2017-05-11 14:39:54 +00:00
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/*
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Copyright 2017 Google Inc. All Rights Reserved.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package spanner
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import (
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"fmt"
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"regexp"
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"sync/atomic"
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"time"
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"cloud.google.com/go/internal/version"
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"golang.org/x/net/context"
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"google.golang.org/api/option"
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"google.golang.org/api/transport"
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sppb "google.golang.org/genproto/googleapis/spanner/v1"
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"google.golang.org/grpc"
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"google.golang.org/grpc/codes"
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"google.golang.org/grpc/metadata"
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)
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const (
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prodAddr = "spanner.googleapis.com:443"
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// resourcePrefixHeader is the name of the metadata header used to indicate
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// the resource being operated on.
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resourcePrefixHeader = "google-cloud-resource-prefix"
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// apiClientHeader is the name of the metadata header used to indicate client
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// information.
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apiClientHeader = "x-goog-api-client"
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// numChannels is the default value for NumChannels of client
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numChannels = 4
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)
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const (
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// Scope is the scope for Cloud Spanner Data API.
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Scope = "https://www.googleapis.com/auth/spanner.data"
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// AdminScope is the scope for Cloud Spanner Admin APIs.
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AdminScope = "https://www.googleapis.com/auth/spanner.admin"
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)
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var (
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validDBPattern = regexp.MustCompile("^projects/[^/]+/instances/[^/]+/databases/[^/]+$")
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clientUserAgent = fmt.Sprintf("gl-go/%s gccl/%s grpc/%s", version.Go(), version.Repo, grpc.Version)
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)
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func validDatabaseName(db string) error {
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if matched := validDBPattern.MatchString(db); !matched {
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return fmt.Errorf("database name %q should conform to pattern %q",
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db, validDBPattern.String())
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}
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return nil
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}
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// Client is a client for reading and writing data to a Cloud Spanner database. A
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// client is safe to use concurrently, except for its Close method.
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type Client struct {
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// rr must be accessed through atomic operations.
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rr uint32
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conns []*grpc.ClientConn
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clients []sppb.SpannerClient
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database string
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// Metadata to be sent with each request.
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md metadata.MD
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idleSessions *sessionPool
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}
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// ClientConfig has configurations for the client.
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type ClientConfig struct {
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// NumChannels is the number of GRPC channels.
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// If zero, numChannels is used.
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NumChannels int
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co []option.ClientOption
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// SessionPoolConfig is the configuration for session pool.
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SessionPoolConfig
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}
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// errDial returns error for dialing to Cloud Spanner.
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func errDial(ci int, err error) error {
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e := toSpannerError(err).(*Error)
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e.decorate(fmt.Sprintf("dialing fails for channel[%v]", ci))
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return e
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}
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func contextWithOutgoingMetadata(ctx context.Context, md metadata.MD) context.Context {
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existing, ok := metadata.FromOutgoingContext(ctx)
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if ok {
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md = metadata.Join(existing, md)
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}
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return metadata.NewOutgoingContext(ctx, md)
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}
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// NewClient creates a client to a database. A valid database name has the
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// form projects/PROJECT_ID/instances/INSTANCE_ID/databases/DATABASE_ID. It uses a default
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// configuration.
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func NewClient(ctx context.Context, database string, opts ...option.ClientOption) (*Client, error) {
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return NewClientWithConfig(ctx, database, ClientConfig{}, opts...)
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}
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// NewClientWithConfig creates a client to a database. A valid database name has the
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// form projects/PROJECT_ID/instances/INSTANCE_ID/databases/DATABASE_ID.
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func NewClientWithConfig(ctx context.Context, database string, config ClientConfig, opts ...option.ClientOption) (*Client, error) {
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// Validate database path.
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if err := validDatabaseName(database); err != nil {
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return nil, err
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}
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c := &Client{
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database: database,
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md: metadata.Pairs(
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resourcePrefixHeader, database,
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apiClientHeader, clientUserAgent),
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}
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allOpts := []option.ClientOption{option.WithEndpoint(prodAddr), option.WithScopes(Scope), option.WithUserAgent(clientUserAgent), option.WithGRPCDialOption(grpc.WithDefaultCallOptions(grpc.MaxCallSendMsgSize(100<<20), grpc.MaxCallRecvMsgSize(100<<20)))}
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allOpts = append(allOpts, opts...)
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// Prepare gRPC channels.
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if config.NumChannels == 0 {
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config.NumChannels = numChannels
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}
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// Default MaxOpened sessions
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if config.MaxOpened == 0 {
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config.MaxOpened = uint64(config.NumChannels * 100)
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}
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if config.MaxBurst == 0 {
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config.MaxBurst = 10
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}
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for i := 0; i < config.NumChannels; i++ {
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conn, err := transport.DialGRPC(ctx, allOpts...)
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if err != nil {
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return nil, errDial(i, err)
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}
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c.conns = append(c.conns, conn)
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c.clients = append(c.clients, sppb.NewSpannerClient(conn))
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}
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// Prepare session pool.
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config.SessionPoolConfig.getRPCClient = func() (sppb.SpannerClient, error) {
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// TODO: support more loadbalancing options.
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return c.rrNext(), nil
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}
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sp, err := newSessionPool(database, config.SessionPoolConfig, c.md)
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if err != nil {
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c.Close()
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return nil, err
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}
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c.idleSessions = sp
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return c, nil
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}
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// rrNext returns the next available Cloud Spanner RPC client in a round-robin manner.
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func (c *Client) rrNext() sppb.SpannerClient {
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return c.clients[atomic.AddUint32(&c.rr, 1)%uint32(len(c.clients))]
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}
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// Close closes the client.
