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* wdclient: age vid map entries by generation instead of chaining snapshots The vid map kept its history as a linked list of past snapshots, trimmed in place by storing nil into a node's cache pointer. That cost up to six full copies of the volume-location map, a recursive walk taking a different lock per level, and deletes that had to cascade through every generation. It also had to special-case explicitly-empty entries, or fallback would resurrect locations a newer snapshot had cleared. Keep one map instead, and stamp each entry with the generation it was learned in. resetVidMap bumps the generation and drops entries that were not relearned within the retained window, which is the same retention the chain provided: an entry survives DefaultVidMapCacheSize resets. The first write of a generation replaces an entry rather than merging into it, so a volume that moved answers with where it is now — the property a fresh map per reset used to give for free. Entries are copy-on-write, so locations handed to a caller are no longer shifted underneath it by a concurrent delete. The map is never swapped now, so the client-side lock and its stable / current accessors go away with it. * wdclient: make vid map entries immutable and drop them once emptied Review follow-up. Updating an entry in place left the copy-on-write guarantee resting on callers never holding the entry pointer; install a new entry instead, so the rule is simply that a stored entry never changes. Deleting a volume's last location now drops the entry rather than keeping an empty one, which a client that never resets would otherwise hold for every volume it ever saw deleted. Lookups already treat an empty entry as a miss, so nothing observable changes. * wdclient: let the newest generation decide between regular and EC locations GetLocations checked the regular map first whatever its generation, so a volume that was EC encoded kept answering with the regular copies the previous master knew until they expired — for as long as the retained window, since nothing relearns a copy that no longer exists. The snapshot chain did not have this problem: the newest map was consulted first and only a volume it knew nothing about fell through to older ones. Restore that by comparing generations, with regular copies winning a tie, since a tie means one generation reported both.
312 lines
10 KiB
Go
312 lines
10 KiB
Go
package wdclient
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import (
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"context"
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"errors"
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"fmt"
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"math/rand"
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"sort"
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"strconv"
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"strings"
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"golang.org/x/sync/singleflight"
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"github.com/seaweedfs/seaweedfs/weed/glog"
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"github.com/seaweedfs/seaweedfs/weed/pb"
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)
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// VolumeLocationProvider is the interface for looking up volume locations
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// This allows different implementations (master subscription, filer queries, etc.)
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type VolumeLocationProvider interface {
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// LookupVolumeIds looks up volume locations for the given volume IDs
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// Returns a map of volume ID to locations
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LookupVolumeIds(ctx context.Context, volumeIds []string) (map[string][]Location, error)
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}
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// vidMapClient provides volume location caching with pluggable lookup
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// It wraps the battle-tested vidMap with customizable volume lookup strategies
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type vidMapClient struct {
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vidMap *vidMap
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provider VolumeLocationProvider
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vidLookupGroup singleflight.Group
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}
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const (
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// DefaultVidMapCacheSize is the default number of resets a volume location
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// survives without being relearned. This provides cache history when
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// volumes move between servers.
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DefaultVidMapCacheSize = 5
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)
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// newVidMapClient creates a new client with the given provider and data center
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func newVidMapClient(provider VolumeLocationProvider, dataCenter string, cacheSize int) *vidMapClient {
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return &vidMapClient{
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vidMap: newVidMap(dataCenter, cacheSize),
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provider: provider,
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}
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}
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// GetLookupFileIdFunction returns a function that can be used to lookup file IDs
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func (vc *vidMapClient) GetLookupFileIdFunction() LookupFileIdFunctionType {
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return vc.LookupFileIdWithFallback
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}
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// LookupFileIdWithFallback looks up a file ID, checking cache first, then using provider
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func (vc *vidMapClient) LookupFileIdWithFallback(ctx context.Context, fileId string) (fullUrls []string, err error) {
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// Try cache first
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dataCenter := vc.vidMap.DataCenter
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fullUrls, err = vc.vidMap.LookupFileId(ctx, fileId)
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// Cache hit - return immediately
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if err == nil && len(fullUrls) > 0 {
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return
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}
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// Cache miss - extract volume ID from file ID (format: "volumeId,needle_id_cookie")
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if fileId == "" {
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return nil, fmt.Errorf("empty fileId")
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}
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parts := strings.Split(fileId, ",")
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if len(parts) != 2 {
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return nil, fmt.Errorf("invalid fileId %s", fileId)
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}
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volumeId := parts[0]
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// Use shared lookup logic with batching and singleflight
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vidLocations, err := vc.LookupVolumeIdsWithFallback(ctx, []string{volumeId})
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// Check for partial results first (important for multi-volume batched lookups)
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locations, found := vidLocations[volumeId]
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if !found || len(locations) == 0 {
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// Volume not found - return specific error with context from lookup if available
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if err != nil {
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return nil, fmt.Errorf("volume %s not found for fileId %s: %w", volumeId, fileId, err)
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}
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return nil, fmt.Errorf("volume %s not found for fileId %s", volumeId, fileId)
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}
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// Volume found successfully - ignore any errors about other volumes
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// (not relevant for single-volume lookup, but defensive for future batching)
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// Build HTTP URLs from locations, preferring same data center
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var sameDcUrls, otherDcUrls []string
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for _, loc := range locations {
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httpUrl := "http://" + loc.Url + "/" + fileId
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if dataCenter != "" && dataCenter == loc.DataCenter {
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sameDcUrls = append(sameDcUrls, httpUrl)
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} else {
