377 lines
11 KiB
Go
377 lines
11 KiB
Go
// Copyright (C) 2019 Storj Labs, Inc.
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// See LICENSE for copying information.
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package mobile
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import (
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"fmt"
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"io"
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"time"
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libuplink "storj.io/storj/lib/uplink"
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"storj.io/storj/pkg/storj"
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)
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const (
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// CipherSuiteEncUnspecified indicates no encryption suite has been selected.
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CipherSuiteEncUnspecified = byte(storj.EncUnspecified)
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// CipherSuiteEncNull indicates use of the NULL cipher; that is, no encryption is
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// done. The ciphertext is equal to the plaintext.
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CipherSuiteEncNull = byte(storj.EncNull)
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// CipherSuiteEncAESGCM indicates use of AES128-GCM encryption.
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CipherSuiteEncAESGCM = byte(storj.EncAESGCM)
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// CipherSuiteEncSecretBox indicates use of XSalsa20-Poly1305 encryption, as provided
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// by the NaCl cryptography library under the name "Secretbox".
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CipherSuiteEncSecretBox = byte(storj.EncSecretBox)
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// DirectionAfter lists forwards from cursor, without cursor
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DirectionAfter = int(storj.After)
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// DirectionForward lists forwards from cursor, including cursor
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DirectionForward = int(storj.Forward)
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// DirectionBackward lists backwards from cursor, including cursor
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DirectionBackward = int(storj.Backward)
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// DirectionBefore lists backwards from cursor, without cursor
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DirectionBefore = int(storj.Before)
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)
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// Bucket represents operations you can perform on a bucket
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type Bucket struct {
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Name string
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scope
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lib *libuplink.Bucket
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}
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// BucketAccess defines access to bucket
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type BucketAccess struct {
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PathEncryptionKey []byte
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EncryptedPathPrefix storj.Path
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}
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// BucketInfo bucket meta struct
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type BucketInfo struct {
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Name string
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Created int64
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PathCipher byte
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SegmentsSize int64
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RedundancyScheme *RedundancyScheme
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EncryptionParameters *EncryptionParameters
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}
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func newBucketInfo(bucket storj.Bucket) *BucketInfo {
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return &BucketInfo{
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Name: bucket.Name,
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Created: bucket.Created.UTC().UnixNano() / int64(time.Millisecond),
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PathCipher: byte(bucket.PathCipher),
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SegmentsSize: bucket.SegmentsSize,
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RedundancyScheme: &RedundancyScheme{
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Algorithm: byte(bucket.RedundancyScheme.Algorithm),
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ShareSize: bucket.RedundancyScheme.ShareSize,
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RequiredShares: bucket.RedundancyScheme.RequiredShares,
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RepairShares: bucket.RedundancyScheme.RepairShares,
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OptimalShares: bucket.RedundancyScheme.OptimalShares,
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TotalShares: bucket.RedundancyScheme.TotalShares,
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},
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EncryptionParameters: &EncryptionParameters{
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CipherSuite: byte(bucket.EncryptionParameters.CipherSuite),
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BlockSize: bucket.EncryptionParameters.BlockSize,
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},
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}
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}
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// BucketConfig bucket configuration
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type BucketConfig struct {
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// PathCipher indicates which cipher suite is to be used for path
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// encryption within the new Bucket. If not set, AES-GCM encryption
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// will be used.
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PathCipher byte
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// EncryptionParameters specifies the default encryption parameters to
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// be used for data encryption of new Objects in this bucket.
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EncryptionParameters *EncryptionParameters
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// RedundancyScheme defines the default Reed-Solomon and/or
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// Forward Error Correction encoding parameters to be used by
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// objects in this Bucket.
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RedundancyScheme *RedundancyScheme
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// SegmentsSize is the default segment size to use for new
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// objects in this Bucket.