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func (c *Client) Close() {
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if c.idleSessions != nil {
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c.idleSessions.close()
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}
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for _, conn := range c.conns {
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conn.Close()
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}
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}
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// Single provides a read-only snapshot transaction optimized for the case
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// where only a single read or query is needed. This is more efficient than
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// using ReadOnlyTransaction() for a single read or query.
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//
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// Single will use a strong TimestampBound by default. Use
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// ReadOnlyTransaction.WithTimestampBound to specify a different
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// TimestampBound. A non-strong bound can be used to reduce latency, or
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// "time-travel" to prior versions of the database, see the documentation of
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// TimestampBound for details.
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func (c *Client) Single() *ReadOnlyTransaction {
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t := &ReadOnlyTransaction{singleUse: true, sp: c.idleSessions}
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t.txReadOnly.txReadEnv = t
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return t
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}
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// ReadOnlyTransaction returns a ReadOnlyTransaction that can be used for
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// multiple reads from the database. You must call Close() when the
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// ReadOnlyTransaction is no longer needed to release resources on the server.
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//
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// ReadOnlyTransaction will use a strong TimestampBound by default. Use
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// ReadOnlyTransaction.WithTimestampBound to specify a different
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// TimestampBound. A non-strong bound can be used to reduce latency, or
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// "time-travel" to prior versions of the database, see the documentation of
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// TimestampBound for details.
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func (c *Client) ReadOnlyTransaction() *ReadOnlyTransaction {
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t := &ReadOnlyTransaction{
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singleUse: false,
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sp: c.idleSessions,
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txReadyOrClosed: make(chan struct{}),
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}
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t.txReadOnly.txReadEnv = t
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return t
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}
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type transactionInProgressKey struct{}
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func checkNestedTxn(ctx context.Context) error {
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if ctx.Value(transactionInProgressKey{}) != nil {
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return spannerErrorf(codes.FailedPrecondition, "Cloud Spanner does not support nested transactions")
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}
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return nil
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}
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// ReadWriteTransaction executes a read-write transaction, with retries as
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// necessary.
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//
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// The function f will be called one or more times. It must not maintain
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// any state between calls.
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//
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// If the transaction cannot be committed or if f returns an IsAborted error,
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// ReadWriteTransaction will call f again. It will continue to call f until the
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// transaction can be committed or the Context times out or is cancelled. If f
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// returns an error other than IsAborted, ReadWriteTransaction will abort the
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// transaction and return the error.
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//
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// To limit the number of retries, set a deadline on the Context rather than
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// using a fixed limit on the number of attempts. ReadWriteTransaction will
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// retry as needed until that deadline is met.
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func (c *Client) ReadWriteTransaction(ctx context.Context, f func(context.Context, *ReadWriteTransaction) error) (time.Time, error) {
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if err := checkNestedTxn(ctx); err != nil {
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return time.Time{}, err
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}
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var (
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ts time.Time
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sh *sessionHandle
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)
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err := runRetryable(ctx, func(ctx context.Context) error {
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var (
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err error
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t *ReadWriteTransaction
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)
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if sh == nil || sh.getID() == "" || sh.getClient() == nil {
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// Session handle hasn't been allocated or has been destroyed.
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sh, err = c.idleSessions.takeWriteSession(ctx)
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if err != nil {
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// If session retrieval fails, just fail the transaction.
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return err
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}
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t = &ReadWriteTransaction{
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sh: sh,
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tx: sh.getTransactionID(),
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}
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} else {
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t = &ReadWriteTransaction{
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sh: sh,
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}
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}
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t.txReadOnly.txReadEnv = t
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if err = t.begin(ctx); err != nil {
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// Mask error from begin operation as retryable error.
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return errRetry(err)
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}
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ts, err = t.runInTransaction(ctx, f)
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if err != nil {
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return err
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}
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return nil
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})
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if sh != nil {
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sh.recycle()
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}
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return ts, err
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}
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// applyOption controls the behavior of Client.Apply.
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type applyOption struct {
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// If atLeastOnce == true, Client.Apply will execute the mutations on Cloud Spanner at least once.
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atLeastOnce bool
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}
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// An ApplyOption is an optional argument to Apply.
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type ApplyOption func(*applyOption)
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// ApplyAtLeastOnce returns an ApplyOption that removes replay protection.
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//
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// With this option, Apply may attempt to apply mutations more than once; if
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// the mutations are not idempotent, this may lead to a failure being reported
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// when the mutation was applied more than once. For example, an insert may
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// fail with ALREADY_EXISTS even though the row did not exist before Apply was
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// called. For this reason, most users of the library will prefer not to use
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// this option. However, ApplyAtLeastOnce requires only a single RPC, whereas
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// Apply's default replay protection may require an additional RPC. So this
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// option may be appropriate for latency sensitive and/or high throughput blind
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// writing.
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func ApplyAtLeastOnce() ApplyOption {
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return func(ao *applyOption) {
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ao.atLeastOnce = true
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}
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}
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// Apply applies a list of mutations atomically to the database.
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func (c *Client) Apply(ctx context.Context, ms []*Mutation, opts ...ApplyOption) (time.Time, error) {
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ao := &applyOption{}
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for _, opt := range opts {
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opt(ao)
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}
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if !ao.atLeastOnce {
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return c.ReadWriteTransaction(ctx, func(ctx context.Context, t *ReadWriteTransaction) error {
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t.BufferWrite(ms)
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return nil
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})
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}
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t := &writeOnlyTransaction{c.idleSessions}
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return t.applyAtLeastOnce(ctx, ms...)
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}
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