mirror of
https://github.com/Proxmark/proxmark3.git
synced 2025-07-29 19:18:35 -07:00
Minor changes in iso1443-standalone mode
This commit is contained in:
parent
865279ba89
commit
86a83668b5
1 changed files with 215 additions and 223 deletions
438
armsrc/appmain.c
438
armsrc/appmain.c
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@ -298,19 +298,13 @@ void SendVersion(void)
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cmd_send(CMD_ACK, *(AT91C_DBGU_CIDR), text_and_rodata_section_size + compressed_data_section_size, 0, VersionString, strlen(VersionString));
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cmd_send(CMD_ACK, *(AT91C_DBGU_CIDR), text_and_rodata_section_size + compressed_data_section_size, 0, VersionString, strlen(VersionString));
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}
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}
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#ifdef WITH_LF
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#if defined(WITH_ISO14443a_StandAlone) || defined(WITH_LF)
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#ifndef WITH_ISO14443a_StandAlone
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// samy's sniff and repeat routine
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void SamyRun()
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{
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DbpString("Stand-alone mode! No PC necessary.");
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FpgaDownloadAndGo(FPGA_BITSTREAM_LF);
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// 3 possible options? no just 2 for now
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#define OPTS 2
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#define OPTS 2
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int high[OPTS], low[OPTS];
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void StandAloneMode()
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{
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DbpString("Stand-alone mode! No PC necessary.");
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// Oooh pretty -- notify user we're in elite samy mode now
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// Oooh pretty -- notify user we're in elite samy mode now
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LED(LED_RED, 200);
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LED(LED_RED, 200);
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LED(LED_ORANGE, 200);
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LED(LED_ORANGE, 200);
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@ -322,6 +316,216 @@ void SamyRun()
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LED(LED_ORANGE, 200);
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LED(LED_ORANGE, 200);
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LED(LED_RED, 200);
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LED(LED_RED, 200);
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}
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#endif
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#ifdef WITH_ISO14443a_StandAlone
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void StandAloneMode14a()
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{
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StandAloneMode();
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FpgaDownloadAndGo(FPGA_BITSTREAM_HF);
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int selected = 0;
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int playing = 0;
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int cardRead[OPTS] = {0};
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uint8_t readUID[10] = {0};
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uint32_t uid_1st[OPTS]={0};
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uint32_t uid_2nd[OPTS]={0};
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LED(selected + 1, 0);
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for (;;)
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{
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usb_poll();
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WDT_HIT();
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// Was our button held down or pressed?
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int button_pressed = BUTTON_HELD(1000);
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SpinDelay(300);
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// Button was held for a second, begin recording
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if (button_pressed > 0 && cardRead[selected] == 0)
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{
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LEDsoff();
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LED(selected + 1, 0);
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LED(LED_RED2, 0);
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// record
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Dbprintf("Enabling iso14443a reader mode for [Bank: %u]...", selected);
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// wait for button to be released
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while(BUTTON_PRESS())
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WDT_HIT();
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/* need this delay to prevent catching some weird data */
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SpinDelay(500);
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/* Code for reading from 14a tag */
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uint8_t uid[10] ={0};
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uint32_t cuid;
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iso14443a_setup(FPGA_HF_ISO14443A_READER_MOD);
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for ( ; ; )
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{
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WDT_HIT();
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if (!iso14443a_select_card(uid, NULL, &cuid))
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continue;
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else
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{
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Dbprintf("Read UID:"); Dbhexdump(10,uid,0);
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memcpy(readUID,uid,10*sizeof(uint8_t));
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uint8_t *dst = (uint8_t *)&uid_1st[selected];
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// Set UID byte order
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for (int i=0; i<4; i++)
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dst[i] = uid[3-i];
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dst = (uint8_t *)&uid_2nd[selected];
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for (int i=0; i<4; i++)
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dst[i] = uid[7-i];
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break;
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}
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}
