mirror of
https://github.com/schollz/cowyo.git
synced 2023-08-10 21:13:00 +03:00
612 lines
16 KiB
Go
612 lines
16 KiB
Go
// The txn package implements support for multi-document transactions.
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//
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// For details check the following blog post:
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//
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// http://blog.labix.org/2012/08/22/multi-doc-transactions-for-mongodb
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//
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package txn
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import (
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"encoding/binary"
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"fmt"
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"reflect"
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"sort"
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"strings"
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"sync"
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"gopkg.in/mgo.v2"
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"gopkg.in/mgo.v2/bson"
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crand "crypto/rand"
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mrand "math/rand"
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)
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type state int
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const (
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tpreparing state = 1 // One or more documents not prepared
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tprepared state = 2 // Prepared but not yet ready to run
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taborting state = 3 // Assertions failed, cleaning up
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tapplying state = 4 // Changes are in progress
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taborted state = 5 // Pre-conditions failed, nothing done
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tapplied state = 6 // All changes applied
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)
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func (s state) String() string {
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switch s {
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case tpreparing:
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return "preparing"
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case tprepared:
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return "prepared"
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case taborting:
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return "aborting"
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case tapplying:
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return "applying"
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case taborted:
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return "aborted"
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case tapplied:
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return "applied"
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}
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panic(fmt.Errorf("unknown state: %d", s))
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}
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var rand *mrand.Rand
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var randmu sync.Mutex
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func init() {
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var seed int64
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err := binary.Read(crand.Reader, binary.BigEndian, &seed)
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if err != nil {
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panic(err)
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}
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rand = mrand.New(mrand.NewSource(seed))
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}
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type transaction struct {
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Id bson.ObjectId `bson:"_id"`
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State state `bson:"s"`
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Info interface{} `bson:"i,omitempty"`
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Ops []Op `bson:"o"`
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Nonce string `bson:"n,omitempty"`
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Revnos []int64 `bson:"r,omitempty"`
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docKeysCached docKeys
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}
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func (t *transaction) String() string {
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if t.Nonce == "" {
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return t.Id.Hex()
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}
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return string(t.token())
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}
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func (t *transaction) done() bool {
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return t.State == tapplied || t.State == taborted
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}
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func (t *transaction) token() token {
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if t.Nonce == "" {
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panic("transaction has no nonce")
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}
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return tokenFor(t)
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}
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func (t *transaction) docKeys() docKeys {
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if t.docKeysCached != nil {
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return t.docKeysCached
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}
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dkeys := make(docKeys, 0, len(t.Ops))
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NextOp:
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for _, op := range t.Ops {
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dkey := op.docKey()
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for i := range dkeys {
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if dkey == dkeys[i] {
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continue NextOp
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}
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}
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dkeys = append(dkeys, dkey)
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}
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sort.Sort(dkeys)
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t.docKeysCached = dkeys
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return dkeys
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}
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// tokenFor returns a unique transaction token that
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// is composed by t's id and a nonce. If t already has
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// a nonce assigned to it, it will be used, otherwise
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// a new nonce will be generated.
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func tokenFor(t *transaction) token {
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nonce := t.Nonce
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if nonce == "" {
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nonce = newNonce()
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}
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return token(t.Id.Hex() + "_" + nonce)
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}
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func newNonce() string {
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randmu.Lock()
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r := rand.Uint32()
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randmu.Unlock()
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n := make([]byte, 8)
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for i := uint(0); i < 8; i++ {
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n[i] = "0123456789abcdef"[(r>>(4*i))&0xf]
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}
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return string(n)
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}
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type token string
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func (tt token) id() bson.ObjectId { return bson.ObjectIdHex(string(tt[:24])) }
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func (tt token) nonce() string { return string(tt[25:]) }
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// Op represents an operation to a single document that may be
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// applied as part of a transaction with other operations.
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type Op struct {
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// C and Id identify the collection and document this operation
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// refers to. Id is matched against the "_id" document field.
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C string `bson:"c"`
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Id interface{} `bson:"d"`
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// Assert optionally holds a query document that is used to
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// test the operation document at the time the transaction is
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// going to be applied. The assertions for all operations in
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// a transaction are tested before any changes take place,
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// and the transaction is entirely aborted if any of them
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// fails. This is also the only way to prevent a transaction
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// from being being applied (the transaction continues despite
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// the outcome of Insert, Update, and Remove).
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Assert interface{} `bson:"a,omitempty"`
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// The Insert, Update and Remove fields describe the mutation
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// intended by the operation. At most one of them may be set
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// per operation. If none are set, Assert must be set and the
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// operation becomes a read-only test.
