mirror of
https://github.com/open-quantum-safe/liboqs.git
synced 2025-10-04 00:02:01 -04:00
* Ensure aliases are activated with cmake * Updates alg_support fragments: ensure that dependencies (aliases and platform-specific code) are activated after applying filter_algs * Adds bike_l5 to NIST_R4 algorithms * add CI test for aliases * remove ml_kem ipds from STD filter_algs * decouple name and alias * fixing vector tests
276 lines
7.7 KiB
C
276 lines
7.7 KiB
C
// SPDX-License-Identifier: MIT
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// This tests the test vectors published by NIST CAVP
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#include <assert.h>
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#include <errno.h>
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#include <stdbool.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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#include <sys/stat.h>
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#include <oqs/oqs.h>
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#include "system_info.c"
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struct {
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const uint8_t *pos;
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} prng_state = {
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.pos = 0
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};
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static void fprintBstr(FILE *fp, const char *S, const uint8_t *A, size_t L) {
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size_t i;
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fprintf(fp, "%s", S);
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for (i = 0; i < L; i++) {
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fprintf(fp, "%02X", A[i]);
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}
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if (L == 0) {
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fprintf(fp, "00");
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}
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fprintf(fp, "\n");
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}
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static uint8_t hexCharToDecimal(char c) {
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if (c >= '0' && c <= '9') {
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return (uint8_t) (c - '0');
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} else if (c >= 'a' && c <= 'f') {
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return (uint8_t) (c - 'a' + 10);
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} else if (c >= 'A' && c <= 'F') {
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return (uint8_t) (c - 'A' + 10);
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} else {
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fprintf(stderr, "Invalid hex character: %c\n", c);
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return 0;
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}
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}
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static void hexStringToByteArray(const char *hexString, uint8_t *byteArray) {
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size_t len = strlen(hexString);
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if (len % 2 != 0) {
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fprintf(stderr, "Hex string must have an even number of characters\n");
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exit(EXIT_FAILURE);
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}
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for (size_t i = 0, j = 0; i < len; i += 2, j++) {
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byteArray[j] = (uint8_t) ((hexCharToDecimal(hexString[i]) << 4) | hexCharToDecimal(hexString[i + 1]));
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}
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}
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/* HQC-specific functions */
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static inline bool is_ml_dsa(const char *method_name) {
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return (0 == strcmp(method_name, OQS_SIG_alg_ml_dsa_44_ipd))
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|| (0 == strcmp(method_name, OQS_SIG_alg_ml_dsa_65_ipd))
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|| (0 == strcmp(method_name, OQS_SIG_alg_ml_dsa_87_ipd))
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|| (0 == strcmp(method_name, OQS_SIG_alg_ml_dsa_44))
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|| (0 == strcmp(method_name, OQS_SIG_alg_ml_dsa_65))
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|| (0 == strcmp(method_name, OQS_SIG_alg_ml_dsa_87));
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}
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static void MLDSA_randombytes_init(const uint8_t *entropy_input, const uint8_t *personalization_string) {
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(void) personalization_string;
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prng_state.pos = entropy_input;
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}
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static void MLDSA_randombytes(uint8_t *random_array, size_t bytes_to_read) {
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memcpy(random_array, prng_state.pos, bytes_to_read);
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prng_state.pos += bytes_to_read;
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}
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static void MLDSA_randombytes_free(void) {
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prng_state.pos = 0;
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}
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OQS_STATUS sig_vector(const char *method_name,
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uint8_t *prng_output_stream,
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const uint8_t *sig_msg, size_t sig_msg_len, const uint8_t *sig_sk,
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const uint8_t *verif_sig, const uint8_t *verif_pk, const uint8_t *verif_msg, size_t verif_msg_len) {
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uint8_t *entropy_input;
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FILE *fh = NULL;
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OQS_SIG *sig = NULL;
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uint8_t *msg = NULL;
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uint8_t *public_key = NULL;
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uint8_t *secret_key = NULL;
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uint8_t *signature = NULL;
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uint8_t *signed_msg = NULL;
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size_t signature_len = 0;
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size_t signed_msg_len = 0;
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OQS_STATUS rc, ret = OQS_ERROR;
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void (*randombytes_init)(const uint8_t *, const uint8_t *) = NULL;
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void (*randombytes_free)(void) = NULL;
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sig = OQS_SIG_new(method_name);
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if (sig == NULL) {
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printf("[sig_kat] %s was not enabled at compile-time.\n", method_name);
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goto algo_not_enabled;
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}
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if (is_ml_dsa(method_name)) {
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OQS_randombytes_custom_algorithm(&MLDSA_randombytes);
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randombytes_init = &MLDSA_randombytes_init;
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randombytes_free = &MLDSA_randombytes_free;
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entropy_input = (uint8_t *) prng_output_stream;
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} else {
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// Only ML-DSA-ipd supported
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goto err;
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}
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randombytes_init(entropy_input, NULL);
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fh = stdout;
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public_key = malloc(sig->length_public_key);
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secret_key = malloc(sig->length_secret_key);
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signature = malloc(sig->length_signature);
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if ((public_key == NULL) || (secret_key == NULL) || (signature == NULL)) {
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fprintf(stderr, "[vectors_sig] %s ERROR: malloc failed!\n", method_name);
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goto err;
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}
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rc = OQS_SIG_keypair(sig, public_key, secret_key);
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if (rc != OQS_SUCCESS) {
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fprintf(stderr, "[vectors_sig] %s ERROR: OQS_SIG_keypair failed!\n", method_name);
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goto err;
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}
