Merge branch 'fix_mifare_sim' of https://github.com/pwpiwi/proxmark3 into fix_mifare_sim

This commit is contained in:
pwpiwi 2019-04-18 22:08:27 +02:00
commit 1cdd82400b
6 changed files with 38 additions and 17 deletions

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@ -31,6 +31,7 @@ This project uses the changelog in accordance with [keepchangelog](http://keepac
- Added `hf mfp mad` `hf mf mad` parsing MAD1 and MAD2 (Merlok) - Added `hf mfp mad` `hf mf mad` parsing MAD1 and MAD2 (Merlok)
- Added `hf mfp ndef` `hf mf ndef` parsing NDEF records (Merlok) - Added `hf mfp ndef` `hf mf ndef` parsing NDEF records (Merlok)
- Added Mifare Mini, Mifare 2K and 4K support to `hf mf sim` (piwi) - Added Mifare Mini, Mifare 2K and 4K support to `hf mf sim` (piwi)
- Added Legic detection to `hf search` (dnet)
## [v3.1.0][2018-10-10] ## [v3.1.0][2018-10-10]

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@ -379,8 +379,9 @@ void LegicRfReader(int offset, int bytes) {
// establish shared secret and detect card type // establish shared secret and detect card type
DbpString("Reading card ..."); DbpString("Reading card ...");
uint8_t card_type = setup_phase(SESSION_IV); uint8_t card_type = setup_phase(SESSION_IV);
uint8_t result = 0;
if(init_card(card_type, &card) != 0) { if(init_card(card_type, &card) != 0) {
Dbprintf("No or unknown card found, aborting"); result = 1;
goto OUT; goto OUT;
} }
@ -397,17 +398,14 @@ void LegicRfReader(int offset, int bytes) {
for(uint16_t i = 0; i < bytes; ++i) { for(uint16_t i = 0; i < bytes; ++i) {
int16_t byte = read_byte(offset + i, card.cmdsize); int16_t byte = read_byte(offset + i, card.cmdsize);
if(byte == -1) { if(byte == -1) {
Dbprintf("operation failed @ 0x%03.3x", bytes); result = 2;
goto OUT; goto OUT;
} }
BigBuf[i] = byte; BigBuf[i] = byte;
} }
// OK
Dbprintf("Card (MIM %i) read, use 'hf legic decode' or", card.cardsize);
Dbprintf("'data hexsamples %d' to view results", (bytes+7) & ~7);
OUT: OUT:
cmd_send(CMD_ACK, result, bytes, 0, &card, sizeof(card));
FpgaWriteConfWord(FPGA_MAJOR_MODE_OFF); FpgaWriteConfWord(FPGA_MAJOR_MODE_OFF);
LED_B_OFF(); LED_B_OFF();
LED_C_OFF(); LED_C_OFF();

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@ -367,18 +367,20 @@ int Cmdmandecoderaw(const char *Cmd)
return 1; return 1;
} }
//by marshmellow /**
//biphase decode * @author marshmellow
//take 01 or 10 = 0 and 11 or 00 = 1 * biphase decode
//takes 2 arguments "offset" default = 0 if 1 it will shift the decode by one bit * decdoes 01 or 10 to 0 and 11 or 00 to 1
// and "invert" default = 0 if 1 it will invert output * param offset adjust start position
// the argument offset allows us to manually shift if the output is incorrect - [EDIT: now auto detects] * param invert invert output
* param maxErr maximum tolerated errors
*/
int CmdBiphaseDecodeRaw(const char *Cmd) int CmdBiphaseDecodeRaw(const char *Cmd)
{ {
size_t size=0; size_t size=0;
int offset=0, invert=0, maxErr=20, errCnt=0; int offset=0, invert=0, maxErr=20, errCnt=0;
char cmdp = param_getchar(Cmd, 0); char cmdp = param_getchar(Cmd, 0);
if (strlen(Cmd) > 3 || cmdp == 'h' || cmdp == 'H') { if (strlen(Cmd) > 7 || cmdp == 'h' || cmdp == 'H') {
PrintAndLog("Usage: data biphaserawdecode [offset] [invert] [maxErr]"); PrintAndLog("Usage: data biphaserawdecode [offset] [invert] [maxErr]");
PrintAndLog(" Converts 10 or 01 to 1 and 11 or 00 to 0"); PrintAndLog(" Converts 10 or 01 to 1 and 11 or 00 to 0");
PrintAndLog(" --must have binary sequence in demodbuffer (run data askrawdemod first)"); PrintAndLog(" --must have binary sequence in demodbuffer (run data askrawdemod first)");
@ -427,7 +429,7 @@ int CmdBiphaseDecodeRaw(const char *Cmd)
int ASKbiphaseDemod(const char *Cmd, bool verbose) int ASKbiphaseDemod(const char *Cmd, bool verbose)
{ {
//ask raw demod GraphBuffer first //ask raw demod GraphBuffer first
int offset=0, clk=0, invert=0, maxErr=0; int offset=0, clk=0, invert=0, maxErr=100;
sscanf(Cmd, "%i %i %i %i", &offset, &clk, &invert, &maxErr); sscanf(Cmd, "%i %i %i %i", &offset, &clk, &invert, &maxErr);
uint8_t BitStream[MAX_GRAPH_TRACE_LEN]; uint8_t BitStream[MAX_GRAPH_TRACE_LEN];

