mirror of
https://github.com/RfidResearchGroup/proxmark3.git
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bb529a9077
No need to wait for 2.5s (1s + FPGA_LOAD_WAIT_TIME) if the real-time sampling stops. Make sure the LF bitstream is loaded before real-time sampling so the response of CMD_WTX won't appear.
179 lines
8.1 KiB
C
179 lines
8.1 KiB
C
//-----------------------------------------------------------------------------
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// Copyright (C) Proxmark3 contributors. See AUTHORS.md for details.
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// See LICENSE.txt for the text of the license.
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//-----------------------------------------------------------------------------
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// Routines to load the FPGA image, and then to configure the FPGA's major
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// mode once it is configured.
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//-----------------------------------------------------------------------------
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#ifndef __FPGALOADER_H
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#define __FPGALOADER_H
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#include "common.h"
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#define FpgaDisableSscDma(void) AT91C_BASE_PDC_SSC->PDC_PTCR = AT91C_PDC_RXTDIS;
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#define FpgaEnableSscDma(void) AT91C_BASE_PDC_SSC->PDC_PTCR = AT91C_PDC_RXTEN;
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/*
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Communication between ARM / FPGA is done inside armsrc/fpgaloader.c see: function FpgaSendCommand()
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Send 16 bit command / data pair to FPGA with the bit format:
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+------ frame layout circa 2020 ------------------+
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| 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 |
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+-------------------------------------------------+
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| C C C C M M M M P P P P P P P P | C = FPGA_CMD_SET_CONFREG, M = FPGA_MAJOR_MODE_*, P = FPGA_LF_* or FPGA_HF_* parameter
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| C C C C D D D D D D D D | C = FPGA_CMD_SET_DIVISOR, D = divisor
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| C C C C T T T T T T T T | C = FPGA_CMD_SET_EDGE_DETECT_THRESHOLD, T = threshold
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| C C C C E | C = FPGA_CMD_TRACE_ENABLE, E=0 off, E=1 on
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+-------------------------------------------------+
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+------ frame layout current ---------------------+
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| 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 |
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+-------------------------------------------------+
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| C C C C M M M P P P P P P | C = FPGA_CMD_SET_CONFREG, M = FPGA_MAJOR_MODE_*, P = FPGA_LF_* or FPGA_HF_* parameter
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| C C C C D D D D D D D D | C = FPGA_CMD_SET_DIVISOR, D = divisor
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| C C C C T T T T T T T T | C = FPGA_CMD_SET_EDGE_DETECT_THRESHOLD, T = threshold
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| C C C C E | C = FPGA_CMD_TRACE_ENABLE, E=0 off, E=1 on
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+-------------------------------------------------+
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shift_reg receive this 16bit frame
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LF command
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----------
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shift_reg[15:12] == 4bit command
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LF has three commands (FPGA_CMD_SET_CONFREG, FPGA_CMD_SET_DIVISOR, FPGA_CMD_SET_EDGE_DETECT_THRESHOLD)
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Current commands uses only 2bits. We have room for up to 4bits of commands total (7).
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LF data
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-------
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shift_reg[11:0] == 12bit data
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lf data is divided into MAJOR MODES and configuration values.
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The major modes uses 3bits (0,1,2,3,7 | 000, 001, 010, 011, 111)
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000 FPGA_MAJOR_MODE_LF_READER = Act as LF reader (modulate)
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001 FPGA_MAJOR_MODE_LF_EDGE_DETECT = Simulate LF
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010 FPGA_MAJOR_MODE_LF_PASSTHRU = Passthrough mode, CROSS_LO line connected to SSP_DIN. SSP_DOUT logic level controls if we modulate / listening
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011 FPGA_MAJOR_MODE_LF_ADC = refactor hitag2, clear ADC sampling
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111 FPGA_MAJOR_MODE_OFF = turn off sampling.
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Each one of this major modes can have options. Currently these two major modes uses options.
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- FPGA_MAJOR_MODE_LF_READER
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- FPGA_MAJOR_MODE_LF_EDGE_DETECT
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FPGA_MAJOR_MODE_LF_READER
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-------------------------------------
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lf_field = 1bit (FPGA_LF_ADC_READER_FIELD)
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You can send FPGA_CMD_SET_DIVISOR to set with FREQUENCY the fpga should sample at
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divisor = 8bits shift_reg[7:0]
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FPGA_MAJOR_MODE_LF_EDGE_DETECT
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------------------------------------------
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lf_ed_toggle_mode = 1bits
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lf_ed_threshold = 8bits threshold defaults to 127
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You can send FPGA_CMD_SET_EDGE_DETECT_THRESHOLD to set a custom threshold
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lf_ed_threshold = 8bits threshold value.
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conf_word 12bits
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conf_word[7:5] = 3bit major mode.
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conf_word[0] = 1bit lf_field
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conf_word[1] = 1bit lf_ed_toggle_mode
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conf_word[7:0] = 8bit divisor
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conf_word[7:0] = 8bit threshold
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*/
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// Defining commands, modes and options. This must be aligned to the definitions in fpga/define.v
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#define FPGA_MAJOR_MODE_MASK 0x01C0
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#define FPGA_MINOR_MODE_MASK 0x003F
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// Definitions for the FPGA commands.