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LEDsoff();
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LED(LED_GREEN, 200);
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LED(LED_ORANGE, 200);
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LED(LED_GREEN, 200);
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LED(LED_ORANGE, 200);
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LEDsoff();
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LED(selected + 1, 0);
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// Finished recording
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// If we were previously playing, set playing off
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// so next button push begins playing what we recorded
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playing = 0;
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cardRead[selected] = 1;
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}
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/* MF UID clone */
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else if (button_pressed > 0 && cardRead[selected] == 1)
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{
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LEDsoff();
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LED(selected + 1, 0);
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LED(LED_ORANGE, 250);
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// record
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Dbprintf("Preparing to Clone card [Bank: %x]; uid: %08x", selected, uid_1st[selected]);
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// wait for button to be released
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while(BUTTON_PRESS())
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{
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// Delay cloning until card is in place
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WDT_HIT();
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}
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Dbprintf("Starting clone. [Bank: %u]", selected);
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// need this delay to prevent catching some weird data
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SpinDelay(500);
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// Begin clone function here:
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/* Example from client/mifarehost.c for commanding a block write for "magic Chinese" cards:
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UsbCommand c = {CMD_MIFARE_CSETBLOCK, {wantWipe, params & (0xFE | (uid == NULL ? 0:1)), blockNo}};
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memcpy(c.d.asBytes, data, 16);
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SendCommand(&c);
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Block read is similar:
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UsbCommand c = {CMD_MIFARE_CGETBLOCK, {params, 0, blockNo}};
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We need to imitate that call with blockNo 0 to set a uid.
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The get and set commands are handled in this file:
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// Work with "magic Chinese" card
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case CMD_MIFARE_CSETBLOCK:
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MifareCSetBlock(c->arg[0], c->arg[1], c->arg[2], c->d.asBytes);
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break;
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case CMD_MIFARE_CGETBLOCK:
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MifareCGetBlock(c->arg[0], c->arg[1], c->arg[2], c->d.asBytes);
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//
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break;
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mfCSetUID provides example logic for UID set workflow:
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-Read block0 from card in field with MifareCGetBlock()
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-Configure new values without replacing reserved bytes
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memcpy(block0, uid, 4); // Copy UID bytes from byte array
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// Mifare UID BCC
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block0[4] = block0[0]^block0[1]^block0[2]^block0[3]; // BCC on byte 5
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Bytes 5-7 are reserved SAK and ATQA for mifare classic
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-Use mfCSetBlock(0, block0, oldUID, wantWipe, CSETBLOCK_SINGLE_OPER) to write it
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*/
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uint8_t oldBlock0[16] = {0}, newBlock0[16] = {0}, testBlock0[16] = {0};
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// arg0 = Flags == CSETBLOCK_SINGLE_OPER=0x1F, arg1=returnSlot, arg2=blockNo
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MifareCGetBlock(0x1F, 1, 0, oldBlock0);
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Dbprintf("UID from target tag: %02X%02X%02X%02X", oldBlock0[0],oldBlock0[1],oldBlock0[2],oldBlock0[3]);
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memcpy(newBlock0,oldBlock0,16);
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// Copy uid_1st for bank (2nd is for longer UIDs not supported if classic)
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newBlock0[0] = uid_1st[selected]>>24;
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newBlock0[1] = 0xFF & (uid_1st[selected]>>16);
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newBlock0[2] = 0xFF & (uid_1st[selected]>>8);
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newBlock0[3] = 0xFF & (uid_1st[selected]);
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newBlock0[4] = newBlock0[0]^newBlock0[1]^newBlock0[2]^newBlock0[3];
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// arg0 = needWipe, arg1 = workFlags, arg2 = blockNo, datain
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MifareCSetBlock(0, 0xFF,0, newBlock0);
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MifareCGetBlock(0x1F, 1, 0, testBlock0);
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if (memcmp(testBlock0,newBlock0,16)==0)
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{
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DbpString("Cloned successfull!");
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cardRead[selected] = 0; // Only if the card was cloned successfully should we clear it
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}
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LEDsoff();
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LED(selected + 1, 0);
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// Finished recording
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// If we were previously playing, set playing off
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// so next button push begins playing what we recorded
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playing = 0;
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}
