forked from TrueCloudLab/frostfs-sdk-go
Marina Biryukova
1b67ab9608
Since status is checked first in handleError method, it should be returned from client methods Signed-off-by: Marina Biryukova <m.biryukova@yadro.com>
809 lines
19 KiB
Go
809 lines
19 KiB
Go
package client
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import (
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"context"
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"crypto/ecdsa"
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"errors"
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"fmt"
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"io"
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"git.frostfs.info/TrueCloudLab/frostfs-api-go/v2/acl"
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v2object "git.frostfs.info/TrueCloudLab/frostfs-api-go/v2/object"
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v2refs "git.frostfs.info/TrueCloudLab/frostfs-api-go/v2/refs"
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rpcapi "git.frostfs.info/TrueCloudLab/frostfs-api-go/v2/rpc"
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"git.frostfs.info/TrueCloudLab/frostfs-api-go/v2/rpc/client"
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v2session "git.frostfs.info/TrueCloudLab/frostfs-api-go/v2/session"
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"git.frostfs.info/TrueCloudLab/frostfs-api-go/v2/signature"
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"git.frostfs.info/TrueCloudLab/frostfs-sdk-go/bearer"
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apistatus "git.frostfs.info/TrueCloudLab/frostfs-sdk-go/client/status"
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cid "git.frostfs.info/TrueCloudLab/frostfs-sdk-go/container/id"
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"git.frostfs.info/TrueCloudLab/frostfs-sdk-go/object"
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oid "git.frostfs.info/TrueCloudLab/frostfs-sdk-go/object/id"
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"git.frostfs.info/TrueCloudLab/frostfs-sdk-go/session"
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)
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// PrmObjectGet groups parameters of ObjectGetInit operation.
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type PrmObjectGet struct {
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XHeaders []string
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BearerToken *bearer.Token
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Session *session.Object
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Raw bool
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Local bool
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ContainerID *cid.ID
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ObjectID *oid.ID
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Key *ecdsa.PrivateKey
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}
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func (prm *PrmObjectGet) buildRequest(c *Client) (*v2object.GetRequest, error) {
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if prm.ContainerID == nil {
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return nil, errorMissingContainer
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}
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if prm.ObjectID == nil {
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return nil, errorMissingObject
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}
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if len(prm.XHeaders)%2 != 0 {
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return nil, errorInvalidXHeaders
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}
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meta := new(v2session.RequestMetaHeader)
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writeXHeadersToMeta(prm.XHeaders, meta)
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if prm.BearerToken != nil {
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v2BearerToken := new(acl.BearerToken)
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prm.BearerToken.WriteToV2(v2BearerToken)
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meta.SetBearerToken(v2BearerToken)
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}
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if prm.Session != nil {
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v2SessionToken := new(v2session.Token)
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prm.Session.WriteToV2(v2SessionToken)
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meta.SetSessionToken(v2SessionToken)
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}
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if prm.Local {
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meta.SetTTL(1)
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}
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addr := new(v2refs.Address)
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cnrV2 := new(v2refs.ContainerID)
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prm.ContainerID.WriteToV2(cnrV2)
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addr.SetContainerID(cnrV2)
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objV2 := new(v2refs.ObjectID)
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prm.ObjectID.WriteToV2(objV2)
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addr.SetObjectID(objV2)
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body := new(v2object.GetRequestBody)
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body.SetRaw(prm.Raw)
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body.SetAddress(addr)
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req := new(v2object.GetRequest)
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req.SetBody(body)
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c.prepareRequest(req, meta)
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return req, nil
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}
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// ResObjectGet groups the final result values of ObjectGetInit operation.
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type ResObjectGet struct {
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statusRes
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}
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// ObjectReader is designed to read one object from FrostFS system.
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//
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// Must be initialized using Client.ObjectGetInit, any other
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// usage is unsafe.
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type ObjectReader struct {
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cancelCtxStream context.CancelFunc
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client *Client
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stream interface {
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Read(resp *v2object.GetResponse) error
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}
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res ResObjectGet
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err error
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tailPayload []byte
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remainingPayloadLen int
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}
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// UseKey specifies private key to sign the requests.
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// If key is not provided, then Client default key is used.
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//
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// Deprecated: Use PrmObjectGet.Key instead.