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otherDcUrls = append(otherDcUrls, httpUrl)
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}
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}
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// Shuffle to distribute load across volume servers
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rand.Shuffle(len(sameDcUrls), func(i, j int) { sameDcUrls[i], sameDcUrls[j] = sameDcUrls[j], sameDcUrls[i] })
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rand.Shuffle(len(otherDcUrls), func(i, j int) { otherDcUrls[i], otherDcUrls[j] = otherDcUrls[j], otherDcUrls[i] })
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// Prefer same data center
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fullUrls = append(sameDcUrls, otherDcUrls...)
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return fullUrls, nil
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}
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// LookupVolumeIdsWithFallback looks up volume locations, querying provider if not in cache.
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// Uses singleflight to coalesce concurrent requests for the same batch of volumes.
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//
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// IMPORTANT: This function may return PARTIAL results with a non-nil error.
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// The result map contains successfully looked up volumes, while the error aggregates
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// failures for volumes that couldn't be found or had lookup errors.
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//
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// Callers MUST check both the result map AND the error:
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// - result != nil && err == nil: All volumes found successfully
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// - result != nil && err != nil: Some volumes found, some failed (check both)
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// - result == nil && err != nil: Complete failure (connection error, etc.)
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//
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// Example usage:
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//
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// locs, err := mc.LookupVolumeIdsWithFallback(ctx, []string{"1", "2", "999"})
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// if len(locs) > 0 {
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// // Process successfully found volumes
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// }
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// if err != nil {
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// // Log/handle failed volumes
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// }
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func (vc *vidMapClient) LookupVolumeIdsWithFallback(ctx context.Context, volumeIds []string) (map[string][]Location, error) {
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result := make(map[string][]Location)
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var needsLookup []string
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var lookupErrors []error
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// Check cache first and parse volume IDs once
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vidStringToUint := make(map[string]uint32, len(volumeIds))
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for _, vidString := range volumeIds {
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vid, err := strconv.ParseUint(vidString, 10, 32)
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if err != nil {
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return nil, fmt.Errorf("invalid volume id %s: %v", vidString, err)
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}
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vidStringToUint[vidString] = uint32(vid)
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locations, found := vc.vidMap.GetLocations(uint32(vid))
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if found && len(locations) > 0 {
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result[vidString] = locations
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} else {
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needsLookup = append(needsLookup, vidString)
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}
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}
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if len(needsLookup) == 0 {
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return result, nil
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}
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// Batch query all missing volumes using singleflight on the batch key
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// Sort for stable key to coalesce identical batches
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sort.Strings(needsLookup)
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batchKey := strings.Join(needsLookup, ",")
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sfResult, err, _ := vc.vidLookupGroup.Do(batchKey, func() (interface{}, error) {
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// Double-check cache for volumes that might have been populated while waiting
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stillNeedLookup := make([]string, 0, len(needsLookup))
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batchResult := make(map[string][]Location)
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for _, vidString := range needsLookup {
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vid := vidStringToUint[vidString] // Use pre-parsed value
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if locations, found := vc.vidMap.GetLocations(vid); found && len(locations) > 0 {
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batchResult[vidString] = locations
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} else {
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stillNeedLookup = append(stillNeedLookup, vidString)
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}
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}
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if len(stillNeedLookup) == 0 {
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return batchResult, nil
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}
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// Query provider with batched volume IDs
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glog.V(2).Infof("Looking up %d volumes from provider: %v", len(stillNeedLookup), stillNeedLookup)
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providerResults, err := vc.provider.LookupVolumeIds(ctx, stillNeedLookup)
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if err != nil {
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return batchResult, fmt.Errorf("provider lookup failed: %w", err)
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}
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// Update cache with results
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for vidString, locations := range providerResults {
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vid, err := strconv.ParseUint(vidString, 10, 32)
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if err != nil {
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glog.Warningf("Failed to parse volume id '%s': %v", vidString, err)
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continue
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}
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for _, loc := range locations {
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vc.addLocation(uint32(vid), loc)
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}
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if len(locations) > 0 {
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batchResult[vidString] = locations
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}
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}
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return batchResult, nil
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})
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if err != nil {
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lookupErrors = append(lookupErrors, err)
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}
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// Merge singleflight batch results
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if batchLocations, ok := sfResult.(map[string][]Location); ok {
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for vid, locs := range batchLocations {
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result[vid] = locs
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}
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}
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// Check for volumes that still weren't found
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for _, vidString := range needsLookup {
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if _, found := result[vidString]; !found {
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lookupErrors = append(lookupErrors, fmt.Errorf("volume %s not found", vidString))
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}
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}
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// Return aggregated errors
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return result, errors.Join(lookupErrors...)
