1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318 319 320 321 322 323 324 325 326 327 328 329 330 331 332 333 334 335 336 337 338 339 340 341 342 343 344 345 346 347 348 349 350 351 352 353 354 355 356 357 358 359 360 361 362 363 364 365 366 367 368 369 370 371 372 373 374 375 376 377 378 379 380 381 382 383 384 385 386 387 388 389 390 391 392 393 394 395 396 397 398 399 400 401 402 403 404 405 406 407 408 409 410 411 412 413 414 415 416 417 418 419 420 421 422 423 424 425 426 427 428 429 430 431 432 433 434 435 436 437 438 439 440 441 442 443 444 445 446 447 448 449 450 451 452 453 454 455 456 457 458 459 460 461 462 463 464 465 466 467 468 469 470 471 472 473 474 475 476 477 478 479 480 481 482 483 484 485 486 487 488 489 490 491 492 493 494 495 496 497 498 499 500 501 502 503 504 505 506 507 508 509 510 511 512 513 514 515 516 517 518 519 520 521 522 523 524 525 526 527 528 529 530 531 532 533 534 535 536 537 538 539 540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571 572 573 574 575 576 577 578 579 580 581 582 583 584 585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770 1771 1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824 1825 1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901 1902 1903 1904 1905 1906 1907 1908 1909 1910 1911 1912 1913 1914 1915 1916 1917 1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961 1962 1963 1964 1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064 2065 2066 2067 2068 2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114 2115 2116 2117 2118 2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135 2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161 2162 2163 2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198 2199 2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230 2231 2232 2233 2234 2235 2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258 2259 2260 2261 2262 2263 2264 2265 2266 2267 2268 2269 2270 2271 2272 2273 2274 2275 2276 2277 2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294 2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319 2320 2321 2322 2323 2324 2325 2326 2327 2328 2329 2330 2331 2332 2333 2334 2335 2336 2337 2338 2339 2340 2341 2342 2343 2344 2345 2346 2347 2348 2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370 2371 2372 2373 2374 2375 2376 2377 2378 2379 2380 2381 2382 2383 2384 2385 2386 2387 2388 2389 2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400 2401 2402 2403 2404 2405 2406 2407 2408 2409 2410 2411 2412 2413 2414 2415 2416 2417 2418 2419 2420 2421 2422 2423 2424 2425 2426 2427 2428 2429 2430 2431 2432 2433 2434 2435 2436 2437 2438 2439 2440 2441 2442 2443 2444 2445 2446 2447 2448 2449 2450 2451 2452 2453 2454 2455 2456 2457 2458 2459 2460 2461 2462 2463 2464 2465 2466 2467 2468 2469 2470 2471 2472 2473 2474 2475 2476 2477 2478 2479 2480 2481 2482 2483 2484 2485 2486 2487 2488 2489 2490 2491 2492 2493 2494 2495 2496 2497 2498 2499 2500 2501 2502 2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513 2514 2515 2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526 2527 2528 2529 2530 2531 2532 2533 2534 2535 2536 2537 2538 2539 2540 2541 2542 2543 2544 2545 2546 2547 2548 2549 2550 2551 2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563 2564 2565 2566 2567 2568 2569 2570 2571 2572 2573 2574 2575 2576 2577 2578 2579 2580 2581 2582 2583 2584 2585 2586 2587 2588 2589 2590 2591 2592 2593 2594 2595 2596 2597 2598 2599 2600 2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622 2623 2624 2625 2626 2627 2628 2629 2630 2631 2632 2633 2634 2635 2636 2637 2638 2639 2640 2641 2642 2643 2644 2645 2646 2647 2648 2649 2650 2651 2652 2653 2654 2655 2656 2657 2658 2659 2660 2661 2662 2663 2664 2665 2666 2667 2668 2669 2670 2671 2672 2673 2674 2675 2676 2677 2678 2679 2680 2681 2682 2683 2684 2685 2686 2687 2688 2689 2690 2691 2692 2693 2694 2695 2696 2697 2698 2699 2700 2701 2702 2703 2704 2705 2706 2707 2708 2709 2710 2711 2712 2713 2714 2715 2716 2717 2718 2719 2720 2721 2722 2723 2724 2725 2726 2727 2728 2729 2730 2731 2732 2733 2734 2735 2736 2737 2738 2739 2740 2741 2742 2743 2744 2745 2746 2747 2748 2749 2750 2751 2752 2753 2754 2755 2756 2757 2758 2759 2760 2761 2762 2763 2764 2765 2766 2767 2768 2769 2770 2771 2772 2773 2774 2775 2776 2777 2778 2779 2780 2781 2782 2783 2784 2785 2786 2787 2788 2789 2790 2791 2792 2793 2794 2795 2796 2797 2798 2799 2800 2801 2802 2803 2804 2805 2806 2807 2808 2809 2810 2811 2812 2813 2814 2815 2816 2817 2818 2819 2820 2821 2822 2823 2824 2825 2826 2827 2828 2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839 2840 2841 2842 2843 2844 2845 2846 2847 2848 2849 2850 2851 2852 2853 2854 2855 2856 2857 2858 2859 2860 2861 2862 2863 2864 2865 2866 2867 2868 2869 2870 2871 2872 2873 2874 2875 2876 2877 2878 2879 2880 2881 2882 2883 2884 2885 2886 2887 2888 2889 2890 2891 2892 2893 2894 2895 2896 2897 2898 2899 2900 2901 2902 2903 2904 2905 2906 2907 2908 2909 2910 2911 2912 2913 2914 2915 2916 2917 2918 2919 2920 2921 2922 2923 2924 2925 2926 2927 2928 2929 2930 2931 2932 2933 2934 2935 2936 2937 2938 2939 2940 2941 2942 2943 2944 2945 2946 2947 2948 2949 2950 2951 2952 2953 2954 2955 2956 2957 2958 2959 2960 2961 2962 2963 2964 2965 2966 2967 2968 2969 2970 2971 2972 2973 2974 2975 2976 2977 2978 2979 2980 2981 2982 2983 2984 2985 2986 2987 2988 2989 2990 2991 2992 2993 2994 2995 2996 2997 2998 2999 3000 3001 3002 3003 3004 3005 3006 3007 3008 3009 3010 3011 3012 3013 3014 3015 3016 3017 3018 3019 3020 3021 3022 3023 3024 3025 3026 3027 3028 3029 3030 3031 3032 3033 3034 3035 3036 3037 3038 3039 3040 3041 3042 3043 3044 3045 3046 3047 3048 3049 3050 3051 3052 3053 3054 3055 3056 3057 3058 3059 3060 3061 3062 3063 3064 3065 3066 3067 3068 3069 3070 3071 3072 3073 3074 3075 3076 3077 3078 3079 3080 3081 3082 3083 3084 3085 3086 3087 3088 3089 3090 3091 3092 3093 3094 3095 3096 3097 3098 3099 3100 3101 3102 3103 3104 3105 3106 3107 3108 3109 3110 3111 3112 3113 3114 3115 3116 3117 3118 3119 3120 3121 3122 3123 3124 3125 3126 3127 3128 3129 3130 3131 3132 3133 3134 3135 3136 3137 3138 3139 3140 3141 3142 3143 3144 3145 3146 3147 3148 3149 3150 3151 3152 3153 3154 3155 3156 3157 3158 3159 3160 3161 3162 3163 3164 3165 3166 3167 3168 3169 3170 3171 3172 3173 3174 3175 3176 3177 3178 3179 3180 3181 3182 3183 3184 3185 3186 3187 3188 3189 3190 3191 3192 3193 3194 3195 3196 3197 3198 3199 3200 3201 3202 3203 3204 3205 3206 3207 3208 3209 3210 3211 3212 3213 3214 3215 3216 3217 3218 3219 3220 3221 3222 3223 3224 3225 3226 3227 3228 3229 3230 3231 3232 3233 3234 3235 3236 3237 3238 3239 3240 3241 3242 3243 3244 3245 3246 3247 3248 3249 3250 3251 3252 3253 3254 3255 3256 3257 3258 3259 3260 3261 3262 3263 3264 3265 3266 3267 3268 3269 3270 3271 3272 3273 3274 3275 3276 3277 3278 3279 3280 3281 3282 3283 3284 3285 3286 3287 3288 3289 3290 3291 3292 3293 3294 3295 3296 3297 3298 3299 3300 3301 3302 3303 3304 3305 3306 3307 3308 3309 3310 3311 3312 3313 3314 3315 3316 3317 3318 3319 3320 3321 3322 3323 3324 3325 3326 3327 3328 3329 3330 3331 3332 3333 3334 3335 3336 3337 3338 3339 3340 3341 3342 3343 3344 3345 3346 3347 3348 3349 3350 3351 3352 3353 3354 3355 3356 3357 3358 3359 3360 3361 3362 3363 3364 3365 3366 3367 3368 3369 3370 3371 3372 3373 3374 3375 3376 3377 3378 3379 3380 3381 3382 3383 3384 3385 3386 3387 3388 3389 3390 3391 3392 3393 3394 3395 3396 3397 3398 3399 3400 3401 3402 3403 3404 3405 3406 3407 3408 3409 3410 3411 3412 3413 3414 3415 3416 3417 3418 3419 3420 3421 3422 3423 3424 3425 3426 3427 3428 3429 3430 3431 3432 3433 3434 3435 3436 3437 3438 3439 3440 3441 3442 3443 3444 3445 3446 3447 3448 3449 3450 3451 3452 3453 3454 3455 3456 3457 3458 3459 3460 3461 3462 3463 3464 3465 3466 3467 3468 3469 3470 3471 3472 3473 3474 3475 3476 3477 3478 3479 3480 3481 3482 3483 3484 3485 3486 3487 3488 3489 3490 3491 3492 3493 3494 3495 3496 3497 3498 3499 3500 3501 3502 3503 3504 3505 3506 3507 3508 3509 3510 3511 3512 3513 3514 3515 3516 3517 3518 3519 3520 3521 3522 3523 3524 3525 3526 3527 3528 3529 3530 3531 3532 3533 3534 3535 3536 3537 3538 3539 3540 3541 3542 3543 3544 3545 3546 3547 3548 3549 3550 3551 3552 3553 3554 3555 3556 3557 3558 3559 3560 3561 3562 3563 3564 3565 3566 3567 3568 3569 3570 3571 3572 3573 3574 3575 3576 3577 3578 3579 3580 3581 3582 3583 3584 3585 3586 3587 3588 3589 3590 3591 3592 3593 3594 3595 3596 3597 3598 3599 3600 3601 3602 3603 3604 3605 3606 3607 3608 3609 3610 3611 3612 3613 3614 3615 3616 3617 3618 3619 3620 3621 3622 3623 3624 3625 3626 3627 3628 3629 3630 3631 3632 3633 3634 3635 3636 3637 3638 3639 3640 3641 3642 3643 3644 3645 3646 3647 3648 3649 3650 3651 3652 3653 3654 3655 3656 3657 3658 3659 3660 3661 3662 3663 3664 3665 3666 3667 3668 3669 3670 3671 3672 3673 3674 3675 3676 3677 3678 3679 3680 3681 3682 3683 3684 3685 3686 3687 3688 3689 3690 3691 3692 3693 3694 3695 3696 3697 3698 3699 3700 3701 3702 3703 3704 3705 3706 3707 3708 3709 3710 3711 3712 3713 3714 3715 3716 3717 3718 3719 3720 3721 3722 3723 3724 3725 3726 3727 3728 3729 3730 3731 3732 3733 3734 3735 3736 3737 3738 3739 3740 3741 3742 3743 3744 3745 3746 3747 3748 3749 3750 3751 3752 3753 3754 3755 3756 3757 3758 3759 3760 3761 3762 3763 3764 3765 3766 3767 3768 3769 3770 3771 3772 3773 3774 3775 3776 3777 3778 3779 3780 3781 3782 3783 3784 3785 3786 3787 3788 3789 3790 3791 3792 3793 3794 3795 3796 3797 3798 3799 3800 3801 3802 3803 3804 3805 3806 3807 3808 3809 3810 3811 3812 3813 3814 3815 3816 3817 3818 3819 3820 3821 3822 3823 3824 3825 3826 3827 3828 3829 3830 3831 3832 3833 3834 3835 3836 3837 3838 3839 3840 3841 3842 3843 3844 3845 3846 3847 3848 3849 3850 3851 3852 3853 3854 3855 3856 3857 3858 3859 3860 3861 3862 3863 3864 3865 3866 3867 3868 3869 3870 3871 3872 3873 3874 3875 3876 3877 3878 3879 3880 3881 3882 3883 3884 3885 3886 3887 3888 3889 3890 3891 3892 3893 3894 3895 3896 3897 3898 3899 3900 3901 3902 3903 3904 3905 3906 3907 3908 3909 3910 3911 3912 3913 3914 3915 3916 3917 3918 3919 3920 3921 3922 3923 3924 3925 3926 3927 3928 3929 3930 3931 3932 3933 3934 3935 3936 3937 3938 3939 3940 3941 3942 3943 3944 3945 3946 3947 3948 3949 3950 3951 3952 3953 3954 3955 3956 3957 3958 3959 3960 3961 3962 3963 3964 3965 3966 3967 3968 3969 3970 3971 3972 3973 3974 3975 3976 3977 3978 3979 3980 3981 3982 3983 3984 3985 3986 3987 3988 3989 3990 3991 3992 3993 3994 3995 3996 3997 3998 3999 4000 4001 4002 4003 4004 4005 4006 4007 4008 4009 4010 4011 4012 4013 4014 4015 4016 4017 4018 4019 4020 4021 4022 4023 4024 4025 4026 4027 4028 4029 4030 4031 4032 4033 4034 4035 4036 4037 4038 4039 4040 4041 4042 4043 4044 4045 4046 4047 4048 4049 4050 4051 4052 4053 4054 4055 4056 4057 4058 4059 4060 4061 4062 4063 4064 4065 4066 4067 4068 4069 4070 4071 4072 4073 4074 4075 4076 4077 4078 4079 4080 4081 4082 4083 4084 4085 4086 4087 4088 4089 4090 4091 4092 4093 4094 4095 4096 4097 4098 4099 4100 4101 4102 4103 4104 4105 4106 4107 4108 4109 4110 4111 4112 4113 4114 4115 4116 4117 4118 4119 4120 4121 4122 4123 4124 4125 4126 4127 4128 4129 4130 4131 4132 4133 4134 4135 4136 4137 4138 4139 4140 4141 4142 4143 4144 4145 4146 4147 4148 4149 4150 4151 4152 4153 4154 4155 4156 4157 4158 4159 4160 4161 4162 4163 4164 4165 4166 4167 4168 4169 4170 4171 4172 4173 4174 4175 4176 4177 4178 4179 4180 4181 4182 4183 4184 4185 4186 4187 4188 4189 4190 4191 4192 4193 4194 4195 4196 4197 4198 4199 4200 4201 4202 4203 4204 4205 4206 4207 4208 4209 4210 4211 4212 4213 4214 4215 4216 4217 4218 4219 4220 4221 4222 4223 4224 4225 4226 4227 4228 4229 4230 4231 4232 4233 4234 4235 4236 4237 4238 4239 4240 4241 4242 4243 4244 4245 4246 4247 4248 4249 4250 4251 4252 4253 4254 4255 4256 4257 4258 4259 4260 4261 4262 4263 4264 4265 4266 4267 4268 4269 4270 4271 4272 4273 4274 4275 4276 4277 4278 4279 4280 4281 4282 4283 4284 4285 4286 4287 4288 4289 4290 4291 4292 4293 4294 4295 4296 4297 4298 4299 4300 4301 4302 4303 4304 4305 4306 4307 4308 4309 4310 4311 4312 4313 4314 4315 4316 4317 4318 4319 4320 4321 4322 4323 4324 4325 4326 4327 4328 4329 4330 4331 4332 4333 4334 4335 4336 4337 4338 4339 4340 4341 4342 4343 4344 4345 4346 4347 4348 4349 4350 4351 4352 4353 4354 4355 4356 4357 4358 4359 4360 4361 4362 4363 4364 4365 4366 4367 4368 4369 4370 4371 4372 4373 4374 4375 4376 4377 4378 4379 4380 4381 4382 4383 4384 4385 4386 4387 4388 4389 4390 4391 4392 4393 4394 4395 4396 4397 4398 4399 4400 4401 4402 4403 4404 4405 4406 4407 4408 4409 4410 4411 4412 4413 4414 4415 4416 4417 4418 4419 4420 4421 4422 4423 4424 4425 4426 4427 4428 4429 4430 4431 4432 4433 4434 4435 4436 4437 4438 4439 4440 4441 4442 4443 4444 4445 4446 4447 4448 4449 4450 4451 4452 4453 4454 4455 4456 4457 4458 4459 4460 4461 4462 4463 4464 4465 4466 4467 4468 4469 4470 4471 4472 4473 4474 4475 4476 4477 4478 4479 4480 4481 4482 4483 4484 4485 4486 4487 4488 4489 4490 4491 4492 4493 4494 4495 4496 4497 4498 4499 4500 4501 4502 4503 4504 4505 4506 4507 4508 4509 4510 4511 4512 4513 4514 4515 4516 4517 4518 4519 4520 4521 4522 4523 4524 4525 4526 4527 4528 4529 4530 4531 4532 4533 4534 4535 4536 4537 4538 4539 4540 4541 4542 4543 4544 4545 4546 4547 4548 4549 4550 4551 4552 4553 4554 4555 4556 4557 4558 4559 4560 4561 4562 4563 4564 4565 4566 4567 4568 4569 4570 4571 4572 4573 4574 4575 4576 4577 4578 4579 4580 4581 4582 4583 4584 4585 4586 4587 4588 4589 4590 4591 4592 4593 4594 4595 4596 4597 4598 4599 4600 4601 4602 4603 4604 4605 4606 4607 4608 4609 4610 4611 4612 4613 4614 4615 4616 4617 4618 4619 4620 4621 4622 4623 4624 4625 4626 4627 4628 4629 4630 4631 4632 4633 4634 4635 4636 4637 4638 4639 4640 4641 4642 4643 4644 4645 4646 4647 4648 4649 4650 4651 4652 4653 4654 4655 4656 4657 4658 4659 4660 4661 4662 4663 4664 4665 4666 4667 4668 4669 4670 4671 4672 4673 4674 4675 4676 4677 4678 4679 4680 4681 4682 4683 4684 4685 4686 4687 4688 4689 4690 4691 4692 4693 4694 4695 4696 4697 4698 4699 4700 4701 4702 4703 4704 4705 4706 4707 4708 4709 4710 4711 4712 4713 4714 4715 4716 4717 4718 4719 4720 4721 4722 4723 4724 4725 4726 4727 4728 4729 4730 4731 4732 4733 4734 4735 4736 4737 4738 4739 4740 4741 4742 4743 4744 4745 4746 4747 4748 4749 4750 4751 4752 4753 4754 4755 4756 4757 4758 4759 4760 4761 4762 4763 4764 4765 4766 4767 4768 4769 4770 4771 4772 4773 4774 4775 4776 4777 4778 4779 4780 4781 4782 4783 4784 4785 4786 4787 4788 4789 4790 4791 4792 4793 4794 4795 4796 4797 4798 4799 4800 4801 4802 4803 4804 4805 4806 4807 4808 4809 4810 4811 4812 4813 4814 4815 4816 4817 4818 4819 4820 4821 4822 4823 4824 4825 4826 4827 4828 4829 4830 4831 4832 4833 4834 4835 4836 4837 4838 4839 4840 4841 4842 4843 4844 4845 4846 4847 4848 4849 4850 4851 4852 4853 4854 4855 4856 4857 4858 4859 4860 4861 4862 4863 4864 4865 4866 4867 4868 4869 4870 4871 4872 4873 4874 4875 4876 4877 4878 4879 4880 4881 4882 4883 4884 4885 4886 4887 4888 4889 4890 4891 4892 4893 4894 4895 4896 4897 4898 4899 4900 4901 4902 4903 4904 4905 4906 4907 4908 4909 4910 4911 4912 4913 4914 4915 4916 4917 4918 4919 4920 4921 4922 4923 4924 4925 4926 4927 4928 4929 4930 4931 4932 4933 4934 4935 4936 4937 4938 4939 4940 4941 4942 4943 4944 4945 4946 4947 4948 4949 4950 4951 4952 4953 4954 4955 4956 4957 4958 4959 4960 4961 4962 4963 4964 4965 4966 4967 4968 4969 4970 4971 4972 4973 4974 4975 4976 4977 4978 4979 4980 4981 4982 4983 4984 4985 4986 4987 4988 4989 4990 4991 4992 4993 4994 4995 4996 4997 4998 4999 5000 5001 5002 5003 5004 5005 5006 5007 5008 5009 5010 5011 5012 5013 5014 5015 5016 5017 5018 5019 5020 5021 5022 5023 5024 5025 5026 5027 5028 5029 5030 5031 5032 5033 5034 5035 5036 5037 5038 5039 5040 5041 5042 5043 5044 5045 5046 5047 5048 5049 5050 5051 5052 5053 5054 5055 5056 5057 5058 5059 5060 5061 5062 5063 5064 5065 5066 5067 5068 5069 5070 5071 5072 5073 5074 5075 5076 5077 5078 5079 5080 5081 5082 5083 5084 5085 5086 5087 5088 5089 5090 5091 5092 5093 5094 5095 5096 5097 5098 5099 5100 5101 5102 5103 5104 5105 5106 5107 5108 5109 5110 5111 5112 5113 5114 5115 5116 5117 5118 5119 5120 5121 5122 5123 5124 5125 5126 5127 5128 5129 5130 5131 5132 5133 5134 5135 5136 5137 5138 5139 5140 5141 5142 5143 5144 5145 5146 5147 5148 5149 5150 5151 5152 5153 5154 5155 5156 5157 5158 5159 5160 5161 5162 5163 5164 5165 5166 5167 5168 5169 5170 5171 5172 5173 5174 5175 5176 5177 5178 5179 5180 5181 5182 5183 5184 5185 5186 5187 5188 5189 5190 5191 5192 5193 5194 5195 5196 5197 5198 5199 5200 5201 5202 5203 5204 5205 5206 5207 5208 5209 5210 5211 5212 5213 5214 5215 5216 5217 5218 5219 5220 5221 5222 5223 5224 5225 5226 5227 5228 5229 5230 5231 5232 5233 5234 5235 5236 5237 5238 5239 5240 5241 5242 5243 5244 5245 5246 5247 5248 5249 5250 5251 5252 5253 5254 5255 5256 5257 5258 5259 5260 5261 5262 5263 5264 5265 5266 5267 5268 5269 5270 5271 5272 5273 5274 5275 5276 5277 5278 5279 5280 5281 5282 5283 5284 5285 5286 5287 5288 5289 5290 5291 5292 5293 5294 5295 5296 5297 5298 5299 5300 5301 5302 5303 5304 5305 5306 5307 5308 5309 5310 5311 5312 5313 5314 5315 5316 5317 5318 5319 5320 5321 5322 5323 5324 5325 5326 5327 5328 5329 5330 5331 5332 5333 5334 5335 5336 5337 5338 5339 5340 5341 5342 5343 5344 5345 5346 5347 5348 5349 5350 5351 5352 5353 5354 5355 5356 5357 5358 5359 5360 5361 5362 5363 5364 5365 5366 5367 5368 5369 5370 5371 5372 5373 5374 5375 5376 5377 5378 5379 5380 5381 5382 5383 5384 5385 5386 5387 5388 5389 5390 5391 5392 5393 5394 5395 5396 5397 5398 5399 5400 5401 5402 5403 5404 5405 5406 5407 5408 5409 5410 5411 5412 5413 5414 5415 5416 5417 5418 5419 5420 5421 5422 5423 5424 5425 5426 5427 5428 5429 5430 5431 5432 5433 5434 5435 5436 5437 5438 5439 5440 5441 5442 5443 5444 5445 5446 5447 5448 5449 5450 5451 5452 5453 5454 5455 5456 5457 5458 5459 5460 5461 5462 5463 5464 5465 5466 5467 5468 5469 5470 5471 5472 5473 5474 5475 5476 5477 5478 5479 5480 5481 5482 5483 5484 5485 5486 5487 5488 5489 5490 5491 5492 5493 5494 5495 5496 5497 5498 5499 5500 5501 5502 5503 5504 5505 5506 5507 5508 5509 5510 5511 5512 5513 5514 5515 5516 5517 5518 5519 5520 5521 5522 5523 5524 5525 5526 5527 5528 5529 5530 5531 5532 5533 5534 5535 5536 5537 5538 5539 5540 5541 5542 5543 5544 5545 5546 5547 5548 5549 5550 5551 5552 5553 5554 5555 5556 5557 5558 5559 5560 5561 5562 5563 5564 5565 5566 5567 5568 5569 5570 5571 5572 5573 5574 5575 5576 5577 5578 5579 5580 5581 5582 5583 5584 5585 5586 5587 5588 5589 5590 5591 5592 5593 5594 5595 5596 5597 5598 5599 5600 5601 5602 5603 5604 5605 5606 5607 5608 5609 5610 5611 5612 5613 5614 5615 5616 5617 5618 5619 5620 5621 5622 5623 5624 5625 5626 5627 5628 5629 5630 5631 5632 5633 5634 5635 5636 5637 5638 5639 5640 5641 5642 5643 5644 5645 5646 5647 5648 5649 5650 5651 5652 5653 5654 5655 5656 5657 5658 5659 5660 5661 5662 5663 5664 5665 5666 5667 5668 5669 5670 5671 5672 5673 5674 5675 5676 5677 5678 5679 5680 5681 5682 5683 5684 5685 5686 5687 5688 5689 5690 5691 5692 5693 5694 5695 5696 5697 5698 5699 5700 5701 5702 5703 5704 5705 5706 5707 5708 5709 5710 5711 5712 5713 5714 5715 5716 5717 5718 5719 5720 5721 5722 5723 5724 5725 5726 5727 5728 5729 5730 5731 5732 5733 5734 5735 5736 5737 5738 5739 5740 5741 5742 5743 5744 5745 5746 5747 5748 5749 5750 5751 5752 5753 5754 5755 5756 5757 5758 5759 5760 5761 5762 5763 5764 5765 5766 5767 5768 5769 5770 5771 5772 5773 5774 5775 5776 5777 5778 5779 5780 5781 5782 5783 5784 5785 5786 5787 5788 5789 5790 5791 5792 5793 5794 5795 5796 5797 5798 5799 5800 5801 5802 5803 5804 5805 5806 5807 5808 5809 5810 5811 5812 5813 5814 5815 5816 5817 5818 5819 5820 5821 5822 5823 5824 5825 5826 5827 5828 5829 5830 5831 5832 5833 5834 5835 5836 5837 5838 5839 5840 5841 5842 5843 5844 5845 5846 5847 5848 5849 5850 5851 5852 5853 5854 5855 5856 5857 5858 5859 5860 5861 5862 5863 5864 5865 5866 5867 5868 5869 5870 5871 5872 5873 5874 5875 5876 5877 5878 5879 5880 5881 5882 5883 5884 5885 5886 5887 5888 5889 5890 5891 5892 5893 5894 5895 5896 5897 5898 5899 5900 5901 5902 5903 5904 5905 5906 5907 5908 5909 5910 5911 5912 5913 5914 5915 5916 5917 5918 5919 5920 5921 5922 5923 5924 5925 5926 5927 5928 5929 5930 5931 5932 5933 5934 5935 5936 5937 5938 5939 5940 5941 5942 5943 5944 5945 5946 5947 5948 5949 5950 5951 5952 5953 5954 5955 5956 5957 5958 5959 5960 5961 5962 5963 5964 5965 5966 5967 5968 5969 5970 5971 5972 5973 5974 5975 5976 5977 5978 5979 5980 5981 5982 5983 5984 5985 5986 5987 5988 5989 5990 5991 5992 5993 5994 5995 5996 5997 5998 5999 6000 6001 6002 6003 6004 6005 6006 6007 6008 6009 6010 6011 6012 6013 6014 6015 6016 6017 6018 6019 6020 6021 6022 6023 6024 6025 6026 6027 6028 6029 6030 6031 6032 6033 6034 6035 6036 6037 6038 6039 6040 6041 6042 6043 6044 6045 6046 6047 6048 6049 6050 6051 6052 6053 6054 6055 6056 6057 6058 6059 6060 6061 6062 6063 6064 6065 6066 6067 6068 6069 6070 6071 6072 6073 6074 6075 6076 6077 6078 6079 6080 6081 6082 6083 6084 6085 6086 6087 6088 6089 6090 6091 6092 6093 6094 6095 6096 6097 6098 6099 6100 6101 6102 6103 6104 6105 6106 6107 6108 6109 6110 6111 6112 6113 6114 6115 6116 6117 6118 6119 6120 6121 6122 6123 6124 6125 6126 6127 6128 6129 6130 6131 6132 6133 6134 6135 6136 6137 6138 6139 6140 6141 6142 6143 6144 6145 6146 6147 6148 6149 6150 6151 6152 6153 6154 6155 6156 6157 6158 6159 6160 6161 6162 6163 6164 6165 6166 6167 6168 6169 6170 6171 6172 6173 6174 6175 6176 6177 6178 6179 6180 6181 6182 6183 6184 6185 6186 6187 6188 6189 6190 6191 6192 6193 6194 6195 6196 6197 6198 6199 6200 6201 6202 6203 6204 6205 6206 6207 6208 6209 6210 6211 6212 6213 6214 6215 6216 6217 6218 6219 6220 6221 6222 6223 6224 6225 6226 6227 6228 6229 6230 6231 6232 6233 6234 6235 6236 6237 6238 6239 6240 6241 6242 6243 6244 6245 6246 6247 6248 6249 6250 6251 6252 6253 6254 6255 6256 6257 6258 6259 6260 6261 6262 6263 6264 6265 6266 6267 6268 6269 6270 6271 6272 6273 6274 6275 6276 6277 6278 6279 6280 6281 6282 6283 6284 6285 6286 6287 6288 6289 6290 6291 6292 6293 6294 6295 6296 6297 6298 6299 6300 6301 6302 6303 6304 6305 6306 6307 6308 6309 6310 6311 6312 6313 6314 6315 6316 6317 6318 6319 6320 6321 6322 6323 6324 6325 6326 6327 6328 6329 6330 6331 6332 6333 6334 6335 6336 6337 6338 6339 6340 6341 6342 6343 6344 6345 6346 6347 6348 6349 6350 6351 6352 6353 6354 6355 6356 6357 6358 6359 6360 6361 6362 6363 6364 6365 6366 6367 6368 6369 6370 6371 6372 6373 6374 6375 6376 6377 6378 6379 6380 6381 6382 6383 6384 6385 6386 6387 6388 6389 6390 6391 6392 6393 6394 6395 6396 6397 6398 6399 6400 6401 6402 6403 6404 6405 6406 6407 6408 6409 6410 6411 6412 6413 6414 6415 6416 6417 6418 6419 6420 6421 6422 6423 6424 6425 6426 6427 6428 6429 6430 6431 6432 6433 6434 6435 6436 6437 6438 6439 6440 6441 6442 6443 6444 6445 6446 6447 6448 6449 6450 6451 6452 6453 6454 6455 6456 6457 6458 6459 6460 6461 6462 6463 6464 6465 6466 6467 6468 6469 6470 6471 6472 6473 6474 6475 6476 6477 6478 6479 6480 6481 6482 6483 6484 6485 6486 6487 6488 6489 6490 6491 6492 6493 6494 6495 6496 6497 6498 6499 6500 6501 6502 6503 6504 6505 6506 6507 6508 6509 6510 6511 6512 6513 6514 6515 6516 6517 6518 6519 6520 6521 6522 6523 6524 6525 6526 6527 6528 6529 6530 6531 6532 6533 6534 6535 6536 6537 6538 6539 6540 6541 6542 6543 6544 6545 6546 6547 6548 6549 6550 6551 6552 6553 6554 6555 6556 6557 6558 6559 6560 6561 6562 6563 6564 6565 6566 6567 6568 6569 6570 6571 6572 6573 6574 6575 6576 6577 6578 6579 6580 6581 6582 6583 6584 6585 6586 6587 6588 6589 6590 6591 6592 6593 6594 6595 6596 6597 6598 6599 6600 6601 6602 6603 6604 6605 6606 6607 6608 6609 6610 6611 6612 6613 6614 6615 6616 6617 6618 6619 6620 6621 6622 6623 6624 6625 6626 6627 6628 6629 6630 6631 6632 6633 6634 6635 6636 6637 6638 6639 6640 6641 6642 6643 6644 6645 6646 6647 6648 6649 6650 6651 6652 6653 6654 6655 6656 6657 6658 6659 6660 6661 6662 6663 6664 6665 6666 6667 6668 6669 6670 6671 6672 6673 6674 6675 6676 6677 6678 6679 6680 6681 6682 6683 6684 6685 6686 6687 6688 6689 6690 6691 6692 6693 6694 6695 6696 6697 6698 6699 6700 6701 6702 6703 6704 6705 6706 6707 6708 6709 6710 6711 6712 6713 6714 6715 6716 6717 6718 6719 6720 6721 6722 6723 6724 6725 6726 6727 6728 6729 6730 6731 6732 6733 6734 6735 6736 6737 6738 6739 6740 6741 6742 6743 6744 6745 6746 6747 6748 6749 6750 6751 6752 6753 6754 6755 6756 6757 6758 6759 6760 6761 6762 6763 6764 6765 6766 6767 6768 6769 6770 6771 6772 6773 6774 6775 6776 6777 6778 6779 6780 6781 6782 6783 6784 6785 6786 6787 6788 6789 6790 6791 6792 6793 6794 6795 6796 6797 6798 6799 6800 6801 6802 6803 6804 6805 6806 6807 6808 6809 6810 6811 6812 6813 6814 6815 6816 6817 6818 6819 6820 6821 6822 6823 6824 6825 6826 6827 6828 6829 6830 6831 6832 6833 6834 6835 6836 6837 6838 6839 6840 6841 6842 6843 6844 6845 6846 6847 6848 6849 6850 6851 6852 6853 6854 6855 6856 6857 6858 6859 6860 6861 6862 6863 6864 6865 6866 6867 6868 6869 6870 6871 6872 6873 6874 6875 6876 6877 6878 6879 6880 6881 6882 6883 6884 6885 6886 6887 6888 6889 6890 6891 6892 6893 6894 6895 6896 6897 6898 6899 6900 6901 6902 6903 6904 6905 6906 6907 6908 6909 6910 6911 6912 6913 6914 6915 6916 6917 6918 6919 6920 6921 6922 6923 6924 6925 6926 6927 6928 6929 6930 6931 6932 6933 6934 6935 6936 6937 6938 6939 6940 6941 6942 6943 6944 6945 6946 6947 6948 6949 6950 6951 6952 6953 6954 6955 6956 6957 6958 6959 6960 6961 6962 6963 6964 6965 6966 6967 6968 6969 6970 6971 6972 6973 6974 6975 6976 6977 6978 6979 6980 6981 6982 6983 6984 6985 6986 6987 6988 6989 6990 6991 6992 6993 6994 6995 6996 6997 6998 6999 7000 7001 7002 7003 7004 7005 7006 7007 7008 7009 7010 7011 7012 7013 7014 7015 7016 7017 7018 7019 7020 7021 7022 7023 7024 7025 7026 7027 7028 7029 7030 7031 7032 7033 7034 7035 7036 7037 7038 7039 7040 7041 7042 7043 7044 7045 7046 7047 7048 7049 7050 7051 7052 7053 7054 7055 7056 7057 7058 7059 7060 7061 7062 7063 7064 7065 7066 7067 7068 7069 7070 7071 7072 7073 7074 7075 7076 7077 7078 7079 7080 7081 7082 7083 7084 7085 7086 7087 7088 7089 7090 7091 7092 7093 7094 7095 7096 7097 7098 7099 7100 7101 7102 7103 7104 7105 7106 7107 7108 7109 7110 7111 7112 7113 7114 7115 7116 7117 7118 7119 7120 7121 7122 7123 7124 7125 7126 7127 7128 7129 7130 7131 7132 7133 7134 7135 7136 7137 7138 7139 7140 7141 7142 7143 7144 7145 7146 7147 7148 7149 7150 7151 7152 7153 7154 7155 7156 7157 7158 7159 7160 7161 7162 7163 7164 7165 7166 7167 7168 7169 7170 7171 7172 7173 7174 7175 7176 7177 7178 7179 7180 7181 7182 7183 7184 7185 7186 7187 7188 7189 7190 7191 7192 7193 7194 7195 7196 7197 7198 7199 7200 7201 7202 7203 7204 7205 7206 7207 7208 7209 7210 7211 7212 7213 7214 7215 7216 7217 7218 7219 7220 7221 7222 7223 7224 7225 7226 7227 7228 7229 7230 7231 7232 7233 7234 7235 7236 7237 7238 7239 7240 7241 7242 7243 7244 7245 7246 7247 7248 7249 7250 7251 7252 7253 7254 7255 7256 7257 7258 7259 7260 7261 7262 7263 7264 7265 7266 7267 7268 7269 7270 7271 7272 7273 7274 7275 7276 7277 7278 7279 7280 7281 7282 7283 7284 7285 7286 7287 7288 7289 7290 7291 7292 7293 7294 7295 7296 7297 7298 7299 7300 7301 7302 7303 7304 7305 7306 7307 7308 7309 7310 7311 7312 7313 7314 7315 7316 7317 7318 7319 7320 7321 7322 7323 7324 7325 7326 7327 7328 7329 7330 7331 7332 7333 7334 7335 7336 7337 7338 7339 7340 7341 7342 7343 7344 7345 7346 7347 7348 7349 7350 7351 7352 7353 7354 7355 7356 7357 7358 7359 7360 7361 7362 7363 7364 7365 7366 7367 7368 7369 7370 7371 7372 7373 7374 7375 7376 7377 7378 7379 7380 7381 7382 7383 7384 7385 7386 7387 7388 7389 7390 7391 7392 7393 7394 7395 7396 7397 7398 7399 7400 7401 7402 7403 7404 7405 7406 7407 7408 7409 7410 7411 7412 7413 7414 7415 7416 7417 7418 7419 7420 7421 7422 7423 7424 7425 7426 7427 7428 7429 7430 7431 7432 7433 7434 7435 7436 7437 7438 7439 7440 7441 7442 7443 7444 7445 7446 7447 7448 7449 7450 7451 7452 7453 7454 7455 7456 7457 7458 7459 7460 7461 7462 7463 7464 7465 7466 7467 7468 7469 7470 7471 7472 7473 7474 7475 7476 7477 7478 7479 7480 7481 7482 7483 7484 7485 7486 7487 7488 7489 7490 7491 7492 7493 7494 7495 7496 7497 7498 7499 7500 7501 7502 7503 7504 7505 7506 7507 7508 7509 7510 7511 7512 7513 7514 7515 7516 7517 7518 7519 7520 7521 7522 7523 7524 7525 7526 7527 7528 7529 7530 7531 7532 7533 7534 7535 7536 7537 7538 7539 7540 7541 7542 7543 7544 7545 7546 7547 7548 7549 7550 7551 7552 7553 7554 7555 7556 7557 7558 7559 7560 7561 7562 7563 7564 7565 7566 7567 7568 7569 7570 7571 7572 7573 7574 7575 7576 7577 7578 7579 7580 7581 7582 7583 7584 7585 7586 7587 7588 7589 7590 7591 7592 7593 7594 7595 7596 7597 7598 7599 7600 7601 7602 7603 7604 7605 7606 7607 7608 7609 7610 7611 7612 7613 7614 7615 7616 7617 7618 7619 7620 7621 7622 7623 7624 7625 7626 7627 7628 7629 7630 7631 7632 7633 7634 7635 7636 7637 7638 7639 7640 7641 7642 7643 7644 7645 7646 7647 7648 7649 7650 7651 7652 7653 7654 7655 7656 7657 7658 7659 7660 7661 7662 7663 7664 7665 7666 7667 7668 7669 7670 7671 7672 7673 7674 7675 7676 7677 7678 7679 7680 7681 7682 7683 7684 7685 7686 7687 7688 7689 7690 7691 7692 7693 7694 7695 7696 7697 7698 7699 7700 7701 7702 7703 7704 7705 7706 7707 7708 7709 7710 7711 7712 7713 7714 7715 7716 7717 7718 7719 7720 7721 7722 7723 7724 7725 7726 7727 7728 7729 7730 7731 7732 7733 7734 7735 7736 7737 7738 7739 7740 7741 7742 7743 7744 7745 7746 7747 7748 7749 7750 7751 7752 7753 7754 7755 7756 7757 7758 7759 7760 7761 7762 7763 7764 7765 7766 7767 7768 7769 7770 7771 7772 7773 7774 7775 7776 7777 7778 7779 7780 7781 7782 7783 7784 7785 7786 7787 7788 7789 7790 7791 7792 7793 7794 7795 7796 7797 7798 7799 7800 7801 7802 7803 7804 7805 7806 7807 7808 7809 7810 7811 7812 7813 7814 7815 7816 7817 7818 7819 7820 7821 7822 7823 7824 7825 7826 7827 7828 7829 7830 7831 7832 7833 7834 7835 7836 7837 7838 7839 7840 7841 7842 7843 7844 7845 7846 7847 7848 7849 7850 7851 7852 7853 7854 7855 7856 7857 7858 7859 7860 7861 7862 7863 7864 7865 7866 7867 7868 7869 7870 7871 7872 7873 7874 7875 7876 7877 7878 7879 7880 7881 7882 7883 7884 7885 7886 7887 7888 7889 7890 7891 7892 7893 7894 7895 7896 7897 7898 7899 7900 7901 7902 7903 7904 7905 7906 7907 7908 7909 7910 7911 7912 7913 7914 7915 7916 7917 7918 7919 7920 7921 7922 7923 7924 7925 7926 7927 7928 7929 7930 7931 7932 7933 7934 7935 7936 7937 7938 7939 7940 7941 7942 7943 7944 7945 7946 7947 7948 7949 7950 7951 7952 7953 7954 7955 7956 7957 7958 7959 7960 7961 7962 7963 7964 7965 7966 7967 7968 7969 7970 7971 7972 7973 7974 7975 7976 7977 7978 7979 7980 7981 7982 7983 7984 7985 7986 7987 7988 7989 7990 7991 7992 7993 7994 7995 7996 7997 7998 7999 8000 8001 8002 8003 8004 8005 8006 8007 8008 8009 8010 8011 8012 8013 8014 8015 8016 8017 8018 8019 8020 8021 8022 8023 8024 8025 8026 8027 8028 8029 8030 8031 8032 8033 8034 8035 8036 8037 8038 8039 8040 8041 8042 8043 8044 8045 8046 8047 8048 8049 8050 8051 8052 8053 8054 8055 8056 8057 8058 8059 8060 8061 8062 8063 8064 8065 8066 8067 8068 8069 8070 8071 8072 8073 8074 8075 8076 8077 8078 8079 8080 8081 8082 8083 8084 8085 8086 8087 8088 8089 8090 8091 8092 8093 8094 8095 8096 8097 8098 8099 8100 8101 8102 8103 8104 8105 8106 8107 8108 8109 8110 8111 8112 8113 8114 8115 8116 8117 8118 8119 8120 8121 8122 8123 8124 8125 8126 8127 8128 8129 8130 8131 8132 8133 8134 8135 8136 8137 8138 8139 8140 8141 8142 8143 8144 8145 8146 8147 8148 8149 8150 8151 8152 8153 8154 8155 8156 8157 8158 8159 8160 8161 8162 8163 8164 8165 8166 8167 8168 8169 8170 8171 8172 8173 8174 8175 8176 8177 8178 8179 8180 8181 8182 8183 8184 8185 8186 8187 8188 8189 8190 8191 8192 8193 8194 8195 8196 8197 8198 8199 8200 8201 8202 8203 8204 8205 8206 8207 8208 8209 8210 8211 8212 8213 8214 8215 8216 8217 8218 8219 8220 8221 8222 8223 8224 8225 8226 8227 8228 8229 8230 8231 8232 8233 8234 8235 8236 8237 8238 8239 8240 8241 8242 8243 8244 8245 8246 8247 8248 8249 8250 8251 8252 8253 8254 8255 8256 8257 8258 8259 8260 8261 8262 8263 8264 8265 8266 8267 8268 8269 8270 8271 8272 8273 8274 8275 8276 8277 8278 8279 8280 8281 8282 8283 8284 8285 8286 8287 8288 8289 8290 8291 8292 8293 8294 8295 8296 8297 8298 8299 8300 8301 8302 8303 8304 8305 8306 8307 8308 8309 8310 8311 8312 8313 8314 8315 8316 8317 8318 8319 8320 8321 8322 8323 8324 8325 8326 8327 8328 8329 8330 8331 8332 8333 8334 8335 8336 8337 8338 8339 8340 8341 8342 8343 8344 8345 8346 8347 8348 8349 8350 8351 8352 8353 8354 8355 8356 8357 8358 8359 8360 8361 8362 8363 8364 8365 8366 8367 8368 8369 8370 8371 8372 8373 8374 8375 8376 8377 8378 8379 8380 8381 8382 8383 8384 8385 8386 8387 8388 8389 8390 8391 8392 8393 8394 8395 8396 8397 8398 8399 8400 8401 8402 8403 8404 8405 8406 8407 8408 8409 8410 8411 8412 8413 8414 8415 8416 8417 8418 8419 8420 8421 8422 8423 8424 8425 8426 8427 8428 8429 8430 8431 8432 8433 8434 8435 8436 8437 8438 8439 8440 8441 8442 8443 8444 8445 8446 8447 8448 8449 8450 8451 8452 8453 8454 8455 8456 8457 8458 8459 8460 8461 8462 8463 8464 8465 8466 8467 8468 8469 8470 8471 8472 8473 8474 8475 8476 8477 8478 8479 8480 8481 8482 8483 8484 8485 8486 8487 8488 8489 8490 8491 8492 8493 8494 8495 8496 8497 8498 8499 8500 8501 8502 8503 8504 8505 8506 8507 8508 8509 8510 8511 8512 8513 8514 8515 8516 8517 8518 8519 8520 8521 8522 8523 8524 8525 8526 8527 8528 8529 8530 8531 8532 8533 8534 8535 8536 8537 8538 8539 8540 8541 8542 8543 8544 8545 8546 8547 8548 8549 8550 8551 8552 8553 8554 8555 8556 8557 8558 8559 8560 8561 8562 8563 8564 8565 8566 8567 8568 8569 8570 8571 8572 8573 8574 8575 8576 8577 8578 8579 8580 8581 8582 8583 8584 8585 8586 8587 8588 8589 8590 8591 8592 8593 8594 8595 8596 8597 8598 8599 8600 8601 8602 8603 8604 8605 8606 8607 8608 8609 8610 8611 8612 8613 8614 8615 8616 8617 8618 8619 8620 8621 8622 8623 8624 8625 8626 8627 8628 8629 8630 8631 8632 8633 8634 8635 8636 8637 8638 8639 8640 8641 8642 8643 8644 8645 8646 8647 8648 8649 8650 8651 8652 8653 8654 8655 8656 8657 8658 8659 8660 8661 8662 8663 8664 8665 8666 8667 8668 8669 8670 8671 8672 8673 8674 8675 8676 8677 8678 8679 8680 8681 8682 8683 8684 8685 8686 8687 8688 8689 8690 8691 8692 8693 8694 8695 8696 8697 8698 8699 8700 8701 8702 8703 8704 8705 8706 8707 8708 8709 8710 8711 8712 8713 8714 8715 8716 8717 8718 8719 8720 8721 8722 8723 8724 8725 8726 8727 8728 8729 8730 8731 8732 8733 8734 8735 8736 8737 8738 8739 8740 8741 8742 8743 8744 8745 8746 8747 8748 8749 8750 8751 8752 8753 8754 8755 8756 8757 8758 8759 8760 8761 8762 8763 8764 8765 8766 8767 8768 8769 8770 8771 8772 8773 8774 8775 8776 8777 8778 8779 8780 8781 8782 8783 8784 8785 8786 8787 8788 8789 8790 8791 8792 8793 8794 8795 8796 8797 8798 8799 8800 8801 8802 8803 8804 8805 8806 8807 8808 8809 8810 8811 8812 8813 8814 8815 8816 8817 8818 8819 8820 8821 8822 8823 8824 8825 8826 8827 8828 8829 8830 8831 8832 8833 8834 8835 8836 8837 8838 8839 8840 8841 8842 8843 8844 8845 8846 8847 8848 8849 8850 8851 8852 8853 8854 8855 8856 8857 8858 8859 8860 8861 8862 8863 8864 8865 8866 8867 8868 8869 8870 8871 8872 8873 8874 8875 8876 8877 8878 8879 8880 8881 8882 8883 8884 8885 8886 8887 8888 8889 8890 8891 8892 8893 8894 8895 8896 8897 8898 8899 8900 8901 8902 8903 8904 8905 8906 8907 8908 8909 8910 8911 8912 8913 8914 8915 8916 8917 8918 8919 8920 8921 8922 8923 8924 8925 8926 8927 8928 8929 8930 8931 8932 8933 8934 8935 8936 8937 8938 8939 8940 8941 8942 8943 8944 8945 8946 8947 8948 8949 8950 8951 8952 8953 8954 8955 8956 8957 8958 8959 8960 8961 8962 8963 8964 8965 8966 8967 8968 8969 8970 8971 8972 8973 8974 8975 8976 8977 8978 8979 8980 8981 8982 8983 8984 8985 8986 8987 8988 8989 8990 8991 8992 8993 8994 8995 8996 8997 8998 8999 9000 9001 9002 9003 9004 9005 9006 9007 9008 9009 9010 9011 9012 9013 9014 9015 9016 9017 9018 9019 9020 9021 9022 9023 9024 9025 9026 9027 9028 9029 9030 9031 9032 9033 9034 9035 9036 9037 9038 9039 9040 9041 9042 9043 9044 9045 9046 9047 9048 9049 9050 9051 9052 9053 9054 9055 9056 9057 9058 9059 9060 9061 9062 9063 9064 9065 9066 9067 9068 9069 9070 9071 9072 9073 9074 9075 9076 9077 9078 9079 9080 9081 9082 9083 9084 9085 9086 9087 9088 9089 9090 9091 9092 9093 9094 9095 9096 9097 9098 9099 9100 9101 9102 9103 9104 9105 9106 9107 9108 9109 9110 9111 9112 9113 9114 9115 9116 9117 9118 9119 9120 9121 9122 9123 9124 9125 9126 9127 9128 9129 9130 9131 9132 9133 9134 9135 9136 9137 9138 9139 9140 9141 9142 9143 9144 9145 9146 9147 9148 9149 9150 9151 9152 9153 9154 9155 9156 9157 9158 9159 9160 9161 9162 9163 9164 9165 9166 9167 9168 9169 9170 9171 9172 9173 9174 9175 9176 9177 9178 9179 9180 9181 9182 9183 9184 9185 9186 9187 9188 9189 9190 9191 9192 9193 9194 9195 9196 9197 9198 9199 9200 9201 9202 9203 9204 9205 9206 9207 9208 9209 9210 9211 9212 9213 9214 9215 9216 9217 9218 9219 9220 9221 9222 9223 9224 9225 9226 9227 9228 9229 9230 9231 9232 9233 9234 9235 9236 9237 9238 9239 9240 9241 9242 9243 9244 9245 9246 9247 9248 9249 9250 9251 9252 9253 9254 9255 9256 9257 9258 9259 9260 9261 9262 9263 9264 9265 9266 9267 9268 9269 9270 9271 9272 9273 9274 9275 9276 9277 9278 9279 9280 9281 9282 9283 9284 9285 9286 9287 9288 9289 9290 9291 9292 9293 9294 9295 9296 9297 9298 9299 9300 9301 9302 9303 9304 9305 9306 9307 9308 9309 9310 9311 9312 9313 9314 9315 9316 9317 9318 9319 9320 9321 9322 9323 9324 9325 9326 9327 9328 9329 9330 9331 9332 9333 9334 9335 9336 9337 9338 9339 9340 9341 9342 9343 9344 9345 9346 9347 9348 9349 9350 9351 9352 9353 9354 9355 9356 9357 9358 9359 9360 9361 9362 9363 9364 9365 9366 9367 9368 9369 9370 9371 9372 9373 9374 9375 9376 9377 9378 9379 9380 9381 9382 9383 9384 9385 9386 9387 9388 9389 9390 9391 9392 9393 9394 9395 9396 9397 9398 9399 9400 9401 9402 9403 9404 9405 9406 9407 9408 9409 9410 9411 9412 9413 9414 9415 9416 9417 9418 9419 9420 9421 9422 9423 9424 9425 9426 9427 9428 9429 9430 9431 9432 9433 9434 9435 9436 9437 9438 9439 9440 9441 9442 9443 9444 9445 9446 9447 9448 9449 9450 9451 9452 9453 9454 9455 9456 9457 9458 9459 9460 9461 9462 9463 9464 9465 9466 9467 9468 9469 9470 9471 9472 9473 9474 9475 9476 9477 9478 9479 9480 9481 9482 9483 9484 9485 9486 9487 9488 9489 9490 9491 9492 9493 9494 9495 9496 9497 9498 9499 9500 9501 9502 9503 9504 9505 9506 9507 9508 9509 9510 9511 9512 9513 9514 9515 9516 9517 9518 9519 9520 9521 9522 9523 9524 9525 9526 9527 9528 9529 9530 9531 9532 9533 9534 9535 9536 9537 9538 9539 9540 9541 9542 9543 9544 9545 9546 9547 9548 9549 9550 9551 9552 9553 9554 9555 9556 9557 9558 9559 9560 9561 9562 9563 9564 9565 9566 9567 9568 9569 9570 9571 9572 9573 9574 9575 9576 9577 9578 9579 9580 9581 9582 9583 9584 9585 9586 9587 9588 9589 9590 9591 9592 9593 9594 9595 9596 9597 9598 9599 9600 9601 9602 9603 9604 9605 9606 9607 9608 9609 9610 9611 9612 9613 9614 9615 9616 9617 9618 9619 9620 9621 9622 9623 9624 9625 9626 9627 9628 9629 9630 9631 9632 9633 9634 9635 9636 9637 9638 9639 9640 9641 9642 9643 9644 9645 9646 9647 9648 9649 9650 9651 9652 9653 9654 9655 9656 9657 9658 9659 9660 9661 9662 9663 9664 9665 9666 9667 9668 9669 9670 9671 9672 9673 9674 9675 9676 9677 9678 9679 9680 9681 9682 9683 9684 9685 9686 9687 9688 9689 9690 9691 9692 9693 9694 9695 9696 9697 9698 9699 9700 9701 9702 9703 9704 9705 9706 9707 9708 9709 9710 9711 9712 9713 9714 9715 9716 9717 9718 9719 9720 9721 9722 9723 9724 9725 9726 9727 9728 9729 9730 9731 9732 9733 9734 9735 9736 9737 9738 9739 9740 9741 9742 9743 9744 9745 9746 9747 9748 9749 9750 9751 9752 9753 9754 9755 9756 9757 9758 9759 9760 9761 9762 9763 9764 9765 9766 9767 9768 9769 9770 9771 9772 9773 9774 9775 9776 9777 9778 9779 9780 9781 9782 9783 9784 9785 9786 9787 9788 9789 9790 9791 9792 9793 9794 9795 9796 9797 9798 9799 9800 9801 9802 9803 9804 9805 9806 9807 9808 9809 9810 9811 9812 9813 9814 9815 9816 9817 9818 9819 9820 9821 9822 9823 9824 9825 9826 9827 9828 9829 9830 9831 9832 9833 9834 9835 9836 9837 9838 9839 9840 9841 9842 9843 9844 9845 9846 9847 9848 9849 9850 9851 9852 9853 9854 9855 9856 9857 9858 9859 9860 9861 9862 9863 9864 9865 9866 9867 9868 9869 9870 9871 9872 9873 9874 9875 9876 9877 9878 9879 9880 9881 9882 9883 9884 9885 9886 9887 9888 9889 9890 9891 9892 9893 9894 9895 9896 9897 9898 9899 9900 9901 9902 9903 9904 9905 9906 9907 9908 9909 9910 9911 9912 9913 9914 9915 9916 9917 9918 9919 9920 9921 9922 9923 9924 9925 9926 9927 9928 9929 9930 9931 9932 9933 9934 9935 9936 9937 9938 9939 9940 9941 9942 9943 9944 9945 9946 9947 9948 9949 9950 9951 9952 9953 9954 9955 9956 9957 9958 9959 9960 9961 9962 9963 9964 9965 9966 9967 9968 9969 9970 9971 9972 9973 9974 9975 9976 9977 9978 9979 9980 9981 9982 9983 9984 9985 9986 9987 9988 9989 9990 9991 9992 9993 9994 9995 9996 9997 9998 9999 10000 10001 10002 10003 10004 10005 10006 10007 10008 10009 10010 10011 10012 10013 10014 10015 10016 10017 10018 10019 10020 10021 10022 10023 10024 10025 10026 10027 10028 10029 10030 10031 10032 10033 10034 10035 10036 10037 10038 10039 10040 10041 10042 10043 10044 10045 10046 10047 10048 10049 10050 10051 10052 10053 10054 10055 10056 10057 10058 10059 10060 10061 10062 10063 10064 10065 10066 10067 10068 10069 10070 10071 10072 10073 10074 10075 10076 10077 10078 10079 10080 10081 10082 10083 10084 10085 10086 10087 10088 10089 10090 10091 10092 10093 10094 10095 10096 10097 10098 10099 10100 10101 10102 10103 10104 10105 10106 10107 10108 10109 10110 10111 10112 10113 10114 10115 10116 10117 10118 10119 10120 10121 10122 10123 10124 10125 10126 10127 10128 10129 10130 10131 10132 10133 10134 10135 10136 10137 10138 10139 10140 10141 10142 10143 10144 10145 10146 10147 10148 10149 10150 10151 10152 10153 10154 10155 10156 10157 10158 10159 10160 10161 10162 10163 10164 10165 10166 10167 10168 10169 10170 10171 10172 10173 10174 10175 10176 10177 10178 10179 10180 10181 10182 10183 10184 10185 10186 10187 10188 10189 10190 10191 10192 10193 10194 10195 10196 10197 10198 10199 10200 10201 10202 10203 10204 10205 10206 10207 10208 10209 10210 10211 10212 10213 10214 10215 10216 10217 10218 10219 10220 10221 10222 10223 10224 10225 10226 10227 10228 10229 10230 10231 10232 10233 10234 10235 10236 10237 10238 10239 10240 10241 10242 10243 10244 10245 10246 10247 10248 10249 10250 10251 10252 10253 10254 10255 10256 10257 10258 10259 10260 10261 10262 10263 10264 10265 10266 10267 10268 10269 10270 10271 10272 10273 10274 10275 10276 10277 10278 10279 10280 10281 10282 10283 10284 10285 10286 10287 10288 10289 10290 10291 10292 10293 10294 10295 10296 10297 10298 10299 10300 10301 10302 10303 10304 10305 10306 10307 10308 10309 10310 10311 10312 10313 10314 10315 10316 10317 10318 10319 10320 10321 10322 10323 10324 10325 10326 10327 10328 10329 10330 10331 10332 10333 10334 10335 10336 10337 10338 10339 10340 10341 10342 10343 10344 10345 10346 10347 10348 10349 10350 10351 10352 10353 10354 10355 10356 10357 10358 10359 10360 10361 10362 10363 10364 10365 10366 10367 10368 10369 10370 10371 10372 10373 10374 10375 10376 10377 10378 10379 10380 10381 10382 10383 10384 10385 10386 10387 10388 10389 10390 10391 10392 10393 10394 10395 10396 10397 10398 10399 10400 10401 10402 10403 10404 10405 10406 10407 10408 10409 10410 10411 10412 10413 10414 10415 10416 10417 10418 10419 10420 10421 10422 10423 10424 10425 10426 10427 10428 10429 10430 10431 10432 10433 10434 10435 10436 10437 10438 10439 10440 10441 10442 10443 10444 10445 10446 10447 10448 10449 10450 10451 10452 10453 10454 10455 10456 10457 10458 10459 10460 10461 10462 10463 10464 10465 10466 10467 10468 10469 10470 10471 10472 10473 10474 10475 10476 10477 10478 10479 10480 10481 10482 10483 10484 10485 10486 10487 10488 10489 10490 10491 10492 10493 10494 10495 10496 10497 10498 10499 10500 10501 10502 10503 10504 10505 10506 10507 10508 10509 10510 10511 10512 10513 10514 10515 10516 10517 10518 10519 10520 10521 10522 10523 10524 10525 10526 10527 10528 10529 10530 10531 10532 10533 10534 10535 10536 10537 10538 10539 10540 10541 10542 10543 10544 10545 10546 10547 10548 10549 10550 10551 10552 10553 10554 10555 10556 10557 10558 10559 10560 10561 10562 10563 10564 10565 10566 10567 10568 10569 10570 10571 10572 10573 10574 10575 10576 10577 10578 10579 10580 10581 10582 10583 10584 10585 10586 10587 10588 10589 10590 10591 10592 10593 10594 10595 10596 10597 10598 10599 10600 10601 10602 10603 10604 10605 10606 10607 10608 10609 10610 10611 10612 10613 10614 10615 10616 10617 10618 10619 10620 10621 10622 10623 10624 10625 10626 10627 10628 10629 10630 10631 10632 10633 10634 10635 10636 10637 10638 10639 10640 10641 10642 10643 10644 10645 10646 10647 10648 10649 10650 10651 10652 10653 10654 10655 10656 10657 10658 10659 10660 10661 10662 10663 10664 10665 10666 10667 10668 10669 10670 10671 10672 10673 10674 10675 10676 10677 10678 10679 10680 10681 10682 10683 10684 10685 10686 10687 10688 10689 10690 10691 10692 10693 10694 10695 10696 10697 10698 10699 10700 10701 10702 10703 10704 10705 10706 10707 10708 10709 10710 10711 10712 10713 10714 10715 10716 10717 10718 10719 10720 10721 10722 10723 10724 10725 10726 10727 10728 10729 10730 10731 10732 10733 10734 10735 10736 10737 10738 10739 10740 10741 10742 10743 10744 10745 10746 10747 10748 10749 10750 10751 10752 10753 10754 10755 10756 10757 10758 10759 10760 10761 10762 10763 10764 10765 10766 10767 10768 10769 10770 10771 10772 10773 10774 10775 10776 10777 10778 10779 10780 10781 10782 10783 10784 10785 10786 10787 10788 10789 10790 10791 10792 10793 10794 10795 10796 10797 10798 10799 10800 10801 10802 10803 10804 10805 10806 10807 10808 10809 10810 10811 10812 10813 10814 10815 10816 10817 10818 10819 10820 10821 10822 10823 10824 10825 10826 10827 10828 10829 10830 10831 10832 10833 10834 10835 10836 10837 10838 10839 10840 10841 10842 10843 10844 10845 10846 10847 10848 10849 10850 10851 10852 10853 10854 10855 10856 10857 10858 10859 10860 10861 10862 10863 10864 10865 10866 10867 10868 10869 10870 10871 10872 10873 10874 10875 10876 10877 10878 10879 10880 10881 10882 10883 10884 10885 10886 10887 10888 10889 10890 10891 10892 10893 10894 10895 10896 10897 10898 10899 10900 10901 10902 10903 10904 10905 10906 10907 10908 10909 10910 10911 10912 10913 10914 10915 10916 10917 10918 10919 10920 10921 10922 10923 10924 10925 10926 10927 10928 10929 10930 10931 10932 10933 10934 10935 10936 10937 10938 10939 10940 10941 10942 10943 10944 10945 10946 10947 10948 10949 10950 10951 10952 10953 10954 10955 10956 10957 10958 10959 10960 10961 10962 10963 10964 10965 10966 10967 10968 10969 10970 10971 10972 10973 10974 10975 10976 10977 10978 10979 10980 10981 10982 10983 10984 10985 10986 10987 10988 10989 10990 10991 10992 10993 10994 10995 10996 10997 10998 10999 11000 11001 11002 11003 11004 11005 11006 11007 11008 11009 11010 11011 11012 11013 11014 11015 11016 11017 11018 11019 11020 11021 11022 11023 11024 11025 11026 11027 11028 11029 11030 11031 11032 11033 11034 11035 11036 11037 11038 11039 11040 11041 11042 11043 11044 11045 11046 11047 11048 11049 11050 11051 11052 11053 11054 11055 11056 11057 11058 11059 11060 11061 11062 11063 11064 11065 11066 11067 11068 11069 11070 11071 11072 11073 11074 11075 11076 11077 11078 11079 11080 11081 11082 11083 11084 11085 11086 11087 11088 11089 11090 11091 11092 11093 11094 11095 11096 11097 11098 11099 11100 11101 11102 11103 11104 11105 11106 11107 11108 11109 11110 11111 11112 11113 11114 11115 11116 11117 11118 11119 11120 11121 11122 11123 11124 11125 11126 11127 11128 11129 11130 11131 11132 11133 11134 11135 11136 11137 11138 11139 11140 11141 11142 11143 11144 11145 11146 11147 11148 11149 11150 11151 11152 11153 11154 11155 11156 11157 11158 11159 11160 11161 11162 11163 11164 11165 11166 11167 11168 11169 11170 11171 11172 11173 11174 11175 11176 11177 11178 11179 11180 11181 11182 11183 11184 11185 11186 11187 11188 11189 11190 11191 11192 11193 11194 11195 11196 11197 11198 11199 11200 11201 11202 11203 11204 11205 11206 11207 11208 11209 11210 11211 11212 11213 11214 11215 11216 11217 11218 11219 11220 11221 11222 11223 11224 11225 11226 11227 11228 11229 11230 11231 11232 11233 11234 11235 11236 11237 11238 11239 11240 11241 11242 11243 11244 11245 11246 11247 11248 11249 11250 11251 11252 11253 11254 11255 11256 11257 11258 11259 11260 11261 11262 11263 11264 11265 11266 11267 11268 11269 11270 11271 11272 11273 11274 11275 11276 11277 11278 11279 11280 11281 11282 11283 11284 11285 11286 11287 11288 11289 11290 11291 11292 11293 11294 11295 11296 11297 11298 11299 11300 11301 11302 11303 11304 11305 11306 11307 11308 11309 11310 11311 11312 11313 11314 11315 11316 11317 11318 11319 11320 11321 11322 11323 11324 11325 11326 11327 11328 11329 11330 11331 11332 11333 11334 11335 11336 11337 11338 11339 11340 11341 11342 11343 11344 11345 11346 11347 11348 11349 11350 11351 11352 11353 11354 11355 11356 11357 11358 11359 11360 11361 11362 11363 11364 11365 11366 11367 11368 11369 11370 11371 11372 11373 11374 11375 11376 11377 11378 11379 11380 11381 11382 11383 11384 11385 11386 11387 11388 11389 11390 11391 11392 11393 11394 11395 11396 11397 11398 11399 11400 11401 11402 11403 11404 11405 11406 11407 11408 11409 11410 11411 11412 11413 11414 11415 11416 11417 11418 11419 11420 11421 11422 11423 11424 11425 11426 11427 11428 11429 11430 11431 11432 11433 11434 11435 11436 11437 11438 11439 11440 11441 11442 11443 11444 11445 11446 11447 11448 11449 11450 11451 11452 11453 11454 11455 11456 11457 11458 11459 11460 11461 11462 11463 11464 11465 11466 11467 11468 11469 11470 11471 11472 11473 11474 11475 11476 11477 11478 11479 11480 11481 11482 11483 11484 11485 11486 11487 11488 11489 11490 11491 11492 11493 11494 11495 11496 11497 11498 11499 11500 11501 11502 11503 11504 11505 11506 11507 11508 11509 11510 11511 11512 11513 11514 11515 11516 11517 11518 11519 11520 11521 11522 11523 11524 11525 11526 11527 11528 11529 11530 11531 11532 11533 11534 11535 11536 11537 11538 11539 11540 11541 11542 11543 11544 11545 11546 11547 11548 11549 11550 11551 11552 11553 11554 11555 11556 11557 11558 11559 11560 11561 11562 11563 11564 11565 11566 11567 11568 11569 11570 11571 11572 11573 11574 11575 11576 11577 11578 11579 11580 11581 11582 11583 11584 11585 11586 11587 11588 11589 11590 11591 11592 11593 11594 11595 11596 11597 11598 11599 11600 11601 11602 11603 11604 11605 11606 11607 11608 11609 11610 11611 11612 11613 11614 11615 11616 11617 11618 11619 11620 11621 11622 11623 11624 11625 11626 11627 11628 11629 11630 11631 11632 11633 11634 11635 11636 11637 11638 11639 11640 11641 11642 11643 11644 11645 11646 11647 11648 11649 11650 11651 11652 11653 11654 11655 11656 11657 11658 11659 11660 11661 11662 11663 11664 11665 11666 11667 11668 11669 11670 11671 11672 11673 11674 11675 11676 11677 11678 11679 11680 11681 11682 11683 11684 11685 11686 11687 11688 11689 11690 11691 11692 11693 11694 11695 11696 11697 11698 11699 11700 11701 11702 11703 11704 11705 11706 11707 11708 11709 11710 11711 11712 11713 11714 11715 11716 11717 11718 11719 11720 11721 11722 11723 11724 11725 11726 11727 11728 11729 11730 11731 11732 11733 11734 11735 11736 11737 11738 11739 11740 11741 11742 11743 11744 11745 11746 11747 11748 11749 11750 11751 11752 11753 11754 11755 11756 11757 11758 11759 11760 11761 11762 11763 11764 11765 11766 11767 11768 11769 11770 11771 11772 11773 11774 11775 11776 11777 11778 11779 11780 11781 11782 11783 11784 11785 11786 11787 11788 11789 11790 11791 11792 11793 11794 11795 11796 11797 11798 11799 11800 11801 11802 11803 11804 11805 11806 11807 11808 11809 11810 11811 11812 11813 11814 11815 11816 11817 11818 11819 11820 11821 11822 11823 11824 11825 11826 11827 11828 11829 11830 11831 11832 11833 11834 11835 11836 11837 11838 11839 11840 11841 11842 11843 11844 11845 11846 11847 11848 11849 11850 11851 11852 11853 11854 11855 11856 11857 11858 11859 11860 11861 11862 11863 11864 11865 11866 11867 11868 11869 11870 11871 11872 11873 11874 11875 11876 11877 11878 11879 11880 11881 11882 11883 11884 11885 11886 11887 11888 11889 11890 11891 11892 11893 11894 11895 11896 11897 11898 11899 11900 11901 11902 11903 11904 11905 11906 11907 11908 11909 11910 11911 11912 11913 11914 11915 11916 11917 11918 11919 11920 11921 11922 11923 11924 11925 11926 11927 11928 11929 11930 11931 11932 11933 11934 11935 11936 11937 11938 11939 11940 11941 11942 11943 11944 11945 11946 11947 11948 11949 11950 11951 11952 11953 11954 11955 11956 11957 11958 11959 11960 11961 11962 11963 11964 11965 11966 11967 11968 11969 11970 11971 11972 11973 11974 11975 11976 11977 11978 11979 11980 11981 11982 11983 11984 11985 11986 11987 11988 11989 11990 11991 11992 11993 11994 11995 11996 11997 11998 11999 12000 12001 12002 12003 12004 12005 12006 12007 12008 12009 12010 12011 12012 12013 12014 12015 12016 12017 12018 12019 12020 12021 12022 12023 12024 12025 12026 12027 12028 12029 12030 12031 12032 12033 12034 12035 12036 12037 12038 12039 12040 12041 12042 12043 12044 12045 12046 12047 12048 12049 12050 12051 12052 12053 12054 12055 12056 12057 12058 12059 12060 12061 12062 12063 12064 12065 12066 12067 12068 12069 12070 12071 12072 12073 12074 12075 12076 12077 12078 12079 12080 12081 12082 12083 12084 12085 12086 12087 12088 12089 12090 12091 12092 12093 12094 12095 12096 12097 12098 12099 12100 12101 12102 12103 12104 12105 12106 12107 12108 12109 12110 12111 12112 12113 12114 12115 12116 12117 12118 12119 12120 12121 12122 12123 12124 12125 12126 12127 12128 12129 12130 12131 12132 12133 12134 12135 12136 12137 12138 12139 12140 12141 12142 12143 12144 12145 12146 12147 12148 12149 12150 12151 12152 12153 12154 12155 12156 12157 12158 12159 12160 12161 12162 12163 12164 12165 12166 12167 12168 12169 12170 12171 12172 12173 12174 12175 12176 12177 12178 12179 12180 12181 12182 12183 12184 12185 12186 12187 12188 12189 12190 12191 12192 12193 12194 12195 12196 12197 12198 12199 12200 12201 12202 12203 12204 12205 12206 12207 12208 12209 12210 12211 12212 12213 12214 12215 12216 12217 12218 12219 12220 12221 12222 12223 12224 12225 12226 12227 12228 12229 12230 12231 12232 12233 12234 12235 12236 12237 12238 12239 12240 12241 12242 12243 12244 12245 12246 12247 12248 12249 12250 12251 12252 12253 12254 12255 12256 12257 12258 12259 12260 12261 12262 12263 12264 12265 12266 12267 12268 12269 12270 12271 12272 12273 12274 12275 12276 12277 12278 12279 12280 12281 12282 12283 12284 12285 12286 12287 12288 12289 12290 12291 12292 12293 12294 12295 12296 12297 12298 12299 12300 12301 12302 12303 12304 12305 12306 12307 12308 12309 12310 12311 12312 12313 12314 12315 12316 12317 12318 12319 12320 12321 12322 12323 12324 12325 12326 12327 12328 12329 12330 12331 12332 12333 12334 12335 12336 12337 12338 12339 12340 12341 12342 12343 12344 12345 12346 12347 12348 12349 12350 12351 12352 12353 12354 12355 12356 12357 12358 12359 12360 12361 12362 12363 12364 12365 12366 12367 12368 12369 12370 12371 12372 12373 12374 12375 12376 12377 12378 12379 12380 12381 12382 12383 12384 12385 12386 12387 12388 12389 12390 12391 12392 12393 12394 12395 12396 12397 12398 12399 12400 12401 12402 12403 12404 12405 12406 12407 12408 12409 12410 12411 12412 12413 12414 12415 12416 12417 12418 12419 12420 12421 12422 12423 12424 12425 12426 12427 12428 12429 12430 12431 12432 12433 12434 12435 12436 12437 12438 12439 12440 12441 12442 12443 12444 12445 12446 12447 12448 12449 12450 12451 12452 12453 12454 12455 12456 12457 12458 12459 12460 12461 12462 12463 12464 12465 12466 12467 12468 12469 12470 12471 12472 12473 12474 12475 12476 12477 12478 12479 12480 12481 12482 12483 12484 12485 12486 12487 12488 12489 12490 12491 12492 12493 12494 12495 12496 12497 12498 12499 12500 12501 12502 12503 12504 12505 12506 12507 12508 12509 12510 12511 12512 12513 12514 12515 12516 12517 12518 12519 12520 12521 12522 12523 12524 12525 12526 12527 12528 12529 12530 12531 12532 12533 12534 12535 12536 12537 12538 12539 12540 12541 12542 12543 12544 12545 12546 12547 12548 12549 12550 12551 12552 12553 12554 12555 12556 12557 12558 12559 12560 12561 12562 12563 12564 12565 12566 12567 12568 12569 12570 12571 12572 12573 12574 12575 12576 12577 12578 12579 12580 12581 12582 12583 12584 12585 12586 12587 12588 12589 12590 12591 12592 12593 12594 12595 12596 12597 12598 12599 12600 12601 12602 12603 12604 12605 12606 12607 12608 12609 12610 12611 12612 12613 12614 12615 12616 12617 12618 12619 12620 12621 12622 12623 12624 12625 12626 12627 12628 12629 12630 12631 12632 12633 12634 12635 12636 12637 12638 12639 12640 12641 12642 12643 12644 12645 12646 12647 12648 12649 12650 12651 12652 12653 12654 12655 12656 12657 12658 12659 12660 12661 12662 12663 12664 12665 12666 12667 12668 12669 12670 12671 12672 12673 12674 12675 12676 12677 12678 12679 12680 12681 12682 12683 12684 12685 12686 12687 12688 12689 12690 12691 12692 12693 12694 12695 12696 12697 12698 12699 12700 12701 12702 12703 12704 12705 12706 12707 12708 12709 12710 12711 12712 12713 12714 12715 12716 12717 12718 12719 12720 12721 12722 12723 12724 12725 12726 12727 12728 12729 12730 12731 12732 12733 12734 12735 12736 12737 12738 12739 12740 12741 12742 12743 12744 12745 12746 12747 12748 12749 12750 12751 12752 12753 12754 12755 12756 12757 12758 12759 12760 12761 12762 12763 12764 12765 12766 12767 12768 12769 12770 12771 12772 12773 12774 12775 12776 12777 12778 12779 12780 12781 12782 12783 12784 12785 12786 12787 12788 12789 12790 12791 12792 12793 12794 12795 12796 12797 12798 12799 12800 12801 12802 12803 12804 12805 12806 12807 12808 12809 12810 12811 12812 12813 12814 12815 12816 12817 12818 12819 12820 12821 12822 12823 12824 12825 12826 12827 12828 12829 12830 12831 12832 12833 12834 12835 12836 12837 12838 12839 12840 12841 12842 12843 12844 12845 12846 12847 12848 12849 12850 12851 12852 12853 12854 12855 12856 12857 12858 12859 12860 12861 12862 12863 12864 12865 12866 12867 12868 12869 12870 12871 12872 12873 12874 12875 12876 12877 12878 12879 12880 12881 12882 12883 12884 12885 12886 12887 12888 12889 12890 12891 12892 12893 12894 12895 12896 12897 12898 12899 12900 12901 12902 12903 12904 12905 12906 12907 12908 12909 12910 12911 12912 12913 12914 12915 12916 12917 12918 12919 12920 12921 12922 12923 12924 12925 12926 12927 12928 12929 12930 12931 12932 12933 12934 12935 12936 12937 12938 12939 12940 12941 12942 12943 12944 12945 12946 12947 12948 12949 12950 12951 12952 12953 12954 12955 12956 12957 12958 12959 12960 12961 12962 12963 12964 12965 12966 12967 12968 12969 12970 12971 12972 12973 12974 12975 12976 12977 12978 12979 12980 12981 12982 12983 12984 12985 12986 12987 12988 12989 12990 12991 12992 12993 12994 12995 12996 12997 12998 12999 13000 13001 13002 13003 13004 13005 13006 13007 13008 13009 13010 13011 13012 13013 13014 13015 13016 13017 13018 13019 13020 13021 13022 13023 13024 13025 13026 13027 13028 13029 13030 13031 13032 13033 13034 13035 13036 13037 13038 13039 13040 13041 13042 13043 13044 13045 13046 13047 13048 13049 13050 13051 13052 13053 13054 13055 13056 13057 13058 13059 13060 13061 13062 13063 13064 13065 13066 13067 13068 13069 13070 13071 13072 13073 13074 13075 13076 13077 13078 13079 13080 13081 13082 13083 13084 13085 13086 13087 13088 13089 13090 13091 13092 13093 13094 13095 13096 13097 13098 13099 13100 13101 13102 13103 13104 13105 13106 13107 13108 13109 13110 13111 13112 13113 13114 13115 13116 13117 13118 13119 13120 13121 13122 13123 13124 13125 13126 13127 13128 13129 13130 13131 13132 13133 13134 13135 13136 13137 13138 13139 13140 13141 13142 13143 13144 13145 13146 13147 13148 13149 13150 13151 13152 13153 13154 13155 13156 13157 13158 13159 13160 13161 13162 13163 13164 13165 13166 13167 13168 13169 13170 13171 13172 13173 13174 13175 13176 13177 13178 13179 13180 13181 13182 13183 13184 13185 13186 13187 13188 13189 13190 13191 13192 13193 13194 13195 13196 13197 13198 13199 13200 13201 13202 13203 13204 13205 13206 13207 13208 13209 13210 13211 13212 13213 13214 13215 13216 13217 13218 13219 13220 13221 13222 13223 13224 13225 13226 13227 13228 13229 13230 13231 13232 13233 13234 13235 13236 13237 13238 13239 13240 13241 13242 13243 13244 13245 13246 13247 13248 13249 13250 13251 13252 13253 13254 13255 13256 13257 13258 13259 13260 13261 13262 13263 13264 13265 13266 13267 13268 13269 13270 13271 13272 13273 13274 13275 13276 13277 13278 13279 13280 13281 13282 13283 13284 13285 13286 13287 13288 13289 13290 13291 13292 13293 13294 13295 13296 13297 13298 13299 13300 13301 13302 13303 13304 13305 13306 13307 13308 13309 13310 13311 13312 13313 13314 13315 13316 13317 13318 13319 13320 13321 13322 13323 13324 13325 13326 13327 13328 13329 13330 13331 13332 13333 13334 13335 13336 13337 13338 13339 13340 13341 13342 13343 13344 13345 13346 13347 13348 13349 13350 13351 13352 13353 13354 13355 13356 13357 13358 13359 13360 13361 13362 13363 13364 13365 13366 13367 13368 13369 13370 13371 13372 13373 13374 13375 13376 13377 13378 13379 13380 13381 13382 13383 13384 13385 13386 13387 13388 13389 13390 13391 13392 13393 13394 13395 13396 13397 13398 13399 13400 13401 13402 13403 13404 13405 13406 13407 13408 13409 13410 13411 13412 13413 13414 13415 13416 13417 13418 13419 13420 13421 13422 13423 13424 13425 13426 13427 13428 13429 13430 13431 13432 13433 13434 13435 13436 13437 13438 13439 13440 13441 13442 13443 13444 13445 13446 13447 13448 13449 13450 13451 13452 13453 13454 13455 13456 13457 13458 13459 13460 13461 13462 13463 13464 13465 13466 13467 13468 13469 13470 13471 13472 13473 13474 13475 13476 13477 13478 13479 13480 13481 13482 13483 13484 13485 13486 13487 13488 13489 13490 13491 13492 13493 13494 13495 13496 13497 13498 13499 13500 13501 13502 13503 13504 13505 13506 13507 13508 13509 13510 13511 13512 13513 13514 13515 13516 13517 13518 13519 13520 13521 13522 13523 13524 13525 13526 13527 13528 13529 13530 13531 13532 13533 13534 13535 13536 13537 13538 13539 13540 13541 13542 13543 13544 13545 13546 13547 13548 13549 13550 13551 13552 13553 13554 13555 13556 13557 13558 13559 13560 13561 13562 13563 13564 13565 13566 13567 13568 13569 13570 13571 13572 13573 13574 13575 13576 13577 13578 13579 13580 13581 13582 13583 13584 13585 13586 13587 13588 13589 13590 13591 13592 13593 13594 13595 13596 13597 13598 13599 13600 13601 13602 13603 13604 13605 13606 13607 13608 13609 13610 13611 13612 13613 13614 13615 13616 13617 13618 13619 13620 13621 13622 13623 13624 13625 13626 13627 13628 13629 13630 13631 13632 13633 13634 13635 13636 13637 13638 13639 13640 13641 13642 13643 13644 13645 13646 13647 13648 13649 13650 13651 13652 13653 13654 13655 13656 13657 13658 13659 13660 13661 13662 13663 13664 13665 13666 13667 13668 13669 13670 13671 13672 13673 13674 13675 13676 13677 13678 13679 13680 13681 13682 13683 13684 13685 13686 13687 13688 13689 13690 13691 13692 13693 13694 13695 13696 13697 13698 13699 13700 13701 13702 13703 13704 13705 13706 13707 13708 13709 13710 13711 13712 13713 13714 13715 13716 13717 13718 13719 13720 13721 13722 13723 13724 13725 13726 13727 13728 13729 13730 13731 13732 13733 13734 13735 13736 13737 13738 13739 13740 13741 13742 13743 13744 13745 13746 13747 13748 13749 13750 13751 13752 13753 13754 13755 13756 13757 13758 13759 13760 13761 13762 13763 13764 13765 13766 13767 13768 13769 13770 13771 13772 13773 13774 13775 13776 13777 13778 13779 13780 13781 13782 13783 13784 13785 13786 13787 13788 13789 13790 13791 13792 13793 13794 13795 13796 13797 13798 13799 13800 13801 13802 13803 13804 13805 13806 13807 13808 13809 13810 13811 13812 13813 13814 13815 13816 13817 13818 13819 13820 13821 13822 13823 13824 13825 13826 13827 13828 13829 13830 13831 13832 13833 13834 13835 13836 13837 13838 13839 13840 13841 13842 13843 13844 13845 13846 13847 13848 13849 13850 13851 13852 13853 13854 13855 13856 13857 13858 13859 13860 13861 13862 13863 13864 13865 13866 13867 13868 13869 13870 13871 13872 13873 13874 13875 13876 13877 13878 13879 13880 13881 13882 13883 13884 13885 13886 13887 13888 13889 13890 13891 13892 13893 13894 13895 13896 13897 13898 13899 13900 13901 13902 13903 13904 13905 13906 13907 13908 13909 13910 13911 13912 13913 13914 13915 13916 13917 13918 13919 13920 13921 13922 13923 13924 13925 13926 13927 13928 13929 13930 13931 13932 13933 13934 13935 13936 13937 13938 13939 13940 13941 13942 13943 13944 13945 13946 13947 13948 13949 13950 13951 13952 13953 13954 13955 13956 13957 13958 13959 13960 13961 13962 13963 13964 13965 13966 13967 13968 13969 13970 13971 13972 13973 13974 13975 13976 13977 13978 13979 13980 13981 13982 13983 13984 13985 13986 13987 13988 13989 13990 13991 13992 13993 13994 13995 13996 13997 13998 13999 14000 14001 14002 14003 14004 14005 14006 14007 14008 14009 14010 14011 14012 14013 14014 14015 14016 14017 14018 14019 14020 14021 14022 14023 14024 14025 14026 14027 14028 14029 14030 14031 14032 14033 14034 14035 14036 14037 14038 14039 14040 14041 14042 14043 14044 14045 14046 14047 14048 14049 14050 14051 14052 14053 14054 14055 14056 14057 14058 14059 14060 14061 14062 14063 14064 14065 14066 14067 14068 14069 14070 14071 14072 14073 14074 14075 14076 14077 14078 14079 14080 14081 14082 14083 14084 14085 14086 14087 14088 14089 14090 14091 14092 14093 14094 14095 14096 14097 14098 14099 14100 14101 14102 14103 14104 14105 14106 14107 14108 14109 14110 14111 14112 14113 14114 14115 14116 14117 14118 14119 14120 14121 14122 14123 14124 14125 14126 14127 14128 14129 14130 14131 14132 14133 14134 14135 14136 14137 14138 14139 14140 14141 14142 14143 14144 14145 14146 14147 14148 14149 14150 14151 14152 14153 14154 14155 14156 14157 14158 14159 14160 14161 14162 14163 14164 14165 14166 14167 14168 14169 14170 14171 14172 14173 14174 14175 14176 14177 14178 14179 14180 14181 14182 14183 14184 14185 14186 14187 14188 14189 14190 14191 14192 14193 14194 14195 14196 14197 14198 14199 14200 14201 14202 14203 14204 14205 14206 14207 14208 14209 14210 14211 14212 14213 14214 14215 14216 14217 14218 14219 14220 14221 14222 14223 14224 14225 14226 14227 14228 14229 14230 14231 14232 14233 14234 14235 14236 14237 14238 14239 14240 14241 14242 14243 14244 14245 14246 14247 14248 14249 14250 14251 14252 14253 14254 14255 14256 14257 14258 14259 14260 14261 14262 14263 14264 14265 14266 14267 14268 14269 14270 14271 14272 14273 14274 14275 14276 14277 14278 14279 14280 14281 14282 14283 14284 14285 14286 14287 14288 14289 14290 14291 14292 14293 14294 14295 14296 14297 14298 14299 14300 14301 14302 14303 14304 14305 14306 14307 14308 14309 14310 14311 14312 14313 14314 14315 14316 14317 14318 14319 14320 14321 14322 14323 14324 14325 14326 14327 14328 14329 14330 14331 14332 14333 14334 14335 14336 14337 14338 14339 14340 14341 14342 14343 14344 14345 14346 14347 14348 14349 14350 14351 14352 14353 14354 14355 14356 14357 14358 14359 14360 14361 14362 14363 14364 14365 14366 14367 14368 14369 14370 14371 14372 14373 14374 14375 14376 14377 14378 14379 14380 14381 14382 14383 14384 14385 14386 14387 14388 14389 14390 14391 14392 14393 14394 14395 14396 14397 14398 14399 14400 14401 14402 14403 14404 14405 14406 14407 14408 14409 14410 14411 14412 14413 14414 14415 14416 14417 14418 14419 14420 14421 14422 14423 14424 14425 14426 14427 14428 14429 14430 14431 14432 14433 14434 14435 14436 14437 14438 14439 14440 14441 14442 14443 14444 14445 14446 14447 14448 14449 14450 14451 14452 14453 14454 14455 14456 14457 14458 14459 14460 14461 14462 14463 14464 14465 14466 14467 14468 14469 14470 14471 14472 14473 14474 14475 14476 14477 14478 14479 14480 14481 14482 14483 14484 14485 14486 14487 14488 14489 14490 14491 14492 14493 14494 14495 14496 14497 14498 14499 14500 14501 14502 14503 14504 14505 14506 14507 14508 14509 14510 14511 14512 14513 14514 14515 14516 14517 14518 14519 14520 14521 14522 14523 14524 14525 14526 14527 14528 14529 14530 14531 14532 14533 14534 14535 14536 14537 14538 14539 14540 14541 14542 14543 14544 14545 14546 14547 14548 14549 14550 14551 14552 14553 14554 14555 14556 14557 14558 14559 14560 14561 14562 14563 14564 14565 14566 14567 14568 14569 14570 14571 14572 14573 14574 14575 14576 14577 14578 14579 14580 14581 14582 14583 14584 14585 14586 14587 14588 14589 14590 14591 14592 14593 14594 14595 14596 14597 14598 14599 14600 14601 14602 14603 14604 14605 14606 14607 14608 14609 14610 14611 14612 14613 14614 14615 14616 14617 14618 14619 14620 14621 14622 14623 14624 14625 14626 14627 14628 14629 14630 14631 14632 14633 14634 14635 14636 14637 14638 14639 14640 14641 14642 14643 14644 14645 14646 14647 14648 14649 14650 14651 14652 14653 14654 14655 14656 14657 14658 14659 14660 14661 14662 14663 14664 14665 14666 14667 14668 14669 14670 14671 14672 14673 14674 14675 14676 14677 14678 14679 14680 14681 14682 14683 14684 14685 14686 14687 14688 14689 14690 14691 14692 14693 14694 14695 14696 14697 14698 14699 14700 14701 14702 14703 14704 14705 14706 14707 14708 14709 14710 14711 14712 14713 14714 14715 14716 14717 14718 14719 14720 14721 14722 14723 14724 14725 14726 14727 14728 14729 14730 14731 14732 14733 14734 14735 14736 14737 14738 14739 14740 14741 14742 14743 14744 14745 14746 14747 14748 14749 14750 14751 14752 14753 14754 14755 14756 14757 14758 14759 14760 14761 14762 14763 14764 14765 14766 14767 14768 14769 14770 14771 14772 14773 14774 14775 14776 14777 14778 14779 14780 14781 14782 14783 14784 14785 14786 14787 14788 14789 14790 14791 14792 14793 14794 14795 14796 14797 14798 14799 14800 14801 14802 14803 14804 14805 14806 14807 14808 14809 14810 14811 14812 14813 14814 14815 14816 14817 14818 14819 14820 14821 14822 14823 14824 14825 14826 14827 14828 14829 14830 14831 14832 14833 14834 14835 14836 14837 14838 14839 14840 14841 14842 14843 14844 14845 14846 14847 14848 14849 14850 14851 14852 14853 14854 14855 14856 14857 14858 14859 14860 14861 14862 14863 14864 14865 14866 14867 14868 14869 14870 14871 14872 14873 14874 14875 14876 14877 14878 14879 14880 14881 14882 14883 14884 14885 14886 14887 14888 14889 14890 14891 14892 14893 14894 14895 14896 14897 14898 14899 14900 14901 14902 14903 14904 14905 14906 14907 14908 14909 14910 14911 14912 14913 14914 14915 14916 14917 14918 14919 14920 14921 14922 14923 14924 14925 14926 14927 14928 14929 14930 14931 14932 14933 14934 14935 14936 14937 14938 14939 14940 14941 14942 14943 14944 14945 14946 14947 14948 14949 14950 14951 14952 14953 14954 14955 14956 14957 14958 14959 14960 14961 14962 14963 14964 14965 14966 14967 14968 14969 14970 14971 14972 14973 14974 14975 14976 14977 14978 14979 14980 14981 14982 14983 14984 14985 14986 14987 14988 14989 14990 14991 14992 14993 14994 14995 14996 14997 14998 14999 15000 15001 15002 15003 15004 15005 15006 15007 15008 15009 15010 15011 15012 15013 15014 15015 15016 15017 15018 15019 15020 15021 15022 15023 15024 15025 15026 15027 15028 15029 15030 15031 15032 15033 15034 15035 15036 15037 15038 15039 15040 15041 15042 15043 15044 15045 15046 15047 15048 15049 15050 15051 15052 15053 15054 15055 15056 15057 15058 15059 15060 15061 15062 15063 15064 15065 15066 15067 15068 15069 15070 15071 15072 15073 15074 15075 15076 15077 15078 15079 15080 15081 15082 15083 15084 15085 15086 15087 15088 15089 15090 15091 15092 15093 15094 15095 15096 15097 15098 15099 15100 15101 15102 15103 15104 15105 15106 15107 15108 15109 15110 15111 15112 15113 15114 15115 15116 15117 15118 15119 15120 15121 15122 15123 15124 15125 15126 15127 15128 15129 15130 15131 15132 15133 15134 15135 15136 15137 15138 15139 15140 15141 15142 15143 15144 15145 15146 15147 15148 15149 15150 15151 15152 15153 15154 15155 15156 15157 15158 15159 15160 15161 15162 15163 15164 15165 15166 15167 15168 15169 15170 15171 15172 15173 15174 15175 15176 15177 15178 15179 15180 15181 15182 15183 15184 15185 15186 15187 15188 15189 15190 15191 15192 15193 15194 15195 15196 15197 15198 15199 15200 15201 15202 15203 15204 15205 15206 15207 15208 15209 15210 15211 15212 15213 15214 15215 15216 15217 15218 15219 15220 15221 15222 15223 15224 15225 15226 15227 15228 15229 15230 15231 15232 15233 15234 15235 15236 15237 15238 15239 15240 15241 15242 15243 15244 15245 15246 15247 15248 15249 15250 15251 15252 15253 15254 15255 15256 15257 15258 15259 15260 15261 15262 15263 15264 15265 15266 15267 15268 15269 15270 15271 15272 15273 15274 15275 15276 15277 15278 15279 15280 15281 15282 15283 15284 15285 15286 15287 15288 15289 15290 15291 15292 15293 15294 15295 15296 15297 15298 15299 15300 15301 15302 15303 15304 15305 15306 15307 15308 15309 15310 15311 15312 15313 15314 15315 15316 15317 15318 15319 15320 15321 15322 15323 15324 15325 15326 15327 15328 15329 15330 15331 15332 15333 15334 15335 15336 15337 15338 15339 15340 15341 15342 15343 15344 15345 15346 15347 15348 15349 15350 15351 15352 15353 15354 15355 15356 15357 15358 15359 15360 15361 15362 15363 15364 15365 15366 15367 15368 15369 15370 15371 15372 15373 15374 15375 15376 15377 15378 15379 15380 15381 15382 15383 15384 15385 15386 15387 15388 15389 15390 15391 15392 15393 15394 15395 15396 15397 15398 15399 15400 15401 15402 15403 15404 15405 15406 15407 15408 15409 15410 15411 15412 15413 15414 15415 15416 15417 15418 15419 15420 15421 15422 15423 15424 15425 15426 15427 15428 15429 15430 15431 15432 15433 15434 15435 15436 15437 15438 15439 15440 15441 15442 15443 15444 15445 15446 15447 15448 15449 15450 15451 15452 15453 15454 15455 15456 15457 15458 15459 15460 15461 15462 15463 15464 15465 15466 15467 15468 15469 15470 15471 15472 15473 15474 15475 15476 15477 15478 15479 15480 15481 15482 15483 15484 15485 15486 15487 15488 15489 15490 15491 15492 15493 15494 15495 15496 15497 15498 15499 15500 15501 15502 15503 15504 15505 15506 15507 15508 15509 15510 15511 15512 15513 15514 15515 15516 15517 15518 15519 15520 15521 15522 15523 15524 15525 15526 15527 15528 15529 15530 15531 15532 15533 15534 15535 15536 15537 15538 15539 15540 15541 15542 15543 15544 15545 15546 15547 15548 15549 15550 15551 15552 15553 15554 15555 15556 15557 15558 15559 15560 15561 15562 15563 15564 15565 15566 15567 15568 15569 15570 15571 15572 15573 15574 15575 15576 15577 15578 15579 15580 15581 15582 15583 15584 15585 15586 15587 15588 15589 15590 15591 15592 15593 15594 15595 15596 15597 15598 15599 15600 15601 15602 15603 15604 15605 15606 15607 15608 15609 15610 15611 15612 15613 15614 15615 15616 15617 15618 15619 15620 15621 15622 15623 15624 15625 15626 15627 15628 15629 15630 15631 15632 15633 15634 15635 15636 15637 15638 15639 15640 15641 15642 15643 15644 15645 15646 15647 15648 15649 15650 15651 15652 15653 15654 15655 15656 15657 15658 15659 15660 15661 15662 15663 15664 15665 15666 15667 15668 15669 15670 15671 15672 15673 15674 15675 15676 15677 15678 15679 15680 15681 15682 15683 15684 15685 15686 15687 15688 15689 15690 15691 15692 15693 15694 15695 15696 15697 15698 15699 15700 15701 15702 15703 15704 15705 15706 15707 15708 15709 15710 15711 15712 15713 15714 15715 15716 15717 15718 15719 15720 15721 15722 15723 15724 15725 15726 15727 15728 15729 15730 15731 15732 15733 15734 15735 15736 15737 15738 15739 15740 15741 15742 15743 15744 15745 15746 15747 15748 15749 15750 15751 15752 15753 15754 15755 15756 15757 15758 15759 15760 15761 15762 15763 15764 15765 15766 15767 15768 15769 15770 15771 15772 15773 15774 15775 15776 15777 15778 15779 15780 15781 15782 15783 15784 15785 15786 15787 15788 15789 15790 15791 15792 15793 15794 15795 15796 15797 15798 15799 15800 15801 15802 15803 15804 15805 15806 15807 15808 15809 15810 15811 15812 15813 15814 15815 15816 15817 15818 15819 15820 15821 15822 15823 15824 15825 15826 15827 15828 15829 15830 15831 15832 15833 15834 15835 15836 15837 15838 15839 15840 15841 15842 15843 15844 15845 15846 15847 15848 15849 15850 15851 15852 15853 15854 15855 15856 15857 15858 15859 15860 15861 15862 15863 15864 15865 15866 15867 15868 15869 15870 15871 15872 15873 15874 15875 15876 15877 15878 15879 15880 15881 15882 15883 15884 15885 15886 15887 15888 15889 15890 15891 15892 15893 15894 15895 15896 15897 15898 15899 15900 15901 15902 15903 15904 15905 15906 15907 15908 15909 15910 15911 15912 15913 15914 15915 15916 15917 15918 15919 15920 15921 15922 15923 15924 15925 15926 15927 15928 15929 15930 15931 15932 15933 15934 15935 15936 15937 15938 15939 15940 15941 15942 15943 15944 15945 15946 15947 15948 15949 15950 15951 15952 15953 15954 15955 15956 15957 15958 15959 15960 15961 15962 15963 15964 15965 15966 15967 15968 15969 15970 15971 15972 15973 15974 15975 15976 15977 15978 15979 15980 15981 15982 15983 15984 15985 15986 15987 15988 15989 15990 15991 15992 15993 15994 15995 15996 15997 15998 15999 16000 16001 16002 16003 16004 16005 16006 16007 16008 16009 16010 16011 16012 16013 16014 16015 16016 16017 16018 16019 16020 16021 16022 16023 16024 16025 16026 16027 16028 16029 16030 16031 16032 16033 16034 16035 16036 16037 16038 16039 16040 16041 16042 16043 16044 16045 16046 16047 16048 16049 16050 16051 16052 16053 16054 16055 16056 16057 16058 16059 16060 16061 16062 16063 16064 16065 16066 16067 16068 16069 16070 16071 16072 16073 16074 16075 16076 16077 16078 16079 16080 16081 16082 16083 16084 16085 16086 16087 16088 16089 16090 16091 16092 16093 16094 16095 16096 16097 16098 16099 16100 16101 16102 16103 16104 16105 16106 16107 16108 16109 16110 16111 16112 16113 16114 16115 16116 16117 16118 16119 16120 16121 16122 16123 16124 16125 16126 16127 16128 16129 16130 16131 16132 16133 16134 16135 16136 16137 16138 16139 16140 16141 16142 16143 16144 16145 16146 16147 16148 16149 16150 16151 16152 16153 16154 16155 16156 16157 16158 16159 16160 16161 16162 16163 16164 16165 16166 16167 16168 16169 16170 16171 16172 16173 16174 16175 16176 16177 16178 16179 16180 16181 16182 16183 16184 16185 16186 16187 16188 16189 16190 16191 16192 16193 16194 16195 16196 16197 16198 16199 16200 16201 16202 16203 16204 16205 16206 16207 16208 16209 16210 16211 16212 16213 16214 16215 16216 16217 16218 16219 16220 16221 16222 16223 16224 16225 16226 16227 16228 16229 16230 16231 16232 16233 16234 16235 16236 16237 16238 16239 16240 16241 16242 16243 16244 16245 16246 16247 16248 16249 16250 16251 16252 16253 16254 16255 16256 16257 16258 16259 16260 16261 16262 16263 16264 16265 16266 16267 16268 16269 16270 16271 16272 16273 16274 16275 16276 16277 16278 16279 16280 16281 16282 16283 16284 16285 16286 16287 16288 16289 16290 16291 16292 16293 16294 16295 16296 16297 16298 16299 16300 16301 16302 16303 16304 16305 16306 16307 16308 16309 16310 16311 16312 16313 16314 16315 16316 16317 16318 16319 16320 16321 16322 16323 16324 16325 16326 16327 16328 16329 16330 16331 16332 16333 16334 16335 16336 16337 16338 16339 16340 16341 16342 16343 16344 16345 16346 16347 16348 16349 16350 16351 16352 16353 16354 16355 16356 16357 16358 16359 16360 16361 16362 16363 16364 16365 16366 16367 16368 16369 16370 16371 16372 16373 16374 16375 16376 16377 16378 16379 16380 16381 16382 16383 16384 16385 16386 16387 16388 16389 16390 16391 16392 16393 16394 16395 16396 16397 16398 16399 16400 16401 16402 16403 16404 16405 16406 16407 16408 16409 16410 16411 16412 16413 16414 16415 16416 16417 16418 16419 16420 16421 16422 16423 16424 16425 16426 16427 16428 16429 16430 16431 16432 16433 16434 16435 16436 16437 16438 16439 16440 16441 16442 16443 16444 16445 16446 16447 16448 16449 16450 16451 16452 16453 16454 16455 16456 16457 16458 16459 16460 16461 16462 16463 16464 16465 16466 16467 16468 16469 16470 16471 16472 16473 16474 16475 16476 16477 16478 16479 16480 16481 16482 16483 16484 16485 16486 16487 16488 16489 16490 16491 16492 16493 16494 16495 16496 16497 16498 16499 16500 16501 16502 16503 16504 16505 16506 16507 16508 16509 16510 16511 16512 16513 16514 16515 16516 16517 16518 16519 16520 16521 16522 16523 16524 16525 16526 16527 16528 16529 16530 16531 16532 16533 16534 16535 16536 16537 16538 16539 16540 16541 16542 16543 16544 16545 16546 16547 16548 16549 16550 16551 16552 16553 16554 16555 16556 16557 16558 16559 16560 16561 16562 16563 16564 16565 16566 16567 16568 16569 16570 16571 16572 16573 16574 16575 16576 16577 16578 16579 16580 16581 16582 16583 16584 16585 16586 16587 16588 16589 16590 16591 16592 16593 16594 16595 16596 16597 16598 16599 16600 16601 16602 16603 16604 16605 16606 16607 16608 16609 16610 16611 16612 16613 16614 16615 16616 16617 16618 16619 16620 16621 16622 16623 16624 16625 16626 16627 16628 16629 16630 16631 16632 16633 16634 16635 16636 16637 16638 16639 16640 16641 16642 16643 16644 16645 16646 16647 16648 16649 16650 16651 16652 16653 16654 16655 16656 16657 16658 16659 16660 16661 16662 16663 16664 16665 16666 16667 16668 16669 16670 16671 16672 16673 16674 16675 16676 16677 16678 16679 16680 16681 16682 16683 16684 16685 16686 16687 16688 16689 16690 16691 16692 16693 16694 16695 16696 16697 16698 16699 16700 16701 16702 16703 16704 16705 16706 16707 16708 16709 16710 16711 16712 16713 16714 16715 16716 16717 16718 16719 16720 16721 16722 16723 16724 16725 16726 16727 16728 16729 16730 16731 16732 16733 16734 16735 16736 16737 16738 16739 16740 16741 16742 16743 16744 16745 16746 16747 16748 16749 16750 16751 16752 16753 16754 16755 16756 16757 16758 16759 16760 16761 16762 16763 16764 16765 16766 16767 16768 16769 16770 16771 16772 16773 16774 16775 16776 16777 16778 16779 16780 16781 16782 16783 16784 16785 16786 16787 16788 16789 16790 16791 16792 16793 16794 16795 16796 16797 16798 16799 16800 16801 16802 16803 16804 16805 16806 16807 16808 16809 16810 16811 16812 16813 16814 16815 16816 16817 16818 16819 16820 16821 16822 16823 16824 16825 16826 16827 16828 16829 16830 16831 16832 16833 16834 16835 16836 16837 16838 16839 16840 16841 16842 16843 16844 16845 16846 16847 16848 16849 16850 16851 16852 16853 16854 16855 16856 16857 16858 16859 16860 16861 16862 16863 16864 16865 16866 16867 16868 16869 16870 16871 16872 16873 16874 16875 16876 16877 16878 16879 16880 16881 16882 16883 16884 16885 16886 16887 16888 16889 16890 16891 16892 16893 16894 16895 16896 16897 16898 16899 16900 16901 16902 16903 16904 16905 16906 16907 16908 16909 16910 16911 16912 16913 16914 16915 16916 16917 16918 16919 16920 16921 16922 16923 16924 16925 16926 16927 16928 16929 16930 16931 16932 16933 16934 16935 16936 16937 16938 16939 16940 16941 16942 16943 16944 16945 16946 16947 16948 16949 16950 16951 16952 16953 16954 16955 16956 16957 16958 16959 16960 16961 16962 16963 16964 16965 16966 16967 16968 16969 16970 16971 16972 16973 16974 16975 16976 16977 16978 16979 16980 16981 16982 16983 16984 16985 16986 16987 16988 16989 16990 16991 16992 16993 16994 16995 16996 16997 16998 16999 17000 17001 17002 17003 17004 17005 17006 17007 17008 17009 17010 17011 17012 17013 17014 17015 17016 17017 17018 17019 17020 17021 17022 17023 17024 17025 17026 17027 17028 17029 17030 17031 17032 17033 17034 17035 17036 17037 17038 17039 17040 17041 17042 17043 17044 17045 17046 17047 17048 17049 17050 17051 17052 17053 17054 17055 17056 17057 17058 17059 17060 17061 17062 17063 17064 17065 17066 17067 17068 17069 17070 17071 17072 17073 17074 17075 17076 17077 17078 17079 17080 17081 17082 17083 17084 17085 17086 17087 17088 17089 17090 17091 17092 17093 17094 17095 17096 17097 17098 17099 17100 17101 17102 17103 17104 17105 17106 17107 17108 17109 17110 17111 17112 17113 17114 17115 17116 17117 17118 17119 17120 17121 17122 17123 17124 17125 17126 17127 17128 17129 17130 17131 17132 17133 17134 17135 17136 17137 17138 17139 17140 17141 17142 17143 17144 17145 17146 17147 17148 17149 17150 17151 17152 17153 17154 17155 17156 17157 17158 17159 17160 17161 17162 17163 17164 17165 17166 17167 17168 17169 17170 17171 17172 17173 17174 17175 17176 17177 17178 17179 17180 17181 17182 17183 17184 17185 17186 17187 17188 17189 17190 17191 17192 17193 17194 17195 17196 17197 17198 17199 17200 17201 17202 17203 17204 17205 17206 17207 17208 17209 17210 17211 17212 17213 17214 17215 17216 17217 17218 17219 17220 17221 17222 17223 17224 17225 17226 17227 17228 17229 17230 17231 17232 17233 17234 17235 17236 17237 17238 17239 17240 17241 17242 17243 17244 17245 17246 17247 17248 17249 17250 17251 17252 17253 17254 17255 17256 17257 17258 17259 17260 17261 17262 17263 17264 17265 17266 17267 17268 17269 17270 17271 17272 17273 17274 17275 17276 17277 17278 17279 17280 17281 17282 17283 17284 17285 17286 17287 17288 17289 17290 17291 17292 17293 17294 17295 17296 17297 17298 17299 17300 17301 17302 17303 17304 17305 17306 17307 17308 17309 17310 17311 17312 17313 17314 17315 17316 17317 17318 17319 17320 17321 17322 17323 17324 17325 17326 17327 17328 17329 17330 17331 17332 17333 17334 17335 17336 17337 17338 17339 17340 17341 17342 17343 17344 17345 17346 17347 17348 17349 17350 17351 17352 17353 17354 17355 17356 17357 17358 17359 17360 17361 17362 17363 17364 17365 17366 17367 17368 17369 17370 17371 17372 17373 17374 17375 17376 17377 17378 17379 17380 17381 17382 17383 17384 17385 17386 17387 17388 17389 17390 17391 17392 17393 17394 17395 17396 17397 17398 17399 17400 17401 17402 17403 17404 17405 17406 17407 17408 17409 17410 17411 17412 17413 17414 17415 17416 17417 17418 17419 17420 17421 17422 17423 17424 17425 17426 17427 17428 17429 17430 17431 17432 17433 17434 17435 17436 17437 17438 17439 17440 17441 17442 17443 17444 17445 17446 17447 17448 17449 17450 17451 17452 17453 17454 17455 17456 17457 17458 17459 17460 17461 17462 17463 17464 17465 17466 17467 17468 17469 17470 17471 17472 17473 17474 17475 17476 17477 17478 17479 17480 17481 17482 17483 17484 17485 17486 17487 17488 17489 17490 17491 17492 17493 17494 17495 17496 17497 17498 17499 17500 17501 17502 17503 17504 17505 17506 17507 17508 17509 17510 17511 17512 17513 17514 17515 17516 17517 17518 17519 17520 17521 17522 17523 17524 17525 17526 17527 17528 17529 17530 17531 17532 17533 17534 17535 17536 17537 17538 17539 17540 17541 17542 17543 17544 17545 17546 17547 17548 17549 17550 17551 17552 17553 17554 17555 17556 17557 17558 17559 17560 17561 17562 17563 17564 17565 17566 17567 17568 17569 17570 17571 17572 17573 17574 17575 17576 17577 17578 17579 17580 17581 17582 17583 17584 17585 17586 17587 17588 17589 17590 17591 17592 17593 17594 17595 17596 17597 17598 17599 17600 17601 17602 17603 17604 17605 17606 17607 17608 17609 17610 17611 17612 17613 17614 17615 17616 17617 17618 17619 17620 17621 17622 17623 17624 17625 17626 17627 17628 17629 17630 17631 17632 17633 17634 17635 17636 17637 17638 17639 17640 17641 17642 17643 17644 17645 17646 17647 17648 17649 17650 17651 17652 17653 17654 17655 17656 17657 17658 17659 17660 17661 17662 17663 17664 17665 17666 17667 17668 17669 17670 17671 17672 17673 17674 17675 17676 17677 17678 17679 17680 17681 17682 17683 17684 17685 17686 17687 17688 17689 17690 17691 17692 17693 17694 17695 17696 17697 17698 17699 17700 17701 17702 17703 17704 17705 17706 17707 17708 17709 17710 17711 17712 17713 17714 17715 17716 17717 17718 17719 17720 17721 17722 17723 17724 17725 17726 17727 17728 17729 17730 17731 17732 17733 17734 17735 17736 17737 17738 17739 17740 17741 17742 17743 17744 17745 17746 17747 17748 17749 17750 17751 17752 17753 17754 17755 17756 17757 17758 17759 17760 17761 17762 17763 17764 17765 17766 17767 17768 17769 17770 17771 17772 17773 17774 17775 17776 17777 17778 17779 17780 17781 17782 17783 17784 17785 17786 17787 17788 17789 17790 17791 17792 17793 17794 17795 17796 17797 17798 17799 17800 17801 17802 17803 17804 17805 17806 17807 17808 17809 17810 17811 17812 17813 17814 17815 17816 17817 17818 17819 17820 17821 17822 17823 17824 17825 17826 17827 17828 17829 17830 17831 17832 17833 17834 17835 17836 17837 17838 17839 17840 17841 17842 17843 17844 17845 17846 17847 17848 17849 17850 17851 17852 17853 17854 17855 17856 17857 17858 17859 17860 17861 17862 17863 17864 17865 17866 17867 17868 17869 17870 17871 17872 17873 17874 17875 17876 17877 17878 17879 17880 17881 17882 17883 17884 17885 17886 17887 17888 17889 17890 17891 17892 17893 17894 17895 17896 17897 17898 17899 17900 17901 17902 17903 17904 17905 17906 17907 17908 17909 17910 17911 17912 17913 17914 17915 17916 17917 17918 17919 17920 17921 17922 17923 17924 17925 17926 17927 17928 17929 17930 17931 17932 17933 17934 17935 17936 17937 17938 17939 17940 17941 17942 17943 17944 17945 17946 17947 17948 17949 17950 17951 17952 17953 17954 17955 17956 17957 17958 17959 17960 17961 17962 17963 17964 17965 17966 17967 17968 17969 17970 17971 17972 17973 17974 17975 17976 17977 17978 17979 17980 17981 17982 17983 17984 17985 17986 17987 17988 17989 17990 17991 17992 17993 17994 17995 17996 17997 17998 17999 18000 18001 18002 18003 18004 18005 18006 18007 18008 18009 18010 18011 18012 18013 18014 18015 18016 18017 18018 18019 18020 18021 18022 18023 18024 18025 18026 18027 18028 18029 18030 18031 18032 18033 18034 18035 18036 18037 18038 18039 18040 18041 18042 18043 18044 18045 18046 18047 18048 18049 18050 18051 18052 18053 18054 18055 18056 18057 18058 18059 18060 18061 18062 18063 18064 18065 18066 18067 18068 18069 18070 18071 18072 18073 18074 18075 18076 18077 18078 18079 18080 18081 18082 18083 18084 18085 18086 18087 18088 18089 18090 18091 18092 18093 18094 