316 lines
10 KiB
Go
316 lines
10 KiB
Go
package server
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import (
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"bytes"
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"encoding/json"
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"fmt"
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"io/ioutil"
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"net/http"
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"net/http/httptest"
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"strings"
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"testing"
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"lbryio/lbry-id/auth"
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"lbryio/lbry-id/server/paths"
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"lbryio/lbry-id/store"
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"lbryio/lbry-id/wallet"
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)
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func TestServerGetWallet(t *testing.T) {
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tt := []struct {
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name string
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tokenString auth.AuthTokenString
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expectedStatusCode int
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expectedErrorString string
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storeErrors TestStoreFunctionsErrors
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}{
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{
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name: "success",
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tokenString: auth.AuthTokenString("seekrit"),
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expectedStatusCode: http.StatusOK,
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},
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{
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name: "validation error", // missing auth token
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tokenString: auth.AuthTokenString(""),
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expectedStatusCode: http.StatusBadRequest,
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expectedErrorString: http.StatusText(http.StatusBadRequest) + ": Missing token parameter",
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// Just check one validation error (missing auth token) to make sure the
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// validate function is called. We'll check the rest of the validation
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// errors in the other test below.
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},
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{
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name: "auth error",
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tokenString: auth.AuthTokenString("seekrit"),
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expectedStatusCode: http.StatusUnauthorized,
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expectedErrorString: http.StatusText(http.StatusUnauthorized) + ": Token Not Found",
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storeErrors: TestStoreFunctionsErrors{GetToken: store.ErrNoTokenForUserDevice},
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},
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{
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name: "db error getting wallet",
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tokenString: auth.AuthTokenString("seekrit"),
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expectedStatusCode: http.StatusInternalServerError,
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expectedErrorString: http.StatusText(http.StatusInternalServerError),
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storeErrors: TestStoreFunctionsErrors{GetWallet: fmt.Errorf("Some random DB Error!")},
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},
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}
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for _, tc := range tt {
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t.Run(tc.name, func(t *testing.T) {
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//t.Errorf("lol.")
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testAuth := TestAuth{}
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testStore := TestStore{
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TestAuthToken: auth.AuthToken{
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Token: auth.AuthTokenString(tc.tokenString),
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Scope: auth.ScopeFull,
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},
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TestEncryptedWallet: wallet.EncryptedWallet("my-encrypted-wallet"),
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TestSequence: wallet.Sequence(2),
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TestHmac: wallet.WalletHmac("my-hmac"),
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Errors: tc.storeErrors,
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}
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testEnv := TestEnv{}
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s := Server{&testAuth, &testStore, &testEnv, &TestMail{}, TestPort}
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req := httptest.NewRequest(http.MethodGet, paths.PathWallet, nil)
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q := req.URL.Query()
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q.Add("token", string(testStore.TestAuthToken.Token))
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req.URL.RawQuery = q.Encode()
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w := httptest.NewRecorder()
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// test handleWallet while we're at it, which is a dispatch for get and post
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// wallet
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s.handleWallet(w, req)
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// Make sure we tried to get an auth based on the `token` param (whether or
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// not it was a valid `token`)
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// NOTE: For tests that set testStore.TestAuthToken.Token=="", this will
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// pass even if GetToken isn't called. But we don't care, we expect the
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// request to fail for other reasons at that point.
