fixes, TLS1.2
This commit is contained in:
parent
ac56eb5b82
commit
08fd52eedb
3 changed files with 105 additions and 41 deletions
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@ -242,6 +242,12 @@ Start the record proxy:
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Just browse. Any traffic to and from the selected names will be recorded. Terminate netplayer with CTRL+C when finished.
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#### Incomplete records
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The last HTTP payload of a record may be incomplete. If that happens, the run command will hang and display the faulty record number after a timeout.
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Re-run with `-d --record <record-number>` and note the missing packet number.
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Run `netreplay <record-file> remove <new-record-file> <record-number> <packet-number>` to remove the packet.
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### Measure
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Measure resource cost on a different machine.
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54
exp.py
54
exp.py
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@ -15,7 +15,7 @@ CONFIGS = {
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"server-local",
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],
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"records": [
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{ "filename": "wikipedia", "repeat": 1 },
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{ "filename": "youtube", "repeat": 1 },
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],
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"repodir": "/home/tuxmain/reps/tlsbench",
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"expdir": "/dev/shm/exp",
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@ -74,7 +74,7 @@ CONFIGS = {
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"server",
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],
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"records": [
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{ "filename": "wikipedia", "repeat": 500 },
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{ "filename": "wikipedia", "repeat": 400 },
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],
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"repodir": "/home/tuxmain/reps/tlsbench",
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"expdir": "/dev/shm/exp",
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@ -184,8 +184,9 @@ CONFIGS = {
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"i5": {
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"experiments": [
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"impl-cipher-ver",
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#"impl-cert-ver",
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#"impl-kex-ver",
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"impl-cert-ver",
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"impl-kex-ver",
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"zrtt",
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],
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"setups": [
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"none",
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@ -301,11 +302,11 @@ CERT_SIGN_ALGS = [
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]
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IMPLS = [
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"aws_lc", # Amazon's Rust crypto widely used in Rust stuff
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#"boring", # Google's fork of OpenSSL used in Chrome and Android
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#"graviola", # New crypto in Rust
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#"openssl", # widely used
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#"ring", # used in most Rust stuff
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#"symcrypt", # Microsoft's crypto
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"boring", # Google's fork of OpenSSL used in Chrome and Android
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"graviola", # New crypto in Rust
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"openssl", # widely used
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"ring", # used in most Rust stuff
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"symcrypt", # Microsoft's crypto
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#"wolfcrypt" # used in embedded (won't build with rpxy for now)
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]
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# Symmetric ciphers
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@ -340,9 +341,9 @@ EXPERIMENTS = {
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"AES_128_GCM_SHA256",
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"AES_256_GCM_SHA384",
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"CHACHA20_POLY1305_SHA256",
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#"ECDHE_ECDSA_WITH_AES_128_GCM_SHA256,ECDHE_RSA_WITH_AES_128_GCM_SHA256",
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#"ECDHE_ECDSA_WITH_AES_256_GCM_SHA384,ECDHE_RSA_WITH_AES_256_GCM_SHA384",
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#"ECDHE_ECDSA_WITH_CHACHA20_POLY1305_SHA256,ECDHE_RSA_WITH_CHACHA20_POLY1305_SHA256",
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"ECDHE_ECDSA_WITH_AES_128_GCM_SHA256,ECDHE_RSA_WITH_AES_128_GCM_SHA256",
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"ECDHE_ECDSA_WITH_AES_256_GCM_SHA384,ECDHE_RSA_WITH_AES_256_GCM_SHA384",
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"ECDHE_ECDSA_WITH_CHACHA20_POLY1305_SHA256,ECDHE_RSA_WITH_CHACHA20_POLY1305_SHA256",
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],
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"kexes": ["X25519"],
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"cert": ["prime256v1"],
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@ -353,7 +354,7 @@ EXPERIMENTS = {
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"impls": IMPLS,
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"ciphers": [
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"AES_128_GCM_SHA256",
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#"ECDHE_ECDSA_WITH_AES_128_GCM_SHA256,ECDHE_RSA_WITH_AES_128_GCM_SHA256",
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"ECDHE_ECDSA_WITH_AES_128_GCM_SHA256,ECDHE_RSA_WITH_AES_128_GCM_SHA256",
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],
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"kexes": ["X25519"],
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"cert": [
