A very easy to understand LoRaWAN-node code.

Dependencies:   LoRaWAN-lib SX1272Lib X_NUCLEO_IKS01A1 mbed

Important parameters:

• In comissioning.h: DevEUI, AppEUI, AppKEY, DevADR, NwksKEY, AppsKEY, OTAA and public network. Frequency and channel block to use, confirmed or unconfirmed messages, app port, app data size and OTAA and Tx duty cycles.

• In LoRaMac.h: Maximum payload and MAC commands length, receive delays, max FCNT, adr ack limit, timeout and delay, max ack retries, rssi threshold and sync words.

• In LoRaMac.cpp: Maximum payload, MAC commands and FRMpayload length.

• In LoRaMac-board.h: Tx power, data rates and band settings.

NOTE: Please refer to LoRaWAN regional parameters (page 12 for US band) to know which parameters you can modify.

Committer:
dgabino
Date:
Tue Apr 03 17:09:34 2018 +0000
Revision:
0:60ff878b27b8
A simpler way to customize your LoRaWAN payload

Who changed what in which revision?

UserRevisionLine numberNew contents of line
dgabino 0:60ff878b27b8 1 /*
dgabino 0:60ff878b27b8 2 ---------------------------------------------------------------------------
dgabino 0:60ff878b27b8 3 Copyright (c) 1998-2008, Brian Gladman, Worcester, UK. All rights reserved.
dgabino 0:60ff878b27b8 4
dgabino 0:60ff878b27b8 5 LICENSE TERMS
dgabino 0:60ff878b27b8 6
dgabino 0:60ff878b27b8 7 The redistribution and use of this software (with or without changes)
dgabino 0:60ff878b27b8 8 is allowed without the payment of fees or royalties provided that:
dgabino 0:60ff878b27b8 9
dgabino 0:60ff878b27b8 10 1. source code distributions include the above copyright notice, this
dgabino 0:60ff878b27b8 11 list of conditions and the following disclaimer;
dgabino 0:60ff878b27b8 12
dgabino 0:60ff878b27b8 13 2. binary distributions include the above copyright notice, this list
dgabino 0:60ff878b27b8 14 of conditions and the following disclaimer in their documentation;
dgabino 0:60ff878b27b8 15
dgabino 0:60ff878b27b8 16 3. the name of the copyright holder is not used to endorse products
dgabino 0:60ff878b27b8 17 built using this software without specific written permission.
dgabino 0:60ff878b27b8 18
dgabino 0:60ff878b27b8 19 DISCLAIMER
dgabino 0:60ff878b27b8 20
dgabino 0:60ff878b27b8 21 This software is provided 'as is' with no explicit or implied warranties
dgabino 0:60ff878b27b8 22 in respect of its properties, including, but not limited to, correctness
dgabino 0:60ff878b27b8 23 and/or fitness for purpose.
dgabino 0:60ff878b27b8 24 ---------------------------------------------------------------------------
dgabino 0:60ff878b27b8 25 Issue 09/09/2006
dgabino 0:60ff878b27b8 26
dgabino 0:60ff878b27b8 27 This is an AES implementation that uses only 8-bit byte operations on the
dgabino 0:60ff878b27b8 28 cipher state (there are options to use 32-bit types if available).
dgabino 0:60ff878b27b8 29
dgabino 0:60ff878b27b8 30 The combination of mix columns and byte substitution used here is based on
dgabino 0:60ff878b27b8 31 that developed by Karl Malbrain. His contribution is acknowledged.
dgabino 0:60ff878b27b8 32 */
dgabino 0:60ff878b27b8 33
dgabino 0:60ff878b27b8 34 /* define if you have a fast memcpy function on your system */
dgabino 0:60ff878b27b8 35 #if 0
dgabino 0:60ff878b27b8 36 # define HAVE_MEMCPY
dgabino 0:60ff878b27b8 37 # include <string.h>
dgabino 0:60ff878b27b8 38 # if defined( _MSC_VER )
dgabino 0:60ff878b27b8 39 # include <intrin.h>
dgabino 0:60ff878b27b8 40 # pragma intrinsic( memcpy )
dgabino 0:60ff878b27b8 41 # endif
dgabino 0:60ff878b27b8 42 #endif
dgabino 0:60ff878b27b8 43
dgabino 0:60ff878b27b8 44
dgabino 0:60ff878b27b8 45 #include <stdlib.h>
dgabino 0:60ff878b27b8 46 #include <stdint.h>
dgabino 0:60ff878b27b8 47
dgabino 0:60ff878b27b8 48 /* define if you have fast 32-bit types on your system */
dgabino 0:60ff878b27b8 49 #if ( __CORTEX_M != 0 ) // if Cortex is different from M0/M0+
dgabino 0:60ff878b27b8 50 # define HAVE_UINT_32T
dgabino 0:60ff878b27b8 51 #endif
dgabino 0:60ff878b27b8 52
dgabino 0:60ff878b27b8 53 /* define if you don't want any tables */
dgabino 0:60ff878b27b8 54 #if 1
dgabino 0:60ff878b27b8 55 # define USE_TABLES
dgabino 0:60ff878b27b8 56 #endif
dgabino 0:60ff878b27b8 57
dgabino 0:60ff878b27b8 58 /* On Intel Core 2 duo VERSION_1 is faster */
dgabino 0:60ff878b27b8 59
dgabino 0:60ff878b27b8 60 /* alternative versions (test for performance on your system) */
dgabino 0:60ff878b27b8 61 #if 1
dgabino 0:60ff878b27b8 62 # define VERSION_1
dgabino 0:60ff878b27b8 63 #endif
dgabino 0:60ff878b27b8 64
dgabino 0:60ff878b27b8 65 #include "aes.h"
dgabino 0:60ff878b27b8 66
dgabino 0:60ff878b27b8 67 //#if defined( HAVE_UINT_32T )
dgabino 0:60ff878b27b8 68 // typedef unsigned long uint32_t;
dgabino 0:60ff878b27b8 69 //#endif
dgabino 0:60ff878b27b8 70
dgabino 0:60ff878b27b8 71 /* functions for finite field multiplication in the AES Galois field */
dgabino 0:60ff878b27b8 72
dgabino 0:60ff878b27b8 73 #define WPOLY 0x011b
dgabino 0:60ff878b27b8 74 #define BPOLY 0x1b
dgabino 0:60ff878b27b8 75 #define DPOLY 0x008d
dgabino 0:60ff878b27b8 76
dgabino 0:60ff878b27b8 77 #define f1(x) (x)
dgabino 0:60ff878b27b8 78 #define f2(x) ((x << 1) ^ (((x >> 7) & 1) * WPOLY))
dgabino 0:60ff878b27b8 79 #define f4(x) ((x << 2) ^ (((x >> 6) & 1) * WPOLY) ^ (((x >> 6) & 2) * WPOLY))
dgabino 0:60ff878b27b8 80 #define f8(x) ((x << 3) ^ (((x >> 5) & 1) * WPOLY) ^ (((x >> 5) & 2) * WPOLY) \
dgabino 0:60ff878b27b8 81 ^ (((x >> 5) & 4) * WPOLY))
dgabino 0:60ff878b27b8 82 #define d2(x) (((x) >> 1) ^ ((x) & 1 ? DPOLY : 0))
dgabino 0:60ff878b27b8 83
dgabino 0:60ff878b27b8 84 #define f3(x) (f2(x) ^ x)
dgabino 0:60ff878b27b8 85 #define f9(x) (f8(x) ^ x)
dgabino 0:60ff878b27b8 86 #define fb(x) (f8(x) ^ f2(x) ^ x)
dgabino 0:60ff878b27b8 87 #define fd(x) (f8(x) ^ f4(x) ^ x)
dgabino 0:60ff878b27b8 88 #define fe(x) (f8(x) ^ f4(x) ^ f2(x))
dgabino 0:60ff878b27b8 89
dgabino 0:60ff878b27b8 90 #if defined( USE_TABLES )
dgabino 0:60ff878b27b8 91
dgabino 0:60ff878b27b8 92 #define sb_data(w) { /* S Box data values */ \
dgabino 0:60ff878b27b8 93 w(0x63), w(0x7c), w(0x77), w(0x7b), w(0xf2), w(0x6b), w(0x6f), w(0xc5),\
dgabino 0:60ff878b27b8 94 w(0x30), w(0x01), w(0x67), w(0x2b), w(0xfe), w(0xd7), w(0xab), w(0x76),\
dgabino 0:60ff878b27b8 95 w(0xca), w(0x82), w(0xc9), w(0x7d), w(0xfa), w(0x59), w(0x47), w(0xf0),\
dgabino 0:60ff878b27b8 96 w(0xad), w(0xd4), w(0xa2), w(0xaf), w(0x9c), w(0xa4), w(0x72), w(0xc0),\
dgabino 0:60ff878b27b8 97 w(0xb7), w(0xfd), w(0x93), w(0x26), w(0x36), w(0x3f), w(0xf7), w(0xcc),\
dgabino 0:60ff878b27b8 98 w(0x34), w(0xa5), w(0xe5), w(0xf1), w(0x71), w(0xd8), w(0x31), w(0x15),\
dgabino 0:60ff878b27b8 99 w(0x04), w(0xc7), w(0x23), w(0xc3), w(0x18), w(0x96), w(0x05), w(0x9a),\
dgabino 0:60ff878b27b8 100 w(0x07), w(0x12), w(0x80), w(0xe2), w(0xeb), w(0x27), w(0xb2), w(0x75),\
