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[gcc.git] / gcc / ada / g-socket.ads
1 ------------------------------------------------------------------------------
2 -- --
3 -- GNAT COMPILER COMPONENTS --
4 -- --
5 -- G N A T . S O C K E T S --
6 -- --
7 -- S p e c --
8 -- --
9 -- Copyright (C) 2001-2008, AdaCore --
10 -- --
11 -- GNAT is free software; you can redistribute it and/or modify it under --
12 -- terms of the GNU General Public License as published by the Free Soft- --
13 -- ware Foundation; either version 2, or (at your option) any later ver- --
14 -- sion. GNAT is distributed in the hope that it will be useful, but WITH- --
15 -- OUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY --
16 -- or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License --
17 -- for more details. You should have received a copy of the GNU General --
18 -- Public License distributed with GNAT; see file COPYING. If not, write --
19 -- to the Free Software Foundation, 51 Franklin Street, Fifth Floor, --
20 -- Boston, MA 02110-1301, USA. --
21 -- --
22 -- As a special exception, if other files instantiate generics from this --
23 -- unit, or you link this unit with other files to produce an executable, --
24 -- this unit does not by itself cause the resulting executable to be --
25 -- covered by the GNU General Public License. This exception does not --
26 -- however invalidate any other reasons why the executable file might be --
27 -- covered by the GNU Public License. --
28 -- --
29 -- GNAT was originally developed by the GNAT team at New York University. --
30 -- Extensive contributions were provided by Ada Core Technologies Inc. --
31 -- --
32 ------------------------------------------------------------------------------
33
34 -- This package provides an interface to the sockets communication facility
35 -- provided on many operating systems. This is implemented on the following
36 -- platforms:
37
38 -- All native ports, with restrictions as follows
39
40 -- Multicast is available only on systems which provide support for this
41 -- feature, so it is not available if Multicast is not supported, or not
42 -- installed.
43
44 -- The VMS implementation was implemented using the DECC RTL Socket API,
45 -- and is thus subject to limitations in the implementation of this API.
46
47 -- VxWorks cross ports fully implement this package
48
49 -- This package is not yet implemented on LynxOS or other cross ports
50
51 with Ada.Exceptions;
52 with Ada.Streams;
53 with Ada.Unchecked_Deallocation;
54
55 with Interfaces.C;
56
57 with System.OS_Constants;
58 with System.Storage_Elements;
59
60 package GNAT.Sockets is
61
62 -- Sockets are designed to provide a consistent communication facility
63 -- between applications. This package provides an Ada binding to the
64 -- the de-facto standard BSD sockets API. The documentation below covers
65 -- only the specific binding provided by this package. It assumes that
66 -- the reader is already familiar with general network programming and
67 -- sockets usage. A useful reference on this matter is W. Richard Stevens'
68 -- "UNIX Network Programming: The Sockets Networking API"
69 -- (ISBN: 0131411551).
70
71 -- GNAT.Sockets has been designed with several ideas in mind
72
73 -- This is a system independent interface. Therefore, we try as much as
74 -- possible to mask system incompatibilities. Some functionalities are not
75 -- available because there are not fully supported on some systems.
76
77 -- This is a thick binding. For instance, a major effort has been done to
78 -- avoid using memory addresses or untyped ints. We preferred to define
79 -- streams and enumeration types. Errors are not returned as returned
80 -- values but as exceptions.
81
82 -- This package provides a POSIX-compliant interface (between two
83 -- different implementations of the same routine, we adopt the one closest
84 -- to the POSIX specification). For instance, using select(), the
85 -- notification of an asynchronous connect failure is delivered in the
86 -- write socket set (POSIX) instead of the exception socket set (NT).
87
88 -- The example below demonstrates various features of GNAT.Sockets:
89
90 -- with GNAT.Sockets; use GNAT.Sockets;
91
92 -- with Ada.Text_IO;
93 -- with Ada.Exceptions; use Ada.Exceptions;
94
95 -- procedure PingPong is
96
97 -- Group : constant String := "239.255.128.128";
98 -- -- Multicast group: administratively scoped IP address
99
100 -- task Pong is
101 -- entry Start;
102 -- entry Stop;
103 -- end Pong;
104
105 -- task body Pong is
106 -- Address : Sock_Addr_Type;
107 -- Server : Socket_Type;
108 -- Socket : Socket_Type;
109 -- Channel : Stream_Access;
110
111 -- begin
112 -- accept Start;
113 --
114 -- -- Get an Internet address of a host (here the local host name).
115 -- -- Note that a host can have several addresses. Here we get
116 -- -- the first one which is supposed to be the official one.
117
118 -- Address.Addr := Addresses (Get_Host_By_Name (Host_Name), 1);
119
120 -- -- Get a socket address that is an Internet address and a port
121
122 -- Address.Port := 5876;
123
124 -- -- The first step is to create a socket. Once created, this
125 -- -- socket must be associated to with an address. Usually only a
126 -- -- server (Pong here) needs to bind an address explicitly. Most
127 -- -- of the time clients can skip this step because the socket
128 -- -- routines will bind an arbitrary address to an unbound socket.
129
130 -- Create_Socket (Server);
131
132 -- -- Allow reuse of local addresses
133
134 -- Set_Socket_Option
135 -- (Server,
136 -- Socket_Level,
137 -- (Reuse_Address, True));
138
139 -- Bind_Socket (Server, Address);
140
141 -- -- A server marks a socket as willing to receive connect events
142
143 -- Listen_Socket (Server);
144
145 -- -- Once a server calls Listen_Socket, incoming connects events
146 -- -- can be accepted. The returned Socket is a new socket that
147 -- -- represents the server side of the connection. Server remains
148 -- -- available to receive further connections.