18095 18096 18097 18098 18099 18100 18101 18102 18103 18104 18105 18106 18107 18108 18109 18110 18111 18112 18113 18114 18115 18116 18117 18118 18119 18120 18121 18122 18123 18124 18125 18126 18127 18128 18129 18130 18131 18132 18133 18134 18135 18136 18137 18138 18139 18140 18141 18142 18143 18144 18145 18146 18147 18148 18149 18150 18151 18152 18153 18154 18155 18156 18157 18158 18159 18160 18161 18162 18163 18164 18165 18166 18167 18168 18169 18170 18171 18172 18173 18174 18175 18176 18177 18178 18179 18180 18181 18182 18183 18184 18185 18186 18187 18188 18189 18190 18191 18192 18193 18194 18195 18196 18197 18198 18199 18200 18201 18202 18203 18204 18205 18206 18207 18208 18209 18210 18211 18212 18213 18214 18215 18216 18217 18218 18219 18220 18221 18222 18223 18224 18225 18226 18227 18228 18229 18230 18231 18232 18233 18234 18235 18236 18237 18238 18239 18240 18241 18242 18243 18244 18245 18246 18247 18248 18249 18250 18251 18252 18253 18254 18255 18256 18257 18258 18259 18260 18261 18262 18263 18264 18265 18266 18267 18268 18269 18270 18271 18272 18273 18274 18275 18276 18277 18278 18279 18280 18281 18282 18283 18284 18285 18286 18287 18288 18289 18290 18291 18292 18293 18294 18295 18296 18297 18298 18299 18300 18301 18302 18303 18304 18305 18306 18307 18308 18309 18310 18311 18312 18313 18314 18315 18316 18317 18318 18319 18320 18321 18322 18323 18324 18325 18326 18327 18328 18329 18330 18331 18332 18333 18334 18335 18336 18337 18338 18339 18340 18341 18342 18343 18344 18345 18346 18347 18348 18349 18350 18351 18352 18353 18354 18355 18356 18357 18358 18359 18360 18361 18362 18363 18364 18365 18366 18367 18368 18369 18370 18371 18372 18373 18374 18375 18376 18377 18378 18379 18380 18381 18382 18383 18384 18385 18386 18387 18388 18389 18390 18391 18392 18393 18394 18395 18396 18397 18398 18399 18400 18401 18402 18403 18404 18405 18406 18407 18408 18409 18410 18411 18412 18413 18414 18415 18416 18417 18418 18419 18420 18421 18422 18423 18424 18425 18426 18427 18428 18429 18430 18431 18432 18433 18434 18435 18436 18437 18438 18439 18440 18441 18442 18443 18444 18445 18446 18447 18448 18449 18450 18451 18452 18453 18454 18455 18456 18457 18458 18459 18460 18461 18462 18463 18464 18465 18466 18467 18468 18469 18470 18471 18472 18473 18474 18475 18476 18477 18478 18479 18480 18481 18482 18483 18484 18485 18486 18487 18488 18489 18490 18491 18492 18493 18494 18495 18496 18497 18498 18499 18500 18501 18502 18503 18504 18505 18506 18507 18508 18509 18510 18511 18512 18513 18514 18515 18516 18517 18518 18519 18520 18521 18522 18523 18524 18525 18526 18527 18528 18529 18530 18531 18532 18533 18534 18535 18536 18537 18538 18539 18540 18541 18542 18543 18544 18545 18546 18547 18548 18549 18550 18551 18552 18553 18554 18555 18556 18557 18558 18559 18560 18561 18562 18563 18564 18565 18566 18567 18568 18569 18570 18571 18572 18573 18574 18575 18576 18577 18578 18579 18580 18581 18582 18583 18584 18585 18586 18587 18588 18589 18590 18591 18592 18593 18594 18595 18596 18597 18598 18599 18600 18601 18602 18603 18604 18605 18606 18607 18608 18609 18610 18611 18612 18613 18614 18615 18616 18617 18618 18619 18620 18621 18622 18623 18624 18625 18626 18627 18628 18629 18630 18631 18632 18633 18634 18635 18636 18637 18638 18639 18640 18641 18642 18643 18644 18645 18646 18647 18648 18649 18650 18651 18652 18653 18654 18655 18656 18657 18658 18659 18660 18661 18662 18663 18664 18665 18666 18667 18668 18669 18670 18671 18672 18673 18674 18675 18676 18677 18678 18679 18680 18681 18682 18683 18684 18685 18686 18687 18688 18689 18690 18691 18692 18693 18694 18695 18696 18697 18698 18699 18700 18701 18702 18703 18704 18705 18706 18707 18708 18709 18710 18711 18712 18713 18714 18715 18716 18717 18718 18719 18720 18721 18722 18723 18724 18725 18726 18727 18728 18729 18730 18731 18732 18733 18734 18735 18736 18737 18738 18739 18740 18741 18742 18743 18744 18745 18746 18747 18748 18749 18750 18751 18752 18753 18754 18755 18756 18757 18758 18759 18760 18761 18762 18763 18764 18765 18766 18767 18768 18769 18770 18771 18772 18773 18774 18775 18776 18777 18778 18779 18780 18781 18782 18783 18784 18785 18786 18787 18788 18789 18790 18791 18792 18793 18794 18795 18796 18797 18798 18799 18800 18801 18802 18803 18804 18805 18806 18807 18808 18809 18810 18811 18812 18813 18814 18815 18816 18817 18818 18819 18820 18821 18822 18823 18824 18825 18826 18827 18828 18829 18830 18831 18832 18833 18834 18835 18836 18837 18838 18839 18840 18841 18842 18843 18844 18845 18846 18847 18848 18849 18850 18851 18852 18853 18854 18855 18856 18857 18858 18859 18860 18861 18862 18863 18864 18865 18866 18867 18868 18869 18870 18871 18872 18873 18874 18875 18876 18877 18878 18879 18880 18881 18882 18883 18884 18885 18886 18887 18888 18889 18890 18891 18892 18893 18894 18895 18896 18897 18898 18899 18900 18901 18902 18903 18904 18905 18906 18907 18908 18909 18910 18911 18912 18913 18914 18915 18916 18917 18918 18919 18920 18921 18922 18923 18924 18925 18926 18927 18928 18929 18930 18931 18932 18933 18934 18935 18936 18937 18938 18939 18940 18941 18942 18943 18944 18945 18946 18947 18948 18949 18950 18951 18952 18953 18954 18955 18956 18957 18958 18959 18960 18961 18962 18963 18964 18965 18966 18967 18968 18969 18970 18971 18972 18973 18974 18975 18976 18977 18978 18979 18980 18981 18982 18983 18984 18985 18986 18987 18988 18989 18990 18991 18992 18993 18994 18995 18996 18997 18998 18999 19000 19001 19002 19003 19004 19005 19006 19007 19008 19009 19010 19011 19012 19013 19014 19015 19016 19017 19018 19019 19020 19021 19022 19023 19024 19025 19026 19027 19028 19029 19030 19031 19032 19033 19034 19035 19036 19037 19038 19039 19040 19041 19042 19043 19044 19045 19046 19047 19048 19049 19050 19051 19052 19053 19054 19055 19056 19057 19058 19059 19060 19061 19062 19063 19064 19065 19066 19067 19068 19069 19070 19071 19072 19073 19074 19075 19076 19077 19078 19079 19080 19081 19082 19083 19084 19085 19086 19087 19088 19089 19090 19091 19092 19093 19094 19095 19096 19097 19098 19099 19100 19101 19102 19103 19104 19105 19106 19107 19108 19109 19110 19111 19112 19113 19114 19115 19116 19117 19118 19119 19120 19121 19122 19123 19124 19125 19126 19127 19128 19129 19130 19131 19132 19133 19134 19135 19136 19137 19138 19139 19140 19141 19142 19143 19144 19145 19146 19147 19148 19149 19150 19151 19152 19153 19154 19155 19156 19157 19158 19159 19160 19161 19162 19163 19164 19165 19166 19167 19168 19169 19170 19171 19172 19173 19174 19175 19176 19177 19178 19179 19180 19181 19182 19183 19184 19185 19186 19187 19188 19189 19190 19191 19192 19193 19194 19195 19196 19197 19198 19199 19200 19201 19202 19203 19204 19205 19206 19207 19208 19209 19210 19211 19212 19213 19214 19215 19216 19217 19218 19219 19220 19221 19222 19223 19224 19225 19226 19227 19228 19229 19230 19231 19232 19233 19234 19235 19236 19237 19238 19239 19240 19241 19242 19243 19244 19245 19246 19247 19248 19249 19250 19251 19252 19253 19254 19255 19256 19257 19258 19259 19260 19261 19262 19263 19264 19265 19266 19267 19268 19269 19270 19271 19272 19273 19274 19275 19276 19277 19278 19279 19280 19281 19282 19283 19284 19285 19286 19287 19288 19289 19290 19291 19292 19293 19294 19295 19296 19297 19298 19299 19300 19301 19302 19303 19304 19305 19306 19307 19308 19309 19310 19311 19312 19313 19314 19315 19316 19317 19318 19319 19320 19321 19322 19323 19324 19325 19326 19327 19328 19329 19330 19331 19332 19333 19334 19335 19336 19337 19338 19339 19340 19341 19342 19343 19344 19345 19346 19347 19348 19349 19350 19351 19352 19353 19354 19355 19356 19357 19358 19359 19360 19361 19362 19363 19364 19365 19366 19367 19368 19369 19370 19371 19372 19373 19374 19375 19376 19377 19378 19379 19380 19381 19382 19383 19384 19385 19386 19387 19388 19389 19390 19391 19392 19393 19394 19395 19396 19397 19398 19399 19400 19401 19402 19403 19404 19405 19406 19407 19408 19409 19410 19411 19412 19413 19414 19415 19416 19417 19418 19419 19420 19421 19422 19423 19424 19425 19426 19427 19428 19429 19430 19431 19432 19433 19434 19435 19436 19437 19438 19439 19440 19441 19442 19443 19444 19445 19446 19447 19448 19449 19450 19451 19452 19453 19454 19455 19456 19457 19458 19459 19460 19461 19462 19463 19464 19465 19466 19467 19468 19469 19470 19471 19472 19473 19474 19475 19476 19477 19478 19479 19480 19481 19482 19483 19484 19485 19486 19487 19488 19489 19490 19491 19492 19493 19494 19495 19496 19497 19498 19499 19500 19501 19502 19503 19504 19505 19506 19507 19508 19509 19510 19511 19512 19513 19514 19515 19516 19517 19518 19519 19520 19521 19522 19523 19524 19525 19526 19527 19528 19529 19530 19531 19532 19533 19534 19535 19536 19537 19538 19539 19540 19541 19542 19543 19544 19545 19546 19547 19548 19549 19550 19551 19552 19553 19554 19555 19556 19557 19558 19559 19560 19561 19562 19563 19564 19565 19566 19567 19568 19569 19570 19571 19572 19573 19574 19575 19576 19577 19578 19579 19580 19581 19582 19583 19584 19585 19586 19587 19588 19589 19590 19591 19592 19593 19594 19595 19596 19597 19598 19599 19600 19601 19602 19603 19604 19605 19606 19607 19608 19609 19610 19611 19612 19613 19614 19615 19616 19617 19618 19619 19620 19621 19622 19623 19624 19625 19626 19627 19628 19629 19630 19631 19632 19633 19634 19635 19636 19637 19638 19639 19640 19641 19642 19643 19644 19645 19646 19647 19648 19649 19650 19651 19652 19653 19654 19655 19656 19657 19658 19659 19660 19661 19662 19663 19664 19665 19666 19667 19668 19669 19670 19671 19672 19673 19674 19675 19676 19677 19678 19679 19680 19681 19682 19683 19684 19685 19686 19687 19688 19689 19690 19691 19692 19693 19694 19695 19696 19697 19698 19699 19700 19701 19702 19703 19704 19705 19706 19707 19708 19709 19710 19711 19712 19713 19714 19715 19716 19717 19718 19719 19720 19721 19722 19723 19724 19725 19726 19727 19728 19729 19730 19731 19732 19733 19734 19735 19736 19737 19738 19739 19740 19741 19742 19743 19744 19745 19746 19747 19748 19749 19750 19751 19752 19753 19754 19755 19756 19757 19758 19759 19760 19761 19762 19763 19764 19765 19766 19767 19768 19769 19770 19771 19772 19773 19774 19775 19776 19777 19778 19779 19780 19781 19782 19783 19784 19785 19786 19787 19788 19789 19790 19791 19792 19793 19794 19795 19796 19797 19798 19799 19800 19801 19802 19803 19804 19805 19806 19807 19808 19809 19810 19811 19812 19813 19814 19815 19816 19817 19818 19819 19820 19821 19822 19823 19824 19825 19826 19827 19828 19829 19830 19831 19832 19833 19834 19835 19836 19837 19838 19839 19840 19841 19842 19843 19844 19845 19846 19847 19848 19849 19850 19851 19852 19853 19854 19855 19856 19857 19858 19859 19860 19861 19862 19863 19864 19865 19866 19867 19868 19869 19870 19871 19872 19873 19874 19875 19876 19877 19878 19879 19880 19881 19882 19883 19884 19885 19886 19887 19888 19889 19890 19891 19892 19893 19894 19895 19896 19897 19898 19899 19900 19901 19902 19903 19904 19905 19906 19907 19908 19909 19910 19911 19912 19913 19914 19915 19916 19917 19918 19919 19920 19921 19922 19923 19924 19925 19926 19927 19928 19929 19930 19931 19932 19933 19934 19935 19936 19937 19938 19939 19940 19941 19942 19943 19944 19945 19946 19947 19948 19949 19950 19951 19952 19953 19954 19955 19956 19957 19958 19959 19960 19961 19962 19963 19964 19965 19966 19967 19968 19969 19970 19971 19972 19973 19974 19975 19976 19977 19978 19979 19980 19981 19982 19983 19984 19985 19986 19987 19988 19989 19990 19991 19992 19993 19994 19995 19996 19997 19998 19999 20000 20001 20002 20003 20004 20005 20006 20007 20008 20009 20010 20011 20012 20013 20014 20015 20016 20017 20018 20019 20020 20021 20022 20023 20024 20025 20026 20027 20028 20029 20030 20031 20032 20033 20034 20035 20036 20037 20038 20039 20040 20041 20042 20043 20044 20045 20046 20047 20048 20049 20050 20051 20052 20053 20054 20055 20056 20057 20058 20059 20060 20061 20062 20063 20064 20065 20066 20067 20068 20069 20070 20071 20072 20073 20074 20075 20076 20077 20078 20079 20080 20081 20082 20083 20084 20085 20086 20087 20088 20089 20090 20091 20092 20093 20094 20095 20096 20097 20098 20099 20100 20101 20102 20103 20104 20105 20106 20107 20108 20109 20110 20111 20112 20113 20114 20115 20116 20117 20118 20119 20120 20121 20122 20123 20124 20125 20126 20127 20128 20129 20130 20131 20132 20133 20134 20135 20136 20137 20138 20139 20140 20141 20142 20143 20144 20145 20146 20147 20148 20149 20150 20151 20152 20153 20154 20155 20156 20157 20158 20159 20160 20161 20162 20163 20164 20165 20166 20167 20168 20169 20170 20171 20172 20173 20174 20175 20176 20177 20178 20179 20180 20181 20182 20183 20184 20185 20186 20187 20188 20189 20190 20191 20192 20193 20194 20195 20196 20197 20198 20199 20200 20201 20202 20203 20204 20205 20206 20207 20208 20209 20210 20211 20212 20213 20214 20215 20216 20217 20218 20219 20220 20221 20222 20223 20224 20225 20226 20227 20228 20229 20230 20231 20232 20233 20234 20235 20236 20237 20238 20239 20240 20241 20242 20243 20244 20245 20246 20247 20248 20249 20250 20251 20252 20253 20254 20255 20256 20257 20258 20259 20260 20261 20262 20263 20264 20265 20266 20267 20268 20269 20270 20271 20272 20273 20274 20275 20276 20277 20278 20279 20280 20281 20282 20283 20284 20285 20286 20287 20288 20289 20290 20291 20292 20293 20294 20295 20296 20297 20298 20299 20300 20301 20302 20303 20304 20305 20306 20307 20308 20309 20310 20311 20312 20313 20314 20315 20316 20317 20318 20319 20320 20321 20322 20323 20324 20325 20326 20327 20328 20329 20330 20331 20332 20333 20334 20335 20336 20337 20338 20339 20340 20341 20342 20343 20344 20345 20346 20347 20348 20349 20350 20351 20352 20353 20354 20355 20356 20357 20358 20359 20360 20361 20362 20363 20364 20365 20366 20367 20368 20369 20370 20371 20372 20373 20374 20375 20376 20377 20378 20379 20380 20381 20382 20383 20384 20385 20386 20387 20388 20389 20390 20391 20392 20393 20394 20395 20396 20397 20398 20399 20400 20401 20402 20403 20404 20405 20406 20407 20408 20409 20410 20411 20412 20413 20414 20415 20416 20417 20418 20419 20420 20421 20422 20423 20424 20425 20426 20427 20428 20429 20430 20431 20432 20433 20434 20435 20436 20437 20438 20439 20440 20441 20442 20443 20444 20445 20446 20447 20448 20449 20450 20451 20452 20453 20454 20455 20456 20457 20458 20459 20460 20461 20462 20463 20464 20465 20466 20467 20468 20469 20470 20471 20472 20473 20474 20475 20476 20477 20478 20479 20480 20481 20482 20483 20484 20485 20486 20487 20488 20489 20490 20491 20492 20493 20494 20495 20496 20497 20498 20499 20500 20501 20502 20503 20504 20505 20506 20507 20508 20509 20510 20511 20512 20513 20514 20515 20516 20517 20518 20519 20520 20521 20522 20523 20524 20525 20526 20527 20528 20529 20530 20531 20532 20533 20534 20535 20536 20537 20538 20539 20540 20541 20542 20543 20544 20545 20546 20547 20548 20549 20550 20551 20552 20553 20554 20555 20556 20557 20558 20559 20560 20561 20562 20563 20564 20565 20566 20567 20568 20569 20570 20571 20572 20573 20574 20575 20576 20577 20578 20579 20580 20581 20582 20583 20584 20585 20586 20587 20588 20589 20590 20591 20592 20593 20594 20595 20596 20597 20598 20599 20600 20601 20602 20603 20604 20605 20606 20607 20608 20609 20610 20611 20612 20613 20614 20615 20616 20617 20618 20619 20620 20621 20622 20623 20624 20625 20626 20627 20628 20629 20630 20631 20632 20633 20634 20635 20636 20637 20638 20639 20640 20641 20642 20643 20644 20645 20646 20647 20648 20649 20650 20651 20652 20653 20654 20655 20656 20657 20658 20659 20660 20661 20662 20663 20664 20665 20666 20667 20668 20669 20670 20671 20672 20673 20674 20675 20676 20677 20678 20679 20680 20681 20682 20683 20684 20685 20686 20687 20688 20689 20690 20691 20692 20693 20694 20695 20696 20697 20698 20699 20700 20701 20702 20703 20704 20705 20706 20707 20708 20709 20710 20711 20712 20713 20714 20715 20716 20717 20718 20719 20720 20721 20722 20723 20724 20725 20726 20727 20728 20729 20730 20731 20732 20733 20734 20735 20736 20737 20738 20739 20740 20741 20742 20743 20744 20745 20746 20747 20748 20749 20750 20751 20752 20753 20754 20755 20756 20757 20758 20759 20760 20761 20762 20763 20764 20765 20766 20767 20768 20769 20770 20771 20772 20773 20774 20775 20776 20777 20778 20779 20780 20781 20782 20783 20784 20785 20786 20787 20788 20789 20790 20791 20792 20793 20794 20795 20796 20797 20798 20799 20800 20801 20802 20803 20804 20805 20806 20807 20808 20809 20810 20811 20812 20813 20814 20815 20816 20817 20818 20819 20820 20821 20822 20823 20824 20825 20826 20827 20828 20829 20830 20831 20832 20833 20834 20835 20836 20837 20838 20839 20840 20841 20842 20843 20844 20845 20846 20847 20848 20849 20850 20851 20852 20853 20854 20855 20856 20857 20858 20859 20860 20861 20862 20863 20864 20865 20866 20867 20868 20869 20870 20871 20872 20873 20874 20875 20876 20877 20878 20879 20880 20881 20882 20883 20884 20885 20886 20887 20888 20889 20890 20891 20892 20893 20894 20895 20896 20897 20898 20899 20900 20901 20902 20903 20904 20905 20906 20907 20908 20909 20910 20911 20912 20913 20914 20915 20916 20917 20918 20919 20920 20921 20922 20923 20924 20925 20926 20927 20928 20929 20930 20931 20932 20933 20934 20935 20936 20937 20938 20939 20940 20941 20942 20943 20944 20945 20946 20947 20948 20949 20950 20951 20952 20953 20954 20955 20956 20957 20958 20959 20960 20961 20962 20963 20964 20965 20966 20967 20968 20969 20970 20971 20972 20973 20974 20975 20976 20977 20978 20979 20980 20981 20982 20983 20984 20985 20986 20987 20988 20989 20990 20991 20992 20993 20994 20995 20996 20997 20998 20999 21000 21001 21002 21003 21004 21005 21006 21007 21008 21009 21010 21011 21012 21013 21014 21015 21016 21017 21018 21019 21020 21021 21022 21023 21024 21025 21026 21027 21028 21029 21030 21031 21032 21033 21034 21035 21036 21037 21038 21039 21040 21041 21042 21043 21044 21045 21046 21047 21048 21049 21050 21051 21052 21053 21054 21055 21056 21057 21058 21059 21060 21061 21062 21063 21064 21065 21066 21067 21068 21069 21070 21071 21072 21073 21074 21075 21076 21077 21078 21079 21080 21081 21082 21083 21084 21085 21086 21087 21088 21089 21090 21091 21092 21093 21094 21095 21096 21097 21098 21099 21100 21101 21102 21103 21104 21105 21106 21107 21108 21109 21110 21111 21112 21113 21114 21115 21116 21117 21118 21119 21120 21121 21122 21123 21124 21125 21126 21127 21128 21129 21130 21131 21132 21133 21134 21135 21136 21137 21138 21139 21140 21141 21142 21143 21144 21145 21146 21147 21148 21149 21150 21151 21152 21153 21154 21155 21156 21157 21158 21159 21160 21161 21162 21163 21164 21165 21166 21167 21168 21169 21170 21171 21172 21173 21174 21175 21176 21177 21178 21179 21180 21181 21182 21183 21184 21185 21186 21187 21188 21189 21190 21191 21192 21193 21194 21195 21196 21197 21198 21199 21200 21201 21202 21203 21204 21205 21206 21207 21208 21209 21210 21211 21212 21213 21214 21215 21216 21217 21218 21219 21220 21221 21222 21223 21224 21225 21226 21227 21228 21229 21230 21231 21232 21233 21234 21235 21236 21237 21238 21239 21240 21241 21242 21243 21244 21245 21246 21247 21248 21249 21250 21251 21252 21253 21254 21255 21256 21257 21258 21259 21260 21261 21262 21263 21264 21265 21266 21267 21268 21269 21270 21271 21272 21273 21274 21275 21276 21277 21278 21279 21280 21281 21282 21283 21284 21285 21286 21287 21288 21289 21290 21291 21292 21293 21294 21295 21296 21297 21298 21299 21300 21301 21302 21303 21304 21305 21306 21307 21308 21309 21310 21311 21312 21313 21314 21315 21316 21317 21318 21319 21320 21321 21322 21323 21324 21325 21326 21327 21328 21329 21330 21331 21332 21333 21334 21335 21336 21337 21338 21339 21340 21341 21342 21343 21344 21345 21346 21347 21348 21349 21350 21351 21352 21353 21354 21355 21356 21357 21358 21359 21360 21361 21362 21363 21364 21365 21366 21367 21368 21369 21370 21371 21372 21373 21374 21375 21376 21377 21378 21379 21380 21381 21382 21383 21384 21385 21386 21387 21388 21389 21390 21391 21392 21393 21394 21395 21396 21397 21398 21399 21400 21401 21402 21403 21404 21405 21406 21407 21408 21409 21410 21411 21412 21413 21414 21415 21416 21417 21418 21419 21420 21421 21422 21423 21424 21425 21426 21427 21428 21429 21430 21431 21432 21433 21434 21435 21436 21437 21438 21439 21440 21441 21442 21443 21444 21445 21446 21447 21448 21449 21450 21451 21452 21453 21454 21455 21456 21457 21458 21459 21460 21461 21462 21463 21464 21465 21466 21467 21468 21469 21470 21471 21472 21473 21474 21475 21476 21477 21478 21479 21480 21481 21482 21483 21484 21485 21486 21487 21488 21489 21490 21491 21492 21493 21494 21495 21496 21497 21498 21499 21500 21501 21502 21503 21504 21505 21506 21507 21508 21509 21510 21511 21512 21513 21514 21515 21516 21517 21518 21519 21520 21521 21522 21523 21524 21525 21526 21527 21528 21529 21530 21531 21532 21533 21534 21535 21536 21537 21538 21539 21540 21541 21542 21543 21544 21545 21546 21547 21548 21549 21550 21551 21552 21553 21554 21555 21556 21557 21558 21559 21560 21561 21562 21563 21564 21565 21566 21567 21568 21569 21570 21571 21572 21573 21574 21575 21576 21577 21578 21579 21580 21581 21582 21583 21584 21585 21586 21587 21588 21589 21590 21591 21592 21593 21594 21595 21596 21597 21598 21599 21600 21601 21602 21603 21604 21605 21606 21607 21608 21609 21610 21611 21612 21613 21614 21615 21616 21617 21618 21619 21620 21621 21622 21623 21624 21625 21626 21627 21628 21629 21630 21631 21632 21633 21634 21635 21636 21637 21638 21639 21640 21641 21642 21643 21644 21645 21646 21647 21648 21649 21650 21651 21652 21653 21654 21655 21656 21657 21658 21659 21660 21661 21662 21663 21664 21665 21666 21667 21668 21669 21670 21671 21672 21673 21674 21675 21676 21677 21678 21679 21680 21681 21682 21683 21684 21685 21686 21687 21688 21689 21690 21691 21692 21693 21694 21695 21696 21697 21698 21699 21700 21701 21702 21703 21704 21705 21706 21707 21708 21709 21710 21711 21712 21713 21714 21715 21716 21717 21718 21719 21720 21721 21722 21723 21724 21725 21726 21727 21728 21729 21730 21731 21732 21733 21734 21735 21736 21737 21738 21739 21740 21741 21742 21743 21744 21745 21746 21747 21748 21749 21750 21751 21752 21753 21754 21755 21756 21757 21758 21759 21760 21761 21762 21763 21764 21765 21766 21767 21768 21769 21770 21771 21772 21773 21774 21775 21776 21777 21778 21779 21780 21781 21782 21783 21784 21785 21786 21787 21788 21789 21790 21791 21792 21793 21794 21795 21796 21797 21798 21799 21800 21801 21802 21803 21804 21805 21806 21807 21808 21809 21810 21811 21812 21813 21814 21815 21816 21817 21818 21819 21820 21821 21822 21823 21824 21825 21826 21827 21828 21829 21830 21831 21832 21833 21834 21835 21836 21837 21838 21839 21840 21841 21842 21843 21844 21845 21846 21847 21848 21849 21850 21851 21852 21853 21854 21855 21856 21857 21858 21859 21860 21861 21862 21863 21864 21865 21866 21867 21868 21869 21870 21871 21872 21873 21874 21875 21876 21877 21878 21879 21880 21881 21882 21883 21884 21885 21886 21887 21888 21889 21890 21891 21892 21893 21894 21895 21896 21897 21898 21899 21900 21901 21902 21903 21904 21905 21906 21907 21908 21909 21910 21911 21912 21913 21914 21915 21916 21917 21918 21919 21920 21921 21922 21923 21924 21925 21926 21927 21928 21929 21930 21931 21932 21933 21934 21935 21936 21937 21938 21939 21940 21941 21942 21943 21944 21945 21946 21947 21948 21949 21950 21951 21952 21953 21954 21955 21956 21957 21958 21959 21960 21961 21962 21963 21964 21965 21966 21967 21968 21969 21970 21971 21972 21973 21974 21975 21976 21977 21978 21979 21980 21981 21982 21983 21984 21985 21986 21987 21988 21989 21990 21991 21992 21993 21994 21995 21996 21997 21998 21999 22000 22001 22002 22003 22004 22005 22006 22007 22008 22009 22010 22011 22012 22013 22014 22015 22016 22017 22018 22019 22020 22021 22022 22023 22024 22025 22026 22027 22028 22029 22030 22031 22032 22033 22034 22035 22036 22037 22038 22039 22040 22041 22042 22043 22044 22045 22046 22047 22048 22049 22050 22051 22052 22053 22054 22055 22056 22057 22058 22059 22060 22061 22062 22063 22064 22065 22066 22067 22068 22069 22070 22071 22072 22073 22074 22075 22076 22077 22078 22079 22080 22081 22082 22083 22084 22085 22086 22087 22088 22089 22090 22091 22092 22093 22094 22095 22096 22097 22098 22099 22100 22101 22102 22103 22104 22105 22106 22107 22108 22109 22110 22111 22112 22113 22114 22115 22116 22117 22118 22119 22120 22121 22122 22123 22124 22125 22126 22127 22128 22129 22130 22131 22132 22133 22134 22135 22136 22137 22138 22139 22140 22141 22142 22143 22144 22145 22146 22147 22148 22149 22150 22151 22152 22153 22154 22155 22156 22157 22158 22159 22160 22161 22162 22163 22164 22165 22166 22167 22168 22169 22170 22171 22172 22173 22174 22175 22176 22177 22178 22179 22180 22181 22182 22183 22184 22185 22186 22187 22188 22189 22190 22191 22192 22193 22194 22195 22196 22197 22198 22199 22200 22201 22202 22203 22204 22205 22206 22207 22208 22209 22210 22211 22212 22213 22214 22215 22216 22217 22218 22219 22220 22221 22222 22223 22224 22225 22226 22227 22228 22229 22230 22231 22232 22233 22234 22235 22236 22237 22238 22239 22240 22241 22242 22243 22244 22245 22246 22247 22248 22249 22250 22251 22252 22253 22254 22255 22256 22257 22258 22259 22260 22261 22262 22263 22264 22265 22266 22267 22268 22269 22270 22271 22272 22273 22274 22275 22276 22277 22278 22279 22280 22281 22282 22283 22284 22285 22286 22287 22288 22289 22290 22291 22292 22293 22294 22295 22296 22297 22298 22299 22300 22301 22302 22303 22304 22305 22306 22307 22308 22309 22310 22311 22312 22313 22314 22315 22316 22317 22318 22319 22320 22321 22322 22323 22324 22325 22326 22327 22328 22329 22330 22331 22332 22333 22334 22335 22336 22337 22338 22339 22340 22341 22342 22343 22344 22345 22346 22347 22348 22349 22350 22351 22352 22353 22354 22355 22356 22357 22358 22359 22360 22361 22362 22363 22364 22365 22366 22367 22368 22369 22370 22371 22372 22373 22374 22375 22376 22377 22378 22379 22380 22381 22382 22383 22384 22385 22386 22387 22388 22389 22390 22391 22392 22393 22394 22395 22396 22397 22398 22399 22400 22401 22402 22403 22404 22405 22406 22407 22408 22409 22410 22411 22412 22413 22414 22415 22416 22417 22418 22419 22420 22421 22422 22423 22424 22425 22426 22427 22428 22429 22430 22431 22432 22433 22434 22435 22436 22437 22438 22439 22440 22441 22442 22443 22444 22445 22446 22447 22448 22449 22450 22451 22452 22453 22454 22455 22456 22457 22458 22459 22460 22461 22462 22463 22464 22465 22466 22467 22468 22469 22470 22471 22472 22473 22474 22475 22476 22477 22478 22479 22480 22481 22482 22483 22484 22485 22486 22487 22488 22489 22490 22491 22492 22493 22494 22495 22496 22497 22498 22499 22500 22501 22502 22503 22504 22505 22506 22507 22508 22509 22510 22511 22512 22513 22514 22515 22516 22517 22518 22519 22520 22521 22522 22523 22524 22525 22526 22527 22528 22529 22530 22531 22532 22533 22534 22535 22536 22537 22538 22539 22540 22541 22542 22543 22544 22545 22546 22547 22548 22549 22550 22551 22552 22553 22554 22555 22556 22557 22558 22559 22560 22561 22562 22563 22564 22565 22566 22567 22568 22569 22570 22571 22572 22573 22574 22575 22576 22577 22578 22579 22580 22581 22582 22583 22584 22585 22586 22587 22588 22589 22590 22591 22592 22593 22594 22595 22596 22597 22598 22599 22600 22601 22602 22603 22604 22605 22606 22607 22608 22609 22610 22611 22612 22613 22614 22615 22616 22617 22618 22619 22620 22621 22622 22623 22624 22625 22626 22627 22628 22629 22630 22631 22632 22633 22634 22635 22636 22637 22638 22639 22640 22641 22642 22643 22644 22645 22646 22647 22648 22649 22650 22651 22652 22653 22654 22655 22656 22657 22658 22659 22660 22661 22662 22663 22664 22665 22666 22667 22668 22669 22670 22671 22672 22673 22674 22675 22676 22677 22678 22679 22680 22681 22682 22683 22684 22685 22686 22687 22688 22689 22690 22691 22692 22693 22694 22695 22696 22697 22698 22699 22700 22701 22702 22703 22704 22705 22706 22707 22708 22709 22710 22711 22712 22713 22714 22715 22716 22717 22718 22719 22720 22721 22722 22723 22724 22725 22726 22727 22728 22729 22730 22731 22732 22733 22734 22735 22736 22737 22738 22739 22740 22741 22742 22743 22744 22745 22746 22747 22748 22749 22750 22751 22752 22753 22754 22755 22756 22757 22758 22759 22760 22761 22762 22763 22764 22765 22766 22767 22768 22769 22770 22771 22772 22773 22774 22775 22776 22777 22778 22779 22780 22781 22782 22783 22784 22785 22786 22787 22788 22789 22790 22791 22792 22793 22794 22795 22796 22797 22798 22799 22800 22801 22802 22803 22804 22805 22806 22807 22808 22809 22810 22811 22812 22813 22814 22815 22816 22817 22818 22819 22820 22821 22822 22823 22824 22825 22826 22827 22828 22829 22830 22831 22832 22833 22834 22835 22836 22837 22838 22839 22840 22841 22842 22843 22844 22845 22846 22847 22848 22849 22850 22851 22852 22853 22854 22855 22856 22857 22858 22859 22860 22861 22862 22863 22864 22865 22866 22867 22868 22869 22870 22871 22872 22873 22874 22875 22876 22877 22878 22879 22880 22881 22882 22883 22884 22885 22886 22887 22888 22889 22890 22891 22892 22893 22894 22895 22896 22897 22898 22899 22900 22901 22902 22903 22904 22905 22906 22907 22908 22909 22910 22911 22912 22913 22914 22915 22916 22917 22918 22919 22920 22921 22922 22923 22924 22925 22926 22927 22928 22929 22930 22931 22932 22933 22934 22935 22936 22937 22938 22939 22940 22941 22942 22943 22944 22945 22946 22947 22948 22949 22950 22951 22952 22953 22954 22955 22956 22957 22958 22959 22960 22961 22962 22963 22964 22965 22966 22967 22968 22969 22970 22971 22972 22973 22974 22975 22976 22977 22978 22979 22980 22981 22982 22983 22984 22985 22986 22987 22988 22989 22990 22991 22992 22993 22994 22995 22996 22997 22998 22999 23000 23001 23002 23003 23004 23005 23006 23007 23008 23009 23010 23011 23012 23013 23014 23015 23016 23017 23018 23019 23020 23021 23022 23023 23024 23025 23026 23027 23028 23029 23030 23031 23032 23033 23034 23035 23036 23037 23038 23039 23040 23041 23042 23043 23044 23045 23046 23047 23048 23049 23050 23051 23052 23053 23054 23055 23056 23057 23058 23059 23060 23061 23062 23063 23064 23065 23066 23067 23068 23069 23070 23071 23072 23073 23074 23075 23076 23077 23078 23079 23080 23081 23082 23083 23084 23085 23086 23087 23088 23089 23090 23091 23092 23093 23094 23095 23096 23097 23098 23099 23100 23101 23102 23103 23104 23105 23106 23107 23108 23109 23110 23111 23112 23113 23114 23115 23116 23117 23118 23119 23120 23121 23122 23123 23124 23125 23126 23127 23128 23129 23130 23131 23132 23133 23134 23135 23136 23137 23138 23139 23140 23141 23142 23143 23144 23145 23146 23147 23148 23149 23150 23151 23152 23153 23154 23155 23156 23157 23158 23159 23160 23161 23162 23163 23164 23165 23166 23167 23168 23169 23170 23171 23172 23173 23174 23175 23176 23177 23178 23179 23180 23181 23182 23183 23184 23185 23186 23187 23188 23189 23190 23191 23192 23193 23194 23195 23196 23197 23198 23199 23200 23201 23202 23203 23204 23205 23206 23207 23208 23209 23210 23211 23212 23213 23214 23215 23216 23217 23218 23219 23220 23221 23222 23223 23224 23225 23226 23227 23228 23229 23230 23231 23232 23233 23234 23235 23236 23237 23238 23239 23240 23241 23242 23243 23244 23245 23246 23247 23248 23249 23250 23251 23252 23253 23254 23255 23256 23257 23258 23259 23260 23261 23262 23263 23264 23265 23266 23267 23268 23269 23270 23271 23272 23273 23274 23275 23276 23277 23278 23279 23280 23281 23282 23283 23284 23285 23286 23287 23288 23289 23290 23291 23292 23293 23294 23295 23296 23297 23298 23299 23300 23301 23302 23303 23304 23305 23306 23307 23308 23309 23310 23311 23312 23313 23314 23315 23316 23317 23318 23319 23320 23321 23322 23323 23324 23325 23326 23327 23328 23329 23330 23331 23332 23333 23334 23335 23336 23337 23338 23339 23340 23341 23342 23343 23344 23345 23346 23347 23348 23349 23350 23351 23352 23353 23354 23355 23356 23357 23358 23359 23360 23361 23362 23363 23364 23365 23366 23367 23368 23369 23370 23371 23372 23373 23374 23375 23376 23377 23378 23379 23380 23381 23382 23383 23384 23385 23386 23387 23388 23389 23390 23391 23392 23393 23394 23395 23396 23397 23398 23399 23400 23401 23402 23403 23404 23405 23406 23407 23408 23409 23410 23411 23412 23413 23414 23415 23416 23417 23418 23419 23420 23421 23422 23423 23424 23425 23426 23427 23428 23429 23430 23431 23432 23433 23434 23435 23436 23437 23438 23439 23440 23441 23442 23443 23444 23445 23446 23447 23448 23449 23450 23451 23452 23453 23454 23455 23456 23457 23458 23459 23460 23461 23462 23463 23464 23465 23466 23467 23468 23469 23470 23471 23472 23473 23474 23475 23476 23477 23478 23479 23480 23481 23482 23483 23484 23485 23486 23487 23488 23489 23490 23491 23492 23493 23494 23495 23496 23497 23498 23499 23500 23501 23502 23503 23504 23505 23506 23507 23508 23509 23510 23511 23512 23513 23514 23515 23516 23517 23518 23519 23520 23521 23522 23523 23524 23525 23526 23527 23528 23529 23530 23531 23532 23533 23534 23535 23536 23537 23538 23539 23540 23541 23542 23543 23544 23545 23546 23547 23548 23549 23550 23551 23552 23553 23554 23555 23556 23557 23558 23559 23560 23561 23562 23563 23564 23565 23566 23567 23568 23569 23570 23571 23572 23573 23574 23575 23576 23577 23578 23579 23580 23581 23582 23583 23584 23585 23586 23587 23588 23589 23590 23591 23592 23593 23594 23595 23596 23597 23598 23599 23600 23601 23602 23603 23604 23605 23606 23607 23608 23609 23610 23611 23612 23613 23614 23615 23616 23617 23618 23619 23620 23621 23622 23623 23624 23625 23626 23627 23628 23629 23630 23631 23632 23633 23634 23635 23636 23637 23638 23639 23640 23641 23642 23643 23644 23645 23646 23647 23648 23649 23650 23651 23652 23653 23654 23655 23656 23657 23658 23659 23660 23661 23662 23663 23664 23665 23666 23667 23668 23669 23670 23671 23672 23673 23674 23675 23676 23677 23678 23679 23680 23681 23682 23683 23684 23685 23686 23687 23688 23689 23690 23691 23692 23693 23694 23695 23696 23697 23698 23699 23700 23701 23702 23703 23704 23705 23706 23707 23708 23709 23710 23711 23712 23713 23714 23715 23716 23717 23718 23719 23720 23721 23722 23723 23724 23725 23726 23727 23728 23729 23730 23731 23732 23733 23734 23735 23736 23737 23738 23739 23740 23741 23742 23743 23744 23745 23746 23747 23748 23749 23750 23751 23752 23753 23754 23755 23756 23757 23758 23759 23760 23761 23762 23763 23764 23765 23766 23767 23768 23769 23770 23771 23772 23773 23774 23775 23776 23777 23778 23779 23780 23781 23782 23783 23784 23785 23786 23787 23788 23789 23790 23791 23792 23793 23794 23795 23796 23797 23798 23799 23800 23801 23802 23803 23804 23805 23806 23807 23808 23809 23810 23811 23812 23813 23814 23815 23816 23817 23818 23819 23820 23821 23822 23823 23824 23825 23826 23827 23828 23829 23830 23831 23832 23833 23834 23835 23836 23837 23838 23839 23840 23841 23842 23843 23844 23845 23846 23847 23848 23849 23850 23851 23852 23853 23854 23855 23856 23857 23858 23859 23860 23861 23862 23863 23864 23865 23866 23867 23868 23869 23870 23871 23872 23873 23874 23875 23876 23877 23878 23879 23880 23881 23882 23883 23884 23885 23886 23887 23888 23889 23890 23891 23892 23893 23894 23895 23896 23897 23898 23899 23900 23901 23902 23903 23904 23905 23906 23907 23908 23909 23910 23911 23912 23913 23914 23915 23916 23917 23918 23919 23920 23921 23922 23923 23924 23925 23926 23927 23928 23929 23930 23931 23932 23933 23934 23935 23936 23937 23938 23939 23940 23941 23942 23943 23944 23945 23946 23947 23948 23949 23950 23951 23952 23953 23954 23955 23956 23957 23958 23959 23960 23961 23962 23963 23964 23965 23966 23967 23968 23969 23970 23971 23972 23973 23974 23975 23976 23977 23978 23979 23980 23981 23982 23983 23984 23985 23986 23987 23988 23989 23990 23991 23992 23993 23994 23995 23996 23997 23998 23999 24000 24001 24002 24003 24004 24005 24006 24007 24008 24009 24010 24011 24012 24013 24014 24015 24016 24017 24018 24019 24020 24021 24022 24023 24024 24025 24026 24027 24028 24029 24030 24031 24032 24033 24034 24035 24036 24037 24038 24039 24040 24041 24042 24043 24044 24045 24046 24047 24048 24049 24050 24051 24052 24053 24054 24055 24056 24057 24058 24059 24060 24061 24062 24063 24064 24065 24066 24067 24068 24069 24070 24071 24072 24073 24074 24075 24076 24077 24078 24079 24080 24081 24082 24083 24084 24085 24086 24087 24088 24089 24090 24091 24092 24093 24094 24095 24096 24097 24098 24099 24100 24101 24102 24103 24104 24105 24106 24107 24108 24109 24110 24111 24112 24113 24114 24115 24116 24117 24118 24119 24120 24121 24122 24123 24124 24125 24126 24127 24128 24129 24130 24131 24132 24133 24134 24135 24136 24137 24138 24139 24140 24141 24142 24143 24144 24145 24146 24147 24148 24149 24150 24151 24152 24153 24154 24155 24156 24157 24158 24159 24160 24161 24162 24163 24164 24165 24166 24167 24168 24169 24170 24171 24172 24173 24174 24175 24176 24177 24178 24179 24180 24181 24182 24183 24184 24185 24186 24187 24188 24189 24190 24191 24192 24193 24194 24195 24196 24197 24198 24199 24200 24201 24202 24203 24204 24205 24206 24207 24208 24209 24210 24211 24212 24213 24214 24215 24216 24217 24218 24219 24220 24221 24222 24223 24224 24225 24226 24227 24228 24229 24230 24231 24232 24233 24234 24235 24236 24237 24238 24239 24240 24241 24242 24243 24244 24245 24246 24247 24248 24249 24250 24251 24252 24253 24254 24255 24256 24257 24258 24259 24260 24261 24262 24263 24264 24265 24266 24267 24268 24269 24270 24271 24272 24273 24274 24275 24276 24277 24278 24279 24280 24281 24282 24283 24284 24285 24286 24287 24288 24289 24290 24291 24292 24293 24294 24295 24296 24297 24298 24299 24300 24301 24302 24303 24304 24305 24306 24307 24308 24309 24310 24311 24312 24313 24314 24315 24316 24317
|
/* readelf.c -- display contents of an ELF format file
Copyright (C) 1998-2025 Free Software Foundation, Inc.
Originally developed by Eric Youngdale <eric@andante.jic.com>
Modifications by Nick Clifton <nickc@redhat.com>
This file is part of GNU Binutils.
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 3 of the License, or
(at your option) any later version.
This program 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 General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston, MA
02110-1301, USA. */
/* The difference between readelf and objdump:
Both programs are capable of displaying the contents of ELF format files,
so why does the binutils project have two file dumpers ?
The reason is that objdump sees an ELF file through a BFD filter of the
world; if BFD has a bug where, say, it disagrees about a machine constant
in e_flags, then the odds are good that it will remain internally
consistent. The linker sees it the BFD way, objdump sees it the BFD way,
GAS sees it the BFD way. There was need for a tool to go find out what
the file actually says.
This is why the readelf program does not link against the BFD library - it
exists as an independent program to help verify the correct working of BFD.
There is also the case that readelf can provide more information about an
ELF file than is provided by objdump. In particular it can display DWARF
debugging information which (at the moment) objdump cannot. */
#include "sysdep.h"
#include <assert.h>
#include <time.h>
#include <zlib.h>
#ifdef HAVE_ZSTD
#include <zstd.h>
#endif
#include <wchar.h>
#if defined HAVE_MSGPACK
#include <msgpack.h>
#endif
/* Define BFD64 here, even if our default architecture is 32 bit ELF
as this will allow us to read in and parse 64bit and 32bit ELF files. */
#define BFD64
#include "bfd.h"
#include "bucomm.h"
#include "elfcomm.h"
#include "demanguse.h"
#include "dwarf.h"
#include "ctf-api.h"
#include "sframe-api.h"
#include "demangle.h"
#include "elf/common.h"
#include "elf/external.h"
#include "elf/internal.h"
/* Included here, before RELOC_MACROS_GEN_FUNC is defined, so that
we can obtain the H8 reloc numbers. We need these for the
get_reloc_size() function. We include h8.h again after defining
RELOC_MACROS_GEN_FUNC so that we get the naming function as well. */
#include "elf/h8.h"
#undef _ELF_H8_H
/* Undo the effects of #including reloc-macros.h. */
#undef START_RELOC_NUMBERS
#undef RELOC_NUMBER
#undef FAKE_RELOC
#undef EMPTY_RELOC
#undef END_RELOC_NUMBERS
#undef _RELOC_MACROS_H
/* The following headers use the elf/reloc-macros.h file to
automatically generate relocation recognition functions
such as elf_mips_reloc_type() */
#define RELOC_MACROS_GEN_FUNC
#include "elf/aarch64.h"
#include "elf/alpha.h"
#include "elf/amdgpu.h"
#include "elf/arc.h"
#include "elf/arm.h"
#include "elf/avr.h"
#include "elf/bfin.h"
#include "elf/cr16.h"
#include "elf/cris.h"
#include "elf/crx.h"
#include "elf/csky.h"
#include "elf/d10v.h"
#include "elf/d30v.h"
#include "elf/dlx.h"
#include "elf/bpf.h"
#include "elf/epiphany.h"
#include "elf/fr30.h"
#include "elf/frv.h"
#include "elf/ft32.h"
#include "elf/h8.h"
#include "elf/hppa.h"
#include "elf/i386.h"
#include "elf/i370.h"
#include "elf/i860.h"
#include "elf/i960.h"
#include "elf/ia64.h"
#include "elf/ip2k.h"
#include "elf/kvx.h"
#include "elf/lm32.h"
#include "elf/iq2000.h"
#include "elf/m32c.h"
#include "elf/m32r.h"
#include "elf/m68k.h"
#include "elf/m68hc11.h"
#include "elf/s12z.h"
#include "elf/mcore.h"
#include "elf/mep.h"
#include "elf/metag.h"
#include "elf/microblaze.h"
#include "elf/mips.h"
#include "elf/mmix.h"
#include "elf/mn10200.h"
#include "elf/mn10300.h"
#include "elf/moxie.h"
#include "elf/mt.h"
#include "elf/msp430.h"
#include "elf/nds32.h"
#include "elf/nfp.h"
#include "elf/nios2.h"
#include "elf/or1k.h"
#include "elf/pj.h"
#include "elf/ppc.h"
#include "elf/ppc64.h"
#include "elf/pru.h"
#include "elf/riscv.h"
#include "elf/rl78.h"
#include "elf/rx.h"
#include "elf/s390.h"
#include "elf/score.h"
#include "elf/sh.h"
#include "elf/sparc.h"
#include "elf/spu.h"
#include "elf/tic6x.h"
#include "elf/tilegx.h"
#include "elf/tilepro.h"
#include "elf/v850.h"
#include "elf/vax.h"
#include "elf/visium.h"
#include "elf/wasm32.h"
#include "elf/x86-64.h"
#include "elf/xgate.h"
#include "elf/xstormy16.h"
#include "elf/xtensa.h"
#include "elf/z80.h"
#include "elf/loongarch.h"
#include "elf/bpf.h"
#include "getopt.h"
#include "libiberty.h"
#include "safe-ctype.h"
#include "filenames.h"
#ifndef offsetof
#define offsetof(TYPE, MEMBER) ((size_t) &(((TYPE *) 0)->MEMBER))
#endif
typedef struct elf_section_list
{
Elf_Internal_Shdr * hdr;
struct elf_section_list * next;
} elf_section_list;
/* Flag bits indicating particular types of dump. */
#define HEX_DUMP (1 << 0) /* The -x command line switch. */
#ifdef SUPPORT_DISASSEMBLY
#define DISASS_DUMP (1 << 1) /* The -i command line switch. */
#endif
#define DEBUG_DUMP (1 << 2) /* The -w command line switch. */
#define STRING_DUMP (1 << 3) /* The -p command line switch. */
#define RELOC_DUMP (1 << 4) /* The -R command line switch. */
#define CTF_DUMP (1 << 5) /* The --ctf command line switch. */
#define SFRAME_DUMP (1 << 6) /* The --sframe command line switch. */
#define AUTO_DUMP (1 << 7) /* The -j command line switch. */
typedef unsigned char dump_type;
/* A linked list of the section names for which dumps were requested. */
struct dump_list_entry
{
char * name;
dump_type type;
struct dump_list_entry * next;
};
/* A dynamic array of flags indicating for which sections a dump
has been requested via command line switches. */
struct dump_data
{
dump_type * dump_sects;
unsigned int num_dump_sects;
};
static struct dump_data cmdline;
static struct dump_list_entry * dump_sects_byname;
char * program_name = "readelf";
static bool show_name = false;
static bool do_dynamic = false;
static bool do_syms = false;
static bool do_dyn_syms = false;
static bool do_lto_syms = false;
static bool do_reloc = false;
static bool do_sections = false;
static bool do_section_groups = false;
static bool do_section_details = false;
static bool do_segments = false;
static bool do_unwind = false;
static bool do_using_dynamic = false;
static bool do_header = false;
static bool do_dump = false;
static bool do_version = false;
static bool do_histogram = false;
static bool do_debugging = false;
static bool do_ctf = false;
static bool do_sframe = false;
static bool do_arch = false;
static bool do_notes = false;
static bool do_archive_index = false;
static bool check_all = false;
static bool is_32bit_elf = false;
static bool decompress_dumps = false;
static bool do_not_show_symbol_truncation = false;
static bool do_demangle = false; /* Pretty print C++ symbol names. */
static bool process_links = false;
static bool dump_any_debugging = false;
static bool extra_sym_info = false;
static int demangle_flags = DMGL_ANSI | DMGL_PARAMS;
static int sym_base = 0;
static char *dump_ctf_parent_name;
static char *dump_ctf_symtab_name;
static char *dump_ctf_strtab_name;
struct group_list
{
struct group_list * next;
unsigned int section_index;
};
struct group
{
struct group_list * root;
unsigned int group_index;
};
typedef struct filedata
{
const char * file_name;
bool is_separate;
FILE * handle;
uint64_t file_size;
Elf_Internal_Ehdr file_header;
uint64_t archive_file_offset;
uint64_t archive_file_size;
/* Everything below this point is cleared out by free_filedata. */
Elf_Internal_Shdr * section_headers;
Elf_Internal_Phdr * program_headers;
char * string_table;
uint64_t string_table_length;
uint64_t dynamic_addr;
uint64_t dynamic_size;
uint64_t dynamic_nent;
Elf_Internal_Dyn * dynamic_section;
Elf_Internal_Shdr * dynamic_strtab_section;
char * dynamic_strings;
uint64_t dynamic_strings_length;
Elf_Internal_Shdr * dynamic_symtab_section;
uint64_t num_dynamic_syms;
Elf_Internal_Sym * dynamic_symbols;
uint64_t version_info[16];
unsigned int dynamic_syminfo_nent;
Elf_Internal_Syminfo * dynamic_syminfo;
uint64_t dynamic_syminfo_offset;
uint64_t nbuckets;
uint64_t nchains;
uint64_t * buckets;
uint64_t * chains;
uint64_t ngnubuckets;
uint64_t ngnuchains;
uint64_t * gnubuckets;
uint64_t * gnuchains;
uint64_t * mipsxlat;
uint64_t gnusymidx;
char * program_interpreter;
uint64_t dynamic_info[DT_RELRENT + 1];
uint64_t dynamic_info_DT_GNU_HASH;
uint64_t dynamic_info_DT_MIPS_XHASH;
elf_section_list * symtab_shndx_list;
size_t group_count;
struct group * section_groups;
struct group ** section_headers_groups;
/* A dynamic array of flags indicating for which sections a dump of
some kind has been requested. It is reset on a per-object file
basis and then initialised from the cmdline_dump_sects array,
the results of interpreting the -w switch, and the
dump_sects_byname list. */
struct dump_data dump;
} Filedata;
/* How to print a vma value. */
typedef enum print_mode
{
HEX,
HEX_5,
DEC,
DEC_5,
UNSIGNED,
UNSIGNED_5,
PREFIX_HEX,
PREFIX_HEX_5,
FULL_HEX,
LONG_HEX,
ZERO_HEX,
OCTAL,
OCTAL_5
}
print_mode;
typedef enum unicode_display_type
{
unicode_default = 0,
unicode_locale,
unicode_escape,
unicode_hex,
unicode_highlight,
unicode_invalid
} unicode_display_type;
static unicode_display_type unicode_display = unicode_default;
typedef enum
{
reltype_unknown,
reltype_rel,
reltype_rela,
reltype_relr
} relocation_type;
/* Versioned symbol info. */
enum versioned_symbol_info
{
symbol_undefined,
symbol_hidden,
symbol_public
};
static int
fseek64 (FILE *stream, int64_t offset, int whence)
{
#if defined (HAVE_FSEEKO64)
off64_t o = offset;
if (o != offset)
{
errno = EINVAL;
return -1;
}
return fseeko64 (stream, o, whence);
#elif defined (HAVE_FSEEKO)
off_t o = offset;
if (o != offset)
{
errno = EINVAL;
return -1;
}
return fseeko (stream, o, whence);
#else
long o = offset;
if (o != offset)
{
errno = EINVAL;
return -1;
}
return fseek (stream, o, whence);
#endif
}
static const char * get_symbol_version_string
(Filedata *, bool, const char *, size_t, unsigned,
Elf_Internal_Sym *, enum versioned_symbol_info *, unsigned short *);
static bool process_notes_at
(Filedata *, Elf_Internal_Shdr *, uint64_t, uint64_t, uint64_t);
#define UNKNOWN -1
static inline const char *
section_name (const Filedata *filedata, const Elf_Internal_Shdr *hdr)
{
return filedata->string_table + hdr->sh_name;
}
static inline bool
section_name_valid (const Filedata *filedata, const Elf_Internal_Shdr *hdr)
{
return (filedata != NULL
&& hdr != NULL
&& filedata->string_table != NULL
&& hdr->sh_name < filedata->string_table_length);
}
/* Returns true if the given index is real/valid. Note: "real" here
means "references a real section in the section header" and not
"is a valid section index as per the ELF standard". */
static inline bool
section_index_real (const Filedata *filedata, unsigned int ndx)
{
return (filedata != NULL
&& filedata->section_headers != NULL
&& ndx < filedata->file_header.e_shnum
&& ndx > 0);
}
#define DT_VERSIONTAGIDX(tag) (DT_VERNEEDNUM - (tag)) /* Reverse order! */
static inline bool
valid_symbol_name (const char *strtab, size_t strtab_size, uint64_t offset)
{
return strtab != NULL && offset < strtab_size;
}
static inline bool
valid_dynamic_name (const Filedata *filedata, uint64_t offset)
{
return valid_symbol_name (filedata->dynamic_strings,
filedata->dynamic_strings_length, offset);
}
/* GET_DYNAMIC_NAME asssumes that VALID_DYNAMIC_NAME has
already been called and verified that the string exists. */
static inline const char *
get_dynamic_name (const Filedata *filedata, size_t offset)
{
return filedata->dynamic_strings + offset;
}
#define REMOVE_ARCH_BITS(ADDR) \
do \
{ \
if (filedata->file_header.e_machine == EM_ARM) \
(ADDR) &= ~1; \
} \
while (0)
/* Get the correct GNU hash section name. */
#define GNU_HASH_SECTION_NAME(filedata) \
filedata->dynamic_info_DT_MIPS_XHASH ? ".MIPS.xhash" : ".gnu.hash"
/* Retrieve NMEMB structures, each SIZE bytes long from FILEDATA starting at
OFFSET + the offset of the current archive member, if we are examining an
archive. Put the retrieved data into VAR, if it is not NULL. Otherwise
allocate a buffer using malloc and fill that. In either case return the
pointer to the start of the retrieved data or NULL if something went wrong.
If something does go wrong and REASON is not NULL then emit an error
message using REASON as part of the context. */
static void *
get_data (void *var,
Filedata *filedata,
uint64_t offset,
uint64_t size,
uint64_t nmemb,
const char *reason)
{
void * mvar;
uint64_t amt = size * nmemb;
if (size == 0 || nmemb == 0)
return NULL;
/* If size_t is smaller than uint64_t, eg because you are building
on a 32-bit host, then make sure that when the sizes are cast to
size_t no information is lost. */
if ((size_t) size != size
|| (size_t) nmemb != nmemb
|| (size_t) amt != amt
|| amt / size != nmemb
|| (size_t) amt + 1 == 0)
{
if (reason)
error (_("Size overflow prevents reading %" PRIu64
" elements of size %" PRIu64 " for %s\n"),
nmemb, size, reason);
return NULL;
}
/* Be kind to memory checkers (eg valgrind, address sanitizer) by not
attempting to allocate memory when the read is bound to fail. */
if (filedata->archive_file_offset > filedata->file_size
|| offset > filedata->file_size - filedata->archive_file_offset
|| amt > filedata->file_size - filedata->archive_file_offset - offset)
{
if (reason)
error (_("Reading %" PRIu64 " bytes extends past end of file for %s\n"),
amt, reason);
return NULL;
}
if (fseek64 (filedata->handle, filedata->archive_file_offset + offset,
SEEK_SET))
{
if (reason)
error (_("Unable to seek to %#" PRIx64 " for %s\n"),
filedata->archive_file_offset + offset, reason);
return NULL;
}
mvar = var;
if (mvar == NULL)
{
/* + 1 so that we can '\0' terminate invalid string table sections. */
mvar = malloc ((size_t) amt + 1);
if (mvar == NULL)
{
if (reason)
error (_("Out of memory allocating %" PRIu64 " bytes for %s\n"),
amt, reason);
return NULL;
}
((char *) mvar)[amt] = '\0';
}
if (fread (mvar, (size_t) size, (size_t) nmemb, filedata->handle) != nmemb)
{
if (reason)
error (_("Unable to read in %" PRIu64 " bytes of %s\n"),
amt, reason);
if (mvar != var)
free (mvar);
return NULL;
}
return mvar;
}
/* Print a VMA value in the MODE specified.
Returns the number of characters displayed. */
static unsigned int
print_vma (uint64_t vma, print_mode mode)
{
unsigned int nc = 0;
switch (mode)
{
case FULL_HEX:
nc = printf ("0x");
/* Fall through. */
case LONG_HEX:
if (!is_32bit_elf)
return nc + printf ("%16.16" PRIx64, vma);
return nc + printf ("%8.8" PRIx64, vma);
case ZERO_HEX:
if (is_32bit_elf)
return printf ("%08" PRIx64, vma);
return printf ("%016" PRIx64, vma);
case DEC_5:
if (vma <= 99999)
return printf ("%5" PRId64, vma);
/* Fall through. */
case PREFIX_HEX:
nc = printf ("0x");
/* Fall through. */
case HEX:
return nc + printf ("%" PRIx64, vma);
case PREFIX_HEX_5:
nc = printf ("0x");
/* Fall through. */
case HEX_5:
return nc + printf ("%05" PRIx64, vma);
case DEC:
return printf ("%" PRId64, vma);
case UNSIGNED:
return printf ("%" PRIu64, vma);
case UNSIGNED_5:
return printf ("%5" PRIu64, vma);
case OCTAL:
return printf ("%" PRIo64, vma);
case OCTAL_5:
return printf ("%5" PRIo64, vma);
default:
/* FIXME: Report unrecognised mode ? */
return 0;
}
}
/* Display a symbol on stdout. Handles the display of control characters and
multibye characters (assuming the host environment supports them).
Display at most abs(WIDTH) characters, truncating as necessary,
unless do_wide or extra_sym_info is true.
If truncation will happen and do_not_show_symbol_truncation is FALSE then display
abs(WIDTH) - 5 characters followed by "[...]".
If WIDTH is negative then ensure that the output is at least (- WIDTH) characters,
padding as necessary.
Returns the number of emitted characters. */
static unsigned int
print_symbol_name (signed int width, const char * symbol)
{
bool extra_padding = false;
bool do_dots = false;
signed int num_printed = 0;
#ifdef HAVE_MBSTATE_T
mbstate_t state;
#endif
unsigned int width_remaining;
const void * alloced_symbol = NULL;
if (width < 0)
{
/* Keep the width positive. This helps the code below. */
width = - width;
extra_padding = true;
}
else if (width == 0)
return 0;
if (do_wide || extra_sym_info)
/* Set the remaining width to a very large value.
This simplifies the code below. */
width_remaining = INT_MAX;
else
{
width_remaining = width;
if (! do_not_show_symbol_truncation
&& (int) strlen (symbol) > width)
{
width_remaining -= 5;
if ((int) width_remaining < 0)
width_remaining = 0;
do_dots = true;
}
}
#ifdef HAVE_MBSTATE_T
/* Initialise the multibyte conversion state. */
memset (& state, 0, sizeof (state));
#endif
if (do_demangle && *symbol)
{
const char * res = cplus_demangle (symbol, demangle_flags);
if (res != NULL)
alloced_symbol = symbol = res;
}
while (width_remaining)
{
size_t n;
const char c = *symbol++;
if (c == 0)
break;
if (ISPRINT (c))
{
putchar (c);
width_remaining --;
num_printed ++;
}
else if (ISCNTRL (c))
{
/* Do not print control characters directly as they can affect terminal
settings. Such characters usually appear in the names generated
by the assembler for local labels. */
if (width_remaining < 2)
break;
printf ("^%c", c + 0x40);
width_remaining -= 2;
num_printed += 2;
}
else if (c == 0x7f)
{
if (width_remaining < 5)
break;
printf ("<DEL>");
width_remaining -= 5;
num_printed += 5;
}
else if (unicode_display != unicode_locale
&& unicode_display != unicode_default)
{
/* Display unicode characters as something else. */
unsigned char bytes[4];
bool is_utf8;
unsigned int nbytes;
bytes[0] = c;
if (bytes[0] < 0xc0)
{
nbytes = 1;
is_utf8 = false;
}
else
{
bytes[1] = *symbol++;
if ((bytes[1] & 0xc0) != 0x80)
{
is_utf8 = false;
/* Do not consume this character. It may only
be the first byte in the sequence that was
corrupt. */
--symbol;
nbytes = 1;
}
else if ((bytes[0] & 0x20) == 0)
{
is_utf8 = true;
nbytes = 2;
}
else
{
bytes[2] = *symbol++;
if ((bytes[2] & 0xc0) != 0x80)
{
is_utf8 = false;
symbol -= 2;
nbytes = 1;
}
else if ((bytes[0] & 0x10) == 0)
{
is_utf8 = true;
nbytes = 3;
}
else
{
bytes[3] = *symbol++;
nbytes = 4;
if ((bytes[3] & 0xc0) != 0x80)
{
is_utf8 = false;
symbol -= 3;
nbytes = 1;
}
else
is_utf8 = true;
}
}
}
if (unicode_display == unicode_invalid)
is_utf8 = false;
if (unicode_display == unicode_hex || ! is_utf8)
{
unsigned int i;
if (width_remaining < (nbytes * 2) + 2)
break;
putchar (is_utf8 ? '<' : '{');
printf ("0x");
for (i = 0; i < nbytes; i++)
printf ("%02x", bytes[i]);
putchar (is_utf8 ? '>' : '}');
}
else
{
if (unicode_display == unicode_highlight && isatty (1))
printf ("\x1B[31;47m"); /* Red. */
switch (nbytes)
{
case 2:
if (width_remaining < 6)
break;
printf ("\\u%02x%02x",
(bytes[0] & 0x1c) >> 2,
((bytes[0] & 0x03) << 6) | (bytes[1] & 0x3f));
break;
case 3:
if (width_remaining < 6)
break;
printf ("\\u%02x%02x",
((bytes[0] & 0x0f) << 4) | ((bytes[1] & 0x3c) >> 2),
((bytes[1] & 0x03) << 6) | (bytes[2] & 0x3f));
break;
case 4:
if (width_remaining < 8)
break;
printf ("\\u%02x%02x%02x",
((bytes[0] & 0x07) << 6) | ((bytes[1] & 0x3c) >> 2),
((bytes[1] & 0x03) << 6) | ((bytes[2] & 0x3c) >> 2),
((bytes[2] & 0x03) << 6) | (bytes[3] & 0x3f));
break;
default:
/* URG. */
break;
}
if (unicode_display == unicode_highlight && isatty (1))
printf ("\033[0m"); /* Default colour. */
}
if (bytes[nbytes - 1] == 0)
break;
}
else
{
#ifdef HAVE_MBSTATE_T
wchar_t w;
#endif
/* Let printf do the hard work of displaying multibyte characters. */
printf ("%.1s", symbol - 1);
width_remaining --;
num_printed ++;
#ifdef HAVE_MBSTATE_T
/* Try to find out how many bytes made up the character that was
just printed. Advance the symbol pointer past the bytes that
were displayed. */
n = mbrtowc (& w, symbol - 1, MB_CUR_MAX, & state);
#else
n = 1;
#endif
if (n != (size_t) -1 && n != (size_t) -2 && n > 0)
symbol += (n - 1);
}
}
if (do_dots)
num_printed += printf ("[...]");
if (extra_padding && num_printed < width)
{
/* Fill in the remaining spaces. */
printf ("%-*s", width - num_printed, " ");
num_printed = width;
}
free ((void *) alloced_symbol);
return num_printed;
}
/* Returns a pointer to a static buffer containing a printable version of
STRING. Uses a rotating array of static buffers, so that multiple
successive calls will still work. eg when used in a call to printf().
If supplied MAX_LEN is the maximum number of characters to be read
starting from STRING.
This function is similar to print_symbol_name(), except that it does
not try to print multibyte characters, it just shows them as hex values.
If the string is too long for the static buffer or if it is not
terminated then a truncated version of the string will be returned. */
static const char *
printable_string (const char * string, unsigned int max_len)
{
#define NUM_STRING_BUFS 5
#define MAX_STRING_LEN 256
static int string_buf_index = 0;
static char string_buf [NUM_STRING_BUFS][MAX_STRING_LEN + 1];
char * buf;
char * buf_start;
/* Select a buffer to use. */
buf_start = buf = string_buf[string_buf_index];
if (++ string_buf_index >= NUM_STRING_BUFS)
string_buf_index = 0;
char c;
unsigned int remaining = MAX_STRING_LEN;
while ((c = * string ++) != 0)
{
if (ISCNTRL (c))
{
if (remaining < 2)
break;
* buf ++ = '^';
* buf ++ = c + 0x40;
remaining -= 2;
}
else if (ISPRINT (c))
{
* buf ++ = c;
remaining -= 1;
}
else
{
static char hex[17] = "0123456789ABCDEF";
if (remaining < 4)
break;
* buf ++ = '<';
* buf ++ = hex[(c & 0xf0) >> 4];
* buf ++ = hex[c & 0x0f];
* buf ++ = '>';
remaining -= 4;
}
if (remaining == 0)
break;
if (max_len > 0)
{
max_len -= 1;
if (max_len == 0)
break;
}
}
* buf = 0;
return buf_start;
}
/* Returns a pointer to a static buffer containing a
printable version of the given section's name. */
static const char *
printable_section_name (Filedata * filedata, const Elf_Internal_Shdr * sec)
{
/* Validate the input parameters. */
if (filedata == NULL)
return _("<internal error>");
if (sec == NULL)
return _("<none>");
if (filedata->string_table == NULL)
return _("<no-strings>");
if (sec->sh_name >= filedata->string_table_length)
return _("<corrupt>");
return printable_string (section_name (filedata, sec),
filedata->string_table_length - sec->sh_name);
}
/* Return TRUE if the current file is for IA-64 machine and OpenVMS ABI.
This OS has so many departures from the ELF standard that we test it at
many places. */
static inline bool
is_ia64_vms (Filedata * filedata)
{
return filedata->file_header.e_machine == EM_IA_64
&& filedata->file_header.e_ident[EI_OSABI] == ELFOSABI_OPENVMS;
}
static const char *
printable_section_name_from_index (Filedata * filedata,
size_t ndx,
bool * is_special)
{
if (is_special != NULL)
* is_special = true;
switch (ndx)
{
case SHN_UNDEF: return "UND";
case SHN_ABS: return "ABS";
case SHN_COMMON: return "COM";
break;
}
if (filedata != NULL)
{
switch (filedata->file_header.e_machine)
{
case EM_MIPS:
if (ndx == SHN_MIPS_SCOMMON)
return "SCOMMON";
if (ndx == SHN_MIPS_SUNDEFINED)
return "SUNDEF";
break;
case EM_TI_C6000:
if (ndx == SHN_TIC6X_SCOMMON)
return "SCOM";
break;
case EM_X86_64:
case EM_L1OM:
case EM_K1OM:
if (ndx == SHN_X86_64_LCOMMON)
return "LARGE_COM";
break;
case EM_IA_64:
if (filedata->file_header.e_ident[EI_OSABI] == ELFOSABI_HPUX
&& ndx == SHN_IA_64_ANSI_COMMON)
return "ANSI_COM";
if (is_ia64_vms (filedata) && ndx == SHN_IA_64_VMS_SYMVEC)
return "VMS_SYMVEC";
break;
default:
break;
}
if (filedata->section_headers != NULL
&& ndx < filedata->file_header.e_shnum)
{
const char * res;
res = printable_section_name (filedata, filedata->section_headers + ndx);
if (is_special != NULL)
* is_special = (res[0] == '<');
return res;
}
}
static char name_buf[40];
unsigned int short_ndx = (unsigned int) (ndx & 0xffff);
if (ndx >= SHN_LOPROC && ndx <= SHN_HIPROC)
sprintf (name_buf, "PRC[0x%04x]", short_ndx);
else if (ndx >= SHN_LOOS && ndx <= SHN_HIOS)
sprintf (name_buf, "OS [0x%04x]", short_ndx);
else if (ndx >= SHN_LORESERVE)
sprintf (name_buf, "RSV[0x%04x]", short_ndx);
else if (filedata->file_header.e_shnum != 0
&& ndx >= filedata->file_header.e_shnum)
sprintf (name_buf, _("BAD[0x%lx]"), (long) ndx);
else
sprintf (name_buf, "<section 0x%lx>", (long) ndx);
return name_buf;
}
/* Return a pointer to section NAME, or NULL if no such section exists. */
static Elf_Internal_Shdr *
find_section (Filedata * filedata, const char * name)
{
unsigned int i;
if (filedata->section_headers == NULL)
return NULL;
for (i = 0; i < filedata->file_header.e_shnum; i++)
if (section_name_valid (filedata, filedata->section_headers + i)
&& streq (section_name (filedata, filedata->section_headers + i),
name))
return filedata->section_headers + i;
return NULL;
}
/* Return a pointer to a section containing ADDR, or NULL if no such
section exists. */
static Elf_Internal_Shdr *
find_section_by_address (Filedata * filedata, uint64_t addr)
{
unsigned int i;
if (filedata->section_headers == NULL)
return NULL;
for (i = 0; i < filedata->file_header.e_shnum; i++)
{
Elf_Internal_Shdr *sec = filedata->section_headers + i;
if (addr >= sec->sh_addr && addr < sec->sh_addr + sec->sh_size)
return sec;
}
return NULL;
}
static Elf_Internal_Shdr *
find_section_by_type (Filedata * filedata, unsigned int type)
{
unsigned int i;
if (filedata->section_headers == NULL)
return NULL;
for (i = 0; i < filedata->file_header.e_shnum; i++)
{
Elf_Internal_Shdr *sec = filedata->section_headers + i;
if (sec->sh_type == type)
return sec;
}
return NULL;
}
static Elf_Internal_Shdr *
find_section_by_name (Filedata * filedata, const char * name)
{
unsigned int i;
if (filedata->section_headers == NULL || filedata->string_table_length == 0)
return NULL;
for (i = 0; i < filedata->file_header.e_shnum; i++)
{
Elf_Internal_Shdr *sec = filedata->section_headers + i;
if (sec->sh_name < filedata->string_table_length
&& streq (name, filedata->string_table + sec->sh_name))
return sec;
}
return NULL;
}
/* Return a pointer to section NAME, or NULL if no such section exists,
restricted to the list of sections given in SET. */
static Elf_Internal_Shdr *
find_section_in_set (Filedata * filedata, const char * name, unsigned int * set)
{
unsigned int i;
if (filedata->section_headers == NULL)
return NULL;
if (set != NULL)
{
while ((i = *set++) > 0)
{
/* See PR 21156 for a reproducer. */
if (i >= filedata->file_header.e_shnum)
continue; /* FIXME: Should we issue an error message ? */
if (section_name_valid (filedata, filedata->section_headers + i)
&& streq (section_name (filedata, filedata->section_headers + i),
name))
return filedata->section_headers + i;
}
}
return find_section (filedata, name);
}
/* Guess the relocation size commonly used by the specific machines. */
static bool
guess_is_rela (unsigned int e_machine)
{
switch (e_machine)
{
/* Targets that use REL relocations. */
case EM_386:
case EM_IAMCU:
case EM_960:
case EM_ARM:
case EM_D10V:
case EM_CYGNUS_D10V:
case EM_DLX:
case EM_MIPS:
case EM_MIPS_RS3_LE:
case EM_CYGNUS_M32R:
case EM_SCORE:
case EM_XGATE:
case EM_NFP:
case EM_BPF:
return false;
/* Targets that use RELA relocations. */
case EM_68K:
case EM_860:
case EM_AARCH64:
case EM_ADAPTEVA_EPIPHANY:
case EM_ALPHA:
case EM_ALTERA_NIOS2:
case EM_ARC:
case EM_ARC_COMPACT:
case EM_ARC_COMPACT2:
case EM_ARC_COMPACT3:
case EM_ARC_COMPACT3_64:
case EM_AVR:
case EM_AVR_OLD:
case EM_BLACKFIN:
case EM_CR16:
case EM_CRIS:
case EM_CRX:
case EM_CSKY:
case EM_D30V:
case EM_CYGNUS_D30V:
case EM_FR30:
case EM_FT32:
case EM_CYGNUS_FR30:
case EM_CYGNUS_FRV:
case EM_H8S:
case EM_H8_300:
case EM_H8_300H:
case EM_IA_64:
case EM_IP2K:
case EM_IP2K_OLD:
case EM_IQ2000:
case EM_KVX:
case EM_LATTICEMICO32:
case EM_M32C_OLD:
case EM_M32C:
case EM_M32R:
case EM_MCORE:
case EM_CYGNUS_MEP:
case EM_METAG:
case EM_MMIX:
case EM_MN10200:
case EM_CYGNUS_MN10200:
case EM_MN10300:
case EM_CYGNUS_MN10300:
case EM_MOXIE:
case EM_MSP430:
case EM_MSP430_OLD:
case EM_MT:
case EM_NDS32:
case EM_NIOS32:
case EM_OR1K:
case EM_PPC64:
case EM_PPC:
case EM_TI_PRU:
case EM_RISCV:
case EM_RL78:
case EM_RX:
case EM_S390:
case EM_S390_OLD:
case EM_SH:
case EM_SPARC:
case EM_SPARC32PLUS:
case EM_SPARCV9:
case EM_SPU:
case EM_TI_C6000:
case EM_TILEGX:
case EM_TILEPRO:
case EM_V800:
case EM_V850:
case EM_CYGNUS_V850:
case EM_VAX:
case EM_VISIUM:
case EM_X86_64:
case EM_L1OM:
case EM_K1OM:
case EM_XSTORMY16:
case EM_XTENSA:
case EM_XTENSA_OLD:
case EM_MICROBLAZE:
case EM_MICROBLAZE_OLD:
case EM_WEBASSEMBLY:
return true;
case EM_68HC05:
case EM_68HC08:
case EM_68HC11:
case EM_68HC16:
case EM_FX66:
case EM_ME16:
case EM_MMA:
case EM_NCPU:
case EM_NDR1:
case EM_PCP:
case EM_ST100:
case EM_ST19:
case EM_ST7:
case EM_ST9PLUS:
case EM_STARCORE:
case EM_SVX:
case EM_TINYJ:
default:
warn (_("Don't know about relocations on this machine architecture\n"));
return false;
}
}
/* Load RELA type relocations from FILEDATA at REL_OFFSET extending for REL_SIZE bytes.
Returns TRUE upon success, FALSE otherwise. If successful then a
pointer to a malloc'ed buffer containing the relocs is placed in *RELASP,
and the number of relocs loaded is placed in *NRELASP. It is the caller's
responsibility to free the allocated buffer. */
static bool
slurp_rela_relocs (Filedata *filedata,
uint64_t rel_offset,
uint64_t rel_size,
Elf_Internal_Rela **relasp,
uint64_t *nrelasp)
{
Elf_Internal_Rela * relas;
uint64_t nrelas;
unsigned int i;
if (is_32bit_elf)
{
Elf32_External_Rela * erelas;
erelas = (Elf32_External_Rela *) get_data (NULL, filedata, rel_offset, 1,
rel_size, _("32-bit relocation data"));
if (!erelas)
return false;
nrelas = rel_size / sizeof (Elf32_External_Rela);
relas = (Elf_Internal_Rela *) cmalloc (nrelas,
sizeof (Elf_Internal_Rela));
if (relas == NULL)
{
free (erelas);
error (_("out of memory parsing relocs\n"));
return false;
}
for (i = 0; i < nrelas; i++)
{
relas[i].r_offset = BYTE_GET (erelas[i].r_offset);
relas[i].r_info = BYTE_GET (erelas[i].r_info);
relas[i].r_addend = BYTE_GET_SIGNED (erelas[i].r_addend);
}
free (erelas);
}
else
{
Elf64_External_Rela * erelas;
erelas = (Elf64_External_Rela *) get_data (NULL, filedata, rel_offset, 1,
rel_size, _("64-bit relocation data"));
if (!erelas)
return false;
nrelas = rel_size / sizeof (Elf64_External_Rela);
relas = (Elf_Internal_Rela *) cmalloc (nrelas,
sizeof (Elf_Internal_Rela));
if (relas == NULL)
{
free (erelas);
error (_("out of memory parsing relocs\n"));
return false;
}
for (i = 0; i < nrelas; i++)
{
relas[i].r_offset = BYTE_GET (erelas[i].r_offset);
relas[i].r_info = BYTE_GET (erelas[i].r_info);
relas[i].r_addend = BYTE_GET_SIGNED (erelas[i].r_addend);
if (filedata->file_header.e_machine == EM_MIPS
&& filedata->file_header.e_ident[EI_DATA] != ELFDATA2MSB)
{
/* In little-endian objects, r_info isn't really a
64-bit little-endian value: it has a 32-bit
little-endian symbol index followed by four
individual byte fields. Reorder INFO
accordingly. */
uint64_t inf = relas[i].r_info;
inf = (((inf & 0xffffffff) << 32)
| ((inf >> 56) & 0xff)
| ((inf >> 40) & 0xff00)
| ((inf >> 24) & 0xff0000)
| ((inf >> 8) & 0xff000000));
relas[i].r_info = inf;
}
}
free (erelas);
}
*relasp = relas;
*nrelasp = nrelas;
return true;
}
/* Load REL type relocations from FILEDATA at REL_OFFSET extending for REL_SIZE bytes.
Returns TRUE upon success, FALSE otherwise. If successful then a
pointer to a malloc'ed buffer containing the relocs is placed in *RELSP,
and the number of relocs loaded is placed in *NRELSP. It is the caller's
responsibility to free the allocated buffer. */
static bool
slurp_rel_relocs (Filedata *filedata,
uint64_t rel_offset,
uint64_t rel_size,
Elf_Internal_Rela **relsp,
uint64_t *nrelsp)
{
Elf_Internal_Rela * rels;
uint64_t nrels;
unsigned int i;
if (is_32bit_elf)
{
Elf32_External_Rel * erels;
erels = (Elf32_External_Rel *) get_data (NULL, filedata, rel_offset, 1,
rel_size, _("32-bit relocation data"));
if (!erels)
return false;
nrels = rel_size / sizeof (Elf32_External_Rel);
rels = (Elf_Internal_Rela *) cmalloc (nrels, sizeof (Elf_Internal_Rela));
if (rels == NULL)
{
free (erels);
error (_("out of memory parsing relocs\n"));
return false;
}
for (i = 0; i < nrels; i++)
{
rels[i].r_offset = BYTE_GET (erels[i].r_offset);
rels[i].r_info = BYTE_GET (erels[i].r_info);
rels[i].r_addend = 0;
}
free (erels);
}
else
{
Elf64_External_Rel * erels;
erels = (Elf64_External_Rel *) get_data (NULL, filedata, rel_offset, 1,
rel_size, _("64-bit relocation data"));
if (!erels)
return false;
nrels = rel_size / sizeof (Elf64_External_Rel);
rels = (Elf_Internal_Rela *) cmalloc (nrels, sizeof (Elf_Internal_Rela));
if (rels == NULL)
{
free (erels);
error (_("out of memory parsing relocs\n"));
return false;
}
for (i = 0; i < nrels; i++)
{
rels[i].r_offset = BYTE_GET (erels[i].r_offset);
rels[i].r_info = BYTE_GET (erels[i].r_info);
rels[i].r_addend = 0;
if (filedata->file_header.e_machine == EM_MIPS
&& filedata->file_header.e_ident[EI_DATA] != ELFDATA2MSB)
{
/* In little-endian objects, r_info isn't really a
64-bit little-endian value: it has a 32-bit
little-endian symbol index followed by four
individual byte fields. Reorder INFO
accordingly. */
uint64_t inf = rels[i].r_info;
inf = (((inf & 0xffffffff) << 32)
| ((inf >> 56) & 0xff)
| ((inf >> 40) & 0xff00)
| ((inf >> 24) & 0xff0000)
| ((inf >> 8) & 0xff000000));
rels[i].r_info = inf;
}
}
free (erels);
}
*relsp = rels;
*nrelsp = nrels;
return true;
}
/* Returns the reloc type extracted from the reloc info field. */
static unsigned int
get_reloc_type (Filedata * filedata, uint64_t reloc_info)
{
if (is_32bit_elf)
return ELF32_R_TYPE (reloc_info);
switch (filedata->file_header.e_machine)
{
case EM_MIPS:
/* Note: We assume that reloc_info has already been adjusted for us. */
return ELF64_MIPS_R_TYPE (reloc_info);
case EM_SPARCV9:
return ELF64_R_TYPE_ID (reloc_info);
default:
return ELF64_R_TYPE (reloc_info);
}
}
/* Return the symbol index extracted from the reloc info field. */
static uint64_t
get_reloc_symindex (uint64_t reloc_info)
{
return is_32bit_elf ? ELF32_R_SYM (reloc_info) : ELF64_R_SYM (reloc_info);
}
static inline bool
uses_msp430x_relocs (Filedata * filedata)
{
return
filedata->file_header.e_machine == EM_MSP430 /* Paranoia. */
/* GCC uses osabi == ELFOSBI_STANDALONE. */
&& (((filedata->file_header.e_flags & EF_MSP430_MACH) == E_MSP430_MACH_MSP430X)
/* TI compiler uses ELFOSABI_NONE. */
|| (filedata->file_header.e_ident[EI_OSABI] == ELFOSABI_NONE));
}
static const char *
get_symbol_at (Filedata * filedata,
Elf_Internal_Sym * symtab,
uint64_t nsyms,
char * strtab,
uint64_t where,
uint64_t * offset_return)
{
Elf_Internal_Sym * beg = symtab;
Elf_Internal_Sym * end = symtab + nsyms;
Elf_Internal_Sym * best = NULL;
uint64_t dist = 0x100000;
/* FIXME: Since this function is likely to be called repeatedly with
slightly increasing addresses each time, we could speed things up by
caching the last returned value and starting our search from there. */
while (beg < end)
{
Elf_Internal_Sym * sym;
uint64_t value;
sym = beg + (end - beg) / 2;
value = sym->st_value;
if (where >= value
&& where - value < dist)
{
best = sym;
dist = where - value;
if (dist == 0)
break;
}
if (where < value)
end = sym;
else
beg = sym + 1;
}
const char *name;
/* If there is a section start closer than the found symbol then
use that for symbolizing the address. */
Elf_Internal_Shdr *sec = find_section_by_address (filedata, where);
if (sec != NULL
&& where - sec->sh_addr < dist
&& section_name_valid (filedata, sec))
{
name = section_name (filedata, sec);
dist = where - sec->sh_addr;
}
else if (best != NULL)
name = strtab + best->st_name;
else
return NULL;
if (offset_return != NULL)
* offset_return = dist;
return name;
}
static void
print_relr_addr_and_sym (Filedata * filedata,
Elf_Internal_Sym * symtab,
uint64_t nsyms,
char * strtab,
uint64_t where)
{
const char * symname = NULL;
uint64_t offset = 0;
print_vma (where, ZERO_HEX);
printf (" ");
symname = get_symbol_at (filedata, symtab, nsyms, strtab, where, & offset);
if (symname == NULL)
printf ("<no sym>");
else if (offset == 0)
print_symbol_name (38, symname);
else
{
print_symbol_name (28, symname);
printf (" + ");
print_vma (offset, PREFIX_HEX);
}
}
/* See bfd_is_aarch64_special_symbol_name. */
static bool
is_aarch64_special_symbol_name (const char *name)
{
if (!name || name[0] != '$')
return false;
if (name[1] == 'x' || name[1] == 'd')
/* Map. */;
else if (name[1] == 'm' || name[1] == 'f' || name[1] == 'p')
/* Tag. */;
else
return false;
return name[2] == 0 || name[2] == '.';
}
static bool
is_special_symbol_name (Filedata * filedata, const char * s)
{
switch (filedata->file_header.e_machine)
{
case EM_AARCH64:
return is_aarch64_special_symbol_name (s);
default:
return false;
}
}
/* Allows selecting the best symbol from a set for displaying addresses.
BEST is the current best or NULL if there are no good symbols yet.
SYM is the next symbol to consider, if it is better than BEST then
return SYM else return BEST. */
static Elf_Internal_Sym *
select_display_sym (Filedata * filedata,
char * strtab,
uint64_t strtablen,
Elf_Internal_Sym * best,
Elf_Internal_Sym * sym)
{
/* Ignore empty or invalid syms. */
if (sym->st_name == 0)
return best;
if (sym->st_name >= strtablen)
return best;
/* Ignore undefined or TLS syms. */
if (sym->st_shndx == SHN_UNDEF)
return best;
if (ELF_ST_TYPE (sym->st_info) == STT_TLS)
return best;
char *s = strtab + sym->st_name;
/* Don't display special symbols. */
if (is_special_symbol_name (filedata, s))
return best;
/* Here SYM is good for display. */
if (best == NULL)
return sym;
char *sbest = strtab + best->st_name;
/* Prefer non-local symbols. */
if (ELF_ST_BIND (sym->st_info) == STB_LOCAL
&& ELF_ST_BIND (best->st_info) != STB_LOCAL)
return best;
if (ELF_ST_BIND (sym->st_info) != STB_LOCAL
&& ELF_ST_BIND (best->st_info) == STB_LOCAL)
return sym;
/* Select based on lexicographic order. */
return strcmp (s, sbest) < 0 ? sym : best;
}
/* Filter the sorted SYMTAB symbol array in-place to select at most one
symbol for an address and drop symbols that are not good to display.
Returns the new array length. */
static uint64_t
filter_display_syms (Filedata * filedata,
Elf_Internal_Sym * symtab,
uint64_t nsyms,
char * strtab,
uint64_t strtablen)
{
Elf_Internal_Sym *r = symtab;
Elf_Internal_Sym *w = symtab;
Elf_Internal_Sym *best = NULL;
Elf_Internal_Sym *end = symtab + nsyms;
while (r < end)
{
/* Select the best symbol for an address. */
while (r < end
&& (best == NULL || best->st_value == r->st_value))
{
best = select_display_sym (filedata, strtab, strtablen, best, r);
r++;
}
if (best != NULL)
{
*w = *best;
w++;
best = NULL;
}
}
return w - symtab;
}
static /* signed */ int
symcmp (const void *p, const void *q)
{
Elf_Internal_Sym *sp = (Elf_Internal_Sym *) p;
Elf_Internal_Sym *sq = (Elf_Internal_Sym *) q;
return sp->st_value > sq->st_value ? 1 : (sp->st_value < sq->st_value ? -1 : 0);
}
static uint64_t
count_relr_relocations (Filedata * filedata,
Elf_Internal_Shdr * section)
{
uint64_t * relrs;
uint64_t nentries;
uint64_t i;
uint64_t count;
int entsize;
if (section == NULL
|| section->sh_type != SHT_RELR
|| section->sh_size == 0)
return 0;
entsize = section->sh_entsize;
if (entsize == 0)
entsize = is_32bit_elf
? sizeof (Elf32_External_Relr) : sizeof (Elf64_External_Relr);
else if (entsize != sizeof (Elf32_External_Relr)
&& entsize != sizeof (Elf64_External_Relr))
return 0;
nentries = section->sh_size / entsize;
if (nentries == 0)
return 0;
/* FIXME: This call to get_data duplicates one that follows in
dump_relr_relocations(). They could be combined into just
one call. */
relrs = get_data (NULL, filedata, section->sh_offset, 1,
section->sh_size, _("RELR relocation data"));
if (relrs == NULL)
return 0;
for (count = i = 0; i < nentries; i++)
{
uint64_t entry;
if (entsize == sizeof (Elf32_External_Relr))
entry = BYTE_GET (((Elf32_External_Relr *)relrs)[i].r_data);
else
entry = BYTE_GET (((Elf64_External_Relr *)relrs)[i].r_data);
if ((entry & 1) == 0)
{
++ count;
}
else
{
if (entry == 1)
continue;
for (; entry >>= 1;)
if ((entry & 1) == 1)
++ count;
}
}
free (relrs);
return count;
}
static bool
dump_relr_relocations (Filedata * filedata,
Elf_Internal_Shdr * section,
Elf_Internal_Sym * symtab,
uint64_t nsyms,
char * strtab,
uint64_t strtablen)
{
uint64_t * relrs;
uint64_t nentries, i;
uint64_t relr_size = section->sh_size;
int relr_entsize = section->sh_entsize;
uint64_t relr_offset = section->sh_offset;
uint64_t where = 0;
int num_bits_in_entry;
if (relr_entsize == 0)
relr_entsize = is_32bit_elf
? sizeof (Elf32_External_Relr) : sizeof (Elf64_External_Relr);
nentries = relr_size / relr_entsize;
if (nentries == 0)
return true;
if (relr_entsize == sizeof (Elf32_External_Relr))
num_bits_in_entry = 31;
else if (relr_entsize == sizeof (Elf64_External_Relr))
num_bits_in_entry = 63;
else
{
warn (_("Unexpected entsize for RELR section\n"));
return false;
}
relrs = get_data (NULL, filedata, relr_offset, 1, relr_size, _("RELR relocation data"));
if (relrs == NULL)
return false;
/* Paranoia. */
if (strtab == NULL)
strtablen = 0;
if (symtab == NULL)
nsyms = 0;
if (symtab != NULL)
{
/* Symbol tables are not sorted on address, but we want a quick lookup
for the symbol associated with each address computed below, so sort
the table then filter out unwanted entries. FIXME: This assumes that
the symbol table will not be used later on for some other purpose. */
qsort (symtab, nsyms, sizeof (Elf_Internal_Sym), symcmp);
nsyms = filter_display_syms (filedata, symtab, nsyms, strtab, strtablen);
}
if (relr_entsize == sizeof (Elf32_External_Relr))
printf (_ ("Index: Entry Address Symbolic Address\n"));
else
printf (_ ("Index: Entry Address Symbolic Address\n"));
for (i = 0; i < nentries; i++)
{
uint64_t entry;
if (relr_entsize == sizeof (Elf32_External_Relr))
entry = BYTE_GET (((Elf32_External_Relr *)relrs)[i].r_data);
else
entry = BYTE_GET (((Elf64_External_Relr *)relrs)[i].r_data);
/* We assume that there will never be more than 9999 entries. */
printf (_("%04u: "), (unsigned int) i);
print_vma (entry, ZERO_HEX);
printf (" ");
if ((entry & 1) == 0)
{
where = entry;
print_relr_addr_and_sym (filedata, symtab, nsyms, strtab, where);
printf ("\n");
where += relr_entsize;
}
else
{
bool first = true;
int j;
/* The least significant bit is ignored. */
if (entry == 1)
/* This can actually happen when the linker is allowed to shrink
RELR sections. For more details see: https://reviews.llvm.org/D67164. */
continue;
else if (i == 0)
warn (_("Unusual RELR bitmap - no previous entry to set the base address\n"));
for (j = 0; entry >>= 1; j++)
if ((entry & 1) == 1)
{
uint64_t addr = where + (j * relr_entsize);
if (first)
{
print_relr_addr_and_sym (filedata, symtab, nsyms, strtab, addr);
first = false;
}
else
{
printf (_("\n%*s "), relr_entsize == 4 ? 15 : 23, " ");
print_relr_addr_and_sym (filedata, symtab, nsyms, strtab, addr);
}
}
printf ("\n");
where += num_bits_in_entry * relr_entsize;
}
}
free (relrs);
return true;
}
/* Display the contents of the relocation data found at the specified
offset. */
static bool
dump_relocations (Filedata * filedata,
uint64_t rel_offset,
uint64_t rel_size,
Elf_Internal_Sym * symtab,
uint64_t nsyms,
char * strtab,
uint64_t strtablen,
relocation_type rel_type,
bool is_dynsym)
{
size_t i;
Elf_Internal_Rela * rels;
bool res = true;
if (rel_type == reltype_unknown)
rel_type = guess_is_rela (filedata->file_header.e_machine) ? reltype_rela : reltype_rel;
if (rel_type == reltype_rela)
{
if (!slurp_rela_relocs (filedata, rel_offset, rel_size, &rels, &rel_size))
return false;
}
else if (rel_type == reltype_rel)
{
if (!slurp_rel_relocs (filedata, rel_offset, rel_size, &rels, &rel_size))
return false;
}
else if (rel_type == reltype_relr)
{
/* This should have been handled by display_relocations(). */
return false;
}
if (is_32bit_elf)
{
if (rel_type == reltype_rela)
{
if (do_wide)
printf (_(" Offset Info Type Sym. Value Symbol's Name + Addend\n"));
else
printf (_(" Offset Info Type Sym.Value Sym. Name + Addend\n"));
}
else
{
if (do_wide)
printf (_(" Offset Info Type Sym. Value Symbol's Name\n"));
else
printf (_(" Offset Info Type Sym.Value Sym. Name\n"));
}
}
else
{
if (rel_type == reltype_rela)
{
if (do_wide)
printf (_(" Offset Info Type Symbol's Value Symbol's Name + Addend\n"));
else
printf (_(" Offset Info Type Sym. Value Sym. Name + Addend\n"));
}
else
{
if (do_wide)
printf (_(" Offset Info Type Symbol's Value Symbol's Name\n"));
else
printf (_(" Offset Info Type Sym. Value Sym. Name\n"));
}
}
for (i = 0; i < rel_size; i++)
{
const char * rtype;
uint64_t offset;
uint64_t inf;
uint64_t symtab_index;
uint64_t type;
offset = rels[i].r_offset;
inf = rels[i].r_info;
type = get_reloc_type (filedata, inf);
symtab_index = get_reloc_symindex (inf);
if (is_32bit_elf)
{
printf ("%8.8lx %8.8lx ",
(unsigned long) offset & 0xffffffff,
(unsigned long) inf & 0xffffffff);
}
else
{
printf (do_wide
? "%16.16" PRIx64 " %16.16" PRIx64 " "
: "%12.12" PRIx64 " %12.12" PRIx64 " ",
offset, inf);
}
switch (filedata->file_header.e_machine)
{
default:
rtype = NULL;
break;
case EM_AARCH64:
rtype = elf_aarch64_reloc_type (type);
break;
case EM_M32R:
case EM_CYGNUS_M32R:
rtype = elf_m32r_reloc_type (type);
break;
case EM_386:
case EM_IAMCU:
rtype = elf_i386_reloc_type (type);
break;
case EM_68HC11:
case EM_68HC12:
rtype = elf_m68hc11_reloc_type (type);
break;
case EM_S12Z:
rtype = elf_s12z_reloc_type (type);
break;
case EM_68K:
rtype = elf_m68k_reloc_type (type);
break;
case EM_960:
rtype = elf_i960_reloc_type (type);
break;
case EM_AVR:
case EM_AVR_OLD:
rtype = elf_avr_reloc_type (type);
break;
case EM_OLD_SPARCV9:
case EM_SPARC32PLUS:
case EM_SPARCV9:
case EM_SPARC:
rtype = elf_sparc_reloc_type (type);
break;
case EM_SPU:
rtype = elf_spu_reloc_type (type);
break;
case EM_V800:
rtype = v800_reloc_type (type);
break;
case EM_V850:
case EM_CYGNUS_V850:
rtype = v850_reloc_type (type);
break;
case EM_D10V:
case EM_CYGNUS_D10V:
rtype = elf_d10v_reloc_type (type);
break;
case EM_D30V:
case EM_CYGNUS_D30V:
rtype = elf_d30v_reloc_type (type);
break;
case EM_DLX:
rtype = elf_dlx_reloc_type (type);
break;
case EM_SH:
rtype = elf_sh_reloc_type (type);
break;
case EM_MN10300:
case EM_CYGNUS_MN10300:
rtype = elf_mn10300_reloc_type (type);
break;
case EM_MN10200:
case EM_CYGNUS_MN10200:
rtype = elf_mn10200_reloc_type (type);
break;
case EM_FR30:
case EM_CYGNUS_FR30:
rtype = elf_fr30_reloc_type (type);
break;
case EM_CYGNUS_FRV:
rtype = elf_frv_reloc_type (type);
break;
case EM_CSKY:
rtype = elf_csky_reloc_type (type);
break;
case EM_FT32:
rtype = elf_ft32_reloc_type (type);
break;
case EM_MCORE:
rtype = elf_mcore_reloc_type (type);
break;
case EM_MMIX:
rtype = elf_mmix_reloc_type (type);
break;
case EM_MOXIE:
rtype = elf_moxie_reloc_type (type);
break;
case EM_MSP430:
if (uses_msp430x_relocs (filedata))
{
rtype = elf_msp430x_reloc_type (type);
break;
}
/* Fall through. */
case EM_MSP430_OLD:
rtype = elf_msp430_reloc_type (type);
break;
case EM_NDS32:
rtype = elf_nds32_reloc_type (type);
break;
case EM_PPC:
rtype = elf_ppc_reloc_type (type);
break;
case EM_PPC64:
rtype = elf_ppc64_reloc_type (type);
break;
case EM_MIPS:
case EM_MIPS_RS3_LE:
rtype = elf_mips_reloc_type (type);
break;
case EM_RISCV:
rtype = elf_riscv_reloc_type (type);
break;
case EM_ALPHA:
rtype = elf_alpha_reloc_type (type);
break;
case EM_ARM:
rtype = elf_arm_reloc_type (type);
break;
case EM_ARC:
case EM_ARC_COMPACT:
case EM_ARC_COMPACT2:
case EM_ARC_COMPACT3:
case EM_ARC_COMPACT3_64:
rtype = elf_arc_reloc_type (type);
break;
case EM_PARISC:
rtype = elf_hppa_reloc_type (type);
break;
case EM_H8_300:
case EM_H8_300H:
case EM_H8S:
rtype = elf_h8_reloc_type (type);
break;
case EM_OR1K:
rtype = elf_or1k_reloc_type (type);
break;
case EM_PJ:
case EM_PJ_OLD:
rtype = elf_pj_reloc_type (type);
break;
case EM_IA_64:
rtype = elf_ia64_reloc_type (type);
break;
case EM_KVX:
rtype = elf_kvx_reloc_type (type);
break;
case EM_CRIS:
rtype = elf_cris_reloc_type (type);
break;
case EM_860:
rtype = elf_i860_reloc_type (type);
break;
case EM_X86_64:
case EM_L1OM:
case EM_K1OM:
rtype = elf_x86_64_reloc_type (type);
break;
case EM_S370:
rtype = i370_reloc_type (type);
break;
case EM_S390_OLD:
case EM_S390:
rtype = elf_s390_reloc_type (type);
break;
case EM_SCORE:
rtype = elf_score_reloc_type (type);
break;
case EM_XSTORMY16:
rtype = elf_xstormy16_reloc_type (type);
break;
case EM_CRX:
rtype = elf_crx_reloc_type (type);
break;
case EM_VAX:
rtype = elf_vax_reloc_type (type);
break;
case EM_VISIUM:
rtype = elf_visium_reloc_type (type);
break;
case EM_BPF:
rtype = elf_bpf_reloc_type (type);
break;
case EM_ADAPTEVA_EPIPHANY:
rtype = elf_epiphany_reloc_type (type);
break;
case EM_IP2K:
case EM_IP2K_OLD:
rtype = elf_ip2k_reloc_type (type);
break;
case EM_IQ2000:
rtype = elf_iq2000_reloc_type (type);
break;
case EM_XTENSA_OLD:
case EM_XTENSA:
rtype = elf_xtensa_reloc_type (type);
break;
case EM_LATTICEMICO32:
rtype = elf_lm32_reloc_type (type);
break;
case EM_M32C_OLD:
case EM_M32C:
rtype = elf_m32c_reloc_type (type);
break;
case EM_MT:
rtype = elf_mt_reloc_type (type);
break;
case EM_BLACKFIN:
rtype = elf_bfin_reloc_type (type);
break;
case EM_CYGNUS_MEP:
rtype = elf_mep_reloc_type (type);
break;
case EM_CR16:
rtype = elf_cr16_reloc_type (type);
break;
case EM_MICROBLAZE:
case EM_MICROBLAZE_OLD:
rtype = elf_microblaze_reloc_type (type);
break;
case EM_RL78:
rtype = elf_rl78_reloc_type (type);
break;
case EM_RX:
rtype = elf_rx_reloc_type (type);
break;
case EM_METAG:
rtype = elf_metag_reloc_type (type);
break;
case EM_TI_C6000:
rtype = elf_tic6x_reloc_type (type);
break;
case EM_TILEGX:
rtype = elf_tilegx_reloc_type (type);
break;
case EM_TILEPRO:
rtype = elf_tilepro_reloc_type (type);
break;
case EM_WEBASSEMBLY:
rtype = elf_wasm32_reloc_type (type);
break;
case EM_XGATE:
rtype = elf_xgate_reloc_type (type);
break;
case EM_ALTERA_NIOS2:
rtype = elf_nios2_reloc_type (type);
break;
case EM_TI_PRU:
rtype = elf_pru_reloc_type (type);
break;
case EM_NFP:
if (EF_NFP_MACH (filedata->file_header.e_flags) == E_NFP_MACH_3200)
rtype = elf_nfp3200_reloc_type (type);
else
rtype = elf_nfp_reloc_type (type);
break;
case EM_Z80:
rtype = elf_z80_reloc_type (type);
break;
case EM_LOONGARCH:
rtype = elf_loongarch_reloc_type (type);
break;
case EM_AMDGPU:
rtype = elf_amdgpu_reloc_type (type);
break;
}
if (rtype == NULL)
printf (_("unrecognized: %-7lx"), (unsigned long) type & 0xffffffff);
else
printf (do_wide ? "%-22s" : "%-17.17s", rtype);
if (filedata->file_header.e_machine == EM_ALPHA
&& rtype != NULL
&& streq (rtype, "R_ALPHA_LITUSE")
&& rel_type == reltype_rela)
{
switch (rels[i].r_addend)
{
case LITUSE_ALPHA_ADDR: rtype = "ADDR"; break;
case LITUSE_ALPHA_BASE: rtype = "BASE"; break;
case LITUSE_ALPHA_BYTOFF: rtype = "BYTOFF"; break;
case LITUSE_ALPHA_JSR: rtype = "JSR"; break;
case LITUSE_ALPHA_TLSGD: rtype = "TLSGD"; break;
case LITUSE_ALPHA_TLSLDM: rtype = "TLSLDM"; break;
case LITUSE_ALPHA_JSRDIRECT: rtype = "JSRDIRECT"; break;
default: rtype = NULL;
}
if (rtype)
printf (" (%s)", rtype);
else
{
putchar (' ');
printf (_("<unknown addend: %" PRIx64 ">"),
rels[i].r_addend);
res = false;
}
}
else if (symtab_index)
{
if (symtab == NULL || symtab_index >= nsyms)
{
error (_(" bad symbol index: %08lx in reloc\n"),
(unsigned long) symtab_index);
res = false;
}
else
{
Elf_Internal_Sym * psym;
const char * version_string;
enum versioned_symbol_info sym_info;
unsigned short vna_other;
psym = symtab + symtab_index;
version_string
= get_symbol_version_string (filedata, is_dynsym,
strtab, strtablen,
symtab_index,
psym,
&sym_info,
&vna_other);
printf (" ");
if (ELF_ST_TYPE (psym->st_info) == STT_GNU_IFUNC)
{
const char * name;
unsigned int len;
unsigned int width = is_32bit_elf ? 8 : 14;
/* Relocations against GNU_IFUNC symbols do not use the value
of the symbol as the address to relocate against. Instead
they invoke the function named by the symbol and use its
result as the address for relocation.