dgabino 0:60ff878b27b8 101 w(0x09), w(0x83), w(0x2c), w(0x1a), w(0x1b), w(0x6e), w(0x5a), w(0xa0),\
dgabino 0:60ff878b27b8 102 w(0x52), w(0x3b), w(0xd6), w(0xb3), w(0x29), w(0xe3), w(0x2f), w(0x84),\
dgabino 0:60ff878b27b8 103 w(0x53), w(0xd1), w(0x00), w(0xed), w(0x20), w(0xfc), w(0xb1), w(0x5b),\
dgabino 0:60ff878b27b8 104 w(0x6a), w(0xcb), w(0xbe), w(0x39), w(0x4a), w(0x4c), w(0x58), w(0xcf),\
dgabino 0:60ff878b27b8 105 w(0xd0), w(0xef), w(0xaa), w(0xfb), w(0x43), w(0x4d), w(0x33), w(0x85),\
dgabino 0:60ff878b27b8 106 w(0x45), w(0xf9), w(0x02), w(0x7f), w(0x50), w(0x3c), w(0x9f), w(0xa8),\
dgabino 0:60ff878b27b8 107 w(0x51), w(0xa3), w(0x40), w(0x8f), w(0x92), w(0x9d), w(0x38), w(0xf5),\
dgabino 0:60ff878b27b8 108 w(0xbc), w(0xb6), w(0xda), w(0x21), w(0x10), w(0xff), w(0xf3), w(0xd2),\
dgabino 0:60ff878b27b8 109 w(0xcd), w(0x0c), w(0x13), w(0xec), w(0x5f), w(0x97), w(0x44), w(0x17),\
dgabino 0:60ff878b27b8 110 w(0xc4), w(0xa7), w(0x7e), w(0x3d), w(0x64), w(0x5d), w(0x19), w(0x73),\
dgabino 0:60ff878b27b8 111 w(0x60), w(0x81), w(0x4f), w(0xdc), w(0x22), w(0x2a), w(0x90), w(0x88),\
dgabino 0:60ff878b27b8 112 w(0x46), w(0xee), w(0xb8), w(0x14), w(0xde), w(0x5e), w(0x0b), w(0xdb),\
dgabino 0:60ff878b27b8 113 w(0xe0), w(0x32), w(0x3a), w(0x0a), w(0x49), w(0x06), w(0x24), w(0x5c),\
dgabino 0:60ff878b27b8 114 w(0xc2), w(0xd3), w(0xac), w(0x62), w(0x91), w(0x95), w(0xe4), w(0x79),\
dgabino 0:60ff878b27b8 115 w(0xe7), w(0xc8), w(0x37), w(0x6d), w(0x8d), w(0xd5), w(0x4e), w(0xa9),\
dgabino 0:60ff878b27b8 116 w(0x6c), w(0x56), w(0xf4), w(0xea), w(0x65), w(0x7a), w(0xae), w(0x08),\
dgabino 0:60ff878b27b8 117 w(0xba), w(0x78), w(0x25), w(0x2e), w(0x1c), w(0xa6), w(0xb4), w(0xc6),\
dgabino 0:60ff878b27b8 118 w(0xe8), w(0xdd), w(0x74), w(0x1f), w(0x4b), w(0xbd), w(0x8b), w(0x8a),\
dgabino 0:60ff878b27b8 119 w(0x70), w(0x3e), w(0xb5), w(0x66), w(0x48), w(0x03), w(0xf6), w(0x0e),\
dgabino 0:60ff878b27b8 120 w(0x61), w(0x35), w(0x57), w(0xb9), w(0x86), w(0xc1), w(0x1d), w(0x9e),\
dgabino 0:60ff878b27b8 121 w(0xe1), w(0xf8), w(0x98), w(0x11), w(0x69), w(0xd9), w(0x8e), w(0x94),\
dgabino 0:60ff878b27b8 122 w(0x9b), w(0x1e), w(0x87), w(0xe9), w(0xce), w(0x55), w(0x28), w(0xdf),\
dgabino 0:60ff878b27b8 123 w(0x8c), w(0xa1), w(0x89), w(0x0d), w(0xbf), w(0xe6), w(0x42), w(0x68),\
dgabino 0:60ff878b27b8 124 w(0x41), w(0x99), w(0x2d), w(0x0f), w(0xb0), w(0x54), w(0xbb), w(0x16) }
dgabino 0:60ff878b27b8 125
dgabino 0:60ff878b27b8 126 #define isb_data(w) { /* inverse S Box data values */ \
dgabino 0:60ff878b27b8 127 w(0x52), w(0x09), w(0x6a), w(0xd5), w(0x30), w(0x36), w(0xa5), w(0x38),\
dgabino 0:60ff878b27b8 128 w(0xbf), w(0x40), w(0xa3), w(0x9e), w(0x81), w(0xf3), w(0xd7), w(0xfb),\
dgabino 0:60ff878b27b8 129 w(0x7c), w(0xe3), w(0x39), w(0x82), w(0x9b), w(0x2f), w(0xff), w(0x87),\
dgabino 0:60ff878b27b8 130 w(0x34), w(0x8e), w(0x43), w(0x44), w(0xc4), w(0xde), w(0xe9), w(0xcb),\
dgabino 0:60ff878b27b8 131 w(0x54), w(0x7b), w(0x94), w(0x32), w(0xa6), w(0xc2), w(0x23), w(0x3d),\
dgabino 0:60ff878b27b8 132 w(0xee), w(0x4c), w(0x95), w(0x0b), w(0x42), w(0xfa), w(0xc3), w(0x4e),\
dgabino 0:60ff878b27b8 133 w(0x08), w(0x2e), w(0xa1), w(0x66), w(0x28), w(0xd9), w(0x24), w(0xb2),\
dgabino 0:60ff878b27b8 134 w(0x76), w(0x5b), w(0xa2), w(0x49), w(0x6d), w(0x8b), w(0xd1), w(0x25),\
dgabino 0:60ff878b27b8 135 w(0x72), w(0xf8), w(0xf6), w(0x64), w(0x86), w(0x68), w(0x98), w(0x16),\
dgabino 0:60ff878b27b8 136 w(0xd4), w(0xa4), w(0x5c), w(0xcc), w(0x5d), w(0x65), w(0xb6), w(0x92),\
dgabino 0:60ff878b27b8 137 w(0x6c), w(0x70), w(0x48), w(0x50), w(0xfd), w(0xed), w(0xb9), w(0xda),\
dgabino 0:60ff878b27b8 138 w(0x5e), w(0x15), w(0x46), w(0x57), w(0xa7), w(0x8d), w(0x9d), w(0x84),\
dgabino 0:60ff878b27b8 139 w(0x90), w(0xd8), w(0xab), w(0x00), w(0x8c), w(0xbc), w(0xd3), w(0x0a),\
dgabino 0:60ff878b27b8 140 w(0xf7), w(0xe4), w(0x58), w(0x05), w(0xb8), w(0xb3), w(0x45), w(0x06),\
dgabino 0:60ff878b27b8 141 w(0xd0), w(0x2c), w(0x1e), w(0x8f), w(0xca), w(0x3f), w(0x0f), w(0x02),\
dgabino 0:60ff878b27b8 142 w(0xc1), w(0xaf), w(0xbd), w(0x03), w(0x01), w(0x13), w(0x8a), w(0x6b),\
dgabino 0:60ff878b27b8 143 w(0x3a), w(0x91), w(0x11), w(0x41), w(0x4f), w(0x67), w(0xdc), w(0xea),\
dgabino 0:60ff878b27b8 144 w(0x97), w(0xf2), w(0xcf), w(0xce), w(0xf0), w(0xb4), w(0xe6), w(0x73),\
dgabino 0:60ff878b27b8 145 w(0x96), w(0xac), w(0x74), w(0x22), w(0xe7), w(0xad), w(0x35), w(0x85),\
dgabino 0:60ff878b27b8 146 w(0xe2), w(0xf9), w(0x37), w(0xe8), w(0x1c), w(0x75), w(0xdf), w(0x6e),\
dgabino 0:60ff878b27b8 147 w(0x47), w(0xf1), w(0x1a), w(0x71), w(0x1d), w(0x29), w(0xc5), w(0x89),\
dgabino 0:60ff878b27b8 148 w(0x6f), w(0xb7), w(0x62), w(0x0e), w(0xaa), w(0x18), w(0xbe), w(0x1b),\
dgabino 0:60ff878b27b8 149 w(0xfc), w(0x56), w(0x3e), w(0x4b), w(0xc6), w(0xd2), w(0x79), w(0x20),\
dgabino 0:60ff878b27b8 150 w(0x9a), w(0xdb), w(0xc0), w(0xfe), w(0x78), w(0xcd), w(0x5a), w(0xf4),\
dgabino 0:60ff878b27b8 151 w(0x1f), w(0xdd), w(0xa8), w(0x33), w(0x88), w(0x07), w(0xc7), w(0x31),\
dgabino 0:60ff878b27b8 152 w(0xb1), w(0x12), w(0x10), w(0x59), w(0x27), w(0x80), w(0xec), w(0x5f),\
dgabino 0:60ff878b27b8 153 w(0x60), w(0x51), w(0x7f), w(0xa9), w(0x19), w(0xb5), w(0x4a), w(0x0d),\
dgabino 0:60ff878b27b8 154 w(0x2d), w(0xe5), w(0x7a), w(0x9f), w(0x93), w(0xc9), w(0x9c), w(0xef),\
dgabino 0:60ff878b27b8 155 w(0xa0), w(0xe0), w(0x3b), w(0x4d), w(0xae), w(0x2a), w(0xf5), w(0xb0),\
dgabino 0:60ff878b27b8 156 w(0xc8), w(0xeb), w(0xbb), w(0x3c), w(0x83), w(0x53), w(0x99), w(0x61),\
dgabino 0:60ff878b27b8 157 w(0x17), w(0x2b), w(0x04), w(0x7e), w(0xba), w(0x77), w(0xd6), w(0x26),\
dgabino 0:60ff878b27b8 158 w(0xe1), w(0x69), w(0x14), w(0x63), w(0x55), w(0x21), w(0x0c), w(0x7d) }
dgabino 0:60ff878b27b8 159
dgabino 0:60ff878b27b8 160 #define mm_data(w) { /* basic data for forming finite field tables */ \
dgabino 0:60ff878b27b8 161 w(0x00), w(0x01), w(0x02), w(0x03), w(0x04), w(0x05), w(0x06), w(0x07),\
dgabino 0:60ff878b27b8 162 w(0x08), w(0x09), w(0x0a), w(0x0b), w(0x0c), w(0x0d), w(0x0e), w(0x0f),\
dgabino 0:60ff878b27b8 163 w(0x10), w(0x11), w(0x12), w(0x13), w(0x14), w(0x15), w(0x16), w(0x17),\
dgabino 0:60ff878b27b8 164 w(0x18), w(0x19), w(0x1a), w(0x1b), w(0x1c), w(0x1d), w(0x1e), w(0x1f),\
dgabino 0:60ff878b27b8 165 w(0x20), w(0x21), w(0x22), w(0x23), w(0x24), w(0x25), w(0x26), w(0x27),\
dgabino 0:60ff878b27b8 166 w(0x28), w(0x29), w(0x2a), w(0x2b), w(0x2c), w(0x2d), w(0x2e), w(0x2f),\
dgabino 0:60ff878b27b8 167 w(0x30), w(0x31), w(0x32), w(0x33), w(0x34), w(0x35), w(0x36), w(0x37),\
dgabino 0:60ff878b27b8 168 w(0x38), w(0x39), w(0x3a), w(0x3b), w(0x3c), w(0x3d), w(0x3e), w(0x3f),\
dgabino 0:60ff878b27b8 169 w(0x40), w(0x41), w(0x42), w(0x43), w(0x44), w(0x45), w(0x46), w(0x47),\
dgabino 0:60ff878b27b8 170 w(0x48), w(0x49), w(0x4a), w(0x4b), w(0x4c), w(0x4d), w(0x4e), w(0x4f),\