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if want, got := testStore.TestAuthToken.Token, testStore.Called.GetToken; want != got {
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t.Errorf("testStore.Called.GetToken called with: expected %s, got %s", want, got)
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}
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body, _ := ioutil.ReadAll(w.Body)
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expectStatusCode(t, w, tc.expectedStatusCode)
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expectErrorString(t, body, tc.expectedErrorString)
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// In this case, a wallet body is expected iff there is no error string
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expectWalletBody := len(tc.expectedErrorString) == 0
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if !expectWalletBody {
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return // The rest of the test does not apply
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}
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var result WalletResponse
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err := json.Unmarshal(body, &result)
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if err != nil ||
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result.EncryptedWallet != testStore.TestEncryptedWallet ||
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result.Hmac != testStore.TestHmac ||
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result.Sequence != testStore.TestSequence {
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t.Errorf("Expected wallet response to have the test wallet values: result: %+v err: %+v", string(body), err)
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}
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if !testStore.Called.GetWallet {
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t.Errorf("Expected Store.GetWallet to be called")
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}
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})
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}
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}
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func TestServerPostWallet(t *testing.T) {
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tt := []struct {
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name string
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expectedStatusCode int
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expectedErrorString string
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expectSetWalletCall bool
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// This is getting messy, but in the case of validation failures, we don't
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// even get around to trying to get an auth token, since the token string is
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// part of what's being validated. So, we want to be able to skip that
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// check in that case.
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skipAuthCheck bool
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// `new...` refers to what is being passed into the via POST request (and
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// what we expect to get passed into SetWallet for the *non-error* cases
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// below)
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newEncryptedWallet wallet.EncryptedWallet
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newSequence wallet.Sequence
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newHmac wallet.WalletHmac
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storeErrors TestStoreFunctionsErrors
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}{
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{
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name: "success",
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expectedStatusCode: http.StatusOK,
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expectSetWalletCall: true,
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// Simulates a situation where the existing sequence is 1, the new
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// sequence is 2.
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newEncryptedWallet: wallet.EncryptedWallet("my-encrypted-wallet"),
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newSequence: wallet.Sequence(2),
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newHmac: wallet.WalletHmac("my-hmac"),
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}, {
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name: "conflict",
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expectedStatusCode: http.StatusConflict,
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expectedErrorString: http.StatusText(http.StatusConflict) + ": Bad sequence number",
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expectSetWalletCall: true,
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// Simulates a situation where the existing sequence is *not* 1, the new
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// proposed sequence is 2, and it thus fails with a conflict.
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newEncryptedWallet: wallet.EncryptedWallet("my-encrypted-wallet-new"),
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newSequence: wallet.Sequence(2),
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newHmac: wallet.WalletHmac("my-hmac-new"),
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storeErrors: TestStoreFunctionsErrors{SetWallet: store.ErrWrongSequence},
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}, {
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name: "validation error",
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expectedStatusCode: http.StatusBadRequest,
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expectedErrorString: http.StatusText(http.StatusBadRequest) + ": Request failed validation: Missing 'encryptedWallet'",
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skipAuthCheck: true, // we can't get an auth token without the data we just failed to validate
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// Just check one validation error (empty encrypted wallet) to make sure the
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// validate function is called. We'll check the rest of the validation
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// errors in the other test below.
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newEncryptedWallet: wallet.EncryptedWallet(""),
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newSequence: wallet.Sequence(2),
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newHmac: wallet.WalletHmac("my-hmac"),
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}, {
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name: "auth error",
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expectedStatusCode: http.StatusUnauthorized,
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expectedErrorString: http.StatusText(http.StatusUnauthorized) + ": Token Not Found",
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// Putting in valid data here so it's clear that this isn't what causes
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// the error
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newEncryptedWallet: wallet.EncryptedWallet("my-encrypted-wallet"),
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newSequence: wallet.Sequence(2),
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newHmac: wallet.WalletHmac("my-hmac"),
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// What causes the error
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storeErrors: TestStoreFunctionsErrors{GetToken: store.ErrNoTokenForUserDevice},
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}, {
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name: "db error setting wallet",