149
150 -- Accept_Socket (Server, Socket, Address);
151
152 -- -- Return a stream associated to the connected socket
153
154 -- Channel := Stream (Socket);
155
156 -- -- Force Pong to block
157
158 -- delay 0.2;
159
160 -- -- Receive and print message from client Ping
161
162 -- declare
163 -- Message : String := String'Input (Channel);
164
165 -- begin
166 -- Ada.Text_IO.Put_Line (Message);
167
168 -- -- Send same message back to client Ping
169
170 -- String'Output (Channel, Message);
171 -- end;
172
173 -- Close_Socket (Server);
174 -- Close_Socket (Socket);
175
176 -- -- Part of the multicast example
177
178 -- -- Create a datagram socket to send connectionless, unreliable
179 -- -- messages of a fixed maximum length.
180
181 -- Create_Socket (Socket, Family_Inet, Socket_Datagram);
182
183 -- -- Allow reuse of local addresses
184
185 -- Set_Socket_Option
186 -- (Socket,
187 -- Socket_Level,
188 -- (Reuse_Address, True));
189
190 -- -- Controls the live time of the datagram to avoid it being
191 -- -- looped forever due to routing errors. Routers decrement
192 -- -- the TTL of every datagram as it traverses from one network
193 -- -- to another and when its value reaches 0 the packet is
194 -- -- dropped. Default is 1.
195
196 -- Set_Socket_Option
197 -- (Socket,
198 -- IP_Protocol_For_IP_Level,
199 -- (Multicast_TTL, 1));
200
201 -- -- Want the data you send to be looped back to your host
202
203 -- Set_Socket_Option
204 -- (Socket,
205 -- IP_Protocol_For_IP_Level,
206 -- (Multicast_Loop, True));
207
208 -- -- If this socket is intended to receive messages, bind it
209 -- -- to a given socket address.
210
211 -- Address.Addr := Any_Inet_Addr;
212 -- Address.Port := 55505;
213
214 -- Bind_Socket (Socket, Address);
215
216 -- -- Join a multicast group
217
218 -- -- Portability note: On Windows, this option may be set only
219 -- -- on a bound socket.
220
221 -- Set_Socket_Option
222 -- (Socket,
223 -- IP_Protocol_For_IP_Level,
224 -- (Add_Membership, Inet_Addr (Group), Any_Inet_Addr));
225
226 -- -- If this socket is intended to send messages, provide the
227 -- -- receiver socket address.
228
229 -- Address.Addr := Inet_Addr (Group);
230 -- Address.Port := 55506;
231
232 -- Channel := Stream (Socket, Address);
233
234 -- -- Receive and print message from client Ping
235
236 -- declare
237 -- Message : String := String'Input (Channel);
238
239 -- begin
240 -- -- Get the address of the sender
241
242 -- Address := Get_Address (Channel);
243 -- Ada.Text_IO.Put_Line (Message & " from " & Image (Address));
244
245 -- -- Send same message back to client Ping
246
247 -- String'Output (Channel, Message);
248 -- end;
249
250 -- Close_Socket (Socket);
251
252 -- accept Stop;
253
254 -- exception when E : others =>
255 -- Ada.Text_IO.Put_Line
256 -- (Exception_Name (E) & ": " & Exception_Message (E));
257 -- end Pong;
258
259 -- task Ping is
260 -- entry Start;
261 -- entry Stop;
262 -- end Ping;
263
264 -- task body Ping is
265 -- Address : Sock_Addr_Type;
266 -- Socket : Socket_Type;
267 -- Channel : Stream_Access;
268
269 -- begin
270 -- accept Start;
271
272 -- -- See comments in Ping section for the first steps
273
274 -- Address.Addr := Addresses (Get_Host_By_Name (Host_Name), 1);
275 -- Address.Port := 5876;
276 -- Create_Socket (Socket);
277
278 -- Set_Socket_Option
279 -- (Socket,
280 -- Socket_Level,
281 -- (Reuse_Address, True));
282
283 -- -- Force Pong to block
284
285 -- delay 0.2;
286
287 -- -- If the client's socket is not bound, Connect_Socket will
288 -- -- bind to an unused address. The client uses Connect_Socket to
289 -- -- create a logical connection between the client's socket and
290 -- -- a server's socket returned by Accept_Socket.
291
292 -- Connect_Socket (Socket, Address);
293
294 -- Channel := Stream (Socket);
295
296 -- -- Send message to server Pong
297
298 -- String'Output (Channel, "Hello world");
299
300 -- -- Force Ping to block
301
302 -- delay 0.2;
303
304 -- -- Receive and print message from server Pong
305
306 -- Ada.Text_IO.Put_Line (String'Input (Channel));
307 -- Close_Socket (Socket);
308
309 -- -- Part of multicast example. Code similar to Pong's one
310
311 -- Create_Socket (Socket, Family_Inet, Socket_Datagram);
312
313 -- Set_Socket_Option
314 -- (Socket,
315 -- Socket_Level,
316 -- (Reuse_Address, True));
317
318 -- Set_Socket_Option
319 -- (Socket,
320 -- IP_Protocol_For_IP_Level,
321 -- (Multicast_TTL, 1));
322
323 -- Set_Socket_Option
324 -- (Socket,
325 -- IP_Protocol_For_IP_Level,
326 -- (Multicast_Loop, True));
327
328 -- Address.Addr := Any_Inet_Addr;
329 -- Address.Port := 55506;
330
331 -- Bind_Socket (Socket, Address);
332
333 -- Set_Socket_Option
334 -- (Socket,
335 -- IP_Protocol_For_IP_Level,
336 -- (Add_Membership, Inet_Addr (Group), Any_Inet_Addr));
337
338 -- Address.Addr := Inet_Addr (Group);
339 -- Address.Port := 55505;
340
341 -- Channel := Stream (Socket, Address);
342
343 -- -- Send message to server Pong
344
345 -- String'Output (Channel, "Hello world");
346
347 -- -- Receive and print message from server Pong
348
349 -- declare
350 -- Message : String := String'Input (Channel);
351
352 -- begin
353 -- Address := Get_Address (Channel);
354 -- Ada.Text_IO.Put_Line (Message & " from " & Image (Address));
355 -- end;
356
357 -- Close_Socket (Socket);
358
359 -- accept Stop;
360
361 -- exception when E : others =>
362 -- Ada.Text_IO.Put_Line
363 -- (Exception_Name (E) & ": " & Exception_Message (E));
364 -- end Ping;
365
366 -- begin
367 -- Initialize;
368 -- Ping.Start;
369 -- Pong.Start;
370 -- Ping.Stop;
371 -- Pong.Stop;
372 -- Finalize;
373 -- end PingPong;
374
375 package SOSC renames System.OS_Constants;
376 -- Renaming used to provide short-hand notations throughout the sockets
377 -- binding. Note that System.OS_Constants is an internal unit, and the
378 -- entities declared therein are not meant for direct access by users,
379 -- including through this renaming.
