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592 lines
17 KiB
592 lines
17 KiB
/* Copyright (c) 2000, 2019, Oracle and/or its affiliates. All rights reserved.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License, version 2.0,
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as published by the Free Software Foundation.
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This program is also distributed with certain software (including
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but not limited to OpenSSL) that is licensed under separate terms,
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as designated in a particular file or component or in included license
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documentation. The authors of MySQL hereby grant you an additional
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permission to link the program and your derivative works with the
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separately licensed software that they have included with MySQL.
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Without limiting anything contained in the foregoing, this file,
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which is part of C Driver for MySQL (Connector/C), is also subject to the
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Universal FOSS Exception, version 1.0, a copy of which can be found at
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http://oss.oracle.com/licenses/universal-foss-exception.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License, version 2.0, for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA */
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/*
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Note that we can't have assertion on file descriptors; The reason for
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this is that during mysql shutdown, another thread can close a file
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we are working on. In this case we should just return read errors from
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the file descriptior.
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*/
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#include <sys/types.h>
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#include <new>
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#include "my_compiler.h"
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#include "my_dbug.h"
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#include "my_inttypes.h"
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#include "my_io.h"
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#include "my_psi_config.h"
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#include "mysql/psi/mysql_memory.h"
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#include "mysql/psi/mysql_socket.h"
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#include "mysql/psi/psi_memory.h" // IWYU pragma: keep
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#include "mysql/service_mysql_alloc.h"
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#include "vio/vio_priv.h"
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#ifdef HAVE_OPENSSL
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PSI_memory_key key_memory_vio_ssl_fd;
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#endif
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PSI_memory_key key_memory_vio;
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PSI_memory_key key_memory_vio_read_buffer;
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#ifdef HAVE_PSI_INTERFACE
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static PSI_memory_info all_vio_memory[] = {
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#ifdef HAVE_OPENSSL
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{&key_memory_vio_ssl_fd, "ssl_fd", 0, 0, PSI_DOCUMENT_ME},
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#endif
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{&key_memory_vio, "vio", 0, 0, PSI_DOCUMENT_ME},
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{&key_memory_vio_read_buffer, "read_buffer", 0, 0, PSI_DOCUMENT_ME},
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};
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void init_vio_psi_keys() {
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const char *category = "vio";
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int count;
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count = array_elements(all_vio_memory);
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mysql_memory_register(category, all_vio_memory, count);
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}
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#endif
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Vio *internal_vio_create(uint flags);
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void internal_vio_delete(Vio *vio);
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#ifdef _WIN32
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/**
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Stub io_wait method that defaults to indicate that
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requested I/O event is ready.
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Used for named pipe and shared memory VIO types.
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@param vio Unused.
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@param event Unused.
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@param timeout Unused.
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@retval 1 The requested I/O event has occurred.
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*/
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static int no_io_wait(Vio *vio MY_ATTRIBUTE((unused)),
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enum enum_vio_io_event event MY_ATTRIBUTE((unused)),
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int timeout MY_ATTRIBUTE((unused))) {
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return 1;
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}
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#endif
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extern "C" {
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static bool has_no_data(Vio *vio MY_ATTRIBUTE((unused))) { return false; }
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} // extern "C"
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Vio::Vio(uint flags) {
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mysql_socket = MYSQL_INVALID_SOCKET;
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local = sockaddr_storage();
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remote = sockaddr_storage();
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#ifdef USE_PPOLL_IN_VIO
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sigemptyset(&signal_mask);
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#elif defined(HAVE_KQUEUE)
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kq_fd = -1;
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#endif
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if (flags & VIO_BUFFERED_READ)
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read_buffer = (char *)my_malloc(key_memory_vio_read_buffer,
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VIO_READ_BUFFER_SIZE, MYF(MY_WME));
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}
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Vio::~Vio() {
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my_free(read_buffer);
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read_buffer = nullptr;
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#ifdef HAVE_KQUEUE
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if (kq_fd != -1) close(kq_fd);
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#endif
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}
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Vio &Vio::operator=(Vio &&vio) {