dgabino 0:60ff878b27b8 171 w(0x50), w(0x51), w(0x52), w(0x53), w(0x54), w(0x55), w(0x56), w(0x57),\
dgabino 0:60ff878b27b8 172 w(0x58), w(0x59), w(0x5a), w(0x5b), w(0x5c), w(0x5d), w(0x5e), w(0x5f),\
dgabino 0:60ff878b27b8 173 w(0x60), w(0x61), w(0x62), w(0x63), w(0x64), w(0x65), w(0x66), w(0x67),\
dgabino 0:60ff878b27b8 174 w(0x68), w(0x69), w(0x6a), w(0x6b), w(0x6c), w(0x6d), w(0x6e), w(0x6f),\
dgabino 0:60ff878b27b8 175 w(0x70), w(0x71), w(0x72), w(0x73), w(0x74), w(0x75), w(0x76), w(0x77),\
dgabino 0:60ff878b27b8 176 w(0x78), w(0x79), w(0x7a), w(0x7b), w(0x7c), w(0x7d), w(0x7e), w(0x7f),\
dgabino 0:60ff878b27b8 177 w(0x80), w(0x81), w(0x82), w(0x83), w(0x84), w(0x85), w(0x86), w(0x87),\
dgabino 0:60ff878b27b8 178 w(0x88), w(0x89), w(0x8a), w(0x8b), w(0x8c), w(0x8d), w(0x8e), w(0x8f),\
dgabino 0:60ff878b27b8 179 w(0x90), w(0x91), w(0x92), w(0x93), w(0x94), w(0x95), w(0x96), w(0x97),\
dgabino 0:60ff878b27b8 180 w(0x98), w(0x99), w(0x9a), w(0x9b), w(0x9c), w(0x9d), w(0x9e), w(0x9f),\
dgabino 0:60ff878b27b8 181 w(0xa0), w(0xa1), w(0xa2), w(0xa3), w(0xa4), w(0xa5), w(0xa6), w(0xa7),\
dgabino 0:60ff878b27b8 182 w(0xa8), w(0xa9), w(0xaa), w(0xab), w(0xac), w(0xad), w(0xae), w(0xaf),\
dgabino 0:60ff878b27b8 183 w(0xb0), w(0xb1), w(0xb2), w(0xb3), w(0xb4), w(0xb5), w(0xb6), w(0xb7),\
dgabino 0:60ff878b27b8 184 w(0xb8), w(0xb9), w(0xba), w(0xbb), w(0xbc), w(0xbd), w(0xbe), w(0xbf),\
dgabino 0:60ff878b27b8 185 w(0xc0), w(0xc1), w(0xc2), w(0xc3), w(0xc4), w(0xc5), w(0xc6), w(0xc7),\
dgabino 0:60ff878b27b8 186 w(0xc8), w(0xc9), w(0xca), w(0xcb), w(0xcc), w(0xcd), w(0xce), w(0xcf),\
dgabino 0:60ff878b27b8 187 w(0xd0), w(0xd1), w(0xd2), w(0xd3), w(0xd4), w(0xd5), w(0xd6), w(0xd7),\
dgabino 0:60ff878b27b8 188 w(0xd8), w(0xd9), w(0xda), w(0xdb), w(0xdc), w(0xdd), w(0xde), w(0xdf),\
dgabino 0:60ff878b27b8 189 w(0xe0), w(0xe1), w(0xe2), w(0xe3), w(0xe4), w(0xe5), w(0xe6), w(0xe7),\
dgabino 0:60ff878b27b8 190 w(0xe8), w(0xe9), w(0xea), w(0xeb), w(0xec), w(0xed), w(0xee), w(0xef),\
dgabino 0:60ff878b27b8 191 w(0xf0), w(0xf1), w(0xf2), w(0xf3), w(0xf4), w(0xf5), w(0xf6), w(0xf7),\
dgabino 0:60ff878b27b8 192 w(0xf8), w(0xf9), w(0xfa), w(0xfb), w(0xfc), w(0xfd), w(0xfe), w(0xff) }
dgabino 0:60ff878b27b8 193
dgabino 0:60ff878b27b8 194 static const uint8_t sbox[256] = sb_data(f1);
dgabino 0:60ff878b27b8 195
dgabino 0:60ff878b27b8 196 #if defined( AES_DEC_PREKEYED )
dgabino 0:60ff878b27b8 197 static const uint8_t isbox[256] = isb_data(f1);
dgabino 0:60ff878b27b8 198 #endif
dgabino 0:60ff878b27b8 199
dgabino 0:60ff878b27b8 200 static const uint8_t gfm2_sbox[256] = sb_data(f2);
dgabino 0:60ff878b27b8 201 static const uint8_t gfm3_sbox[256] = sb_data(f3);
dgabino 0:60ff878b27b8 202
dgabino 0:60ff878b27b8 203 #if defined( AES_DEC_PREKEYED )
dgabino 0:60ff878b27b8 204 static const uint8_t gfmul_9[256] = mm_data(f9);
dgabino 0:60ff878b27b8 205 static const uint8_t gfmul_b[256] = mm_data(fb);
dgabino 0:60ff878b27b8 206 static const uint8_t gfmul_d[256] = mm_data(fd);
dgabino 0:60ff878b27b8 207 static const uint8_t gfmul_e[256] = mm_data(fe);
dgabino 0:60ff878b27b8 208 #endif
dgabino 0:60ff878b27b8 209
dgabino 0:60ff878b27b8 210 #define s_box(x) sbox[(x)]
dgabino 0:60ff878b27b8 211 #if defined( AES_DEC_PREKEYED )
dgabino 0:60ff878b27b8 212 #define is_box(x) isbox[(x)]
dgabino 0:60ff878b27b8 213 #endif
dgabino 0:60ff878b27b8 214 #define gfm2_sb(x) gfm2_sbox[(x)]
dgabino 0:60ff878b27b8 215 #define gfm3_sb(x) gfm3_sbox[(x)]
dgabino 0:60ff878b27b8 216 #if defined( AES_DEC_PREKEYED )
dgabino 0:60ff878b27b8 217 #define gfm_9(x) gfmul_9[(x)]
dgabino 0:60ff878b27b8 218 #define gfm_b(x) gfmul_b[(x)]
dgabino 0:60ff878b27b8 219 #define gfm_d(x) gfmul_d[(x)]
dgabino 0:60ff878b27b8 220 #define gfm_e(x) gfmul_e[(x)]
dgabino 0:60ff878b27b8 221 #endif
dgabino 0:60ff878b27b8 222 #else
dgabino 0:60ff878b27b8 223
dgabino 0:60ff878b27b8 224 /* this is the high bit of x right shifted by 1 */
dgabino 0:60ff878b27b8 225 /* position. Since the starting polynomial has */
dgabino 0:60ff878b27b8 226 /* 9 bits (0x11b), this right shift keeps the */
dgabino 0:60ff878b27b8 227 /* values of all top bits within a byte */
dgabino 0:60ff878b27b8 228
dgabino 0:60ff878b27b8 229 static uint8_t hibit(const uint8_t x)
dgabino 0:60ff878b27b8 230 { uint8_t r = (uint8_t)((x >> 1) | (x >> 2));
dgabino 0:60ff878b27b8 231
dgabino 0:60ff878b27b8 232 r |= (r >> 2);
dgabino 0:60ff878b27b8 233 r |= (r >> 4);
dgabino 0:60ff878b27b8 234 return (r + 1) >> 1;
dgabino 0:60ff878b27b8 235 }
dgabino 0:60ff878b27b8 236
dgabino 0:60ff878b27b8 237 /* return the inverse of the finite field element x */
dgabino 0:60ff878b27b8 238
dgabino 0:60ff878b27b8 239 static uint8_t gf_inv(const uint8_t x)
dgabino 0:60ff878b27b8 240 { uint8_t p1 = x, p2 = BPOLY, n1 = hibit(x), n2 = 0x80, v1 = 1, v2 = 0;
dgabino 0:60ff878b27b8 241
dgabino 0:60ff878b27b8 242 if(x < 2)
dgabino 0:60ff878b27b8 243 return x;
dgabino 0:60ff878b27b8 244
dgabino 0:60ff878b27b8 245 for( ; ; )
dgabino 0:60ff878b27b8 246 {
dgabino 0:60ff878b27b8 247 if(n1)
dgabino 0:60ff878b27b8 248 while(n2 >= n1) /* divide polynomial p2 by p1 */
dgabino 0:60ff878b27b8 249 {
dgabino 0:60ff878b27b8 250 n2 /= n1; /* shift smaller polynomial left */
dgabino 0:60ff878b27b8 251 p2 ^= (p1 * n2) & 0xff; /* and remove from larger one */
dgabino 0:60ff878b27b8 252 v2 ^= (v1 * n2); /* shift accumulated value and */
dgabino 0:60ff878b27b8 253 n2 = hibit(p2); /* add into result */
dgabino 0:60ff878b27b8 254 }
dgabino 0:60ff878b27b8 255 else
dgabino 0:60ff878b27b8 256 return v1;
dgabino 0:60ff878b27b8 257
dgabino 0:60ff878b27b8 258 if(n2) /* repeat with values swapped */
dgabino 0:60ff878b27b8 259 while(n1 >= n2)
dgabino 0:60ff878b27b8 260 {
dgabino 0:60ff878b27b8 261 n1 /= n2;
dgabino 0:60ff878b27b8 262 p1 ^= p2 * n1;
dgabino 0:60ff878b27b8 263 v1 ^= v2 * n1;
dgabino 0:60ff878b27b8 264 n1 = hibit(p1);
dgabino 0:60ff878b27b8 265 }
dgabino 0:60ff878b27b8 266 else
dgabino 0:60ff878b27b8 267 return v2;
dgabino 0:60ff878b27b8 268 }
dgabino 0:60ff878b27b8 269 }
dgabino 0:60ff878b27b8 270
dgabino 0:60ff878b27b8 271 /* The forward and inverse affine transformations used in the S-box */
dgabino 0:60ff878b27b8 272 uint8_t fwd_affine(const uint8_t x)
dgabino 0:60ff878b27b8 273 {
dgabino 0:60ff878b27b8 274 #if defined( HAVE_UINT_32T )
dgabino 0:60ff878b27b8 275 uint32_t w = x;
dgabino 0:60ff878b27b8 276 w ^= (w << 1) ^ (w << 2) ^ (w << 3) ^ (w << 4);
dgabino 0:60ff878b27b8 277 return 0x63 ^ ((w ^ (w >> 8)) & 0xff);
dgabino 0:60ff878b27b8 278 #else
dgabino 0:60ff878b27b8 279 return 0x63 ^ x ^ (x << 1) ^ (x << 2) ^ (x << 3) ^ (x << 4)
dgabino 0:60ff878b27b8 280 ^ (x >> 7) ^ (x >> 6) ^ (x >> 5) ^ (x >> 4);
dgabino 0:60ff878b27b8 281 #endif
dgabino 0:60ff878b27b8 282 }
dgabino 0:60ff878b27b8 283
