ledger support for hf 15 (BP+, view tags)
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@ -989,7 +989,7 @@ namespace cryptonote
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return true;
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}
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//---------------------------------------------------------------
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bool out_can_be_to_acc(const boost::optional<crypto::view_tag>& view_tag_opt, const crypto::key_derivation& derivation, const size_t output_index)
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bool out_can_be_to_acc(const boost::optional<crypto::view_tag>& view_tag_opt, const crypto::key_derivation& derivation, const size_t output_index, hw::device* hwdev)
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{
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// If there is no view tag to check, the output can possibly belong to the account.
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// Will need to derive the output pub key to be certain whether or not the output belongs to the account.
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@ -1002,7 +1002,15 @@ namespace cryptonote
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// Therefore can fail out early to avoid expensive crypto ops needlessly deriving output public key to
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// determine if output belongs to the account.
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crypto::view_tag derived_view_tag;
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if (hwdev != nullptr)
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{
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bool r = hwdev->derive_view_tag(derivation, output_index, derived_view_tag);
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CHECK_AND_ASSERT_MES(r, false, "Failed to derive view tag");
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}
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else
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{
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crypto::derive_view_tag(derivation, output_index, derived_view_tag);
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}
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return view_tag == derived_view_tag;
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}
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//---------------------------------------------------------------
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@ -1012,7 +1020,7 @@ namespace cryptonote
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bool r = acc.get_device().generate_key_derivation(tx_pub_key, acc.m_view_secret_key, derivation);
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CHECK_AND_ASSERT_MES(r, false, "Failed to generate key derivation");
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crypto::public_key pk;
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if (out_can_be_to_acc(view_tag_opt, derivation, output_index))
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if (out_can_be_to_acc(view_tag_opt, derivation, output_index, &acc.get_device()))
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{
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r = acc.get_device().derive_public_key(derivation, output_index, acc.m_account_address.m_spend_public_key, pk);
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CHECK_AND_ASSERT_MES(r, false, "Failed to derive public key");
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@ -1026,7 +1034,7 @@ namespace cryptonote
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CHECK_AND_ASSERT_MES(output_index < additional_tx_pub_keys.size(), false, "wrong number of additional tx pubkeys");
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r = acc.get_device().generate_key_derivation(additional_tx_pub_keys[output_index], acc.m_view_secret_key, derivation);
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CHECK_AND_ASSERT_MES(r, false, "Failed to generate key derivation");
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if (out_can_be_to_acc(view_tag_opt, derivation, output_index))
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if (out_can_be_to_acc(view_tag_opt, derivation, output_index, &acc.get_device()))
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{
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r = acc.get_device().derive_public_key(derivation, output_index, acc.m_account_address.m_spend_public_key, pk);
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CHECK_AND_ASSERT_MES(r, false, "Failed to derive public key");
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@ -1040,7 +1048,7 @@ namespace cryptonote
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{
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// try the shared tx pubkey
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crypto::public_key subaddress_spendkey;
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if (out_can_be_to_acc(view_tag_opt, derivation, output_index))
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if (out_can_be_to_acc(view_tag_opt, derivation, output_index, &hwdev))
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{
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CHECK_AND_ASSERT_MES(hwdev.derive_subaddress_public_key(out_key, derivation, output_index, subaddress_spendkey), boost::none, "Failed to derive subaddress public key");
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auto found = subaddresses.find(subaddress_spendkey);
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@ -1052,7 +1060,7 @@ namespace cryptonote
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if (!additional_derivations.empty())
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{
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CHECK_AND_ASSERT_MES(output_index < additional_derivations.size(), boost::none, "wrong number of additional derivations");
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if (out_can_be_to_acc(view_tag_opt, additional_derivations[output_index], output_index))
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if (out_can_be_to_acc(view_tag_opt, additional_derivations[output_index], output_index, &hwdev))
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{
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CHECK_AND_ASSERT_MES(hwdev.derive_subaddress_public_key(out_key, additional_derivations[output_index], output_index, subaddress_spendkey), boost::none, "Failed to derive subaddress public key");
