mirror of
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768 lines
22 KiB
Markdown
768 lines
22 KiB
Markdown
<a id="Top"></a>
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# Command Cheat Sheet
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|Generic|Low Frequency 125 kHz|High Frequency 13.56 MHz|
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|---|---|---|
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|[Generic](#Generic)|[T55XX](#T55XX)|[MIFARE](#MIFARE)|
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|[Data](#Data)|[HID Prox](#HID-Prox)|[iCLASS](#iCLASS)|
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|[Memory](#Memory)|[Indala](#Indala)||
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|[Sim Module](#Sim-Module)|[Hitag](#Hitag)||
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|[Lua Scripts](#Lua-Scripts)|||
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|[Smart Card](#Smart-Card)|||
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|[Wiegand convertion](#Wiegand-manipulation)|||
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## Generic
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^[Top](#top)
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Identify High Frequency cards
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```
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pm3 --> hf search
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```
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Identify Low Frequency cards
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```
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pm3 --> lf search
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```
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Measure antenna characteristics, LF/HF voltage should be around 20-45+ V
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```
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pm3 --> hw tune
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```
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Check versioning
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```
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pm3 --> hw version
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```
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Check overall status
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```
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pm3 --> hw status
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```
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## iCLASS
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^[Top](#top)
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Reverse permute iCLASS master key
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```
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Options
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---
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-r --reverse : reverse permuted key
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--key <bytes> : input key
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pm3 --> hf iclass permute --reverse --key 3F90EBF0910F7B6F
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```
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iCLASS Reader
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```
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pm3 --> hf iclass reader
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```
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Dump iCLASS card contents
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```
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Options
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---
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-f, --file <filename> filename to save dump to
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-k, --key <hex> debit key as 16 hex symbols OR NR/MAC for replay
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--ki <dec> debit key index to select key from memory 'hf iclass managekeys'
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--credit <hex> credit key as 16 hex symbols
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--ci <dec> credit key index to select key from memory 'hf iclass managekeys'
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--elite elite computations applied to key
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--raw raw, the key is interpreted as raw block 3/4
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--nr replay of NR/MAC
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pm3 --> hf iclass dump --ki 0
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```
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Read iCLASS Block
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```
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Options
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---
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-k, --key <hex> Access key as 16 hex symbols
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--blk <dec> The block number to read as an integer
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--ki <dec> Key index to select key from memory 'hf iclass managekeys'
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--credit key is assumed to be the credit key
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--elite elite computations applied to key
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--raw no computations applied to key (raw)
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--nr replay of NR/MAC
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pm3 --> hf iclass rdbl -b 7 --ki 0
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```
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Write to iCLASS Block
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```
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Options
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---
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-k, --key <hex> Access key as 16 hex symbols
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--blk <dec> The block number to read as an integer
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-d, --data <hex> data to write as 16 hex symbols
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--ki <dec> Key index to select key from memory 'hf iclass managekeys'
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--credit key is assumed to be the credit key
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--elite elite computations applied to key
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--raw no computations applied to key (raw)
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--nr replay of NR/MAC