dgabino 0:60ff878b27b8 284 uint8_t inv_affine(const uint8_t x)
dgabino 0:60ff878b27b8 285 {
dgabino 0:60ff878b27b8 286 #if defined( HAVE_UINT_32T )
dgabino 0:60ff878b27b8 287 uint32_t w = x;
dgabino 0:60ff878b27b8 288 w = (w << 1) ^ (w << 3) ^ (w << 6);
dgabino 0:60ff878b27b8 289 return 0x05 ^ ((w ^ (w >> 8)) & 0xff);
dgabino 0:60ff878b27b8 290 #else
dgabino 0:60ff878b27b8 291 return 0x05 ^ (x << 1) ^ (x << 3) ^ (x << 6)
dgabino 0:60ff878b27b8 292 ^ (x >> 7) ^ (x >> 5) ^ (x >> 2);
dgabino 0:60ff878b27b8 293 #endif
dgabino 0:60ff878b27b8 294 }
dgabino 0:60ff878b27b8 295
dgabino 0:60ff878b27b8 296 #define s_box(x) fwd_affine(gf_inv(x))
dgabino 0:60ff878b27b8 297 #define is_box(x) gf_inv(inv_affine(x))
dgabino 0:60ff878b27b8 298 #define gfm2_sb(x) f2(s_box(x))
dgabino 0:60ff878b27b8 299 #define gfm3_sb(x) f3(s_box(x))
dgabino 0:60ff878b27b8 300 #define gfm_9(x) f9(x)
dgabino 0:60ff878b27b8 301 #define gfm_b(x) fb(x)
dgabino 0:60ff878b27b8 302 #define gfm_d(x) fd(x)
dgabino 0:60ff878b27b8 303 #define gfm_e(x) fe(x)
dgabino 0:60ff878b27b8 304
dgabino 0:60ff878b27b8 305 #endif
dgabino 0:60ff878b27b8 306
dgabino 0:60ff878b27b8 307 #if defined( HAVE_MEMCPY )
dgabino 0:60ff878b27b8 308 # define block_copy_nn(d, s, l) memcpy(d, s, l)
dgabino 0:60ff878b27b8 309 # define block_copy(d, s) memcpy(d, s, N_BLOCK)
dgabino 0:60ff878b27b8 310 #else
dgabino 0:60ff878b27b8 311 # define block_copy_nn(d, s, l) copy_block_nn(d, s, l)
dgabino 0:60ff878b27b8 312 # define block_copy(d, s) copy_block(d, s)
dgabino 0:60ff878b27b8 313 #endif
dgabino 0:60ff878b27b8 314
dgabino 0:60ff878b27b8 315 static void copy_block( void *d, const void *s )
dgabino 0:60ff878b27b8 316 {
dgabino 0:60ff878b27b8 317 #if defined( HAVE_UINT_32T )
dgabino 0:60ff878b27b8 318 ((uint32_t*)d)[ 0] = ((uint32_t*)s)[ 0];
dgabino 0:60ff878b27b8 319 ((uint32_t*)d)[ 1] = ((uint32_t*)s)[ 1];
dgabino 0:60ff878b27b8 320 ((uint32_t*)d)[ 2] = ((uint32_t*)s)[ 2];
dgabino 0:60ff878b27b8 321 ((uint32_t*)d)[ 3] = ((uint32_t*)s)[ 3];
dgabino 0:60ff878b27b8 322 #else
dgabino 0:60ff878b27b8 323 ((uint8_t*)d)[ 0] = ((uint8_t*)s)[ 0];
dgabino 0:60ff878b27b8 324 ((uint8_t*)d)[ 1] = ((uint8_t*)s)[ 1];
dgabino 0:60ff878b27b8 325 ((uint8_t*)d)[ 2] = ((uint8_t*)s)[ 2];
dgabino 0:60ff878b27b8 326 ((uint8_t*)d)[ 3] = ((uint8_t*)s)[ 3];
dgabino 0:60ff878b27b8 327 ((uint8_t*)d)[ 4] = ((uint8_t*)s)[ 4];
dgabino 0:60ff878b27b8 328 ((uint8_t*)d)[ 5] = ((uint8_t*)s)[ 5];
dgabino 0:60ff878b27b8 329 ((uint8_t*)d)[ 6] = ((uint8_t*)s)[ 6];
dgabino 0:60ff878b27b8 330 ((uint8_t*)d)[ 7] = ((uint8_t*)s)[ 7];
dgabino 0:60ff878b27b8 331 ((uint8_t*)d)[ 8] = ((uint8_t*)s)[ 8];
dgabino 0:60ff878b27b8 332 ((uint8_t*)d)[ 9] = ((uint8_t*)s)[ 9];
dgabino 0:60ff878b27b8 333 ((uint8_t*)d)[10] = ((uint8_t*)s)[10];
dgabino 0:60ff878b27b8 334 ((uint8_t*)d)[11] = ((uint8_t*)s)[11];
dgabino 0:60ff878b27b8 335 ((uint8_t*)d)[12] = ((uint8_t*)s)[12];
dgabino 0:60ff878b27b8 336 ((uint8_t*)d)[13] = ((uint8_t*)s)[13];
dgabino 0:60ff878b27b8 337 ((uint8_t*)d)[14] = ((uint8_t*)s)[14];
dgabino 0:60ff878b27b8 338 ((uint8_t*)d)[15] = ((uint8_t*)s)[15];
dgabino 0:60ff878b27b8 339 #endif
dgabino 0:60ff878b27b8 340 }
dgabino 0:60ff878b27b8 341
dgabino 0:60ff878b27b8 342 static void copy_block_nn( uint8_t * d, const uint8_t *s, uint8_t nn )
dgabino 0:60ff878b27b8 343 {
dgabino 0:60ff878b27b8 344 while( nn-- )
dgabino 0:60ff878b27b8 345 //*((uint8_t*)d)++ = *((uint8_t*)s)++;
dgabino 0:60ff878b27b8 346 *d++ = *s++;
dgabino 0:60ff878b27b8 347 }
dgabino 0:60ff878b27b8 348
dgabino 0:60ff878b27b8 349 static void xor_block( void *d, const void *s )
dgabino 0:60ff878b27b8 350 {
dgabino 0:60ff878b27b8 351 #if defined( HAVE_UINT_32T )
dgabino 0:60ff878b27b8 352 ((uint32_t*)d)[ 0] ^= ((uint32_t*)s)[ 0];
dgabino 0:60ff878b27b8 353 ((uint32_t*)d)[ 1] ^= ((uint32_t*)s)[ 1];
dgabino 0:60ff878b27b8 354 ((uint32_t*)d)[ 2] ^= ((uint32_t*)s)[ 2];
dgabino 0:60ff878b27b8 355 ((uint32_t*)d)[ 3] ^= ((uint32_t*)s)[ 3];
dgabino 0:60ff878b27b8 356 #else
dgabino 0:60ff878b27b8 357 ((uint8_t*)d)[ 0] ^= ((uint8_t*)s)[ 0];
dgabino 0:60ff878b27b8 358 ((uint8_t*)d)[ 1] ^= ((uint8_t*)s)[ 1];
dgabino 0:60ff878b27b8 359 ((uint8_t*)d)[ 2] ^= ((uint8_t*)s)[ 2];
dgabino 0:60ff878b27b8 360 ((uint8_t*)d)[ 3] ^= ((uint8_t*)s)[ 3];
dgabino 0:60ff878b27b8 361 ((uint8_t*)d)[ 4] ^= ((uint8_t*)s)[ 4];
dgabino 0:60ff878b27b8 362 ((uint8_t*)d)[ 5] ^= ((uint8_t*)s)[ 5];
dgabino 0:60ff878b27b8 363 ((uint8_t*)d)[ 6] ^= ((uint8_t*)s)[ 6];
dgabino 0:60ff878b27b8 364 ((uint8_t*)d)[ 7] ^= ((uint8_t*)s)[ 7];
dgabino 0:60ff878b27b8 365 ((uint8_t*)d)[ 8] ^= ((uint8_t*)s)[ 8];
dgabino 0:60ff878b27b8 366 ((uint8_t*)d)[ 9] ^= ((uint8_t*)s)[ 9];
dgabino 0:60ff878b27b8 367 ((uint8_t*)d)[10] ^= ((uint8_t*)s)[10];
dgabino 0:60ff878b27b8 368 ((uint8_t*)d)[11] ^= ((uint8_t*)s)[11];
dgabino 0:60ff878b27b8 369 ((uint8_t*)d)[12] ^= ((uint8_t*)s)[12];
dgabino 0:60ff878b27b8 370 ((uint8_t*)d)[13] ^= ((uint8_t*)s)[13];
dgabino 0:60ff878b27b8 371 ((uint8_t*)d)[14] ^= ((uint8_t*)s)[14];
dgabino 0:60ff878b27b8 372 ((uint8_t*)d)[15] ^= ((uint8_t*)s)[15];
dgabino 0:60ff878b27b8 373 #endif
dgabino 0:60ff878b27b8 374 }
dgabino 0:60ff878b27b8 375
dgabino 0:60ff878b27b8 376 static void copy_and_key( void *d, const void *s, const void *k )
dgabino 0:60ff878b27b8 377 {
dgabino 0:60ff878b27b8 378 #if defined( HAVE_UINT_32T )
dgabino 0:60ff878b27b8 379 ((uint32_t*)d)[ 0] = ((uint32_t*)s)[ 0] ^ ((uint32_t*)k)[ 0];
dgabino 0:60ff878b27b8 380 ((uint32_t*)d)[ 1] = ((uint32_t*)s)[ 1] ^ ((uint32_t*)k)[ 1];
dgabino 0:60ff878b27b8 381 ((uint32_t*)d)[ 2] = ((uint32_t*)s)[ 2] ^ ((uint32_t*)k)[ 2];
dgabino 0:60ff878b27b8 382 ((uint32_t*)d)[ 3] = ((uint32_t*)s)[ 3] ^ ((uint32_t*)k)[ 3];
dgabino 0:60ff878b27b8 383 #elif 1
dgabino 0:60ff878b27b8 384 ((uint8_t*)d)[ 0] = ((uint8_t*)s)[ 0] ^ ((uint8_t*)k)[ 0];
dgabino 0:60ff878b27b8 385 ((uint8_t*)d)[ 1] = ((uint8_t*)s)[ 1] ^ ((uint8_t*)k)[ 1];
dgabino 0:60ff878b27b8 386 ((uint8_t*)d)[ 2] = ((uint8_t*)s)[ 2] ^ ((uint8_t*)k)[ 2];
dgabino 0:60ff878b27b8 387 ((uint8_t*)d)[ 3] = ((uint8_t*)s)[ 3] ^ ((uint8_t*)k)[ 3];
dgabino 0:60ff878b27b8 388 ((uint8_t*)d)[ 4] = ((uint8_t*)s)[ 4] ^ ((uint8_t*)k)[ 4];
dgabino 0:60ff878b27b8 389 ((uint8_t*)d)[ 5] = ((uint8_t*)s)[ 5] ^ ((uint8_t*)k)[ 5];
dgabino 0:60ff878b27b8 390 ((uint8_t*)d)[ 6] = ((uint8_t*)s)[ 6] ^ ((uint8_t*)k)[ 6];
dgabino 0:60ff878b27b8 391 ((uint8_t*)d)[ 7] = ((uint8_t*)s)[ 7] ^ ((uint8_t*)k)[ 7];
dgabino 0:60ff878b27b8 392 ((uint8_t*)d)[ 8] = ((uint8_t*)s)[ 8] ^ ((uint8_t*)k)[ 8];
dgabino 0:60ff878b27b8 393 ((uint8_t*)d)[ 9] = ((uint8_t*)s)[ 9] ^ ((uint8_t*)k)[ 9];
dgabino 0:60ff878b27b8 394 ((uint8_t*)d)[10] = ((uint8_t*)s)[10] ^ ((uint8_t*)k)[10];
dgabino 0:60ff878b27b8 395 ((uint8_t*)d)[11] = ((uint8_t*)s)[11] ^ ((uint8_t*)k)[11];
dgabino 0:60ff878b27b8 396 ((uint8_t*)d)[12] = ((uint8_t*)s)[12] ^ ((uint8_t*)k)[12];
