// Copyright 2019-present Facebook Inc. All rights reserved. // This source code is licensed under the Apache 2.0 license found // in the LICENSE file in the root directory of this source tree. package migrate import ( "context" "fmt" "math" "strconv" "strings" "testing" "entgo.io/ent/dialect" "entgo.io/ent/dialect/sql" "entgo.io/ent/entc/integration/migrate/entv1" migratev1 "entgo.io/ent/entc/integration/migrate/entv1/migrate" userv1 "entgo.io/ent/entc/integration/migrate/entv1/user" "entgo.io/ent/entc/integration/migrate/entv2" "entgo.io/ent/entc/integration/migrate/entv2/conversion" migratev2 "entgo.io/ent/entc/integration/migrate/entv2/migrate" "entgo.io/ent/entc/integration/migrate/entv2/user" _ "github.com/go-sql-driver/mysql" _ "github.com/lib/pq" _ "github.com/mattn/go-sqlite3" "github.com/stretchr/testify/require" ) func TestMySQL(t *testing.T) { for version, port := range map[string]int{"56": 3306, "57": 3307, "8": 3308} { t.Run(version, func(t *testing.T) { root, err := sql.Open(dialect.MySQL, fmt.Sprintf("root:pass@tcp(localhost:%d)/", port)) require.NoError(t, err) defer root.Close() ctx := context.Background() err = root.Exec(ctx, "CREATE DATABASE IF NOT EXISTS migrate", []interface{}{}, new(sql.Result)) require.NoError(t, err, "creating database") defer root.Exec(ctx, "DROP DATABASE IF EXISTS migrate", []interface{}{}, new(sql.Result)) drv, err := sql.Open("mysql", fmt.Sprintf("root:pass@tcp(localhost:%d)/migrate?parseTime=True", port)) require.NoError(t, err, "connecting to migrate database") clientv1 := entv1.NewClient(entv1.Driver(drv)) clientv2 := entv2.NewClient(entv2.Driver(drv)) V1ToV2(t, drv.Dialect(), clientv1, clientv2) if version == "8" { CheckConstraint(t, clientv2) } }) } } func TestPostgres(t *testing.T) { for version, port := range map[string]int{"10": 5430, "11": 5431, "12": 5432, "13": 5433, "14": 5434} { t.Run(version, func(t *testing.T) { dsn := fmt.Sprintf("host=localhost port=%d user=postgres password=pass sslmode=disable", port) root, err := sql.Open(dialect.Postgres, dsn) require.NoError(t, err) defer root.Close() ctx := context.Background() err = root.Exec(ctx, "DROP DATABASE IF EXISTS migrate", []interface{}{}, new(sql.Result)) require.NoError(t, err) err = root.Exec(ctx, "CREATE DATABASE migrate", []interface{}{}, new(sql.Result)) require.NoError(t, err, "creating database") defer root.Exec(ctx, "DROP DATABASE migrate", []interface{}{}, new(sql.Result)) drv, err := sql.Open(dialect.Postgres, dsn+" dbname=migrate") require.NoError(t, err, "connecting to migrate database") defer drv.Close() err = drv.Exec(ctx, "CREATE TYPE customtype as range (subtype = time)", []interface{}{}, new(sql.Result)) require.NoError(t, err, "creating custom type") clientv1 := entv1.NewClient(entv1.Driver(drv)) clientv2 := entv2.NewClient(entv2.Driver(drv)) V1ToV2(t, drv.Dialect(), clientv1, clientv2) CheckConstraint(t, clientv2) }) } } func TestSQLite(t *testing.T) { drv, err := sql.Open("sqlite3", "file:ent?mode=memory&cache=shared&_fk=1") require.NoError(t, err) defer drv.Close() ctx := context.Background() client := entv2.NewClient(entv2.Driver(drv)) require.NoError(t, client.Schema.Create(ctx, migratev2.WithGlobalUniqueID(true)), migratev2.WithDropIndex(true)) SanityV2(t, drv.Dialect(), client) idRange(t, client.Car.Create().SaveX(ctx).ID, 0, 