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pm3 --> hf iclass wrbl -b 7 -d 6ce099fe7e614fd0 --ki 0
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```
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Print keystore
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```
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Options
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---
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-p, --print Print keys loaded into memory
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pm3 --> hf iclass managekeys -p
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```
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Add key to keystore [0-7]
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```
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Options
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---
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-f, --file <filename> Specify a filename to use with load or save operations
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--ki <dec> Specify key index to set key in memory
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pm3 --> hf iclass managekeys --ki 3 -k AFA785A7DAB33378
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```
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Encrypt iCLASS Block
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```
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Options
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---
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-d, --data <hex> data to encrypt
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-k, --key <hex> 3DES transport key
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-v, --verbose verbose output
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pm3 --> hf iclass encrypt -d 0000000f2aa3dba8
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```
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Decrypt iCLASS Block / file
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```
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Options
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---
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-f, --file <filename> Specify a filename for dump file
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-d, --data <hex> 3DES encrypted data
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-k, --key <hex> 3DES transport key
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-v, --verbose verbose output
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pm3 --> hf iclass decrypt -d 2AD4C8211F996871
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pm3 --> hf iclass decrypt -f hf-iclass-db883702f8ff12e0.bin
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```
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Load iCLASS dump into memory for simulation
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```
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Options
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---
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-f, --file <filename> Specify a filename for dump file
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--json load JSON type dump
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--eml load EML type dump
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pm3 --> hf iclass eload -f hf-iclass-db883702f8ff12e0.bin
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```
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Clone iCLASS Legacy Sequence
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```
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pm3 --> hf iclass rdbl -b 7 --ki 0
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pm3 --> hf iclass wrbl -b 7 -d 6ce099fe7e614fd0 --ki 0
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```
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Simulate iCLASS
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```
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Options
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---
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-t, --type <int> Simulation type to use
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--csn <hex> Specify CSN as 8 bytes (16 hex symbols) to use with sim type 0
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Types:
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0 simulate the given CSN
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1 simulate default CSN
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2 runs online part of LOCLASS attack
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3 full simulation using emulator memory (see 'hf iclass eload')
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4 runs online part of LOCLASS attack against reader in keyroll mode
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pm3 --> hf iclass sim -t 3
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```
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Simulate iCLASS Sequence
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```
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pm3 --> hf iclass dump --ki 0
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pm3 --> hf iclass eload -f hf-iclass-db883702f8ff12e0.bin
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pm3 --> hf iclass sim -t 3
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```
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Extract custom iCLASS key (loclass attack)
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```
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Options
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---
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-f <filename> specify a filename to clone from
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-k <key> Access Key as 16 hex symbols or 1 hex to select key from memory
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--elite Elite computations applied to key
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pm3 --> hf iclass sim -t 2
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pm3 --> hf iclass loclass -f iclass_mac_attack.bin
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pm3 --> hf iclass managekeys --ki 7 -k <Kcus>
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pm3 --> hf iclass dump --ki 7 --elite
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```
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Verify custom iCLASS key
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```
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options
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---
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-f, --file <filename> Dictionary file with default iclass keys
