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https://github.com/seaweedfs/seaweedfs.git
synced 2024-11-24 19:19:11 +08:00
assign volumes based on disk type
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parent
daa8157fc2
commit
f696a2b2a7
@ -77,7 +77,7 @@ func (ms *MasterServer) volumeGrowHandler(w http.ResponseWriter, r *http.Request
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if count, err = strconv.Atoi(r.FormValue("count")); err == nil {
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if ms.Topo.AvailableSpaceFor(option) < int64(count*option.ReplicaPlacement.GetCopyCount()) {
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err = fmt.Errorf("only %d volumes left, not enough for %d", ms.Topo.FreeSpace(), count*option.ReplicaPlacement.GetCopyCount())
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err = fmt.Errorf("only %d volumes left, not enough for %d", ms.Topo.AvailableSpaceFor(option), count*option.ReplicaPlacement.GetCopyCount())
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} else {
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count, err = ms.vg.GrowByCountAndType(ms.grpcDialOption, count, option, ms.Topo)
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}
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@ -18,7 +18,8 @@ type Node interface {
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Id() NodeId
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String() string
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FreeSpace() int64
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ReserveOneVolume(r int64) (*DataNode, error)
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AvailableSpaceFor(option *VolumeGrowOption) int64
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ReserveOneVolume(r int64, option *VolumeGrowOption) (*DataNode, error)
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UpAdjustMaxVolumeCountDelta(maxVolumeCountDelta int64)
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UpAdjustMaxSsdVolumeCountDelta(maxSsdVolumeCountDelta int64)
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UpAdjustVolumeCountDelta(volumeCountDelta int64)
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@ -69,7 +70,7 @@ type NodeImpl struct {
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}
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// the first node must satisfy filterFirstNodeFn(), the rest nodes must have one free slot
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func (n *NodeImpl) PickNodesByWeight(numberOfNodes int, filterFirstNodeFn func(dn Node) error) (firstNode Node, restNodes []Node, err error) {
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func (n *NodeImpl) PickNodesByWeight(numberOfNodes int, option *VolumeGrowOption, filterFirstNodeFn func(dn Node) error) (firstNode Node, restNodes []Node, err error) {
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var totalWeights int64
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var errs []string
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n.RLock()
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@ -77,12 +78,12 @@ func (n *NodeImpl) PickNodesByWeight(numberOfNodes int, filterFirstNodeFn func(d
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candidatesWeights := make([]int64, 0, len(n.children))
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//pick nodes which has enough free volumes as candidates, and use free volumes number as node weight.
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for _, node := range n.children {
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if node.FreeSpace() <= 0 {
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if node.AvailableSpaceFor(option) <= 0 {
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continue
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}
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totalWeights += node.FreeSpace()
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totalWeights += node.AvailableSpaceFor(option)
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candidates = append(candidates, node)
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candidatesWeights = append(candidatesWeights, node.FreeSpace())
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candidatesWeights = append(candidatesWeights, node.AvailableSpaceFor(option))
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}
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n.RUnlock()
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if len(candidates) < numberOfNodes {
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@ -183,11 +184,11 @@ func (n *NodeImpl) Parent() Node {
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func (n *NodeImpl) GetValue() interface{} {
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return n.value
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}
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func (n *NodeImpl) ReserveOneVolume(r int64) (assignedNode *DataNode, err error) {
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func (n *NodeImpl) ReserveOneVolume(r int64, option *VolumeGrowOption) (assignedNode *DataNode, err error) {
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n.RLock()
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defer n.RUnlock()
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for _, node := range n.children {
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freeSpace := node.FreeSpace()
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freeSpace := node.AvailableSpaceFor(option)
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// fmt.Println("r =", r, ", node =", node, ", freeSpace =", freeSpace)
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if freeSpace <= 0 {
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continue
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@ -195,11 +196,11 @@ func (n *NodeImpl) ReserveOneVolume(r int64) (assignedNode *DataNode, err error)
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if r >= freeSpace {
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r -= freeSpace
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} else {
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if node.IsDataNode() && node.FreeSpace() > 0 {
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if node.IsDataNode() && node.AvailableSpaceFor(option) > 0 {
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// fmt.Println("vid =", vid, " assigned to node =", node, ", freeSpace =", node.FreeSpace())
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return node.(*DataNode), nil
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}
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assignedNode, err = node.ReserveOneVolume(r)
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assignedNode, err = node.ReserveOneVolume(r, option)
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if err == nil {
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return
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}
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@ -114,21 +114,21 @@ func (vg *VolumeGrowth) findAndGrow(grpcDialOption grpc.DialOption, topo *Topolo
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func (vg *VolumeGrowth) findEmptySlotsForOneVolume(topo *Topology, option *VolumeGrowOption) (servers []*DataNode, err error) {
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//find main datacenter and other data centers
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rp := option.ReplicaPlacement
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mainDataCenter, otherDataCenters, dc_err := topo.PickNodesByWeight(rp.DiffDataCenterCount+1, func(node Node) error {
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mainDataCenter, otherDataCenters, dc_err := topo.PickNodesByWeight(rp.DiffDataCenterCount+1, option, func(node Node) error {
