LCOV - code coverage report
Current view: top level - network - test-networkd-conf.c (source / functions) Hit Total Coverage
Test: main_coverage.info Lines: 189 189 100.0 %
Date: 2019-08-22 15:41:25 Functions: 12 12 100.0 %

          Line data    Source code
       1             : /* SPDX-License-Identifier: LGPL-2.1+ */
       2             : 
       3             : #include "ether-addr-util.h"
       4             : #include "hexdecoct.h"
       5             : #include "log.h"
       6             : #include "macro.h"
       7             : #include "set.h"
       8             : #include "string-util.h"
       9             : 
      10             : #include "network-internal.h"
      11             : #include "networkd-conf.h"
      12             : #include "networkd-network.h"
      13             : 
      14          11 : static void test_config_parse_duid_type_one(const char *rvalue, int ret, DUIDType expected, usec_t expected_time) {
      15          11 :         DUID actual = {};
      16             :         int r;
      17             : 
      18          11 :         r = config_parse_duid_type("network", "filename", 1, "section", 1, "lvalue", 0, rvalue, &actual, NULL);
      19          11 :         log_info_errno(r, "\"%s\" → %d (%m)", rvalue, actual.type);
      20          11 :         assert_se(r == ret);
      21          11 :         assert_se(expected == actual.type);
      22          11 :         if (expected == DUID_TYPE_LLT)
      23           2 :                 assert_se(expected_time == actual.llt_time);
      24          11 : }
      25             : 
      26           1 : static void test_config_parse_duid_type(void) {
      27           1 :         test_config_parse_duid_type_one("", 0, 0, 0);
      28           1 :         test_config_parse_duid_type_one("link-layer-time", 0, DUID_TYPE_LLT, 0);
      29           1 :         test_config_parse_duid_type_one("link-layer-time:2000-01-01 00:00:00 UTC", 0, DUID_TYPE_LLT, (usec_t) 946684800000000);
      30           1 :         test_config_parse_duid_type_one("vendor", 0, DUID_TYPE_EN, 0);
      31           1 :         test_config_parse_duid_type_one("vendor:2000-01-01 00:00:00 UTC", 0, 0, 0);
      32           1 :         test_config_parse_duid_type_one("link-layer", 0, DUID_TYPE_LL, 0);
      33           1 :         test_config_parse_duid_type_one("link-layer:2000-01-01 00:00:00 UTC", 0, 0, 0);
      34           1 :         test_config_parse_duid_type_one("uuid", 0, DUID_TYPE_UUID, 0);
      35           1 :         test_config_parse_duid_type_one("uuid:2000-01-01 00:00:00 UTC", 0, 0, 0);
      36           1 :         test_config_parse_duid_type_one("foo", 0, 0, 0);
      37           1 :         test_config_parse_duid_type_one("foo:2000-01-01 00:00:00 UTC", 0, 0, 0);
      38           1 : }
      39             : 
      40          10 : static void test_config_parse_duid_rawdata_one(const char *rvalue, int ret, const DUID* expected) {
      41          10 :         DUID actual = {};
      42             :         int r;
      43          10 :         _cleanup_free_ char *d = NULL;
      44             : 
      45          10 :         r = config_parse_duid_rawdata("network", "filename", 1, "section", 1, "lvalue", 0, rvalue, &actual, NULL);
      46          10 :         d = hexmem(actual.raw_data, actual.raw_data_len);
      47          10 :         log_info_errno(r, "\"%s\" → \"%s\" (%m)",
      48             :                        rvalue, strnull(d));
      49          10 :         assert_se(r == ret);
