1 /* Encoding of types for Objective C. 2 Copyright (C) 1993-2018 Free Software Foundation, Inc. 3 Contributed by Kresten Krab Thorup 4 Bitfield support by Ovidiu Predescu 5 6 This file is part of GCC. 7 8 GCC is free software; you can redistribute it and/or modify 9 it under the terms of the GNU General Public License as published by 10 the Free Software Foundation; either version 3, or (at your option) 11 any later version. 12 13 GCC is distributed in the hope that it will be useful, 14 but WITHOUT ANY WARRANTY; without even the implied warranty of 15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 16 GNU General Public License for more details. 17 18 Under Section 7 of GPL version 3, you are granted additional 19 permissions described in the GCC Runtime Library Exception, version 20 3.1, as published by the Free Software Foundation. 21 22 You should have received a copy of the GNU General Public License and 23 a copy of the GCC Runtime Library Exception along with this program; 24 see the files COPYING3 and COPYING.RUNTIME respectively. If not, see 25 <http://www.gnu.org/licenses/>. */ 26 27 /* FIXME: This file has no business including tm.h. */ 28 29 /* FIXME: This file contains functions that will abort the entire 30 program if they fail. Is that really needed ? */ 31 32 #include "config.h" 33 #include "objc-private/common.h" 34 #include "objc-private/error.h" 35 #include "tconfig.h" 36 #include "coretypes.h" 37 #include "tm.h" 38 #include "objc/runtime.h" 39 #include "objc-private/module-abi-8.h" /* For struct objc_method */ 40 #include <stdlib.h> 41 #include <ctype.h> 42 #include <string.h> /* For memcpy. */ 43 44 #undef MAX 45 #define MAX(X, Y) \ 46 ({ typeof (X) __x = (X), __y = (Y); \ 47 (__x > __y ? __x : __y); }) 48 49 #undef MIN 50 #define MIN(X, Y) \ 51 ({ typeof (X) __x = (X), __y = (Y); \ 52 (__x < __y ? __x : __y); }) 53 54 #undef ROUND 55 #define ROUND(V, A) \ 56 ({ typeof (V) __v = (V); typeof (A) __a = (A); \ 57 __a * ((__v+__a - 1)/__a); }) 58 59 60 /* Various hacks for objc_layout_record. These are used by the target 61 macros. */ 62 63 #define TREE_CODE(TYPE) *(TYPE) 64 #define TREE_TYPE(TREE) (TREE) 65 66 #define RECORD_TYPE _C_STRUCT_B 67 #define UNION_TYPE _C_UNION_B 68 #define QUAL_UNION_TYPE _C_UNION_B 69 #define ARRAY_TYPE _C_ARY_B 70 71 #define REAL_TYPE _C_DBL 72 73 #define VECTOR_TYPE _C_VECTOR 74 75 #define TYPE_FIELDS(TYPE) ({const char *_field = (TYPE)+1; \ 76 while (*_field != _C_STRUCT_E && *_field != _C_STRUCT_B \ 77 && *_field != _C_UNION_B && *_field++ != '=') \ 78 /* do nothing */; \ 79 _field;}) 80 81 #define DECL_MODE(TYPE) *(TYPE) 82 #define TYPE_MODE(TYPE) *(TYPE) 83 84 #undef DFmode 85 #define DFmode _C_DBL 86 87 #define strip_array_types(TYPE) ({const char *_field = (TYPE); \ 88 while (*_field == _C_ARY_B)\ 89 {\ 90 while (isdigit ((unsigned char)*++_field))\ 91 ;\ 92 }\ 93 _field;}) 94 95 /* Some ports (eg ARM) allow the structure size boundary to be 96 selected at compile-time. We override the normal definition with 97 one that has a constant value for this compilation. */ 98 #undef STRUCTURE_SIZE_BOUNDARY 99 #define STRUCTURE_SIZE_BOUNDARY (__CHAR_BIT__ * sizeof (struct{char a;})) 100 101 /* Some ROUND_TYPE_ALIGN macros use TARGET_foo, and consequently 102 target_flags. Define a dummy entry here to so we don't die. 103 We have to rename it because target_flags may already have been 104 declared extern. */ 105 #define target_flags not_target_flags 106 static int __attribute__ ((__unused__)) not_target_flags = 0; 107 108 /* Some ROUND_TYPE_ALIGN use ALTIVEC_VECTOR_MODE (rs6000 darwin). 