/* * Copyright 2014-2026 The GmSSL Project. All Rights Reserved. * * Licensed under the Apache License, Version 2.0 (the License); you may * not use this file except in compliance with the License. * * http://www.apache.org/licenses/LICENSE-2.0 */ #include #include #include #include #include #include #include "passwd.h" static const char *usage = "-curve str [-pass str] [-out pem] [-pubout pem]\n"; static const char *options = "Options\n" "\n" " -curve str EC curve name, supported curves: secp256r1, prime256v1, secp384r1\n" " SM2 is not supported by this command, use `sm2keygen` instead\n" " -pass pass Password to encrypt the private key, prompt if not given\n" " -out pem Output password-encrypted PKCS #8 private key in PEM format\n" " -pubout pem Output public key in PEM format\n" " -export pem Output non-encrypted EC private key in PEM format\n" "\n" "Examples\n" "\n" " gmssl eckeygen -curve secp256r1 -pass P@ssw0rd -out p256.pem\n" " gmssl eckeygen -curve secp384r1 -pass P@ssw0rd -out p384.pem -pubout p384pub.pem\n" "\n"; static int eckeygen_curve_from_name(const char *name) { if (!name) { return OID_undef; } if (!strcmp(name, "sm2") || !strcmp(name, "sm2p256v1")) { return OID_sm2; } #ifdef ENABLE_SECP256R1 if (!strcmp(name, "secp256r1") || !strcmp(name, "prime256v1")) { return OID_secp256r1; } #endif #ifdef ENABLE_SECP384R1 if (!strcmp(name, "secp384r1")) { return OID_secp384r1; } #endif return OID_undef; } int eckeygen_main(int argc, char **argv) { int ret = 1; char *prog = argv[0]; char *curve_name = NULL; char *pass = NULL; char passbuf[GMSSL_PASSWORD_MAX_SIZE] = {0}; char *outfile = NULL; char *puboutfile = NULL; char *exportfile = NULL; FILE *outfp = stdout; FILE *puboutfp = stdout; FILE *exportfp = NULL; int curve_oid = OID_undef; X509_KEY key = {0}; argc--; argv++; if (argc < 1) { fprintf(stderr, "usage: gmssl %s %s\n", prog, usage); return 1; } while (argc > 0) { if (!strcmp(*argv, "-help")) { printf("usage: gmssl %s %s\n", prog, usage); printf("%s\n", options); ret = 0; goto end; } else if (!strcmp(*argv, "-curve")) { if (--argc < 1) goto bad; curve_name = *(++argv); } else if (!strcmp(*argv, "-pass")) { if (--argc < 1) goto bad; pass = *(++argv); } else if (!strcmp(*argv, "-out")) { if (--argc < 1) goto bad; outfile = *(++argv); if (!(outfp = fopen(outfile, "wb"))) { fprintf(stderr, "gmssl %s: open '%s' failure : %s\n", prog, outfile, strerror(errno)); goto end; } } else if (!strcmp(*argv, "-pubout")) { if (--argc < 1) goto bad; puboutfile = *(++argv); if (!(puboutfp = fopen(puboutfile, "wb"))) { fprintf(stderr, "gmssl %s: open '%s' failure : %s\n", prog, puboutfile, strerror(errno)); goto end; } } else if (!strcmp(*argv, "-export")) { if (--argc < 1) goto bad; exportfile = *(++argv); if (!(exportfp = fopen(exportfile, "wb"))) { fprintf(stderr, "gmssl %s: open '%s' failure : %s\n", prog, exportfile, strerror(errno)); goto end; } } else { fprintf(stderr, "gmssl %s: illegal option '%s'\n", prog, *argv); goto end; bad: fprintf(stderr, "gmssl %s: `%s` option value missing\n", prog, *argv); goto end; } argc--; argv++; } if (!curve_name) { fprintf(stderr, "gmssl %s: option '-curve' required\n", prog); goto end; } curve_oid = eckeygen_curve_from_name(curve_name); if (curve_oid == OID_sm2) { fprintf(stderr, "gmssl %s: SM2 curve is not supported, use `sm2keygen` instead\n", prog); goto end; } if (curve_oid == OID_undef) { fprintf(stderr, "gmssl %s: unsupported curve '%s'\n", prog, curve_name); goto end; } if (gmssl_tool_get_password(prog, "pass", outfile, &pass, passbuf, sizeof(passbuf), 1) != 1) { goto end; } if (x509_key_generate(&key, OID_ec_public_key, &curve_oid, sizeof(curve_oid)) != 1) { fprintf(stderr, "gmssl %s: inner failure\n", prog); goto end; } if (x509_private_key_info_encrypt_to_pem(&key, pass, outfp) != 1) { fprintf(stderr, "gmssl %s: inner failure\n", prog); goto end; } if (x509_public_key_info_to_pem(&key, puboutfp) != 1) { fprintf(stderr, "gmssl %s: inner failure\n", prog); goto end; } if (exportfp) { switch (curve_oid) { #ifdef ENABLE_SECP256R1 case OID_secp256r1: ret = secp256r1_private_key_to_pem(&key.u.secp256r1_key, exportfp); break; #endif #ifdef ENABLE_SECP384R1 case OID_secp384r1: ret = secp384r1_private_key_to_pem(&key.u.secp384r1_key, exportfp); break; #endif default: ret = -1; break; } if (ret != 1) { fprintf(stderr, "gmssl %s: inner failure\n", prog); goto end; } } ret = 0; end: gmssl_secure_clear(&key, sizeof(key)); gmssl_secure_clear(passbuf, sizeof(passbuf)); if (outfile && outfp) fclose(outfp); if (puboutfile && puboutfp) fclose(puboutfp); if (exportfile && exportfp) fclose(exportfp); return ret; }