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@ -370,7 +371,7 @@ EXPERIMENTS = {
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"impls": IMPLS,
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"ciphers": [
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"AES_128_GCM_SHA256",
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#"ECDHE_ECDSA_WITH_AES_128_GCM_SHA256,ECDHE_RSA_WITH_AES_128_GCM_SHA256",
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"ECDHE_ECDSA_WITH_AES_128_GCM_SHA256,ECDHE_RSA_WITH_AES_128_GCM_SHA256",
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],
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"kexes": [
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"X25519",
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@ -385,17 +386,11 @@ EXPERIMENTS = {
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},
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# Compare 0-RTT with no early data
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"zrtt": {
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"impls": [
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"aws_lc",
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#"ring"
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],
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"impls": IMPLS,
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"ciphers": [
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"AES_128_GCM_SHA256",
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#"AES_256_GCM_SHA384",
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#"CHACHA20_POLY1305_SHA256",
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#"ECDHE_ECDSA_WITH_AES_128_GCM_SHA256,ECDHE_RSA_WITH_AES_128_GCM_SHA256",
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#"ECDHE_ECDSA_WITH_AES_256_GCM_SHA384,ECDHE_RSA_WITH_AES_256_GCM_SHA384",
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#"ECDHE_ECDSA_WITH_CHACHA20_POLY1305_SHA256,ECDHE_RSA_WITH_CHACHA20_POLY1305_SHA256",
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],
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"kexes": ["X25519"],
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"cert": ["prime256v1"],
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@ -415,6 +410,9 @@ EXPERIMENTS = {
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# Some algorithms are not available in all implementations
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def alg_filter(kex, cert, cipher, impl):
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if "MLKEM" in kex and "WITH" in cipher:
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# WITH means TLS1.2
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return False
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if "MLKEM" in kex and impl != "openssl" and impl != "aws_lc" and impl != "graviola":
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return False
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if kex == "SECP256R1MLKEM768" and impl == "openssl":
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@ -425,6 +423,8 @@ def alg_filter(kex, cert, cipher, impl):
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return False
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if kex == "MLKEM768" and impl == "graviola":
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return False
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#if cipher == "ECDHE_ECDSA_WITH_AES_256_GCM_SHA384,ECDHE_RSA_WITH_AES_256_GCM_SHA384" and impl == "openssl":
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# return False
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return True
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DOMAINS = []
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@ -533,6 +533,7 @@ def make_certs(outdir, domains, alg, make_ca):
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make_cert(outdir+root+".crt", outdir+root+".key", outdir+"ca.crt", outdir+"ca.key", root, roots[root])
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# Make a cert for all domains because choosing a certificate as a proxy is a real pain
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# It is used by netreplay when recording. Rpxy will use specific certs.
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make_sk(outdir+"all.key", alg)
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make_cert(outdir+"all.crt", outdir+"all.key", outdir+"ca.crt", outdir+"ca.key", "wikipedia.org", domains)
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@ -688,7 +689,7 @@ def choose_impl(expdir, p, impl):
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expdir += "/"
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os.symlink(os.getcwd()+"/rpxy_rustls_"+impl, expdir+str(p)+"_rpxy", False)
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def run_netreplay(expdir, repodir, record, p2_addr, p2_port, listen_port, tls_mode, only_record=None, ciphers=None, kexes=None, earlydata="0"):
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def run_netreplay(expdir, repodir, record, p2_addr, p2_port, listen_port, tls_mode, only_record=None, ciphers=None, kexes=None, earlydata="0", debug=False):
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if expdir[-1] != "/":
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expdir += "/"
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repodir = repodir.removesuffix("/")
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@ -700,6 +701,8 @@ def run_netreplay(expdir, repodir, record, p2_addr, p2_port, listen_port, tls_mo
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cmd = [repodir+"/netreplay", repodir+"/records/"+record["filename"], "play", p2_addr, str(p2_port), str(listen_port), expdir+"current_certs", tls_mode, "-r", str(record["repeat"]),
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#"--record", "21"
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]
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if debug:
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cmd.append("-d")
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if only_record != None:
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cmd += ["--record", only_record]
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print(" ".join(cmd))
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@ -754,7 +757,7 @@ def get_rapl_energy(ssh, repodir):
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energy += int(item)
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return energy
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def run_exp(config, only_record=None, idle=False, shutdown=False):
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def run_exp(config, only_record=None, idle=False, shutdown=False, debug=False):
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ssh = None
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if "p2_ssh" in config:
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ssh = connect_ssh(config)
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@ -899,6 +902,7 @@ def run_exp(config, only_record=None, idle=False, shutdown=False):
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ciphers=cipher,
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kexes=kex,
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earlydata=earlydata,
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debug=debug,
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)
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# TODO detect when netreplay has finished
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@ -1032,6 +1036,7 @@ Run options:
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--record <id> Only play this record
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--idle Also measure when idle
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--shutdown Shutdown host and target when finished
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--debug Print netreplay's debug
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""".format(
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sig_algs = " ".join(CERT_SIGN_ALGS),
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configs = " ".join([i for i in CONFIGS]),
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@ -1092,7 +1097,8 @@ Run options:
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print("Cannot power off")
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exit(1)
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run_exp(config, only_record=getargv("--record", None), idle="--idle" in sys.argv, shutdown=shutdown)
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debug = "--debug" in sys.argv
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run_exp(config, only_record=getargv("--record", None), idle="--idle" in sys.argv, shutdown=shutdown, debug=debug)
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if shutdown:
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bus_proxy.PowerOff(False)
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86
plots.py
86
plots.py
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@ -48,6 +48,8 @@ COL = {
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"cert": "alg",
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"kex": "kex",
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"ed": "ed",
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"side": "setup",
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"record": "record",
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}
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# Physical units by object
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UNIT = {
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@ -142,7 +144,7 @@ replot
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f.close()
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os.system("gnuplot {plots_dir}/{object}_by_{criterion}_{side}_{record}.gnuplot".format(plots_dir=PLOTS_DIR, **kwargs))
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def make_log_plot(logs, exp, criterion, side, obj, record, machine=None):
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def make_log_plot(logs, exp, criterion, side, obj, record, machine=None, version=None):
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f = open(f"/dev/shm/plots/{obj}_by_{criterion}_{side}_{record}.dat", "w")
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ciphers = {}
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impls = []
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@ -162,6 +164,12 @@ def make_log_plot(logs, exp, criterion, side, obj, record, machine=None):
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for log in logs:
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if log["exp"] == exp and log["record"] == record and log["setup"] == side:
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#ver = VER_LABEL[log["cipher"]]
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#if log[COL[criterion]]+"/"+ver not in ciphers:
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# ciphers[log[COL[criterion]]+"/"+ver] = {}
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#ciphers[log[COL[criterion]]+"/"+ver][log["impl"]] = float(log[COL[obj]]) - idle_val * float(log["time"])
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if version != None and VER_LABEL[log["cipher"]] != version:
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continue
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if log[COL[criterion]] not in ciphers:
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ciphers[log[COL[criterion]]] = {}
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ciphers[log[COL[criterion]]][log["impl"]] = float(log[COL[obj]]) - idle_val * float(log["time"])
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@ -174,14 +182,15 @@ def make_log_plot(logs, exp, criterion, side, obj, record, machine=None):
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for impl in impls:
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if impl not in ciphers[cipher]:
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ciphers[cipher][impl] = 0
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"""f.write("{}({}) - {}\n".format(
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ALG_LABEL[cipher],
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VER_LABEL[log["cipher"]],
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" ".join([
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str(ciphers[cipher][impl])
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for impl in impls
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]),
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))"""
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#cipher_parts = cipher.split("/")
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#f.write("{}({}) - {}\n".format(
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# ALG_LABEL[cipher_parts[0]],
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# cipher_parts[1],
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# " ".join([
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# str(ciphers[cipher][impl])
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# for impl in impls
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# ]),
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#))
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f.write("{} - {}\n".format(
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ALG_LABEL[cipher],
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" ".join([
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@ -298,6 +307,48 @@ def make_linear_regression(logs):
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#plt.show()