1<<32) idRange(t, client.Conversion.Create().SaveX(ctx).ID, 1<<32-1, 2<<32) idRange(t, client.CustomType.Create().SaveX(ctx).ID, 2<<32-1, 3<<32) idRange(t, client.Group.Create().SaveX(ctx).ID, 3<<32-1, 4<<32) idRange(t, client.Media.Create().SaveX(ctx).ID, 4<<32-1, 5<<32) idRange(t, client.Pet.Create().SaveX(ctx).ID, 5<<32-1, 6<<32) idRange(t, client.User.Create().SetAge(1).SetName("x").SetNickname("x'").SetPhone("y").SaveX(ctx).ID, 6<<32-1, 7<<32) // Override the default behavior of LIKE in SQLite. // https://www.sqlite.org/pragma.html#pragma_case_sensitive_like _, err = drv.ExecContext(ctx, "PRAGMA case_sensitive_like=1") require.NoError(t, err) EqualFold(t, client) ContainsFold(t, client) CheckConstraint(t, client) } func TestStorageKey(t *testing.T) { require.Equal(t, "user_pet_id", migratev2.PetsTable.ForeignKeys[0].Symbol) require.Equal(t, "user_friend_id1", migratev2.FriendsTable.ForeignKeys[0].Symbol) require.Equal(t, "user_friend_id2", migratev2.FriendsTable.ForeignKeys[1].Symbol) } func V1ToV2(t *testing.T, dialect string, clientv1 *entv1.Client, clientv2 *entv2.Client) { ctx := context.Background() // Run migration and execute queries on v1. require.NoError(t, clientv1.Schema.Create(ctx, migratev1.WithGlobalUniqueID(true))) SanityV1(t, dialect, clientv1) // Run migration and execute queries on v2. require.NoError(t, clientv2.Schema.Create(ctx, migratev2.WithGlobalUniqueID(true), migratev2.WithDropIndex(true), migratev2.WithDropColumn(true))) require.NoError(t, clientv2.Schema.Create(ctx, migratev2.WithGlobalUniqueID(true)), "should not create additional resources on multiple runs") SanityV2(t, dialect, clientv2) idRange(t, clientv2.Car.Create().SaveX(ctx).ID, 0, 1<<32) idRange(t, clientv2.Conversion.Create().SaveX(ctx).ID, 1<<32-1, 2<<32) // Since "users" created in the migration of v1, it will occupy the range of 1<<32-1 ... 2<<32-1, // even though they are ordered differently in the migration of v2 (groups, pets, users). idRange(t, clientv2.User.Create().SetAge(1).SetName("foo").SetNickname("nick_foo").SetPhone("phone").SaveX(ctx).ID, 3<<32-1, 4<<32) idRange(t, clientv2.Group.Create().SaveX(ctx).ID, 4<<32-1, 5<<32) idRange(t, clientv2.Media.Create().SaveX(ctx).ID, 5<<32-1, 6<<32) idRange(t, clientv2.Pet.Create().SaveX(ctx).ID, 6<<32-1, 7<<32) // SQL specific predicates. EqualFold(t, clientv2) ContainsFold(t, clientv2) // "renamed" field was renamed to "new_name". exist := clientv2.User.Query().Where(user.NewName("renamed")).ExistX(ctx) require.True(t, exist, "expect renamed column to have previous values") } func SanityV1(t *testing.T, dbdialect string, client *entv1.Client) { ctx := context.Background() u := client.User.Create().SetAge(1).SetName("foo").SetNickname("nick_foo").SetRenamed("renamed").SaveX(ctx) require.EqualValues(t, 1, u.Age) require.Equal(t, "foo", u.Name) err := client.User.Create().SetAge(2).SetName("foobarbazqux").Exec(ctx) require.Error(t, err, "name is limited to 10 chars") // Unique index on (name, address). client.User.Create().SetAge(3).SetName("foo").SetNickname("nick_foo_2").SetAddress("tlv").SetState(userv1.StateLoggedIn).SaveX(ctx) err = client.User.Create().SetAge(4).SetName("foo").SetAddress("tlv").Exec(ctx) require.Error(t, err) // Blob type limited to 255. u = u.Update().SetBlob([]byte("hello")).SaveX(ctx) require.Equal(t, "hello", string(u.Blob)) err = u.Update().SetBlob(make([]byte, 256)).Exec(ctx) require.True(t, strings.Contains(t.Name(), "Postgres") || err != nil, "blob should be limited on SQLite and MySQL") // Invalid enum value. err = client.User.Create().SetAge(1).SetName("bar").SetNickname("nick_bar").SetState("unknown").Exec(ctx) require.Error(t, err) // Conversions client.Conversion.Create(). SetName("zero"). SetInt8ToString(0). SetUint8ToString(0). SetInt16ToString(0). SetUint16ToString(0). SetInt32ToString(0). SetUint32ToString(0). SetInt64ToString(0). SetUint64ToString(0). SaveX(ctx) client.Conversion.Create(). SetName("min"). SetInt8ToString(math.MinInt8). SetUint8ToString(0). SetInt16ToString(math.MinInt16). SetUint16ToString(0). SetInt32ToString(math.MinInt32). SetUint32ToString(0). SetInt64ToString(math.MinInt64). SetUint64ToString(0). SaveX(ctx) creator := client.Conversion.Create(). SetName("max"). SetInt8ToString(math.MaxInt8). SetUint8ToString(math.MaxUint8). SetInt16ToString(math.MaxInt16). SetUint16ToString(math.MaxUint16). SetInt32ToString(math.MaxInt32). SetUint32ToString(math.MaxUint32). SetInt64ToString(math.MaxInt64). SetUint64ToString(math.MaxUint64) if dbdialect == dialect.Postgres { // Postgres does not support unsigned types. creator.SetInt8ToString(math.MaxInt8). SetUint8ToString(math.MaxInt8). SetUint16ToString(math.MaxInt16). SetUint32ToString(math.MaxInt32). SetUint32ToString(math.MaxInt32). SetUint64ToString(math.MaxInt64) } creator.SaveX(ctx) } func SanityV2(t *testing.T, dbdialect string, client *entv2.Client) { ctx := context.Background() if dbdialect != dialect.SQLite { require.True(t, client.User.Query().ExistX(ctx), "table 'users' should contain rows after running the migration") users := client.User.Query().Select(user.FieldCreatedAt).AllX(ctx) for i := range users { require.False(t, users[i].CreatedAt.IsZero(), "default 'CURRENT_TIMESTAMP' should fill previous rows") } } u := client.User.Create().SetAge(1).SetName("bar").SetNickname("nick_bar").SetPhone("100").SetBuffer([]byte("{}")).SetState(user.StateLoggedOut).SaveX(ctx) require.Equal(t, 1, u.Age) require.Equal(t, "bar", u.Name) require.Equal(t, []byte("{}"), u.Buffer) u = u.Update().SetBuffer([]byte("[]")).SaveX(ctx) require.Equal(t, []byte("[]"), u.Buffer) require.Equal(t, user.StateLoggedOut, u.State) err := u.Update().SetState(user.State("boring")).Exec(ctx) require.Error(t, err, "invalid enum value") u = u.Update().SetState(user.StateOnline).SaveX(ctx) require.Equal(t, user.StateOnline, u.State) err = client.User.Create().SetAge(1).SetName("foobarbazqux").SetNickname("nick_bar").SetPhone("200").Exec(ctx) require.NoError(t, err, "name is not limited to 10 chars and nickname is not unique") // New unique index was added to (age, phone). err = client.User.Create().SetAge(1).SetName("foo").SetPhone("200").SetNickname("nick_bar").Exec(ctx) require.Error(t, err) require.True(t, entv2.IsConstraintError(err)) // Ensure all rows in the database have the same default for the `title` column. require.Equal( t, client.User.Query().CountX(ctx), client.User.Query().Where(user.Title(user.DefaultTitle)).CountX(ctx), ) // Blob type was extended. u, err = u.Update().SetBlob(make([]byte, 256)).SetState(user.StateLoggedOut).Save(ctx) require.NoError(t, err, "data type blob was extended in v2") require.Equal(t, make([]byte, 256), u.Blob) if