380
381 procedure Initialize;
382 pragma Obsolescent
383 (Entity => Initialize,
384 Message => "explicit initialization is no longer required");
385 -- Initialize must be called before using any other socket routines.
386 -- Note that this operation is a no-op on UNIX platforms, but applications
387 -- should make sure to call it if portability is expected: some platforms
388 -- (such as Windows) require initialization before any socket operation.
389 -- This is now a no-op (initialization and finalization are done
390 -- automatically).
391
392 procedure Initialize (Process_Blocking_IO : Boolean);
393 pragma Obsolescent
394 (Entity => Initialize,
395 Message => "passing a parameter to Initialize is no longer supported");
396 -- Previous versions of GNAT.Sockets used to require the user to indicate
397 -- whether socket I/O was process- or thread-blocking on the platform.
398 -- This property is now determined automatically when the run-time library
399 -- is built. The old version of Initialize, taking a parameter, is kept
400 -- for compatibility reasons, but this interface is obsolete (and if the
401 -- value given is wrong, an exception will be raised at run time).
402 -- This is now a no-op (initialization and finalization are done
403 -- automatically).
404
405 procedure Finalize;
406 pragma Obsolescent
407 (Entity => Finalize,
408 Message => "explicit finalization is no longer required");
409 -- After Finalize is called it is not possible to use any routines
410 -- exported in by this package. This procedure is idempotent.
411 -- This is now a no-op (initialization and finalization are done
412 -- automatically).
413
414 type Socket_Type is private;
415 -- Sockets are used to implement a reliable bi-directional point-to-point,
416 -- stream-based connections between hosts. No_Socket provides a special
417 -- value to denote uninitialized sockets.
418
419 No_Socket : constant Socket_Type;
420
421 type Selector_Type is limited private;
422 type Selector_Access is access all Selector_Type;
423 -- Selector objects are used to wait for i/o events to occur on sockets
424
425 -- Timeval_Duration is a subtype of Standard.Duration because the full
426 -- range of Standard.Duration cannot be represented in the equivalent C
427 -- structure. Moreover, negative values are not allowed to avoid system
428 -- incompatibilities.
429
430 Immediate : constant Duration := 0.0;
431
432 Timeval_Forever : constant := 2.0 ** (SOSC.SIZEOF_tv_sec * 8 - 1) - 1.0;
433 Forever : constant Duration :=
434 Duration'Min (Duration'Last, Timeval_Forever);
435
436 subtype Timeval_Duration is Duration range Immediate .. Forever;
437
438 subtype Selector_Duration is Timeval_Duration;
439 -- Timeout value for selector operations
440
441 type Selector_Status is (Completed, Expired, Aborted);
442 -- Completion status of a selector operation, indicated as follows:
443 -- Complete: one of the expected events occurred
444 -- Expired: no event occurred before the expiration of the timeout
445 -- Aborted: an external action cancelled the wait operation before
446 -- any event occurred.
447
448 Socket_Error : exception;
449 -- There is only one exception in this package to deal with an error during
450 -- a socket routine. Once raised, its message contains a string describing
451 -- the error code.
452
453 function Image (Socket : Socket_Type) return String;
454 -- Return a printable string for Socket
455
456 function To_C (Socket : Socket_Type) return Integer;
457 -- Return a file descriptor to be used by external subprograms. This is
458 -- useful for C functions that are not yet interfaced in this package.
459
460 type Family_Type is (Family_Inet, Family_Inet6);
461 -- Address family (or protocol family) identifies the communication domain
462 -- and groups protocols with similar address formats. IPv6 will soon be
463 -- supported.
464
465 type Mode_Type is (Socket_Stream, Socket_Datagram);
466 -- Stream sockets provide connection-oriented byte streams. Datagram
467 -- sockets support unreliable connectionless message based communication.
468
469 type Shutmode_Type is (Shut_Read, Shut_Write, Shut_Read_Write);
470 -- When a process closes a socket, the policy is to retain any data queued
471 -- until either a delivery or a timeout expiration (in this case, the data
472 -- are discarded). A finer control is available through shutdown. With
473 -- Shut_Read, no more data can be received from the socket. With_Write, no
474 -- more data can be transmitted. Neither transmission nor reception can be
475 -- performed with Shut_Read_Write.
476
477 type Port_Type is new Natural;
478 -- Classical port definition. No_Port provides a special value to
479 -- denote uninitialized port. Any_Port provides a special value
480 -- enabling all ports.
481
482 Any_Port : constant Port_Type;
483 No_Port : constant Port_Type;
484
485 type Inet_Addr_Type (Family : Family_Type := Family_Inet) is private;
486 -- An Internet address depends on an address family (IPv4 contains 4 octets
487 -- and IPv6 contains 16 octets). Any_Inet_Addr is a special value treated
488 -- like a wildcard enabling all addresses. No_Inet_Addr provides a special
489 -- value to denote uninitialized inet addresses.
490
491 Any_Inet_Addr : constant Inet_Addr_Type;
492 No_Inet_Addr : constant Inet_Addr_Type;
493 Broadcast_Inet_Addr : constant Inet_Addr_Type;
494
495 type Sock_Addr_Type (Family : Family_Type := Family_Inet) is record
496 Addr : Inet_Addr_Type (Family);
497 Port : Port_Type;
498 end record;
499 -- Socket addresses fully define a socket connection with protocol family,
500 -- an Internet address and a port. No_Sock_Addr provides a special value
501 -- for uninitialized socket addresses.
