!(read_bet(&svm, 0).status, 1);
}
#[test]
fn close_bet_before_expiry_rejected() {
let (mut svm, admin) = setup();
initialize(&mut svm, &admin);
let (bettor, _amount, entry_price) = create_up_bet(&mut svm, &admin, 0);
let close_ix = make_close_ix(0, entry_price + 500, admin.pubkey(), bettor.pubkey());
let res = send(&mut svm, &[&admin], close_ix);
assert!(res.is_err(), "expected premature close to be rejected");
assert_eq!(read_bet(&svm, 0).status, 0);
}
#[test]
fn close_bet_wrong_relayer_rejected() {
let (mut svm, admin) = setup();
initialize(&mut svm, &admin);
let (bettor, _amount, entry_price) = create_up_bet(&mut svm, &admin, 0);
let attacker = Keypair::new();
svm.airdrop(&attacker.pubkey(), 100_000_000_000).unwrap();
set_clock(&mut svm, 1_700_000_000 + EXPIRY_SECONDS + 1);
let close_ix = make_close_ix(0, entry_price + 500, attacker.pubkey(), bettor.pubkey());
let res = send(&mut svm, &[&attacker], close_ix);
assert!(res.is_err(), "expected wrong relayer to be rejected");
assert_eq!(read_bet(&svm, 0).status, 0);
}
#[test]
fn close_bet_replay_rejected() {
let (mut svm, admin) = setup();
initialize(&mut svm, &admin);
let (bettor, _amount, entry_price) = create_up_bet(&mut svm, &admin, 0);
set_clock(&mut svm, 1_700_000_000 + EXPIRY_SECONDS + 1);
fund_vault(&mut svm, 10 * MIN_AMOUNT);
let close_ix = make_close_ix(0, entry_price + 500, admin.pubkey(), bettor.pubkey());
send(&mut svm, &[&admin], close_ix).expect("first close");
let res = send(&mut svm, &[&admin], make_close_ix(0, entry_price + 500, admin.pubkey(), bettor.pubkey()));
assert!(res.is_err(), "expected replay close to be rejected");
}
#[test]
fn create_bet_rejects_out_of_range() {
let (mut svm, admin) = setup();
initialize(&mut svm, &admin);
let bettor = Keypair::new();
svm.airdrop(&bettor.pubkey(), 100_000_000_000).unwrap();
set_clock(&mut svm, 1_700_000_000);
let ix = make_create_ix(0, 0, 1, 100_000_000u64, bettor.pubkey());
let res = send(&mut svm, &[&bettor], ix);
assert!(res.is_err(), "expected below-min bet to be rejected");
}