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23e802518d
This sockopt gives you a struct with the PID, UID and GID of a socket's peer process.
176 lines
5.4 KiB
C++
176 lines
5.4 KiB
C++
#include <AK/StringBuilder.h>
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#include <Kernel/FileSystem/FileDescription.h>
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#include <Kernel/Net/IPv4Socket.h>
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#include <Kernel/Net/LocalSocket.h>
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#include <Kernel/Net/Socket.h>
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#include <Kernel/Process.h>
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#include <Kernel/UnixTypes.h>
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#include <LibC/errno_numbers.h>
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//#define SOCKET_DEBUG
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KResultOr<NonnullRefPtr<Socket>> Socket::create(int domain, int type, int protocol)
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{
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(void)protocol;
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switch (domain) {
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case AF_LOCAL:
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return LocalSocket::create(type & SOCK_TYPE_MASK);
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case AF_INET:
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return IPv4Socket::create(type & SOCK_TYPE_MASK, protocol);
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default:
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return KResult(-EAFNOSUPPORT);
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}
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}
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Socket::Socket(int domain, int type, int protocol)
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: m_domain(domain)
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, m_type(type)
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, m_protocol(protocol)
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{
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auto& process = current->process();
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m_origin = { process.pid(), process.uid(), process.gid() };
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}
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Socket::~Socket()
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{
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}
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void Socket::set_setup_state(SetupState new_setup_state)
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{
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#ifdef SOCKET_DEBUG
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kprintf("%s(%u) Socket{%p} setup state moving from %s to %s\n", current->process().name().characters(), current->pid(), this, to_string(m_setup_state), to_string(new_setup_state));
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#endif
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m_setup_state = new_setup_state;
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}
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RefPtr<Socket> Socket::accept()
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{
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LOCKER(m_lock);
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if (m_pending.is_empty())
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return nullptr;
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#ifdef SOCKET_DEBUG
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kprintf("%s(%u) Socket{%p} de-queueing connection\n", current->process().name().characters(), current->pid(), this);
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#endif
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auto client = m_pending.take_first();
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ASSERT(!client->is_connected());
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auto& process = current->process();
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client->m_acceptor = { process.pid(), process.uid(), process.gid() };
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client->m_connected = true;
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client->m_role = Role::Accepted;
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return client;
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}
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KResult Socket::queue_connection_from(NonnullRefPtr<Socket> peer)
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{
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#ifdef SOCKET_DEBUG
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kprintf("%s(%u) Socket{%p} queueing connection\n", current->process().name().characters(), current->pid(), this);
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#endif
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LOCKER(m_lock);
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if (m_pending.size() >= m_backlog)
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return KResult(-ECONNREFUSED);
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m_pending.append(peer);
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return KSuccess;
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}
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KResult Socket::setsockopt(int level, int option, const void* value, socklen_t value_size)
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{
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ASSERT(level == SOL_SOCKET);
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switch (option) {
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case SO_SNDTIMEO:
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if (value_size != sizeof(timeval))
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return KResult(-EINVAL);
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m_send_timeout = *(const timeval*)value;
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return KSuccess;
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case SO_RCVTIMEO:
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if (value_size != sizeof(timeval))
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return KResult(-EINVAL);
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m_receive_timeout = *(const timeval*)value;
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return KSuccess;
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default:
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kprintf("%s(%u): setsockopt() at SOL_SOCKET with unimplemented option %d\n", current->process().name().characters(), current->process().pid(), option);
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return KResult(-ENOPROTOOPT);
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}
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}
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KResult Socket::getsockopt(FileDescription&, int level, int option, void* value, socklen_t* value_size)
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{
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ASSERT(level == SOL_SOCKET);
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switch (option) {
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case SO_SNDTIMEO:
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if (*value_size < sizeof(timeval))
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return KResult(-EINVAL);
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*(timeval*)value = m_send_timeout;
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*value_size = sizeof(timeval);
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return KSuccess;
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case SO_RCVTIMEO:
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if (*value_size < sizeof(timeval))
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return KResult(-EINVAL);
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*(timeval*)value = m_receive_timeout;
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*value_size = sizeof(timeval);
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return KSuccess;
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case SO_ERROR:
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if (*value_size < sizeof(int))
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return KResult(-EINVAL);
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kprintf("%s(%u): getsockopt() SO_ERROR: WARNING! I have no idea what the real error is, so I'll just stick my fingers in my ears and pretend there is none! %d\n", current->process().name().characters(), option);
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*(int*)value = 0;
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*value_size = sizeof(int);
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return KSuccess;
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default:
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kprintf("%s(%u): getsockopt() at SOL_SOCKET with unimplemented option %d\n", current->process().name().characters(), option);
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return KResult(-ENOPROTOOPT);
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}
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}
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void Socket::load_receive_deadline()
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{
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kgettimeofday(m_receive_deadline);
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m_receive_deadline.tv_sec += m_receive_timeout.tv_sec;
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m_receive_deadline.tv_usec += m_receive_timeout.tv_usec;
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m_receive_deadline.tv_sec += (m_send_timeout.tv_usec / 1000000) * 1;
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m_receive_deadline.tv_usec %= 1000000;
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}
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void Socket::load_send_deadline()
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{
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kgettimeofday(m_send_deadline);
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m_send_deadline.tv_sec += m_send_timeout.tv_sec;
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m_send_deadline.tv_usec += m_send_timeout.tv_usec;
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m_send_deadline.tv_sec += (m_send_timeout.tv_usec / 1000000) * 1;
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m_send_deadline.tv_usec %= 1000000;
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}
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String Socket::absolute_path(const FileDescription& description) const
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{
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StringBuilder builder;
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builder.appendf("socket:%x", this);
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switch (role(description)) {
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case Role::None:
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break;
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case Role::Listener:
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builder.append(" (listening)");
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break;
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case Role::Accepted:
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builder.append(" (accepted)");
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break;
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case Role::Connected:
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builder.append(" (connected)");
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break;
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case Role::Connecting:
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builder.append(" (connecting)");
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break;
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}
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return builder.to_string();
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}
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ssize_t Socket::read(FileDescription& description, u8* buffer, ssize_t size)
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{
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return recvfrom(description, buffer, size, 0, nullptr, 0);
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}
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ssize_t Socket::write(FileDescription& description, const u8* data, ssize_t size)
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{
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return sendto(description, data, size, 0, nullptr, 0);
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}
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