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//
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// Insert holds the document to be inserted at the time the
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// transaction is applied. The Id field will be inserted
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// into the document automatically as its _id field. The
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// transaction will continue even if the document already
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// exists. Use Assert with txn.DocMissing if the insertion is
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// required.
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//
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// Update holds the update document to be applied at the time
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// the transaction is applied. The transaction will continue
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// even if a document with Id is missing. Use Assert to
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// test for the document presence or its contents.
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//
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// Remove indicates whether to remove the document with Id.
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// The transaction continues even if the document doesn't yet
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// exist at the time the transaction is applied. Use Assert
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// with txn.DocExists to make sure it will be removed.
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Insert interface{} `bson:"i,omitempty"`
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Update interface{} `bson:"u,omitempty"`
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Remove bool `bson:"r,omitempty"`
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}
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func (op *Op) isChange() bool {
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return op.Update != nil || op.Insert != nil || op.Remove
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}
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func (op *Op) docKey() docKey {
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return docKey{op.C, op.Id}
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}
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func (op *Op) name() string {
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switch {
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case op.Update != nil:
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return "update"
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case op.Insert != nil:
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return "insert"
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case op.Remove:
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return "remove"
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case op.Assert != nil:
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return "assert"
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}
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return "none"
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}
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const (
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// DocExists and DocMissing may be used on an operation's
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// Assert value to assert that the document with the given
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// Id exists or does not exist, respectively.
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DocExists = "d+"
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DocMissing = "d-"
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)
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// A Runner applies operations as part of a transaction onto any number
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// of collections within a database. See the Run method for details.
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type Runner struct {
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tc *mgo.Collection // txns
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sc *mgo.Collection // stash
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lc *mgo.Collection // log
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}
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// NewRunner returns a new transaction runner that uses tc to hold its
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// transactions.
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//
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// Multiple transaction collections may exist in a single database, but
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// all collections that are touched by operations in a given transaction
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// collection must be handled exclusively by it.
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//
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// A second collection with the same name of tc but suffixed by ".stash"
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// will be used for implementing the transactional behavior of insert
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// and remove operations.
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func NewRunner(tc *mgo.Collection) *Runner {
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return &Runner{tc, tc.Database.C(tc.Name + ".stash"), nil}
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}
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var ErrAborted = fmt.Errorf("transaction aborted")
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// Run creates a new transaction with ops and runs it immediately.
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// The id parameter specifies the transaction id, and may be written
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// down ahead of time to later verify the success of the change and
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// resume it, when the procedure is interrupted for any reason. If
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// empty, a random id will be generated.
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// The info parameter, if not nil, is included under the "i"
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// field of the transaction document.
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//
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// Operations across documents are not atomically applied, but are
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// guaranteed to be eventually all applied in the order provided or
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// all aborted, as long as the affected documents are only modified
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// through transactions. If documents are simultaneously modified
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// by transactions and out of transactions the behavior is undefined.
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//
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// If Run returns no errors, all operations were applied successfully.
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// If it returns ErrAborted, one or more operations can't be applied
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// and the transaction was entirely aborted with no changes performed.
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// Otherwise, if the transaction is interrupted while running for any
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// reason, it may be resumed explicitly or by attempting to apply
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// another transaction on any of the documents targeted by ops, as
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// long as the interruption was made after the transaction document
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// itself was inserted. Run Resume with the obtained transaction id
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// to confirm whether the transaction was applied or not.
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//
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// Any number of transactions may be run concurrently, with one
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// runner or many.
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func (r *Runner) Run(ops []Op, id bson.ObjectId, info interface{}) (err error) {
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const efmt = "error in transaction op %d: %s"
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for i := range ops {
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op := &ops[i]
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if op.C == "" || op.Id == nil {
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return fmt.Errorf(efmt, i, "C or Id missing")
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}
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changes := 0
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if op.Insert != nil {
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changes++
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}
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if op.Update != nil {
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changes++
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}
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if op.Remove {
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changes++
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}
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if changes > 1 {
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return fmt.Errorf(efmt, i, "more than one of Insert/Update/Remove set")
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}
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if changes == 0 && op.Assert == nil {
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return fmt.Errorf(efmt, i, "none of Assert/Insert/Update/Remove set")
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}
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}
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if id == "" {
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id = bson.NewObjectId()
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}
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// Insert transaction sooner rather than later, to stay on the safer side.
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t := transaction{
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Id: id,
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Ops: ops,
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State: tpreparing,
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Info: info,
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}
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if err = r.tc.Insert(&t); err != nil {
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return err
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}
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if err = flush(r, &t); err != nil {
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return err
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}
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if t.State == taborted {
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return ErrAborted
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} else if t.State != tapplied {
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panic(fmt.Errorf("invalid state for %s after flush: %q", &t, t.State))
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}
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return nil
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}
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// ResumeAll resumes all pending transactions. All ErrAborted errors
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// from individual transactions are ignored.
