b63944b5c1
Bumping compile time requirement to go 1.18 allows us to simplify our pointer helper methods.
428 lines
12 KiB
Go
428 lines
12 KiB
Go
package nomad
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import (
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"fmt"
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"net/http"
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"time"
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metrics "github.com/armon/go-metrics"
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log "github.com/hashicorp/go-hclog"
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memdb "github.com/hashicorp/go-memdb"
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multierror "github.com/hashicorp/go-multierror"
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"github.com/hashicorp/nomad/acl"
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"github.com/hashicorp/nomad/helper/pointer"
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"github.com/hashicorp/nomad/helper/uuid"
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"github.com/hashicorp/nomad/nomad/state"
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"github.com/hashicorp/nomad/nomad/state/paginator"
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"github.com/hashicorp/nomad/nomad/structs"
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)
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// Alloc endpoint is used for manipulating allocations
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type Alloc struct {
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srv *Server
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logger log.Logger
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// ctx provides context regarding the underlying connection
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ctx *RPCContext
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}
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// List is used to list the allocations in the system
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func (a *Alloc) List(args *structs.AllocListRequest, reply *structs.AllocListResponse) error {
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if done, err := a.srv.forward("Alloc.List", args, args, reply); done {
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return err
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}
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defer metrics.MeasureSince([]string{"nomad", "alloc", "list"}, time.Now())
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namespace := args.RequestNamespace()
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// Check namespace read-job permissions
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aclObj, err := a.srv.ResolveToken(args.AuthToken)
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if err != nil {
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return err
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}
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if !aclObj.AllowNsOp(namespace, acl.NamespaceCapabilityReadJob) {
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return structs.ErrPermissionDenied
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}
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allow := aclObj.AllowNsOpFunc(acl.NamespaceCapabilityReadJob)
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// Setup the blocking query
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sort := state.SortOption(args.Reverse)
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opts := blockingOptions{
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queryOpts: &args.QueryOptions,
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queryMeta: &reply.QueryMeta,
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run: func(ws memdb.WatchSet, state *state.StateStore) error {
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// Scan all the allocations
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var err error
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var iter memdb.ResultIterator
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var opts paginator.StructsTokenizerOptions
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// get list of accessible namespaces
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allowableNamespaces, err := allowedNSes(aclObj, state, allow)
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if err == structs.ErrPermissionDenied {
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// return empty allocation if token is not authorized for any
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// namespace, matching other endpoints
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reply.Allocations = make([]*structs.AllocListStub, 0)
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} else if err != nil {
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return err
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} else {
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if prefix := args.QueryOptions.Prefix; prefix != "" {
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iter, err = state.AllocsByIDPrefix(ws, namespace, prefix, sort)
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opts = paginator.StructsTokenizerOptions{
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WithID: true,
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}
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} else if namespace != structs.AllNamespacesSentinel {
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iter, err = state.AllocsByNamespaceOrdered(ws, namespace, sort)
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opts = paginator.StructsTokenizerOptions{
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WithCreateIndex: true,
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WithID: true,
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}
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} else {
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iter, err = state.Allocs(ws, sort)
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opts = paginator.StructsTokenizerOptions{
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WithCreateIndex: true,
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WithID: true,
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}
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}
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if err != nil {
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return err
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}
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tokenizer := paginator.NewStructsTokenizer(iter, opts)
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filters := []paginator.Filter{
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paginator.NamespaceFilter{
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AllowableNamespaces: allowableNamespaces,
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},
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}
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var stubs []*structs.AllocListStub
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paginator, err := paginator.NewPaginator(iter, tokenizer, filters, args.QueryOptions,
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func(raw interface{}) error {
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allocation := raw.(*structs.Allocation)
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stubs = append(stubs, allocation.Stub(args.Fields))
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return nil
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})
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if err != nil {
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return structs.NewErrRPCCodedf(
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http.StatusBadRequest, "failed to create result paginator: %v", err)
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}
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nextToken, err := paginator.Page()
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if err != nil {
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return structs.NewErrRPCCodedf(
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http.StatusBadRequest, "failed to read result page: %v", err)
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}
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reply.QueryMeta.NextToken = nextToken
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reply.Allocations = stubs
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}
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// Use the last index that affected the allocs table
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index, err := state.Index("allocs")
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if err != nil {
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return err
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}
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reply.Index = index
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// Set the query response
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a.srv.setQueryMeta(&reply.QueryMeta)
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return nil
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}}
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return a.srv.blockingRPC(&opts)
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}
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// GetAlloc is used to lookup a particular allocation
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func (a *Alloc) GetAlloc(args *structs.AllocSpecificRequest,
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reply *structs.SingleAllocResponse) error {
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if done, err := a.srv.forward("Alloc.GetAlloc", args, args, reply); done {
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return err
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}
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defer metrics.MeasureSince([]string{"nomad", "alloc", "get_alloc"}, time.Now())
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// Check namespace read-job permissions before performing blocking query.