To indicate this to the user, do not display the value of
the symbol in the "Symbols's Value" field. Instead show
its name followed by () as a hint that the symbol is
invoked. */
if (strtab == NULL
|| psym->st_name == 0
|| psym->st_name >= strtablen)
name = "??";
else
name = strtab + psym->st_name;
len = print_symbol_name (width, name);
if (version_string)
printf (sym_info == symbol_public ? "@@%s" : "@%s",
version_string);
printf ("()%-*s", len <= width ? (width + 1) - len : 1, " ");
}
else
{
print_vma (psym->st_value, LONG_HEX);
printf (is_32bit_elf ? " " : " ");
}
if (psym->st_name == 0)
{
const char * sec_name = "<null>";
if (ELF_ST_TYPE (psym->st_info) == STT_SECTION)
sec_name = printable_section_name_from_index
(filedata, psym->st_shndx, NULL);
print_symbol_name (22, sec_name);
}
else if (strtab == NULL)
printf (_("<string table index: %3ld>"), psym->st_name);
else if (psym->st_name >= strtablen)
{
error (_("<corrupt string table index: %3ld>\n"),
psym->st_name);
res = false;
}
else
{
print_symbol_name (22, strtab + psym->st_name);
if (version_string)
printf (sym_info == symbol_public ? "@@%s" : "@%s",
version_string);
}
if (rel_type == reltype_rela)
{
uint64_t off = rels[i].r_addend;
if ((int64_t) off < 0)
printf (" - %" PRIx64, -off);
else
printf (" + %" PRIx64, off);
}
}
}
else if (rel_type == reltype_rela)
{
uint64_t off = rels[i].r_addend;
printf ("%*c", is_32bit_elf ? 12 : 20, ' ');
if ((int64_t) off < 0)
printf ("-%" PRIx64, -off);
else
printf ("%" PRIx64, off);
}
if (filedata->file_header.e_machine == EM_SPARCV9
&& rtype != NULL
&& streq (rtype, "R_SPARC_OLO10"))
printf (" + %" PRIx64, ELF64_R_TYPE_DATA (inf));
putchar ('\n');
if (! is_32bit_elf && filedata->file_header.e_machine == EM_MIPS)
{
uint64_t type2 = ELF64_MIPS_R_TYPE2 (inf);
uint64_t type3 = ELF64_MIPS_R_TYPE3 (inf);
const char * rtype2 = elf_mips_reloc_type (type2);
const char * rtype3 = elf_mips_reloc_type (type3);
printf (" Type2: ");
if (rtype2 == NULL)
printf (_("unrecognized: %-7lx"),
(unsigned long) type2 & 0xffffffff);
else
printf ("%-17.17s", rtype2);
printf ("\n Type3: ");
if (rtype3 == NULL)
printf (_("unrecognized: %-7lx"),
(unsigned long) type3 & 0xffffffff);
else
printf ("%-17.17s", rtype3);
putchar ('\n');
}
}
free (rels);
return res;
}
static const char *
get_aarch64_dynamic_type (unsigned long type)
{
switch (type)
{
case DT_AARCH64_BTI_PLT: return "AARCH64_BTI_PLT";
case DT_AARCH64_PAC_PLT: return "AARCH64_PAC_PLT";
case DT_AARCH64_VARIANT_PCS: return "AARCH64_VARIANT_PCS";
default:
return NULL;
}
}
static const char *
get_mips_dynamic_type (unsigned long type)
{
switch (type)
{
case DT_MIPS_RLD_VERSION: return "MIPS_RLD_VERSION";
case DT_MIPS_TIME_STAMP: return "MIPS_TIME_STAMP";
case DT_MIPS_ICHECKSUM: return "MIPS_ICHECKSUM";
case DT_MIPS_IVERSION: return "MIPS_IVERSION";
case DT_MIPS_FLAGS: return "MIPS_FLAGS";
case DT_MIPS_BASE_ADDRESS: return "MIPS_BASE_ADDRESS";
case DT_MIPS_MSYM: return "MIPS_MSYM";
case DT_MIPS_CONFLICT: return "MIPS_CONFLICT";
case DT_MIPS_LIBLIST: return "MIPS_LIBLIST";
case DT_MIPS_LOCAL_GOTNO: return "MIPS_LOCAL_GOTNO";
case DT_MIPS_CONFLICTNO: return "MIPS_CONFLICTNO";
case DT_MIPS_LIBLISTNO: return "MIPS_LIBLISTNO";
case DT_MIPS_SYMTABNO: return "MIPS_SYMTABNO";
case DT_MIPS_UNREFEXTNO: return "MIPS_UNREFEXTNO";
case DT_MIPS_GOTSYM: return "MIPS_GOTSYM";
case DT_MIPS_HIPAGENO: return "MIPS_HIPAGENO";
case DT_MIPS_RLD_MAP: return "MIPS_RLD_MAP";
case DT_MIPS_RLD_MAP_REL: return "MIPS_RLD_MAP_REL";
case DT_MIPS_DELTA_CLASS: return "MIPS_DELTA_CLASS";
case DT_MIPS_DELTA_CLASS_NO: return "MIPS_DELTA_CLASS_NO";
case DT_MIPS_DELTA_INSTANCE: return "MIPS_DELTA_INSTANCE";
case DT_MIPS_DELTA_INSTANCE_NO: return "MIPS_DELTA_INSTANCE_NO";
case DT_MIPS_DELTA_RELOC: return "MIPS_DELTA_RELOC";
case DT_MIPS_DELTA_RELOC_NO: return "MIPS_DELTA_RELOC_NO";
case DT_MIPS_DELTA_SYM: return "MIPS_DELTA_SYM";
case DT_MIPS_DELTA_SYM_NO: return "MIPS_DELTA_SYM_NO";
case DT_MIPS_DELTA_CLASSSYM: return "MIPS_DELTA_CLASSSYM";
case DT_MIPS_DELTA_CLASSSYM_NO: return "MIPS_DELTA_CLASSSYM_NO";
case DT_MIPS_CXX_FLAGS: return "MIPS_CXX_FLAGS";
case DT_MIPS_PIXIE_INIT: return "MIPS_PIXIE_INIT";
case DT_MIPS_SYMBOL_LIB: return "MIPS_SYMBOL_LIB";
case DT_MIPS_LOCALPAGE_GOTIDX: return "MIPS_LOCALPAGE_GOTIDX";
case DT_MIPS_LOCAL_GOTIDX: return "MIPS_LOCAL_GOTIDX";
case DT_MIPS_HIDDEN_GOTIDX: return "MIPS_HIDDEN_GOTIDX";
case DT_MIPS_PROTECTED_GOTIDX: return "MIPS_PROTECTED_GOTIDX";
case DT_MIPS_OPTIONS: return "MIPS_OPTIONS";
case DT_MIPS_INTERFACE: return "MIPS_INTERFACE";
case DT_MIPS_DYNSTR_ALIGN: return "MIPS_DYNSTR_ALIGN";
case DT_MIPS_INTERFACE_SIZE: return "MIPS_INTERFACE_SIZE";
case DT_MIPS_RLD_TEXT_RESOLVE_ADDR: return "MIPS_RLD_TEXT_RESOLVE_ADDR";
case DT_MIPS_PERF_SUFFIX: return "MIPS_PERF_SUFFIX";
case DT_MIPS_COMPACT_SIZE: return "MIPS_COMPACT_SIZE";
case DT_MIPS_GP_VALUE: return "MIPS_GP_VALUE";
case DT_MIPS_AUX_DYNAMIC: return "MIPS_AUX_DYNAMIC";
case DT_MIPS_PLTGOT: return "MIPS_PLTGOT";
case DT_MIPS_RWPLT: return "MIPS_RWPLT";
case DT_MIPS_XHASH: return "MIPS_XHASH";
default:
return NULL;
}
}
static const char *
get_sparc64_dynamic_type (unsigned long type)
{
switch (type)
{
case DT_SPARC_REGISTER: return "SPARC_REGISTER";
default:
return NULL;
}
}
static const char *
get_ppc_dynamic_type (unsigned long type)
{
switch (type)
{
case DT_PPC_GOT: return "PPC_GOT";
case DT_PPC_OPT: return "PPC_OPT";
default:
return NULL;
}
}
static const char *
get_ppc64_dynamic_type (unsigned long type)
{
switch (type)
{
case DT_PPC64_GLINK: return "PPC64_GLINK";
case DT_PPC64_OPD: return "PPC64_OPD";
case DT_PPC64_OPDSZ: return "PPC64_OPDSZ";
case DT_PPC64_OPT: return "PPC64_OPT";
default:
return NULL;
}
}
static const char *
get_parisc_dynamic_type (unsigned long type)
{
switch (type)
{
case DT_HP_LOAD_MAP: return "HP_LOAD_MAP";
case DT_HP_DLD_FLAGS: return "HP_DLD_FLAGS";
case DT_HP_DLD_HOOK: return "HP_DLD_HOOK";
case DT_HP_UX10_INIT: return "HP_UX10_INIT";
case DT_HP_UX10_INITSZ: return "HP_UX10_INITSZ";
case DT_HP_PREINIT: return "HP_PREINIT";
case DT_HP_PREINITSZ: return "HP_PREINITSZ";
case DT_HP_NEEDED: return "HP_NEEDED";
case DT_HP_TIME_STAMP: return "HP_TIME_STAMP";
case DT_HP_CHECKSUM: return "HP_CHECKSUM";
case DT_HP_GST_SIZE: return "HP_GST_SIZE";
case DT_HP_GST_VERSION: return "HP_GST_VERSION";
case DT_HP_GST_HASHVAL: return "HP_GST_HASHVAL";
case DT_HP_EPLTREL: return "HP_GST_EPLTREL";
case DT_HP_EPLTRELSZ: return "HP_GST_EPLTRELSZ";
case DT_HP_FILTERED: return "HP_FILTERED";
case DT_HP_FILTER_TLS: return "HP_FILTER_TLS";
case DT_HP_COMPAT_FILTERED: return "HP_COMPAT_FILTERED";
case DT_HP_LAZYLOAD: return "HP_LAZYLOAD";
case DT_HP_BIND_NOW_COUNT: return "HP_BIND_NOW_COUNT";
case DT_PLT: return "PLT";
case DT_PLT_SIZE: return "PLT_SIZE";
case DT_DLT: return "DLT";
case DT_DLT_SIZE: return "DLT_SIZE";
default:
return NULL;
}
}
static const char *
get_ia64_dynamic_type (unsigned long type)
{
switch (type)
{
case DT_IA_64_PLT_RESERVE: return "IA_64_PLT_RESERVE";
case DT_IA_64_VMS_SUBTYPE: return "VMS_SUBTYPE";
case DT_IA_64_VMS_IMGIOCNT: return "VMS_IMGIOCNT";
case DT_IA_64_VMS_LNKFLAGS: return "VMS_LNKFLAGS";
case DT_IA_64_VMS_VIR_MEM_BLK_SIZ: return "VMS_VIR_MEM_BLK_SIZ";
case DT_IA_64_VMS_IDENT: return "VMS_IDENT";
case DT_IA_64_VMS_NEEDED_IDENT: return "VMS_NEEDED_IDENT";
case DT_IA_64_VMS_IMG_RELA_CNT: return "VMS_IMG_RELA_CNT";
case DT_IA_64_VMS_SEG_RELA_CNT: return "VMS_SEG_RELA_CNT";
case DT_IA_64_VMS_FIXUP_RELA_CNT: return "VMS_FIXUP_RELA_CNT";
case DT_IA_64_VMS_FIXUP_NEEDED: return "VMS_FIXUP_NEEDED";
case DT_IA_64_VMS_SYMVEC_CNT: return "VMS_SYMVEC_CNT";
case DT_IA_64_VMS_XLATED: return "VMS_XLATED";
case DT_IA_64_VMS_STACKSIZE: return "VMS_STACKSIZE";
case DT_IA_64_VMS_UNWINDSZ: return "VMS_UNWINDSZ";
case DT_IA_64_VMS_UNWIND_CODSEG: return "VMS_UNWIND_CODSEG";
case DT_IA_64_VMS_UNWIND_INFOSEG: return "VMS_UNWIND_INFOSEG";
case DT_IA_64_VMS_LINKTIME: return "VMS_LINKTIME";
case DT_IA_64_VMS_SEG_NO: return "VMS_SEG_NO";
case DT_IA_64_VMS_SYMVEC_OFFSET: return "VMS_SYMVEC_OFFSET";
case DT_IA_64_VMS_SYMVEC_SEG: return "VMS_SYMVEC_SEG";
case DT_IA_64_VMS_UNWIND_OFFSET: return "VMS_UNWIND_OFFSET";
case DT_IA_64_VMS_UNWIND_SEG: return "VMS_UNWIND_SEG";
case DT_IA_64_VMS_STRTAB_OFFSET: return "VMS_STRTAB_OFFSET";
case DT_IA_64_VMS_SYSVER_OFFSET: return "VMS_SYSVER_OFFSET";
case DT_IA_64_VMS_IMG_RELA_OFF: return "VMS_IMG_RELA_OFF";
case DT_IA_64_VMS_SEG_RELA_OFF: return "VMS_SEG_RELA_OFF";
case DT_IA_64_VMS_FIXUP_RELA_OFF: return "VMS_FIXUP_RELA_OFF";
case DT_IA_64_VMS_PLTGOT_OFFSET: return "VMS_PLTGOT_OFFSET";
case DT_IA_64_VMS_PLTGOT_SEG: return "VMS_PLTGOT_SEG";
case DT_IA_64_VMS_FPMODE: return "VMS_FPMODE";
default:
return NULL;
}
}
static const char *
get_solaris_section_type (unsigned long type)
{
switch (type)
{
case 0x6fffffee: return "SUNW_ancillary";
case 0x6fffffef: return "SUNW_capchain";
case 0x6ffffff0: return "SUNW_capinfo";
case 0x6ffffff1: return "SUNW_symsort";
case 0x6ffffff2: return "SUNW_tlssort";
case 0x6ffffff3: return "SUNW_LDYNSYM";
case 0x6ffffff4: return "SUNW_dof";
case 0x6ffffff5: return "SUNW_cap";
case 0x6ffffff6: return "SUNW_SIGNATURE";
case 0x6ffffff7: return "SUNW_ANNOTATE";
case 0x6ffffff8: return "SUNW_DEBUGSTR";
case 0x6ffffff9: return "SUNW_DEBUG";
case 0x6ffffffa: return "SUNW_move";
case 0x6ffffffb: return "SUNW_COMDAT";
case 0x6ffffffc: return "SUNW_syminfo";
case 0x6ffffffd: return "SUNW_verdef";
case 0x6ffffffe: return "SUNW_verneed";
case 0x6fffffff: return "SUNW_versym";
case 0x70000000: return "SPARC_GOTDATA";
default: return NULL;
}
}
static const char *
get_alpha_dynamic_type (unsigned long type)
{
switch (type)
{
case DT_ALPHA_PLTRO: return "ALPHA_PLTRO";
default: return NULL;
}
}
static const char *
get_score_dynamic_type (unsigned long type)
{
switch (type)
{
case DT_SCORE_BASE_ADDRESS: return "SCORE_BASE_ADDRESS";
case DT_SCORE_LOCAL_GOTNO: return "SCORE_LOCAL_GOTNO";
case DT_SCORE_SYMTABNO: return "SCORE_SYMTABNO";
case DT_SCORE_GOTSYM: return "SCORE_GOTSYM";
case DT_SCORE_UNREFEXTNO: return "SCORE_UNREFEXTNO";
case DT_SCORE_HIPAGENO: return "SCORE_HIPAGENO";
default: return NULL;
}
}
static const char *
get_tic6x_dynamic_type (unsigned long type)
{
switch (type)
{
case DT_C6000_GSYM_OFFSET: return "C6000_GSYM_OFFSET";
case DT_C6000_GSTR_OFFSET: return "C6000_GSTR_OFFSET";
case DT_C6000_DSBT_BASE: return "C6000_DSBT_BASE";
case DT_C6000_DSBT_SIZE: return "C6000_DSBT_SIZE";
case DT_C6000_PREEMPTMAP: return "C6000_PREEMPTMAP";
case DT_C6000_DSBT_INDEX: return "C6000_DSBT_INDEX";
default: return NULL;
}
}
static const char *
get_nios2_dynamic_type (unsigned long type)
{
switch (type)
{
case DT_NIOS2_GP: return "NIOS2_GP";
default: return NULL;
}
}
static const char *
get_solaris_dynamic_type (unsigned long type)
{
switch (type)
{
case 0x6000000d: return "SUNW_AUXILIARY";
case 0x6000000e: return "SUNW_RTLDINF";
case 0x6000000f: return "SUNW_FILTER";
case 0x60000010: return "SUNW_CAP";
case 0x60000011: return "SUNW_SYMTAB";
case 0x60000012: return "SUNW_SYMSZ";
case 0x60000013: return "SUNW_SORTENT";
case 0x60000014: return "SUNW_SYMSORT";
case 0x60000015: return "SUNW_SYMSORTSZ";
case 0x60000016: return "SUNW_TLSSORT";
case 0x60000017: return "SUNW_TLSSORTSZ";
case 0x60000018: return "SUNW_CAPINFO";
case 0x60000019: return "SUNW_STRPAD";
case 0x6000001a: return "SUNW_CAPCHAIN";
case 0x6000001b: return "SUNW_LDMACH";
case 0x6000001d: return "SUNW_CAPCHAINENT";
case 0x6000001f: return "SUNW_CAPCHAINSZ";
case 0x60000021: return "SUNW_PARENT";
case 0x60000023: return "SUNW_ASLR";
case 0x60000025: return "SUNW_RELAX";
case 0x60000029: return "SUNW_NXHEAP";
case 0x6000002b: return "SUNW_NXSTACK";
case 0x70000001: return "SPARC_REGISTER";
case 0x7ffffffd: return "AUXILIARY";
case 0x7ffffffe: return "USED";
case 0x7fffffff: return "FILTER";
default: return NULL;
}
}
static const char *
get_riscv_dynamic_type (unsigned long type)
{
switch (type)
{
case DT_RISCV_VARIANT_CC: return "RISCV_VARIANT_CC";
default:
return NULL;
}
}
static const char *
get_x86_64_dynamic_type (unsigned long type)
{
switch (type)
{
case DT_X86_64_PLT:
return "DT_X86_64_PLT";
case DT_X86_64_PLTSZ:
return "DT_X86_64_PLTSZ";
case DT_X86_64_PLTENT:
return "DT_X86_64_PLTENT";
default:
return NULL;
}
}
static const char *
get_dynamic_type (Filedata * filedata, unsigned long type)
{
static char buff[64];
switch (type)
{
case DT_NULL: return "NULL";
case DT_NEEDED: return "NEEDED";
case DT_PLTRELSZ: return "PLTRELSZ";
case DT_PLTGOT: return "PLTGOT";
case DT_HASH: return "HASH";
case DT_STRTAB: return "STRTAB";
case DT_SYMTAB: return "SYMTAB";
case DT_RELA: return "RELA";
case DT_RELASZ: return "RELASZ";
case DT_RELAENT: return "RELAENT";
case DT_STRSZ: return "STRSZ";
case DT_SYMENT: return "SYMENT";
case DT_INIT: return "INIT";
case DT_FINI: return "FINI";
case DT_SONAME: return "SONAME";
case DT_RPATH: return "RPATH";
case DT_SYMBOLIC: return "SYMBOLIC";
case DT_REL: return "REL";
case DT_RELSZ: return "RELSZ";
case DT_RELENT: return "RELENT";
case DT_RELR: return "RELR";
case DT_RELRSZ: return "RELRSZ";
case DT_RELRENT: return "RELRENT";
case DT_PLTREL: return "PLTREL";
case DT_DEBUG: return "DEBUG";
case DT_TEXTREL: return "TEXTREL";
case DT_JMPREL: return "JMPREL";
case DT_BIND_NOW: return "BIND_NOW";
case DT_INIT_ARRAY: return "INIT_ARRAY";
case DT_FINI_ARRAY: return "FINI_ARRAY";
case DT_INIT_ARRAYSZ: return "INIT_ARRAYSZ";
case DT_FINI_ARRAYSZ: return "FINI_ARRAYSZ";
case DT_RUNPATH: return "RUNPATH";
case DT_FLAGS: return "FLAGS";
case DT_PREINIT_ARRAY: return "PREINIT_ARRAY";
case DT_PREINIT_ARRAYSZ: return "PREINIT_ARRAYSZ";
case DT_SYMTAB_SHNDX: return "SYMTAB_SHNDX";
case DT_CHECKSUM: return "CHECKSUM";
case DT_PLTPADSZ: return "PLTPADSZ";
case DT_MOVEENT: return "MOVEENT";
case DT_MOVESZ: return "MOVESZ";
case DT_FEATURE: return "FEATURE";
case DT_POSFLAG_1: return "POSFLAG_1";
case DT_SYMINSZ: return "SYMINSZ";
case DT_SYMINENT: return "SYMINENT"; /* aka VALRNGHI */
case DT_ADDRRNGLO: return "ADDRRNGLO";
case DT_CONFIG: return "CONFIG";
case DT_DEPAUDIT: return "DEPAUDIT";
case DT_AUDIT: return "AUDIT";
case DT_PLTPAD: return "PLTPAD";
case DT_MOVETAB: return "MOVETAB";
case DT_SYMINFO: return "SYMINFO"; /* aka ADDRRNGHI */
case DT_VERSYM: return "VERSYM";
case DT_TLSDESC_GOT: return "TLSDESC_GOT";
case DT_TLSDESC_PLT: return "TLSDESC_PLT";
case DT_RELACOUNT: return "RELACOUNT";
case DT_RELCOUNT: return "RELCOUNT";
case DT_FLAGS_1: return "FLAGS_1";
case DT_VERDEF: return "VERDEF";
case DT_VERDEFNUM: return "VERDEFNUM";
case DT_VERNEED: return "VERNEED";
case DT_VERNEEDNUM: return "VERNEEDNUM";
case DT_AUXILIARY: return "AUXILIARY";
case DT_USED: return "USED";
case DT_FILTER: return "FILTER";
case DT_GNU_PRELINKED: return "GNU_PRELINKED";
case DT_GNU_CONFLICT: return "GNU_CONFLICT";
case DT_GNU_CONFLICTSZ: return "GNU_CONFLICTSZ";
case DT_GNU_LIBLIST: return "GNU_LIBLIST";
case DT_GNU_LIBLISTSZ: return "GNU_LIBLISTSZ";
case DT_GNU_HASH: return "GNU_HASH";
case DT_GNU_FLAGS_1: return "GNU_FLAGS_1";
default:
if ((type >= DT_LOPROC) && (type <= DT_HIPROC))
{
const char * result;
switch (filedata->file_header.e_machine)
{
case EM_AARCH64:
result = get_aarch64_dynamic_type (type);
break;
case EM_MIPS:
case EM_MIPS_RS3_LE:
result = get_mips_dynamic_type (type);
break;
case EM_SPARCV9:
result = get_sparc64_dynamic_type (type);
break;
case EM_PPC:
result = get_ppc_dynamic_type (type);
break;
case EM_PPC64:
result = get_ppc64_dynamic_type (type);
break;
case EM_IA_64:
result = get_ia64_dynamic_type (type);
break;
case EM_ALPHA:
result = get_alpha_dynamic_type (type);
break;
case EM_SCORE:
result = get_score_dynamic_type (type);
break;
case EM_TI_C6000:
result = get_tic6x_dynamic_type (type);
break;
case EM_ALTERA_NIOS2:
result = get_nios2_dynamic_type (type);
break;
case EM_RISCV:
result = get_riscv_dynamic_type (type);
break;
case EM_X86_64:
result = get_x86_64_dynamic_type (type);
break;
default:
if (filedata->file_header.e_ident[EI_OSABI] == ELFOSABI_SOLARIS)
result = get_solaris_dynamic_type (type);
else
result = NULL;
break;
}
if (result != NULL)
return result;
snprintf (buff, sizeof (buff), _("Processor Specific: %lx"), type);
}
else if (((type >= DT_LOOS) && (type <= DT_HIOS))
|| (filedata->file_header.e_machine == EM_PARISC
&& (type >= OLD_DT_LOOS) && (type <= OLD_DT_HIOS)))
{
const char * result;
switch (filedata->file_header.e_machine)
{
case EM_PARISC:
result = get_parisc_dynamic_type (type);
break;
case EM_IA_64:
result = get_ia64_dynamic_type (type);
break;
default:
if (filedata->file_header.e_ident[EI_OSABI] == ELFOSABI_SOLARIS)
result = get_solaris_dynamic_type (type);
else
result = NULL;
break;
}
if (result != NULL)
return result;
snprintf (buff, sizeof (buff), _("Operating System specific: %lx"),
type);
}
else
snprintf (buff, sizeof (buff), _("<unknown>: %lx"), type);
return buff;
}
}
static bool get_program_headers (Filedata *);
static bool get_dynamic_section (Filedata *);
static void
locate_dynamic_section (Filedata *filedata)
{
uint64_t dynamic_addr = 0;
uint64_t dynamic_size = 0;
if (filedata->file_header.e_phnum != 0
&& get_program_headers (filedata))
{
Elf_Internal_Phdr *segment;
unsigned int i;
for (i = 0, segment = filedata->program_headers;
i < filedata->file_header.e_phnum;
i++, segment++)
{
if (segment->p_type == PT_DYNAMIC)
{
dynamic_addr = segment->p_offset;
dynamic_size = segment->p_filesz;
if (filedata->section_headers != NULL)
{
Elf_Internal_Shdr *sec;
sec = find_section (filedata, ".dynamic");
if (sec != NULL)
{
if (sec->sh_size == 0
|| sec->sh_type == SHT_NOBITS)
{
dynamic_addr = 0;
dynamic_size = 0;
}
else
{
dynamic_addr = sec->sh_offset;
dynamic_size = sec->sh_size;
}
}
}
if (dynamic_addr > filedata->file_size
|| (dynamic_size > filedata->file_size - dynamic_addr))
{
dynamic_addr = 0;
dynamic_size = 0;
}
break;
}
}
}
filedata->dynamic_addr = dynamic_addr;
filedata->dynamic_size = dynamic_size ? dynamic_size : 1;
}
static bool
is_pie (Filedata *filedata)
{
Elf_Internal_Dyn *entry;
if (filedata->dynamic_size == 0)
locate_dynamic_section (filedata);
if (filedata->dynamic_size <= 1)
return false;
if (!get_dynamic_section (filedata))
return false;
for (entry = filedata->dynamic_section;
entry < filedata->dynamic_section + filedata->dynamic_nent;
entry++)
{
if (entry->d_tag == DT_FLAGS_1)
{
if ((entry->d_un.d_val & DF_1_PIE) != 0)
return true;
break;
}
}
return false;
}
static char *
get_file_type (Filedata *filedata)
{
unsigned e_type = filedata->file_header.e_type;
static char buff[64];
switch (e_type)
{
case ET_NONE: return _("NONE (None)");
case ET_REL: return _("REL (Relocatable file)");
case ET_EXEC: return _("EXEC (Executable file)");
case ET_DYN:
if (is_pie (filedata))
return _("DYN (Position-Independent Executable file)");
else
return _("DYN (Shared object file)");
case ET_CORE: return _("CORE (Core file)");
default:
if ((e_type >= ET_LOPROC) && (e_type <= ET_HIPROC))
snprintf (buff, sizeof (buff), _("Processor Specific: (%x)"), e_type);
else if ((e_type >= ET_LOOS) && (e_type <= ET_HIOS))
snprintf (buff, sizeof (buff), _("OS Specific: (%x)"), e_type);
else
snprintf (buff, sizeof (buff), _("<unknown>: %x"), e_type);
return buff;
}
}
static char *
get_machine_name (unsigned e_machine)
{
static char buff[64]; /* XXX */
switch (e_machine)
{
/* Please keep this switch table sorted by increasing EM_ value. */
/* 0 */
case EM_NONE: return _("None");
case EM_M32: return "WE32100";
case EM_SPARC: return "Sparc";
case EM_386: return "Intel 80386";
case EM_68K: return "MC68000";
case EM_88K: return "MC88000";
case EM_IAMCU: return "Intel MCU";
case EM_860: return "Intel 80860";
case EM_MIPS: return "MIPS R3000";
case EM_S370: return "IBM System/370";
/* 10 */
case EM_MIPS_RS3_LE: return "MIPS R4000 big-endian";
case EM_OLD_SPARCV9: return "Sparc v9 (old)";
case EM_PARISC: return "HPPA";
case EM_VPP550: return "Fujitsu VPP500";
case EM_SPARC32PLUS: return "Sparc v8+" ;
case EM_960: return "Intel 80960";
case EM_PPC: return "PowerPC";
/* 20 */
case EM_PPC64: return "PowerPC64";
case EM_S390_OLD:
case EM_S390: return "IBM S/390";
case EM_SPU: return "SPU";
/* 30 */
case EM_V800: return "Renesas V850 (using RH850 ABI)";
case EM_FR20: return "Fujitsu FR20";
case EM_RH32: return "TRW RH32";
case EM_MCORE: return "MCORE";
/* 40 */
case EM_ARM: return "ARM";
case EM_OLD_ALPHA: return "Digital Alpha (old)";
case EM_SH: return "Renesas / SuperH SH";
case EM_SPARCV9: return "Sparc v9";
case EM_TRICORE: return "Siemens Tricore";
case EM_ARC: return "ARC";
case EM_H8_300: return "Renesas H8/300";
case EM_H8_300H: return "Renesas H8/300H";
case EM_H8S: return "Renesas H8S";
case EM_H8_500: return "Renesas H8/500";
/* 50 */
case EM_IA_64: return "Intel IA-64";
case EM_MIPS_X: return "Stanford MIPS-X";
case EM_COLDFIRE: return "Motorola Coldfire";
case EM_68HC12: return "Motorola MC68HC12 Microcontroller";
case EM_MMA: return "Fujitsu Multimedia Accelerator";
case EM_PCP: return "Siemens PCP";
case EM_NCPU: return "Sony nCPU embedded RISC processor";
case EM_NDR1: return "Denso NDR1 microprocessor";
case EM_STARCORE: return "Motorola Star*Core processor";
case EM_ME16: return "Toyota ME16 processor";
/* 60 */
case EM_ST100: return "STMicroelectronics ST100 processor";
case EM_TINYJ: return "Advanced Logic Corp. TinyJ embedded processor";
case EM_X86_64: return "Advanced Micro Devices X86-64";
case EM_PDSP: return "Sony DSP processor";
case EM_PDP10: return "Digital Equipment Corp. PDP-10";
case EM_PDP11: return "Digital Equipment Corp. PDP-11";
case EM_FX66: return "Siemens FX66 microcontroller";
case EM_ST9PLUS: return "STMicroelectronics ST9+ 8/16 bit microcontroller";
case EM_ST7: return "STMicroelectronics ST7 8-bit microcontroller";
case EM_68HC16: return "Motorola MC68HC16 Microcontroller";
/* 70 */
case EM_68HC11: return "Motorola MC68HC11 Microcontroller";
case EM_68HC08: return "Motorola MC68HC08 Microcontroller";
case EM_68HC05: return "Motorola MC68HC05 Microcontroller";
case EM_SVX: return "Silicon Graphics SVx";
case EM_ST19: return "STMicroelectronics ST19 8-bit microcontroller";
case EM_VAX: return "Digital VAX";
case EM_CRIS: return "Axis Communications 32-bit embedded processor";
case EM_JAVELIN: return "Infineon Technologies 32-bit embedded cpu";
case EM_FIREPATH: return "Element 14 64-bit DSP processor";
case EM_ZSP: return "LSI Logic's 16-bit DSP processor";
/* 80 */
case EM_MMIX: return "Donald Knuth's educational 64-bit processor";
case EM_HUANY: return "Harvard Universitys's machine-independent object format";
case EM_PRISM: return "Vitesse Prism";
case EM_AVR_OLD:
case EM_AVR: return "Atmel AVR 8-bit microcontroller";
case EM_CYGNUS_FR30:
case EM_FR30: return "Fujitsu FR30";
case EM_CYGNUS_D10V:
case EM_D10V: return "d10v";
case EM_CYGNUS_D30V:
case EM_D30V: return "d30v";
case EM_CYGNUS_V850:
case EM_V850: return "Renesas V850";
case EM_CYGNUS_M32R:
case EM_M32R: return "Renesas M32R (formerly Mitsubishi M32r)";
case EM_CYGNUS_MN10300:
case EM_MN10300: return "mn10300";
/* 90 */
case EM_CYGNUS_MN10200:
case EM_MN10200: return "mn10200";
case EM_PJ: return "picoJava";
case EM_OR1K: return "OpenRISC 1000";
case EM_ARC_COMPACT: return "ARCompact";
case EM_XTENSA_OLD:
case EM_XTENSA: return "Tensilica Xtensa Processor";
case EM_VIDEOCORE: return "Alphamosaic VideoCore processor";
case EM_TMM_GPP: return "Thompson Multimedia General Purpose Processor";
case EM_NS32K: return "National Semiconductor 32000 series";
case EM_TPC: return "Tenor Network TPC processor";
case EM_SNP1K: return "Trebia SNP 1000 processor";
/* 100 */
case EM_ST200: return "STMicroelectronics ST200 microcontroller";
case EM_IP2K_OLD:
case EM_IP2K: return "Ubicom IP2xxx 8-bit microcontrollers";
case EM_MAX: return "MAX Processor";
case EM_CR: return "National Semiconductor CompactRISC";
case EM_F2MC16: return "Fujitsu F2MC16";
case EM_MSP430: return "Texas Instruments msp430 microcontroller";
case EM_BLACKFIN: return "Analog Devices Blackfin";
case EM_SE_C33: return "S1C33 Family of Seiko Epson processors";
case EM_SEP: return "Sharp embedded microprocessor";
case EM_ARCA: return "Arca RISC microprocessor";
/* 110 */
case EM_UNICORE: return "Unicore";
case EM_EXCESS: return "eXcess 16/32/64-bit configurable embedded CPU";
case EM_DXP: return "Icera Semiconductor Inc. Deep Execution Processor";
case EM_ALTERA_NIOS2: return "Altera Nios II";
case EM_CRX: return "National Semiconductor CRX microprocessor";
case EM_XGATE: return "Motorola XGATE embedded processor";
case EM_C166:
case EM_XC16X: return "Infineon Technologies xc16x";
case EM_M16C: return "Renesas M16C series microprocessors";
case EM_DSPIC30F: return "Microchip Technology dsPIC30F Digital Signal Controller";
case EM_CE: return "Freescale Communication Engine RISC core";
/* 120 */
case EM_M32C: return "Renesas M32c";
/* 130 */
case EM_TSK3000: return "Altium TSK3000 core";
case EM_RS08: return "Freescale RS08 embedded processor";
case EM_ECOG2: return "Cyan Technology eCOG2 microprocessor";
case EM_SCORE: return "SUNPLUS S+Core";
case EM_DSP24: return "New Japan Radio (NJR) 24-bit DSP Processor";
case EM_VIDEOCORE3: return "Broadcom VideoCore III processor";
case EM_LATTICEMICO32: return "Lattice Mico32";
case EM_SE_C17: return "Seiko Epson C17 family";
/* 140 */
case EM_TI_C6000: return "Texas Instruments TMS320C6000 DSP family";
case EM_TI_C2000: return "Texas Instruments TMS320C2000 DSP family";
case EM_TI_C5500: return "Texas Instruments TMS320C55x DSP family";
case EM_TI_PRU: return "TI PRU I/O processor";
/* 160 */
case EM_MMDSP_PLUS: return "STMicroelectronics 64bit VLIW Data Signal Processor";
case EM_CYPRESS_M8C: return "Cypress M8C microprocessor";
case EM_R32C: return "Renesas R32C series microprocessors";
case EM_TRIMEDIA: return "NXP Semiconductors TriMedia architecture family";
case EM_QDSP6: return "QUALCOMM DSP6 Processor";
case EM_8051: return "Intel 8051 and variants";
case EM_STXP7X: return "STMicroelectronics STxP7x family";
case EM_NDS32: return "Andes Technology compact code size embedded RISC processor family";
case EM_ECOG1X: return "Cyan Technology eCOG1X family";
case EM_MAXQ30: return "Dallas Semiconductor MAXQ30 Core microcontrollers";
/* 170 */
case EM_XIMO16: return "New Japan Radio (NJR) 16-bit DSP Processor";
case EM_MANIK: return "M2000 Reconfigurable RISC Microprocessor";
case EM_CRAYNV2: return "Cray Inc. NV2 vector architecture";
case EM_RX: return "Renesas RX";
case EM_METAG: return "Imagination Technologies Meta processor architecture";
case EM_MCST_ELBRUS: return "MCST Elbrus general purpose hardware architecture";
case EM_ECOG16: return "Cyan Technology eCOG16 family";
case EM_CR16:
case EM_MICROBLAZE:
case EM_MICROBLAZE_OLD: return "Xilinx MicroBlaze";
case EM_ETPU: return "Freescale Extended Time Processing Unit";
case EM_SLE9X: return "Infineon Technologies SLE9X core";
/* 180 */
case EM_L1OM: return "Intel L1OM";
case EM_K1OM: return "Intel K1OM";
case EM_INTEL182: return "Intel (reserved)";
case EM_AARCH64: return "AArch64";
case EM_ARM184: return "ARM (reserved)";
case EM_AVR32: return "Atmel Corporation 32-bit microprocessor";
case EM_STM8: return "STMicroeletronics STM8 8-bit microcontroller";
case EM_TILE64: return "Tilera TILE64 multicore architecture family";
case EM_TILEPRO: return "Tilera TILEPro multicore architecture family";
/* 190 */
case EM_CUDA: return "NVIDIA CUDA architecture";
case EM_TILEGX: return "Tilera TILE-Gx multicore architecture family";
case EM_CLOUDSHIELD: return "CloudShield architecture family";
case EM_COREA_1ST: return "KIPO-KAIST Core-A 1st generation processor family";
case EM_COREA_2ND: return "KIPO-KAIST Core-A 2nd generation processor family";
case EM_ARC_COMPACT2: return "ARCv2";
case EM_OPEN8: return "Open8 8-bit RISC soft processor core";
case EM_RL78: return "Renesas RL78";
case EM_VIDEOCORE5: return "Broadcom VideoCore V processor";
case EM_78K0R: return "Renesas 78K0R";
/* 200 */
case EM_56800EX: return "Freescale 56800EX Digital Signal Controller (DSC)";
case EM_BA1: return "Beyond BA1 CPU architecture";
case EM_BA2: return "Beyond BA2 CPU architecture";
case EM_XCORE: return "XMOS xCORE processor family";
case EM_MCHP_PIC: return "Microchip 8-bit PIC(r) family";
case EM_INTELGT: return "Intel Graphics Technology";
/* 210 */
case EM_KM32: return "KM211 KM32 32-bit processor";
case EM_KMX32: return "KM211 KMX32 32-bit processor";
case EM_KMX16: return "KM211 KMX16 16-bit processor";
case EM_KMX8: return "KM211 KMX8 8-bit processor";
case EM_KVARC: return "KM211 KVARC processor";
case EM_CDP: return "Paneve CDP architecture family";
case EM_COGE: return "Cognitive Smart Memory Processor";
case EM_COOL: return "Bluechip Systems CoolEngine";
case EM_NORC: return "Nanoradio Optimized RISC";
case EM_CSR_KALIMBA: return "CSR Kalimba architecture family";
/* 220 */
case EM_Z80: return "Zilog Z80";
case EM_VISIUM: return "CDS VISIUMcore processor";
case EM_FT32: return "FTDI Chip FT32";
case EM_MOXIE: return "Moxie";
case EM_AMDGPU: return "AMD GPU";
/* 230 (all reserved) */
/* 240 */
case EM_RISCV: return "RISC-V";
case EM_LANAI: return "Lanai 32-bit processor";
case EM_CEVA: return "CEVA Processor Architecture Family";
case EM_CEVA_X2: return "CEVA X2 Processor Family";
case EM_BPF: return "Linux BPF";
case EM_GRAPHCORE_IPU: return "Graphcore Intelligent Processing Unit";
case EM_IMG1: return "Imagination Technologies";
/* 250 */
case EM_NFP: return "Netronome Flow Processor";
case EM_VE: return "NEC Vector Engine";
case EM_CSKY: return "C-SKY";
case EM_ARC_COMPACT3_64: return "Synopsys ARCv3 64-bit processor";
case EM_MCS6502: return "MOS Technology MCS 6502 processor";
case EM_ARC_COMPACT3: return "Synopsys ARCv3 32-bit processor";
case EM_KVX: return "Kalray VLIW core of the MPPA processor family";
case EM_65816: return "WDC 65816/65C816";
case EM_LOONGARCH: return "LoongArch";
case EM_KF32: return "ChipON KungFu32";
/* Large numbers... */
case EM_MT: return "Morpho Techologies MT processor";
case EM_ALPHA: return "Alpha";
case EM_WEBASSEMBLY: return "Web Assembly";
case EM_DLX: return "OpenDLX";
case EM_XSTORMY16: return "Sanyo XStormy16 CPU core";
case EM_IQ2000: return "Vitesse IQ2000";
case EM_M32C_OLD:
case EM_NIOS32: return "Altera Nios";
case EM_CYGNUS_MEP: return "Toshiba MeP Media Engine";
case EM_ADAPTEVA_EPIPHANY: return "Adapteva EPIPHANY";
case EM_CYGNUS_FRV: return "Fujitsu FR-V";
case EM_S12Z: return "Freescale S12Z";
default:
snprintf (buff, sizeof (buff), _("<unknown>: 0x%x"), e_machine);
return buff;
}
}
static char *
decode_ARC_machine_flags (char *out, unsigned e_flags, unsigned e_machine)
{
/* ARC has two machine types EM_ARC_COMPACT and EM_ARC_COMPACT2. Some
other compilers don't specify an architecture type in the e_flags, and
instead use EM_ARC_COMPACT for old ARC600, ARC601, and ARC700
architectures, and switch to EM_ARC_COMPACT2 for newer ARCEM and ARCHS
architectures.
Th GNU tools follows this use of EM_ARC_COMPACT and EM_ARC_COMPACT2,
but also sets a specific architecture type in the e_flags field.
However, when decoding the flags we don't worry if we see an
unexpected pairing, for example EM_ARC_COMPACT machine type, with
ARCEM architecture type. */
switch (e_flags & EF_ARC_MACH_MSK)
{
/* We only expect these to occur for EM_ARC_COMPACT2. */
case EF_ARC_CPU_ARCV2EM:
out = stpcpy (out, ", ARC EM");
break;
case EF_ARC_CPU_ARCV2HS:
out = stpcpy (out, ", ARC HS");
break;
/* We only expect these to occur for EM_ARC_COMPACT. */
case E_ARC_MACH_ARC600:
out = stpcpy (out, ", ARC600");
break;
case E_ARC_MACH_ARC601:
out = stpcpy (out, ", ARC601");
break;
case E_ARC_MACH_ARC700:
out = stpcpy (out, ", ARC700");
break;
/* The only times we should end up here are (a) A corrupt ELF, (b) A
new ELF with new architecture being read by an old version of
readelf, or (c) An ELF built with non-GNU compiler that does not
set the architecture in the e_flags. */
default:
if (e_machine == EM_ARC_COMPACT)
out = stpcpy (out, ", Unknown ARCompact");
else
out = stpcpy (out, ", Unknown ARC");
break;
}
switch (e_flags & EF_ARC_OSABI_MSK)
{
case E_ARC_OSABI_ORIG:
out = stpcpy (out, ", (ABI:legacy)");
break;
case E_ARC_OSABI_V2:
out = stpcpy (out, ", (ABI:v2)");
break;
/* Only upstream 3.9+ kernels will support ARCv2 ISA. */
case E_ARC_OSABI_V3:
out = stpcpy (out, ", v3 no-legacy-syscalls ABI");
break;
case E_ARC_OSABI_V4:
out = stpcpy (out, ", v4 ABI");
break;
default:
out = stpcpy (out, ", unrecognised ARC OSABI flag");
break;
}
return out;
}
static char *
decode_ARM_machine_flags (char *out, unsigned e_flags)
{
unsigned eabi;
bool unknown = false;
eabi = EF_ARM_EABI_VERSION (e_flags);
e_flags &= ~ EF_ARM_EABIMASK;
/* Handle "generic" ARM flags. */
if (e_flags & EF_ARM_RELEXEC)
{
out = stpcpy (out, ", relocatable executable");
e_flags &= ~ EF_ARM_RELEXEC;
}
if (e_flags & EF_ARM_PIC)
{
out = stpcpy (out, ", position independent");
e_flags &= ~ EF_ARM_PIC;
}
/* Now handle EABI specific flags. */
switch (eabi)
{
default:
out = stpcpy (out, ", <unrecognized EABI>");
if (e_flags)
unknown = true;
break;
case EF_ARM_EABI_VER1:
out = stpcpy (out, ", Version1 EABI");
while (e_flags)
{
unsigned flag;
/* Process flags one bit at a time. */
flag = e_flags & - e_flags;
e_flags &= ~ flag;
switch (flag)
{
case EF_ARM_SYMSARESORTED: /* Conflicts with EF_ARM_INTERWORK. */
out = stpcpy (out, ", sorted symbol tables");
break;
default:
unknown = true;
break;
}
}
break;
case EF_ARM_EABI_VER2:
out = stpcpy (out, ", Version2 EABI");
while (e_flags)
{
unsigned flag;
/* Process flags one bit at a time. */
flag = e_flags & - e_flags;
e_flags &= ~ flag;
switch (flag)
{
case EF_ARM_SYMSARESORTED: /* Conflicts with EF_ARM_INTERWORK. */
out = stpcpy (out, ", sorted symbol tables");
break;
case EF_ARM_DYNSYMSUSESEGIDX:
out = stpcpy (out, ", dynamic symbols use segment index");
break;
case EF_ARM_MAPSYMSFIRST:
out = stpcpy (out, ", mapping symbols precede others");
break;
default:
unknown = true;
break;
}
}
break;
case EF_ARM_EABI_VER3:
out = stpcpy (out, ", Version3 EABI");
break;
case EF_ARM_EABI_VER4:
out = stpcpy (out, ", Version4 EABI");
while (e_flags)
{
unsigned flag;
/* Process flags one bit at a time. */
flag = e_flags & - e_flags;
e_flags &= ~ flag;
switch (flag)
{
case EF_ARM_BE8:
out = stpcpy (out, ", BE8");
break;
case EF_ARM_LE8:
out = stpcpy (out, ", LE8");
break;
default:
unknown = true;
break;
}
}
break;
case EF_ARM_EABI_VER5:
out = stpcpy (out, ", Version5 EABI");
while (e_flags)
{
unsigned flag;
/* Process flags one bit at a time. */
flag = e_flags & - e_flags;
e_flags &= ~ flag;
switch (flag)
{
case EF_ARM_BE8:
out = stpcpy (out, ", BE8");
break;
case EF_ARM_LE8:
out = stpcpy (out, ", LE8");
break;
case EF_ARM_ABI_FLOAT_SOFT: /* Conflicts with EF_ARM_SOFT_FLOAT. */
out = stpcpy (out, ", soft-float ABI");
break;
case EF_ARM_ABI_FLOAT_HARD: /* Conflicts with EF_ARM_VFP_FLOAT. */
out = stpcpy (out, ", hard-float ABI");
break;
default:
unknown = true;
break;
}
}
break;
case EF_ARM_EABI_UNKNOWN:
out = stpcpy (out, ", GNU EABI");
while (e_flags)
{
unsigned flag;
/* Process flags one bit at a time. */
flag = e_flags & - e_flags;
e_flags &= ~ flag;
switch (flag)
{
case EF_ARM_INTERWORK:
out = stpcpy (out, ", interworking enabled");
break;
case EF_ARM_APCS_26:
out = stpcpy (out, ", uses APCS/26");
break;
case EF_ARM_APCS_FLOAT:
out = stpcpy (out, ", uses APCS/float");
break;
case EF_ARM_PIC:
out = stpcpy (out, ", position independent");
break;
case EF_ARM_ALIGN8:
out = stpcpy (out, ", 8 bit structure alignment");
break;
case EF_ARM_NEW_ABI:
out = stpcpy (out, ", uses new ABI");
break;
case EF_ARM_OLD_ABI:
out = stpcpy (out, ", uses old ABI");
break;
case EF_ARM_SOFT_FLOAT:
out = stpcpy (out, ", software FP");
break;
case EF_ARM_VFP_FLOAT:
out = stpcpy (out, ", VFP");
break;
default:
unknown = true;
break;
}
}
}
if (unknown)
out = stpcpy (out,_(", <unknown>"));
return out;
}
static char *
decode_AVR_machine_flags (char *out, unsigned e_flags)
{
switch (e_flags & EF_AVR_MACH)
{
case E_AVR_MACH_AVR1:
out = stpcpy (out, ", avr:1");
break;
case E_AVR_MACH_AVR2:
out = stpcpy (out, ", avr:2");
break;
case E_AVR_MACH_AVR25:
out = stpcpy (out, ", avr:25");
break;
case E_AVR_MACH_AVR3:
out = stpcpy (out, ", avr:3");
break;
case E_AVR_MACH_AVR31:
out = stpcpy (out, ", avr:31");
break;
case E_AVR_MACH_AVR35:
out = stpcpy (out, ", avr:35");
break;
case E_AVR_MACH_AVR4:
out = stpcpy (out, ", avr:4");
break;
case E_AVR_MACH_AVR5:
out = stpcpy (out, ", avr:5");
break;
case E_AVR_MACH_AVR51:
out = stpcpy (out, ", avr:51");
break;
case E_AVR_MACH_AVR6:
out = stpcpy (out, ", avr:6");
break;
case E_AVR_MACH_AVRTINY:
out = stpcpy (out, ", avr:100");
break;
case E_AVR_MACH_XMEGA1:
out = stpcpy (out, ", avr:101");
break;
case E_AVR_MACH_XMEGA2:
out = stpcpy (out, ", avr:102");
break;
case E_AVR_MACH_XMEGA3:
out = stpcpy (out, ", avr:103");
break;
case E_AVR_MACH_XMEGA4:
out = stpcpy (out, ", avr:104");
break;
case E_AVR_MACH_XMEGA5:
out = stpcpy (out, ", avr:105");
break;
case E_AVR_MACH_XMEGA6:
out = stpcpy (out, ", avr:106");
break;
case E_AVR_MACH_XMEGA7:
out = stpcpy (out, ", avr:107");
break;
default:
out = stpcpy (out, ", avr:<unknown>");
break;
}
if (e_flags & EF_AVR_LINKRELAX_PREPARED)
out = stpcpy (out, ", link-relax");
return out;
}
static char *
decode_BLACKFIN_machine_flags (char *out, unsigned e_flags)
{
if (e_flags & EF_BFIN_PIC)
out = stpcpy (out, ", PIC");
if (e_flags & EF_BFIN_FDPIC)
out = stpcpy (out, ", FDPIC");
if (e_flags & EF_BFIN_CODE_IN_L1)
out = stpcpy (out, ", code in L1");
if (e_flags & EF_BFIN_DATA_IN_L1)
out = stpcpy (out, ", data in L1");
return out;
}
static char *
decode_FRV_machine_flags (char *out, unsigned e_flags)
{
switch (e_flags & EF_FRV_CPU_MASK)
{
case EF_FRV_CPU_GENERIC:
break;
default:
out = stpcpy (out, ", fr???");
break;
case EF_FRV_CPU_FR300:
out = stpcpy (out, ", fr300");
break;
case EF_FRV_CPU_FR400:
out = stpcpy (out, ", fr400");
break;
case EF_FRV_CPU_FR405:
out = stpcpy (out, ", fr405");
break;
case EF_FRV_CPU_FR450:
out = stpcpy (out, ", fr450");
break;
case EF_FRV_CPU_FR500:
out = stpcpy (out, ", fr500");
break;
case EF_FRV_CPU_FR550:
out = stpcpy (out, ", fr550");
break;
case EF_FRV_CPU_SIMPLE:
out = stpcpy (out, ", simple");
break;
case EF_FRV_CPU_TOMCAT:
out = stpcpy (out, ", tomcat");
break;
}
return out;
}
static char *
decode_IA64_machine_flags (char *out, unsigned e_flags, Filedata *filedata)
{
if ((e_flags & EF_IA_64_ABI64))
out = stpcpy (out, ", 64-bit");
else
out = stpcpy (out, ", 32-bit");
if ((e_flags & EF_IA_64_REDUCEDFP))
out = stpcpy (out, ", reduced fp model");
if ((e_flags & EF_IA_64_NOFUNCDESC_CONS_GP))
out = stpcpy (out, ", no function descriptors, constant gp");
else if ((e_flags & EF_IA_64_CONS_GP))
out = stpcpy (out, ", constant gp");
if ((e_flags & EF_IA_64_ABSOLUTE))
out = stpcpy (out, ", absolute");
if (filedata->file_header.e_ident[EI_OSABI] == ELFOSABI_OPENVMS)
{
if ((e_flags & EF_IA_64_VMS_LINKAGES))
out = stpcpy (out, ", vms_linkages");
switch ((e_flags & EF_IA_64_VMS_COMCOD))
{
case EF_IA_64_VMS_COMCOD_SUCCESS:
break;
case EF_IA_64_VMS_COMCOD_WARNING:
out = stpcpy (out, ", warning");
break;
case EF_IA_64_VMS_COMCOD_ERROR:
out = stpcpy (out, ", error");
break;
case EF_IA_64_VMS_COMCOD_ABORT:
out = stpcpy (out, ", abort");
break;
default:
warn (_("Unrecognised IA64 VMS Command Code: %x\n"),
e_flags & EF_IA_64_VMS_COMCOD);
out = stpcpy (out, ", <unknown>");
}
}
return out;
}
static char *
decode_LOONGARCH_machine_flags (char *out, unsigned int e_flags)
{
if (EF_LOONGARCH_IS_SOFT_FLOAT (e_flags))
out = stpcpy (out, ", SOFT-FLOAT");
else if (EF_LOONGARCH_IS_SINGLE_FLOAT (e_flags))
out = stpcpy (out, ", SINGLE-FLOAT");
else if (EF_LOONGARCH_IS_DOUBLE_FLOAT (e_flags))
out = stpcpy (out, ", DOUBLE-FLOAT");
if (EF_LOONGARCH_IS_OBJ_V0 (e_flags))
out = stpcpy (out, ", OBJ-v0");
else if (EF_LOONGARCH_IS_OBJ_V1 (e_flags))
out = stpcpy (out, ", OBJ-v1");
return out;
}
static char *
decode_M68K_machine_flags (char *out, unsigned int e_flags)
{
if ((e_flags & EF_M68K_ARCH_MASK) == EF_M68K_M68000)
out = stpcpy (out, ", m68000");
else if ((e_flags & EF_M68K_ARCH_MASK) == EF_M68K_CPU32)
out = stpcpy (out, ", cpu32");
else if ((e_flags & EF_M68K_ARCH_MASK) == EF_M68K_FIDO)
out = stpcpy (out, ", fido_a");
else
{
char const *isa = _("unknown");
char const *mac = _("unknown mac");
char const *additional = NULL;
switch (e_flags & EF_M68K_CF_ISA_MASK)
{
case EF_M68K_CF_ISA_A_NODIV:
isa = "A";
additional = ", nodiv";
break;
case EF_M68K_CF_ISA_A:
isa = "A";
break;
case EF_M68K_CF_ISA_A_PLUS:
isa = "A+";
break;
case EF_M68K_CF_ISA_B_NOUSP:
isa = "B";
additional = ", nousp";
break;
case EF_M68K_CF_ISA_B:
isa = "B";
break;
case EF_M68K_CF_ISA_C:
isa = "C";
break;
case EF_M68K_CF_ISA_C_NODIV:
isa = "C";
additional = ", nodiv";
break;
}
out = stpcpy (out, ", cf, isa ");
out = stpcpy (out, isa);
if (additional)
out = stpcpy (out, additional);
if (e_flags & EF_M68K_CF_FLOAT)
out = stpcpy (out, ", float");
switch (e_flags & EF_M68K_CF_MAC_MASK)
{
case 0:
mac = NULL;
break;
case EF_M68K_CF_MAC:
mac = "mac";
break;
case EF_M68K_CF_EMAC:
mac = "emac";
break;
case EF_M68K_CF_EMAC_B:
mac = "emac_b";
break;
}
if (mac)
{
out = stpcpy (out, ", ");
out = stpcpy (out, mac);
}
}
return out;
}
static char *
decode_MeP_machine_flags (char *out, unsigned int e_flags)
{
switch (e_flags & EF_MEP_CPU_MASK)
{
case EF_MEP_CPU_MEP:
out = stpcpy (out, ", generic MeP");
break;
case EF_MEP_CPU_C2:
out = stpcpy (out, ", MeP C2");
break;
case EF_MEP_CPU_C3:
out = stpcpy (out, ", MeP C3");
break;
case EF_MEP_CPU_C4:
out = stpcpy (out, ", MeP C4");
break;
case EF_MEP_CPU_C5:
out = stpcpy (out, ", MeP C5");
break;
case EF_MEP_CPU_H1:
out = stpcpy (out, ", MeP H1");
break;
default:
out = stpcpy (out, _(", <unknown MeP cpu type>"));
break;
}
switch (e_flags & EF_MEP_COP_MASK)
{
case EF_MEP_COP_NONE:
break;
case EF_MEP_COP_AVC:
out = stpcpy (out, ", AVC coprocessor");
break;
case EF_MEP_COP_AVC2:
out = stpcpy (out, ", AVC2 coprocessor");
break;
case EF_MEP_COP_FMAX:
out = stpcpy (out, ", FMAX coprocessor");
break;
case EF_MEP_COP_IVC2:
out = stpcpy (out, ", IVC2 coprocessor");
break;
default:
out = stpcpy (out, _("<unknown MeP copro type>"));
break;
}
if (e_flags & EF_MEP_LIBRARY)
out = stpcpy (out, ", Built for Library");
if (e_flags & EF_MEP_INDEX_MASK)
out += sprintf (out, ", Configuration Index: %#x",
e_flags & EF_MEP_INDEX_MASK);
if (e_flags & ~ EF_MEP_ALL_FLAGS)
out += sprintf (out, _(", unknown flags bits: %#x"),
e_flags & ~ EF_MEP_ALL_FLAGS);
return out;
}
static char *
decode_MIPS_machine_flags (char *out, unsigned int e_flags)
{
if (e_flags & EF_MIPS_NOREORDER)
out = stpcpy (out, ", noreorder");
if (e_flags & EF_MIPS_PIC)
out = stpcpy (out, ", pic");
if (e_flags & EF_MIPS_CPIC)
out = stpcpy (out, ", cpic");
if (e_flags & EF_MIPS_UCODE)
out = stpcpy (out, ", ugen_reserved");
if (e_flags & EF_MIPS_ABI2)
out = stpcpy (out, ", abi2");
if (e_flags & EF_MIPS_OPTIONS_FIRST)
out = stpcpy (out, ", odk first");
if (e_flags & EF_MIPS_32BITMODE)
out = stpcpy (out, ", 32bitmode");
if (e_flags & EF_MIPS_NAN2008)
out = stpcpy (out, ", nan2008");
if (e_flags & EF_MIPS_FP64)
out = stpcpy (out, ", fp64");
switch ((e_flags & EF_MIPS_MACH))
{
case EF_MIPS_MACH_3900:
out = stpcpy (out, ", 3900");
break;
case EF_MIPS_MACH_4010:
out = stpcpy (out, ", 4010");
break;
case EF_MIPS_MACH_4100:
out = stpcpy (out, ", 4100");
break;
case EF_MIPS_MACH_4111:
out = stpcpy (out, ", 4111");
break;
case EF_MIPS_MACH_4120:
out = stpcpy (out, ", 4120");
break;
case EF_MIPS_MACH_4650:
out = stpcpy (out, ", 4650");
break;
case EF_MIPS_MACH_5400:
out = stpcpy (out, ", 5400");
break;
case EF_MIPS_MACH_5500:
out = stpcpy (out, ", 5500");
break;
case EF_MIPS_MACH_5900:
out = stpcpy (out, ", 5900");
break;
case EF_MIPS_MACH_SB1:
out = stpcpy (out, ", sb1");
break;
case EF_MIPS_MACH_9000:
out = stpcpy (out, ", 9000");
break;
case EF_MIPS_MACH_LS2E:
out = stpcpy (out, ", loongson-2e");
break;
case EF_MIPS_MACH_LS2F:
out = stpcpy (out, ", loongson-2f");
break;
case EF_MIPS_MACH_GS464:
out = stpcpy (out, ", gs464");
break;
case EF_MIPS_MACH_GS464E:
out = stpcpy (out, ", gs464e");
break;
case EF_MIPS_MACH_GS264E:
out = stpcpy (out, ", gs264e");
break;
case EF_MIPS_MACH_OCTEON:
out = stpcpy (out, ", octeon");
break;
case EF_MIPS_MACH_OCTEON2:
out = stpcpy (out, ", octeon2");
break;
case EF_MIPS_MACH_OCTEON3:
out = stpcpy (out, ", octeon3");
break;
case EF_MIPS_MACH_XLR:
out = stpcpy (out, ", xlr");
break;
case EF_MIPS_MACH_IAMR2:
out = stpcpy (out, ", interaptiv-mr2");
break;
case EF_MIPS_MACH_ALLEGREX:
out = stpcpy (out, ", allegrex");
break;
case 0:
/* We simply ignore the field in this case to avoid confusion:
MIPS ELF does not specify EF_MIPS_MACH, it is a GNU
extension. */
break;
default:
out = stpcpy (out, _(", unknown CPU"));
break;
}
switch ((e_flags & EF_MIPS_ABI))
{
case EF_MIPS_ABI_O32:
out = stpcpy (out, ", o32");
break;
case EF_MIPS_ABI_O64:
out = stpcpy (out, ", o64");
break;
case EF_MIPS_ABI_EABI32:
out = stpcpy (out, ", eabi32");
break;
case EF_MIPS_ABI_EABI64:
out = stpcpy (out, ", eabi64");
break;
case 0:
/* We simply ignore the field in this case to avoid confusion:
MIPS ELF does not specify EF_MIPS_ABI, it is a GNU extension.
This means it is likely to be an o32 file, but not for
sure. */
break;
default:
out = stpcpy (out, _(", unknown ABI"));
break;
}
if (e_flags & EF_MIPS_ARCH_ASE_MDMX)
out = stpcpy (out, ", mdmx");
if (e_flags & EF_MIPS_ARCH_ASE_M16)
out = stpcpy (out, ", mips16");
if (e_flags & EF_MIPS_ARCH_ASE_MICROMIPS)
out = stpcpy (out, ", micromips");
switch ((e_flags & EF_MIPS_ARCH))
{
case EF_MIPS_ARCH_1:
out = stpcpy (out, ", mips1");
break;
case EF_MIPS_ARCH_2:
out = stpcpy (out, ", mips2");
break;
case EF_MIPS_ARCH_3:
out = stpcpy (out, ", mips3");
break;
case EF_MIPS_ARCH_4:
out = stpcpy (out, ", mips4");
break;
case EF_MIPS_ARCH_5:
out = stpcpy (out, ", mips5");
break;
case EF_MIPS_ARCH_32:
out = stpcpy (out, ", mips32");
break;
case EF_MIPS_ARCH_32R2:
out = stpcpy (out, ", mips32r2");
break;
case EF_MIPS_ARCH_32R6:
out = stpcpy (out, ", mips32r6");
break;
case EF_MIPS_ARCH_64:
out = stpcpy (out, ", mips64");
break;
case EF_MIPS_ARCH_64R2:
out = stpcpy (out, ", mips64r2");
break;
case EF_MIPS_ARCH_64R6:
out = stpcpy (out, ", mips64r6");
break;
default:
out = stpcpy (out, _(", unknown ISA"));
break;
}
return out;
}
static char *
decode_MSP430_machine_flags (char *out, unsigned e_flags)
{
out = stpcpy (out, _(": architecture variant: "));
switch (e_flags & EF_MSP430_MACH)
{
case E_MSP430_MACH_MSP430x11:
out = stpcpy (out, "MSP430x11");
break;
case E_MSP430_MACH_MSP430x11x1:
out = stpcpy (out, "MSP430x11x1 ");
break;
case E_MSP430_MACH_MSP430x12:
out = stpcpy (out, "MSP430x12");
break;
case E_MSP430_MACH_MSP430x13:
out = stpcpy (out, "MSP430x13");
break;
case E_MSP430_MACH_MSP430x14:
out = stpcpy (out, "MSP430x14");
break;
case E_MSP430_MACH_MSP430x15:
out = stpcpy (out, "MSP430x15");
break;
case E_MSP430_MACH_MSP430x16:
out = stpcpy (out, "MSP430x16");
break;
case E_MSP430_MACH_MSP430x31:
out = stpcpy (out, "MSP430x31");
break;
case E_MSP430_MACH_MSP430x32:
out = stpcpy (out, "MSP430x32");
break;
case E_MSP430_MACH_MSP430x33:
out = stpcpy (out, "MSP430x33");
break;
case E_MSP430_MACH_MSP430x41:
out = stpcpy (out, "MSP430x41");
break;
case E_MSP430_MACH_MSP430x42:
out = stpcpy (out, "MSP430x42");
break;
case E_MSP430_MACH_MSP430x43:
out = stpcpy (out, "MSP430x43");
break;
case E_MSP430_MACH_MSP430x44:
out = stpcpy (out, "MSP430x44");
break;
case E_MSP430_MACH_MSP430X :
out = stpcpy (out, "MSP430X");
break;
default:
out = stpcpy (out, _(": unknown"));
break;
}
if (e_flags & ~ EF_MSP430_MACH)
out = stpcpy (out, _(": unknown extra flag bits also present"));
return out;
}
static char *
decode_NDS32_machine_flags (char *out, unsigned e_flags)
{
unsigned abi;
unsigned arch;
unsigned config;
unsigned version;
bool has_fpu = false;
static const char *ABI_STRINGS[] =
{
"ABI v0", /* use r5 as return register; only used in N1213HC */
"ABI v1", /* use r0 as return register */
"ABI v2", /* use r0 as return register and don't reserve 24 bytes for arguments */
"ABI v2fp", /* for FPU */
"AABI",
"ABI2 FP+"
};
static const char *VER_STRINGS[] =
{
"Andes ELF V1.3 or older",
"Andes ELF V1.3.1",
"Andes ELF V1.4"
};
static const char *ARCH_STRINGS[] =
{
"",
"Andes Star v1.0",
"Andes Star v2.0",
"Andes Star v3.0",
"Andes Star v3.0m"
};
abi = EF_NDS_ABI & e_flags;
arch = EF_NDS_ARCH & e_flags;
config = EF_NDS_INST & e_flags;
version = EF_NDS32_ELF_VERSION & e_flags;
switch (abi)
{
case E_NDS_ABI_V0:
case E_NDS_ABI_V1:
case E_NDS_ABI_V2:
case E_NDS_ABI_V2FP:
case E_NDS_ABI_AABI:
case E_NDS_ABI_V2FP_PLUS:
/* In case there are holes in the array. */
out += sprintf (out, ", %s", ABI_STRINGS[abi >> EF_NDS_ABI_SHIFT]);
break;
default:
out = stpcpy (out, ", <unrecognized ABI>");
break;
}
switch (version)
{
case E_NDS32_ELF_VER_1_2:
case E_NDS32_ELF_VER_1_3:
case E_NDS32_ELF_VER_1_4:
out += sprintf (out, ", %s", VER_STRINGS[version >> EF_NDS32_ELF_VERSION_SHIFT]);
break;
default:
out = stpcpy (out, ", <unrecognized ELF version number>");
break;
}
if (E_NDS_ABI_V0 == abi)
{
/* OLD ABI; only used in N1213HC, has performance extension 1. */
out = stpcpy (out, ", Andes Star v1.0, N1213HC, MAC, PERF1");
if (arch == E_NDS_ARCH_STAR_V1_0)
out = stpcpy (out, ", 16b"); /* has 16-bit instructions */
return out;
}
switch (arch)
{
case E_NDS_ARCH_STAR_V1_0:
case E_NDS_ARCH_STAR_V2_0:
case E_NDS_ARCH_STAR_V3_0:
case E_NDS_ARCH_STAR_V3_M:
out += sprintf (out, ", %s", ARCH_STRINGS[arch >> EF_NDS_ARCH_SHIFT]);
break;
default:
out = stpcpy (out, ", <unrecognized architecture>");
/* ARCH version determines how the e_flags are interpreted.
If it is unknown, we cannot proceed. */
return out;
}
/* Newer ABI; Now handle architecture specific flags. */
if (arch == E_NDS_ARCH_STAR_V1_0)
{
if (config & E_NDS32_HAS_MFUSR_PC_INST)
out = stpcpy (out, ", MFUSR_PC");
if (!(config & E_NDS32_HAS_NO_MAC_INST))
out = stpcpy (out, ", MAC");
if (config & E_NDS32_HAS_DIV_INST)
out = stpcpy (out, ", DIV");
if (config & E_NDS32_HAS_16BIT_INST)
out = stpcpy (out, ", 16b");
}
else
{
if (config & E_NDS32_HAS_MFUSR_PC_INST)
{
if (version <= E_NDS32_ELF_VER_1_3)
out = stpcpy (out, ", [B8]");
else
out = stpcpy (out, ", EX9");
}
if (config & E_NDS32_HAS_MAC_DX_INST)
out = stpcpy (out, ", MAC_DX");
if (config & E_NDS32_HAS_DIV_DX_INST)
out = stpcpy (out, ", DIV_DX");
if (config & E_NDS32_HAS_16BIT_INST)
{
if (version <= E_NDS32_ELF_VER_1_3)
out = stpcpy (out, ", 16b");
else
out = stpcpy (out, ", IFC");
}
}
if (config & E_NDS32_HAS_EXT_INST)
out = stpcpy (out, ", PERF1");
if (config & E_NDS32_HAS_EXT2_INST)
out = stpcpy (out, ", PERF2");
if (config & E_NDS32_HAS_FPU_INST)
{
has_fpu = true;
out = stpcpy (out, ", FPU_SP");
}
if (config & E_NDS32_HAS_FPU_DP_INST)
{
has_fpu = true;
out = stpcpy (out, ", FPU_DP");
}
if (config & E_NDS32_HAS_FPU_MAC_INST)
{
has_fpu = true;
out = stpcpy (out, ", FPU_MAC");
}
if (has_fpu)
{
switch ((config & E_NDS32_FPU_REG_CONF) >> E_NDS32_FPU_REG_CONF_SHIFT)
{
case E_NDS32_FPU_REG_8SP_4DP:
out = stpcpy (out, ", FPU_REG:8/4");
break;
case E_NDS32_FPU_REG_16SP_8DP:
out = stpcpy (out, ", FPU_REG:16/8");
break;
case E_NDS32_FPU_REG_32SP_16DP:
out = stpcpy (out, ", FPU_REG:32/16");
break;
case E_NDS32_FPU_REG_32SP_32DP:
out = stpcpy (out, ", FPU_REG:32/32");
break;
}
}
if (config & E_NDS32_HAS_AUDIO_INST)
out = stpcpy (out, ", AUDIO");
if (config & E_NDS32_HAS_STRING_INST)
out = stpcpy (out, ", STR");
if (config & E_NDS32_HAS_REDUCED_REGS)
out = stpcpy (out, ", 16REG");
if (config & E_NDS32_HAS_VIDEO_INST)
{
if (version <= E_NDS32_ELF_VER_1_3)
out = stpcpy (out, ", VIDEO");
else
out = stpcpy (out, ", SATURATION");
}
if (config & E_NDS32_HAS_ENCRIPT_INST)
out = stpcpy (out, ", ENCRP");
if (config & E_NDS32_HAS_L2C_INST)
out = stpcpy (out, ", L2C");
return out;
}
static char *
decode_PARISC_machine_flags (char *out, unsigned e_flags)
{
switch (e_flags & EF_PARISC_ARCH)
{
case EFA_PARISC_1_0:
out = stpcpy (out, ", PA-RISC 1.0");
break;
case EFA_PARISC_1_1:
out = stpcpy (out, ", PA-RISC 1.1");
break;
case EFA_PARISC_2_0:
out = stpcpy (out, ", PA-RISC 2.0");
break;
default:
break;
}
if (e_flags & EF_PARISC_TRAPNIL)
out = stpcpy (out, ", trapnil");
if (e_flags & EF_PARISC_EXT)
out = stpcpy (out, ", ext");
if (e_flags & EF_PARISC_LSB)
out = stpcpy (out, ", lsb");
if (e_flags & EF_PARISC_WIDE)
out = stpcpy (out, ", wide");
if (e_flags & EF_PARISC_NO_KABP)
out = stpcpy (out, ", no kabp");
if (e_flags & EF_PARISC_LAZYSWAP)
out = stpcpy (out, ", lazyswap");
return out;
}
static char *
decode_RISCV_machine_flags (char *out, unsigned e_flags)
{
if (e_flags & EF_RISCV_RVC)
out = stpcpy (out, ", RVC");
if (e_flags & EF_RISCV_RVE)
out = stpcpy (out, ", RVE");
if (e_flags & EF_RISCV_TSO)
out = stpcpy (out, ", TSO");
switch (e_flags & EF_RISCV_FLOAT_ABI)
{
case EF_RISCV_FLOAT_ABI_SOFT:
out = stpcpy (out, ", soft-float ABI");
break;
case EF_RISCV_FLOAT_ABI_SINGLE:
out = stpcpy (out, ", single-float ABI");
break;
case EF_RISCV_FLOAT_ABI_DOUBLE:
out = stpcpy (out, ", double-float ABI");
break;
case EF_RISCV_FLOAT_ABI_QUAD:
out = stpcpy (out, ", quad-float ABI");
break;
}
return out;
}
static char *
decode_RL78_machine_flags (char *out, unsigned e_flags)
{
switch (e_flags & E_FLAG_RL78_CPU_MASK)
{
case E_FLAG_RL78_ANY_CPU:
break;
case E_FLAG_RL78_G10:
out = stpcpy (out, ", G10");
break;
case E_FLAG_RL78_G13:
out = stpcpy (out, ", G13");
break;
case E_FLAG_RL78_G14:
out = stpcpy (out, ", G14");
break;
}
if (e_flags & E_FLAG_RL78_64BIT_DOUBLES)
out = stpcpy (out, ", 64-bit doubles");
return out;
}
static char *
decode_RX_machine_flags (char *out, unsigned e_flags)
{
if (e_flags & E_FLAG_RX_64BIT_DOUBLES)
out = stpcpy (out, ", 64-bit doubles");
if (e_flags & E_FLAG_RX_DSP)
out = stpcpy (out, ", dsp");
if (e_flags & E_FLAG_RX_PID)
out = stpcpy (out, ", pid");
if (e_flags & E_FLAG_RX_ABI)
out = stpcpy (out, ", RX ABI");
if (e_flags & E_FLAG_RX_SINSNS_SET)
out = stpcpy (out, (e_flags & E_FLAG_RX_SINSNS_YES
? ", uses String instructions"
: ", bans String instructions"));
if (e_flags & E_FLAG_RX_V2)
out = stpcpy (out, ", V2");
if (e_flags & E_FLAG_RX_V3)
out = stpcpy (out, ", V3");
return out;
}
static char *
decode_SH_machine_flags (char *out, unsigned e_flags)
{
switch ((e_flags & EF_SH_MACH_MASK))
{
case EF_SH1:
out = stpcpy (out, ", sh1");
break;
case EF_SH2:
out = stpcpy (out, ", sh2");
break;
case EF_SH3:
out = stpcpy (out, ", sh3");
break;
case EF_SH_DSP:
out = stpcpy (out, ", sh-dsp");
break;
case EF_SH3_DSP:
out = stpcpy (out, ", sh3-dsp");
break;
case EF_SH4AL_DSP:
out = stpcpy (out, ", sh4al-dsp");
break;
case EF_SH3E:
out = stpcpy (out, ", sh3e");
break;
case EF_SH4:
out = stpcpy (out, ", sh4");
break;
case EF_SH5:
out = stpcpy (out, ", sh5");
break;
case EF_SH2E:
out = stpcpy (out, ", sh2e");
break;
case EF_SH4A:
out = stpcpy (out, ", sh4a");
break;
case EF_SH2A:
out = stpcpy (out, ", sh2a");
break;
case EF_SH4_NOFPU:
out = stpcpy (out, ", sh4-nofpu");
break;
case EF_SH4A_NOFPU:
out = stpcpy (out, ", sh4a-nofpu");
break;
case EF_SH2A_NOFPU:
out = stpcpy (out, ", sh2a-nofpu");
break;
case EF_SH3_NOMMU:
out = stpcpy (out, ", sh3-nommu");
break;
case EF_SH4_NOMMU_NOFPU:
out = stpcpy (out, ", sh4-nommu-nofpu");
break;
case EF_SH2A_SH4_NOFPU:
out = stpcpy (out, ", sh2a-nofpu-or-sh4-nommu-nofpu");
break;
case EF_SH2A_SH3_NOFPU:
out = stpcpy (out, ", sh2a-nofpu-or-sh3-nommu");
break;
case EF_SH2A_SH4:
out = stpcpy (out, ", sh2a-or-sh4");
break;
case EF_SH2A_SH3E:
out = stpcpy (out, ", sh2a-or-sh3e");
break;
default:
out = stpcpy (out, _(", unknown ISA"));
break;
}
if (e_flags & EF_SH_PIC)
out = stpcpy (out, ", pic");
if (e_flags & EF_SH_FDPIC)
out = stpcpy (out, ", fdpic");
return out;
}
static char *
decode_SPARC_machine_flags (char *out, unsigned e_flags)
{
if (e_flags & EF_SPARC_32PLUS)
out = stpcpy (out, ", v8+");
if (e_flags & EF_SPARC_SUN_US1)
out = stpcpy (out, ", ultrasparcI");
if (e_flags & EF_SPARC_SUN_US3)
out = stpcpy (out, ", ultrasparcIII");
if (e_flags & EF_SPARC_HAL_R1)
out = stpcpy (out, ", halr1");
if (e_flags & EF_SPARC_LEDATA)
out = stpcpy (out, ", ledata");
if ((e_flags & EF_SPARCV9_MM) == EF_SPARCV9_TSO)
out = stpcpy (out, ", tso");
if ((e_flags & EF_SPARCV9_MM) == EF_SPARCV9_PSO)
out = stpcpy (out, ", pso");
if ((e_flags & EF_SPARCV9_MM) == EF_SPARCV9_RMO)
out = stpcpy (out, ", rmo");
return out;
}
static char *
decode_V800_machine_flags (char *out, unsigned int e_flags)
{
if ((e_flags & EF_RH850_ABI) == EF_RH850_ABI)
out = stpcpy (out, ", RH850 ABI");
if (e_flags & EF_V800_850E3)
out = stpcpy (out, ", V3 architecture");
if ((e_flags & (EF_RH850_FPU_DOUBLE | EF_RH850_FPU_SINGLE)) == 0)
out = stpcpy (out, ", FPU not used");
if ((e_flags & (EF_RH850_REGMODE22 | EF_RH850_REGMODE32)) == 0)
out = stpcpy (out, ", regmode: COMMON");
if ((e_flags & (EF_RH850_GP_FIX | EF_RH850_GP_NOFIX)) == 0)
out = stpcpy (out, ", r4 not used");
if ((e_flags & (EF_RH850_EP_FIX | EF_RH850_EP_NOFIX)) == 0)
out = stpcpy (out, ", r30 not used");
if ((e_flags & (EF_RH850_TP_FIX | EF_RH850_TP_NOFIX)) == 0)
out = stpcpy (out, ", r5 not used");
if ((e_flags & (EF_RH850_REG2_RESERVE | EF_RH850_REG2_NORESERVE)) == 0)
out = stpcpy (out, ", r2 not used");
for (e_flags &= 0xFFFF; e_flags; e_flags &= ~ (e_flags & - e_flags))
{
switch (e_flags & - e_flags)
{
case EF_RH850_FPU_DOUBLE:
out = stpcpy (out, ", double precision FPU");
break;
case EF_RH850_FPU_SINGLE:
out = stpcpy (out, ", single precision FPU");
break;
case EF_RH850_REGMODE22:
out = stpcpy (out, ", regmode:22");
break;
case EF_RH850_REGMODE32:
out = stpcpy (out, ", regmode:23");
break;
case EF_RH850_GP_FIX:
out = stpcpy (out, ", r4 fixed");
break;
case EF_RH850_GP_NOFIX:
out = stpcpy (out, ", r4 free");
break;
case EF_RH850_EP_FIX:
out = stpcpy (out, ", r30 fixed");
break;
case EF_RH850_EP_NOFIX:
out = stpcpy (out, ", r30 free");
break;
case EF_RH850_TP_FIX:
out = stpcpy (out, ", r5 fixed");
break;
case EF_RH850_TP_NOFIX:
out = stpcpy (out, ", r5 free");
break;
case EF_RH850_REG2_RESERVE:
out = stpcpy (out, ", r2 fixed");
break;
case EF_RH850_REG2_NORESERVE:
out = stpcpy (out, ", r2 free");
break;
default:
break;
}
}
return out;
}
static char *
decode_V850_machine_flags (char *out, unsigned int e_flags)
{
switch (e_flags & EF_V850_ARCH)
{
case E_V850E3V5_ARCH:
out = stpcpy (out, ", v850e3v5");
break;
case E_V850E2V3_ARCH:
out = stpcpy (out, ", v850e2v3");
break;
case E_V850E2_ARCH:
out = stpcpy (out, ", v850e2");
break;
case E_V850E1_ARCH:
out = stpcpy (out, ", v850e1");
break;
case E_V850E_ARCH:
out = stpcpy (out, ", v850e");
break;
case E_V850_ARCH:
out = stpcpy (out, ", v850");
break;
default:
out = stpcpy (out, _(", unknown v850 architecture variant"));
break;
}
return out;
}
static char *
decode_Z80_machine_flags (char *out, unsigned int e_flags)
{
switch (e_flags & EF_Z80_MACH_MSK)
{
case EF_Z80_MACH_Z80:
out = stpcpy (out, ", Z80");
break;
case EF_Z80_MACH_Z180:
out = stpcpy (out, ", Z180");
break;
case EF_Z80_MACH_R800:
out = stpcpy (out, ", R800");
break;
case EF_Z80_MACH_EZ80_Z80:
out = stpcpy (out, ", EZ80");
break;
case EF_Z80_MACH_EZ80_ADL:
out = stpcpy (out, ", EZ80, ADL");
break;
case EF_Z80_MACH_GBZ80:
out = stpcpy (out, ", GBZ80");
break;
case EF_Z80_MACH_Z80N:
out = stpcpy (out, ", Z80N");
break;
default:
out = stpcpy (out, _(", unknown"));
break;
}
return out;
}
static char *
decode_AMDGPU_machine_flags (char *out, unsigned int e_flags, Filedata *filedata)
{
unsigned char *e_ident = filedata->file_header.e_ident;
unsigned char osabi = e_ident[EI_OSABI];
unsigned char abiversion = e_ident[EI_ABIVERSION];
unsigned int mach;
/* HSA OS ABI v2 used a different encoding, but we don't need to support it,
it has been deprecated for a while.