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func (r *Runner) ResumeAll() (err error) {
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debugf("Resuming all unfinished transactions")
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iter := r.tc.Find(bson.D{{"s", bson.D{{"$in", []state{tpreparing, tprepared, tapplying}}}}}).Iter()
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var t transaction
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for iter.Next(&t) {
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if t.State == tapplied || t.State == taborted {
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continue
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}
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debugf("Resuming %s from %q", t.Id, t.State)
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if err := flush(r, &t); err != nil {
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return err
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}
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if !t.done() {
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panic(fmt.Errorf("invalid state for %s after flush: %q", &t, t.State))
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}
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}
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return nil
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}
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// Resume resumes the transaction with id. It returns mgo.ErrNotFound
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// if the transaction is not found. Otherwise, it has the same semantics
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// of the Run method after the transaction is inserted.
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func (r *Runner) Resume(id bson.ObjectId) (err error) {
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t, err := r.load(id)
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if err != nil {
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return err
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}
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if !t.done() {
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debugf("Resuming %s from %q", t, t.State)
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if err := flush(r, t); err != nil {
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return err
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}
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}
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if t.State == taborted {
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return ErrAborted
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} else if t.State != tapplied {
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panic(fmt.Errorf("invalid state for %s after flush: %q", t, t.State))
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}
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return nil
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}
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// ChangeLog enables logging of changes to the given collection
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// every time a transaction that modifies content is done being
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// applied.
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//
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// Saved documents are in the format:
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//
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// {"_id": <txn id>, <collection>: {"d": [<doc id>, ...], "r": [<doc revno>, ...]}}
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//
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// The document revision is the value of the txn-revno field after
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// the change has been applied. Negative values indicate the document
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// was not present in the collection. Revisions will not change when
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// updates or removes are applied to missing documents or inserts are
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// attempted when the document isn't present.
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func (r *Runner) ChangeLog(logc *mgo.Collection) {
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r.lc = logc
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}
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// PurgeMissing removes from collections any state that refers to transaction
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// documents that for whatever reason have been lost from the system (removed
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// by accident or lost in a hard crash, for example).
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//
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// This method should very rarely be needed, if at all, and should never be
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// used during the normal operation of an application. Its purpose is to put
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// a system that has seen unavoidable corruption back in a working state.
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func (r *Runner) PurgeMissing(collections ...string) error {
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type M map[string]interface{}
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type S []interface{}
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type TDoc struct {
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Id interface{} "_id"
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TxnQueue []string "txn-queue"
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}
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found := make(map[bson.ObjectId]bool)
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sort.Strings(collections)
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for _, collection := range collections {
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c := r.tc.Database.C(collection)
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iter := c.Find(nil).Select(bson.M{"_id": 1, "txn-queue": 1}).Iter()
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var tdoc TDoc
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for iter.Next(&tdoc) {
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for _, txnToken := range tdoc.TxnQueue {
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txnId := bson.ObjectIdHex(txnToken[:24])
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if found[txnId] {
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continue
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}
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if r.tc.FindId(txnId).One(nil) == nil {
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found[txnId] = true
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continue
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}
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logf("WARNING: purging from document %s/%v the missing transaction id %s", collection, tdoc.Id, txnId)
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err := c.UpdateId(tdoc.Id, M{"$pull": M{"txn-queue": M{"$regex": "^" + txnId.Hex() + "_*"}}})
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if err != nil {
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return fmt.Errorf("error purging missing transaction %s: %v", txnId.Hex(), err)
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}
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}
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}
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if err := iter.Close(); err != nil {
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return fmt.Errorf("transaction queue iteration error for %s: %v", collection, err)
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}
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}
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type StashTDoc struct {
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Id docKey "_id"
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TxnQueue []string "txn-queue"
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}
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iter := r.sc.Find(nil).Select(bson.M{"_id": 1, "txn-queue": 1}).Iter()
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var stdoc StashTDoc
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for iter.Next(&stdoc) {
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for _, txnToken := range stdoc.TxnQueue {
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txnId := bson.ObjectIdHex(txnToken[:24])
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if found[txnId] {
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continue
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}
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if r.tc.FindId(txnId).One(nil) == nil {
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found[txnId] = true
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continue
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}
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logf("WARNING: purging from stash document %s/%v the missing transaction id %s", stdoc.Id.C, stdoc.Id.Id, txnId)
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err := r.sc.UpdateId(stdoc.Id, M{"$pull": M{"txn-queue": M{"$regex": "^" + txnId.Hex() + "_*"}}})
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if err != nil {
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return fmt.Errorf("error purging missing transaction %s: %v", txnId.Hex(), err)
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}
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}
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}
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if err := iter.Close(); err != nil {
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return fmt.Errorf("transaction stash iteration error: %v", err)
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}
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return nil
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}
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func (r *Runner) load(id bson.ObjectId) (*transaction, error) {
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var t transaction
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err := r.tc.FindId(id).One(&t)
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if err == mgo.ErrNotFound {
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return nil, fmt.Errorf("cannot find transaction %s", id)
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} else if err != nil {
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return nil, err
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}
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return &t, nil
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}
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type typeNature int
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const (
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// The order of these values matters. Transactions
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// from applications using different ordering will
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// be incompatible with each other.