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auto found = subaddresses.find(subaddress_spendkey);
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@ -91,7 +91,7 @@ namespace cryptonote
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bool get_encrypted_payment_id_from_tx_extra_nonce(const blobdata& extra_nonce, crypto::hash8& payment_id);
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void set_tx_out(const uint64_t amount, const crypto::public_key& output_public_key, const bool use_view_tags, const crypto::view_tag& view_tag, tx_out& out);
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bool check_output_types(const transaction& tx, const uint8_t hf_version);
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bool out_can_be_to_acc(const boost::optional<crypto::view_tag>& view_tag_opt, const crypto::key_derivation& derivation, const size_t output_index);
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bool out_can_be_to_acc(const boost::optional<crypto::view_tag>& view_tag_opt, const crypto::key_derivation& derivation, const size_t output_index, hw::device *hwdev = nullptr);
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bool is_out_to_acc(const account_keys& acc, const crypto::public_key& output_public_key, const crypto::public_key& tx_pub_key, const std::vector<crypto::public_key>& additional_tx_public_keys, size_t output_index, const boost::optional<crypto::view_tag>& view_tag_opt = boost::optional<crypto::view_tag>());
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struct subaddress_receive_info
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{
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@ -177,6 +177,7 @@ namespace hw {
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virtual bool derive_public_key(const crypto::key_derivation &derivation, const std::size_t output_index, const crypto::public_key &pub, crypto::public_key &derived_pub) = 0;
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virtual bool secret_key_to_public_key(const crypto::secret_key &sec, crypto::public_key &pub) = 0;
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virtual bool generate_key_image(const crypto::public_key &pub, const crypto::secret_key &sec, crypto::key_image &image) = 0;
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virtual bool derive_view_tag(const crypto::key_derivation &derivation, const std::size_t output_index, crypto::view_tag &view_tag) = 0;
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// alternative prototypes available in libringct
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rct::key scalarmultKey(const rct::key &P, const rct::key &a)
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@ -101,7 +101,7 @@ namespace hw {
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bool derive_public_key(const crypto::key_derivation &derivation, const std::size_t output_index, const crypto::public_key &pub, crypto::public_key &derived_pub) override;
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bool secret_key_to_public_key(const crypto::secret_key &sec, crypto::public_key &pub) override;
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bool generate_key_image(const crypto::public_key &pub, const crypto::secret_key &sec, crypto::key_image &image) override;
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bool derive_view_tag(const crypto::key_derivation &derivation, const std::size_t output_index, crypto::view_tag &view_tag);
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bool derive_view_tag(const crypto::key_derivation &derivation, const std::size_t output_index, crypto::view_tag &view_tag) override;
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/* ======================================================================= */
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@ -266,6 +266,7 @@ namespace hw {
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#define INS_DERIVE_PUBLIC_KEY 0x36
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#define INS_DERIVE_SECRET_KEY 0x38
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#define INS_GEN_KEY_IMAGE 0x3A
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#define INS_DERIVE_VIEW_TAG 0x3B
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#define INS_SECRET_KEY_ADD 0x3C
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#define INS_SECRET_KEY_SUB 0x3E
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#define INS_GENERATE_KEYPAIR 0x40
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@ -1308,6 +1309,54 @@ namespace hw {
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return true;
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}
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bool device_ledger::derive_view_tag(const crypto::key_derivation &derivation, const std::size_t output_index, crypto::view_tag &view_tag){
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#ifdef DEBUG_HWDEVICE
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crypto::key_derivation derivation_x;
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if ((this->mode == TRANSACTION_PARSE) && has_view_key) {
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derivation_x = derivation;
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} else {
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derivation_x = hw::ledger::decrypt(derivation);
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}
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const std::size_t output_index_x = output_index;
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crypto::view_tag view_tag_x;
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log_hexbuffer("derive_view_tag: [[IN]] derivation ", derivation_x.data, 32);
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log_message ("derive_view_tag: [[IN]] output_index", std::to_string(output_index_x));
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this->controle_device->derive_view_tag(derivation_x, output_index_x, view_tag_x);
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log_hexbuffer("derive_view_tag: [[OUT]] view_tag ", &view_tag_x.data, 1);
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#endif
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if ((this->mode == TRANSACTION_PARSE) && has_view_key) {
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//If we are in TRANSACTION_PARSE, the given derivation has been retrieved uncrypted (wihtout the help
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//of the device), so continue that way.