109 Define a dummy ALTIVEC_VECTOR_MODE so it will not die. */ 110 #undef ALTIVEC_VECTOR_MODE 111 #define ALTIVEC_VECTOR_MODE(MODE) (0) 112 113 /* Replace TARGET_VSX, TARGET_ALTIVEC, and TARGET_64BIT with constants based on 114 the current switches, rather than looking in the options structure. */ 115 #ifdef _ARCH_PPC 116 #undef TARGET_VSX 117 #undef TARGET_ALTIVEC 118 #undef TARGET_64BIT 119 120 #ifdef __VSX__ 121 #define TARGET_VSX 1 122 #else 123 #define TARGET_VSX 0 124 #endif 125 126 #ifdef __ALTIVEC__ 127 #define TARGET_ALTIVEC 1 128 #else 129 #define TARGET_ALTIVEC 0 130 #endif 131 132 #ifdef _ARCH_PPC64 133 #define TARGET_64BIT 1 134 #else 135 #define TARGET_64BIT 0 136 #endif 137 #endif 138 139 /* Furthermore, some (powerpc) targets also use TARGET_ALIGN_NATURAL 140 in their alignment macros. Currently[4.5/6], rs6000.h points this 141 to a static variable, initialized by target overrides. This is reset 142 in linux64.h but not in darwin64.h. The macro is not used by *86*. */ 143 144 #if __MACH__ 145 # if __LP64__ 146 # undef TARGET_ALIGN_NATURAL 147 # define TARGET_ALIGN_NATURAL 1 148 # endif 149 150 /* On Darwin32, we need to recurse until we find the starting stuct type. */ 151 static int 152 _darwin_rs6000_special_round_type_align (const char *struc, int comp, int spec) 153 { 154 const char *_stp , *_fields = TYPE_FIELDS (struc); 155 if (!_fields) 156 return MAX (comp, spec); 157 _stp = strip_array_types (_fields); 158 if (TYPE_MODE(_stp) == _C_COMPLEX) 159 _stp++; 160 switch (TYPE_MODE(_stp)) 161 { 162 case RECORD_TYPE: 163 case UNION_TYPE: 164 return MAX (MAX (comp, spec), objc_alignof_type (_stp) * __CHAR_BIT__); 165 break; 166 case E_DFmode: 167 case _C_LNG_LNG: 168 case _C_ULNG_LNG: 169 return MAX (MAX (comp, spec), 64); 170 break; 171 172 default: 173 return MAX (comp, spec); 174 break; 175 } 176 } 177 178 /* See comment below. */ 179 #define darwin_rs6000_special_round_type_align(S,C,S2) \ 180 (_darwin_rs6000_special_round_type_align ((char*)(S), (int)(C), (int)(S2))) 181 #endif 182 183 /* FIXME: while this file has no business including tm.h, this 184 definitely has no business defining this macro but it 185 is only way around without really rewritting this file, 186 should look after the branch of 3.4 to fix this. */ 187 #define rs6000_special_round_type_align(STRUCT, COMPUTED, SPECIFIED) \ 188 ({ const char *_fields = TYPE_FIELDS (STRUCT); \ 189 ((_fields != 0 \ 190 && TYPE_MODE (strip_array_types (TREE_TYPE (_fields))) == DFmode) \ 191 ? MAX (MAX (COMPUTED, SPECIFIED), 64) \ 192 : MAX (COMPUTED, SPECIFIED));}) 193 194 #define rs6000_special_adjust_field_align_p(FIELD, COMPUTED) 0 195 196 /* Skip a variable name, enclosed in quotes ("). */ 197 static inline 198 const char * 199 objc_skip_variable_name (const char *type) 200 { 201 /* Skip the variable name if any. */ 202 if (*type == '"') 203 { 204 /* FIXME: How do we know we won't read beyond the end of the 205 string. Here and in the rest of the file! */ 206 /* Skip '"'. */ 207 type++; 208 /* Skip to the next '"'. */ 209 while (*type != '"') 210 type++; 211 /* Skip '"'. */ 212 type++; 213 } 214 215 return type; 216 } 217 218 int 219 objc_sizeof_type (const char *type) 220 { 221 type = objc_skip_variable_name (type); 222 223 switch (*type) { 224 case _C_BOOL: 225 return sizeof (_Bool); 226 break; 227 228 case _C_ID: 229 return sizeof (id); 230 break; 231 232 case _C_CLASS: 233 return sizeof (Class); 234 break; 235 236 case _C_SEL: 237 return sizeof (SEL); 238 break; 239 240 case _C_CHR: 241 return sizeof (char); 242 break; 243 244 case _C_UCHR: 245 return sizeof (unsigned char); 246 break; 247 248 case _C_SHT: 249 return sizeof (short); 250 break; 251 252 case _C_USHT: 253 return sizeof (unsigned short); 254 break; 255 256 case _C_INT: 257 return sizeof (int); 258 break; 259 260 case _C_UINT: 261 return sizeof (unsigned int); 262 break; 263 264 case _C_LNG: 265 return sizeof (long); 266 break; 267 268 case _C_ULNG: 269 return sizeof (unsigned long); 270 break; 271 272 case _C_LNG_LNG: 273 return sizeof (long long); 274 break; 275 276 case _C_ULNG_LNG: 277 return sizeof (unsigned long long); 278 break; 279 280 case _C_FLT: 281 return sizeof (float); 282 break; 283 284 case _C_DBL: 285 return sizeof (double); 286 break; 287 288 case _C_LNG_DBL: 289 return sizeof (long double); 290 break; 291 292 case _C_VOID: 293 return sizeof (void); 294 break; 295 296 case _C_PTR: 297 case _C_ATOM: 298 case _C_CHARPTR: 299 return sizeof (char *); 300 break; 301 302 case _C_ARY_B: 303 { 304 int len = atoi (type + 1); 305 while (isdigit ((unsigned char)*++type)) 306 ; 307 return len * objc_aligned_size (type); 308 } 309 break; 310 311 case _C_VECTOR: 312 { 313 /* Skip the '!'