112 lines
4.0 KiB
Plaintext
112 lines
4.0 KiB
Plaintext
#REGTEST_TYPE=devel
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# This reg-test uses the "set ssl cert" command to update a multi-certificate
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# bundle over the CLI.
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# It requires socat to upload the certificate
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#
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# This regtests loads a multi-certificates bundle "cert1-example.com.pem"
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# composed of a .rsa and a .ecdsa
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#
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# After verifying that the RSA and ECDSA algorithms were avalailble with the
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# right certificate, the test changes the certificates and try new requests.
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#
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# If this test does not work anymore:
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# - Check that you have socat
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# - Check that you have at least OpenSSL 1.1.1
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varnishtest "Test the 'set ssl cert' feature of the CLI with bundles"
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# could work with haproxy 2.3 but the -cc is not available
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feature cmd "$HAPROXY_PROGRAM -cc 'version_atleast(2.5-dev9)'"
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feature cmd "$HAPROXY_PROGRAM -cc 'feature(OPENSSL) && ssllib_name_startswith(OpenSSL) && openssl_version_atleast(1.1.1) || feature(OPENSSL_AWSLC)'"
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feature cmd "command -v socat"
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feature ignore_unknown_macro
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server s1 -repeat 9 {
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rxreq
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txresp
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} -start
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haproxy h1 -conf {
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global
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tune.ssl.default-dh-param 2048
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tune.ssl.capture-buffer-size 1
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stats socket "${tmpdir}/h1/stats" level admin
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crt-base ${testdir}
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defaults
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mode http
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option httplog
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log stderr local0 debug err
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option logasap
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timeout connect "${HAPROXY_TEST_TIMEOUT-5s}"
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timeout client "${HAPROXY_TEST_TIMEOUT-5s}"
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timeout server "${HAPROXY_TEST_TIMEOUT-5s}"
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listen clear-lst
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bind "fd@${clearlst}"
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balance roundrobin
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http-response set-header X-SSL-Server-SHA1 %[ssl_s_sha1,hex]
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retries 0 # 2nd SSL connection must fail so skip the retry
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server s1 "${tmpdir}/ssl.sock" ssl verify none sni str(example.com) force-tlsv12 ciphers ECDHE-RSA-AES128-GCM-SHA256
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server s2 "${tmpdir}/ssl.sock" ssl verify none sni str(example.com) force-tlsv12 ciphers ECDHE-ECDSA-AES256-GCM-SHA384
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server s3 "${tmpdir}/ssl.sock" ssl verify none sni str(example.com) force-tlsv12 ciphers ECDHE-RSA-AES128-GCM-SHA256
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server s4 "${tmpdir}/ssl.sock" ssl verify none sni str(example.com) force-tlsv12 ciphers ECDHE-ECDSA-AES256-GCM-SHA384
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listen ssl-lst
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bind "${tmpdir}/ssl.sock" ssl crt ${testdir}/cert1-example.com.pem
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server s1 ${s1_addr}:${s1_port}
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} -start
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haproxy h1 -cli {
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send "show ssl cert ${testdir}/cert1-example.com.pem.rsa"
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expect ~ ".*SHA1 FingerPrint: 94F720DACA71B8B1A0AC9BD48C65BA688FF047DE"
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send "show ssl cert ${testdir}/cert1-example.com.pem.ecdsa"
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expect ~ ".*SHA1 FingerPrint: C1BA055D452F92EB02D449F0498C289F50698300"
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}
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client c1 -connect ${h1_clearlst_sock} {
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# RSA
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txreq
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rxresp
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expect resp.http.X-SSL-Server-SHA1 == "94F720DACA71B8B1A0AC9BD48C65BA688FF047DE"
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expect resp.status == 200
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# ECDSA
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txreq
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rxresp
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expect resp.http.X-SSL-Server-SHA1 == "C1BA055D452F92EB02D449F0498C289F50698300"
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expect resp.status == 200
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} -run
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shell {
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printf "set ssl cert ${testdir}/cert1-example.com.pem.rsa <<\n$(cat ${testdir}/cert2-example.com.pem.rsa)\n\n" | socat "${tmpdir}/h1/stats" -
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echo "commit ssl cert ${testdir}/cert1-example.com.pem.rsa" | socat "${tmpdir}/h1/stats" -
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printf "set ssl cert ${testdir}/cert1-example.com.pem.ecdsa <<\n$(cat ${testdir}/cert2-example.com.pem.ecdsa)\n\n" | socat "${tmpdir}/h1/stats" -
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echo "commit ssl cert ${testdir}/cert1-example.com.pem.ecdsa" | socat "${tmpdir}/h1/stats" -
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}
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haproxy h1 -cli {
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send "show ssl cert ${testdir}/cert1-example.com.pem.rsa"
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expect ~ ".*SHA1 FingerPrint: ADC863817FC40C2A9CA913CE45C9A92232558F90"
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send "show ssl cert ${testdir}/cert1-example.com.pem.ecdsa"
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expect ~ ".*SHA1 FingerPrint: F49FFA446D072262445C197B85D2F400B3F58808"
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}
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client c1 -connect ${h1_clearlst_sock} {
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# RSA
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txreq
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rxresp
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expect resp.http.X-SSL-Server-SHA1 == "ADC863817FC40C2A9CA913CE45C9A92232558F90"
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expect resp.status == 200
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# ECDSA
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txreq
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rxresp
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expect resp.http.X-SSL-Server-SHA1 == "F49FFA446D072262445C197B85D2F400B3F58808"
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expect resp.status == 200
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} -run
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