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authorDaniel Baumann <daniel.baumann@progress-linux.org>2021-03-20 20:11:58 +0000
committerDaniel Baumann <daniel.baumann@progress-linux.org>2021-03-20 20:11:58 +0000
commit18804a5d263d13e7ff0e1bf9479721d088a7512e (patch)
tree4414400cb37916128f18556d74b046e298f8a5b2
parentInitial commit. (diff)
downloadtestssl.sh-18804a5d263d13e7ff0e1bf9479721d088a7512e.tar.xz
testssl.sh-18804a5d263d13e7ff0e1bf9479721d088a7512e.zip
Adding upstream version 3.0.4+dfsg1.upstream/3.0.4+dfsg1upstream
Signed-off-by: Daniel Baumann <daniel.baumann@progress-linux.org>
-rw-r--r--.github/ISSUE_TEMPLATE.md16
-rw-r--r--.gitignore8
-rw-r--r--.travis.yml15
-rw-r--r--CHANGELOG.md488
-rw-r--r--CONTRIBUTING.md15
-rw-r--r--CREDITS.md174
-rw-r--r--Dockerfile20
-rw-r--r--Dockerfile.md34
-rw-r--r--LICENSE339
-rw-r--r--Readme.md126
-rw-r--r--bin/OPENSSL-LICENSE.txt127
-rw-r--r--bin/Readme.md134
-rw-r--r--bin/fedora-dirk-ipv6.diff531
-rw-r--r--bin/krb5-ciphers.txt54
-rw-r--r--bin/new-ciphers.diffed2vanilla.txt102
-rw-r--r--bin/new-ciphers.std_distro.txt188
-rw-r--r--bin/openssl-Vall.krb.txt144
-rw-r--r--bin/openssl-Vall.txt192
-rw-r--r--doc/testssl.1893
-rw-r--r--doc/testssl.1.html623
-rw-r--r--doc/testssl.1.md516
-rw-r--r--etc/Apple.pem4571
-rw-r--r--etc/Java.pem2357
-rw-r--r--etc/Linux.pem3256
-rw-r--r--etc/Microsoft.pem11392
-rw-r--r--etc/Mozilla.pem3435
-rw-r--r--etc/README.md38
-rw-r--r--etc/ca_hashes.txt427
-rw-r--r--etc/cipher-mapping.txt370
-rw-r--r--etc/client-simulation.txt3180
-rw-r--r--etc/client-simulation.wiresharked.md28
-rw-r--r--etc/client-simulation.wiresharked.txt553
-rw-r--r--etc/common-primes.txt308
-rw-r--r--etc/curves.txt31
-rwxr-xr-xetc/tls_data.txt304
-rw-r--r--openssl-iana.mapping.html468
-rwxr-xr-xt/00_testssl_help.t51
-rwxr-xr-xt/01_testssl_banner.t47
-rwxr-xr-xt/02_clientsim_txt_parsable.t26
-rwxr-xr-xt/05_ca_hashes_up_to_date.t12
-rwxr-xr-xt/07_isJSON_valid.t86
-rwxr-xr-xt/08_isHTML_valid.t76
-rwxr-xr-xt/09_isJSON_severitylevel_valid.t60
-rwxr-xr-xt/20_baseline_ipv4_http.t60
-rwxr-xr-xt/21_baseline_ipv6_http.t.DISABLED62
-rwxr-xr-xt/23_client_simulation.t74
-rwxr-xr-xt/25_baseline_starttls.t163
-rwxr-xr-xt/51_badssl.com.t142
-rwxr-xr-xt/59_hpkp.t.tmpDISABLED80
-rw-r--r--t/Readme.md10
-rwxr-xr-xtestssl.sh20199
-rwxr-xr-xutils/00_unittest_baseline.sh104
-rwxr-xr-xutils/ccs-injection.bash356
-rwxr-xr-xutils/checkcert.sh343
-rwxr-xr-xutils/create_ca_hashes.sh47
-rwxr-xr-xutils/curves.bash94
-rw-r--r--utils/docker-debian10.tls13only.start.sh31
-rw-r--r--utils/docker-nginx.tls13-earlydata.start.sh57
-rwxr-xr-xutils/generate_static_cipher_lists.sh372
-rwxr-xr-xutils/gmap2testssl.sh42
-rwxr-xr-xutils/heartbleed.bash307
-rwxr-xr-xutils/hexstream2cipher.sh36
-rwxr-xr-xutils/make-openssl.sh160
-rwxr-xr-xutils/make-openssl111.sh98
-rwxr-xr-xutils/parse_client_ciphers.pl43
-rwxr-xr-xutils/prototype.ssl2proto-check.bash232
-rwxr-xr-xutils/prototype.tls-protocol-checker.bash372
-rwxr-xr-xutils/resume.sh20
-rwxr-xr-xutils/ticketbleed.bash352
-rwxr-xr-xutils/update_client_sim_data.pl496
70 files changed, 60167 insertions, 0 deletions
diff --git a/.github/ISSUE_TEMPLATE.md b/.github/ISSUE_TEMPLATE.md
new file mode 100644
index 0000000..0ce0f1f
--- /dev/null
+++ b/.github/ISSUE_TEMPLATE.md
@@ -0,0 +1,16 @@
+Please make sure that you provide enough information so that we understand what your issue is about.
+
+1. uname -a
+
+2. testssl version from the banner: testssl.sh -b 2>/dev/null | head -4 | tail -2
+
+3. git log | head -1 (if running from git repo)
+
+4. openssl version used by testssl.sh: testssl.sh -b 2>/dev/null | awk -F':' '/openssl/ { print $2}'
+
+5. steps to reproduce: testssl.sh or docker command line, if possible incl. host
+
+6. what exactly was happening, output is needed
+
+7. what did you expect instead?
+
diff --git a/.gitignore b/.gitignore
new file mode 100644
index 0000000..02eb7e2
--- /dev/null
+++ b/.gitignore
@@ -0,0 +1,8 @@
+.DS_Store
+tmp.json
+*.bak
+*.json
+*.csv
+*.log
+*.xml
+*.iml
diff --git a/.travis.yml b/.travis.yml
new file mode 100644
index 0000000..950e14b
--- /dev/null
+++ b/.travis.yml
@@ -0,0 +1,15 @@
+language: perl
+perl:
+ - "5.26"
+addons:
+ apt:
+ packages:
+ - dnsutils
+ - jsonlint
+install:
+ - cpanm --notest Test::More
+ - cpanm --notest Data::Dumper
+ - cpanm --notest JSON
+# - cpanm JSON::Validator
+script:
+ - prove -v
diff --git a/CHANGELOG.md b/CHANGELOG.md
new file mode 100644
index 0000000..289f81a
--- /dev/null
+++ b/CHANGELOG.md
@@ -0,0 +1,488 @@
+
+## Change Log
+
+### Features implemented / improvements in 3.0
+
+* Full support of TLS 1.3, shows also drafts supported
+* Extended protocol downgrade checks
+* ROBOT check
+* Better TLS extension support
+* Better OpenSSL 1.1.1 and higher versions support as well as LibreSSL >3
+* More robustness for OpenBSD
+* DNS over Proxy and other proxy improvements
+* Decoding of unencrypted BIG IP cookies
+* Initial client certificate support
+* Warning of 825 day limit for certificates issued after 2018/3/1
+* Socket timeouts (``--connect-timeout``)
+* IDN/IDN2 servername/URI + emoji support, supposed libidn/idn2 is installed and DNS resolver is recent) support
+* Initial support for certificate compression
+* Better JSON output: renamed IDs and findings shorter/better parsable, also includes certficate
+* JSON output now valid also for non-responding servers
+* Testing now per default 370 ciphers
+* Further improving the robustness of TLS sockets (sending and parsing)
+* Support of supplying timeout value for `openssl connect` -- useful for batch/mass scanning
+* File input for serial or parallel mass testing can be also in nmap grep(p)able (-oG) format
+* LOGJAM: now checking also for DH and FFDHE groups (TLS 1.2)
+* PFS: Display of elliptical curves supported, DH and FFDHE groups (TLS 1.2 + TLS 1.3)
+* Check for session resumption (Ticket, ID)
+* TLS Robustness check GREASE and more
+* Server preference distinguishes between TLS 1.3 and lower protocols
+* Mark TLS 1.0 and TLS 1.1 as deprecated
+* Does a few startup checks which make later tests easier and faster (``determine_optimal_\*()``)
+* Expect-CT Header Detection
+* `--phone-out` does certificate revocation checks via OCSP (LDAP+HTTP) and with CRL
+* `--phone-out` checks whether the private key has been compromised via https://pwnedkeys.com/
+* Missing SAN warning
+* Added support for private CAs
+* Way better handling of connectivity problems (counting those, if threshold exceeded -> bye)
+* Fixed TCP fragmentation
+* Added `--ids-friendly` switch
+* Exit codes better: 0 for running without error, 1+n for small errors, >240 for major errors.
+* Better error msg suppression (not fully installed OpenSSL)
+* Better parsing of HTTP headers & better output of longer HTTP headers
+* Display more HTTP security headers
+* HTTP Basic Auth support for HTTP header
+* experimental "eTLS" detection
+* Dockerfile and repo @ docker hub with that file (see above)
+* Java Root CA store added
+* Better support for XMPP via STARTTLS & faster
+* Certificate check for to-name in stream of XMPP
+* Support for NNTP and LMTP via STARTTLS, fixes for MySQL and PostgresQL
+* Support for SNI and STARTTLS
+* More robustness for any STARTTLS protocol (fall back to plaintext while in TLS caused problems)
+* Renegotiation checks improved, also no false potive for Node.js anymore
+* Major update of client simulations with self-collected up-to-date data
+* Update of CA certificate stores
+* Lots of bug fixes
+* More travis/CI checks -- still place for improvements
+* Man page reviewed
+
+### Features implemented / improvements in 2.9.5
+
+* Way better coverage of ciphers as most checks are done via bash sockets where ever possible
+* Further tests via TLS sockets and improvements (handshake parsing, completeness, robustness)
+* Testing 359 default ciphers (``testssl.sh -e/-E``) with a mixture of sockets and openssl. Same speed as with openssl only but addtional ciphers such as post-quantum ciphers, new CHAHA20/POLY1305, CamelliaGCM etc.
+* TLS 1.2 protocol check via sockets in production
+* Finding more TLS extensions via sockets
+* TLS Supported Groups Registry (RFC 7919), key shares extension
+* Non-flat JSON output support
+* File output (CSV, JSON flat, JSON non-flat) supports a minimum severity level (only above supplied level there will be output)
+* Native HTML support instead going through 'aha'
+* LUCKY13 and SWEET32 checks
+* Ticketbleed check
+* LOGJAM: now checking also for known DH parameters
+* Support of supplying timeout value for ``openssl connect`` -- useful for batch/mass scanning
+* Parallel mass testing
+* Check for CAA RR
+* Check for OCSP must staple
+* Check for Certificate Transparency
+* Check for session resumption (Ticket, ID)
+* Better formatting of output (indentation)
+* Choice showing the RFC naming scheme only
+* File input for mass testing can be also in nmap grep(p)able (-oG) format
+* Postgres und MySQL STARTTLS support
+* Man page
+
+
+### New in 2.8
+
+* Trust chain check against certificate stores from Apple (OS), Linux (OS),
+ Microsoft (OS), Mozilla (Firefox Browser), works for openssl >=1.0.1
+* IPv6 (status: 80% working, details see
+ https://github.com/drwetter/testssl.sh/issues/11
+* works now on servers requiring a x509 certificate for authentication
+* extensive CN <--> hostname check
+* SSL Session ID check
+* Avahi/mDNS based name resolution
+* HTTP2/ALPN protocol check
+* Logging to a file / dir
+* Logging to (flat) JSON + CSV
+* HPKP checks now also for Root, intermediate SPKIs
+* Check for multiple server certificates
+* Browser cipher simulation: what client will connect with which cipher + protocol
+* GOST cipher+certificate improvements
+* Assistance for color-blind users
+* Even more compatibility improvements for FreeBSD, NetBSD, Gentoo, RH-ish, F5 and Cisco systems
+* Considerable speed improvements for each cipher runs (-e/-E)
+* More robust SSLv2 + TLS socket interface
+* seperate check for curves
+* OpenSSL 1.1.0 compliant
+* check for DROWN
+* Whole number of bugs squashed
+
+### New in 2.6
+
+ * Display matching host key (HPKP)
+ * LOGJAM 1: check DHE_EXPORT cipher
+ * LOGJAM 2: displays DH(/ECDH) bits in wide mode on negotiated ciphers
+ * "wide mode" option for checks like RC4, BEAST. PFS. Displays hexcode, kx, strength, DH bits, RFC name
+ * binary directory provides out of the box better binaries (Linux 32+64 Bit, Darwin 64 bit, FreeBSD 64 bit)
+ * OS X binaries (@jvehent, new builds: @jpluimers)
+ * ARM binary (@f-s)
+ * FreeBSD binary
+ * TLS_FALLBACK_SCSV check -- thx @JonnyHightower
+ * (HTTP) proxy support! Also with sockets -- thx @jnewbigin
+ * Extended validation certificate detection
+ * Run in default mode through all ciphers at the end of a default run
+ * will test multiple IP adresses of one supplied server name in one shot, --ip= restricts it accordingly
+ * new mass testing file option --file option where testssl.sh commands are being read from, see https://twitter.com/drwetter/status/627619848344989696
+ * TLS time and HTTP time stamps
+ * TLS time displayed also for STARTTLS protocols
+ * support of sockets for STARTTLS protocols
+ * TLS 1.0-1.1 as socket checks per default in production
+ * further detection of security relevant headers (reverse proxy, IPv4 addresses), proprietary banners (OWA, Liferay etc.)
+ * can scan STARTTLS+XMPP by also supplying the XMPP domain (to-option in XML streams).
+ * quite some LibreSSL fixes, still not recommended to use though (see https://testssl.sh/)
+ * lots of fixes, code improvements, even more robust
+
+Full log @ https://github.com/drwetter/testssl.sh/commits/2.6/testssl.sh
+
+
+### New in 2.4
+ * "only one cmd line option at a time" is completely gone
+ * several tuning parameters on the cmd line (only available through environment variables b4): --assuming-http, --ssl-native, --sneaky, --warnings, --color, -- debug, --long
+ * certificate information
+ * more HTTP header infos (cookies+security headers)
+ * protocol check via bash sockets for SSLv2+v3
+ * debug handling significantly improved (verbosity/each function leaves files in $TEMPDIR)
+ * BEAST check
+ * FREAK check
+ * check for Secure Client-Initiated Renegotiation
+ * lots of cosmetic and maintainability code cleanups
+ * bugfixing
+
+Full changelog: https://github.com/drwetter/testssl.sh/commits/2.4/testssl.sh
+
+### 2.2. new features:
+ * Works fully under FreeBSD (openssl >=1.0)
+ * single cipher check (-x) with pattern of hexcode/cipher
+ * check for POODLE SSL
+ * HPKP check
+ * OCSP stapling
+ * GOST and CHACHA20 POLY1305 cipher support
+ * service detection (HTTP, IMAP, POP, SMTP)
+ * runs now with all colors, b/w screen, no escape codes at all
+ * protocol check better
+ * job control removes stalling
+ * RFC <---> OpenSSL name space mapping of ciphers everywhere
+ * includes a lot of fixes
+
+Full changelog @ https://github.com/drwetter/testssl.sh/commits/2.2/testssl.sh
+
+### 2.0 major release, new features:
+ * SNI
+ * STARTTLS fully supported
+ * RC4 check
+ * (P)FS check
+ * SPDY check
+ * color codes make more sense now
+ * cipher hexcodes are shown
+ * tests ciphers per protocol
+ * HSTS
+ * web and application server banner
+ * server prefereences
+ * TLS server extensions
+ * server key size
+ * cipher suite mapping from openssl to RFC
+ * heartbleed check
+ * CCS injection check
+
+### Historical releases
+
+1.112
+- IPv6 display fix
+
+1.111
+- NEW: tested unter FreeBSD (works with exception of xxd in CCS)
+- getent now works under Linux and FreeBSD
+- sed -i in hsts sacrificed for compatibility
+- reomved query for IP for finishing banner, is now called once in parse_hn_port
+- GOST warning after banner
+- empty build date is not displayed anymore
+- long build date strings minimized
+- FIXED: IPv6 address are displayed again
+
+1.110
+- NEW: adding Russian GOST cipher support by providing a config file on the fly
+- adding the compile date of openssl in the banner
+
+1.109
+- minor IPv6 fixes
+
+1.108
+- NEW: Major rewrite of output functions. Now using printf instead of "echo -e" for BSD and MacOSX compatibility
+
+1.107
+- improved IP address stuff
+
+1.106
+- minor fixes
+
+1.105
+- NEW: working prototype for CCS injection
+
+1.104
+- NEW: everywhere *also* RFC style ciphers -- if the mapping file is found
+- unitary calls to display cipher suites
+
+1.103
+- NEW: telnet support for STARTTLS (works only with a patched openssl version)
+ --> not tested (lack of server)
+
+1.102
+- NEW: test for BREACH (experimental)
+
+.101
+- BUGFIX: muted too verbose output of which on CentOS/RHEL
+- BUGFIX: muted too verbose output of netcat/nc on CentOS/RHEL+Debian
+
+1.100
+- further cleanup
+ - starttls now tests allciphers() instead of cipher_per_proto
+ (normal use case makes most sense here)
+ - ENV J_POSITIV --> SHOW_EACH_C
+- finding mapping-rfc.txt is now a bit smarter
+- preparations for ChaCha20-Poly1305 (would have provided binaries but
+ "openssl s_client -connect" with that ciphersuite fails currently with
+ a handshake error though client and server hello succeeded!)
+
+1.99
+- BUGFIX: now really really everywhere testing the IP with supplied name
+- locking out openssl < 0.9.8f, new function called "old_fart" ;-)
+- FEATURE: displaying PTR record of IP
+- FEATURE: displaying further IPv4/IPv6 addresses
+- bit of a cleanup
+
+1.98
+- http_header is in total only called once
+- better parsing of default protocol (FIXME shouldn't appear anymore)
+
+1.97
+- reduced sleep time for server hello and payload reply (heartbleed)
+
+1.96
+- NEW: (experimental) heartbleed support with bash sockets (shell only SSL handshake!)
+ see also https://testssl.sh/bash-heartbleed.sh
+
+1.95 (2.0rc3)
+- changed cmdline options for CRIME and renego vuln to uppercase
+- NEW: displays server key size now
+- NEW: displays TLS server extensions (might kill old openssl versions)
+- brown warning if HSTS < 180 days
+- brown warning if SSLv3 is offered as default protocol
+
+1.94
+- NEW: prototype of mapping to RFC cipher suite names, needed file mapping-rfc.txt in same dir
+ as of now only used for 'testssl.sh -V'
+- internal renaming: it was supposed to be "cipherlists" instead of "ciphersuites"
+- additional tests for cipherlists DES, 3DES, ADH
+
+1.93
+- BUGFIX: removed space in Server banner fixed (at the expense of showing just nothing if Server string is empty)
+
+1.92
+- BUGFIX: fixed error of faulty detected empty server string
+
+1.91
+- replaced most lcyan to brown (=not really bad but somehow)
+- empty server string better displayed
+- prefered CBC TLS 1.2 cipher is now brown (lucky13)
+
+1.90
+- fix for netweaver banner (server is lowercase)
+- no server banner is no disadvantage (color code)
+
+
+1.89
+- reordered! : protocols + cipher come first
+- colorized prefered server preference (e.g. CBC+RC4 is light red now, TLSv1.2 green)
+- SSLv3 is now light cyan
+- NEW: -P|--preference now in help menu
+- light cyan is more appropriate than red for HSTS
+
+1.88
+- NEW: prototype for protocol and cipher preference
+- prototype for session ticket
+
+1.87
+- changed just the version string to rc1
+
+1.86
+ - NEW: App banner now production, except 2 liners
+ - DEBUG: 1 is now true as everywhere else
+ - CRIME+Renego prettier
+ - last optical polish for RC4, PFS
+
+1.85
+ - NEW: appbanner (also 2 lines like asp.net)
+ - OSSL_VER_MAJOR/MINOR/APPENDIX
+ - less bold because bold headlines as bold should be reserved for emphasize findings
+ - tabbed output also for protocols and cipher classes
+ - unify neat printing
+
+1.84
+ - NEW: deprecating openssl version <0.98
+ - displaying a warning >= 0.98 < 1.0
+ - NEW: neat print also for all ciphers (-E,-e)
+
+1.83
+- BUGFIX: results from unit test: logical error in PFS+RC4 fixed
+- headline of -V / PFS+RC4 ciphers unified
+
+1.82
+- NEW: output for -V now better (bits seperate, spacing improved)
+
+1.81
+- output for RC4+PFS now better (with headline, bits seperate, spacing improved)
+- both also sorted by encr. strength .. umm ..err bits!
+
+1.80
+- order of finding supplied binary extended (first one wins):
+ 1. use supplied variable $OPENSSL
+ 2. use "openssl" in same path as testssl.sh
+ 3. use "openssl.`uname -m`" in same path as testssl.sh
+ 4. use anything in system $PATH (return value of "which"
+
+1.79
+- STARTTLS options w/o trailing 's' now (easier)
+- commented code for CRIME SPDY
+- issue a warning for openssl < 0.9.7 ( that version won't work anyway probably)
+
+1.78
+- -E, -e now sorted by encryption strength (note: it's only encr key length)
+- -V now pretty prints all local ciphers
+- -V <pattern> now pretty prints all local ciphers matching pattern (plain string, no regex)
+- bugfix: SSLv2 cipher hex codes has 3 bytes!
+
+1.77
+- removed legacy code (PROD_REL var)
+
+1.76
+- bash was gone!! desaster for Ubuntu, fixed
+- starttls+rc4 check: bottom line was wrong
+- starttls had too much output (certificate) at first a/v check
+
+1.75
+- location is now https://testssl.sh
+- be nice: banner, version, help also works for BSD folks (on dash)
+- bug in server banner fixed
+- sneaky referer and user agent possible
+
+1.74
+- Debian 7 fix
+- ident obsoleted
+
+1.72
+- removed obsolete GREP
+- SWURL/SWCONTACT
+- output for positive RC4 better
+
+1.71
+- workaround for buggy bash (RC4)
+- colors improved
+ - blue is now reserved for headline
+ - magenta for local probs
+ - in RC4 removal of SSL protocol provided by openssl
+
+1.70
+- DEBUG in http_headers now as expected
+- <?xml marker as HTML body understood
+
+1.69
+- HTTP 1.1 header
+- removed in each cipher the proto openssl is returning
++ NEW: cipher_per_proto
+
+1.68
+- header parser for openssl
+- HSTS
+
+[..]
+
+1.36
+* fixed issue while connecting to non-webservers
+
+1.35
+* fixed portability issue on Ubuntu
+
+1.34
+* ip(v4) address in output, helps to tell different systems apart later on
+* local hostname in output
+
+1.31 (Halloween Release)
+* bugfix: SSLv2 was kind of borken
+* now it works for sure but ssl protocol are kind of ugly
+
+1.30b (25.10.2012)
+* bugfix: TLS 1.1/1.2 may lead to false negatives
+* bugfix: CMDLINE -a/-e was misleading, now similar to help menu
+
+1.3 (10/13/2012)
+* can test now for cipher suites only
+* can test now for protocols suites only
+* tests for tls v1.1/v1.2 of local openssl supports it
+* commandline "all "is rename to "each-cipher"
+* banner when it's done
+
+1.21a (10/4/2012)
+* tests whether openssl has support for zlib compiled so that it avoids a false negative
+
+1.21 (10/4/2012)
+* CRIME support
+
+1.20b
+* bugfixed release
+
+1.20a
+* code cleanup
+* showciphers variable introduced: only show ciphers if this is set (it is by
+ default now and there's a comment
+* openssl version + path to it in the banner
+
+
+1.20
+* bugfix (ssl in ssl handshake failure is sometimes too much)
+* date in output
+* autodetection of CVS version removed
+
+1.19
+* bugfix
+1.18
+* Rearragement of arguments: URL comes now always last!
+* small code cleanups for readability
+* individual cipher test is now with bold headline, not blue
+* NOPARANOID flag tells whether medium grade ciphers are ok. NOW they are (=<1.17 was paranoid)
+
+1.17
+* SSL tests now for renegotiation vulnerabilty!
+* version detection of testssl.sh
+* program has a banner
+* fixed bug leading to a file named "1"
+* comment for 128Bit ciphers
+
+1.16
+* major code cleanups
+* cmd line options: port is now in first argument!!
+* help is more verbose
+* check whether on other server side is ssl server listening
+* https:// can be now supplied also on the command line
+* test all ciphers now
+* new cleanup routine
+* -a does not do standard test afterward, you need to run testssl a second
+ time w/o -a if you want this
+
+1.12
+* tests also medium grade ciphers (which you should NOT use)
+* tests now also high grade ciphers which you SHOULD ONLY use
+* switch for more verbose output of cipher for those cryptographically interested .
+ in rows: SSL version, Key eXchange, Authentication, Encryption and Message Authentication Code
+* this is per default enabled (provide otherwise "" as VERB_CLIST)
+* as a courtesy I am providing 64+32 Linux binaries for testing 56 Bit ciphers
+
+1.11
+* Hint for howto enable 56 Bit ciphers fpr testing
+* possible to specify where openssl is (hardcoded, $ENV, last resort: auto)
+* warns if netcat is not there
+
+1.10
+* somewhat first released version
diff --git a/CONTRIBUTING.md b/CONTRIBUTING.md
new file mode 100644
index 0000000..48acd15
--- /dev/null
+++ b/CONTRIBUTING.md
@@ -0,0 +1,15 @@
+
+### Contributions / participation
+
+is always welcome.
+
+Note please that following is strongly requested:
+
+* One PR per feature or bug fix or improvement.
+* Document your PR properly, both in the PR and/or commit message and in the code.
+* Please test your changes thoroughly as reliability is important for this project.
+* Follow the length [coding guideline](https://github.com/drwetter/testssl.sh/wiki/Coding-Style).
+
+
+If it's a new feature please consider writing a unit test for it. There's a directory ~/t/ which Travis runs automatically when anything is committed. You can use e.g. `20_baseline_ipv4_http.t` as a template. There's also [general documentation for Test::More](https://perldoc.perl.org/Test/More.html).
+
diff --git a/CREDITS.md b/CREDITS.md
new file mode 100644
index 0000000..38ccced
--- /dev/null
+++ b/CREDITS.md
@@ -0,0 +1,174 @@
+
+Full contribution, see git log.
+
+* Dirk Wetter (creator, maintainer and main contributor)
+ - Everything what's not mentioned below and is included in testssl.sh's git log
+ minus what I probably forgot to mention
+ (too much other things to do at the moment and to list it would be a tough job)
+
+* David Cooper (main contributor)
+ - Major extensions to socket support for all protocols
+ - extended parsing of TLS ServerHello messages
+ - TLS 1.3 support (final and pre-final)
+ - add several TLS extensions
+ - Detection + output of multiple certificates
+ - several cleanups of server certificate related stuff
+ - testssl.sh -e/-E: testing with a mixture of openssl + sockets
+ - add more ciphers
+ - coloring of ciphers
+ - extensive CN+SAN <--> hostname check
+ - separate check for curves
+ - RFC 7919, key shares extension
+ - keyUsage extension in certificate
+ - experimental "eTLS" detection
+ - parallel mass testing!
+ - RFC <--> OpenSSL cipher name space switches for the command line
+ - better error msg suppression (not fully installed openssl
+ - GREASE support
+ - Bleichenbacher / ROBOT vulnerability test
+ - several protocol preferences improvements
+ - pwnedkeys.com support
+ - CT support
+ - Lots of fixes and improvements
+
+##### Further credits (in alphabetical order)
+
+* a666
+ - Bugfix
+
+* Christoph Badura
+ - NetBSD fixes
+
+* Frank Breedijk
+ - Detection of insecure redirects
+ - JSON and CSV output
+ - CA pinning
+ - Client simulations
+ - CI integration, some test cases for it
+
+ * Steven Danneman
+ - Postgres and MySQL STARTTLS support
+ - MongoDB support
+
+* Christian Dresen
+ - Dockerfile
+
+* csett86
+ - some MacOSX and Java client handshake data
+
+* Mark Felder
+ - lots of cleanups
+ - Shellcheck static analysis
+
+* Laine Gholson
+ - avahi/mDNS support
+ - HTTP2/ALPN
+ - bugfixes
+ - former ARM binary support
+
+* Maciej Grela
+ - colorless handling
+
+* Jac2NL
+ - initial support for skipping offensive vulnerability tests
+
+* Scott Johnson
+ - Bugfix F5
+
+* Hubert Kario
+ - helped with avoiding accidental TCP fragmentation
+
+* Jacco de Leeuw
+ - skip checks which might trigger an IDS ($OFFENSIVE / --ids-friendly)
+
+* Manuel
+ - HTTP basic auth
+
+* Markus Manzke
+ - Fix for HSTS + subdomains
+ - LibreSSL patch
+
+* Jean Marsault
+ - client auth: ideas, code snipplets
+
+* Thomas Martens
+ - adding colorblind option
+ - no-rfc mapping
+
+* Peter Mosmans
+ - started way better cmd line parsing
+ - cleanups, fixes
+ - openssl sources support with the "missing" features
+
+* John Newbigin
+ - Proxy support (sockets and openssl)
+
+* Oleksandr Nosenko
+ - non-flat JSON support (--json-pretty)
+ - in file output (CSV, JSON flat, JSON non-flat) support of a minimum severity level
+
+* Jonathan Roach
+ - TLS_FALLBACK_SCSV checks
+
+* Jonathon Rossi
+ - fix for bash3 (Darwin)
+ - and other Darwin fixes
+
+* Дилян Палаузов
+ - bug fix for 3des report
+ - reported a tricky STARTTLS bug
+
+* Thomas Patzke:
+ - Support of supplying timeout value for openssl connect
+
+* Olivier Paroz
+ - conversion xxd --> hexdump stuff
+
+* Jeroen Wiert Pluimers
+ - Darwin binaries support
+
+* Joao Poupino
+ - Minimize false positive detection for Renegotiation checks against Node.js etc.
+
+* Rechi
+ - initial MX stuff
+ - fixes
+
+* Gonçalo Ribeiro
+ - --connect-timeout
+
+* Dmitri S
+ - inspiration & help for Darwin port
+
+* Marcin Szychowski
+ - Quick'n'dirty client certificate support
+
+* Viktor Szépe
+ - color function maker
+
+* Julien Vehent
+ - supplied 1st Darwin binary
+
+* Thomas Ward
+ - add initial IDN support
+
+* @typingArtist
+ - improved BEAST detection
+
+* @f-s
+ - ARM binary support
+
+* @nvsofts (NV)
+ - LibreSSL patch for GOST
+
+Probably more I forgot to mention which did give me feedback, bug reports and helped one way or another.
+
+
+##### Last but not least:
+
+* OpenSSL team for providing openssl.
+
+* Ivan Ristic/Qualys for the liberal license which made it possible to make partly use of the client data
+
+* My family for supporting me doing this work
+
diff --git a/Dockerfile b/Dockerfile
new file mode 100644
index 0000000..42a6941
--- /dev/null
+++ b/Dockerfile
@@ -0,0 +1,20 @@
+FROM alpine:3.11
+
+RUN apk update && \
+ apk upgrade && \
+ apk add --no-cache bash procps drill git coreutils libidn curl && \
+ addgroup testssl && \
+ adduser -G testssl -g "testssl user" -s /bin/bash -D testssl && \
+ ln -s /home/testssl/testssl.sh /usr/local/bin/ && \
+ mkdir -m 755 -p /home/testssl/etc /home/testssl/bin
+
+USER testssl
+WORKDIR /home/testssl/
+
+COPY --chown=testssl:testssl etc/. /home/testssl/etc/
+COPY --chown=testssl:testssl bin/. /home/testssl/bin/
+COPY --chown=testssl:testssl testssl.sh /home/testssl/
+
+ENTRYPOINT ["testssl.sh"]
+
+CMD ["--help"]
diff --git a/Dockerfile.md b/Dockerfile.md
new file mode 100644
index 0000000..bbdf371
--- /dev/null
+++ b/Dockerfile.md
@@ -0,0 +1,34 @@
+## Usage:
+
+(in git directory):
+```
+docker build -t mytestssl .
+docker run --rm -t mytestssl example.com
+```
+
+You can also supply command line options like:
+
+```
+docker run -t mytestssl --help
+docker run --rm -t mytestssl -p --header example.com
+```
+
+or pull the image from dockerhub and run:
+
+```
+docker run --rm -t drwetter/testssl.sh --pfs example.com
+```
+
+Tags supported are: ``latest``, ``stable`` which _for now_ are all the same and point to ``3.0``.
+
+``docker run --rm -t drwetter/testssl.sh:stable example.com``.
+
+And for the indomitable users who prefer to run old stuff you can use the tag ``2.9.5``. Please note ``2.9dev`` should not be used anymore.
+
+Keep in mind that any output file (--log, --html, --json etc.) will be created in the container. If you wish to have this created in a local directory you can mount a volume into the container and change the output prefix where the container user has write access to, e.g.:
+
+```
+docker run --rm -t -v /tmp:/data drwetter/testssl.sh --htmlfile /data/ example.com
+```
+
+which writes the output to ``/tmp/example.com_p443-<date>-<time>.html.`` The uid/gid is the one from the docker user but normally the file is 644. testssl.sh's docker container uses a non-root user (usually with user/groupid 1000:1000).
diff --git a/LICENSE b/LICENSE
new file mode 100644
index 0000000..22fbe5d
--- /dev/null
+++ b/LICENSE
@@ -0,0 +1,339 @@
+GNU GENERAL PUBLIC LICENSE
+ Version 2, June 1991
+
+ Copyright (C) 1989, 1991 Free Software Foundation, Inc., <http://fsf.org/>
+ 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
+ Everyone is permitted to copy and distribute verbatim copies
+ of this license document, but changing it is not allowed.
+
+ Preamble
+
+ The licenses for most software are designed to take away your
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+software--to make sure the software is free for all its users. This
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+
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+
+This General Public License does not permit incorporating your program into
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+library. If this is what you want to do, use the GNU Lesser General
+Public License instead of this License. \ No newline at end of file
diff --git a/Readme.md b/Readme.md
new file mode 100644
index 0000000..3a392c0
--- /dev/null
+++ b/Readme.md
@@ -0,0 +1,126 @@
+
+## Intro
+
+[![Build Status](https://travis-ci.org/drwetter/testssl.sh.svg?branch=master)](https://travis-ci.org/drwetter/testssl.sh)
+[![Gitter](https://badges.gitter.im/Join%20Chat.svg)](https://gitter.im/drwetter/testssl.sh?utm_source=badge&utm_medium=badge&utm_campaign=pr-badge&utm_content=badge)
+
+`testssl.sh` is a free command line tool which checks a server's service on
+any port for the support of TLS/SSL ciphers, protocols as well as some
+cryptographic flaws.
+
+### Key features
+
+* Clear output: you can tell easily whether anything is good or bad.
+* Machine readable output.
+* No installation needed: Linux, OSX/Darwin, FreeBSD, NetBSD, MSYS2/Cygwin, WSL work out of the box. Only OpenBSD needs bash. No need to install or to configure something. No gems, CPAN, pip or the like.
+* A Dockerfile is provided, there's also an offical container @ dockerhub.
+* Flexibility: You can test any SSL/TLS enabled and STARTTLS service, not only web servers at port 443.
+* Toolbox: Several command line options help you to run *your* test and configure *your* output.
+* Reliability: features are tested thoroughly.
+* Privacy: It's only you who sees the result, not a third party.
+* Freedom: It's 100% open source. You can look at the code, see what's going on.
+* The development is open (github) and participation is welcome.
+
+### License
+
+This software is free. You can use it under the terms of GPLv2, see LICENSE.
+
+Attribution is important for the future of this project -- also in the
+internet. Thus if you're offering a scanner based on testssl.sh as a public and/or
+paid service in the internet you are strongly encouraged to mention to your audience
+that you're using this program and where to get this program from. That helps us
+to get bugfixes, other feedback and more contributions.
+
+### Compatibility
+
+testssl.sh is working on every Linux/BSD distribution out of the box. Latest by 2.9dev
+most of the limitations of disabled features from the openssl client are gone
+due to bash-socket-based checks. As a result you can also use e.g. LibreSSL or OpenSSL
+1.1.1 . testssl.sh also works on other unixoid system out of the box, supposed they have
+`/bin/bash` >= version 3.2 and standard tools like sed and awk installed. An implicit
+(silent) check for binaries is done when you start testssl.sh . System V needs probably
+to have GNU grep installed. MacOS X and Windows (using MSYS2, Cygwin or WSL) work too.
+
+Update notification here or @ [twitter](https://twitter.com/drwetter).
+
+### Installation
+
+You can download testssl.sh by cloning this git repository:
+
+ git clone --depth 1 https://github.com/drwetter/testssl.sh.git
+
+and checkout the 3.0 branch. For this stable version you also can help yourself by downloading the [ZIP](https://github.com/drwetter/testssl.sh/archive/3.0.2.zip) or [tar.gz](https://github.com/drwetter/testssl.sh/archive/3.0.2.zip) archive. Then
+just ``cd`` to the directory created (=INSTALLDIR) and run it off there.
+
+#### Docker
+
+Testssl.sh has minimal requirements. As stated you don't have to install or build anything. You can just run it from the pulled/cloned directory. Still if you don't want to pull the github repo to your directory of choice you can pull a container from dockerhub and run it:
+```
+docker run --rm -ti drwetter/testssl.sh:3.0 <your_cmd_line>
+```
+Or if you have cloned this repo you also can just ``cd`` to the INSTALLDIR and run
+```
+docker build .
+```
+
+followed by ``docker run -ti <ID> <your_cmd_line>`` where ``ID`` is the identifier in the last line from the build command like
+
+```
+ ---> 889fa2f99933
+Successfully built 889fa2f99933
+```
+
+### Status
+
+This is the stable 3.0 version. That means you can and should use it for production and let us know if you encounter any additional bugs. Features implemented in 3.0 are listed in the [Changelog](https://github.com/drwetter/testssl.sh/blob/3.0/CHANGELOG.md). Support for 2.9.5 has been dropped.
+
+The version 3.0 will receive bugfixes, labled as 3.0.1, 3.0.2 and so on. This will happen until 3.2 is released. Development is taking place in the [3.1dev](https://github.com/drwetter/testssl.sh/tree/3.1dev) branch which will eventually lead to version 3.2. We try to keep 3.1dev as solid as possible but things will certainly change in 3.1dev. Think of the 3.1dev branch like a rolling release.
+
+
+### Documentation
+
+* .. it is there for reading. Please do so :-) -- at least before asking questions. See man page in groff, html and markdown format in `~/doc/`.
+* [https://testssl.sh/](https://testssl.sh/) will help to get you started.
+* Albeit a bit older Will Hunt provides a longer, good [description](https://www.4armed.com/blog/doing-your-own-ssl-tls-testing/) for the (older) version 2.8, including useful background info.
+
+
+### Contributing
+
+Contributions are welcome! See [CONTRIBUTING.md](https://github.com/drwetter/testssl.sh/blob/3.0/CONTRIBUTING.md) for details.
+
+### Bug reports
+
+Bug reports are important. It makes this project more robust.
+
+Please file bugs in the issue tracker @ github. Do not forget to provide detailed information, see template for issue, and further details @ https://github.com/drwetter/testssl.sh/wiki/Bug-reporting. Nobody can read your thoughts -- yet. And only agencies your screen ;-)
+
+You can also debug yourself, see [here](https://github.com/drwetter/testssl.sh/wiki/Findings-and-HowTo-Fix-them).
+
+----
+
+### External/related projects
+
+Please address questions not specifically to the code of testssl.sh to the respective projects below.
+
+#### Cool web frontend
+* https://github.com/TKCERT/testssl.sh-webfrontend
+
+#### Mass scanner w parallel scans and elastic searching the results
+* https://github.com/TKCERT/testssl.sh-masscan
+
+#### Another ready-to-go docker image is at:
+* https://quay.io/repository/jumanjiman/testssl
+
+#### Privacy checker using testssl.sh
+* https://privacyscore.org
+
+#### Brew package
+
+* see [#233](https://github.com/drwetter/testssl.sh/issues/233) and
+ [https://github.com/Homebrew/homebrew](https://github.com/Homebrew/homebrew)
+
+#### Daemon for batch execution of testssl.sh command files
+* https://github.com/bitsofinfo/testssl.sh-processor
+
+#### Daemon for batch processing of testssl.sh JSON result files for sending Slack alerts, reactive copying etc
+* https://github.com/bitsofinfo/testssl.sh-alerts
diff --git a/bin/OPENSSL-LICENSE.txt b/bin/OPENSSL-LICENSE.txt
new file mode 100644
index 0000000..e47d101
--- /dev/null
+++ b/bin/OPENSSL-LICENSE.txt
@@ -0,0 +1,127 @@
+
+ LICENSE ISSUES
+ ==============
+
+ The OpenSSL toolkit stays under a dual license, i.e. both the conditions of
+ the OpenSSL License and the original SSLeay license apply to the toolkit.
+ See below for the actual license texts. Actually both licenses are BSD-style
+ Open Source licenses. In case of any license issues related to OpenSSL
+ please contact openssl-core@openssl.org.
+
+ OpenSSL License
+ ---------------
+
+/* ====================================================================
+ * Copyright (c) 1998-2011 The OpenSSL Project. 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. All advertising materials mentioning features or use of this
+ * software must display the following acknowledgment:
+ * "This product includes software developed by the OpenSSL Project
+ * for use in the OpenSSL Toolkit. (http://www.openssl.org/)"
+ *
+ * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to
+ * endorse or promote products derived from this software without
+ * prior written permission. For written permission, please contact
+ * openssl-core@openssl.org.
+ *
+ * 5. Products derived from this software may not be called "OpenSSL"
+ * nor may "OpenSSL" appear in their names without prior written
+ * permission of the OpenSSL Project.