dgabino 0:60ff878b27b8 397 ((uint8_t*)d)[13] = ((uint8_t*)s)[13] ^ ((uint8_t*)k)[13];
dgabino 0:60ff878b27b8 398 ((uint8_t*)d)[14] = ((uint8_t*)s)[14] ^ ((uint8_t*)k)[14];
dgabino 0:60ff878b27b8 399 ((uint8_t*)d)[15] = ((uint8_t*)s)[15] ^ ((uint8_t*)k)[15];
dgabino 0:60ff878b27b8 400 #else
dgabino 0:60ff878b27b8 401 block_copy(d, s);
dgabino 0:60ff878b27b8 402 xor_block(d, k);
dgabino 0:60ff878b27b8 403 #endif
dgabino 0:60ff878b27b8 404 }
dgabino 0:60ff878b27b8 405
dgabino 0:60ff878b27b8 406 static void add_round_key( uint8_t d[N_BLOCK], const uint8_t k[N_BLOCK] )
dgabino 0:60ff878b27b8 407 {
dgabino 0:60ff878b27b8 408 xor_block(d, k);
dgabino 0:60ff878b27b8 409 }
dgabino 0:60ff878b27b8 410
dgabino 0:60ff878b27b8 411 static void shift_sub_rows( uint8_t st[N_BLOCK] )
dgabino 0:60ff878b27b8 412 { uint8_t tt;
dgabino 0:60ff878b27b8 413
dgabino 0:60ff878b27b8 414 st[ 0] = s_box(st[ 0]); st[ 4] = s_box(st[ 4]);
dgabino 0:60ff878b27b8 415 st[ 8] = s_box(st[ 8]); st[12] = s_box(st[12]);
dgabino 0:60ff878b27b8 416
dgabino 0:60ff878b27b8 417 tt = st[1]; st[ 1] = s_box(st[ 5]); st[ 5] = s_box(st[ 9]);
dgabino 0:60ff878b27b8 418 st[ 9] = s_box(st[13]); st[13] = s_box( tt );
dgabino 0:60ff878b27b8 419
dgabino 0:60ff878b27b8 420 tt = st[2]; st[ 2] = s_box(st[10]); st[10] = s_box( tt );
dgabino 0:60ff878b27b8 421 tt = st[6]; st[ 6] = s_box(st[14]); st[14] = s_box( tt );
dgabino 0:60ff878b27b8 422
dgabino 0:60ff878b27b8 423 tt = st[15]; st[15] = s_box(st[11]); st[11] = s_box(st[ 7]);
dgabino 0:60ff878b27b8 424 st[ 7] = s_box(st[ 3]); st[ 3] = s_box( tt );
dgabino 0:60ff878b27b8 425 }
dgabino 0:60ff878b27b8 426
dgabino 0:60ff878b27b8 427 #if defined( AES_DEC_PREKEYED )
dgabino 0:60ff878b27b8 428
dgabino 0:60ff878b27b8 429 static void inv_shift_sub_rows( uint8_t st[N_BLOCK] )
dgabino 0:60ff878b27b8 430 { uint8_t tt;
dgabino 0:60ff878b27b8 431
dgabino 0:60ff878b27b8 432 st[ 0] = is_box(st[ 0]); st[ 4] = is_box(st[ 4]);
dgabino 0:60ff878b27b8 433 st[ 8] = is_box(st[ 8]); st[12] = is_box(st[12]);
dgabino 0:60ff878b27b8 434
dgabino 0:60ff878b27b8 435 tt = st[13]; st[13] = is_box(st[9]); st[ 9] = is_box(st[5]);
dgabino 0:60ff878b27b8 436 st[ 5] = is_box(st[1]); st[ 1] = is_box( tt );
dgabino 0:60ff878b27b8 437
dgabino 0:60ff878b27b8 438 tt = st[2]; st[ 2] = is_box(st[10]); st[10] = is_box( tt );
dgabino 0:60ff878b27b8 439 tt = st[6]; st[ 6] = is_box(st[14]); st[14] = is_box( tt );
dgabino 0:60ff878b27b8 440
dgabino 0:60ff878b27b8 441 tt = st[3]; st[ 3] = is_box(st[ 7]); st[ 7] = is_box(st[11]);
dgabino 0:60ff878b27b8 442 st[11] = is_box(st[15]); st[15] = is_box( tt );
dgabino 0:60ff878b27b8 443 }
dgabino 0:60ff878b27b8 444
dgabino 0:60ff878b27b8 445 #endif
dgabino 0:60ff878b27b8 446
dgabino 0:60ff878b27b8 447 #if defined( VERSION_1 )
dgabino 0:60ff878b27b8 448 static void mix_sub_columns( uint8_t dt[N_BLOCK] )
dgabino 0:60ff878b27b8 449 { uint8_t st[N_BLOCK];
dgabino 0:60ff878b27b8 450 block_copy(st, dt);
dgabino 0:60ff878b27b8 451 #else
dgabino 0:60ff878b27b8 452 static void mix_sub_columns( uint8_t dt[N_BLOCK], uint8_t st[N_BLOCK] )
dgabino 0:60ff878b27b8 453 {
dgabino 0:60ff878b27b8 454 #endif
dgabino 0:60ff878b27b8 455 dt[ 0] = gfm2_sb(st[0]) ^ gfm3_sb(st[5]) ^ s_box(st[10]) ^ s_box(st[15]);
dgabino 0:60ff878b27b8 456 dt[ 1] = s_box(st[0]) ^ gfm2_sb(st[5]) ^ gfm3_sb(st[10]) ^ s_box(st[15]);
dgabino 0:60ff878b27b8 457 dt[ 2] = s_box(st[0]) ^ s_box(st[5]) ^ gfm2_sb(st[10]) ^ gfm3_sb(st[15]);
dgabino 0:60ff878b27b8 458 dt[ 3] = gfm3_sb(st[0]) ^ s_box(st[5]) ^ s_box(st[10]) ^ gfm2_sb(st[15]);
dgabino 0:60ff878b27b8 459
dgabino 0:60ff878b27b8 460 dt[ 4] = gfm2_sb(st[4]) ^ gfm3_sb(st[9]) ^ s_box(st[14]) ^ s_box(st[3]);
dgabino 0:60ff878b27b8 461 dt[ 5] = s_box(st[4]) ^ gfm2_sb(st[9]) ^ gfm3_sb(st[14]) ^ s_box(st[3]);
dgabino 0:60ff878b27b8 462 dt[ 6] = s_box(st[4]) ^ s_box(st[9]) ^ gfm2_sb(st[14]) ^ gfm3_sb(st[3]);
dgabino 0:60ff878b27b8 463 dt[ 7] = gfm3_sb(st[4]) ^ s_box(st[9]) ^ s_box(st[14]) ^ gfm2_sb(st[3]);
dgabino 0:60ff878b27b8 464
dgabino 0:60ff878b27b8 465 dt[ 8] = gfm2_sb(st[8]) ^ gfm3_sb(st[13]) ^ s_box(st[2]) ^ s_box(st[7]);
dgabino 0:60ff878b27b8 466 dt[ 9] = s_box(st[8]) ^ gfm2_sb(st[13]) ^ gfm3_sb(st[2]) ^ s_box(st[7]);
dgabino 0:60ff878b27b8 467 dt[10] = s_box(st[8]) ^ s_box(st[13]) ^ gfm2_sb(st[2]) ^ gfm3_sb(st[7]);
dgabino 0:60ff878b27b8 468 dt[11] = gfm3_sb(st[8]) ^ s_box(st[13]) ^ s_box(st[2]) ^ gfm2_sb(st[7]);
dgabino 0:60ff878b27b8 469
dgabino 0:60ff878b27b8 470 dt[12] = gfm2_sb(st[12]) ^ gfm3_sb(st[1]) ^ s_box(st[6]) ^ s_box(st[11]);
dgabino 0:60ff878b27b8 471 dt[13] = s_box(st[12]) ^ gfm2_sb(st[1]) ^ gfm3_sb(st[6]) ^ s_box(st[11]);
dgabino 0:60ff878b27b8 472 dt[14] = s_box(st[12]) ^ s_box(st[1]) ^ gfm2_sb(st[6]) ^ gfm3_sb(st[11]);
dgabino 0:60ff878b27b8 473 dt[15] = gfm3_sb(st[12]) ^ s_box(st[1]) ^ s_box(st[6]) ^ gfm2_sb(st[11]);
dgabino 0:60ff878b27b8 474 }
dgabino 0:60ff878b27b8 475
dgabino 0:60ff878b27b8 476 #if defined( AES_DEC_PREKEYED )
dgabino 0:60ff878b27b8 477
dgabino 0:60ff878b27b8 478 #if defined( VERSION_1 )
dgabino 0:60ff878b27b8 479 static void inv_mix_sub_columns( uint8_t dt[N_BLOCK] )
dgabino 0:60ff878b27b8 480 { uint8_t st[N_BLOCK];
dgabino 0:60ff878b27b8 481 block_copy(st, dt);
dgabino 0:60ff878b27b8 482 #else
dgabino 0:60ff878b27b8 483 static void inv_mix_sub_columns( uint8_t dt[N_BLOCK], uint8_t st[N_BLOCK] )
dgabino 0:60ff878b27b8 484 {
dgabino 0:60ff878b27b8 485 #endif
dgabino 0:60ff878b27b8 486 dt[ 0] = is_box(gfm_e(st[ 0]) ^ gfm_b(st[ 1]) ^ gfm_d(st[ 2]) ^ gfm_9(st[ 3]));
dgabino 0:60ff878b27b8 487 dt[ 5] = is_box(gfm_9(st[ 0]) ^ gfm_e(st[ 1]) ^ gfm_b(st[ 2]) ^ gfm_d(st[ 3]));
dgabino 0:60ff878b27b8 488 dt[10] = is_box(gfm_d(st[ 0]) ^ gfm_9(st[ 1]) ^ gfm_e(st[ 2]) ^ gfm_b(st[ 3]));
dgabino 0:60ff878b27b8 489 dt[15] = is_box(gfm_b(st[ 0]) ^ gfm_d(st[ 1]) ^ gfm_9(st[ 2]) ^ gfm_e(st[ 3]));
dgabino 0:60ff878b27b8 490
dgabino 0:60ff878b27b8 491 dt[ 4] = is_box(gfm_e(st[ 4]) ^ gfm_b(st[ 5]) ^ gfm_d(st[ 6]) ^ gfm_9(st[ 7]));
dgabino 0:60ff878b27b8 492 dt[ 9] = is_box(gfm_9(st[ 4]) ^ gfm_e(st[ 5]) ^ gfm_b(st[ 6]) ^ gfm_d(st[ 7]));
dgabino 0:60ff878b27b8 493 dt[14] = is_box(gfm_d(st[ 4]) ^ gfm_9(st[ 5]) ^ gfm_e(st[ 6]) ^ gfm_b(st[ 7]));
dgabino 0:60ff878b27b8 494 dt[ 3] = is_box(gfm_b(st[ 4]) ^ gfm_d(st[ 5]) ^ gfm_9(st[ 6]) ^ gfm_e(st[ 7]));
dgabino 0:60ff878b27b8 495
dgabino 0:60ff878b27b8 496 dt[ 8] = is_box(gfm_e(st[ 8]) ^ gfm_b(st[ 9]) ^ gfm_d(st[10]) ^ gfm_9(st[11]));
dgabino 0:60ff878b27b8 497 dt[13] = is_box(gfm_9(st[ 8]) ^ gfm_e(st[ 9]) ^ gfm_b(st[10]) ^ gfm_d(st[11]));
dgabino 0:60ff878b27b8 498 dt[ 2] = is_box(gfm_d(st[ 8]) ^ gfm_9(st[ 9]) ^ gfm_e(st[10]) ^ gfm_b(st[11]));
dgabino 0:60ff878b27b8 499 dt[ 7] = is_box(gfm_b(st[ 8]) ^ gfm_d(st[ 9]) ^ gfm_9(st[10]) ^ gfm_e(st[11]));
dgabino 0:60ff878b27b8 500
