#ifndef TFM_H_
#define TFM_H_
#include <stdio.h>
#include <string.h>
#include <stdlib.h>
#include <ctype.h>
#include <limits.h>
#define TFM_VERSION 0x000D0100
#define TFM_VERSION_S "v0.13.1"
#ifndef MIN
#define MIN(x,y) ((x)<(y)?(x):(y))
#endif
#ifndef MAX
#define MAX(x,y) ((x)>(y)?(x):(y))
#endif
#ifndef TFM_ALREADY_SET
#define TFM_SMALL_SET
#if 0#endif
#define TFM_MUL20
#define TFM_MUL24
#define TFM_MUL28
#define TFM_MUL32
#define TFM_MUL48
#define TFM_MUL64
#if 0#endif
#define TFM_SQR20
#define TFM_SQR24
#define TFM_SQR28
#define TFM_SQR32
#define TFM_SQR48
#define TFM_SQR64
#endif
#ifndef FP_MAX_SIZE
#define FP_MAX_SIZE (4096+(8*DIGIT_BIT))
#endif
#if (CHAR_BIT & 7)
#error CHAR_BIT must be a multiple of eight.
#endif
#if FP_MAX_SIZE % CHAR_BIT
#error FP_MAX_SIZE must be a multiple of CHAR_BIT
#endif
#if __SIZEOF_LONG__ == 8
#define FP_64BIT
#endif
#if defined(__x86_64__)
#if defined(TFM_X86) || defined(TFM_SSE2) || defined(TFM_ARM)
#error x86-64 detected, x86-32/SSE2/ARM optimizations are not valid!
#endif
#if !defined(TFM_X86_64) && !defined(TFM_NO_ASM)
#define TFM_X86_64
#endif
#endif
#if defined(TFM_X86_64)
#if !defined(FP_64BIT)
#define FP_64BIT
#endif
#endif
#if defined(__i386__) && !defined(TFM_SSE2)
#if defined(TFM_X86_64) || defined(TFM_ARM)
#error x86-32 detected, x86-64/ARM optimizations are not valid!
#endif
#if !defined(TFM_X86) && !defined(TFM_NO_ASM)
#define TFM_X86
#endif
#endif
#if (defined(TFM_X86) || defined(TFM_SSE2) || defined(TFM_ARM) || defined(TFM_PPC32)) && defined(FP_64BIT)
#warning x86-32, SSE2 and ARM, PPC32 optimizations require 32-bit digits (undefining)
#undef FP_64BIT
#endif
#ifdef TFM_X86
#define TFM_ASM
#endif
#ifdef TFM_X86_64
#ifdef TFM_ASM
#error TFM_ASM already defined!
#endif
#define TFM_ASM
#endif
#ifdef TFM_SSE2
#ifdef TFM_ASM
#error TFM_ASM already defined!
#endif
#define TFM_ASM
#endif
#ifdef TFM_ARM
#ifdef TFM_ASM
#error TFM_ASM already defined!
#endif
#define TFM_ASM
#endif
#ifdef TFM_PPC32
#ifdef TFM_ASM
#error TFM_ASM already defined!
#endif
#define TFM_ASM
#endif
#ifdef TFM_PPC64
#ifdef TFM_ASM
#error TFM_ASM already defined!
#endif
#define TFM_ASM
#endif
#ifdef TFM_AVR32
#ifdef TFM_ASM
#error TFM_ASM already defined!
