mirror of
https://github.com/oxen-io/oxen-core.git
synced 2023-12-14 02:22:56 +01:00
337 lines
16 KiB
C++
337 lines
16 KiB
C++
// Copyright (c) 2017-2019, The Monero Project
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//
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// All rights reserved.
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//
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// Redistribution and use in source and binary forms, with or without modification, are
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// permitted provided that the following conditions are met:
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//
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// 1. Redistributions of source code must retain the above copyright notice, this list of
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// conditions and the following disclaimer.
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//
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// 2. Redistributions in binary form must reproduce the above copyright notice, this list
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// of conditions and the following disclaimer in the documentation and/or other
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// materials provided with the distribution.
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//
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// 3. Neither the name of the copyright holder nor the names of its contributors may be
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// used to endorse or promote products derived from this software without specific
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// prior written permission.
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//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY
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// EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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// MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL
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// THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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// PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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// INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
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// STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF
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// THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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//
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#pragma once
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#include <chrono>
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#include <cstddef>
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#include <string>
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#include "device.hpp"
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#include "log.hpp"
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#include "device_io_hid.hpp"
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namespace hw {
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using namespace std::literals;
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namespace ledger {
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// Required coin value as returned by INS_GET_NETWORK during connection
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constexpr auto COIN_NETWORK = "OXEN"sv;
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/* Minimal supported version */
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#define MINIMAL_APP_VERSION_MAJOR 0
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#define MINIMAL_APP_VERSION_MINOR 9
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#define MINIMAL_APP_VERSION_MICRO 0
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#define VERSION(M,m,u) ((M)<<16|(m)<<8|(u))
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#define VERSION_MAJOR(v) (((v)>>16)&0xFF)
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#define VERSION_MINOR(v) (((v)>>8)&0xFF)
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#define VERSION_MICRO(v) (((v)>>0)&0xFF)
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#define MINIMAL_APP_VERSION VERSION(MINIMAL_APP_VERSION_MAJOR, MINIMAL_APP_VERSION_MINOR, MINIMAL_APP_VERSION_MICRO)
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void register_all(std::map<std::string, std::unique_ptr<device>> ®istry);
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#ifdef WITH_DEVICE_LEDGER
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#define SW_OK 0x9000
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#define SW_WRONG_LENGTH 0x6700
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#define SW_SECURITY_PIN_LOCKED 0x6910
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#define SW_SECURITY_LOAD_KEY 0x6911
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#define SW_SECURITY_COMMITMENT_CONTROL 0x6912
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#define SW_SECURITY_AMOUNT_CHAIN_CONTROL 0x6913
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#define SW_SECURITY_COMMITMENT_CHAIN_CONTROL 0x6914
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#define SW_SECURITY_OUTKEYS_CHAIN_CONTROL 0x6915
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#define SW_SECURITY_MAXOUTPUT_REACHED 0x6916
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#define SW_SECURITY_HMAC 0x6917
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#define SW_SECURITY_RANGE_VALUE 0x6918
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#define SW_SECURITY_INTERNAL 0x6919
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#define SW_SECURITY_MAX_SIGNATURE_REACHED 0x691A
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#define SW_SECURITY_PREFIX_HASH 0x691B
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#define SW_SECURITY_LOCKED 0x69EE
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#define SW_COMMAND_NOT_ALLOWED 0x6980
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#define SW_SUBCOMMAND_NOT_ALLOWED 0x6981
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#define SW_DENY 0x6982
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#define SW_KEY_NOT_SET 0x6983
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#define SW_WRONG_DATA 0x6984
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#define SW_WRONG_DATA_RANGE 0x6985
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#define SW_IO_FULL 0x6986
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#define SW_CLIENT_NOT_SUPPORTED 0x6A30
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#define SW_WRONG_P1P2 0x6B00
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#define SW_INS_NOT_SUPPORTED 0x6D00
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#define SW_PROTOCOL_NOT_SUPPORTED 0x6E00
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#define SW_UNKNOWN 0x6F00
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void set_apdu_verbose(bool verbose);
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class ABPkeys {
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public:
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rct::key Aout;
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rct::key Bout;
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bool is_subaddress;
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bool is_change_address;
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bool additional_key ;
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size_t index;
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rct::key Pout;
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rct::key AKout;
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ABPkeys(const rct::key& A, const rct::key& B, const bool is_subaddr, bool is_subaddress, bool is_change_address, size_t index, const rct::key& P,const rct::key& AK);
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ABPkeys(const ABPkeys& keys) ;
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ABPkeys() {index=0;is_subaddress=false;is_change_address=false;additional_key=false;}
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ABPkeys &operator=(const ABPkeys &keys);
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};
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class Keymap {
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public:
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std::vector<ABPkeys> ABP;
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bool find(const rct::key& P, ABPkeys& keys) const;
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void add(const ABPkeys& keys);
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void clear();
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void log();
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};
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class SecHMAC {
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public:
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uint32_t sec[32];
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uint32_t hmac[32];
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SecHMAC(const uint8_t s[32], const uint8_t m[32]);
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};
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class HMACmap {
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public:
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std::vector<SecHMAC> hmacs;
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void find_mac(const unsigned char sec[32], unsigned char hmac[32]) ;
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void add_mac(const unsigned char sec[32], const unsigned char hmac[32]) ;
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void clear() ;
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};
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#define BUFFER_SEND_SIZE 262
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#define BUFFER_RECV_SIZE 262
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class device_ledger : public hw::device {
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private:
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// Locker for concurrent access
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mutable std::recursive_mutex device_locker;
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mutable std::mutex command_locker;
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//IO
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hw::io::device_io_hid hw_device;
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unsigned int length_send;
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unsigned char buffer_send[BUFFER_SEND_SIZE];
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unsigned int length_recv;
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unsigned char buffer_recv[BUFFER_RECV_SIZE];
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unsigned int sw;
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unsigned int id;
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std::chrono::steady_clock::time_point last_cmd;
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void logCMD();
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void logRESP();
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unsigned int exchange(bool wait_on_input = false);
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void reset_buffer();
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int set_command_header(unsigned char ins, unsigned char p1 = 0x00, unsigned char p2 = 0x00);
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int set_command_header_noopt(unsigned char ins, unsigned char p1 = 0x00, unsigned char p2 = 0x00);
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void send_simple(unsigned char ins, unsigned char p1 = 0x00);
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void send_bytes(const void* buf, size_t size, int& offset);
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void receive_bytes(void* dest, size_t size, int& offset);
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void receive_bytes(void* dest, size_t size);
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void send_u16(uint16_t x, int& offset);
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void send_u32(uint32_t x, int& offset);
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uint32_t receive_u32(int& offset);
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uint32_t receive_u32();
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void send_secret(const unsigned char sec[32], int &offset);
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void send_secret(const char sec[32], int &offset) { send_secret(reinterpret_cast<const unsigned char*>(sec), offset); }
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void receive_secret(unsigned char sec[32], int &offset);
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void receive_secret(char sec[32], int &offset) { receive_secret(reinterpret_cast<unsigned char*>(sec), offset); }
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void check_network_type();
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void exchange_multipart_data(uint8_t ins, uint8_t p1, std::string_view data, uint8_t chunk_size);
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void send_finish(int& offset);
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unsigned int finish_and_exchange(int& offset, bool wait_on_input = false);
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// hw running mode
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device_mode mode;
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bool tx_in_progress;
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cryptonote::network_type nettype = cryptonote::network_type::UNDEFINED; // Set by the wallet before connecting
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// map public destination key to ephemeral destination key
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Keymap key_map;
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bool add_output_key_mapping(
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const crypto::public_key& Aout,
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const crypto::public_key& Bout,
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bool is_subaddress,
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bool is_change,
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bool need_additional,
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size_t real_output_index,
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const rct::key& amount_key,
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const crypto::public_key& out_eph_public_key);
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//hmac for some encrypted value
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HMACmap hmac_map;
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// To speed up blockchain parsing the view key maybe handle here.
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crypto::secret_key viewkey;
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bool has_view_key;
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//extra debug
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#ifdef DEBUG_HWDEVICE
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device *debug_device;
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#endif
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public:
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device_ledger();
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~device_ledger();
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device_ledger(const device_ledger &device) = delete ;
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device_ledger& operator=(const device_ledger &device) = delete;
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explicit operator bool() const override {return this->connected(); }
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bool reset();
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/* ======================================================================= */
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/* SETUP/TEARDOWN */
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/* ======================================================================= */
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bool set_name(std::string_view name) override;
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std::string get_name() const override;
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bool init() override;
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bool release() override;
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bool connect() override;
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bool disconnect() override;
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bool connected() const;
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bool set_mode(device_mode mode) override;
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device_type get_type() const override {return device_type::LEDGER;};
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device_protocol_t device_protocol() const override { return PROTOCOL_PROXY; };
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/* ======================================================================= */
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/* LOCKER */
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/* ======================================================================= */
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void lock() override;
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void unlock() override;
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bool try_lock() override;
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/* ======================================================================= */
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/* WALLET & ADDRESS */
