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intercept_client_test.go
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package grpchan_test
import (
"context"
"fmt"
"io"
"testing"
"google.golang.org/grpc"
"google.golang.org/grpc/codes"
"google.golang.org/grpc/metadata"
"google.golang.org/grpc/status"
"google.golang.org/protobuf/proto"
"github.com/fullstorydev/grpchan"
"github.com/fullstorydev/grpchan/grpchantesting"
"github.com/fullstorydev/grpchan/internal"
)
func TestInterceptClientConnUnary(t *testing.T) {
tc := testConn{}
var successCount, failCount int
intercepted := grpchan.InterceptClientConn(&tc,
func(ctx context.Context, method string, req, reply interface{}, cc *grpc.ClientConn, invoker grpc.UnaryInvoker, opts ...grpc.CallOption) error {
if err := invoker(ctx, method, req, reply, cc, opts...); err != nil {
failCount++
return err
}
successCount++
return nil
}, nil)
cli := grpchantesting.NewTestServiceClient(intercepted)
// success
tc.resp = &grpchantesting.Message{Count: 123}
resp, err := cli.Unary(context.Background(), &grpchantesting.Message{})
if err != nil {
t.Fatalf("RPC failed: %v", err)
}
if !proto.Equal(resp, tc.resp.(proto.Message)) {
t.Fatalf("unexpected reply: %v != %v", resp, tc.resp)
}
// failure
ctx := metadata.NewOutgoingContext(context.Background(), metadata.Pairs("foo", "bar"))
tc.code = codes.Aborted
_, err = cli.Unary(ctx, &grpchantesting.Message{Count: 456})
if err == nil {
t.Fatalf("expected RPC to fail")
}
s, ok := status.FromError(err)
if !ok {
t.Fatalf("wrong type of error %T: %v", err, err)
}
if s.Code() != codes.Aborted {
t.Fatalf("wrong error code: %v != %v", s.Code(), codes.Aborted)
}
// check observed state
if successCount != 1 {
t.Fatalf("interceptor observed wrong number of successful RPCs: expecting %d, got %d", 1, successCount)
}
if failCount != 1 {
t.Fatalf("interceptor observed wrong number of failed RPCs: expecting %d, got %d", 1, failCount)
}
expected := []*call{
{
methodName: "/grpchantesting.TestService/Unary",
reqs: []proto.Message{&grpchantesting.Message{}},
headers: nil,
},
{
methodName: "/grpchantesting.TestService/Unary",
reqs: []proto.Message{&grpchantesting.Message{Count: 456}},
headers: metadata.Pairs("foo", "bar"),
},
}
checkCalls(t, expected, tc.calls)
}
func TestInterceptClientConnStream(t *testing.T) {
tc := testConn{}
var messageCount, successCount, failCount int
intercepted := grpchan.InterceptClientConn(&tc, nil,
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
}
return &testInterceptClientStream{
ClientStream: cs,
messageCount: &messageCount,
successCount: &successCount,
failCount: &failCount,
serverStreams: desc.ServerStreams,
}, nil
})
cli := grpchantesting.NewTestServiceClient(intercepted)
// client stream, success
tc.resp = &grpchantesting.Message{Count: 123}
cs, err := cli.ClientStream(context.Background())
if err != nil {
t.Fatalf("RPC failed: %v", err)
}
err = cs.Send(&grpchantesting.Message{})
if err != nil {
t.Fatalf("sending request #1 failed: %v", err)
}
err = cs.Send(&grpchantesting.Message{Count: 1})
if err != nil {
t.Fatalf("sending request #2 failed: %v", err)
}
err = cs.Send(&grpchantesting.Message{Count: 42})
if err != nil {
t.Fatalf("sending request #3 failed: %v", err)
}
resp, err := cs.CloseAndRecv()
if err != nil {
t.Fatalf("failed to receive response: %v", err)
}
if !proto.Equal(resp, tc.resp.(proto.Message)) {
t.Fatalf("unexpected reply: %v != %v", resp, tc.resp)
}
// server stream, success
ctx := metadata.NewOutgoingContext(context.Background(), metadata.Pairs("foo", "bar"))
tc.respCount = 5
ss, err := cli.ServerStream(ctx, &grpchantesting.Message{Count: 456})
if err != nil {
t.Fatalf("RPC failed: %v", err)
}
for i := 0; i < 5; i++ {
resp, err = ss.Recv()
if err != nil {
t.Fatalf("failed to receive response #%d: %v", i+1, err)
}
if !proto.Equal(resp, tc.resp.(proto.Message)) {
t.Fatalf("unexpected reply #%d: %v != %v", i+1, resp, tc.resp)
}
}
_, err = ss.Recv()
if err != io.EOF {
t.Fatalf("expected EOF, instead got %v", err)
}
// bidi stream, failure
ctx = metadata.NewOutgoingContext(context.Background(), metadata.Pairs("foo", "baz"))
tc.code = codes.Aborted
bs, err := cli.BidiStream(ctx)
if err != nil {
t.Fatalf("RPC failed: %v", err)
}
err = bs.Send(&grpchantesting.Message{Count: 333})
if err != nil {
t.Fatalf("sending request #1 failed: %v", err)
}
err = bs.Send(&grpchantesting.Message{Count: 222})
if err != nil {
t.Fatalf("sending request #2 failed: %v", err)
}
err = bs.Send(&grpchantesting.Message{Count: 111})
if err != nil {
t.Fatalf("sending request #3 failed: %v", err)
}
for i := 0; i < 5; i++ {
resp, err = bs.Recv()
if err != nil {
t.Fatalf("failed to receive response #%d: %v", i+1, err)
}
if !proto.Equal(resp, tc.resp.(proto.Message)) {
t.Fatalf("unexpected reply #%d: %v != %v", i+1, resp, tc.resp)
}
}
_, err = bs.Recv()
if err == nil {
t.Fatalf("expected RPC to fail")
}
s, ok := status.FromError(err)
