mirror of
https://github.com/moparisthebest/socat
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223 lines
8.3 KiB
Plaintext
223 lines
8.3 KiB
Plaintext
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This file should help you to add new address types and address options to
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socat.
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NOTE:
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socat will in future releases be split into a library "libxio" containing all
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the address stuff, useful also for many other purposes, and the socat main()
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and data shuffler. If you intend to perform major changes to the xio part and
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to publish them, please contact me before!
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ADDING A NEW ADDRESS TYPE:
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* Create new files xio-newaddr.c and xio-newaddr.h
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* Create a new record of struct addrdesc in xio-newaddr.c, with declaration in xio-newaddr.h.
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* Make a new entry to addressnames[] in xioopen.c with the addresses main name
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and maybe with alias names. Keep this array ASCII sorted, without uppercase
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chars.
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* config.h.in: #undef WITH_NEWADDR
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* configure.in: Copy the disable part of, e.g., WITH_SOCKS4 and adapt it to
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NEWADDR
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* In socat.c, add to socat_version
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* Write a function xioopen_newaddr() in xio-newaddr.c, declaration in
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xio-newaddr.h
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Do not forget the following option processing calls:
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All groups: _xio_openlate()
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Group FD: applyopts_cloexec()
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Group NAMED: applyopts_file() for phases PREOPEN, OPEN, and FD
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* Describe a tested example in file EXAMPLES, and maybe in the socat manpage
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source.
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* Try to define a test for this address type in test.sh
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* Update file CHANGES
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ADDING A NEW ADDRESS OPTION:
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xioopen.c:
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* If this option depends on a #define that is probably not available on all
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platforms, make all new code for this option dependent on the existence of this
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C header define:
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#ifdef PREFIX_NEWOPTION
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...
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#endif
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* Add an OPT_NEWOPTION to enum e_optcode in xioopts.h, preferably keeping
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alphabetic order
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* Add a struct optdesc opt_newoption record in xio-newaddr.c and its
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declaration in xio-newaddr.h. The complete structure definition must be in one
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line without breaks for automatic docu extraction.
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Build the record from the following components:
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. A canonical default name (e.g. "newoption")
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. A short, preferable name (e.g. "newopt") or NULL
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. OPT_NEWOPTION (from enum e_optcode, see above)
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. A group membership that restricts appliance of the new option to matching
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address types (e.g., one of GROUP_ANY, GROUP_IP_TCP, GROUP_EXEC)
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. A phase specification that positions this option within address processing.
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Note that the function code can override this value.
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. A representation type for option arguments (e.g., TYPE_INT, TYPE_STRING etc.;
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use TYPE_BOOL if this option just triggers an action)
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. A function or action definition for applying this option. If it does not use
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one of the standard functions (open(), ioctl(), setsockopt()...), then use
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OFUNC_SPEC (specific).
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* For the canonical name and all its aliases and abbreviations, add entries to
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the array optionnames in xioopts.c. KEEP STRICT ALPHABETIC (ASCII) ORDER!
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The entries must be embedded in an IF_... macro of their group for conditional
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compiling.
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* For options using some predefined action (see OFUNC above), this might be
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enough - test the option and document it in xio.help!
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For OFUNC_SPEC, it might suffice to add another "case" to the OFUNC_SPEC branch
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in applyopts() in xioopts.c. If you need more special handling, you should try
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to understand the address specific functions and add your code there.
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* If you use system or low level C library calls or library calls that might
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hang or induce problems, please invoke them with capitalized name; if no such
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name is defined, add an appropriate debug function to sycls.c, and a header
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entry and a wrapper "define" to sycls.h
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* Update file CHANGES
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INFO ABOUT ADDRESS PHASES:
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Each option entry has a field specifying a default phase for its application.
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Of course, the code that analyses and applies an address may override this
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default phase.