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// Change where to record (or begin playing)
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else if (button_pressed && cardRead[selected])
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{
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// Next option if we were previously playing
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if (playing)
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selected = (selected + 1) % OPTS;
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playing = !playing;
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LEDsoff();
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LED(selected + 1, 0);
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// Begin transmitting
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if (playing)
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{
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LED(LED_GREEN, 0);
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DbpString("Playing");
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while (!BUTTON_HELD(500)) { // Loop simulating tag until the button is held a half-sec
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Dbprintf("Simulating ISO14443a tag with uid[0]: %08x, uid[1]: %08x [Bank: %u]", uid_1st[selected],uid_2nd[selected],selected);
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SimulateIso14443aTag(1,uid_1st[selected],uid_2nd[selected],NULL);
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}
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//cardRead[selected] = 1;
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Dbprintf("Done playing [Bank: %u]",selected);
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/* We pressed a button so ignore it here with a delay */
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SpinDelay(300);
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// when done, we're done playing, move to next option
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selected = (selected + 1) % OPTS;
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playing = !playing;
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LEDsoff();
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LED(selected + 1, 0);
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}
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else
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while(BUTTON_PRESS())
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WDT_HIT();
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}
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}
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}
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#elif WITH_LF
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// samy's sniff and repeat routine
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void SamyRun()
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{
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StandAloneMode();
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FpgaDownloadAndGo(FPGA_BITSTREAM_LF);
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int high[OPTS], low[OPTS];
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int selected = 0;
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int selected = 0;
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int playing = 0;
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int playing = 0;
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int cardRead = 0;
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int cardRead = 0;
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@ -332,7 +536,7 @@ void SamyRun()
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for (;;)
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for (;;)
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{
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{
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usb_poll();
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usb_poll();
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WDT_HIT();
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WDT_HIT();
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// Was our button held down or pressed?
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// Was our button held down or pressed?
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int button_pressed = BUTTON_HELD(1000);
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int button_pressed = BUTTON_HELD(1000);
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@ -445,219 +649,7 @@ void SamyRun()
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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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#endif
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#endif
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#ifdef WITH_ISO14443a
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#ifdef WITH_ISO14443a_StandAlone
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void StandAloneMode14a()
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{
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DbpString("Stand-alone mode! No PC necessary.");
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FpgaDownloadAndGo(FPGA_BITSTREAM_HF);
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// 3 possible options? no just 1 for now
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#undef OPTS
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#define OPTS 2
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// Oooh pretty -- notify user we're in elite samy mode now
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LED(LED_RED, 200);
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LED(LED_ORANGE, 200);
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LED(LED_GREEN, 200);
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LED(LED_ORANGE, 200);
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LED(LED_RED, 200);
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LED(LED_ORANGE, 200);
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LED(LED_GREEN, 200);
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LED(LED_ORANGE, 200);
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LED(LED_RED, 200);
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int selected = 0;
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int playing = 0;
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int cardRead[OPTS] = {0};
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uint8_t readUID[10] = {0};
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int uid_1st[OPTS]={0};
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int uid_2nd[OPTS]={0};
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LED(selected + 1, 0);
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for (;;)
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{
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usb_poll();
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WDT_HIT();
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// Was our button held down or pressed?
