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1/*
2 * include/linux/random.h
3 *
4 * Include file for the random number generator.
5 */
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6#ifndef _LINUX_RANDOM_H
7#define _LINUX_RANDOM_H
8
205a525c 9#include <linux/list.h>
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10#include <linux/once.h>
11
607ca46e 12#include <uapi/linux/random.h>
1da177e4 13
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14struct random_ready_callback {
15 struct list_head list;
16 void (*func)(struct random_ready_callback *rdy);
17 struct module *owner;
18};
19
a2080a67 20extern void add_device_randomness(const void *, unsigned int);
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21
22#if defined(CONFIG_GCC_PLUGIN_LATENT_ENTROPY) && !defined(__CHECKER__)
23static inline void add_latent_entropy(void)
24{
25 add_device_randomness((const void *)&latent_entropy,
26 sizeof(latent_entropy));
27}
28#else
29static inline void add_latent_entropy(void) {}
30#endif
31
1da177e4 32extern void add_input_randomness(unsigned int type, unsigned int code,
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33 unsigned int value) __latent_entropy;
34extern void add_interrupt_randomness(int irq, int irq_flags) __latent_entropy;
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35
36extern void get_random_bytes(void *buf, int nbytes);
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37extern int add_random_ready_callback(struct random_ready_callback *rdy);
38extern void del_random_ready_callback(struct random_ready_callback *rdy);
c2557a30 39extern void get_random_bytes_arch(void *buf, int nbytes);
1da177e4 40
1da177e4 41#ifndef MODULE
54047320 42extern const struct file_operations random_fops, urandom_fops;
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43#endif
44
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45u32 get_random_u32(void);
46u64 get_random_u64(void);
47static inline unsigned int get_random_int(void)
48{
49 return get_random_u32();
50}
51static inline unsigned long get_random_long(void)
52{
53#if BITS_PER_LONG == 64
54 return get_random_u64();
55#else
56 return get_random_u32();
57#endif
58}
59
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60/*
61 * On 64-bit architectures, protect against non-terminated C string overflows
62 * by zeroing out the first byte of the canary; this leaves 56 bits of entropy.
63 */
64#ifdef CONFIG_64BIT
65# ifdef __LITTLE_ENDIAN
66# define CANARY_MASK 0xffffffffffffff00UL
67# else /* big endian, 64 bits: */
68# define CANARY_MASK 0x00ffffffffffffffUL
69# endif
70#else /* 32 bits: */
71# define CANARY_MASK 0xffffffffUL
72#endif
73
74static inline unsigned long get_random_canary(void)
75{
76 unsigned long val = get_random_long();
77
78 return val & CANARY_MASK;
79}
80
99fdafde 81unsigned long randomize_page(unsigned long start, unsigned long range);
1da177e4 82
496f2f93 83u32 prandom_u32(void);
a98406e2 84void prandom_bytes(void *buf, size_t nbytes);
496f2f93 85void prandom_seed(u32 seed);
4af712e8 86void prandom_reseed_late(void);
aaa248f6 87
38e9efcd 88struct rnd_state {
a98814ce 89 __u32 s1, s2, s3, s4;
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90};
91
a98814ce 92u32 prandom_u32_state(struct rnd_state *state);
a98406e2 93void prandom_bytes_state(struct rnd_state *state, void *buf, size_t nbytes);
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94void prandom_seed_full_state(struct rnd_state __percpu *pcpu_state);
95
96#define prandom_init_once(pcpu_state) \
97 DO_ONCE(prandom_seed_full_state, (pcpu_state))
5960164f 98
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99/**
100 * prandom_u32_max - returns a pseudo-random number in interval [0, ep_ro)
101 * @ep_ro: right open interval endpoint
102 *
103 * Returns a pseudo-random number that is in interval [0, ep_ro). Note
104 * that the result depends on PRNG being well distributed in [0, ~0U]
105 * u32 space. Here we use maximally equidistributed combined Tausworthe
106 * generator, that is, prandom_u32(). This is useful when requesting a
107 * random index of an array containing ep_ro elements, for example.
108 *
109 * Returns: pseudo-random number in interval [0, ep_ro)
110 */
111static inline u32 prandom_u32_max(u32 ep_ro)
112{
113 return (u32)(((u64) prandom_u32() * ep_ro) >> 32);
114}
115
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116/*
117 * Handle minimum values for seeds
118 */
119static inline u32 __seed(u32 x, u32 m)
120{
121 return (x < m) ? x + m : x;
122}
123
124/**
496f2f93 125 * prandom_seed_state - set seed for prandom_u32_state().
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126 * @state: pointer to state structure to receive the seed.
127 * @seed: arbitrary 64-bit value to use as a seed.
128 */
496f2f93 129static inline void prandom_seed_state(struct rnd_state *state, u64 seed)
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130{
131 u32 i = (seed >> 32) ^ (seed << 10) ^ seed;
132
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133 state->s1 = __seed(i, 2U);
134 state->s2 = __seed(i, 8U);
135 state->s3 = __seed(i, 16U);
136 state->s4 = __seed(i, 128U);
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137}
138
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139#ifdef CONFIG_ARCH_RANDOM
140# include <asm/archrandom.h>
141#else
117780ee 142static inline bool arch_get_random_long(unsigned long *v)
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143{
144 return 0;
145}
117780ee 146static inline bool arch_get_random_int(unsigned int *v)
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147{
148 return 0;
149}
117780ee 150static inline bool arch_has_random(void)
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151{
152 return 0;
153}
117780ee 154static inline bool arch_get_random_seed_long(unsigned long *v)
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155{
156 return 0;
157}
117780ee 158static inline bool arch_get_random_seed_int(unsigned int *v)
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159{
160 return 0;
161}
117780ee 162static inline bool arch_has_random_seed(void)
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163{
164 return 0;
165}
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166#endif
167
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168/* Pseudo random number generator from numerical recipes. */
169static inline u32 next_pseudo_random32(u32 seed)
170{
171 return seed * 1664525 + 1013904223;
172}
173
1da177e4 174#endif /* _LINUX_RANDOM_H */