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hppa_reloc.c revision 1.46
      1 /*	$NetBSD: hppa_reloc.c,v 1.46 2020/05/10 06:42:38 skrll Exp $	*/
      2 
      3 /*-
      4  * Copyright (c) 2002, 2004 The NetBSD Foundation, Inc.
      5  * All rights reserved.
      6  *
      7  * This code is derived from software contributed to The NetBSD Foundation
      8  * by Matt Fredette and Nick Hudson.
      9  *
     10  * Redistribution and use in source and binary forms, with or without
     11  * modification, are permitted provided that the following conditions
     12  * are met:
     13  * 1. Redistributions of source code must retain the above copyright
     14  *    notice, this list of conditions and the following disclaimer.
     15  * 2. Redistributions in binary form must reproduce the above copyright
     16  *    notice, this list of conditions and the following disclaimer in the
     17  *    documentation and/or other materials provided with the distribution.
     18  *
     19  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29  * POSSIBILITY OF SUCH DAMAGE.
     30  */
     31 
     32 #include <sys/cdefs.h>
     33 #ifndef lint
     34 __RCSID("$NetBSD: hppa_reloc.c,v 1.46 2020/05/10 06:42:38 skrll Exp $");
     35 #endif /* not lint */
     36 
     37 #include <stdlib.h>
     38 #include <sys/types.h>
     39 #include <sys/queue.h>
     40 
     41 #include <string.h>
     42 
     43 #include "rtld.h"
     44 #include "debug.h"
     45 
     46 #ifdef RTLD_DEBUG_HPPA
     47 #define	hdbg(x)		xprintf x
     48 #else
     49 #define	hdbg(x)		/* nothing */
     50 #endif
     51 
     52 caddr_t _rtld_bind(const Obj_Entry *, const Elf_Addr);
     53 void _rtld_bind_start(void);
     54 void __rtld_setup_hppa_pltgot(const Obj_Entry *, Elf_Addr *);
     55 
     56 /*
     57  * It is possible for the compiler to emit relocations for unaligned data.
     58  * We handle this situation with these inlines.
     59  */
     60 #define	RELOC_ALIGNED_P(x) \
     61 	(((uintptr_t)(x) & (sizeof(void *) - 1)) == 0)
     62 
     63 static inline Elf_Addr
     64 load_ptr(void *where)
     65 {
     66 	if (__predict_true(RELOC_ALIGNED_P(where)))
     67 		return *(Elf_Addr *)where;
     68 	else {
     69 		Elf_Addr res;
     70 
     71 		(void)memcpy(&res, where, sizeof(res));
     72 		return res;
     73 	}
     74 }
     75 
     76 static inline void
     77 store_ptr(void *where, Elf_Addr val)
     78 {
     79 	if (__predict_true(RELOC_ALIGNED_P(where)))
     80 		*(Elf_Addr *)where = val;
     81 	else
     82 		(void)memcpy(where, &val, sizeof(val));
     83 }
     84 
     85 static __inline void
     86 fdc(void *addr)
     87 {
     88 	__asm volatile("fdc %%r0(%%sr0, %0)" : : "r" (addr));
     89 }
     90 
     91 static __inline void
     92 fic(void *addr)
     93 {
     94 	__asm volatile("fic %%r0(%%sr0,%0)" : : "r" (addr));
     95 }
     96 
     97 static __inline void
     98 sync(void)
     99 {
    100 	__asm volatile("sync" : : : "memory");
    101 }
    102 
    103 #define PLT_STUB_MAGIC1	0x00c0ffee
    104 #define PLT_STUB_MAGIC2	0xdeadbeef
    105 
    106 #define PLT_STUB_INSN1	0x0e801081	/* ldw	0(%r20), %r1 */
    107 #define PLT_STUB_INSN2	0xe820c000	/* bv	%r0(%r1) */
    108 
    109 /*
    110  * In the runtime architecture (ABI), PLABEL function pointers are
    111  * distinguished from normal function pointers by having the next-least-
    112  * significant bit set.  (This bit is referred to as the L field in HP
    113  * documentation).  The $$dyncall millicode is aware of this.