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int button_pressed = BUTTON_HELD(1000);
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SpinDelay(300);
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// Button was held for a second, begin recording
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if (button_pressed > 0 && cardRead[selected] == 0)
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{
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LEDsoff();
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LED(selected + 1, 0);
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LED(LED_RED2, 0);
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// record
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Dbprintf("Enabling iso14443a reader mode for [Bank: %u]...", selected);
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// wait for button to be released
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while(BUTTON_PRESS())
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WDT_HIT();
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/* need this delay to prevent catching some weird data */
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SpinDelay(500);
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/* Code for reading from 14a tag */
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uint8_t uid[10] ={0};
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uint32_t cuid;
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iso14443a_setup(FPGA_HF_ISO14443A_READER_MOD);
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for ( ; ; )
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{
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if (!iso14443a_select_card(uid, NULL, &cuid))
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continue;
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else
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{
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Dbprintf("Read UID:"); Dbhexdump(10,uid,0);
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memcpy(readUID,uid,10*sizeof(uint8_t));
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uint8_t *dst = (uint8_t *)&uid_1st[selected];
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// Set UID byte order
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for (int i=0; i<4; i++)
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dst[i] = uid[3-i];
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dst = (uint8_t *)&uid_2nd[selected];
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for (int i=0; i<4; i++)
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dst[i] = uid[7-i];
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break;
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}
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}
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LEDsoff();
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LED(LED_GREEN, 200);
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LED(LED_ORANGE, 200);
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LED(LED_GREEN, 200);
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LED(LED_ORANGE, 200);
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LEDsoff();
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LED(selected + 1, 0);
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// Finished recording
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// If we were previously playing, set playing off
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// so next button push begins playing what we recorded
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playing = 0;
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cardRead[selected] = 1;
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}
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/* MF UID clone */
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else if (button_pressed > 0 && cardRead[selected] == 1)
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{
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LEDsoff();
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LED(selected + 1, 0);
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LED(LED_ORANGE, 250);
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// record
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Dbprintf("Preparing to Clone card [Bank: %x]; uid: %08x", selected, uid_1st[selected]);
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// wait for button to be released
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while(BUTTON_PRESS())
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{
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// Delay cloning until card is in place
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WDT_HIT();
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}