The PAL, MESA3D and NONE OS ABIs are not properly versioned, at the time
of writing, they use the same flags as HSA v3, so the code below uses that
assumption. */
if (osabi == ELFOSABI_AMDGPU_HSA && abiversion < ELFABIVERSION_AMDGPU_HSA_V3)
return out;
mach = e_flags & EF_AMDGPU_MACH;
switch (mach)
{
#define AMDGPU_CASE(code, string) \
case code: out = stpcpy (out, ", " string); break;
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX600, "gfx600")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX601, "gfx601")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX700, "gfx700")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX701, "gfx701")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX702, "gfx702")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX703, "gfx703")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX704, "gfx704")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX801, "gfx801")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX802, "gfx802")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX803, "gfx803")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX810, "gfx810")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX900, "gfx900")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX902, "gfx902")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX904, "gfx904")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX906, "gfx906")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX908, "gfx908")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX909, "gfx909")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX90C, "gfx90c")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX1010, "gfx1010")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX1011, "gfx1011")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX1012, "gfx1012")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX1030, "gfx1030")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX1031, "gfx1031")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX1032, "gfx1032")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX1033, "gfx1033")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX1100, "gfx1100")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX1101, "gfx1101")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX1102, "gfx1102")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX602, "gfx602")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX705, "gfx705")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX805, "gfx805")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX1035, "gfx1035")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX1034, "gfx1034")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX90A, "gfx90a")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX940, "gfx940")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX1013, "gfx1013")
AMDGPU_CASE (EF_AMDGPU_MACH_AMDGCN_GFX1036, "gfx1036")
default:
out += sprintf (out, _(", <unknown AMDGPU GPU type: %#x>"), mach);
break;
#undef AMDGPU_CASE
}
e_flags &= ~EF_AMDGPU_MACH;
if ((osabi == ELFOSABI_AMDGPU_HSA
&& abiversion == ELFABIVERSION_AMDGPU_HSA_V3)
|| osabi != ELFOSABI_AMDGPU_HSA)
{
/* For HSA v3 and other OS ABIs. */
if (e_flags & EF_AMDGPU_FEATURE_XNACK_V3)
{
out = stpcpy (out, ", xnack on");
e_flags &= ~EF_AMDGPU_FEATURE_XNACK_V3;
}
if (e_flags & EF_AMDGPU_FEATURE_SRAMECC_V3)
{
out = stpcpy (out, ", sramecc on");
e_flags &= ~EF_AMDGPU_FEATURE_SRAMECC_V3;
}
}
else
{
/* For HSA v4+. */
int xnack, sramecc;
xnack = e_flags & EF_AMDGPU_FEATURE_XNACK_V4;
switch (xnack)
{
case EF_AMDGPU_FEATURE_XNACK_UNSUPPORTED_V4:
break;
case EF_AMDGPU_FEATURE_XNACK_ANY_V4:
out = stpcpy (out, ", xnack any");
break;
case EF_AMDGPU_FEATURE_XNACK_OFF_V4:
out = stpcpy (out, ", xnack off");
break;
case EF_AMDGPU_FEATURE_XNACK_ON_V4:
out = stpcpy (out, ", xnack on");
break;
default:
out += sprintf (out, _(", <unknown xnack value: %#x>"), xnack);
break;
}
e_flags &= ~EF_AMDGPU_FEATURE_XNACK_V4;
sramecc = e_flags & EF_AMDGPU_FEATURE_SRAMECC_V4;
switch (sramecc)
{
case EF_AMDGPU_FEATURE_SRAMECC_UNSUPPORTED_V4:
break;
case EF_AMDGPU_FEATURE_SRAMECC_ANY_V4:
out = stpcpy (out, ", sramecc any");
break;
case EF_AMDGPU_FEATURE_SRAMECC_OFF_V4:
out = stpcpy (out, ", sramecc off");
break;
case EF_AMDGPU_FEATURE_SRAMECC_ON_V4:
out = stpcpy (out, ", sramecc on");
break;
default:
out += sprintf (out, _(", <unknown sramecc value: %#x>"), sramecc);
break;
}
e_flags &= ~EF_AMDGPU_FEATURE_SRAMECC_V4;
}
if (e_flags != 0)
out += sprintf (out, _(", unknown flags bits: %#x"), e_flags);
return out;
}
static char *
get_machine_flags (Filedata * filedata, unsigned e_flags, unsigned e_machine)
{
static char buf[1024];
char *out = buf;
buf[0] = '\0';
if (e_flags)
{
switch (e_machine)
{
default:
break;
case EM_ARC_COMPACT3:
out = stpcpy (out, ", HS5x");
break;
case EM_ARC_COMPACT3_64:
out = stpcpy (out, ", HS6x");
break;
case EM_ARC_COMPACT2:
case EM_ARC_COMPACT:
out = decode_ARC_machine_flags (out, e_flags, e_machine);
break;
case EM_ARM:
out = decode_ARM_machine_flags (out, e_flags);
break;
case EM_AVR:
out = decode_AVR_machine_flags (out, e_flags);
break;
case EM_BLACKFIN:
out = decode_BLACKFIN_machine_flags (out, e_flags);
break;
case EM_CYGNUS_FRV:
out = decode_FRV_machine_flags (out, e_flags);
break;
case EM_68K:
out = decode_M68K_machine_flags (out, e_flags);
break;
case EM_AMDGPU:
out = decode_AMDGPU_machine_flags (out, e_flags, filedata);
break;
case EM_CYGNUS_MEP:
out = decode_MeP_machine_flags (out, e_flags);
break;
case EM_PPC:
if (e_flags & EF_PPC_EMB)
out = stpcpy (out, ", emb");
if (e_flags & EF_PPC_RELOCATABLE)
out = stpcpy (out, _(", relocatable"));
if (e_flags & EF_PPC_RELOCATABLE_LIB)
out = stpcpy (out, _(", relocatable-lib"));
break;
case EM_PPC64:
if (e_flags & EF_PPC64_ABI)
out += sprintf (out, ", abiv%d", e_flags & EF_PPC64_ABI);
break;
case EM_V800:
out = decode_V800_machine_flags (out, e_flags);
break;
case EM_V850:
case EM_CYGNUS_V850:
out = decode_V850_machine_flags (out, e_flags);
break;
case EM_M32R:
case EM_CYGNUS_M32R:
if ((e_flags & EF_M32R_ARCH) == E_M32R_ARCH)
out = stpcpy (out, ", m32r");
break;
case EM_MIPS:
case EM_MIPS_RS3_LE:
out = decode_MIPS_machine_flags (out, e_flags);
break;
case EM_NDS32:
out = decode_NDS32_machine_flags (out, e_flags);
break;
case EM_NFP:
switch (EF_NFP_MACH (e_flags))
{
case E_NFP_MACH_3200:
out = stpcpy (out, ", NFP-32xx");
break;
case E_NFP_MACH_6000:
out = stpcpy (out, ", NFP-6xxx");
break;
}
break;
case EM_RISCV:
out = decode_RISCV_machine_flags (out, e_flags);
break;
case EM_SH:
out = decode_SH_machine_flags (out, e_flags);
break;
case EM_OR1K:
if (e_flags & EF_OR1K_NODELAY)
out = stpcpy (out, ", no delay");
break;
case EM_BPF:
out += sprintf (out, ", CPU Version: %u", e_flags & EF_BPF_CPUVER);
break;
case EM_SPARCV9:
out = decode_SPARC_machine_flags (out, e_flags);
break;
case EM_PARISC:
out = decode_PARISC_machine_flags (out, e_flags);
break;
case EM_PJ:
case EM_PJ_OLD:
if ((e_flags & EF_PICOJAVA_NEWCALLS) == EF_PICOJAVA_NEWCALLS)
out = stpcpy (out, ", new calling convention");
if ((e_flags & EF_PICOJAVA_GNUCALLS) == EF_PICOJAVA_GNUCALLS)
out = stpcpy (out, ", gnu calling convention");
break;
case EM_IA_64:
out = decode_IA64_machine_flags (out, e_flags, filedata);
break;
case EM_VAX:
if ((e_flags & EF_VAX_NONPIC))
out = stpcpy (out, ", non-PIC");
if ((e_flags & EF_VAX_DFLOAT))
out = stpcpy (out, ", D-Float");
if ((e_flags & EF_VAX_GFLOAT))
out = stpcpy (out, ", G-Float");
break;
case EM_VISIUM:
if (e_flags & EF_VISIUM_ARCH_MCM)
out = stpcpy (out, ", mcm");
else if (e_flags & EF_VISIUM_ARCH_MCM24)
out = stpcpy (out, ", mcm24");
if (e_flags & EF_VISIUM_ARCH_GR6)
out = stpcpy (out, ", gr6");
break;
case EM_RL78:
out = decode_RL78_machine_flags (out, e_flags);
break;
case EM_RX:
out = decode_RX_machine_flags (out, e_flags);
break;
case EM_S390:
if (e_flags & EF_S390_HIGH_GPRS)
out = stpcpy (out, ", highgprs");
break;
case EM_TI_C6000:
if ((e_flags & EF_C6000_REL))
out = stpcpy (out, ", relocatable module");
break;
case EM_KVX:
if ((e_flags & (ELF_KVX_CORE_MAJOR_MASK | ELF_KVX_CORE_MINOR_MASK)) == ELF_KVX_CORE_KV3_1)
strcat (buf, ", Kalray VLIW kv3-1");
else if ((e_flags & (ELF_KVX_CORE_MAJOR_MASK | ELF_KVX_CORE_MINOR_MASK)) == ELF_KVX_CORE_KV3_2)
strcat (buf, ", Kalray VLIW kv3-2");
else if ((e_flags & (ELF_KVX_CORE_MAJOR_MASK | ELF_KVX_CORE_MINOR_MASK)) == ELF_KVX_CORE_KV4_1)
strcat (buf, ", Kalray VLIW kv4-1");
else
strcat (buf, ", unknown KVX MPPA");
break;
case EM_MSP430:
out = decode_MSP430_machine_flags (out, e_flags);
break;
case EM_Z80:
out = decode_Z80_machine_flags (out, e_flags);
break;
case EM_LOONGARCH:
out = decode_LOONGARCH_machine_flags (out, e_flags);
break;
}
}
return buf;
}
static const char *
get_osabi_name (Filedata * filedata, unsigned int osabi)
{
static char buff[32];
switch (osabi)
{
case ELFOSABI_NONE: return "UNIX - System V";
case ELFOSABI_HPUX: return "UNIX - HP-UX";
case ELFOSABI_NETBSD: return "UNIX - NetBSD";
case ELFOSABI_GNU: return "UNIX - GNU";
case ELFOSABI_SOLARIS: return "UNIX - Solaris";
case ELFOSABI_AIX: return "UNIX - AIX";
case ELFOSABI_IRIX: return "UNIX - IRIX";
case ELFOSABI_FREEBSD: return "UNIX - FreeBSD";
case ELFOSABI_TRU64: return "UNIX - TRU64";
case ELFOSABI_MODESTO: return "Novell - Modesto";
case ELFOSABI_OPENBSD: return "UNIX - OpenBSD";
case ELFOSABI_OPENVMS: return "VMS - OpenVMS";
case ELFOSABI_NSK: return "HP - Non-Stop Kernel";
case ELFOSABI_AROS: return "AROS";
case ELFOSABI_FENIXOS: return "FenixOS";
case ELFOSABI_CLOUDABI: return "Nuxi CloudABI";
case ELFOSABI_OPENVOS: return "Stratus Technologies OpenVOS";
case ELFOSABI_CUDA: return "CUDA";
default:
if (osabi >= 64)
switch (filedata->file_header.e_machine)
{
case EM_AMDGPU:
switch (osabi)
{
case ELFOSABI_AMDGPU_HSA: return "AMD HSA";
case ELFOSABI_AMDGPU_PAL: return "AMD PAL";
case ELFOSABI_AMDGPU_MESA3D: return "AMD Mesa3D";
default:
break;
}
break;
case EM_ARM:
switch (osabi)
{
case ELFOSABI_ARM: return "ARM";
case ELFOSABI_ARM_FDPIC: return "ARM FDPIC";
default:
break;
}
break;
case EM_MSP430:
case EM_MSP430_OLD:
case EM_VISIUM:
switch (osabi)
{
case ELFOSABI_STANDALONE: return _("Standalone App");
default:
break;
}
break;
case EM_TI_C6000:
switch (osabi)
{
case ELFOSABI_C6000_ELFABI: return _("Bare-metal C6000");
case ELFOSABI_C6000_LINUX: return "Linux C6000";
default:
break;
}
break;
default:
break;
}
snprintf (buff, sizeof (buff), _("<unknown: %x>"), osabi);
return buff;
}
}
static const char *
get_aarch64_segment_type (unsigned long type)
{
switch (type)
{
case PT_AARCH64_ARCHEXT: return "AARCH64_ARCHEXT";
case PT_AARCH64_MEMTAG_MTE: return "AARCH64_MEMTAG_MTE";
default: return NULL;
}
}
static const char *
get_arm_segment_type (unsigned long type)
{
switch (type)
{
case PT_ARM_ARCHEXT: return "ARM_ARCHEXT";
case PT_ARM_EXIDX: return "ARM_EXIDX";
default: return NULL;
}
}
static const char *
get_s390_segment_type (unsigned long type)
{
switch (type)
{
case PT_S390_PGSTE: return "S390_PGSTE";
default: return NULL;
}
}
static const char *
get_mips_segment_type (unsigned long type)
{
switch (type)
{
case PT_MIPS_REGINFO: return "REGINFO";
case PT_MIPS_RTPROC: return "RTPROC";
case PT_MIPS_OPTIONS: return "OPTIONS";
case PT_MIPS_ABIFLAGS: return "ABIFLAGS";
default: return NULL;
}
}
static const char *
get_parisc_segment_type (unsigned long type)
{
switch (type)
{
case PT_PARISC_ARCHEXT: return "PARISC_ARCHEXT";
case PT_PARISC_UNWIND: return "PARISC_UNWIND";
case PT_PARISC_WEAKORDER: return "PARISC_WEAKORDER";
default: return NULL;
}
}
static const char *
get_ia64_segment_type (unsigned long type)
{
switch (type)
{
case PT_IA_64_ARCHEXT: return "IA_64_ARCHEXT";
case PT_IA_64_UNWIND: return "IA_64_UNWIND";
default: return NULL;
}
}
static const char *
get_tic6x_segment_type (unsigned long type)
{
switch (type)
{
case PT_C6000_PHATTR: return "C6000_PHATTR";
default: return NULL;
}
}
static const char *
get_riscv_segment_type (unsigned long type)
{
switch (type)
{
case PT_RISCV_ATTRIBUTES: return "RISCV_ATTRIBUTES";
default: return NULL;
}
}
static const char *
get_hpux_segment_type (unsigned long type, unsigned e_machine)
{
if (e_machine == EM_PARISC)
switch (type)
{
case PT_HP_TLS: return "HP_TLS";
case PT_HP_CORE_NONE: return "HP_CORE_NONE";
case PT_HP_CORE_VERSION: return "HP_CORE_VERSION";
case PT_HP_CORE_KERNEL: return "HP_CORE_KERNEL";
case PT_HP_CORE_COMM: return "HP_CORE_COMM";
case PT_HP_CORE_PROC: return "HP_CORE_PROC";
case PT_HP_CORE_LOADABLE: return "HP_CORE_LOADABLE";
case PT_HP_CORE_STACK: return "HP_CORE_STACK";
case PT_HP_CORE_SHM: return "HP_CORE_SHM";
case PT_HP_CORE_MMF: return "HP_CORE_MMF";
case PT_HP_PARALLEL: return "HP_PARALLEL";
case PT_HP_FASTBIND: return "HP_FASTBIND";
case PT_HP_OPT_ANNOT: return "HP_OPT_ANNOT";
case PT_HP_HSL_ANNOT: return "HP_HSL_ANNOT";
case PT_HP_STACK: return "HP_STACK";
case PT_HP_CORE_UTSNAME: return "HP_CORE_UTSNAME";
default:
break;
}
if (e_machine == EM_IA_64)
switch (type)
{
case PT_HP_TLS: return "HP_TLS";
case PT_IA_64_HP_OPT_ANOT: return "HP_OPT_ANNOT";
case PT_IA_64_HP_HSL_ANOT: return "HP_HSL_ANNOT";
case PT_IA_64_HP_STACK: return "HP_STACK";
default:
break;
}
return NULL;
}
static const char *
get_solaris_segment_type (unsigned long type)
{
switch (type)
{
case PT_SUNW_UNWIND: return "SUNW_UNWIND";
case PT_SUNW_EH_FRAME: return "SUNW_EH_FRAME";
case PT_SUNWBSS: return "SUNW_BSS";
case PT_SUNWSTACK: return "SUNW_STACK";
case PT_SUNWDTRACE: return "SUNW_DTRACE";
case PT_SUNWCAP: return "SUNW_CAP";
default: return NULL;
}
}
static const char *
get_os_specific_segment_type (Filedata * filedata, unsigned long p_type)
{
static char buff[32];
const char * result = NULL;
switch (filedata->file_header.e_ident[EI_OSABI])
{
case ELFOSABI_GNU:
case ELFOSABI_FREEBSD:
if (p_type >= PT_GNU_MBIND_LO && p_type <= PT_GNU_MBIND_HI)
{
sprintf (buff, "GNU_MBIND+%#lx", p_type - PT_GNU_MBIND_LO);
result = buff;
}
break;
case ELFOSABI_HPUX:
result = get_hpux_segment_type (p_type,
filedata->file_header.e_machine);
break;
case ELFOSABI_SOLARIS:
result = get_solaris_segment_type (p_type);
break;
default:
break;
}
if (result != NULL)
return result;
switch (p_type)
{
case PT_GNU_EH_FRAME: return "GNU_EH_FRAME";
case PT_GNU_STACK: return "GNU_STACK";
case PT_GNU_RELRO: return "GNU_RELRO";
case PT_GNU_PROPERTY: return "GNU_PROPERTY";
case PT_GNU_SFRAME: return "GNU_SFRAME";
case PT_OPENBSD_MUTABLE: return "OPENBSD_MUTABLE";
case PT_OPENBSD_RANDOMIZE: return "OPENBSD_RANDOMIZE";
case PT_OPENBSD_WXNEEDED: return "OPENBSD_WXNEEDED";
case PT_OPENBSD_NOBTCFI: return "OPENBSD_NOBTCFI";
case PT_OPENBSD_SYSCALLS: return "OPENBSD_SYSCALLS";
case PT_OPENBSD_BOOTDATA: return "OPENBSD_BOOTDATA";
default:
break;
}
sprintf (buff, "LOOS+%#lx", p_type - PT_LOOS);
return buff;
}
static const char *
get_processor_specific_segment_type (Filedata * filedata, unsigned long p_type)
{
static char buff[32];
const char * result = NULL;
switch (filedata->file_header.e_machine)
{
case EM_AARCH64:
result = get_aarch64_segment_type (p_type);
break;
case EM_ARM:
result = get_arm_segment_type (p_type);
break;
case EM_MIPS:
case EM_MIPS_RS3_LE:
result = get_mips_segment_type (p_type);
break;
case EM_PARISC:
result = get_parisc_segment_type (p_type);
break;
case EM_IA_64:
result = get_ia64_segment_type (p_type);
break;
case EM_TI_C6000:
result = get_tic6x_segment_type (p_type);
break;
case EM_S390:
case EM_S390_OLD:
result = get_s390_segment_type (p_type);
break;
case EM_RISCV:
result = get_riscv_segment_type (p_type);
break;
default:
result = NULL;
break;
}
if (result != NULL)
return result;
sprintf (buff, "LOPROC+%#lx", p_type - PT_LOPROC);
return buff;
}
static const char *
get_segment_type (Filedata * filedata, unsigned long p_type)
{
static char buff[32];
switch (p_type)
{
case PT_NULL: return "NULL";
case PT_LOAD: return "LOAD";
case PT_DYNAMIC: return "DYNAMIC";
case PT_INTERP: return "INTERP";
case PT_NOTE: return "NOTE";
case PT_SHLIB: return "SHLIB";
case PT_PHDR: return "PHDR";
case PT_TLS: return "TLS";
case PT_NUM: return "NUM";
}
if ((p_type >= PT_LOOS) && (p_type <= PT_HIOS))
return get_os_specific_segment_type (filedata, p_type);
if ((p_type >= PT_LOPROC) && (p_type <= PT_HIPROC))
return get_processor_specific_segment_type (filedata, p_type);
snprintf (buff, sizeof (buff), _("<unknown>: %lx"), p_type);
return buff;
}
static const char *
get_arc_section_type_name (unsigned int sh_type)
{
switch (sh_type)
{
case SHT_ARC_ATTRIBUTES: return "ARC_ATTRIBUTES";
default:
break;
}
return NULL;
}
static const char *
get_mips_section_type_name (unsigned int sh_type)
{
switch (sh_type)
{
case SHT_MIPS_LIBLIST: return "MIPS_LIBLIST";
case SHT_MIPS_MSYM: return "MIPS_MSYM";
case SHT_MIPS_CONFLICT: return "MIPS_CONFLICT";
case SHT_MIPS_GPTAB: return "MIPS_GPTAB";
case SHT_MIPS_UCODE: return "MIPS_UCODE";
case SHT_MIPS_DEBUG: return "MIPS_DEBUG";
case SHT_MIPS_REGINFO: return "MIPS_REGINFO";
case SHT_MIPS_PACKAGE: return "MIPS_PACKAGE";
case SHT_MIPS_PACKSYM: return "MIPS_PACKSYM";
case SHT_MIPS_RELD: return "MIPS_RELD";
case SHT_MIPS_IFACE: return "MIPS_IFACE";
case SHT_MIPS_CONTENT: return "MIPS_CONTENT";
case SHT_MIPS_OPTIONS: return "MIPS_OPTIONS";
case SHT_MIPS_SHDR: return "MIPS_SHDR";
case SHT_MIPS_FDESC: return "MIPS_FDESC";
case SHT_MIPS_EXTSYM: return "MIPS_EXTSYM";
case SHT_MIPS_DENSE: return "MIPS_DENSE";
case SHT_MIPS_PDESC: return "MIPS_PDESC";
case SHT_MIPS_LOCSYM: return "MIPS_LOCSYM";
case SHT_MIPS_AUXSYM: return "MIPS_AUXSYM";
case SHT_MIPS_OPTSYM: return "MIPS_OPTSYM";
case SHT_MIPS_LOCSTR: return "MIPS_LOCSTR";
case SHT_MIPS_LINE: return "MIPS_LINE";
case SHT_MIPS_RFDESC: return "MIPS_RFDESC";
case SHT_MIPS_DELTASYM: return "MIPS_DELTASYM";
case SHT_MIPS_DELTAINST: return "MIPS_DELTAINST";
case SHT_MIPS_DELTACLASS: return "MIPS_DELTACLASS";
case SHT_MIPS_DWARF: return "MIPS_DWARF";
case SHT_MIPS_DELTADECL: return "MIPS_DELTADECL";
case SHT_MIPS_SYMBOL_LIB: return "MIPS_SYMBOL_LIB";
case SHT_MIPS_EVENTS: return "MIPS_EVENTS";
case SHT_MIPS_TRANSLATE: return "MIPS_TRANSLATE";
case SHT_MIPS_PIXIE: return "MIPS_PIXIE";
case SHT_MIPS_XLATE: return "MIPS_XLATE";
case SHT_MIPS_XLATE_DEBUG: return "MIPS_XLATE_DEBUG";
case SHT_MIPS_WHIRL: return "MIPS_WHIRL";
case SHT_MIPS_EH_REGION: return "MIPS_EH_REGION";
case SHT_MIPS_XLATE_OLD: return "MIPS_XLATE_OLD";
case SHT_MIPS_PDR_EXCEPTION: return "MIPS_PDR_EXCEPTION";
case SHT_MIPS_ABIFLAGS: return "MIPS_ABIFLAGS";
case SHT_MIPS_XHASH: return "MIPS_XHASH";
default:
break;
}
return NULL;
}
static const char *
get_parisc_section_type_name (unsigned int sh_type)
{
switch (sh_type)
{
case SHT_PARISC_EXT: return "PARISC_EXT";
case SHT_PARISC_UNWIND: return "PARISC_UNWIND";
case SHT_PARISC_DOC: return "PARISC_DOC";
case SHT_PARISC_ANNOT: return "PARISC_ANNOT";
case SHT_PARISC_DLKM: return "PARISC_DLKM";
case SHT_PARISC_SYMEXTN: return "PARISC_SYMEXTN";
case SHT_PARISC_STUBS: return "PARISC_STUBS";
default: return NULL;
}
}
static const char *
get_ia64_section_type_name (Filedata * filedata, unsigned int sh_type)
{
/* If the top 8 bits are 0x78 the next 8 are the os/abi ID. */
if ((sh_type & 0xFF000000) == SHT_IA_64_LOPSREG)
return get_osabi_name (filedata, (sh_type & 0x00FF0000) >> 16);
switch (sh_type)
{
case SHT_IA_64_EXT: return "IA_64_EXT";
case SHT_IA_64_UNWIND: return "IA_64_UNWIND";
case SHT_IA_64_PRIORITY_INIT: return "IA_64_PRIORITY_INIT";
default:
break;
}
return NULL;
}
static const char *
get_vms_section_type_name (unsigned int sh_type)
{
switch (sh_type)
{
case SHT_IA_64_VMS_TRACE: return "VMS_TRACE";
case SHT_IA_64_VMS_TIE_SIGNATURES: return "VMS_TIE_SIGNATURES";
case SHT_IA_64_VMS_DEBUG: return "VMS_DEBUG";
case SHT_IA_64_VMS_DEBUG_STR: return "VMS_DEBUG_STR";
case SHT_IA_64_VMS_LINKAGES: return "VMS_LINKAGES";
case SHT_IA_64_VMS_SYMBOL_VECTOR: return "VMS_SYMBOL_VECTOR";
case SHT_IA_64_VMS_FIXUP: return "VMS_FIXUP";
default:
break;
}
return NULL;
}
static const char *
get_x86_64_section_type_name (unsigned int sh_type)
{
switch (sh_type)
{
case SHT_X86_64_UNWIND: return "X86_64_UNWIND";
default: return NULL;
}
}
static const char *
get_aarch64_section_type_name (unsigned int sh_type)
{
switch (sh_type)
{
case SHT_AARCH64_ATTRIBUTES:
return "AARCH64_ATTRIBUTES";
case SHT_AARCH64_AUTH_RELR:
return "AARCH64_AUTH_RELR";
case SHT_AARCH64_MEMTAG_GLOBALS_STATIC:
return "AARCH64_MEMTAG_GLOBALS_STATIC";
case SHT_AARCH64_MEMTAG_GLOBALS_DYNAMIC:
return "AARCH64_MEMTAG_GLOBALS_DYNAMIC";
default:
return NULL;
}
}
static const char *
get_arm_section_type_name (unsigned int sh_type)
{
switch (sh_type)
{
case SHT_ARM_EXIDX: return "ARM_EXIDX";
case SHT_ARM_PREEMPTMAP: return "ARM_PREEMPTMAP";
case SHT_ARM_ATTRIBUTES: return "ARM_ATTRIBUTES";
case SHT_ARM_DEBUGOVERLAY: return "ARM_DEBUGOVERLAY";
case SHT_ARM_OVERLAYSECTION: return "ARM_OVERLAYSECTION";
default: return NULL;
}
}
static const char *
get_tic6x_section_type_name (unsigned int sh_type)
{
switch (sh_type)
{
case SHT_C6000_UNWIND: return "C6000_UNWIND";
case SHT_C6000_PREEMPTMAP: return "C6000_PREEMPTMAP";
case SHT_C6000_ATTRIBUTES: return "C6000_ATTRIBUTES";
case SHT_TI_ICODE: return "TI_ICODE";
case SHT_TI_XREF: return "TI_XREF";
case SHT_TI_HANDLER: return "TI_HANDLER";
case SHT_TI_INITINFO: return "TI_INITINFO";
case SHT_TI_PHATTRS: return "TI_PHATTRS";
default: return NULL;
}
}
static const char *
get_msp430_section_type_name (unsigned int sh_type)
{
switch (sh_type)
{
case SHT_MSP430_SEC_FLAGS: return "MSP430_SEC_FLAGS";
case SHT_MSP430_SYM_ALIASES: return "MSP430_SYM_ALIASES";
case SHT_MSP430_ATTRIBUTES: return "MSP430_ATTRIBUTES";
default: return NULL;
}
}
static const char *
get_nfp_section_type_name (unsigned int sh_type)
{
switch (sh_type)
{
case SHT_NFP_MECONFIG: return "NFP_MECONFIG";
case SHT_NFP_INITREG: return "NFP_INITREG";
case SHT_NFP_UDEBUG: return "NFP_UDEBUG";
default: return NULL;
}
}
static const char *
get_v850_section_type_name (unsigned int sh_type)
{
switch (sh_type)
{
case SHT_V850_SCOMMON: return "V850 Small Common";
case SHT_V850_TCOMMON: return "V850 Tiny Common";
case SHT_V850_ZCOMMON: return "V850 Zero Common";
case SHT_RENESAS_IOP: return "RENESAS IOP";
case SHT_RENESAS_INFO: return "RENESAS INFO";
default: return NULL;
}
}
static const char *
get_riscv_section_type_name (unsigned int sh_type)
{
switch (sh_type)
{
case SHT_RISCV_ATTRIBUTES: return "RISCV_ATTRIBUTES";
default: return NULL;
}
}
static const char *
get_csky_section_type_name (unsigned int sh_type)
{
switch (sh_type)
{
case SHT_CSKY_ATTRIBUTES: return "CSKY_ATTRIBUTES";
default: return NULL;
}
}
static const char *
get_powerpc_section_type_name (unsigned int sh_type)
{
switch (sh_type)
{
case SHT_ORDERED: return "ORDERED";
default: return NULL;
}
}
static const char *
get_alpha_section_type_name (unsigned int sh_type)
{
switch (sh_type)
{
case SHT_ALPHA_DEBUG: return "DEBUG";
case SHT_ALPHA_REGINFO: return "REGINFO";
default: return NULL;
}
}
static const char *
get_processor_specific_section_type_name (Filedata * filedata, unsigned int sh_type)
{
static char buff[32];
const char * result = NULL;
switch (filedata->file_header.e_machine)
{
case EM_AARCH64:
result = get_aarch64_section_type_name (sh_type);
break;
case EM_ALPHA:
result = get_alpha_section_type_name (sh_type);
break;
case EM_ARC:
case EM_ARC_COMPACT:
case EM_ARC_COMPACT2:
case EM_ARC_COMPACT3:
case EM_ARC_COMPACT3_64:
result = get_arc_section_type_name (sh_type);
break;
case EM_ARM:
result = get_arm_section_type_name (sh_type);
break;
case EM_CSKY:
result = get_csky_section_type_name (sh_type);
break;
case EM_IA_64:
result = get_ia64_section_type_name (filedata, sh_type);
break;
case EM_MIPS:
case EM_MIPS_RS3_LE:
result = get_mips_section_type_name (sh_type);
break;
case EM_MSP430:
result = get_msp430_section_type_name (sh_type);
break;
case EM_NFP:
result = get_nfp_section_type_name (sh_type);
break;
case EM_PARISC:
result = get_parisc_section_type_name (sh_type);
break;
case EM_PPC64:
case EM_PPC:
return get_powerpc_section_type_name (sh_type);
break;
case EM_RISCV:
result = get_riscv_section_type_name (sh_type);
break;
case EM_TI_C6000:
result = get_tic6x_section_type_name (sh_type);
break;
case EM_V800:
case EM_V850:
case EM_CYGNUS_V850:
result = get_v850_section_type_name (sh_type);
break;
case EM_X86_64:
case EM_L1OM:
case EM_K1OM:
result = get_x86_64_section_type_name (sh_type);
break;
default:
break;
}
if (result != NULL)
return result;
switch (sh_type)
{
/* FIXME: Are these correct ? If so, why do they not have #define's ? */
case 0x7ffffffd: return "AUXILIARY";
case 0x7fffffff: return "FILTER";
default:
break;
}
sprintf (buff, "LOPROC+%#x", sh_type - SHT_LOPROC);
return buff;
}
static const char *
get_os_specific_section_type_name (Filedata * filedata, unsigned int sh_type)
{
static char buff[32];
const char * result = NULL;
switch (filedata->file_header.e_machine)
{
case EM_IA_64:
result = get_vms_section_type_name (sh_type);
break;
default:
break;
}
if (result != NULL)
return result;
if (filedata->file_header.e_ident[EI_OSABI] == ELFOSABI_SOLARIS)
result = get_solaris_section_type (sh_type);
if (result != NULL)
return result;
switch (sh_type)
{
case SHT_GNU_INCREMENTAL_INPUTS: return "GNU_INCREMENTAL_INPUTS";
case SHT_GNU_ATTRIBUTES: return "GNU_ATTRIBUTES";
case SHT_GNU_HASH: return "GNU_HASH";
case SHT_GNU_LIBLIST: return "GNU_LIBLIST";
case SHT_GNU_OBJECT_ONLY: return "GNU_OBJECT_ONLY";
case SHT_SUNW_move: return "SUNW_MOVE";
case SHT_SUNW_COMDAT: return "SUNW_COMDAT";
case SHT_SUNW_syminfo: return "SUNW_SYMINFO";
case SHT_GNU_verdef: return "VERDEF";
case SHT_GNU_verneed: return "VERNEED";
case SHT_GNU_versym: return "VERSYM";
case SHT_LLVM_ODRTAB: return "LLVM_ODRTAB";
case SHT_LLVM_LINKER_OPTIONS: return "LLVM_LINKER_OPTIONS";
case SHT_LLVM_ADDRSIG: return "LLVM_ADDRSIG";
case SHT_LLVM_DEPENDENT_LIBRARIES: return "LLVM_DEPENDENT_LIBRARIES";
case SHT_LLVM_SYMPART: return "LLVM_SYMPART";
case SHT_LLVM_PART_EHDR: return "LLVM_PART_EHDR";
case SHT_LLVM_PART_PHDR: return "LLVM_PART_PHDR";
case SHT_LLVM_BB_ADDR_MAP_V0: return "LLVM_BB_ADDR_MAP_V0";
case SHT_LLVM_CALL_GRAPH_PROFILE: return "LLVM_CALL_GRAPH_PROFILE";
case SHT_LLVM_BB_ADDR_MAP: return "LLVM_BB_ADDR_MAP";
case SHT_LLVM_OFFLOADING: return "LLVM_OFFLOADING";
case SHT_LLVM_LTO: return "LLVM_LTO";
case SHT_ANDROID_REL: return "ANDROID_REL";
case SHT_ANDROID_RELA: return "ANDROID_RELA";
case SHT_ANDROID_RELR: return "ANDROID_RELR";
case SHT_CHECKSUM: return "CHECKSUM";
/* FIXME: Are these correct ? If so, why do they not have #define's ? */
case 0x6ffffff0: return "VERSYM";
default:
break;
}
sprintf (buff, "LOOS+%#x", sh_type - SHT_LOOS);
return buff;
}
static const char *
get_user_specific_section_type_name (Filedata * filedata, unsigned int sh_type)
{
static char buff[32];
const char * result;
switch (filedata->file_header.e_machine)
{
case EM_V800:
case EM_V850:
case EM_CYGNUS_V850:
result = get_v850_section_type_name (sh_type);
break;
default:
result = NULL;
break;
}
if (result != NULL)
return result;
sprintf (buff, "LOUSER+%#x", sh_type - SHT_LOUSER);
return buff;
}
static const char *
get_section_type_name (Filedata * filedata,
unsigned int sh_type)
{
switch (sh_type)
{
case SHT_NULL: return "NULL";
case SHT_PROGBITS: return "PROGBITS";
case SHT_SYMTAB: return "SYMTAB";
case SHT_STRTAB: return "STRTAB";
case SHT_RELA: return "RELA";
case SHT_HASH: return "HASH";
case SHT_DYNAMIC: return "DYNAMIC";
case SHT_NOTE: return "NOTE";
case SHT_NOBITS: return "NOBITS";
case SHT_REL: return "REL";
case SHT_SHLIB: return "SHLIB";
case SHT_DYNSYM: return "DYNSYM";
/* 12 and 13 are not defined. */
case SHT_INIT_ARRAY: return "INIT_ARRAY";
case SHT_FINI_ARRAY: return "FINI_ARRAY";
case SHT_PREINIT_ARRAY: return "PREINIT_ARRAY";
case SHT_GROUP: return "GROUP";
case SHT_SYMTAB_SHNDX: return "SYMTAB SECTION INDICES";
case SHT_RELR: return "RELR";
/* End of generic section types. */
default:
break;
}
if ((sh_type >= SHT_LOPROC) && (sh_type <= SHT_HIPROC))
return get_processor_specific_section_type_name (filedata, sh_type);
if ((sh_type >= SHT_LOOS) && (sh_type <= SHT_HIOS))
return get_os_specific_section_type_name (filedata, sh_type);
if ((sh_type >= SHT_LOUSER) && (sh_type <= SHT_HIUSER))
return get_user_specific_section_type_name (filedata, sh_type);
static char buff[32];
/* This message is probably going to be displayed in a 15
character wide field, so put the hex value first. */
snprintf (buff, sizeof (buff), _("%08x: <unknown>"), sh_type);
return buff;
}
enum long_option_values
{
OPTION_DEBUG_DUMP = 512,
OPTION_DYN_SYMS,
OPTION_LTO_SYMS,
OPTION_DWARF_DEPTH,
OPTION_DWARF_START,
OPTION_DWARF_CHECK,
OPTION_CTF_DUMP,
OPTION_CTF_PARENT,
OPTION_CTF_SYMBOLS,
OPTION_CTF_STRINGS,
OPTION_SFRAME_DUMP,
OPTION_WITH_SYMBOL_VERSIONS,
OPTION_RECURSE_LIMIT,
OPTION_NO_RECURSE_LIMIT,
OPTION_NO_DEMANGLING,
OPTION_NO_EXTRA_SYM_INFO,
OPTION_SYM_BASE
};
static struct option options[] =
{
/* Note - This table is alpha-sorted on the 'val'
field in order to make adding new options easier. */
{"arch-specific", no_argument, 0, 'A'},
{"all", no_argument, 0, 'a'},
{"demangle", optional_argument, 0, 'C'},
{"archive-index", no_argument, 0, 'c'},
{"use-dynamic", no_argument, 0, 'D'},
{"dynamic", no_argument, 0, 'd'},
{"headers", no_argument, 0, 'e'},
{"section-groups", no_argument, 0, 'g'},
{"help", no_argument, 0, 'H'},
{"file-header", no_argument, 0, 'h'},
{"histogram", no_argument, 0, 'I'},
{"display-section", required_argument, 0, 'j'},
{"lint", no_argument, 0, 'L'},
{"enable-checks", no_argument, 0, 'L'},
{"program-headers", no_argument, 0, 'l'},
{"segments", no_argument, 0, 'l'},
{"full-section-name",no_argument, 0, 'N'},
{"notes", no_argument, 0, 'n'},
{"process-links", no_argument, 0, 'P'},
{"string-dump", required_argument, 0, 'p'},
{"relocated-dump", required_argument, 0, 'R'},
{"relocs", no_argument, 0, 'r'},
{"section-headers", no_argument, 0, 'S'},
{"sections", no_argument, 0, 'S'},
{"symbols", no_argument, 0, 's'},
{"syms", no_argument, 0, 's'},
{"silent-truncation",no_argument, 0, 'T'},
{"section-details", no_argument, 0, 't'},
{"unicode", required_argument, NULL, 'U'},
{"unwind", no_argument, 0, 'u'},
{"version-info", no_argument, 0, 'V'},
{"version", no_argument, 0, 'v'},
{"wide", no_argument, 0, 'W'},
{"extra-sym-info", no_argument, 0, 'X'},
{"hex-dump", required_argument, 0, 'x'},
{"decompress", no_argument, 0, 'z'},
{"no-demangle", no_argument, 0, OPTION_NO_DEMANGLING},
{"no-extra-sym-info",no_argument, 0, OPTION_NO_EXTRA_SYM_INFO},
{"recurse-limit", no_argument, NULL, OPTION_RECURSE_LIMIT},
{"no-recurse-limit", no_argument, NULL, OPTION_NO_RECURSE_LIMIT},
{"no-recursion-limit", no_argument, NULL, OPTION_NO_RECURSE_LIMIT},
{"dyn-syms", no_argument, 0, OPTION_DYN_SYMS},
{"lto-syms", no_argument, 0, OPTION_LTO_SYMS},
{"debug-dump", optional_argument, 0, OPTION_DEBUG_DUMP},
{"dwarf-depth", required_argument, 0, OPTION_DWARF_DEPTH},
{"dwarf-start", required_argument, 0, OPTION_DWARF_START},
{"dwarf-check", no_argument, 0, OPTION_DWARF_CHECK},
#ifdef ENABLE_LIBCTF
{"ctf", required_argument, 0, OPTION_CTF_DUMP},
{"ctf-symbols", required_argument, 0, OPTION_CTF_SYMBOLS},
{"ctf-strings", required_argument, 0, OPTION_CTF_STRINGS},
{"ctf-parent", required_argument, 0, OPTION_CTF_PARENT},
#endif
{"sframe", optional_argument, 0, OPTION_SFRAME_DUMP},
{"sym-base", optional_argument, 0, OPTION_SYM_BASE},
{0, no_argument, 0, 0}
};
static void
usage (FILE * stream)
{
fprintf (stream, _("Usage: readelf <option(s)> elf-file(s)\n"));
fprintf (stream, _(" Display information about the contents of ELF format files\n"));
fprintf (stream, _(" Options are:\n"));
fprintf (stream, _("\
-a --all Equivalent to: -h -l -S -s -r -d -V -A -I\n"));
fprintf (stream, _("\
-h --file-header Display the ELF file header\n"));
fprintf (stream, _("\
-l --program-headers Display the program headers\n"));
fprintf (stream, _("\
--segments An alias for --program-headers\n"));
fprintf (stream, _("\
-S --section-headers Display the sections' header\n"));
fprintf (stream, _("\
--sections An alias for --section-headers\n"));
fprintf (stream, _("\
-g --section-groups Display the section groups\n"));
fprintf (stream, _("\
-t --section-details Display the section details\n"));
fprintf (stream, _("\
-e --headers Equivalent to: -h -l -S\n"));
fprintf (stream, _("\
-s --syms Display the symbol table\n"));
fprintf (stream, _("\
--symbols An alias for --syms\n"));
fprintf (stream, _("\
--dyn-syms Display the dynamic symbol table\n"));
fprintf (stream, _("\
--lto-syms Display LTO symbol tables\n"));
fprintf (stream, _("\
--sym-base=[0|8|10|16] \n\
Force base for symbol sizes. The options are \n\
mixed (the default), octal, decimal, hexadecimal.\n"));
fprintf (stream, _("\
-C --demangle[=STYLE] Decode mangled/processed symbol names\n"));
display_demangler_styles (stream, _("\
STYLE can be "));
fprintf (stream, _("\
--no-demangle Do not demangle low-level symbol names. (default)\n"));
fprintf (stream, _("\
--recurse-limit Enable a demangling recursion limit. (default)\n"));
fprintf (stream, _("\
--no-recurse-limit Disable a demangling recursion limit\n"));
fprintf (stream, _("\
-U[dlexhi] --unicode=[default|locale|escape|hex|highlight|invalid]\n\
Display unicode characters as determined by the current locale\n\
(default), escape sequences, \"<hex sequences>\", highlighted\n\
escape sequences, or treat them as invalid and display as\n\
\"{hex sequences}\"\n"));
fprintf (stream, _("\
-X --extra-sym-info Display extra information when showing symbols\n"));
fprintf (stream, _("\
--no-extra-sym-info Do not display extra information when showing symbols (default)\n"));
fprintf (stream, _("\
-n --notes Display the contents of note sections (if present)\n"));
fprintf (stream, _("\
-r --relocs Display the relocations (if present)\n"));
fprintf (stream, _("\
-u --unwind Display the unwind info (if present)\n"));
fprintf (stream, _("\
-d --dynamic Display the dynamic section (if present)\n"));
fprintf (stream, _("\
-V --version-info Display the version sections (if present)\n"));
fprintf (stream, _("\
-A --arch-specific Display architecture specific information (if any)\n"));
fprintf (stream, _("\
-c --archive-index Display the symbol/file index in an archive\n"));
fprintf (stream, _("\
-D --use-dynamic Use the dynamic section info when displaying symbols\n"));
fprintf (stream, _("\
-L --lint|--enable-checks\n\
Display warning messages for possible problems\n"));
fprintf (stream, _("\
-x --hex-dump=<number|name>\n\
Dump the contents of section <number|name> as bytes\n"));
fprintf (stream, _("\
-p --string-dump=<number|name>\n\
Dump the contents of section <number|name> as strings\n"));
fprintf (stream, _("\
-R --relocated-dump=<number|name>\n\
Dump the relocated contents of section <number|name>\n"));
fprintf (stream, _("\
-z --decompress Decompress section before dumping it\n"));
fprintf (stream, _("\n\
-j --display-section=<name|number>\n\
Display the contents of the indicated section. Can be repeated\n"));
fprintf (stream, _("\
-w --debug-dump[a/=abbrev, A/=addr, r/=aranges, c/=cu_index, L/=decodedline,\n\
f/=frames, F/=frames-interp, g/=gdb_index, i/=info, o/=loc,\n\
m/=macro, p/=pubnames, t/=pubtypes, R/=Ranges, l/=rawline,\n\
s/=str, O/=str-offsets, u/=trace_abbrev, T/=trace_aranges,\n\
U/=trace_info]\n\
Display the contents of DWARF debug sections\n"));
fprintf (stream, _("\
-wk --debug-dump=links Display the contents of sections that link to separate\n\
debuginfo files\n"));
fprintf (stream, _("\
-P --process-links Display the contents of non-debug sections in separate\n\
debuginfo files. (Implies -wK)\n"));
#if DEFAULT_FOR_FOLLOW_LINKS
fprintf (stream, _("\
-wK --debug-dump=follow-links\n\
Follow links to separate debug info files (default)\n"));
fprintf (stream, _("\
-wN --debug-dump=no-follow-links\n\
Do not follow links to separate debug info files\n"));
#else
fprintf (stream, _("\
-wK --debug-dump=follow-links\n\
Follow links to separate debug info files\n"));
fprintf (stream, _("\
-wN --debug-dump=no-follow-links\n\
Do not follow links to separate debug info files\n\
(default)\n"));
#endif
#if HAVE_LIBDEBUGINFOD
fprintf (stream, _("\
-wD --debug-dump=use-debuginfod\n\
When following links, also query debuginfod servers (default)\n"));
fprintf (stream, _("\
-wE --debug-dump=do-not-use-debuginfod\n\
When following links, do not query debuginfod servers\n"));
#endif
fprintf (stream, _("\
--dwarf-depth=N Do not display DIEs at depth N or greater\n"));
fprintf (stream, _("\
--dwarf-start=N Display DIEs starting at offset N\n"));
#ifdef ENABLE_LIBCTF
fprintf (stream, _("\
--ctf=<number|name> Display CTF info from section <number|name>\n"));
fprintf (stream, _("\
--ctf-parent=<name> Use CTF archive member <name> as the CTF parent\n"));
fprintf (stream, _("\
--ctf-symbols=<number|name>\n\
Use section <number|name> as the CTF external symtab\n"));
fprintf (stream, _("\
--ctf-strings=<number|name>\n\
Use section <number|name> as the CTF external strtab\n"));
#endif
fprintf (stream, _("\
--sframe[=NAME] Display SFrame info from section NAME, (default '.sframe')\n"));
#ifdef SUPPORT_DISASSEMBLY
fprintf (stream, _("\
-i --instruction-dump=<number|name>\n\
Disassemble the contents of section <number|name>\n"));
#endif
fprintf (stream, _("\
-I --histogram Display histogram of bucket list lengths\n"));
fprintf (stream, _("\
-W --wide Allow output width to exceed 80 characters\n"));
fprintf (stream, _("\
-T --silent-truncation If a symbol name is truncated, do not add [...] suffix\n"));
fprintf (stream, _("\
@<file> Read options from <file>\n"));
fprintf (stream, _("\
-H --help Display this information\n"));
fprintf (stream, _("\
-v --version Display the version number of readelf\n"));
if (REPORT_BUGS_TO[0] && stream == stdout)
fprintf (stdout, _("Report bugs to %s\n"), REPORT_BUGS_TO);
exit (stream == stdout ? 0 : 1);
}
/* Record the fact that the user wants the contents of section number
SECTION to be displayed using the method(s) encoded as flags bits
in TYPE. Note, TYPE can be zero if we are creating the array for
the first time. */
static void
request_dump_bynumber (struct dump_data *dumpdata,
unsigned int section, dump_type type)
{
if (section >= dumpdata->num_dump_sects)
{
dump_type * new_dump_sects;
new_dump_sects = (dump_type *) calloc (section + 1,
sizeof (* new_dump_sects));
if (new_dump_sects == NULL)
error (_("Out of memory allocating dump request table.\n"));
else
{
if (dumpdata->dump_sects)
{
/* Copy current flag settings. */
memcpy (new_dump_sects, dumpdata->dump_sects,
dumpdata->num_dump_sects * sizeof (* new_dump_sects));
free (dumpdata->dump_sects);
}
dumpdata->dump_sects = new_dump_sects;
dumpdata->num_dump_sects = section + 1;
}
}
if (dumpdata->dump_sects)
dumpdata->dump_sects[section] |= type;
}
/* Request a dump by section name. */
static void
request_dump_byname (const char * section, dump_type type)
{
struct dump_list_entry * new_request;
new_request = (struct dump_list_entry *)
malloc (sizeof (struct dump_list_entry));
if (!new_request)
error (_("Out of memory allocating dump request table.\n"));
new_request->name = strdup (section);
if (!new_request->name)
error (_("Out of memory allocating dump request table.\n"));
new_request->type = type;
new_request->next = dump_sects_byname;
dump_sects_byname = new_request;
}
static inline void
request_dump (struct dump_data *dumpdata, dump_type type)
{
int section;
char * cp;
do_dump = true;
section = strtoul (optarg, & cp, 0);
if (! *cp && section >= 0)
request_dump_bynumber (dumpdata, section, type);
else
request_dump_byname (optarg, type);
}
static void
parse_args (struct dump_data *dumpdata, int argc, char ** argv)
{
int c;
if (argc < 2)
usage (stderr);
while ((c = getopt_long
(argc, argv, "ACDHILNPR:STU:VWXacdeghi:j:lnp:rstuvw::x:z", options, NULL)) != EOF)
{
switch (c)
{
case 0:
/* Long options. */
break;
case 'H':
usage (stdout);
break;
case 'a':
do_syms = true;
do_reloc = true;
do_unwind = true;
do_dynamic = true;
do_header = true;
do_sections = true;
do_section_groups = true;
do_segments = true;
do_version = true;
do_histogram = true;
do_arch = true;
do_notes = true;
break;
case 'g':
do_section_groups = true;
break;
case 't':
case 'N':
do_sections = true;
do_section_details = true;
break;
case 'e':
do_header = true;
do_sections = true;
do_segments = true;
break;
case 'A':
do_arch = true;
break;
case 'D':
do_using_dynamic = true;
break;
case 'r':
do_reloc = true;
break;
case 'u':
do_unwind = true;
break;
case 'h':
do_header = true;
break;
case 'l':
do_segments = true;
break;
case 's':
do_syms = true;
break;
case 'S':
do_sections = true;
break;
case 'd':
do_dynamic = true;
break;
case 'I':
do_histogram = true;
break;
case 'n':
do_notes = true;
break;
case 'c':
do_archive_index = true;
break;
case 'L':
do_checks = true;
break;
case 'P':
process_links = true;
do_follow_links = true;
dump_any_debugging = true;
break;
case 'j':
request_dump (dumpdata, AUTO_DUMP);
break;
case 'x':
request_dump (dumpdata, HEX_DUMP);
break;
case 'p':
request_dump (dumpdata, STRING_DUMP);
break;
case 'R':
request_dump (dumpdata, RELOC_DUMP);
break;
case 'z':
decompress_dumps = true;
break;
case 'w':
if (optarg == NULL)
{
do_debugging = true;
do_dump = true;
dump_any_debugging = true;
dwarf_select_sections_all ();
}
else
{
do_debugging = false;
if (dwarf_select_sections_by_letters (optarg))
{
do_dump = true;
dump_any_debugging = true;
}
}
break;
case OPTION_DEBUG_DUMP:
if (optarg == NULL)
{
do_dump = true;
do_debugging = true;
dump_any_debugging = true;
dwarf_select_sections_all ();
}
else
{
do_debugging = false;
if (dwarf_select_sections_by_names (optarg))
{
do_dump = true;
dump_any_debugging = true;
}
}
break;
case OPTION_DWARF_DEPTH:
{
char *cp;
dwarf_cutoff_level = strtoul (optarg, & cp, 0);
}
break;
case OPTION_DWARF_START:
{
char *cp;
dwarf_start_die = strtoul (optarg, & cp, 0);
}
break;
case OPTION_DWARF_CHECK:
dwarf_check = true;
break;
case OPTION_CTF_DUMP:
do_ctf = true;
request_dump (dumpdata, CTF_DUMP);
break;
case OPTION_CTF_SYMBOLS:
free (dump_ctf_symtab_name);
dump_ctf_symtab_name = strdup (optarg);
break;
case OPTION_CTF_STRINGS:
free (dump_ctf_strtab_name);
dump_ctf_strtab_name = strdup (optarg);
break;
case OPTION_CTF_PARENT:
free (dump_ctf_parent_name);
dump_ctf_parent_name = strdup (optarg);
break;
case OPTION_SFRAME_DUMP:
do_sframe = true;
/* Providing section name is optional. request_dump (), however,
thrives on non NULL optarg. Handle it explicitly here. */
if (optarg != NULL)
request_dump (dumpdata, SFRAME_DUMP);
else
{
do_dump = true;
const char *sframe_sec_name = strdup (".sframe");
request_dump_byname (sframe_sec_name, SFRAME_DUMP);
}
break;
case OPTION_DYN_SYMS:
do_dyn_syms = true;
break;
case OPTION_LTO_SYMS:
do_lto_syms = true;
break;
case 'X':
extra_sym_info = true;
break;
case OPTION_NO_EXTRA_SYM_INFO:
extra_sym_info = false;
break;
#ifdef SUPPORT_DISASSEMBLY
case 'i':
request_dump (dumpdata, DISASS_DUMP);
break;
#endif
case 'v':
print_version (program_name);
break;
case 'V':
do_version = true;
break;
case 'W':
do_wide = true;
break;
case 'T':
do_not_show_symbol_truncation = true;
break;
case 'C':
do_demangle = true;
if (optarg != NULL)
{
enum demangling_styles style;
style = cplus_demangle_name_to_style (optarg);
if (style == unknown_demangling)
error (_("unknown demangling style `%s'"), optarg);
cplus_demangle_set_style (style);
}
break;
case OPTION_NO_DEMANGLING:
do_demangle = false;
break;
case OPTION_RECURSE_LIMIT:
demangle_flags &= ~ DMGL_NO_RECURSE_LIMIT;
break;
case OPTION_NO_RECURSE_LIMIT:
demangle_flags |= DMGL_NO_RECURSE_LIMIT;
break;
case OPTION_WITH_SYMBOL_VERSIONS:
/* Ignored for backward compatibility. */
break;
case 'U':
if (optarg == NULL)
error (_("Missing arg to -U/--unicode")); /* Can this happen ? */
else if (streq (optarg, "default") || streq (optarg, "d"))
unicode_display = unicode_default;
else if (streq (optarg, "locale") || streq (optarg, "l"))
unicode_display = unicode_locale;
else if (streq (optarg, "escape") || streq (optarg, "e"))
unicode_display = unicode_escape;
else if (streq (optarg, "invalid") || streq (optarg, "i"))
unicode_display = unicode_invalid;
else if (streq (optarg, "hex") || streq (optarg, "x"))
unicode_display = unicode_hex;
else if (streq (optarg, "highlight") || streq (optarg, "h"))
unicode_display = unicode_highlight;
else
error (_("invalid argument to -U/--unicode: %s"), optarg);
break;
case OPTION_SYM_BASE:
sym_base = 0;
if (optarg != NULL)
{
sym_base = strtoul (optarg, NULL, 0);
switch (sym_base)
{
case 0:
case 8:
case 10:
case 16:
break;
default:
sym_base = 0;
break;
}
}
break;
default:
/* xgettext:c-format */
error (_("Invalid option '-%c'\n"), c);
/* Fall through. */
case '?':
usage (stderr);
}
}
if (!do_dynamic && !do_syms && !do_reloc && !do_unwind && !do_sections
&& !do_segments && !do_header && !do_dump && !do_version
&& !do_histogram && !do_debugging && !do_arch && !do_notes
&& !do_section_groups && !do_archive_index
&& !do_dyn_syms && !do_lto_syms)
{
if (do_checks)
{
check_all = true;
do_dynamic = do_syms = do_reloc = do_unwind = do_sections = true;
do_segments = do_header = do_dump = do_version = true;
do_histogram = do_debugging = do_arch = do_notes = true;
do_section_groups = do_archive_index = do_dyn_syms = true;
do_lto_syms = true;
}
else
usage (stderr);
}
}
static const char *
get_elf_class (unsigned int elf_class)
{
static char buff[32];
switch (elf_class)
{
case ELFCLASSNONE: return _("none");
case ELFCLASS32: return "ELF32";
case ELFCLASS64: return "ELF64";
default:
snprintf (buff, sizeof (buff), _("<unknown: %x>"), elf_class);
return buff;
}
}
static const char *
get_data_encoding (unsigned int encoding)
{
static char buff[32];
switch (encoding)
{
case ELFDATANONE: return _("none");
case ELFDATA2LSB: return _("2's complement, little endian");
case ELFDATA2MSB: return _("2's complement, big endian");
default:
snprintf (buff, sizeof (buff), _("<unknown: %x>"), encoding);
return buff;
}
}
static bool
check_magic_number (Filedata * filedata, Elf_Internal_Ehdr * header)
{
if (header->e_ident[EI_MAG0] == ELFMAG0
&& header->e_ident[EI_MAG1] == ELFMAG1
&& header->e_ident[EI_MAG2] == ELFMAG2
&& header->e_ident[EI_MAG3] == ELFMAG3)
return true;
/* Some compilers produce object files that are not in the ELF file format.
As an aid to users of readelf, try to identify these cases and suggest
alternative tools.
FIXME: It is not clear if all four bytes are used as constant magic
valus by all compilers. It may be necessary to recode this function if
different tools use different length sequences. */
static struct
{
unsigned char magic[4];
const char * obj_message;
const char * ar_message;
}
known_magic[] =
{
{ { 'B', 'C', 0xc0, 0xde },
N_("This is a LLVM bitcode file - try using llvm-bcanalyzer\n"),
N_("This is a LLVM bitcode file - try extracting and then using llvm-bcanalyzer\n")
},
{ { 'g', 'o', ' ', 'o' },
N_("This is a GO binary file - try using 'go tool objdump' or 'go tool nm'\n"),
NULL
}
};
int i;
for (i = ARRAY_SIZE (known_magic); i--;)
{
if (header->e_ident[EI_MAG0] == known_magic[i].magic[0]
&& header->e_ident[EI_MAG1] == known_magic[i].magic[1]
&& header->e_ident[EI_MAG2] == known_magic[i].magic[2]
&& header->e_ident[EI_MAG3] == known_magic[i].magic[3])
{
/* Some compiler's analyzer tools do not handle archives,
so we provide two different kinds of error message. */
if (filedata->archive_file_size > 0
&& known_magic[i].ar_message != NULL)
error ("%s", known_magic[i].ar_message);
else
error ("%s", known_magic[i].obj_message);
return false;
}
}
error (_("Not an ELF file - it has the wrong magic bytes at the start\n"));
return false;
}
/* Decode the data held in 'filedata->file_header'. */
static bool
process_file_header (Filedata * filedata)
{
Elf_Internal_Ehdr * header = & filedata->file_header;
if (! check_magic_number (filedata, header))
return false;
if (! filedata->is_separate)
init_dwarf_regnames_by_elf_machine_code (header->e_machine);
if (do_header)
{
unsigned i;
if (filedata->is_separate)
printf (_("ELF Header in linked file '%s':\n"),
printable_string (filedata->file_name, 0));
else
printf (_("ELF Header:\n"));
printf (_(" Magic: "));
for (i = 0; i < EI_NIDENT; i++)
printf ("%2.2x ", header->e_ident[i]);
printf ("\n");
printf (_(" Class: %s\n"),
get_elf_class (header->e_ident[EI_CLASS]));
printf (_(" Data: %s\n"),
get_data_encoding (header->e_ident[EI_DATA]));
printf (_(" Version: %d%s\n"),
header->e_ident[EI_VERSION],
(header->e_ident[EI_VERSION] == EV_CURRENT
? _(" (current)")
: (header->e_ident[EI_VERSION] != EV_NONE
? _(" <unknown>")
: "")));
printf (_(" OS/ABI: %s\n"),
get_osabi_name (filedata, header->e_ident[EI_OSABI]));
printf (_(" ABI Version: %d\n"),
header->e_ident[EI_ABIVERSION]);
printf (_(" Type: %s\n"),
get_file_type (filedata));
printf (_(" Machine: %s\n"),
get_machine_name (header->e_machine));
printf (_(" Version: 0x%lx\n"),
header->e_version);
printf (_(" Entry point address: "));
print_vma (header->e_entry, PREFIX_HEX);
printf (_("\n Start of program headers: "));
print_vma (header->e_phoff, DEC);
printf (_(" (bytes into file)\n Start of section headers: "));
print_vma (header->e_shoff, DEC);
printf (_(" (bytes into file)\n"));
printf (_(" Flags: 0x%lx%s\n"),
header->e_flags,
get_machine_flags (filedata, header->e_flags, header->e_machine));
printf (_(" Size of this header: %u (bytes)\n"),
header->e_ehsize);
printf (_(" Size of program headers: %u (bytes)\n"),
header->e_phentsize);
printf (_(" Number of program headers: %u"),
header->e_phnum);
if (filedata->section_headers != NULL
&& header->e_phnum == PN_XNUM
&& filedata->section_headers[0].sh_info != 0)
printf (" (%u)", filedata->section_headers[0].sh_info);
putc ('\n', stdout);
printf (_(" Size of section headers: %u (bytes)\n"),
header->e_shentsize);
printf (_(" Number of section headers: %u"),
header->e_shnum);
if (filedata->section_headers != NULL && header->e_shnum == SHN_UNDEF)
{
header->e_shnum = filedata->section_headers[0].sh_size;
printf (" (%u)", header->e_shnum);
}
putc ('\n', stdout);
printf (_(" Section header string table index: %u"),
header->e_shstrndx);
if (filedata->section_headers != NULL
&& header->e_shstrndx == (SHN_XINDEX & 0xffff))
{
header->e_shstrndx = filedata->section_headers[0].sh_link;
printf (" (%u)", header->e_shstrndx);
}
if (header->e_shstrndx != SHN_UNDEF
&& header->e_shstrndx >= header->e_shnum)
{
header->e_shstrndx = SHN_UNDEF;
printf (_(" <corrupt: out of range>"));
}
putc ('\n', stdout);
}
if (filedata->section_headers != NULL)
{
if (header->e_phnum == PN_XNUM
&& filedata->section_headers[0].sh_info != 0)
{
/* Throw away any cached read of PN_XNUM headers. */
free (filedata->program_headers);
filedata->program_headers = NULL;
header->e_phnum = filedata->section_headers[0].sh_info;
}
if (header->e_shnum == SHN_UNDEF)
header->e_shnum = filedata->section_headers[0].sh_size;
if (header->e_shstrndx == (SHN_XINDEX & 0xffff))
header->e_shstrndx = filedata->section_headers[0].sh_link;
if (header->e_shstrndx >= header->e_shnum)
header->e_shstrndx = SHN_UNDEF;
}
return true;
}
/* Read in the program headers from FILEDATA and store them in PHEADERS.
Returns TRUE upon success, FALSE otherwise. Loads 32-bit headers. */
static bool
get_32bit_program_headers (Filedata * filedata, Elf_Internal_Phdr * pheaders)
{
Elf32_External_Phdr * phdrs;
Elf32_External_Phdr * external;
Elf_Internal_Phdr * internal;
unsigned int i;
unsigned int size = filedata->file_header.e_phentsize;
unsigned int num = filedata->file_header.e_phnum;
/* PR binutils/17531: Cope with unexpected section header sizes. */
if (size == 0 || num == 0)
return false;
if (size < sizeof * phdrs)
{
error (_("The e_phentsize field in the ELF header is less than the size of an ELF program header\n"));
return false;
}
if (size > sizeof * phdrs)
warn (_("The e_phentsize field in the ELF header is larger than the size of an ELF program header\n"));
phdrs = (Elf32_External_Phdr *) get_data (NULL, filedata, filedata->file_header.e_phoff,
size, num, _("program headers"));
if (phdrs == NULL)
return false;
for (i = 0, internal = pheaders, external = phdrs;
i < filedata->file_header.e_phnum;
i++, internal++, external++)
{
internal->p_type = BYTE_GET (external->p_type);
internal->p_offset = BYTE_GET (external->p_offset);
internal->p_vaddr = BYTE_GET (external->p_vaddr);
internal->p_paddr = BYTE_GET (external->p_paddr);
internal->p_filesz = BYTE_GET (external->p_filesz);
internal->p_memsz = BYTE_GET (external->p_memsz);
internal->p_flags = BYTE_GET (external->p_flags);
internal->p_align = BYTE_GET (external->p_align);
}
free (phdrs);
return true;
}
/* Read in the program headers from FILEDATA and store them in PHEADERS.
Returns TRUE upon success, FALSE otherwise. Loads 64-bit headers. */
static bool
get_64bit_program_headers (Filedata * filedata, Elf_Internal_Phdr * pheaders)
{
Elf64_External_Phdr * phdrs;
Elf64_External_Phdr * external;
Elf_Internal_Phdr * internal;
unsigned int i;
unsigned int size = filedata->file_header.e_phentsize;
unsigned int num = filedata->file_header.e_phnum;
/* PR binutils/17531: Cope with unexpected section header sizes. */
if (size == 0 || num == 0)
return false;
if (size < sizeof * phdrs)
{
error (_("The e_phentsize field in the ELF header is less than the size of an ELF program header\n"));
return false;
}
if (size > sizeof * phdrs)
warn (_("The e_phentsize field in the ELF header is larger than the size of an ELF program header\n"));
phdrs = (Elf64_External_Phdr *) get_data (NULL, filedata, filedata->file_header.e_phoff,
size, num, _("program headers"));
if (!phdrs)
return false;
for (i = 0, internal = pheaders, external = phdrs;
i < filedata->file_header.e_phnum;
i++, internal++, external++)
{
internal->p_type = BYTE_GET (external->p_type);
internal->p_flags = BYTE_GET (external->p_flags);
internal->p_offset = BYTE_GET (external->p_offset);
internal->p_vaddr = BYTE_GET (external->p_vaddr);
internal->p_paddr = BYTE_GET (external->p_paddr);
internal->p_filesz = BYTE_GET (external->p_filesz);
internal->p_memsz = BYTE_GET (external->p_memsz);
internal->p_align = BYTE_GET (external->p_align);
}
free (phdrs);
return true;
}
/* Returns TRUE if the program headers were read into `program_headers'. */
static bool
get_program_headers (Filedata * filedata)
{
Elf_Internal_Phdr * phdrs;
/* Check cache of prior read. */
if (filedata->program_headers != NULL)
return true;
/* Be kind to memory checkers by looking for
e_phnum values which we know must be invalid. */
if (filedata->file_header.e_phnum
* (is_32bit_elf ? sizeof (Elf32_External_Phdr) : sizeof (Elf64_External_Phdr))
>= filedata->file_size)
{
error (_("Too many program headers - %#x - the file is not that big\n"),
filedata->file_header.e_phnum);
return false;
}
phdrs = (Elf_Internal_Phdr *) cmalloc (filedata->file_header.e_phnum,
sizeof (Elf_Internal_Phdr));
if (phdrs == NULL)
{
error (_("Out of memory reading %u program headers\n"),
filedata->file_header.e_phnum);
return false;
}
if (is_32bit_elf
? get_32bit_program_headers (filedata, phdrs)
: get_64bit_program_headers (filedata, phdrs))
{
filedata->program_headers = phdrs;
return true;
}
free (phdrs);
return false;
}
/* Print program header info and locate dynamic section. */
static void
process_program_headers (Filedata * filedata)
{
Elf_Internal_Phdr * segment;
unsigned int i;
Elf_Internal_Phdr * previous_load = NULL;
if (filedata->file_header.e_phnum == 0)
{
/* PR binutils/12467. */
if (filedata->file_header.e_phoff != 0)
warn (_("possibly corrupt ELF header - it has a non-zero program"
" header offset, but no program headers\n"));
else if (do_segments)
{
if (filedata->is_separate)
printf (_("\nThere are no program headers in linked file '%s'.\n"),
printable_string (filedata->file_name, 0));
else
printf (_("\nThere are no program headers in this file.\n"));
}
goto no_headers;
}
if (do_segments && !do_header)
{
if (filedata->is_separate)
printf ("\nIn linked file '%s' the ELF file type is %s\n",
printable_string (filedata->file_name, 0),
get_file_type (filedata));
else
printf (_("\nElf file type is %s\n"), get_file_type (filedata));
printf (_("Entry point 0x%" PRIx64 "\n"),
filedata->file_header.e_entry);
printf (ngettext ("There is %d program header,"
" starting at offset %" PRIu64 "\n",
"There are %d program headers,"
" starting at offset %" PRIu64 "\n",
filedata->file_header.e_phnum),
filedata->file_header.e_phnum,
filedata->file_header.e_phoff);
}
if (! get_program_headers (filedata))
goto no_headers;
if (do_segments)
{
if (filedata->file_header.e_phnum > 1)
printf (_("\nProgram Headers:\n"));
else
printf (_("\nProgram Headers:\n"));
if (is_32bit_elf)
printf
(_(" Type Offset VirtAddr PhysAddr FileSiz MemSiz Flg Align\n"));
else if (do_wide)
printf
(_(" Type Offset VirtAddr PhysAddr FileSiz MemSiz Flg Align\n"));
else
{
printf
(_(" Type Offset VirtAddr PhysAddr\n"));
printf
(_(" FileSiz MemSiz Flags Align\n"));
}
}
uint64_t dynamic_addr = 0;
uint64_t dynamic_size = 0;
for (i = 0, segment = filedata->program_headers;
i < filedata->file_header.e_phnum;
i++, segment++)
{
if (do_segments)
{
printf (" %-14.14s ", get_segment_type (filedata, segment->p_type));
if (is_32bit_elf)
{
printf ("0x%6.6lx ", (unsigned long) segment->p_offset);
printf ("0x%8.8lx ", (unsigned long) segment->p_vaddr);
printf ("0x%8.8lx ", (unsigned long) segment->p_paddr);
printf ("0x%5.5lx ", (unsigned long) segment->p_filesz);
printf ("0x%5.5lx ", (unsigned long) segment->p_memsz);
printf ("%c%c%c ",
(segment->p_flags & PF_R ? 'R' : ' '),
(segment->p_flags & PF_W ? 'W' : ' '),
(segment->p_flags & PF_X ? 'E' : ' '));
printf ("%#lx", (unsigned long) segment->p_align);
}
else if (do_wide)
{
if ((unsigned long) segment->p_offset == segment->p_offset)
printf ("0x%6.6lx ", (unsigned long) segment->p_offset);
else
{
print_vma (segment->p_offset, FULL_HEX);
putchar (' ');
}
print_vma (segment->p_vaddr, FULL_HEX);
putchar (' ');
print_vma (segment->p_paddr, FULL_HEX);
putchar (' ');
if ((unsigned long) segment->p_filesz == segment->p_filesz)
printf ("0x%6.6lx ", (unsigned long) segment->p_filesz);
else
{
print_vma (segment->p_filesz, FULL_HEX);
putchar (' ');
}
if ((unsigned long) segment->p_memsz == segment->p_memsz)
printf ("0x%6.6lx", (unsigned long) segment->p_memsz);
else
{
print_vma (segment->p_memsz, FULL_HEX);
}
printf (" %c%c%c ",
(segment->p_flags & PF_R ? 'R' : ' '),
(segment->p_flags & PF_W ? 'W' : ' '),
(segment->p_flags & PF_X ? 'E' : ' '));
if ((unsigned long) segment->p_align == segment->p_align)
printf ("%#lx", (unsigned long) segment->p_align);
else
{
print_vma (segment->p_align, PREFIX_HEX);
}
}
else
{
print_vma (segment->p_offset, FULL_HEX);
putchar (' ');
print_vma (segment->p_vaddr, FULL_HEX);
putchar (' ');
print_vma (segment->p_paddr, FULL_HEX);
printf ("\n ");
print_vma (segment->p_filesz, FULL_HEX);
putchar (' ');
print_vma (segment->p_memsz, FULL_HEX);
printf (" %c%c%c ",
(segment->p_flags & PF_R ? 'R' : ' '),
(segment->p_flags & PF_W ? 'W' : ' '),
(segment->p_flags & PF_X ? 'E' : ' '));
print_vma (segment->p_align, PREFIX_HEX);
}
putc ('\n', stdout);
}
switch (segment->p_type)
{
case PT_LOAD:
#if 0 /* Do not warn about out of order PT_LOAD segments. Although officially
required by the ELF standard, several programs, including the Linux
kernel, make use of non-ordered segments. */
if (previous_load
&& previous_load->p_vaddr > segment->p_vaddr)
error (_("LOAD segments must be sorted in order of increasing VirtAddr\n"));
#endif
if (segment->p_memsz < segment->p_filesz)
error (_("the segment's file size is larger than its memory size\n"));
previous_load = segment;
break;
case PT_PHDR:
/* PR 20815 - Verify that the program header is loaded into memory. */
if (i > 0 && previous_load != NULL)
error (_("the PHDR segment must occur before any LOAD segment\n"));
if (filedata->file_header.e_machine != EM_PARISC)
{
unsigned int j;
for (j = 1; j < filedata->file_header.e_phnum; j++)
{
Elf_Internal_Phdr *load = filedata->program_headers + j;
if (load->p_type == PT_LOAD
&& load->p_offset <= segment->p_offset
&& (load->p_offset + load->p_filesz
>= segment->p_offset + segment->p_filesz)
&& load->p_vaddr <= segment->p_vaddr
&& (load->p_vaddr + load->p_filesz
>= segment->p_vaddr + segment->p_filesz))
break;
}
if (j == filedata->file_header.e_phnum)
error (_("the PHDR segment is not covered by a LOAD segment\n"));
}
break;
case PT_DYNAMIC:
if (dynamic_addr)
error (_("more than one dynamic segment\n"));
/* By default, assume that the .dynamic section is the first
section in the DYNAMIC segment. */
dynamic_addr = segment->p_offset;
dynamic_size = segment->p_filesz;
/* Try to locate the .dynamic section. If there is
a section header table, we can easily locate it. */
if (filedata->section_headers != NULL)
{
Elf_Internal_Shdr * sec;
sec = find_section (filedata, ".dynamic");
if (sec == NULL || sec->sh_size == 0)
{
/* A corresponding .dynamic section is expected, but on
IA-64/OpenVMS it is OK for it to be missing. */
if (!is_ia64_vms (filedata))
error (_("no .dynamic section in the dynamic segment\n"));
break;
}
if (sec->sh_type == SHT_NOBITS)
{
dynamic_addr = 0;
dynamic_size = 0;
break;
}
dynamic_addr = sec->sh_offset;
dynamic_size = sec->sh_size;
/* The PT_DYNAMIC segment, which is used by the run-time
loader, should exactly match the .dynamic section. */
if (do_checks
&& (dynamic_addr != segment->p_offset
|| dynamic_size != segment->p_filesz))
warn (_("\
the .dynamic section is not the same as the dynamic segment\n"));
}
/* PR binutils/17512: Avoid corrupt dynamic section info in the
segment. Check this after matching against the section headers
so we don't warn on debuginfo file (which have NOBITS .dynamic
sections). */
if (dynamic_addr > filedata->file_size
|| (dynamic_size > filedata->file_size - dynamic_addr))
{
error (_("the dynamic segment offset + size exceeds the size of the file\n"));
dynamic_addr = 0;
dynamic_size = 0;
}
break;
case PT_INTERP:
if (segment->p_offset >= filedata->file_size
|| segment->p_filesz > filedata->file_size - segment->p_offset
|| segment->p_filesz - 1 >= (size_t) -2
|| fseek64 (filedata->handle,
filedata->archive_file_offset + segment->p_offset,
SEEK_SET))
error (_("Unable to find program interpreter name\n"));
else
{
size_t len = segment->p_filesz;
free (filedata->program_interpreter);
filedata->program_interpreter = xmalloc (len + 1);
len = fread (filedata->program_interpreter, 1, len,
filedata->handle);
filedata->program_interpreter[len] = 0;
if (do_segments)
printf (_(" [Requesting program interpreter: %s]\n"),
printable_string (filedata->program_interpreter, 0));
}
break;
}
}
if (do_segments
&& filedata->section_headers != NULL
&& filedata->string_table != NULL)
{
printf (_("\n Section to Segment mapping:\n"));
printf (_(" Segment Sections...\n"));
for (i = 0; i < filedata->file_header.e_phnum; i++)
{
unsigned int j;
Elf_Internal_Shdr * section;
segment = filedata->program_headers + i;
section = filedata->section_headers + 1;
printf (" %2.2d ", i);
for (j = 1; j < filedata->file_header.e_shnum; j++, section++)
{
if (!ELF_TBSS_SPECIAL (section, segment)
&& ELF_SECTION_IN_SEGMENT_STRICT (section, segment))
printf ("%s ", printable_section_name (filedata, section));
}
putc ('\n',stdout);
}
}
filedata->dynamic_addr = dynamic_addr;
filedata->dynamic_size = dynamic_size ? dynamic_size : 1;
return;
no_headers:
filedata->dynamic_addr = 0;
filedata->dynamic_size = 1;
}
/* Find the file offset corresponding to VMA by using the program headers. */
static int64_t
offset_from_vma (Filedata * filedata, uint64_t vma, uint64_t size)
{
Elf_Internal_Phdr * seg;
if (! get_program_headers (filedata))
{
warn (_("Cannot interpret virtual addresses without program headers.\n"));
return (long) vma;
}
for (seg = filedata->program_headers;
seg < filedata->program_headers + filedata->file_header.e_phnum;
++seg)
{
if (seg->p_type != PT_LOAD)
continue;
if (vma >= (seg->p_vaddr & -seg->p_align)
&& vma + size <= seg->p_vaddr + seg->p_filesz)
return vma - seg->p_vaddr + seg->p_offset;
}
warn (_("Virtual address %#" PRIx64
" not located in any PT_LOAD segment.\n"), vma);
return vma;
}
/* Allocate memory and load the sections headers into FILEDATA->filedata->section_headers.
If PROBE is true, this is just a probe and we do not generate any error
messages if the load fails. */
static bool
get_32bit_section_headers (Filedata * filedata, bool probe)
{
Elf32_External_Shdr * shdrs;
Elf_Internal_Shdr * internal;
unsigned int i;
unsigned int size = filedata->file_header.e_shentsize;
unsigned int num = probe ? 1 : filedata->file_header.e_shnum;
/* PR binutils/17531: Cope with unexpected section header sizes. */
if (size == 0 || num == 0)
return false;
/* The section header cannot be at the start of the file - that is
where the ELF file header is located. A file with absolutely no
sections in it will use a shoff of 0. */
if (filedata->file_header.e_shoff == 0)
return false;
if (size < sizeof * shdrs)
{
if (! probe)
error (_("The e_shentsize field in the ELF header is less than the size of an ELF section header\n"));
return false;
}
if (!probe && size > sizeof * shdrs)
warn (_("The e_shentsize field in the ELF header is larger than the size of an ELF section header\n"));
shdrs = (Elf32_External_Shdr *) get_data (NULL, filedata, filedata->file_header.e_shoff,
size, num,
probe ? NULL : _("section headers"));
if (shdrs == NULL)
return false;
filedata->section_headers = (Elf_Internal_Shdr *)
cmalloc (num, sizeof (Elf_Internal_Shdr));
if (filedata->section_headers == NULL)
{
if (!probe)
error (_("Out of memory reading %u section headers\n"), num);
free (shdrs);
return false;
}
for (i = 0, internal = filedata->section_headers;
i < num;
i++, internal++)
{
internal->sh_name = BYTE_GET (shdrs[i].sh_name);
internal->sh_type = BYTE_GET (shdrs[i].sh_type);
internal->sh_flags = BYTE_GET (shdrs[i].sh_flags);
internal->sh_addr = BYTE_GET (shdrs[i].sh_addr);
internal->sh_offset = BYTE_GET (shdrs[i].sh_offset);
internal->sh_size = BYTE_GET (shdrs[i].sh_size);
internal->sh_link = BYTE_GET (shdrs[i].sh_link);
internal->sh_info = BYTE_GET (shdrs[i].sh_info);
internal->sh_addralign = BYTE_GET (shdrs[i].sh_addralign);
internal->sh_entsize = BYTE_GET (shdrs[i].sh_entsize);
if (!probe && internal->sh_link > num)
warn (_("Section %u has an out of range sh_link value of %u\n"), i, internal->sh_link);
if (!probe && internal->sh_flags & SHF_INFO_LINK && internal->sh_info > num)
warn (_("Section %u has an out of range sh_info value of %u\n"), i, internal->sh_info);
}
free (shdrs);
return true;
}
/* Like get_32bit_section_headers, except that it fetches 64-bit headers. */
static bool
get_64bit_section_headers (Filedata * filedata, bool probe)
{
Elf64_External_Shdr * shdrs;
Elf_Internal_Shdr * internal;
unsigned int i;
unsigned int size = filedata->file_header.e_shentsize;
unsigned int num = probe ? 1 : filedata->file_header.e_shnum;
/* PR binutils/17531: Cope with unexpected section header sizes. */
if (size == 0 || num == 0)
return false;
/* The section header cannot be at the start of the file - that is
where the ELF file header is located. A file with absolutely no
sections in it will use a shoff of 0. */
if (filedata->file_header.e_shoff == 0)
return false;
if (size < sizeof * shdrs)
{
if (! probe)
error (_("The e_shentsize field in the ELF header is less than the size of an ELF section header\n"));
return false;
}
if (! probe && size > sizeof * shdrs)
warn (_("The e_shentsize field in the ELF header is larger than the size of an ELF section header\n"));
shdrs = (Elf64_External_Shdr *) get_data (NULL, filedata,
filedata->file_header.e_shoff,
size, num,
probe ? NULL : _("section headers"));
if (shdrs == NULL)
return false;
filedata->section_headers = (Elf_Internal_Shdr *)
cmalloc (num, sizeof (Elf_Internal_Shdr));
if (filedata->section_headers == NULL)
{
if (! probe)
error (_("Out of memory reading %u section headers\n"), num);
free (shdrs);
return false;
}
for (i = 0, internal = filedata->section_headers;
i < num;
i++, internal++)
{
internal->sh_name = BYTE_GET (shdrs[i].sh_name);
internal->sh_type = BYTE_GET (shdrs[i].sh_type);
internal->sh_flags = BYTE_GET (shdrs[i].sh_flags);
internal->sh_addr = BYTE_GET (shdrs[i].sh_addr);
internal->sh_size = BYTE_GET (shdrs[i].sh_size);
internal->sh_entsize = BYTE_GET (shdrs[i].sh_entsize);
internal->sh_link = BYTE_GET (shdrs[i].sh_link);
internal->sh_info = BYTE_GET (shdrs[i].sh_info);
internal->sh_offset = BYTE_GET (shdrs[i].sh_offset);
internal->sh_addralign = BYTE_GET (shdrs[i].sh_addralign);
if (!probe && internal->sh_link > num)
warn (_("Section %u has an out of range sh_link value of %u\n"), i, internal->sh_link);
if (!probe && internal->sh_flags & SHF_INFO_LINK && internal->sh_info > num)
warn (_("Section %u has an out of range sh_info value of %u\n"), i, internal->sh_info);
}
free (shdrs);
return true;
}
static bool
get_section_headers (Filedata *filedata, bool probe)
{
if (filedata->section_headers != NULL)
return true;
if (is_32bit_elf)
return get_32bit_section_headers (filedata, probe);
else
return get_64bit_section_headers (filedata, probe);
}
static Elf_Internal_Sym *
get_32bit_elf_symbols (Filedata *filedata,
Elf_Internal_Shdr *section,
uint64_t *num_syms_return)
{
uint64_t number = 0;
Elf32_External_Sym * esyms = NULL;
Elf_External_Sym_Shndx * shndx = NULL;
Elf_Internal_Sym * isyms = NULL;
Elf_Internal_Sym * psym;
unsigned int j;
elf_section_list * entry;
if (section->sh_size == 0)
{
if (num_syms_return != NULL)
* num_syms_return = 0;
return NULL;
}
/* Run some sanity checks first. */
if (section->sh_entsize == 0 || section->sh_entsize > section->sh_size)
{
error (_("Section %s has an invalid sh_entsize of %#" PRIx64 "\n"),
printable_section_name (filedata, section),
section->sh_entsize);
goto exit_point;
}
if (section->sh_size > filedata->file_size)
{
error (_("Section %s has an invalid sh_size of %#" PRIx64 "\n"),
printable_section_name (filedata, section),
section->sh_size);
goto exit_point;
}
number = section->sh_size / section->sh_entsize;
if (number * sizeof (Elf32_External_Sym) > section->sh_size + 1)
{
error (_("Size (%#" PRIx64 ") of section %s "
"is not a multiple of its sh_entsize (%#" PRIx64 ")\n"),
section->sh_size,
printable_section_name (filedata, section),
section->sh_entsize);
goto exit_point;
}
esyms = (Elf32_External_Sym *) get_data (NULL, filedata, section->sh_offset, 1,
section->sh_size, _("symbols"));
if (esyms == NULL)
goto exit_point;
shndx = NULL;
for (entry = filedata->symtab_shndx_list; entry != NULL; entry = entry->next)
{
if (entry->hdr->sh_link != (size_t) (section - filedata->section_headers))
continue;
if (shndx != NULL)
{
error (_("Multiple symbol table index sections associated with the same symbol section\n"));
free (shndx);
}
shndx = (Elf_External_Sym_Shndx *) get_data (NULL, filedata,
entry->hdr->sh_offset,
1, entry->hdr->sh_size,
_("symbol table section indices"));
if (shndx == NULL)
goto exit_point;
/* PR17531: file: heap-buffer-overflow */
if (entry->hdr->sh_size / sizeof (Elf_External_Sym_Shndx) < number)
{
error (_("Index section %s has an sh_size of %#" PRIx64 " - expected %#" PRIx64 "\n"),
printable_section_name (filedata, entry->hdr),
entry->hdr->sh_size,
section->sh_size);
goto exit_point;
}
}
isyms = (Elf_Internal_Sym *) cmalloc (number, sizeof (Elf_Internal_Sym));
if (isyms == NULL)
{
error (_("Out of memory reading %" PRIu64 " symbols\n"), number);
goto exit_point;
}
for (j = 0, psym = isyms; j < number; j++, psym++)
{
psym->st_name = BYTE_GET (esyms[j].st_name);
psym->st_value = BYTE_GET (esyms[j].st_value);
psym->st_size = BYTE_GET (esyms[j].st_size);
psym->st_shndx = BYTE_GET (esyms[j].st_shndx);
if (psym->st_shndx == (SHN_XINDEX & 0xffff) && shndx != NULL)
psym->st_shndx
= byte_get ((unsigned char *) &shndx[j], sizeof (shndx[j]));
else if (psym->st_shndx >= (SHN_LORESERVE & 0xffff))
psym->st_shndx += SHN_LORESERVE - (SHN_LORESERVE & 0xffff);
psym->st_info = BYTE_GET (esyms[j].st_info);
psym->st_other = BYTE_GET (esyms[j].st_other);
}
exit_point:
free (shndx);
free (esyms);
if (num_syms_return != NULL)
* num_syms_return = isyms == NULL ? 0 : number;
return isyms;
}
static Elf_Internal_Sym *
get_64bit_elf_symbols (Filedata *filedata,
Elf_Internal_Shdr *section,
uint64_t *num_syms_return)
{
uint64_t number = 0;
Elf64_External_Sym * esyms = NULL;
Elf_External_Sym_Shndx * shndx = NULL;
Elf_Internal_Sym * isyms = NULL;
Elf_Internal_Sym * psym;
unsigned int j;
elf_section_list * entry;
if (section->sh_size == 0)
{
if (num_syms_return != NULL)
* num_syms_return = 0;
return NULL;
}
/* Run some sanity checks first. */
if (section->sh_entsize == 0 || section->sh_entsize > section->sh_size)
{
error (_("Section %s has an invalid sh_entsize of %#" PRIx64 "\n"),
printable_section_name (filedata, section),
section->sh_entsize);
goto exit_point;
}
if (section->sh_size > filedata->file_size)
{
error (_("Section %s has an invalid sh_size of %#" PRIx64 "\n"),
printable_section_name (filedata, section),
section->sh_size);
goto exit_point;
}
number = section->sh_size / section->sh_entsize;
if (number * sizeof (Elf64_External_Sym) > section->sh_size + 1)
{
error (_("Size (%#" PRIx64 ") of section %s "
"is not a multiple of its sh_entsize (%#" PRIx64 ")\n"),
section->sh_size,
printable_section_name (filedata, section),
section->sh_entsize);
goto exit_point;
}
esyms = (Elf64_External_Sym *) get_data (NULL, filedata, section->sh_offset, 1,
section->sh_size, _("symbols"));
if (!esyms)
goto exit_point;
shndx = NULL;
for (entry = filedata->symtab_shndx_list; entry != NULL; entry = entry->next)
{
if (entry->hdr->sh_link != (size_t) (section - filedata->section_headers))
continue;
if (shndx != NULL)
{
error (_("Multiple symbol table index sections associated with the same symbol section\n"));
free (shndx);
}
shndx = (Elf_External_Sym_Shndx *) get_data (NULL, filedata,
entry->hdr->sh_offset,
1, entry->hdr->sh_size,
_("symbol table section indices"));
if (shndx == NULL)
goto exit_point;
/* PR17531: file: heap-buffer-overflow */
if (entry->hdr->sh_size / sizeof (Elf_External_Sym_Shndx) < number)
{
error (_("Index section %s has an sh_size of %#" PRIx64 " - expected %#" PRIx64 "\n"),
printable_section_name (filedata, entry->hdr),
entry->hdr->sh_size,
section->sh_size);
goto exit_point;
}
}
isyms = (Elf_Internal_Sym *) cmalloc (number, sizeof (Elf_Internal_Sym));
if (isyms == NULL)
{
error (_("Out of memory reading %" PRIu64 " symbols\n"), number);
goto exit_point;
}
for (j = 0, psym = isyms; j < number; j++, psym++)
{
psym->st_name = BYTE_GET (esyms[j].st_name);
psym->st_info = BYTE_GET (esyms[j].st_info);
psym->st_other = BYTE_GET (esyms[j].st_other);
psym->st_shndx = BYTE_GET (esyms[j].st_shndx);
if (psym->st_shndx == (SHN_XINDEX & 0xffff) && shndx != NULL)
psym->st_shndx
= byte_get ((unsigned char *) &shndx[j], sizeof (shndx[j]));
else if (psym->st_shndx >= (SHN_LORESERVE & 0xffff))
psym->st_shndx += SHN_LORESERVE - (SHN_LORESERVE & 0xffff);
psym->st_value = BYTE_GET (esyms[j].st_value);
psym->st_size = BYTE_GET (esyms[j].st_size);
}
exit_point:
free (shndx);
free (esyms);
if (num_syms_return != NULL)
* num_syms_return = isyms == NULL ? 0 : number;
return isyms;
}
static Elf_Internal_Sym *
get_elf_symbols (Filedata *filedata,
Elf_Internal_Shdr *section,
uint64_t *num_syms_return)
{
if (is_32bit_elf)
return get_32bit_elf_symbols (filedata, section, num_syms_return);
else
return get_64bit_elf_symbols (filedata, section, num_syms_return);
}
static const char *
get_elf_section_flags (Filedata * filedata, uint64_t sh_flags)
{
static char buff[1024];
char * p = buff;
unsigned int field_size = is_32bit_elf ? 8 : 16;
signed int sindex;
unsigned int size = sizeof (buff) - (field_size + 4 + 1);
uint64_t os_flags = 0;
uint64_t proc_flags = 0;
uint64_t unknown_flags = 0;
static const struct
{
const char * str;
unsigned int len;
}
flags [] =
{
/* 0 */ { STRING_COMMA_LEN ("WRITE") },
/* 1 */ { STRING_COMMA_LEN ("ALLOC") },
/* 2 */ { STRING_COMMA_LEN ("EXEC") },
/* 3 */ { STRING_COMMA_LEN ("MERGE") },
/* 4 */ { STRING_COMMA_LEN ("STRINGS") },
/* 5 */ { STRING_COMMA_LEN ("INFO LINK") },
/* 6 */ { STRING_COMMA_LEN ("LINK ORDER") },
/* 7 */ { STRING_COMMA_LEN ("OS NONCONF") },
/* 8 */ { STRING_COMMA_LEN ("GROUP") },
/* 9 */ { STRING_COMMA_LEN ("TLS") },
/* IA-64 specific. */
/* 10 */ { STRING_COMMA_LEN ("SHORT") },
/* 11 */ { STRING_COMMA_LEN ("NORECOV") },
/* IA-64 OpenVMS specific. */
/* 12 */ { STRING_COMMA_LEN ("VMS_GLOBAL") },
/* 13 */ { STRING_COMMA_LEN ("VMS_OVERLAID") },
/* 14 */ { STRING_COMMA_LEN ("VMS_SHARED") },
/* 15 */ { STRING_COMMA_LEN ("VMS_VECTOR") },
/* 16 */ { STRING_COMMA_LEN ("VMS_ALLOC_64BIT") },
/* 17 */ { STRING_COMMA_LEN ("VMS_PROTECTED") },
/* Generic. */
/* 18 */ { STRING_COMMA_LEN ("EXCLUDE") },
/* SPARC specific. */
/* 19 */ { STRING_COMMA_LEN ("ORDERED") },
/* 20 */ { STRING_COMMA_LEN ("COMPRESSED") },
/* ARM specific. */
/* 21 */ { STRING_COMMA_LEN ("ENTRYSECT") },
/* 22 */ { STRING_COMMA_LEN ("ARM_PURECODE") },
/* 23 */ { STRING_COMMA_LEN ("COMDEF") },
/* GNU specific. */
/* 24 */ { STRING_COMMA_LEN ("GNU_MBIND") },
/* VLE specific. */
/* 25 */ { STRING_COMMA_LEN ("VLE") },
/* GNU specific. */
/* 26 */ { STRING_COMMA_LEN ("GNU_RETAIN") },
};
if (do_section_details)
p += sprintf (p, "[%*.*lx]: ",
field_size, field_size, (unsigned long) sh_flags);
while (sh_flags)
{
uint64_t flag;
flag = sh_flags & - sh_flags;
sh_flags &= ~ flag;
if (do_section_details)
{
switch (flag)
{
case SHF_WRITE: sindex = 0; break;
case SHF_ALLOC: sindex = 1; break;
case SHF_EXECINSTR: sindex = 2; break;
case SHF_MERGE: sindex = 3; break;
case SHF_STRINGS: sindex = 4; break;
case SHF_INFO_LINK: sindex = 5; break;
case SHF_LINK_ORDER: sindex = 6; break;
case SHF_OS_NONCONFORMING: sindex = 7; break;
case SHF_GROUP: sindex = 8; break;
case SHF_TLS: sindex = 9; break;
case SHF_EXCLUDE: sindex = 18; break;
case SHF_COMPRESSED: sindex = 20; break;
default:
sindex = -1;
switch (filedata->file_header.e_machine)
{
case EM_IA_64:
if (flag == SHF_IA_64_SHORT)
sindex = 10;
else if (flag == SHF_IA_64_NORECOV)
sindex = 11;
else if (filedata->file_header.e_ident[EI_OSABI] == ELFOSABI_OPENVMS)
switch (flag)
{
case SHF_IA_64_VMS_GLOBAL: sindex = 12; break;
case SHF_IA_64_VMS_OVERLAID: sindex = 13; break;
case SHF_IA_64_VMS_SHARED: sindex = 14; break;
case SHF_IA_64_VMS_VECTOR: sindex = 15; break;
case SHF_IA_64_VMS_ALLOC_64BIT: sindex = 16; break;
case SHF_IA_64_VMS_PROTECTED: sindex = 17; break;
default: break;
}
break;
case EM_386:
case EM_IAMCU:
case EM_X86_64:
case EM_L1OM:
case EM_K1OM:
case EM_OLD_SPARCV9:
case EM_SPARC32PLUS:
case EM_SPARCV9:
case EM_SPARC:
if (flag == SHF_ORDERED)
sindex = 19;
break;
case EM_ARM:
switch (flag)
{
case SHF_ENTRYSECT: sindex = 21; break;
case SHF_ARM_PURECODE: sindex = 22; break;
case SHF_COMDEF: sindex = 23; break;
default: break;
}
break;
case EM_PPC:
if (flag == SHF_PPC_VLE)
sindex = 25;
break;
default:
break;
}
switch (filedata->file_header.e_ident[EI_OSABI])
{
case ELFOSABI_GNU:
case ELFOSABI_FREEBSD:
if (flag == SHF_GNU_RETAIN)
sindex = 26;
/* Fall through */
case ELFOSABI_NONE:
if (flag == SHF_GNU_MBIND)
/* We should not recognize SHF_GNU_MBIND for
ELFOSABI_NONE, but binutils as of 2019-07-23 did
not set the EI_OSABI header byte. */
sindex = 24;
break;
default:
break;
}
break;
}
if (sindex != -1)
{
if (p != buff + field_size + 4)
{
if (size < (10 + 2))
{
warn (_("Internal error: not enough buffer room for section flag info"));
return _("<unknown>");
}
size -= 2;
*p++ = ',';
*p++ = ' ';
}
size -= flags [sindex].len;
p = stpcpy (p, flags [sindex].str);
}
else if (flag & SHF_MASKOS)
os_flags |= flag;
else if (flag & SHF_MASKPROC)
proc_flags |= flag;
else
unknown_flags |= flag;
}
else
{
switch (flag)
{
case SHF_WRITE: *p = 'W'; break;
case SHF_ALLOC: *p = 'A'; break;
case SHF_EXECINSTR: *p = 'X'; break;
case SHF_MERGE: *p = 'M'; break;
case SHF_STRINGS: *p = 'S'; break;
case SHF_INFO_LINK: *p = 'I'; break;
case SHF_LINK_ORDER: *p = 'L'; break;
case SHF_OS_NONCONFORMING: *p = 'O'; break;
case SHF_GROUP: *p = 'G'; break;
case SHF_TLS: *p = 'T'; break;
case SHF_EXCLUDE: *p = 'E'; break;
case SHF_COMPRESSED: *p = 'C'; break;
default:
if ((filedata->file_header.e_machine == EM_X86_64
|| filedata->file_header.e_machine == EM_L1OM
|| filedata->file_header.e_machine == EM_K1OM)
&& flag == SHF_X86_64_LARGE)
*p = 'l';
else if (filedata->file_header.e_machine == EM_ARM
&& flag == SHF_ARM_PURECODE)
*p = 'y';
else if (filedata->file_header.e_machine == EM_PPC
&& flag == SHF_PPC_VLE)
*p = 'v';
else if (flag & SHF_MASKOS)
{
switch (filedata->file_header.e_ident[EI_OSABI])
{
case ELFOSABI_GNU:
case ELFOSABI_FREEBSD:
if (flag == SHF_GNU_RETAIN)
{
*p = 'R';
break;
}
/* Fall through */
case ELFOSABI_NONE:
if (flag == SHF_GNU_MBIND)
{
/* We should not recognize SHF_GNU_MBIND for
ELFOSABI_NONE, but binutils as of 2019-07-23 did
not set the EI_OSABI header byte. */
*p = 'D';
break;
}
/* Fall through */
default:
*p = 'o';
sh_flags &= ~SHF_MASKOS;
break;
}
}
else if (flag & SHF_MASKPROC)
{
*p = 'p';
sh_flags &= ~ SHF_MASKPROC;
}
else
*p = 'x';
break;
}
p++;
}
}
if (do_section_details)
{
if (os_flags)
{
if (p != buff + field_size + 4)
{
if (size < 2 + 5 + field_size + 1)
{
warn (_("Internal error: not enough buffer room for section flag info"));
return _("<unknown>");
}
size -= 2;
*p++ = ',';
*p++ = ' ';
}
size -= 5 + field_size;
p += sprintf (p, "OS (%*.*lx)", field_size, field_size,
(unsigned long) os_flags);
}
if (proc_flags)
{
if (p != buff + field_size + 4)
{
if (size < 2 + 7 + field_size + 1)
{
warn (_("Internal error: not enough buffer room for section flag info"));
return _("<unknown>");
}
size -= 2;
*p++ = ',';
*p++ = ' ';
}
size -= 7 + field_size;
p += sprintf (p, "PROC (%*.*lx)", field_size, field_size,
(unsigned long) proc_flags);
}
if (unknown_flags)
{
if (p != buff + field_size + 4)
{
if (size < 2 + 10 + field_size + 1)
{
warn (_("Internal error: not enough buffer room for section flag info"));
return _("<unknown>");
}
size -= 2;
*p++ = ',';
*p++ = ' ';
}
size -= 10 + field_size;
p += sprintf (p, _("UNKNOWN (%*.*lx)"), field_size, field_size,
(unsigned long) unknown_flags);
}
}
*p = '\0';
return buff;
}
static unsigned int ATTRIBUTE_WARN_UNUSED_RESULT
get_compression_header (Elf_Internal_Chdr *chdr, unsigned char *buf,
uint64_t size)
{
if (is_32bit_elf)
{
Elf32_External_Chdr *echdr = (Elf32_External_Chdr *) buf;
if (size < sizeof (* echdr))
{
error (_("Compressed section is too small even for a compression header\n"));
return 0;
}
chdr->ch_type = BYTE_GET (echdr->ch_type);
chdr->ch_size = BYTE_GET (echdr->ch_size);
chdr->ch_addralign = BYTE_GET (echdr->ch_addralign);
return sizeof (*echdr);
}
else
{
Elf64_External_Chdr *echdr = (Elf64_External_Chdr *) buf;
if (size < sizeof (* echdr))
{
error (_("Compressed section is too small even for a compression header\n"));
return 0;
}
chdr->ch_type = BYTE_GET (echdr->ch_type);
chdr->ch_size = BYTE_GET (echdr->ch_size);
chdr->ch_addralign = BYTE_GET (echdr->ch_addralign);
return sizeof (*echdr);
}
}
static bool
process_section_headers (Filedata * filedata)
{
Elf_Internal_Shdr * section;
unsigned int i;
if (filedata->file_header.e_shnum == 0)
{
/* PR binutils/12467. */
if (filedata->file_header.e_shoff != 0)
{
warn (_("possibly corrupt ELF file header - it has a non-zero"
" section header offset, but no section headers\n"));
return false;
}
else if (do_sections)
printf (_("\nThere are no sections in this file.\n"));
return true;
}
if (do_sections && !do_header)
{
if (filedata->is_separate && process_links)
printf (_("In linked file '%s': "),
printable_string (filedata->file_name, 0));
if (! filedata->is_separate || process_links)
printf (ngettext ("There is %d section header, "
"starting at offset %#" PRIx64 ":\n",
"There are %d section headers, "
"starting at offset %#" PRIx64 ":\n",
filedata->file_header.e_shnum),
filedata->file_header.e_shnum,
filedata->file_header.e_shoff);
}
if (!get_section_headers (filedata, false))
return false;
/* Read in the string table, so that we have names to display. */
if (filedata->string_table == NULL
&& filedata->file_header.e_shstrndx != SHN_UNDEF
&& filedata->file_header.e_shstrndx < filedata->file_header.e_shnum)
{
section = filedata->section_headers + filedata->file_header.e_shstrndx;
if (section->sh_size != 0)
{
filedata->string_table = (char *) get_data (NULL, filedata, section->sh_offset,
1, section->sh_size,
_("string table"));
filedata->string_table_length = filedata->string_table != NULL ? section->sh_size : 0;
}
}
/* Scan the sections for the dynamic symbol table
and dynamic string table and debug sections. */
eh_addr_size = is_32bit_elf ? 4 : 8;
switch (filedata->file_header.e_machine)
{
case EM_MIPS:
case EM_MIPS_RS3_LE:
/* The 64-bit MIPS EABI uses a combination of 32-bit ELF and 64-bit
FDE addresses. However, the ABI also has a semi-official ILP32
variant for which the normal FDE address size rules apply.
GCC 4.0 marks EABI64 objects with a dummy .gcc_compiled_longXX
section, where XX is the size of longs in bits. Unfortunately,
earlier compilers provided no way of distinguishing ILP32 objects
from LP64 objects, so if there's any doubt, we should assume that
the official LP64 form is being used. */
if ((filedata->file_header.e_flags & EF_MIPS_ABI) == EF_MIPS_ABI_EABI64
&& find_section (filedata, ".gcc_compiled_long32") == NULL)
eh_addr_size = 8;
break;
case EM_H8_300:
case EM_H8_300H:
switch (filedata->file_header.e_flags & EF_H8_MACH)
{
case E_H8_MACH_H8300:
case E_H8_MACH_H8300HN:
case E_H8_MACH_H8300SN:
case E_H8_MACH_H8300SXN:
eh_addr_size = 2;
break;
case E_H8_MACH_H8300H:
case E_H8_MACH_H8300S:
case E_H8_MACH_H8300SX:
eh_addr_size = 4;
break;
}
break;
case EM_M32C_OLD:
case EM_M32C:
switch (filedata->file_header.e_flags & EF_M32C_CPU_MASK)
{
case EF_M32C_CPU_M16C:
eh_addr_size = 2;
break;
}
break;
}
#define CHECK_ENTSIZE_VALUES(section, i, size32, size64) \
do \
{ \
uint64_t expected_entsize = is_32bit_elf ? size32 : size64; \
if (section->sh_entsize != expected_entsize) \
{ \
error (_("Section %d has invalid sh_entsize of %" PRIx64 "\n"), \
i, section->sh_entsize); \
error (_("(Using the expected size of %" PRIx64 " for the rest of this dump)\n"), \
expected_entsize); \
section->sh_entsize = expected_entsize; \
} \
} \
while (0)
#define CHECK_ENTSIZE(section, i, type) \
CHECK_ENTSIZE_VALUES (section, i, sizeof (Elf32_External_##type), \
sizeof (Elf64_External_##type))
for (i = 0, section = filedata->section_headers;
i < filedata->file_header.e_shnum;
i++, section++)
{
const char *name = printable_section_name (filedata, section);
/* Run some sanity checks on the headers and
possibly fill in some file data as well. */
switch (section->sh_type)
{
case SHT_DYNSYM:
if (filedata->dynamic_symbols != NULL)
{
error (_("File contains multiple dynamic symbol tables\n"));
continue;
}
CHECK_ENTSIZE (section, i, Sym);
filedata->dynamic_symbols
= get_elf_symbols (filedata, section, &filedata->num_dynamic_syms);
filedata->dynamic_symtab_section = section;
break;
case SHT_STRTAB:
if (streq (name, ".dynstr"))
{
if (filedata->dynamic_strings != NULL)
{
error (_("File contains multiple dynamic string tables\n"));
continue;
}
filedata->dynamic_strings
= (char *) get_data (NULL, filedata, section->sh_offset,
1, section->sh_size, _("dynamic strings"));
filedata->dynamic_strings_length
= filedata->dynamic_strings == NULL ? 0 : section->sh_size;
filedata->dynamic_strtab_section = section;
}
break;
case SHT_SYMTAB_SHNDX:
{
elf_section_list * entry = xmalloc (sizeof * entry);
entry->hdr = section;
entry->next = filedata->symtab_shndx_list;
filedata->symtab_shndx_list = entry;
}
break;
case SHT_SYMTAB:
CHECK_ENTSIZE (section, i, Sym);
break;
case SHT_GROUP:
CHECK_ENTSIZE_VALUES (section, i, GRP_ENTRY_SIZE, GRP_ENTRY_SIZE);
break;
case SHT_REL:
CHECK_ENTSIZE (section, i, Rel);
if (do_checks && section->sh_size == 0)
warn (_("Section '%s': zero-sized relocation section\n"), name);
break;
case SHT_RELA:
CHECK_ENTSIZE (section, i, Rela);
if (do_checks && section->sh_size == 0)
warn (_("Section '%s': zero-sized relocation section\n"), name);
break;
case SHT_RELR:
CHECK_ENTSIZE (section, i, Relr);
break;
case SHT_NOTE:
case SHT_PROGBITS:
/* Having a zero sized section is not illegal according to the
ELF standard, but it might be an indication that something
is wrong. So issue a warning if we are running in lint mode. */
if (do_checks && section->sh_size == 0)
warn (_("Section '%s': has a size of zero - is this intended ?\n"), name);
break;
default:
break;
}
if ((do_debugging || do_debug_info || do_debug_abbrevs
|| do_debug_lines || do_debug_pubnames || do_debug_pubtypes
|| do_debug_aranges || do_debug_frames || do_debug_macinfo
|| do_debug_str || do_debug_str_offsets || do_debug_loc
|| do_debug_ranges
|| do_debug_addr || do_debug_cu_index || do_debug_links)
&& (startswith (name, ".debug_")
|| startswith (name, ".zdebug_")))
{
if (name[1] == 'z')
name += sizeof (".zdebug_") - 1;
else
name += sizeof (".debug_") - 1;
if (do_debugging
|| (do_debug_info && startswith (name, "info"))
|| (do_debug_info && startswith (name, "types"))
|| (do_debug_abbrevs && startswith (name, "abbrev"))
|| (do_debug_lines && strcmp (name, "line") == 0)
|| (do_debug_lines && startswith (name, "line."))
|| (do_debug_pubnames && startswith (name, "pubnames"))
|| (do_debug_pubtypes && startswith (name, "pubtypes"))
|| (do_debug_pubnames && startswith (name, "gnu_pubnames"))
|| (do_debug_pubtypes && startswith (name, "gnu_pubtypes"))
|| (do_debug_aranges && startswith (name, "aranges"))
|| (do_debug_ranges && startswith (name, "ranges"))
|| (do_debug_ranges && startswith (name, "rnglists"))
|| (do_debug_frames && startswith (name, "frame"))
|| (do_debug_macinfo && startswith (name, "macinfo"))
|| (do_debug_macinfo && startswith (name, "macro"))
|| (do_debug_str && startswith (name, "str"))
|| (do_debug_links && startswith (name, "sup"))
|| (do_debug_str_offsets && startswith (name, "str_offsets"))
|| (do_debug_loc && startswith (name, "loc"))
|| (do_debug_loc && startswith (name, "loclists"))
|| (do_debug_addr && startswith (name, "addr"))
|| (do_debug_cu_index && startswith (name, "cu_index"))
|| (do_debug_cu_index && startswith (name, "tu_index"))
)
request_dump_bynumber (&filedata->dump, i, DEBUG_DUMP);
}
/* Linkonce section to be combined with .debug_info at link time. */
else if ((do_debugging || do_debug_info)
&& startswith (name, ".gnu.linkonce.wi."))
request_dump_bynumber (&filedata->dump, i, DEBUG_DUMP);
else if (do_debug_frames && streq (name, ".eh_frame"))
request_dump_bynumber (&filedata->dump, i, DEBUG_DUMP);
else if (do_debug_frames && streq (name, ".eh_frame_hdr"))
request_dump_bynumber (&filedata->dump, i, DEBUG_DUMP);
else if (do_gdb_index && (streq (name, ".gdb_index")
|| streq (name, ".debug_names")))
request_dump_bynumber (&filedata->dump, i, DEBUG_DUMP);
/* Trace sections for Itanium VMS. */
else if ((do_debugging || do_trace_info || do_trace_abbrevs
|| do_trace_aranges)
&& startswith (name, ".trace_"))
{
name += sizeof (".trace_") - 1;
if (do_debugging
|| (do_trace_info && streq (name, "info"))
|| (do_trace_abbrevs && streq (name, "abbrev"))
|| (do_trace_aranges && streq (name, "aranges"))
)
request_dump_bynumber (&filedata->dump, i, DEBUG_DUMP);
}
else if ((do_debugging || do_debug_links)
&& (startswith (name, ".gnu_debuglink")
|| startswith (name, ".gnu_debugaltlink")))
request_dump_bynumber (&filedata->dump, i, DEBUG_DUMP);
}
if (! do_sections)
return true;
if (filedata->is_separate && ! process_links)
return true;
if (filedata->is_separate)
printf (_("\nSection Headers in linked file '%s':\n"),
printable_string (filedata->file_name, 0));
else if (filedata->file_header.e_shnum > 1)
printf (_("\nSection Headers:\n"));
else
printf (_("\nSection Header:\n"));
if (is_32bit_elf)
{
if (do_section_details)
{
printf (_(" [Nr] Name\n"));
printf (_(" Type Addr Off Size ES Lk Inf Al\n"));
}
else
printf
(_(" [Nr] Name Type Addr Off Size ES Flg Lk Inf Al\n"));
}
else if (do_wide)
{
if (do_section_details)
{
printf (_(" [Nr] Name\n"));
printf (_(" Type Address Off Size ES Lk Inf Al\n"));
}
else
printf
(_(" [Nr] Name Type Address Off Size ES Flg Lk Inf Al\n"));
}
else
{
if (do_section_details)
{
printf (_(" [Nr] Name\n"));
printf (_(" Type Address Offset Link\n"));
printf (_(" Size EntSize Info Align\n"));
}
else
{
printf (_(" [Nr] Name Type Address Offset\n"));
printf (_(" Size EntSize Flags Link Info Align\n"));
}
}
if (do_section_details)
printf (_(" Flags\n"));
for (i = 0, section = filedata->section_headers;
i < filedata->file_header.e_shnum;
i++, section++)
{
/* Run some sanity checks on the section header. */
/* Check the sh_link field. */
switch (section->sh_type)
{
case SHT_REL:
case SHT_RELR:
case SHT_RELA:
if (section->sh_link == 0
&& (filedata->file_header.e_type == ET_EXEC
|| filedata->file_header.e_type == ET_DYN))
/* A dynamic relocation section where all entries use a
zero symbol index need not specify a symtab section. */
break;
/* Fall through. */
case SHT_SYMTAB_SHNDX:
case SHT_GROUP:
case SHT_HASH:
case SHT_GNU_HASH:
case SHT_GNU_versym:
if (section->sh_link == 0
|| section->sh_link >= filedata->file_header.e_shnum
|| (filedata->section_headers[section->sh_link].sh_type != SHT_SYMTAB
&& filedata->section_headers[section->sh_link].sh_type != SHT_DYNSYM))
warn (_("[%2u]: Link field (%u) should index a symtab section.\n"),
i, section->sh_link);
break;
case SHT_DYNAMIC:
case SHT_SYMTAB:
case SHT_DYNSYM:
case SHT_GNU_verneed:
case SHT_GNU_verdef:
case SHT_GNU_LIBLIST:
if (section->sh_link == 0
|| section->sh_link >= filedata->file_header.e_shnum
|| filedata->section_headers[section->sh_link].sh_type != SHT_STRTAB)
warn (_("[%2u]: Link field (%u) should index a string section.\n"),
i, section->sh_link);
break;
case SHT_INIT_ARRAY:
case SHT_FINI_ARRAY:
case SHT_PREINIT_ARRAY:
if (section->sh_type < SHT_LOOS && section->sh_link != 0)
warn (_("[%2u]: Unexpected value (%u) in link field.\n"),
i, section->sh_link);
break;
default:
/* FIXME: Add support for target specific section types. */
#if 0 /* Currently we do not check other section types as there are too
many special cases. Stab sections for example have a type
of SHT_PROGBITS but an sh_link field that links to the .stabstr
section. */
if (section->sh_type < SHT_LOOS && section->sh_link != 0)
warn (_("[%2u]: Unexpected value (%u) in link field.\n"),
i, section->sh_link);
#endif
break;
}
/* Check the sh_info field. */
switch (section->sh_type)
{
case SHT_REL:
case SHT_RELA:
if (section->sh_info == 0
&& (filedata->file_header.e_type == ET_EXEC
|| filedata->file_header.e_type == ET_DYN))
/* Dynamic relocations apply to segments, so they do not
need to specify the section they relocate. */
break;
if (section->sh_info == 0
|| section->sh_info >= filedata->file_header.e_shnum
|| (filedata->section_headers[section->sh_info].sh_type != SHT_PROGBITS
&& filedata->section_headers[section->sh_info].sh_type != SHT_NOBITS
&& filedata->section_headers[section->sh_info].sh_type != SHT_NOTE
&& filedata->section_headers[section->sh_info].sh_type != SHT_INIT_ARRAY
&& filedata->section_headers[section->sh_info].sh_type != SHT_FINI_ARRAY
&& filedata->section_headers[section->sh_info].sh_type != SHT_PREINIT_ARRAY
/* FIXME: Are other section types valid ? */
&& filedata->section_headers[section->sh_info].sh_type < SHT_LOOS))
warn (_("[%2u]: Info field (%u) should index a relocatable section.\n"),
i, section->sh_info);
break;
case SHT_DYNAMIC:
case SHT_HASH:
case SHT_SYMTAB_SHNDX:
case SHT_INIT_ARRAY:
case SHT_FINI_ARRAY:
case SHT_PREINIT_ARRAY:
if (section->sh_info != 0)
warn (_("[%2u]: Unexpected value (%u) in info field.\n"),
i, section->sh_info);
break;
case SHT_GROUP:
case SHT_SYMTAB:
case SHT_DYNSYM:
/* A symbol index - we assume that it is valid. */
break;
default:
/* FIXME: Add support for target specific section types. */
if (section->sh_type == SHT_NOBITS)
/* NOBITS section headers with non-zero sh_info fields can be
created when a binary is stripped of everything but its debug
information. The stripped sections have their headers
preserved but their types set to SHT_NOBITS. So do not check
this type of section. */
;
else if (section->sh_flags & SHF_INFO_LINK)
{
if (section->sh_info < 1 || section->sh_info >= filedata->file_header.e_shnum)
warn (_("[%2u]: Expected link to another section in info field"), i);
}
else if (section->sh_type < SHT_LOOS
&& (section->sh_flags & SHF_GNU_MBIND) == 0
&& section->sh_info != 0)
warn (_("[%2u]: Unexpected value (%u) in info field.\n"),
i, section->sh_info);
break;
}
/* Check the sh_size field. */
if (section->sh_size > filedata->file_size
&& section->sh_type != SHT_NOBITS
&& section->sh_type != SHT_NULL
&& section->sh_type < SHT_LOOS)
warn (_("Size of section %u is larger than the entire file!\n"), i);
printf (" [%2u] ", i);
if (do_section_details)
printf ("%s\n ", printable_section_name (filedata, section));
else
print_symbol_name (-17, printable_section_name (filedata, section));
printf (do_wide ? " %-15s " : " %-15.15s ",
get_section_type_name (filedata, section->sh_type));
if (is_32bit_elf)
{
const char * link_too_big = NULL;
print_vma (section->sh_addr, LONG_HEX);
printf ( " %6.6lx %6.6lx %2.2lx",
(unsigned long) section->sh_offset,
(unsigned long) section->sh_size,
(unsigned long) section->sh_entsize);
if (do_section_details)
fputs (" ", stdout);
else
printf (" %3s ", get_elf_section_flags (filedata, section->sh_flags));
if (section->sh_link >= filedata->file_header.e_shnum)
{
link_too_big = "";
/* The sh_link value is out of range. Normally this indicates
an error but it can have special values in Solaris binaries. */
switch (filedata->file_header.e_machine)
{
case EM_386:
case EM_IAMCU:
case EM_X86_64:
case EM_L1OM:
case EM_K1OM:
case EM_OLD_SPARCV9:
case EM_SPARC32PLUS:
case EM_SPARCV9:
case EM_SPARC:
if (section->sh_link == (SHN_BEFORE & 0xffff))
link_too_big = "BEFORE";
else if (section->sh_link == (SHN_AFTER & 0xffff))
link_too_big = "AFTER";
break;
default:
break;
}
}
if (do_section_details)
{
if (link_too_big != NULL && * link_too_big)
printf ("<%s> ", link_too_big);
else
printf ("%2u ", section->sh_link);
printf ("%3u %2lu\n", section->sh_info,
(unsigned long) section->sh_addralign);
}
else
printf ("%2u %3u %2lu\n",
section->sh_link,
section->sh_info,
(unsigned long) section->sh_addralign);
if (link_too_big && ! * link_too_big)
warn (_("section %u: sh_link value of %u is larger than the number of sections\n"),
i, section->sh_link);
}
else if (do_wide)
{
print_vma (section->sh_addr, LONG_HEX);
if ((long) section->sh_offset == section->sh_offset)
printf (" %6.6lx", (unsigned long) section->sh_offset);
else
{
putchar (' ');
print_vma (section->sh_offset, LONG_HEX);
}
if ((unsigned long) section->sh_size == section->sh_size)
printf (" %6.6lx", (unsigned long) section->sh_size);
else
{
putchar (' ');
print_vma (section->sh_size, LONG_HEX);
}
if ((unsigned long) section->sh_entsize == section->sh_entsize)
printf (" %2.2lx", (unsigned long) section->sh_entsize);
else
{
putchar (' ');
print_vma (section->sh_entsize, LONG_HEX);
}
if (do_section_details)
fputs (" ", stdout);
else
printf (" %3s ", get_elf_section_flags (filedata, section->sh_flags));
printf ("%2u %3u ", section->sh_link, section->sh_info);
if ((unsigned long) section->sh_addralign == section->sh_addralign)
printf ("%2lu\n", (unsigned long) section->sh_addralign);
else
{
print_vma (section->sh_addralign, DEC);
putchar ('\n');
}
}
else if (do_section_details)
{
putchar (' ');
print_vma (section->sh_addr, LONG_HEX);
if ((long) section->sh_offset == section->sh_offset)
printf (" %16.16lx", (unsigned long) section->sh_offset);
else
{
printf (" ");
print_vma (section->sh_offset, LONG_HEX);
}
printf (" %u\n ", section->sh_link);
print_vma (section->sh_size, LONG_HEX);
putchar (' ');
print_vma (section->sh_entsize, LONG_HEX);
printf (" %-16u %lu\n",
section->sh_info,
(unsigned long) section->sh_addralign);
}
else
{
putchar (' ');
print_vma (section->sh_addr, LONG_HEX);
if ((long) section->sh_offset == section->sh_offset)
printf (" %8.8lx", (unsigned long) section->sh_offset);
else
{
printf (" ");
print_vma (section->sh_offset, LONG_HEX);
}
printf ("\n ");
print_vma (section->sh_size, LONG_HEX);
printf (" ");
print_vma (section->sh_entsize, LONG_HEX);
printf (" %3s ", get_elf_section_flags (filedata, section->sh_flags));
printf (" %2u %3u %lu\n",
section->sh_link,
section->sh_info,
(unsigned long) section->sh_addralign);
}
if (do_section_details)
{
printf (" %s\n", get_elf_section_flags (filedata, section->sh_flags));
if ((section->sh_flags & SHF_COMPRESSED) != 0)
{
/* Minimum section size is 12 bytes for 32-bit compression
header + 12 bytes for compressed data header. */
unsigned char buf[24];
assert (sizeof (buf) >= sizeof (Elf64_External_Chdr));
if (get_data (&buf, filedata, section->sh_offset, 1,
sizeof (buf), _("compression header")))
{
Elf_Internal_Chdr chdr;
if (get_compression_header (&chdr, buf, sizeof (buf)) == 0)
printf (_(" [<corrupt>]\n"));
else
{
if (chdr.ch_type == ch_compress_zlib)
printf (" ZLIB, ");
else if (chdr.ch_type == ch_compress_zstd)
printf (" ZSTD, ");
else
printf (_(" [<unknown>: 0x%x], "),
chdr.ch_type);
print_vma (chdr.ch_size, LONG_HEX);
printf (", %lu\n", (unsigned long) chdr.ch_addralign);
}
}
}
}
}
if (!do_section_details)
{
/* The ordering of the letters shown here matches the ordering of the
corresponding SHF_xxx values, and hence the order in which these
letters will be displayed to the user. */
printf (_("Key to Flags:\n\
W (write), A (alloc), X (execute), M (merge), S (strings), I (info),\n\
L (link order), O (extra OS processing required), G (group), T (TLS),\n\
C (compressed), x (unknown), o (OS specific), E (exclude),\n "));
switch (filedata->file_header.e_ident[EI_OSABI])
{
case ELFOSABI_GNU:
case ELFOSABI_FREEBSD:
printf (_("R (retain), "));
/* Fall through */
case ELFOSABI_NONE:
printf (_("D (mbind), "));
break;
default:
break;
}
if (filedata->file_header.e_machine == EM_X86_64
|| filedata->file_header.e_machine == EM_L1OM
|| filedata->file_header.e_machine == EM_K1OM)
printf (_("l (large), "));
else if (filedata->file_header.e_machine == EM_ARM)
printf (_("y (purecode), "));
else if (filedata->file_header.e_machine == EM_PPC)
printf (_("v (VLE), "));
printf ("p (processor specific)\n");
}
return true;
}
static bool
get_symtab (Filedata * filedata,
Elf_Internal_Shdr * symsec,
Elf_Internal_Sym ** symtab,
uint64_t * nsyms,
char ** strtab,
uint64_t * strtablen)
{
*strtab = NULL;
*strtablen = 0;
*symtab = get_elf_symbols (filedata, symsec, nsyms);
if (*symtab == NULL)
return false;
if (symsec->sh_link != 0)
{
Elf_Internal_Shdr *strsec;
if (symsec->sh_link >= filedata->file_header.e_shnum)
{
error (_("Bad sh_link in symbol table section\n"));
free (*symtab);
*symtab = NULL;
*nsyms = 0;
return false;
}
strsec = filedata->section_headers + symsec->sh_link;
*strtab = (char *) get_data (NULL, filedata, strsec->sh_offset,
1, strsec->sh_size, _("string table"));
if (*strtab == NULL)
{
free (*symtab);
*symtab = NULL;
*nsyms = 0;
return false;
}
*strtablen = strsec->sh_size;
}
return true;
}
static const char *
get_group_flags (unsigned int flags)
{
static char buff[128];
if (flags == 0)
return "";
else if (flags == GRP_COMDAT)
return "COMDAT ";
snprintf (buff, sizeof buff, "[0x%x: %s%s%s]",
flags,
flags & GRP_MASKOS ? _("<OS specific>") : "",
flags & GRP_MASKPROC ? _("<PROC specific>") : "",
(flags & ~(GRP_COMDAT | GRP_MASKOS | GRP_MASKPROC)
? _("<unknown>") : ""));
return buff;
}
static bool
process_section_groups (Filedata * filedata)
{
Elf_Internal_Shdr * section;
unsigned int i;
struct group * group;
Elf_Internal_Shdr * symtab_sec;
Elf_Internal_Shdr * strtab_sec;
Elf_Internal_Sym * symtab;
uint64_t num_syms;
char * strtab;
size_t strtab_size;
/* Don't process section groups unless needed. */
if (!do_unwind && !do_section_groups)
return true;
if (filedata->file_header.e_shnum == 0)
{
if (do_section_groups)
{
if (filedata->is_separate)
printf (_("\nThere are no sections group in linked file '%s'.\n"),
printable_string (filedata->file_name, 0));
else
printf (_("\nThere are no section groups in this file.\n"));
}
return true;
}
if (filedata->section_headers == NULL)
{
error (_("Section headers are not available!\n"));
/* PR 13622: This can happen with a corrupt ELF header. */
return false;
}
filedata->section_headers_groups
= (struct group **) calloc (filedata->file_header.e_shnum,
sizeof (struct group *));
if (filedata->section_headers_groups == NULL)
{
error (_("Out of memory reading %u section group headers\n"),
filedata->file_header.e_shnum);
return false;
}
/* Scan the sections for the group section. */
filedata->group_count = 0;
for (i = 0, section = filedata->section_headers;
i < filedata->file_header.e_shnum;
i++, section++)
if (section->sh_type == SHT_GROUP)
filedata->group_count++;
if (filedata->group_count == 0)
{
if (do_section_groups)
{
if (filedata->is_separate)
printf (_("\nThere are no section groups in linked file '%s'.\n"),
printable_string (filedata->file_name, 0));
else
printf (_("\nThere are no section groups in this file.\n"));
}
return true;
}
filedata->section_groups = (struct group *) calloc (filedata->group_count,
sizeof (struct group));
if (filedata->section_groups == NULL)
{
error (_("Out of memory reading %zu groups\n"), filedata->group_count);
return false;
}
symtab_sec = NULL;
strtab_sec = NULL;
symtab = NULL;
num_syms = 0;
strtab = NULL;
strtab_size = 0;
if (filedata->is_separate)
printf (_("Section groups in linked file '%s'\n"),
printable_string (filedata->file_name, 0));
for (i = 0, section = filedata->section_headers, group = filedata->section_groups;
i < filedata->file_header.e_shnum;
i++, section++)
{
if (section->sh_type == SHT_GROUP)
{
const char * name = printable_section_name (filedata, section);
const char * group_name;
unsigned char * start;
unsigned char * indices;
unsigned int entry, j, size;
Elf_Internal_Shdr * sec;
Elf_Internal_Sym * sym;
/* Get the symbol table. */
if (section->sh_link >= filedata->file_header.e_shnum
|| ((sec = filedata->section_headers + section->sh_link)->sh_type
!= SHT_SYMTAB))
{
error (_("Bad sh_link in group section `%s'\n"), name);
continue;
}
if (symtab_sec != sec)
{
symtab_sec = sec;
free (symtab);
symtab = get_elf_symbols (filedata, symtab_sec, & num_syms);
}
if (symtab == NULL)
{
error (_("Corrupt header in group section `%s'\n"), name);
continue;
}
if (section->sh_info >= num_syms)
{
error (_("Bad sh_info in group section `%s'\n"), name);
continue;
}
sym = symtab + section->sh_info;
if (ELF_ST_TYPE (sym->st_info) == STT_SECTION)
{
if (sym->st_shndx == 0
|| sym->st_shndx >= filedata->file_header.e_shnum)
{
error (_("Bad sh_info in group section `%s'\n"), name);
continue;
}
group_name = printable_section_name (filedata,
filedata->section_headers
+ sym->st_shndx);
strtab_sec = NULL;
free (strtab);
strtab = NULL;
strtab_size = 0;
}
else
{
/* Get the string table. */
if (symtab_sec->sh_link >= filedata->file_header.e_shnum)
{
strtab_sec = NULL;
free (strtab);
strtab = NULL;
strtab_size = 0;
}
else if (strtab_sec
!= (sec = filedata->section_headers + symtab_sec->sh_link))
{
strtab_sec = sec;
free (strtab);
strtab = (char *) get_data (NULL, filedata, strtab_sec->sh_offset,
1, strtab_sec->sh_size,
_("string table"));
strtab_size = strtab != NULL ? strtab_sec->sh_size : 0;
}
group_name = sym->st_name < strtab_size
? strtab + sym->st_name : _("<corrupt>");
}
/* PR 17531: file: loop. */
if (section->sh_entsize > section->sh_size)
{
error (_("Section %s has sh_entsize (%#" PRIx64 ")"
" which is larger than its size (%#" PRIx64 ")\n"),
printable_section_name (filedata, section),
section->sh_entsize,
section->sh_size);
continue;
}
start = (unsigned char *) get_data (NULL, filedata, section->sh_offset,
1, section->sh_size,
_("section data"));
if (start == NULL)
continue;
indices = start;
size = (section->sh_size / section->sh_entsize) - 1;
entry = byte_get (indices, 4);
indices += 4;
if (do_section_groups)
{
printf (_("\n%sgroup section [%5u] `%s' [%s] contains %u sections:\n"),
get_group_flags (entry), i, name, group_name, size);
printf (_(" [Index] Name\n"));
}
group->group_index = i;
for (j = 0; j < size; j++)
{
struct group_list * g;
entry = byte_get (indices, 4);
indices += 4;
if (entry >= filedata->file_header.e_shnum)
{
static unsigned num_group_errors = 0;
if (num_group_errors ++ < 10)
{
error (_("section [%5u] in group section [%5u] > maximum section [%5u]\n"),
entry, i, filedata->file_header.e_shnum - 1);
if (num_group_errors == 10)
warn (_("Further error messages about overlarge group section indices suppressed\n"));
}
continue;
}
if (filedata->section_headers_groups [entry] != NULL)
{
if (entry)
{
static unsigned num_errs = 0;
if (num_errs ++ < 10)
{
error (_("section [%5u] in group section [%5u] already in group section [%5u]\n"),
entry, i,
filedata->section_headers_groups [entry]->group_index);
if (num_errs == 10)
warn (_("Further error messages about already contained group sections suppressed\n"));
}
continue;
}
else
{
/* Intel C/C++ compiler may put section 0 in a
section group. We just warn it the first time
and ignore it afterwards. */
static bool warned = false;
if (!warned)
{
error (_("section 0 in group section [%5u]\n"),
filedata->section_headers_groups [entry]->group_index);
warned = true;
}
}
}
filedata->section_headers_groups [entry] = group;
if (do_section_groups)
{
sec = filedata->section_headers + entry;
printf (" [%5u] %s\n", entry, printable_section_name (filedata, sec));
}
g = (struct group_list *) xmalloc (sizeof (struct group_list));
g->section_index = entry;
g->next = group->root;
group->root = g;
}
free (start);
group++;
}
}
free (symtab);
free (strtab);
return true;
}
/* Data used to display dynamic fixups. */
struct ia64_vms_dynfixup
{
uint64_t needed_ident; /* Library ident number. */
uint64_t needed; /* Index in the dstrtab of the library name. */
uint64_t fixup_needed; /* Index of the library. */
uint64_t fixup_rela_cnt; /* Number of fixups. */
uint64_t fixup_rela_off; /* Fixups offset in the dynamic segment. */
};
/* Data used to display dynamic relocations. */
struct ia64_vms_dynimgrela
{
uint64_t img_rela_cnt; /* Number of relocations. */
uint64_t img_rela_off; /* Reloc offset in the dynamic segment. */
};
/* Display IA-64 OpenVMS dynamic fixups (used to dynamically link a shared
library). */
static bool
dump_ia64_vms_dynamic_fixups (Filedata * filedata,
struct ia64_vms_dynfixup * fixup,
const char * strtab,
unsigned int strtab_sz)
{
Elf64_External_VMS_IMAGE_FIXUP * imfs;
size_t i;
const char * lib_name;
imfs = get_data (NULL, filedata,
filedata->dynamic_addr + fixup->fixup_rela_off,
sizeof (*imfs), fixup->fixup_rela_cnt,
_("dynamic section image fixups"));
if (!imfs)
return false;
if (fixup->needed < strtab_sz)
lib_name = strtab + fixup->needed;
else
{
warn (_("corrupt library name index of %#" PRIx64
" found in dynamic entry"), fixup->needed);
lib_name = "???";
}
printf (_("\nImage fixups for needed library #%" PRId64
": %s - ident: %" PRIx64 "\n"),
fixup->fixup_needed, lib_name, fixup->needed_ident);
printf
(_("Seg Offset Type SymVec DataType\n"));
for (i = 0; i < (size_t) fixup->fixup_rela_cnt; i++)
{
unsigned int type;
const char *rtype;
printf ("%3u ", (unsigned) BYTE_GET (imfs [i].fixup_seg));
printf ("%016" PRIx64 " ", BYTE_GET (imfs [i].fixup_offset));
type = BYTE_GET (imfs [i].type);
rtype = elf_ia64_reloc_type (type);
if (rtype == NULL)
printf ("0x%08x ", type);
else
printf ("%-32s ", rtype);
printf ("%6u ", (unsigned) BYTE_GET (imfs [i].symvec_index));
printf ("0x%08x\n", (unsigned) BYTE_GET (imfs [i].data_type));
}
free (imfs);
return true;
}
/* Display IA-64 OpenVMS dynamic relocations (used to relocate an image). */
static bool
dump_ia64_vms_dynamic_relocs (Filedata * filedata, struct ia64_vms_dynimgrela *imgrela)
{
Elf64_External_VMS_IMAGE_RELA *imrs;
size_t i;
imrs = get_data (NULL, filedata,
filedata->dynamic_addr + imgrela->img_rela_off,
sizeof (*imrs), imgrela->img_rela_cnt,
_("dynamic section image relocations"));
if (!imrs)
return false;
printf (_("\nImage relocs\n"));
printf
(_("Seg Offset Type Addend Seg Sym Off\n"));
for (i = 0; i < (size_t) imgrela->img_rela_cnt; i++)
{
unsigned int type;
const char *rtype;
printf ("%3u ", (unsigned) BYTE_GET (imrs [i].rela_seg));
printf ("%08" PRIx64 " ", BYTE_GET (imrs [i].rela_offset));
type = BYTE_GET (imrs [i].type);
rtype = elf_ia64_reloc_type (type);
if (rtype == NULL)
printf ("0x%08x ", type);
else
printf ("%-31s ", rtype);
print_vma (BYTE_GET (imrs [i].addend), FULL_HEX);
printf ("%3u ", (unsigned) BYTE_GET (imrs [i].sym_seg));
printf ("%08" PRIx64 "\n", BYTE_GET (imrs [i].sym_offset));
}
free (imrs);
return true;
}
/* Display IA-64 OpenVMS dynamic relocations and fixups. */
static bool
process_ia64_vms_dynamic_relocs (Filedata * filedata)
{
struct ia64_vms_dynfixup fixup;
struct ia64_vms_dynimgrela imgrela;
Elf_Internal_Dyn *entry;
uint64_t strtab_off = 0;
uint64_t strtab_sz = 0;
char *strtab = NULL;
bool res = true;
memset (&fixup, 0, sizeof (fixup));
memset (&imgrela, 0, sizeof (imgrela));
/* Note: the order of the entries is specified by the OpenVMS specs. */
for (entry = filedata->dynamic_section;
entry < filedata->dynamic_section + filedata->dynamic_nent;
entry++)
{
switch (entry->d_tag)
{
case DT_IA_64_VMS_STRTAB_OFFSET:
strtab_off = entry->d_un.d_val;
break;
case DT_STRSZ:
strtab_sz = entry->d_un.d_val;
if (strtab == NULL)
strtab = get_data (NULL, filedata,
filedata->dynamic_addr + strtab_off,
1, strtab_sz, _("dynamic string section"));
if (strtab == NULL)
strtab_sz = 0;
break;
case DT_IA_64_VMS_NEEDED_IDENT:
fixup.needed_ident = entry->d_un.d_val;
break;
case DT_NEEDED:
fixup.needed = entry->d_un.d_val;
break;
case DT_IA_64_VMS_FIXUP_NEEDED:
fixup.fixup_needed = entry->d_un.d_val;
break;
case DT_IA_64_VMS_FIXUP_RELA_CNT:
fixup.fixup_rela_cnt = entry->d_un.d_val;
break;
case DT_IA_64_VMS_FIXUP_RELA_OFF:
fixup.fixup_rela_off = entry->d_un.d_val;
if (! dump_ia64_vms_dynamic_fixups (filedata, &fixup, strtab, strtab_sz))
res = false;
break;
case DT_IA_64_VMS_IMG_RELA_CNT:
imgrela.img_rela_cnt = entry->d_un.d_val;
break;
case DT_IA_64_VMS_IMG_RELA_OFF:
imgrela.img_rela_off = entry->d_un.d_val;
if (! dump_ia64_vms_dynamic_relocs (filedata, &imgrela))
res = false;
break;
default:
break;
}
}
free (strtab);
return res;
}
static struct
{
const char * name;
int reloc;
int size;
relocation_type rel_type;
}
dynamic_relocations [] =
{
{ "REL", DT_REL, DT_RELSZ, reltype_rel },
{ "RELA", DT_RELA, DT_RELASZ, reltype_rela },
{ "RELR", DT_RELR, DT_RELRSZ, reltype_relr },
{ "PLT", DT_JMPREL, DT_PLTRELSZ, reltype_unknown }
};
static relocation_type
rel_type_from_sh_type (unsigned int sh_type)
{
switch (sh_type)
{
case SHT_RELA: return reltype_rela;
case SHT_REL: return reltype_rel;
case SHT_RELR: return reltype_relr;
default: return reltype_unknown;
}
}
static bool
display_relocations (Elf_Internal_Shdr * section,
Filedata * filedata)
{
relocation_type rel_type = rel_type_from_sh_type (section->sh_type);
if (rel_type == reltype_unknown)
return false;
uint64_t rel_size = section->sh_size;
if (rel_size == 0)
return false;
if (filedata->is_separate)
printf (_("\nIn linked file '%s' relocation section "),
printable_string (filedata->file_name, 0));
else
printf (_("\nRelocation section "));
if (filedata->string_table == NULL)
printf ("%d", section->sh_name);
else
printf ("'%s'", printable_section_name (filedata, section));
uint64_t num_rela = rel_size / section->sh_entsize;
uint64_t rel_offset = section->sh_offset;
if (rel_type == reltype_relr)
{
/* Just stating the 'number of entries' in a RELR section can be
misleading, since this is not the number of locations relocated, but
the number of words in the compressed RELR format. So also provide
the number of locations affected. */
uint64_t num_reloc = count_relr_relocations (filedata, section);
printf (_(" at offset %#" PRIx64), rel_offset);
printf (ngettext (" contains %" PRIu64 " entry which relocates",
" contains %" PRIu64 " entries which relocate",
num_rela), num_rela);
printf (ngettext (" %" PRIu64 " location:\n",
" %" PRIu64 " locations:\n",
num_reloc), num_reloc);
}
else
{
printf (ngettext (" at offset %#" PRIx64
" contains %" PRIu64 " entry:\n",
" at offset %#" PRIx64
" contains %" PRIu64 " entries:\n",
num_rela),
rel_offset, num_rela);
}
Elf_Internal_Shdr * symsec;
Elf_Internal_Sym * symtab = NULL;
uint64_t nsyms = 0;
uint64_t strtablen = 0;
char * strtab = NULL;
if (section->sh_link == 0
|| section->sh_link >= filedata->file_header.e_shnum)
{
/* Symbol data not available.
