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mitm: Add experimental Tor support for interception detection
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parent
8051c73cc3
commit
0da76e2b76
3 changed files with 142 additions and 10 deletions
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@ -65,7 +65,16 @@ func (h *tlsHandler) ServeHTTP(w http.ResponseWriter, r *http.Request) {
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mitm = !info.looksLikeChrome() && !info.looksLikeSafari()
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} else if strings.Contains(ua, "Firefox") {
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checked = true
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if strings.Contains(ua, "Windows") {
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ver := getVersion(ua, "Firefox")
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if ver == 45.0 || ver == 52.0 {
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mitm = !info.looksLikeTor()
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} else {
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mitm = !info.looksLikeFirefox()
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}
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} else {
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mitm = !info.looksLikeFirefox()
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}
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} else if strings.Contains(ua, "Safari") {
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checked = true
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mitm = !info.looksLikeSafari()
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@ -87,6 +96,34 @@ func (h *tlsHandler) ServeHTTP(w http.ResponseWriter, r *http.Request) {
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h.next.ServeHTTP(w, r)
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}
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// getVersion returns a (possibly simplified) representation of the version string
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// from a UserAgent string. It returns a float, so it can represent major and minor
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// versions; the rest of the version is just tacked on behind the decimal point.
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// The purpose of this is to stay simple while allowing for basic, fast comparisons.
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// If the version for softwareName is not found in ua, -1 is returned.
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func getVersion(ua, softwareName string) float64 {
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search := softwareName + "/"
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start := strings.Index(ua, search)
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if start < 0 {
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return -1
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}
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start += len(search)
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end := strings.Index(ua[start:], " ")
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if end < 0 {
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end = len(ua)
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}
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strVer := strings.Replace(ua[start:end], "-", "", -1)
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firstDot := strings.Index(strVer, ".")
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if firstDot >= 0 {
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strVer = strVer[:firstDot+1] + strings.Replace(strVer[firstDot+1:], ".", "", -1)
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}
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ver, err := strconv.ParseFloat(strVer, 64)
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if err != nil {
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return -1
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}
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return ver
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}
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// clientHelloConn reads the ClientHello
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// and stores it in the attached listener.
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type clientHelloConn struct {
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@ -330,6 +367,7 @@ func (info rawHelloInfo) looksLikeFirefox() bool {
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// Note: Firefox 51+ does not advertise 0x3374 (13172, NPN).
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// Note: Firefox doesn't advertise 0x0 (0, SNI) when connecting to IP addresses.
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// Note: Firefox 55+ doesn't appear to advertise 0xFF03 (65283, short headers). It used to be between 5 and 13.
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// Note: Firefox on Fedora (or RedHat) doesn't include ECC suites because of patent liability.
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requiredExtensionsOrder := []uint16{23, 65281, 10, 11, 35, 16, 5, 13}
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if !assertPresenceAndOrdering(requiredExtensionsOrder, info.extensions, true) {
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return false
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@ -543,6 +581,70 @@ func (info rawHelloInfo) looksLikeSafari() bool {
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return assertPresenceAndOrdering(expectedCipherSuiteOrder, info.cipherSuites, true)
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}
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// looksLikeTor returns true if the info looks like a ClientHello from Tor browser
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// (based on Firefox).
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func (info rawHelloInfo) looksLikeTor() bool {
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requiredExtensionsOrder := []uint16{10, 11, 16, 5, 13}
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if !assertPresenceAndOrdering(requiredExtensionsOrder, info.extensions, true) {
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return false
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}
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// check for session tickets support; Tor doesn't support them to prevent tracking
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for _, ext := range info.extensions {
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if ext == 35 {
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return false
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}
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}
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// We check for both presence of curves and their ordering, including
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// an optional curve at the beginning (for Tor based on Firefox 52)
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infoCurves := info.curves
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if len(info.curves) == 4 {
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if info.curves[0] != 29 {
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return false
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}
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infoCurves = info.curves[1:]
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}
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requiredCurves := []tls.CurveID{23, 24, 25}
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if len(infoCurves) < len(requiredCurves) {
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return false
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}
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for i := range requiredCurves {
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if infoCurves[i] != requiredCurves[i] {
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return false
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}
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}
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if hasGreaseCiphers(info.cipherSuites) {
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return false
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}
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// We check for order of cipher suites but not presence, since
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// according to the paper, cipher suites may be not be added
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// or reordered by the user, but they may be disabled.