      50          10 :         if (expected) {
      51          10 :                 assert_se(actual.raw_data_len == expected->raw_data_len);
      52          10 :                 assert_se(memcmp(actual.raw_data, expected->raw_data, expected->raw_data_len) == 0);
      53             :         }
      54          10 : }
      55             : 
      56          26 : static void test_config_parse_hwaddr_one(const char *rvalue, int ret, const struct ether_addr* expected) {
      57          26 :         struct ether_addr *actual = NULL;
      58             :         int r;
      59             : 
      60          26 :         r = config_parse_hwaddr("network", "filename", 1, "section", 1, "lvalue", 0, rvalue, &actual, NULL);
      61          26 :         assert_se(ret == r);
      62          26 :         if (expected) {
      63          11 :                 assert_se(actual);
      64          11 :                 assert_se(ether_addr_equal(expected, actual));
      65             :         } else
      66          15 :                 assert_se(actual == NULL);
      67             : 
      68          26 :         free(actual);
      69          26 : }
      70             : 
      71          28 : static void test_config_parse_hwaddrs_one(const char *rvalue, const struct ether_addr* list, size_t n) {
      72          28 :         _cleanup_set_free_free_ Set *s = NULL;
      73             :         size_t m;
      74             : 
      75          28 :         assert_se(config_parse_hwaddrs("network", "filename", 1, "section", 1, "lvalue", 0, rvalue, &s, NULL) == 0);
      76          28 :         assert_se(set_size(s) == n);
      77             : 
      78          45 :         for (m = 0; m < n; m++) {
      79          17 :                 _cleanup_free_ struct ether_addr *q = NULL;
      80             : 
      81          17 :                 assert_se(q = set_remove(s, &list[m]));
      82             :         }
      83             : 
      84          28 :         assert_se(set_size(s) == 0);
      85          28 : }
      86             : 
      87             : #define BYTES_0_128 "0:1:2:3:4:5:6:7:8:9:a:b:c:d:e:f:10:11:12:13:14:15:16:17:18:19:1a:1b:1c:1d:1e:1f:20:21:22:23:24:25:26:27:28:29:2a:2b:2c:2d:2e:2f:30:31:32:33:34:35:36:37:38:39:3a:3b:3c:3d:3e:3f:40:41:42:43:44:45:46:47:48:49:4a:4b:4c:4d:4e:4f:50:51:52:53:54:55:56:57:58:59:5a:5b:5c:5d:5e:5f:60:61:62:63:64:65:66:67:68:69:6a:6b:6c:6d:6e:6f:70:71:72:73:74:75:76:77:78:79:7a:7b:7c:7d:7e:7f:80"
      88             : 
      89             : #define BYTES_1_128 {0x1,0x2,0x3,0x4,0x5,0x6,0x7,0x8,0x9,0xa,0xb,0xc,0xd,0xe,0xf,0x10,0x11,0x12,0x13,0x14,0x15,0x16,0x17,0x18,0x19,0x1a,0x1b,0x1c,0x1d,0x1e,0x1f,0x20,0x21,0x22,0x23,0x24,0x25,0x26,0x27,0x28,0x29,0x2a,0x2b,0x2c,0x2d,0x2e,0x2f,0x30,0x31,0x32,0x33,0x34,0x35,0x36,0x37,0x38,0x39,0x3a,0x3b,0x3c,0x3d,0x3e,0x3f,0x40,0x41,0x42,0x43,0x44,0x45,0x46,0x47,0x48,0x49,0x4a,0x4b,0x4c,0x4d,0x4e,0x4f,0x50,0x51,0x52,0x53,0x54,0x55,0x56,0x57,0x58,0x59,0x5a,0x5b,0x5c,0x5d,0x5e,0x5f,0x60,0x61,0x62,0x63,0x64,0x65,0x66,0x67,0x68,0x69,0x6a,0x6b,0x6c,0x6d,0x6e,0x6f,0x70,0x71,0x72,0x73,0x74,0x75,0x76,0x77,0x78,0x79,0x7a,0x7b,0x7c,0x7d,0x7e,0x7f,0x80}
      90             : 
      91           1 : static void test_config_parse_duid_rawdata(void) {
      92           1 :         test_config_parse_duid_rawdata_one("", 0, &(DUID){});
      93           1 :         test_config_parse_duid_rawdata_one("00:11:22:33:44:55:66:77", 0,
      94           1 :                                            &(DUID){0, 8, {0x00,0x11,0x22,0x33,0x44,0x55,0x66,0x77}});