This can happen, especially with RELR relocs.
See if there is a .symtab section present.
If so then use it. */
symsec = find_section_by_name (filedata, ".symtab");
}
else
{
symsec = filedata->section_headers + section->sh_link;
if (symsec->sh_type != SHT_SYMTAB
&& symsec->sh_type != SHT_DYNSYM)
return false;
}
if (symsec != NULL
&& !get_symtab (filedata, symsec, &symtab, &nsyms, &strtab, &strtablen))
return false;
bool res;
if (rel_type == reltype_relr)
res = dump_relr_relocations (filedata, section, symtab, nsyms, strtab, strtablen);
else
res = dump_relocations (filedata, rel_offset, rel_size,
symtab, nsyms, strtab, strtablen,
rel_type,
symsec == NULL ? false : symsec->sh_type == SHT_DYNSYM);
free (strtab);
free (symtab);
return res;
}
/* Process the reloc section. */
static bool
process_relocs (Filedata * filedata)
{
uint64_t rel_size;
uint64_t rel_offset;
if (!do_reloc)
return true;
if (do_using_dynamic)
{
relocation_type rel_type;
const char * name;
bool has_dynamic_reloc;
unsigned int i;
has_dynamic_reloc = false;
for (i = 0; i < ARRAY_SIZE (dynamic_relocations); i++)
{
rel_type = dynamic_relocations [i].rel_type;
name = dynamic_relocations [i].name;
rel_size = filedata->dynamic_info[dynamic_relocations [i].size];
rel_offset = filedata->dynamic_info[dynamic_relocations [i].reloc];
if (rel_size)
has_dynamic_reloc = true;
if (rel_type == reltype_unknown)
{
if (dynamic_relocations [i].reloc == DT_JMPREL)
switch (filedata->dynamic_info[DT_PLTREL])
{
case DT_REL:
rel_type = reltype_rel;
break;
case DT_RELA:
rel_type = reltype_rela;
break;
}
}
if (rel_size)
{
if (filedata->is_separate)
printf
(_("\nIn linked file '%s' section '%s' at offset %#" PRIx64
" contains %" PRId64 " bytes:\n"),
filedata->file_name, name, rel_offset, rel_size);
else
printf
(_("\n'%s' relocation section at offset %#" PRIx64
" contains %" PRId64 " bytes:\n"),
name, rel_offset, rel_size);
dump_relocations (filedata,
offset_from_vma (filedata, rel_offset, rel_size),
rel_size,
filedata->dynamic_symbols,
filedata->num_dynamic_syms,
filedata->dynamic_strings,
filedata->dynamic_strings_length,
rel_type, true /* is_dynamic */);
}
}
if (is_ia64_vms (filedata))
if (process_ia64_vms_dynamic_relocs (filedata))
has_dynamic_reloc = true;
if (! has_dynamic_reloc)
{
if (filedata->is_separate)
printf (_("\nThere are no dynamic relocations in linked file '%s'.\n"),
filedata->file_name);
else
printf (_("\nThere are no dynamic relocations in this file.\n"));
}
}
else
{
Elf_Internal_Shdr * section;
size_t i;
bool found = false;
for (i = 0, section = filedata->section_headers;
i < filedata->file_header.e_shnum;
i++, section++)
{
if (display_relocations (section, filedata))
found = true;
}
if (! found)
{
/* Users sometimes forget the -D option, so try to be helpful. */
for (i = 0; i < ARRAY_SIZE (dynamic_relocations); i++)
{
if (filedata->dynamic_info[dynamic_relocations [i].size])
{
if (filedata->is_separate)
printf (_("\nThere are no static relocations in linked file '%s'."),
filedata->file_name);
else
printf (_("\nThere are no static relocations in this file."));
printf (_("\nTo see the dynamic relocations add --use-dynamic to the command line.\n"));
break;
}
}
if (i == ARRAY_SIZE (dynamic_relocations))
{
if (filedata->is_separate)
printf (_("\nThere are no relocations in linked file '%s'.\n"),
filedata->file_name);
else
printf (_("\nThere are no relocations in this file.\n"));
}
}
}
return true;
}
/* An absolute address consists of a section and an offset. If the
section is NULL, the offset itself is the address, otherwise, the
address equals to LOAD_ADDRESS(section) + offset. */
struct absaddr
{
unsigned short section;
uint64_t offset;
};
/* Find the nearest symbol at or below ADDR. Returns the symbol
name, if found, and the offset from the symbol to ADDR. */
static void
find_symbol_for_address (Filedata *filedata,
Elf_Internal_Sym *symtab,
uint64_t nsyms,
const char *strtab,
uint64_t strtab_size,
struct absaddr addr,
const char **symname,
uint64_t *offset)
{
uint64_t dist = 0x100000;
Elf_Internal_Sym * sym;
Elf_Internal_Sym * beg;
Elf_Internal_Sym * end;
Elf_Internal_Sym * best = NULL;
REMOVE_ARCH_BITS (addr.offset);
beg = symtab;
end = symtab + nsyms;
while (beg < end)
{
uint64_t value;
sym = beg + (end - beg) / 2;
value = sym->st_value;
REMOVE_ARCH_BITS (value);
if (sym->st_name != 0
&& (addr.section == SHN_UNDEF || addr.section == sym->st_shndx)
&& addr.offset >= value
&& addr.offset - value < dist)
{
best = sym;
dist = addr.offset - value;
if (!dist)
break;
}
if (addr.offset < value)
end = sym;
else
beg = sym + 1;
}
if (best)
{
*symname = (best->st_name >= strtab_size
? _("<corrupt>") : strtab + best->st_name);
*offset = dist;
return;
}
*symname = NULL;
*offset = addr.offset;
}
/* Process the unwind section. */
#include "unwind-ia64.h"
struct ia64_unw_table_entry
{
struct absaddr start;
struct absaddr end;
struct absaddr info;
};
struct ia64_unw_aux_info
{
struct ia64_unw_table_entry * table; /* Unwind table. */
uint64_t table_len; /* Length of unwind table. */
unsigned char * info; /* Unwind info. */
uint64_t info_size; /* Size of unwind info. */
uint64_t info_addr; /* Starting address of unwind info. */
uint64_t seg_base; /* Starting address of segment. */
Elf_Internal_Sym * symtab; /* The symbol table. */
uint64_t nsyms; /* Number of symbols. */
Elf_Internal_Sym * funtab; /* Sorted table of STT_FUNC symbols. */
uint64_t nfuns; /* Number of entries in funtab. */
char * strtab; /* The string table. */
uint64_t strtab_size; /* Size of string table. */
};
static bool
dump_ia64_unwind (Filedata * filedata, struct ia64_unw_aux_info * aux)
{
struct ia64_unw_table_entry * tp;
size_t j, nfuns;
int in_body;
bool res = true;
aux->funtab = xmalloc (aux->nsyms * sizeof (Elf_Internal_Sym));
for (nfuns = 0, j = 0; j < aux->nsyms; j++)
if (aux->symtab[j].st_value && ELF_ST_TYPE (aux->symtab[j].st_info) == STT_FUNC)
aux->funtab[nfuns++] = aux->symtab[j];
aux->nfuns = nfuns;
qsort (aux->funtab, aux->nfuns, sizeof (Elf_Internal_Sym), symcmp);
for (tp = aux->table; tp < aux->table + aux->table_len; ++tp)
{
uint64_t stamp;
uint64_t offset;
const unsigned char * dp;
const unsigned char * head;
const unsigned char * end;
const char * procname;
find_symbol_for_address (filedata, aux->funtab, aux->nfuns, aux->strtab,
aux->strtab_size, tp->start, &procname, &offset);
fputs ("\n<", stdout);
if (procname)
{
fputs (procname, stdout);
if (offset)
printf ("+%" PRIx64, offset);
}
fputs (">: [", stdout);
print_vma (tp->start.offset, PREFIX_HEX);
fputc ('-', stdout);
print_vma (tp->end.offset, PREFIX_HEX);
printf ("], info at +0x%" PRIx64 "\n",
tp->info.offset - aux->seg_base);
/* PR 17531: file: 86232b32. */
if (aux->info == NULL)
continue;
offset = tp->info.offset;
if (tp->info.section)
{
if (tp->info.section >= filedata->file_header.e_shnum)
{
warn (_("Invalid section %u in table entry %td\n"),
tp->info.section, tp - aux->table);
res = false;
continue;
}
offset += filedata->section_headers[tp->info.section].sh_addr;
}
offset -= aux->info_addr;
/* PR 17531: file: 0997b4d1. */
if (offset >= aux->info_size
|| aux->info_size - offset < 8)
{
warn (_("Invalid offset %" PRIx64 " in table entry %td\n"),
tp->info.offset, tp - aux->table);
res = false;
continue;
}
head = aux->info + offset;
stamp = byte_get ((unsigned char *) head, sizeof (stamp));
printf (" v%u, flags=0x%lx (%s%s), len=%lu bytes\n",
(unsigned) UNW_VER (stamp),
(unsigned long) ((stamp & UNW_FLAG_MASK) >> 32),
UNW_FLAG_EHANDLER (stamp) ? " ehandler" : "",
UNW_FLAG_UHANDLER (stamp) ? " uhandler" : "",
(unsigned long) (eh_addr_size * UNW_LENGTH (stamp)));
if (UNW_VER (stamp) != 1)
{
printf (_("\tUnknown version.\n"));
continue;
}
in_body = 0;
end = head + 8 + eh_addr_size * UNW_LENGTH (stamp);
/* PR 17531: file: 16ceda89. */
if (end > aux->info + aux->info_size)
end = aux->info + aux->info_size;
for (dp = head + 8; dp < end;)
dp = unw_decode (dp, in_body, & in_body, end);
}
free (aux->funtab);
return res;
}
static bool
slurp_ia64_unwind_table (Filedata * filedata,
struct ia64_unw_aux_info * aux,
Elf_Internal_Shdr * sec)
{
uint64_t size, nrelas, i;
Elf_Internal_Phdr * seg;
struct ia64_unw_table_entry * tep;
Elf_Internal_Shdr * relsec;
Elf_Internal_Rela * rela;
Elf_Internal_Rela * rp;
unsigned char * table;
unsigned char * tp;
Elf_Internal_Sym * sym;
const char * relname;
aux->table_len = 0;
/* First, find the starting address of the segment that includes
this section: */
if (filedata->file_header.e_phnum)
{
if (! get_program_headers (filedata))
return false;
for (seg = filedata->program_headers;
seg < filedata->program_headers + filedata->file_header.e_phnum;
++seg)
{
if (seg->p_type != PT_LOAD)
continue;
if (sec->sh_addr >= seg->p_vaddr
&& (sec->sh_addr + sec->sh_size <= seg->p_vaddr + seg->p_memsz))
{
aux->seg_base = seg->p_vaddr;
break;
}
}
}
/* Second, build the unwind table from the contents of the unwind section: */
size = sec->sh_size;
table = (unsigned char *) get_data (NULL, filedata, sec->sh_offset, 1, size,
_("unwind table"));
if (!table)
return false;
aux->table_len = size / (3 * eh_addr_size);
aux->table = (struct ia64_unw_table_entry *)
xcmalloc (aux->table_len, sizeof (aux->table[0]));
tep = aux->table;
for (tp = table; tp <= table + size - (3 * eh_addr_size); ++tep)
{
tep->start.section = SHN_UNDEF;
tep->end.section = SHN_UNDEF;
tep->info.section = SHN_UNDEF;
tep->start.offset = byte_get (tp, eh_addr_size); tp += eh_addr_size;
tep->end.offset = byte_get (tp, eh_addr_size); tp += eh_addr_size;
tep->info.offset = byte_get (tp, eh_addr_size); tp += eh_addr_size;
tep->start.offset += aux->seg_base;
tep->end.offset += aux->seg_base;
tep->info.offset += aux->seg_base;
}
free (table);
/* Third, apply any relocations to the unwind table: */
for (relsec = filedata->section_headers;
relsec < filedata->section_headers + filedata->file_header.e_shnum;
++relsec)
{
if (relsec->sh_type != SHT_RELA
|| relsec->sh_info >= filedata->file_header.e_shnum
|| filedata->section_headers + relsec->sh_info != sec)
continue;
if (!slurp_rela_relocs (filedata, relsec->sh_offset, relsec->sh_size,
& rela, & nrelas))
{
free (aux->table);
aux->table = NULL;
aux->table_len = 0;
return false;
}
for (rp = rela; rp < rela + nrelas; ++rp)
{
unsigned int sym_ndx;
unsigned int r_type = get_reloc_type (filedata, rp->r_info);
relname = elf_ia64_reloc_type (r_type);
/* PR 17531: file: 9fa67536. */
if (relname == NULL)
{
warn (_("Skipping unknown relocation type: %u\n"), r_type);
continue;
}
if (! startswith (relname, "R_IA64_SEGREL"))
{
warn (_("Skipping unexpected relocation type: %s\n"), relname);
continue;
}
i = rp->r_offset / (3 * eh_addr_size);
/* PR 17531: file: 5bc8d9bf. */
if (i >= aux->table_len)
{
warn (_("Skipping reloc with overlarge offset: %#" PRIx64 "\n"),
i);
continue;
}
sym_ndx = get_reloc_symindex (rp->r_info);
if (sym_ndx >= aux->nsyms)
{
warn (_("Skipping reloc with invalid symbol index: %u\n"),
sym_ndx);
continue;
}
sym = aux->symtab + sym_ndx;
switch (rp->r_offset / eh_addr_size % 3)
{
case 0:
aux->table[i].start.section = sym->st_shndx;
aux->table[i].start.offset = rp->r_addend + sym->st_value;
break;
case 1:
aux->table[i].end.section = sym->st_shndx;
aux->table[i].end.offset = rp->r_addend + sym->st_value;
break;
case 2:
aux->table[i].info.section = sym->st_shndx;
aux->table[i].info.offset = rp->r_addend + sym->st_value;
break;
default:
break;
}
}
free (rela);
}
return true;
}
static bool
ia64_process_unwind (Filedata * filedata)
{
Elf_Internal_Shdr * sec;
Elf_Internal_Shdr * unwsec = NULL;
uint64_t i, unwcount = 0, unwstart = 0;
struct ia64_unw_aux_info aux;
bool res = true;
memset (& aux, 0, sizeof (aux));
for (i = 0, sec = filedata->section_headers; i < filedata->file_header.e_shnum; ++i, ++sec)
{
if (sec->sh_type == SHT_SYMTAB)
{
if (aux.symtab)
{
error (_("Multiple symbol tables encountered\n"));
free (aux.symtab);
aux.symtab = NULL;
free (aux.strtab);
aux.strtab = NULL;
}
if (!get_symtab (filedata, sec, &aux.symtab, &aux.nsyms,
&aux.strtab, &aux.strtab_size))
return false;
}
else if (sec->sh_type == SHT_IA_64_UNWIND)
unwcount++;
}
if (!unwcount)
printf (_("\nThere are no unwind sections in this file.\n"));
while (unwcount-- > 0)
{
const char *suffix;
size_t len, len2;
for (i = unwstart, sec = filedata->section_headers + unwstart, unwsec = NULL;
i < filedata->file_header.e_shnum; ++i, ++sec)
if (sec->sh_type == SHT_IA_64_UNWIND)
{
unwsec = sec;
break;
}
/* We have already counted the number of SHT_IA64_UNWIND
sections so the loop above should never fail. */
assert (unwsec != NULL);
unwstart = i + 1;
len = sizeof (ELF_STRING_ia64_unwind_once) - 1;
if ((unwsec->sh_flags & SHF_GROUP) != 0)
{
/* We need to find which section group it is in. */
struct group_list * g;
if (filedata->section_headers_groups == NULL
|| filedata->section_headers_groups[i] == NULL)
i = filedata->file_header.e_shnum;
else
{
g = filedata->section_headers_groups[i]->root;
for (; g != NULL; g = g->next)
{
sec = filedata->section_headers + g->section_index;
if (section_name_valid (filedata, sec)
&& streq (section_name (filedata, sec),
ELF_STRING_ia64_unwind_info))
break;
}
if (g == NULL)
i = filedata->file_header.e_shnum;
}
}
else if (section_name_valid (filedata, unwsec)
&& startswith (section_name (filedata, unwsec),
ELF_STRING_ia64_unwind_once))
{
/* .gnu.linkonce.ia64unw.FOO -> .gnu.linkonce.ia64unwi.FOO. */
len2 = sizeof (ELF_STRING_ia64_unwind_info_once) - 1;
suffix = section_name (filedata, unwsec) + len;
for (i = 0, sec = filedata->section_headers;
i < filedata->file_header.e_shnum;
++i, ++sec)
if (section_name_valid (filedata, sec)
&& startswith (section_name (filedata, sec),
ELF_STRING_ia64_unwind_info_once)
&& streq (section_name (filedata, sec) + len2, suffix))
break;
}
else
{
/* .IA_64.unwindFOO -> .IA_64.unwind_infoFOO
.IA_64.unwind or BAR -> .IA_64.unwind_info. */
len = sizeof (ELF_STRING_ia64_unwind) - 1;
len2 = sizeof (ELF_STRING_ia64_unwind_info) - 1;
suffix = "";
if (section_name_valid (filedata, unwsec)
&& startswith (section_name (filedata, unwsec),
ELF_STRING_ia64_unwind))
suffix = section_name (filedata, unwsec) + len;
for (i = 0, sec = filedata->section_headers;
i < filedata->file_header.e_shnum;
++i, ++sec)
if (section_name_valid (filedata, sec)
&& startswith (section_name (filedata, sec),
ELF_STRING_ia64_unwind_info)
&& streq (section_name (filedata, sec) + len2, suffix))
break;
}
if (i == filedata->file_header.e_shnum)
{
printf (_("\nCould not find unwind info section for "));
if (filedata->string_table == NULL)
printf ("%d", unwsec->sh_name);
else
printf ("'%s'", printable_section_name (filedata, unwsec));
}
else
{
aux.info_addr = sec->sh_addr;
aux.info = (unsigned char *) get_data (NULL, filedata, sec->sh_offset, 1,
sec->sh_size,
_("unwind info"));
aux.info_size = aux.info == NULL ? 0 : sec->sh_size;
printf (_("\nUnwind section "));
if (filedata->string_table == NULL)
printf ("%d", unwsec->sh_name);
else
printf ("'%s'", printable_section_name (filedata, unwsec));
printf (_(" at offset %#" PRIx64 " contains %" PRIu64 " entries:\n"),
unwsec->sh_offset,
unwsec->sh_size / (3 * eh_addr_size));
if (slurp_ia64_unwind_table (filedata, & aux, unwsec)
&& aux.table_len > 0)
dump_ia64_unwind (filedata, & aux);
free ((char *) aux.table);
free ((char *) aux.info);
aux.table = NULL;
aux.info = NULL;
}
}
free (aux.symtab);
free ((char *) aux.strtab);
return res;
}
struct hppa_unw_table_entry
{
struct absaddr start;
struct absaddr end;
unsigned int Cannot_unwind:1; /* 0 */
unsigned int Millicode:1; /* 1 */
unsigned int Millicode_save_sr0:1; /* 2 */
unsigned int Region_description:2; /* 3..4 */
unsigned int reserved1:1; /* 5 */
unsigned int Entry_SR:1; /* 6 */
unsigned int Entry_FR:4; /* Number saved 7..10 */
unsigned int Entry_GR:5; /* Number saved 11..15 */
unsigned int Args_stored:1; /* 16 */
unsigned int Variable_Frame:1; /* 17 */
unsigned int Separate_Package_Body:1; /* 18 */
unsigned int Frame_Extension_Millicode:1; /* 19 */
unsigned int Stack_Overflow_Check:1; /* 20 */
unsigned int Two_Instruction_SP_Increment:1; /* 21 */
unsigned int Ada_Region:1; /* 22 */
unsigned int cxx_info:1; /* 23 */
unsigned int cxx_try_catch:1; /* 24 */
unsigned int sched_entry_seq:1; /* 25 */
unsigned int reserved2:1; /* 26 */
unsigned int Save_SP:1; /* 27 */
unsigned int Save_RP:1; /* 28 */
unsigned int Save_MRP_in_frame:1; /* 29 */
unsigned int extn_ptr_defined:1; /* 30 */
unsigned int Cleanup_defined:1; /* 31 */
unsigned int MPE_XL_interrupt_marker:1; /* 0 */
unsigned int HP_UX_interrupt_marker:1; /* 1 */
unsigned int Large_frame:1; /* 2 */
unsigned int Pseudo_SP_Set:1; /* 3 */
unsigned int reserved4:1; /* 4 */
unsigned int Total_frame_size:27; /* 5..31 */
};
struct hppa_unw_aux_info
{
struct hppa_unw_table_entry * table; /* Unwind table. */
uint64_t table_len; /* Length of unwind table. */
uint64_t seg_base; /* Starting address of segment. */
Elf_Internal_Sym * symtab; /* The symbol table. */
uint64_t nsyms; /* Number of symbols. */
Elf_Internal_Sym * funtab; /* Sorted table of STT_FUNC symbols. */
uint64_t nfuns; /* Number of entries in funtab. */
char * strtab; /* The string table. */
uint64_t strtab_size; /* Size of string table. */
};
static bool
dump_hppa_unwind (Filedata * filedata, struct hppa_unw_aux_info * aux)
{
struct hppa_unw_table_entry * tp;
uint64_t j, nfuns;
bool res = true;
aux->funtab = xmalloc (aux->nsyms * sizeof (Elf_Internal_Sym));
for (nfuns = 0, j = 0; j < aux->nsyms; j++)
if (aux->symtab[j].st_value && ELF_ST_TYPE (aux->symtab[j].st_info) == STT_FUNC)
aux->funtab[nfuns++] = aux->symtab[j];
aux->nfuns = nfuns;
qsort (aux->funtab, aux->nfuns, sizeof (Elf_Internal_Sym), symcmp);
for (tp = aux->table; tp < aux->table + aux->table_len; ++tp)
{
uint64_t offset;
const char * procname;
find_symbol_for_address (filedata, aux->funtab, aux->nfuns, aux->strtab,
aux->strtab_size, tp->start, &procname,
&offset);
fputs ("\n<", stdout);
if (procname)
{
fputs (procname, stdout);
if (offset)
printf ("+%" PRIx64, offset);
}
fputs (">: [", stdout);
print_vma (tp->start.offset, PREFIX_HEX);
fputc ('-', stdout);
print_vma (tp->end.offset, PREFIX_HEX);
printf ("]\n\t");
#define PF(_m) if (tp->_m) printf (#_m " ");
#define PV(_m) if (tp->_m) printf (#_m "=%d ", tp->_m);
PF(Cannot_unwind);
PF(Millicode);
PF(Millicode_save_sr0);
/* PV(Region_description); */
PF(Entry_SR);
PV(Entry_FR);
PV(Entry_GR);
PF(Args_stored);
PF(Variable_Frame);
PF(Separate_Package_Body);
PF(Frame_Extension_Millicode);
PF(Stack_Overflow_Check);
PF(Two_Instruction_SP_Increment);
PF(Ada_Region);
PF(cxx_info);
PF(cxx_try_catch);
PF(sched_entry_seq);
PF(Save_SP);
PF(Save_RP);
PF(Save_MRP_in_frame);
PF(extn_ptr_defined);
PF(Cleanup_defined);
PF(MPE_XL_interrupt_marker);
PF(HP_UX_interrupt_marker);
PF(Large_frame);
PF(Pseudo_SP_Set);
PV(Total_frame_size);
#undef PF
#undef PV
}
printf ("\n");
free (aux->funtab);
return res;
}
static bool
slurp_hppa_unwind_table (Filedata * filedata,
struct hppa_unw_aux_info * aux,
Elf_Internal_Shdr * sec)
{
uint64_t size, unw_ent_size, nentries, nrelas, i;
Elf_Internal_Phdr * seg;
struct hppa_unw_table_entry * tep;
Elf_Internal_Shdr * relsec;
Elf_Internal_Rela * rela;
Elf_Internal_Rela * rp;
unsigned char * table;
unsigned char * tp;
Elf_Internal_Sym * sym;
const char * relname;
/* First, find the starting address of the segment that includes
this section. */
if (filedata->file_header.e_phnum)
{
if (! get_program_headers (filedata))
return false;
for (seg = filedata->program_headers;
seg < filedata->program_headers + filedata->file_header.e_phnum;
++seg)
{
if (seg->p_type != PT_LOAD)
continue;
if (sec->sh_addr >= seg->p_vaddr
&& (sec->sh_addr + sec->sh_size <= seg->p_vaddr + seg->p_memsz))
{
aux->seg_base = seg->p_vaddr;
break;
}
}
}
/* Second, build the unwind table from the contents of the unwind
section. */
size = sec->sh_size;
table = (unsigned char *) get_data (NULL, filedata, sec->sh_offset, 1, size,
_("unwind table"));
if (!table)
return false;
unw_ent_size = 16;
nentries = size / unw_ent_size;
size = unw_ent_size * nentries;
aux->table_len = nentries;
tep = aux->table = (struct hppa_unw_table_entry *)
xcmalloc (nentries, sizeof (aux->table[0]));
for (tp = table; tp < table + size; tp += unw_ent_size, ++tep)
{
unsigned int tmp1, tmp2;
tep->start.section = SHN_UNDEF;
tep->end.section = SHN_UNDEF;
tep->start.offset = byte_get ((unsigned char *) tp + 0, 4);
tep->end.offset = byte_get ((unsigned char *) tp + 4, 4);
tmp1 = byte_get ((unsigned char *) tp + 8, 4);
tmp2 = byte_get ((unsigned char *) tp + 12, 4);
tep->start.offset += aux->seg_base;
tep->end.offset += aux->seg_base;
tep->Cannot_unwind = (tmp1 >> 31) & 0x1;
tep->Millicode = (tmp1 >> 30) & 0x1;
tep->Millicode_save_sr0 = (tmp1 >> 29) & 0x1;
tep->Region_description = (tmp1 >> 27) & 0x3;
tep->reserved1 = (tmp1 >> 26) & 0x1;
tep->Entry_SR = (tmp1 >> 25) & 0x1;
tep->Entry_FR = (tmp1 >> 21) & 0xf;
tep->Entry_GR = (tmp1 >> 16) & 0x1f;
tep->Args_stored = (tmp1 >> 15) & 0x1;
tep->Variable_Frame = (tmp1 >> 14) & 0x1;
tep->Separate_Package_Body = (tmp1 >> 13) & 0x1;
tep->Frame_Extension_Millicode = (tmp1 >> 12) & 0x1;
tep->Stack_Overflow_Check = (tmp1 >> 11) & 0x1;
tep->Two_Instruction_SP_Increment = (tmp1 >> 10) & 0x1;
tep->Ada_Region = (tmp1 >> 9) & 0x1;
tep->cxx_info = (tmp1 >> 8) & 0x1;
tep->cxx_try_catch = (tmp1 >> 7) & 0x1;
tep->sched_entry_seq = (tmp1 >> 6) & 0x1;
tep->reserved2 = (tmp1 >> 5) & 0x1;
tep->Save_SP = (tmp1 >> 4) & 0x1;
tep->Save_RP = (tmp1 >> 3) & 0x1;
tep->Save_MRP_in_frame = (tmp1 >> 2) & 0x1;
tep->extn_ptr_defined = (tmp1 >> 1) & 0x1;
tep->Cleanup_defined = tmp1 & 0x1;
tep->MPE_XL_interrupt_marker = (tmp2 >> 31) & 0x1;
tep->HP_UX_interrupt_marker = (tmp2 >> 30) & 0x1;
tep->Large_frame = (tmp2 >> 29) & 0x1;
tep->Pseudo_SP_Set = (tmp2 >> 28) & 0x1;
tep->reserved4 = (tmp2 >> 27) & 0x1;
tep->Total_frame_size = tmp2 & 0x7ffffff;
}
free (table);
/* Third, apply any relocations to the unwind table. */
for (relsec = filedata->section_headers;
relsec < filedata->section_headers + filedata->file_header.e_shnum;
++relsec)
{
if (relsec->sh_type != SHT_RELA
|| relsec->sh_info >= filedata->file_header.e_shnum
|| filedata->section_headers + relsec->sh_info != sec)
continue;
if (!slurp_rela_relocs (filedata, relsec->sh_offset, relsec->sh_size,
& rela, & nrelas))
return false;
for (rp = rela; rp < rela + nrelas; ++rp)
{
unsigned int sym_ndx;
unsigned int r_type = get_reloc_type (filedata, rp->r_info);
relname = elf_hppa_reloc_type (r_type);
if (relname == NULL)
{
warn (_("Skipping unknown relocation type: %u\n"), r_type);
continue;
}
/* R_PARISC_SEGREL32 or R_PARISC_SEGREL64. */
if (! startswith (relname, "R_PARISC_SEGREL"))
{
warn (_("Skipping unexpected relocation type: %s\n"), relname);
continue;
}
i = rp->r_offset / unw_ent_size;
if (i >= aux->table_len)
{
warn (_("Skipping reloc with overlarge offset: %#" PRIx64 "\n"),
i);
continue;
}
sym_ndx = get_reloc_symindex (rp->r_info);
if (sym_ndx >= aux->nsyms)
{
warn (_("Skipping reloc with invalid symbol index: %u\n"),
sym_ndx);
continue;
}
sym = aux->symtab + sym_ndx;
switch ((rp->r_offset % unw_ent_size) / 4)
{
case 0:
aux->table[i].start.section = sym->st_shndx;
aux->table[i].start.offset = sym->st_value + rp->r_addend;
break;
case 1:
aux->table[i].end.section = sym->st_shndx;
aux->table[i].end.offset = sym->st_value + rp->r_addend;
break;
default:
break;
}
}
free (rela);
}
return true;
}
static bool
hppa_process_unwind (Filedata * filedata)
{
struct hppa_unw_aux_info aux;
Elf_Internal_Shdr * unwsec = NULL;
Elf_Internal_Shdr * sec;
size_t i;
bool res = true;
if (filedata->string_table == NULL)
return false;
memset (& aux, 0, sizeof (aux));
for (i = 0, sec = filedata->section_headers; i < filedata->file_header.e_shnum; ++i, ++sec)
{
if (sec->sh_type == SHT_SYMTAB)
{
if (aux.symtab)
{
error (_("Multiple symbol tables encountered\n"));
free (aux.symtab);
aux.symtab = NULL;
free (aux.strtab);
aux.strtab = NULL;
}
if (!get_symtab (filedata, sec, &aux.symtab, &aux.nsyms,
&aux.strtab, &aux.strtab_size))
return false;
}
else if (section_name_valid (filedata, sec)
&& streq (section_name (filedata, sec), ".PARISC.unwind"))
unwsec = sec;
}
if (!unwsec)
printf (_("\nThere are no unwind sections in this file.\n"));
for (i = 0, sec = filedata->section_headers; i < filedata->file_header.e_shnum; ++i, ++sec)
{
if (section_name_valid (filedata, sec)
&& streq (section_name (filedata, sec), ".PARISC.unwind"))
{
uint64_t num_unwind = sec->sh_size / 16;
printf (ngettext ("\nUnwind section '%s' at offset %#" PRIx64 " "
"contains %" PRIu64 " entry:\n",
"\nUnwind section '%s' at offset %#" PRIx64 " "
"contains %" PRIu64 " entries:\n",
num_unwind),
printable_section_name (filedata, sec),
sec->sh_offset,
num_unwind);
if (! slurp_hppa_unwind_table (filedata, &aux, sec))
res = false;
if (res && aux.table_len > 0)
{
if (! dump_hppa_unwind (filedata, &aux))
res = false;
}
free ((char *) aux.table);
aux.table = NULL;
}
}
free (aux.symtab);
free ((char *) aux.strtab);
return res;
}
struct arm_section
{
unsigned char * data; /* The unwind data. */
Elf_Internal_Shdr * sec; /* The cached unwind section header. */
Elf_Internal_Rela * rela; /* The cached relocations for this section. */
uint64_t nrelas; /* The number of relocations. */
unsigned int rel_type; /* REL or RELA ? */
Elf_Internal_Rela * next_rela; /* Cyclic pointer to the next reloc to process. */
};
struct arm_unw_aux_info
{
Filedata * filedata; /* The file containing the unwind sections. */
Elf_Internal_Sym * symtab; /* The file's symbol table. */
uint64_t nsyms; /* Number of symbols. */
Elf_Internal_Sym * funtab; /* Sorted table of STT_FUNC symbols. */
uint64_t nfuns; /* Number of these symbols. */
char * strtab; /* The file's string table. */
uint64_t strtab_size; /* Size of string table. */
};
static const char *
arm_print_vma_and_name (Filedata * filedata,
struct arm_unw_aux_info * aux,
uint64_t fn,
struct absaddr addr)
{
const char *procname;
uint64_t sym_offset;
if (addr.section == SHN_UNDEF)
addr.offset = fn;
find_symbol_for_address (filedata, aux->funtab, aux->nfuns, aux->strtab,
aux->strtab_size, addr, &procname,
&sym_offset);
print_vma (fn, PREFIX_HEX);
if (procname)
{
fputs (" <", stdout);
fputs (procname, stdout);
if (sym_offset)
printf ("+0x%" PRIx64, sym_offset);
fputc ('>', stdout);
}
return procname;
}
static void
arm_free_section (struct arm_section *arm_sec)
{
free (arm_sec->data);
free (arm_sec->rela);
}
/* 1) If SEC does not match the one cached in ARM_SEC, then free the current
cached section and install SEC instead.
2) Locate the 32-bit word at WORD_OFFSET in unwind section SEC
and return its valued in * WORDP, relocating if necessary.
3) Update the NEXT_RELA field in ARM_SEC and store the section index and
relocation's offset in ADDR.
4) If SYM_NAME is non-NULL and a relocation was applied, record the offset
into the string table of the symbol associated with the reloc. If no
reloc was applied store -1 there.
5) Return TRUE upon success, FALSE otherwise. */
static bool
get_unwind_section_word (Filedata * filedata,
struct arm_unw_aux_info * aux,
struct arm_section * arm_sec,
Elf_Internal_Shdr * sec,
uint64_t word_offset,
unsigned int * wordp,
struct absaddr * addr,
uint64_t * sym_name)
{
Elf_Internal_Rela *rp;
Elf_Internal_Sym *sym;
const char * relname;
unsigned int word;
bool wrapped;
if (sec == NULL || arm_sec == NULL)
return false;
addr->section = SHN_UNDEF;
addr->offset = 0;
if (sym_name != NULL)
*sym_name = (uint64_t) -1;
/* If necessary, update the section cache. */
if (sec != arm_sec->sec)
{
Elf_Internal_Shdr *relsec;
arm_free_section (arm_sec);
arm_sec->sec = sec;
arm_sec->data = get_data (NULL, aux->filedata, sec->sh_offset, 1,
sec->sh_size, _("unwind data"));
arm_sec->rela = NULL;
arm_sec->nrelas = 0;
for (relsec = filedata->section_headers;
relsec < filedata->section_headers + filedata->file_header.e_shnum;
++relsec)
{
if (relsec->sh_info >= filedata->file_header.e_shnum
|| filedata->section_headers + relsec->sh_info != sec
/* PR 15745: Check the section type as well. */
|| (relsec->sh_type != SHT_REL
&& relsec->sh_type != SHT_RELA))
continue;
arm_sec->rel_type = relsec->sh_type;
if (relsec->sh_type == SHT_REL)
{
if (!slurp_rel_relocs (aux->filedata, relsec->sh_offset,
relsec->sh_size,
& arm_sec->rela, & arm_sec->nrelas))
return false;
}
else /* relsec->sh_type == SHT_RELA */
{
if (!slurp_rela_relocs (aux->filedata, relsec->sh_offset,
relsec->sh_size,
& arm_sec->rela, & arm_sec->nrelas))
return false;
}
break;
}
arm_sec->next_rela = arm_sec->rela;
}
/* If there is no unwind data we can do nothing. */
if (arm_sec->data == NULL)
return false;
/* If the offset is invalid then fail. */
if (/* PR 21343 *//* PR 18879 */
sec->sh_size < 4
|| word_offset > sec->sh_size - 4)
return false;
/* Get the word at the required offset. */
word = byte_get (arm_sec->data + word_offset, 4);
/* PR 17531: file: id:000001,src:001266+003044,op:splice,rep:128. */
if (arm_sec->rela == NULL)
{
* wordp = word;
return true;
}
/* Look through the relocs to find the one that applies to the provided offset. */
wrapped = false;
for (rp = arm_sec->next_rela; rp != arm_sec->rela + arm_sec->nrelas; rp++)
{
uint64_t prelval, offset;
if (rp->r_offset > word_offset && !wrapped)
{
rp = arm_sec->rela;
wrapped = true;
}
if (rp->r_offset > word_offset)
break;
if (rp->r_offset & 3)
{
warn (_("Skipping unexpected relocation at offset %#" PRIx64 "\n"),
rp->r_offset);
continue;
}
if (rp->r_offset < word_offset)
continue;
/* PR 17531: file: 027-161405-0.004 */
if (aux->symtab == NULL)
continue;
if (arm_sec->rel_type == SHT_REL)
{
offset = word & 0x7fffffff;
if (offset & 0x40000000)
offset |= ~ (uint64_t) 0x7fffffff;
}
else if (arm_sec->rel_type == SHT_RELA)
offset = rp->r_addend;
else
{
error (_("Unknown section relocation type %d encountered\n"),
arm_sec->rel_type);
break;
}
/* PR 17531 file: 027-1241568-0.004. */
if (ELF32_R_SYM (rp->r_info) >= aux->nsyms)
{
error (_("Bad symbol index in unwind relocation "
"(%" PRIu64 " > %" PRIu64 ")\n"),
ELF32_R_SYM (rp->r_info), aux->nsyms);
break;
}
sym = aux->symtab + ELF32_R_SYM (rp->r_info);
offset += sym->st_value;
prelval = offset - (arm_sec->sec->sh_addr + rp->r_offset);
/* Check that we are processing the expected reloc type. */
if (filedata->file_header.e_machine == EM_ARM)
{
relname = elf_arm_reloc_type (ELF32_R_TYPE (rp->r_info));
if (relname == NULL)
{
warn (_("Skipping unknown ARM relocation type: %d\n"),
(int) ELF32_R_TYPE (rp->r_info));
continue;
}
if (streq (relname, "R_ARM_NONE"))
continue;
if (! streq (relname, "R_ARM_PREL31"))
{
warn (_("Skipping unexpected ARM relocation type %s\n"), relname);
continue;
}
}
else if (filedata->file_header.e_machine == EM_TI_C6000)
{
relname = elf_tic6x_reloc_type (ELF32_R_TYPE (rp->r_info));
if (relname == NULL)
{
warn (_("Skipping unknown C6000 relocation type: %d\n"),
(int) ELF32_R_TYPE (rp->r_info));
continue;
}
if (streq (relname, "R_C6000_NONE"))
continue;
if (! streq (relname, "R_C6000_PREL31"))
{
warn (_("Skipping unexpected C6000 relocation type %s\n"), relname);
continue;
}
prelval >>= 1;
}
else
{
/* This function currently only supports ARM and TI unwinders. */
warn (_("Only TI and ARM unwinders are currently supported\n"));
break;
}
word = (word & ~ (uint64_t) 0x7fffffff) | (prelval & 0x7fffffff);
addr->section = sym->st_shndx;
addr->offset = offset;
if (sym_name)
* sym_name = sym->st_name;
break;
}
*wordp = word;
arm_sec->next_rela = rp;
return true;
}
static const char *tic6x_unwind_regnames[16] =
{
"A15", "B15", "B14", "B13", "B12", "B11", "B10", "B3",
"A14", "A13", "A12", "A11", "A10",
"[invalid reg 13]", "[invalid reg 14]", "[invalid reg 15]"
};
static void
decode_tic6x_unwind_regmask (unsigned int mask)
{
int i;
for (i = 12; mask; mask >>= 1, i--)
{
if (mask & 1)
{
fputs (tic6x_unwind_regnames[i], stdout);
if (mask > 1)
fputs (", ", stdout);
}
}
}
#define ADVANCE \
if (remaining == 0 && more_words) \
{ \
data_offset += 4; \
if (! get_unwind_section_word (filedata, aux, data_arm_sec, data_sec, \
data_offset, & word, & addr, NULL)) \
return false; \
remaining = 4; \
more_words--; \
} \
#define GET_OP(OP) \
ADVANCE; \
if (remaining) \
{ \
remaining--; \
(OP) = word >> 24; \
word <<= 8; \
} \
else \
{ \
printf (_("[Truncated opcode]\n")); \
return false; \
} \
printf ("0x%02x ", OP)
static bool
decode_arm_unwind_bytecode (Filedata * filedata,
struct arm_unw_aux_info * aux,
unsigned int word,
unsigned int remaining,
unsigned int more_words,
uint64_t data_offset,
Elf_Internal_Shdr * data_sec,
struct arm_section * data_arm_sec)
{
struct absaddr addr;
bool res = true;
/* Decode the unwinding instructions. */
while (1)
{
unsigned int op, op2;
ADVANCE;
if (remaining == 0)
break;
remaining--;
op = word >> 24;
word <<= 8;
printf (" 0x%02x ", op);
if ((op & 0xc0) == 0x00)
{
int offset = ((op & 0x3f) << 2) + 4;
printf (" vsp = vsp + %d", offset);
}
else if ((op & 0xc0) == 0x40)
{
int offset = ((op & 0x3f) << 2) + 4;
printf (" vsp = vsp - %d", offset);
}
else if ((op & 0xf0) == 0x80)
{
GET_OP (op2);
if (op == 0x80 && op2 == 0)
printf (_("Refuse to unwind"));
else
{
unsigned int mask = ((op & 0x0f) << 8) | op2;
bool first = true;
int i;
printf ("pop {");
for (i = 0; i < 12; i++)
if (mask & (1 << i))
{
if (first)
first = false;
else
printf (", ");
printf ("r%d", 4 + i);
}
printf ("}");
}
}
else if ((op & 0xf0) == 0x90)
{
if (op == 0x9d || op == 0x9f)
printf (_(" [Reserved]"));
else
printf (" vsp = r%d", op & 0x0f);
}
else if ((op & 0xf0) == 0xa0)
{
int end = 4 + (op & 0x07);
bool first = true;
int i;
printf (" pop {");
for (i = 4; i <= end; i++)
{
if (first)
first = false;
else
printf (", ");
printf ("r%d", i);
}
if (op & 0x08)
{
if (!first)
printf (", ");
printf ("r14");
}
printf ("}");
}
else if (op == 0xb0)
printf (_(" finish"));
else if (op == 0xb1)
{
GET_OP (op2);
if (op2 == 0 || (op2 & 0xf0) != 0)
printf (_("[Spare]"));
else
{
unsigned int mask = op2 & 0x0f;
bool first = true;
int i;
printf ("pop {");
for (i = 0; i < 12; i++)
if (mask & (1 << i))
{
if (first)
first = false;
else
printf (", ");
printf ("r%d", i);
}
printf ("}");
}
}
else if (op == 0xb2)
{
unsigned char buf[9];
unsigned int i, len;
uint64_t offset;
for (i = 0; i < sizeof (buf); i++)
{
GET_OP (buf[i]);
if ((buf[i] & 0x80) == 0)
break;
}
if (i == sizeof (buf))
{
error (_("corrupt change to vsp\n"));
res = false;
}
else
{
offset = read_leb128 (buf, buf + i + 1, false, &len, NULL);
assert (len == i + 1);
offset = offset * 4 + 0x204;
printf ("vsp = vsp + %" PRId64, offset);
}
}
else if (op == 0xb3 || op == 0xc8 || op == 0xc9)
{
unsigned int first, last;
GET_OP (op2);
first = op2 >> 4;
last = op2 & 0x0f;
if (op == 0xc8)
first = first + 16;
printf ("pop {D%d", first);
if (last)
printf ("-D%d", first + last);
printf ("}");
}
else if (op == 0xb4)
printf (_(" pop {ra_auth_code}"));
else if (op == 0xb5)
printf (_(" vsp as modifier for PAC validation"));
else if ((op & 0xf8) == 0xb8 || (op & 0xf8) == 0xd0)
{
unsigned int count = op & 0x07;
printf ("pop {D8");
if (count)
printf ("-D%d", 8 + count);
printf ("}");
}
else if (op >= 0xc0 && op <= 0xc5)
{
unsigned int count = op & 0x07;
printf (" pop {wR10");
if (count)
printf ("-wR%d", 10 + count);
printf ("}");
}
else if (op == 0xc6)
{
unsigned int first, last;
GET_OP (op2);
first = op2 >> 4;
last = op2 & 0x0f;
printf ("pop {wR%d", first);
if (last)
printf ("-wR%d", first + last);
printf ("}");
}
else if (op == 0xc7)
{
GET_OP (op2);
if (op2 == 0 || (op2 & 0xf0) != 0)
printf (_("[Spare]"));
else
{
unsigned int mask = op2 & 0x0f;
bool first = true;
int i;
printf ("pop {");
for (i = 0; i < 4; i++)
if (mask & (1 << i))
{
if (first)
first = false;
else
printf (", ");
printf ("wCGR%d", i);
}
printf ("}");
}
}
else
{
printf (_(" [unsupported opcode]"));
res = false;
}
printf ("\n");
}
return res;
}
static bool
decode_tic6x_unwind_bytecode (Filedata * filedata,
struct arm_unw_aux_info * aux,
unsigned int word,
unsigned int remaining,
unsigned int more_words,
uint64_t data_offset,
Elf_Internal_Shdr * data_sec,
struct arm_section * data_arm_sec)
{
struct absaddr addr;
/* Decode the unwinding instructions. */
while (1)
{
unsigned int op, op2;
ADVANCE;
if (remaining == 0)
break;
remaining--;
op = word >> 24;
word <<= 8;
printf (" 0x%02x ", op);
if ((op & 0xc0) == 0x00)
{
int offset = ((op & 0x3f) << 3) + 8;
printf (" sp = sp + %d", offset);
}
else if ((op & 0xc0) == 0x80)
{
GET_OP (op2);
if (op == 0x80 && op2 == 0)
printf (_("Refuse to unwind"));
else
{
unsigned int mask = ((op & 0x1f) << 8) | op2;
if (op & 0x20)
printf ("pop compact {");
else
printf ("pop {");
decode_tic6x_unwind_regmask (mask);
printf("}");
}
}
else if ((op & 0xf0) == 0xc0)
{
unsigned int reg;
unsigned int nregs;
unsigned int i;
const char *name;
struct
{
unsigned int offset;
unsigned int reg;
} regpos[16];
/* Scan entire instruction first so that GET_OP output is not
interleaved with disassembly. */
nregs = 0;
for (i = 0; nregs < (op & 0xf); i++)
{
GET_OP (op2);
reg = op2 >> 4;
if (reg != 0xf)
{
regpos[nregs].offset = i * 2;
regpos[nregs].reg = reg;
nregs++;
}
reg = op2 & 0xf;
if (reg != 0xf)
{
regpos[nregs].offset = i * 2 + 1;
regpos[nregs].reg = reg;
nregs++;
}
}
printf (_("pop frame {"));
if (nregs == 0)
{
printf (_("*corrupt* - no registers specified"));
}
else
{
reg = nregs - 1;
for (i = i * 2; i > 0; i--)
{
if (regpos[reg].offset == i - 1)
{
name = tic6x_unwind_regnames[regpos[reg].reg];
if (reg > 0)
reg--;
}
else
name = _("[pad]");
fputs (name, stdout);
if (i > 1)
printf (", ");
}
}
printf ("}");
}
else if (op == 0xd0)
printf (" MOV FP, SP");
else if (op == 0xd1)
printf (" __c6xabi_pop_rts");
else if (op == 0xd2)
{
unsigned char buf[9];
unsigned int i, len;
uint64_t offset;
for (i = 0; i < sizeof (buf); i++)
{
GET_OP (buf[i]);
if ((buf[i] & 0x80) == 0)
break;
}
/* PR 17531: file: id:000001,src:001906+004739,op:splice,rep:2. */
if (i == sizeof (buf))
{
warn (_("Corrupt stack pointer adjustment detected\n"));
return false;
}
offset = read_leb128 (buf, buf + i + 1, false, &len, NULL);
assert (len == i + 1);
offset = offset * 8 + 0x408;
printf (_("sp = sp + %" PRId64), offset);
}
else if ((op & 0xf0) == 0xe0)
{
if ((op & 0x0f) == 7)
printf (" RETURN");
else
printf (" MV %s, B3", tic6x_unwind_regnames[op & 0x0f]);
}
else
{
printf (_(" [unsupported opcode]"));
}
putchar ('\n');
}
return true;
}
static uint64_t
arm_expand_prel31 (Filedata * filedata, uint64_t word, uint64_t where)
{
uint64_t offset;
offset = word & 0x7fffffff;
if (offset & 0x40000000)
offset |= ~ (uint64_t) 0x7fffffff;
if (filedata->file_header.e_machine == EM_TI_C6000)
offset <<= 1;
return offset + where;
}
static bool
decode_arm_unwind (Filedata * filedata,
struct arm_unw_aux_info * aux,
unsigned int word,
unsigned int remaining,
uint64_t data_offset,
Elf_Internal_Shdr * data_sec,
struct arm_section * data_arm_sec)
{
int per_index;
unsigned int more_words = 0;
struct absaddr addr;
uint64_t sym_name = (uint64_t) -1;
bool res = true;
if (remaining == 0)
{
/* Fetch the first word.
Note - when decoding an object file the address extracted
here will always be 0. So we also pass in the sym_name
parameter so that we can find the symbol associated with
the personality routine. */
if (! get_unwind_section_word (filedata, aux, data_arm_sec, data_sec, data_offset,
& word, & addr, & sym_name))
return false;
remaining = 4;
}
else
{
addr.section = SHN_UNDEF;
addr.offset = 0;
}
if ((word & 0x80000000) == 0)
{
/* Expand prel31 for personality routine. */
uint64_t fn;
const char *procname;
fn = arm_expand_prel31 (filedata, word, data_sec->sh_addr + data_offset);
printf (_(" Personality routine: "));
if (fn == 0
&& addr.section == SHN_UNDEF && addr.offset == 0
&& sym_name != (uint64_t) -1 && sym_name < aux->strtab_size)
{
procname = aux->strtab + sym_name;
print_vma (fn, PREFIX_HEX);
if (procname)
{
fputs (" <", stdout);
fputs (procname, stdout);
fputc ('>', stdout);
}
}
else
procname = arm_print_vma_and_name (filedata, aux, fn, addr);
fputc ('\n', stdout);
/* The GCC personality routines use the standard compact
encoding, starting with one byte giving the number of
words. */
if (procname != NULL
&& (startswith (procname, "__gcc_personality_v0")
|| startswith (procname, "__gxx_personality_v0")
|| startswith (procname, "__gcj_personality_v0")
|| startswith (procname, "__gnu_objc_personality_v0")))
{
remaining = 0;
more_words = 1;
ADVANCE;
if (!remaining)
{
printf (_(" [Truncated data]\n"));
return false;
}
more_words = word >> 24;
word <<= 8;
remaining--;
per_index = -1;
}
else
return true;
}
else
{
/* ARM EHABI Section 6.3:
An exception-handling table entry for the compact model looks like:
31 30-28 27-24 23-0
-- ----- ----- ----
1 0 index Data for personalityRoutine[index] */
if (filedata->file_header.e_machine == EM_ARM
&& (word & 0x70000000))
{
warn (_("Corrupt ARM compact model table entry: %x \n"), word);
res = false;
}
per_index = (word >> 24) & 0x7f;
printf (_(" Compact model index: %d\n"), per_index);
if (per_index == 0)
{
more_words = 0;
word <<= 8;
remaining--;
}
else if (per_index < 3)
{
more_words = (word >> 16) & 0xff;
word <<= 16;
remaining -= 2;
}
}
switch (filedata->file_header.e_machine)
{
case EM_ARM:
if (per_index < 3)
{
if (! decode_arm_unwind_bytecode (filedata, aux, word, remaining, more_words,
data_offset, data_sec, data_arm_sec))
res = false;
}
else
{
warn (_("Unknown ARM compact model index encountered\n"));
printf (_(" [reserved]\n"));
res = false;
}
break;
case EM_TI_C6000:
if (per_index < 3)
{
if (! decode_tic6x_unwind_bytecode (filedata, aux, word, remaining, more_words,
data_offset, data_sec, data_arm_sec))
res = false;
}
else if (per_index < 5)
{
if (((word >> 17) & 0x7f) == 0x7f)
printf (_(" Restore stack from frame pointer\n"));
else
printf (_(" Stack increment %d\n"), (word >> 14) & 0x1fc);
printf (_(" Registers restored: "));
if (per_index == 4)
printf (" (compact) ");
decode_tic6x_unwind_regmask ((word >> 4) & 0x1fff);
putchar ('\n');
printf (_(" Return register: %s\n"),
tic6x_unwind_regnames[word & 0xf]);
}
else
printf (_(" [reserved (%d)]\n"), per_index);
break;
default:
error (_("Unsupported architecture type %d encountered when decoding unwind table\n"),
filedata->file_header.e_machine);
res = false;
}
/* Decode the descriptors. Not implemented. */
return res;
}
static bool
dump_arm_unwind (Filedata * filedata,
struct arm_unw_aux_info * aux,
Elf_Internal_Shdr * exidx_sec)
{
struct arm_section exidx_arm_sec, extab_arm_sec;
unsigned int i, exidx_len;
uint64_t j, nfuns;
bool res = true;
memset (&exidx_arm_sec, 0, sizeof (exidx_arm_sec));
memset (&extab_arm_sec, 0, sizeof (extab_arm_sec));
exidx_len = exidx_sec->sh_size / 8;
aux->funtab = xmalloc (aux->nsyms * sizeof (Elf_Internal_Sym));
for (nfuns = 0, j = 0; j < aux->nsyms; j++)
if (aux->symtab[j].st_value && ELF_ST_TYPE (aux->symtab[j].st_info) == STT_FUNC)
aux->funtab[nfuns++] = aux->symtab[j];
aux->nfuns = nfuns;
qsort (aux->funtab, aux->nfuns, sizeof (Elf_Internal_Sym), symcmp);
for (i = 0; i < exidx_len; i++)
{
unsigned int exidx_fn, exidx_entry;
struct absaddr fn_addr, entry_addr;
uint64_t fn;
fputc ('\n', stdout);
if (! get_unwind_section_word (filedata, aux, & exidx_arm_sec, exidx_sec,
8 * i, & exidx_fn, & fn_addr, NULL)
|| ! get_unwind_section_word (filedata, aux, & exidx_arm_sec, exidx_sec,
8 * i + 4, & exidx_entry, & entry_addr, NULL))
{
free (aux->funtab);
arm_free_section (& exidx_arm_sec);
arm_free_section (& extab_arm_sec);
return false;
}
/* ARM EHABI, Section 5:
An index table entry consists of 2 words.
The first word contains a prel31 offset to the start of a function, with bit 31 clear. */
if (exidx_fn & 0x80000000)
{
warn (_("corrupt index table entry: %x\n"), exidx_fn);
res = false;
}
fn = arm_expand_prel31 (filedata, exidx_fn, exidx_sec->sh_addr + 8 * i);
arm_print_vma_and_name (filedata, aux, fn, fn_addr);
fputs (": ", stdout);
if (exidx_entry == 1)
{
print_vma (exidx_entry, PREFIX_HEX);
fputs (" [cantunwind]\n", stdout);
}
else if (exidx_entry & 0x80000000)
{
print_vma (exidx_entry, PREFIX_HEX);
fputc ('\n', stdout);
decode_arm_unwind (filedata, aux, exidx_entry, 4, 0, NULL, NULL);
}
else
{
uint64_t table, table_offset = 0;
Elf_Internal_Shdr *table_sec;
fputs ("@", stdout);
table = arm_expand_prel31 (filedata, exidx_entry, exidx_sec->sh_addr + 8 * i + 4);
print_vma (table, PREFIX_HEX);
printf ("\n");
/* Locate the matching .ARM.extab. */
if (entry_addr.section != SHN_UNDEF
&& entry_addr.section < filedata->file_header.e_shnum)
{
table_sec = filedata->section_headers + entry_addr.section;
table_offset = entry_addr.offset;
/* PR 18879 */
if (table_offset > table_sec->sh_size)
{
warn (_("Unwind entry contains corrupt offset (%#" PRIx64 ") into section %s\n"),
table_offset,
printable_section_name (filedata, table_sec));
res = false;
continue;
}
}
else
{
table_sec = find_section_by_address (filedata, table);
if (table_sec != NULL)
table_offset = table - table_sec->sh_addr;
}
if (table_sec == NULL)
{
warn (_("Could not locate .ARM.extab section containing %#" PRIx64 ".\n"),
table);
res = false;
continue;
}
if (! decode_arm_unwind (filedata, aux, 0, 0, table_offset, table_sec,
&extab_arm_sec))
res = false;
}
}
printf ("\n");
free (aux->funtab);
arm_free_section (&exidx_arm_sec);
arm_free_section (&extab_arm_sec);
return res;
}
/* Used for both ARM and C6X unwinding tables. */
static bool
arm_process_unwind (Filedata * filedata)
{
struct arm_unw_aux_info aux;
Elf_Internal_Shdr *unwsec = NULL;
Elf_Internal_Shdr *sec;
size_t i;
unsigned int sec_type;
bool res = true;
switch (filedata->file_header.e_machine)
{
case EM_ARM:
sec_type = SHT_ARM_EXIDX;
break;
case EM_TI_C6000:
sec_type = SHT_C6000_UNWIND;
break;
default:
error (_("Unsupported architecture type %d encountered when processing unwind table\n"),
filedata->file_header.e_machine);
return false;
}
if (filedata->string_table == NULL)
return false;
memset (& aux, 0, sizeof (aux));
aux.filedata = filedata;
for (i = 0, sec = filedata->section_headers; i < filedata->file_header.e_shnum; ++i, ++sec)
{
if (sec->sh_type == SHT_SYMTAB)
{
if (aux.symtab)
{
error (_("Multiple symbol tables encountered\n"));
free (aux.symtab);
aux.symtab = NULL;
free (aux.strtab);
aux.strtab = NULL;
}
if (!get_symtab (filedata, sec, &aux.symtab, &aux.nsyms,
&aux.strtab, &aux.strtab_size))
return false;
}
else if (sec->sh_type == sec_type)
unwsec = sec;
}
if (unwsec == NULL)
printf (_("\nThere are no unwind sections in this file.\n"));
else
for (i = 0, sec = filedata->section_headers; i < filedata->file_header.e_shnum; ++i, ++sec)
{
if (sec->sh_type == sec_type)
{
uint64_t num_unwind = sec->sh_size / (2 * eh_addr_size);
printf (ngettext ("\nUnwind section '%s' at offset %#" PRIx64 " "
"contains %" PRIu64 " entry:\n",
"\nUnwind section '%s' at offset %#" PRIx64 " "
"contains %" PRIu64 " entries:\n",
num_unwind),
printable_section_name (filedata, sec),
sec->sh_offset,
num_unwind);
if (! dump_arm_unwind (filedata, &aux, sec))
res = false;
}
}
free (aux.symtab);
free ((char *) aux.strtab);
return res;
}
static bool
no_processor_specific_unwind (Filedata * filedata ATTRIBUTE_UNUSED)
{
printf (_("No processor specific unwind information to decode\n"));
return true;
}
static bool
process_unwind (Filedata * filedata)
{
struct unwind_handler
{
unsigned int machtype;
bool (* handler)(Filedata *);
} handlers[] =
{
{ EM_ARM, arm_process_unwind },
{ EM_IA_64, ia64_process_unwind },
{ EM_PARISC, hppa_process_unwind },
{ EM_TI_C6000, arm_process_unwind },
{ EM_386, no_processor_specific_unwind },
{ EM_X86_64, no_processor_specific_unwind },
{ 0, NULL }
};
int i;
if (!do_unwind)
return true;
for (i = 0; handlers[i].handler != NULL; i++)
if (filedata->file_header.e_machine == handlers[i].machtype)
return handlers[i].handler (filedata);
printf (_("\nThe decoding of unwind sections for machine type %s is not currently supported.\n"),
get_machine_name (filedata->file_header.e_machine));
return true;
}
static void
dynamic_section_aarch64_val (Elf_Internal_Dyn * entry)
{
switch (entry->d_tag)
{
case DT_AARCH64_BTI_PLT:
case DT_AARCH64_PAC_PLT:
break;
default:
print_vma (entry->d_un.d_ptr, PREFIX_HEX);
break;
}
putchar ('\n');
}
static void
dynamic_section_mips_val (Filedata * filedata, Elf_Internal_Dyn * entry)
{
switch (entry->d_tag)
{
case DT_MIPS_FLAGS:
if (entry->d_un.d_val == 0)
printf (_("NONE"));
else
{
static const char * opts[] =
{
"QUICKSTART", "NOTPOT", "NO_LIBRARY_REPLACEMENT",
"NO_MOVE", "SGI_ONLY", "GUARANTEE_INIT", "DELTA_C_PLUS_PLUS",
"GUARANTEE_START_INIT", "PIXIE", "DEFAULT_DELAY_LOAD",
"REQUICKSTART", "REQUICKSTARTED", "CORD", "NO_UNRES_UNDEF",
"RLD_ORDER_SAFE"
};
unsigned int cnt;
bool first = true;
for (cnt = 0; cnt < ARRAY_SIZE (opts); ++cnt)
if (entry->d_un.d_val & (1 << cnt))
{
printf ("%s%s", first ? "" : " ", opts[cnt]);
first = false;
}
}
break;
case DT_MIPS_IVERSION:
if (valid_dynamic_name (filedata, entry->d_un.d_val))
printf (_("Interface Version: %s"),
get_dynamic_name (filedata, entry->d_un.d_val));
else
printf (_("Interface Version: <corrupt: %" PRIx64 ">"),
entry->d_un.d_ptr);
break;
case DT_MIPS_TIME_STAMP:
{
char timebuf[128];
struct tm * tmp;
time_t atime = entry->d_un.d_val;
tmp = gmtime (&atime);
/* PR 17531: file: 6accc532. */
if (tmp == NULL)
snprintf (timebuf, sizeof (timebuf), _("<corrupt>"));
else
snprintf (timebuf, sizeof (timebuf), "%04u-%02u-%02uT%02u:%02u:%02u",
tmp->tm_year + 1900, tmp->tm_mon + 1, tmp->tm_mday,
tmp->tm_hour, tmp->tm_min, tmp->tm_sec);
printf (_("Time Stamp: %s"), timebuf);
}
break;
case DT_MIPS_RLD_VERSION:
case DT_MIPS_LOCAL_GOTNO:
case DT_MIPS_CONFLICTNO:
case DT_MIPS_LIBLISTNO:
case DT_MIPS_SYMTABNO:
case DT_MIPS_UNREFEXTNO:
case DT_MIPS_HIPAGENO:
case DT_MIPS_DELTA_CLASS_NO:
case DT_MIPS_DELTA_INSTANCE_NO:
case DT_MIPS_DELTA_RELOC_NO:
case DT_MIPS_DELTA_SYM_NO:
case DT_MIPS_DELTA_CLASSSYM_NO:
case DT_MIPS_COMPACT_SIZE:
print_vma (entry->d_un.d_val, DEC);
break;
case DT_MIPS_XHASH:
filedata->dynamic_info_DT_MIPS_XHASH = entry->d_un.d_val;
filedata->dynamic_info_DT_GNU_HASH = entry->d_un.d_val;
/* Falls through. */
default:
print_vma (entry->d_un.d_ptr, PREFIX_HEX);
}
putchar ('\n');
}
static void
dynamic_section_parisc_val (Elf_Internal_Dyn * entry)
{
switch (entry->d_tag)
{
case DT_HP_DLD_FLAGS:
{
static struct
{
unsigned int bit;
const char * str;
}
flags[] =
{
{ DT_HP_DEBUG_PRIVATE, "HP_DEBUG_PRIVATE" },
{ DT_HP_DEBUG_CALLBACK, "HP_DEBUG_CALLBACK" },
{ DT_HP_DEBUG_CALLBACK_BOR, "HP_DEBUG_CALLBACK_BOR" },
{ DT_HP_NO_ENVVAR, "HP_NO_ENVVAR" },
{ DT_HP_BIND_NOW, "HP_BIND_NOW" },
{ DT_HP_BIND_NONFATAL, "HP_BIND_NONFATAL" },
{ DT_HP_BIND_VERBOSE, "HP_BIND_VERBOSE" },
{ DT_HP_BIND_RESTRICTED, "HP_BIND_RESTRICTED" },
{ DT_HP_BIND_SYMBOLIC, "HP_BIND_SYMBOLIC" },
{ DT_HP_RPATH_FIRST, "HP_RPATH_FIRST" },
{ DT_HP_BIND_DEPTH_FIRST, "HP_BIND_DEPTH_FIRST" },
{ DT_HP_GST, "HP_GST" },
{ DT_HP_SHLIB_FIXED, "HP_SHLIB_FIXED" },
{ DT_HP_MERGE_SHLIB_SEG, "HP_MERGE_SHLIB_SEG" },
{ DT_HP_NODELETE, "HP_NODELETE" },
{ DT_HP_GROUP, "HP_GROUP" },
{ DT_HP_PROTECT_LINKAGE_TABLE, "HP_PROTECT_LINKAGE_TABLE" }
};
bool first = true;
size_t cnt;
uint64_t val = entry->d_un.d_val;
for (cnt = 0; cnt < ARRAY_SIZE (flags); ++cnt)
if (val & flags[cnt].bit)
{
if (! first)
putchar (' ');
fputs (flags[cnt].str, stdout);
first = false;
val ^= flags[cnt].bit;
}
if (val != 0 || first)
{
if (! first)
putchar (' ');
print_vma (val, HEX);
}
}
break;
default:
print_vma (entry->d_un.d_ptr, PREFIX_HEX);
break;
}
putchar ('\n');
}
/* VMS vs Unix time offset and factor. */
#define VMS_EPOCH_OFFSET 35067168000000000LL
#define VMS_GRANULARITY_FACTOR 10000000
#ifndef INT64_MIN
#define INT64_MIN (-9223372036854775807LL - 1)
#endif
/* Display a VMS time in a human readable format. */
static void
print_vms_time (int64_t vmstime)
{
struct tm *tm = NULL;
time_t unxtime;
if (vmstime >= INT64_MIN + VMS_EPOCH_OFFSET)
{
vmstime = (vmstime - VMS_EPOCH_OFFSET) / VMS_GRANULARITY_FACTOR;
unxtime = vmstime;
if (unxtime == vmstime)
tm = gmtime (&unxtime);
}
if (tm != NULL)
printf ("%04u-%02u-%02uT%02u:%02u:%02u",
tm->tm_year + 1900, tm->tm_mon + 1, tm->tm_mday,
tm->tm_hour, tm->tm_min, tm->tm_sec);
}
static void
dynamic_section_ia64_val (Elf_Internal_Dyn * entry)
{
switch (entry->d_tag)
{
case DT_IA_64_PLT_RESERVE:
/* First 3 slots reserved. */
print_vma (entry->d_un.d_ptr, PREFIX_HEX);
printf (" -- ");
print_vma (entry->d_un.d_ptr + (3 * 8), PREFIX_HEX);
break;
case DT_IA_64_VMS_LINKTIME:
print_vms_time (entry->d_un.d_val);
break;
case DT_IA_64_VMS_LNKFLAGS:
print_vma (entry->d_un.d_ptr, PREFIX_HEX);
if (entry->d_un.d_val & VMS_LF_CALL_DEBUG)
printf (" CALL_DEBUG");
if (entry->d_un.d_val & VMS_LF_NOP0BUFS)
printf (" NOP0BUFS");
if (entry->d_un.d_val & VMS_LF_P0IMAGE)
printf (" P0IMAGE");
if (entry->d_un.d_val & VMS_LF_MKTHREADS)
printf (" MKTHREADS");
if (entry->d_un.d_val & VMS_LF_UPCALLS)
printf (" UPCALLS");
if (entry->d_un.d_val & VMS_LF_IMGSTA)
printf (" IMGSTA");
if (entry->d_un.d_val & VMS_LF_INITIALIZE)
printf (" INITIALIZE");
if (entry->d_un.d_val & VMS_LF_MAIN)
printf (" MAIN");
if (entry->d_un.d_val & VMS_LF_EXE_INIT)
printf (" EXE_INIT");
if (entry->d_un.d_val & VMS_LF_TBK_IN_IMG)
printf (" TBK_IN_IMG");
if (entry->d_un.d_val & VMS_LF_DBG_IN_IMG)
printf (" DBG_IN_IMG");
if (entry->d_un.d_val & VMS_LF_TBK_IN_DSF)
printf (" TBK_IN_DSF");
if (entry->d_un.d_val & VMS_LF_DBG_IN_DSF)
printf (" DBG_IN_DSF");
if (entry->d_un.d_val & VMS_LF_SIGNATURES)
printf (" SIGNATURES");
if (entry->d_un.d_val & VMS_LF_REL_SEG_OFF)
printf (" REL_SEG_OFF");
break;
default:
print_vma (entry->d_un.d_ptr, PREFIX_HEX);
break;
}
putchar ('\n');
}
static bool
get_32bit_dynamic_section (Filedata * filedata)
{
Elf32_External_Dyn * edyn;
Elf32_External_Dyn * ext;
Elf_Internal_Dyn * entry;
edyn = (Elf32_External_Dyn *) get_data (NULL, filedata,
filedata->dynamic_addr, 1,
filedata->dynamic_size,
_("dynamic section"));
if (!edyn)
return false;
/* SGI's ELF has more than one section in the DYNAMIC segment, and we
might not have the luxury of section headers. Look for the DT_NULL
terminator to determine the number of entries. */
for (ext = edyn, filedata->dynamic_nent = 0;
(char *) (ext + 1) <= (char *) edyn + filedata->dynamic_size;
ext++)
{
filedata->dynamic_nent++;
if (BYTE_GET (ext->d_tag) == DT_NULL)
break;
}
filedata->dynamic_section
= (Elf_Internal_Dyn *) cmalloc (filedata->dynamic_nent, sizeof (* entry));
if (filedata->dynamic_section == NULL)
{
error (_("Out of memory allocating space for %" PRIu64 " dynamic entries\n"),
filedata->dynamic_nent);
free (edyn);
return false;
}
for (ext = edyn, entry = filedata->dynamic_section;
entry < filedata->dynamic_section + filedata->dynamic_nent;
ext++, entry++)
{
entry->d_tag = BYTE_GET (ext->d_tag);
entry->d_un.d_val = BYTE_GET (ext->d_un.d_val);
}
free (edyn);
return true;
}
static bool
get_64bit_dynamic_section (Filedata * filedata)
{
Elf64_External_Dyn * edyn;
Elf64_External_Dyn * ext;
Elf_Internal_Dyn * entry;
/* Read in the data. */
edyn = (Elf64_External_Dyn *) get_data (NULL, filedata,
filedata->dynamic_addr, 1,
filedata->dynamic_size,
_("dynamic section"));
if (!edyn)
return false;
/* SGI's ELF has more than one section in the DYNAMIC segment, and we
might not have the luxury of section headers. Look for the DT_NULL
terminator to determine the number of entries. */
for (ext = edyn, filedata->dynamic_nent = 0;
/* PR 17533 file: 033-67080-0.004 - do not read past end of buffer. */
(char *) (ext + 1) <= (char *) edyn + filedata->dynamic_size;
ext++)
{
filedata->dynamic_nent++;
if (BYTE_GET (ext->d_tag) == DT_NULL)
break;
}
filedata->dynamic_section
= (Elf_Internal_Dyn *) cmalloc (filedata->dynamic_nent, sizeof (* entry));
if (filedata->dynamic_section == NULL)
{
error (_("Out of memory allocating space for %" PRIu64 " dynamic entries\n"),
filedata->dynamic_nent);
free (edyn);
return false;
}
/* Convert from external to internal formats. */
for (ext = edyn, entry = filedata->dynamic_section;
entry < filedata->dynamic_section + filedata->dynamic_nent;
ext++, entry++)
{
entry->d_tag = BYTE_GET (ext->d_tag);
entry->d_un.d_val = BYTE_GET (ext->d_un.d_val);
}
free (edyn);
return true;
}
static bool
get_dynamic_section (Filedata *filedata)
{
if (filedata->dynamic_section)
return true;
if (is_32bit_elf)
return get_32bit_dynamic_section (filedata);
else
return get_64bit_dynamic_section (filedata);
}
static void
print_dynamic_flags (uint64_t flags)
{
bool first = true;
while (flags)
{
uint64_t flag;
flag = flags & - flags;
flags &= ~ flag;
if (first)
first = false;
else
putc (' ', stdout);
switch (flag)
{
case DF_ORIGIN: fputs ("ORIGIN", stdout); break;
case DF_SYMBOLIC: fputs ("SYMBOLIC", stdout); break;
case DF_TEXTREL: fputs ("TEXTREL", stdout); break;
case DF_BIND_NOW: fputs ("BIND_NOW", stdout); break;
case DF_STATIC_TLS: fputs ("STATIC_TLS", stdout); break;
default: fputs (_("unknown"), stdout); break;
}
}
puts ("");
}
static uint64_t *
get_dynamic_data (Filedata * filedata, uint64_t number, unsigned int ent_size)
{
unsigned char * e_data;
uint64_t * i_data;
/* If size_t is smaller than uint64_t, eg because you are building
on a 32-bit host, then make sure that when number is cast to
size_t no information is lost. */
if ((size_t) number != number
|| ent_size * number / ent_size != number)
{
error (_("Size overflow prevents reading %" PRIu64
" elements of size %u\n"),
number, ent_size);
return NULL;
}
/* Be kind to memory checkers (eg valgrind, address sanitizer) by not
attempting to allocate memory when the read is bound to fail. */
if (ent_size * number > filedata->file_size)
{
error (_("Invalid number of dynamic entries: %" PRIu64 "\n"),
number);
return NULL;
}
e_data = (unsigned char *) cmalloc ((size_t) number, ent_size);
if (e_data == NULL)
{
error (_("Out of memory reading %" PRIu64 " dynamic entries\n"),
number);
return NULL;
}
if (fread (e_data, ent_size, (size_t) number, filedata->handle) != number)
{
error (_("Unable to read in %" PRIu64 " bytes of dynamic data\n"),
number * ent_size);
free (e_data);
return NULL;
}
i_data = (uint64_t *) cmalloc ((size_t) number, sizeof (*i_data));
if (i_data == NULL)
{
error (_("Out of memory allocating space for %" PRIu64 " dynamic entries\n"),
number);
free (e_data);
return NULL;
}
while (number--)
i_data[number] = byte_get (e_data + number * ent_size, ent_size);
free (e_data);
return i_data;
}
static uint64_t
get_num_dynamic_syms (Filedata * filedata)
{
uint64_t num_of_syms = 0;
if (!do_histogram && (!do_using_dynamic || do_dyn_syms))
return num_of_syms;
if (filedata->dynamic_info[DT_HASH])
{
unsigned char nb[8];
unsigned char nc[8];
unsigned int hash_ent_size = 4;
if ((filedata->file_header.e_machine == EM_ALPHA
|| filedata->file_header.e_machine == EM_S390
|| filedata->file_header.e_machine == EM_S390_OLD)
&& filedata->file_header.e_ident[EI_CLASS] == ELFCLASS64)
hash_ent_size = 8;
if (fseek64 (filedata->handle,
(filedata->archive_file_offset
+ offset_from_vma (filedata,
filedata->dynamic_info[DT_HASH],
sizeof nb + sizeof nc)),
SEEK_SET))
{
error (_("Unable to seek to start of dynamic information\n"));
goto no_hash;
}
if (fread (nb, hash_ent_size, 1, filedata->handle) != 1)
{
error (_("Failed to read in number of buckets\n"));
goto no_hash;
}
if (fread (nc, hash_ent_size, 1, filedata->handle) != 1)
{
error (_("Failed to read in number of chains\n"));
goto no_hash;
}
filedata->nbuckets = byte_get (nb, hash_ent_size);
filedata->nchains = byte_get (nc, hash_ent_size);
if (filedata->nbuckets != 0 && filedata->nchains != 0)
{
filedata->buckets = get_dynamic_data (filedata, filedata->nbuckets,
hash_ent_size);
filedata->chains = get_dynamic_data (filedata, filedata->nchains,
hash_ent_size);
if (filedata->buckets != NULL && filedata->chains != NULL)
num_of_syms = filedata->nchains;
}
no_hash:
if (num_of_syms == 0)
{
free (filedata->buckets);
filedata->buckets = NULL;
free (filedata->chains);
filedata->chains = NULL;
filedata->nbuckets = 0;
}
}
if (filedata->dynamic_info_DT_GNU_HASH)
{
unsigned char nb[16];
uint64_t i, maxchain = 0xffffffff, bitmaskwords;
uint64_t buckets_vma;
uint64_t hn;
if (fseek64 (filedata->handle,
(filedata->archive_file_offset
+ offset_from_vma (filedata,
filedata->dynamic_info_DT_GNU_HASH,
sizeof nb)),
SEEK_SET))
{
error (_("Unable to seek to start of dynamic information\n"));
goto no_gnu_hash;
}
if (fread (nb, 16, 1, filedata->handle) != 1)
{
error (_("Failed to read in number of buckets\n"));
goto no_gnu_hash;
}
filedata->ngnubuckets = byte_get (nb, 4);
filedata->gnusymidx = byte_get (nb + 4, 4);
bitmaskwords = byte_get (nb + 8, 4);
buckets_vma = filedata->dynamic_info_DT_GNU_HASH + 16;
if (is_32bit_elf)
buckets_vma += bitmaskwords * 4;
else
buckets_vma += bitmaskwords * 8;
if (fseek64 (filedata->handle,
(filedata->archive_file_offset
+ offset_from_vma (filedata, buckets_vma, 4)),
SEEK_SET))
{
error (_("Unable to seek to start of dynamic information\n"));
goto no_gnu_hash;
}
filedata->gnubuckets
= get_dynamic_data (filedata, filedata->ngnubuckets, 4);
if (filedata->gnubuckets == NULL)
goto no_gnu_hash;
for (i = 0; i < filedata->ngnubuckets; i++)
if (filedata->gnubuckets[i] != 0)
{
if (filedata->gnubuckets[i] < filedata->gnusymidx)
goto no_gnu_hash;
if (maxchain == 0xffffffff || filedata->gnubuckets[i] > maxchain)
maxchain = filedata->gnubuckets[i];
}
if (maxchain == 0xffffffff)
goto no_gnu_hash;
maxchain -= filedata->gnusymidx;
if (fseek64 (filedata->handle,
(filedata->archive_file_offset
+ offset_from_vma (filedata,
buckets_vma + 4 * (filedata->ngnubuckets
+ maxchain),
4)),
SEEK_SET))
{
error (_("Unable to seek to start of dynamic information\n"));
goto no_gnu_hash;
}
do
{
if (fread (nb, 4, 1, filedata->handle) != 1)
{
error (_("Failed to determine last chain length\n"));
goto no_gnu_hash;
}
if (maxchain + 1 == 0)
goto no_gnu_hash;
++maxchain;
}
while ((byte_get (nb, 4) & 1) == 0);
if (fseek64 (filedata->handle,
(filedata->archive_file_offset
+ offset_from_vma (filedata, (buckets_vma
+ 4 * filedata->ngnubuckets),
4)),
SEEK_SET))
{
error (_("Unable to seek to start of dynamic information\n"));
goto no_gnu_hash;
}
filedata->gnuchains = get_dynamic_data (filedata, maxchain, 4);
filedata->ngnuchains = maxchain;
if (filedata->gnuchains == NULL)
goto no_gnu_hash;
if (filedata->dynamic_info_DT_MIPS_XHASH)
{
if (fseek64 (filedata->handle,
(filedata->archive_file_offset
+ offset_from_vma (filedata, (buckets_vma
+ 4 * (filedata->ngnubuckets
+ maxchain)), 4)),
SEEK_SET))
{
error (_("Unable to seek to start of dynamic information\n"));
goto no_gnu_hash;
}
filedata->mipsxlat = get_dynamic_data (filedata, maxchain, 4);
if (filedata->mipsxlat == NULL)
goto no_gnu_hash;
}
for (hn = 0; hn < filedata->ngnubuckets; ++hn)
if (filedata->gnubuckets[hn] != 0)
{
uint64_t si = filedata->gnubuckets[hn];
uint64_t off = si - filedata->gnusymidx;
do
{
if (filedata->dynamic_info_DT_MIPS_XHASH)
{
if (off < filedata->ngnuchains
&& filedata->mipsxlat[off] >= num_of_syms)
num_of_syms = filedata->mipsxlat[off] + 1;
}
else
{
if (si >= num_of_syms)
num_of_syms = si + 1;
}
si++;
}
while (off < filedata->ngnuchains
&& (filedata->gnuchains[off++] & 1) == 0);
}
if (num_of_syms == 0)
{
no_gnu_hash:
free (filedata->mipsxlat);
filedata->mipsxlat = NULL;
free (filedata->gnuchains);
filedata->gnuchains = NULL;
free (filedata->gnubuckets);
filedata->gnubuckets = NULL;
filedata->ngnubuckets = 0;
filedata->ngnuchains = 0;
}
}
return num_of_syms;
}
/* Parse and display the contents of the dynamic section. */
static bool
process_dynamic_section (Filedata * filedata)
{
Elf_Internal_Dyn * entry;
if (filedata->dynamic_size <= 1)
{
if (do_dynamic)
{
if (filedata->is_separate)
printf (_("\nThere is no dynamic section in linked file '%s'.\n"),
printable_string (filedata->file_name, 0));
else
printf (_("\nThere is no dynamic section in this file.\n"));
}
return true;
}
if (!get_dynamic_section (filedata))
return false;
/* Find the appropriate symbol table. */
if (filedata->dynamic_symbols == NULL || do_histogram)
{
uint64_t num_of_syms;
for (entry = filedata->dynamic_section;
entry < filedata->dynamic_section + filedata->dynamic_nent;
++entry)
if (entry->d_tag == DT_SYMTAB)
filedata->dynamic_info[DT_SYMTAB] = entry->d_un.d_val;
else if (entry->d_tag == DT_SYMENT)
filedata->dynamic_info[DT_SYMENT] = entry->d_un.d_val;
else if (entry->d_tag == DT_HASH)
filedata->dynamic_info[DT_HASH] = entry->d_un.d_val;
else if (entry->d_tag == DT_GNU_HASH)
filedata->dynamic_info_DT_GNU_HASH = entry->d_un.d_val;
else if ((filedata->file_header.e_machine == EM_MIPS
|| filedata->file_header.e_machine == EM_MIPS_RS3_LE)
&& entry->d_tag == DT_MIPS_XHASH)
{
filedata->dynamic_info_DT_MIPS_XHASH = entry->d_un.d_val;
filedata->dynamic_info_DT_GNU_HASH = entry->d_un.d_val;
}
num_of_syms = get_num_dynamic_syms (filedata);
if (num_of_syms != 0
&& filedata->dynamic_symbols == NULL
&& filedata->dynamic_info[DT_SYMTAB]
&& filedata->dynamic_info[DT_SYMENT])
{
Elf_Internal_Phdr *seg;
uint64_t vma = filedata->dynamic_info[DT_SYMTAB];
if (! get_program_headers (filedata))
{
error (_("Cannot interpret virtual addresses "
"without program headers.\n"));
return false;
}
for (seg = filedata->program_headers;
seg < filedata->program_headers + filedata->file_header.e_phnum;
++seg)
{
if (seg->p_type != PT_LOAD)
continue;
if (seg->p_offset + seg->p_filesz > filedata->file_size)
{
/* See PR 21379 for a reproducer. */
error (_("Invalid PT_LOAD entry\n"));
return false;
}
if (vma >= (seg->p_vaddr & -seg->p_align)
&& vma < seg->p_vaddr + seg->p_filesz)
{
/* Since we do not know how big the symbol table is,
we default to reading in up to the end of PT_LOAD
segment and processing that. This is overkill, I
know, but it should work. */
Elf_Internal_Shdr section;
section.sh_offset = (vma - seg->p_vaddr
+ seg->p_offset);
section.sh_size = (num_of_syms
* filedata->dynamic_info[DT_SYMENT]);
section.sh_entsize = filedata->dynamic_info[DT_SYMENT];
if (do_checks
&& filedata->dynamic_symtab_section != NULL
&& ((filedata->dynamic_symtab_section->sh_offset
!= section.sh_offset)
|| (filedata->dynamic_symtab_section->sh_size
!= section.sh_size)
|| (filedata->dynamic_symtab_section->sh_entsize
!= section.sh_entsize)))
warn (_("\
the .dynsym section doesn't match the DT_SYMTAB and DT_SYMENT tags\n"));
section.sh_name = filedata->string_table_length;
filedata->dynamic_symbols
= get_elf_symbols (filedata, §ion,
&filedata->num_dynamic_syms);
if (filedata->dynamic_symbols == NULL
|| filedata->num_dynamic_syms != num_of_syms)
{
error (_("Corrupt DT_SYMTAB dynamic entry\n"));
return false;
}
break;
}
}
}
}
/* Similarly find a string table. */
if (filedata->dynamic_strings == NULL)
for (entry = filedata->dynamic_section;
entry < filedata->dynamic_section + filedata->dynamic_nent;
++entry)
{
if (entry->d_tag == DT_STRTAB)
filedata->dynamic_info[DT_STRTAB] = entry->d_un.d_val;
if (entry->d_tag == DT_STRSZ)
filedata->dynamic_info[DT_STRSZ] = entry->d_un.d_val;
if (filedata->dynamic_info[DT_STRTAB]
&& filedata->dynamic_info[DT_STRSZ])
{
uint64_t offset;
uint64_t str_tab_len = filedata->dynamic_info[DT_STRSZ];
offset = offset_from_vma (filedata,
filedata->dynamic_info[DT_STRTAB],
str_tab_len);
if (do_checks
&& filedata->dynamic_strtab_section
&& ((filedata->dynamic_strtab_section->sh_offset
!= (file_ptr) offset)
|| (filedata->dynamic_strtab_section->sh_size
!= str_tab_len)))
warn (_("\
the .dynstr section doesn't match the DT_STRTAB and DT_STRSZ tags\n"));
filedata->dynamic_strings
= (char *) get_data (NULL, filedata, offset, 1, str_tab_len,
_("dynamic string table"));
if (filedata->dynamic_strings == NULL)
{
error (_("Corrupt DT_STRTAB dynamic entry\n"));
break;
}
filedata->dynamic_strings_length = str_tab_len;
break;
}
}
/* And find the syminfo section if available. */
if (filedata->dynamic_syminfo == NULL)
{
uint64_t syminsz = 0;
for (entry = filedata->dynamic_section;
entry < filedata->dynamic_section + filedata->dynamic_nent;
++entry)
{
if (entry->d_tag == DT_SYMINENT)
{
/* Note: these braces are necessary to avoid a syntax
error from the SunOS4 C compiler. */
/* PR binutils/17531: A corrupt file can trigger this test.