+ *
+ * 6. Redistributions of any form whatsoever must retain the following
+ * acknowledgment:
+ * "This product includes software developed by the OpenSSL Project
+ * for use in the OpenSSL Toolkit (http://www.openssl.org/)"
+ *
+ * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY
+ * EXPRESSED 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 OpenSSL PROJECT OR
+ * ITS 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.
+ * ====================================================================
+ *
+ * This product includes cryptographic software written by Eric Young
+ * (eay@cryptsoft.com). This product includes software written by Tim
+ * Hudson (tjh@cryptsoft.com).
+ *
+ */
+
+ Original SSLeay License
+ -----------------------
+
+/* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com)
+ * All rights reserved.
+ *
+ * This package is an SSL implementation written
+ * by Eric Young (eay@cryptsoft.com).
+ * The implementation was written so as to conform with Netscapes SSL.
+ *
+ * This library is free for commercial and non-commercial use as long as
+ * the following conditions are aheared to. The following conditions
+ * apply to all code found in this distribution, be it the RC4, RSA,
+ * lhash, DES, etc., code; not just the SSL code. The SSL documentation
+ * included with this distribution is covered by the same copyright terms
+ * except that the holder is Tim Hudson (tjh@cryptsoft.com).
+ *
+ * Copyright remains Eric Young's, and as such any Copyright notices in
+ * the code are not to be removed.
+ * If this package is used in a product, Eric Young should be given attribution
+ * as the author of the parts of the library used.
+ * This can be in the form of a textual message at program startup or
+ * in documentation (online or textual) provided with the package.
+ *
+ * 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 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. All advertising materials mentioning features or use of this software
+ * must display the following acknowledgement:
+ * "This product includes cryptographic software written by
+ * Eric Young (eay@cryptsoft.com)"
+ * The word 'cryptographic' can be left out if the rouines from the library
+ * being used are not cryptographic related :-).
+ * 4. If you include any Windows specific code (or a derivative thereof) from
+ * the apps directory (application code) you must include an acknowledgement:
+ * "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
+ *
+ * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``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 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.
+ *
+ * The licence and distribution terms for any publically available version or
+ * derivative of this code cannot be changed. i.e. this code cannot simply be
+ * copied and put under another distribution licence
+ * [including the GNU Public Licence.]
+ */
+
diff --git a/bin/Readme.md b/bin/Readme.md
new file mode 100644
index 0000000..7984c83
--- /dev/null
+++ b/bin/Readme.md
@@ -0,0 +1,134 @@
+
+Binaries
+========
+
+All the precompiled binaries provided here have extended support for
+everything which is normally not in OpenSSL or LibreSSL -- 40+56 Bit,
+export/ANON ciphers, weak DH ciphers, weak EC curves, SSLv2 etc. -- all the dirty
+features needed for testing. OTOH they also come with extended support
+for new / advanced cipher suites and/or features which are not in the
+official branch like (old version of the) CHACHA20+POLY1305 and CAMELLIA 256 bit ciphers.
+They also have IPv6 support, see below.
+
+The (stripped) binaries this directory are all compiled from my openssl
+snapshot (https://github.com/drwetter/openssl) from Peter Mosman's openssl
+fork (https://github.com/PeterMosmans/openssl). Thx a bunch, Peter!
+
+Compiled Linux and FreeBSD binaries so far come from Dirk, other
+contributors see ../CREDITS.md .
+
+**I discontinued to upload the not commonly used binaries at github ** (ARM7l, Darwin.i386 and all except one kerberos compiles) **as it is not very appropriate to use github especially for those. The main site for all
+binaries is https://testssl.sh/openssl-1.0.2i-chacha.pm.ipv6.contributed/, also see the tarball @
+https://testssl.sh/openssl-1.0.2i-chacha.pm.ipv6.Linux+FreeBSD.tar.gz**
+
+The binaries here have the naming scheme ``openssl.$(uname).$(uname -m)``
+and will be picked up from testssl.sh if you run testssl.sh directly
+off the git directory. Otherwise you need ``testssl.sh`` to point to it
+via the argument (``--openssl=<here>``) or as an environment variable
+(``OPENSSL=<here> testssl.sh <yourargs>``).
+
+The Linux binaries with the trailing ``-krb5`` come with Kerberos 5 support,
+they won't be picked up automatically as you need to make sure first they
+run (see libraries below).
+
+
+Compiling and Usage Instructions
+================================
+
+General
+-------
+
+Both 64+32 bit Linux binaries were compiled under Ubuntu 12.04 LTS. Likely you
+cannot use them for older distributions, younger worked in all my test environments.
+I provide for each distributions two sets of binaries (no IPv6 here):
+
+* completely statically linked binaries
+* dynamically linked binaries, additionally with MIT Kerberos support ("krb5" in the name).
+ They provide also KRB5-* and EXP-KRB5-* support (in OpenSSL terminology, see krb5-ciphers.txt).
+
+For the latter you need a whopping bunch of kerberos runtime libraries which you maybe need to
+install from your distributor (libgssapi_krb5, libkrb5, libcom_err, libk5crypto, libkrb5support,
+libkeyutils). The 'static' binaries do not have MIT kerberos support as there are no
+static kerberos libs and I did not bother to compile them from the sources.
+
+
+Compilation instructions
+------------------------
+
+If you want to compile OpenSSL yourself, here are the instructions:
+
+1.) get openssl from Peter Mosmans' repo:
+
+ git clone https://github.com/PeterMosmans/openssl
+ cd openssl
+
+or use my repo:
+
+ git clone https://github.com/drwetter/openssl
+ cd openssl
+
+
+2.) configure the damned thing. Options I used (see https://github.com/drwetter/testssl.sh/blob/master/utils/make-openssl.sh)
+
+**for 64Bit including Kerberos ciphers:**
+
+ ./config --prefix=/usr/ --openssldir=/etc/ssl enable-zlib enable-ssl2 enable-rc5 enable-rc2 \
+ enable-GOST enable-cms enable-md2 enable-mdc2 enable-ec enable-ec2m enable-ecdh enable-ecdsa \
+ enable-seed enable-camellia enable-idea enable-rfc3779 enable-ec_nistp_64_gcc_128 \
+ --with-krb5-flavor=MIT experimental-jpake -DOPENSSL_USE_BUILD_DATE
+
+**for 64Bit, static binaries:**
+
+ ./config --prefix=/usr/ --openssldir=/etc/ssl enable-zlib enable-ssl2 enable-rc5 enable-rc2 \
+ enable-GOST enable-cms enable-md2 enable-mdc2 enable-ec enable-ec2m enable-ecdh enable-ecdsa \
+ enable-seed enable-camellia enable-idea enable-rfc3779 enable-ec_nistp_64_gcc_128 \
+ -static experimental-jpake -DOPENSSL_USE_BUILD_DATE
+
+**for 32 Bit including Kerberos ciphers:**
+
+ ./config --prefix=/usr/ --openssldir=/etc/ssl enable-zlib enable-ssl2 enable-rc5 enable-rc2 \
+ enable-GOST enable-cms enable-md2 enable-mdc2 enable-ec enable-ec2m enable-ecdh enable-ecdsa \
+ enable-seed enable-camellia enable-idea enable-rfc3779 no-ec_nistp_64_gcc_128 \
+ --with-krb5-flavor=MIT experimental-jpake -DOPENSSL_USE_BUILD_DATE
+
+ **for 32 Bit, static binaries:**
+
+ ./config --prefix=/usr/ --openssldir=/etc/ssl enable-zlib enable-ssl2 enable-rc5 enable-rc2 \
+ enable-GOST enable-cms enable-md2 enable-mdc2 enable-ec enable-ec2m enable-ecdh enable-ecdsa \
+ enable-seed enable-camellia enable-idea enable-rfc3779 no-ec_nistp_64_gcc_128 \
+ -static experimental-jpake -DOPENSSL_USE_BUILD_DATE
+
+IPv6 support would need additionally the patch from ``fedora-dirk-ipv6.diff`` (included already
+in my branch). This doesn't give you the option of an IPv6 enabled proxy yet.
+It is good practice to compile those binaries with ``-DOPENSSL_USE_IPV6`` as
+later on you can tell them apart by``openssl version -a``.
+
+Four GOST [1][2] ciphers come via engine support automagically with this setup. Two additional GOST
+ciphers can be compiled in (``GOST-GOST94``, ``GOST-MD5``) with ``-DTEMP_GOST_TLS`` but as of now they make
+problems under some circumstances, so unless you desperately need those ciphers I would stay away from
+``-DTEMP_GOST_TLS``.
+
+If you don't have / don't want Kerberos libraries and devel rpms/debs, just omit "--with-krb5-flavor=MIT"
+(see examples). If you have another Kerberos flavor you would need to figure out by yourself.
+
+3.) make depend
+
+4.) make
+
+5.) make report (check whether it runs ok!)
+
+6.) ``./apps/openssl ciphers -V 'ALL:COMPLEMENTOFALL' | wc -l`` lists for me
+* 193(+4 GOST) ciphers including kerberos
+* 179(+4 GOST) ciphers without kerberos
+
+as opposed to ~110 from Ubuntu or Opensuse.
+
+**Never use these binaries for anything other than testing**
+
+Enjoy, Dirk
+
+[1] https://en.wikipedia.org/wiki/GOST_%29block_cipher%29
+
+[2] http://fossies.org/linux/openssl/engines/ccgost/README.gost
+
+
diff --git a/bin/fedora-dirk-ipv6.diff b/bin/fedora-dirk-ipv6.diff
new file mode 100644
index 0000000..9e4ee24
--- /dev/null
+++ b/bin/fedora-dirk-ipv6.diff
@@ -0,0 +1,531 @@
+--- a/apps/s_apps.h
++++ b/apps/s_apps.h
+@@ -151,7 +151,7 @@ typedef fd_mask fd_set;
+ #define PORT_STR "4433"
+ #define PROTOCOL "tcp"
+
+-int do_server(int port, int type, int *ret,
++int do_server(char *port, int type, int *ret,
+ int (*cb) (char *hostname, int s, int stype,
+ unsigned char *context), unsigned char *context,
+ int naccept);
+@@ -167,11 +167,10 @@ int ssl_print_point_formats(BIO *out, SSL *s);
+ int ssl_print_curves(BIO *out, SSL *s, int noshared);
+ #endif
+ int ssl_print_tmp_key(BIO *out, SSL *s);
+-int init_client(int *sock, char *server, int port, int type);
++int init_client(int *sock, char *server, char *port, int type);
+ int should_retry(int i);
+ int extract_port(char *str, short *port_ptr);
+-int extract_host_port(char *str, char **host_ptr, unsigned char *ip,
+- short *p);
++int extract_host_port(char *str, char **host_ptr, char **port_ptr);
+
+ long MS_CALLBACK bio_dump_callback(BIO *bio, int cmd, const char *argp,
+ int argi, long argl, long ret);
+
+--- a/apps/s_client.c
++++ b/apps/s_client.c
+@@ -678,7 +678,7 @@ int MAIN(int argc, char **argv)
+ int cbuf_len, cbuf_off;
+ int sbuf_len, sbuf_off;
+ fd_set readfds, writefds;
+- short port = PORT;
++ char *port_str = PORT_STR;
+ char *http_proxy_str = NULL, *connect_str = NULL;
+ int full_log = 1;
+ char *host = SSL_HOST_NAME;
+@@ -803,9 +803,7 @@ int MAIN(int argc, char **argv)
+ } else if (strcmp(*argv, "-port") == 0) {
+ if (--argc < 1)
+ goto bad;
+- port = atoi(*(++argv));
+- if (port == 0)
+- goto bad;
++ port_str = *(++argv);
+ } else if (strcmp(*argv, "-connect") == 0) {
+ if (--argc < 1)
+ goto bad;
+@@ -1156,10 +1154,10 @@ int MAIN(int argc, char **argv)
+ }
+
+ if (http_proxy_str) {
+- if (!extract_host_port(http_proxy_str, &host, NULL, &port))
++ if (!extract_host_port(http_proxy_str, &host, &port_str))
+ goto bad;
+ } else if (connect_str) {
+- if (!extract_host_port(connect_str, &host, NULL, &port))
++ if (!extract_host_port(connect_str, &host, &port_str))
+ goto bad;
+ }
+
+@@ -1456,7 +1454,7 @@ int MAIN(int argc, char **argv)
+
+ re_start:
+
+- if (init_client(&s, host, port, socket_type) == 0) {
++ if (init_client(&s, host, port_str, socket_type) == 0) {
+ BIO_printf(bio_err, "connect:errno=%d\n", get_last_socket_error());
+ SHUTDOWN(s);
+ goto end;
+
+--- a/apps/s_server.c
++++ b/apps/s_server.c
+@@ -1093,7 +1093,7 @@ int MAIN(int argc, char *argv[])
+ {
+ X509_VERIFY_PARAM *vpm = NULL;
+ int badarg = 0;
+- short port = PORT;
++ char *port_str = PORT_STR;
+ char *CApath = NULL, *CAfile = NULL;
+ char *chCApath = NULL, *chCAfile = NULL;
+ char *vfyCApath = NULL, *vfyCAfile = NULL;
+@@ -1180,7 +1180,8 @@ int MAIN(int argc, char *argv[])
+ if ((strcmp(*argv, "-port") == 0) || (strcmp(*argv, "-accept") == 0)) {
+ if (--argc < 1)
+ goto bad;
+- if (!extract_port(*(++argv), &port))
++ port_str = *(++argv);
++ if (port_str == NULL || *port_str == '\0')
+ goto bad;
+ } else if (strcmp(*argv, "-naccept") == 0) {
+ if (--argc < 1)
+@@ -2056,13 +2057,13 @@ int MAIN(int argc, char *argv[])
+ BIO_printf(bio_s_out, "ACCEPT\n");
+ (void)BIO_flush(bio_s_out);
+ if (rev)
+- do_server(port, socket_type, &accept_socket, rev_body, context,
++ do_server(port_str, socket_type, &accept_socket, rev_body, context,
+ naccept);
+ else if (www)
+- do_server(port, socket_type, &accept_socket, www_body, context,
++ do_server(port_str, socket_type, &accept_socket, www_body, context,
+ naccept);
+ else
+- do_server(port, socket_type, &accept_socket, sv_body, context,
++ do_server(port_str, socket_type, &accept_socket, sv_body, context,
+ naccept);
+ print_stats(bio_s_out, ctx);
+ ret = 0;
+
+--- a/apps/s_socket.c
++++ b/apps/s_socket.c
+@@ -106,9 +106,7 @@ static struct hostent *GetHostByName(char *name);
+ static void ssl_sock_cleanup(void);
+ # endif
+ static int ssl_sock_init(void);
+-static int init_client_ip(int *sock, unsigned char ip[4], int port, int type);
+-static int init_server(int *sock, int port, int type);
+-static int init_server_long(int *sock, int port, char *ip, int type);
++static int init_server(int *sock, char *port, int type);
+ static int do_accept(int acc_sock, int *sock, char **host);
+ static int host_ip(char *str, unsigned char ip[4]);
+
+@@ -231,65 +229,66 @@ static int ssl_sock_init(void)
+ return (1);
+ }
+
+-int init_client(int *sock, char *host, int port, int type)
++int init_client(int *sock, char *host, char *port, int type)
+ {
+- unsigned char ip[4];
+-
+- memset(ip, '\0', sizeof ip);
+- if (!host_ip(host, &(ip[0])))
+- return 0;
+- return init_client_ip(sock, ip, port, type);
+-}
+-
+-static int init_client_ip(int *sock, unsigned char ip[4], int port, int type)
+-{
+- unsigned long addr;
+- struct sockaddr_in them;
+- int s, i;
++ struct addrinfo *res, *res0, hints;
++ char *failed_call = NULL;
++ int s;
++ int e;
+
+ if (!ssl_sock_init())
+ return (0);
+
+- memset((char *)&them, 0, sizeof(them));
+- them.sin_family = AF_INET;
+- them.sin_port = htons((unsigned short)port);
+- addr = (unsigned long)
+- ((unsigned long)ip[0] << 24L) |
+- ((unsigned long)ip[1] << 16L) |
+- ((unsigned long)ip[2] << 8L) | ((unsigned long)ip[3]);
+- them.sin_addr.s_addr = htonl(addr);
+-
+- if (type == SOCK_STREAM)
+- s = socket(AF_INET, SOCK_STREAM, SOCKET_PROTOCOL);
+- else /* ( type == SOCK_DGRAM) */
+- s = socket(AF_INET, SOCK_DGRAM, IPPROTO_UDP);
++ memset(&hints, '\0', sizeof(hints));
++ hints.ai_socktype = type;
++ hints.ai_flags = AI_ADDRCONFIG;
+
+- if (s == INVALID_SOCKET) {
+- perror("socket");
++ e = getaddrinfo(host, port, &hints, &res);
++ if (e) {
++ fprintf(stderr, "getaddrinfo: %s\n", gai_strerror(e));
++ if (e == EAI_SYSTEM)
++ perror("getaddrinfo");
+ return (0);
+ }
++
++ res0 = res;
++ while (res) {
++ s = socket(res->ai_family, res->ai_socktype, res->ai_protocol);
++ if (s == INVALID_SOCKET) {
++ failed_call = "socket";
++ goto nextres;
++ }
+ # if defined(SO_KEEPALIVE) && !defined(OPENSSL_SYS_MPE)
+- if (type == SOCK_STREAM) {
+- i = 0;
+- i = setsockopt(s, SOL_SOCKET, SO_KEEPALIVE, (char *)&i, sizeof(i));
+- if (i < 0) {
+- closesocket(s);
+- perror("keepalive");
+- return (0);
++ if (type == SOCK_STREAM) {
++ int i = 0;
++ i = setsockopt(s, SOL_SOCKET, SO_KEEPALIVE,
++ (char *)&i, sizeof(i));
++ if (i < 0) {
++ failed_call = "keepalive";
++ goto nextres;
++ }
+ }
+- }
+ # endif
++ if (connect(s, (struct sockaddr *)res->ai_addr, res->ai_addrlen) == 0) {
++ freeaddrinfo(res0);
++ *sock = s;
++ return (1);
++ }
+
+- if (connect(s, (struct sockaddr *)&them, sizeof(them)) == -1) {
+- closesocket(s);
+- perror("connect");
+- return (0);
++ failed_call = "socket";
++ nextres:
++ if (s != INVALID_SOCKET)
++ close(s);
++ res = res->ai_next;
+ }
+- *sock = s;
+- return (1);
++ freeaddrinfo(res0);
++ closesocket(s);
++
++ perror(failed_call);
++ return (0);
+ }
+
+-int do_server(int port, int type, int *ret,
++int do_server(char *port, int type, int *ret,
+ int (*cb) (char *hostname, int s, int stype,
+ unsigned char *context), unsigned char *context,
+ int naccept)
+@@ -328,69 +327,89 @@ int do_server(int port, int type, int *ret,
+ }
+ }
+
+-static int init_server_long(int *sock, int port, char *ip, int type)
++static int init_server(int *sock, char *port, int type)
+ {
+- int ret = 0;
+- struct sockaddr_in server;
+- int s = -1;
++ struct addrinfo *res, *res0 = NULL, hints;
++ char *failed_call = NULL;
++ int s = INVALID_SOCKET;
++ int e;
+
+ if (!ssl_sock_init())
+ return (0);
+
+- memset((char *)&server, 0, sizeof(server));
+- server.sin_family = AF_INET;
+- server.sin_port = htons((unsigned short)port);
+- if (ip == NULL)
+- server.sin_addr.s_addr = INADDR_ANY;
+- else
+-/* Added for T3E, address-of fails on bit field (beckman@acl.lanl.gov) */
+-# ifndef BIT_FIELD_LIMITS
+- memcpy(&server.sin_addr.s_addr, ip, 4);
+-# else
+- memcpy(&server.sin_addr, ip, 4);
+-# endif
+-
+- if (type == SOCK_STREAM)
+- s = socket(AF_INET, SOCK_STREAM, SOCKET_PROTOCOL);
+- else /* type == SOCK_DGRAM */
+- s = socket(AF_INET, SOCK_DGRAM, IPPROTO_UDP);
++ memset(&hints, '\0', sizeof(hints));
++ hints.ai_family = AF_INET6;
++ tryipv4:
++ hints.ai_socktype = type;
++ hints.ai_flags = AI_PASSIVE;
++
++ e = getaddrinfo(NULL, port, &hints, &res);
++ if (e) {
++ if (hints.ai_family == AF_INET) {
++ fprintf(stderr, "getaddrinfo: %s\n", gai_strerror(e));
++ if (e == EAI_SYSTEM)
++ perror("getaddrinfo");
++ return (0);
++ } else
++ res = NULL;
++ }
+
+- if (s == INVALID_SOCKET)
+- goto err;
++ res0 = res;
++ while (res) {
++ s = socket(res->ai_family, res->ai_socktype, res->ai_protocol);
++ if (s == INVALID_SOCKET) {
++ failed_call = "socket";
++ goto nextres;
++ }
++ if (hints.ai_family == AF_INET6) {
++ int j = 0;
++ setsockopt(s, IPPROTO_IPV6, IPV6_V6ONLY, (void *)&j, sizeof j);
++ }
+ # if defined SOL_SOCKET && defined SO_REUSEADDR
+- {
+- int j = 1;
+- setsockopt(s, SOL_SOCKET, SO_REUSEADDR, (void *)&j, sizeof j);
+- }
+-# endif
+- if (bind(s, (struct sockaddr *)&server, sizeof(server)) == -1) {
+-# ifndef OPENSSL_SYS_WINDOWS
+- perror("bind");
++ {
++ int j = 1;
++ setsockopt(s, SOL_SOCKET, SO_REUSEADDR, (void *)&j, sizeof j);
++ }
+ # endif
+- goto err;
++
++ if (bind(s, (struct sockaddr *)res->ai_addr, res->ai_addrlen) == -1) {
++ failed_call = "bind";
++ goto nextres;
++ }
++ if (type == SOCK_STREAM && listen(s, 128) == -1) {
++ failed_call = "listen";
++ goto nextres;
++ }
++
++ *sock = s;
++ return (1);
++
++ nextres:
++ if (s != INVALID_SOCKET)
++ close(s);
++ res = res->ai_next;
+ }
+- /* Make it 128 for linux */
+- if (type == SOCK_STREAM && listen(s, 128) == -1)
+- goto err;
+- *sock = s;
+- ret = 1;
+- err:
+- if ((ret == 0) && (s != -1)) {
+- SHUTDOWN(s);
++ if (res0)
++ freeaddrinfo(res0);
++
++ if (s == INVALID_SOCKET) {
++ if (hints.ai_family == AF_INET6) {
++ hints.ai_family = AF_INET;
++ goto tryipv4;
++ }
++ perror("socket");
++ return (0);
+ }
+- return (ret);
+-}
+
+-static int init_server(int *sock, int port, int type)
+-{
+- return (init_server_long(sock, port, NULL, type));
++ perror(failed_call);
++ return (0);
+ }
+
+ static int do_accept(int acc_sock, int *sock, char **host)
+ {
++ static struct sockaddr_storage from;
++ char buffer[NI_MAXHOST];
+ int ret;
+- struct hostent *h1, *h2;
+- static struct sockaddr_in from;
+ int len;
+ /* struct linger ling; */
+
+@@ -432,134 +451,60 @@ static int do_accept(int acc_sock, int *sock, char **host)
+ ling.l_onoff=1;
+ ling.l_linger=0;
+ i=setsockopt(ret,SOL_SOCKET,SO_LINGER,(char *)&ling,sizeof(ling));
+- if (i < 0) { perror("linger"); return(0); }
++ if (i < 0) { closesocket(ret); perror("linger"); return(0); }
+ i=0;
+ i=setsockopt(ret,SOL_SOCKET,SO_KEEPALIVE,(char *)&i,sizeof(i));
+- if (i < 0) { perror("keepalive"); return(0); }
++ if (i < 0) { closesocket(ret); perror("keepalive"); return(0); }
+ */
+
+ if (host == NULL)
+ goto end;
+-# ifndef BIT_FIELD_LIMITS
+- /* I should use WSAAsyncGetHostByName() under windows */
+- h1 = gethostbyaddr((char *)&from.sin_addr.s_addr,
+- sizeof(from.sin_addr.s_addr), AF_INET);
+-# else
+- h1 = gethostbyaddr((char *)&from.sin_addr,
+- sizeof(struct in_addr), AF_INET);
+-# endif
+- if (h1 == NULL) {
+- BIO_printf(bio_err, "bad gethostbyaddr\n");
++
++ if (getnameinfo((struct sockaddr *)&from, sizeof(from),
++ buffer, sizeof(buffer), NULL, 0, 0)) {
++ BIO_printf(bio_err, "getnameinfo failed\n");
+ *host = NULL;
+ /* return(0); */
+ } else {
+- if ((*host = (char *)OPENSSL_malloc(strlen(h1->h_name) + 1)) == NULL) {
++ if ((*host = (char *)OPENSSL_malloc(strlen(buffer) + 1)) == NULL) {
+ perror("OPENSSL_malloc");
+ closesocket(ret);
+ return (0);
+ }
+- BUF_strlcpy(*host, h1->h_name, strlen(h1->h_name) + 1);
+-
+- h2 = GetHostByName(*host);
+- if (h2 == NULL) {
+- BIO_printf(bio_err, "gethostbyname failure\n");
+- closesocket(ret);
+- return (0);
+- }
+- if (h2->h_addrtype != AF_INET) {
+- BIO_printf(bio_err, "gethostbyname addr is not AF_INET\n");
+- closesocket(ret);
+- return (0);
+- }
++ strcpy(*host, buffer);
+ }
+ end:
+ *sock = ret;
+ return (1);
+ }
+
+-int extract_host_port(char *str, char **host_ptr, unsigned char *ip,
+- short *port_ptr)
++int extract_host_port(char *str, char **host_ptr, char **port_ptr)
+ {
+- char *h, *p;
+-
+- h = str;
+- p = strchr(str, ':');
++ char *h, *p, *x;
++
++ x = h = str;
++ if (*h == '[') {
++ h++;
++ p = strchr(h, ']');
++ if (p == NULL) {
++ BIO_printf(bio_err, "no ending bracket for IPv6 address\n");
++ return (0);
++ }
++ *(p++) = '\0';
++ x = p;
++ }
++ p = strchr(x, ':');
+ if (p == NULL) {
+ BIO_printf(bio_err, "no port defined\n");
+ return (0);
+ }
+ *(p++) = '\0';
+
+- if ((ip != NULL) && !host_ip(str, ip))
+- goto err;
+ if (host_ptr != NULL)
+ *host_ptr = h;
++ if (port_ptr != NULL)
++ *port_ptr = p;
+
+- if (!extract_port(p, port_ptr))
+- goto err;
+- return (1);
+- err:
+- return (0);
+-}
+-
+-static int host_ip(char *str, unsigned char ip[4])
+-{
+- unsigned int in[4];
+- int i;
+-
+- if (sscanf(str, "%u.%u.%u.%u", &(in[0]), &(in[1]), &(in[2]), &(in[3])) ==
+- 4) {
+- for (i = 0; i < 4; i++)
+- if (in[i] > 255) {
+- BIO_printf(bio_err, "invalid IP address\n");
+- goto err;
+- }
+- ip[0] = in[0];
+- ip[1] = in[1];
+- ip[2] = in[2];
+- ip[3] = in[3];
+- } else { /* do a gethostbyname */
+- struct hostent *he;
+-
+- if (!ssl_sock_init())
+- return (0);
+-
+- he = GetHostByName(str);
+- if (he == NULL) {
+- BIO_printf(bio_err, "gethostbyname failure\n");
+- goto err;
+- }
+- /* cast to short because of win16 winsock definition */
+- if ((short)he->h_addrtype != AF_INET) {
+- BIO_printf(bio_err, "gethostbyname addr is not AF_INET\n");
+- return (0);
+- }
+- ip[0] = he->h_addr_list[0][0];
+- ip[1] = he->h_addr_list[0][1];
+- ip[2] = he->h_addr_list[0][2];
+- ip[3] = he->h_addr_list[0][3];
+- }
+- return (1);
+- err:
+- return (0);
+-}
+-
+-int extract_port(char *str, short *port_ptr)
+-{
+- int i;
+- struct servent *s;
+-
+- i = atoi(str);
+- if (i != 0)
+- *port_ptr = (unsigned short)i;
+- else {
+- s = getservbyname(str, "tcp");
+- if (s == NULL) {
+- BIO_printf(bio_err, "getservbyname failure for %s\n", str);
+- return (0);
+- }
+- *port_ptr = ntohs((unsigned short)s->s_port);
+- }
+ return (1);
+ }
+
diff --git a/bin/krb5-ciphers.txt b/bin/krb5-ciphers.txt
new file mode 100644
index 0000000..09e1366
--- /dev/null
+++ b/bin/krb5-ciphers.txt
@@ -0,0 +1,54 @@
+--- 1 2016-07-26 20:48:55.833389290 +0200
++++ 2 2016-07-26 20:48:48.531410884 +0200
+@@ -114,6 +114,8 @@
+ 0x03,0x00,0x80 - RC2-CBC-MD5 SSLv2 Kx=RSA Au=RSA Enc=RC2(128) Mac=MD5
+ 0x00,0x94 - RSA-PSK-AES128-CBC-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=AES(128) Mac=SHA1
+ 0x00,0x8C - PSK-AES128-CBC-SHA SSLv3 Kx=PSK Au=PSK Enc=AES(128) Mac=SHA1
++ 0x00,0x21 - KRB5-IDEA-CBC-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=IDEA(128) Mac=SHA1
++ 0x00,0x25 - KRB5-IDEA-CBC-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=IDEA(128) Mac=MD5
+ 0xC0,0x11 - ECDHE-RSA-RC4-SHA SSLv3 Kx=ECDH Au=RSA Enc=RC4(128) Mac=SHA1
+ 0xC0,0x07 - ECDHE-ECDSA-RC4-SHA SSLv3 Kx=ECDH Au=ECDSA Enc=RC4(128) Mac=SHA1
+ 0x00,0x66 - DHE-DSS-RC4-SHA SSLv3 Kx=DH Au=DSS Enc=RC4(128) Mac=SHA1
+@@ -126,6 +128,8 @@
+ 0x01,0x00,0x80 - RC4-MD5 SSLv2 Kx=RSA Au=RSA Enc=RC4(128) Mac=MD5
+ 0x00,0x92 - RSA-PSK-RC4-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=RC4(128) Mac=SHA1
+ 0x00,0x8A - PSK-RC4-SHA SSLv3 Kx=PSK Au=PSK Enc=RC4(128) Mac=SHA1
++ 0x00,0x20 - KRB5-RC4-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=RC4(128) Mac=SHA1
++ 0x00,0x24 - KRB5-RC4-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=RC4(128) Mac=MD5
+ 0xC0,0x12 - ECDHE-RSA-DES-CBC3-SHA SSLv3 Kx=ECDH Au=RSA Enc=3DES(168) Mac=SHA1
+ 0xC0,0x08 - ECDHE-ECDSA-DES-CBC3-SHA SSLv3 Kx=ECDH Au=ECDSA Enc=3DES(168) Mac=SHA1
+ 0xC0,0x1C - SRP-DSS-3DES-EDE-CBC-SHA SSLv3 Kx=SRP Au=DSS Enc=3DES(168) Mac=SHA1
+@@ -143,6 +147,8 @@
+ 0x07,0x00,0xC0 - DES-CBC3-MD5 SSLv2 Kx=RSA Au=RSA Enc=3DES(168) Mac=MD5
+ 0x00,0x93 - RSA-PSK-3DES-EDE-CBC-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=3DES(168) Mac=SHA1
+ 0x00,0x8B - PSK-3DES-EDE-CBC-SHA SSLv3 Kx=PSK Au=PSK Enc=3DES(168) Mac=SHA1
++ 0x00,0x1F - KRB5-DES-CBC3-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=3DES(168) Mac=SHA1
++ 0x00,0x23 - KRB5-DES-CBC3-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=3DES(168) Mac=MD5
+ 0x08,0x00,0x80 - RC4-64-MD5 SSLv2 Kx=RSA Au=RSA Enc=RC4(64) Mac=MD5
+ 0x00,0x63 - EXP1024-DHE-DSS-DES-CBC-SHA SSLv3 Kx=DH(1024) Au=DSS Enc=DES(56) Mac=SHA1 export
+ 0x00,0x15 - EDH-RSA-DES-CBC-SHA SSLv3 Kx=DH Au=RSA Enc=DES(56) Mac=SHA1
+@@ -154,6 +160,8 @@
+ 0x00,0x09 - DES-CBC-SHA SSLv3 Kx=RSA Au=RSA Enc=DES(56) Mac=SHA1
+ 0x00,0x61 - EXP1024-RC2-CBC-MD5 SSLv3 Kx=RSA(1024) Au=RSA Enc=RC2(56) Mac=MD5 export
+ 0x06,0x00,0x40 - DES-CBC-MD5 SSLv2 Kx=RSA Au=RSA Enc=DES(56) Mac=MD5
++ 0x00,0x1E - KRB5-DES-CBC-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=DES(56) Mac=SHA1
++ 0x00,0x22 - KRB5-DES-CBC-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=DES(56) Mac=MD5
+ 0x00,0x65 - EXP1024-DHE-DSS-RC4-SHA SSLv3 Kx=DH(1024) Au=DSS Enc=RC4(56) Mac=SHA1 export
+ 0x00,0x64 - EXP1024-RC4-SHA SSLv3 Kx=RSA(1024) Au=RSA Enc=RC4(56) Mac=SHA1 export
+ 0x00,0x60 - EXP1024-RC4-MD5 SSLv3 Kx=RSA(1024) Au=RSA Enc=RC4(56) Mac=MD5 export
+@@ -165,9 +173,15 @@
+ 0x00,0x08 - EXP-DES-CBC-SHA SSLv3 Kx=RSA(512) Au=RSA Enc=DES(40) Mac=SHA1 export
+ 0x00,0x06 - EXP-RC2-CBC-MD5 SSLv3 Kx=RSA(512) Au=RSA Enc=RC2(40) Mac=MD5 export
+ 0x04,0x00,0x80 - EXP-RC2-CBC-MD5 SSLv2 Kx=RSA(512) Au=RSA Enc=RC2(40) Mac=MD5 export
++ 0x00,0x27 - EXP-KRB5-RC2-CBC-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=RC2(40) Mac=SHA1 export
++ 0x00,0x26 - EXP-KRB5-DES-CBC-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=DES(40) Mac=SHA1 export
++ 0x00,0x2A - EXP-KRB5-RC2-CBC-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=RC2(40) Mac=MD5 export
++ 0x00,0x29 - EXP-KRB5-DES-CBC-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=DES(40) Mac=MD5 export
+ 0x00,0x17 - EXP-ADH-RC4-MD5 SSLv3 Kx=DH(512) Au=None Enc=RC4(40) Mac=MD5 export
+ 0x00,0x03 - EXP-RC4-MD5 SSLv3 Kx=RSA(512) Au=RSA Enc=RC4(40) Mac=MD5 export
+ 0x02,0x00,0x80 - EXP-RC4-MD5 SSLv2 Kx=RSA(512) Au=RSA Enc=RC4(40) Mac=MD5 export
++ 0x00,0x28 - EXP-KRB5-RC4-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=RC4(40) Mac=SHA1 export
++ 0x00,0x2B - EXP-KRB5-RC4-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=RC4(40) Mac=MD5 export
