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https://github.com/minio/minio.git
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175 lines
7.5 KiB
Go
175 lines
7.5 KiB
Go
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// Copyright (c) 2015-2023 MinIO, Inc.
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//
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// This file is part of MinIO Object Storage stack
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Affero General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Affero General Public License for more details.
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//
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// You should have received a copy of the GNU Affero General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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package cmd
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import (
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"bytes"
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"context"
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"encoding/xml"
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"io"
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)
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// From Veeam-SOSAPI_1.0_Document_v1.02d.pdf
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// - SOSAPI Protocol Version
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// - Model Name of the vendor plus version for statistical analysis.
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// - List of Smart Object Storage protocol capabilities supported by the server.
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// Currently, there are three capabilities supported:
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// - Capacity Reporting
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// - Backup data locality for upload sessions (Veeam Smart Entity)
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// - Handover of IAM & STS Endpoints instead of manual definition in Veeam Backup & Replication. This allows Veeam
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// Agents to directly backup to object storage.
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//
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// An object storage system can implement one, multiple, or all functions.
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//
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// - Optional (mandatory if <IAMSTS> is true): Set Endpoints for IAM and STS processing.
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//
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// - Optional: Set server preferences for Backup & Replication parallel sessions, batch size of deletes, and block sizes (before
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// compression). This is an optional area; by default, there should be no <SystemRecommendations> section in the
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// system.xml. Vendors can work with Veeam Product Management and the Alliances team on getting approval to integrate
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// specific system recommendations based on current support case statistics and storage performance possibilities.
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// Vendors might change the settings based on the configuration and scale out of the solution (more storage nodes =>
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// higher task limit).
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//
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// <S3ConcurrentTaskLimit>
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//
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// - Defines how many S3 operations are executed parallel within one Repository Task Slot (and within one backup object
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// that gets offloaded). The same registry key setting overwrites the storage-defined setting.
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// Optional value, default 64, range: 1-unlimited
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//
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// - <S3MultiObjectDeleteLimit>
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// Some of the Veeam products use Multi Delete operations. This setting can reduce how many objects are included in one
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// multi-delete operation. The same registry key setting overwrites the storage-defined setting.
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// Optional value, default 1000, range: 1-unlimited (S3 standard maximum is 1000 and should not be set higher)
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//
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// - <StorageConcurrentTasksLimit>
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// Setting reduces the parallel Repository Task slots that offload or write data to object storage. The same user interface
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// setting overwrites the storage-defined setting.
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// Optional value, default 0, range: 0-unlimited (0 equals unlimited, which means the maximum configured repository task
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// slots are used for object offloading or writing)
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//
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// - <KbBlockSize>
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// Veeam Block Size for backup and restore processing before compression is applied. The higher the block size, the more
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// backup space is needed for incremental backups. Larger block sizes also mean less performance for random read restore
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// methods like Instant Restore, File Level Recovery, and Database/Application restores. Veeam recommends that vendors
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// optimize the storage system for the default value of 1MB minus compression object sizes. The setting simultaneously
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// affects read from source, block, file, dedup, and object storage backup targets for a specific Veeam Job. When customers
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// create a new backup job and select the object storage or a SOBR as a backup target with this setting, the job default
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// setting will be set to this value. This setting will be only applied to newly created jobs (manual changes with Active Full
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// processing possible from the customer side).
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// Optional value, default 1024, allowed values 256,512,1024,4096,8192, value defined in KB size.
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//
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// - The object should be present in all buckets accessed by Veeam products that want to leverage the SOSAPI functionality.
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//
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// - The current protocol version is 1.0.
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type systemInfo struct {
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XMLName xml.Name `xml:"SystemInfo" json:"-"`
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ProtocolVersion string `xml:"ProtocolVersion"`
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ModelName string `xml:"ModelName"`
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ProtocolCapabilities struct {
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CapacityInfo bool `xml:"CapacityInfo"`
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UploadSessions bool `xml:"UploadSessions"`
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IAMSTS bool `xml:"IAMSTS"`
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} `mxl:"ProtocolCapabilities"`
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APIEndpoints struct {
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IAMEndpoint string `xml:"IAMEndpoint"`
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STSEndpoint string `xml:"STSEndpoint"`
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} `xml:"APIEndpoints"`
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SystemRecommendations struct {
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S3ConcurrentTaskLimit int `xml:"S3ConcurrentTaskLimit"`
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S3MultiObjectDeleteLimit int `xml:"S3MultiObjectDeleteLimit"`
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StorageCurrentTaskLimit int `xml:"StorageCurrentTaskLimit"`
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KBBlockSize int `xml:"KbBlockSize"`
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} `xml:"SystemRecommendations"`
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}
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// This optional functionality allows vendors to report space information to Veeam products, and Veeam will make placement
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// decisions based on this information. For example, Veeam Backup & Replication has a Scale-out-Backup-Repository feature where
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// multiple buckets can be used together. The placement logic for additional backup files is based on available space. Other values
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// will augment the Veeam user interface and statistics, including free space warnings.
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type capacityInfo struct {
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XMLName xml.Name `xml:"CapacityInfo" json:"-"`
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Capacity int64 `xml:"Capacity"`
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Available int64 `xml:"Available"`
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Used int64 `xml:"Used"`
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}
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const (
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systemXMLObject = ".system-d26a9498-cb7c-4a87-a44a-8ae204f5ba6c/system.xml"
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capacityXMLObject = ".system-d26a9498-cb7c-4a87-a44a-8ae204f5ba6c/capacity.xml"
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)
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func veeamSOSAPIGetObject(ctx context.Context, bucket, object string, rs *HTTPRangeSpec, opts ObjectOptions) (gr *GetObjectReader, err error) {
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var buf []byte
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switch object {
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case systemXMLObject:
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si := systemInfo{
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ProtocolVersion: "1.0",
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ModelName: "MinIO " + ReleaseTag,
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}
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si.ProtocolCapabilities.CapacityInfo = true
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// Default recommended block size with MinIO
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si.SystemRecommendations.KBBlockSize = 4096
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buf = encodeResponse(&si)
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case capacityXMLObject:
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objAPI := newObjectLayerFn()
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if objAPI == nil {
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return nil, errServerNotInitialized
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}
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info := objAPI.StorageInfo(ctx)
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info.Backend = objAPI.BackendInfo()
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usableTotal := int64(GetTotalUsableCapacity(info.Disks, info))
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usableFree := int64(GetTotalUsableCapacityFree(info.Disks, info))
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ci := capacityInfo{
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Capacity: usableTotal,
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Available: usableFree,
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Used: usableTotal - usableFree,
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}
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buf = encodeResponse(&ci)
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default:
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return nil, errFileNotFound
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}
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etag := getMD5Hash(buf)
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r := bytes.NewReader(buf)
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off, length := int64(0), r.Size()
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if rs != nil {
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off, length, err = rs.GetOffsetLength(r.Size())
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if err != nil {
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return nil, err
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}
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}
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r.Seek(off, io.SeekStart)
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return NewGetObjectReaderFromReader(io.LimitReader(r, length), ObjectInfo{
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Bucket: bucket,
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Name: object,
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Size: r.Size(),
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IsLatest: true,
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ContentType: string(mimeXML),
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NumVersions: 1,
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ETag: etag,
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ModTime: UTCNow(),
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}, opts)
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}
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