      95           1 :         test_config_parse_duid_rawdata_one("00:11:22:", 0,
      96           1 :                                            &(DUID){0, 3, {0x00,0x11,0x22}});
      97           1 :         test_config_parse_duid_rawdata_one("000:11:22", 0, &(DUID){}); /* error, output is all zeros */
      98           1 :         test_config_parse_duid_rawdata_one("00:111:22", 0, &(DUID){});
      99           1 :         test_config_parse_duid_rawdata_one("0:1:2:3:4:5:6:7", 0,
     100           1 :                                            &(DUID){0, 8, {0x0, 0x1, 0x2, 0x3, 0x4, 0x5, 0x6, 0x7}});
     101           1 :         test_config_parse_duid_rawdata_one("11::", 0, &(DUID){0, 1, {0x11}});  /* FIXME: should this be an error? */
     102           1 :         test_config_parse_duid_rawdata_one("abcdef", 0, &(DUID){});
     103           1 :         test_config_parse_duid_rawdata_one(BYTES_0_128, 0, &(DUID){});
     104           1 :         test_config_parse_duid_rawdata_one(BYTES_0_128 + 2, 0, &(DUID){0, 128, BYTES_1_128});
     105           1 : }
     106             : 
     107           1 : static void test_config_parse_hwaddr(void) {
     108           1 :         const struct ether_addr t[] = {
     109             :                 { .ether_addr_octet = { 0xaa, 0xbb, 0xcc, 0xdd, 0xee, 0xff } },
     110             :                 { .ether_addr_octet = { 0x01, 0x23, 0x45, 0x67, 0x89, 0xab } },
     111             :         };
     112             : 
     113           1 :         test_config_parse_hwaddr_one("", 0, NULL);
     114           1 :         test_config_parse_hwaddr_one("no:ta:ma:ca:dd:re", 0, NULL);
     115           1 :         test_config_parse_hwaddr_one("aa:bb:cc:dd:ee:fx", 0, NULL);
     116           1 :         test_config_parse_hwaddr_one("aa:bb:cc:dd:ee:ff", 0, &t[0]);
     117           1 :         test_config_parse_hwaddr_one(" aa:bb:cc:dd:ee:ff", 0, &t[0]);
     118           1 :         test_config_parse_hwaddr_one("aa:bb:cc:dd:ee:ff \t\n", 0, NULL);
     119           1 :         test_config_parse_hwaddr_one("aa:bb:cc:dd:ee:ff \t\nxxx", 0, NULL);
     120           1 :         test_config_parse_hwaddr_one("aa:bb:cc: dd:ee:ff", 0, NULL);
     121           1 :         test_config_parse_hwaddr_one("aa:bb:cc:d d:ee:ff", 0, NULL);
     122           1 :         test_config_parse_hwaddr_one("aa:bb:cc:dd:ee", 0, NULL);
     123           1 :         test_config_parse_hwaddr_one("9:aa:bb:cc:dd:ee:ff", 0, NULL);
     124           1 :         test_config_parse_hwaddr_one("aa:bb:cc:dd:ee:ff:gg", 0, NULL);
     125           1 :         test_config_parse_hwaddr_one("aa:Bb:CC:dd:ee:ff", 0, &t[0]);
     126           1 :         test_config_parse_hwaddr_one("01:23:45:67:89:aB", 0, &t[1]);
     127           1 :         test_config_parse_hwaddr_one("1:23:45:67:89:aB", 0, &t[1]);
     128           1 :         test_config_parse_hwaddr_one("aa-bb-cc-dd-ee-ff", 0, &t[0]);
     129           1 :         test_config_parse_hwaddr_one("AA-BB-CC-DD-EE-FF", 0, &t[0]);
     130           1 :         test_config_parse_hwaddr_one("01-23-45-67-89-ab", 0, &t[1]);
     131           1 :         test_config_parse_hwaddr_one("aabb.ccdd.eeff", 0, &t[0]);
     132           1 :         test_config_parse_hwaddr_one("0123.4567.89ab", 0, &t[1]);
     133           1 :         test_config_parse_hwaddr_one("123.4567.89ab.", 0, NULL);
     134           1 :         test_config_parse_hwaddr_one("aabbcc.ddeeff", 0, NULL);