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--csn <hex> Specify CSN as 8 bytes (16 hex symbols)
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--epurse <hex> Specify ePurse as 8 bytes (16 hex symbols)
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--macs <hex> MACs
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--raw no computations applied to key (raw)
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--elite Elite computations applied to key
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pm3 --> hf iclass lookup --csn 010a0ffff7ff12e0 --epurse feffffffffffffff --macs 66348979153c41b9 -f iclass_default_keys --elite
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```
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## MIFARE
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^[Top](#top)
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Check for default keys
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```
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options
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---
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-k, --key <hex> Key specified as 12 hex symbols
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--blk <dec> Input block number
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-a Target Key A, if found also check Key B for duplicate
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-b Target Key B
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-*, --all Target both key A & B (default)
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--mini MIFARE Classic Mini / S20
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--1k MIFARE Classic 1k / S50 (default)
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--2k MIFARE Classic/Plus 2k
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--4k MIFARE Classic 4k / S70
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--emu Fill simulator keys from found keys
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--dump Dump found keys to binary file
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-f, --file <filename> filename of dictionary
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pm3 --> hf mf chk --1k -f mfc_default_keys
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```
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Check for default keys from local memory
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```
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Options
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---
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-k, --key <hex> Key specified as 12 hex symbols
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--mini MIFARE Classic Mini / S20
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--1k MIFARE Classic 1k / S50 (default)
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--2k MIFARE Classic/Plus 2k
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--4k MIFARE Classic 4k / S70
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--emu Fill simulator keys from found keys
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--dump Dump found keys to binary file
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--mem Use dictionary from flashmemory
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-f, --file <filename> filename of dictionary
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pm3 --> hf mf fchk --1k --mem
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```
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Dump MIFARE Classic card contents
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```
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Options:
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---
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-f, --file <filename> Specify a filename for dump file
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-k, --keys <filename> Specify a filename for keys file
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--mini MIFARE Classic Mini / S20
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--1k MIFARE Classic 1k / S50 (default)
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--2k MIFARE Classic/Plus 2k
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--4k MIFARE Classic 4k / S70
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pm3 --> hf mf dump
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pm3 --> hf mf dump --1k -k hf-mf-A29558E4-key.bin -f hf-mf-A29558E4-dump.bin
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```
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Write to MIFARE Classic block
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```
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Options:
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---
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--blk <dec> block number
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-a input key type is key A (def)
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-b input key type is key B
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-k, --key <hex> key, 6 hex bytes
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-d, --data <hex> bytes to write, 16 hex bytes
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pm3 --> hf mf wrbl --blk 0 -k FFFFFFFFFFFF -d d3a2859f6b880400c801002000000016
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```
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Run autopwn, to extract all keys and backup a MIFARE Classic tag
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```
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Options:
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---
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-k, --key <hex> Known key, 12 hex bytes
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-s, --sector <dec> Input sector number
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-a Input key A (def)
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-b Input key B
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-f, --file <fn> filename of dictionary
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-s, --slow Slower acquisition (required by some non standard cards)
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-l, --legacy legacy mode (use the slow `hf mf chk`)
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-v, --verbose verbose output (statistics)
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--mini MIFARE Classic Mini / S20
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--1k MIFARE Classic 1k / S50 (default)
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--2k MIFARE Classic/Plus 2k
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--4k MIFARE Classic 4k / S70
