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105 lines
3.9 KiB
Plaintext
105 lines
3.9 KiB
Plaintext
import cpp
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import experimental.Quantum.Language
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import EVPCipherConsumers
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import OpenSSLAlgorithmGetter
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/**
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* Given a literal `e`, converts this to a cipher family type.
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* The literal must be a known literal representing a cipher algorithm.
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* If the literal does not represent any known cipher algorithm,
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* this predicate will not hold (i.e., it will not bind an unknown to an unknown cipher type)
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*/
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predicate knownOpenSSLConstantToCipherFamilyType(KnownOpenSSLAlgorithmConstant e, Crypto::TCipherType type) {
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exists(string name | e.getAlgType().toLowerCase().matches("%encryption") |
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name = e.getNormalizedName() and
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(
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name.matches("AES%") and type instanceof Crypto::AES
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or
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name.matches("ARIA") and type instanceof Crypto::ARIA
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or
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name.matches("BLOWFISH") and type instanceof Crypto::BLOWFISH
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or
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name.matches("BF") and type instanceof Crypto::BLOWFISH
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or
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name.matches("CAMELLIA%") and type instanceof Crypto::CAMELLIA
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or
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name.matches("CHACHA20") and type instanceof Crypto::CHACHA20
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or
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name.matches("CAST5") and type instanceof Crypto::CAST5
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or
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name.matches("2DES") and type instanceof Crypto::DoubleDES
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or
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name.matches(["3DES", "TRIPLEDES"]) and type instanceof Crypto::TripleDES
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or
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name.matches("DES") and type instanceof Crypto::DES
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or
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name.matches("DESX") and type instanceof Crypto::DESX
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or
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name.matches("GOST%") and type instanceof Crypto::GOST
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or
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name.matches("IDEA") and type instanceof Crypto::IDEA
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or
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name.matches("KUZNYECHIK") and type instanceof Crypto::KUZNYECHIK
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or
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name.matches("MAGMA") and type instanceof Crypto::MAGMA
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or
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name.matches("RC2") and type instanceof Crypto::RC2
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or
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name.matches("RC4") and type instanceof Crypto::RC4
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or
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name.matches("RC5") and type instanceof Crypto::RC5
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or
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name.matches("RSA") and type instanceof Crypto::RSA
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or
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name.matches("SEED") and type instanceof Crypto::SEED
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or
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name.matches("SM4") and type instanceof Crypto::SM4
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)
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)
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}
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class KnownOpenSSLCipherConstantAlgorithmInstance extends Crypto::CipherAlgorithmInstance instanceof KnownOpenSSLAlgorithmConstant
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{
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OpenSSLAlgorithmGetterCall getterCall;
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KnownOpenSSLCipherConstantAlgorithmInstance() {
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// Not just any known value, but specifically a known cipher operation
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this.(KnownOpenSSLAlgorithmConstant).getAlgType().toLowerCase().matches("%encryption") and
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(
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// Two possibilities:
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// 1) The source is a literal and flows to a getter, then we know we have an instance
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// 2) The source is a KnownOpenSSLAlgorithm is call, and we know we have an instance immediately from that
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// Possibility 1:
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this instanceof Literal and
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exists(DataFlow::Node src, DataFlow::Node sink |
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// Sink is an argument to a CipherGetterCall
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sink = getterCall.(OpenSSLAlgorithmGetterCall).getValueArgNode() and
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// Source is `this`
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src.asExpr() = this and
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// This traces to a getter
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KnownOpenSSLAlgorithmToAlgorithmGetterFlow::flow(src, sink)
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)
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or
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// Possibility 2:
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this instanceof DirectGetterCall and getterCall = this
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)
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}
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Crypto::AlgorithmConsumer getConsumer() {
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AlgGetterToAlgConsumerFlow::flow(getterCall.getResultNode(), DataFlow::exprNode(result))
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}
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override Crypto::ModeOfOperationAlgorithmInstance getModeOfOperationAlgorithm() {
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none() // TODO: provider defaults
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}
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override Crypto::PaddingAlgorithmInstance getPaddingAlgorithm() { none() }
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override string getRawAlgorithmName() { result = this.(Literal).getValue().toString() }
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override Crypto::TCipherType getCipherFamily() {
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knownOpenSSLConstantToCipherFamilyType(this, result)
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or
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not knownOpenSSLConstantToCipherFamilyType(this, _) and result = Crypto::OtherCipherType()
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}
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} |