    114  */
    115 #define	RTLD_MAKE_PLABEL(plabel)	(((Elf_Addr)(plabel)) | (1 << 1))
    116 #define RTLD_IS_PLABEL(addr)		(((Elf_Addr)(addr)) & (1 << 1))
    117 #define	RTLD_GET_PLABEL(addr)	((hppa_plabel *) (((Elf_Addr)addr) & ~3))
    118 
    119 /*
    120  * This is the PLABEL structure.  The function PC and
    121  * shared linkage members must come first, as they are
    122  * the actual PLABEL.
    123  */
    124 typedef struct _hppa_plabel {
    125 	Elf_Addr	hppa_plabel_pc;
    126 	Elf_Addr	hppa_plabel_sl;
    127 	SLIST_ENTRY(_hppa_plabel)	hppa_plabel_next;
    128 } hppa_plabel;
    129 
    130 /*
    131  * For now allocated PLABEL structures are tracked on a
    132  * singly linked list.  This maybe should be revisited.
    133  */
    134 static SLIST_HEAD(hppa_plabel_head, _hppa_plabel) hppa_plabel_list
    135     = SLIST_HEAD_INITIALIZER(hppa_plabel_list);
    136 
    137 /*
    138  * Because I'm hesitant to use NEW while relocating self,
    139  * this is a small pool of preallocated PLABELs.
    140  */
    141 #define	HPPA_PLABEL_PRE	(32)
    142 static hppa_plabel hppa_plabel_pre[HPPA_PLABEL_PRE];
    143 static int hppa_plabel_pre_next = 0;
    144 
    145 void _rtld_relocate_nonplt_self(Elf_Dyn *, Elf_Addr);
    146 int _rtld_relocate_plt_objects(const Obj_Entry *);
    147 static inline int _rtld_relocate_plt_object(const Obj_Entry *,
    148     const Elf_Rela *, Elf_Addr *);
    149 
    150 /*
    151  * This bootstraps the dynamic linker by relocating its GOT.
    152  * On the hppa, unlike on other architectures, static strings
    153  * are found through the GOT.  Static strings are essential
    154  * for RTLD_DEBUG, and I suspect they're used early even when
    155  * !defined(RTLD_DEBUG), making relocating the GOT essential.
    156  *
    157  * It gets worse.  Relocating the GOT doesn't mean just walking
    158  * it and adding the relocbase to all of the entries.  You must
    159  * find and use the GOT relocations, since those RELA relocations
    160  * have the necessary addends - the GOT comes initialized as
    161  * zeroes.
    162  */
    163 void
    164 _rtld_relocate_nonplt_self(Elf_Dyn *dynp, Elf_Addr relocbase)
    165 {
    166 	const Elf_Rela	*relafirst, *rela, *relalim;
    167 	Elf_Addr        relasz;
    168 	void		*where;
    169 	Elf_Addr	*pltgot;
    170 	const Elf_Rela	*plabel_relocs[HPPA_PLABEL_PRE];
    171 	int		nplabel_relocs = 0;
    172 	int		i;
    173 	const Elf_Sym	*symtab, *sym;
    174 	unsigned long	symnum;
    175 	hppa_plabel	*plabel;
    176 
    177 	/*
    178 	 * Process the DYNAMIC section, looking for the non-PLT relocations.
