Mendemonstrasikan penggunaan WarpToSlot dan SetClock untuk menguji logika
program yang bergantung pada waktu.
Manipulasi Jam Dasar
package mytestimport ("testing"litesvm "github.com/LiteSVM/litesvm-go")func TestClockWarp(t *testing.T) {svm, err := litesvm.New()if err != nil {t.Fatal(err)}defer svm.Close()// Read the initial clock.initial, err := svm.Clock()if err != nil {t.Fatal(err)}t.Logf("initial state:")t.Logf(" slot: %d", initial.Slot)t.Logf(" epoch: %d", initial.Epoch)t.Logf(" unix timestamp: %d", initial.UnixTimestamp)// Warp to slot 1_000.if err := svm.WarpToSlot(1_000); err != nil {t.Fatal(err)}after, err := svm.Clock()if err != nil {t.Fatal(err)}t.Logf("after warpToSlot(1000):")t.Logf(" slot: %d", after.Slot)t.Logf(" epoch: %d", after.Epoch)// Warp further.if err := svm.WarpToSlot(100_000); err != nil {t.Fatal(err)}after2, err := svm.Clock()if err != nil {t.Fatal(err)}t.Logf("after warpToSlot(100000):")t.Logf(" slot: %d", after2.Slot)t.Logf(" epoch: %d", after2.Epoch)}
Menguji Logika Terkunci Waktu
package mytestimport ("encoding/binary""testing"litesvm "github.com/LiteSVM/litesvm-go"solana "github.com/gagliardetto/solana-go")func TestTimeLockedVault(t *testing.T) {svm, err := litesvm.New()if err != nil {t.Fatal(err)}defer svm.Close()// Setters are infallible in practice; discarding the return keeps the// example readable._ = svm.SetSigverify(false)_ = svm.SetBlockhashCheck(false)_ = svm.SetSysvars()// Fund a payer.priv, err := solana.NewRandomPrivateKey()if err != nil {t.Fatal(err)}payer := priv.PublicKey()if err := svm.Airdrop(payer, 10_000_000_000); err != nil {t.Fatal(err)}// Set up a time-locked vault account.// Layout: [u8 discriminator, u64 unlock_slot, u64 amount]const unlockSlot = uint64(10_000)const lockedAmount = uint64(5_000_000_000)vaultData := make([]byte, 1+8+8)vaultData[0] = 0x01binary.LittleEndian.PutUint64(vaultData[1:9], unlockSlot)binary.LittleEndian.PutUint64(vaultData[9:17], lockedAmount)programID := solana.NewWallet().PublicKey()vaultAddr := solana.NewWallet().PublicKey()minBalance, err := svm.MinimumBalanceForRentExemption(len(vaultData))if err != nil {t.Fatal(err)}acct, err := litesvm.NewAccount(minBalance+lockedAmount, vaultData, programID, false, 0)if err != nil {t.Fatal(err)}defer acct.Close()if err := svm.SetAccount(vaultAddr, acct); err != nil {t.Fatal(err)}t.Logf("vault created: unlock slot=%d, locked=%.3f SOL",unlockSlot, float64(lockedAmount)/1e9)// --- Test 1: Before unlock ---cBefore, err := svm.Clock()if err != nil {t.Fatal(err)}t.Logf("current slot: %d", cBefore.Slot)// In a real test you would build a withdraw instruction here and assert// it fails because the current slot < unlock_slot.t.Log("withdrawal attempt: EXPECTED TO FAIL (too early)")// --- Test 2: After unlock ---if err := svm.WarpToSlot(unlockSlot + 100); err != nil {t.Fatal(err)}cAfter, err := svm.Clock()if err != nil {t.Fatal(err)}t.Logf("current slot: %d", cAfter.Slot)// Build and submit the withdraw instruction; assert it succeeds.t.Log("withdrawal attempt: EXPECTED TO SUCCEED (after unlock)")// Verify vault state.updated := svm.GetAccount(vaultAddr)if updated == nil {t.Fatal("vault missing")}defer updated.Close()t.Logf("vault balance: %d lamports", updated.Lamports())_ = payer // payer would be referenced when building the withdraw ix}
Membaca Jadwal Epoch
func TestReadEpochSchedule(t *testing.T) {svm, err := litesvm.New()if err != nil {t.Fatal(err)}defer svm.Close()es, err := svm.EpochSchedule()if err != nil {t.Fatal(err)}t.Logf("slots per epoch: %d", es.SlotsPerEpoch)t.Logf("first normal epoch: %d", es.FirstNormalEpoch)t.Logf("first normal slot: %d", es.FirstNormalSlot)}
WarpToSlot memajukan field Slot pada jam tetapi tidak secara otomatis
memperbarui Epoch atau UnixTimestamp. Gunakan SetClock untuk kontrol penuh atas
field jam.
Manipulasi Jam Manual
Ketika program Anda membaca Epoch atau UnixTimestamp dari sysvar Clock, atur
field tersebut secara langsung dengan SetClock:
func TestSetClock(t *testing.T) {svm, err := litesvm.New()if err != nil {t.Fatal(err)}defer svm.Close()c, err := svm.Clock()if err != nil {t.Fatal(err)}c.Slot = 50_000c.Epoch = 5c.UnixTimestamp = 1_700_000_000if err := svm.SetClock(c); err != nil {t.Fatal(err)}after, err := svm.Clock()if err != nil {t.Fatal(err)}t.Logf("slot: %d", after.Slot) // 50000t.Logf("epoch: %d", after.Epoch) // 5t.Logf("unix: %d", after.UnixTimestamp) // 1700000000}
Ini mencerminkan pola Rust set_sysvar(&clock). Gunakan WarpToSlot untuk kemajuan slot
sederhana, dan SetClock ketika Anda membutuhkan kontrol epoch atau timestamp.
Kasus Penggunaan
Manipulasi waktu berguna untuk menguji:
| Skenario | Pendekatan |
|---|---|
| Vesting token | Warp melewati cliff / tonggak vesting |
| Akhir lelang | Warp melewati slot akhir lelang |
| Hadiah staking | Gunakan SetClock untuk mengatur epoch |
| Penarikan terkunci waktu | Warp melewati slot buka kunci |
| Pembatasan laju | Warp di antara interval yang diizinkan |
| Order yang kedaluwarsa | Warp melewati kedaluwarsa order |
WarpToSlot hanya mengubah slot. Unix timestamp mungkin tidak diperbarui
secara proporsional - gunakan SetClock jika program Anda membaca UnixTimestamp.
Poin Utama
- Sysvar default aktif -
litesvm.New()mengembalikan handle dengan sysvar yang telah diinisialisasi; panggilSetSysvars()untuk mengatur ulang ke default jika Anda telah mengubahnya. - Maju ke depan -
WarpToSlot(slot)hanya memajukan field slot. - Kontrol penuh -
SetClock(Clock{...})memungkinkan Anda mengaturEpoch,UnixTimestamp, dan field lainnya. - Baca -
svm.Clock()membaca nilai saat ini. - Pola pengujian - uji sebelum dan sesudah batas waktu; harapkan kegagalan di satu sisi dan keberhasilan di sisi lainnya.
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