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MDEBUG( "derive_view_tag : PARSE mode with known viewkey");
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crypto::derive_view_tag(derivation, output_index, view_tag);
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} else {
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AUTO_LOCK_CMD();
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int offset = set_command_header_noopt(INS_DERIVE_VIEW_TAG);
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//derivation
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this->send_secret((unsigned char*)derivation.data, offset);
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//index
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this->buffer_send[offset+0] = output_index>>24;
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this->buffer_send[offset+1] = output_index>>16;
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this->buffer_send[offset+2] = output_index>>8;
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this->buffer_send[offset+3] = output_index>>0;
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offset += 4;
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this->buffer_send[4] = offset-5;
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this->length_send = offset;
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this->exchange();
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//view tag
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memmove(&view_tag.data, &this->buffer_recv[0], 1);
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}
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#ifdef DEBUG_HWDEVICE
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hw::ledger::check1("derive_view_tag", "view_tag", &view_tag_x.data, &view_tag.data);
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#endif
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return true;
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}
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/* ======================================================================= */
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/* TRANSACTION */
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/* ======================================================================= */
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@ -1548,7 +1597,6 @@ namespace hw {
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const size_t output_index_x = output_index;
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const bool need_additional_txkeys_x = need_additional_txkeys;
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const bool use_view_tags_x = use_view_tags;
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const crypto::view_tag view_tag_x = view_tag;
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std::vector<crypto::secret_key> additional_tx_keys_x;
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for (const auto &k: additional_tx_keys) {
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@ -1558,6 +1606,7 @@ namespace hw {
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std::vector<crypto::public_key> additional_tx_public_keys_x;
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std::vector<rct::key> amount_keys_x;
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crypto::public_key out_eph_public_key_x;
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crypto::view_tag view_tag_x;
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log_message ("generate_output_ephemeral_keys: [[IN]] tx_version", std::to_string(tx_version_x));
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//log_hexbuffer("generate_output_ephemeral_keys: [[IN]] sender_account_keys.view", sender_account_keys.m_sview_secret_key.data, 32);
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@ -1575,11 +1624,15 @@ namespace hw {
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if(need_additional_txkeys_x) {
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log_hexbuffer("generate_output_ephemeral_keys: [[IN]] additional_tx_keys[oi]", additional_tx_keys_x[output_index].data, 32);
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}
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log_message ("generate_output_ephemeral_keys: [[IN]] use_view_tags", std::to_string(use_view_tags_x));
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this->controle_device->generate_output_ephemeral_keys(tx_version_x, sender_account_keys_x, txkey_pub_x, tx_key_x, dst_entr_x, change_addr_x, output_index_x, need_additional_txkeys_x, additional_tx_keys_x,
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additional_tx_public_keys_x, amount_keys_x, out_eph_public_key_x, use_view_tags_x, view_tag_x);
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if(need_additional_txkeys_x) {
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log_hexbuffer("additional_tx_public_keys_x: [[OUT]] additional_tx_public_keys_x", additional_tx_public_keys_x.back().data, 32);
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}
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if(use_view_tags_x) {
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log_hexbuffer("generate_output_ephemeral_keys: [[OUT]] view_tag", &view_tag_x.data, 1);
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}
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log_hexbuffer("generate_output_ephemeral_keys: [[OUT]] amount_keys ", (char*)amount_keys_x.back().bytes, 32);
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log_hexbuffer("generate_output_ephemeral_keys: [[OUT]] out_eph_public_key ", out_eph_public_key_x.data, 32);
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#endif
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@ -1633,6 +1686,9 @@ namespace hw {
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memset(&this->buffer_send[offset], 0, 32);
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offset += 32;
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}
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//use_view_tags
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this->buffer_send[offset] = use_view_tags;
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offset++;
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this->buffer_send[4] = offset-5;
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this->length_send = offset;
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@ -1663,6 +1719,14 @@ namespace hw {
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recv_len -= 32;
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}
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if (use_view_tags)
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{