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expectedCipherSuiteOrder := []uint16{
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TLS_AES_128_GCM_SHA256, // 0x1301
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TLS_CHACHA20_POLY1305_SHA256, // 0x1303
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TLS_AES_256_GCM_SHA384, // 0x1302
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tls.TLS_ECDHE_ECDSA_WITH_AES_128_GCM_SHA256, // 0xc02b
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tls.TLS_ECDHE_RSA_WITH_AES_128_GCM_SHA256, // 0xc02f
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tls.TLS_ECDHE_ECDSA_WITH_CHACHA20_POLY1305, // 0xcca9
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tls.TLS_ECDHE_RSA_WITH_CHACHA20_POLY1305, // 0xcca8
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tls.TLS_ECDHE_ECDSA_WITH_AES_256_GCM_SHA384, // 0xc02c
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tls.TLS_ECDHE_RSA_WITH_AES_256_GCM_SHA384, // 0xc030
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tls.TLS_ECDHE_ECDSA_WITH_AES_256_CBC_SHA, // 0xc00a
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tls.TLS_ECDHE_ECDSA_WITH_AES_128_CBC_SHA, // 0xc009
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tls.TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA, // 0xc013
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tls.TLS_ECDHE_RSA_WITH_AES_256_CBC_SHA, // 0xc014
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TLS_DHE_RSA_WITH_AES_128_CBC_SHA, // 0x33
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TLS_DHE_RSA_WITH_AES_256_CBC_SHA, // 0x39
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tls.TLS_RSA_WITH_AES_128_CBC_SHA, // 0x2f
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tls.TLS_RSA_WITH_AES_256_CBC_SHA, // 0x35
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tls.TLS_RSA_WITH_3DES_EDE_CBC_SHA, // 0xa
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}
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return assertPresenceAndOrdering(expectedCipherSuiteOrder, info.cipherSuites, false)
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}
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// assertPresenceAndOrdering will return true if candidateList contains
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// the items in requiredItems in the same order as requiredItems.
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//
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@ -132,6 +132,16 @@ func TestHeuristicFunctionsAndHandler(t *testing.T) {
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helloHex: `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`,
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interception: false,
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},
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{
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userAgent: "Mozilla/5.0 (Macintosh; Intel Mac OS X 10_12_5) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/58.0.3029.110 Safari/537.36",
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helloHex: `010000c203034166c97e2016046e0c88ad867c410d0aee470f4d9b4ec8fe41a751d2a6348e3100001c4a4ac02bc02fc02cc030cca9cca8c013c014009c009d002f0035000a0100007dcaca0000ff0100010000000014001200000f66696e6572706978656c732e636f6d0017000000230000000d00140012040308040401050308050501080606010201000500050100000000001200000010000e000c02683208687474702f312e3175500000000b00020100000a000a00086a6a001d001700187a7a000100`,
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interception: false,
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},
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{
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userAgent: "Mozilla/5.0 (Macintosh; Intel Mac OS X 10_12_5) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/58.0.3029.110 Safari/537.36",
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helloHex: `010000c203037741795e73cd5b4949f79a0dc9cccc8b006e4c0ec324f965c6fe9f0833909f0100001c7a7ac02bc02fc02cc030cca9cca8c013c014009c009d002f0035000a0100007d7a7a0000ff0100010000000014001200000f66696e6572706978656c732e636f6d0017000000230000000d00140012040308040401050308050501080606010201000500050100000000001200000010000e000c02683208687474702f312e3175500000000b00020100000a000a00084a4a001d001700185a5a000100`,
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interception: false,
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},
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},
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"Firefox": {
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{
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@ -155,6 +165,12 @@ func TestHeuristicFunctionsAndHandler(t *testing.T) {
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helloHex: `010001fc030331e380b7d12018e1202ef3327607203df5c5732b4fa5ab5abaf0b60034c2fb662070c836b9b89123e37f4f1074d152df438fa8ee8a0f89b036fd952f4fcc0b994f001c130113031302c02bc02fcca9cca8c02cc030c013c014002f0035000a0100019700000014001200000f63616464797365727665722e636f6d00170000ff01000100000a000e000c001d00170018001901000101000b0002010000230078c97e7716a041e2ea824571bef26a3dff2bf50a883cd15d904ab2d17deb514f6e0a079ee7c212c000178387ffafc2e530b6df6662f570aae134330f13c458a0eaad5a96a9696f572110918740b15db1143d19aaaa706942030b433a7e6150f62b443c0564e5b8f7ee9577bf3bf7faec8c67425b648ab54d880010000e000c02683208687474702f312e310005000501000000000028006b0069001d0020aee6e596155ee6f79f943e81ceabe0979d27fbbb8b9189ccb2ebc75226351f32001700410421875a44e510decac11ef1d7cfddd4dfe105d5cd3a2d42fba03ebde23e51e8ce65bda1b48be82d4848d1db2bfce68e94092e925a9ce0dbf5df35479558108489002b0009087f12030303020301000d0018001604030503060308040805080604010501060102030201002d000201010015002500000000000000000000000000000000000000000000000000000000000000000000000000`,
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interception: false,
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},
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{
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// Firefox on Fedora (RedHat) doesn't include ECC ciphers because of patent liabilities
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userAgent: "Mozilla/5.0 (X11; Fedora; Linux x86_64; rv:53.0) Gecko/20100101 Firefox/53.0",
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helloHex: `010000b70303f5280b74d617d42e39fd77b78a2b537b1d7787ce4fcbcf3604c9fbcd677c6c5500001ec02bc02fcca9cca8c02cc030c00ac009c013c01400330039002f0035000a0100007000000014001200000f66696e6572706978656c732e636f6d00170000ff01000100000a000a0008001d001700180019000b00020100002300000010000e000c02683208687474702f312e31000500050100000000000d0018001604030503060308040805080604010501060102030201`,
