9c5d3d9dfa
Signed-off-by: Alex Vanin <alexey@nspcc.ru>
329 lines
8.3 KiB
Go
329 lines
8.3 KiB
Go
package client
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import (
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"crypto/ecdsa"
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"fmt"
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"github.com/nspcc-dev/neofs-api-go/v2/rpc/client"
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v2session "github.com/nspcc-dev/neofs-api-go/v2/session"
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"github.com/nspcc-dev/neofs-api-go/v2/signature"
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apistatus "github.com/nspcc-dev/neofs-sdk-go/client/status"
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"github.com/nspcc-dev/neofs-sdk-go/session"
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"github.com/nspcc-dev/neofs-sdk-go/version"
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)
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// common interface of resulting structures with API status.
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type resCommon interface {
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setStatus(apistatus.Status)
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}
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// structure is embedded to all resulting types in order to inherit status-related methods.
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type statusRes struct {
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st apistatus.Status
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}
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// setStatus implements resCommon interface method.
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func (x *statusRes) setStatus(st apistatus.Status) {
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x.st = st
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}
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// Status returns server's status return.
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//
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// Use apistatus package functionality to handle the status.
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func (x statusRes) Status() apistatus.Status {
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return x.st
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}
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type prmSession struct {
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tokenSessionSet bool
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tokenSession session.Token
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}
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// SetSessionToken sets token of the session within which request should be sent.
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func (x *prmSession) SetSessionToken(tok session.Token) {
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x.tokenSession = tok
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x.tokenSessionSet = true
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}
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func (x prmSession) writeToMetaHeader(meta *v2session.RequestMetaHeader) {
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if x.tokenSessionSet {
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meta.SetSessionToken(x.tokenSession.ToV2())
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}
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}
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// groups meta parameters shared between all Client operations.
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type prmCommonMeta struct {
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// NeoFS request X-Headers
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xHeaders []string
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}
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// WithXHeaders specifies list of extended headers (string key-value pairs)
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// to be attached to the request. Must have an even length.
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//
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// Slice must not be mutated until the operation completes.
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func (x *prmCommonMeta) WithXHeaders(hs ...string) {
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if len(hs)%2 != 0 {
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panic("slice of X-Headers with odd length")
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}
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x.xHeaders = hs
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}
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func (x prmCommonMeta) writeToMetaHeader(h *v2session.RequestMetaHeader) {
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if len(x.xHeaders) > 0 {
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hs := make([]v2session.XHeader, len(x.xHeaders)/2)
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for i := 0; i < len(x.xHeaders); i += 2 {
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hs[i].SetKey(x.xHeaders[i])
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hs[i].SetValue(x.xHeaders[i+1])
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}
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h.SetXHeaders(hs)
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}
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}
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// panic messages.
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const (
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panicMsgMissingContext = "missing context"
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panicMsgMissingContainer = "missing container"
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)
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// groups all the details required to send a single request and process a response to it.
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type contextCall struct {
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// ==================================================
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// state vars that do not require explicit initialization
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// final error to be returned from client method
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err error
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// received response
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resp responseV2
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// ==================================================
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// shared parameters which are set uniformly on all calls
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// request signing key
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key ecdsa.PrivateKey
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// callback prior to processing the response by the client
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callbackResp func(ResponseMetaInfo) error
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// if set, protocol errors will be expanded into a final error
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resolveAPIFailures bool
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// NeoFS network magic
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netMagic uint64
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// Meta parameters
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meta prmCommonMeta
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// ==================================================
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// custom call parameters
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// structure of the call result
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statusRes resCommon
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// request to be signed with a key and sent
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req interface {
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GetMetaHeader() *v2session.RequestMetaHeader
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SetMetaHeader(*v2session.RequestMetaHeader)
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SetVerificationHeader(*v2session.RequestVerificationHeader)
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}
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// function to send a request (unary) and receive a response
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call func() (responseV2, error)
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// function to send the request (req field)
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wReq func() error
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// function to recv the response (resp field)
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rResp func() error
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// function to close the message stream
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closer func() error
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// function of writing response fields to the resulting structure (optional)
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result func(v2 responseV2)
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}
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// sets needed fields of the request meta header.
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func (x contextCall) prepareRequest() {
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meta := x.req.GetMetaHeader()
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if meta == nil {
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meta = new(v2session.RequestMetaHeader)
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x.req.SetMetaHeader(meta)
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}
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if meta.GetTTL() == 0 {
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meta.SetTTL(2)
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}
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if meta.GetVersion() == nil {
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meta.SetVersion(version.Current().ToV2())
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}
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meta.SetNetworkMagic(x.netMagic)
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x.meta.writeToMetaHeader(meta)
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}
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// prepares, signs and writes the request. Result means success.