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allowNsOp := acl.NamespaceValidator(acl.NamespaceCapabilityReadJob)
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aclObj, err := a.srv.ResolveToken(args.AuthToken)
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if err != nil {
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// If ResolveToken had an unexpected error return that
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if err != structs.ErrTokenNotFound {
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return err
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}
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// Attempt to lookup AuthToken as a Node.SecretID since nodes
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// call this endpoint and don't have an ACL token.
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node, stateErr := a.srv.fsm.State().NodeBySecretID(nil, args.AuthToken)
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if stateErr != nil {
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// Return the original ResolveToken error with this err
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var merr multierror.Error
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merr.Errors = append(merr.Errors, err, stateErr)
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return merr.ErrorOrNil()
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}
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// Not a node or a valid ACL token
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if node == nil {
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return structs.ErrTokenNotFound
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}
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}
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// Setup the blocking query
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opts := blockingOptions{
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queryOpts: &args.QueryOptions,
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queryMeta: &reply.QueryMeta,
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run: func(ws memdb.WatchSet, state *state.StateStore) error {
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// Lookup the allocation
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out, err := state.AllocByID(ws, args.AllocID)
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if err != nil {
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return err
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}
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// Setup the output
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reply.Alloc = out
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if out != nil {
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// Re-check namespace in case it differs from request.
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if !allowNsOp(aclObj, out.Namespace) {
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return structs.NewErrUnknownAllocation(args.AllocID)
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}
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reply.Index = out.ModifyIndex
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} else {
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// Use the last index that affected the allocs table
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index, err := state.Index("allocs")
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if err != nil {
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return err
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}
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reply.Index = index
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}
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// Set the query response
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a.srv.setQueryMeta(&reply.QueryMeta)
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return nil
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}}
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return a.srv.blockingRPC(&opts)
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}
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// GetAllocs is used to lookup a set of allocations
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func (a *Alloc) GetAllocs(args *structs.AllocsGetRequest,
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reply *structs.AllocsGetResponse) error {
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// Ensure the connection was initiated by a client if TLS is used.
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err := validateTLSCertificateLevel(a.srv, a.ctx, tlsCertificateLevelClient)
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if err != nil {
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return err
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}
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if done, err := a.srv.forward("Alloc.GetAllocs", args, args, reply); done {
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return err
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}
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defer metrics.MeasureSince([]string{"nomad", "alloc", "get_allocs"}, time.Now())
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allocs := make([]*structs.Allocation, len(args.AllocIDs))
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// Setup the blocking query. We wait for at least one of the requested
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// allocations to be above the min query index. This guarantees that the
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// server has received that index.
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opts := blockingOptions{
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queryOpts: &args.QueryOptions,
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queryMeta: &reply.QueryMeta,
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run: func(ws memdb.WatchSet, state *state.StateStore) error {
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// Lookup the allocation
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thresholdMet := false
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maxIndex := uint64(0)
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for i, alloc := range args.AllocIDs {
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out, err := state.AllocByID(ws, alloc)
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if err != nil {
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return err
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}
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if out == nil {
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// We don't have the alloc yet
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thresholdMet = false
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break
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}
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// Store the pointer
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allocs[i] = out
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// Check if we have passed the minimum index
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if out.ModifyIndex > args.QueryOptions.MinQueryIndex {
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thresholdMet = true
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}
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if maxIndex < out.ModifyIndex {
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maxIndex = out.ModifyIndex
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}
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}
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// Setup the output
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if thresholdMet {
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reply.Allocs = allocs
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reply.Index = maxIndex
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} else {
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// Use the last index that affected the nodes table
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index, err := state.Index("allocs")
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if err != nil {
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return err
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}
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reply.Index = index
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}
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// Set the query response
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a.srv.setQueryMeta(&reply.QueryMeta)
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return nil
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},
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}
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return a.srv.blockingRPC(&opts)
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}
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// Stop is used to stop an allocation and migrate it to another node.
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func (a *Alloc) Stop(args *structs.AllocStopRequest, reply *structs.AllocStopResponse) error {
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if done, err := a.srv.forward("Alloc.Stop", args, args, reply); done {
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return err
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}
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defer metrics.MeasureSince([]string{"nomad", "alloc", "stop"}, time.Now())
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alloc, err := getAlloc(a.srv.State(), args.AllocID)
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if err != nil {
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return err
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}
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// Check for namespace alloc-lifecycle permissions.