+ 0xC0,0x10 - ECDHE-RSA-NULL-SHA SSLv3 Kx=ECDH Au=RSA Enc=None Mac=SHA1
+ 0xC0,0x06 - ECDHE-ECDSA-NULL-SHA SSLv3 Kx=ECDH Au=ECDSA Enc=None Mac=SHA1
+ 0xC0,0x15 - AECDH-NULL-SHA SSLv3 Kx=ECDH Au=None Enc=None Mac=SHA1
diff --git a/bin/new-ciphers.diffed2vanilla.txt b/bin/new-ciphers.diffed2vanilla.txt
new file mode 100644
index 0000000..e3984ad
--- /dev/null
+++ b/bin/new-ciphers.diffed2vanilla.txt
@@ -0,0 +1,102 @@
+--- ../openssl-1.0.2-vanilla/openssl-Vall.krb.txt 2015-02-10 12:09:00.514718127 +0100
++++ openssl-Vall.krb.txt 2015-02-05 09:10:28.019920543 +0100
+@@ -1,9 +1,11 @@
+
++ 0xCC,0x14 - ECDHE-ECDSA-CHACHA20-POLY1305 TLSv1.2 Kx=ECDH Au=ECDSA Enc=ChaCha20(256) Mac=AEAD
++ 0xCC,0x13 - ECDHE-RSA-CHACHA20-POLY1305 TLSv1.2 Kx=ECDH Au=RSA Enc=ChaCha20(256) Mac=AEAD
++ 0xCC,0x15 - DHE-RSA-CHACHA20-POLY1305 TLSv1.2 Kx=DH Au=RSA Enc=ChaCha20(256) Mac=AEAD
+ 0xC0,0x30 - ECDHE-RSA-AES256-GCM-SHA384 TLSv1.2 Kx=ECDH Au=RSA Enc=AESGCM(256) Mac=AEAD
+ 0xC0,0x2C - ECDHE-ECDSA-AES256-GCM-SHA384 TLSv1.2 Kx=ECDH Au=ECDSA Enc=AESGCM(256) Mac=AEAD
+ 0xC0,0x28 - ECDHE-RSA-AES256-SHA384 TLSv1.2 Kx=ECDH Au=RSA Enc=AES(256) Mac=SHA384
+@@ -22,6 +26,12 @@
+ 0x00,0x38 - DHE-DSS-AES256-SHA SSLv3 Kx=DH Au=DSS Enc=AES(256) Mac=SHA1
+ 0x00,0x37 - DH-RSA-AES256-SHA SSLv3 Kx=DH/RSA Au=DH Enc=AES(256) Mac=SHA1
+ 0x00,0x36 - DH-DSS-AES256-SHA SSLv3 Kx=DH/DSS Au=DH Enc=AES(256) Mac=SHA1
++ 0xC0,0x77 - ECDHE-RSA-CAMELLIA256-SHA384 TLSv1.2 Kx=ECDH Au=RSA Enc=Camellia(256) Mac=SHA384
++ 0xC0,0x73 - ECDHE-ECDSA-CAMELLIA256-SHA384 TLSv1.2 Kx=ECDH Au=ECDSA Enc=Camellia(256) Mac=SHA384
++ 0x00,0xC4 - DHE-RSA-CAMELLIA256-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=Camellia(256) Mac=SHA256
++ 0x00,0xC3 - DHE-DSS-CAMELLIA256-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=Camellia(256) Mac=SHA256
++ 0x00,0xC2 - DH-RSA-CAMELLIA256-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=Camellia(256) Mac=SHA256
++ 0x00,0xC1 - DH-DSS-CAMELLIA256-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=Camellia(256) Mac=SHA256
+ 0x00,0x88 - DHE-RSA-CAMELLIA256-SHA SSLv3 Kx=DH Au=RSA Enc=Camellia(256) Mac=SHA1
+ 0x00,0x87 - DHE-DSS-CAMELLIA256-SHA SSLv3 Kx=DH Au=DSS Enc=Camellia(256) Mac=SHA1
+ 0x00,0x86 - DH-RSA-CAMELLIA256-SHA SSLv3 Kx=DH/RSA Au=DH Enc=Camellia(256) Mac=SHA1
+@@ -30,6 +40,7 @@
+ 0x00,0xA7 - ADH-AES256-GCM-SHA384 TLSv1.2 Kx=DH Au=None Enc=AESGCM(256) Mac=AEAD
+ 0x00,0x6D - ADH-AES256-SHA256 TLSv1.2 Kx=DH Au=None Enc=AES(256) Mac=SHA256
+ 0x00,0x3A - ADH-AES256-SHA SSLv3 Kx=DH Au=None Enc=AES(256) Mac=SHA1
++ 0x00,0xC5 - ADH-CAMELLIA256-SHA256 TLSv1.2 Kx=DH Au=None Enc=Camellia(256) Mac=SHA256
+ 0x00,0x89 - ADH-CAMELLIA256-SHA SSLv3 Kx=DH Au=None Enc=Camellia(256) Mac=SHA1
+ 0xC0,0x32 - ECDH-RSA-AES256-GCM-SHA384 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=AESGCM(256) Mac=AEAD
+ 0xC0,0x2E - ECDH-ECDSA-AES256-GCM-SHA384 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=AESGCM(256) Mac=AEAD
+@@ -37,10 +48,14 @@
+ 0xC0,0x26 - ECDH-ECDSA-AES256-SHA384 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=AES(256) Mac=SHA384
+ 0xC0,0x0F - ECDH-RSA-AES256-SHA SSLv3 Kx=ECDH/RSA Au=ECDH Enc=AES(256) Mac=SHA1
+ 0xC0,0x05 - ECDH-ECDSA-AES256-SHA SSLv3 Kx=ECDH/ECDSA Au=ECDH Enc=AES(256) Mac=SHA1
++ 0xC0,0x79 - ECDH-RSA-CAMELLIA256-SHA384 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=Camellia(256) Mac=SHA384
++ 0xC0,0x75 - ECDH-ECDSA-CAMELLIA256-SHA384 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=Camellia(256) Mac=SHA384
+ 0x00,0x9D - AES256-GCM-SHA384 TLSv1.2 Kx=RSA Au=RSA Enc=AESGCM(256) Mac=AEAD
+ 0x00,0x3D - AES256-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=AES(256) Mac=SHA256
+ 0x00,0x35 - AES256-SHA SSLv3 Kx=RSA Au=RSA Enc=AES(256) Mac=SHA1
++ 0x00,0xC0 - CAMELLIA256-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=Camellia(256) Mac=SHA256
+ 0x00,0x84 - CAMELLIA256-SHA SSLv3 Kx=RSA Au=RSA Enc=Camellia(256) Mac=SHA1
++ 0x00,0x95 - RSA-PSK-AES256-CBC-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=AES(256) Mac=SHA1
+ 0x00,0x8D - PSK-AES256-CBC-SHA SSLv3 Kx=PSK Au=PSK Enc=AES(256) Mac=SHA1
+ 0xC0,0x2F - ECDHE-RSA-AES128-GCM-SHA256 TLSv1.2 Kx=ECDH Au=RSA Enc=AESGCM(128) Mac=AEAD
+ 0xC0,0x2B - ECDHE-ECDSA-AES128-GCM-SHA256 TLSv1.2 Kx=ECDH Au=ECDSA Enc=AESGCM(128) Mac=AEAD
+@@ -63,6 +78,12 @@
+ 0x00,0x32 - DHE-DSS-AES128-SHA SSLv3 Kx=DH Au=DSS Enc=AES(128) Mac=SHA1
+ 0x00,0x31 - DH-RSA-AES128-SHA SSLv3 Kx=DH/RSA Au=DH Enc=AES(128) Mac=SHA1
+ 0x00,0x30 - DH-DSS-AES128-SHA SSLv3 Kx=DH/DSS Au=DH Enc=AES(128) Mac=SHA1
++ 0xC0,0x76 - ECDHE-RSA-CAMELLIA128-SHA256 TLSv1.2 Kx=ECDH Au=RSA Enc=Camellia(128) Mac=SHA256
++ 0xC0,0x72 - ECDHE-ECDSA-CAMELLIA128-SHA256 TLSv1.2 Kx=ECDH Au=ECDSA Enc=Camellia(128) Mac=SHA256
++ 0x00,0xBE - DHE-RSA-CAMELLIA128-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=Camellia(128) Mac=SHA256
++ 0x00,0xBD - DHE-DSS-CAMELLIA128-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=Camellia(128) Mac=SHA256
++ 0x00,0xBC - DH-RSA-CAMELLIA128-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=Camellia(128) Mac=SHA256
++ 0x00,0xBB - DH-DSS-CAMELLIA128-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=Camellia(128) Mac=SHA256
+ 0x00,0x9A - DHE-RSA-SEED-SHA SSLv3 Kx=DH Au=RSA Enc=SEED(128) Mac=SHA1
+ 0x00,0x99 - DHE-DSS-SEED-SHA SSLv3 Kx=DH Au=DSS Enc=SEED(128) Mac=SHA1
+ 0x00,0x98 - DH-RSA-SEED-SHA SSLv3 Kx=DH/RSA Au=DH Enc=SEED(128) Mac=SHA1
+@@ -75,6 +96,7 @@
+ 0x00,0xA6 - ADH-AES128-GCM-SHA256 TLSv1.2 Kx=DH Au=None Enc=AESGCM(128) Mac=AEAD
+ 0x00,0x6C - ADH-AES128-SHA256 TLSv1.2 Kx=DH Au=None Enc=AES(128) Mac=SHA256
+ 0x00,0x34 - ADH-AES128-SHA SSLv3 Kx=DH Au=None Enc=AES(128) Mac=SHA1
++ 0x00,0xBF - ADH-CAMELLIA128-SHA256 TLSv1.2 Kx=DH Au=None Enc=Camellia(128) Mac=SHA256
+ 0x00,0x9B - ADH-SEED-SHA SSLv3 Kx=DH Au=None Enc=SEED(128) Mac=SHA1
+ 0x00,0x46 - ADH-CAMELLIA128-SHA SSLv3 Kx=DH Au=None Enc=Camellia(128) Mac=SHA1
+ 0xC0,0x31 - ECDH-RSA-AES128-GCM-SHA256 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=AESGCM(128) Mac=AEAD
+@@ -83,14 +105,18 @@
+ 0xC0,0x25 - ECDH-ECDSA-AES128-SHA256 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=AES(128) Mac=SHA256
+ 0xC0,0x0E - ECDH-RSA-AES128-SHA SSLv3 Kx=ECDH/RSA Au=ECDH Enc=AES(128) Mac=SHA1
+ 0xC0,0x04 - ECDH-ECDSA-AES128-SHA SSLv3 Kx=ECDH/ECDSA Au=ECDH Enc=AES(128) Mac=SHA1
++ 0xC0,0x78 - ECDH-RSA-CAMELLIA128-SHA256 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=Camellia(128) Mac=SHA256
++ 0xC0,0x74 - ECDH-ECDSA-CAMELLIA128-SHA256 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=Camellia(128) Mac=SHA256
+ 0x00,0x9C - AES128-GCM-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=AESGCM(128) Mac=AEAD
+ 0x00,0x3C - AES128-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=AES(128) Mac=SHA256
+ 0x00,0x2F - AES128-SHA SSLv3 Kx=RSA Au=RSA Enc=AES(128) Mac=SHA1
++ 0x00,0xBA - CAMELLIA128-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=Camellia(128) Mac=SHA256
+ 0x00,0x96 - SEED-SHA SSLv3 Kx=RSA Au=RSA Enc=SEED(128) Mac=SHA1
+ 0x00,0x41 - CAMELLIA128-SHA SSLv3 Kx=RSA Au=RSA Enc=Camellia(128) Mac=SHA1
+ 0x00,0x07 - IDEA-CBC-SHA SSLv3 Kx=RSA Au=RSA Enc=IDEA(128) Mac=SHA1
+ 0x05,0x00,0x80 - IDEA-CBC-MD5 SSLv2 Kx=RSA Au=RSA Enc=IDEA(128) Mac=MD5
+ 0x03,0x00,0x80 - RC2-CBC-MD5 SSLv2 Kx=RSA Au=RSA Enc=RC2(128) Mac=MD5
++ 0x00,0x94 - RSA-PSK-AES128-CBC-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=AES(128) Mac=SHA1
+ 0x00,0x8C - PSK-AES128-CBC-SHA SSLv3 Kx=PSK Au=PSK Enc=AES(128) Mac=SHA1
+ 0x00,0x21 - KRB5-IDEA-CBC-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=IDEA(128) Mac=SHA1
+ 0x00,0x25 - KRB5-IDEA-CBC-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=IDEA(128) Mac=MD5
+@@ -104,6 +130,7 @@
+ 0x00,0x05 - RC4-SHA SSLv3 Kx=RSA Au=RSA Enc=RC4(128) Mac=SHA1
+ 0x00,0x04 - RC4-MD5 SSLv3 Kx=RSA Au=RSA Enc=RC4(128) Mac=MD5
+ 0x01,0x00,0x80 - RC4-MD5 SSLv2 Kx=RSA Au=RSA Enc=RC4(128) Mac=MD5
++ 0x00,0x92 - RSA-PSK-RC4-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=RC4(128) Mac=SHA1
+ 0x00,0x8A - PSK-RC4-SHA SSLv3 Kx=PSK Au=PSK Enc=RC4(128) Mac=SHA1
+ 0x00,0x20 - KRB5-RC4-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=RC4(128) Mac=SHA1
+ 0x00,0x24 - KRB5-RC4-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=RC4(128) Mac=MD5
+@@ -122,6 +149,7 @@
+ 0xC0,0x03 - ECDH-ECDSA-DES-CBC3-SHA SSLv3 Kx=ECDH/ECDSA Au=ECDH Enc=3DES(168) Mac=SHA1
+ 0x00,0x0A - DES-CBC3-SHA SSLv3 Kx=RSA Au=RSA Enc=3DES(168) Mac=SHA1
+ 0x07,0x00,0xC0 - DES-CBC3-MD5 SSLv2 Kx=RSA Au=RSA Enc=3DES(168) Mac=MD5
++ 0x00,0x93 - RSA-PSK-3DES-EDE-CBC-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=3DES(168) Mac=SHA1
+ 0x00,0x8B - PSK-3DES-EDE-CBC-SHA SSLv3 Kx=PSK Au=PSK Enc=3DES(168) Mac=SHA1
+ 0x00,0x1F - KRB5-DES-CBC3-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=3DES(168) Mac=SHA1
+ 0x00,0x23 - KRB5-DES-CBC3-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=3DES(168) Mac=MD5
diff --git a/bin/new-ciphers.std_distro.txt b/bin/new-ciphers.std_distro.txt
new file mode 100644
index 0000000..dc1c4d3
--- /dev/null
+++ b/bin/new-ciphers.std_distro.txt
@@ -0,0 +1,188 @@
+--- /tmp/opensuse-13.1.ciphers.txt 2015-02-05 09:11:54.027069707 +0100
++++ /tmp/openssl-Vall.krb.txt 2015-02-05 09:12:54.837467962 +0100
+@@ -1,3 +1,6 @@
++ 0xCC,0x14 - ECDHE-ECDSA-CHACHA20-POLY1305 TLSv1.2 Kx=ECDH Au=ECDSA Enc=ChaCha20(256) Mac=AEAD
++ 0xCC,0x13 - ECDHE-RSA-CHACHA20-POLY1305 TLSv1.2 Kx=ECDH Au=RSA Enc=ChaCha20(256) Mac=AEAD
++ 0xCC,0x15 - DHE-RSA-CHACHA20-POLY1305 TLSv1.2 Kx=DH Au=RSA Enc=ChaCha20(256) Mac=AEAD
+ 0xC0,0x30 - ECDHE-RSA-AES256-GCM-SHA384 TLSv1.2 Kx=ECDH Au=RSA Enc=AESGCM(256) Mac=AEAD
+ 0xC0,0x2C - ECDHE-ECDSA-AES256-GCM-SHA384 TLSv1.2 Kx=ECDH Au=ECDSA Enc=AESGCM(256) Mac=AEAD
+ 0xC0,0x28 - ECDHE-RSA-AES256-SHA384 TLSv1.2 Kx=ECDH Au=RSA Enc=AES(256) Mac=SHA384
+@@ -7,18 +10,33 @@
+ 0xC0,0x22 - SRP-DSS-AES-256-CBC-SHA SSLv3 Kx=SRP Au=DSS Enc=AES(256) Mac=SHA1
+ 0xC0,0x21 - SRP-RSA-AES-256-CBC-SHA SSLv3 Kx=SRP Au=RSA Enc=AES(256) Mac=SHA1
+ 0xC0,0x20 - SRP-AES-256-CBC-SHA SSLv3 Kx=SRP Au=SRP Enc=AES(256) Mac=SHA1
++ 0x00,0xA5 - DH-DSS-AES256-GCM-SHA384 TLSv1.2 Kx=DH/DSS Au=DH Enc=AESGCM(256) Mac=AEAD
+ 0x00,0xA3 - DHE-DSS-AES256-GCM-SHA384 TLSv1.2 Kx=DH Au=DSS Enc=AESGCM(256) Mac=AEAD
++ 0x00,0xA1 - DH-RSA-AES256-GCM-SHA384 TLSv1.2 Kx=DH/RSA Au=DH Enc=AESGCM(256) Mac=AEAD
+ 0x00,0x9F - DHE-RSA-AES256-GCM-SHA384 TLSv1.2 Kx=DH Au=RSA Enc=AESGCM(256) Mac=AEAD
+ 0x00,0x6B - DHE-RSA-AES256-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=AES(256) Mac=SHA256
+ 0x00,0x6A - DHE-DSS-AES256-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=AES(256) Mac=SHA256
++ 0x00,0x69 - DH-RSA-AES256-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=AES(256) Mac=SHA256
++ 0x00,0x68 - DH-DSS-AES256-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=AES(256) Mac=SHA256
+ 0x00,0x39 - DHE-RSA-AES256-SHA SSLv3 Kx=DH Au=RSA Enc=AES(256) Mac=SHA1
+ 0x00,0x38 - DHE-DSS-AES256-SHA SSLv3 Kx=DH Au=DSS Enc=AES(256) Mac=SHA1
++ 0x00,0x37 - DH-RSA-AES256-SHA SSLv3 Kx=DH/RSA Au=DH Enc=AES(256) Mac=SHA1
++ 0x00,0x36 - DH-DSS-AES256-SHA SSLv3 Kx=DH/DSS Au=DH Enc=AES(256) Mac=SHA1
++ 0xC0,0x77 - ECDHE-RSA-CAMELLIA256-SHA384 TLSv1.2 Kx=ECDH Au=RSA Enc=Camellia(256) Mac=SHA384
++ 0xC0,0x73 - ECDHE-ECDSA-CAMELLIA256-SHA384 TLSv1.2 Kx=ECDH Au=ECDSA Enc=Camellia(256) Mac=SHA384
++ 0x00,0xC4 - DHE-RSA-CAMELLIA256-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=Camellia(256) Mac=SHA256
++ 0x00,0xC3 - DHE-DSS-CAMELLIA256-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=Camellia(256) Mac=SHA256
++ 0x00,0xC2 - DH-RSA-CAMELLIA256-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=Camellia(256) Mac=SHA256
++ 0x00,0xC1 - DH-DSS-CAMELLIA256-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=Camellia(256) Mac=SHA256
+ 0x00,0x88 - DHE-RSA-CAMELLIA256-SHA SSLv3 Kx=DH Au=RSA Enc=Camellia(256) Mac=SHA1
+ 0x00,0x87 - DHE-DSS-CAMELLIA256-SHA SSLv3 Kx=DH Au=DSS Enc=Camellia(256) Mac=SHA1
++ 0x00,0x86 - DH-RSA-CAMELLIA256-SHA SSLv3 Kx=DH/RSA Au=DH Enc=Camellia(256) Mac=SHA1
++ 0x00,0x85 - DH-DSS-CAMELLIA256-SHA SSLv3 Kx=DH/DSS Au=DH Enc=Camellia(256) Mac=SHA1
+ 0xC0,0x19 - AECDH-AES256-SHA SSLv3 Kx=ECDH Au=None Enc=AES(256) Mac=SHA1
+ 0x00,0xA7 - ADH-AES256-GCM-SHA384 TLSv1.2 Kx=DH Au=None Enc=AESGCM(256) Mac=AEAD
+ 0x00,0x6D - ADH-AES256-SHA256 TLSv1.2 Kx=DH Au=None Enc=AES(256) Mac=SHA256
+ 0x00,0x3A - ADH-AES256-SHA SSLv3 Kx=DH Au=None Enc=AES(256) Mac=SHA1
++ 0x00,0xC5 - ADH-CAMELLIA256-SHA256 TLSv1.2 Kx=DH Au=None Enc=Camellia(256) Mac=SHA256
+ 0x00,0x89 - ADH-CAMELLIA256-SHA SSLv3 Kx=DH Au=None Enc=Camellia(256) Mac=SHA1
+ 0xC0,0x32 - ECDH-RSA-AES256-GCM-SHA384 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=AESGCM(256) Mac=AEAD
+ 0xC0,0x2E - ECDH-ECDSA-AES256-GCM-SHA384 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=AESGCM(256) Mac=AEAD
+@@ -26,10 +44,14 @@
+ 0xC0,0x26 - ECDH-ECDSA-AES256-SHA384 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=AES(256) Mac=SHA384
+ 0xC0,0x0F - ECDH-RSA-AES256-SHA SSLv3 Kx=ECDH/RSA Au=ECDH Enc=AES(256) Mac=SHA1
+ 0xC0,0x05 - ECDH-ECDSA-AES256-SHA SSLv3 Kx=ECDH/ECDSA Au=ECDH Enc=AES(256) Mac=SHA1
++ 0xC0,0x79 - ECDH-RSA-CAMELLIA256-SHA384 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=Camellia(256) Mac=SHA384
++ 0xC0,0x75 - ECDH-ECDSA-CAMELLIA256-SHA384 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=Camellia(256) Mac=SHA384
+ 0x00,0x9D - AES256-GCM-SHA384 TLSv1.2 Kx=RSA Au=RSA Enc=AESGCM(256) Mac=AEAD
+ 0x00,0x3D - AES256-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=AES(256) Mac=SHA256
+ 0x00,0x35 - AES256-SHA SSLv3 Kx=RSA Au=RSA Enc=AES(256) Mac=SHA1
++ 0x00,0xC0 - CAMELLIA256-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=Camellia(256) Mac=SHA256
+ 0x00,0x84 - CAMELLIA256-SHA SSLv3 Kx=RSA Au=RSA Enc=Camellia(256) Mac=SHA1
++ 0x00,0x95 - RSA-PSK-AES256-CBC-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=AES(256) Mac=SHA1
+ 0x00,0x8D - PSK-AES256-CBC-SHA SSLv3 Kx=PSK Au=PSK Enc=AES(256) Mac=SHA1
+ 0xC0,0x2F - ECDHE-RSA-AES128-GCM-SHA256 TLSv1.2 Kx=ECDH Au=RSA Enc=AESGCM(128) Mac=AEAD
+ 0xC0,0x2B - ECDHE-ECDSA-AES128-GCM-SHA256 TLSv1.2 Kx=ECDH Au=ECDSA Enc=AESGCM(128) Mac=AEAD
+@@ -40,20 +62,37 @@
+ 0xC0,0x1F - SRP-DSS-AES-128-CBC-SHA SSLv3 Kx=SRP Au=DSS Enc=AES(128) Mac=SHA1
+ 0xC0,0x1E - SRP-RSA-AES-128-CBC-SHA SSLv3 Kx=SRP Au=RSA Enc=AES(128) Mac=SHA1
+ 0xC0,0x1D - SRP-AES-128-CBC-SHA SSLv3 Kx=SRP Au=SRP Enc=AES(128) Mac=SHA1
++ 0x00,0xA4 - DH-DSS-AES128-GCM-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=AESGCM(128) Mac=AEAD
+ 0x00,0xA2 - DHE-DSS-AES128-GCM-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=AESGCM(128) Mac=AEAD
++ 0x00,0xA0 - DH-RSA-AES128-GCM-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=AESGCM(128) Mac=AEAD
+ 0x00,0x9E - DHE-RSA-AES128-GCM-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=AESGCM(128) Mac=AEAD
+ 0x00,0x67 - DHE-RSA-AES128-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=AES(128) Mac=SHA256
+ 0x00,0x40 - DHE-DSS-AES128-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=AES(128) Mac=SHA256
++ 0x00,0x3F - DH-RSA-AES128-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=AES(128) Mac=SHA256
++ 0x00,0x3E - DH-DSS-AES128-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=AES(128) Mac=SHA256
+ 0x00,0x33 - DHE-RSA-AES128-SHA SSLv3 Kx=DH Au=RSA Enc=AES(128) Mac=SHA1
+ 0x00,0x32 - DHE-DSS-AES128-SHA SSLv3 Kx=DH Au=DSS Enc=AES(128) Mac=SHA1
++ 0x00,0x31 - DH-RSA-AES128-SHA SSLv3 Kx=DH/RSA Au=DH Enc=AES(128) Mac=SHA1
++ 0x00,0x30 - DH-DSS-AES128-SHA SSLv3 Kx=DH/DSS Au=DH Enc=AES(128) Mac=SHA1
++ 0xC0,0x76 - ECDHE-RSA-CAMELLIA128-SHA256 TLSv1.2 Kx=ECDH Au=RSA Enc=Camellia(128) Mac=SHA256
++ 0xC0,0x72 - ECDHE-ECDSA-CAMELLIA128-SHA256 TLSv1.2 Kx=ECDH Au=ECDSA Enc=Camellia(128) Mac=SHA256
++ 0x00,0xBE - DHE-RSA-CAMELLIA128-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=Camellia(128) Mac=SHA256
++ 0x00,0xBD - DHE-DSS-CAMELLIA128-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=Camellia(128) Mac=SHA256
++ 0x00,0xBC - DH-RSA-CAMELLIA128-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=Camellia(128) Mac=SHA256
++ 0x00,0xBB - DH-DSS-CAMELLIA128-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=Camellia(128) Mac=SHA256
+ 0x00,0x9A - DHE-RSA-SEED-SHA SSLv3 Kx=DH Au=RSA Enc=SEED(128) Mac=SHA1
+ 0x00,0x99 - DHE-DSS-SEED-SHA SSLv3 Kx=DH Au=DSS Enc=SEED(128) Mac=SHA1
++ 0x00,0x98 - DH-RSA-SEED-SHA SSLv3 Kx=DH/RSA Au=DH Enc=SEED(128) Mac=SHA1
++ 0x00,0x97 - DH-DSS-SEED-SHA SSLv3 Kx=DH/DSS Au=DH Enc=SEED(128) Mac=SHA1
+ 0x00,0x45 - DHE-RSA-CAMELLIA128-SHA SSLv3 Kx=DH Au=RSA Enc=Camellia(128) Mac=SHA1
+ 0x00,0x44 - DHE-DSS-CAMELLIA128-SHA SSLv3 Kx=DH Au=DSS Enc=Camellia(128) Mac=SHA1
++ 0x00,0x43 - DH-RSA-CAMELLIA128-SHA SSLv3 Kx=DH/RSA Au=DH Enc=Camellia(128) Mac=SHA1
++ 0x00,0x42 - DH-DSS-CAMELLIA128-SHA SSLv3 Kx=DH/DSS Au=DH Enc=Camellia(128) Mac=SHA1
+ 0xC0,0x18 - AECDH-AES128-SHA SSLv3 Kx=ECDH Au=None Enc=AES(128) Mac=SHA1
+ 0x00,0xA6 - ADH-AES128-GCM-SHA256 TLSv1.2 Kx=DH Au=None Enc=AESGCM(128) Mac=AEAD
+ 0x00,0x6C - ADH-AES128-SHA256 TLSv1.2 Kx=DH Au=None Enc=AES(128) Mac=SHA256
+ 0x00,0x34 - ADH-AES128-SHA SSLv3 Kx=DH Au=None Enc=AES(128) Mac=SHA1
++ 0x00,0xBF - ADH-CAMELLIA128-SHA256 TLSv1.2 Kx=DH Au=None Enc=Camellia(128) Mac=SHA256
+ 0x00,0x9B - ADH-SEED-SHA SSLv3 Kx=DH Au=None Enc=SEED(128) Mac=SHA1
+ 0x00,0x46 - ADH-CAMELLIA128-SHA SSLv3 Kx=DH Au=None Enc=Camellia(128) Mac=SHA1
+ 0xC0,0x31 - ECDH-RSA-AES128-GCM-SHA256 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=AESGCM(128) Mac=AEAD
+@@ -62,15 +101,24 @@
+ 0xC0,0x25 - ECDH-ECDSA-AES128-SHA256 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=AES(128) Mac=SHA256
+ 0xC0,0x0E - ECDH-RSA-AES128-SHA SSLv3 Kx=ECDH/RSA Au=ECDH Enc=AES(128) Mac=SHA1
+ 0xC0,0x04 - ECDH-ECDSA-AES128-SHA SSLv3 Kx=ECDH/ECDSA Au=ECDH Enc=AES(128) Mac=SHA1
++ 0xC0,0x78 - ECDH-RSA-CAMELLIA128-SHA256 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=Camellia(128) Mac=SHA256
++ 0xC0,0x74 - ECDH-ECDSA-CAMELLIA128-SHA256 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=Camellia(128) Mac=SHA256
+ 0x00,0x9C - AES128-GCM-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=AESGCM(128) Mac=AEAD
+ 0x00,0x3C - AES128-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=AES(128) Mac=SHA256
+ 0x00,0x2F - AES128-SHA SSLv3 Kx=RSA Au=RSA Enc=AES(128) Mac=SHA1
++ 0x00,0xBA - CAMELLIA128-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=Camellia(128) Mac=SHA256
+ 0x00,0x96 - SEED-SHA SSLv3 Kx=RSA Au=RSA Enc=SEED(128) Mac=SHA1
+ 0x00,0x41 - CAMELLIA128-SHA SSLv3 Kx=RSA Au=RSA Enc=Camellia(128) Mac=SHA1
++ 0x00,0x07 - IDEA-CBC-SHA SSLv3 Kx=RSA Au=RSA Enc=IDEA(128) Mac=SHA1
++ 0x05,0x00,0x80 - IDEA-CBC-MD5 SSLv2 Kx=RSA Au=RSA Enc=IDEA(128) Mac=MD5
+ 0x03,0x00,0x80 - RC2-CBC-MD5 SSLv2 Kx=RSA Au=RSA Enc=RC2(128) Mac=MD5
++ 0x00,0x94 - RSA-PSK-AES128-CBC-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=AES(128) Mac=SHA1
+ 0x00,0x8C - PSK-AES128-CBC-SHA SSLv3 Kx=PSK Au=PSK Enc=AES(128) Mac=SHA1
++ 0x00,0x21 - KRB5-IDEA-CBC-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=IDEA(128) Mac=SHA1
++ 0x00,0x25 - KRB5-IDEA-CBC-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=IDEA(128) Mac=MD5
+ 0xC0,0x11 - ECDHE-RSA-RC4-SHA SSLv3 Kx=ECDH Au=RSA Enc=RC4(128) Mac=SHA1
+ 0xC0,0x07 - ECDHE-ECDSA-RC4-SHA SSLv3 Kx=ECDH Au=ECDSA Enc=RC4(128) Mac=SHA1
++ 0x00,0x66 - DHE-DSS-RC4-SHA SSLv3 Kx=DH Au=DSS Enc=RC4(128) Mac=SHA1
+ 0xC0,0x16 - AECDH-RC4-SHA SSLv3 Kx=ECDH Au=None Enc=RC4(128) Mac=SHA1
+ 0x00,0x18 - ADH-RC4-MD5 SSLv3 Kx=DH Au=None Enc=RC4(128) Mac=MD5
+ 0xC0,0x0C - ECDH-RSA-RC4-SHA SSLv3 Kx=ECDH/RSA Au=ECDH Enc=RC4(128) Mac=SHA1
+@@ -78,7 +126,10 @@
+ 0x00,0x05 - RC4-SHA SSLv3 Kx=RSA Au=RSA Enc=RC4(128) Mac=SHA1
+ 0x00,0x04 - RC4-MD5 SSLv3 Kx=RSA Au=RSA Enc=RC4(128) Mac=MD5
+ 0x01,0x00,0x80 - RC4-MD5 SSLv2 Kx=RSA Au=RSA Enc=RC4(128) Mac=MD5
++ 0x00,0x92 - RSA-PSK-RC4-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=RC4(128) Mac=SHA1
+ 0x00,0x8A - PSK-RC4-SHA SSLv3 Kx=PSK Au=PSK Enc=RC4(128) Mac=SHA1
++ 0x00,0x20 - KRB5-RC4-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=RC4(128) Mac=SHA1
++ 0x00,0x24 - KRB5-RC4-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=RC4(128) Mac=MD5
+ 0xC0,0x12 - ECDHE-RSA-DES-CBC3-SHA SSLv3 Kx=ECDH Au=RSA Enc=3DES(168) Mac=SHA1
+ 0xC0,0x08 - ECDHE-ECDSA-DES-CBC3-SHA SSLv3 Kx=ECDH Au=ECDSA Enc=3DES(168) Mac=SHA1
+ 0xC0,0x1C - SRP-DSS-3DES-EDE-CBC-SHA SSLv3 Kx=SRP Au=DSS Enc=3DES(168) Mac=SHA1
+@@ -86,24 +137,55 @@
+ 0xC0,0x1A - SRP-3DES-EDE-CBC-SHA SSLv3 Kx=SRP Au=SRP Enc=3DES(168) Mac=SHA1
+ 0x00,0x16 - EDH-RSA-DES-CBC3-SHA SSLv3 Kx=DH Au=RSA Enc=3DES(168) Mac=SHA1
+ 0x00,0x13 - EDH-DSS-DES-CBC3-SHA SSLv3 Kx=DH Au=DSS Enc=3DES(168) Mac=SHA1
++ 0x00,0x10 - DH-RSA-DES-CBC3-SHA SSLv3 Kx=DH/RSA Au=DH Enc=3DES(168) Mac=SHA1
++ 0x00,0x0D - DH-DSS-DES-CBC3-SHA SSLv3 Kx=DH/DSS Au=DH Enc=3DES(168) Mac=SHA1
+ 0xC0,0x17 - AECDH-DES-CBC3-SHA SSLv3 Kx=ECDH Au=None Enc=3DES(168) Mac=SHA1
+ 0x00,0x1B - ADH-DES-CBC3-SHA SSLv3 Kx=DH Au=None Enc=3DES(168) Mac=SHA1
+ 0xC0,0x0D - ECDH-RSA-DES-CBC3-SHA SSLv3 Kx=ECDH/RSA Au=ECDH Enc=3DES(168) Mac=SHA1
+ 0xC0,0x03 - ECDH-ECDSA-DES-CBC3-SHA SSLv3 Kx=ECDH/ECDSA Au=ECDH Enc=3DES(168) Mac=SHA1
+ 0x00,0x0A - DES-CBC3-SHA SSLv3 Kx=RSA Au=RSA Enc=3DES(168) Mac=SHA1
+ 0x07,0x00,0xC0 - DES-CBC3-MD5 SSLv2 Kx=RSA Au=RSA Enc=3DES(168) Mac=MD5
++ 0x00,0x93 - RSA-PSK-3DES-EDE-CBC-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=3DES(168) Mac=SHA1
+ 0x00,0x8B - PSK-3DES-EDE-CBC-SHA SSLv3 Kx=PSK Au=PSK Enc=3DES(168) Mac=SHA1
++ 0x00,0x1F - KRB5-DES-CBC3-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=3DES(168) Mac=SHA1
++ 0x00,0x23 - KRB5-DES-CBC3-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=3DES(168) Mac=MD5
++ 0x08,0x00,0x80 - RC4-64-MD5 SSLv2 Kx=RSA Au=RSA Enc=RC4(64) Mac=MD5
++ 0x00,0x63 - EXP1024-DHE-DSS-DES-CBC-SHA SSLv3 Kx=DH(1024) Au=DSS Enc=DES(56) Mac=SHA1 export
+ 0x00,0x15 - EDH-RSA-DES-CBC-SHA SSLv3 Kx=DH Au=RSA Enc=DES(56) Mac=SHA1
+ 0x00,0x12 - EDH-DSS-DES-CBC-SHA SSLv3 Kx=DH Au=DSS Enc=DES(56) Mac=SHA1
++ 0x00,0x0F - DH-RSA-DES-CBC-SHA SSLv3 Kx=DH/RSA Au=DH Enc=DES(56) Mac=SHA1
++ 0x00,0x0C - DH-DSS-DES-CBC-SHA SSLv3 Kx=DH/DSS Au=DH Enc=DES(56) Mac=SHA1
+ 0x00,0x1A - ADH-DES-CBC-SHA SSLv3 Kx=DH Au=None Enc=DES(56) Mac=SHA1
++ 0x00,0x62 - EXP1024-DES-CBC-SHA SSLv3 Kx=RSA(1024) Au=RSA Enc=DES(56) Mac=SHA1 export
+ 0x00,0x09 - DES-CBC-SHA SSLv3 Kx=RSA Au=RSA Enc=DES(56) Mac=SHA1
+ 0x06,0x00,0x40 - DES-CBC-MD5 SSLv2 Kx=RSA Au=RSA Enc=DES(56) Mac=MD5
++ 0x00,0x1E - KRB5-DES-CBC-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=DES(56) Mac=SHA1
++ 0x00,0x22 - KRB5-DES-CBC-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=DES(56) Mac=MD5
++ 0x00,0x65 - EXP1024-DHE-DSS-RC4-SHA SSLv3 Kx=DH(1024) Au=DSS Enc=RC4(56) Mac=SHA1 export
++ 0x00,0x64 - EXP1024-RC4-SHA SSLv3 Kx=RSA(1024) Au=RSA Enc=RC4(56) Mac=SHA1 export
+ 0x00,0x14 - EXP-EDH-RSA-DES-CBC-SHA SSLv3 Kx=DH(512) Au=RSA Enc=DES(40) Mac=SHA1 export
+ 0x00,0x11 - EXP-EDH-DSS-DES-CBC-SHA SSLv3 Kx=DH(512) Au=DSS Enc=DES(40) Mac=SHA1 export
++ 0x00,0x0E - EXP-DH-RSA-DES-CBC-SHA SSLv3 Kx=DH/RSA Au=DH Enc=DES(40) Mac=SHA1 export
++ 0x00,0x0B - EXP-DH-DSS-DES-CBC-SHA SSLv3 Kx=DH/DSS Au=DH Enc=DES(40) Mac=SHA1 export
+ 0x00,0x19 - EXP-ADH-DES-CBC-SHA SSLv3 Kx=DH(512) Au=None Enc=DES(40) Mac=SHA1 export
+ 0x00,0x08 - EXP-DES-CBC-SHA SSLv3 Kx=RSA(512) Au=RSA Enc=DES(40) Mac=SHA1 export
+ 0x00,0x06 - EXP-RC2-CBC-MD5 SSLv3 Kx=RSA(512) Au=RSA Enc=RC2(40) Mac=MD5 export
+ 0x04,0x00,0x80 - EXP-RC2-CBC-MD5 SSLv2 Kx=RSA(512) Au=RSA Enc=RC2(40) Mac=MD5 export
++ 0x00,0x27 - EXP-KRB5-RC2-CBC-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=RC2(40) Mac=SHA1 export
++ 0x00,0x26 - EXP-KRB5-DES-CBC-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=DES(40) Mac=SHA1 export
++ 0x00,0x2A - EXP-KRB5-RC2-CBC-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=RC2(40) Mac=MD5 export
++ 0x00,0x29 - EXP-KRB5-DES-CBC-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=DES(40) Mac=MD5 export
+ 0x00,0x17 - EXP-ADH-RC4-MD5 SSLv3 Kx=DH(512) Au=None Enc=RC4(40) Mac=MD5 export
+ 0x00,0x03 - EXP-RC4-MD5 SSLv3 Kx=RSA(512) Au=RSA Enc=RC4(40) Mac=MD5 export
+ 0x02,0x00,0x80 - EXP-RC4-MD5 SSLv2 Kx=RSA(512) Au=RSA Enc=RC4(40) Mac=MD5 export
++ 0x00,0x28 - EXP-KRB5-RC4-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=RC4(40) Mac=SHA1 export
++ 0x00,0x2B - EXP-KRB5-RC4-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=RC4(40) Mac=MD5 export
++ 0xC0,0x10 - ECDHE-RSA-NULL-SHA SSLv3 Kx=ECDH Au=RSA Enc=None Mac=SHA1
++ 0xC0,0x06 - ECDHE-ECDSA-NULL-SHA SSLv3 Kx=ECDH Au=ECDSA Enc=None Mac=SHA1
++ 0xC0,0x15 - AECDH-NULL-SHA SSLv3 Kx=ECDH Au=None Enc=None Mac=SHA1
++ 0xC0,0x0B - ECDH-RSA-NULL-SHA SSLv3 Kx=ECDH/RSA Au=ECDH Enc=None Mac=SHA1
++ 0xC0,0x01 - ECDH-ECDSA-NULL-SHA SSLv3 Kx=ECDH/ECDSA Au=ECDH Enc=None Mac=SHA1
++ 0x00,0x3B - NULL-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=None Mac=SHA256
++ 0x00,0x02 - NULL-SHA SSLv3 Kx=RSA Au=RSA Enc=None Mac=SHA1
++ 0x00,0x01 - NULL-MD5 SSLv3 Kx=RSA Au=RSA Enc=None Mac=MD5
++ 0x00,0x00,0x00 - NULL-MD5 SSLv2 Kx=RSA(512) Au=RSA Enc=None Mac=MD5 export
diff --git a/bin/openssl-Vall.krb.txt b/bin/openssl-Vall.krb.txt
new file mode 100644
index 0000000..72d24f6
--- /dev/null
+++ b/bin/openssl-Vall.krb.txt
@@ -0,0 +1,144 @@
+rks@laptop:~/git.testssl.sh/bin|0% ./openssl.Linux.x86_64.krb5 ciphers -V 'ALL:COMPLEMENTOFALL' | wc -l
+193
+dirks@laptop:~/git.testssl.sh/bin|0% ./openssl.Linux.x86_64.krb5 ciphers -V
+ 0xCC,0x14 - ECDHE-ECDSA-CHACHA20-POLY1305-OLD TLSv1.2 Kx=ECDH Au=ECDSA Enc=ChaCha20(256) Mac=AEAD
+ 0xCC,0x13 - ECDHE-RSA-CHACHA20-POLY1305-OLD TLSv1.2 Kx=ECDH Au=RSA Enc=ChaCha20(256) Mac=AEAD
+ 0xCC,0x15 - DHE-RSA-CHACHA20-POLY1305-OLD TLSv1.2 Kx=DH Au=RSA Enc=ChaCha20(256) Mac=AEAD
+ 0xC0,0x30 - ECDHE-RSA-AES256-GCM-SHA384 TLSv1.2 Kx=ECDH Au=RSA Enc=AESGCM(256) Mac=AEAD
+ 0xC0,0x2C - ECDHE-ECDSA-AES256-GCM-SHA384 TLSv1.2 Kx=ECDH Au=ECDSA Enc=AESGCM(256) Mac=AEAD
+ 0xC0,0x28 - ECDHE-RSA-AES256-SHA384 TLSv1.2 Kx=ECDH Au=RSA Enc=AES(256) Mac=SHA384
+ 0xC0,0x24 - ECDHE-ECDSA-AES256-SHA384 TLSv1.2 Kx=ECDH Au=ECDSA Enc=AES(256) Mac=SHA384
+ 0xC0,0x14 - ECDHE-RSA-AES256-SHA SSLv3 Kx=ECDH Au=RSA Enc=AES(256) Mac=SHA1
+ 0xC0,0x0A - ECDHE-ECDSA-AES256-SHA SSLv3 Kx=ECDH Au=ECDSA Enc=AES(256) Mac=SHA1
+ 0xC0,0x22 - SRP-DSS-AES-256-CBC-SHA SSLv3 Kx=SRP Au=DSS Enc=AES(256) Mac=SHA1
+ 0xC0,0x21 - SRP-RSA-AES-256-CBC-SHA SSLv3 Kx=SRP Au=RSA Enc=AES(256) Mac=SHA1
+ 0xC0,0x20 - SRP-AES-256-CBC-SHA SSLv3 Kx=SRP Au=SRP Enc=AES(256) Mac=SHA1
+ 0x00,0xA5 - DH-DSS-AES256-GCM-SHA384 TLSv1.2 Kx=DH/DSS Au=DH Enc=AESGCM(256) Mac=AEAD
+ 0x00,0xA3 - DHE-DSS-AES256-GCM-SHA384 TLSv1.2 Kx=DH Au=DSS Enc=AESGCM(256) Mac=AEAD
+ 0x00,0xA1 - DH-RSA-AES256-GCM-SHA384 TLSv1.2 Kx=DH/RSA Au=DH Enc=AESGCM(256) Mac=AEAD
+ 0x00,0x9F - DHE-RSA-AES256-GCM-SHA384 TLSv1.2 Kx=DH Au=RSA Enc=AESGCM(256) Mac=AEAD
+ 0x00,0x6B - DHE-RSA-AES256-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=AES(256) Mac=SHA256
+ 0x00,0x6A - DHE-DSS-AES256-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=AES(256) Mac=SHA256
+ 0x00,0x69 - DH-RSA-AES256-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=AES(256) Mac=SHA256
+ 0x00,0x68 - DH-DSS-AES256-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=AES(256) Mac=SHA256
+ 0x00,0x39 - DHE-RSA-AES256-SHA SSLv3 Kx=DH Au=RSA Enc=AES(256) Mac=SHA1
+ 0x00,0x38 - DHE-DSS-AES256-SHA SSLv3 Kx=DH Au=DSS Enc=AES(256) Mac=SHA1
+ 0x00,0x37 - DH-RSA-AES256-SHA SSLv3 Kx=DH/RSA Au=DH Enc=AES(256) Mac=SHA1
+ 0x00,0x36 - DH-DSS-AES256-SHA SSLv3 Kx=DH/DSS Au=DH Enc=AES(256) Mac=SHA1
