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[54.197.127.237]) by mx.google.com with ESMTP id q8si3977468qkj.199.2018.01.22.00.01.06; Mon, 22 Jan 2018 00:01:07 -0800 (PST) Received-SPF: pass (google.com: domain of lng-odp-bounces@lists.linaro.org designates 54.197.127.237 as permitted sender) client-ip=54.197.127.237; Authentication-Results: mx.google.com; spf=pass (google.com: domain of lng-odp-bounces@lists.linaro.org designates 54.197.127.237 as permitted sender) smtp.mailfrom=lng-odp-bounces@lists.linaro.org; dmarc=fail (p=NONE sp=NONE dis=NONE) header.from=yandex.ru Received: by lists.linaro.org (Postfix, from userid 109) id A7B2B61798; Mon, 22 Jan 2018 08:01:06 +0000 (UTC) X-Spam-Checker-Version: SpamAssassin 3.4.0 (2014-02-07) on ip-10-142-244-252 X-Spam-Level: X-Spam-Status: No, score=-2.6 required=5.0 tests=BAYES_00,FREEMAIL_FROM, RCVD_IN_DNSWL_LOW, RCVD_IN_MSPIKE_H3, RCVD_IN_MSPIKE_WL autolearn=disabled version=3.4.0 Received: from [127.0.0.1] (localhost [127.0.0.1]) by lists.linaro.org (Postfix) with ESMTP id 5D1AF607B4; Mon, 22 Jan 2018 08:00:42 +0000 (UTC) X-Original-To: lng-odp@lists.linaro.org Delivered-To: lng-odp@lists.linaro.org Received: by lists.linaro.org (Postfix, from userid 109) id D603D617CB; Mon, 22 Jan 2018 08:00:29 +0000 (UTC) Received: from forward106p.mail.yandex.net (forward106p.mail.yandex.net [77.88.28.109]) by lists.linaro.org (Postfix) with ESMTPS id 4DAF86081B for ; Mon, 22 Jan 2018 08:00:15 +0000 (UTC) Received: from mxback3o.mail.yandex.net (mxback3o.mail.yandex.net [IPv6:2a02:6b8:0:1a2d::1d]) by forward106p.mail.yandex.net (Yandex) with ESMTP id 5A12B2D8286D for ; Mon, 22 Jan 2018 11:00:13 +0300 (MSK) Received: from smtp2o.mail.yandex.net (smtp2o.mail.yandex.net [2a02:6b8:0:1a2d::26]) by mxback3o.mail.yandex.net (nwsmtp/Yandex) with ESMTP id XKlqGRaj5S-0DX0Floi; Mon, 22 Jan 2018 11:00:13 +0300 Received: by smtp2o.mail.yandex.net (nwsmtp/Yandex) with ESMTPSA id yORTcTkY7i-0CHiHkpf; Mon, 22 Jan 2018 11:00:12 +0300 (using TLSv1.2 with cipher ECDHE-RSA-AES128-SHA256 (128/128 bits)) (Client certificate not present) From: Github ODP bot To: lng-odp@lists.linaro.org Date: Mon, 22 Jan 2018 10:59:59 +0300 Message-Id: <1516608010-2535-2-git-send-email-odpbot@yandex.ru> X-Mailer: git-send-email 2.7.4 In-Reply-To: <1516608010-2535-1-git-send-email-odpbot@yandex.ru> References: <1516608010-2535-1-git-send-email-odpbot@yandex.ru> Github-pr-num: 413 Subject: [lng-odp] [PATCH v1 1/12] validation: crypto: stop declaring test functions as public X-BeenThere: lng-odp@lists.linaro.org X-Mailman-Version: 2.1.16 Precedence: list List-Id: "The OpenDataPlane \(ODP\) List" List-Unsubscribe: , List-Archive: List-Post: List-Help: List-Subscribe: , Errors-To: lng-odp-bounces@lists.linaro.org Sender: "lng-odp" From: Dmitry Eremin-Solenikov There is no use to declare test functions as public, they are defined and used in the same file. Signed-off-by: Dmitry Eremin-Solenikov Reviewed-by: Bill Fischofer Reviewed-by: Petri Savolainen Signed-off-by: Maxim Uvarov --- /** Email created from pull request 413 (SonicwallYhe:api-next) ** https://github.com/Linaro/odp/pull/413 ** Patch: https://github.com/Linaro/odp/pull/413.patch ** Base sha: 5a4502fc6bc53e6503169da3028f456b64811a0b ** Merge commit sha: 6669be7b55ab094f9e27d2101a6bb005ca87e405 **/ test/validation/api/crypto/crypto.h | 30 ------------- test/validation/api/crypto/odp_crypto_test_inp.c | 56 ++++++++++++------------ 2 files changed, 28 insertions(+), 58 deletions(-) diff --git a/test/validation/api/crypto/crypto.h b/test/validation/api/crypto/crypto.h