forked from TrueCloudLab/restic
590 lines
17 KiB
Go
590 lines
17 KiB
Go
// Copyright 2014 Google Inc. All Rights Reserved.
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//
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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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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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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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package storage
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import (
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"fmt"
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"net/http"
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"reflect"
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"time"
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"cloud.google.com/go/internal/optional"
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"golang.org/x/net/context"
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"google.golang.org/api/googleapi"
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"google.golang.org/api/iterator"
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raw "google.golang.org/api/storage/v1"
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)
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// BucketHandle provides operations on a Google Cloud Storage bucket.
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// Use Client.Bucket to get a handle.
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type BucketHandle struct {
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c *Client
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name string
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acl ACLHandle
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defaultObjectACL ACLHandle
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conds *BucketConditions
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userProject string // project for requester-pays buckets
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}
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// Bucket returns a BucketHandle, which provides operations on the named bucket.
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// This call does not perform any network operations.
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//
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// The supplied name must contain only lowercase letters, numbers, dashes,
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// underscores, and dots. The full specification for valid bucket names can be
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// found at:
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// https://cloud.google.com/storage/docs/bucket-naming
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func (c *Client) Bucket(name string) *BucketHandle {
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return &BucketHandle{
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c: c,
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name: name,
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acl: ACLHandle{
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c: c,
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bucket: name,
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},
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defaultObjectACL: ACLHandle{
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c: c,
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bucket: name,
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isDefault: true,
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},
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}
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}
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// Create creates the Bucket in the project.
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// If attrs is nil the API defaults will be used.
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func (b *BucketHandle) Create(ctx context.Context, projectID string, attrs *BucketAttrs) error {
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var bkt *raw.Bucket
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if attrs != nil {
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bkt = attrs.toRawBucket()
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} else {
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bkt = &raw.Bucket{}
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}
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bkt.Name = b.name
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req := b.c.raw.Buckets.Insert(projectID, bkt)
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setClientHeader(req.Header())
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return runWithRetry(ctx, func() error { _, err := req.Context(ctx).Do(); return err })
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}
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// Delete deletes the Bucket.
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func (b *BucketHandle) Delete(ctx context.Context) error {
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req, err := b.newDeleteCall()
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if err != nil {
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return err
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}
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return runWithRetry(ctx, func() error { return req.Context(ctx).Do() })
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}
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func (b *BucketHandle) newDeleteCall() (*raw.BucketsDeleteCall, error) {
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req := b.c.raw.Buckets.Delete(b.name)
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setClientHeader(req.Header())
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if err := applyBucketConds("BucketHandle.Delete", b.conds, req); err != nil {
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return nil, err
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}
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if b.userProject != "" {
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req.UserProject(b.userProject)
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}
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return req, nil
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}
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// ACL returns an ACLHandle, which provides access to the bucket's access control list.
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// This controls who can list, create or overwrite the objects in a bucket.
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// This call does not perform any network operations.
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func (b *BucketHandle) ACL() *ACLHandle {
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return &b.acl
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}
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// DefaultObjectACL returns an ACLHandle, which provides access to the bucket's default object ACLs.
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// These ACLs are applied to newly created objects in this bucket that do not have a defined ACL.
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// This call does not perform any network operations.
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func (b *BucketHandle) DefaultObjectACL() *ACLHandle {
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return &b.defaultObjectACL
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}
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// Object returns an ObjectHandle, which provides operations on the named object.
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// This call does not perform any network operations.
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//
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// name must consist entirely of valid UTF-8-encoded runes. The full specification
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// for valid object names can be found at:
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// https://cloud.google.com/storage/docs/bucket-naming
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func (b *BucketHandle) Object(name string) *ObjectHandle {
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return &ObjectHandle{
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c: b.c,
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bucket: b.name,
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object: name,
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acl: ACLHandle{
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c: b.c,
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bucket: b.name,
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object: name,
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userProject: b.userProject,
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},
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gen: -1,
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userProject: b.userProject,
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}
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}
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// Attrs returns the metadata for the bucket.