. */ 314 type++; 315 /* Skip the '['. */ 316 type++; 317 318 /* The size in bytes is the following number. */ 319 int size = atoi (type); 320 return size; 321 } 322 break; 323 324 case _C_BFLD: 325 { 326 /* The GNU encoding of bitfields is: b 'position' 'type' 327 'size'. */ 328 int position, size; 329 int startByte, endByte; 330 331 position = atoi (type + 1); 332 while (isdigit ((unsigned char)*++type)) 333 ; 334 size = atoi (type + 1); 335 336 startByte = position / __CHAR_BIT__; 337 endByte = (position + size) / __CHAR_BIT__; 338 return endByte - startByte; 339 } 340 341 case _C_UNION_B: 342 case _C_STRUCT_B: 343 { 344 struct objc_struct_layout layout; 345 unsigned int size; 346 347 objc_layout_structure (type, &layout); 348 while (objc_layout_structure_next_member (&layout)) 349 /* do nothing */ ; 350 objc_layout_finish_structure (&layout, &size, NULL); 351 352 return size; 353 } 354 355 case _C_COMPLEX: 356 { 357 type++; /* Skip after the 'j'. */ 358 switch (*type) 359 { 360 case _C_CHR: 361 return sizeof (_Complex char); 362 break; 363 364 case _C_UCHR: 365 return sizeof (_Complex unsigned char); 366 break; 367 368 case _C_SHT: 369 return sizeof (_Complex short); 370 break; 371 372 case _C_USHT: 373 return sizeof (_Complex unsigned short); 374 break; 375 376 case _C_INT: 377 return sizeof (_Complex int); 378 break; 379 380 case _C_UINT: 381 return sizeof (_Complex unsigned int); 382 break; 383 384 case _C_LNG: 385 return sizeof (_Complex long); 386 break; 387 388 case _C_ULNG: 389 return sizeof (_Complex unsigned long); 390 break; 391 392 case _C_LNG_LNG: 393 return sizeof (_Complex long long); 394 break; 395 396 case _C_ULNG_LNG: 397 return sizeof (_Complex unsigned long long); 398 break; 399 400 case _C_FLT: 401 return sizeof (_Complex float); 402 break; 403 404 case _C_DBL: 405 return sizeof (_Complex double); 406 break; 407 408 case _C_LNG_DBL: 409 return sizeof (_Complex long double); 410 break; 411 412 default: 413 { 414 /* FIXME: Is this so bad that we have to abort the 415 entire program ? (it applies to all the other 416 _objc_abort calls in this file). 417 */ 418 _objc_abort ("unknown complex type %s\n", type); 419 return 0; 420 } 421 } 422 } 423 424 default: 425 { 426 _objc_abort ("unknown type %s\n", type); 427 return 0; 428 } 429 } 430 } 431 432 int 433 objc_alignof_type (const char *type) 434 { 435 type = objc_skip_variable_name (type); 436 437 switch (*type) { 438 case _C_BOOL: 439 return __alignof__ (_Bool); 440 break; 441 442 case _C_ID: 443 return __alignof__ (id); 444 break; 445 446 case _C_CLASS: 447 return __alignof__ (Class); 448 break; 449 450 case _C_SEL: 451 return __alignof__ (SEL); 452 break; 453 454 case _C_CHR: 455 return __alignof__ (char); 456 break; 457 458 case _C_UCHR: 459 return __alignof__ (unsigned char); 460 break; 461 462 case _C_SHT: 463 return __alignof__ (short); 464 break; 465 466 case _C_USHT: 467 return __alignof__ (unsigned short); 468 break; 469 470 case _C_INT: 471 return __alignof__ (int); 472 break; 473 474 case _C_UINT: 475 return __alignof__ (unsigned int); 476 break; 477 478 case _C_LNG: 479 return __alignof__ (long); 480 break; 481 482 case _C_ULNG: 483 return __alignof__ (unsigned long); 484 break; 485 486 case _C_LNG_LNG: 487 return __alignof__ (long long); 488 break; 489 490 case _C_ULNG_LNG: 491 return __alignof__ (unsigned long long); 492 break; 493 494 case _C_FLT: 495 return __alignof__ (float); 496 break; 497 498 case _C_DBL: 499 return __alignof__ (double); 500 break; 501 502 case _C_LNG_DBL: 503 return __alignof__ (long double); 504 break; 505 506 case _C_PTR: 507 case _C_ATOM: 508 case _C_CHARPTR: 509 return __alignof__ (char *); 510 break; 511 512 case _C_ARY_B: 513 while (isdigit ((unsigned char)*++type)) 514 /* do nothing */; 515 return objc_alignof_type (type); 516 517 case _C_VECTOR: 518 { 519 /* Skip the '!'