502
503 No_Sock_Addr : constant Sock_Addr_Type;
504
505 function Image (Value : Inet_Addr_Type) return String;
506 -- Return an image of an Internet address. IPv4 notation consists in 4
507 -- octets in decimal format separated by dots. IPv6 notation consists in
508 -- 16 octets in hexadecimal format separated by colons (and possibly
509 -- dots).
510
511 function Image (Value : Sock_Addr_Type) return String;
512 -- Return inet address image and port image separated by a colon
513
514 function Inet_Addr (Image : String) return Inet_Addr_Type;
515 -- Convert address image from numbers-and-dots notation into an
516 -- inet address.
517
518 -- Host entries provide complete information on a given host: the official
519 -- name, an array of alternative names or aliases and array of network
520 -- addresses.
521
522 type Host_Entry_Type
523 (Aliases_Length, Addresses_Length : Natural) is private;
524
525 function Official_Name (E : Host_Entry_Type) return String;
526 -- Return official name in host entry
527
528 function Aliases_Length (E : Host_Entry_Type) return Natural;
529 -- Return number of aliases in host entry
530
531 function Addresses_Length (E : Host_Entry_Type) return Natural;
532 -- Return number of addresses in host entry
533
534 function Aliases
535 (E : Host_Entry_Type;
536 N : Positive := 1) return String;
537 -- Return N'th aliases in host entry. The first index is 1
538
539 function Addresses
540 (E : Host_Entry_Type;
541 N : Positive := 1) return Inet_Addr_Type;
542 -- Return N'th addresses in host entry. The first index is 1
543
544 Host_Error : exception;
545 -- Exception raised by the two following procedures. Once raised, its
546 -- message contains a string describing the error code. This exception is
547 -- raised when an host entry cannot be retrieved.
548
549 function Get_Host_By_Address
550 (Address : Inet_Addr_Type;
551 Family : Family_Type := Family_Inet) return Host_Entry_Type;
552 -- Return host entry structure for the given Inet address. Note that no
553 -- result will be returned if there is no mapping of this IP address to a
554 -- host name in the system tables (host database, DNS or otherwise).
555
556 function Get_Host_By_Name
557 (Name : String) return Host_Entry_Type;
558 -- Return host entry structure for the given host name. Here name is
559 -- either a host name, or an IP address. If Name is an IP address, this
560 -- is equivalent to Get_Host_By_Address (Inet_Addr (Name)).
561
562 function Host_Name return String;
563 -- Return the name of the current host
564
565 type Service_Entry_Type (Aliases_Length : Natural) is private;
566 -- Service entries provide complete information on a given service: the
567 -- official name, an array of alternative names or aliases and the port
568 -- number.
569
570 function Official_Name (S : Service_Entry_Type) return String;
571 -- Return official name in service entry
572
573 function Port_Number (S : Service_Entry_Type) return Port_Type;
574 -- Return port number in service entry
575
576 function Protocol_Name (S : Service_Entry_Type) return String;
577 -- Return Protocol in service entry (usually UDP or TCP)
578
579 function Aliases_Length (S : Service_Entry_Type) return Natural;
580 -- Return number of aliases in service entry
581
582 function Aliases
583 (S : Service_Entry_Type;
584 N : Positive := 1) return String;
585 -- Return N'th aliases in service entry (the first index is 1)
586
587 function Get_Service_By_Name
588 (Name : String;
589 Protocol : String) return Service_Entry_Type;
590 -- Return service entry structure for the given service name
591
592 function Get_Service_By_Port
593 (Port : Port_Type;
594 Protocol : String) return Service_Entry_Type;
595 -- Return service entry structure for the given service port number
596
597 Service_Error : exception;
598 -- Comment required ???
599
600 -- Errors are described by an enumeration type. There is only one exception
601 -- Socket_Error in this package to deal with an error during a socket
602 -- routine. Once raised, its message contains the error code between
603 -- brackets and a string describing the error code.
604
605 -- The name of the enumeration constant documents the error condition
606 -- Note that on some platforms, a single error value is used for both
607 -- EWOULDBLOCK and EAGAIN. Both errors are therefore always reported as
608 -- Resource_Temporarily_Unavailable.
609
610 type Error_Type is
611 (Success,
612 Permission_Denied,
613 Address_Already_In_Use,
614 Cannot_Assign_Requested_Address,
615 Address_Family_Not_Supported_By_Protocol,
616 Operation_Already_In_Progress,
617 Bad_File_Descriptor,
618 Software_Caused_Connection_Abort,
619 Connection_Refused,
620 Connection_Reset_By_Peer,
621 Destination_Address_Required,
622 Bad_Address,
623 Host_Is_Down,
624 No_Route_To_Host,
625 Operation_Now_In_Progress,
626 Interrupted_System_Call,
627 Invalid_Argument,
628 Input_Output_Error,
629 Transport_Endpoint_Already_Connected,
630 Too_Many_Symbolic_Links,
631 Too_Many_Open_Files,
632 Message_Too_Long,
633 File_Name_Too_Long,
634 Network_Is_Down,
635 Network_Dropped_Connection_Because_Of_Reset,
636 Network_Is_Unreachable,
637 No_Buffer_Space_Available,
638 Protocol_Not_Available,
639 Transport_Endpoint_Not_Connected,
640 Socket_Operation_On_Non_Socket,
641 Operation_Not_Supported,
642 Protocol_Family_Not_Supported,
643 Protocol_Not_Supported,
644 Protocol_Wrong_Type_For_Socket,
645 Cannot_Send_After_Transport_Endpoint_Shutdown,
646 Socket_Type_Not_Supported,
647 Connection_Timed_Out,
648 Too_Many_References,
649 Resource_Temporarily_Unavailable,
650 Broken_Pipe,
651 Unknown_Host,
652 Host_Name_Lookup_Failure,
653 Non_Recoverable_Error,
654 Unknown_Server_Error,
655 Cannot_Resolve_Error);
656
657 -- Get_Socket_Options and Set_Socket_Options manipulate options associated
658 -- with a socket. Options may exist at multiple protocol levels in the
659 -- communication stack. Socket_Level is the uppermost socket level.
