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author | Nick Mathewson <nickm@torproject.org> | 2016-09-16 10:12:30 -0400 |
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committer | Nick Mathewson <nickm@torproject.org> | 2016-09-16 10:12:30 -0400 |
commit | ff116b780896bb735f887a669d87694bb6d8a964 (patch) | |
tree | 39e931311cd87e89bb1d730b0aee7e2295ffb8f3 /src/test/bench.c | |
parent | 981d0a24b81f27a642946648e49b3cadbd0c28b7 (diff) | |
download | tor-ff116b780896bb735f887a669d87694bb6d8a964.tar.gz tor-ff116b780896bb735f887a669d87694bb6d8a964.zip |
Simplify the crypto_cipher_t interface and structure
Previously, the IV and key were stored in the structure, even though
they mostly weren't needed. The only purpose they had was to
support a seldom-used API where you could pass NULL when creating
a cipher in order to get a random key/IV, and then pull that key/IV
back out.
This saves 32 bytes per AES instance, and makes it easier to support
different key lengths.
Diffstat (limited to 'src/test/bench.c')
-rw-r--r-- | src/test/bench.c | 16 |
1 files changed, 11 insertions, 5 deletions
diff --git a/src/test/bench.c b/src/test/bench.c index f373019b95..30984fda70 100644 --- a/src/test/bench.c +++ b/src/test/bench.c @@ -90,7 +90,9 @@ bench_aes(void) uint64_t start, end; const int bytes_per_iter = (1<<24); reset_perftime(); - c = crypto_cipher_new(NULL); + char key[CIPHER_KEY_LEN]; + crypto_rand(key, sizeof(key)); + c = crypto_cipher_new(key); for (len = 1; len <= 8192; len *= 2) { int iters = bytes_per_iter / len; @@ -328,8 +330,9 @@ bench_cell_aes(void) char *b = tor_malloc(len+max_misalign); crypto_cipher_t *c; int i, misalign; - - c = crypto_cipher_new(NULL); + char key[CIPHER_KEY_LEN]; + crypto_rand(key, sizeof(key)); + c = crypto_cipher_new(key); reset_perftime(); for (misalign = 0; misalign <= max_misalign; ++misalign) { @@ -501,8 +504,11 @@ bench_cell_ops(void) or_circ->base_.purpose = CIRCUIT_PURPOSE_OR; /* Initialize crypto */ - or_circ->p_crypto = crypto_cipher_new(NULL); - or_circ->n_crypto = crypto_cipher_new(NULL); + char key1[CIPHER_KEY_LEN], key2[CIPHER_KEY_LEN]; + crypto_rand(key1, sizeof(key1)); + crypto_rand(key2, sizeof(key2)); + or_circ->p_crypto = crypto_cipher_new(key1); + or_circ->n_crypto = crypto_cipher_new(key2); or_circ->p_digest = crypto_digest_new(); or_circ->n_digest = crypto_digest_new(); |