. */ 520 type++; 521 /* Skip the '['. */ 522 type++; 523 524 /* Skip the size. */ 525 while (isdigit ((unsigned char)*type)) 526 type++; 527 528 /* Skip the ','. */ 529 type++; 530 531 /* The alignment in bytes is the following number. */ 532 return atoi (type); 533 } 534 case _C_STRUCT_B: 535 case _C_UNION_B: 536 { 537 struct objc_struct_layout layout; 538 unsigned int align; 539 540 objc_layout_structure (type, &layout); 541 while (objc_layout_structure_next_member (&layout)) 542 /* do nothing */; 543 objc_layout_finish_structure (&layout, NULL, &align); 544 545 return align; 546 } 547 548 549 case _C_COMPLEX: 550 { 551 type++; /* Skip after the 'j'. */ 552 switch (*type) 553 { 554 case _C_CHR: 555 return __alignof__ (_Complex char); 556 break; 557 558 case _C_UCHR: 559 return __alignof__ (_Complex unsigned char); 560 break; 561 562 case _C_SHT: 563 return __alignof__ (_Complex short); 564 break; 565 566 case _C_USHT: 567 return __alignof__ (_Complex unsigned short); 568 break; 569 570 case _C_INT: 571 return __alignof__ (_Complex int); 572 break; 573 574 case _C_UINT: 575 return __alignof__ (_Complex unsigned int); 576 break; 577 578 case _C_LNG: 579 return __alignof__ (_Complex long); 580 break; 581 582 case _C_ULNG: 583 return __alignof__ (_Complex unsigned long); 584 break; 585 586 case _C_LNG_LNG: 587 return __alignof__ (_Complex long long); 588 break; 589 590 case _C_ULNG_LNG: 591 return __alignof__ (_Complex unsigned long long); 592 break; 593 594 case _C_FLT: 595 return __alignof__ (_Complex float); 596 break; 597 598 case _C_DBL: 599 return __alignof__ (_Complex double); 600 break; 601 602 case _C_LNG_DBL: 603 return __alignof__ (_Complex long double); 604 break; 605 606 default: 607 { 608 _objc_abort ("unknown complex type %s\n", type); 609 return 0; 610 } 611 } 612 } 613 614 default: 615 { 616 _objc_abort ("unknown type %s\n", type); 617 return 0; 618 } 619 } 620 } 621 622 int 623 objc_aligned_size (const char *type) 624 { 625 int size, align; 626 627 type = objc_skip_variable_name (type); 628 size = objc_sizeof_type (type); 629 align = objc_alignof_type (type); 630 631 return ROUND (size, align); 632 } 633 634 int 635 objc_promoted_size (const char *type) 636 { 637 int size, wordsize; 638 639 type = objc_skip_variable_name (type); 640 size = objc_sizeof_type (type); 641 wordsize = sizeof (void *); 642 643 return ROUND (size, wordsize); 644 } 645 646 /* 647 Skip type qualifiers. These may eventually precede typespecs 648 occurring in method prototype encodings. 649 */ 650 651 const char * 652 objc_skip_type_qualifiers (const char *type) 653 { 654 while (*type == _C_CONST 655 || *type == _C_IN 656 || *type == _C_INOUT 657 || *type == _C_OUT 658 || *type == _C_BYCOPY 659 || *type == _C_BYREF 660 || *type == _C_ONEWAY 661 || *type == _C_GCINVISIBLE) 662 { 663 type += 1; 664 } 665 return type; 666 } 667 668 const char * 669 objc_skip_typespec (const char *type) 670 { 671 type = objc_skip_variable_name (type); 672 type = objc_skip_type_qualifiers (type); 673 674 switch (*type) { 675 676 case _C_ID: 677 /* An id may be annotated by the actual type if it is known 678 with the @"ClassName" syntax */ 679 680 if (*++type != '"') 681 return type; 682 else 683 { 684 while (*++type != '"') 685 /* do nothing */; 686 return type + 1; 687 } 688 689 /* The following are one character type codes */ 690 case _C_CLASS: 691 case _C_SEL: 692 case _C_CHR: 693 case _C_UCHR: 694 case _C_CHARPTR: 695 case _C_ATOM: 696 case _C_SHT: 697 case _C_USHT: 698 case _C_INT: 699 case _C_UINT: 700 case _C_LNG: 701 case _C_BOOL: 702 case _C_ULNG: 703 case _C_LNG_LNG: 704 case _C_ULNG_LNG: 705 case _C_FLT: 706 case _C_DBL: 707 case _C_LNG_DBL: 708 case _C_VOID: 709 case _C_UNDEF: 710 return ++type; 711 break; 712 713 case _C_COMPLEX: 714 return type + 2; 715 break; 716 717 case _C_ARY_B: 718 /* skip