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/*
* Copyright (C) 2017 The Android Open Source Project
*
* 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.
*/
#include "common/libs/wifi/router.h"
#include <cerrno>
#include <cstddef>
#include <map>
#include <memory>
#include <set>
#include <gflags/gflags.h>
#include <glog/logging.h>
#include <netlink/genl/ctrl.h>
#include <netlink/genl/family.h>
#include <netlink/genl/genl.h>
#include <netlink/netlink.h>
#include <sys/socket.h>
#include <sys/un.h>
#include <unistd.h>
DEFINE_string(socket_name, "cvd-wifirouter",
"Name of the unix-domain socket providing access for routing. "
"Socket will be created in abstract namespace.");
namespace cvd {
namespace {
// Copied out of mac80211_hwsim.h header.
constexpr int HWSIM_CMD_REGISTER = 1;
constexpr int HWSIM_ATTR_ADDR_TRANSMITTER = 2;
constexpr int HWSIM_ATTR_MAX = 19;
// Name of the WIFI SIM Netlink Family.
constexpr char kWifiSimFamilyName[] = "MAC80211_HWSIM";
const int kMaxSupportedPacketSize = getpagesize();
class WifiRouter {
public:
using MacHash = uint16_t;
using MacToClientsTable = std::multimap<MacHash, int>;
using ClientsTable = std::set<int>;
WifiRouter() : sock_(nullptr, nl_socket_free) {}
~WifiRouter() = default;
void Init();
void ServerLoop();
private:
MacHash GetMacHash(const void* macaddr);
void CreateWifiRouterServerSocket();
void RegisterForHWSimNotifications();
void RouteWIFIPacket();
void AcceptNewClient();
bool HandleClientMessage(int client);
void RemoveClient(int client);
std::unique_ptr<nl_sock, void (*)(nl_sock*)> sock_;
int server_fd_ = 0;
int mac80211_family_ = 0;
ClientsTable registered_clients_;
MacToClientsTable registered_addresses_;
};
WifiRouter::MacHash WifiRouter::GetMacHash(const void* macaddr) {
const uint8_t* t = reinterpret_cast<const uint8_t*>(macaddr);
// This is guaranteed to be unique. Address here is assigned at creation time
// and is (well) non-mutable. This is a unique ID of the MAC80211 HWSIM
// interface.
return t[3] << 8 | t[4];
}
void WifiRouter::Init() {
CreateWifiRouterServerSocket();
RegisterForHWSimNotifications();
}
// Enable asynchronous notifications from MAC80211_HWSIM.
// - `sock` is a valid netlink socket connected to NETLINK_GENERIC,
// - `family` is MAC80211_HWSIM genl family number.
//
// Upon failure, this function will terminate execution of the program.
void WifiRouter::RegisterForHWSimNotifications() {
sock_.reset(nl_socket_alloc());
auto res = nl_connect(sock_.get(), NETLINK_GENERIC);
if (res < 0) {
LOG(ERROR) << "Could not connect to netlink generic: " << nl_geterror(res);
exit(1);
}
mac80211_family_ = genl_ctrl_resolve(sock_.get(), kWifiSimFamilyName);
if (mac80211_family_ <= 0) {
LOG(ERROR) << "Could not find MAC80211 HWSIM. Please make sure module "
<< "'mac80211_hwsim' is loaded on your system.";
exit(1);
}
std::unique_ptr<nl_msg, void (*)(nl_msg*)> msg(
nlmsg_alloc(), [](nl_msg* m) { nlmsg_free(m); });
genlmsg_put(msg.get(), NL_AUTO_PID, NL_AUTO_SEQ, mac80211_family_, 0,
NLM_F_REQUEST, HWSIM_CMD_REGISTER, 0);
nl_send_auto(sock_.get(), msg.get());
res = nl_wait_for_ack(sock_.get());
if (res < 0) {
LOG(ERROR) << "Could not register for notifications: " << nl_geterror(res);
exit(1);
}
}
// Create and configure WIFI Router server socket.
