mirror of
https://github.com/titanscouting/tra-analysis.git
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254 lines
8.2 KiB
C++
254 lines
8.2 KiB
C++
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/*
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*
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* Copyright 2015 gRPC authors.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*
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*/
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#include <node.h>
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#include "call.h"
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#include "call_credentials.h"
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#include "channel_credentials.h"
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#include "util.h"
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#include "grpc/grpc.h"
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#include "grpc/grpc_security.h"
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#include "grpc/support/log.h"
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namespace grpc {
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namespace node {
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using Nan::Callback;
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using Nan::EscapableHandleScope;
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using Nan::HandleScope;
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using Nan::Maybe;
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using Nan::MaybeLocal;
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using Nan::ObjectWrap;
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using Nan::Persistent;
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using Nan::Utf8String;
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using v8::Array;
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using v8::Context;
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using v8::Exception;
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using v8::External;
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using v8::Function;
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using v8::FunctionTemplate;
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using v8::Integer;
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using v8::Local;
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using v8::Object;
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using v8::ObjectTemplate;
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using v8::Value;
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Nan::Callback *ChannelCredentials::constructor;
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Persistent<FunctionTemplate> ChannelCredentials::fun_tpl;
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ChannelCredentials::ChannelCredentials(grpc_channel_credentials *credentials)
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: wrapped_credentials(credentials) {}
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ChannelCredentials::~ChannelCredentials() {
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grpc_channel_credentials_release(wrapped_credentials);
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}
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static int verify_peer_callback_wrapper(const char* servername, const char* cert, void* userdata) {
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Nan::HandleScope scope;
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Nan::TryCatch try_catch;
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Nan::Callback *callback = (Nan::Callback*)userdata;
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const unsigned argc = 2;
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Local<Value> argv[argc];
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if (servername == NULL) {
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argv[0] = Nan::Null();
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} else {
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argv[0] = Nan::New<v8::String>(servername).ToLocalChecked();
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}
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if (cert == NULL) {
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argv[1] = Nan::Null();
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} else {
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argv[1] = Nan::New<v8::String>(cert).ToLocalChecked();
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}
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MaybeLocal<Value> result = Nan::Call(*callback, argc, argv);
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// Catch any exception and return with a distinct status code which indicates this
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if (try_catch.HasCaught()) {
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return 2;
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}
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// If the result is an error, return a failure
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if (result.ToLocalChecked()->IsNativeError()) {
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return 1;
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}
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return 0;
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}
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static void verify_peer_callback_destruct(void *userdata) {
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Nan::Callback *callback = (Nan::Callback*)userdata;
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delete callback;
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}
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void ChannelCredentials::Init(Local<Object> exports) {
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HandleScope scope;
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Local<FunctionTemplate> tpl = Nan::New<FunctionTemplate>(New);
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tpl->SetClassName(Nan::New("ChannelCredentials").ToLocalChecked());
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tpl->InstanceTemplate()->SetInternalFieldCount(1);
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Nan::SetPrototypeMethod(tpl, "compose", Compose);
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fun_tpl.Reset(tpl);
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Local<Function> ctr = Nan::GetFunction(tpl).ToLocalChecked();
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Nan::Set(
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ctr, Nan::New("createSsl").ToLocalChecked(),
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Nan::GetFunction(Nan::New<FunctionTemplate>(CreateSsl)).ToLocalChecked());
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Nan::Set(ctr, Nan::New("createInsecure").ToLocalChecked(),
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Nan::GetFunction(Nan::New<FunctionTemplate>(CreateInsecure))
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.ToLocalChecked());
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Nan::Set(exports, Nan::New("ChannelCredentials").ToLocalChecked(), ctr);
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constructor = new Nan::Callback(ctr);
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}
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bool ChannelCredentials::HasInstance(Local<Value> val) {
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HandleScope scope;
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return Nan::New(fun_tpl)->HasInstance(val);
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}
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Local<Value> ChannelCredentials::WrapStruct(
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grpc_channel_credentials *credentials) {
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EscapableHandleScope scope;
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const int argc = 1;
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Local<Value> argv[argc] = {
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Nan::New<External>(reinterpret_cast<void *>(credentials))};
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MaybeLocal<Object> maybe_instance =
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Nan::NewInstance(constructor->GetFunction(), argc, argv);
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if (maybe_instance.IsEmpty()) {
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return scope.Escape(Nan::Null());
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} else {
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return scope.Escape(maybe_instance.ToLocalChecked());
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}
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}
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grpc_channel_credentials *ChannelCredentials::GetWrappedCredentials() {
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return wrapped_credentials;
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}
