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random: remove unneeded hash of a portion of the entropy pool
We previously extracted a portion of the entropy pool in mix_pool_bytes() and hashed it in to avoid racing CPU's from returning duplicate random values. Now that we are using a spinlock to prevent this from happening, this is no longer necessary. So remove it, to simplify the code a bit. Signed-off-by: Theodore Ts'o <tytso@mit.edu> Cc: George Spelvin <linux@horizon.com>
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91fcb532ef
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85608f8e16
@ -481,9 +481,9 @@ static __u32 const twist_table[8] = {
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* the entropy is concentrated in the low-order bits.
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*/
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static void _mix_pool_bytes(struct entropy_store *r, const void *in,
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int nbytes, __u8 out[64])
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int nbytes)
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{
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unsigned long i, j, tap1, tap2, tap3, tap4, tap5;
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unsigned long i, tap1, tap2, tap3, tap4, tap5;
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int input_rotate;
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int wordmask = r->poolinfo->poolwords - 1;
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const char *bytes = in;
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@ -525,27 +525,23 @@ static void _mix_pool_bytes(struct entropy_store *r, const void *in,
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r->input_rotate = input_rotate;
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r->add_ptr = i;
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if (out)
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for (j = 0; j < 16; j++)
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((__u32 *)out)[j] = r->pool[(i - j) & wordmask];
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}
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static void __mix_pool_bytes(struct entropy_store *r, const void *in,
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int nbytes, __u8 out[64])
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int nbytes)
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{
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trace_mix_pool_bytes_nolock(r->name, nbytes, _RET_IP_);
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_mix_pool_bytes(r, in, nbytes, out);
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_mix_pool_bytes(r, in, nbytes);
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}
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static void mix_pool_bytes(struct entropy_store *r, const void *in,
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int nbytes, __u8 out[64])
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int nbytes)
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{
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unsigned long flags;
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trace_mix_pool_bytes(r->name, nbytes, _RET_IP_);
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spin_lock_irqsave(&r->lock, flags);
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_mix_pool_bytes(r, in, nbytes, out);
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_mix_pool_bytes(r, in, nbytes);
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spin_unlock_irqrestore(&r->lock, flags);
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}
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@ -737,13 +733,13 @@ void add_device_randomness(const void *buf, unsigned int size)
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trace_add_device_randomness(size, _RET_IP_);
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spin_lock_irqsave(&input_pool.lock, flags);
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_mix_pool_bytes(&input_pool, buf, size, NULL);
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_mix_pool_bytes(&input_pool, &time, sizeof(time), NULL);
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_mix_pool_bytes(&input_pool, buf, size);
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_mix_pool_bytes(&input_pool, &time, sizeof(time));
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spin_unlock_irqrestore(&input_pool.lock, flags);
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spin_lock_irqsave(&nonblocking_pool.lock, flags);
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_mix_pool_bytes(&nonblocking_pool, buf, size, NULL);
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_mix_pool_bytes(&nonblocking_pool, &time, sizeof(time), NULL);
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_mix_pool_bytes(&nonblocking_pool, buf, size);
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_mix_pool_bytes(&nonblocking_pool, &time, sizeof(time));
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spin_unlock_irqrestore(&nonblocking_pool.lock, flags);
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}
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EXPORT_SYMBOL(add_device_randomness);
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@ -776,7 +772,7 @@ static void add_timer_randomness(struct timer_rand_state *state, unsigned num)
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sample.cycles = random_get_entropy();
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sample.num = num;
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r = nonblocking_pool.initialized ? &input_pool : &nonblocking_pool;
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mix_pool_bytes(r, &sample, sizeof(sample), NULL);
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mix_pool_bytes(r, &sample, sizeof(sample));
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/*
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* Calculate number of bits of randomness we probably added.
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@ -864,7 +860,7 @@ void add_interrupt_randomness(int irq, int irq_flags)
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return;
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}
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fast_pool->last = now;
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__mix_pool_bytes(r, &fast_pool->pool, sizeof(fast_pool->pool), NULL);
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__mix_pool_bytes(r, &fast_pool->pool, sizeof(fast_pool->pool));
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/*
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* If we have architectural seed generator, produce a seed and
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@ -872,7 +868,7 @@ void add_interrupt_randomness(int irq, int irq_flags)
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* 50% entropic.
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*/
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if (arch_get_random_seed_long(&seed)) {
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__mix_pool_bytes(r, &seed, sizeof(seed), NULL);
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__mix_pool_bytes(r, &seed, sizeof(seed));
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credit += sizeof(seed) * 4;
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}
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spin_unlock(&r->lock);
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@ -955,7 +951,7 @@ static void _xfer_secondary_pool(struct entropy_store *r, size_t nbytes)
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ENTROPY_BITS(r), ENTROPY_BITS(r->pull));
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bytes = extract_entropy(r->pull, tmp, bytes,
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random_read_wakeup_bits / 8, rsvd_bytes);
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mix_pool_bytes(r, tmp, bytes, NULL);
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mix_pool_bytes(r, tmp, bytes);
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credit_entropy_bits(r, bytes*8);
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}
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@ -1031,7 +1027,6 @@ static void extract_buf(struct entropy_store *r, __u8 *out)
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unsigned long l[LONGS(20)];
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} hash;
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__u32 workspace[SHA_WORKSPACE_WORDS];
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__u8 extract[64];
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unsigned long flags;
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/*
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@ -1060,15 +1055,9 @@ static void extract_buf(struct entropy_store *r, __u8 *out)
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* brute-forcing the feedback as hard as brute-forcing the
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* hash.
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*/
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__mix_pool_bytes(r, hash.w, sizeof(hash.w), extract);
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__mix_pool_bytes(r, hash.w, sizeof(hash.w));
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spin_unlock_irqrestore(&r->lock, flags);
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/*
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* To avoid duplicates, we atomically extract a portion of the
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* pool while mixing, and hash one final time.
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*/
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sha_transform(hash.w, extract, workspace);
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memset(extract, 0, sizeof(extract));
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memset(workspace, 0, sizeof(workspace));
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/*
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@ -1255,14 +1244,14 @@ static void init_std_data(struct entropy_store *r)
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unsigned long rv;
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r->last_pulled = jiffies;
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mix_pool_bytes(r, &now, sizeof(now), NULL);
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mix_pool_bytes(r, &now, sizeof(now));
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for (i = r->poolinfo->poolbytes; i > 0; i -= sizeof(rv)) {
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if (!arch_get_random_seed_long(&rv) &&
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!arch_get_random_long(&rv))
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rv = random_get_entropy();
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mix_pool_bytes(r, &rv, sizeof(rv), NULL);
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mix_pool_bytes(r, &rv, sizeof(rv));
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}
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mix_pool_bytes(r, utsname(), sizeof(*(utsname())), NULL);
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mix_pool_bytes(r, utsname(), sizeof(*(utsname())));
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}
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/*
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@ -1325,7 +1314,7 @@ static int arch_random_refill(void)
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if (n) {
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unsigned int rand_bytes = n * sizeof(unsigned long);
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mix_pool_bytes(&input_pool, buf, rand_bytes, NULL);
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mix_pool_bytes(&input_pool, buf, rand_bytes);
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credit_entropy_bits(&input_pool, rand_bytes*4);
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}
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@ -1415,7 +1404,7 @@ write_pool(struct entropy_store *r, const char __user *buffer, size_t count)
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count -= bytes;
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p += bytes;
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mix_pool_bytes(r, buf, bytes, NULL);
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mix_pool_bytes(r, buf, bytes);
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cond_resched();
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}
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