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fa9f581d56
* chore: move to new org * logging * fix: org rename caos -> zitadel Co-authored-by: adlerhurst <silvan.reusser@gmail.com>
346 lines
10 KiB
Go
346 lines
10 KiB
Go
package sql
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import (
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"context"
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"database/sql"
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"errors"
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"regexp"
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"strconv"
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"strings"
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"github.com/cockroachdb/cockroach-go/v2/crdb"
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"github.com/lib/pq"
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"github.com/zitadel/logging"
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caos_errs "github.com/zitadel/zitadel/internal/errors"
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"github.com/zitadel/zitadel/internal/eventstore/repository"
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)
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const (
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//as soon as stored procedures are possible in crdb
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// we could move the code to migrations and coll the procedure
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// traking issue: https://github.com/cockroachdb/cockroach/issues/17511
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//
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//previous_data selects the needed data of the latest event of the aggregate
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// and buffers it (crdb inmemory)
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crdbInsert = "WITH previous_data (aggregate_type_sequence, aggregate_sequence, resource_owner) AS (" +
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"SELECT agg_type.seq, agg.seq, agg.ro FROM " +
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"(" +
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//max sequence of requested aggregate type
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" SELECT MAX(event_sequence) seq, 1 join_me" +
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" FROM eventstore.events" +
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" WHERE aggregate_type = $2" +
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" AND (CASE WHEN $9::STRING IS NULL THEN instance_id is null else instance_id = $9::STRING END)" +
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") AS agg_type " +
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// combined with
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"LEFT JOIN " +
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"(" +
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// max sequence and resource owner of aggregate root
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" SELECT event_sequence seq, resource_owner ro, 1 join_me" +
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" FROM eventstore.events" +
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" WHERE aggregate_type = $2 AND aggregate_id = $3" +
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" AND (CASE WHEN $9::STRING IS NULL THEN instance_id is null else instance_id = $9::STRING END)" +
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" ORDER BY event_sequence DESC" +
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" LIMIT 1" +
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") AS agg USING(join_me)" +
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") " +
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"INSERT INTO eventstore.events (" +
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" event_type," +
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" aggregate_type," +
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" aggregate_id," +
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" aggregate_version," +
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" creation_date," +
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" event_data," +
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" editor_user," +
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" editor_service," +
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" resource_owner," +
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" instance_id," +
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" event_sequence," +
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" previous_aggregate_sequence," +
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" previous_aggregate_type_sequence" +
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") " +
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// defines the data to be inserted
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"SELECT" +
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" $1::VARCHAR AS event_type," +
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" $2::VARCHAR AS aggregate_type," +
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" $3::VARCHAR AS aggregate_id," +
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" $4::VARCHAR AS aggregate_version," +
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" NOW() AS creation_date," +
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" $5::JSONB AS event_data," +
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" $6::VARCHAR AS editor_user," +
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" $7::VARCHAR AS editor_service," +
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" IFNULL((resource_owner), $8::VARCHAR) AS resource_owner," +
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" $9::VARCHAR AS instance_id," +
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" NEXTVAL(CONCAT('eventstore.', IF($9 <> '', CONCAT('i_', $9), 'system'), '_seq'))," +
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" aggregate_sequence AS previous_aggregate_sequence," +
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" aggregate_type_sequence AS previous_aggregate_type_sequence " +
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"FROM previous_data " +
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"RETURNING id, event_sequence, previous_aggregate_sequence, previous_aggregate_type_sequence, creation_date, resource_owner, instance_id"
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uniqueInsert = `INSERT INTO eventstore.unique_constraints
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(
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unique_type,
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unique_field,
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instance_id
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)
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VALUES (
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$1,
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$2,
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$3
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)`
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uniqueDelete = `DELETE FROM eventstore.unique_constraints
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WHERE unique_type = $1 and unique_field = $2 and instance_id = $3`
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)
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type CRDB struct {
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client *sql.DB
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}
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func NewCRDB(client *sql.DB) *CRDB {
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return &CRDB{client}
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}
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func (db *CRDB) Health(ctx context.Context) error { return db.client.Ping() }
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// Push adds all events to the eventstreams of the aggregates.
