This commit was manufactured by cvs2svn to create tag 'tor-0_0_4'.

svn:r1343
This commit is contained in:
(no author)
2004-03-26 22:28:16 +00:00
parent a27b2326b9
commit 42e2544eec
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Makefile
Makefile.in
aclocal.m4
configure
orconfig.h
orconfig.h.in
config.cache
config.log
config.status
conftest*
stamp-h
stamp-h1
tor.sh
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Main authors:
-------------
Roger Dingledine <arma@freehaven.net> overhauled all of the code, did
a bunch of new design work, etc.
Nick Mathewson <nickm@freehaven.net> wrote lots of stuff too, in
particular the router and descriptor parsing, and the crypto and tls
wrappers.
Matej Pfajfar <badbytes@freehaven.net> wrote the first version of the code
(called OR) in 2001-2002.
Contributors:
-------------
John Bashinski <jbash@velvet.com> contributed the initial rpm spec file.
Christian Grothoff <grothoff@cs.purdue.edu> contributed better daemonizing
behavior.
Steven Hazel <sah@thalassocracy.org> made 'make install' do the right
thing.
Jason Holt <jason@lunkwill.org> contributed patches to the instructions
and the man page.
Peter Palfrader <peter@palfrader.org> maintains everything that's
debian-specific.
Aaron Turner <aturner@netscreen.com> contributed the first version of
the tor.sh initscripts shell script.
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Changes in version 0.0.4 - 2004-03-26
o When connecting to a dirserver or OR and the network is down,
we would crash.
Changes in version 0.0.3 - 2004-03-26
o Warn and fail if server chose a nickname with illegal characters
o Port to Solaris and Sparc:
- include missing header fcntl.h
- have autoconf find -lsocket -lnsl automatically
- deal with hardware word alignment
- make uname() work (solaris has a different return convention)
- switch from using signal() to sigaction()
o Preliminary work on reputation system:
- Keep statistics on success/fail of connect attempts; they're published
by kill -USR1 currently.
- Add a RunTesting option to try to learn link state by creating test
circuits, even when SocksPort is off.
- Remove unused open circuits when there are too many.
Changes in version 0.0.2 - 2004-03-19
- Include strlcpy and strlcat for safer string ops
- define INADDR_NONE so we compile (but still not run) on solaris
Changes in version 0.0.2pre27 - 2004-03-14
o Bugfixes:
- Allow internal tor networks (we were rejecting internal IPs,
now we allow them if they're set explicitly).
- And fix a few endian issues.
Changes in version 0.0.2pre26 - 2004-03-14
o New features:
- If a stream times out after 15s without a connected cell, don't
try that circuit again: try a new one.
- Retry streams at most 4 times. Then give up.
- When a dirserver gets a descriptor from an unknown router, it
logs its fingerprint (so the dirserver operator can choose to
accept it even without mail from the server operator).
- Inform unapproved servers when we reject their descriptors.
- Make tor build on Windows again. It works as a client, who knows
about as a server.
- Clearer instructions in the torrc for how to set up a server.
- Be more efficient about reading fd's when our global token bucket
(used for rate limiting) becomes empty.
o Bugfixes:
- Stop asserting that computers always go forward in time. It's
simply not true.
- When we sent a cell (e.g. destroy) and then marked an OR connection
expired, we might close it before finishing a flush if the other
side isn't reading right then.
- Don't allow dirservers to start if they haven't defined
RecommendedVersions
- We were caching transient dns failures. Oops.
- Prevent servers from publishing an internal IP as their address.
- Address a strcat vulnerability in circuit.c
Changes in version 0.0.2pre25 - 2004-03-04
o New features:
- Put the OR's IP in its router descriptor, not its fqdn. That way
we'll stop being stalled by gethostbyname for nodes with flaky dns,
e.g. poblano.
o Bugfixes:
- If the user typed in an address that didn't resolve, the server
crashed.
Changes in version 0.0.2pre24 - 2004-03-03
o Bugfixes:
- Fix an assertion failure in dns.c, where we were trying to dequeue
a pending dns resolve even if it wasn't pending
- Fix a spurious socks5 warning about still trying to write after the connection is finished.
- Hold certain marked_for_close connections open until they're finished
flushing, rather than losing bytes by closing them too early.
- Correctly report the reason for ending a stream
- Remove some duplicate calls to connection_mark_for_close
- Put switch_id and start_daemon earlier in the boot sequence, so it
will actually try to chdir() to options.DataDirectory
- Make 'make test' exit(1) if a test fails; fix some unit tests
- Make tor fail when you use a config option it doesn't know about,
rather than warn and continue.
- Make --version work
- Bugfixes on the rpm spec file and tor.sh, so it's more up to date
Changes in version 0.0.2pre23 - 2004-02-29
o New features:
- Print a statement when the first circ is finished, so the user
knows it's working.
- If a relay cell is unrecognized at the end of the circuit,
send back a destroy. (So attacks to mutate cells are more
clearly thwarted.)
- New config option 'excludenodes' to avoid certain nodes for circuits.
- When it daemonizes, it chdir's to the DataDirectory rather than "/",
so you can collect coredumps there.
o Bugfixes:
- Fix a bug in tls flushing where sometimes data got wedged and
didn't flush until more data got sent. Hopefully this bug was
a big factor in the random delays we were seeing.
- Make 'connected' cells include the resolved IP, so the client
dns cache actually gets populated.
- Disallow changing from ORPort=0 to ORPort>0 on hup.
- When we time-out on a stream and detach from the circuit, send an
end cell down it first.
- Only warn about an unknown router (in exitnodes, entrynodes,
excludenodes) after we've fetched a directory.
Changes in version 0.0.2pre22 - 2004-02-26
o New features:
- Servers publish less revealing uname information in descriptors.
- More memory tracking and assertions, to crash more usefully when
errors happen.
- If the default torrc isn't there, just use some default defaults.
Plus provide an internal dirservers file if they don't have one.
- When the user tries to use Tor as an http proxy, give them an http
501 failure explaining that we're a socks proxy.
- Dump a new router.desc on hup, to help confused people who change
their exit policies and then wonder why router.desc doesn't reflect
it.
- Clean up the generic tor.sh init script that we ship with.
o Bugfixes:
- If the exit stream is pending on the resolve, and a destroy arrives,
then the stream wasn't getting removed from the pending list. I
think this was the one causing recent server crashes.
- Use a more robust poll on OSX 10.3, since their poll is flaky.
- When it couldn't resolve any dirservers, it was useless from then on.
Now it reloads the RouterFile (or default dirservers) if it has no
dirservers.
- Move the 'tor' binary back to /usr/local/bin/ -- it turns out
many users don't even *have* a /usr/local/sbin/.
Changes in version 0.0.2pre21 - 2004-02-18
o New features:
- There's a ChangeLog file that actually reflects the changelog.
- There's a 'torify' wrapper script, with an accompanying
tor-tsocks.conf, that simplifies the process of using tsocks for
tor. It even has a man page.
- The tor binary gets installed to sbin rather than bin now.
- Retry streams where the connected cell hasn't arrived in 15 seconds
- Clean up exit policy handling -- get the default out of the torrc, so we can update it without forcing each server operator to fix
his/her torrc.
- Allow imaps and pop3s in default exit policy
o Bugfixes:
- Prevent picking middleman nodes as the last node in the circuit
Changes in version 0.0.2pre20 - 2004-01-30
o New features:
- We now have a deb package, and it's in debian unstable. Go to
it, apt-getters. :)
- I've split the TotalBandwidth option into BandwidthRate (how many
bytes per second you want to allow, long-term) and
BandwidthBurst (how many bytes you will allow at once before the cap
kicks in). This better token bucket approach lets you, say, set
BandwidthRate to 10KB/s and BandwidthBurst to 10MB, allowing good
performance while not exceeding your monthly bandwidth quota.
- Push out a tls record's worth of data once you've got it, rather
than waiting until you've read everything waiting to be read. This
may improve performance by pipelining better. We'll see.
- Add an AP_CONN_STATE_CONNECTING state, to allow streams to detach
from failed circuits (if they haven't been connected yet) and attach
to new ones.
- Expire old streams that haven't managed to connect. Some day we'll
have them reattach to new circuits instead.
o Bugfixes:
- Fix several memory leaks that were causing servers to become bloated
after a while.
- Fix a few very rare assert triggers. A few more remain.
- Setuid to User _before_ complaining about running as root.
Changes in version 0.0.2pre19 - 2004-01-07
o Bugfixes:
- Fix deadlock condition in dns farm. We were telling a child to die by
closing the parent's file descriptor to him. But newer children were
inheriting the open file descriptor from the parent, and since they
weren't closing it, the socket never closed, so the child never read
eof, so he never knew to exit. Similarly, dns workers were holding
open other sockets, leading to all sorts of chaos.
- New cleaner daemon() code for forking and backgrounding.
- If you log to a file, it now prints an entry at the top of the
logfile so you know it's working.
- The onionskin challenge length was 30 bytes longer than necessary.
- Started to patch up the spec so it's not quite so out of date.
Changes in version 0.0.2pre18 - 2004-01-02
o Bugfixes:
- Fix endian issues with the 'integrity' field in the relay header.
- Fix a potential bug where connections in state
AP_CONN_STATE_CIRCUIT_WAIT might unexpectedly ask to write.
Changes in version 0.0.2pre17 - 2003-12-30
o Bugfixes:
- Made --debuglogfile (or any second log file, actually) work.
- Resolved an edge case in get_unique_circ_id_by_conn where a smart
adversary could force us into an infinite loop.
o Features:
- Each onionskin handshake now includes a hash of the computed key,
to prove the server's identity and help perfect forward secrecy.
- Changed cell size from 256 to 512 bytes (working toward compatibility
with MorphMix).
- Changed cell length to 2 bytes, and moved it to the relay header.
- Implemented end-to-end integrity checking for the payloads of
relay cells.
- Separated streamid from 'recognized' (otherwise circuits will get
messed up when we try to have streams exit from the middle). We
use the integrity-checking to confirm that a cell is addressed to
this hop.
- Randomize the initial circid and streamid values, so an adversary who
breaks into a node can't learn how many circuits or streams have
been made so far.
Changes in version 0.0.2pre16 - 2003-12-14
o Bugfixes:
- Fixed a bug that made HUP trigger an assert
- Fixed a bug where a circuit that immediately failed wasn't being
counted as a failed circuit in counting retries.
o Features:
- Now we close the circuit when we get a truncated cell: otherwise we're
open to an anonymity attack where a bad node in the path truncates
the circuit and then we open streams at him.
- Add port ranges to exit policies
- Add a conservative default exit policy
- Warn if you're running tor as root
- on HUP, retry OR connections and close/rebind listeners
- options.EntryNodes: try these nodes first when picking the first node
- options.ExitNodes: if your best choices happen to include any of
your preferred exit nodes, you choose among just those preferred
exit nodes.
- options.ExcludedNodes: nodes that are never picked in path building
Changes in version 0.0.2pre15 - 2003-12-03
o Robustness and bugfixes:
- Sometimes clients would cache incorrect DNS resolves, which would
really screw things up.
- An OP that goes offline would slowly leak all its sockets and stop
working.
- A wide variety of bugfixes in exit node selection, exit policy
handling, and processing pending streams when a new circuit is
established.
- Pick nodes for a path only from those the directory says are up
- Choose randomly from all running dirservers, not always the first one
- Increase allowed http header size for directory fetch.
- Stop writing to stderr (if we're daemonized it will be closed).
- Enable -g always, so cores will be more useful to me.
- Switch "-lcrypto -lssl" to "-lssl -lcrypto" for broken distributions.
o Documentation:
- Wrote a man page. It lists commonly used options.
o Configuration:
- Change default loglevel to warn.
- Make PidFile default to null rather than littering in your CWD.
- OnionRouter config option is now obsolete. Instead it just checks
ORPort>0.
- Moved to a single unified torrc file for both clients and servers.
Changes in version 0.0.2pre14 - 2003-11-29
o Robustness and bugfixes:
- Force the admin to make the DataDirectory himself
- to get ownership/permissions right
- so clients no longer make a DataDirectory and then never use it
- fix bug where a client who was offline for 45 minutes would never
pull down a directory again
- fix (or at least hide really well) the dns assert bug that was
causing server crashes
- warnings and improved robustness wrt clockskew for certs
- use the native daemon(3) to daemonize, when available
- exit if bind() fails
- exit if neither socksport nor orport is defined
- include our own tor_timegm (Win32 doesn't have its own)
- bugfix for win32 with lots of connections
- fix minor bias in PRNG
- make dirserver more robust to corrupt cached directory
o Documentation:
- Wrote the design document (woo)
o Circuit building and exit policies:
- Circuits no longer try to use nodes that the directory has told them
are down.
- Exit policies now support bitmasks (18.0.0.0/255.0.0.0) and
bitcounts (18.0.0.0/8).
- Make AP connections standby for a circuit if no suitable circuit
exists, rather than failing
- Circuits choose exit node based on addr/port, exit policies, and
which AP connections are standing by
- Bump min pathlen from 2 to 3
- Relay end cells have a payload to describe why the stream ended.
- If the stream failed because of exit policy, try again with a new
circuit.
- Clients have a dns cache to remember resolved addresses.
- Notice more quickly when we have no working circuits
o Configuration:
- APPort is now called SocksPort
- SocksBindAddress, ORBindAddress, DirBindAddress let you configure
where to bind
- RecommendedVersions is now a config variable rather than
hardcoded (for dirservers)
- Reloads config on HUP
- Usage info on -h or --help
- If you set User and Group config vars, it'll setu/gid to them.
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Quickstart version for users:
0) Download the absolute newest version. No, really.
http://freehaven.net/tor/dist/
1) tar xvf it, and then cd into the directory.
2) ./configure
3) make
4) make install (as root if necessary)
5) tor (if it doesn't work, give it the whole path or fix your path)
You don't need to run this as root, and you probably shouldn't.
(If you're having problems, try running it with "-l info" to get
more details.)
6) point your browser to socks4 or socks5 proxy at localhost port
9050. In mozilla, this is in edit|preferences|advanced|proxies. This
allows you to test to make sure tor is installed correctly.
(If you have a personal firewall, be sure to allow local connections
to port 9050.)
(If your firewall blocks outgoing connections, punch a hole so it
can connect to TCP *:9001-9004 and *:9031-9033)
(If you're using Safari as your browser, keep in mind that OS X before
10.3 claims to support socks but does not. You must do step 8.)
7) make sure you've set it up correctly: go to
http://www.junkbusters.com/cgi-bin/privacy and see what IP it says
you're coming from. If it works, you should probably go on to step 8,
to get better privacy.
8) Optionally, install privoxy (www.privoxy.org), and add the line
"forward-socks4a / localhost:9050 ." (without the quotes -- don't forget
the dot) to its config file. Then change your mozilla to http proxy
at localhost port 8118 (and no socks proxy). This step will give you
good html scrubbing as well.
(See doc/CLIENTS for why direct socks gives you less anonymity.)
*****If this works for you, you can stop reading here******
If you got the source from cvs:
Run "./autogen.sh", which will run the various auto* programs and then
run ./configure for you. From there, start at step 3 in the quickstart
list above.
If the quickstart doesn't work for you:
If you have problems finding libraries, try
CPPFLAGS="-I/usr/local/include" LDFLAGS="-L/usr/local/lib" \
./configure
rather than simply ./configure.
Check out the list archives at http://archives.seul.org/or/dev/ and see
if somebody else has reported your problem. If not, please subscribe
and let us know what you did to fix it, or give us the details and
we'll see what we can do.
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Copyright (c) 2001-2004, Roger Dingledine
Redistribution and use in source and binary forms, with or without
modification, are permitted provided that the following conditions are
met:
* Redistributions of source code must retain the above copyright
notice, this list of conditions and the following disclaimer.
* Redistributions in binary form must reproduce the above
copyright notice, this list of conditions and the following disclaimer
in the documentation and/or other materials provided with the
distribution.
* Neither the names of the copyright owners nor the names of its
contributors may be used to endorse or promote products derived from
this software without specific prior written permission.
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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AUTOMAKE_OPTIONS = foreign
# else it keeps trying to put COPYING back in
SUBDIRS = src doc contrib
DIST_SUBDIRS = src doc contrib
EXTRA_DIST = INSTALL README AUTHORS LICENSE ChangeLog
#install-data-local:
# $(INSTALL) -m 755 -d $(LOCALSTATEDIR)/lib/tor
dist-rpm: dist
rm -rf /tmp/tor-rpm-build
mkdir /tmp/tor-rpm-build
for subdir in BUILD RPMS SOURCES SPECS SRPMS; do \
mkdir /tmp/tor-rpm-build/$$subdir; \
done
cp tor-$(VERSION).tar.gz /tmp/tor-rpm-build/SOURCES
rpmbuild -ba --define '_topdir /tmp/tor-rpm-build' contrib/tor.spec
mv /tmp/tor-rpm-build/*RPMS/* .
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'tor' is an implementation of The Onion Routing system, as
described in a bit more detail at http://www.onion-router.net/. You
can read list archives, and subscribe to the mailing list, at
http://archives.seul.org/or/dev/.
Is your question in the FAQ? Should it be?
**************************************************************************
See the INSTALL file for a quickstart. That is all you will probably need.
**************************************************************************
**************************************************************************
You only need to look beyond this point if the quickstart in the INSTALL
doesn't work for you.
**************************************************************************
Do you want to run a tor server?
First, edit the bottom part of your torrc. Create the DataDirectory,
and make sure it's owned by whoever will be running tor. Fix your system
clock so it's not too far off. Make sure name resolution works. Make
sure other people can reliably resolve the Address you chose.
Then run tor to generate keys. One of the files generated
in your DataDirectory is your 'fingerprint' file. Mail it to
arma@mit.edu.
NOTE: You won't be able to use tor as a client or server
in this configuration until you've been added to the directory
and can authenticate to the other nodes.
Configuring tsocks:
If you want to use Tor for protocols that can't use Privoxy, or
with applications that are not socksified, then download tsocks
(tsocks.sourceforge.net) and configure it to talk to localhost:9050
as a socks4 server. My /etc/tsocks.conf simply has:
server_port = 9050
server = 127.0.0.1
(I had to "cd /usr/lib; ln -s /lib/libtsocks.so" to get the tsocks
library working after install, since my libpath didn't include /lib.)
Then you can do "tsocks ssh arma@moria.mit.edu". But note that if
ssh is suid root, you either need to do this as root, or cp a local
version of ssh that isn't suid.
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# End Source File
# Begin Source File
SOURCE=..\..\src\or\routerlist.c
# End Source File
# Begin Source File
SOURCE=..\..\src\or\tor_main.c
# End Source File
# Begin Source File
SOURCE=..\..\src\common\tortls.c
# End Source File
# Begin Source File
SOURCE=..\..\src\common\util.c
# End Source File
# End Group
# Begin Group "Header Files"
# PROP Default_Filter "h;hpp;hxx;hm;inl"
# Begin Source File
SOURCE=..\..\src\common\aes.h
# End Source File
# Begin Source File
SOURCE=..\..\src\common\crypto.h
# End Source File
# Begin Source File
SOURCE=..\..\src\common\fakepoll.h
# End Source File
# Begin Source File
SOURCE=..\..\src\common\log.h
# End Source File
# Begin Source File
SOURCE=..\..\src\or\or.h
# End Source File
# Begin Source File
SOURCE=..\..\src\win32\orconfig.h
# End Source File
# Begin Source File
SOURCE=..\..\src\common\test.h
# End Source File
# Begin Source File
SOURCE=..\..\src\common\torint.h
# End Source File
# Begin Source File
SOURCE=..\..\src\common\tortls.h
# End Source File
# Begin Source File
SOURCE=..\..\src\or\tree.h
# End Source File
# Begin Source File
SOURCE=..\..\src\common\util.h
# End Source File
# End Group
# Begin Group "Resource Files"
# PROP Default_Filter "ico;cur;bmp;dlg;rc2;rct;bin;rgs;gif;jpg;jpeg;jpe"
# End Group
# End Target
# End Project
+29
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Microsoft Developer Studio Workspace File, Format Version 6.00
# WARNING: DO NOT EDIT OR DELETE THIS WORKSPACE FILE!
###############################################################################
Project: "or"=".\or.dsp" - Package Owner=<4>
Package=<5>
{{{
}}}
Package=<4>
{{{
}}}
###############################################################################
Global:
Package=<5>
{{{
}}}
Package=<3>
{{{
}}}
###############################################################################
+29
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@@ -0,0 +1,29 @@
Microsoft Developer Studio Workspace File, Format Version 6.00
# WARNING: DO NOT EDIT OR DELETE THIS WORKSPACE FILE!
###############################################################################
Project: "or"="..\or\or.dsp" - Package Owner=<4>
Package=<5>
{{{
}}}
Package=<4>
{{{
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###############################################################################
Global:
Package=<5>
{{{
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Package=<3>
{{{
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###############################################################################
+5
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@@ -0,0 +1,5 @@
#!/bin/sh
# Run this to generate all the initial makefiles, etc.
aclocal && autoheader && autoconf && automake
./configure
+205
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@@ -0,0 +1,205 @@
AC_INIT
AM_INIT_AUTOMAKE(tor, 0.0.4)
AM_CONFIG_HEADER(orconfig.h)
CFLAGS="$CFLAGS -Wall -g -O2 -I/usr/kerberos/include"
AC_ARG_ENABLE(debug,
[ --enable-debug compiles with debugging info],
[if test x$enableval = xyes; then
CFLAGS="$CFLAGS -g"
fi])
AC_PROG_CC
AC_PROG_MAKE_SET
AC_PROG_RANLIB
# The big search for OpenSSL
# copied from openssh's configure.ac
AC_ARG_WITH(ssl-dir,
[ --with-ssl-dir=PATH Specify path to OpenSSL installation ],
[
if test "x$withval" != "xno" ; then
tryssldir=$withval
fi
]
)
AC_SEARCH_LIBS(socket, [socket])
AC_SEARCH_LIBS(gethostbyname, [nsl])
saved_LIBS="$LIBS"
saved_LDFLAGS="$LDFLAGS"
saved_CPPFLAGS="$CPPFLAGS"
if test "x$prefix" != "xNONE" ; then
tryssldir="$tryssldir $prefix"
fi
AC_CACHE_CHECK([for OpenSSL directory], ac_cv_openssldir, [
for ssldir in $tryssldir "" /usr/local/openssl /usr/lib/openssl /usr/local/ssl /usr/lib/ssl /usr/local /usr/pkg /opt /opt/openssl ; do
CPPFLAGS="$saved_CPPFLAGS"
LDFLAGS="$saved_LDFLAGS"
LIBS="$saved_LIBS -lssl -lcrypto"
# Skip directories if they don't exist
if test ! -z "$ssldir" -a ! -d "$ssldir" ; then
continue;
fi
if test ! -z "$ssldir" -a "x$ssldir" != "x/usr"; then
# Try to use $ssldir/lib if it exists, otherwise
# $ssldir
if test -d "$ssldir/lib" ; then
LDFLAGS="-L$ssldir/lib $saved_LDFLAGS"
if test ! -z "$need_dash_r" ; then
LDFLAGS="-R$ssldir/lib $LDFLAGS"
fi
else
LDFLAGS="-L$ssldir $saved_LDFLAGS"
if test ! -z "$need_dash_r" ; then
LDFLAGS="-R$ssldir $LDFLAGS"
fi
fi
# Try to use $ssldir/include if it exists, otherwise
# $ssldir
if test -d "$ssldir/include" ; then
CPPFLAGS="-I$ssldir/include $saved_CPPFLAGS"
else
CPPFLAGS="-I$ssldir $saved_CPPFLAGS"
fi
fi
# Basic test to check for compatible version and correct linking
# *does not* test for RSA - that comes later.
AC_TRY_RUN(
[
#include <string.h>
#include <openssl/rand.h>
int main(void)
{
char a[2048];
memset(a, 0, sizeof(a));
RAND_add(a, sizeof(a), sizeof(a));
return(RAND_status() <= 0);
}
],
[
found_crypto=1
break;
], []
)
if test ! -z "$found_crypto" ; then
break;
fi
done
if test -z "$found_crypto" ; then
AC_MSG_ERROR([Could not find working OpenSSL library, please install or check config.log])
fi
if test -z "$ssldir" ; then
ssldir="(system)"
fi
ac_cv_openssldir=$ssldir
])
if (test ! -z "$ac_cv_openssldir" && test "x$ac_cv_openssldir" != "x(system)") ;
then
dnl Need to recover ssldir - test above runs in subshell
ssldir=$ac_cv_openssldir
if test ! -z "$ssldir" -a "x$ssldir" != "x/usr"; then
# Try to use $ssldir/lib if it exists, otherwise
# $ssldir
if test -d "$ssldir/lib" ; then
LDFLAGS="-L$ssldir/lib $saved_LDFLAGS"
if test ! -z "$need_dash_r" ; then
LDFLAGS="-R$ssldir/lib $LDFLAGS"
fi
else
LDFLAGS="-L$ssldir $saved_LDFLAGS"
if test ! -z "$need_dash_r" ; then
LDFLAGS="-R$ssldir $LDFLAGS"
fi
fi
# Try to use $ssldir/include if it exists, otherwise
# $ssldir
if test -d "$ssldir/include" ; then
CPPFLAGS="-I$ssldir/include $saved_CPPFLAGS"
else
CPPFLAGS="-I$ssldir $saved_CPPFLAGS"
fi
fi
fi
LIBS="$saved_LIBS -lssl -lcrypto"
dnl The warning message here is no longer strictly accurate.
AC_CHECK_HEADERS(unistd.h string.h signal.h netdb.h ctype.h poll.h sys/stat.h sys/poll.h sys/types.h fcntl.h sys/fcntl.h sys/ioctl.h sys/socket.h sys/time.h netinet/in.h arpa/inet.h errno.h assert.h time.h pwd.h grp.h, , AC_MSG_WARN(some headers were not found, compilation may fail))
dnl These headers are not essential
AC_CHECK_HEADERS(stdint.h sys/types.h inttypes.h sys/wait.h netinet/in.h arpa/inet.h)
AC_CHECK_FUNCS(gettimeofday ftime socketpair uname inet_aton strptime)
AC_REPLACE_FUNCS(strlcat strlcpy)
dnl In case we aren't given a working stdint.h, we'll need to grow our own.
dnl Watch out.
AC_CHECK_SIZEOF(int8_t)
AC_CHECK_SIZEOF(int16_t)
AC_CHECK_SIZEOF(int32_t)
AC_CHECK_SIZEOF(int64_t)
AC_CHECK_SIZEOF(uint8_t)
AC_CHECK_SIZEOF(uint16_t)
AC_CHECK_SIZEOF(uint32_t)
AC_CHECK_SIZEOF(uint64_t)
dnl AC_CHECK_TYPES([int8_t, int16_t, int32_t, int64_t, uint8_t, uint16_t, uint32_t, uint64_t])
AC_CHECK_SIZEOF(char)
AC_CHECK_SIZEOF(short)
AC_CHECK_SIZEOF(int)
AC_CHECK_SIZEOF(long)
AC_CHECK_SIZEOF(long long)
AC_CHECK_SIZEOF(__int64)
# Now, let's see about alignment requirements
AC_CACHE_CHECK([whether unaligned int access is allowed], tor_cv_unaligned_ok,
[AC_RUN_IFELSE([AC_LANG_SOURCE(
[[int main () { char s[] = "A\x00\x00\x00\x00\x00\x00\x00";
return *(int*)(&s[1]); }]])],
[tor_cv_unaligned_ok=yes],
[tor_cv_unaligned_ok=no],
[tor_cv_unaligned_ok=cross])])
if test $tor_cv_unaligned_ok = yes; then
AC_DEFINE([UNALIGNED_INT_ACCESS_OK], 1,
[Define to 1 iff unaligned int access is allowed])
fi
# $prefix stores the value of the --prefix command line option, or
# NONE if the option wasn't set. In the case that it wasn't set, make
# it be the default, so that we can use it to expand directories now.
if test "x$prefix" = "xNONE"; then
prefix=$ac_default_prefix
fi
# and similarly for $exec_prefix
if test "x$exec_prefix" = "xNONE"; then
exec_prefix=$prefix
fi
CONFDIR=`eval echo $sysconfdir/tor`
AC_SUBST(CONFDIR)
AC_DEFINE_UNQUOTED(CONFDIR,"$CONFDIR")
AC_DEFINE([CONFDIR], [], [tor's configuration directory])
BINDIR=`eval echo $bindir`
AC_SUBST(BINDIR)
LOCALSTATEDIR=`eval echo $localstatedir`
AC_SUBST(LOCALSTATEDIR)
echo "confdir: $CONFDIR"
AC_OUTPUT(Makefile contrib/tor.sh contrib/torify contrib/Makefile contrib/tor.spec src/config/torrc doc/tor.1 src/Makefile doc/Makefile src/config/Makefile src/common/Makefile src/or/Makefile)
+9
View File
@@ -0,0 +1,9 @@
confdir = $(sysconfdir)/tor
EXTRA_DIST = tor-tsocks.conf torify.1 tor.spec
conf_DATA = tor-tsocks.conf
bin_SCRIPTS = torify
man_MANS = torify.1
+7
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@@ -0,0 +1,7 @@
# This is the configuration for libtsocks (transparent socks) for use
# with tor, which is providing a socks server on port 9050 by default.
#
# See tsocks.conf(5) and torify(1) manpages.
server = 127.0.0.1
server_port = 9050
+95
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@@ -0,0 +1,95 @@
#!/bin/sh
#
#tor The Onion Router
#
#chkconfig:2345 90 10
#description: Onion Router
TORUSER=
TORGROUP=
TORBIN=@BINDIR@/tor
TORPID=@LOCALSTATEDIR@/run/tor/tor.pid
TORLOG=@LOCALSTATEDIR@/log/tor/tor.log
TORCONF=@CONFDIR@/torrc
# Strictly speaking, we don't need to su if we have --user and --group.
# "Belt and suspenders," says jbash.
TORARGS="--pidfile $TORPID --logfile $TORLOG --runasdaemon 1"
if [ "x$TORUSER" != "x" ]; then
TORARGS="$TORARGS --user $TORUSER"
fi
if [ "x$TORGROUP" != "x" ]; then
TORARGS="$TORARGS --group $TORGROUP"
fi
RETVAL=0
case "$1" in
start)
if [ -f $TORPID ]; then
echo "tor appears to be already running (pid file exists)"
echo "Maybe you should run: $0 restart ?"
RETVAL=1
else
echo -n "Starting tor..."
if [ "x$TORUSER" = "x" ]; then
$TORBIN -f $TORCONF $TORARGS
else
/bin/su -c "$TORBIN -f $TORCONF $TORARGS" $TORUSER
fi
RETVAL=$?
if [ $RETVAL -eq 0 ]; then
echo " ok"
else
echo " ERROR!"
fi
fi
;;
stop)
if [ -f $TORPID ]; then
echo -n "Killing tor..."
kill `cat $TORPID`
RETVAL=$?
if [ $RETVAL -eq 0 ]; then
echo " ok"
else
echo " ERROR!"
fi
else
echo "Unable to kill tor: $TORPID does not exist"
RETVAL=1
fi
;;
restart)
$0 stop
if [ -f $TORPID ]; then
rm -f $TORPID
fi
$0 start
;;
status)
PID=`cat $TORPID 2>/dev/null`
if [ "$PID" != "" ]; then
torstat=`ps -p $PID | grep -c "^$PID"`
if [ $torstat ]; then
echo "tor is running ($PID)"
else
echo "tor is not running (looks like it crashed, look for core? $PID)"
fi
else
echo "tor is not running (exited gracefully)"
fi
;;
log)
cat $TORLOG
;;
*)
echo "Usage: $0 (start|stop|restart|status|log)"
exit 1
esac
exit $RETVAL
+137
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@@ -0,0 +1,137 @@
%define rellevel 2
%define relbase std.%{rellevel}
%define rhrel %([ -f /etc/redhat-release ] && (sed -e 's/^Red Hat Linux release //' -e 's/ .*$//' -e 's/\\./_/g' -e 's/^.*$/.rh&/' < /etc/redhat-release))
%define blddate %(date -u +"%Y%m%d%H%M")
%define release %{relbase}%{rhrel}.%{blddate}
%define initdir /etc/rc.d/init.d
Summary: tor: anonymizing overlay network for TCP
Name: tor
Version: @VERSION@
Vendor: R. Dingledine <arma@seul.org>
Release: %{release}
License: BSD-like
Group: Applications/Internet
URL: http://freehaven.net/tor/
Source0: http://freehaven.net/tor/dist/tor-%{version}.tar.gz
Requires(pre): shadow-utils, /usr/bin/id, /bin/date, /bin/sh
Requires(pre): %{_sbindir}/useradd, %{_sbindir}/groupadd
BuildRoot: %{_tmppath}/%{name}-%{version}-%{relbase}-root
%description
Tor is a connection-based low-latency anonymous communication system which
addresses many flaws in the original onion routing design.
In brief, Onion Routing is a connection-oriented anonymizing communication
service. Users choose a source-routed path through a set of nodes, and
negotiate a "virtual circuit" through the network, in which each node
knows its predecessor and successor, but no others. Traffic flowing down
the circuit is unwrapped by a symmetric key at each node, which reveals
the downstream node.
Basically Tor provides a distributed network of servers ("onion
routers"). Users bounce their tcp streams (web traffic, ftp, ssh, etc)
around the routers, and recipients, observers, and even the routers
themselves have difficulty tracking the source of the stream.
Note that Tor does no protocol cleaning. That means there is a danger that
application protocols and associated programs can be induced to reveal
information about the initiator. Tor depends on Privoxy and similar protocol
cleaners to solve this problem.
Client applications can use the Tor network by connecting to the local
onion proxy. If the application itself does not come with socks support
you can use a socks client such as tsocks. Some web browsers like mozilla
and web proxies like privoxy come with socks support, so you don't need an
extra socks client if you want to use Tor with them.
Remember that this is alpha code, and the network is very small -- Tor will
not provide anonymity currently.
This package provides the "tor" program, which serves as both a client
and a relay node. Scripts will automatically create a "tor" user and
group, set tor up to run as a daemon, and automatically start it at
installation time.
%prep
%setup -q
# Patch the startup script to use the right user and group IDs. Force
# the use of /bin/sh as the shell for the "tor" account.
ed -s contrib/tor.sh.in << '/EOF/' > /dev/null
,s/^TORUSER=$/TORUSER=tor/
,s/^TORGROUP=$/TORGROUP=tor/
,s:/bin/su:/bin/su -s /bin/sh:
#
# Save and exit ed
w
q
/EOF/
%build
%configure
%__make
%install
%makeinstall
# Install init script.
%__mkdir_p ${RPM_BUILD_ROOT}%{initdir}
%__install -m 755 contrib/tor.sh ${RPM_BUILD_ROOT}%{initdir}/tor
# Directories that don't have any preinstalled files
%__mkdir_p -m 700 ${RPM_BUILD_ROOT}/var/lib/tor
%__mkdir_p -m 755 ${RPM_BUILD_ROOT}/var/run/tor
%__mkdir_p -m 755 ${RPM_BUILD_ROOT}/var/log/tor
%clean
[ "${RPM_BUILD_ROOT}" != "/" ] && rm -rf ${RPM_BUILD_ROOT}
%pre
[ -f %{initdir}/tor ] && /sbin/service tor stop
if [ ! -n "`/usr/bin/id -g tor 2>/dev/null`" ]; then
# One would like to default the GID, but doing that properly would
# require thought.
%{_sbindir}/groupadd tor 2> /dev/null
fi
if [ ! -n "`/usr/bin/id -u tor 2>/dev/null`" ]; then
# One would also like to default the UID, but doing that properly would
# also require thought.
if [ -x /sbin/nologin ]; then
%{_sbindir}/useradd -r -g tor -d / -s /sbin/nologin tor 2> /dev/null
else
%{_sbindir}/useradd -r -g tor -d / -s /bin/false tor 2> /dev/null
fi
fi
%post
/sbin/chkconfig --add tor
/sbin/chkconfig tor && /sbin/service tor start
%preun
/sbin/chkconfig tor && /sbin/service tor stop
/sbin/chkconfig --del tor
%files
%defattr(-,root,root)
%doc AUTHORS INSTALL LICENSE README
%{_mandir}/man*/*
%{_bindir}/tor
%{_bindir}/torify
%{initdir}/tor
%dir %{_sysconfdir}/tor/
%config(noreplace) %{_sysconfdir}/tor/torrc
%config(noreplace) %{_sysconfdir}/tor/dirservers
%config(noreplace) %{_sysconfdir}/tor/tor-tsocks.conf
%attr(-,tor,tor) %dir /var/lib/tor
%attr(-,tor,tor) %dir /var/run/tor
%attr(-,tor,tor) %dir /var/log/tor
%changelog
* Sat Jan 17 2004 John Bashinski <jbash@velvet.com>
- Basic spec file; tested with Red Hat 9.
+23
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@@ -0,0 +1,23 @@
.TH torify 1 "" Feb-2004 ""
.\" manual page by Peter Palfrader
.SH NAME
.LP
torify \- wrapper for tsocks and tor
.SH SYNOPSIS
\fBtorify\fP\ \fIapplication\fP\ [\fIapplication's\ arguments\fP]
.SH DESCRIPTION
\fBtorify\fR is a simple wrapper that calls tsocks with a tor specific
configuration file.
Tsocks itself is wrapper between the tsocks library and the application what
you would like to run socksified.
Please note that since tsocks uses LD_PRELOAD this cannot be applied to suid
binaries.
.SH SEE ALSO
.BR tor (1),
.BR tsocks (1),
.BR tsocks.conf (5).
+7
View File
@@ -0,0 +1,7 @@
#! /bin/sh
# Wrapper script for use of the tsocks(8) transparent socksification library
# See the tsocks(1) and torify(1) manpages.
TSOCKS_CONF_FILE=@CONFDIR@/tor-tsocks.conf
export TSOCKS_CONF_FILE
exec tsocks "$@"
+18
View File
@@ -0,0 +1,18 @@
Tor only provides TCP layer anonymity. It does not do any protocol
cleaning, so if you are going to browse the web you still give away a
lot of information to servers.
The privoxy package provides a privacy enhancing HTTP proxy, which
is good at filtering headers, cookies, and much more. To view the
description of the Debian privoxy package just run "apt-cache show
privoxy". Please refer to the privoxy documentation for more details.
In order to use privoxy over tor, add the following line to your
privoxy configuration file:
forward-socks4a / localhost:9050 .
(the dot is important)
Then configure your browser to use privoxy as its HTTP proxy.
--
Peter Palfrader <weasel@debian.org>, Tue, 17 Feb 2004 02:15:36 +0100
+9
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@@ -0,0 +1,9 @@
Legend:
- Not done
* Top priority
. Partially done
o Done
D Deferred
X Abandoned
- strip debugging symbols when tor is more mature
+115
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@@ -0,0 +1,115 @@
tor (0.0.3-1) unstable; urgency=low
* New upstream release.
* Also mention that tree.h is by Niels Provos in debian/copyright.
-- Peter Palfrader <weasel@debian.org> Fri, 26 Mar 2004 20:36:08 +0100
tor (0.0.2-1) unstable; urgency=low
* New upstream release.
* Uses strlcpy and strlcat by Todd C. Miller, mention him in
debian/copyright.
-- Peter Palfrader <weasel@debian.org> Fri, 19 Mar 2004 12:37:17 +0100
tor (0.0.1+0.0.2pre27-1) unstable; urgency=low
* New upstream release.
-- Peter Palfrader <weasel@debian.org> Mon, 15 Mar 2004 05:19:16 +0100
tor (0.0.1+0.0.2pre26-1) unstable; urgency=low
* New upstream release.
* Mention log and pidfile location in tor.1.
-- Peter Palfrader <weasel@debian.org> Mon, 15 Mar 2004 02:21:29 +0100
tor (0.0.1+0.0.2pre25-1) unstable; urgency=low
* New upstream release.
-- Peter Palfrader <weasel@debian.org> Thu, 4 Mar 2004 23:05:38 +0100
tor (0.0.1+0.0.2pre24-1) unstable; urgency=low
* New upstream release.
* Do not strip binaries for now.
* Add "# ulimit -c unlimited" to tor.default
* Always enable DataDirectory.
* Actually use dpatch now (to modify upstream torrc.in)
* Wait for tor to die in init stop. Let the user know if it doesn't.
-- Peter Palfrader <weasel@debian.org> Wed, 3 Mar 2004 14:10:25 +0100
tor (0.0.1+0.0.2pre23-1) unstable; urgency=low
* New upstream release.
* The one test that always failed has been fixed: removed comment from
rules file.
-- Peter Palfrader <weasel@debian.org> Sun, 29 Feb 2004 12:36:33 +0100
tor (0.0.1+0.0.2pre22-1) unstable; urgency=low
* New upstream release.
* Upstream has moved tor back to usr/bin, but we will keep it in
usr/sbin. That's the right place and it doesn't break my tab
completion there.
-- Peter Palfrader <weasel@debian.org> Fri, 27 Feb 2004 01:59:09 +0100
tor (0.0.1+0.0.2pre21-1) unstable; urgency=low
* New upstream release.
* 0.0.2pre20-2 removed the Recommends: on privoxy rather
than tsocks (which is now required) by mistake. Fix that.
* package description: Mention that the package starts the OP by default and
that OR can be enabled in the config.
* tor moved to sbin, updating init script.
-- Peter Palfrader <weasel@debian.org> Wed, 18 Feb 2004 10:08:12 +0100
tor (0.0.1+0.0.2pre20-2) unstable; urgency=low
* Add torify script, documentation, and config file. Means we also
depend on tsocks now rather than just recommending it. Right now
we install it in debian/rules, but upcoming versions might install
it in upstream's make install target.
* There's an upstream ChangeLog file now. Enjoy!
* Add a README.privoxy file that explains how to setup privoxy to
go over tor.
* As is the case too often, the INSTALL file not only covers
installation, but also basic usage and configuration. Therefore
include it in the docs dir.
* Add a lintian override for the INSTALL file.
-- Peter Palfrader <weasel@debian.org> Tue, 17 Feb 2004 02:32:00 +0100
tor (0.0.1+0.0.2pre20-1) unstable; urgency=low
* New upstream version.
- various design paper updates
- resolve cygwin warnings
- split the token bucket into "rate" and "burst" params
- try to resolve discrepency between bytes transmitted over TLS and actual
bandwidth use
- setuid to user _before_ complaining about running as root
- fix several memleaks and double frees
- minor logging fixes
- add more debugging for logs.
- various documentation fixes and improvements
- for perforcmance testing, paths are always 3 hops, not "3 or more"
(this will go away at a later date again)
* Add dependency on adduser which was previously missing.
* Change short description to a nicer one.
