Types 0x03/0x04/0x05 land with a bounded columnar train buffer (head kept, truncation declared) and grant-free multi-part reports - a report row is smaller than the packet it answers, so $3.4 holds without a grant. The read loop now collects TTL/TOS cmsgs on Linux, replacing the 0xFF stubs in the observation block with what the kernel saw; downtrain gained a dscp parameter, so DSCP survival is measurable in both directions. Rate limiting ($2.5) exists now: per-credential AND per-source buckets, 429 on the control plane, silent drop on the data plane after the HMAC gate and before the replay window. UDP ceilings default above the largest legitimate run - a limit that clips a real measurement produces a confidently wrong number. Every granted packet carries its action_id at payload[8:16]; overlapping actions were unattributable before. Canary DNS logs now honor the stated 24h privacy default. /admin/enroll-tokens answers the spec's JSON shape. protocol_version 1.0.1 (additive). Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
71 lines
2.5 KiB
Go
71 lines
2.5 KiB
Go
// SPDX-FileCopyrightText: 2026 Echolot contributors
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// SPDX-License-Identifier: GPL-3.0-or-later
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//go:build linux
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package dataplane
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import (
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"encoding/binary"
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"net"
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"syscall"
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)
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// Per-packet TTL and TOS/traffic-class arrive as control messages, and only if asked for at
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// socket setup. These fill the spec §3.3 observation-block fields that were shipped as the 0xFF
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// sentinel until now — received TTL is path-length evidence, the TOS byte is DSCP/ECN survival.
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// enableRecvMeta asks the kernel to attach the cmsgs to every received datagram. Both the v4 and
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// the v6 option sets are attempted on every socket: a dual-stack socket delivers v4-mapped
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// traffic through the v6 fd, and the kernel refuses whichever set does not apply. Errors are
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// dropped on purpose — a socket that cannot deliver metadata still serves probes, and the
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// sentinel already says "not observed" for it.
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func enableRecvMeta(conn *net.UDPConn) {
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raw, err := conn.SyscallConn()
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if err != nil {
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return
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}
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_ = raw.Control(func(fd uintptr) {
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_ = syscall.SetsockoptInt(int(fd), syscall.IPPROTO_IP, syscall.IP_RECVTTL, 1)
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_ = syscall.SetsockoptInt(int(fd), syscall.IPPROTO_IP, syscall.IP_RECVTOS, 1)
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_ = syscall.SetsockoptInt(int(fd), syscall.IPPROTO_IPV6, syscall.IPV6_RECVHOPLIMIT, 1)
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_ = syscall.SetsockoptInt(int(fd), syscall.IPPROTO_IPV6, syscall.IPV6_RECVTCLASS, 1)
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})
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}
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// parseMeta extracts TTL and the TOS byte from one datagram's control messages. Anything absent
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// or unparseable keeps the sentinel — reported as unobserved, never guessed.
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func parseMeta(oob []byte) pktMeta {
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m := pktMeta{TTL: metaUnavailable, TOS: metaUnavailable}
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if len(oob) == 0 {
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return m
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}
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cmsgs, err := syscall.ParseSocketControlMessage(oob)
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if err != nil {
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return m
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}
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for _, c := range cmsgs {
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switch {
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case c.Header.Level == syscall.IPPROTO_IP && c.Header.Type == syscall.IP_TTL,
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c.Header.Level == syscall.IPPROTO_IPV6 && c.Header.Type == syscall.IPV6_HOPLIMIT:
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m.TTL = cmsgValue(c.Data)
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case c.Header.Level == syscall.IPPROTO_IP && c.Header.Type == syscall.IP_TOS,
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c.Header.Level == syscall.IPPROTO_IPV6 && c.Header.Type == syscall.IPV6_TCLASS:
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m.TOS = cmsgValue(c.Data)
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}
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}
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return m
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}
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// cmsgValue reads a cmsg the kernel encodes either as a native-endian int (IP_TTL,
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// IPV6_HOPLIMIT, IPV6_TCLASS) or as a single byte (IP_TOS). Both fit a byte by definition.
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func cmsgValue(data []byte) uint8 {
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switch {
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case len(data) >= 4:
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return uint8(binary.NativeEndian.Uint32(data))
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case len(data) >= 1:
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return data[0]
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}
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return metaUnavailable
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}
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