UPF_Firewall/UPF_Firewall/Examples/PersonalFirewall/PersonalFirewallDatatype.thy

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subsection \<open>Personal Firewall: Datatype\<close>
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theory
PersonalFirewallDatatype
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imports
"../../UPF-Firewall"
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begin
text\<open>
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The most basic firewall scenario; there is a personal PC on one side and the Internet on the
other. There are two policies: the first one allows all traffic from the PC to the Internet and
denies all coming into the PC. The second policy only allows specific ports from the PC. This
scenario comes in three variants: the first one specifies the allowed protocols directly, the
second together with their respective port numbers, the third one only with the port numbers.
\<close>
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datatype Adr = pc | internet
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type_synonym DatatypeTwoNets = "Adr \<times> int"
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instance Adr::adr ..
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definition
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PC :: "DatatypeTwoNets net" where
"PC = {{(a,b). a = pc}}"
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definition
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Internet :: "DatatypeTwoNets net" where
"Internet = {{(a,b). a = internet}}"
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definition
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not_in_same_net :: "(DatatypeTwoNets,DummyContent) packet \<Rightarrow> bool" where
"not_in_same_net x = ((src x \<sqsubset> PC \<longrightarrow> dest x \<sqsubset> Internet) \<and> (src x \<sqsubset> Internet \<longrightarrow> dest x \<sqsubset> PC))"
text \<open>
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Definitions of the policies
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In fact, the short definitions wouldn't have to be written down - they
are the automatically simplified versions of their big counterparts.
\<close>
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definition
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strictPolicy :: "(DatatypeTwoNets,DummyContent) FWPolicy" where
"strictPolicy = deny_all ++ allow_all_from_to PC Internet"
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definition
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PortPolicy :: "(DatatypeTwoNets,'b) FWPolicy" where
"PortPolicy = deny_all ++ allow_from_ports_to {80::port,24,21} PC Internet"
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definition
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PortPolicyBig :: "(DatatypeTwoNets,'b) FWPolicy" where
"PortPolicyBig =
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allow_from_port_to (80::port) PC Internet \<Oplus>
allow_from_port_to (24::port) PC Internet \<Oplus>
allow_from_port_to (21::port) PC Internet \<Oplus>
deny_all"
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lemmas policyLemmas = strictPolicy_def PortPolicy_def PC_def Internet_def PortPolicyBig_def src_def
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PolicyCombinators PortCombinators in_subnet_def
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end