examples: Cashiers check

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Armani Ferrante 2021-02-13 00:50:20 +08:00
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@ -52,6 +52,7 @@ jobs:
- pushd examples/interface && anchor test && popd - pushd examples/interface && anchor test && popd
- pushd examples/lockup && anchor test && popd - pushd examples/lockup && anchor test && popd
- pushd examples/misc && anchor test && popd - pushd examples/misc && anchor test && popd
- pushd examples/cashiers-check && anchor test && popd
- pushd examples/tutorial/basic-0 && anchor test && popd - pushd examples/tutorial/basic-0 && anchor test && popd
- pushd examples/tutorial/basic-1 && anchor test && popd - pushd examples/tutorial/basic-1 && anchor test && popd
- pushd examples/tutorial/basic-2 && anchor test && popd - pushd examples/tutorial/basic-2 && anchor test && popd

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cluster = "localnet"
wallet = "~/.config/solana/id.json"

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[workspace]
members = [
"programs/*"
]

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// Migrations are an early feature. Currently, they're nothing more than this
// single deploy script that's invoked from the CLI, injecting a provider
// configured from the workspace's Anchor.toml.
const anchor = require("@project-serum/anchor");
module.exports = async function (provider) {
// Configure client to use the provider.
anchor.setProvider(provider);
// Add your deploy script here.
}

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[package]
name = "cashiers-check"
version = "0.1.0"
description = "Created with Anchor"
edition = "2018"
[lib]
crate-type = ["cdylib", "lib"]
name = "cashiers_check"
[features]
no-entrypoint = []
no-idl = []
cpi = ["no-entrypoint"]
default = []
[dependencies]
anchor-lang = { git = "https://github.com/project-serum/anchor" }
anchor-spl = { git = "https://github.com/project-serum/anchor" }

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[target.bpfel-unknown-unknown.dependencies.std]
features = []

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//! A cashiers check example. The funds are immediately withdrawn from a user's
//! account and sent to a program controlled `Check` account, where the funds
//! reside until they are "cashed" by the intended recipient. The creator of
//! the check can cancel the check at any time to get back the funds.
#![feature(proc_macro_hygiene)]
use anchor_lang::prelude::*;
use anchor_spl::token::{self, TokenAccount, Transfer};
use std::convert::Into;
#[program]
pub mod cashiers_check {
use super::*;
#[access_control(CreateCheck::accounts(&ctx, nonce))]
pub fn create_check(
ctx: Context<CreateCheck>,
amount: u64,
memo: Option<String>,
nonce: u8,
) -> Result<()> {
// Transfer funds to the check.
let cpi_accounts = Transfer {
from: ctx.accounts.from.to_account_info().clone(),
to: ctx.accounts.vault.to_account_info().clone(),
authority: ctx.accounts.owner.clone(),
};
let cpi_program = ctx.accounts.token_program.clone();
let cpi_ctx = CpiContext::new(cpi_program, cpi_accounts);
token::transfer(cpi_ctx, amount)?;
// Print the check.
let check = &mut ctx.accounts.check;
check.amount = amount;
check.from = *ctx.accounts.from.to_account_info().key;
check.to = *ctx.accounts.to.to_account_info().key;
check.vault = *ctx.accounts.vault.to_account_info().key;
check.nonce = nonce;
check.memo = memo;
Ok(())
}
#[access_control(not_burned(&ctx.accounts.check))]
pub fn cash_check(ctx: Context<CashCheck>) -> Result<()> {
let seeds = &[
ctx.accounts.check.to_account_info().key.as_ref(),
&[ctx.accounts.check.nonce],
];
let signer = &[&seeds[..]];
let cpi_accounts = Transfer {
from: ctx.accounts.vault.to_account_info().clone(),
to: ctx.accounts.to.to_account_info().clone(),
authority: ctx.accounts.check_signer.clone(),
};
let cpi_program = ctx.accounts.token_program.clone();
let cpi_ctx = CpiContext::new_with_signer(cpi_program, cpi_accounts, signer);
token::transfer(cpi_ctx, ctx.accounts.check.amount)?;
// Burn the check for one time use.
ctx.accounts.check.burned = true;
Ok(())
}
#[access_control(not_burned(&ctx.accounts.check))]
pub fn cancel_check(ctx: Context<CancelCheck>) -> Result<()> {
let seeds = &[
ctx.accounts.check.to_account_info().key.as_ref(),
&[ctx.accounts.check.nonce],
];
let signer = &[&seeds[..]];
let cpi_accounts = Transfer {
from: ctx.accounts.vault.to_account_info().clone(),
to: ctx.accounts.from.to_account_info().clone(),
authority: ctx.accounts.check_signer.clone(),
};
let cpi_program = ctx.accounts.token_program.clone();
let cpi_ctx = CpiContext::new_with_signer(cpi_program, cpi_accounts, signer);
token::transfer(cpi_ctx, ctx.accounts.check.amount)?;
ctx.accounts.check.burned = true;
Ok(())
}
}
#[derive(Accounts)]
pub struct CreateCheck<'info> {
// Check being created.
#[account(init)]
check: ProgramAccount<'info, Check>,
// Check's token vault.
#[account(mut, "&vault.owner == check_signer.key")]
vault: CpiAccount<'info, TokenAccount>,
// Program derived address for the check.
check_signer: AccountInfo<'info>,
// Token account the check is made from.
#[account(mut, has_one = owner)]
from: CpiAccount<'info, TokenAccount>,
// Token account the check is made to.
#[account("from.mint == to.mint")]
to: CpiAccount<'info, TokenAccount>,
// Owner of the `from` token account.
owner: AccountInfo<'info>,
token_program: AccountInfo<'info>,
rent: Sysvar<'info, Rent>,
}
impl<'info> CreateCheck<'info> {
pub fn accounts(ctx: &Context<CreateCheck>, nonce: u8) -> Result<()> {
let signer = Pubkey::create_program_address(
&[ctx.accounts.check.to_account_info().key.as_ref(), &[nonce]],
ctx.program_id,
)
.map_err(|_| ErrorCode::InvalidCheckNonce)?;
if &signer != ctx.accounts.check_signer.to_account_info().key {
return Err(ErrorCode::InvalidCheckSigner.into());
}
Ok(())
}
}
#[derive(Accounts)]
pub struct CashCheck<'info> {
#[account(mut, has_one = vault, has_one = to)]
check: ProgramAccount<'info, Check>,
#[account(mut)]
vault: AccountInfo<'info>,
#[account(seeds = [
check.to_account_info().key.as_ref(),
&[check.nonce],
])]
check_signer: AccountInfo<'info>,
#[account(mut, has_one = owner)]
to: CpiAccount<'info, TokenAccount>,
#[account(signer)]
owner: AccountInfo<'info>,
token_program: AccountInfo<'info>,
}
#[derive(Accounts)]
pub struct CancelCheck<'info> {
#[account(mut, has_one = vault, has_one = from)]
check: ProgramAccount<'info, Check>,
#[account(mut)]
vault: AccountInfo<'info>,
#[account(seeds = [
check.to_account_info().key.as_ref(),
&[check.nonce],
])]
check_signer: AccountInfo<'info>,
#[account(mut, has_one = owner)]
from: CpiAccount<'info, TokenAccount>,
#[account(signer)]
owner: AccountInfo<'info>,
token_program: AccountInfo<'info>,
}
#[account]
pub struct Check {
from: Pubkey,
to: Pubkey,
amount: u64,
memo: Option<String>,
vault: Pubkey,
nonce: u8,
burned: bool,
}
#[error]
pub enum ErrorCode {
#[msg("The given nonce does not create a valid program derived address.")]
InvalidCheckNonce,
#[msg("The derived check signer does not match that which was given.")]
InvalidCheckSigner,
#[msg("The given check has already been burned.")]
AlreadyBurned,
}
fn not_burned(check: &Check) -> Result<()> {
if check.burned {
return Err(ErrorCode::AlreadyBurned.into());
}
Ok(())
}

