23#define AES_SMALL_TABLES
39#ifndef AES_SMALL_TABLES
41#define RCON(i) rcon[(i)]
43#define TE0(i) Te0[((i) >> 24) & 0xff]
44#define TE1(i) Te1[((i) >> 16) & 0xff]
45#define TE2(i) Te2[((i) >> 8) & 0xff]
46#define TE3(i) Te3[(i) & 0xff]
47#define TE41(i) (Te4[((i) >> 24) & 0xff] & 0xff000000)
48#define TE42(i) (Te4[((i) >> 16) & 0xff] & 0x00ff0000)
49#define TE43(i) (Te4[((i) >> 8) & 0xff] & 0x0000ff00)
50#define TE44(i) (Te4[(i) & 0xff] & 0x000000ff)
51#define TE421(i) (Te4[((i) >> 16) & 0xff] & 0xff000000)
52#define TE432(i) (Te4[((i) >> 8) & 0xff] & 0x00ff0000)
53#define TE443(i) (Te4[(i) & 0xff] & 0x0000ff00)
54#define TE414(i) (Te4[((i) >> 24) & 0xff] & 0x000000ff)
55#define TE4(i) (Te4[(i)] & 0x000000ff)
57#define TD0(i) Td0[((i) >> 24) & 0xff]
58#define TD1(i) Td1[((i) >> 16) & 0xff]
59#define TD2(i) Td2[((i) >> 8) & 0xff]
60#define TD3(i) Td3[(i) & 0xff]
61#define TD41(i) (Td4[((i) >> 24) & 0xff] & 0xff000000)
62#define TD42(i) (Td4[((i) >> 16) & 0xff] & 0x00ff0000)
63#define TD43(i) (Td4[((i) >> 8) & 0xff] & 0x0000ff00)
64#define TD44(i) (Td4[(i) & 0xff] & 0x000000ff)
65#define TD0_(i) Td0[(i) & 0xff]
66#define TD1_(i) Td1[(i) & 0xff]
67#define TD2_(i) Td2[(i) & 0xff]
68#define TD3_(i) Td3[(i) & 0xff]
72#define RCON(i) ((u32)rcons[(i)] << 24)
76 return (val >> bits) | (val << (32 - bits));
79#define TE0(i) Te0[((i) >> 24) & 0xff]
80#define TE1(i) rotr(Te0[((i) >> 16) & 0xff], 8)
81#define TE2(i) rotr(Te0[((i) >> 8) & 0xff], 16)
82#define TE3(i) rotr(Te0[(i) & 0xff], 24)
83#define TE41(i) ((Te0[((i) >> 24) & 0xff] << 8) & 0xff000000)
84#define TE42(i) (Te0[((i) >> 16) & 0xff] & 0x00ff0000)
85#define TE43(i) (Te0[((i) >> 8) & 0xff] & 0x0000ff00)
86#define TE44(i) ((Te0[(i) & 0xff] >> 8) & 0x000000ff)
87#define TE421(i) ((Te0[((i) >> 16) & 0xff] << 8) & 0xff000000)
88#define TE432(i) (Te0[((i) >> 8) & 0xff] & 0x00ff0000)
89#define TE443(i) (Te0[(i) & 0xff] & 0x0000ff00)
90#define TE414(i) ((Te0[((i) >> 24) & 0xff] >> 8) & 0x000000ff)
91#define TE4(i) ((Te0[(i)] >> 8) & 0x000000ff)
93#define TD0(i) Td0[((i) >> 24) & 0xff]
94#define TD1(i) rotr(Td0[((i) >> 16) & 0xff], 8)
95#define TD2(i) rotr(Td0[((i) >> 8) & 0xff], 16)
96#define TD3(i) rotr(Td0[(i) & 0xff], 24)
97#define TD41(i) (Td4s[((i) >> 24) & 0xff] << 24)
98#define TD42(i) (Td4s[((i) >> 16) & 0xff] << 16)
99#define TD43(i) (Td4s[((i) >> 8) & 0xff] << 8)
100#define TD44(i) (Td4s[(i) & 0xff])
101#define TD0_(i) Td0[(i) & 0xff]
102#define TD1_(i) rotr(Td0[(i) & 0xff], 8)
103#define TD2_(i) rotr(Td0[(i) & 0xff], 16)
104#define TD3_(i) rotr(Td0[(i) & 0xff], 24)
109#define SWAP(x) (_lrotl(x, 8) & 0x00ff00ff | _lrotr(x, 8) & 0xff00ff00)
110#define GETU32(p) SWAP(*((u32 *)(p)))
111#define PUTU32(ct, st) { *((u32 *)(ct)) = SWAP((st)); }
113#define GETU32(pt) (((u32)(pt)[0] << 24) ^ ((u32)(pt)[1] << 16) ^ \
114((u32)(pt)[2] << 8) ^ ((u32)(pt)[3]))
115#define PUTU32(ct, st) { \
116(ct)[0] = (u8)((st) >> 24); (ct)[1] = (u8)((st) >> 16); \
117(ct)[2] = (u8)((st) >> 8); (ct)[3] = (u8)(st); }
120#define AES_PRIV_SIZE (4 * 44)
void rijndaelKeySetupEnc(u32 rk[], const u8 cipherKey[])
Expand the cipher key into the encryption key schedule.
Definition: aes-internal.c:789
const u32 Te0[256]
Definition: aes-internal.c:74
const u8 Td4s[256]
Definition: aes-internal.c:745
static u32 rotr(u32 val, int bits)
Definition: aes_i.h:74
const u32 Td0[256]
Definition: aes-internal.c:407
const u8 rcons[10]
Definition: aes-internal.c:779
uint8_t u8
Definition: common.h:27
uint32_t u32
Definition: common.h:25