660
661 type Level_Type is (
662 Socket_Level,
663 IP_Protocol_For_IP_Level,
664 IP_Protocol_For_UDP_Level,
665 IP_Protocol_For_TCP_Level);
666
667 -- There are several options available to manipulate sockets. Each option
668 -- has a name and several values available. Most of the time, the value is
669 -- a boolean to enable or disable this option.
670
671 type Option_Name is (
672 Keep_Alive, -- Enable sending of keep-alive messages
673 Reuse_Address, -- Allow bind to reuse local address
674 Broadcast, -- Enable datagram sockets to recv/send broadcasts
675 Send_Buffer, -- Set/get the maximum socket send buffer in bytes
676 Receive_Buffer, -- Set/get the maximum socket recv buffer in bytes
677 Linger, -- Shutdown wait for msg to be sent or timeout occur
678 Error, -- Get and clear the pending socket error
679 No_Delay, -- Do not delay send to coalesce data (TCP_NODELAY)
680 Add_Membership, -- Join a multicast group
681 Drop_Membership, -- Leave a multicast group
682 Multicast_If, -- Set default out interface for multicast packets
683 Multicast_TTL, -- Set the time-to-live of sent multicast packets
684 Multicast_Loop, -- Sent multicast packets are looped to local socket
685 Receive_Packet_Info, -- Receive low level packet info as ancillary data
686 Send_Timeout, -- Set timeout value for output
687 Receive_Timeout); -- Set timeout value for input
688
689 type Option_Type (Name : Option_Name := Keep_Alive) is record
690 case Name is
691 when Keep_Alive |
692 Reuse_Address |
693 Broadcast |
694 Linger |
695 No_Delay |
696 Receive_Packet_Info |
697 Multicast_Loop =>
698 Enabled : Boolean;
699
700 case Name is
701 when Linger =>
702 Seconds : Natural;
703 when others =>
704 null;
705 end case;
706
707 when Send_Buffer |
708 Receive_Buffer =>
709 Size : Natural;
710
711 when Error =>
712 Error : Error_Type;
713
714 when Add_Membership |
715 Drop_Membership =>
716 Multicast_Address : Inet_Addr_Type;
717 Local_Interface : Inet_Addr_Type;
718
719 when Multicast_If =>
720 Outgoing_If : Inet_Addr_Type;
721
722 when Multicast_TTL =>
723 Time_To_Live : Natural;
724
725 when Send_Timeout |
726 Receive_Timeout =>
727 Timeout : Timeval_Duration;
728
729 end case;
730 end record;
731
732 -- There are several controls available to manipulate sockets. Each option
733 -- has a name and several values available. These controls differ from the
734 -- socket options in that they are not specific to sockets but are
735 -- available for any device.
736
737 type Request_Name is (
738 Non_Blocking_IO, -- Cause a caller not to wait on blocking operations.
739 N_Bytes_To_Read); -- Return the number of bytes available to read
740
741 type Request_Type (Name : Request_Name := Non_Blocking_IO) is record
742 case Name is
743 when Non_Blocking_IO =>
744 Enabled : Boolean;
745
746 when N_Bytes_To_Read =>
747 Size : Natural;
748
749 end case;
750 end record;
751
752 -- A request flag allows to specify the type of message transmissions or
753 -- receptions. A request flag can be combination of zero or more
754 -- predefined request flags.
755
756 type Request_Flag_Type is private;
757
758 No_Request_Flag : constant Request_Flag_Type;
759 -- This flag corresponds to the normal execution of an operation
760
761 Process_Out_Of_Band_Data : constant Request_Flag_Type;
762 -- This flag requests that the receive or send function operates on
763 -- out-of-band data when the socket supports this notion (e.g.
764 -- Socket_Stream).
765
766 Peek_At_Incoming_Data : constant Request_Flag_Type;
767 -- This flag causes the receive operation to return data from the beginning
768 -- of the receive queue without removing that data from the queue. A
769 -- subsequent receive call will return the same data.
770
771 Wait_For_A_Full_Reception : constant Request_Flag_Type;
772 -- This flag requests that the operation block until the full request is
773 -- satisfied. However, the call may still return less data than requested
774 -- if a signal is caught, an error or disconnect occurs, or the next data
775 -- to be received is of a different type than that returned. Note that
776 -- this flag depends on support in the underlying sockets implementation,
777 -- and is not supported under Windows.
778
779 Send_End_Of_Record : constant Request_Flag_Type;
780 -- This flag indicates that the entire message has been sent and so this
781 -- terminates the record.
782
783 function "+" (L, R : Request_Flag_Type) return Request_Flag_Type;
784 -- Combine flag L with flag R
785
786 type Stream_Element_Reference is access all Ada.Streams.Stream_Element;
787
788 type Vector_Element is record
789 Base : Stream_Element_Reference;
790 Length : Ada.Streams.Stream_Element_Count;
791 end record;
792
793 type Vector_Type is array (Integer range <>) of Vector_Element;
794
795 procedure Create_Socket
796 (Socket : out Socket_Type;
797 Family : Family_Type := Family_Inet;
798 Mode : Mode_Type := Socket_Stream);
799 -- Create an endpoint for communication. Raises Socket_Error on error
800
801 procedure Accept_Socket
802 (Server : Socket_Type;
803 Socket : out Socket_Type;
804 Address : out Sock_Addr_Type);
805 -- Extracts the first connection request on the queue of pending
806 -- connections, creates a new connected socket with mostly the same
807 -- properties as Server, and allocates a new socket. The returned Address
808 -- is filled in with the address of the connection. Raises Socket_Error on
809 -- error.
