Description: yaSSL was only handling the cases of zero or
one leading zeros for the key agreement instead of potentially any number. There is about 1 in 50,000 connections to fail when using DHE cipher suites. The second problem was the case where a server would send a public value shorter than the prime value, causing about 1 in 128 client connections to fail, and also caused the yaSSL client to read off the end of memory. All client side DHE cipher suite users should update. Note: The patch is received from YaSSL people
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@ -12,6 +12,17 @@ before calling SSL_new();
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*** end Note ***
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yaSSL Release notes, version 2.3.9 (12/01/2015)
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This release of yaSSL fixes two client side Diffie-Hellman problems.
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yaSSL was only handling the cases of zero or one leading zeros for the key
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agreement instead of potentially any number. This caused about 1 in 50,000
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connections to fail when using DHE cipher suites. The second problem was
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the case where a server would send a public value shorter than the prime
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value, causing about 1 in 128 client connections to fail, and also
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caused the yaSSL client to read off the end of memory. All client side
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DHE cipher suite users should update.
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Thanks to Adam Langely (agl@imperialviolet.org) for the detailed report!
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yaSSL Release notes, version 2.3.8 (9/17/2015)
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This release of yaSSL fixes a high security vulnerability. All users
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SHOULD update. If using yaSSL for TLS on the server side with private
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@ -378,6 +378,7 @@ public:
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uint get_agreedKeyLength() const;
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const byte* get_agreedKey() const;
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uint get_publicKeyLength() const;
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const byte* get_publicKey() const;
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void makeAgreement(const byte*, unsigned int);
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@ -35,7 +35,7 @@
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#include "rsa.h"
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#define YASSL_VERSION "2.3.8"
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#define YASSL_VERSION "2.3.9"
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#if defined(__cplusplus)
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@ -751,9 +751,10 @@ struct DiffieHellman::DHImpl {
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byte* publicKey_;
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byte* privateKey_;
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byte* agreedKey_;
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uint pubKeyLength_;
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DHImpl(TaoCrypt::RandomNumberGenerator& r) : ranPool_(r), publicKey_(0),
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privateKey_(0), agreedKey_(0) {}
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privateKey_(0), agreedKey_(0), pubKeyLength_(0) {}
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~DHImpl()
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{
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ysArrayDelete(agreedKey_);
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@ -762,7 +763,7 @@ struct DiffieHellman::DHImpl {
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}
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DHImpl(const DHImpl& that) : dh_(that.dh_), ranPool_(that.ranPool_),
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publicKey_(0), privateKey_(0), agreedKey_(0)
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publicKey_(0), privateKey_(0), agreedKey_(0), pubKeyLength_(0)
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{
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uint length = dh_.GetByteLength();
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AllocKeys(length, length, length);
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@ -810,7 +811,7 @@ DiffieHellman::DiffieHellman(const byte* p, unsigned int pSz, const byte* g,
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using TaoCrypt::Integer;
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pimpl_->dh_.Initialize(Integer(p, pSz).Ref(), Integer(g, gSz).Ref());
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pimpl_->publicKey_ = NEW_YS opaque[pubSz];
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pimpl_->publicKey_ = NEW_YS opaque[pimpl_->pubKeyLength_ = pubSz];
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memcpy(pimpl_->publicKey_, pub, pubSz);
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}
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@ -869,6 +870,10 @@ const byte* DiffieHellman::get_agreedKey() const
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return pimpl_->agreedKey_;
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}
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uint DiffieHellman::get_publicKeyLength() const
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{
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return pimpl_->pubKeyLength_;
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}
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const byte* DiffieHellman::get_publicKey() const
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{
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@ -109,15 +109,12 @@ void ClientDiffieHellmanPublic::build(SSL& ssl)
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uint keyLength = dhClient.get_agreedKeyLength(); // pub and agree same
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alloc(keyLength, true);
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dhClient.makeAgreement(dhServer.get_publicKey(), keyLength);
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dhClient.makeAgreement(dhServer.get_publicKey(),
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dhServer.get_publicKeyLength());
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c16toa(keyLength, Yc_);
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memcpy(Yc_ + KEY_OFFSET, dhClient.get_publicKey(), keyLength);
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// because of encoding first byte might be zero, don't use it for preMaster
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if (*dhClient.get_agreedKey() == 0)
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ssl.set_preMaster(dhClient.get_agreedKey() + 1, keyLength - 1);
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else
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ssl.set_preMaster(dhClient.get_agreedKey(), keyLength);
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ssl.set_preMaster(dhClient.get_agreedKey(), keyLength);
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}
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@ -321,11 +318,7 @@ void ClientDiffieHellmanPublic::read(SSL& ssl, input_buffer& input)
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}
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dh.makeAgreement(Yc_, keyLength);
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// because of encoding, first byte might be 0, don't use for preMaster
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if (*dh.get_agreedKey() == 0)
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ssl.set_preMaster(dh.get_agreedKey() + 1, dh.get_agreedKeyLength() - 1);
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else
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ssl.set_preMaster(dh.get_agreedKey(), dh.get_agreedKeyLength());
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ssl.set_preMaster(dh.get_agreedKey(), dh.get_agreedKeyLength());
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ssl.makeMasterSecret();
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}
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@ -807,6 +807,19 @@ void SSL::set_random(const opaque* random, ConnectionEnd sender)
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// store client pre master secret
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void SSL::set_preMaster(const opaque* pre, uint sz)
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{
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uint i(0); // trim leading zeros
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uint fullSz(sz);
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while (i++ < fullSz && *pre == 0) {
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sz--;
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pre++;
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}
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if (sz == 0) {
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SetError(bad_input);
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return;
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}
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secure_.use_connection().AllocPreSecret(sz);
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memcpy(secure_.use_connection().pre_master_secret_, pre, sz);
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}
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@ -924,6 +937,8 @@ void SSL::order_error()
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// Create and store the master secret see page 32, 6.1
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void SSL::makeMasterSecret()
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{
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if (GetError()) return;
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if (isTLS())
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makeTLSMasterSecret();
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else {
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