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@@ -1,7 +1,9 @@ |
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#include "api.h" |
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#include "randombytes.h" |
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#include <stdint.h> |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <string.h> |
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#ifndef NTESTS |
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@@ -30,6 +32,15 @@ static int check_canary(const uint8_t *d) { |
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return 0; |
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} |
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inline static void* malloc_s(size_t size) { |
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void *ptr = malloc(size); |
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if (ptr == NULL) { |
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perror("Malloc failed!"); |
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exit(1); |
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} |
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return ptr; |
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} |
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// https://stackoverflow.com/a/1489985/1711232 |
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#define PASTER(x, y) x##_##y |
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#define EVALUATOR(x, y) PASTER(x, y) |
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@@ -48,7 +59,8 @@ static int check_canary(const uint8_t *d) { |
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#define RETURNS_ZERO(f) \ |
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if ((f) != 0) { \ |
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puts(#f " returned non-zero returncode"); \ |
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return -1; \ |
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res = 1; \ |
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goto end; \ |
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} |
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// https://stackoverflow.com/a/55243651/248065 |
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@@ -67,12 +79,13 @@ static int test_keys(void) { |
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* 16 extra bytes for canary |
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* 1 extra byte for unalignment |
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*/ |
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int res = 0; |
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uint8_t key_a_aligned[CRYPTO_BYTES + 16 + 1]; |
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uint8_t key_b_aligned[CRYPTO_BYTES + 16 + 1]; |
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uint8_t pk_aligned[CRYPTO_PUBLICKEYBYTES + 16 + 1]; |
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uint8_t sendb_aligned[CRYPTO_CIPHERTEXTBYTES + 16 + 1]; |
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uint8_t sk_a_aligned[CRYPTO_SECRETKEYBYTES + 16 + 1]; |
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uint8_t *key_a_aligned = malloc_s(CRYPTO_BYTES + 16 + 1); |
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uint8_t *key_b_aligned = malloc_s(CRYPTO_BYTES + 16 + 1); |
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uint8_t *pk_aligned = malloc_s(CRYPTO_PUBLICKEYBYTES + 16 + 1); |
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uint8_t *sendb_aligned = malloc_s(CRYPTO_CIPHERTEXTBYTES + 16 + 1); |
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uint8_t *sk_a_aligned = malloc_s(CRYPTO_SECRETKEYBYTES + 16 + 1); |
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/* |
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* Make sure all pointers are odd. |
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@@ -117,7 +130,8 @@ static int test_keys(void) { |
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if (memcmp(key_a + 8, key_b + 8, CRYPTO_BYTES) != 0) { |
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printf("ERROR KEYS\n"); |
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return -1; |
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res = 1; |
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goto end; |
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} |
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// Validate that the implementation did not touch the canary |
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@@ -127,20 +141,30 @@ static int test_keys(void) { |
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check_canary(sendb) || check_canary(sendb + CRYPTO_CIPHERTEXTBYTES + 8 ) || |
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check_canary(sk_a) || check_canary(sk_a + CRYPTO_SECRETKEYBYTES + 8 )) { |
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printf("ERROR canary overwritten\n"); |
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return -1; |
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res = 1; |
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goto end; |
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} |
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} |
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return 0; |
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end: |
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free(key_a_aligned); |
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free(key_b_aligned); |
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free(pk_aligned); |
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free(sendb_aligned); |
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free(sk_a_aligned); |
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return res; |
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} |
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static int test_invalid_sk_a(void) { |
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uint8_t sk_a[CRYPTO_SECRETKEYBYTES]; |
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uint8_t key_a[CRYPTO_BYTES], key_b[CRYPTO_BYTES]; |
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uint8_t pk[CRYPTO_PUBLICKEYBYTES]; |
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uint8_t sendb[CRYPTO_CIPHERTEXTBYTES]; |
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uint8_t *sk_a = malloc_s(CRYPTO_SECRETKEYBYTES); |
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uint8_t *key_a = malloc_s(CRYPTO_BYTES); |
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uint8_t *key_b = malloc_s(CRYPTO_BYTES); |
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uint8_t *pk = malloc_s(CRYPTO_PUBLICKEYBYTES); |
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uint8_t *sendb = malloc_s(CRYPTO_CIPHERTEXTBYTES); |
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int i; |
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int returncode; |
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int res = 0; |
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for (i = 0; i < NTESTS; i++) { |
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// Alice generates a public key |
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@@ -157,25 +181,36 @@ static int test_invalid_sk_a(void) { |
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printf("ERROR failing crypto_kem_dec returned %d instead of " |
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"negative or zero code\n", |
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returncode); |
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return -1; |
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res = 1; |
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goto end; |
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} |
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if (!memcmp(key_a, key_b, CRYPTO_BYTES)) { |
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printf("ERROR invalid sk_a\n"); |
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return -1; |
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res = 1; |
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goto end; |
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} |
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} |
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return 0; |
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end: |
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free(sk_a); |
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free(key_a); |
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free(key_b); |
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free(pk); |
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free(sendb); |
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return res; |
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} |
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static int test_invalid_ciphertext(void) { |
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uint8_t sk_a[CRYPTO_SECRETKEYBYTES]; |
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uint8_t key_a[CRYPTO_BYTES], key_b[CRYPTO_BYTES]; |
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uint8_t pk[CRYPTO_PUBLICKEYBYTES]; |
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uint8_t sendb[CRYPTO_CIPHERTEXTBYTES]; |
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uint8_t *sk_a = malloc_s(CRYPTO_SECRETKEYBYTES); |
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uint8_t *key_a = malloc_s(CRYPTO_BYTES); |
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uint8_t *key_b = malloc_s(CRYPTO_BYTES); |
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uint8_t *pk = malloc_s(CRYPTO_PUBLICKEYBYTES); |
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uint8_t *sendb = malloc_s(CRYPTO_CIPHERTEXTBYTES); |
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int i; |
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int returncode; |
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int res = 0; |
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for (i = 0; i < NTESTS; i++) { |
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// Alice generates a public key |
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@@ -192,16 +227,24 @@ static int test_invalid_ciphertext(void) { |
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printf("ERROR crypto_kem_dec should either fail (negative " |
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"returncode) or succeed (return 0) but returned %d\n", |
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returncode); |
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return -1; |
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res = 1; |
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goto end; |
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} |
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if (!memcmp(key_a, key_b, CRYPTO_BYTES)) { |
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printf("ERROR invalid ciphertext\n"); |
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return -1; |
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res = 1; |
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goto end; |
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} |
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} |
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return 0; |
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end: |
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free(sk_a); |
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free(key_a); |
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free(key_b); |
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free(pk); |
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free(sendb); |
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return res; |
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} |
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int main(void) { |
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