+ 0xC0,0x77 - ECDHE-RSA-CAMELLIA256-SHA384 TLSv1.2 Kx=ECDH Au=RSA Enc=Camellia(256) Mac=SHA384
+ 0xC0,0x73 - ECDHE-ECDSA-CAMELLIA256-SHA384 TLSv1.2 Kx=ECDH Au=ECDSA Enc=Camellia(256) Mac=SHA384
+ 0x00,0xC4 - DHE-RSA-CAMELLIA256-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=Camellia(256) Mac=SHA256
+ 0x00,0xC3 - DHE-DSS-CAMELLIA256-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=Camellia(256) Mac=SHA256
+ 0x00,0xC2 - DH-RSA-CAMELLIA256-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=Camellia(256) Mac=SHA256
+ 0x00,0xC1 - DH-DSS-CAMELLIA256-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=Camellia(256) Mac=SHA256
+ 0x00,0x88 - DHE-RSA-CAMELLIA256-SHA SSLv3 Kx=DH Au=RSA Enc=Camellia(256) Mac=SHA1
+ 0x00,0x87 - DHE-DSS-CAMELLIA256-SHA SSLv3 Kx=DH Au=DSS Enc=Camellia(256) Mac=SHA1
+ 0x00,0x86 - DH-RSA-CAMELLIA256-SHA SSLv3 Kx=DH/RSA Au=DH Enc=Camellia(256) Mac=SHA1
+ 0x00,0x85 - DH-DSS-CAMELLIA256-SHA SSLv3 Kx=DH/DSS Au=DH Enc=Camellia(256) Mac=SHA1
+ 0xC0,0x32 - ECDH-RSA-AES256-GCM-SHA384 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=AESGCM(256) Mac=AEAD
+ 0xC0,0x2E - ECDH-ECDSA-AES256-GCM-SHA384 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=AESGCM(256) Mac=AEAD
+ 0xC0,0x2A - ECDH-RSA-AES256-SHA384 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=AES(256) Mac=SHA384
+ 0xC0,0x26 - ECDH-ECDSA-AES256-SHA384 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=AES(256) Mac=SHA384
+ 0xC0,0x0F - ECDH-RSA-AES256-SHA SSLv3 Kx=ECDH/RSA Au=ECDH Enc=AES(256) Mac=SHA1
+ 0xC0,0x05 - ECDH-ECDSA-AES256-SHA SSLv3 Kx=ECDH/ECDSA Au=ECDH Enc=AES(256) Mac=SHA1
+ 0xC0,0x79 - ECDH-RSA-CAMELLIA256-SHA384 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=Camellia(256) Mac=SHA384
+ 0xC0,0x75 - ECDH-ECDSA-CAMELLIA256-SHA384 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=Camellia(256) Mac=SHA384
+ 0x00,0x9D - AES256-GCM-SHA384 TLSv1.2 Kx=RSA Au=RSA Enc=AESGCM(256) Mac=AEAD
+ 0x00,0x3D - AES256-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=AES(256) Mac=SHA256
+ 0x00,0x35 - AES256-SHA SSLv3 Kx=RSA Au=RSA Enc=AES(256) Mac=SHA1
+ 0x00,0xC0 - CAMELLIA256-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=Camellia(256) Mac=SHA256
+ 0x00,0x84 - CAMELLIA256-SHA SSLv3 Kx=RSA Au=RSA Enc=Camellia(256) Mac=SHA1
+ 0x00,0x95 - RSA-PSK-AES256-CBC-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=AES(256) Mac=SHA1
+ 0x00,0x8D - PSK-AES256-CBC-SHA SSLv3 Kx=PSK Au=PSK Enc=AES(256) Mac=SHA1
+ 0xC0,0x2F - ECDHE-RSA-AES128-GCM-SHA256 TLSv1.2 Kx=ECDH Au=RSA Enc=AESGCM(128) Mac=AEAD
+ 0xC0,0x2B - ECDHE-ECDSA-AES128-GCM-SHA256 TLSv1.2 Kx=ECDH Au=ECDSA Enc=AESGCM(128) Mac=AEAD
+ 0xC0,0x27 - ECDHE-RSA-AES128-SHA256 TLSv1.2 Kx=ECDH Au=RSA Enc=AES(128) Mac=SHA256
+ 0xC0,0x23 - ECDHE-ECDSA-AES128-SHA256 TLSv1.2 Kx=ECDH Au=ECDSA Enc=AES(128) Mac=SHA256
+ 0xC0,0x13 - ECDHE-RSA-AES128-SHA SSLv3 Kx=ECDH Au=RSA Enc=AES(128) Mac=SHA1
+ 0xC0,0x09 - ECDHE-ECDSA-AES128-SHA SSLv3 Kx=ECDH Au=ECDSA Enc=AES(128) Mac=SHA1
+ 0xC0,0x1F - SRP-DSS-AES-128-CBC-SHA SSLv3 Kx=SRP Au=DSS Enc=AES(128) Mac=SHA1
+ 0xC0,0x1E - SRP-RSA-AES-128-CBC-SHA SSLv3 Kx=SRP Au=RSA Enc=AES(128) Mac=SHA1
+ 0xC0,0x1D - SRP-AES-128-CBC-SHA SSLv3 Kx=SRP Au=SRP Enc=AES(128) Mac=SHA1
+ 0x00,0xA4 - DH-DSS-AES128-GCM-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=AESGCM(128) Mac=AEAD
+ 0x00,0xA2 - DHE-DSS-AES128-GCM-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=AESGCM(128) Mac=AEAD
+ 0x00,0xA0 - DH-RSA-AES128-GCM-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=AESGCM(128) Mac=AEAD
+ 0x00,0x9E - DHE-RSA-AES128-GCM-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=AESGCM(128) Mac=AEAD
+ 0x00,0x67 - DHE-RSA-AES128-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=AES(128) Mac=SHA256
+ 0x00,0x40 - DHE-DSS-AES128-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=AES(128) Mac=SHA256
+ 0x00,0x3F - DH-RSA-AES128-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=AES(128) Mac=SHA256
+ 0x00,0x3E - DH-DSS-AES128-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=AES(128) Mac=SHA256
+ 0x00,0x33 - DHE-RSA-AES128-SHA SSLv3 Kx=DH Au=RSA Enc=AES(128) Mac=SHA1
+ 0x00,0x32 - DHE-DSS-AES128-SHA SSLv3 Kx=DH Au=DSS Enc=AES(128) Mac=SHA1
+ 0x00,0x31 - DH-RSA-AES128-SHA SSLv3 Kx=DH/RSA Au=DH Enc=AES(128) Mac=SHA1
+ 0x00,0x30 - DH-DSS-AES128-SHA SSLv3 Kx=DH/DSS Au=DH Enc=AES(128) Mac=SHA1
+ 0xC0,0x76 - ECDHE-RSA-CAMELLIA128-SHA256 TLSv1.2 Kx=ECDH Au=RSA Enc=Camellia(128) Mac=SHA256
+ 0xC0,0x72 - ECDHE-ECDSA-CAMELLIA128-SHA256 TLSv1.2 Kx=ECDH Au=ECDSA Enc=Camellia(128) Mac=SHA256
+ 0x00,0xBE - DHE-RSA-CAMELLIA128-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=Camellia(128) Mac=SHA256
+ 0x00,0xBD - DHE-DSS-CAMELLIA128-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=Camellia(128) Mac=SHA256
+ 0x00,0xBC - DH-RSA-CAMELLIA128-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=Camellia(128) Mac=SHA256
+ 0x00,0xBB - DH-DSS-CAMELLIA128-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=Camellia(128) Mac=SHA256
+ 0x00,0x9A - DHE-RSA-SEED-SHA SSLv3 Kx=DH Au=RSA Enc=SEED(128) Mac=SHA1
+ 0x00,0x99 - DHE-DSS-SEED-SHA SSLv3 Kx=DH Au=DSS Enc=SEED(128) Mac=SHA1
+ 0x00,0x98 - DH-RSA-SEED-SHA SSLv3 Kx=DH/RSA Au=DH Enc=SEED(128) Mac=SHA1
+ 0x00,0x97 - DH-DSS-SEED-SHA SSLv3 Kx=DH/DSS Au=DH Enc=SEED(128) Mac=SHA1
+ 0x00,0x45 - DHE-RSA-CAMELLIA128-SHA SSLv3 Kx=DH Au=RSA Enc=Camellia(128) Mac=SHA1
+ 0x00,0x44 - DHE-DSS-CAMELLIA128-SHA SSLv3 Kx=DH Au=DSS Enc=Camellia(128) Mac=SHA1
+ 0x00,0x43 - DH-RSA-CAMELLIA128-SHA SSLv3 Kx=DH/RSA Au=DH Enc=Camellia(128) Mac=SHA1
+ 0x00,0x42 - DH-DSS-CAMELLIA128-SHA SSLv3 Kx=DH/DSS Au=DH Enc=Camellia(128) Mac=SHA1
+ 0xC0,0x31 - ECDH-RSA-AES128-GCM-SHA256 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=AESGCM(128) Mac=AEAD
+ 0xC0,0x2D - ECDH-ECDSA-AES128-GCM-SHA256 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=AESGCM(128) Mac=AEAD
+ 0xC0,0x29 - ECDH-RSA-AES128-SHA256 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=AES(128) Mac=SHA256
+ 0xC0,0x25 - ECDH-ECDSA-AES128-SHA256 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=AES(128) Mac=SHA256
+ 0xC0,0x0E - ECDH-RSA-AES128-SHA SSLv3 Kx=ECDH/RSA Au=ECDH Enc=AES(128) Mac=SHA1
+ 0xC0,0x04 - ECDH-ECDSA-AES128-SHA SSLv3 Kx=ECDH/ECDSA Au=ECDH Enc=AES(128) Mac=SHA1
+ 0xC0,0x78 - ECDH-RSA-CAMELLIA128-SHA256 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=Camellia(128) Mac=SHA256
+ 0xC0,0x74 - ECDH-ECDSA-CAMELLIA128-SHA256 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=Camellia(128) Mac=SHA256
+ 0x00,0x9C - AES128-GCM-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=AESGCM(128) Mac=AEAD
+ 0x00,0x3C - AES128-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=AES(128) Mac=SHA256
+ 0x00,0x2F - AES128-SHA SSLv3 Kx=RSA Au=RSA Enc=AES(128) Mac=SHA1
+ 0x00,0xBA - CAMELLIA128-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=Camellia(128) Mac=SHA256
+ 0x00,0x96 - SEED-SHA SSLv3 Kx=RSA Au=RSA Enc=SEED(128) Mac=SHA1
+ 0x00,0x41 - CAMELLIA128-SHA SSLv3 Kx=RSA Au=RSA Enc=Camellia(128) Mac=SHA1
+ 0x00,0x07 - IDEA-CBC-SHA SSLv3 Kx=RSA Au=RSA Enc=IDEA(128) Mac=SHA1
+ 0x00,0x94 - RSA-PSK-AES128-CBC-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=AES(128) Mac=SHA1
+ 0x00,0x8C - PSK-AES128-CBC-SHA SSLv3 Kx=PSK Au=PSK Enc=AES(128) Mac=SHA1
+ 0x00,0x21 - KRB5-IDEA-CBC-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=IDEA(128) Mac=SHA1
+ 0x00,0x25 - KRB5-IDEA-CBC-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=IDEA(128) Mac=MD5
+ 0xC0,0x11 - ECDHE-RSA-RC4-SHA SSLv3 Kx=ECDH Au=RSA Enc=RC4(128) Mac=SHA1
+ 0xC0,0x07 - ECDHE-ECDSA-RC4-SHA SSLv3 Kx=ECDH Au=ECDSA Enc=RC4(128) Mac=SHA1
+ 0x00,0x66 - DHE-DSS-RC4-SHA SSLv3 Kx=DH Au=DSS Enc=RC4(128) Mac=SHA1
+ 0xC0,0x0C - ECDH-RSA-RC4-SHA SSLv3 Kx=ECDH/RSA Au=ECDH Enc=RC4(128) Mac=SHA1
+ 0xC0,0x02 - ECDH-ECDSA-RC4-SHA SSLv3 Kx=ECDH/ECDSA Au=ECDH Enc=RC4(128) Mac=SHA1
+ 0x00,0x05 - RC4-SHA SSLv3 Kx=RSA Au=RSA Enc=RC4(128) Mac=SHA1
+ 0x00,0x04 - RC4-MD5 SSLv3 Kx=RSA Au=RSA Enc=RC4(128) Mac=MD5
+ 0x00,0x92 - RSA-PSK-RC4-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=RC4(128) Mac=SHA1
+ 0x00,0x8A - PSK-RC4-SHA SSLv3 Kx=PSK Au=PSK Enc=RC4(128) Mac=SHA1
+ 0x00,0x20 - KRB5-RC4-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=RC4(128) Mac=SHA1
+ 0x00,0x24 - KRB5-RC4-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=RC4(128) Mac=MD5
+ 0xC0,0x12 - ECDHE-RSA-DES-CBC3-SHA SSLv3 Kx=ECDH Au=RSA Enc=3DES(168) Mac=SHA1
+ 0xC0,0x08 - ECDHE-ECDSA-DES-CBC3-SHA SSLv3 Kx=ECDH Au=ECDSA Enc=3DES(168) Mac=SHA1
+ 0xC0,0x1C - SRP-DSS-3DES-EDE-CBC-SHA SSLv3 Kx=SRP Au=DSS Enc=3DES(168) Mac=SHA1
+ 0xC0,0x1B - SRP-RSA-3DES-EDE-CBC-SHA SSLv3 Kx=SRP Au=RSA Enc=3DES(168) Mac=SHA1
+ 0xC0,0x1A - SRP-3DES-EDE-CBC-SHA SSLv3 Kx=SRP Au=SRP Enc=3DES(168) Mac=SHA1
+ 0x00,0x16 - EDH-RSA-DES-CBC3-SHA SSLv3 Kx=DH Au=RSA Enc=3DES(168) Mac=SHA1
+ 0x00,0x13 - EDH-DSS-DES-CBC3-SHA SSLv3 Kx=DH Au=DSS Enc=3DES(168) Mac=SHA1
+ 0x00,0x10 - DH-RSA-DES-CBC3-SHA SSLv3 Kx=DH/RSA Au=DH Enc=3DES(168) Mac=SHA1
+ 0x00,0x0D - DH-DSS-DES-CBC3-SHA SSLv3 Kx=DH/DSS Au=DH Enc=3DES(168) Mac=SHA1
+ 0xC0,0x0D - ECDH-RSA-DES-CBC3-SHA SSLv3 Kx=ECDH/RSA Au=ECDH Enc=3DES(168) Mac=SHA1
+ 0xC0,0x03 - ECDH-ECDSA-DES-CBC3-SHA SSLv3 Kx=ECDH/ECDSA Au=ECDH Enc=3DES(168) Mac=SHA1
+ 0x00,0x0A - DES-CBC3-SHA SSLv3 Kx=RSA Au=RSA Enc=3DES(168) Mac=SHA1
+ 0x00,0x93 - RSA-PSK-3DES-EDE-CBC-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=3DES(168) Mac=SHA1
+ 0x00,0x8B - PSK-3DES-EDE-CBC-SHA SSLv3 Kx=PSK Au=PSK Enc=3DES(168) Mac=SHA1
+ 0x00,0x1F - KRB5-DES-CBC3-SHA SSLv3 Kx=KRB5 Au=KRB5 Enc=3DES(168) Mac=SHA1
+ 0x00,0x23 - KRB5-DES-CBC3-MD5 SSLv3 Kx=KRB5 Au=KRB5 Enc=3DES(168) Mac=MD5
+dirks@laptop:~/git.testssl.sh/bin|0% ./openssl.Linux.x86_64.krb5 version -a
+OpenSSL 1.0.2-chacha (1.0.2i-dev)
+built on: Wed Jun 22 19:36:39 2016
+platform: linux-x86_64
+options: bn(64,64) md2(int) rc4(16x,int) des(idx,cisc,16,int) idea(int) blowfish(idx)
+compiler: gcc -I. -I.. -I../include -DZLIB -DOPENSSL_THREADS -D_REENTRANT -DDSO_DLFCN -DHAVE_DLFCN_H -DKRB5_MIT -DOPENSSL_USE_BUILD_DATE -DOPENSSL_USE_IPV6 -Wa,--noexecstack -m64 -DL_ENDIAN -O3 -Wall -DOPENSSL_EXPERIMENTAL_JPAKE -DOPENSSL_IA32_SSE2 -DOPENSSL_BN_ASM_MONT -DOPENSSL_BN_ASM_MONT5 -DOPENSSL_BN_ASM_GF2m -DSHA1_ASM -DSHA256_ASM -DSHA512_ASM -DMD5_ASM -DAES_ASM -DVPAES_ASM -DBSAES_ASM -DWHIRLPOOL_ASM -DGHASH_ASM -DECP_NISTZ256_ASM
+OPENSSLDIR: "/etc/ssl"
+dirks@laptop:~/git.testssl.sh/bin|0% file ./openssl.Linux.x86_64.krb5
+./openssl.Linux.x86_64.krb5: ELF 64-bit LSB executable, x86-64, version 1 (SYSV), dynamically linked (uses shared libs), for GNU/Linux 2.6.24, BuildID[sha1]=ce0bf02cb481d9c5a855571b057f1d4b07039995, stripped
+dirks@laptop:~/git.testssl.sh/bin|0%
+
diff --git a/bin/openssl-Vall.txt b/bin/openssl-Vall.txt
new file mode 100644
index 0000000..2b9bd23
--- /dev/null
+++ b/bin/openssl-Vall.txt
@@ -0,0 +1,192 @@
+dirks@laptop:~/git.testssl.sh/bin|0% ./openssl.Linux.x86_64 ciphers -V 'ALL:COMPLEMENTOFALL' | wc -l
+179
+dirks@laptop:~/git.testssl.sh/bin|0% ./openssl.Linux.x86_64 ciphers -V 'ALL:COMPLEMENTOFALL'
+ 0xCC,0x14 - ECDHE-ECDSA-CHACHA20-POLY1305-OLD TLSv1.2 Kx=ECDH Au=ECDSA Enc=ChaCha20(256) Mac=AEAD
+ 0xCC,0x13 - ECDHE-RSA-CHACHA20-POLY1305-OLD TLSv1.2 Kx=ECDH Au=RSA Enc=ChaCha20(256) Mac=AEAD
+ 0xCC,0x15 - DHE-RSA-CHACHA20-POLY1305-OLD TLSv1.2 Kx=DH Au=RSA Enc=ChaCha20(256) Mac=AEAD
+ 0xC0,0x30 - ECDHE-RSA-AES256-GCM-SHA384 TLSv1.2 Kx=ECDH Au=RSA Enc=AESGCM(256) Mac=AEAD
+ 0xC0,0x2C - ECDHE-ECDSA-AES256-GCM-SHA384 TLSv1.2 Kx=ECDH Au=ECDSA Enc=AESGCM(256) Mac=AEAD
+ 0xC0,0x28 - ECDHE-RSA-AES256-SHA384 TLSv1.2 Kx=ECDH Au=RSA Enc=AES(256) Mac=SHA384
+ 0xC0,0x24 - ECDHE-ECDSA-AES256-SHA384 TLSv1.2 Kx=ECDH Au=ECDSA Enc=AES(256) Mac=SHA384
+ 0xC0,0x14 - ECDHE-RSA-AES256-SHA SSLv3 Kx=ECDH Au=RSA Enc=AES(256) Mac=SHA1
+ 0xC0,0x0A - ECDHE-ECDSA-AES256-SHA SSLv3 Kx=ECDH Au=ECDSA Enc=AES(256) Mac=SHA1
+ 0xC0,0x22 - SRP-DSS-AES-256-CBC-SHA SSLv3 Kx=SRP Au=DSS Enc=AES(256) Mac=SHA1
+ 0xC0,0x21 - SRP-RSA-AES-256-CBC-SHA SSLv3 Kx=SRP Au=RSA Enc=AES(256) Mac=SHA1
+ 0xC0,0x20 - SRP-AES-256-CBC-SHA SSLv3 Kx=SRP Au=SRP Enc=AES(256) Mac=SHA1
+ 0x00,0xA5 - DH-DSS-AES256-GCM-SHA384 TLSv1.2 Kx=DH/DSS Au=DH Enc=AESGCM(256) Mac=AEAD
+ 0x00,0xA3 - DHE-DSS-AES256-GCM-SHA384 TLSv1.2 Kx=DH Au=DSS Enc=AESGCM(256) Mac=AEAD
+ 0x00,0xA1 - DH-RSA-AES256-GCM-SHA384 TLSv1.2 Kx=DH/RSA Au=DH Enc=AESGCM(256) Mac=AEAD
+ 0x00,0x9F - DHE-RSA-AES256-GCM-SHA384 TLSv1.2 Kx=DH Au=RSA Enc=AESGCM(256) Mac=AEAD
+ 0x00,0x6B - DHE-RSA-AES256-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=AES(256) Mac=SHA256
+ 0x00,0x6A - DHE-DSS-AES256-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=AES(256) Mac=SHA256
+ 0x00,0x69 - DH-RSA-AES256-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=AES(256) Mac=SHA256
+ 0x00,0x68 - DH-DSS-AES256-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=AES(256) Mac=SHA256
+ 0x00,0x39 - DHE-RSA-AES256-SHA SSLv3 Kx=DH Au=RSA Enc=AES(256) Mac=SHA1
+ 0x00,0x38 - DHE-DSS-AES256-SHA SSLv3 Kx=DH Au=DSS Enc=AES(256) Mac=SHA1
+ 0x00,0x37 - DH-RSA-AES256-SHA SSLv3 Kx=DH/RSA Au=DH Enc=AES(256) Mac=SHA1
+ 0x00,0x36 - DH-DSS-AES256-SHA SSLv3 Kx=DH/DSS Au=DH Enc=AES(256) Mac=SHA1
+ 0xC0,0x77 - ECDHE-RSA-CAMELLIA256-SHA384 TLSv1.2 Kx=ECDH Au=RSA Enc=Camellia(256) Mac=SHA384
+ 0xC0,0x73 - ECDHE-ECDSA-CAMELLIA256-SHA384 TLSv1.2 Kx=ECDH Au=ECDSA Enc=Camellia(256) Mac=SHA384
+ 0x00,0xC4 - DHE-RSA-CAMELLIA256-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=Camellia(256) Mac=SHA256
+ 0x00,0xC3 - DHE-DSS-CAMELLIA256-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=Camellia(256) Mac=SHA256
+ 0x00,0xC2 - DH-RSA-CAMELLIA256-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=Camellia(256) Mac=SHA256
+ 0x00,0xC1 - DH-DSS-CAMELLIA256-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=Camellia(256) Mac=SHA256
+ 0x00,0x88 - DHE-RSA-CAMELLIA256-SHA SSLv3 Kx=DH Au=RSA Enc=Camellia(256) Mac=SHA1
+ 0x00,0x87 - DHE-DSS-CAMELLIA256-SHA SSLv3 Kx=DH Au=DSS Enc=Camellia(256) Mac=SHA1
+ 0x00,0x86 - DH-RSA-CAMELLIA256-SHA SSLv3 Kx=DH/RSA Au=DH Enc=Camellia(256) Mac=SHA1
+ 0x00,0x85 - DH-DSS-CAMELLIA256-SHA SSLv3 Kx=DH/DSS Au=DH Enc=Camellia(256) Mac=SHA1
+ 0xC0,0x19 - AECDH-AES256-SHA SSLv3 Kx=ECDH Au=None Enc=AES(256) Mac=SHA1
+ 0x00,0xA7 - ADH-AES256-GCM-SHA384 TLSv1.2 Kx=DH Au=None Enc=AESGCM(256) Mac=AEAD
+ 0x00,0x6D - ADH-AES256-SHA256 TLSv1.2 Kx=DH Au=None Enc=AES(256) Mac=SHA256
+ 0x00,0x3A - ADH-AES256-SHA SSLv3 Kx=DH Au=None Enc=AES(256) Mac=SHA1
+ 0x00,0xC5 - ADH-CAMELLIA256-SHA256 TLSv1.2 Kx=DH Au=None Enc=Camellia(256) Mac=SHA256
+ 0x00,0x89 - ADH-CAMELLIA256-SHA SSLv3 Kx=DH Au=None Enc=Camellia(256) Mac=SHA1
+ 0xC0,0x32 - ECDH-RSA-AES256-GCM-SHA384 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=AESGCM(256) Mac=AEAD
+ 0xC0,0x2E - ECDH-ECDSA-AES256-GCM-SHA384 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=AESGCM(256) Mac=AEAD
+ 0xC0,0x2A - ECDH-RSA-AES256-SHA384 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=AES(256) Mac=SHA384
+ 0xC0,0x26 - ECDH-ECDSA-AES256-SHA384 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=AES(256) Mac=SHA384
+ 0xC0,0x0F - ECDH-RSA-AES256-SHA SSLv3 Kx=ECDH/RSA Au=ECDH Enc=AES(256) Mac=SHA1
+ 0xC0,0x05 - ECDH-ECDSA-AES256-SHA SSLv3 Kx=ECDH/ECDSA Au=ECDH Enc=AES(256) Mac=SHA1
+ 0xC0,0x79 - ECDH-RSA-CAMELLIA256-SHA384 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=Camellia(256) Mac=SHA384
+ 0xC0,0x75 - ECDH-ECDSA-CAMELLIA256-SHA384 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=Camellia(256) Mac=SHA384
+ 0x00,0x9D - AES256-GCM-SHA384 TLSv1.2 Kx=RSA Au=RSA Enc=AESGCM(256) Mac=AEAD
+ 0x00,0x3D - AES256-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=AES(256) Mac=SHA256
+ 0x00,0x35 - AES256-SHA SSLv3 Kx=RSA Au=RSA Enc=AES(256) Mac=SHA1
+ 0x00,0xC0 - CAMELLIA256-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=Camellia(256) Mac=SHA256
+ 0x00,0x84 - CAMELLIA256-SHA SSLv3 Kx=RSA Au=RSA Enc=Camellia(256) Mac=SHA1
+ 0x00,0x95 - RSA-PSK-AES256-CBC-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=AES(256) Mac=SHA1
+ 0x00,0x8D - PSK-AES256-CBC-SHA SSLv3 Kx=PSK Au=PSK Enc=AES(256) Mac=SHA1
+ 0xC0,0x2F - ECDHE-RSA-AES128-GCM-SHA256 TLSv1.2 Kx=ECDH Au=RSA Enc=AESGCM(128) Mac=AEAD
+ 0xC0,0x2B - ECDHE-ECDSA-AES128-GCM-SHA256 TLSv1.2 Kx=ECDH Au=ECDSA Enc=AESGCM(128) Mac=AEAD
+ 0xC0,0x27 - ECDHE-RSA-AES128-SHA256 TLSv1.2 Kx=ECDH Au=RSA Enc=AES(128) Mac=SHA256
+ 0xC0,0x23 - ECDHE-ECDSA-AES128-SHA256 TLSv1.2 Kx=ECDH Au=ECDSA Enc=AES(128) Mac=SHA256
+ 0xC0,0x13 - ECDHE-RSA-AES128-SHA SSLv3 Kx=ECDH Au=RSA Enc=AES(128) Mac=SHA1
+ 0xC0,0x09 - ECDHE-ECDSA-AES128-SHA SSLv3 Kx=ECDH Au=ECDSA Enc=AES(128) Mac=SHA1
+ 0xC0,0x1F - SRP-DSS-AES-128-CBC-SHA SSLv3 Kx=SRP Au=DSS Enc=AES(128) Mac=SHA1
+ 0xC0,0x1E - SRP-RSA-AES-128-CBC-SHA SSLv3 Kx=SRP Au=RSA Enc=AES(128) Mac=SHA1
+ 0xC0,0x1D - SRP-AES-128-CBC-SHA SSLv3 Kx=SRP Au=SRP Enc=AES(128) Mac=SHA1
+ 0x00,0xA4 - DH-DSS-AES128-GCM-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=AESGCM(128) Mac=AEAD
+ 0x00,0xA2 - DHE-DSS-AES128-GCM-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=AESGCM(128) Mac=AEAD
+ 0x00,0xA0 - DH-RSA-AES128-GCM-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=AESGCM(128) Mac=AEAD
+ 0x00,0x9E - DHE-RSA-AES128-GCM-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=AESGCM(128) Mac=AEAD
+ 0x00,0x67 - DHE-RSA-AES128-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=AES(128) Mac=SHA256
+ 0x00,0x40 - DHE-DSS-AES128-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=AES(128) Mac=SHA256
+ 0x00,0x3F - DH-RSA-AES128-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=AES(128) Mac=SHA256
+ 0x00,0x3E - DH-DSS-AES128-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=AES(128) Mac=SHA256
+ 0x00,0x33 - DHE-RSA-AES128-SHA SSLv3 Kx=DH Au=RSA Enc=AES(128) Mac=SHA1
+ 0x00,0x32 - DHE-DSS-AES128-SHA SSLv3 Kx=DH Au=DSS Enc=AES(128) Mac=SHA1
+ 0x00,0x31 - DH-RSA-AES128-SHA SSLv3 Kx=DH/RSA Au=DH Enc=AES(128) Mac=SHA1
+ 0x00,0x30 - DH-DSS-AES128-SHA SSLv3 Kx=DH/DSS Au=DH Enc=AES(128) Mac=SHA1
+ 0xC0,0x76 - ECDHE-RSA-CAMELLIA128-SHA256 TLSv1.2 Kx=ECDH Au=RSA Enc=Camellia(128) Mac=SHA256
+ 0xC0,0x72 - ECDHE-ECDSA-CAMELLIA128-SHA256 TLSv1.2 Kx=ECDH Au=ECDSA Enc=Camellia(128) Mac=SHA256
+ 0x00,0xBE - DHE-RSA-CAMELLIA128-SHA256 TLSv1.2 Kx=DH Au=RSA Enc=Camellia(128) Mac=SHA256
+ 0x00,0xBD - DHE-DSS-CAMELLIA128-SHA256 TLSv1.2 Kx=DH Au=DSS Enc=Camellia(128) Mac=SHA256
+ 0x00,0xBC - DH-RSA-CAMELLIA128-SHA256 TLSv1.2 Kx=DH/RSA Au=DH Enc=Camellia(128) Mac=SHA256
+ 0x00,0xBB - DH-DSS-CAMELLIA128-SHA256 TLSv1.2 Kx=DH/DSS Au=DH Enc=Camellia(128) Mac=SHA256
+ 0x00,0x9A - DHE-RSA-SEED-SHA SSLv3 Kx=DH Au=RSA Enc=SEED(128) Mac=SHA1
+ 0x00,0x99 - DHE-DSS-SEED-SHA SSLv3 Kx=DH Au=DSS Enc=SEED(128) Mac=SHA1
+ 0x00,0x98 - DH-RSA-SEED-SHA SSLv3 Kx=DH/RSA Au=DH Enc=SEED(128) Mac=SHA1
+ 0x00,0x97 - DH-DSS-SEED-SHA SSLv3 Kx=DH/DSS Au=DH Enc=SEED(128) Mac=SHA1
+ 0x00,0x45 - DHE-RSA-CAMELLIA128-SHA SSLv3 Kx=DH Au=RSA Enc=Camellia(128) Mac=SHA1
+ 0x00,0x44 - DHE-DSS-CAMELLIA128-SHA SSLv3 Kx=DH Au=DSS Enc=Camellia(128) Mac=SHA1
+ 0x00,0x43 - DH-RSA-CAMELLIA128-SHA SSLv3 Kx=DH/RSA Au=DH Enc=Camellia(128) Mac=SHA1
+ 0x00,0x42 - DH-DSS-CAMELLIA128-SHA SSLv3 Kx=DH/DSS Au=DH Enc=Camellia(128) Mac=SHA1
+ 0xC0,0x18 - AECDH-AES128-SHA SSLv3 Kx=ECDH Au=None Enc=AES(128) Mac=SHA1
+ 0x00,0xA6 - ADH-AES128-GCM-SHA256 TLSv1.2 Kx=DH Au=None Enc=AESGCM(128) Mac=AEAD
+ 0x00,0x6C - ADH-AES128-SHA256 TLSv1.2 Kx=DH Au=None Enc=AES(128) Mac=SHA256
+ 0x00,0x34 - ADH-AES128-SHA SSLv3 Kx=DH Au=None Enc=AES(128) Mac=SHA1
+ 0x00,0xBF - ADH-CAMELLIA128-SHA256 TLSv1.2 Kx=DH Au=None Enc=Camellia(128) Mac=SHA256
+ 0x00,0x9B - ADH-SEED-SHA SSLv3 Kx=DH Au=None Enc=SEED(128) Mac=SHA1
+ 0x00,0x46 - ADH-CAMELLIA128-SHA SSLv3 Kx=DH Au=None Enc=Camellia(128) Mac=SHA1
+ 0xC0,0x31 - ECDH-RSA-AES128-GCM-SHA256 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=AESGCM(128) Mac=AEAD
+ 0xC0,0x2D - ECDH-ECDSA-AES128-GCM-SHA256 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=AESGCM(128) Mac=AEAD
+ 0xC0,0x29 - ECDH-RSA-AES128-SHA256 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=AES(128) Mac=SHA256
+ 0xC0,0x25 - ECDH-ECDSA-AES128-SHA256 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=AES(128) Mac=SHA256
+ 0xC0,0x0E - ECDH-RSA-AES128-SHA SSLv3 Kx=ECDH/RSA Au=ECDH Enc=AES(128) Mac=SHA1
+ 0xC0,0x04 - ECDH-ECDSA-AES128-SHA SSLv3 Kx=ECDH/ECDSA Au=ECDH Enc=AES(128) Mac=SHA1
+ 0xC0,0x78 - ECDH-RSA-CAMELLIA128-SHA256 TLSv1.2 Kx=ECDH/RSA Au=ECDH Enc=Camellia(128) Mac=SHA256
+ 0xC0,0x74 - ECDH-ECDSA-CAMELLIA128-SHA256 TLSv1.2 Kx=ECDH/ECDSA Au=ECDH Enc=Camellia(128) Mac=SHA256
+ 0x00,0x9C - AES128-GCM-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=AESGCM(128) Mac=AEAD
+ 0x00,0x3C - AES128-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=AES(128) Mac=SHA256
+ 0x00,0x2F - AES128-SHA SSLv3 Kx=RSA Au=RSA Enc=AES(128) Mac=SHA1
+ 0x00,0xBA - CAMELLIA128-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=Camellia(128) Mac=SHA256
+ 0x00,0x96 - SEED-SHA SSLv3 Kx=RSA Au=RSA Enc=SEED(128) Mac=SHA1
+ 0x00,0x41 - CAMELLIA128-SHA SSLv3 Kx=RSA Au=RSA Enc=Camellia(128) Mac=SHA1
+ 0x00,0x07 - IDEA-CBC-SHA SSLv3 Kx=RSA Au=RSA Enc=IDEA(128) Mac=SHA1
+ 0x05,0x00,0x80 - IDEA-CBC-MD5 SSLv2 Kx=RSA Au=RSA Enc=IDEA(128) Mac=MD5
+ 0x03,0x00,0x80 - RC2-CBC-MD5 SSLv2 Kx=RSA Au=RSA Enc=RC2(128) Mac=MD5
+ 0x00,0x94 - RSA-PSK-AES128-CBC-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=AES(128) Mac=SHA1
+ 0x00,0x8C - PSK-AES128-CBC-SHA SSLv3 Kx=PSK Au=PSK Enc=AES(128) Mac=SHA1
+ 0xC0,0x11 - ECDHE-RSA-RC4-SHA SSLv3 Kx=ECDH Au=RSA Enc=RC4(128) Mac=SHA1
+ 0xC0,0x07 - ECDHE-ECDSA-RC4-SHA SSLv3 Kx=ECDH Au=ECDSA Enc=RC4(128) Mac=SHA1
+ 0x00,0x66 - DHE-DSS-RC4-SHA SSLv3 Kx=DH Au=DSS Enc=RC4(128) Mac=SHA1
+ 0xC0,0x16 - AECDH-RC4-SHA SSLv3 Kx=ECDH Au=None Enc=RC4(128) Mac=SHA1
+ 0x00,0x18 - ADH-RC4-MD5 SSLv3 Kx=DH Au=None Enc=RC4(128) Mac=MD5
+ 0xC0,0x0C - ECDH-RSA-RC4-SHA SSLv3 Kx=ECDH/RSA Au=ECDH Enc=RC4(128) Mac=SHA1
+ 0xC0,0x02 - ECDH-ECDSA-RC4-SHA SSLv3 Kx=ECDH/ECDSA Au=ECDH Enc=RC4(128) Mac=SHA1
+ 0x00,0x05 - RC4-SHA SSLv3 Kx=RSA Au=RSA Enc=RC4(128) Mac=SHA1
+ 0x00,0x04 - RC4-MD5 SSLv3 Kx=RSA Au=RSA Enc=RC4(128) Mac=MD5
+ 0x01,0x00,0x80 - RC4-MD5 SSLv2 Kx=RSA Au=RSA Enc=RC4(128) Mac=MD5
+ 0x00,0x92 - RSA-PSK-RC4-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=RC4(128) Mac=SHA1
+ 0x00,0x8A - PSK-RC4-SHA SSLv3 Kx=PSK Au=PSK Enc=RC4(128) Mac=SHA1
+ 0xC0,0x12 - ECDHE-RSA-DES-CBC3-SHA SSLv3 Kx=ECDH Au=RSA Enc=3DES(168) Mac=SHA1
+ 0xC0,0x08 - ECDHE-ECDSA-DES-CBC3-SHA SSLv3 Kx=ECDH Au=ECDSA Enc=3DES(168) Mac=SHA1
+ 0xC0,0x1C - SRP-DSS-3DES-EDE-CBC-SHA SSLv3 Kx=SRP Au=DSS Enc=3DES(168) Mac=SHA1
+ 0xC0,0x1B - SRP-RSA-3DES-EDE-CBC-SHA SSLv3 Kx=SRP Au=RSA Enc=3DES(168) Mac=SHA1
+ 0xC0,0x1A - SRP-3DES-EDE-CBC-SHA SSLv3 Kx=SRP Au=SRP Enc=3DES(168) Mac=SHA1
+ 0x00,0x16 - EDH-RSA-DES-CBC3-SHA SSLv3 Kx=DH Au=RSA Enc=3DES(168) Mac=SHA1
+ 0x00,0x13 - EDH-DSS-DES-CBC3-SHA SSLv3 Kx=DH Au=DSS Enc=3DES(168) Mac=SHA1
+ 0x00,0x10 - DH-RSA-DES-CBC3-SHA SSLv3 Kx=DH/RSA Au=DH Enc=3DES(168) Mac=SHA1
+ 0x00,0x0D - DH-DSS-DES-CBC3-SHA SSLv3 Kx=DH/DSS Au=DH Enc=3DES(168) Mac=SHA1
+ 0xC0,0x17 - AECDH-DES-CBC3-SHA SSLv3 Kx=ECDH Au=None Enc=3DES(168) Mac=SHA1
+ 0x00,0x1B - ADH-DES-CBC3-SHA SSLv3 Kx=DH Au=None Enc=3DES(168) Mac=SHA1
+ 0xC0,0x0D - ECDH-RSA-DES-CBC3-SHA SSLv3 Kx=ECDH/RSA Au=ECDH Enc=3DES(168) Mac=SHA1
+ 0xC0,0x03 - ECDH-ECDSA-DES-CBC3-SHA SSLv3 Kx=ECDH/ECDSA Au=ECDH Enc=3DES(168) Mac=SHA1
+ 0x00,0x0A - DES-CBC3-SHA SSLv3 Kx=RSA Au=RSA Enc=3DES(168) Mac=SHA1
+ 0x07,0x00,0xC0 - DES-CBC3-MD5 SSLv2 Kx=RSA Au=RSA Enc=3DES(168) Mac=MD5
+ 0x00,0x93 - RSA-PSK-3DES-EDE-CBC-SHA SSLv3 Kx=RSAPSK Au=RSA Enc=3DES(168) Mac=SHA1
+ 0x00,0x8B - PSK-3DES-EDE-CBC-SHA SSLv3 Kx=PSK Au=PSK Enc=3DES(168) Mac=SHA1
+ 0x08,0x00,0x80 - RC4-64-MD5 SSLv2 Kx=RSA Au=RSA Enc=RC4(64) Mac=MD5
+ 0x00,0x63 - EXP1024-DHE-DSS-DES-CBC-SHA SSLv3 Kx=DH(1024) Au=DSS Enc=DES(56) Mac=SHA1 export
+ 0x00,0x15 - EDH-RSA-DES-CBC-SHA SSLv3 Kx=DH Au=RSA Enc=DES(56) Mac=SHA1
+ 0x00,0x12 - EDH-DSS-DES-CBC-SHA SSLv3 Kx=DH Au=DSS Enc=DES(56) Mac=SHA1
+ 0x00,0x0F - DH-RSA-DES-CBC-SHA SSLv3 Kx=DH/RSA Au=DH Enc=DES(56) Mac=SHA1
+ 0x00,0x0C - DH-DSS-DES-CBC-SHA SSLv3 Kx=DH/DSS Au=DH Enc=DES(56) Mac=SHA1
+ 0x00,0x1A - ADH-DES-CBC-SHA SSLv3 Kx=DH Au=None Enc=DES(56) Mac=SHA1
+ 0x00,0x62 - EXP1024-DES-CBC-SHA SSLv3 Kx=RSA(1024) Au=RSA Enc=DES(56) Mac=SHA1 export
+ 0x00,0x09 - DES-CBC-SHA SSLv3 Kx=RSA Au=RSA Enc=DES(56) Mac=SHA1
+ 0x00,0x61 - EXP1024-RC2-CBC-MD5 SSLv3 Kx=RSA(1024) Au=RSA Enc=RC2(56) Mac=MD5 export
+ 0x06,0x00,0x40 - DES-CBC-MD5 SSLv2 Kx=RSA Au=RSA Enc=DES(56) Mac=MD5
+ 0x00,0x65 - EXP1024-DHE-DSS-RC4-SHA SSLv3 Kx=DH(1024) Au=DSS Enc=RC4(56) Mac=SHA1 export
+ 0x00,0x64 - EXP1024-RC4-SHA SSLv3 Kx=RSA(1024) Au=RSA Enc=RC4(56) Mac=SHA1 export
+ 0x00,0x60 - EXP1024-RC4-MD5 SSLv3 Kx=RSA(1024) Au=RSA Enc=RC4(56) Mac=MD5 export
+ 0x00,0x14 - EXP-EDH-RSA-DES-CBC-SHA SSLv3 Kx=DH(512) Au=RSA Enc=DES(40) Mac=SHA1 export
+ 0x00,0x11 - EXP-EDH-DSS-DES-CBC-SHA SSLv3 Kx=DH(512) Au=DSS Enc=DES(40) Mac=SHA1 export
+ 0x00,0x0E - EXP-DH-RSA-DES-CBC-SHA SSLv3 Kx=DH/RSA Au=DH Enc=DES(40) Mac=SHA1 export
+ 0x00,0x0B - EXP-DH-DSS-DES-CBC-SHA SSLv3 Kx=DH/DSS Au=DH Enc=DES(40) Mac=SHA1 export
+ 0x00,0x19 - EXP-ADH-DES-CBC-SHA SSLv3 Kx=DH(512) Au=None Enc=DES(40) Mac=SHA1 export
+ 0x00,0x08 - EXP-DES-CBC-SHA SSLv3 Kx=RSA(512) Au=RSA Enc=DES(40) Mac=SHA1 export
+ 0x00,0x06 - EXP-RC2-CBC-MD5 SSLv3 Kx=RSA(512) Au=RSA Enc=RC2(40) Mac=MD5 export
+ 0x04,0x00,0x80 - EXP-RC2-CBC-MD5 SSLv2 Kx=RSA(512) Au=RSA Enc=RC2(40) Mac=MD5 export
+ 0x00,0x17 - EXP-ADH-RC4-MD5 SSLv3 Kx=DH(512) Au=None Enc=RC4(40) Mac=MD5 export
+ 0x00,0x03 - EXP-RC4-MD5 SSLv3 Kx=RSA(512) Au=RSA Enc=RC4(40) Mac=MD5 export
+ 0x02,0x00,0x80 - EXP-RC4-MD5 SSLv2 Kx=RSA(512) Au=RSA Enc=RC4(40) Mac=MD5 export
+ 0xC0,0x10 - ECDHE-RSA-NULL-SHA SSLv3 Kx=ECDH Au=RSA Enc=None Mac=SHA1
+ 0xC0,0x06 - ECDHE-ECDSA-NULL-SHA SSLv3 Kx=ECDH Au=ECDSA Enc=None Mac=SHA1
+ 0xC0,0x15 - AECDH-NULL-SHA SSLv3 Kx=ECDH Au=None Enc=None Mac=SHA1
+ 0xC0,0x0B - ECDH-RSA-NULL-SHA SSLv3 Kx=ECDH/RSA Au=ECDH Enc=None Mac=SHA1
+ 0xC0,0x01 - ECDH-ECDSA-NULL-SHA SSLv3 Kx=ECDH/ECDSA Au=ECDH Enc=None Mac=SHA1
+ 0x00,0x3B - NULL-SHA256 TLSv1.2 Kx=RSA Au=RSA Enc=None Mac=SHA256
+ 0x00,0x02 - NULL-SHA SSLv3 Kx=RSA Au=RSA Enc=None Mac=SHA1
+ 0x00,0x01 - NULL-MD5 SSLv3 Kx=RSA Au=RSA Enc=None Mac=MD5
+ 0x00,0x00,0x00 - NULL-MD5 SSLv2 Kx=RSA(512) Au=RSA Enc=None Mac=MD5 export
+dirks@laptop:~/git.testssl.sh/bin|0% ./openssl.Linux.x86_64 version -a
+OpenSSL 1.0.2-chacha (1.0.2i-dev)
+built on: Wed Jun 22 19:32:29 2016
+platform: linux-x86_64
+options: bn(64,64) md2(int) rc4(16x,int) des(idx,cisc,16,int) idea(int) blowfish(idx)
+compiler: gcc -I. -I.. -I../include -DZLIB -DOPENSSL_THREADS -D_REENTRANT -DDSO_DLFCN -DHAVE_DLFCN_H -DOPENSSL_USE_BUILD_DATE -DOPENSSL_USE_IPV6 -static -Wa,--noexecstack -m64 -DL_ENDIAN -O3 -Wall -DOPENSSL_EXPERIMENTAL_JPAKE -DOPENSSL_IA32_SSE2 -DOPENSSL_BN_ASM_MONT -DOPENSSL_BN_ASM_MONT5 -DOPENSSL_BN_ASM_GF2m -DSHA1_ASM -DSHA256_ASM -DSHA512_ASM -DMD5_ASM -DAES_ASM -DVPAES_ASM -DBSAES_ASM -DWHIRLPOOL_ASM -DGHASH_ASM -DECP_NISTZ256_ASM
+OPENSSLDIR: "/etc/ssl"
+dirks@laptop:~/git.testssl.sh/bin|0% file ./openssl.Linux.x86_64
+./openssl.Linux.x86_64: ELF 64-bit LSB executable, x86-64, version 1 (SYSV), statically linked, for GNU/Linux 2.6.24, BuildID[sha1]=2ac27c3998817aa9145f19a723e99e8a9191d0da, stripped
+dirks@laptop:~/git.testssl.sh/bin|0%
diff --git a/doc/testssl.1 b/doc/testssl.1
new file mode 100644
index 0000000..4148b35
--- /dev/null
+++ b/doc/testssl.1
@@ -0,0 +1,893 @@
+.\" generated with Ronn/v0.7.3
+.\" http://github.com/rtomayko/ronn/tree/0.7.3
+.