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@ -66,6 +66,11 @@ int CmdHFSearch(const char *Cmd){
PrintAndLog("\nValid ISO14443B Tag Found - Quiting Search\n"); PrintAndLog("\nValid ISO14443B Tag Found - Quiting Search\n");
return ans; return ans;
} }
ans = CmdLegicRFRead("");
if (ans == 0) {
PrintAndLog("\nValid Legic Tag Found - Quiting Search\n");
return ans;
}
PrintAndLog("\nno known/supported 13.56 MHz tags found\n"); PrintAndLog("\nno known/supported 13.56 MHz tags found\n");
return 0; return 0;
} }

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@ -18,6 +18,7 @@
#include "cmdparser.h" #include "cmdparser.h"
#include "cmdmain.h" #include "cmdmain.h"
#include "util.h" #include "util.h"
#include "../include/legic.h"
static int CmdHelp(const char *Cmd); static int CmdHelp(const char *Cmd);
@ -214,7 +215,21 @@ int CmdLegicRFRead(const char *Cmd)
if(byte_count + offset > 1024) byte_count = 1024 - offset; if(byte_count + offset > 1024) byte_count = 1024 - offset;
UsbCommand c={CMD_READER_LEGIC_RF, {offset, byte_count, 0}}; UsbCommand c={CMD_READER_LEGIC_RF, {offset, byte_count, 0}};
SendCommand(&c); SendCommand(&c);
return 0; UsbCommand resp;
WaitForResponse(CMD_ACK,&resp);
switch (resp.arg[0]) {
case 0:
PrintAndLog("Card (MIM %i) read, use 'hf legic decode' or", ((legic_card_select_t*)resp.d.asBytes)->cardsize);
PrintAndLog("'data hexsamples %d' to view results", (resp.arg[1] + 7) & ~7);
break;
case 1:
PrintAndLog("No or unknown card found, aborting");
break;
case 2:
PrintAndLog("operation failed @ 0x%03.3x", resp.arg[1]);
break;
}
return resp.arg[0];
} }
int CmdLegicLoad(const char *Cmd) int CmdLegicLoad(const char *Cmd)

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@ -137,7 +137,7 @@ int CmdFdxDemod(const char *Cmd){
//Differential Biphase / di-phase (inverted biphase) //Differential Biphase / di-phase (inverted biphase)
//get binary from ask wave //get binary from ask wave
if (!ASKbiphaseDemod("0 32 1 0", false)) { if (!ASKbiphaseDemod("0 32 1 100", false)) {
if (g_debugMode) PrintAndLog("DEBUG: Error - FDX-B ASKbiphaseDemod failed"); if (g_debugMode) PrintAndLog("DEBUG: Error - FDX-B ASKbiphaseDemod failed");
return 0; return 0;
} }
@ -206,7 +206,7 @@ int CmdFdxDemod(const char *Cmd){
} }
int CmdFdxRead(const char *Cmd) { int CmdFdxRead(const char *Cmd) {
lf_read(true, 10000); lf_read(true, 39999);
return CmdFdxDemod(Cmd); return CmdFdxDemod(Cmd);
} }