mirror of
https://github.com/Oxalide/vsphere-influxdb-go.git
synced 2023-10-10 13:36:51 +02:00
452 lines
13 KiB
Go
452 lines
13 KiB
Go
package influxql
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import (
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"errors"
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"fmt"
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"runtime/debug"
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"sync"
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"sync/atomic"
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"time"
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"github.com/influxdata/influxdb/models"
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"github.com/uber-go/zap"
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)
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var (
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// ErrInvalidQuery is returned when executing an unknown query type.
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ErrInvalidQuery = errors.New("invalid query")
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// ErrNotExecuted is returned when a statement is not executed in a query.
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// This can occur when a previous statement in the same query has errored.
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ErrNotExecuted = errors.New("not executed")
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// ErrQueryInterrupted is an error returned when the query is interrupted.
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ErrQueryInterrupted = errors.New("query interrupted")
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// ErrQueryAborted is an error returned when the query is aborted.
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ErrQueryAborted = errors.New("query aborted")
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// ErrQueryEngineShutdown is an error sent when the query cannot be
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// created because the query engine was shutdown.
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ErrQueryEngineShutdown = errors.New("query engine shutdown")
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// ErrQueryTimeoutLimitExceeded is an error when a query hits the max time allowed to run.
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ErrQueryTimeoutLimitExceeded = errors.New("query-timeout limit exceeded")
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)
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// Statistics for the QueryExecutor
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const (
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statQueriesActive = "queriesActive" // Number of queries currently being executed
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statQueriesExecuted = "queriesExecuted" // Number of queries that have been executed (started).
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statQueriesFinished = "queriesFinished" // Number of queries that have finished.
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statQueryExecutionDuration = "queryDurationNs" // Total (wall) time spent executing queries
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)
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// ErrDatabaseNotFound returns a database not found error for the given database name.
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func ErrDatabaseNotFound(name string) error { return fmt.Errorf("database not found: %s", name) }
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// ErrMaxSelectPointsLimitExceeded is an error when a query hits the maximum number of points.
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func ErrMaxSelectPointsLimitExceeded(n, limit int) error {
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return fmt.Errorf("max-select-point limit exceeed: (%d/%d)", n, limit)
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}
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// ErrMaxConcurrentQueriesLimitExceeded is an error when a query cannot be run
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// because the maximum number of queries has been reached.
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func ErrMaxConcurrentQueriesLimitExceeded(n, limit int) error {
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return fmt.Errorf("max-concurrent-queries limit exceeded(%d, %d)", n, limit)
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}
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// Authorizer reports whether certain operations are authorized.
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type Authorizer interface {
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// AuthorizeDatabase indicates whether the given Privilege is authorized on the database with the given name.
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AuthorizeDatabase(p Privilege, name string) bool
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// AuthorizeQuery returns an error if the query cannot be executed
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AuthorizeQuery(database string, query *Query) error
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// AuthorizeSeriesRead determines if a series is authorized for reading
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AuthorizeSeriesRead(database string, measurement []byte, tags models.Tags) bool
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// AuthorizeSeriesWrite determines if a series is authorized for writing
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AuthorizeSeriesWrite(database string, measurement []byte, tags models.Tags) bool
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}
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// OpenAuthorizer is the Authorizer used when authorization is disabled.
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// It allows all operations.
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type OpenAuthorizer struct{}
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var _ Authorizer = OpenAuthorizer{}
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// AuthorizeDatabase returns true to allow any operation on a database.
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func (_ OpenAuthorizer) AuthorizeDatabase(Privilege, string) bool { return true }
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func (_ OpenAuthorizer) AuthorizeSeriesRead(database string, measurement []byte, tags models.Tags) bool {
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return true
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}
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func (_ OpenAuthorizer) AuthorizeSeriesWrite(database string, measurement []byte, tags models.Tags) bool {
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return true
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}
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func (_ OpenAuthorizer) AuthorizeQuery(_ string, _ *Query) error { return nil }
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// ExecutionOptions contains the options for executing a query.
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type ExecutionOptions struct {
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// The database the query is running against.
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Database string
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// How to determine whether the query is allowed to execute,
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// what resources can be returned in SHOW queries, etc.
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Authorizer Authorizer
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// The requested maximum number of points to return in each result.
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ChunkSize int
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// If this query is being executed in a read-only context.
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ReadOnly bool
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// Node to execute on.
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NodeID uint64
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// Quiet suppresses non-essential output from the query executor.
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Quiet bool
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// AbortCh is a channel that signals when results are no longer desired by the caller.
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AbortCh <-chan struct{}
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}
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// ExecutionContext contains state that the query is currently executing with.
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type ExecutionContext struct {
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// The statement ID of the executing query.
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StatementID int
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// The query ID of the executing query.
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QueryID uint64
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// The query task information available to the StatementExecutor.
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Query *QueryTask
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// Output channel where results and errors should be sent.