dgabino 0:60ff878b27b8 501 dt[12] = is_box(gfm_e(st[12]) ^ gfm_b(st[13]) ^ gfm_d(st[14]) ^ gfm_9(st[15]));
dgabino 0:60ff878b27b8 502 dt[ 1] = is_box(gfm_9(st[12]) ^ gfm_e(st[13]) ^ gfm_b(st[14]) ^ gfm_d(st[15]));
dgabino 0:60ff878b27b8 503 dt[ 6] = is_box(gfm_d(st[12]) ^ gfm_9(st[13]) ^ gfm_e(st[14]) ^ gfm_b(st[15]));
dgabino 0:60ff878b27b8 504 dt[11] = is_box(gfm_b(st[12]) ^ gfm_d(st[13]) ^ gfm_9(st[14]) ^ gfm_e(st[15]));
dgabino 0:60ff878b27b8 505 }
dgabino 0:60ff878b27b8 506
dgabino 0:60ff878b27b8 507 #endif
dgabino 0:60ff878b27b8 508
dgabino 0:60ff878b27b8 509 #if defined( AES_ENC_PREKEYED ) || defined( AES_DEC_PREKEYED )
dgabino 0:60ff878b27b8 510
dgabino 0:60ff878b27b8 511 /* Set the cipher key for the pre-keyed version */
dgabino 0:60ff878b27b8 512
dgabino 0:60ff878b27b8 513 return_type aes_set_key( const uint8_t key[], length_type keylen, aes_context ctx[1] )
dgabino 0:60ff878b27b8 514 {
dgabino 0:60ff878b27b8 515 uint8_t cc, rc, hi;
dgabino 0:60ff878b27b8 516
dgabino 0:60ff878b27b8 517 switch( keylen )
dgabino 0:60ff878b27b8 518 {
dgabino 0:60ff878b27b8 519 case 16:
dgabino 0:60ff878b27b8 520 case 24:
dgabino 0:60ff878b27b8 521 case 32:
dgabino 0:60ff878b27b8 522 break;
dgabino 0:60ff878b27b8 523 default:
dgabino 0:60ff878b27b8 524 ctx->rnd = 0;
dgabino 0:60ff878b27b8 525 return ( uint8_t )-1;
dgabino 0:60ff878b27b8 526 }
dgabino 0:60ff878b27b8 527 block_copy_nn(ctx->ksch, key, keylen);
dgabino 0:60ff878b27b8 528 hi = (keylen + 28) << 2;
dgabino 0:60ff878b27b8 529 ctx->rnd = (hi >> 4) - 1;
dgabino 0:60ff878b27b8 530 for( cc = keylen, rc = 1; cc < hi; cc += 4 )
dgabino 0:60ff878b27b8 531 { uint8_t tt, t0, t1, t2, t3;
dgabino 0:60ff878b27b8 532
dgabino 0:60ff878b27b8 533 t0 = ctx->ksch[cc - 4];
dgabino 0:60ff878b27b8 534 t1 = ctx->ksch[cc - 3];
dgabino 0:60ff878b27b8 535 t2 = ctx->ksch[cc - 2];
dgabino 0:60ff878b27b8 536 t3 = ctx->ksch[cc - 1];
dgabino 0:60ff878b27b8 537 if( cc % keylen == 0 )
dgabino 0:60ff878b27b8 538 {
dgabino 0:60ff878b27b8 539 tt = t0;
dgabino 0:60ff878b27b8 540 t0 = s_box(t1) ^ rc;
dgabino 0:60ff878b27b8 541 t1 = s_box(t2);
dgabino 0:60ff878b27b8 542 t2 = s_box(t3);
dgabino 0:60ff878b27b8 543 t3 = s_box(tt);
dgabino 0:60ff878b27b8 544 rc = f2(rc);
dgabino 0:60ff878b27b8 545 }
dgabino 0:60ff878b27b8 546 else if( keylen > 24 && cc % keylen == 16 )
dgabino 0:60ff878b27b8 547 {
dgabino 0:60ff878b27b8 548 t0 = s_box(t0);
dgabino 0:60ff878b27b8 549 t1 = s_box(t1);
dgabino 0:60ff878b27b8 550 t2 = s_box(t2);
dgabino 0:60ff878b27b8 551 t3 = s_box(t3);
dgabino 0:60ff878b27b8 552 }
dgabino 0:60ff878b27b8 553 tt = cc - keylen;
dgabino 0:60ff878b27b8 554 ctx->ksch[cc + 0] = ctx->ksch[tt + 0] ^ t0;
dgabino 0:60ff878b27b8 555 ctx->ksch[cc + 1] = ctx->ksch[tt + 1] ^ t1;
dgabino 0:60ff878b27b8 556 ctx->ksch[cc + 2] = ctx->ksch[tt + 2] ^ t2;
dgabino 0:60ff878b27b8 557 ctx->ksch[cc + 3] = ctx->ksch[tt + 3] ^ t3;
dgabino 0:60ff878b27b8 558 }
dgabino 0:60ff878b27b8 559 return 0;
dgabino 0:60ff878b27b8 560 }
dgabino 0:60ff878b27b8 561
dgabino 0:60ff878b27b8 562 #endif
dgabino 0:60ff878b27b8 563
dgabino 0:60ff878b27b8 564 #if defined( AES_ENC_PREKEYED )
dgabino 0:60ff878b27b8 565
dgabino 0:60ff878b27b8 566 /* Encrypt a single block of 16 bytes */
dgabino 0:60ff878b27b8 567
dgabino 0:60ff878b27b8 568 return_type aes_encrypt( const uint8_t in[N_BLOCK], uint8_t out[N_BLOCK], const aes_context ctx[1] )
dgabino 0:60ff878b27b8 569 {
dgabino 0:60ff878b27b8 570 if( ctx->rnd )
dgabino 0:60ff878b27b8 571 {
dgabino 0:60ff878b27b8 572 uint8_t s1[N_BLOCK], r;
dgabino 0:60ff878b27b8 573 copy_and_key( s1, in, ctx->ksch );
dgabino 0:60ff878b27b8 574
dgabino 0:60ff878b27b8 575 for( r = 1 ; r < ctx->rnd ; ++r )
dgabino 0:60ff878b27b8 576 #if defined( VERSION_1 )
dgabino 0:60ff878b27b8 577 {
dgabino 0:60ff878b27b8 578 mix_sub_columns( s1 );
dgabino 0:60ff878b27b8 579 add_round_key( s1, ctx->ksch + r * N_BLOCK);
dgabino 0:60ff878b27b8 580 }
dgabino 0:60ff878b27b8 581 #else
dgabino 0:60ff878b27b8 582 { uint8_t s2[N_BLOCK];
dgabino 0:60ff878b27b8 583 mix_sub_columns( s2, s1 );
dgabino 0:60ff878b27b8 584 copy_and_key( s1, s2, ctx->ksch + r * N_BLOCK);
dgabino 0:60ff878b27b8 585 }
dgabino 0:60ff878b27b8 586 #endif
dgabino 0:60ff878b27b8 587 shift_sub_rows( s1 );
dgabino 0:60ff878b27b8 588 copy_and_key( out, s1, ctx->ksch + r * N_BLOCK );
dgabino 0:60ff878b27b8 589 }
dgabino 0:60ff878b27b8 590 else
dgabino 0:60ff878b27b8 591 return ( uint8_t )-1;
dgabino 0:60ff878b27b8 592 return 0;
dgabino 0:60ff878b27b8 593 }
dgabino 0:60ff878b27b8 594
dgabino 0:60ff878b27b8 595 /* CBC encrypt a number of blocks (input and return an IV) */
dgabino 0:60ff878b27b8 596
dgabino 0:60ff878b27b8 597 return_type aes_cbc_encrypt( const uint8_t *in, uint8_t *out,
dgabino 0:60ff878b27b8 598 int32_t n_block, uint8_t iv[N_BLOCK], const aes_context ctx[1] )
dgabino 0:60ff878b27b8 599 {
dgabino 0:60ff878b27b8 600
dgabino 0:60ff878b27b8 601 while(n_block--)
dgabino 0:60ff878b27b8 602 {
dgabino 0:60ff878b27b8 603 xor_block(iv, in);
dgabino 0:60ff878b27b8 604 if(aes_encrypt(iv, iv, ctx) != EXIT_SUCCESS)
dgabino 0:60ff878b27b8 605 return EXIT_FAILURE;
dgabino 0:60ff878b27b8 606 //memcpy(out, iv, N_BLOCK);
dgabino 0:60ff878b27b8 607 block_copy(out, iv);
dgabino 0:60ff878b27b8 608 in += N_BLOCK;
dgabino 0:60ff878b27b8 609 out += N_BLOCK;
dgabino 0:60ff878b27b8 610 }
dgabino 0:60ff878b27b8 611 return EXIT_SUCCESS;
dgabino 0:60ff878b27b8 612 }
dgabino 0:60ff878b27b8 613
dgabino 0:60ff878b27b8 614 #endif
dgabino 0:60ff878b27b8 615
dgabino 0:60ff878b27b8 616 #if defined( AES_DEC_PREKEYED )
dgabino 0:60ff878b27b8 617
dgabino 0:60ff878b27b8 618 /* Decrypt a single block of 16 bytes */
dgabino 0:60ff878b27b8 619
dgabino 0:60ff878b27b8 620 return_type aes_decrypt( const uint8_t in[N_BLOCK], uint8_t out[N_BLOCK], const aes_context ctx[1] )
dgabino 0:60ff878b27b8 621 {
dgabino 0:60ff878b27b8 622 if( ctx->rnd )
dgabino 0:60ff878b27b8 623 {
dgabino 0:60ff878b27b8 624 uint8_t s1[N_BLOCK], r;
dgabino 0:60ff878b27b8 625 copy_and_key( s1, in, ctx->ksch + ctx->rnd * N_BLOCK );
dgabino 0:60ff878b27b8 626 inv_shift_sub_rows( s1 );
dgabino 0:60ff878b27b8 627
dgabino 0:60ff878b27b8 628 for( r = ctx->rnd ; --r ; )
dgabino 0:60ff878b27b8 629 #if defined( VERSION_1 )
dgabino 0:60ff878b27b8 630 {
dgabino 0:60ff878b27b8 631 add_round_key( s1, ctx->ksch + r * N_BLOCK );
dgabino 0:60ff878b27b8 632 inv_mix_sub_columns( s1 );
dgabino 0:60ff878b27b8 633 }
dgabino 0:60ff878b27b8 634 #else
dgabino 0:60ff878b27b8 635 { uint8_t s2[N_BLOCK];
dgabino 0:60ff878b27b8 636 copy_and_key( s2, s1, ctx->ksch + r * N_BLOCK );
dgabino 0:60ff878b27b8 637 inv_mix_sub_columns( s1, s2 );
dgabino 0:60ff878b27b8 638 }
dgabino 0:60ff878b27b8 639 #endif
dgabino 0:60ff878b27b8 640 copy_and_key( out, s1, ctx->ksch );
dgabino 0:60ff878b27b8 641 }
dgabino 0:60ff878b27b8 642 else
dgabino 0:60ff878b27b8 643 return -1;