#endif
#define TFM_ASM
#endif
#ifdef TFM_NO_ASM
#undef TFM_X86
#undef TFM_X86_64
#undef TFM_SSE2
#undef TFM_ARM
#undef TFM_PPC32
#undef TFM_PPC64
#undef TFM_AVR32
#undef TFM_ASM
#endif
#ifdef TFM_ECC192
#ifdef FP_64BIT
#define TFM_MUL3
#define TFM_SQR3
#else
#define TFM_MUL6
#define TFM_SQR6
#endif
#endif
#ifdef TFM_ECC224
#ifdef FP_64BIT
#define TFM_MUL4
#define TFM_SQR4
#else
#define TFM_MUL7
#define TFM_SQR7
#endif
#endif
#ifdef TFM_ECC256
#ifdef FP_64BIT
#define TFM_MUL4
#define TFM_SQR4
#else
#define TFM_MUL8
#define TFM_SQR8
#endif
#endif
#ifdef TFM_ECC384
#ifdef FP_64BIT
#define TFM_MUL6
#define TFM_SQR6
#else
#define TFM_MUL12
#define TFM_SQR12
#endif
#endif
#ifdef TFM_ECC521
#ifdef FP_64BIT
#define TFM_MUL9
#define TFM_SQR9
#else
#define TFM_MUL17
#define TFM_SQR17
#endif
#endif
#if defined(__FreeBSD__) || defined(__OpenBSD__) || defined(__NetBSD__) || defined(__DragonFly__)
#define FP_GEN_RANDOM() arc4random()
#define FP_GEN_RANDOM_MAX 0xffffffff
#endif
#ifndef FP_GEN_RANDOM
#define FP_GEN_RANDOM() rand()
#define FP_GEN_RANDOM_MAX RAND_MAX
#endif
#if defined(FP_64BIT)
#ifndef CRYPT
typedef unsigned long long ulong64;
#endif
typedef ulong64 fp_digit;
#define SIZEOF_FP_DIGIT 8
typedef unsigned long fp_word __attribute__ ((mode(TI)));
#else
#ifndef CRYPT
#if defined(_MSC_VER) || defined(__BORLANDC__)
typedef unsigned __int64 ulong64;
typedef signed __int64 long64;
#else
typedef unsigned long long ulong64;
typedef signed long long long64;
#endif
#endif
typedef unsigned int fp_digit;
#define SIZEOF_FP_DIGIT 4
typedef ulong64 fp_word;
#endif
#define DIGIT_BIT ((CHAR_BIT) * SIZEOF_FP_DIGIT)
#define FP_MASK (fp_digit)(-1)
#define FP_SIZE (FP_MAX_SIZE/DIGIT_BIT)
#define FP_ZPOS 0
#define FP_NEG 1
#define FP_OKAY 0
#define FP_VAL 1
#define FP_MEM 2
#define FP_LT -1
#define FP_EQ 0
#define FP_GT 1
#define FP_YES 1
#define FP_NO 0
typedef struct {
fp_digit dp[FP_SIZE];
int used,
sign;
} fp_int;
const char *fp_ident(void);
#define fp_init(a) (void)memset((a), 0, sizeof(fp_int))
#define fp_zero(a) fp_init(a)
#define fp_iszero(a) (((a)->used == 0) ? FP_YES : FP_NO)
#define fp_iseven(a) (((a)->used >= 0 && (((a)->dp[0] & 1) == 0)) ? FP_YES : FP_NO)
#define fp_isodd(a) (((a)->used > 0 && (((a)->dp[0] & 1) == 1)) ? FP_YES : FP_NO)
void fp_set(fp_int *a, fp_digit b);
void fp_rand(fp_int *a, int digits);
#define fp_copy(a, b) (void)(((a) != (b)) && memcpy((b), (a), sizeof(fp_int)))
#define fp_init_copy(a, b) fp_copy(b, a)
#define fp_clamp(a) { while ((a)->used && (a)->dp[(a)->used-1] == 0) --((a)->used); (a)->sign = (a)->used ? (a)->sign : FP_ZPOS; }
#define fp_neg(a, b) { fp_copy(a, b); (b)->sign ^= 1; fp_clamp(b); }
#define fp_abs(a, b) { fp_copy(a, b); (b)->sign = 0; }