    179 	 */
    180 	relafirst = NULL;
    181 	relasz = 0;
    182 	symtab = NULL;
    183 	pltgot = NULL;
    184 	for (; dynp->d_tag != DT_NULL; ++dynp) {
    185 		switch (dynp->d_tag) {
    186 
    187 		case DT_RELA:
    188 			relafirst = (const Elf_Rela *)
    189 			    (relocbase + dynp->d_un.d_ptr);
    190 			break;
    191 
    192 		case DT_RELASZ:
    193 			relasz = dynp->d_un.d_val;
    194 			break;
    195 
    196 		case DT_SYMTAB:
    197 			symtab = (const Elf_Sym *)
    198 			    (relocbase + dynp->d_un.d_ptr);
    199 			break;
    200 
    201 		case DT_PLTGOT:
    202 			pltgot = (Elf_Addr *)
    203 			    (relocbase + dynp->d_un.d_ptr);
    204 			break;
    205 		}
    206 	}
    207 	relalim = (const Elf_Rela *)((const char *)relafirst + relasz);
    208 
    209 	for (rela = relafirst; rela < relalim; rela++) {
    210 		symnum = ELF_R_SYM(rela->r_info);
    211 		where = (void *)(relocbase + rela->r_offset);
    212 
    213 		switch (ELF_R_TYPE(rela->r_info)) {
    214 		case R_TYPE(DIR32):
    215 			if (symnum == 0)
    216 				store_ptr(where,
    217 				    relocbase + rela->r_addend);
    218 			else {
    219 				sym = symtab + symnum;
    220 				store_ptr(where,
    221 				    relocbase + rela->r_addend + sym->st_value);
    222 			}
    223 			break;
    224 
    225 		case R_TYPE(PLABEL32):
    226 			/*
    227 			 * PLABEL32 relocation processing is done in two phases
    228 			 *
    229 			 *  i) local function relocations (symbol number == 0)
    230 			 *     can be resolved immediately.
    231 			 *
    232 			 * ii) external function relocations are deferred until
    233 			 *     we finish all other relocations so that global
    234 			 *     data isn't accessed until all other non-PLT
    235 			 *     relocations have been done.
    236 			 */
    237 			if (symnum == 0)
    238 				*((Elf_Addr *)where) =
    239 				    relocbase + rela->r_addend;
    240 			else
    241 				plabel_relocs[nplabel_relocs++] = rela;
    242 			break;
    243 
    244 		default:
    245 			break;
    246 		}
    247 	}
    248 
    249 	assert(nplabel_relocs < HPPA_PLABEL_PRE);
    250 	for (i = 0; i < nplabel_relocs; i++) {
    251 		rela = plabel_relocs[i];
    252 		where = (void *)(relocbase + rela->r_offset);
    253 		sym = symtab + ELF_R_SYM(rela->r_info);
    254 
    255 		plabel = &hppa_plabel_pre[hppa_plabel_pre_next++];
    256 
    257 		plabel->hppa_plabel_pc = (Elf_Addr)
    258 		    (relocbase + sym->st_value + rela->r_addend);
    259 		plabel->hppa_plabel_sl = (Elf_Addr)pltgot;
    260 
    261 		SLIST_INSERT_HEAD(&hppa_plabel_list, plabel, hppa_plabel_next);
    262 		*((Elf_Addr *)where) = (Elf_Addr)(RTLD_MAKE_PLABEL(plabel));
    263 	}
    264 
    265 #if defined(RTLD_DEBUG_HPPA)
    266 	for (rela = relafirst; rela < relalim; rela++) {
    267 		where = (void *)(relocbase + rela->r_offset);
    268 
    269 		switch (ELF_R_TYPE(rela->r_info)) {
    270 		case R_TYPE(DIR32):
    271 			hdbg(("DIR32 rela @%p(%p) -> %p(%p)\n",
    272 			    (void *)rela->r_offset,
    273 			    (void *)where,
    274 			    (void *)rela->r_addend,
    275 			    (void *)*((Elf_Addr *)where) ));
    276 			break;
    277 
    278 		case R_TYPE(PLABEL32):
    279 			symnum = ELF_R_SYM(rela->r_info);
    280 			if (symnum == 0) {
    281 				hdbg(("PLABEL rela @%p(%p) -> %p(%p)\n",
    282 		    		    (void *)rela->r_offset,
    283 		    		    (void *)where,
    284 		    		    (void *)rela->r_addend,
    285 		    		    (void *)*((Elf_Addr *)where) ));
    286 			} else {
    287 				sym = symtab + symnum;
    288 
    289 				hdbg(("PLABEL32 rela @%p(%p), symnum=%ld(%p) -> %p(%p)\n",
    290 			    	    (void *)rela->r_offset,
    291 				    (void *)where,
    292 				    symnum,
    293 				    (void *)sym->st_value,
    294 			    	    (void *)rela->r_addend,
    295 				    (void *)*((Elf_Addr *)where) ));
    296 			}
    297 			break;
    298 		default:
    299 			hdbg(("rela XXX reloc\n"));
    300 			break;
    301 		}
    302 	}
    303 #endif /* RTLD_DEBUG_HPPA */
    304 }
    305 
    306 /*
    307  * This allocates a PLABEL.  If called with a non-NULL def, the
    308  * plabel is for the function associated with that definition
    309  * in the defining object defobj, plus the given addend.  If
    310  * called with a NULL def, the plabel is for the function at
    311  * the (unrelocated) address in addend in the object defobj.