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SegmentsSize int64
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}
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// BucketList is a list of buckets
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type BucketList struct {
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list storj.BucketList
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}
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// More returns true if list request was not able to return all results
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func (bl *BucketList) More() bool {
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return bl.list.More
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}
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// Length returns number of returned items
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func (bl *BucketList) Length() int {
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return len(bl.list.Items)
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}
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// Item gets item from specific index
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func (bl *BucketList) Item(index int) (*BucketInfo, error) {
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if index < 0 && index >= len(bl.list.Items) {
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return nil, fmt.Errorf("index out of range")
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}
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return newBucketInfo(bl.list.Items[index]), nil
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}
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// RedundancyScheme specifies the parameters and the algorithm for redundancy
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type RedundancyScheme struct {
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// Algorithm determines the algorithm to be used for redundancy.
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Algorithm byte
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// ShareSize is the size to use for new redundancy shares.
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ShareSize int32
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// RequiredShares is the minimum number of shares required to recover a
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// segment.
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RequiredShares int16
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// RepairShares is the minimum number of safe shares that can remain
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// before a repair is triggered.
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RepairShares int16
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// OptimalShares is the desired total number of shares for a segment.
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OptimalShares int16
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// TotalShares is the number of shares to encode. If it is larger than
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// OptimalShares, slower uploads of the excess shares will be aborted in
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// order to improve performance.
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TotalShares int16
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}
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func newStorjRedundancyScheme(scheme *RedundancyScheme) storj.RedundancyScheme {
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if scheme == nil {
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return storj.RedundancyScheme{}
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}
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return storj.RedundancyScheme{
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Algorithm: storj.RedundancyAlgorithm(scheme.Algorithm),
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ShareSize: scheme.ShareSize,
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RequiredShares: scheme.RequiredShares,
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RepairShares: scheme.RepairShares,
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OptimalShares: scheme.OptimalShares,
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TotalShares: scheme.TotalShares,
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}
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}
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// EncryptionParameters is the cipher suite and parameters used for encryption
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// It is like EncryptionScheme, but uses the CipherSuite type instead of Cipher.
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// EncryptionParameters is preferred for new uses.
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type EncryptionParameters struct {
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// CipherSuite specifies the cipher suite to be used for encryption.
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CipherSuite byte
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// BlockSize determines the unit size at which encryption is performed.
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// It is important to distinguish this from the block size used by the
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// cipher suite (probably 128 bits). There is some small overhead for
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// each encryption unit, so BlockSize should not be too small, but
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// smaller sizes yield shorter first-byte latency and better seek times.
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// Note that BlockSize itself is the size of data blocks _after_ they
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// have been encrypted and the authentication overhead has been added.
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// It is _not_ the size of the data blocks to _be_ encrypted.
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BlockSize int32
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}
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func newStorjEncryptionParameters(ec *EncryptionParameters) storj.EncryptionParameters {
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if ec == nil {
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return storj.EncryptionParameters{}
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}
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return storj.EncryptionParameters{
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CipherSuite: storj.CipherSuite(ec.CipherSuite),
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BlockSize: ec.BlockSize,
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}
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}
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// ListOptions options for listing objects
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type ListOptions struct {
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Prefix string
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Cursor string // Cursor is relative to Prefix, full path is Prefix + Cursor
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Delimiter int32
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Recursive bool
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Direction int
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Limit int
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}
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// ListObjects list objects in bucket, if authorized.
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func (bucket *Bucket) ListObjects(options *ListOptions) (*ObjectList, error) {
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scope := bucket.scope.child()
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opts := &storj.ListOptions{}
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if options != nil {
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opts.Prefix = options.Prefix
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opts.Cursor = options.Cursor
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opts.Direction = storj.ListDirection(options.Direction)
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opts.Delimiter = options.Delimiter
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opts.Recursive = options.Recursive
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opts.Limit = options.Limit
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}
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list, err := bucket.lib.ListObjects(scope.ctx, opts)
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if err != nil {
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return nil, safeError(err)
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}
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return &ObjectList{list}, nil
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}
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// OpenObject returns an Object handle, if authorized.
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func (bucket *Bucket) OpenObject(objectPath string) (*ObjectInfo, error) {
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scope := bucket.scope.child()
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object, err := bucket.lib.OpenObject(scope.ctx, objectPath)
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if err != nil {
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return nil, safeError(err)
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}
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return newObjectInfoFromObjectMeta(object.Meta), nil
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}
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// DeleteObject removes an object, if authorized.