dbdialect != dialect.SQLite { // Conversions zero := client.Conversion.Query().Where(conversion.Name("zero")).OnlyX(ctx) require.Equal(t, strconv.Itoa(0), zero.Int8ToString) require.Equal(t, strconv.Itoa(0), zero.Uint8ToString) require.Equal(t, strconv.Itoa(0), zero.Int16ToString) require.Equal(t, strconv.Itoa(0), zero.Uint16ToString) require.Equal(t, strconv.Itoa(0), zero.Int32ToString) require.Equal(t, strconv.Itoa(0), zero.Uint32ToString) require.Equal(t, strconv.Itoa(0), zero.Int64ToString) require.Equal(t, strconv.Itoa(0), zero.Uint64ToString) min := client.Conversion.Query().Where(conversion.Name("min")).OnlyX(ctx) require.Equal(t, strconv.Itoa(math.MinInt8), min.Int8ToString) require.Equal(t, strconv.Itoa(0), min.Uint8ToString) require.Equal(t, strconv.Itoa(math.MinInt16), min.Int16ToString) require.Equal(t, strconv.Itoa(0), min.Uint16ToString) require.Equal(t, strconv.Itoa(math.MinInt32), min.Int32ToString) require.Equal(t, strconv.Itoa(0), min.Uint32ToString) require.Equal(t, strconv.Itoa(math.MinInt64), min.Int64ToString) require.Equal(t, strconv.Itoa(0), min.Uint64ToString) max := client.Conversion.Query().Where(conversion.Name("max")).OnlyX(ctx) require.Equal(t, strconv.Itoa(math.MaxInt8), max.Int8ToString) require.Equal(t, strconv.Itoa(math.MaxInt16), max.Int16ToString) require.Equal(t, strconv.Itoa(math.MaxInt32), max.Int32ToString) require.Equal(t, strconv.Itoa(math.MaxInt64), max.Int64ToString) if dbdialect == dialect.Postgres { require.Equal(t, strconv.Itoa(math.MaxInt8), max.Uint8ToString) require.Equal(t, strconv.Itoa(math.MaxInt16), max.Uint16ToString) require.Equal(t, strconv.Itoa(math.MaxInt32), max.Uint32ToString) require.Equal(t, strconv.Itoa(math.MaxInt64), max.Uint64ToString) } else { require.Equal(t, strconv.Itoa(math.MaxUint8), max.Uint8ToString) require.Equal(t, strconv.Itoa(math.MaxUint16), max.Uint16ToString) require.Equal(t, strconv.Itoa(math.MaxUint32), max.Uint32ToString) require.Equal(t, strconv.FormatUint(math.MaxUint64, 10), max.Uint64ToString) } } } func CheckConstraint(t *testing.T, client *entv2.Client) { ctx := context.Background() t.Log("testing check constraints") err := client.Media.Create().SetText("boring").Exec(ctx) require.Error(t, err) err = client.Media.Create().SetSourceURI("entgo.io").Exec(ctx) require.Error(t, err) } func EqualFold(t *testing.T, client *entv2.Client) { ctx := context.Background() t.Log("testing equal-fold on sql specific dialects") client.User.Create().SetAge(37).SetName("Alex").SetNickname("alexsn").SetPhone("123456789").SaveX(ctx) require.False(t, client.User.Query().Where(user.NameEQ("alex")).ExistX(ctx)) require.True(t, client.User.Query().Where(user.NameEqualFold("alex")).ExistX(ctx)) } func ContainsFold(t *testing.T, client *entv2.Client) { ctx := context.Background() t.Log("testing contains-fold on sql specific dialects") client.User.Create().SetAge(30).SetName("Mashraki").SetNickname("a8m").SetPhone("102030").SaveX(ctx) require.Zero(t, client.User.Query().Where(user.NameContains("mash")).CountX(ctx)) require.Equal(t, 1, client.User.Query().Where(user.NameContainsFold("mash")).CountX(ctx)) require.Equal(t, 1, client.User.Query().Where(user.NameContainsFold("Raki")).CountX(ctx)) } func idRange(t *testing.T, id, l, h int) { require.Truef(t, id > l && id < h, "id %s should be between %d to %d", id, l, h) }