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author | Nick Mathewson <nickm@torproject.org> | 2016-05-19 21:18:43 -0400 |
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committer | Nick Mathewson <nickm@torproject.org> | 2016-05-19 21:21:24 -0400 |
commit | f2205071f02111c22b9fd26374cdce40d0c2389b (patch) | |
tree | 50106d560b6559f06082bebb94c02a5ecd9807a2 /src/common | |
parent | 2775dd8649df80acf0f4f13f434363f28f64a4b8 (diff) | |
download | tor-f2205071f02111c22b9fd26374cdce40d0c2389b.tar.gz tor-f2205071f02111c22b9fd26374cdce40d0c2389b.zip |
Remove round_int64_to_next_multiple_of: It is now unused.
Diffstat (limited to 'src/common')
-rw-r--r-- | src/common/util.c | 15 | ||||
-rw-r--r-- | src/common/util.h | 1 |
2 files changed, 0 insertions, 16 deletions
diff --git a/src/common/util.c b/src/common/util.c index 14deb4e37d..78afe5954f 100644 --- a/src/common/util.c +++ b/src/common/util.c @@ -513,21 +513,6 @@ round_uint64_to_next_multiple_of(uint64_t number, uint64_t divisor) return number; } -/** Return the lowest x in [INT64_MIN, INT64_MAX] such that x is at least - * <b>number</b>, and x modulo <b>divisor</b> == 0. If no such x can be - * expressed as an int64_t, return INT64_MAX */ -int64_t -round_int64_to_next_multiple_of(int64_t number, int64_t divisor) -{ - tor_assert(divisor > 0); - if (INT64_MAX - divisor + 1 < number) - return INT64_MAX; - if (number >= 0) - number += divisor - 1; - number -= number % divisor; - return number; -} - /** Transform a random value <b>p</b> from the uniform distribution in * [0.0, 1.0[ into a Laplace distributed value with location parameter * <b>mu</b> and scale parameter <b>b</b>. Truncate the final result diff --git a/src/common/util.h b/src/common/util.h index 814c8622a2..4c5070e65b 100644 --- a/src/common/util.h +++ b/src/common/util.h @@ -145,7 +145,6 @@ uint64_t round_to_power_of_2(uint64_t u64); unsigned round_to_next_multiple_of(unsigned number, unsigned divisor); uint32_t round_uint32_to_next_multiple_of(uint32_t number, uint32_t divisor); uint64_t round_uint64_to_next_multiple_of(uint64_t number, uint64_t divisor); -int64_t round_int64_to_next_multiple_of(int64_t number, int64_t divisor); int64_t sample_laplace_distribution(double mu, double b, double p); int64_t add_laplace_noise(int64_t signal, double random, double delta_f, double epsilon); |