810
811 procedure Accept_Socket
812 (Server : Socket_Type;
813 Socket : out Socket_Type;
814 Address : out Sock_Addr_Type;
815 Timeout : Selector_Duration;
816 Selector : access Selector_Type := null;
817 Status : out Selector_Status);
818 -- Accept a new connection on Server using Accept_Socket, waiting no longer
819 -- than the given timeout duration. Status is set to indicate whether the
820 -- operation completed successfully, timed out, or was aborted. If Selector
821 -- is not null, the designated selector is used to wait for the socket to
822 -- become available, else a private selector object is created by this
823 -- procedure and destroyed before it returns.
824
825 procedure Bind_Socket
826 (Socket : Socket_Type;
827 Address : Sock_Addr_Type);
828 -- Once a socket is created, assign a local address to it. Raise
829 -- Socket_Error on error.
830
831 procedure Close_Socket (Socket : Socket_Type);
832 -- Close a socket and more specifically a non-connected socket
833
834 procedure Connect_Socket
835 (Socket : Socket_Type;
836 Server : Sock_Addr_Type);
837 -- Make a connection to another socket which has the address of Server.
838 -- Raises Socket_Error on error.
839
840 procedure Connect_Socket
841 (Socket : Socket_Type;
842 Server : Sock_Addr_Type;
843 Timeout : Selector_Duration;
844 Selector : access Selector_Type := null;
845 Status : out Selector_Status);
846 -- Connect Socket to the given Server address using Connect_Socket, waiting
847 -- no longer than the given timeout duration. Status is set to indicate
848 -- whether the operation completed successfully, timed out, or was aborted.
849 -- If Selector is not null, the designated selector is used to wait for the
850 -- socket to become available, else a private selector object is created
851 -- by this procedure and destroyed before it returns.
852
853 procedure Control_Socket
854 (Socket : Socket_Type;
855 Request : in out Request_Type);
856 -- Obtain or set parameter values that control the socket. This control
857 -- differs from the socket options in that they are not specific to sockets
858 -- but are available for any device.
859
860 function Get_Peer_Name (Socket : Socket_Type) return Sock_Addr_Type;
861 -- Return the peer or remote socket address of a socket. Raise
862 -- Socket_Error on error.
863
864 function Get_Socket_Name (Socket : Socket_Type) return Sock_Addr_Type;
865 -- Return the local or current socket address of a socket. Return
866 -- No_Sock_Addr on error (e.g. socket closed or not locally bound).
867
868 function Get_Socket_Option
869 (Socket : Socket_Type;
870 Level : Level_Type := Socket_Level;
871 Name : Option_Name) return Option_Type;
872 -- Get the options associated with a socket. Raises Socket_Error on error
873
874 procedure Listen_Socket
875 (Socket : Socket_Type;
876 Length : Natural := 15);
877 -- To accept connections, a socket is first created with Create_Socket,
878 -- a willingness to accept incoming connections and a queue Length for
879 -- incoming connections are specified. Raise Socket_Error on error.
880 -- The queue length of 15 is an example value that should be appropriate
881 -- in usual cases. It can be adjusted according to each application's
882 -- particular requirements.
883
884 procedure Receive_Socket
885 (Socket : Socket_Type;
886 Item : out Ada.Streams.Stream_Element_Array;
887 Last : out Ada.Streams.Stream_Element_Offset;
888 Flags : Request_Flag_Type := No_Request_Flag);
889 -- Receive message from Socket. Last is the index value such that Item
890 -- (Last) is the last character assigned. Note that Last is set to
891 -- Item'First - 1 when the socket has been closed by peer. This is not an
892 -- error and no exception is raised. Flags allows to control the
893 -- reception. Raise Socket_Error on error.
894
895 procedure Receive_Socket
896 (Socket : Socket_Type;
897 Item : out Ada.Streams.Stream_Element_Array;
898 Last : out Ada.Streams.Stream_Element_Offset;
899 From : out Sock_Addr_Type;
900 Flags : Request_Flag_Type := No_Request_Flag);
901 -- Receive message from Socket. If Socket is not connection-oriented, the
902 -- source address From of the message is filled in. Last is the index
903 -- value such that Item (Last) is the last character assigned. Flags
904 -- allows to control the reception. Raises Socket_Error on error.
905
906 procedure Receive_Vector
907 (Socket : Socket_Type;
908 Vector : Vector_Type;
909 Count : out Ada.Streams.Stream_Element_Count);
910 -- Receive data from a socket and scatter it into the set of vector
911 -- elements Vector. Count is set to the count of received stream elements.
912
913 function Resolve_Exception
914 (Occurrence : Ada.Exceptions.Exception_Occurrence) return Error_Type;
915 -- When Socket_Error or Host_Error are raised, the exception message
916 -- contains the error code between brackets and a string describing the
917 -- error code. Resolve_Error extracts the error code from an exception
918 -- message and translate it into an enumeration value.
919
920 procedure Send_Socket
921 (Socket : Socket_Type;
922 Item : Ada.Streams.Stream_Element_Array;
923 Last : out Ada.Streams.Stream_Element_Offset;
924 To : access Sock_Addr_Type;
925 Flags : Request_Flag_Type := No_Request_Flag);
926 pragma Inline (Send_Socket);
927 -- Transmit a message over a socket. For a datagram socket, the address is
928 -- given by To.all. For a stream socket, To must be null. Flags
929 -- allows to control the transmission. Raises Socket_Error on error.
930 -- Note: this subprogram is inlined because it is also used to implement
931 -- the two variants below.
932
933 procedure Send_Socket
934 (Socket : Socket_Type;
935 Item : Ada.Streams.Stream_Element_Array;
936 Last : out Ada.Streams.Stream_Element_Offset;
937 Flags : Request_Flag_Type := No_Request_Flag);
938 -- Transmit a message over a socket. Note that Last is set to
939 -- Item'First-1 when socket has been closed by peer. This is not
940 -- considered an error and no exception is raised. Flags allows to control
941 -- the transmission. Raises Socket_Error on any other error condition.