+.TH "TESTSSL" "1" "January 2020" "" ""
+.
+.SH "NAME"
+\fBtestssl\fR
+.
+.SH "NAME"
+testssl\.sh \-\- check encryption of SSL/TLS servers
+.
+.SH "SYNOPSIS"
+\fBtestssl\.sh [OPTIONS] <URI>\fR, \fBtestssl\.sh [OPTIONS] \-\-file <FILE>\fR
+.
+.P
+or
+.
+.P
+\fBtestssl\.sh [BANNER OPTIONS]\fR
+.
+.SH "DESCRIPTION"
+testssl\.sh is a free command line tool which checks a server\'s service on any port for the support of TLS/SSL ciphers, protocols as well as cryptographic flaws and much more\.
+.
+.P
+The output rates findings by color (screen) or severity (file output) so that you are able to tell whether something is good or bad\. The (screen) output has several sections in which classes of checks are being performed\. To ease readability on the screen it aligns and indents the output properly\.
+.
+.P
+Only you see the result\. You also can use it internally on your LAN\. Except DNS lookups or unless you instruct testssl\.sh to check for revocation of certificates it doesn\'t use any other hosts or even third parties for any test\.
+.
+.SH "REQUIREMENTS"
+Testssl\.sh is out of the box portable: it runs under any Unix\-like stack: Linux, *BSD, MacOS X, WSL=Windows Subsystem for Linux, Cygwin and MSYS2\. \fBbash\fR is a prerequisite, also version 3 is still supported\. Standard utilities like awk, sed, tr and head are also needed\. This can be of a BSD, System 5 or GNU flavor whereas grep from System V is not yet supported\.
+.
+.P
+Any OpenSSL or LibreSSL version is needed as a helper\. Unlike previous versions of testssl\.sh almost every check is done via (TCP) sockets\. In addition statically linked OpenSSL binaries for major operating systems are supplied in \fB\./bin/\fR\.
+.
+.SH "GENERAL"
+\fBtestssl\.sh URI\fR as the default invocation does the so\-called default run which does a number of checks and puts out the results colorized (ANSI and termcap) on the screen\. It does every check listed below except \fB\-E\fR which are (order of appearance):
+.
+.P
+0) displays a banner (see below), does a DNS lookup also for further IP addresses and does for the returned IP address a reverse lookup\. Last but not least a service check is being done\.
+.
+.P
+1) SSL/TLS protocol check
+.
+.P
+2) standard cipher categories to give you upfront an idea for the ciphers supported
+.
+.P
+3) checks (perfect) forward secrecy: ciphers and elliptical curves
+.
+.P
+4) server preferences (server order)
+.
+.P
+5) server defaults (certificate info, TLS extensions, session information)
+.
+.P
+6) HTTP header (if HTTP detected or being forced via \fB\-\-assume\-http\fR)
+.
+.P
+7) vulnerabilities
+.
+.P
+8) testing each of 370 preconfigured ciphers
+.
+.P
+9) client simulation
+.
+.SH "OPTIONS AND PARAMETERS"
+Options are either short or long options\. Any long or short option requiring a value can be called with or without an equal sign\. E\.g\. \fBtestssl\.sh \-t=smtp \-\-wide \-\-openssl=/usr/bin/openssl <URI>\fR (short options with equal sign) is equivalent to \fBtestssl\.sh \-\-starttls smtp \-\-wide \-\-openssl /usr/bin/openssl <URI>\fR (long option without equal sign)\. Some command line options can also be preset via ENV variables\. \fBWIDE=true OPENSSL=/usr/bin/openssl testssl\.sh \-\-starttls=smtp <URI>\fR would be the equivalent to the aforementioned examples\. Preference has the command line over any environment variables\.
+.
+.P
+\fB<URI>\fR or \fB\-\-file <FILE>\fR always needs to be the last parameter\.
+.
+.SS "BANNER OPTIONS"
+\fB\-\-help\fR (or no arg) display command line help
+.
+.P
+\fB\-b, \-\-banner\fR displays testssl\.sh banner, including license, usage conditions, version of testssl\.sh, detected openssl version, its path to it, # of ciphers of openssl, its build date and the architecture\.
+.
+.P
+\fB\-v, \-\-version\fR same as before
+.
+.P
+\fB\-V [pattern] , \-\-local [pattern]\fR pretty print all local ciphers supported by openssl version\. If a pattern is supplied it performs a match (ignore case) on any of the strings supplied in the wide output, see below\. The pattern will be searched in the any of the columns: hexcode, cipher suite name (OpenSSL or IANA), key exchange, encryption, bits\. It does a word pattern match for non\-numbers, for number just a normal match applies\. Numbers here are defined as [0\-9,A\-F]\. This means (attention: catch) that the pattern CBC is matched as non\-word, but AES as word\.
+.
+.SS "INPUT PARAMETERS"
+\fBURI\fR can be a hostname, an IPv4 or IPv6 address (restriction see below) or an URL\. IPv6 addresses need to be in square brackets\. For any given parameter port 443 is assumed unless specified by appending a colon and a port number\. The only preceding protocol specifier allowed is \fBhttps\fR\. You need to be aware that checks for an IP address might not hit the vhost you want\. DNS resolution (A/AAAA record) is being performed unless you have an \fB/etc/hosts\fR entry for the hostname\.
+.
+.P
+\fB\-\-file <fname>\fR or the equivalent \fB\-iL <fname>\fR are mass testing options\. Per default it implicitly turns on \fB\-\-warnings batch\fR\. In its first incarnation the mass testing option reads command lines from \fBfname\fR\. \fBfname\fR consists of command lines of testssl, one line per instance\. Comments after \fB#\fR are ignored, \fBEOF\fR signals the end of fname any subsequent lines will be ignored too\. You can also supply additional options which will be inherited to each child, e\.g\. When invoking \fBtestssl\.sh \-\-wide \-\-log \-\-file <fname>\fR \. Each single line in \fBfname\fR is parsed upon execution\. If there\'s a conflicting option and serial mass testing option is being performed the check will be aborted at the time it occurs and depending on the output option potentially leaving you with an output file without footer\. In parallel mode the mileage varies, likely a line won\'t be scanned\.
+.
+.P
+Alternatively \fBfname\fR can be in \fBnmap\fR\'s grep(p)able output format (\fB\-oG\fR)\. Only open ports will be considered\. Multiple ports per line are allowed\. The ports can be different and will be tested by testssl\.sh according to common practice in the internet, i\.e\. if nmap shows in its output an open port 25, automatically \fB\-t smtp\fR will be added before the URI whereas port 465 will be treated as a plain TLS/SSL port, not requiring an STARTTLS SMTP handshake upfront\. This is done by an internal table which correlates nmap\'s open port detected to the STARTTLS/plain text decision from testssl\.sh\.
+.
+.P
+Nmap\'s output always returns IP addresses and only if there\'s a PTR DNS record available a hostname\. As it is not checked by nmap whether the hostname matches the IP (A or AAAA record), testssl\.sh does this automatically for you\. If the A record of the hostname matches the IP address, the hostname is used and not the IP address\. Please keep in mind that checks against an IP address might not hit the vhost you maybe were aiming at and thus it may lead to different results\.
+.
+.P
+A typical internal conversion to testssl\.sh file format from nmap\'s grep(p)able format could look like:
+.
+.IP "" 4
+.
+.nf
+
+10\.10\.12\.16:443
+10\.10\.12\.16:1443
+\-t smtp host\.example\.com:25
+host\.example\.com:443
+host\.example\.com:631
+\-t ftp 10\.10\.12\.11:21
+10\.10\.12\.11:8443
+.
+.fi
+.
+.IP "" 0
+.
+.P
+Please note that \fBfname\fR has to be in Unix format\. DOS carriage returns won\'t be accepted\. Instead of the command line switch the environment variable FNAME will be honored too\.
+.
+.P
+\fB\-\-mode <serial|parallel>\fR\. Mass testing to be done serial (default) or parallel (\fB\-\-parallel\fR is shortcut for the latter, \fB\-\-serial\fR is the opposite option)\. Per default mass testing is being run in serial mode, i\.e\. one line after the other is processed and invoked\. The variable \fBMASS_TESTING_MODE\fR can be defined to be either equal \fBserial\fR or \fBparallel\fR\.
+.
+.P
+\fB\-\-warnings <batch|off>\fR\. The warnings parameter determines how testssl\.sh will deal with situations where user input normally will be necessary\. There are two options\. \fBbatch\fR doesn\'t wait for a confirming keypress when a client\- or server\-side probem is encountered\. As of 3\.0 it just then terminates the particular scan\. This is automatically chosen for mass testing (\fB\-\-file\fR)\. \fBoff\fR just skips the warning, the confirmation but continues the scan, independent whether it makes sense or not\. Please note that there are conflicts where testssl\.sh will still ask for confirmation which are the ones which otherwise would have a drastic impact on the results\. Almost any other decision will be made in the future as a best guess by testssl\.sh\. The same can be achieved by setting the environment variable \fBWARNINGS\fR\.
+.
+.P
+\fB\-\-connect\-timeout <seconds>\fR This is useful for socket TCP connections to a node\. If the node does not complete a TCP handshake (e\.g\. because it is down or behind a firewall or there\'s an IDS or a tarpit) testssl\.sh may usually hang for around 2 minutes or even much more\. This parameter instructs testssl\.sh to wait at most \fBseconds\fR for the handshake to complete before giving up\. This option only works if your OS has a timeout binary installed\. CONNECT_TIMEOUT is the corresponding environment variable\.
+.
+.P
+\fB\-\-openssl\-timeout <seconds>\fR This is especially useful for all connects using openssl and practically useful for mass testing\. It avoids the openssl connect to hang for ~2 minutes\. The expected parameter \fBseconds\fR instructs testssl\.sh to wait before the openssl connect will be terminated\. The option is only available if your OS has a timeout binary installed\. As there are different implementations of \fBtimeout\fR: It automatically calls the binary with the right parameters\. OPENSSL_TIMEOUT is the equivalent environment variable\.
+.
+.P
+\fB\-\-basicauth <user:pass>\fR This can be set to provide HTTP basic auth credentials which are used during checks for security headers\. BASICAUTH is the ENV variable you can use instead\.
+.
+.SS "SPECIAL INVOCATIONS"
+\fB\-t <protocol>, \-\-starttls <protocol>\fR does a default run against a STARTTLS enabled \fBprotocol\fR\. \fBprotocol\fR must be one of \fBftp\fR, \fBsmtp\fR, \fBpop3\fR, \fBimap\fR, \fBxmpp\fR, \fBtelnet\fR, \fBldap\fR, \fBirc\fR, \fBlmtp\fR, \fBnntp\fR, \fBpostgres\fR, \fBmysql\fR\. For the latter four you need e\.g\. the supplied OpenSSL or OpenSSL version 1\.1\.1\. Please note: MongoDB doesn\'t offer a STARTTLS connection, LDAP currently only works with \fB\-\-ssl\-native\fR\. \fBtelnet\fR and \fBirc\fR is WIP\.
+.
+.P
+\fB\-\-xmpphost <jabber_domain>\fR is an additional option for STARTTLS enabled XMPP: It expects the jabber domain as a parameter\. This is only needed if the domain is different from the URI supplied\.
+.
+.P
+\fB\-\-mx <domain|host>\fR tests all MX records (STARTTLS on port 25) from high to low priority, one after the other\.
+.
+.P
+\fB\-\-ip <ip>\fR tests either the supplied IPv4 or IPv6 address instead of resolving host(s) in \fB<URI>\fR\. IPv6 addresses need to be supplied in square brackets\. \fB\-\-ip=one\fR means: just test the first A record DNS returns (useful for multiple IPs)\. If \fB\-6\fR and \fB\-\-ip=one\fR was supplied an AAAA record will be picked if available\. The \fB\-\-ip\fR option might be also useful if you want to resolve the supplied hostname to a different IP, similar as if you would edit \fB/etc/hosts\fR or \fB/c/Windows/System32/drivers/etc/hosts\fR\. \fB\-\-ip=proxy\fR tries a DNS resolution via proxy\.
+.
+.P
+\fB\-\-proxy <host>:<port>\fR does ANY check via the specified proxy\. \fB\-\-proxy=auto\fR inherits the proxy setting from the environment\. The hostname supplied will be resolved to the first A record\. In addition if you want lookups via proxy you can specify \fBDNS_VIA_PROXY=true\fR\. OCSP revocation checking (\fB\-S \-\-phone\-out\fR) is not supported by OpenSSL via proxy\. As supplying a proxy is an indicator for port 80 and 443 outgoing being blocked in your network an OCSP revocation check won\'t be performed\. However if \fBIGN_OCSP_PROXY=true\fR has been supplied it will be tried directly\. Authentication to the proxy is not supported\. Proxying via IPv6 addresses is not possible, no HTTPS or SOCKS proxy is supported\.
+.
+.P
+\fB\-6\fR does (also) IPv6 checks\. Please note that testssl\.sh doesn\'t perform checks on an IPv6 address automatically, because of two reasons: testssl\.sh does no connectivity checks for IPv6 and it cannot determine reliably whether the OpenSSL binary you\'re using has IPv6 s_client support\. \fB\-6\fR assumes both is the case\. If both conditions are met and you in general prefer to test for IPv6 branches as well you can add \fBHAS_IPv6\fR to your shell environment\. Besides the OpenSSL binary supplied IPv6 is known to work with vanilla OpenSSL >= 1\.1\.0 and older versions >=1\.0\.2 in RHEL/CentOS/FC and Gentoo\.
+.
+.P
+\fB\-\-ssl\-native\fR Instead of using a mixture of bash sockets and a few openssl s_client connects, testssl\.sh uses the latter (almost) only\. This is faster at the moment but provides less accurate results, especially for the client simulation and for cipher support\. For all checks you will see a warning if testssl\.sh cannot tell if a particular check cannot be performed\. For some checks however you might end up getting false negatives without a warning\. This option is only recommended if you prefer speed over accuracy or you know that your target has sufficient overlap with the protocols and cipher provided by your openssl binary\.
+.
+.P
+\fB\-\-openssl <path_to_openssl>\fR testssl\.sh tries very hard to find automagically the binary supplied (where the tree of testssl\.sh resides, from the directory where testssl\.sh has been started from, etc\.)\. If all that doesn\'t work it falls back to openssl supplied from the OS (\fB$PATH\fR)\. With this option you can point testssl\.sh to your binary of choice and override any internal magic to find the openssl binary\. (Environment preset via \fBOPENSSL=<path_to_openssl>\fR)\.
+.
+.SS "TUNING OPTIONS"
+\fB\-\-bugs\fR does some workarounds for buggy servers like padding for old F5 devices\. The option is passed as \fB\-bug\fR to openssl when needed, see \fBs_client(1)\fR, environment preset via \fBBUGS="\-bugs"\fR (1x dash)\. For the socket part testssl\.sh has always workarounds in place to cope with broken server implementations\.
+.
+.P
+\fB\-\-assuming\-http\fR testssl\.sh normally does upfront an application protocol detection\. In cases where HTTP cannot be automatically detected you may want to use this option\. It enforces testssl\.sh not to skip HTTP specific tests (HTTP header) and to run a browser based client simulation\. Please note that sometimes also the severity depends on the application protocol, e\.g\. SHA1 signed certificates, the lack of any SAN matches and some vulnerabilities will be punished harder when checking a web server as opposed to a mail server\.
+.
+.P
+\fB\-n, \-\-nodns <min|none>\fR tells testssl\.sh which DNS lookups should be performed\. \fBmin\fR uses only forward DNS resolution (A and AAAA record or MX record) and skips CAA lookups and PTR records from the IP address back to a DNS name\. \fBnone\fR performs no DNS lookups at all\. For the latter you either have to supply the IP address as a target, to use \fB\-\-ip\fR or have the IP address in \fB/etc/hosts\fR\. The use of the switch is only useful if you either can\'t or are not willing to perform DNS lookups\. The latter can apply e\.g\. to some pentests\. In general this option could e\.g\. help you to avoid timeouts by DNS lookups\. \fBNODNS\fR is the environment variable for this\.
+.
+.P
+\fB\-\-sneaky\fR For HTTP header checks testssl\.sh uses normally the server friendly HTTP user agent \fBTLS tester from ${URL}\fR\. With this option your traces are less verbose and a Firefox user agent is being used\. Be aware that it doesn\'t hide your activities\. That is just not possible (environment preset via \fBSNEAKY=true\fR)\.
+.
+.P
+\fB\-\-ids\-friendly\fR is a switch which may help to get a scan finished which otherwise would be blocked by a server side IDS\. This switch skips tests for the following vulnerabilities: Heartbleed, CCS Injection, Ticketbleed and ROBOT\. The environment variable OFFENSIVE set to false will achieve the same result\. Please be advised that as an alternative or as a general approach you can try to apply evasion techniques by changing the variables USLEEP_SND and / or USLEEP_REC and maybe MAX_WAITSOCK\.
+.
+.P
+\fB\-\-phone\-out\fR Checking for revoked certificates via CRL and OCSP is not done per default\. This switch instructs testssl\.sh to query external \-\- in a sense of the current run \-\- URIs\. By using this switch you acknowledge that the check might have privacy issues, a download of several megabytes (CRL file) may happen and there may be network connectivity problems while contacting the endpoint which testssl\.sh doesn\'t handle\. PHONE_OUT is the environment variable for this which needs to be set to true if you want this\.
+.
+.P
+\fB\-\-add\-ca <cafile>\fR enables you to add your own CA(s) for trust chain checks\. \fBcafile\fR can be a single path or multiple paths as a comma separated list of root CA files\. Internally they will be added during runtime to all CA stores\. This is (only) useful for internal hosts whose certificates is issued by internal CAs\. Alternatively ADDITIONAL_CA_FILES is the environment variable for this\.
+.
+.SS "SINGLE CHECK OPTIONS"
+Any single check switch supplied as an argument prevents testssl\.sh from doing a default run\. It just takes this and if supplied other options and runs them \- in the order they would also appear in the default run\.
+.
+.P
+\fB\-e, \-\-each\-cipher\fR checks each of the (currently configured) 370 ciphers via openssl + sockets remotely on the server and reports back the result in wide mode\. If you want to display each cipher tested you need to add \fB\-\-show\-each\fR\. Per default it lists the following parameters: \fBhexcode\fR, \fBOpenSSL cipher suite name\fR, \fBkey exchange\fR, \fBencryption bits\fR, \fBIANA/RFC cipher suite name\fR\. Please note the \fB\-\-mapping\fR parameter changes what cipher suite names you will see here and at which position\. Also please note that the \fBbit\fR length for the encryption is shown and not the \fBsecurity\fR length, albeit it\'ll be sorted by the latter\. For 3DES due to the Meet\-in\-the\-Middle problem the bit size of 168 bits is equivalent to the security size of 112 bits\.
+.
+.P
+\fB\-E, \-\-cipher\-per\-proto\fR is similar to \fB\-e, \-\-each\-cipher\fR\. It checks each of the possible ciphers, here: per protocol\. If you want to display each cipher tested you need to add \fB\-\-show\-each\fR\. The output is sorted by security strength, it lists the encryption bits though\.
+.
+.P
+\fB\-s, \-\-std, \-\-standard\fR tests certain lists of cipher suites by strength\. Those lists are (\fBopenssl ciphers $LIST\fR, $LIST from below:)
+.
+.IP "\(bu" 4
+\fBNULL encryption ciphers\fR: \'NULL:eNULL\'
+.
+.IP "\(bu" 4
+\fBAnonymous NULL ciphers\fR: \'aNULL:ADH\'
+.
+.IP "\(bu" 4
+\fBExport ciphers\fR (w/o the preceding ones): \'EXPORT:!ADH:!NULL\'
+.
+.IP "\(bu" 4
+\fBLOW\fR (64 Bit + DES ciphers, without EXPORT ciphers): \'LOW:DES:RC2:RC4:!ADH:!EXP:!NULL:!eNULL\'
+.
+.IP "\(bu" 4
+\fB3DES + IDEA Ciphers\fR: \'3DES:IDEA:!aNULL:!ADH\'
+.
+.IP "\(bu" 4
+\fBAverage grade Ciphers\fR: \'HIGH:MEDIUM:AES:CAMELLIA:ARIA:!IDEA:!CHACHA20:!3DES:!RC2:!RC4:!AESCCM8:!AESCCM:!AESGCM:!ARIAGCM:!aNULL\'
+.
+.IP "\(bu" 4
+\fBStrong grade Ciphers\fR (AEAD): \'AESGCM:CHACHA20:CamelliaGCM:AESCCM\'
+.
+.IP "" 0
+.
+.P
+\fB\-f, \-\-pfs, \-\-fs,\-\-nsa\fR Checks robust (perfect) forward secrecy key exchange\. "Robust" means that ciphers having intrinsic severe weaknesses like Null Authentication or Encryption, 3DES and RC4 won\'t be considered here\. There shouldn\'t be the wrong impression that a secure key exchange has been taking place and everything is fine when in reality the encryption sucks\. Also this section lists the available elliptical curves and Diffie Hellman groups, as well as FFDHE groups (TLS 1\.2 and TLS 1\.3)\.
+.
+.P
+\fB\-p, \-\-protocols\fR checks TLS/SSL protocols SSLv2, SSLv3, TLS 1\.0 through TLS 1\.3 and for HTTP: SPDY (NPN) and ALPN, a\.k\.a\. HTTP/2\. For TLS 1\.3 several drafts (from 18 on) and final are supported and being tested for\.
+.
+.P
+\fB\-P, \-\-preference\fR displays the servers preferences: cipher order, with used openssl client: negotiated protocol and cipher\. If there\'s a cipher order enforced by the server it displays it for each protocol (openssl+sockets)\. If there\'s not, it displays instead which ciphers from the server were picked with each protocol\.
+.
+.P
+\fB\-S, \-\-server_defaults\fR displays information from the server hello(s):
+.
+.IP "\(bu" 4
+Available TLS extensions,
+.
+.IP "\(bu" 4
+TLS ticket + session ID information/capabilities,
+.
+.IP "\(bu" 4
+session resumption capabilities,
+.
+.IP "\(bu" 4
+Time skew relative to localhost (most server implementations return random values)\.
+.
+.IP "\(bu" 4
+Several certificate information
+.RS
+.IP "\(bu" 4
+signature algorithm,
+.
+.IP "\(bu" 4
+key size,
+.
+.IP "\(bu" 4
+key usage and extended key usage,
+.
+.IP "\(bu" 4
+fingerprints and serial
+.
+.IP "\(bu" 4
+Common Name (CN), Subject Alternative Name (SAN), Issuer,
+.
+.IP "\(bu" 4
+Trust via hostname + chain of trust against supplied certificates
+.
+.IP "\(bu" 4
+EV certificate detection
+.
+.IP "\(bu" 4
+experimental "eTLS" detection
+.
+.IP "\(bu" 4
+validity: start + end time, how many days to go (warning for certificate lifetime >=5 years)
+.
+.IP "\(bu" 4
+revocation info (CRL, OCSP, OCSP stapling + must staple)\. When \fB\-\-phone\-out\fR supplied it checks against the certificate issuer whether the host certificate has been revoked (plain OCSP, CRL)\.
+.
+.IP "\(bu" 4
+displaying DNS Certification Authority Authorization resource record
+.
+.IP "\(bu" 4
+Certificate Transparency info (if provided by server)\.
+.RE
+.IP "" 0
+
+.
+.IP "" 0
+.
+.P
+For the trust chain check 5 certificate stores are provided\. If the test against one of the trust stores failed, the one is being identified and the reason for the failure is displayed \- in addition the ones which succeeded are displayed too\. You can configure your own CA via ADDITIONAL_CA_FILES, see section \fBFILES\fR below\. If the server provides no matching record in Subject Alternative Name (SAN) but in Common Name (CN), it will be indicated as this is deprecated\. Also for multiple server certificates are being checked for as well as for the certificate reply to a non\-SNI (Server Name Indication) client hello to the IP address\. Regarding the TLS clock skew: it displays the time difference to the client\. Only a few TLS stacks nowadays still support this and return the local clock \fBgmt_unix_time\fR, e\.g\. IIS, openssl < 1\.0\.1f\. In addition to the HTTP date you could e\.g\. derive that there are different hosts where your TLS and your HTTP request ended \-\- if the time deltas differ significantly\.
+.
+.P
+\fB\-x <pattern>, \-\-single\-cipher <pattern>\fR tests matched \fBpattern\fR of ciphers against a server\. Patterns are similar to \fB\-V pattern , \-\-local pattern\fR, see above about matching\.
+.
+.P
+\fB\-h, \-\-header, \-\-headers\fR if the service is HTTP (either by detection or by enforcing via \fB\-\-assume\-http\fR\. It tests several HTTP headers like
+.
+.IP "\(bu" 4
+HTTP Strict Transport Security (HSTS)
+.
+.IP "\(bu" 4
+HTTP Public Key Pinning (HPKP)
+.
+.IP "\(bu" 4
+Server banner
+.
+.IP "\(bu" 4
+HTTP date+time
+.
+.IP "\(bu" 4
+Server banner like Linux or other Unix vendor headers
+.
+.IP "\(bu" 4
+Application banner (PHP, RoR, OWA, SharePoint, Wordpress, etc)
+.
+.IP "\(bu" 4
+Reverse proxy headers
+.
+.IP "\(bu" 4
+Web server modules
+.
+.IP "\(bu" 4
+IPv4 address in header
+.
+.IP "\(bu" 4
+Cookie (including Secure/HTTPOnly flags)
+.
+.IP "\(bu" 4
+Decodes BIG IP F5 non\-encrypted cookies
+.
+.IP "\(bu" 4
+Security headers (X\-Frame\-Options, X\-XSS\-Protection, Expect\-CT,\.\.\. , CSP headers)\. Nonsense is not yet detected here\.
+.
+.IP "" 0
+.
+.P
+\fB\-c, \-\-client\-simulation\fR This simulates a handshake with a number of standard clients so that you can figure out which client cannot or can connect to your site\. For the latter case the protocol, cipher and curve is displayed, also if there\'s Forward Secrecy\. testssl\.sh uses a handselected set of clients which are retrieved by the SSLlabs API\. The output is aligned in columns when combined with the \fB\-\-wide\fR option\. If you want the full nine yards of clients displayed use the environment variable ALL_CLIENTS\.
+.
+.P
+\fB\-g, \-\-grease\fR checks several server implementation bugs like tolerance to size limitations and GREASE, see https://www\.ietf\.org/archive/id/draft\-ietf\-tls\-grease\-01\.txt \. This checks doesn\'t run per default\.
+.
+.SS "VULNERABILITIES"
+\fB\-U, \-\-vulnerable, \-\-vulnerabilities\fR Just tests all (of the following) vulnerabilities\. The environment variable \fBVULN_THRESHLD\fR determines after which value a separate headline for each vulnerability is being displayed\. Default is \fB1\fR which means if you check for two vulnerabilities, only the general headline for vulnerabilities section is displayed \-\- in addition to the vulnerability and the result\. Otherwise each vulnerability or vulnerability section gets its own headline in addition to the output of the name of the vulnerabilty and test result\. A vulnerability section is comprised of more than one check, e\.g\. the renegotiation vulnerability check has two checks, so has Logjam\.
+.
+.P
+\fB\-H, \-\-heartbleed\fR Checks for Heartbleed, a memory leakage in openssl\. Unless the server side doesn\'t support the heartbeat extension it is likely that this check runs into a timeout\. The seconds to wait for a reply can be adjusted with \fBHEARTBLEED_MAX_WAITSOCK\fR\. 8 is the default\.
+.
+.P
+\fB\-I, \-\-ccs, \-\-ccs\-injection\fR Checks for CCS Injection which is an openssl vulnerability\. Sometimes also here the check needs to wait for a reply\. The predefined timeout of 5 seconds can be changed with the environment variable \fBCCS_MAX_WAITSOCK\fR\.
+.
+.P
+\fB\-T, \-\-ticketbleed\fR Checks for Ticketbleed memory leakage in BigIP loadbalancers\.
+.
+.P
+\fB\-BB, \-\-robot\fR Checks for vulnerability to ROBOT / (\fIReturn Of Bleichenbacher\'s Oracle Threat\fR) attack\.
+.
+.P
+\fB\-R, \-\-renegotiation\fR Tests renegotiation vulnerabilities\. Currently there\'s a check for \fISecure Renegotiation\fR and for \fISecure Client\-Initiated Renegotiation\fR\. Please be aware that vulnerable servers to the latter can likely be DoSed very easily (HTTP)\. A check for \fIInsecure Client\-Initiated Renegotiation\fR is not yet implemented\.
+.
+.P
+\fB\-C, \-\-compression, \-\-crime\fR Checks for CRIME (\fICompression Ratio Info\-leak Made Easy\fR) vulnerability in TLS\. CRIME in SPDY is not yet being checked for\.
+.
+.P
+\fB\-B, \-\-breach\fR Checks for BREACH (\fIBrowser Reconnaissance and Exfiltration via Adaptive Compression of Hypertext\fR) vulnerability\. As for this vulnerability HTTP level compression is a prerequisite it\'ll be not tested if HTTP cannot be detected or the detection is not enforced via \fB`\-\-assume\-http\fR\. Please note that only the URL supplied (normally "/" ) is being tested\.
+.
+.P
+\fB\-O, \-\-poodle\fR Tests for SSL POODLE (\fIPadding Oracle On Downgraded Legacy Encryption\fR) vulnerability\. It basically checks for the existence of CBC ciphers in SSLv3\.
+.
+.P
+\fB\-Z, \-\-tls\-fallback\fR Checks TLS_FALLBACK_SCSV mitigation\. TLS_FALLBACK_SCSV is basically a ciphersuite appended to the Client Hello trying to prevent protocol downgrade attacks by a Man in the Middle\.
+.
+.P
+\fB\-W, \-\-sweet32\fR Checks for vulnerability to SWEET32 by testing 64 bit block ciphers (3DES, RC2 and IDEA)\.
+.
+.P
+\fB\-F, \-\-freak\fR Checks for FREAK vulnerability (\fIFactoring RSA Export Keys\fR) by testing for EXPORT RSA ciphers
+.
+.P
+\fB\-D, \-\-drown\fR Checks for DROWN vulnerability (\fIDecrypting RSA with Obsolete and Weakened eNcryption\fR) by checking whether the SSL 2 protocol is available at the target\. Please note that if you use the same RSA certificate elsewhere you might be vulnerable too\. testssl\.sh doesn\'t check for this but provides a helpful link @ censys\.io which provides this service\.
+.
+.P
+\fB\-J, \-\-logjam\fR Checks for LOGJAM vulnerability by checking for DH EXPORT ciphers\. It also checks for "common primes" which are preconfigured DH keys\. DH keys =< 1024 Bit will be penalized\. Also FFDHE groups (TLS 1\.2) will be displayed here\.
+.
+.P
+\fB\-A, \-\-beast\fR Checks BEAST vulnerabilities in SSL 3 and TLS 1\.0 by testing the usage of CBC ciphers\.
+.
+.P
+\fB\-L, \-\-lucky13\fR Checks for LUCKY13 vulnerability\. It checks for the presence of CBC ciphers in TLS versions 1\.0 \- 1\.2\.
+.
+.P
+\fB\-4, \-\-rc4, \-\-appelbaum\fR Checks which RC4 stream ciphers are being offered\.
+.
+.SS "OUTPUT OPTIONS"
+\fB\-q, \-\-quiet\fR Normally testssl\.sh displays a banner on stdout with several version information, usage rights and a warning\. This option suppresses it\. Please note that by choosing this option you acknowledge usage terms and the warning normally appearing in the banner\.
+.
+.P
+\fB\-\-wide\fR Except the "each cipher output" all tests displays the single cipher name (scheme see below)\. This option enables testssl\.sh to display also for the following sections the same output as for testing each ciphers: BEAST, PFS, RC4\. The client simulation has also a wide mode\. The difference here is restricted to a column aligned output and a proper headline\. The environment variable \fBWIDE\fR can be used instead\.
+.
+.P
+\fB\-\-mapping <openssl|iana|no\-openssl|no\-iana>\fR
+.
+.IP "\(bu" 4
+\fBopenssl\fR: use the OpenSSL cipher suite name as the primary name cipher suite name form (default),
+.
+.IP "\(bu" 4
+\fBiana\fR: use the IANA cipher suite name as the primary name cipher suite name form\.
+.
+.IP "\(bu" 4
+\fBno\-openssl\fR: don\'t display the OpenSSL cipher suite name, display IANA names only\.
+.
+.IP "\(bu" 4
+\fBno\-iana\fR: don\'t display the IANA cipher suite name, display OpenSSL names only\.
+.
+.IP "" 0
+.
+.P
+Please note that in testssl\.sh 3,0 you can still use \fBrfc\fR instead of \fBiana\fR and \fBno\-rfc\fR instead of \fBno\-iana\fR but it\'ll disappear after 3\.0\.
+.
+.P
+\fB\-\-show\-each\fR This is an option for all wide modes only: it displays all ciphers tested \-\- not only succeeded ones\. \fBSHOW_EACH_C\fR is your friend if you prefer to set this via the shell environment\.
+.
+.P
+\fB\-\-color <0|1|2|3>\fR determines the use of colors on the screen and in the log file: \fB2\fR is the default and makes use of ANSI and termcap escape codes on your terminal\. \fB1\fR just uses non\-colored mark\-up like bold, italics, underline, reverse\. \fB0\fR means no mark\-up at all = no escape codes\. This is also what you want when you want a log file without any escape codes\. \fB3\fR will color ciphers and EC according to an internal (not yet perfect) rating\. Setting the environment variable \fBCOLOR\fR to the value achieves the same result\. Please not that OpenBSD and early FreeBSD do not support italics\.
+.
+.P
+\fB\-\-colorblind\fR Swaps green and blue colors in the output, so that this percentage of folks (up to 8% of males, see https://en\.wikipedia\.org/wiki/Color_blindness) can distinguish those findings better\. \fBCOLORBLIND\fR is the according variable if you want to set this in the environment\.
+.
+.P
+\fB\-\-debug <0\-6>\fR This gives you additional output on the screen (2\-6), only useful for debugging\. \fBDEBUG\fR is the according environment variable which you can use\. There are six levels (0 is the default, thus it has no effect):
+.
+.IP "1." 4
+screen output normal but leaves useful debug output in \fB/tmp/testssl\.XXXXXX/\fR \. The info about the exact directory is included in the screen output in the end of the run\.
+.
+.IP "2." 4
+lists more what\'s going on, status (high level) and connection errors, a few general debug output
+.
+.IP "3." 4
+even slightly more info: hexdumps + other info
+.
+.IP "4." 4
+display bytes sent via sockets
+.
+.IP "5." 4
+display bytes received via sockets
+.
+.IP "6." 4
+whole 9 yards
+.
+.IP "" 0
+.
+.SS "FILE OUTPUT OPTIONS"
+\fB\-\-log, \-\-logging\fR Logs stdout also to \fB${NODE}\-p${port}${YYYYMMDD\-HHMM}\.log\fR in current working directory of the shell\. Depending on the color output option (see above) the output file will contain color and other markup escape codes, unless you specify \fB\-\-color 0\fR too\. \fBcat\fR and \-\- if properly configured \fBless\fR \-\- will show the output properly formatted on your terminal\. The output shows a banner with the almost the same information as on the screen\. In addition it shows the command line of the testssl\.sh instance\. Please note that the resulting log file is formatted according to the width of your screen while running testssl\.sh\. You can override the width with the environment variable TERM_WIDTH\.
+.
+.P
+\fB\-\-logfile <logfile>\fR or \fB\-oL <logfile>\fR Instead of the previous option you may want to use this one if you want to log into a directory or if you rather want to specify the log file name yourself\. If \fBlogfile\fR is a directory the output will put into \fBlogfile/${NODE}\-p${port}${YYYYMMDD\-HHMM}\.log\fR\. If \fBlogfile\fR is a file it will use that file name, an absolute path is also permitted here\. LOGFILE is the variable you need to set if you prefer to work environment variables instead\. Please note that the resulting log file is formatted according to the width of your screen while running testssl\.sh\. You can override the width with the environment variable TERM_WIDTH\.
+.
+.P
+\fB\-\-json\fR Logs additionally to JSON file \fB${NODE}\-p${port}${YYYYMMDD\-HHMM}\.json\fR in the current working directory of the shell\. The resulting JSON file is opposed to \fB\-\-json\-pretty\fR flat \-\- which means each section is self contained and has an identifier for each single check, the hostname/IP address, the port, severity and the finding\. For vulnerabilities it may contain a CVE and CWE entry too\. The output doesn\'t contain a banner or a footer\.
+.
+.P
+\fB\-\-jsonfile <jsonfile>\fR or \fB\-oj <jsonfile>\fR Instead of the previous option you may want to use this one if you want to log the JSON out put into a directory or if you rather want to specify the log file name yourself\. If \fBjsonfile\fR is a directory the output will put into \fBlogfile/${NODE}\-p${port}${YYYYMMDD\-HHMM}\.json\. If\fRjsonfile` is a file it will use that file name, an absolute path is also permitted here\.
+.
+.P
+\fB\-\-json\-pretty\fR Logs additionally to JSON file \fB${NODE}\-p${port}${YYYYMMDD\-HHMM}\.json in the current working directory of the shell\. The resulting JSON file is opposed to\fR\-\-json` non\-flat \-\- which means it is structured\. The structure contains a header similar to the banner on the screen, including the command line, scan host, openssl binary used, testssl version and epoch of the start time\. Then for every test section of testssl\.sh it contains a separate JSON object/section\. Each finding has a key/value pair identifier with the identifier for each single check, the severity and the finding\. For vulnerabilities it may contain a CVE and CWE entry too\. The footer lists the scan time in seconds\.
+.
+.P
+\fB\-\-jsonfile\-pretty <jsonfile>\fR or \fB\-oJ <jsonfile>\fR Similar to the aforementioned \fB\-\-jsonfile\fR or \fB\-\-logfile\fR it logs the output in pretty JSON format (see \fB\-\-json\-pretty\fR) into a file or a directory\. For further explanation see \fB\-\-jsonfile\fR or \fB\-\-logfile\fR\.
+.
+.P
+\fB\-\-csv\fR Logs additionally to a CSV file \fB${NODE}\-p${port}${YYYYMMDD\-HHMM}\.csv\fR in the current working directory of the shell\. The output contains a header with the keys, the values are the same as in the flat JSON format (identifier for each single check, the hostname/IP address, the port, severity, the finding and for vulnerabilities a CVE and CWE number)\.
+.
+.P
+\fB\-\-csvfile <csvfile>\fR or \fB\-oC <csvfile>\fR Similar to the aforementioned \fB\-\-jsonfile\fR or \fB\-\-logfile\fR it logs the output in CSV format (see \fB\-\-cvs\fR) additionally into a file or a directory\. For further explanation see \fB\-\-jsonfile\fR or \fB\-\-logfile\fR\.
