Files
go-heartwood/write.go
T

162 lines
4.1 KiB
Go

package heartwood
import (
"context"
"encoding/json"
"errors"
"fmt"
roots "git.wisehodl.dev/jay/go-roots/events"
"github.com/boltdb/bolt"
"github.com/neo4j/neo4j-go-driver/v6/neo4j"
"time"
)
type WriteOptions struct {
Expanders ExpanderPipeline
BoltReadBatchSize int
}
type EventTraveller struct {
ID string
Event roots.ValidatedEvent
Subgraph *EventSubgraph
Error error
}
type WriteResult struct {
ResultSummaries []neo4j.ResultSummary
Error error
}
type WriteReport struct {
ExcludedEvents []EventTraveller
CreatedEventCount int
Neo4jResultSummaries []neo4j.ResultSummary
Duration time.Duration
Error error
}
var ErrDuplicate = errors.New("event already exists")
func WriteEvents(
events []roots.ValidatedEvent,
driver neo4j.Driver, boltdb *bolt.DB,
opts *WriteOptions,
) WriteReport {
start := time.Now()
if opts == nil {
opts = &WriteOptions{}
}
setDefaultWriteOptions(opts)
err := SetupBoltDB(boltdb)
if err != nil {
return WriteReport{Error: fmt.Errorf("error setting up bolt db: %w", err)}
}
travellers := make([]EventTraveller, 0, len(events))
for _, e := range events {
travellers = append(travellers, EventTraveller{ID: e.ID(), Event: e})
}
queued, excluded := enforcePolicyRules(travellers, boltdb, opts.BoltReadBatchSize)
converted := convertEventsToSubgraphs(queued, opts.Expanders)
writeResult := writeEventsToDatabases(driver, boltdb, converted)
return WriteReport{
ExcludedEvents: excluded,
CreatedEventCount: len(events) - len(excluded),
Neo4jResultSummaries: writeResult.ResultSummaries,
Duration: time.Since(start),
Error: writeResult.Error,
}
}
func setDefaultWriteOptions(opts *WriteOptions) {
if opts.Expanders == nil {
opts.Expanders = NewExpanderPipeline(DefaultExpanders()...)
}
if opts.BoltReadBatchSize == 0 {
opts.BoltReadBatchSize = 100
}
}
func enforcePolicyRules(in []EventTraveller, boltdb *bolt.DB, batchSize int) (queued []EventTraveller, excluded []EventTraveller) {
for i := 0; i < len(in); i += batchSize {
end := i + batchSize
if end > len(in) {
end = len(in)
}
batch := in[i:end]
eventIDs := make([]string, 0, len(batch))
for _, traveller := range batch {
eventIDs = append(eventIDs, traveller.ID)
}
existsMap := BatchCheckEventsExist(boltdb, eventIDs)
for _, traveller := range batch {
if existsMap[traveller.ID] {
traveller.Error = fmt.Errorf("skipped: %w", ErrDuplicate)
excluded = append(excluded, traveller)
} else {
queued = append(queued, traveller)
}
}
}
return queued, excluded
}
func convertEventsToSubgraphs(in []EventTraveller, expanders ExpanderPipeline) []EventTraveller {
for i, traveller := range in {
in[i].Subgraph = EventToSubgraph(traveller.Event, expanders)
}
return in
}
func writeEventsToDatabases(driver neo4j.Driver, boltdb *bolt.DB, travellers []EventTraveller) WriteResult {
boltErr := writeEventsToBoltDB(boltdb, travellers)
if boltErr != nil {
return WriteResult{
Error: fmt.Errorf("boltdb write failed, aborting graph write: %w", boltErr),
}
}
summaries, err := writeEventsToGraphDB(driver, travellers)
return WriteResult{
ResultSummaries: summaries,
Error: err,
}
}
func writeEventsToBoltDB(boltdb *bolt.DB, travellers []EventTraveller) error {
var events []EventBlob
for _, traveller := range travellers {
j, err := json.Marshal(traveller.Event)
if err != nil {
return fmt.Errorf("failed to serialize event %s: %w", traveller.ID, err)
}
events = append(events, EventBlob{ID: []byte(traveller.ID), JSON: j})
}
return BatchWriteEvents(boltdb, events)
}
func writeEventsToGraphDB(driver neo4j.Driver, travellers []EventTraveller) ([]neo4j.ResultSummary, error) {
matchKeys := NewSimpleMatchKeys()
batch := NewBatchSubgraph(matchKeys)
for _, traveller := range travellers {
for _, node := range traveller.Subgraph.Nodes() {
batch.AddNode(node)
}
for _, rel := range traveller.Subgraph.Rels() {
batch.AddRel(rel)
}
}
return MergeSubgraph(context.Background(), driver, batch)
}