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allowNsOp := acl.NamespaceValidator(acl.NamespaceCapabilityAllocLifecycle)
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aclObj, err := a.srv.ResolveToken(args.AuthToken)
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if err != nil {
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return err
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} else if !allowNsOp(aclObj, alloc.Namespace) {
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return structs.ErrPermissionDenied
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}
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now := time.Now().UTC().UnixNano()
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eval := &structs.Evaluation{
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ID: uuid.Generate(),
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Namespace: alloc.Namespace,
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Priority: alloc.Job.Priority,
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Type: alloc.Job.Type,
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TriggeredBy: structs.EvalTriggerAllocStop,
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JobID: alloc.Job.ID,
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JobModifyIndex: alloc.Job.ModifyIndex,
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Status: structs.EvalStatusPending,
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CreateTime: now,
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ModifyTime: now,
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}
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transitionReq := &structs.AllocUpdateDesiredTransitionRequest{
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Evals: []*structs.Evaluation{eval},
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Allocs: map[string]*structs.DesiredTransition{
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args.AllocID: {
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Migrate: pointer.Of(true),
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NoShutdownDelay: pointer.Of(args.NoShutdownDelay),
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},
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},
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}
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// Commit this update via Raft
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_, index, err := a.srv.raftApply(structs.AllocUpdateDesiredTransitionRequestType, transitionReq)
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if err != nil {
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a.logger.Error("AllocUpdateDesiredTransitionRequest failed", "error", err)
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return err
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}
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// Setup the response
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reply.Index = index
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reply.EvalID = eval.ID
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return nil
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}
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// UpdateDesiredTransition is used to update the desired transitions of an
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// allocation.
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func (a *Alloc) UpdateDesiredTransition(args *structs.AllocUpdateDesiredTransitionRequest, reply *structs.GenericResponse) error {
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if done, err := a.srv.forward("Alloc.UpdateDesiredTransition", args, args, reply); done {
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return err
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}
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defer metrics.MeasureSince([]string{"nomad", "alloc", "update_desired_transition"}, time.Now())
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// Check that it is a management token.
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if aclObj, err := a.srv.ResolveToken(args.AuthToken); err != nil {
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return err
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} else if aclObj != nil && !aclObj.IsManagement() {
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return structs.ErrPermissionDenied
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}
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// Ensure at least a single alloc
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if len(args.Allocs) == 0 {
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return fmt.Errorf("must update at least one allocation")
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}
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// Commit this update via Raft
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_, index, err := a.srv.raftApply(structs.AllocUpdateDesiredTransitionRequestType, args)
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if err != nil {
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a.logger.Error("AllocUpdateDesiredTransitionRequest failed", "error", err)
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return err
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}
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// Setup the response
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reply.Index = index
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return nil
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}
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// GetServiceRegistrations returns a list of service registrations which belong
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// to the passed allocation ID.
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func (a *Alloc) GetServiceRegistrations(
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args *structs.AllocServiceRegistrationsRequest,
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reply *structs.AllocServiceRegistrationsResponse) error {
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if done, err := a.srv.forward(structs.AllocServiceRegistrationsRPCMethod, args, args, reply); done {
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return err
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}
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defer metrics.MeasureSince([]string{"nomad", "alloc", "get_service_registrations"}, time.Now())
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// If ACLs are enabled, ensure the caller has the read-job namespace
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// capability.
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aclObj, err := a.srv.ResolveToken(args.AuthToken)
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if err != nil {
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return err
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} else if aclObj != nil {
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if !aclObj.AllowNsOp(args.RequestNamespace(), acl.NamespaceCapabilityReadJob) {
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return structs.ErrPermissionDenied
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}
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}
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// Set up the blocking query.
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return a.srv.blockingRPC(&blockingOptions{
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queryOpts: &args.QueryOptions,
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queryMeta: &reply.QueryMeta,
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run: func(ws memdb.WatchSet, stateStore *state.StateStore) error {
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// Read the allocation to ensure its namespace matches the request
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// args.
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alloc, err := stateStore.AllocByID(ws, args.AllocID)
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if err != nil {
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return err
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}
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// Guard against the alloc not-existing or that the namespace does
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// not match the request arguments.
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if alloc == nil || alloc.Namespace != args.RequestNamespace() {
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return nil
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}
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// Perform the state query to get an iterator.
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iter, err := stateStore.GetServiceRegistrationsByAllocID(ws, args.AllocID)
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if err != nil {
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return err
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}
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// Set up our output after we have checked the error.
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services := make([]*structs.ServiceRegistration, 0)
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// Iterate the iterator, appending all service registrations
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// returned to the reply.
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for raw := iter.Next(); raw != nil; raw = iter.Next() {
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services = append(services, raw.(*structs.ServiceRegistration))
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}
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reply.Services = services
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// Use the index table to populate the query meta as we have no way
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// of tracking the max index on deletes.
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return a.srv.setReplyQueryMeta(stateStore, state.TableServiceRegistrations, &reply.QueryMeta)
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},
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})
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}
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