dgabino 0:60ff878b27b8 644 return 0;
dgabino 0:60ff878b27b8 645 }
dgabino 0:60ff878b27b8 646
dgabino 0:60ff878b27b8 647 /* CBC decrypt a number of blocks (input and return an IV) */
dgabino 0:60ff878b27b8 648
dgabino 0:60ff878b27b8 649 return_type aes_cbc_decrypt( const uint8_t *in, uint8_t *out,
dgabino 0:60ff878b27b8 650 int32_t n_block, uint8_t iv[N_BLOCK], const aes_context ctx[1] )
dgabino 0:60ff878b27b8 651 {
dgabino 0:60ff878b27b8 652 while(n_block--)
dgabino 0:60ff878b27b8 653 { uint8_t tmp[N_BLOCK];
dgabino 0:60ff878b27b8 654
dgabino 0:60ff878b27b8 655 //memcpy(tmp, in, N_BLOCK);
dgabino 0:60ff878b27b8 656 block_copy(tmp, in);
dgabino 0:60ff878b27b8 657 if(aes_decrypt(in, out, ctx) != EXIT_SUCCESS)
dgabino 0:60ff878b27b8 658 return EXIT_FAILURE;
dgabino 0:60ff878b27b8 659 xor_block(out, iv);
dgabino 0:60ff878b27b8 660 //memcpy(iv, tmp, N_BLOCK);
dgabino 0:60ff878b27b8 661 block_copy(iv, tmp);
dgabino 0:60ff878b27b8 662 in += N_BLOCK;
dgabino 0:60ff878b27b8 663 out += N_BLOCK;
dgabino 0:60ff878b27b8 664 }
dgabino 0:60ff878b27b8 665 return EXIT_SUCCESS;
dgabino 0:60ff878b27b8 666 }
dgabino 0:60ff878b27b8 667
dgabino 0:60ff878b27b8 668 #endif
dgabino 0:60ff878b27b8 669
dgabino 0:60ff878b27b8 670 #if defined( AES_ENC_128_OTFK )
dgabino 0:60ff878b27b8 671
dgabino 0:60ff878b27b8 672 /* The 'on the fly' encryption key update for for 128 bit keys */
dgabino 0:60ff878b27b8 673
dgabino 0:60ff878b27b8 674 static void update_encrypt_key_128( uint8_t k[N_BLOCK], uint8_t *rc )
dgabino 0:60ff878b27b8 675 { uint8_t cc;
dgabino 0:60ff878b27b8 676
dgabino 0:60ff878b27b8 677 k[0] ^= s_box(k[13]) ^ *rc;
dgabino 0:60ff878b27b8 678 k[1] ^= s_box(k[14]);
dgabino 0:60ff878b27b8 679 k[2] ^= s_box(k[15]);
dgabino 0:60ff878b27b8 680 k[3] ^= s_box(k[12]);
dgabino 0:60ff878b27b8 681 *rc = f2( *rc );
dgabino 0:60ff878b27b8 682
dgabino 0:60ff878b27b8 683 for(cc = 4; cc < 16; cc += 4 )
dgabino 0:60ff878b27b8 684 {
dgabino 0:60ff878b27b8 685 k[cc + 0] ^= k[cc - 4];
dgabino 0:60ff878b27b8 686 k[cc + 1] ^= k[cc - 3];
dgabino 0:60ff878b27b8 687 k[cc + 2] ^= k[cc - 2];
dgabino 0:60ff878b27b8 688 k[cc + 3] ^= k[cc - 1];
dgabino 0:60ff878b27b8 689 }
dgabino 0:60ff878b27b8 690 }
dgabino 0:60ff878b27b8 691
dgabino 0:60ff878b27b8 692 /* Encrypt a single block of 16 bytes with 'on the fly' 128 bit keying */
dgabino 0:60ff878b27b8 693
dgabino 0:60ff878b27b8 694 void aes_encrypt_128( const uint8_t in[N_BLOCK], uint8_t out[N_BLOCK],
dgabino 0:60ff878b27b8 695 const uint8_t key[N_BLOCK], uint8_t o_key[N_BLOCK] )
dgabino 0:60ff878b27b8 696 { uint8_t s1[N_BLOCK], r, rc = 1;
dgabino 0:60ff878b27b8 697
dgabino 0:60ff878b27b8 698 if(o_key != key)
dgabino 0:60ff878b27b8 699 block_copy( o_key, key );
dgabino 0:60ff878b27b8 700 copy_and_key( s1, in, o_key );
dgabino 0:60ff878b27b8 701
dgabino 0:60ff878b27b8 702 for( r = 1 ; r < 10 ; ++r )
dgabino 0:60ff878b27b8 703 #if defined( VERSION_1 )
dgabino 0:60ff878b27b8 704 {
dgabino 0:60ff878b27b8 705 mix_sub_columns( s1 );
dgabino 0:60ff878b27b8 706 update_encrypt_key_128( o_key, &rc );
dgabino 0:60ff878b27b8 707 add_round_key( s1, o_key );
dgabino 0:60ff878b27b8 708 }
dgabino 0:60ff878b27b8 709 #else
dgabino 0:60ff878b27b8 710 { uint8_t s2[N_BLOCK];
dgabino 0:60ff878b27b8 711 mix_sub_columns( s2, s1 );
dgabino 0:60ff878b27b8 712 update_encrypt_key_128( o_key, &rc );
dgabino 0:60ff878b27b8 713 copy_and_key( s1, s2, o_key );
dgabino 0:60ff878b27b8 714 }
dgabino 0:60ff878b27b8 715 #endif
dgabino 0:60ff878b27b8 716
dgabino 0:60ff878b27b8 717 shift_sub_rows( s1 );
dgabino 0:60ff878b27b8 718 update_encrypt_key_128( o_key, &rc );
dgabino 0:60ff878b27b8 719 copy_and_key( out, s1, o_key );
dgabino 0:60ff878b27b8 720 }
dgabino 0:60ff878b27b8 721
dgabino 0:60ff878b27b8 722 #endif
dgabino 0:60ff878b27b8 723
dgabino 0:60ff878b27b8 724 #if defined( AES_DEC_128_OTFK )
dgabino 0:60ff878b27b8 725
dgabino 0:60ff878b27b8 726 /* The 'on the fly' decryption key update for for 128 bit keys */
dgabino 0:60ff878b27b8 727
dgabino 0:60ff878b27b8 728 static void update_decrypt_key_128( uint8_t k[N_BLOCK], uint8_t *rc )
dgabino 0:60ff878b27b8 729 { uint8_t cc;
dgabino 0:60ff878b27b8 730
dgabino 0:60ff878b27b8 731 for( cc = 12; cc > 0; cc -= 4 )
dgabino 0:60ff878b27b8 732 {
dgabino 0:60ff878b27b8 733 k[cc + 0] ^= k[cc - 4];
dgabino 0:60ff878b27b8 734 k[cc + 1] ^= k[cc - 3];
dgabino 0:60ff878b27b8 735 k[cc + 2] ^= k[cc - 2];
dgabino 0:60ff878b27b8 736 k[cc + 3] ^= k[cc - 1];
dgabino 0:60ff878b27b8 737 }
dgabino 0:60ff878b27b8 738 *rc = d2(*rc);
dgabino 0:60ff878b27b8 739 k[0] ^= s_box(k[13]) ^ *rc;
dgabino 0:60ff878b27b8 740 k[1] ^= s_box(k[14]);
dgabino 0:60ff878b27b8 741 k[2] ^= s_box(k[15]);
dgabino 0:60ff878b27b8 742 k[3] ^= s_box(k[12]);
dgabino 0:60ff878b27b8 743 }
dgabino 0:60ff878b27b8 744
dgabino 0:60ff878b27b8 745 /* Decrypt a single block of 16 bytes with 'on the fly' 128 bit keying */
dgabino 0:60ff878b27b8 746
dgabino 0:60ff878b27b8 747 void aes_decrypt_128( const uint8_t in[N_BLOCK], uint8_t out[N_BLOCK],
dgabino 0:60ff878b27b8 748 const uint8_t key[N_BLOCK], uint8_t o_key[N_BLOCK] )
dgabino 0:60ff878b27b8 749 {
dgabino 0:60ff878b27b8 750 uint8_t s1[N_BLOCK], r, rc = 0x6c;
dgabino 0:60ff878b27b8 751 if(o_key != key)
dgabino 0:60ff878b27b8 752 block_copy( o_key, key );
dgabino 0:60ff878b27b8 753
dgabino 0:60ff878b27b8 754 copy_and_key( s1, in, o_key );
dgabino 0:60ff878b27b8 755 inv_shift_sub_rows( s1 );
dgabino 0:60ff878b27b8 756
dgabino 0:60ff878b27b8 757 for( r = 10 ; --r ; )
dgabino 0:60ff878b27b8 758 #if defined( VERSION_1 )
dgabino 0:60ff878b27b8 759 {
dgabino 0:60ff878b27b8 760 update_decrypt_key_128( o_key, &rc );
dgabino 0:60ff878b27b8 761 add_round_key( s1, o_key );
dgabino 0:60ff878b27b8 762 inv_mix_sub_columns( s1 );
dgabino 0:60ff878b27b8 763 }
dgabino 0:60ff878b27b8 764 #else
dgabino 0:60ff878b27b8 765 { uint8_t s2[N_BLOCK];
dgabino 0:60ff878b27b8 766 update_decrypt_key_128( o_key, &rc );
dgabino 0:60ff878b27b8 767 copy_and_key( s2, s1, o_key );
dgabino 0:60ff878b27b8 768 inv_mix_sub_columns( s1, s2 );
dgabino 0:60ff878b27b8 769 }
dgabino 0:60ff878b27b8 770 #endif
dgabino 0:60ff878b27b8 771 update_decrypt_key_128( o_key, &rc );
dgabino 0:60ff878b27b8 772 copy_and_key( out, s1, o_key );
dgabino 0:60ff878b27b8 773 }
dgabino 0:60ff878b27b8 774
dgabino 0:60ff878b27b8 775 #endif
dgabino 0:60ff878b27b8 776
dgabino 0:60ff878b27b8 777 #if defined( AES_ENC_256_OTFK )
dgabino 0:60ff878b27b8 778
dgabino 0:60ff878b27b8 779 /* The 'on the fly' encryption key update for for 256 bit keys */
dgabino 0:60ff878b27b8 780
dgabino 0:60ff878b27b8 781 static void update_encrypt_key_256( uint8_t k[2 * N_BLOCK], uint8_t *rc )
dgabino 0:60ff878b27b8 782 { uint8_t cc;
dgabino 0:60ff878b27b8 783
dgabino 0:60ff878b27b8 784 k[0] ^= s_box(k[29]) ^ *rc;
dgabino 0:60ff878b27b8 785 k[1] ^= s_box(k[30]);