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pm3 --> hf mf autopwn
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// target MFC 1K card, Sector 0 with known key A 'FFFFFFFFFFFF'
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pm3 --> hf mf autopwn -s 0 -a -k FFFFFFFFFFFF
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// target MFC 1K card, default dictionary
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pm3 --> hf mf autopwn --1k -f mfc_default_keys
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```
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Run hardnested attack
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```
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Options
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---
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-k, --key <hex> Key, 12 hex bytes
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--blk <dec> Input block number
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-a Input key A (def)
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-b Input key B
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--tblk <dec> Target block number
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--ta Target key A
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--tb Target key B
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--tk <hex> Target key, 12 hex bytes
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-f, --file <fn> R/W <name> instead of default name
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-s, --slow Slower acquisition (required by some non standard cards)
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-w, --wr Acquire nonces and UID, and write them to file `hf-mf-<UID>-nonces.bin`
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pm3 --> hf mf hardnested --blk 0 -a -k 8829da9daf76 --tblk 4 --ta -w
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```
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Load MIFARE Classic dump file into emulator memory for simulation
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Accepts (BIN/EML/JSON)
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```
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Options
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---
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-f, --file <fn> Specify a filename for dump file
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--mini MIFARE Classic Mini / S20
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--1k MIFARE Classic 1k / S50 (def)
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--2k MIFARE Classic/Plus 2k
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--4k MIFARE Classic 4k / S70
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--ul MIFARE Ultralight family
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-q, --qty <dec> manually set number of blocks (overrides)
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pm3 --> hf mf eload -f hf-mf-353C2AA6-dump.bin
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pm3 --> hf mf eload --1k -f hf-mf-353C2AA6-dump.bin
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```
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Simulate MIFARE
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```
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u : (Optional) UID 4,7 or 10 bytes. If not specified, the UID 4B from emulator memory will be used
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pm3 --> hf mf sim -u 353c2aa6
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```
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Simulate MIFARE Sequence
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```
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pm3 --> hf mf fchk --1k -f mfc_default_keys.dic
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pm3 --> hf mf dump
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pm3 --> hf mf eload -f hf-mf-<UID>-dump.bin
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pm3 --> hf mf sim -u 353c2aa6
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```
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Clone MIFARE 1K Sequence
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```
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pm3 --> hf mf fchk --1k -f mfc_default_keys.dic
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pm3 --> hf mf dump
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pm3 --> hf mf restore --1k --uid 4A6CE843 -k hf-mf-A29558E4-key.bin -f hf-mf-A29558E4-dump.bin
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```
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Read MIFARE Ultralight EV1
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```
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pm3 --> hf mfu info
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```
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Clone MIFARE Ultralight EV1 Sequence
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```
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pm3 --> hf mfu dump -k FFFFFFFF
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pm3 --> hf mfu eload -f hf-mfu-XXXX-dump.bin
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pm3 --> hf mfu sim -t 7
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```
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Bruteforce MIFARE Classic card numbers from 11223344 to 11223346
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```
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pm3 --> script run hf_mf_uidbruteforce -s 0x11223344 -e 0x11223346 -t 1000 -x mfc
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```
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Bruteforce MIFARE Ultralight EV1 card numbers from 11223344556677 to 11223344556679
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```
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pm3 --> script run hf_mf_uidbruteforce -s 0x11223344556677 -e 0x11223344556679 -t 1000 -x mfu
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```
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## Wiegand manipulation
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^[Top](#top)
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List all available wiegand formats in client
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```
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pm3 --> wiegand list
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```
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Convert Site & Facility code to Wiegand raw hex
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```
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Options
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---
