243 lines
7.0 KiB
TypeScript
243 lines
7.0 KiB
TypeScript
import fs from 'mz/fs';
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import {expect, use} from 'chai';
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import chaiAsPromised from 'chai-as-promised';
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import {
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Connection,
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BpfLoader,
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Transaction,
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sendAndConfirmTransaction,
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Keypair,
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} from '../src';
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import {url} from './url';
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import {BPF_LOADER_PROGRAM_ID} from '../src/bpf-loader';
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import {helpers} from './mocks/rpc-http';
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use(chaiAsPromised);
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if (process.env.TEST_LIVE) {
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describe('BPF Loader', () => {
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describe('load BPF program', () => {
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const connection = new Connection(url, 'confirmed');
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let program = Keypair.generate();
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let payerAccount = Keypair.generate();
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let programData: Buffer;
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before(async function () {
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this.timeout(60_000);
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programData = await fs.readFile(
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'test/fixtures/noop-program/solana_bpf_rust_noop.so',
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);
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const {feeCalculator} = await connection.getRecentBlockhash();
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const fees =
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feeCalculator.lamportsPerSignature *
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BpfLoader.getMinNumSignatures(programData.length);
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const payerBalance = await connection.getMinimumBalanceForRentExemption(
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0,
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);
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const executableBalance =
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await connection.getMinimumBalanceForRentExemption(
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programData.length,
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);
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await helpers.airdrop({
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connection,
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address: payerAccount.publicKey,
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amount: payerBalance + fees + executableBalance,
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});
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// Create program account with low balance
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await helpers.airdrop({
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connection,
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address: program.publicKey,
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amount: executableBalance - 1,
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});
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// First load will fail part way due to lack of funds
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const insufficientPayerAccount = Keypair.generate();
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await helpers.airdrop({
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connection,
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address: insufficientPayerAccount.publicKey,
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amount: 2 * feeCalculator.lamportsPerSignature * 8,
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});
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const failedLoad = BpfLoader.load(
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connection,
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insufficientPayerAccount,
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program,
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programData,
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BPF_LOADER_PROGRAM_ID,
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);
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await expect(failedLoad).to.be.rejected;
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// Second load will succeed
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await BpfLoader.load(
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connection,
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payerAccount,
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program,
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programData,
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BPF_LOADER_PROGRAM_ID,
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);
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});
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it('get confirmed transaction', async () => {
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const transaction = new Transaction().add({
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keys: [
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{pubkey: payerAccount.publicKey, isSigner: true, isWritable: true},
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],
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programId: program.publicKey,
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});
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const signature = await sendAndConfirmTransaction(
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connection,
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transaction,
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[payerAccount],
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{
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commitment: 'finalized', // `getParsedConfirmedTransaction` requires max commitment
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preflightCommitment: connection.commitment || 'finalized',
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},
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);
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const parsedTx = await connection.getParsedConfirmedTransaction(
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signature,
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);
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if (parsedTx === null) {
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expect(parsedTx).not.to.be.null;
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return;
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}
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const {signatures, message} = parsedTx.transaction;
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expect(signatures[0]).to.eq(signature);
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const ix = message.instructions[0];
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if ('parsed' in ix) {
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expect('parsed' in ix).to.eq(false);
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} else {
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expect(ix.programId).to.eql(program.publicKey);
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expect(ix.data).to.eq('');
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}
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}).timeout(30000);
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it('simulate transaction', async () => {
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const simulatedTransaction = new Transaction().add({
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keys: [
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{pubkey: payerAccount.publicKey, isSigner: true, isWritable: true},
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],
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programId: program.publicKey,
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});
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const {err, logs} = (
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await connection.simulateTransaction(simulatedTransaction, [
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payerAccount,
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])
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).value;
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expect(err).to.be.null;
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if (logs === null) {
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expect(logs).not.to.be.null;
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return;
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}
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expect(logs.length).to.be.at.least(2);
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expect(logs[0]).to.eq(
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`Program ${program.publicKey.toBase58()} invoke [1]`,
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);
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expect(logs[logs.length - 1]).to.eq(
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`Program ${program.publicKey.toBase58()} success`,
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);
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});
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it('deprecated - simulate transaction without signature verification', async () => {
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const simulatedTransaction = new Transaction().add({
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keys: [
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{pubkey: payerAccount.publicKey, isSigner: true, isWritable: true},
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],
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programId: program.publicKey,
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});
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simulatedTransaction.setSigners(payerAccount.publicKey);
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const {err, logs} = (
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await connection.simulateTransaction(simulatedTransaction)
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).value;
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expect(err).to.be.null;
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if (logs === null) {
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expect(logs).not.to.be.null;
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return;
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}
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expect(logs.length).to.be.at.least(2);
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expect(logs[0]).to.eq(
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`Program ${program.publicKey.toBase58()} invoke [1]`,
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);
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expect(logs[logs.length - 1]).to.eq(
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`Program ${program.publicKey.toBase58()} success`,
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);
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});
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it('simulate transaction without signature verification', async () => {
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const simulatedTransaction = new Transaction({
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feePayer: payerAccount.publicKey,
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}).add({
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keys: [
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{pubkey: payerAccount.publicKey, isSigner: true, isWritable: true},
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],
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programId: program.publicKey,
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});
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const {err, logs} = (
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await connection.simulateTransaction(simulatedTransaction)
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).value;
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expect(err).to.be.null;
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if (logs === null) {
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expect(logs).not.to.be.null;
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return;
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}
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expect(logs.length).to.be.at.least(2);
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expect(logs[0]).to.eq(
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`Program ${program.publicKey.toBase58()} invoke [1]`,
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);
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expect(logs[logs.length - 1]).to.eq(
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`Program ${program.publicKey.toBase58()} success`,
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);
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});
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it('simulate transaction with bad programId', async () => {
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const simulatedTransaction = new Transaction().add({
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keys: [
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{pubkey: payerAccount.publicKey, isSigner: true, isWritable: true},
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],
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programId: Keypair.generate().publicKey,
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});
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simulatedTransaction.setSigners(payerAccount.publicKey);
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const {err, logs} = (
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await connection.simulateTransaction(simulatedTransaction)
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).value;
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expect(err).to.eq('ProgramAccountNotFound');
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if (logs === null) {
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expect(logs).not.to.be.null;
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return;
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}
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expect(logs).to.have.length(0);
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});
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it('reload program', async () => {
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expect(
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await BpfLoader.load(
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connection,
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payerAccount,
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program,
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programData,
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BPF_LOADER_PROGRAM_ID,
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),
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).to.eq(false);
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});
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});
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});
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}
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