942
943 procedure Send_Socket
944 (Socket : Socket_Type;
945 Item : Ada.Streams.Stream_Element_Array;
946 Last : out Ada.Streams.Stream_Element_Offset;
947 To : Sock_Addr_Type;
948 Flags : Request_Flag_Type := No_Request_Flag);
949 -- Transmit a message over a datagram socket. The destination address is
950 -- To. Flags allows to control the transmission. Raises Socket_Error on
951 -- error.
952
953 procedure Send_Vector
954 (Socket : Socket_Type;
955 Vector : Vector_Type;
956 Count : out Ada.Streams.Stream_Element_Count);
957 -- Transmit data gathered from the set of vector elements Vector to a
958 -- socket. Count is set to the count of transmitted stream elements.
959
960 procedure Set_Socket_Option
961 (Socket : Socket_Type;
962 Level : Level_Type := Socket_Level;
963 Option : Option_Type);
964 -- Manipulate socket options. Raises Socket_Error on error
965
966 procedure Shutdown_Socket
967 (Socket : Socket_Type;
968 How : Shutmode_Type := Shut_Read_Write);
969 -- Shutdown a connected socket. If How is Shut_Read, further receives will
970 -- be disallowed. If How is Shut_Write, further sends will be disallowed.
971 -- If how is Shut_Read_Write, further sends and receives will be
972 -- disallowed.
973
974 type Stream_Access is access all Ada.Streams.Root_Stream_Type'Class;
975 -- Same interface as Ada.Streams.Stream_IO
976
977 function Stream (Socket : Socket_Type) return Stream_Access;
978 -- Create a stream associated with a stream-based socket that is
979 -- already connected.
980
981 function Stream
982 (Socket : Socket_Type;
983 Send_To : Sock_Addr_Type) return Stream_Access;
984 -- Create a stream associated with a datagram-based socket that is already
985 -- bound. Send_To is the socket address to which messages are being sent.
986
987 function Get_Address
988 (Stream : not null Stream_Access) return Sock_Addr_Type;
989 -- Return the socket address from which the last message was received
990
991 procedure Free is new Ada.Unchecked_Deallocation
992 (Ada.Streams.Root_Stream_Type'Class, Stream_Access);
993 -- Destroy a stream created by one of the Stream functions above,
994 -- releasing the corresponding resources. The user is responsible for
995 -- calling this subprogram when the stream is not needed anymore.
996
997 type Socket_Set_Type is limited private;
998 -- This type allows to manipulate sets of sockets. It allows to wait for
999 -- events on multiple endpoints at one time. This type used to contain
1000 -- a pointer to dynamically allocated storage, but this is not the case
1001 -- anymore, and no special precautions are required to avoid memory leaks.
1002
1003 procedure Clear (Item : in out Socket_Set_Type; Socket : Socket_Type);
1004 -- Remove Socket from Item
1005
1006 procedure Copy (Source : Socket_Set_Type; Target : in out Socket_Set_Type);
1007 -- Copy Source into Target as Socket_Set_Type is limited private
1008
1009 procedure Empty (Item : in out Socket_Set_Type);
1010 -- Remove all Sockets from Item
1011
1012 procedure Get (Item : in out Socket_Set_Type; Socket : out Socket_Type);
1013 -- Extract a Socket from socket set Item. Socket is set to
1014 -- No_Socket when the set is empty.
1015
1016 function Is_Empty (Item : Socket_Set_Type) return Boolean;
1017 -- Return True iff Item is empty
1018
1019 function Is_Set
1020 (Item : Socket_Set_Type;
1021 Socket : Socket_Type) return Boolean;
1022 -- Return True iff Socket is present in Item
1023
1024 procedure Set (Item : in out Socket_Set_Type; Socket : Socket_Type);
1025 -- Insert Socket into Item
1026
1027 function Image (Item : Socket_Set_Type) return String;
1028 -- Return a printable image of Item, for debugging purposes
1029
1030 -- The select(2) system call waits for events to occur on any of a set of
1031 -- file descriptors. Usually, three independent sets of descriptors are
1032 -- watched (read, write and exception). A timeout gives an upper bound
1033 -- on the amount of time elapsed before select returns. This function
1034 -- blocks until an event occurs. On some platforms, the select(2) system
1035 -- can block the full process (not just the calling thread).
1036 --
1037 -- Check_Selector provides the very same behaviour. The only difference is
1038 -- that it does not watch for exception events. Note that on some
1039 -- platforms it is kept process blocking on purpose. The timeout parameter
1040 -- allows the user to have the behaviour he wants. Abort_Selector allows
1041 -- to abort safely a Check_Selector that is blocked forever. A special
1042 -- file descriptor is opened by Create_Selector and included in each call
1043 -- to Check_Selector. Abort_Selector causes an event to occur on this
1044 -- descriptor in order to unblock Check_Selector. The user must call
1045 -- Close_Selector to discard this special file. A reason to abort a select
1046 -- operation is typically to add a socket in one of the socket sets when
1047 -- the timeout is set to forever.
1048
1049 procedure Create_Selector (Selector : out Selector_Type);
1050 -- Create a new selector
1051
1052 procedure Close_Selector (Selector : in out Selector_Type);
1053 -- Close Selector and all internal descriptors associated; deallocate any
1054 -- associated resources. This subprogram may be called only when there is
1055 -- no other task still using Selector (i.e. still executing Check_Selector
1056 -- or Abort_Selector on this Selector).
1057
1058 procedure Check_Selector
1059 (Selector : in out Selector_Type;
1060 R_Socket_Set : in out Socket_Set_Type;
1061 W_Socket_Set : in out Socket_Set_Type;
1062 Status : out Selector_Status;
1063 Timeout : Selector_Duration := Forever);
1064 -- Return when one Socket in R_Socket_Set has some data to be read or if
1065 -- one Socket in W_Socket_Set is ready to transmit some data. In these
1066 -- cases Status is set to Completed and sockets that are ready are set in
1067 -- R_Socket_Set or W_Socket_Set. Status is set to Expired if no socket was
1068 -- ready after a Timeout expiration. Status is set to Aborted if an abort
1069 -- signal has been received while checking socket status.