     135           1 :         test_config_parse_hwaddr_one("aabbccddeeff", 0, NULL);
     136           1 :         test_config_parse_hwaddr_one("aabbccddee:ff", 0, NULL);
     137           1 :         test_config_parse_hwaddr_one("012345.6789ab", 0, NULL);
     138           1 :         test_config_parse_hwaddr_one("123.4567.89ab", 0, &t[1]);
     139             : 
     140           1 :         test_config_parse_hwaddrs_one("", t, 0);
     141           1 :         test_config_parse_hwaddrs_one("no:ta:ma:ca:dd:re", t, 0);
     142           1 :         test_config_parse_hwaddrs_one("aa:bb:cc:dd:ee:fx", t, 0);
     143           1 :         test_config_parse_hwaddrs_one("aa:bb:cc:dd:ee:ff", t, 1);
     144           1 :         test_config_parse_hwaddrs_one(" aa:bb:cc:dd:ee:ff", t, 1);
     145           1 :         test_config_parse_hwaddrs_one("aa:bb:cc:dd:ee:ff \t\n", t, 1);
     146           1 :         test_config_parse_hwaddrs_one("aa:bb:cc:dd:ee:ff \t\nxxx", t, 1);
     147           1 :         test_config_parse_hwaddrs_one("aa:bb:cc: dd:ee:ff", t, 0);
     148           1 :         test_config_parse_hwaddrs_one("aa:bb:cc:d d:ee:ff", t, 0);
     149           1 :         test_config_parse_hwaddrs_one("aa:bb:cc:dd:ee", t, 0);
     150           1 :         test_config_parse_hwaddrs_one("9:aa:bb:cc:dd:ee:ff", t, 0);
     151           1 :         test_config_parse_hwaddrs_one("aa:bb:cc:dd:ee:ff:gg", t, 0);
     152           1 :         test_config_parse_hwaddrs_one("aa:Bb:CC:dd:ee:ff", t, 1);
     153           1 :         test_config_parse_hwaddrs_one("01:23:45:67:89:aB", &t[1], 1);
     154           1 :         test_config_parse_hwaddrs_one("1:23:45:67:89:aB", &t[1], 1);
     155           1 :         test_config_parse_hwaddrs_one("aa-bb-cc-dd-ee-ff", t, 1);
     156           1 :         test_config_parse_hwaddrs_one("AA-BB-CC-DD-EE-FF", t, 1);
     157           1 :         test_config_parse_hwaddrs_one("01-23-45-67-89-ab", &t[1], 1);
     158           1 :         test_config_parse_hwaddrs_one("aabb.ccdd.eeff", t, 1);
     159           1 :         test_config_parse_hwaddrs_one("0123.4567.89ab", &t[1], 1);
     160           1 :         test_config_parse_hwaddrs_one("123.4567.89ab.", t, 0);
     161           1 :         test_config_parse_hwaddrs_one("aabbcc.ddeeff", t, 0);
     162           1 :         test_config_parse_hwaddrs_one("aabbccddeeff", t, 0);
     163           1 :         test_config_parse_hwaddrs_one("aabbccddee:ff", t, 0);
     164           1 :         test_config_parse_hwaddrs_one("012345.6789ab", t, 0);
     165           1 :         test_config_parse_hwaddrs_one("123.4567.89ab", &t[1], 1);
     166             : 
     167           1 :         test_config_parse_hwaddrs_one("123.4567.89ab aa:bb:cc:dd:ee:ff 01-23-45-67-89-ab aa:Bb:CC:dd:ee:ff", t, 2);
     168           1 :         test_config_parse_hwaddrs_one("123.4567.89ab aa:bb:cc:dd:ee:fx hogehoge 01-23-45-67-89-ab aaaa aa:Bb:CC:dd:ee:ff", t, 2);
     169           1 : }
     170             : 
     171          23 : static void test_config_parse_address_one(const char *rvalue, int family, unsigned n_addresses, const union in_addr_union *u, unsigned char prefixlen) {
     172          23 :         _cleanup_(network_unrefp) Network *network = NULL;
     173             : 
     174          23 :         assert_se(network = new0(Network, 1));
     175          23 :         network->n_ref = 1;
     176          23 :         assert_se(network->filename = strdup("hogehoge.network"));
