mirror of
https://codeberg.org/anoncontributorxmr/monero.git
synced 2024-11-30 06:43:28 +01:00
device: proper handling of user input
(1) If the user denies something on the Ledger, a proper error message is now shown. (2) Ledger doesn't time out anymore while waiting on user input. (3) Lower the timeout to 2 seconds, this is enough for normal Ledger <-> System communication.
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094b0c4d00
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@ -50,7 +50,7 @@ namespace hw {
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virtual void disconnect() = 0;
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virtual void disconnect() = 0;
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virtual bool connected() const = 0;
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virtual bool connected() const = 0;
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virtual int exchange(unsigned char *command, unsigned int cmd_len, unsigned char *response, unsigned int max_resp_len) = 0;
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virtual int exchange(unsigned char *command, unsigned int cmd_len, unsigned char *response, unsigned int max_resp_len, bool user_input) = 0;
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};
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};
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};
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};
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};
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};
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@ -148,7 +148,7 @@ namespace hw {
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return this->usb_device != NULL;
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return this->usb_device != NULL;
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}
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}
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int device_io_hid::exchange(unsigned char *command, unsigned int cmd_len, unsigned char *response, unsigned int max_resp_len) {
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int device_io_hid::exchange(unsigned char *command, unsigned int cmd_len, unsigned char *response, unsigned int max_resp_len, bool user_input) {
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unsigned char buffer[400];
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unsigned char buffer[400];
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unsigned char padding_buffer[MAX_BLOCK+1];
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unsigned char padding_buffer[MAX_BLOCK+1];
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unsigned int result;
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unsigned int result;
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@ -177,7 +177,11 @@ namespace hw {
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//get first response
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//get first response
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memset(buffer, 0, sizeof(buffer));
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memset(buffer, 0, sizeof(buffer));
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if (!user_input) {
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hid_ret = hid_read_timeout(this->usb_device, buffer, MAX_BLOCK, this->timeout);
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hid_ret = hid_read_timeout(this->usb_device, buffer, MAX_BLOCK, this->timeout);
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} else {
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hid_ret = hid_read(this->usb_device, buffer, MAX_BLOCK);
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}
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ASSERT_X(hid_ret>=0, "Unable to read hidapi response. Error "+std::to_string(result)+": "+ safe_hid_error(this->usb_device));
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ASSERT_X(hid_ret>=0, "Unable to read hidapi response. Error "+std::to_string(result)+": "+ safe_hid_error(this->usb_device));
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result = (unsigned int)hid_ret;
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result = (unsigned int)hid_ret;
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io_hid_log(1, buffer, result);
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io_hid_log(1, buffer, result);
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@ -100,7 +100,7 @@ namespace hw {
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void connect(void *params);
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void connect(void *params);
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void connect(unsigned int vid, unsigned int pid, boost::optional<int> interface_number, boost::optional<unsigned short> usage_page);
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void connect(unsigned int vid, unsigned int pid, boost::optional<int> interface_number, boost::optional<unsigned short> usage_page);
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bool connected() const;
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bool connected() const;
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int exchange(unsigned char *command, unsigned int cmd_len, unsigned char *response, unsigned int max_resp_len);
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int exchange(unsigned char *command, unsigned int cmd_len, unsigned char *response, unsigned int max_resp_len, bool user_input);
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void disconnect();
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void disconnect();
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void release();
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void release();
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};
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};
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@ -176,7 +176,7 @@ namespace hw {
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#define INS_GET_RESPONSE 0xc0
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#define INS_GET_RESPONSE 0xc0
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device_ledger::device_ledger(): hw_device(0x0101, 0x05, 64, 120000) {
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device_ledger::device_ledger(): hw_device(0x0101, 0x05, 64, 2000) {
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this->id = device_id++;
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this->id = device_id++;
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this->reset_buffer();
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this->reset_buffer();
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this->mode = NONE;
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this->mode = NONE;
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@ -235,6 +235,9 @@ namespace hw {
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/* IO */
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/* IO */
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/* ======================================================================= */
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/* ======================================================================= */
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#define IO_SW_DENY 0x6982
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#define IO_SECRET_KEY 0x02
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void device_ledger::logCMD() {
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void device_ledger::logCMD() {
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if (apdu_verbose) {
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if (apdu_verbose) {
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char strbuffer[1024];
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char strbuffer[1024];
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@ -283,8 +286,13 @@ namespace hw {
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void device_ledger::send_simple(unsigned char ins, unsigned char p1) {
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void device_ledger::send_simple(unsigned char ins, unsigned char p1) {