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func (prm *PrmObjectGet) UseKey(key ecdsa.PrivateKey) {
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prm.Key = &key
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}
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// ReadHeader reads header of the object. Result means success.
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// Failure reason can be received via Close.
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func (x *ObjectReader) ReadHeader(dst *object.Object) bool {
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var resp v2object.GetResponse
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x.err = x.stream.Read(&resp)
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if x.err != nil {
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return false
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}
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x.res.st, x.err = x.client.processResponse(&resp)
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if x.err != nil || !apistatus.IsSuccessful(x.res.st) {
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return false
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}
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var partInit *v2object.GetObjectPartInit
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switch v := resp.GetBody().GetObjectPart().(type) {
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default:
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x.err = fmt.Errorf("unexpected message instead of heading part: %T", v)
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return false
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case *v2object.SplitInfo:
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x.err = object.NewSplitInfoError(object.NewSplitInfoFromV2(v))
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return false
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case *v2object.ECInfo:
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x.err = object.NewECInfoError(object.NewECInfoFromV2(v))
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return false
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case *v2object.GetObjectPartInit:
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partInit = v
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}
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var objv2 v2object.Object
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objv2.SetObjectID(partInit.GetObjectID())
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objv2.SetHeader(partInit.GetHeader())
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objv2.SetSignature(partInit.GetSignature())
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x.remainingPayloadLen = int(objv2.GetHeader().GetPayloadLength())
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*dst = *object.NewFromV2(&objv2) // need smth better
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return true
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}
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func (x *ObjectReader) readChunk(buf []byte) (int, bool) {
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var read int
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// read remaining tail
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read = copy(buf, x.tailPayload)
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x.tailPayload = x.tailPayload[read:]
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if len(buf) == read {
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return read, true
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}
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var chunk []byte
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var lastRead int
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for {
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var resp v2object.GetResponse
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x.err = x.stream.Read(&resp)
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if x.err != nil {
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return read, false
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}
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x.res.st, x.err = x.client.processResponse(&resp)
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if x.err != nil || !apistatus.IsSuccessful(x.res.st) {
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return read, false
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}
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part := resp.GetBody().GetObjectPart()
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partChunk, ok := part.(*v2object.GetObjectPartChunk)
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if !ok {
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x.err = fmt.Errorf("unexpected message instead of chunk part: %T", part)
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return read, false
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}
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// read new chunk
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chunk = partChunk.GetChunk()
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if len(chunk) == 0 {
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// just skip empty chunks since they are not prohibited by protocol
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continue
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}
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lastRead = copy(buf[read:], chunk)
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read += lastRead
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if read == len(buf) {
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// save the tail
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x.tailPayload = append(x.tailPayload, chunk[lastRead:]...)
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return read, true
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}
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}
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}
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// ReadChunk reads another chunk of the object payload. Works similar to
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// io.Reader.Read but returns success flag instead of error.
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//
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// Failure reason can be received via Close.
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func (x *ObjectReader) ReadChunk(buf []byte) (int, bool) {
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return x.readChunk(buf)
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}
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func (x *ObjectReader) close(ignoreEOF bool) (*ResObjectGet, error) {
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defer x.cancelCtxStream()
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if x.err != nil {
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if !errors.Is(x.err, io.EOF) {
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return nil, x.err
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} else if !ignoreEOF {
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if x.remainingPayloadLen > 0 {
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return nil, io.ErrUnexpectedEOF
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}
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return nil, io.EOF
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}
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}
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return &x.res, nil
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}
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// Close ends reading the object and returns the result of the operation
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// along with the final results. Must be called after using the ObjectReader.
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//
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// Exactly one return value is non-nil. By default, server status is returned in res structure.
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// Any client's internal or transport errors are returned as Go built-in error.
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// If Client is tuned to resolve FrostFS API statuses, then FrostFS failures
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// codes are returned as error.
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//
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// Return errors:
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//
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// *object.SplitInfoError (returned on virtual objects with PrmObjectGet.MakeRaw).
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// *object.ECInfoError (returned on erasure-coded objects with PrmObjectGet.MakeRaw).
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//
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// Return statuses:
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// - global (see Client docs);
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// - *apistatus.ContainerNotFound;
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// - *apistatus.ObjectNotFound;
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// - *apistatus.ObjectAccessDenied;
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// - *apistatus.ObjectAlreadyRemoved;
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// - *apistatus.SessionTokenExpired.