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// This call is transaction save. The transaction will be rolled back if one event fails
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func (db *CRDB) Push(ctx context.Context, events []*repository.Event, uniqueConstraints ...*repository.UniqueConstraint) error {
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err := crdb.ExecuteTx(ctx, db.client, nil, func(tx *sql.Tx) error {
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var (
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previousAggregateSequence Sequence
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previousAggregateTypeSequence Sequence
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)
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for _, event := range events {
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err := tx.QueryRowContext(ctx, crdbInsert,
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event.Type,
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event.AggregateType,
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event.AggregateID,
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event.Version,
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Data(event.Data),
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event.EditorUser,
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event.EditorService,
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event.ResourceOwner,
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event.InstanceID,
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).Scan(&event.ID, &event.Sequence, &previousAggregateSequence, &previousAggregateTypeSequence, &event.CreationDate, &event.ResourceOwner, &event.InstanceID)
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event.PreviousAggregateSequence = uint64(previousAggregateSequence)
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event.PreviousAggregateTypeSequence = uint64(previousAggregateTypeSequence)
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if err != nil {
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logging.WithFields(
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"aggregate", event.AggregateType,
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"aggregateId", event.AggregateID,
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"aggregateType", event.AggregateType,
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"eventType", event.Type,
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"instanceID", event.InstanceID,
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).WithError(err).Info("query failed")
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return caos_errs.ThrowInternal(err, "SQL-SBP37", "unable to create event")
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}
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}
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err := db.handleUniqueConstraints(ctx, tx, uniqueConstraints...)
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if err != nil {
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return err
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}
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return nil
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})
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if err != nil && !errors.Is(err, &caos_errs.CaosError{}) {
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err = caos_errs.ThrowInternal(err, "SQL-DjgtG", "unable to store events")
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}
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return err
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}
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var instanceRegexp = regexp.MustCompile(`eventstore\.i_[0-9a-zA-Z]{1,}_seq`)
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func (db *CRDB) CreateInstance(ctx context.Context, instanceID string) error {
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row := db.client.QueryRowContext(ctx, "SELECT CONCAT('eventstore.i_', $1, '_seq')", instanceID)
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if row.Err() != nil {
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return caos_errs.ThrowInvalidArgument(row.Err(), "SQL-7gtFA", "Errors.InvalidArgument")
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}
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var sequenceName string
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if err := row.Scan(&sequenceName); err != nil || !instanceRegexp.MatchString(sequenceName) {
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return caos_errs.ThrowInvalidArgument(err, "SQL-7gtFA", "Errors.InvalidArgument")
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}
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if _, err := db.client.ExecContext(ctx, "CREATE SEQUENCE "+sequenceName); err != nil {
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return caos_errs.ThrowInternal(err, "SQL-7gtFA", "Errors.Internal")
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}
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return nil
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}
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// handleUniqueConstraints adds or removes unique constraints
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func (db *CRDB) handleUniqueConstraints(ctx context.Context, tx *sql.Tx, uniqueConstraints ...*repository.UniqueConstraint) (err error) {
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if len(uniqueConstraints) == 0 || (len(uniqueConstraints) == 1 && uniqueConstraints[0] == nil) {
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return nil
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}
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for _, uniqueConstraint := range uniqueConstraints {
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uniqueConstraint.UniqueField = strings.ToLower(uniqueConstraint.UniqueField)
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switch uniqueConstraint.Action {
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case repository.UniqueConstraintAdd:
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_, err := tx.ExecContext(ctx, uniqueInsert, uniqueConstraint.UniqueType, uniqueConstraint.UniqueField, uniqueConstraint.InstanceID)
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if err != nil {
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logging.WithFields(
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"unique_type", uniqueConstraint.UniqueType,
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"unique_field", uniqueConstraint.UniqueField).WithError(err).Info("insert unique constraint failed")
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if db.isUniqueViolationError(err) {
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return caos_errs.ThrowAlreadyExists(err, "SQL-M0dsf", uniqueConstraint.ErrorMessage)
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}
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return caos_errs.ThrowInternal(err, "SQL-dM9ds", "unable to create unique constraint ")
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}
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case repository.UniqueConstraintRemoved:
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_, err := tx.ExecContext(ctx, uniqueDelete, uniqueConstraint.UniqueType, uniqueConstraint.UniqueField, uniqueConstraint.InstanceID)
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if err != nil {
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logging.WithFields(
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"unique_type", uniqueConstraint.UniqueType,
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"unique_field", uniqueConstraint.UniqueField).WithError(err).Info("delete unique constraint failed")
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return caos_errs.ThrowInternal(err, "SQL-6n88i", "unable to remove unique constraint ")
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}
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}
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}
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return nil
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}
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// Filter returns all events matching the given search query
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func (db *CRDB) Filter(ctx context.Context, searchQuery *repository.SearchQuery) (events []*repository.Event, err error) {
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events = []*repository.Event{}
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err = query(ctx, db, searchQuery, &events)
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if err != nil {
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return nil, err