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Results chan *Result
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// Hold the query executor's logger.
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Log zap.Logger
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// A channel that is closed when the query is interrupted.
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InterruptCh <-chan struct{}
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// Options used to start this query.
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ExecutionOptions
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}
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// send sends a Result to the Results channel and will exit if the query has
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// been aborted.
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func (ctx *ExecutionContext) send(result *Result) error {
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select {
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case <-ctx.AbortCh:
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return ErrQueryAborted
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case ctx.Results <- result:
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}
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return nil
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}
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// Send sends a Result to the Results channel and will exit if the query has
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// been interrupted or aborted.
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func (ctx *ExecutionContext) Send(result *Result) error {
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select {
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case <-ctx.InterruptCh:
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return ErrQueryInterrupted
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case <-ctx.AbortCh:
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return ErrQueryAborted
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case ctx.Results <- result:
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}
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return nil
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}
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// StatementExecutor executes a statement within the QueryExecutor.
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type StatementExecutor interface {
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// ExecuteStatement executes a statement. Results should be sent to the
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// results channel in the ExecutionContext.
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ExecuteStatement(stmt Statement, ctx ExecutionContext) error
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}
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// StatementNormalizer normalizes a statement before it is executed.
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type StatementNormalizer interface {
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// NormalizeStatement adds a default database and policy to the
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// measurements in the statement.
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NormalizeStatement(stmt Statement, database string) error
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}
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// QueryExecutor executes every statement in an Query.
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type QueryExecutor struct {
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// Used for executing a statement in the query.
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StatementExecutor StatementExecutor
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// Used for tracking running queries.
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TaskManager *TaskManager
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// Logger to use for all logging.
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// Defaults to discarding all log output.
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Logger zap.Logger
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// expvar-based stats.
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stats *QueryStatistics
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}
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// NewQueryExecutor returns a new instance of QueryExecutor.
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func NewQueryExecutor() *QueryExecutor {
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return &QueryExecutor{
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TaskManager: NewTaskManager(),
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Logger: zap.New(zap.NullEncoder()),
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stats: &QueryStatistics{},
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}
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}
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// QueryStatistics keeps statistics related to the QueryExecutor.
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type QueryStatistics struct {
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ActiveQueries int64
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ExecutedQueries int64
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FinishedQueries int64
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QueryExecutionDuration int64
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}
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// Statistics returns statistics for periodic monitoring.
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func (e *QueryExecutor) Statistics(tags map[string]string) []models.Statistic {
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return []models.Statistic{{
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Name: "queryExecutor",
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Tags: tags,
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Values: map[string]interface{}{
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statQueriesActive: atomic.LoadInt64(&e.stats.ActiveQueries),
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statQueriesExecuted: atomic.LoadInt64(&e.stats.ExecutedQueries),
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statQueriesFinished: atomic.LoadInt64(&e.stats.FinishedQueries),
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statQueryExecutionDuration: atomic.LoadInt64(&e.stats.QueryExecutionDuration),
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},
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}}
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}
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// Close kills all running queries and prevents new queries from being attached.
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func (e *QueryExecutor) Close() error {
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return e.TaskManager.Close()
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}
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// SetLogOutput sets the writer to which all logs are written. It must not be
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// called after Open is called.
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func (e *QueryExecutor) WithLogger(log zap.Logger) {
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e.Logger = log.With(zap.String("service", "query"))
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e.TaskManager.Logger = e.Logger
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}
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// ExecuteQuery executes each statement within a query.
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func (e *QueryExecutor) ExecuteQuery(query *Query, opt ExecutionOptions, closing chan struct{}) <-chan *Result {
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results := make(chan *Result)
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go e.executeQuery(query, opt, closing, results)
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return results
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}
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func (e *QueryExecutor) executeQuery(query *Query, opt ExecutionOptions, closing <-chan struct{}, results chan *Result) {
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defer close(results)
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defer e.recover(query, results)
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atomic.AddInt64(&e.stats.ActiveQueries, 1)
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atomic.AddInt64(&e.stats.ExecutedQueries, 1)
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defer func(start time.Time) {
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atomic.AddInt64(&e.stats.ActiveQueries, -1)
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atomic.AddInt64(&e.stats.FinishedQueries, 1)
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atomic.AddInt64(&e.stats.QueryExecutionDuration, time.Since(start).Nanoseconds())
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}(time.Now())
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qid, task, err := e.TaskManager.AttachQuery(query, opt.Database, closing)
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if err != nil {
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select {
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case results <- &Result{Err: err}:
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case <-opt.AbortCh:
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}
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return
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}
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defer e.TaskManager.KillQuery(qid)
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// Setup the execution context that will be used when executing statements.