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func (x *ObjectReader) Close() (*ResObjectGet, error) {
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return x.close(true)
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}
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// Read implements io.Reader of the object payload.
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func (x *ObjectReader) Read(p []byte) (int, error) {
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n, ok := x.readChunk(p)
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x.remainingPayloadLen -= n
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if !ok {
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res, err := x.close(false)
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if err != nil {
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return n, err
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}
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return n, apistatus.ErrFromStatus(res.Status())
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}
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if x.remainingPayloadLen < 0 {
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return n, errors.New("payload size overflow")
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}
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return n, nil
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}
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// ObjectGetInit initiates reading an object through a remote server using FrostFS API protocol.
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//
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// The call only opens the transmission channel, explicit fetching is done using the ObjectReader.
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// Exactly one return value is non-nil. Resulting reader must be finally closed.
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//
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// Returns an error if parameters are set incorrectly (see PrmObjectGet docs).
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// Context is required and must not be nil. It is used for network communication.
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func (c *Client) ObjectGetInit(ctx context.Context, prm PrmObjectGet) (*ObjectReader, error) {
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req, err := prm.buildRequest(c)
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if err != nil {
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return nil, err
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}
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key := prm.Key
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if key == nil {
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key = &c.prm.Key
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}
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err = signature.SignServiceMessage(key, req)
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if err != nil {
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return nil, fmt.Errorf("sign request: %w", err)
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}
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ctx, cancel := context.WithCancel(ctx)
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stream, err := rpcapi.GetObject(&c.c, req, client.WithContext(ctx))
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if err != nil {
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cancel()
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return nil, fmt.Errorf("open stream: %w", err)
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}
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var r ObjectReader
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r.cancelCtxStream = cancel
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r.stream = stream
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r.client = c
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return &r, nil
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}
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// PrmObjectHead groups parameters of ObjectHead operation.
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type PrmObjectHead struct {
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XHeaders []string
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BearerToken *bearer.Token
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Session *session.Object
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Raw bool
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Local bool
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ContainerID *cid.ID
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ObjectID *oid.ID
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Key *ecdsa.PrivateKey
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}
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// UseKey specifies private key to sign the requests.
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// If key is not provided, then Client default key is used.
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//
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// Deprecated: Use PrmObjectHead.Key instead.
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func (prm *PrmObjectHead) UseKey(key ecdsa.PrivateKey) {
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prm.Key = &key
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}
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// ResObjectHead groups resulting values of ObjectHead operation.
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type ResObjectHead struct {
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statusRes
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// requested object (response doesn't carry the ID)
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idObj oid.ID
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hdr *v2object.HeaderWithSignature
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}
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// ReadHeader reads header of the requested object.
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// Returns false if header is missing in the response (not read).
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func (x *ResObjectHead) ReadHeader(dst *object.Object) bool {
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if x.hdr == nil {
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return false
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}
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var objv2 v2object.Object
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objv2.SetHeader(x.hdr.GetHeader())
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objv2.SetSignature(x.hdr.GetSignature())
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obj := object.NewFromV2(&objv2)
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obj.SetID(x.idObj)
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*dst = *obj
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return true
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}
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func (prm *PrmObjectHead) buildRequest(c *Client) (*v2object.HeadRequest, error) {
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if prm.ContainerID == nil {
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return nil, errorMissingContainer
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}
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if prm.ObjectID == nil {
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return nil, errorMissingObject
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}
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if len(prm.XHeaders)%2 != 0 {
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return nil, errorInvalidXHeaders
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}
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meta := new(v2session.RequestMetaHeader)
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writeXHeadersToMeta(prm.XHeaders, meta)
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if prm.BearerToken != nil {
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v2BearerToken := new(acl.BearerToken)
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prm.BearerToken.WriteToV2(v2BearerToken)
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meta.SetBearerToken(v2BearerToken)
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}
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if prm.Session != nil {
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v2SessionToken := new(v2session.Token)
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prm.Session.WriteToV2(v2SessionToken)
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meta.SetSessionToken(v2SessionToken)
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}
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if prm.Local {
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meta.SetTTL(1)
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}
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addr := new(v2refs.Address)
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cnrV2 := new(v2refs.ContainerID)
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prm.ContainerID.WriteToV2(cnrV2)
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addr.SetContainerID(cnrV2)
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objV2 := new(v2refs.ObjectID)
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prm.ObjectID.WriteToV2(objV2)
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addr.SetObjectID(objV2)
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body := new(v2object.HeadRequestBody)
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body.SetRaw(prm.Raw)
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body.SetAddress(addr)
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req := new(v2object.HeadRequest)
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req.SetBody(body)
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c.prepareRequest(req, meta)
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return req, nil
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}
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// ObjectHead reads object header through a remote server using FrostFS API protocol.
