#undef NDEBUG #include #include #include #include #include #include #ifdef ENABLE_LIBFUZZER int LLVMFuzzerTestOneInput(const uint8_t *Data, size_t Size); int LLVMFuzzerTestOneInput(const uint8_t *Data, size_t Size) { LogLine_t *lp = 0; (void)ber_decode(0, &asn_DEF_LogLine, (void **)&lp, Data, Size); ASN_STRUCT_FREE(asn_DEF_LogLine, lp); return 0; } #else uint8_t buf0[] = { 48, /* LogLine SEQUENCE */ 24, /* L */ 22, /* IA5String */ 4, /* L */ /* "zzz\007" */ 122, 122, 122, 7, 48, /* varsets SEQUENCE OF VariablePartSet */ 16, /* L */ 48, /* VariablePart */ 14, /* L */ 48, /* vparts SEQUENCE OF VariablePart */ 7, /* L */ 49, /* VariablePart */ 5, 26, /* VisibleString */ 3, 49, 50, 51, /* 1 2 3 */ 48, /* ActionItem SEQUENCE */ 3, /* L */ 10, /* accept-as ENUMERATED */ 1, /* L */ 0, }; uint8_t buf1[] = { 48, /* LogLine SEQUENCE */ 19, /* L */ 22, /* IA5String */ 6, /* L */ /* "static" */ 115, 116, 97, 116, 105, 99, 48, /* varsets SEQUENCE OF VariablePartSet */ 9, /* L */ 48, /* VariablePart */ 7, /* L */ 48, /* vparts SEQUENCE OF VariablePart */ 0, /* L */ 48, /* ActionItem SEQUENCE */ 3, /* L */ 10, /* accept-as ENUMERATED */ 1, /* L */ 0, }; static void check(LogLine_t *tp, uint8_t *ptr, size_t size, size_t consumed) { asn_dec_rval_t rval; tp = memset(tp, 0, sizeof(*tp)); fprintf(stderr, "Buf %p (%zd)\n", ptr, size); rval = ber_decode(0, &asn_DEF_LogLine, (void **)&tp, ptr, size); fprintf(stderr, "Returned code %d, consumed %zd\n", (int)rval.code, rval.consumed); assert(rval.code == RC_OK); assert(rval.consumed == consumed); asn_fprint(stderr, &asn_DEF_LogLine, tp); ASN_STRUCT_RESET(asn_DEF_LogLine, tp); } uint8_t *buf; uint8_t buf_size; uint8_t buf_pos; static int buf_fill(const void *buffer, size_t size, void *app_key) { (void)app_key; /* Unused argument */ assert(buf_pos + size <= buf_size); memcpy(buf + buf_pos, buffer, size); buf_pos += size; return 0; } static void check_serialize() { LogLine_t ll; VariablePartSet_t *vps; VariablePart_t *vp; VisibleString_t *vpart; asn_enc_rval_t erval; int i; memset(&ll, 0, sizeof(ll)); vps = calloc(1, sizeof(*vps)); vp = calloc(1, sizeof(*vp)); vpart = OCTET_STRING_new_fromBuf(&asn_DEF_VisibleString, "123", 3); vp->present = VariablePart_PR_vset; ASN_SET_ADD(&vp->choice.vset, vpart); vps->resolution.accept_as = accept_as_unknown; ASN_SEQUENCE_ADD(&vps->vparts, vp); ASN_SEQUENCE_ADD(&ll.varsets, vps); OCTET_STRING_fromBuf(&ll.line_digest, "zzz\007", 4); asn_fprint(stderr, &asn_DEF_LogLine, &ll); buf_size = 128; uint8_t scratch[buf_size]; buf = scratch; erval = der_encode(&asn_DEF_LogLine, &ll, buf_fill, 0); assert(erval.encoded > 1); fprintf(stderr, "Encoded in %zd bytes\n", erval.encoded); fprintf(stderr, "\n"); for(i = 0; i < buf_pos; i++) { fprintf(stderr, "%d ", buf[i]); } fprintf(stderr, "\n\n"); assert(erval.encoded == sizeof(buf0)); assert(memcmp(buf0, buf, sizeof(buf0)) == 0); ASN_STRUCT_FREE_CONTENTS_ONLY(asn_DEF_LogLine, &ll); return; } int main(int ac, char **av) { LogLine_t t; (void)ac; /* Unused argument */ (void)av; /* Unused argument */ check_serialize(); check(&t, buf0, sizeof(buf0), sizeof(buf0)); check(&t, buf1, sizeof(buf1), sizeof(buf1)); return 0; } #endif