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this->~Vio();
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mysql_socket = vio.mysql_socket;
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localhost = vio.localhost;
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type = vio.type;
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read_timeout = vio.read_timeout;
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write_timeout = vio.write_timeout;
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retry_count = vio.retry_count;
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inactive = vio.inactive;
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local = vio.local;
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remote = vio.remote;
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addrLen = vio.addrLen;
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read_buffer = vio.read_buffer;
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read_pos = vio.read_pos;
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read_end = vio.read_end;
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is_blocking_flag = vio.is_blocking_flag;
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#ifdef USE_PPOLL_IN_VIO
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thread_id = vio.thread_id;
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signal_mask = vio.signal_mask;
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if (vio.poll_shutdown_flag.test_and_set())
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poll_shutdown_flag.test_and_set();
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else
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poll_shutdown_flag.clear();
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#elif defined(HAVE_KQUEUE)
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kq_fd = vio.kq_fd;
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if (vio.kevent_wakeup_flag.test_and_set())
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kevent_wakeup_flag.test_and_set();
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else
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kevent_wakeup_flag.clear();
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#endif
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viodelete = vio.viodelete;
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vioerrno = vio.vioerrno;
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read = vio.read;
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write = vio.write;
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timeout = vio.timeout;
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viokeepalive = vio.viokeepalive;
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fastsend = vio.fastsend;
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peer_addr = vio.peer_addr;
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in_addr = vio.in_addr;
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should_retry = vio.should_retry;
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was_timeout = vio.was_timeout;
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vioshutdown = vio.vioshutdown;
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is_connected = vio.is_connected;
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has_data = vio.has_data;
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io_wait = vio.io_wait;
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connect = vio.connect;
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is_blocking = vio.is_blocking;
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set_blocking = vio.set_blocking;
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#ifdef _WIN32
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overlapped = vio.overlapped;
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hPipe = vio.hPipe;
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#endif
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#ifdef HAVE_OPENSSL
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ssl_arg = vio.ssl_arg;
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#endif
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#ifdef _WIN32
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handle_file_map = vio.handle_file_map;
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handle_map = vio.handle_map;
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event_server_wrote = vio.event_client_wrote;
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event_server_read = vio.event_server_read;
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event_client_wrote = vio.event_client_wrote;
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event_client_read = vio.event_client_read;
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event_conn_closed = vio.event_conn_closed;
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shared_memory_remain = vio.shared_memory_remain;
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shared_memory_pos = vio.shared_memory_pos;
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#endif
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// These are the only elements touched by the destructor.
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vio.read_buffer = nullptr;
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#ifdef HAVE_KQUEUE
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vio.kq_fd = -1;
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#endif
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return *this;
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}
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/*
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* Helper to fill most of the Vio* with defaults.
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*/
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static bool vio_init(Vio *vio, enum enum_vio_type type, my_socket sd,
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uint flags) {
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DBUG_PRINT("enter vio_init", ("type: %d sd: %d flags: %d", type, sd, flags));
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mysql_socket_setfd(&vio->mysql_socket, sd);
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#ifdef HAVE_KQUEUE
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DBUG_ASSERT(type == VIO_TYPE_TCPIP || type == VIO_TYPE_SOCKET ||
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type == VIO_TYPE_SSL);
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vio->kq_fd = kqueue();
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if (vio->kq_fd == -1) {
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DBUG_PRINT("vio_init", ("kqueue failed with errno: %d", errno));
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return true;
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}
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#endif
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vio->localhost = flags & VIO_LOCALHOST;
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vio->type = type;
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#ifdef HAVE_SETNS
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vio->network_namespace[0] = '\0';
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#endif
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#ifdef _WIN32
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if (type == VIO_TYPE_NAMEDPIPE) {
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vio->viodelete = vio_delete;
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vio->vioerrno = vio_errno;
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vio->read = vio_read_pipe;
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vio->write = vio_write_pipe;
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vio->fastsend = vio_fastsend;
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vio->viokeepalive = vio_keepalive;