So do not use an assert, instead generate an error message. */
if (sizeof (Elf_External_Syminfo) != entry->d_un.d_val)
error (_("Bad value (%d) for SYMINENT entry\n"),
(int) entry->d_un.d_val);
}
else if (entry->d_tag == DT_SYMINSZ)
syminsz = entry->d_un.d_val;
else if (entry->d_tag == DT_SYMINFO)
filedata->dynamic_syminfo_offset
= offset_from_vma (filedata, entry->d_un.d_val, syminsz);
}
if (filedata->dynamic_syminfo_offset != 0 && syminsz != 0)
{
Elf_External_Syminfo * extsyminfo;
Elf_External_Syminfo * extsym;
Elf_Internal_Syminfo * syminfo;
/* There is a syminfo section. Read the data. */
extsyminfo = (Elf_External_Syminfo *)
get_data (NULL, filedata, filedata->dynamic_syminfo_offset,
1, syminsz, _("symbol information"));
if (!extsyminfo)
return false;
if (filedata->dynamic_syminfo != NULL)
{
error (_("Multiple dynamic symbol information sections found\n"));
free (filedata->dynamic_syminfo);
}
filedata->dynamic_syminfo = (Elf_Internal_Syminfo *) malloc (syminsz);
if (filedata->dynamic_syminfo == NULL)
{
error (_("Out of memory allocating %" PRIu64
" bytes for dynamic symbol info\n"),
syminsz);
return false;
}
filedata->dynamic_syminfo_nent
= syminsz / sizeof (Elf_External_Syminfo);
for (syminfo = filedata->dynamic_syminfo, extsym = extsyminfo;
syminfo < (filedata->dynamic_syminfo
+ filedata->dynamic_syminfo_nent);
++syminfo, ++extsym)
{
syminfo->si_boundto = BYTE_GET (extsym->si_boundto);
syminfo->si_flags = BYTE_GET (extsym->si_flags);
}
free (extsyminfo);
}
}
if (do_dynamic && filedata->dynamic_addr)
{
if (filedata->is_separate)
printf (ngettext ("\nIn linked file '%s' the dynamic section at offset %#" PRIx64 " contains %" PRIu64 " entry:\n",
"\nIn linked file '%s' the dynamic section at offset %#" PRIx64 " contains %" PRIu64 " entries:\n",
filedata->dynamic_nent),
filedata->file_name,
filedata->dynamic_addr,
filedata->dynamic_nent);
else
printf (ngettext ("\nDynamic section at offset %#" PRIx64 " contains %" PRIu64 " entry:\n",
"\nDynamic section at offset %#" PRIx64 " contains %" PRIu64 " entries:\n",
filedata->dynamic_nent),
filedata->dynamic_addr,
filedata->dynamic_nent);
}
if (do_dynamic)
printf (_(" Tag Type Name/Value\n"));
for (entry = filedata->dynamic_section;
entry < filedata->dynamic_section + filedata->dynamic_nent;
entry++)
{
if (do_dynamic)
{
const char * dtype;
putchar (' ');
print_vma (entry->d_tag, FULL_HEX);
dtype = get_dynamic_type (filedata, entry->d_tag);
printf (" (%s)%*s", dtype,
((is_32bit_elf ? 27 : 19) - (int) strlen (dtype)), " ");
}
switch (entry->d_tag)
{
case DT_FLAGS:
if (do_dynamic)
print_dynamic_flags (entry->d_un.d_val);
break;
case DT_AUXILIARY:
case DT_FILTER:
case DT_CONFIG:
case DT_DEPAUDIT:
case DT_AUDIT:
if (do_dynamic)
{
switch (entry->d_tag)
{
case DT_AUXILIARY:
printf (_("Auxiliary library"));
break;
case DT_FILTER:
printf (_("Filter library"));
break;
case DT_CONFIG:
printf (_("Configuration file"));
break;
case DT_DEPAUDIT:
printf (_("Dependency audit library"));
break;
case DT_AUDIT:
printf (_("Audit library"));
break;
}
if (valid_dynamic_name (filedata, entry->d_un.d_val))
printf (": [%s]\n",
get_dynamic_name (filedata, entry->d_un.d_val));
else
{
printf (": ");
print_vma (entry->d_un.d_val, PREFIX_HEX);
putchar ('\n');
}
}
break;
case DT_FEATURE:
if (do_dynamic)
{
printf (_("Flags:"));
if (entry->d_un.d_val == 0)
printf (_(" None\n"));
else
{
uint64_t val = entry->d_un.d_val;
if (val & DTF_1_PARINIT)
{
printf (" PARINIT");
val ^= DTF_1_PARINIT;
}
if (val & DTF_1_CONFEXP)
{
printf (" CONFEXP");
val ^= DTF_1_CONFEXP;
}
if (val != 0)
printf (" %" PRIx64, val);
puts ("");
}
}
break;
case DT_POSFLAG_1:
if (do_dynamic)
{
printf (_("Flags:"));
if (entry->d_un.d_val == 0)
printf (_(" None\n"));
else
{
uint64_t val = entry->d_un.d_val;
if (val & DF_P1_LAZYLOAD)
{
printf (" LAZYLOAD");
val ^= DF_P1_LAZYLOAD;
}
if (val & DF_P1_GROUPPERM)
{
printf (" GROUPPERM");
val ^= DF_P1_GROUPPERM;
}
if (val != 0)
printf (" %" PRIx64, val);
puts ("");
}
}
break;
case DT_FLAGS_1:
if (do_dynamic)
{
printf (_("Flags:"));
if (entry->d_un.d_val == 0)
printf (_(" None\n"));
else
{
uint64_t val = entry->d_un.d_val;
if (val & DF_1_NOW)
{
printf (" NOW");
val ^= DF_1_NOW;
}
if (val & DF_1_GLOBAL)
{
printf (" GLOBAL");
val ^= DF_1_GLOBAL;
}
if (val & DF_1_GROUP)
{
printf (" GROUP");
val ^= DF_1_GROUP;
}
if (val & DF_1_NODELETE)
{
printf (" NODELETE");
val ^= DF_1_NODELETE;
}
if (val & DF_1_LOADFLTR)
{
printf (" LOADFLTR");
val ^= DF_1_LOADFLTR;
}
if (val & DF_1_INITFIRST)
{
printf (" INITFIRST");
val ^= DF_1_INITFIRST;
}
if (val & DF_1_NOOPEN)
{
printf (" NOOPEN");
val ^= DF_1_NOOPEN;
}
if (val & DF_1_ORIGIN)
{
printf (" ORIGIN");
val ^= DF_1_ORIGIN;
}
if (val & DF_1_DIRECT)
{
printf (" DIRECT");
val ^= DF_1_DIRECT;
}
if (val & DF_1_TRANS)
{
printf (" TRANS");
val ^= DF_1_TRANS;
}
if (val & DF_1_INTERPOSE)
{
printf (" INTERPOSE");
val ^= DF_1_INTERPOSE;
}
if (val & DF_1_NODEFLIB)
{
printf (" NODEFLIB");
val ^= DF_1_NODEFLIB;
}
if (val & DF_1_NODUMP)
{
printf (" NODUMP");
val ^= DF_1_NODUMP;
}
if (val & DF_1_CONFALT)
{
printf (" CONFALT");
val ^= DF_1_CONFALT;
}
if (val & DF_1_ENDFILTEE)
{
printf (" ENDFILTEE");
val ^= DF_1_ENDFILTEE;
}
if (val & DF_1_DISPRELDNE)
{
printf (" DISPRELDNE");
val ^= DF_1_DISPRELDNE;
}
if (val & DF_1_DISPRELPND)
{
printf (" DISPRELPND");
val ^= DF_1_DISPRELPND;
}
if (val & DF_1_NODIRECT)
{
printf (" NODIRECT");
val ^= DF_1_NODIRECT;
}
if (val & DF_1_IGNMULDEF)
{
printf (" IGNMULDEF");
val ^= DF_1_IGNMULDEF;
}
if (val & DF_1_NOKSYMS)
{
printf (" NOKSYMS");
val ^= DF_1_NOKSYMS;
}
if (val & DF_1_NOHDR)
{
printf (" NOHDR");
val ^= DF_1_NOHDR;
}
if (val & DF_1_EDITED)
{
printf (" EDITED");
val ^= DF_1_EDITED;
}
if (val & DF_1_NORELOC)
{
printf (" NORELOC");
val ^= DF_1_NORELOC;
}
if (val & DF_1_SYMINTPOSE)
{
printf (" SYMINTPOSE");
val ^= DF_1_SYMINTPOSE;
}
if (val & DF_1_GLOBAUDIT)
{
printf (" GLOBAUDIT");
val ^= DF_1_GLOBAUDIT;
}
if (val & DF_1_SINGLETON)
{
printf (" SINGLETON");
val ^= DF_1_SINGLETON;
}
if (val & DF_1_STUB)
{
printf (" STUB");
val ^= DF_1_STUB;
}
if (val & DF_1_PIE)
{
printf (" PIE");
val ^= DF_1_PIE;
}
if (val & DF_1_KMOD)
{
printf (" KMOD");
val ^= DF_1_KMOD;
}
if (val & DF_1_WEAKFILTER)
{
printf (" WEAKFILTER");
val ^= DF_1_WEAKFILTER;
}
if (val & DF_1_NOCOMMON)
{
printf (" NOCOMMON");
val ^= DF_1_NOCOMMON;
}
if (val != 0)
printf (" %" PRIx64, val);
puts ("");
}
}
break;
case DT_PLTREL:
filedata->dynamic_info[entry->d_tag] = entry->d_un.d_val;
if (do_dynamic)
puts (get_dynamic_type (filedata, entry->d_un.d_val));
break;
case DT_NULL :
case DT_NEEDED :
case DT_PLTGOT :
case DT_HASH :
case DT_STRTAB :
case DT_SYMTAB :
case DT_RELA :
case DT_INIT :
case DT_FINI :
case DT_SONAME :
case DT_RPATH :
case DT_SYMBOLIC:
case DT_REL :
case DT_RELR :
case DT_DEBUG :
case DT_TEXTREL :
case DT_JMPREL :
case DT_RUNPATH :
filedata->dynamic_info[entry->d_tag] = entry->d_un.d_val;
if (do_dynamic)
{
const char *name;
if (valid_dynamic_name (filedata, entry->d_un.d_val))
name = get_dynamic_name (filedata, entry->d_un.d_val);
else
name = NULL;
if (name)
{
switch (entry->d_tag)
{
case DT_NEEDED:
printf (_("Shared library: [%s]"), name);
if (filedata->program_interpreter
&& streq (name, filedata->program_interpreter))
printf (_(" program interpreter"));
break;
case DT_SONAME:
printf (_("Library soname: [%s]"), name);
break;
case DT_RPATH:
printf (_("Library rpath: [%s]"), name);
break;
case DT_RUNPATH:
printf (_("Library runpath: [%s]"), name);
break;
default:
print_vma (entry->d_un.d_val, PREFIX_HEX);
break;
}
}
else
print_vma (entry->d_un.d_val, PREFIX_HEX);
putchar ('\n');
}
break;
case DT_PLTRELSZ:
case DT_RELASZ :
case DT_STRSZ :
case DT_RELSZ :
case DT_RELAENT :
case DT_RELRENT :
case DT_RELRSZ :
case DT_SYMENT :
case DT_RELENT :
filedata->dynamic_info[entry->d_tag] = entry->d_un.d_val;
/* Fall through. */
case DT_PLTPADSZ:
case DT_MOVEENT :
case DT_MOVESZ :
case DT_PREINIT_ARRAYSZ:
case DT_INIT_ARRAYSZ:
case DT_FINI_ARRAYSZ:
case DT_GNU_CONFLICTSZ:
case DT_GNU_LIBLISTSZ:
if (do_dynamic)
{
print_vma (entry->d_un.d_val, UNSIGNED);
printf (_(" (bytes)\n"));
}
break;
case DT_VERDEFNUM:
case DT_VERNEEDNUM:
case DT_RELACOUNT:
case DT_RELCOUNT:
if (do_dynamic)
{
print_vma (entry->d_un.d_val, UNSIGNED);
putchar ('\n');
}
break;
case DT_SYMINSZ:
case DT_SYMINENT:
case DT_SYMINFO:
case DT_USED:
case DT_INIT_ARRAY:
case DT_FINI_ARRAY:
if (do_dynamic)
{
if (entry->d_tag == DT_USED
&& valid_dynamic_name (filedata, entry->d_un.d_val))
{
const char *name
= get_dynamic_name (filedata, entry->d_un.d_val);
if (*name)
{
printf (_("Not needed object: [%s]\n"), name);
break;
}
}
print_vma (entry->d_un.d_val, PREFIX_HEX);
putchar ('\n');
}
break;
case DT_BIND_NOW:
/* The value of this entry is ignored. */
if (do_dynamic)
putchar ('\n');
break;
case DT_GNU_PRELINKED:
if (do_dynamic)
{
struct tm * tmp;
time_t atime = entry->d_un.d_val;
tmp = gmtime (&atime);
/* PR 17533 file: 041-1244816-0.004. */
if (tmp == NULL)
printf (_("<corrupt time val: %" PRIx64),
(uint64_t) atime);
else
printf ("%04u-%02u-%02uT%02u:%02u:%02u\n",
tmp->tm_year + 1900, tmp->tm_mon + 1, tmp->tm_mday,
tmp->tm_hour, tmp->tm_min, tmp->tm_sec);
}
break;
case DT_GNU_HASH:
filedata->dynamic_info_DT_GNU_HASH = entry->d_un.d_val;
if (do_dynamic)
{
print_vma (entry->d_un.d_val, PREFIX_HEX);
putchar ('\n');
}
break;
case DT_GNU_FLAGS_1:
if (do_dynamic)
{
printf (_("Flags:"));
if (entry->d_un.d_val == 0)
printf (_(" None\n"));
else
{
uint64_t val = entry->d_un.d_val;
if (val & DF_GNU_1_UNIQUE)
{
printf (" UNIQUE");
val ^= DF_GNU_1_UNIQUE;
}
if (val != 0)
printf (" %" PRIx64, val);
puts ("");
}
}
break;
default:
if ((entry->d_tag >= DT_VERSYM) && (entry->d_tag <= DT_VERNEEDNUM))
filedata->version_info[DT_VERSIONTAGIDX (entry->d_tag)]
= entry->d_un.d_val;
if (do_dynamic)
{
switch (filedata->file_header.e_machine)
{
case EM_AARCH64:
dynamic_section_aarch64_val (entry);
break;
case EM_MIPS:
case EM_MIPS_RS3_LE:
dynamic_section_mips_val (filedata, entry);
break;
case EM_PARISC:
dynamic_section_parisc_val (entry);
break;
case EM_IA_64:
dynamic_section_ia64_val (entry);
break;
default:
print_vma (entry->d_un.d_val, PREFIX_HEX);
putchar ('\n');
}
}
break;
}
}
return true;
}
static char *
get_ver_flags (unsigned int flags)
{
static char buff[128];
buff[0] = 0;
if (flags == 0)
return _("none");
if (flags & VER_FLG_BASE)
strcat (buff, "BASE");
if (flags & VER_FLG_WEAK)
{
if (flags & VER_FLG_BASE)
strcat (buff, " | ");
strcat (buff, "WEAK");
}
if (flags & VER_FLG_INFO)
{
if (flags & (VER_FLG_BASE|VER_FLG_WEAK))
strcat (buff, " | ");
strcat (buff, "INFO");
}
if (flags & ~(VER_FLG_BASE | VER_FLG_WEAK | VER_FLG_INFO))
{
if (flags & (VER_FLG_BASE | VER_FLG_WEAK | VER_FLG_INFO))
strcat (buff, " | ");
strcat (buff, _("<unknown>"));
}
return buff;
}
/* Display the contents of the version sections. */
static bool
process_version_sections (Filedata * filedata)
{
Elf_Internal_Shdr * section;
unsigned i;
bool found = false;
if (! do_version)
return true;
for (i = 0, section = filedata->section_headers;
i < filedata->file_header.e_shnum;
i++, section++)
{
switch (section->sh_type)
{
case SHT_GNU_verdef:
{
Elf_External_Verdef * edefs;
size_t idx;
size_t cnt;
char * endbuf;
found = true;
if (filedata->is_separate)
printf (ngettext ("\nIn linked file '%s' the version definition section '%s' contains %u entry:\n",
"\nIn linked file '%s' the version definition section '%s' contains %u entries:\n",
section->sh_info),
filedata->file_name,
printable_section_name (filedata, section),
section->sh_info);
else
printf (ngettext ("\nVersion definition section '%s' "
"contains %u entry:\n",
"\nVersion definition section '%s' "
"contains %u entries:\n",
section->sh_info),
printable_section_name (filedata, section),
section->sh_info);
printf (_(" Addr: 0x%016" PRIx64), section->sh_addr);
printf (_(" Offset: 0x%08" PRIx64 " Link: %u (%s)\n"),
section->sh_offset, section->sh_link,
printable_section_name_from_index (filedata, section->sh_link, NULL));
edefs = (Elf_External_Verdef *)
get_data (NULL, filedata, section->sh_offset, 1,section->sh_size,
_("version definition section"));
if (!edefs)
break;
endbuf = (char *) edefs + section->sh_size;
for (idx = cnt = 0; cnt < section->sh_info; ++cnt)
{
char * vstart;
Elf_External_Verdef * edef;
Elf_Internal_Verdef ent;
Elf_External_Verdaux * eaux;
Elf_Internal_Verdaux aux;
size_t isum;
int j;
vstart = ((char *) edefs) + idx;
if (vstart + sizeof (*edef) > endbuf)
break;
edef = (Elf_External_Verdef *) vstart;
ent.vd_version = BYTE_GET (edef->vd_version);
ent.vd_flags = BYTE_GET (edef->vd_flags);
ent.vd_ndx = BYTE_GET (edef->vd_ndx);
ent.vd_cnt = BYTE_GET (edef->vd_cnt);
ent.vd_hash = BYTE_GET (edef->vd_hash);
ent.vd_aux = BYTE_GET (edef->vd_aux);
ent.vd_next = BYTE_GET (edef->vd_next);
printf (_(" %#06zx: Rev: %d Flags: %s"),
idx, ent.vd_version, get_ver_flags (ent.vd_flags));
printf (_(" Index: %d Cnt: %d "),
ent.vd_ndx, ent.vd_cnt);
/* Check for overflow. */
if (ent.vd_aux > (size_t) (endbuf - vstart))
break;
vstart += ent.vd_aux;
if (vstart + sizeof (*eaux) > endbuf)
break;
eaux = (Elf_External_Verdaux *) vstart;
aux.vda_name = BYTE_GET (eaux->vda_name);
aux.vda_next = BYTE_GET (eaux->vda_next);
if (valid_dynamic_name (filedata, aux.vda_name))
printf (_("Name: %s\n"),
get_dynamic_name (filedata, aux.vda_name));
else
printf (_("Name index: %ld\n"), aux.vda_name);
isum = idx + ent.vd_aux;
for (j = 1; j < ent.vd_cnt; j++)
{
if (aux.vda_next < sizeof (*eaux)
&& !(j == ent.vd_cnt - 1 && aux.vda_next == 0))
{
warn (_("Invalid vda_next field of %lx\n"),
aux.vda_next);
j = ent.vd_cnt;
break;
}
/* Check for overflow. */
if (aux.vda_next > (size_t) (endbuf - vstart))
break;
isum += aux.vda_next;
vstart += aux.vda_next;
if (vstart + sizeof (*eaux) > endbuf)
break;
eaux = (Elf_External_Verdaux *) vstart;
aux.vda_name = BYTE_GET (eaux->vda_name);
aux.vda_next = BYTE_GET (eaux->vda_next);
if (valid_dynamic_name (filedata, aux.vda_name))
printf (_(" %#06zx: Parent %d: %s\n"),
isum, j,
get_dynamic_name (filedata, aux.vda_name));
else
printf (_(" %#06zx: Parent %d, name index: %ld\n"),
isum, j, aux.vda_name);
}
if (j < ent.vd_cnt)
printf (_(" Version def aux past end of section\n"));
/* PR 17531:
file: id:000001,src:000172+005151,op:splice,rep:2. */
if (ent.vd_next < sizeof (*edef)
&& !(cnt == section->sh_info - 1 && ent.vd_next == 0))
{
warn (_("Invalid vd_next field of %lx\n"), ent.vd_next);
cnt = section->sh_info;
break;
}
if (ent.vd_next > (size_t) (endbuf - ((char *) edefs + idx)))
break;
idx += ent.vd_next;
}
if (cnt < section->sh_info)
printf (_(" Version definition past end of section\n"));
free (edefs);
}
break;
case SHT_GNU_verneed:
{
Elf_External_Verneed * eneed;
size_t idx;
size_t cnt;
char * endbuf;
found = true;
if (filedata->is_separate)
printf (ngettext ("\nIn linked file '%s' the version needs section '%s' contains %u entry:\n",
"\nIn linked file '%s' the version needs section '%s' contains %u entries:\n",
section->sh_info),
filedata->file_name,
printable_section_name (filedata, section),
section->sh_info);
else
printf (ngettext ("\nVersion needs section '%s' "
"contains %u entry:\n",
"\nVersion needs section '%s' "
"contains %u entries:\n",
section->sh_info),
printable_section_name (filedata, section),
section->sh_info);
printf (_(" Addr: 0x%016" PRIx64), section->sh_addr);
printf (_(" Offset: 0x%08" PRIx64 " Link: %u (%s)\n"),
section->sh_offset, section->sh_link,
printable_section_name_from_index (filedata, section->sh_link, NULL));
eneed = (Elf_External_Verneed *) get_data (NULL, filedata,
section->sh_offset, 1,
section->sh_size,
_("Version Needs section"));
if (!eneed)
break;
endbuf = (char *) eneed + section->sh_size;
for (idx = cnt = 0; cnt < section->sh_info; ++cnt)
{
Elf_External_Verneed * entry;
Elf_Internal_Verneed ent;
size_t isum;
int j;
char * vstart;
vstart = ((char *) eneed) + idx;
if (vstart + sizeof (*entry) > endbuf)
break;
entry = (Elf_External_Verneed *) vstart;
ent.vn_version = BYTE_GET (entry->vn_version);
ent.vn_cnt = BYTE_GET (entry->vn_cnt);
ent.vn_file = BYTE_GET (entry->vn_file);
ent.vn_aux = BYTE_GET (entry->vn_aux);
ent.vn_next = BYTE_GET (entry->vn_next);
printf (_(" %#06zx: Version: %d"), idx, ent.vn_version);
if (valid_dynamic_name (filedata, ent.vn_file))
printf (_(" File: %s"),
get_dynamic_name (filedata, ent.vn_file));
else
printf (_(" File: %lx"), ent.vn_file);
printf (_(" Cnt: %d\n"), ent.vn_cnt);
/* Check for overflow. */
if (ent.vn_aux > (size_t) (endbuf - vstart))
break;
vstart += ent.vn_aux;
for (j = 0, isum = idx + ent.vn_aux; j < ent.vn_cnt; ++j)
{
Elf_External_Vernaux * eaux;
Elf_Internal_Vernaux aux;
if (vstart + sizeof (*eaux) > endbuf)
break;
eaux = (Elf_External_Vernaux *) vstart;
aux.vna_hash = BYTE_GET (eaux->vna_hash);
aux.vna_flags = BYTE_GET (eaux->vna_flags);
aux.vna_other = BYTE_GET (eaux->vna_other);
aux.vna_name = BYTE_GET (eaux->vna_name);
aux.vna_next = BYTE_GET (eaux->vna_next);
if (valid_dynamic_name (filedata, aux.vna_name))
printf (_(" %#06zx: Name: %s"),
isum, get_dynamic_name (filedata, aux.vna_name));
else
printf (_(" %#06zx: Name index: %lx"),
isum, aux.vna_name);
printf (_(" Flags: %s Version: %d\n"),
get_ver_flags (aux.vna_flags), aux.vna_other);
if (aux.vna_next < sizeof (*eaux)
&& !(j == ent.vn_cnt - 1 && aux.vna_next == 0))
{
warn (_("Invalid vna_next field of %lx\n"),
aux.vna_next);
j = ent.vn_cnt;
break;
}
/* Check for overflow. */
if (aux.vna_next > (size_t) (endbuf - vstart))
break;
isum += aux.vna_next;
vstart += aux.vna_next;
}
if (j < ent.vn_cnt)
warn (_("Missing Version Needs auxiliary information\n"));
if (ent.vn_next < sizeof (*entry)
&& !(cnt == section->sh_info - 1 && ent.vn_next == 0))
{
warn (_("Invalid vn_next field of %lx\n"), ent.vn_next);
cnt = section->sh_info;
break;
}
if (ent.vn_next > (size_t) (endbuf - ((char *) eneed + idx)))
break;
idx += ent.vn_next;
}
if (cnt < section->sh_info)
warn (_("Missing Version Needs information\n"));
free (eneed);
}
break;
case SHT_GNU_versym:
{
Elf_Internal_Shdr * link_section;
uint64_t total;
unsigned int cnt;
unsigned char * edata;
unsigned short * data;
char * strtab;
Elf_Internal_Sym * symbols;
Elf_Internal_Shdr * string_sec;
uint64_t num_syms;
uint64_t off;
if (section->sh_link >= filedata->file_header.e_shnum)
break;
link_section = filedata->section_headers + section->sh_link;
total = section->sh_size / sizeof (Elf_External_Versym);
if (link_section->sh_link >= filedata->file_header.e_shnum)
break;
found = true;
symbols = get_elf_symbols (filedata, link_section, & num_syms);
if (symbols == NULL)
break;
string_sec = filedata->section_headers + link_section->sh_link;
strtab = (char *) get_data (NULL, filedata, string_sec->sh_offset, 1,
string_sec->sh_size,
_("version string table"));
if (!strtab)
{
free (symbols);
break;
}
if (filedata->is_separate)
printf (ngettext ("\nIn linked file '%s' the version symbols section '%s' contains %" PRIu64 " entry:\n",
"\nIn linked file '%s' the version symbols section '%s' contains %" PRIu64 " entries:\n",
total),
filedata->file_name,
printable_section_name (filedata, section),
total);
else
printf (ngettext ("\nVersion symbols section '%s' "
"contains %" PRIu64 " entry:\n",
"\nVersion symbols section '%s' "
"contains %" PRIu64 " entries:\n",
total),
printable_section_name (filedata, section),
total);
printf (_(" Addr: 0x%016" PRIx64), section->sh_addr);
printf (_(" Offset: 0x%08" PRIx64 " Link: %u (%s)\n"),
section->sh_offset, section->sh_link,
printable_section_name (filedata, link_section));
off = offset_from_vma (filedata,
filedata->version_info[DT_VERSIONTAGIDX (DT_VERSYM)],
total * sizeof (short));
edata = (unsigned char *) get_data (NULL, filedata, off,
sizeof (short), total,
_("version symbol data"));
if (!edata)
{
free (strtab);
free (symbols);
break;
}
data = (short unsigned int *) cmalloc (total, sizeof (short));
for (cnt = total; cnt --;)
data[cnt] = byte_get (edata + cnt * sizeof (short),
sizeof (short));
free (edata);
for (cnt = 0; cnt < total; cnt += 4)
{
int j, nn;
char *name;
char *invalid = _("*invalid*");
printf (" %03x:", cnt);
for (j = 0; (j < 4) && (cnt + j) < total; ++j)
switch (data[cnt + j])
{
case 0:
fputs (_(" 0 (*local*) "), stdout);
break;
case 1:
fputs (_(" 1 (*global*) "), stdout);
break;
default:
nn = printf ("%4x%c", data[cnt + j] & VERSYM_VERSION,
data[cnt + j] & VERSYM_HIDDEN ? 'h' : ' ');
/* If this index value is greater than the size of the symbols
array, break to avoid an out-of-bounds read. */
if (cnt + j >= num_syms)
{
warn (_("invalid index into symbol array\n"));
break;
}
name = NULL;
if (filedata->version_info[DT_VERSIONTAGIDX (DT_VERNEED)])
{
Elf_Internal_Verneed ivn;
uint64_t offset;
offset = offset_from_vma
(filedata,
filedata->version_info[DT_VERSIONTAGIDX (DT_VERNEED)],
sizeof (Elf_External_Verneed));
do
{
Elf_Internal_Vernaux ivna;
Elf_External_Verneed evn;
Elf_External_Vernaux evna;
uint64_t a_off;
if (get_data (&evn, filedata, offset, sizeof (evn), 1,
_("version need")) == NULL)
break;
ivn.vn_aux = BYTE_GET (evn.vn_aux);
ivn.vn_next = BYTE_GET (evn.vn_next);
a_off = offset + ivn.vn_aux;
do
{
if (get_data (&evna, filedata, a_off, sizeof (evna),
1, _("version need aux (2)")) == NULL)
{
ivna.vna_next = 0;
ivna.vna_other = 0;
}
else
{
ivna.vna_next = BYTE_GET (evna.vna_next);
ivna.vna_other = BYTE_GET (evna.vna_other);
}
a_off += ivna.vna_next;
}
while (ivna.vna_other != data[cnt + j]
&& ivna.vna_next != 0);
if (ivna.vna_other == data[cnt + j])
{
ivna.vna_name = BYTE_GET (evna.vna_name);
if (ivna.vna_name >= string_sec->sh_size)
name = invalid;
else
name = strtab + ivna.vna_name;
break;
}
offset += ivn.vn_next;
}
while (ivn.vn_next);
}
if (data[cnt + j] != 0x8001
&& filedata->version_info[DT_VERSIONTAGIDX (DT_VERDEF)])
{
Elf_Internal_Verdef ivd;
Elf_External_Verdef evd;
uint64_t offset;
offset = offset_from_vma
(filedata,
filedata->version_info[DT_VERSIONTAGIDX (DT_VERDEF)],
sizeof evd);
do
{
if (get_data (&evd, filedata, offset, sizeof (evd), 1,
_("version def")) == NULL)
{
ivd.vd_next = 0;
/* PR 17531: file: 046-1082287-0.004. */
ivd.vd_ndx = (data[cnt + j] & VERSYM_VERSION) + 1;
break;
}
else
{
ivd.vd_next = BYTE_GET (evd.vd_next);
ivd.vd_ndx = BYTE_GET (evd.vd_ndx);
}
offset += ivd.vd_next;
}
while (ivd.vd_ndx != (data[cnt + j] & VERSYM_VERSION)
&& ivd.vd_next != 0);
if (ivd.vd_ndx == (data[cnt + j] & VERSYM_VERSION))
{
Elf_External_Verdaux evda;
Elf_Internal_Verdaux ivda;
ivd.vd_aux = BYTE_GET (evd.vd_aux);
if (get_data (&evda, filedata,
offset - ivd.vd_next + ivd.vd_aux,
sizeof (evda), 1,
_("version def aux")) == NULL)
break;
ivda.vda_name = BYTE_GET (evda.vda_name);
if (ivda.vda_name >= string_sec->sh_size)
name = invalid;
else if (name != NULL && name != invalid)
name = _("*both*");
else
name = strtab + ivda.vda_name;
}
}
if (name != NULL)
nn += printf ("(%s%-*s",
name,
12 - (int) strlen (name),
")");
if (nn < 18)
printf ("%*c", 18 - nn, ' ');
}
putchar ('\n');
}
free (data);
free (strtab);
free (symbols);
}
break;
default:
break;
}
}
if (! found)
{
if (filedata->is_separate)
printf (_("\nNo version information found in linked file '%s'.\n"),
filedata->file_name);
else
printf (_("\nNo version information found in this file.\n"));
}
return true;
}
static const char *
get_symbol_binding (Filedata * filedata, unsigned int binding)
{
static char buff[64];
switch (binding)
{
case STB_LOCAL: return "LOCAL";
case STB_GLOBAL: return "GLOBAL";
case STB_WEAK: return "WEAK";
default:
if (binding >= STB_LOPROC && binding <= STB_HIPROC)
snprintf (buff, sizeof (buff), _("<processor specific>: %d"),
binding);
else if (binding >= STB_LOOS && binding <= STB_HIOS)
{
if (binding == STB_GNU_UNIQUE
&& filedata->file_header.e_ident[EI_OSABI] == ELFOSABI_GNU)
return "UNIQUE";
snprintf (buff, sizeof (buff), _("<OS specific>: %d"), binding);
}
else
snprintf (buff, sizeof (buff), _("<unknown>: %d"), binding);
return buff;
}
}
static const char *
get_symbol_type (Filedata * filedata, unsigned int type)
{
static char buff[64];
switch (type)
{
case STT_NOTYPE: return "NOTYPE";
case STT_OBJECT: return "OBJECT";
case STT_FUNC: return "FUNC";
case STT_SECTION: return "SECTION";
case STT_FILE: return "FILE";
case STT_COMMON: return "COMMON";
case STT_TLS: return "TLS";
case STT_RELC: return "RELC";
case STT_SRELC: return "SRELC";
default:
if (type >= STT_LOPROC && type <= STT_HIPROC)
{
if (filedata->file_header.e_machine == EM_ARM && type == STT_ARM_TFUNC)
return "THUMB_FUNC";
if (filedata->file_header.e_machine == EM_SPARCV9 && type == STT_REGISTER)
return "REGISTER";
if (filedata->file_header.e_machine == EM_PARISC && type == STT_PARISC_MILLI)
return "PARISC_MILLI";
snprintf (buff, sizeof (buff), _("<processor specific>: %d"), type);
}
else if (type >= STT_LOOS && type <= STT_HIOS)
{
if (filedata->file_header.e_machine == EM_PARISC)
{
if (type == STT_HP_OPAQUE)
return "HP_OPAQUE";
if (type == STT_HP_STUB)
return "HP_STUB";
}
if (type == STT_GNU_IFUNC
&& (filedata->file_header.e_ident[EI_OSABI] == ELFOSABI_GNU
|| filedata->file_header.e_ident[EI_OSABI] == ELFOSABI_FREEBSD))
return "IFUNC";
snprintf (buff, sizeof (buff), _("<OS specific>: %d"), type);
}
else
snprintf (buff, sizeof (buff), _("<unknown>: %d"), type);
return buff;
}
}
static const char *
get_symbol_visibility (unsigned int visibility)
{
switch (visibility)
{
case STV_DEFAULT: return "DEFAULT";
case STV_INTERNAL: return "INTERNAL";
case STV_HIDDEN: return "HIDDEN";
case STV_PROTECTED: return "PROTECTED";
default:
error (_("Unrecognized visibility value: %u\n"), visibility);
return _("<unknown>");
}
}
static const char *
get_alpha_symbol_other (unsigned int other)
{
switch (other)
{
case STO_ALPHA_NOPV: return "NOPV";
case STO_ALPHA_STD_GPLOAD: return "STD GPLOAD";
default:
error (_("Unrecognized alpha specific other value: %u\n"), other);
return _("<unknown>");
}
}
static const char *
get_solaris_symbol_visibility (unsigned int visibility)
{
switch (visibility)
{
case 4: return "EXPORTED";
case 5: return "SINGLETON";
case 6: return "ELIMINATE";
default: return get_symbol_visibility (visibility);
}
}
static const char *
get_aarch64_symbol_other (unsigned int other)
{
static char buf[32];
if (other & STO_AARCH64_VARIANT_PCS)
{
other &= ~STO_AARCH64_VARIANT_PCS;
if (other == 0)
return "VARIANT_PCS";
snprintf (buf, sizeof buf, "VARIANT_PCS | %x", other);
return buf;
}
return NULL;
}
static const char *
get_mips_symbol_other (unsigned int other)
{
switch (other)
{
case STO_OPTIONAL: return "OPTIONAL";
case STO_MIPS_PLT: return "MIPS PLT";
case STO_MIPS_PIC: return "MIPS PIC";
case STO_MICROMIPS: return "MICROMIPS";
case STO_MICROMIPS | STO_MIPS_PIC: return "MICROMIPS, MIPS PIC";
case STO_MIPS16: return "MIPS16";
default: return NULL;
}
}
static const char *
get_ia64_symbol_other (Filedata * filedata, unsigned int other)
{
if (is_ia64_vms (filedata))
{
static char res[32];
res[0] = 0;
/* Function types is for images and .STB files only. */
switch (filedata->file_header.e_type)
{
case ET_DYN:
case ET_EXEC:
switch (VMS_ST_FUNC_TYPE (other))
{
case VMS_SFT_CODE_ADDR:
strcat (res, " CA");
break;
case VMS_SFT_SYMV_IDX:
strcat (res, " VEC");
break;
case VMS_SFT_FD:
strcat (res, " FD");
break;
case VMS_SFT_RESERVE:
strcat (res, " RSV");
break;
default:
warn (_("Unrecognized IA64 VMS ST Function type: %d\n"),
VMS_ST_FUNC_TYPE (other));
strcat (res, " <unknown>");
break;
}
break;
default:
break;
}
switch (VMS_ST_LINKAGE (other))
{
case VMS_STL_IGNORE:
strcat (res, " IGN");
break;
case VMS_STL_RESERVE:
strcat (res, " RSV");
break;
case VMS_STL_STD:
strcat (res, " STD");
break;
case VMS_STL_LNK:
strcat (res, " LNK");
break;
default:
warn (_("Unrecognized IA64 VMS ST Linkage: %d\n"),
VMS_ST_LINKAGE (other));
strcat (res, " <unknown>");
break;
}
if (res[0] != 0)
return res + 1;
else
return res;
}
return NULL;
}
static const char *
get_ppc64_symbol_other (unsigned int other)
{
if ((other & ~STO_PPC64_LOCAL_MASK) != 0)
return NULL;
other >>= STO_PPC64_LOCAL_BIT;
if (other <= 6)
{
static char buf[64];
if (other >= 2)
other = ppc64_decode_local_entry (other);
snprintf (buf, sizeof buf, _("<localentry>: %d"), other);
return buf;
}
return NULL;
}
static const char *
get_riscv_symbol_other (unsigned int other)
{
static char buf[32];
buf[0] = 0;
if (other & STO_RISCV_VARIANT_CC)
{
strcat (buf, _(" VARIANT_CC"));
other &= ~STO_RISCV_VARIANT_CC;
}
if (other != 0)
snprintf (buf, sizeof buf, " %x", other);
if (buf[0] != 0)
return buf + 1;
else
return buf;
}
static const char *
get_symbol_other (Filedata * filedata, unsigned int other)
{
const char * result = NULL;
static char buff [64];
if (other == 0)
return "";
switch (filedata->file_header.e_machine)
{
case EM_ALPHA:
result = get_alpha_symbol_other (other);
break;
case EM_AARCH64:
result = get_aarch64_symbol_other (other);
break;
case EM_MIPS:
result = get_mips_symbol_other (other);
break;
case EM_IA_64:
result = get_ia64_symbol_other (filedata, other);
break;
case EM_PPC64:
result = get_ppc64_symbol_other (other);
break;
case EM_RISCV:
result = get_riscv_symbol_other (other);
break;
default:
result = NULL;
break;
}
if (result)
return result;
snprintf (buff, sizeof buff, _("<other>: %x"), other);
return buff;
}
static const char *
get_symbol_version_string (Filedata *filedata,
bool is_dynsym,
const char *strtab,
size_t strtab_size,
unsigned int si,
Elf_Internal_Sym *psym,
enum versioned_symbol_info *sym_info,
unsigned short *vna_other)
{
unsigned char data[2];
unsigned short vers_data;
uint64_t offset;
unsigned short max_vd_ndx;
if (!is_dynsym
|| filedata->version_info[DT_VERSIONTAGIDX (DT_VERSYM)] == 0)
return NULL;
offset = offset_from_vma (filedata,
filedata->version_info[DT_VERSIONTAGIDX (DT_VERSYM)],
sizeof data + si * sizeof (vers_data));
if (get_data (&data, filedata, offset + si * sizeof (vers_data),
sizeof (data), 1, _("version data")) == NULL)
return NULL;
vers_data = byte_get (data, 2);
if ((vers_data & VERSYM_HIDDEN) == 0 && vers_data == 0)
return NULL;
*sym_info = (vers_data & VERSYM_HIDDEN) != 0 ? symbol_hidden : symbol_public;
max_vd_ndx = 0;
/* Usually we'd only see verdef for defined symbols, and verneed for
undefined symbols. However, symbols defined by the linker in
.dynbss for variables copied from a shared library in order to
avoid text relocations are defined yet have verneed. We could
use a heuristic to detect the special case, for example, check
for verneed first on symbols defined in SHT_NOBITS sections, but
it is simpler and more reliable to just look for both verdef and
verneed. .dynbss might not be mapped to a SHT_NOBITS section. */
if (psym->st_shndx != SHN_UNDEF
&& vers_data != 0x8001
&& filedata->version_info[DT_VERSIONTAGIDX (DT_VERDEF)])
{
Elf_Internal_Verdef ivd;
Elf_Internal_Verdaux ivda;
Elf_External_Verdaux evda;
uint64_t off;
off = offset_from_vma (filedata,
filedata->version_info[DT_VERSIONTAGIDX (DT_VERDEF)],
sizeof (Elf_External_Verdef));
do
{
Elf_External_Verdef evd;
if (get_data (&evd, filedata, off, sizeof (evd), 1,
_("version def")) == NULL)
{
ivd.vd_ndx = 0;
ivd.vd_aux = 0;
ivd.vd_next = 0;
ivd.vd_flags = 0;
}
else
{
ivd.vd_ndx = BYTE_GET (evd.vd_ndx);
ivd.vd_aux = BYTE_GET (evd.vd_aux);
ivd.vd_next = BYTE_GET (evd.vd_next);
ivd.vd_flags = BYTE_GET (evd.vd_flags);
}
if ((ivd.vd_ndx & VERSYM_VERSION) > max_vd_ndx)
max_vd_ndx = ivd.vd_ndx & VERSYM_VERSION;
off += ivd.vd_next;
}
while (ivd.vd_ndx != (vers_data & VERSYM_VERSION) && ivd.vd_next != 0);
if (ivd.vd_ndx == (vers_data & VERSYM_VERSION))
{
if (ivd.vd_ndx == 1 && ivd.vd_flags == VER_FLG_BASE)
return NULL;
off -= ivd.vd_next;
off += ivd.vd_aux;
if (get_data (&evda, filedata, off, sizeof (evda), 1,
_("version def aux")) != NULL)
{
ivda.vda_name = BYTE_GET (evda.vda_name);
if (psym->st_name != ivda.vda_name)
return (ivda.vda_name < strtab_size
? strtab + ivda.vda_name : _("<corrupt>"));
}
}
}
if (filedata->version_info[DT_VERSIONTAGIDX (DT_VERNEED)])
{
Elf_External_Verneed evn;
Elf_Internal_Verneed ivn;
Elf_Internal_Vernaux ivna;
offset = offset_from_vma (filedata,
filedata->version_info[DT_VERSIONTAGIDX (DT_VERNEED)],
sizeof evn);
do
{
uint64_t vna_off;
if (get_data (&evn, filedata, offset, sizeof (evn), 1,
_("version need")) == NULL)
{
ivna.vna_next = 0;
ivna.vna_other = 0;
ivna.vna_name = 0;
break;
}
ivn.vn_aux = BYTE_GET (evn.vn_aux);
ivn.vn_next = BYTE_GET (evn.vn_next);
vna_off = offset + ivn.vn_aux;
do
{
Elf_External_Vernaux evna;
if (get_data (&evna, filedata, vna_off, sizeof (evna), 1,
_("version need aux (3)")) == NULL)
{
ivna.vna_next = 0;
ivna.vna_other = 0;
ivna.vna_name = 0;
}
else
{
ivna.vna_other = BYTE_GET (evna.vna_other);
ivna.vna_next = BYTE_GET (evna.vna_next);
ivna.vna_name = BYTE_GET (evna.vna_name);
}
vna_off += ivna.vna_next;
}
while (ivna.vna_other != vers_data && ivna.vna_next != 0);
if (ivna.vna_other == vers_data)
break;
offset += ivn.vn_next;
}
while (ivn.vn_next != 0);
if (ivna.vna_other == vers_data)
{
*sym_info = symbol_undefined;
*vna_other = ivna.vna_other;
return (ivna.vna_name < strtab_size
? strtab + ivna.vna_name : _("<corrupt>"));
}
else if ((max_vd_ndx || (vers_data & VERSYM_VERSION) != 1)
&& (vers_data & VERSYM_VERSION) > max_vd_ndx)
return _("<corrupt>");
}
return NULL;
}
/* Display a symbol size on stdout. Format is based on --sym-base setting. */
static unsigned int
print_symbol_size (uint64_t vma, int base)
{
switch (base)
{
case 8:
return print_vma (vma, OCTAL_5);
case 10:
return print_vma (vma, UNSIGNED_5);
case 16:
return print_vma (vma, PREFIX_HEX_5);
case 0:
default:
return print_vma (vma, DEC_5);
}
}
/* Print information on a single symbol. */
static void
print_symbol (Filedata * filedata,
uint64_t symbol_index,
Elf_Internal_Sym * symtab,
Elf_Internal_Shdr * section,
char * strtab,
size_t strtab_size)
{
const char *version_string;
enum versioned_symbol_info sym_info;
unsigned short vna_other;
const char * sstr;
Elf_Internal_Sym *psym = symtab + symbol_index;
/* FIXME: We should have a table of field widths,
rather than using hard coded constants. */
printf ("%6" PRId64 ": ", symbol_index);
print_vma (psym->st_value, LONG_HEX);
putchar (' ');
print_symbol_size (psym->st_size, sym_base);
printf (" %-7s", get_symbol_type (filedata, ELF_ST_TYPE (psym->st_info)));
printf (" %-6s", get_symbol_binding (filedata, ELF_ST_BIND (psym->st_info)));
if (filedata->file_header.e_ident[EI_OSABI] == ELFOSABI_SOLARIS)
printf (" %-7s", get_solaris_symbol_visibility (psym->st_other));
else
{
unsigned int vis = ELF_ST_VISIBILITY (psym->st_other);
printf (" %-7s", get_symbol_visibility (vis));
/* Check to see if any other bits in the st_other field are set.
FIXME: Displaying this information here disrupts the layout
of the table being generated. */
if (psym->st_other ^ vis)
printf (" [%s] ", get_symbol_other (filedata, psym->st_other ^ vis));
}
bool is_special;
sstr = printable_section_name_from_index (filedata, psym->st_shndx, & is_special);
/* Print the symbol's section index. If the index is special
then print the index's name rather than its number. */
if (is_special)
{
int printed;
/* Special case: If there are no section headers, and the printable
name is "<section 0x...." then just display the section number
as a decimal. This happens when objcopy --strip -section-headers
is used. */
if (filedata->file_header.e_shnum == 0 && startswith (sstr, "<section"))
printed = printf (" %4d ", psym->st_shndx);
else
printed = printf (" %4s ", sstr);
if (extra_sym_info && printed < 16)
printf ("%*s", 16 - printed, "");
}
else
{
printf (" %4u ", psym->st_shndx);
if (extra_sym_info)
{
/* Display the section name referenced by the section index. */
int printed = printf ("(%s) ", sstr);
if (printed < 10)
printf ("%*s", 10 - printed, "");
}
}
/* Get the symbol's name. For section symbols without a
specific name use the (already computed) section name. */
if (ELF_ST_TYPE (psym->st_info) == STT_SECTION
&& section_index_real (filedata, psym->st_shndx)
&& psym->st_name == 0)
{
;
}
else
{
bool is_valid;
is_valid = valid_symbol_name (strtab, strtab_size, psym->st_name);
sstr = is_valid ? strtab + psym->st_name : _("<corrupt>");
}
version_string
= get_symbol_version_string (filedata,
(section == NULL
|| section->sh_type == SHT_DYNSYM),
strtab, strtab_size, symbol_index,
psym, &sym_info, &vna_other);
int len_avail = 21;
if (! do_wide && version_string != NULL)
{
char buffer[16];
len_avail -= 1 + strlen (version_string);
if (sym_info == symbol_undefined)
len_avail -= sprintf (buffer," (%d)", vna_other);
else if (sym_info != symbol_hidden)
len_avail -= 1;
}
print_symbol_name (len_avail, sstr);
if (version_string)
{
if (sym_info == symbol_undefined)
printf ("@%s (%d)", version_string, vna_other);
else
printf (sym_info == symbol_hidden ? "@%s" : "@@%s",
version_string);
}
putchar ('\n');
if (ELF_ST_BIND (psym->st_info) == STB_LOCAL
&& section != NULL
&& symbol_index >= section->sh_info
/* Irix 5 and 6 MIPS binaries are known to ignore this requirement. */
&& filedata->file_header.e_machine != EM_MIPS
/* Solaris binaries have been found to violate this requirement as
well. Not sure if this is a bug or an ABI requirement. */
&& filedata->file_header.e_ident[EI_OSABI] != ELFOSABI_SOLARIS)
warn (_("local symbol %" PRIu64 " found at index >= %s's sh_info value of %u\n"),
symbol_index, printable_section_name (filedata, section), section->sh_info);
}
static const char *
get_lto_kind (unsigned int kind)
{
switch (kind)
{
case 0: return "DEF";
case 1: return "WEAKDEF";
case 2: return "UNDEF";
case 3: return "WEAKUNDEF";
case 4: return "COMMON";
default:
break;
}
static char buffer[30];
error (_("Unknown LTO symbol definition encountered: %u\n"), kind);
sprintf (buffer, "<unknown: %u>", kind);
return buffer;
}
static const char *
get_lto_visibility (unsigned int visibility)
{
switch (visibility)
{
case 0: return "DEFAULT";
case 1: return "PROTECTED";
case 2: return "INTERNAL";
case 3: return "HIDDEN";
default:
break;
}
static char buffer[30];
error (_("Unknown LTO symbol visibility encountered: %u\n"), visibility);
sprintf (buffer, "<unknown: %u>", visibility);
return buffer;
}
static const char *
get_lto_sym_type (unsigned int sym_type)
{
switch (sym_type)
{
case 0: return "UNKNOWN";
case 1: return "FUNCTION";
case 2: return "VARIABLE";
default:
break;
}
static char buffer[30];
error (_("Unknown LTO symbol type encountered: %u\n"), sym_type);
sprintf (buffer, "<unknown: %u>", sym_type);
return buffer;
}
/* Display an LTO format symbol table.
FIXME: The format of LTO symbol tables is not formalized.
So this code could need changing in the future. */
static bool
display_lto_symtab (Filedata * filedata,
Elf_Internal_Shdr * section)
{
if (section->sh_size == 0)
{
if (filedata->is_separate)
printf (_("\nThe LTO Symbol table section '%s' in linked file '%s' is empty!\n"),
printable_section_name (filedata, section),
filedata->file_name);
else
printf (_("\nLTO Symbol table '%s' is empty!\n"),
printable_section_name (filedata, section));
return true;
}
if (section->sh_size > filedata->file_size)
{
error (_("Section %s has an invalid sh_size of %#" PRIx64 "\n"),
printable_section_name (filedata, section),
section->sh_size);
return false;
}
void * alloced_data = get_data (NULL, filedata, section->sh_offset,
section->sh_size, 1, _("LTO symbols"));
if (alloced_data == NULL)
return false;
/* Look for extended data for the symbol table. */
void * ext_data_orig = NULL;
char * ext_data = NULL;
char * ext_data_end = NULL;
char *ext_name = xasprintf (".gnu.lto_.ext_symtab.%s",
(section_name (filedata, section)
+ sizeof (".gnu.lto_.symtab.")));
Elf_Internal_Shdr *ext = find_section (filedata, ext_name);
if (ext != NULL)
{
if (ext->sh_size < 3)
error (_("LTO Symbol extension table '%s' is empty!\n"),
printable_section_name (filedata, ext));
else
{
ext_data_orig = ext_data = get_data (NULL, filedata, ext->sh_offset,
ext->sh_size, 1,
_("LTO ext symbol data"));
if (ext_data != NULL)
{
ext_data_end = ext_data + ext->sh_size;
if (* ext_data++ != 1)
error (_("Unexpected version number in symbol extension table\n"));
}
}
}
const unsigned char * data = (const unsigned char *) alloced_data;
const unsigned char * end = data + section->sh_size;
if (filedata->is_separate)
printf (_("\nIn linked file '%s': "), filedata->file_name);
else
printf ("\n");
if (ext_data_orig != NULL)
{
if (do_wide)
printf (_("LTO Symbol table '%s' and extension table '%s' contain:\n"),
printable_section_name (filedata, section),
printable_section_name (filedata, ext));
else
{
printf (_("LTO Symbol table '%s'\n"),
printable_section_name (filedata, section));
printf (_(" and extension table '%s' contain:\n"),
printable_section_name (filedata, ext));
}
}
else
printf (_("LTO Symbol table '%s' contains:\n"),
printable_section_name (filedata, section));
/* FIXME: Add a wide version. */
if (ext_data_orig != NULL)
printf (_(" Comdat_Key Kind Visibility Size Slot Type Section Name\n"));
else
printf (_(" Comdat_Key Kind Visibility Size Slot Name\n"));
/* FIXME: We do not handle style prefixes. */
while (data < end)
{
const unsigned char * sym_name = data;
data += strnlen ((const char *) sym_name, end - data) + 1;
if (data >= end)
goto fail;
const unsigned char * comdat_key = data;
data += strnlen ((const char *) comdat_key, end - data) + 1;
if (data >= end)
goto fail;
if (data + 2 + 8 + 4 > end)
goto fail;
unsigned int kind = *data++;
unsigned int visibility = *data++;
uint64_t size = byte_get (data, 8);
data += 8;
uint64_t slot = byte_get (data, 4);
data += 4;
if (ext_data != NULL)
{
if (ext_data < (ext_data_end - 1))
{
unsigned int sym_type = * ext_data ++;
unsigned int sec_kind = * ext_data ++;
printf (" %10s %10s %11s %08" PRIx64 " %08" PRIx64 " %9s %08x _",
* comdat_key == 0 ? "-" : (char *) comdat_key,
get_lto_kind (kind),
get_lto_visibility (visibility),
size,
slot,
get_lto_sym_type (sym_type),
sec_kind);
print_symbol_name (6, (const char *) sym_name);
}
else
{
error (_("Ran out of LTO symbol extension data\n"));
ext_data = NULL;
/* FIXME: return FAIL result ? */
}
}
else
{
printf (" %10s %10s %11s %08" PRIx64 " %08" PRIx64 " _",
* comdat_key == 0 ? "-" : (char *) comdat_key,
get_lto_kind (kind),
get_lto_visibility (visibility),
size,
slot);
print_symbol_name (21, (const char *) sym_name);
}
putchar ('\n');
}
if (ext_data != NULL && ext_data < ext_data_end)
{
error (_("Data remains in the LTO symbol extension table\n"));
goto fail;
}
free (alloced_data);
free (ext_data_orig);
free (ext_name);
return true;
fail:
error (_("Buffer overrun encountered whilst decoding LTO symbol table\n"));
free (alloced_data);
free (ext_data_orig);
free (ext_name);
return false;
}
/* Display LTO symbol tables. */
static bool
process_lto_symbol_tables (Filedata * filedata)
{
Elf_Internal_Shdr * section;
unsigned int i;
bool res = true;
if (!do_lto_syms)
return true;
if (filedata->section_headers == NULL)
return true;
for (i = 0, section = filedata->section_headers;
i < filedata->file_header.e_shnum;
i++, section++)
if (section_name_valid (filedata, section)
&& startswith (section_name (filedata, section), ".gnu.lto_.symtab."))
res &= display_lto_symtab (filedata, section);
return res;
}
static void
print_symbol_table_heading (void)
{
/* FIXME: We should store the size of each field in the display in a table and
then use the values inside print_symbol(), instead of that function using
hard coded constants. */
if (is_32bit_elf)
{
if (extra_sym_info)
{
printf (_(" Num: Value Size Type Bind Vis+Other Ndx(SecName) Name [+ Version Info]\n"));
/* |--6-|: |--8---| |-5-| |--7--| |-6--| |--7--| |---8--| |----13.....| |........... */
/* eg: 5: 00000000 14 FUNC LOCAL DEFAULT 1 (.text) get_sections */
}
else if (do_wide)
{
printf (_(" Num: Value Size Type Bind Vis Ndx Name\n"));
/* |--6-|: |--8---| |-5-| |--7--| |-6--| |--7--| |-4| |........... */
/* eg: 5: 00000000 14 FUNC LOCAL DEFAULT 1 get_sections */
}
else
{
printf (_(" Num: Value Size Type Bind Vis Ndx Name\n"));
/* |--6-|: |--8---| |-5-| |--7--| |-6--| |--7--| |-4| |------------29-------------| */
/* eg: 5: 00000000 14 FUNC LOCAL DEFAULT 1 get_sections */
}
}
else
{
if (extra_sym_info)
{
printf (_(" Num: Value Size Type Bind Vis+Other Ndx(SecName) Name [+ Version Info]\n"));
/* |--6-|: |------16------| |-5-| |--7--| |-6--| |--7--| |-------14---| |..... */
/* eg: 2: 0000000000000000 0 FUNC LOCAL DEFAULT 1 (.text) .very_long_function_name */
}
else if (do_wide)
{
printf (_(" Num: Value Size Type Bind Vis Ndx Name\n"));
/* |--6-|: |------16------| |-5-| |--7--| |-6--| |--7--| |-4| |........... */
/* eg: 5: 0000000000000000 14 FUNC LOCAL DEFAULT 1 very_long_function_name */
}
else
{
printf (_(" Num: Value Size Type Bind Vis Ndx Name\n"));
/* |--6-|: |------16------| |-5-| |--7--| |-6--| |--7--| |-4| |--------21---------| */
/* eg: 5: 0000000000000000 14 FUNC LOCAL DEFAULT 1 very_long_functi[...] */
}
}
}
static bool
dump_symbol_section (Elf_Internal_Shdr * section,
Filedata * filedata)
{
if (section->sh_entsize == 0)
{
printf (_("\nSymbol table '%s' has a sh_entsize of zero!\n"),
printable_section_name (filedata, section));
return false;
}
uint64_t num_syms = section->sh_size / section->sh_entsize;
if (filedata->is_separate)
printf (ngettext ("\nIn linked file '%s' symbol section '%s'"
" contains %" PRIu64 " entry:\n",
"\nIn linked file '%s' symbol section '%s'"
" contains %" PRIu64 " entries:\n",
num_syms),
filedata->file_name,
printable_section_name (filedata, section),
num_syms);
else
printf (ngettext ("\nSymbol table '%s' contains %" PRIu64
" entry:\n",
"\nSymbol table '%s' contains %" PRIu64
" entries:\n",
num_syms),
printable_section_name (filedata, section),
num_syms);
print_symbol_table_heading ();
Elf_Internal_Sym * symtab = get_elf_symbols (filedata, section, & num_syms);
if (symtab == NULL)
/* An error message will have already been displayed. */
return false;
char * strtab = NULL;
uint64_t strtab_size = 0;
if (section->sh_link == filedata->file_header.e_shstrndx)
{
strtab = filedata->string_table;
strtab_size = filedata->string_table_length;
}
else if (section->sh_link < filedata->file_header.e_shnum)
{
Elf_Internal_Shdr * string_sec;
string_sec = filedata->section_headers + section->sh_link;
strtab = (char *) get_data (NULL, filedata, string_sec->sh_offset,
1, string_sec->sh_size,
_("string table"));
strtab_size = strtab != NULL ? string_sec->sh_size : 0;
}
uint64_t si;
for (si = 0; si < num_syms; si++)
print_symbol (filedata, si, symtab, section, strtab, strtab_size);
free (symtab);
if (strtab != filedata->string_table)
free (strtab);
return true;
}
/* Dump the symbol table. */
static bool
process_symbol_table (Filedata * filedata)
{
Elf_Internal_Shdr * section;
if (!do_syms && !do_dyn_syms && !do_histogram)
return true;
if ((filedata->dynamic_info[DT_HASH] || filedata->dynamic_info_DT_GNU_HASH)
&& do_syms
&& do_using_dynamic
&& filedata->dynamic_strings != NULL
&& filedata->dynamic_symbols != NULL)
{
uint64_t si;
if (filedata->is_separate)
{
printf (ngettext ("\nIn linked file '%s' the dynamic symbol table"
" contains %" PRIu64 " entry:\n",
"\nIn linked file '%s' the dynamic symbol table"
" contains %" PRIu64 " entries:\n",
filedata->num_dynamic_syms),
filedata->file_name,
filedata->num_dynamic_syms);
}
else
{
printf (ngettext ("\nSymbol table for image contains %" PRIu64
" entry:\n",
"\nSymbol table for image contains %" PRIu64
" entries:\n",
filedata->num_dynamic_syms),
filedata->num_dynamic_syms);
}
print_symbol_table_heading ();
for (si = 0; si < filedata->num_dynamic_syms; si++)
print_symbol (filedata, si, filedata->dynamic_symbols, NULL,
filedata->dynamic_strings,
filedata->dynamic_strings_length);
}
else if ((do_dyn_syms || (do_syms && !do_using_dynamic))
&& filedata->section_headers != NULL)
{
unsigned int i;
for (i = 0, section = filedata->section_headers;
i < filedata->file_header.e_shnum;
i++, section++)
{
if ((section->sh_type != SHT_SYMTAB
&& section->sh_type != SHT_DYNSYM)
|| (!do_syms
&& section->sh_type == SHT_SYMTAB))
continue;
dump_symbol_section (section, filedata);
}
}
else if (do_syms)
printf
(_("\nDynamic symbol information is not available for displaying symbols.\n"));
if (do_histogram && filedata->buckets != NULL)
{
uint64_t *lengths;
uint64_t *counts;
uint64_t hn;
uint64_t si;
uint64_t maxlength = 0;
uint64_t nzero_counts = 0;
uint64_t nsyms = 0;
char *visited;
printf (ngettext ("\nHistogram for bucket list length "
"(total of %" PRIu64 " bucket):\n",
"\nHistogram for bucket list length "
"(total of %" PRIu64 " buckets):\n",
filedata->nbuckets),
filedata->nbuckets);
lengths = calloc (filedata->nbuckets, sizeof (*lengths));
if (lengths == NULL)
{
error (_("Out of memory allocating space for histogram buckets\n"));
goto err_out;
}
visited = xcmalloc (filedata->nchains, 1);
memset (visited, 0, filedata->nchains);
printf (_(" Length Number %% of total Coverage\n"));
for (hn = 0; hn < filedata->nbuckets; ++hn)
{
for (si = filedata->buckets[hn]; si > 0; si = filedata->chains[si])
{
++nsyms;
if (maxlength < ++lengths[hn])
++maxlength;
if (si >= filedata->nchains || visited[si])
{
error (_("histogram chain is corrupt\n"));
break;
}
visited[si] = 1;
}
}
free (visited);
counts = calloc (maxlength + 1, sizeof (*counts));
if (counts == NULL)
{
free (lengths);
error (_("Out of memory allocating space for histogram counts\n"));
goto err_out;
}
for (hn = 0; hn < filedata->nbuckets; ++hn)
++counts[lengths[hn]];
if (filedata->nbuckets > 0)
{
uint64_t i;
printf (" 0 %-10" PRIu64 " (%5.1f%%)\n",
counts[0], (counts[0] * 100.0) / filedata->nbuckets);
for (i = 1; i <= maxlength; ++i)
{
nzero_counts += counts[i] * i;
printf ("%7" PRIu64 " %-10" PRIu64 " (%5.1f%%) %5.1f%%\n",
i, counts[i], (counts[i] * 100.0) / filedata->nbuckets,
(nzero_counts * 100.0) / nsyms);
}
}
free (counts);
free (lengths);
}
free (filedata->buckets);
filedata->buckets = NULL;
filedata->nbuckets = 0;
free (filedata->chains);
filedata->chains = NULL;
if (do_histogram && filedata->gnubuckets != NULL)
{
uint64_t *lengths;
uint64_t *counts;
uint64_t hn;
uint64_t maxlength = 0;
uint64_t nzero_counts = 0;
uint64_t nsyms = 0;
printf (ngettext ("\nHistogram for `%s' bucket list length "
"(total of %" PRIu64 " bucket):\n",
"\nHistogram for `%s' bucket list length "
"(total of %" PRIu64 " buckets):\n",
filedata->ngnubuckets),
GNU_HASH_SECTION_NAME (filedata),
filedata->ngnubuckets);
lengths = calloc (filedata->ngnubuckets, sizeof (*lengths));
if (lengths == NULL)
{
error (_("Out of memory allocating space for gnu histogram buckets\n"));
goto err_out;
}
printf (_(" Length Number %% of total Coverage\n"));
for (hn = 0; hn < filedata->ngnubuckets; ++hn)
if (filedata->gnubuckets[hn] != 0)
{
uint64_t off, length = 1;
for (off = filedata->gnubuckets[hn] - filedata->gnusymidx;
/* PR 17531 file: 010-77222-0.004. */
off < filedata->ngnuchains
&& (filedata->gnuchains[off] & 1) == 0;
++off)
++length;
lengths[hn] = length;
if (length > maxlength)
maxlength = length;
nsyms += length;
}
counts = calloc (maxlength + 1, sizeof (*counts));
if (counts == NULL)
{
free (lengths);
error (_("Out of memory allocating space for gnu histogram counts\n"));
goto err_out;
}
for (hn = 0; hn < filedata->ngnubuckets; ++hn)
++counts[lengths[hn]];
if (filedata->ngnubuckets > 0)
{
uint64_t j;
printf (" 0 %-10" PRIu64 " (%5.1f%%)\n",
counts[0], (counts[0] * 100.0) / filedata->ngnubuckets);
for (j = 1; j <= maxlength; ++j)
{
nzero_counts += counts[j] * j;
printf ("%7" PRIu64 " %-10" PRIu64 " (%5.1f%%) %5.1f%%\n",
j, counts[j], (counts[j] * 100.0) / filedata->ngnubuckets,
(nzero_counts * 100.0) / nsyms);
}
}
free (counts);
free (lengths);
}
free (filedata->gnubuckets);
filedata->gnubuckets = NULL;
filedata->ngnubuckets = 0;
free (filedata->gnuchains);
filedata->gnuchains = NULL;
filedata->ngnuchains = 0;
free (filedata->mipsxlat);
filedata->mipsxlat = NULL;
return true;
err_out:
free (filedata->gnubuckets);
filedata->gnubuckets = NULL;
filedata->ngnubuckets = 0;
free (filedata->gnuchains);
filedata->gnuchains = NULL;
filedata->ngnuchains = 0;
free (filedata->mipsxlat);
filedata->mipsxlat = NULL;
free (filedata->buckets);
filedata->buckets = NULL;
filedata->nbuckets = 0;
free (filedata->chains);
filedata->chains = NULL;
return false;
}
static bool
process_syminfo (Filedata * filedata)
{
unsigned int i;
if (filedata->dynamic_syminfo == NULL
|| !do_dynamic)
/* No syminfo, this is ok. */
return true;
/* There better should be a dynamic symbol section. */
if (filedata->dynamic_symbols == NULL || filedata->dynamic_strings == NULL)
return false;
if (filedata->is_separate)
printf (ngettext ("\nIn linked file '%s: the dynamic info segment at offset %#" PRIx64 " contains %d entry:\n",
"\nIn linked file '%s: the dynamic info segment at offset %#" PRIx64 " contains %d entries:\n",
filedata->dynamic_syminfo_nent),
filedata->file_name,
filedata->dynamic_syminfo_offset,
filedata->dynamic_syminfo_nent);
else
printf (ngettext ("\nDynamic info segment at offset %#" PRIx64
" contains %d entry:\n",
"\nDynamic info segment at offset %#" PRIx64
" contains %d entries:\n",
filedata->dynamic_syminfo_nent),
filedata->dynamic_syminfo_offset,
filedata->dynamic_syminfo_nent);
printf (_(" Num: Name BoundTo Flags\n"));
for (i = 0; i < filedata->dynamic_syminfo_nent; ++i)
{
unsigned short int flags = filedata->dynamic_syminfo[i].si_flags;
printf ("%4d: ", i);
if (i >= filedata->num_dynamic_syms)
printf (_("<corrupt index>"));
else if (valid_dynamic_name (filedata, filedata->dynamic_symbols[i].st_name))
print_symbol_name (30, get_dynamic_name (filedata,
filedata->dynamic_symbols[i].st_name));
else
printf (_("<corrupt: %19ld>"), filedata->dynamic_symbols[i].st_name);
putchar (' ');
switch (filedata->dynamic_syminfo[i].si_boundto)
{
case SYMINFO_BT_SELF:
fputs ("SELF ", stdout);
break;
case SYMINFO_BT_PARENT:
fputs ("PARENT ", stdout);
break;
default:
if (filedata->dynamic_syminfo[i].si_boundto > 0
&& filedata->dynamic_syminfo[i].si_boundto < filedata->dynamic_nent
&& valid_dynamic_name (filedata,
filedata->dynamic_section[filedata->dynamic_syminfo[i].si_boundto].d_un.d_val))
{
print_symbol_name (10, get_dynamic_name (filedata,
filedata->dynamic_section[filedata->dynamic_syminfo[i].si_boundto].d_un.d_val));
putchar (' ' );
}
else
printf ("%-10d ", filedata->dynamic_syminfo[i].si_boundto);
break;
}
if (flags & SYMINFO_FLG_DIRECT)
printf (" DIRECT");
if (flags & SYMINFO_FLG_PASSTHRU)
printf (" PASSTHRU");
if (flags & SYMINFO_FLG_COPY)
printf (" COPY");
if (flags & SYMINFO_FLG_LAZYLOAD)
printf (" LAZYLOAD");
puts ("");
}
return true;
}
/* A macro which evaluates to TRUE if the region ADDR .. ADDR + NELEM
is contained by the region START .. END. The types of ADDR, START
and END should all be the same. Note both ADDR + NELEM and END
point to just beyond the end of the regions that are being tested. */
#define IN_RANGE(START,END,ADDR,NELEM) \
(((ADDR) >= (START)) && ((ADDR) < (END)) && ((ADDR) + (NELEM) <= (END)))
/* Check to see if the given reloc needs to be handled in a target specific
manner. If so then process the reloc and return TRUE otherwise return
FALSE.
If called with reloc == NULL, then this is a signal that reloc processing
for the current section has finished, and any saved state should be
discarded. */
static bool
target_specific_reloc_handling (Filedata *filedata,
Elf_Internal_Rela *reloc,
unsigned char *start,
unsigned char *end,
Elf_Internal_Sym *symtab,
uint64_t num_syms)
{
unsigned int reloc_type = 0;
uint64_t sym_index = 0;
if (reloc)
{
reloc_type = get_reloc_type (filedata, reloc->r_info);
sym_index = get_reloc_symindex (reloc->r_info);
}
switch (filedata->file_header.e_machine)
{
case EM_LOONGARCH:
{
switch (reloc_type)
{
/* For .uleb128 .LFE1-.LFB1, loongarch write 0 to object file
at assembly time. */
case 107: /* R_LARCH_ADD_ULEB128. */
case 108: /* R_LARCH_SUB_ULEB128. */
{
uint64_t value = 0;
unsigned int reloc_size = 0;
int leb_ret = 0;
if (reloc->r_offset < (size_t) (end - start))
value = read_leb128 (start + reloc->r_offset, end, false,
&reloc_size, &leb_ret);
if (leb_ret != 0 || reloc_size == 0 || reloc_size > 8)
error (_("LoongArch ULEB128 field at 0x%lx contains invalid "
"ULEB128 value\n"),
(long) reloc->r_offset);
else if (sym_index >= num_syms)
error (_("%s reloc contains invalid symbol index "
"%" PRIu64 "\n"),
(reloc_type == 107
? "R_LARCH_ADD_ULEB128"
: "R_LARCH_SUB_ULEB128"),
sym_index);
else
{
if (reloc_type == 107)
value += reloc->r_addend + symtab[sym_index].st_value;
else
value -= reloc->r_addend + symtab[sym_index].st_value;
/* Write uleb128 value to p. */
bfd_byte *p = start + reloc->r_offset;
do
{
bfd_byte c = value & 0x7f;
value >>= 7;
if (--reloc_size != 0)
c |= 0x80;
*p++ = c;
}
while (reloc_size);
}
return true;
}
}
break;
}
case EM_MSP430:
case EM_MSP430_OLD:
{
static Elf_Internal_Sym * saved_sym = NULL;
if (reloc == NULL)
{
saved_sym = NULL;
return true;
}
switch (reloc_type)
{
case 10: /* R_MSP430_SYM_DIFF */
case 12: /* R_MSP430_GNU_SUB_ULEB128 */
if (uses_msp430x_relocs (filedata))
break;
/* Fall through. */
case 21: /* R_MSP430X_SYM_DIFF */
case 23: /* R_MSP430X_GNU_SUB_ULEB128 */
/* PR 21139. */
if (sym_index >= num_syms)
error (_("%s reloc contains invalid symbol index "
"%" PRIu64 "\n"), "MSP430 SYM_DIFF", sym_index);
else
saved_sym = symtab + sym_index;
return true;
case 1: /* R_MSP430_32 or R_MSP430_ABS32 */
case 3: /* R_MSP430_16 or R_MSP430_ABS8 */
goto handle_sym_diff;
case 5: /* R_MSP430_16_BYTE */
case 9: /* R_MSP430_8 */
case 11: /* R_MSP430_GNU_SET_ULEB128 */
if (uses_msp430x_relocs (filedata))
break;
goto handle_sym_diff;
case 2: /* R_MSP430_ABS16 */
case 15: /* R_MSP430X_ABS16 */
case 22: /* R_MSP430X_GNU_SET_ULEB128 */
if (! uses_msp430x_relocs (filedata))
break;
goto handle_sym_diff;
handle_sym_diff:
if (saved_sym != NULL)
{
uint64_t value;
unsigned int reloc_size = 0;
int leb_ret = 0;
switch (reloc_type)
{
case 1: /* R_MSP430_32 or R_MSP430_ABS32 */
reloc_size = 4;
break;
case 11: /* R_MSP430_GNU_SET_ULEB128 */
case 22: /* R_MSP430X_GNU_SET_ULEB128 */
if (reloc->r_offset < (size_t) (end - start))
read_leb128 (start + reloc->r_offset, end, false,
&reloc_size, &leb_ret);
break;
default:
reloc_size = 2;
break;
}
if (leb_ret != 0 || reloc_size == 0 || reloc_size > 8)
error (_("MSP430 ULEB128 field at %#" PRIx64
" contains invalid ULEB128 value\n"),
reloc->r_offset);
else if (sym_index >= num_syms)
error (_("%s reloc contains invalid symbol index "
"%" PRIu64 "\n"), "MSP430", sym_index);
else
{
value = reloc->r_addend + (symtab[sym_index].st_value
- saved_sym->st_value);
if (IN_RANGE (start, end, start + reloc->r_offset, reloc_size))
byte_put (start + reloc->r_offset, value, reloc_size);
else
/* PR 21137 */
error (_("MSP430 sym diff reloc contains invalid offset: "
"%#" PRIx64 "\n"),
reloc->r_offset);
}
saved_sym = NULL;
return true;
}
break;
default:
if (saved_sym != NULL)
error (_("Unhandled MSP430 reloc type found after SYM_DIFF reloc\n"));
break;
}
break;
}
case EM_MN10300:
case EM_CYGNUS_MN10300:
{
static Elf_Internal_Sym * saved_sym = NULL;
if (reloc == NULL)
{
saved_sym = NULL;
return true;
}
switch (reloc_type)
{
case 34: /* R_MN10300_ALIGN */
return true;
case 33: /* R_MN10300_SYM_DIFF */
if (sym_index >= num_syms)
error (_("%s reloc contains invalid symbol index "
"%" PRIu64 "\n"), "MN10300_SYM_DIFF", sym_index);
else
saved_sym = symtab + sym_index;
return true;
case 1: /* R_MN10300_32 */
case 2: /* R_MN10300_16 */
if (saved_sym != NULL)
{
int reloc_size = reloc_type == 1 ? 4 : 2;
uint64_t value;
if (sym_index >= num_syms)
error (_("%s reloc contains invalid symbol index "
"%" PRIu64 "\n"), "MN10300", sym_index);
else
{
value = reloc->r_addend + (symtab[sym_index].st_value
- saved_sym->st_value);
if (IN_RANGE (start, end, start + reloc->r_offset, reloc_size))
byte_put (start + reloc->r_offset, value, reloc_size);
else
error (_("MN10300 sym diff reloc contains invalid offset:"
" %#" PRIx64 "\n"),
reloc->r_offset);
}
saved_sym = NULL;
return true;
}
break;
default:
if (saved_sym != NULL)
error (_("Unhandled MN10300 reloc type found after SYM_DIFF reloc\n"));
break;
}
break;
}
case EM_RL78:
{
static uint64_t saved_sym1 = 0;
static uint64_t saved_sym2 = 0;
static uint64_t value;
if (reloc == NULL)
{
saved_sym1 = saved_sym2 = 0;
return true;
}
switch (reloc_type)
{
case 0x80: /* R_RL78_SYM. */
saved_sym1 = saved_sym2;
if (sym_index >= num_syms)
error (_("%s reloc contains invalid symbol index "
"%" PRIu64 "\n"), "RL78_SYM", sym_index);
else
{
saved_sym2 = symtab[sym_index].st_value;
saved_sym2 += reloc->r_addend;
}
return true;
case 0x83: /* R_RL78_OPsub. */
value = saved_sym1 - saved_sym2;
saved_sym2 = saved_sym1 = 0;
return true;
break;
case 0x41: /* R_RL78_ABS32. */
if (IN_RANGE (start, end, start + reloc->r_offset, 4))
byte_put (start + reloc->r_offset, value, 4);
else
error (_("RL78 sym diff reloc contains invalid offset: "
"%#" PRIx64 "\n"),
reloc->r_offset);
value = 0;
return true;
case 0x43: /* R_RL78_ABS16. */
if (IN_RANGE (start, end, start + reloc->r_offset, 2))
byte_put (start + reloc->r_offset, value, 2);
else
error (_("RL78 sym diff reloc contains invalid offset: "
"%#" PRIx64 "\n"),
reloc->r_offset);
value = 0;
return true;
default:
break;
}
break;
}
}
return false;
}
/* Returns TRUE iff RELOC_TYPE is a 32-bit absolute RELA relocation used in
DWARF debug sections. This is a target specific test. Note - we do not
go through the whole including-target-headers-multiple-times route, (as
we have already done with <elf/h8.h>) because this would become very
messy and even then this function would have to contain target specific
information (the names of the relocs instead of their numeric values).
FIXME: This is not the correct way to solve this problem. The proper way
is to have target specific reloc sizing and typing functions created by
the reloc-macros.h header, in the same way that it already creates the
reloc naming functions. */
static bool
is_32bit_abs_reloc (Filedata * filedata, unsigned int reloc_type)
{
/* Please keep this table alpha-sorted for ease of visual lookup. */
switch (filedata->file_header.e_machine)
{
case EM_386:
case EM_IAMCU:
return reloc_type == 1; /* R_386_32. */
case EM_68K:
return reloc_type == 1; /* R_68K_32. */
case EM_860:
return reloc_type == 1; /* R_860_32. */
case EM_960:
return reloc_type == 2; /* R_960_32. */
case EM_AARCH64:
return (reloc_type == 258
|| reloc_type == 1); /* R_AARCH64_ABS32 || R_AARCH64_P32_ABS32 */
case EM_BPF:
return reloc_type == 11; /* R_BPF_DATA_32 */
case EM_ADAPTEVA_EPIPHANY:
return reloc_type == 3;
case EM_ALPHA:
return reloc_type == 1; /* R_ALPHA_REFLONG. */
case EM_ARC:
return reloc_type == 1; /* R_ARC_32. */
case EM_ARC_COMPACT:
case EM_ARC_COMPACT2:
case EM_ARC_COMPACT3:
case EM_ARC_COMPACT3_64:
return reloc_type == 4; /* R_ARC_32. */
case EM_ARM:
return reloc_type == 2; /* R_ARM_ABS32 */
case EM_AVR_OLD:
case EM_AVR:
return reloc_type == 1;
case EM_BLACKFIN:
return reloc_type == 0x12; /* R_byte4_data. */
case EM_CRIS:
return reloc_type == 3; /* R_CRIS_32. */
case EM_CR16:
return reloc_type == 3; /* R_CR16_NUM32. */
case EM_CRX:
return reloc_type == 15; /* R_CRX_NUM32. */
case EM_CSKY:
return reloc_type == 1; /* R_CKCORE_ADDR32. */
case EM_CYGNUS_FRV:
return reloc_type == 1;
case EM_CYGNUS_D10V:
case EM_D10V:
return reloc_type == 6; /* R_D10V_32. */
case EM_CYGNUS_D30V:
case EM_D30V:
return reloc_type == 12; /* R_D30V_32_NORMAL. */
case EM_DLX:
return reloc_type == 3; /* R_DLX_RELOC_32. */
case EM_CYGNUS_FR30:
case EM_FR30:
return reloc_type == 3; /* R_FR30_32. */
case EM_FT32:
return reloc_type == 1; /* R_FT32_32. */
case EM_H8S:
case EM_H8_300:
case EM_H8_300H:
return reloc_type == 1; /* R_H8_DIR32. */
case EM_IA_64:
return (reloc_type == 0x64 /* R_IA64_SECREL32MSB. */
|| reloc_type == 0x65 /* R_IA64_SECREL32LSB. */
|| reloc_type == 0x24 /* R_IA64_DIR32MSB. */
|| reloc_type == 0x25 /* R_IA64_DIR32LSB. */);
case EM_IP2K_OLD:
case EM_IP2K:
return reloc_type == 2; /* R_IP2K_32. */
case EM_IQ2000:
return reloc_type == 2; /* R_IQ2000_32. */
case EM_KVX:
return reloc_type == 2; /* R_KVX_32. */
case EM_LATTICEMICO32:
return reloc_type == 3; /* R_LM32_32. */
case EM_LOONGARCH:
return reloc_type == 1; /* R_LARCH_32. */
case EM_M32C_OLD:
case EM_M32C:
return reloc_type == 3; /* R_M32C_32. */
case EM_M32R:
return reloc_type == 34; /* R_M32R_32_RELA. */
case EM_68HC11:
case EM_68HC12:
return reloc_type == 6; /* R_M68HC11_32. */
case EM_S12Z:
return reloc_type == 7 || /* R_S12Z_EXT32 */
reloc_type == 6; /* R_S12Z_CW32. */
case EM_MCORE:
return reloc_type == 1; /* R_MCORE_ADDR32. */
case EM_CYGNUS_MEP:
return reloc_type == 4; /* R_MEP_32. */
case EM_METAG:
return reloc_type == 2; /* R_METAG_ADDR32. */
case EM_MICROBLAZE:
return reloc_type == 1; /* R_MICROBLAZE_32. */
case EM_MIPS:
return reloc_type == 2; /* R_MIPS_32. */
case EM_MMIX:
return reloc_type == 4; /* R_MMIX_32. */
case EM_CYGNUS_MN10200:
case EM_MN10200:
return reloc_type == 1; /* R_MN10200_32. */
case EM_CYGNUS_MN10300:
case EM_MN10300:
return reloc_type == 1; /* R_MN10300_32. */
case EM_MOXIE:
return reloc_type == 1; /* R_MOXIE_32. */
case EM_MSP430_OLD:
case EM_MSP430:
return reloc_type == 1; /* R_MSP430_32 or R_MSP320_ABS32. */
case EM_MT:
return reloc_type == 2; /* R_MT_32. */
case EM_NDS32:
return reloc_type == 20; /* R_NDS32_32_RELA. */
case EM_ALTERA_NIOS2:
return reloc_type == 12; /* R_NIOS2_BFD_RELOC_32. */
case EM_NIOS32:
return reloc_type == 1; /* R_NIOS_32. */
case EM_OR1K:
return reloc_type == 1; /* R_OR1K_32. */
case EM_PARISC:
return (reloc_type == 1 /* R_PARISC_DIR32. */
|| reloc_type == 2 /* R_PARISC_DIR21L. */
|| reloc_type == 41); /* R_PARISC_SECREL32. */
case EM_PJ:
case EM_PJ_OLD:
return reloc_type == 1; /* R_PJ_DATA_DIR32. */
case EM_PPC64:
return reloc_type == 1; /* R_PPC64_ADDR32. */
case EM_PPC:
return reloc_type == 1; /* R_PPC_ADDR32. */
case EM_TI_PRU:
return reloc_type == 11; /* R_PRU_BFD_RELOC_32. */
case EM_RISCV:
return reloc_type == 1; /* R_RISCV_32. */
case EM_RL78:
return reloc_type == 1; /* R_RL78_DIR32. */
case EM_RX:
return reloc_type == 1; /* R_RX_DIR32. */
case EM_S370:
return reloc_type == 1; /* R_I370_ADDR31. */
case EM_S390_OLD:
case EM_S390:
return reloc_type == 4; /* R_S390_32. */
case EM_SCORE:
return reloc_type == 8; /* R_SCORE_ABS32. */
case EM_SH:
return reloc_type == 1; /* R_SH_DIR32. */
case EM_SPARC32PLUS:
case EM_SPARCV9:
case EM_SPARC:
return reloc_type == 3 /* R_SPARC_32. */
|| reloc_type == 23; /* R_SPARC_UA32. */
case EM_SPU:
return reloc_type == 6; /* R_SPU_ADDR32 */
case EM_TI_C6000:
return reloc_type == 1; /* R_C6000_ABS32. */
case EM_TILEGX:
return reloc_type == 2; /* R_TILEGX_32. */
case EM_TILEPRO:
return reloc_type == 1; /* R_TILEPRO_32. */
case EM_CYGNUS_V850:
case EM_V850:
return reloc_type == 6; /* R_V850_ABS32. */
case EM_V800:
return reloc_type == 0x33; /* R_V810_WORD. */
case EM_VAX:
return reloc_type == 1; /* R_VAX_32. */
case EM_VISIUM:
return reloc_type == 3; /* R_VISIUM_32. */
case EM_WEBASSEMBLY:
return reloc_type == 1; /* R_WASM32_32. */
case EM_X86_64:
case EM_L1OM:
case EM_K1OM:
return reloc_type == 10; /* R_X86_64_32. */
case EM_XGATE:
return reloc_type == 4; /* R_XGATE_32. */
case EM_XSTORMY16:
return reloc_type == 1; /* R_XSTROMY16_32. */
case EM_XTENSA_OLD:
case EM_XTENSA:
return reloc_type == 1; /* R_XTENSA_32. */
case EM_Z80:
return reloc_type == 6; /* R_Z80_32. */
default:
{
static unsigned int prev_warn = 0;
/* Avoid repeating the same warning multiple times. */
if (prev_warn != filedata->file_header.e_machine)
error (_("Missing knowledge of 32-bit reloc types used in DWARF sections of machine number %d\n"),
filedata->file_header.e_machine);
prev_warn = filedata->file_header.e_machine;
return false;
}
}
}
/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
a 32-bit pc-relative RELA relocation used in DWARF debug sections. */
static bool
is_32bit_pcrel_reloc (Filedata * filedata, unsigned int reloc_type)
{
switch (filedata->file_header.e_machine)
/* Please keep this table alpha-sorted for ease of visual lookup. */
{
case EM_386:
case EM_IAMCU:
return reloc_type == 2; /* R_386_PC32. */
case EM_68K:
return reloc_type == 4; /* R_68K_PC32. */
case EM_AARCH64:
return reloc_type == 261; /* R_AARCH64_PREL32 */
case EM_ADAPTEVA_EPIPHANY:
return reloc_type == 6;
case EM_ALPHA:
return reloc_type == 10; /* R_ALPHA_SREL32. */
case EM_ARC_COMPACT:
case EM_ARC_COMPACT2:
case EM_ARC_COMPACT3:
case EM_ARC_COMPACT3_64:
return reloc_type == 49; /* R_ARC_32_PCREL. */
case EM_ARM:
return reloc_type == 3; /* R_ARM_REL32 */
case EM_AVR_OLD:
case EM_AVR:
return reloc_type == 36; /* R_AVR_32_PCREL. */
case EM_LOONGARCH:
return reloc_type == 99; /* R_LARCH_32_PCREL. */
case EM_MICROBLAZE:
return reloc_type == 2; /* R_MICROBLAZE_32_PCREL. */
case EM_OR1K:
return reloc_type == 9; /* R_OR1K_32_PCREL. */
case EM_PARISC:
return reloc_type == 9; /* R_PARISC_PCREL32. */
case EM_PPC:
return reloc_type == 26; /* R_PPC_REL32. */
case EM_PPC64:
return reloc_type == 26; /* R_PPC64_REL32. */
case EM_RISCV:
return reloc_type == 57; /* R_RISCV_32_PCREL. */
case EM_S390_OLD:
case EM_S390:
return reloc_type == 5; /* R_390_PC32. */
case EM_SH:
return reloc_type == 2; /* R_SH_REL32. */
case EM_SPARC32PLUS:
case EM_SPARCV9:
case EM_SPARC:
return reloc_type == 6; /* R_SPARC_DISP32. */
case EM_SPU:
return reloc_type == 13; /* R_SPU_REL32. */
case EM_TILEGX:
return reloc_type == 6; /* R_TILEGX_32_PCREL. */
case EM_TILEPRO:
return reloc_type == 4; /* R_TILEPRO_32_PCREL. */
case EM_VISIUM:
return reloc_type == 6; /* R_VISIUM_32_PCREL */
case EM_X86_64:
case EM_L1OM:
case EM_K1OM:
return reloc_type == 2; /* R_X86_64_PC32. */
case EM_VAX:
return reloc_type == 4; /* R_VAX_PCREL32. */
case EM_XTENSA_OLD:
case EM_XTENSA:
return reloc_type == 14; /* R_XTENSA_32_PCREL. */
case EM_KVX:
return reloc_type == 7; /* R_KVX_32_PCREL */
default:
/* Do not abort or issue an error message here. Not all targets use
pc-relative 32-bit relocs in their DWARF debug information and we
have already tested for target coverage in is_32bit_abs_reloc. A
more helpful warning message will be generated by apply_relocations
anyway, so just return. */
return false;
}
}
/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
a 64-bit absolute RELA relocation used in DWARF debug sections. */
static bool
is_64bit_abs_reloc (Filedata * filedata, unsigned int reloc_type)
{
switch (filedata->file_header.e_machine)
{
case EM_AARCH64:
return reloc_type == 257; /* R_AARCH64_ABS64. */
case EM_ARC_COMPACT3_64:
return reloc_type == 5; /* R_ARC_64. */
case EM_ALPHA:
return reloc_type == 2; /* R_ALPHA_REFQUAD. */
case EM_IA_64:
return (reloc_type == 0x26 /* R_IA64_DIR64MSB. */
|| reloc_type == 0x27 /* R_IA64_DIR64LSB. */);
case EM_LOONGARCH:
return reloc_type == 2; /* R_LARCH_64 */
case EM_PARISC:
return reloc_type == 80; /* R_PARISC_DIR64. */
case EM_PPC64:
return reloc_type == 38; /* R_PPC64_ADDR64. */
case EM_RISCV:
return reloc_type == 2; /* R_RISCV_64. */
case EM_SPARC32PLUS:
case EM_SPARCV9:
case EM_SPARC:
return reloc_type == 32 /* R_SPARC_64. */
|| reloc_type == 54; /* R_SPARC_UA64. */
case EM_X86_64:
case EM_L1OM:
case EM_K1OM:
return reloc_type == 1; /* R_X86_64_64. */
case EM_S390_OLD:
case EM_S390:
return reloc_type == 22; /* R_S390_64. */
case EM_TILEGX:
return reloc_type == 1; /* R_TILEGX_64. */
case EM_MIPS:
return reloc_type == 18; /* R_MIPS_64. */
case EM_KVX:
return reloc_type == 3; /* R_KVX_64 */
default:
return false;
}
}
/* Like is_32bit_pcrel_reloc except that it returns TRUE iff RELOC_TYPE is
a 64-bit pc-relative RELA relocation used in DWARF debug sections. */
static bool
is_64bit_pcrel_reloc (Filedata * filedata, unsigned int reloc_type)
{
switch (filedata->file_header.e_machine)
{
case EM_AARCH64:
return reloc_type == 260; /* R_AARCH64_PREL64. */
case EM_ALPHA:
return reloc_type == 11; /* R_ALPHA_SREL64. */
case EM_IA_64:
return (reloc_type == 0x4e /* R_IA64_PCREL64MSB. */
|| reloc_type == 0x4f /* R_IA64_PCREL64LSB. */);
case EM_PARISC:
return reloc_type == 72; /* R_PARISC_PCREL64. */
case EM_PPC64:
return reloc_type == 44; /* R_PPC64_REL64. */
case EM_SPARC32PLUS:
case EM_SPARCV9:
case EM_SPARC:
return reloc_type == 46; /* R_SPARC_DISP64. */
case EM_X86_64:
case EM_L1OM:
case EM_K1OM:
return reloc_type == 24; /* R_X86_64_PC64. */
case EM_S390_OLD:
case EM_S390:
return reloc_type == 23; /* R_S390_PC64. */
case EM_TILEGX:
return reloc_type == 5; /* R_TILEGX_64_PCREL. */
default:
return false;
}
}
/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
a 24-bit absolute RELA relocation used in DWARF debug sections. */
static bool
is_24bit_abs_reloc (Filedata * filedata, unsigned int reloc_type)
{
switch (filedata->file_header.e_machine)
{
case EM_CYGNUS_MN10200:
case EM_MN10200:
return reloc_type == 4; /* R_MN10200_24. */
case EM_FT32:
return reloc_type == 5; /* R_FT32_20. */
case EM_Z80:
return reloc_type == 5; /* R_Z80_24. */
default:
return false;
}
}
/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
a 16-bit absolute RELA relocation used in DWARF debug sections. */
static bool
is_16bit_abs_reloc (Filedata * filedata, unsigned int reloc_type)
{
/* Please keep this table alpha-sorted for ease of visual lookup. */
switch (filedata->file_header.e_machine)
{
case EM_ARC:
case EM_ARC_COMPACT:
case EM_ARC_COMPACT2:
case EM_ARC_COMPACT3:
case EM_ARC_COMPACT3_64:
return reloc_type == 2; /* R_ARC_16. */
case EM_ADAPTEVA_EPIPHANY:
return reloc_type == 5;
case EM_AVR_OLD:
case EM_AVR:
return reloc_type == 4; /* R_AVR_16. */
case EM_CYGNUS_D10V:
case EM_D10V:
return reloc_type == 3; /* R_D10V_16. */
case EM_FT32:
return reloc_type == 2; /* R_FT32_16. */
case EM_H8S:
case EM_H8_300:
case EM_H8_300H:
return reloc_type == R_H8_DIR16;
case EM_IP2K_OLD:
case EM_IP2K:
return reloc_type == 1; /* R_IP2K_16. */
case EM_M32C_OLD:
case EM_M32C:
return reloc_type == 1; /* R_M32C_16 */
case EM_CYGNUS_MN10200:
case EM_MN10200:
return reloc_type == 2; /* R_MN10200_16. */
case EM_CYGNUS_MN10300:
case EM_MN10300:
return reloc_type == 2; /* R_MN10300_16. */
case EM_KVX:
return reloc_type == 1; /* R_KVX_16 */
case EM_MSP430:
if (uses_msp430x_relocs (filedata))
return reloc_type == 2; /* R_MSP430_ABS16. */
/* Fall through. */
case EM_MSP430_OLD:
return reloc_type == 5; /* R_MSP430_16_BYTE. */
case EM_NDS32:
return reloc_type == 19; /* R_NDS32_16_RELA. */
case EM_ALTERA_NIOS2:
return reloc_type == 13; /* R_NIOS2_BFD_RELOC_16. */
case EM_NIOS32:
return reloc_type == 9; /* R_NIOS_16. */
case EM_OR1K:
return reloc_type == 2; /* R_OR1K_16. */
case EM_RISCV:
return reloc_type == 55; /* R_RISCV_SET16. */
case EM_TI_PRU:
return reloc_type == 8; /* R_PRU_BFD_RELOC_16. */
case EM_TI_C6000:
return reloc_type == 2; /* R_C6000_ABS16. */
case EM_VISIUM:
return reloc_type == 2; /* R_VISIUM_16. */
case EM_XGATE:
return reloc_type == 3; /* R_XGATE_16. */
case EM_Z80:
return reloc_type == 4; /* R_Z80_16. */
default:
return false;
}
}
/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
a 8-bit absolute RELA relocation used in DWARF debug sections. */
static bool
is_8bit_abs_reloc (Filedata * filedata, unsigned int reloc_type)
{
switch (filedata->file_header.e_machine)
{
case EM_RISCV:
return reloc_type == 54; /* R_RISCV_SET8. */
case EM_Z80:
return reloc_type == 1; /* R_Z80_8. */
case EM_MICROBLAZE:
return (reloc_type == 33 /* R_MICROBLAZE_32_NONE. */
|| reloc_type == 0 /* R_MICROBLAZE_NONE. */
|| reloc_type == 9 /* R_MICROBLAZE_64_NONE. */);
default:
return false;
}
}
/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
a 6-bit absolute RELA relocation used in DWARF debug sections. */
static bool
is_6bit_abs_reloc (Filedata * filedata, unsigned int reloc_type)
{
switch (filedata->file_header.e_machine)
{
case EM_RISCV:
return reloc_type == 53; /* R_RISCV_SET6. */
default:
return false;
}
}
/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
a 32-bit inplace add RELA relocation used in DWARF debug sections. */
static bool
is_32bit_inplace_add_reloc (Filedata * filedata, unsigned int reloc_type)
{
/* Please keep this table alpha-sorted for ease of visual lookup. */
switch (filedata->file_header.e_machine)
{
case EM_LOONGARCH:
return reloc_type == 50; /* R_LARCH_ADD32. */
case EM_RISCV:
return reloc_type == 35; /* R_RISCV_ADD32. */
default:
return false;
}
}
/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
a 32-bit inplace sub RELA relocation used in DWARF debug sections. */
static bool
is_32bit_inplace_sub_reloc (Filedata * filedata, unsigned int reloc_type)
{
/* Please keep this table alpha-sorted for ease of visual lookup. */
switch (filedata->file_header.e_machine)
{
case EM_LOONGARCH:
return reloc_type == 55; /* R_LARCH_SUB32. */
case EM_RISCV:
return reloc_type == 39; /* R_RISCV_SUB32. */
default:
return false;
}
}
/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
a 64-bit inplace add RELA relocation used in DWARF debug sections. */
static bool
is_64bit_inplace_add_reloc (Filedata * filedata, unsigned int reloc_type)
{
/* Please keep this table alpha-sorted for ease of visual lookup. */
switch (filedata->file_header.e_machine)
{
case EM_LOONGARCH:
return reloc_type == 51; /* R_LARCH_ADD64. */
case EM_RISCV:
return reloc_type == 36; /* R_RISCV_ADD64. */
default:
return false;
}
}
/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
a 64-bit inplace sub RELA relocation used in DWARF debug sections. */
static bool
is_64bit_inplace_sub_reloc (Filedata * filedata, unsigned int reloc_type)
{
/* Please keep this table alpha-sorted for ease of visual lookup. */
switch (filedata->file_header.e_machine)
{
case EM_LOONGARCH:
return reloc_type == 56; /* R_LARCH_SUB64. */
case EM_RISCV:
return reloc_type == 40; /* R_RISCV_SUB64. */
default:
return false;
}
}
/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
a 16-bit inplace add RELA relocation used in DWARF debug sections. */
static bool
is_16bit_inplace_add_reloc (Filedata * filedata, unsigned int reloc_type)
{
/* Please keep this table alpha-sorted for ease of visual lookup. */
switch (filedata->file_header.e_machine)
{
case EM_LOONGARCH:
return reloc_type == 48; /* R_LARCH_ADD16. */
case EM_RISCV:
return reloc_type == 34; /* R_RISCV_ADD16. */
default:
return false;
}
}
/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
a 16-bit inplace sub RELA relocation used in DWARF debug sections. */
static bool
is_16bit_inplace_sub_reloc (Filedata * filedata, unsigned int reloc_type)
{
/* Please keep this table alpha-sorted for ease of visual lookup. */
switch (filedata->file_header.e_machine)
{
case EM_LOONGARCH:
return reloc_type == 53; /* R_LARCH_SUB16. */
case EM_RISCV:
return reloc_type == 38; /* R_RISCV_SUB16. */
default:
return false;
}
}
/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
a 8-bit inplace add RELA relocation used in DWARF debug sections. */
static bool
is_8bit_inplace_add_reloc (Filedata * filedata, unsigned int reloc_type)
{
/* Please keep this table alpha-sorted for ease of visual lookup. */
switch (filedata->file_header.e_machine)
{
case EM_LOONGARCH:
return reloc_type == 47; /* R_LARCH_ADD8. */
case EM_RISCV:
return reloc_type == 33; /* R_RISCV_ADD8. */
default:
return false;
}
}
/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
a 8-bit inplace sub RELA relocation used in DWARF debug sections. */
static bool
is_8bit_inplace_sub_reloc (Filedata * filedata, unsigned int reloc_type)
{
/* Please keep this table alpha-sorted for ease of visual lookup. */
switch (filedata->file_header.e_machine)
{
case EM_LOONGARCH:
return reloc_type == 52; /* R_LARCH_SUB8. */
case EM_RISCV:
return reloc_type == 37; /* R_RISCV_SUB8. */
default:
return false;
}
}
/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
a 6-bit inplace add RELA relocation used in DWARF debug sections. */
static bool
is_6bit_inplace_add_reloc (Filedata * filedata, unsigned int reloc_type)
{
switch (filedata->file_header.e_machine)
{
case EM_LOONGARCH:
return reloc_type == 105; /* R_LARCH_ADD6. */
default:
return false;
}
}
/* Like is_32bit_abs_reloc except that it returns TRUE iff RELOC_TYPE is
a 6-bit inplace sub RELA relocation used in DWARF debug sections. */
static bool
is_6bit_inplace_sub_reloc (Filedata * filedata, unsigned int reloc_type)
{
switch (filedata->file_header.e_machine)
{
case EM_LOONGARCH:
return reloc_type == 106; /* R_LARCH_SUB6. */
case EM_RISCV:
return reloc_type == 52; /* R_RISCV_SUB6. */
default:
return false;
}
}
/* Returns TRUE iff RELOC_TYPE is a NONE relocation used for discarded
relocation entries (possibly formerly used for SHT_GROUP sections). */
static bool
is_none_reloc (Filedata * filedata, unsigned int reloc_type)
{
switch (filedata->file_header.e_machine)
{
case EM_386: /* R_386_NONE. */
case EM_68K: /* R_68K_NONE. */
case EM_ADAPTEVA_EPIPHANY:
case EM_ALPHA: /* R_ALPHA_NONE. */
case EM_ALTERA_NIOS2: /* R_NIOS2_NONE. */
case EM_ARC: /* R_ARC_NONE. */
case EM_ARC_COMPACT2: /* R_ARC_NONE. */
case EM_ARC_COMPACT: /* R_ARC_NONE. */
case EM_ARC_COMPACT3: /* R_ARC_NONE. */
case EM_ARC_COMPACT3_64: /* R_ARC_NONE. */
case EM_ARM: /* R_ARM_NONE. */
case EM_CRIS: /* R_CRIS_NONE. */
case EM_FT32: /* R_FT32_NONE. */
case EM_IA_64: /* R_IA64_NONE. */
case EM_K1OM: /* R_X86_64_NONE. */
case EM_KVX: /* R_KVX_NONE. */
case EM_L1OM: /* R_X86_64_NONE. */
case EM_M32R: /* R_M32R_NONE. */
case EM_MIPS: /* R_MIPS_NONE. */
case EM_MN10300: /* R_MN10300_NONE. */
case EM_MOXIE: /* R_MOXIE_NONE. */
case EM_NIOS32: /* R_NIOS_NONE. */
case EM_OR1K: /* R_OR1K_NONE. */
case EM_PARISC: /* R_PARISC_NONE. */
case EM_PPC64: /* R_PPC64_NONE. */
case EM_PPC: /* R_PPC_NONE. */
case EM_RISCV: /* R_RISCV_NONE. */
case EM_S390: /* R_390_NONE. */
case EM_S390_OLD:
case EM_SH: /* R_SH_NONE. */
case EM_SPARC32PLUS:
case EM_SPARC: /* R_SPARC_NONE. */
case EM_SPARCV9:
case EM_TILEGX: /* R_TILEGX_NONE. */
case EM_TILEPRO: /* R_TILEPRO_NONE. */
case EM_TI_C6000:/* R_C6000_NONE. */
case EM_X86_64: /* R_X86_64_NONE. */
case EM_Z80: /* R_Z80_NONE. */
case EM_WEBASSEMBLY: /* R_WASM32_NONE. */
return reloc_type == 0;
case EM_AARCH64:
return reloc_type == 0 || reloc_type == 256;
case EM_AVR_OLD:
case EM_AVR:
return (reloc_type == 0 /* R_AVR_NONE. */
|| reloc_type == 30 /* R_AVR_DIFF8. */
|| reloc_type == 31 /* R_AVR_DIFF16. */
|| reloc_type == 32 /* R_AVR_DIFF32. */);
case EM_METAG:
return reloc_type == 3; /* R_METAG_NONE. */
case EM_NDS32:
return (reloc_type == 0 /* R_NDS32_NONE. */
|| reloc_type == 205 /* R_NDS32_DIFF8. */
|| reloc_type == 206 /* R_NDS32_DIFF16. */
|| reloc_type == 207 /* R_NDS32_DIFF32. */
|| reloc_type == 208 /* R_NDS32_DIFF_ULEB128. */);
case EM_TI_PRU:
return (reloc_type == 0 /* R_PRU_NONE. */
|| reloc_type == 65 /* R_PRU_DIFF8. */
|| reloc_type == 66 /* R_PRU_DIFF16. */
|| reloc_type == 67 /* R_PRU_DIFF32. */);
case EM_XTENSA_OLD:
case EM_XTENSA:
return (reloc_type == 0 /* R_XTENSA_NONE. */
|| reloc_type == 17 /* R_XTENSA_DIFF8. */
|| reloc_type == 18 /* R_XTENSA_DIFF16. */
|| reloc_type == 19 /* R_XTENSA_DIFF32. */
|| reloc_type == 57 /* R_XTENSA_PDIFF8. */
|| reloc_type == 58 /* R_XTENSA_PDIFF16. */
|| reloc_type == 59 /* R_XTENSA_PDIFF32. */
|| reloc_type == 60 /* R_XTENSA_NDIFF8. */
|| reloc_type == 61 /* R_XTENSA_NDIFF16. */
|| reloc_type == 62 /* R_XTENSA_NDIFF32. */);
}
return false;
}
/* Returns TRUE if there is a relocation against
section NAME at OFFSET bytes. */
bool
reloc_at (struct dwarf_section * dsec, uint64_t offset)
{
Elf_Internal_Rela * relocs;
Elf_Internal_Rela * rp;
if (dsec == NULL || dsec->reloc_info == NULL)
return false;
relocs = (Elf_Internal_Rela *) dsec->reloc_info;
for (rp = relocs; rp < relocs + dsec->num_relocs; ++rp)
if (rp->r_offset == offset)
return true;
return false;
}
/* Apply relocations to a section.
Returns TRUE upon success, FALSE otherwise.
If RELOCS_RETURN is non-NULL then it is set to point to the loaded relocs.
It is then the caller's responsibility to free them. NUM_RELOCS_RETURN
will be set to the number of relocs loaded.
Note: So far support has been added only for those relocations
which can be found in debug sections. FIXME: Add support for
more relocations ? */
static bool
apply_relocations (Filedata *filedata,
const Elf_Internal_Shdr *section,
unsigned char *start,
size_t size,
void **relocs_return,
uint64_t *num_relocs_return)
{
Elf_Internal_Shdr * relsec;
unsigned char * end = start + size;
if (relocs_return != NULL)
{
* (Elf_Internal_Rela **) relocs_return = NULL;
* num_relocs_return = 0;
}
if (filedata->file_header.e_type != ET_REL)
/* No relocs to apply. */
return true;
/* Find the reloc section associated with the section. */
for (relsec = filedata->section_headers;
relsec < filedata->section_headers + filedata->file_header.e_shnum;
++relsec)
{
bool is_rela;
uint64_t num_relocs;
Elf_Internal_Rela * relocs;
Elf_Internal_Rela * rp;
Elf_Internal_Shdr * symsec;
Elf_Internal_Sym * symtab;
uint64_t num_syms;
Elf_Internal_Sym * sym;
if ((relsec->sh_type != SHT_RELA && relsec->sh_type != SHT_REL)
|| relsec->sh_info >= filedata->file_header.e_shnum
|| filedata->section_headers + relsec->sh_info != section
|| relsec->sh_size == 0
|| relsec->sh_link >= filedata->file_header.e_shnum)
continue;
symsec = filedata->section_headers + relsec->sh_link;
if (symsec->sh_type != SHT_SYMTAB
&& symsec->sh_type != SHT_DYNSYM)
return false;
is_rela = relsec->sh_type == SHT_RELA;
if (is_rela)
{
if (!slurp_rela_relocs (filedata, relsec->sh_offset,
relsec->sh_size, & relocs, & num_relocs))
return false;
}
else
{
if (!slurp_rel_relocs (filedata, relsec->sh_offset,
relsec->sh_size, & relocs, & num_relocs))
return false;
}
/* SH uses RELA but uses in place value instead of the addend field. */
if (filedata->file_header.e_machine == EM_SH)
is_rela = false;
symtab = get_elf_symbols (filedata, symsec, & num_syms);
for (rp = relocs; rp < relocs + num_relocs; ++rp)
{
uint64_t addend;
unsigned int reloc_type;
unsigned int reloc_size;
bool reloc_inplace = false;
bool reloc_subtract = false;
unsigned char *rloc;
uint64_t sym_index;
reloc_type = get_reloc_type (filedata, rp->r_info);
if (target_specific_reloc_handling (filedata, rp, start, end, symtab, num_syms))
continue;
else if (is_none_reloc (filedata, reloc_type))
continue;
else if (is_32bit_abs_reloc (filedata, reloc_type)
|| is_32bit_pcrel_reloc (filedata, reloc_type))
reloc_size = 4;
else if (is_64bit_abs_reloc (filedata, reloc_type)
|| is_64bit_pcrel_reloc (filedata, reloc_type))
reloc_size = 8;
else if (is_24bit_abs_reloc (filedata, reloc_type))
reloc_size = 3;
else if (is_16bit_abs_reloc (filedata, reloc_type))
reloc_size = 2;
else if (is_8bit_abs_reloc (filedata, reloc_type)
|| is_6bit_abs_reloc (filedata, reloc_type))
reloc_size = 1;
else if ((reloc_subtract = is_32bit_inplace_sub_reloc (filedata,
reloc_type))
|| is_32bit_inplace_add_reloc (filedata, reloc_type))
{
reloc_size = 4;
reloc_inplace = true;
}
else if ((reloc_subtract = is_64bit_inplace_sub_reloc (filedata,
reloc_type))
|| is_64bit_inplace_add_reloc (filedata, reloc_type))
{
reloc_size = 8;
reloc_inplace = true;
}
else if ((reloc_subtract = is_16bit_inplace_sub_reloc (filedata,
reloc_type))
|| is_16bit_inplace_add_reloc (filedata, reloc_type))
{
reloc_size = 2;
reloc_inplace = true;
}
else if ((reloc_subtract = is_8bit_inplace_sub_reloc (filedata,
reloc_type))
|| is_8bit_inplace_add_reloc (filedata, reloc_type))
{
reloc_size = 1;
reloc_inplace = true;
}
else if ((reloc_subtract = is_6bit_inplace_sub_reloc (filedata,
reloc_type))
|| is_6bit_inplace_add_reloc (filedata, reloc_type))
{
reloc_size = 1;
reloc_inplace = true;
}
else
{
static unsigned int prev_reloc = 0;
if (reloc_type != prev_reloc)
warn (_("unable to apply unsupported reloc type %d to section %s\n"),
reloc_type, printable_section_name (filedata, section));
prev_reloc = reloc_type;
continue;
}
rloc = start + rp->r_offset;
if (!IN_RANGE (start, end, rloc, reloc_size))
{
warn (_("skipping invalid relocation offset %#" PRIx64
" in section %s\n"),
rp->r_offset,
printable_section_name (filedata, section));
continue;
}
sym_index = get_reloc_symindex (rp->r_info);
if (sym_index >= num_syms)
{
warn (_("skipping invalid relocation symbol index %#" PRIx64
" in section %s\n"),
sym_index, printable_section_name (filedata, section));
continue;
}
sym = symtab + sym_index;
/* If the reloc has a symbol associated with it,
make sure that it is of an appropriate type.
Relocations against symbols without type can happen.
Gcc -feliminate-dwarf2-dups may generate symbols
without type for debug info.
Icc generates relocations against function symbols
instead of local labels.