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}
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// Public methods for external access
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//
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// The vidMap itself is never replaced, so these all read the one map under its
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// own lock. Resets bump its generation instead of swapping in a fresh instance.
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// GetLocations safely retrieves volume locations
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func (vc *vidMapClient) GetLocations(vid uint32) (locations []Location, found bool) {
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return vc.vidMap.GetLocations(vid)
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}
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// GetLocationsClone safely retrieves a clone of volume locations
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func (vc *vidMapClient) GetLocationsClone(vid uint32) (locations []Location, found bool) {
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return vc.vidMap.GetLocationsClone(vid)
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}
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// GetVidLocations safely retrieves volume locations by string ID
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func (vc *vidMapClient) GetVidLocations(vid string) (locations []Location, err error) {
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return vc.vidMap.GetVidLocations(vid)
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}
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// LookupFileId safely looks up URLs for a file ID
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func (vc *vidMapClient) LookupFileId(ctx context.Context, fileId string) (fullUrls []string, err error) {
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return vc.vidMap.LookupFileId(ctx, fileId)
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}
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// LookupVolumeServerUrl safely looks up volume server URLs
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func (vc *vidMapClient) LookupVolumeServerUrl(vid string) (serverUrls []string, err error) {
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return vc.vidMap.LookupVolumeServerUrl(vid)
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}
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// HasVolumeServer reports whether addr is currently a known volume server
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// (hosts at least one volume or EC shard) in the cached vid map. Used by
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// admission paths that must only contact peers learned from the master.
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func (vc *vidMapClient) HasVolumeServer(addr pb.ServerAddress) bool {
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return vc.vidMap.hasVolumeServer(addr)
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}
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// GetDataCenter safely retrieves the data center
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func (vc *vidMapClient) GetDataCenter() string {
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return vc.vidMap.DataCenter
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}
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// Thread-safe helpers for vidMap operations
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// addLocation adds a volume location
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func (vc *vidMapClient) addLocation(vid uint32, location Location) {
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vc.vidMap.addLocation(vid, location)
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}
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// deleteLocation removes a volume location
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func (vc *vidMapClient) deleteLocation(vid uint32, location Location) {
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vc.vidMap.deleteLocation(vid, location)
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}
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// addEcLocation adds an EC volume location
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func (vc *vidMapClient) addEcLocation(vid uint32, location Location) {
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vc.vidMap.addEcLocation(vid, location)
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}
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// deleteEcLocation removes an EC volume location
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func (vc *vidMapClient) deleteEcLocation(vid uint32, location Location) {
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vc.vidMap.deleteEcLocation(vid, location)
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}
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// resetVidMap starts a new generation, as when the master changes: what the
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// previous one told us stays readable until it is relearned or expires.
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func (vc *vidMapClient) resetVidMap() {
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vc.vidMap.reset()
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}
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// InvalidateCache removes all cached locations for a volume ID
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func (vc *vidMapClient) InvalidateCache(fileId string) {
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parts := strings.Split(fileId, ",")
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vidString := parts[0]
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vid, err := strconv.ParseUint(vidString, 10, 32)
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if err != nil {
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return
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}
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vc.vidMap.deleteVid(uint32(vid))
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}
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