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fprintBstr(fh, "pk: ", public_key, sig->length_public_key);
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fprintBstr(fh, "sk: ", secret_key, sig->length_secret_key);
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rc = OQS_SIG_sign(sig, signature, &signature_len, sig_msg, sig_msg_len, sig_sk);
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if (rc != OQS_SUCCESS) {
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fprintf(stderr, "[vectors_sig] %s ERROR: OQS_SIG_sign failed!\n", method_name);
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goto err;
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}
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fprintBstr(fh, "signature: ", signature, signature_len);
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rc = OQS_SIG_verify(sig, verif_msg, verif_msg_len, verif_sig, signature_len, verif_pk);
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if (rc != OQS_SUCCESS) {
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fprintf(stderr, "[vectors_sig] %s ERROR: OQS_SIG_verify failed!\n", method_name);
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goto err;
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}
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ret = OQS_SUCCESS;
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goto cleanup;
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err:
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ret = OQS_ERROR;
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goto cleanup;
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algo_not_enabled:
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ret = OQS_SUCCESS;
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cleanup:
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if (sig != NULL) {
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OQS_MEM_secure_free(secret_key, sig->length_secret_key);
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OQS_MEM_secure_free(signed_msg, signed_msg_len);
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}
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if (randombytes_free != NULL) {
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randombytes_free();
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}
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OQS_MEM_insecure_free(public_key);
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OQS_MEM_insecure_free(signature);
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OQS_MEM_insecure_free(msg);
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OQS_SIG_free(sig);
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return ret;
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}
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int main(int argc, char **argv) {
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OQS_STATUS rc;
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OQS_init();
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if (argc != 8) {
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fprintf(stderr, "Usage: vectors_sig algname prng_output_stream sig_msg sig_sk verif_sig verif_pk verif_msg\n");
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fprintf(stderr, " algname: ");
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for (size_t i = 0; i < OQS_SIG_algs_length; i++) {
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if (i > 0) {
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fprintf(stderr, ", ");
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}
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fprintf(stderr, "%s", OQS_SIG_alg_identifier(i));
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}
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fprintf(stderr, "\n");
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printf("\n");
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print_system_info();
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OQS_destroy();
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return EXIT_FAILURE;
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}
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char *alg_name = argv[1];
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char *prng_output_stream = argv[2];
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char *sig_msg = argv[3];
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size_t sig_msg_len = strlen(sig_msg) / 2;
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char *sig_sk = argv[4];
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char *verif_sig = argv[5];
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char *verif_pk = argv[6];
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char *verif_msg = argv[7];
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size_t verif_msg_len = strlen(verif_msg) / 2;
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uint8_t *prng_output_stream_bytes = NULL;
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uint8_t *sig_msg_bytes = NULL;
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uint8_t *sig_sk_bytes = NULL;
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uint8_t *verif_sig_bytes = NULL;
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uint8_t *verif_pk_bytes = NULL;
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uint8_t *verif_msg_bytes = NULL;
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OQS_SIG *sig = OQS_SIG_new(alg_name);
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if (sig == NULL) {
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printf("[vectors_sig] %s was not enabled at compile-time.\n", alg_name);
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rc = OQS_ERROR;
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goto err;
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}
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if (strlen(prng_output_stream) % 2 != 0 ||
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strlen(sig_msg) % 2 != 0 || // variable length
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strlen(sig_sk) != 2 * sig->length_secret_key ||
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strlen(verif_sig) != 2 * sig->length_signature ||
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strlen(verif_pk) != 2 * sig->length_public_key ||
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strlen(verif_msg) % 2 != 0) { // variable length
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rc = OQS_ERROR;
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goto err;
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}
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prng_output_stream_bytes = malloc(strlen(prng_output_stream) / 2);
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sig_msg_bytes = malloc(strlen(sig_msg) / 2);
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sig_sk_bytes = malloc(sig->length_secret_key);
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verif_sig_bytes = malloc(sig->length_signature);
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verif_pk_bytes = malloc(sig->length_public_key);
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verif_msg_bytes = malloc(strlen(verif_msg) / 2);
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if ((prng_output_stream_bytes == NULL) || (sig_msg_bytes == NULL) || (sig_sk_bytes == NULL) || (verif_sig_bytes == NULL) || (verif_pk_bytes == NULL) || (verif_msg_bytes == NULL)) {
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fprintf(stderr, "[vectors_sig] ERROR: malloc failed!\n");
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rc = OQS_ERROR;
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goto err;
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}
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hexStringToByteArray(prng_output_stream, prng_output_stream_bytes);
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hexStringToByteArray(sig_msg, sig_msg_bytes);
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hexStringToByteArray(sig_sk, sig_sk_bytes);
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hexStringToByteArray(verif_sig, verif_sig_bytes);
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hexStringToByteArray(verif_pk, verif_pk_bytes);
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hexStringToByteArray(verif_msg, verif_msg_bytes);
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rc = sig_vector(alg_name, prng_output_stream_bytes, sig_msg_bytes, sig_msg_len, sig_sk_bytes, verif_sig_bytes, verif_pk_bytes, verif_msg_bytes, verif_msg_len);
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err:
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OQS_MEM_insecure_free(prng_output_stream_bytes);
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OQS_MEM_insecure_free(sig_msg_bytes);
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OQS_MEM_insecure_free(sig_sk_bytes);
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OQS_MEM_insecure_free(verif_sig_bytes);
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OQS_MEM_insecure_free(verif_pk_bytes);
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OQS_MEM_insecure_free(verif_msg_bytes);
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OQS_SIG_free(sig);
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OQS_destroy();
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if (rc != OQS_SUCCESS) {
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return EXIT_FAILURE;
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} else {
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return EXIT_SUCCESS;
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}
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}
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