+.
+.P
+\fB\-\-html\fR Logs additionally to an HTML file \fB${NODE}\-p${port}${YYYYMMDD\-HHMM}\.html\fR in the current working directory of the shell\. It contains a 1:1 output of the console\. In former versions there was a non\-native option to use "aha" (Ansi HTML Adapter: github\.com/theZiz/aha) like \fBtestssl\.sh [options] <URI> | aha >output\.html\fR\. This is not necessary anymore\.
+.
+.P
+\fB\-\-htmlfile <htmlfile>\fR or \fB\-oH <htmlfile>\fR Similar to the aforementioned \fB\-\-jsonfile\fR or \fB\-\-logfile\fR it logs the output in HTML format (see \fB\-\-html\fR) additionally into a file or a directory\. For further explanation see \fB\-\-jsonfile\fR or \fB\-\-logfile\fR\.
+.
+.P
+\fB\-oA <filename>\fR / \fB\-\-outFile <filename>\fR Similar to nmap it does a file output to all available file formats: LOG, JSON pretty, CSV, HTML\. If the filename supplied is equal \fBauto\fR the filename is automatically generated using \'${NODE}\-p${port}${YYYYMMDD\-HHMM}\.${EXT}\' with the according extension\. If a directory is provided all output files will put into \fB<filename>/${NODE}\-p${port}${YYYYMMDD\-HHMM}\.{log,json,csv,html}\fR\.
+.
+.P
+\fB\-oa <filename>\fR / \fB\-\-outfile <filename>\fR Does the same as the previous option but uses flat JSON instead\.
+.
+.P
+\fB\-\-hints\fR This option is not in use yet\. This option is meant to give hints how to fix a finding or at least a help to improve something\. GIVE_HINTS is the environment variable for this\.
+.
+.P
+\fB\-\-severity <severity>\fR For CSV and both JSON outputs this will only add findings to the output file if a severity is equal or higher than the \fBseverity\fR value specified\. Allowed are \fB<LOW|MEDIUM|HIGH|CRITICAL>\fR\. WARN is another level which translates to a client\-side scanning error or problem\. Thus you will always see them in a file if they occur\.
+.
+.P
+\fB\-\-append\fR Normally, if an output file already exists and it has a file size greater zero, testssl\.sh will prompt you to manually remove the file exit with an error\. \fB\-\-append\fR however will append to this file, without a header\. The environment variable APPEND does the same\. Be careful using this switch/variable\. A complementary option which overwrites an existing file doesn\'t exist per design\.
+.
+.P
+\fB\-\-outprefix <fname_prefix>\fR Prepend output filename prefix \fIfname_prefix\fR before \'${NODE}\-\'\. You can use as well the environment variable FNAME_PREFIX\. Using this any output files will be named \fB<fname_prefix>\-${NODE}\-p${port}${YYYYMMDD\-HHMM}\.<format>\fR when no file name of the respective output option was specified\. If you do not like the separator \'\-\' you can as well supply a \fB<fname_prefix>\fR ending in \'\.\', \'_\' or \',\'\. In this case or if you already supplied \'\-\' no additional \'\-\' will be appended to \fB<fname_prefix>\fR\.
+.
+.P
+A few file output options can also be preset via environment variables\.
+.
+.SS "COLOR RATINGS"
+Testssl\.sh makes use of (the eight) standard terminal colors\. The color scheme is as follows:
+.
+.IP "\(bu" 4
+light red: a critical finding
+.
+.IP "\(bu" 4
+red: a high finding
+.
+.IP "\(bu" 4
+brown: a medium finding
+.
+.IP "\(bu" 4
+yellow: a low finding
+.
+.IP "\(bu" 4
+green (blue if COLORBLIND is set): something which is either in general a good thing or a negative result of a check which otherwise results in a high finding
+.
+.IP "\(bu" 4
+light green (light blue if COLORBLIND is set) : something which is either in general a very good thing or a negative result of a check which otherwise results in a critical finding
+.
+.IP "\(bu" 4
+no color at places where also a finding can be expected: a finding on an info level
+.
+.IP "\(bu" 4
+cyan: currently only used for \fB\-\-show\-each\fR or an additional hint
+.
+.IP "\(bu" 4
+magenta: signals a warning condition, e\.g\. either a local lack of capabilities on the client side or another problem
+.
+.IP "\(bu" 4
+light magenta: a fatal error which either requires strict consent from the user to continue or a condition which leaves no other choice for testssl\.sh to quit
+.
+.IP "" 0
+.
+.P
+What is labeled as "light" above appears as such on the screen but is technically speaking "bold"\. Besides \fB\-\-color=3\fR will color ciphers according to an internal and rough rating\.
+.
+.P
+Markup (without any color) is used in the following manner:
+.
+.IP "\(bu" 4
+bold: for the name of the test
+.
+.IP "\(bu" 4
+underline + bold: for the headline of each test section
+.
+.IP "\(bu" 4
+underline: for a sub\-headline
+.
+.IP "\(bu" 4
+italics: for strings just reflecting a value read from the server
+.
+.IP "" 0
+.
+.SS "TUNING via ENV variables and more options"
+Except the environment variables mentioned above which can replace command line options here a some which cannot be set otherwise\. Variables used for tuning are preset with reasonable values\. \fIThere should be no reason to change them\fR unless you use testssl\.sh under special conditions\.
+.
+.IP "\(bu" 4
+TERM_WIDTH is a variable which overrides the auto\-determined terminal width size\. Setting this variable normally only makes sense if you log the output to a file using the \fB\-\-log\fR, \fB\-\-logfile\fR or \fB\-oL\fR option\.
+.
+.IP "\(bu" 4
+DEBUG_ALLINONE / SETX: when setting one of those to true testssl\.sh falls back to the standard bash behavior, i\.e\. calling \fBbash \-x testssl\.sh\fR it displays the bash debugging output not in an external file \fB/tmp/testssl\-<XX>\.log\fR
+.
+.IP "\(bu" 4
+DEBUGTIME: Profiling option\. When using bash\'s debug mode and when this is set to true, it generates a separate text file with epoch times in \fB/tmp/testssl\-<XX>\.time\fR\. They need to be concatenated by \fBpaste /tmp/testssl\-<XX>\.{time,log}\fR
+.
+.IP "\(bu" 4
+EXPERIMENTAL=true is an option which is sometimes used in the development process to make testing easier\. In released versions this has no effect\.
+.
+.IP "\(bu" 4
+ALL_CLIENTS=true runs a client simulation with \fIall\fR (currently 126) clients when testing HTTP\.
+.
+.IP "\(bu" 4
+UNBRACKTD_IPV6: needs to be set to true for some old versions of OpenSSL (like from Gentoo) which don\'t support [bracketed] IPv6 addresses
+.
+.IP "\(bu" 4
+NO_ENGINE: if you have problems with garbled output containing the word \'engine\' you might want to set this to true\. It forces testssl\.sh not try to configure openssl\'s engine or a non existing one from libressl
+.
+.IP "\(bu" 4
+HEADER_MAXSLEEP: To wait how long before killing the process to retrieve a service banner / HTTP header
+.
+.IP "\(bu" 4
+MAX_WAITSOCK: It instructs testssl\.sh to wait until the specified time before declaring a socket connection dead\. Don\'t change this unless you\'re absolutely sure what you\'re doing\. Value is in seconds\.
+.
+.IP "\(bu" 4
+CCS_MAX_WAITSOCK Is the similar to above but applies only to the CCS handshakes, for both of the two the two CCS payload\. Don\'t change this unless you\'re absolutely sure what you\'re doing\. Value is in seconds\.
+.
+.IP "\(bu" 4
+HEARTBLEED_MAX_WAITSOCK Is the similar to MAX_WAITSOCK but applies only to the ServerHello after sending the Heartbleed payload\. Don\'t change this unless you\'re absolutely sure what you\'re doing\. Value is in seconds\.
+.
+.IP "\(bu" 4
+MEASURE_TIME_FILE For seldom cases when you don\'t want the scan time to be included in the output you can set this to false\.
+.
+.IP "\(bu" 4
+STARTTLS_SLEEP is per default set to 10 (seconds)\. That\'s the value testssl\.sh waits for a string in the STARTTLS handshake before giving up\.
+.
+.IP "\(bu" 4
+MAX_PARALLEL is the maximum number of tests to run in parallel in parallel mass testing mode\. The default value of 20 may be made larger on systems with faster processors\.
+.
+.IP "\(bu" 4
+MAX_WAIT_TEST is the maximum time (in seconds) to wait for a single test in parallel mass testing mode to complete\. The default is 1200\.
+.
+.IP "\(bu" 4
+HSTS_MIN is preset to 179 (days)\. If you want warnings sooner or later for HTTP Strict Transport Security you can change this\.
+.
+.IP "\(bu" 4
+HPKP_MIN is preset to 30 (days)\. If you want warnings sooner or later for HTTP Public Key Pinning you can change this
+.
+.IP "\(bu" 4
+DAYS2WARN1 is the first threshold when you\'ll be warning of a certificate expiration of a host, preset to 60 (days)\. For Let\'s Encrypt this value will be divided internally by 2\.
+.
+.IP "\(bu" 4
+DAYS2WARN2 is the second threshold when you\'ll be warning of a certificate expiration of a host, preset to 30 (days)\. For Let\'s Encrypt this value will be divided internally by 2\.
+.
+.IP "\(bu" 4
+TESTSSL_INSTALL_DIR is the derived installation directory of testssl\.sh\. Relatively to that the \fBbin\fR and mandatory \fBetc\fR directory will be looked for\.
+.
+.IP "\(bu" 4
+CA_BUNDLES_PATH: If you have an own set of CA bundles or you want to point testssl\.sh to a specific location of a CA bundle, you can use this variable to set the directory which testssl\.sh will use\. Please note that it overrides completely the builtin path of testssl\.sh which means that you will only test against the bundles you point to\. Also you might want to use \fB~/utils/create_ca_hashes\.sh\fR to create the hashes for HPKP\.
+.
+.IP "\(bu" 4
+MAX_SOCKET_FAIL: A number which tells testssl\.sh how often a TCP socket connection may fail before the program gives up and terminates\. The default is 2\. You can increase it to a higher value if you frequently see a message like \fIFatal error: repeated openssl s_client connect problem, doesn\'t make sense to continue\fR\.
+.
+.IP "\(bu" 4
+MAX_OSSL_FAIL: A number which tells testssl\.sh how often an OpenSSL s_client connect may fail before the program gives up and terminates\. The default is 2\. You can increase it to a higher value if you frequently see a message like \fIFatal error: repeated TCP connect problems, giving up\fR\.
+.
+.IP "\(bu" 4
+MAX_HEADER_FAIL: A number which tells testssl\.sh how often a HTTP GET request over OpenSSL may return an empty file before the program gives up and terminates\. The default is 3\. Also here you can incerase the threshold when you spot messages like \fIFatal error: repeated HTTP header connect problems, doesn\'t make sense to continue\fR\.
+.
+.IP "" 0
+.
+.SH "EXAMPLES"
+.
+.nf
+
+ testssl\.sh testssl\.sh
+.
+.fi
+.
+.P
+does a default run on https://testssl\.sh (protocols, standard cipher lists, PFS, server preferences, server defaults, vulnerabilities, testing all known 370 ciphers, client simulation\.
+.
+.IP "" 4
+.
+.nf
+
+ testssl\.sh testssl\.net:443
+.
+.fi
+.
+.IP "" 0
+.
+.P
+does the same default run as above with the subtle difference that testssl\.net has two IPv4 addresses\. Both are tested\.
+.
+.IP "" 4
+.
+.nf
+
+ testssl\.sh \-\-ip=one \-\-wide https://testssl\.net:443
+.
+.fi
+.
+.IP "" 0
+.
+.P
+does the same checks as above, with the difference that one IP address is being picked randomly\. Displayed is everything where possible in wide format\.
+.
+.IP "" 4
+.
+.nf
+
+ testssl\.sh \-6 https://testssl\.net
+.
+.fi
+.
+.IP "" 0
+.
+.P
+As opposed to the first example it also tests the IPv6 part \-\- supposed you have an IPv6 network and your openssl supports IPv6 (see above)\.
+.
+.IP "" 4
+.
+.nf
+
+ testssl\.sh \-t smtp smtp\.gmail\.com:25
+.
+.fi
+.
+.IP "" 0
+.
+.P
+Checks are done via a STARTTLS handshake on the plain text port 25\. It checks every IP on smtp\.gmail\.com\.
+.
+.IP "" 4
+.
+.nf
+
+ testssl\.sh \-\-starttls=imap imap\.gmx\.net:143
+.
+.fi
+.
+.IP "" 0
+.
+.P
+does the same on the plain text IMAP port\.
+.
+.P
+Please note that for plain TLS\-encrypted ports you must not specify the protocol option when no STARTTLS handshake is offered: \fBtestssl\.sh smtp\.gmail\.com:465\fR just checks the encryption on the SMTPS port, \fBtestssl\.sh imap\.gmx\.net:993\fR on the IMAPS port\. Also MongoDB which provides TLS support without STARTTLS can be tested directly\.
+.
+.SH "RFCs and other standards"
+.
+.IP "\(bu" 4
+RFC 2246: The TLS Protocol Version 1\.0
+.
+.IP "\(bu" 4
+RFC 2818: HTTP Over TLS
+.
+.IP "\(bu" 4
+RFC 2595: Using TLS with IMAP, POP3 and ACAP
+.
+.IP "\(bu" 4
+RFC 3207: SMTP Service Extension for Secure SMTP over Transport Layer Security
+.
+.IP "\(bu" 4
+RFC 3501: INTERNET MESSAGE ACCESS PROTOCOL \- VERSION 4rev1
+.
+.IP "\(bu" 4
+RFC 4346: The Transport Layer Security (TLS) Protocol Version 1\.1
+.
+.IP "\(bu" 4
+RFC 4366: Transport Layer Security (TLS) Extensions
+.
+.IP "\(bu" 4
+RFC 4492: Elliptic Curve Cryptography (ECC) Cipher Suites for Transport Layer Security (TLS)
+.
+.IP "\(bu" 4
+RFC 5077: Transport Layer Security (TLS) Session Resumption
+.
+.IP "\(bu" 4
+RFC 5246: The Transport Layer Security (TLS) Protocol Version 1\.2
+.
+.IP "\(bu" 4
+RFC 5280: Internet X\.509 Public Key Infrastructure Certificate and Certificate Revocation List (CRL) Profile
+.
+.IP "\(bu" 4
+RFC 5321: Simple Mail Transfer Protocol
+.
+.IP "\(bu" 4
+RFC 5746: Transport Layer Security (TLS) Renegotiation Indication Extension
+.
+.IP "\(bu" 4
+RFC 6066: Transport Layer Security (TLS) Extensions: Extension Definitions
+.
+.IP "\(bu" 4
+RFC 6101: The Secure Sockets Layer (SSL) Protocol Version 3\.0
+.
+.IP "\(bu" 4
+RFC 6120: Extensible Messaging and Presence Protocol (XMPP): Core
+.
+.IP "\(bu" 4
+RFC 6125: Domain\-Based Application Service Identity [\.\.]
+.
+.IP "\(bu" 4
+RFC 6797: HTTP Strict Transport Security (HSTS)
+.
+.IP "\(bu" 4
+RFC 6961: The Transport Layer Security (TLS) Multiple Certificate Status Request Extension
+.
+.IP "\(bu" 4
+RFC 7469: Public Key Pinning Extension for HTTP (HPKP)
+.
+.IP "\(bu" 4
+RFC 7507: TLS Fallback Signaling Cipher Suite Value (SCSV) for Preventing Protocol Downgrade Attacks
+.
+.IP "\(bu" 4
+RFC 7627: Transport Layer Security (TLS) Session Hash and Extended Master Secret Extension
+.
+.IP "\(bu" 4
+RFC 7633: X\.509v3 Transport Layer Security (TLS) Feature Extension
+.
+.IP "\(bu" 4
+RFC 7465: Prohibiting RC4 Cipher Suites
+.
+.IP "\(bu" 4
+RFC 7685: A Transport Layer Security (TLS) ClientHello Padding Extension
+.
+.IP "\(bu" 4
+RFC 7905: ChaCha20\-Poly1305 Cipher Suites for Transport Layer Security (TLS)
+.
+.IP "\(bu" 4
+RFC 7919: Negotiated Finite Field Diffie\-Hellman Ephemeral Parameters for Transport Layer Security
+.
+.IP "\(bu" 4
+RFC 8143: Using Transport Layer Security (TLS) with Network News Transfer Protocol (NNTP)
+.
+.IP "\(bu" 4
+RFC 8446: The Transport Layer Security (TLS) Protocol Version 1\.3
+.
+.IP "\(bu" 4
+W3C CSP: Content Security Policy Level 1\-3
+.
+.IP "\(bu" 4
+TLSWG Draft: The Transport Layer Security (TLS) Protocol Version 1\.3
+.
+.IP "" 0
+.
+.SH "EXIT STATUS"
+.
+.IP "\(bu" 4
+0 testssl\.sh finished successfully without errors and without ambiguous results
+.
+.IP "\(bu" 4
+1 testssl\.sh has encountered exactly one ambiguous situation or an error during run
+.
+.IP "\(bu" 4
+1+n same as previous\. The errors or ambiguous results are added, also per IP\.
+.
+.IP "\(bu" 4
+50\-200 reserved for returning a vulnerability scoring for system monitoring or a CI tools
+.
+.IP "\(bu" 4
+242 (ERR_CHILD) Child received a signal from master
+.
+.IP "\(bu" 4
+244 (ERR_RESOURCE) Resources testssl\.sh needs couldn\'t be read
+.
+.IP "\(bu" 4
+245 (ERR_CLUELESS) Weird state, either though user options or testssl\.sh
+.
+.IP "\(bu" 4
+246 (ERR_CONNECT) Connectivity problem
+.
+.IP "\(bu" 4
+247 (ERR_DNSLOOKUP) Problem with resolving IP addresses or names
+.
+.IP "\(bu" 4
+248 (ERR_OTHERCLIENT) Other client problem
+.
+.IP "\(bu" 4
+249 (ERR_DNSBIN) Problem with DNS lookup binaries
+.
+.IP "\(bu" 4
+250 (ERR_OSSLBIN) Problem with OpenSSL binary
+.
+.IP "\(bu" 4
+251 (ERR_NOSUPPORT) Feature requested is not supported
+.
+.IP "\(bu" 4
+252 (ERR_FNAMEPARSE) Input file couldn\'t be parsed
+.
+.IP "\(bu" 4
+253 (ERR_FCREATE) Output file couldn\'t be created
+.
+.IP "\(bu" 4
+254 (ERR_CMDLINE) Cmd line couldn\'t be parsed
+.
+.IP "\(bu" 4
+255 (ERR_BASH) Bash version incorrect
+.
+.IP "" 0
+.
+.SH "FILES"
+\fBetc/*pem\fR are the certificate stores from Apple, Linux, Mozilla Firefox, Windows and Java\.
+.
+.P
+\fBetc/client\-simulation\.txt\fR contains client simulation data\.
+.
+.P
+\fBetc/cipher\-mapping\.txt\fR provides a mandatory file with mapping from OpenSSL cipher suites names to the ones from IANA / used in the RFCs\.
+.
+.P
+\fBetc/tls_data\.txt\fR provides a mandatory file for ciphers (bash sockets) and key material\.
+.
+.SH "AUTHORS"
+Developed by Dirk Wetter, David Cooper and many others, see CREDITS\.md \.
+.
+.SH "COPYRIGHT"
+Copyright © 2012 Dirk Wetter\. License GPLv2: Free Software Foundation, Inc\. This is free software: you are free to change and redistribute it under the terms of the license, see LICENSE\.
+.P
+Attribution is important for the future of this project - also in the internet\. Thus if you\'re offering a scanner based on testssl\.sh as a public
+and/or paid service in the internet you are strongly encouraged to mention to your audience that you\'re using this program and where to get this program
+from\. That helps us to get bugfixes, other feedback and more contributions\.
+.
+.P
+Usage WITHOUT ANY WARRANTY\. USE at your OWN RISK!
+.
+.
+.SH "LIMITATION"
+All native Windows platforms emulating Linux are known to be slow\.
+.
+.SH "BUGS"
+Probably\. Current known ones and interface for filing new ones: https://testssl\.sh/bugs/ \.
+.
+.SH "SEE ALSO"
+\fBciphers\fR(1), \fBopenssl\fR(1), \fBs_client\fR(1), \fBx509\fR(1), \fBverify\fR(1), \fBocsp\fR(1), \fBcrl\fR(1), \fBbash\fR(1) and the websites https://testssl\.sh/ and https://github\.com/drwetter/testssl\.sh/ \.
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+<!DOCTYPE html>
+<html>
+<head>
+ <meta http-equiv='content-type' value='text/html;charset=utf8'>
+ <meta name='generator' value='Ronn/v0.7.3 (http://github.com/rtomayko/ronn/tree/0.7.3)'>
+ <title>testssl(1)</title>
+ <style type='text/css' media='all'>
+ /* style: man */
+ body#manpage {margin:0}
+ .mp {padding:0 9ex 1ex 4ex}
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+ .mp pre {margin-bottom:20px}
+ .mp pre+h2,.mp pre+h3 {margin-top:22px}
+ .mp h2+pre,.mp h3+pre {margin-top:5px}
+ .mp img {display:block;margin:auto}
+ .mp h1.man-title {display:none}
+ .mp,.mp code,.mp pre,.mp tt,.mp kbd,.mp samp,.mp h3,.mp h4 {font-family:monospace;font-size:14px;line-height:1.42857142857143}
+ .mp h2 {font-size:16px;line-height:1.25}
+ .mp h1 {font-size:20px;line-height:2}
+ .mp {text-align:justify;background:#fff}
+ .mp,.mp code,.mp pre,.mp pre code,.mp tt,.mp kbd,.mp samp {color:#131211}
+ .mp h1,.mp h2,.mp h3,.mp h4 {color:#030201}
+ .mp u {text-decoration:underline}
+ .mp code,.mp strong,.mp b {font-weight:bold;color:#131211}
+ .mp em,.mp var {font-style:italic;color:#232221;text-decoration:none}
+ .mp a,.mp a:link,.mp a:hover,.mp a code,.mp a pre,.mp a tt,.mp a kbd,.mp a samp {color:#0000ff}
+ .mp b.man-ref {font-weight:normal;color:#434241}
+ .mp pre {padding:0 4ex}
+ .mp pre code {font-weight:normal;color:#434241}
+ .mp h2+pre,h3+pre {padding-left:0}
+ ol.man-decor,ol.man-decor li {margin:3px 0 10px 0;padding:0;float:left;width:33%;list-style-type:none;text-transform:uppercase;color:#999;letter-spacing:1px}
+ ol.man-decor {width:100%}
+ ol.man-decor li.tl {text-align:left}
+ ol.man-decor li.tc {text-align:center;letter-spacing:4px}
+ ol.man-decor li.tr {text-align:right;float:right}
+ </style>
+</head>
+<!--
+ The following styles are deprecated and will be removed at some point:
+ div#man, div#man ol.man, div#man ol.head, div#man ol.man.
+
+ The .man-page, .man-decor, .man-head, .man-foot, .man-title, and
+ .man-navigation should be used instead.
+-->
+<body id='manpage'>
+ <div class='mp' id='man'>
+
+ <div class='man-navigation' style='display:none'>
+ <a href="#NAME">NAME</a>
+ <a href="#NAME">NAME</a>
+ <a href="#SYNOPSIS">SYNOPSIS</a>
+ <a href="#DESCRIPTION">DESCRIPTION</a>
+ <a href="#REQUIREMENTS">REQUIREMENTS</a>
+ <a href="#GENERAL">GENERAL</a>
+ <a href="#OPTIONS-AND-PARAMETERS">OPTIONS AND PARAMETERS</a>
+ <a href="#EXAMPLES">EXAMPLES</a>
+ <a href="#RFCs-and-other-standards">RFCs and other standards</a>
+ <a href="#EXIT-STATUS">EXIT STATUS</a>
+ <a href="#FILES">FILES</a>
+ <a href="#AUTHORS">AUTHORS</a>
+ <a href="#COPYRIGHT">COPYRIGHT</a>
+ <a href="#LIMITATION">LIMITATION</a>
+ <a href="#BUGS">BUGS</a>
+ <a href="#SEE-ALSO">SEE ALSO</a>
+ </div>
+
+ <ol class='man-decor man-head man head'>
+ <li class='tl'>testssl(1)</li>
+ <li class='tc'></li>
+ <li class='tr'>testssl(1)</li>
+ </ol>
+
+ <h2 id="NAME">NAME</h2>
+<p class="man-name">
+ <code>testssl</code>
+</p>
+<h2 id="NAME">NAME</h2>
+
+<p> testssl.sh -- check encryption of SSL/TLS servers</p>
+
+<h2 id="SYNOPSIS">SYNOPSIS</h2>
+
+<p><code>testssl.sh [OPTIONS] &lt;URI></code>, <code>testssl.sh [OPTIONS] --file &lt;FILE></code></p>
+
+<p> or</p>
+
+<p><code>testssl.sh [BANNER OPTIONS]</code></p>
+
+<h2 id="DESCRIPTION">DESCRIPTION</h2>
+
+<p>testssl.sh is a free command line tool which checks a server's service on any port for the support of TLS/SSL ciphers, protocols as well as cryptographic flaws and much more.</p>
+
+<p>The output rates findings by color (screen) or severity (file output) so that you are able to tell whether something is good or bad. The (screen) output has several sections in which classes of checks are being performed. To ease readability on the screen it aligns and indents the output properly.</p>
+
+<p>Only you see the result. You also can use it internally on your LAN. Except DNS lookups or unless you instruct testssl.sh to check for revocation of certificates it doesn't use any other hosts or even third parties for any test.</p>
+
+<h2 id="REQUIREMENTS">REQUIREMENTS</h2>
+
+<p>Testssl.sh is out of the box portable: it runs under any Unix-like
+stack: Linux, *BSD, MacOS X, WSL=Windows Subsystem for Linux, Cygwin and MSYS2.
+<code>bash</code> is a prerequisite, also version 3 is still supported.
+Standard utilities like awk, sed, tr and head are also needed. This can be of a BSD,
+System 5 or GNU flavor whereas grep from System V is not yet supported.</p>
+
+<p>Any OpenSSL or LibreSSL version is needed as a helper. Unlike previous versions
+of testssl.sh almost every check is done via (TCP) sockets. In addition statically
+linked OpenSSL binaries for major operating systems are supplied in <code>./bin/</code>.</p>
+
+<h2 id="GENERAL">GENERAL</h2>
+
+<p><code>testssl.sh URI</code> as the default invocation does the so-called default run which does a number of checks and puts out the results colorized (ANSI and termcap) on the screen. It does every check listed below except <code>-E</code> which are (order of appearance):</p>
+
+<p>0) displays a banner (see below), does a DNS lookup also for further IP addresses and does for the returned IP address a reverse lookup. Last but not least a service check is being done.</p>
+
+<p>1) SSL/TLS protocol check</p>
+
+<p>2) standard cipher categories to give you upfront an idea for the ciphers supported</p>
+
+<p>3) checks (perfect) forward secrecy: ciphers and elliptical curves</p>
+
+<p>4) server preferences (server order)</p>
+
+<p>5) server defaults (certificate info, TLS extensions, session information)</p>
+
+<p>6) HTTP header (if HTTP detected or being forced via <code>--assume-http</code>)</p>
+
+<p>7) vulnerabilities</p>
+
+<p>8) testing each of 370 preconfigured ciphers</p>
+
+<p>9) client simulation</p>
+
+<h2 id="OPTIONS-AND-PARAMETERS">OPTIONS AND PARAMETERS</h2>
+
+<p>Options are either short or long options. Any long or short option requiring a value can be called with or without an equal sign. E.g. <code>testssl.sh -t=smtp --wide --openssl=/usr/bin/openssl &lt;URI></code> (short options with equal sign) is equivalent to <code>testssl.sh --starttls smtp --wide --openssl /usr/bin/openssl &lt;URI></code> (long option without equal sign). Some command line options can also be preset via ENV variables. <code>WIDE=true OPENSSL=/usr/bin/openssl testssl.sh --starttls=smtp &lt;URI></code> would be the equivalent to the aforementioned examples. Preference has the command line over any environment variables.</p>
+
+<p><code>&lt;URI></code> or <code>--file &lt;FILE></code> always needs to be the last parameter.</p>
+
+<h3 id="BANNER-OPTIONS">BANNER OPTIONS</h3>
+
+<p><code>--help</code> (or no arg) display command line help</p>
+
+<p><code>-b, --banner</code> displays testssl.sh banner, including license, usage conditions, version of testssl.sh, detected openssl version, its path to it, # of ciphers of openssl, its build date and the architecture.</p>
+
+<p><code>-v, --version</code> same as before</p>
+
+<p><code>-V [pattern] , --local [pattern]</code> pretty print all local ciphers supported by openssl version. If a pattern is supplied it performs a match (ignore case) on any of the strings supplied in the wide output, see below. The pattern will be searched in the any of the columns: hexcode, cipher suite name (OpenSSL or IANA), key exchange, encryption, bits. It does a word pattern match for non-numbers, for number just a normal match applies. Numbers here are defined as [0-9,A-F]. This means (attention: catch) that the pattern CBC is matched as non-word, but AES as word.</p>
+
+<h3 id="INPUT-PARAMETERS">INPUT PARAMETERS</h3>
+
+<p><code>URI</code> can be a hostname, an IPv4 or IPv6 address (restriction see below) or an URL. IPv6 addresses need to be in square brackets. For any given parameter port 443 is assumed unless specified by appending a colon and a port number. The only preceding protocol specifier allowed is <code>https</code>. You need to be aware that checks for an IP address might not hit the vhost you want. DNS resolution (A/AAAA record) is being performed unless you have an <code>/etc/hosts</code> entry for the hostname.</p>
+
+<p><code>--file &lt;fname></code> or the equivalent <code>-iL &lt;fname></code> are mass testing options. Per default it implicitly turns on <code>--warnings batch</code>. In its first incarnation the mass testing option reads command lines from <code>fname</code>. <code>fname</code> consists of command lines of testssl, one line per instance. Comments after <code>#</code> are ignored, <code>EOF</code> signals the end of fname any subsequent lines will be ignored too. You can also supply additional options which will be inherited to each child, e.g. When invoking <code>testssl.sh --wide --log --file &lt;fname></code> . Each single line in <code>fname</code> is parsed upon execution. If there's a conflicting option and serial mass testing option is being performed the check will be aborted at the time it occurs and depending on the output option potentially leaving you with an output file without footer. In parallel mode the mileage varies, likely a line won't be scanned.</p>
+
+<p>Alternatively <code>fname</code> can be in <code>nmap</code>'s grep(p)able output format (<code>-oG</code>). Only open ports will be considered. Multiple ports per line are allowed. The ports can be different and will be tested by testssl.sh according to common practice in the internet, i.e. if nmap shows in its output an open port 25, automatically <code>-t smtp</code> will be added before the URI whereas port 465 will be treated as a plain TLS/SSL port, not requiring an STARTTLS SMTP handshake upfront. This is done by an internal table which correlates nmap's open port detected to the STARTTLS/plain text decision from testssl.sh.</p>
+
+<p>Nmap's output always returns IP addresses and only if there's a PTR DNS record available a hostname. As it is not checked by nmap whether the hostname matches the IP (A or AAAA record), testssl.sh does this automatically for you. If the A record of the hostname matches the IP address, the hostname is used and not the IP address. Please keep in mind that checks against an IP address might not hit the vhost you maybe were aiming at and thus it may lead to different results.</p>
+
+<p>A typical internal conversion to testssl.sh file format from nmap's grep(p)able format could look like:</p>
+
+<pre><code>10.10.12.16:443
+10.10.12.16:1443
+-t smtp host.example.com:25
+host.example.com:443
+host.example.com:631
+-t ftp 10.10.12.11:21
+10.10.12.11:8443
+</code></pre>
+
+<p>Please note that <code>fname</code> has to be in Unix format. DOS carriage returns won't be accepted. Instead of the command line switch the environment variable FNAME will be honored too.</p>
+
+<p><code>--mode &lt;serial|parallel></code>. Mass testing to be done serial (default) or parallel (<code>--parallel</code> is shortcut for the latter, <code>--serial</code> is the opposite option). Per default mass testing is being run in serial mode, i.e. one line after the other is processed and invoked. The variable <code>MASS_TESTING_MODE</code> can be defined to be either equal <code>serial</code> or <code>parallel</code>.</p>
+
+<p><code>--warnings &lt;batch|off></code>. The warnings parameter determines how testssl.sh will deal with situations where user input normally will be necessary. There are two options. <code>batch</code> doesn't wait for a confirming keypress when a client- or server-side probem is encountered. As of 3.0 it just then terminates the particular scan. This is automatically chosen for mass testing (<code>--file</code>). <code>off</code> just skips the warning, the confirmation but continues the scan, independent whether it makes sense or not. Please note that there are conflicts where testssl.sh will still ask for confirmation which are the ones which otherwise would have a drastic impact on the results. Almost any other decision will be made in the future as a best guess by testssl.sh.
+The same can be achieved by setting the environment variable <code>WARNINGS</code>.</p>
+
+<p><code>--connect-timeout &lt;seconds></code> This is useful for socket TCP connections to a node. If the node does not complete a TCP handshake (e.g. because it is down or behind a firewall or there's an IDS or a tarpit) testssl.sh may usually hang for around 2 minutes or even much more. This parameter instructs testssl.sh to wait at most <code>seconds</code> for the handshake to complete before giving up. This option only works if your OS has a timeout binary installed. CONNECT_TIMEOUT is the corresponding environment variable.</p>
+
+<p><code>--openssl-timeout &lt;seconds></code> This is especially useful for all connects using openssl and practically useful for mass testing. It avoids the openssl connect to hang for ~2 minutes. The expected parameter <code>seconds</code> instructs testssl.sh to wait before the openssl connect will be terminated. The option is only available if your OS has a timeout binary installed. As there are different implementations of <code>timeout</code>: It automatically calls the binary with the right parameters. OPENSSL_TIMEOUT is the equivalent environment variable.</p>
+
+<p><code>--basicauth &lt;user:pass></code> This can be set to provide HTTP basic auth credentials which are used during checks for security headers. BASICAUTH is the ENV variable you can use instead.</p>
+
+<h3 id="SPECIAL-INVOCATIONS">SPECIAL INVOCATIONS</h3>
+
+<p><code>-t &lt;protocol>, --starttls &lt;protocol></code> does a default run against a STARTTLS enabled <code>protocol</code>. <code>protocol</code> must be one of <code>ftp</code>, <code>smtp</code>, <code>pop3</code>, <code>imap</code>, <code>xmpp</code>, <code>telnet</code>, <code>ldap</code>, <code>irc</code>, <code>lmtp</code>, <code>nntp</code>, <code>postgres</code>, <code>mysql</code>. For the latter four you need e.g. the supplied OpenSSL or OpenSSL version 1.1.1. Please note: MongoDB doesn't offer a STARTTLS connection, LDAP currently only works with <code>--ssl-native</code>. <code>telnet</code> and <code>irc</code> is WIP.</p>
+
+<p><code>--xmpphost &lt;jabber_domain></code> is an additional option for STARTTLS enabled XMPP: It expects the jabber domain as a parameter. This is only needed if the domain is different from the URI supplied.</p>
+
+<p><code>--mx &lt;domain|host></code> tests all MX records (STARTTLS on port 25) from high to low priority, one after the other.</p>
+
+<p><code>--ip &lt;ip></code> tests either the supplied IPv4 or IPv6 address instead of resolving host(s) in <code>&lt;URI></code>. IPv6 addresses need to be supplied in square brackets. <code>--ip=one</code> means: just test the first A record DNS returns (useful for multiple IPs). If <code>-6</code> and <code>--ip=one</code> was supplied an AAAA record will be picked if available. The <code>--ip</code> option might be also useful if you want to resolve the supplied hostname to a different IP, similar as if you would edit <code>/etc/hosts</code> or <code>/c/Windows/System32/drivers/etc/hosts</code>. <code>--ip=proxy</code> tries a DNS resolution via proxy.</p>
+
+<p><code>--proxy &lt;host>:&lt;port></code> does ANY check via the specified proxy. <code>--proxy=auto</code> inherits the proxy setting from the environment. The hostname supplied will be resolved to the first A record. In addition if you want lookups via proxy you can specify <code>DNS_VIA_PROXY=true</code>. OCSP revocation checking (<code>-S --phone-out</code>) is not supported by OpenSSL via proxy. As supplying a proxy is an indicator for port 80 and 443 outgoing being blocked in your network an OCSP revocation check won't be performed. However if <code>IGN_OCSP_PROXY=true</code> has been supplied it will be tried directly. Authentication to the proxy is not supported. Proxying via IPv6 addresses is not possible, no HTTPS or SOCKS proxy is supported.</p>
+
+<p><code>-6</code> does (also) IPv6 checks. Please note that testssl.sh doesn't perform checks on an IPv6 address automatically, because of two reasons: testssl.sh does no connectivity checks for IPv6 and it cannot determine reliably whether the OpenSSL binary you're using has IPv6 s_client support. <code>-6</code> assumes both is the case. If both conditions are met and you in general prefer to test for IPv6 branches as well you can add <code>HAS_IPv6</code> to your shell environment. Besides the OpenSSL binary supplied IPv6 is known to work with vanilla OpenSSL >= 1.1.0 and older versions >=1.0.2 in RHEL/CentOS/FC and Gentoo.</p>
+
+<p><code>--ssl-native</code> Instead of using a mixture of bash sockets and a few openssl s_client connects, testssl.sh uses the latter (almost) only. This is faster at the moment but provides less accurate results, especially for the client simulation and for cipher support. For all checks you will see a warning if testssl.sh cannot tell if a particular check cannot be performed. For some checks however you might end up getting false negatives without a warning. This option is only recommended if you prefer speed over accuracy or you know that your target has sufficient overlap with the protocols and cipher provided by your openssl binary.</p>
+
+<p><code>--openssl &lt;path_to_openssl></code> testssl.sh tries very hard to find automagically the binary supplied (where the tree of testssl.sh resides, from the directory where testssl.sh has been started from, etc.). If all that doesn't work it falls back to openssl supplied from the OS (<code>$PATH</code>). With this option you can point testssl.sh to your binary of choice and override any internal magic to find the openssl binary. (Environment preset via <code>OPENSSL=&lt;path_to_openssl></code>).</p>
+
+<h3 id="TUNING-OPTIONS">TUNING OPTIONS</h3>
+
+<p><code>--bugs</code> does some workarounds for buggy servers like padding for old F5 devices. The option is passed as <code>-bug</code> to openssl when needed, see <code>s_client(1)</code>, environment preset via <code>BUGS="-bugs"</code> (1x dash). For the socket part testssl.sh has always workarounds in place to cope with broken server implementations.</p>
+
+<p><code>--assuming-http</code> testssl.sh normally does upfront an application protocol detection. In cases where HTTP cannot be automatically detected you may want to use this option. It enforces testssl.sh not to skip HTTP specific tests (HTTP header) and to run a browser based client simulation. Please note that sometimes also the severity depends on the application protocol, e.g. SHA1 signed certificates, the lack of any SAN matches and some vulnerabilities will be punished harder when checking a web server as opposed to a mail server.</p>
+
+<p><code>-n, --nodns &lt;min|none></code> tells testssl.sh which DNS lookups should be performed. <code>min</code> uses only forward DNS resolution (A and AAAA record or MX record) and skips CAA lookups and PTR records from the IP address back to a DNS name. <code>none</code> performs no DNS lookups at all. For the latter you either have to supply the IP address as a target, to use <code>--ip</code> or have the IP address
+in <code>/etc/hosts</code>. The use of the switch is only useful if you either can't or are not willing to perform DNS lookups. The latter can apply e.g. to some pentests. In general this option could e.g. help you to avoid timeouts by DNS lookups. <code>NODNS</code> is the environment variable for this.</p>
+
+<p><code>--sneaky</code> For HTTP header checks testssl.sh uses normally the server friendly HTTP user agent <code>TLS tester from ${URL}</code>. With this option your traces are less verbose and a Firefox user agent is being used. Be aware that it doesn't hide your activities. That is just not possible (environment preset via <code>SNEAKY=true</code>).</p>
+
+<p><code>--ids-friendly</code> is a switch which may help to get a scan finished which otherwise would be blocked by a server side IDS. This switch skips tests for the following vulnerabilities: Heartbleed, CCS Injection, Ticketbleed and ROBOT. The environment variable OFFENSIVE set to false will achieve the same result. Please be advised that as an alternative or as a general approach you can try to apply evasion techniques by changing the variables USLEEP_SND and / or USLEEP_REC and maybe MAX_WAITSOCK.</p>
+
+<p><code>--phone-out</code> Checking for revoked certificates via CRL and OCSP is not done per default. This switch instructs testssl.sh to query external -- in a sense of the current run -- URIs. By using this switch you acknowledge that the check might have privacy issues, a download of several megabytes (CRL file) may happen and there may be network connectivity problems while contacting the endpoint which testssl.sh doesn't handle. PHONE_OUT is the environment variable for this which needs to be set to true if you want this.</p>
+
+<p><code>--add-ca &lt;cafile></code> enables you to add your own CA(s) for trust chain checks. <code>cafile</code> can be a single path or multiple paths as a comma separated list of root CA files. Internally they will be added during runtime to all CA stores. This is (only) useful for internal hosts whose certificates is issued by internal CAs. Alternatively
+ADDITIONAL_CA_FILES is the environment variable for this.</p>
+
+<h3 id="SINGLE-CHECK-OPTIONS">SINGLE CHECK OPTIONS</h3>
+
+<p>Any single check switch supplied as an argument prevents testssl.sh from doing a default run. It just takes this and if supplied other options and runs them - in the order they would also appear in the default run.</p>
+
+<p><code>-e, --each-cipher</code> checks each of the (currently configured) 370 ciphers via openssl + sockets remotely on the server and reports back the result in wide mode. If you want to display each cipher tested you need to add <code>--show-each</code>. Per default it lists the following parameters: <code>hexcode</code>, <code>OpenSSL cipher suite name</code>, <code>key exchange</code>, <code>encryption bits</code>, <code>IANA/RFC cipher suite name</code>. Please note the <code>--mapping</code> parameter changes what cipher suite names you will see here and at which position. Also please note that the <strong>bit</strong> length for the encryption is shown and not the <strong>security</strong> length, albeit it'll be sorted by the latter. For 3DES due to the Meet-in-the-Middle problem the bit size of 168 bits is equivalent to the security size of 112 bits.</p>
+
+<p><code>-E, --cipher-per-proto</code> is similar to <code>-e, --each-cipher</code>. It checks each of the possible ciphers, here: per protocol. If you want to display each cipher tested you need to add <code>--show-each</code>. The output is sorted by security strength, it lists the encryption bits though.</p>
+
+<p><code>-s, --std, --standard</code> tests certain lists of cipher suites by strength. Those lists are (<code>openssl ciphers $LIST</code>, $LIST from below:)</p>
+
+<ul>
+<li><code>NULL encryption ciphers</code>: 'NULL:eNULL'</li>
+<li><code>Anonymous NULL ciphers</code>: 'aNULL:ADH'</li>
+<li><code>Export ciphers</code> (w/o the preceding ones): 'EXPORT:!ADH:!NULL'</li>
+<li><code>LOW</code> (64 Bit + DES ciphers, without EXPORT ciphers): 'LOW:DES:RC2:RC4:!ADH:!EXP:!NULL:!eNULL'</li>
+<li><code>3DES + IDEA Ciphers</code>: '3DES:IDEA:!aNULL:!ADH'</li>
+<li><code>Average grade Ciphers</code>: 'HIGH:MEDIUM:AES:CAMELLIA:ARIA:!IDEA:!CHACHA20:!3DES:!RC2:!RC4:!AESCCM8:!AESCCM:!AESGCM:!ARIAGCM:!aNULL'</li>
+<li><code>Strong grade Ciphers</code> (AEAD): 'AESGCM:CHACHA20:CamelliaGCM:AESCCM8:AESCCM'</li>
+</ul>
+
+
+<p><code>-f, --pfs, --fs,--nsa</code> Checks robust (perfect) forward secrecy key exchange. "Robust" means that ciphers having intrinsic severe weaknesses like Null Authentication or Encryption, 3DES and RC4 won't be considered here. There shouldn't be the wrong impression that a secure key exchange has been taking place and everything is fine when in reality the encryption sucks. Also this section lists the available elliptical curves and Diffie Hellman groups, as well as FFDHE groups (TLS 1.2 and TLS 1.3).</p>
+
+<p><code>-p, --protocols</code> checks TLS/SSL protocols SSLv2, SSLv3, TLS 1.0 through TLS 1.3 and for HTTP: SPDY (NPN) and ALPN, a.k.a. HTTP/2. For TLS 1.3 several drafts (from 18 on) and final are supported and being tested for.</p>
+
+<p><code>-P, --preference</code> displays the servers preferences: cipher order, with used openssl client: negotiated protocol and cipher. If there's a cipher order enforced by the server it displays it for each protocol (openssl+sockets). If there's not, it displays instead which ciphers from the server were picked with each protocol.</p>
+
+<p><code>-S, --server_defaults</code> displays information from the server hello(s):</p>
+
+<ul>
+<li>Available TLS extensions,</li>
+<li>TLS ticket + session ID information/capabilities,</li>
+<li>session resumption capabilities,</li>
+<li>Time skew relative to localhost (most server implementations return random values).</li>
+<li>Several certificate information
+
+<ul>
+<li>signature algorithm,</li>
+<li>key size,</li>
+<li>key usage and extended key usage,</li>
+<li>fingerprints and serial</li>
+<li>Common Name (CN), Subject Alternative Name (SAN), Issuer,</li>
+<li>Trust via hostname + chain of trust against supplied certificates</li>
+<li>EV certificate detection</li>
+<li>experimental "eTLS" detection</li>
+<li>validity: start + end time, how many days to go (warning for certificate lifetime >=5 years)</li>
+<li>revocation info (CRL, OCSP, OCSP stapling + must staple). When <code>--phone-out</code> supplied it checks against the certificate issuer whether the host certificate has been revoked (plain OCSP, CRL).</li>
+<li>displaying DNS Certification Authority Authorization resource record</li>
+<li>Certificate Transparency info (if provided by server).</li>
+</ul>
+</li>
+</ul>
+
+
+<p>For the trust chain check 5 certificate stores are provided. If the test against one of the trust stores failed, the one is being identified and the reason for the failure is displayed - in addition the ones which succeeded are displayed too.