     177          23 :         assert_se(config_parse_match_ifnames("network", "filename", 1, "section", 1, "Name", 0, "*", &network->match_name, network) == 0);
     178          23 :         assert_se(config_parse_address("network", "filename", 1, "section", 1, "Address", 0, rvalue, network, network) == 0);
     179          23 :         assert_se(network->n_static_addresses == 1);
     180          23 :         assert_se(network_verify(network) >= 0);
     181          23 :         assert_se(network->n_static_addresses == n_addresses);
     182          23 :         if (n_addresses > 0) {
     183          13 :                 assert_se(network->static_addresses);
     184          13 :                 assert_se(network->static_addresses->prefixlen == prefixlen);
     185          13 :                 assert_se(network->static_addresses->family == family);
     186          13 :                 assert_se(in_addr_equal(family, &network->static_addresses->in_addr, u));
     187             :                 /* TODO: check Address.in_addr and Address.broadcast */
     188             :         }
     189          23 : }
     190             : 
     191           1 : static void test_config_parse_address(void) {
     192           1 :         test_config_parse_address_one("", AF_INET, 0, NULL, 0);
     193           1 :         test_config_parse_address_one("/", AF_INET, 0, NULL, 0);
     194           1 :         test_config_parse_address_one("/8", AF_INET, 0, NULL, 0);
     195           1 :         test_config_parse_address_one("1.2.3.4", AF_INET, 1, &(union in_addr_union) { .in = (struct in_addr) { .s_addr = htobe32(0x01020304) } }, 8);
     196           1 :         test_config_parse_address_one("1.2.3.4/0", AF_INET, 1, &(union in_addr_union) { .in = (struct in_addr) { .s_addr = htobe32(0x01020304) } }, 0);
     197           1 :         test_config_parse_address_one("1.2.3.4/1", AF_INET, 1, &(union in_addr_union) { .in = (struct in_addr) { .s_addr = htobe32(0x01020304) } }, 1);
     198           1 :         test_config_parse_address_one("1.2.3.4/2", AF_INET, 1, &(union in_addr_union) { .in = (struct in_addr) { .s_addr = htobe32(0x01020304) } }, 2);
     199           1 :         test_config_parse_address_one("1.2.3.4/32", AF_INET, 1, &(union in_addr_union) { .in = (struct in_addr) { .s_addr = htobe32(0x01020304) } }, 32);
     200           1 :         test_config_parse_address_one("1.2.3.4/33", AF_INET, 0, NULL, 0);
     201           1 :         test_config_parse_address_one("1.2.3.4/-1", AF_INET, 0, NULL, 0);
     202             : 
     203           1 :         test_config_parse_address_one("", AF_INET6, 0, NULL, 0);
     204           1 :         test_config_parse_address_one("/", AF_INET6, 0, NULL, 0);
     205           1 :         test_config_parse_address_one("/8", AF_INET6, 0, NULL, 0);
     206           1 :         test_config_parse_address_one("::1", AF_INET6, 1, &(union in_addr_union) { .in6 = IN6ADDR_LOOPBACK_INIT }, 0);
     207           1 :         test_config_parse_address_one("::1/0", AF_INET6, 1, &(union in_addr_union) { .in6 = IN6ADDR_LOOPBACK_INIT }, 0);
     208           1 :         test_config_parse_address_one("::1/1", AF_INET6, 1, &(union in_addr_union) { .in6 = IN6ADDR_LOOPBACK_INIT }, 1);
     209           1 :         test_config_parse_address_one("::1/2", AF_INET6, 1, &(union in_addr_union) { .in6 = IN6ADDR_LOOPBACK_INIT }, 2);
     210           1 :         test_config_parse_address_one("::1/32", AF_INET6, 1, &(union in_addr_union) { .in6 = IN6ADDR_LOOPBACK_INIT }, 32);