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func (b *BucketHandle) Attrs(ctx context.Context) (*BucketAttrs, error) {
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req, err := b.newGetCall()
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if err != nil {
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return nil, err
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}
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var resp *raw.Bucket
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err = runWithRetry(ctx, func() error {
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resp, err = req.Context(ctx).Do()
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return err
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})
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if e, ok := err.(*googleapi.Error); ok && e.Code == http.StatusNotFound {
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return nil, ErrBucketNotExist
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}
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if err != nil {
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return nil, err
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}
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return newBucket(resp), nil
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}
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func (b *BucketHandle) newGetCall() (*raw.BucketsGetCall, error) {
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req := b.c.raw.Buckets.Get(b.name).Projection("full")
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setClientHeader(req.Header())
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if err := applyBucketConds("BucketHandle.Attrs", b.conds, req); err != nil {
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return nil, err
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}
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if b.userProject != "" {
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req.UserProject(b.userProject)
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}
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return req, nil
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}
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func (b *BucketHandle) Update(ctx context.Context, uattrs BucketAttrsToUpdate) (*BucketAttrs, error) {
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req, err := b.newPatchCall(&uattrs)
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if err != nil {
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return nil, err
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}
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// TODO(jba): retry iff metagen is set?
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rb, err := req.Context(ctx).Do()
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if err != nil {
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return nil, err
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}
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return newBucket(rb), nil
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}
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func (b *BucketHandle) newPatchCall(uattrs *BucketAttrsToUpdate) (*raw.BucketsPatchCall, error) {
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rb := uattrs.toRawBucket()
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req := b.c.raw.Buckets.Patch(b.name, rb).Projection("full")
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setClientHeader(req.Header())
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if err := applyBucketConds("BucketHandle.Update", b.conds, req); err != nil {
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return nil, err
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}
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if b.userProject != "" {
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req.UserProject(b.userProject)
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}
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return req, nil
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}
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// BucketAttrs represents the metadata for a Google Cloud Storage bucket.
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type BucketAttrs struct {
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// Name is the name of the bucket.
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Name string
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// ACL is the list of access control rules on the bucket.
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ACL []ACLRule
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// DefaultObjectACL is the list of access controls to
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// apply to new objects when no object ACL is provided.
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DefaultObjectACL []ACLRule
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// Location is the location of the bucket. It defaults to "US".
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Location string
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// MetaGeneration is the metadata generation of the bucket.
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MetaGeneration int64
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// StorageClass is the default storage class of the bucket. This defines
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// how objects in the bucket are stored and determines the SLA
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// and the cost of storage. Typical values are "MULTI_REGIONAL",
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// "REGIONAL", "NEARLINE", "COLDLINE", "STANDARD" and
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// "DURABLE_REDUCED_AVAILABILITY". Defaults to "STANDARD", which
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// is equivalent to "MULTI_REGIONAL" or "REGIONAL" depending on
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// the bucket's location settings.
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StorageClass string
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// Created is the creation time of the bucket.
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Created time.Time
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// VersioningEnabled reports whether this bucket has versioning enabled.
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// This field is read-only.
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VersioningEnabled bool
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// Labels are the bucket's labels.
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Labels map[string]string
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// RequesterPays reports whether the bucket is a Requester Pays bucket.
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RequesterPays bool
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}
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func newBucket(b *raw.Bucket) *BucketAttrs {
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if b == nil {
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return nil
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}
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bucket := &BucketAttrs{
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Name: b.Name,
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Location: b.Location,
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MetaGeneration: b.Metageneration,
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StorageClass: b.StorageClass,
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Created: convertTime(b.TimeCreated),
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VersioningEnabled: b.Versioning != nil && b.Versioning.Enabled,
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Labels: b.Labels,
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RequesterPays: b.Billing != nil && b.Billing.RequesterPays,
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}
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acl := make([]ACLRule, len(b.Acl))
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for i, rule := range b.Acl {
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acl[i] = ACLRule{
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Entity: ACLEntity(rule.Entity),
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Role: ACLRole(rule.Role),
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}
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}
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bucket.ACL = acl
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objACL := make([]ACLRule, len(b.DefaultObjectAcl))
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for i, rule := range b.DefaultObjectAcl {
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objACL[i] = ACLRule{
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Entity: ACLEntity(rule.Entity),
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Role: ACLRole(rule.Role),
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}
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}
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bucket.DefaultObjectACL = objACL
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return bucket
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}
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// toRawBucket copies the editable attribute from b to the raw library's Bucket type.