Relocations against object symbols can happen, eg when
referencing a global array. For an example of this see
the _clz.o binary in libgcc.a. */
if (sym != symtab
&& ELF_ST_TYPE (sym->st_info) != STT_COMMON
&& ELF_ST_TYPE (sym->st_info) > STT_SECTION)
{
warn (_("skipping unexpected symbol type %s in section %s relocation %tu\n"),
get_symbol_type (filedata, ELF_ST_TYPE (sym->st_info)),
printable_section_name (filedata, relsec),
rp - relocs);
continue;
}
addend = 0;
if (is_rela)
addend += rp->r_addend;
/* R_XTENSA_32, R_PJ_DATA_DIR32 and R_D30V_32_NORMAL are
partial_inplace. */
if (!is_rela
|| (filedata->file_header.e_machine == EM_XTENSA
&& reloc_type == 1)
|| ((filedata->file_header.e_machine == EM_PJ
|| filedata->file_header.e_machine == EM_PJ_OLD)
&& reloc_type == 1)
|| ((filedata->file_header.e_machine == EM_D30V
|| filedata->file_header.e_machine == EM_CYGNUS_D30V)
&& reloc_type == 12)
|| reloc_inplace)
{
if (is_6bit_inplace_sub_reloc (filedata, reloc_type))
addend += byte_get (rloc, reloc_size) & 0x3f;
else
addend += byte_get (rloc, reloc_size);
}
if (is_32bit_pcrel_reloc (filedata, reloc_type)
|| is_64bit_pcrel_reloc (filedata, reloc_type))
{
/* On HPPA, all pc-relative relocations are biased by 8. */
if (filedata->file_header.e_machine == EM_PARISC)
addend -= 8;
byte_put (rloc, (addend + sym->st_value) - rp->r_offset,
reloc_size);
}
else if (is_6bit_abs_reloc (filedata, reloc_type)
|| is_6bit_inplace_sub_reloc (filedata, reloc_type)
|| is_6bit_inplace_add_reloc (filedata, reloc_type))
{
if (reloc_subtract)
addend -= sym->st_value;
else
addend += sym->st_value;
addend = (addend & 0x3f) | (byte_get (rloc, reloc_size) & 0xc0);
byte_put (rloc, addend, reloc_size);
}
else if (reloc_subtract)
byte_put (rloc, addend - sym->st_value, reloc_size);
else
byte_put (rloc, addend + sym->st_value, reloc_size);
}
free (symtab);
/* Let the target specific reloc processing code know that
we have finished with these relocs. */
target_specific_reloc_handling (filedata, NULL, NULL, NULL, NULL, 0);
if (relocs_return)
{
* (Elf_Internal_Rela **) relocs_return = relocs;
* num_relocs_return = num_relocs;
}
else
free (relocs);
break;
}
return true;
}
#ifdef SUPPORT_DISASSEMBLY
static bool
disassemble_section (Elf_Internal_Shdr * section, Filedata * filedata)
{
printf (_("\nAssembly dump of section %s\n"), printable_section_name (filedata, section));
/* FIXME: XXX -- to be done --- XXX */
return true;
}
#endif
/* Reads in the contents of SECTION from FILE, returning a pointer
to a malloc'ed buffer or NULL if something went wrong. */
static char *
get_section_contents (Elf_Internal_Shdr * section, Filedata * filedata)
{
uint64_t num_bytes = section->sh_size;
if (num_bytes == 0 || section->sh_type == SHT_NOBITS)
{
printf (_("Section '%s' has no data to dump.\n"),
printable_section_name (filedata, section));
return NULL;
}
return (char *) get_data (NULL, filedata, section->sh_offset, 1, num_bytes,
_("section contents"));
}
/* Uncompresses a section that was compressed using zlib/zstd, in place. */
static bool
uncompress_section_contents (bool is_zstd,
unsigned char ** buffer,
uint64_t uncompressed_size,
uint64_t * size,
uint64_t file_size)
{
uint64_t compressed_size = *size;
unsigned char *compressed_buffer = *buffer;
unsigned char *uncompressed_buffer = NULL;
z_stream strm;
int rc;
/* Similar to bfd_section_size_insane() in the BFD library we expect an
upper limit of ~10x compression. Any compression larger than that is
thought to be due to fuzzing of the compression header. */
if (uncompressed_size > file_size * 10)
{
error (_("Uncompressed section size is suspiciously large: 0x%" PRIu64 "\n"),
uncompressed_size);
goto fail;
}
uncompressed_buffer = xmalloc (uncompressed_size);
if (is_zstd)
{
#ifdef HAVE_ZSTD
size_t ret = ZSTD_decompress (uncompressed_buffer, uncompressed_size,
compressed_buffer, compressed_size);
if (ZSTD_isError (ret))
goto fail;
#endif
}
else
{
/* It is possible the section consists of several compressed
buffers concatenated together, so we uncompress in a loop. */
/* PR 18313: The state field in the z_stream structure is supposed
to be invisible to the user (ie us), but some compilers will
still complain about it being used without initialisation. So
we first zero the entire z_stream structure and then set the fields
that we need. */
memset (&strm, 0, sizeof strm);
strm.avail_in = compressed_size;
strm.next_in = (Bytef *)compressed_buffer;
strm.avail_out = uncompressed_size;
rc = inflateInit (&strm);
while (strm.avail_in > 0)
{
if (rc != Z_OK)
break;
strm.next_out = ((Bytef *)uncompressed_buffer
+ (uncompressed_size - strm.avail_out));
rc = inflate (&strm, Z_FINISH);
if (rc != Z_STREAM_END)
break;
rc = inflateReset (&strm);
}
if (inflateEnd (&strm) != Z_OK || rc != Z_OK || strm.avail_out != 0)
goto fail;
}
*buffer = uncompressed_buffer;
*size = uncompressed_size;
return true;
fail:
free (uncompressed_buffer);
/* Indicate decompression failure. */
*buffer = NULL;
return false;
}
static uint64_t
maybe_expand_or_relocate_section (Elf_Internal_Shdr * section,
Filedata * filedata,
unsigned char ** start_ptr,
unsigned char ** decomp_buf,
bool relocate)
{
uint64_t section_size = section->sh_size;
unsigned char * start = * start_ptr;
if (decompress_dumps)
{
uint64_t new_size = section_size;
uint64_t uncompressed_size = 0;
bool is_zstd = false;
if ((section->sh_flags & SHF_COMPRESSED) != 0)
{
Elf_Internal_Chdr chdr;
unsigned int compression_header_size
= get_compression_header (& chdr, start, section_size);
if (compression_header_size == 0)
/* An error message will have already been generated
by get_compression_header. */
return (uint64_t) -1;
if (chdr.ch_type == ch_compress_zlib)
;
#ifdef HAVE_ZSTD
else if (chdr.ch_type == ch_compress_zstd)
is_zstd = true;
#endif
else
{
warn (_("section '%s' has unsupported compress type: %d\n"),
printable_section_name (filedata, section), chdr.ch_type);
return (uint64_t) -1;
}
uncompressed_size = chdr.ch_size;
start += compression_header_size;
new_size -= compression_header_size;
}
else if (new_size > 12 && streq ((char *) start, "ZLIB"))
{
/* Read the zlib header. In this case, it should be "ZLIB"
followed by the uncompressed section size, 8 bytes in
big-endian order. */
uncompressed_size = start[4]; uncompressed_size <<= 8;
uncompressed_size += start[5]; uncompressed_size <<= 8;
uncompressed_size += start[6]; uncompressed_size <<= 8;
uncompressed_size += start[7]; uncompressed_size <<= 8;
uncompressed_size += start[8]; uncompressed_size <<= 8;
uncompressed_size += start[9]; uncompressed_size <<= 8;
uncompressed_size += start[10]; uncompressed_size <<= 8;
uncompressed_size += start[11];
start += 12;
new_size -= 12;
}
if (uncompressed_size)
{
if (uncompress_section_contents (is_zstd, &start, uncompressed_size,
&new_size, filedata->file_size))
{
*decomp_buf = start;
section_size = new_size;
}
else
{
error (_("Unable to decompress section %s\n"),
printable_section_name (filedata, section));
return (uint64_t) -1;
}
}
else
start = * start_ptr;
}
else if (((section->sh_flags & SHF_COMPRESSED) != 0)
|| (section_size > 12 && streq ((char *) start, "ZLIB")))
{
printf (_(" NOTE: This section is compressed, but its contents have NOT been expanded for this dump.\n"));
}
if (relocate)
{
if (! apply_relocations (filedata, section, start, section_size, NULL, NULL))
return (uint64_t) -1;
}
else
{
Elf_Internal_Shdr *relsec;
/* If the section being dumped has relocations against it the user might
be expecting these relocations to have been applied. Check for this
case and issue a warning message in order to avoid confusion.
FIXME: Maybe we ought to have an option that dumps a section with
relocs applied ? */
for (relsec = filedata->section_headers;
relsec < filedata->section_headers + filedata->file_header.e_shnum;
++relsec)
{
if ((relsec->sh_type != SHT_RELA && relsec->sh_type != SHT_REL)
|| relsec->sh_info >= filedata->file_header.e_shnum
|| filedata->section_headers + relsec->sh_info != section
|| relsec->sh_size == 0
|| relsec->sh_link >= filedata->file_header.e_shnum)
continue;
printf (_(" NOTE: This section has relocations against it, but these have NOT been applied to this dump.\n"));
break;
}
}
* start_ptr = start;
return section_size;
}
static bool
dump_section_as_strings (Elf_Internal_Shdr * section, Filedata * filedata)
{
uint64_t num_bytes;
unsigned char *data;
unsigned char *end;
unsigned char *real_start;
unsigned char *start;
unsigned char *decomp_buf;
bool some_strings_shown;
real_start = start = (unsigned char *) get_section_contents (section, filedata);
if (start == NULL)
/* PR 21820: Do not fail if the section was empty. */
return section->sh_size == 0 || section->sh_type == SHT_NOBITS;
num_bytes = section->sh_size;
if (filedata->is_separate)
printf (_("\nString dump of section '%s' in linked file %s:\n"),
printable_section_name (filedata, section),
filedata->file_name);
else
printf (_("\nString dump of section '%s':\n"),
printable_section_name (filedata, section));
decomp_buf = NULL;
num_bytes = maybe_expand_or_relocate_section (section, filedata, &start,
&decomp_buf, false);
if (num_bytes == (uint64_t) -1)
goto error_out;
data = start;
end = start + num_bytes;
some_strings_shown = false;
#ifdef HAVE_MBSTATE_T
mbstate_t state;
/* Initialise the multibyte conversion state. */
memset (& state, 0, sizeof (state));
#endif
bool continuing = false;
while (data < end)
{
while (!ISPRINT (* data))
if (++ data >= end)
break;
if (data < end)
{
size_t maxlen = end - data;
if (continuing)
{
printf (" ");
continuing = false;
}
else
{
printf (" [%6tx] ", data - start);
}
if (maxlen > 0)
{
char c = 0;
while (maxlen)
{
c = *data++;
if (c == 0)
break;
/* PR 25543: Treat new-lines as string-ending characters. */
if (c == '\n')
{
printf ("\\n\n");
if (*data != 0)
continuing = true;
break;
}
/* Do not print control characters directly as they can affect terminal
settings. Such characters usually appear in the names generated
by the assembler for local labels. */
if (ISCNTRL (c))
{
printf ("^%c", c + 0x40);
}
else if (ISPRINT (c))
{
putchar (c);
}
else
{
size_t n;
#ifdef HAVE_MBSTATE_T
wchar_t w;
#endif
/* Let printf do the hard work of displaying multibyte characters. */
printf ("%.1s", data - 1);
#ifdef HAVE_MBSTATE_T
/* Try to find out how many bytes made up the character that was
just printed. Advance the symbol pointer past the bytes that
were displayed. */
n = mbrtowc (& w, (char *)(data - 1), MB_CUR_MAX, & state);
#else
n = 1;
#endif
if (n != (size_t) -1 && n != (size_t) -2 && n > 0)
data += (n - 1);
}
}
if (c != '\n')
putchar ('\n');
}
else
{
printf (_("<corrupt>\n"));
data = end;
}
some_strings_shown = true;
}
}
if (! some_strings_shown)
printf (_(" No strings found in this section."));
free (decomp_buf);
free (real_start);
putchar ('\n');
return true;
error_out:
free (decomp_buf);
free (real_start);
return false;
}
static bool
dump_section_as_bytes (Elf_Internal_Shdr *section,
Filedata *filedata,
bool relocate)
{
size_t bytes;
uint64_t section_size;
uint64_t addr;
unsigned char *data;
unsigned char *real_start;
unsigned char *start;
unsigned char *decomp_buf;
real_start = start = (unsigned char *) get_section_contents (section, filedata);
if (start == NULL)
/* PR 21820: Do not fail if the section was empty. */
return section->sh_size == 0 || section->sh_type == SHT_NOBITS;
section_size = section->sh_size;
if (filedata->is_separate)
printf (_("\nHex dump of section '%s' in linked file %s:\n"),
printable_section_name (filedata, section),
filedata->file_name);
else
printf (_("\nHex dump of section '%s':\n"),
printable_section_name (filedata, section));
decomp_buf = NULL;
section_size = maybe_expand_or_relocate_section (section, filedata, &start,
&decomp_buf, relocate);
if (section_size == (uint64_t) -1)
goto error_out;
addr = section->sh_addr;
bytes = section_size;
data = start;
while (bytes)
{
int j;
int k;
int lbytes;
lbytes = (bytes > 16 ? 16 : bytes);
printf (" 0x%8.8" PRIx64 " ", addr);
for (j = 0; j < 16; j++)
{
if (j < lbytes)
printf ("%2.2x", data[j]);
else
printf (" ");
if ((j & 3) == 3)
printf (" ");
}
for (j = 0; j < lbytes; j++)
{
k = data[j];
if (k >= ' ' && k < 0x7f)
printf ("%c", k);
else
printf (".");
}
putchar ('\n');
data += lbytes;
addr += lbytes;
bytes -= lbytes;
}
free (decomp_buf);
free (real_start);
putchar ('\n');
return true;
error_out:
free (decomp_buf);
free (real_start);
return false;
}
#ifdef ENABLE_LIBCTF
static ctf_sect_t *
shdr_to_ctf_sect (ctf_sect_t *buf, Elf_Internal_Shdr *shdr, Filedata *filedata)
{
buf->cts_name = printable_section_name (filedata, shdr);
buf->cts_size = shdr->sh_size;
buf->cts_entsize = shdr->sh_entsize;
return buf;
}
/* Formatting callback function passed to ctf_dump. Returns either the pointer
it is passed, or a pointer to newly-allocated storage, in which case
dump_ctf() will free it when it no longer needs it. */
static char *
dump_ctf_indent_lines (ctf_sect_names_t sect ATTRIBUTE_UNUSED,
char *s, void *arg)
{
const char *blanks = arg;
return xasprintf ("%s%s", blanks, s);
}
/* Dump CTF errors/warnings. */
static void
dump_ctf_errs (ctf_dict_t *fp)
{
ctf_next_t *it = NULL;
char *errtext;
int is_warning;
int err;
/* Dump accumulated errors and warnings. */
while ((errtext = ctf_errwarning_next (fp, &it, &is_warning, &err)) != NULL)
{
error (_("%s: %s"), is_warning ? _("warning"): _("error"),
errtext);
free (errtext);
}
if (err != ECTF_NEXT_END)
error (_("CTF error: cannot get CTF errors: `%s'"), ctf_errmsg (err));
}
/* Dump one CTF archive member. */
static void
dump_ctf_archive_member (ctf_dict_t *ctf, const char *name, ctf_dict_t *parent,
size_t member)
{
const char *things[] = {"Header", "Labels", "Data objects",
"Function objects", "Variables", "Types", "Strings",
""};
const char **thing;
size_t i;
/* Don't print out the name of the default-named archive member if it appears
first in the list. The name .ctf appears everywhere, even for things that
aren't really archives, so printing it out is liable to be confusing; also,
the common case by far is for only one archive member to exist, and hiding
it in that case seems worthwhile. */
if (strcmp (name, ".ctf") != 0 || member != 0)
printf (_("\nCTF archive member: %s:\n"), name);
if (ctf_parent_name (ctf) != NULL)
ctf_import (ctf, parent);
for (i = 0, thing = things; *thing[0]; thing++, i++)
{
ctf_dump_state_t *s = NULL;
char *item;
printf ("\n %s:\n", *thing);
while ((item = ctf_dump (ctf, &s, i, dump_ctf_indent_lines,
(void *) " ")) != NULL)
{
printf ("%s\n", item);
free (item);
}
if (ctf_errno (ctf))
{
error (_("Iteration failed: %s, %s\n"), *thing,
ctf_errmsg (ctf_errno (ctf)));
break;
}
}
dump_ctf_errs (ctf);
}
static bool
dump_section_as_ctf (Elf_Internal_Shdr * section, Filedata * filedata)
{
Elf_Internal_Shdr * symtab_sec = NULL;
Elf_Internal_Shdr * strtab_sec = NULL;
void * data = NULL;
void * symdata = NULL;
void * strdata = NULL;
ctf_sect_t ctfsect, symsect, strsect;
ctf_sect_t * symsectp = NULL;
ctf_sect_t * strsectp = NULL;
ctf_archive_t * ctfa = NULL;
ctf_dict_t * parent = NULL;
ctf_dict_t * fp;
ctf_next_t *i = NULL;
const char *name;
size_t member = 0;
int err;
bool ret = false;
shdr_to_ctf_sect (&ctfsect, section, filedata);
data = get_section_contents (section, filedata);
ctfsect.cts_data = data;
if (!dump_ctf_symtab_name)
dump_ctf_symtab_name = strdup (".dynsym");
if (!dump_ctf_strtab_name)
dump_ctf_strtab_name = strdup (".dynstr");
if (dump_ctf_symtab_name && dump_ctf_symtab_name[0] != 0)
{
if ((symtab_sec = find_section (filedata, dump_ctf_symtab_name)) == NULL)
{
error (_("No symbol section named %s\n"), dump_ctf_symtab_name);
goto fail;
}
if ((symdata = (void *) get_data (NULL, filedata,
symtab_sec->sh_offset, 1,
symtab_sec->sh_size,
_("symbols"))) == NULL)
goto fail;
symsectp = shdr_to_ctf_sect (&symsect, symtab_sec, filedata);
symsect.cts_data = symdata;
}
if (dump_ctf_strtab_name && dump_ctf_strtab_name[0] != 0)
{
if ((strtab_sec = find_section (filedata, dump_ctf_strtab_name)) == NULL)
{
error (_("No string table section named %s\n"),
dump_ctf_strtab_name);
goto fail;
}
if ((strdata = (void *) get_data (NULL, filedata,
strtab_sec->sh_offset, 1,
strtab_sec->sh_size,
_("strings"))) == NULL)
goto fail;
strsectp = shdr_to_ctf_sect (&strsect, strtab_sec, filedata);
strsect.cts_data = strdata;
}
/* Load the CTF file and dump it. It may be a raw CTF section, or an archive:
libctf papers over the difference, so we can pretend it is always an
archive. */
if ((ctfa = ctf_arc_bufopen (&ctfsect, symsectp, strsectp, &err)) == NULL)
{
dump_ctf_errs (NULL);
error (_("CTF open failure: %s\n"), ctf_errmsg (err));
goto fail;
}
ctf_arc_symsect_endianness (ctfa, filedata->file_header.e_ident[EI_DATA]
!= ELFDATA2MSB);
/* Preload the parent dict, since it will need to be imported into every
child in turn. */
if ((parent = ctf_dict_open (ctfa, dump_ctf_parent_name, &err)) == NULL)
{
dump_ctf_errs (NULL);
error (_("CTF open failure: %s\n"), ctf_errmsg (err));
goto fail;
}
ret = true;
if (filedata->is_separate)
printf (_("\nDump of CTF section '%s' in linked file %s:\n"),
printable_section_name (filedata, section),
filedata->file_name);
else
printf (_("\nDump of CTF section '%s':\n"),
printable_section_name (filedata, section));
while ((fp = ctf_archive_next (ctfa, &i, &name, 0, &err)) != NULL)
dump_ctf_archive_member (fp, name, parent, member++);
if (err != ECTF_NEXT_END)
{
dump_ctf_errs (NULL);
error (_("CTF member open failure: %s\n"), ctf_errmsg (err));
ret = false;
}
fail:
ctf_dict_close (parent);
ctf_close (ctfa);
free (data);
free (symdata);
free (strdata);
return ret;
}
#endif
static bool
dump_section_as_sframe (Elf_Internal_Shdr * section, Filedata * filedata)
{
void * data = NULL;
sframe_decoder_ctx *sfd_ctx = NULL;
const char *print_name = printable_section_name (filedata, section);
bool ret = true;
size_t sf_size;
int err = 0;
if (strcmp (print_name, "") == 0)
{
error (_("Section name must be provided \n"));
ret = false;
return ret;
}
data = get_section_contents (section, filedata);
sf_size = section->sh_size;
/* Decode the contents of the section. */
sfd_ctx = sframe_decode ((const char*)data, sf_size, &err);
if (!sfd_ctx)
{
ret = false;
error (_("SFrame decode failure: %s\n"), sframe_errmsg (err));
goto fail;
}
printf (_("Contents of the SFrame section %s:"), print_name);
/* Dump the contents as text. */
dump_sframe (sfd_ctx, section->sh_addr);
fail:
free (data);
return ret;
}
static bool
load_specific_debug_section (enum dwarf_section_display_enum debug,
const Elf_Internal_Shdr * sec,
void * data)
{
struct dwarf_section * section = &debug_displays [debug].section;
char buf [64];
Filedata * filedata = (Filedata *) data;
if (section->start != NULL)
{
/* If it is already loaded, do nothing. */
if (streq (section->filename, filedata->file_name))
return true;
free (section->start);
}
snprintf (buf, sizeof (buf), _("%s section data"), section->name);
section->address = sec->sh_addr;
section->filename = filedata->file_name;
section->start = (unsigned char *) get_data (NULL, filedata,
sec->sh_offset, 1,
sec->sh_size, buf);
if (section->start == NULL)
section->size = 0;
else
{
unsigned char *start = section->start;
uint64_t size = sec->sh_size;
uint64_t uncompressed_size = 0;
bool is_zstd = false;
if ((sec->sh_flags & SHF_COMPRESSED) != 0)
{
Elf_Internal_Chdr chdr;
unsigned int compression_header_size;
if (size < (is_32bit_elf
? sizeof (Elf32_External_Chdr)
: sizeof (Elf64_External_Chdr)))
{
warn (_("compressed section %s is too small to contain a compression header\n"),
section->name);
return false;
}
compression_header_size = get_compression_header (&chdr, start, size);
if (compression_header_size == 0)
/* An error message will have already been generated
by get_compression_header. */
return false;
if (chdr.ch_type == ch_compress_zlib)
;
#ifdef HAVE_ZSTD
else if (chdr.ch_type == ch_compress_zstd)
is_zstd = true;
#endif
else
{
warn (_("section '%s' has unsupported compress type: %d\n"),
section->name, chdr.ch_type);
return false;
}
uncompressed_size = chdr.ch_size;
start += compression_header_size;
size -= compression_header_size;
}
else if (size > 12 && streq ((char *) start, "ZLIB"))
{
/* Read the zlib header. In this case, it should be "ZLIB"
followed by the uncompressed section size, 8 bytes in
big-endian order. */
uncompressed_size = start[4]; uncompressed_size <<= 8;
uncompressed_size += start[5]; uncompressed_size <<= 8;
uncompressed_size += start[6]; uncompressed_size <<= 8;
uncompressed_size += start[7]; uncompressed_size <<= 8;
uncompressed_size += start[8]; uncompressed_size <<= 8;
uncompressed_size += start[9]; uncompressed_size <<= 8;
uncompressed_size += start[10]; uncompressed_size <<= 8;
uncompressed_size += start[11];
start += 12;
size -= 12;
}
if (uncompressed_size)
{
if (uncompress_section_contents (is_zstd, &start, uncompressed_size,
&size, filedata->file_size))
{
/* Free the compressed buffer, update the section buffer
and the section size if uncompress is successful. */
free (section->start);
section->start = start;
}
else
{
error (_("Unable to decompress section %s\n"),
printable_section_name (filedata, sec));
return false;
}
}
section->size = size;
}
if (section->start == NULL)
return false;
if (debug_displays [debug].relocate)
{
if (! apply_relocations (filedata, sec, section->start, section->size,
& section->reloc_info, & section->num_relocs))
return false;
}
else
{
section->reloc_info = NULL;
section->num_relocs = 0;
}
return true;
}
#if HAVE_LIBDEBUGINFOD
/* Return a hex string representation of the build-id. */
unsigned char *
get_build_id (void * data)
{
Filedata * filedata = (Filedata *) data;
Elf_Internal_Shdr * shdr;
size_t i;
/* Iterate through notes to find note.gnu.build-id.
FIXME: Only the first note in any note section is examined. */
for (i = 0, shdr = filedata->section_headers;
i < filedata->file_header.e_shnum && shdr != NULL;
i++, shdr++)
{
if (shdr->sh_type != SHT_NOTE)
continue;
char * next;
char * end;
size_t data_remaining;
size_t min_notesz;
Elf_External_Note * enote;
Elf_Internal_Note inote;
uint64_t offset = shdr->sh_offset;
uint64_t align = shdr->sh_addralign;
uint64_t length = shdr->sh_size;
enote = (Elf_External_Note *) get_section_contents (shdr, filedata);
if (enote == NULL)
continue;
if (align < 4)
align = 4;
else if (align != 4 && align != 8)
{
free (enote);
continue;
}
end = (char *) enote + length;
data_remaining = end - (char *) enote;
if (!is_ia64_vms (filedata))
{
min_notesz = offsetof (Elf_External_Note, name);
if (data_remaining < min_notesz)
{
warn (_("\
malformed note encountered in section %s whilst scanning for build-id note\n"),
printable_section_name (filedata, shdr));
free (enote);
continue;
}
data_remaining -= min_notesz;
inote.type = BYTE_GET (enote->type);
inote.namesz = BYTE_GET (enote->namesz);
inote.namedata = enote->name;
inote.descsz = BYTE_GET (enote->descsz);
inote.descdata = ((char *) enote
+ ELF_NOTE_DESC_OFFSET (inote.namesz, align));
inote.descpos = offset + (inote.descdata - (char *) enote);
next = ((char *) enote
+ ELF_NOTE_NEXT_OFFSET (inote.namesz, inote.descsz, align));
}
else
{
Elf64_External_VMS_Note *vms_enote;
/* PR binutils/15191
Make sure that there is enough data to read. */
min_notesz = offsetof (Elf64_External_VMS_Note, name);
if (data_remaining < min_notesz)
{
warn (_("\
malformed note encountered in section %s whilst scanning for build-id note\n"),
printable_section_name (filedata, shdr));
free (enote);
continue;
}
data_remaining -= min_notesz;
vms_enote = (Elf64_External_VMS_Note *) enote;
inote.type = BYTE_GET (vms_enote->type);
inote.namesz = BYTE_GET (vms_enote->namesz);
inote.namedata = vms_enote->name;
inote.descsz = BYTE_GET (vms_enote->descsz);
inote.descdata = inote.namedata + align_power (inote.namesz, 3);
inote.descpos = offset + (inote.descdata - (char *) enote);
next = inote.descdata + align_power (inote.descsz, 3);
}
/* Skip malformed notes. */
if ((size_t) (inote.descdata - inote.namedata) < inote.namesz
|| (size_t) (inote.descdata - inote.namedata) > data_remaining
|| (size_t) (next - inote.descdata) < inote.descsz
|| ((size_t) (next - inote.descdata)
> data_remaining - (size_t) (inote.descdata - inote.namedata)))
{
warn (_("\
malformed note encountered in section %s whilst scanning for build-id note\n"),
printable_section_name (filedata, shdr));
free (enote);
continue;
}
/* Check if this is the build-id note. If so then convert the build-id
bytes to a hex string. */
if (inote.namesz > 0
&& startswith (inote.namedata, "GNU")
&& inote.type == NT_GNU_BUILD_ID)
{
size_t j;
char * build_id;
build_id = malloc (inote.descsz * 2 + 1);
if (build_id == NULL)
{
free (enote);
return NULL;
}
for (j = 0; j < inote.descsz; ++j)
sprintf (build_id + (j * 2), "%02x", inote.descdata[j] & 0xff);
build_id[inote.descsz * 2] = '\0';
free (enote);
return (unsigned char *) build_id;
}
free (enote);
}
return NULL;
}
#endif /* HAVE_LIBDEBUGINFOD */
/* If this is not NULL, load_debug_section will only look for sections
within the list of sections given here. */
static unsigned int * section_subset = NULL;
bool
load_debug_section (enum dwarf_section_display_enum debug, void * data)
{
struct dwarf_section * section = &debug_displays [debug].section;
Elf_Internal_Shdr * sec;
Filedata * filedata = (Filedata *) data;
if (!dump_any_debugging)
return false;
/* Without section headers we cannot find any sections. */
if (filedata->section_headers == NULL)
return false;
if (filedata->string_table == NULL
&& filedata->file_header.e_shstrndx != SHN_UNDEF
&& filedata->file_header.e_shstrndx < filedata->file_header.e_shnum)
{
Elf_Internal_Shdr * strs;
/* Read in the string table, so that we have section names to scan. */
strs = filedata->section_headers + filedata->file_header.e_shstrndx;
if (strs != NULL && strs->sh_size != 0)
{
filedata->string_table
= (char *) get_data (NULL, filedata, strs->sh_offset,
1, strs->sh_size, _("string table"));
filedata->string_table_length
= filedata->string_table != NULL ? strs->sh_size : 0;
}
}
/* Locate the debug section. */
sec = find_section_in_set (filedata, section->uncompressed_name, section_subset);
if (sec != NULL)
section->name = section->uncompressed_name;
else
{
sec = find_section_in_set (filedata, section->compressed_name, section_subset);
if (sec != NULL)
section->name = section->compressed_name;
}
if (sec == NULL)
return false;
/* If we're loading from a subset of sections, and we've loaded
a section matching this name before, it's likely that it's a
different one. */
if (section_subset != NULL)
free_debug_section (debug);
return load_specific_debug_section (debug, sec, data);
}
void
free_debug_section (enum dwarf_section_display_enum debug)
{
struct dwarf_section * section = &debug_displays [debug].section;
if (section->start == NULL)
return;
free ((char *) section->start);
section->start = NULL;
section->address = 0;
section->size = 0;
free (section->reloc_info);
section->reloc_info = NULL;
section->num_relocs = 0;
}
static bool
display_debug_section (int shndx, Elf_Internal_Shdr * section, Filedata * filedata)
{
const char *name = (section_name_valid (filedata, section)
? section_name (filedata, section) : "");
const char *print_name = printable_section_name (filedata, section);
uint64_t length;
bool result = true;
int i;
length = section->sh_size;
if (length == 0)
{
printf (_("\nSection '%s' has no debugging data.\n"), print_name);
return true;
}
if (section->sh_type == SHT_NOBITS)
{
/* There is no point in dumping the contents of a debugging section
which has the NOBITS type - the bits in the file will be random.
This can happen when a file containing a .eh_frame section is
stripped with the --only-keep-debug command line option. */
printf (_("section '%s' has the NOBITS type - its contents are unreliable.\n"),
print_name);
return false;
}
if (startswith (name, ".gnu.linkonce.wi."))
name = ".debug_info";
/* See if we know how to display the contents of this section. */
for (i = 0; i < max; i++)
{
enum dwarf_section_display_enum id = (enum dwarf_section_display_enum) i;
struct dwarf_section_display * display = debug_displays + i;
struct dwarf_section * sec = & display->section;
if (streq (sec->uncompressed_name, name)
|| (id == line && startswith (name, ".debug_line."))
|| streq (sec->compressed_name, name))
{
bool secondary = (section != find_section (filedata, name));
if (secondary)
free_debug_section (id);
if (i == line && startswith (name, ".debug_line."))
sec->name = name;
else if (streq (sec->uncompressed_name, name))
sec->name = sec->uncompressed_name;
else
sec->name = sec->compressed_name;
if (load_specific_debug_section (id, section, filedata))
{
/* If this debug section is part of a CU/TU set in a .dwp file,
restrict load_debug_section to the sections in that set. */
section_subset = find_cu_tu_set (filedata, shndx);
result &= display->display (sec, filedata);
section_subset = NULL;
if (secondary || (id != info && id != abbrev && id != debug_addr))
free_debug_section (id);
}
break;
}
}
if (i == max)
{
printf (_("Unrecognized debug section: %s\n"), print_name);
result = false;
}
return result;
}
/* Set DUMP_SECTS for all sections where dumps were requested
based on section name. */
static void
initialise_dumps_byname (Filedata * filedata)
{
struct dump_list_entry * cur;
for (cur = dump_sects_byname; cur; cur = cur->next)
{
unsigned int i;
bool any = false;
for (i = 0; i < filedata->file_header.e_shnum; i++)
if (section_name_valid (filedata, filedata->section_headers + i)
&& streq (section_name (filedata, filedata->section_headers + i),
cur->name))
{
request_dump_bynumber (&filedata->dump, i, cur->type);
any = true;
}
if (!any && !filedata->is_separate)
warn (_("Section '%s' was not dumped because it does not exist\n"),
cur->name);
}
}
static bool
process_section_contents (Filedata * filedata)
{
Elf_Internal_Shdr * section;
unsigned int i;
bool res = true;
if (! do_dump)
return true;
initialise_dumps_byname (filedata);
for (i = 0, section = filedata->section_headers;
i < filedata->file_header.e_shnum && i < filedata->dump.num_dump_sects;
i++, section++)
{
dump_type dump = filedata->dump.dump_sects[i];
if (filedata->is_separate && ! process_links)
dump &= DEBUG_DUMP;
if (dump & AUTO_DUMP)
{
switch (section->sh_type)
{
case SHT_PROGBITS:
/* FIXME: There are lots of different type of section that have
SHT_PROGBITS set in their header - code, debug info, etc. So
we should check the section's name and interpret its contents
that way, rather than just defaulting to a byte dump. */
#ifdef SUPPORT_DISASSEMBLY
res &= disassemble_section (section, filedata);
#else
res &= dump_section_as_bytes (section, filedata, false);
#endif
break;
case SHT_DYNSYM:
case SHT_SYMTAB:
res &= dump_symbol_section (section, filedata);
break;
case SHT_STRTAB:
res &= dump_section_as_strings (section, filedata);
break;
case SHT_RELA:
case SHT_REL:
case SHT_RELR:
res &= display_relocations (section, filedata);
break;
case SHT_NOTE:
res &= process_notes_at (filedata, section, section->sh_offset,
section->sh_size, section->sh_addralign);
break;
case SHT_NULL:
inform (_("Unable to display section %d - it has a NULL type\n"), i);
break;
case SHT_NOBITS:
inform (_("Unable to display section %d - it has no contents\n"), i);
break;
case SHT_HASH:
case SHT_DYNAMIC:
case SHT_GROUP:
case SHT_GNU_ATTRIBUTES:
/* FIXME: Implement these. */
/* Fall through. */
default:
/* FIXME: Add Proc and OS specific section types ? */
warn (_("Unable to determine how to dump section %d (type %#x)\n"),
i, section->sh_type);
res = false;
break;
}
}
#ifdef SUPPORT_DISASSEMBLY
if (dump & DISASS_DUMP)
{
if (! disassemble_section (section, filedata))
res = false;
}
#endif
if (dump & HEX_DUMP)
{
if (! dump_section_as_bytes (section, filedata, false))
res = false;
}
if (dump & RELOC_DUMP)
{
if (! dump_section_as_bytes (section, filedata, true))
res = false;
}
if (dump & STRING_DUMP)
{
if (! dump_section_as_strings (section, filedata))
res = false;
}
if (dump & DEBUG_DUMP)
{
if (! display_debug_section (i, section, filedata))
res = false;
}
#ifdef ENABLE_LIBCTF
if (dump & CTF_DUMP)
{
if (! dump_section_as_ctf (section, filedata))
res = false;
}
#endif
if (dump & SFRAME_DUMP)
{
if (! dump_section_as_sframe (section, filedata))
res = false;
}
}
if (! filedata->is_separate)
{
/* Check to see if the user requested a
dump of a section that does not exist. */
for (; i < filedata->dump.num_dump_sects; i++)
if (filedata->dump.dump_sects[i])
{
warn (_("Section %d was not dumped because it does not exist!\n"), i);
res = false;
}
}
return res;
}
static void
process_mips_fpe_exception (int mask)
{
if (mask)
{
bool first = true;
if (mask & OEX_FPU_INEX)
fputs ("INEX", stdout), first = false;
if (mask & OEX_FPU_UFLO)
printf ("%sUFLO", first ? "" : "|"), first = false;
if (mask & OEX_FPU_OFLO)
printf ("%sOFLO", first ? "" : "|"), first = false;
if (mask & OEX_FPU_DIV0)
printf ("%sDIV0", first ? "" : "|"), first = false;
if (mask & OEX_FPU_INVAL)
printf ("%sINVAL", first ? "" : "|");
}
else
fputs ("0", stdout);
}
/* Display's the value of TAG at location P. If TAG is
greater than 0 it is assumed to be an unknown tag, and
a message is printed to this effect. Otherwise it is
assumed that a message has already been printed.
If the bottom bit of TAG is set it assumed to have a
string value, otherwise it is assumed to have an integer
value.
Returns an updated P pointing to the first unread byte
beyond the end of TAG's value.
Reads at or beyond END will not be made. */
static unsigned char *
display_tag_value (signed int tag,
unsigned char * p,
const unsigned char * const end)
{
uint64_t val;
if (tag > 0)
printf (" Tag_unknown_%d: ", tag);
if (p >= end)
{
warn (_("<corrupt tag>\n"));
}
else if (tag & 1)
{
/* PR 17531 file: 027-19978-0.004. */
size_t maxlen = (end - p) - 1;
putchar ('"');
if (maxlen > 0)
{
print_symbol_name ((int) maxlen, (const char *) p);
p += strnlen ((char *) p, maxlen) + 1;
}
else
{
printf (_("<corrupt string tag>"));
p = (unsigned char *) end;
}
printf ("\"\n");
}
else
{
READ_ULEB (val, p, end);
printf ("%" PRId64 " (0x%" PRIx64 ")\n", val, val);
}
assert (p <= end);
return p;
}
/* ARC ABI attributes section. */
static unsigned char *
display_arc_attribute (unsigned char * p,
const unsigned char * const end)
{
unsigned int tag;
unsigned int val;
READ_ULEB (tag, p, end);
switch (tag)
{
case Tag_ARC_PCS_config:
READ_ULEB (val, p, end);
printf (" Tag_ARC_PCS_config: ");
switch (val)
{
case 0:
printf (_("Absent/Non standard\n"));
break;
case 1:
printf (_("Bare metal/mwdt\n"));
break;
case 2:
printf (_("Bare metal/newlib\n"));
break;
case 3:
printf (_("Linux/uclibc\n"));
break;
case 4:
printf (_("Linux/glibc\n"));
break;
default:
printf (_("Unknown\n"));
break;
}
break;
case Tag_ARC_CPU_base:
READ_ULEB (val, p, end);
printf (" Tag_ARC_CPU_base: ");
switch (val)
{
default:
case TAG_CPU_NONE:
printf (_("Absent\n"));
break;
case TAG_CPU_ARC6xx:
printf ("ARC6xx\n");
break;
case TAG_CPU_ARC7xx:
printf ("ARC7xx\n");
break;
case TAG_CPU_ARCEM:
printf ("ARCEM\n");
break;
case TAG_CPU_ARCHS:
printf ("ARCHS\n");
break;
}
break;
case Tag_ARC_CPU_variation:
READ_ULEB (val, p, end);
printf (" Tag_ARC_CPU_variation: ");
switch (val)
{
default:
if (val > 0 && val < 16)
printf ("Core%d\n", val);
else
printf ("Unknown\n");
break;
case 0:
printf (_("Absent\n"));
break;
}
break;
case Tag_ARC_CPU_name:
printf (" Tag_ARC_CPU_name: ");
p = display_tag_value (-1, p, end);
break;
case Tag_ARC_ABI_rf16:
READ_ULEB (val, p, end);
printf (" Tag_ARC_ABI_rf16: %s\n", val ? _("yes") : _("no"));
break;
case Tag_ARC_ABI_osver:
READ_ULEB (val, p, end);
printf (" Tag_ARC_ABI_osver: v%d\n", val);
break;
case Tag_ARC_ABI_pic:
case Tag_ARC_ABI_sda:
READ_ULEB (val, p, end);
printf (tag == Tag_ARC_ABI_sda ? " Tag_ARC_ABI_sda: "
: " Tag_ARC_ABI_pic: ");
switch (val)
{
case 0:
printf (_("Absent\n"));
break;
case 1:
printf ("MWDT\n");
break;
case 2:
printf ("GNU\n");
break;
default:
printf (_("Unknown\n"));
break;
}
break;
case Tag_ARC_ABI_tls:
READ_ULEB (val, p, end);
printf (" Tag_ARC_ABI_tls: %s\n", val ? "r25": "none");
break;
case Tag_ARC_ABI_enumsize:
READ_ULEB (val, p, end);
printf (" Tag_ARC_ABI_enumsize: %s\n", val ? _("default") :
_("smallest"));
break;
case Tag_ARC_ABI_exceptions:
READ_ULEB (val, p, end);
printf (" Tag_ARC_ABI_exceptions: %s\n", val ? _("OPTFP")
: _("default"));
break;
case Tag_ARC_ABI_double_size:
READ_ULEB (val, p, end);
printf (" Tag_ARC_ABI_double_size: %d\n", val);
break;
case Tag_ARC_ISA_config:
printf (" Tag_ARC_ISA_config: ");
p = display_tag_value (-1, p, end);
break;
case Tag_ARC_ISA_apex:
printf (" Tag_ARC_ISA_apex: ");
p = display_tag_value (-1, p, end);
break;
case Tag_ARC_ISA_mpy_option:
READ_ULEB (val, p, end);
printf (" Tag_ARC_ISA_mpy_option: %d\n", val);
break;
case Tag_ARC_ATR_version:
READ_ULEB (val, p, end);
printf (" Tag_ARC_ATR_version: %d\n", val);
break;
default:
return display_tag_value (tag & 1, p, end);
}
return p;
}
/* ARM EABI attributes section. */
typedef struct
{
unsigned int tag;
const char * name;
/* 0 = special, 1 = string, 2 = uleb123, > 0x80 == table lookup. */
unsigned int type;
const char *const *table;
} arm_attr_public_tag;
static const char *const arm_attr_tag_CPU_arch[] =
{"Pre-v4", "v4", "v4T", "v5T", "v5TE", "v5TEJ", "v6", "v6KZ", "v6T2",
"v6K", "v7", "v6-M", "v6S-M", "v7E-M", "v8", "v8-R", "v8-M.baseline",
"v8-M.mainline", "v8.1-A", "v8.2-A", "v8.3-A",
"v8.1-M.mainline", "v9"};
static const char *const arm_attr_tag_ARM_ISA_use[] = {"No", "Yes"};
static const char *const arm_attr_tag_THUMB_ISA_use[] =
{"No", "Thumb-1", "Thumb-2", "Yes"};
static const char *const arm_attr_tag_FP_arch[] =
{"No", "VFPv1", "VFPv2", "VFPv3", "VFPv3-D16", "VFPv4", "VFPv4-D16",
"FP for ARMv8", "FPv5/FP-D16 for ARMv8"};
static const char *const arm_attr_tag_WMMX_arch[] = {"No", "WMMXv1", "WMMXv2"};
static const char *const arm_attr_tag_Advanced_SIMD_arch[] =
{"No", "NEONv1", "NEONv1 with Fused-MAC", "NEON for ARMv8",
"NEON for ARMv8.1"};
static const char *const arm_attr_tag_PCS_config[] =
{"None", "Bare platform", "Linux application", "Linux DSO", "PalmOS 2004",
"PalmOS (reserved)", "SymbianOS 2004", "SymbianOS (reserved)"};
static const char *const arm_attr_tag_ABI_PCS_R9_use[] =
{"V6", "SB", "TLS", "Unused"};
static const char *const arm_attr_tag_ABI_PCS_RW_data[] =
{"Absolute", "PC-relative", "SB-relative", "None"};
static const char *const arm_attr_tag_ABI_PCS_RO_data[] =
{"Absolute", "PC-relative", "None"};
static const char *const arm_attr_tag_ABI_PCS_GOT_use[] =
{"None", "direct", "GOT-indirect"};
static const char *const arm_attr_tag_ABI_PCS_wchar_t[] =
{"None", "??? 1", "2", "??? 3", "4"};
static const char *const arm_attr_tag_ABI_FP_rounding[] = {"Unused", "Needed"};
static const char *const arm_attr_tag_ABI_FP_denormal[] =
{"Unused", "Needed", "Sign only"};
static const char *const arm_attr_tag_ABI_FP_exceptions[] = {"Unused", "Needed"};
static const char *const arm_attr_tag_ABI_FP_user_exceptions[] = {"Unused", "Needed"};
static const char *const arm_attr_tag_ABI_FP_number_model[] =
{"Unused", "Finite", "RTABI", "IEEE 754"};
static const char *const arm_attr_tag_ABI_enum_size[] =
{"Unused", "small", "int", "forced to int"};
static const char *const arm_attr_tag_ABI_HardFP_use[] =
{"As Tag_FP_arch", "SP only", "Reserved", "Deprecated"};
static const char *const arm_attr_tag_ABI_VFP_args[] =
{"AAPCS", "VFP registers", "custom", "compatible"};
static const char *const arm_attr_tag_ABI_WMMX_args[] =
{"AAPCS", "WMMX registers", "custom"};
static const char *const arm_attr_tag_ABI_optimization_goals[] =
{"None", "Prefer Speed", "Aggressive Speed", "Prefer Size",
"Aggressive Size", "Prefer Debug", "Aggressive Debug"};
static const char *const arm_attr_tag_ABI_FP_optimization_goals[] =
{"None", "Prefer Speed", "Aggressive Speed", "Prefer Size",
"Aggressive Size", "Prefer Accuracy", "Aggressive Accuracy"};
static const char *const arm_attr_tag_CPU_unaligned_access[] = {"None", "v6"};
static const char *const arm_attr_tag_FP_HP_extension[] =
{"Not Allowed", "Allowed"};
static const char *const arm_attr_tag_ABI_FP_16bit_format[] =
{"None", "IEEE 754", "Alternative Format"};
static const char *const arm_attr_tag_DSP_extension[] =
{"Follow architecture", "Allowed"};
static const char *const arm_attr_tag_MPextension_use[] =
{"Not Allowed", "Allowed"};
static const char *const arm_attr_tag_DIV_use[] =
{"Allowed in Thumb-ISA, v7-R or v7-M", "Not allowed",
"Allowed in v7-A with integer division extension"};
static const char *const arm_attr_tag_T2EE_use[] = {"Not Allowed", "Allowed"};
static const char *const arm_attr_tag_Virtualization_use[] =
{"Not Allowed", "TrustZone", "Virtualization Extensions",
"TrustZone and Virtualization Extensions"};
static const char *const arm_attr_tag_MPextension_use_legacy[] =
{"Not Allowed", "Allowed"};
static const char *const arm_attr_tag_MVE_arch[] =
{"No MVE", "MVE Integer only", "MVE Integer and FP"};
static const char * arm_attr_tag_PAC_extension[] =
{"No PAC/AUT instructions",
"PAC/AUT instructions permitted in the NOP space",
"PAC/AUT instructions permitted in the NOP and in the non-NOP space"};
static const char * arm_attr_tag_BTI_extension[] =
{"BTI instructions not permitted",
"BTI instructions permitted in the NOP space",
"BTI instructions permitted in the NOP and in the non-NOP space"};
static const char * arm_attr_tag_BTI_use[] =
{"Compiled without branch target enforcement",
"Compiled with branch target enforcement"};
static const char * arm_attr_tag_PACRET_use[] =
{"Compiled without return address signing and authentication",
"Compiled with return address signing and authentication"};
#define LOOKUP(id, name) \
{id, #name, 0x80 | ARRAY_SIZE(arm_attr_tag_##name), arm_attr_tag_##name}
static arm_attr_public_tag arm_attr_public_tags[] =
{
{4, "CPU_raw_name", 1, NULL},
{5, "CPU_name", 1, NULL},
LOOKUP(6, CPU_arch),
{7, "CPU_arch_profile", 0, NULL},
LOOKUP(8, ARM_ISA_use),
LOOKUP(9, THUMB_ISA_use),
LOOKUP(10, FP_arch),
LOOKUP(11, WMMX_arch),
LOOKUP(12, Advanced_SIMD_arch),
LOOKUP(13, PCS_config),
LOOKUP(14, ABI_PCS_R9_use),
LOOKUP(15, ABI_PCS_RW_data),
LOOKUP(16, ABI_PCS_RO_data),
LOOKUP(17, ABI_PCS_GOT_use),
LOOKUP(18, ABI_PCS_wchar_t),
LOOKUP(19, ABI_FP_rounding),
LOOKUP(20, ABI_FP_denormal),
LOOKUP(21, ABI_FP_exceptions),
LOOKUP(22, ABI_FP_user_exceptions),
LOOKUP(23, ABI_FP_number_model),
{24, "ABI_align_needed", 0, NULL},
{25, "ABI_align_preserved", 0, NULL},
LOOKUP(26, ABI_enum_size),
LOOKUP(27, ABI_HardFP_use),
LOOKUP(28, ABI_VFP_args),
LOOKUP(29, ABI_WMMX_args),
LOOKUP(30, ABI_optimization_goals),
LOOKUP(31, ABI_FP_optimization_goals),
{32, "compatibility", 0, NULL},
LOOKUP(34, CPU_unaligned_access),
LOOKUP(36, FP_HP_extension),
LOOKUP(38, ABI_FP_16bit_format),
LOOKUP(42, MPextension_use),
LOOKUP(44, DIV_use),
LOOKUP(46, DSP_extension),
LOOKUP(48, MVE_arch),
LOOKUP(50, PAC_extension),
LOOKUP(52, BTI_extension),
LOOKUP(74, BTI_use),
LOOKUP(76, PACRET_use),
{64, "nodefaults", 0, NULL},
{65, "also_compatible_with", 0, NULL},
LOOKUP(66, T2EE_use),
{67, "conformance", 1, NULL},
LOOKUP(68, Virtualization_use),
LOOKUP(70, MPextension_use_legacy)
};
#undef LOOKUP
static unsigned char *
display_arm_attribute (unsigned char * p,
const unsigned char * const end)
{
unsigned int tag;
unsigned int val;
arm_attr_public_tag * attr;
unsigned i;
unsigned int type;
READ_ULEB (tag, p, end);
attr = NULL;
for (i = 0; i < ARRAY_SIZE (arm_attr_public_tags); i++)
{
if (arm_attr_public_tags[i].tag == tag)
{
attr = &arm_attr_public_tags[i];
break;
}
}
if (attr)
{
printf (" Tag_%s: ", attr->name);
switch (attr->type)
{
case 0:
switch (tag)
{
case 7: /* Tag_CPU_arch_profile. */
READ_ULEB (val, p, end);
switch (val)
{
case 0: printf (_("None\n")); break;
case 'A': printf (_("Application\n")); break;
case 'R': printf (_("Realtime\n")); break;
case 'M': printf (_("Microcontroller\n")); break;
case 'S': printf (_("Application or Realtime\n")); break;
default: printf ("??? (%d)\n", val); break;
}
break;
case 24: /* Tag_align_needed. */
READ_ULEB (val, p, end);
switch (val)
{
case 0: printf (_("None\n")); break;
case 1: printf (_("8-byte\n")); break;
case 2: printf (_("4-byte\n")); break;
case 3: printf ("??? 3\n"); break;
default:
if (val <= 12)
printf (_("8-byte and up to %d-byte extended\n"),
1 << val);
else
printf ("??? (%d)\n", val);
break;
}
break;
case 25: /* Tag_align_preserved. */
READ_ULEB (val, p, end);
switch (val)
{
case 0: printf (_("None\n")); break;
case 1: printf (_("8-byte, except leaf SP\n")); break;
case 2: printf (_("8-byte\n")); break;
case 3: printf ("??? 3\n"); break;
default:
if (val <= 12)
printf (_("8-byte and up to %d-byte extended\n"),
1 << val);
else
printf ("??? (%d)\n", val);
break;
}
break;
case 32: /* Tag_compatibility. */
{
READ_ULEB (val, p, end);
printf (_("flag = %d, vendor = "), val);
if (p < end - 1)
{
size_t maxlen = (end - p) - 1;
print_symbol_name ((int) maxlen, (const char *) p);
p += strnlen ((char *) p, maxlen) + 1;
}
else
{
printf (_("<corrupt>"));
p = (unsigned char *) end;
}
putchar ('\n');
}
break;
case 64: /* Tag_nodefaults. */
/* PR 17531: file: 001-505008-0.01. */
if (p < end)
p++;
printf (_("True\n"));
break;
case 65: /* Tag_also_compatible_with. */
READ_ULEB (val, p, end);
if (val == 6 /* Tag_CPU_arch. */)
{
READ_ULEB (val, p, end);
if ((unsigned int) val >= ARRAY_SIZE (arm_attr_tag_CPU_arch))
printf ("??? (%d)\n", val);
else
printf ("%s\n", arm_attr_tag_CPU_arch[val]);
}
else
printf ("???\n");
while (p < end && *(p++) != '\0' /* NUL terminator. */)
;
break;
default:
printf (_("<unknown: %d>\n"), tag);
break;
}
return p;
case 1:
return display_tag_value (-1, p, end);
case 2:
return display_tag_value (0, p, end);
default:
assert (attr->type & 0x80);
READ_ULEB (val, p, end);
type = attr->type & 0x7f;
if (val >= type)
printf ("??? (%d)\n", val);
else
printf ("%s\n", attr->table[val]);
return p;
}
}
return display_tag_value (tag, p, end);
}
static unsigned char *
display_gnu_attribute (unsigned char * p,
unsigned char * (* display_proc_gnu_attribute)
(unsigned char *, unsigned int, const unsigned char * const),
const unsigned char * const end)
{
unsigned int tag;
unsigned int val;
READ_ULEB (tag, p, end);
/* Tag_compatibility is the only generic GNU attribute defined at
present. */
if (tag == 32)
{
READ_ULEB (val, p, end);
printf (_("flag = %d, vendor = "), val);
if (p == end)
{
printf (_("<corrupt>\n"));
warn (_("corrupt vendor attribute\n"));
}
else
{
if (p < end - 1)
{
size_t maxlen = (end - p) - 1;
print_symbol_name ((int) maxlen, (const char *) p);
p += strnlen ((char *) p, maxlen) + 1;
}
else
{
printf (_("<corrupt>"));
p = (unsigned char *) end;
}
putchar ('\n');
}
return p;
}
if ((tag & 2) == 0 && display_proc_gnu_attribute)
return display_proc_gnu_attribute (p, tag, end);
return display_tag_value (tag, p, end);
}
static unsigned char *
display_m68k_gnu_attribute (unsigned char * p,
unsigned int tag,
const unsigned char * const end)
{
unsigned int val;
if (tag == Tag_GNU_M68K_ABI_FP)
{
printf (" Tag_GNU_M68K_ABI_FP: ");
if (p == end)
{
printf (_("<corrupt>\n"));
return p;
}
READ_ULEB (val, p, end);
if (val > 3)
printf ("(%#x), ", val);
switch (val & 3)
{
case 0:
printf (_("unspecified hard/soft float\n"));
break;
case 1:
printf (_("hard float\n"));
break;
case 2:
printf (_("soft float\n"));
break;
}
return p;
}
return display_tag_value (tag & 1, p, end);
}
static unsigned char *
display_power_gnu_attribute (unsigned char * p,
unsigned int tag,
const unsigned char * const end)
{
unsigned int val;
if (tag == Tag_GNU_Power_ABI_FP)
{
printf (" Tag_GNU_Power_ABI_FP: ");
if (p == end)
{
printf (_("<corrupt>\n"));
return p;
}
READ_ULEB (val, p, end);
if (val > 15)
printf ("(%#x), ", val);
switch (val & 3)
{
case 0:
printf (_("unspecified hard/soft float, "));
break;
case 1:
printf (_("hard float, "));
break;
case 2:
printf (_("soft float, "));
break;
case 3:
printf (_("single-precision hard float, "));
break;
}
switch (val & 0xC)
{
case 0:
printf (_("unspecified long double\n"));
break;
case 4:
printf (_("128-bit IBM long double\n"));
break;
case 8:
printf (_("64-bit long double\n"));
break;
case 12:
printf (_("128-bit IEEE long double\n"));
break;
}
return p;
}
if (tag == Tag_GNU_Power_ABI_Vector)
{
printf (" Tag_GNU_Power_ABI_Vector: ");
if (p == end)
{
printf (_("<corrupt>\n"));
return p;
}
READ_ULEB (val, p, end);
if (val > 3)
printf ("(%#x), ", val);
switch (val & 3)
{
case 0:
printf (_("unspecified\n"));
break;
case 1:
printf (_("generic\n"));
break;
case 2:
printf ("AltiVec\n");
break;
case 3:
printf ("SPE\n");
break;
}
return p;
}
if (tag == Tag_GNU_Power_ABI_Struct_Return)
{
printf (" Tag_GNU_Power_ABI_Struct_Return: ");
if (p == end)
{
printf (_("<corrupt>\n"));
return p;
}
READ_ULEB (val, p, end);
if (val > 2)
printf ("(%#x), ", val);
switch (val & 3)
{
case 0:
printf (_("unspecified\n"));
break;
case 1:
printf ("r3/r4\n");
break;
case 2:
printf (_("memory\n"));
break;
case 3:
printf ("???\n");
break;
}
return p;
}
return display_tag_value (tag & 1, p, end);
}
static unsigned char *
display_s390_gnu_attribute (unsigned char * p,
unsigned int tag,
const unsigned char * const end)
{
unsigned int val;
if (tag == Tag_GNU_S390_ABI_Vector)
{
printf (" Tag_GNU_S390_ABI_Vector: ");
READ_ULEB (val, p, end);
switch (val)
{
case 0:
printf (_("any\n"));
break;
case 1:
printf (_("software\n"));
break;
case 2:
printf (_("hardware\n"));
break;
default:
printf ("??? (%d)\n", val);
break;
}
return p;
}
return display_tag_value (tag & 1, p, end);
}
static void
display_sparc_hwcaps (unsigned int mask)
{
if (mask)
{
bool first = true;
if (mask & ELF_SPARC_HWCAP_MUL32)
fputs ("mul32", stdout), first = false;
if (mask & ELF_SPARC_HWCAP_DIV32)
printf ("%sdiv32", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP_FSMULD)
printf ("%sfsmuld", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP_V8PLUS)
printf ("%sv8plus", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP_POPC)
printf ("%spopc", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP_VIS)
printf ("%svis", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP_VIS2)
printf ("%svis2", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP_ASI_BLK_INIT)
printf ("%sASIBlkInit", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP_FMAF)
printf ("%sfmaf", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP_VIS3)
printf ("%svis3", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP_HPC)
printf ("%shpc", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP_RANDOM)
printf ("%srandom", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP_TRANS)
printf ("%strans", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP_FJFMAU)
printf ("%sfjfmau", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP_IMA)
printf ("%sima", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP_ASI_CACHE_SPARING)
printf ("%scspare", first ? "" : "|"), first = false;
}
else
fputc ('0', stdout);
fputc ('\n', stdout);
}
static void
display_sparc_hwcaps2 (unsigned int mask)
{
if (mask)
{
bool first = true;
if (mask & ELF_SPARC_HWCAP2_FJATHPLUS)
fputs ("fjathplus", stdout), first = false;
if (mask & ELF_SPARC_HWCAP2_VIS3B)
printf ("%svis3b", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP2_ADP)
printf ("%sadp", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP2_SPARC5)
printf ("%ssparc5", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP2_MWAIT)
printf ("%smwait", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP2_XMPMUL)
printf ("%sxmpmul", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP2_XMONT)
printf ("%sxmont2", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP2_NSEC)
printf ("%snsec", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP2_FJATHHPC)
printf ("%sfjathhpc", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP2_FJDES)
printf ("%sfjdes", first ? "" : "|"), first = false;
if (mask & ELF_SPARC_HWCAP2_FJAES)
printf ("%sfjaes", first ? "" : "|"), first = false;
}
else
fputc ('0', stdout);
fputc ('\n', stdout);
}
static unsigned char *
display_sparc_gnu_attribute (unsigned char * p,
unsigned int tag,
const unsigned char * const end)
{
unsigned int val;
if (tag == Tag_GNU_Sparc_HWCAPS)
{
READ_ULEB (val, p, end);
printf (" Tag_GNU_Sparc_HWCAPS: ");
display_sparc_hwcaps (val);
return p;
}
if (tag == Tag_GNU_Sparc_HWCAPS2)
{
READ_ULEB (val, p, end);
printf (" Tag_GNU_Sparc_HWCAPS2: ");
display_sparc_hwcaps2 (val);
return p;
}
return display_tag_value (tag, p, end);
}
static void
print_mips_fp_abi_value (unsigned int val)
{
switch (val)
{
case Val_GNU_MIPS_ABI_FP_ANY:
printf (_("Hard or soft float\n"));
break;
case Val_GNU_MIPS_ABI_FP_DOUBLE:
printf (_("Hard float (double precision)\n"));
break;
case Val_GNU_MIPS_ABI_FP_SINGLE:
printf (_("Hard float (single precision)\n"));
break;
case Val_GNU_MIPS_ABI_FP_SOFT:
printf (_("Soft float\n"));
break;
case Val_GNU_MIPS_ABI_FP_OLD_64:
printf (_("Hard float (MIPS32r2 64-bit FPU 12 callee-saved)\n"));
break;
case Val_GNU_MIPS_ABI_FP_XX:
printf (_("Hard float (32-bit CPU, Any FPU)\n"));
break;
case Val_GNU_MIPS_ABI_FP_64:
printf (_("Hard float (32-bit CPU, 64-bit FPU)\n"));
break;
case Val_GNU_MIPS_ABI_FP_64A:
printf (_("Hard float compat (32-bit CPU, 64-bit FPU)\n"));
break;
case Val_GNU_MIPS_ABI_FP_NAN2008:
printf (_("NaN 2008 compatibility\n"));
break;
default:
printf ("??? (%d)\n", val);
break;
}
}
static unsigned char *
display_mips_gnu_attribute (unsigned char * p,
unsigned int tag,
const unsigned char * const end)
{
if (tag == Tag_GNU_MIPS_ABI_FP)
{
unsigned int val;
printf (" Tag_GNU_MIPS_ABI_FP: ");
READ_ULEB (val, p, end);
print_mips_fp_abi_value (val);
return p;
}
if (tag == Tag_GNU_MIPS_ABI_MSA)
{
unsigned int val;
printf (" Tag_GNU_MIPS_ABI_MSA: ");
READ_ULEB (val, p, end);
switch (val)
{
case Val_GNU_MIPS_ABI_MSA_ANY:
printf (_("Any MSA or not\n"));
break;
case Val_GNU_MIPS_ABI_MSA_128:
printf (_("128-bit MSA\n"));
break;
default:
printf ("??? (%d)\n", val);
break;
}
return p;
}
return display_tag_value (tag & 1, p, end);
}
static unsigned char *
display_tic6x_attribute (unsigned char * p,
const unsigned char * const end)
{
unsigned int tag;
unsigned int val;
READ_ULEB (tag, p, end);
switch (tag)
{
case Tag_ISA:
printf (" Tag_ISA: ");
READ_ULEB (val, p, end);
switch (val)
{
case C6XABI_Tag_ISA_none:
printf (_("None\n"));
break;
case C6XABI_Tag_ISA_C62X:
printf ("C62x\n");
break;
case C6XABI_Tag_ISA_C67X:
printf ("C67x\n");
break;
case C6XABI_Tag_ISA_C67XP:
printf ("C67x+\n");
break;
case C6XABI_Tag_ISA_C64X:
printf ("C64x\n");
break;
case C6XABI_Tag_ISA_C64XP:
printf ("C64x+\n");
break;
case C6XABI_Tag_ISA_C674X:
printf ("C674x\n");
break;
default:
printf ("??? (%d)\n", val);
break;
}
return p;
case Tag_ABI_wchar_t:
printf (" Tag_ABI_wchar_t: ");
READ_ULEB (val, p, end);
switch (val)
{
case 0:
printf (_("Not used\n"));
break;
case 1:
printf (_("2 bytes\n"));
break;
case 2:
printf (_("4 bytes\n"));
break;
default:
printf ("??? (%d)\n", val);
break;
}
return p;
case Tag_ABI_stack_align_needed:
printf (" Tag_ABI_stack_align_needed: ");
READ_ULEB (val, p, end);
switch (val)
{
case 0:
printf (_("8-byte\n"));
break;
case 1:
printf (_("16-byte\n"));
break;
default:
printf ("??? (%d)\n", val);
break;
}
return p;
case Tag_ABI_stack_align_preserved:
READ_ULEB (val, p, end);
printf (" Tag_ABI_stack_align_preserved: ");
switch (val)
{
case 0:
printf (_("8-byte\n"));
break;
case 1:
printf (_("16-byte\n"));
break;
default:
printf ("??? (%d)\n", val);
break;
}
return p;
case Tag_ABI_DSBT:
READ_ULEB (val, p, end);
printf (" Tag_ABI_DSBT: ");
switch (val)
{
case 0:
printf (_("DSBT addressing not used\n"));
break;
case 1:
printf (_("DSBT addressing used\n"));
break;
default:
printf ("??? (%d)\n", val);
break;
}
return p;
case Tag_ABI_PID:
READ_ULEB (val, p, end);
printf (" Tag_ABI_PID: ");
switch (val)
{
case 0:
printf (_("Data addressing position-dependent\n"));
break;
case 1:
printf (_("Data addressing position-independent, GOT near DP\n"));
break;
case 2:
printf (_("Data addressing position-independent, GOT far from DP\n"));
break;
default:
printf ("??? (%d)\n", val);
break;
}
return p;
case Tag_ABI_PIC:
READ_ULEB (val, p, end);
printf (" Tag_ABI_PIC: ");
switch (val)
{
case 0:
printf (_("Code addressing position-dependent\n"));
break;
case 1:
printf (_("Code addressing position-independent\n"));
break;
default:
printf ("??? (%d)\n", val);
break;
}
return p;
case Tag_ABI_array_object_alignment:
READ_ULEB (val, p, end);
printf (" Tag_ABI_array_object_alignment: ");
switch (val)
{
case 0:
printf (_("8-byte\n"));
break;
case 1:
printf (_("4-byte\n"));
break;
case 2:
printf (_("16-byte\n"));
break;
default:
printf ("??? (%d)\n", val);
break;
}
return p;
case Tag_ABI_array_object_align_expected:
READ_ULEB (val, p, end);
printf (" Tag_ABI_array_object_align_expected: ");
switch (val)
{
case 0:
printf (_("8-byte\n"));
break;
case 1:
printf (_("4-byte\n"));
break;
case 2:
printf (_("16-byte\n"));
break;
default:
printf ("??? (%d)\n", val);
break;
}
return p;
case Tag_ABI_compatibility:
{
READ_ULEB (val, p, end);
printf (" Tag_ABI_compatibility: ");
printf (_("flag = %d, vendor = "), val);
if (p < end - 1)
{
size_t maxlen = (end - p) - 1;
print_symbol_name ((int) maxlen, (const char *) p);
p += strnlen ((char *) p, maxlen) + 1;
}
else
{
printf (_("<corrupt>"));
p = (unsigned char *) end;
}
putchar ('\n');
return p;
}
case Tag_ABI_conformance:
{
printf (" Tag_ABI_conformance: \"");
if (p < end - 1)
{
size_t maxlen = (end - p) - 1;
print_symbol_name ((int) maxlen, (const char *) p);
p += strnlen ((char *) p, maxlen) + 1;
}
else
{
printf (_("<corrupt>"));
p = (unsigned char *) end;
}
printf ("\"\n");
return p;
}
}
return display_tag_value (tag, p, end);
}
static void
display_raw_attribute (unsigned char * p, unsigned char const * const end)
{
uint64_t addr = 0;
size_t bytes = end - p;
assert (end >= p);
while (bytes)
{
int j;
int k;
int lbytes = (bytes > 16 ? 16 : bytes);
printf (" 0x%8.8" PRIx64 " ", addr);
for (j = 0; j < 16; j++)
{
if (j < lbytes)
printf ("%2.2x", p[j]);
else
printf (" ");
if ((j & 3) == 3)
printf (" ");
}
for (j = 0; j < lbytes; j++)
{
k = p[j];
if (k >= ' ' && k < 0x7f)
printf ("%c", k);
else
printf (".");
}
putchar ('\n');
p += lbytes;
bytes -= lbytes;
addr += lbytes;
}
putchar ('\n');
}
static unsigned char *
display_msp430_attribute (unsigned char * p,
const unsigned char * const end)
{
uint64_t val;
uint64_t tag;
READ_ULEB (tag, p, end);
switch (tag)
{
case OFBA_MSPABI_Tag_ISA:
printf (" Tag_ISA: ");
READ_ULEB (val, p, end);
switch (val)
{
case 0: printf (_("None\n")); break;
case 1: printf (_("MSP430\n")); break;
case 2: printf (_("MSP430X\n")); break;
default: printf ("??? (%" PRId64 ")\n", val); break;
}
break;
case OFBA_MSPABI_Tag_Code_Model:
printf (" Tag_Code_Model: ");
READ_ULEB (val, p, end);
switch (val)
{
case 0: printf (_("None\n")); break;
case 1: printf (_("Small\n")); break;
case 2: printf (_("Large\n")); break;
default: printf ("??? (%" PRId64 ")\n", val); break;
}
break;
case OFBA_MSPABI_Tag_Data_Model:
printf (" Tag_Data_Model: ");
READ_ULEB (val, p, end);
switch (val)
{
case 0: printf (_("None\n")); break;
case 1: printf (_("Small\n")); break;
case 2: printf (_("Large\n")); break;
case 3: printf (_("Restricted Large\n")); break;
default: printf ("??? (%" PRId64 ")\n", val); break;
}
break;
default:
printf (_(" <unknown tag %" PRId64 ">: "), tag);
if (tag & 1)
{
putchar ('"');
if (p < end - 1)
{
size_t maxlen = (end - p) - 1;
print_symbol_name ((int) maxlen, (const char *) p);
p += strnlen ((char *) p, maxlen) + 1;
}
else
{
printf (_("<corrupt>"));
p = (unsigned char *) end;
}
printf ("\"\n");
}
else
{
READ_ULEB (val, p, end);
printf ("%" PRId64 " (0x%" PRIx64 ")\n", val, val);
}
break;
}
assert (p <= end);
return p;
}
static unsigned char *
display_msp430_gnu_attribute (unsigned char * p,
unsigned int tag,
const unsigned char * const end)
{
if (tag == Tag_GNU_MSP430_Data_Region)
{
uint64_t val;
printf (" Tag_GNU_MSP430_Data_Region: ");
READ_ULEB (val, p, end);
switch (val)
{
case Val_GNU_MSP430_Data_Region_Any:
printf (_("Any Region\n"));
break;
case Val_GNU_MSP430_Data_Region_Lower:
printf (_("Lower Region Only\n"));
break;
default:
printf ("??? (%" PRIu64 ")\n", val);
}
return p;
}
return display_tag_value (tag & 1, p, end);
}
struct riscv_attr_tag_t {
const char *name;
unsigned int tag;
};
static struct riscv_attr_tag_t riscv_attr_tag[] =
{
#define T(tag) {"Tag_RISCV_" #tag, Tag_RISCV_##tag}
T(arch),
T(priv_spec),
T(priv_spec_minor),
T(priv_spec_revision),
T(unaligned_access),
T(stack_align),
#undef T
};
static unsigned char *
display_riscv_attribute (unsigned char *p,
const unsigned char * const end)
{
uint64_t val;
uint64_t tag;
struct riscv_attr_tag_t *attr = NULL;
unsigned i;
READ_ULEB (tag, p, end);
/* Find the name of attribute. */
for (i = 0; i < ARRAY_SIZE (riscv_attr_tag); i++)
{
if (riscv_attr_tag[i].tag == tag)
{
attr = &riscv_attr_tag[i];
break;
}
}
if (attr)
printf (" %s: ", attr->name);
else
return display_tag_value (tag, p, end);
switch (tag)
{
case Tag_RISCV_priv_spec:
case Tag_RISCV_priv_spec_minor:
case Tag_RISCV_priv_spec_revision:
READ_ULEB (val, p, end);
printf ("%" PRIu64 "\n", val);
break;
case Tag_RISCV_unaligned_access:
READ_ULEB (val, p, end);
switch (val)
{
case 0:
printf (_("No unaligned access\n"));
break;
case 1:
printf (_("Unaligned access\n"));
break;
}
break;
case Tag_RISCV_stack_align:
READ_ULEB (val, p, end);
printf (_("%" PRIu64 "-bytes\n"), val);
break;
case Tag_RISCV_arch:
p = display_tag_value (-1, p, end);
break;
default:
return display_tag_value (tag, p, end);
}
return p;
}
static unsigned char *
display_csky_attribute (unsigned char * p,
const unsigned char * const end)
{
uint64_t tag;
uint64_t val;
READ_ULEB (tag, p, end);
if (tag >= Tag_CSKY_MAX)
{
return display_tag_value (-1, p, end);
}
switch (tag)
{
case Tag_CSKY_ARCH_NAME:
printf (" Tag_CSKY_ARCH_NAME:\t\t");
return display_tag_value (-1, p, end);
case Tag_CSKY_CPU_NAME:
printf (" Tag_CSKY_CPU_NAME:\t\t");
return display_tag_value (-1, p, end);
case Tag_CSKY_ISA_FLAGS:
printf (" Tag_CSKY_ISA_FLAGS:\t\t");
return display_tag_value (0, p, end);
case Tag_CSKY_ISA_EXT_FLAGS:
printf (" Tag_CSKY_ISA_EXT_FLAGS:\t");
return display_tag_value (0, p, end);
case Tag_CSKY_DSP_VERSION:
printf (" Tag_CSKY_DSP_VERSION:\t\t");
READ_ULEB (val, p, end);
if (val == VAL_CSKY_DSP_VERSION_EXTENSION)
printf ("DSP Extension\n");
else if (val == VAL_CSKY_DSP_VERSION_2)
printf ("DSP 2.0\n");
break;
case Tag_CSKY_VDSP_VERSION:
printf (" Tag_CSKY_VDSP_VERSION:\t");
READ_ULEB (val, p, end);
printf ("VDSP Version %" PRId64 "\n", val);
break;
case Tag_CSKY_FPU_VERSION:
printf (" Tag_CSKY_FPU_VERSION:\t\t");
READ_ULEB (val, p, end);
if (val == VAL_CSKY_FPU_VERSION_1)
printf ("ABIV1 FPU Version 1\n");
else if (val == VAL_CSKY_FPU_VERSION_2)
printf ("FPU Version 2\n");
break;
case Tag_CSKY_FPU_ABI:
printf (" Tag_CSKY_FPU_ABI:\t\t");
READ_ULEB (val, p, end);
if (val == VAL_CSKY_FPU_ABI_HARD)
printf ("Hard\n");
else if (val == VAL_CSKY_FPU_ABI_SOFTFP)
printf ("SoftFP\n");
else if (val == VAL_CSKY_FPU_ABI_SOFT)
printf ("Soft\n");
break;
case Tag_CSKY_FPU_ROUNDING:
READ_ULEB (val, p, end);
if (val == 1)
{
printf (" Tag_CSKY_FPU_ROUNDING:\t");
printf ("Needed\n");
}
break;
case Tag_CSKY_FPU_DENORMAL:
READ_ULEB (val, p, end);
if (val == 1)
{
printf (" Tag_CSKY_FPU_DENORMAL:\t");
printf ("Needed\n");
}
break;
case Tag_CSKY_FPU_Exception:
READ_ULEB (val, p, end);
if (val == 1)
{
printf (" Tag_CSKY_FPU_Exception:\t");
printf ("Needed\n");
}
break;
case Tag_CSKY_FPU_NUMBER_MODULE:
printf (" Tag_CSKY_FPU_NUMBER_MODULE:\t");
return display_tag_value (-1, p, end);
case Tag_CSKY_FPU_HARDFP:
printf (" Tag_CSKY_FPU_HARDFP:\t\t");
READ_ULEB (val, p, end);
if (val & VAL_CSKY_FPU_HARDFP_HALF)
printf (" Half");
if (val & VAL_CSKY_FPU_HARDFP_SINGLE)
printf (" Single");
if (val & VAL_CSKY_FPU_HARDFP_DOUBLE)
printf (" Double");
printf ("\n");
break;
default:
return display_tag_value (tag, p, end);
}
return p;
}
static bool
process_attributes (Filedata * filedata,
const char * public_name,
unsigned int proc_type,
unsigned char * (* display_pub_attribute) (unsigned char *, const unsigned char * const),
unsigned char * (* display_proc_gnu_attribute) (unsigned char *, unsigned int, const unsigned char * const))
{
Elf_Internal_Shdr * sect;
unsigned i;
bool res = true;
/* Find the section header so that we get the size. */
for (i = 0, sect = filedata->section_headers;
i < filedata->file_header.e_shnum;
i++, sect++)
{
unsigned char * contents;
unsigned char * p;
if (sect->sh_type != proc_type && sect->sh_type != SHT_GNU_ATTRIBUTES)
continue;
contents = (unsigned char *) get_data (NULL, filedata, sect->sh_offset, 1,
sect->sh_size, _("attributes"));
if (contents == NULL)
{
res = false;
continue;
}
p = contents;
/* The first character is the version of the attributes.
Currently only version 1, (aka 'A') is recognised here. */
if (*p != 'A')
{
printf (_("Unknown attributes version '%c'(%d) - expecting 'A'\n"), *p, *p);
res = false;
}
else
{
uint64_t section_len;
section_len = sect->sh_size - 1;
p++;
while (section_len > 0)
{
uint64_t attr_len;
unsigned int namelen;
bool public_section;
bool gnu_section;
if (section_len <= 4)
{
error (_("Tag section ends prematurely\n"));
res = false;
break;
}
attr_len = byte_get (p, 4);
p += 4;
if (attr_len > section_len)
{
error (_("Bad attribute length (%u > %u)\n"),
(unsigned) attr_len, (unsigned) section_len);
attr_len = section_len;
res = false;
}
/* PR 17531: file: 001-101425-0.004 */
else if (attr_len < 5)
{
error (_("Attribute length of %u is too small\n"), (unsigned) attr_len);
res = false;
break;
}
section_len -= attr_len;
attr_len -= 4;
namelen = strnlen ((char *) p, attr_len) + 1;
if (namelen == 0 || namelen >= attr_len)
{
error (_("Corrupt attribute section name\n"));
res = false;
break;
}
printf (_("Attribute Section: "));
print_symbol_name (INT_MAX, (const char *) p);
putchar ('\n');
if (public_name && streq ((char *) p, public_name))
public_section = true;
else
public_section = false;
if (streq ((char *) p, "gnu"))
gnu_section = true;
else
gnu_section = false;
p += namelen;
attr_len -= namelen;
while (attr_len > 0 && p < contents + sect->sh_size)
{
int tag;
unsigned int val;
uint64_t size;
unsigned char * end;
/* PR binutils/17531: Safe handling of corrupt files. */
if (attr_len < 6)
{
error (_("Unused bytes at end of section\n"));
res = false;
section_len = 0;
break;
}
tag = *(p++);
size = byte_get (p, 4);
if (size > attr_len)
{
error (_("Bad subsection length (%u > %u)\n"),
(unsigned) size, (unsigned) attr_len);
res = false;
size = attr_len;
}
/* PR binutils/17531: Safe handling of corrupt files. */
if (size < 6)
{
error (_("Bad subsection length (%u < 6)\n"),
(unsigned) size);
res = false;
section_len = 0;
break;
}
attr_len -= size;
end = p + size - 1;
assert (end <= contents + sect->sh_size);
p += 4;
switch (tag)
{
case 1:
printf (_("File Attributes\n"));
break;
case 2:
printf (_("Section Attributes:"));
goto do_numlist;
case 3:
printf (_("Symbol Attributes:"));
/* Fall through. */
do_numlist:
for (;;)
{
READ_ULEB (val, p, end);
if (val == 0)
break;
printf (" %d", val);
}
printf ("\n");
break;
default:
printf (_("Unknown tag: %d\n"), tag);
public_section = false;
break;
}
if (public_section && display_pub_attribute != NULL)
{
while (p < end)
p = display_pub_attribute (p, end);
assert (p == end);
}
else if (gnu_section && display_proc_gnu_attribute != NULL)
{
while (p < end)
p = display_gnu_attribute (p,
display_proc_gnu_attribute,
end);
assert (p == end);
}
else if (p < end)
{
printf (_(" Unknown attribute:\n"));
display_raw_attribute (p, end);
p = end;
}
else
attr_len = 0;
}
}
}
free (contents);
}
return res;
}
/* DATA points to the contents of a MIPS GOT that starts at VMA PLTGOT.
Print the Address, Access and Initial fields of an entry at VMA ADDR
and return the VMA of the next entry, or -1 if there was a problem.
Does not read from DATA_END or beyond. */
static uint64_t
print_mips_got_entry (unsigned char * data, uint64_t pltgot, uint64_t addr,
unsigned char * data_end)
{
printf (" ");
print_vma (addr, LONG_HEX);
printf (" ");
if (addr < pltgot + 0xfff0)
printf ("%6d(gp)", (int) (addr - pltgot - 0x7ff0));
else
printf ("%10s", "");
printf (" ");
if (data == NULL)
printf ("%*s", is_32bit_elf ? 8 : 16, _("<unknown>"));
else
{
uint64_t entry;
unsigned char * from = data + addr - pltgot;
if (from + (is_32bit_elf ? 4 : 8) > data_end)
{
warn (_("MIPS GOT entry extends beyond the end of available data\n"));
printf ("%*s", is_32bit_elf ? 8 : 16, _("<corrupt>"));
return (uint64_t) -1;
}
else
{
entry = byte_get (data + addr - pltgot, is_32bit_elf ? 4 : 8);
print_vma (entry, LONG_HEX);
}
}
return addr + (is_32bit_elf ? 4 : 8);
}
/* DATA points to the contents of a MIPS PLT GOT that starts at VMA
PLTGOT. Print the Address and Initial fields of an entry at VMA
ADDR and return the VMA of the next entry. */
static uint64_t
print_mips_pltgot_entry (unsigned char * data, uint64_t pltgot, uint64_t addr)
{
printf (" ");
print_vma (addr, LONG_HEX);
printf (" ");
if (data == NULL)
printf ("%*s", is_32bit_elf ? 8 : 16, _("<unknown>"));
else
{
uint64_t entry;
entry = byte_get (data + addr - pltgot, is_32bit_elf ? 4 : 8);
print_vma (entry, LONG_HEX);
}
return addr + (is_32bit_elf ? 4 : 8);
}
static void
print_mips_ases (unsigned int mask)
{
if (mask & AFL_ASE_DSP)
fputs ("\n\tDSP ASE", stdout);
if (mask & AFL_ASE_DSPR2)
fputs ("\n\tDSP R2 ASE", stdout);
if (mask & AFL_ASE_DSPR3)
fputs ("\n\tDSP R3 ASE", stdout);
if (mask & AFL_ASE_EVA)
fputs ("\n\tEnhanced VA Scheme", stdout);
if (mask & AFL_ASE_MCU)
fputs ("\n\tMCU (MicroController) ASE", stdout);
if (mask & AFL_ASE_MDMX)
fputs ("\n\tMDMX ASE", stdout);
if (mask & AFL_ASE_MIPS3D)
fputs ("\n\tMIPS-3D ASE", stdout);
if (mask & AFL_ASE_MT)
fputs ("\n\tMT ASE", stdout);
if (mask & AFL_ASE_SMARTMIPS)
fputs ("\n\tSmartMIPS ASE", stdout);
if (mask & AFL_ASE_VIRT)
fputs ("\n\tVZ ASE", stdout);
if (mask & AFL_ASE_MSA)
fputs ("\n\tMSA ASE", stdout);
if (mask & AFL_ASE_MIPS16)
fputs ("\n\tMIPS16 ASE", stdout);
if (mask & AFL_ASE_MICROMIPS)
fputs ("\n\tMICROMIPS ASE", stdout);
if (mask & AFL_ASE_XPA)
fputs ("\n\tXPA ASE", stdout);
if (mask & AFL_ASE_MIPS16E2)
fputs ("\n\tMIPS16e2 ASE", stdout);
if (mask & AFL_ASE_CRC)
fputs ("\n\tCRC ASE", stdout);
if (mask & AFL_ASE_GINV)
fputs ("\n\tGINV ASE", stdout);
if (mask & AFL_ASE_LOONGSON_MMI)
fputs ("\n\tLoongson MMI ASE", stdout);
if (mask & AFL_ASE_LOONGSON_CAM)
fputs ("\n\tLoongson CAM ASE", stdout);
if (mask & AFL_ASE_LOONGSON_EXT)
fputs ("\n\tLoongson EXT ASE", stdout);
if (mask & AFL_ASE_LOONGSON_EXT2)
fputs ("\n\tLoongson EXT2 ASE", stdout);
if (mask == 0)
fprintf (stdout, "\n\t%s", _("None"));
else if ((mask & ~AFL_ASE_MASK) != 0)
fprintf (stdout, "\n\t%s (%x)", _("Unknown"), mask & ~AFL_ASE_MASK);
}
static void
print_mips_isa_ext (unsigned int isa_ext)
{
switch (isa_ext)
{
case 0:
fputs (_("None"), stdout);
break;
case AFL_EXT_XLR:
fputs ("RMI XLR", stdout);
break;
case AFL_EXT_OCTEON3:
fputs ("Cavium Networks Octeon3", stdout);
break;
case AFL_EXT_OCTEON2:
fputs ("Cavium Networks Octeon2", stdout);
break;
case AFL_EXT_OCTEONP:
fputs ("Cavium Networks OcteonP", stdout);
break;
case AFL_EXT_OCTEON:
fputs ("Cavium Networks Octeon", stdout);
break;
case AFL_EXT_5900:
fputs ("Toshiba R5900", stdout);
break;
case AFL_EXT_4650:
fputs ("MIPS R4650", stdout);
break;
case AFL_EXT_4010:
fputs ("LSI R4010", stdout);
break;
case AFL_EXT_4100:
fputs ("NEC VR4100", stdout);
break;
case AFL_EXT_3900:
fputs ("Toshiba R3900", stdout);
break;
case AFL_EXT_10000:
fputs ("MIPS R10000", stdout);
break;
case AFL_EXT_SB1:
fputs ("Broadcom SB-1", stdout);
break;
case AFL_EXT_4111:
fputs ("NEC VR4111/VR4181", stdout);
break;
case AFL_EXT_4120:
fputs ("NEC VR4120", stdout);
break;
case AFL_EXT_5400:
fputs ("NEC VR5400", stdout);
break;
case AFL_EXT_5500:
fputs ("NEC VR5500", stdout);
break;
case AFL_EXT_LOONGSON_2E:
fputs ("ST Microelectronics Loongson 2E", stdout);
break;
case AFL_EXT_LOONGSON_2F:
fputs ("ST Microelectronics Loongson 2F", stdout);
break;
case AFL_EXT_INTERAPTIV_MR2:
fputs ("Imagination interAptiv MR2", stdout);
break;
default:
fprintf (stdout, "%s (%d)", _("Unknown"), isa_ext);
}
}
static signed int
get_mips_reg_size (int reg_size)
{
return (reg_size == AFL_REG_NONE) ? 0
: (reg_size == AFL_REG_32) ? 32
: (reg_size == AFL_REG_64) ? 64
: (reg_size == AFL_REG_128) ? 128
: -1;
}
static bool
process_mips_specific (Filedata * filedata)
{
Elf_Internal_Dyn * entry;
Elf_Internal_Shdr *sect = NULL;
size_t liblist_offset = 0;
size_t liblistno = 0;
size_t conflictsno = 0;
size_t options_offset = 0;
size_t conflicts_offset = 0;
size_t pltrelsz = 0;
size_t pltrel = 0;
uint64_t pltgot = 0;
uint64_t mips_pltgot = 0;
uint64_t jmprel = 0;
uint64_t local_gotno = 0;
uint64_t gotsym = 0;
uint64_t symtabno = 0;
bool res = true;
if (! process_attributes (filedata, NULL, SHT_GNU_ATTRIBUTES, NULL,
display_mips_gnu_attribute))
res = false;
sect = find_section (filedata, ".MIPS.abiflags");
if (sect != NULL)
{
Elf_External_ABIFlags_v0 *abiflags_ext;
Elf_Internal_ABIFlags_v0 abiflags_in;
if (sizeof (Elf_External_ABIFlags_v0) != sect->sh_size)
{
error (_("Corrupt MIPS ABI Flags section.\n"));
res = false;
}
else
{
abiflags_ext = get_data (NULL, filedata, sect->sh_offset, 1,
sect->sh_size, _("MIPS ABI Flags section"));
if (abiflags_ext)
{
abiflags_in.version = BYTE_GET (abiflags_ext->version);
abiflags_in.isa_level = BYTE_GET (abiflags_ext->isa_level);
abiflags_in.isa_rev = BYTE_GET (abiflags_ext->isa_rev);
abiflags_in.gpr_size = BYTE_GET (abiflags_ext->gpr_size);
abiflags_in.cpr1_size = BYTE_GET (abiflags_ext->cpr1_size);
abiflags_in.cpr2_size = BYTE_GET (abiflags_ext->cpr2_size);
abiflags_in.fp_abi = BYTE_GET (abiflags_ext->fp_abi);
abiflags_in.isa_ext = BYTE_GET (abiflags_ext->isa_ext);
abiflags_in.ases = BYTE_GET (abiflags_ext->ases);
abiflags_in.flags1 = BYTE_GET (abiflags_ext->flags1);
abiflags_in.flags2 = BYTE_GET (abiflags_ext->flags2);
printf ("\nMIPS ABI Flags Version: %d\n", abiflags_in.version);
printf ("\nISA: MIPS%d", abiflags_in.isa_level);
if (abiflags_in.isa_rev > 1)
printf ("r%d", abiflags_in.isa_rev);
printf ("\nGPR size: %d",
get_mips_reg_size (abiflags_in.gpr_size));
printf ("\nCPR1 size: %d",
get_mips_reg_size (abiflags_in.cpr1_size));
printf ("\nCPR2 size: %d",
get_mips_reg_size (abiflags_in.cpr2_size));
fputs ("\nFP ABI: ", stdout);
print_mips_fp_abi_value (abiflags_in.fp_abi);
fputs ("ISA Extension: ", stdout);
print_mips_isa_ext (abiflags_in.isa_ext);
fputs ("\nASEs:", stdout);
print_mips_ases (abiflags_in.ases);
printf ("\nFLAGS 1: %8.8lx", abiflags_in.flags1);
printf ("\nFLAGS 2: %8.8lx", abiflags_in.flags2);
fputc ('\n', stdout);
free (abiflags_ext);
}
}
}
/* We have a lot of special sections. Thanks SGI! */
if (filedata->dynamic_section == NULL)
{
/* No dynamic information available. See if there is static GOT. */
sect = find_section (filedata, ".got");
if (sect != NULL)
{
unsigned char *data_end;
unsigned char *data;
uint64_t ent, end;
int addr_size;
pltgot = sect->sh_addr;
ent = pltgot;
addr_size = (is_32bit_elf ? 4 : 8);
end = pltgot + sect->sh_size;
data = (unsigned char *) get_data (NULL, filedata, sect->sh_offset,
end - pltgot, 1,
_("Global Offset Table data"));
/* PR 12855: Null data is handled gracefully throughout. */
data_end = data + (end - pltgot);
printf (_("\nStatic GOT:\n"));
printf (_(" Canonical gp value: "));
print_vma (ent + 0x7ff0, LONG_HEX);
printf ("\n\n");
/* In a dynamic binary GOT[0] is reserved for the dynamic
loader to store the lazy resolver pointer, however in
a static binary it may well have been omitted and GOT
reduced to a table of addresses.
PR 21344: Check for the entry being fully available
before fetching it. */
if (data
&& data + ent - pltgot + addr_size <= data_end
&& byte_get (data + ent - pltgot, addr_size) == 0)
{
printf (_(" Reserved entries:\n"));
printf (_(" %*s %10s %*s\n"),
addr_size * 2, _("Address"), _("Access"),
addr_size * 2, _("Value"));
ent = print_mips_got_entry (data, pltgot, ent, data_end);
printf ("\n");
if (ent == (uint64_t) -1)
goto sgot_print_fail;
/* Check for the MSB of GOT[1] being set, identifying a
GNU object. This entry will be used by some runtime
loaders, to store the module pointer. Otherwise this
is an ordinary local entry.
PR 21344: Check for the entry being fully available
before fetching it. */
if (data
&& data + ent - pltgot + addr_size <= data_end
&& (byte_get (data + ent - pltgot, addr_size)
>> (addr_size * 8 - 1)) != 0)
{
ent = print_mips_got_entry (data, pltgot, ent, data_end);
printf ("\n");
if (ent == (uint64_t) -1)
goto sgot_print_fail;
}
printf ("\n");
}
if (data != NULL && ent < end)
{
printf (_(" Local entries:\n"));
printf (" %*s %10s %*s\n",
addr_size * 2, _("Address"), _("Access"),
addr_size * 2, _("Value"));
while (ent < end)
{
ent = print_mips_got_entry (data, pltgot, ent, data_end);
printf ("\n");
if (ent == (uint64_t) -1)
goto sgot_print_fail;
}
printf ("\n");
}
sgot_print_fail:
free (data);
}
return res;
}
for (entry = filedata->dynamic_section;
/* PR 17531 file: 012-50589-0.004. */
(entry < filedata->dynamic_section + filedata->dynamic_nent
&& entry->d_tag != DT_NULL);
++entry)
switch (entry->d_tag)
{
case DT_MIPS_LIBLIST:
liblist_offset
= offset_from_vma (filedata, entry->d_un.d_val,
liblistno * sizeof (Elf32_External_Lib));
break;
case DT_MIPS_LIBLISTNO:
liblistno = entry->d_un.d_val;
break;
case DT_MIPS_OPTIONS:
options_offset = offset_from_vma (filedata, entry->d_un.d_val, 0);
break;
case DT_MIPS_CONFLICT:
conflicts_offset
= offset_from_vma (filedata, entry->d_un.d_val,
conflictsno * sizeof (Elf32_External_Conflict));
break;
case DT_MIPS_CONFLICTNO:
conflictsno = entry->d_un.d_val;
break;
case DT_PLTGOT:
pltgot = entry->d_un.d_ptr;
break;
case DT_MIPS_LOCAL_GOTNO:
local_gotno = entry->d_un.d_val;
break;
case DT_MIPS_GOTSYM:
gotsym = entry->d_un.d_val;
break;
case DT_MIPS_SYMTABNO:
symtabno = entry->d_un.d_val;
break;
case DT_MIPS_PLTGOT:
mips_pltgot = entry->d_un.d_ptr;
break;
case DT_PLTREL:
pltrel = entry->d_un.d_val;
break;
case DT_PLTRELSZ:
pltrelsz = entry->d_un.d_val;
break;
case DT_JMPREL:
jmprel = entry->d_un.d_ptr;
break;
default:
break;
}
if (liblist_offset != 0 && liblistno != 0 && do_dynamic)
{
Elf32_External_Lib * elib;
size_t cnt;
elib = (Elf32_External_Lib *) get_data (NULL, filedata, liblist_offset,
sizeof (Elf32_External_Lib),
liblistno,
_("liblist section data"));
if (elib)
{
printf (ngettext ("\nSection '.liblist' contains %zu entry:\n",
"\nSection '.liblist' contains %zu entries:\n",
liblistno),
liblistno);
fputs (_(" Library Time Stamp Checksum Version Flags\n"),
stdout);
for (cnt = 0; cnt < liblistno; ++cnt)
{
Elf32_Lib liblist;
time_t atime;
char timebuf[128];
struct tm * tmp;
liblist.l_name = BYTE_GET (elib[cnt].l_name);
atime = BYTE_GET (elib[cnt].l_time_stamp);
liblist.l_checksum = BYTE_GET (elib[cnt].l_checksum);
liblist.l_version = BYTE_GET (elib[cnt].l_version);
liblist.l_flags = BYTE_GET (elib[cnt].l_flags);
tmp = gmtime (&atime);
snprintf (timebuf, sizeof (timebuf),
"%04u-%02u-%02uT%02u:%02u:%02u",
tmp->tm_year + 1900, tmp->tm_mon + 1, tmp->tm_mday,
tmp->tm_hour, tmp->tm_min, tmp->tm_sec);
printf ("%3zu: ", cnt);
if (valid_dynamic_name (filedata, liblist.l_name))
print_symbol_name (20, get_dynamic_name (filedata, liblist.l_name));
else
printf (_("<corrupt: %9ld>"), liblist.l_name);
printf (" %s %#10lx %-7ld", timebuf, liblist.l_checksum,
liblist.l_version);
if (liblist.l_flags == 0)
puts (_(" NONE"));
else
{
static const struct
{
const char * name;
int bit;
}
l_flags_vals[] =
{
{ " EXACT_MATCH", LL_EXACT_MATCH },
{ " IGNORE_INT_VER", LL_IGNORE_INT_VER },
{ " REQUIRE_MINOR", LL_REQUIRE_MINOR },
{ " EXPORTS", LL_EXPORTS },
{ " DELAY_LOAD", LL_DELAY_LOAD },
{ " DELTA", LL_DELTA }
};
int flags = liblist.l_flags;
size_t fcnt;
for (fcnt = 0; fcnt < ARRAY_SIZE (l_flags_vals); ++fcnt)
if ((flags & l_flags_vals[fcnt].bit) != 0)
{
fputs (l_flags_vals[fcnt].name, stdout);
flags ^= l_flags_vals[fcnt].bit;
}
if (flags != 0)
printf (" %#x", (unsigned int) flags);
puts ("");
}
}
free (elib);
}
else
res = false;
}
if (options_offset != 0)
{
Elf_External_Options * eopt;
size_t offset;
int cnt;
/* Find the section header so that we get the size. */
sect = find_section_by_type (filedata, SHT_MIPS_OPTIONS);
/* PR 17533 file: 012-277276-0.004. */
if (sect == NULL)
{
error (_("No MIPS_OPTIONS header found\n"));
return false;
}
/* PR 24243 */
if (sect->sh_size < sizeof (* eopt))
{
error (_("The MIPS options section is too small.\n"));
return false;
}
eopt = (Elf_External_Options *) get_data (NULL, filedata, options_offset, 1,
sect->sh_size, _("options"));
if (eopt)
{
Elf_Internal_Options option;
offset = cnt = 0;
while (offset <= sect->sh_size - sizeof (* eopt))
{
Elf_External_Options * eoption;
unsigned int optsize;
eoption = (Elf_External_Options *) ((char *) eopt + offset);
optsize = BYTE_GET (eoption->size);
/* PR 17531: file: ffa0fa3b. */
if (optsize < sizeof (* eopt)
|| optsize > sect->sh_size - offset)
{
error (_("Invalid size (%u) for MIPS option\n"),
optsize);
free (eopt);
return false;
}
offset += optsize;
++cnt;
}
printf (ngettext ("\nSection '%s' contains %d entry:\n",
"\nSection '%s' contains %d entries:\n",
cnt),
printable_section_name (filedata, sect), cnt);
offset = 0;
while (cnt-- > 0)
{
size_t len;
Elf_External_Options * eoption;
eoption = (Elf_External_Options *) ((char *) eopt + offset);
option.kind = BYTE_GET (eoption->kind);
option.size = BYTE_GET (eoption->size);
option.section = BYTE_GET (eoption->section);
option.info = BYTE_GET (eoption->info);
switch (option.kind)
{
case ODK_NULL:
/* This shouldn't happen. */
printf (" NULL %" PRId16 " %" PRIx32,
option.section, option.info);
break;
case ODK_REGINFO:
printf (" REGINFO ");
if (filedata->file_header.e_machine == EM_MIPS)
{
Elf32_External_RegInfo * ereg;
Elf32_RegInfo reginfo;
/* 32bit form. */
if (option.size < (sizeof (Elf_External_Options)
+ sizeof (Elf32_External_RegInfo)))
{
printf (_("<corrupt>\n"));
error (_("Truncated MIPS REGINFO option\n"));
cnt = 0;
break;
}
ereg = (Elf32_External_RegInfo *) (eoption + 1);
reginfo.ri_gprmask = BYTE_GET (ereg->ri_gprmask);
reginfo.ri_cprmask[0] = BYTE_GET (ereg->ri_cprmask[0]);
reginfo.ri_cprmask[1] = BYTE_GET (ereg->ri_cprmask[1]);
reginfo.ri_cprmask[2] = BYTE_GET (ereg->ri_cprmask[2]);
reginfo.ri_cprmask[3] = BYTE_GET (ereg->ri_cprmask[3]);
reginfo.ri_gp_value = BYTE_GET (ereg->ri_gp_value);
printf ("GPR %08" PRIx32 " GP 0x%" PRIx32 "\n",
reginfo.ri_gprmask, reginfo.ri_gp_value);
printf (" "
" CPR0 %08" PRIx32 " CPR1 %08" PRIx32
" CPR2 %08" PRIx32 " CPR3 %08" PRIx32 "\n",
reginfo.ri_cprmask[0], reginfo.ri_cprmask[1],
reginfo.ri_cprmask[2], reginfo.ri_cprmask[3]);
}
else
{
/* 64 bit form. */
Elf64_External_RegInfo * ereg;
Elf64_Internal_RegInfo reginfo;
if (option.size < (sizeof (Elf_External_Options)
+ sizeof (Elf64_External_RegInfo)))
{
printf (_("<corrupt>\n"));
error (_("Truncated MIPS REGINFO option\n"));
cnt = 0;
break;
}
ereg = (Elf64_External_RegInfo *) (eoption + 1);
reginfo.ri_gprmask = BYTE_GET (ereg->ri_gprmask);
reginfo.ri_cprmask[0] = BYTE_GET (ereg->ri_cprmask[0]);
reginfo.ri_cprmask[1] = BYTE_GET (ereg->ri_cprmask[1]);
reginfo.ri_cprmask[2] = BYTE_GET (ereg->ri_cprmask[2]);
reginfo.ri_cprmask[3] = BYTE_GET (ereg->ri_cprmask[3]);
reginfo.ri_gp_value = BYTE_GET (ereg->ri_gp_value);
printf ("GPR %08" PRIx32 " GP 0x%" PRIx64 "\n",
reginfo.ri_gprmask, reginfo.ri_gp_value);
printf (" "
" CPR0 %08" PRIx32 " CPR1 %08" PRIx32
" CPR2 %08" PRIx32 " CPR3 %08" PRIx32 "\n",
reginfo.ri_cprmask[0], reginfo.ri_cprmask[1],
reginfo.ri_cprmask[2], reginfo.ri_cprmask[3]);
}
offset += option.size;
continue;
case ODK_EXCEPTIONS:
fputs (" EXCEPTIONS fpe_min(", stdout);
process_mips_fpe_exception (option.info & OEX_FPU_MIN);
fputs (") fpe_max(", stdout);
process_mips_fpe_exception ((option.info & OEX_FPU_MAX) >> 8);
fputs (")", stdout);
if (option.info & OEX_PAGE0)
fputs (" PAGE0", stdout);
if (option.info & OEX_SMM)
fputs (" SMM", stdout);
if (option.info & OEX_FPDBUG)
fputs (" FPDBUG", stdout);
if (option.info & OEX_DISMISS)
fputs (" DISMISS", stdout);
break;
case ODK_PAD:
fputs (" PAD ", stdout);
if (option.info & OPAD_PREFIX)
fputs (" PREFIX", stdout);
if (option.info & OPAD_POSTFIX)
fputs (" POSTFIX", stdout);
if (option.info & OPAD_SYMBOL)
fputs (" SYMBOL", stdout);
break;
case ODK_HWPATCH:
fputs (" HWPATCH ", stdout);
if (option.info & OHW_R4KEOP)
fputs (" R4KEOP", stdout);
if (option.info & OHW_R8KPFETCH)
fputs (" R8KPFETCH", stdout);
if (option.info & OHW_R5KEOP)
fputs (" R5KEOP", stdout);
if (option.info & OHW_R5KCVTL)
fputs (" R5KCVTL", stdout);
break;
case ODK_FILL:
fputs (" FILL ", stdout);
/* XXX Print content of info word? */
break;
case ODK_TAGS:
fputs (" TAGS ", stdout);
/* XXX Print content of info word? */
break;
case ODK_HWAND:
fputs (" HWAND ", stdout);
if (option.info & OHWA0_R4KEOP_CHECKED)
fputs (" R4KEOP_CHECKED", stdout);
if (option.info & OHWA0_R4KEOP_CLEAN)
fputs (" R4KEOP_CLEAN", stdout);
break;
case ODK_HWOR:
fputs (" HWOR ", stdout);
if (option.info & OHWA0_R4KEOP_CHECKED)
fputs (" R4KEOP_CHECKED", stdout);
if (option.info & OHWA0_R4KEOP_CLEAN)
fputs (" R4KEOP_CLEAN", stdout);
break;
case ODK_GP_GROUP:
printf (" GP_GROUP %#06x self-contained %#06x",
option.info & OGP_GROUP,
(option.info & OGP_SELF) >> 16);
break;
case ODK_IDENT:
printf (" IDENT %#06x self-contained %#06x",
option.info & OGP_GROUP,
(option.info & OGP_SELF) >> 16);
break;
default:
/* This shouldn't happen. */
printf (" %3d ??? %" PRId16 " %" PRIx32,
option.kind, option.section, option.info);
break;
}
len = sizeof (* eopt);
while (len < option.size)
{
unsigned char datum = *((unsigned char *) eoption + len);
if (ISPRINT (datum))
printf ("%c", datum);
else
printf ("\\%03o", datum);
len ++;
}
fputs ("\n", stdout);
offset += option.size;
}
free (eopt);
}
else
res = false;
}
if (conflicts_offset != 0 && conflictsno != 0)
{
Elf32_Conflict * iconf;
size_t cnt;
if (filedata->dynamic_symbols == NULL)
{
error (_("conflict list found without a dynamic symbol table\n"));
return false;
}
/* PR 21345 - print a slightly more helpful error message
if we are sure that the cmalloc will fail. */
if (conflictsno > filedata->file_size / sizeof (* iconf))
{
error (_("Overlarge number of conflicts detected: %zx\n"),
conflictsno);
return false;
}
iconf = (Elf32_Conflict *) cmalloc (conflictsno, sizeof (* iconf));
if (iconf == NULL)
{
error (_("Out of memory allocating space for dynamic conflicts\n"));
return false;
}
if (is_32bit_elf)
{
Elf32_External_Conflict * econf32;
econf32 = (Elf32_External_Conflict *)
get_data (NULL, filedata, conflicts_offset,
sizeof (*econf32), conflictsno, _("conflict"));
if (!econf32)
{
free (iconf);
return false;
}
for (cnt = 0; cnt < conflictsno; ++cnt)
iconf[cnt] = BYTE_GET (econf32[cnt]);
free (econf32);
}
else
{
Elf64_External_Conflict * econf64;
econf64 = (Elf64_External_Conflict *)
get_data (NULL, filedata, conflicts_offset,
sizeof (*econf64), conflictsno, _("conflict"));
if (!econf64)
{
free (iconf);
return false;
}
for (cnt = 0; cnt < conflictsno; ++cnt)
iconf[cnt] = BYTE_GET (econf64[cnt]);
free (econf64);
}
printf (ngettext ("\nSection '.conflict' contains %zu entry:\n",
"\nSection '.conflict' contains %zu entries:\n",
conflictsno),
conflictsno);
puts (_(" Num: Index Value Name"));
for (cnt = 0; cnt < conflictsno; ++cnt)
{
printf ("%5zu: %8lu ", cnt, iconf[cnt]);
if (iconf[cnt] >= filedata->num_dynamic_syms)
printf (_("<corrupt symbol index>"));
else
{
Elf_Internal_Sym * psym;
psym = & filedata->dynamic_symbols[iconf[cnt]];
print_vma (psym->st_value, FULL_HEX);
putchar (' ');
if (valid_dynamic_name (filedata, psym->st_name))
print_symbol_name (25, get_dynamic_name (filedata, psym->st_name));
else
printf (_("<corrupt: %14ld>"), psym->st_name);
}
putchar ('\n');
}
free (iconf);
}
if (pltgot != 0 && local_gotno != 0)
{
uint64_t ent, local_end, global_end;
size_t i, offset;
unsigned char * data;
unsigned char * data_end;
int addr_size;
ent = pltgot;
addr_size = (is_32bit_elf ? 4 : 8);
local_end = pltgot + local_gotno * addr_size;
/* PR binutils/17533 file: 012-111227-0.004 */
if (symtabno < gotsym)
{
error (_("The GOT symbol offset (%" PRIu64
") is greater than the symbol table size (%" PRIu64 ")\n"),
gotsym, symtabno);
return false;
}
global_end = local_end + (symtabno - gotsym) * addr_size;
/* PR 17531: file: 54c91a34. */
if (global_end < local_end)
{
error (_("Too many GOT symbols: %" PRIu64 "\n"), symtabno);
return false;
}
offset = offset_from_vma (filedata, pltgot, global_end - pltgot);
data = (unsigned char *) get_data (NULL, filedata, offset,
global_end - pltgot, 1,
_("Global Offset Table data"));
/* PR 12855: Null data is handled gracefully throughout. */
data_end = data + (global_end - pltgot);
printf (_("\nPrimary GOT:\n"));
printf (_(" Canonical gp value: "));
print_vma (pltgot + 0x7ff0, LONG_HEX);
printf ("\n\n");
printf (_(" Reserved entries:\n"));
printf (_(" %*s %10s %*s Purpose\n"),
addr_size * 2, _("Address"), _("Access"),
addr_size * 2, _("Initial"));
ent = print_mips_got_entry (data, pltgot, ent, data_end);
printf (_(" Lazy resolver\n"));
if (ent == (uint64_t) -1)
goto got_print_fail;
/* Check for the MSB of GOT[1] being set, denoting a GNU object.
This entry will be used by some runtime loaders, to store the
module pointer. Otherwise this is an ordinary local entry.