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//
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// Exactly one return value is non-nil. By default, server status is returned in res structure.
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// Any client's internal or transport errors are returned as `error`,
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// If PrmInit.DisableFrostFSFailuresResolution has been called, unsuccessful
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// FrostFS status codes are included in the returned result structure,
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// otherwise, are also returned as `error`.
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//
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// Returns an error if parameters are set incorrectly (see PrmObjectHead docs).
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// Context is required and must not be nil. It is used for network communication.
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//
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// Return errors:
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//
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// *object.SplitInfoError (returned on virtual objects with PrmObjectHead.MakeRaw).
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// *object.ECInfoError (returned on erasure-coded objects with PrmObjectHead.MakeRaw).
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//
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// Return statuses:
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// - global (see Client docs);
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// - *apistatus.ContainerNotFound;
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// - *apistatus.ObjectNotFound;
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// - *apistatus.ObjectAccessDenied;
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// - *apistatus.ObjectAlreadyRemoved;
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// - *apistatus.SessionTokenExpired.
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func (c *Client) ObjectHead(ctx context.Context, prm PrmObjectHead) (*ResObjectHead, error) {
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req, err := prm.buildRequest(c)
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if err != nil {
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return nil, err
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}
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key := c.prm.Key
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if prm.Key != nil {
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key = *prm.Key
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}
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// sign the request
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err = signature.SignServiceMessage(&key, req)
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if err != nil {
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return nil, fmt.Errorf("sign request: %w", err)
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}
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resp, err := rpcapi.HeadObject(&c.c, req, client.WithContext(ctx))
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if err != nil {
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return nil, fmt.Errorf("write request: %w", err)
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}
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var res ResObjectHead
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res.st, err = c.processResponse(resp)
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if err != nil || !apistatus.IsSuccessful(res.st) {
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return &res, err
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}
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res.idObj = *prm.ObjectID
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switch v := resp.GetBody().GetHeaderPart().(type) {
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default:
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return nil, fmt.Errorf("unexpected header type %T", v)
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case *v2object.SplitInfo:
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return nil, object.NewSplitInfoError(object.NewSplitInfoFromV2(v))
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case *v2object.ECInfo:
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return nil, object.NewECInfoError(object.NewECInfoFromV2(v))
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case *v2object.HeaderWithSignature:
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res.hdr = v
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}
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return &res, nil
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}
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// PrmObjectRange groups parameters of ObjectRange operation.
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type PrmObjectRange struct {
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XHeaders []string
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BearerToken *bearer.Token
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Session *session.Object
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Raw bool
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Local bool
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ContainerID *cid.ID
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ObjectID *oid.ID
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Key *ecdsa.PrivateKey
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Offset uint64
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Length uint64
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}
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func (prm *PrmObjectRange) buildRequest(c *Client) (*v2object.GetRangeRequest, error) {
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if prm.Length == 0 {
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return nil, errorZeroRangeLength
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}
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if prm.ContainerID == nil {
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return nil, errorMissingContainer
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}
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if prm.ObjectID == nil {
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return nil, errorMissingObject
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}
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if len(prm.XHeaders)%2 != 0 {
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return nil, errorInvalidXHeaders
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}
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meta := new(v2session.RequestMetaHeader)
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writeXHeadersToMeta(prm.XHeaders, meta)
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|
|
if prm.BearerToken != nil {
|
|
v2BearerToken := new(acl.BearerToken)
|
|
prm.BearerToken.WriteToV2(v2BearerToken)
|
|
meta.SetBearerToken(v2BearerToken)
|
|
}
|
|
|
|
if prm.Session != nil {
|
|
v2SessionToken := new(v2session.Token)
|
|
prm.Session.WriteToV2(v2SessionToken)
|
|
meta.SetSessionToken(v2SessionToken)
|
|
}
|
|
|
|
if prm.Local {
|
|
meta.SetTTL(1)
|
|
}
|
|
|
|
addr := new(v2refs.Address)
|
|
|
|
cnrV2 := new(v2refs.ContainerID)
|
|
prm.ContainerID.WriteToV2(cnrV2)
|
|
addr.SetContainerID(cnrV2)
|
|
|
|
objV2 := new(v2refs.ObjectID)
|
|
prm.ObjectID.WriteToV2(objV2)
|
|
addr.SetObjectID(objV2)
|
|
|
|
rng := new(v2object.Range)
|
|
rng.SetLength(prm.Length)
|
|
rng.SetOffset(prm.Offset)
|
|
|
|
body := new(v2object.GetRangeRequestBody)
|
|
body.SetRaw(prm.Raw)
|
|
body.SetAddress(addr)
|
|
body.SetRange(rng)
|
|
|
|
req := new(v2object.GetRangeRequest)
|
|
req.SetBody(body)
|
|
c.prepareRequest(req, meta)
|
|
|
|
return req, nil
|
|
}
|
|
|
|
// UseKey specifies private key to sign the requests.