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interception: false,
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},
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},
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"Edge": {
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{
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@ -170,6 +186,18 @@ func TestHeuristicFunctionsAndHandler(t *testing.T) {
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interception: false,
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},
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},
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"Tor": {
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{
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userAgent: "Mozilla/5.0 (Windows NT 6.1; rv:45.0) Gecko/20100101 Firefox/45.0",
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helloHex: `010000a40303137f05d4151f2d9095aee4254416d9dce73d6a1d857e8097ea20d021c04a7a81000016c02bc02fc00ac009c013c01400330039002f0035000a0100006500000014001200000f66696e6572706978656c732e636f6dff01000100000a00080006001700180019000b00020100337400000010000b000908687474702f312e31000500050100000000000d001600140401050106010201040305030603020304020202`,
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interception: false,
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},
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{
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userAgent: "Mozilla/5.0 (Windows NT 6.1; rv:52.0) Gecko/20100101 Firefox/52.0",
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helloHex: `010000b4030322e1f3aff4c37caba303c2ce53ba1689b3e70117a46f413d44f70a74cb6a496100001ec02bc02fcca9cca8c02cc030c00ac009c013c01400330039002f0035000a0100006d00000014001200000f66696e6572706978656c732e636f6d00170000ff01000100000a000a0008001d001700180019000b000201000010000b000908687474702f312e31000500050100000000ff030000000d0018001604030503060308040805080604010501060102030201`,
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interception: false,
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},
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},
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"Other": { // these are either non-browser clients or intercepted client hellos
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{
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// openssl s_client (OpenSSL 0.9.8zh 14 Jan 2016) - NOT an interception, but not a browser either
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@ -270,6 +298,7 @@ func TestHeuristicFunctionsAndHandler(t *testing.T) {
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isFirefox := parsed.looksLikeFirefox()
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isSafari := parsed.looksLikeSafari()
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isEdge := parsed.looksLikeEdge()
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isTor := parsed.looksLikeTor()
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// we want each of the heuristic functions to be as
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// exclusive but as low-maintenance as possible;
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@ -280,20 +309,22 @@ func TestHeuristicFunctionsAndHandler(t *testing.T) {
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var correct bool
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switch client {
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case "Chrome":
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correct = isChrome && !isFirefox && !isSafari && !isEdge
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correct = isChrome && !isFirefox && !isSafari && !isEdge && !isTor
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case "Firefox":
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correct = !isChrome && isFirefox && !isSafari && !isEdge
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correct = !isChrome && isFirefox && !isSafari && !isEdge && !isTor
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case "Safari":
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correct = !isChrome && !isFirefox && isSafari && !isEdge
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correct = !isChrome && !isFirefox && isSafari && !isEdge && !isTor
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case "Edge":
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correct = !isChrome && !isFirefox && !isSafari && isEdge
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correct = !isChrome && !isFirefox && !isSafari && isEdge && !isTor
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case "Tor":
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correct = !isChrome && !isFirefox && !isSafari && !isEdge && isTor
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case "Other":
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correct = !isChrome && !isFirefox && !isSafari && !isEdge
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correct = !isChrome && !isFirefox && !isSafari && !isEdge && !isTor
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}
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if !correct {
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t.Errorf("[%s] Test %d: Chrome=%v, Firefox=%v, Safari=%v, Edge=%v; parsed hello: %+v",
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client, i, isChrome, isFirefox, isSafari, isEdge, parsed)
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t.Errorf("[%s] Test %d: Chrome=%v Firefox=%v Safari=%v Edge=%v Tor=%v\n\tparsed hello dec: %+v\n\tparsed hello hex: %#x\n",
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client, i, isChrome, isFirefox, isSafari, isEdge, isTor, parsed, parsed)
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}
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// test the handler too
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@ -312,7 +312,6 @@ func (r *replacer) getSubstitution(key string) string {
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if val {
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return "likely"
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}
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return "unlikely"
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}
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return "unknown"
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