-- Peter Palfrader <weasel@debian.org> Sat, 31 Jan 2004 10:10:45 +0100
tor (0.0.1+0.0.2pre19-1) unstable; urgency=low
* Initial Release (closes: #216611).
-- Peter Palfrader <weasel@debian.org> Sat, 10 Jan 2004 11:20:06 +0100
+1
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@@ -0,0 +1 @@
4
+44
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@@ -0,0 +1,44 @@
Source: tor
Section: comm
Priority: optional
Maintainer: Peter Palfrader <weasel@debian.org>
Build-Depends: debhelper (>= 4.1.65), libssl-dev, dpatch
Standards-Version: 3.6.1
Package: tor
Architecture: any
Depends: ${shlibs:Depends}, adduser, tsocks
Recommends: privoxy
Suggests: mixmaster, mixminion, anon-proxy
Description: anonymizing overlay network for TCP
Tor is a connection-based low-latency anonymous communication system which
addresses many flaws in the original onion routing design.
.
In brief, Onion Routing is a connection-oriented anonymizing communication
service. Users choose a source-routed path through a set of nodes, and
negotiate a "virtual circuit" through the network, in which each node
knows its predecessor and successor, but no others. Traffic flowing down
the circuit is unwrapped by a symmetric key at each node, which reveals
the downstream node.
.
Basically Tor provides a distributed network of servers ("onion
routers"). Users bounce their tcp streams (web traffic, ftp, ssh, etc)
around the routers, and recipients, observers, and even the routers
themselves have difficulty tracking the source of the stream.
.
Note that Tor does no protocol cleaning. That means there is a danger that
application protocols and associated programs can be induced to reveal
information about the initiator. Tor depends on Privoxy and similar protocol
cleaners to solve this problem.
.
Client applications can use the Tor network by connecting to the local
onion proxy. If the application itself does not come with socks support
you can use a socks client such as tsocks. Some web browsers like mozilla
and web proxies like privoxy come with socks support, so you don't need an
extra socks client if you want to use Tor with them.
.
This package enables only the onion proxy by default, but it can be configured
as a relay (server) node.
.
Remember that this is alpha code, and the network is very small -- Tor will
not provide anonymity currently.
+100
View File
@@ -0,0 +1,100 @@
This package was debianized by Peter Palfrader <weasel@debian.org> on
Sat, 10 Jan 2004 11:20:06 +0100.
It was downloaded from http://freehaven.net/tor/
Upstream Authors: Roger Dingledine <arma@freehaven.net>
Nick Mathewson <nickm@freehaven.net>
Matej Pfajfar <badbytes@freehaven.net>
Copyright (c) 2001-2004, Roger Dingledine
strlcat, strlcpy: Copyright (c) 1998 Todd C. Miller <Todd.Miller@courtesan.com>
tree.h: Copyright (c) 2002 Niels Provos <provos@citi.umich.edu>
Modifications for Debian: Copyright (c) 2004 Peter Palfrader <weasel@debian.org>
The tor code is under this license:
===============================================================================
Copyright (c) 2001-2004, Roger Dingledine
Redistribution and use in source and binary forms, with or without
modification, are permitted provided that the following conditions are
met:
* Redistributions of source code must retain the above copyright
notice, this list of conditions and the following disclaimer.
* Redistributions in binary form must reproduce the above
copyright notice, this list of conditions and the following disclaimer
in the documentation and/or other materials provided with the
distribution.
* Neither the names of the copyright owners nor the names of its
contributors may be used to endorse or promote products derived from
this software without specific prior written permission.
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
===============================================================================
tree.h by Niels Provos is licensed as follows:
* Copyright 2002 Niels Provos <provos@citi.umich.edu>
* All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
* are met:
* 1. Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
*
* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
* IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
* NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
===============================================================================
strlcat and strlcpy by Todd C. Miller are licensed under the following license:
* Copyright (c) 1998 Todd C. Miller <Todd.Miller@courtesan.com>
* All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
* are met:
* 1. Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
* 3. The name of the author may not be used to endorse or promote products
* derived from this software without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES,
* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL
* THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
* OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
* ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
+2
View File
@@ -0,0 +1,2 @@
01_uncomment_datadirectory.dpatch
02_add_debian_files_in_manpage.dpatch
@@ -0,0 +1,37 @@
#! /bin/sh -e
## 01_uncomment_datadirectory.dpatch by <weasel@debian.org>
##
## All lines beginning with `## DP:' are a description of the patch.
## DP: No description.
if [ $# -lt 1 ]; then
echo "`basename $0`: script expects -patch|-unpatch as argument" >&2
exit 1
fi
[ -f debian/patches/00patch-opts ] && . debian/patches/00patch-opts
patch_opts="${patch_opts:--f --no-backup-if-mismatch} ${2:+-d $2}"
case "$1" in
-patch) patch -p1 ${patch_opts} < $0;;
-unpatch) patch -R -p1 ${patch_opts} < $0;;
*)
echo "`basename $0`: script expects -patch|-unpatch as argument" >&2
exit 1;;
esac
exit 0
@DPATCH@
diff -urNad /home/weasel/projects/tor/cvs/src/config/torrc.in cvs/src/config/torrc.in
--- /home/weasel/projects/tor/cvs/src/config/torrc.in 2004-03-01 23:41:26.000000000 +0100
+++ cvs/src/config/torrc.in 2004-03-03 13:47:25.000000000 +0100
@@ -11,7 +11,7 @@
##################### Below is just for servers #####################
## The directory for keeping all the keys/etc for this server
-#DataDirectory @LOCALSTATEDIR@/lib/tor
+DataDirectory @LOCALSTATEDIR@/lib/tor
#Nickname moria # A unique handle for this server
#Address moria.seul.org # The fqdn for this server
@@ -0,0 +1,41 @@
#! /bin/sh -e
## 02_add_debian_files_in_manpage.dpatch by <weasel@debian.org>
##
## All lines beginning with `## DP:' are a description of the patch.
## DP: No description.
if [ $# -lt 1 ]; then
echo "`basename $0`: script expects -patch|-unpatch as argument" >&2
exit 1
fi
[ -f debian/patches/00patch-opts ] && . debian/patches/00patch-opts
patch_opts="${patch_opts:--f --no-backup-if-mismatch} ${2:+-d $2}"
case "$1" in
-patch) patch -p1 ${patch_opts} < $0;;
-unpatch) patch -R -p1 ${patch_opts} < $0;;
*)
echo "`basename $0`: script expects -patch|-unpatch as argument" >&2
exit 1;;
esac
exit 0
@DPATCH@
diff -urNad /home/weasel/projects/tor/cvs/doc/tor.1.in cvs/doc/tor.1.in
--- /home/weasel/projects/tor/cvs/doc/tor.1.in 2004-03-01 23:41:25.000000000 +0100
+++ cvs/doc/tor.1.in 2004-03-10 16:30:49.000000000 +0100
@@ -137,6 +137,12 @@
.TP
.I @LOCALSTATEDIR@/lib/tor/
The tor server stores keys/etc here.
+.TP
+.I /var/log/tor/log
+The tor server logs to this file.
+.TP
+.I /var/run/tor/tor.pid
+The PID of the tor (master) process is stored in this file.
.SH SEE ALSO
.BR privoxy (1),
+109
View File
@@ -0,0 +1,109 @@
#!/usr/bin/make -f
# -*- makefile -*-
# Sample debian/rules that uses debhelper.
# GNU copyright 1997 to 1999 by Joey Hess.
# Uncomment this to turn on verbose mode.
#export DH_VERBOSE=1
# These are used for cross-compiling and for saving the configure script
# from having to guess our platform (since we know it already)
DEB_HOST_GNU_TYPE ?= $(shell dpkg-architecture -qDEB_HOST_GNU_TYPE)
DEB_BUILD_GNU_TYPE ?= $(shell dpkg-architecture -qDEB_BUILD_GNU_TYPE)
CFLAGS = -Wall -g
export PACKAGE=tor
include /usr/share/dpatch/dpatch.make
ifneq (,$(findstring noopt,$(DEB_BUILD_OPTIONS)))
CFLAGS += -O0
else
CFLAGS += -O2
endif
#ifeq (,$(findstring nostrip,$(DEB_BUILD_OPTIONS)))
# INSTALL_PROGRAM += -s
#endif
configure: patch-stamp
config.status: configure
dh_testdir
CFLAGS="$(CFLAGS)" ./configure \
--host=$(DEB_HOST_GNU_TYPE) \
--build=$(DEB_BUILD_GNU_TYPE) \
--prefix=/usr \
--mandir=\$${prefix}/share/man \
--infodir=\$${prefix}/share/info \
--localstatedir=/var \
--sysconfdir=/etc
build: build-stamp
build-stamp: config.status
dh_testdir
$(MAKE)
@echo
@echo
src/or/test
@echo
touch build-stamp
clean: unpatch
dh_testdir
dh_testroot
rm -f build-stamp
-$(MAKE) distclean
dh_clean
install: build
dh_testdir
dh_testroot
dh_clean -k
dh_installdirs
$(MAKE) install DESTDIR=$(CURDIR)/debian/tor
# move tor to where it belongs
mv $(CURDIR)/debian/tor/usr/bin/tor $(CURDIR)/debian/tor/usr/sbin/tor
install -m 755 contrib/torify $(CURDIR)/debian/tor/usr/bin
install -m 644 contrib/torify.1 $(CURDIR)/debian/tor/usr/share/man/man1
install -m 644 contrib/tor-tsocks.conf $(CURDIR)/debian/tor/etc/tor
install -m 644 debian/tor.lintian-override $(CURDIR)/debian/tor/usr/share/lintian/overrides/tor
# Build architecture-independent files here.
binary-indep: build install
# We have nothing to do by default.
# Build architecture-dependent files here.
binary-arch: build install
dh_testdir
dh_testroot
dh_installchangelogs ChangeLog
dh_installdocs
dh_installexamples
# dh_install
# dh_installdebconf
dh_installlogrotate
# dh_installemacsen
# dh_installmime
dh_installinit
# dh_installcron
dh_installman
dh_link
#dh_strip
dh_compress
dh_fixperms
dh_installdeb
dh_shlibdeps
dh_gencontrol
dh_md5sums
dh_builddeb
binary: binary-indep binary-arch
.PHONY: build clean binary-indep binary-arch binary install
+13
View File
@@ -0,0 +1,13 @@
# Defaults for tor initscript
# sourced by /etc/init.d/tor
# installed at /etc/default/tor by the maintainer scripts
#
# This is a POSIX shell fragment
#
RUN_DAEMON="yes"
#
# Uncomment this if you want to get coredumps
#
# ulimit -c unlimited
+7
View File
@@ -0,0 +1,7 @@
etc/tor
var/lib/tor
var/log/tor
var/run/tor
usr/share/lintian/overrides
usr/bin
usr/sbin
+3
View File
@@ -0,0 +1,3 @@
README
INSTALL
debian/README.privoxy
+104
View File
@@ -0,0 +1,104 @@
#! /bin/sh
set -e
PATH=/usr/local/sbin:/usr/local/bin:/sbin:/bin:/usr/sbin:/usr/bin
DAEMON=/usr/sbin/tor
NAME=tor
DESC="tor daemon"
TORLOG=/var/log/tor/log
TORPID=/var/run/tor/tor.pid
DEFAULTSFILE=/etc/default/$NAME
WAITFORDAEMON=10
ARGS="--pidfile $TORPID --logfile $TORLOG --runasdaemon 1"
test -x $DAEMON || exit 0
# Include tor defaults if available
if [ -f $DEFAULTSFILE ] ; then
. $DEFAULTSFILE
fi
wait_for_deaddaemon () {
pid=$1
sleep 1
if test -n "$pid"
then
if kill -0 $pid 2>/dev/null
then
echo -n "."
cnt=0
while kill -0 $pid 2>/dev/null
do
cnt=`expr $cnt + 1`
if [ $cnt -gt $WAITFORDAEMON ]
then
echo " FAILED."
return 1
fi
sleep 1
echo -n "."
done
fi
fi
return 0
}
case "$1" in
start)
if [ "$RUN_DAEMON" != "yes" ]; then
echo "Not starting $DESC (Disabled in $DEFAULTSFILE)."
else
echo -n "Starting $DESC: "
start-stop-daemon --start --quiet --oknodo \
--chuid debian-tor:debian-tor \
--pidfile $TORPID \
--exec $DAEMON -- $ARGS
echo "$NAME."
fi
;;
stop)
echo -n "Stopping $DESC: "
pid=`cat $TORPID 2>/dev/null` || true
if test ! -f $TORPID -o -z "$pid"
then
echo "not running (there is no $TORPID)."
elif start-stop-daemon --stop --quiet --pidfile $TORPID --exec $DAEMON
then
wait_for_deaddaemon $pid
echo "$NAME."
elif kill -0 $pid 2>/dev/null
then
echo "FAILED (Is $pid not $NAME? Is $DAEMON a different binary now?)."
else
echo "FAILED ($DAEMON died: process $pid not running)."
fi
;;
reload|force-reload)
echo -n "Reloading $DESC configuration: "
pid=`cat $TORPID 2>/dev/null` || true
if test ! -f $TORPID -o -z "$pid"
then
echo "not running (there is no $TORPID)."
elif start-stop-daemon --stop --signal 1 --quiet --pidfile $TORPID --exec $DAEMON
then
echo "$NAME."
elif kill -0 $pid 2>/dev/null
then
echo "FAILED (Is $pid not $NAME? Is $DAEMON a different binary now?)."
else
echo "FAILED ($DAEMON died: process $pid not running)."
fi
;;
restart)
$0 stop
sleep 1
$0 start
;;
*)
echo "Usage: $0 {start|stop|restart|reload|force-reload}" >&2
exit 1
;;
esac
exit 0
@@ -0,0 +1 @@
tor: package-contains-upstream-install-documentation
+11
View File
@@ -0,0 +1,11 @@
/var/log/tor/log {
daily
rotate 5
compress
delaycompress
missingok
notifempty
postrotate
/etc/init.d/tor reload > /dev/null
endscript
}
+54
View File
@@ -0,0 +1,54 @@
#!/bin/sh -e
# checking debian-tor account
uid=`getent passwd debian-tor | cut -d ":" -f 3`
home=`getent passwd debian-tor | cut -d ":" -f 6`
# if there is the uid the account is there and we can do
# the sanit(ar)y checks otherwise we can safely create it.
if [ "$uid" ]; then
# guess??? the checks!!!
if [ $uid -ge 100 ] && [ $uid -le 999 ]; then
echo "debian-tor uid check: ok"
else
echo "ERROR: debian-tor account has a non-system uid!"
echo "Please check /usr/share/doc/tor/README.Debian on how to"
echo "correct this problem"
exit 1
fi
if [ "$home" = "/var/lib/tor" ]; then
echo "debian-tor homedir check: ok"
else
echo "ERROR: debian-tor account has an invalid home directory!"
echo "Please check /usr/share/doc/tor/README.Debian on how to"
echo "correct this problem"
exit 1
fi
else
# what this might mean?? oh creating a system l^Huser!
adduser --quiet \
--system \
--disabled-password \
--home /var/lib/tor \
--no-create-home \
--shell /bin/bash \
--group \
debian-tor
fi
# ch{owning,moding} things around
# We will do nothing across upgrades.
if [ "$2" = "" ]; then
for i in lib log run; do
chown -R debian-tor:debian-tor /var/$i/tor
chmod -R 700 /var/$i/tor
find /var/$i/tor -type f -exec chmod 600 '{}' ';'
done
fi
#DEBHELPER#
exit 0
+11
View File
@@ -0,0 +1,11 @@
#!/bin/sh -e
if [ "$1" = "purge" ]; then
# logs have to be removed according to policy.
rm -rf /var/log/tor/
rm -rf /var/lib/tor/
fi
#DEBHELPER#
exit 0
+436
View File
@@ -0,0 +1,436 @@
#! /bin/sh
# depcomp - compile a program generating dependencies as side-effects
# Copyright 1999, 2000 Free Software Foundation, Inc.
# This program is free software; you can redistribute it and/or modify
# it under the terms of the GNU General Public License as published by
# the Free Software Foundation; either version 2, or (at your option)
# any later version.
# This program is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
# You should have received a copy of the GNU General Public License
# along with this program; if not, write to the Free Software
# Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
# 02111-1307, USA.
# As a special exception to the GNU General Public License, if you
# distribute this file as part of a program that contains a
# configuration script generated by Autoconf, you may include it under
# the same distribution terms that you use for the rest of that program.
# Originally written by Alexandre Oliva <oliva@dcc.unicamp.br>.
if test -z "$depmode" || test -z "$source" || test -z "$object"; then
echo "depcomp: Variables source, object and depmode must be set" 1>&2
exit 1
fi
# `libtool' can also be set to `yes' or `no'.
if test -z "$depfile"; then
base=`echo "$object" | sed -e 's,^.*/,,' -e 's,\.\([^.]*\)$,.P\1,'`
dir=`echo "$object" | sed 's,/.*$,/,'`
if test "$dir" = "$object"; then
dir=
fi
# FIXME: should be _deps on DOS.
depfile="$dir.deps/$base"
fi
tmpdepfile=${tmpdepfile-`echo "$depfile" | sed 's/\.\([^.]*\)$/.T\1/'`}
rm -f "$tmpdepfile"
# Some modes work just like other modes, but use different flags. We
# parameterize here, but still list the modes in the big case below,
# to make depend.m4 easier to write. Note that we *cannot* use a case
# here, because this file can only contain one case statement.
if test "$depmode" = hp; then
# HP compiler uses -M and no extra arg.
gccflag=-M
depmode=gcc
fi
if test "$depmode" = dashXmstdout; then
# This is just like dashmstdout with a different argument.
dashmflag=-xM
depmode=dashmstdout
fi
case "$depmode" in
gcc3)
## gcc 3 implements dependency tracking that does exactly what
## we want. Yay! Note: for some reason libtool 1.4 doesn't like
## it if -MD -MP comes after the -MF stuff. Hmm.
"$@" -MT "$object" -MD -MP -MF "$tmpdepfile"
stat=$?
if test $stat -eq 0; then :
else
rm -f "$tmpdepfile"
exit $stat
fi
mv "$tmpdepfile" "$depfile"
;;
gcc)
## There are various ways to get dependency output from gcc. Here's
## why we pick this rather obscure method:
## - Don't want to use -MD because we'd like the dependencies to end
## up in a subdir. Having to rename by hand is ugly.
## (We might end up doing this anyway to support other compilers.)
## - The DEPENDENCIES_OUTPUT environment variable makes gcc act like
## -MM, not -M (despite what the docs say).
## - Using -M directly means running the compiler twice (even worse
## than renaming).
if test -z "$gccflag"; then
gccflag=-MD,
fi
"$@" -Wp,"$gccflag$tmpdepfile"
stat=$?
if test $stat -eq 0; then :
else
rm -f "$tmpdepfile"
exit $stat
fi
rm -f "$depfile"
echo "$object : \\" > "$depfile"
alpha=ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz
## The second -e expression handles DOS-style file names with drive letters.
sed -e 's/^[^:]*: / /' \
-e 's/^['$alpha']:\/[^:]*: / /' < "$tmpdepfile" >> "$depfile"
## This next piece of magic avoids the `deleted header file' problem.
## The problem is that when a header file which appears in a .P file
## is deleted, the dependency causes make to die (because there is
## typically no way to rebuild the header). We avoid this by adding
## dummy dependencies for each header file. Too bad gcc doesn't do
## this for us directly.
tr ' ' '
' < "$tmpdepfile" |
## Some versions of gcc put a space before the `:'. On the theory
## that the space means something, we add a space to the output as
## well.
## Some versions of the HPUX 10.20 sed can't process this invocation
## correctly. Breaking it into two sed invocations is a workaround.
sed -e 's/^\\$//' -e '/^$/d' -e '/:$/d' | sed -e 's/$/ :/' >> "$depfile"
rm -f "$tmpdepfile"
;;
hp)
# This case exists only to let depend.m4 do its work. It works by
# looking at the text of this script. This case will never be run,
# since it is checked for above.
exit 1
;;
sgi)
if test "$libtool" = yes; then
"$@" "-Wp,-MDupdate,$tmpdepfile"
else
"$@" -MDupdate "$tmpdepfile"
fi
stat=$?
if test $stat -eq 0; then :
else
rm -f "$tmpdepfile"
exit $stat
fi
rm -f "$depfile"
if test -f "$tmpdepfile"; then # yes, the sourcefile depend on other files
echo "$object : \\" > "$depfile"
# Clip off the initial element (the dependent). Don't try to be
# clever and replace this with sed code, as IRIX sed won't handle
# lines with more than a fixed number of characters (4096 in
# IRIX 6.2 sed, 8192 in IRIX 6.5). We also remove comment lines;
# the IRIX cc adds comments like `#:fec' to the end of the
# dependency line.
tr ' ' '
' < "$tmpdepfile" \
| sed -e 's/^.*\.o://' -e 's/#.*$//' -e '/^$/ d' | \
tr '
' ' ' >> $depfile
echo >> $depfile
# The second pass generates a dummy entry for each header file.
tr ' ' '
' < "$tmpdepfile" \
| sed -e 's/^.*\.o://' -e 's/#.*$//' -e '/^$/ d' -e 's/$/:/' \
>> $depfile
else
# The sourcefile does not contain any dependencies, so just
# store a dummy comment line, to avoid errors with the Makefile
# "include basename.Plo" scheme.
echo "#dummy" > "$depfile"
fi
rm -f "$tmpdepfile"
;;
aix)
# The C for AIX Compiler uses -M and outputs the dependencies
# in a .u file. This file always lives in the current directory.
# Also, the AIX compiler puts `$object:' at the start of each line;
# $object doesn't have directory information.
stripped=`echo "$object" | sed -e 's,^.*/,,' -e 's/\(.*\)\..*$/\1/'`
tmpdepfile="$stripped.u"
outname="$stripped.o"
if test "$libtool" = yes; then
"$@" -Wc,-M
else
"$@" -M
fi
stat=$?
if test $stat -eq 0; then :
else
rm -f "$tmpdepfile"
exit $stat
fi
if test -f "$tmpdepfile"; then
# Each line is of the form `foo.o: dependent.h'.
# Do two passes, one to just change these to
# `$object: dependent.h' and one to simply `dependent.h:'.
sed -e "s,^$outname:,$object :," < "$tmpdepfile" > "$depfile"
sed -e "s,^$outname: \(.*\)$,\1:," < "$tmpdepfile" >> "$depfile"
else
# The sourcefile does not contain any dependencies, so just
# store a dummy comment line, to avoid errors with the Makefile
# "include basename.Plo" scheme.
echo "#dummy" > "$depfile"
fi
rm -f "$tmpdepfile"
;;
tru64)
# The Tru64 compiler uses -MD to generate dependencies as a side
# effect. `cc -MD -o foo.o ...' puts the dependencies into `foo.o.d'.
# At least on Alpha/Redhat 6.1, Compaq CCC V6.2-504 seems to put
# dependencies in `foo.d' instead, so we check for that too.
# Subdirectories are respected.
base=`echo "$object" | sed -e 's/\.o$//' -e 's/\.lo$//'`
tmpdepfile1="$base.o.d"
tmpdepfile2="$base.d"
if test "$libtool" = yes; then
"$@" -Wc,-MD
else
"$@" -MD
fi
stat=$?
if test $stat -eq 0; then :
else
rm -f "$tmpdepfile1" "$tmpdepfile2"
exit $stat
fi
if test -f "$tmpdepfile1"; then
tmpdepfile="$tmpdepfile1"
else
tmpdepfile="$tmpdepfile2"
fi
if test -f "$tmpdepfile"; then
sed -e "s,^.*\.[a-z]*:,$object:," < "$tmpdepfile" > "$depfile"
# That's a space and a tab in the [].
sed -e 's,^.*\.[a-z]*:[ ]*,,' -e 's,$,:,' < "$tmpdepfile" >> "$depfile"
else
echo "#dummy" > "$depfile"
fi
rm -f "$tmpdepfile"
;;
#nosideeffect)
# This comment above is used by automake to tell side-effect
# dependency tracking mechanisms from slower ones.
dashmstdout)
# Important note: in order to support this mode, a compiler *must*
# always write the proprocessed file to stdout, regardless of -o,
# because we must use -o when running libtool.
test -z "$dashmflag" && dashmflag=-M
( IFS=" "
case " $* " in
*" --mode=compile "*) # this is libtool, let us make it quiet
for arg
do # cycle over the arguments
case "$arg" in
"--mode=compile")
# insert --quiet before "--mode=compile"
set fnord "$@" --quiet
shift # fnord
;;
esac
set fnord "$@" "$arg"
shift # fnord
shift # "$arg"
done
;;
esac
"$@" $dashmflag | sed 's:^[^:]*\:[ ]*:'"$object"'\: :' > "$tmpdepfile"
) &
proc=$!
"$@"
stat=$?
wait "$proc"
if test "$stat" != 0; then exit $stat; fi
rm -f "$depfile"
cat < "$tmpdepfile" > "$depfile"
tr ' ' '
' < "$tmpdepfile" | \
## Some versions of the HPUX 10.20 sed can't process this invocation
## correctly. Breaking it into two sed invocations is a workaround.
sed -e 's/^\\$//' -e '/^$/d' -e '/:$/d' | sed -e 's/$/ :/' >> "$depfile"
rm -f "$tmpdepfile"
;;
dashXmstdout)
# This case only exists to satisfy depend.m4. It is never actually
# run, as this mode is specially recognized in the preamble.
exit 1
;;
makedepend)
# X makedepend
(
shift
cleared=no
for arg in "$@"; do
case $cleared in no)
set ""; shift
cleared=yes
esac
case "$arg" in
-D*|-I*)
set fnord "$@" "$arg"; shift;;
-*)
;;
*)
set fnord "$@" "$arg"; shift;;
esac
done
obj_suffix="`echo $object | sed 's/^.*\././'`"
touch "$tmpdepfile"
${MAKEDEPEND-makedepend} 2>/dev/null -o"$obj_suffix" -f"$tmpdepfile" "$@"
) &
proc=$!
"$@"
stat=$?
wait "$proc"
if test "$stat" != 0; then exit $stat; fi
rm -f "$depfile"
cat < "$tmpdepfile" > "$depfile"
sed '1,2d' "$tmpdepfile" | tr ' ' '
' | \
## Some versions of the HPUX 10.20 sed can't process this invocation
## correctly. Breaking it into two sed invocations is a workaround.
sed -e 's/^\\$//' -e '/^$/d' -e '/:$/d' | sed -e 's/$/ :/' >> "$depfile"
rm -f "$tmpdepfile" "$tmpdepfile".bak
;;
cpp)
# Important note: in order to support this mode, a compiler *must*
# always write the proprocessed file to stdout, regardless of -o,
# because we must use -o when running libtool.
( IFS=" "
case " $* " in
*" --mode=compile "*)
for arg
do # cycle over the arguments
case $arg in
"--mode=compile")
# insert --quiet before "--mode=compile"
set fnord "$@" --quiet
shift # fnord
;;
esac
set fnord "$@" "$arg"
shift # fnord
shift # "$arg"
done
;;
esac
"$@" -E |
sed -n '/^# [0-9][0-9]* "\([^"]*\)".*/ s:: \1 \\:p' |
sed '$ s: \\$::' > "$tmpdepfile"
) &
proc=$!
"$@"
stat=$?
wait "$proc"
if test "$stat" != 0; then exit $stat; fi
rm -f "$depfile"
echo "$object : \\" > "$depfile"
cat < "$tmpdepfile" >> "$depfile"
sed < "$tmpdepfile" '/^$/d;s/^ //;s/ \\$//;s/$/ :/' >> "$depfile"
rm -f "$tmpdepfile"
;;
msvisualcpp)
# Important note: in order to support this mode, a compiler *must*
# always write the proprocessed file to stdout, regardless of -o,
# because we must use -o when running libtool.
( IFS=" "
case " $* " in
*" --mode=compile "*)
for arg
do # cycle over the arguments
case $arg in
"--mode=compile")
# insert --quiet before "--mode=compile"
set fnord "$@" --quiet
shift # fnord
;;
esac
set fnord "$@" "$arg"
shift # fnord
shift # "$arg"
done
;;
esac
for arg
do
case "$arg" in
"-Gm"|"/Gm"|"-Gi"|"/Gi"|"-ZI"|"/ZI")
set fnord "$@"
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shift
;;
*)
set fnord "$@" "$arg"
shift
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;;
esac
done
"$@" -E |
sed -n '/^#line [0-9][0-9]* "\([^"]*\)"/ s::echo "`cygpath -u \\"\1\\"`":p' | sort | uniq > "$tmpdepfile"
) &
proc=$!
"$@"
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wait "$proc"
if test "$stat" != 0; then exit $stat; fi
rm -f "$depfile"
echo "$object : \\" > "$depfile"
. "$tmpdepfile" | sed 's% %\\ %g' | sed -n '/^\(.*\)$/ s:: \1 \\:p' >> "$depfile"
echo " " >> "$depfile"
. "$tmpdepfile" | sed 's% %\\ %g' | sed -n '/^\(.*\)$/ s::\1\::p' >> "$depfile"
rm -f "$tmpdepfile"
;;
none)
exec "$@"
;;
*)
echo "Unknown depmode $depmode" 1>&2
exit 1
;;
esac
exit 0
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Makefile
Makefile.in
tor.1
*.aux
*.dvi
*.blg
*.bbl
*.log
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Part one: Overview and explanation
Because tor is an application-level proxy, it needs client-side support
from every client program that wants to use it. (This is different from
systems like Freedom, which used a single client-side program to capture
all packets and redirect them to the Freedom network.) Client applications
need two general classes of modifications to be compatible with tor:
1) Whenever they call connect(), they instead should connect() to the
local onion proxy and tell it "address and port". The onion proxy will
itself make a connection to "address and port", and then the client
application can talk through that socket as if it's directly connected. To
support as many applications as possible, tor uses the common "socks"
protocol which does exactly the above. So applications with socks support
will support tor without needing any modifications.
2) Applications must not call gethostbyname() to resolve an address
they intend to later connect() to via onion routing. gethostbyname()
contacts the dns server of the target machine -- thus giving away the
fact that you intend to make an anonymous connection to it.
To clarify, I need to explain more about the socks protocol. Socks
comes in three flavors: 4, 4a, and 5. The socks4 protocol basically
uses IP and port -- so it is unsuitable because of the gethostbyname()
issue above. Socks4a is a slight modification to the socks4 protocol,
whereby you can specify an IP of 0.0.0.x to signal the socks server
that you will instead be sending a hostname (fqdn). So applications with
socks4a support are all set. Socks5, on the other hand, allows the client
to specify "address type" and then an address -- so some applications
choose to supply an IP and others choose to supply a hostname. If the
application uses socks5 you must investigate further to decide whether
it's leaking anonymity.
Part two: using tsocks to transparently replace library calls
tsocks (available from http://tsocks.sourceforge.net/ or from your
favorite apt-get equivalent) allows you to run a program as normal,
but it replaces the system calls for connect() to connect to the socks
server first and then pass it your destination info. In our case the
socks server is a tor process (running either locally or elsewhere).
In general this works quite well for command-line processes like finger,
ssh, etc. But there are a couple of catches: A) tsocks doesn't intercept
calls to gethostbyname. So unless you specify an IP rather than hostname,
you'll be giving yourself away. B) Programs which are suid don't let you
intercept the system calls -- ssh falls into this category. But you can
make a local copy of ssh and use that. C) Probably tsocks doesn't behave
well for behemoths like Mozilla.
Part three: applications which support tor correctly
http: Mozilla: set your socks4 proxy to be the onion proxy (but see above)
privoxy: set your socks4a proxy to be the onion proxy
wget: run privoxy, and then add the line
"http_proxy=http://localhost:8118" to your ~/.wgetrc.
ssh: tsocks ssh arma@18.244.0.188
ftp: tsocks wget ftp://18.244.0.188/quux.tar --passive
Mozilla: set your socks4 proxy to be the onion proxy
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The Onion Routing (TOR) Frequently Asked Questions
--------------------------------------------------
1. General.
1.1. What is Tor?
Tor is an implementation of version 2 of Onion Routing.
Go read the tor-design.pdf for the details.
In brief, Onion Routing is a connection-oriented anonymizing communication
service. Users choose a source-routed path through a set of nodes, and
negotiate a "virtual circuit" through the network, in which each node
knows its predecessor and successor, but no others. Traffic flowing down
the circuit is unwrapped by a symmetric key at each node, which reveals
the downstream node.
Basically Tor provides a distributed network of servers ("onion
routers"). Users bounce their tcp streams (web traffic, ftp, ssh, etc)
around the routers, and recipients, observers, and even the routers
themselves have difficulty tracking the source of the stream.
1.2. Why's it called Tor?
Because Tor is the onion routing system. I kept telling people I was
working on onion routing, and they said "Neat. Which one?" Even if onion
routing has become a standard household term, this is the actual onion
routing project, started out of the Naval Research Lab.
(Theories about recursive acronyms are ok too. It's also got a fine
translation into German.)
1.3 Is there a backdoor in Tor?
Not right now, but if this answer changes we probably won't be allowed
to tell you. You should always check the source (or at least the diffs
since the last release) for suspicious things; and if we don't give you
source, that's a sure sign something funny could be going on.
2. Compiling and installing.
[Read the README file for now; check back here once we've got packages/etc
for you.]
3. Running Tor.
3.1. What kind of server should I run?
The same executable functions as both client and server, depending on
which ports are specified in the configuration file. You can specify:
* SocksPort: client applications (eg privoxy, Mozilla) can speak socks to
this port.
* ORPort: other onion routers connect to this port
* DirPort: onion proxies and onion routers speak http to this port, to
pull down a directory of which nodes are currently available.
3.2. So I can just run a full onion router and join the network?
No. Users should run just an onion proxy. If you start up a full onion
router, the rest of the routers in the system won't recognize you,
so they will reject your handshake attempts.
3.3. How do I join the network then?
If you just want to use the onion routing network, you can run a proxy
and you're all set. If you want to run a router, you must convince
the directory server operators (currently arma@mit.edu) that you're a
trustworthy and reliable person. From there, the operators add you to
the directory, which propagates out to the rest of the network. All
nodes will know about you within a half hour.
3.4. I want to run a directory server too.
If you run a very reliable node, you plan to be around for a long time,
and you want to spend some time ensuring that router operators are
people we know and like, we may want you to run a directory server
too. We must manually add you to the 'dirservers' file that's part of
the distribution; users will only know about you when they upgrade to
a new version. Of course, you can always just start up your router as a
directory server too --- but users won't know to ask you for directories,
and more importantly, you'll never learn from the real directory servers
about recently joined routers.
4. Development.
4.1. Who's doing this?
4.2. Can I help?
4.3. I've got a bug.
5. Anonymity.
5.1. So I'm totally anonymous if I use Tor?
5.2. Where can I learn more about anonymity?
5.3. What attacks remain against onion routing?
6. Comparison to related projects.
6.1. Onion Routing.
Tor *is* onion routing.
6.2. Freedom.
7. Protocol and application support.
7.1. http? ftp? udp? socks? mozilla?
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Guide to Hacking Tor
(As of 8 October 2003, this was all accurate. If you're reading this in
the distant future, stuff may have changed.)
0. Intro and required reading
Onion Routing is still very much in development stages. This document
aims to get you started in the right direction if you want to understand
the code, add features, fix bugs, etc.
Read the README file first, so you can get familiar with the basics of
installing and running an onion router.
Then, skim some of the introductory materials in tor-design.pdf,
tor-spec.txt, and the Tor FAQ to learn more about how the Tor protocol
is supposed to work. This document will assume you know about Cells,
Circuits, Streams, Connections, Onion Routers, and Onion Proxies.
1. Code organization
1.1. The modules
The code is divided into two directories: ./src/common and ./src/or.
The "common" directory contains general purpose utility functions not
specific to onion routing. The "or" directory implements all
onion-routing and onion-proxy specific functionality.
Files in ./src/common:
aes.[ch] -- Implements the AES cipher (with 128-bit keys and blocks),
and a counter-mode stream cipher on top of AES. This code is
taken from the main Rijndael distribution. (We include this
because many people are running older versions of OpenSSL without
AES support.)
crypto.[ch] -- Wrapper functions to present a consistent interface to
public-key and symmetric cryptography operations from OpenSSL.
fakepoll.[ch] -- Used on systems that don't have a poll() system call;
reimplements() poll using the select() system call.
log.[ch] -- Tor's logging subsystem.
test.h -- Macros used by unit tests.
torint.h -- Provides missing [u]int*_t types for environments that
don't have stdint.h.
tortls.[ch] -- Wrapper functions to present a consistent interface to
TLS, SSL, and X.509 functions from OpenSSL.
util.[ch] -- Miscellaneous portability and convenience functions.
Files in ./src/or:
[General-purpose modules]
or.h -- Common header file: include everything, define everything.
buffers.c -- Implements a generic buffer interface. Buffers are
fairly opaque string holders that can read to or flush from:
memory, file descriptors, or TLS connections.
Also implements parsing functions to read HTTP and SOCKS commands
from buffers.
tree.h -- A splay tree implementation by Niels Provos. Used by
dns.c for dns caching at exits, and by connection_edge.c for dns
caching at clients.
config.c -- Code to parse and validate the configuration file.
[Background processing modules]
cpuworker.c -- Implements a farm of 'CPU worker' processes to perform
CPU-intensive tasks in the background, so as not interrupt the
onion router. (OR only)
dns.c -- Implements a farm of 'DNS worker' processes to perform DNS
lookups for onion routers and cache the results. [This needs to
be done in the background because of the lack of a good,
ubiquitous asynchronous DNS implementation.] (OR only)
[Directory-related functionality.]
directory.c -- Code to send and fetch directories and router
descriptors via HTTP. Directories use dirserv.c to generate the
results; clients use routers.c to parse them.
dirserv.c -- Code to manage directory contents and generate
directories. [Directory server only]
routers.c -- Code to parse directories and router descriptors; and to
generate a router descriptor corresponding to this OR's
capabilities. Also presents some high-level interfaces for
managing an OR or OP's view of the directory.
[Circuit-related modules.]
circuit.c -- Code to create circuits, manage circuits, and route
relay cells along circuits.
onion.c -- Code to generate and respond to "onion skins".
[Core protocol implementation.]
connection.c -- Code used in common by all connection types. See
1.2. below for more general information about connections.
connection_edge.c -- Code used only by edge connections.
command.c -- Code to handle specific cell types.
connection_or.c -- Code to implement cell-speaking connections.
[Toplevel modules.]
main.c -- Toplevel module. Initializes keys, handles signals,
multiplexes between connections, implements main loop, and drives
scheduled events.
tor_main.c -- Stub module containing a main() function. Allows unit
test binary to link against main.c
[Unit tests]
test.c -- Contains unit tests for many pieces of the lower level Tor
modules.
1.2. All about connections
All sockets in Tor are handled as different types of nonblocking
'connections'. (What the Tor spec calls a "Connection", the code refers
to as a "Cell-speaking" or "OR" connection.)
Connections are implemented by the connection_t struct, defined in or.h.
Not every kind of connection uses all the fields in connection_t; see
the comments in or.h and the assertions in assert_connection_ok() for
more information.
Every connection has a type and a state. Connections never change their
type, but can go through many state changes in their lifetime.
The connection types break down as follows:
[Cell-speaking connections]
CONN_TYPE_OR -- A bidirectional TLS connection transmitting a
sequence of cells. May be from an OR to an OR, or from an OP to
an OR.
[Edge connections]
CONN_TYPE_EXIT -- A TCP connection from an onion router to a
Stream's destination. [OR only]
CONN_TYPE_AP -- A SOCKS proxy connection from the end user
application to the onion proxy. [OP only]
[Listeners]
CONN_TYPE_OR_LISTENER [OR only]
CONN_TYPE_AP_LISTENER [OP only]
CONN_TYPE_DIR_LISTENER [Directory server only]
-- Bound network sockets, waiting for incoming connections.
[Internal]
CONN_TYPE_DNSWORKER -- Connection from the main process to a DNS
worker process. [OR only]
CONN_TYPE_CPUWORKER -- Connection from the main process to a CPU
worker process. [OR only]
Connection states are documented in or.h.
Every connection has two associated input and output buffers.
Listeners don't use them. For non-listener connections, incoming
data is appended to conn->inbuf, and outgoing data is taken from the
front of conn->outbuf. Connections differ primarily in the functions
called to fill and drain these buffers.
1.3. All about circuits.
A circuit_t structure fills two roles. First, a circuit_t links two
connections together: either an edge connection and an OR connection,
or two OR connections. (When joined to an OR connection, a circuit_t
affects only cells sent to a particular circID on that connection. When
joined to an edge connection, a circuit_t affects all data.)
Second, a circuit_t holds the cipher keys and state for sending data
along a given circuit. At the OP, it has a sequence of ciphers, each
of which is shared with a single OR along the circuit. Separate
ciphers are used for data going "forward" (away from the OP) and
"backward" (towards the OP). At the OR, a circuit has only two stream
ciphers: one for data going forward, and one for data going backward.
1.4. Asynchronous IO and the main loop.
Tor uses the poll(2) system call (or it wraps select(2) to act like
poll, if poll is not available) to handle nonblocking (asynchronous)
IO. If you're not familiar with nonblocking IO, check out the links
at the end of this document.
All asynchronous logic is handled in main.c. The functions
'connection_add', 'connection_set_poll_socket', and 'connection_remove'
manage an array of connection_t*, and keep in synch with the array of
struct pollfd required by poll(2). (This array of connection_t* is
accessible via get_connection_array, but users should generally call
one of the 'connection_get_by_*' functions in connection.c to look up
individual connections.)
To trap read and write events, connections call the functions
'connection_{is|stop|start}_{reading|writing}'. If you want
to completely reset the events you're watching for, use
'connection_watch_events'.
Every time poll() finishes, main.c calls conn_read and conn_write on
every connection. These functions dispatch events that have something
to read to connection_handle_read, and events that have something to
write to connection_handle_write, respectively.
When connections need to be closed, they can respond in two ways. Most
simply, they can make connection_handle_* return an error (-1),
which will make conn_{read|write} close them. But if it's not
convenient to return -1 (for example, processing one connection causes
you to realize that a second one should close), then you can also
mark a connection to close by setting conn->marked_for_close. Marked
connections will be closed at the end of the current iteration of
the main loop.
The main loop handles several other operations: First, it checks
whether any signals have been received that require a response (HUP,
KILL, USR1, CHLD). Second, it calls prepare_for_poll to handle recurring
tasks and compute the necessary poll timeout. These recurring tasks
include periodically fetching the directory, timing out unused
circuits, incrementing flow control windows and re-enabling connections
that were blocking for more bandwidth, and maintaining statistics.
A word about TLS: Using TLS on OR connections complicates matters in
two ways.