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/* ======================================================================= */
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bool get_public_address(cryptonote::account_public_address &pubkey) override;
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bool get_secret_keys(crypto::secret_key &viewkey , crypto::secret_key &spendkey) override;
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bool generate_chacha_key(const cryptonote::account_keys &keys, crypto::chacha_key &key, uint64_t kdf_rounds) override;
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void display_address(const cryptonote::subaddress_index& index, const std::optional<crypto::hash8> &payment_id) override;
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void set_network_type(cryptonote::network_type network_type) override;
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/* ======================================================================= */
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/* SUB ADDRESS */
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/* ======================================================================= */
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bool derive_subaddress_public_key(const crypto::public_key &pub, const crypto::key_derivation &derivation, const std::size_t output_index, crypto::public_key &derived_pub) override;
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crypto::public_key get_subaddress_spend_public_key(const cryptonote::account_keys& keys, const cryptonote::subaddress_index& index) override;
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std::vector<crypto::public_key> get_subaddress_spend_public_keys(const cryptonote::account_keys &keys, uint32_t account, uint32_t begin, uint32_t end) override;
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cryptonote::account_public_address get_subaddress(const cryptonote::account_keys& keys, const cryptonote::subaddress_index &index) override;
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crypto::secret_key get_subaddress_secret_key(const crypto::secret_key &sec, const cryptonote::subaddress_index &index) override;
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/* ======================================================================= */
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/* DERIVATION & KEY */
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/* ======================================================================= */
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bool verify_keys(const crypto::secret_key &secret_key, const crypto::public_key &public_key) override;
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bool scalarmultKey(rct::key & aP, const rct::key &P, const rct::key &a) override;
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bool scalarmultBase(rct::key &aG, const rct::key &a) override;
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bool sc_secret_add(crypto::secret_key &r, const crypto::secret_key &a, const crypto::secret_key &b) override;
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crypto::secret_key generate_keys(crypto::public_key &pub, crypto::secret_key &sec, const crypto::secret_key& recovery_key = crypto::secret_key(), bool recover = false) override;
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bool generate_key_derivation(const crypto::public_key &pub, const crypto::secret_key &sec, crypto::key_derivation &derivation) override;
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bool conceal_derivation(crypto::key_derivation &derivation, const crypto::public_key &tx_pub_key, const std::vector<crypto::public_key> &additional_tx_pub_keys, const crypto::key_derivation &main_derivation, const std::vector<crypto::key_derivation> &additional_derivations) override;
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bool derivation_to_scalar(const crypto::key_derivation &derivation, const size_t output_index, crypto::ec_scalar &res) override;
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bool derive_secret_key(const crypto::key_derivation &derivation, const std::size_t output_index, const crypto::secret_key &sec, crypto::secret_key &derived_sec) override;
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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 generate_key_image_signature(const crypto::key_image& image, const crypto::public_key& pub, const crypto::secret_key& sec, crypto::signature& sig) override;
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bool generate_unlock_signature(const crypto::public_key& pub, const crypto::secret_key& sec, crypto::signature& sig) override;
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bool generate_lns_signature(std::string_view sig_data, const cryptonote::account_keys& keys, const cryptonote::subaddress_index& index, crypto::signature& sig) override;
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/* ======================================================================= */
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/* TRANSACTION */
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/* ======================================================================= */
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void generate_tx_proof(const crypto::hash &prefix_hash,
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const crypto::public_key &R, const crypto::public_key &A, const std::optional<crypto::public_key> &B, const crypto::public_key &D, const crypto::secret_key &r,
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crypto::signature &sig) override;
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bool open_tx(crypto::secret_key &tx_key, cryptonote::txversion tx_version, cryptonote::txtype tx_type) override;
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void get_transaction_prefix_hash(const cryptonote::transaction_prefix& tx, crypto::hash& h) override;
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bool encrypt_payment_id(crypto::hash8 &payment_id, const crypto::public_key &public_key, const crypto::secret_key &secret_key) override;
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rct::key genCommitmentMask(const rct::key &amount_key) override;
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bool ecdhEncode(rct::ecdhTuple & unmasked, const rct::key & sharedSec, bool short_format) override;
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bool ecdhDecode(rct::ecdhTuple & masked, const rct::key & sharedSec, bool short_format) override;
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bool generate_output_ephemeral_keys(
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size_t tx_version,
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bool& found_change,
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const cryptonote::account_keys& sender_account_keys,
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const crypto::public_key& txkey_pub,
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const crypto::secret_key& tx_key,
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const cryptonote::tx_destination_entry& dst_entr,
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const std::optional<cryptonote::tx_destination_entry>& change_addr,
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size_t output_index,
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bool need_additional_txkeys,
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const std::vector<crypto::secret_key>& additional_tx_keys,
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std::vector<crypto::public_key>& additional_tx_public_keys,
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std::vector<rct::key>& amount_keys,
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crypto::public_key& out_eph_public_key) override;
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bool clsag_prehash(const std::string &blob, size_t inputs_size, size_t outputs_size, const rct::keyV &hashes, const rct::ctkeyV &outPk, rct::key &prehash) override;
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bool clsag_prepare(const rct::key &p, const rct::key &z, rct::key &I, rct::key &D, const rct::key &H, rct::key &a, rct::key &aG, rct::key &aH) override;
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bool clsag_hash(const rct::keyV &data, rct::key &hash) override;
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bool clsag_sign(const rct::key &c, const rct::key &a, const rct::key &p, const rct::key &z, const rct::key &mu_P, const rct::key &mu_C, rct::key &s) override;
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bool update_staking_tx_secret_key(crypto::secret_key& key) override;
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bool close_tx() override;
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};
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#endif //WITH_DEVICE_LEDGER
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}
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}
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