+You can configure your own CA via ADDITIONAL_CA_FILES, see section <code>FILES</code> below. If the server provides no matching record in Subject Alternative Name (SAN) but in Common Name (CN), it will be indicated as this is deprecated.
+Also for multiple server certificates are being checked for as well as for the certificate reply to a non-SNI (Server Name Indication) client hello to the IP address. Regarding the TLS clock skew: it displays the time difference to the client. Only a few TLS stacks nowadays still support this and return the local clock <code>gmt_unix_time</code>, e.g. IIS, openssl &lt; 1.0.1f. In addition to the HTTP date you could e.g. derive that there are different hosts where your TLS and your HTTP request ended -- if the time deltas differ significantly.</p>
+
+<p><code>-x &lt;pattern>, --single-cipher &lt;pattern></code> tests matched <code>pattern</code> of ciphers against a server. Patterns are similar to <code>-V pattern , --local pattern</code>, see above about matching.</p>
+
+<p><code>-h, --header, --headers</code> if the service is HTTP (either by detection or by enforcing via <code>--assume-http</code>. It tests several HTTP headers like</p>
+
+<ul>
+<li>HTTP Strict Transport Security (HSTS)</li>
+<li>HTTP Public Key Pinning (HPKP)</li>
+<li>Server banner</li>
+<li>HTTP date+time</li>
+<li>Server banner like Linux or other Unix vendor headers</li>
+<li>Application banner (PHP, RoR, OWA, SharePoint, Wordpress, etc)</li>
+<li>Reverse proxy headers</li>
+<li>Web server modules</li>
+<li>IPv4 address in header</li>
+<li>Cookie (including Secure/HTTPOnly flags)</li>
+<li>Decodes BIG IP F5 non-encrypted cookies</li>
+<li>Security headers (X-Frame-Options, X-XSS-Protection, Expect-CT,... , CSP headers). Nonsense is not yet detected here.</li>
+</ul>
+
+
+<p><code>-c, --client-simulation</code> This simulates a handshake with a number of standard clients so that you can figure out which client cannot or can connect to your site. For the latter case the protocol, cipher and curve is displayed, also if there's Forward Secrecy. testssl.sh uses a handselected set of clients which are retrieved by the SSLlabs API. The output is aligned in columns when combined with the <code>--wide</code> option. If you want the full nine yards of clients displayed use the environment variable ALL_CLIENTS.</p>
+
+<p><code>-g, --grease</code> checks several server implementation bugs like tolerance to size limitations and GREASE, see https://www.ietf.org/archive/id/draft-ietf-tls-grease-01.txt . This checks doesn't run per default.</p>
+
+<h3 id="VULNERABILITIES">VULNERABILITIES</h3>
+
+<p><code>-U, --vulnerable, --vulnerabilities</code> Just tests all (of the following) vulnerabilities. The environment variable <code>VULN_THRESHLD</code> determines after which value a separate headline for each vulnerability is being displayed. Default is <code>1</code> which means if you check for two vulnerabilities, only the general headline for vulnerabilities section is displayed -- in addition to the vulnerability and the result. Otherwise each vulnerability or vulnerability section gets its own headline in addition to the output of the name of the vulnerabilty and test result. A vulnerability section is comprised of more than one check, e.g. the renegotiation vulnerability check has two checks, so has Logjam.</p>
+
+<p><code>-H, --heartbleed</code> Checks for Heartbleed, a memory leakage in openssl. Unless the server side doesn't support the heartbeat extension it is likely that this check runs into a timeout. The seconds to wait for a reply can be adjusted with <code>HEARTBLEED_MAX_WAITSOCK</code>. 8 is the default.</p>
+
+<p><code>-I, --ccs, --ccs-injection</code> Checks for CCS Injection which is an openssl vulnerability. Sometimes also here the check needs to wait for a reply. The predefined timeout of 5 seconds can be changed with the environment variable <code>CCS_MAX_WAITSOCK</code>.</p>
+
+<p><code>-T, --ticketbleed</code> Checks for Ticketbleed memory leakage in BigIP loadbalancers.</p>
+
+<p><code>-BB, --robot</code> Checks for vulnerability to ROBOT / (<em>Return Of Bleichenbacher's Oracle Threat</em>) attack.</p>
+
+<p><code>-R, --renegotiation</code> Tests renegotiation vulnerabilities. Currently there's a check for <em>Secure Renegotiation</em> and for <em>Secure Client-Initiated Renegotiation</em>. Please be aware that vulnerable servers to the latter can likely be DoSed very easily (HTTP). A check for <em>Insecure Client-Initiated Renegotiation</em> is not yet implemented.</p>
+
+<p><code>-C, --compression, --crime</code> Checks for CRIME (<em>Compression Ratio Info-leak Made Easy</em>) vulnerability in TLS. CRIME in SPDY is not yet being checked for.</p>
+
+<p><code>-B, --breach</code> Checks for BREACH (<em>Browser Reconnaissance and Exfiltration via Adaptive Compression of Hypertext</em>) vulnerability. As for this vulnerability HTTP level compression is a prerequisite it'll be not tested if HTTP cannot be detected or the detection is not enforced via <code>`--assume-http</code>. Please note that only the URL supplied (normally "/" ) is being tested.</p>
+
+<p><code>-O, --poodle</code> Tests for SSL POODLE (<em>Padding Oracle On Downgraded Legacy Encryption</em>) vulnerability. It basically checks for the existence of CBC ciphers in SSLv3.</p>
+
+<p><code>-Z, --tls-fallback</code> Checks TLS_FALLBACK_SCSV mitigation. TLS_FALLBACK_SCSV is basically a ciphersuite appended to the Client Hello trying to prevent protocol downgrade attacks by a Man in the Middle.</p>
+
+<p><code>-W, --sweet32</code> Checks for vulnerability to SWEET32 by testing 64 bit block ciphers (3DES, RC2 and IDEA).</p>
+
+<p><code>-F, --freak</code> Checks for FREAK vulnerability (<em>Factoring RSA Export Keys</em>) by testing for EXPORT RSA ciphers</p>
+
+<p><code>-D, --drown</code> Checks for DROWN vulnerability (<em>Decrypting RSA with Obsolete and Weakened eNcryption</em>) by checking whether the SSL 2 protocol is available at the target. Please note that if you use the same RSA certificate elsewhere you might be vulnerable too. testssl.sh doesn't check for this but provides a helpful link @ censys.io which provides this service.</p>
+
+<p><code>-J, --logjam</code> Checks for LOGJAM vulnerability by checking for DH EXPORT ciphers. It also checks for "common primes" which are preconfigured DH keys. DH keys =&lt; 1024 Bit will be penalized. Also FFDHE groups (TLS 1.2) will be displayed here.</p>
+
+<p><code>-A, --beast</code> Checks BEAST vulnerabilities in SSL 3 and TLS 1.0 by testing the usage of CBC ciphers.</p>
+
+<p><code>-L, --lucky13</code> Checks for LUCKY13 vulnerability. It checks for the presence of CBC ciphers in TLS versions 1.0 - 1.2.</p>
+
+<p><code>-4, --rc4, --appelbaum</code> Checks which RC4 stream ciphers are being offered.</p>
+
+<h3 id="OUTPUT-OPTIONS">OUTPUT OPTIONS</h3>
+
+<p><code>-q, --quiet</code> Normally testssl.sh displays a banner on stdout with several version information, usage rights and a warning. This option suppresses it. Please note that by choosing this option you acknowledge usage terms and the warning normally appearing in the banner.</p>
+
+<p><code>--wide</code> Except the "each cipher output" all tests displays the single cipher name (scheme see below). This option enables testssl.sh to display also for the following sections the same output as for testing each ciphers: BEAST, PFS, RC4. The client simulation has also a wide mode. The difference here is restricted to a column aligned output and a proper headline. The environment variable <code>WIDE</code> can be used instead.</p>
+
+<p><code>--mapping &lt;openssl|iana|no-openssl|no-iana></code></p>
+
+<ul>
+<li><code>openssl</code>: use the OpenSSL cipher suite name as the primary name cipher suite name form (default),</li>
+<li><code>iana</code>: use the IANA cipher suite name as the primary name cipher suite name form.</li>
+<li><code>no-openssl</code>: don't display the OpenSSL cipher suite name, display IANA names only.</li>
+<li><code>no-iana</code>: don't display the IANA cipher suite name, display OpenSSL names only.</li>
+</ul>
+
+
+<p>Please note that in testssl.sh 3,0 you can still use <code>rfc</code> instead of <code>iana</code> and <code>no-rfc</code> instead of <code>no-iana</code> but it'll disappear after 3.0.</p>
+
+<p><code>--show-each</code> This is an option for all wide modes only: it displays all ciphers tested -- not only succeeded ones. <code>SHOW_EACH_C</code> is your friend if you prefer to set this via the shell environment.</p>
+
+<p><code>--color &lt;0|1|2|3></code> determines the use of colors on the screen and in the log file: <code>2</code> is the default and makes use of ANSI and termcap escape codes on your terminal. <code>1</code> just uses non-colored mark-up like bold, italics, underline, reverse. <code>0</code> means no mark-up at all = no escape codes. This is also what you want when you want a log file without any escape codes. <code>3</code> will color ciphers and EC according to an internal (not yet perfect) rating. Setting the environment variable <code>COLOR</code> to the value achieves the same result. Please not that OpenBSD and early FreeBSD do not support italics.</p>
+
+<p><code>--colorblind</code> Swaps green and blue colors in the output, so that this percentage of folks (up to 8% of males, see https://en.wikipedia.org/wiki/Color_blindness) can distinguish those findings better. <code>COLORBLIND</code> is the according variable if you want to set this in the environment.</p>
+
+<p><code>--debug &lt;0-6></code> This gives you additional output on the screen (2-6), only useful for debugging. <code>DEBUG</code> is the according environment variable which you can use. There are six levels (0 is the default, thus it has no effect):</p>
+
+<ol>
+<li>screen output normal but leaves useful debug output in <strong>/tmp/testssl.XXXXXX/</strong> . The info about the exact directory is included in the screen output in the end of the run.</li>
+<li>lists more what's going on, status (high level) and connection errors, a few general debug output</li>
+<li>even slightly more info: hexdumps + other info</li>
+<li>display bytes sent via sockets</li>
+<li>display bytes received via sockets</li>
+<li>whole 9 yards</li>
+</ol>
+
+
+<h3 id="FILE-OUTPUT-OPTIONS">FILE OUTPUT OPTIONS</h3>
+
+<p><code>--log, --logging</code> Logs stdout also to <code>${NODE}-p${port}${YYYYMMDD-HHMM}.log</code> in current working directory of the shell. Depending on the color output option (see above) the output file will contain color and other markup escape codes, unless you specify <code>--color 0</code> too. <code>cat</code> and -- if properly configured <code>less</code> -- will show the output properly formatted on your terminal. The output shows a banner with the almost the same information as on the screen. In addition it shows the command line of the testssl.sh instance. Please note that the resulting log file is formatted according to the width of your screen while running testssl.sh. You can override the width with the environment variable TERM_WIDTH.</p>
+
+<p><code>--logfile &lt;logfile></code> or <code>-oL &lt;logfile></code> Instead of the previous option you may want to use this one if you want to log into a directory or if you rather want to specify the log file name yourself. If <code>logfile</code> is a directory the output will put into <code>logfile/${NODE}-p${port}${YYYYMMDD-HHMM}.log</code>. If <code>logfile</code> is a file it will use that file name, an absolute path is also permitted here. LOGFILE is the variable you need to set if you prefer to work environment variables instead. Please note that the resulting log file is formatted according to the width of your screen while running testssl.sh. You can override the width with the environment variable TERM_WIDTH.</p>
+
+<p><code>--json</code> Logs additionally to JSON file <code>${NODE}-p${port}${YYYYMMDD-HHMM}.json</code> in the current working directory of the shell. The resulting JSON file is opposed to <code>--json-pretty</code> flat -- which means each section is self contained and has an identifier for each single check, the hostname/IP address, the port, severity and the finding. For vulnerabilities it may contain a CVE and CWE entry too. The output doesn't contain a banner or a footer.</p>
+
+<p><code>--jsonfile &lt;jsonfile></code> or <code>-oj &lt;jsonfile></code> Instead of the previous option you may want to use this one if you want to log the JSON out put into a directory or if you rather want to specify the log file name yourself. If <code>jsonfile</code> is a directory the output will put into <code>logfile/${NODE}-p${port}${YYYYMMDD-HHMM}.json. If</code>jsonfile` is a file it will use that file name, an absolute path is also permitted here.</p>
+
+<p><code>--json-pretty</code> Logs additionally to JSON file <code>${NODE}-p${port}${YYYYMMDD-HHMM}.json in the current working directory of the shell. The resulting JSON file is opposed to</code>--json` non-flat -- which means it is structured. The structure contains a header similar to the banner on the screen, including the command line, scan host, openssl binary used, testssl version and epoch of the start time. Then for every test section of testssl.sh it contains a separate JSON object/section. Each finding has a key/value pair identifier with the identifier for each single check, the severity and the finding. For vulnerabilities it may contain a CVE and CWE entry too. The footer lists the scan time in seconds.</p>
+
+<p><code>--jsonfile-pretty &lt;jsonfile></code> or <code>-oJ &lt;jsonfile></code> Similar to the aforementioned <code>--jsonfile</code> or <code>--logfile</code> it logs the output in pretty JSON format (see <code>--json-pretty</code>) into a file or a directory. For further explanation see <code>--jsonfile</code> or <code>--logfile</code>.</p>
+
+<p><code>--csv</code> Logs additionally to a CSV file <code>${NODE}-p${port}${YYYYMMDD-HHMM}.csv</code> in the current working directory of the shell. The output contains a header with the keys, the values are the same as in the flat JSON format (identifier for each single check, the hostname/IP address, the port, severity, the finding and for vulnerabilities a CVE and CWE number).</p>
+
+<p><code>--csvfile &lt;csvfile></code> or <code>-oC &lt;csvfile></code> Similar to the aforementioned <code>--jsonfile</code> or <code>--logfile</code> it logs the output in CSV format (see <code>--cvs</code>) additionally into a file or a directory. For further explanation see <code>--jsonfile</code> or <code>--logfile</code>.</p>
+
+<p><code>--html</code> Logs additionally to an HTML file <code>${NODE}-p${port}${YYYYMMDD-HHMM}.html</code> in the current working directory of the shell. It contains a 1:1 output of the console. In former versions there was a non-native option to use "aha" (Ansi HTML Adapter: github.com/theZiz/aha) like <code>testssl.sh [options] &lt;URI> | aha &gt;output.html</code>. This is not necessary anymore.</p>
+
+<p><code>--htmlfile &lt;htmlfile></code> or <code>-oH &lt;htmlfile></code> Similar to the aforementioned <code>--jsonfile</code> or <code>--logfile</code> it logs the output in HTML format (see <code>--html</code>) additionally into a file or a directory. For further explanation see <code>--jsonfile</code> or <code>--logfile</code>.</p>
+
+<p><code>-oA &lt;filename></code> / <code>--outFile &lt;filename></code> Similar to nmap it does a file output to all available file formats: LOG, JSON pretty, CSV, HTML. If the filename supplied is equal <code>auto</code> the filename is automatically generated using '${NODE}-p${port}${YYYYMMDD-HHMM}.${EXT}' with the according extension. If a directory is provided all output files will put into <code>&lt;filename>/${NODE}-p${port}${YYYYMMDD-HHMM}.{log,json,csv,html}</code>.</p>
+
+<p><code>-oa &lt;filename></code> / <code>--outfile &lt;filename></code> Does the same as the previous option but uses flat JSON instead.</p>
+
+<p><code>--hints</code> This option is not in use yet. This option is meant to give hints how to fix a finding or at least a help to improve something. GIVE_HINTS is the environment variable for this.</p>
+
+<p><code>--severity &lt;severity></code> For CSV and both JSON outputs this will only add findings to the output file if a severity is equal or higher than the <code>severity</code> value specified. Allowed are <code>&lt;LOW|MEDIUM|HIGH|CRITICAL></code>. WARN is another level which translates to a client-side scanning error or problem. Thus you will always see them in a file if they occur.</p>
+
+<p><code>--append</code> Normally, if an output file already exists and it has a file size greater zero, testssl.sh will prompt you to manually remove the file exit with an error. <code>--append</code> however will append to this file, without a header. The environment variable APPEND does the same. Be careful using this switch/variable. A complementary option which overwrites an existing file doesn't exist per design.</p>
+
+<p><code>--outprefix &lt;fname_prefix></code> Prepend output filename prefix <var>fname_prefix</var> before '${NODE}-'. You can use as well the environment variable FNAME_PREFIX. Using this any output files will be named <code>&lt;fname_prefix>-${NODE}-p${port}${YYYYMMDD-HHMM}.&lt;format></code> when no file name of the respective output option was specified. If you do not like the separator '-' you can as well supply a <code>&lt;fname_prefix></code> ending in '.', '_' or ','. In this case or if you already supplied '-' no additional '-' will be appended to <code>&lt;fname_prefix></code>.</p>
+
+<p>A few file output options can also be preset via environment variables.</p>
+
+<h3 id="COLOR-RATINGS">COLOR RATINGS</h3>
+
+<p>Testssl.sh makes use of (the eight) standard terminal colors. The color scheme is as follows:</p>
+
+<ul>
+<li>light red: a critical finding</li>
+<li>red: a high finding</li>
+<li>brown: a medium finding</li>
+<li>yellow: a low finding</li>
+<li>green (blue if COLORBLIND is set): something which is either in general a good thing or a negative result of a check which otherwise results in a high finding</li>
+<li>light green (light blue if COLORBLIND is set) : something which is either in general a very good thing or a negative result of a check which otherwise results in a critical finding</li>
+<li>no color at places where also a finding can be expected: a finding on an info level</li>
+<li>cyan: currently only used for <code>--show-each</code> or an additional hint</li>
+<li>magenta: signals a warning condition, e.g. either a local lack of capabilities on the client side or another problem</li>
+<li>light magenta: a fatal error which either requires strict consent from the user to continue or a condition which leaves no other choice for testssl.sh to quit</li>
+</ul>
+
+
+<p>What is labeled as "light" above appears as such on the screen but is technically speaking "bold". Besides <code>--color=3</code> will color ciphers according to an internal and rough rating.</p>
+
+<p>Markup (without any color) is used in the following manner:</p>
+
+<ul>
+<li>bold: for the name of the test</li>
+<li>underline + bold: for the headline of each test section</li>
+<li>underline: for a sub-headline</li>
+<li>italics: for strings just reflecting a value read from the server</li>
+</ul>
+
+
+<h3 id="TUNING-via-ENV-variables-and-more-options">TUNING via ENV variables and more options</h3>
+
+<p>Except the environment variables mentioned above which can replace command line options here a some which cannot be set otherwise. Variables used for tuning are preset with reasonable values. <em>There should be no reason to change them</em> unless you use testssl.sh under special conditions.</p>
+
+<ul>
+<li>TERM_WIDTH is a variable which overrides the auto-determined terminal width size. Setting this variable normally only makes sense if you log the output to a file using the <code>--log</code>, <code>--logfile</code> or <code>-oL</code> option.</li>
+<li>DEBUG_ALLINONE / SETX: when setting one of those to true testssl.sh falls back to the standard bash behavior, i.e. calling <code>bash -x testssl.sh</code> it displays the bash debugging output not in an external file <code>/tmp/testssl-&lt;XX>.log</code></li>
+<li>DEBUGTIME: Profiling option. When using bash's debug mode and when this is set to true, it generates a separate text file with epoch times in <code>/tmp/testssl-&lt;XX>.time</code>. They need to be concatenated by <code>paste /tmp/testssl-&lt;XX>.{time,log}</code></li>
+<li>EXPERIMENTAL=true is an option which is sometimes used in the development process to make testing easier. In released versions this has no effect.</li>
+<li>ALL_CLIENTS=true runs a client simulation with <em>all</em> (currently 126) clients when testing HTTP.</li>
+<li>UNBRACKTD_IPV6: needs to be set to true for some old versions of OpenSSL (like from Gentoo) which don't support [bracketed] IPv6 addresses</li>
+<li>NO_ENGINE: if you have problems with garbled output containing the word 'engine' you might want to set this to true. It forces testssl.sh not try to configure openssl's engine or a non existing one from libressl</li>
+<li>HEADER_MAXSLEEP: To wait how long before killing the process to retrieve a service banner / HTTP header</li>
+<li>MAX_WAITSOCK: It instructs testssl.sh to wait until the specified time before declaring a socket connection dead. Don't change this unless you're absolutely sure what you're doing. Value is in seconds.</li>
+<li>CCS_MAX_WAITSOCK Is the similar to above but applies only to the CCS handshakes, for both of the two the two CCS payload. Don't change this unless you're absolutely sure what you're doing. Value is in seconds.</li>
+<li>HEARTBLEED_MAX_WAITSOCK Is the similar to MAX_WAITSOCK but applies only to the ServerHello after sending the Heartbleed payload. Don't change this unless you're absolutely sure what you're doing. Value is in seconds.</li>
+<li>MEASURE_TIME_FILE For seldom cases when you don't want the scan time to be included in the output you can set this to false.</li>
+<li>STARTTLS_SLEEP is per default set to 10 (seconds). That's the value testssl.sh waits for a string in the STARTTLS handshake before giving up.</li>
+<li>MAX_PARALLEL is the maximum number of tests to run in parallel in parallel mass testing mode. The default value of 20 may be made larger on systems with faster processors.</li>
+<li>MAX_WAIT_TEST is the maximum time (in seconds) to wait for a single test in parallel mass testing mode to complete. The default is 1200.</li>
+<li>HSTS_MIN is preset to 179 (days). If you want warnings sooner or later for HTTP Strict Transport Security you can change this.</li>
+<li>HPKP_MIN is preset to 30 (days). If you want warnings sooner or later for HTTP Public Key Pinning you can change this</li>
+<li>DAYS2WARN1 is the first threshold when you'll be warning of a certificate expiration of a host, preset to 60 (days). For Let's Encrypt this value will be divided internally by 2.</li>
+<li>DAYS2WARN2 is the second threshold when you'll be warning of a certificate expiration of a host, preset to 30 (days). For Let's Encrypt this value will be divided internally by 2.</li>
+<li>TESTSSL_INSTALL_DIR is the derived installation directory of testssl.sh. Relatively to that the <code>bin</code> and mandatory <code>etc</code> directory will be looked for.</li>
+<li>CA_BUNDLES_PATH: If you have an own set of CA bundles or you want to point testssl.sh to a specific location of a CA bundle, you can use this variable to set the directory which testssl.sh will use. Please note that it overrides completely the builtin path of testssl.sh which means that you will only test against the bundles you point to. Also you might want to use <code>~/utils/create_ca_hashes.sh</code> to create the hashes for HPKP.</li>
+<li>MAX_SOCKET_FAIL: A number which tells testssl.sh how often a TCP socket connection may fail before the program gives up and terminates. The default is 2. You can increase it to a higher value if you frequently see a message like <em>Fatal error: repeated openssl s_client connect problem, doesn't make sense to continue</em>.</li>
+<li>MAX_OSSL_FAIL: A number which tells testssl.sh how often an OpenSSL s_client connect may fail before the program gives up and terminates. The default is 2. You can increase it to a higher value if you frequently see a message like <em>Fatal error: repeated TCP connect problems, giving up</em>.</li>
+<li>MAX_HEADER_FAIL: A number which tells testssl.sh how often a HTTP GET request over OpenSSL may return an empty file before the program gives up and terminates. The default is 3. Also here you can incerase the threshold when you spot messages like <em>Fatal error: repeated HTTP header connect problems, doesn't make sense to continue</em>.</li>
+</ul>
+
+
+<h2 id="EXAMPLES">EXAMPLES</h2>
+
+<pre><code> testssl.sh testssl.sh
+</code></pre>
+
+<p>does a default run on https://testssl.sh (protocols, standard cipher lists, PFS, server preferences, server defaults, vulnerabilities, testing all known 370 ciphers, client simulation.</p>
+
+<pre><code> testssl.sh testssl.net:443
+</code></pre>
+
+<p>does the same default run as above with the subtle difference that testssl.net has two IPv4 addresses. Both are tested.</p>
+
+<pre><code> testssl.sh --ip=one --wide https://testssl.net:443
+</code></pre>
+
+<p>does the same checks as above, with the difference that one IP address is being picked randomly. Displayed is everything where possible in wide format.</p>
+
+<pre><code> testssl.sh -6 https://testssl.net
+</code></pre>
+
+<p>As opposed to the first example it also tests the IPv6 part -- supposed you have an IPv6 network and your openssl supports IPv6 (see above).</p>
+
+<pre><code> testssl.sh -t smtp smtp.gmail.com:25
+</code></pre>
+
+<p>Checks are done via a STARTTLS handshake on the plain text port 25. It checks every IP on smtp.gmail.com.</p>
+
+<pre><code> testssl.sh --starttls=imap imap.gmx.net:143
+</code></pre>
+
+<p>does the same on the plain text IMAP port.</p>
+
+<p>Please note that for plain TLS-encrypted ports you must not specify the protocol option when no STARTTLS handshake is offered: <code>testssl.sh smtp.gmail.com:465</code> just checks the encryption on the SMTPS port, <code>testssl.sh imap.gmx.net:993</code> on the IMAPS port. Also MongoDB which provides TLS support without STARTTLS can be tested directly.</p>
+
+<h2 id="RFCs-and-other-standards">RFCs and other standards</h2>
+
+<ul>
+<li>RFC 2246: The TLS Protocol Version 1.0</li>
+<li>RFC 2818: HTTP Over TLS</li>
+<li>RFC 2595: Using TLS with IMAP, POP3 and ACAP</li>
+<li>RFC 3207: SMTP Service Extension for Secure SMTP over Transport Layer Security</li>
+<li>RFC 3501: INTERNET MESSAGE ACCESS PROTOCOL - VERSION 4rev1</li>
+<li>RFC 4346: The Transport Layer Security (TLS) Protocol Version 1.1</li>
+<li>RFC 4366: Transport Layer Security (TLS) Extensions</li>
+<li>RFC 4492: Elliptic Curve Cryptography (ECC) Cipher Suites for Transport Layer Security (TLS)</li>
+<li>RFC 5077: Transport Layer Security (TLS) Session Resumption</li>
+<li>RFC 5246: The Transport Layer Security (TLS) Protocol Version 1.2</li>
+<li>RFC 5280: Internet X.509 Public Key Infrastructure Certificate and Certificate Revocation List (CRL) Profile</li>
+<li>RFC 5321: Simple Mail Transfer Protocol</li>
+<li>RFC 5746: Transport Layer Security (TLS) Renegotiation Indication Extension</li>
+<li>RFC 6066: Transport Layer Security (TLS) Extensions: Extension Definitions</li>
+<li>RFC 6101: The Secure Sockets Layer (SSL) Protocol Version 3.0</li>
+<li>RFC 6120: Extensible Messaging and Presence Protocol (XMPP): Core</li>
+<li>RFC 6125: Domain-Based Application Service Identity [..]</li>
+<li>RFC 6797: HTTP Strict Transport Security (HSTS)</li>
+<li>RFC 6961: The Transport Layer Security (TLS) Multiple Certificate Status Request Extension</li>
+<li>RFC 7469: Public Key Pinning Extension for HTTP (HPKP)</li>
+<li>RFC 7507: TLS Fallback Signaling Cipher Suite Value (SCSV) for Preventing Protocol Downgrade Attacks</li>
+<li>RFC 7627: Transport Layer Security (TLS) Session Hash and Extended Master Secret Extension</li>
+<li>RFC 7633: X.509v3 Transport Layer Security (TLS) Feature Extension</li>
+<li>RFC 7465: Prohibiting RC4 Cipher Suites</li>
+<li>RFC 7685: A Transport Layer Security (TLS) ClientHello Padding Extension</li>
+<li>RFC 7905: ChaCha20-Poly1305 Cipher Suites for Transport Layer Security (TLS)</li>
+<li>RFC 7919: Negotiated Finite Field Diffie-Hellman Ephemeral Parameters for Transport Layer Security</li>
+<li>RFC 8143: Using Transport Layer Security (TLS) with Network News Transfer Protocol (NNTP)</li>
+<li>RFC 8446: The Transport Layer Security (TLS) Protocol Version 1.3</li>
+<li>W3C CSP: Content Security Policy Level 1-3</li>
+<li>TLSWG Draft: The Transport Layer Security (TLS) Protocol Version 1.3</li>
+</ul>
+
+
+<h2 id="EXIT-STATUS">EXIT STATUS</h2>
+
+<ul>
+<li>0 testssl.sh finished successfully without errors and without ambiguous results</li>
+<li>1 testssl.sh has encountered exactly one ambiguous situation or an error during run</li>
+<li>1+n same as previous. The errors or ambiguous results are added, also per IP.</li>
+<li>50-200 reserved for returning a vulnerability scoring for system monitoring or a CI tools</li>
+<li>242 (ERR_CHILD) Child received a signal from master</li>
+<li>244 (ERR_RESOURCE) Resources testssl.sh needs couldn't be read</li>
+<li>245 (ERR_CLUELESS) Weird state, either though user options or testssl.sh</li>
+<li>246 (ERR_CONNECT) Connectivity problem</li>
+<li>247 (ERR_DNSLOOKUP) Problem with resolving IP addresses or names</li>
+<li>248 (ERR_OTHERCLIENT) Other client problem</li>
+<li>249 (ERR_DNSBIN) Problem with DNS lookup binaries</li>
+<li>250 (ERR_OSSLBIN) Problem with OpenSSL binary</li>
+<li>251 (ERR_NOSUPPORT) Feature requested is not supported</li>
+<li>252 (ERR_FNAMEPARSE) Input file couldn't be parsed</li>
+<li>253 (ERR_FCREATE) Output file couldn't be created</li>
+<li>254 (ERR_CMDLINE) Cmd line couldn't be parsed</li>
+<li>255 (ERR_BASH) Bash version incorrect</li>
+</ul>
+
+
+<h2 id="FILES">FILES</h2>
+
+<p><strong>etc/*pem</strong> are the certificate stores from Apple, Linux, Mozilla Firefox, Windows and Java.</p>
+
+<p><strong>etc/client-simulation.txt</strong> contains client simulation data.</p>
+
+<p><strong>etc/cipher-mapping.txt</strong> provides a mandatory file with mapping from OpenSSL cipher suites names to the ones from IANA / used in the RFCs.</p>
+
+<p><strong>etc/tls_data.txt</strong> provides a mandatory file for ciphers (bash sockets) and key material.</p>
+
+<h2 id="AUTHORS">AUTHORS</h2>
+
+<p>Developed by Dirk Wetter, David Cooper and many others, see CREDITS.md .</p>
+
+<h2 id="COPYRIGHT">COPYRIGHT</h2>
+
+<p>Copyright © 2012 Dirk Wetter. License GPLv2: Free Software Foundation, Inc.
+ This is free software: you are free to change and redistribute it under the terms of the license, see LICENSE.</p>
+
+<p>
+Attribution is important for the future of this project - also in the
+internet. Thus if you're offering a scanner based on testssl.sh as a public
+and/or paid service in the internet you are strongly encouraged to mention to
+your audience that you're using this program and where to get this program
+from. That helps us to get bugfixes, other feedback and more contributions.
+</p>
+
+<p> Usage WITHOUT ANY WARRANTY. USE at your OWN RISK!</p>
+
+
+<h2 id="LIMITATION">LIMITATION</h2>
+
+<p>All native Windows platforms emulating Linux are known to be slow.</p>
+
+<h2 id="BUGS">BUGS</h2>
+
+<p>Probably. Current known ones and interface for filing new ones: https://testssl.sh/bugs/ .</p>
+
+<h2 id="SEE-ALSO">SEE ALSO</h2>
+
+<p><code>ciphers</code>(1), <code>openssl</code>(1), <code>s_client</code>(1), <code>x509</code>(1), <code>verify</code>(1), <code>ocsp</code>(1), <code>crl</code>(1), <code>bash</code>(1) and the websites https://testssl.sh/ and https://github.com/drwetter/testssl.sh/ .</p>
+
+
+ <ol class='man-decor man-foot man foot'>
+ <li class='tl'></li>
+ <li class='tc'>January 2020</li>
+ <li class='tr'>testssl(1)</li>
+ </ol>
+
+ </div>
+</body>
+</html>
diff --git a/doc/testssl.1.md b/doc/testssl.1.md
new file mode 100644
index 0000000..4ae0ea6
--- /dev/null
+++ b/doc/testssl.1.md
@@ -0,0 +1,516 @@
+
+## NAME
+ testssl.sh -- check encryption of SSL/TLS servers
+
+## SYNOPSIS
+
+
+`testssl.sh [OPTIONS] <URI>`, `testssl.sh [OPTIONS] --file <FILE>`
+
+ or
+
+`testssl.sh [BANNER OPTIONS]`
+
+## DESCRIPTION
+
+testssl.sh is a free command line tool which checks a server's service on any port for the support of TLS/SSL ciphers, protocols as well as cryptographic flaws and much more.
+
+The output rates findings by color (screen) or severity (file output) so that you are able to tell whether something is good or bad. The (screen) output has several sections in which classes of checks are being performed. To ease readability on the screen it aligns and indents the output properly.
+
+Only you see the result. You also can use it internally on your LAN. Except DNS lookups or unless you instruct testssl.sh to check for revocation of certificates it doesn't use any other hosts or even third parties for any test.
+
+## REQUIREMENTS
+
+Testssl.sh is out of the box portable: it runs under any Unix-like
+stack: Linux, \*BSD, MacOS X, WSL=Windows Subsystem for Linux, Cygwin and MSYS2.
+`bash` is a prerequisite, also version 3 is still supported.
+Standard utilities like awk, sed, tr and head are also needed. This can be of a BSD,
+System 5 or GNU flavor whereas grep from System V is not yet supported.
+
+Any OpenSSL or LibreSSL version is needed as a helper. Unlike previous versions
+of testssl.sh almost every check is done via (TCP) sockets. In addition statically
+linked OpenSSL binaries for major operating systems are supplied in `./bin/`.
+
+
+## GENERAL
+
+`testssl.sh URI` as the default invocation does the so-called default run which does a number of checks and puts out the results colorized (ANSI and termcap) on the screen. It does every check listed below except `-E` which are (order of appearance):
+
+0) displays a banner (see below), does a DNS lookup also for further IP addresses and does for the returned IP address a reverse lookup. Last but not least a service check is being done.
+
+1) SSL/TLS protocol check
+
+2) standard cipher categories to give you upfront an idea for the ciphers supported
+
+3) checks (perfect) forward secrecy: ciphers and elliptical curves
+
+4) server preferences (server order)
+
+5) server defaults (certificate info, TLS extensions, session information)
+
+6) HTTP header (if HTTP detected or being forced via `--assume-http`)
+
+7) vulnerabilities
+
+8) testing each of 370 preconfigured ciphers
+
+9) client simulation
+
+
+## OPTIONS AND PARAMETERS
+
+Options are either short or long options. Any long or short option requiring a value can be called with or without an equal sign. E.g. `testssl.sh -t=smtp --wide --openssl=/usr/bin/openssl <URI>` (short options with equal sign) is equivalent to `testssl.sh --starttls smtp --wide --openssl /usr/bin/openssl <URI>` (long option without equal sign). Some command line options can also be preset via ENV variables. `WIDE=true OPENSSL=/usr/bin/openssl testssl.sh --starttls=smtp <URI>` would be the equivalent to the aforementioned examples. Preference has the command line over any environment variables.
+
+`<URI>` or `--file <FILE>` always needs to be the last parameter.
+
+### BANNER OPTIONS
+
+`--help` (or no arg) display command line help
+
+`-b, --banner` displays testssl.sh banner, including license, usage conditions, version of testssl.sh, detected openssl version, its path to it, # of ciphers of openssl, its build date and the architecture.
+
+`-v, --version` same as before
+
+`-V [pattern] , --local [pattern]` pretty print all local ciphers supported by openssl version. If a pattern is supplied it performs a match (ignore case) on any of the strings supplied in the wide output, see below. The pattern will be searched in the any of the columns: hexcode, cipher suite name (OpenSSL or IANA), key exchange, encryption, bits. It does a word pattern match for non-numbers, for number just a normal match applies. Numbers here are defined as [0-9,A-F]. This means (attention: catch) that the pattern CBC is matched as non-word, but AES as word.
+
+### INPUT PARAMETERS
+
+`URI` can be a hostname, an IPv4 or IPv6 address (restriction see below) or an URL. IPv6 addresses need to be in square brackets. For any given parameter port 443 is assumed unless specified by appending a colon and a port number. The only preceding protocol specifier allowed is `https`. You need to be aware that checks for an IP address might not hit the vhost you want. DNS resolution (A/AAAA record) is being performed unless you have an `/etc/hosts` entry for the hostname.
+
+`--file <fname>` or the equivalent `-iL <fname>` are mass testing options. Per default it implicitly turns on `--warnings batch`. In its first incarnation the mass testing option reads command lines from `fname`. `fname` consists of command lines of testssl, one line per instance. Comments after `#` are ignored, `EOF` signals the end of fname any subsequent lines will be ignored too. You can also supply additional options which will be inherited to each child, e.g. When invoking `testssl.sh --wide --log --file <fname>` . Each single line in `fname` is parsed upon execution. If there's a conflicting option and serial mass testing option is being performed the check will be aborted at the time it occurs and depending on the output option potentially leaving you with an output file without footer. In parallel mode the mileage varies, likely a line won't be scanned.
