mirror of
https://github.com/featurebasedb/featurebase.git
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446 lines
13 KiB
Go
446 lines
13 KiB
Go
// Copyright 2022 Molecula Corp. (DBA FeatureBase).
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// SPDX-License-Identifier: Apache-2.0
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package pilosa
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import (
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"encoding/json"
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"time"
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"github.com/featurebasedb/featurebase/v3/ingest"
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"github.com/featurebasedb/featurebase/v3/tracing"
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"github.com/pkg/errors"
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)
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// QueryRequest represent a request to process a query.
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type QueryRequest struct {
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// Index to execute query against.
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Index string
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// The query string to parse and execute.
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Query string
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// The SQL source query, if applicable.
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SQLQuery string
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// The shards to include in the query execution.
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// If empty, all shards are included.
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Shards []uint64
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// If true, indicates that query is part of a larger distributed query.
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// If false, this request is on the originating node.
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Remote bool
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// Query has already been translated. This is only used if Remote
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// is false, Remote=true implies this.
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PreTranslated bool
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// Should we profile this query?
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Profile bool
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// Additional data associated with the query, in cases where there's
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// row-style inputs for precomputed values.
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EmbeddedData []*Row
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// Limit on memory used by request (Extract() only)
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MaxMemory int64
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}
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// QueryResponse represent a response from a processed query.
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type QueryResponse struct {
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// Result for each top-level query call.
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// The result type differs depending on the query; types
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// include: Row, RowIdentifiers, GroupCounts, SignedRow,
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// ValCount, Pair, Pairs, bool, uint64.
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Results []interface{}
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// Error during parsing or execution.
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Err error
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// Profiling data, if any
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Profile *tracing.Profile
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}
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// MarshalJSON marshals QueryResponse into a JSON-encoded byte slice
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func (resp *QueryResponse) MarshalJSON() ([]byte, error) {
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if resp.Err != nil {
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return json.Marshal(struct {
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Err string `json:"error"`
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}{Err: resp.Err.Error()})
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}
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return json.Marshal(struct {
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Results []interface{} `json:"results"`
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Profile *tracing.Profile `json:"profile,omitempty"`
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}{
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Results: resp.Results,
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Profile: resp.Profile,
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})
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}
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// HandlerI is the interface for the data handler, a wrapper around
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// Pilosa's data store.
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type HandlerI interface {
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Serve() error
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Close() error
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}
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type nopHandler struct{}
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func (n nopHandler) Serve() error {
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return nil
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}
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func (n nopHandler) Close() error {
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return nil
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}
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// NopHandler is a no-op implementation of the Handler interface.
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var NopHandler HandlerI = nopHandler{}
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// ImportValueRequest describes the import request structure
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// for a value (BSI) import.
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// Note: no RowIDs here. have to convert BSI Values into RowIDs internally.
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type ImportValueRequest struct {
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Index string
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IndexCreatedAt int64
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Field string
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FieldCreatedAt int64
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// if Shard is MaxUint64 (an impossible shard value), this
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// indicates that the column IDs may come from multiple shards.
