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package procsnitch
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import (
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"encoding/hex"
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"encoding/binary"
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"errors"
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"fmt"
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"github.com/op/go-logging"
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"io/ioutil"
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"net"
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"strconv"
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"strings"
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"unsafe"
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)
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var log = logging.MustGetLogger("go-procsockets")
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var isLittleEndian = -1
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// SetLogger allows setting a custom go-logging instance
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func SetLogger(logger *logging.Logger) {
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log = logger
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}
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var pcache = &pidCache{}
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// ProcInfo represents an api that can be used to query process information about
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// the far side of a network connection
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// Note: this can aid in the construction of unit tests.
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type ProcInfo interface {
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LookupTCPSocketProcess(srcPort uint16, dstAddr net.IP, dstPort uint16) *Info
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LookupUNIXSocketProcess(socketFile string) *Info
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LookupUDPSocketProcess(srcPort uint16) *Info
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}
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// SystemProcInfo represents our real system ProcInfo api.
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type SystemProcInfo struct {
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}
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// LookupTCPSocketProcess returns the process information for a given TCP connection.
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func (r SystemProcInfo) LookupTCPSocketProcess(srcPort uint16, dstAddr net.IP, dstPort uint16) *Info {
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return LookupTCPSocketProcess(srcPort, dstAddr, dstPort)
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}
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// LookupUNIXSocketProcess returns the process information for a given UNIX socket connection.
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func (r SystemProcInfo) LookupUNIXSocketProcess(socketFile string) *Info {
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return LookupUNIXSocketProcess(socketFile)
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}
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// LookupUDPSocketProcess returns the process information for a given UDP socket connection.
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func (r SystemProcInfo) LookupUDPSocketProcess(srcPort uint16) *Info {
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return LookupUDPSocketProcess(srcPort)
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}
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// FindProcessForConnection returns the process information for a given connection.
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// So far only TCP and UNIX domain socket connections are supported.
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func FindProcessForConnection(conn net.Conn, procInfo ProcInfo) *Info {
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var info *Info
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if conn.LocalAddr().Network() == "tcp" {
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fields := strings.Split(conn.RemoteAddr().String(), ":")
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dstPortStr := fields[1]
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fields = strings.Split(conn.LocalAddr().String(), ":")
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dstIP := net.ParseIP(fields[0])
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srcP, _ := strconv.ParseUint(dstPortStr, 10, 16)
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dstP, _ := strconv.ParseUint(fields[1], 10, 16)
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info = procInfo.LookupTCPSocketProcess(uint16(srcP), dstIP, uint16(dstP))
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} else if conn.LocalAddr().Network() == "unix" {
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info = procInfo.LookupUNIXSocketProcess(conn.LocalAddr().String())
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}
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return info
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}
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// LookupICMPSocketProcessAll searches for a ICMP socket a given source host, destination IP, and type
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func LookupICMPSocketProcessAll(srcAddr net.IP, dstAddr net.IP, code int, custdata []string) *Info {
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ss := findICMPSocketAll(srcAddr, dstAddr, code, custdata)
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if ss == nil {
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return nil
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}
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return pcache.lookup(ss.inode)
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}
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// LookupUDPSocketProcessAll searches for a UDP socket a given source port, destination IP, and destination port - AND source destination
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func LookupUDPSocketProcessAll(srcAddr net.IP, srcPort uint16, dstAddr net.IP, dstPort uint16, custdata []string, strictness int) *Info {
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ss := findUDPSocketAll(srcAddr, srcPort, dstAddr, dstPort, custdata, strictness)
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if ss == nil {
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return nil
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}
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return pcache.lookup(ss.inode)
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}
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// LookupUDPSocketProcess searches for a UDP socket with a source port
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func LookupUDPSocketProcess(srcPort uint16) *Info {
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ss := findUDPSocket(srcPort)
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if ss == nil {
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return nil
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}
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return pcache.lookup(ss.inode)
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}
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// LookupTCPSocketProcessAll searches for a TCP socket a given source port, destination IP, and destination port - AND source destination
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func LookupTCPSocketProcessAll(srcAddr net.IP, srcPort uint16, dstAddr net.IP, dstPort uint16, custdata []string) *Info {
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ss := findTCPSocketAll(srcAddr, srcPort, dstAddr, dstPort, custdata)
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if ss == nil {
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return nil
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}
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return pcache.lookup(ss.inode)
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}
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// LookupTCPSocketProcess searches for a TCP socket with a given source port, destination IP, and destination port
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func LookupTCPSocketProcess(srcPort uint16, dstAddr net.IP, dstPort uint16) *Info {
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ss := findTCPSocket(srcPort, dstAddr, dstPort)
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if ss == nil {
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return nil
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}
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return pcache.lookup(ss.inode)
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}
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// LookupUNIXSocketProcess searches for a UNIX domain socket with a given filename
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func LookupUNIXSocketProcess(socketFile string) *Info {
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ss := findUNIXSocket(socketFile)
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if ss == nil {
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return nil
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}
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return pcache.lookup(ss.inode)
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}
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type connectionInfo struct {
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pinfo *Info
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local *socketAddr
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remote *socketAddr
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}
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func (ci *connectionInfo) String() string {
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return fmt.Sprintf("%v %s %s", ci.pinfo, ci.local, ci.remote)
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}
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func (sa *socketAddr) parse(s string) error {
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ipPort := strings.Split(s, ":")
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if len(ipPort) != 2 {
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return fmt.Errorf("badly formatted socket address field: %s", s)
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}
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ip, err := ParseIP(ipPort[0])
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if err != nil {
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return fmt.Errorf("error parsing ip field [%s]: %v", ipPort[0], err)
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}
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port, err := ParsePort(ipPort[1])
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if err != nil {
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return fmt.Errorf("error parsing port field [%s]: %v", ipPort[1], err)
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}
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sa.ip = ip
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sa.port = port
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return nil
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}
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// ParseIP parses a string ip to a net.IP
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func ParseIP(ip string) (net.IP, error) {
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var result net.IP
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dst, err := hex.DecodeString(ip)
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if err != nil {
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return result, fmt.Errorf("Error parsing IP: %s", err)
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}
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// Reverse byte order -- /proc/net/tcp etc. is little-endian
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// TODO: Does this vary by architecture?