First, a TLS stream has its own read buffer independent of the
connection's read buffer. (TLS needs to read an entire frame from
the network before it can decrypt any data. Thus, trying to read 1
byte from TLS can require that several KB be read from the network
and decrypted. The extra data is stored in TLS's decrypt buffer.)
Because the data hasn't been read by tor (it's still inside the TLS),
this means that sometimes a connection "has stuff to read" even when
poll() didn't return POLLIN. The tor_tls_get_pending_bytes function is
used in main.c to detect TLS objects with non-empty internal buffers.
Second, the TLS stream's events do not correspond directly to network
events: sometimes, before a TLS stream can read, the network must be
ready to write -- or vice versa.
1.5. How data flows (An illustration.)
Suppose an OR receives 256 bytes along an OR connection. These 256
bytes turn out to be a data relay cell, which gets decrypted and
delivered to an edge connection. Here we give a possible call sequence
for the delivery of this data.
(This may be outdated quickly.)
do_main_loop -- Calls poll(2), receives a POLLIN event on a struct
pollfd, then calls:
conn_read -- Looks up the corresponding connection_t, and calls:
connection_handle_read -- Calls:
connection_read_to_buf -- Notices that it has an OR connection so:
read_to_buf_tls -- Pulls data from the TLS stream onto conn->inbuf.
connection_process_inbuf -- Notices that it has an OR connection so:
connection_or_process_inbuf -- Checks whether conn is open, and calls:
connection_process_cell_from_inbuf -- Notices it has enough data for
a cell, then calls:
connection_fetch_from_buf -- Pulls the cell from the buffer.
cell_unpack -- Decodes the raw cell into a cell_t
command_process_cell -- Notices it is a relay cell, so calls:
command_process_relay_cell -- Looks up the circuit for the cell,
makes sure the circuit is live, then passes the cell to:
circuit_deliver_relay_cell -- Passes the cell to each of:
relay_crypt -- Strips a layer of encryption from the cell and
notices that the cell is for local delivery.
connection_edge_process_relay_cell -- extracts the cell's
relay command, and makes sure the edge connection is
open. Since it has a DATA cell and an open connection,
calls:
circuit_consider_sending_sendme -- check if the total number
of cells received by all streams on this circuit is
enough that we should send back an acknowledgement
(requesting that more cells be sent to any stream).
connection_write_to_buf -- To place the data on the outgoing
buffer of the correct edge connection, by calling:
connection_start_writing -- To tell the main poll loop about
the pending data.
write_to_buf -- To actually place the outgoing data on the
edge connection.
connection_consider_sending_sendme -- if the outbuf waiting
to flush to the exit connection is not too full, check
if the total number of cells received on this stream
is enough that we should send back an acknowledgement
(requesting that more cells be sent to this stream).
In a subsequent iteration, main notices that the edge connection is
ready for writing:
do_main_loop -- Calls poll(2), receives a POLLOUT event on a struct
pollfd, then calls:
conn_write -- Looks up the corresponding connection_t, and calls:
connection_handle_write -- This isn't a TLS connection, so calls:
flush_buf -- Delivers data from the edge connection's outbuf to the
network.
connection_wants_to_flush -- Reports that all data has been flushed.
connection_finished_flushing -- Notices the connection is an exit,
and calls:
connection_edge_finished_flushing -- The connection is open, so it
calls:
connection_stop_writing -- Tells the main poll loop that this
connection has no more data to write.
connection_consider_sending_sendme -- now that the outbuf
is empty, check again if the total number of cells
received on this stream is enough that we should send
back an acknowledgement (requesting that more cells be
sent to this stream).
1.6. Routers, descriptors, and directories
All Tor processes need to keep track of a list of onion routers, for
several reasons:
- OPs need to establish connections and circuits to ORs.
- ORs need to establish connections to other ORs.
- OPs and ORs need to fetch directories from a directory server.
- ORs need to upload their descriptors to directory servers.
- Directory servers need to know which ORs are allowed onto the
network, what the descriptors are for those ORs, and which of
those ORs are currently live.
Thus, every Tor process keeps track of a list of all the ORs it knows
in a static variable 'directory' in the routers.c module. This
variable contains a routerinfo_t object for each known OR. On startup,
the directory is initialized to a list of known directory servers (via
router_get_list_from_file()). Later, the directory is updated via
router_get_dir_from_string(). (OPs and ORs retrieve fresh directories
from directory servers; directory servers generate their own.)
Every OR must periodically regenerate a router descriptor for itself.
The descriptor and the corresponding routerinfo_t are stored in the
'desc_routerinfo' and 'descriptor' static variables in routers.c.
Additionally, a directory server keeps track of a list of the
router descriptors it knows in a separate list in dirserv.c. It
uses this list, checking which OR connections are open, to build
directories.
1.7. Data model
[XXX]
1.8. Flow control
[XXX]
2. Coding conventions
2.1. Details
Use tor_malloc, tor_strdup, and tor_gettimeofday instead of their
generic equivalents. (They always succeed or exit.)
Use INLINE instead of 'inline', so that we work properly on windows.
2.2. Calling and naming conventions
Whenever possible, functions should return -1 on error and and 0 on
success.
For multi-word identifiers, use lowercase words combined with
underscores. (e.g., "multi_word_identifier"). Use ALL_CAPS for macros and
constants.
Typenames should end with "_t".
Function names should be prefixed with a module name or object name. (In
general, code to manipulate an object should be a module with the same
name as the object, so it's hard to tell which convention is used.)
Functions that do things should have imperative-verb names
(e.g. buffer_clear, buffer_resize); functions that return booleans should
have predicate names (e.g. buffer_is_empty, buffer_needs_resizing).
2.3. What To Optimize
Don't optimize anything if it's not in the critical path. Right now,
the critical path seems to be AES, logging, and the network itself.
Feel free to do your own profiling to determine otherwise.
2.4. Log conventions
Log convention: use only these four log severities.
ERR is if something fatal just happened.
WARN if something bad happened, but we're still running. The
bad thing is either a bug in the code, an attack or buggy
protocol/implementation of the remote peer, etc. The operator should
examine the bad thing and try to correct it.
(No error or warning messages should be expected during normal OR or OP
operation. I expect most people to run on -l warn eventually. If a
library function is currently called such that failure always means
ERR, then the library function should log WARN and let the caller
log ERR.)
INFO means something happened (maybe bad, maybe ok), but there's nothing
you need to (or can) do about it.
DEBUG is for everything louder than INFO.
[XXX Proposed convention: every messages of severity INFO or higher should
either (A) be intelligible to end-users who don't know the Tor source; or
(B) somehow inform the end-users that they aren't expected to understand
the message (perhaps with a string like "internal error"). Option (A) is
to be preferred to option (B). -NM]
3. References
About Tor
See http://freehaven.net/tor/
http://freehaven.net/tor/cvs/doc/tor-spec.txt
http://freehaven.net/tor/cvs/doc/tor-design.tex
http://freehaven.net/tor/cvs/doc/FAQ
About anonymity
See http://freehaven.net/anonbib/
About nonblocking IO
[XXX insert references]
# ======================================================================
# Old HACKING document; merge into the above, move into tor-design.tex,
# or delete.
# ======================================================================
The pieces.
Routers. Onion routers, as far as the 'tor' program is concerned,
are a bunch of data items that are loaded into the router_array when
the program starts. Periodically it downloads a new set of routers
from a directory server, and updates the router_array. When a new OR
connection is started (see below), the relevant information is copied
from the router struct to the connection struct.
Connections. A connection is a long-standing tcp socket between
nodes. A connection is named based on what it's connected to -- an "OR
connection" has an onion router on the other end, an "OP connection" has
an onion proxy on the other end, an "exit connection" has a website or
other server on the other end, and an "AP connection" has an application
proxy (and thus a user) on the other end.
Circuits. A circuit is a path over the onion routing
network. Applications can connect to one end of the circuit, and can
create exit connections at the other end of the circuit. AP and exit
connections have only one circuit associated with them (and thus these
connection types are closed when the circuit is closed), whereas OP and
OR connections multiplex many circuits at once, and stay standing even
when there are no circuits running over them.
Streams. Streams are specific conversations between an AP and an exit.
Streams are multiplexed over circuits.
Cells. Some connections, specifically OR and OP connections, speak
"cells". This means that data over that connection is bundled into 256
byte packets (8 bytes of header and 248 bytes of payload). Each cell has
a type, or "command", which indicates what it's for.
Robustness features.
[XXX no longer up to date]
Bandwidth throttling. Each cell-speaking connection has a maximum
bandwidth it can use, as specified in the routers.or file. Bandwidth
throttling can occur on both the sender side and the receiving side. If
the LinkPadding option is on, the sending side sends cells at regularly
spaced intervals (e.g., a connection with a bandwidth of 25600B/s would
queue a cell every 10ms). The receiving side protects against misbehaving
servers that send cells more frequently, by using a simple token bucket:
Each connection has a token bucket with a specified capacity. Tokens are
added to the bucket each second (when the bucket is full, new tokens
are discarded.) Each token represents permission to receive one byte
from the network --- to receive a byte, the connection must remove a
token from the bucket. Thus if the bucket is empty, that connection must
wait until more tokens arrive. The number of tokens we add enforces a
longterm average rate of incoming bytes, yet we still permit short-term
bursts above the allowed bandwidth. Currently bucket sizes are set to
ten seconds worth of traffic.
The bandwidth throttling uses TCP to push back when we stop reading.
We extend it with token buckets to allow more flexibility for traffic
bursts.
Data congestion control. Even with the above bandwidth throttling,
we still need to worry about congestion, either accidental or intentional.
If a lot of people make circuits into same node, and they all come out
through the same connection, then that connection may become saturated
(be unable to send out data cells as quickly as it wants to). An adversary
can make a 'put' request through the onion routing network to a webserver
he owns, and then refuse to read any of the bytes at the webserver end
of the circuit. These bottlenecks can propagate back through the entire
network, mucking up everything.
(See the tor-spec.txt document for details of how congestion control
works.)
In practice, all the nodes in the circuit maintain a receive window
close to maximum except the exit node, which stays around 0, periodically
receiving a sendme and reading more data cells from the webserver.
In this way we can use pretty much all of the available bandwidth for
data, but gracefully back off when faced with multiple circuits (a new
sendme arrives only after some cells have traversed the entire network),
stalled network connections, or attacks.
We don't need to reimplement full tcp windows, with sequence numbers,
the ability to drop cells when we're full etc, because the tcp streams
already guarantee in-order delivery of each cell. Rather than trying
to build some sort of tcp-on-tcp scheme, we implement this minimal data
congestion control; so far it's enough.
Router twins. In many cases when we ask for a router with a given
address and port, we really mean a router who knows a given key. Router
twins are two or more routers that share the same private key. We thus
give routers extra flexibility in choosing the next hop in the circuit: if
some of the twins are down or slow, it can choose the more available ones.
Currently the code tries for the primary router first, and if it's down,
chooses the first available twin.
+4
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EXTRA_DIST = tor-spec.txt CLIENTS FAQ HACKING rendezvous.txt tor-design.tex
man_MANS = tor.1
+327
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Legend:
SPEC!! - Not specified
SPEC - Spec not finalized
NICK - nick claims
ARMA - arma claims
- Not done
* Top priority
. Partially done
o Done
D Deferred
X Abandoned
Bugs:
o we call signal(), but we should be calling sigaction()
- send socks rejects when things go bad ?
o on solaris, need to build with
LDFLAGS="-lsocket -lnsl" ./configure
o on solaris, we HAVE_UNAME but the uname() call fails?
- should maybe make clients exit(1) when bad things happen?
e.g. clock skew.
o client-side dns cache doesn't appear to be getting populated
by 'connected' cells. In fact, the 'connected' cells don't even
include the IP.
o When it can't resolve any dirservers, it is useless from then on.
We should make it reload the RouterFile if it has no dirservers.
o Sometimes it picks a middleman node as the exit for a circuit.
o if you specify a non-dirserver as exitnode or entrynode, when it
makes the first few circuits it hasn't yet fetched the directory,
so it warns that it doesn't know the node.
o make 'make test' exit(1) if a test fails.
. fix buffer unit test so it passes
Short-term:
- make recommendedversions different for clients and servers.
e.g. C0.0.3 vs S0.0.3?
o put IP into the descriptor, so clients don't need to resolve things
o when you hup, rewrite the router.desc file (and maybe others)
- consider handling broken socks4 implementations
- improve how it behaves when i remove a line from the approved-routers files
- Make tls connections tls_close intentionally
- Add '[...truncated]' or similar to truncated log entries (like the directory
in connection_dir_process_inbuf()).
- Make logs handle it better when writing to them fails.
- leave server descriptor out of directory if it's too old
o Rename ACI to circID
. integrate rep_ok functions, see what breaks
- update tor faq
o obey SocksBindAddress, ORBindAddress
o warn if we're running as root
o make connection_flush_buf() more obviously obsolete
o let hup reread the config file, eg so we can get new exit
policies without restarting
o Put recommended_versions in a config entry
X use times(2) rather than gettimeofday to measure how long it
takes to process a cell
o Separate trying to rebuild a circuit because you have none from trying
to rebuild a circuit because the current one is stale
X Continue reading from socks port even while waiting for connect.
o Exit policies
o Spec how to write the exit policies
o Path selection algorithms
o Choose path more incrementally
o Let user request first/last node
o And disallow certain nodes
D Choose path by jurisdiction, etc?
o Make relay end cells have failure status and payload attached
X let non-approved routers handshake.
X Dirserver shouldn't put you in running-routers list if you haven't
uploaded a descriptor recently
X migrate to using nickname rather than addr:port for routers
- migrate to using IPv6 sizes everywhere
o Move from onions to ephemeral DH
o incremental path building
o transition circuit-level sendmes to hop-level sendmes
o implement truncate, truncated
o move from 192byte DH to 128byte DH, so it isn't so damn slow
X exiting from not-last hop
X OP logic to decide to extend/truncate a path
X make sure exiting from the not-last hop works
X logic to find last *open* hop, not last hop, in cpath
o Remember address and port when beginning.
- Extend by nickname/hostname/something, not by IP.
- Need a relay teardown cell, separate from one-way ends.
X remove per-connection rate limiting
- Make it harder to circumvent bandwidth caps: look at number of bytes
sent across sockets, not number sent inside TLS stream.
o Audit users of connnection_remove and connection_free outside of
main.c; many should use mark_for_close instead.
On-going
. Better comments for functions!
. Go through log messages, reduce confusing error messages.
. make the logs include more info (fd, etc)
. Unit tests
. Update the spec so it matches the code
Mid-term:
- Rotate tls-level connections -- make new ones, expire old ones.
So we get actual key rotation, not just symmetric key rotation
o Are there anonymity issues with sequential streamIDs? Sequential
circIDs? Eg an attacker can learn how many there have been.
The fix is to initialize them randomly rather than at 1.
- Look at having smallcells and largecells
. Redo scheduler
o fix SSL_read bug for buffered records
- make round-robining more fair
- What happens when a circuit's length is 1? What breaks?
. streams / circuits
o Implement streams
o Rotate circuits after N minutes?
X Circuits should expire when circuit->expire triggers
NICK . Handle half-open connections
o openssh is an application that uses half-open connections
o Figure out what causes connections to close, standardize
when we mark a connection vs when we tear it down
o Look at what ssl does to keep from mutating data streams
o Put CPU workers in separate processes
o Handle multiple cpu workers (one for each cpu, plus one)
o Queue for pending tasks if all workers full
o Support the 'process this onion' task
D Merge dnsworkers and cpuworkers to some extent
o Handle cpuworkers dying
. Scrubbing proxies
- Find an smtp proxy?
- Check the old smtp proxy code
o Find an ftp proxy? wget --passive
D Wait until there are packet redirectors for Linux
. Get socks4a support into Mozilla
. Develop rendezvous points
X Handle socks commands other than connect, eg, bind?
o Design
- Spec
- Implement
. Tests
o Testing harness/infrastructure
D System tests (how?)
- Performance tests, so we know when we've improved
. webload infrastructure (Bruce)
. httperf infrastructure (easy to set up)
. oprofile (installed in RH >8.0)
NICK . Daemonize and package
o Teach it to fork and background
. Red Hat spec file
o Debian spec file equivalent
. Portability
. Which .h files are we actually using?
. Port to:
o Linux
o BSD
. Solaris
o Cygwin
. Win32
o OS X
- deal with pollhup / reached_eof on all platforms
o openssl randomness
o inet_ntoa
o stdint.h
- Make a script to set up a local network on your machine
o More flexibility in node addressing
D Support IPv6 rather than just 4
o Handle multihomed servers (config variable to set IP)
In the distant future:
D Load balancing between router twins
D Keep track of load over links/nodes, to
know who's hosed
SPEC!! D Non-clique topologies
D Implement our own memory management, at least for common structs
(Not ever necessary?)
D Advanced directory servers
D Automated reputation management
SPEC!! D Figure out how to do threshold directory servers
D jurisdiction info in dirserver entries? other info?
Older (done) todo stuff:
For 0.0.2pre17:
o Put a H(K | handshake) into the onionskin response
o Make cells 512 bytes
o Reduce streamid footprint from 7 bytes to 2 bytes
X Check for collisions in streamid (now possible with
just 2 bytes), and back up & replace with padding if so
o Use the 4 reserved bytes in each cell header to keep 1/5
of a sha1 of the ongoing relay payload (move into stream header)
o Move length into the stream header too
o Make length 2 bytes
D increase DH key length
D increase RSA key length
D Spec the stream_id stuff. Clarify that nobody on the backward
stream should look at stream_id.
Cell:
ACI (anonymous circuit identifier) [2 bytes]
Command [1 byte]
Payload (padded with 0 bytes) [509 bytes]
Relay payload:
Relay command [1 byte]
Stream ID [7 bytes]
Partial SHA-1 [4 bytes]
Length [2 bytes]
Relay payload [495 bytes]
For 0.0.2pre15:
o don't pick exit nodes which will certainly reject all things.
o don't pick nodes that the directory says are down
o choose randomly from running dirservers, not just first one
o install the man page
o warn when client-side tries an address/port which no router in the dir accepts.
For 0.0.2pre14:
o More flexible exit policies (18.*, 18.0.0.0/8)
o Work to succeed in the precense of exit policy violation
o Replace desired_path_len with opaque path-selection specifier
o Client-side DNS caching
o Add entries to client DNS cache based on END cells
o Remove port from END_REASON_EXITPOLICY cells
o Start building new circuits when we get an exit-policy
failure. (Defer exiting from the middle of existing
circuits or extending existing circuits for later.)
o Implement function to check whether a routerinfo_t
supports a given exit addr.
o Choose the exit node of an in-progress circuit based on
pending AP connections.
o Choose the exit node _first_, then beginning, then
middle nodes.
Previous:
o Get tor to act like a socks server
o socks4, socks4a
o socks5
o routers have identity key, link key, onion key.
o link key certs are
D signed by identity key
D not in descriptor
o not in config
D not on disk
o identity and onion keys are in descriptor (and disk)
o upon boot, if it doesn't find identity key, generate it and write it.
o also write a file with the identity key fingerprint in it
o router generates descriptor: flesh out router_get_my_descriptor()
o Routers sign descriptors with identity key
o routers put version number in descriptor
o routers should maybe have `uname -a` in descriptor?
o Give nicknames to routers
o in config
o in descriptors
o router posts descriptor
o when it boots
o every DirFetchPostPeriod seconds
D when it changes
o change tls stuff so certs don't get written to disk, or read from disk
o make directory.c 'thread'safe
o dirserver parses descriptor
o dirserver checks signature
D client checks signature?
o dirserver writes directory to file
o reads that file upon boot
o directory includes all routers, up and down
o add "up" line to directory, listing nicknames
o instruments ORs to report stats
o average cell fullness
o average bandwidth used
o configure log files. separate log file, separate severities.
o what assumptions break if we fclose(0) when we daemonize?
o make buffer struct elements opaque outside buffers.c
o add log convention to the HACKING file
o make 'make install' do the right thing
o change binary name to tor
o change config files so you look at commandline, else look in
/etc/torrc. no cascading.
o have an absolute datadir with fixed names for files, and fixed-name
keydir under that with fixed names
o Move (most of) the router/directory code out of main.c
o Simple directory servers
o Include key in source; sign directories
o Signed directory backend
o Document
o Integrate
o Add versions to code
o Have directories list recommended-versions
o Include line in directories
o Check for presence of line.
o Quit if running the wrong version
o Command-line option to override quit
o Add more information to directory server entries
o Exit policies
o Clearer bandwidth management
o Do we want to remove bandwidth from OR handshakes?
o What about OP handshakes?
X Move away from openssl
o Abstract out crypto calls
X Look at nss, others? Just include code?
o Use a stronger cipher
o aes now, by including the code ourselves
X On the fly compression of each stream
o Clean up the event loop (optimize and sanitize)
o Remove that awful concept of 'roles'
o Terminology
o Circuits, topics, cells stay named that
o 'Connection' gets divided, or renamed, or something?
o DNS farm
o Distribute queries onto the farm, get answers
o Preemptively grow a new worker before he's needed
o Prune workers when too many are idle
o DNS cache
o Clear DNS cache over time
D Honor DNS TTL info (how??)
o Have strategy when all workers are busy
o Keep track of which connections are in dns_wait
o Need to cache positives/negatives on the tor side
o Keep track of which queries have been asked
o Better error handling when
o An address doesn't resolve
o We have max workers running
o Consider taking the master out of the loop?
X Implement reply onions
o Total rate limiting
o Look at OR handshake in more detail
o Spec it
o Merge OR and OP handshakes
o rearrange connection_or so it doesn't suck so much to read
D Periodic link key rotation. Spec?
o wrap malloc with something that explodes when it fails
o Clean up the number of places that get to look at prkey
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%page
%nodefault
%center, size 9, font "thick", back "white", fore "black"
Tor:
%size 8
Next-generation Onion Routing
%size 7
Roger Dingledine
Nick Mathewson
Paul Syverson
The Free Haven Project
%font "typewriter", fore "blue"
http://freehaven.net/
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%page
Low-latency anonymity system
%leftfill
Deployed: 20 nodes, hundreds (?) of users
Many improvements on earlier design
Free software -- modified BSD license
Design is not covered by earlier onion routing
patent
Uses SOCKS to interface with client apps
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
We have working code
(14 kloc of C)
and a design document,
and a byte-level specification,
and a Debian package (in Unstable)
Works on Linux, BSD, OSX, Cygwin, ...
User-space, doesn't need kernel mods or root
%size 9
http://freehaven.net/tor/
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%page
%%
%%Talk Overview
%%
%%A bit about Onion Routing
%%
%%Improvements we've made
%%
%%Some related work
%%
%%Ask me questions
%%
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Anonymity: Who needs it?
Private citizens
advocacy, counseling, whistleblowing, reporting, ...
%size 6
Higher-level protocols
voting, e-cash, auctions
%size 6
Government applications
research, law enforcement
%size 6
Business applications
%size 5
(hide relationships and volumes of communication)
Who is visiting job sites?
Which groups are talking to patent lawyers?
Who are your suppliers and customers?
Is the CEO talking to a buyout partner?
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Anonymity is a network effect
Systems need traffic (many low-sensitivity users) to attract the high-sensitivity users
Most users do not value anonymity much
Weak security (fast system) can mean more users
which can mean
%cont, font "italic"
stronger
%cont, font "standard"
anonymity
High-sensitivity agents have incentive to run nodes
so they can be certain first node in their path is good
to attract traffic for their messages
There can be an optimal level of free-riding
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Onion Routing is...
An overlay network
Users build virtual circuits through the network
One layer of encryption at each hop
Fixed-size cells
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%page
Tor's goals
Conservative design
minimize new design work needed
%size 6
Support testing of future research
Design for deployment; deploy for use
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Threat model -- what we aim for
Protect against somebody watching Alice
Protect against curious Bob
Protect against `some' curious nodes in the middle
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Differences / limitations
We're TCP-only, not all IP (but we're user-space and very portable)
Not as strong as high-latency systems (Mixmaster, Mixminion)
Not peer-to-peer
No protocol normalization
Not unobservable (no steg, etc)
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Perfect forward secrecy
Telescoping circuit
negotiates keys at each hop
no more need for replay detection
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
No mixing, padding, traffic shaping (yet)
Please show us they're worth the usability tradeoff
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%page
%%
%%Many TCP streams can share one circuit
%%
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Many TCP streams share a circuit
Previous designs built a new circuit for each stream
lots of public key ops per request
plus anonymity dangers from making so many circuits
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Leaky-pipe circuit topology
Alice can direct cells to any node in her circuit
So we can support long-range padding,
have multiple streams exiting at different places in the circuit
etc
%size 6
Unclear whether this is dangerous or useful
More research needed
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Congestion control
Simple rate limiting
Plus have to keep internal nodes from overflowing
(Can't use global state or inter-node control)
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Directory servers
To solve the `introduction' problem
Approve new servers
Tell clients who's up right now
plus their keys, location, etc
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Variable exit policies
Each server allows different outgoing connections
E.g. no servers allow outgoing mail currently
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
End-to-end integrity checking
In previous onion routing, an insider could change
the text being transmitted:
"dir" => "rm *"
Even an external adversary could do this!
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Rendezvous points
allow hidden services
don't need (brittle) reply onions
Access-controlled: Bob can control who he talks to
Robust: Bob's service is available even when some Tor nodes go down
Smear-resistant: Evil service can't frame a rendezvous router
Application-transparent: Don't need to modify Bob's apache
%size 6
(Not implemented yet)
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
How do we compare security?
Assume adversary owns c of n nodes
can choose which
%size 6
What's the chance for a random Alice and Bob that he wins?
Freedom, Tor: (c/n)^2
Peekabooty, six-four, etc: c/n
Jap (if no padding): 1 if c>1
Anonymizer: 1 if c>0
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Future work
Threshold directory agreement
Scalability: Morphmix/p2p extensions?
Restricted-route (non-clique topology)
Non-TCP transport
Implement rendezvous points
Make it work better
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
We have working code
Plus a design document,
and a byte-level specification
and a Debian package (in Unstable)
%size 9
http://freehaven.net/tor/
%size 6
Privacy Enhancing Technologies workshop
%size 9
http://petworkshop.org/
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/Times-Roman-iso ff 150.00 scf sf
5925 1425 m
gs 1 -1 sc (Created c2, g^y2, H\(K2\)) dup sw pop neg 0 rm col0 sh gr
/Times-Roman-iso ff 150.00 scf sf
3675 1125 m
gs 1 -1 sc (Create c2, E\(g^x2\)) col0 sh gr
/Times-Roman-iso ff 150.00 scf sf
1275 450 m
gs 1 -1 sc (Create c1, E\(g^x1\)) col0 sh gr
/Times-Roman-iso ff 150.00 scf sf
3525 750 m
gs 1 -1 sc (Created c1, g^y1, H\(K1\)) dup sw pop neg 0 rm col0 sh gr
$F2psEnd
rs
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#FIG 3.2
Landscape
Center
Inches
Letter
100.00
Single
-2
1200 2
2 1 0 2 0 7 50 0 -1 0.000 0 0 -1 0 0 2
6000 300 6000 3975
2 1 0 1 0 7 50 0 -1 0.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
1200 525 3600 525
2 1 0 1 0 7 50 0 -1 0.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
3600 825 1200 825
2 1 0 2 0 7 50 0 -1 0.000 0 0 -1 0 0 2
1200 300 1200 3975
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
1200 1125 3600 1125
2 1 0 2 0 7 50 0 -1 0.000 0 0 -1 0 0 2
3600 300 3600 3975
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
3600 1200 6000 1200
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
6000 1500 3600 1500
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
3600 1575 1200 1575
2 1 2 1 0 7 50 0 -1 3.000 0 0 -1 0 0 2
1050 1800 8325 1800
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
1200 2100 3600 2100
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
3600 2175 6000 2175
2 1 1 1 0 7 50 0 -1 4.000 0 0 -1 1 1 2
1 1 1.00 60.00 120.00
1 1 1.00 60.00 120.00
6000 2400 8175 2400
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
6000 2550 3600 2550
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
3600 2625 1200 2625
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
1200 3000 3600 3000
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
3600 3075 6000 3075
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
6000 3150 8175 3150
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
8175 3450 6000 3450
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
8175 3525 6000 3525
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
8175 3600 6000 3600
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
6000 3525 3600 3525
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
6000 3675 3600 3675
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
6000 3600 3600 3600
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
3600 3675 1200 3675
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
3600 3750 1200 3750
2 1 0 1 0 7 50 0 -1 3.000 0 0 -1 1 0 2
1 1 1.00 60.00 120.00
3600 3825 1200 3825
2 1 0 2 0 7 50 0 -1 0.000 0 0 -1 0 0 2
8175 300 8175 3975
2 2 0 1 0 7 50 0 20 3.000 0 0 -1 0 0 5
6300 825 7950 825 7950 1725 6300 1725 6300 825
4 0 0 50 0 2 12 0.0000 4 135 450 3375 225 OR 1\001
4 0 0 50 0 2 12 0.0000 4 135 420 1050 225 Alice\001
4 0 0 50 0 2 12 0.0000 4 135 450 5775 225 OR 2\001
4 0 0 50 0 0 10 0.0000 4 105 960 6075 3075 "HTTP GET..."\001
4 1 0 50 0 0 10 0.0000 4 15 135 4800 3975 . . .\001
4 1 0 50 0 0 10 0.0000 4 15 135 7125 3975 . . .\001
4 1 0 50 0 0 10 0.0000 4 15 135 2400 3975 . . .\001
4 1 0 50 0 0 10 0.0000 4 135 1050 7125 2325 (TCP handshake)\001
4 0 0 50 0 2 12 0.0000 4 135 630 7875 225 website\001
4 1 0 50 0 0 10 0.0000 4 135 1335 7125 1425 {X}--AES encryption\001
4 1 0 50 0 0 10 0.0000 4 135 1410 7125 1200 E(x)--RSA encryption\001
4 1 0 50 0 0 10 0.0000 4 135 480 7125 975 Legend:\001
4 1 0 50 0 0 10 0.0000 4 135 1455 2400 225 (link is TLS-encrypted)\001
4 0 0 50 0 0 10 0.0000 4 135 2085 1275 1050 Relay c1{Extend, OR2, E(g^x2)}\001
4 0 0 50 0 0 10 0.0000 4 135 1965 1275 2025 Relay c1{{Begin <website>:80}}\001
4 2 0 50 0 0 10 0.0000 4 135 2190 3525 1500 Relay c1{Extended, g^y2, H(K2)}\001
4 0 0 50 0 0 10 0.0000 4 135 1845 3675 2100 Relay c2{Begin <website>:80}\001
4 2 0 50 0 0 10 0.0000 4 135 1410 3525 2550 Relay c1{{Connected}}\001
4 2 0 50 0 0 10 0.0000 4 135 1290 5925 2475 Relay c2{Connected}\001
4 0 0 50 0 0 10 0.0000 4 135 2085 1275 2925 Relay c1{{Data, "HTTP GET..."}}\001
4 0 0 50 0 0 10 0.0000 4 135 1965 3675 3000 Relay c2{Data, "HTTP GET..."}\001
4 1 0 50 0 0 10 0.0000 4 135 1365 4800 225 (link is TLS-encryped)\001
4 1 0 50 0 0 10 0.0000 4 135 870 7050 225 (unencrypted)\001
4 1 0 50 0 0 10 0.0000 4 105 780 7125 1650 cN--a circID\001
4 2 0 50 0 0 10 0.0000 4 135 1860 3525 3600 Relay c1{{Data, (response)}}\001
4 2 0 50 0 0 10 0.0000 4 135 645 8100 3375 (response)\001
4 2 0 50 0 0 10 0.0000 4 135 1650 5925 3450 Relay c2{Data, (response)}\001
4 2 0 50 0 0 10 0.0000 4 135 1545 5925 1425 Created c2, g^y2, H(K2)\001
4 0 0 50 0 0 10 0.0000 4 135 1170 3675 1125 Create c2, E(g^x2)\001
4 0 0 50 0 0 10 0.0000 4 135 1170 1275 450 Create c1, E(g^x1)\001
4 2 0 50 0 0 10 0.0000 4 135 1545 3525 750 Created c1, g^y1, H(K1)\001
Binary file not shown.
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How to make rendezvous points work
0. Overview
Rendezvous points are an implementation of location-hidden services
(server anonymity) in the onion routing network. Location-hidden
services means Bob can offer a tcp service (say, a webserver) via the
onion routing network, without revealing the IP of that service.
The basic idea is to provide censorship resistance for Bob by allowing
him to advertise a variety of onion routers as his public location
(nodes known as his Introduction Points, see Section 1). Alice,
the client, chooses a node known as a Meeting Point (see Section
2). This extra level of indirection is needed so Bob doesn't serve
files directly from his public locations (so these nodes don't open
themselves up to abuse, eg from serving Nazi propaganda in France). The
extra level of indirection also allows Bob to choose which requests
to respond to, and which to ignore.
We provide the necessary glue code so that Alice can view webpages
on a location-hidden webserver, and Bob can run a location-hidden
server, with minimal invasive changes (see Section 3). Both Alice
and Bob must run local onion proxies (OPs) -- software that knows
how to talk to the onion routing network.
The big picture follows. We direct the reader to the rest of the
document for more details and explanation.
1) Bob chooses some Introduction Points, and advertises them on a
Distributed Hash Table (DHT).
2) Bob establishes onion routing connections to each of his
Introduction Points, and waits.
3) Alice learns about Bob's service out of band (perhaps Bob gave her
a pointer, or she found it on a website). She looks up the details
of Bob's service from the DHT.
4) Alice chooses and establishes a Meeting Point for this transaction.
5) Alice goes to one of Bob's Introduction Points, and gives it a blob
(encrypted for Bob) which tells him about herself and the Meeting
Point she chose. The Introduction Point sends the blob to Bob.
6) Bob chooses whether to ignore the blob, or to onion route to MP.
Let's assume the latter.
7) MP plugs together Alice and Bob. Note that MP doesn't know (or care)
who Alice is, or who Bob is; and it can't read anything they
transmit either, because they share a session key.
8) Alice sends a 'begin' cell along the circuit. It makes its way
to Bob's onion proxy. Bob's onion proxy connects to Bob's webserver.
9) Data goes back and forth as usual.
1. Introduction service
Bob wants to learn about client requests for communication, but
wants to avoid responding unnecessarily to unauthorized clients.
Bob's proxy opens a circuit, and tells some onion router on that
circuit to expect incoming connections, and notify Bob of them.
When establishing such an introduction point, Bob provides the onion
router with a public "introduction" key. The hash of this public
key identifies a unique Bob, and (since Bob is required to sign his
messages) prevents anybody else from usurping Bob's introduction
point in the future. Additionally, Bob can use the same public key
to establish an introduction point on another onion router (OR),
and Alice can still be confident that Bob is the same server.
(The set-up-an-introduction-point command should come via a
RELAY_BIND_INTRODUCTION cell. This cell creates a new stream on the
circuit from Bob to the introduction point.)
ORs that support introduction run an introduction service on a
separate port. When Alice wants to notify Bob of a meeting point,
she connects (directly or via Tor) to the introduction port, and
sends the following:
MEETING REQUEST
RSA-OAEP encrypted with server's public key:
[20 bytes] Hash of Bob's public key (identifies which Bob to notify)
[ 0 bytes] Initial authentication [optional]
RSA encrypted with Bob's public key:
[16 bytes] Symmetric key for encrypting blob past RSA
[ 6 bytes] Meeting point (IP/port)
[ 8 bytes] Meeting cookie
[ 0 bytes] End-to-end authentication [optional]
[98 bytes] g^x part 1 (inside the RSA)
[30 bytes] g^x part 2 (symmetrically encrypted)
The meeting point and meeting cookie allow Bob to contact Alice and
prove his identity; the end-to-end authentication enables Bob to
decide whether to talk to Alice; the initial authentication enables
the introduction point to pre-screen introduction requests before
sending them to Bob. (See Section 2 for a discussion of meeting
points; see Section 1.1 for an example authentication mechanism.)
The authentication steps are the appropriate places for the
introduction server or Bob to do replay prevention, if desired.
When the introduction point receives a valid meeting request, it
sends the portion intended for Bob along the stream
created by Bob's RELAY_BIND_INTRODUCTION. Bob then, at his
discretion, connects to Alice's meeting point.
1.1. An example authentication scheme for introduction services
Bob makes two short-term secrets SB and SN, and tells the
introduction point about SN. Bob gives Alice a cookie consisting
of A,B,C such that H(A|SB)=B and H(A|SN)=C. Alice's initial
authentication is <A,C>; Alice's end-to-end authentication is <A,B>.
[Maybe] Bob keeps a replay cache of A values, and doesn't allow any
value to be used twice. Over time, Bob rotates SB and SN.
[Maybe] Each 'A' has an expiration time built in to it.
In reality, we'll want to pick a scheme that (a) wasn't invented from
scratch in an evening, and (b) doesn't require Alice to remember this
many bits (see section 3.2).
2. Meeting points
For Bob to actually reply to Alice, Alice first establishes a
circuit to an onion router R, and sends a RELAY_BIND_MEETING cell
to that onion router. The RELAY_BIND_MEETING cell contains a
'Meeting cookie' (MC) that Bob can use to authenticate to R. R
remembers the cookie and associates it with Alice.
Later, Bob also routes to R and sends R a RELAY_JOIN_MEETING cell with
the meeting cookie MC. After this point, R routes all traffic from
Bob's circuit or Alice's circuit as if the two circuits were joined:
any RELAY cells that are not for a recognized topic are passed down
Alice or Bob's circuit. Bob's first cell to Alice contains g^y.
To prevent R from reading their traffic, Alice and Bob derive two
end-to-end keys from g^{xy}, and they each treat R as just another
hop on the circuit. (These keys are used in addition to the series
of encryption keys already in use on Alice and Bob's circuits.)
Bob's OP accepts RELAY_BEGIN, RELAY_DATA, RELAY_END, and
RELAY_SENDME cells from Alice. Alice's OP accepts RELAY_DATA,
RELAY_END, and RELAY_SENDME cells from Bob. All RELAY_BEGIN cells
to Bob must have target IP and port of zero; Bob's OP will redirect
them to the actual target IP and port of Bob's server.
Alice and Bob's OPs disallow CREATE or RELAY_EXTEND cells as usual.
3. Application interface
3.1. Application interface: server side
Bob has a service that he wants to offer to the world but keep its
location hidden. He configures his local OP to know about this
service, including the following data:
Local IP and port of the service
Strategy for choosing introduction points
(for now, just randomly pick among the ORs offering it)
Strategy for user authentication
(for now, just accept all users)
Public (RSA) key (one for each service Bob offers)
Bob chooses a set of N Introduction servers on which to advertise
his service.
We assume the existence of a robust decentralized efficient lookup
system (call it "DHT" for distributed hash table -- note that the
onion routers can run nodes). Bob publishes
* Bob's Public Key for that service
* Expiration date ("don't use after")
* Introduction server 0 ... Introduction server N
(All signed by Bob's Public Key)
into DHT, indexed by the hash of Bob's Public Key. Bob should
periodically republish his introduction information with a new
expiration date (and possibly with new/different introduction servers
if he wants), so Alice can trust that DHT is giving her an up-to-date
version. The Chord CFS paper describes a sample DHT that allows
authenticated updating.
3.2. Application interface: client side
We require that the client interface remain a SOCKS proxy, and we
require that Alice shouldn't have to modify her applications. Thus
we encode all of the necessary information into the hostname (more
correctly, fqdn) that Alice uses, eg when clicking on a url in her
browser.
To establish a connection to Bob, Alice needs to know an Introduction
point, Bob's PK, and some authentication cookie. Because encoding this
information into the hostname will be too long for a typical hostname,
we instead use a layer of indirection. We encode a hash of Bob's PK
(10 bytes is sufficient since we're not worrying about collisions),
and also the authentication token (empty for now). Location-hidden
services use the special top level domain called '.onion': thus
hostnames take the form x.y.onion where x is the hash of PK, and y
is the authentication cookie. If no cookie is required, the hostname
can simply be of the form x.onion. Assuming only case insensitive
alphanumeric and hyphen, we get a bit more than 6 bits encoded
per character, meaning the x part of the hostname will be about
13 characters.
Alice's onion proxy examines hostnames and recognizes when they're
destined for a hidden server. If so, it decodes the PK and performs
the steps in Section 0 above.
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%page
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Tor:
%size 8
Next-generation Onion Routing
%size 7
Roger Dingledine
Nick Mathewson
Paul Syverson
%%The Free Haven Project
%%%font "typewriter", fore "blue"
%%http://freehaven.net/
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Low-latency anonymity system
%leftfill
Deployed: 19 nodes, hundreds of users (?)
Many improvements on earlier design
Free software -- available source code
Design is not covered by earlier onion routing
patent
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Perfect forward secrecy
Telescoping circuit
negotiates keys at each hop
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%page
%%
%%Separation from "protocol cleaning"
%%
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
No mixing, padding, traffic shaping (yet)
Please show us they're worth the usability tradeoff
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%page
%%
%%Many TCP streams can share one circuit
%%
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Congestion control
Simple rate limiting
Plus have to keep internal nodes from overflowing
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Directory servers
Approve new servers
Tell clients who's up right now
plus their keys, location, etc
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Variable exit policies
Each server allows different outgoing connections
E.g. no servers allow outgoing mail currently
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
End-to-end integrity checking
In previous onion routing, an insider could change
the text being transmitted:
"dir" => "rm *"
Even an external adversary could do this!
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Rendezvous points
allow hidden services
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
Differences / limitations
We're TCP-only, not all IP (but we're user-space and very portable)
Not peer-to-peer
No protocol normalization
%%Not unobservable
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%page
We have working code
Plus a design document,
and a byte-level specification
%size 9
http://freehaven.net/tor/
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sw$Id$
Tor Spec
Note: This is an attempt to specify Tor as it exists as implemented in
early March, 2004. It is not recommended that others implement this
design as it stands; future versions of Tor will implement improved
protocols.
This is not a design document; most design criteria are not examined. For
more information on why Tor acts as it does, see tor-design.pdf.
TODO: (very soon)
- EXTEND cells should have hostnames or nicknames, so that OPs never
resolve OR hostnames. Else DNS servers can give different answers to
different OPs, and compromise their anonymity.
- Alternatively, directories should include IPs.
- REASON_CONNECTFAILED should include an IP.
- Copy prose from tor-design to make everything more readable.
0. Notation:
PK -- a public key.
SK -- a private key
K -- a key for a symmetric cypher
a|b -- concatenation of 'a' and 'b'.
[A0 B1 C2] -- a three-byte sequence, containing the bytes with
hexadecimal values A0, B1, and C2, in that order.
All numeric values are encoded in network (big-endian) order.