if !ok {
t.Fatalf("wrong type of error %T: %v", err, err)
}
if s.Code() != codes.Aborted {
t.Fatalf("wrong error code: %v != %v", s.Code(), codes.Aborted)
}
// check observed state
expectedMessages := 1 + 5 + 5
if messageCount != expectedMessages {
t.Fatalf("interceptor observed wrong number of response messages: expecting %d, got %d", expectedMessages, messageCount)
}
if successCount != 2 {
t.Fatalf("interceptor observed wrong number of successful RPCs: expecting %d, got %d", 2, successCount)
}
if failCount != 1 {
t.Fatalf("interceptor observed wrong number of failed RPCs: expecting %d, got %d", 1, failCount)
}
expected := []*call{
{
methodName: "/grpchantesting.TestService/ClientStream",
reqs: []proto.Message{
&grpchantesting.Message{},
&grpchantesting.Message{Count: 1},
&grpchantesting.Message{Count: 42},
},
headers: nil,
},
{
methodName: "/grpchantesting.TestService/ServerStream",
reqs: []proto.Message{&grpchantesting.Message{Count: 456}},
headers: metadata.Pairs("foo", "bar"),
},
{
methodName: "/grpchantesting.TestService/BidiStream",
reqs: []proto.Message{
&grpchantesting.Message{Count: 333},
&grpchantesting.Message{Count: 222},
&grpchantesting.Message{Count: 111},
},
headers: metadata.Pairs("foo", "baz"),
},
}
checkCalls(t, expected, tc.calls)
}
type testInterceptClientStream struct {
grpc.ClientStream
messageCount, successCount, failCount *int
serverStreams, closed bool
}
func (s *testInterceptClientStream) RecvMsg(m interface{}) error {
err := s.ClientStream.RecvMsg(m)
if err == nil {
*s.messageCount++
if !s.serverStreams {
s.closed = true
*s.successCount++
}
} else if !s.closed {
s.closed = true
if err == io.EOF {
*s.successCount++
} else {
*s.failCount++
}
}
return err
}
// testConn is a dummy channel that just records all incoming activity.
//
// If code is set and not codes.OK, RPCs will fail with that code.
//
// If resp is set, unary RPCs will reply with that value. If unset, unary
// RPCs will reply with empty response message.
//
// If resp is set and respCount is non-zero, server-streaming RPCs (including
// bidi streams) will reply with the given number of responses. Otherwise,
// they reply with an empty stream.
//
// Streaming RPCs will receive the specified headers and trailers as response
// metadata, if those fields are set.
//
// testConn is not thread-safe, and neither are any returned streams.
type testConn struct {
code codes.Code
resp interface{}
respCount int
headers metadata.MD
trailers metadata.MD
calls []*call
}
type call struct {
methodName string
headers metadata.MD
reqs []proto.Message
}
func (ch *testConn) Invoke(ctx context.Context, methodName string, req, resp interface{}, _ ...grpc.CallOption) error {
headers, _ := metadata.FromOutgoingContext(ctx)
reqClone, err := internal.CloneMessage(req)
if err != nil {
return err
}
ch.calls = append(ch.calls, &call{methodName: methodName, headers: headers, reqs: []proto.Message{reqClone.(proto.Message)}})
if ch.code != codes.OK {
return status.Error(ch.code, ch.code.String())
}
if ch.resp != nil {
return internal.CopyMessage(resp, ch.resp)
}
return internal.ClearMessage(resp)
}
func (ch *testConn) NewStream(ctx context.Context, desc *grpc.StreamDesc, methodName string, _ ...grpc.CallOption) (grpc.ClientStream, error) {
headers, _ := metadata.FromOutgoingContext(ctx)
call := &call{methodName: methodName, headers: headers}
ch.calls = append(ch.calls, call)
count := ch.respCount
if !desc.ServerStreams {
if ch.code == codes.OK {
count = 1
} else {
count = 0
}
}
return &testClientStream{
ctx: ctx,
code: ch.code,
resp: ch.resp,
respCount: count,
headers: ch.headers,
trailers: ch.trailers,
call: call,
}, nil
}
type testClientStream struct {
ctx context.Context
code codes.Code
resp interface{}
respCount int
headers metadata.MD
trailers metadata.MD
call *call
halfClosed bool
closed bool
}
func (s *testClientStream) Header() (metadata.MD, error) {
return s.headers, nil
}
func (s *testClientStream) Trailer() metadata.MD {
return s.trailers
}
func (s *testClientStream) CloseSend() error {
s.halfClosed = true
return nil
}
func (s *testClientStream) Context() context.Context {
return s.ctx
}
func (s *testClientStream) SendMsg(m interface{}) error {
if s.halfClosed {
return fmt.Errorf("stream closed")
}
if s.closed {
return io.EOF
}
if err := s.ctx.Err(); err != nil {
return internal.TranslateContextError(err)
}
mClone, err := internal.CloneMessage(m)
if err != nil {
return err
}
s.call.reqs = append(s.call.reqs, mClone.(proto.Message))
return nil
}
func (s *testClientStream) RecvMsg(m interface{}) error {
if err := s.ctx.Err(); err != nil {
return internal.TranslateContextError(err)
}
if s.respCount == 0 {
s.closed = true
if s.code == codes.OK {
return io.EOF
} else {
return status.Error(s.code, s.code.String())
}
}
s.respCount--
if s.resp != nil {
return internal.CopyMessage(m, s.resp)
}
return internal.ClearMessage(m)
}