    312  */
    313 Elf_Addr
    314 _rtld_function_descriptor_alloc(const Obj_Entry *defobj, const Elf_Sym *def,
    315     Elf_Addr addend)
    316 {
    317 	Elf_Addr	func_pc, func_sl;
    318 	hppa_plabel	*plabel;
    319 
    320 	if (def != NULL) {
    321 
    322 		/*
    323 		 * We assume that symbols of type STT_NOTYPE
    324 		 * are undefined.  Return NULL for these.
    325 		 */
    326 		if (ELF_ST_TYPE(def->st_info) == STT_NOTYPE)
    327 			return (Elf_Addr)NULL;
    328 
    329 		/* Otherwise assert that this symbol must be a function. */
    330 		assert(ELF_ST_TYPE(def->st_info) == STT_FUNC);
    331 
    332 		func_pc = (Elf_Addr)(defobj->relocbase + def->st_value +
    333 		    addend);
    334 	} else
    335 		func_pc = (Elf_Addr)(defobj->relocbase + addend);
    336 
    337 	/*
    338 	 * Search the existing PLABELs for one matching
    339 	 * this function.  If there is one, return it.
    340 	 */
    341 	func_sl = (Elf_Addr)(defobj->pltgot);
    342 	SLIST_FOREACH(plabel, &hppa_plabel_list, hppa_plabel_next)
    343 		if (plabel->hppa_plabel_pc == func_pc &&
    344 		    plabel->hppa_plabel_sl == func_sl)
    345 			return RTLD_MAKE_PLABEL(plabel);
    346 
    347 	/*
    348 	 * Once we've used up the preallocated set, we start
    349 	 * using NEW to allocate plabels.
    350 	 */
    351 	if (hppa_plabel_pre_next < HPPA_PLABEL_PRE)
    352 		plabel = &hppa_plabel_pre[hppa_plabel_pre_next++];
    353 	else {
    354 		plabel = NEW(hppa_plabel);
    355 		if (plabel == NULL)
    356 			return (Elf_Addr)-1;
    357 	}
    358 
    359 	/* Fill the new entry and insert it on the list. */
    360 	plabel->hppa_plabel_pc = func_pc;
    361 	plabel->hppa_plabel_sl = func_sl;
    362 	SLIST_INSERT_HEAD(&hppa_plabel_list, plabel, hppa_plabel_next);
    363 
    364 	return RTLD_MAKE_PLABEL(plabel);
    365 }
    366 
    367 /*
    368  * If a pointer is a PLABEL, this unwraps it.
    369  */
    370 const void *
    371 _rtld_function_descriptor_function(const void *addr)
    372 {
    373 	return (RTLD_IS_PLABEL(addr) ?