Unless otherwise specified, all symmetric ciphers are AES in counter
mode, with an IV of all 0 bytes. Asymmetric ciphers are either RSA
with 1024-bit keys and exponents of 65537, or DH with the safe prime
from rfc2409, section 6.2, whose hex representation is:
"FFFFFFFFFFFFFFFFC90FDAA22168C234C4C6628B80DC1CD129024E08"
"8A67CC74020BBEA63B139B22514A08798E3404DDEF9519B3CD3A431B"
"302B0A6DF25F14374FE1356D6D51C245E485B576625E7EC6F44C42E9"
"A637ED6B0BFF5CB6F406B7EDEE386BFB5A899FA5AE9F24117C4B1FE6"
"49286651ECE65381FFFFFFFFFFFFFFFF"
1. System overview
Onion Routing is a distributed overlay network designed to anonymize
low-latency TCP-based applications such as web browsing, secure shell,
and instant messaging. Clients choose a path through the network and
build a ``circuit'', in which each node (or ``onion router'' or ``OR'')
in the path knows its predecessor and successor, but no other nodes in
the circuit. Traffic flowing down the circuit is sent in fixed-size
``cells'', which are unwrapped by a symmetric key at each node (like
the layers of an onion) and relayed downstream.
2. Connections
There are two ways to connect to an onion router (OR). The first is
as an onion proxy (OP), which allows the OP to authenticate the OR
without authenticating itself. The second is as another OR, which
allows mutual authentication.
Tor uses TLS for link encryption. All implementations MUST support
the TLS ciphersuite "TLS_EDH_RSA_WITH_DES_192_CBC3_SHA", and SHOULD
support "TLS_DHE_RSA_WITH_AES_128_CBC_SHA" if it is available.
Implementations MAY support other ciphersuites, but MUST NOT
support any suite without ephemeral keys, symmetric keys of at
least 128 bits, and digests of at least 160 bits.
An OR always sends a self-signed X.509 certificate whose commonName
is the server's nickname, and whose public key is in the server
directory.
All parties receiving certificates must confirm that the public
key is as it appears in the server directory, and close the
connection if it is not.
Once a TLS connection is established, the two sides send cells
(specified below) to one another. Cells are sent serially. All
cells are 512 bytes long. Cells may be sent embedded in TLS
records of any size or divided across TLS records, but the framing
of TLS records MUST NOT leak information about the type or contents
of the cells.
OR-to-OR connections are never deliberately closed. When an OR
starts or receives a new directory, it tries to open new
connections to any OR it is not already connected to.
OR-to-OP connections are not permanent. An OP should close a
connection to an OR if there are no circuits running over the
connection, and an amount of time (KeepalivePeriod, defaults to 5
minutes) has passed.
3. Cell Packet format
The basic unit of communication for onion routers and onion
proxies is a fixed-width "cell". Each cell contains the following
fields:
CircID [2 bytes]
Command [1 byte]
Payload (padded with 0 bytes) [509 bytes]
[Total size: 512 bytes]
The CircID field determines which circuit, if any, the cell is
associated with.
The 'Command' field holds one of the following values:
0 -- PADDING (Padding) (See Sec 6.2)
1 -- CREATE (Create a circuit) (See Sec 4)
2 -- CREATED (Acknowledge create) (See Sec 4)
3 -- RELAY (End-to-end data) (See Sec 5)
4 -- DESTROY (Stop using a circuit) (See Sec 4)
The interpretation of 'Payload' depends on the type of the cell.
PADDING: Payload is unused.
CREATE: Payload contains the handshake challenge.
CREATED: Payload contains the handshake response.
RELAY: Payload contains the relay header and relay body.
DESTROY: Payload is unused.
Upon receiving any other value for the command field, an OR must
drop the cell.
The payload is padded with 0 bytes.
PADDING cells are currently used to implement connection keepalive.
ORs and OPs send one another a PADDING cell every few minutes.
CREATE, CREATED, and DESTROY cells are used to manage circuits;
see section 4 below.
RELAY cells are used to send commands and data along a circuit; see
section 5 below.
4. Circuit management
4.1. CREATE and CREATED cells
Users set up circuits incrementally, one hop at a time. To create a
new circuit, OPs send a CREATE cell to the first node, with the
first half of the DH handshake; that node responds with a CREATED
cell with the second half of the DH handshake plus the first 20 bytes
of derivative key data (see section 4.2). To extend a circuit past
the first hop, the OP sends an EXTEND relay cell (see section 5)
which instructs the last node in the circuit to send a CREATE cell
to extend the circuit.
The payload for a CREATE cell is an 'onion skin', consisting of:
RSA-encrypted data [128 bytes]
Symmetrically-encrypted data [16 bytes]
The RSA-encrypted portion contains:
Symmetric key [16 bytes]
First part of DH data (g^x) [112 bytes]
The symmetrically encrypted portion contains:
Second part of DH data (g^x) [16 bytes]
The two parts of DH data, once decrypted and concatenated, form
g^x as calculated by the client.
The relay payload for an EXTEND relay cell consists of:
Address [4 bytes]
Port [2 bytes]
Onion skin [144 bytes]
The port and address field denote the IPV4 address and port of the
next onion router in the circuit.
The payload for a CREATED cell, or the relay payload for an
EXTENDED cell, contains:
DH data (g^y) [128 bytes]
Derivative key data (KH) [20 bytes] <see 4.2 below>
The CircID for a CREATE cell is an arbitrarily chosen 2-byte
integer, selected by the node (OP or OR) that sends the CREATE
cell. To prevent CircID collisions, when one OR sends a CREATE
cell to another, it chooses from only one half of the possible
values based on the ORs' nicknames: if the sending OR has a
lexicographically earlier nickname, it chooses a CircID with a high
bit of 0; otherwise, it chooses a CircID with a high bit of 1.
4.2. Setting circuit keys
Once the handshake between the OP and an OR is completed, both
servers can now calculate g^xy with ordinary DH. From the base key
material g^xy, they compute derivative key material as follows.
First, the server represents g^xy as a big-endian unsigned integer.
Next, the server computes 60 bytes of key data as K = SHA1(g^xy |
[00]) | SHA1(g^xy | [01]) | SHA1(g^xy | [02]) where "00" is a single
octet whose value is zero, [01] is a single octet whose value is
one, etc. The first 20 bytes of K form KH, the next 16 bytes of K
form Kf, and the next 16 bytes of K form Kb.
KH is used in the handshake response to demonstrate knowledge of the
computed shared key. Kf is used to encrypt the stream of data going
from the OP to the OR, and Kb is used to encrypt the stream of data
going from the OR to the OP.
4.3. Creating circuits
When creating a circuit through the network, the circuit creator
(OP) performs the following steps:
1. Choose an onion router as an exit node (R_N), such that the onion
router's exit policy does not exclude all pending streams
that need a circuit.
2. Choose a chain of (N-1) chain of N onion routers
(R_1...R_N-1) to constitute the path, such that no router
appears in the path twice.
3. If not already connected to the first router in the chain,
open a new connection to that router.
4. Choose a circID not already in use on the connection with the
first router in the chain; send a CREATE cell along the
connection, to be received by the first onion router.
5. Wait until a CREATED cell is received; finish the handshake
and extract the forward key Kf_1 and the backward key Kb_1.
6. For each subsequent onion router R (R_2 through R_N), extend
the circuit to R.
To extend the circuit by a single onion router R_M, the OP performs
these steps:
1. Create an onion skin, encrypting the RSA-encrypted part with
R's public key.
2. Encrypt and send the onion skin in a relay EXTEND cell along
the circuit (see section 5).
3. When a relay EXTENDED cell is received, verify KH, and
calculate the shared keys. The circuit is now extended.
When an onion router receives an EXTEND relay cell, it sends a CREATE
cell to the next onion router, with the enclosed onion skin as its
payload. The initiating onion router chooses some circID not yet
used on the connection between the two onion routers. (But see
section 4.1. above, concerning choosing circIDs based on
lexicographic order of nicknames.)
As an extension (called router twins), if the desired next onion
router R in the circuit is down, and some other onion router R'
has the same public keys as R, then it's ok to extend to R' rather than R.
When an onion router receives a CREATE cell, if it already has a
circuit on the given connection with the given circID, it drops the
cell. Otherwise, after receiving the CREATE cell, it completes the
DH handshake, and replies with a CREATED cell. Upon receiving a
CREATED cell, an onion router packs it payload into an EXTENDED relay
cell (see section 5), and sends that cell up the circuit. Upon
receiving the EXTENDED relay cell, the OP can retrieve g^y.
(As an optimization, OR implementations may delay processing onions
until a break in traffic allows time to do so without harming
network latency too greatly.)
4.4. Tearing down circuits
Circuits are torn down when an unrecoverable error occurs along
the circuit, or when all streams on a circuit are closed and the
circuit's intended lifetime is over. Circuits may be torn down
either completely or hop-by-hop.
To tear down a circuit completely, an OR or OP sends a DESTROY
cell to the adjacent nodes on that circuit, using the appropriate
direction's circID.
Upon receiving an outgoing DESTROY cell, an OR frees resources
associated with the corresponding circuit. If it's not the end of
the circuit, it sends a DESTROY cell for that circuit to the next OR
in the circuit. If the node is the end of the circuit, then it tears
down any associated edge connections (see section 5.1).
After a DESTROY cell has been processed, an OR ignores all data or
destroy cells for the corresponding circuit.
(The rest of this section is not currently used; on errors, circuits
are destroyed, not truncated.)
To tear down part of a circuit, the OP may send a RELAY_TRUNCATE cell
signaling a given OR (Stream ID zero). That OR sends a DESTROY
cell to the next node in the circuit, and replies to the OP with a
RELAY_TRUNCATED cell.
When an unrecoverable error occurs along one connection in a
circuit, the nodes on either side of the connection should, if they
are able, act as follows: the node closer to the OP should send a
RELAY_TRUNCATED cell towards the OP; the node farther from the OP
should send a DESTROY cell down the circuit.
4.5. Routing relay cells
When an OR receives a RELAY cell, it checks the cell's circID and
determines whether it has a corresponding circuit along that
connection. If not, the OR drops the RELAY cell.
Otherwise, if the OR is not at the OP edge of the circuit (that is,
either an 'exit node' or a non-edge node), it de/encrypts the payload
with AES/CTR, as follows:
'Forward' relay cell (same direction as CREATE):
Use Kf as key; encrypt.
'Back' relay cell (opposite direction from CREATE):
Use Kb as key; decrypt.
The OR then decides whether it recognizes the relay cell, by
inspecting the payload as described in section 5.1 below. If the OR
recognizes the cell, it processes the contents of the relay cell.
Otherwise, it passes the decrypted relay cell along the circuit if
the circuit continues. If the OR at the end of the circuit
encounters an unrecognized relay cell, an error has occurred: the OR
sends a DESTROY cell to tear down the circuit.
When a relay cell arrives at an OP, it the OP encrypts the length and
payload fields with AES/CTR as follows:
OP receives data cell:
For I=N...1,
Encrypt with Kb_I. If the payload is recognized (see
section 5.1), then stop and process the payload.
For more information, see section 5 below.
5. Application connections and stream management
5.1. Relay cells
Within a circuit, the OP and the exit node use the contents of
RELAY packets to tunnel end-to-end commands and TCP connections
("Streams") across circuits. End-to-end commands can be initiated
by either edge; streams are initiated by the OP.
The payload of each unencrypted RELAY cell consists of:
Relay command [1 byte]
'Recognized' [2 bytes]
StreamID [2 bytes]
Digest [4 bytes]
Length [2 bytes]
Data [498 bytes]
The relay commands are:
1 -- RELAY_BEGIN
2 -- RELAY_DATA
3 -- RELAY_END
4 -- RELAY_CONNECTED
5 -- RELAY_SENDME
6 -- RELAY_EXTEND
7 -- RELAY_EXTENDED
8 -- RELAY_TRUNCATE
9 -- RELAY_TRUNCATED
10 -- RELAY_DROP
The 'Recognized' field in any unencrypted relay payload is always set
to zero; the 'digest' field is computed as the first four bytes of a
SHA-1 digest of the rest of the RELAY cell's payload, taken with the
digest field set to zero.
When the 'recognized' field of a RELAY cell is zero, and the digest
is correct, the cell is considered "recognized" for the purposes of
decryption (see section 4.5 above).
All RELAY cells pertaining to the same tunneled stream have the
same stream ID. StreamIDs are chosen randomly by the OP. RELAY
cells that affect the entire circuit rather than a particular
stream use a StreamID of zero.
The 'Length' field of a relay cell contains the number of bytes in
the relay payload which contain real payload data. The remainder of
the payload is padded with random bytes.
5.2. Opening streams and transferring data
To open a new anonymized TCP connection, the OP chooses an open
circuit to an exit that may be able to connect to the destination
address, selects an arbitrary StreamID not yet used on that circuit,
and constructs a RELAY_BEGIN cell with a payload encoding the address
and port of the destination host. The payload format is:
ADDRESS | ':' | PORT | [00]
where ADDRESS is be a DNS hostname, or an IPv4 address in
dotted-quad format; and where PORT is encoded in decimal.
[What is the [00] for? -NM]
Upon receiving this cell, the exit node resolves the address as
necessary, and opens a new TCP connection to the target port. If the
address cannot be resolved, or a connection can't be established, the
exit node replies with a RELAY_END cell. (See 5.4 below.)
Otherwise, the exit node replies with a RELAY_CONNECTED cell, whose
payload is the 4-byte IP address to which the connection was made.
The OP waits for a RELAY_CONNECTED cell before sending any data.
Once a connection has been established, the OP and exit node
package stream data in RELAY_DATA cells, and upon receiving such
cells, echo their contents to the corresponding TCP stream.
RELAY_DATA cells sent to unrecognized streams are dropped.
Relay RELAY_DROP cells are long-range dummies; upon receiving such
a cell, the OR or OP must drop it.
5.3. Closing streams
When an anonymized TCP connection is closed, or an edge node
encounters error on any stream, it sends a 'RELAY_END' cell along the
circuit (if possible) and closes the TCP connection immediately. If
an edge node receives a 'RELAY_END' cell for any stream, it closes
the TCP connection completely, and sends nothing more along the
circuit for that stream.
The payload of a RELAY_END cell begins with a single 'reason' byte to
describe why the stream is closing, plus optional data (depending on
the reason.) The values are:
1 -- REASON_MISC (catch-all for unlisted reasons)
2 -- REASON_RESOLVEFAILED (couldn't look up hostname)
3 -- REASON_CONNECTFAILED (couldn't connect to host/port)
4 -- REASON_EXITPOLICY (OR refuses to connect to host or port)
5 -- REASON_DESTROY (circuit is being destroyed [???-NM])
6 -- REASON_DONE (anonymized TCP connection was closed)
7 -- REASON_TIMEOUT (OR timed out while connecting [???-NM])
(With REASON_EXITPOLICY, the 4-byte IP address forms the optional
data; no other reason currently has extra data.)
*** [The rest of this section describes unimplemented functionality.]
Because TCP connections can be half-open, we follow an equivalent
to TCP's FIN/FIN-ACK/ACK protocol to close streams.
An exit connection can have a TCP stream in one of three states:
'OPEN', 'DONE_PACKAGING', and 'DONE_DELIVERING'. For the purposes
of modeling transitions, we treat 'CLOSED' as a fourth state,
although connections in this state are not, in fact, tracked by the
onion router.
A stream begins in the 'OPEN' state. Upon receiving a 'FIN' from
the corresponding TCP connection, the edge node sends a 'RELAY_FIN'
cell along the circuit and changes its state to 'DONE_PACKAGING'.
Upon receiving a 'RELAY_FIN' cell, an edge node sends a 'FIN' to
the corresponding TCP connection (e.g., by calling
shutdown(SHUT_WR)) and changing its state to 'DONE_DELIVERING'.
When a stream in already in 'DONE_DELIVERING' receives a 'FIN', it
also sends a 'RELAY_FIN' along the circuit, and changes its state
to 'CLOSED'. When a stream already in 'DONE_PACKAGING' receives a
'RELAY_FIN' cell, it sends a 'FIN' and changes its state to
'CLOSED'.
If an edge node encounters an error on any stream, it sends a
'RELAY_END' cell (if possible) and closes the stream immediately.
6. Flow control
6.1. Link throttling
Each node should do appropriate bandwidth throttling to keep its
user happy.
Communicants rely on TCP's default flow control to push back when they
stop reading.
6.2. Link padding
Currently nodes are not required to do any sort of link padding or
dummy traffic. Because strong attacks exist even with link padding,
and because link padding greatly increases the bandwidth requirements
for running a node, we plan to leave out link padding until this
tradeoff is better understood.
6.3. Circuit-level flow control
To control a circuit's bandwidth usage, each OR keeps track of
two 'windows', consisting of how many RELAY_DATA cells it is
allowed to package for transmission, and how many RELAY_DATA cells
it is willing to deliver to streams outside the network.
Each 'window' value is initially set to 1000 data cells
in each direction (cells that are not data cells do not affect
the window). When an OR is willing to deliver more cells, it sends a
RELAY_SENDME cell towards the OP, with Stream ID zero. When an OR
receives a RELAY_SENDME cell with stream ID zero, it increments its
packaging window.
Each of these cells increments the corresponding window by 100.
The OP behaves identically, except that it must track a packaging
window and a delivery window for every OR in the circuit.
An OR or OP sends cells to increment its delivery window when the
corresponding window value falls under some threshold (900).
If a packaging window reaches 0, the OR or OP stops reading from
TCP connections for all streams on the corresponding circuit, and
sends no more RELAY_DATA cells until receiving a RELAY_SENDME cell.
[this stuff is badly worded; copy in the tor-design section -RD]
6.4. Stream-level flow control
Edge nodes use RELAY_SENDME cells to implement end-to-end flow
control for individual connections across circuits. Similarly to
circuit-level flow control, edge nodes begin with a window of cells
(500) per stream, and increment the window by a fixed value (50)
upon receiving a RELAY_SENDME cell. Edge nodes initiate RELAY_SENDME
cells when both a) the window is <= 450, and b) there are less than
ten cell payloads remaining to be flushed at that edge.
7. Directories and routers
7.1. Extensible information format
Router descriptors and directories both obey the following lightweight
extensible information format.
The highest level object is a Document, which consists of one or more Items.
Every Item begins with a KeywordLine, followed by one or more Objects. A
KeywordLine begins with a Keyword, optionally followed by a space and more
non-newline characters, and ends with a newline. A Keyword is a sequence of
one or more characters in the set [A-Za-z0-9-]. An Object is a block of
encoded data in pseudo-Open-PGP-style armor. (cf. RFC 2440)
More formally:
Document ::= (Item | NL)+
Item ::= KeywordLine Object*
KeywordLine ::= Keyword NL | Keyword SP ArgumentsChar+ NL
Keyword = KeywordChar+
KeywordChar ::= 'A' ... 'Z' | 'a' ... 'z' | '0' ... '9' | '-'
ArgumentChar ::= any printing ASCII character except NL.
Object ::= BeginLine Base-64-encoded-data EndLine
BeginLine ::= "-----BEGIN " Keyword "-----" NL
EndLine ::= "-----END " Keyword "-----" NL
The BeginLine and EndLine of an Object must use the same keyword.
When interpreting a Document, software MUST reject any document containing a
KeywordLine that starts with a keyword it doesn't recognize.
7.1. Router descriptor format.
Every router descriptor MUST start with a "router" Item; MUST end with a
"router-signature" Item and an extra NL; and MUST contain exactly one
instance of each of the following Items: "published" "onion-key" "link-key"
"signing-key". Additionally, a router descriptor MAY contain any number of
"accept", "reject", and "opt" Items.
The items' formats are as follows:
"router" nickname address (ORPort SocksPort DirPort bandwidth)?
"ports" ORPort SocksPort DirPort
"bandwidth" bandwidth
"platform" string
"published" YYYY-MM-DD HH:MM:SS
"onion-key" NL a public key in PEM format
"link-key" NL a public key in PEM format
"signing-key" NL a public key in PEM format
"accept" string
"reject" string
"router-signature" NL "-----BEGIN SIGNATURE-----" NL Signature NL
"-----END SIGNATURE-----"
"opt" SP keyword string? NL,Object?
ORport ::= port where the router listens for routers/proxies (speaking cells)
SocksPort ::= where the router listens for applications (speaking socks)
DirPort ::= where the router listens for directory download requests
bandwidth ::= maximum bandwidth, in bytes/s
nickname ::= between 1 and 32 alphanumeric characters. case-insensitive.
Bandwidth and ports are required; if they are not included in the router
line, they must appear in "bandwidth" and "ports" lines.
"opt" is reserved for non-critical future extensions.
7.2. Directory format
A Directory begins with a "signed-directory" item, followed by one each of
the following, in any order: "recommended-software". It may include any
number of "opt" items. After these items, a directory includes any number
of router descriptors, and a singer "directory-signature" item.
"signed-directory"
"recommended-software" comma-separated-version-list
"directory-signature" NL Signature
Note: The router descriptor for the directory server must appear first.
The signature is computed by computing the SHA-1 hash of the
directory, from the characters "signed-directory", through the newline
after "directory-signature". This digest is then padded with PKCS.1,
and signed with the directory server's signing key.
If software encounters an unrecognized keyword in a single router descriptor,
it should reject only that router descriptor, and continue using the
others. If it encounters an unrecognized keyword in the directory header,
it should reject the entire directory.
7.3. Behavior of a directory server
lists nodes that are connected currently
speaks http on a socket, spits out directory on request
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.TH TOR 1 "November 2003" "TOR"
.SH NAME
tor \- The second-generation onion router
.SH SYNOPSIS
.B tor
[\fIOPTION value\fR]...
.SH DESCRIPTION
.I tor
is a connection-oriented anonymizing communication
service. Users choose a source-routed path through a set of nodes, and
negotiate a "virtual circuit" through the network, in which each node
knows its predecessor and successor, but no others. Traffic flowing down
the circuit is unwrapped by a symmetric key at each node, which reveals
the downstream node.
.PP
Basically \fItor\fR provides a distributed network of servers ("onion
routers"). Users bounce their tcp streams -- web traffic, ftp, ssh, etc --
around the routers, and recipients, observers, and even the routers
themselves have difficulty tracking the source of the stream.
.SH OPTIONS
\fB-h, -help\fP
Display a short help message and exit.
.TP
\fB-f \fR\fIFILE\fP
FILE contains further "option value" pairs. (Default: @CONFDIR@/torrc)
.TP
Other options can be specified either on the commandline (\fI--option value\fR), or in the configuration file (\fIoption value\fR).
.TP
\fBloglevel debug|info|warn|err\fP
Set the verboseness level of the primary log. (Default: warn)
.TP
\fBlogfile \fR\fIFILE\fP
Rather than logging to stdout, log to FILE.
.TP
\fBbandwidthrate \fR\fINUM\fP
A token bucket limits the average incoming bandwidth on this node to NUM bytes per second. (Default: 800000)
.TP
\fBbandwidthburst \fR\fINUM\fP
Limit the maximum token bucket size (also known as the burst) to NUM bytes. (Default: 10000000)
.TP
\fBdebuglogfile \fR\fIFILE\fP
In addition to other logging, we will log to FILE at log-level debug.
.TP
\fBgroup \fR\fIGID\fP
On startup, setgid to this user.
.TP
\fBkeepaliveperiod \fR\fINUM\fP
To keep firewalls from expiring connections, send a padding keepalive cell on open connections every NUM seconds. (Default: 300)
.TP
\fBpidfile \fR\fIFILE\fP
On startup, write our PID to FILE. On clean shutdown, remove FILE.
.TP
\fBrouterfile \fR\fIFILE\fP
FILE contains a list of directory servers, to bootstrap into the network. (Default: @CONFDIR@/dirservers)
.TP
\fBrunasdaemon \fR\fI0|1\fP
If 1, Tor forks and daemonizes to the background. (Default: 0)
.TP
\fBuser \fR\fIUID\fP
On startup, setuid to this user.
.SH CLIENT OPTIONS
.PP
The following options are useful only for clients (that is, if \fBsocksport\fP is non-zero):
.TP
\fBentrynodes \fR\fInickname,nickname,...\fP
A list of preferred nodes to use for the first hop in the circuit, if possible.
.TP
\fBexitnodes \fR\fInickname,nickname,...\fP
A list of preferred nodes to use for the last hop in the circuit, if possible.
.TP
\fBexcludenodes \fR\iInickname,nickname,...\fP
A list of nodes to never use when building a circuit.
.TP
\fBnewcircuitperiod \fR\fINUM\fP
Every NUM seconds consider whether to build a new circuit. (Default: 60)
.TP
\fBpathlencoinweight \fR\fI0.0-1.0\fP
Paths are 3 hops plus a geometric distribution centered around this coinweight. Must be >=0.0 and <1.0. (Default: 0.3)
.TP
\fBsocksport \fR\fIPORT\fP
Bind to this port to listen for connections from socks-speaking applications.
.TP
\fBsocksbindaddress \fR\fIIP\fP
Bind to this address to listen for connections from socks-speaking applications. (Default: 127.0.0.1)
.SH SERVER OPTIONS
.PP
The following options are useful only for servers (that is, if \fBorport\fP is non-zero):
.TP
\fBaddress address\fP
The fqdn of this server (e.g. moria.mit.edu).
.TP
\fBdatadirectory \fR\fIDIR\fP
Store working data in DIR (Default: @LOCALSTATEDIR@/lib/tor)
.TP
\fBexitpolicy \fR\fIpolicy,policy,...\fP
Set an exit policy for this server. Each policy is of the form "reject ADDR/MASK:PORT". For example,
"reject 127.0.0.1:*,reject 192.168.1.0/24:*,accept *:*" would reject any traffic destined for
localhost and any 192.168.1.* address, but accept anything else.
.TP
\fBmaxonionspending \fR\fINUM\fP
If you have more than this number of onionskins queued for decrypt, reject new ones. (Default: 100)
.TP
\fBnickname \fR\fIname\fP
Set the server's nickname to 'name'.
.TP
\fBnumcpus \fR\fInum\fP
How many processes to use at once for decrypting onionskins. (Default: 1)
.TP
\fBorport \fR\fIPORT\fP
Bind to this port to listen for connections from Tor clients and servers.
.TP
\fBorbindaddress \fR\fIIP\fP
Bind to this address to listen for connections from Tor clients and servers. (Default: 0.0.0.0)
.SH DIRECTORY SERVER OPTIONS
.PP
The following options are useful only for directory servers (that is, if \fBdirport\fP is non-zero):
.TP
\fBdirport \fR\fIPORT\fP
Bind the directory service to this port.
.TP
\fBdirbindaddress \fR\fIIP\fP
Bind the directory service to this address. (Default: 0.0.0.0)
.TP
\fBrecommendedversions \fR\fISTRING\fP
STRING is a command-separated list of Tor versions currently believed to be safe. The list is included in each directory, and nodes which pull down the directory learn whether they need to upgrade.
.SH FILES
.TP
.I @CONFDIR@/torrc
The configuration file, which contains "option value" pairs.
.TP
.I @CONFDIR@/dirservers
A list of directory servers, to bootstrap into the network.
.TP
.I @LOCALSTATEDIR@/lib/tor/
The tor server stores keys/etc here.
.SH SEE ALSO
.BR privoxy (1),
.BR tsocks (1)
.BR http://freehaven.net/tor/
.SH BUGS
Plenty, probably. It's still in alpha. Please report them.
.SH AUTHORS
Roger Dingledine <arma@mit.edu>.
+251
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@@ -0,0 +1,251 @@
#!/bin/sh
#
# install - install a program, script, or datafile
# This comes from X11R5 (mit/util/scripts/install.sh).
#
# Copyright 1991 by the Massachusetts Institute of Technology
#
# Permission to use, copy, modify, distribute, and sell this software and its
# documentation for any purpose is hereby granted without fee, provided that
# the above copyright notice appear in all copies and that both that
# copyright notice and this permission notice appear in supporting
# documentation, and that the name of M.I.T. not be used in advertising or
# publicity pertaining to distribution of the software without specific,
# written prior permission. M.I.T. makes no representations about the
# suitability of this software for any purpose. It is provided "as is"
# without express or implied warranty.
#
# Calling this script install-sh is preferred over install.sh, to prevent
# `make' implicit rules from creating a file called install from it
# when there is no Makefile.
#
# This script is compatible with the BSD install script, but was written
# from scratch. It can only install one file at a time, a restriction
# shared with many OS's install programs.
# set DOITPROG to echo to test this script
# Don't use :- since 4.3BSD and earlier shells don't like it.
doit="${DOITPROG-}"
# put in absolute paths if you don't have them in your path; or use env. vars.
mvprog="${MVPROG-mv}"
cpprog="${CPPROG-cp}"
chmodprog="${CHMODPROG-chmod}"
chownprog="${CHOWNPROG-chown}"
chgrpprog="${CHGRPPROG-chgrp}"
stripprog="${STRIPPROG-strip}"
rmprog="${RMPROG-rm}"
mkdirprog="${MKDIRPROG-mkdir}"
transformbasename=""
transform_arg=""
instcmd="$mvprog"
chmodcmd="$chmodprog 0755"
chowncmd=""
chgrpcmd=""
stripcmd=""
rmcmd="$rmprog -f"
mvcmd="$mvprog"
src=""
dst=""
dir_arg=""
while [ x"$1" != x ]; do
case $1 in
-c) instcmd="$cpprog"
shift
continue;;
-d) dir_arg=true
shift
continue;;
-m) chmodcmd="$chmodprog $2"
shift
shift
continue;;
-o) chowncmd="$chownprog $2"
shift
shift
continue;;
-g) chgrpcmd="$chgrpprog $2"
shift
shift
continue;;
-s) stripcmd="$stripprog"
shift
continue;;
-t=*) transformarg=`echo $1 | sed 's/-t=//'`
shift
continue;;
-b=*) transformbasename=`echo $1 | sed 's/-b=//'`
shift
continue;;
*) if [ x"$src" = x ]
then
src=$1
else
# this colon is to work around a 386BSD /bin/sh bug
:
dst=$1
fi
shift
continue;;
esac
done
if [ x"$src" = x ]
then
echo "install: no input file specified"
exit 1
else
:
fi
if [ x"$dir_arg" != x ]; then
dst=$src
src=""
if [ -d $dst ]; then
instcmd=:
chmodcmd=""
else
instcmd=$mkdirprog
fi
else
# Waiting for this to be detected by the "$instcmd $src $dsttmp" command
# might cause directories to be created, which would be especially bad
# if $src (and thus $dsttmp) contains '*'.
if [ -f $src -o -d $src ]
then
:
else
echo "install: $src does not exist"
exit 1
fi
if [ x"$dst" = x ]
then
echo "install: no destination specified"
exit 1
else
:
fi
# If destination is a directory, append the input filename; if your system
# does not like double slashes in filenames, you may need to add some logic
if [ -d $dst ]
then
dst="$dst"/`basename $src`
else
:
fi
fi
## this sed command emulates the dirname command
dstdir=`echo $dst | sed -e 's,[^/]*$,,;s,/$,,;s,^$,.,'`
# Make sure that the destination directory exists.
# this part is taken from Noah Friedman's mkinstalldirs script
# Skip lots of stat calls in the usual case.
if [ ! -d "$dstdir" ]; then
defaultIFS='
'
IFS="${IFS-${defaultIFS}}"
oIFS="${IFS}"
# Some sh's can't handle IFS=/ for some reason.
IFS='%'
set - `echo ${dstdir} | sed -e 's@/@%@g' -e 's@^%@/@'`
IFS="${oIFS}"
pathcomp=''
while [ $# -ne 0 ] ; do
pathcomp="${pathcomp}${1}"
shift
if [ ! -d "${pathcomp}" ] ;
then
$mkdirprog "${pathcomp}"
else
:
fi
pathcomp="${pathcomp}/"
done
fi
if [ x"$dir_arg" != x ]
then
$doit $instcmd $dst &&
if [ x"$chowncmd" != x ]; then $doit $chowncmd $dst; else : ; fi &&
if [ x"$chgrpcmd" != x ]; then $doit $chgrpcmd $dst; else : ; fi &&
if [ x"$stripcmd" != x ]; then $doit $stripcmd $dst; else : ; fi &&
if [ x"$chmodcmd" != x ]; then $doit $chmodcmd $dst; else : ; fi
else
# If we're going to rename the final executable, determine the name now.
if [ x"$transformarg" = x ]
then
dstfile=`basename $dst`
else
dstfile=`basename $dst $transformbasename |
sed $transformarg`$transformbasename
fi
# don't allow the sed command to completely eliminate the filename
if [ x"$dstfile" = x ]
then
dstfile=`basename $dst`
else
:
fi
# Make a temp file name in the proper directory.
dsttmp=$dstdir/#inst.$$#
# Move or copy the file name to the temp name
$doit $instcmd $src $dsttmp &&
trap "rm -f ${dsttmp}" 0 &&
# and set any options; do chmod last to preserve setuid bits
# If any of these fail, we abort the whole thing. If we want to
# ignore errors from any of these, just make sure not to ignore
# errors from the above "$doit $instcmd $src $dsttmp" command.
if [ x"$chowncmd" != x ]; then $doit $chowncmd $dsttmp; else :;fi &&
if [ x"$chgrpcmd" != x ]; then $doit $chgrpcmd $dsttmp; else :;fi &&
if [ x"$stripcmd" != x ]; then $doit $stripcmd $dsttmp; else :;fi &&
if [ x"$chmodcmd" != x ]; then $doit $chmodcmd $dsttmp; else :;fi &&
# Now rename the file to the real destination.
$doit $rmcmd -f $dstdir/$dstfile &&
$doit $mvcmd $dsttmp $dstdir/$dstfile
fi &&
exit 0
+336
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@@ -0,0 +1,336 @@
#! /bin/sh
# Common stub for a few missing GNU programs while installing.
# Copyright 1996, 1997, 1999, 2000 Free Software Foundation, Inc.
# Originally by Fran,cois Pinard <pinard@iro.umontreal.ca>, 1996.
# This program is free software; you can redistribute it and/or modify
# it under the terms of the GNU General Public License as published by
# the Free Software Foundation; either version 2, or (at your option)
# any later version.
# This program is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
# You should have received a copy of the GNU General Public License
# along with this program; if not, write to the Free Software
# Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
# 02111-1307, USA.
# As a special exception to the GNU General Public License, if you
# distribute this file as part of a program that contains a
# configuration script generated by Autoconf, you may include it under
# the same distribution terms that you use for the rest of that program.
if test $# -eq 0; then
echo 1>&2 "Try \`$0 --help' for more information"
exit 1
fi
run=:
# In the cases where this matters, `missing' is being run in the
# srcdir already.
if test -f configure.ac; then
configure_ac=configure.ac
else
configure_ac=configure.in
fi
case "$1" in
--run)
# Try to run requested program, and just exit if it succeeds.
run=
shift
"$@" && exit 0
;;
esac
# If it does not exist, or fails to run (possibly an outdated version),
# try to emulate it.
case "$1" in
-h|--h|--he|--hel|--help)
echo "\
$0 [OPTION]... PROGRAM [ARGUMENT]...
Handle \`PROGRAM [ARGUMENT]...' for when PROGRAM is missing, or return an
error status if there is no known handling for PROGRAM.
Options:
-h, --help display this help and exit
-v, --version output version information and exit
--run try to run the given command, and emulate it if it fails
Supported PROGRAM values:
aclocal touch file \`aclocal.m4'
autoconf touch file \`configure'
autoheader touch file \`config.h.in'
automake touch all \`Makefile.in' files
bison create \`y.tab.[ch]', if possible, from existing .[ch]
flex create \`lex.yy.c', if possible, from existing .c
help2man touch the output file
lex create \`lex.yy.c', if possible, from existing .c
makeinfo touch the output file
tar try tar, gnutar, gtar, then tar without non-portable flags
yacc create \`y.tab.[ch]', if possible, from existing .[ch]"
;;
-v|--v|--ve|--ver|--vers|--versi|--versio|--version)
echo "missing 0.4 - GNU automake"
;;
-*)
echo 1>&2 "$0: Unknown \`$1' option"
echo 1>&2 "Try \`$0 --help' for more information"
exit 1
;;
aclocal*)
if test -z "$run" && ($1 --version) > /dev/null 2>&1; then
# We have it, but it failed.
exit 1
fi
echo 1>&2 "\
WARNING: \`$1' is missing on your system. You should only need it if
you modified \`acinclude.m4' or \`${configure_ac}'. You might want
to install the \`Automake' and \`Perl' packages. Grab them from
any GNU archive site."
touch aclocal.m4
;;
autoconf)
if test -z "$run" && ($1 --version) > /dev/null 2>&1; then
# We have it, but it failed.
exit 1
fi
echo 1>&2 "\
WARNING: \`$1' is missing on your system. You should only need it if
you modified \`${configure_ac}'. You might want to install the
\`Autoconf' and \`GNU m4' packages. Grab them from any GNU
archive site."
touch configure
;;
autoheader)
if test -z "$run" && ($1 --version) > /dev/null 2>&1; then
# We have it, but it failed.
exit 1
fi
echo 1>&2 "\
WARNING: \`$1' is missing on your system. You should only need it if
you modified \`acconfig.h' or \`${configure_ac}'. You might want
to install the \`Autoconf' and \`GNU m4' packages. Grab them
from any GNU archive site."
files=`sed -n 's/^[ ]*A[CM]_CONFIG_HEADER(\([^)]*\)).*/\1/p' ${configure_ac}`
test -z "$files" && files="config.h"
touch_files=
for f in $files; do
case "$f" in
*:*) touch_files="$touch_files "`echo "$f" |
sed -e 's/^[^:]*://' -e 's/:.*//'`;;
*) touch_files="$touch_files $f.in";;
esac
done
touch $touch_files
;;
automake*)
if test -z "$run" && ($1 --version) > /dev/null 2>&1; then
# We have it, but it failed.
exit 1
fi
echo 1>&2 "\
WARNING: \`$1' is missing on your system. You should only need it if
you modified \`Makefile.am', \`acinclude.m4' or \`${configure_ac}'.
You might want to install the \`Automake' and \`Perl' packages.
Grab them from any GNU archive site."
find . -type f -name Makefile.am -print |
sed 's/\.am$/.in/' |
while read f; do touch "$f"; done
;;
autom4te)
if test -z "$run" && ($1 --version) > /dev/null 2>&1; then
# We have it, but it failed.
exit 1
fi
echo 1>&2 "\
WARNING: \`$1' is needed, and you do not seem to have it handy on your
system. You might have modified some files without having the
proper tools for further handling them.
You can get \`$1Help2man' as part of \`Autoconf' from any GNU
archive site."
file=`echo "$*" | sed -n 's/.*--output[ =]*\([^ ]*\).*/\1/p'`
test -z "$file" && file=`echo "$*" | sed -n 's/.*-o[ ]*\([^ ]*\).*/\1/p'`
if test -f "$file"; then
touch $file
else
test -z "$file" || exec >$file
echo "#! /bin/sh"
echo "# Created by GNU Automake missing as a replacement of"
echo "# $ $@"
echo "exit 0"
chmod +x $file
exit 1
fi
;;
bison|yacc)
echo 1>&2 "\
WARNING: \`$1' is missing on your system. You should only need it if
you modified a \`.y' file. You may need the \`Bison' package
in order for those modifications to take effect. You can get
\`Bison' from any GNU archive site."
rm -f y.tab.c y.tab.h
if [ $# -ne 1 ]; then
eval LASTARG="\${$#}"
case "$LASTARG" in
*.y)
SRCFILE=`echo "$LASTARG" | sed 's/y$/c/'`
if [ -f "$SRCFILE" ]; then
cp "$SRCFILE" y.tab.c
fi
SRCFILE=`echo "$LASTARG" | sed 's/y$/h/'`
if [ -f "$SRCFILE" ]; then
cp "$SRCFILE" y.tab.h
fi
;;
esac
fi
if [ ! -f y.tab.h ]; then
echo >y.tab.h
fi
if [ ! -f y.tab.c ]; then
echo 'main() { return 0; }' >y.tab.c
fi
;;
lex|flex)
echo 1>&2 "\
WARNING: \`$1' is missing on your system. You should only need it if
you modified a \`.l' file. You may need the \`Flex' package
in order for those modifications to take effect. You can get
\`Flex' from any GNU archive site."
rm -f lex.yy.c
if [ $# -ne 1 ]; then
eval LASTARG="\${$#}"
case "$LASTARG" in
*.l)
SRCFILE=`echo "$LASTARG" | sed 's/l$/c/'`
if [ -f "$SRCFILE" ]; then
cp "$SRCFILE" lex.yy.c
fi
;;
esac
fi
if [ ! -f lex.yy.c ]; then
echo 'main() { return 0; }' >lex.yy.c
fi
;;
help2man)
if test -z "$run" && ($1 --version) > /dev/null 2>&1; then
# We have it, but it failed.
exit 1
fi
echo 1>&2 "\
WARNING: \`$1' is missing on your system. You should only need it if
you modified a dependency of a manual page. You may need the
\`Help2man' package in order for those modifications to take
effect. You can get \`Help2man' from any GNU archive site."
file=`echo "$*" | sed -n 's/.*-o \([^ ]*\).*/\1/p'`
if test -z "$file"; then
file=`echo "$*" | sed -n 's/.*--output=\([^ ]*\).*/\1/p'`
fi
if [ -f "$file" ]; then
touch $file
else
test -z "$file" || exec >$file
echo ".ab help2man is required to generate this page"
exit 1
fi
;;
makeinfo)
if test -z "$run" && (makeinfo --version) > /dev/null 2>&1; then
# We have makeinfo, but it failed.
exit 1
fi
echo 1>&2 "\
WARNING: \`$1' is missing on your system. You should only need it if
you modified a \`.texi' or \`.texinfo' file, or any other file
indirectly affecting the aspect of the manual. The spurious
call might also be the consequence of using a buggy \`make' (AIX,
DU, IRIX). You might want to install the \`Texinfo' package or
the \`GNU make' package. Grab either from any GNU archive site."
file=`echo "$*" | sed -n 's/.*-o \([^ ]*\).*/\1/p'`
if test -z "$file"; then
file=`echo "$*" | sed 's/.* \([^ ]*\) *$/\1/'`
file=`sed -n '/^@setfilename/ { s/.* \([^ ]*\) *$/\1/; p; q; }' $file`
fi
touch $file
;;
tar)
shift
if test -n "$run"; then
echo 1>&2 "ERROR: \`tar' requires --run"
exit 1
fi
# We have already tried tar in the generic part.
# Look for gnutar/gtar before invocation to avoid ugly error
# messages.
if (gnutar --version > /dev/null 2>&1); then
gnutar ${1+"$@"} && exit 0
fi
if (gtar --version > /dev/null 2>&1); then
gtar ${1+"$@"} && exit 0
fi
firstarg="$1"
if shift; then
case "$firstarg" in
*o*)
firstarg=`echo "$firstarg" | sed s/o//`
tar "$firstarg" ${1+"$@"} && exit 0
;;
esac
case "$firstarg" in
*h*)
firstarg=`echo "$firstarg" | sed s/h//`
tar "$firstarg" ${1+"$@"} && exit 0
;;
esac
fi
echo 1>&2 "\
WARNING: I can't seem to be able to run \`tar' with the given arguments.