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Shard uint64
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ColumnIDs []uint64 // e.g. weather stationID
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ColumnKeys []string
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Values []int64 // e.g. temperature, humidity, barometric pressure
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FloatValues []float64
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TimestampValues []time.Time
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StringValues []string
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Clear bool
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scratch []int // scratch space to allow us to get a stable sort in reasonable time
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}
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func (ivr *ImportValueRequest) Clone() *ImportValueRequest {
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newIVR := &ImportValueRequest{}
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if ivr == nil {
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return newIVR
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}
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*newIVR = *ivr
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// don't copy the internal scratch buffer
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newIVR.scratch = nil
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if len(ivr.ColumnIDs) > 0 {
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newIVR.ColumnIDs = make([]uint64, len(ivr.ColumnIDs))
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copy(newIVR.ColumnIDs, ivr.ColumnIDs)
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}
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if len(ivr.ColumnKeys) > 0 {
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newIVR.ColumnKeys = make([]string, len(ivr.ColumnKeys))
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copy(newIVR.ColumnKeys, ivr.ColumnKeys)
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}
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if len(ivr.Values) > 0 {
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newIVR.Values = make([]int64, len(ivr.Values))
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copy(newIVR.Values, ivr.Values)
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}
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if len(ivr.FloatValues) > 0 {
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newIVR.FloatValues = make([]float64, len(ivr.FloatValues))
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copy(newIVR.FloatValues, ivr.FloatValues)
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}
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if len(ivr.TimestampValues) > 0 {
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newIVR.TimestampValues = make([]time.Time, len(ivr.TimestampValues))
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copy(newIVR.TimestampValues, ivr.TimestampValues)
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}
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if len(ivr.StringValues) > 0 {
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newIVR.StringValues = make([]string, len(ivr.StringValues))
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copy(newIVR.StringValues, ivr.StringValues)
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}
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return newIVR
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}
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// AtomicRecord applies all its Ivr and Ivr atomically, in a Tx.
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// The top level Shard has to agree with Ivr[i].Shard and the Iv[i].Shard
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// for all i included (in Ivr and Ir). The same goes for the top level Index: all records
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// have to be writes to the same Index. These requirements are checked.
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//
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type AtomicRecord struct {
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Index string
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Shard uint64
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Ivr []*ImportValueRequest // BSI values
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Ir []*ImportRequest // other field types, e.g. single bit
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}
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func (ar *AtomicRecord) Clone() *AtomicRecord {
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newAR := &AtomicRecord{Index: ar.Index, Shard: ar.Shard}
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newAR.Ivr = make([]*ImportValueRequest, len(ar.Ivr))
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for i, vr := range ar.Ivr {
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newAR.Ivr[i] = vr.Clone()
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}
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newAR.Ir = make([]*ImportRequest, len(ar.Ir))
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for i, vr := range ar.Ir {
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newAR.Ir[i] = vr.Clone()
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}
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return newAR
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}
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func (ivr *ImportValueRequest) Len() int { return len(ivr.ColumnIDs) }
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func (ivr *ImportValueRequest) Less(i, j int) bool {
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if ivr.ColumnIDs[i] < ivr.ColumnIDs[j] {
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return true
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}
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if ivr.ColumnIDs[i] > ivr.ColumnIDs[j] {
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return false
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}
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if len(ivr.scratch) > 0 {
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return ivr.scratch[i] < ivr.scratch[j]
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}
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return false
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}
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func (ivr *ImportValueRequest) Swap(i, j int) {
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ivr.ColumnIDs[i], ivr.ColumnIDs[j] = ivr.ColumnIDs[j], ivr.ColumnIDs[i]
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if len(ivr.Values) > 0 {
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ivr.Values[i], ivr.Values[j] = ivr.Values[j], ivr.Values[i]
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} else if len(ivr.FloatValues) > 0 {
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ivr.FloatValues[i], ivr.FloatValues[j] = ivr.FloatValues[j], ivr.FloatValues[i]
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} else if len(ivr.TimestampValues) > 0 {
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ivr.TimestampValues[i], ivr.TimestampValues[j] = ivr.TimestampValues[j], ivr.TimestampValues[i]
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} else if len(ivr.StringValues) > 0 {
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ivr.StringValues[i], ivr.StringValues[j] = ivr.StringValues[j], ivr.StringValues[i]
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}
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if len(ivr.scratch) > 0 {
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ivr.scratch[i], ivr.scratch[j] = ivr.scratch[j], ivr.scratch[i]
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}
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}
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// Validate ensures that the payload of the request is valid.
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func (ivr *ImportValueRequest) Validate() error {
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return ivr.ValidateWithTimestamp(ivr.IndexCreatedAt, ivr.FieldCreatedAt)
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}
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// ValidateWithTimestamp ensures that the payload of the request is valid.
