Files
seaweedfs/weed/mount/weedfs_stats.go
T
Chris Lu fee3fcb55a mount: report data sizes to df with -df.logical (#10459)
df on a mount shows the space the cluster gives up to the data: every
replica of a regular volume, every shard of an ec one. That is the honest
answer for capacity planning, but it is not the question a user asks when
they want to know how much of their data is stored.

Add -df.logical. The master reports the logical sizes alongside the raw
ones: one replica per regular volume, the data shards of each ec volume
counted once. Free space is divided by the copies the requested
replication makes, so used plus available stays the amount of data the
mount can still write, and it comes off the cluster-wide usage rather
than one collection's, since capacity is cluster-wide too.

Statistics through a filer resolves an unset replication to the filer's
default rather than the master's, matching where the writes it is sizing
for actually land.

The flag governs the quota check too, so a mount has one notion of how
much it is using. A filer that predates the new fields sends zeros, and
the mount keeps reporting the raw sizes.
2026-07-27 14:28:29 -07:00

131 lines
4.0 KiB
Go

package mount
import (
"context"
"fmt"
"math"
"time"
"github.com/seaweedfs/go-fuse/v2/fuse"
"github.com/seaweedfs/seaweedfs/weed/glog"
"github.com/seaweedfs/seaweedfs/weed/pb/filer_pb"
)
const blockSize = 512
type statsCache struct {
filer_pb.StatisticsResponse
lastChecked int64 // unix time in seconds
}
// diskSizes reports the sizes df and the quota work from. By default that is
// the space the cluster gives up to the data, counting every replica and every
// EC shard. Under -df.logical it is the data itself, with the free space
// converted to how much more of it the mount's replication setting allows.
func (wfs *WFS) diskSizes() (totalSize, usedSize uint64) {
// a filer older than the logical sizes sends zeros, so keep reporting the
// raw ones rather than an empty filesystem
if wfs.option.LogicalDiskUsage && wfs.stats.LogicalTotalSize > 0 {
return wfs.stats.LogicalTotalSize, wfs.stats.LogicalUsedSize
}
return wfs.stats.TotalSize, wfs.stats.UsedSize
}
func (wfs *WFS) StatFs(cancel <-chan struct{}, in *fuse.InHeader, out *fuse.StatfsOut) (code fuse.Status) {
// glog.V(4).Infof("reading fs stats")
if wfs.stats.lastChecked < time.Now().Unix()-20 {
err := wfs.WithFilerClient(false, func(client filer_pb.SeaweedFilerClient) error {
request := &filer_pb.StatisticsRequest{
Collection: wfs.option.Collection,
Replication: wfs.option.Replication,
Ttl: fmt.Sprintf("%ds", wfs.option.TtlSec),
DiskType: string(wfs.option.DiskType),
}
glog.V(4).Infof("reading filer stats: %+v", request)
resp, err := client.Statistics(context.Background(), request)
if err != nil {
glog.V(0).Infof("reading filer stats %v: %v", request, err)
return err
}
glog.V(4).Infof("read filer stats: %+v", resp)
wfs.stats.TotalSize = resp.TotalSize
wfs.stats.UsedSize = resp.UsedSize
wfs.stats.LogicalTotalSize = resp.LogicalTotalSize
wfs.stats.LogicalUsedSize = resp.LogicalUsedSize
wfs.stats.FileCount = resp.FileCount
wfs.stats.lastChecked = time.Now().Unix()
return nil
})
if err != nil {
glog.V(0).Infof("filer Statistics: %v", err)
return fuse.OK
}
}
totalDiskSize, usedDiskSize := wfs.diskSizes()
actualFileCount := wfs.stats.FileCount
if wfs.option.Quota > 0 && totalDiskSize > uint64(wfs.option.Quota) {
totalDiskSize = uint64(wfs.option.Quota)
if usedDiskSize > totalDiskSize {
totalDiskSize = usedDiskSize
}
}
// http://man.he.net/man2/statfs
/*
struct statfs {
__fsword_t f_type; // Type of filesystem (see below)
__fsword_t f_bsize; // Optimal transfer block size
fsblkcnt_t f_blocks; // Total data blocks in filesystem
fsblkcnt_t f_bfree; // Free blocks in filesystem
fsblkcnt_t f_bavail; // Free blocks available to
unprivileged user
fsfilcnt_t f_files; // Total file nodes in filesystem
fsfilcnt_t f_ffree; // Free file nodes in filesystem
fsid_t f_fsid; // Filesystem ID
__fsword_t f_namelen; // Maximum length of filenames
__fsword_t f_frsize; // Fragment size (since Linux 2.6)
__fsword_t f_flags; // Mount flags of filesystem
(since Linux 2.6.36)
__fsword_t f_spare[xxx];
// Padding bytes reserved for future use
};
*/
// Compute the total number of available blocks
out.Blocks = totalDiskSize / blockSize
if out.Blocks <= 0 {
out.Blocks = 1
}
// Compute the number of used blocks
numBlocks := usedDiskSize / blockSize
remainingBlocks := int64(out.Blocks) - int64(numBlocks)
if remainingBlocks < 0 {
remainingBlocks = 0
}
// Report the number of free and available blocks for the block size
out.Bfree = uint64(remainingBlocks)
out.Bavail = uint64(remainingBlocks)
out.Bsize = uint32(blockSize)
// Report the total number of possible files in the file system (and those free)
out.Files = math.MaxInt64
out.Ffree = math.MaxInt64 - actualFileCount
// Report the maximum length of a name and the minimum fragment size
out.NameLen = 255
out.Frsize = uint32(blockSize)
return fuse.OK
}