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vio->should_retry = vio_should_retry;
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vio->was_timeout = vio_was_timeout;
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vio->vioshutdown = vio_shutdown_pipe;
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vio->peer_addr = vio_peer_addr;
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vio->io_wait = no_io_wait;
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vio->is_connected = vio_is_connected_pipe;
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vio->has_data = has_no_data;
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vio->is_blocking = vio_is_blocking;
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vio->set_blocking = vio_set_blocking;
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vio->is_blocking_flag = true;
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return false;
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}
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if (type == VIO_TYPE_SHARED_MEMORY) {
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vio->viodelete = vio_delete_shared_memory;
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vio->vioerrno = vio_errno;
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vio->read = vio_read_shared_memory;
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vio->write = vio_write_shared_memory;
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vio->fastsend = vio_fastsend;
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vio->viokeepalive = vio_keepalive;
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vio->should_retry = vio_should_retry;
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vio->was_timeout = vio_was_timeout;
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vio->vioshutdown = vio_shutdown_shared_memory;
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vio->peer_addr = vio_peer_addr;
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vio->io_wait = no_io_wait;
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vio->is_connected = vio_is_connected_shared_memory;
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vio->has_data = has_no_data;
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vio->is_blocking = vio_is_blocking;
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vio->set_blocking = vio_set_blocking;
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vio->is_blocking_flag = true;
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return false;
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}
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#endif /* _WIN32 */
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#ifdef HAVE_OPENSSL
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if (type == VIO_TYPE_SSL) {
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vio->viodelete = vio_ssl_delete;
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vio->vioerrno = vio_errno;
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vio->read = vio_ssl_read;
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vio->write = vio_ssl_write;
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vio->fastsend = vio_fastsend;
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vio->viokeepalive = vio_keepalive;
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vio->should_retry = vio_should_retry;
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vio->was_timeout = vio_was_timeout;
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vio->vioshutdown = vio_ssl_shutdown;
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vio->peer_addr = vio_peer_addr;
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vio->io_wait = vio_io_wait;
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vio->is_connected = vio_is_connected;
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vio->has_data = vio_ssl_has_data;
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vio->timeout = vio_socket_timeout;
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vio->is_blocking = vio_is_blocking;
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vio->set_blocking = vio_set_blocking;
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vio->set_blocking_flag = vio_set_blocking_flag;
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vio->is_blocking_flag = true;
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return false;
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}
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#endif /* HAVE_OPENSSL */
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vio->viodelete = vio_delete;
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vio->vioerrno = vio_errno;
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vio->read = vio->read_buffer ? vio_read_buff : vio_read;
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vio->write = vio_write;
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vio->fastsend = vio_fastsend;
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vio->viokeepalive = vio_keepalive;
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vio->should_retry = vio_should_retry;
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vio->was_timeout = vio_was_timeout;
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vio->vioshutdown = vio_shutdown;
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vio->peer_addr = vio_peer_addr;
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vio->io_wait = vio_io_wait;
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vio->is_connected = vio_is_connected;
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vio->timeout = vio_socket_timeout;
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vio->has_data = vio->read_buffer ? vio_buff_has_data : has_no_data;
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vio->is_blocking = vio_is_blocking;
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vio->set_blocking = vio_set_blocking;
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vio->set_blocking_flag = vio_set_blocking_flag;
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vio->is_blocking_flag = true;
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return false;
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}
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/**
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Reinitialize an existing Vio object.
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@remark Used to rebind an initialized socket-based Vio object
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to another socket-based transport type. For example,
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rebind a TCP/IP transport to SSL.
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@remark If new socket handle passed to vio_reset() is not equal
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to the socket handle stored in Vio then socket handle will
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be closed before storing new value. If handles are equal
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then old socket is not closed. This is important for
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vio_reset() usage in ssl_do().
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@remark If any error occurs then Vio members won't be altered thus
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preserving socket handle stored in Vio and not taking
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ownership over socket handle passed as parameter.
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@param vio A VIO object.
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@param type A socket-based transport type.
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@param sd The socket.
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@param ssl An optional SSL structure.
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@param flags Flags passed to new_vio.
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@return Return value is zero on success.
