194 lines
5.8 KiB
Go
194 lines
5.8 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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"storj.io/storj/internal/memory"
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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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// Config represents configuration options for an Uplink
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type Config struct {
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// MaxInlineSize determines whether the uplink will attempt to
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// store a new object in the satellite's metainfo. Objects at
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// or below this size will be marked for inline storage, and
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// objects above this size will not. (The satellite may reject
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// the inline storage and require remote storage, still.)
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MaxInlineSize int64
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// MaxMemory is the default maximum amount of memory to be
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// allocated for read buffers while performing decodes of
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// objects. (This option is overrideable per Bucket if the user
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// so desires.) If set to zero, the library default (4 MiB) will
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// be used. If set to a negative value, the system will use the
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// smallest amount of memory it can.
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MaxMemory int64
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// SkipPeerCAWhitelist determines whether to require all
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// remote hosts to have identity certificates signed by
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// Certificate Authorities in the default whitelist. If
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// set to true, the whitelist will be ignored.
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SkipPeerCAWhitelist bool
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}
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// Uplink represents the main entrypoint to Storj V3. An Uplink connects to
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// a specific Satellite and caches connections and resources, allowing one to
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// create sessions delineated by specific access controls.
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type Uplink struct {
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scope
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lib *libuplink.Uplink
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}
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// NewUplink creates a new Uplink. This is the first step to create an uplink
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// session with a user specified config or with default config, if nil config.
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// Uplink needs also writable temporary directory.
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func NewUplink(config *Config, tempDir string) (*Uplink, error) {
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scope := rootScope(tempDir)
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cfg := &libuplink.Config{}
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if config != nil {
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// TODO: V3-2303, support logging somehow
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cfg.Volatile.TLS.SkipPeerCAWhitelist = config.SkipPeerCAWhitelist
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cfg.Volatile.MaxInlineSize = memory.Size(config.MaxInlineSize)
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cfg.Volatile.MaxMemory = memory.Size(config.MaxMemory)
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}
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lib, err := libuplink.NewUplink(scope.ctx, cfg)
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if err != nil {
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return nil, safeError(err)
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}
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return &Uplink{scope, lib}, nil
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}
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// Close closes the Uplink. This may not do anything at present, but should
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// still be called to allow forward compatibility. No Project or Bucket
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// objects using this Uplink should be used after calling Close.
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func (uplink *Uplink) Close() error {
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uplink.cancel()
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return safeError(uplink.lib.Close())
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}
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// Project represents a specific project access session.
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type Project struct {
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scope
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lib *libuplink.Project
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}
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// OpenProject returns a Project handle with the given APIKey
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func (uplink *Uplink) OpenProject(satellite string, apikey string) (*Project, error) {
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scope := uplink.scope.child()
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key, err := libuplink.ParseAPIKey(apikey)
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if err != nil {
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return nil, safeError(err)
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}
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project, err := uplink.lib.OpenProject(scope.ctx, satellite, key)
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if err != nil {
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return nil, safeError(err)
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}
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return &Project{scope, project}, nil
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}
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// Close closes the Project
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func (project *Project) Close() error {
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defer project.cancel()
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return safeError(project.lib.Close())
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}
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// CreateBucket creates buckets in project
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func (project *Project) CreateBucket(bucketName string, opts *BucketConfig) (*BucketInfo, error) {
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scope := project.scope.child()
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cfg := libuplink.BucketConfig{}
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if opts != nil {
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cfg.PathCipher = storj.CipherSuite(opts.PathCipher)
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cfg.EncryptionParameters = newStorjEncryptionParameters(opts.EncryptionParameters)
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cfg.Volatile.RedundancyScheme = newStorjRedundancyScheme(opts.RedundancyScheme)
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cfg.Volatile.SegmentsSize = memory.Size(opts.SegmentsSize)
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}
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bucket, err := project.lib.CreateBucket(scope.ctx, bucketName, &cfg)
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if err != nil {
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return nil, safeError(err)
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}
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return newBucketInfo(bucket), nil
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}
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// OpenBucket returns a Bucket handle with the given EncryptionAccess
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// information.
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func (project *Project) OpenBucket(bucketName string, access *EncryptionAccess) (*Bucket, error) {
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scope := project.scope.child()
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bucket, err := project.lib.OpenBucket(scope.ctx, bucketName, access.lib)
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if err != nil {
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return nil, safeError(err)
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}
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return &Bucket{bucket.Name, scope, bucket}, nil
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}
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// GetBucketInfo returns info about the requested bucket if authorized.
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func (project *Project) GetBucketInfo(bucketName string) (*BucketInfo, error) {
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scope := project.scope.child()
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bucket, _, err := project.lib.GetBucketInfo(scope.ctx, bucketName)
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if err != nil {
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return nil, safeError(err)
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}
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return newBucketInfo(bucket), nil
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}
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// ListBuckets will list authorized buckets.
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func (project *Project) ListBuckets(after string, limit int) (*BucketList, error) {
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scope := project.scope.child()
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opts := libuplink.BucketListOptions{
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Cursor: after,
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Direction: storj.After,
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Limit: limit,
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}
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list, err := project.lib.ListBuckets(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 &BucketList{list}, nil
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}
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// DeleteBucket deletes a bucket if authorized. If the bucket contains any
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// Objects at the time of deletion, they may be lost permanently.
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func (project *Project) DeleteBucket(bucketName string) error {
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scope := project.scope.child()
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err := project.lib.DeleteBucket(scope.ctx, bucketName)
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return safeError(err)
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}
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func safeError(err error) error {
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// workaround to avoid gomobile panic because of "hash of unhashable type errs.combinedError"
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if err == nil {
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return nil
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}
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return fmt.Errorf("%v", err.Error())
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}
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// SaltedKeyFromPassphrase returns a key generated from the given passphrase using a stable,
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// project-specific salt
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func (project *Project) SaltedKeyFromPassphrase(passphrase string) (keyData []byte, err error) {
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scope := project.scope.child()
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key, err := project.lib.SaltedKeyFromPassphrase(scope.ctx, passphrase)
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if err != nil {
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return nil, err
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}
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return key[:], nil
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}
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