+
+Alternatively `fname` can be in `nmap`'s grep(p)able output format (`-oG`). Only open ports will be considered. Multiple ports per line are allowed. The ports can be different and will be tested by testssl.sh according to common practice in the internet, i.e. if nmap shows in its output an open port 25, automatically `-t smtp` will be added before the URI whereas port 465 will be treated as a plain TLS/SSL port, not requiring an STARTTLS SMTP handshake upfront. This is done by an internal table which correlates nmap's open port detected to the STARTTLS/plain text decision from testssl.sh.
+
+Nmap's output always returns IP addresses and only if there's a PTR DNS record available a hostname. As it is not checked by nmap whether the hostname matches the IP (A or AAAA record), testssl.sh does this automatically for you. If the A record of the hostname matches the IP address, the hostname is used and not the IP address. Please keep in mind that checks against an IP address might not hit the vhost you maybe were aiming at and thus it may lead to different results.
+
+A typical internal conversion to testssl.sh file format from nmap's grep(p)able format could look like:
+
+```
+10.10.12.16:443
+10.10.12.16:1443
+-t smtp host.example.com:25
+host.example.com:443
+host.example.com:631
+-t ftp 10.10.12.11:21
+10.10.12.11:8443
+```
+Please note that `fname` has to be in Unix format. DOS carriage returns won't be accepted. Instead of the command line switch the environment variable FNAME will be honored too.
+
+`--mode <serial|parallel>`. Mass testing to be done serial (default) or parallel (`--parallel` is shortcut for the latter, `--serial` is the opposite option). Per default mass testing is being run in serial mode, i.e. one line after the other is processed and invoked. The variable `MASS_TESTING_MODE` can be defined to be either equal `serial` or `parallel`.
+
+`--warnings <batch|off>`. The warnings parameter determines how testssl.sh will deal with situations where user input normally will be necessary. There are two options. `batch` doesn't wait for a confirming keypress when a client- or server-side probem is encountered. As of 3.0 it just then terminates the particular scan. This is automatically chosen for mass testing (`--file`). `off` just skips the warning, the confirmation but continues the scan, independent whether it makes sense or not. Please note that there are conflicts where testssl.sh will still ask for confirmation which are the ones which otherwise would have a drastic impact on the results. Almost any other decision will be made in the future as a best guess by testssl.sh.
+The same can be achieved by setting the environment variable `WARNINGS`.
+
+`--connect-timeout <seconds>` This is useful for socket TCP connections to a node. If the node does not complete a TCP handshake (e.g. because it is down or behind a firewall or there's an IDS or a tarpit) testssl.sh may usually hang for around 2 minutes or even much more. This parameter instructs testssl.sh to wait at most `seconds` for the handshake to complete before giving up. This option only works if your OS has a timeout binary installed. CONNECT_TIMEOUT is the corresponding environment variable.
+
+`--openssl-timeout <seconds>` This is especially useful for all connects using openssl and practically useful for mass testing. It avoids the openssl connect to hang for ~2 minutes. The expected parameter `seconds` instructs testssl.sh to wait before the openssl connect will be terminated. The option is only available if your OS has a timeout binary installed. As there are different implementations of `timeout`: It automatically calls the binary with the right parameters. OPENSSL_TIMEOUT is the equivalent environment variable.
+
+`--basicauth <user:pass>` This can be set to provide HTTP basic auth credentials which are used during checks for security headers. BASICAUTH is the ENV variable you can use instead.
+
+
+### SPECIAL INVOCATIONS
+
+`-t <protocol>, --starttls <protocol>` does a default run against a STARTTLS enabled `protocol`. `protocol` must be one of `ftp`, `smtp`, `pop3`, `imap`, `xmpp`, `telnet`, `ldap`, `irc`, `lmtp`, `nntp`, `postgres`, `mysql`. For the latter four you need e.g. the supplied OpenSSL or OpenSSL version 1.1.1. Please note: MongoDB doesn't offer a STARTTLS connection, LDAP currently only works with `--ssl-native`. `telnet` and `irc` is WIP.
+
+`--xmpphost <jabber_domain>` is an additional option for STARTTLS enabled XMPP: It expects the jabber domain as a parameter. This is only needed if the domain is different from the URI supplied.
+
+`--mx <domain|host>` tests all MX records (STARTTLS on port 25) from high to low priority, one after the other.
+
+`--ip <ip>` tests either the supplied IPv4 or IPv6 address instead of resolving host(s) in `<URI>`. IPv6 addresses need to be supplied in square brackets. `--ip=one` means: just test the first A record DNS returns (useful for multiple IPs). If `-6` and `--ip=one` was supplied an AAAA record will be picked if available. The ``--ip`` option might be also useful if you want to resolve the supplied hostname to a different IP, similar as if you would edit `/etc/hosts` or `/c/Windows/System32/drivers/etc/hosts`. `--ip=proxy` tries a DNS resolution via proxy.
+
+`--proxy <host>:<port>` does ANY check via the specified proxy. `--proxy=auto` inherits the proxy setting from the environment. The hostname supplied will be resolved to the first A record. In addition if you want lookups via proxy you can specify `DNS_VIA_PROXY=true`. OCSP revocation checking (`-S --phone-out`) is not supported by OpenSSL via proxy. As supplying a proxy is an indicator for port 80 and 443 outgoing being blocked in your network an OCSP revocation check won't be performed. However if `IGN_OCSP_PROXY=true` has been supplied it will be tried directly. Authentication to the proxy is not supported. Proxying via IPv6 addresses is not possible, no HTTPS or SOCKS proxy is supported.
+
+`-6` does (also) IPv6 checks. Please note that testssl.sh doesn't perform checks on an IPv6 address automatically, because of two reasons: testssl.sh does no connectivity checks for IPv6 and it cannot determine reliably whether the OpenSSL binary you're using has IPv6 s_client support. `-6` assumes both is the case. If both conditions are met and you in general prefer to test for IPv6 branches as well you can add `HAS_IPv6` to your shell environment. Besides the OpenSSL binary supplied IPv6 is known to work with vanilla OpenSSL >= 1.1.0 and older versions >=1.0.2 in RHEL/CentOS/FC and Gentoo.
+
+`--ssl-native` Instead of using a mixture of bash sockets and a few openssl s_client connects, testssl.sh uses the latter (almost) only. This is faster at the moment but provides less accurate results, especially for the client simulation and for cipher support. For all checks you will see a warning if testssl.sh cannot tell if a particular check cannot be performed. For some checks however you might end up getting false negatives without a warning. This option is only recommended if you prefer speed over accuracy or you know that your target has sufficient overlap with the protocols and cipher provided by your openssl binary.
+
+`--openssl <path_to_openssl>` testssl.sh tries very hard to find automagically the binary supplied (where the tree of testssl.sh resides, from the directory where testssl.sh has been started from, etc.). If all that doesn't work it falls back to openssl supplied from the OS (`$PATH`). With this option you can point testssl.sh to your binary of choice and override any internal magic to find the openssl binary. (Environment preset via `OPENSSL=<path_to_openssl>`).
+
+
+### TUNING OPTIONS
+
+`--bugs` does some workarounds for buggy servers like padding for old F5 devices. The option is passed as `-bug` to openssl when needed, see `s_client(1)`, environment preset via `BUGS="-bugs"` (1x dash). For the socket part testssl.sh has always workarounds in place to cope with broken server implementations.
+
+`--assuming-http` testssl.sh normally does upfront an application protocol detection. In cases where HTTP cannot be automatically detected you may want to use this option. It enforces testssl.sh not to skip HTTP specific tests (HTTP header) and to run a browser based client simulation. Please note that sometimes also the severity depends on the application protocol, e.g. SHA1 signed certificates, the lack of any SAN matches and some vulnerabilities will be punished harder when checking a web server as opposed to a mail server.
+
+`-n, --nodns <min|none>` tells testssl.sh which DNS lookups should be performed. `min` uses only forward DNS resolution (A and AAAA record or MX record) and skips CAA lookups and PTR records from the IP address back to a DNS name. `none` performs no DNS lookups at all. For the latter you either have to supply the IP address as a target, to use `--ip` or have the IP address
+in `/etc/hosts`. The use of the switch is only useful if you either can't or are not willing to perform DNS lookups. The latter can apply e.g. to some pentests. In general this option could e.g. help you to avoid timeouts by DNS lookups. `NODNS` is the environment variable for this.
+
+`--sneaky` For HTTP header checks testssl.sh uses normally the server friendly HTTP user agent `TLS tester from ${URL}`. With this option your traces are less verbose and a Firefox user agent is being used. Be aware that it doesn't hide your activities. That is just not possible (environment preset via `SNEAKY=true`).
+
+`--ids-friendly` is a switch which may help to get a scan finished which otherwise would be blocked by a server side IDS. This switch skips tests for the following vulnerabilities: Heartbleed, CCS Injection, Ticketbleed and ROBOT. The environment variable OFFENSIVE set to false will achieve the same result. Please be advised that as an alternative or as a general approach you can try to apply evasion techniques by changing the variables USLEEP_SND and / or USLEEP_REC and maybe MAX_WAITSOCK.
+
+`--phone-out` Checking for revoked certificates via CRL and OCSP is not done per default. This switch instructs testssl.sh to query external -- in a sense of the current run -- URIs. By using this switch you acknowledge that the check might have privacy issues, a download of several megabytes (CRL file) may happen and there may be network connectivity problems while contacting the endpoint which testssl.sh doesn't handle. PHONE_OUT is the environment variable for this which needs to be set to true if you want this.
+
+`--add-ca <cafile>` enables you to add your own CA(s) for trust chain checks. `cafile` can be a single path or multiple paths as a comma separated list of root CA files. Internally they will be added during runtime to all CA stores. This is (only) useful for internal hosts whose certificates is issued by internal CAs. Alternatively
+ADDITIONAL_CA_FILES is the environment variable for this.
+
+
+### SINGLE CHECK OPTIONS
+
+Any single check switch supplied as an argument prevents testssl.sh from doing a default run. It just takes this and if supplied other options and runs them - in the order they would also appear in the default run.
+
+`-e, --each-cipher` checks each of the (currently configured) 370 ciphers via openssl + sockets remotely on the server and reports back the result in wide mode. If you want to display each cipher tested you need to add `--show-each`. Per default it lists the following parameters: `hexcode`, `OpenSSL cipher suite name`, `key exchange`, `encryption bits`, `IANA/RFC cipher suite name`. Please note the `--mapping` parameter changes what cipher suite names you will see here and at which position. Also please note that the __bit__ length for the encryption is shown and not the __security__ length, albeit it'll be sorted by the latter. For 3DES due to the Meet-in-the-Middle problem the bit size of 168 bits is equivalent to the security size of 112 bits.
+
+`-E, --cipher-per-proto` is similar to `-e, --each-cipher`. It checks each of the possible ciphers, here: per protocol. If you want to display each cipher tested you need to add `--show-each`. The output is sorted by security strength, it lists the encryption bits though.
+
+`-s, --std, --standard` tests certain lists of cipher suites by strength. Those lists are (`openssl ciphers $LIST`, $LIST from below:)
+
+* `NULL encryption ciphers`: 'NULL:eNULL'
+* `Anonymous NULL ciphers`: 'aNULL:ADH'
+* `Export ciphers` (w/o the preceding ones): 'EXPORT:!ADH:!NULL'
+* `LOW` (64 Bit + DES ciphers, without EXPORT ciphers): 'LOW:DES:RC2:RC4:!ADH:!EXP:!NULL:!eNULL'
+* `3DES + IDEA Ciphers`: '3DES:IDEA:!aNULL:!ADH'
+* `Average grade Ciphers`: 'HIGH:MEDIUM:AES:CAMELLIA:ARIA:!IDEA:!CHACHA20:!3DES:!RC2:!RC4:!AESCCM8:!AESCCM:!AESGCM:!ARIAGCM:!aNULL'
+* `Strong grade Ciphers` (AEAD): 'AESGCM:CHACHA20:CamelliaGCM:AESCCM8:AESCCM'
+
+`-f, --pfs, --fs,--nsa ` Checks robust (perfect) forward secrecy key exchange. "Robust" means that ciphers having intrinsic severe weaknesses like Null Authentication or Encryption, 3DES and RC4 won't be considered here. There shouldn't be the wrong impression that a secure key exchange has been taking place and everything is fine when in reality the encryption sucks. Also this section lists the available elliptical curves and Diffie Hellman groups, as well as FFDHE groups (TLS 1.2 and TLS 1.3).
+
+`-p, --protocols` checks TLS/SSL protocols SSLv2, SSLv3, TLS 1.0 through TLS 1.3 and for HTTP: SPDY (NPN) and ALPN, a.k.a. HTTP/2. For TLS 1.3 several drafts (from 18 on) and final are supported and being tested for.
+
+`-P, --preference` displays the servers preferences: cipher order, with used openssl client: negotiated protocol and cipher. If there's a cipher order enforced by the server it displays it for each protocol (openssl+sockets). If there's not, it displays instead which ciphers from the server were picked with each protocol.
+
+`-S, --server_defaults` displays information from the server hello(s):
+
+* Available TLS extensions,
+* TLS ticket + session ID information/capabilities,
+* session resumption capabilities,
+* Time skew relative to localhost (most server implementations return random values).
+* Several certificate information
+ - signature algorithm,
+ - key size,
+ - key usage and extended key usage,
+ - fingerprints and serial
+ - Common Name (CN), Subject Alternative Name (SAN), Issuer,
+ - Trust via hostname + chain of trust against supplied certificates
+ - EV certificate detection
+ - experimental "eTLS" detection
+ - validity: start + end time, how many days to go (warning for certificate lifetime >=5 years)
+ - revocation info (CRL, OCSP, OCSP stapling + must staple). When `--phone-out` supplied it checks against the certificate issuer whether the host certificate has been revoked (plain OCSP, CRL).
+ - displaying DNS Certification Authority Authorization resource record
+ - Certificate Transparency info (if provided by server).
+
+For the trust chain check 5 certificate stores are provided. If the test against one of the trust stores failed, the one is being identified and the reason for the failure is displayed - in addition the ones which succeeded are displayed too.
+You can configure your own CA via ADDITIONAL_CA_FILES, see section `FILES` below. If the server provides no matching record in Subject Alternative Name (SAN) but in Common Name (CN), it will be indicated as this is deprecated.
+Also for multiple server certificates are being checked for as well as for the certificate reply to a non-SNI (Server Name Indication) client hello to the IP address. Regarding the TLS clock skew: it displays the time difference to the client. Only a few TLS stacks nowadays still support this and return the local clock `gmt_unix_time`, e.g. IIS, openssl < 1.0.1f. In addition to the HTTP date you could e.g. derive that there are different hosts where your TLS and your HTTP request ended -- if the time deltas differ significantly.
+
+`-x <pattern>, --single-cipher <pattern>` tests matched `pattern` of ciphers against a server. Patterns are similar to `-V pattern , --local pattern`, see above about matching.
+
+`-h, --header, --headers` if the service is HTTP (either by detection or by enforcing via `--assume-http`. It tests several HTTP headers like
+
+* HTTP Strict Transport Security (HSTS)
+* HTTP Public Key Pinning (HPKP)
+* Server banner
+* HTTP date+time
+* Server banner like Linux or other Unix vendor headers
+* Application banner (PHP, RoR, OWA, SharePoint, Wordpress, etc)
+* Reverse proxy headers
+* Web server modules
+* IPv4 address in header
+* Cookie (including Secure/HTTPOnly flags)
+* Decodes BIG IP F5 non-encrypted cookies
+* Security headers (X-Frame-Options, X-XSS-Protection, Expect-CT,... , CSP headers). Nonsense is not yet detected here.
+
+`-c, --client-simulation` This simulates a handshake with a number of standard clients so that you can figure out which client cannot or can connect to your site. For the latter case the protocol, cipher and curve is displayed, also if there's Forward Secrecy. testssl.sh uses a handselected set of clients which are retrieved by the SSLlabs API. The output is aligned in columns when combined with the `--wide` option. If you want the full nine yards of clients displayed use the environment variable ALL_CLIENTS.
+
+`-g, --grease` checks several server implementation bugs like tolerance to size limitations and GREASE, see https://www.ietf.org/archive/id/draft-ietf-tls-grease-01.txt . This checks doesn't run per default.
+
+
+
+### VULNERABILITIES
+
+`-U, --vulnerable, --vulnerabilities` Just tests all (of the following) vulnerabilities. The environment variable `VULN_THRESHLD` determines after which value a separate headline for each vulnerability is being displayed. Default is `1` which means if you check for two vulnerabilities, only the general headline for vulnerabilities section is displayed -- in addition to the vulnerability and the result. Otherwise each vulnerability or vulnerability section gets its own headline in addition to the output of the name of the vulnerabilty and test result. A vulnerability section is comprised of more than one check, e.g. the renegotiation vulnerability check has two checks, so has Logjam.
+
+`-H, --heartbleed` Checks for Heartbleed, a memory leakage in openssl. Unless the server side doesn't support the heartbeat extension it is likely that this check runs into a timeout. The seconds to wait for a reply can be adjusted with `HEARTBLEED_MAX_WAITSOCK`. 8 is the default.
+
+`-I, --ccs, --ccs-injection` Checks for CCS Injection which is an openssl vulnerability. Sometimes also here the check needs to wait for a reply. The predefined timeout of 5 seconds can be changed with the environment variable `CCS_MAX_WAITSOCK`.
+
+`-T, --ticketbleed` Checks for Ticketbleed memory leakage in BigIP loadbalancers.
+
+`-BB, --robot` Checks for vulnerability to ROBOT / (*Return Of Bleichenbacher's Oracle Threat*) attack.
+
+`-R, --renegotiation` Tests renegotiation vulnerabilities. Currently there's a check for *Secure Renegotiation* and for *Secure Client-Initiated Renegotiation*. Please be aware that vulnerable servers to the latter can likely be DoSed very easily (HTTP). A check for *Insecure Client-Initiated Renegotiation* is not yet implemented.
+
+`-C, --compression, --crime` Checks for CRIME (*Compression Ratio Info-leak Made Easy*) vulnerability in TLS. CRIME in SPDY is not yet being checked for.
+
+`-B, --breach` Checks for BREACH (*Browser Reconnaissance and Exfiltration via Adaptive Compression of Hypertext*) vulnerability. As for this vulnerability HTTP level compression is a prerequisite it'll be not tested if HTTP cannot be detected or the detection is not enforced via ``--assume-http`. Please note that only the URL supplied (normally "/" ) is being tested.
+
+`-O, --poodle` Tests for SSL POODLE (*Padding Oracle On Downgraded Legacy Encryption*) vulnerability. It basically checks for the existence of CBC ciphers in SSLv3.
+
+`-Z, --tls-fallback` Checks TLS_FALLBACK_SCSV mitigation. TLS_FALLBACK_SCSV is basically a ciphersuite appended to the Client Hello trying to prevent protocol downgrade attacks by a Man in the Middle.
+
+`-W, --sweet32` Checks for vulnerability to SWEET32 by testing 64 bit block ciphers (3DES, RC2 and IDEA).
+
+`-F, --freak` Checks for FREAK vulnerability (*Factoring RSA Export Keys*) by testing for EXPORT RSA ciphers
+
+`-D, --drown` Checks for DROWN vulnerability (*Decrypting RSA with Obsolete and Weakened eNcryption*) by checking whether the SSL 2 protocol is available at the target. Please note that if you use the same RSA certificate elsewhere you might be vulnerable too. testssl.sh doesn't check for this but provides a helpful link @ censys.io which provides this service.
+
+`-J, --logjam` Checks for LOGJAM vulnerability by checking for DH EXPORT ciphers. It also checks for "common primes" which are preconfigured DH keys. DH keys =< 1024 Bit will be penalized. Also FFDHE groups (TLS 1.2) will be displayed here.
+
+`-A, --beast` Checks BEAST vulnerabilities in SSL 3 and TLS 1.0 by testing the usage of CBC ciphers.
+
+`-L, --lucky13` Checks for LUCKY13 vulnerability. It checks for the presence of CBC ciphers in TLS versions 1.0 - 1.2.
+
+`-4, --rc4, --appelbaum` Checks which RC4 stream ciphers are being offered.
+
+
+### OUTPUT OPTIONS
+
+`-q, --quiet` Normally testssl.sh displays a banner on stdout with several version information, usage rights and a warning. This option suppresses it. Please note that by choosing this option you acknowledge usage terms and the warning normally appearing in the banner.
+
+`--wide` Except the "each cipher output" all tests displays the single cipher name (scheme see below). This option enables testssl.sh to display also for the following sections the same output as for testing each ciphers: BEAST, PFS, RC4. The client simulation has also a wide mode. The difference here is restricted to a column aligned output and a proper headline. The environment variable `WIDE` can be used instead.
+
+`--mapping <openssl|iana|no-openssl|no-iana>`
+
+* `openssl`: use the OpenSSL cipher suite name as the primary name cipher suite name form (default),
+* `iana`: use the IANA cipher suite name as the primary name cipher suite name form.
+* `no-openssl`: don't display the OpenSSL cipher suite name, display IANA names only.
+* `no-iana`: don't display the IANA cipher suite name, display OpenSSL names only.
+
+Please note that in testssl.sh 3,0 you can still use `rfc` instead of `iana` and `no-rfc` instead of `no-iana` but it'll disappear after 3.0.
+
+`--show-each` This is an option for all wide modes only: it displays all ciphers tested -- not only succeeded ones. `SHOW_EACH_C` is your friend if you prefer to set this via the shell environment.
+
+
+`--color <0|1|2|3>` determines the use of colors on the screen and in the log file: `2` is the default and makes use of ANSI and termcap escape codes on your terminal. `1` just uses non-colored mark-up like bold, italics, underline, reverse. `0` means no mark-up at all = no escape codes. This is also what you want when you want a log file without any escape codes. `3` will color ciphers and EC according to an internal (not yet perfect) rating. Setting the environment variable `COLOR` to the value achieves the same result. Please not that OpenBSD and early FreeBSD do not support italics.
+
+
+`--colorblind` Swaps green and blue colors in the output, so that this percentage of folks (up to 8% of males, see https://en.wikipedia.org/wiki/Color_blindness) can distinguish those findings better. `COLORBLIND` is the according variable if you want to set this in the environment.
+
+`--debug <0-6>` This gives you additional output on the screen (2-6), only useful for debugging. `DEBUG` is the according environment variable which you can use. There are six levels (0 is the default, thus it has no effect):
+
+1. screen output normal but leaves useful debug output in __/tmp/testssl.XXXXXX/__ . The info about the exact directory is included in the screen output in the end of the run.
+2. lists more what's going on, status (high level) and connection errors, a few general debug output
+3. even slightly more info: hexdumps + other info
+4. display bytes sent via sockets
+5. display bytes received via sockets
+6. whole 9 yards
+
+
+
+### FILE OUTPUT OPTIONS
+
+`--log, --logging` Logs stdout also to `${NODE}-p${port}${YYYYMMDD-HHMM}.log` in current working directory of the shell. Depending on the color output option (see above) the output file will contain color and other markup escape codes, unless you specify `--color 0` too. `cat` and -- if properly configured `less` -- will show the output properly formatted on your terminal. The output shows a banner with the almost the same information as on the screen. In addition it shows the command line of the testssl.sh instance. Please note that the resulting log file is formatted according to the width of your screen while running testssl.sh. You can override the width with the environment variable TERM_WIDTH.
+
+`--logfile <logfile>` or `-oL <logfile>` Instead of the previous option you may want to use this one if you want to log into a directory or if you rather want to specify the log file name yourself. If `logfile` is a directory the output will put into `logfile/${NODE}-p${port}${YYYYMMDD-HHMM}.log`. If `logfile` is a file it will use that file name, an absolute path is also permitted here. LOGFILE is the variable you need to set if you prefer to work environment variables instead. Please note that the resulting log file is formatted according to the width of your screen while running testssl.sh. You can override the width with the environment variable TERM_WIDTH.
+
+`--json` Logs additionally to JSON file `${NODE}-p${port}${YYYYMMDD-HHMM}.json` in the current working directory of the shell. The resulting JSON file is opposed to `--json-pretty` flat -- which means each section is self contained and has an identifier for each single check, the hostname/IP address, the port, severity and the finding. For vulnerabilities it may contain a CVE and CWE entry too. The output doesn't contain a banner or a footer.
+
+`--jsonfile <jsonfile>` or `-oj <jsonfile>` Instead of the previous option you may want to use this one if you want to log the JSON out put into a directory or if you rather want to specify the log file name yourself. If `jsonfile` is a directory the output will put into `logfile/${NODE}-p${port}${YYYYMMDD-HHMM}.json. If `jsonfile` is a file it will use that file name, an absolute path is also permitted here.
+
+`--json-pretty` Logs additionally to JSON file `${NODE}-p${port}${YYYYMMDD-HHMM}.json in the current working directory of the shell. The resulting JSON file is opposed to `--json` non-flat -- which means it is structured. The structure contains a header similar to the banner on the screen, including the command line, scan host, openssl binary used, testssl version and epoch of the start time. Then for every test section of testssl.sh it contains a separate JSON object/section. Each finding has a key/value pair identifier with the identifier for each single check, the severity and the finding. For vulnerabilities it may contain a CVE and CWE entry too. The footer lists the scan time in seconds.
+
+`--jsonfile-pretty <jsonfile>` or `-oJ <jsonfile>` Similar to the aforementioned `--jsonfile` or `--logfile` it logs the output in pretty JSON format (see `--json-pretty`) into a file or a directory. For further explanation see `--jsonfile` or `--logfile`.
+
+`--csv` Logs additionally to a CSV file `${NODE}-p${port}${YYYYMMDD-HHMM}.csv` in the current working directory of the shell. The output contains a header with the keys, the values are the same as in the flat JSON format (identifier for each single check, the hostname/IP address, the port, severity, the finding and for vulnerabilities a CVE and CWE number).
+
+`--csvfile <csvfile>` or `-oC <csvfile>` Similar to the aforementioned `--jsonfile` or `--logfile` it logs the output in CSV format (see `--cvs`) additionally into a file or a directory. For further explanation see `--jsonfile` or `--logfile`.
+
+`--html` Logs additionally to an HTML file `${NODE}-p${port}${YYYYMMDD-HHMM}.html` in the current working directory of the shell. It contains a 1:1 output of the console. In former versions there was a non-native option to use "aha" (Ansi HTML Adapter: github.com/theZiz/aha) like `testssl.sh [options] <URI> | aha >output.html`. This is not necessary anymore.
+
+`--htmlfile <htmlfile>` or `-oH <htmlfile>` Similar to the aforementioned `--jsonfile` or `--logfile` it logs the output in HTML format (see `--html`) additionally into a file or a directory. For further explanation see `--jsonfile` or `--logfile`.
+
+`-oA <filename>` / `--outFile <filename>` Similar to nmap it does a file output to all available file formats: LOG, JSON pretty, CSV, HTML. If the filename supplied is equal `auto` the filename is automatically generated using '${NODE}-p${port}${YYYYMMDD-HHMM}.${EXT}' with the according extension. If a directory is provided all output files will put into `<filename>/${NODE}-p${port}${YYYYMMDD-HHMM}.{log,json,csv,html}`.
+
+`-oa <filename>` / `--outfile <filename>` Does the same as the previous option but uses flat JSON instead.
+
+`--hints` This option is not in use yet. This option is meant to give hints how to fix a finding or at least a help to improve something. GIVE_HINTS is the environment variable for this.
+
+`--severity <severity>` For CSV and both JSON outputs this will only add findings to the output file if a severity is equal or higher than the `severity` value specified. Allowed are `<LOW|MEDIUM|HIGH|CRITICAL>`. WARN is another level which translates to a client-side scanning error or problem. Thus you will always see them in a file if they occur.
+
+`--append` Normally, if an output file already exists and it has a file size greater zero, testssl.sh will prompt you to manually remove the file exit with an error. `--append` however will append to this file, without a header. The environment variable APPEND does the same. Be careful using this switch/variable. A complementary option which overwrites an existing file doesn't exist per design.
+
+`--outprefix <fname_prefix>` Prepend output filename prefix <fname_prefix> before '${NODE}-'. You can use as well the environment variable FNAME_PREFIX. Using this any output files will be named `<fname_prefix>-${NODE}-p${port}${YYYYMMDD-HHMM}.<format>` when no file name of the respective output option was specified. If you do not like the separator '-' you can as well supply a `<fname_prefix>` ending in '.', '_' or ','. In this case or if you already supplied '-' no additional '-' will be appended to `<fname_prefix>`.
+
+A few file output options can also be preset via environment variables.
+
+### COLOR RATINGS
+
+Testssl.sh makes use of (the eight) standard terminal colors. The color scheme is as follows:
+
+* light red: a critical finding
+* red: a high finding
+* brown: a medium finding
+* yellow: a low finding
+* green (blue if COLORBLIND is set): something which is either in general a good thing or a negative result of a check which otherwise results in a high finding
+* light green (light blue if COLORBLIND is set) : something which is either in general a very good thing or a negative result of a check which otherwise results in a critical finding
+* no color at places where also a finding can be expected: a finding on an info level
+* cyan: currently only used for `--show-each` or an additional hint
+* magenta: signals a warning condition, e.g. either a local lack of capabilities on the client side or another problem
+* light magenta: a fatal error which either requires strict consent from the user to continue or a condition which leaves no other choice for testssl.sh to quit
+
+What is labeled as "light" above appears as such on the screen but is technically speaking "bold". Besides `--color=3` will color ciphers according to an internal and rough rating.
+
+Markup (without any color) is used in the following manner:
+
+* bold: for the name of the test
+* underline + bold: for the headline of each test section
+* underline: for a sub-headline
+* italics: for strings just reflecting a value read from the server
+
+
+### TUNING via ENV variables and more options
+
+Except the environment variables mentioned above which can replace command line options here a some which cannot be set otherwise. Variables used for tuning are preset with reasonable values. *There should be no reason to change them* unless you use testssl.sh under special conditions.
+
+* TERM_WIDTH is a variable which overrides the auto-determined terminal width size. Setting this variable normally only makes sense if you log the output to a file using the `--log`, `--logfile` or `-oL` option.
+* DEBUG_ALLINONE / SETX: when setting one of those to true testssl.sh falls back to the standard bash behavior, i.e. calling ``bash -x testssl.sh`` it displays the bash debugging output not in an external file `/tmp/testssl-<XX>.log`
+* DEBUGTIME: Profiling option. When using bash's debug mode and when this is set to true, it generates a separate text file with epoch times in `/tmp/testssl-<XX>.time`. They need to be concatenated by `paste /tmp/testssl-<XX>.{time,log}`
+[comment]: # * FAST_SOCKET
+[comment]: # * SHOW_SIGALGO
+[comment]: # * FAST
+* EXPERIMENTAL=true is an option which is sometimes used in the development process to make testing easier. In released versions this has no effect.
+* ALL_CLIENTS=true runs a client simulation with *all* (currently 126) clients when testing HTTP.
+* UNBRACKTD_IPV6: needs to be set to true for some old versions of OpenSSL (like from Gentoo) which don't support [bracketed] IPv6 addresses
+* NO_ENGINE: if you have problems with garbled output containing the word 'engine' you might want to set this to true. It forces testssl.sh not try to configure openssl's engine or a non existing one from libressl
+* HEADER_MAXSLEEP: To wait how long before killing the process to retrieve a service banner / HTTP header
+* MAX_WAITSOCK: It instructs testssl.sh to wait until the specified time before declaring a socket connection dead. Don't change this unless you're absolutely sure what you're doing. Value is in seconds.
+* CCS_MAX_WAITSOCK Is the similar to above but applies only to the CCS handshakes, for both of the two the two CCS payload. Don't change this unless you're absolutely sure what you're doing. Value is in seconds.
+* HEARTBLEED_MAX_WAITSOCK Is the similar to MAX_WAITSOCK but applies only to the ServerHello after sending the Heartbleed payload. Don't change this unless you're absolutely sure what you're doing. Value is in seconds.
+* MEASURE_TIME_FILE For seldom cases when you don't want the scan time to be included in the output you can set this to false.
+* STARTTLS_SLEEP is per default set to 10 (seconds). That's the value testssl.sh waits for a string in the STARTTLS handshake before giving up.
+* MAX_PARALLEL is the maximum number of tests to run in parallel in parallel mass testing mode. The default value of 20 may be made larger on systems with faster processors.
+* MAX_WAIT_TEST is the maximum time (in seconds) to wait for a single test in parallel mass testing mode to complete. The default is 1200.
+[comment]: # USLEEP_SND
+[comment]: # USLEEP_REC
+* HSTS_MIN is preset to 179 (days). If you want warnings sooner or later for HTTP Strict Transport Security you can change this.
+* HPKP_MIN is preset to 30 (days). If you want warnings sooner or later for HTTP Public Key Pinning you can change this
+* DAYS2WARN1 is the first threshold when you'll be warning of a certificate expiration of a host, preset to 60 (days). For Let's Encrypt this value will be divided internally by 2.
+* DAYS2WARN2 is the second threshold when you'll be warning of a certificate expiration of a host, preset to 30 (days). For Let's Encrypt this value will be divided internally by 2.
+* TESTSSL_INSTALL_DIR is the derived installation directory of testssl.sh. Relatively to that the `bin` and mandatory `etc` directory will be looked for.
+* CA_BUNDLES_PATH: If you have an own set of CA bundles or you want to point testssl.sh to a specific location of a CA bundle, you can use this variable to set the directory which testssl.sh will use. Please note that it overrides completely the builtin path of testssl.sh which means that you will only test against the bundles you point to. Also you might want to use `~/utils/create_ca_hashes.sh` to create the hashes for HPKP.
+* MAX_SOCKET_FAIL: A number which tells testssl.sh how often a TCP socket connection may fail before the program gives up and terminates. The default is 2. You can increase it to a higher value if you frequently see a message like *Fatal error: repeated openssl s_client connect problem, doesn't make sense to continue*.
+* MAX_OSSL_FAIL: A number which tells testssl.sh how often an OpenSSL s_client connect may fail before the program gives up and terminates. The default is 2. You can increase it to a higher value if you frequently see a message like *Fatal error: repeated TCP connect problems, giving up*.
+* MAX_HEADER_FAIL: A number which tells testssl.sh how often a HTTP GET request over OpenSSL may return an empty file before the program gives up and terminates. The default is 3. Also here you can incerase the threshold when you spot messages like *Fatal error: repeated HTTP header connect problems, doesn't make sense to continue*.
+
+
+
+## EXAMPLES
+
+ testssl.sh testssl.sh
+
+does a default run on https://testssl.sh (protocols, standard cipher lists, PFS, server preferences, server defaults, vulnerabilities, testing all known 370 ciphers, client simulation.
+
+ testssl.sh testssl.net:443
+
+does the same default run as above with the subtle difference that testssl.net has two IPv4 addresses. Both are tested.
+
+ testssl.sh --ip=one --wide https://testssl.net:443
+
+does the same checks as above, with the difference that one IP address is being picked randomly. Displayed is everything where possible in wide format.
+
+ testssl.sh -6 https://testssl.net
+
+As opposed to the first example it also tests the IPv6 part -- supposed you have an IPv6 network and your openssl supports IPv6 (see above).
+
+ testssl.sh -t smtp smtp.gmail.com:25
+
+Checks are done via a STARTTLS handshake on the plain text port 25. It checks every IP on smtp.gmail.com.
+
+ testssl.sh --starttls=imap imap.gmx.net:143
+
+does the same on the plain text IMAP port.
+
+Please note that for plain TLS-encrypted ports you must not specify the protocol option when no STARTTLS handshake is offered: `testssl.sh smtp.gmail.com:465` just checks the encryption on the SMTPS port, `testssl.sh imap.gmx.net:993` on the IMAPS port. Also MongoDB which provides TLS support without STARTTLS can be tested directly.
+
+
+## RFCs and other standards
+
+* RFC 2246: The TLS Protocol Version 1.0
+* RFC 2818: HTTP Over TLS
+* RFC 2595: Using TLS with IMAP, POP3 and ACAP
+* RFC 3207: SMTP Service Extension for Secure SMTP over Transport Layer Security
+* RFC 3501: INTERNET MESSAGE ACCESS PROTOCOL - VERSION 4rev1
+* RFC 4346: The Transport Layer Security (TLS) Protocol Version 1.1
+* RFC 4366: Transport Layer Security (TLS) Extensions
+* RFC 4492: Elliptic Curve Cryptography (ECC) Cipher Suites for Transport Layer Security (TLS)
+* RFC 5077: Transport Layer Security (TLS) Session Resumption
+* RFC 5246: The Transport Layer Security (TLS) Protocol Version 1.2
+* RFC 5280: Internet X.509 Public Key Infrastructure Certificate and Certificate Revocation List (CRL) Profile
+* RFC 5321: Simple Mail Transfer Protocol
+* RFC 5746: Transport Layer Security (TLS) Renegotiation Indication Extension
+* RFC 6066: Transport Layer Security (TLS) Extensions: Extension Definitions
+* RFC 6101: The Secure Sockets Layer (SSL) Protocol Version 3.0
+* RFC 6120: Extensible Messaging and Presence Protocol (XMPP): Core
+* RFC 6125: Domain-Based Application Service Identity [..]
+* RFC 6797: HTTP Strict Transport Security (HSTS)
+* RFC 6961: The Transport Layer Security (TLS) Multiple Certificate Status Request Extension
+* RFC 7469: Public Key Pinning Extension for HTTP (HPKP)
+* RFC 7507: TLS Fallback Signaling Cipher Suite Value (SCSV) for Preventing Protocol Downgrade Attacks
+* RFC 7627: Transport Layer Security (TLS) Session Hash and Extended Master Secret Extension
+* RFC 7633: X.509v3 Transport Layer Security (TLS) Feature Extension
+* RFC 7465: Prohibiting RC4 Cipher Suites
+* RFC 7685: A Transport Layer Security (TLS) ClientHello Padding Extension
+* RFC 7905: ChaCha20-Poly1305 Cipher Suites for Transport Layer Security (TLS)
+* RFC 7919: Negotiated Finite Field Diffie-Hellman Ephemeral Parameters for Transport Layer Security
+* RFC 8143: Using Transport Layer Security (TLS) with Network News Transfer Protocol (NNTP)
+* RFC 8446: The Transport Layer Security (TLS) Protocol Version 1.3
+* W3C CSP: Content Security Policy Level 1-3
+* TLSWG Draft: The Transport Layer Security (TLS) Protocol Version 1.3
+
+
+## EXIT STATUS
+
+* 0 testssl.sh finished successfully without errors and without ambiguous results
+* 1 testssl.sh has encountered exactly one ambiguous situation or an error during run
+* 1+n same as previous. The errors or ambiguous results are added, also per IP.
+* 50-200 reserved for returning a vulnerability scoring for system monitoring or a CI tools
+* 242 (ERR_CHILD) Child received a signal from master
+* 244 (ERR_RESOURCE) Resources testssl.sh needs couldn't be read
+* 245 (ERR_CLUELESS) Weird state, either though user options or testssl.sh
+* 246 (ERR_CONNECT) Connectivity problem
+* 247 (ERR_DNSLOOKUP) Problem with resolving IP addresses or names
+* 248 (ERR_OTHERCLIENT) Other client problem
+* 249 (ERR_DNSBIN) Problem with DNS lookup binaries
+* 250 (ERR_OSSLBIN) Problem with OpenSSL binary
+* 251 (ERR_NOSUPPORT) Feature requested is not supported
+* 252 (ERR_FNAMEPARSE) Input file couldn't be parsed
+* 253 (ERR_FCREATE) Output file couldn't be created
+* 254 (ERR_CMDLINE) Cmd line couldn't be parsed
+* 255 (ERR_BASH) Bash version incorrect
+
+## FILES
+
+**etc/\*pem** are the certificate stores from Apple, Linux, Mozilla Firefox, Windows and Java.
+
+**etc/client-simulation.txt** contains client simulation data.
+
+
+**etc/cipher-mapping.txt** provides a mandatory file with mapping from OpenSSL cipher suites names to the ones from IANA / used in the RFCs.
+
+**etc/tls_data.txt** provides a mandatory file for ciphers (bash sockets) and key material.
+
+
+## AUTHORS
+
+Developed by Dirk Wetter, David Cooper and many others, see CREDITS.md .
+
+
+## COPYRIGHT
+
+Copyright © 2012 Dirk Wetter. License GPLv2: Free Software Foundation, Inc.
+ This is free software: you are free to change and redistribute it under the terms of the license, see LICENSE.
+
+Attribution is important for the future of this project - also in the
+internet. Thus if you're offering a scanner based on testssl.sh as a public
+and/or paid service in the internet you are strongly encouraged to mention to
+your audience that you're using this program and where to get this program
+from. That helps us to get bugfixes, other feedback and more contributions.
+
+Usage WITHOUT ANY WARRANTY. USE at your OWN RISK!
+
+
+## LIMITATION
+
+All native Windows platforms emulating Linux are known to be slow.
+
+
+## BUGS
+
+Probably. Current known ones and interface for filing new ones: https://testssl.sh/bugs/ .
+
+
+## SEE ALSO
+
+`ciphers`(1), `openssl`(1), `s_client`(1), `x509`(1), `verify`(1), `ocsp`(1), `crl`(1), `bash`(1) and the websites https://testssl.sh/ and https://github.com/drwetter/testssl.sh/ .
+
diff --git a/etc/Apple.pem b/etc/Apple.pem
new file mode 100644
index 0000000..c343f41
--- /dev/null
+++ b/etc/Apple.pem
@@ -0,0 +1,4571 @@
+-----BEGIN CERTIFICATE-----
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diff --git a/etc/Java.pem b/etc/Java.pem
new file mode 100644
index 0000000..f36df55
--- /dev/null
+++ b/etc/Java.pem
@@ -0,0 +1,2357 @@
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+-----BEGIN CERTIFICATE-----
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