Files
seaweedfs/weed/storage/blockvol/batchio/iouring_giouring_linux.go
T
Ping QiuandClaude Opus 4.6 003b8c2f28 fix: require explicit build tags for io_uring backends, add implementation logging
All three io_uring backends (iceber, giouring, raw) now require explicit
build tags — no tag means standard-only. Each backend registers its name
via IOUringImpl so startup logs show compiled implementation alongside
requested/selected backend mode.

Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
2026-03-10 18:19:31 -07:00

211 lines
5.4 KiB
Go

//go:build linux && iouring_giouring
package batchio
import (
"fmt"
"os"
"unsafe"
"github.com/pawelgaczynski/giouring"
)
func init() { IOUringImpl = "giouring" }
// giouringBatchIO implements BatchIO using giouring (direct liburing port).
// No goroutines or channels — direct SQE/CQE ring manipulation.
// Requires kernel 6.0+.
type giouringBatchIO struct {
ring *giouring.Ring
ringSize int
}
// NewIOUring creates a BatchIO backed by giouring with the given ring size.
// Returns ErrIOUringUnavailable if io_uring cannot be initialized.
func NewIOUring(ringSize uint) (BatchIO, error) {
ring, err := giouring.CreateRing(uint32(ringSize))
if err != nil {
return nil, fmt.Errorf("%w: %v", ErrIOUringUnavailable, err)
}
return &giouringBatchIO{ring: ring, ringSize: int(ringSize)}, nil
}
func (g *giouringBatchIO) PreadBatch(fd *os.File, ops []Op) error {
if len(ops) == 0 {
return nil
}
for start := 0; start < len(ops); start += g.ringSize {
end := start + g.ringSize
if end > len(ops) {
end = len(ops)
}
if err := g.preadChunk(fd, ops[start:end]); err != nil {
return err
}
}
return nil
}
func (g *giouringBatchIO) preadChunk(fd *os.File, ops []Op) error {
fdInt := int(fd.Fd())
for i := range ops {
sqe := g.ring.GetSQE()
if sqe == nil {
return fmt.Errorf("iouring PreadBatch: SQ full at op %d", i)
}
sqe.PrepareRead(fdInt, uintptr(unsafe.Pointer(&ops[i].Buf[0])), uint32(len(ops[i].Buf)), uint64(ops[i].Offset))
sqe.SetData64(uint64(i))
}
_, err := g.ring.SubmitAndWait(uint32(len(ops)))
if err != nil {
return fmt.Errorf("iouring PreadBatch submit: %w", err)
}
for i := range ops {
cqe, err := g.ring.WaitCQE()
if err != nil {
return fmt.Errorf("iouring PreadBatch wait op[%d]: %w", i, err)
}
if cqe.Res < 0 {
g.ring.CQESeen(cqe)
return fmt.Errorf("iouring PreadBatch op[%d]: %w", i, errFromRes(cqe.Res))
}
if int(cqe.Res) < len(ops[cqe.UserData].Buf) {
g.ring.CQESeen(cqe)
return fmt.Errorf("iouring PreadBatch op[%d]: short read %d/%d", cqe.UserData, cqe.Res, len(ops[cqe.UserData].Buf))
}
g.ring.CQESeen(cqe)
}
return nil
}
func (g *giouringBatchIO) PwriteBatch(fd *os.File, ops []Op) error {
if len(ops) == 0 {
return nil
}
for start := 0; start < len(ops); start += g.ringSize {
end := start + g.ringSize
if end > len(ops) {
end = len(ops)
}
if err := g.pwriteChunk(fd, ops[start:end]); err != nil {
return err
}
}
return nil
}