You may want to install GNU tar or Free paxutils, or check the
command line arguments."
exit 1
;;
*)
echo 1>&2 "\
WARNING: \`$1' is needed, and you do not seem to have it handy on your
system. You might have modified some files without having the
proper tools for further handling them. Check the \`README' file,
it often tells you about the needed prerequirements for installing
this package. You may also peek at any GNU archive site, in case
some other package would contain this missing \`$1' program."
exit 1
;;
esac
exit 0
+101
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@@ -0,0 +1,101 @@
#! /bin/sh
# mkinstalldirs --- make directory hierarchy
# Author: Noah Friedman <friedman@prep.ai.mit.edu>
# Created: 1993-05-16
# Public domain
# $Id$
errstatus=0
dirmode=""
usage="\
Usage: mkinstalldirs [-h] [--help] [-m mode] dir ..."
# process command line arguments
while test $# -gt 0 ; do
case "${1}" in
-h | --help | --h* ) # -h for help
echo "${usage}" 1>&2; exit 0 ;;
-m ) # -m PERM arg
shift
test $# -eq 0 && { echo "${usage}" 1>&2; exit 1; }
dirmode="${1}"
shift ;;
-- ) shift; break ;; # stop option processing
-* ) echo "${usage}" 1>&2; exit 1 ;; # unknown option
* ) break ;; # first non-opt arg
esac
done
for file
do
if test -d "$file"; then
shift
else
break
fi
done
case $# in
0) exit 0 ;;
esac
case $dirmode in
'')
if mkdir -p -- . 2>/dev/null; then
echo "mkdir -p -- $*"
exec mkdir -p -- "$@"
fi ;;
*)
if mkdir -m "$dirmode" -p -- . 2>/dev/null; then
echo "mkdir -m $dirmode -p -- $*"
exec mkdir -m "$dirmode" -p -- "$@"
fi ;;
esac
for file
do
set fnord `echo ":$file" | sed -ne 's/^:\//#/;s/^://;s/\// /g;s/^#/\//;p'`
shift
pathcomp=
for d
do
pathcomp="$pathcomp$d"
case "$pathcomp" in
-* ) pathcomp=./$pathcomp ;;
esac
if test ! -d "$pathcomp"; then
echo "mkdir $pathcomp"
mkdir "$pathcomp" || lasterr=$?
if test ! -d "$pathcomp"; then
errstatus=$lasterr
else
if test ! -z "$dirmode"; then
echo "chmod $dirmode $pathcomp"
lasterr=""
chmod "$dirmode" "$pathcomp" || lasterr=$?
if test ! -z "$lasterr"; then
errstatus=$lasterr
fi
fi
fi
fi
pathcomp="$pathcomp/"
done
done
exit $errstatus
# Local Variables:
# mode: shell-script
# sh-indentation: 3
# End:
# mkinstalldirs ends here
+2
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@@ -0,0 +1,2 @@
Makefile
Makefile.in
+6
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@@ -0,0 +1,6 @@
# leave in dependency order, since common must be built first
SUBDIRS = common or config
DIST_SUBDIRS = common or config
+3
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@@ -0,0 +1,3 @@
Makefile
Makefile.in
.deps
+8
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@@ -0,0 +1,8 @@
noinst_LIBRARIES = libor.a
#CFLAGS = -Wall -Wpointer-arith -O2
libor_a_SOURCES = log.c crypto.c fakepoll.c util.c aes.c tortls.c
noinst_HEADERS = log.h crypto.h fakepoll.h test.h util.h aes.h torint.h tortls.h strlcpy.c strlcat.c
File diff suppressed because it is too large Load Diff
+23
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@@ -0,0 +1,23 @@
/* Copyright 2003 Roger Dingledine */
/* See LICENSE for licensing information */
/* $Id$ */
/* Implements a minimal interface to counter-mode AES. */
#ifndef __AES_H
#define __AES_H
#include "../common/torint.h"
struct aes_cnt_cipher;
typedef struct aes_cnt_cipher aes_cnt_cipher_t;
aes_cnt_cipher_t* aes_new_cipher();
void aes_free_cipher(aes_cnt_cipher_t *cipher);
void aes_set_key(aes_cnt_cipher_t *cipher, unsigned char *key, int key_bits);
void aes_crypt(aes_cnt_cipher_t *cipher, char *input, int len, char *output);
uint64_t aes_get_counter(aes_cnt_cipher_t *cipher);
void aes_set_counter(aes_cnt_cipher_t *cipher, uint64_t counter);
void aes_adjust_counter(aes_cnt_cipher_t *cipher, long delta);
#endif
File diff suppressed because it is too large Load Diff
+121
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@@ -0,0 +1,121 @@
/* Copyright 2001,2002,2003 Roger Dingledine, Matej Pfajfar. */
/* See LICENSE for licensing information */
/* $Id$ */
#ifndef __CRYPTO_H
#define __CRYPTO_H
#include <stdio.h>
#include <openssl/rsa.h>
#include <openssl/dh.h>
/* available encryption primitives */
#define CRYPTO_CIPHER_IDENTITY 0
#define CRYPTO_CIPHER_DES 1
#define CRYPTO_CIPHER_RC4 2
#define CRYPTO_CIPHER_3DES 3
#define CRYPTO_CIPHER_AES_CTR 4
#define CRYPTO_PK_RSA 0
#define CRYPTO_SHA1_DIGEST 0
typedef struct crypto_pk_env_t crypto_pk_env_t;
typedef struct crypto_cipher_env_t crypto_cipher_env_t;
typedef struct crypto_digest_env_t crypto_digest_env_t;
/* global state */
int crypto_global_init();
int crypto_global_cleanup();
/* environment setup */
crypto_pk_env_t *crypto_new_pk_env(int type);
void crypto_free_pk_env(crypto_pk_env_t *env);
crypto_cipher_env_t *crypto_new_cipher_env(int type);
void crypto_free_cipher_env(crypto_cipher_env_t *env);
/* public key crypto */
int crypto_pk_generate_key(crypto_pk_env_t *env);
int crypto_pk_read_private_key_from_file(crypto_pk_env_t *env, FILE *src);
int crypto_pk_read_public_key_from_file(crypto_pk_env_t *env, FILE *src);
int crypto_pk_write_public_key_to_string(crypto_pk_env_t *env, char **dest, int *len);
int crypto_pk_read_public_key_from_string(crypto_pk_env_t *env, const char *src, int len);
int crypto_pk_write_private_key_to_file(crypto_pk_env_t *env, FILE *dest);
int crypto_pk_write_private_key_to_filename(crypto_pk_env_t *env, const char *fname);
int crypto_pk_write_public_key_to_file(crypto_pk_env_t *env, FILE *dest);
int crypto_pk_check_key(crypto_pk_env_t *env);
int crypto_pk_read_private_key_from_filename(crypto_pk_env_t *env, const char *keyfile);
int crypto_pk_set_key(crypto_pk_env_t *env, unsigned char *key);
int crypto_pk_cmp_keys(crypto_pk_env_t *a, crypto_pk_env_t *b);
crypto_pk_env_t *crypto_pk_dup_key(crypto_pk_env_t *orig);
int crypto_pk_keysize(crypto_pk_env_t *env);
int crypto_pk_public_encrypt(crypto_pk_env_t *env, unsigned char *from, int fromlen, unsigned char *to, int padding);
int crypto_pk_private_decrypt(crypto_pk_env_t *env, unsigned char *from, int fromlen, unsigned char *to, int padding);
int crypto_pk_private_sign(crypto_pk_env_t *env, unsigned char *from, int fromlen, unsigned char *to);
int crypto_pk_public_checksig(crypto_pk_env_t *env, unsigned char *from, int fromlen, unsigned char *to);
#define FINGERPRINT_LEN 49
int crypto_pk_get_fingerprint(crypto_pk_env_t *pk, char *fp_out);
int crypto_pk_check_fingerprint_syntax(const char *s);
int base64_encode(char *dest, int destlen, const char *src, int srclen);
int base64_decode(char *dest, int destlen, const char *src, int srclen);
/* Key negotiation */
typedef struct crypto_dh_env_st {
DH *dh;
} crypto_dh_env_t;
/* #define CRYPTO_DH_SIZE (1536 / 8) */
#define CRYPTO_DH_SIZE (1024 / 8)
crypto_dh_env_t *crypto_dh_new();
int crypto_dh_get_bytes(crypto_dh_env_t *dh);
int crypto_dh_get_public(crypto_dh_env_t *dh, char *pubkey_out,
int pubkey_out_len);
int crypto_dh_compute_secret(crypto_dh_env_t *dh,
char *pubkey, int pubkey_len,
char *secret_out, int secret_out_len);
void crypto_dh_free(crypto_dh_env_t *dh);
/* symmetric crypto */
int crypto_cipher_generate_key(crypto_cipher_env_t *env);
int crypto_cipher_set_iv(crypto_cipher_env_t *env, unsigned char *iv);
int crypto_cipher_set_key(crypto_cipher_env_t *env, unsigned char *key);
int crypto_cipher_encrypt_init_cipher(crypto_cipher_env_t *env);
int crypto_cipher_decrypt_init_cipher(crypto_cipher_env_t *env);
unsigned char *crypto_cipher_get_key(crypto_cipher_env_t *env);
int crypto_cipher_encrypt(crypto_cipher_env_t *env, unsigned char *from, unsigned int fromlen, unsigned char *to);
int crypto_cipher_decrypt(crypto_cipher_env_t *env, unsigned char *from, unsigned int fromlen, unsigned char *to);
/* only implemented for CRYPTO_CIPHER_AES_CTR */
int crypto_cipher_rewind(crypto_cipher_env_t *env, long delta);
int crypto_cipher_advance(crypto_cipher_env_t *env, long delta);
/* convenience function: wraps crypto_create_crypto_env, set_key, set_iv, and init. */
crypto_cipher_env_t *crypto_create_init_cipher(int cipher_type, char *key, char *iv, int encrypt_mode);
/* SHA-1 */
int crypto_SHA_digest(const unsigned char *m, int len, unsigned char *digest);
crypto_digest_env_t *crypto_new_digest_env(int type);
void crypto_free_digest_env(crypto_digest_env_t *digest);
void crypto_digest_add_bytes(crypto_digest_env_t *digest, const char *data,
size_t len);
void crypto_digest_get_digest(crypto_digest_env_t *digest,
char *out, size_t out_len);
crypto_digest_env_t *crypto_digest_dup(const crypto_digest_env_t *digest);
void crypto_digest_assign(crypto_digest_env_t *into,
const crypto_digest_env_t *from);
/* random numbers */
int crypto_seed_rng();
int crypto_rand(unsigned int n, unsigned char *to);
void crypto_pseudo_rand(unsigned int n, unsigned char *to);
int crypto_pseudo_rand_int(unsigned int max);
/* errors */
char *crypto_perror();
#endif
+94
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/* Copyright 2002,2003 Nick Mathewson, Roger Dingledine */
/* See LICENSE for licensing information */
/* $Id$ */
/* On systems where 'poll' doesn't exist, fake it with 'select'. */
#include "orconfig.h"
#include "fakepoll.h"
#ifdef USE_FAKE_POLL
#include <sys/types.h>
#ifdef HAVE_UNISTD_H
#include <unistd.h>
#endif
#ifdef HAVE_STRING_H
#include <string.h>
#endif
#if _MSC_VER > 1300
#include <winsock2.h>
#include <ws2tcpip.h>
#elif defined(_MSC_VER)
#include <winsock.h>
#endif
/* by default, windows handles only 64 fd's */
#if defined(MS_WINDOWS) && !defined(FD_SETSIZE)
#define FD_SETSIZE MAXCONNECTIONS
#endif
#include "util.h"
int
tor_poll(struct pollfd *ufds, unsigned int nfds, int timeout)
{
unsigned int idx;
int maxfd, fd;
int r;
#ifdef MS_WINDOWS
int any_fds_set = 0;
#endif
fd_set readfds, writefds, exceptfds;
#ifdef USING_FAKE_TIMEVAL
#undef timeval
#undef tv_sec
#undef tv_usec
#endif
struct timeval _timeout;
_timeout.tv_sec = timeout/1000;
_timeout.tv_usec = (timeout%1000)*1000;
FD_ZERO(&readfds);
FD_ZERO(&writefds);
FD_ZERO(&exceptfds);
maxfd = -1;
for (idx = 0; idx < nfds; ++idx) {
ufds[idx].revents = 0;
fd = ufds[idx].fd;
if (fd > maxfd) {
maxfd = fd;
#ifdef MS_WINDOWS
any_fds_set = 1;
#endif
}
if (ufds[idx].events & POLLIN)
FD_SET(fd, &readfds);
if (ufds[idx].events & POLLOUT)
FD_SET(fd, &writefds);
FD_SET(fd, &exceptfds);
}
#ifdef MS_WINDOWS
if (!any_fds_set) {
Sleep(timeout);
return 0;
}
#endif
r = select(maxfd+1, &readfds, &writefds, &exceptfds,
timeout == -1 ? NULL : &_timeout);
if (r <= 0)
return r;
r = 0;
for (idx = 0; idx < nfds; ++idx) {
fd = ufds[idx].fd;
if (FD_ISSET(fd, &readfds))
ufds[idx].revents |= POLLIN;
if (FD_ISSET(fd, &writefds))
ufds[idx].revents |= POLLOUT;
if (FD_ISSET(fd, &exceptfds))
ufds[idx].revents |= POLLERR;
if (ufds[idx].revents)
++r;
}
return r;
}
#endif
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/* Copyright 2002,2003 Nick Mathewson, Roger Dingledine. */
/* See LICENSE for licensing information */
/* $Id$ */
#ifndef __FAKEPOLL_H
#define __FAKEPOLL_H
#include "orconfig.h"
#define POLL_NO_WARN
#if defined(HAVE_POLL_H)
#include <poll.h>
#elif defined(HAVE_SYS_POLL_H)
#include <sys/poll.h>
#endif
/* If _POLL_EMUL_H_ is defined, then poll is just a just a thin wrapper around
* select. On Mac OS 10.3, this wrapper is kinda flakey, and we should
* use our own.
*/
#if (defined(HAVE_POLL_H)||defined(HAVE_SYS_POLL_H)) && !defined(_POLL_EMUL_H_)
#define tor_poll poll
#else
#define USE_FAKE_POLL
#endif
#ifdef USE_FAKE_POLL
#ifndef _POLL_EMUL_H_
struct pollfd {
int fd;
short events;
short revents;
};
#define POLLIN 0x0001
#define POLLPRI 0x0002
#define POLLOUT 0x0004
#define POLLERR 0x0008
#define POLLHUP 0x0010
#define POLLNVAL 0x0020
#endif
int tor_poll(struct pollfd *ufds, unsigned int nfds, int timeout);
#endif
#endif
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/* Copyright 2001,2002,2003 Roger Dingledine, Matej Pfajfar. */
/* See LICENSE for licensing information */
/* $Id$ */
#include "../or/or.h"
#ifdef MS_WINDOWS
#define vsnprintf _vsnprintf
#endif
struct logfile_t;
typedef struct logfile_t {
struct logfile_t *next;
const char *filename;
FILE *file;
int needs_close;
int loglevel;
int max_loglevel;
} logfile_t;
static INLINE const char *sev_to_string(int severity) {
switch(severity) {
case LOG_DEBUG: return "debug";
case LOG_INFO: return "info";
case LOG_WARN: return "warn";
case LOG_ERR: return "err";
default: assert(0); return "UNKNOWN";
}
}
static logfile_t *logfiles = NULL;
/* Format a log message into a fixed-sized buffer. (This is factored out
* of 'logv' so that we never format a message more than once.
*/
static INLINE void format_msg(char *buf, size_t buf_len,
int severity, const char *funcname,
const char *format, va_list ap)
{
time_t t;
struct timeval now;
size_t n;
buf_len -= 2; /* subtract 2 characters so we have room for \n\0 */
tor_gettimeofday(&now);
t = (time_t)now.tv_sec;
n = strftime(buf, buf_len, "%b %d %H:%M:%S", localtime(&t));
n += snprintf(buf+n, buf_len-n,
".%.3ld [%s] ",
(long)now.tv_usec / 1000, sev_to_string(severity));
if(n > buf_len)
n = buf_len-1; /* the *nprintf funcs return how many bytes they
* _would_ print, if the output is truncated.
* Subtract one because the count doesn't include the \0 */
if (funcname) {
n += snprintf(buf+n, buf_len-n, "%s(): ", funcname);
if(n > buf_len)
n = buf_len-1;
}
n += vsnprintf(buf+n,buf_len-n,format,ap);
if(n > buf_len)
n = buf_len-1;
buf[n]='\n';
buf[n+1]='\0';
}
static void
logv(int severity, const char *funcname, const char *format, va_list ap)
{
char buf[10024];
int formatted = 0;
logfile_t *lf;
assert(format);
for (lf = logfiles; lf; lf = lf->next) {
if (severity < lf->loglevel || severity > lf->max_loglevel)
continue;
if (!lf->file)
continue;
if (!formatted) {
format_msg(buf, 10024, severity, funcname, format, ap);
formatted = 1;
}
if(fputs(buf, lf->file) == EOF) { /* error */
assert(0); /* XXX */
}
if(fflush(lf->file) == EOF) { /* error */
/* don't log the error! */
assert(0); /* XXX fail for now. what's better to do? */
}
}
}
/* Outputs a message to stdout */
void _log(int severity, const char *format, ...)
{
va_list ap;
va_start(ap,format);
logv(severity, NULL, format, ap);
va_end(ap);
}
void _log_fn(int severity, const char *fn, const char *format, ...)
{
va_list ap;
va_start(ap,format);
logv(severity, fn, format, ap);
va_end(ap);
}
void close_logs()
{
logfile_t *victim;
while(logfiles) {
victim = logfiles;
logfiles = logfiles->next;
if (victim->needs_close)
fclose(victim->file);
free(victim);
}
}
void reset_logs()
{
logfile_t *lf;
for (lf = logfiles; lf; lf = lf->next) {
if (lf->needs_close) {
fclose(lf->file);
lf->file = fopen(lf->filename, "a");
}
}
}
void add_stream_log(int loglevel, const char *name, FILE *stream)
{
logfile_t *lf;
lf = tor_malloc(sizeof(logfile_t));
lf->filename = name;
lf->needs_close = 0;
lf->loglevel = loglevel;
lf->max_loglevel = LOG_ERR;
lf->file = stream;
lf->next = logfiles;
logfiles = lf;
}
/*
* If opening the logfile fails, -1 is returned and
* errno is set appropriately (by fopen)
*/
int add_file_log(int loglevel, const char *filename)
{
FILE *f;
f = fopen(filename, "a");
if (!f) return -1;
add_stream_log(loglevel, filename, f);
logfiles->needs_close = 1;
return 0;
}
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/* Copyright 2001,2002,2003 Roger Dingledine, Matej Pfajfar. */
/* See LICENSE for licensing information */
/* $Id$ */
#ifndef __LOG_H
#ifdef HAVE_SYSLOG_H
#include <syslog.h>
#define LOG_WARN LOG_WARNING
#else
#define LOG_DEBUG 0
#define LOG_INFO 1
#define LOG_WARN 3
#define LOG_ERR 4
#endif
/* magic to make GCC check for proper format strings. */
#ifdef __GNUC__
#define CHECK_PRINTF(formatIdx, firstArg) \
__attribute__ ((format (printf, formatIdx, firstArg)))
#else
#define CHECK_PRINTF(formatIdx, firstArg)
#endif
void add_stream_log(int loglevel, const char *name, FILE *stream);
int add_file_log(int severity, const char *filename);
void close_logs();
void reset_logs();
/* Outputs a message to stdout */
void _log(int severity, const char *format, ...) CHECK_PRINTF(2,3);
#ifdef __GNUC__
void _log_fn(int severity, const char *funcname, const char *format, ...)
CHECK_PRINTF(3,4);
#define log_fn(severity, args...) \
_log_fn(severity, __PRETTY_FUNCTION__, args)
#else
#define log_fn _log
#endif
#define log _log /* hack it so we don't conflict with log() as much */
# define __LOG_H
#endif
+73
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/* $OpenBSD: strlcat.c,v 1.8 2001/05/13 15:40:15 deraadt Exp $ */
/*
* Copyright (c) 1998 Todd C. Miller <Todd.Miller@courtesan.com>
* All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
* are met:
* 1. Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
* 3. The name of the author may not be used to endorse or promote products
* derived from this software without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES,
* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL
* THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
* OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
* ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#if defined(LIBC_SCCS) && !defined(lint)
static char *rcsid = "$OpenBSD: strlcat.c,v 1.8 2001/05/13 15:40:15 deraadt Exp $";
#endif /* LIBC_SCCS and not lint */
#include <sys/types.h>
#include <string.h>
/*
* Appends src to string dst of size siz (unlike strncat, siz is the
* full size of dst, not space left). At most siz-1 characters
* will be copied. Always NUL terminates (unless siz <= strlen(dst)).
* Returns strlen(src) + MIN(siz, strlen(initial dst)).
* If retval >= siz, truncation occurred.
*/
size_t
strlcat(dst, src, siz)
char *dst;
const char *src;
size_t siz;
{
register char *d = dst;
register const char *s = src;
register size_t n = siz;
size_t dlen;
/* Find the end of dst and adjust bytes left but don't go past end */
while (n-- != 0 && *d != '\0')
d++;
dlen = d - dst;
n = siz - dlen;
if (n == 0)
return(dlen + strlen(s));
while (*s != '\0') {
if (n != 1) {
*d++ = *s;
n--;
}
s++;
}
*d = '\0';
return(dlen + (s - src)); /* count does not include NUL */
}
+64
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/* $Id$ */
/* $OpenBSD: strlcpy.c,v 1.2 1998/11/06 04:33:16 wvdputte Exp $ */
/*
* Copyright (c) 1998 Todd C. Miller <Todd.Miller@courtesan.com>
* All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
* are met:
* 1. Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
* 3. The name of the author may not be used to endorse or promote products
* derived from this software without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES,
* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY
* AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL
* THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
* OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
* ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#if defined(LIBC_SCCS) && !defined(lint)
static char *rcsid = "$OpenBSD: strlcpy.c,v 1.2 1998/11/06 04:33:16 wvdputte Exp $";
#endif /* LIBC_SCCS and not lint */
#include <sys/types.h>
#include <string.h>
/*
* Copy src to string dst of size siz. At most siz-1 characters
* will be copied. Always NUL terminates (unless siz == 0).
* Returns strlen(src); if retval >= siz, truncation occurred.
*/
size_t strlcpy(dst, src, siz)
char *dst;
const char *src;
size_t siz;
{
register char *d = dst;
register const char *s = src;
register size_t n = siz;
if (n == 0)
return(strlen(s));
while (*s != '\0') {
if (n != 1) {
*d++ = *s;
n--;
}
s++;
}
*d = '\0';
return(s - src); /* count does not include NUL */
}
+137
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/* Copyright 2001,2002,2003 Roger Dingledine. */
/* See LICENSE for licensing information */
/* $Id$ */
#ifndef __TEST_H
#define __TEST_H
#include <string.h>
#define STMT_BEGIN do {
#define STMT_END } while (0)
#ifdef __GNUC__
#define PRETTY_FUNCTION __PRETTY_FUNCTION__
#else
#define PRETTY_FUNCTION ""
#endif
extern int have_failed;
#define test_fail() \
STMT_BEGIN \
have_failed = 1; \
printf("\nFile %s: line %d (%s): assertion failed.", \
__FILE__, \
__LINE__, \
PRETTY_FUNCTION); \
return; \
STMT_END
#define test_assert(expr) \
STMT_BEGIN \
if(expr) { printf("."); } else { \
have_failed = 1; \
printf("\nFile %s: line %d (%s): assertion failed: (%s)\n", \
__FILE__, \
__LINE__, \
PRETTY_FUNCTION, \
#expr); \
return; \
} STMT_END
#define test_eq(expr1, expr2) \
STMT_BEGIN \
long v1=(long)(expr1), v2=(long)(expr2); \
if(v1==v2) { printf("."); } else { \
have_failed = 1; \
printf("\nFile %s: line %d (%s): Assertion failed: (%s==%s)\n"\
" (%ld != %ld)\n", \
__FILE__, \
__LINE__, \
PRETTY_FUNCTION, \
#expr1, #expr2, \
v1, v2); \
return; \
} STMT_END
#define test_neq(expr1, expr2) \
STMT_BEGIN \
long v1=(long)(expr1), v2=(long)(expr2); \
if(v1!=v2) { printf("."); } else { \
have_failed = 1; \
printf("\nFile %s: line %d (%s): Assertion failed: (%s!=%s)\n"\
" (%ld == %ld)\n", \
__FILE__, \
__LINE__, \
PRETTY_FUNCTION, \
#expr1, #expr2, \
v1, v2); \
return; \
} STMT_END
#define test_streq(expr1, expr2) \
STMT_BEGIN \
const char *v1=(expr1), *v2=(expr2); \
if(!strcmp(v1,v2)) { printf("."); } else { \
have_failed = 1; \
printf("\nFile %s: line %d (%s): Assertion failed: (%s==%s)\n"\
" (\"%s\" != \"%s\")\n", \
__FILE__, \
__LINE__, \
PRETTY_FUNCTION, \
#expr1, #expr2, \
v1, v2); \
return; \
} STMT_END
#define test_strneq(expr1, expr2) \
STMT_BEGIN \
const char *v1=(expr1), *v2=(expr2); \
if(strcmp(v1,v2)) { printf("."); } else { \
have_failed = 1; \
printf("\nFile %s: line %d (%s): Assertion failed: (%s!=%s)\n"\
" (\"%s\" == \"%s\")\n", \
__FILE__, \
__LINE__, \
PRETTY_FUNCTION, \
#expr1, #expr2, \
v1, v2); \
return; \
} STMT_END
#define test_memeq(expr1, expr2, len) \
STMT_BEGIN \
void *v1=(expr1), *v2=(expr2); \
if(!memcmp(v1,v2,(len))) { printf("."); } else { \
have_failed = 1; \
printf("\nFile %s: line %d (%s): Assertion failed: (%s==%s)\n", \
__FILE__, \
__LINE__, \
PRETTY_FUNCTION, \
#expr1, #expr2); \
return; \
} STMT_END
#define test_memneq(expr1, expr2, len) \
STMT_BEGIN \
void *v1=(expr1), *v2=(expr2); \
if(memcmp(v1,v2,(len))) { printf("."); } else { \
have_failed = 1; \
printf("\nFile %s: line %d (%s): Assertion failed: (%s!=%s)\n", \
__FILE__, \
__LINE__, \
PRETTY_FUNCTION, \
#expr1, #expr2); \
return; \
} STMT_END
#endif
/*
Local Variables:
mode:c
indent-tabs-mode:nil
c-basic-offset:2
End:
*/
+156
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/* Copyright 2003 Roger Dingledine */
/* See LICENSE for licensing information */
/* $Id$ */
#ifndef __TORINT_H
#define __TORINT_H
#include "orconfig.h"
#ifdef HAVE_STDINT_H
#include <stdint.h>
#endif
#ifdef HAVE_SYS_TYPES_H
#include <sys/types.h>
#endif
#if (SIZEOF_INT8_T != 0)
#define HAVE_INT8_T
#endif
#if (SIZEOF_INT16_T != 0)
#define HAVE_INT16_T
#endif
#if (SIZEOF_INT32_T != 0)
#define HAVE_INT32_T
#endif
#if (SIZEOF_INT64_T != 0)
#define HAVE_INT64_T
#endif
#if (SIZEOF_UINT8_T != 0)
#define HAVE_UINT8_T
#endif
#if (SIZEOF_UINT16_T != 0)
#define HAVE_UINT16_T
#endif
#if (SIZEOF_UINT32_T != 0)
#define HAVE_UINT32_T
#endif
#if (SIZEOF_UINT64_T != 0)
#define HAVE_UINT64_T
#endif
#if (SIZEOF_CHAR == 1)
#ifndef HAVE_INT8_T
typedef signed char int8_t;
#define HAVE_INT8_T
#endif
#ifndef HAVE_UINT8_T
typedef unsigned char uint8_t;
#define HAVE_UINT8_T
#endif
#endif
#if (SIZEOF_SHORT == 2)
#ifndef HAVE_INT16_T
typedef signed short int16_t;
#define HAVE_INT16_T
#endif
#ifndef HAVE_UINT16_T
typedef unsigned short uint16_t;
#define HAVE_UINT16_T
#endif
#endif
#if (SIZEOF_INT == 2)
#ifndef HAVE_INT16_T
typedef signed int int16_t;
#define HAVE_INT16_T
#endif
#ifndef HAVE_UINT16_T
typedef unsigned int uint16_t;
#define HAVE_UINT16_T
#endif
#elif (SIZEOF_INT == 4)
#ifndef HAVE_INT32_T
typedef signed int int32_t;
#define HAVE_INT32_T
#endif
#ifndef HAVE_UINT32_T
typedef unsigned int uint32_t;
#define HAVE_UINT32_T
#endif
#endif
#if (SIZEOF_LONG == 4)
#ifndef HAVE_INT32_T
typedef signed long int32_t;
#define HAVE_INT32_T
#endif
#ifndef HAVE_UINT32_T
typedef unsigned long uint32_t;
#define HAVE_UINT32_T
#endif
#elif (SIZEOF_LONG == 8)
#ifndef HAVE_INT64_T
typedef signed long int64_t;
#define HAVE_INT64_T
#endif
#ifndef HAVE_UINT32_T
typedef unsigned long uint64_t;
#define HAVE_UINT32_T
#endif
#endif
#if (SIZEOF_LONG_LONG == 8)
#ifndef HAVE_INT64_T
typedef signed long long int64_t;
#define HAVE_INT64_T
#endif
#ifndef HAVE_UINT64_T
typedef unsigned long long uint64_t;
#define HAVE_UINT64_T
#endif
#endif
#if (SIZEOF___INT64 == 8)
#ifndef HAVE_INT64_T
typedef signed __int64 int64_t;
#define HAVE_INT64_T
#endif
#ifndef HAVE_UINT64_T
typedef unsigned __int64 uint64_t;
#define HAVE_UINT64_T
#endif
#endif
#ifndef HAVE_INT8_T
#error "Missing type int8_t"
#endif
#ifndef HAVE_UINT8_T
#error "Missing type uint8_t"
#endif
#ifndef HAVE_INT16_T
#error "Missing type int16_t"
#endif
#ifndef HAVE_UINT16_T
#error "Missing type uint16_t"
#endif
#ifndef HAVE_INT32_T
#error "Missing type int32_t"
#endif
#ifndef HAVE_UINT32_T
#error "Missing type uint32_t"
#endif
#ifndef HAVE_INT64_T
#error "Missing type int64_t"
#endif
#ifndef HAVE_UINT64_T
#error "Missing type uint64_t"
#endif
#endif /* __TORINT_H */
+584
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/* Copyright 2003 Roger Dingledine. */
/* See LICENSE for licensing information */
/* $Id$ */
/* TLS wrappers for The Onion Router. (Unlike other tor functions, these
* are prefixed with tor_ in order to avoid conflicting with OpenSSL
* functions and variables.)
*/
#include "./crypto.h"
#include "./tortls.h"
#include "./util.h"
#include "./log.h"
/* Copied from or.h */
#define LEGAL_NICKNAME_CHARACTERS "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789"
#include <assert.h>
#include <openssl/ssl.h>
#include <openssl/err.h>
#include <openssl/tls1.h>
#include <openssl/asn1.h>
#include <openssl/bio.h>
/* How long do certificates live? (sec) */
#define CERT_LIFETIME (365*24*60*60)
/* How much clock skew do we tolerate when checking certificates? (sec) */
#define CERT_ALLOW_SKEW (30*60)
struct tor_tls_context_st {
SSL_CTX *ctx;
};
struct tor_tls_st {
SSL *ssl;
int socket;
enum {
TOR_TLS_ST_HANDSHAKE, TOR_TLS_ST_OPEN, TOR_TLS_ST_GOTCLOSE,
TOR_TLS_ST_SENTCLOSE, TOR_TLS_ST_CLOSED
} state;
int isServer;
int wantwrite_n; /* 0 normally, >0 if we returned wantwrite last time */
};
static X509* tor_tls_create_certificate(crypto_pk_env_t *rsa,
const char *nickname);
/* global tls context, keep it here because nobody else needs to touch it */
static tor_tls_context *global_tls_context = NULL;
static int tls_library_is_initialized = 0;
#define _TOR_TLS_SYSCALL -6
#define _TOR_TLS_ZERORETURN -5
/* These functions are declared in crypto.c but not exported. */
EVP_PKEY *_crypto_pk_env_get_evp_pkey(crypto_pk_env_t *env);
crypto_pk_env_t *_crypto_new_pk_env_rsa(RSA *rsa);
static void
tls_log_errors(int severity, const char *doing)
{
int err;
const char *msg, *lib, *func;
while ((err = ERR_get_error()) != 0) {
msg = (const char*)ERR_reason_error_string(err);
lib = (const char*)ERR_lib_error_string(err);
func = (const char*)ERR_func_error_string(err);
if (!msg) msg = "(null)";
if (doing) {
log(severity, "TLS error while %s: %s (in %s:%s)", doing, msg, lib,func);
} else {
log(severity, "TLS error: %s (in %s:%s)", msg, lib, func);
}
}
}
#define CATCH_SYSCALL 1
#define CATCH_ZERO 2
static int
tor_tls_get_error(tor_tls *tls, int r, int extra,
const char *doing, int severity)
{
int err = SSL_get_error(tls->ssl, r);
switch (err) {
case SSL_ERROR_NONE:
return TOR_TLS_DONE;
case SSL_ERROR_WANT_READ:
return TOR_TLS_WANTREAD;
case SSL_ERROR_WANT_WRITE:
return TOR_TLS_WANTWRITE;
case SSL_ERROR_SYSCALL:
if (extra&CATCH_SYSCALL)
return _TOR_TLS_SYSCALL;
log(severity, "TLS error: <syscall error> (errno=%d)",errno);
tls_log_errors(severity, doing);
return TOR_TLS_ERROR;
case SSL_ERROR_ZERO_RETURN:
if (extra&CATCH_ZERO)
return _TOR_TLS_ZERORETURN;
log(severity, "TLS error: Zero return");
tls_log_errors(severity, doing);
return TOR_TLS_ERROR;
default:
tls_log_errors(severity, doing);
return TOR_TLS_ERROR;
}
}
static void
tor_tls_init() {
if (!tls_library_is_initialized) {
SSL_library_init();
SSL_load_error_strings();
crypto_global_init();
OpenSSL_add_all_algorithms();
tls_library_is_initialized = 1;
}
}
static int always_accept_verify_cb(int preverify_ok,
X509_STORE_CTX *x509_ctx)
{
/* We always accept peer certs and complete the handshake. We don't validate
* them until later. */
return 1;
}
/* Generate a self-signed certificate with the private key 'rsa' and
* commonName 'nickname', and write it, PEM-encoded, to the file named
* by 'certfile'. Return 0 on success, -1 for failure.
*/
X509 *
tor_tls_create_certificate(crypto_pk_env_t *rsa,
const char *nickname)
{
time_t start_time, end_time;
EVP_PKEY *pkey = NULL;
X509 *x509 = NULL;
X509_NAME *name = NULL;
int nid;
tor_tls_init();
start_time = time(NULL);
assert(rsa && nickname);
if (!(pkey = _crypto_pk_env_get_evp_pkey(rsa)))
return NULL;
if (!(x509 = X509_new()))
goto error;
if (!(X509_set_version(x509, 2)))
goto error;
if (!(ASN1_INTEGER_set(X509_get_serialNumber(x509), (long)start_time)))
goto error;
if (!(name = X509_NAME_new()))
goto error;
if ((nid = OBJ_txt2nid("organizationName")) == NID_undef) goto error;
if (!(X509_NAME_add_entry_by_NID(name, nid, MBSTRING_ASC,
"TOR", -1, -1, 0))) goto error;
if ((nid = OBJ_txt2nid("commonName")) == NID_undef) goto error;
if (!(X509_NAME_add_entry_by_NID(name, nid, MBSTRING_ASC,
(char*)nickname, -1, -1, 0))) goto error;
if (!(X509_set_issuer_name(x509, name)))
goto error;
if (!(X509_set_subject_name(x509, name)))
goto error;
if (!X509_time_adj(X509_get_notBefore(x509),0,&start_time))
goto error;
end_time = start_time + CERT_LIFETIME;
if (!X509_time_adj(X509_get_notAfter(x509),0,&end_time))
goto error;
if (!X509_set_pubkey(x509, pkey))
goto error;
if (!X509_sign(x509, pkey, EVP_sha1()))
goto error;
goto done;
error:
if (x509) {
X509_free(x509);
x509 = NULL;
}
done:
if (pkey)
EVP_PKEY_free(pkey);
if (name)
X509_NAME_free(name);
return x509;
}
#ifdef EVERYONE_HAS_AES
/* Everybody is running OpenSSL 0.9.7 or later, so no backward compatibility
* is needed. */
#define CIPHER_LIST TLS1_TXT_DHE_RSA_WITH_AES_128_SHA
#elif defined(TLS1_TXT_DHE_RSA_WITH_AES_128_SHA)
/* Some people are running OpenSSL before 0.9.7, but we aren't.
* We can support AES and 3DES.
*/
#define CIPHER_LIST (TLS1_TXT_DHE_RSA_WITH_AES_128_SHA ":" \
SSL3_TXT_EDH_RSA_DES_192_CBC3_SHA)
#else
/* We're running OpenSSL before 0.9.7. We only support 3DES. */
#define CIPHER_LIST SSL3_TXT_EDH_RSA_DES_192_CBC3_SHA
#endif
/* Create a new TLS context. If we are going to be using it as a
* server, it must have isServer set to true, certfile set to a
* filename for a certificate file, and RSA set to the private key
* used for that certificate. Return -1 if failure, else 0.
*/
int
tor_tls_context_new(crypto_pk_env_t *rsa,
int isServer, const char *nickname)
{
crypto_dh_env_t *dh = NULL;
EVP_PKEY *pkey = NULL;
tor_tls_context *result;
X509 *cert = NULL;
tor_tls_init();
if (rsa) {
cert = tor_tls_create_certificate(rsa, nickname);
if (!cert) {
log(LOG_WARN, "Error creating certificate");
return -1;
}
}
result = tor_malloc(sizeof(tor_tls_context));
result->ctx = NULL;
#ifdef EVERYONE_HAS_AES
/* Tell OpenSSL to only use TLS1 */
if (!(result->ctx = SSL_CTX_new(TLSv1_method())))
goto error;
#else
/* Tell OpenSSL to use SSL3 or TLS1 but not SSL2. */
if (!(result->ctx = SSL_CTX_new(SSLv23_method())))
goto error;
SSL_CTX_set_options(result->ctx, SSL_OP_NO_SSLv2);
#endif
if (!SSL_CTX_set_cipher_list(result->ctx, CIPHER_LIST))
goto error;
if (cert && !SSL_CTX_use_certificate(result->ctx,cert))
goto error;
SSL_CTX_set_session_cache_mode(result->ctx, SSL_SESS_CACHE_OFF);
if (rsa) {
if (!(pkey = _crypto_pk_env_get_evp_pkey(rsa)))
goto error;
if (!SSL_CTX_use_PrivateKey(result->ctx, pkey))
goto error;
EVP_PKEY_free(pkey);
pkey = NULL;
if (cert) {
if (!SSL_CTX_check_private_key(result->ctx))
goto error;
}
}
dh = crypto_dh_new();
SSL_CTX_set_tmp_dh(result->ctx, dh->dh);
crypto_dh_free(dh);
SSL_CTX_set_verify(result->ctx, SSL_VERIFY_PEER,
always_accept_verify_cb);
/* let us realloc bufs that we're writing from */
SSL_CTX_set_mode(result->ctx, SSL_MODE_ACCEPT_MOVING_WRITE_BUFFER);
/* Free the old context if one exists. */
if (global_tls_context) {
/* This is safe even if there are open connections: OpenSSL does
* reference counting with SSL and SSL_CTX objects. */
SSL_CTX_free(global_tls_context->ctx);
free(global_tls_context);
}
global_tls_context = result;
return 0;
error:
if (pkey)
EVP_PKEY_free(pkey);
if (dh)
crypto_dh_free(dh);
if (result && result->ctx)
SSL_CTX_free(result->ctx);
if (result)
free(result);
return -1;
}
/* Create a new TLS object from a TLS context, a filedescriptor, and
* a flag to determine whether it is functioning as a server.
*/
tor_tls *
tor_tls_new(int sock, int isServer)
{
tor_tls *result = tor_malloc(sizeof(tor_tls));
assert(global_tls_context); /* make sure somebody made it first */
if (!(result->ssl = SSL_new(global_tls_context->ctx)))
return NULL;
result->socket = sock;
SSL_set_fd(result->ssl, sock);
result->state = TOR_TLS_ST_HANDSHAKE;
result->isServer = isServer;
result->wantwrite_n = 0;
return result;
}
/* Release resources associated with a TLS object. Does not close the
* underlying file descriptor.
*/
void
tor_tls_free(tor_tls *tls)
{
SSL_free(tls->ssl);
free(tls);
}
/* Underlying function for TLS reading. Reads up to 'len' characters
* from 'tls' into 'cp'. On success, returns the number of characters
* read. On failure, returns TOR_TLS_ERROR, TOR_TLS_CLOSE,
* TOR_TLS_WANTREAD, or TOR_TLS_WANTWRITE.
*/
int
tor_tls_read(tor_tls *tls, char *cp, int len)
{
int r, err;
assert(tls && tls->ssl);
assert(tls->state == TOR_TLS_ST_OPEN);
r = SSL_read(tls->ssl, cp, len);
if (r > 0)
return r;
err = tor_tls_get_error(tls, r, CATCH_ZERO, "reading", LOG_INFO);
if (err == _TOR_TLS_ZERORETURN) {
tls->state = TOR_TLS_ST_CLOSED;
return TOR_TLS_CLOSE;
} else {
assert(err != TOR_TLS_DONE);
return err;
}
}
/* Underlying function for TLS writing. Write up to 'n' characters
* from 'cp' onto 'tls'. On success, returns the number of characters
* written. On failure, returns TOR_TLS_ERROR, TOR_TLS_WANTREAD,
* or TOR_TLS_WANTWRITE.