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#define FPGA_CMD_SET_CONFREG (1<<12)
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#define FPGA_CMD_SET_DIVISOR (2<<12)
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#define FPGA_CMD_SET_EDGE_DETECT_THRESHOLD (3<<12)
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#define FPGA_CMD_TRACE_ENABLE (2<<12)
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// Major modes
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#define FPGA_MAJOR_MODE_LF_READER (0<<6)
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#define FPGA_MAJOR_MODE_LF_EDGE_DETECT (1<<6)
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#define FPGA_MAJOR_MODE_LF_PASSTHRU (2<<6)
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#define FPGA_MAJOR_MODE_LF_ADC (3<<6)
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#define FPGA_MAJOR_MODE_HF_READER (0<<6)
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#define FPGA_MAJOR_MODE_HF_SIMULATOR (1<<6)
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#define FPGA_MAJOR_MODE_HF_ISO14443A (2<<6)
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#define FPGA_MAJOR_MODE_HF_SNIFF (3<<6)
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#define FPGA_MAJOR_MODE_HF_ISO18092 (4<<6)
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#define FPGA_MAJOR_MODE_HF_GET_TRACE (5<<6)
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#define FPGA_MAJOR_MODE_OFF (7<<6)
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// Options for LF_READER
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#define FPGA_LF_ADC_READER_FIELD ( 1 )
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// Options for LF_EDGE_DETECT
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#define FPGA_LF_EDGE_DETECT_READER_FIELD ( 1 )
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#define FPGA_LF_EDGE_DETECT_TOGGLE_MODE ( 2 )
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// Options for the generic HF reader
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#define FPGA_HF_READER_MODE_RECEIVE_IQ ( 0 )
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#define FPGA_HF_READER_MODE_RECEIVE_AMPLITUDE ( 1 )
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#define FPGA_HF_READER_MODE_RECEIVE_PHASE ( 2 )
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#define FPGA_HF_READER_MODE_SEND_FULL_MOD ( 3 )
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#define FPGA_HF_READER_MODE_SEND_SHALLOW_MOD ( 4 )
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#define FPGA_HF_READER_MODE_SNIFF_IQ ( 5 )
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#define FPGA_HF_READER_MODE_SNIFF_AMPLITUDE ( 6 )
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#define FPGA_HF_READER_MODE_SNIFF_PHASE ( 7 )
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#define FPGA_HF_READER_MODE_SEND_JAM ( 8 )
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#define FPGA_HF_READER_MODE_SEND_SHALLOW_MOD_RDV4 ( 9 )
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#define FPGA_HF_READER_SUBCARRIER_848_KHZ (0<<4)
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#define FPGA_HF_READER_SUBCARRIER_424_KHZ (1<<4)
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#define FPGA_HF_READER_SUBCARRIER_212_KHZ (2<<4)
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#define FPGA_HF_READER_2SUBCARRIERS_424_484_KHZ (3<<4)
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// Options for the HF simulated tag, how to modulate
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#define FPGA_HF_SIMULATOR_NO_MODULATION ( 0 )
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#define FPGA_HF_SIMULATOR_MODULATE_BPSK ( 1 )
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#define FPGA_HF_SIMULATOR_MODULATE_212K ( 2 )
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#define FPGA_HF_SIMULATOR_MODULATE_424K ( 4 )
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#define FPGA_HF_SIMULATOR_MODULATE_424K_8BIT ( 5 )
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// Options for ISO14443A
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#define FPGA_HF_ISO14443A_SNIFFER ( 0 )
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#define FPGA_HF_ISO14443A_TAGSIM_LISTEN ( 1 )
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#define FPGA_HF_ISO14443A_TAGSIM_MOD ( 2 )
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#define FPGA_HF_ISO14443A_READER_LISTEN ( 3 )
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#define FPGA_HF_ISO14443A_READER_MOD ( 4 )
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// Options for ISO18092 / Felica
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#define FPGA_HF_ISO18092_FLAG_NOMOD ( 1 ) // 0001 disable modulation module
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#define FPGA_HF_ISO18092_FLAG_424K ( 2 ) // 0010 should enable 414k mode (untested). No autodetect
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#define FPGA_HF_ISO18092_FLAG_READER ( 4 ) // 0100 enables antenna power, to act as a reader instead of tag
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void FpgaSendCommand(uint16_t cmd, uint16_t v);
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void FpgaWriteConfWord(uint16_t v);
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void FpgaEnableTracing(void);
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void FpgaDisableTracing(void);
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void FpgaDownloadAndGo(int bitstream_version);
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// void FpgaGatherVersion(int bitstream_version, char *dst, int len);
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void FpgaSetupSsc(uint16_t fpga_mode);
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void SetupSpi(int mode);
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bool FpgaSetupSscDma(uint8_t *buf, uint16_t len);
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void Fpga_print_status(void);
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int FpgaGetCurrent(void);
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void SetAdcMuxFor(uint32_t whichGpio);
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// extern and generel turn off the antenna method
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void switch_off(void);
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#endif
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