    374 	    (const void *) RTLD_GET_PLABEL(addr)->hppa_plabel_pc :
    375 	    addr);
    376 }
    377 
    378 /* This sets up an object's GOT. */
    379 void
    380 _rtld_setup_pltgot(const Obj_Entry *obj)
    381 {
    382 	Elf_Word *got = obj->pltgot;
    383 
    384 	assert(got[-2] == PLT_STUB_MAGIC1);
    385 	assert(got[-1] == PLT_STUB_MAGIC2);
    386 
    387 	__rtld_setup_hppa_pltgot(obj, got);
    388 
    389 	fdc(&got[-2]);
    390 	fdc(&got[-1]);
    391 	fdc(&got[1]);
    392 	sync();
    393 	fic(&got[-2]);
    394 	fic(&got[-1]);
    395 	fic(&got[1]);
    396 	sync();
    397 
    398 	/*
    399 	 * libc makes use of %t1 (%r22) to pass errno values to __cerror. Fixup
    400 	 * the PLT stub to not use %r22.
    401 	 */
    402 	got[-7] = PLT_STUB_INSN1;
    403 	got[-6] = PLT_STUB_INSN2;
    404 	fdc(&got[-7]);
    405 	fdc(&got[-6]);
    406 	sync();
    407 	fic(&got[-7]);
    408 	fic(&got[-6]);
    409 	sync();
    410 }
    411 
    412 int
    413 _rtld_relocate_nonplt_objects(Obj_Entry *obj)
    414 {
    415 	const Elf_Rela *rela;
    416 	const Elf_Sym *def = NULL;
    417 	const Obj_Entry *defobj = NULL;
    418 	unsigned long last_symnum = ULONG_MAX;
    419 
    420 	for (rela = obj->rela; rela < obj->relalim; rela++) {
    421 		Elf_Addr        *where;
    422 		Elf_Addr         tmp;
    423 		unsigned long	 symnum;
    424 
    425 		where = (Elf_Addr *)(obj->relocbase + rela->r_offset);
    426 
    427 		/* First, handle DIR32 and PLABEL32 without symbol. */
    428 		if (ELF_R_SYM(rela->r_info) == 0) {
    429 			switch (ELF_R_TYPE(rela->r_info)) {
    430 			default:
    431 				break;
    432 			case R_TYPE(DIR32):
    433 				tmp = (Elf_Addr)(obj->relocbase +
    434 				    rela->r_addend);
    435 
    436 				if (load_ptr(where) != tmp)
    437 					store_ptr(where, tmp);
    438 				rdbg(("DIR32 in %s --> %p", obj->path,
    439 					    (void *)load_ptr(where)));
    440 				continue;
    441 			case R_TYPE(PLABEL32):
    442 				/*
    443 				 * This is a PLABEL for a static function, and
    444 				 * the dynamic linker has both allocated a PLT
    445 				 * entry for this function and told us where it
    446 				 * is.  We can safely use the PLT entry as the
    447 				 * PLABEL because there should be no other
    448 				 * PLABEL reloc referencing this function.
    449 				 * This object should also have an IPLT
    450 				 * relocation to initialize the PLT entry.
    451 				 *
    452 				 * The dynamic linker should also have ensured
    453 				 * that the addend has the
    454 				 * next-least-significant bit set; the
    455 				 * $$dyncall millicode uses this to distinguish
    456 				 * a PLABEL pointer from a plain function
    457 				 * pointer.
