package api
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import (
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"fmt"
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"testing"
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"github.com/hermeznetwork/hermez-node/apitypes"
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"github.com/hermeznetwork/hermez-node/common"
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"github.com/hermeznetwork/hermez-node/db/historydb"
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"github.com/mitchellh/copystructure"
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"github.com/stretchr/testify/assert"
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"github.com/stretchr/testify/require"
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)
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type testCVP struct {
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Root string
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Siblings []string
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OldKey string
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OldValue string
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IsOld0 bool
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Key string
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Value string
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Fnc int
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}
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type testExit struct {
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ItemID uint64 `json:"itemId"`
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BatchNum common.BatchNum `json:"batchNum"`
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AccountIdx string `json:"accountIndex"`
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BJJ apitypes.HezBJJ `json:"bjj"`
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EthAddr apitypes.HezEthAddr `json:"hezEthereumAddress"`
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MerkleProof testCVP `json:"merkleProof"`
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Balance string `json:"balance"`
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InstantWithdrawn *int64 `json:"instantWithdrawn"`
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DelayedWithdrawRequest *int64 `json:"delayedWithdrawRequest"`
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DelayedWithdrawn *int64 `json:"delayedWithdrawn"`
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Token historydb.TokenWithUSD `json:"token"`
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}
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type testExitsResponse struct {
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Exits []testExit `json:"exits"`
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PendingItems uint64 `json:"pendingItems"`
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}
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func (t testExitsResponse) GetPending() (pendingItems, lastItemID uint64) {
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if len(t.Exits) == 0 {
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return 0, 0
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}
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pendingItems = t.PendingItems
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lastItemID = t.Exits[len(t.Exits)-1].ItemID
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return pendingItems, lastItemID
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}
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func (t testExitsResponse) New() Pendinger { return &testExitsResponse{} }
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func (t *testExitsResponse) Len() int {
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return len(t.Exits)
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}
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func genTestExits(
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commonExits []common.ExitInfo,
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tokens []historydb.TokenWithUSD,
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accs []common.Account,
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) []testExit {
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allExits := []testExit{}
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for _, exit := range commonExits {
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token := getTokenByIdx(exit.AccountIdx, tokens, accs)
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siblings := []string{}
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for i := 0; i < len(exit.MerkleProof.Siblings); i++ {
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siblings = append(siblings, exit.MerkleProof.Siblings[i].String())
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}
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acc := getAccountByIdx(exit.AccountIdx, accs)
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allExits = append(allExits, testExit{
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BatchNum: exit.BatchNum,
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AccountIdx: idxToHez(exit.AccountIdx, token.Symbol),
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BJJ: apitypes.NewHezBJJ(acc.BJJ),
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EthAddr: apitypes.NewHezEthAddr(acc.EthAddr),
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MerkleProof: testCVP{
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Root: exit.MerkleProof.Root.String(),
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Siblings: siblings,
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OldKey: exit.MerkleProof.OldKey.String(),
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OldValue: exit.MerkleProof.OldValue.String(),
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IsOld0: exit.MerkleProof.IsOld0,
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Key: exit.MerkleProof.Key.String(),
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Value: exit.MerkleProof.Value.String(),
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Fnc: exit.MerkleProof.Fnc,
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},
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Balance: exit.Balance.String(),
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InstantWithdrawn: exit.InstantWithdrawn,
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DelayedWithdrawRequest: exit.DelayedWithdrawRequest,
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DelayedWithdrawn: exit.DelayedWithdrawn,
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Token: token,
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})
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}
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return allExits
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}
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func TestGetExits(t *testing.T) {
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endpoint := apiURL + "exits"
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fetchedExits := []testExit{}
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appendIter := func(intr interface{}) {
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for i := 0; i < len(intr.(*testExitsResponse).Exits); i++ {
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tmp, err := copystructure.Copy(intr.(*testExitsResponse).Exits[i])
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if err != nil {
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panic(err)
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}
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fetchedExits = append(fetchedExits, tmp.(testExit))
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}
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}
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// Get all (no filters)