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expectedStatusCode: http.StatusInternalServerError,
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expectedErrorString: http.StatusText(http.StatusInternalServerError),
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expectSetWalletCall: true,
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// Putting in valid data here so it's clear that this isn't what causes
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// the error
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newEncryptedWallet: wallet.EncryptedWallet("my-encrypted-wallet"),
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newSequence: wallet.Sequence(2),
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newHmac: wallet.WalletHmac("my-hmac"),
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// What causes the error
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storeErrors: TestStoreFunctionsErrors{SetWallet: fmt.Errorf("Some random db problem")},
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},
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// TODO
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// Future test case when we get lastSynced back: Error if
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// lastSynced.device_id doesn't match authToken.device_id
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}
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for _, tc := range tt {
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t.Run(tc.name, func(t *testing.T) {
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testAuth := TestAuth{}
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testStore := TestStore{
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TestAuthToken: auth.AuthToken{
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Token: auth.AuthTokenString("seekrit"),
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Scope: auth.ScopeFull,
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},
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Errors: tc.storeErrors,
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}
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s := Server{&testAuth, &testStore, &TestEnv{}, &TestMail{}, TestPort}
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requestBody := []byte(
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fmt.Sprintf(`{
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"token": "%s",
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"encryptedWallet": "%s",
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"sequence": %d,
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"hmac": "%s"
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}`, testStore.TestAuthToken.Token, tc.newEncryptedWallet, tc.newSequence, tc.newHmac),
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)
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req := httptest.NewRequest(http.MethodPost, paths.PathWallet, bytes.NewBuffer(requestBody))
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w := httptest.NewRecorder()
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// test handleWallet while we're at it, which is a dispatch for get and post
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// wallet
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s.handleWallet(w, req)
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// Make sure we tried to get an auth based on the `token` param (whether or
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// not it was a valid `token`)
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if want, got := testStore.TestAuthToken.Token, testStore.Called.GetToken; !tc.skipAuthCheck && want != got {
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t.Errorf("testStore.Called.GetToken called with: expected %s, got %s", want, got)
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}
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body, _ := ioutil.ReadAll(w.Body)
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expectStatusCode(t, w, tc.expectedStatusCode)
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expectErrorString(t, body, tc.expectedErrorString)
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if tc.expectedErrorString == "" && string(body) != "{}" {
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t.Errorf("Expected post wallet response to be \"{}\": result: %+v", string(body))
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}
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if want, got := (SetWalletCall{tc.newEncryptedWallet, tc.newSequence, tc.newHmac}), testStore.Called.SetWallet; tc.expectSetWalletCall && want != got {
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t.Errorf("Store.SetWallet called with: expected %+v, got %+v", want, got)
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}
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})
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}
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}
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func TestServerValidateWalletRequest(t *testing.T) {
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walletRequest := WalletRequest{Token: "seekrit", EncryptedWallet: "my-encrypted-wallet", Hmac: "my-hmac", Sequence: 2}
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if walletRequest.validate() != nil {
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t.Errorf("Expected valid WalletRequest to successfully validate")
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}
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tt := []struct {
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walletRequest WalletRequest
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expectedErrorSubstr string
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failureDescription string
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}{
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{
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WalletRequest{EncryptedWallet: "my-encrypted-wallet", Hmac: "my-hmac", Sequence: 2},
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"token",
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"Expected WalletRequest with missing token to not successfully validate",
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}, {
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WalletRequest{Token: "seekrit", Hmac: "my-hmac", Sequence: 2},
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"encryptedWallet",
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"Expected WalletRequest with missing encrypted wallet to not successfully validate",
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}, {
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WalletRequest{Token: "seekrit", EncryptedWallet: "my-encrypted-wallet", Sequence: 2},
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"hmac",
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"Expected WalletRequest with missing hmac to not successfully validate",
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}, {
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WalletRequest{Token: "seekrit", EncryptedWallet: "my-encrypted-wallet", Hmac: "my-hmac", Sequence: 0},
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"sequence",
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"Expected WalletRequest with sequence < 1 to not successfully validate",
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},
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}
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for _, tc := range tt {
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err := tc.walletRequest.validate()
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if err == nil || !strings.Contains(err.Error(), tc.expectedErrorSubstr) {
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t.Errorf(tc.failureDescription)
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}
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}
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}
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