    458 				 */
    459 				tmp = (Elf_Addr)
    460 				    (obj->relocbase + rela->r_addend);
    461 
    462 				if (*where != tmp)
    463 					*where = tmp;
    464 				rdbg(("PLABEL32 in %s --> %p", obj->path,
    465 				    (void *)*where));
    466 				continue;
    467 			}
    468 		}
    469 
    470 		switch (ELF_R_TYPE(rela->r_info)) {
    471 		case R_TYPE(DIR32):
    472 		case R_TYPE(PLABEL32):
    473 		case R_TYPE(COPY):
    474 		case R_TYPE(TLS_TPREL32):
    475 		case R_TYPE(TLS_DTPMOD32):
    476 		case R_TYPE(TLS_DTPOFF32):
    477 			symnum = ELF_R_SYM(rela->r_info);
    478 			if (last_symnum != symnum) {
    479 				last_symnum = symnum;
    480 				if (ELF_R_TYPE(rela->r_info) == R_TYPE(DIR32)) {
    481 					/*
    482 					 * DIR32 relocation against local
    483 					 * symbols are special...
    484 					 */
    485 					def = obj->symtab + symnum;
    486 					defobj = obj;
    487 					if (def->st_name == 0)
    488 						break;
    489 				}
    490 				def = _rtld_find_symdef(symnum, obj, &defobj,
    491 				    false);
    492 				if (def == NULL)
    493 					return -1;
    494 			}
    495 			break;
    496 		default:
    497 			break;
    498 		}
    499 
    500 		switch (ELF_R_TYPE(rela->r_info)) {
    501 		case R_TYPE(NONE):
    502 			break;
    503 
    504 		case R_TYPE(DIR32):
    505 			tmp = (Elf_Addr)(defobj->relocbase +
    506 			    def->st_value + rela->r_addend);
    507 
    508 			if (load_ptr(where) != tmp)
    509 				store_ptr(where, tmp);
    510 			rdbg(("DIR32 %s in %s --> %p in %s",
    511 			    obj->strtab + obj->symtab[symnum].st_name,
    512 			    obj->path, (void *)load_ptr(where),
    513 			    defobj->path));
    514 			break;
    515 
    516 		case R_TYPE(PLABEL32):
    517 			tmp = _rtld_function_descriptor_alloc(defobj,
    518 			    def, rela->r_addend);
    519 			if (tmp == (Elf_Addr)-1)
    520 				return -1;
    521 
    522 			if (*where != tmp)
    523 				*where = tmp;
    524 			rdbg(("PLABEL32 %s in %s --> %p in %s",
    525 			    obj->strtab + obj->symtab[symnum].st_name,
    526 			    obj->path, (void *)*where, defobj->path));
    527 			break;
    528 
    529 		case R_TYPE(COPY):
    530 			/*
    531 			 * These are deferred until all other relocations have
    532 			 * been done.  All we do here is make sure that the
    533 			 * COPY relocation is not in a shared library.  They
    534 			 * are allowed only in executable files.
    535 			 */
    536 			if (obj->isdynamic) {
    537 				_rtld_error(
    538 			"%s: Unexpected R_COPY relocation in shared library",
    539 				    obj->path);
    540 				return -1;
    541 			}
    542 			rdbg(("COPY (avoid in main)"));
    543 			break;
    544 
    545 		case R_TYPE(TLS_TPREL32):
    546 			if (!defobj->tls_done && _rtld_tls_offset_allocate(obj))
    547 				return -1;
    548 
    549 			*where = (Elf_Addr)(defobj->tlsoffset + def->st_value +