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--fc <dec> facility number
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--cn <dec> card number
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--issue <dec> issue level
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--oem <dec> OEM code
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-w, --wiegand <format> see `wiegand list` for available formats
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--pre add HID ProxII preamble to wiegand output
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pm3 --> wiegand encode -w H10301 --oem 0 --fc 101 --cn 1337
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pm3 --> wiegand encode --fc 101 --cn 1337
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```
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Convert Site & Facility code from Wiegand raw hex to numbers
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```
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Options
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---
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-p, --parity ignore invalid parity
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-r, --raw <hex> raw hex to be decoded
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-b, --bin <bin> binary string to be decoded
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pm3 --> wiegand decode --raw 2006f623ae
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```
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## HID Prox
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^[Top](#top)
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Read HID Prox card
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```
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pm3 --> lf hid read
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```
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Demodulate HID Prox card
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```
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pm3 --> lf hid demod
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```
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Simulate Prox card
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```
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pm3 --> lf hid sim -r 200670012d
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pm3 --> lf hid sim -w H10301 --fc 10 --cn 1337
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```
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Clone Prox to T5577 card
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```
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pm3 --> lf hid clone -r 200670012d
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pm3 --> lf hid clone -w H10301 --fc 10 --cn 1337
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```
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Brute force HID reader
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```
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Options
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---
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-v, --verbose verbose logging, show all tries
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-w, --wiegand format see `wiegand list` for available formats
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-f, --fn dec facility code
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-c, --cn dec card number to start with
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-i dec issue level
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-o, --oem dec OEM code
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-d, --delay dec delay betweens attempts in ms. Default 1000ms
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--up direction to increment card number. (default is both directions)
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--down direction to decrement card number. (default is both directions)
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pm3 --> lf hid brute -w H10301 -f 224
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pm3 --> lf hid brute -v -w H10301 -f 21 -c 200 -d 2000
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```
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## Indala
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^[Top](#top)
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Read Indala card
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```
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pm3 --> lf indala read
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```
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Demodulate Indala card
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```
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pm3 --> lf indala demod
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```
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Simulate Indala card
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```
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Options
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---
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-r, --raw <hex> raw bytes
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--heden <decimal> Cardnumber for Heden 2L format
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pm3 --> lf indala sim -r a0000000c2c436c1
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```
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Clone to T55x7 card
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```
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Options
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---
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-r, --raw <hex> raw bytes
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--heden <decimal> Cardnumber for Heden 2L format
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--fc <decimal> Facility Code (26 bit H10301 format)
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--cn <decimal> Cardnumber (26 bit H10301 format)
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--q5 specify writing to Q5/T5555 tag
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--em specify writing to EM4305/4469 tag
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pm3 --> lf indala clone -r a0000000c2c436c1
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```
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## Hitag
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^[Top](#top)
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Read Hitag information
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```
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pm3 --> lf hitag info
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```