     211           1 :         test_config_parse_address_one("::1/33", AF_INET6, 1, &(union in_addr_union) { .in6 = IN6ADDR_LOOPBACK_INIT }, 33);
     212           1 :         test_config_parse_address_one("::1/64", AF_INET6, 1, &(union in_addr_union) { .in6 = IN6ADDR_LOOPBACK_INIT }, 64);
     213           1 :         test_config_parse_address_one("::1/128", AF_INET6, 1, &(union in_addr_union) { .in6 = IN6ADDR_LOOPBACK_INIT }, 128);
     214           1 :         test_config_parse_address_one("::1/129", AF_INET6, 0, NULL, 0);
     215           1 :         test_config_parse_address_one("::1/-1", AF_INET6, 0, NULL, 0);
     216           1 : }
     217             : 
     218           1 : static void test_config_parse_match_ifnames(void) {
     219           1 :         _cleanup_strv_free_ char **names = NULL;
     220             : 
     221           1 :         assert_se(config_parse_match_ifnames("network", "filename", 1, "section", 1, "Name", 0, "!hoge hogehoge foo", &names, NULL) == 0);
     222           1 :         assert_se(config_parse_match_ifnames("network", "filename", 1, "section", 1, "Name", 0, "!baz", &names, NULL) == 0);
     223           1 :         assert_se(config_parse_match_ifnames("network", "filename", 1, "section", 1, "Name", 0, "aaa bbb ccc", &names, NULL) == 0);
     224             : 
     225           1 :         strv_equal(names, STRV_MAKE("!hoge", "!hogehoge", "!foo", "!baz", "aaa", "bbb", "ccc"));
     226           1 : }
     227             : 
     228           1 : static void test_config_parse_match_strv(void) {
     229           1 :         _cleanup_strv_free_ char **names = NULL;
     230             : 
     231           1 :         assert_se(config_parse_match_strv("network", "filename", 1, "section", 1, "Name", 0, "!hoge hogehoge foo", &names, NULL) == 0);
     232           1 :         assert_se(config_parse_match_strv("network", "filename", 1, "section", 1, "Name", 0, "!baz", &names, NULL) == 0);
     233           1 :         assert_se(config_parse_match_strv("network", "filename", 1, "section", 1, "Name", 0,
     234             :                                           "KEY=val \"KEY2=val with space\" \"KEY3=val with \\\"quotation\\\"\"", &names, NULL) == 0);
     235             : 
     236           1 :         assert_se(strv_equal(names,
     237             :                              STRV_MAKE("!hoge",
     238             :                                        "!hogehoge",
     239             :                                        "!foo",
     240             :                                        "!baz",
     241             :                                        "KEY=val",
     242             :                                        "KEY2=val with space",
     243             :                                        "KEY3=val with \\quotation\\")));
     244           1 : }
     245             : 
     246           1 : int main(int argc, char **argv) {
     247           1 :         log_parse_environment();
     248           1 :         log_open();
     249             : 
     250           1 :         test_config_parse_duid_type();
     251           1 :         test_config_parse_duid_rawdata();
     252           1 :         test_config_parse_hwaddr();
     253           1 :         test_config_parse_address();
     254           1 :         test_config_parse_match_ifnames();
     255           1 :         test_config_parse_match_strv();
     256             : 
     257           1 :         return 0;
     258             : }

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