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func (ivr *ImportValueRequest) ValidateWithTimestamp(indexCreatedAt, fieldCreatedAt int64) error {
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if ivr.Index == "" || ivr.Field == "" {
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return errors.Errorf("index and field required, but got '%s' and '%s'", ivr.Index, ivr.Field)
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}
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if len(ivr.ColumnIDs) != 0 && len(ivr.ColumnKeys) != 0 {
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return errors.Errorf("must pass either column ids or keys, but not both")
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}
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var valueSetCount int
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if len(ivr.Values) != 0 {
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valueSetCount++
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}
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if len(ivr.FloatValues) != 0 {
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valueSetCount++
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}
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if len(ivr.TimestampValues) != 0 {
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valueSetCount++
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}
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if len(ivr.StringValues) != 0 {
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valueSetCount++
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}
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if valueSetCount > 1 {
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return errors.Errorf("must pass ints, floats, or strings but not multiple")
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}
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if (ivr.IndexCreatedAt != 0 && ivr.IndexCreatedAt != indexCreatedAt) ||
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(ivr.FieldCreatedAt != 0 && ivr.FieldCreatedAt != fieldCreatedAt) {
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return ErrPreconditionFailed
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}
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return nil
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}
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// ImportRequest describes the import request structure
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// for an import. BSIs use the ImportValueRequest instead.
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type ImportRequest struct {
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Index string
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IndexCreatedAt int64
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Field string
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FieldCreatedAt int64
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Shard uint64
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RowIDs []uint64
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ColumnIDs []uint64
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RowKeys []string
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ColumnKeys []string
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Timestamps []int64
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Clear bool
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}
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// Clone allows copying an import request. Normally you wouldn't, but
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// some import functions are destructive on their inputs, and if you
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// want to *re-use* an import request, you might need this. If you're
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// using this outside tx_test, something is probably wrong.
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func (ir *ImportRequest) Clone() *ImportRequest {
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newIR := &ImportRequest{}
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if ir == nil {
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return newIR
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}
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*newIR = *ir
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if ir.RowIDs != nil {
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newIR.RowIDs = make([]uint64, len(ir.RowIDs))
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copy(newIR.RowIDs, ir.RowIDs)
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}
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if ir.ColumnIDs != nil {
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newIR.ColumnIDs = make([]uint64, len(ir.ColumnIDs))
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copy(newIR.ColumnIDs, ir.ColumnIDs)
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}
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if ir.RowKeys != nil {
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newIR.RowKeys = make([]string, len(ir.RowKeys))
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copy(newIR.RowKeys, ir.RowKeys)
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}
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if ir.ColumnKeys != nil {
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newIR.ColumnKeys = make([]string, len(ir.ColumnKeys))
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copy(newIR.ColumnKeys, ir.ColumnKeys)
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}
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if ir.Timestamps != nil {
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newIR.Timestamps = make([]int64, len(ir.Timestamps))
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copy(newIR.Timestamps, ir.Timestamps)
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}
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return newIR
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}
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// SortToShards takes an import request which has been translated, but may
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// not be sorted, and turns it into a map from shard IDs to individual import
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// requests. We don't sort the entries within each shard because the correct
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// sorting depends on the field type and we don't want to deal with that
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// here.
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func (ir *ImportRequest) SortToShards() map[uint64]*ImportRequest {
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// cheat: use ingest
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fo := ingest.FieldOperation{
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RecordIDs: ir.ColumnIDs,
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Values: ir.RowIDs,
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Signed: ir.Timestamps,
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}
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sharded := fo.SortToShards()
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output := make(map[uint64]*ImportRequest, len(sharded))
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for shard, shardOp := range sharded {
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shardReq := *ir
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shardReq.ColumnKeys = nil
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shardReq.RowKeys = nil
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shardReq.Shard = shard
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shardReq.ColumnIDs = shardOp.RecordIDs
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shardReq.RowIDs = shardOp.Values
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shardReq.Timestamps = shardOp.Signed
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output[shard] = &shardReq
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}
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return output
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}
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// ValidateWithTimestamp ensures that the payload of the request is valid.
