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/*
*
* Copyright 2023 gRPC authors.
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*
*/
package grpc_test
import (
"context"
"io"
"strings"
"testing"
"time"
"google.golang.org/grpc"
"google.golang.org/grpc/codes"
"google.golang.org/grpc/internal/grpctest"
"google.golang.org/grpc/internal/stubserver"
"google.golang.org/grpc/status"
testgrpc "google.golang.org/grpc/interop/grpc_testing"
testpb "google.golang.org/grpc/interop/grpc_testing"
)
const defaultTestTimeout = 10 * time.Second
type s struct {
grpctest.Tester
}
func Test(t *testing.T) {
grpctest.RunSubTests(t, s{})
}
func (s) TestStream_Header_TrailersOnly(t *testing.T) {
ss := stubserver.StubServer{
FullDuplexCallF: func(testgrpc.TestService_FullDuplexCallServer) error {
return status.Errorf(codes.NotFound, "a test error")
},
}
if err := ss.Start(nil); err != nil {
t.Fatal("Error starting server:", err)
}
defer ss.Stop()
ctx, cancel := context.WithTimeout(context.Background(), defaultTestTimeout)
defer cancel()
s, err := ss.Client.FullDuplexCall(ctx)
if err != nil {
t.Fatal("Error staring call", err)
}
if md, err := s.Header(); md != nil || err != nil {
t.Fatalf("s.Header() = %v, %v; want nil, nil", md, err)
}
if _, err := s.Recv(); status.Code(err) != codes.NotFound {
t.Fatalf("s.Recv() = _, %v; want _, err.Code()=codes.NotFound", err)
}
}
// TestUnaryClient_ServerStreamingMismatch ensures that the client's
// non-streaming RecvMsg() logic correctly handles various error scenarios
// from the server.
//
// The Client initiates a Unary RPC (Invoke), forcing it to use the
// non-server-streaming `recvMsg` code path (where the bug was).
// The Server handles it as a Streaming RPC (FullDuplexCall), allowing us to
// send arbitrary sequences of messages and errors.
func (s) TestUnaryClient_ServerStreamingMismatch(t *testing.T) {
tests := []struct {
name string
fullDuplexCallF func(testgrpc.TestService_FullDuplexCallServer) error
wantErrorContains string
wantCode codes.Code
clientCallOptions []grpc.CallOption
}{
{
name: "server_sends_error_after_message",
fullDuplexCallF: func(stream testgrpc.TestService_FullDuplexCallServer) error {
if err := stream.Send(&testpb.StreamingOutputCallResponse{}); err != nil {
return err
}
return status.Error(codes.Internal, "server error after message")
},
wantErrorContains: "server error after message",
wantCode: codes.Internal,
},
{
name: "server_sends_second_message_exceeding_limit",
fullDuplexCallF: func(stream testgrpc.TestService_FullDuplexCallServer) error {
if err := stream.Send(&testpb.StreamingOutputCallResponse{
Payload: &testpb.Payload{Body: make([]byte, 1)},
}); err != nil {
return err
}
return stream.Send(&testpb.StreamingOutputCallResponse{
Payload: &testpb.Payload{Body: make([]byte, 10)},
})
},
clientCallOptions: []grpc.CallOption{grpc.MaxCallRecvMsgSize(5)},
wantErrorContains: "received message larger than max",
wantCode: codes.ResourceExhausted,
},
}
for _, test := range tests {
t.Run(test.name, func(t *testing.T) {
ss := &stubserver.StubServer{
FullDuplexCallF: test.fullDuplexCallF,
}
if err := ss.Start(nil); err != nil {
t.Fatal("Error starting server:", err)
}
defer ss.Stop()
ctx, cancel := context.WithTimeout(context.Background(), defaultTestTimeout)
defer cancel()
// Invoke the streaming RPC method as a Unary RPC. This forces the client
// to use the non-streaming RecvMsg path, while the server handles it as
// a stream (allowing it to send messages and errors in ways a standard
// Unary server cannot).
err := ss.CC.Invoke(ctx, "/grpc.testing.TestService/FullDuplexCall", &testpb.StreamingOutputCallRequest{}, &testpb.StreamingOutputCallResponse{}, test.clientCallOptions...)
