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Add test for Tarsnap testvectors to low-level scrypt interface
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@ -82,6 +82,7 @@ test/default/onetimeauth
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test/default/onetimeauth2
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test/default/onetimeauth7
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test/default/pwhash
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test/default/pwhash_scrypt_ll
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test/default/randombytes
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test/default/scalarmult
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test/default/scalarmult2
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@ -32,6 +32,7 @@ EXTRA_DIST = \
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onetimeauth2.exp \
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onetimeauth7.exp \
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pwhash.exp \
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pwhash_scrypt_ll.exp \
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scalarmult.exp \
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scalarmult2.exp \
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scalarmult5.exp \
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@ -88,6 +89,7 @@ DISTCLEANFILES = \
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onetimeauth2.res \
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onetimeauth7.res \
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pwhash.res \
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pwhash_scrypt_ll.res \
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scalarmult.res \
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scalarmult2.res \
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scalarmult5.res \
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@ -151,6 +153,7 @@ TESTS_TARGETS = \
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onetimeauth2 \
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onetimeauth7 \
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pwhash \
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pwhash_scrypt_ll \
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randombytes \
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scalarmult \
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scalarmult2 \
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@ -271,6 +274,9 @@ onetimeauth7_LDADD = $(TESTS_LDADD)
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pwhash_SOURCE = cmptest.h pwhash.c
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pwhash_LDADD = $(TESTS_LDADD)
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pwhash_scrypt_ll_SOURCE = cmptest.h pwhash_scrypt_ll.c
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pwhash_scrypt_ll_LDADD = $(TESTS_LDADD)
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randombytes_SOURCE = randombytes.c
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randombytes_LDADD = $(TESTS_LDADD)
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69
test/default/pwhash_scrypt_ll.c
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69
test/default/pwhash_scrypt_ll.c
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@ -0,0 +1,69 @@
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#include <stdio.h>
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#include <string.h>
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#define TEST_NAME "pwhash_scrypt_ll"
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#include "cmptest.h"
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/* Tarsnap test vectors, see: https://www.tarsnap.com/scrypt/scrypt.pdf */
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unsigned long olenGlobal = 64ul;
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uint8_t password1[] = "\0";
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uint8_t salt1[] = "\0";
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uint64_t N1 = 16ul;
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uint32_t r1 = 1ul;
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uint32_t p1 = 1ul;
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uint8_t password2[] = "password\0";
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uint8_t salt2[] = "NaCl\0";
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uint64_t N2 = 1024ul;
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uint32_t r2 = 8ul;
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uint32_t p2 = 16ul;
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uint8_t password3[] = "pleaseletmein\0";
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uint8_t salt3[] = "SodiumChloride\0";
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uint64_t N3 = 16384ul;
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uint32_t r3 = 8ul;
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uint32_t p3 = 1ul;
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uint8_t password4[] = "pleaseletmein\0";
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uint8_t salt4[] = "SodiumChloride\0";
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size_t N4 = 1048576ul;
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size_t r4 = 8ul;
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size_t p4 = 1ul;
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void test_vector(uint8_t * password, size_t passwordLength, uint8_t * salt, size_t saltLenght, uint64_t N, uint32_t r, uint32_t p, size_t olen)
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{
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uint8_t data[olen];
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int ret = crypto_pwhash_scryptsalsa208sha256_ll(password, passwordLength, salt, saltLenght, N, r, p, data, olen);
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if(ret != 0)
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{
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printf("crypto_scrypt_compat failed!");
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}
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// Print header
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printf("scrypt(“");
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printf(password);
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printf("”, “");
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printf(salt);
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printf("”, %u, %u, %u, %u) =\n", N, r, p, olen);
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// Print test result
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int lineitems = 0;
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const int lineitemsLimit = 15;
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for(int i = 0; i < olen; ++i)
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{
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printf("%02x", data[i]);
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printf((lineitems < lineitemsLimit)? " " : "\n");
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lineitems = (lineitems < lineitemsLimit)? lineitems+1 : 0;
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}
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}
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int main(void)
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{
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test_vector(password1, strlen(password1), salt1, strlen(salt1), N1, r1, p1, olenGlobal);
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test_vector(password2, strlen(password2), salt2, strlen(salt2), N2, r2, p2, olenGlobal);
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test_vector(password3, strlen(password3), salt3, strlen(salt3), N3, r3, p3, olenGlobal);
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test_vector(password4, strlen(password4), salt4, strlen(salt4), N4, r4, p4, olenGlobal);
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return 0;
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}
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20
test/default/pwhash_scrypt_ll.exp
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20
test/default/pwhash_scrypt_ll.exp
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@ -0,0 +1,20 @@
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scrypt(“”, “”, 16, 1, 1, 64) =
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77 d6 57 62 38 65 7b 20 3b 19 ca 42 c1 8a 04 97
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f1 6b 48 44 e3 07 4a e8 df df fa 3f ed e2 14 42
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fc d0 06 9d ed 09 48 f8 32 6a 75 3a 0f c8 1f 17
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e8 d3 e0 fb 2e 0d 36 28 cf 35 e2 0c 38 d1 89 06
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scrypt(“password”, “NaCl”, 1024, 8, 16, 64) =
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fd ba be 1c 9d 34 72 00 78 56 e7 19 0d 01 e9 fe
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7c 6a d7 cb c8 23 78 30 e7 73 76 63 4b 37 31 62
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2e af 30 d9 2e 22 a3 88 6f f1 09 27 9d 98 30 da
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c7 27 af b9 4a 83 ee 6d 83 60 cb df a2 cc 06 40
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scrypt(“pleaseletmein”, “SodiumChloride”, 16384, 8, 1, 64) =
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70 23 bd cb 3a fd 73 48 46 1c 06 cd 81 fd 38 eb
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fd a8 fb ba 90 4f 8e 3e a9 b5 43 f6 54 5d a1 f2
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d5 43 29 55 61 3f 0f cf 62 d4 97 05 24 2a 9a f9
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e6 1e 85 dc 0d 65 1e 40 df cf 01 7b 45 57 58 87
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scrypt(“pleaseletmein”, “SodiumChloride”, 1048576, 8, 1, 64) =
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21 01 cb 9b 6a 51 1a ae ad db be 09 cf 70 f8 81
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ec 56 8d 57 4a 2f fd 4d ab e5 ee 98 20 ad aa 47
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8e 56 fd 8f 4b a5 d0 9f fa 1c 6d 92 7c 40 f4 c3
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37 30 40 49 e8 a9 52 fb cb f4 5c 6f a7 7a 41 a4
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