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func (ir *ImportRequest) ValidateWithTimestamp(indexCreatedAt, fieldCreatedAt int64) error {
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if (ir.IndexCreatedAt != 0 && ir.IndexCreatedAt != indexCreatedAt) ||
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(ir.FieldCreatedAt != 0 && ir.FieldCreatedAt != fieldCreatedAt) {
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return ErrPreconditionFailed
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}
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return nil
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}
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const (
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RequestActionSet = "set"
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RequestActionClear = "clear"
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RequestActionOverwrite = "overwrite"
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)
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// ImportRoaringRequest describes the import request structure
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// for an import containing roaring-encoded data.
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type ImportRoaringRequest struct {
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IndexCreatedAt int64
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FieldCreatedAt int64
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Clear bool
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Action string // [set, clear, overwrite]
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Block int
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Views map[string][]byte
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UpdateExistence bool
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}
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// ImportRoaringShardRequest is the request for the shard
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// transactional endpoint.
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type ImportRoaringShardRequest struct {
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// Has this request already been forwarded to all replicas? If
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// Remote=false, then the handling server is responsible for
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// ensuring this request is sent to all repliacs before returning
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// a successful response to the client.
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Remote bool
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Views []RoaringUpdate
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}
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// RoaringUpdate represents the bits to clear and then set in a particular view.
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type RoaringUpdate struct {
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Field string
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View string
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// Clear is a roaring encoded bitmatrix of bits to clear. For
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// mutex or int-like fields, only the first row is looked at and
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// the bits in that row are cleared from every row.
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Clear []byte
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// Set is the roaring encoded bitmatrix of bits to set. If this is
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// a mutex or int-like field, we'll assume the first shard width
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// of containers is the exists row and we will first clear all
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// bits in those columns and then set
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Set []byte
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// ClearRecords, when true, denotes that Clear should be
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// interpreted as a single row which will be subtracted from every
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// row in this view.
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ClearRecords bool
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}
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// ValidateWithTimestamp ensures that the payload of the request is valid.
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func (irr *ImportRoaringRequest) ValidateWithTimestamp(indexCreatedAt, fieldCreatedAt int64) error {
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if (irr.IndexCreatedAt != 0 && irr.IndexCreatedAt != indexCreatedAt) ||
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(irr.FieldCreatedAt != 0 && irr.FieldCreatedAt != fieldCreatedAt) {
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return ErrPreconditionFailed
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}
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return nil
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}
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// ImportResponse is the structured response of an import.
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type ImportResponse struct {
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Err string
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}
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// BlockDataRequest describes the structure of a request
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// for fragment block data.
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type BlockDataRequest struct {
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Index string
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Field string
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View string
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Shard uint64
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Block uint64
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}
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// BlockDataResponse is the structured response of a block
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// data request.
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type BlockDataResponse struct {
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RowIDs []uint64
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ColumnIDs []uint64
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}
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// TranslateKeysRequest describes the structure of a request
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// for a batch of key translations.
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type TranslateKeysRequest struct {
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Index string
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Field string
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Keys []string
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// NotWritable is an awkward name, but it's just to keep backward compatibility with client and idk.
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NotWritable bool
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}
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// TranslateKeysResponse is the structured response of a key
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// translation request.
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type TranslateKeysResponse struct {
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IDs []uint64
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}
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// TranslateIDsRequest describes the structure of a request
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// for a batch of id translations.
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type TranslateIDsRequest struct {
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Index string
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Field string
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IDs []uint64
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}
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// TranslateIDsResponse is the structured response of a id
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// translation request.
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type TranslateIDsResponse struct {
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Keys []string
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}
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