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http_server.go
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http_server.go
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// Copyright (C) 2019-2021, Ava Labs, Inc. All rights reserved.
// See the file LICENSE for licensing terms.
package ghttp
import (
"bytes"
"context"
"crypto/tls"
"crypto/x509"
"net/http"
"net/url"
"google.golang.org/protobuf/types/known/emptypb"
"github.com/ava-labs/avalanchego/vms/rpcchainvm/ghttp/gresponsewriter"
"github.com/ava-labs/avalanchego/vms/rpcchainvm/grpcutils"
httppb "github.com/ava-labs/avalanchego/proto/pb/http"
responsewriterpb "github.com/ava-labs/avalanchego/proto/pb/http/responsewriter"
)
var (
_ httppb.HTTPServer = &Server{}
_ http.ResponseWriter = &ResponseWriter{}
)
// Server is an http.Handler that is managed over RPC.
type Server struct {
httppb.UnsafeHTTPServer
handler http.Handler
}
// NewServer returns an http.Handler instance managed remotely
func NewServer(handler http.Handler) *Server {
return &Server{
handler: handler,
}
}
func (s *Server) Handle(ctx context.Context, req *httppb.HTTPRequest) (*emptypb.Empty, error) {
clientConn, err := grpcutils.Dial(req.ResponseWriter.ServerAddr)
if err != nil {
return nil, err
}
writerHeaders := make(http.Header)
for _, elem := range req.ResponseWriter.Header {
writerHeaders[elem.Key] = elem.Values
}
writer := gresponsewriter.NewClient(writerHeaders, responsewriterpb.NewWriterClient(clientConn))
// create the request with the current context
request, err := http.NewRequestWithContext(
ctx,
req.Request.Method,
req.Request.RequestUri,
bytes.NewBuffer(req.Request.Body),
)
if err != nil {
return nil, err
}
if req.Request.Url != nil {
request.URL = &url.URL{
Scheme: req.Request.Url.Scheme,
Opaque: req.Request.Url.Opaque,
Host: req.Request.Url.Host,
Path: req.Request.Url.Path,
RawPath: req.Request.Url.RawPath,
ForceQuery: req.Request.Url.ForceQuery,
RawQuery: req.Request.Url.RawQuery,
Fragment: req.Request.Url.Fragment,
}
if req.Request.Url.User != nil {
if req.Request.Url.User.PasswordSet {
request.URL.User = url.UserPassword(req.Request.Url.User.Username, req.Request.Url.User.Password)
} else {
request.URL.User = url.User(req.Request.Url.User.Username)
}
}
}
request.Proto = req.Request.Proto
request.ProtoMajor = int(req.Request.ProtoMajor)
request.ProtoMinor = int(req.Request.ProtoMinor)
request.Header = make(http.Header, len(req.Request.Header))
for _, elem := range req.Request.Header {
request.Header[elem.Key] = elem.Values
}
request.ContentLength = req.Request.ContentLength
request.TransferEncoding = req.Request.TransferEncoding
request.Host = req.Request.Host
request.Form = make(url.Values, len(req.Request.Form))
for _, elem := range req.Request.Form {
request.Form[elem.Key] = elem.Values
}
request.PostForm = make(url.Values, len(req.Request.PostForm))
for _, elem := range req.Request.PostForm {
request.PostForm[elem.Key] = elem.Values
}
request.Trailer = make(http.Header)
request.RemoteAddr = req.Request.RemoteAddr
request.RequestURI = req.Request.RequestUri
if req.Request.Tls != nil {
request.TLS = &tls.ConnectionState{
Version: uint16(req.Request.Tls.Version),
HandshakeComplete: req.Request.Tls.HandshakeComplete,
DidResume: req.Request.Tls.DidResume,
CipherSuite: uint16(req.Request.Tls.CipherSuite),
NegotiatedProtocol: req.Request.Tls.NegotiatedProtocol,
NegotiatedProtocolIsMutual: true, // always true per https://pkg.go.dev/crypto/tls#ConnectionState
ServerName: req.Request.Tls.ServerName,
PeerCertificates: make([]*x509.Certificate, len(req.Request.Tls.PeerCertificates.Cert)),
VerifiedChains: make([][]*x509.Certificate, len(req.Request.Tls.VerifiedChains)),
SignedCertificateTimestamps: req.Request.Tls.SignedCertificateTimestamps,
OCSPResponse: req.Request.Tls.OcspResponse,
}
for i, certBytes := range req.Request.Tls.PeerCertificates.Cert {
cert, err := x509.ParseCertificate(certBytes)
if err != nil {
return nil, err
}
request.TLS.PeerCertificates[i] = cert
}
for i, chain := range req.Request.Tls.VerifiedChains {
request.TLS.VerifiedChains[i] = make([]*x509.Certificate, len(chain.Cert))
for j, certBytes := range chain.Cert {
cert, err := x509.ParseCertificate(certBytes)
if err != nil {
return nil, err
}
request.TLS.VerifiedChains[i][j] = cert
}
}
}
s.handler.ServeHTTP(writer, request)
return &emptypb.Empty{}, clientConn.Close()
}
// HandleSimple handles http requests over http2 using a simple request response model.
// Websockets are not supported. Based on https://www.weave.works/blog/turtles-way-http-grpc/
func (s *Server) HandleSimple(ctx context.Context, r *httppb.HandleSimpleHTTPRequest) (*httppb.HandleSimpleHTTPResponse, error) {
req, err := http.NewRequest(r.Method, r.Url, bytes.NewBuffer(r.Body))
if err != nil {
return nil, err
}
grpcutils.MergeHTTPHeader(r.Headers, req.Header)
req = req.WithContext(ctx)
req.RequestURI = r.Url
req.ContentLength = int64(len(r.Body))
w := newResponseWriter()
s.handler.ServeHTTP(w, req)
resp := &httppb.HandleSimpleHTTPResponse{
Code: int32(w.statusCode),
Headers: grpcutils.GetHTTPHeader(w.Header()),
Body: w.body.Bytes(),
}
if w.statusCode == http.StatusInternalServerError {
return nil, grpcutils.GetGRPCErrorFromHTTPResponse(resp)
}
return resp, nil
}
type ResponseWriter struct {
body *bytes.Buffer
header http.Header
statusCode int
}
// newResponseWriter returns very basic implementation of the http.ResponseWriter
func newResponseWriter() *ResponseWriter {
return &ResponseWriter{
body: new(bytes.Buffer),
header: make(http.Header),
statusCode: http.StatusOK,
}
}
func (w *ResponseWriter) Header() http.Header {
return w.header
}
func (w *ResponseWriter) Write(buf []byte) (int, error) {
w.body.Write(buf)
return len(buf), nil
}
func (w *ResponseWriter) WriteHeader(code int) {
w.statusCode = code
}
func (w *ResponseWriter) StatusCode() int {
return w.statusCode
}
func (w *ResponseWriter) Body() *bytes.Buffer {
return w.body
}