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plt.savefig(f"{PLOTS_DIR}/correlation_energy_cpu.png")
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# Measure relative difference between TLS versions
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def cmp_versions(logs, exps, criteria, objs):
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ciphers = {}
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idle_val = None
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for log in logs:
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if log["exp"] == "idle":
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idle_val = {obj:float(log[COL[obj]]) / float(log["time"]) for obj in objs}
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for log in logs:
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if log["exp"] not in exps or log["setup"] == "none":
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continue
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ver = VER_LABEL[log["cipher"]]
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if ver not in ciphers:
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ciphers[ver] = {}
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key = []
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for criterion in criteria:
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key.append(ALG_LABEL.get(log[COL[criterion]], log[COL[criterion]]))
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key = "/".join(key)
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if key not in ciphers[ver]:
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ciphers[ver][key] = log
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diff_rel_max = {obj:0.0 for obj in objs}
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diff_rel_sum = {obj:0.0 for obj in objs}
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diff_rel_num = {obj:0 for obj in objs}
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for key in ciphers["1.2"]:
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if key not in ciphers["1.3"]:
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continue
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log12 = ciphers["1.2"][key]
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log13 = ciphers["1.3"][key]
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for obj in objs:
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val12 = float(log12[COL[obj]]) - idle_val[obj] * float(log12["time"])
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val13 = float(log13[COL[obj]]) - idle_val[obj] * float(log13["time"])
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# Difference relative to the mean of the two values
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diff_rel = abs(val12 - val13) / ((val12 + val13) / 2)
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diff_rel_max[obj] = max(diff_rel_max[obj], diff_rel)
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diff_rel_sum[obj] += diff_rel
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diff_rel_num[obj] += 1
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diff_rel_avg = {obj:diff_rel_sum[obj]/diff_rel_num[obj] for obj in objs}
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print("Diff rel max: ", diff_rel_max)
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print("Diff rel avg: ", diff_rel_avg)
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def getargv(arg:str, default="", n:int=1, args:list=sys.argv):
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if arg in args and len(args) > args.index(arg)+n:
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return args[args.index(arg)+n]
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@ -331,16 +382,17 @@ if __name__ == "__main__":
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machine = getargv("-m", None)
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if cmd == "log":
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cmp_versions(logs, ["impl-cipher-ver", "impl-cert-ver", "impl-kex-ver"], ["side", "cipher", "cert", "kex", "record"], ["cpu", "energy"])
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for side in ["client", "server"]:
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for record in records:
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make_log_plot(logs, "impl-cipher-ver", "cipher", side, "cpu", record, machine=machine)
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make_log_plot(logs, "impl-cipher-ver", "cipher", side, "energy", record, machine=machine)
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make_log_plot(logs, "impl-cert-ver", "cert", side, "cpu", record, machine=machine)
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make_log_plot(logs, "impl-cert-ver", "cert", side, "energy", record, machine=machine)
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make_log_plot(logs, "impl-kex-ver", "kex", side, "cpu", record, machine=machine)
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make_log_plot(logs, "impl-kex-ver", "kex", side, "energy", record, machine=machine)
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make_log_plot(logs, "zrtt", "ed", side, "cpu", record, machine=machine)
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make_log_plot(logs, "zrtt", "ed", side, "energy", record, machine=machine)
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make_log_plot(logs, "impl-cipher-ver", "cipher", side, "cpu", record, machine=machine, version="1.3")
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make_log_plot(logs, "impl-cipher-ver", "cipher", side, "energy", record, machine=machine, version="1.3")
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make_log_plot(logs, "impl-cert-ver", "cert", side, "cpu", record, machine=machine, version="1.3")
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make_log_plot(logs, "impl-cert-ver", "cert", side, "energy", record, machine=machine, version="1.3")
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make_log_plot(logs, "impl-kex-ver", "kex", side, "cpu", record, machine=machine, version="1.3")
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make_log_plot(logs, "impl-kex-ver", "kex", side, "energy", record, machine=machine, version="1.3")
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make_log_plot(logs, "zrtt", "ed", side, "cpu", record, machine=machine, version="1.3")
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make_log_plot(logs, "zrtt", "ed", side, "energy", record, machine=machine, version="1.3")
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elif cmd == "prof":
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for side in ["client-local", "server-local"]:
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for record in records:
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