digits, typespec and closing ']' */ 719 while (isdigit ((unsigned char)*++type)) 720 ; 721 type = objc_skip_typespec (type); 722 if (*type == _C_ARY_E) 723 return ++type; 724 else 725 { 726 _objc_abort ("bad array type %s\n", type); 727 return 0; 728 } 729 730 case _C_VECTOR: 731 /* Skip '!' */ 732 type++; 733 /* Skip '[' */ 734 type++; 735 /* Skip digits (size) */ 736 while (isdigit ((unsigned char)*type)) 737 type++; 738 /* Skip ',' */ 739 type++; 740 /* Skip digits (alignment) */ 741 while (isdigit ((unsigned char)*type)) 742 type++; 743 /* Skip typespec. */ 744 type = objc_skip_typespec (type); 745 /* Skip closing ']'. */ 746 if (*type == _C_ARY_E) 747 return ++type; 748 else 749 { 750 _objc_abort ("bad vector type %s\n", type); 751 return 0; 752 } 753 754 case _C_BFLD: 755 /* The GNU encoding of bitfields is: b 'position' 'type' 756 'size'. */ 757 while (isdigit ((unsigned char)*++type)) 758 ; /* skip position */ 759 while (isdigit ((unsigned char)*++type)) 760 ; /* skip type and size */ 761 return type; 762 763 case _C_STRUCT_B: 764 /* skip name, and elements until closing '}' */ 765 766 while (*type != _C_STRUCT_E && *type++ != '=') 767 ; 768 while (*type != _C_STRUCT_E) 769 { 770 type = objc_skip_typespec (type); 771 } 772 return ++type; 773 774 case _C_UNION_B: 775 /* skip name, and elements until closing ')' */ 776 777 while (*type != _C_UNION_E && *type++ != '=') 778 ; 779 while (*type != _C_UNION_E) 780 { 781 type = objc_skip_typespec (type); 782 } 783 return ++type; 784 785 case _C_PTR: 786 /* Just skip the following typespec */ 787 788 return objc_skip_typespec (++type); 789 790 default: 791 { 792 _objc_abort ("unknown type %s\n", type); 793 return 0; 794 } 795 } 796 } 797 798 /* 799 Skip an offset as part of a method encoding. This is prepended by a 800 '+' if the argument is passed in registers. 801 */ 802 const char * 803 objc_skip_offset (const char *type) 804 { 805 /* The offset is prepended by a '+' if the argument is passed in 806 registers. PS: The compiler stopped generating this '+' in 807 version 3.4. */ 808 if (*type == '+') 809 type++; 810 811 /* Some people claim that on some platforms, where the stack grows 812 backwards, the compiler generates negative offsets (??). Skip a 813 '-' for such a negative offset. */ 814 if (*type == '-') 815 type++; 816 817 /* Skip the digits that represent the offset. */ 818 while (isdigit ((unsigned char) *type)) 819 type++; 820 821 return type; 822 } 823 824 const char * 825 objc_skip_argspec (const char *type) 826 { 827 type = objc_skip_typespec (type); 828 type = objc_skip_offset (type); 829 return type; 830 } 831 832 char * 833 method_copyReturnType (struct objc_method *method) 834 { 835 if (method == NULL) 836 return 0; 837 else 838 { 839 char *returnValue; 840 size_t returnValueSize; 841 842 /* Determine returnValueSize. */ 843 { 844 /* Find the end of the first argument. We want to return the 845 first argument spec, plus 1 byte for the \0 at the end. */ 846 const char *type = method->method_types; 847 if (*type == '\0') 848 return NULL; 849 type = objc_skip_argspec (type); 850 returnValueSize = type - method->method_types + 1; 851 } 852 853 /* Copy the first argument into returnValue. */ 854 returnValue = malloc (sizeof (char) * returnValueSize); 855 memcpy (returnValue, method->method_types, returnValueSize); 856 returnValue[returnValueSize - 1] = '\0'; 857 858 return returnValue; 859 } 860 } 861 862 char * 863 method_copyArgumentType (struct objc_method * method, unsigned int argumentNumber) 864 { 865 if (method == NULL) 866 return 0; 867 else 868 { 869 char *returnValue; 870 const char *returnValueStart; 871 size_t returnValueSize; 872 873 /* Determine returnValueStart and returnValueSize. */ 874 { 875 const char *type = method->method_types; 876 877 /* Skip the first argument (return type). */ 878 type = objc_skip_argspec (type); 879 880 /* Now keep skipping arguments until we get to 881 argumentNumber. */ 882 while (argumentNumber > 0) 883 { 884 /* We are supposed