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limit := 8
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path := fmt.Sprintf("%s?limit=%d", endpoint, limit)
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err := doGoodReqPaginated(path, historydb.OrderAsc, &testExitsResponse{}, appendIter)
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assert.NoError(t, err)
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assertExitAPIs(t, tc.exits, fetchedExits)
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// Get by ethAddr
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fetchedExits = []testExit{}
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limit = 7
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var account testAccount
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for _, tx := range tc.txs {
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found := false
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if tx.Type == common.TxTypeExit {
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for i := 0; i < len(tc.accounts); i++ {
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if tx.FromIdx != nil && string(tc.accounts[i].Idx) == *tx.FromIdx {
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account = tc.accounts[i]
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break
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}
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}
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}
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if found {
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break
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}
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}
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path = fmt.Sprintf(
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"%s?hezEthereumAddress=%s&limit=%d",
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endpoint, account.EthAddr, limit,
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)
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err = doGoodReqPaginated(path, historydb.OrderAsc, &testExitsResponse{}, appendIter)
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assert.NoError(t, err)
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var accountExits []testExit
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for i := range tc.exits {
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for _, acc := range tc.accounts {
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if string(acc.Idx) == tc.exits[i].AccountIdx {
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if acc.EthAddr == account.EthAddr {
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accountExits = append(accountExits, tc.exits[i])
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}
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}
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}
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}
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assertExitAPIs(t, accountExits, fetchedExits)
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// Get by bjj
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fetchedExits = []testExit{}
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limit = 6
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path = fmt.Sprintf(
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"%s?BJJ=%s&limit=%d",
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endpoint, account.PublicKey, limit,
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)
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err = doGoodReqPaginated(path, historydb.OrderAsc, &testExitsResponse{}, appendIter)
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assert.NoError(t, err)
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assertExitAPIs(t, accountExits, fetchedExits)
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// Get by tokenID
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fetchedExits = []testExit{}
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limit = 5
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tokenID := tc.exits[0].Token.TokenID
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path = fmt.Sprintf(
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"%s?tokenId=%d&limit=%d",
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endpoint, tokenID, limit,
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)
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err = doGoodReqPaginated(path, historydb.OrderAsc, &testExitsResponse{}, appendIter)
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assert.NoError(t, err)
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tokenIDExits := []testExit{}
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for i := 0; i < len(tc.exits); i++ {
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if tc.exits[i].Token.TokenID == tokenID {
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tokenIDExits = append(tokenIDExits, tc.exits[i])
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}
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}
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assertExitAPIs(t, tokenIDExits, fetchedExits)
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// idx
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fetchedExits = []testExit{}
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limit = 4
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idx := tc.exits[0].AccountIdx
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path = fmt.Sprintf(
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"%s?accountIndex=%s&limit=%d",
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endpoint, idx, limit,
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)
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err = doGoodReqPaginated(path, historydb.OrderAsc, &testExitsResponse{}, appendIter)
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assert.NoError(t, err)
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idxExits := []testExit{}
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for i := 0; i < len(tc.exits); i++ {
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if tc.exits[i].AccountIdx[6:] == idx[6:] {
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idxExits = append(idxExits, tc.exits[i])
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}
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}
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assertExitAPIs(t, idxExits, fetchedExits)
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// batchNum
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fetchedExits = []testExit{}
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limit = 3
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batchNum := tc.exits[0].BatchNum
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path = fmt.Sprintf(
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"%s?batchNum=%d&limit=%d",
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endpoint, batchNum, limit,
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)
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err = doGoodReqPaginated(path, historydb.OrderAsc, &testExitsResponse{}, appendIter)
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assert.NoError(t, err)
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batchNumExits := []testExit{}
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for i := 0; i < len(tc.exits); i++ {
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if tc.exits[i].BatchNum == batchNum {
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batchNumExits = append(batchNumExits, tc.exits[i])
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}
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}
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assertExitAPIs(t, batchNumExits, fetchedExits)
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// OnlyPendingWithdraws
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fetchedExits = []testExit{}