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func (b *BucketAttrs) toRawBucket() *raw.Bucket {
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var acl []*raw.BucketAccessControl
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if len(b.ACL) > 0 {
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acl = make([]*raw.BucketAccessControl, len(b.ACL))
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for i, rule := range b.ACL {
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acl[i] = &raw.BucketAccessControl{
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Entity: string(rule.Entity),
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Role: string(rule.Role),
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}
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}
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}
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dACL := toRawObjectACL(b.DefaultObjectACL)
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// Copy label map.
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var labels map[string]string
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if len(b.Labels) > 0 {
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labels = make(map[string]string, len(b.Labels))
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for k, v := range b.Labels {
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labels[k] = v
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}
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}
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// Ignore VersioningEnabled if it is false. This is OK because
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// we only call this method when creating a bucket, and by default
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// new buckets have versioning off.
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var v *raw.BucketVersioning
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if b.VersioningEnabled {
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v = &raw.BucketVersioning{Enabled: true}
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}
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var bb *raw.BucketBilling
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if b.RequesterPays {
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bb = &raw.BucketBilling{RequesterPays: true}
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}
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return &raw.Bucket{
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Name: b.Name,
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DefaultObjectAcl: dACL,
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Location: b.Location,
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StorageClass: b.StorageClass,
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Acl: acl,
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Versioning: v,
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Labels: labels,
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Billing: bb,
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}
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}
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type BucketAttrsToUpdate struct {
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// VersioningEnabled, if set, updates whether the bucket uses versioning.
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VersioningEnabled optional.Bool
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// RequesterPays, if set, updates whether the bucket is a Requester Pays bucket.
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RequesterPays optional.Bool
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setLabels map[string]string
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deleteLabels map[string]bool
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}
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// SetLabel causes a label to be added or modified when ua is used
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// in a call to Bucket.Update.
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func (ua *BucketAttrsToUpdate) SetLabel(name, value string) {
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if ua.setLabels == nil {
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ua.setLabels = map[string]string{}
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}
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ua.setLabels[name] = value
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}
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// DeleteLabel causes a label to be deleted when ua is used in a
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// call to Bucket.Update.
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func (ua *BucketAttrsToUpdate) DeleteLabel(name string) {
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if ua.deleteLabels == nil {
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ua.deleteLabels = map[string]bool{}
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}
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ua.deleteLabels[name] = true
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}
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func (ua *BucketAttrsToUpdate) toRawBucket() *raw.Bucket {
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rb := &raw.Bucket{}
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if ua.VersioningEnabled != nil {
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rb.Versioning = &raw.BucketVersioning{
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Enabled: optional.ToBool(ua.VersioningEnabled),
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ForceSendFields: []string{"Enabled"},
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}
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}
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if ua.RequesterPays != nil {
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rb.Billing = &raw.BucketBilling{
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RequesterPays: optional.ToBool(ua.RequesterPays),
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ForceSendFields: []string{"RequesterPays"},
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}
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}
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if ua.setLabels != nil || ua.deleteLabels != nil {
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rb.Labels = map[string]string{}
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for k, v := range ua.setLabels {
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rb.Labels[k] = v
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}
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if len(rb.Labels) == 0 && len(ua.deleteLabels) > 0 {
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rb.ForceSendFields = append(rb.ForceSendFields, "Labels")
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}
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for l := range ua.deleteLabels {
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rb.NullFields = append(rb.NullFields, "Labels."+l)
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}
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}
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return rb
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}
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// If returns a new BucketHandle that applies a set of preconditions.
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// Preconditions already set on the BucketHandle are ignored.
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// Operations on the new handle will only occur if the preconditions are
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// satisfied. The only valid preconditions for buckets are MetagenerationMatch
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// and MetagenerationNotMatch.