1070 -- Note that two different Socket_Set_Type objects must be passed as
1071 -- R_Socket_Set and W_Socket_Set (even if they denote the same set of
1072 -- Sockets), or some event may be lost.
1073 -- Socket_Error is raised when the select(2) system call returns an
1074 -- error condition, or when a read error occurs on the signalling socket
1075 -- used for the implementation of Abort_Selector.
1076
1077 procedure Check_Selector
1078 (Selector : in out Selector_Type;
1079 R_Socket_Set : in out Socket_Set_Type;
1080 W_Socket_Set : in out Socket_Set_Type;
1081 E_Socket_Set : in out Socket_Set_Type;
1082 Status : out Selector_Status;
1083 Timeout : Selector_Duration := Forever);
1084 -- This refined version of Check_Selector allows to watch for exception
1085 -- events (i.e. notifications of out-of-band transmission and reception).
1086 -- As above, all of R_Socket_Set, W_Socket_Set and E_Socket_Set must be
1087 -- different objects.
1088
1089 procedure Abort_Selector (Selector : Selector_Type);
1090 -- Send an abort signal to the selector
1091
1092 type Fd_Set is private;
1093 -- ??? This type must not be used directly, it needs to be visible because
1094 -- it is used in the visible part of GNAT.Sockets.Thin_Common. This is
1095 -- really an inversion of abstraction. The private part of GNAT.Sockets
1096 -- needs to have visibility on this type, but since Thin_Common is a child
1097 -- of Sockets, the type can't be declared there. The correct fix would
1098 -- be to move the thin sockets binding outside of GNAT.Sockets altogether,
1099 -- e.g. by renaming it to GNAT.Sockets_Thin.
1100
1101 private
1102
1103 type Socket_Type is new Integer;
1104 No_Socket : constant Socket_Type := -1;
1105
1106 type Selector_Type is limited record
1107 R_Sig_Socket : Socket_Type := No_Socket;
1108 W_Sig_Socket : Socket_Type := No_Socket;
1109 -- Signalling sockets used to abort a select operation
1110 end record;
1111
1112 pragma Volatile (Selector_Type);
1113
1114 type Fd_Set is
1115 new System.Storage_Elements.Storage_Array (1 .. SOSC.SIZEOF_fd_set);
1116 for Fd_Set'Alignment use Interfaces.C.long'Alignment;
1117 -- Set conservative alignment so that our Fd_Sets are always adequately
1118 -- aligned for the underlying data type (which is implementation defined
1119 -- and may be an array of C long integers).
1120
1121 type Fd_Set_Access is access all Fd_Set;
1122 pragma Convention (C, Fd_Set_Access);
1123 No_Fd_Set_Access : constant Fd_Set_Access := null;
1124
1125 type Socket_Set_Type is record
1126 Last : Socket_Type := No_Socket;
1127 Set : aliased Fd_Set;
1128 end record;
1129
1130 subtype Inet_Addr_Comp_Type is Natural range 0 .. 255;
1131 -- Octet for Internet address
1132
1133 type Inet_Addr_VN_Type is array (Natural range <>) of Inet_Addr_Comp_Type;
1134
1135 subtype Inet_Addr_V4_Type is Inet_Addr_VN_Type (1 .. 4);
1136 subtype Inet_Addr_V6_Type is Inet_Addr_VN_Type (1 .. 16);
1137
1138 type Inet_Addr_Type (Family : Family_Type := Family_Inet) is record
1139 case Family is
1140 when Family_Inet =>
1141 Sin_V4 : Inet_Addr_V4_Type := (others => 0);
1142
1143 when Family_Inet6 =>
1144 Sin_V6 : Inet_Addr_V6_Type := (others => 0);
1145 end case;
1146 end record;
1147
1148 Any_Port : constant Port_Type := 0;
1149 No_Port : constant Port_Type := 0;
1150
1151 Any_Inet_Addr : constant Inet_Addr_Type :=
1152 (Family_Inet, (others => 0));
1153 No_Inet_Addr : constant Inet_Addr_Type :=
1154 (Family_Inet, (others => 0));
1155 Broadcast_Inet_Addr : constant Inet_Addr_Type :=
1156 (Family_Inet, (others => 255));
1157
1158 No_Sock_Addr : constant Sock_Addr_Type := (Family_Inet, No_Inet_Addr, 0);
1159
1160 Max_Name_Length : constant := 64;
1161 -- The constant MAXHOSTNAMELEN is usually set to 64
1162
1163 subtype Name_Index is Natural range 1 .. Max_Name_Length;
1164
1165 type Name_Type
1166 (Length : Name_Index := Max_Name_Length)
1167 is record
1168 Name : String (1 .. Length);
1169 end record;
1170 -- We need fixed strings to avoid access types in host entry type
1171
1172 type Name_Array is array (Natural range <>) of Name_Type;
1173 type Inet_Addr_Array is array (Natural range <>) of Inet_Addr_Type;
1174
1175 type Host_Entry_Type (Aliases_Length, Addresses_Length : Natural) is record
1176 Official : Name_Type;
1177 Aliases : Name_Array (1 .. Aliases_Length);
1178 Addresses : Inet_Addr_Array (1 .. Addresses_Length);
1179 end record;
1180
1181 type Service_Entry_Type (Aliases_Length : Natural) is record
1182 Official : Name_Type;
1183 Aliases : Name_Array (1 .. Aliases_Length);
1184 Port : Port_Type;
1185 Protocol : Name_Type;
1186 end record;
1187
1188 type Request_Flag_Type is mod 2 ** 8;
1189 No_Request_Flag : constant Request_Flag_Type := 0;
1190 Process_Out_Of_Band_Data : constant Request_Flag_Type := 1;
1191 Peek_At_Incoming_Data : constant Request_Flag_Type := 2;
1192 Wait_For_A_Full_Reception : constant Request_Flag_Type := 4;
1193 Send_End_Of_Record : constant Request_Flag_Type := 8;
1194
1195 end GNAT.Sockets;