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ASSERT_X(recv_len>=1, "Not enough data from device");
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memmove(&view_tag.data, &this->buffer_recv[offset], 1);
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offset++;
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recv_len -= 1;
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}
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// add ABPkeys
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this->add_output_key_mapping(dst_entr.addr.m_view_public_key, dst_entr.addr.m_spend_public_key, dst_entr.is_subaddress, is_change,
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need_additional_txkeys, output_index,
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@ -1675,6 +1739,9 @@ namespace hw {
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hw::ledger::check32("generate_output_ephemeral_keys", "additional_tx_key", additional_tx_public_keys_x.back().data, additional_tx_public_keys.back().data);
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}
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hw::ledger::check32("generate_output_ephemeral_keys", "out_eph_public_key", out_eph_public_key_x.data, out_eph_public_key.data);
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if (use_view_tags) {
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hw::ledger::check1("generate_output_ephemeral_keys", "view_tag", &view_tag_x.data, &view_tag.data);
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}
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#endif
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return true;
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@ -1860,7 +1927,7 @@ namespace hw {
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// ====== Aout, Bout, AKout, C, v, k ======
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kv_offset = data_offset;
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if (type==rct::RCTTypeBulletproof2 || type==rct::RCTTypeCLSAG) {
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if (type==rct::RCTTypeBulletproof2 || type==rct::RCTTypeCLSAG || type==rct::RCTTypeBulletproofPlus) {
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C_offset = kv_offset+ (8)*outputs_size;
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} else {
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C_offset = kv_offset+ (32+32)*outputs_size;
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@ -1877,7 +1944,7 @@ namespace hw {
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offset = set_command_header(INS_VALIDATE, 0x02, i+1);
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//options
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this->buffer_send[offset] = (i==outputs_size-1)? 0x00:0x80 ;
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this->buffer_send[offset] |= (type==rct::RCTTypeBulletproof2 || type==rct::RCTTypeCLSAG)?0x02:0x00;
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this->buffer_send[offset] |= (type==rct::RCTTypeBulletproof2 || type==rct::RCTTypeCLSAG || type==rct::RCTTypeBulletproofPlus)?0x02:0x00;
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offset += 1;
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//is_subaddress
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this->buffer_send[offset] = outKeys.is_subaddress;
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@ -1898,7 +1965,7 @@ namespace hw {
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memmove(this->buffer_send+offset, data+C_offset,32);
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offset += 32;
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C_offset += 32;
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if (type==rct::RCTTypeBulletproof2 || type==rct::RCTTypeCLSAG) {
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if (type==rct::RCTTypeBulletproof2 || type==rct::RCTTypeCLSAG || type==rct::RCTTypeBulletproofPlus) {
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//k
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memset(this->buffer_send+offset, 0, 32);
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offset += 32;
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@ -249,6 +249,7 @@ namespace hw {
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bool derive_public_key(const crypto::key_derivation &derivation, const std::size_t output_index, const crypto::public_key &pub, crypto::public_key &derived_pub) override;
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bool secret_key_to_public_key(const crypto::secret_key &sec, crypto::public_key &pub) override;
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bool generate_key_image(const crypto::public_key &pub, const crypto::secret_key &sec, crypto::key_image &image) override;
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bool derive_view_tag(const crypto::key_derivation &derivation, const size_t output_index, crypto::view_tag &view_tag) override;
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/* ======================================================================= */
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/* TRANSACTION */
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@ -165,6 +165,10 @@ namespace hw {
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void check8(const std::string &msg, const std::string &info, const char *h, const char *d, bool crypted) {
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check(msg, info, h, d, 8, crypted);
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}
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void check1(const std::string &msg, const std::string &info, const char *h, const char *d, bool crypted) {
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check(msg, info, h, d, 1, crypted);
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}
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#endif
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}
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@ -75,6 +75,7 @@ namespace hw {
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void check32(const std::string &msg, const std::string &info, const char *h, const char *d, bool crypted=false);
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void check8(const std::string &msg, const std::string &info, const char *h, const char *d, bool crypted=false);
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void check1(const std::string &msg, const std::string &info, const char *h, const char *d, bool crypted=false);
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void set_check_verbose(bool verbose);
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#endif
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