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if option.DataCenter != "" && node.IsDataCenter() && node.Id() != NodeId(option.DataCenter) {
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return fmt.Errorf("Not matching preferred data center:%s", option.DataCenter)
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}
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if len(node.Children()) < rp.DiffRackCount+1 {
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return fmt.Errorf("Only has %d racks, not enough for %d.", len(node.Children()), rp.DiffRackCount+1)
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}
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if node.FreeSpace() < int64(rp.DiffRackCount+rp.SameRackCount+1) {
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return fmt.Errorf("Free:%d < Expected:%d", node.FreeSpace(), rp.DiffRackCount+rp.SameRackCount+1)
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if node.AvailableSpaceFor(option) < int64(rp.DiffRackCount+rp.SameRackCount+1) {
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return fmt.Errorf("Free:%d < Expected:%d", node.AvailableSpaceFor(option), rp.DiffRackCount+rp.SameRackCount+1)
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}
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possibleRacksCount := 0
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for _, rack := range node.Children() {
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possibleDataNodesCount := 0
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for _, n := range rack.Children() {
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if n.FreeSpace() >= 1 {
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if n.AvailableSpaceFor(option) >= 1 {
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possibleDataNodesCount++
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}
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}
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@ -146,12 +146,12 @@ func (vg *VolumeGrowth) findEmptySlotsForOneVolume(topo *Topology, option *Volum
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}
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//find main rack and other racks
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mainRack, otherRacks, rackErr := mainDataCenter.(*DataCenter).PickNodesByWeight(rp.DiffRackCount+1, func(node Node) error {
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mainRack, otherRacks, rackErr := mainDataCenter.(*DataCenter).PickNodesByWeight(rp.DiffRackCount+1, option, func(node Node) error {
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if option.Rack != "" && node.IsRack() && node.Id() != NodeId(option.Rack) {
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return fmt.Errorf("Not matching preferred rack:%s", option.Rack)
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}
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if node.FreeSpace() < int64(rp.SameRackCount+1) {
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return fmt.Errorf("Free:%d < Expected:%d", node.FreeSpace(), rp.SameRackCount+1)
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if node.AvailableSpaceFor(option) < int64(rp.SameRackCount+1) {
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return fmt.Errorf("Free:%d < Expected:%d", node.AvailableSpaceFor(option), rp.SameRackCount+1)
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}
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if len(node.Children()) < rp.SameRackCount+1 {
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// a bit faster way to test free racks
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@ -159,7 +159,7 @@ func (vg *VolumeGrowth) findEmptySlotsForOneVolume(topo *Topology, option *Volum
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}
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possibleDataNodesCount := 0
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for _, n := range node.Children() {
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if n.FreeSpace() >= 1 {
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if n.AvailableSpaceFor(option) >= 1 {
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possibleDataNodesCount++
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}
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}
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@ -173,12 +173,12 @@ func (vg *VolumeGrowth) findEmptySlotsForOneVolume(topo *Topology, option *Volum
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}
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//find main rack and other racks
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mainServer, otherServers, serverErr := mainRack.(*Rack).PickNodesByWeight(rp.SameRackCount+1, func(node Node) error {
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mainServer, otherServers, serverErr := mainRack.(*Rack).PickNodesByWeight(rp.SameRackCount+1, option, func(node Node) error {
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if option.DataNode != "" && node.IsDataNode() && node.Id() != NodeId(option.DataNode) {
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return fmt.Errorf("Not matching preferred data node:%s", option.DataNode)
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}
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if node.FreeSpace() < 1 {
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return fmt.Errorf("Free:%d < Expected:%d", node.FreeSpace(), 1)
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if node.AvailableSpaceFor(option) < 1 {
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return fmt.Errorf("Free:%d < Expected:%d", node.AvailableSpaceFor(option), 1)
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}
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return nil
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})
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@ -191,16 +191,16 @@ func (vg *VolumeGrowth) findEmptySlotsForOneVolume(topo *Topology, option *Volum
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servers = append(servers, server.(*DataNode))
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}
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for _, rack := range otherRacks {
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r := rand.Int63n(rack.FreeSpace())
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if server, e := rack.ReserveOneVolume(r); e == nil {
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r := rand.Int63n(rack.AvailableSpaceFor(option))
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if server, e := rack.ReserveOneVolume(r, option); e == nil {
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servers = append(servers, server)
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} else {
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return servers, e
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}
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}
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for _, datacenter := range otherDataCenters {
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r := rand.Int63n(datacenter.FreeSpace())
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if server, e := datacenter.ReserveOneVolume(r); e == nil {
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r := rand.Int63n(datacenter.AvailableSpaceFor(option))
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if server, e := datacenter.ReserveOneVolume(r, option); e == nil {
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servers = append(servers, server)
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} else {
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return servers, e
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