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}
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return events, nil
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}
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//LatestSequence returns the latests sequence found by the the search query
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func (db *CRDB) LatestSequence(ctx context.Context, searchQuery *repository.SearchQuery) (uint64, error) {
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var seq Sequence
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err := query(ctx, db, searchQuery, &seq)
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if err != nil {
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return 0, err
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}
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return uint64(seq), nil
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}
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func (db *CRDB) db() *sql.DB {
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return db.client
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}
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func (db *CRDB) orderByEventSequence(desc bool) string {
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if desc {
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return " ORDER BY event_sequence DESC"
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}
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return " ORDER BY event_sequence"
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}
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func (db *CRDB) eventQuery() string {
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return "SELECT" +
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" creation_date" +
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", event_type" +
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", event_sequence" +
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", previous_aggregate_sequence" +
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", previous_aggregate_type_sequence" +
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", event_data" +
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", editor_service" +
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", editor_user" +
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", resource_owner" +
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", instance_id" +
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", aggregate_type" +
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", aggregate_id" +
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", aggregate_version" +
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" FROM eventstore.events"
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}
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func (db *CRDB) maxSequenceQuery() string {
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return "SELECT MAX(event_sequence) FROM eventstore.events"
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}
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func (db *CRDB) columnName(col repository.Field) string {
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switch col {
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case repository.FieldAggregateID:
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return "aggregate_id"
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case repository.FieldAggregateType:
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return "aggregate_type"
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case repository.FieldSequence:
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return "event_sequence"
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case repository.FieldResourceOwner:
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return "resource_owner"
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case repository.FieldInstanceID:
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return "instance_id"
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case repository.FieldEditorService:
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return "editor_service"
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case repository.FieldEditorUser:
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return "editor_user"
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case repository.FieldEventType:
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return "event_type"
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case repository.FieldEventData:
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return "event_data"
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default:
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return ""
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}
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}
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func (db *CRDB) conditionFormat(operation repository.Operation) string {
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switch operation {
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case repository.OperationIn:
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return "%s %s ANY(?)"
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case repository.OperationNotIn:
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return "%s %s ALL(?)"
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}
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return "%s %s ?"
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}
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func (db *CRDB) operation(operation repository.Operation) string {
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switch operation {
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case repository.OperationEquals, repository.OperationIn:
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return "="
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case repository.OperationGreater:
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return ">"
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case repository.OperationLess:
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return "<"
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case repository.OperationJSONContains:
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return "@>"
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case repository.OperationNotIn:
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return "<>"
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}
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return ""
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}
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var (
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placeholder = regexp.MustCompile(`\?`)
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)
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//placeholder replaces all "?" with postgres placeholders ($<NUMBER>)
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func (db *CRDB) placeholder(query string) string {
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occurances := placeholder.FindAllStringIndex(query, -1)
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if len(occurances) == 0 {
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return query
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}
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replaced := query[:occurances[0][0]]
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for i, l := range occurances {
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nextIDX := len(query)
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if i < len(occurances)-1 {
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nextIDX = occurances[i+1][0]
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}
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replaced = replaced + "$" + strconv.Itoa(i+1) + query[l[1]:nextIDX]
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}
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return replaced
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}
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func (db *CRDB) isUniqueViolationError(err error) bool {
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if pqErr, ok := err.(*pq.Error); ok {
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if pqErr.Code == "23505" {
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return true
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}
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}
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return false
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}
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