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this->length_send = set_command_header_noopt(ins, p1);
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this->length_send = set_command_header_noopt(ins, p1);
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if (ins == INS_GET_KEY && p1 == IO_SECRET_KEY) {
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// export view key user input
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this->exchange_wait_on_input();
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} else {
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this->exchange();
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this->exchange();
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}
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}
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}
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bool device_ledger::reset() {
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bool device_ledger::reset() {
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send_simple(INS_RESET);
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send_simple(INS_RESET);
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@ -294,7 +302,7 @@ namespace hw {
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unsigned int device_ledger::exchange(unsigned int ok, unsigned int mask) {
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unsigned int device_ledger::exchange(unsigned int ok, unsigned int mask) {
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logCMD();
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logCMD();
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this->length_recv = hw_device.exchange(this->buffer_send, this->length_send, this->buffer_recv, BUFFER_SEND_SIZE);
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this->length_recv = hw_device.exchange(this->buffer_send, this->length_send, this->buffer_recv, BUFFER_SEND_SIZE, false);
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ASSERT_X(this->length_recv>=2, "Communication error, less than tow bytes received");
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ASSERT_X(this->length_recv>=2, "Communication error, less than tow bytes received");
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this->length_recv -= 2;
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this->length_recv -= 2;
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@ -305,6 +313,25 @@ namespace hw {
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return this->sw;
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return this->sw;
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}
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}
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unsigned int device_ledger::exchange_wait_on_input(unsigned int ok, unsigned int mask) {
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logCMD();
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unsigned int deny = 0;
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this->length_recv = hw_device.exchange(this->buffer_send, this->length_send, this->buffer_recv, BUFFER_SEND_SIZE, true);
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ASSERT_X(this->length_recv>=2, "Communication error, less than two bytes received");
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this->length_recv -= 2;
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this->sw = (this->buffer_recv[length_recv]<<8) | this->buffer_recv[length_recv+1];
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if (this->sw == IO_SW_DENY) {
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// cancel on device
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deny = 1;
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} else {
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ASSERT_SW(this->sw,ok,msk);
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}
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logRESP();
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return deny;
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}
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void device_ledger::reset_buffer() {
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void device_ledger::reset_buffer() {
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this->length_send = 0;
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this->length_send = 0;
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memset(this->buffer_send, 0, BUFFER_SEND_SIZE);
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memset(this->buffer_send, 0, BUFFER_SEND_SIZE);
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@ -1260,7 +1287,8 @@ namespace hw {
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this->buffer_send[4] = offset-5;
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this->buffer_send[4] = offset-5;
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this->length_send = offset;
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this->length_send = offset;
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this->exchange();
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// check fee user input
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CHECK_AND_ASSERT_THROW_MES(this->exchange_wait_on_input() == 0, "Fee denied on device.");
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//pseudoOuts
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//pseudoOuts
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if (type == rct::RCTTypeSimple) {
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if (type == rct::RCTTypeSimple) {
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@ -1328,7 +1356,8 @@ namespace hw {
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this->buffer_send[4] = offset-5;
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this->buffer_send[4] = offset-5;
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this->length_send = offset;
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this->length_send = offset;
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this->exchange();
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// check transaction user input
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CHECK_AND_ASSERT_THROW_MES(this->exchange_wait_on_input() == 0, "Transaction denied on device.");
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#ifdef DEBUG_HWDEVICE
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#ifdef DEBUG_HWDEVICE
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hw::ledger::log_hexbuffer("Prehash AKV input", (char*)&this->buffer_recv[64], 3*32);
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hw::ledger::log_hexbuffer("Prehash AKV input", (char*)&this->buffer_recv[64], 3*32);
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#endif
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#endif
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@ -95,6 +95,7 @@ namespace hw {
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void logCMD(void);
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void logCMD(void);
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void logRESP(void);
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void logRESP(void);
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unsigned int exchange(unsigned int ok=0x9000, unsigned int mask=0xFFFF);
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unsigned int exchange(unsigned int ok=0x9000, unsigned int mask=0xFFFF);
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unsigned int exchange_wait_on_input(unsigned int ok=0x9000, unsigned int mask=0xFFFF);
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void reset_buffer(void);
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void reset_buffer(void);
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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(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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int set_command_header_noopt(unsigned char ins, unsigned char p1 = 0x00, unsigned char p2 = 0x00);
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