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Read Hitag memory
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Crypto mode key format: ISK high + ISK low
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```
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Options
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---
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-h, --help This help
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-s, --hts Hitag S
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-2, --ht2 Hitag 2
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--pwd password mode
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--nrar <hex> nonce / answer writer, 8 hex bytes
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--crypto crypto mode
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-k, --key <hex> key, 4 or 6 hex bytes
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pm3 --> lf hitag read --ht2
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pm3 --> lf hitag read --ht2 -k 4D494B52
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pm3 --> lf hitag read --ht2 -k 4F4E4D494B52
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```
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Sniff Hitag traffic
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```
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pm3 --> lf hitag sniff
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pm3 --> lf hitag list
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```
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Simulate Hitag2
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```
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pm3 --> lf hitag sim -2
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```
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Write a page in Hitag memory
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Crypto mode key format: ISK high + ISK low
|
|
```
|
|
Options
|
|
---
|
|
-h, --help This help
|
|
-s, --hts Hitag S
|
|
-2, --ht2 Hitag 2
|
|
--pwd password mode
|
|
--nrar <hex> nonce / answer writer, 8 hex bytes
|
|
--crypto crypto mode
|
|
-k, --key <hex> key, 4 or 6 hex bytes
|
|
-p, --page <dec> page address to write to
|
|
-d, --data <hex> data, 4 hex bytes
|
|
|
|
pm3 --> lf hitag wrbl --ht2 -k 499602D2 -p 1 -d 00000000
|
|
```
|
|
|
|
Simulate Hitag2 sequence
|
|
```
|
|
pm3 --> lf hitag read --ht2 -k 56713368
|
|
pm3 --> lf hitag sim -2
|
|
```
|
|
|
|
## T55XX
|
|
^[Top](#top)
|
|
|
|
Detect T55XX card
|
|
```
|
|
pm3 --> lf t55xx detect
|
|
```
|
|
|
|
Configure modulation
|
|
```
|
|
Options
|
|
---
|
|
--FSK set demodulation FSK
|
|
--FSK1 set demodulation FSK 1
|
|
--FSK1A set demodulation FSK 1a (inv)
|
|
--FSK2 set demodulation FSK 2
|
|
--FSK2A set demodulation FSK 2a (inv)
|
|
--ASK set demodulation ASK
|
|
--PSK1 set demodulation PSK 1
|
|
--PSK2 set demodulation PSK 2
|
|
--PSK3 set demodulation PSK 3
|
|
--NRZ set demodulation NRZ
|
|
--BI set demodulation Biphase
|
|
--BIA set demodulation Diphase (inverted biphase)
|
|
|
|
EM is ASK
|
|
HID Prox is FSK
|
|
Indala is PSK
|
|
|
|
pm3 --> lf t55xx config --FSK
|
|
```
|
|
|
|
Set timings to default
|
|
```
|
|
Options
|
|
---
|
|
|
|
-p, --persist persist to flash memory (RDV4)
|
|
-z Set default t55x7 timings (use `-p` to save if required)
|
|
pm3 --> lf t55xx deviceconfig -zp
|
|
```
|
|
|
|
Write to T55xx block
|
|
```
|
|
-b, --blk <0-7> block number to write
|
|
-d, --data <hex> data to write (4 hex bytes)
|
|
-p, --pwd <hex> password (4 hex bytes)
|
|
|
|
pm3 --> lf t55xx write -b 0 -d 00081040
|
|
```
|
|
|
|
Wipe a T55xx tag and set defaults
|
|
```
|
|
pm3 --> lf t55xx wipe
|
|
```
|
|
|
|
## Data
|
|
^[Top](#top)
|
|
|
|
Get raw samples [512-40000]
|
|
```
|
|
pm3 --> data samples -n <size>
|
|
```
|
|
|
|
Save samples to file
|
|
```
|
|
pm3 --> data save -f <filename>
|
|
```
|
|
|
|
Load samples from file
|
|
```
|
|
pm3 --> data load -f <filename>
|
|
```
|
|
|
|
## Lua Scripts
|
|
^[Top](#top)
|
|
|
|
List lua Scripts
|
|
|
|
```
|
|
pm3 --> script list
|
|
```
|
|
|
|
View lua helptext
|
|
|
|
```
|
|
pm3 --> script run <nameofscript> -h
|
|
```
|
|
|
|
|
|
Convert .bin to .eml
|
|
```
|
|
Options
|
|
---
|
|
-i <file> Specifies the dump-file (input). If omitted, 'dumpdata.bin' is used
|
|
-o <filename> Specifies the output file. If omitted, <uid>.eml is used
|
|
|
|
pm3 --> script run data_mf_bin2eml -i xxxxxxxxxxxxxx.bin
|
|
```
|
|
|
|
Convert .eml to .bin
|
|
```
|
|
Options
|
|
---
|
|
-i <filename> Specifies the dump-file (input). If omitted, 'dumpdata.eml' is used
|
|
-o <filename> Specifies the output file. If omitted, <currdate>.bin is used
|
|
|
|
pm3 --> script run data_mf_eml2bin -i myfile.eml -o myfile.bin
|
|
```
|
|
|
|
Format Mifare card
|
|
```
|
|
Options
|
|
---
|
|
-k <key> The current six byte key with write access
|
|
-n <key> The new key that will be written to the card
|
|
-a <access> The new access bytes that will be written to the card
|
|
-x Execute the commands as well
|
|
|
|
pm3 --> script run hf_mf_format -k FFFFFFFFFFFF -n FFFFFFFFFFFF -x
|
|
```
|
|
|
|
## Memory
|
|
^[Top](#top)
|
|
|
|
Load default keys into flash memory (RDV4 only)
|
|
```
|
|
Options
|
|
---
|
|
-o <offset> offset in memory
|
|
-f <filename> file name
|
|
--mfc upload 6 bytes keys (mifare key dictionary)
|
|
--iclass upload 8 bytes keys (iClass key dictionary)
|
|
--t55xx upload 4 bytes keys (pwd dictionary)
|
|
|
|
pm3 --> mem load -f mfc_default_keys --mfc
|
|
pm3 --> mem load -f t55xx_default_pwds --t5xx
|
|
pm3 --> mem load -f iclass_default_keys --iclass
|
|
```
|
|
|
|
## Sim Module
|
|
^[Top](#top)
|
|
|
|
Upgrade Sim Module firmware
|
|
```
|
|
pm3 --> smart upgrade -f sim014.bin
|
|
```
|
|
|
|
## Smart Card
|
|
^[Top](#top)
|
|
|
|
Get Smart Card Information
|
|
```
|
|
pm3 --> smart info
|
|
```
|
|
|
|
Act like an IS07816 reader
|
|
```
|
|
pm3 --> smart reader
|
|
```
|
|
|
|
Set clock speed for smart card interface
|
|
```
|
|
Options
|
|
---
|
|
--16mhz 16 MHz clock speed
|
|
--8mhz 8 MHz clock speed
|
|
--4mhz 4 MHz clock speed
|
|
|
|
|
|
pm3 --> smart setclock --8mhz
|
|
```
|
|
|
|
Send raw hex data
|
|
```
|
|
Options
|
|
---
|
|
-r do not read response
|
|
-a active smartcard without select (reset sc module)
|
|
-s active smartcard with select (get ATR)
|
|
-t, --tlv executes TLV decoder if it possible
|
|
-0 use protocol T=0
|
|
-d, --data <hex> bytes to send
|
|
|
|
pm3 --> smart raw -s -0 -d 00a404000e315041592e5359532e4444463031
|
|
pm3 --> smart raw -0 -d 00a404000e325041592e5359532e4444463031
|
|
pm3 --> smart raw -0 -t -d 00a4040007a0000000041010
|
|
pm3 --> smart raw -0 -t -d 00a4040007a0000000031010
|
|
````
|
|
|
|
Bruteforce SPI
|
|
```
|
|
Options
|
|
---
|
|
-t, --tlv executes TLV decoder if it possible
|
|
|
|
pm3 --> smart brute
|
|
pm3 --> smart brute --tlv
|
|
```
|