|
|
// If key is not provided, then Client default key is used.
|
|
//
|
|
// Deprecated: Use PrmObjectRange.Key instead.
|
|
func (prm *PrmObjectRange) UseKey(key ecdsa.PrivateKey) {
|
|
prm.Key = &key
|
|
}
|
|
|
|
// ResObjectRange groups the final result values of ObjectRange operation.
|
|
type ResObjectRange struct {
|
|
statusRes
|
|
}
|
|
|
|
// ObjectRangeReader is designed to read payload range of one object
|
|
// from FrostFS system.
|
|
//
|
|
// Must be initialized using Client.ObjectRangeInit, any other
|
|
// usage is unsafe.
|
|
type ObjectRangeReader struct {
|
|
cancelCtxStream context.CancelFunc
|
|
|
|
client *Client
|
|
|
|
res ResObjectRange
|
|
err error
|
|
|
|
stream interface {
|
|
Read(resp *v2object.GetRangeResponse) error
|
|
}
|
|
|
|
tailPayload []byte
|
|
|
|
remainingPayloadLen int
|
|
}
|
|
|
|
func (x *ObjectRangeReader) readChunk(buf []byte) (int, bool) {
|
|
var read int
|
|
|
|
// read remaining tail
|
|
read = copy(buf, x.tailPayload)
|
|
|
|
x.tailPayload = x.tailPayload[read:]
|
|
|
|
if len(buf) == read {
|
|
return read, true
|
|
}
|
|
|
|
var partChunk *v2object.GetRangePartChunk
|
|
var chunk []byte
|
|
var lastRead int
|
|
|
|
for {
|
|
var resp v2object.GetRangeResponse
|
|
x.err = x.stream.Read(&resp)
|
|
if x.err != nil {
|
|
return read, false
|
|
}
|
|
|
|
x.res.st, x.err = x.client.processResponse(&resp)
|
|
if x.err != nil || !apistatus.IsSuccessful(x.res.st) {
|
|
return read, false
|
|
}
|
|
|
|
// get chunk message
|
|
switch v := resp.GetBody().GetRangePart().(type) {
|
|
default:
|
|
x.err = fmt.Errorf("unexpected message received: %T", v)
|
|
return read, false
|
|
case *v2object.SplitInfo:
|
|
x.err = object.NewSplitInfoError(object.NewSplitInfoFromV2(v))
|
|
return read, false
|
|
case *v2object.ECInfo:
|
|
x.err = object.NewECInfoError(object.NewECInfoFromV2(v))
|
|
return read, false
|
|
case *v2object.GetRangePartChunk:
|
|
partChunk = v
|
|
}
|
|
|
|
chunk = partChunk.GetChunk()
|
|
if len(chunk) == 0 {
|
|
// just skip empty chunks since they are not prohibited by protocol
|
|
continue
|
|
}
|
|
|
|
lastRead = copy(buf[read:], chunk)
|
|
|
|
read += lastRead
|
|
|
|
if read == len(buf) {
|
|
// save the tail
|
|
x.tailPayload = append(x.tailPayload, chunk[lastRead:]...)
|
|
|
|
return read, true
|
|
}
|
|
}
|
|
}
|
|
|
|
// ReadChunk reads another chunk of the object payload range.
|
|
// Works similar to io.Reader.Read but returns success flag instead of error.
