Remove an =over that never ends
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@ -62,18 +62,12 @@ prime. The following tests are performed until one of them shows that
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B<a> is composite; if B<a> passes all these tests, it is considered
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B<a> is composite; if B<a> passes all these tests, it is considered
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prime.
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prime.
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=over 4
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=item *
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BN_is_prime_fasttest(), when called with B<do_trial_division == 1>,
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BN_is_prime_fasttest(), when called with B<do_trial_division == 1>,
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first attempts trial division by a number of small primes;
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first attempts trial division by a number of small primes;
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if no divisors are found by this test and B<callback> is not B<NULL>,
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if no divisors are found by this test and B<callback> is not B<NULL>,
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B<callback(1, -1, cb_arg)> is called.
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B<callback(1, -1, cb_arg)> is called.
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If B<do_trial_division == 0>, this test is skipped.
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If B<do_trial_division == 0>, this test is skipped.
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=item *
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Both BN_is_prime() and BN_is_prime_fasttest() perform a Miller-Rabin
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Both BN_is_prime() and BN_is_prime_fasttest() perform a Miller-Rabin
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probabilistic primality test with B<checks> iterations. If
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probabilistic primality test with B<checks> iterations. If
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B<checks == BN_prime_check>, a number of iterations is used that
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B<checks == BN_prime_check>, a number of iterations is used that
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@ -87,7 +81,6 @@ BN_is_prime_fasttest(), B<ctx2> is a second pre-allocated B<BN_CTX> or
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B<NULL> (lacking this parameter, BN_is_prime() always has to allocate
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B<NULL> (lacking this parameter, BN_is_prime() always has to allocate
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an additional B<CN_CTX>).
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an additional B<CN_CTX>).
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=head1 RETURN VALUES
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=head1 RETURN VALUES
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BN_generate_prime() returns the prime number on success, B<NULL> otherwise.
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BN_generate_prime() returns the prime number on success, B<NULL> otherwise.
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