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*/
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bool vio_reset(Vio *vio, enum enum_vio_type type, my_socket sd,
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void *ssl MY_ATTRIBUTE((unused)), uint flags) {
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int ret = false;
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Vio new_vio(flags);
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DBUG_TRACE;
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/* The only supported rebind is from a socket-based transport type. */
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DBUG_ASSERT(vio->type == VIO_TYPE_TCPIP || vio->type == VIO_TYPE_SOCKET);
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if (vio_init(&new_vio, type, sd, flags)) return true;
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/* Preserve perfschema info for this connection */
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new_vio.mysql_socket.m_psi = vio->mysql_socket.m_psi;
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#ifdef HAVE_OPENSSL
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new_vio.ssl_arg = ssl;
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#endif
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/*
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Propagate the timeout values. Necessary to also propagate
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the underlying proprieties associated with the timeout,
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such as the socket blocking mode.
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*/
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if (vio->read_timeout >= 0)
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ret |= vio_timeout(&new_vio, 0, vio->read_timeout / 1000);
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if (vio->write_timeout >= 0)
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ret |= vio_timeout(&new_vio, 1, vio->write_timeout / 1000);
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if (!ret) {
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/*
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vio_reset() succeeded
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free old resources and then overwrite VIO structure
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*/
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/*
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Close socket only when it is not equal to the new one.
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*/
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if (sd != mysql_socket_getfd(vio->mysql_socket)) {
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if (vio->inactive == false) vio->vioshutdown(vio);
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}
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#ifdef HAVE_KQUEUE
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else {
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/*
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Must set the fd to -1, otherwise the destructor would
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close it again possibly closing socket or file opened
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by other threads concurrently.
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*/
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close(vio->kq_fd);
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vio->kq_fd = -1;
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}
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#endif
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/*
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Overwrite existing Vio structure
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*/
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*vio = std::move(new_vio);
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}
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return ret;
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}
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Vio *internal_vio_create(uint flags) {
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void *rawmem = my_malloc(key_memory_vio, sizeof(Vio), MYF(MY_WME));
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if (rawmem == nullptr) return nullptr;
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return new (rawmem) Vio(flags);
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}
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/* Create a new VIO for socket or TCP/IP connection. */
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Vio *mysql_socket_vio_new(MYSQL_SOCKET mysql_socket, enum_vio_type type,
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uint flags) {
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Vio *vio;
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my_socket sd = mysql_socket_getfd(mysql_socket);
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DBUG_TRACE;
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DBUG_PRINT("enter", ("sd: %d", sd));
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if ((vio = internal_vio_create(flags))) {
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if (vio_init(vio, type, sd, flags)) {
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internal_vio_delete(vio);
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return nullptr;
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}
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vio->mysql_socket = mysql_socket;
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}
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return vio;
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}
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/* Open the socket or TCP/IP connection and read the fnctl() status */
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Vio *vio_new(my_socket sd, enum enum_vio_type type, uint flags) {
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Vio *vio;
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MYSQL_SOCKET mysql_socket = MYSQL_INVALID_SOCKET;
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DBUG_TRACE;
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DBUG_PRINT("enter", ("sd: %d", sd));
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mysql_socket_setfd(&mysql_socket, sd);
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vio = mysql_socket_vio_new(mysql_socket, type, flags);
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return vio;
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}
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#ifdef _WIN32
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Vio *vio_new_win32pipe(HANDLE hPipe) {
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Vio *vio;
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DBUG_TRACE;
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if ((vio = internal_vio_create(VIO_LOCALHOST))) {
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if (vio_init(vio, VIO_TYPE_NAMEDPIPE, 0, VIO_LOCALHOST)) {
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internal_vio_delete(vio);
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return nullptr;
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}
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/* Create an object for event notification. */
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vio->overlapped.hEvent = CreateEvent(NULL, false, false, NULL);
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if (vio->overlapped.hEvent == NULL) {
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internal_vio_delete(vio);
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return NULL;
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}
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vio->hPipe = hPipe;
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}
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return vio;
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}
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Vio *vio_new_win32shared_memory(HANDLE handle_file_map, HANDLE handle_map,
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HANDLE event_server_wrote,
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HANDLE event_server_read,
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HANDLE event_client_wrote,
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HANDLE event_client_read,
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HANDLE event_conn_closed) {
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Vio *vio;
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DBUG_TRACE;
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if ((vio = internal_vio_create(VIO_LOCALHOST))) {
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if (vio_init(vio, VIO_TYPE_SHARED_MEMORY, 0, VIO_LOCALHOST)) {
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internal_vio_delete(vio);
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return nullptr;
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}
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vio->handle_file_map = handle_file_map;
|
|
vio->handle_map = reinterpret_cast<char *>(handle_map);
|
|
vio->event_server_wrote = event_server_wrote;
|
|
vio->event_server_read = event_server_read;
|
|
vio->event_client_wrote = event_client_wrote;
|
|
vio->event_client_read = event_client_read;
|
|
vio->event_conn_closed = event_conn_closed;
|
|
vio->shared_memory_remain = 0;
|
|
vio->shared_memory_pos = reinterpret_cast<char *>(handle_map);
|
|
}
|
|
return vio;
|
|
}
|
|
#endif
|
|
|
|
/**
|
|
Set timeout for a network send or receive operation.