to skip an argument, but the string is 885 finished. This means we were asked for a non-existing 886 argument. */ 887 if (*type == '\0') 888 return NULL; 889 890 type = objc_skip_argspec (type); 891 argumentNumber--; 892 } 893 894 /* If the argument does not exist, return NULL. */ 895 if (*type == '\0') 896 return NULL; 897 898 returnValueStart = type; 899 type = objc_skip_argspec (type); 900 returnValueSize = type - returnValueStart + 1; 901 } 902 903 /* Copy the argument into returnValue. */ 904 returnValue = malloc (sizeof (char) * returnValueSize); 905 memcpy (returnValue, returnValueStart, returnValueSize); 906 returnValue[returnValueSize - 1] = '\0'; 907 908 return returnValue; 909 } 910 } 911 912 void method_getReturnType (struct objc_method * method, char *returnValue, 913 size_t returnValueSize) 914 { 915 if (returnValue == NULL || returnValueSize == 0) 916 return; 917 918 /* Zero the string; we'll then write the argument type at the 919 beginning of it, if needed. */ 920 memset (returnValue, 0, returnValueSize); 921 922 if (method == NULL) 923 return; 924 else 925 { 926 size_t argumentTypeSize; 927 928 /* Determine argumentTypeSize. */ 929 { 930 /* Find the end of the first argument. We want to return the 931 first argument spec. */ 932 const char *type = method->method_types; 933 if (*type == '\0') 934 return; 935 type = objc_skip_argspec (type); 936 argumentTypeSize = type - method->method_types; 937 if (argumentTypeSize > returnValueSize) 938 argumentTypeSize = returnValueSize; 939 } 940 /* Copy the argument at the beginning of the string. */ 941 memcpy (returnValue, method->method_types, argumentTypeSize); 942 } 943 } 944 945 void method_getArgumentType (struct objc_method * method, unsigned int argumentNumber, 946 char *returnValue, size_t returnValueSize) 947 { 948 if (returnValue == NULL || returnValueSize == 0) 949 return; 950 951 /* Zero the string; we'll then write the argument type at the 952 beginning of it, if needed. */ 953 memset (returnValue, 0, returnValueSize); 954 955 if (method == NULL) 956 return; 957 else 958 { 959 const char *returnValueStart; 960 size_t argumentTypeSize; 961 962 /* Determine returnValueStart and argumentTypeSize. */ 963 { 964 const char *type = method->method_types; 965 966 /* Skip the first argument (return type). */ 967 type = objc_skip_argspec (type); 968 969 /* Now keep skipping arguments until we get to 970 argumentNumber. */ 971 while (argumentNumber > 0) 972 { 973 /* We are supposed to skip an argument, but the string is 974 finished. This means we were asked for a non-existing 975 argument. */ 976 if (*type == '\0') 977 return; 978 979 type = objc_skip_argspec (type); 980 argumentNumber--; 981 } 982 983 /* If the argument does not exist, it's game over. */ 984 if (*type == '\0') 985 return; 986 987 returnValueStart = type; 988 type = objc_skip_argspec (type); 989 argumentTypeSize = type - returnValueStart; 990 if (argumentTypeSize > returnValueSize) 991 argumentTypeSize = returnValueSize; 992 } 993 /* Copy the argument at the beginning of the string. */ 994 memcpy (returnValue, returnValueStart, argumentTypeSize); 995 } 996 } 997 998 unsigned int 999 method_getNumberOfArguments (struct objc_method *method) 1000 { 1001 if (method == NULL) 1002 return 0; 1003 else 1004 { 1005 unsigned int i = 0; 1006 const char *type = method->method_types; 1007 while (*type) 1008 { 1009 type = objc_skip_argspec (type); 1010 i += 1; 1011 } 1012 1013 if (i == 0) 1014 { 1015 /* This could only happen if method_types is invalid; in 1016 that case, return 0. */ 1017 return 0; 1018 } 1019 else 1020 { 1021 /* Remove the return type. */ 1022 return (i - 1); 1023 } 1024 } 1025 } 1026 1027 unsigned 1028 objc_get_type_qualifiers (const char *type) 1029 { 1030 unsigned res = 0; 1031 BOOL flag = YES; 1032 1033 while (flag) 1034 switch (*type++) 1035 { 1036 case _C_CONST: res |= _F_CONST; break; 1037 case _C_IN: res |= _F_IN; break; 1038 case _C_INOUT: res |= _F_INOUT; break; 1039 case _C_OUT: res |= _F_OUT; break; 