8bca388e8a
A bunch of fixes not worth single commits at this stage, notably: - make buffer, length parameter ordering consistent in ARP, DHCP, NDP handlers - strict checking of buffer, message and option length in DHCP handler (a malicious client could have easily crashed it) - set up forwarding for IPv4 and IPv6, and masquerading with nft for IPv4, from demo script - get rid of separate slow and fast timers, we don't save any overhead that way - stricter checking of buffer lengths as passed to tap handlers - proper dequeuing from qemu socket back-end: I accidentally trashed messages that were bundled up together in a single tap read operation -- the length header tells us what's the size of the next frame, but there's no apparent limit to the number of messages we get with one single receive - rework some bits of the TCP state machine, now passive and active connection closes appear to be robust -- introduce a new FIN_WAIT_1_SOCK_FIN state indicating a FIN_WAIT_1 with a FIN flag from socket - streamline TCP option parsing routine - track TCP state changes to stderr (this is temporary, proper debugging and syslogging support pending) - observe that multiplying a number by four might very well change its value, and this happens to be the case for the data offset from the TCP header as we check if it's the same as the total length to find out if it's a duplicated ACK segment - recent estimates suggest that the duration of a millisecond is closer to a million nanoseconds than a thousand of them, this trend is now reflected into the timespec_diff_ms() convenience routine Signed-off-by: Stefano Brivio <sbrivio@redhat.com>
80 lines
2.2 KiB
Bash
Executable file
80 lines
2.2 KiB
Bash
Executable file
#!/bin/sh -e
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#
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# SPDX-License-Identifier: AGPL-3.0-or-later
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#
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# PASST - Plug A Simple Socket Transport
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#
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# demo.sh - Set up namespaces, addresses and routes to show PASST functionality
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#
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# Copyright (c) 2020-2021 Red Hat GmbH
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# Author: Stefano Brivio <sbrivio@redhat.com>
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get_token() {
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IFS=' '
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__next=0
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for __token in ${@}; do
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[ ${__next} -eq 2 ] && echo "${__token}" && return
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[ "${__token}" = "${1}" ] && __next=$((__next + 1))
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done
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unset IFS
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}
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ipv6_dev() { get_token "dev" $(ip -o -6 ro show default); }
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ipv6_devaddr() { get_token "inet6" $(ip -o -6 ad sh dev "${1}" scope global); }
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ipv6_ll_addr() { get_token "inet6" $(ip -o -6 ad sh dev "${1}" scope link); }
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ipv6_mask() { echo ${1#*/}; }
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ipv6_mangle() {
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IFS=':'
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__c=0
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for __16b in ${1%%/*}; do
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if [ ${__c} -lt 7 ]; then
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printf "${__16b}:"
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else
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printf "abcd\n" && break
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fi
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__c=$((__c + 1))
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done
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unset IFS
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}
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ndp_setup() {
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sysctl -w net.ipv6.conf.all.proxy_ndp=1
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ip -6 neigh add proxy "${1}" dev "$(ipv6_dev)"
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}
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ip netns del passt 2>/dev/null || :
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ip link del veth_passt 2>/dev/null || :
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ip netns add passt
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ip link add veth_passt up netns passt type veth peer name veth_passt
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ip link set dev veth_passt up
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ip -n passt addr add 192.0.2.2/24 dev veth_passt
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ip addr add 192.0.2.1/24 dev veth_passt
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ip -n passt route add default via 192.0.2.1
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sysctl -w net.ipv4.ip_forward=1
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nft delete table passt_nat 2>/dev/null || :
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nft add table passt_nat
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nft 'add chain passt_nat postrouting { type nat hook postrouting priority -100 ; }'
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nft add rule passt_nat postrouting ip saddr 192.0.2.2 masquerade
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ipv6_addr="$(ipv6_devaddr "$(ipv6_dev)")"
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ipv6_passt="$(ipv6_mangle "${ipv6_addr}")"
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ndp_setup "${ipv6_passt}"
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ip -n passt addr add "${ipv6_passt}/$(ipv6_mask "${ipv6_addr}")" dev veth_passt
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ip addr add "${ipv6_addr}" dev veth_passt
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passt_ll="$(ipv6_ll_addr "veth_passt")"
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main_ll="$(get_token "link/ether" $(ip -o li sh veth_passt))"
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ip neigh add "${passt_ll%%/*}" dev veth_passt lladdr "${main_ll}"
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ip -n passt route add default via "${passt_ll%%/*}" dev veth_passt
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sysctl -w net.ipv6.conf.all.forwarding=1
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ethtool -K veth_passt tx off
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ip netns exec passt ethtool -K veth_passt tx off
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ulimit -n 300000
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ip netns exec passt ./passt
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