*/
int
tor_tls_write(tor_tls *tls, char *cp, int n)
{
int r, err;
assert(tls && tls->ssl);
assert(tls->state == TOR_TLS_ST_OPEN);
if (n == 0)
return 0;
if(tls->wantwrite_n) {
/* if WANTWRITE last time, we must use the _same_ n as before */
assert(n >= tls->wantwrite_n);
log_fn(LOG_INFO,"resuming pending-write, (%d to flush, reusing %d)",
n, tls->wantwrite_n);
n = tls->wantwrite_n;
tls->wantwrite_n = 0;
}
r = SSL_write(tls->ssl, cp, n);
err = tor_tls_get_error(tls, r, 0, "writing", LOG_INFO);
if (err == TOR_TLS_DONE) {
return r;
}
if (err == TOR_TLS_WANTWRITE || err == TOR_TLS_WANTREAD) {
// log_fn(LOG_INFO,"wantwrite or wantread. remembering the number %d.",n);
tls->wantwrite_n = n;
}
return err;
}
/* Perform initial handshake on 'tls'. When finished, returns
* TOR_TLS_DONE. On failure, returns TOR_TLS_ERROR, TOR_TLS_WANTREAD,
* or TOR_TLS_WANTWRITE.
*/
int
tor_tls_handshake(tor_tls *tls)
{
int r;
assert(tls && tls->ssl);
assert(tls->state == TOR_TLS_ST_HANDSHAKE);
if (tls->isServer) {
r = SSL_accept(tls->ssl);
} else {
r = SSL_connect(tls->ssl);
}
r = tor_tls_get_error(tls,r,0, "handshaking", LOG_INFO);
if (r == TOR_TLS_DONE) {
tls->state = TOR_TLS_ST_OPEN;
}
return r;
}
/* Shut down an open tls connection 'tls'. When finished, returns
* TOR_TLS_DONE. On failure, returns TOR_TLS_ERROR, TOR_TLS_WANTREAD,
* or TOR_TLS_WANTWRITE.
*/
int
tor_tls_shutdown(tor_tls *tls)
{
int r, err;
char buf[128];
assert(tls && tls->ssl);
while (1) {
if (tls->state == TOR_TLS_ST_SENTCLOSE) {
/* If we've already called shutdown once to send a close message,
* we read until the other side has closed too.
*/
do {
r = SSL_read(tls->ssl, buf, 128);
} while (r>0);
err = tor_tls_get_error(tls, r, CATCH_ZERO, "reading to shut down",
LOG_INFO);
if (err == _TOR_TLS_ZERORETURN) {
tls->state = TOR_TLS_ST_GOTCLOSE;
/* fall through... */
} else {
return err;
}
}
r = SSL_shutdown(tls->ssl);
if (r == 1) {
/* If shutdown returns 1, the connection is entirely closed. */
tls->state = TOR_TLS_ST_CLOSED;
return TOR_TLS_DONE;
}
err = tor_tls_get_error(tls, r, CATCH_SYSCALL|CATCH_ZERO, "shutting down",
LOG_INFO);
if (err == _TOR_TLS_SYSCALL) {
/* The underlying TCP connection closed while we were shutting down. */
tls->state = TOR_TLS_ST_CLOSED;
return TOR_TLS_DONE;
} else if (err == _TOR_TLS_ZERORETURN) {
/* The TLS connection says that it sent a shutdown record, but
* isn't done shutting down yet. Make sure that this hasn't
* happened before, then go back to the start of the function
* and try to read.
*/
if (tls->state == TOR_TLS_ST_GOTCLOSE ||
tls->state == TOR_TLS_ST_SENTCLOSE) {
log(LOG_WARN,
"TLS returned \"half-closed\" value while already half-closed");
return TOR_TLS_ERROR;
}
tls->state = TOR_TLS_ST_SENTCLOSE;
/* fall through ... */
} else {
return err;
}
} /* end loop */
}
/* Return true iff this TLS connection is authenticated.
*/
int
tor_tls_peer_has_cert(tor_tls *tls)
{
X509 *cert;
if (!(cert = SSL_get_peer_certificate(tls->ssl)))
return 0;
X509_free(cert);
return 1;
}
int
tor_tls_get_peer_cert_nickname(tor_tls *tls, char *buf, int buflen)
{
X509 *cert = NULL;
X509_NAME *name = NULL;
int nid;
int lenout;
if (!(cert = SSL_get_peer_certificate(tls->ssl))) {
log_fn(LOG_WARN, "Peer has no certificate");
goto error;
}
if (!(name = X509_get_subject_name(cert))) {
log_fn(LOG_WARN, "Peer certificate has no subject name");
goto error;
}
if ((nid = OBJ_txt2nid("commonName")) == NID_undef)
goto error;
lenout = X509_NAME_get_text_by_NID(name, nid, buf, buflen);
if (lenout == -1)
goto error;
if (((int)strspn(buf, LEGAL_NICKNAME_CHARACTERS)) < lenout) {
log_fn(LOG_WARN, "Peer certificate nickname has illegal characters.");
goto error;
}
return 0;
error:
if (cert)
X509_free(cert);
if (name)
X509_NAME_free(name);
return -1;
}
/* If the provided tls connection is authenticated and has a
* certificate that is currently valid and is correctly self-signed,
* return its public key. Otherwise return NULL.
*/
crypto_pk_env_t *
tor_tls_verify(tor_tls *tls)
{
X509 *cert = NULL;
EVP_PKEY *pkey = NULL;
RSA *rsa = NULL;
time_t now, t;
crypto_pk_env_t *r = NULL;
if (!(cert = SSL_get_peer_certificate(tls->ssl)))
return NULL;
now = time(NULL);
t = now + CERT_ALLOW_SKEW;
if (X509_cmp_time(X509_get_notBefore(cert), &t) > 0) {
log_fn(LOG_WARN,"Certificate becomes valid in the future: possible clock skew.");
goto done;
}
t = now - CERT_ALLOW_SKEW;
if (X509_cmp_time(X509_get_notAfter(cert), &t) < 0) {
log_fn(LOG_WARN,"Certificate already expired; possible clock skew.");
goto done;
}
/* Get the public key. */
if (!(pkey = X509_get_pubkey(cert))) {
log_fn(LOG_WARN,"X509_get_pubkey returned null");
goto done;
}
if (X509_verify(cert, pkey) <= 0) {
log_fn(LOG_WARN,"X509_verify on cert and pkey returned <= 0");
goto done;
}
rsa = EVP_PKEY_get1_RSA(pkey);
EVP_PKEY_free(pkey);
pkey = NULL;
if (!rsa) {
log_fn(LOG_WARN,"EVP_PKEY_get1_RSA(pkey) returned null");
goto done;
}
r = _crypto_new_pk_env_rsa(rsa);
rsa = NULL;
done:
if (cert)
X509_free(cert);
if (pkey)
EVP_PKEY_free(pkey);
if (rsa)
RSA_free(rsa);
return r;
}
int
tor_tls_get_pending_bytes(tor_tls *tls)
{
assert(tls);
return SSL_pending(tls->ssl);
}
/* Return the number of bytes read across the underlying socket. */
unsigned long tor_tls_get_n_bytes_read(tor_tls *tls)
{
assert(tls);
return BIO_number_read(SSL_get_rbio(tls->ssl));
}
unsigned long tor_tls_get_n_bytes_written(tor_tls *tls)
{
assert(tls);
return BIO_number_written(SSL_get_wbio(tls->ssl));
}
+35
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@@ -0,0 +1,35 @@
/* Copyright 2003 Roger Dingledine */
/* See LICENSE for licensing information */
/* $Id$ */
#ifndef _TORTLS_H
#define _TORTLS_H
#include "../common/crypto.h"
typedef struct tor_tls_context_st tor_tls_context;
typedef struct tor_tls_st tor_tls;
#define TOR_TLS_ERROR -4
#define TOR_TLS_CLOSE -3
#define TOR_TLS_WANTREAD -2
#define TOR_TLS_WANTWRITE -1
#define TOR_TLS_DONE 0
/* X509* tor_tls_write_certificate(char *certfile, crypto_pk_env_t *rsa, char *nickname); */
int tor_tls_context_new(crypto_pk_env_t *rsa, int isServer, const char *nickname);
tor_tls *tor_tls_new(int sock, int isServer);
void tor_tls_free(tor_tls *tls);
int tor_tls_peer_has_cert(tor_tls *tls);
int tor_tls_get_peer_cert_nickname(tor_tls *tls, char *buf, int buflen);
crypto_pk_env_t *tor_tls_verify(tor_tls *tls);
int tor_tls_read(tor_tls *tls, char *cp, int len);
int tor_tls_write(tor_tls *tls, char *cp, int n);
int tor_tls_handshake(tor_tls *tls);
int tor_tls_shutdown(tor_tls *tls);
int tor_tls_get_pending_bytes(tor_tls *tls);
unsigned long tor_tls_get_n_bytes_read(tor_tls *tls);
unsigned long tor_tls_get_n_bytes_written(tor_tls *tls);
#endif
File diff suppressed because it is too large Load Diff
+167
View File
@@ -0,0 +1,167 @@
/* Copyright 2003 Roger Dingledine */
/* See LICENSE for licensing information */
/* $Id$ */
#ifndef __UTIL_H
#define __UTIL_H
#include "../or/or.h"
#if _MSC_VER > 1300
#include <winsock2.h>
#include <ws2tcpip.h>
#elif defined(_MSC_VER)
#include <winsock.h>
#endif
#ifndef HAVE_GETTIMEOFDAY
#ifdef HAVE_FTIME
#define USING_FAKE_TIMEVAL
#include <sys/timeb.h>
#define timeval timeb
#define tv_sec time
#define tv_usec millitm
#endif
#endif
#ifdef MS_WINDOWS
/* Windows names string functions funnily. */
#define strncasecmp strnicmp
#define strcasecmp stricmp
#define INLINE __inline
#else
#define INLINE inline
#endif
size_t strlcat(char *dst, const char *src, size_t siz);
size_t strlcpy(char *dst, const char *src, size_t siz);
void *tor_malloc(size_t size);
void *tor_malloc_zero(size_t size);
void *tor_realloc(void *ptr, size_t size);
char *tor_strdup(const char *s);
char *tor_strndup(const char *s, size_t n);
#define tor_free(p) do {if(p) {free(p); (p)=NULL;}} while(0)
void tor_strlower(char *s);
#ifdef UNALIGNED_INT_ACCESS_OK
/* XXX Not actually used yet, but would probably be faster on non-sun
* hardare.
*/
#define get_uint16(cp) (*(uint16_t*)(cp))
#define get_uint32(cp) (*(uint32_t*)(cp))
#define set_uint16(cp,v) do { *(uint16_t)(cp) = (v) } while (0)
#define set_uint32(cp,v) do { *(uint32_t)(cp) = (v) } while (0)
#else
uint16_t get_uint16(char *cp);
uint32_t get_uint32(char *cp);
void set_uint16(char *cp, uint16_t v);
void set_uint32(char *cp, uint32_t v);
#endif
typedef struct {
void **list;
int num_used;
int max;
} smartlist_t;
smartlist_t *smartlist_create(int max_elements);
void smartlist_free(smartlist_t *sl);
void smartlist_add(smartlist_t *sl, void *element);
void smartlist_remove(smartlist_t *sl, void *element);
int smartlist_isin(smartlist_t *sl, void *element);
int smartlist_overlap(smartlist_t *sl1, smartlist_t *sl2);
void smartlist_intersect(smartlist_t *sl1, smartlist_t *sl2);
void smartlist_subtract(smartlist_t *sl1, smartlist_t *sl2);
void *smartlist_choose(smartlist_t *sl);
/* Map from const char * to void*. Implemented with a splay tree. */
typedef struct strmap_t strmap_t;
typedef struct strmap_entry_t strmap_entry_t;
typedef struct strmap_entry_t strmap_iter_t;
strmap_t* strmap_new(void);
void* strmap_set(strmap_t *map, const char *key, void *val);
void* strmap_get(strmap_t *map, const char *key);
void* strmap_remove(strmap_t *map, const char *key);
void* strmap_set_lc(strmap_t *map, const char *key, void *val);
void* strmap_get_lc(strmap_t *map, const char *key);
void* strmap_remove_lc(strmap_t *map, const char *key);
typedef void* (*strmap_foreach_fn)(const char *key, void *val, void *data);
void strmap_foreach(strmap_t *map, strmap_foreach_fn fn, void *data);
void strmap_free(strmap_t *map, void (*free_val)(void*));
strmap_iter_t *strmap_iter_init(strmap_t *map);
strmap_iter_t *strmap_iter_next(strmap_t *map, strmap_iter_t *iter);
strmap_iter_t *strmap_iter_next_rmv(strmap_t *map, strmap_iter_t *iter);
void strmap_iter_get(strmap_iter_t *iter, const char **keyp, void **valp);
int strmap_iter_done(strmap_iter_t *iter);
const char *eat_whitespace(const char *s);
const char *eat_whitespace_no_nl(const char *s);
const char *find_whitespace(const char *s);
void tor_gettimeofday(struct timeval *timeval);
long tv_udiff(struct timeval *start, struct timeval *end);
void tv_addms(struct timeval *a, long ms);
void tv_add(struct timeval *a, struct timeval *b);
int tv_cmp(struct timeval *a, struct timeval *b);
time_t tor_timegm (struct tm *tm);
int write_all(int fd, const char *buf, size_t count, int isSocket);
int read_all(int fd, char *buf, size_t count, int isSocket);
void set_socket_nonblocking(int socket);
typedef enum { FN_ERROR, FN_NOENT, FN_FILE, FN_DIR} file_status_t;
file_status_t file_status(const char *filename);
int check_private_dir(const char *dirname, int create);
int write_str_to_file(const char *fname, const char *str);
char *read_file_to_str(const char *filename);
int parse_line_from_file(char *line, int maxlen, FILE *f, char **key_out, char **value_out);
int spawn_func(int (*func)(void *), void *data);
void spawn_exit();
int tor_socketpair(int family, int type, int protocol, int fd[2]);
int is_internal_IP(uint32_t ip);
const char *get_uname(void);
/* Start putting the process into daemon mode: fork and drop all resources
* except standard fds. The parent process never returns, but stays around
* until finish_daemon is called. (Note: it's safe to call this more
* than once: calls after the first are ignored.)
*/
void start_daemon(char *desired_cwd);
/* Finish putting the process into daemon mode: drop standard fds, and tell
* the parent process to exit. (Note: it's safe to call this more than once:
* calls after the first are ignored. Calls start_daemon first if it hasn't
* been called already.)
*/
void finish_daemon(void);
void write_pidfile(char *filename);
int switch_id(char *user, char *group);
struct in_addr;
int tor_inet_aton(const char *cp, struct in_addr *addr);
/* For stupid historical reasons, windows sockets have an independent set of
* errnos which they use as the fancy strikes them.
*/
#ifdef MS_WINDOWS
#define ERRNO_EAGAIN(e) ((e) == EAGAIN || (e) == WSAEWOULDBLOCK)
#define ERRNO_EINPROGRESS(e) ((e) == WSAEINPROGRESS)
#define ERRNO_CONN_EINPROGRESS(e) ((e) == WSAEINPROGRESS || (e) == WSAEINVAL)
int correct_socket_errno(int s);
#else
#define ERRNO_EAGAIN(e) ((e) == EAGAIN)
#define ERRNO_EINPROGRESS(e) ((e) == EINPROGRESS)
#define ERRNO_CONN_EINPROGRESS(e) ((e) == EINPROGRESS)
#define correct_socket_errno(s) (errno)
#endif
#endif
+4
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Makefile
Makefile.in
sample-server-torrc
torrc
+5
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@@ -0,0 +1,5 @@
confdir = $(sysconfdir)/tor
EXTRA_DIST = dirservers
conf_DATA = dirservers torrc
+87
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@@ -0,0 +1,87 @@
# This is no longer a manually-editable file. It's just a
# concatenation of a bunch of signed router descriptors.
router moria1 moria.mit.edu 9001 9021 9031 800000
platform Tor 0.0.2pre8 on Linux moria.mit.edu 2.4.18-27.7.xbigmem #1 SMP Fri Mar 14 05:08:50 EST 2003 i686
published 2003-09-30 23:14:08
onion-key
-----BEGIN RSA PUBLIC KEY-----
MIGJAoGBANoIvHieyHUTzIacbnWOnyTyzGrLOdXqbcjz2GGMxyHEd5K1bO1ZBNHP
9i5qLQpN5viFk2K2rEGuG8tFgDEzSWZEtBqv3NVfUdiumdERWMBwlaQ0MVK4C+jf
y5gZ8KI3o9ZictgPS1AQF+Kk932/vIHTuRIUKb4ILTnQilNvID0NAgMBAAE=
-----END RSA PUBLIC KEY-----
link-key
-----BEGIN RSA PUBLIC KEY-----
MIGJAoGBAPt97bGDd9siVjPd7Xuq2s+amMEOLIj9961aSdP6/OT+BS1Q4TX2dNOX
ZNAl63Z2fQISsR81+nfoqRLYCKxhajsD7LRvRTaRwUrWemVqFevmZ4nJrHw6FoU3
xNUIHRMA8X2DZ+l5qgnWZb7JU50ohhX5OpMSyysXnik51J8hD5mBAgMBAAE=
-----END RSA PUBLIC KEY-----
signing-key
-----BEGIN RSA PUBLIC KEY-----
MIGJAoGBAMHa0ZC/jo2Q2DrwKYF/6ZbmZ27PFYG91u4gUzzmZ/VXLpZ8wNzEV3oW
nt+I61048fBiC1frT1/DZ351n2bLSk9zJbB6jyGZJn0380FPRX3+cXyXS0Gq8Ril
xkhMQf5XuNFUb8UmYPSOH4WErjvYjKvU+gfjbK/82Jo9SuHpYz+BAgMBAAE=
-----END RSA PUBLIC KEY-----
router-signature
-----BEGIN SIGNATURE-----
Td3zb5d6uxO8oYGlmEHGzIdLuVm9s1Afqtm29JvRnnviQ36j6FZPlzPUaMVOUayn
Wtz/CbaMj7mHSufpQ68wCLb1lQrtQkn7MkAWcQPIvZjpYh3UrcWrpfm7f/D+nKeN
Z7UovF36xhCacjATNHhQNHHZHH6yONwN+Rf/N4kyPHw=
-----END SIGNATURE-----
router moria2 moria.mit.edu 9002 9022 9032 800000
platform Tor 0.0.2pre8 on Linux moria.mit.edu 2.4.18-27.7.xbigmem #1 SMP Fri Mar 14 05:08:50 EST 2003 i686
published 2003-09-30 23:14:05
onion-key
-----BEGIN RSA PUBLIC KEY-----
MIGJAoGBAM4Cc/npgYC54XrYLC+grVxJp7PDmNO2DRRJOxKttBBtvLpnR1UaueTi
kyknT5kmlx+ihgZF/jmye//2dDUp2+kK/kSkpRV4xnDLXZmed+sNSQxqmm9TtZQ9
/hjpxhp5J9HmUTYhntBs+4E4CUKokmrI6oRLoln4SA39AX9QLPcnAgMBAAE=
-----END RSA PUBLIC KEY-----
link-key
-----BEGIN RSA PUBLIC KEY-----
MIGJAoGBAN7JVeCIJ7+0ZJew5ScOU58rTUqjGt1Z1Rkursc7WabEb8jno45VZwIs
dkjnl31i36KHyyS7kQdHgkvG5EiyZiRipFAcoTaYv3Gvf1No9cXL6IhT3y/37dJ/
kFPEMb/G2wdkJCC+D8fMwHBwMuqAg0JGuhoBOz0ArCgK3fq0BLilAgMBAAE=
-----END RSA PUBLIC KEY-----
signing-key
-----BEGIN RSA PUBLIC KEY-----
MIGJAoGBAOcrht/y5rkaahfX7sMe2qnpqoPibsjTSJaDvsUtaNP/Bq0MgNDGOR48
rtwfqTRff275Edkp/UYw3G3vSgKCJr76/bqOHCmkiZrnPV1zxNfrK18gNw2Cxre0
nTA+fD8JQqpPtb8b0SnG9kwy75eS//sRu7TErie2PzGMxrf9LH0LAgMBAAE=
-----END RSA PUBLIC KEY-----
router-signature
-----BEGIN SIGNATURE-----
X10a9Oc0LKNYKLDVzjRTIVT3NnE0y+xncllDDHSJSXR97fz3MBHGDqhy0Vgha/fe
H/Y2E59oG01lYQ73j3JN+ibsCMtkzJDx2agCpV0LmakAD9ekHrYDWm/S41Ru6kf+
PsyHpXlh7cZuGEX4U1pblSDFrQZ9L1vTkpfW+COzEvI=
-----END SIGNATURE-----
router moria3 moria.mit.edu 9003 9023 9033 800000
platform Tor 0.0.2pre8 on Linux moria.mit.edu 2.4.18-27.7.xbigmem #1 SMP Fri Mar 14 05:08:50 EST 2003 i686
published 2003-09-30 23:14:07
onion-key
-----BEGIN RSA PUBLIC KEY-----
MIGJAoGBANS6J/Er9fYo03fjUUVesc7We9Z6xIevyDJH39pYS4NUlcr5ExYgSVFJ
95aLCNx1x8Rf5YtiBKYuT3plBO/+rfuX+0iAGNkz/y3SlJVGz6aeptU3wN8CkvCL
zATEcnl4QSPhHX0wFB9A3t7wZ+Bat1PTI029lax/BkoS9JG5onHPAgMBAAE=
-----END RSA PUBLIC KEY-----
link-key
-----BEGIN RSA PUBLIC KEY-----
MIGJAoGBAKUMY8p+7LBu7dEJnOR9HqbfcD6c4/f9GqJt3o29uu4XJPD8z2XGVBik
pZBLijhYS6U7GFg0NLR4zBlsLyB8TxHeaz5KJidJjy+BfC01jz1xwVTYDlmGVpc1
0mw0Ag0ND6aOQKKhelxhTI3Bf0R9olEXuSUKEWx3EMIz2qhLd9oDAgMBAAE=
-----END RSA PUBLIC KEY-----
signing-key
-----BEGIN RSA PUBLIC KEY-----
MIGJAoGBAMqgq83cwzSid2LSvzsn2rvkD8U0tWvqF6PuQAsKP3QHFqtBO+66pnIm
CbiY2e6o01tmR47t557LuUCodEc8Blggxjg3ZEzvP42hsGB9LwQbcrU7grPRk0G0
IltsOF9TZ+66gCeU7LxExLdAMqT2Tx6VT4IREPJMeNxSiceEjbABAgMBAAE=
-----END RSA PUBLIC KEY-----
router-signature
-----BEGIN SIGNATURE-----
GWpK2Ux/UwDaNUHwq+Xn7denyYFGS8SIWwqiMgHyUzc5wj1t2gWubJ/rMyGL59U3
o6L/9qV34aa5UyNNBHXwYkxy7ixgPURaRYpAbkQKPU3ew8BgNXG/MNLYllIUkrbb
h6G5u8RGbto+Nby/OjIh9TqdgK/B1sOdwAHI/IXiDoY=
-----END SIGNATURE-----
+12
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DataDirectory moria1
Nickname moria1
ORPort 9001
DirPort 9031
# List of routers
RouterFile ../config/dirservers
ExitPolicy reject 0.0.0.0/8,reject 127.0.0.0/8,reject 192.168.0.0/16,reject 10.0.0.0/8,reject 172.16.0.0/12,accept *:20-22,accept *:53,accept *:79-80,accept *:110,accept *:143,accept *:443,accept *:873,accept *:1024-65535,reject *:*
+12
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DataDirectory moria2
Nickname moria2
ORPort 9002
DirPort 9032
# List of routers
RouterFile ../config/dirservers
ExitPolicy reject 0.0.0.0/8,reject 127.0.0.0/8,reject 192.168.0.0/16,reject 10.0.0.0/8,reject 172.16.0.0/12,accept *:20-22,accept *:53,accept *:79-80,accept *:110,accept *:143,accept *:443,accept *:873,accept *:1024-65535,reject *:*
+12
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@@ -0,0 +1,12 @@
DataDirectory moria3
Nickname moria3
ORPort 9003
DirPort 9033
# List of routers
RouterFile ../config/dirservers
ExitPolicy reject 0.0.0.0/8,reject 127.0.0.0/8,reject 192.168.0.0/16,reject 10.0.0.0/8,reject 172.16.0.0/12,accept *:20-22,accept *:53,accept *:79-80,accept *:110,accept *:143,accept *:443,accept *:873,accept *:1024-65535,reject *:*
+32
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# Configuration file for a typical tor user
# List of routers. Tor nodes start out knowing about the directory
# servers, and from them they get a list of currently up nodes.
RouterFile @CONFDIR@/dirservers
# Comment out if you don't want to allow applications to connect.
SocksPort 9050
SocksBindAddress 127.0.0.1 # accept connections only from localhost
##################### Below is just for servers #####################
## NOTE: If you enable these, you won't be able to use tor as a client
## or server until you've been added to the directory and can
## authenticate to the other nodes. See the README for details.
## The directory for keeping all the keys/etc for this server
#DataDirectory @LOCALSTATEDIR@/lib/tor
#Nickname moria # A unique handle for this server
#Address moria.seul.org # The fqdn for this server
#ORPort 9001 # where to listen for tor connections
#ORBindAddress 0.0.0.0 # accept connections from anywhere
## A comma-separated list of exit policies. If you want to *replace*
## the default exit policy, end this with either a reject *:* or an
## accept *:*. Otherwise, you're *augmenting* (prepending to) the
## default exit policy. Leave commented to just use the default.
#ExitPolicy accept 18.244.0.188:25,accept 18.244.0.114:25
#ExitPolicy reject *:*
+5
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@@ -0,0 +1,5 @@
Makefile
Makefile.in
tor
test
.deps
+23
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@@ -0,0 +1,23 @@
TESTS = test
noinst_PROGRAMS = test
bin_PROGRAMS = tor
tor_SOURCES = buffers.c circuit.c command.c connection.c \
connection_or.c config.c dirserv.c \
onion.c router.c routerlist.c directory.c dns.c connection_edge.c \
rephist.c cpuworker.c main.c tor_main.c
tor_LDADD = ../common/libor.a
test_SOURCES = buffers.c circuit.c command.c connection.c \
connection_or.c config.c dirserv.c \
onion.c router.c routerlist.c directory.c dns.c connection_edge.c \
rephist.c cpuworker.c main.c test.c
test_LDADD = ../common/libor.a
noinst_HEADERS = or.h tree.h
+601
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/* Copyright 2001,2002,2003 Roger Dingledine, Matej Pfajfar. */
/* See LICENSE for licensing information */
/* $Id$ */
/* buffers.c */
#include "or.h"
#define BUFFER_MAGIC 0xB0FFF312u
struct buf_t {
uint32_t magic; /* for debugging */
char *mem;
size_t len;
size_t datalen;
};
/* Size, in bytes, for newly allocated buffers. Should be a power of 2. */
#define INITIAL_BUF_SIZE (4*1024)
/* Maximum size, in bytes, for resized buffers. */
#define MAX_BUF_SIZE (1024*1024)
/* Size, in bytes, for minimum 'shrink' size for buffers. Buffers may start
* out smaller than this, but they will never autoshrink to less
* than this size. */
#define MIN_BUF_SHRINK_SIZE (16*1024)
#define BUF_OK(b) ((b) && (b)->mem && (b)->datalen <= (b)->len)
/* Change a buffer's capacity. Must only be called when */
static INLINE void buf_resize(buf_t *buf, size_t new_capacity)
{
assert(buf->datalen <= new_capacity);
assert(new_capacity);
buf->mem = tor_realloc(buf->mem, new_capacity);
buf->len = new_capacity;
}
/* If the buffer is not large enough to hold "capacity" bytes, resize
* it so that it can. (The new size will be a power of 2 times the old
* size.)
*/
static INLINE int buf_ensure_capacity(buf_t *buf, size_t capacity)
{
size_t new_len;
if (buf->len >= capacity) /* Don't grow if we're already big enough. */
return 0;
if (capacity > MAX_BUF_SIZE) /* Don't grow past the maximum. */
return -1;
/* Find the smallest new_len equal to (2**X)*len for some X; such that
* new_len is at least capacity.
*/
new_len = buf->len*2;
while (new_len < capacity)
new_len *= 2;
/* Resize the buffer. */
log_fn(LOG_DEBUG,"Growing buffer from %d to %d bytes.",
(int)buf->len, (int)new_len);
buf_resize(buf,new_len);
return 0;
}
/* If the buffer is at least 2*MIN_BUF_SHRINK_SIZE bytes in capacity,
* and if the buffer is less than 1/4 full, shrink the buffer until
* one of the above no longer holds. (We shrink the buffer by
* dividing by powers of 2.)
*/
static INLINE void buf_shrink_if_underfull(buf_t *buf) {
size_t new_len;
/* If the buffer is at least .25 full, or if shrinking the buffer would
* put it onder MIN_BUF_SHRINK_SIZE, don't do it. */
if (buf->datalen >= buf->len/4 || buf->len < 2*MIN_BUF_SHRINK_SIZE)
return;
/* Shrink new_len by powers of 2 until: datalen is at least 1/4 of
* new_len, OR shrinking new_len more would put it under
* MIN_BUF_SHRINK_SIZE.
*/
new_len = buf->len / 2;
while (buf->datalen < new_len/4 && new_len/2 > MIN_BUF_SHRINK_SIZE)
new_len /= 2;
log_fn(LOG_DEBUG,"Shrinking buffer from %d to %d bytes.",
(int)buf->len, (int)new_len);
buf_resize(buf, new_len);
}
/* Remove the first 'n' bytes from buf.
*/
static INLINE void buf_remove_from_front(buf_t *buf, size_t n) {
assert(buf->datalen >= n);
buf->datalen -= n;
memmove(buf->mem, buf->mem+n, buf->datalen);
buf_shrink_if_underfull(buf);
}
/* Find the first instance of str on buf. If none exists, return -1.
* Otherwise, return index of the first character in buf _after_ the
* first instance of str.
*/
static int find_str_in_str(const char *str, int str_len,
const char *buf, int buf_len)
{
const char *location;
const char *last_possible = buf + buf_len - str_len;
assert(str && str_len > 0 && buf);
if(buf_len < str_len)
return -1;
for(location = buf; location <= last_possible; location++)
if((*location == *str) && !memcmp(location+1, str+1, str_len-1))
return location-buf+str_len;
return -1;
}
int find_on_inbuf(char *string, int string_len, buf_t *buf) {
return find_str_in_str(string, string_len, buf->mem, buf->datalen);
}
/* Create and return a new buf of size 'size'
*/
buf_t *buf_new_with_capacity(size_t size) {
buf_t *buf;
buf = (buf_t*)tor_malloc(sizeof(buf_t));
buf->magic = BUFFER_MAGIC;
buf->mem = (char *)tor_malloc(size);
buf->len = size;
buf->datalen = 0;
// memset(buf->mem,0,size);
assert(BUF_OK(buf));
return buf;
}
buf_t *buf_new()
{
return buf_new_with_capacity(INITIAL_BUF_SIZE);
}
void buf_clear(buf_t *buf)
{
buf->datalen = 0;
}
size_t buf_datalen(const buf_t *buf)
{
return buf->datalen;
}
size_t buf_capacity(const buf_t *buf)
{
return buf->len;
}
const char *_buf_peek_raw_buffer(const buf_t *buf)
{
return buf->mem;
}
void buf_free(buf_t *buf) {
assert_buf_ok(buf);
buf->magic = 0xDEADBEEF;
tor_free(buf->mem);
tor_free(buf);
}
/* read from socket s, writing onto end of buf.
* read at most 'at_most' bytes, and in any case don't read more than
* will fit based on buflen.
* If read() returns 0, set *reached_eof to 1 and return 0. If you want
* to tear down the connection return -1, else return the number of
* bytes read.
*/
int read_to_buf(int s, int at_most, buf_t *buf, int *reached_eof) {
int read_result;
#ifdef MS_WINDOWS
int e;
#endif
assert(BUF_OK(buf) && reached_eof && (s>=0));
if (buf_ensure_capacity(buf,buf->datalen+at_most))
return -1;
if(at_most > buf->len - buf->datalen)
at_most = buf->len - buf->datalen; /* take the min of the two */
if(at_most == 0)
return 0; /* we shouldn't read anything */
// log_fn(LOG_DEBUG,"reading at most %d bytes.",at_most);
read_result = recv(s, buf->mem+buf->datalen, at_most, 0);
if (read_result < 0) {
if(!ERRNO_EAGAIN(errno)) { /* it's a real error */
return -1;
}
#ifdef MS_WINDOWS
e = correct_socket_errno(s);
if(!ERRNO_EAGAIN(e)) { /* no, it *is* a real error! */
return -1;
}
#endif
return 0;
} else if (read_result == 0) {
log_fn(LOG_DEBUG,"Encountered eof");
*reached_eof = 1;
return 0;
} else { /* we read some bytes */
buf->datalen += read_result;
log_fn(LOG_DEBUG,"Read %d bytes. %d on inbuf.",read_result,
(int)buf->datalen);
return read_result;
}
}
int read_to_buf_tls(tor_tls *tls, int at_most, buf_t *buf) {
int r;
assert(tls && BUF_OK(buf));
if (buf_ensure_capacity(buf, at_most+buf->datalen))
return -1;
if (at_most > buf->len - buf->datalen)
at_most = buf->len - buf->datalen;
if (at_most == 0)
return 0;
r = tor_tls_read(tls, buf->mem+buf->datalen, at_most);
if (r<0)
return r;
buf->datalen += r;
log_fn(LOG_DEBUG,"Read %d bytes. %d on inbuf.",r, (int)buf->datalen);
return r;
}
int flush_buf(int s, buf_t *buf, int *buf_flushlen)
{
/* push from buf onto s
* then memmove to front of buf
* return -1 or how many bytes you just flushed */
int write_result;
#ifdef MS_WINDOWS
int e;
#endif
assert(BUF_OK(buf) && buf_flushlen && (s>=0) && (*buf_flushlen <= buf->datalen));
if(*buf_flushlen == 0) /* nothing to flush */
return 0;
write_result = send(s, buf->mem, *buf_flushlen, 0);
if (write_result < 0) {
if(!ERRNO_EAGAIN(errno)) { /* it's a real error */
assert(errno != EPIPE); /* get a stack trace to find epipe bugs */
return -1;
}
#ifdef MS_WINDOWS
e = correct_socket_errno(s);
if(!ERRNO_EAGAIN(e)) { /* no, it *is* a real error! */
return -1;
}
#endif
log_fn(LOG_DEBUG,"write() would block, returning.");
return 0;
} else {
*buf_flushlen -= write_result;
buf_remove_from_front(buf, write_result);
log_fn(LOG_DEBUG,"%d: flushed %d bytes, %d ready to flush, %d remain.",
s,write_result,*buf_flushlen,(int)buf->datalen);
return write_result;
}
}
int flush_buf_tls(tor_tls *tls, buf_t *buf, int *buf_flushlen)
{
int r;
assert(tls && BUF_OK(buf) && buf_flushlen);
/* we want to let tls write even if flushlen is zero, because it might
* have a partial record pending */
r = tor_tls_write(tls, buf->mem, *buf_flushlen);
if (r < 0) {
return r;
}
*buf_flushlen -= r;
buf_remove_from_front(buf, r);
log_fn(LOG_DEBUG,"flushed %d bytes, %d ready to flush, %d remain.",
r,*buf_flushlen,(int)buf->datalen);
return r;
}
int write_to_buf(const char *string, int string_len, buf_t *buf) {
/* append string to buf (growing as needed, return -1 if "too big")
* return total number of bytes on the buf
*/
assert(string && BUF_OK(buf));
if (buf_ensure_capacity(buf, buf->datalen+string_len)) {
log_fn(LOG_WARN, "buflen too small, can't hold %d bytes.", (int)buf->datalen+string_len);
return -1;
}
memcpy(buf->mem+buf->datalen, string, string_len);
buf->datalen += string_len;
log_fn(LOG_DEBUG,"added %d bytes to buf (now %d total).",string_len, (int)buf->datalen);
return buf->datalen;
}
int fetch_from_buf(char *string, int string_len, buf_t *buf) {
/* There must be string_len bytes in buf; write them onto string,
* then memmove buf back (that is, remove them from buf).
*
* Return the number of bytes still on the buffer. */
assert(string && BUF_OK(buf));
assert(string_len <= buf->datalen); /* make sure we don't ask for too much */
memcpy(string,buf->mem,string_len);
buf_remove_from_front(buf, string_len);
return buf->datalen;
}
/* There is a (possibly incomplete) http statement on *buf, of the
* form "%s\r\n\r\n%s", headers, body.
* If a) the headers include a Content-Length field and all bytes in
* the body are present, or b) there's no Content-Length field and
* all headers are present, then:
* strdup headers and body into the supplied args (and null terminate
* them), remove them from buf, and return 1.
* (If headers or body is NULL, discard that part of the buf.)
* If a headers or body doesn't fit in the arg, return -1.
*
* Else, change nothing and return 0.
*/
int fetch_from_buf_http(buf_t *buf,
char **headers_out, int max_headerlen,
char **body_out, int max_bodylen) {
char *headers, *body;
int i;
int headerlen, bodylen, contentlen;
assert(BUF_OK(buf));
headers = buf->mem;
i = find_on_inbuf("\r\n\r\n", 4, buf);
if(i < 0) {
log_fn(LOG_DEBUG,"headers not all here yet.");
return 0;
}
body = buf->mem+i;
headerlen = body-headers; /* includes the CRLFCRLF */
bodylen = buf->datalen - headerlen;
log_fn(LOG_DEBUG,"headerlen %d, bodylen %d.", headerlen, bodylen);
if(headers_out && max_headerlen <= headerlen) {
log_fn(LOG_WARN,"headerlen %d larger than %d. Failing.", headerlen, max_headerlen-1);
return -1;
}
if(body_out && max_bodylen <= bodylen) {
log_fn(LOG_WARN,"bodylen %d larger than %d. Failing.", bodylen, max_bodylen-1);
return -1;
}
#define CONTENT_LENGTH "\r\nContent-Length: "
i = find_str_in_str(CONTENT_LENGTH, strlen(CONTENT_LENGTH),
headers, headerlen);
if(i > 0) {
contentlen = atoi(headers+i);
/* XXX What if content-length is malformed? */
log_fn(LOG_DEBUG,"Got a contentlen of %d.",contentlen);
if(bodylen < contentlen) {
log_fn(LOG_DEBUG,"body not all here yet.");
return 0; /* not all there yet */
}
bodylen = contentlen;
log_fn(LOG_DEBUG,"bodylen reduced to %d.",bodylen);
}
/* all happy. copy into the appropriate places, and return 1 */
if(headers_out) {
*headers_out = tor_malloc(headerlen+1);
memcpy(*headers_out,buf->mem,headerlen);
(*headers_out)[headerlen] = 0; /* null terminate it */
}
if(body_out) {
*body_out = tor_malloc(bodylen+1);
memcpy(*body_out,buf->mem+headerlen,bodylen);
(*body_out)[bodylen] = 0; /* null terminate it */
}
buf_remove_from_front(buf, headerlen+bodylen);
return 1;
}
/* There is a (possibly incomplete) socks handshake on buf, of one
* of the forms
* socks4: "socksheader username\0"
* socks4a: "socksheader username\0 destaddr\0"
* socks5 phase one: "version #methods methods"
* socks5 phase two: "version command 0 addresstype..."
* If it's a complete and valid handshake, and destaddr fits in
* MAX_SOCKS_ADDR_LEN bytes, then pull the handshake off the buf,
* assign to req, and return 1.
* If it's invalid or too big, return -1.
* Else it's not all there yet, leave buf alone and return 0.
* If you want to specify the socks reply, write it into req->reply
* and set req->replylen, else leave req->replylen alone.
* If returning 0 or -1, req->address and req->port are undefined.
*/
int fetch_from_buf_socks(buf_t *buf, socks_request_t *req) {
unsigned char len;
char *tmpbuf=NULL;
uint32_t destip;
enum {socks4, socks4a} socks4_prot = socks4a;
char *next, *startaddr;
struct in_addr in;
if(buf->datalen < 2) /* version and another byte */
return 0;
switch(*(buf->mem)) { /* which version of socks? */
case 5: /* socks5 */
if(req->socks_version != 5) { /* we need to negotiate a method */
unsigned char nummethods = (unsigned char)*(buf->mem+1);
assert(!req->socks_version);
if(buf->datalen < 2+nummethods)
return 0;
if(!nummethods || !memchr(buf->mem+2, 0, nummethods)) {
log_fn(LOG_WARN,"socks5: offered methods don't include 'no auth'. Rejecting.");
req->replylen = 2; /* 2 bytes of response */
req->reply[0] = 5; /* socks5 reply */
req->reply[1] = '\xFF'; /* reject all methods */
return -1;
}
buf_remove_from_front(buf,2+nummethods);/* remove packet from buf */
req->replylen = 2; /* 2 bytes of response */
req->reply[0] = 5; /* socks5 reply */
req->reply[1] = 0; /* choose the 'no auth' method */
req->socks_version = 5; /* remember that we've already negotiated auth */
log_fn(LOG_DEBUG,"socks5: accepted method 0");
return 0;
}
/* we know the method; read in the request */
log_fn(LOG_DEBUG,"socks5: checking request");
if(buf->datalen < 8) /* basic info plus >=2 for addr plus 2 for port */
return 0; /* not yet */
if(*(buf->mem+1) != 1) { /* not a connect? we don't support it. */
log_fn(LOG_WARN,"socks5: command %d not '1'. Rejecting.",*(buf->mem+1));
return -1;
}
switch(*(buf->mem+3)) { /* address type */
case 1: /* IPv4 address */
log_fn(LOG_DEBUG,"socks5: ipv4 address type");
if(buf->datalen < 10) /* ip/port there? */
return 0; /* not yet */
destip = ntohl(*(uint32_t*)(buf->mem+4));
in.s_addr = htonl(destip);
tmpbuf = inet_ntoa(in);
if(strlen(tmpbuf)+1 > MAX_SOCKS_ADDR_LEN) {
log_fn(LOG_WARN,"socks5 IP takes %d bytes, which doesn't fit in %d. Rejecting.",
(int)strlen(tmpbuf)+1,(int)MAX_SOCKS_ADDR_LEN);
return -1;
}
strcpy(req->address,tmpbuf);
req->port = ntohs(*(uint16_t*)(buf->mem+8));
buf_remove_from_front(buf, 10);
return 1;
case 3: /* fqdn */
log_fn(LOG_DEBUG,"socks5: fqdn address type");
len = (unsigned char)*(buf->mem+4);
if(buf->datalen < 7+len) /* addr/port there? */
return 0; /* not yet */
if(len+1 > MAX_SOCKS_ADDR_LEN) {
log_fn(LOG_WARN,"socks5 hostname is %d bytes, which doesn't fit in %d. Rejecting.",
len+1,MAX_SOCKS_ADDR_LEN);
return -1;
}
memcpy(req->address,buf->mem+5,len);
req->address[len] = 0;
memcpy(&req->port, buf->mem+5+len, 2);
req->port = ntohs(req->port);
buf_remove_from_front(buf, 5+len+2);
return 1;
default: /* unsupported */
log_fn(LOG_WARN,"socks5: unsupported address type %d. Rejecting.",*(buf->mem+3));
return -1;
}
assert(0);
case 4: /* socks4 */
/* http://archive.socks.permeo.com/protocol/socks4.protocol */
/* http://archive.socks.permeo.com/protocol/socks4a.protocol */
req->socks_version = 4;
if(buf->datalen < SOCKS4_NETWORK_LEN) /* basic info available? */
return 0; /* not yet */
if(*(buf->mem+1) != 1) { /* not a connect? we don't support it. */
log_fn(LOG_WARN,"socks4: command %d not '1'. Rejecting.",*(buf->mem+1));
return -1;
}
req->port = ntohs(*(uint16_t*)(buf->mem+2));
destip = ntohl(*(uint32_t*)(buf->mem+4));
if(!req->port || !destip) {
log_fn(LOG_WARN,"socks4: Port or DestIP is zero. Rejecting.");
return -1;
}
if(destip >> 8) {
log_fn(LOG_DEBUG,"socks4: destip not in form 0.0.0.x.");
in.s_addr = htonl(destip);
tmpbuf = inet_ntoa(in);
if(strlen(tmpbuf)+1 > MAX_SOCKS_ADDR_LEN) {
log_fn(LOG_WARN,"socks4 addr (%d bytes) too long. Rejecting.",
(int)strlen(tmpbuf));
return -1;
}
log_fn(LOG_DEBUG,"socks4: successfully read destip (%s)", tmpbuf);
socks4_prot = socks4;
}
next = memchr(buf->mem+SOCKS4_NETWORK_LEN, 0, buf->datalen);
if(!next) {
log_fn(LOG_DEBUG,"socks4: Username not here yet.");
return 0;
}
startaddr = next+1;
if(socks4_prot == socks4a) {
next = memchr(startaddr, 0, buf->mem+buf->datalen-startaddr);
if(!next) {
log_fn(LOG_DEBUG,"socks4: Destaddr not here yet.");
return 0;
}
if(MAX_SOCKS_ADDR_LEN <= next-startaddr) {
log_fn(LOG_WARN,"socks4: Destaddr too long. Rejecting.");
return -1;
}
}
log_fn(LOG_DEBUG,"socks4: Everything is here. Success.");
strcpy(req->address, socks4_prot == socks4 ? tmpbuf : startaddr);
/* XXX on very old netscapes (socks4) the next line triggers an
* assert, because next-buf->mem+1 is greater than buf->datalen.