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_ typeNature = iota
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natureString
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natureInt
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natureFloat
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natureBool
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natureStruct
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)
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func valueNature(v interface{}) (value interface{}, nature typeNature) {
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rv := reflect.ValueOf(v)
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switch rv.Kind() {
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case reflect.String:
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return rv.String(), natureString
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case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64:
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return rv.Int(), natureInt
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case reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64:
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return int64(rv.Uint()), natureInt
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case reflect.Float32, reflect.Float64:
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return rv.Float(), natureFloat
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case reflect.Bool:
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return rv.Bool(), natureBool
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case reflect.Struct:
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return v, natureStruct
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}
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panic("document id type unsupported by txn: " + rv.Kind().String())
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}
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type docKey struct {
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C string
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Id interface{}
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}
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type docKeys []docKey
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func (ks docKeys) Len() int { return len(ks) }
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func (ks docKeys) Swap(i, j int) { ks[i], ks[j] = ks[j], ks[i] }
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func (ks docKeys) Less(i, j int) bool {
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a, b := ks[i], ks[j]
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if a.C != b.C {
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return a.C < b.C
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}
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return valuecmp(a.Id, b.Id) == -1
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}
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func valuecmp(a, b interface{}) int {
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av, an := valueNature(a)
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bv, bn := valueNature(b)
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if an < bn {
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return -1
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}
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if an > bn {
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return 1
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}
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if av == bv {
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return 0
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}
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var less bool
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switch an {
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case natureString:
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less = av.(string) < bv.(string)
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|
case natureInt:
|
|
less = av.(int64) < bv.(int64)
|
|
case natureFloat:
|
|
less = av.(float64) < bv.(float64)
|
|
case natureBool:
|
|
less = !av.(bool) && bv.(bool)
|
|
case natureStruct:
|
|
less = structcmp(av, bv) == -1
|
|
default:
|
|
panic("unreachable")
|
|
}
|
|
if less {
|
|
return -1
|
|
}
|
|
return 1
|
|
}
|
|
|
|
func structcmp(a, b interface{}) int {
|
|
av := reflect.ValueOf(a)
|
|
bv := reflect.ValueOf(b)
|
|
|
|
var ai, bi = 0, 0
|
|
var an, bn = av.NumField(), bv.NumField()
|
|
var avi, bvi interface{}
|
|
var af, bf reflect.StructField
|
|
for {
|
|
for ai < an {
|
|
af = av.Type().Field(ai)
|
|
if isExported(af.Name) {
|
|
avi = av.Field(ai).Interface()
|
|
ai++
|
|
break
|
|
}
|
|
ai++
|
|
}
|
|
for bi < bn {
|
|
bf = bv.Type().Field(bi)
|
|
if isExported(bf.Name) {
|
|
bvi = bv.Field(bi).Interface()
|
|
bi++
|
|
break
|
|
}
|
|
bi++
|
|
}
|
|
if n := valuecmp(avi, bvi); n != 0 {
|
|
return n
|
|
}
|
|
nameA := getFieldName(af)
|
|
nameB := getFieldName(bf)
|
|
if nameA < nameB {
|
|
return -1
|
|
}
|
|
if nameA > nameB {
|
|
return 1
|
|
}
|
|
if ai == an && bi == bn {
|
|
return 0
|
|
}
|
|
if ai == an || bi == bn {
|
|
if ai == bn {
|
|
return -1
|
|
}
|
|
return 1
|
|
}
|
|
}
|
|
panic("unreachable")
|
|
}
|
|
|
|
func isExported(name string) bool {
|
|
a := name[0]
|
|
return a >= 'A' && a <= 'Z'
|
|
}
|
|
|
|
func getFieldName(f reflect.StructField) string {
|
|
name := f.Tag.Get("bson")
|
|
if i := strings.Index(name, ","); i >= 0 {
|
|
name = name[:i]
|
|
}
|
|
if name == "" {
|
|
name = strings.ToLower(f.Name)
|
|
}
|
|
return name
|
|
}
|