// This function is guaranteed to success. If at any point an error is detected,
// the function will terminate execution of the program.
void WifiRouter::CreateWifiRouterServerSocket() {
server_fd_ = socket(AF_UNIX, SOCK_SEQPACKET, 0);
if (server_fd_ < 0) {
LOG(ERROR) << "Could not create unix socket: " << strerror(-errno);
exit(1);
}
sockaddr_un addr{};
addr.sun_family = AF_UNIX;
auto len = std::min(sizeof(addr.sun_path) - 2, FLAGS_socket_name.size());
strncpy(&addr.sun_path[1], FLAGS_socket_name.c_str(), len);
len += offsetof(sockaddr_un, sun_path) + 1; // include heading \0 byte.
auto res = bind(server_fd_, reinterpret_cast<sockaddr*>(&addr), len);
if (res < 0) {
LOG(ERROR) << "Could not bind unix socket: " << strerror(-errno);
exit(1);
}
listen(server_fd_, 4);
}
// Accept new WIFI Router client. When successful, client will be placed in
// clients table.
void WifiRouter::AcceptNewClient() {
auto client = accept(server_fd_, nullptr, nullptr);
if (client < 0) {
LOG(ERROR) << "Could not accept client: " << strerror(-errno);
return;
}
registered_clients_.insert(client);
LOG(INFO) << "Client " << client << " added.";
}
// Disconnect and remove client from list of registered clients and recipients
// of WLAN traffic.
void WifiRouter::RemoveClient(int client) {
close(client);
registered_clients_.erase(client);
for (auto iter = registered_addresses_.begin();
iter != registered_addresses_.end();) {
if (iter->second == client) {
iter = registered_addresses_.erase(iter);
} else {
++iter;
}
}
LOG(INFO) << "Client " << client << " removed.";
}
// Read MAC80211HWSIM packet, find the originating MAC address and redirect it
// to proper sink.
void WifiRouter::RouteWIFIPacket() {
sockaddr_nl tmp;
uint8_t* buf;
const auto len = nl_recv(sock_.get(), &tmp, &buf, nullptr);
if (len < 0) {
LOG(ERROR) << "Could not read from netlink: " << nl_geterror(len);
return;
}
std::unique_ptr<nlmsghdr, void (*)(nlmsghdr*)> msg(
reinterpret_cast<nlmsghdr*>(buf), [](nlmsghdr* m) { free(m); });
// Discard messages that originate from anything else than MAC80211_HWSIM.
if (msg->nlmsg_type != mac80211_family_) return;
std::unique_ptr<nl_msg, void (*)(nl_msg*)> rep(
nlmsg_alloc(), [](nl_msg* m) { nlmsg_free(m); });
genlmsg_put(rep.get(), 0, 0, 0, 0, 0, WIFIROUTER_CMD_NOTIFY, 0);
// Note, this is generic netlink message, and uses different parsing
// technique.
nlattr* attrs[HWSIM_ATTR_MAX + 1];
if (genlmsg_parse(msg.get(), 0, attrs, HWSIM_ATTR_MAX, nullptr)) return;
std::set<int> pending_removals;
auto addr = attrs[HWSIM_ATTR_ADDR_TRANSMITTER];
if (addr != nullptr) {
nla_put_u32(rep.get(), WIFIROUTER_ATTR_HWSIM_ID, GetMacHash(nla_data(addr)));
nla_put(rep.get(), WIFIROUTER_ATTR_PACKET, len, buf);
auto hdr = nlmsg_hdr(rep.get());
auto key = GetMacHash(nla_data(attrs[HWSIM_ATTR_ADDR_TRANSMITTER]));
LOG(INFO) << "Received netlink packet from " << std::hex << key;
for (auto it = registered_addresses_.find(key);
it != registered_addresses_.end() && it->first == key; ++it) {
auto num_written = send(it->second, hdr, hdr->nlmsg_len, MSG_NOSIGNAL);
if (num_written != static_cast<int64_t>(hdr->nlmsg_len)) {
pending_removals.insert(it->second);
}
}
for (auto client : pending_removals) RemoveClient(client);
}
}
bool WifiRouter::HandleClientMessage(int client) {
std::unique_ptr<nlmsghdr, void (*)(nlmsghdr*)> msg(
reinterpret_cast<nlmsghdr*>(malloc(kMaxSupportedPacketSize)),
[](nlmsghdr* h) { free(h); });
int64_t size = recv(client, msg.get(), kMaxSupportedPacketSize, 0);
// Invalid message or no data -> client invalid or disconnected.