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func (b *BucketHandle) If(conds BucketConditions) *BucketHandle {
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b2 := *b
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b2.conds = &conds
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return &b2
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}
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// BucketConditions constrain bucket methods to act on specific metagenerations.
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//
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// The zero value is an empty set of constraints.
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type BucketConditions struct {
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// MetagenerationMatch specifies that the bucket must have the given
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// metageneration for the operation to occur.
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// If MetagenerationMatch is zero, it has no effect.
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MetagenerationMatch int64
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// MetagenerationNotMatch specifies that the bucket must not have the given
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// metageneration for the operation to occur.
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// If MetagenerationNotMatch is zero, it has no effect.
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MetagenerationNotMatch int64
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}
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func (c *BucketConditions) validate(method string) error {
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if *c == (BucketConditions{}) {
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return fmt.Errorf("storage: %s: empty conditions", method)
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}
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if c.MetagenerationMatch != 0 && c.MetagenerationNotMatch != 0 {
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return fmt.Errorf("storage: %s: multiple conditions specified for metageneration", method)
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}
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return nil
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}
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// UserProject returns a new BucketHandle that passes the project ID as the user
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// project for all subsequent calls. A user project is required for all operations
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// on requester-pays buckets.
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func (b *BucketHandle) UserProject(projectID string) *BucketHandle {
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b2 := *b
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b2.userProject = projectID
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b2.acl.userProject = projectID
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b2.defaultObjectACL.userProject = projectID
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return &b2
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}
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// applyBucketConds modifies the provided call using the conditions in conds.
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// call is something that quacks like a *raw.WhateverCall.
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func applyBucketConds(method string, conds *BucketConditions, call interface{}) error {
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if conds == nil {
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return nil
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}
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if err := conds.validate(method); err != nil {
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return err
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}
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cval := reflect.ValueOf(call)
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switch {
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case conds.MetagenerationMatch != 0:
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if !setConditionField(cval, "IfMetagenerationMatch", conds.MetagenerationMatch) {
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return fmt.Errorf("storage: %s: ifMetagenerationMatch not supported", method)
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}
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case conds.MetagenerationNotMatch != 0:
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if !setConditionField(cval, "IfMetagenerationNotMatch", conds.MetagenerationNotMatch) {
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return fmt.Errorf("storage: %s: ifMetagenerationNotMatch not supported", method)
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}
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}
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return nil
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}
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// Objects returns an iterator over the objects in the bucket that match the Query q.
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// If q is nil, no filtering is done.
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func (b *BucketHandle) Objects(ctx context.Context, q *Query) *ObjectIterator {
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it := &ObjectIterator{
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ctx: ctx,
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bucket: b,
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}
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it.pageInfo, it.nextFunc = iterator.NewPageInfo(
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it.fetch,
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func() int { return len(it.items) },
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func() interface{} { b := it.items; it.items = nil; return b })
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if q != nil {
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it.query = *q
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}
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return it
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}
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// An ObjectIterator is an iterator over ObjectAttrs.
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type ObjectIterator struct {
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ctx context.Context
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bucket *BucketHandle
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query Query
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pageInfo *iterator.PageInfo
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nextFunc func() error
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items []*ObjectAttrs
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}
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// PageInfo supports pagination. See the google.golang.org/api/iterator package for details.
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func (it *ObjectIterator) PageInfo() *iterator.PageInfo { return it.pageInfo }
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// Next returns the next result. Its second return value is iterator.Done if
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// there are no more results. Once Next returns iterator.Done, all subsequent
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// calls will return iterator.Done.
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//
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// If Query.Delimiter is non-empty, some of the ObjectAttrs returned by Next will
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// have a non-empty Prefix field, and a zero value for all other fields. These
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// represent prefixes.