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limit = 7
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path = fmt.Sprintf(
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"%s?&onlyPendingWithdraws=%t&limit=%d",
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endpoint, true, limit,
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)
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err = doGoodReqPaginated(path, historydb.OrderAsc, &testExitsResponse{}, appendIter)
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assert.NoError(t, err)
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pendingExits := []testExit{}
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for i := 0; i < len(tc.exits); i++ {
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if tc.exits[i].InstantWithdrawn == nil && tc.exits[i].DelayedWithdrawn == nil {
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pendingExits = append(pendingExits, tc.exits[i])
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}
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}
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assertExitAPIs(t, pendingExits, fetchedExits)
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// Multiple filters
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fetchedExits = []testExit{}
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limit = 1
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path = fmt.Sprintf(
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"%s?batchNum=%d&tokeId=%d&limit=%d",
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endpoint, batchNum, tokenID, limit,
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)
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err = doGoodReqPaginated(path, historydb.OrderAsc, &testExitsResponse{}, appendIter)
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assert.NoError(t, err)
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mixedExits := []testExit{}
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flipedExits := []testExit{}
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for i := 0; i < len(tc.exits); i++ {
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if tc.exits[i].BatchNum == batchNum && tc.exits[i].Token.TokenID == tokenID {
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mixedExits = append(mixedExits, tc.exits[i])
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}
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flipedExits = append(flipedExits, tc.exits[len(tc.exits)-1-i])
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}
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assertExitAPIs(t, mixedExits, fetchedExits)
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// All, in reverse order
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fetchedExits = []testExit{}
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limit = 5
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path = fmt.Sprintf("%s?limit=%d", endpoint, limit)
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err = doGoodReqPaginated(path, historydb.OrderDesc, &testExitsResponse{}, appendIter)
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assert.NoError(t, err)
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assertExitAPIs(t, flipedExits, fetchedExits)
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// Empty array
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fetchedExits = []testExit{}
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path = fmt.Sprintf("%s?batchNum=999999", endpoint)
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err = doGoodReqPaginated(path, historydb.OrderDesc, &testExitsResponse{}, appendIter)
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assert.NoError(t, err)
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assertExitAPIs(t, []testExit{}, fetchedExits)
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// 400
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path = fmt.Sprintf(
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"%s?accountIndex=%s&hezEthereumAddress=%s",
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endpoint, idx, account.EthAddr,
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)
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err = doBadReq("GET", path, nil, 400)
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assert.NoError(t, err)
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path = fmt.Sprintf("%s?tokenId=X", endpoint)
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err = doBadReq("GET", path, nil, 400)
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assert.NoError(t, err)
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}
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func TestGetExit(t *testing.T) {
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// Get all txs by their ID
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endpoint := apiURL + "exits/"
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fetchedExits := []testExit{}
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for _, exit := range tc.exits {
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fetchedExit := testExit{}
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assert.NoError(
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t, doGoodReq(
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"GET",
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fmt.Sprintf("%s%d/%s", endpoint, exit.BatchNum, exit.AccountIdx),
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nil, &fetchedExit,
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),
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)
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fetchedExits = append(fetchedExits, fetchedExit)
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}
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assertExitAPIs(t, tc.exits, fetchedExits)
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// 400
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err := doBadReq("GET", endpoint+"1/haz:BOOM:1", nil, 400)
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assert.NoError(t, err)
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err = doBadReq("GET", endpoint+"-1/hez:BOOM:1", nil, 400)
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assert.NoError(t, err)
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// 404
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err = doBadReq("GET", endpoint+"494/hez:XXX:1", nil, 404)
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assert.NoError(t, err)
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}
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func assertExitAPIs(t *testing.T, expected, actual []testExit) {
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require.Equal(t, len(expected), len(actual))
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for i := 0; i < len(actual); i++ { //nolint len(actual) won't change within the loop
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actual[i].ItemID = 0
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actual[i].Token.ItemID = 0
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if expected[i].Token.USDUpdate == nil {
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assert.Equal(t, expected[i].Token.USDUpdate, actual[i].Token.USDUpdate)
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} else {
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assert.Equal(t, expected[i].Token.USDUpdate.Unix(), actual[i].Token.USDUpdate.Unix())
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expected[i].Token.USDUpdate = actual[i].Token.USDUpdate
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}
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assert.Equal(t, expected[i], actual[i])
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}
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}
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