|
|
|
|
@note A non-infinite timeout causes the socket to be
|
|
set to non-blocking mode. On infinite timeouts,
|
|
the socket is set to blocking mode.
|
|
|
|
@note A negative timeout means an infinite timeout.
|
|
|
|
@param vio A VIO object.
|
|
@param which Whether timeout is for send (1) or receive (0).
|
|
@param timeout_sec Timeout interval in seconds.
|
|
|
|
@return false on success, true otherwise.
|
|
*/
|
|
|
|
int vio_timeout(Vio *vio, uint which, int timeout_sec) {
|
|
int timeout_ms;
|
|
bool old_mode;
|
|
|
|
/*
|
|
Vio timeouts are measured in milliseconds. Check for a possible
|
|
overflow. In case of overflow, set to infinite.
|
|
*/
|
|
if (timeout_sec > INT_MAX / 1000)
|
|
timeout_ms = -1;
|
|
else
|
|
timeout_ms = (int)(timeout_sec * 1000);
|
|
|
|
/* Deduce the current timeout status mode. */
|
|
old_mode = vio->write_timeout < 0 && vio->read_timeout < 0;
|
|
|
|
if (which)
|
|
vio->write_timeout = timeout_ms;
|
|
else
|
|
vio->read_timeout = timeout_ms;
|
|
|
|
/* VIO-specific timeout handling. Might change the blocking mode. */
|
|
return vio->timeout ? vio->timeout(vio, which, old_mode) : 0;
|
|
}
|
|
|
|
void internal_vio_delete(Vio *vio) {
|
|
if (!vio) return; /* It must be safe to delete null pointers. */
|
|
if (vio->inactive == false) vio->vioshutdown(vio);
|
|
vio->~Vio();
|
|
my_free(vio);
|
|
}
|
|
|
|
void vio_delete(Vio *vio) { internal_vio_delete(vio); }
|
|
|
|
/*
|
|
Cleanup memory allocated by vio or the
|
|
components below it when application finish
|
|
|
|
*/
|
|
void vio_end(void) {
|
|
#if defined(HAVE_OPENSSL)
|
|
vio_ssl_end();
|
|
#endif
|
|
}
|
|
|
|
struct vio_string {
|
|
const char *m_str;
|
|
int m_len;
|
|
};
|
|
|
|
/**
|
|
Names for each VIO TYPE.
|
|
Indexed by enum_vio_type.
|
|
If you add more, please update audit_log.cc
|
|
*/
|
|
static const vio_string vio_type_names[] = {{"", 0},
|
|
{STRING_WITH_LEN("TCP/IP")},
|
|
{STRING_WITH_LEN("Socket")},
|
|
{STRING_WITH_LEN("Named Pipe")},
|
|
{STRING_WITH_LEN("SSL/TLS")},
|
|
{STRING_WITH_LEN("Shared Memory")},
|
|
{STRING_WITH_LEN("Internal")},
|
|
{STRING_WITH_LEN("Plugin")}};
|
|
|
|
void get_vio_type_name(enum enum_vio_type vio_type, const char **str,
|
|
int *len) {
|
|
int index;
|
|
|
|
if ((vio_type >= FIRST_VIO_TYPE) && (vio_type <= LAST_VIO_TYPE)) {
|
|
index = vio_type;
|
|
} else {
|
|
index = 0;
|
|
}
|
|
*str = vio_type_names[index].m_str;
|
|
*len = vio_type_names[index].m_len;
|
|
return;
|
|
}
|
|
|