func (g *giouringBatchIO) pwriteChunk(fd *os.File, ops []Op) error {
fdInt := int(fd.Fd())
for i := range ops {
sqe := g.ring.GetSQE()
if sqe == nil {
return fmt.Errorf("iouring PwriteBatch: SQ full at op %d", i)
}
sqe.PrepareWrite(fdInt, uintptr(unsafe.Pointer(&ops[i].Buf[0])), uint32(len(ops[i].Buf)), uint64(ops[i].Offset))
sqe.SetData64(uint64(i))
}
_, err := g.ring.SubmitAndWait(uint32(len(ops)))
if err != nil {
return fmt.Errorf("iouring PwriteBatch submit: %w", err)
}
for i := range ops {
cqe, err := g.ring.WaitCQE()
if err != nil {
return fmt.Errorf("iouring PwriteBatch wait op[%d]: %w", i, err)
}
if cqe.Res < 0 {
g.ring.CQESeen(cqe)
return fmt.Errorf("iouring PwriteBatch op[%d]: %w", cqe.UserData, errFromRes(cqe.Res))
}
if int(cqe.Res) < len(ops[cqe.UserData].Buf) {
g.ring.CQESeen(cqe)
return fmt.Errorf("iouring PwriteBatch op[%d]: short write %d/%d", cqe.UserData, cqe.Res, len(ops[cqe.UserData].Buf))
}
g.ring.CQESeen(cqe)
}
return nil
}
// Fsync issues fdatasync via io_uring.
func (g *giouringBatchIO) Fsync(fd *os.File) error {
sqe := g.ring.GetSQE()
if sqe == nil {
return fmt.Errorf("iouring Fsync: SQ full")
}
sqe.PrepareFsync(int(fd.Fd()), giouring.FsyncDatasync)
_, err := g.ring.SubmitAndWait(1)
if err != nil {
return fmt.Errorf("iouring Fsync submit: %w", err)
}
cqe, err := g.ring.WaitCQE()
if err != nil {
return fmt.Errorf("iouring Fsync wait: %w", err)
}
defer g.ring.CQESeen(cqe)
if cqe.Res < 0 {
return fmt.Errorf("iouring Fsync: %w", errFromRes(cqe.Res))
}
return nil
}
// LinkedWriteFsync submits pwrite + fdatasync as a linked SQE chain.
func (g *giouringBatchIO) LinkedWriteFsync(fd *os.File, buf []byte, offset int64) error {
fdInt := int(fd.Fd())
// SQE 1: pwrite with IO_LINK flag
sqe1 := g.ring.GetSQE()
if sqe1 == nil {
return fmt.Errorf("iouring LinkedWriteFsync: SQ full (write)")
}
sqe1.PrepareWrite(fdInt, uintptr(unsafe.Pointer(&buf[0])), uint32(len(buf)), uint64(offset))
sqe1.SetFlags(uint32(giouring.SqeIOLink))
// SQE 2: fdatasync (no link flag — last in chain)
sqe2 := g.ring.GetSQE()
if sqe2 == nil {
return fmt.Errorf("iouring LinkedWriteFsync: SQ full (fsync)")
}
sqe2.PrepareFsync(fdInt, giouring.FsyncDatasync)
_, err := g.ring.SubmitAndWait(2)
if err != nil {
// Fallback to sequential.
if _, werr := fd.WriteAt(buf, offset); werr != nil {
return werr
}
return fdatasync(fd)
}
// Collect both CQEs.
for i := 0; i < 2; i++ {
cqe, err := g.ring.WaitCQE()
if err != nil {
return fmt.Errorf("iouring LinkedWriteFsync wait op[%d]: %w", i, err)
}
if cqe.Res < 0 {
g.ring.CQESeen(cqe)
return fmt.Errorf("iouring LinkedWriteFsync op[%d]: %w", i, errFromRes(cqe.Res))
}
g.ring.CQESeen(cqe)
}
return nil
}
func (g *giouringBatchIO) Close() error {
if g.ring != nil {
g.ring.QueueExit()
}
return nil
}
// errFromRes converts a negative io_uring result code to a Go error.
func errFromRes(res int32) error {
return fmt.Errorf("errno %d", -res)
}