    550 			    rela->r_addend + sizeof(struct tls_tcb));
    551 
    552 			rdbg(("TPREL32 %s in %s --> %p in %s",
    553 			    obj->strtab + obj->symtab[symnum].st_name,
    554 			    obj->path, (void *)*where, defobj->path));
    555 			break;
    556 
    557 		case R_TYPE(TLS_DTPMOD32):
    558 			*where = (Elf_Addr)(defobj->tlsindex);
    559 
    560 			rdbg(("TLS_DTPMOD32 %s in %s --> %p",
    561 			    obj->strtab + obj->symtab[symnum].st_name,
    562 			    obj->path, (void *)*where));
    563 
    564 			break;
    565 
    566 		case R_TYPE(TLS_DTPOFF32):
    567 			*where = (Elf_Addr)(def->st_value);
    568 
    569 			rdbg(("TLS_DTPOFF32 %s in %s --> %p",
    570 			    obj->strtab + obj->symtab[symnum].st_name,
    571 			    obj->path, (void *)*where));
    572 
    573 			break;
    574 
    575 		default:
    576 			rdbg(("sym = %lu, type = %lu, offset = %p, "
    577 			    "addend = %p, contents = %p, symbol = %s",
    578 			    symnum, (u_long)ELF_R_TYPE(rela->r_info),
    579 			    (void *)rela->r_offset, (void *)rela->r_addend,
    580 			    (void *)load_ptr(where),
    581 			    obj->strtab + obj->symtab[symnum].st_name));
    582 			_rtld_error("%s: Unsupported relocation type %ld "
    583 			    "in non-PLT relocations",
    584 			    obj->path, (u_long) ELF_R_TYPE(rela->r_info));
    585 			return -1;
    586 		}
    587 	}
    588 	return 0;
    589 }
    590 
    591 int
    592 _rtld_relocate_plt_lazy(Obj_Entry *obj)
    593 {
    594 	const Elf_Rela *rela;
    595 
    596 	for (rela = obj->pltrela; rela < obj->pltrelalim; rela++) {
    597 		Elf_Addr *where = (Elf_Addr *)(obj->relocbase + rela->r_offset);
    598 		Elf_Addr func_pc, func_sl;
    599 
    600 		assert(ELF_R_TYPE(rela->r_info) == R_TYPE(IPLT));
    601 
    602 		/*
    603 		 * If this is an IPLT reloc for a static function,
    604 		 * fully resolve the PLT entry now.
    605 		 */
    606 		if (ELF_R_SYM(rela->r_info) == 0) {
    607 			func_pc = (Elf_Addr)(obj->relocbase + rela->r_addend);
    608 			func_sl = (Elf_Addr)(obj->pltgot);
    609 		}
    610 
    611 		/*
    612 		 * Otherwise set up for lazy binding.
    613 		 */
    614 		else {
    615 			/*
    616 			 * This function pointer points to the PLT
    617 			 * stub added by the linker, and instead of
    618 			 * a shared linkage value, we stash this
    619 			 * relocation's offset.  The PLT stub has
    620 			 * already been set up to transfer to
    621 			 * _rtld_bind_start.
    622 			 */
    623 			func_pc = ((Elf_Addr)(obj->pltgot)) - 16;
    624 			func_sl = (Elf_Addr)
    625 			    ((const char *)rela - (const char *)(obj->pltrela));
    626 		}
    627 		rdbg(("lazy bind %s(%p) --> old=(%p,%p) new=(%p,%p)",
    628 		    obj->path,
    629 		    (void *)where,
    630 		    (void *)where[0], (void *)where[1],
    631 		    (void *)func_pc, (void *)func_sl));
    632 
    633 		/*
    634 		 * Fill this PLT entry and return.