*/
buf_remove_from_front(buf, next-buf->mem+1); /* next points to the final \0 on inbuf */
return 1;
case 'G': /* get */
case 'H': /* head */
case 'P': /* put/post */
case 'C': /* connect */
strcpy(req->reply,
"HTTP/1.0 501 Tor is not an HTTP Proxy\r\n"
"Content-Type: text/html; charset=iso-8859-1\r\n\r\n"
"<html>\n"
"<head>\n"
"<title>Tor is not an HTTP Proxy</title>\n"
"</head>\n"
"<body>\n"
"<h1>Tor is not an HTTP Proxy</h1>\n"
"<p>\n"
"It appears you have configured your web browser to use Tor as an HTTP Proxy.\n"
"This is not correct: Tor provides a SOCKS proxy. Please configure your\n"
"client accordingly.\n"
"</p>\n"
"<p>\n"
"See <a href=\"http://freehaven.net/tor/cvs/INSTALL\">http://freehaven.net/tor/cvs/INSTALL</a> for more information.\n"
"<!-- Plus this comment, to make the body response more than 512 bytes, so IE will be willing to display it. Comment comment comment comment comment comment comment comment comment comment comment comment.-->\n"
"</p>\n"
"</body>\n"
"</html>\n"
);
req->replylen = strlen(req->reply)+1;
/* fall through */
default: /* version is not socks4 or socks5 */
log_fn(LOG_WARN,"Socks version %d not recognized. (Tor is not an http proxy.)",
*(buf->mem));
return -1;
}
}
void assert_buf_ok(buf_t *buf)
{
assert(buf);
assert(buf->magic == BUFFER_MAGIC);
assert(buf->mem);
assert(buf->datalen <= buf->len);
}
/*
Local Variables:
mode:c
indent-tabs-mode:nil
c-basic-offset:2
End:
*/
File diff suppressed because it is too large Load Diff
+218
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@@ -0,0 +1,218 @@
/* Copyright 2001,2002,2003 Roger Dingledine, Matej Pfajfar. */
/* See LICENSE for licensing information */
/* $Id$ */
#include "or.h"
extern or_options_t options; /* command-line and config-file options */
unsigned long stats_n_padding_cells_processed = 0;
unsigned long stats_n_create_cells_processed = 0;
unsigned long stats_n_created_cells_processed = 0;
unsigned long stats_n_relay_cells_processed = 0;
unsigned long stats_n_destroy_cells_processed = 0;
static void command_process_create_cell(cell_t *cell, connection_t *conn);
static void command_process_created_cell(cell_t *cell, connection_t *conn);
static void command_process_relay_cell(cell_t *cell, connection_t *conn);
static void command_process_destroy_cell(cell_t *cell, connection_t *conn);
static void command_time_process_cell(cell_t *cell, connection_t *conn,
int *num, int *time,
void (*func)(cell_t *, connection_t *)) {
struct timeval start, end;
long time_passed;
*num += 1;
tor_gettimeofday(&start);
(*func)(cell, conn);
tor_gettimeofday(&end);
time_passed = tv_udiff(&start, &end) ;
if (time_passed > 10000) { /* more than 10ms */
log_fn(LOG_INFO,"That call just took %ld ms.",time_passed/1000);
}
*time += time_passed;
}
void command_process_cell(cell_t *cell, connection_t *conn) {
static int num_create=0, num_created=0, num_relay=0, num_destroy=0;
static int create_time=0, created_time=0, relay_time=0, destroy_time=0;
static time_t current_second = 0; /* from previous calls to time */
time_t now = time(NULL);
if(now > current_second) { /* the second has rolled over */
/* print stats */
log(LOG_INFO,"At end of second:");
log(LOG_INFO,"Create: %d (%d ms)", num_create, create_time/1000);
log(LOG_INFO,"Created: %d (%d ms)", num_created, created_time/1000);
log(LOG_INFO,"Relay: %d (%d ms)", num_relay, relay_time/1000);
log(LOG_INFO,"Destroy: %d (%d ms)", num_destroy, destroy_time/1000);
/* zero out stats */
num_create = num_created = num_relay = num_destroy = 0;
create_time = created_time = relay_time = destroy_time = 0;
/* remember which second it is, for next time */
current_second = now;
}
switch(cell->command) {
case CELL_PADDING:
++stats_n_padding_cells_processed;
/* do nothing */
break;
case CELL_CREATE:
++stats_n_create_cells_processed;
command_time_process_cell(cell, conn, &num_create, &create_time,
command_process_create_cell);
break;
case CELL_CREATED:
++stats_n_created_cells_processed;
command_time_process_cell(cell, conn, &num_created, &created_time,
command_process_created_cell);
break;
case CELL_RELAY:
++stats_n_relay_cells_processed;
command_time_process_cell(cell, conn, &num_relay, &relay_time,
command_process_relay_cell);
break;
case CELL_DESTROY:
++stats_n_destroy_cells_processed;
command_time_process_cell(cell, conn, &num_destroy, &destroy_time,
command_process_destroy_cell);
break;
default:
log_fn(LOG_WARN,"Cell of unknown type (%d) received. Dropping.", cell->command);
break;
}
}
static void command_process_create_cell(cell_t *cell, connection_t *conn) {
circuit_t *circ;
circ = circuit_get_by_circ_id_conn(cell->circ_id, conn);
if(circ) {
log_fn(LOG_WARN,"received CREATE cell (circID %d) for known circ. Dropping.", cell->circ_id);
return;
}
circ = circuit_new(cell->circ_id, conn);
circ->state = CIRCUIT_STATE_ONIONSKIN_PENDING;
memcpy(circ->onionskin, cell->payload, ONIONSKIN_CHALLENGE_LEN);
/* hand it off to the cpuworkers, and then return */
if(assign_to_cpuworker(NULL, CPUWORKER_TASK_ONION, circ) < 0) {
log_fn(LOG_WARN,"Failed to hand off onionskin. Closing.");
circuit_mark_for_close(circ);
return;
}
log_fn(LOG_DEBUG,"success: handed off onionskin.");
}
static void command_process_created_cell(cell_t *cell, connection_t *conn) {
circuit_t *circ;
circ = circuit_get_by_circ_id_conn(cell->circ_id, conn);
if(!circ) {
log_fn(LOG_INFO,"(circID %d) unknown circ (probably got a destroy earlier). Dropping.", cell->circ_id);
return;
}
if(circ->n_circ_id != cell->circ_id) {
log_fn(LOG_WARN,"got created cell from OPward? Closing.");
circuit_mark_for_close(circ);
return;
}
if(circ->cpath) { /* we're the OP. Handshake this. */
log_fn(LOG_DEBUG,"at OP. Finishing handshake.");
if(circuit_finish_handshake(circ, cell->payload) < 0) {
log_fn(LOG_WARN,"circuit_finish_handshake failed.");
circuit_mark_for_close(circ);
return;
}
log_fn(LOG_DEBUG,"Moving to next skin.");
if(circuit_send_next_onion_skin(circ) < 0) {
log_fn(LOG_INFO,"circuit_send_next_onion_skin failed.");
circuit_mark_for_close(circ); /* XXX push this circuit_close lower */
return;
}
} else { /* pack it into an extended relay cell, and send it. */
log_fn(LOG_DEBUG,"Converting created cell to extended relay cell, sending.");
connection_edge_send_command(NULL, circ, RELAY_COMMAND_EXTENDED,
cell->payload, ONIONSKIN_REPLY_LEN, NULL);
}
}
static void command_process_relay_cell(cell_t *cell, connection_t *conn) {
circuit_t *circ;
circ = circuit_get_by_circ_id_conn(cell->circ_id, conn);
if(!circ) {
log_fn(LOG_INFO,"unknown circuit %d. Dropping.", cell->circ_id);
return;
}
if(circ->state == CIRCUIT_STATE_ONIONSKIN_PENDING) {
log_fn(LOG_WARN,"circuit in create_wait. Closing.");
circuit_mark_for_close(circ);
return;
}
if(cell->circ_id == circ->p_circ_id) { /* it's an outgoing cell */
if(circuit_receive_relay_cell(cell, circ, CELL_DIRECTION_OUT) < 0) {
log_fn(LOG_WARN,"circuit_receive_relay_cell (forward) failed. Closing.");
circuit_mark_for_close(circ);
return;
}
} else { /* it's an ingoing cell */
if(circuit_receive_relay_cell(cell, circ, CELL_DIRECTION_IN) < 0) {
log_fn(LOG_WARN,"circuit_receive_relay_cell (backward) failed. Closing.");
circuit_mark_for_close(circ);
return;
}
}
}
static void command_process_destroy_cell(cell_t *cell, connection_t *conn) {
circuit_t *circ;
circ = circuit_get_by_circ_id_conn(cell->circ_id, conn);
if(!circ) {
log_fn(LOG_INFO,"unknown circuit %d. Dropping.", cell->circ_id);
return;
}
log_fn(LOG_DEBUG,"Received for circID %d.",cell->circ_id);
if(circ->state == CIRCUIT_STATE_ONIONSKIN_PENDING) {
onion_pending_remove(circ);
}
if(cell->circ_id == circ->p_circ_id || circ->cpath) {
/* either the destroy came from behind, or we're the AP */
circ->p_conn = NULL;
circuit_mark_for_close(circ);
} else { /* the destroy came from ahead */
circ->n_conn = NULL;
log_fn(LOG_DEBUG, "Delivering 'truncated' back.");
connection_edge_send_command(NULL, circ, RELAY_COMMAND_TRUNCATED,
NULL, 0, NULL);
}
}
/*
Local Variables:
mode:c
indent-tabs-mode:nil
c-basic-offset:2
End:
*/
+643
View File
@@ -0,0 +1,643 @@
/* Copyright 2001,2002,2003 Roger Dingledine, Matej Pfajfar. */
/* See LICENSE for licensing information */
/* $Id$ */
#include "or.h"
/* enumeration of types which option values can take */
#define CONFIG_TYPE_STRING 0
#define CONFIG_TYPE_CHAR 1
#define CONFIG_TYPE_INT 2
#define CONFIG_TYPE_LONG 3
#define CONFIG_TYPE_DOUBLE 4
#define CONFIG_TYPE_BOOL 5
#define CONFIG_LINE_MAXLEN 4096
struct config_line {
char *key;
char *value;
struct config_line *next;
};
static FILE *config_open(const unsigned char *filename);
static int config_close(FILE *f);
static struct config_line *config_get_commandlines(int argc, char **argv);
static struct config_line *config_get_lines(FILE *f);
static void config_free_lines(struct config_line *front);
static int config_compare(struct config_line *c, char *key, int type, void *arg);
static int config_assign(or_options_t *options, struct config_line *list);
/* open configuration file for reading */
static FILE *config_open(const unsigned char *filename) {
assert(filename);
if (strspn(filename,CONFIG_LEGAL_FILENAME_CHARACTERS) != strlen(filename)) {
/* filename has illegal letters */
return NULL;
}
return fopen(filename, "r");
}
/* close configuration file */
static int config_close(FILE *f) {
assert(f);
return fclose(f);
}
static struct config_line *config_get_commandlines(int argc, char **argv) {
struct config_line *new;
struct config_line *front = NULL;
char *s;
int i = 1;
while(i < argc-1) {
if(!strcmp(argv[i],"-f")) {
// log(LOG_DEBUG,"Commandline: skipping over -f.");
i+=2; /* this is the config file option. ignore it. */
continue;
}
new = tor_malloc(sizeof(struct config_line));
s = argv[i];
while(*s == '-')
s++;
new->key = tor_strdup(s);
new->value = tor_strdup(argv[i+1]);
log(LOG_DEBUG,"Commandline: parsed keyword '%s', value '%s'",
new->key, new->value);
new->next = front;
front = new;
i += 2;
}
return front;
}
/* parse the config file and strdup into key/value strings. Return list,
* or NULL if parsing the file failed.
* Warn and ignore mangled lines. */
static struct config_line *config_get_lines(FILE *f) {
struct config_line *new;
struct config_line *front = NULL;
char line[CONFIG_LINE_MAXLEN];
int result;
char *key, *value;
while( (result=parse_line_from_file(line,sizeof(line),f,&key,&value)) > 0) {
new = tor_malloc(sizeof(struct config_line));
new->key = tor_strdup(key);
new->value = tor_strdup(value);
new->next = front;
front = new;
}
if(result < 0)
return NULL;
return front;
}
static void config_free_lines(struct config_line *front) {
struct config_line *tmp;
while(front) {
tmp = front;
front = tmp->next;
free(tmp->key);
free(tmp->value);
free(tmp);
}
}
static int config_compare(struct config_line *c, char *key, int type, void *arg) {
int i;
if(strncasecmp(c->key,key,strlen(c->key)))
return 0;
/* it's a match. cast and assign. */
log_fn(LOG_DEBUG,"Recognized keyword '%s' as %s, using value '%s'.",c->key,key,c->value);
switch(type) {
case CONFIG_TYPE_INT:
*(int *)arg = atoi(c->value);
break;
case CONFIG_TYPE_BOOL:
i = atoi(c->value);
if (i != 0 && i != 1) {
log(LOG_WARN, "Boolean keyword '%s' expects 0 or 1", c->key);
return 0;
}
*(int *)arg = i;
break;
case CONFIG_TYPE_STRING:
tor_free(*(char **)arg);
*(char **)arg = tor_strdup(c->value);
break;
case CONFIG_TYPE_DOUBLE:
*(double *)arg = atof(c->value);
break;
}
return 1;
}
/* Iterate through list.
* For each item, convert as appropriate and assign to 'options'.
* If an item is unrecognized, return -1 immediately,
* else return 0 for success. */
static int config_assign(or_options_t *options, struct config_line *list) {
while(list) {
if(
/* order matters here! abbreviated arguments use the first match. */
/* string options */
config_compare(list, "Address", CONFIG_TYPE_STRING, &options->Address) ||
config_compare(list, "BandwidthRate", CONFIG_TYPE_INT, &options->BandwidthRate) ||
config_compare(list, "BandwidthBurst", CONFIG_TYPE_INT, &options->BandwidthBurst) ||
config_compare(list, "DebugLogFile", CONFIG_TYPE_STRING, &options->DebugLogFile) ||
config_compare(list, "DataDirectory", CONFIG_TYPE_STRING, &options->DataDirectory) ||
config_compare(list, "DirPort", CONFIG_TYPE_INT, &options->DirPort) ||
config_compare(list, "DirBindAddress", CONFIG_TYPE_STRING, &options->DirBindAddress) ||
config_compare(list, "DirFetchPostPeriod",CONFIG_TYPE_INT, &options->DirFetchPostPeriod) ||
config_compare(list, "ExitNodes", CONFIG_TYPE_STRING, &options->ExitNodes) ||
config_compare(list, "EntryNodes", CONFIG_TYPE_STRING, &options->EntryNodes) ||
config_compare(list, "ExitPolicy", CONFIG_TYPE_STRING, &options->ExitPolicy) ||
config_compare(list, "ExcludeNodes", CONFIG_TYPE_STRING, &options->ExcludeNodes) ||
config_compare(list, "Group", CONFIG_TYPE_STRING, &options->Group) ||
config_compare(list, "IgnoreVersion", CONFIG_TYPE_BOOL, &options->IgnoreVersion) ||
config_compare(list, "KeepalivePeriod",CONFIG_TYPE_INT, &options->KeepalivePeriod) ||
config_compare(list, "LogLevel", CONFIG_TYPE_STRING, &options->LogLevel) ||
config_compare(list, "LogFile", CONFIG_TYPE_STRING, &options->LogFile) ||
config_compare(list, "LinkPadding", CONFIG_TYPE_BOOL, &options->LinkPadding) ||
config_compare(list, "MaxConn", CONFIG_TYPE_INT, &options->MaxConn) ||
config_compare(list, "MaxOnionsPending",CONFIG_TYPE_INT, &options->MaxOnionsPending) ||
config_compare(list, "Nickname", CONFIG_TYPE_STRING, &options->Nickname) ||
config_compare(list, "NewCircuitPeriod",CONFIG_TYPE_INT, &options->NewCircuitPeriod) ||
config_compare(list, "NumCpus", CONFIG_TYPE_INT, &options->NumCpus) ||
config_compare(list, "ORPort", CONFIG_TYPE_INT, &options->ORPort) ||
config_compare(list, "ORBindAddress", CONFIG_TYPE_STRING, &options->ORBindAddress) ||
config_compare(list, "PidFile", CONFIG_TYPE_STRING, &options->PidFile) ||
config_compare(list, "PathlenCoinWeight",CONFIG_TYPE_DOUBLE, &options->PathlenCoinWeight) ||
config_compare(list, "RouterFile", CONFIG_TYPE_STRING, &options->RouterFile) ||
config_compare(list, "RunAsDaemon", CONFIG_TYPE_BOOL, &options->RunAsDaemon) ||
config_compare(list, "RecommendedVersions",CONFIG_TYPE_STRING, &options->RecommendedVersions) ||
config_compare(list, "SocksPort", CONFIG_TYPE_INT, &options->SocksPort) ||
config_compare(list, "SocksBindAddress",CONFIG_TYPE_STRING,&options->SocksBindAddress) ||
config_compare(list, "TrafficShaping", CONFIG_TYPE_BOOL, &options->TrafficShaping) ||
config_compare(list, "User", CONFIG_TYPE_STRING, &options->User) ||
config_compare(list, "RunTesting", CONFIG_TYPE_BOOL, &options->RunTesting)
) {
/* then we're ok. it matched something. */
} else {
log_fn(LOG_WARN,"Unknown keyword '%s'. Failing.",list->key);
return -1;
}
list = list->next;
}
return 0;
}
/* XXX are there any other specifiers we want to give so making
* a several-thousand-byte string is less painful? */
const char default_dirservers_string[] =
"router moria1 moria.mit.edu 9001 9021 9031 800000\n"
"platform Tor 0.0.2pre8 on Linux moria.mit.edu 2.4.18-27.7.xbigmem #1 SMP Fri Mar 14 05:08:50 EST 2003 i686\n"
"published 2003-09-30 23:14:08\n"
"onion-key\n"
"-----BEGIN RSA PUBLIC KEY-----\n"
"MIGJAoGBANoIvHieyHUTzIacbnWOnyTyzGrLOdXqbcjz2GGMxyHEd5K1bO1ZBNHP\n"
"9i5qLQpN5viFk2K2rEGuG8tFgDEzSWZEtBqv3NVfUdiumdERWMBwlaQ0MVK4C+jf\n"
"y5gZ8KI3o9ZictgPS1AQF+Kk932/vIHTuRIUKb4ILTnQilNvID0NAgMBAAE=\n"
"-----END RSA PUBLIC KEY-----\n"
"link-key\n"
"-----BEGIN RSA PUBLIC KEY-----\n"
"MIGJAoGBAPt97bGDd9siVjPd7Xuq2s+amMEOLIj9961aSdP6/OT+BS1Q4TX2dNOX\n"
"ZNAl63Z2fQISsR81+nfoqRLYCKxhajsD7LRvRTaRwUrWemVqFevmZ4nJrHw6FoU3\n"
"xNUIHRMA8X2DZ+l5qgnWZb7JU50ohhX5OpMSyysXnik51J8hD5mBAgMBAAE=\n"
"-----END RSA PUBLIC KEY-----\n"
"signing-key\n"
"-----BEGIN RSA PUBLIC KEY-----\n"
"MIGJAoGBAMHa0ZC/jo2Q2DrwKYF/6ZbmZ27PFYG91u4gUzzmZ/VXLpZ8wNzEV3oW\n"
"nt+I61048fBiC1frT1/DZ351n2bLSk9zJbB6jyGZJn0380FPRX3+cXyXS0Gq8Ril\n"
"xkhMQf5XuNFUb8UmYPSOH4WErjvYjKvU+gfjbK/82Jo9SuHpYz+BAgMBAAE=\n"
"-----END RSA PUBLIC KEY-----\n"
"router-signature\n"
"-----BEGIN SIGNATURE-----\n"
"Td3zb5d6uxO8oYGlmEHGzIdLuVm9s1Afqtm29JvRnnviQ36j6FZPlzPUaMVOUayn\n"
"Wtz/CbaMj7mHSufpQ68wCLb1lQrtQkn7MkAWcQPIvZjpYh3UrcWrpfm7f/D+nKeN\n"
"Z7UovF36xhCacjATNHhQNHHZHH6yONwN+Rf/N4kyPHw=\n"
"-----END SIGNATURE-----\n"
"\n"
"router moria2 moria.mit.edu 9002 9022 9032 800000\n"
"platform Tor 0.0.2pre8 on Linux moria.mit.edu 2.4.18-27.7.xbigmem #1 SMP Fri Mar 14 05:08:50 EST 2003 i686\n"
"published 2003-09-30 23:14:05\n"
"onion-key\n"
"-----BEGIN RSA PUBLIC KEY-----\n"
"MIGJAoGBAM4Cc/npgYC54XrYLC+grVxJp7PDmNO2DRRJOxKttBBtvLpnR1UaueTi\n"
"kyknT5kmlx+ihgZF/jmye//2dDUp2+kK/kSkpRV4xnDLXZmed+sNSQxqmm9TtZQ9\n"
"/hjpxhp5J9HmUTYhntBs+4E4CUKokmrI6oRLoln4SA39AX9QLPcnAgMBAAE=\n"
"-----END RSA PUBLIC KEY-----\n"
"link-key\n"
"-----BEGIN RSA PUBLIC KEY-----\n"
"MIGJAoGBAN7JVeCIJ7+0ZJew5ScOU58rTUqjGt1Z1Rkursc7WabEb8jno45VZwIs\n"
"dkjnl31i36KHyyS7kQdHgkvG5EiyZiRipFAcoTaYv3Gvf1No9cXL6IhT3y/37dJ/\n"
"kFPEMb/G2wdkJCC+D8fMwHBwMuqAg0JGuhoBOz0ArCgK3fq0BLilAgMBAAE=\n"
"-----END RSA PUBLIC KEY-----\n"
"signing-key\n"
"-----BEGIN RSA PUBLIC KEY-----\n"
"MIGJAoGBAOcrht/y5rkaahfX7sMe2qnpqoPibsjTSJaDvsUtaNP/Bq0MgNDGOR48\n"
"rtwfqTRff275Edkp/UYw3G3vSgKCJr76/bqOHCmkiZrnPV1zxNfrK18gNw2Cxre0\n"
"nTA+fD8JQqpPtb8b0SnG9kwy75eS//sRu7TErie2PzGMxrf9LH0LAgMBAAE=\n"
"-----END RSA PUBLIC KEY-----\n"
"router-signature\n"
"-----BEGIN SIGNATURE-----\n"
"X10a9Oc0LKNYKLDVzjRTIVT3NnE0y+xncllDDHSJSXR97fz3MBHGDqhy0Vgha/fe\n"
"H/Y2E59oG01lYQ73j3JN+ibsCMtkzJDx2agCpV0LmakAD9ekHrYDWm/S41Ru6kf+\n"
"PsyHpXlh7cZuGEX4U1pblSDFrQZ9L1vTkpfW+COzEvI=\n"
"-----END SIGNATURE-----\n"
"\n"
"router moria3 moria.mit.edu 9003 9023 9033 800000\n"
"platform Tor 0.0.2pre8 on Linux moria.mit.edu 2.4.18-27.7.xbigmem #1 SMP Fri Mar 14 05:08:50 EST 2003 i686\n"
"published 2003-09-30 23:14:07\n"
"onion-key\n"
"-----BEGIN RSA PUBLIC KEY-----\n"
"MIGJAoGBANS6J/Er9fYo03fjUUVesc7We9Z6xIevyDJH39pYS4NUlcr5ExYgSVFJ\n"
"95aLCNx1x8Rf5YtiBKYuT3plBO/+rfuX+0iAGNkz/y3SlJVGz6aeptU3wN8CkvCL\n"
"zATEcnl4QSPhHX0wFB9A3t7wZ+Bat1PTI029lax/BkoS9JG5onHPAgMBAAE=\n"
"-----END RSA PUBLIC KEY-----\n"
"link-key\n"
"-----BEGIN RSA PUBLIC KEY-----\n"
"MIGJAoGBAKUMY8p+7LBu7dEJnOR9HqbfcD6c4/f9GqJt3o29uu4XJPD8z2XGVBik\n"
"pZBLijhYS6U7GFg0NLR4zBlsLyB8TxHeaz5KJidJjy+BfC01jz1xwVTYDlmGVpc1\n"
"0mw0Ag0ND6aOQKKhelxhTI3Bf0R9olEXuSUKEWx3EMIz2qhLd9oDAgMBAAE=\n"
"-----END RSA PUBLIC KEY-----\n"
"signing-key\n"
"-----BEGIN RSA PUBLIC KEY-----\n"
"MIGJAoGBAMqgq83cwzSid2LSvzsn2rvkD8U0tWvqF6PuQAsKP3QHFqtBO+66pnIm\n"
"CbiY2e6o01tmR47t557LuUCodEc8Blggxjg3ZEzvP42hsGB9LwQbcrU7grPRk0G0\n"
"IltsOF9TZ+66gCeU7LxExLdAMqT2Tx6VT4IREPJMeNxSiceEjbABAgMBAAE=\n"
"-----END RSA PUBLIC KEY-----\n"
"router-signature\n"
"-----BEGIN SIGNATURE-----\n"
"GWpK2Ux/UwDaNUHwq+Xn7denyYFGS8SIWwqiMgHyUzc5wj1t2gWubJ/rMyGL59U3\n"
"o6L/9qV34aa5UyNNBHXwYkxy7ixgPURaRYpAbkQKPU3ew8BgNXG/MNLYllIUkrbb\n"
"h6G5u8RGbto+Nby/OjIh9TqdgK/B1sOdwAHI/IXiDoY=\n"
"-----END SIGNATURE-----\n"
;
int config_assign_default_dirservers(void) {
if(router_set_routerlist_from_string(default_dirservers_string) < 0) {
log_fn(LOG_WARN,"Bug: the default dirservers internal string is corrupt.");
return -1;
}
return 0;
}
/* Call this function when they're using the default torrc but
* we can't find it. For now, just hard-code what comes in the
* default torrc.
*/
static int config_assign_default(or_options_t *options) {
/* set them up as a client only */
options->SocksPort = 9050;
/* plus give them a dirservers file */
if(config_assign_default_dirservers() < 0)
return -1;
return 0;
}
/* prints the usage of tor. */
static void print_usage(void) {
printf("tor -f <torrc> [args]\n"
"See man page for more options. This -h is probably obsolete.\n\n"
"-b <bandwidth>\t\tbytes/second rate limiting\n"
"-d <file>\t\tDebug file\n"
// "-m <max>\t\tMax number of connections\n"
"-l <level>\t\tLog level\n"
"-r <file>\t\tList of known routers\n");
printf("\nClient options:\n"
"-e \"nick1 nick2 ...\"\t\tExit nodes\n"
"-s <IP>\t\t\tPort to bind to for Socks\n"
);
printf("\nServer options:\n"
"-n <nick>\t\tNickname of router\n"
"-o <port>\t\tOR port to bind to\n"
"-p <file>\t\tPID file\n"
);
}
static int resolve_my_address(or_options_t *options) {
struct in_addr in;
struct hostent *rent;
char localhostname[256];
int explicit_ip=1;
if(!options->Address) { /* then we need to guess our address */
explicit_ip = 0; /* it's implicit */
if(gethostname(localhostname,sizeof(localhostname)) < 0) {
log_fn(LOG_WARN,"Error obtaining local hostname");
return -1;
}
#if 0 /* don't worry about complaining, as long as it resolves */
if(!strchr(localhostname,'.')) {
log_fn(LOG_WARN,"fqdn '%s' has only one element. Misconfigured machine?",address);
log_fn(LOG_WARN,"Try setting the Address line in your config file.");
return -1;
}
#endif
options->Address = tor_strdup(localhostname);
log_fn(LOG_DEBUG,"Guessed local host name as '%s'",options->Address);
}
/* now we know options->Address is set. resolve it and keep only the IP */
if(tor_inet_aton(options->Address, &in) == 0) {
/* then we have to resolve it */
explicit_ip = 0;
rent = (struct hostent *)gethostbyname(options->Address);
if (!rent) {
log_fn(LOG_WARN,"Could not resolve Address %s. Failing.", options->Address);
return -1;
}
assert(rent->h_length == 4);
memcpy(&in.s_addr, rent->h_addr,rent->h_length);
}
if(!explicit_ip && is_internal_IP(htonl(in.s_addr))) {
log_fn(LOG_WARN,"Address '%s' resolves to private IP '%s'. "
"Please set the Address config option to be the IP you want to use.",
options->Address, inet_ntoa(in));
return -1;
}
tor_free(options->Address);
options->Address = tor_strdup(inet_ntoa(in));
log_fn(LOG_DEBUG,"Resolved Address to %s.", options->Address);
return 0;
}
static void free_options(or_options_t *options) {
tor_free(options->LogLevel);
tor_free(options->LogFile);
tor_free(options->DebugLogFile);
tor_free(options->DataDirectory);
tor_free(options->RouterFile);
tor_free(options->Nickname);
tor_free(options->Address);
tor_free(options->PidFile);
tor_free(options->ExitNodes);
tor_free(options->EntryNodes);
tor_free(options->ExcludeNodes);
tor_free(options->ExitPolicy);
tor_free(options->SocksBindAddress);
tor_free(options->ORBindAddress);
tor_free(options->DirBindAddress);
tor_free(options->RecommendedVersions);
tor_free(options->User);
tor_free(options->Group);
}
static void init_options(or_options_t *options) {
/* give reasonable values for each option. Defaults to zero. */
memset(options,0,sizeof(or_options_t));
options->LogLevel = tor_strdup("warn");
options->ExitNodes = tor_strdup("");
options->EntryNodes = tor_strdup("");
options->ExcludeNodes = tor_strdup("");
options->ExitPolicy = tor_strdup("");
options->SocksBindAddress = tor_strdup("127.0.0.1");
options->ORBindAddress = tor_strdup("0.0.0.0");
options->DirBindAddress = tor_strdup("0.0.0.0");
options->RecommendedVersions = NULL;
options->loglevel = LOG_INFO;
options->PidFile = NULL; // tor_strdup("tor.pid");
options->DataDirectory = NULL;
options->PathlenCoinWeight = 0.3;
options->MaxConn = 900;
options->DirFetchPostPeriod = 600;
options->KeepalivePeriod = 300;
options->MaxOnionsPending = 100;
options->NewCircuitPeriod = 30; /* twice a minute */
options->BandwidthRate = 800000; /* at most 800kB/s total sustained incoming */
options->BandwidthBurst = 10000000; /* max burst on the token bucket */
options->NumCpus = 1;
}
/* return 0 if success, <0 if failure. */
int getconfig(int argc, char **argv, or_options_t *options) {
struct config_line *cl;
FILE *cf;
char *fname;
int i;
int result = 0;
static int first_load = 1;
static char **backup_argv;
static int backup_argc;
char *previous_pidfile = NULL;
int previous_runasdaemon = 0;
int previous_orport = -1;
int using_default_torrc;
if(first_load) { /* first time we're called. save commandline args */
backup_argv = argv;
backup_argc = argc;
first_load = 0;
} else { /* we're reloading. need to clean up old ones first. */
argv = backup_argv;
argc = backup_argc;
/* record some previous values, so we can fail if they change */
if(options->PidFile)
previous_pidfile = tor_strdup(options->PidFile);
previous_runasdaemon = options->RunAsDaemon;
previous_orport = options->ORPort;
free_options(options);
}
init_options(options);
if(argc > 1 && (!strcmp(argv[1], "-h") || !strcmp(argv[1],"--help"))) {
print_usage();
exit(0);
}
if(argc > 1 && (!strcmp(argv[1],"--version"))) {
printf("Tor version %s.\n",VERSION);
exit(0);
}
/* learn config file name, get config lines, assign them */
i = 1;
while(i < argc-1 && strcmp(argv[i],"-f")) {
i++;
}
if(i < argc-1) { /* we found one */
fname = argv[i+1];
using_default_torrc = 0;
} else { /* didn't find one, try CONFDIR */
fname = CONFDIR "/torrc";
using_default_torrc = 1;
}
log(LOG_DEBUG,"Opening config file '%s'",fname);
cf = config_open(fname);
if(!cf) {
if(using_default_torrc == 1) {
log(LOG_WARN, "Configuration file '%s' not found. Using defaults.",fname);
/* XXX change this WARN to INFO once we start using this feature */
if(config_assign_default(options) < 0)
return -1;
} else {
log(LOG_WARN, "Unable to open configuration file '%s'.",fname);
return -1;
}
} else { /* it opened successfully. use it. */
cl = config_get_lines(cf);
if(!cl) return -1;
if(config_assign(options,cl) < 0)
return -1;
config_free_lines(cl);
config_close(cf);
}
/* go through command-line variables too */
cl = config_get_commandlines(argc,argv);
if(config_assign(options,cl) < 0)
return -1;
config_free_lines(cl);
/* Validate options */
/* first check if any of the previous options have changed but aren't allowed to */
if(previous_pidfile && strcmp(previous_pidfile,options->PidFile)) {
log_fn(LOG_WARN,"During reload, PidFile changed from %s to %s. Failing.",
previous_pidfile, options->PidFile);
return -1;
}
tor_free(previous_pidfile);
if(previous_runasdaemon && !options->RunAsDaemon) {
log_fn(LOG_WARN,"During reload, change from RunAsDaemon=1 to =0 not allowed. Failing.");
return -1;
}
if(previous_orport == 0 && options->ORPort > 0) {
log_fn(LOG_WARN,"During reload, change from ORPort=0 to >0 not allowed. Failing.");
return -1;
}
if(options->LogLevel) {
if(!strcmp(options->LogLevel,"err"))
options->loglevel = LOG_ERR;
else if(!strcmp(options->LogLevel,"warn"))
options->loglevel = LOG_WARN;
else if(!strcmp(options->LogLevel,"info"))
options->loglevel = LOG_INFO;
else if(!strcmp(options->LogLevel,"debug"))
options->loglevel = LOG_DEBUG;
else {
log(LOG_WARN,"LogLevel must be one of err|warn|info|debug.");
result = -1;
}
}
if(options->ORPort < 0) {
log(LOG_WARN,"ORPort option can't be negative.");
result = -1;
}
if(options->ORPort && options->DataDirectory == NULL) {
log(LOG_WARN,"DataDirectory option required if ORPort is set, but not found.");
result = -1;
}
if (options->ORPort) {
if (options->Nickname == NULL) {
log_fn(LOG_WARN,"Nickname required if ORPort is set, but not found.");
result = -1;
} else if (strspn(options->Nickname, LEGAL_NICKNAME_CHARACTERS) !=
strlen(options->Nickname)) {
log_fn(LOG_WARN, "Nickname '%s' contains illegal characters.", options->Nickname);
result = -1;
}
}
if(options->ORPort) { /* get an IP for ourselves */
if(resolve_my_address(options) < 0)
result = -1;
}
if(options->SocksPort < 0) {
log(LOG_WARN,"SocksPort option can't be negative.");
result = -1;
}
if(options->SocksPort == 0 && options->ORPort == 0) {
log(LOG_WARN,"SocksPort and ORPort are both undefined? Quitting.");
result = -1;
}
if(options->DirPort < 0) {
log(LOG_WARN,"DirPort option can't be negative.");
result = -1;
}
if(options->DirPort && options->RecommendedVersions == NULL) {
log(LOG_WARN,"Directory servers must configure RecommendedVersions.");
result = -1;
}
if(options->SocksPort > 1 &&
(options->PathlenCoinWeight < 0.0 || options->PathlenCoinWeight >= 1.0)) {
log(LOG_WARN,"PathlenCoinWeight option must be >=0.0 and <1.0.");
result = -1;
}
if(options->MaxConn < 1) {
log(LOG_WARN,"MaxConn option must be a non-zero positive integer.");
result = -1;
}
if(options->MaxConn >= MAXCONNECTIONS) {
log(LOG_WARN,"MaxConn option must be less than %d.", MAXCONNECTIONS);
result = -1;
}
if(options->DirFetchPostPeriod < 1) {
log(LOG_WARN,"DirFetchPostPeriod option must be positive.");
result = -1;
}
if(options->KeepalivePeriod < 1) {
log(LOG_WARN,"KeepalivePeriod option must be positive.");
result = -1;
}
return result;
}
/*
Local Variables:
mode:c
indent-tabs-mode:nil
c-basic-offset:2
End:
*/
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File diff suppressed because it is too large Load Diff
+291
View File
@@ -0,0 +1,291 @@
/* Copyright 2001,2002,2003 Roger Dingledine, Matej Pfajfar. */
/* See LICENSE for licensing information */
/* $Id$ */
#include "or.h"
extern or_options_t options; /* command-line and config-file options */
static int connection_tls_finish_handshake(connection_t *conn);
static int connection_or_process_cells_from_inbuf(connection_t *conn);
/**************************************************************/
static void cell_pack(char *dest, const cell_t *src) {
*(uint16_t*)dest = htons(src->circ_id);
*(uint8_t*)(dest+2) = src->command;
memcpy(dest+3, src->payload, CELL_PAYLOAD_SIZE);
}
static void cell_unpack(cell_t *dest, const char *src) {
dest->circ_id = ntohs(*(uint16_t*)(src));
dest->command = *(uint8_t*)(src+2);
memcpy(dest->payload, src+3, CELL_PAYLOAD_SIZE);
}
/**************************************************************/
int connection_or_process_inbuf(connection_t *conn) {
assert(conn && conn->type == CONN_TYPE_OR);
if(conn->inbuf_reached_eof) {
log_fn(LOG_INFO,"OR connection reached EOF. Closing.");
connection_mark_for_close(conn,0);
return 0;
}
if(conn->state != OR_CONN_STATE_OPEN)
return 0; /* don't do anything */
return connection_or_process_cells_from_inbuf(conn);
}
int connection_or_finished_flushing(connection_t *conn) {
int e, len=sizeof(e);
assert(conn && conn->type == CONN_TYPE_OR);
assert_connection_ok(conn,0);
switch(conn->state) {
case OR_CONN_STATE_CONNECTING:
if (getsockopt(conn->s, SOL_SOCKET, SO_ERROR, (void*)&e, &len) < 0) { /* not yet */
if(!ERRNO_CONN_EINPROGRESS(errno)){
log_fn(LOG_DEBUG,"in-progress connect failed. Removing.");
connection_mark_for_close(conn,0);
return -1;
} else {
return 0; /* no change, see if next time is better */
}
}
/* the connect has finished. */
log_fn(LOG_INFO,"OR connect() to router %s:%u finished.",
conn->address,conn->port);
if(connection_tls_start_handshake(conn, 0) < 0) {
/* TLS handhaking error of some kind. */
connection_mark_for_close(conn,0);
return -1;
}
return 0;
case OR_CONN_STATE_OPEN:
connection_stop_writing(conn);
return 0;
default:
log_fn(LOG_WARN,"BUG: called in unexpected state %d",conn->state);
return 0;
}
}
/*********************/
void connection_or_init_conn_from_router(connection_t *conn, routerinfo_t *router) {
conn->addr = router->addr;
conn->port = router->or_port;
conn->receiver_bucket = conn->bandwidth = router->bandwidthburst;
conn->onion_pkey = crypto_pk_dup_key(router->onion_pkey);
conn->link_pkey = crypto_pk_dup_key(router->link_pkey);
conn->identity_pkey = crypto_pk_dup_key(router->identity_pkey);
conn->nickname = tor_strdup(router->nickname);
tor_free(conn->address);
conn->address = tor_strdup(router->address);
}
connection_t *connection_or_connect(routerinfo_t *router) {
connection_t *conn;
assert(router);
if(options.Nickname && !strcmp(router->nickname,options.Nickname)) {
log_fn(LOG_WARN,"You asked me to connect to myself! Failing.");
return NULL;
}
/* this function should never be called if we're already connected to router, but */
/* check first to be sure */
conn = connection_exact_get_by_addr_port(router->addr,router->or_port);
if(conn)
return conn;
conn = connection_new(CONN_TYPE_OR);
/* set up conn so it's got all the data we need to remember */
connection_or_init_conn_from_router(conn, router);
conn->state = OR_CONN_STATE_CONNECTING;
if(connection_add(conn) < 0) { /* no space, forget it */
connection_free(conn);
return NULL;
}
switch(connection_connect(conn, router->address, router->addr, router->or_port)) {
case -1:
connection_mark_for_close(conn, 0);
return NULL;
case 0:
connection_set_poll_socket(conn);
connection_watch_events(conn, POLLIN | POLLOUT | POLLERR);
/* writable indicates finish, readable indicates broken link,
error indicates broken link on windows */
return conn;
/* case 1: fall through */
}
connection_set_poll_socket(conn);
if(connection_tls_start_handshake(conn, 0) >= 0)
return conn;
/* failure */
connection_mark_for_close(conn, 0);
return NULL;
}
/* ********************************** */
int connection_tls_start_handshake(connection_t *conn, int receiving) {
conn->state = OR_CONN_STATE_HANDSHAKING;
conn->tls = tor_tls_new(conn->s, receiving);
if(!conn->tls) {
log_fn(LOG_WARN,"tor_tls_new failed. Closing.");
return -1;
}
connection_start_reading(conn);
log_fn(LOG_DEBUG,"starting the handshake");
if(connection_tls_continue_handshake(conn) < 0) {
return -1;
}
return 0;
}
int connection_tls_continue_handshake(connection_t *conn) {
switch(tor_tls_handshake(conn->tls)) {
case TOR_TLS_ERROR:
case TOR_TLS_CLOSE:
log_fn(LOG_INFO,"tls error. breaking.");
return -1;
case TOR_TLS_DONE:
return connection_tls_finish_handshake(conn);
case TOR_TLS_WANTWRITE:
connection_start_writing(conn);
log_fn(LOG_DEBUG,"wanted write");
return 0;
case TOR_TLS_WANTREAD: /* handshaking conns are *always* reading */
log_fn(LOG_DEBUG,"wanted read");
return 0;
}
return 0;
}
static int connection_tls_finish_handshake(connection_t *conn) {
crypto_pk_env_t *pk;
routerinfo_t *router;
char nickname[MAX_NICKNAME_LEN+1];
conn->state = OR_CONN_STATE_OPEN;
directory_set_dirty();
connection_watch_events(conn, POLLIN);