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Dbprintf("Starting clone. [Bank: %u]", selected);
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// need this delay to prevent catching some weird data
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SpinDelay(500);
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// Begin clone function here:
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/* Example from client/mifarehost.c for commanding a block write for "magic Chinese" cards:
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UsbCommand c = {CMD_MIFARE_CSETBLOCK, {wantWipe, params & (0xFE | (uid == NULL ? 0:1)), blockNo}};
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memcpy(c.d.asBytes, data, 16);
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SendCommand(&c);
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Block read is similar:
|
|
||||||
UsbCommand c = {CMD_MIFARE_CGETBLOCK, {params, 0, blockNo}};
|
|
||||||
We need to imitate that call with blockNo 0 to set a uid.
|
|
||||||
|
|
||||||
The get and set commands are handled in this file:
|
|
||||||
// Work with "magic Chinese" card
|
|
||||||
case CMD_MIFARE_CSETBLOCK:
|
|
||||||
MifareCSetBlock(c->arg[0], c->arg[1], c->arg[2], c->d.asBytes);
|
|
||||||
break;
|
|
||||||
case CMD_MIFARE_CGETBLOCK:
|
|
||||||
MifareCGetBlock(c->arg[0], c->arg[1], c->arg[2], c->d.asBytes);
|
|
||||||
//
|
|
||||||
break;
|
|
||||||
|
|
||||||
mfCSetUID provides example logic for UID set workflow:
|
|
||||||
-Read block0 from card in field with MifareCGetBlock()
|
|
||||||
-Configure new values without replacing reserved bytes
|
|
||||||
memcpy(block0, uid, 4); // Copy UID bytes from byte array
|
|
||||||
// Mifare UID BCC
|
|
||||||
block0[4] = block0[0]^block0[1]^block0[2]^block0[3]; // BCC on byte 5
|
|
||||||
Bytes 5-7 are reserved SAK and ATQA for mifare classic
|
|
||||||
-Use mfCSetBlock(0, block0, oldUID, wantWipe, CSETBLOCK_SINGLE_OPER) to write it
|
|
||||||
*/
|
|
||||||
uint8_t oldBlock0[16] = {0}, newBlock0[16] = {0}, testBlock0[16] = {0};
|
|
||||||
// arg0 = Flags == CSETBLOCK_SINGLE_OPER=0x1F, arg1=returnSlot, arg2=blockNo
|
|
||||||
MifareCGetBlock(0x1F, 1, 0, oldBlock0);
|
|
||||||
Dbprintf("UID from target tag: %02X%02X%02X%02X", oldBlock0[0],oldBlock0[1],oldBlock0[2],oldBlock0[3]);
|
|
||||||
memcpy(newBlock0,oldBlock0,16);
|
|
||||||
// Copy uid_1st for bank (2nd is for longer UIDs not supported if classic)
|
|
||||||
newBlock0[0] = uid_1st[selected]>>24;
|
|
||||||
newBlock0[1] = 0xFF & (uid_1st[selected]>>16);
|
|
||||||
newBlock0[2] = 0xFF & (uid_1st[selected]>>8);
|
|
||||||
newBlock0[3] = 0xFF & (uid_1st[selected]);
|
|
||||||
newBlock0[4] = newBlock0[0]^newBlock0[1]^newBlock0[2]^newBlock0[3];
|
|
||||||
// arg0 = needWipe, arg1 = workFlags, arg2 = blockNo, datain
|
|
||||||
MifareCSetBlock(0, 0xFF,0, newBlock0);
|
|
||||||
MifareCGetBlock(0x1F, 1, 0, testBlock0);
|
|
||||||
if (memcmp(testBlock0,newBlock0,16)==0)
|
|
||||||
{
|
|
||||||
DbpString("Cloned successfull!");
|
|
||||||
cardRead[selected] = 0; // Only if the card was cloned successfully should we clear it
|
|
||||||
}
|
|
||||||
LEDsoff();
|
|
||||||
LED(selected + 1, 0);
|
|
||||||
// Finished recording
|
|
||||||
|
|
||||||
// If we were previously playing, set playing off
|
|
||||||
// so next button push begins playing what we recorded
|
|
||||||
playing = 0;
|
|
||||||
|
|
||||||
}
|
|
||||||
// Change where to record (or begin playing)
|
|
||||||
else if (button_pressed && cardRead[selected])
|
|
||||||
{
|
|
||||||
// Next option if we were previously playing
|
|
||||||
if (playing)
|
|
||||||
selected = (selected + 1) % OPTS;
|
|
||||||
playing = !playing;
|
|
||||||
|
|
||||||
LEDsoff();
|
|
||||||
LED(selected + 1, 0);
|
|
||||||
|
|
||||||
// Begin transmitting
|
|
||||||
if (playing)
|
|
||||||
{
|
|
||||||
LED(LED_GREEN, 0);
|
|
||||||
DbpString("Playing");
|
|
||||||
while (!BUTTON_HELD(500)) { // Loop simulating tag until the button is held a half-sec
|
|
||||||
Dbprintf("Simulating ISO14443a tag with uid[0]: %08x, uid[1]: %08x [Bank: %u]", uid_1st[selected],uid_2nd[selected],selected);
|
|
||||||
SimulateIso14443aTag(1,uid_1st[selected],uid_2nd[selected],NULL);
|
|
||||||
}
|
|
||||||
//cardRead[selected] = 1;
|
|
||||||
Dbprintf("Done playing [Bank: %u]",selected);
|
|
||||||
|
|
||||||
/* We pressed a button so ignore it here with a delay */
|
|
||||||
SpinDelay(300);
|
|
||||||
|
|
||||||
// when done, we're done playing, move to next option
|
|
||||||
selected = (selected + 1) % OPTS;
|
|
||||||
playing = !playing;
|
|
||||||
LEDsoff();
|
|
||||||
LED(selected + 1, 0);
|
|
||||||
}
|
|
||||||
else
|
|
||||||
while(BUTTON_PRESS())
|
|
||||||
WDT_HIT();
|
|
||||||
}
|
|
||||||
}
|
|
||||||
}
|
|
||||||
#endif
|
|
||||||
#endif
|
#endif
|
||||||
/*
|
/*
|
||||||
OBJECTIVE
|
OBJECTIVE
|
||||||
|
|
Loading…
Add table
Add a link
Reference in a new issue