index 078a1909f..7c248d9eb 100644 --- a/test/validation/api/crypto/crypto.h +++ b/test/validation/api/crypto/crypto.h @@ -9,36 +9,6 @@ #include "odp_cunit_common.h" -/* test functions: */ -void crypto_test_enc_alg_null(void); -void crypto_test_dec_alg_null(void); -void crypto_test_enc_alg_3des_cbc(void); -void crypto_test_enc_alg_3des_cbc_ovr_iv(void); -void crypto_test_dec_alg_3des_cbc(void); -void crypto_test_dec_alg_3des_cbc_ovr_iv(void); -void crypto_test_enc_alg_aes_cbc(void); -void crypto_test_enc_alg_aes_cbc_ovr_iv(void); -void crypto_test_dec_alg_aes_cbc(void); -void crypto_test_dec_alg_aes_cbc_ovr_iv(void); -void crypto_test_enc_alg_aes_ctr(void); -void crypto_test_enc_alg_aes_ctr_ovr_iv(void); -void crypto_test_dec_alg_aes_ctr(void); -void crypto_test_dec_alg_aes_ctr_ovr_iv(void); -void crypto_test_enc_alg_aes_gcm(void); -void crypto_test_enc_alg_aes_gcm_ovr_iv(void); -void crypto_test_dec_alg_aes_gcm(void); -void crypto_test_dec_alg_aes_gcm_ovr_iv(void); -void crypto_test_gen_alg_hmac_md5(void); -void crypto_test_check_alg_hmac_md5(void); -void crypto_test_gen_alg_hmac_sha1(void); -void crypto_test_check_alg_hmac_sha1(void); -void crypto_test_gen_alg_hmac_sha256(void); -void crypto_test_check_alg_hmac_sha256(void); -void crypto_test_gen_alg_hmac_sha512(void); -void crypto_test_check_alg_hmac_sha512(void); -void crypto_test_gen_alg_aes_gmac(void); -void crypto_test_check_alg_aes_gmac(void); - /* test arrays: */ extern odp_testinfo_t crypto_suite[]; diff --git a/test/validation/api/crypto/odp_crypto_test_inp.c b/test/validation/api/crypto/odp_crypto_test_inp.c index 821bdc7e4..c7076d300 100644 --- a/test/validation/api/crypto/odp_crypto_test_inp.c +++ b/test/validation/api/crypto/odp_crypto_test_inp.c @@ -631,7 +631,7 @@ static int check_alg_null(void) return check_alg_support(ODP_CIPHER_ALG_NULL, ODP_AUTH_ALG_NULL); } -void crypto_test_enc_alg_null(void) +static void crypto_test_enc_alg_null(void) { unsigned int test_vec_num = (sizeof(null_reference) / sizeof(null_reference[0])); @@ -645,7 +645,7 @@ void crypto_test_enc_alg_null(void) false); } -void crypto_test_dec_alg_null(void) +static void crypto_test_dec_alg_null(void) { unsigned int test_vec_num = (sizeof(null_reference) / sizeof(null_reference[0])); @@ -668,7 +668,7 @@ static int check_alg_3des_cbc(void) * operation for 3DES_CBC algorithm. IV for the operation is the session IV. * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer.*/ -void crypto_test_enc_alg_3des_cbc(void) +static void crypto_test_enc_alg_3des_cbc(void) { unsigned int test_vec_num = (sizeof(tdes_cbc_reference) / sizeof(tdes_cbc_reference[0])); @@ -685,7 +685,7 @@ void crypto_test_enc_alg_3des_cbc(void) /* This test verifies the correctness of encode (plaintext -> ciphertext) * operation for 3DES_CBC algorithm. IV for the operation is the operation IV. * */ -void crypto_test_enc_alg_3des_cbc_ovr_iv(void) +static void crypto_test_enc_alg_3des_cbc_ovr_iv(void) { unsigned int test_vec_num = (sizeof(tdes_cbc_reference) / sizeof(tdes_cbc_reference[0])); @@ -704,7 +704,7 @@ void crypto_test_enc_alg_3des_cbc_ovr_iv(void) * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer. * */ -void crypto_test_dec_alg_3des_cbc(void) +static void crypto_test_dec_alg_3des_cbc(void) { unsigned int test_vec_num = (sizeof(tdes_cbc_reference) / sizeof(tdes_cbc_reference[0])); @@ -723,7 +723,7 @@ void crypto_test_dec_alg_3des_cbc(void) * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer. * */ -void crypto_test_dec_alg_3des_cbc_ovr_iv(void) +static void crypto_test_dec_alg_3des_cbc_ovr_iv(void) { unsigned int test_vec_num = (sizeof(tdes_cbc_reference) / sizeof(tdes_cbc_reference[0])); @@ -746,7 +746,7 @@ static int check_alg_aes_gcm(void) * operation for AES128_GCM algorithm. IV for the operation is the session IV. * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer.*/ -void crypto_test_enc_alg_aes_gcm(void) +static void crypto_test_enc_alg_aes_gcm(void) { unsigned int test_vec_num = (sizeof(aes_gcm_reference) / sizeof(aes_gcm_reference[0])); @@ -765,7 +765,7 @@ void crypto_test_enc_alg_aes_gcm(void) * operation for AES128_GCM algorithm. IV for the operation is the session IV. * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer.*/ -void crypto_test_enc_alg_aes_gcm_ovr_iv(void) +static void crypto_test_enc_alg_aes_gcm_ovr_iv(void) { unsigned int test_vec_num = (sizeof(aes_gcm_reference) / sizeof(aes_gcm_reference[0])); @@ -785,7 +785,7 @@ void crypto_test_enc_alg_aes_gcm_ovr_iv(void) * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer. * */ -void crypto_test_dec_alg_aes_gcm(void) +static void crypto_test_dec_alg_aes_gcm(void) { unsigned int test_vec_num = (sizeof(aes_gcm_reference) / sizeof(aes_gcm_reference[0])); @@ -805,7 +805,7 @@ void crypto_test_dec_alg_aes_gcm(void) * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer. * */ -void crypto_test_dec_alg_aes_gcm_ovr_iv(void) +static void crypto_test_dec_alg_aes_gcm_ovr_iv(void) { unsigned int test_vec_num = (sizeof(aes_gcm_reference) / sizeof(aes_gcm_reference[0])); @@ -829,7 +829,7 @@ static int check_alg_aes_cbc(void) * operation for AES128_CBC algorithm. IV for the operation is the session IV. * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer.*/ -void crypto_test_enc_alg_aes_cbc(void) +static void crypto_test_enc_alg_aes_cbc(void) { unsigned int test_vec_num = (sizeof(aes_cbc_reference) / sizeof(aes_cbc_reference[0])); @@ -847,7 +847,7 @@ void crypto_test_enc_alg_aes_cbc(void) /* This test verifies the correctness of encode (plaintext -> ciphertext) * operation for AES128_CBC algorithm. IV for the operation is the operation IV. * */ -void crypto_test_enc_alg_aes_cbc_ovr_iv(void) +static void crypto_test_enc_alg_aes_cbc_ovr_iv(void) { unsigned int test_vec_num = (sizeof(aes_cbc_reference) / sizeof(aes_cbc_reference[0])); @@ -867,7 +867,7 @@ void crypto_test_enc_alg_aes_cbc_ovr_iv(void) * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer. * */ -void crypto_test_dec_alg_aes_cbc(void) +static void crypto_test_dec_alg_aes_cbc(void) { unsigned int test_vec_num = (sizeof(aes_cbc_reference) / sizeof(aes_cbc_reference[0])); @@ -887,7 +887,7 @@ void crypto_test_dec_alg_aes_cbc(void) * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer. * */ -void crypto_test_dec_alg_aes_cbc_ovr_iv(void) +static void crypto_test_dec_alg_aes_cbc_ovr_iv(void) { unsigned int test_vec_num = (sizeof(aes_cbc_reference) / sizeof(aes_cbc_reference[0])); @@ -911,7 +911,7 @@ static int check_alg_aes_ctr(void) * operation for AES128_CTR algorithm. IV for the operation is the session IV. * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer.*/ -void crypto_test_enc_alg_aes_ctr(void) +static void crypto_test_enc_alg_aes_ctr(void) { unsigned int test_vec_num = (sizeof(aes_ctr_reference) / sizeof(aes_ctr_reference[0])); @@ -929,7 +929,7 @@ void crypto_test_enc_alg_aes_ctr(void) /* This test verifies the correctness of encode (plaintext -> ciphertext) * operation for AES128_CTR algorithm. IV for the operation is the operation IV. * */ -void crypto_test_enc_alg_aes_ctr_ovr_iv(void) +static void crypto_test_enc_alg_aes_ctr_ovr_iv(void) { unsigned int test_vec_num = (sizeof(aes_ctr_reference) / sizeof(aes_ctr_reference[0])); @@ -949,7 +949,7 @@ void crypto_test_enc_alg_aes_ctr_ovr_iv(void) * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer. * */ -void crypto_test_dec_alg_aes_ctr(void) +static void crypto_test_dec_alg_aes_ctr(void) { unsigned int test_vec_num = (sizeof(aes_ctr_reference) / sizeof(aes_ctr_reference[0])); @@ -969,7 +969,7 @@ void crypto_test_dec_alg_aes_ctr(void) * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer. * */ -void crypto_test_dec_alg_aes_ctr_ovr_iv(void) +static void crypto_test_dec_alg_aes_ctr_ovr_iv(void) { unsigned int test_vec_num = (sizeof(aes_ctr_reference) / sizeof(aes_ctr_reference[0])); @@ -996,7 +996,7 @@ static int check_alg_hmac_md5(void) * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer. * */ -void crypto_test_gen_alg_hmac_md5(void) +static void crypto_test_gen_alg_hmac_md5(void) { unsigned int test_vec_num = (sizeof(hmac_md5_reference) / sizeof(hmac_md5_reference[0])); @@ -1010,7 +1010,7 @@ void crypto_test_gen_alg_hmac_md5(void) false); } -void crypto_test_check_alg_hmac_md5(void) +static void crypto_test_check_alg_hmac_md5(void) { unsigned int test_vec_num = (sizeof(hmac_md5_reference) / sizeof(hmac_md5_reference[0])); @@ -1036,7 +1036,7 @@ static int check_alg_hmac_sha1(void) * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer. * */ -void crypto_test_gen_alg_hmac_sha1(void) +static void crypto_test_gen_alg_hmac_sha1(void) { unsigned int test_vec_num = (sizeof(hmac_sha1_reference) / sizeof(hmac_sha1_reference[0])); @@ -1050,7 +1050,7 @@ void crypto_test_gen_alg_hmac_sha1(void) false); } -void crypto_test_check_alg_hmac_sha1(void) +static void crypto_test_check_alg_hmac_sha1(void) { unsigned int test_vec_num = (sizeof(hmac_sha1_reference) / sizeof(hmac_sha1_reference[0])); @@ -1076,7 +1076,7 @@ static int check_alg_hmac_sha256(void) * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer. * */ -void crypto_test_gen_alg_hmac_sha256(void) +static void crypto_test_gen_alg_hmac_sha256(void) { unsigned int test_vec_num = (sizeof(hmac_sha256_reference) / sizeof(hmac_sha256_reference[0])); @@ -1090,7 +1090,7 @@ void crypto_test_gen_alg_hmac_sha256(void) false); } -void crypto_test_check_alg_hmac_sha256(void) +static void crypto_test_check_alg_hmac_sha256(void) { unsigned int test_vec_num = (sizeof(hmac_sha256_reference) / sizeof(hmac_sha256_reference[0])); @@ -1116,7 +1116,7 @@ static int check_alg_hmac_sha512(void) * In addition the test verifies if the implementation can use the * packet buffer as completion event buffer. * */ -void crypto_test_gen_alg_hmac_sha512(void) +static void crypto_test_gen_alg_hmac_sha512(void) { unsigned int test_vec_num = (sizeof(hmac_sha512_reference) / sizeof(hmac_sha512_reference[0])); @@ -1130,7 +1130,7 @@ void crypto_test_gen_alg_hmac_sha512(void) false); } -void crypto_test_check_alg_hmac_sha512(void) +static void crypto_test_check_alg_hmac_sha512(void) { unsigned int test_vec_num = (sizeof(hmac_sha512_reference) / sizeof(hmac_sha512_reference[0])); @@ -1149,7 +1149,7 @@ static int check_alg_aes_gmac(void) return check_alg_support(ODP_CIPHER_ALG_NULL, ODP_AUTH_ALG_AES_GMAC); } -void crypto_test_gen_alg_aes_gmac(void) +static void crypto_test_gen_alg_aes_gmac(void) { unsigned int test_vec_num = (sizeof(aes_gmac_reference) / sizeof(aes_gmac_reference[0])); @@ -1163,7 +1163,7 @@ void crypto_test_gen_alg_aes_gmac(void) false); } -void crypto_test_check_alg_aes_gmac(void) +static void crypto_test_check_alg_aes_gmac(void) { unsigned int test_vec_num = (sizeof(aes_gmac_reference) / sizeof(aes_gmac_reference[0]));