if err == nil {
t.Fatal("Client.Invoke returned nil, want error")
}
if status.Code(err) != test.wantCode {
t.Errorf("Unexpected error code: got %v, want %v", status.Code(err), test.wantCode)
}
if !strings.Contains(err.Error(), test.wantErrorContains) {
t.Errorf("Unexpected error message: got %v, want %v", err.Error(), test.wantErrorContains)
}
})
}
}
// interceptorStream wraps a ClientStream to record invocations of RecvMsg and
// CloseSend hooks across downstream interceptors.
type interceptorStream struct {
grpc.ClientStream
recvMsgCount int
closeSend bool
}
func (s *interceptorStream) RecvMsg(m any) error {
s.recvMsgCount++
return s.ClientStream.RecvMsg(m)
}
func (s *interceptorStream) CloseSend() error {
s.closeSend = true
return s.ClientStream.CloseSend()
}
// TestDefaultStreamInterceptor verifies that defaultStreamInterceptor
// automatically triggers CloseSend on non-client-streaming RPCs right after
// SendMsg, and calls RecvMsg a second time on non-server-streaming RPCs to
// consume trailers and io.EOF.
func (s) TestDefaultStreamInterceptor(t *testing.T) {
var iStream *interceptorStream
// Define a client-side stream interceptor that wraps the ClientStream to
// monitor hook invocations across RPC calls.
clientInt := func(ctx context.Context, desc *grpc.StreamDesc, cc *grpc.ClientConn, method string, streamer grpc.Streamer, opts ...grpc.CallOption) (grpc.ClientStream, error) {
cs, err := streamer(ctx, desc, cc, method, opts...)
if err != nil {
return nil, err
}
iStream = &interceptorStream{ClientStream: cs}
return iStream, nil
}
// Setup a service implementing both a client-streaming RPC and a
// server-streaming RPC.
ss := &stubserver.StubServer{
StreamingOutputCallF: func(_ *testpb.StreamingOutputCallRequest, stream testgrpc.TestService_StreamingOutputCallServer) error {
return stream.Send(&testpb.StreamingOutputCallResponse{})
},
StreamingInputCallF: func(stream testgrpc.TestService_StreamingInputCallServer) error {
for {
if _, err := stream.Recv(); err != nil {
if err == io.EOF {
return stream.SendAndClose(&testpb.StreamingInputCallResponse{})
}
return err
}
}
},
}
if err := ss.Start(nil, grpc.WithStreamInterceptor(clientInt)); err != nil {
t.Fatal("Error starting server:", err)
}
defer ss.Stop()
ctx, cancel := context.WithTimeout(context.Background(), defaultTestTimeout)
defer cancel()
// Make a client-streaming RPC. When CloseAndRecv invokes RecvMsg once to get
// the single reply message on a non-server-streaming RPC,
// defaultStreamInterceptor automatically calls a second RecvMsg on the
// underlying client stream to consume io.EOF and receive trailers.
stream, err := ss.Client.StreamingInputCall(ctx)
if err != nil {
t.Fatal("Error calling StreamingInputCall:", err)
}
if err := stream.Send(&testpb.StreamingInputCallRequest{}); err != nil {
t.Fatal("Error sending request:", err)
}
if _, err := stream.CloseAndRecv(); err != nil {
t.Fatal("Error running CloseAndRecv:", err)
}
if iStream.recvMsgCount != 2 {
t.Fatalf("StreamingInputCall RecvMsg was called %v times, want 2 times", iStream.recvMsgCount)
}
// Make a server-streaming RPC. Since StreamingOutputCall is not
// client-streaming, defaultStreamInterceptor immediately invokes CloseSend
// right after sending the request message to signal downstream interceptors.
if _, err := ss.Client.StreamingOutputCall(ctx, &testpb.StreamingOutputCallRequest{}); err != nil {
t.Fatal("Error calling StreamingOutputCall:", err)
}
if !iStream.closeSend {
t.Fatal("CloseSend not called after SendMsg on non-client-streaming RPC")
}
}