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func (it *ObjectIterator) Next() (*ObjectAttrs, error) {
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if err := it.nextFunc(); err != nil {
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return nil, err
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}
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item := it.items[0]
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it.items = it.items[1:]
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return item, nil
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}
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func (it *ObjectIterator) fetch(pageSize int, pageToken string) (string, error) {
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req := it.bucket.c.raw.Objects.List(it.bucket.name)
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setClientHeader(req.Header())
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req.Projection("full")
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req.Delimiter(it.query.Delimiter)
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req.Prefix(it.query.Prefix)
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req.Versions(it.query.Versions)
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req.PageToken(pageToken)
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if it.bucket.userProject != "" {
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req.UserProject(it.bucket.userProject)
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}
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if pageSize > 0 {
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req.MaxResults(int64(pageSize))
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}
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var resp *raw.Objects
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var err error
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err = runWithRetry(it.ctx, func() error {
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resp, err = req.Context(it.ctx).Do()
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return err
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})
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if err != nil {
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if e, ok := err.(*googleapi.Error); ok && e.Code == http.StatusNotFound {
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err = ErrBucketNotExist
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}
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return "", err
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}
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for _, item := range resp.Items {
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it.items = append(it.items, newObject(item))
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|
}
|
|
for _, prefix := range resp.Prefixes {
|
|
it.items = append(it.items, &ObjectAttrs{Prefix: prefix})
|
|
}
|
|
return resp.NextPageToken, nil
|
|
}
|
|
|
|
// TODO(jbd): Add storage.buckets.update.
|
|
|
|
// Buckets returns an iterator over the buckets in the project. You may
|
|
// optionally set the iterator's Prefix field to restrict the list to buckets
|
|
// whose names begin with the prefix. By default, all buckets in the project
|
|
// are returned.
|
|
func (c *Client) Buckets(ctx context.Context, projectID string) *BucketIterator {
|
|
it := &BucketIterator{
|
|
ctx: ctx,
|
|
client: c,
|
|
projectID: projectID,
|
|
}
|
|
it.pageInfo, it.nextFunc = iterator.NewPageInfo(
|
|
it.fetch,
|
|
func() int { return len(it.buckets) },
|
|
func() interface{} { b := it.buckets; it.buckets = nil; return b })
|
|
return it
|
|
}
|
|
|
|
// A BucketIterator is an iterator over BucketAttrs.
|
|
type BucketIterator struct {
|
|
// Prefix restricts the iterator to buckets whose names begin with it.
|
|
Prefix string
|
|
|
|
ctx context.Context
|
|
client *Client
|
|
projectID string
|
|
buckets []*BucketAttrs
|
|
pageInfo *iterator.PageInfo
|
|
nextFunc func() error
|
|
}
|
|
|
|
// Next returns the next result. Its second return value is iterator.Done if
|
|
// there are no more results. Once Next returns iterator.Done, all subsequent
|
|
// calls will return iterator.Done.
|
|
func (it *BucketIterator) Next() (*BucketAttrs, error) {
|
|
if err := it.nextFunc(); err != nil {
|
|
return nil, err
|
|
}
|
|
b := it.buckets[0]
|
|
it.buckets = it.buckets[1:]
|
|
return b, nil
|
|
}
|
|
|
|
// PageInfo supports pagination. See the google.golang.org/api/iterator package for details.
|
|
func (it *BucketIterator) PageInfo() *iterator.PageInfo { return it.pageInfo }
|
|
|
|
func (it *BucketIterator) fetch(pageSize int, pageToken string) (string, error) {
|
|
req := it.client.raw.Buckets.List(it.projectID)
|
|
setClientHeader(req.Header())
|
|
req.Projection("full")
|
|
req.Prefix(it.Prefix)
|
|
req.PageToken(pageToken)
|
|
if pageSize > 0 {
|
|
req.MaxResults(int64(pageSize))
|
|
}
|
|
var resp *raw.Buckets
|
|
var err error
|
|
err = runWithRetry(it.ctx, func() error {
|
|
resp, err = req.Context(it.ctx).Do()
|
|
return err
|
|
})
|
|
if err != nil {
|
|
return "", err
|
|
}
|
|
for _, item := range resp.Items {
|
|
it.buckets = append(it.buckets, newBucket(item))
|
|
}
|
|
return resp.NextPageToken, nil
|
|
}
|