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// If failed, contextCall.err contains the reason.
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func (x *contextCall) writeRequest() bool {
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x.prepareRequest()
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x.req.SetVerificationHeader(nil)
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// sign the request
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x.err = signature.SignServiceMessage(&x.key, x.req)
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if x.err != nil {
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x.err = fmt.Errorf("sign request: %w", x.err)
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return false
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}
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x.err = x.wReq()
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if x.err != nil {
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x.err = fmt.Errorf("write request: %w", x.err)
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return false
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}
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return true
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}
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// performs common actions of response processing and writes any problem as a result status or client error
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// (in both cases returns false).
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//
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// Actions:
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// * verify signature (internal);
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// * call response callback (internal);
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// * unwrap status error (optional).
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func (x *contextCall) processResponse() bool {
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// call response callback if set
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if x.callbackResp != nil {
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x.err = x.callbackResp(ResponseMetaInfo{
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key: x.resp.GetVerificationHeader().GetBodySignature().GetKey(),
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})
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if x.err != nil {
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x.err = fmt.Errorf("response callback error: %w", x.err)
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return false
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}
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}
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// note that we call response callback before signature check since it is expected more lightweight
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// while verification needs marshaling
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// verify response signature
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x.err = signature.VerifyServiceMessage(x.resp)
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if x.err != nil {
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x.err = fmt.Errorf("invalid response signature: %w", x.err)
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return false
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}
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// get result status
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st := apistatus.FromStatusV2(x.resp.GetMetaHeader().GetStatus())
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// unwrap unsuccessful status and return it
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// as error if client has been configured so
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successfulStatus := apistatus.IsSuccessful(st)
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if !successfulStatus && x.resolveAPIFailures {
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x.err = apistatus.ErrFromStatus(st)
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return false
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}
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x.statusRes.setStatus(st)
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return successfulStatus || !x.resolveAPIFailures
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}
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// reads response (if rResp is set) and processes it. Result means success.
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// If failed, contextCall.err contains the reason.
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func (x *contextCall) readResponse() bool {
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if x.rResp != nil {
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x.err = x.rResp()
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if x.err != nil {
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x.err = fmt.Errorf("read response: %w", x.err)
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return false
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}
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}
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return x.processResponse()
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}
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// closes the message stream (if closer is set) and writes the results (if result is set).
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// Return means success. If failed, contextCall.err contains the reason.
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func (x *contextCall) close() bool {
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if x.closer != nil {
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x.err = x.closer()
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if x.err != nil {
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x.err = fmt.Errorf("close RPC: %w", x.err)
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return false
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}
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}
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// write response to resulting structure
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if x.result != nil {
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x.result(x.resp)
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}
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return true
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}
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// goes through all stages of sending a request and processing a response. Returns true if successful.
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// If failed, contextCall.err contains the reason.
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func (x *contextCall) processCall() bool {
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// set request writer
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x.wReq = func() error {
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var err error
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x.resp, err = x.call()
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return err
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}
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// write request
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ok := x.writeRequest()
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if !ok {
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return false
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}
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// read response
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ok = x.readResponse()
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if !ok {
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return false
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}
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// close and write response to resulting structure
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ok = x.close()
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if !ok {
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return false
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}
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return x.err == nil
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}
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// initializes static cross-call parameters inherited from client.
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func (c *Client) initCallContext(ctx *contextCall) {
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ctx.key = c.prm.key
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c.initCallContextWithoutKey(ctx)
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}
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// initializes static cross-call parameters inherited from client except private key.
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func (c *Client) initCallContextWithoutKey(ctx *contextCall) {
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ctx.resolveAPIFailures = c.prm.resolveNeoFSErrors
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ctx.callbackResp = c.prm.cbRespInfo
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ctx.netMagic = c.prm.netMagic
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}
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// ExecRaw executes f with underlying github.com/nspcc-dev/neofs-api-go/v2/rpc/client.Client
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// instance. Communicate over the Protocol Buffers protocol in a more flexible way:
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// most often used to transmit data over a fixed version of the NeoFS protocol, as well
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// as to support custom services.
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//
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// The f must not manipulate the client connection passed into it.
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//
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// Like all other operations, must be called after connecting to the server and
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// before closing the connection.
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//
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// See also Dial and Close.
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// See also github.com/nspcc-dev/neofs-api-go/v2/rpc/client package docs.
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func (c *Client) ExecRaw(f func(client *client.Client) error) error {
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return f(&c.c)
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}
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