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func (bucket *Bucket) DeleteObject(objectPath string) error {
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scope := bucket.scope.child()
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return safeError(bucket.lib.DeleteObject(scope.ctx, objectPath))
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}
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// Close closes the Bucket session.
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func (bucket *Bucket) Close() error {
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defer bucket.cancel()
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return safeError(bucket.lib.Close())
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}
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// WriterOptions controls options about writing a new Object
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type WriterOptions struct {
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// ContentType, if set, gives a MIME content-type for the Object.
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ContentType string
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// Metadata contains additional information about an Object. It can
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// hold arbitrary textual fields and can be retrieved together with the
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// Object. Field names can be at most 1024 bytes long. Field values are
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// not individually limited in size, but the total of all metadata
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// (fields and values) can not exceed 4 kiB.
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Metadata map[string]string
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// Expires is the time at which the new Object can expire (be deleted
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// automatically from storage nodes).
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Expires int
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// EncryptionParameters determines the cipher suite to use for
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// the Object's data encryption. If not set, the Bucket's
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// defaults will be used.
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EncryptionParameters *EncryptionParameters
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// RedundancyScheme determines the Reed-Solomon and/or Forward
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// Error Correction encoding parameters to be used for this
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// Object.
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RedundancyScheme *RedundancyScheme
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}
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// NewWriterOptions creates writer options
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func NewWriterOptions() *WriterOptions {
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return &WriterOptions{}
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}
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// Writer writes data into object
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type Writer struct {
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scope
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writer io.WriteCloser
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}
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// NewWriter creates instance of Writer
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func (bucket *Bucket) NewWriter(path storj.Path, options *WriterOptions) (*Writer, error) {
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scope := bucket.scope.child()
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opts := &libuplink.UploadOptions{}
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if options != nil {
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opts.ContentType = options.ContentType
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opts.Metadata = options.Metadata
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if options.Expires != 0 {
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opts.Expires = time.Unix(int64(options.Expires), 0)
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}
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opts.Volatile.EncryptionParameters = newStorjEncryptionParameters(options.EncryptionParameters)
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opts.Volatile.RedundancyScheme = newStorjRedundancyScheme(options.RedundancyScheme)
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}
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writer, err := bucket.lib.NewWriter(scope.ctx, path, opts)
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if err != nil {
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return nil, safeError(err)
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}
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return &Writer{scope, writer}, nil
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}
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// Write writes data.length bytes from data to the underlying data stream.
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func (w *Writer) Write(data []byte, offset, length int32) (int32, error) {
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// in Java byte array size is max int32
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n, err := w.writer.Write(data[offset:length])
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return int32(n), safeError(err)
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}
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// Cancel cancels writing operation
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func (w *Writer) Cancel() {
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w.cancel()
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}
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// Close closes writer
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func (w *Writer) Close() error {
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defer w.cancel()
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return safeError(w.writer.Close())
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}
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// ReaderOptions options for reading
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type ReaderOptions struct {
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}
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// Reader reader for downloading object
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type Reader struct {
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scope
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readError error
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reader interface {
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io.Reader
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io.Seeker
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io.Closer
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}
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}
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// NewReader returns new reader for downloading object
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func (bucket *Bucket) NewReader(path storj.Path, options *ReaderOptions) (*Reader, error) {
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scope := bucket.scope.child()
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reader, err := bucket.lib.NewReader(scope.ctx, path)
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if err != nil {
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return nil, safeError(err)
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}
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return &Reader{
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scope: scope,
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reader: reader,
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}, nil
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}
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// Read reads data into byte array
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func (r *Reader) Read(data []byte) (n int32, err error) {
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if r.readError != nil {
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err = r.readError
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} else {
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var read int
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read, err = r.reader.Read(data)
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n = int32(read)
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}
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if n > 0 && err != nil {
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r.readError = err
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err = nil
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}
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if err == io.EOF {
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return -1, nil
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}
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return n, safeError(err)
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}
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// Cancel cancels read operation
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func (r *Reader) Cancel() {
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r.cancel()
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}
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// Close closes reader
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func (r *Reader) Close() error {
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defer r.cancel()
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return safeError(r.reader.Close())
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}
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