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if isLittleEndian == -1 {
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setEndian()
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}
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if len(dst) != 4 && len(dst) != 16 {
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return result, errors.New("Unsupported address type (not IPv4 or IPv16)")
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}
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if isLittleEndian > 0 {
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for i := 0; i < len(dst) / 4; i++ {
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start, end := i*4, (i+1)*4
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word := dst[start:end]
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lval := binary.LittleEndian.Uint32(word)
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binary.BigEndian.PutUint32(dst[start:], lval)
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}
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}
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/* if len(dst) == 16 {
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dst2 := []byte{dst[3], dst[2], dst[1], dst[0], dst[7], dst[6], dst[5], dst[4], dst[11], dst[10], dst[9], dst[8], dst[15], dst[14], dst[13], dst[12]}
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return net.IP(dst2), nil
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}
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for i, j := 0, len(dst)-1; i < j; i, j = i+1, j-1 {
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dst[i], dst[j] = dst[j], dst[i]
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} */
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return net.IP(dst), nil
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}
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// ParsePort parses a base16 port represented as a string to a uint16
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func ParsePort(port string) (uint16, error) {
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p64, err := strconv.ParseInt(port, 16, 32)
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if err != nil {
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return 0, fmt.Errorf("Error parsing port: %s", err)
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}
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return uint16(p64), nil
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}
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func getConnections() ([]*connectionInfo, error) {
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conns, err := readConntrack()
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if err != nil {
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return nil, err
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}
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resolveProcinfo(conns)
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return conns, nil
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}
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func resolveProcinfo(conns []*connectionInfo) {
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var sockets []*socketStatus
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for _, line := range getSocketLines("tcp") {
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if len(strings.TrimSpace(line)) == 0 {
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continue
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}
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ss := new(socketStatus)
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if err := ss.parseLine(line); err != nil {
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log.Warningf("Unable to parse line [%s]: %v", line, err)
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} /* else {
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/*
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pid := findPidForInode(ss.inode)
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if pid > 0 {
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ss.pid = pid
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fmt.Println("Socket", ss)
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sockets = append(sockets, ss)
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}
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}*/
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}
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for _, ci := range conns {
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ss := findContrackSocket(ci, sockets)
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if ss == nil {
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continue
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}
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pinfo := pcache.lookup(ss.inode)
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if pinfo != nil {
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ci.pinfo = pinfo
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}
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}
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}
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func findContrackSocket(ci *connectionInfo, sockets []*socketStatus) *socketStatus {
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for _, ss := range sockets {
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if ss.local.port == ci.local.port && ss.remote.ip.Equal(ci.remote.ip) && ss.remote.port == ci.remote.port {
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return ss
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}
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}
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return nil
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}
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func readConntrack() ([]*connectionInfo, error) {
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path := fmt.Sprintf("/proc/net/ip_conntrack")
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data, err := ioutil.ReadFile(path)
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if err != nil {
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return nil, err
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}
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var result []*connectionInfo
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lines := strings.Split(string(data), "\n")
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for _, line := range lines {
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ci, err := parseConntrackLine(line)
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if err != nil {
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return nil, err
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}
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if ci != nil {
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result = append(result, ci)
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}
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}
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return result, nil
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}
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func parseConntrackLine(line string) (*connectionInfo, error) {
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parts := strings.Fields(line)
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if len(parts) < 8 || parts[0] != "tcp" || parts[3] != "ESTABLISHED" {
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return nil, nil
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}
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local, err := conntrackAddr(parts[4], parts[6])
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if err != nil {
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return nil, err
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}
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remote, err := conntrackAddr(parts[5], parts[7])
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if err != nil {
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return nil, err
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}
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return &connectionInfo{
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local: local,
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remote: remote,
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}, nil
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}
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func conntrackAddr(ipStr, portStr string) (*socketAddr, error) {
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ip := net.ParseIP(stripLabel(ipStr))
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if ip == nil {
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return nil, errors.New("Could not parse IP: " + ipStr)
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}
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i64, err := strconv.Atoi(stripLabel(portStr))
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if err != nil {
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return nil, err
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}
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return &socketAddr{
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ip: ip,
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port: uint16(i64),
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}, nil
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}
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func stripLabel(s string) string {
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idx := strings.Index(s, "=")
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if idx == -1 {
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return s
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}
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return s[idx+1:]
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}
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// stolen from github.com/virtao/GoEndian
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const INT_SIZE int = int(unsafe.Sizeof(0))
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func setEndian() {
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var i int = 0x1
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bs := (*[INT_SIZE]byte)(unsafe.Pointer(&i))
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if bs[0] == 0 {
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isLittleEndian = 0
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} else {
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isLittleEndian = 1
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}
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}
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