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Depending on the type of address there are several major phase sequences:
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OPEN addresses:
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PH_INIT retrieving info from original state
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PH_EARLY before any other processing
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PH_PREOPEN before file creation/opening (not UNIX sockets)
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PH_OPEN during file creation/opening (not UNIX sockets)
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PH_PASTOPEN past file creation/opening (not UNIX sockets)
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PH_FD soon after FD creation or identification
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PH_LATE FD is ready, before start of data loop
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PH_LATE2 FD is ready, dropping privileges
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SOCKET addresses:
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PH_INIT retrieving info from original state
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PH_EARLY before any other processing
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PH_PRESOCKET before socket call
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PH_SOCKET for socket call
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PH_PASTSOCKET after socket call
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PH_FD soon after FD creation or identification
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PH_PREBIND before socket bind()
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PH_BIND during socket bind()
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PH_PASTBIND past socket bind()
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PH_PRECONNECT before connect()
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PH_CONNECT during connect()
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PH_PASTCONNECT after connect()
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PH_CONNECTED phase common with listen
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PH_LATE FD is ready, before start of data loop
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PH_LATE2 FD is ready, dropping privileges
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SOCKET with LISTEN and ACCEPT:
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PH_INIT retrieving info from original state
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PH_EARLY before any other processing
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PH_PRESOCKET before socket call
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PH_SOCKET for socket call
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PH_PREBIND before socket bind()
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PH_BIND during socket bind()
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PH_PASTBIND past socket bind()
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PH_PRELISTEN before listen()
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PH_LISTEN during listen()
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PH_PASTLISTEN after listen()
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PH_PREACCEPT before accept()
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PH_ACCEPT during accept()
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PH_PASTACCEPT after accept()
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# and the following on the new FD:
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PH_FD soon after FD creation or identification
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PH_PASTSOCKET after socket call
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PH_CONNECTED phase common with connect
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PH_PREFORK before forking
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PH_FORK during fork()
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PH_PASTFORK after fork()
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PH_LATE FD is ready, before start of data loop
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PH_LATE2 FD is ready, dropping privileges
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FD addresses:
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PH_INIT retrieving info from original state
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PH_EARLY before any other processing
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PH_FD soon after FD identification
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PH_LATE FD is ready, before start of data loop
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PH_LATE2 FD is ready, dropping privileges
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EXEC addresses:
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PH_INIT retrieving info from original state
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PH_EARLY before any other processing
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PH_PREBIGEN before socketpair() pipe() openpty()
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PH_BIGEN during socketpair() pipe() openpty()
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PH_PASTBIGEN past socketpair() pipe() openpty()
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PH_PASTSOCKET for socketpair()
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PH_FD soon after FD creation or identification
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PH_PREFORK before forking
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PH_FORK during fork()
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PH_PASTFORK after fork()
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PH_LATE FD is ready, before start of data loop
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PH_LATE2 FD is ready, dropping privileges
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PH_PREEXEC before exec() or system()
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PH_EXEC during exec() or system()
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There are lots of semantic relations between group, phase, and func fields of
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an option.
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There exists something like an overall phase sequence:
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PH_INIT # su-d.1
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PH_EARLY # chroot-early
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PH_PREOPEN, PH_OPEN, PH_PASTOPEN # (chroot before/after?)
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PH_PRESOCKET, PH_SOCKET, PH_PASTSOCKET # (su after (root for raw)?)
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PH_PREBIGEN, PH_BIGEN, PH_PASTBIGEN # (chroot before/after (/dev..)?)
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PH_FD
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PH_PREBIND, PH_BIND, PH_PASTBIND # (su after(before?))
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PH_PRELISTEN, PH_LISTEN, PH_PASTLISTEN
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PH_PRECONNECT, PH_CONNECT, PH_PASTCONNECT # (chroot before/after (AF_UNIX)?)
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PH_PREACCEPT, PH_ACCEPT, PH_PASTACCEPT
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PH_CONNECTED
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PH_PREFORK, PH_FORK, PH_PASTFORK # (all before/after?)
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PH_LATE # chroot
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PH_LATE2 # su, su-d.2
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PH_PREEXEC, PH_EXEC # (all before)
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===============================================================================
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// Up to 1.7.2.4 socat used non async signal safe system and library calls in signal handlers, mostly for logging purposes. This problem was fixed in release 1.7.3.0 with the following concepts:
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Signal handlers set on entry and unset on return the diag_in_handler global variable. The logging system, when this variable is set, queues the text message together with errno and exit info in a UNIX datagram socket. When invoked with unset diag_in_handler it first checks if there are messages in that queue and prints them first.
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A async signal safe but minimal version of vsnprintf, named vsnprintf_r, was written so no value arguments need to be queued.
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Because strerror is not async signal safe a new function snprinterr was written that replaces the (glibc compatible) %m format with strerror output. The original errno is passed in the message queue, snprinterr is called when dequeuing messages outside of signal handler.
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// List of signal handlers in socat
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socat.c:socat_signal (generic, just logs and maybe exits)
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xioshutdown.c:signal_kill_pid (SIGALRM, kill child process)
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xiosigchld.c:childdied (SIGCHLD: get info, log; possibly close channel)
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xiosignal.c:socatsignalpass: cascades signal to channel child processes; w/ options sighup,sigint,sigquit
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xio-socket.c:xiosigaction_hasread: SIGUSR1,SIGCHLD, tells parent that datagram has been consumed
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