void fp_rshd(fp_int *a, int x);
void fp_lshd(fp_int *a, int x);
int fp_cmp(fp_int *a, fp_int *b);
int fp_cmp_mag(fp_int *a, fp_int *b);
void fp_div_2d(fp_int *a, int b, fp_int *c, fp_int *d);
void fp_mod_2d(fp_int *a, int b, fp_int *c);
void fp_mul_2d(fp_int *a, int b, fp_int *c);
void fp_2expt (fp_int *a, int b);
void fp_mul_2(fp_int *a, fp_int *c);
void fp_div_2(fp_int *a, fp_int *c);
int fp_cnt_lsb(fp_int *a);
void fp_add(fp_int *a, fp_int *b, fp_int *c);
void fp_sub(fp_int *a, fp_int *b, fp_int *c);
void fp_mul(fp_int *a, fp_int *b, fp_int *c);
void fp_sqr(fp_int *a, fp_int *b);
int fp_div(fp_int *a, fp_int *b, fp_int *c, fp_int *d);
int fp_mod(fp_int *a, fp_int *b, fp_int *c);
int fp_cmp_d(fp_int *a, fp_digit b);
void fp_add_d(fp_int *a, fp_digit b, fp_int *c);
void fp_sub_d(fp_int *a, fp_digit b, fp_int *c);
void fp_mul_d(fp_int *a, fp_digit b, fp_int *c);
int fp_div_d(fp_int *a, fp_digit b, fp_int *c, fp_digit *d);
int fp_mod_d(fp_int *a, fp_digit b, fp_digit *c);
int fp_addmod(fp_int *a, fp_int *b, fp_int *c, fp_int *d);
int fp_submod(fp_int *a, fp_int *b, fp_int *c, fp_int *d);
int fp_mulmod(fp_int *a, fp_int *b, fp_int *c, fp_int *d);
int fp_sqrmod(fp_int *a, fp_int *b, fp_int *c);
int fp_invmod(fp_int *a, fp_int *b, fp_int *c);
void fp_gcd(fp_int *a, fp_int *b, fp_int *c);
void fp_lcm(fp_int *a, fp_int *b, fp_int *c);
int fp_montgomery_setup(fp_int *a, fp_digit *mp);
void fp_montgomery_calc_normalization(fp_int *a, fp_int *b);
void fp_montgomery_reduce(fp_int *a, fp_int *m, fp_digit mp);
int fp_exptmod(fp_int *a, fp_int *b, fp_int *c, fp_int *d);
void fp_prime_miller_rabin (fp_int * a, fp_int * b, int *result);
#define FP_PRIME_SIZE 256
int fp_isprime(fp_int *a);
int fp_isprime_ex(fp_int *a, int t);
#define TFM_PRIME_BBS 0x0001
#define TFM_PRIME_SAFE 0x0002
#define TFM_PRIME_2MSB_OFF 0x0004
#define TFM_PRIME_2MSB_ON 0x0008
typedef int tfm_prime_callback(unsigned char *dst, int len, void *dat);
#define fp_prime_random(a, t, size, bbs, cb, dat) fp_prime_random_ex(a, t, ((size) * 8) + 1, (bbs==1)?TFM_PRIME_BBS:0, cb, dat)
int fp_prime_random_ex(fp_int *a, int t, int size, int flags, tfm_prime_callback cb, void *dat);
int fp_count_bits(fp_int *a);
int fp_unsigned_bin_size(fp_int *a);
void fp_read_unsigned_bin(fp_int *a, const unsigned char *b, int c);
void fp_to_unsigned_bin(fp_int *a, unsigned char *b);
int fp_signed_bin_size(fp_int *a);
void fp_read_signed_bin(fp_int *a, const unsigned char *b, int c);
void fp_to_signed_bin(fp_int *a, unsigned char *b);
int fp_read_radix(fp_int *a, const char *str, int radix);
int fp_radix_size(fp_int *a, int radix, int *size);
int fp_toradix(fp_int *a, char *str, int radix);
int fp_toradix_n(fp_int * a, char *str, int radix, int maxlen);
#endif