    635 		 */
    636 		where[0] = func_pc;
    637 		where[1] = func_sl;
    638 	}
    639 	return 0;
    640 }
    641 
    642 static inline int
    643 _rtld_relocate_plt_object(const Obj_Entry *obj, const Elf_Rela *rela,
    644     Elf_Addr *tp)
    645 {
    646 	Elf_Word *where = (Elf_Word *)(obj->relocbase + rela->r_offset);
    647 	const Elf_Sym *def;
    648 	const Obj_Entry *defobj;
    649 	Elf_Addr	func_pc, func_sl;
    650 	unsigned long info = rela->r_info;
    651 
    652 	assert(ELF_R_TYPE(info) == R_TYPE(IPLT));
    653 
    654 	if (ELF_R_SYM(info) == 0) {
    655 		func_pc = (Elf_Addr)(obj->relocbase + rela->r_addend);
    656 		func_sl = (Elf_Addr)(obj->pltgot);
    657 	} else {
    658 		def = _rtld_find_plt_symdef(ELF_R_SYM(info), obj, &defobj,
    659 		    tp != NULL);
    660 		if (__predict_false(def == NULL))
    661 			return -1;
    662 		if (__predict_false(def == &_rtld_sym_zero))
    663 			return 0;
    664 
    665 		if (ELF_ST_TYPE(def->st_info) == STT_GNU_IFUNC) {
    666 			if (tp == NULL)
    667 				return 0;
    668 			Elf_Addr ptr = _rtld_resolve_ifunc(defobj, def);
    669 			assert(RTLD_IS_PLABEL(ptr));
    670 			hppa_plabel *label = RTLD_GET_PLABEL(ptr);
    671 			func_pc = label->hppa_plabel_pc;
    672 			func_sl = label->hppa_plabel_sl;
    673 		} else {
    674 			func_pc = (Elf_Addr)(defobj->relocbase + def->st_value +
    675 			    rela->r_addend);
    676 			func_sl = (Elf_Addr)(defobj->pltgot);
    677 		}
    678 
    679 		rdbg(("bind now/fixup in %s --> old=(%p,%p) new=(%p,%p)",
    680 		    defobj->strtab + def->st_name,
    681 		    (void *)where[0], (void *)where[1],
    682 		    (void *)func_pc, (void *)func_sl));
    683 	}
    684 	/*
    685 	 * Fill this PLT entry and return.
    686 	 */
    687 	if (where[0] != func_pc)
    688 		where[0] = func_pc;
    689 	if (where[1] != func_sl)
    690 		where[1] = func_sl;
    691 
    692 	if (tp)
    693 		*tp = (Elf_Addr)where;
    694 
    695 	return 0;
    696 }
    697 
    698 caddr_t
    699 _rtld_bind(const Obj_Entry *obj, Elf_Word reloff)
    700 {
    701 	const Elf_Rela *rela;
    702 	Elf_Addr new_value = 0;	/* XXX gcc */
    703 	int err;
    704 
    705 	rela = (const Elf_Rela *)((const char *)obj->pltrela + reloff);
    706 
    707 	assert(ELF_R_SYM(rela->r_info) != 0);
    708 
    709 	_rtld_shared_enter();
    710 	err = _rtld_relocate_plt_object(obj, rela, &new_value);
    711 	if (err)
    712 		_rtld_die();
    713 	_rtld_shared_exit();
    714 
    715 	return (caddr_t)new_value;
    716 }
    717 
    718 int
    719 _rtld_relocate_plt_objects(const Obj_Entry *obj)
    720 {
    721 	const Elf_Rela *rela = obj->pltrela;
    722 
    723 	for (; rela < obj->pltrelalim; rela++) {
    724 		if (_rtld_relocate_plt_object(obj, rela, NULL) < 0)
    725 			return -1;
    726 	}
    727 	return 0;
    728 }
    729 
    730 void
    731 _rtld_call_function_void(const Obj_Entry *obj, Elf_Addr ptr)
    732 {
    733 	volatile hppa_plabel plabel;
    734 	void (*f)(void);
    735 
    736 	plabel.hppa_plabel_pc = (Elf_Addr)ptr;
    737 	plabel.hppa_plabel_sl = (Elf_Addr)(obj->pltgot);
    738 	f = (void (*)(void))RTLD_MAKE_PLABEL(&plabel);
    739 
    740 	f();
    741 }
    742 
    743 Elf_Addr
    744 _rtld_call_function_addr(const Obj_Entry *obj, Elf_Addr ptr)
    745 {
    746 	volatile hppa_plabel plabel;
    747 	Elf_Addr (*f)(void);
    748 
    749 	plabel.hppa_plabel_pc = (Elf_Addr)ptr;
    750 	plabel.hppa_plabel_sl = (Elf_Addr)(obj->pltgot);
    751 	f = (Elf_Addr (*)(void))RTLD_MAKE_PLABEL(&plabel);
    752 
    753 	return f();
    754 }
    755