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ctx := ExecutionContext{
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QueryID: qid,
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Query: task,
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Results: results,
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Log: e.Logger,
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InterruptCh: task.closing,
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ExecutionOptions: opt,
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}
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var i int
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LOOP:
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for ; i < len(query.Statements); i++ {
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ctx.StatementID = i
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stmt := query.Statements[i]
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// If a default database wasn't passed in by the caller, check the statement.
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defaultDB := opt.Database
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if defaultDB == "" {
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if s, ok := stmt.(HasDefaultDatabase); ok {
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defaultDB = s.DefaultDatabase()
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}
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}
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// Do not let queries manually use the system measurements. If we find
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// one, return an error. This prevents a person from using the
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// measurement incorrectly and causing a panic.
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if stmt, ok := stmt.(*SelectStatement); ok {
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for _, s := range stmt.Sources {
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switch s := s.(type) {
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case *Measurement:
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if IsSystemName(s.Name) {
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command := "the appropriate meta command"
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switch s.Name {
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case "_fieldKeys":
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command = "SHOW FIELD KEYS"
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case "_measurements":
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command = "SHOW MEASUREMENTS"
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case "_series":
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command = "SHOW SERIES"
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case "_tagKeys":
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command = "SHOW TAG KEYS"
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case "_tags":
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command = "SHOW TAG VALUES"
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}
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results <- &Result{
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Err: fmt.Errorf("unable to use system source '%s': use %s instead", s.Name, command),
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}
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break LOOP
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}
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}
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}
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}
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// Rewrite statements, if necessary.
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// This can occur on meta read statements which convert to SELECT statements.
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newStmt, err := RewriteStatement(stmt)
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if err != nil {
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results <- &Result{Err: err}
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break
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}
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stmt = newStmt
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// Normalize each statement if possible.
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if normalizer, ok := e.StatementExecutor.(StatementNormalizer); ok {
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if err := normalizer.NormalizeStatement(stmt, defaultDB); err != nil {
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if err := ctx.send(&Result{Err: err}); err == ErrQueryAborted {
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return
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}
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break
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}
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}
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// Log each normalized statement.
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if !ctx.Quiet {
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e.Logger.Info(stmt.String())
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}
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// Send any other statements to the underlying statement executor.
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err = e.StatementExecutor.ExecuteStatement(stmt, ctx)
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if err == ErrQueryInterrupted {
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// Query was interrupted so retrieve the real interrupt error from
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// the query task if there is one.
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if qerr := task.Error(); qerr != nil {
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err = qerr
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}
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}
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// Send an error for this result if it failed for some reason.
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if err != nil {
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if err := ctx.send(&Result{
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StatementID: i,
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Err: err,
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}); err == ErrQueryAborted {
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return
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}
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// Stop after the first error.
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break
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}
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// Check if the query was interrupted during an uninterruptible statement.
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interrupted := false
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if ctx.InterruptCh != nil {
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select {
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case <-ctx.InterruptCh:
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interrupted = true
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default:
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// Query has not been interrupted.
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}
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}
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if interrupted {
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break
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}
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}
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// Send error results for any statements which were not executed.
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for ; i < len(query.Statements)-1; i++ {
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if err := ctx.send(&Result{
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StatementID: i,
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Err: ErrNotExecuted,
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}); err == ErrQueryAborted {
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return
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}
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}
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}
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func (e *QueryExecutor) recover(query *Query, results chan *Result) {
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if err := recover(); err != nil {
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e.Logger.Error(fmt.Sprintf("%s [panic:%s] %s", query.String(), err, debug.Stack()))
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results <- &Result{
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StatementID: -1,
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Err: fmt.Errorf("%s [panic:%s]", query.String(), err),
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}
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}
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}
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// QueryMonitorFunc is a function that will be called to check if a query
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// is currently healthy. If the query needs to be interrupted for some reason,
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// the error should be returned by this function.
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type QueryMonitorFunc func(<-chan struct{}) error
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// QueryTask is the internal data structure for managing queries.
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// For the public use data structure that gets returned, see QueryTask.
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type QueryTask struct {
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query string
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database string
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startTime time.Time
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closing chan struct{}
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monitorCh chan error
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err error
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mu sync.Mutex
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}
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// Monitor starts a new goroutine that will monitor a query. The function
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// will be passed in a channel to signal when the query has been finished
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// normally. If the function returns with an error and the query is still
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// running, the query will be terminated.
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func (q *QueryTask) Monitor(fn QueryMonitorFunc) {
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go q.monitor(fn)
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}
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// Error returns any asynchronous error that may have occured while executing
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// the query.
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func (q *QueryTask) Error() error {
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q.mu.Lock()
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defer q.mu.Unlock()
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return q.err
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}
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func (q *QueryTask) setError(err error) {
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q.mu.Lock()
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q.err = err
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q.mu.Unlock()
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}
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func (q *QueryTask) monitor(fn QueryMonitorFunc) {
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if err := fn(q.closing); err != nil {
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select {
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case <-q.closing:
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case q.monitorCh <- err:
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}
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}
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}
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