1040 case _C_BYCOPY: res |= _F_BYCOPY; break; 1041 case _C_BYREF: res |= _F_BYREF; break; 1042 case _C_ONEWAY: res |= _F_ONEWAY; break; 1043 case _C_GCINVISIBLE: res |= _F_GCINVISIBLE; break; 1044 default: flag = NO; 1045 } 1046 1047 return res; 1048 } 1049 1050 /* The following three functions can be used to determine how a 1051 structure is laid out by the compiler. For example: 1052 1053 struct objc_struct_layout layout; 1054 int i; 1055 1056 objc_layout_structure (type, &layout); 1057 while (objc_layout_structure_next_member (&layout)) 1058 { 1059 int position, align; 1060 const char *type; 1061 1062 objc_layout_structure_get_info (&layout, &position, &align, &type); 1063 printf ("element %d has offset %d, alignment %d\n", 1064 i++, position, align); 1065 } 1066 1067 These functions are used by objc_sizeof_type and objc_alignof_type 1068 functions to compute the size and alignment of structures. The 1069 previous method of computing the size and alignment of a structure 1070 was not working on some architectures, particularly on AIX, and in 1071 the presence of bitfields inside the structure. */ 1072 void 1073 objc_layout_structure (const char *type, 1074 struct objc_struct_layout *layout) 1075 { 1076 const char *ntype; 1077 1078 if (*type != _C_UNION_B && *type != _C_STRUCT_B) 1079 { 1080 _objc_abort ("record (or union) type expected in objc_layout_structure, got %s\n", 1081 type); 1082 } 1083 1084 type ++; 1085 layout->original_type = type; 1086 1087 /* Skip "<name>=" if any. Avoid embedded structures and unions. */ 1088 ntype = type; 1089 while (*ntype != _C_STRUCT_E && *ntype != _C_STRUCT_B && *ntype != _C_UNION_B 1090 && *ntype++ != '=') 1091 /* do nothing */; 1092 1093 /* If there's a "<name>=", ntype - 1 points to '='; skip the the name */ 1094 if (*(ntype - 1) == '=') 1095 type = ntype; 1096 1097 layout->type = type; 1098 layout->prev_type = NULL; 1099 layout->record_size = 0; 1100 layout->record_align = __CHAR_BIT__; 1101 1102 layout->record_align = MAX (layout->record_align, STRUCTURE_SIZE_BOUNDARY); 1103 } 1104 1105 BOOL 1106 objc_layout_structure_next_member (struct objc_struct_layout *layout) 1107 { 1108 register int desired_align = 0; 1109 1110 /* The following are used only if the field is a bitfield */ 1111 register const char *bfld_type = 0; 1112 #ifdef HAVE_BITFIELD_TYPE_MATTERS 1113 register int bfld_type_align = 0; 1114 #endif 1115 register int bfld_field_size = 0; 1116 1117 /* The current type without the type qualifiers */ 1118 const char *type; 1119 BOOL unionp = layout->original_type[-1] == _C_UNION_B; 1120 1121 /* Add the size of the previous field to the size of the record. */ 1122 if (layout->prev_type) 1123 { 1124 type = objc_skip_type_qualifiers (layout->prev_type); 1125 if (unionp) 1126 layout->record_size = MAX (layout->record_size, 1127 objc_sizeof_type (type) * __CHAR_BIT__); 1128 1129 else if (*type != _C_BFLD) 1130 layout->record_size += objc_sizeof_type (type) * __CHAR_BIT__; 1131 else { 1132 /* Get the bitfield's type */ 1133 for (bfld_type = type + 1; 1134 isdigit ((unsigned char)*bfld_type); 1135 bfld_type++) 1136 /* do nothing */; 1137 1138 #ifdef HAVE_BITFIELD_TYPE_MATTERS 1139 bfld_type_align = objc_alignof_type (bfld_type) * __CHAR_BIT__; 1140 #endif 1141 bfld_field_size = atoi (objc_skip_typespec (bfld_type)); 1142 layout->record_size += bfld_field_size; 1143 } 1144 } 1145 1146 if ((unionp && *layout->type == _C_UNION_E) 1147 || (!unionp && *layout->type == _C_STRUCT_E)) 1148 return NO; 1149 1150 /* Skip the variable name if any */ 1151 layout->type = objc_skip_variable_name (layout->type); 1152 type = objc_skip_type_qualifiers (layout->type); 1153 1154 if (*type != _C_BFLD) 1155 desired_align = objc_alignof_type (type) * __CHAR_BIT__; 1156 else 1157 { 1158 desired_align = 1; 1159 /* Skip the bitfield's offset */ 1160 for (bfld_type = type + 1; 1161 isdigit ((unsigned char) *bfld_type); 1162 bfld_type++) 1163 /* do nothing */; 1164 1165 #ifdef HAVE_BITFIELD_TYPE_MATTERS 1166 bfld_type_align = objc_alignof_type (bfld_type) * __CHAR_BIT__; 1167 #endif 1168 bfld_field_size = atoi (objc_skip_typespec (bfld_type)); 1169 } 1170 1171 /* The following won't work for vectors. */ 1172 #ifdef BIGGEST_FIELD_ALIGNMENT 1173 desired_align = MIN (desired_align, BIGGEST_FIELD_ALIGNMENT); 1174 #endif 1175 #ifdef ADJUST_FIELD_ALIGN 1176 desired_align = ADJUST_FIELD_ALIGN (type, type, desired_align); 1177 #endif 1178 1179 /* Record must have at least as much alignment as any field. 