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const anchor = require("@project-serum/anchor");
const serumCmn = require("@project-serum/common");
const TokenInstructions = require("@project-serum/serum").TokenInstructions;
const assert = require("assert");
describe("cashiers-check", () => {
// Configure the client to use the local cluster.
anchor.setProvider(anchor.Provider.env());
const program = anchor.workspace.CashiersCheck;
let mint = null;
let god = null;
let receiver = null;
it("Sets up initial test state", async () => {
const [_mint, _god] = await serumCmn.createMintAndVault(
program.provider,
new anchor.BN(1000000)
);
mint = _mint;
god = _god;
receiver = await serumCmn.createTokenAccount(
program.provider,
mint,
program.provider.wallet.publicKey
);
});
const check = new anchor.web3.Account();
const vault = new anchor.web3.Account();
let checkSigner = null;
it("Creates a check!", async () => {
let [_checkSigner, nonce] = await anchor.web3.PublicKey.findProgramAddress(
[check.publicKey.toBuffer()],
program.programId
);
checkSigner = _checkSigner;
await program.rpc.createCheck(new anchor.BN(100), "Hello world", nonce, {
accounts: {
check: check.publicKey,
vault: vault.publicKey,
checkSigner,
from: god,
to: receiver,
owner: program.provider.wallet.publicKey,
tokenProgram: TokenInstructions.TOKEN_PROGRAM_ID,
rent: anchor.web3.SYSVAR_RENT_PUBKEY,
},
signers: [check, vault],
instructions: [
await program.account.check.createInstruction(check, 300),
...(await serumCmn.createTokenAccountInstrs(
program.provider,
vault.publicKey,
mint,
checkSigner
)),
],
});
const checkAccount = await program.account.check(check.publicKey);
assert.ok(checkAccount.from.equals(god));
assert.ok(checkAccount.to.equals(receiver));
assert.ok(checkAccount.amount.eq(new anchor.BN(100)));
assert.ok(checkAccount.memo === "Hello world");
assert.ok(checkAccount.vault.equals(vault.publicKey));
assert.ok(checkAccount.nonce === nonce);
assert.ok(checkAccount.burned === false);
let vaultAccount = await serumCmn.getTokenAccount(
program.provider,
checkAccount.vault
);
assert.ok(vaultAccount.amount.eq(new anchor.BN(100)));
});
it("Cashes a check", async () => {
await program.rpc.cashCheck({
accounts: {
check: check.publicKey,
vault: vault.publicKey,
checkSigner: checkSigner,
to: receiver,
owner: program.provider.wallet.publicKey,
tokenProgram: TokenInstructions.TOKEN_PROGRAM_ID,
},
});
const checkAccount = await program.account.check(check.publicKey);
assert.ok(checkAccount.burned === true);
let vaultAccount = await serumCmn.getTokenAccount(
program.provider,
checkAccount.vault
);
assert.ok(vaultAccount.amount.eq(new anchor.BN(0)));
let receiverAccount = await serumCmn.getTokenAccount(
program.provider,
receiver
);
assert.ok(receiverAccount.amount.eq(new anchor.BN(100)));
});
});