|
|
//
|
|
// Failure reason can be received via Close.
|
|
func (x *ObjectRangeReader) ReadChunk(buf []byte) (int, bool) {
|
|
return x.readChunk(buf)
|
|
}
|
|
|
|
func (x *ObjectRangeReader) close(ignoreEOF bool) (*ResObjectRange, error) {
|
|
defer x.cancelCtxStream()
|
|
|
|
if x.err != nil {
|
|
if !errors.Is(x.err, io.EOF) {
|
|
return nil, x.err
|
|
} else if !ignoreEOF {
|
|
if x.remainingPayloadLen > 0 {
|
|
return nil, io.ErrUnexpectedEOF
|
|
}
|
|
|
|
return nil, io.EOF
|
|
}
|
|
}
|
|
|
|
return &x.res, nil
|
|
}
|
|
|
|
// Close ends reading the payload range and returns the result of the operation
|
|
// along with the final results. Must be called after using the ObjectRangeReader.
|
|
//
|
|
// Exactly one return value is non-nil. By default, server status is returned in res structure.
|
|
// Any client's internal or transport errors are returned as Go built-in error.
|
|
// If Client is tuned to resolve FrostFS API statuses, then FrostFS failures
|
|
// codes are returned as error.
|
|
//
|
|
// Return errors:
|
|
//
|
|
// *object.SplitInfoError (returned on virtual objects with PrmObjectRange.MakeRaw).
|
|
// *object.ECInfoError (returned on erasure-coded objects with PrmObjectRange.MakeRaw).
|
|
//
|
|
// Return statuses:
|
|
// - global (see Client docs);
|
|
// - *apistatus.ContainerNotFound;
|
|
// - *apistatus.ObjectNotFound;
|
|
// - *apistatus.ObjectAccessDenied;
|
|
// - *apistatus.ObjectAlreadyRemoved;
|
|
// - *apistatus.ObjectOutOfRange;
|
|
// - *apistatus.SessionTokenExpired.
|
|
func (x *ObjectRangeReader) Close() (*ResObjectRange, error) {
|
|
return x.close(true)
|
|
}
|
|
|
|
// Read implements io.Reader of the object payload.
|
|
func (x *ObjectRangeReader) Read(p []byte) (int, error) {
|
|
n, ok := x.readChunk(p)
|
|
|
|
x.remainingPayloadLen -= n
|
|
|
|
if !ok {
|
|
res, err := x.close(false)
|
|
if err != nil {
|
|
return n, err
|
|
}
|
|
|
|
return n, apistatus.ErrFromStatus(res.Status())
|
|
}
|
|
|
|
if x.remainingPayloadLen < 0 {
|
|
return n, errors.New("payload range size overflow")
|
|
}
|
|
|
|
return n, nil
|
|
}
|
|
|
|
// ObjectRangeInit initiates reading an object's payload range through a remote
|
|
// server using FrostFS API protocol.
|
|
//
|
|
// The call only opens the transmission channel, explicit fetching is done using the ObjectRangeReader.
|
|
// Exactly one return value is non-nil. Resulting reader must be finally closed.
|
|
//
|
|
// Returns an error if parameters are set incorrectly (see PrmObjectRange docs).
|
|
// Context is required and must not be nil. It is used for network communication.
|
|
func (c *Client) ObjectRangeInit(ctx context.Context, prm PrmObjectRange) (*ObjectRangeReader, error) {
|
|
req, err := prm.buildRequest(c)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
key := prm.Key
|
|
if key == nil {
|
|
key = &c.prm.Key
|
|
}
|
|
|
|
err = signature.SignServiceMessage(key, req)
|
|
if err != nil {
|
|
return nil, fmt.Errorf("sign request: %w", err)
|
|
}
|
|
|
|
ctx, cancel := context.WithCancel(ctx)
|
|
|
|
stream, err := rpcapi.GetObjectRange(&c.c, req, client.WithContext(ctx))
|
|
if err != nil {
|
|
cancel()
|
|
return nil, fmt.Errorf("open stream: %w", err)
|
|
}
|
|
|
|
var r ObjectRangeReader
|
|
r.remainingPayloadLen = int(prm.Length)
|
|
r.cancelCtxStream = cancel
|
|
r.stream = stream
|
|
r.client = c
|
|
|
|
return &r, nil
|
|
}
|