/* SPDX-License-Identifier: LGPL-2.1+ */ /*** This file is part of systemd. Copyright 2014 Tom Gundersen systemd is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. systemd is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more details. You should have received a copy of the GNU Lesser General Public License along with systemd; If not, see . ***/ #include #include #include #include #include "ether-addr-util.h" #include "macro.h" #include "string-util.h" char* ether_addr_to_string(const struct ether_addr *addr, char buffer[ETHER_ADDR_TO_STRING_MAX]) { assert(addr); assert(buffer); /* Like ether_ntoa() but uses %02x instead of %x to print * ethernet addresses, which makes them look less funny. Also, * doesn't use a static buffer. */ sprintf(buffer, "%02x:%02x:%02x:%02x:%02x:%02x", addr->ether_addr_octet[0], addr->ether_addr_octet[1], addr->ether_addr_octet[2], addr->ether_addr_octet[3], addr->ether_addr_octet[4], addr->ether_addr_octet[5]); return buffer; } bool ether_addr_equal(const struct ether_addr *a, const struct ether_addr *b) { assert(a); assert(b); return a->ether_addr_octet[0] == b->ether_addr_octet[0] && a->ether_addr_octet[1] == b->ether_addr_octet[1] && a->ether_addr_octet[2] == b->ether_addr_octet[2] && a->ether_addr_octet[3] == b->ether_addr_octet[3] && a->ether_addr_octet[4] == b->ether_addr_octet[4] && a->ether_addr_octet[5] == b->ether_addr_octet[5]; } int ether_addr_from_string(const char *s, struct ether_addr *ret, size_t *offset) { size_t pos = 0, n, field; char sep = '\0'; const char *hex = HEXDIGITS, *hexoff; size_t x; bool touched; #define parse_fields(v) \ for (field = 0; field < ELEMENTSOF(v); field++) { \ touched = false; \ for (n = 0; n < (2 * sizeof(v[0])); n++) { \ if (s[pos] == '\0') \ break; \ hexoff = strchr(hex, s[pos]); \ if (!hexoff) \ break; \ assert(hexoff >= hex); \ x = hexoff - hex; \ if (x >= 16) \ x -= 6; /* A-F */ \ assert(x < 16); \ touched = true; \ v[field] <<= 4; \ v[field] += x; \ pos++; \ } \ if (!touched) \ return -EINVAL; \ if (field < (ELEMENTSOF(v)-1)) { \ if (s[pos] != sep) \ return -EINVAL; \ else \ pos++; \ } \ } assert(s); assert(ret); sep = s[strspn(s, hex)]; if (sep == '\n') return -EINVAL; if (!strchr(":.-", sep)) return -EINVAL; if (sep == '.') { uint16_t shorts[3] = { 0 }; parse_fields(shorts); for (n = 0; n < ELEMENTSOF(shorts); n++) { ret->ether_addr_octet[2*n] = ((shorts[n] & (uint16_t)0xff00) >> 8); ret->ether_addr_octet[2*n + 1] = (shorts[n] & (uint16_t)0x00ff); } } else { struct ether_addr out = { .ether_addr_octet = { 0 } }; parse_fields(out.ether_addr_octet); for (n = 0; n < ELEMENTSOF(out.ether_addr_octet); n++) ret->ether_addr_octet[n] = out.ether_addr_octet[n]; } if (offset) *offset = pos; return 0; }