if (size == 0 || size != msg->nlmsg_len || size < sizeof(nlmsghdr)) {
return false;
}
int result = -EINVAL;
genlmsghdr* ghdr = reinterpret_cast<genlmsghdr*>(nlmsg_data(msg.get()));
switch (ghdr->cmd) {
case WIFIROUTER_CMD_REGISTER:
// Register client to receive notifications for specified MAC address.
nlattr* attrs[WIFIROUTER_ATTR_MAX];
if (!nlmsg_parse(msg.get(), sizeof(genlmsghdr), attrs,
WIFIROUTER_ATTR_MAX - 1, nullptr)) {
if (attrs[WIFIROUTER_ATTR_HWSIM_ID] != nullptr) {
LOG(INFO) << "Registering new client to receive data for "
<< nla_get_u32(attrs[WIFIROUTER_ATTR_HWSIM_ID]);
registered_addresses_.emplace(
nla_get_u32(attrs[WIFIROUTER_ATTR_HWSIM_ID]), client);
// This is unfortunate, but it is a bug in mac80211_hwsim stack.
// Apparently, the imperfect medium will not receive notifications for
// newly created wifi interfaces. How about that...
RegisterForHWSimNotifications();
result = 0;
}
}
break;
default:
break;
}
nlmsgerr err{.error = result};
std::unique_ptr<nl_msg, void (*)(nl_msg*)> rsp(nlmsg_alloc(), nlmsg_free);
nlmsg_put(rsp.get(), msg->nlmsg_pid, msg->nlmsg_seq, NLMSG_ERROR, 0, 0);
nlmsg_append(rsp.get(), &err, sizeof(err), 0);
auto hdr = nlmsg_hdr(rsp.get());
if (send(client, hdr, hdr->nlmsg_len, MSG_NOSIGNAL) !=
static_cast<int64_t>(hdr->nlmsg_len)) {
return false;
}
return true;
}
// Process incoming requests from netlink, server or clients.
void WifiRouter::ServerLoop() {
while (true) {
auto max_fd = 0;
fd_set reads{};
auto fdset = [&max_fd, &reads](int fd) {
FD_SET(fd, &reads);
max_fd = std::max(max_fd, fd);
};
fdset(server_fd_);
fdset(nl_socket_get_fd(sock_.get()));
for (int client : registered_clients_) fdset(client);
if (select(max_fd + 1, &reads, nullptr, nullptr, nullptr) <= 0) continue;
if (FD_ISSET(server_fd_, &reads)) AcceptNewClient();
if (FD_ISSET(nl_socket_get_fd(sock_.get()), &reads)) RouteWIFIPacket();
// Process any client messages left. Drop any client that is no longer
// talking with us.
for (auto client = registered_clients_.begin();
client != registered_clients_.end();) {
auto cfd = *client++;
// Is our client sending us data?
if (FD_ISSET(cfd, &reads)) {
if (!HandleClientMessage(cfd)) RemoveClient(cfd);
}
}
}
}
} // namespace
} // namespace cvd
int main(int argc, char* argv[]) {
using namespace cvd;
google::ParseCommandLineFlags(&argc, &argv, true);
#if !defined(ANDROID)
// We should check for legitimate google logging here.
google::InitGoogleLogging(argv[0]);
google::InstallFailureSignalHandler();
#endif
WifiRouter r;
r.Init();
r.ServerLoop();
}