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NAN_METHOD(ChannelCredentials::New) {
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if (info.IsConstructCall()) {
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if (!info[0]->IsExternal()) {
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return Nan::ThrowTypeError(
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"ChannelCredentials can only be created with the provided functions");
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}
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Local<External> ext = info[0].As<External>();
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grpc_channel_credentials *creds_value =
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reinterpret_cast<grpc_channel_credentials *>(ext->Value());
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ChannelCredentials *credentials = new ChannelCredentials(creds_value);
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credentials->Wrap(info.This());
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info.GetReturnValue().Set(info.This());
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return;
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} else {
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// This should never be called directly
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return Nan::ThrowTypeError(
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"ChannelCredentials can only be created with the provided functions");
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}
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}
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NAN_METHOD(ChannelCredentials::CreateSsl) {
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StringOrNull root_certs;
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StringOrNull private_key;
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StringOrNull cert_chain;
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if (::node::Buffer::HasInstance(info[0])) {
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root_certs.assign(info[0]);
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} else if (!(info[0]->IsNull() || info[0]->IsUndefined())) {
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return Nan::ThrowTypeError("createSsl's first argument must be a Buffer");
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}
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if (::node::Buffer::HasInstance(info[1])) {
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private_key.assign(info[1]);
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} else if (!(info[1]->IsNull() || info[1]->IsUndefined())) {
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return Nan::ThrowTypeError(
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"createSSl's second argument must be a Buffer if provided");
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}
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if (::node::Buffer::HasInstance(info[2])) {
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cert_chain.assign(info[2]);
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} else if (!(info[2]->IsNull() || info[2]->IsUndefined())) {
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return Nan::ThrowTypeError(
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"createSSl's third argument must be a Buffer if provided");
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}
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grpc_ssl_pem_key_cert_pair key_cert_pair = {private_key.get(),
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cert_chain.get()};
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if (private_key.isAssigned() != cert_chain.isAssigned()) {
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return Nan::ThrowError(
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"createSsl's second and third arguments must be"
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" provided or omitted together");
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}
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verify_peer_options verify_options = {NULL, NULL, NULL};
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if (!info[3]->IsUndefined()) {
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if (!info[3]->IsObject()) {
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return Nan::ThrowTypeError("createSsl's fourth argument must be an object");
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}
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Local<Object> object = info[3]->ToObject();
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Local<Value> checkServerIdentityValue = Nan::Get(object,
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Nan::New("checkServerIdentity").ToLocalChecked()).ToLocalChecked();
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if (!checkServerIdentityValue->IsUndefined()) {
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if (!checkServerIdentityValue->IsFunction()) {
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return Nan::ThrowTypeError("Value of checkServerIdentity must be a function.");
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}
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Nan::Callback *callback = new Callback(Local<Function>::Cast(
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checkServerIdentityValue));
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verify_options.verify_peer_callback = verify_peer_callback_wrapper;
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verify_options.verify_peer_callback_userdata = (void*)callback;
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verify_options.verify_peer_destruct = verify_peer_callback_destruct;
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}
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}
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grpc_channel_credentials *creds = grpc_ssl_credentials_create(
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root_certs.get(), private_key.isAssigned() ? &key_cert_pair : NULL,
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&verify_options, NULL);
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if (creds == NULL) {
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info.GetReturnValue().SetNull();
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} else {
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info.GetReturnValue().Set(WrapStruct(creds));
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}
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}
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NAN_METHOD(ChannelCredentials::Compose) {
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if (!ChannelCredentials::HasInstance(info.This())) {
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return Nan::ThrowTypeError(
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"compose can only be called on ChannelCredentials objects");
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}
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if (!CallCredentials::HasInstance(info[0])) {
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return Nan::ThrowTypeError(
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"compose's first argument must be a CallCredentials object");
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}
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ChannelCredentials *self =
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ObjectWrap::Unwrap<ChannelCredentials>(info.This());
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if (self->wrapped_credentials == NULL) {
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return Nan::ThrowTypeError("Cannot compose insecure credential");
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}
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CallCredentials *other = ObjectWrap::Unwrap<CallCredentials>(
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Nan::To<Object>(info[0]).ToLocalChecked());
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grpc_channel_credentials *creds = grpc_composite_channel_credentials_create(
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self->wrapped_credentials, other->GetWrappedCredentials(), NULL);
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if (creds == NULL) {
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info.GetReturnValue().SetNull();
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} else {
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info.GetReturnValue().Set(WrapStruct(creds));
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}
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}
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NAN_METHOD(ChannelCredentials::CreateInsecure) {
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info.GetReturnValue().Set(WrapStruct(NULL));
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}
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} // namespace node
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} // namespace grpc
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