dgabino 0:60ff878b27b8 786 k[2] ^= s_box(k[31]);
dgabino 0:60ff878b27b8 787 k[3] ^= s_box(k[28]);
dgabino 0:60ff878b27b8 788 *rc = f2( *rc );
dgabino 0:60ff878b27b8 789
dgabino 0:60ff878b27b8 790 for(cc = 4; cc < 16; cc += 4)
dgabino 0:60ff878b27b8 791 {
dgabino 0:60ff878b27b8 792 k[cc + 0] ^= k[cc - 4];
dgabino 0:60ff878b27b8 793 k[cc + 1] ^= k[cc - 3];
dgabino 0:60ff878b27b8 794 k[cc + 2] ^= k[cc - 2];
dgabino 0:60ff878b27b8 795 k[cc + 3] ^= k[cc - 1];
dgabino 0:60ff878b27b8 796 }
dgabino 0:60ff878b27b8 797
dgabino 0:60ff878b27b8 798 k[16] ^= s_box(k[12]);
dgabino 0:60ff878b27b8 799 k[17] ^= s_box(k[13]);
dgabino 0:60ff878b27b8 800 k[18] ^= s_box(k[14]);
dgabino 0:60ff878b27b8 801 k[19] ^= s_box(k[15]);
dgabino 0:60ff878b27b8 802
dgabino 0:60ff878b27b8 803 for( cc = 20; cc < 32; cc += 4 )
dgabino 0:60ff878b27b8 804 {
dgabino 0:60ff878b27b8 805 k[cc + 0] ^= k[cc - 4];
dgabino 0:60ff878b27b8 806 k[cc + 1] ^= k[cc - 3];
dgabino 0:60ff878b27b8 807 k[cc + 2] ^= k[cc - 2];
dgabino 0:60ff878b27b8 808 k[cc + 3] ^= k[cc - 1];
dgabino 0:60ff878b27b8 809 }
dgabino 0:60ff878b27b8 810 }
dgabino 0:60ff878b27b8 811
dgabino 0:60ff878b27b8 812 /* Encrypt a single block of 16 bytes with 'on the fly' 256 bit keying */
dgabino 0:60ff878b27b8 813
dgabino 0:60ff878b27b8 814 void aes_encrypt_256( const uint8_t in[N_BLOCK], uint8_t out[N_BLOCK],
dgabino 0:60ff878b27b8 815 const uint8_t key[2 * N_BLOCK], uint8_t o_key[2 * N_BLOCK] )
dgabino 0:60ff878b27b8 816 {
dgabino 0:60ff878b27b8 817 uint8_t s1[N_BLOCK], r, rc = 1;
dgabino 0:60ff878b27b8 818 if(o_key != key)
dgabino 0:60ff878b27b8 819 {
dgabino 0:60ff878b27b8 820 block_copy( o_key, key );
dgabino 0:60ff878b27b8 821 block_copy( o_key + 16, key + 16 );
dgabino 0:60ff878b27b8 822 }
dgabino 0:60ff878b27b8 823 copy_and_key( s1, in, o_key );
dgabino 0:60ff878b27b8 824
dgabino 0:60ff878b27b8 825 for( r = 1 ; r < 14 ; ++r )
dgabino 0:60ff878b27b8 826 #if defined( VERSION_1 )
dgabino 0:60ff878b27b8 827 {
dgabino 0:60ff878b27b8 828 mix_sub_columns(s1);
dgabino 0:60ff878b27b8 829 if( r & 1 )
dgabino 0:60ff878b27b8 830 add_round_key( s1, o_key + 16 );
dgabino 0:60ff878b27b8 831 else
dgabino 0:60ff878b27b8 832 {
dgabino 0:60ff878b27b8 833 update_encrypt_key_256( o_key, &rc );
dgabino 0:60ff878b27b8 834 add_round_key( s1, o_key );
dgabino 0:60ff878b27b8 835 }
dgabino 0:60ff878b27b8 836 }
dgabino 0:60ff878b27b8 837 #else
dgabino 0:60ff878b27b8 838 { uint8_t s2[N_BLOCK];
dgabino 0:60ff878b27b8 839 mix_sub_columns( s2, s1 );
dgabino 0:60ff878b27b8 840 if( r & 1 )
dgabino 0:60ff878b27b8 841 copy_and_key( s1, s2, o_key + 16 );
dgabino 0:60ff878b27b8 842 else
dgabino 0:60ff878b27b8 843 {
dgabino 0:60ff878b27b8 844 update_encrypt_key_256( o_key, &rc );
dgabino 0:60ff878b27b8 845 copy_and_key( s1, s2, o_key );
dgabino 0:60ff878b27b8 846 }
dgabino 0:60ff878b27b8 847 }
dgabino 0:60ff878b27b8 848 #endif
dgabino 0:60ff878b27b8 849
dgabino 0:60ff878b27b8 850 shift_sub_rows( s1 );
dgabino 0:60ff878b27b8 851 update_encrypt_key_256( o_key, &rc );
dgabino 0:60ff878b27b8 852 copy_and_key( out, s1, o_key );
dgabino 0:60ff878b27b8 853 }
dgabino 0:60ff878b27b8 854
dgabino 0:60ff878b27b8 855 #endif
dgabino 0:60ff878b27b8 856
dgabino 0:60ff878b27b8 857 #if defined( AES_DEC_256_OTFK )
dgabino 0:60ff878b27b8 858
dgabino 0:60ff878b27b8 859 /* The 'on the fly' encryption key update for for 256 bit keys */
dgabino 0:60ff878b27b8 860
dgabino 0:60ff878b27b8 861 static void update_decrypt_key_256( uint8_t k[2 * N_BLOCK], uint8_t *rc )
dgabino 0:60ff878b27b8 862 { uint8_t cc;
dgabino 0:60ff878b27b8 863
dgabino 0:60ff878b27b8 864 for(cc = 28; cc > 16; cc -= 4)
dgabino 0:60ff878b27b8 865 {
dgabino 0:60ff878b27b8 866 k[cc + 0] ^= k[cc - 4];
dgabino 0:60ff878b27b8 867 k[cc + 1] ^= k[cc - 3];
dgabino 0:60ff878b27b8 868 k[cc + 2] ^= k[cc - 2];
dgabino 0:60ff878b27b8 869 k[cc + 3] ^= k[cc - 1];
dgabino 0:60ff878b27b8 870 }
dgabino 0:60ff878b27b8 871
dgabino 0:60ff878b27b8 872 k[16] ^= s_box(k[12]);
dgabino 0:60ff878b27b8 873 k[17] ^= s_box(k[13]);
dgabino 0:60ff878b27b8 874 k[18] ^= s_box(k[14]);
dgabino 0:60ff878b27b8 875 k[19] ^= s_box(k[15]);
dgabino 0:60ff878b27b8 876
dgabino 0:60ff878b27b8 877 for(cc = 12; cc > 0; cc -= 4)
dgabino 0:60ff878b27b8 878 {
dgabino 0:60ff878b27b8 879 k[cc + 0] ^= k[cc - 4];
dgabino 0:60ff878b27b8 880 k[cc + 1] ^= k[cc - 3];
dgabino 0:60ff878b27b8 881 k[cc + 2] ^= k[cc - 2];
dgabino 0:60ff878b27b8 882 k[cc + 3] ^= k[cc - 1];
dgabino 0:60ff878b27b8 883 }
dgabino 0:60ff878b27b8 884
dgabino 0:60ff878b27b8 885 *rc = d2(*rc);
dgabino 0:60ff878b27b8 886 k[0] ^= s_box(k[29]) ^ *rc;
dgabino 0:60ff878b27b8 887 k[1] ^= s_box(k[30]);
dgabino 0:60ff878b27b8 888 k[2] ^= s_box(k[31]);
dgabino 0:60ff878b27b8 889 k[3] ^= s_box(k[28]);
dgabino 0:60ff878b27b8 890 }
dgabino 0:60ff878b27b8 891
dgabino 0:60ff878b27b8 892 /* Decrypt a single block of 16 bytes with 'on the fly'
dgabino 0:60ff878b27b8 893 256 bit keying
dgabino 0:60ff878b27b8 894 */
dgabino 0:60ff878b27b8 895 void aes_decrypt_256( const uint8_t in[N_BLOCK], uint8_t out[N_BLOCK],
dgabino 0:60ff878b27b8 896 const uint8_t key[2 * N_BLOCK], uint8_t o_key[2 * N_BLOCK] )
dgabino 0:60ff878b27b8 897 {
dgabino 0:60ff878b27b8 898 uint8_t s1[N_BLOCK], r, rc = 0x80;
dgabino 0:60ff878b27b8 899
dgabino 0:60ff878b27b8 900 if(o_key != key)
dgabino 0:60ff878b27b8 901 {
dgabino 0:60ff878b27b8 902 block_copy( o_key, key );
dgabino 0:60ff878b27b8 903 block_copy( o_key + 16, key + 16 );
dgabino 0:60ff878b27b8 904 }
dgabino 0:60ff878b27b8 905
dgabino 0:60ff878b27b8 906 copy_and_key( s1, in, o_key );
dgabino 0:60ff878b27b8 907 inv_shift_sub_rows( s1 );
dgabino 0:60ff878b27b8 908
dgabino 0:60ff878b27b8 909 for( r = 14 ; --r ; )
dgabino 0:60ff878b27b8 910 #if defined( VERSION_1 )
dgabino 0:60ff878b27b8 911 {
dgabino 0:60ff878b27b8 912 if( ( r & 1 ) )
dgabino 0:60ff878b27b8 913 {
dgabino 0:60ff878b27b8 914 update_decrypt_key_256( o_key, &rc );
dgabino 0:60ff878b27b8 915 add_round_key( s1, o_key + 16 );
dgabino 0:60ff878b27b8 916 }
dgabino 0:60ff878b27b8 917 else
dgabino 0:60ff878b27b8 918 add_round_key( s1, o_key );
dgabino 0:60ff878b27b8 919 inv_mix_sub_columns( s1 );
dgabino 0:60ff878b27b8 920 }
dgabino 0:60ff878b27b8 921 #else
dgabino 0:60ff878b27b8 922 { uint8_t s2[N_BLOCK];
dgabino 0:60ff878b27b8 923 if( ( r & 1 ) )
dgabino 0:60ff878b27b8 924 {
dgabino 0:60ff878b27b8 925 update_decrypt_key_256( o_key, &rc );
dgabino 0:60ff878b27b8 926 copy_and_key( s2, s1, o_key + 16 );
dgabino 0:60ff878b27b8 927 }
dgabino 0:60ff878b27b8 928 else
dgabino 0:60ff878b27b8 929 copy_and_key( s2, s1, o_key );
dgabino 0:60ff878b27b8 930 inv_mix_sub_columns( s1, s2 );
dgabino 0:60ff878b27b8 931 }
dgabino 0:60ff878b27b8 932 #endif
dgabino 0:60ff878b27b8 933 copy_and_key( out, s1, o_key );
dgabino 0:60ff878b27b8 934 }
dgabino 0:60ff878b27b8 935
dgabino 0:60ff878b27b8 936 #endif