1180 Otherwise, the alignment of the field within the record 1181 is meaningless. */ 1182 #ifndef HAVE_BITFIELD_TYPE_MATTERS 1183 layout->record_align = MAX (layout->record_align, desired_align); 1184 #else /* PCC_BITFIELD_TYPE_MATTERS */ 1185 if (*type == _C_BFLD) 1186 { 1187 /* For these machines, a zero-length field does not 1188 affect the alignment of the structure as a whole. 1189 It does, however, affect the alignment of the next field 1190 within the structure. */ 1191 if (bfld_field_size) 1192 layout->record_align = MAX (layout->record_align, desired_align); 1193 else 1194 desired_align = objc_alignof_type (bfld_type) * __CHAR_BIT__; 1195 1196 /* A named bit field of declared type `int' 1197 forces the entire structure to have `int' alignment. 1198 Q1: How is encoded this thing and how to check for it? 1199 Q2: How to determine maximum_field_alignment at runtime? */ 1200 1201 /* if (DECL_NAME (field) != 0) */ 1202 { 1203 int type_align = bfld_type_align; 1204 #if 0 1205 if (maximum_field_alignment != 0) 1206 type_align = MIN (type_align, maximum_field_alignment); 1207 else if (DECL_PACKED (field)) 1208 type_align = MIN (type_align, __CHAR_BIT__); 1209 #endif 1210 1211 layout->record_align = MAX (layout->record_align, type_align); 1212 } 1213 } 1214 else 1215 layout->record_align = MAX (layout->record_align, desired_align); 1216 #endif /* PCC_BITFIELD_TYPE_MATTERS */ 1217 1218 /* Does this field automatically have alignment it needs 1219 by virtue of the fields that precede it and the record's 1220 own alignment? */ 1221 1222 if (*type == _C_BFLD) 1223 layout->record_size = atoi (type + 1); 1224 else if (layout->record_size % desired_align != 0) 1225 { 1226 /* No, we need to skip space before this field. 1227 Bump the cumulative size to multiple of field alignment. */ 1228 layout->record_size = ROUND (layout->record_size, desired_align); 1229 } 1230 1231 /* Jump to the next field in record. */ 1232 1233 layout->prev_type = layout->type; 1234 layout->type = objc_skip_typespec (layout->type); /* skip component */ 1235 1236 return YES; 1237 } 1238 1239 void objc_layout_finish_structure (struct objc_struct_layout *layout, 1240 unsigned int *size, 1241 unsigned int *align) 1242 { 1243 BOOL unionp = layout->original_type[-1] == _C_UNION_B; 1244 if (layout->type 1245 && ((!unionp && *layout->type == _C_STRUCT_E) 1246 || (unionp && *layout->type == _C_UNION_E))) 1247 { 1248 /* Work out the alignment of the record as one expression and store 1249 in the record type. Round it up to a multiple of the record's 1250 alignment. */ 1251 #if defined (ROUND_TYPE_ALIGN) && ! defined (__sparc__) 1252 layout->record_align = ROUND_TYPE_ALIGN (layout->original_type-1, 1253 1, 1254 layout->record_align); 1255 #else 1256 layout->record_align = MAX (1, layout->record_align); 1257 #endif 1258 1259 /* Round the size up to be a multiple of the required alignment */ 1260 layout->record_size = ROUND (layout->record_size, layout->record_align); 1261 1262 layout->type = NULL; 1263 } 1264 if (size) 1265 *size = layout->record_size / __CHAR_BIT__; 1266 if (align) 1267 *align = layout->record_align / __CHAR_BIT__; 1268 } 1269 1270 void objc_layout_structure_get_info (struct objc_struct_layout *layout, 1271 unsigned int *offset, 1272 unsigned int *align, 1273 const char **type) 1274 { 1275 if (offset) 1276 *offset = layout->record_size / __CHAR_BIT__; 1277 if (align) 1278 *align = layout->record_align / __CHAR_BIT__; 1279 if (type) 1280 *type = layout->prev_type; 1281 } 1282