PR 21344: Check for the entry being fully available before
fetching it. */
if (data
&& data + ent - pltgot + addr_size <= data_end
&& (byte_get (data + ent - pltgot, addr_size)
>> (addr_size * 8 - 1)) != 0)
{
ent = print_mips_got_entry (data, pltgot, ent, data_end);
printf (_(" Module pointer (GNU extension)\n"));
if (ent == (uint64_t) -1)
goto got_print_fail;
}
printf ("\n");
if (data != NULL && ent < local_end)
{
printf (_(" Local entries:\n"));
printf (" %*s %10s %*s\n",
addr_size * 2, _("Address"), _("Access"),
addr_size * 2, _("Initial"));
while (ent < local_end)
{
ent = print_mips_got_entry (data, pltgot, ent, data_end);
printf ("\n");
if (ent == (uint64_t) -1)
goto got_print_fail;
}
printf ("\n");
}
if (data != NULL && gotsym < symtabno)
{
int sym_width;
printf (_(" Global entries:\n"));
printf (" %*s %10s %*s %*s %-7s %3s %s\n",
addr_size * 2, _("Address"),
_("Access"),
addr_size * 2, _("Initial"),
addr_size * 2, _("Sym.Val."),
_("Type"),
/* Note for translators: "Ndx" = abbreviated form of "Index". */
_("Ndx"), _("Name"));
sym_width = (is_32bit_elf ? 80 : 160) - 28 - addr_size * 6 - 1;
for (i = gotsym; i < symtabno; i++)
{
ent = print_mips_got_entry (data, pltgot, ent, data_end);
printf (" ");
if (filedata->dynamic_symbols == NULL)
printf (_("<no dynamic symbols>"));
else if (i < filedata->num_dynamic_syms)
{
Elf_Internal_Sym * psym = filedata->dynamic_symbols + i;
print_vma (psym->st_value, LONG_HEX);
printf (" %-7s ", get_symbol_type (filedata, ELF_ST_TYPE (psym->st_info)));
bool is_special;
const char * s = printable_section_name_from_index (filedata, psym->st_shndx, & is_special);
if (is_special)
printf ("%3s ", s);
else
printf ("%3u ", psym->st_shndx);
if (valid_dynamic_name (filedata, psym->st_name))
print_symbol_name (sym_width,
get_dynamic_name (filedata, psym->st_name));
else
printf (_("<corrupt: %14ld>"), psym->st_name);
}
else
printf (_("<symbol index %zu exceeds number of dynamic symbols>"),
i);
printf ("\n");
if (ent == (uint64_t) -1)
break;
}
printf ("\n");
}
got_print_fail:
free (data);
}
if (mips_pltgot != 0 && jmprel != 0 && pltrel != 0 && pltrelsz != 0)
{
uint64_t ent, end;
uint64_t offset, rel_offset;
uint64_t count, i;
unsigned char * data;
int addr_size, sym_width;
Elf_Internal_Rela * rels;
rel_offset = offset_from_vma (filedata, jmprel, pltrelsz);
if (pltrel == DT_RELA)
{
if (!slurp_rela_relocs (filedata, rel_offset, pltrelsz, &rels, &count))
return false;
}
else
{
if (!slurp_rel_relocs (filedata, rel_offset, pltrelsz, &rels, &count))
return false;
}
ent = mips_pltgot;
addr_size = (is_32bit_elf ? 4 : 8);
end = mips_pltgot + (2 + count) * addr_size;
offset = offset_from_vma (filedata, mips_pltgot, end - mips_pltgot);
data = (unsigned char *) get_data (NULL, filedata, offset, end - mips_pltgot,
1, _("Procedure Linkage Table data"));
if (data == NULL)
{
free (rels);
return false;
}
printf ("\nPLT GOT:\n\n");
printf (_(" Reserved entries:\n"));
printf (_(" %*s %*s Purpose\n"),
addr_size * 2, _("Address"), addr_size * 2, _("Initial"));
ent = print_mips_pltgot_entry (data, mips_pltgot, ent);
printf (_(" PLT lazy resolver\n"));
ent = print_mips_pltgot_entry (data, mips_pltgot, ent);
printf (_(" Module pointer\n"));
printf ("\n");
printf (_(" Entries:\n"));
printf (" %*s %*s %*s %-7s %3s %s\n",
addr_size * 2, _("Address"),
addr_size * 2, _("Initial"),
addr_size * 2, _("Sym.Val."), _("Type"), _("Ndx"), _("Name"));
sym_width = (is_32bit_elf ? 80 : 160) - 17 - addr_size * 6 - 1;
for (i = 0; i < count; i++)
{
uint64_t idx = get_reloc_symindex (rels[i].r_info);
ent = print_mips_pltgot_entry (data, mips_pltgot, ent);
printf (" ");
if (idx >= filedata->num_dynamic_syms)
printf (_("<corrupt symbol index: %" PRIu64 ">"), idx);
else
{
Elf_Internal_Sym * psym = filedata->dynamic_symbols + idx;
print_vma (psym->st_value, LONG_HEX);
printf (" %-7s %3s ",
get_symbol_type (filedata, ELF_ST_TYPE (psym->st_info)),
printable_section_name_from_index (filedata, psym->st_shndx, NULL));
if (valid_dynamic_name (filedata, psym->st_name))
print_symbol_name (sym_width,
get_dynamic_name (filedata, psym->st_name));
else
printf (_("<corrupt: %14ld>"), psym->st_name);
}
printf ("\n");
}
printf ("\n");
free (data);
free (rels);
}
return res;
}
static bool
process_nds32_specific (Filedata * filedata)
{
Elf_Internal_Shdr *sect = NULL;
sect = find_section (filedata, ".nds32_e_flags");
if (sect != NULL && sect->sh_size >= 4)
{
unsigned char *buf;
unsigned int flag;
printf ("\nNDS32 elf flags section:\n");
buf = get_data (NULL, filedata, sect->sh_offset, 1, 4,
_("NDS32 elf flags section"));
if (buf == NULL)
return false;
flag = byte_get (buf, 4);
free (buf);
switch (flag & 0x3)
{
case 0:
printf ("(VEC_SIZE):\tNo entry.\n");
break;
case 1:
printf ("(VEC_SIZE):\t4 bytes\n");
break;
case 2:
printf ("(VEC_SIZE):\t16 bytes\n");
break;
case 3:
printf ("(VEC_SIZE):\treserved\n");
break;
}
}
return true;
}
static bool
process_gnu_liblist (Filedata * filedata)
{
Elf_Internal_Shdr * section;
Elf_Internal_Shdr * string_sec;
Elf32_External_Lib * elib;
char * strtab;
size_t strtab_size;
size_t cnt;
uint64_t num_liblist;
unsigned i;
bool res = true;
if (! do_arch)
return true;
for (i = 0, section = filedata->section_headers;
i < filedata->file_header.e_shnum;
i++, section++)
{
switch (section->sh_type)
{
case SHT_GNU_LIBLIST:
if (section->sh_link >= filedata->file_header.e_shnum)
break;
elib = (Elf32_External_Lib *)
get_data (NULL, filedata, section->sh_offset, 1, section->sh_size,
_("liblist section data"));
if (elib == NULL)
{
res = false;
break;
}
string_sec = filedata->section_headers + section->sh_link;
strtab = (char *) get_data (NULL, filedata, string_sec->sh_offset, 1,
string_sec->sh_size,
_("liblist string table"));
if (strtab == NULL
|| section->sh_entsize != sizeof (Elf32_External_Lib))
{
free (elib);
free (strtab);
res = false;
break;
}
strtab_size = string_sec->sh_size;
num_liblist = section->sh_size / sizeof (Elf32_External_Lib);
printf (ngettext ("\nLibrary list section '%s' contains %" PRIu64
" entries:\n",
"\nLibrary list section '%s' contains %" PRIu64
" entries:\n",
num_liblist),
printable_section_name (filedata, section),
num_liblist);
puts (_(" Library Time Stamp Checksum Version Flags"));
for (cnt = 0; cnt < section->sh_size / sizeof (Elf32_External_Lib);
++cnt)
{
Elf32_Lib liblist;
time_t atime;
char timebuf[128];
struct tm * tmp;
liblist.l_name = BYTE_GET (elib[cnt].l_name);
atime = BYTE_GET (elib[cnt].l_time_stamp);
liblist.l_checksum = BYTE_GET (elib[cnt].l_checksum);
liblist.l_version = BYTE_GET (elib[cnt].l_version);
liblist.l_flags = BYTE_GET (elib[cnt].l_flags);
tmp = gmtime (&atime);
snprintf (timebuf, sizeof (timebuf),
"%04u-%02u-%02uT%02u:%02u:%02u",
tmp->tm_year + 1900, tmp->tm_mon + 1, tmp->tm_mday,
tmp->tm_hour, tmp->tm_min, tmp->tm_sec);
printf ("%3zu: ", cnt);
if (do_wide)
printf ("%-20s", liblist.l_name < strtab_size
? strtab + liblist.l_name : _("<corrupt>"));
else
printf ("%-20.20s", liblist.l_name < strtab_size
? strtab + liblist.l_name : _("<corrupt>"));
printf (" %s %#010lx %-7ld %-7ld\n", timebuf, liblist.l_checksum,
liblist.l_version, liblist.l_flags);
}
free (elib);
free (strtab);
}
}
return res;
}
static const char *
get_note_type (Filedata * filedata, unsigned e_type)
{
static char buff[64];
if (filedata->file_header.e_type == ET_CORE)
switch (e_type)
{
case NT_AUXV:
return _("NT_AUXV (auxiliary vector)");
case NT_PRSTATUS:
return _("NT_PRSTATUS (prstatus structure)");
case NT_FPREGSET:
return _("NT_FPREGSET (floating point registers)");
case NT_PRPSINFO:
return _("NT_PRPSINFO (prpsinfo structure)");
case NT_TASKSTRUCT:
return _("NT_TASKSTRUCT (task structure)");
case NT_GDB_TDESC:
return _("NT_GDB_TDESC (GDB XML target description)");
case NT_PRXFPREG:
return _("NT_PRXFPREG (user_xfpregs structure)");
case NT_PPC_VMX:
return _("NT_PPC_VMX (ppc Altivec registers)");
case NT_PPC_VSX:
return _("NT_PPC_VSX (ppc VSX registers)");
case NT_PPC_TAR:
return _("NT_PPC_TAR (ppc TAR register)");
case NT_PPC_PPR:
return _("NT_PPC_PPR (ppc PPR register)");
case NT_PPC_DSCR:
return _("NT_PPC_DSCR (ppc DSCR register)");
case NT_PPC_EBB:
return _("NT_PPC_EBB (ppc EBB registers)");
case NT_PPC_PMU:
return _("NT_PPC_PMU (ppc PMU registers)");
case NT_PPC_TM_CGPR:
return _("NT_PPC_TM_CGPR (ppc checkpointed GPR registers)");
case NT_PPC_TM_CFPR:
return _("NT_PPC_TM_CFPR (ppc checkpointed floating point registers)");
case NT_PPC_TM_CVMX:
return _("NT_PPC_TM_CVMX (ppc checkpointed Altivec registers)");
case NT_PPC_TM_CVSX:
return _("NT_PPC_TM_CVSX (ppc checkpointed VSX registers)");
case NT_PPC_TM_SPR:
return _("NT_PPC_TM_SPR (ppc TM special purpose registers)");
case NT_PPC_TM_CTAR:
return _("NT_PPC_TM_CTAR (ppc checkpointed TAR register)");
case NT_PPC_TM_CPPR:
return _("NT_PPC_TM_CPPR (ppc checkpointed PPR register)");
case NT_PPC_TM_CDSCR:
return _("NT_PPC_TM_CDSCR (ppc checkpointed DSCR register)");
case NT_386_TLS:
return _("NT_386_TLS (x86 TLS information)");
case NT_386_IOPERM:
return _("NT_386_IOPERM (x86 I/O permissions)");
case NT_X86_XSTATE:
return _("NT_X86_XSTATE (x86 XSAVE extended state)");
case NT_X86_CET:
return _("NT_X86_CET (x86 CET state)");
case NT_X86_SHSTK:
return _("NT_X86_SHSTK (x86 SHSTK state)");
case NT_S390_HIGH_GPRS:
return _("NT_S390_HIGH_GPRS (s390 upper register halves)");
case NT_S390_TIMER:
return _("NT_S390_TIMER (s390 timer register)");
case NT_S390_TODCMP:
return _("NT_S390_TODCMP (s390 TOD comparator register)");
case NT_S390_TODPREG:
return _("NT_S390_TODPREG (s390 TOD programmable register)");
case NT_S390_CTRS:
return _("NT_S390_CTRS (s390 control registers)");
case NT_S390_PREFIX:
return _("NT_S390_PREFIX (s390 prefix register)");
case NT_S390_LAST_BREAK:
return _("NT_S390_LAST_BREAK (s390 last breaking event address)");
case NT_S390_SYSTEM_CALL:
return _("NT_S390_SYSTEM_CALL (s390 system call restart data)");
case NT_S390_TDB:
return _("NT_S390_TDB (s390 transaction diagnostic block)");
case NT_S390_VXRS_LOW:
return _("NT_S390_VXRS_LOW (s390 vector registers 0-15 upper half)");
case NT_S390_VXRS_HIGH:
return _("NT_S390_VXRS_HIGH (s390 vector registers 16-31)");
case NT_S390_GS_CB:
return _("NT_S390_GS_CB (s390 guarded-storage registers)");
case NT_S390_GS_BC:
return _("NT_S390_GS_BC (s390 guarded-storage broadcast control)");
case NT_ARM_VFP:
return _("NT_ARM_VFP (arm VFP registers)");
case NT_ARM_TLS:
return _("NT_ARM_TLS (AArch TLS registers)");
case NT_ARM_HW_BREAK:
return _("NT_ARM_HW_BREAK (AArch hardware breakpoint registers)");
case NT_ARM_HW_WATCH:
return _("NT_ARM_HW_WATCH (AArch hardware watchpoint registers)");
case NT_ARM_SYSTEM_CALL:
return _("NT_ARM_SYSTEM_CALL (AArch system call number)");
case NT_ARM_SVE:
return _("NT_ARM_SVE (AArch SVE registers)");
case NT_ARM_PAC_MASK:
return _("NT_ARM_PAC_MASK (AArch pointer authentication code masks)");
case NT_ARM_PACA_KEYS:
return _("NT_ARM_PACA_KEYS (ARM pointer authentication address keys)");
case NT_ARM_PACG_KEYS:
return _("NT_ARM_PACG_KEYS (ARM pointer authentication generic keys)");
case NT_ARM_TAGGED_ADDR_CTRL:
return _("NT_ARM_TAGGED_ADDR_CTRL (AArch tagged address control)");
case NT_ARM_SSVE:
return _("NT_ARM_SSVE (AArch64 streaming SVE registers)");
case NT_ARM_ZA:
return _("NT_ARM_ZA (AArch64 SME ZA register)");
case NT_ARM_ZT:
return _("NT_ARM_ZT (AArch64 SME2 ZT registers)");
case NT_ARM_PAC_ENABLED_KEYS:
return _("NT_ARM_PAC_ENABLED_KEYS (AArch64 pointer authentication enabled keys)");
case NT_ARC_V2:
return _("NT_ARC_V2 (ARC HS accumulator/extra registers)");
case NT_RISCV_CSR:
return _("NT_RISCV_CSR (RISC-V control and status registers)");
case NT_PSTATUS:
return _("NT_PSTATUS (pstatus structure)");
case NT_FPREGS:
return _("NT_FPREGS (floating point registers)");
case NT_PSINFO:
return _("NT_PSINFO (psinfo structure)");
case NT_LWPSTATUS:
return _("NT_LWPSTATUS (lwpstatus_t structure)");
case NT_LWPSINFO:
return _("NT_LWPSINFO (lwpsinfo_t structure)");
case NT_WIN32PSTATUS:
return _("NT_WIN32PSTATUS (win32_pstatus structure)");
case NT_SIGINFO:
return _("NT_SIGINFO (siginfo_t data)");
case NT_FILE:
return _("NT_FILE (mapped files)");
default:
break;
}
else
switch (e_type)
{
case NT_VERSION:
return _("NT_VERSION (version)");
case NT_ARCH:
return _("NT_ARCH (architecture)");
case NT_GNU_BUILD_ATTRIBUTE_OPEN:
return _("OPEN");
case NT_GNU_BUILD_ATTRIBUTE_FUNC:
return _("func");
case NT_GO_BUILDID:
return _("GO BUILDID");
case FDO_PACKAGING_METADATA:
return _("FDO_PACKAGING_METADATA");
case FDO_DLOPEN_METADATA:
return _("FDO_DLOPEN_METADATA");
default:
break;
}
snprintf (buff, sizeof (buff), _("Unknown note type: (0x%08x)"), e_type);
return buff;
}
static bool
print_core_note (Elf_Internal_Note *pnote)
{
unsigned int addr_size = is_32bit_elf ? 4 : 8;
uint64_t count, page_size;
unsigned char *descdata, *filenames, *descend;
if (pnote->type != NT_FILE)
{
if (do_wide)
printf ("\n");
return true;
}
if (pnote->descsz < 2 * addr_size)
{
error (_(" Malformed note - too short for header\n"));
return false;
}
descdata = (unsigned char *) pnote->descdata;
descend = descdata + pnote->descsz;
if (descdata[pnote->descsz - 1] != '\0')
{
error (_(" Malformed note - does not end with \\0\n"));
return false;
}
count = byte_get (descdata, addr_size);
descdata += addr_size;
page_size = byte_get (descdata, addr_size);
descdata += addr_size;
if (count > ((uint64_t) -1 - 2 * addr_size) / (3 * addr_size)
|| pnote->descsz < 2 * addr_size + count * 3 * addr_size)
{
error (_(" Malformed note - too short for supplied file count\n"));
return false;
}
printf (_(" Page size: "));
print_vma (page_size, DEC);
printf ("\n");
printf (_(" %*s%*s%*s\n"),
(int) (2 + 2 * addr_size), _("Start"),
(int) (4 + 2 * addr_size), _("End"),
(int) (4 + 2 * addr_size), _("Page Offset"));
filenames = descdata + count * 3 * addr_size;
while (count-- > 0)
{
uint64_t start, end, file_ofs;
if (filenames == descend)
{
error (_(" Malformed note - filenames end too early\n"));
return false;
}
start = byte_get (descdata, addr_size);
descdata += addr_size;
end = byte_get (descdata, addr_size);
descdata += addr_size;
file_ofs = byte_get (descdata, addr_size);
descdata += addr_size;
printf (" ");
print_vma (start, FULL_HEX);
printf (" ");
print_vma (end, FULL_HEX);
printf (" ");
print_vma (file_ofs, FULL_HEX);
printf ("\n %s\n", filenames);
filenames += 1 + strlen ((char *) filenames);
}
return true;
}
static const char *
get_gnu_elf_note_type (unsigned e_type)
{
/* NB/ Keep this switch statement in sync with print_gnu_note (). */
switch (e_type)
{
case NT_GNU_ABI_TAG:
return _("NT_GNU_ABI_TAG (ABI version tag)");
case NT_GNU_HWCAP:
return _("NT_GNU_HWCAP (DSO-supplied software HWCAP info)");
case NT_GNU_BUILD_ID:
return _("NT_GNU_BUILD_ID (unique build ID bitstring)");
case NT_GNU_GOLD_VERSION:
return _("NT_GNU_GOLD_VERSION (gold version)");
case NT_GNU_PROPERTY_TYPE_0:
return _("NT_GNU_PROPERTY_TYPE_0");
case NT_GNU_BUILD_ATTRIBUTE_OPEN:
return _("NT_GNU_BUILD_ATTRIBUTE_OPEN");
case NT_GNU_BUILD_ATTRIBUTE_FUNC:
return _("NT_GNU_BUILD_ATTRIBUTE_FUNC");
default:
{
static char buff[64];
snprintf (buff, sizeof (buff), _("Unknown note type: (0x%08x)"), e_type);
return buff;
}
}
}
static void
decode_x86_compat_isa (unsigned int bitmask)
{
while (bitmask)
{
unsigned int bit = bitmask & (- bitmask);
bitmask &= ~ bit;
switch (bit)
{
case GNU_PROPERTY_X86_COMPAT_ISA_1_486:
printf ("i486");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_586:
printf ("586");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_686:
printf ("686");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_SSE:
printf ("SSE");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_SSE2:
printf ("SSE2");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_SSE3:
printf ("SSE3");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_SSSE3:
printf ("SSSE3");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_SSE4_1:
printf ("SSE4_1");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_SSE4_2:
printf ("SSE4_2");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_AVX:
printf ("AVX");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_AVX2:
printf ("AVX2");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_AVX512F:
printf ("AVX512F");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_AVX512CD:
printf ("AVX512CD");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_AVX512ER:
printf ("AVX512ER");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_AVX512PF:
printf ("AVX512PF");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_AVX512VL:
printf ("AVX512VL");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_AVX512DQ:
printf ("AVX512DQ");
break;
case GNU_PROPERTY_X86_COMPAT_ISA_1_AVX512BW:
printf ("AVX512BW");
break;
default:
printf (_("<unknown: %x>"), bit);
break;
}
if (bitmask)
printf (", ");
}
}
static void
decode_x86_compat_2_isa (unsigned int bitmask)
{
if (!bitmask)
{
printf (_("<None>"));
return;
}
while (bitmask)
{
unsigned int bit = bitmask & (- bitmask);
bitmask &= ~ bit;
switch (bit)
{
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_CMOV:
printf ("CMOV");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_SSE:
printf ("SSE");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_SSE2:
printf ("SSE2");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_SSE3:
printf ("SSE3");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_SSSE3:
printf ("SSSE3");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_SSE4_1:
printf ("SSE4_1");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_SSE4_2:
printf ("SSE4_2");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX:
printf ("AVX");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX2:
printf ("AVX2");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_FMA:
printf ("FMA");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX512F:
printf ("AVX512F");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX512CD:
printf ("AVX512CD");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX512ER:
printf ("AVX512ER");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX512PF:
printf ("AVX512PF");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX512VL:
printf ("AVX512VL");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX512DQ:
printf ("AVX512DQ");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX512BW:
printf ("AVX512BW");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX512_4FMAPS:
printf ("AVX512_4FMAPS");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX512_4VNNIW:
printf ("AVX512_4VNNIW");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX512_BITALG:
printf ("AVX512_BITALG");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX512_IFMA:
printf ("AVX512_IFMA");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX512_VBMI:
printf ("AVX512_VBMI");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX512_VBMI2:
printf ("AVX512_VBMI2");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX512_VNNI:
printf ("AVX512_VNNI");
break;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_AVX512_BF16:
printf ("AVX512_BF16");
break;
default:
printf (_("<unknown: %x>"), bit);
break;
}
if (bitmask)
printf (", ");
}
}
static const char *
get_amdgpu_elf_note_type (unsigned int e_type)
{
switch (e_type)
{
case NT_AMDGPU_METADATA:
return _("NT_AMDGPU_METADATA (code object metadata)");
default:
{
static char buf[64];
snprintf (buf, sizeof (buf), _("Unknown note type: (0x%08x)"), e_type);
return buf;
}
}
}
static void
decode_x86_isa (unsigned int bitmask)
{
while (bitmask)
{
unsigned int bit = bitmask & (- bitmask);
bitmask &= ~ bit;
switch (bit)
{
case GNU_PROPERTY_X86_ISA_1_BASELINE:
printf ("x86-64-baseline");
break;
case GNU_PROPERTY_X86_ISA_1_V2:
printf ("x86-64-v2");
break;
case GNU_PROPERTY_X86_ISA_1_V3:
printf ("x86-64-v3");
break;
case GNU_PROPERTY_X86_ISA_1_V4:
printf ("x86-64-v4");
break;
default:
printf (_("<unknown: %x>"), bit);
break;
}
if (bitmask)
printf (", ");
}
}
static void
decode_x86_feature_1 (unsigned int bitmask)
{
if (!bitmask)
{
printf (_("<None>"));
return;
}
while (bitmask)
{
unsigned int bit = bitmask & (- bitmask);
bitmask &= ~ bit;
switch (bit)
{
case GNU_PROPERTY_X86_FEATURE_1_IBT:
printf ("IBT");
break;
case GNU_PROPERTY_X86_FEATURE_1_SHSTK:
printf ("SHSTK");
break;
case GNU_PROPERTY_X86_FEATURE_1_LAM_U48:
printf ("LAM_U48");
break;
case GNU_PROPERTY_X86_FEATURE_1_LAM_U57:
printf ("LAM_U57");
break;
default:
printf (_("<unknown: %x>"), bit);
break;
}
if (bitmask)
printf (", ");
}
}
static void
decode_x86_feature_2 (unsigned int bitmask)
{
if (!bitmask)
{
printf (_("<None>"));
return;
}
while (bitmask)
{
unsigned int bit = bitmask & (- bitmask);
bitmask &= ~ bit;
switch (bit)
{
case GNU_PROPERTY_X86_FEATURE_2_X86:
printf ("x86");
break;
case GNU_PROPERTY_X86_FEATURE_2_X87:
printf ("x87");
break;
case GNU_PROPERTY_X86_FEATURE_2_MMX:
printf ("MMX");
break;
case GNU_PROPERTY_X86_FEATURE_2_XMM:
printf ("XMM");
break;
case GNU_PROPERTY_X86_FEATURE_2_YMM:
printf ("YMM");
break;
case GNU_PROPERTY_X86_FEATURE_2_ZMM:
printf ("ZMM");
break;
case GNU_PROPERTY_X86_FEATURE_2_TMM:
printf ("TMM");
break;
case GNU_PROPERTY_X86_FEATURE_2_MASK:
printf ("MASK");
break;
case GNU_PROPERTY_X86_FEATURE_2_FXSR:
printf ("FXSR");
break;
case GNU_PROPERTY_X86_FEATURE_2_XSAVE:
printf ("XSAVE");
break;
case GNU_PROPERTY_X86_FEATURE_2_XSAVEOPT:
printf ("XSAVEOPT");
break;
case GNU_PROPERTY_X86_FEATURE_2_XSAVEC:
printf ("XSAVEC");
break;
default:
printf (_("<unknown: %x>"), bit);
break;
}
if (bitmask)
printf (", ");
}
}
static void
decode_aarch64_feature_1_and (unsigned int bitmask)
{
while (bitmask)
{
unsigned int bit = bitmask & (- bitmask);
bitmask &= ~ bit;
switch (bit)
{
case GNU_PROPERTY_AARCH64_FEATURE_1_BTI:
printf ("BTI");
break;
case GNU_PROPERTY_AARCH64_FEATURE_1_PAC:
printf ("PAC");
break;
case GNU_PROPERTY_AARCH64_FEATURE_1_GCS:
printf ("GCS");
break;
default:
printf (_("<unknown: %x>"), bit);
break;
}
if (bitmask)
printf (", ");
}
}
static void
decode_1_needed (unsigned int bitmask)
{
while (bitmask)
{
unsigned int bit = bitmask & (- bitmask);
bitmask &= ~ bit;
switch (bit)
{
case GNU_PROPERTY_1_NEEDED_INDIRECT_EXTERN_ACCESS:
printf ("indirect external access");
break;
default:
printf (_("<unknown: %x>"), bit);
break;
}
if (bitmask)
printf (", ");
}
}
static void
print_gnu_property_note (Filedata * filedata, Elf_Internal_Note * pnote)
{
unsigned char * ptr = (unsigned char *) pnote->descdata;
unsigned char * ptr_end = ptr + pnote->descsz;
unsigned int size = is_32bit_elf ? 4 : 8;
printf (_(" Properties: "));
if (pnote->descsz < 8 || (pnote->descsz % size) != 0)
{
printf (_("<corrupt GNU_PROPERTY_TYPE, size = %#lx>\n"), pnote->descsz);
return;
}
while (ptr < ptr_end)
{
unsigned int j;
unsigned int type;
unsigned int datasz;
if ((size_t) (ptr_end - ptr) < 8)
{
printf (_("<corrupt descsz: %#lx>\n"), pnote->descsz);
break;
}
type = byte_get (ptr, 4);
datasz = byte_get (ptr + 4, 4);
ptr += 8;
if (datasz > (size_t) (ptr_end - ptr))
{
printf (_("<corrupt type (%#x) datasz: %#x>\n"),
type, datasz);
break;
}
if (type >= GNU_PROPERTY_LOPROC && type <= GNU_PROPERTY_HIPROC)
{
if (filedata->file_header.e_machine == EM_X86_64
|| filedata->file_header.e_machine == EM_IAMCU
|| filedata->file_header.e_machine == EM_386)
{
unsigned int bitmask;
if (datasz == 4)
bitmask = byte_get (ptr, 4);
else
bitmask = 0;
switch (type)
{
case GNU_PROPERTY_X86_ISA_1_USED:
if (datasz != 4)
printf (_("x86 ISA used: <corrupt length: %#x> "),
datasz);
else
{
printf ("x86 ISA used: ");
decode_x86_isa (bitmask);
}
goto next;
case GNU_PROPERTY_X86_ISA_1_NEEDED:
if (datasz != 4)
printf (_("x86 ISA needed: <corrupt length: %#x> "),
datasz);
else
{
printf ("x86 ISA needed: ");
decode_x86_isa (bitmask);
}
goto next;
case GNU_PROPERTY_X86_FEATURE_1_AND:
if (datasz != 4)
printf (_("x86 feature: <corrupt length: %#x> "),
datasz);
else
{
printf ("x86 feature: ");
decode_x86_feature_1 (bitmask);
}
goto next;
case GNU_PROPERTY_X86_FEATURE_2_USED:
if (datasz != 4)
printf (_("x86 feature used: <corrupt length: %#x> "),
datasz);
else
{
printf ("x86 feature used: ");
decode_x86_feature_2 (bitmask);
}
goto next;
case GNU_PROPERTY_X86_FEATURE_2_NEEDED:
if (datasz != 4)
printf (_("x86 feature needed: <corrupt length: %#x> "), datasz);
else
{
printf ("x86 feature needed: ");
decode_x86_feature_2 (bitmask);
}
goto next;
case GNU_PROPERTY_X86_COMPAT_ISA_1_USED:
if (datasz != 4)
printf (_("x86 ISA used: <corrupt length: %#x> "),
datasz);
else
{
printf ("x86 ISA used: ");
decode_x86_compat_isa (bitmask);
}
goto next;
case GNU_PROPERTY_X86_COMPAT_ISA_1_NEEDED:
if (datasz != 4)
printf (_("x86 ISA needed: <corrupt length: %#x> "),
datasz);
else
{
printf ("x86 ISA needed: ");
decode_x86_compat_isa (bitmask);
}
goto next;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_USED:
if (datasz != 4)
printf (_("x86 ISA used: <corrupt length: %#x> "),
datasz);
else
{
printf ("x86 ISA used: ");
decode_x86_compat_2_isa (bitmask);
}
goto next;
case GNU_PROPERTY_X86_COMPAT_2_ISA_1_NEEDED:
if (datasz != 4)
printf (_("x86 ISA needed: <corrupt length: %#x> "),
datasz);
else
{
printf ("x86 ISA needed: ");
decode_x86_compat_2_isa (bitmask);
}
goto next;
default:
break;
}
}
else if (filedata->file_header.e_machine == EM_AARCH64)
{
if (type == GNU_PROPERTY_AARCH64_FEATURE_1_AND)
{
printf ("AArch64 feature: ");
if (datasz != 4)
printf (_("<corrupt length: %#x> "), datasz);
else
decode_aarch64_feature_1_and (byte_get (ptr, 4));
goto next;
}
}
}
else
{
switch (type)
{
case GNU_PROPERTY_STACK_SIZE:
printf (_("stack size: "));
if (datasz != size)
printf (_("<corrupt length: %#x> "), datasz);
else
printf ("%#" PRIx64, byte_get (ptr, size));
goto next;
case GNU_PROPERTY_NO_COPY_ON_PROTECTED:
printf ("no copy on protected ");
if (datasz)
printf (_("<corrupt length: %#x> "), datasz);
goto next;
case GNU_PROPERTY_MEMORY_SEAL:
printf ("memory seal ");
if (datasz)
printf (_("<corrupt length: %#x> "), datasz);
goto next;
default:
if ((type >= GNU_PROPERTY_UINT32_AND_LO
&& type <= GNU_PROPERTY_UINT32_AND_HI)
|| (type >= GNU_PROPERTY_UINT32_OR_LO
&& type <= GNU_PROPERTY_UINT32_OR_HI))
{
switch (type)
{
case GNU_PROPERTY_1_NEEDED:
if (datasz != 4)
printf (_("1_needed: <corrupt length: %#x> "),
datasz);
else
{
unsigned int bitmask = byte_get (ptr, 4);
printf ("1_needed: ");
decode_1_needed (bitmask);
}
goto next;
default:
break;
}
if (type <= GNU_PROPERTY_UINT32_AND_HI)
printf (_("UINT32_AND (%#x): "), type);
else
printf (_("UINT32_OR (%#x): "), type);
if (datasz != 4)
printf (_("<corrupt length: %#x> "), datasz);
else
printf ("%#x", (unsigned int) byte_get (ptr, 4));
goto next;
}
break;
}
}
if (type < GNU_PROPERTY_LOPROC)
printf (_("<unknown type %#x data: "), type);
else if (type < GNU_PROPERTY_LOUSER)
printf (_("<processor-specific type %#x data: "), type);
else
printf (_("<application-specific type %#x data: "), type);
for (j = 0; j < datasz; ++j)
printf ("%02x ", ptr[j] & 0xff);
printf (">");
next:
ptr += ((datasz + (size - 1)) & ~ (size - 1));
if (ptr == ptr_end)
break;
if (do_wide)
printf (", ");
else
printf ("\n\t");
}
printf ("\n");
}
static bool
print_gnu_note (Filedata * filedata, Elf_Internal_Note *pnote)
{
/* NB/ Keep this switch statement in sync with get_gnu_elf_note_type (). */
switch (pnote->type)
{
case NT_GNU_BUILD_ID:
{
size_t i;
printf (_(" Build ID: "));
for (i = 0; i < pnote->descsz; ++i)
printf ("%02x", pnote->descdata[i] & 0xff);
printf ("\n");
}
break;
case NT_GNU_ABI_TAG:
{
unsigned int os, major, minor, subminor;
const char *osname;
/* PR 17531: file: 030-599401-0.004. */
if (pnote->descsz < 16)
{
printf (_(" <corrupt GNU_ABI_TAG>\n"));
break;
}
os = byte_get ((unsigned char *) pnote->descdata, 4);
major = byte_get ((unsigned char *) pnote->descdata + 4, 4);
minor = byte_get ((unsigned char *) pnote->descdata + 8, 4);
subminor = byte_get ((unsigned char *) pnote->descdata + 12, 4);
switch (os)
{
case GNU_ABI_TAG_LINUX:
osname = "Linux";
break;
case GNU_ABI_TAG_HURD:
osname = "Hurd";
break;
case GNU_ABI_TAG_SOLARIS:
osname = "Solaris";
break;
case GNU_ABI_TAG_FREEBSD:
osname = "FreeBSD";
break;
case GNU_ABI_TAG_NETBSD:
osname = "NetBSD";
break;
case GNU_ABI_TAG_SYLLABLE:
osname = "Syllable";
break;
case GNU_ABI_TAG_NACL:
osname = "NaCl";
break;
default:
osname = "Unknown";
break;
}
printf (_(" OS: %s, ABI: %d.%d.%d\n"), osname,
major, minor, subminor);
}
break;
case NT_GNU_GOLD_VERSION:
{
size_t i;
printf (_(" Version: "));
for (i = 0; i < pnote->descsz && pnote->descdata[i] != '\0'; ++i)
printf ("%c", pnote->descdata[i]);
printf ("\n");
}
break;
case NT_GNU_HWCAP:
{
unsigned int num_entries, mask;
/* Hardware capabilities information. Word 0 is the number of entries.
Word 1 is a bitmask of enabled entries. The rest of the descriptor
is a series of entries, where each entry is a single byte followed
by a nul terminated string. The byte gives the bit number to test
if enabled in the bitmask. */
printf (_(" Hardware Capabilities: "));
if (pnote->descsz < 8)
{
error (_("<corrupt GNU_HWCAP>\n"));
return false;
}
num_entries = byte_get ((unsigned char *) pnote->descdata, 4);
mask = byte_get ((unsigned char *) pnote->descdata + 4, 4);
printf (_("num entries: %d, enabled mask: %x\n"), num_entries, mask);
/* FIXME: Add code to display the entries... */
}
break;
case NT_GNU_PROPERTY_TYPE_0:
print_gnu_property_note (filedata, pnote);
break;
default:
/* Handle unrecognised types. An error message should have already been
created by get_gnu_elf_note_type(), so all that we need to do is to
display the data. */
{
size_t i;
printf (_(" Description data: "));
for (i = 0; i < pnote->descsz; ++i)
printf ("%02x ", pnote->descdata[i] & 0xff);
printf ("\n");
}
break;
}
return true;
}
static const char *
get_v850_elf_note_type (enum v850_notes n_type)
{
static char buff[64];
switch (n_type)
{
case V850_NOTE_ALIGNMENT: return _("Alignment of 8-byte objects");
case V850_NOTE_DATA_SIZE: return _("Sizeof double and long double");
case V850_NOTE_FPU_INFO: return _("Type of FPU support needed");
case V850_NOTE_SIMD_INFO: return _("Use of SIMD instructions");
case V850_NOTE_CACHE_INFO: return _("Use of cache");
case V850_NOTE_MMU_INFO: return _("Use of MMU");
default:
snprintf (buff, sizeof (buff), _("Unknown note type: (0x%08x)"), n_type);
return buff;
}
}
static bool
print_v850_note (Elf_Internal_Note * pnote)
{
unsigned int val;
if (pnote->descsz != 4)
return false;
val = byte_get ((unsigned char *) pnote->descdata, pnote->descsz);
if (val == 0)
{
printf (_("not set\n"));
return true;
}
switch (pnote->type)
{
case V850_NOTE_ALIGNMENT:
switch (val)
{
case EF_RH850_DATA_ALIGN4: printf (_("4-byte\n")); return true;
case EF_RH850_DATA_ALIGN8: printf (_("8-byte\n")); return true;
}
break;
case V850_NOTE_DATA_SIZE:
switch (val)
{
case EF_RH850_DOUBLE32: printf (_("4-bytes\n")); return true;
case EF_RH850_DOUBLE64: printf (_("8-bytes\n")); return true;
}
break;
case V850_NOTE_FPU_INFO:
switch (val)
{
case EF_RH850_FPU20: printf (_("FPU-2.0\n")); return true;
case EF_RH850_FPU30: printf (_("FPU-3.0\n")); return true;
}
break;
case V850_NOTE_MMU_INFO:
case V850_NOTE_CACHE_INFO:
case V850_NOTE_SIMD_INFO:
if (val == EF_RH850_SIMD)
{
printf (_("yes\n"));
return true;
}
break;
default:
/* An 'unknown note type' message will already have been displayed. */
break;
}
printf (_("unknown value: %x\n"), val);
return false;
}
static bool
process_netbsd_elf_note (Elf_Internal_Note * pnote)
{
unsigned int version;
switch (pnote->type)
{
case NT_NETBSD_IDENT:
if (pnote->descsz < 1)
break;
version = byte_get ((unsigned char *) pnote->descdata, sizeof (version));
if ((version / 10000) % 100)
printf (" NetBSD\t\t0x%08lx\tIDENT %u (%u.%u%s%c)\n", pnote->descsz,
version, version / 100000000, (version / 1000000) % 100,
(version / 10000) % 100 > 26 ? "Z" : "",
'A' + (version / 10000) % 26);
else
printf (" NetBSD\t\t0x%08lx\tIDENT %u (%u.%u.%u)\n", pnote->descsz,
version, version / 100000000, (version / 1000000) % 100,
(version / 100) % 100);
return true;
case NT_NETBSD_MARCH:
printf (" NetBSD\t\t0x%08lx\tMARCH <%s>\n", pnote->descsz,
pnote->descdata);
return true;
case NT_NETBSD_PAX:
if (pnote->descsz < 1)
break;
version = byte_get ((unsigned char *) pnote->descdata, sizeof (version));
printf (" NetBSD\t\t0x%08lx\tPaX <%s%s%s%s%s%s>\n", pnote->descsz,
((version & NT_NETBSD_PAX_MPROTECT) ? "+mprotect" : ""),
((version & NT_NETBSD_PAX_NOMPROTECT) ? "-mprotect" : ""),
((version & NT_NETBSD_PAX_GUARD) ? "+guard" : ""),
((version & NT_NETBSD_PAX_NOGUARD) ? "-guard" : ""),
((version & NT_NETBSD_PAX_ASLR) ? "+ASLR" : ""),
((version & NT_NETBSD_PAX_NOASLR) ? "-ASLR" : ""));
return true;
}
printf (" NetBSD\t0x%08lx\tUnknown note type: (0x%08lx)\n",
pnote->descsz, pnote->type);
return false;
}
static const char *
get_freebsd_elfcore_note_type (Filedata * filedata, unsigned e_type)
{
switch (e_type)
{
case NT_FREEBSD_THRMISC:
return _("NT_THRMISC (thrmisc structure)");
case NT_FREEBSD_PROCSTAT_PROC:
return _("NT_PROCSTAT_PROC (proc data)");
case NT_FREEBSD_PROCSTAT_FILES:
return _("NT_PROCSTAT_FILES (files data)");
case NT_FREEBSD_PROCSTAT_VMMAP:
return _("NT_PROCSTAT_VMMAP (vmmap data)");
case NT_FREEBSD_PROCSTAT_GROUPS:
return _("NT_PROCSTAT_GROUPS (groups data)");
case NT_FREEBSD_PROCSTAT_UMASK:
return _("NT_PROCSTAT_UMASK (umask data)");
case NT_FREEBSD_PROCSTAT_RLIMIT:
return _("NT_PROCSTAT_RLIMIT (rlimit data)");
case NT_FREEBSD_PROCSTAT_OSREL:
return _("NT_PROCSTAT_OSREL (osreldate data)");
case NT_FREEBSD_PROCSTAT_PSSTRINGS:
return _("NT_PROCSTAT_PSSTRINGS (ps_strings data)");
case NT_FREEBSD_PROCSTAT_AUXV:
return _("NT_PROCSTAT_AUXV (auxv data)");
case NT_FREEBSD_PTLWPINFO:
return _("NT_PTLWPINFO (ptrace_lwpinfo structure)");
case NT_FREEBSD_X86_SEGBASES:
return _("NT_X86_SEGBASES (x86 segment base registers)");
}
return get_note_type (filedata, e_type);
}
static const char *
get_netbsd_elfcore_note_type (Filedata * filedata, unsigned e_type)
{
static char buff[64];
switch (e_type)
{
case NT_NETBSDCORE_PROCINFO:
/* NetBSD core "procinfo" structure. */
return _("NetBSD procinfo structure");
case NT_NETBSDCORE_AUXV:
return _("NetBSD ELF auxiliary vector data");
case NT_NETBSDCORE_LWPSTATUS:
return _("PT_LWPSTATUS (ptrace_lwpstatus structure)");
default:
/* As of Jan 2020 there are no other machine-independent notes
defined for NetBSD core files. If the note type is less
than the start of the machine-dependent note types, we don't
understand it. */
if (e_type < NT_NETBSDCORE_FIRSTMACH)
{
snprintf (buff, sizeof (buff), _("Unknown note type: (0x%08x)"), e_type);
return buff;
}
break;
}
switch (filedata->file_header.e_machine)
{
/* On the Alpha, SPARC (32-bit and 64-bit), PT_GETREGS == mach+0
and PT_GETFPREGS == mach+2. */
case EM_OLD_ALPHA:
case EM_ALPHA:
case EM_SPARC:
case EM_SPARC32PLUS:
case EM_SPARCV9:
switch (e_type)
{
case NT_NETBSDCORE_FIRSTMACH + 0:
return _("PT_GETREGS (reg structure)");
case NT_NETBSDCORE_FIRSTMACH + 2:
return _("PT_GETFPREGS (fpreg structure)");
default:
break;
}
break;
/* On SuperH, PT_GETREGS == mach+3 and PT_GETFPREGS == mach+5.
There's also old PT___GETREGS40 == mach + 1 for old reg
structure which lacks GBR. */
case EM_SH:
switch (e_type)
{
case NT_NETBSDCORE_FIRSTMACH + 1:
return _("PT___GETREGS40 (old reg structure)");
case NT_NETBSDCORE_FIRSTMACH + 3:
return _("PT_GETREGS (reg structure)");
case NT_NETBSDCORE_FIRSTMACH + 5:
return _("PT_GETFPREGS (fpreg structure)");
default:
break;
}
break;
/* On all other arch's, PT_GETREGS == mach+1 and
PT_GETFPREGS == mach+3. */
default:
switch (e_type)
{
case NT_NETBSDCORE_FIRSTMACH + 1:
return _("PT_GETREGS (reg structure)");
case NT_NETBSDCORE_FIRSTMACH + 3:
return _("PT_GETFPREGS (fpreg structure)");
default:
break;
}
}
snprintf (buff, sizeof (buff), "PT_FIRSTMACH+%d",
e_type - NT_NETBSDCORE_FIRSTMACH);
return buff;
}
static const char *
get_openbsd_elfcore_note_type (Filedata * filedata, unsigned e_type)
{
switch (e_type)
{
case NT_OPENBSD_PROCINFO:
return _("OpenBSD procinfo structure");
case NT_OPENBSD_AUXV:
return _("OpenBSD ELF auxiliary vector data");
case NT_OPENBSD_REGS:
return _("OpenBSD regular registers");
case NT_OPENBSD_FPREGS:
return _("OpenBSD floating point registers");
case NT_OPENBSD_WCOOKIE:
return _("OpenBSD window cookie");
}
return get_note_type (filedata, e_type);
}
static const char *
get_qnx_elfcore_note_type (Filedata * filedata, unsigned e_type)
{
switch (e_type)
{
case QNT_DEBUG_FULLPATH:
return _("QNX debug fullpath");
case QNT_DEBUG_RELOC:
return _("QNX debug relocation");
case QNT_STACK:
return _("QNX stack");
case QNT_GENERATOR:
return _("QNX generator");
case QNT_DEFAULT_LIB:
return _("QNX default library");
case QNT_CORE_SYSINFO:
return _("QNX core sysinfo");
case QNT_CORE_INFO:
return _("QNX core info");
case QNT_CORE_STATUS:
return _("QNX core status");
case QNT_CORE_GREG:
return _("QNX general registers");
case QNT_CORE_FPREG:
return _("QNX floating point registers");
case QNT_LINK_MAP:
return _("QNX link map");
}
return get_note_type (filedata, e_type);
}
static const char *
get_stapsdt_note_type (unsigned e_type)
{
static char buff[64];
switch (e_type)
{
case NT_STAPSDT:
return _("NT_STAPSDT (SystemTap probe descriptors)");
default:
break;
}
snprintf (buff, sizeof (buff), _("Unknown note type: (0x%08x)"), e_type);
return buff;
}
static bool
print_stapsdt_note (Elf_Internal_Note *pnote)
{
size_t len, maxlen;
size_t addr_size = is_32bit_elf ? 4 : 8;
char *data = pnote->descdata;
char *data_end = pnote->descdata + pnote->descsz;
uint64_t pc, base_addr, semaphore;
char *provider, *probe, *arg_fmt;
if (pnote->descsz < (addr_size * 3))
goto stapdt_note_too_small;
pc = byte_get ((unsigned char *) data, addr_size);
data += addr_size;
base_addr = byte_get ((unsigned char *) data, addr_size);
data += addr_size;
semaphore = byte_get ((unsigned char *) data, addr_size);
data += addr_size;
if (data >= data_end)
goto stapdt_note_too_small;
maxlen = data_end - data;
len = strnlen (data, maxlen);
if (len < maxlen)
{
provider = data;
data += len + 1;
}
else
goto stapdt_note_too_small;
if (data >= data_end)
goto stapdt_note_too_small;
maxlen = data_end - data;
len = strnlen (data, maxlen);
if (len < maxlen)
{
probe = data;
data += len + 1;
}
else
goto stapdt_note_too_small;
if (data >= data_end)
goto stapdt_note_too_small;
maxlen = data_end - data;
len = strnlen (data, maxlen);
if (len < maxlen)
{
arg_fmt = data;
data += len + 1;
}
else
goto stapdt_note_too_small;
printf (_(" Provider: %s\n"), provider);
printf (_(" Name: %s\n"), probe);
printf (_(" Location: "));
print_vma (pc, FULL_HEX);
printf (_(", Base: "));
print_vma (base_addr, FULL_HEX);
printf (_(", Semaphore: "));
print_vma (semaphore, FULL_HEX);
printf ("\n");
printf (_(" Arguments: %s\n"), arg_fmt);
return data == data_end;
stapdt_note_too_small:
printf (_(" <corrupt - note is too small>\n"));
error (_("corrupt stapdt note - the data size is too small\n"));
return false;
}
static bool
print_fdo_note (Elf_Internal_Note * pnote)
{
if (pnote->descsz > 0 && pnote->type == FDO_PACKAGING_METADATA)
{
printf (_(" Packaging Metadata: %.*s\n"), (int) pnote->descsz, pnote->descdata);
return true;
}
if (pnote->descsz > 0 && pnote->type == FDO_DLOPEN_METADATA)
{
printf (_(" Dlopen Metadata: %.*s\n"), (int) pnote->descsz, pnote->descdata);
return true;
}
return false;
}
static const char *
get_ia64_vms_note_type (unsigned e_type)
{
static char buff[64];
switch (e_type)
{
case NT_VMS_MHD:
return _("NT_VMS_MHD (module header)");
case NT_VMS_LNM:
return _("NT_VMS_LNM (language name)");
case NT_VMS_SRC:
return _("NT_VMS_SRC (source files)");
case NT_VMS_TITLE:
return "NT_VMS_TITLE";
case NT_VMS_EIDC:
return _("NT_VMS_EIDC (consistency check)");
case NT_VMS_FPMODE:
return _("NT_VMS_FPMODE (FP mode)");
case NT_VMS_LINKTIME:
return "NT_VMS_LINKTIME";
case NT_VMS_IMGNAM:
return _("NT_VMS_IMGNAM (image name)");
case NT_VMS_IMGID:
return _("NT_VMS_IMGID (image id)");
case NT_VMS_LINKID:
return _("NT_VMS_LINKID (link id)");
case NT_VMS_IMGBID:
return _("NT_VMS_IMGBID (build id)");
case NT_VMS_GSTNAM:
return _("NT_VMS_GSTNAM (sym table name)");
case NT_VMS_ORIG_DYN:
return "NT_VMS_ORIG_DYN";
case NT_VMS_PATCHTIME:
return "NT_VMS_PATCHTIME";
default:
snprintf (buff, sizeof (buff), _("Unknown note type: (0x%08x)"), e_type);
return buff;
}
}
static bool
print_ia64_vms_note (Elf_Internal_Note * pnote)
{
unsigned int maxlen = pnote->descsz;
if (maxlen < 2 || maxlen != pnote->descsz)
goto desc_size_fail;
switch (pnote->type)
{
case NT_VMS_MHD:
if (maxlen <= 36)
goto desc_size_fail;
size_t l = strnlen (pnote->descdata + 34, maxlen - 34);
printf (_(" Creation date : %.17s\n"), pnote->descdata);
printf (_(" Last patch date: %.17s\n"), pnote->descdata + 17);
if (l + 34 < maxlen)
{
printf (_(" Module name : %s\n"), pnote->descdata + 34);
if (l + 35 < maxlen)
printf (_(" Module version : %s\n"), pnote->descdata + 34 + l + 1);
else
printf (_(" Module version : <missing>\n"));
}
else
{
printf (_(" Module name : <missing>\n"));
printf (_(" Module version : <missing>\n"));
}
break;
case NT_VMS_LNM:
printf (_(" Language: %.*s\n"), maxlen, pnote->descdata);
break;
case NT_VMS_FPMODE:
printf (_(" Floating Point mode: "));
if (maxlen < 8)
goto desc_size_fail;
/* FIXME: Generate an error if descsz > 8 ? */
printf ("0x%016" PRIx64 "\n",
byte_get ((unsigned char *) pnote->descdata, 8));
break;
case NT_VMS_LINKTIME:
printf (_(" Link time: "));
if (maxlen < 8)
goto desc_size_fail;
/* FIXME: Generate an error if descsz > 8 ? */
print_vms_time (byte_get ((unsigned char *) pnote->descdata, 8));
printf ("\n");
break;
case NT_VMS_PATCHTIME:
printf (_(" Patch time: "));
if (maxlen < 8)
goto desc_size_fail;
/* FIXME: Generate an error if descsz > 8 ? */
print_vms_time (byte_get ((unsigned char *) pnote->descdata, 8));
printf ("\n");
break;
case NT_VMS_ORIG_DYN:
if (maxlen < 34)
goto desc_size_fail;
printf (_(" Major id: %u, minor id: %u\n"),
(unsigned) byte_get ((unsigned char *) pnote->descdata, 4),
(unsigned) byte_get ((unsigned char *) pnote->descdata + 4, 4));
printf (_(" Last modified : "));
print_vms_time (byte_get ((unsigned char *) pnote->descdata + 8, 8));
printf (_("\n Link flags : "));
printf ("0x%016" PRIx64 "\n",
byte_get ((unsigned char *) pnote->descdata + 16, 8));
printf (_(" Header flags: 0x%08x\n"),
(unsigned) byte_get ((unsigned char *) pnote->descdata + 24, 4));
printf (_(" Image id : %.*s\n"), maxlen - 32, pnote->descdata + 32);
break;
case NT_VMS_IMGNAM:
printf (_(" Image name: %.*s\n"), maxlen, pnote->descdata);
break;
case NT_VMS_GSTNAM:
printf (_(" Global symbol table name: %.*s\n"), maxlen, pnote->descdata);
break;
case NT_VMS_IMGID:
printf (_(" Image id: %.*s\n"), maxlen, pnote->descdata);
break;
case NT_VMS_LINKID:
printf (_(" Linker id: %.*s\n"), maxlen, pnote->descdata);
break;
default:
return false;
}
return true;
desc_size_fail:
printf (_(" <corrupt - data size is too small>\n"));
error (_("corrupt IA64 note: data size is too small\n"));
return false;
}
struct build_attr_cache {
Filedata *filedata;
char *strtab;
uint64_t strtablen;
Elf_Internal_Sym *symtab;
uint64_t nsyms;
} ba_cache;
/* Find the symbol associated with a build attribute that is attached
to address OFFSET. If PNAME is non-NULL then store the name of
the symbol (if found) in the provided pointer, Returns NULL if a
symbol could not be found. */
static Elf_Internal_Sym *
get_symbol_for_build_attribute (Filedata *filedata,
uint64_t offset,
bool is_open_attr,
const char **pname)
{
Elf_Internal_Sym *saved_sym = NULL;
Elf_Internal_Sym *sym;
if (filedata->section_headers != NULL
&& (ba_cache.filedata == NULL || filedata != ba_cache.filedata))
{
Elf_Internal_Shdr * symsec;
free (ba_cache.strtab);
ba_cache.strtab = NULL;
free (ba_cache.symtab);
ba_cache.symtab = NULL;
/* Load the symbol and string sections. */
for (symsec = filedata->section_headers;
symsec < filedata->section_headers + filedata->file_header.e_shnum;
symsec ++)
{
if (symsec->sh_type == SHT_SYMTAB
&& get_symtab (filedata, symsec,
&ba_cache.symtab, &ba_cache.nsyms,
&ba_cache.strtab, &ba_cache.strtablen))
break;
}
ba_cache.filedata = filedata;
}
if (ba_cache.symtab == NULL)
return NULL;
/* Find a symbol whose value matches offset. */
for (sym = ba_cache.symtab; sym < ba_cache.symtab + ba_cache.nsyms; sym ++)
if (sym->st_value == offset)
{
if (sym->st_name >= ba_cache.strtablen)
/* Huh ? This should not happen. */
continue;
if (ba_cache.strtab[sym->st_name] == 0)
continue;
/* The AArch64, ARM and RISC-V architectures define mapping symbols
(eg $d, $x, $t) which we want to ignore. */
if (ba_cache.strtab[sym->st_name] == '$'
&& ba_cache.strtab[sym->st_name + 1] != 0
&& ba_cache.strtab[sym->st_name + 2] == 0)
continue;
if (is_open_attr)
{
/* For OPEN attributes we prefer GLOBAL over LOCAL symbols
and FILE or OBJECT symbols over NOTYPE symbols. We skip
FUNC symbols entirely. */
switch (ELF_ST_TYPE (sym->st_info))
{
case STT_OBJECT:
case STT_FILE:
saved_sym = sym;
if (sym->st_size)
{
/* If the symbol has a size associated
with it then we can stop searching. */
sym = ba_cache.symtab + ba_cache.nsyms;
}
continue;
case STT_FUNC:
/* Ignore function symbols. */
continue;
default:
break;
}
switch (ELF_ST_BIND (sym->st_info))
{
case STB_GLOBAL:
if (saved_sym == NULL
|| ELF_ST_TYPE (saved_sym->st_info) != STT_OBJECT)
saved_sym = sym;
break;
case STB_LOCAL:
if (saved_sym == NULL)
saved_sym = sym;
break;
default:
break;
}
}
else
{
if (ELF_ST_TYPE (sym->st_info) != STT_FUNC)
continue;
saved_sym = sym;
break;
}
}
if (saved_sym && pname)
* pname = ba_cache.strtab + saved_sym->st_name;
return saved_sym;
}
/* Returns true iff addr1 and addr2 are in the same section. */
static bool
same_section (Filedata * filedata, uint64_t addr1, uint64_t addr2)
{
Elf_Internal_Shdr * a1;
Elf_Internal_Shdr * a2;
a1 = find_section_by_address (filedata, addr1);
a2 = find_section_by_address (filedata, addr2);
return a1 == a2 && a1 != NULL;
}
static bool
print_gnu_build_attribute_description (Elf_Internal_Note * pnote,
Filedata * filedata)
{
static uint64_t global_offset = 0;
static uint64_t global_end = 0;
static uint64_t func_offset = 0;
static uint64_t func_end = 0;
Elf_Internal_Sym *sym;
const char *name;
uint64_t start;
uint64_t end;
bool is_open_attr = pnote->type == NT_GNU_BUILD_ATTRIBUTE_OPEN;
switch (pnote->descsz)
{
case 0:
/* A zero-length description means that the range of
the previous note of the same type should be used. */
if (is_open_attr)
{
if (global_end > global_offset)
printf (_(" Applies to region from %#" PRIx64
" to %#" PRIx64 "\n"), global_offset, global_end);
else
printf (_(" Applies to region from %#" PRIx64
"\n"), global_offset);
}
else
{
if (func_end > func_offset)
printf (_(" Applies to region from %#" PRIx64
" to %#" PRIx64 "\n"), func_offset, func_end);
else
printf (_(" Applies to region from %#" PRIx64
"\n"), func_offset);
}
return true;
case 4:
start = byte_get ((unsigned char *) pnote->descdata, 4);
end = 0;
break;
case 8:
start = byte_get ((unsigned char *) pnote->descdata, 4);
end = byte_get ((unsigned char *) pnote->descdata + 4, 4);
break;
case 16:
start = byte_get ((unsigned char *) pnote->descdata, 8);
end = byte_get ((unsigned char *) pnote->descdata + 8, 8);
break;
default:
error (_(" <invalid description size: %lx>\n"), pnote->descsz);
printf (_(" <invalid descsz>"));
return false;
}
name = NULL;
sym = get_symbol_for_build_attribute (filedata, start, is_open_attr, & name);
/* As of version 5 of the annobin plugin, filename symbols are biased by 2
in order to avoid them being confused with the start address of the
first function in the file... */
if (sym == NULL && is_open_attr)
sym = get_symbol_for_build_attribute (filedata, start + 2, is_open_attr,
& name);
if (end == 0 && sym != NULL && sym->st_size > 0)
end = start + sym->st_size;
if (is_open_attr)
{
/* FIXME: Need to properly allow for section alignment.
16 is just the alignment used on x86_64. */
if (global_end > 0
&& start > BFD_ALIGN (global_end, 16)
/* Build notes are not guaranteed to be organised in order of
increasing address, but we should find the all of the notes
for one section in the same place. */
&& same_section (filedata, start, global_end))
warn (_("Gap in build notes detected from %#" PRIx64
" to %#" PRIx64 "\n"),
global_end + 1, start - 1);
printf (_(" Applies to region from %#" PRIx64), start);
global_offset = start;
if (end)
{
printf (_(" to %#" PRIx64), end);
global_end = end;
}
}
else
{
printf (_(" Applies to region from %#" PRIx64), start);
func_offset = start;
if (end)
{
printf (_(" to %#" PRIx64), end);
func_end = end;
}
}
if (sym && name)
printf (_(" (%s)"), name);
printf ("\n");
return true;
}
static bool
print_gnu_build_attribute_name (Elf_Internal_Note * pnote)
{
static const char string_expected [2] = { GNU_BUILD_ATTRIBUTE_TYPE_STRING, 0 };
static const char number_expected [2] = { GNU_BUILD_ATTRIBUTE_TYPE_NUMERIC, 0 };
static const char bool_expected [3] = { GNU_BUILD_ATTRIBUTE_TYPE_BOOL_TRUE, GNU_BUILD_ATTRIBUTE_TYPE_BOOL_FALSE, 0 };
char name_type;
char name_attribute;
const char * expected_types;
const char * name = pnote->namedata;
const char * text;
signed int left;
if (name == NULL || pnote->namesz < 2)
{
error (_("corrupt name field in GNU build attribute note: size = %ld\n"), pnote->namesz);
print_symbol_name (-20, _(" <corrupt name>"));
return false;
}
if (do_wide)
left = 28;
else
left = 20;
/* Version 2 of the spec adds a "GA" prefix to the name field. */
if (name[0] == 'G' && name[1] == 'A')
{
if (pnote->namesz < 4)
{
error (_("corrupt name field in GNU build attribute note: size = %ld\n"), pnote->namesz);
print_symbol_name (-20, _(" <corrupt name>"));
return false;
}
printf ("GA");
name += 2;
left -= 2;
}
switch ((name_type = * name))
{
case GNU_BUILD_ATTRIBUTE_TYPE_NUMERIC:
case GNU_BUILD_ATTRIBUTE_TYPE_STRING:
case GNU_BUILD_ATTRIBUTE_TYPE_BOOL_TRUE:
case GNU_BUILD_ATTRIBUTE_TYPE_BOOL_FALSE:
printf ("%c", * name);
left --;
break;
default:
error (_("unrecognised attribute type in name field: %d\n"), name_type);
print_symbol_name (-20, _("<unknown name type>"));
return false;
}
++ name;
text = NULL;
switch ((name_attribute = * name))
{
case GNU_BUILD_ATTRIBUTE_VERSION:
text = _("<version>");
expected_types = string_expected;
++ name;
break;
case GNU_BUILD_ATTRIBUTE_STACK_PROT:
text = _("<stack prot>");
expected_types = "!+*";
++ name;
break;
case GNU_BUILD_ATTRIBUTE_RELRO:
text = _("<relro>");
expected_types = bool_expected;
++ name;
break;
case GNU_BUILD_ATTRIBUTE_STACK_SIZE:
text = _("<stack size>");
expected_types = number_expected;
++ name;
break;
case GNU_BUILD_ATTRIBUTE_TOOL:
text = _("<tool>");
expected_types = string_expected;
++ name;
break;
case GNU_BUILD_ATTRIBUTE_ABI:
text = _("<ABI>");
expected_types = "$*";
++ name;
break;
case GNU_BUILD_ATTRIBUTE_PIC:
text = _("<PIC>");
expected_types = number_expected;
++ name;
break;
case GNU_BUILD_ATTRIBUTE_SHORT_ENUM:
text = _("<short enum>");
expected_types = bool_expected;
++ name;
break;
default:
if (ISPRINT (* name))
{
int len = strnlen (name, pnote->namesz - (name - pnote->namedata)) + 1;
if (len > left && ! do_wide)
len = left;
printf ("%.*s:", len, name);
left -= len;
name += len;
}
else
{
static char tmpbuf [128];
error (_("unrecognised byte in name field: %d\n"), * name);
sprintf (tmpbuf, _("<unknown:_%d>"), * name);
text = tmpbuf;
name ++;
}
expected_types = "*$!+";
break;
}
if (text)
left -= printf ("%s", text);
if (strchr (expected_types, name_type) == NULL)
warn (_("attribute does not have an expected type (%c)\n"), name_type);
if ((size_t) (name - pnote->namedata) > pnote->namesz)
{
error (_("corrupt name field: namesz: %lu but parsing gets to %td\n"),
pnote->namesz,
name - pnote->namedata);
return false;
}
if (left < 1 && ! do_wide)
return true;
switch (name_type)
{
case GNU_BUILD_ATTRIBUTE_TYPE_NUMERIC:
{
unsigned int bytes;
uint64_t val = 0;
unsigned int shift = 0;
char *decoded = NULL;
bytes = pnote->namesz - (name - pnote->namedata);
if (bytes > 0)
/* The -1 is because the name field is always 0 terminated, and we
want to be able to ensure that the shift in the while loop below
will not overflow. */
-- bytes;
if (bytes > sizeof (val))
{
error (_("corrupt numeric name field: too many bytes in the value: %x\n"),
bytes);
bytes = sizeof (val);
}
/* We do not bother to warn if bytes == 0 as this can
happen with some early versions of the gcc plugin. */
while (bytes --)
{
uint64_t byte = *name++ & 0xff;
val |= byte << shift;
shift += 8;
}
switch (name_attribute)
{
case GNU_BUILD_ATTRIBUTE_PIC:
switch (val)
{
case 0: decoded = "static"; break;
case 1: decoded = "pic"; break;
case 2: decoded = "PIC"; break;
case 3: decoded = "pie"; break;
case 4: decoded = "PIE"; break;
default: break;
}
break;
case GNU_BUILD_ATTRIBUTE_STACK_PROT:
switch (val)
{
/* Based upon the SPCT_FLAG_xxx enum values in gcc/cfgexpand.c. */
case 0: decoded = "off"; break;
case 1: decoded = "on"; break;
case 2: decoded = "all"; break;
case 3: decoded = "strong"; break;
case 4: decoded = "explicit"; break;
default: break;
}
break;
default:
break;
}
if (decoded != NULL)
{
print_symbol_name (-left, decoded);
left = 0;
}
else if (val == 0)
{
printf ("0x0");
left -= 3;
}
else
{
if (do_wide)
left -= printf ("0x%" PRIx64, val);
else
left -= printf ("0x%-.*" PRIx64, left, val);
}
}
break;
case GNU_BUILD_ATTRIBUTE_TYPE_STRING:
left -= print_symbol_name (- left, name);
break;
case GNU_BUILD_ATTRIBUTE_TYPE_BOOL_TRUE:
left -= print_symbol_name (- left, "true");
break;
case GNU_BUILD_ATTRIBUTE_TYPE_BOOL_FALSE:
left -= print_symbol_name (- left, "false");
break;
}
if (do_wide && left > 0)
printf ("%-*s", left, " ");
return true;
}
/* Print the contents of PNOTE as hex. */
static void
print_note_contents_hex (Elf_Internal_Note *pnote)
{
if (pnote->descsz)
{
size_t i;
printf (_(" description data: "));
for (i = 0; i < pnote->descsz; i++)
printf ("%02x ", pnote->descdata[i] & 0xff);
if (!do_wide)
printf ("\n");
}
if (do_wide)
printf ("\n");
}
#if defined HAVE_MSGPACK
static void
print_indents (int n)
{
printf (" ");
for (int i = 0; i < n; i++)
printf (" ");
}
/* Print OBJ in human-readable form. */
static void
dump_msgpack_obj (const msgpack_object *obj, int indent)
{
switch (obj->type)
{
case MSGPACK_OBJECT_NIL:
printf ("(nil)");
break;
case MSGPACK_OBJECT_BOOLEAN:
printf ("%s", obj->via.boolean ? "true" : "false");
break;
case MSGPACK_OBJECT_POSITIVE_INTEGER:
printf ("%" PRIu64, obj->via.u64);
break;
case MSGPACK_OBJECT_NEGATIVE_INTEGER:
printf ("%" PRIi64, obj->via.i64);
break;
case MSGPACK_OBJECT_FLOAT32:
case MSGPACK_OBJECT_FLOAT64:
printf ("%f", obj->via.f64);
break;
case MSGPACK_OBJECT_STR:
printf ("\"%.*s\"", obj->via.str.size, obj->via.str.ptr);
break;
case MSGPACK_OBJECT_ARRAY:
{
const msgpack_object_array *array = &obj->via.array;
printf ("[\n");
++indent;
for (uint32_t i = 0; i < array->size; ++i)
{
const msgpack_object *item = &array->ptr[i];
print_indents (indent);
dump_msgpack_obj (item, indent);
printf (",\n");
}
--indent;
print_indents (indent);
printf ("]");
break;
}
break;
case MSGPACK_OBJECT_MAP:
{
const msgpack_object_map *map = &obj->via.map;
printf ("{\n");
++indent;
for (uint32_t i = 0; i < map->size; ++i)
{
const msgpack_object_kv *kv = &map->ptr[i];
const msgpack_object *key = &kv->key;
const msgpack_object *val = &kv->val;
print_indents (indent);
dump_msgpack_obj (key, indent);
printf (": ");
dump_msgpack_obj (val, indent);
printf (",\n");
}
--indent;
print_indents (indent);
printf ("}");
break;
}
case MSGPACK_OBJECT_BIN:
printf ("(bin)");
break;
case MSGPACK_OBJECT_EXT:
printf ("(ext)");
break;
}
}
static void
dump_msgpack (const msgpack_unpacked *msg)
{
print_indents (0);
dump_msgpack_obj (&msg->data, 0);
printf ("\n");
}
#endif /* defined HAVE_MSGPACK */
static bool
print_amdgpu_note (Elf_Internal_Note *pnote)
{
#if defined HAVE_MSGPACK
/* If msgpack is available, decode and dump the note's content. */
bool ret;
msgpack_unpacked msg;
msgpack_unpack_return msgpack_ret;
assert (pnote->type == NT_AMDGPU_METADATA);
msgpack_unpacked_init (&msg);
msgpack_ret = msgpack_unpack_next (&msg, pnote->descdata, pnote->descsz,
NULL);
switch (msgpack_ret)
{
case MSGPACK_UNPACK_SUCCESS:
dump_msgpack (&msg);
ret = true;
break;
default:
error (_("failed to unpack msgpack contents in NT_AMDGPU_METADATA note"));
ret = false;
break;
}
msgpack_unpacked_destroy (&msg);
return ret;
#else
/* msgpack is not available, dump contents as hex. */
print_note_contents_hex (pnote);
return true;
#endif
}
static bool
print_qnx_note (Elf_Internal_Note *pnote)
{
switch (pnote->type)
{
case QNT_STACK:
if (pnote->descsz != 12)
goto desc_size_fail;
printf (_(" Stack Size: 0x%" PRIx32 "\n"),
(unsigned) byte_get ((unsigned char *) pnote->descdata, 4));
printf (_(" Stack allocated: %" PRIx32 "\n"),
(unsigned) byte_get ((unsigned char *) pnote->descdata + 4, 4));
printf (_(" Executable: %s\n"),
((unsigned) byte_get ((unsigned char *) pnote->descdata + 8, 1)) ? "no": "yes");
break;
default:
print_note_contents_hex(pnote);
}
return true;
desc_size_fail:
printf (_(" <corrupt - data size is too small>\n"));
error (_("corrupt QNX note: data size is too small\n"));
return false;
}
/* Note that by the ELF standard, the name field is already null byte
terminated, and namesz includes the terminating null byte.
I.E. the value of namesz for the name "FSF" is 4.
If the value of namesz is zero, there is no name present. */
static bool
process_note (Elf_Internal_Note * pnote,
Filedata * filedata)
{
const char * name = pnote->namesz ? pnote->namedata : "(NONE)";
const char * nt;
if (pnote->namesz == 0)
/* If there is no note name, then use the default set of
note type strings. */
nt = get_note_type (filedata, pnote->type);
else if (startswith (pnote->namedata, "GNU"))
/* GNU-specific object file notes. */
nt = get_gnu_elf_note_type (pnote->type);
else if (startswith (pnote->namedata, "AMDGPU"))
/* AMDGPU-specific object file notes. */
nt = get_amdgpu_elf_note_type (pnote->type);
else if (startswith (pnote->namedata, "FreeBSD"))
/* FreeBSD-specific core file notes. */
nt = get_freebsd_elfcore_note_type (filedata, pnote->type);
else if (startswith (pnote->namedata, "NetBSD-CORE"))
/* NetBSD-specific core file notes. */
nt = get_netbsd_elfcore_note_type (filedata, pnote->type);
else if (startswith (pnote->namedata, "NetBSD"))
/* NetBSD-specific core file notes. */
return process_netbsd_elf_note (pnote);
else if (startswith (pnote->namedata, "PaX"))
/* NetBSD-specific core file notes. */
return process_netbsd_elf_note (pnote);
else if (startswith (pnote->namedata, "OpenBSD"))
/* OpenBSD-specific core file notes. */
nt = get_openbsd_elfcore_note_type (filedata, pnote->type);
else if (startswith (pnote->namedata, "QNX"))
/* QNX-specific core file notes. */
nt = get_qnx_elfcore_note_type (filedata, pnote->type);
else if (startswith (pnote->namedata, "SPU/"))
{
/* SPU-specific core file notes. */
nt = pnote->namedata + 4;
name = "SPU";
}
else if (startswith (pnote->namedata, "IPF/VMS"))
/* VMS/ia64-specific file notes. */
nt = get_ia64_vms_note_type (pnote->type);
else if (startswith (pnote->namedata, "stapsdt"))
nt = get_stapsdt_note_type (pnote->type);
else
/* Don't recognize this note name; just use the default set of
note type strings. */
nt = get_note_type (filedata, pnote->type);
printf (" ");
if (((startswith (pnote->namedata, "GA")
&& strchr ("*$!+", pnote->namedata[2]) != NULL)
|| strchr ("*$!+", pnote->namedata[0]) != NULL)
&& (pnote->type == NT_GNU_BUILD_ATTRIBUTE_OPEN
|| pnote->type == NT_GNU_BUILD_ATTRIBUTE_FUNC))
print_gnu_build_attribute_name (pnote);
else
print_symbol_name (-20, name);
if (do_wide)
printf (" 0x%08lx\t%s\t", pnote->descsz, nt);
else
printf (" 0x%08lx\t%s\n", pnote->descsz, nt);
if (startswith (pnote->namedata, "IPF/VMS"))
return print_ia64_vms_note (pnote);
else if (startswith (pnote->namedata, "GNU"))
return print_gnu_note (filedata, pnote);
else if (startswith (pnote->namedata, "stapsdt"))
return print_stapsdt_note (pnote);
else if (startswith (pnote->namedata, "CORE"))
return print_core_note (pnote);
else if (startswith (pnote->namedata, "FDO"))
return print_fdo_note (pnote);
else if (((startswith (pnote->namedata, "GA")
&& strchr ("*$!+", pnote->namedata[2]) != NULL)
|| strchr ("*$!+", pnote->namedata[0]) != NULL)
&& (pnote->type == NT_GNU_BUILD_ATTRIBUTE_OPEN
|| pnote->type == NT_GNU_BUILD_ATTRIBUTE_FUNC))
return print_gnu_build_attribute_description (pnote, filedata);
else if (startswith (pnote->namedata, "AMDGPU")
&& pnote->type == NT_AMDGPU_METADATA)
return print_amdgpu_note (pnote);
else if (startswith (pnote->namedata, "QNX"))
return print_qnx_note (pnote);
print_note_contents_hex (pnote);
return true;
}
static bool
process_notes_at (Filedata * filedata,
Elf_Internal_Shdr * section,
uint64_t offset,
uint64_t length,
uint64_t align)
{
Elf_External_Note *pnotes;
Elf_External_Note *external;
char *end;
bool res = true;
if (length <= 0)
return false;
if (section)
{
pnotes = (Elf_External_Note *) get_section_contents (section, filedata);
if (pnotes)
{
if (! apply_relocations (filedata, section, (unsigned char *) pnotes, length, NULL, NULL))
{
free (pnotes);
return false;
}
}
}
else
pnotes = (Elf_External_Note *) get_data (NULL, filedata, offset, 1, length,
_("notes"));
if (pnotes == NULL)
return false;
external = pnotes;
if (filedata->is_separate)
printf (_("In linked file '%s': "), filedata->file_name);
else
printf ("\n");
if (section)
printf (_("Displaying notes found in: %s\n"), printable_section_name (filedata, section));
else
printf (_("Displaying notes found at file offset 0x%08" PRIx64
" with length 0x%08" PRIx64 ":\n"),
offset, length);
/* NB: Some note sections may have alignment value of 0 or 1. gABI
specifies that notes should be aligned to 4 bytes in 32-bit
objects and to 8 bytes in 64-bit objects. As a Linux extension,
we also support 4 byte alignment in 64-bit objects. If section
alignment is less than 4, we treate alignment as 4 bytes. */
if (align < 4)
align = 4;
else if (align != 4 && align != 8)
{
warn (_("Corrupt note: alignment %" PRId64 ", expecting 4 or 8\n"),
align);
free (pnotes);
return false;
}
printf (_(" %-20s %-10s\tDescription\n"), _("Owner"), _("Data size"));
end = (char *) pnotes + length;
while ((char *) external < end)
{
Elf_Internal_Note inote;
size_t min_notesz;
char * next;
char * temp = NULL;
size_t data_remaining = end - (char *) external;
if (!is_ia64_vms (filedata))
{
/* PR binutils/15191
Make sure that there is enough data to read. */
min_notesz = offsetof (Elf_External_Note, name);
if (data_remaining < min_notesz)
{
warn (ngettext ("Corrupt note: only %zd byte remains, "
"not enough for a full note\n",
"Corrupt note: only %zd bytes remain, "
"not enough for a full note\n",
data_remaining),
data_remaining);
break;
}
data_remaining -= min_notesz;
inote.type = BYTE_GET (external->type);
inote.namesz = BYTE_GET (external->namesz);
inote.namedata = external->name;
inote.descsz = BYTE_GET (external->descsz);
inote.descdata = ((char *) external
+ ELF_NOTE_DESC_OFFSET (inote.namesz, align));
inote.descpos = offset + (inote.descdata - (char *) pnotes);
next = ((char *) external
+ ELF_NOTE_NEXT_OFFSET (inote.namesz, inote.descsz, align));
}
else
{
Elf64_External_VMS_Note *vms_external;
/* PR binutils/15191
Make sure that there is enough data to read. */
min_notesz = offsetof (Elf64_External_VMS_Note, name);
if (data_remaining < min_notesz)
{
warn (ngettext ("Corrupt note: only %zd byte remains, "
"not enough for a full note\n",
"Corrupt note: only %zd bytes remain, "
"not enough for a full note\n",
data_remaining),
data_remaining);
break;
}
data_remaining -= min_notesz;
vms_external = (Elf64_External_VMS_Note *) external;
inote.type = BYTE_GET (vms_external->type);
inote.namesz = BYTE_GET (vms_external->namesz);
inote.namedata = vms_external->name;
inote.descsz = BYTE_GET (vms_external->descsz);
inote.descdata = inote.namedata + align_power (inote.namesz, 3);
inote.descpos = offset + (inote.descdata - (char *) pnotes);
next = inote.descdata + align_power (inote.descsz, 3);
}
/* PR 17531: file: 3443835e. */
/* PR 17531: file: id:000000,sig:11,src:006986,op:havoc,rep:4. */
if ((size_t) (inote.descdata - inote.namedata) < inote.namesz
|| (size_t) (inote.descdata - inote.namedata) > data_remaining
|| (size_t) (next - inote.descdata) < inote.descsz
|| ((size_t) (next - inote.descdata)
> data_remaining - (size_t) (inote.descdata - inote.namedata)))
{
warn (_("note with invalid namesz and/or descsz found at offset %#tx\n"),
(char *) external - (char *) pnotes);
warn (_(" type: %#lx, namesize: %#lx, descsize: %#lx, alignment: %u\n"),
inote.type, inote.namesz, inote.descsz, (int) align);
break;
}
external = (Elf_External_Note *) next;
/* Verify that name is null terminated. It appears that at least
one version of Linux (RedHat 6.0) generates corefiles that don't
comply with the ELF spec by failing to include the null byte in
namesz. */
if (inote.namesz > 0 && inote.namedata[inote.namesz - 1] != '\0')
{
if ((size_t) (inote.descdata - inote.namedata) == inote.namesz)
{
temp = (char *) malloc (inote.namesz + 1);
if (temp == NULL)
{
error (_("Out of memory allocating space for inote name\n"));
res = false;
break;
}
memcpy (temp, inote.namedata, inote.namesz);
inote.namedata = temp;
}
inote.namedata[inote.namesz] = 0;
}
if (! process_note (& inote, filedata))
res = false;
free (temp);
temp = NULL;
}
free (pnotes);
return res;
}
static bool
process_corefile_note_segments (Filedata * filedata)
{
Elf_Internal_Phdr *segment;
unsigned int i;
bool res = true;
if (! get_program_headers (filedata))
return true;
for (i = 0, segment = filedata->program_headers;
i < filedata->file_header.e_phnum;
i++, segment++)
{
if (segment->p_type == PT_NOTE)
if (! process_notes_at (filedata, NULL, segment->p_offset,
segment->p_filesz, segment->p_align))
res = false;
}
return res;
}
static bool
process_v850_notes (Filedata * filedata, uint64_t offset, uint64_t length)
{
Elf_External_Note * pnotes;
Elf_External_Note * external;
char * end;
bool res = true;
if (length <= 0)
return false;
pnotes = (Elf_External_Note *) get_data (NULL, filedata, offset, 1, length,
_("v850 notes"));
if (pnotes == NULL)
return false;
external = pnotes;
end = (char*) pnotes + length;
printf (_("\nDisplaying contents of Renesas V850 notes section at offset"
" %#" PRIx64 " with length %#" PRIx64 ":\n"),
offset, length);
while ((char *) external + sizeof (Elf_External_Note) < end)
{
Elf_External_Note * next;
Elf_Internal_Note inote;
inote.type = BYTE_GET (external->type);
inote.namesz = BYTE_GET (external->namesz);
inote.namedata = external->name;
inote.descsz = BYTE_GET (external->descsz);
inote.descdata = inote.namedata + align_power (inote.namesz, 2);
inote.descpos = offset + (inote.descdata - (char *) pnotes);
if (inote.descdata < (char *) pnotes || inote.descdata >= end)
{
warn (_("Corrupt note: name size is too big: %lx\n"), inote.namesz);
inote.descdata = inote.namedata;
inote.namesz = 0;
}
next = (Elf_External_Note *) (inote.descdata + align_power (inote.descsz, 2));
if ( ((char *) next > end)
|| ((char *) next < (char *) pnotes))
{
warn (_("corrupt descsz found in note at offset %#tx\n"),
(char *) external - (char *) pnotes);
warn (_(" type: %#lx, namesize: %#lx, descsize: %#lx\n"),
inote.type, inote.namesz, inote.descsz);
break;
}
external = next;
/* Prevent out-of-bounds indexing. */
if ( inote.namedata + inote.namesz > end
|| inote.namedata + inote.namesz < inote.namedata)
{
warn (_("corrupt namesz found in note at offset %#zx\n"),
(char *) external - (char *) pnotes);
warn (_(" type: %#lx, namesize: %#lx, descsize: %#lx\n"),
inote.type, inote.namesz, inote.descsz);
break;
}
printf (" %s: ", get_v850_elf_note_type (inote.type));
if (! print_v850_note (& inote))
{
res = false;
printf ("<corrupt sizes: namesz: %#lx, descsz: %#lx>\n",
inote.namesz, inote.descsz);
}
}
free (pnotes);
return res;
}
static bool
process_note_sections (Filedata * filedata)
{
Elf_Internal_Shdr *section;
size_t i;
unsigned int n = 0;
bool res = true;
for (i = 0, section = filedata->section_headers;
i < filedata->file_header.e_shnum && section != NULL;
i++, section++)
{
if (section->sh_type == SHT_NOTE)
{
if (! process_notes_at (filedata, section, section->sh_offset,
section->sh_size, section->sh_addralign))
res = false;
n++;
}
if (( filedata->file_header.e_machine == EM_V800
|| filedata->file_header.e_machine == EM_V850
|| filedata->file_header.e_machine == EM_CYGNUS_V850)
&& section->sh_type == SHT_RENESAS_INFO)
{
if (! process_v850_notes (filedata, section->sh_offset,
section->sh_size))
res = false;
n++;
}
}
if (n == 0)
/* Try processing NOTE segments instead. */
return process_corefile_note_segments (filedata);
return res;
}
static bool
process_notes (Filedata * filedata)
{
/* If we have not been asked to display the notes then do nothing. */
if (! do_notes)
return true;
if (filedata->file_header.e_type != ET_CORE)
return process_note_sections (filedata);
/* No program headers means no NOTE segment. */
if (filedata->file_header.e_phnum > 0)
return process_corefile_note_segments (filedata);
if (filedata->is_separate)
printf (_("No notes found in linked file '%s'.\n"),
filedata->file_name);
else
printf (_("No notes found file.\n"));
return true;
}
static unsigned char *
display_public_gnu_attributes (unsigned char * start,
const unsigned char * const end)
{
printf (_(" Unknown GNU attribute: %s\n"), start);
start += strnlen ((char *) start, end - start);
display_raw_attribute (start, end);
return (unsigned char *) end;
}
static unsigned char *
display_generic_attribute (unsigned char * start,
unsigned int tag,
const unsigned char * const end)
{
if (tag == 0)
return (unsigned char *) end;
return display_tag_value (tag, start, end);
}
static bool
process_arch_specific (Filedata * filedata)
{
if (! do_arch)
return true;
switch (filedata->file_header.e_machine)
{
case EM_ARC:
case EM_ARC_COMPACT:
case EM_ARC_COMPACT2:
case EM_ARC_COMPACT3:
case EM_ARC_COMPACT3_64:
return process_attributes (filedata, "ARC", SHT_ARC_ATTRIBUTES,
display_arc_attribute,
display_generic_attribute);
case EM_ARM:
return process_attributes (filedata, "aeabi", SHT_ARM_ATTRIBUTES,
display_arm_attribute,
display_generic_attribute);
case EM_MIPS:
case EM_MIPS_RS3_LE:
return process_mips_specific (filedata);
case EM_MSP430:
return process_attributes (filedata, "mspabi", SHT_MSP430_ATTRIBUTES,
display_msp430_attribute,
display_msp430_gnu_attribute);
case EM_RISCV:
return process_attributes (filedata, "riscv", SHT_RISCV_ATTRIBUTES,
display_riscv_attribute,
display_generic_attribute);
case EM_NDS32:
return process_nds32_specific (filedata);
case EM_68K:
return process_attributes (filedata, NULL, SHT_GNU_ATTRIBUTES, NULL,
display_m68k_gnu_attribute);
case EM_PPC:
case EM_PPC64:
return process_attributes (filedata, NULL, SHT_GNU_ATTRIBUTES, NULL,
display_power_gnu_attribute);
case EM_S390:
case EM_S390_OLD:
return process_attributes (filedata, NULL, SHT_GNU_ATTRIBUTES, NULL,
display_s390_gnu_attribute);
case EM_SPARC:
case EM_SPARC32PLUS:
case EM_SPARCV9:
return process_attributes (filedata, NULL, SHT_GNU_ATTRIBUTES, NULL,
display_sparc_gnu_attribute);
case EM_TI_C6000:
return process_attributes (filedata, "c6xabi", SHT_C6000_ATTRIBUTES,
display_tic6x_attribute,
display_generic_attribute);
case EM_CSKY:
return process_attributes (filedata, "csky", SHT_CSKY_ATTRIBUTES,
display_csky_attribute, NULL);
default:
return process_attributes (filedata, "gnu", SHT_GNU_ATTRIBUTES,
display_public_gnu_attributes,
display_generic_attribute);
}
}
static bool
get_file_header (Filedata * filedata)
{
/* Read in the identity array. */
if (fread (filedata->file_header.e_ident, EI_NIDENT, 1, filedata->handle) != 1)
return false;
/* Determine how to read the rest of the header. */
switch (filedata->file_header.e_ident[EI_DATA])
{
default:
case ELFDATANONE:
case ELFDATA2LSB:
byte_get = byte_get_little_endian;
byte_put = byte_put_little_endian;
break;
case ELFDATA2MSB:
byte_get = byte_get_big_endian;
byte_put = byte_put_big_endian;
break;
}
/* For now we only support 32 bit and 64 bit ELF files. */
is_32bit_elf = (filedata->file_header.e_ident[EI_CLASS] != ELFCLASS64);
/* Read in the rest of the header. */
if (is_32bit_elf)
{
Elf32_External_Ehdr ehdr32;
if (fread (ehdr32.e_type, sizeof (ehdr32) - EI_NIDENT, 1, filedata->handle) != 1)
return false;
filedata->file_header.e_type = BYTE_GET (ehdr32.e_type);
filedata->file_header.e_machine = BYTE_GET (ehdr32.e_machine);
filedata->file_header.e_version = BYTE_GET (ehdr32.e_version);
filedata->file_header.e_entry = BYTE_GET (ehdr32.e_entry);
filedata->file_header.e_phoff = BYTE_GET (ehdr32.e_phoff);
filedata->file_header.e_shoff = BYTE_GET (ehdr32.e_shoff);
filedata->file_header.e_flags = BYTE_GET (ehdr32.e_flags);
filedata->file_header.e_ehsize = BYTE_GET (ehdr32.e_ehsize);
filedata->file_header.e_phentsize = BYTE_GET (ehdr32.e_phentsize);
filedata->file_header.e_phnum = BYTE_GET (ehdr32.e_phnum);
filedata->file_header.e_shentsize = BYTE_GET (ehdr32.e_shentsize);
filedata->file_header.e_shnum = BYTE_GET (ehdr32.e_shnum);
filedata->file_header.e_shstrndx = BYTE_GET (ehdr32.e_shstrndx);
}
else
{
Elf64_External_Ehdr ehdr64;
if (fread (ehdr64.e_type, sizeof (ehdr64) - EI_NIDENT, 1, filedata->handle) != 1)
return false;
filedata->file_header.e_type = BYTE_GET (ehdr64.e_type);
filedata->file_header.e_machine = BYTE_GET (ehdr64.e_machine);
filedata->file_header.e_version = BYTE_GET (ehdr64.e_version);
filedata->file_header.e_entry = BYTE_GET (ehdr64.e_entry);
filedata->file_header.e_phoff = BYTE_GET (ehdr64.e_phoff);
filedata->file_header.e_shoff = BYTE_GET (ehdr64.e_shoff);
filedata->file_header.e_flags = BYTE_GET (ehdr64.e_flags);
filedata->file_header.e_ehsize = BYTE_GET (ehdr64.e_ehsize);
filedata->file_header.e_phentsize = BYTE_GET (ehdr64.e_phentsize);
filedata->file_header.e_phnum = BYTE_GET (ehdr64.e_phnum);
filedata->file_header.e_shentsize = BYTE_GET (ehdr64.e_shentsize);
filedata->file_header.e_shnum = BYTE_GET (ehdr64.e_shnum);
filedata->file_header.e_shstrndx = BYTE_GET (ehdr64.e_shstrndx);
}
return true;
}
static void
free_filedata (Filedata *filedata)
{
free (filedata->program_interpreter);
free (filedata->program_headers);
free (filedata->section_headers);
free (filedata->string_table);
free (filedata->dump.dump_sects);
free (filedata->dynamic_strings);
free (filedata->dynamic_symbols);
free (filedata->dynamic_syminfo);
free (filedata->dynamic_section);
while (filedata->symtab_shndx_list != NULL)
{
elf_section_list *next = filedata->symtab_shndx_list->next;
free (filedata->symtab_shndx_list);
filedata->symtab_shndx_list = next;
}
free (filedata->section_headers_groups);
if (filedata->section_groups)
{
size_t i;
struct group_list * g;
struct group_list * next;
for (i = 0; i < filedata->group_count; i++)
{
for (g = filedata->section_groups [i].root; g != NULL; g = next)
{
next = g->next;
free (g);
}
}
free (filedata->section_groups);
}
memset (&filedata->section_headers, 0,
sizeof (Filedata) - offsetof (Filedata, section_headers));
}
static void
close_file (Filedata * filedata)
{
if (filedata)
{
if (filedata->handle)
fclose (filedata->handle);
free (filedata);
}
}
void
close_debug_file (void * data)
{
free_filedata ((Filedata *) data);
close_file ((Filedata *) data);
}
static Filedata *
open_file (const char * pathname, bool is_separate)
{
struct stat statbuf;
Filedata * filedata = NULL;
if (stat (pathname, & statbuf) < 0
|| ! S_ISREG (statbuf.st_mode))
goto fail;
filedata = calloc (1, sizeof * filedata);
if (filedata == NULL)
goto fail;
filedata->handle = fopen (pathname, "rb");
if (filedata->handle == NULL)
goto fail;
filedata->file_size = statbuf.st_size;
filedata->file_name = pathname;
filedata->is_separate = is_separate;
if (! get_file_header (filedata))
goto fail;
if (!get_section_headers (filedata, false))
goto fail;
return filedata;
fail:
if (filedata)
{
if (filedata->handle)
fclose (filedata->handle);
free (filedata);
}
return NULL;
}
void *
open_debug_file (const char * pathname)
{
return open_file (pathname, true);
}
static void
initialise_dump_sects (Filedata * filedata)
{
/* Initialise the dump_sects array from the cmdline_dump_sects array.
Note we do this even if cmdline_dump_sects is empty because we
must make sure that the dump_sets array is zeroed out before each
object file is processed. */
if (filedata->dump.num_dump_sects > cmdline.num_dump_sects)
memset (filedata->dump.dump_sects, 0,
filedata->dump.num_dump_sects * sizeof (*filedata->dump.dump_sects));
if (cmdline.num_dump_sects > 0)
{
if (filedata->dump.num_dump_sects == 0)
/* A sneaky way of allocating the dump_sects array. */
request_dump_bynumber (&filedata->dump, cmdline.num_dump_sects, 0);
assert (filedata->dump.num_dump_sects >= cmdline.num_dump_sects);
memcpy (filedata->dump.dump_sects, cmdline.dump_sects,
cmdline.num_dump_sects * sizeof (*filedata->dump.dump_sects));
}
}
static bool
might_need_separate_debug_info (Filedata * filedata)
{
/* Debuginfo files do not need further separate file loading. */
if (filedata->file_header.e_shstrndx == SHN_UNDEF)
return false;
/* Since do_follow_links might be enabled by default, only treat it as an
indication that separate files should be loaded if setting it was a
deliberate user action. */
if (DEFAULT_FOR_FOLLOW_LINKS == 0 && do_follow_links)
return true;
if (process_links || do_syms || do_unwind
|| dump_any_debugging || do_dump || do_debugging)
return true;
return false;
}
/* Process one ELF object file according to the command line options.
This file may actually be stored in an archive. The file is
positioned at the start of the ELF object. Returns TRUE if no
problems were encountered, FALSE otherwise. */
static bool
process_object (Filedata * filedata)
{
bool have_separate_files;
unsigned int i;
bool res;
if (! get_file_header (filedata))
{
error (_("%s: Failed to read file header\n"), filedata->file_name);
return false;
}
/* Initialise per file variables. */
for (i = ARRAY_SIZE (filedata->version_info); i--;)
filedata->version_info[i] = 0;
for (i = ARRAY_SIZE (filedata->dynamic_info); i--;)
filedata->dynamic_info[i] = 0;
filedata->dynamic_info_DT_GNU_HASH = 0;
filedata->dynamic_info_DT_MIPS_XHASH = 0;
/* Process the file. */
if (show_name)
printf (_("\nFile: %s\n"), filedata->file_name);
initialise_dump_sects (filedata);
/* There may be some extensions in the first section header. Don't
bomb if we can't read it. */
get_section_headers (filedata, true);
if (! process_file_header (filedata))
{
res = false;
goto out;
}
/* Throw away the single section header read above, so that we
re-read the entire set. */
free (filedata->section_headers);
filedata->section_headers = NULL;
if (! process_section_headers (filedata))
{
/* Without loaded section headers we cannot process lots of things. */
do_unwind = do_version = do_dump = do_arch = false;
if (! do_using_dynamic)
do_syms = do_dyn_syms = do_reloc = false;
}
if (! process_section_groups (filedata))
/* Without loaded section groups we cannot process unwind. */
do_unwind = false;
process_program_headers (filedata);
res = process_dynamic_section (filedata);
if (! process_relocs (filedata))
res = false;
if (! process_unwind (filedata))
res = false;
if (! process_symbol_table (filedata))
res = false;
if (! process_lto_symbol_tables (filedata))
res = false;
if (! process_syminfo (filedata))
res = false;
if (! process_version_sections (filedata))
res = false;
if (might_need_separate_debug_info (filedata))
have_separate_files = load_separate_debug_files (filedata, filedata->file_name);
else
have_separate_files = false;
if (! process_section_contents (filedata))
res = false;
if (have_separate_files)
{
separate_info * d;
for (d = first_separate_info; d != NULL; d = d->next)
{
initialise_dump_sects (d->handle);
if (process_links && ! process_file_header (d->handle))
res = false;
else if (! process_section_headers (d->handle))
res = false;
else if (! process_section_contents (d->handle))
res = false;
else if (process_links)
{
if (! process_section_groups (d->handle))
res = false;
process_program_headers (d->handle);
if (! process_dynamic_section (d->handle))
res = false;
if (! process_relocs (d->handle))
res = false;
if (! process_unwind (d->handle))
res = false;
if (! process_symbol_table (d->handle))
res = false;
if (! process_lto_symbol_tables (d->handle))
res = false;
if (! process_syminfo (d->handle))
res = false;
if (! process_version_sections (d->handle))
res = false;
if (! process_notes (d->handle))
res = false;
}
}
/* The file handles are closed by the call to free_debug_memory() below. */
}
if (! process_notes (filedata))
res = false;
if (! process_gnu_liblist (filedata))
res = false;
if (! process_arch_specific (filedata))
res = false;
out:
free_filedata (filedata);
free_debug_memory ();
return res;
}
/* Process an ELF archive.
On entry the file is positioned just after the ARMAG string.
Returns TRUE upon success, FALSE otherwise. */
static bool
process_archive (Filedata * filedata, bool is_thin_archive)
{
struct archive_info arch;
struct archive_info nested_arch;
size_t got;
bool ret = true;
show_name = true;
/* The ARCH structure is used to hold information about this archive. */
arch.file_name = NULL;
arch.file = NULL;
arch.index_array = NULL;
arch.sym_table = NULL;
arch.longnames = NULL;
/* The NESTED_ARCH structure is used as a single-item cache of information
about a nested archive (when members of a thin archive reside within
another regular archive file). */
nested_arch.file_name = NULL;
nested_arch.file = NULL;
nested_arch.index_array = NULL;
nested_arch.sym_table = NULL;
nested_arch.longnames = NULL;
if (setup_archive (&arch, filedata->file_name, filedata->handle,
filedata->file_size, is_thin_archive,
do_archive_index) != 0)
{
ret = false;
goto out;
}
if (do_archive_index)
{
if (arch.sym_table == NULL)
error (_("%s: unable to dump the index as none was found\n"),
filedata->file_name);
else
{
uint64_t i, l;
uint64_t current_pos;
printf (_("Index of archive %s: (%" PRIu64 " entries,"
" %#" PRIx64 " bytes in the symbol table)\n"),
filedata->file_name, arch.index_num,
arch.sym_size);
current_pos = ftell (filedata->handle);
for (i = l = 0; i < arch.index_num; i++)
{
if (i == 0
|| (i > 0 && arch.index_array[i] != arch.index_array[i - 1]))
{
char * member_name
= get_archive_member_name_at (&arch, arch.index_array[i],
&nested_arch);
if (member_name != NULL)
{
char * qualified_name
= make_qualified_name (&arch, &nested_arch,
member_name);
if (qualified_name != NULL)
{
printf (_("Contents of binary %s at offset "),
qualified_name);
(void) print_vma (arch.index_array[i], PREFIX_HEX);
putchar ('\n');
free (qualified_name);
}
free (member_name);
}
}
if (l >= arch.sym_size)
{
error (_("%s: end of the symbol table reached "
"before the end of the index\n"),
filedata->file_name);
ret = false;
break;
}
/* PR 17531: file: 0b6630b2. */
printf ("\t%.*s\n",
(int) (arch.sym_size - l), arch.sym_table + l);
l += strnlen (arch.sym_table + l, arch.sym_size - l) + 1;
}
if (arch.uses_64bit_indices)
l = (l + 7) & ~ 7;
else
l += l & 1;
if (l < arch.sym_size)
{
error (ngettext ("%s: %" PRId64 " byte remains in the symbol table, "
"but without corresponding entries in "
"the index table\n",
"%s: %" PRId64 " bytes remain in the symbol table, "
"but without corresponding entries in "
"the index table\n",
arch.sym_size - l),
filedata->file_name, arch.sym_size - l);
ret = false;
}
if (fseek64 (filedata->handle, current_pos, SEEK_SET) != 0)
{
error (_("%s: failed to seek back to start of object files "
"in the archive\n"),
filedata->file_name);
ret = false;
goto out;
}
}
if (!do_dynamic && !do_syms && !do_reloc && !do_unwind && !do_sections
&& !do_segments && !do_header && !do_dump && !do_version
&& !do_histogram && !do_debugging && !do_arch && !do_notes
&& !do_section_groups && !do_dyn_syms)
{
ret = true; /* Archive index only. */
goto out;
}
}
while (1)
{
char * name;
size_t namelen;
char * qualified_name;
/* Read the next archive header. */
if (fseek64 (filedata->handle, arch.next_arhdr_offset, SEEK_SET) != 0)
{
error (_("%s: failed to seek to next archive header\n"),
arch.file_name);
ret = false;
break;
}
got = fread (&arch.arhdr, 1, sizeof arch.arhdr, filedata->handle);
if (got != sizeof arch.arhdr)
{
if (got == 0)
break;
/* PR 24049 - we cannot use filedata->file_name as this will
have already been freed. */
error (_("%s: failed to read archive header\n"), arch.file_name);
ret = false;
break;
}
if (memcmp (arch.arhdr.ar_fmag, ARFMAG, 2) != 0)
{
error (_("%s: did not find a valid archive header\n"),
arch.file_name);
ret = false;
break;
}
arch.next_arhdr_offset += sizeof arch.arhdr;
filedata->archive_file_size = strtoul (arch.arhdr.ar_size, NULL, 10);
name = get_archive_member_name (&arch, &nested_arch);
if (name == NULL)
{
error (_("%s: bad archive file name\n"), arch.file_name);
ret = false;
break;
}
namelen = strlen (name);
qualified_name = make_qualified_name (&arch, &nested_arch, name);
if (qualified_name == NULL)
{
error (_("%s: bad archive file name\n"), arch.file_name);
free (name);
ret = false;
break;
}
if (is_thin_archive && arch.nested_member_origin == 0)
{
/* This is a proxy for an external member of a thin archive. */
Filedata * member_filedata;
char * member_file_name = adjust_relative_path
(filedata->file_name, name, namelen);
free (name);
if (member_file_name == NULL)
{
free (qualified_name);
ret = false;
break;
}
member_filedata = open_file (member_file_name, false);
if (member_filedata == NULL)
{
error (_("Input file '%s' is not readable.\n"), member_file_name);
free (member_file_name);
free (qualified_name);
ret = false;
break;
}
filedata->archive_file_offset = arch.nested_member_origin;
member_filedata->file_name = qualified_name;
/* The call to process_object() expects the file to be at the beginning. */
rewind (member_filedata->handle);
if (! process_object (member_filedata))
ret = false;
close_file (member_filedata);
free (member_file_name);
}
else if (is_thin_archive)
{
Filedata thin_filedata;
memset (&thin_filedata, 0, sizeof (thin_filedata));
/* PR 15140: Allow for corrupt thin archives. */
if (nested_arch.file == NULL)
{
error (_("%s: contains corrupt thin archive: %s\n"),
qualified_name, name);
free (qualified_name);
free (name);
ret = false;
break;
}
free (name);
/* This is a proxy for a member of a nested archive. */
filedata->archive_file_offset
= arch.nested_member_origin + sizeof arch.arhdr;
/* The nested archive file will have been opened and setup by
get_archive_member_name. */
if (fseek64 (nested_arch.file, filedata->archive_file_offset,
SEEK_SET) != 0)
{
error (_("%s: failed to seek to archive member.\n"),
nested_arch.file_name);
free (qualified_name);
ret = false;
break;
}
thin_filedata.handle = nested_arch.file;
thin_filedata.file_name = qualified_name;
if (! process_object (& thin_filedata))
ret = false;
}
else
{
free (name);
filedata->archive_file_offset = arch.next_arhdr_offset;
filedata->file_name = qualified_name;
if (! process_object (filedata))
ret = false;
arch.next_arhdr_offset += (filedata->archive_file_size + 1) & -2;
/* Stop looping with "negative" archive_file_size. */
if (arch.next_arhdr_offset < filedata->archive_file_size)
arch.next_arhdr_offset = -1ul;
}
free (qualified_name);
}
out:
if (nested_arch.file != NULL)
fclose (nested_arch.file);
release_archive (&nested_arch);
release_archive (&arch);
return ret;
}
static bool
process_file (char * file_name)
{
Filedata * filedata = NULL;
struct stat statbuf;
char armag[SARMAG];
bool ret = true;
if (stat (file_name, &statbuf) < 0)
{
if (errno == ENOENT)
error (_("'%s': No such file\n"), file_name);
else
error (_("Could not locate '%s'. System error message: %s\n"),
file_name, strerror (errno));
return false;
}
if (! S_ISREG (statbuf.st_mode))
{
error (_("'%s' is not an ordinary file\n"), file_name);
return false;
}
filedata = calloc (1, sizeof * filedata);
if (filedata == NULL)
{
error (_("Out of memory allocating file data structure\n"));
return false;
}
filedata->file_name = file_name;
filedata->handle = fopen (file_name, "rb");
if (filedata->handle == NULL)
{
error (_("Input file '%s' is not readable.\n"), file_name);
free (filedata);
return false;
}
if (fread (armag, SARMAG, 1, filedata->handle) != 1)
{
error (_("%s: Failed to read file's magic number\n"), file_name);
fclose (filedata->handle);
free (filedata);
return false;
}
filedata->file_size = statbuf.st_size;
filedata->is_separate = false;
if (memcmp (armag, ARMAG, SARMAG) == 0)
{
if (! process_archive (filedata, false))
ret = false;
}
else if (memcmp (armag, ARMAGT, SARMAG) == 0)
{
if ( ! process_archive (filedata, true))
ret = false;
}
else
{
if (do_archive_index && !check_all)
error (_("File %s is not an archive so its index cannot be displayed.\n"),
file_name);
rewind (filedata->handle);
filedata->archive_file_size = filedata->archive_file_offset = 0;
if (! process_object (filedata))
ret = false;
}
close_debug_file (filedata);
free (ba_cache.strtab);
ba_cache.strtab = NULL;
free (ba_cache.symtab);
ba_cache.symtab = NULL;
ba_cache.filedata = NULL;
return ret;
}
#ifdef SUPPORT_DISASSEMBLY
/* Needed by the i386 disassembler. For extra credit, someone could
fix this so that we insert symbolic addresses here, esp for GOT/PLT
symbols. */
void
print_address (unsigned int addr, FILE * outfile)
{
fprintf (outfile,"0x%8.8x", addr);
}
/* Needed by the i386 disassembler. */
void
db_task_printsym (unsigned int addr)
{
print_address (addr, stderr);
}
#endif
int
main (int argc, char ** argv)
{
int err;
#ifdef HAVE_LC_MESSAGES
setlocale (LC_MESSAGES, "");
#endif
setlocale (LC_CTYPE, "");
bindtextdomain (PACKAGE, LOCALEDIR);
textdomain (PACKAGE);
expandargv (&argc, &argv);
parse_args (& cmdline, argc, argv);
if (optind < (argc - 1))
/* When displaying information for more than one file,
prefix the information with the file name. */
show_name = true;
else if (optind >= argc)
{
/* Ensure that the warning is always displayed. */
do_checks = true;
warn (_("Nothing to do.\n"));
usage (stderr);
}
err = false;
while (optind < argc)
if (! process_file (argv[optind++]))
err = true;
free (cmdline.dump_sects);
free (dump_ctf_symtab_name);
free (dump_ctf_strtab_name);
free (dump_ctf_parent_name);
return err ? EXIT_FAILURE : EXIT_SUCCESS;
}
|