log_fn(LOG_DEBUG,"tls handshake done. verifying.");
if (! tor_tls_peer_has_cert(conn->tls)) { /* It's an OP. */
if (options.ORPort) { /* I'm an OR; good. */
conn->receiver_bucket = conn->bandwidth = DEFAULT_BANDWIDTH_OP;
return 0;
} else { /* Neither side sent a certificate: ouch. */
log_fn(LOG_WARN,"Neither peer sent a cert! Closing.");
return -1;
}
}
/* Okay; the other side is an OR. */
if (tor_tls_get_peer_cert_nickname(conn->tls, nickname, MAX_NICKNAME_LEN)) {
log_fn(LOG_WARN,"Other side (%s:%d) has a cert without a valid nickname. Closing.",
conn->address, conn->port);
return -1;
}
log_fn(LOG_DEBUG, "Other side claims to be '%s'", nickname);
pk = tor_tls_verify(conn->tls);
if(!pk) {
log_fn(LOG_WARN,"Other side '%s' (%s:%d) has a cert but it's invalid. Closing.",
nickname, conn->address, conn->port);
return -1;
}
router = router_get_by_link_pk(pk);
if (!router) {
log_fn(LOG_INFO,"Unrecognized public key from peer '%s' (%s:%d). Closing.",
nickname, conn->address, conn->port);
crypto_free_pk_env(pk);
return -1;
}
if(conn->link_pkey) { /* I initiated this connection. */
if(crypto_pk_cmp_keys(conn->link_pkey, pk)) {
log_fn(LOG_WARN,"We connected to '%s' (%s:%d) but he gave us a different key. Closing.",
nickname, conn->address, conn->port);
crypto_free_pk_env(pk);
return -1;
}
log_fn(LOG_DEBUG,"The router's pk matches the one we meant to connect to. Good.");
} else {
if(connection_exact_get_by_addr_port(router->addr,router->or_port)) {
log_fn(LOG_INFO,"Router %s is already connected. Dropping.", router->nickname);
crypto_free_pk_env(pk);
return -1;
}
connection_or_init_conn_from_router(conn, router);
}
crypto_free_pk_env(pk);
if (strcmp(conn->nickname, nickname)) {
log_fn(LOG_WARN,"Other side claims to be '%s', but we wanted '%s'",
nickname, conn->nickname);
return -1;
}
if (!options.ORPort) { /* If I'm an OP... */
conn->receiver_bucket = conn->bandwidth = DEFAULT_BANDWIDTH_OP;
}
circuit_n_conn_open(conn); /* send the pending creates, if any. */
/* Note the success */
rep_hist_note_connect_succeeded(nickname, time(NULL));
return 0;
}
/* ********************************** */
void connection_or_write_cell_to_buf(const cell_t *cell, connection_t *conn) {
char networkcell[CELL_NETWORK_SIZE];
char *n = networkcell;
assert(cell && conn);
assert(connection_speaks_cells(conn));
cell_pack(n, cell);
connection_write_to_buf(n, CELL_NETWORK_SIZE, conn);
}
/* if there's a whole cell there, pull it off and process it. */
static int connection_or_process_cells_from_inbuf(connection_t *conn) {
char buf[CELL_NETWORK_SIZE];
cell_t cell;
loop:
log_fn(LOG_DEBUG,"%d: starting, inbuf_datalen %d (%d pending in tls object).",
conn->s,(int)buf_datalen(conn->inbuf),tor_tls_get_pending_bytes(conn->tls));
if(buf_datalen(conn->inbuf) < CELL_NETWORK_SIZE) /* entire response available? */
return 0; /* not yet */
connection_fetch_from_buf(buf, CELL_NETWORK_SIZE, conn);
/* retrieve cell info from buf (create the host-order struct from the
* network-order string) */
cell_unpack(&cell, buf);
command_process_cell(&cell, conn);
goto loop; /* process the remainder of the buffer */
}
/*
Local Variables:
mode:c
indent-tabs-mode:nil
c-basic-offset:2
End:
*/
+294
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@@ -0,0 +1,294 @@
/* Copyright 2003 Roger Dingledine. */
/* See LICENSE for licensing information */
/* $Id$ */
#include "or.h"
extern or_options_t options; /* command-line and config-file options */
#define MAX_CPUWORKERS 16
#define MIN_CPUWORKERS 1
#define TAG_LEN 8
#define LEN_ONION_QUESTION (1+TAG_LEN+ONIONSKIN_CHALLENGE_LEN)
#define LEN_ONION_RESPONSE (1+TAG_LEN+ONIONSKIN_REPLY_LEN+40+32)
int num_cpuworkers=0;
int num_cpuworkers_busy=0;
int cpuworker_main(void *data);
static int spawn_cpuworker(void);
static void spawn_enough_cpuworkers(void);
static void process_pending_task(connection_t *cpuworker);
void cpu_init(void) {
spawn_enough_cpuworkers();
}
int connection_cpu_finished_flushing(connection_t *conn) {
assert(conn && conn->type == CONN_TYPE_CPUWORKER);
connection_stop_writing(conn);
return 0;
}
static void tag_pack(char *tag, uint32_t addr, uint16_t port, uint16_t circ_id) {
*(uint32_t *)tag = addr;
*(uint16_t *)(tag+4) = port;
*(uint16_t *)(tag+6) = circ_id;
}
static void tag_unpack(char *tag, uint32_t *addr, uint16_t *port, uint16_t *circ_id) {
struct in_addr in;
*addr = *(uint32_t *)tag;
*port = *(uint16_t *)(tag+4);
*circ_id = *(uint16_t *)(tag+6);
in.s_addr = htonl(*addr);
log_fn(LOG_DEBUG,"onion was from %s:%d, circ_id %d.", inet_ntoa(in), *port, *circ_id);
}
int connection_cpu_process_inbuf(connection_t *conn) {
char success;
unsigned char buf[LEN_ONION_RESPONSE];
uint32_t addr;
uint16_t port;
uint16_t circ_id;
connection_t *p_conn;
circuit_t *circ;
assert(conn && conn->type == CONN_TYPE_CPUWORKER);
if(conn->inbuf_reached_eof) {
log_fn(LOG_WARN,"Read eof. Worker died unexpectedly.");
if(conn->state != CPUWORKER_STATE_IDLE) {
/* the circ associated with this cpuworker will have to wait until
* it gets culled in run_connection_housekeeping(), since we have
* no way to find out which circ it was. */
log_fn(LOG_WARN,"...and it left a circuit queued; abandoning circ.");
num_cpuworkers_busy--;
}
num_cpuworkers--;
spawn_enough_cpuworkers(); /* try to regrow. hope we don't end up spinning. */
connection_mark_for_close(conn,0);
return 0;
}
if(conn->state == CPUWORKER_STATE_BUSY_ONION) {
if(buf_datalen(conn->inbuf) < LEN_ONION_RESPONSE) /* entire answer available? */
return 0; /* not yet */
assert(buf_datalen(conn->inbuf) == LEN_ONION_RESPONSE);
connection_fetch_from_buf(&success,1,conn);
connection_fetch_from_buf(buf,LEN_ONION_RESPONSE-1,conn);
/* parse out the circ it was talking about */
tag_unpack(buf, &addr, &port, &circ_id);
circ = NULL;
p_conn = connection_exact_get_by_addr_port(addr,port);
if(p_conn)
circ = circuit_get_by_circ_id_conn(circ_id, p_conn);
if(!circ) {
log_fn(LOG_INFO,"processed onion for a circ that's gone. Dropping.");
goto done_processing;
}
assert(circ->p_conn);
if(success == 0) {
log_fn(LOG_WARN,"decoding onionskin failed. Closing.");
circuit_mark_for_close(circ);
goto done_processing;
}
if(onionskin_answer(circ, buf+TAG_LEN, buf+TAG_LEN+ONIONSKIN_REPLY_LEN) < 0) {
log_fn(LOG_WARN,"onionskin_answer failed. Closing.");
circuit_mark_for_close(circ);
goto done_processing;
}
log_fn(LOG_DEBUG,"onionskin_answer succeeded. Yay.");
} else {
assert(0); /* don't ask me to do handshakes yet */
}
done_processing:
conn->state = CPUWORKER_STATE_IDLE;
num_cpuworkers_busy--;
process_pending_task(conn);
return 0;
}
int cpuworker_main(void *data) {
unsigned char question[ONIONSKIN_CHALLENGE_LEN];
unsigned char question_type;
int *fdarray = data;
int fd;
/* variables for onion processing */
unsigned char keys[40+32];
unsigned char reply_to_proxy[ONIONSKIN_REPLY_LEN];
unsigned char buf[LEN_ONION_RESPONSE];
char tag[TAG_LEN];
close(fdarray[0]); /* this is the side of the socketpair the parent uses */
fd = fdarray[1]; /* this side is ours */
#ifndef MS_WINDOWS
connection_free_all(); /* so the child doesn't hold the parent's fd's open */
#endif
for(;;) {
if(recv(fd, &question_type, 1, 0) != 1) {
// log_fn(LOG_ERR,"read type failed. Exiting.");
log_fn(LOG_INFO,"cpuworker exiting because tor process died.");
spawn_exit();
}
assert(question_type == CPUWORKER_TASK_ONION);
if(read_all(fd, tag, TAG_LEN, 1) != TAG_LEN) {
log_fn(LOG_ERR,"read tag failed. Exiting.");
spawn_exit();
}
if(read_all(fd, question, ONIONSKIN_CHALLENGE_LEN, 1) != ONIONSKIN_CHALLENGE_LEN) {
log_fn(LOG_ERR,"read question failed. Exiting.");
spawn_exit();
}
if(question_type == CPUWORKER_TASK_ONION) {
if(onion_skin_server_handshake(question, get_onion_key(),
reply_to_proxy, keys, 40+32) < 0) {
/* failure */
log_fn(LOG_WARN,"onion_skin_server_handshake failed.");
memset(buf,0,LEN_ONION_RESPONSE); /* send all zeros for failure */
} else {
/* success */
log_fn(LOG_INFO,"onion_skin_server_handshake succeeded.");
buf[0] = 1; /* 1 means success */
memcpy(buf+1,tag,TAG_LEN);
memcpy(buf+1+TAG_LEN,reply_to_proxy,ONIONSKIN_REPLY_LEN);
memcpy(buf+1+TAG_LEN+ONIONSKIN_REPLY_LEN,keys,40+32);
}
if(write_all(fd, buf, LEN_ONION_RESPONSE, 1) != LEN_ONION_RESPONSE) {
log_fn(LOG_ERR,"writing response buf failed. Exiting.");
spawn_exit();
}
log_fn(LOG_DEBUG,"finished writing response.");
}
}
return 0; /* windows wants this function to return an int */
}
static int spawn_cpuworker(void) {
int fd[2];
connection_t *conn;
if(tor_socketpair(AF_UNIX, SOCK_STREAM, 0, fd) < 0) {
log(LOG_ERR, "Couldn't construct socketpair: %s", strerror(errno));
exit(1);
}
spawn_func(cpuworker_main, (void*)fd);
log_fn(LOG_DEBUG,"just spawned a worker.");
close(fd[1]); /* we don't need the worker's side of the pipe */
conn = connection_new(CONN_TYPE_CPUWORKER);
set_socket_nonblocking(fd[0]);
/* set up conn so it's got all the data we need to remember */
conn->s = fd[0];
conn->address = tor_strdup("localhost");
if(connection_add(conn) < 0) { /* no space, forget it */
log_fn(LOG_WARN,"connection_add failed. Giving up.");
connection_free(conn); /* this closes fd[0] */
return -1;
}
conn->state = CPUWORKER_STATE_IDLE;
connection_start_reading(conn);
return 0; /* success */
}
static void spawn_enough_cpuworkers(void) {
int num_cpuworkers_needed = options.NumCpus;
if(num_cpuworkers_needed < MIN_CPUWORKERS)
num_cpuworkers_needed = MIN_CPUWORKERS;
if(num_cpuworkers_needed > MAX_CPUWORKERS)
num_cpuworkers_needed = MAX_CPUWORKERS;
while(num_cpuworkers < num_cpuworkers_needed) {
if(spawn_cpuworker() < 0) {
log_fn(LOG_WARN,"spawn failed!");
return;
}
num_cpuworkers++;
}
}
static void process_pending_task(connection_t *cpuworker) {
circuit_t *circ;
assert(cpuworker);
/* for now only process onion tasks */
circ = onion_next_task();
if(!circ)
return;
if(assign_to_cpuworker(cpuworker, CPUWORKER_TASK_ONION, circ) < 0)
log_fn(LOG_WARN,"assign_to_cpuworker failed. Ignoring.");
}
/* if cpuworker is defined, assert that he's idle, and use him. else,
* look for an idle cpuworker and use him. if none idle, queue task onto
* the pending onion list and return.
* If question_type is CPUWORKER_TASK_ONION then task is a circ.
* No other question_types are allowed.
*/
int assign_to_cpuworker(connection_t *cpuworker, unsigned char question_type,
void *task) {
circuit_t *circ;
char tag[TAG_LEN];
assert(question_type == CPUWORKER_TASK_ONION);
if(question_type == CPUWORKER_TASK_ONION) {
circ = task;
if(num_cpuworkers_busy == num_cpuworkers) {
log_fn(LOG_DEBUG,"No idle cpuworkers. Queuing.");
if(onion_pending_add(circ) < 0)
return -1;
return 0;
}
if(!cpuworker)
cpuworker = connection_get_by_type_state(CONN_TYPE_CPUWORKER, CPUWORKER_STATE_IDLE);
assert(cpuworker);
if(!circ->p_conn) {
log_fn(LOG_INFO,"circ->p_conn gone. Failing circ.");
return -1;
}
tag_pack(tag, circ->p_conn->addr, circ->p_conn->port, circ->p_circ_id);
cpuworker->state = CPUWORKER_STATE_BUSY_ONION;
num_cpuworkers_busy++;
connection_write_to_buf(&question_type, 1, cpuworker);
connection_write_to_buf(tag, sizeof(tag), cpuworker);
connection_write_to_buf(circ->onionskin, ONIONSKIN_CHALLENGE_LEN, cpuworker);
}
return 0;
}
/*
Local Variables:
mode:c
indent-tabs-mode:nil
c-basic-offset:2
End:
*/
+354
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@@ -0,0 +1,354 @@
/* Copyright 2001,2002,2003 Roger Dingledine. */
/* See LICENSE for licensing information */
/* $Id$ */
#include "or.h"
static int directory_send_command(connection_t *conn, int command);
static int directory_handle_command(connection_t *conn);
/********* START VARIABLES **********/
extern or_options_t options; /* command-line and config-file options */
extern int has_fetched_directory;
#define MAX_HEADERS_SIZE 2048
#define MAX_BODY_SIZE 500000
/********* END VARIABLES ************/
void directory_initiate_command(routerinfo_t *router, int command) {
connection_t *conn;
if (command == DIR_CONN_STATE_CONNECTING_FETCH)
log_fn(LOG_DEBUG,"initiating directory fetch");
else
log_fn(LOG_DEBUG,"initiating directory upload");
if (!router) { /* i guess they didn't have one in mind for me to use */
log_fn(LOG_WARN,"No running dirservers known. Not trying.");
return;
}
conn = connection_new(CONN_TYPE_DIR);
/* set up conn so it's got all the data we need to remember */
conn->addr = router->addr;
conn->port = router->dir_port;
conn->address = tor_strdup(router->address);
conn->nickname = tor_strdup(router->nickname);
assert(router->identity_pkey);
conn->identity_pkey = crypto_pk_dup_key(router->identity_pkey);
conn->state = command;
if(connection_add(conn) < 0) { /* no space, forget it */
connection_free(conn);
return;
}
switch(connection_connect(conn, router->address, router->addr, router->dir_port)) {
case -1:
router_mark_as_down(conn->nickname); /* don't try him again */
connection_mark_for_close(conn, 0);
return;
case 0:
connection_set_poll_socket(conn);
connection_watch_events(conn, POLLIN | POLLOUT | POLLERR);
/* writable indicates finish, readable indicates broken link,
error indicates broken link in windowsland. */
return;
/* case 1: fall through */
}
connection_set_poll_socket(conn);
if(directory_send_command(conn, command) < 0) {
connection_mark_for_close(conn, 0);
}
}
static int directory_send_command(connection_t *conn, int command) {
char fetchstring[] = "GET / HTTP/1.0\r\n\r\n";
const char *s;
char tmp[8192];
assert(conn && conn->type == CONN_TYPE_DIR);
switch(command) {
case DIR_CONN_STATE_CONNECTING_FETCH:
connection_write_to_buf(fetchstring, strlen(fetchstring), conn);
break;
case DIR_CONN_STATE_CONNECTING_UPLOAD:
s = router_get_my_descriptor();
if(!s) {
log_fn(LOG_WARN,"Failed to get my descriptor.");
return -1;
}
snprintf(tmp, sizeof(tmp), "POST / HTTP/1.0\r\nContent-Length: %d\r\n\r\n%s",
(int)strlen(s), s);
connection_write_to_buf(tmp, strlen(tmp), conn);
break;
}
return 0;
}
/* Parse "HTTP/1.%d %d%s\r\n".
* If it's well-formed, assign *code, point *message to the first
* non-space character after code if there is one and message is non-NULL
* (else leave it alone), and return 0.
* Otherwise, return -1.
*/
int parse_http_response(char *headers, int *code, char **message) {
int n1, n2;
assert(headers && code);
while(isspace((int)*headers)) headers++; /* tolerate leading whitespace */
if(sscanf(headers, "HTTP/1.%d %d", &n1, &n2) < 2 ||
(n1 != 0 && n1 != 1) ||
(n2 < 100 || n2 >= 600)) {
log_fn(LOG_WARN,"Failed to parse header '%s'",headers);
return -1;
}
*code = n2;
if(message) {
/* XXX should set *message correctly */
}
return 0;
}
int connection_dir_process_inbuf(connection_t *conn) {
char *directory;
char *headers;
int status_code;
assert(conn && conn->type == CONN_TYPE_DIR);
if(conn->inbuf_reached_eof) {
if(conn->state != DIR_CONN_STATE_CLIENT_READING_FETCH &&
conn->state != DIR_CONN_STATE_CLIENT_READING_UPLOAD) {
log_fn(LOG_INFO,"conn reached eof, not reading. Closing.");
connection_close_immediate(conn); /* it was an error; give up on flushing */
connection_mark_for_close(conn,0);
return -1;
}
switch(fetch_from_buf_http(conn->inbuf,
&headers, MAX_HEADERS_SIZE,
&directory, MAX_DIR_SIZE)) {
case -1: /* overflow */
log_fn(LOG_WARN,"'fetch' response too large. Failing.");
connection_mark_for_close(conn,0);
return -1;
case 0:
log_fn(LOG_INFO,"'fetch' response not all here, but we're at eof. Closing.");
connection_mark_for_close(conn,0);
return -1;
/* case 1, fall through */
}
if(parse_http_response(headers, &status_code, NULL) < 0) {
log_fn(LOG_WARN,"Unparseable headers. Closing.");
free(directory); free(headers);
connection_mark_for_close(conn,0);
return -1;
}
if(conn->state == DIR_CONN_STATE_CLIENT_READING_FETCH) {
/* fetch/process the directory to learn about new routers. */
int directorylen;
directorylen = strlen(directory);
log_fn(LOG_INFO,"Received directory (size %d):\n%s", directorylen, directory);
if(status_code == 503 || directorylen == 0) {
log_fn(LOG_INFO,"Empty directory. Ignoring.");
free(directory); free(headers);
connection_mark_for_close(conn,0);
return 0;
}
if(status_code != 200) {
log_fn(LOG_WARN,"Received http status code %d from dirserver. Failing.",
status_code);
free(directory); free(headers);
connection_mark_for_close(conn,0);
return -1;
}
if(router_set_routerlist_from_directory(directory, conn->identity_pkey) < 0){
log_fn(LOG_INFO,"...but parsing failed. Ignoring.");
} else {
log_fn(LOG_INFO,"updated routers.");
}
has_fetched_directory=1;
if(options.ORPort) { /* connect to them all */
router_retry_connections();
}
free(directory); free(headers);
connection_mark_for_close(conn,0);
return 0;
}
if(conn->state == DIR_CONN_STATE_CLIENT_READING_UPLOAD) {
switch(status_code) {
case 200:
log_fn(LOG_INFO,"eof (status 200) while reading upload response: finished.");
break;
case 400:
log_fn(LOG_WARN,"http status 400 (bad request) from dirserver. Is your clock skewed?");
break;
case 403:
log_fn(LOG_WARN,"http status 403 (unapproved server) from dirserver. Have you mailed arma your identity fingerprint? Are you using the right key?");
break;
}
free(directory); free(headers);
connection_mark_for_close(conn,0);
return 0;
}
}
if(conn->state == DIR_CONN_STATE_SERVER_COMMAND_WAIT)
return directory_handle_command(conn);
/* XXX for READ states, might want to make sure inbuf isn't too big */
log_fn(LOG_DEBUG,"Got data, not eof. Leaving on inbuf.");
return 0;
}
static char answer200[] = "HTTP/1.0 200 OK\r\n\r\n";
static char answer400[] = "HTTP/1.0 400 Bad request\r\n\r\n";
static char answer403[] = "HTTP/1.0 403 Unapproved server\r\n\r\n";
static char answer503[] = "HTTP/1.0 503 Directory unavailable\r\n\r\n";
static int directory_handle_command_get(connection_t *conn,
char *headers, char *body) {
size_t dlen;
const char *cp;
/* XXX should check url and http version */
log_fn(LOG_DEBUG,"Received GET command.");
dlen = dirserv_get_directory(&cp);
if(dlen == 0) {
log_fn(LOG_WARN,"My directory is empty. Closing.");
connection_write_to_buf(answer503, strlen(answer503), conn);
conn->state = DIR_CONN_STATE_SERVER_WRITING;
return 0;
}
log_fn(LOG_DEBUG,"Dumping directory to client.");
connection_write_to_buf(answer200, strlen(answer200), conn);
connection_write_to_buf(cp, dlen, conn);
conn->state = DIR_CONN_STATE_SERVER_WRITING;
return 0;
}
static int directory_handle_command_post(connection_t *conn,
char *headers, char *body) {
const char *cp;
/* XXX should check url and http version */
log_fn(LOG_DEBUG,"Received POST command.");
cp = body;
switch(dirserv_add_descriptor(&cp)) {
case -1:
/* malformed descriptor, or clock is skewed, or something wrong */
connection_write_to_buf(answer400, strlen(answer400), conn);
break;
case 0:
/* descriptor was well-formed but server has not been approved */
connection_write_to_buf(answer403, strlen(answer403), conn);
break;
case 1:
dirserv_get_directory(&cp); /* rebuild and write to disk */
connection_write_to_buf(answer200, strlen(answer200), conn);
break;
}
conn->state = DIR_CONN_STATE_SERVER_WRITING;
return 0;
}
static int directory_handle_command(connection_t *conn) {
char *headers=NULL, *body=NULL;
int r;
assert(conn && conn->type == CONN_TYPE_DIR);
switch(fetch_from_buf_http(conn->inbuf,
&headers, MAX_HEADERS_SIZE, &body, MAX_BODY_SIZE)) {
case -1: /* overflow */
log_fn(LOG_WARN,"input too large. Failing.");
return -1;
case 0:
log_fn(LOG_DEBUG,"command not all here yet.");
return 0;
/* case 1, fall through */
}
log_fn(LOG_DEBUG,"headers '%s', body '%s'.", headers, body);
if(!strncasecmp(headers,"GET",3))
r = directory_handle_command_get(conn, headers, body);
else if (!strncasecmp(headers,"POST",4))
r = directory_handle_command_post(conn, headers, body);
else {
log_fn(LOG_WARN,"Got headers '%s' with unknown command. Closing.", headers);
r = -1;
}
tor_free(headers); tor_free(body);
return r;
}
int connection_dir_finished_flushing(connection_t *conn) {
int e, len=sizeof(e);
assert(conn && conn->type == CONN_TYPE_DIR);
switch(conn->state) {
case DIR_CONN_STATE_CONNECTING_FETCH:
case DIR_CONN_STATE_CONNECTING_UPLOAD:
if (getsockopt(conn->s, SOL_SOCKET, SO_ERROR, (void*)&e, &len) < 0) { /* not yet */
if(!ERRNO_CONN_EINPROGRESS(errno)) {
log_fn(LOG_DEBUG,"in-progress connect failed. Removing.");
router_mark_as_down(conn->nickname); /* don't try him again */
connection_mark_for_close(conn,0);
return -1;
} else {
return 0; /* no change, see if next time is better */
}
}
/* the connect has finished. */
log_fn(LOG_INFO,"Dir connection to router %s:%u established.",
conn->address,conn->port);
return directory_send_command(conn, conn->state);
case DIR_CONN_STATE_CLIENT_SENDING_FETCH:
log_fn(LOG_DEBUG,"client finished sending fetch command.");
conn->state = DIR_CONN_STATE_CLIENT_READING_FETCH;
connection_watch_events(conn, POLLIN);
return 0;
case DIR_CONN_STATE_CLIENT_SENDING_UPLOAD:
log_fn(LOG_DEBUG,"client finished sending upload command.");
conn->state = DIR_CONN_STATE_CLIENT_READING_UPLOAD;
connection_watch_events(conn, POLLIN);
return 0;
case DIR_CONN_STATE_SERVER_WRITING:
log_fn(LOG_INFO,"Finished writing server response. Closing.");
connection_mark_for_close(conn,0);
return 0;
default:
log_fn(LOG_WARN,"BUG: called in unexpected state %d.", conn->state);
return -1;
}
return 0;
}
/*
Local Variables:
mode:c
indent-tabs-mode:nil
c-basic-offset:2
End:
*/
+465
View File
@@ -0,0 +1,465 @@
/* Copyright 2001,2002,2003 Roger Dingledine, Matej Pfajfar. */
/* See LICENSE for licensing information */
/* $Id$ */
#include "or.h"
/* How far in the future do we allow a router to get? (seconds) */
#define ROUTER_ALLOW_SKEW (30*60)
extern or_options_t options; /* command-line and config-file options */
static int the_directory_is_dirty = 1;
static int list_running_servers(char **nicknames_out);
/************** Fingerprint handling code ************/
typedef struct fingerprint_entry_t {
char *nickname;
char *fingerprint;
} fingerprint_entry_t;
static fingerprint_entry_t fingerprint_list[MAX_ROUTERS_IN_DIR];
static int n_fingerprints = 0;
static void
add_fingerprint_to_dir(const char *nickname, const char *fp)
{
int i;
for (i = 0; i < n_fingerprints; ++i) {
if (!strcasecmp(fingerprint_list[i].nickname,nickname)) {
free(fingerprint_list[i].fingerprint);
fingerprint_list[i].fingerprint = tor_strdup(fp);
return;
}
}
fingerprint_list[n_fingerprints].nickname = tor_strdup(nickname);
fingerprint_list[n_fingerprints].fingerprint = tor_strdup(fp);
++n_fingerprints;
}
int
dirserv_add_own_fingerprint(const char *nickname, crypto_pk_env_t *pk)
{
char fp[FINGERPRINT_LEN+1];
if (crypto_pk_get_fingerprint(pk, fp)<0) {
log_fn(LOG_ERR, "Error computing fingerprint");
return -1;
}
add_fingerprint_to_dir(nickname, fp);
return 0;
}
/* return 0 on success, -1 on failure */
int
dirserv_parse_fingerprint_file(const char *fname)
{
FILE *file;
char line[FINGERPRINT_LEN+MAX_NICKNAME_LEN+20+1];
char *nickname, *fingerprint;
fingerprint_entry_t fingerprint_list_tmp[MAX_ROUTERS_IN_DIR];
int n_fingerprints_tmp = 0;
int i, result;
if(!(file = fopen(fname, "r"))) {
log_fn(LOG_WARN, "Cannot open fingerprint file %s", fname);
return -1;
}
while( (result=parse_line_from_file(line, sizeof(line),file,&nickname,&fingerprint)) > 0) {
if (strlen(nickname) > MAX_NICKNAME_LEN) {
log(LOG_WARN, "Nickname %s too long in fingerprint file. Skipping.", nickname);
continue;
}
if(strlen(fingerprint) != FINGERPRINT_LEN ||
!crypto_pk_check_fingerprint_syntax(fingerprint)) {
log_fn(LOG_WARN, "Invalid fingerprint (nickname %s, fingerprint %s). Skipping.",
nickname, fingerprint);
continue;
}
for (i = 0; i < n_fingerprints_tmp; ++i) {
if (0==strcasecmp(fingerprint_list_tmp[i].nickname, nickname)) {
log(LOG_WARN, "Duplicate nickname %s. Skipping.",nickname);
break; /* out of the for. the 'if' below means skip to the next line. */
}
}
if(i == n_fingerprints_tmp) { /* not a duplicate */
fingerprint_list_tmp[n_fingerprints_tmp].nickname = tor_strdup(nickname);
fingerprint_list_tmp[n_fingerprints_tmp].fingerprint = tor_strdup(fingerprint);
++n_fingerprints_tmp;
}
}
fclose(file);
if(result == 0) { /* eof; replace the global fingerprints list. */
dirserv_free_fingerprint_list();
memcpy(fingerprint_list, fingerprint_list_tmp,
sizeof(fingerprint_entry_t)*n_fingerprints_tmp);
n_fingerprints = n_fingerprints_tmp;
return 0;
}
/* error */
log_fn(LOG_WARN, "Error reading from fingerprint file");
for (i = 0; i < n_fingerprints_tmp; ++i) {
free(fingerprint_list_tmp[i].nickname);
free(fingerprint_list_tmp[i].fingerprint);
}
return -1;
}
/* return 1 if router's identity and nickname match,
* -1 if they don't match, 0 if the nickname is not known. */
int
dirserv_router_fingerprint_is_known(const routerinfo_t *router)
{
int i;
fingerprint_entry_t *ent =NULL;
char fp[FINGERPRINT_LEN+1];
log_fn(LOG_DEBUG, "%d fingerprints known.", n_fingerprints);
for (i=0;i<n_fingerprints;++i) {
log_fn(LOG_DEBUG,"%s vs %s", router->nickname, fingerprint_list[i].nickname);
if (!strcasecmp(router->nickname,fingerprint_list[i].nickname)) {
ent = &fingerprint_list[i];
break;
}
}
if (!ent) { /* No such server known */
log_fn(LOG_INFO,"no fingerprint found for %s",router->nickname);
return 0;
}
if (crypto_pk_get_fingerprint(router->identity_pkey, fp)) {
log_fn(LOG_WARN,"error computing fingerprint");
return -1;
}
if (0==strcasecmp(ent->fingerprint, fp)) {
log_fn(LOG_DEBUG,"good fingerprint for %s",router->nickname);
return 1; /* Right fingerprint. */
} else {
log_fn(LOG_WARN,"mismatched fingerprint for %s",router->nickname);
return -1; /* Wrong fingerprint. */
}
}
void
dirserv_free_fingerprint_list()
{
int i;
for (i = 0; i < n_fingerprints; ++i) {
free(fingerprint_list[i].nickname);
free(fingerprint_list[i].fingerprint);
}
n_fingerprints = 0;
}
/*
* Descriptor list
*/
typedef struct descriptor_entry_t {
char *nickname;
time_t published;
size_t desc_len;
char *descriptor;
} descriptor_entry_t;
static descriptor_entry_t *descriptor_list[MAX_ROUTERS_IN_DIR];
static int n_descriptors = 0;
static void free_descriptor_entry(descriptor_entry_t *desc)
{
tor_free(desc->descriptor);
tor_free(desc->nickname);
free(desc);
}
void
dirserv_free_descriptors()
{
int i;
for (i = 0; i < n_descriptors; ++i) {
free_descriptor_entry(descriptor_list[i]);
}
n_descriptors = 0;
}
/* Return 1 if descriptor is well-formed and accepted;
* 0 if well-formed and server is unapproved;
* -1 if not well-formed or if clock is skewed or other error.
*
* Update *desc to point after the descriptor if the
* descriptor is well-formed.
*/
int
dirserv_add_descriptor(const char **desc)
{
descriptor_entry_t **desc_ent_ptr;
routerinfo_t *ri = NULL;
int i, r;
char *start, *end;
char *desc_tmp = NULL;
const char *cp;
size_t desc_len;
start = strstr(*desc, "router ");
if (!start) {
log(LOG_WARN, "no descriptor found.");
return -1;
}
if ((end = strstr(start+6, "\nrouter "))) {
++end; /* Include NL. */
} else if ((end = strstr(start+6, "\ndirectory-signature"))) {
++end;
} else {
end = start+strlen(start);
}
desc_len = end-start;
cp = desc_tmp = tor_strndup(start, desc_len);
/* Check: is the descriptor syntactically valid? */
ri = router_get_entry_from_string(cp, NULL);
tor_free(desc_tmp);
if (!ri) {
log(LOG_WARN, "Couldn't parse descriptor");
return -1;
}
/* Okay. Now check whether the fingerprint is recognized. */
r = dirserv_router_fingerprint_is_known(ri);
if(r<1) {
if(r==0) {
char fp[FINGERPRINT_LEN+1];
log_fn(LOG_WARN, "Unknown nickname %s (%s:%d). Not adding.",
ri->nickname, ri->address, ri->or_port);
if (crypto_pk_get_fingerprint(ri->identity_pkey, fp) < 0) {
log_fn(LOG_WARN, "Error computing fingerprint for %s", ri->nickname);
} else {
log_fn(LOG_WARN, "Fingerprint line: %s %s", ri->nickname, fp);
}
} else {
log_fn(LOG_WARN, "Known nickname %s, wrong fingerprint. Not adding.", ri->nickname);
}
routerinfo_free(ri);
*desc = end;
return 0;
}
/* Is there too much clock skew? */
if (ri->published_on > time(NULL)+ROUTER_ALLOW_SKEW) {
log_fn(LOG_WARN, "Publication time for nickname %s is too far in the future; possible clock skew. Not adding", ri->nickname);
routerinfo_free(ri);
*desc = end;
return -1;
}
/* Do we already have an entry for this router? */
desc_ent_ptr = NULL;
for (i = 0; i < n_descriptors; ++i) {
if (!strcasecmp(ri->nickname, descriptor_list[i]->nickname)) {
desc_ent_ptr = &descriptor_list[i];
break;
}
}
if (desc_ent_ptr) {
/* if so, decide whether to update it. */
if ((*desc_ent_ptr)->published > ri->published_on) {
/* We already have a newer descriptor */
log_fn(LOG_INFO,"We already have a newer desc for nickname %s. Not adding.",ri->nickname);
/* This isn't really an error; return success. */
routerinfo_free(ri);
*desc = end;
return 1;
}
/* We don't have a newer one; we'll update this one. */
free_descriptor_entry(*desc_ent_ptr);
} else {
/* Add this at the end. */
desc_ent_ptr = &descriptor_list[n_descriptors++];
/* XXX check if n_descriptors is too big */
}
(*desc_ent_ptr) = tor_malloc(sizeof(descriptor_entry_t));
(*desc_ent_ptr)->nickname = tor_strdup(ri->nickname);
(*desc_ent_ptr)->published = ri->published_on;
(*desc_ent_ptr)->desc_len = desc_len;
(*desc_ent_ptr)->descriptor = tor_malloc(desc_len+1);
strncpy((*desc_ent_ptr)->descriptor, start, desc_len);
(*desc_ent_ptr)->descriptor[desc_len] = '\0';
*desc = end;
directory_set_dirty();
routerinfo_free(ri);
return 1;
}
void
directory_set_dirty()
{
the_directory_is_dirty = 1;
}
int
dirserv_init_from_directory_string(const char *dir)
{
const char *cp = dir;
while(1) {
cp = strstr(cp, "\nrouter ");
if (!cp) break;
++cp;
if (dirserv_add_descriptor(&cp) < 0) {
return -1;
}
--cp; /*Back up to newline.*/
}
return 0;
}
static int
list_running_servers(char **nicknames_out)
{
char *nickname_lst[MAX_ROUTERS_IN_DIR];
connection_t **connection_array;
int n_conns;
connection_t *conn;
char *cp;
int n = 0, i;
int length;
*nicknames_out = NULL;
nickname_lst[n++] = options.Nickname;
get_connection_array(&connection_array, &n_conns);
for (i = 0; i<n_conns; ++i) {
conn = connection_array[i];
if (conn->type != CONN_TYPE_OR || conn->state != OR_CONN_STATE_OPEN)
continue; /* only list successfully handshaked OR's. */
if(!conn->nickname) /* it's an OP, don't list it */
continue;
nickname_lst[n++] = conn->nickname;
}
length = n + 1; /* spaces + EOS + 1. */
for (i = 0; i<n; ++i) {
length += strlen(nickname_lst[i]);
}
*nicknames_out = tor_malloc_zero(length);
cp = *nicknames_out;
for (i = 0; i<n; ++i) {
if (i)
strcat(cp, " ");
strcat(cp, nickname_lst[i]); /* can't overflow */
while (*cp)
++cp;
}
return 0;
}
int
dirserv_dump_directory_to_string(char *s, int maxlen,
crypto_pk_env_t *private_key)
{
char *cp, *eos;
char digest[20];
char signature[128];
char published[33];
time_t published_on;
int i;
eos = s+maxlen;
if (list_running_servers(&cp))
return -1;
published_on = time(NULL);
strftime(published, 32, "%Y-%m-%d %H:%M:%S", gmtime(&published_on));
snprintf(s, maxlen,
"signed-directory\n"
"published %s\n"
"recommended-software %s\n"
"running-routers %s\n\n", published, options.RecommendedVersions, cp);
free(cp);
i = strlen(s);
cp = s+i;
for (i = 0; i < n_descriptors; ++i) {
strncat(cp, descriptor_list[i]->descriptor, descriptor_list[i]->desc_len);
/* XXX Nick: do strncat and friends null-terminate? man page is ambiguous. */
cp += descriptor_list[i]->desc_len;
assert(!*cp);
}
/* These multiple strlen calls are inefficient, but dwarfed by the RSA
signature.
*/
i = strlen(s);
strncat(s, "directory-signature\n", maxlen-i);
i = strlen(s);
cp = s + i;
if (router_get_dir_hash(s,digest)) {
log_fn(LOG_WARN,"couldn't compute digest");
return -1;
}
if (crypto_pk_private_sign(private_key, digest, 20, signature) < 0) {
log_fn(LOG_WARN,"couldn't sign digest");
return -1;
}
log(LOG_DEBUG,"generated directory digest begins with %02x:%02x:%02x:%02x",
((int)digest[0])&0xff,((int)digest[1])&0xff,
((int)digest[2])&0xff,((int)digest[3])&0xff);
strncpy(cp, "-----BEGIN SIGNATURE-----\n", maxlen-i);
cp[maxlen-i-1] = 0;
i = strlen(s);
cp = s+i;
if (base64_encode(cp, maxlen-i, signature, 128) < 0) {
log_fn(LOG_WARN,"couldn't base64-encode signature");
return -1;
}
i = strlen(s);
cp = s+i;
strncat(cp, "-----END SIGNATURE-----\n", maxlen-i);
i = strlen(s);
if (i == maxlen) {
log_fn(LOG_WARN,"tried to exceed string length.");
return -1;
}
return 0;
}
static char *the_directory = NULL;
static int the_directory_len = -1;
size_t dirserv_get_directory(const char **directory)
{
char *new_directory;
char filename[512];
if (the_directory_is_dirty) {
new_directory = tor_malloc(MAX_DIR_SIZE);
if (dirserv_dump_directory_to_string(new_directory, MAX_DIR_SIZE,
get_identity_key())) {
log(LOG_WARN, "Error creating directory.");
free(new_directory);
return 0;
}
tor_free(the_directory);
the_directory = new_directory;
the_directory_len = strlen(the_directory);
log_fn(LOG_INFO,"New directory (size %d):\n%s",the_directory_len,
the_directory);
the_directory_is_dirty = 0;
/* Now read the directory we just made in order to update our own
* router lists. This does more signature checking than is strictly
* necessary, but safe is better than sorry. */
new_directory = tor_strdup(the_directory);
/* use a new copy of the dir, since get_dir_from_string scribbles on it */
if (router_set_routerlist_from_directory(new_directory, get_identity_key())) {
log_fn(LOG_ERR, "We just generated a directory we can't parse. Dying.");
exit(0);
}
free(new_directory);
sprintf(filename,"%s/cached-directory", options.DataDirectory);
if(write_str_to_file(filename,the_directory) < 0) {
log_fn(LOG_WARN, "Couldn't write cached directory to disk. Ignoring.");
}
} else {
log(LOG_INFO,"Directory still clean, reusing.");
}
*directory = the_directory;
return the_directory_len;
}

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